1 /* Process declarations and variables for C++ compiler.
2 Copyright (C) 1988, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000,
3 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009
4 Free Software Foundation, Inc.
5 Contributed by Michael Tiemann (tiemann@cygnus.com)
7 This file is part of GCC.
9 GCC is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3, or (at your option)
14 GCC is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
19 You should have received a copy of the GNU General Public License
20 along with GCC; see the file COPYING3. If not see
21 <http://www.gnu.org/licenses/>. */
24 /* Process declarations and symbol lookup for C++ front end.
25 Also constructs types; the standard scalar types at initialization,
26 and structure, union, array and enum types when they are declared. */
28 /* ??? not all decl nodes are given the most useful possible
29 line numbers. For example, the CONST_DECLs for enum values. */
33 #include "coretypes.h"
40 #include "tree-inline.h"
51 #include "diagnostic.h"
55 #include "tree-flow.h"
56 #include "pointer-set.h"
59 static tree
grokparms (tree parmlist
, tree
*);
60 static const char *redeclaration_error_message (tree
, tree
);
62 static int decl_jump_unsafe (tree
);
63 static void require_complete_types_for_parms (tree
);
64 static int ambi_op_p (enum tree_code
);
65 static int unary_op_p (enum tree_code
);
66 static void push_local_name (tree
);
67 static tree
grok_reference_init (tree
, tree
, tree
, tree
*);
68 static tree
grokvardecl (tree
, tree
, const cp_decl_specifier_seq
*,
70 static void record_unknown_type (tree
, const char *);
71 static tree
builtin_function_1 (tree
, tree
, bool);
72 static tree
build_library_fn_1 (tree
, enum tree_code
, tree
);
73 static int member_function_or_else (tree
, tree
, enum overload_flags
);
74 static void bad_specifiers (tree
, const char *, int, int, int, int,
76 static void check_for_uninitialized_const_var (tree
);
77 static hashval_t
typename_hash (const void *);
78 static int typename_compare (const void *, const void *);
79 static tree
local_variable_p_walkfn (tree
*, int *, void *);
80 static tree
record_builtin_java_type (const char *, int);
81 static const char *tag_name (enum tag_types
);
82 static tree
lookup_and_check_tag (enum tag_types
, tree
, tag_scope
, bool);
83 static int walk_namespaces_r (tree
, walk_namespaces_fn
, void *);
84 static void maybe_deduce_size_from_array_init (tree
, tree
);
85 static void layout_var_decl (tree
);
86 static tree
check_initializer (tree
, tree
, int, tree
*);
87 static void make_rtl_for_nonlocal_decl (tree
, tree
, const char *);
88 static void save_function_data (tree
);
89 static void check_function_type (tree
, tree
);
90 static void finish_constructor_body (void);
91 static void begin_destructor_body (void);
92 static void finish_destructor_body (void);
93 static tree
create_array_type_for_decl (tree
, tree
, tree
);
94 static tree
get_atexit_node (void);
95 static tree
get_dso_handle_node (void);
96 static tree
start_cleanup_fn (void);
97 static void end_cleanup_fn (void);
98 static tree
cp_make_fname_decl (location_t
, tree
, int);
99 static void initialize_predefined_identifiers (void);
100 static tree check_special_function_return_type
101 (special_function_kind
, tree
, tree
);
102 static tree
push_cp_library_fn (enum tree_code
, tree
);
103 static tree
build_cp_library_fn (tree
, enum tree_code
, tree
);
104 static void store_parm_decls (tree
);
105 static void initialize_local_var (tree
, tree
);
106 static void expand_static_init (tree
, tree
);
107 static tree
next_initializable_field (tree
);
109 /* The following symbols are subsumed in the cp_global_trees array, and
110 listed here individually for documentation purposes.
113 tree wchar_decl_node;
115 tree vtable_entry_type;
116 tree delta_type_node;
117 tree __t_desc_type_node;
119 tree class_type_node;
120 tree unknown_type_node;
122 Array type `vtable_entry_type[]'
125 tree vtbl_ptr_type_node;
132 A FUNCTION_DECL which can call `abort'. Not necessarily the
133 one that the user will declare, but sufficient to be called
134 by routines that want to abort the program.
138 The FUNCTION_DECL for the default `::operator delete'.
140 tree global_delete_fndecl;
143 tree type_info_type_node, tinfo_decl_id, tinfo_decl_type;
144 tree tinfo_var_id; */
146 tree cp_global_trees
[CPTI_MAX
];
148 /* Indicates that there is a type value in some namespace, although
149 that is not necessarily in scope at the moment. */
151 tree global_type_node
;
153 /* The node that holds the "name" of the global scope. */
154 tree global_scope_name
;
156 #define local_names cp_function_chain->x_local_names
158 /* A list of objects which have constructors or destructors
159 which reside in the global scope. The decl is stored in
160 the TREE_VALUE slot and the initializer is stored
161 in the TREE_PURPOSE slot. */
162 tree static_aggregates
;
166 /* A node for the integer constants 2, and 3. */
168 tree integer_two_node
, integer_three_node
;
170 /* Used only for jumps to as-yet undefined labels, since jumps to
171 defined labels can have their validity checked immediately. */
173 struct GTY(()) named_label_use_entry
{
174 struct named_label_use_entry
*next
;
175 /* The binding level to which this entry is *currently* attached.
176 This is initially the binding level in which the goto appeared,
177 but is modified as scopes are closed. */
178 struct cp_binding_level
*binding_level
;
179 /* The head of the names list that was current when the goto appeared,
180 or the inner scope popped. These are the decls that will *not* be
181 skipped when jumping to the label. */
183 /* The location of the goto, for error reporting. */
184 location_t o_goto_locus
;
185 /* True if an OpenMP structured block scope has been closed since
186 the goto appeared. This means that the branch from the label will
187 illegally exit an OpenMP scope. */
191 /* A list of all LABEL_DECLs in the function that have names. Here so
192 we can clear out their names' definitions at the end of the
193 function, and so we can check the validity of jumps to these labels. */
195 struct GTY(()) named_label_entry
{
196 /* The decl itself. */
199 /* The binding level to which the label is *currently* attached.
200 This is initially set to the binding level in which the label
201 is defined, but is modified as scopes are closed. */
202 struct cp_binding_level
*binding_level
;
203 /* The head of the names list that was current when the label was
204 defined, or the inner scope popped. These are the decls that will
205 be skipped when jumping to the label. */
207 /* A tree list of all decls from all binding levels that would be
208 crossed by a backward branch to the label. */
211 /* A list of uses of the label, before the label is defined. */
212 struct named_label_use_entry
*uses
;
214 /* The following bits are set after the label is defined, and are
215 updated as scopes are popped. They indicate that a backward jump
216 to the label will illegally enter a scope of the given flavor. */
222 #define named_labels cp_function_chain->x_named_labels
224 /* The number of function bodies which we are currently processing.
225 (Zero if we are at namespace scope, one inside the body of a
226 function, two inside the body of a function in a local class, etc.) */
229 /* To avoid unwanted recursion, finish_function defers all mark_used calls
230 encountered during its execution until it finishes. */
231 bool defer_mark_used_calls
;
232 VEC(tree
, gc
) *deferred_mark_used_calls
;
234 /* States indicating how grokdeclarator() should handle declspecs marked
235 with __attribute__((deprecated)). An object declared as
236 __attribute__((deprecated)) suppresses warnings of uses of other
238 enum deprecated_states deprecated_state
= DEPRECATED_NORMAL
;
241 /* A TREE_LIST of VAR_DECLs. The TREE_PURPOSE is a RECORD_TYPE or
242 UNION_TYPE; the TREE_VALUE is a VAR_DECL with that type. At the
243 time the VAR_DECL was declared, the type was incomplete. */
245 static GTY(()) tree incomplete_vars
;
247 /* Returns the kind of template specialization we are currently
248 processing, given that it's declaration contained N_CLASS_SCOPES
249 explicit scope qualifications. */
252 current_tmpl_spec_kind (int n_class_scopes
)
254 int n_template_parm_scopes
= 0;
255 int seen_specialization_p
= 0;
256 int innermost_specialization_p
= 0;
257 struct cp_binding_level
*b
;
259 /* Scan through the template parameter scopes. */
260 for (b
= current_binding_level
;
261 b
->kind
== sk_template_parms
;
264 /* If we see a specialization scope inside a parameter scope,
265 then something is wrong. That corresponds to a declaration
268 template <class T> template <> ...
270 which is always invalid since [temp.expl.spec] forbids the
271 specialization of a class member template if the enclosing
272 class templates are not explicitly specialized as well. */
273 if (b
->explicit_spec_p
)
275 if (n_template_parm_scopes
== 0)
276 innermost_specialization_p
= 1;
278 seen_specialization_p
= 1;
280 else if (seen_specialization_p
== 1)
281 return tsk_invalid_member_spec
;
283 ++n_template_parm_scopes
;
286 /* Handle explicit instantiations. */
287 if (processing_explicit_instantiation
)
289 if (n_template_parm_scopes
!= 0)
290 /* We've seen a template parameter list during an explicit
291 instantiation. For example:
293 template <class T> template void f(int);
295 This is erroneous. */
296 return tsk_invalid_expl_inst
;
298 return tsk_expl_inst
;
301 if (n_template_parm_scopes
< n_class_scopes
)
302 /* We've not seen enough template headers to match all the
303 specialized classes present. For example:
305 template <class T> void R<T>::S<T>::f(int);
307 This is invalid; there needs to be one set of template
308 parameters for each class. */
309 return tsk_insufficient_parms
;
310 else if (n_template_parm_scopes
== n_class_scopes
)
311 /* We're processing a non-template declaration (even though it may
312 be a member of a template class.) For example:
314 template <class T> void S<T>::f(int);
316 The `class T' matches the `S<T>', leaving no template headers
317 corresponding to the `f'. */
319 else if (n_template_parm_scopes
> n_class_scopes
+ 1)
320 /* We've got too many template headers. For example:
322 template <> template <class T> void f (T);
324 There need to be more enclosing classes. */
325 return tsk_excessive_parms
;
327 /* This must be a template. It's of the form:
329 template <class T> template <class U> void S<T>::f(U);
331 This is a specialization if the innermost level was a
332 specialization; otherwise it's just a definition of the
334 return innermost_specialization_p
? tsk_expl_spec
: tsk_template
;
337 /* Exit the current scope. */
345 /* When a label goes out of scope, check to see if that label was used
346 in a valid manner, and issue any appropriate warnings or errors. */
349 pop_label (tree label
, tree old_value
)
351 if (!processing_template_decl
)
353 if (DECL_INITIAL (label
) == NULL_TREE
)
357 error ("label %q+D used but not defined", label
);
358 location
= input_location
; /* FIXME want (input_filename, (line)0) */
359 /* Avoid crashing later. */
360 define_label (location
, DECL_NAME (label
));
363 warn_for_unused_label (label
);
366 SET_IDENTIFIER_LABEL_VALUE (DECL_NAME (label
), old_value
);
369 /* At the end of a function, all labels declared within the function
370 go out of scope. BLOCK is the top-level block for the
374 pop_labels_1 (void **slot
, void *data
)
376 struct named_label_entry
*ent
= (struct named_label_entry
*) *slot
;
377 tree block
= (tree
) data
;
379 pop_label (ent
->label_decl
, NULL_TREE
);
381 /* Put the labels into the "variables" of the top-level block,
382 so debugger can see them. */
383 TREE_CHAIN (ent
->label_decl
) = BLOCK_VARS (block
);
384 BLOCK_VARS (block
) = ent
->label_decl
;
386 htab_clear_slot (named_labels
, slot
);
392 pop_labels (tree block
)
396 htab_traverse (named_labels
, pop_labels_1
, block
);
401 /* At the end of a block with local labels, restore the outer definition. */
404 pop_local_label (tree label
, tree old_value
)
406 struct named_label_entry dummy
;
409 pop_label (label
, old_value
);
411 dummy
.label_decl
= label
;
412 slot
= htab_find_slot (named_labels
, &dummy
, NO_INSERT
);
413 htab_clear_slot (named_labels
, slot
);
416 /* The following two routines are used to interface to Objective-C++.
417 The binding level is purposely treated as an opaque type. */
420 objc_get_current_scope (void)
422 return current_binding_level
;
425 /* The following routine is used by the NeXT-style SJLJ exceptions;
426 variables get marked 'volatile' so as to not be clobbered by
427 _setjmp()/_longjmp() calls. All variables in the current scope,
428 as well as parent scopes up to (but not including) ENCLOSING_BLK
429 shall be thusly marked. */
432 objc_mark_locals_volatile (void *enclosing_blk
)
434 struct cp_binding_level
*scope
;
436 for (scope
= current_binding_level
;
437 scope
&& scope
!= enclosing_blk
;
438 scope
= scope
->level_chain
)
442 for (decl
= scope
->names
; decl
; decl
= TREE_CHAIN (decl
))
443 objc_volatilize_decl (decl
);
445 /* Do not climb up past the current function. */
446 if (scope
->kind
== sk_function_parms
)
451 /* Update data for defined and undefined labels when leaving a scope. */
454 poplevel_named_label_1 (void **slot
, void *data
)
456 struct named_label_entry
*ent
= (struct named_label_entry
*) *slot
;
457 struct cp_binding_level
*bl
= (struct cp_binding_level
*) data
;
458 struct cp_binding_level
*obl
= bl
->level_chain
;
460 if (ent
->binding_level
== bl
)
464 for (decl
= ent
->names_in_scope
; decl
; decl
= TREE_CHAIN (decl
))
465 if (decl_jump_unsafe (decl
))
466 ent
->bad_decls
= tree_cons (NULL
, decl
, ent
->bad_decls
);
468 ent
->binding_level
= obl
;
469 ent
->names_in_scope
= obl
->names
;
473 ent
->in_try_scope
= true;
476 ent
->in_catch_scope
= true;
479 ent
->in_omp_scope
= true;
487 struct named_label_use_entry
*use
;
489 for (use
= ent
->uses
; use
; use
= use
->next
)
490 if (use
->binding_level
== bl
)
492 use
->binding_level
= obl
;
493 use
->names_in_scope
= obl
->names
;
494 if (bl
->kind
== sk_omp
)
495 use
->in_omp_scope
= true;
502 /* Exit a binding level.
503 Pop the level off, and restore the state of the identifier-decl mappings
504 that were in effect when this level was entered.
506 If KEEP == 1, this level had explicit declarations, so
507 and create a "block" (a BLOCK node) for the level
508 to record its declarations and subblocks for symbol table output.
510 If FUNCTIONBODY is nonzero, this level is the body of a function,
511 so create a block as if KEEP were set and also clear out all
514 If REVERSE is nonzero, reverse the order of decls before putting
515 them into the BLOCK. */
518 poplevel (int keep
, int reverse
, int functionbody
)
521 /* The chain of decls was accumulated in reverse order.
522 Put it into forward order, just for cleanliness. */
527 int leaving_for_scope
;
530 timevar_push (TV_NAME_LOOKUP
);
535 gcc_assert (current_binding_level
->kind
!= sk_class
);
537 if (current_binding_level
->kind
== sk_cleanup
)
539 subblocks
= functionbody
>= 0 ? current_binding_level
->blocks
: 0;
541 gcc_assert (!VEC_length(cp_class_binding
,
542 current_binding_level
->class_shadowed
));
544 /* We used to use KEEP == 2 to indicate that the new block should go
545 at the beginning of the list of blocks at this binding level,
546 rather than the end. This hack is no longer used. */
547 gcc_assert (keep
== 0 || keep
== 1);
549 if (current_binding_level
->keep
)
552 /* Any uses of undefined labels, and any defined labels, now operate
553 under constraints of next binding contour. */
554 if (cfun
&& !functionbody
&& named_labels
)
555 htab_traverse (named_labels
, poplevel_named_label_1
,
556 current_binding_level
);
558 /* Get the decls in the order they were written.
559 Usually current_binding_level->names is in reverse order.
560 But parameter decls were previously put in forward order. */
563 current_binding_level
->names
564 = decls
= nreverse (current_binding_level
->names
);
566 decls
= current_binding_level
->names
;
568 /* If there were any declarations or structure tags in that level,
569 or if this level is a function body,
570 create a BLOCK to record them for the life of this function. */
572 if (keep
== 1 || functionbody
)
573 block
= make_node (BLOCK
);
574 if (block
!= NULL_TREE
)
576 BLOCK_VARS (block
) = decls
;
577 BLOCK_SUBBLOCKS (block
) = subblocks
;
580 /* In each subblock, record that this is its superior. */
582 for (link
= subblocks
; link
; link
= BLOCK_CHAIN (link
))
583 BLOCK_SUPERCONTEXT (link
) = block
;
585 /* We still support the old for-scope rules, whereby the variables
586 in a for-init statement were in scope after the for-statement
587 ended. We only use the new rules if flag_new_for_scope is
590 = current_binding_level
->kind
== sk_for
&& flag_new_for_scope
== 1;
592 /* Before we remove the declarations first check for unused variables. */
593 if (warn_unused_variable
594 && !processing_template_decl
)
595 for (decl
= getdecls (); decl
; decl
= TREE_CHAIN (decl
))
596 if (TREE_CODE (decl
) == VAR_DECL
597 && ! TREE_USED (decl
)
598 && ! DECL_IN_SYSTEM_HEADER (decl
)
599 && DECL_NAME (decl
) && ! DECL_ARTIFICIAL (decl
))
600 warning (OPT_Wunused_variable
, "unused variable %q+D", decl
);
602 /* Remove declarations for all the DECLs in this level. */
603 for (link
= decls
; link
; link
= TREE_CHAIN (link
))
605 if (leaving_for_scope
&& TREE_CODE (link
) == VAR_DECL
608 tree name
= DECL_NAME (link
);
612 ob
= outer_binding (name
,
613 IDENTIFIER_BINDING (name
),
616 ns_binding
= IDENTIFIER_NAMESPACE_VALUE (name
);
618 ns_binding
= NULL_TREE
;
620 if (ob
&& ob
->scope
== current_binding_level
->level_chain
)
621 /* We have something like:
626 and we are leaving the `for' scope. There's no reason to
627 keep the binding of the inner `i' in this case. */
628 pop_binding (name
, link
);
629 else if ((ob
&& (TREE_CODE (ob
->value
) == TYPE_DECL
))
630 || (ns_binding
&& TREE_CODE (ns_binding
) == TYPE_DECL
))
631 /* Here, we have something like:
639 We must pop the for-scope binding so we know what's a
640 type and what isn't. */
641 pop_binding (name
, link
);
644 /* Mark this VAR_DECL as dead so that we can tell we left it
645 there only for backward compatibility. */
646 DECL_DEAD_FOR_LOCAL (link
) = 1;
648 /* Keep track of what should have happened when we
649 popped the binding. */
652 SET_DECL_SHADOWED_FOR_VAR (link
, ob
->value
);
653 DECL_HAS_SHADOWED_FOR_VAR_P (link
) = 1;
656 /* Add it to the list of dead variables in the next
657 outermost binding to that we can remove these when we
658 leave that binding. */
659 current_binding_level
->level_chain
->dead_vars_from_for
660 = tree_cons (NULL_TREE
, link
,
661 current_binding_level
->level_chain
->
664 /* Although we don't pop the cxx_binding, we do clear
665 its SCOPE since the scope is going away now. */
666 IDENTIFIER_BINDING (name
)->scope
667 = current_binding_level
->level_chain
;
674 /* Remove the binding. */
677 if (TREE_CODE (decl
) == TREE_LIST
)
678 decl
= TREE_VALUE (decl
);
681 if (TREE_CODE (name
) == OVERLOAD
)
682 name
= OVL_FUNCTION (name
);
684 gcc_assert (DECL_P (name
));
685 pop_binding (DECL_NAME (name
), decl
);
689 /* Remove declarations for any `for' variables from inner scopes
690 that we kept around. */
691 for (link
= current_binding_level
->dead_vars_from_for
;
692 link
; link
= TREE_CHAIN (link
))
693 pop_binding (DECL_NAME (TREE_VALUE (link
)), TREE_VALUE (link
));
695 /* Restore the IDENTIFIER_TYPE_VALUEs. */
696 for (link
= current_binding_level
->type_shadowed
;
697 link
; link
= TREE_CHAIN (link
))
698 SET_IDENTIFIER_TYPE_VALUE (TREE_PURPOSE (link
), TREE_VALUE (link
));
700 /* Restore the IDENTIFIER_LABEL_VALUEs for local labels. */
701 for (link
= current_binding_level
->shadowed_labels
;
703 link
= TREE_CHAIN (link
))
704 pop_local_label (TREE_VALUE (link
), TREE_PURPOSE (link
));
706 /* There may be OVERLOADs (wrapped in TREE_LISTs) on the BLOCK_VARs
707 list if a `using' declaration put them there. The debugging
708 back ends won't understand OVERLOAD, so we remove them here.
709 Because the BLOCK_VARS are (temporarily) shared with
710 CURRENT_BINDING_LEVEL->NAMES we must do this fixup after we have
711 popped all the bindings. */
716 for (d
= &BLOCK_VARS (block
); *d
; )
718 if (TREE_CODE (*d
) == TREE_LIST
)
719 *d
= TREE_CHAIN (*d
);
721 d
= &TREE_CHAIN (*d
);
725 /* If the level being exited is the top level of a function,
726 check over all the labels. */
729 /* Since this is the top level block of a function, the vars are
730 the function's parameters. Don't leave them in the BLOCK
731 because they are found in the FUNCTION_DECL instead. */
732 BLOCK_VARS (block
) = 0;
736 kind
= current_binding_level
->kind
;
737 if (kind
== sk_cleanup
)
741 /* If this is a temporary binding created for a cleanup, then we'll
742 have pushed a statement list level. Pop that, create a new
743 BIND_EXPR for the block, and insert it into the stream. */
744 stmt
= pop_stmt_list (current_binding_level
->statement_list
);
745 stmt
= c_build_bind_expr (input_location
, block
, stmt
);
752 /* The current function is being defined, so its DECL_INITIAL
753 should be error_mark_node. */
754 gcc_assert (DECL_INITIAL (current_function_decl
) == error_mark_node
);
755 DECL_INITIAL (current_function_decl
) = block
;
758 current_binding_level
->blocks
759 = chainon (current_binding_level
->blocks
, block
);
761 /* If we did not make a block for the level just exited,
762 any blocks made for inner levels
763 (since they cannot be recorded as subblocks in that level)
764 must be carried forward so they will later become subblocks
765 of something else. */
767 current_binding_level
->blocks
768 = chainon (current_binding_level
->blocks
, subblocks
);
770 /* Each and every BLOCK node created here in `poplevel' is important
771 (e.g. for proper debugging information) so if we created one
772 earlier, mark it as "used". */
774 TREE_USED (block
) = 1;
776 /* All temporary bindings created for cleanups are popped silently. */
777 if (kind
== sk_cleanup
)
780 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, block
);
783 /* Walk all the namespaces contained NAMESPACE, including NAMESPACE
784 itself, calling F for each. The DATA is passed to F as well. */
787 walk_namespaces_r (tree name_space
, walk_namespaces_fn f
, void* data
)
790 tree current
= NAMESPACE_LEVEL (name_space
)->namespaces
;
792 result
|= (*f
) (name_space
, data
);
794 for (; current
; current
= TREE_CHAIN (current
))
795 result
|= walk_namespaces_r (current
, f
, data
);
800 /* Walk all the namespaces, calling F for each. The DATA is passed to
804 walk_namespaces (walk_namespaces_fn f
, void* data
)
806 return walk_namespaces_r (global_namespace
, f
, data
);
809 /* Call wrapup_globals_declarations for the globals in NAMESPACE. If
810 DATA is non-NULL, this is the last time we will call
811 wrapup_global_declarations for this NAMESPACE. */
814 wrapup_globals_for_namespace (tree name_space
, void* data
)
816 struct cp_binding_level
*level
= NAMESPACE_LEVEL (name_space
);
817 VEC(tree
,gc
) *statics
= level
->static_decls
;
818 tree
*vec
= VEC_address (tree
, statics
);
819 int len
= VEC_length (tree
, statics
);
820 int last_time
= (data
!= 0);
824 check_global_declarations (vec
, len
);
825 emit_debug_global_declarations (vec
, len
);
829 /* Write out any globals that need to be output. */
830 return wrapup_global_declarations (vec
, len
);
834 /* In C++, you don't have to write `struct S' to refer to `S'; you
835 can just use `S'. We accomplish this by creating a TYPE_DECL as
836 if the user had written `typedef struct S S'. Create and return
837 the TYPE_DECL for TYPE. */
840 create_implicit_typedef (tree name
, tree type
)
844 decl
= build_decl (input_location
, TYPE_DECL
, name
, type
);
845 DECL_ARTIFICIAL (decl
) = 1;
846 /* There are other implicit type declarations, like the one *within*
847 a class that allows you to write `S::S'. We must distinguish
849 SET_DECL_IMPLICIT_TYPEDEF_P (decl
);
850 TYPE_NAME (type
) = decl
;
851 TYPE_STUB_DECL (type
) = decl
;
856 /* Remember a local name for name-mangling purposes. */
859 push_local_name (tree decl
)
864 timevar_push (TV_NAME_LOOKUP
);
866 name
= DECL_NAME (decl
);
868 nelts
= VEC_length (tree
, local_names
);
869 for (i
= 0; i
< nelts
; i
++)
871 t
= VEC_index (tree
, local_names
, i
);
872 if (DECL_NAME (t
) == name
)
874 if (!DECL_LANG_SPECIFIC (decl
))
875 retrofit_lang_decl (decl
);
876 DECL_LANG_SPECIFIC (decl
)->u
.base
.u2sel
= 1;
877 if (DECL_LANG_SPECIFIC (t
))
878 DECL_DISCRIMINATOR (decl
) = DECL_DISCRIMINATOR (t
) + 1;
880 DECL_DISCRIMINATOR (decl
) = 1;
882 VEC_replace (tree
, local_names
, i
, decl
);
883 timevar_pop (TV_NAME_LOOKUP
);
888 VEC_safe_push (tree
, gc
, local_names
, decl
);
889 timevar_pop (TV_NAME_LOOKUP
);
892 /* Subroutine of duplicate_decls: return truthvalue of whether
893 or not types of these decls match.
895 For C++, we must compare the parameter list so that `int' can match
896 `int&' in a parameter position, but `int&' is not confused with
900 decls_match (tree newdecl
, tree olddecl
)
904 if (newdecl
== olddecl
)
907 if (TREE_CODE (newdecl
) != TREE_CODE (olddecl
))
908 /* If the two DECLs are not even the same kind of thing, we're not
909 interested in their types. */
912 if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
914 tree f1
= TREE_TYPE (newdecl
);
915 tree f2
= TREE_TYPE (olddecl
);
916 tree p1
= TYPE_ARG_TYPES (f1
);
917 tree p2
= TYPE_ARG_TYPES (f2
);
919 /* Specializations of different templates are different functions
920 even if they have the same type. */
921 tree t1
= (DECL_USE_TEMPLATE (newdecl
)
922 ? DECL_TI_TEMPLATE (newdecl
)
924 tree t2
= (DECL_USE_TEMPLATE (olddecl
)
925 ? DECL_TI_TEMPLATE (olddecl
)
930 if (CP_DECL_CONTEXT (newdecl
) != CP_DECL_CONTEXT (olddecl
)
931 && ! (DECL_EXTERN_C_P (newdecl
)
932 && DECL_EXTERN_C_P (olddecl
)))
935 #ifdef NO_IMPLICIT_EXTERN_C
936 /* A new declaration doesn't match a built-in one unless it
937 is also extern "C". */
938 if (DECL_IS_BUILTIN (olddecl
)
939 && DECL_EXTERN_C_P (olddecl
) && !DECL_EXTERN_C_P (newdecl
))
943 if (TREE_CODE (f1
) != TREE_CODE (f2
))
946 if (same_type_p (TREE_TYPE (f1
), TREE_TYPE (f2
)))
948 if (p2
== NULL_TREE
&& DECL_EXTERN_C_P (olddecl
)
949 && (DECL_BUILT_IN (olddecl
)
950 #ifndef NO_IMPLICIT_EXTERN_C
951 || (DECL_IN_SYSTEM_HEADER (newdecl
) && !DECL_CLASS_SCOPE_P (newdecl
))
952 || (DECL_IN_SYSTEM_HEADER (olddecl
) && !DECL_CLASS_SCOPE_P (olddecl
))
956 types_match
= self_promoting_args_p (p1
);
957 if (p1
== void_list_node
)
958 TREE_TYPE (newdecl
) = TREE_TYPE (olddecl
);
960 #ifndef NO_IMPLICIT_EXTERN_C
961 else if (p1
== NULL_TREE
962 && (DECL_EXTERN_C_P (olddecl
)
963 && DECL_IN_SYSTEM_HEADER (olddecl
)
964 && !DECL_CLASS_SCOPE_P (olddecl
))
965 && (DECL_EXTERN_C_P (newdecl
)
966 && DECL_IN_SYSTEM_HEADER (newdecl
)
967 && !DECL_CLASS_SCOPE_P (newdecl
)))
969 types_match
= self_promoting_args_p (p2
);
970 TREE_TYPE (newdecl
) = TREE_TYPE (olddecl
);
974 types_match
= compparms (p1
, p2
);
979 else if (TREE_CODE (newdecl
) == TEMPLATE_DECL
)
981 if (TREE_CODE (DECL_TEMPLATE_RESULT (newdecl
))
982 != TREE_CODE (DECL_TEMPLATE_RESULT (olddecl
)))
985 if (!comp_template_parms (DECL_TEMPLATE_PARMS (newdecl
),
986 DECL_TEMPLATE_PARMS (olddecl
)))
989 if (TREE_CODE (DECL_TEMPLATE_RESULT (newdecl
)) == TYPE_DECL
)
990 types_match
= same_type_p (TREE_TYPE (DECL_TEMPLATE_RESULT (olddecl
)),
991 TREE_TYPE (DECL_TEMPLATE_RESULT (newdecl
)));
993 types_match
= decls_match (DECL_TEMPLATE_RESULT (olddecl
),
994 DECL_TEMPLATE_RESULT (newdecl
));
998 /* Need to check scope for variable declaration (VAR_DECL).
999 For typedef (TYPE_DECL), scope is ignored. */
1000 if (TREE_CODE (newdecl
) == VAR_DECL
1001 && CP_DECL_CONTEXT (newdecl
) != CP_DECL_CONTEXT (olddecl
)
1003 Two declarations for an object with C language linkage
1004 with the same name (ignoring the namespace that qualify
1005 it) that appear in different namespace scopes refer to
1007 && !(DECL_EXTERN_C_P (olddecl
) && DECL_EXTERN_C_P (newdecl
)))
1010 if (TREE_TYPE (newdecl
) == error_mark_node
)
1011 types_match
= TREE_TYPE (olddecl
) == error_mark_node
;
1012 else if (TREE_TYPE (olddecl
) == NULL_TREE
)
1013 types_match
= TREE_TYPE (newdecl
) == NULL_TREE
;
1014 else if (TREE_TYPE (newdecl
) == NULL_TREE
)
1017 types_match
= comptypes (TREE_TYPE (newdecl
),
1018 TREE_TYPE (olddecl
),
1019 COMPARE_REDECLARATION
);
1025 /* If NEWDECL is `static' and an `extern' was seen previously,
1026 warn about it. OLDDECL is the previous declaration.
1028 Note that this does not apply to the C++ case of declaring
1029 a variable `extern const' and then later `const'.
1031 Don't complain about built-in functions, since they are beyond
1032 the user's control. */
1035 warn_extern_redeclared_static (tree newdecl
, tree olddecl
)
1037 if (TREE_CODE (newdecl
) == TYPE_DECL
1038 || TREE_CODE (newdecl
) == TEMPLATE_DECL
1039 || TREE_CODE (newdecl
) == CONST_DECL
1040 || TREE_CODE (newdecl
) == NAMESPACE_DECL
)
1043 /* Don't get confused by static member functions; that's a different
1045 if (TREE_CODE (newdecl
) == FUNCTION_DECL
1046 && DECL_STATIC_FUNCTION_P (newdecl
))
1049 /* If the old declaration was `static', or the new one isn't, then
1050 then everything is OK. */
1051 if (DECL_THIS_STATIC (olddecl
) || !DECL_THIS_STATIC (newdecl
))
1054 /* It's OK to declare a builtin function as `static'. */
1055 if (TREE_CODE (olddecl
) == FUNCTION_DECL
1056 && DECL_ARTIFICIAL (olddecl
))
1059 permerror (input_location
, "%qD was declared %<extern%> and later %<static%>", newdecl
);
1060 permerror (input_location
, "previous declaration of %q+D", olddecl
);
1063 /* NEW_DECL is a redeclaration of OLD_DECL; both are functions or
1064 function templates. If their exception specifications do not
1065 match, issue a diagnostic. */
1068 check_redeclaration_exception_specification (tree new_decl
,
1073 tree new_exceptions
;
1074 tree old_exceptions
;
1076 new_type
= TREE_TYPE (new_decl
);
1077 new_exceptions
= TYPE_RAISES_EXCEPTIONS (new_type
);
1078 old_type
= TREE_TYPE (old_decl
);
1079 old_exceptions
= TYPE_RAISES_EXCEPTIONS (old_type
);
1083 If any declaration of a function has an exception-specification,
1084 all declarations, including the definition and an explicit
1085 specialization, of that function shall have an
1086 exception-specification with the same set of type-ids. */
1087 if ((pedantic
|| ! DECL_IN_SYSTEM_HEADER (old_decl
))
1088 && ! DECL_IS_BUILTIN (old_decl
)
1090 && !comp_except_specs (new_exceptions
, old_exceptions
,
1093 error ("declaration of %qF throws different exceptions", new_decl
);
1094 error ("from previous declaration %q+F", old_decl
);
1098 #define GNU_INLINE_P(fn) (DECL_DECLARED_INLINE_P (fn) \
1099 && lookup_attribute ("gnu_inline", \
1100 DECL_ATTRIBUTES (fn)))
1102 /* If NEWDECL is a redeclaration of OLDDECL, merge the declarations.
1103 If the redeclaration is invalid, a diagnostic is issued, and the
1104 error_mark_node is returned. Otherwise, OLDDECL is returned.
1106 If NEWDECL is not a redeclaration of OLDDECL, NULL_TREE is
1109 NEWDECL_IS_FRIEND is true if NEWDECL was declared as a friend. */
1112 duplicate_decls (tree newdecl
, tree olddecl
, bool newdecl_is_friend
)
1114 unsigned olddecl_uid
= DECL_UID (olddecl
);
1115 int olddecl_friend
= 0, types_match
= 0, hidden_friend
= 0;
1116 int new_defines_function
= 0;
1117 tree new_template_info
;
1119 if (newdecl
== olddecl
)
1122 types_match
= decls_match (newdecl
, olddecl
);
1124 /* If either the type of the new decl or the type of the old decl is an
1125 error_mark_node, then that implies that we have already issued an
1126 error (earlier) for some bogus type specification, and in that case,
1127 it is rather pointless to harass the user with yet more error message
1128 about the same declaration, so just pretend the types match here. */
1129 if (TREE_TYPE (newdecl
) == error_mark_node
1130 || TREE_TYPE (olddecl
) == error_mark_node
)
1131 return error_mark_node
;
1133 if (DECL_P (olddecl
)
1134 && TREE_CODE (newdecl
) == FUNCTION_DECL
1135 && TREE_CODE (olddecl
) == FUNCTION_DECL
1136 && (DECL_UNINLINABLE (newdecl
) || DECL_UNINLINABLE (olddecl
)))
1138 if (DECL_DECLARED_INLINE_P (newdecl
)
1139 && DECL_UNINLINABLE (newdecl
)
1140 && lookup_attribute ("noinline", DECL_ATTRIBUTES (newdecl
)))
1141 /* Already warned elsewhere. */;
1142 else if (DECL_DECLARED_INLINE_P (olddecl
)
1143 && DECL_UNINLINABLE (olddecl
)
1144 && lookup_attribute ("noinline", DECL_ATTRIBUTES (olddecl
)))
1145 /* Already warned. */;
1146 else if (DECL_DECLARED_INLINE_P (newdecl
)
1147 && DECL_UNINLINABLE (olddecl
)
1148 && lookup_attribute ("noinline", DECL_ATTRIBUTES (olddecl
)))
1150 warning (OPT_Wattributes
, "function %q+D redeclared as inline",
1152 warning (OPT_Wattributes
, "previous declaration of %q+D "
1153 "with attribute noinline", olddecl
);
1155 else if (DECL_DECLARED_INLINE_P (olddecl
)
1156 && DECL_UNINLINABLE (newdecl
)
1157 && lookup_attribute ("noinline", DECL_ATTRIBUTES (newdecl
)))
1159 warning (OPT_Wattributes
, "function %q+D redeclared with "
1160 "attribute noinline", newdecl
);
1161 warning (OPT_Wattributes
, "previous declaration of %q+D was inline",
1166 /* Check for redeclaration and other discrepancies. */
1167 if (TREE_CODE (olddecl
) == FUNCTION_DECL
1168 && DECL_ARTIFICIAL (olddecl
))
1170 gcc_assert (!DECL_HIDDEN_FRIEND_P (olddecl
));
1171 if (TREE_CODE (newdecl
) != FUNCTION_DECL
)
1173 /* Avoid warnings redeclaring built-ins which have not been
1174 explicitly declared. */
1175 if (DECL_ANTICIPATED (olddecl
))
1178 /* If you declare a built-in or predefined function name as static,
1179 the old definition is overridden, but optionally warn this was a
1180 bad choice of name. */
1181 if (! TREE_PUBLIC (newdecl
))
1183 warning (OPT_Wshadow
,
1184 DECL_BUILT_IN (olddecl
)
1185 ? G_("shadowing built-in function %q#D")
1186 : G_("shadowing library function %q#D"), olddecl
);
1187 /* Discard the old built-in function. */
1190 /* If the built-in is not ansi, then programs can override
1191 it even globally without an error. */
1192 else if (! DECL_BUILT_IN (olddecl
))
1193 warning (0, "library function %q#D redeclared as non-function %q#D",
1197 error ("declaration of %q#D", newdecl
);
1198 error ("conflicts with built-in declaration %q#D",
1203 else if (!types_match
)
1205 /* Avoid warnings redeclaring built-ins which have not been
1206 explicitly declared. */
1207 if (DECL_ANTICIPATED (olddecl
))
1209 /* Deal with fileptr_type_node. FILE type is not known
1210 at the time we create the builtins. */
1213 for (t1
= TYPE_ARG_TYPES (TREE_TYPE (newdecl
)),
1214 t2
= TYPE_ARG_TYPES (TREE_TYPE (olddecl
));
1216 t1
= TREE_CHAIN (t1
), t2
= TREE_CHAIN (t2
))
1219 else if (TREE_VALUE (t2
) == fileptr_type_node
)
1221 tree t
= TREE_VALUE (t1
);
1223 if (TREE_CODE (t
) == POINTER_TYPE
1224 && TYPE_NAME (TREE_TYPE (t
))
1225 && DECL_NAME (TYPE_NAME (TREE_TYPE (t
)))
1226 == get_identifier ("FILE")
1227 && compparms (TREE_CHAIN (t1
), TREE_CHAIN (t2
)))
1229 tree oldargs
= TYPE_ARG_TYPES (TREE_TYPE (olddecl
));
1231 TYPE_ARG_TYPES (TREE_TYPE (olddecl
))
1232 = TYPE_ARG_TYPES (TREE_TYPE (newdecl
));
1233 types_match
= decls_match (newdecl
, olddecl
);
1235 return duplicate_decls (newdecl
, olddecl
,
1237 TYPE_ARG_TYPES (TREE_TYPE (olddecl
)) = oldargs
;
1240 else if (! same_type_p (TREE_VALUE (t1
), TREE_VALUE (t2
)))
1243 else if ((DECL_EXTERN_C_P (newdecl
)
1244 && DECL_EXTERN_C_P (olddecl
))
1245 || compparms (TYPE_ARG_TYPES (TREE_TYPE (newdecl
)),
1246 TYPE_ARG_TYPES (TREE_TYPE (olddecl
))))
1248 /* A near match; override the builtin. */
1250 if (TREE_PUBLIC (newdecl
))
1252 warning (0, "new declaration %q#D", newdecl
);
1253 warning (0, "ambiguates built-in declaration %q#D",
1257 warning (OPT_Wshadow
,
1258 DECL_BUILT_IN (olddecl
)
1259 ? G_("shadowing built-in function %q#D")
1260 : G_("shadowing library function %q#D"), olddecl
);
1263 /* Discard the old built-in function. */
1266 /* Replace the old RTL to avoid problems with inlining. */
1267 COPY_DECL_RTL (newdecl
, olddecl
);
1269 /* Even if the types match, prefer the new declarations type for
1270 built-ins which have not been explicitly declared, for
1271 exception lists, etc... */
1272 else if (DECL_ANTICIPATED (olddecl
))
1274 tree type
= TREE_TYPE (newdecl
);
1275 tree attribs
= (*targetm
.merge_type_attributes
)
1276 (TREE_TYPE (olddecl
), type
);
1278 type
= cp_build_type_attribute_variant (type
, attribs
);
1279 TREE_TYPE (newdecl
) = TREE_TYPE (olddecl
) = type
;
1282 /* If a function is explicitly declared "throw ()", propagate that to
1283 the corresponding builtin. */
1284 if (DECL_BUILT_IN_CLASS (olddecl
) == BUILT_IN_NORMAL
1285 && DECL_ANTICIPATED (olddecl
)
1286 && TREE_NOTHROW (newdecl
)
1287 && !TREE_NOTHROW (olddecl
)
1288 && built_in_decls
[DECL_FUNCTION_CODE (olddecl
)] != NULL_TREE
1289 && built_in_decls
[DECL_FUNCTION_CODE (olddecl
)] != olddecl
1291 TREE_NOTHROW (built_in_decls
[DECL_FUNCTION_CODE (olddecl
)]) = 1;
1293 /* Whether or not the builtin can throw exceptions has no
1294 bearing on this declarator. */
1295 TREE_NOTHROW (olddecl
) = 0;
1297 if (DECL_THIS_STATIC (newdecl
) && !DECL_THIS_STATIC (olddecl
))
1299 /* If a builtin function is redeclared as `static', merge
1300 the declarations, but make the original one static. */
1301 DECL_THIS_STATIC (olddecl
) = 1;
1302 TREE_PUBLIC (olddecl
) = 0;
1304 /* Make the old declaration consistent with the new one so
1305 that all remnants of the builtin-ness of this function
1306 will be banished. */
1307 SET_DECL_LANGUAGE (olddecl
, DECL_LANGUAGE (newdecl
));
1308 COPY_DECL_RTL (newdecl
, olddecl
);
1311 else if (TREE_CODE (olddecl
) != TREE_CODE (newdecl
))
1313 /* C++ Standard, 3.3, clause 4:
1314 "[Note: a namespace name or a class template name must be unique
1315 in its declarative region (7.3.2, clause 14). ]" */
1316 if (TREE_CODE (olddecl
) != NAMESPACE_DECL
1317 && TREE_CODE (newdecl
) != NAMESPACE_DECL
1318 && (TREE_CODE (olddecl
) != TEMPLATE_DECL
1319 || TREE_CODE (DECL_TEMPLATE_RESULT (olddecl
)) != TYPE_DECL
)
1320 && (TREE_CODE (newdecl
) != TEMPLATE_DECL
1321 || TREE_CODE (DECL_TEMPLATE_RESULT (newdecl
)) != TYPE_DECL
))
1323 if ((TREE_CODE (olddecl
) == TYPE_DECL
&& DECL_ARTIFICIAL (olddecl
)
1324 && TREE_CODE (newdecl
) != TYPE_DECL
)
1325 || (TREE_CODE (newdecl
) == TYPE_DECL
&& DECL_ARTIFICIAL (newdecl
)
1326 && TREE_CODE (olddecl
) != TYPE_DECL
))
1328 /* We do nothing special here, because C++ does such nasty
1329 things with TYPE_DECLs. Instead, just let the TYPE_DECL
1330 get shadowed, and know that if we need to find a TYPE_DECL
1331 for a given name, we can look in the IDENTIFIER_TYPE_VALUE
1332 slot of the identifier. */
1336 if ((TREE_CODE (newdecl
) == FUNCTION_DECL
1337 && DECL_FUNCTION_TEMPLATE_P (olddecl
))
1338 || (TREE_CODE (olddecl
) == FUNCTION_DECL
1339 && DECL_FUNCTION_TEMPLATE_P (newdecl
)))
1343 error ("%q#D redeclared as different kind of symbol", newdecl
);
1344 if (TREE_CODE (olddecl
) == TREE_LIST
)
1345 olddecl
= TREE_VALUE (olddecl
);
1346 error ("previous declaration of %q+#D", olddecl
);
1348 return error_mark_node
;
1350 else if (!types_match
)
1352 if (CP_DECL_CONTEXT (newdecl
) != CP_DECL_CONTEXT (olddecl
))
1353 /* These are certainly not duplicate declarations; they're
1354 from different scopes. */
1357 if (TREE_CODE (newdecl
) == TEMPLATE_DECL
)
1359 /* The name of a class template may not be declared to refer to
1360 any other template, class, function, object, namespace, value,
1361 or type in the same scope. */
1362 if (TREE_CODE (DECL_TEMPLATE_RESULT (olddecl
)) == TYPE_DECL
1363 || TREE_CODE (DECL_TEMPLATE_RESULT (newdecl
)) == TYPE_DECL
)
1365 error ("declaration of template %q#D", newdecl
);
1366 error ("conflicts with previous declaration %q+#D", olddecl
);
1368 else if (TREE_CODE (DECL_TEMPLATE_RESULT (olddecl
)) == FUNCTION_DECL
1369 && TREE_CODE (DECL_TEMPLATE_RESULT (newdecl
)) == FUNCTION_DECL
1370 && compparms (TYPE_ARG_TYPES (TREE_TYPE (DECL_TEMPLATE_RESULT (olddecl
))),
1371 TYPE_ARG_TYPES (TREE_TYPE (DECL_TEMPLATE_RESULT (newdecl
))))
1372 && comp_template_parms (DECL_TEMPLATE_PARMS (newdecl
),
1373 DECL_TEMPLATE_PARMS (olddecl
))
1374 /* Template functions can be disambiguated by
1376 && same_type_p (TREE_TYPE (TREE_TYPE (newdecl
)),
1377 TREE_TYPE (TREE_TYPE (olddecl
))))
1379 error ("new declaration %q#D", newdecl
);
1380 error ("ambiguates old declaration %q+#D", olddecl
);
1384 if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
1386 if (DECL_EXTERN_C_P (newdecl
) && DECL_EXTERN_C_P (olddecl
))
1388 error ("declaration of C function %q#D conflicts with",
1390 error ("previous declaration %q+#D here", olddecl
);
1392 else if (compparms (TYPE_ARG_TYPES (TREE_TYPE (newdecl
)),
1393 TYPE_ARG_TYPES (TREE_TYPE (olddecl
))))
1395 error ("new declaration %q#D", newdecl
);
1396 error ("ambiguates old declaration %q+#D", olddecl
);
1397 return error_mark_node
;
1404 error ("conflicting declaration %q#D", newdecl
);
1405 error ("%q+D has a previous declaration as %q#D", olddecl
, olddecl
);
1406 return error_mark_node
;
1409 else if (TREE_CODE (newdecl
) == FUNCTION_DECL
1410 && ((DECL_TEMPLATE_SPECIALIZATION (olddecl
)
1411 && (!DECL_TEMPLATE_INFO (newdecl
)
1412 || (DECL_TI_TEMPLATE (newdecl
)
1413 != DECL_TI_TEMPLATE (olddecl
))))
1414 || (DECL_TEMPLATE_SPECIALIZATION (newdecl
)
1415 && (!DECL_TEMPLATE_INFO (olddecl
)
1416 || (DECL_TI_TEMPLATE (olddecl
)
1417 != DECL_TI_TEMPLATE (newdecl
))))))
1418 /* It's OK to have a template specialization and a non-template
1419 with the same type, or to have specializations of two
1420 different templates with the same type. Note that if one is a
1421 specialization, and the other is an instantiation of the same
1422 template, that we do not exit at this point. That situation
1423 can occur if we instantiate a template class, and then
1424 specialize one of its methods. This situation is valid, but
1425 the declarations must be merged in the usual way. */
1427 else if (TREE_CODE (newdecl
) == FUNCTION_DECL
1428 && ((DECL_TEMPLATE_INSTANTIATION (olddecl
)
1429 && !DECL_USE_TEMPLATE (newdecl
))
1430 || (DECL_TEMPLATE_INSTANTIATION (newdecl
)
1431 && !DECL_USE_TEMPLATE (olddecl
))))
1432 /* One of the declarations is a template instantiation, and the
1433 other is not a template at all. That's OK. */
1435 else if (TREE_CODE (newdecl
) == NAMESPACE_DECL
)
1437 /* In [namespace.alias] we have:
1439 In a declarative region, a namespace-alias-definition can be
1440 used to redefine a namespace-alias declared in that declarative
1441 region to refer only to the namespace to which it already
1444 Therefore, if we encounter a second alias directive for the same
1445 alias, we can just ignore the second directive. */
1446 if (DECL_NAMESPACE_ALIAS (newdecl
)
1447 && (DECL_NAMESPACE_ALIAS (newdecl
)
1448 == DECL_NAMESPACE_ALIAS (olddecl
)))
1450 /* [namespace.alias]
1452 A namespace-name or namespace-alias shall not be declared as
1453 the name of any other entity in the same declarative region.
1454 A namespace-name defined at global scope shall not be
1455 declared as the name of any other entity in any global scope
1457 error ("declaration of namespace %qD conflicts with", newdecl
);
1458 error ("previous declaration of namespace %q+D here", olddecl
);
1459 return error_mark_node
;
1463 const char *errmsg
= redeclaration_error_message (newdecl
, olddecl
);
1466 error_at (DECL_SOURCE_LOCATION (newdecl
), errmsg
, newdecl
);
1467 if (DECL_NAME (olddecl
) != NULL_TREE
)
1468 error ((DECL_INITIAL (olddecl
) && namespace_bindings_p ())
1469 ? "%q+#D previously defined here"
1470 : "%q+#D previously declared here", olddecl
);
1471 return error_mark_node
;
1473 else if (TREE_CODE (olddecl
) == FUNCTION_DECL
1474 && DECL_INITIAL (olddecl
) != NULL_TREE
1475 && TYPE_ARG_TYPES (TREE_TYPE (olddecl
)) == NULL_TREE
1476 && TYPE_ARG_TYPES (TREE_TYPE (newdecl
)) != NULL_TREE
)
1478 /* Prototype decl follows defn w/o prototype. */
1479 warning_at (input_location
, 0, "prototype for %q+#D", newdecl
);
1480 warning_at (DECL_SOURCE_LOCATION (olddecl
), 0,
1481 "follows non-prototype definition here");
1483 else if ((TREE_CODE (olddecl
) == FUNCTION_DECL
1484 || TREE_CODE (olddecl
) == VAR_DECL
)
1485 && DECL_LANGUAGE (newdecl
) != DECL_LANGUAGE (olddecl
))
1488 If two declarations of the same function or object
1489 specify different linkage-specifications ..., the program
1490 is ill-formed.... Except for functions with C++ linkage,
1491 a function declaration without a linkage specification
1492 shall not precede the first linkage specification for
1493 that function. A function can be declared without a
1494 linkage specification after an explicit linkage
1495 specification has been seen; the linkage explicitly
1496 specified in the earlier declaration is not affected by
1497 such a function declaration.
1499 DR 563 raises the question why the restrictions on
1500 functions should not also apply to objects. Older
1501 versions of G++ silently ignore the linkage-specification
1509 which is clearly wrong. Therefore, we now treat objects
1511 if (current_lang_depth () == 0)
1513 /* There is no explicit linkage-specification, so we use
1514 the linkage from the previous declaration. */
1515 if (!DECL_LANG_SPECIFIC (newdecl
))
1516 retrofit_lang_decl (newdecl
);
1517 SET_DECL_LANGUAGE (newdecl
, DECL_LANGUAGE (olddecl
));
1521 error ("previous declaration of %q+#D with %qL linkage",
1522 olddecl
, DECL_LANGUAGE (olddecl
));
1523 error ("conflicts with new declaration with %qL linkage",
1524 DECL_LANGUAGE (newdecl
));
1528 if (DECL_LANG_SPECIFIC (olddecl
) && DECL_USE_TEMPLATE (olddecl
))
1530 else if (TREE_CODE (olddecl
) == FUNCTION_DECL
)
1532 tree t1
= TYPE_ARG_TYPES (TREE_TYPE (olddecl
));
1533 tree t2
= TYPE_ARG_TYPES (TREE_TYPE (newdecl
));
1536 if (TREE_CODE (TREE_TYPE (newdecl
)) == METHOD_TYPE
)
1537 t1
= TREE_CHAIN (t1
), t2
= TREE_CHAIN (t2
);
1539 for (; t1
&& t1
!= void_list_node
;
1540 t1
= TREE_CHAIN (t1
), t2
= TREE_CHAIN (t2
), i
++)
1541 if (TREE_PURPOSE (t1
) && TREE_PURPOSE (t2
))
1543 if (1 == simple_cst_equal (TREE_PURPOSE (t1
),
1546 permerror (input_location
, "default argument given for parameter %d of %q#D",
1548 permerror (input_location
, "after previous specification in %q+#D", olddecl
);
1552 error ("default argument given for parameter %d of %q#D",
1554 error ("after previous specification in %q+#D",
1561 /* Do not merge an implicit typedef with an explicit one. In:
1565 typedef class A A __attribute__ ((foo));
1567 the attribute should apply only to the typedef. */
1568 if (TREE_CODE (olddecl
) == TYPE_DECL
1569 && (DECL_IMPLICIT_TYPEDEF_P (olddecl
)
1570 || DECL_IMPLICIT_TYPEDEF_P (newdecl
)))
1573 /* If new decl is `static' and an `extern' was seen previously,
1575 warn_extern_redeclared_static (newdecl
, olddecl
);
1577 /* We have committed to returning 1 at this point. */
1578 if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
1580 /* Now that functions must hold information normally held
1581 by field decls, there is extra work to do so that
1582 declaration information does not get destroyed during
1584 if (DECL_VINDEX (olddecl
))
1585 DECL_VINDEX (newdecl
) = DECL_VINDEX (olddecl
);
1586 if (DECL_CONTEXT (olddecl
))
1587 DECL_CONTEXT (newdecl
) = DECL_CONTEXT (olddecl
);
1588 DECL_STATIC_CONSTRUCTOR (newdecl
) |= DECL_STATIC_CONSTRUCTOR (olddecl
);
1589 DECL_STATIC_DESTRUCTOR (newdecl
) |= DECL_STATIC_DESTRUCTOR (olddecl
);
1590 DECL_PURE_VIRTUAL_P (newdecl
) |= DECL_PURE_VIRTUAL_P (olddecl
);
1591 DECL_VIRTUAL_P (newdecl
) |= DECL_VIRTUAL_P (olddecl
);
1592 DECL_INVALID_OVERRIDER_P (newdecl
) |= DECL_INVALID_OVERRIDER_P (olddecl
);
1593 DECL_THIS_STATIC (newdecl
) |= DECL_THIS_STATIC (olddecl
);
1594 if (DECL_OVERLOADED_OPERATOR_P (olddecl
) != ERROR_MARK
)
1595 SET_OVERLOADED_OPERATOR_CODE
1596 (newdecl
, DECL_OVERLOADED_OPERATOR_P (olddecl
));
1597 new_defines_function
= DECL_INITIAL (newdecl
) != NULL_TREE
;
1599 /* Optionally warn about more than one declaration for the same
1600 name, but don't warn about a function declaration followed by a
1602 if (warn_redundant_decls
&& ! DECL_ARTIFICIAL (olddecl
)
1603 && !(new_defines_function
&& DECL_INITIAL (olddecl
) == NULL_TREE
)
1604 /* Don't warn about extern decl followed by definition. */
1605 && !(DECL_EXTERNAL (olddecl
) && ! DECL_EXTERNAL (newdecl
))
1606 /* Don't warn about friends, let add_friend take care of it. */
1607 && ! (newdecl_is_friend
|| DECL_FRIEND_P (olddecl
)))
1609 warning (OPT_Wredundant_decls
, "redundant redeclaration of %qD in same scope", newdecl
);
1610 warning (OPT_Wredundant_decls
, "previous declaration of %q+D", olddecl
);
1613 if (DECL_DELETED_FN (newdecl
))
1615 error ("deleted definition of %qD", newdecl
);
1616 error ("after previous declaration %q+D", olddecl
);
1620 /* Deal with C++: must preserve virtual function table size. */
1621 if (TREE_CODE (olddecl
) == TYPE_DECL
)
1623 tree newtype
= TREE_TYPE (newdecl
);
1624 tree oldtype
= TREE_TYPE (olddecl
);
1626 if (newtype
!= error_mark_node
&& oldtype
!= error_mark_node
1627 && TYPE_LANG_SPECIFIC (newtype
) && TYPE_LANG_SPECIFIC (oldtype
))
1628 CLASSTYPE_FRIEND_CLASSES (newtype
)
1629 = CLASSTYPE_FRIEND_CLASSES (oldtype
);
1631 DECL_ORIGINAL_TYPE (newdecl
) = DECL_ORIGINAL_TYPE (olddecl
);
1634 /* Copy all the DECL_... slots specified in the new decl
1635 except for any that we copy here from the old type. */
1636 DECL_ATTRIBUTES (newdecl
)
1637 = (*targetm
.merge_decl_attributes
) (olddecl
, newdecl
);
1639 if (TREE_CODE (newdecl
) == TEMPLATE_DECL
)
1643 old_result
= DECL_TEMPLATE_RESULT (olddecl
);
1644 new_result
= DECL_TEMPLATE_RESULT (newdecl
);
1645 TREE_TYPE (olddecl
) = TREE_TYPE (old_result
);
1646 DECL_TEMPLATE_SPECIALIZATIONS (olddecl
)
1647 = chainon (DECL_TEMPLATE_SPECIALIZATIONS (olddecl
),
1648 DECL_TEMPLATE_SPECIALIZATIONS (newdecl
));
1650 DECL_ATTRIBUTES (old_result
)
1651 = (*targetm
.merge_decl_attributes
) (old_result
, new_result
);
1653 if (DECL_FUNCTION_TEMPLATE_P (newdecl
))
1655 if (GNU_INLINE_P (old_result
) != GNU_INLINE_P (new_result
)
1656 && DECL_INITIAL (new_result
))
1658 if (DECL_INITIAL (old_result
))
1659 DECL_UNINLINABLE (old_result
) = 1;
1661 DECL_UNINLINABLE (old_result
) = DECL_UNINLINABLE (new_result
);
1662 DECL_EXTERNAL (old_result
) = DECL_EXTERNAL (new_result
);
1663 DECL_NOT_REALLY_EXTERN (old_result
)
1664 = DECL_NOT_REALLY_EXTERN (new_result
);
1665 DECL_INTERFACE_KNOWN (old_result
)
1666 = DECL_INTERFACE_KNOWN (new_result
);
1667 DECL_DECLARED_INLINE_P (old_result
)
1668 = DECL_DECLARED_INLINE_P (new_result
);
1669 DECL_DISREGARD_INLINE_LIMITS (old_result
)
1670 |= DECL_DISREGARD_INLINE_LIMITS (new_result
);
1675 DECL_DECLARED_INLINE_P (old_result
)
1676 |= DECL_DECLARED_INLINE_P (new_result
);
1677 DECL_DISREGARD_INLINE_LIMITS (old_result
)
1678 |= DECL_DISREGARD_INLINE_LIMITS (new_result
);
1679 check_redeclaration_exception_specification (newdecl
, olddecl
);
1683 /* If the new declaration is a definition, update the file and
1684 line information on the declaration, and also make
1685 the old declaration the same definition. */
1686 if (DECL_INITIAL (new_result
) != NULL_TREE
)
1688 DECL_SOURCE_LOCATION (olddecl
)
1689 = DECL_SOURCE_LOCATION (old_result
)
1690 = DECL_SOURCE_LOCATION (newdecl
);
1691 DECL_INITIAL (old_result
) = DECL_INITIAL (new_result
);
1692 if (DECL_FUNCTION_TEMPLATE_P (newdecl
))
1695 DECL_ARGUMENTS (old_result
)
1696 = DECL_ARGUMENTS (new_result
);
1697 for (parm
= DECL_ARGUMENTS (old_result
); parm
;
1698 parm
= TREE_CHAIN (parm
))
1699 DECL_CONTEXT (parm
) = old_result
;
1708 /* Automatically handles default parameters. */
1709 tree oldtype
= TREE_TYPE (olddecl
);
1712 /* Merge the data types specified in the two decls. */
1713 newtype
= merge_types (TREE_TYPE (newdecl
), TREE_TYPE (olddecl
));
1715 /* If merge_types produces a non-typedef type, just use the old type. */
1716 if (TREE_CODE (newdecl
) == TYPE_DECL
1717 && newtype
== DECL_ORIGINAL_TYPE (newdecl
))
1720 if (TREE_CODE (newdecl
) == VAR_DECL
)
1722 DECL_THIS_EXTERN (newdecl
) |= DECL_THIS_EXTERN (olddecl
);
1723 DECL_INITIALIZED_P (newdecl
) |= DECL_INITIALIZED_P (olddecl
);
1724 DECL_NONTRIVIALLY_INITIALIZED_P (newdecl
)
1725 |= DECL_NONTRIVIALLY_INITIALIZED_P (olddecl
);
1726 DECL_INITIALIZED_BY_CONSTANT_EXPRESSION_P (newdecl
)
1727 |= DECL_INITIALIZED_BY_CONSTANT_EXPRESSION_P (olddecl
);
1729 /* Merge the threadprivate attribute from OLDDECL into NEWDECL. */
1730 if (DECL_LANG_SPECIFIC (olddecl
)
1731 && CP_DECL_THREADPRIVATE_P (olddecl
))
1733 /* Allocate a LANG_SPECIFIC structure for NEWDECL, if needed. */
1734 if (!DECL_LANG_SPECIFIC (newdecl
))
1735 retrofit_lang_decl (newdecl
);
1737 DECL_TLS_MODEL (newdecl
) = DECL_TLS_MODEL (olddecl
);
1738 CP_DECL_THREADPRIVATE_P (newdecl
) = 1;
1742 /* Do this after calling `merge_types' so that default
1743 parameters don't confuse us. */
1744 else if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
1745 check_redeclaration_exception_specification (newdecl
, olddecl
);
1746 TREE_TYPE (newdecl
) = TREE_TYPE (olddecl
) = newtype
;
1748 if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
1749 check_default_args (newdecl
);
1751 /* Lay the type out, unless already done. */
1752 if (! same_type_p (newtype
, oldtype
)
1753 && TREE_TYPE (newdecl
) != error_mark_node
1754 && !(processing_template_decl
&& uses_template_parms (newdecl
)))
1755 layout_type (TREE_TYPE (newdecl
));
1757 if ((TREE_CODE (newdecl
) == VAR_DECL
1758 || TREE_CODE (newdecl
) == PARM_DECL
1759 || TREE_CODE (newdecl
) == RESULT_DECL
1760 || TREE_CODE (newdecl
) == FIELD_DECL
1761 || TREE_CODE (newdecl
) == TYPE_DECL
)
1762 && !(processing_template_decl
&& uses_template_parms (newdecl
)))
1763 layout_decl (newdecl
, 0);
1765 /* Merge the type qualifiers. */
1766 if (TREE_READONLY (newdecl
))
1767 TREE_READONLY (olddecl
) = 1;
1768 if (TREE_THIS_VOLATILE (newdecl
))
1769 TREE_THIS_VOLATILE (olddecl
) = 1;
1770 if (TREE_NOTHROW (newdecl
))
1771 TREE_NOTHROW (olddecl
) = 1;
1773 /* Merge deprecatedness. */
1774 if (TREE_DEPRECATED (newdecl
))
1775 TREE_DEPRECATED (olddecl
) = 1;
1777 /* Preserve function specific target and optimization options */
1778 if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
1780 if (DECL_FUNCTION_SPECIFIC_TARGET (olddecl
)
1781 && !DECL_FUNCTION_SPECIFIC_TARGET (newdecl
))
1782 DECL_FUNCTION_SPECIFIC_TARGET (newdecl
)
1783 = DECL_FUNCTION_SPECIFIC_TARGET (olddecl
);
1785 if (DECL_FUNCTION_SPECIFIC_OPTIMIZATION (olddecl
)
1786 && !DECL_FUNCTION_SPECIFIC_OPTIMIZATION (newdecl
))
1787 DECL_FUNCTION_SPECIFIC_OPTIMIZATION (newdecl
)
1788 = DECL_FUNCTION_SPECIFIC_OPTIMIZATION (olddecl
);
1791 /* Merge the initialization information. */
1792 if (DECL_INITIAL (newdecl
) == NULL_TREE
1793 && DECL_INITIAL (olddecl
) != NULL_TREE
)
1795 DECL_INITIAL (newdecl
) = DECL_INITIAL (olddecl
);
1796 DECL_SOURCE_LOCATION (newdecl
) = DECL_SOURCE_LOCATION (olddecl
);
1797 if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
1799 DECL_SAVED_TREE (newdecl
) = DECL_SAVED_TREE (olddecl
);
1800 DECL_STRUCT_FUNCTION (newdecl
) = DECL_STRUCT_FUNCTION (olddecl
);
1804 /* Merge the section attribute.
1805 We want to issue an error if the sections conflict but that must be
1806 done later in decl_attributes since we are called before attributes
1808 if (DECL_SECTION_NAME (newdecl
) == NULL_TREE
)
1809 DECL_SECTION_NAME (newdecl
) = DECL_SECTION_NAME (olddecl
);
1811 if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
1813 DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT (newdecl
)
1814 |= DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT (olddecl
);
1815 DECL_NO_LIMIT_STACK (newdecl
) |= DECL_NO_LIMIT_STACK (olddecl
);
1816 TREE_THIS_VOLATILE (newdecl
) |= TREE_THIS_VOLATILE (olddecl
);
1817 TREE_NOTHROW (newdecl
) |= TREE_NOTHROW (olddecl
);
1818 DECL_IS_MALLOC (newdecl
) |= DECL_IS_MALLOC (olddecl
);
1819 DECL_IS_OPERATOR_NEW (newdecl
) |= DECL_IS_OPERATOR_NEW (olddecl
);
1820 DECL_PURE_P (newdecl
) |= DECL_PURE_P (olddecl
);
1821 TREE_READONLY (newdecl
) |= TREE_READONLY (olddecl
);
1822 DECL_LOOPING_CONST_OR_PURE_P (newdecl
)
1823 |= DECL_LOOPING_CONST_OR_PURE_P (olddecl
);
1824 /* Keep the old RTL. */
1825 COPY_DECL_RTL (olddecl
, newdecl
);
1827 else if (TREE_CODE (newdecl
) == VAR_DECL
1828 && (DECL_SIZE (olddecl
) || !DECL_SIZE (newdecl
)))
1830 /* Keep the old RTL. We cannot keep the old RTL if the old
1831 declaration was for an incomplete object and the new
1832 declaration is not since many attributes of the RTL will
1834 COPY_DECL_RTL (olddecl
, newdecl
);
1837 /* If cannot merge, then use the new type and qualifiers,
1838 and don't preserve the old rtl. */
1841 /* Clean out any memory we had of the old declaration. */
1842 tree oldstatic
= value_member (olddecl
, static_aggregates
);
1844 TREE_VALUE (oldstatic
) = error_mark_node
;
1846 TREE_TYPE (olddecl
) = TREE_TYPE (newdecl
);
1847 TREE_READONLY (olddecl
) = TREE_READONLY (newdecl
);
1848 TREE_THIS_VOLATILE (olddecl
) = TREE_THIS_VOLATILE (newdecl
);
1849 TREE_SIDE_EFFECTS (olddecl
) = TREE_SIDE_EFFECTS (newdecl
);
1852 /* Merge the storage class information. */
1853 merge_weak (newdecl
, olddecl
);
1855 if (DECL_ONE_ONLY (olddecl
))
1856 DECL_COMDAT_GROUP (newdecl
) = DECL_COMDAT_GROUP (olddecl
);
1858 DECL_DEFER_OUTPUT (newdecl
) |= DECL_DEFER_OUTPUT (olddecl
);
1859 TREE_PUBLIC (newdecl
) = TREE_PUBLIC (olddecl
);
1860 TREE_STATIC (olddecl
) = TREE_STATIC (newdecl
) |= TREE_STATIC (olddecl
);
1861 if (! DECL_EXTERNAL (olddecl
))
1862 DECL_EXTERNAL (newdecl
) = 0;
1864 new_template_info
= NULL_TREE
;
1865 if (DECL_LANG_SPECIFIC (newdecl
) && DECL_LANG_SPECIFIC (olddecl
))
1867 bool new_redefines_gnu_inline
= false;
1869 if (new_defines_function
1870 && ((DECL_INTERFACE_KNOWN (olddecl
)
1871 && TREE_CODE (olddecl
) == FUNCTION_DECL
)
1872 || (TREE_CODE (olddecl
) == TEMPLATE_DECL
1873 && (TREE_CODE (DECL_TEMPLATE_RESULT (olddecl
))
1874 == FUNCTION_DECL
))))
1878 if (TREE_CODE (fn
) == TEMPLATE_DECL
)
1879 fn
= DECL_TEMPLATE_RESULT (olddecl
);
1881 new_redefines_gnu_inline
= GNU_INLINE_P (fn
) && DECL_INITIAL (fn
);
1884 if (!new_redefines_gnu_inline
)
1886 DECL_INTERFACE_KNOWN (newdecl
) |= DECL_INTERFACE_KNOWN (olddecl
);
1887 DECL_NOT_REALLY_EXTERN (newdecl
) |= DECL_NOT_REALLY_EXTERN (olddecl
);
1888 DECL_COMDAT (newdecl
) |= DECL_COMDAT (olddecl
);
1890 DECL_TEMPLATE_INSTANTIATED (newdecl
)
1891 |= DECL_TEMPLATE_INSTANTIATED (olddecl
);
1892 DECL_ODR_USED (newdecl
) |= DECL_ODR_USED (olddecl
);
1894 /* If the OLDDECL is an instantiation and/or specialization,
1895 then the NEWDECL must be too. But, it may not yet be marked
1896 as such if the caller has created NEWDECL, but has not yet
1897 figured out that it is a redeclaration. */
1898 if (!DECL_USE_TEMPLATE (newdecl
))
1899 DECL_USE_TEMPLATE (newdecl
) = DECL_USE_TEMPLATE (olddecl
);
1901 /* Don't really know how much of the language-specific
1902 values we should copy from old to new. */
1903 DECL_IN_AGGR_P (newdecl
) = DECL_IN_AGGR_P (olddecl
);
1904 DECL_REPO_AVAILABLE_P (newdecl
) = DECL_REPO_AVAILABLE_P (olddecl
);
1905 DECL_INITIALIZED_IN_CLASS_P (newdecl
)
1906 |= DECL_INITIALIZED_IN_CLASS_P (olddecl
);
1908 if (LANG_DECL_HAS_MIN (newdecl
))
1910 DECL_LANG_SPECIFIC (newdecl
)->u
.min
.u2
=
1911 DECL_LANG_SPECIFIC (olddecl
)->u
.min
.u2
;
1912 if (DECL_TEMPLATE_INFO (newdecl
))
1913 new_template_info
= DECL_TEMPLATE_INFO (newdecl
);
1914 DECL_TEMPLATE_INFO (newdecl
) = DECL_TEMPLATE_INFO (olddecl
);
1916 /* Only functions have these fields. */
1917 if (TREE_CODE (newdecl
) == FUNCTION_DECL
1918 || DECL_FUNCTION_TEMPLATE_P (newdecl
))
1920 DECL_NONCONVERTING_P (newdecl
) = DECL_NONCONVERTING_P (olddecl
);
1921 olddecl_friend
= DECL_FRIEND_P (olddecl
);
1922 hidden_friend
= (DECL_ANTICIPATED (olddecl
)
1923 && DECL_HIDDEN_FRIEND_P (olddecl
)
1924 && newdecl_is_friend
);
1925 DECL_BEFRIENDING_CLASSES (newdecl
)
1926 = chainon (DECL_BEFRIENDING_CLASSES (newdecl
),
1927 DECL_BEFRIENDING_CLASSES (olddecl
));
1928 /* DECL_THUNKS is only valid for virtual functions,
1929 otherwise it is a DECL_FRIEND_CONTEXT. */
1930 if (DECL_VIRTUAL_P (newdecl
))
1931 DECL_THUNKS (newdecl
) = DECL_THUNKS (olddecl
);
1935 if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
1939 /* Merge parameter attributes. */
1940 tree oldarg
, newarg
;
1941 for (oldarg
= DECL_ARGUMENTS(olddecl
),
1942 newarg
= DECL_ARGUMENTS(newdecl
);
1944 oldarg
= TREE_CHAIN(oldarg
), newarg
= TREE_CHAIN(newarg
)) {
1945 DECL_ATTRIBUTES (newarg
)
1946 = (*targetm
.merge_decl_attributes
) (oldarg
, newarg
);
1947 DECL_ATTRIBUTES (oldarg
) = DECL_ATTRIBUTES (newarg
);
1950 if (DECL_TEMPLATE_INSTANTIATION (olddecl
)
1951 && !DECL_TEMPLATE_INSTANTIATION (newdecl
))
1953 /* If newdecl is not a specialization, then it is not a
1954 template-related function at all. And that means that we
1955 should have exited above, returning 0. */
1956 gcc_assert (DECL_TEMPLATE_SPECIALIZATION (newdecl
));
1958 if (DECL_ODR_USED (olddecl
))
1959 /* From [temp.expl.spec]:
1961 If a template, a member template or the member of a class
1962 template is explicitly specialized then that
1963 specialization shall be declared before the first use of
1964 that specialization that would cause an implicit
1965 instantiation to take place, in every translation unit in
1966 which such a use occurs. */
1967 error ("explicit specialization of %qD after first use",
1970 SET_DECL_TEMPLATE_SPECIALIZATION (olddecl
);
1972 /* Don't propagate visibility from the template to the
1973 specialization here. We'll do that in determine_visibility if
1975 DECL_VISIBILITY_SPECIFIED (olddecl
) = 0;
1977 /* [temp.expl.spec/14] We don't inline explicit specialization
1978 just because the primary template says so. */
1980 else if (new_defines_function
&& DECL_INITIAL (olddecl
))
1982 /* Never inline re-defined extern inline functions.
1983 FIXME: this could be better handled by keeping both
1984 function as separate declarations. */
1985 DECL_UNINLINABLE (newdecl
) = 1;
1989 if (DECL_PENDING_INLINE_INFO (newdecl
) == 0)
1990 DECL_PENDING_INLINE_INFO (newdecl
) = DECL_PENDING_INLINE_INFO (olddecl
);
1992 DECL_DECLARED_INLINE_P (newdecl
) |= DECL_DECLARED_INLINE_P (olddecl
);
1994 DECL_UNINLINABLE (newdecl
) = DECL_UNINLINABLE (olddecl
)
1995 = (DECL_UNINLINABLE (newdecl
) || DECL_UNINLINABLE (olddecl
));
1997 DECL_DISREGARD_INLINE_LIMITS (newdecl
)
1998 = DECL_DISREGARD_INLINE_LIMITS (olddecl
)
1999 = (DECL_DISREGARD_INLINE_LIMITS (newdecl
)
2000 || DECL_DISREGARD_INLINE_LIMITS (olddecl
));
2003 /* Preserve abstractness on cloned [cd]tors. */
2004 DECL_ABSTRACT (newdecl
) = DECL_ABSTRACT (olddecl
);
2006 /* Update newdecl's parms to point at olddecl. */
2007 for (parm
= DECL_ARGUMENTS (newdecl
); parm
;
2008 parm
= TREE_CHAIN (parm
))
2009 DECL_CONTEXT (parm
) = olddecl
;
2013 SET_DECL_LANGUAGE (olddecl
, DECL_LANGUAGE (newdecl
));
2014 COPY_DECL_ASSEMBLER_NAME (newdecl
, olddecl
);
2015 COPY_DECL_RTL (newdecl
, olddecl
);
2017 if (! types_match
|| new_defines_function
)
2019 /* These need to be copied so that the names are available.
2020 Note that if the types do match, we'll preserve inline
2021 info and other bits, but if not, we won't. */
2022 DECL_ARGUMENTS (olddecl
) = DECL_ARGUMENTS (newdecl
);
2023 DECL_RESULT (olddecl
) = DECL_RESULT (newdecl
);
2025 if (new_defines_function
)
2026 /* If defining a function declared with other language
2027 linkage, use the previously declared language linkage. */
2028 SET_DECL_LANGUAGE (newdecl
, DECL_LANGUAGE (olddecl
));
2029 else if (types_match
)
2031 /* If redeclaring a builtin function, and not a definition,
2032 it stays built in. */
2033 if (DECL_BUILT_IN (olddecl
))
2035 DECL_BUILT_IN_CLASS (newdecl
) = DECL_BUILT_IN_CLASS (olddecl
);
2036 DECL_FUNCTION_CODE (newdecl
) = DECL_FUNCTION_CODE (olddecl
);
2037 /* If we're keeping the built-in definition, keep the rtl,
2038 regardless of declaration matches. */
2039 COPY_DECL_RTL (olddecl
, newdecl
);
2042 DECL_RESULT (newdecl
) = DECL_RESULT (olddecl
);
2043 /* Don't clear out the arguments if we're just redeclaring a
2045 if (DECL_ARGUMENTS (olddecl
))
2046 DECL_ARGUMENTS (newdecl
) = DECL_ARGUMENTS (olddecl
);
2049 else if (TREE_CODE (newdecl
) == NAMESPACE_DECL
)
2050 NAMESPACE_LEVEL (newdecl
) = NAMESPACE_LEVEL (olddecl
);
2052 /* Now preserve various other info from the definition. */
2053 TREE_ADDRESSABLE (newdecl
) = TREE_ADDRESSABLE (olddecl
);
2054 TREE_ASM_WRITTEN (newdecl
) = TREE_ASM_WRITTEN (olddecl
);
2055 DECL_COMMON (newdecl
) = DECL_COMMON (olddecl
);
2056 COPY_DECL_ASSEMBLER_NAME (olddecl
, newdecl
);
2058 /* Warn about conflicting visibility specifications. */
2059 if (DECL_VISIBILITY_SPECIFIED (olddecl
)
2060 && DECL_VISIBILITY_SPECIFIED (newdecl
)
2061 && DECL_VISIBILITY (newdecl
) != DECL_VISIBILITY (olddecl
))
2063 warning_at (input_location
, OPT_Wattributes
,
2064 "%q+D: visibility attribute ignored because it", newdecl
);
2065 warning_at (DECL_SOURCE_LOCATION (olddecl
), OPT_Wattributes
,
2066 "conflicts with previous declaration here");
2068 /* Choose the declaration which specified visibility. */
2069 if (DECL_VISIBILITY_SPECIFIED (olddecl
))
2071 DECL_VISIBILITY (newdecl
) = DECL_VISIBILITY (olddecl
);
2072 DECL_VISIBILITY_SPECIFIED (newdecl
) = 1;
2074 /* Init priority used to be merged from newdecl to olddecl by the memcpy,
2075 so keep this behavior. */
2076 if (TREE_CODE (newdecl
) == VAR_DECL
&& DECL_HAS_INIT_PRIORITY_P (newdecl
))
2078 SET_DECL_INIT_PRIORITY (olddecl
, DECL_INIT_PRIORITY (newdecl
));
2079 DECL_HAS_INIT_PRIORITY_P (olddecl
) = 1;
2082 /* The DECL_LANG_SPECIFIC information in OLDDECL will be replaced
2083 with that from NEWDECL below. */
2084 if (DECL_LANG_SPECIFIC (olddecl
))
2086 gcc_assert (DECL_LANG_SPECIFIC (olddecl
)
2087 != DECL_LANG_SPECIFIC (newdecl
));
2088 ggc_free (DECL_LANG_SPECIFIC (olddecl
));
2091 /* Merge the USED information. */
2092 if (TREE_USED (olddecl
))
2093 TREE_USED (newdecl
) = 1;
2094 else if (TREE_USED (newdecl
))
2095 TREE_USED (olddecl
) = 1;
2096 if (DECL_PRESERVE_P (olddecl
))
2097 DECL_PRESERVE_P (newdecl
) = 1;
2098 else if (DECL_PRESERVE_P (newdecl
))
2099 DECL_PRESERVE_P (olddecl
) = 1;
2101 if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
2105 function_size
= sizeof (struct tree_decl_common
);
2107 memcpy ((char *) olddecl
+ sizeof (struct tree_common
),
2108 (char *) newdecl
+ sizeof (struct tree_common
),
2109 function_size
- sizeof (struct tree_common
));
2111 memcpy ((char *) olddecl
+ sizeof (struct tree_decl_common
),
2112 (char *) newdecl
+ sizeof (struct tree_decl_common
),
2113 sizeof (struct tree_function_decl
) - sizeof (struct tree_decl_common
));
2114 if (new_template_info
)
2115 /* If newdecl is a template instantiation, it is possible that
2116 the following sequence of events has occurred:
2118 o A friend function was declared in a class template. The
2119 class template was instantiated.
2121 o The instantiation of the friend declaration was
2122 recorded on the instantiation list, and is newdecl.
2124 o Later, however, instantiate_class_template called pushdecl
2125 on the newdecl to perform name injection. But, pushdecl in
2126 turn called duplicate_decls when it discovered that another
2127 declaration of a global function with the same name already
2130 o Here, in duplicate_decls, we decided to clobber newdecl.
2132 If we're going to do that, we'd better make sure that
2133 olddecl, and not newdecl, is on the list of
2134 instantiations so that if we try to do the instantiation
2135 again we won't get the clobbered declaration. */
2136 reregister_specialization (newdecl
,
2142 size_t size
= tree_code_size (TREE_CODE (olddecl
));
2143 memcpy ((char *) olddecl
+ sizeof (struct tree_common
),
2144 (char *) newdecl
+ sizeof (struct tree_common
),
2145 sizeof (struct tree_decl_common
) - sizeof (struct tree_common
));
2146 switch (TREE_CODE (olddecl
))
2156 memcpy ((char *) olddecl
+ sizeof (struct tree_decl_common
),
2157 (char *) newdecl
+ sizeof (struct tree_decl_common
),
2158 size
- sizeof (struct tree_decl_common
)
2159 + TREE_CODE_LENGTH (TREE_CODE (newdecl
)) * sizeof (char *));
2163 memcpy ((char *) olddecl
+ sizeof (struct tree_decl_common
),
2164 (char *) newdecl
+ sizeof (struct tree_decl_common
),
2165 sizeof (struct tree_decl_non_common
) - sizeof (struct tree_decl_common
)
2166 + TREE_CODE_LENGTH (TREE_CODE (newdecl
)) * sizeof (char *));
2170 DECL_UID (olddecl
) = olddecl_uid
;
2172 DECL_FRIEND_P (olddecl
) = 1;
2175 DECL_ANTICIPATED (olddecl
) = 1;
2176 DECL_HIDDEN_FRIEND_P (olddecl
) = 1;
2179 /* NEWDECL contains the merged attribute lists.
2180 Update OLDDECL to be the same. */
2181 DECL_ATTRIBUTES (olddecl
) = DECL_ATTRIBUTES (newdecl
);
2183 /* If OLDDECL had its DECL_RTL instantiated, re-invoke make_decl_rtl
2184 so that encode_section_info has a chance to look at the new decl
2185 flags and attributes. */
2186 if (DECL_RTL_SET_P (olddecl
)
2187 && (TREE_CODE (olddecl
) == FUNCTION_DECL
2188 || (TREE_CODE (olddecl
) == VAR_DECL
2189 && TREE_STATIC (olddecl
))))
2190 make_decl_rtl (olddecl
);
2192 /* The NEWDECL will no longer be needed. Because every out-of-class
2193 declaration of a member results in a call to duplicate_decls,
2194 freeing these nodes represents in a significant savings. */
2200 /* Return zero if the declaration NEWDECL is valid
2201 when the declaration OLDDECL (assumed to be for the same name)
2202 has already been seen.
2203 Otherwise return an error message format string with a %s
2204 where the identifier should go. */
2207 redeclaration_error_message (tree newdecl
, tree olddecl
)
2209 if (TREE_CODE (newdecl
) == TYPE_DECL
)
2211 /* Because C++ can put things into name space for free,
2212 constructs like "typedef struct foo { ... } foo"
2213 would look like an erroneous redeclaration. */
2214 if (same_type_p (TREE_TYPE (newdecl
), TREE_TYPE (olddecl
)))
2217 return G_("redefinition of %q#D");
2219 else if (TREE_CODE (newdecl
) == FUNCTION_DECL
)
2221 /* If this is a pure function, its olddecl will actually be
2222 the original initialization to `0' (which we force to call
2223 abort()). Don't complain about redefinition in this case. */
2224 if (DECL_LANG_SPECIFIC (olddecl
) && DECL_PURE_VIRTUAL_P (olddecl
)
2225 && DECL_INITIAL (olddecl
) == NULL_TREE
)
2228 /* If both functions come from different namespaces, this is not
2229 a redeclaration - this is a conflict with a used function. */
2230 if (DECL_NAMESPACE_SCOPE_P (olddecl
)
2231 && DECL_CONTEXT (olddecl
) != DECL_CONTEXT (newdecl
)
2232 && ! decls_match (olddecl
, newdecl
))
2233 return G_("%qD conflicts with used function");
2235 /* We'll complain about linkage mismatches in
2236 warn_extern_redeclared_static. */
2238 /* Defining the same name twice is no good. */
2239 if (DECL_INITIAL (olddecl
) != NULL_TREE
2240 && DECL_INITIAL (newdecl
) != NULL_TREE
)
2242 if (DECL_NAME (olddecl
) == NULL_TREE
)
2243 return G_("%q#D not declared in class");
2244 else if (!GNU_INLINE_P (olddecl
)
2245 || GNU_INLINE_P (newdecl
))
2246 return G_("redefinition of %q#D");
2249 if (DECL_DECLARED_INLINE_P (olddecl
) && DECL_DECLARED_INLINE_P (newdecl
))
2251 bool olda
= GNU_INLINE_P (olddecl
);
2252 bool newa
= GNU_INLINE_P (newdecl
);
2257 return G_("%q+D redeclared inline with "
2258 "%<gnu_inline%> attribute");
2260 return G_("%q+D redeclared inline without "
2261 "%<gnu_inline%> attribute");
2267 else if (TREE_CODE (newdecl
) == TEMPLATE_DECL
)
2271 if (TREE_CODE (DECL_TEMPLATE_RESULT (newdecl
)) == TYPE_DECL
)
2273 if (COMPLETE_TYPE_P (TREE_TYPE (newdecl
))
2274 && COMPLETE_TYPE_P (TREE_TYPE (olddecl
)))
2275 return G_("redefinition of %q#D");
2279 if (TREE_CODE (DECL_TEMPLATE_RESULT (newdecl
)) != FUNCTION_DECL
2280 || (DECL_TEMPLATE_RESULT (newdecl
)
2281 == DECL_TEMPLATE_RESULT (olddecl
)))
2284 nt
= DECL_TEMPLATE_RESULT (newdecl
);
2285 if (DECL_TEMPLATE_INFO (nt
))
2286 nt
= DECL_TEMPLATE_RESULT (template_for_substitution (nt
));
2287 ot
= DECL_TEMPLATE_RESULT (olddecl
);
2288 if (DECL_TEMPLATE_INFO (ot
))
2289 ot
= DECL_TEMPLATE_RESULT (template_for_substitution (ot
));
2290 if (DECL_INITIAL (nt
) && DECL_INITIAL (ot
)
2291 && (!GNU_INLINE_P (ot
) || GNU_INLINE_P (nt
)))
2292 return G_("redefinition of %q#D");
2294 if (DECL_DECLARED_INLINE_P (ot
) && DECL_DECLARED_INLINE_P (nt
))
2296 bool olda
= GNU_INLINE_P (ot
);
2297 bool newa
= GNU_INLINE_P (nt
);
2302 return G_("%q+D redeclared inline with "
2303 "%<gnu_inline%> attribute");
2305 return G_("%q+D redeclared inline without "
2306 "%<gnu_inline%> attribute");
2310 /* Core issue #226 (C++0x):
2312 If a friend function template declaration specifies a
2313 default template-argument, that declaration shall be a
2314 definition and shall be the only declaration of the
2315 function template in the translation unit. */
2316 if ((cxx_dialect
!= cxx98
)
2317 && TREE_CODE (ot
) == FUNCTION_DECL
&& DECL_FRIEND_P (ot
)
2318 && !check_default_tmpl_args (nt
, DECL_TEMPLATE_PARMS (newdecl
),
2319 /*is_primary=*/1, /*is_partial=*/0,
2320 /*is_friend_decl=*/2))
2321 return G_("redeclaration of friend %q#D "
2322 "may not have default template arguments");
2326 else if (TREE_CODE (newdecl
) == VAR_DECL
2327 && DECL_THREAD_LOCAL_P (newdecl
) != DECL_THREAD_LOCAL_P (olddecl
)
2328 && (! DECL_LANG_SPECIFIC (olddecl
)
2329 || ! CP_DECL_THREADPRIVATE_P (olddecl
)
2330 || DECL_THREAD_LOCAL_P (newdecl
)))
2332 /* Only variables can be thread-local, and all declarations must
2333 agree on this property. */
2334 if (DECL_THREAD_LOCAL_P (newdecl
))
2335 return G_("thread-local declaration of %q#D follows "
2336 "non-thread-local declaration");
2338 return G_("non-thread-local declaration of %q#D follows "
2339 "thread-local declaration");
2341 else if (toplevel_bindings_p () || DECL_NAMESPACE_SCOPE_P (newdecl
))
2343 /* The objects have been declared at namespace scope. If either
2344 is a member of an anonymous union, then this is an invalid
2345 redeclaration. For example:
2351 if ((TREE_CODE (newdecl
) == VAR_DECL
&& DECL_ANON_UNION_VAR_P (newdecl
))
2352 || (TREE_CODE (olddecl
) == VAR_DECL
&& DECL_ANON_UNION_VAR_P (olddecl
)))
2353 return G_("redeclaration of %q#D");
2354 /* If at least one declaration is a reference, there is no
2355 conflict. For example:
2361 if (DECL_EXTERNAL (newdecl
) || DECL_EXTERNAL (olddecl
))
2363 /* Reject two definitions. */
2364 return G_("redefinition of %q#D");
2368 /* Objects declared with block scope: */
2369 /* Reject two definitions, and reject a definition
2370 together with an external reference. */
2371 if (!(DECL_EXTERNAL (newdecl
) && DECL_EXTERNAL (olddecl
)))
2372 return G_("redeclaration of %q#D");
2377 /* Hash and equality functions for the named_label table. */
2380 named_label_entry_hash (const void *data
)
2382 const struct named_label_entry
*ent
= (const struct named_label_entry
*) data
;
2383 return DECL_UID (ent
->label_decl
);
2387 named_label_entry_eq (const void *a
, const void *b
)
2389 const struct named_label_entry
*ent_a
= (const struct named_label_entry
*) a
;
2390 const struct named_label_entry
*ent_b
= (const struct named_label_entry
*) b
;
2391 return ent_a
->label_decl
== ent_b
->label_decl
;
2394 /* Create a new label, named ID. */
2397 make_label_decl (tree id
, int local_p
)
2399 struct named_label_entry
*ent
;
2403 decl
= build_decl (input_location
, LABEL_DECL
, id
, void_type_node
);
2405 DECL_CONTEXT (decl
) = current_function_decl
;
2406 DECL_MODE (decl
) = VOIDmode
;
2407 C_DECLARED_LABEL_FLAG (decl
) = local_p
;
2409 /* Say where one reference is to the label, for the sake of the
2410 error if it is not defined. */
2411 DECL_SOURCE_LOCATION (decl
) = input_location
;
2413 /* Record the fact that this identifier is bound to this label. */
2414 SET_IDENTIFIER_LABEL_VALUE (id
, decl
);
2416 /* Create the label htab for the function on demand. */
2418 named_labels
= htab_create_ggc (13, named_label_entry_hash
,
2419 named_label_entry_eq
, NULL
);
2421 /* Record this label on the list of labels used in this function.
2422 We do this before calling make_label_decl so that we get the
2423 IDENTIFIER_LABEL_VALUE before the new label is declared. */
2424 ent
= GGC_CNEW (struct named_label_entry
);
2425 ent
->label_decl
= decl
;
2427 slot
= htab_find_slot (named_labels
, ent
, INSERT
);
2428 gcc_assert (*slot
== NULL
);
2434 /* Look for a label named ID in the current function. If one cannot
2435 be found, create one. (We keep track of used, but undefined,
2436 labels, and complain about them at the end of a function.) */
2439 lookup_label (tree id
)
2443 timevar_push (TV_NAME_LOOKUP
);
2444 /* You can't use labels at global scope. */
2445 if (current_function_decl
== NULL_TREE
)
2447 error ("label %qE referenced outside of any function", id
);
2448 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, NULL_TREE
);
2451 /* See if we've already got this label. */
2452 decl
= IDENTIFIER_LABEL_VALUE (id
);
2453 if (decl
!= NULL_TREE
&& DECL_CONTEXT (decl
) == current_function_decl
)
2454 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, decl
);
2456 decl
= make_label_decl (id
, /*local_p=*/0);
2457 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, decl
);
2460 /* Declare a local label named ID. */
2463 declare_local_label (tree id
)
2467 /* Add a new entry to the SHADOWED_LABELS list so that when we leave
2468 this scope we can restore the old value of IDENTIFIER_TYPE_VALUE. */
2469 shadow
= tree_cons (IDENTIFIER_LABEL_VALUE (id
), NULL_TREE
,
2470 current_binding_level
->shadowed_labels
);
2471 current_binding_level
->shadowed_labels
= shadow
;
2473 decl
= make_label_decl (id
, /*local_p=*/1);
2474 TREE_VALUE (shadow
) = decl
;
2479 /* Returns nonzero if it is ill-formed to jump past the declaration of
2480 DECL. Returns 2 if it's also a real problem. */
2483 decl_jump_unsafe (tree decl
)
2485 /* [stmt.dcl]/3: A program that jumps from a point where a local variable
2486 with automatic storage duration is not in scope to a point where it is
2487 in scope is ill-formed unless the variable has scalar type, class type
2488 with a trivial default constructor and a trivial destructor, a
2489 cv-qualified version of one of these types, or an array of one of the
2490 preceding types and is declared without an initializer (8.5). */
2491 tree type
= TREE_TYPE (decl
);
2493 if (TREE_CODE (decl
) != VAR_DECL
|| TREE_STATIC (decl
)
2494 || type
== error_mark_node
)
2497 type
= strip_array_types (type
);
2499 if (type_has_nontrivial_default_init (TREE_TYPE (decl
))
2500 || DECL_NONTRIVIALLY_INITIALIZED_P (decl
))
2503 if (TYPE_HAS_NONTRIVIAL_DESTRUCTOR (TREE_TYPE (decl
)))
2509 /* A subroutine of check_previous_goto_1 to identify a branch to the user. */
2512 identify_goto (tree decl
, const location_t
*locus
)
2515 permerror (input_location
, "jump to label %qD", decl
);
2517 permerror (input_location
, "jump to case label");
2519 permerror (*locus
, " from here");
2522 /* Check that a single previously seen jump to a newly defined label
2523 is OK. DECL is the LABEL_DECL or 0; LEVEL is the binding_level for
2524 the jump context; NAMES are the names in scope in LEVEL at the jump
2525 context; LOCUS is the source position of the jump or 0. Returns
2526 true if all is well. */
2529 check_previous_goto_1 (tree decl
, struct cp_binding_level
* level
, tree names
,
2530 bool exited_omp
, const location_t
*locus
)
2532 struct cp_binding_level
*b
;
2533 bool identified
= false, saw_eh
= false, saw_omp
= false;
2537 identify_goto (decl
, locus
);
2538 error (" exits OpenMP structured block");
2539 identified
= saw_omp
= true;
2542 for (b
= current_binding_level
; b
; b
= b
->level_chain
)
2544 tree new_decls
, old_decls
= (b
== level
? names
: NULL_TREE
);
2546 for (new_decls
= b
->names
; new_decls
!= old_decls
;
2547 new_decls
= TREE_CHAIN (new_decls
))
2549 int problem
= decl_jump_unsafe (new_decls
);
2555 identify_goto (decl
, locus
);
2559 error (" crosses initialization of %q+#D", new_decls
);
2561 permerror (input_location
, " enters scope of %q+#D which has "
2562 "non-trivial destructor", new_decls
);
2567 if ((b
->kind
== sk_try
|| b
->kind
== sk_catch
) && !saw_eh
)
2571 identify_goto (decl
, locus
);
2574 if (b
->kind
== sk_try
)
2575 error (" enters try block");
2577 error (" enters catch block");
2580 if (b
->kind
== sk_omp
&& !saw_omp
)
2584 identify_goto (decl
, locus
);
2587 error (" enters OpenMP structured block");
2596 check_previous_goto (tree decl
, struct named_label_use_entry
*use
)
2598 check_previous_goto_1 (decl
, use
->binding_level
,
2599 use
->names_in_scope
, use
->in_omp_scope
,
2600 &use
->o_goto_locus
);
2604 check_switch_goto (struct cp_binding_level
* level
)
2606 return check_previous_goto_1 (NULL_TREE
, level
, level
->names
, false, NULL
);
2609 /* Check that a new jump to a label DECL is OK. Called by
2610 finish_goto_stmt. */
2613 check_goto (tree decl
)
2615 struct named_label_entry
*ent
, dummy
;
2616 bool saw_catch
= false, identified
= false;
2619 /* We can't know where a computed goto is jumping.
2620 So we assume that it's OK. */
2621 if (TREE_CODE (decl
) != LABEL_DECL
)
2624 /* We didn't record any information about this label when we created it,
2625 and there's not much point since it's trivial to analyze as a return. */
2626 if (decl
== cdtor_label
)
2629 dummy
.label_decl
= decl
;
2630 ent
= (struct named_label_entry
*) htab_find (named_labels
, &dummy
);
2631 gcc_assert (ent
!= NULL
);
2633 /* If the label hasn't been defined yet, defer checking. */
2634 if (! DECL_INITIAL (decl
))
2636 struct named_label_use_entry
*new_use
;
2638 /* Don't bother creating another use if the last goto had the
2639 same data, and will therefore create the same set of errors. */
2641 && ent
->uses
->names_in_scope
== current_binding_level
->names
)
2644 new_use
= GGC_NEW (struct named_label_use_entry
);
2645 new_use
->binding_level
= current_binding_level
;
2646 new_use
->names_in_scope
= current_binding_level
->names
;
2647 new_use
->o_goto_locus
= input_location
;
2648 new_use
->in_omp_scope
= false;
2650 new_use
->next
= ent
->uses
;
2651 ent
->uses
= new_use
;
2655 if (ent
->in_try_scope
|| ent
->in_catch_scope
2656 || ent
->in_omp_scope
|| ent
->bad_decls
)
2658 permerror (input_location
, "jump to label %q+D", decl
);
2659 permerror (input_location
, " from here");
2663 for (bad
= ent
->bad_decls
; bad
; bad
= TREE_CHAIN (bad
))
2665 tree b
= TREE_VALUE (bad
);
2666 int u
= decl_jump_unsafe (b
);
2668 if (u
> 1 && DECL_ARTIFICIAL (b
))
2670 /* Can't skip init of __exception_info. */
2671 error_at (DECL_SOURCE_LOCATION (b
), " enters catch block");
2675 error (" skips initialization of %q+#D", b
);
2677 permerror (input_location
, " enters scope of %q+#D which has "
2678 "non-trivial destructor", b
);
2681 if (ent
->in_try_scope
)
2682 error (" enters try block");
2683 else if (ent
->in_catch_scope
&& !saw_catch
)
2684 error (" enters catch block");
2686 if (ent
->in_omp_scope
)
2687 error (" enters OpenMP structured block");
2688 else if (flag_openmp
)
2690 struct cp_binding_level
*b
;
2691 for (b
= current_binding_level
; b
; b
= b
->level_chain
)
2693 if (b
== ent
->binding_level
)
2695 if (b
->kind
== sk_omp
)
2699 permerror (input_location
, "jump to label %q+D", decl
);
2700 permerror (input_location
, " from here");
2703 error (" exits OpenMP structured block");
2710 /* Check that a return is ok wrt OpenMP structured blocks.
2711 Called by finish_return_stmt. Returns true if all is well. */
2714 check_omp_return (void)
2716 struct cp_binding_level
*b
;
2717 for (b
= current_binding_level
; b
; b
= b
->level_chain
)
2718 if (b
->kind
== sk_omp
)
2720 error ("invalid exit from OpenMP structured block");
2726 /* Define a label, specifying the location in the source file.
2727 Return the LABEL_DECL node for the label. */
2730 define_label (location_t location
, tree name
)
2732 struct named_label_entry
*ent
, dummy
;
2733 struct cp_binding_level
*p
;
2736 timevar_push (TV_NAME_LOOKUP
);
2738 decl
= lookup_label (name
);
2740 dummy
.label_decl
= decl
;
2741 ent
= (struct named_label_entry
*) htab_find (named_labels
, &dummy
);
2742 gcc_assert (ent
!= NULL
);
2744 /* After labels, make any new cleanups in the function go into their
2745 own new (temporary) binding contour. */
2746 for (p
= current_binding_level
;
2747 p
->kind
!= sk_function_parms
;
2749 p
->more_cleanups_ok
= 0;
2751 if (name
== get_identifier ("wchar_t"))
2752 permerror (input_location
, "label named wchar_t");
2754 if (DECL_INITIAL (decl
) != NULL_TREE
)
2756 error ("duplicate label %qD", decl
);
2757 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, error_mark_node
);
2761 struct named_label_use_entry
*use
;
2763 /* Mark label as having been defined. */
2764 DECL_INITIAL (decl
) = error_mark_node
;
2765 /* Say where in the source. */
2766 DECL_SOURCE_LOCATION (decl
) = location
;
2768 ent
->binding_level
= current_binding_level
;
2769 ent
->names_in_scope
= current_binding_level
->names
;
2771 for (use
= ent
->uses
; use
; use
= use
->next
)
2772 check_previous_goto (decl
, use
);
2776 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, decl
);
2781 struct cp_binding_level
*level
;
2782 struct cp_switch
*next
;
2783 /* The SWITCH_STMT being built. */
2785 /* A splay-tree mapping the low element of a case range to the high
2786 element, or NULL_TREE if there is no high element. Used to
2787 determine whether or not a new case label duplicates an old case
2788 label. We need a tree, rather than simply a hash table, because
2789 of the GNU case range extension. */
2793 /* A stack of the currently active switch statements. The innermost
2794 switch statement is on the top of the stack. There is no need to
2795 mark the stack for garbage collection because it is only active
2796 during the processing of the body of a function, and we never
2797 collect at that point. */
2799 static struct cp_switch
*switch_stack
;
2801 /* Called right after a switch-statement condition is parsed.
2802 SWITCH_STMT is the switch statement being parsed. */
2805 push_switch (tree switch_stmt
)
2807 struct cp_switch
*p
= XNEW (struct cp_switch
);
2808 p
->level
= current_binding_level
;
2809 p
->next
= switch_stack
;
2810 p
->switch_stmt
= switch_stmt
;
2811 p
->cases
= splay_tree_new (case_compare
, NULL
, NULL
);
2818 struct cp_switch
*cs
= switch_stack
;
2819 location_t switch_location
;
2821 /* Emit warnings as needed. */
2822 if (EXPR_HAS_LOCATION (cs
->switch_stmt
))
2823 switch_location
= EXPR_LOCATION (cs
->switch_stmt
);
2825 switch_location
= input_location
;
2826 if (!processing_template_decl
)
2827 c_do_switch_warnings (cs
->cases
, switch_location
,
2828 SWITCH_STMT_TYPE (cs
->switch_stmt
),
2829 SWITCH_STMT_COND (cs
->switch_stmt
));
2831 splay_tree_delete (cs
->cases
);
2832 switch_stack
= switch_stack
->next
;
2836 /* Note that we've seen a definition of a case label, and complain if this
2837 is a bad place for one. */
2840 finish_case_label (location_t loc
, tree low_value
, tree high_value
)
2843 struct cp_binding_level
*p
;
2845 if (processing_template_decl
)
2849 /* For templates, just add the case label; we'll do semantic
2850 analysis at instantiation-time. */
2851 label
= build_decl (loc
, LABEL_DECL
, NULL_TREE
, NULL_TREE
);
2852 return add_stmt (build_case_label (loc
, low_value
, high_value
, label
));
2855 /* Find the condition on which this switch statement depends. */
2856 cond
= SWITCH_STMT_COND (switch_stack
->switch_stmt
);
2857 if (cond
&& TREE_CODE (cond
) == TREE_LIST
)
2858 cond
= TREE_VALUE (cond
);
2860 if (!check_switch_goto (switch_stack
->level
))
2861 return error_mark_node
;
2863 r
= c_add_case_label (loc
, switch_stack
->cases
, cond
,
2864 SWITCH_STMT_TYPE (switch_stack
->switch_stmt
),
2865 low_value
, high_value
);
2867 /* After labels, make any new cleanups in the function go into their
2868 own new (temporary) binding contour. */
2869 for (p
= current_binding_level
;
2870 p
->kind
!= sk_function_parms
;
2872 p
->more_cleanups_ok
= 0;
2877 /* Hash a TYPENAME_TYPE. K is really of type `tree'. */
2880 typename_hash (const void* k
)
2883 const_tree
const t
= (const_tree
) k
;
2885 hash
= (htab_hash_pointer (TYPE_CONTEXT (t
))
2886 ^ htab_hash_pointer (DECL_NAME (TYPE_NAME (t
))));
2891 typedef struct typename_info
{
2899 /* Compare two TYPENAME_TYPEs. K1 is really of type `tree', K2 is
2900 really of type `typename_info*' */
2903 typename_compare (const void * k1
, const void * k2
)
2905 const_tree
const t1
= (const_tree
) k1
;
2906 const typename_info
*const t2
= (const typename_info
*) k2
;
2908 return (DECL_NAME (TYPE_NAME (t1
)) == t2
->name
2909 && TYPE_CONTEXT (t1
) == t2
->scope
2910 && TYPENAME_TYPE_FULLNAME (t1
) == t2
->template_id
2911 && TYPENAME_IS_ENUM_P (t1
) == t2
->enum_p
2912 && TYPENAME_IS_CLASS_P (t1
) == t2
->class_p
);
2915 /* Build a TYPENAME_TYPE. If the type is `typename T::t', CONTEXT is
2916 the type of `T', NAME is the IDENTIFIER_NODE for `t'.
2918 Returns the new TYPENAME_TYPE. */
2920 static GTY ((param_is (union tree_node
))) htab_t typename_htab
;
2923 build_typename_type (tree context
, tree name
, tree fullname
,
2924 enum tag_types tag_type
)
2932 if (typename_htab
== NULL
)
2933 typename_htab
= htab_create_ggc (61, &typename_hash
,
2934 &typename_compare
, NULL
);
2936 ti
.scope
= FROB_CONTEXT (context
);
2938 ti
.template_id
= fullname
;
2939 ti
.enum_p
= tag_type
== enum_type
;
2940 ti
.class_p
= (tag_type
== class_type
2941 || tag_type
== record_type
2942 || tag_type
== union_type
);
2943 hash
= (htab_hash_pointer (ti
.scope
)
2944 ^ htab_hash_pointer (ti
.name
));
2946 /* See if we already have this type. */
2947 e
= htab_find_slot_with_hash (typename_htab
, &ti
, hash
, INSERT
);
2952 /* Build the TYPENAME_TYPE. */
2953 t
= cxx_make_type (TYPENAME_TYPE
);
2954 TYPE_CONTEXT (t
) = ti
.scope
;
2955 TYPENAME_TYPE_FULLNAME (t
) = ti
.template_id
;
2956 TYPENAME_IS_ENUM_P (t
) = ti
.enum_p
;
2957 TYPENAME_IS_CLASS_P (t
) = ti
.class_p
;
2959 /* Build the corresponding TYPE_DECL. */
2960 d
= build_decl (input_location
, TYPE_DECL
, name
, t
);
2961 TYPE_NAME (TREE_TYPE (d
)) = d
;
2962 TYPE_STUB_DECL (TREE_TYPE (d
)) = d
;
2963 DECL_CONTEXT (d
) = FROB_CONTEXT (context
);
2964 DECL_ARTIFICIAL (d
) = 1;
2966 /* Store it in the hash table. */
2969 /* TYPENAME_TYPEs must always be compared structurally, because
2970 they may or may not resolve down to another type depending on
2971 the currently open classes. */
2972 SET_TYPE_STRUCTURAL_EQUALITY (t
);
2978 /* Resolve `typename CONTEXT::NAME'. TAG_TYPE indicates the tag
2979 provided to name the type. Returns an appropriate type, unless an
2980 error occurs, in which case error_mark_node is returned. If we
2981 locate a non-artificial TYPE_DECL and TF_KEEP_TYPE_DECL is set, we
2982 return that, rather than the _TYPE it corresponds to, in other
2983 cases we look through the type decl. If TF_ERROR is set, complain
2984 about errors, otherwise be quiet. */
2987 make_typename_type (tree context
, tree name
, enum tag_types tag_type
,
2988 tsubst_flags_t complain
)
2994 if (name
== error_mark_node
2995 || context
== NULL_TREE
2996 || context
== error_mark_node
)
2997 return error_mark_node
;
3001 if (!(TYPE_LANG_SPECIFIC (name
)
3002 && (CLASSTYPE_IS_TEMPLATE (name
)
3003 || CLASSTYPE_USE_TEMPLATE (name
))))
3004 name
= TYPE_IDENTIFIER (name
);
3006 /* Create a TEMPLATE_ID_EXPR for the type. */
3007 name
= build_nt (TEMPLATE_ID_EXPR
,
3008 CLASSTYPE_TI_TEMPLATE (name
),
3009 CLASSTYPE_TI_ARGS (name
));
3011 else if (TREE_CODE (name
) == TYPE_DECL
)
3012 name
= DECL_NAME (name
);
3016 if (TREE_CODE (name
) == TEMPLATE_ID_EXPR
)
3018 name
= TREE_OPERAND (name
, 0);
3019 if (TREE_CODE (name
) == TEMPLATE_DECL
)
3020 name
= TREE_OPERAND (fullname
, 0) = DECL_NAME (name
);
3021 else if (TREE_CODE (name
) == OVERLOAD
)
3023 error ("%qD is not a type", name
);
3024 return error_mark_node
;
3027 if (TREE_CODE (name
) == TEMPLATE_DECL
)
3029 error ("%qD used without template parameters", name
);
3030 return error_mark_node
;
3032 gcc_assert (TREE_CODE (name
) == IDENTIFIER_NODE
);
3033 gcc_assert (TYPE_P (context
));
3035 if (!MAYBE_CLASS_TYPE_P (context
))
3037 if (complain
& tf_error
)
3038 error ("%q#T is not a class", context
);
3039 return error_mark_node
;
3042 /* When the CONTEXT is a dependent type, NAME could refer to a
3043 dependent base class of CONTEXT. But look inside it anyway
3044 if CONTEXT is a currently open scope, in case it refers to a
3045 member of the current instantiation or a non-dependent base;
3046 lookup will stop when we hit a dependent base. */
3047 if (!dependent_scope_p (context
))
3048 /* We should only set WANT_TYPE when we're a nested typename type.
3049 Then we can give better diagnostics if we find a non-type. */
3050 t
= lookup_field (context
, name
, 2, /*want_type=*/true);
3054 if ((!t
|| TREE_CODE (t
) == TREE_LIST
) && dependent_type_p (context
))
3055 return build_typename_type (context
, name
, fullname
, tag_type
);
3057 want_template
= TREE_CODE (fullname
) == TEMPLATE_ID_EXPR
;
3061 if (complain
& tf_error
)
3062 error (want_template
? "no class template named %q#T in %q#T"
3063 : "no type named %q#T in %q#T", name
, context
);
3064 return error_mark_node
;
3067 /* Pull out the template from an injected-class-name (or multiple). */
3069 t
= maybe_get_template_decl_from_type_decl (t
);
3071 if (TREE_CODE (t
) == TREE_LIST
)
3073 if (complain
& tf_error
)
3075 error ("lookup of %qT in %qT is ambiguous", name
, context
);
3076 print_candidates (t
);
3078 return error_mark_node
;
3081 if (want_template
&& !DECL_CLASS_TEMPLATE_P (t
))
3083 if (complain
& tf_error
)
3084 error ("%<typename %T::%D%> names %q#T, which is not a class template",
3086 return error_mark_node
;
3088 if (!want_template
&& TREE_CODE (t
) != TYPE_DECL
)
3090 if (complain
& tf_error
)
3091 error ("%<typename %T::%D%> names %q#T, which is not a type",
3093 return error_mark_node
;
3096 if (complain
& tf_error
)
3097 perform_or_defer_access_check (TYPE_BINFO (context
), t
, t
);
3099 /* If we are currently parsing a template and if T is a typedef accessed
3100 through CONTEXT then we need to remember and check access of T at
3101 template instantiation time. */
3102 add_typedef_to_current_template_for_access_check (t
, context
, input_location
);
3105 return lookup_template_class (t
, TREE_OPERAND (fullname
, 1),
3107 /*entering_scope=*/0,
3108 tf_warning_or_error
| tf_user
);
3110 if (DECL_ARTIFICIAL (t
) || !(complain
& tf_keep_type_decl
))
3116 /* Resolve `CONTEXT::template NAME'. Returns a TEMPLATE_DECL if the name
3117 can be resolved or an UNBOUND_CLASS_TEMPLATE, unless an error occurs,
3118 in which case error_mark_node is returned.
3120 If PARM_LIST is non-NULL, also make sure that the template parameter
3121 list of TEMPLATE_DECL matches.
3123 If COMPLAIN zero, don't complain about any errors that occur. */
3126 make_unbound_class_template (tree context
, tree name
, tree parm_list
,
3127 tsubst_flags_t complain
)
3133 name
= TYPE_IDENTIFIER (name
);
3134 else if (DECL_P (name
))
3135 name
= DECL_NAME (name
);
3136 gcc_assert (TREE_CODE (name
) == IDENTIFIER_NODE
);
3138 if (!dependent_type_p (context
)
3139 || currently_open_class (context
))
3141 tree tmpl
= NULL_TREE
;
3143 if (MAYBE_CLASS_TYPE_P (context
))
3144 tmpl
= lookup_field (context
, name
, 0, false);
3146 if (!tmpl
|| !DECL_CLASS_TEMPLATE_P (tmpl
))
3148 if (complain
& tf_error
)
3149 error ("no class template named %q#T in %q#T", name
, context
);
3150 return error_mark_node
;
3154 && !comp_template_parms (DECL_TEMPLATE_PARMS (tmpl
), parm_list
))
3156 if (complain
& tf_error
)
3158 error ("template parameters do not match template");
3159 error ("%q+D declared here", tmpl
);
3161 return error_mark_node
;
3164 if (complain
& tf_error
)
3165 perform_or_defer_access_check (TYPE_BINFO (context
), tmpl
, tmpl
);
3170 /* Build the UNBOUND_CLASS_TEMPLATE. */
3171 t
= cxx_make_type (UNBOUND_CLASS_TEMPLATE
);
3172 TYPE_CONTEXT (t
) = FROB_CONTEXT (context
);
3173 TREE_TYPE (t
) = NULL_TREE
;
3174 SET_TYPE_STRUCTURAL_EQUALITY (t
);
3176 /* Build the corresponding TEMPLATE_DECL. */
3177 d
= build_decl (input_location
, TEMPLATE_DECL
, name
, t
);
3178 TYPE_NAME (TREE_TYPE (d
)) = d
;
3179 TYPE_STUB_DECL (TREE_TYPE (d
)) = d
;
3180 DECL_CONTEXT (d
) = FROB_CONTEXT (context
);
3181 DECL_ARTIFICIAL (d
) = 1;
3182 DECL_TEMPLATE_PARMS (d
) = parm_list
;
3189 /* Push the declarations of builtin types into the namespace.
3190 RID_INDEX is the index of the builtin type in the array
3191 RID_POINTERS. NAME is the name used when looking up the builtin
3192 type. TYPE is the _TYPE node for the builtin type. */
3195 record_builtin_type (enum rid rid_index
,
3199 tree rname
= NULL_TREE
, tname
= NULL_TREE
;
3200 tree tdecl
= NULL_TREE
;
3202 if ((int) rid_index
< (int) RID_MAX
)
3203 rname
= ridpointers
[(int) rid_index
];
3205 tname
= get_identifier (name
);
3207 /* The calls to SET_IDENTIFIER_GLOBAL_VALUE below should be
3208 eliminated. Built-in types should not be looked up name; their
3209 names are keywords that the parser can recognize. However, there
3210 is code in c-common.c that uses identifier_global_value to look
3211 up built-in types by name. */
3214 tdecl
= build_decl (BUILTINS_LOCATION
, TYPE_DECL
, tname
, type
);
3215 DECL_ARTIFICIAL (tdecl
) = 1;
3216 SET_IDENTIFIER_GLOBAL_VALUE (tname
, tdecl
);
3222 tdecl
= build_decl (BUILTINS_LOCATION
, TYPE_DECL
, rname
, type
);
3223 DECL_ARTIFICIAL (tdecl
) = 1;
3225 SET_IDENTIFIER_GLOBAL_VALUE (rname
, tdecl
);
3228 if (!TYPE_NAME (type
))
3229 TYPE_NAME (type
) = tdecl
;
3232 debug_hooks
->type_decl (tdecl
, 0);
3235 /* Record one of the standard Java types.
3236 * Declare it as having the given NAME.
3237 * If SIZE > 0, it is the size of one of the integral types;
3238 * otherwise it is the negative of the size of one of the other types. */
3241 record_builtin_java_type (const char* name
, int size
)
3245 type
= build_nonstandard_integer_type (size
, 0);
3246 else if (size
> -32)
3249 /* "__java_char" or ""__java_boolean". */
3250 type
= build_nonstandard_integer_type (-size
, 1);
3251 /* Get the signed type cached and attached to the unsigned type,
3252 so it doesn't get garbage-collected at "random" times,
3253 causing potential codegen differences out of different UIDs
3254 and different alias set numbers. */
3255 stype
= build_nonstandard_integer_type (-size
, 0);
3256 TREE_CHAIN (type
) = stype
;
3257 /*if (size == -1) TREE_SET_CODE (type, BOOLEAN_TYPE);*/
3260 { /* "__java_float" or ""__java_double". */
3261 type
= make_node (REAL_TYPE
);
3262 TYPE_PRECISION (type
) = - size
;
3265 record_builtin_type (RID_MAX
, name
, type
);
3266 decl
= TYPE_NAME (type
);
3268 /* Suppress generate debug symbol entries for these types,
3269 since for normal C++ they are just clutter.
3270 However, push_lang_context undoes this if extern "Java" is seen. */
3271 DECL_IGNORED_P (decl
) = 1;
3273 TYPE_FOR_JAVA (type
) = 1;
3277 /* Push a type into the namespace so that the back ends ignore it. */
3280 record_unknown_type (tree type
, const char* name
)
3282 tree decl
= pushdecl (build_decl (UNKNOWN_LOCATION
,
3283 TYPE_DECL
, get_identifier (name
), type
));
3284 /* Make sure the "unknown type" typedecl gets ignored for debug info. */
3285 DECL_IGNORED_P (decl
) = 1;
3286 TYPE_DECL_SUPPRESS_DEBUG (decl
) = 1;
3287 TYPE_SIZE (type
) = TYPE_SIZE (void_type_node
);
3288 TYPE_ALIGN (type
) = 1;
3289 TYPE_USER_ALIGN (type
) = 0;
3290 SET_TYPE_MODE (type
, TYPE_MODE (void_type_node
));
3293 /* A string for which we should create an IDENTIFIER_NODE at
3296 typedef struct predefined_identifier
3298 /* The name of the identifier. */
3299 const char *const name
;
3300 /* The place where the IDENTIFIER_NODE should be stored. */
3302 /* Nonzero if this is the name of a constructor or destructor. */
3303 const int ctor_or_dtor_p
;
3304 } predefined_identifier
;
3306 /* Create all the predefined identifiers. */
3309 initialize_predefined_identifiers (void)
3311 const predefined_identifier
*pid
;
3313 /* A table of identifiers to create at startup. */
3314 static const predefined_identifier predefined_identifiers
[] = {
3315 { "C++", &lang_name_cplusplus
, 0 },
3316 { "C", &lang_name_c
, 0 },
3317 { "Java", &lang_name_java
, 0 },
3318 /* Some of these names have a trailing space so that it is
3319 impossible for them to conflict with names written by users. */
3320 { "__ct ", &ctor_identifier
, 1 },
3321 { "__base_ctor ", &base_ctor_identifier
, 1 },
3322 { "__comp_ctor ", &complete_ctor_identifier
, 1 },
3323 { "__dt ", &dtor_identifier
, 1 },
3324 { "__comp_dtor ", &complete_dtor_identifier
, 1 },
3325 { "__base_dtor ", &base_dtor_identifier
, 1 },
3326 { "__deleting_dtor ", &deleting_dtor_identifier
, 1 },
3327 { IN_CHARGE_NAME
, &in_charge_identifier
, 0 },
3328 { "nelts", &nelts_identifier
, 0 },
3329 { THIS_NAME
, &this_identifier
, 0 },
3330 { VTABLE_DELTA_NAME
, &delta_identifier
, 0 },
3331 { VTABLE_PFN_NAME
, &pfn_identifier
, 0 },
3332 { "_vptr", &vptr_identifier
, 0 },
3333 { "__vtt_parm", &vtt_parm_identifier
, 0 },
3334 { "::", &global_scope_name
, 0 },
3335 { "std", &std_identifier
, 0 },
3339 for (pid
= predefined_identifiers
; pid
->name
; ++pid
)
3341 *pid
->node
= get_identifier (pid
->name
);
3342 if (pid
->ctor_or_dtor_p
)
3343 IDENTIFIER_CTOR_OR_DTOR_P (*pid
->node
) = 1;
3347 /* Create the predefined scalar types of C,
3348 and some nodes representing standard constants (0, 1, (void *)0).
3349 Initialize the global binding level.
3350 Make definitions for built-in primitive functions. */
3353 cxx_init_decl_processing (void)
3356 tree void_ftype_ptr
;
3358 build_common_tree_nodes (flag_signed_char
, false);
3360 /* Create all the identifiers we need. */
3361 initialize_predefined_identifiers ();
3363 /* Create the global variables. */
3364 push_to_top_level ();
3366 current_function_decl
= NULL_TREE
;
3367 current_binding_level
= NULL
;
3368 /* Enter the global namespace. */
3369 gcc_assert (global_namespace
== NULL_TREE
);
3370 global_namespace
= build_lang_decl (NAMESPACE_DECL
, global_scope_name
,
3372 TREE_PUBLIC (global_namespace
) = 1;
3373 begin_scope (sk_namespace
, global_namespace
);
3375 current_lang_name
= NULL_TREE
;
3377 if (flag_visibility_ms_compat
)
3378 default_visibility
= VISIBILITY_HIDDEN
;
3381 current_lang_name
= lang_name_c
;
3383 /* Create the `std' namespace. */
3384 push_namespace (std_identifier
);
3385 std_node
= current_namespace
;
3388 c_common_nodes_and_builtins ();
3390 java_byte_type_node
= record_builtin_java_type ("__java_byte", 8);
3391 java_short_type_node
= record_builtin_java_type ("__java_short", 16);
3392 java_int_type_node
= record_builtin_java_type ("__java_int", 32);
3393 java_long_type_node
= record_builtin_java_type ("__java_long", 64);
3394 java_float_type_node
= record_builtin_java_type ("__java_float", -32);
3395 java_double_type_node
= record_builtin_java_type ("__java_double", -64);
3396 java_char_type_node
= record_builtin_java_type ("__java_char", -16);
3397 java_boolean_type_node
= record_builtin_java_type ("__java_boolean", -1);
3399 integer_two_node
= build_int_cst (NULL_TREE
, 2);
3400 integer_three_node
= build_int_cst (NULL_TREE
, 3);
3402 record_builtin_type (RID_BOOL
, "bool", boolean_type_node
);
3403 truthvalue_type_node
= boolean_type_node
;
3404 truthvalue_false_node
= boolean_false_node
;
3405 truthvalue_true_node
= boolean_true_node
;
3407 empty_except_spec
= build_tree_list (NULL_TREE
, NULL_TREE
);
3410 record_builtin_type (RID_MAX
, NULL
, string_type_node
);
3413 delta_type_node
= ptrdiff_type_node
;
3414 vtable_index_type
= ptrdiff_type_node
;
3416 vtt_parm_type
= build_pointer_type (const_ptr_type_node
);
3417 void_ftype
= build_function_type (void_type_node
, void_list_node
);
3418 void_ftype_ptr
= build_function_type (void_type_node
,
3419 tree_cons (NULL_TREE
,
3423 = build_exception_variant (void_ftype_ptr
, empty_except_spec
);
3425 /* C++ extensions */
3427 unknown_type_node
= make_node (UNKNOWN_TYPE
);
3428 record_unknown_type (unknown_type_node
, "unknown type");
3430 /* Indirecting an UNKNOWN_TYPE node yields an UNKNOWN_TYPE node. */
3431 TREE_TYPE (unknown_type_node
) = unknown_type_node
;
3433 /* Looking up TYPE_POINTER_TO and TYPE_REFERENCE_TO yield the same
3435 TYPE_POINTER_TO (unknown_type_node
) = unknown_type_node
;
3436 TYPE_REFERENCE_TO (unknown_type_node
) = unknown_type_node
;
3438 init_list_type_node
= make_node (UNKNOWN_TYPE
);
3439 record_unknown_type (init_list_type_node
, "init list");
3442 /* Make sure we get a unique function type, so we can give
3443 its pointer type a name. (This wins for gdb.) */
3444 tree vfunc_type
= make_node (FUNCTION_TYPE
);
3445 TREE_TYPE (vfunc_type
) = integer_type_node
;
3446 TYPE_ARG_TYPES (vfunc_type
) = NULL_TREE
;
3447 layout_type (vfunc_type
);
3449 vtable_entry_type
= build_pointer_type (vfunc_type
);
3451 record_builtin_type (RID_MAX
, VTBL_PTR_TYPE
, vtable_entry_type
);
3454 = build_cplus_array_type (vtable_entry_type
, NULL_TREE
);
3455 layout_type (vtbl_type_node
);
3456 vtbl_type_node
= build_qualified_type (vtbl_type_node
, TYPE_QUAL_CONST
);
3457 record_builtin_type (RID_MAX
, NULL
, vtbl_type_node
);
3458 vtbl_ptr_type_node
= build_pointer_type (vtable_entry_type
);
3459 layout_type (vtbl_ptr_type_node
);
3460 record_builtin_type (RID_MAX
, NULL
, vtbl_ptr_type_node
);
3462 push_namespace (get_identifier ("__cxxabiv1"));
3463 abi_node
= current_namespace
;
3466 global_type_node
= make_node (LANG_TYPE
);
3467 record_unknown_type (global_type_node
, "global type");
3470 current_lang_name
= lang_name_cplusplus
;
3474 tree bad_alloc_type_node
;
3475 tree bad_alloc_decl
;
3476 tree newtype
, deltype
;
3477 tree ptr_ftype_sizetype
;
3479 push_namespace (std_identifier
);
3480 bad_alloc_id
= get_identifier ("bad_alloc");
3481 bad_alloc_type_node
= make_class_type (RECORD_TYPE
);
3482 TYPE_CONTEXT (bad_alloc_type_node
) = current_namespace
;
3484 = create_implicit_typedef (bad_alloc_id
, bad_alloc_type_node
);
3485 DECL_CONTEXT (bad_alloc_decl
) = current_namespace
;
3489 = build_function_type (ptr_type_node
,
3490 tree_cons (NULL_TREE
,
3493 newtype
= build_exception_variant
3494 (ptr_ftype_sizetype
, add_exception_specifier
3495 (NULL_TREE
, bad_alloc_type_node
, -1));
3496 deltype
= build_exception_variant (void_ftype_ptr
, empty_except_spec
);
3497 push_cp_library_fn (NEW_EXPR
, newtype
);
3498 push_cp_library_fn (VEC_NEW_EXPR
, newtype
);
3499 global_delete_fndecl
= push_cp_library_fn (DELETE_EXPR
, deltype
);
3500 push_cp_library_fn (VEC_DELETE_EXPR
, deltype
);
3504 = build_library_fn_ptr ("__cxa_pure_virtual", void_ftype
);
3506 /* Perform other language dependent initializations. */
3507 init_class_processing ();
3508 init_rtti_processing ();
3509 init_template_processing ();
3511 if (flag_exceptions
)
3512 init_exception_processing ();
3514 if (! supports_one_only ())
3517 make_fname_decl
= cp_make_fname_decl
;
3518 start_fname_decls ();
3520 /* Show we use EH for cleanups. */
3521 if (flag_exceptions
)
3522 using_eh_for_cleanups ();
3525 /* Generate an initializer for a function naming variable from
3526 NAME. NAME may be NULL, to indicate a dependent name. TYPE_P is
3527 filled in with the type of the init. */
3530 cp_fname_init (const char* name
, tree
*type_p
)
3532 tree domain
= NULL_TREE
;
3534 tree init
= NULL_TREE
;
3539 length
= strlen (name
);
3540 domain
= build_index_type (size_int (length
));
3541 init
= build_string (length
+ 1, name
);
3544 type
= build_qualified_type (char_type_node
, TYPE_QUAL_CONST
);
3545 type
= build_cplus_array_type (type
, domain
);
3550 TREE_TYPE (init
) = type
;
3552 init
= error_mark_node
;
3557 /* Create the VAR_DECL for __FUNCTION__ etc. ID is the name to give
3558 the decl, LOC is the location to give the decl, NAME is the
3559 initialization string and TYPE_DEP indicates whether NAME depended
3560 on the type of the function. We make use of that to detect
3561 __PRETTY_FUNCTION__ inside a template fn. This is being done lazily
3562 at the point of first use, so we mustn't push the decl now. */
3565 cp_make_fname_decl (location_t loc
, tree id
, int type_dep
)
3567 const char *const name
= (type_dep
&& processing_template_decl
3568 ? NULL
: fname_as_string (type_dep
));
3570 tree init
= cp_fname_init (name
, &type
);
3571 tree decl
= build_decl (loc
, VAR_DECL
, id
, type
);
3574 free (CONST_CAST (char *, name
));
3576 /* As we're using pushdecl_with_scope, we must set the context. */
3577 DECL_CONTEXT (decl
) = current_function_decl
;
3578 DECL_PRETTY_FUNCTION_P (decl
) = type_dep
;
3580 TREE_STATIC (decl
) = 1;
3581 TREE_READONLY (decl
) = 1;
3582 DECL_ARTIFICIAL (decl
) = 1;
3584 TREE_USED (decl
) = 1;
3586 if (current_function_decl
)
3588 struct cp_binding_level
*b
= current_binding_level
;
3589 while (b
->level_chain
->kind
!= sk_function_parms
)
3591 pushdecl_with_scope (decl
, b
, /*is_friend=*/false);
3592 cp_finish_decl (decl
, init
, /*init_const_expr_p=*/false, NULL_TREE
,
3593 LOOKUP_ONLYCONVERTING
);
3596 pushdecl_top_level_and_finish (decl
, init
);
3602 builtin_function_1 (tree decl
, tree context
, bool is_global
)
3604 tree id
= DECL_NAME (decl
);
3605 const char *name
= IDENTIFIER_POINTER (id
);
3607 retrofit_lang_decl (decl
);
3609 DECL_ARTIFICIAL (decl
) = 1;
3610 SET_OVERLOADED_OPERATOR_CODE (decl
, ERROR_MARK
);
3611 SET_DECL_LANGUAGE (decl
, lang_c
);
3612 /* Runtime library routines are, by definition, available in an
3613 external shared object. */
3614 DECL_VISIBILITY (decl
) = VISIBILITY_DEFAULT
;
3615 DECL_VISIBILITY_SPECIFIED (decl
) = 1;
3617 DECL_CONTEXT (decl
) = context
;
3620 pushdecl_top_level (decl
);
3624 /* A function in the user's namespace should have an explicit
3625 declaration before it is used. Mark the built-in function as
3626 anticipated but not actually declared. */
3627 if (name
[0] != '_' || name
[1] != '_')
3628 DECL_ANTICIPATED (decl
) = 1;
3629 else if (strncmp (name
+ 2, "builtin_", strlen ("builtin_")) != 0)
3631 size_t len
= strlen (name
);
3633 /* Treat __*_chk fortification functions as anticipated as well,
3634 unless they are __builtin_*. */
3635 if (len
> strlen ("___chk")
3636 && memcmp (name
+ len
- strlen ("_chk"),
3637 "_chk", strlen ("_chk") + 1) == 0)
3638 DECL_ANTICIPATED (decl
) = 1;
3645 cxx_builtin_function (tree decl
)
3647 tree id
= DECL_NAME (decl
);
3648 const char *name
= IDENTIFIER_POINTER (id
);
3649 /* All builtins that don't begin with an '_' should additionally
3650 go in the 'std' namespace. */
3653 tree decl2
= copy_node(decl
);
3654 push_namespace (std_identifier
);
3655 builtin_function_1 (decl2
, std_node
, false);
3659 return builtin_function_1 (decl
, NULL_TREE
, false);
3662 /* Like cxx_builtin_function, but guarantee the function is added to the global
3663 scope. This is to allow function specific options to add new machine
3664 dependent builtins when the target ISA changes via attribute((target(...)))
3665 which saves space on program startup if the program does not use non-generic
3669 cxx_builtin_function_ext_scope (tree decl
)
3672 tree id
= DECL_NAME (decl
);
3673 const char *name
= IDENTIFIER_POINTER (id
);
3674 /* All builtins that don't begin with an '_' should additionally
3675 go in the 'std' namespace. */
3678 tree decl2
= copy_node(decl
);
3679 push_namespace (std_identifier
);
3680 builtin_function_1 (decl2
, std_node
, true);
3684 return builtin_function_1 (decl
, NULL_TREE
, true);
3687 /* Generate a FUNCTION_DECL with the typical flags for a runtime library
3688 function. Not called directly. */
3691 build_library_fn_1 (tree name
, enum tree_code operator_code
, tree type
)
3693 tree fn
= build_lang_decl (FUNCTION_DECL
, name
, type
);
3694 DECL_EXTERNAL (fn
) = 1;
3695 TREE_PUBLIC (fn
) = 1;
3696 DECL_ARTIFICIAL (fn
) = 1;
3697 SET_OVERLOADED_OPERATOR_CODE (fn
, operator_code
);
3698 SET_DECL_LANGUAGE (fn
, lang_c
);
3699 /* Runtime library routines are, by definition, available in an
3700 external shared object. */
3701 DECL_VISIBILITY (fn
) = VISIBILITY_DEFAULT
;
3702 DECL_VISIBILITY_SPECIFIED (fn
) = 1;
3706 /* Returns the _DECL for a library function with C linkage.
3707 We assume that such functions never throw; if this is incorrect,
3708 callers should unset TREE_NOTHROW. */
3711 build_library_fn (tree name
, tree type
)
3713 tree fn
= build_library_fn_1 (name
, ERROR_MARK
, type
);
3714 TREE_NOTHROW (fn
) = 1;
3718 /* Returns the _DECL for a library function with C++ linkage. */
3721 build_cp_library_fn (tree name
, enum tree_code operator_code
, tree type
)
3723 tree fn
= build_library_fn_1 (name
, operator_code
, type
);
3724 TREE_NOTHROW (fn
) = TYPE_NOTHROW_P (type
);
3725 DECL_CONTEXT (fn
) = FROB_CONTEXT (current_namespace
);
3726 SET_DECL_LANGUAGE (fn
, lang_cplusplus
);
3730 /* Like build_library_fn, but takes a C string instead of an
3734 build_library_fn_ptr (const char* name
, tree type
)
3736 return build_library_fn (get_identifier (name
), type
);
3739 /* Like build_cp_library_fn, but takes a C string instead of an
3743 build_cp_library_fn_ptr (const char* name
, tree type
)
3745 return build_cp_library_fn (get_identifier (name
), ERROR_MARK
, type
);
3748 /* Like build_library_fn, but also pushes the function so that we will
3749 be able to find it via IDENTIFIER_GLOBAL_VALUE. Also, the function
3750 may throw exceptions listed in RAISES. */
3753 push_library_fn (tree name
, tree type
, tree raises
)
3758 type
= build_exception_variant (type
, raises
);
3760 fn
= build_library_fn (name
, type
);
3761 pushdecl_top_level (fn
);
3765 /* Like build_cp_library_fn, but also pushes the function so that it
3766 will be found by normal lookup. */
3769 push_cp_library_fn (enum tree_code operator_code
, tree type
)
3771 tree fn
= build_cp_library_fn (ansi_opname (operator_code
),
3778 /* Like push_library_fn, but takes a TREE_LIST of parm types rather than
3782 push_void_library_fn (tree name
, tree parmtypes
)
3784 tree type
= build_function_type (void_type_node
, parmtypes
);
3785 return push_library_fn (name
, type
, NULL_TREE
);
3788 /* Like push_library_fn, but also note that this function throws
3789 and does not return. Used for __throw_foo and the like. */
3792 push_throw_library_fn (tree name
, tree type
)
3794 tree fn
= push_library_fn (name
, type
, NULL_TREE
);
3795 TREE_THIS_VOLATILE (fn
) = 1;
3796 TREE_NOTHROW (fn
) = 0;
3800 /* When we call finish_struct for an anonymous union, we create
3801 default copy constructors and such. But, an anonymous union
3802 shouldn't have such things; this function undoes the damage to the
3803 anonymous union type T.
3805 (The reason that we create the synthesized methods is that we don't
3806 distinguish `union { int i; }' from `typedef union { int i; } U'.
3807 The first is an anonymous union; the second is just an ordinary
3811 fixup_anonymous_aggr (tree t
)
3815 /* Wipe out memory of synthesized methods. */
3816 TYPE_HAS_USER_CONSTRUCTOR (t
) = 0;
3817 TYPE_HAS_DEFAULT_CONSTRUCTOR (t
) = 0;
3818 TYPE_HAS_INIT_REF (t
) = 0;
3819 TYPE_HAS_CONST_INIT_REF (t
) = 0;
3820 TYPE_HAS_ASSIGN_REF (t
) = 0;
3821 TYPE_HAS_CONST_ASSIGN_REF (t
) = 0;
3823 /* Splice the implicitly generated functions out of the TYPE_METHODS
3825 q
= &TYPE_METHODS (t
);
3828 if (DECL_ARTIFICIAL (*q
))
3829 *q
= TREE_CHAIN (*q
);
3831 q
= &TREE_CHAIN (*q
);
3834 /* ISO C++ 9.5.3. Anonymous unions may not have function members. */
3835 if (TYPE_METHODS (t
))
3837 tree decl
= TYPE_MAIN_DECL (t
);
3839 if (TREE_CODE (t
) != UNION_TYPE
)
3840 error_at (DECL_SOURCE_LOCATION (decl
),
3841 "an anonymous struct cannot have function members");
3843 error_at (DECL_SOURCE_LOCATION (decl
),
3844 "an anonymous union cannot have function members");
3847 /* Anonymous aggregates cannot have fields with ctors, dtors or complex
3848 assignment operators (because they cannot have these methods themselves).
3849 For anonymous unions this is already checked because they are not allowed
3850 in any union, otherwise we have to check it. */
3851 if (TREE_CODE (t
) != UNION_TYPE
)
3855 for (field
= TYPE_FIELDS (t
); field
; field
= TREE_CHAIN (field
))
3856 if (TREE_CODE (field
) == FIELD_DECL
)
3858 type
= TREE_TYPE (field
);
3859 if (CLASS_TYPE_P (type
))
3861 if (TYPE_NEEDS_CONSTRUCTING (type
))
3862 error ("member %q+#D with constructor not allowed "
3863 "in anonymous aggregate", field
);
3864 if (TYPE_HAS_NONTRIVIAL_DESTRUCTOR (type
))
3865 error ("member %q+#D with destructor not allowed "
3866 "in anonymous aggregate", field
);
3867 if (TYPE_HAS_COMPLEX_ASSIGN_REF (type
))
3868 error ("member %q+#D with copy assignment operator "
3869 "not allowed in anonymous aggregate", field
);
3875 /* Make sure that a declaration with no declarator is well-formed, i.e.
3876 just declares a tagged type or anonymous union.
3878 Returns the type declared; or NULL_TREE if none. */
3881 check_tag_decl (cp_decl_specifier_seq
*declspecs
)
3883 int saw_friend
= declspecs
->specs
[(int)ds_friend
] != 0;
3884 int saw_typedef
= declspecs
->specs
[(int)ds_typedef
] != 0;
3885 /* If a class, struct, or enum type is declared by the DECLSPECS
3886 (i.e, if a class-specifier, enum-specifier, or non-typename
3887 elaborated-type-specifier appears in the DECLSPECS),
3888 DECLARED_TYPE is set to the corresponding type. */
3889 tree declared_type
= NULL_TREE
;
3890 bool error_p
= false;
3892 if (declspecs
->multiple_types_p
)
3893 error ("multiple types in one declaration");
3894 else if (declspecs
->redefined_builtin_type
)
3896 if (!in_system_header
)
3897 permerror (input_location
, "redeclaration of C++ built-in type %qT",
3898 declspecs
->redefined_builtin_type
);
3903 && TYPE_P (declspecs
->type
)
3904 && ((TREE_CODE (declspecs
->type
) != TYPENAME_TYPE
3905 && MAYBE_CLASS_TYPE_P (declspecs
->type
))
3906 || TREE_CODE (declspecs
->type
) == ENUMERAL_TYPE
))
3907 declared_type
= declspecs
->type
;
3908 else if (declspecs
->type
== error_mark_node
)
3910 if (declared_type
== NULL_TREE
&& ! saw_friend
&& !error_p
)
3911 permerror (input_location
, "declaration does not declare anything");
3912 /* Check for an anonymous union. */
3913 else if (declared_type
&& RECORD_OR_UNION_CODE_P (TREE_CODE (declared_type
))
3914 && TYPE_ANONYMOUS_P (declared_type
))
3916 /* 7/3 In a simple-declaration, the optional init-declarator-list
3917 can be omitted only when declaring a class (clause 9) or
3918 enumeration (7.2), that is, when the decl-specifier-seq contains
3919 either a class-specifier, an elaborated-type-specifier with
3920 a class-key (9.1), or an enum-specifier. In these cases and
3921 whenever a class-specifier or enum-specifier is present in the
3922 decl-specifier-seq, the identifiers in these specifiers are among
3923 the names being declared by the declaration (as class-name,
3924 enum-names, or enumerators, depending on the syntax). In such
3925 cases, and except for the declaration of an unnamed bit-field (9.6),
3926 the decl-specifier-seq shall introduce one or more names into the
3927 program, or shall redeclare a name introduced by a previous
3928 declaration. [Example:
3929 enum { }; // ill-formed
3930 typedef class { }; // ill-formed
3934 error ("missing type-name in typedef-declaration");
3937 /* Anonymous unions are objects, so they can have specifiers. */;
3938 SET_ANON_AGGR_TYPE_P (declared_type
);
3940 if (TREE_CODE (declared_type
) != UNION_TYPE
&& !in_system_header
)
3941 pedwarn (input_location
, OPT_pedantic
, "ISO C++ prohibits anonymous structs");
3946 if (declspecs
->specs
[(int)ds_inline
]
3947 || declspecs
->specs
[(int)ds_virtual
])
3948 error ("%qs can only be specified for functions",
3949 declspecs
->specs
[(int)ds_inline
]
3950 ? "inline" : "virtual");
3952 && (!current_class_type
3953 || current_scope () != current_class_type
))
3954 error ("%<friend%> can only be specified inside a class");
3955 else if (declspecs
->specs
[(int)ds_explicit
])
3956 error ("%<explicit%> can only be specified for constructors");
3957 else if (declspecs
->storage_class
)
3958 error ("a storage class can only be specified for objects "
3960 else if (declspecs
->specs
[(int)ds_const
]
3961 || declspecs
->specs
[(int)ds_volatile
]
3962 || declspecs
->specs
[(int)ds_restrict
]
3963 || declspecs
->specs
[(int)ds_thread
])
3964 error ("qualifiers can only be specified for objects "
3966 else if (saw_typedef
)
3967 warning (0, "%<typedef%> was ignored in this declaration");
3968 else if (declspecs
->specs
[(int) ds_constexpr
])
3969 error ("%<constexpr> cannot be used for type declarations");
3972 return declared_type
;
3975 /* Called when a declaration is seen that contains no names to declare.
3976 If its type is a reference to a structure, union or enum inherited
3977 from a containing scope, shadow that tag name for the current scope
3978 with a forward reference.
3979 If its type defines a new named structure or union
3980 or defines an enum, it is valid but we need not do anything here.
3981 Otherwise, it is an error.
3983 C++: may have to grok the declspecs to learn about static,
3984 complain for anonymous unions.
3986 Returns the TYPE declared -- or NULL_TREE if none. */
3989 shadow_tag (cp_decl_specifier_seq
*declspecs
)
3991 tree t
= check_tag_decl (declspecs
);
3996 if (declspecs
->attributes
)
3998 warning (0, "attribute ignored in declaration of %q+#T", t
);
3999 warning (0, "attribute for %q+#T must follow the %qs keyword",
4000 t
, class_key_or_enum_as_string (t
));
4004 if (maybe_process_partial_specialization (t
) == error_mark_node
)
4007 /* This is where the variables in an anonymous union are
4008 declared. An anonymous union declaration looks like:
4010 because there is no declarator after the union, the parser
4011 sends that declaration here. */
4012 if (ANON_AGGR_TYPE_P (t
))
4014 fixup_anonymous_aggr (t
);
4016 if (TYPE_FIELDS (t
))
4018 tree decl
= grokdeclarator (/*declarator=*/NULL
,
4019 declspecs
, NORMAL
, 0, NULL
);
4020 finish_anon_union (decl
);
4027 /* Decode a "typename", such as "int **", returning a ..._TYPE node. */
4030 groktypename (cp_decl_specifier_seq
*type_specifiers
,
4031 const cp_declarator
*declarator
,
4032 bool is_template_arg
)
4036 enum decl_context context
4037 = is_template_arg
? TEMPLATE_TYPE_ARG
: TYPENAME
;
4038 attrs
= type_specifiers
->attributes
;
4039 type_specifiers
->attributes
= NULL_TREE
;
4040 type
= grokdeclarator (declarator
, type_specifiers
, context
, 0, &attrs
);
4041 if (attrs
&& type
!= error_mark_node
)
4043 if (CLASS_TYPE_P (type
))
4044 warning (OPT_Wattributes
, "ignoring attributes applied to class type %qT "
4045 "outside of definition", type
);
4046 else if (MAYBE_CLASS_TYPE_P (type
))
4047 /* A template type parameter or other dependent type. */
4048 warning (OPT_Wattributes
, "ignoring attributes applied to dependent "
4049 "type %qT without an associated declaration", type
);
4051 cplus_decl_attributes (&type
, attrs
, 0);
4056 /* Process a DECLARATOR for a function-scope variable declaration,
4057 namespace-scope variable declaration, or function declaration.
4058 (Function definitions go through start_function; class member
4059 declarations appearing in the body of the class go through
4060 grokfield.) The DECL corresponding to the DECLARATOR is returned.
4061 If an error occurs, the error_mark_node is returned instead.
4063 DECLSPECS are the decl-specifiers for the declaration. INITIALIZED is
4064 SD_INITIALIZED if an explicit initializer is present, or SD_DEFAULTED
4065 for an explicitly defaulted function, or SD_DELETED for an explicitly
4066 deleted function, but 0 (SD_UNINITIALIZED) if this is a variable
4067 implicitly initialized via a default constructor. ATTRIBUTES and
4068 PREFIX_ATTRIBUTES are GNU attributes associated with this declaration.
4069 *PUSHED_SCOPE_P is set to the scope entered in this function, if any; if
4070 set, the caller is responsible for calling pop_scope. */
4073 start_decl (const cp_declarator
*declarator
,
4074 cp_decl_specifier_seq
*declspecs
,
4077 tree prefix_attributes
,
4078 tree
*pushed_scope_p
)
4085 *pushed_scope_p
= NULL_TREE
;
4087 /* An object declared as __attribute__((deprecated)) suppresses
4088 warnings of uses of other deprecated items. */
4089 if (lookup_attribute ("deprecated", attributes
))
4090 deprecated_state
= DEPRECATED_SUPPRESS
;
4092 attributes
= chainon (attributes
, prefix_attributes
);
4094 decl
= grokdeclarator (declarator
, declspecs
, NORMAL
, initialized
,
4097 deprecated_state
= DEPRECATED_NORMAL
;
4099 if (decl
== NULL_TREE
|| TREE_CODE (decl
) == VOID_TYPE
4100 || decl
== error_mark_node
)
4101 return error_mark_node
;
4103 context
= DECL_CONTEXT (decl
);
4107 *pushed_scope_p
= push_scope (context
);
4109 /* We are only interested in class contexts, later. */
4110 if (TREE_CODE (context
) == NAMESPACE_DECL
)
4111 context
= NULL_TREE
;
4115 /* Is it valid for this decl to have an initializer at all?
4116 If not, set INITIALIZED to zero, which will indirectly
4117 tell `cp_finish_decl' to ignore the initializer once it is parsed. */
4118 switch (TREE_CODE (decl
))
4121 error ("typedef %qD is initialized (use decltype instead)", decl
);
4122 return error_mark_node
;
4125 if (initialized
== SD_DELETED
)
4126 /* We'll handle the rest of the semantics later, but we need to
4127 set this now so it's visible to duplicate_decls. */
4128 DECL_DELETED_FN (decl
) = 1;
4137 if (! toplevel_bindings_p ()
4138 && DECL_EXTERNAL (decl
))
4139 warning (0, "declaration of %q#D has %<extern%> and is initialized",
4141 DECL_EXTERNAL (decl
) = 0;
4142 if (toplevel_bindings_p ())
4143 TREE_STATIC (decl
) = 1;
4146 /* If this is a typedef that names the class for linkage purposes
4147 (7.1.3p8), apply any attributes directly to the type. */
4148 if (TREE_CODE (decl
) == TYPE_DECL
4149 && TAGGED_TYPE_P (TREE_TYPE (decl
))
4150 && decl
== TYPE_NAME (TYPE_MAIN_VARIANT (TREE_TYPE (decl
))))
4151 flags
= ATTR_FLAG_TYPE_IN_PLACE
;
4155 /* Set attributes here so if duplicate decl, will have proper attributes. */
4156 cplus_decl_attributes (&decl
, attributes
, flags
);
4158 /* Dllimported symbols cannot be defined. Static data members (which
4159 can be initialized in-class and dllimported) go through grokfield,
4160 not here, so we don't need to exclude those decls when checking for
4162 if (initialized
&& DECL_DLLIMPORT_P (decl
))
4164 error ("definition of %q#D is marked %<dllimport%>", decl
);
4165 DECL_DLLIMPORT_P (decl
) = 0;
4168 /* If #pragma weak was used, mark the decl weak now. */
4169 maybe_apply_pragma_weak (decl
);
4171 if (TREE_CODE (decl
) == FUNCTION_DECL
4172 && DECL_DECLARED_INLINE_P (decl
)
4173 && DECL_UNINLINABLE (decl
)
4174 && lookup_attribute ("noinline", DECL_ATTRIBUTES (decl
)))
4175 warning (0, "inline function %q+D given attribute noinline", decl
);
4177 if (context
&& COMPLETE_TYPE_P (complete_type (context
)))
4179 if (TREE_CODE (decl
) == VAR_DECL
)
4181 tree field
= lookup_field (context
, DECL_NAME (decl
), 0, false);
4182 if (field
== NULL_TREE
|| TREE_CODE (field
) != VAR_DECL
)
4183 error ("%q#D is not a static member of %q#T", decl
, context
);
4186 if (DECL_CONTEXT (field
) != context
)
4188 if (!same_type_p (DECL_CONTEXT (field
), context
))
4189 permerror (input_location
, "ISO C++ does not permit %<%T::%D%> "
4190 "to be defined as %<%T::%D%>",
4191 DECL_CONTEXT (field
), DECL_NAME (decl
),
4192 context
, DECL_NAME (decl
));
4193 DECL_CONTEXT (decl
) = DECL_CONTEXT (field
);
4195 if (processing_specialization
4196 && template_class_depth (context
) == 0
4197 && CLASSTYPE_TEMPLATE_SPECIALIZATION (context
))
4198 error ("template header not allowed in member definition "
4199 "of explicitly specialized class");
4200 /* Static data member are tricky; an in-class initialization
4201 still doesn't provide a definition, so the in-class
4202 declaration will have DECL_EXTERNAL set, but will have an
4203 initialization. Thus, duplicate_decls won't warn
4204 about this situation, and so we check here. */
4205 if (initialized
&& DECL_INITIALIZED_IN_CLASS_P (field
))
4206 error ("duplicate initialization of %qD", decl
);
4207 if (duplicate_decls (decl
, field
, /*newdecl_is_friend=*/false))
4209 if (declspecs
->specs
[(int) ds_constexpr
]
4210 && !DECL_DECLARED_CONSTEXPR_P (field
))
4211 error ("%qD declared %<constexpr%> outside its class", field
);
4216 tree field
= check_classfn (context
, decl
,
4217 (processing_template_decl
4218 > template_class_depth (context
))
4219 ? current_template_parms
4221 if (field
&& field
!= error_mark_node
4222 && duplicate_decls (decl
, field
,
4223 /*newdecl_is_friend=*/false))
4227 /* cp_finish_decl sets DECL_EXTERNAL if DECL_IN_AGGR_P is set. */
4228 DECL_IN_AGGR_P (decl
) = 0;
4229 /* Do not mark DECL as an explicit specialization if it was not
4230 already marked as an instantiation; a declaration should
4231 never be marked as a specialization unless we know what
4232 template is being specialized. */
4233 if (DECL_LANG_SPECIFIC (decl
) && DECL_USE_TEMPLATE (decl
))
4235 SET_DECL_TEMPLATE_SPECIALIZATION (decl
);
4237 /* [temp.expl.spec] An explicit specialization of a static data
4238 member of a template is a definition if the declaration
4239 includes an initializer; otherwise, it is a declaration.
4241 We check for processing_specialization so this only applies
4242 to the new specialization syntax. */
4243 if (!initialized
&& processing_specialization
)
4244 DECL_EXTERNAL (decl
) = 1;
4247 if (DECL_EXTERNAL (decl
) && ! DECL_TEMPLATE_SPECIALIZATION (decl
))
4248 permerror (input_location
, "declaration of %q#D outside of class is not definition",
4251 if (!ensure_literal_type_for_constexpr_object (decl
))
4252 return error_mark_node
;
4255 was_public
= TREE_PUBLIC (decl
);
4257 /* Enter this declaration into the symbol table. */
4258 decl
= maybe_push_decl (decl
);
4260 if (processing_template_decl
)
4261 decl
= push_template_decl (decl
);
4262 if (decl
== error_mark_node
)
4263 return error_mark_node
;
4265 /* Tell the back end to use or not use .common as appropriate. If we say
4266 -fconserve-space, we want this to save .data space, at the expense of
4267 wrong semantics. If we say -fno-conserve-space, we want this to
4268 produce errors about redefs; to do this we force variables into the
4270 if (flag_conserve_space
4271 && TREE_CODE (decl
) == VAR_DECL
4272 && TREE_PUBLIC (decl
)
4273 && !DECL_THREAD_LOCAL_P (decl
)
4274 && !have_global_bss_p ())
4275 DECL_COMMON (decl
) = 1;
4277 if (TREE_CODE (decl
) == VAR_DECL
4278 && DECL_NAMESPACE_SCOPE_P (decl
) && !TREE_PUBLIC (decl
) && !was_public
4279 && !DECL_THIS_STATIC (decl
) && !DECL_ARTIFICIAL (decl
))
4281 /* This is a const variable with implicit 'static'. Set
4282 DECL_THIS_STATIC so we can tell it from variables that are
4283 !TREE_PUBLIC because of the anonymous namespace. */
4284 gcc_assert (cp_type_readonly (TREE_TYPE (decl
)));
4285 DECL_THIS_STATIC (decl
) = 1;
4288 if (!processing_template_decl
&& TREE_CODE (decl
) == VAR_DECL
)
4289 start_decl_1 (decl
, initialized
);
4294 /* Process the declaration of a variable DECL. INITIALIZED is true
4295 iff DECL is explicitly initialized. (INITIALIZED is false if the
4296 variable is initialized via an implicitly-called constructor.)
4297 This function must be called for ordinary variables (including, for
4298 example, implicit instantiations of templates), but must not be
4299 called for template declarations. */
4302 start_decl_1 (tree decl
, bool initialized
)
4306 bool aggregate_definition_p
;
4308 gcc_assert (!processing_template_decl
);
4310 if (error_operand_p (decl
))
4313 gcc_assert (TREE_CODE (decl
) == VAR_DECL
);
4315 type
= TREE_TYPE (decl
);
4316 complete_p
= COMPLETE_TYPE_P (type
);
4317 aggregate_definition_p
= MAYBE_CLASS_TYPE_P (type
) && !DECL_EXTERNAL (decl
);
4319 /* If an explicit initializer is present, or if this is a definition
4320 of an aggregate, then we need a complete type at this point.
4321 (Scalars are always complete types, so there is nothing to
4322 check.) This code just sets COMPLETE_P; errors (if necessary)
4323 are issued below. */
4324 if ((initialized
|| aggregate_definition_p
)
4326 && COMPLETE_TYPE_P (complete_type (type
)))
4329 /* We will not yet have set TREE_READONLY on DECL if the type
4330 was "const", but incomplete, before this point. But, now, we
4331 have a complete type, so we can try again. */
4332 cp_apply_type_quals_to_decl (cp_type_quals (type
), decl
);
4336 /* Is it valid for this decl to have an initializer at all? */
4338 /* Don't allow initializations for incomplete types except for
4339 arrays which might be completed by the initialization. */
4341 ; /* A complete type is ok. */
4342 else if (type_uses_auto (type
))
4343 ; /* An auto type is ok. */
4344 else if (TREE_CODE (type
) != ARRAY_TYPE
)
4346 error ("variable %q#D has initializer but incomplete type", decl
);
4347 type
= TREE_TYPE (decl
) = error_mark_node
;
4349 else if (!COMPLETE_TYPE_P (complete_type (TREE_TYPE (type
))))
4351 if (DECL_LANG_SPECIFIC (decl
) && DECL_TEMPLATE_INFO (decl
))
4352 error ("elements of array %q#D have incomplete type", decl
);
4353 /* else we already gave an error in start_decl. */
4356 else if (aggregate_definition_p
&& !complete_p
)
4358 if (type_uses_auto (type
))
4359 error ("declaration of %q#D has no initializer", decl
);
4361 error ("aggregate %q#D has incomplete type and cannot be defined",
4363 /* Change the type so that assemble_variable will give
4364 DECL an rtl we can live with: (mem (const_int 0)). */
4365 type
= TREE_TYPE (decl
) = error_mark_node
;
4368 /* Create a new scope to hold this declaration if necessary.
4369 Whether or not a new scope is necessary cannot be determined
4370 until after the type has been completed; if the type is a
4371 specialization of a class template it is not until after
4372 instantiation has occurred that TYPE_HAS_NONTRIVIAL_DESTRUCTOR
4373 will be set correctly. */
4374 maybe_push_cleanup_level (type
);
4377 /* Handle initialization of references. DECL, TYPE, and INIT have the
4378 same meaning as in cp_finish_decl. *CLEANUP must be NULL on entry,
4379 but will be set to a new CLEANUP_STMT if a temporary is created
4380 that must be destroyed subsequently.
4382 Returns an initializer expression to use to initialize DECL, or
4383 NULL if the initialization can be performed statically.
4385 Quotes on semantics can be found in ARM 8.4.3. */
4388 grok_reference_init (tree decl
, tree type
, tree init
, tree
*cleanup
)
4392 if (init
== NULL_TREE
)
4394 if ((DECL_LANG_SPECIFIC (decl
) == 0
4395 || DECL_IN_AGGR_P (decl
) == 0)
4396 && ! DECL_THIS_EXTERN (decl
))
4397 error ("%qD declared as reference but not initialized", decl
);
4401 if (TREE_CODE (init
) == TREE_LIST
)
4402 init
= build_x_compound_expr_from_list (init
, "initializer");
4404 if (TREE_CODE (TREE_TYPE (type
)) != ARRAY_TYPE
4405 && TREE_CODE (TREE_TYPE (init
)) == ARRAY_TYPE
)
4406 /* Note: default conversion is only called in very special cases. */
4407 init
= decay_conversion (init
);
4409 /* Convert INIT to the reference type TYPE. This may involve the
4410 creation of a temporary, whose lifetime must be the same as that
4411 of the reference. If so, a DECL_EXPR for the temporary will be
4412 added just after the DECL_EXPR for DECL. That's why we don't set
4413 DECL_INITIAL for local references (instead assigning to them
4414 explicitly); we need to allow the temporary to be initialized
4416 tmp
= initialize_reference (type
, init
, decl
, cleanup
, tf_warning_or_error
);
4418 if (tmp
== error_mark_node
)
4420 else if (tmp
== NULL_TREE
)
4422 error ("cannot initialize %qT from %qT", type
, TREE_TYPE (init
));
4426 if (TREE_STATIC (decl
) && !TREE_CONSTANT (tmp
))
4429 DECL_INITIAL (decl
) = tmp
;
4434 /* Subroutine of check_initializer. We're initializing a DECL of
4435 std::initializer_list<T> TYPE from a braced-init-list INIT, and need to
4436 extend the lifetime of the underlying array to match that of the decl,
4437 just like for reference initialization. CLEANUP is as for
4438 grok_reference_init. */
4441 build_init_list_var_init (tree decl
, tree type
, tree init
, tree
*cleanup
)
4443 tree aggr_init
, array
, arrtype
;
4444 init
= perform_implicit_conversion (type
, init
, tf_warning_or_error
);
4445 if (error_operand_p (init
))
4446 return error_mark_node
;
4448 aggr_init
= TARGET_EXPR_INITIAL (init
);
4449 init
= build2 (INIT_EXPR
, type
, decl
, init
);
4451 array
= AGGR_INIT_EXPR_ARG (aggr_init
, 1);
4452 arrtype
= TREE_TYPE (array
);
4454 gcc_assert (TREE_CODE (array
) == ADDR_EXPR
);
4455 array
= TREE_OPERAND (array
, 0);
4456 /* If the array is constant, finish_compound_literal already made it a
4457 static variable and we don't need to do anything here. */
4458 if (decl
&& TREE_CODE (array
) == TARGET_EXPR
)
4461 tree var
= set_up_extended_ref_temp (decl
, array
, cleanup
, &subinit
);
4462 var
= build_address (var
);
4463 var
= convert (arrtype
, var
);
4464 AGGR_INIT_EXPR_ARG (aggr_init
, 1) = var
;
4465 init
= build2 (COMPOUND_EXPR
, TREE_TYPE (init
), subinit
, init
);
4470 /* Designated initializers in arrays are not supported in GNU C++.
4471 The parser cannot detect this error since it does not know whether
4472 a given brace-enclosed initializer is for a class type or for an
4473 array. This function checks that CE does not use a designated
4474 initializer. If it does, an error is issued. Returns true if CE
4475 is valid, i.e., does not have a designated initializer. */
4478 check_array_designated_initializer (const constructor_elt
*ce
)
4480 /* Designated initializers for array elements are not supported. */
4483 /* The parser only allows identifiers as designated
4485 if (ce
->index
== error_mark_node
)
4486 error ("name used in a GNU-style designated "
4487 "initializer for an array");
4490 gcc_assert (TREE_CODE (ce
->index
) == IDENTIFIER_NODE
);
4491 error ("name %qD used in a GNU-style designated "
4492 "initializer for an array", ce
->index
);
4500 /* When parsing `int a[] = {1, 2};' we don't know the size of the
4501 array until we finish parsing the initializer. If that's the
4502 situation we're in, update DECL accordingly. */
4505 maybe_deduce_size_from_array_init (tree decl
, tree init
)
4507 tree type
= TREE_TYPE (decl
);
4509 if (TREE_CODE (type
) == ARRAY_TYPE
4510 && TYPE_DOMAIN (type
) == NULL_TREE
4511 && TREE_CODE (decl
) != TYPE_DECL
)
4513 /* do_default is really a C-ism to deal with tentative definitions.
4514 But let's leave it here to ease the eventual merge. */
4515 int do_default
= !DECL_EXTERNAL (decl
);
4516 tree initializer
= init
? init
: DECL_INITIAL (decl
);
4519 /* Check that there are no designated initializers in INIT, as
4520 those are not supported in GNU C++, and as the middle-end
4521 will crash if presented with a non-numeric designated
4523 if (initializer
&& TREE_CODE (initializer
) == CONSTRUCTOR
)
4525 VEC(constructor_elt
,gc
) *v
= CONSTRUCTOR_ELTS (initializer
);
4526 constructor_elt
*ce
;
4529 VEC_iterate (constructor_elt
, v
, i
, ce
);
4531 if (!check_array_designated_initializer (ce
))
4537 failure
= cp_complete_array_type (&TREE_TYPE (decl
), initializer
,
4541 error ("initializer fails to determine size of %qD", decl
);
4542 TREE_TYPE (decl
) = error_mark_node
;
4544 else if (failure
== 2)
4548 error ("array size missing in %qD", decl
);
4549 TREE_TYPE (decl
) = error_mark_node
;
4551 /* If a `static' var's size isn't known, make it extern as
4552 well as static, so it does not get allocated. If it's not
4553 `static', then don't mark it extern; finish_incomplete_decl
4554 will give it a default size and it will get allocated. */
4555 else if (!pedantic
&& TREE_STATIC (decl
) && !TREE_PUBLIC (decl
))
4556 DECL_EXTERNAL (decl
) = 1;
4558 else if (failure
== 3)
4560 error ("zero-size array %qD", decl
);
4561 TREE_TYPE (decl
) = error_mark_node
;
4565 cp_apply_type_quals_to_decl (cp_type_quals (TREE_TYPE (decl
)), decl
);
4567 relayout_decl (decl
);
4571 /* Set DECL_SIZE, DECL_ALIGN, etc. for DECL (a VAR_DECL), and issue
4572 any appropriate error messages regarding the layout. */
4575 layout_var_decl (tree decl
)
4579 type
= TREE_TYPE (decl
);
4580 if (type
== error_mark_node
)
4583 /* If we haven't already layed out this declaration, do so now.
4584 Note that we must not call complete type for an external object
4585 because it's type might involve templates that we are not
4586 supposed to instantiate yet. (And it's perfectly valid to say
4587 `extern X x' for some incomplete type `X'.) */
4588 if (!DECL_EXTERNAL (decl
))
4589 complete_type (type
);
4590 if (!DECL_SIZE (decl
)
4591 && TREE_TYPE (decl
) != error_mark_node
4592 && (COMPLETE_TYPE_P (type
)
4593 || (TREE_CODE (type
) == ARRAY_TYPE
4594 && !TYPE_DOMAIN (type
)
4595 && COMPLETE_TYPE_P (TREE_TYPE (type
)))))
4596 layout_decl (decl
, 0);
4598 if (!DECL_EXTERNAL (decl
) && DECL_SIZE (decl
) == NULL_TREE
)
4600 /* An automatic variable with an incomplete type: that is an error.
4601 Don't talk about array types here, since we took care of that
4602 message in grokdeclarator. */
4603 error ("storage size of %qD isn't known", decl
);
4604 TREE_TYPE (decl
) = error_mark_node
;
4607 /* Keep this code around in case we later want to control debug info
4608 based on whether a type is "used". (jason 1999-11-11) */
4610 else if (!DECL_EXTERNAL (decl
) && MAYBE_CLASS_TYPE_P (ttype
))
4611 /* Let debugger know it should output info for this type. */
4612 note_debug_info_needed (ttype
);
4614 if (TREE_STATIC (decl
) && DECL_CLASS_SCOPE_P (decl
))
4615 note_debug_info_needed (DECL_CONTEXT (decl
));
4618 if ((DECL_EXTERNAL (decl
) || TREE_STATIC (decl
))
4619 && DECL_SIZE (decl
) != NULL_TREE
4620 && ! TREE_CONSTANT (DECL_SIZE (decl
)))
4622 if (TREE_CODE (DECL_SIZE (decl
)) == INTEGER_CST
)
4623 constant_expression_warning (DECL_SIZE (decl
));
4626 error ("storage size of %qD isn't constant", decl
);
4627 TREE_TYPE (decl
) = error_mark_node
;
4632 /* If a local static variable is declared in an inline function, or if
4633 we have a weak definition, we must endeavor to create only one
4634 instance of the variable at link-time. */
4637 maybe_commonize_var (tree decl
)
4639 /* Static data in a function with comdat linkage also has comdat
4641 if (TREE_STATIC (decl
)
4642 /* Don't mess with __FUNCTION__. */
4643 && ! DECL_ARTIFICIAL (decl
)
4644 && DECL_FUNCTION_SCOPE_P (decl
)
4645 && vague_linkage_fn_p (DECL_CONTEXT (decl
)))
4649 /* With weak symbols, we simply make the variable COMDAT;
4650 that will cause copies in multiple translations units to
4652 comdat_linkage (decl
);
4656 if (DECL_INITIAL (decl
) == NULL_TREE
4657 || DECL_INITIAL (decl
) == error_mark_node
)
4659 /* Without weak symbols, we can use COMMON to merge
4660 uninitialized variables. */
4661 TREE_PUBLIC (decl
) = 1;
4662 DECL_COMMON (decl
) = 1;
4666 /* While for initialized variables, we must use internal
4667 linkage -- which means that multiple copies will not
4669 TREE_PUBLIC (decl
) = 0;
4670 DECL_COMMON (decl
) = 0;
4671 warning_at (input_location
, 0,
4672 "sorry: semantics of inline function static "
4673 "data %q+#D are wrong (you'll wind up "
4674 "with multiple copies)", decl
);
4675 warning_at (DECL_SOURCE_LOCATION (decl
), 0,
4676 " you can work around this by removing "
4681 else if (DECL_LANG_SPECIFIC (decl
) && DECL_COMDAT (decl
))
4682 /* Set it up again; we might have set DECL_INITIAL since the last
4684 comdat_linkage (decl
);
4687 /* Issue an error message if DECL is an uninitialized const variable. */
4690 check_for_uninitialized_const_var (tree decl
)
4692 tree type
= TREE_TYPE (decl
);
4694 if (TREE_CODE (decl
) == VAR_DECL
&& DECL_DECLARED_CONSTEXPR_P (decl
)
4695 && DECL_INITIAL (decl
) == NULL
)
4696 error ("missing initializer for constexpr %qD", decl
);
4698 /* ``Unless explicitly declared extern, a const object does not have
4699 external linkage and must be initialized. ($8.4; $12.1)'' ARM
4701 else if (TREE_CODE (decl
) == VAR_DECL
4702 && TREE_CODE (type
) != REFERENCE_TYPE
4703 && CP_TYPE_CONST_P (type
)
4704 && !TYPE_NEEDS_CONSTRUCTING (type
)
4705 && !DECL_INITIAL (decl
))
4706 error ("uninitialized const %qD", decl
);
4710 /* Structure holding the current initializer being processed by reshape_init.
4711 CUR is a pointer to the current element being processed, END is a pointer
4712 after the last element present in the initializer. */
4713 typedef struct reshape_iterator_t
4715 constructor_elt
*cur
;
4716 constructor_elt
*end
;
4719 static tree
reshape_init_r (tree
, reshape_iter
*, bool);
4721 /* FIELD is a FIELD_DECL or NULL. In the former case, the value
4722 returned is the next FIELD_DECL (possibly FIELD itself) that can be
4723 initialized. If there are no more such fields, the return value
4727 next_initializable_field (tree field
)
4730 && (TREE_CODE (field
) != FIELD_DECL
4731 || (DECL_C_BIT_FIELD (field
) && !DECL_NAME (field
))
4732 || DECL_ARTIFICIAL (field
)))
4733 field
= TREE_CHAIN (field
);
4738 /* Subroutine of reshape_init_array and reshape_init_vector, which does
4739 the actual work. ELT_TYPE is the element type of the array. MAX_INDEX is an
4740 INTEGER_CST representing the size of the array minus one (the maximum index),
4741 or NULL_TREE if the array was declared without specifying the size. D is
4742 the iterator within the constructor. */
4745 reshape_init_array_1 (tree elt_type
, tree max_index
, reshape_iter
*d
)
4748 bool sized_array_p
= (max_index
!= NULL_TREE
);
4749 unsigned HOST_WIDE_INT max_index_cst
= 0;
4750 unsigned HOST_WIDE_INT index
;
4752 /* The initializer for an array is always a CONSTRUCTOR. */
4753 new_init
= build_constructor (init_list_type_node
, NULL
);
4757 /* Minus 1 is used for zero sized arrays. */
4758 if (integer_all_onesp (max_index
))
4761 if (host_integerp (max_index
, 1))
4762 max_index_cst
= tree_low_cst (max_index
, 1);
4763 /* sizetype is sign extended, not zero extended. */
4765 max_index_cst
= tree_low_cst (fold_convert (size_type_node
, max_index
),
4769 /* Loop until there are no more initializers. */
4771 d
->cur
!= d
->end
&& (!sized_array_p
|| index
<= max_index_cst
);
4776 check_array_designated_initializer (d
->cur
);
4777 elt_init
= reshape_init_r (elt_type
, d
, /*first_initializer_p=*/false);
4778 if (elt_init
== error_mark_node
)
4779 return error_mark_node
;
4780 CONSTRUCTOR_APPEND_ELT (CONSTRUCTOR_ELTS (new_init
), NULL_TREE
, elt_init
);
4786 /* Subroutine of reshape_init_r, processes the initializers for arrays.
4787 Parameters are the same of reshape_init_r. */
4790 reshape_init_array (tree type
, reshape_iter
*d
)
4792 tree max_index
= NULL_TREE
;
4794 gcc_assert (TREE_CODE (type
) == ARRAY_TYPE
);
4796 if (TYPE_DOMAIN (type
))
4797 max_index
= array_type_nelts (type
);
4799 return reshape_init_array_1 (TREE_TYPE (type
), max_index
, d
);
4802 /* Subroutine of reshape_init_r, processes the initializers for vectors.
4803 Parameters are the same of reshape_init_r. */
4806 reshape_init_vector (tree type
, reshape_iter
*d
)
4808 tree max_index
= NULL_TREE
;
4811 gcc_assert (TREE_CODE (type
) == VECTOR_TYPE
);
4813 if (COMPOUND_LITERAL_P (d
->cur
->value
))
4815 tree value
= d
->cur
->value
;
4816 if (!same_type_p (TREE_TYPE (value
), type
))
4818 error ("invalid type %qT as initializer for a vector of type %qT",
4819 TREE_TYPE (d
->cur
->value
), type
);
4820 value
= error_mark_node
;
4826 /* For a vector, the representation type is a struct
4827 containing a single member which is an array of the
4828 appropriate size. */
4829 rtype
= TYPE_DEBUG_REPRESENTATION_TYPE (type
);
4830 if (rtype
&& TYPE_DOMAIN (TREE_TYPE (TYPE_FIELDS (rtype
))))
4831 max_index
= array_type_nelts (TREE_TYPE (TYPE_FIELDS (rtype
)));
4833 return reshape_init_array_1 (TREE_TYPE (type
), max_index
, d
);
4836 /* Subroutine of reshape_init_r, processes the initializers for classes
4837 or union. Parameters are the same of reshape_init_r. */
4840 reshape_init_class (tree type
, reshape_iter
*d
, bool first_initializer_p
)
4845 gcc_assert (CLASS_TYPE_P (type
));
4847 /* The initializer for a class is always a CONSTRUCTOR. */
4848 new_init
= build_constructor (init_list_type_node
, NULL
);
4849 field
= next_initializable_field (TYPE_FIELDS (type
));
4855 An initializer for an aggregate member that is an
4856 empty class shall have the form of an empty
4857 initializer-list {}. */
4858 if (!first_initializer_p
)
4860 error ("initializer for %qT must be brace-enclosed", type
);
4861 return error_mark_node
;
4866 /* Loop through the initializable fields, gathering initializers. */
4867 while (d
->cur
!= d
->end
)
4871 /* Handle designated initializers, as an extension. */
4874 field
= lookup_field_1 (type
, d
->cur
->index
, /*want_type=*/false);
4876 if (!field
|| TREE_CODE (field
) != FIELD_DECL
)
4878 error ("%qT has no non-static data member named %qD", type
,
4880 return error_mark_node
;
4884 /* If we processed all the member of the class, we are done. */
4888 field_init
= reshape_init_r (TREE_TYPE (field
), d
,
4889 /*first_initializer_p=*/false);
4890 if (field_init
== error_mark_node
)
4891 return error_mark_node
;
4893 CONSTRUCTOR_APPEND_ELT (CONSTRUCTOR_ELTS (new_init
), field
, field_init
);
4897 When a union is initialized with a brace-enclosed
4898 initializer, the braces shall only contain an
4899 initializer for the first member of the union. */
4900 if (TREE_CODE (type
) == UNION_TYPE
)
4903 field
= next_initializable_field (TREE_CHAIN (field
));
4909 /* Subroutine of reshape_init, which processes a single initializer (part of
4910 a CONSTRUCTOR). TYPE is the type of the variable being initialized, D is the
4911 iterator within the CONSTRUCTOR which points to the initializer to process.
4912 FIRST_INITIALIZER_P is true if this is the first initializer of the
4913 outermost CONSTRUCTOR node. */
4916 reshape_init_r (tree type
, reshape_iter
*d
, bool first_initializer_p
)
4918 tree init
= d
->cur
->value
;
4920 if (error_operand_p (init
))
4921 return error_mark_node
;
4923 /* A non-aggregate type is always initialized with a single
4925 if (!CP_AGGREGATE_TYPE_P (type
))
4927 /* It is invalid to initialize a non-aggregate type with a
4928 brace-enclosed initializer before C++0x.
4929 We need to check for BRACE_ENCLOSED_INITIALIZER_P here because
4930 of g++.old-deja/g++.mike/p7626.C: a pointer-to-member constant is
4931 a CONSTRUCTOR (with a record type). */
4932 if (TREE_CODE (init
) == CONSTRUCTOR
4933 && BRACE_ENCLOSED_INITIALIZER_P (init
)) /* p7626.C */
4935 if (SCALAR_TYPE_P (type
))
4937 error ("braces around scalar initializer for type %qT", type
);
4938 init
= error_mark_node
;
4941 maybe_warn_cpp0x (CPP0X_INITIALIZER_LISTS
);
4950 All implicit type conversions (clause _conv_) are considered when
4951 initializing the aggregate member with an initializer from an
4952 initializer-list. If the initializer can initialize a member,
4953 the member is initialized. Otherwise, if the member is itself a
4954 non-empty subaggregate, brace elision is assumed and the
4955 initializer is considered for the initialization of the first
4956 member of the subaggregate. */
4957 if (TREE_CODE (init
) != CONSTRUCTOR
4958 /* But don't try this for the first initializer, since that would be
4959 looking through the outermost braces; A a2 = { a1 }; is not a
4960 valid aggregate initialization. */
4961 && !first_initializer_p
4962 && (same_type_ignoring_top_level_qualifiers_p (type
, TREE_TYPE (init
))
4963 || can_convert_arg (type
, TREE_TYPE (init
), init
, LOOKUP_NORMAL
)))
4969 /* [dcl.init.string]
4971 A char array (whether plain char, signed char, or unsigned char)
4972 can be initialized by a string-literal (optionally enclosed in
4973 braces); a wchar_t array can be initialized by a wide
4974 string-literal (optionally enclosed in braces). */
4975 if (TREE_CODE (type
) == ARRAY_TYPE
4976 && char_type_p (TYPE_MAIN_VARIANT (TREE_TYPE (type
))))
4978 tree str_init
= init
;
4980 /* Strip one level of braces if and only if they enclose a single
4981 element (as allowed by [dcl.init.string]). */
4982 if (!first_initializer_p
4983 && TREE_CODE (str_init
) == CONSTRUCTOR
4984 && VEC_length (constructor_elt
, CONSTRUCTOR_ELTS (str_init
)) == 1)
4986 str_init
= VEC_index (constructor_elt
,
4987 CONSTRUCTOR_ELTS (str_init
), 0)->value
;
4990 /* If it's a string literal, then it's the initializer for the array
4991 as a whole. Otherwise, continue with normal initialization for
4992 array types (one value per array element). */
4993 if (TREE_CODE (str_init
) == STRING_CST
)
5000 /* The following cases are about aggregates. If we are not within a full
5001 initializer already, and there is not a CONSTRUCTOR, it means that there
5002 is a missing set of braces (that is, we are processing the case for
5003 which reshape_init exists). */
5004 if (!first_initializer_p
)
5006 if (TREE_CODE (init
) == CONSTRUCTOR
)
5008 if (TREE_TYPE (init
) && TYPE_PTRMEMFUNC_P (TREE_TYPE (init
)))
5009 /* There is no need to reshape pointer-to-member function
5010 initializers, as they are always constructed correctly
5011 by the front end. */
5013 else if (COMPOUND_LITERAL_P (init
))
5014 /* For a nested compound literal, there is no need to reshape since
5015 brace elision is not allowed. Even if we decided to allow it,
5016 we should add a call to reshape_init in finish_compound_literal,
5017 before calling digest_init, so changing this code would still
5018 not be necessary. */
5019 gcc_assert (!BRACE_ENCLOSED_INITIALIZER_P (init
));
5023 gcc_assert (BRACE_ENCLOSED_INITIALIZER_P (init
));
5024 return reshape_init (type
, init
);
5028 warning (OPT_Wmissing_braces
, "missing braces around initializer for %qT",
5032 /* Dispatch to specialized routines. */
5033 if (CLASS_TYPE_P (type
))
5034 return reshape_init_class (type
, d
, first_initializer_p
);
5035 else if (TREE_CODE (type
) == ARRAY_TYPE
)
5036 return reshape_init_array (type
, d
);
5037 else if (TREE_CODE (type
) == VECTOR_TYPE
)
5038 return reshape_init_vector (type
, d
);
5043 /* Undo the brace-elision allowed by [dcl.init.aggr] in a
5044 brace-enclosed aggregate initializer.
5046 INIT is the CONSTRUCTOR containing the list of initializers describing
5047 a brace-enclosed initializer for an entity of the indicated aggregate TYPE.
5048 It may not presently match the shape of the TYPE; for example:
5050 struct S { int a; int b; };
5051 struct S a[] = { 1, 2, 3, 4 };
5053 Here INIT will hold a VEC of four elements, rather than a
5054 VEC of two elements, each itself a VEC of two elements. This
5055 routine transforms INIT from the former form into the latter. The
5056 revised CONSTRUCTOR node is returned. */
5059 reshape_init (tree type
, tree init
)
5061 VEC(constructor_elt
, gc
) *v
;
5065 gcc_assert (BRACE_ENCLOSED_INITIALIZER_P (init
));
5067 v
= CONSTRUCTOR_ELTS (init
);
5069 /* An empty constructor does not need reshaping, and it is always a valid
5071 if (VEC_empty (constructor_elt
, v
))
5074 /* Recurse on this CONSTRUCTOR. */
5075 d
.cur
= VEC_index (constructor_elt
, v
, 0);
5076 d
.end
= d
.cur
+ VEC_length (constructor_elt
, v
);
5078 new_init
= reshape_init_r (type
, &d
, true);
5079 if (new_init
== error_mark_node
)
5080 return error_mark_node
;
5082 /* Make sure all the element of the constructor were used. Otherwise,
5083 issue an error about exceeding initializers. */
5085 error ("too many initializers for %qT", type
);
5090 /* Verify array initializer. Returns true if errors have been reported. */
5093 check_array_initializer (tree decl
, tree type
, tree init
)
5095 tree element_type
= TREE_TYPE (type
);
5097 /* The array type itself need not be complete, because the
5098 initializer may tell us how many elements are in the array.
5099 But, the elements of the array must be complete. */
5100 if (!COMPLETE_TYPE_P (complete_type (element_type
)))
5103 error ("elements of array %q#D have incomplete type", decl
);
5105 error ("elements of array %q#T have incomplete type", type
);
5108 /* It is not valid to initialize a VLA. */
5110 && ((COMPLETE_TYPE_P (type
) && !TREE_CONSTANT (TYPE_SIZE (type
)))
5111 || !TREE_CONSTANT (TYPE_SIZE (element_type
))))
5114 error ("variable-sized object %qD may not be initialized", decl
);
5116 error ("variable-sized compound literal");
5122 /* Subroutine of check_initializer; args are passed down from that function.
5123 Set stmts_are_full_exprs_p to 1 across a call to build_aggr_init. */
5126 build_aggr_init_full_exprs (tree decl
, tree init
, int flags
)
5129 int saved_stmts_are_full_exprs_p
= 0;
5130 if (building_stmt_tree ())
5132 saved_stmts_are_full_exprs_p
= stmts_are_full_exprs_p ();
5133 current_stmt_tree ()->stmts_are_full_exprs_p
= 1;
5135 init
= build_aggr_init (decl
, init
, flags
, tf_warning_or_error
);
5136 if (building_stmt_tree ())
5137 current_stmt_tree ()->stmts_are_full_exprs_p
=
5138 saved_stmts_are_full_exprs_p
;
5142 /* Verify INIT (the initializer for DECL), and record the
5143 initialization in DECL_INITIAL, if appropriate. CLEANUP is as for
5144 grok_reference_init.
5146 If the return value is non-NULL, it is an expression that must be
5147 evaluated dynamically to initialize DECL. */
5150 check_initializer (tree decl
, tree init
, int flags
, tree
*cleanup
)
5152 tree type
= TREE_TYPE (decl
);
5153 tree init_code
= NULL
;
5155 /* Things that are going to be initialized need to have complete
5157 TREE_TYPE (decl
) = type
= complete_type (TREE_TYPE (decl
));
5159 if (type
== error_mark_node
)
5160 /* We will have already complained. */
5163 if (TREE_CODE (type
) == ARRAY_TYPE
)
5165 if (check_array_initializer (decl
, type
, init
))
5168 else if (!COMPLETE_TYPE_P (type
))
5170 error ("%qD has incomplete type", decl
);
5171 TREE_TYPE (decl
) = error_mark_node
;
5175 /* There is no way to make a variable-sized class type in GNU C++. */
5176 gcc_assert (TREE_CONSTANT (TYPE_SIZE (type
)));
5178 if (init
&& BRACE_ENCLOSED_INITIALIZER_P (init
))
5180 int init_len
= VEC_length (constructor_elt
, CONSTRUCTOR_ELTS (init
));
5181 if (SCALAR_TYPE_P (type
))
5185 maybe_warn_cpp0x (CPP0X_INITIALIZER_LISTS
);
5186 init
= build_zero_init (type
, NULL_TREE
, false);
5188 else if (init_len
!= 1)
5190 error ("scalar object %qD requires one element in initializer",
5192 TREE_TYPE (decl
) = error_mark_node
;
5198 if (TREE_CODE (decl
) == CONST_DECL
)
5200 gcc_assert (TREE_CODE (type
) != REFERENCE_TYPE
);
5202 DECL_INITIAL (decl
) = init
;
5204 gcc_assert (init
!= NULL_TREE
);
5207 else if (!DECL_EXTERNAL (decl
) && TREE_CODE (type
) == REFERENCE_TYPE
)
5208 init
= grok_reference_init (decl
, type
, init
, cleanup
);
5211 /* Do not reshape constructors of vectors (they don't need to be
5213 if (BRACE_ENCLOSED_INITIALIZER_P (init
))
5215 if (is_std_init_list (type
))
5216 return build_init_list_var_init (decl
, type
, init
, cleanup
);
5217 else if (TYPE_NON_AGGREGATE_CLASS (type
))
5219 /* Don't reshape if the class has constructors. */
5220 if (cxx_dialect
== cxx98
)
5221 error ("in C++98 %qD must be initialized by constructor, "
5224 init
= build_tree_list (NULL_TREE
, init
);
5226 else if (TREE_CODE (type
) == VECTOR_TYPE
&& TYPE_VECTOR_OPAQUE (type
))
5228 error ("opaque vector types cannot be initialized");
5229 init
= error_mark_node
;
5232 init
= reshape_init (type
, init
);
5235 /* If DECL has an array type without a specific bound, deduce the
5236 array size from the initializer. */
5237 maybe_deduce_size_from_array_init (decl
, init
);
5238 type
= TREE_TYPE (decl
);
5239 if (type
== error_mark_node
)
5242 if (TYPE_NEEDS_CONSTRUCTING (type
)
5243 || (CLASS_TYPE_P (type
)
5244 && !BRACE_ENCLOSED_INITIALIZER_P (init
)))
5245 return build_aggr_init_full_exprs (decl
, init
, flags
);
5246 else if (TREE_CODE (init
) != TREE_VEC
)
5248 init_code
= store_init_value (decl
, init
, flags
);
5249 if (pedantic
&& TREE_CODE (type
) == ARRAY_TYPE
5250 && DECL_INITIAL (decl
)
5251 && TREE_CODE (DECL_INITIAL (decl
)) == STRING_CST
5252 && PAREN_STRING_LITERAL_P (DECL_INITIAL (decl
)))
5253 warning (0, "array %qD initialized by parenthesized string literal %qE",
5254 decl
, DECL_INITIAL (decl
));
5258 else if (DECL_EXTERNAL (decl
))
5260 else if (TYPE_P (type
) && TYPE_NEEDS_CONSTRUCTING (type
))
5261 return build_aggr_init_full_exprs (decl
, init
, flags
);
5262 else if (MAYBE_CLASS_TYPE_P (type
))
5264 tree core_type
= strip_array_types (type
);
5266 if (CLASSTYPE_READONLY_FIELDS_NEED_INIT (core_type
))
5267 error ("structure %qD with uninitialized const members", decl
);
5268 if (CLASSTYPE_REF_FIELDS_NEED_INIT (core_type
))
5269 error ("structure %qD with uninitialized reference members", decl
);
5271 check_for_uninitialized_const_var (decl
);
5274 check_for_uninitialized_const_var (decl
);
5276 if (init
&& init
!= error_mark_node
)
5277 init_code
= build2 (INIT_EXPR
, type
, decl
, init
);
5282 /* If DECL is not a local variable, give it RTL. */
5285 make_rtl_for_nonlocal_decl (tree decl
, tree init
, const char* asmspec
)
5287 int toplev
= toplevel_bindings_p ();
5289 const char *filename
;
5291 /* Set the DECL_ASSEMBLER_NAME for the object. */
5294 /* The `register' keyword, when used together with an
5295 asm-specification, indicates that the variable should be
5296 placed in a particular register. */
5297 if (TREE_CODE (decl
) == VAR_DECL
&& DECL_REGISTER (decl
))
5299 set_user_assembler_name (decl
, asmspec
);
5300 DECL_HARD_REGISTER (decl
) = 1;
5304 if (TREE_CODE (decl
) == FUNCTION_DECL
5305 && DECL_BUILT_IN_CLASS (decl
) == BUILT_IN_NORMAL
)
5306 set_builtin_user_assembler_name (decl
, asmspec
);
5307 set_user_assembler_name (decl
, asmspec
);
5311 /* Handle non-variables up front. */
5312 if (TREE_CODE (decl
) != VAR_DECL
)
5314 rest_of_decl_compilation (decl
, toplev
, at_eof
);
5318 /* If we see a class member here, it should be a static data
5320 if (DECL_LANG_SPECIFIC (decl
) && DECL_IN_AGGR_P (decl
))
5322 gcc_assert (TREE_STATIC (decl
));
5323 /* An in-class declaration of a static data member should be
5324 external; it is only a declaration, and not a definition. */
5325 if (init
== NULL_TREE
)
5326 gcc_assert (DECL_EXTERNAL (decl
) || !TREE_PUBLIC (decl
));
5329 /* We don't create any RTL for local variables. */
5330 if (DECL_FUNCTION_SCOPE_P (decl
) && !TREE_STATIC (decl
))
5333 /* We defer emission of local statics until the corresponding
5334 DECL_EXPR is expanded. */
5335 defer_p
= DECL_FUNCTION_SCOPE_P (decl
) || DECL_VIRTUAL_P (decl
);
5337 /* We try to defer namespace-scope static constants so that they are
5338 not emitted into the object file unnecessarily. */
5339 filename
= input_filename
;
5340 if (!DECL_VIRTUAL_P (decl
)
5341 && TREE_READONLY (decl
)
5342 && DECL_INITIAL (decl
) != NULL_TREE
5343 && DECL_INITIAL (decl
) != error_mark_node
5345 && ! EMPTY_CONSTRUCTOR_P (DECL_INITIAL (decl
))
5347 && !TREE_PUBLIC (decl
))
5349 /* Fool with the linkage of static consts according to #pragma
5351 struct c_fileinfo
*finfo
= get_fileinfo (filename
);
5352 if (!finfo
->interface_unknown
&& !TREE_PUBLIC (decl
))
5354 TREE_PUBLIC (decl
) = 1;
5355 DECL_EXTERNAL (decl
) = finfo
->interface_only
;
5360 /* Likewise for template instantiations. */
5361 else if (DECL_LANG_SPECIFIC (decl
)
5362 && DECL_IMPLICIT_INSTANTIATION (decl
))
5365 /* If we're not deferring, go ahead and assemble the variable. */
5367 rest_of_decl_compilation (decl
, toplev
, at_eof
);
5370 /* walk_tree helper for wrap_temporary_cleanups, below. */
5373 wrap_cleanups_r (tree
*stmt_p
, int *walk_subtrees
, void *data
)
5375 if (TYPE_P (*stmt_p
))
5381 if (TREE_CODE (*stmt_p
) == TARGET_EXPR
)
5383 tree guard
= (tree
)data
;
5384 tree tcleanup
= TARGET_EXPR_CLEANUP (*stmt_p
);
5386 tcleanup
= build2 (TRY_CATCH_EXPR
, void_type_node
, tcleanup
, guard
);
5387 /* Tell honor_protect_cleanup_actions to handle this as a separate
5389 TRY_CATCH_IS_CLEANUP (tcleanup
) = 1;
5391 TARGET_EXPR_CLEANUP (*stmt_p
) = tcleanup
;
5397 /* We're initializing a local variable which has a cleanup GUARD. If there
5398 are any temporaries used in the initializer INIT of this variable, we
5399 need to wrap their cleanups with TRY_CATCH_EXPR (, GUARD) so that the
5400 variable will be cleaned up properly if one of them throws.
5402 Unfortunately, there's no way to express this properly in terms of
5403 nesting, as the regions for the temporaries overlap the region for the
5404 variable itself; if there are two temporaries, the variable needs to be
5405 the first thing destroyed if either of them throws. However, we only
5406 want to run the variable's cleanup if it actually got constructed. So
5407 we need to guard the temporary cleanups with the variable's cleanup if
5408 they are run on the normal path, but not if they are run on the
5409 exceptional path. We implement this by telling
5410 honor_protect_cleanup_actions to strip the variable cleanup from the
5411 exceptional path. */
5414 wrap_temporary_cleanups (tree init
, tree guard
)
5416 cp_walk_tree_without_duplicates (&init
, wrap_cleanups_r
, (void *)guard
);
5419 /* Generate code to initialize DECL (a local variable). */
5422 initialize_local_var (tree decl
, tree init
)
5424 tree type
= TREE_TYPE (decl
);
5428 gcc_assert (TREE_CODE (decl
) == VAR_DECL
5429 || TREE_CODE (decl
) == RESULT_DECL
);
5430 gcc_assert (!TREE_STATIC (decl
));
5432 if (DECL_SIZE (decl
) == NULL_TREE
)
5434 /* If we used it already as memory, it must stay in memory. */
5435 DECL_INITIAL (decl
) = NULL_TREE
;
5436 TREE_ADDRESSABLE (decl
) = TREE_USED (decl
);
5440 if (type
== error_mark_node
)
5443 /* Compute and store the initial value. */
5444 already_used
= TREE_USED (decl
) || TREE_USED (type
);
5446 /* Generate a cleanup, if necessary. */
5447 cleanup
= cxx_maybe_build_cleanup (decl
);
5449 /* Perform the initialization. */
5452 int saved_stmts_are_full_exprs_p
;
5454 /* If we're only initializing a single object, guard the destructors
5455 of any temporaries used in its initializer with its destructor.
5456 This isn't right for arrays because each element initialization is
5457 a full-expression. */
5458 if (cleanup
&& TREE_CODE (type
) != ARRAY_TYPE
)
5459 wrap_temporary_cleanups (init
, cleanup
);
5461 gcc_assert (building_stmt_tree ());
5462 saved_stmts_are_full_exprs_p
= stmts_are_full_exprs_p ();
5463 current_stmt_tree ()->stmts_are_full_exprs_p
= 1;
5464 finish_expr_stmt (init
);
5465 current_stmt_tree ()->stmts_are_full_exprs_p
=
5466 saved_stmts_are_full_exprs_p
;
5469 /* Set this to 0 so we can tell whether an aggregate which was
5470 initialized was ever used. Don't do this if it has a
5471 destructor, so we don't complain about the 'resource
5472 allocation is initialization' idiom. Now set
5473 attribute((unused)) on types so decls of that type will be
5474 marked used. (see TREE_USED, above.) */
5475 if (TYPE_NEEDS_CONSTRUCTING (type
)
5477 && TYPE_HAS_TRIVIAL_DESTRUCTOR (type
)
5478 && DECL_NAME (decl
))
5479 TREE_USED (decl
) = 0;
5480 else if (already_used
)
5481 TREE_USED (decl
) = 1;
5484 finish_decl_cleanup (decl
, cleanup
);
5487 /* DECL is a VAR_DECL for a compiler-generated variable with static
5488 storage duration (like a virtual table) whose initializer is a
5489 compile-time constant. INIT must be either a TREE_LIST of values,
5490 or a CONSTRUCTOR. Initialize the variable and provide it to the
5494 initialize_artificial_var (tree decl
, tree init
)
5496 gcc_assert (DECL_ARTIFICIAL (decl
));
5497 if (TREE_CODE (init
) == TREE_LIST
)
5498 init
= build_constructor_from_list (TREE_TYPE (decl
), init
);
5499 gcc_assert (TREE_CODE (init
) == CONSTRUCTOR
);
5500 DECL_INITIAL (decl
) = init
;
5501 DECL_INITIALIZED_P (decl
) = 1;
5502 determine_visibility (decl
);
5503 layout_var_decl (decl
);
5504 maybe_commonize_var (decl
);
5505 make_rtl_for_nonlocal_decl (decl
, init
, /*asmspec=*/NULL
);
5508 /* INIT is the initializer for a variable, as represented by the
5509 parser. Returns true iff INIT is value-dependent. */
5512 value_dependent_init_p (tree init
)
5514 if (TREE_CODE (init
) == TREE_LIST
)
5515 /* A parenthesized initializer, e.g.: int i (3, 2); ? */
5516 return any_value_dependent_elements_p (init
);
5517 else if (TREE_CODE (init
) == CONSTRUCTOR
)
5518 /* A brace-enclosed initializer, e.g.: int i = { 3 }; ? */
5520 VEC(constructor_elt
, gc
) *elts
;
5524 elts
= CONSTRUCTOR_ELTS (init
);
5525 nelts
= VEC_length (constructor_elt
, elts
);
5526 for (i
= 0; i
< nelts
; ++i
)
5527 if (value_dependent_init_p (VEC_index (constructor_elt
,
5532 /* It must be a simple expression, e.g., int i = 3; */
5533 return value_dependent_expression_p (init
);
5538 /* Finish processing of a declaration;
5539 install its line number and initial value.
5540 If the length of an array type is not known before,
5541 it must be determined now, from the initial value, or it is an error.
5543 INIT is the initializer (if any) for DECL. If INIT_CONST_EXPR_P is
5544 true, then INIT is an integral constant expression.
5546 FLAGS is LOOKUP_ONLYCONVERTING if the = init syntax was used, else 0
5547 if the (init) syntax was used. */
5550 cp_finish_decl (tree decl
, tree init
, bool init_const_expr_p
,
5551 tree asmspec_tree
, int flags
)
5555 const char *asmspec
= NULL
;
5556 int was_readonly
= 0;
5557 bool var_definition_p
= false;
5558 int saved_processing_template_decl
;
5561 if (decl
== error_mark_node
)
5566 error ("assignment (not initialization) in declaration");
5570 gcc_assert (TREE_CODE (decl
) != RESULT_DECL
);
5571 /* Parameters are handled by store_parm_decls, not cp_finish_decl. */
5572 gcc_assert (TREE_CODE (decl
) != PARM_DECL
);
5574 type
= TREE_TYPE (decl
);
5575 if (type
== error_mark_node
)
5578 /* Assume no cleanup is required. */
5579 cleanup
= NULL_TREE
;
5580 saved_processing_template_decl
= processing_template_decl
;
5582 /* If a name was specified, get the string. */
5583 if (global_scope_p (current_binding_level
))
5584 asmspec_tree
= maybe_apply_renaming_pragma (decl
, asmspec_tree
);
5585 if (asmspec_tree
&& asmspec_tree
!= error_mark_node
)
5586 asmspec
= TREE_STRING_POINTER (asmspec_tree
);
5588 if (current_class_type
5589 && CP_DECL_CONTEXT (decl
) == current_class_type
5590 && TYPE_BEING_DEFINED (current_class_type
)
5591 && (DECL_INITIAL (decl
) || init
))
5592 DECL_INITIALIZED_IN_CLASS_P (decl
) = 1;
5594 auto_node
= type_uses_auto (type
);
5597 if (init
== NULL_TREE
)
5599 error ("declaration of %q#D has no initializer", decl
);
5600 TREE_TYPE (decl
) = error_mark_node
;
5603 if (TREE_CODE (init
) == TREE_LIST
)
5604 init
= build_x_compound_expr_from_list (init
, "initializer");
5605 if (describable_type (init
))
5607 type
= TREE_TYPE (decl
) = do_auto_deduction (type
, init
, auto_node
);
5608 if (type
== error_mark_node
)
5613 if (init
&& TREE_CODE (decl
) == FUNCTION_DECL
)
5616 if (init
== ridpointers
[(int)RID_DELETE
])
5618 /* FIXME check this is 1st decl. */
5619 DECL_DELETED_FN (decl
) = 1;
5620 DECL_DECLARED_INLINE_P (decl
) = 1;
5621 DECL_INITIAL (decl
) = error_mark_node
;
5622 FOR_EACH_CLONE (clone
, decl
)
5624 DECL_DELETED_FN (clone
) = 1;
5625 DECL_DECLARED_INLINE_P (clone
) = 1;
5626 DECL_INITIAL (clone
) = error_mark_node
;
5630 else if (init
== ridpointers
[(int)RID_DEFAULT
])
5632 if (defaultable_fn_check (decl
))
5633 DECL_DEFAULTED_FN (decl
) = 1;
5635 DECL_INITIAL (decl
) = NULL_TREE
;
5639 if (processing_template_decl
)
5641 bool type_dependent_p
;
5643 /* Add this declaration to the statement-tree. */
5644 if (at_function_scope_p ())
5645 add_decl_expr (decl
);
5647 type_dependent_p
= dependent_type_p (type
);
5649 if (check_for_bare_parameter_packs (init
))
5652 DECL_INITIAL (decl
) = NULL_TREE
;
5655 if (init
&& init_const_expr_p
&& TREE_CODE (decl
) == VAR_DECL
)
5657 DECL_INITIALIZED_BY_CONSTANT_EXPRESSION_P (decl
) = 1;
5658 if (DECL_INTEGRAL_CONSTANT_VAR_P (decl
))
5659 TREE_CONSTANT (decl
) = 1;
5662 /* Generally, initializers in templates are expanded when the
5663 template is instantiated. But, if DECL is an integral
5664 constant static data member, then it can be used in future
5665 integral constant expressions, and its value must be
5668 && DECL_CLASS_SCOPE_P (decl
)
5669 && DECL_INTEGRAL_CONSTANT_VAR_P (decl
)
5670 && !type_dependent_p
5671 && !value_dependent_init_p (init
)))
5674 DECL_INITIAL (decl
) = init
;
5675 if (TREE_CODE (decl
) == VAR_DECL
5676 && !DECL_PRETTY_FUNCTION_P (decl
)
5677 && !type_dependent_p
)
5678 maybe_deduce_size_from_array_init (decl
, init
);
5682 if (TREE_CODE (init
) == TREE_LIST
)
5684 /* If the parenthesized-initializer form was used (e.g.,
5685 "int A<N>::i(X)"), then INIT will be a TREE_LIST of initializer
5686 arguments. (There is generally only one.) We convert them
5689 for (; list
; list
= TREE_CHAIN (list
))
5691 tree elt
= TREE_VALUE (list
);
5692 TREE_VALUE (list
) = fold_non_dependent_expr (elt
);
5696 init
= fold_non_dependent_expr (init
);
5697 processing_template_decl
= 0;
5700 /* Take care of TYPE_DECLs up front. */
5701 if (TREE_CODE (decl
) == TYPE_DECL
)
5703 if (type
!= error_mark_node
5704 && MAYBE_CLASS_TYPE_P (type
) && DECL_NAME (decl
))
5706 if (TREE_TYPE (DECL_NAME (decl
)) && TREE_TYPE (decl
) != type
)
5707 warning (0, "shadowing previous type declaration of %q#D", decl
);
5708 set_identifier_type_value (DECL_NAME (decl
), decl
);
5711 /* If we have installed this as the canonical typedef for this
5712 type, and that type has not been defined yet, delay emitting
5713 the debug information for it, as we will emit it later. */
5714 if (TYPE_MAIN_DECL (TREE_TYPE (decl
)) == decl
5715 && !COMPLETE_TYPE_P (TREE_TYPE (decl
)))
5716 TYPE_DECL_SUPPRESS_DEBUG (decl
) = 1;
5718 rest_of_decl_compilation (decl
, DECL_CONTEXT (decl
) == NULL_TREE
,
5723 /* A reference will be modified here, as it is initialized. */
5724 if (! DECL_EXTERNAL (decl
)
5725 && TREE_READONLY (decl
)
5726 && TREE_CODE (type
) == REFERENCE_TYPE
)
5729 TREE_READONLY (decl
) = 0;
5732 if (TREE_CODE (decl
) == VAR_DECL
)
5734 /* Only variables with trivial initialization and destruction can
5735 have thread-local storage. */
5736 if (DECL_THREAD_LOCAL_P (decl
)
5737 && (type_has_nontrivial_default_init (TREE_TYPE (decl
))
5738 || TYPE_HAS_NONTRIVIAL_DESTRUCTOR (TREE_TYPE (decl
))))
5739 error ("%qD cannot be thread-local because it has non-trivial "
5740 "type %qT", decl
, TREE_TYPE (decl
));
5741 /* If this is a local variable that will need a mangled name,
5742 register it now. We must do this before processing the
5743 initializer for the variable, since the initialization might
5744 require a guard variable, and since the mangled name of the
5745 guard variable will depend on the mangled name of this
5747 if (DECL_FUNCTION_SCOPE_P (decl
)
5748 && TREE_STATIC (decl
)
5749 && !DECL_ARTIFICIAL (decl
))
5751 push_local_name (decl
);
5752 if (DECL_CONSTRUCTOR_P (current_function_decl
)
5753 || DECL_DESTRUCTOR_P (current_function_decl
))
5754 /* Normally local_decls is populated during GIMPLE lowering,
5755 but [cd]tors are never actually compiled directly. We need
5756 to put statics on the list so we can deal with the label
5757 address extension. */
5758 cfun
->local_decls
= tree_cons (NULL_TREE
, decl
,
5762 /* Convert the initializer to the type of DECL, if we have not
5763 already initialized DECL. */
5764 if (!DECL_INITIALIZED_P (decl
)
5765 /* If !DECL_EXTERNAL then DECL is being defined. In the
5766 case of a static data member initialized inside the
5767 class-specifier, there can be an initializer even if DECL
5768 is *not* defined. */
5769 && (!DECL_EXTERNAL (decl
) || init
))
5771 if (TYPE_FOR_JAVA (type
) && MAYBE_CLASS_TYPE_P (type
))
5774 = IDENTIFIER_GLOBAL_VALUE (get_identifier ("jclass"));
5775 /* Allow libjava/prims.cc define primitive classes. */
5776 if (init
!= NULL_TREE
5777 || jclass
== NULL_TREE
5778 || TREE_CODE (jclass
) != TYPE_DECL
5779 || !POINTER_TYPE_P (TREE_TYPE (jclass
))
5780 || !same_type_ignoring_top_level_qualifiers_p
5781 (type
, TREE_TYPE (TREE_TYPE (jclass
))))
5782 error ("Java object %qD not allocated with %<new%>", decl
);
5787 DECL_NONTRIVIALLY_INITIALIZED_P (decl
) = 1;
5788 if (init_const_expr_p
)
5790 DECL_INITIALIZED_BY_CONSTANT_EXPRESSION_P (decl
) = 1;
5791 if (DECL_INTEGRAL_CONSTANT_VAR_P (decl
))
5792 TREE_CONSTANT (decl
) = 1;
5795 init
= check_initializer (decl
, init
, flags
, &cleanup
);
5796 /* Thread-local storage cannot be dynamically initialized. */
5797 if (DECL_THREAD_LOCAL_P (decl
) && init
)
5799 error ("%qD is thread-local and so cannot be dynamically "
5800 "initialized", decl
);
5804 /* Check that the initializer for a static data member was a
5805 constant. Although we check in the parser that the
5806 initializer is an integral constant expression, we do not
5807 simplify division-by-zero at the point at which it
5808 occurs. Therefore, in:
5810 struct S { static const int i = 7 / 0; };
5812 we issue an error at this point. It would
5813 probably be better to forbid division by zero in
5814 integral constant expressions. */
5815 if (DECL_EXTERNAL (decl
) && init
)
5817 error ("%qD cannot be initialized by a non-constant expression"
5818 " when being declared", decl
);
5819 DECL_INITIALIZED_IN_CLASS_P (decl
) = 0;
5827 The memory occupied by any object of static storage
5828 duration is zero-initialized at program startup before
5829 any other initialization takes place.
5831 We cannot create an appropriate initializer until after
5832 the type of DECL is finalized. If DECL_INITIAL is set,
5833 then the DECL is statically initialized, and any
5834 necessary zero-initialization has already been performed. */
5835 if (TREE_STATIC (decl
) && !DECL_INITIAL (decl
))
5836 DECL_INITIAL (decl
) = build_zero_init (TREE_TYPE (decl
),
5837 /*nelts=*/NULL_TREE
,
5838 /*static_storage_p=*/true);
5839 /* Remember that the initialization for this variable has
5841 DECL_INITIALIZED_P (decl
) = 1;
5842 /* This declaration is the definition of this variable,
5843 unless we are initializing a static data member within
5844 the class specifier. */
5845 if (!DECL_EXTERNAL (decl
))
5846 var_definition_p
= true;
5848 /* If the variable has an array type, lay out the type, even if
5849 there is no initializer. It is valid to index through the
5850 array, and we must get TYPE_ALIGN set correctly on the array
5852 else if (TREE_CODE (type
) == ARRAY_TYPE
)
5855 if (!processing_template_decl
5856 && TREE_STATIC (decl
)
5857 && !at_function_scope_p ()
5858 && current_function_decl
== NULL
)
5859 /* So decl is a global variable or a static member of a
5860 non local class. Record the types it uses
5861 so that we can decide later to emit debug info for them. */
5862 record_types_used_by_current_var_decl (decl
);
5864 else if (TREE_CODE (decl
) == FIELD_DECL
5865 && TYPE_FOR_JAVA (type
) && MAYBE_CLASS_TYPE_P (type
))
5866 error ("non-static data member %qD has Java class type", decl
);
5868 /* Add this declaration to the statement-tree. This needs to happen
5869 after the call to check_initializer so that the DECL_EXPR for a
5870 reference temp is added before the DECL_EXPR for the reference itself. */
5871 if (at_function_scope_p ())
5872 add_decl_expr (decl
);
5874 /* Let the middle end know about variables and functions -- but not
5875 static data members in uninstantiated class templates. */
5876 if (!saved_processing_template_decl
5877 && (TREE_CODE (decl
) == VAR_DECL
5878 || TREE_CODE (decl
) == FUNCTION_DECL
))
5880 if (TREE_CODE (decl
) == VAR_DECL
)
5882 layout_var_decl (decl
);
5883 maybe_commonize_var (decl
);
5886 /* This needs to happen after the linkage is set. */
5887 determine_visibility (decl
);
5889 if (var_definition_p
&& TREE_STATIC (decl
))
5891 /* If a TREE_READONLY variable needs initialization
5892 at runtime, it is no longer readonly and we need to
5893 avoid MEM_READONLY_P being set on RTL created for it. */
5896 if (TREE_READONLY (decl
))
5897 TREE_READONLY (decl
) = 0;
5900 else if (was_readonly
)
5901 TREE_READONLY (decl
) = 1;
5904 make_rtl_for_nonlocal_decl (decl
, init
, asmspec
);
5906 /* Check for abstractness of the type. Notice that there is no
5907 need to strip array types here since the check for those types
5908 is already done within create_array_type_for_decl. */
5909 if (TREE_CODE (type
) == FUNCTION_TYPE
5910 || TREE_CODE (type
) == METHOD_TYPE
)
5911 abstract_virtuals_error (decl
, TREE_TYPE (type
));
5913 abstract_virtuals_error (decl
, type
);
5915 if (TREE_TYPE (decl
) == error_mark_node
)
5916 /* No initialization required. */
5918 else if (TREE_CODE (decl
) == FUNCTION_DECL
)
5922 if (init
== ridpointers
[(int)RID_DEFAULT
])
5924 /* An out-of-class default definition is defined at
5925 the point where it is explicitly defaulted. */
5926 if (DECL_INITIAL (decl
) == error_mark_node
)
5927 synthesize_method (decl
);
5930 error ("function %q#D is initialized like a variable", decl
);
5932 /* else no initialization required. */
5934 else if (DECL_EXTERNAL (decl
)
5935 && ! (DECL_LANG_SPECIFIC (decl
)
5936 && DECL_NOT_REALLY_EXTERN (decl
)))
5939 DECL_INITIAL (decl
) = init
;
5941 /* A variable definition. */
5942 else if (DECL_FUNCTION_SCOPE_P (decl
) && !TREE_STATIC (decl
))
5943 /* Initialize the local variable. */
5944 initialize_local_var (decl
, init
);
5946 /* If a variable is defined, and then a subsequent
5947 definition with external linkage is encountered, we will
5948 get here twice for the same variable. We want to avoid
5949 calling expand_static_init more than once. For variables
5950 that are not static data members, we can call
5951 expand_static_init only when we actually process the
5952 initializer. It is not legal to redeclare a static data
5953 member, so this issue does not arise in that case. */
5954 else if (var_definition_p
&& TREE_STATIC (decl
))
5955 expand_static_init (decl
, init
);
5958 /* If a CLEANUP_STMT was created to destroy a temporary bound to a
5959 reference, insert it in the statement-tree now. */
5961 push_cleanup (decl
, cleanup
, false);
5964 processing_template_decl
= saved_processing_template_decl
;
5967 TREE_READONLY (decl
) = 1;
5969 /* If this was marked 'used', be sure it will be output. */
5970 if (lookup_attribute ("used", DECL_ATTRIBUTES (decl
)))
5971 mark_decl_referenced (decl
);
5974 /* Returns a declaration for a VAR_DECL as if:
5976 extern "C" TYPE NAME;
5978 had been seen. Used to create compiler-generated global
5982 declare_global_var (tree name
, tree type
)
5986 push_to_top_level ();
5987 decl
= build_decl (input_location
, VAR_DECL
, name
, type
);
5988 TREE_PUBLIC (decl
) = 1;
5989 DECL_EXTERNAL (decl
) = 1;
5990 DECL_ARTIFICIAL (decl
) = 1;
5991 /* If the user has explicitly declared this variable (perhaps
5992 because the code we are compiling is part of a low-level runtime
5993 library), then it is possible that our declaration will be merged
5994 with theirs by pushdecl. */
5995 decl
= pushdecl (decl
);
5996 cp_finish_decl (decl
, NULL_TREE
, false, NULL_TREE
, 0);
5997 pop_from_top_level ();
6002 /* Returns the type for the argument to "__cxa_atexit" (or "atexit",
6003 if "__cxa_atexit" is not being used) corresponding to the function
6004 to be called when the program exits. */
6007 get_atexit_fn_ptr_type (void)
6012 if (!atexit_fn_ptr_type_node
)
6014 if (flag_use_cxa_atexit
6015 && !targetm
.cxx
.use_atexit_for_cxa_atexit ())
6016 /* The parameter to "__cxa_atexit" is "void (*)(void *)". */
6017 arg_types
= tree_cons (NULL_TREE
, ptr_type_node
, void_list_node
);
6019 /* The parameter to "atexit" is "void (*)(void)". */
6020 arg_types
= void_list_node
;
6022 fn_type
= build_function_type (void_type_node
, arg_types
);
6023 atexit_fn_ptr_type_node
= build_pointer_type (fn_type
);
6026 return atexit_fn_ptr_type_node
;
6029 /* Returns a pointer to the `atexit' function. Note that if
6030 FLAG_USE_CXA_ATEXIT is nonzero, then this will actually be the new
6031 `__cxa_atexit' function specified in the IA64 C++ ABI. */
6034 get_atexit_node (void)
6041 bool use_aeabi_atexit
;
6046 if (flag_use_cxa_atexit
&& !targetm
.cxx
.use_atexit_for_cxa_atexit ())
6048 /* The declaration for `__cxa_atexit' is:
6050 int __cxa_atexit (void (*)(void *), void *, void *)
6052 We build up the argument types and then then function type
6055 use_aeabi_atexit
= targetm
.cxx
.use_aeabi_atexit ();
6056 /* First, build the pointer-to-function type for the first
6058 fn_ptr_type
= get_atexit_fn_ptr_type ();
6059 /* Then, build the rest of the argument types. */
6060 arg_types
= tree_cons (NULL_TREE
, ptr_type_node
, void_list_node
);
6061 if (use_aeabi_atexit
)
6063 arg_types
= tree_cons (NULL_TREE
, fn_ptr_type
, arg_types
);
6064 arg_types
= tree_cons (NULL_TREE
, ptr_type_node
, arg_types
);
6068 arg_types
= tree_cons (NULL_TREE
, ptr_type_node
, arg_types
);
6069 arg_types
= tree_cons (NULL_TREE
, fn_ptr_type
, arg_types
);
6071 /* And the final __cxa_atexit type. */
6072 fn_type
= build_function_type (integer_type_node
, arg_types
);
6073 fn_ptr_type
= build_pointer_type (fn_type
);
6074 if (use_aeabi_atexit
)
6075 name
= "__aeabi_atexit";
6077 name
= "__cxa_atexit";
6081 /* The declaration for `atexit' is:
6083 int atexit (void (*)());
6085 We build up the argument types and then then function type
6087 fn_ptr_type
= get_atexit_fn_ptr_type ();
6088 arg_types
= tree_cons (NULL_TREE
, fn_ptr_type
, void_list_node
);
6089 /* Build the final atexit type. */
6090 fn_type
= build_function_type (integer_type_node
, arg_types
);
6094 /* Now, build the function declaration. */
6095 push_lang_context (lang_name_c
);
6096 atexit_fndecl
= build_library_fn_ptr (name
, fn_type
);
6097 mark_used (atexit_fndecl
);
6098 pop_lang_context ();
6099 atexit_node
= decay_conversion (atexit_fndecl
);
6104 /* Returns the __dso_handle VAR_DECL. */
6107 get_dso_handle_node (void)
6109 if (dso_handle_node
)
6110 return dso_handle_node
;
6112 /* Declare the variable. */
6113 dso_handle_node
= declare_global_var (get_identifier ("__dso_handle"),
6116 return dso_handle_node
;
6119 /* Begin a new function with internal linkage whose job will be simply
6120 to destroy some particular variable. */
6122 static GTY(()) int start_cleanup_cnt
;
6125 start_cleanup_fn (void)
6130 bool use_cxa_atexit
= flag_use_cxa_atexit
6131 && !targetm
.cxx
.use_atexit_for_cxa_atexit ();
6133 push_to_top_level ();
6135 /* No need to mangle this. */
6136 push_lang_context (lang_name_c
);
6138 /* Build the name of the function. */
6139 sprintf (name
, "__tcf_%d", start_cleanup_cnt
++);
6140 /* Build the function declaration. */
6141 fntype
= TREE_TYPE (get_atexit_fn_ptr_type ());
6142 fndecl
= build_lang_decl (FUNCTION_DECL
, get_identifier (name
), fntype
);
6143 /* It's a function with internal linkage, generated by the
6145 TREE_PUBLIC (fndecl
) = 0;
6146 DECL_ARTIFICIAL (fndecl
) = 1;
6147 /* Make the function `inline' so that it is only emitted if it is
6148 actually needed. It is unlikely that it will be inlined, since
6149 it is only called via a function pointer, but we avoid unnecessary
6150 emissions this way. */
6151 DECL_DECLARED_INLINE_P (fndecl
) = 1;
6152 DECL_INTERFACE_KNOWN (fndecl
) = 1;
6153 /* Build the parameter. */
6158 parmdecl
= cp_build_parm_decl (NULL_TREE
, ptr_type_node
);
6159 DECL_CONTEXT (parmdecl
) = fndecl
;
6160 TREE_USED (parmdecl
) = 1;
6161 DECL_ARGUMENTS (fndecl
) = parmdecl
;
6165 start_preparsed_function (fndecl
, NULL_TREE
, SF_PRE_PARSED
);
6167 pop_lang_context ();
6169 return current_function_decl
;
6172 /* Finish the cleanup function begun by start_cleanup_fn. */
6175 end_cleanup_fn (void)
6177 expand_or_defer_fn (finish_function (0));
6179 pop_from_top_level ();
6182 /* Generate code to handle the destruction of DECL, an object with
6183 static storage duration. */
6186 register_dtor_fn (tree decl
)
6195 type
= TREE_TYPE (decl
);
6196 if (TYPE_HAS_TRIVIAL_DESTRUCTOR (type
))
6197 return void_zero_node
;
6199 /* If we're using "__cxa_atexit" (or "__aeabi_atexit"), and DECL is
6200 a class object, we can just pass the destructor to
6201 "__cxa_atexit"; we don't have to build a temporary function to do
6203 use_dtor
= (flag_use_cxa_atexit
6204 && !targetm
.cxx
.use_atexit_for_cxa_atexit ()
6205 && CLASS_TYPE_P (type
));
6210 /* Find the destructor. */
6211 idx
= lookup_fnfields_1 (type
, complete_dtor_identifier
);
6212 gcc_assert (idx
>= 0);
6213 cleanup
= VEC_index (tree
, CLASSTYPE_METHOD_VEC (type
), idx
);
6214 /* Make sure it is accessible. */
6215 perform_or_defer_access_check (TYPE_BINFO (type
), cleanup
, cleanup
);
6219 /* Call build_cleanup before we enter the anonymous function so
6220 that any access checks will be done relative to the current
6221 scope, rather than the scope of the anonymous function. */
6222 build_cleanup (decl
);
6224 /* Now start the function. */
6225 cleanup
= start_cleanup_fn ();
6227 /* Now, recompute the cleanup. It may contain SAVE_EXPRs that refer
6228 to the original function, rather than the anonymous one. That
6229 will make the back end think that nested functions are in use,
6230 which causes confusion. */
6231 push_deferring_access_checks (dk_no_check
);
6232 fcall
= build_cleanup (decl
);
6233 pop_deferring_access_checks ();
6235 /* Create the body of the anonymous function. */
6236 compound_stmt
= begin_compound_stmt (BCS_FN_BODY
);
6237 finish_expr_stmt (fcall
);
6238 finish_compound_stmt (compound_stmt
);
6242 /* Call atexit with the cleanup function. */
6243 mark_used (cleanup
);
6244 cleanup
= build_address (cleanup
);
6245 if (flag_use_cxa_atexit
&& !targetm
.cxx
.use_atexit_for_cxa_atexit ())
6251 /* We must convert CLEANUP to the type that "__cxa_atexit"
6253 cleanup
= build_nop (get_atexit_fn_ptr_type (), cleanup
);
6254 /* "__cxa_atexit" will pass the address of DECL to the
6255 cleanup function. */
6257 addr
= build_address (decl
);
6258 /* The declared type of the parameter to "__cxa_atexit" is
6259 "void *". For plain "T*", we could just let the
6260 machinery in cp_build_function_call convert it -- but if the
6261 type is "cv-qualified T *", then we need to convert it
6262 before passing it in, to avoid spurious errors. */
6263 addr
= build_nop (ptr_type_node
, addr
);
6266 /* Since the cleanup functions we build ignore the address
6267 they're given, there's no reason to pass the actual address
6268 in, and, in general, it's cheaper to pass NULL than any
6270 addr
= null_pointer_node
;
6271 args
= tree_cons (NULL_TREE
,
6272 cp_build_unary_op (ADDR_EXPR
, get_dso_handle_node (), 0,
6273 tf_warning_or_error
),
6275 if (targetm
.cxx
.use_aeabi_atexit ())
6277 args
= tree_cons (NULL_TREE
, cleanup
, args
);
6278 args
= tree_cons (NULL_TREE
, addr
, args
);
6282 args
= tree_cons (NULL_TREE
, addr
, args
);
6283 args
= tree_cons (NULL_TREE
, cleanup
, args
);
6287 args
= tree_cons (NULL_TREE
, cleanup
, NULL_TREE
);
6288 return cp_build_function_call (get_atexit_node (), args
,
6289 tf_warning_or_error
);
6292 /* DECL is a VAR_DECL with static storage duration. INIT, if present,
6293 is its initializer. Generate code to handle the construction
6294 and destruction of DECL. */
6297 expand_static_init (tree decl
, tree init
)
6299 gcc_assert (TREE_CODE (decl
) == VAR_DECL
);
6300 gcc_assert (TREE_STATIC (decl
));
6302 /* Some variables require no initialization. */
6304 && !TYPE_NEEDS_CONSTRUCTING (TREE_TYPE (decl
))
6305 && TYPE_HAS_TRIVIAL_DESTRUCTOR (TREE_TYPE (decl
)))
6308 if (DECL_FUNCTION_SCOPE_P (decl
))
6310 /* Emit code to perform this initialization but once. */
6311 tree if_stmt
= NULL_TREE
, inner_if_stmt
= NULL_TREE
;
6312 tree then_clause
= NULL_TREE
, inner_then_clause
= NULL_TREE
;
6313 tree guard
, guard_addr
;
6314 tree acquire_fn
, release_fn
, abort_fn
;
6317 /* Emit code to perform this initialization but once. This code
6320 static <type> guard;
6321 if (!guard.first_byte) {
6322 if (__cxa_guard_acquire (&guard)) {
6325 // Do initialization.
6326 flag = true; __cxa_guard_release (&guard);
6327 // Register variable for destruction at end of program.
6329 if (!flag) __cxa_guard_abort (&guard);
6333 Note that the `flag' variable is only set to 1 *after* the
6334 initialization is complete. This ensures that an exception,
6335 thrown during the construction, will cause the variable to
6336 reinitialized when we pass through this code again, as per:
6340 If the initialization exits by throwing an exception, the
6341 initialization is not complete, so it will be tried again
6342 the next time control enters the declaration.
6344 This process should be thread-safe, too; multiple threads
6345 should not be able to initialize the variable more than
6348 /* Create the guard variable. */
6349 guard
= get_guard (decl
);
6351 /* This optimization isn't safe on targets with relaxed memory
6352 consistency. On such targets we force synchronization in
6353 __cxa_guard_acquire. */
6354 if (!targetm
.relaxed_ordering
|| !flag_threadsafe_statics
)
6356 /* Begin the conditional initialization. */
6357 if_stmt
= begin_if_stmt ();
6358 finish_if_stmt_cond (get_guard_cond (guard
), if_stmt
);
6359 then_clause
= begin_compound_stmt (BCS_NO_SCOPE
);
6362 if (flag_threadsafe_statics
)
6364 guard_addr
= build_address (guard
);
6366 acquire_fn
= get_identifier ("__cxa_guard_acquire");
6367 release_fn
= get_identifier ("__cxa_guard_release");
6368 abort_fn
= get_identifier ("__cxa_guard_abort");
6369 if (!get_global_value_if_present (acquire_fn
, &acquire_fn
))
6371 tree argtypes
= tree_cons (NULL_TREE
, TREE_TYPE (guard_addr
),
6373 tree vfntype
= build_function_type (void_type_node
, argtypes
);
6374 acquire_fn
= push_library_fn
6375 (acquire_fn
, build_function_type (integer_type_node
, argtypes
),
6377 release_fn
= push_library_fn (release_fn
, vfntype
, NULL_TREE
);
6378 abort_fn
= push_library_fn (abort_fn
, vfntype
, NULL_TREE
);
6382 release_fn
= identifier_global_value (release_fn
);
6383 abort_fn
= identifier_global_value (abort_fn
);
6386 inner_if_stmt
= begin_if_stmt ();
6387 finish_if_stmt_cond (build_call_n (acquire_fn
, 1, guard_addr
),
6390 inner_then_clause
= begin_compound_stmt (BCS_NO_SCOPE
);
6391 begin
= get_target_expr (boolean_false_node
);
6392 flag
= TARGET_EXPR_SLOT (begin
);
6394 TARGET_EXPR_CLEANUP (begin
)
6395 = build3 (COND_EXPR
, void_type_node
, flag
,
6397 build_call_n (abort_fn
, 1, guard_addr
));
6398 CLEANUP_EH_ONLY (begin
) = 1;
6400 /* Do the initialization itself. */
6401 init
= add_stmt_to_compound (begin
, init
);
6402 init
= add_stmt_to_compound
6403 (init
, build2 (MODIFY_EXPR
, void_type_node
, flag
, boolean_true_node
));
6404 init
= add_stmt_to_compound
6405 (init
, build_call_n (release_fn
, 1, guard_addr
));
6408 init
= add_stmt_to_compound (init
, set_guard (guard
));
6410 /* Use atexit to register a function for destroying this static
6412 init
= add_stmt_to_compound (init
, register_dtor_fn (decl
));
6414 finish_expr_stmt (init
);
6416 if (flag_threadsafe_statics
)
6418 finish_compound_stmt (inner_then_clause
);
6419 finish_then_clause (inner_if_stmt
);
6420 finish_if_stmt (inner_if_stmt
);
6423 if (!targetm
.relaxed_ordering
|| !flag_threadsafe_statics
)
6425 finish_compound_stmt (then_clause
);
6426 finish_then_clause (if_stmt
);
6427 finish_if_stmt (if_stmt
);
6431 static_aggregates
= tree_cons (init
, decl
, static_aggregates
);
6435 /* Make TYPE a complete type based on INITIAL_VALUE.
6436 Return 0 if successful, 1 if INITIAL_VALUE can't be deciphered,
6437 2 if there was no information (in which case assume 0 if DO_DEFAULT),
6438 3 if the initializer list is empty (in pedantic mode). */
6441 cp_complete_array_type (tree
*ptype
, tree initial_value
, bool do_default
)
6444 tree type
, elt_type
;
6448 unsigned HOST_WIDE_INT i
;
6451 /* An array of character type can be initialized from a
6452 brace-enclosed string constant.
6454 FIXME: this code is duplicated from reshape_init. Probably
6455 we should just call reshape_init here? */
6456 if (char_type_p (TYPE_MAIN_VARIANT (TREE_TYPE (*ptype
)))
6457 && TREE_CODE (initial_value
) == CONSTRUCTOR
6458 && !VEC_empty (constructor_elt
, CONSTRUCTOR_ELTS (initial_value
)))
6460 VEC(constructor_elt
,gc
) *v
= CONSTRUCTOR_ELTS (initial_value
);
6461 tree value
= VEC_index (constructor_elt
, v
, 0)->value
;
6463 if (TREE_CODE (value
) == STRING_CST
6464 && VEC_length (constructor_elt
, v
) == 1)
6465 initial_value
= value
;
6468 /* If any of the elements are parameter packs, we can't actually
6469 complete this type now because the array size is dependent. */
6470 if (TREE_CODE (initial_value
) == CONSTRUCTOR
)
6472 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (initial_value
),
6475 if (PACK_EXPANSION_P (value
))
6481 failure
= complete_array_type (ptype
, initial_value
, do_default
);
6483 /* We can create the array before the element type is complete, which
6484 means that we didn't have these two bits set in the original type
6485 either. In completing the type, we are expected to propagate these
6486 bits. See also complete_type which does the same thing for arrays
6489 if (TYPE_DOMAIN (type
))
6491 elt_type
= TREE_TYPE (type
);
6492 TYPE_NEEDS_CONSTRUCTING (type
) = TYPE_NEEDS_CONSTRUCTING (elt_type
);
6493 TYPE_HAS_NONTRIVIAL_DESTRUCTOR (type
)
6494 = TYPE_HAS_NONTRIVIAL_DESTRUCTOR (elt_type
);
6500 /* Return zero if something is declared to be a member of type
6501 CTYPE when in the context of CUR_TYPE. STRING is the error
6502 message to print in that case. Otherwise, quietly return 1. */
6505 member_function_or_else (tree ctype
, tree cur_type
, enum overload_flags flags
)
6507 if (ctype
&& ctype
!= cur_type
)
6509 if (flags
== DTOR_FLAG
)
6510 error ("destructor for alien class %qT cannot be a member", ctype
);
6512 error ("constructor for alien class %qT cannot be a member", ctype
);
6518 /* Subroutine of `grokdeclarator'. */
6520 /* Generate errors possibly applicable for a given set of specifiers.
6521 This is for ARM $7.1.2. */
6524 bad_specifiers (tree object
,
6533 error ("%qD declared as a %<virtual%> %s", object
, type
);
6535 error ("%qD declared as an %<inline%> %s", object
, type
);
6537 error ("%<const%> and %<volatile%> function specifiers on "
6538 "%qD invalid in %s declaration",
6541 error ("%q+D declared as a friend", object
);
6543 && (TREE_CODE (object
) == TYPE_DECL
6544 || (!TYPE_PTRFN_P (TREE_TYPE (object
))
6545 && !TYPE_REFFN_P (TREE_TYPE (object
))
6546 && !TYPE_PTRMEMFUNC_P (TREE_TYPE (object
)))))
6547 error ("%q+D declared with an exception specification", object
);
6550 /* DECL is a member function or static data member and is presently
6551 being defined. Check that the definition is taking place in a
6555 check_class_member_definition_namespace (tree decl
)
6557 /* These checks only apply to member functions and static data
6559 gcc_assert (TREE_CODE (decl
) == FUNCTION_DECL
6560 || TREE_CODE (decl
) == VAR_DECL
);
6561 /* We check for problems with specializations in pt.c in
6562 check_specialization_namespace, where we can issue better
6564 if (processing_specialization
)
6566 /* There are no restrictions on the placement of
6567 explicit instantiations. */
6568 if (processing_explicit_instantiation
)
6572 A member function definition that appears outside of the
6573 class definition shall appear in a namespace scope enclosing
6574 the class definition.
6578 The definition for a static data member shall appear in a
6579 namespace scope enclosing the member's class definition. */
6580 if (!is_ancestor (current_namespace
, DECL_CONTEXT (decl
)))
6581 permerror (input_location
, "definition of %qD is not in namespace enclosing %qT",
6582 decl
, DECL_CONTEXT (decl
));
6585 /* Build a PARM_DECL for the "this" parameter. TYPE is the
6586 METHOD_TYPE for a non-static member function; QUALS are the
6587 cv-qualifiers that apply to the function. */
6590 build_this_parm (tree type
, cp_cv_quals quals
)
6595 cp_cv_quals this_quals
;
6597 this_type
= TREE_VALUE (TYPE_ARG_TYPES (type
));
6598 /* The `this' parameter is implicitly `const'; it cannot be
6600 this_quals
= (quals
& TYPE_QUAL_RESTRICT
) | TYPE_QUAL_CONST
;
6601 qual_type
= cp_build_qualified_type (this_type
, this_quals
);
6602 parm
= build_artificial_parm (this_identifier
, qual_type
);
6603 cp_apply_type_quals_to_decl (this_quals
, parm
);
6607 /* CTYPE is class type, or null if non-class.
6608 TYPE is type this FUNCTION_DECL should have, either FUNCTION_TYPE
6610 DECLARATOR is the function's name.
6611 PARMS is a chain of PARM_DECLs for the function.
6612 VIRTUALP is truthvalue of whether the function is virtual or not.
6613 FLAGS are to be passed through to `grokclassfn'.
6614 QUALS are qualifiers indicating whether the function is `const'
6616 RAISES is a list of exceptions that this function can raise.
6617 CHECK is 1 if we must find this method in CTYPE, 0 if we should
6618 not look, and -1 if we should not call `grokclassfn' at all.
6620 SFK is the kind of special function (if any) for the new function.
6622 Returns `NULL_TREE' if something goes wrong, after issuing
6623 applicable error messages. */
6626 grokfndecl (tree ctype
,
6630 tree orig_declarator
,
6632 enum overload_flags flags
,
6639 special_function_kind sfk
,
6644 location_t location
)
6647 int staticp
= ctype
&& TREE_CODE (type
) == FUNCTION_TYPE
;
6651 type
= build_exception_variant (type
, raises
);
6653 decl
= build_lang_decl (FUNCTION_DECL
, declarator
, type
);
6655 /* If we have an explicit location, use it, otherwise use whatever
6656 build_lang_decl used (probably input_location). */
6657 if (location
!= UNKNOWN_LOCATION
)
6658 DECL_SOURCE_LOCATION (decl
) = location
;
6660 if (TREE_CODE (type
) == METHOD_TYPE
)
6663 parm
= build_this_parm (type
, quals
);
6664 TREE_CHAIN (parm
) = parms
;
6667 DECL_ARGUMENTS (decl
) = parms
;
6668 for (t
= parms
; t
; t
= TREE_CHAIN (t
))
6669 DECL_CONTEXT (t
) = decl
;
6670 /* Propagate volatile out from type to decl. */
6671 if (TYPE_VOLATILE (type
))
6672 TREE_THIS_VOLATILE (decl
) = 1;
6674 /* Setup decl according to sfk. */
6677 case sfk_constructor
:
6678 case sfk_copy_constructor
:
6679 case sfk_move_constructor
:
6680 DECL_CONSTRUCTOR_P (decl
) = 1;
6682 case sfk_destructor
:
6683 DECL_DESTRUCTOR_P (decl
) = 1;
6689 /* If pointers to member functions use the least significant bit to
6690 indicate whether a function is virtual, ensure a pointer
6691 to this function will have that bit clear. */
6692 if (TARGET_PTRMEMFUNC_VBIT_LOCATION
== ptrmemfunc_vbit_in_pfn
6693 && TREE_CODE (type
) == METHOD_TYPE
6694 && DECL_ALIGN (decl
) < 2 * BITS_PER_UNIT
)
6695 DECL_ALIGN (decl
) = 2 * BITS_PER_UNIT
;
6698 && TREE_CODE (orig_declarator
) == TEMPLATE_ID_EXPR
)
6702 ("defining explicit specialization %qD in friend declaration",
6706 tree fns
= TREE_OPERAND (orig_declarator
, 0);
6707 tree args
= TREE_OPERAND (orig_declarator
, 1);
6709 if (PROCESSING_REAL_TEMPLATE_DECL_P ())
6711 /* Something like `template <class T> friend void f<T>()'. */
6712 error ("invalid use of template-id %qD in declaration "
6713 "of primary template",
6719 /* A friend declaration of the form friend void f<>(). Record
6720 the information in the TEMPLATE_ID_EXPR. */
6721 SET_DECL_IMPLICIT_INSTANTIATION (decl
);
6723 if (TREE_CODE (fns
) == COMPONENT_REF
)
6725 /* Due to bison parser ickiness, we will have already looked
6726 up an operator_name or PFUNCNAME within the current class
6727 (see template_id in parse.y). If the current class contains
6728 such a name, we'll get a COMPONENT_REF here. Undo that. */
6730 gcc_assert (TREE_TYPE (TREE_OPERAND (fns
, 0))
6731 == current_class_type
);
6732 fns
= TREE_OPERAND (fns
, 1);
6734 gcc_assert (TREE_CODE (fns
) == IDENTIFIER_NODE
6735 || TREE_CODE (fns
) == OVERLOAD
);
6736 DECL_TEMPLATE_INFO (decl
) = build_template_info (fns
, args
);
6738 for (t
= TYPE_ARG_TYPES (TREE_TYPE (decl
)); t
; t
= TREE_CHAIN (t
))
6739 if (TREE_PURPOSE (t
)
6740 && TREE_CODE (TREE_PURPOSE (t
)) == DEFAULT_ARG
)
6742 error ("default arguments are not allowed in declaration "
6743 "of friend template specialization %qD",
6750 error ("%<inline%> is not allowed in declaration of friend "
6751 "template specialization %qD",
6758 /* If this decl has namespace scope, set that up. */
6760 set_decl_namespace (decl
, in_namespace
, friendp
);
6762 DECL_CONTEXT (decl
) = FROB_CONTEXT (current_namespace
);
6764 /* `main' and builtins have implicit 'C' linkage. */
6765 if ((MAIN_NAME_P (declarator
)
6766 || (IDENTIFIER_LENGTH (declarator
) > 10
6767 && IDENTIFIER_POINTER (declarator
)[0] == '_'
6768 && IDENTIFIER_POINTER (declarator
)[1] == '_'
6769 && strncmp (IDENTIFIER_POINTER (declarator
)+2, "builtin_", 8) == 0))
6770 && current_lang_name
== lang_name_cplusplus
6771 && ctype
== NULL_TREE
6772 /* NULL_TREE means global namespace. */
6773 && DECL_CONTEXT (decl
) == NULL_TREE
)
6774 SET_DECL_LANGUAGE (decl
, lang_c
);
6776 /* Should probably propagate const out from type to decl I bet (mrs). */
6779 DECL_STATIC_FUNCTION_P (decl
) = 1;
6780 DECL_CONTEXT (decl
) = ctype
;
6785 DECL_CONTEXT (decl
) = ctype
;
6787 check_class_member_definition_namespace (decl
);
6790 if (ctype
== NULL_TREE
&& DECL_MAIN_P (decl
))
6792 if (processing_template_decl
)
6793 error ("cannot declare %<::main%> to be a template");
6795 error ("cannot declare %<::main%> to be inline");
6797 error ("cannot declare %<::main%> to be static");
6802 /* Members of anonymous types and local classes have no linkage; make
6803 them internal. If a typedef is made later, this will be changed. */
6804 if (ctype
&& (TYPE_ANONYMOUS_P (ctype
)
6805 || decl_function_context (TYPE_MAIN_DECL (ctype
))))
6808 if (publicp
&& cxx_dialect
== cxx98
)
6810 /* [basic.link]: A name with no linkage (notably, the name of a class
6811 or enumeration declared in a local scope) shall not be used to
6812 declare an entity with linkage.
6814 DR 757 relaxes this restriction for C++0x. */
6815 t
= no_linkage_check (TREE_TYPE (decl
),
6816 /*relaxed_p=*/false);
6819 if (TYPE_ANONYMOUS_P (t
))
6821 if (DECL_EXTERN_C_P (decl
))
6822 /* Allow this; it's pretty common in C. */;
6825 permerror (input_location
, "non-local function %q#D uses anonymous type",
6827 if (DECL_ORIGINAL_TYPE (TYPE_NAME (t
)))
6828 permerror (input_location
, "%q+#D does not refer to the unqualified "
6829 "type, so it is not used for linkage",
6834 permerror (input_location
, "non-local function %q#D uses local type %qT", decl
, t
);
6838 TREE_PUBLIC (decl
) = publicp
;
6841 DECL_INTERFACE_KNOWN (decl
) = 1;
6842 DECL_NOT_REALLY_EXTERN (decl
) = 1;
6845 /* If the declaration was declared inline, mark it as such. */
6847 DECL_DECLARED_INLINE_P (decl
) = 1;
6849 DECL_EXTERNAL (decl
) = 1;
6850 if (quals
&& TREE_CODE (type
) == FUNCTION_TYPE
)
6853 ? G_("static member function %qD cannot have cv-qualifier")
6854 : G_("non-member function %qD cannot have cv-qualifier"),
6856 quals
= TYPE_UNQUALIFIED
;
6859 if (IDENTIFIER_OPNAME_P (DECL_NAME (decl
))
6860 && !grok_op_properties (decl
, /*complain=*/true))
6864 /* Make the init_value nonzero so pushdecl knows this is not
6865 tentative. error_mark_node is replaced later with the BLOCK. */
6866 DECL_INITIAL (decl
) = error_mark_node
;
6868 if (TYPE_NOTHROW_P (type
) || nothrow_libfn_p (decl
))
6869 TREE_NOTHROW (decl
) = 1;
6871 /* Caller will do the rest of this. */
6875 if (ctype
!= NULL_TREE
)
6876 grokclassfn (ctype
, decl
, flags
);
6878 decl
= check_explicit_specialization (orig_declarator
, decl
,
6881 4 * (friendp
!= 0));
6882 if (decl
== error_mark_node
)
6887 cplus_decl_attributes (&decl
, *attrlist
, 0);
6888 *attrlist
= NULL_TREE
;
6891 /* Check main's type after attributes have been applied. */
6892 if (ctype
== NULL_TREE
&& DECL_MAIN_P (decl
))
6894 if (!same_type_p (TREE_TYPE (TREE_TYPE (decl
)),
6897 tree oldtypeargs
= TYPE_ARG_TYPES (TREE_TYPE (decl
));
6899 error ("%<::main%> must return %<int%>");
6900 newtype
= build_function_type (integer_type_node
, oldtypeargs
);
6901 TREE_TYPE (decl
) = newtype
;
6904 check_main_parameter_types (decl
);
6907 if (ctype
!= NULL_TREE
6908 && (! TYPE_FOR_JAVA (ctype
) || check_java_method (decl
))
6911 tree old_decl
= check_classfn (ctype
, decl
,
6912 (processing_template_decl
6913 > template_class_depth (ctype
))
6914 ? current_template_parms
6917 if (old_decl
== error_mark_node
)
6925 if (TREE_CODE (old_decl
) == TEMPLATE_DECL
)
6926 /* Because grokfndecl is always supposed to return a
6927 FUNCTION_DECL, we pull out the DECL_TEMPLATE_RESULT
6928 here. We depend on our callers to figure out that its
6929 really a template that's being returned. */
6930 old_decl
= DECL_TEMPLATE_RESULT (old_decl
);
6932 if (DECL_STATIC_FUNCTION_P (old_decl
)
6933 && TREE_CODE (TREE_TYPE (decl
)) == METHOD_TYPE
)
6934 /* Remove the `this' parm added by grokclassfn.
6935 XXX Isn't this done in start_function, too? */
6936 revert_static_member_fn (decl
);
6937 if (DECL_ARTIFICIAL (old_decl
))
6939 error ("definition of implicitly-declared %qD", old_decl
);
6943 /* Since we've smashed OLD_DECL to its
6944 DECL_TEMPLATE_RESULT, we must do the same to DECL. */
6945 if (TREE_CODE (decl
) == TEMPLATE_DECL
)
6946 decl
= DECL_TEMPLATE_RESULT (decl
);
6948 /* Attempt to merge the declarations. This can fail, in
6949 the case of some invalid specialization declarations. */
6950 pushed_scope
= push_scope (ctype
);
6951 ok
= duplicate_decls (decl
, old_decl
, friendp
);
6953 pop_scope (pushed_scope
);
6956 error ("no %q#D member function declared in class %qT",
6964 if (DECL_CONSTRUCTOR_P (decl
) && !grok_ctor_properties (ctype
, decl
))
6967 if (ctype
== NULL_TREE
|| check
)
6971 DECL_VIRTUAL_P (decl
) = 1;
6976 /* DECL is a VAR_DECL for a static data member. Set flags to reflect
6977 the linkage that DECL will receive in the object file. */
6980 set_linkage_for_static_data_member (tree decl
)
6982 /* A static data member always has static storage duration and
6983 external linkage. Note that static data members are forbidden in
6984 local classes -- the only situation in which a class has
6985 non-external linkage. */
6986 TREE_PUBLIC (decl
) = 1;
6987 TREE_STATIC (decl
) = 1;
6988 /* For non-template classes, static data members are always put
6989 out in exactly those files where they are defined, just as
6990 with ordinary namespace-scope variables. */
6991 if (!processing_template_decl
)
6992 DECL_INTERFACE_KNOWN (decl
) = 1;
6995 /* Create a VAR_DECL named NAME with the indicated TYPE.
6997 If SCOPE is non-NULL, it is the class type or namespace containing
6998 the variable. If SCOPE is NULL, the variable should is created in
6999 the innermost enclosings scope. */
7002 grokvardecl (tree type
,
7004 const cp_decl_specifier_seq
*declspecs
,
7010 tree explicit_scope
;
7012 gcc_assert (!name
|| TREE_CODE (name
) == IDENTIFIER_NODE
);
7014 /* Compute the scope in which to place the variable, but remember
7015 whether or not that scope was explicitly specified by the user. */
7016 explicit_scope
= scope
;
7019 /* An explicit "extern" specifier indicates a namespace-scope
7021 if (declspecs
->storage_class
== sc_extern
)
7022 scope
= current_namespace
;
7023 else if (!at_function_scope_p ())
7024 scope
= current_scope ();
7028 && (/* If the variable is a namespace-scope variable declared in a
7029 template, we need DECL_LANG_SPECIFIC. */
7030 (TREE_CODE (scope
) == NAMESPACE_DECL
&& processing_template_decl
)
7031 /* Similarly for namespace-scope variables with language linkage
7033 || (TREE_CODE (scope
) == NAMESPACE_DECL
7034 && current_lang_name
!= lang_name_cplusplus
)
7035 /* Similarly for static data members. */
7037 decl
= build_lang_decl (VAR_DECL
, name
, type
);
7039 decl
= build_decl (input_location
, VAR_DECL
, name
, type
);
7041 if (explicit_scope
&& TREE_CODE (explicit_scope
) == NAMESPACE_DECL
)
7042 set_decl_namespace (decl
, explicit_scope
, 0);
7044 DECL_CONTEXT (decl
) = FROB_CONTEXT (scope
);
7046 if (declspecs
->storage_class
== sc_extern
)
7048 DECL_THIS_EXTERN (decl
) = 1;
7049 DECL_EXTERNAL (decl
) = !initialized
;
7052 if (DECL_CLASS_SCOPE_P (decl
))
7054 set_linkage_for_static_data_member (decl
);
7055 /* This function is only called with out-of-class definitions. */
7056 DECL_EXTERNAL (decl
) = 0;
7057 check_class_member_definition_namespace (decl
);
7059 /* At top level, either `static' or no s.c. makes a definition
7060 (perhaps tentative), and absence of `static' makes it public. */
7061 else if (toplevel_bindings_p ())
7063 TREE_PUBLIC (decl
) = (declspecs
->storage_class
!= sc_static
7064 && (DECL_THIS_EXTERN (decl
) || ! constp
));
7065 TREE_STATIC (decl
) = ! DECL_EXTERNAL (decl
);
7067 /* Not at top level, only `static' makes a static definition. */
7070 TREE_STATIC (decl
) = declspecs
->storage_class
== sc_static
;
7071 TREE_PUBLIC (decl
) = DECL_EXTERNAL (decl
);
7074 if (declspecs
->specs
[(int)ds_thread
])
7075 DECL_TLS_MODEL (decl
) = decl_default_tls_model (decl
);
7077 /* If the type of the decl has no linkage, make sure that we'll
7078 notice that in mark_used. */
7079 if (cxx_dialect
> cxx98
7080 && decl_linkage (decl
) != lk_none
7081 && DECL_LANG_SPECIFIC (decl
) == NULL
7082 && !DECL_EXTERN_C_P (decl
)
7083 && no_linkage_check (TREE_TYPE (decl
), /*relaxed_p=*/false))
7084 retrofit_lang_decl (decl
);
7086 if (TREE_PUBLIC (decl
))
7088 /* [basic.link]: A name with no linkage (notably, the name of a class
7089 or enumeration declared in a local scope) shall not be used to
7090 declare an entity with linkage.
7092 DR 757 relaxes this restriction for C++0x. */
7093 tree t
= (cxx_dialect
> cxx98
? NULL_TREE
7094 : no_linkage_check (TREE_TYPE (decl
), /*relaxed_p=*/false));
7097 if (TYPE_ANONYMOUS_P (t
))
7099 if (DECL_EXTERN_C_P (decl
))
7100 /* Allow this; it's pretty common in C. */
7104 /* DRs 132, 319 and 389 seem to indicate types with
7105 no linkage can only be used to declare extern "C"
7106 entities. Since it's not always an error in the
7107 ISO C++ 90 Standard, we only issue a warning. */
7108 warning (0, "non-local variable %q#D uses anonymous type",
7110 if (DECL_ORIGINAL_TYPE (TYPE_NAME (t
)))
7111 warning (0, "%q+#D does not refer to the unqualified "
7112 "type, so it is not used for linkage",
7117 warning (0, "non-local variable %q#D uses local type %qT", decl
, t
);
7121 DECL_INTERFACE_KNOWN (decl
) = 1;
7126 /* Create and return a canonical pointer to member function type, for
7127 TYPE, which is a POINTER_TYPE to a METHOD_TYPE. */
7130 build_ptrmemfunc_type (tree type
)
7134 tree unqualified_variant
= NULL_TREE
;
7136 if (type
== error_mark_node
)
7139 /* If a canonical type already exists for this type, use it. We use
7140 this method instead of type_hash_canon, because it only does a
7141 simple equality check on the list of field members. */
7143 if ((t
= TYPE_GET_PTRMEMFUNC_TYPE (type
)))
7146 /* Make sure that we always have the unqualified pointer-to-member
7148 if (cp_type_quals (type
) != TYPE_UNQUALIFIED
)
7150 = build_ptrmemfunc_type (TYPE_MAIN_VARIANT (type
));
7152 t
= make_class_type (RECORD_TYPE
);
7153 xref_basetypes (t
, NULL_TREE
);
7155 /* Let the front end know this is a pointer to member function... */
7156 TYPE_PTRMEMFUNC_FLAG (t
) = 1;
7157 /* ... and not really a class type. */
7158 SET_CLASS_TYPE_P (t
, 0);
7160 field
= build_decl (input_location
, FIELD_DECL
, pfn_identifier
, type
);
7163 field
= build_decl (input_location
, FIELD_DECL
, delta_identifier
,
7165 TREE_CHAIN (field
) = fields
;
7168 finish_builtin_struct (t
, "__ptrmemfunc_type", fields
, ptr_type_node
);
7170 /* Zap out the name so that the back end will give us the debugging
7171 information for this anonymous RECORD_TYPE. */
7172 TYPE_NAME (t
) = NULL_TREE
;
7174 /* If this is not the unqualified form of this pointer-to-member
7175 type, set the TYPE_MAIN_VARIANT for this type to be the
7176 unqualified type. Since they are actually RECORD_TYPEs that are
7177 not variants of each other, we must do this manually.
7178 As we just built a new type there is no need to do yet another copy. */
7179 if (cp_type_quals (type
) != TYPE_UNQUALIFIED
)
7181 int type_quals
= cp_type_quals (type
);
7182 TYPE_READONLY (t
) = (type_quals
& TYPE_QUAL_CONST
) != 0;
7183 TYPE_VOLATILE (t
) = (type_quals
& TYPE_QUAL_VOLATILE
) != 0;
7184 TYPE_RESTRICT (t
) = (type_quals
& TYPE_QUAL_RESTRICT
) != 0;
7185 TYPE_MAIN_VARIANT (t
) = unqualified_variant
;
7186 TYPE_NEXT_VARIANT (t
) = TYPE_NEXT_VARIANT (unqualified_variant
);
7187 TYPE_NEXT_VARIANT (unqualified_variant
) = t
;
7188 TREE_TYPE (TYPE_BINFO (t
)) = t
;
7191 /* Cache this pointer-to-member type so that we can find it again
7193 TYPE_SET_PTRMEMFUNC_TYPE (type
, t
);
7195 if (TYPE_STRUCTURAL_EQUALITY_P (type
))
7196 SET_TYPE_STRUCTURAL_EQUALITY (t
);
7197 else if (TYPE_CANONICAL (type
) != type
)
7198 TYPE_CANONICAL (t
) = build_ptrmemfunc_type (TYPE_CANONICAL (type
));
7203 /* Create and return a pointer to data member type. */
7206 build_ptrmem_type (tree class_type
, tree member_type
)
7208 if (TREE_CODE (member_type
) == METHOD_TYPE
)
7210 tree arg_types
= TYPE_ARG_TYPES (member_type
);
7211 cp_cv_quals quals
= cp_type_quals (TREE_TYPE (TREE_VALUE (arg_types
)));
7212 member_type
= build_memfn_type (member_type
, class_type
, quals
);
7213 return build_ptrmemfunc_type (build_pointer_type (member_type
));
7217 gcc_assert (TREE_CODE (member_type
) != FUNCTION_TYPE
);
7218 return build_offset_type (class_type
, member_type
);
7222 /* DECL is a VAR_DECL defined in-class, whose TYPE is also given.
7223 Check to see that the definition is valid. Issue appropriate error
7224 messages. Return 1 if the definition is particularly bad, or 0
7228 check_static_variable_definition (tree decl
, tree type
)
7230 /* Motion 10 at San Diego: If a static const integral data member is
7231 initialized with an integral constant expression, the initializer
7232 may appear either in the declaration (within the class), or in
7233 the definition, but not both. If it appears in the class, the
7234 member is a member constant. The file-scope definition is always
7236 if (!ARITHMETIC_TYPE_P (type
) && TREE_CODE (type
) != ENUMERAL_TYPE
)
7238 error ("invalid in-class initialization of static data member "
7239 "of non-integral type %qT",
7241 /* If we just return the declaration, crashes will sometimes
7242 occur. We therefore return void_type_node, as if this were a
7243 friend declaration, to cause callers to completely ignore
7244 this declaration. */
7247 else if (!CP_TYPE_CONST_P (type
))
7248 error ("ISO C++ forbids in-class initialization of non-const "
7249 "static member %qD",
7251 else if (!INTEGRAL_OR_ENUMERATION_TYPE_P (type
))
7252 pedwarn (input_location
, OPT_pedantic
, "ISO C++ forbids initialization of member constant "
7253 "%qD of non-integral type %qT", decl
, type
);
7258 /* Given the SIZE (i.e., number of elements) in an array, compute an
7259 appropriate index type for the array. If non-NULL, NAME is the
7260 name of the thing being declared. */
7263 compute_array_index_type (tree name
, tree size
)
7267 tree abi_1_itype
= NULL_TREE
;
7269 if (error_operand_p (size
))
7270 return error_mark_node
;
7272 type
= TREE_TYPE (size
);
7273 /* The array bound must be an integer type. */
7274 if (!dependent_type_p (type
) && !INTEGRAL_OR_UNSCOPED_ENUMERATION_TYPE_P (type
))
7277 error ("size of array %qD has non-integral type %qT", name
, type
);
7279 error ("size of array has non-integral type %qT", type
);
7280 size
= integer_one_node
;
7281 type
= TREE_TYPE (size
);
7284 /* We can only call value_dependent_expression_p on integral constant
7285 expressions; the parser adds a dummy NOP_EXPR with TREE_SIDE_EFFECTS
7286 set if this isn't one. */
7287 if (processing_template_decl
7288 && (TREE_SIDE_EFFECTS (size
) || value_dependent_expression_p (size
)))
7290 /* We cannot do any checking for a SIZE that isn't known to be
7291 constant. Just build the index type and mark that it requires
7292 structural equality checks. */
7293 itype
= build_index_type (build_min (MINUS_EXPR
, sizetype
,
7294 size
, integer_one_node
));
7295 TYPE_DEPENDENT_P (itype
) = 1;
7296 TYPE_DEPENDENT_P_VALID (itype
) = 1;
7297 SET_TYPE_STRUCTURAL_EQUALITY (itype
);
7301 if (!abi_version_at_least (2) && processing_template_decl
)
7302 /* For abi-1, we handled all instances in templates the same way,
7303 even when they were non-dependent. This affects the manglings
7304 produced. So, we do the normal checking for non-dependent
7305 sizes, but at the end we'll return the same type that abi-1
7306 would have, but with TYPE_CANONICAL set to the "right"
7307 value that the current ABI would provide. */
7308 abi_1_itype
= build_index_type (build_min (MINUS_EXPR
, sizetype
,
7309 size
, integer_one_node
));
7311 /* The size might be the result of a cast. */
7312 STRIP_TYPE_NOPS (size
);
7314 /* It might be a const variable or enumeration constant. */
7315 size
= integral_constant_value (size
);
7317 /* Normally, the array-bound will be a constant. */
7318 if (TREE_CODE (size
) == INTEGER_CST
)
7320 /* Check to see if the array bound overflowed. Make that an
7321 error, no matter how generous we're being. */
7322 constant_expression_error (size
);
7324 /* An array must have a positive number of elements. */
7325 if (INT_CST_LT (size
, integer_zero_node
))
7328 error ("size of array %qD is negative", name
);
7330 error ("size of array is negative");
7331 size
= integer_one_node
;
7333 /* As an extension we allow zero-sized arrays. We always allow
7334 them in system headers because glibc uses them. */
7335 else if (integer_zerop (size
) && !in_system_header
)
7338 pedwarn (input_location
, OPT_pedantic
, "ISO C++ forbids zero-size array %qD", name
);
7340 pedwarn (input_location
, OPT_pedantic
, "ISO C++ forbids zero-size array");
7343 else if (TREE_CONSTANT (size
))
7345 /* `(int) &fn' is not a valid array bound. */
7347 error ("size of array %qD is not an integral constant-expression",
7350 error ("size of array is not an integral constant-expression");
7351 size
= integer_one_node
;
7353 else if (pedantic
&& warn_vla
!= 0)
7356 pedwarn (input_location
, OPT_Wvla
, "ISO C++ forbids variable length array %qD", name
);
7358 pedwarn (input_location
, OPT_Wvla
, "ISO C++ forbids variable length array");
7360 else if (warn_vla
> 0)
7364 "variable length array %qD is used", name
);
7367 "variable length array is used");
7370 if (processing_template_decl
&& !TREE_CONSTANT (size
))
7371 /* A variable sized array. */
7372 itype
= build_min (MINUS_EXPR
, sizetype
, size
, integer_one_node
);
7375 HOST_WIDE_INT saved_processing_template_decl
;
7377 /* Compute the index of the largest element in the array. It is
7378 one less than the number of elements in the array. We save
7379 and restore PROCESSING_TEMPLATE_DECL so that computations in
7380 cp_build_binary_op will be appropriately folded. */
7381 saved_processing_template_decl
= processing_template_decl
;
7382 processing_template_decl
= 0;
7383 itype
= cp_build_binary_op (input_location
,
7385 cp_convert (ssizetype
, size
),
7386 cp_convert (ssizetype
, integer_one_node
),
7387 tf_warning_or_error
);
7388 itype
= fold (itype
);
7389 processing_template_decl
= saved_processing_template_decl
;
7391 if (!TREE_CONSTANT (itype
))
7392 /* A variable sized array. */
7393 itype
= variable_size (itype
);
7394 /* Make sure that there was no overflow when creating to a signed
7395 index type. (For example, on a 32-bit machine, an array with
7396 size 2^32 - 1 is too big.) */
7397 else if (TREE_CODE (itype
) == INTEGER_CST
7398 && TREE_OVERFLOW (itype
))
7400 error ("overflow in array dimension");
7401 TREE_OVERFLOW (itype
) = 0;
7405 /* Create and return the appropriate index type. */
7408 tree t
= build_index_type (itype
);
7409 TYPE_CANONICAL (abi_1_itype
) = TYPE_CANONICAL (t
);
7413 return build_index_type (itype
);
7416 /* Returns the scope (if any) in which the entity declared by
7417 DECLARATOR will be located. If the entity was declared with an
7418 unqualified name, NULL_TREE is returned. */
7421 get_scope_of_declarator (const cp_declarator
*declarator
)
7423 while (declarator
&& declarator
->kind
!= cdk_id
)
7424 declarator
= declarator
->declarator
;
7426 /* If the declarator-id is a SCOPE_REF, the scope in which the
7427 declaration occurs is the first operand. */
7429 && declarator
->u
.id
.qualifying_scope
)
7430 return declarator
->u
.id
.qualifying_scope
;
7432 /* Otherwise, the declarator is not a qualified name; the entity will
7433 be declared in the current scope. */
7437 /* Returns an ARRAY_TYPE for an array with SIZE elements of the
7438 indicated TYPE. If non-NULL, NAME is the NAME of the declaration
7442 create_array_type_for_decl (tree name
, tree type
, tree size
)
7444 tree itype
= NULL_TREE
;
7446 /* If things have already gone awry, bail now. */
7447 if (type
== error_mark_node
|| size
== error_mark_node
)
7448 return error_mark_node
;
7450 /* If there are some types which cannot be array elements,
7451 issue an error-message and return. */
7452 switch (TREE_CODE (type
))
7456 error ("declaration of %qD as array of void", name
);
7458 error ("creating array of void");
7459 return error_mark_node
;
7463 error ("declaration of %qD as array of functions", name
);
7465 error ("creating array of functions");
7466 return error_mark_node
;
7468 case REFERENCE_TYPE
:
7470 error ("declaration of %qD as array of references", name
);
7472 error ("creating array of references");
7473 return error_mark_node
;
7477 error ("declaration of %qD as array of function members", name
);
7479 error ("creating array of function members");
7480 return error_mark_node
;
7488 The constant expressions that specify the bounds of the arrays
7489 can be omitted only for the first member of the sequence. */
7490 if (TREE_CODE (type
) == ARRAY_TYPE
&& !TYPE_DOMAIN (type
))
7493 error ("declaration of %qD as multidimensional array must "
7494 "have bounds for all dimensions except the first",
7497 error ("multidimensional array must have bounds for all "
7498 "dimensions except the first");
7500 return error_mark_node
;
7503 /* Figure out the index type for the array. */
7505 itype
= compute_array_index_type (name
, size
);
7508 T is called the array element type; this type shall not be [...] an
7509 abstract class type. */
7510 abstract_virtuals_error (name
, type
);
7512 return build_cplus_array_type (type
, itype
);
7515 /* Check that it's OK to declare a function with the indicated TYPE.
7516 SFK indicates the kind of special function (if any) that this
7517 function is. OPTYPE is the type given in a conversion operator
7518 declaration, or the class type for a constructor/destructor.
7519 Returns the actual return type of the function; that
7520 may be different than TYPE if an error occurs, or for certain
7521 special functions. */
7524 check_special_function_return_type (special_function_kind sfk
,
7530 case sfk_constructor
:
7532 error ("return type specification for constructor invalid");
7534 if (targetm
.cxx
.cdtor_returns_this () && !TYPE_FOR_JAVA (optype
))
7535 type
= build_pointer_type (optype
);
7537 type
= void_type_node
;
7540 case sfk_destructor
:
7542 error ("return type specification for destructor invalid");
7543 /* We can't use the proper return type here because we run into
7544 problems with ambiguous bases and covariant returns.
7545 Java classes are left unchanged because (void *) isn't a valid
7546 Java type, and we don't want to change the Java ABI. */
7547 if (targetm
.cxx
.cdtor_returns_this () && !TYPE_FOR_JAVA (optype
))
7548 type
= build_pointer_type (void_type_node
);
7550 type
= void_type_node
;
7553 case sfk_conversion
:
7555 error ("return type specified for %<operator %T%>", optype
);
7566 /* A variable or data member (whose unqualified name is IDENTIFIER)
7567 has been declared with the indicated TYPE. If the TYPE is not
7568 acceptable, issue an error message and return a type to use for
7569 error-recovery purposes. */
7572 check_var_type (tree identifier
, tree type
)
7574 if (VOID_TYPE_P (type
))
7577 error ("unnamed variable or field declared void");
7578 else if (TREE_CODE (identifier
) == IDENTIFIER_NODE
)
7580 gcc_assert (!IDENTIFIER_OPNAME_P (identifier
));
7581 error ("variable or field %qE declared void", identifier
);
7584 error ("variable or field declared void");
7585 type
= error_mark_node
;
7591 /* Given declspecs and a declarator (abstract or otherwise), determine
7592 the name and type of the object declared and construct a DECL node
7595 DECLSPECS points to the representation of declaration-specifier
7596 sequence that precedes declarator.
7598 DECL_CONTEXT says which syntactic context this declaration is in:
7599 NORMAL for most contexts. Make a VAR_DECL or FUNCTION_DECL or TYPE_DECL.
7600 FUNCDEF for a function definition. Like NORMAL but a few different
7601 error messages in each case. Return value may be zero meaning
7602 this definition is too screwy to try to parse.
7603 MEMFUNCDEF for a function definition. Like FUNCDEF but prepares to
7604 handle member functions (which have FIELD context).
7605 Return value may be zero meaning this definition is too screwy to
7607 PARM for a parameter declaration (either within a function prototype
7608 or before a function body). Make a PARM_DECL, or return void_type_node.
7609 TPARM for a template parameter declaration.
7610 CATCHPARM for a parameter declaration before a catch clause.
7611 TYPENAME if for a typename (in a cast or sizeof).
7612 Don't make a DECL node; just return the ..._TYPE node.
7613 FIELD for a struct or union field; make a FIELD_DECL.
7614 BITFIELD for a field with specified width.
7616 INITIALIZED is as for start_decl.
7618 ATTRLIST is a pointer to the list of attributes, which may be NULL
7619 if there are none; *ATTRLIST may be modified if attributes from inside
7620 the declarator should be applied to the declaration.
7622 When this function is called, scoping variables (such as
7623 CURRENT_CLASS_TYPE) should reflect the scope in which the
7624 declaration occurs, not the scope in which the new declaration will
7625 be placed. For example, on:
7629 when grokdeclarator is called for `S::f', the CURRENT_CLASS_TYPE
7632 Returns a DECL (if a declarator is present), a TYPE (if there is no
7633 declarator, in cases like "struct S;"), or the ERROR_MARK_NODE if an
7637 grokdeclarator (const cp_declarator
*declarator
,
7638 const cp_decl_specifier_seq
*declspecs
,
7639 enum decl_context decl_context
,
7643 tree type
= NULL_TREE
;
7645 int virtualp
, explicitp
, friendp
, inlinep
, staticp
;
7646 int explicit_int
= 0;
7647 int explicit_char
= 0;
7648 int defaulted_int
= 0;
7649 tree dependent_name
= NULL_TREE
;
7651 tree typedef_decl
= NULL_TREE
;
7652 const char *name
= NULL
;
7653 tree typedef_type
= NULL_TREE
;
7654 /* True if this declarator is a function definition. */
7655 bool funcdef_flag
= false;
7656 cp_declarator_kind innermost_code
= cdk_error
;
7659 /* See the code below that used this. */
7660 tree decl_attr
= NULL_TREE
;
7663 /* Keep track of what sort of function is being processed
7664 so that we can warn about default return values, or explicit
7665 return values which do not match prescribed defaults. */
7666 special_function_kind sfk
= sfk_none
;
7668 tree dname
= NULL_TREE
;
7669 tree ctor_return_type
= NULL_TREE
;
7670 enum overload_flags flags
= NO_SPECIAL
;
7671 /* cv-qualifiers that apply to the declarator, for a declaration of
7672 a member function. */
7673 cp_cv_quals memfn_quals
= TYPE_UNQUALIFIED
;
7674 /* cv-qualifiers that apply to the type specified by the DECLSPECS. */
7676 tree raises
= NULL_TREE
;
7677 int template_count
= 0;
7678 tree returned_attrs
= NULL_TREE
;
7679 tree parms
= NULL_TREE
;
7680 const cp_declarator
*id_declarator
;
7681 /* The unqualified name of the declarator; either an
7682 IDENTIFIER_NODE, BIT_NOT_EXPR, or TEMPLATE_ID_EXPR. */
7683 tree unqualified_id
;
7684 /* The class type, if any, in which this entity is located,
7685 or NULL_TREE if none. Note that this value may be different from
7686 the current class type; for example if an attempt is made to declare
7687 "A::f" inside "B", this value will be "A". */
7688 tree ctype
= current_class_type
;
7689 /* The NAMESPACE_DECL for the namespace in which this entity is
7690 located. If an unqualified name is used to declare the entity,
7691 this value will be NULL_TREE, even if the entity is located at
7693 tree in_namespace
= NULL_TREE
;
7694 cp_storage_class storage_class
;
7695 bool unsigned_p
, signed_p
, short_p
, long_p
, thread_p
;
7696 bool type_was_error_mark_node
= false;
7697 bool parameter_pack_p
= declarator
? declarator
->parameter_pack_p
: false;
7698 bool template_type_arg
= false;
7699 bool template_parm_flag
= false;
7700 bool constexpr_p
= declspecs
->specs
[(int) ds_constexpr
];
7703 signed_p
= declspecs
->specs
[(int)ds_signed
];
7704 unsigned_p
= declspecs
->specs
[(int)ds_unsigned
];
7705 short_p
= declspecs
->specs
[(int)ds_short
];
7706 long_p
= declspecs
->specs
[(int)ds_long
];
7707 longlong
= declspecs
->specs
[(int)ds_long
] >= 2;
7708 thread_p
= declspecs
->specs
[(int)ds_thread
];
7710 if (decl_context
== FUNCDEF
)
7711 funcdef_flag
= true, decl_context
= NORMAL
;
7712 else if (decl_context
== MEMFUNCDEF
)
7713 funcdef_flag
= true, decl_context
= FIELD
;
7714 else if (decl_context
== BITFIELD
)
7715 bitfield
= 1, decl_context
= FIELD
;
7716 else if (decl_context
== TEMPLATE_TYPE_ARG
)
7717 template_type_arg
= true, decl_context
= TYPENAME
;
7718 else if (decl_context
== TPARM
)
7719 template_parm_flag
= true, decl_context
= PARM
;
7721 if (initialized
> 1)
7722 funcdef_flag
= true;
7724 /* Look inside a declarator for the name being declared
7725 and get it as a string, for an error message. */
7726 for (id_declarator
= declarator
;
7728 id_declarator
= id_declarator
->declarator
)
7730 if (id_declarator
->kind
!= cdk_id
)
7731 innermost_code
= id_declarator
->kind
;
7733 switch (id_declarator
->kind
)
7736 if (id_declarator
->declarator
7737 && id_declarator
->declarator
->kind
== cdk_id
)
7739 sfk
= id_declarator
->declarator
->u
.id
.sfk
;
7740 if (sfk
== sfk_destructor
)
7747 tree qualifying_scope
= id_declarator
->u
.id
.qualifying_scope
;
7748 tree decl
= id_declarator
->u
.id
.unqualified_name
;
7751 if (qualifying_scope
)
7753 if (at_function_scope_p ())
7757 A declarator-id shall not be qualified except
7760 None of the cases are permitted in block
7762 if (qualifying_scope
== global_namespace
)
7763 error ("invalid use of qualified-name %<::%D%>",
7765 else if (TYPE_P (qualifying_scope
))
7766 error ("invalid use of qualified-name %<%T::%D%>",
7767 qualifying_scope
, decl
);
7769 error ("invalid use of qualified-name %<%D::%D%>",
7770 qualifying_scope
, decl
);
7771 return error_mark_node
;
7773 else if (TYPE_P (qualifying_scope
))
7775 ctype
= qualifying_scope
;
7776 if (innermost_code
!= cdk_function
7777 && current_class_type
7778 && !UNIQUELY_DERIVED_FROM_P (ctype
,
7779 current_class_type
))
7781 error ("type %qT is not derived from type %qT",
7782 ctype
, current_class_type
);
7783 return error_mark_node
;
7786 else if (TREE_CODE (qualifying_scope
) == NAMESPACE_DECL
)
7787 in_namespace
= qualifying_scope
;
7789 switch (TREE_CODE (decl
))
7795 if (innermost_code
!= cdk_function
)
7797 error ("declaration of %qD as non-function", decl
);
7798 return error_mark_node
;
7800 else if (!qualifying_scope
7801 && !(current_class_type
&& at_class_scope_p ()))
7803 error ("declaration of %qD as non-member", decl
);
7804 return error_mark_node
;
7807 type
= TREE_OPERAND (decl
, 0);
7809 type
= constructor_name (type
);
7810 name
= identifier_to_locale (IDENTIFIER_POINTER (type
));
7815 case TEMPLATE_ID_EXPR
:
7817 tree fns
= TREE_OPERAND (decl
, 0);
7820 if (TREE_CODE (dname
) != IDENTIFIER_NODE
)
7822 gcc_assert (is_overloaded_fn (dname
));
7823 dname
= DECL_NAME (get_first_fn (dname
));
7828 case IDENTIFIER_NODE
:
7829 if (TREE_CODE (decl
) == IDENTIFIER_NODE
)
7832 if (C_IS_RESERVED_WORD (dname
))
7834 error ("declarator-id missing; using reserved word %qD",
7836 name
= identifier_to_locale (IDENTIFIER_POINTER (dname
));
7838 else if (!IDENTIFIER_TYPENAME_P (dname
))
7839 name
= identifier_to_locale (IDENTIFIER_POINTER (dname
));
7842 gcc_assert (flags
== NO_SPECIAL
);
7843 flags
= TYPENAME_FLAG
;
7844 ctor_return_type
= TREE_TYPE (dname
);
7845 sfk
= sfk_conversion
;
7846 if (is_typename_at_global_scope (dname
))
7847 name
= identifier_to_locale (IDENTIFIER_POINTER (dname
));
7849 name
= "<invalid operator>";
7866 return error_mark_node
;
7871 if (id_declarator
->kind
== cdk_id
)
7877 The declarator in a function-definition shall have the form
7878 D1 ( parameter-declaration-clause) ... */
7879 if (funcdef_flag
&& innermost_code
!= cdk_function
)
7881 error ("function definition does not declare parameters");
7882 return error_mark_node
;
7885 if (((dname
&& IDENTIFIER_OPNAME_P (dname
)) || flags
== TYPENAME_FLAG
)
7886 && innermost_code
!= cdk_function
7887 && ! (ctype
&& !declspecs
->any_specifiers_p
))
7889 error ("declaration of %qD as non-function", dname
);
7890 return error_mark_node
;
7893 /* Anything declared one level down from the top level
7894 must be one of the parameters of a function
7895 (because the body is at least two levels down). */
7897 /* This heuristic cannot be applied to C++ nodes! Fixed, however,
7898 by not allowing C++ class definitions to specify their parameters
7899 with xdecls (must be spec.d in the parmlist).
7901 Since we now wait to push a class scope until we are sure that
7902 we are in a legitimate method context, we must set oldcname
7903 explicitly (since current_class_name is not yet alive).
7905 We also want to avoid calling this a PARM if it is in a namespace. */
7907 if (decl_context
== NORMAL
&& !toplevel_bindings_p ())
7909 struct cp_binding_level
*b
= current_binding_level
;
7910 current_binding_level
= b
->level_chain
;
7911 if (current_binding_level
!= 0 && toplevel_bindings_p ())
7912 decl_context
= PARM
;
7913 current_binding_level
= b
;
7917 name
= decl_context
== PARM
? "parameter" : "type name";
7919 /* If there were multiple types specified in the decl-specifier-seq,
7920 issue an error message. */
7921 if (declspecs
->multiple_types_p
)
7923 error ("two or more data types in declaration of %qs", name
);
7924 return error_mark_node
;
7927 if (declspecs
->conflicting_specifiers_p
)
7929 error ("conflicting specifiers in declaration of %qs", name
);
7930 return error_mark_node
;
7933 /* Extract the basic type from the decl-specifier-seq. */
7934 type
= declspecs
->type
;
7935 if (type
== error_mark_node
)
7938 type_was_error_mark_node
= true;
7940 /* If the entire declaration is itself tagged as deprecated then
7941 suppress reports of deprecated items. */
7942 if (type
&& TREE_DEPRECATED (type
)
7943 && deprecated_state
!= DEPRECATED_SUPPRESS
)
7944 warn_deprecated_use (type
, NULL_TREE
);
7945 if (type
&& TREE_CODE (type
) == TYPE_DECL
)
7947 typedef_decl
= type
;
7948 type
= TREE_TYPE (typedef_decl
);
7949 if (TREE_DEPRECATED (type
)
7950 && DECL_ARTIFICIAL (typedef_decl
)
7951 && deprecated_state
!= DEPRECATED_SUPPRESS
)
7952 warn_deprecated_use (type
, NULL_TREE
);
7954 /* No type at all: default to `int', and set DEFAULTED_INT
7955 because it was not a user-defined typedef. */
7956 if (type
== NULL_TREE
&& (signed_p
|| unsigned_p
|| long_p
|| short_p
))
7958 /* These imply 'int'. */
7959 type
= integer_type_node
;
7963 explicit_int
= declspecs
->explicit_int_p
;
7964 explicit_char
= declspecs
->explicit_char_p
;
7967 /* See the code below that used this. */
7969 decl_attr
= DECL_ATTRIBUTES (typedef_decl
);
7971 typedef_type
= type
;
7974 if (sfk
!= sfk_conversion
)
7975 ctor_return_type
= ctype
;
7977 if (sfk
!= sfk_none
)
7978 type
= check_special_function_return_type (sfk
, type
,
7980 else if (type
== NULL_TREE
)
7986 /* We handle `main' specially here, because 'main () { }' is so
7987 common. With no options, it is allowed. With -Wreturn-type,
7988 it is a warning. It is only an error with -pedantic-errors. */
7989 is_main
= (funcdef_flag
7990 && dname
&& MAIN_NAME_P (dname
)
7991 && ctype
== NULL_TREE
7992 && in_namespace
== NULL_TREE
7993 && current_namespace
== global_namespace
);
7995 if (type_was_error_mark_node
)
7996 /* We've already issued an error, don't complain more. */;
7997 else if (in_system_header
|| flag_ms_extensions
)
7998 /* Allow it, sigh. */;
8000 permerror (input_location
, "ISO C++ forbids declaration of %qs with no type", name
);
8002 pedwarn (input_location
, OPT_pedantic
,
8003 "ISO C++ forbids declaration of %qs with no type", name
);
8005 warning (OPT_Wreturn_type
,
8006 "ISO C++ forbids declaration of %qs with no type", name
);
8008 type
= integer_type_node
;
8013 /* Now process the modifiers that were specified
8014 and check for invalid combinations. */
8016 /* Long double is a special combination. */
8017 if (long_p
&& !longlong
&& TYPE_MAIN_VARIANT (type
) == double_type_node
)
8020 type
= build_qualified_type (long_double_type_node
,
8021 cp_type_quals (type
));
8024 /* Check all other uses of type modifiers. */
8026 if (unsigned_p
|| signed_p
|| long_p
|| short_p
)
8030 if ((signed_p
|| unsigned_p
) && TREE_CODE (type
) != INTEGER_TYPE
)
8031 error ("%<signed%> or %<unsigned%> invalid for %qs", name
);
8032 else if (signed_p
&& unsigned_p
)
8033 error ("%<signed%> and %<unsigned%> specified together for %qs", name
);
8034 else if (longlong
&& TREE_CODE (type
) != INTEGER_TYPE
)
8035 error ("%<long long%> invalid for %qs", name
);
8036 else if (long_p
&& TREE_CODE (type
) == REAL_TYPE
)
8037 error ("%<long%> invalid for %qs", name
);
8038 else if (short_p
&& TREE_CODE (type
) == REAL_TYPE
)
8039 error ("%<short%> invalid for %qs", name
);
8040 else if ((long_p
|| short_p
) && TREE_CODE (type
) != INTEGER_TYPE
)
8041 error ("%<long%> or %<short%> invalid for %qs", name
);
8042 else if ((long_p
|| short_p
) && explicit_char
)
8043 error ("%<long%> or %<short%> specified with char for %qs", name
);
8044 else if (long_p
&& short_p
)
8045 error ("%<long%> and %<short%> specified together for %qs", name
);
8046 else if (type
== char16_type_node
|| type
== char32_type_node
)
8048 if (signed_p
|| unsigned_p
)
8049 error ("%<signed%> or %<unsigned%> invalid for %qs", name
);
8050 else if (short_p
|| long_p
)
8051 error ("%<short%> or %<long%> invalid for %qs", name
);
8056 if (!explicit_int
&& !defaulted_int
&& !explicit_char
&& pedantic
)
8058 pedwarn (input_location
, OPT_pedantic
,
8059 "long, short, signed or unsigned used invalidly for %qs",
8061 if (flag_pedantic_errors
)
8066 /* Discard the type modifiers if they are invalid. */
8077 /* Decide whether an integer type is signed or not.
8078 Optionally treat bitfields as signed by default. */
8082 It is implementation-defined whether a plain (neither
8083 explicitly signed or unsigned) char, short, int, or long
8084 bit-field is signed or unsigned.
8086 Naturally, we extend this to long long as well. Note that
8087 this does not include wchar_t. */
8088 || (bitfield
&& !flag_signed_bitfields
8090 /* A typedef for plain `int' without `signed' can be
8091 controlled just like plain `int', but a typedef for
8092 `signed int' cannot be so controlled. */
8094 && C_TYPEDEF_EXPLICITLY_SIGNED (typedef_decl
))
8095 && TREE_CODE (type
) == INTEGER_TYPE
8096 && !same_type_p (TYPE_MAIN_VARIANT (type
), wchar_type_node
)))
8099 type
= long_long_unsigned_type_node
;
8101 type
= long_unsigned_type_node
;
8103 type
= short_unsigned_type_node
;
8104 else if (type
== char_type_node
)
8105 type
= unsigned_char_type_node
;
8106 else if (typedef_decl
)
8107 type
= unsigned_type_for (type
);
8109 type
= unsigned_type_node
;
8111 else if (signed_p
&& type
== char_type_node
)
8112 type
= signed_char_type_node
;
8114 type
= long_long_integer_type_node
;
8116 type
= long_integer_type_node
;
8118 type
= short_integer_type_node
;
8120 if (declspecs
->specs
[(int)ds_complex
])
8122 if (TREE_CODE (type
) != INTEGER_TYPE
&& TREE_CODE (type
) != REAL_TYPE
)
8123 error ("complex invalid for %qs", name
);
8124 /* If we just have "complex", it is equivalent to
8125 "complex double", but if any modifiers at all are specified it is
8126 the complex form of TYPE. E.g, "complex short" is
8127 "complex short int". */
8129 else if (defaulted_int
&& ! longlong
8130 && ! (long_p
|| short_p
|| signed_p
|| unsigned_p
))
8131 type
= complex_double_type_node
;
8132 else if (type
== integer_type_node
)
8133 type
= complex_integer_type_node
;
8134 else if (type
== float_type_node
)
8135 type
= complex_float_type_node
;
8136 else if (type
== double_type_node
)
8137 type
= complex_double_type_node
;
8138 else if (type
== long_double_type_node
)
8139 type
= complex_long_double_type_node
;
8141 type
= build_complex_type (type
);
8144 type_quals
= TYPE_UNQUALIFIED
;
8145 if (declspecs
->specs
[(int)ds_const
])
8146 type_quals
|= TYPE_QUAL_CONST
;
8147 /* A `constexpr' specifier used in an object declaration declares
8148 the object as `const'. */
8151 if (innermost_code
== cdk_function
)
8153 else if (declspecs
->specs
[(int)ds_const
] != 0)
8154 error ("both %<const%> and %<constexpr%> cannot be used here");
8156 type_quals
|= TYPE_QUAL_CONST
;
8158 if (declspecs
->specs
[(int)ds_volatile
])
8159 type_quals
|= TYPE_QUAL_VOLATILE
;
8160 if (declspecs
->specs
[(int)ds_restrict
])
8161 type_quals
|= TYPE_QUAL_RESTRICT
;
8162 if (sfk
== sfk_conversion
&& type_quals
!= TYPE_UNQUALIFIED
)
8163 error ("qualifiers are not allowed on declaration of %<operator %T%>",
8166 if (TREE_CODE (type
) == FUNCTION_TYPE
8167 && type_quals
!= TYPE_UNQUALIFIED
)
8169 /* This was an error in C++98 (cv-qualifiers cannot be added to
8170 a function type), but DR 295 makes the code well-formed by
8171 dropping the extra qualifiers. */
8172 if (pedantic
&& cxx_dialect
== cxx98
)
8174 tree bad_type
= build_qualified_type (type
, type_quals
);
8175 pedwarn (input_location
, OPT_pedantic
,
8176 "ignoring %qV qualifiers added to function type %qT",
8179 type_quals
= TYPE_UNQUALIFIED
;
8181 type_quals
|= cp_type_quals (type
);
8182 type
= cp_build_qualified_type_real
8183 (type
, type_quals
, ((typedef_decl
&& !DECL_ARTIFICIAL (typedef_decl
)
8184 ? tf_ignore_bad_quals
: 0) | tf_warning_or_error
));
8185 /* We might have ignored or rejected some of the qualifiers. */
8186 type_quals
= cp_type_quals (type
);
8189 inlinep
= !! declspecs
->specs
[(int)ds_inline
];
8190 virtualp
= !! declspecs
->specs
[(int)ds_virtual
];
8191 explicitp
= !! declspecs
->specs
[(int)ds_explicit
];
8193 storage_class
= declspecs
->storage_class
;
8194 if (storage_class
== sc_static
)
8195 staticp
= 1 + (decl_context
== FIELD
);
8197 if (virtualp
&& staticp
== 2)
8199 error ("member %qD cannot be declared both virtual and static", dname
);
8200 storage_class
= sc_none
;
8203 friendp
= !! declspecs
->specs
[(int)ds_friend
];
8205 if (dependent_name
&& !friendp
)
8207 error ("%<%T::%D%> is not a valid declarator", ctype
, dependent_name
);
8208 return error_mark_node
;
8211 /* Issue errors about use of storage classes for parameters. */
8212 if (decl_context
== PARM
)
8214 if (declspecs
->specs
[(int)ds_typedef
])
8216 error ("typedef declaration invalid in parameter declaration");
8217 return error_mark_node
;
8219 else if (template_parm_flag
&& storage_class
!= sc_none
)
8221 error ("storage class specified for template parameter %qs", name
);
8222 return error_mark_node
;
8224 else if (storage_class
== sc_static
8225 || storage_class
== sc_extern
8227 error ("storage class specifiers invalid in parameter declarations");
8229 if (type_uses_auto (type
))
8231 error ("parameter declared %<auto%>");
8232 type
= error_mark_node
;
8235 /* Function parameters cannot be constexpr. If we saw one, moan
8236 and pretend it wasn't there. */
8239 error ("a parameter cannot be declared %<constexpr%>");
8244 /* Give error if `virtual' is used outside of class declaration. */
8246 && (current_class_name
== NULL_TREE
|| decl_context
!= FIELD
))
8248 error ("%<virtual%> outside class declaration");
8252 /* Static anonymous unions are dealt with here. */
8253 if (staticp
&& decl_context
== TYPENAME
8255 && ANON_AGGR_TYPE_P (declspecs
->type
))
8256 decl_context
= FIELD
;
8258 /* Warn about storage classes that are invalid for certain
8259 kinds of declarations (parameters, typenames, etc.). */
8262 && storage_class
!= sc_extern
8263 && storage_class
!= sc_static
)
8264 || declspecs
->specs
[(int)ds_typedef
]))
8266 error ("multiple storage classes in declaration of %qs", name
);
8269 if (decl_context
!= NORMAL
8270 && ((storage_class
!= sc_none
8271 && storage_class
!= sc_mutable
)
8274 if ((decl_context
== PARM
|| decl_context
== CATCHPARM
)
8275 && (storage_class
== sc_register
8276 || storage_class
== sc_auto
))
8278 else if (declspecs
->specs
[(int)ds_typedef
])
8280 else if (decl_context
== FIELD
8281 /* C++ allows static class elements. */
8282 && storage_class
== sc_static
)
8283 /* C++ also allows inlines and signed and unsigned elements,
8284 but in those cases we don't come in here. */
8288 if (decl_context
== FIELD
)
8289 error ("storage class specified for %qs", name
);
8292 if (decl_context
== PARM
|| decl_context
== CATCHPARM
)
8293 error ("storage class specified for parameter %qs", name
);
8295 error ("storage class specified for typename");
8297 if (storage_class
== sc_register
8298 || storage_class
== sc_auto
8299 || storage_class
== sc_extern
8301 storage_class
= sc_none
;
8304 else if (storage_class
== sc_extern
&& funcdef_flag
8305 && ! toplevel_bindings_p ())
8306 error ("nested function %qs declared %<extern%>", name
);
8307 else if (toplevel_bindings_p ())
8309 if (storage_class
== sc_auto
)
8310 error ("top-level declaration of %qs specifies %<auto%>", name
);
8313 && storage_class
!= sc_extern
8314 && storage_class
!= sc_static
)
8316 error ("function-scope %qs implicitly auto and declared %<__thread%>",
8321 if (storage_class
&& friendp
)
8323 error ("storage class specifiers invalid in friend function declarations");
8324 storage_class
= sc_none
;
8329 unqualified_id
= NULL_TREE
;
8332 unqualified_id
= id_declarator
->u
.id
.unqualified_name
;
8333 switch (TREE_CODE (unqualified_id
))
8336 unqualified_id
= TREE_OPERAND (unqualified_id
, 0);
8337 if (TYPE_P (unqualified_id
))
8338 unqualified_id
= constructor_name (unqualified_id
);
8341 case IDENTIFIER_NODE
:
8342 case TEMPLATE_ID_EXPR
:
8350 /* Determine the type of the entity declared by recurring on the
8352 for (; declarator
; declarator
= declarator
->declarator
)
8354 const cp_declarator
*inner_declarator
;
8357 if (type
== error_mark_node
)
8358 return error_mark_node
;
8360 attrs
= declarator
->attributes
;
8366 if (declarator
== NULL
|| declarator
->kind
== cdk_id
)
8367 attr_flags
|= (int) ATTR_FLAG_DECL_NEXT
;
8368 if (declarator
->kind
== cdk_function
)
8369 attr_flags
|= (int) ATTR_FLAG_FUNCTION_NEXT
;
8370 if (declarator
->kind
== cdk_array
)
8371 attr_flags
|= (int) ATTR_FLAG_ARRAY_NEXT
;
8372 returned_attrs
= decl_attributes (&type
,
8373 chainon (returned_attrs
, attrs
),
8377 if (declarator
->kind
== cdk_id
)
8380 inner_declarator
= declarator
->declarator
;
8382 switch (declarator
->kind
)
8385 type
= create_array_type_for_decl (dname
, type
,
8386 declarator
->u
.array
.bounds
);
8394 /* Declaring a function type.
8395 Make sure we have a valid type for the function to return. */
8397 if (type_quals
!= TYPE_UNQUALIFIED
)
8399 if (SCALAR_TYPE_P (type
) || VOID_TYPE_P (type
))
8400 warning (OPT_Wignored_qualifiers
,
8401 "type qualifiers ignored on function return type");
8402 /* We now know that the TYPE_QUALS don't apply to the
8403 decl, but to its return type. */
8404 type_quals
= TYPE_UNQUALIFIED
;
8406 errmsg
= targetm
.invalid_return_type (type
);
8410 type
= integer_type_node
;
8413 /* Error about some types functions can't return. */
8415 if (TREE_CODE (type
) == FUNCTION_TYPE
)
8417 error ("%qs declared as function returning a function", name
);
8418 return error_mark_node
;
8420 if (TREE_CODE (type
) == ARRAY_TYPE
)
8422 error ("%qs declared as function returning an array", name
);
8423 return error_mark_node
;
8426 /* Pick up type qualifiers which should be applied to `this'. */
8427 memfn_quals
= declarator
->u
.function
.qualifiers
;
8429 /* Pick up the exception specifications. */
8430 raises
= declarator
->u
.function
.exception_specification
;
8432 /* Say it's a definition only for the CALL_EXPR
8433 closest to the identifier. */
8434 funcdecl_p
= inner_declarator
&& inner_declarator
->kind
== cdk_id
;
8436 /* Handle a late-specified return type. */
8439 if (type_uses_auto (type
))
8441 if (!declarator
->u
.function
.late_return_type
)
8443 error ("%qs function uses %<auto%> type specifier without"
8444 " late return type", name
);
8445 return error_mark_node
;
8447 else if (!is_auto (type
))
8449 error ("%qs function with late return type has"
8450 " %qT as its type rather than plain %<auto%>",
8452 return error_mark_node
;
8455 else if (declarator
->u
.function
.late_return_type
)
8457 error ("%qs function with late return type not declared"
8458 " with %<auto%> type specifier", name
);
8459 return error_mark_node
;
8462 type
= splice_late_return_type
8463 (type
, declarator
->u
.function
.late_return_type
);
8464 if (type
== error_mark_node
)
8465 return error_mark_node
;
8467 if (ctype
== NULL_TREE
8468 && decl_context
== FIELD
8470 && (friendp
== 0 || dname
== current_class_name
))
8471 ctype
= current_class_type
;
8473 if (ctype
&& (sfk
== sfk_constructor
8474 || sfk
== sfk_destructor
))
8476 /* We are within a class's scope. If our declarator name
8477 is the same as the class name, and we are defining
8478 a function, then it is a constructor/destructor, and
8479 therefore returns a void type. */
8481 /* ISO C++ 12.4/2. A destructor may not be declared
8482 const or volatile. A destructor may not be
8485 ISO C++ 12.1. A constructor may not be declared
8486 const or volatile. A constructor may not be
8487 virtual. A constructor may not be static. */
8489 error ((flags
== DTOR_FLAG
)
8490 ? "destructor cannot be static member function"
8491 : "constructor cannot be static member function");
8494 error ((flags
== DTOR_FLAG
)
8495 ? "destructors may not be cv-qualified"
8496 : "constructors may not be cv-qualified");
8497 memfn_quals
= TYPE_UNQUALIFIED
;
8500 if (decl_context
== FIELD
8501 && !member_function_or_else (ctype
,
8504 return error_mark_node
;
8506 if (flags
!= DTOR_FLAG
)
8508 /* It's a constructor. */
8513 permerror (input_location
, "constructors cannot be declared virtual");
8516 if (decl_context
== FIELD
8517 && sfk
!= sfk_constructor
)
8518 return error_mark_node
;
8520 if (decl_context
== FIELD
)
8526 error ("can't initialize friend function %qs", name
);
8529 /* Cannot be both friend and virtual. */
8530 error ("virtual functions cannot be friends");
8533 if (decl_context
== NORMAL
)
8534 error ("friend declaration not in class definition");
8535 if (current_function_decl
&& funcdef_flag
)
8536 error ("can't define friend function %qs in a local "
8540 else if (ctype
&& sfk
== sfk_conversion
)
8544 maybe_warn_cpp0x (CPP0X_EXPLICIT_CONVERSION
);
8549 /* It is not allowed to use `constexpr' in a function
8550 declaration that is not a definition.
8551 That is too strict, though. */
8552 if (constexpr_p
&& !funcdef_flag
)
8554 error ("the %<constexpr%> specifier cannot be used in "
8555 "a function declaration that is not a definition");
8556 constexpr_p
= false;
8559 /* A constexpr non-static member function is implicitly const. */
8560 if (constexpr_p
&& decl_context
== FIELD
&& staticp
== 0
8561 && sfk
!= sfk_constructor
&& sfk
!= sfk_destructor
)
8562 memfn_quals
|= TYPE_QUAL_CONST
;
8564 arg_types
= grokparms (declarator
->u
.function
.parameters
,
8567 if (inner_declarator
8568 && inner_declarator
->kind
== cdk_id
8569 && inner_declarator
->u
.id
.sfk
== sfk_destructor
8570 && arg_types
!= void_list_node
)
8572 error ("destructors may not have parameters");
8573 arg_types
= void_list_node
;
8577 type
= build_function_type (type
, arg_types
);
8584 /* Filter out pointers-to-references and references-to-references.
8585 We can get these if a TYPE_DECL is used. */
8587 if (TREE_CODE (type
) == REFERENCE_TYPE
)
8589 if (declarator
->kind
!= cdk_reference
)
8591 error ("cannot declare pointer to %q#T", type
);
8592 type
= TREE_TYPE (type
);
8595 /* In C++0x, we allow reference to reference declarations
8596 that occur indirectly through typedefs [7.1.3/8 dcl.typedef]
8597 and template type arguments [14.3.1/4 temp.arg.type]. The
8598 check for direct reference to reference declarations, which
8599 are still forbidden, occurs below. Reasoning behind the change
8600 can be found in DR106, DR540, and the rvalue reference
8602 else if (cxx_dialect
== cxx98
)
8604 error ("cannot declare reference to %q#T", type
);
8605 type
= TREE_TYPE (type
);
8608 else if (VOID_TYPE_P (type
))
8610 if (declarator
->kind
== cdk_reference
)
8611 error ("cannot declare reference to %q#T", type
);
8612 else if (declarator
->kind
== cdk_ptrmem
)
8613 error ("cannot declare pointer to %q#T member", type
);
8616 /* We now know that the TYPE_QUALS don't apply to the decl,
8617 but to the target of the pointer. */
8618 type_quals
= TYPE_UNQUALIFIED
;
8620 if (declarator
->kind
== cdk_ptrmem
8621 && (TREE_CODE (type
) == FUNCTION_TYPE
8622 || (memfn_quals
&& TREE_CODE (type
) == METHOD_TYPE
)))
8624 memfn_quals
|= cp_type_quals (type
);
8625 type
= build_memfn_type (type
,
8626 declarator
->u
.pointer
.class_type
,
8628 memfn_quals
= TYPE_UNQUALIFIED
;
8631 if (TREE_CODE (type
) == FUNCTION_TYPE
8632 && cp_type_quals (type
) != TYPE_UNQUALIFIED
)
8633 error (declarator
->kind
== cdk_reference
8634 ? G_("cannot declare reference to qualified function type %qT")
8635 : G_("cannot declare pointer to qualified function type %qT"),
8638 if (declarator
->kind
== cdk_reference
)
8640 /* In C++0x, the type we are creating a reference to might be
8641 a typedef which is itself a reference type. In that case,
8642 we follow the reference collapsing rules in
8643 [7.1.3/8 dcl.typedef] to create the final reference type:
8645 "If a typedef TD names a type that is a reference to a type
8646 T, an attempt to create the type 'lvalue reference to cv TD'
8647 creates the type 'lvalue reference to T,' while an attempt
8648 to create the type "rvalue reference to cv TD' creates the
8651 if (!VOID_TYPE_P (type
))
8652 type
= cp_build_reference_type
8653 ((TREE_CODE (type
) == REFERENCE_TYPE
8654 ? TREE_TYPE (type
) : type
),
8655 (declarator
->u
.reference
.rvalue_ref
8656 && (TREE_CODE(type
) != REFERENCE_TYPE
8657 || TYPE_REF_IS_RVALUE (type
))));
8659 /* In C++0x, we need this check for direct reference to
8660 reference declarations, which are forbidden by
8661 [8.3.2/5 dcl.ref]. Reference to reference declarations
8662 are only allowed indirectly through typedefs and template
8663 type arguments. Example:
8665 void foo(int & &); // invalid ref-to-ref decl
8667 typedef int & int_ref;
8668 void foo(int_ref &); // valid ref-to-ref decl
8670 if (inner_declarator
&& inner_declarator
->kind
== cdk_reference
)
8671 error ("cannot declare reference to %q#T, which is not "
8672 "a typedef or a template type argument", type
);
8674 else if (TREE_CODE (type
) == METHOD_TYPE
)
8675 type
= build_ptrmemfunc_type (build_pointer_type (type
));
8676 else if (declarator
->kind
== cdk_ptrmem
)
8678 gcc_assert (TREE_CODE (declarator
->u
.pointer
.class_type
)
8680 if (declarator
->u
.pointer
.class_type
== error_mark_node
)
8681 /* We will already have complained. */
8682 type
= error_mark_node
;
8684 type
= build_ptrmem_type (declarator
->u
.pointer
.class_type
,
8688 type
= build_pointer_type (type
);
8690 /* Process a list of type modifier keywords (such as
8691 const or volatile) that were given inside the `*' or `&'. */
8693 if (declarator
->u
.pointer
.qualifiers
)
8696 = cp_build_qualified_type (type
,
8697 declarator
->u
.pointer
.qualifiers
);
8698 type_quals
= cp_type_quals (type
);
8711 if (unqualified_id
&& TREE_CODE (unqualified_id
) == TEMPLATE_ID_EXPR
8712 && TREE_CODE (type
) != FUNCTION_TYPE
8713 && TREE_CODE (type
) != METHOD_TYPE
)
8715 error ("template-id %qD used as a declarator",
8717 unqualified_id
= dname
;
8720 /* If TYPE is a FUNCTION_TYPE, but the function name was explicitly
8721 qualified with a class-name, turn it into a METHOD_TYPE, unless
8722 we know that the function is static. We take advantage of this
8723 opportunity to do other processing that pertains to entities
8724 explicitly declared to be class members. Note that if DECLARATOR
8725 is non-NULL, we know it is a cdk_id declarator; otherwise, we
8726 would not have exited the loop above. */
8728 && declarator
->u
.id
.qualifying_scope
8729 && TYPE_P (declarator
->u
.id
.qualifying_scope
))
8733 ctype
= declarator
->u
.id
.qualifying_scope
;
8734 ctype
= TYPE_MAIN_VARIANT (ctype
);
8736 while (t
!= NULL_TREE
&& CLASS_TYPE_P (t
))
8738 /* You're supposed to have one `template <...>' for every
8739 template class, but you don't need one for a full
8740 specialization. For example:
8742 template <class T> struct S{};
8743 template <> struct S<int> { void f(); };
8744 void S<int>::f () {}
8746 is correct; there shouldn't be a `template <>' for the
8747 definition of `S<int>::f'. */
8748 if (CLASSTYPE_TEMPLATE_SPECIALIZATION (t
)
8749 && !any_dependent_template_arguments_p (CLASSTYPE_TI_ARGS (t
)))
8750 /* T is an explicit (not partial) specialization. All
8751 containing classes must therefore also be explicitly
8754 if ((CLASSTYPE_USE_TEMPLATE (t
) || CLASSTYPE_IS_TEMPLATE (t
))
8755 && PRIMARY_TEMPLATE_P (CLASSTYPE_TI_TEMPLATE (t
)))
8756 template_count
+= 1;
8758 t
= TYPE_MAIN_DECL (t
);
8759 t
= DECL_CONTEXT (t
);
8762 if (ctype
== current_class_type
)
8766 permerror (input_location
, "member functions are implicitly friends of their class");
8770 permerror (declarator
->id_loc
,
8771 "extra qualification %<%T::%> on member %qs",
8774 else if (/* If the qualifying type is already complete, then we
8775 can skip the following checks. */
8776 !COMPLETE_TYPE_P (ctype
)
8777 && (/* If the function is being defined, then
8778 qualifying type must certainly be complete. */
8780 /* A friend declaration of "T::f" is OK, even if
8781 "T" is a template parameter. But, if this
8782 function is not a friend, the qualifying type
8784 || (!friendp
&& !CLASS_TYPE_P (ctype
))
8785 /* For a declaration, the type need not be
8786 complete, if either it is dependent (since there
8787 is no meaningful definition of complete in that
8788 case) or the qualifying class is currently being
8790 || !(dependent_type_p (ctype
)
8791 || currently_open_class (ctype
)))
8792 /* Check that the qualifying type is complete. */
8793 && !complete_type_or_else (ctype
, NULL_TREE
))
8794 return error_mark_node
;
8795 else if (TREE_CODE (type
) == FUNCTION_TYPE
)
8797 tree sname
= declarator
->u
.id
.unqualified_name
;
8799 if (current_class_type
8800 && (!friendp
|| funcdef_flag
))
8803 ? "cannot define member function %<%T::%s%> within %<%T%>"
8804 : "cannot declare member function %<%T::%s%> within %<%T%>",
8805 ctype
, name
, current_class_type
);
8806 return error_mark_node
;
8809 /* It is not permitted to define a member function outside ist
8810 membership class as `constexpr'. */
8812 error ("a constexpr function cannot be defined "
8813 "outside of its class");
8815 if (TREE_CODE (sname
) == IDENTIFIER_NODE
8816 && NEW_DELETE_OPNAME_P (sname
))
8817 /* Overloaded operator new and operator delete
8818 are always static functions. */
8821 type
= build_memfn_type (type
, ctype
, memfn_quals
);
8823 else if (declspecs
->specs
[(int)ds_typedef
]
8824 && current_class_type
)
8826 error ("cannot declare member %<%T::%s%> within %qT",
8827 ctype
, name
, current_class_type
);
8828 return error_mark_node
;
8832 /* Now TYPE has the actual type. */
8837 *attrlist
= chainon (returned_attrs
, *attrlist
);
8839 attrlist
= &returned_attrs
;
8842 /* Handle parameter packs. */
8843 if (parameter_pack_p
)
8845 if (decl_context
== PARM
)
8846 /* Turn the type into a pack expansion.*/
8847 type
= make_pack_expansion (type
);
8849 error ("non-parameter %qs cannot be a parameter pack", name
);
8852 /* Did array size calculations overflow? */
8854 if (TREE_CODE (type
) == ARRAY_TYPE
8855 && COMPLETE_TYPE_P (type
)
8856 && TREE_CODE (TYPE_SIZE_UNIT (type
)) == INTEGER_CST
8857 && TREE_OVERFLOW (TYPE_SIZE_UNIT (type
)))
8859 error ("size of array %qs is too large", name
);
8860 /* If we proceed with the array type as it is, we'll eventually
8861 crash in tree_low_cst(). */
8862 type
= error_mark_node
;
8865 if ((decl_context
== FIELD
|| decl_context
== PARM
)
8866 && !processing_template_decl
8867 && variably_modified_type_p (type
, NULL_TREE
))
8869 if (decl_context
== FIELD
)
8870 error ("data member may not have variably modified type %qT", type
);
8872 error ("parameter may not have variably modified type %qT", type
);
8873 type
= error_mark_node
;
8876 if (explicitp
== 1 || (explicitp
&& friendp
))
8878 /* [dcl.fct.spec] The explicit specifier shall only be used in
8879 declarations of constructors within a class definition. */
8880 error ("only declarations of constructors can be %<explicit%>");
8884 if (storage_class
== sc_mutable
)
8886 if (decl_context
!= FIELD
|| friendp
)
8888 error ("non-member %qs cannot be declared %<mutable%>", name
);
8889 storage_class
= sc_none
;
8891 else if (decl_context
== TYPENAME
|| declspecs
->specs
[(int)ds_typedef
])
8893 error ("non-object member %qs cannot be declared %<mutable%>", name
);
8894 storage_class
= sc_none
;
8896 else if (TREE_CODE (type
) == FUNCTION_TYPE
8897 || TREE_CODE (type
) == METHOD_TYPE
)
8899 error ("function %qs cannot be declared %<mutable%>", name
);
8900 storage_class
= sc_none
;
8904 error ("static %qs cannot be declared %<mutable%>", name
);
8905 storage_class
= sc_none
;
8907 else if (type_quals
& TYPE_QUAL_CONST
)
8909 error ("const %qs cannot be declared %<mutable%>", name
);
8910 storage_class
= sc_none
;
8914 /* If this is declaring a typedef name, return a TYPE_DECL. */
8915 if (declspecs
->specs
[(int)ds_typedef
] && decl_context
!= TYPENAME
)
8919 /* Note that the grammar rejects storage classes
8920 in typenames, fields or parameters. */
8921 if (current_lang_name
== lang_name_java
)
8922 TYPE_FOR_JAVA (type
) = 1;
8924 /* This declaration:
8926 typedef void f(int) const;
8928 declares a function type which is not a member of any
8929 particular class, but which is cv-qualified; for
8930 example "f S::*" declares a pointer to a const-qualified
8931 member function of S. We record the cv-qualification in the
8933 if (memfn_quals
&& TREE_CODE (type
) == FUNCTION_TYPE
)
8935 type
= cp_build_qualified_type (type
, memfn_quals
);
8937 /* We have now dealt with these qualifiers. */
8938 memfn_quals
= TYPE_UNQUALIFIED
;
8941 if (decl_context
== FIELD
)
8942 decl
= build_lang_decl (TYPE_DECL
, unqualified_id
, type
);
8944 decl
= build_decl (input_location
, TYPE_DECL
, unqualified_id
, type
);
8945 if (id_declarator
&& declarator
->u
.id
.qualifying_scope
) {
8946 error_at (DECL_SOURCE_LOCATION (decl
),
8947 "typedef name may not be a nested-name-specifier");
8948 TREE_TYPE (decl
) = error_mark_node
;
8951 if (decl_context
!= FIELD
)
8953 if (!current_function_decl
)
8954 DECL_CONTEXT (decl
) = FROB_CONTEXT (current_namespace
);
8955 else if (DECL_MAYBE_IN_CHARGE_CONSTRUCTOR_P (current_function_decl
)
8956 || (DECL_MAYBE_IN_CHARGE_DESTRUCTOR_P
8957 (current_function_decl
)))
8958 /* The TYPE_DECL is "abstract" because there will be
8959 clones of this constructor/destructor, and there will
8960 be copies of this TYPE_DECL generated in those
8962 DECL_ABSTRACT (decl
) = 1;
8964 else if (constructor_name_p (unqualified_id
, current_class_type
))
8965 permerror (input_location
, "ISO C++ forbids nested type %qD with same name "
8966 "as enclosing class",
8969 /* If the user declares "typedef struct {...} foo" then the
8970 struct will have an anonymous name. Fill that name in now.
8971 Nothing can refer to it, so nothing needs know about the name
8973 if (type
!= error_mark_node
8976 && TREE_CODE (TYPE_NAME (type
)) == TYPE_DECL
8977 && TYPE_ANONYMOUS_P (type
)
8978 && cp_type_quals (type
) == TYPE_UNQUALIFIED
)
8982 /* Replace the anonymous name with the real name everywhere. */
8983 for (t
= TYPE_MAIN_VARIANT (type
); t
; t
= TYPE_NEXT_VARIANT (t
))
8985 if (ANON_AGGRNAME_P (TYPE_IDENTIFIER (t
)))
8987 debug_hooks
->set_name (t
, decl
);
8988 TYPE_NAME (t
) = decl
;
8992 if (TYPE_LANG_SPECIFIC (type
))
8993 TYPE_WAS_ANONYMOUS (type
) = 1;
8995 /* If this is a typedef within a template class, the nested
8996 type is a (non-primary) template. The name for the
8997 template needs updating as well. */
8998 if (TYPE_LANG_SPECIFIC (type
) && CLASSTYPE_TEMPLATE_INFO (type
))
8999 DECL_NAME (CLASSTYPE_TI_TEMPLATE (type
))
9000 = TYPE_IDENTIFIER (type
);
9002 /* Adjust linkage now that we aren't anonymous anymore. */
9003 set_linkage_according_to_type (type
, TYPE_MAIN_DECL (type
));
9004 determine_visibility (TYPE_MAIN_DECL (type
));
9006 /* FIXME remangle member functions; member functions of a
9007 type with external linkage have external linkage. */
9011 || (typedef_decl
&& C_TYPEDEF_EXPLICITLY_SIGNED (typedef_decl
)))
9012 C_TYPEDEF_EXPLICITLY_SIGNED (decl
) = 1;
9014 bad_specifiers (decl
, "type", virtualp
,
9015 memfn_quals
!= TYPE_UNQUALIFIED
,
9016 inlinep
, friendp
, raises
!= NULL_TREE
);
9021 /* Detect the case of an array type of unspecified size
9022 which came, as such, direct from a typedef name.
9023 We must copy the type, so that the array's domain can be
9024 individually set by the object's initializer. */
9026 if (type
&& typedef_type
9027 && TREE_CODE (type
) == ARRAY_TYPE
&& !TYPE_DOMAIN (type
)
9028 && TYPE_MAIN_VARIANT (type
) == TYPE_MAIN_VARIANT (typedef_type
))
9029 type
= build_cplus_array_type (TREE_TYPE (type
), NULL_TREE
);
9031 /* Detect where we're using a typedef of function type to declare a
9032 function. PARMS will not be set, so we must create it now. */
9034 if (type
== typedef_type
&& TREE_CODE (type
) == FUNCTION_TYPE
)
9036 tree decls
= NULL_TREE
;
9039 for (args
= TYPE_ARG_TYPES (type
);
9040 args
&& args
!= void_list_node
;
9041 args
= TREE_CHAIN (args
))
9043 tree decl
= cp_build_parm_decl (NULL_TREE
, TREE_VALUE (args
));
9045 TREE_CHAIN (decl
) = decls
;
9049 parms
= nreverse (decls
);
9051 if (decl_context
!= TYPENAME
)
9053 /* A cv-qualifier-seq shall only be part of the function type
9054 for a non-static member function. [8.3.5/4 dcl.fct] */
9055 if (cp_type_quals (type
) != TYPE_UNQUALIFIED
9056 && (current_class_type
== NULL_TREE
|| staticp
) )
9059 ? G_("qualified function types cannot be used to "
9060 "declare static member functions")
9061 : G_("qualified function types cannot be used to "
9062 "declare free functions"));
9063 type
= TYPE_MAIN_VARIANT (type
);
9066 /* The qualifiers on the function type become the qualifiers on
9067 the non-static member function. */
9068 memfn_quals
|= cp_type_quals (type
);
9069 type_quals
= TYPE_UNQUALIFIED
;
9073 /* If this is a type name (such as, in a cast or sizeof),
9074 compute the type and return it now. */
9076 if (decl_context
== TYPENAME
)
9078 /* Note that the grammar rejects storage classes
9079 in typenames, fields or parameters. */
9080 if (type_quals
!= TYPE_UNQUALIFIED
)
9081 type_quals
= TYPE_UNQUALIFIED
;
9083 /* Special case: "friend class foo" looks like a TYPENAME context. */
9086 if (type_quals
!= TYPE_UNQUALIFIED
)
9088 error ("type qualifiers specified for friend class declaration");
9089 type_quals
= TYPE_UNQUALIFIED
;
9093 error ("%<inline%> specified for friend class declaration");
9099 /* Don't allow friend declaration without a class-key. */
9100 if (TREE_CODE (type
) == TEMPLATE_TYPE_PARM
)
9101 permerror (input_location
, "template parameters cannot be friends");
9102 else if (TREE_CODE (type
) == TYPENAME_TYPE
)
9103 permerror (input_location
, "friend declaration requires class-key, "
9104 "i.e. %<friend class %T::%D%>",
9105 TYPE_CONTEXT (type
), TYPENAME_TYPE_FULLNAME (type
));
9107 permerror (input_location
, "friend declaration requires class-key, "
9108 "i.e. %<friend %#T%>",
9112 /* Only try to do this stuff if we didn't already give up. */
9113 if (type
!= integer_type_node
)
9115 /* A friendly class? */
9116 if (current_class_type
)
9117 make_friend_class (current_class_type
, TYPE_MAIN_VARIANT (type
),
9120 error ("trying to make class %qT a friend of global scope",
9123 type
= void_type_node
;
9126 else if (memfn_quals
)
9128 if (ctype
== NULL_TREE
9129 && TREE_CODE (type
) == METHOD_TYPE
)
9130 ctype
= TYPE_METHOD_BASETYPE (type
);
9133 type
= build_memfn_type (type
, ctype
, memfn_quals
);
9134 /* Core issue #547: need to allow this in template type args. */
9135 else if (template_type_arg
&& TREE_CODE (type
) == FUNCTION_TYPE
)
9136 type
= cp_build_qualified_type (type
, memfn_quals
);
9138 error ("invalid qualifiers on non-member function type");
9143 else if (unqualified_id
== NULL_TREE
&& decl_context
!= PARM
9144 && decl_context
!= CATCHPARM
9145 && TREE_CODE (type
) != UNION_TYPE
9148 error ("abstract declarator %qT used as declaration", type
);
9149 return error_mark_node
;
9152 /* Only functions may be declared using an operator-function-id. */
9154 && IDENTIFIER_OPNAME_P (unqualified_id
)
9155 && TREE_CODE (type
) != FUNCTION_TYPE
9156 && TREE_CODE (type
) != METHOD_TYPE
)
9158 error ("declaration of %qD as non-function", unqualified_id
);
9159 return error_mark_node
;
9162 /* We don't check parameter types here because we can emit a better
9163 error message later. */
9164 if (decl_context
!= PARM
)
9166 type
= check_var_type (unqualified_id
, type
);
9167 if (type
== error_mark_node
)
9168 return error_mark_node
;
9171 /* Now create the decl, which may be a VAR_DECL, a PARM_DECL
9172 or a FUNCTION_DECL, depending on DECL_CONTEXT and TYPE. */
9174 if (decl_context
== PARM
|| decl_context
== CATCHPARM
)
9176 if (ctype
|| in_namespace
)
9177 error ("cannot use %<::%> in parameter declaration");
9179 /* A parameter declared as an array of T is really a pointer to T.
9180 One declared as a function is really a pointer to a function.
9181 One declared as a member is really a pointer to member. */
9183 if (TREE_CODE (type
) == ARRAY_TYPE
)
9185 /* Transfer const-ness of array into that of type pointed to. */
9186 type
= build_pointer_type (TREE_TYPE (type
));
9187 type_quals
= TYPE_UNQUALIFIED
;
9189 else if (TREE_CODE (type
) == FUNCTION_TYPE
)
9190 type
= build_pointer_type (type
);
9196 if (decl_context
== PARM
)
9198 decl
= cp_build_parm_decl (unqualified_id
, type
);
9200 bad_specifiers (decl
, "parameter", virtualp
,
9201 memfn_quals
!= TYPE_UNQUALIFIED
,
9202 inlinep
, friendp
, raises
!= NULL_TREE
);
9204 else if (decl_context
== FIELD
)
9206 /* The C99 flexible array extension. */
9207 if (!staticp
&& TREE_CODE (type
) == ARRAY_TYPE
9208 && TYPE_DOMAIN (type
) == NULL_TREE
)
9210 tree itype
= compute_array_index_type (dname
, integer_zero_node
);
9211 type
= build_cplus_array_type (TREE_TYPE (type
), itype
);
9214 if (type
== error_mark_node
)
9216 /* Happens when declaring arrays of sizes which
9217 are error_mark_node, for example. */
9220 else if (in_namespace
&& !friendp
)
9222 /* Something like struct S { int N::j; }; */
9223 error ("invalid use of %<::%>");
9224 return error_mark_node
;
9226 else if (TREE_CODE (type
) == FUNCTION_TYPE
)
9229 tree function_context
;
9233 if (ctype
== NULL_TREE
)
9234 ctype
= current_class_type
;
9236 if (ctype
== NULL_TREE
)
9238 error ("can't make %qD into a method -- not in a class",
9240 return error_mark_node
;
9243 /* ``A union may [ ... ] not [ have ] virtual functions.''
9245 if (virtualp
&& TREE_CODE (ctype
) == UNION_TYPE
)
9247 error ("function %qD declared virtual inside a union",
9249 return error_mark_node
;
9252 if (NEW_DELETE_OPNAME_P (unqualified_id
))
9256 error ("%qD cannot be declared virtual, since it "
9262 else if (staticp
< 2)
9263 type
= build_memfn_type (type
, ctype
, memfn_quals
);
9266 /* Check that the name used for a destructor makes sense. */
9267 if (sfk
== sfk_destructor
)
9269 tree uqname
= id_declarator
->u
.id
.unqualified_name
;
9273 gcc_assert (friendp
);
9274 error ("expected qualified name in friend declaration "
9275 "for destructor %qD", uqname
);
9276 return error_mark_node
;
9279 if (!check_dtor_name (ctype
, TREE_OPERAND (uqname
, 0)))
9281 error ("declaration of %qD as member of %qT",
9283 return error_mark_node
;
9286 error ("a destructor cannot be %<constexpr%>");
9288 else if (sfk
== sfk_constructor
&& friendp
)
9290 error ("expected qualified name in friend declaration "
9291 "for constructor %qD",
9292 id_declarator
->u
.id
.unqualified_name
);
9293 return error_mark_node
;
9296 /* Tell grokfndecl if it needs to set TREE_PUBLIC on the node. */
9297 function_context
= (ctype
!= NULL_TREE
) ?
9298 decl_function_context (TYPE_MAIN_DECL (ctype
)) : NULL_TREE
;
9299 publicp
= (! friendp
|| ! staticp
)
9300 && function_context
== NULL_TREE
;
9301 decl
= grokfndecl (ctype
, type
,
9302 TREE_CODE (unqualified_id
) != TEMPLATE_ID_EXPR
9303 ? unqualified_id
: dname
,
9306 virtualp
, flags
, memfn_quals
, raises
,
9307 friendp
? -1 : 0, friendp
, publicp
,
9308 inlinep
|| constexpr_p
,
9310 funcdef_flag
, template_count
, in_namespace
,
9311 attrlist
, declarator
->id_loc
);
9312 if (decl
== NULL_TREE
)
9313 return error_mark_node
;
9315 /* This clobbers the attrs stored in `decl' from `attrlist'. */
9316 /* The decl and setting of decl_attr is also turned off. */
9317 decl
= build_decl_attribute_variant (decl
, decl_attr
);
9320 /* [class.conv.ctor]
9322 A constructor declared without the function-specifier
9323 explicit that can be called with a single parameter
9324 specifies a conversion from the type of its first
9325 parameter to the type of its class. Such a constructor
9326 is called a converting constructor. */
9328 DECL_NONCONVERTING_P (decl
) = 1;
9330 else if (TREE_CODE (type
) == METHOD_TYPE
)
9332 /* We only get here for friend declarations of
9333 members of other classes. */
9334 /* All method decls are public, so tell grokfndecl to set
9335 TREE_PUBLIC, also. */
9336 decl
= grokfndecl (ctype
, type
,
9337 TREE_CODE (unqualified_id
) != TEMPLATE_ID_EXPR
9338 ? unqualified_id
: dname
,
9341 virtualp
, flags
, memfn_quals
, raises
,
9342 friendp
? -1 : 0, friendp
, 1, 0, sfk
,
9343 funcdef_flag
, template_count
, in_namespace
,
9345 declarator
->id_loc
);
9346 if (decl
== NULL_TREE
)
9347 return error_mark_node
;
9349 else if (!staticp
&& !dependent_type_p (type
)
9350 && !COMPLETE_TYPE_P (complete_type (type
))
9351 && (TREE_CODE (type
) != ARRAY_TYPE
|| initialized
== 0))
9354 error ("field %qD has incomplete type", unqualified_id
);
9356 error ("name %qT has incomplete type", type
);
9358 /* If we're instantiating a template, tell them which
9359 instantiation made the field's type be incomplete. */
9360 if (current_class_type
9361 && TYPE_NAME (current_class_type
)
9362 && IDENTIFIER_TEMPLATE (TYPE_IDENTIFIER (current_class_type
))
9364 && declspecs
->type
== type
)
9365 error (" in instantiation of template %qT",
9366 current_class_type
);
9368 return error_mark_node
;
9374 error ("%qE is neither function nor member function; "
9375 "cannot be declared friend", unqualified_id
);
9383 /* Friends are treated specially. */
9384 if (ctype
== current_class_type
)
9385 ; /* We already issued a permerror. */
9386 else if (decl
&& DECL_NAME (decl
))
9388 if (template_class_depth (current_class_type
) == 0)
9390 decl
= check_explicit_specialization
9391 (unqualified_id
, decl
, template_count
,
9392 2 * funcdef_flag
+ 4);
9393 if (decl
== error_mark_node
)
9394 return error_mark_node
;
9397 DECL_DECLARED_CONSTEXPR_P (decl
) = constexpr_p
;
9398 decl
= do_friend (ctype
, unqualified_id
, decl
,
9404 return error_mark_node
;
9407 /* Structure field. It may not be a function, except for C++. */
9409 if (decl
== NULL_TREE
)
9415 /* An attempt is being made to initialize a non-static
9416 member. But, from [class.mem]:
9418 4 A member-declarator can contain a
9419 constant-initializer only if it declares a static
9420 member (_class.static_) of integral or enumeration
9421 type, see _class.static.data_.
9423 This used to be relatively common practice, but
9424 the rest of the compiler does not correctly
9425 handle the initialization unless the member is
9426 static so we make it static below. */
9427 permerror (input_location
, "ISO C++ forbids initialization of member %qD",
9429 permerror (input_location
, "making %qD static", unqualified_id
);
9433 if (uses_template_parms (type
))
9434 /* We'll check at instantiation time. */
9436 else if (check_static_variable_definition (unqualified_id
,
9438 /* If we just return the declaration, crashes
9439 will sometimes occur. We therefore return
9440 void_type_node, as if this was a friend
9441 declaration, to cause callers to completely
9442 ignore this declaration. */
9443 return error_mark_node
;
9448 /* C++ allows static class members. All other work
9449 for this is done by grokfield. */
9450 decl
= build_lang_decl (VAR_DECL
, unqualified_id
, type
);
9451 set_linkage_for_static_data_member (decl
);
9452 /* Even if there is an in-class initialization, DECL
9453 is considered undefined until an out-of-class
9454 definition is provided. */
9455 DECL_EXTERNAL (decl
) = 1;
9458 DECL_TLS_MODEL (decl
) = decl_default_tls_model (decl
);
9463 error ("non-static data member %qE declared %<constexpr%>",
9465 decl
= build_decl (input_location
,
9466 FIELD_DECL
, unqualified_id
, type
);
9467 DECL_NONADDRESSABLE_P (decl
) = bitfield
;
9468 if (bitfield
&& !unqualified_id
)
9469 TREE_NO_WARNING (decl
) = 1;
9471 if (storage_class
== sc_mutable
)
9473 DECL_MUTABLE_P (decl
) = 1;
9474 storage_class
= sc_none
;
9478 bad_specifiers (decl
, "field", virtualp
,
9479 memfn_quals
!= TYPE_UNQUALIFIED
,
9480 inlinep
, friendp
, raises
!= NULL_TREE
);
9483 else if (TREE_CODE (type
) == FUNCTION_TYPE
9484 || TREE_CODE (type
) == METHOD_TYPE
)
9489 if (!unqualified_id
)
9490 return error_mark_node
;
9492 if (TREE_CODE (unqualified_id
) == TEMPLATE_ID_EXPR
)
9493 original_name
= dname
;
9495 original_name
= unqualified_id
;
9497 if (storage_class
== sc_auto
)
9498 error ("storage class %<auto%> invalid for function %qs", name
);
9499 else if (storage_class
== sc_register
)
9500 error ("storage class %<register%> invalid for function %qs", name
);
9502 error ("storage class %<__thread%> invalid for function %qs", name
);
9504 /* Function declaration not at top level.
9505 Storage classes other than `extern' are not allowed
9506 and `extern' makes no difference. */
9507 if (! toplevel_bindings_p ()
9508 && (storage_class
== sc_static
9509 || declspecs
->specs
[(int)ds_inline
])
9512 if (storage_class
== sc_static
)
9513 pedwarn (input_location
, OPT_pedantic
,
9514 "%<static%> specified invalid for function %qs "
9515 "declared out of global scope", name
);
9517 pedwarn (input_location
, OPT_pedantic
,
9518 "%<inline%> specifier invalid for function %qs "
9519 "declared out of global scope", name
);
9522 if (ctype
!= NULL_TREE
9523 && TREE_CODE (ctype
) != NAMESPACE_DECL
&& !MAYBE_CLASS_TYPE_P (ctype
))
9525 error ("%q#T is not a class or a namespace", ctype
);
9529 if (ctype
== NULL_TREE
)
9533 error ("virtual non-class function %qs", name
);
9536 else if (sfk
== sfk_constructor
9537 || sfk
== sfk_destructor
)
9540 ? "%qs defined in a non-class scope"
9541 : "%qs declared in a non-class scope", name
);
9545 else if (TREE_CODE (type
) == FUNCTION_TYPE
&& staticp
< 2
9546 && !NEW_DELETE_OPNAME_P (original_name
))
9547 type
= build_method_type_directly (ctype
,
9549 TYPE_ARG_TYPES (type
));
9551 /* Record presence of `static'. */
9552 publicp
= (ctype
!= NULL_TREE
9553 || storage_class
== sc_extern
9554 || storage_class
!= sc_static
);
9556 decl
= grokfndecl (ctype
, type
, original_name
, parms
, unqualified_id
,
9557 virtualp
, flags
, memfn_quals
, raises
,
9559 publicp
, inlinep
|| constexpr_p
, sfk
, funcdef_flag
,
9560 template_count
, in_namespace
, attrlist
,
9561 declarator
->id_loc
);
9562 if (decl
== NULL_TREE
)
9563 return error_mark_node
;
9567 int invalid_static
= 0;
9569 /* Don't allow a static member function in a class, and forbid
9570 declaring main to be static. */
9571 if (TREE_CODE (type
) == METHOD_TYPE
)
9573 permerror (input_location
, "cannot declare member function %qD to have "
9574 "static linkage", decl
);
9577 else if (current_function_decl
)
9579 /* FIXME need arm citation */
9580 error ("cannot declare static function inside another function");
9587 storage_class
= sc_none
;
9593 /* It's a variable. */
9595 /* An uninitialized decl with `extern' is a reference. */
9596 decl
= grokvardecl (type
, unqualified_id
,
9599 (type_quals
& TYPE_QUAL_CONST
) != 0,
9600 ctype
? ctype
: in_namespace
);
9601 bad_specifiers (decl
, "variable", virtualp
,
9602 memfn_quals
!= TYPE_UNQUALIFIED
,
9603 inlinep
, friendp
, raises
!= NULL_TREE
);
9607 DECL_CONTEXT (decl
) = ctype
;
9610 permerror (input_location
, "%<static%> may not be used when defining "
9611 "(as opposed to declaring) a static data member");
9613 storage_class
= sc_none
;
9615 if (storage_class
== sc_register
&& TREE_STATIC (decl
))
9617 error ("static member %qD declared %<register%>", decl
);
9618 storage_class
= sc_none
;
9620 if (storage_class
== sc_extern
&& pedantic
)
9622 pedwarn (input_location
, OPT_pedantic
,
9623 "cannot explicitly declare member %q#D to have "
9624 "extern linkage", decl
);
9625 storage_class
= sc_none
;
9630 if (storage_class
== sc_extern
&& initialized
&& !funcdef_flag
)
9632 if (toplevel_bindings_p ())
9634 /* It's common practice (and completely valid) to have a const
9635 be initialized and declared extern. */
9636 if (!(type_quals
& TYPE_QUAL_CONST
))
9637 warning (0, "%qs initialized and declared %<extern%>", name
);
9641 error ("%qs has both %<extern%> and initializer", name
);
9642 return error_mark_node
;
9646 /* Record `register' declaration for warnings on &
9647 and in case doing stupid register allocation. */
9649 if (storage_class
== sc_register
)
9650 DECL_REGISTER (decl
) = 1;
9651 else if (storage_class
== sc_extern
)
9652 DECL_THIS_EXTERN (decl
) = 1;
9653 else if (storage_class
== sc_static
)
9654 DECL_THIS_STATIC (decl
) = 1;
9656 /* Don't forget constexprness. */
9657 if (VAR_OR_FUNCTION_DECL_P (decl
))
9658 DECL_DECLARED_CONSTEXPR_P (decl
) = constexpr_p
;
9660 /* Record constancy and volatility on the DECL itself . There's
9661 no need to do this when processing a template; we'll do this
9662 for the instantiated declaration based on the type of DECL. */
9663 if (!processing_template_decl
)
9664 cp_apply_type_quals_to_decl (type_quals
, decl
);
9670 /* Subroutine of start_function. Ensure that each of the parameter
9671 types (as listed in PARMS) is complete, as is required for a
9672 function definition. */
9675 require_complete_types_for_parms (tree parms
)
9677 for (; parms
; parms
= TREE_CHAIN (parms
))
9679 if (dependent_type_p (TREE_TYPE (parms
)))
9681 if (!VOID_TYPE_P (TREE_TYPE (parms
))
9682 && complete_type_or_else (TREE_TYPE (parms
), parms
))
9684 relayout_decl (parms
);
9685 DECL_ARG_TYPE (parms
) = type_passed_as (TREE_TYPE (parms
));
9688 /* grokparms or complete_type_or_else will have already issued
9690 TREE_TYPE (parms
) = error_mark_node
;
9694 /* Returns nonzero if T is a local variable. */
9697 local_variable_p (const_tree t
)
9699 if ((TREE_CODE (t
) == VAR_DECL
9700 /* A VAR_DECL with a context that is a _TYPE is a static data
9702 && !TYPE_P (CP_DECL_CONTEXT (t
))
9703 /* Any other non-local variable must be at namespace scope. */
9704 && !DECL_NAMESPACE_SCOPE_P (t
))
9705 || (TREE_CODE (t
) == PARM_DECL
))
9711 /* Like local_variable_p, but suitable for use as a tree-walking
9715 local_variable_p_walkfn (tree
*tp
, int *walk_subtrees
,
9716 void *data ATTRIBUTE_UNUSED
)
9718 if (local_variable_p (*tp
) && !DECL_ARTIFICIAL (*tp
))
9720 else if (TYPE_P (*tp
))
9727 /* Check that ARG, which is a default-argument expression for a
9728 parameter DECL, is valid. Returns ARG, or ERROR_MARK_NODE, if
9729 something goes wrong. DECL may also be a _TYPE node, rather than a
9730 DECL, if there is no DECL available. */
9733 check_default_argument (tree decl
, tree arg
)
9738 if (TREE_CODE (arg
) == DEFAULT_ARG
)
9739 /* We get a DEFAULT_ARG when looking at an in-class declaration
9740 with a default argument. Ignore the argument for now; we'll
9741 deal with it after the class is complete. */
9750 decl_type
= TREE_TYPE (decl
);
9752 if (arg
== error_mark_node
9753 || decl
== error_mark_node
9754 || TREE_TYPE (arg
) == error_mark_node
9755 || decl_type
== error_mark_node
)
9756 /* Something already went wrong. There's no need to check
9758 return error_mark_node
;
9760 /* [dcl.fct.default]
9762 A default argument expression is implicitly converted to the
9764 if (!TREE_TYPE (arg
)
9765 || !can_convert_arg (decl_type
, TREE_TYPE (arg
), arg
, LOOKUP_NORMAL
))
9768 error ("default argument for %q#D has type %qT",
9769 decl
, TREE_TYPE (arg
));
9771 error ("default argument for parameter of type %qT has type %qT",
9772 decl_type
, TREE_TYPE (arg
));
9774 return error_mark_node
;
9777 /* [dcl.fct.default]
9779 Local variables shall not be used in default argument
9782 The keyword `this' shall not be used in a default argument of a
9784 var
= cp_walk_tree_without_duplicates (&arg
, local_variable_p_walkfn
, NULL
);
9787 error ("default argument %qE uses local variable %qD", arg
, var
);
9788 return error_mark_node
;
9795 /* Returns a deprecated type used within TYPE, or NULL_TREE if none. */
9798 type_is_deprecated (tree type
)
9800 enum tree_code code
;
9801 if (TREE_DEPRECATED (type
))
9803 if (TYPE_NAME (type
)
9804 && TREE_DEPRECATED (TYPE_NAME (type
)))
9807 /* Do warn about using typedefs to a deprecated class. */
9808 if (TAGGED_TYPE_P (type
) && type
!= TYPE_MAIN_VARIANT (type
))
9809 return type_is_deprecated (TYPE_MAIN_VARIANT (type
));
9811 code
= TREE_CODE (type
);
9813 if (code
== POINTER_TYPE
|| code
== REFERENCE_TYPE
9814 || code
== OFFSET_TYPE
|| code
== FUNCTION_TYPE
9815 || code
== METHOD_TYPE
|| code
== ARRAY_TYPE
)
9816 return type_is_deprecated (TREE_TYPE (type
));
9818 if (TYPE_PTRMEMFUNC_P (type
))
9819 return type_is_deprecated
9820 (TREE_TYPE (TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (type
))));
9825 /* Decode the list of parameter types for a function type.
9826 Given the list of things declared inside the parens,
9827 return a list of types.
9829 If this parameter does not end with an ellipsis, we append
9832 *PARMS is set to the chain of PARM_DECLs created. */
9835 grokparms (tree parmlist
, tree
*parms
)
9837 tree result
= NULL_TREE
;
9838 tree decls
= NULL_TREE
;
9842 for (parm
= parmlist
; parm
!= NULL_TREE
; parm
= TREE_CHAIN (parm
))
9844 tree type
= NULL_TREE
;
9845 tree init
= TREE_PURPOSE (parm
);
9846 tree decl
= TREE_VALUE (parm
);
9849 if (parm
== void_list_node
)
9852 if (! decl
|| TREE_TYPE (decl
) == error_mark_node
)
9855 type
= TREE_TYPE (decl
);
9856 if (VOID_TYPE_P (type
))
9858 if (same_type_p (type
, void_type_node
)
9859 && DECL_SELF_REFERENCE_P (type
)
9860 && !DECL_NAME (decl
) && !result
&& TREE_CHAIN (parm
) == void_list_node
)
9861 /* this is a parmlist of `(void)', which is ok. */
9863 cxx_incomplete_type_error (decl
, type
);
9864 /* It's not a good idea to actually create parameters of
9865 type `void'; other parts of the compiler assume that a
9866 void type terminates the parameter list. */
9867 type
= error_mark_node
;
9868 TREE_TYPE (decl
) = error_mark_node
;
9871 if (type
!= error_mark_node
9872 && TYPE_FOR_JAVA (type
)
9873 && MAYBE_CLASS_TYPE_P (type
))
9875 error ("parameter %qD has Java class type", decl
);
9876 type
= error_mark_node
;
9877 TREE_TYPE (decl
) = error_mark_node
;
9881 if (type
!= error_mark_node
9882 && (errmsg
= targetm
.invalid_parameter_type (type
)))
9885 type
= error_mark_node
;
9886 TREE_TYPE (decl
) = error_mark_node
;
9889 if (type
!= error_mark_node
)
9891 if (deprecated_state
!= DEPRECATED_SUPPRESS
)
9893 tree deptype
= type_is_deprecated (type
);
9895 warn_deprecated_use (deptype
, NULL_TREE
);
9898 /* Top-level qualifiers on the parameters are
9899 ignored for function types. */
9900 type
= cp_build_qualified_type (type
, 0);
9901 if (TREE_CODE (type
) == METHOD_TYPE
)
9903 error ("parameter %qD invalidly declared method type", decl
);
9904 type
= build_pointer_type (type
);
9905 TREE_TYPE (decl
) = type
;
9907 else if (abstract_virtuals_error (decl
, type
))
9908 any_error
= 1; /* Seems like a good idea. */
9909 else if (POINTER_TYPE_P (type
))
9911 /* [dcl.fct]/6, parameter types cannot contain pointers
9912 (references) to arrays of unknown bound. */
9913 tree t
= TREE_TYPE (type
);
9914 int ptr
= TYPE_PTR_P (type
);
9920 else if (TREE_CODE (t
) != ARRAY_TYPE
)
9922 else if (!TYPE_DOMAIN (t
))
9926 if (TREE_CODE (t
) == ARRAY_TYPE
)
9928 ? G_("parameter %qD includes pointer to array of "
9929 "unknown bound %qT")
9930 : G_("parameter %qD includes reference to array of "
9931 "unknown bound %qT"),
9937 else if (init
&& !processing_template_decl
)
9938 init
= check_default_argument (decl
, init
);
9941 if (TREE_CODE (decl
) == PARM_DECL
9942 && FUNCTION_PARAMETER_PACK_P (decl
)
9943 && TREE_CHAIN (parm
)
9944 && TREE_CHAIN (parm
) != void_list_node
)
9945 error ("parameter packs must be at the end of the parameter list");
9947 TREE_CHAIN (decl
) = decls
;
9949 result
= tree_cons (init
, type
, result
);
9951 decls
= nreverse (decls
);
9952 result
= nreverse (result
);
9954 result
= chainon (result
, void_list_node
);
9961 /* D is a constructor or overloaded `operator='.
9963 Let T be the class in which D is declared. Then, this function
9966 -1 if D's is an ill-formed constructor or copy assignment operator
9967 whose first parameter is of type `T'.
9968 0 if D is not a copy constructor or copy assignment
9970 1 if D is a copy constructor or copy assignment operator whose
9971 first parameter is a reference to non-const qualified T.
9972 2 if D is a copy constructor or copy assignment operator whose
9973 first parameter is a reference to const qualified T.
9975 This function can be used as a predicate. Positive values indicate
9976 a copy constructor and nonzero values indicate a copy assignment
9980 copy_fn_p (const_tree d
)
9986 gcc_assert (DECL_FUNCTION_MEMBER_P (d
));
9988 if (TREE_CODE (d
) == TEMPLATE_DECL
9989 || (DECL_TEMPLATE_INFO (d
)
9990 && DECL_MEMBER_TEMPLATE_P (DECL_TI_TEMPLATE (d
))))
9991 /* Instantiations of template member functions are never copy
9992 functions. Note that member functions of templated classes are
9993 represented as template functions internally, and we must
9994 accept those as copy functions. */
9997 args
= FUNCTION_FIRST_USER_PARMTYPE (d
);
10001 arg_type
= TREE_VALUE (args
);
10002 if (arg_type
== error_mark_node
)
10005 if (TYPE_MAIN_VARIANT (arg_type
) == DECL_CONTEXT (d
))
10007 /* Pass by value copy assignment operator. */
10010 else if (TREE_CODE (arg_type
) == REFERENCE_TYPE
10011 && !TYPE_REF_IS_RVALUE (arg_type
)
10012 && TYPE_MAIN_VARIANT (TREE_TYPE (arg_type
)) == DECL_CONTEXT (d
))
10014 if (CP_TYPE_CONST_P (TREE_TYPE (arg_type
)))
10020 args
= TREE_CHAIN (args
);
10022 if (args
&& args
!= void_list_node
&& !TREE_PURPOSE (args
))
10023 /* There are more non-optional args. */
10029 /* D is a constructor or overloaded `operator='.
10031 Let T be the class in which D is declared. Then, this function
10032 returns true when D is a move constructor or move assignment
10033 operator, false otherwise. */
10036 move_fn_p (const_tree d
)
10040 bool result
= false;
10042 gcc_assert (DECL_FUNCTION_MEMBER_P (d
));
10044 if (cxx_dialect
== cxx98
)
10045 /* There are no move constructors if we are in C++98 mode. */
10048 if (TREE_CODE (d
) == TEMPLATE_DECL
10049 || (DECL_TEMPLATE_INFO (d
)
10050 && DECL_MEMBER_TEMPLATE_P (DECL_TI_TEMPLATE (d
))))
10051 /* Instantiations of template member functions are never copy
10052 functions. Note that member functions of templated classes are
10053 represented as template functions internally, and we must
10054 accept those as copy functions. */
10057 args
= FUNCTION_FIRST_USER_PARMTYPE (d
);
10061 arg_type
= TREE_VALUE (args
);
10062 if (arg_type
== error_mark_node
)
10065 if (TREE_CODE (arg_type
) == REFERENCE_TYPE
10066 && TYPE_REF_IS_RVALUE (arg_type
)
10067 && same_type_p (TYPE_MAIN_VARIANT (TREE_TYPE (arg_type
)),
10071 args
= TREE_CHAIN (args
);
10073 if (args
&& args
!= void_list_node
&& !TREE_PURPOSE (args
))
10074 /* There are more non-optional args. */
10080 /* Remember any special properties of member function DECL. */
10083 grok_special_member_properties (tree decl
)
10087 if (!DECL_NONSTATIC_MEMBER_FUNCTION_P (decl
))
10090 class_type
= DECL_CONTEXT (decl
);
10091 if (DECL_CONSTRUCTOR_P (decl
))
10093 int ctor
= copy_fn_p (decl
);
10095 if (!DECL_ARTIFICIAL (decl
))
10096 TYPE_HAS_USER_CONSTRUCTOR (class_type
) = 1;
10102 A non-template constructor for class X is a copy
10103 constructor if its first parameter is of type X&, const
10104 X&, volatile X& or const volatile X&, and either there
10105 are no other parameters or else all other parameters have
10106 default arguments. */
10107 TYPE_HAS_INIT_REF (class_type
) = 1;
10108 if (user_provided_p (decl
))
10109 TYPE_HAS_COMPLEX_INIT_REF (class_type
) = 1;
10111 TYPE_HAS_CONST_INIT_REF (class_type
) = 1;
10113 else if (sufficient_parms_p (FUNCTION_FIRST_USER_PARMTYPE (decl
)))
10115 TYPE_HAS_DEFAULT_CONSTRUCTOR (class_type
) = 1;
10116 if (user_provided_p (decl
))
10117 TYPE_HAS_COMPLEX_DFLT (class_type
) = 1;
10119 else if (is_list_ctor (decl
))
10120 TYPE_HAS_LIST_CTOR (class_type
) = 1;
10122 else if (DECL_OVERLOADED_OPERATOR_P (decl
) == NOP_EXPR
)
10126 A non-template assignment operator for class X is a copy
10127 assignment operator if its parameter is of type X, X&, const
10128 X&, volatile X& or const volatile X&. */
10130 int assop
= copy_fn_p (decl
);
10134 TYPE_HAS_ASSIGN_REF (class_type
) = 1;
10135 if (user_provided_p (decl
))
10136 TYPE_HAS_COMPLEX_ASSIGN_REF (class_type
) = 1;
10138 TYPE_HAS_CONST_ASSIGN_REF (class_type
) = 1;
10143 /* Check a constructor DECL has the correct form. Complains
10144 if the class has a constructor of the form X(X). */
10147 grok_ctor_properties (const_tree ctype
, const_tree decl
)
10149 int ctor_parm
= copy_fn_p (decl
);
10155 A declaration of a constructor for a class X is ill-formed if
10156 its first parameter is of type (optionally cv-qualified) X
10157 and either there are no other parameters or else all other
10158 parameters have default arguments.
10160 We *don't* complain about member template instantiations that
10161 have this form, though; they can occur as we try to decide
10162 what constructor to use during overload resolution. Since
10163 overload resolution will never prefer such a constructor to
10164 the non-template copy constructor (which is either explicitly
10165 or implicitly defined), there's no need to worry about their
10166 existence. Theoretically, they should never even be
10167 instantiated, but that's hard to forestall. */
10168 error ("invalid constructor; you probably meant %<%T (const %T&)%>",
10176 /* An operator with this code is unary, but can also be binary. */
10179 ambi_op_p (enum tree_code code
)
10181 return (code
== INDIRECT_REF
10182 || code
== ADDR_EXPR
10183 || code
== UNARY_PLUS_EXPR
10184 || code
== NEGATE_EXPR
10185 || code
== PREINCREMENT_EXPR
10186 || code
== PREDECREMENT_EXPR
);
10189 /* An operator with this name can only be unary. */
10192 unary_op_p (enum tree_code code
)
10194 return (code
== TRUTH_NOT_EXPR
10195 || code
== BIT_NOT_EXPR
10196 || code
== COMPONENT_REF
10197 || code
== TYPE_EXPR
);
10200 /* DECL is a declaration for an overloaded operator. If COMPLAIN is true,
10201 errors are issued for invalid declarations. */
10204 grok_op_properties (tree decl
, bool complain
)
10206 tree argtypes
= TYPE_ARG_TYPES (TREE_TYPE (decl
));
10208 int methodp
= (TREE_CODE (TREE_TYPE (decl
)) == METHOD_TYPE
);
10209 tree name
= DECL_NAME (decl
);
10210 enum tree_code operator_code
;
10215 /* Count the number of arguments and check for ellipsis. */
10216 for (argtype
= argtypes
, arity
= 0;
10217 argtype
&& argtype
!= void_list_node
;
10218 argtype
= TREE_CHAIN (argtype
))
10220 ellipsis_p
= !argtype
;
10222 class_type
= DECL_CONTEXT (decl
);
10223 if (class_type
&& !CLASS_TYPE_P (class_type
))
10224 class_type
= NULL_TREE
;
10226 if (DECL_CONV_FN_P (decl
))
10227 operator_code
= TYPE_EXPR
;
10231 #define DEF_OPERATOR(NAME, CODE, MANGLING, ARITY, ASSN_P) \
10232 if (ansi_opname (CODE) == name) \
10234 operator_code = (CODE); \
10237 else if (ansi_assopname (CODE) == name) \
10239 operator_code = (CODE); \
10240 DECL_ASSIGNMENT_OPERATOR_P (decl) = 1; \
10244 #include "operators.def"
10245 #undef DEF_OPERATOR
10247 gcc_unreachable ();
10250 gcc_assert (operator_code
!= MAX_TREE_CODES
);
10251 SET_OVERLOADED_OPERATOR_CODE (decl
, operator_code
);
10254 switch (operator_code
)
10257 TYPE_HAS_NEW_OPERATOR (class_type
) = 1;
10261 TYPE_GETS_DELETE (class_type
) |= 1;
10265 TYPE_HAS_ARRAY_NEW_OPERATOR (class_type
) = 1;
10268 case VEC_DELETE_EXPR
:
10269 TYPE_GETS_DELETE (class_type
) |= 2;
10276 /* [basic.std.dynamic.allocation]/1:
10278 A program is ill-formed if an allocation function is declared
10279 in a namespace scope other than global scope or declared static
10282 The same also holds true for deallocation functions. */
10283 if (operator_code
== NEW_EXPR
|| operator_code
== VEC_NEW_EXPR
10284 || operator_code
== DELETE_EXPR
|| operator_code
== VEC_DELETE_EXPR
)
10286 if (DECL_NAMESPACE_SCOPE_P (decl
))
10288 if (CP_DECL_CONTEXT (decl
) != global_namespace
)
10290 error ("%qD may not be declared within a namespace", decl
);
10293 else if (!TREE_PUBLIC (decl
))
10295 error ("%qD may not be declared as static", decl
);
10301 if (operator_code
== NEW_EXPR
|| operator_code
== VEC_NEW_EXPR
)
10303 TREE_TYPE (decl
) = coerce_new_type (TREE_TYPE (decl
));
10304 DECL_IS_OPERATOR_NEW (decl
) = 1;
10306 else if (operator_code
== DELETE_EXPR
|| operator_code
== VEC_DELETE_EXPR
)
10307 TREE_TYPE (decl
) = coerce_delete_type (TREE_TYPE (decl
));
10310 /* An operator function must either be a non-static member function
10311 or have at least one parameter of a class, a reference to a class,
10312 an enumeration, or a reference to an enumeration. 13.4.0.6 */
10313 if (! methodp
|| DECL_STATIC_FUNCTION_P (decl
))
10315 if (operator_code
== TYPE_EXPR
10316 || operator_code
== CALL_EXPR
10317 || operator_code
== COMPONENT_REF
10318 || operator_code
== ARRAY_REF
10319 || operator_code
== NOP_EXPR
)
10321 if (class_type
&& LAMBDA_TYPE_P (class_type
))
10322 /* Lambdas can have static op() and conv ops. */;
10325 error ("%qD must be a nonstatic member function", decl
);
10333 if (DECL_STATIC_FUNCTION_P (decl
))
10335 error ("%qD must be either a non-static member "
10336 "function or a non-member function", decl
);
10340 for (p
= argtypes
; p
&& p
!= void_list_node
; p
= TREE_CHAIN (p
))
10342 tree arg
= non_reference (TREE_VALUE (p
));
10343 if (arg
== error_mark_node
)
10346 /* MAYBE_CLASS_TYPE_P, rather than CLASS_TYPE_P, is used
10347 because these checks are performed even on
10348 template functions. */
10349 if (MAYBE_CLASS_TYPE_P (arg
)
10350 || TREE_CODE (arg
) == ENUMERAL_TYPE
)
10354 if (!p
|| p
== void_list_node
)
10357 error ("%qD must have an argument of class or "
10358 "enumerated type", decl
);
10364 /* There are no restrictions on the arguments to an overloaded
10366 if (operator_code
== CALL_EXPR
)
10369 /* Warn about conversion operators that will never be used. */
10370 if (IDENTIFIER_TYPENAME_P (name
)
10371 && ! DECL_TEMPLATE_INFO (decl
)
10373 /* Warn only declaring the function; there is no need to
10374 warn again about out-of-class definitions. */
10375 && class_type
== current_class_type
)
10377 tree t
= TREE_TYPE (name
);
10378 int ref
= (TREE_CODE (t
) == REFERENCE_TYPE
);
10381 t
= TYPE_MAIN_VARIANT (TREE_TYPE (t
));
10383 if (TREE_CODE (t
) == VOID_TYPE
)
10384 warning (OPT_Wconversion
,
10386 ? G_("conversion to a reference to void "
10387 "will never use a type conversion operator")
10388 : G_("conversion to void "
10389 "will never use a type conversion operator"));
10390 else if (class_type
)
10392 if (t
== class_type
)
10393 warning (OPT_Wconversion
,
10395 ? G_("conversion to a reference to the same type "
10396 "will never use a type conversion operator")
10397 : G_("conversion to the same type "
10398 "will never use a type conversion operator"));
10399 /* Don't force t to be complete here. */
10400 else if (MAYBE_CLASS_TYPE_P (t
)
10401 && COMPLETE_TYPE_P (t
)
10402 && DERIVED_FROM_P (t
, class_type
))
10403 warning (OPT_Wconversion
,
10405 ? G_("conversion to a reference to a base class "
10406 "will never use a type conversion operator")
10407 : G_("conversion to a base class "
10408 "will never use a type conversion operator"));
10413 if (operator_code
== COND_EXPR
)
10416 error ("ISO C++ prohibits overloading operator ?:");
10419 else if (ellipsis_p
)
10421 error ("%qD must not have variable number of arguments", decl
);
10424 else if (ambi_op_p (operator_code
))
10427 /* We pick the one-argument operator codes by default, so
10428 we don't have to change anything. */
10430 else if (arity
== 2)
10432 /* If we thought this was a unary operator, we now know
10433 it to be a binary operator. */
10434 switch (operator_code
)
10437 operator_code
= MULT_EXPR
;
10441 operator_code
= BIT_AND_EXPR
;
10444 case UNARY_PLUS_EXPR
:
10445 operator_code
= PLUS_EXPR
;
10449 operator_code
= MINUS_EXPR
;
10452 case PREINCREMENT_EXPR
:
10453 operator_code
= POSTINCREMENT_EXPR
;
10456 case PREDECREMENT_EXPR
:
10457 operator_code
= POSTDECREMENT_EXPR
;
10461 gcc_unreachable ();
10464 SET_OVERLOADED_OPERATOR_CODE (decl
, operator_code
);
10466 if ((operator_code
== POSTINCREMENT_EXPR
10467 || operator_code
== POSTDECREMENT_EXPR
)
10468 && ! processing_template_decl
10469 && ! same_type_p (TREE_VALUE (TREE_CHAIN (argtypes
)), integer_type_node
))
10472 error ("postfix %qD must take %<int%> as its argument",
10475 error ("postfix %qD must take %<int%> as its second "
10483 error ("%qD must take either zero or one argument", decl
);
10485 error ("%qD must take either one or two arguments", decl
);
10489 /* More Effective C++ rule 6. */
10491 && (operator_code
== POSTINCREMENT_EXPR
10492 || operator_code
== POSTDECREMENT_EXPR
10493 || operator_code
== PREINCREMENT_EXPR
10494 || operator_code
== PREDECREMENT_EXPR
))
10496 tree arg
= TREE_VALUE (argtypes
);
10497 tree ret
= TREE_TYPE (TREE_TYPE (decl
));
10498 if (methodp
|| TREE_CODE (arg
) == REFERENCE_TYPE
)
10499 arg
= TREE_TYPE (arg
);
10500 arg
= TYPE_MAIN_VARIANT (arg
);
10501 if (operator_code
== PREINCREMENT_EXPR
10502 || operator_code
== PREDECREMENT_EXPR
)
10504 if (TREE_CODE (ret
) != REFERENCE_TYPE
10505 || !same_type_p (TYPE_MAIN_VARIANT (TREE_TYPE (ret
)),
10507 warning (OPT_Weffc__
, "prefix %qD should return %qT", decl
,
10508 build_reference_type (arg
));
10512 if (!same_type_p (TYPE_MAIN_VARIANT (ret
), arg
))
10513 warning (OPT_Weffc__
, "postfix %qD should return %qT", decl
, arg
);
10517 else if (unary_op_p (operator_code
))
10522 error ("%qD must take %<void%>", decl
);
10524 error ("%qD must take exactly one argument", decl
);
10528 else /* if (binary_op_p (operator_code)) */
10533 error ("%qD must take exactly one argument", decl
);
10535 error ("%qD must take exactly two arguments", decl
);
10539 /* More Effective C++ rule 7. */
10541 && (operator_code
== TRUTH_ANDIF_EXPR
10542 || operator_code
== TRUTH_ORIF_EXPR
10543 || operator_code
== COMPOUND_EXPR
))
10544 warning (OPT_Weffc__
, "user-defined %qD always evaluates both arguments",
10548 /* Effective C++ rule 23. */
10551 && !DECL_ASSIGNMENT_OPERATOR_P (decl
)
10552 && (operator_code
== PLUS_EXPR
10553 || operator_code
== MINUS_EXPR
10554 || operator_code
== TRUNC_DIV_EXPR
10555 || operator_code
== MULT_EXPR
10556 || operator_code
== TRUNC_MOD_EXPR
)
10557 && TREE_CODE (TREE_TYPE (TREE_TYPE (decl
))) == REFERENCE_TYPE
)
10558 warning (OPT_Weffc__
, "%qD should return by value", decl
);
10560 /* [over.oper]/8 */
10561 for (; argtypes
&& argtypes
!= void_list_node
;
10562 argtypes
= TREE_CHAIN (argtypes
))
10563 if (TREE_PURPOSE (argtypes
))
10565 TREE_PURPOSE (argtypes
) = NULL_TREE
;
10566 if (operator_code
== POSTINCREMENT_EXPR
10567 || operator_code
== POSTDECREMENT_EXPR
)
10569 pedwarn (input_location
, OPT_pedantic
, "%qD cannot have default arguments",
10574 error ("%qD cannot have default arguments", decl
);
10582 /* Return a string giving the keyword associate with CODE. */
10584 static const char *
10585 tag_name (enum tag_types code
)
10597 case typename_type
:
10600 gcc_unreachable ();
10604 /* Name lookup in an elaborated-type-specifier (after the keyword
10605 indicated by TAG_CODE) has found the TYPE_DECL DECL. If the
10606 elaborated-type-specifier is invalid, issue a diagnostic and return
10607 error_mark_node; otherwise, return the *_TYPE to which it referred.
10608 If ALLOW_TEMPLATE_P is true, TYPE may be a class template. */
10611 check_elaborated_type_specifier (enum tag_types tag_code
,
10613 bool allow_template_p
)
10619 struct S { struct S *p; };
10621 name lookup will find the TYPE_DECL for the implicit "S::S"
10622 typedef. Adjust for that here. */
10623 if (DECL_SELF_REFERENCE_P (decl
))
10624 decl
= TYPE_NAME (TREE_TYPE (decl
));
10626 type
= TREE_TYPE (decl
);
10628 /* Check TEMPLATE_TYPE_PARM first because DECL_IMPLICIT_TYPEDEF_P
10629 is false for this case as well. */
10630 if (TREE_CODE (type
) == TEMPLATE_TYPE_PARM
)
10632 error ("using template type parameter %qT after %qs",
10633 type
, tag_name (tag_code
));
10634 return error_mark_node
;
10638 If the identifier resolves to a typedef-name or a template
10639 type-parameter, the elaborated-type-specifier is ill-formed.
10641 In other words, the only legitimate declaration to use in the
10642 elaborated type specifier is the implicit typedef created when
10643 the type is declared. */
10644 else if (!DECL_IMPLICIT_TYPEDEF_P (decl
)
10645 && !DECL_SELF_REFERENCE_P (decl
)
10646 && tag_code
!= typename_type
)
10648 error ("using typedef-name %qD after %qs", decl
, tag_name (tag_code
));
10649 error ("%q+D has a previous declaration here", decl
);
10650 return error_mark_node
;
10652 else if (TREE_CODE (type
) != RECORD_TYPE
10653 && TREE_CODE (type
) != UNION_TYPE
10654 && tag_code
!= enum_type
10655 && tag_code
!= typename_type
)
10657 error ("%qT referred to as %qs", type
, tag_name (tag_code
));
10658 error ("%q+T has a previous declaration here", type
);
10659 return error_mark_node
;
10661 else if (TREE_CODE (type
) != ENUMERAL_TYPE
10662 && tag_code
== enum_type
)
10664 error ("%qT referred to as enum", type
);
10665 error ("%q+T has a previous declaration here", type
);
10666 return error_mark_node
;
10668 else if (!allow_template_p
10669 && TREE_CODE (type
) == RECORD_TYPE
10670 && CLASSTYPE_IS_TEMPLATE (type
))
10672 /* If a class template appears as elaborated type specifier
10673 without a template header such as:
10675 template <class T> class C {};
10676 void f(class C); // No template header here
10678 then the required template argument is missing. */
10679 error ("template argument required for %<%s %T%>",
10680 tag_name (tag_code
),
10681 DECL_NAME (CLASSTYPE_TI_TEMPLATE (type
)));
10682 return error_mark_node
;
10688 /* Lookup NAME in elaborate type specifier in scope according to
10689 SCOPE and issue diagnostics if necessary.
10690 Return *_TYPE node upon success, NULL_TREE when the NAME is not
10691 found, and ERROR_MARK_NODE for type error. */
10694 lookup_and_check_tag (enum tag_types tag_code
, tree name
,
10695 tag_scope scope
, bool template_header_p
)
10699 if (scope
== ts_global
)
10701 /* First try ordinary name lookup, ignoring hidden class name
10702 injected via friend declaration. */
10703 decl
= lookup_name_prefer_type (name
, 2);
10704 /* If that fails, the name will be placed in the smallest
10705 non-class, non-function-prototype scope according to 3.3.1/5.
10706 We may already have a hidden name declared as friend in this
10707 scope. So lookup again but not ignoring hidden names.
10708 If we find one, that name will be made visible rather than
10709 creating a new tag. */
10711 decl
= lookup_type_scope (name
, ts_within_enclosing_non_class
);
10714 decl
= lookup_type_scope (name
, scope
);
10716 if (decl
&& DECL_CLASS_TEMPLATE_P (decl
))
10717 decl
= DECL_TEMPLATE_RESULT (decl
);
10719 if (decl
&& TREE_CODE (decl
) == TYPE_DECL
)
10721 /* Look for invalid nested type:
10725 if (scope
== ts_current
&& DECL_SELF_REFERENCE_P (decl
))
10727 error ("%qD has the same name as the class in which it is "
10730 return error_mark_node
;
10733 /* Two cases we need to consider when deciding if a class
10734 template is allowed as an elaborated type specifier:
10735 1. It is a self reference to its own class.
10736 2. It comes with a template header.
10740 template <class T> class C {
10741 class C *c1; // DECL_SELF_REFERENCE_P is true
10744 template <class U> class C; // template_header_p is true
10745 template <class T> class C<T>::D {
10746 class C *c2; // DECL_SELF_REFERENCE_P is true
10749 t
= check_elaborated_type_specifier (tag_code
,
10752 | DECL_SELF_REFERENCE_P (decl
));
10755 else if (decl
&& TREE_CODE (decl
) == TREE_LIST
)
10757 error ("reference to %qD is ambiguous", name
);
10758 print_candidates (decl
);
10759 return error_mark_node
;
10765 /* Get the struct, enum or union (TAG_CODE says which) with tag NAME.
10766 Define the tag as a forward-reference if it is not defined.
10768 If a declaration is given, process it here, and report an error if
10769 multiple declarations are not identical.
10771 SCOPE is TS_CURRENT when this is also a definition. Only look in
10772 the current frame for the name (since C++ allows new names in any
10773 scope.) It is TS_WITHIN_ENCLOSING_NON_CLASS if this is a friend
10774 declaration. Only look beginning from the current scope outward up
10775 till the nearest non-class scope. Otherwise it is TS_GLOBAL.
10777 TEMPLATE_HEADER_P is true when this declaration is preceded by
10778 a set of template parameters. */
10781 xref_tag (enum tag_types tag_code
, tree name
,
10782 tag_scope scope
, bool template_header_p
)
10784 enum tree_code code
;
10786 tree context
= NULL_TREE
;
10788 timevar_push (TV_NAME_LOOKUP
);
10790 gcc_assert (TREE_CODE (name
) == IDENTIFIER_NODE
);
10796 code
= RECORD_TYPE
;
10802 code
= ENUMERAL_TYPE
;
10805 gcc_unreachable ();
10808 /* In case of anonymous name, xref_tag is only called to
10809 make type node and push name. Name lookup is not required. */
10810 if (ANON_AGGRNAME_P (name
))
10813 t
= lookup_and_check_tag (tag_code
, name
,
10814 scope
, template_header_p
);
10816 if (t
== error_mark_node
)
10817 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, error_mark_node
);
10819 if (scope
!= ts_current
&& t
&& current_class_type
10820 && template_class_depth (current_class_type
)
10821 && template_header_p
)
10823 /* Since SCOPE is not TS_CURRENT, we are not looking at a
10824 definition of this tag. Since, in addition, we are currently
10825 processing a (member) template declaration of a template
10826 class, we must be very careful; consider:
10833 { template <class V>
10834 friend struct S1; };
10836 Here, the S2::S1 declaration should not be confused with the
10837 outer declaration. In particular, the inner version should
10838 have a template parameter of level 2, not level 1. This
10839 would be particularly important if the member declaration
10842 template <class V = U> friend struct S1;
10844 say, when we should tsubst into `U' when instantiating
10845 S2. On the other hand, when presented with:
10855 we must find the inner binding eventually. We
10856 accomplish this by making sure that the new type we
10857 create to represent this declaration has the right
10859 context
= TYPE_CONTEXT (t
);
10865 /* If no such tag is yet defined, create a forward-reference node
10866 and record it as the "definition".
10867 When a real declaration of this type is found,
10868 the forward-reference will be altered into a real type. */
10869 if (code
== ENUMERAL_TYPE
)
10871 error ("use of enum %q#D without previous declaration", name
);
10872 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, error_mark_node
);
10876 t
= make_class_type (code
);
10877 TYPE_CONTEXT (t
) = context
;
10878 t
= pushtag (name
, t
, scope
);
10883 if (template_header_p
&& MAYBE_CLASS_TYPE_P (t
))
10885 if (!redeclare_class_template (t
, current_template_parms
))
10886 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, error_mark_node
);
10888 else if (!processing_template_decl
10889 && CLASS_TYPE_P (t
)
10890 && CLASSTYPE_IS_TEMPLATE (t
))
10892 error ("redeclaration of %qT as a non-template", t
);
10893 error ("previous declaration %q+D", t
);
10894 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, error_mark_node
);
10897 /* Make injected friend class visible. */
10898 if (scope
!= ts_within_enclosing_non_class
10899 && hidden_name_p (TYPE_NAME (t
)))
10901 DECL_ANTICIPATED (TYPE_NAME (t
)) = 0;
10902 DECL_FRIEND_P (TYPE_NAME (t
)) = 0;
10904 if (TYPE_TEMPLATE_INFO (t
))
10906 DECL_ANTICIPATED (TYPE_TI_TEMPLATE (t
)) = 0;
10907 DECL_FRIEND_P (TYPE_TI_TEMPLATE (t
)) = 0;
10912 POP_TIMEVAR_AND_RETURN (TV_NAME_LOOKUP
, t
);
10916 xref_tag_from_type (tree old
, tree id
, tag_scope scope
)
10918 enum tag_types tag_kind
;
10920 if (TREE_CODE (old
) == RECORD_TYPE
)
10921 tag_kind
= (CLASSTYPE_DECLARED_CLASS (old
) ? class_type
: record_type
);
10923 tag_kind
= union_type
;
10925 if (id
== NULL_TREE
)
10926 id
= TYPE_IDENTIFIER (old
);
10928 return xref_tag (tag_kind
, id
, scope
, false);
10931 /* Create the binfo hierarchy for REF with (possibly NULL) base list
10932 BASE_LIST. For each element on BASE_LIST the TREE_PURPOSE is an
10933 access_* node, and the TREE_VALUE is the type of the base-class.
10934 Non-NULL TREE_TYPE indicates virtual inheritance.
10936 Returns true if the binfo hierarchy was successfully created,
10937 false if an error was detected. */
10940 xref_basetypes (tree ref
, tree base_list
)
10943 tree binfo
, base_binfo
;
10944 unsigned max_vbases
= 0; /* Maximum direct & indirect virtual bases. */
10945 unsigned max_bases
= 0; /* Maximum direct bases. */
10947 tree default_access
;
10948 tree igo_prev
; /* Track Inheritance Graph Order. */
10950 if (ref
== error_mark_node
)
10953 /* The base of a derived class is private by default, all others are
10955 default_access
= (TREE_CODE (ref
) == RECORD_TYPE
10956 && CLASSTYPE_DECLARED_CLASS (ref
)
10957 ? access_private_node
: access_public_node
);
10959 /* First, make sure that any templates in base-classes are
10960 instantiated. This ensures that if we call ourselves recursively
10961 we do not get confused about which classes are marked and which
10963 basep
= &base_list
;
10966 tree basetype
= TREE_VALUE (*basep
);
10968 if (!(processing_template_decl
&& uses_template_parms (basetype
))
10969 && !complete_type_or_else (basetype
, NULL
))
10970 /* An incomplete type. Remove it from the list. */
10971 *basep
= TREE_CHAIN (*basep
);
10975 if (TREE_TYPE (*basep
))
10977 if (CLASS_TYPE_P (basetype
))
10978 max_vbases
+= VEC_length (tree
, CLASSTYPE_VBASECLASSES (basetype
));
10979 basep
= &TREE_CHAIN (*basep
);
10983 TYPE_MARKED_P (ref
) = 1;
10985 /* The binfo slot should be empty, unless this is an (ill-formed)
10987 gcc_assert (!TYPE_BINFO (ref
) || TYPE_SIZE (ref
));
10988 gcc_assert (TYPE_MAIN_VARIANT (ref
) == ref
);
10990 binfo
= make_tree_binfo (max_bases
);
10992 TYPE_BINFO (ref
) = binfo
;
10993 BINFO_OFFSET (binfo
) = size_zero_node
;
10994 BINFO_TYPE (binfo
) = ref
;
10996 /* Apply base-class info set up to the variants of this type. */
10997 fixup_type_variants (ref
);
11001 BINFO_BASE_ACCESSES (binfo
) = VEC_alloc (tree
, gc
, max_bases
);
11002 /* An aggregate cannot have baseclasses. */
11003 CLASSTYPE_NON_AGGREGATE (ref
) = 1;
11005 if (TREE_CODE (ref
) == UNION_TYPE
)
11007 error ("derived union %qT invalid", ref
);
11014 if (TYPE_FOR_JAVA (ref
))
11016 error ("Java class %qT cannot have multiple bases", ref
);
11023 CLASSTYPE_VBASECLASSES (ref
) = VEC_alloc (tree
, gc
, max_vbases
);
11025 if (TYPE_FOR_JAVA (ref
))
11027 error ("Java class %qT cannot have virtual bases", ref
);
11032 for (igo_prev
= binfo
; base_list
; base_list
= TREE_CHAIN (base_list
))
11034 tree access
= TREE_PURPOSE (base_list
);
11035 int via_virtual
= TREE_TYPE (base_list
) != NULL_TREE
;
11036 tree basetype
= TREE_VALUE (base_list
);
11038 if (access
== access_default_node
)
11039 access
= default_access
;
11041 if (PACK_EXPANSION_P (basetype
))
11042 basetype
= PACK_EXPANSION_PATTERN (basetype
);
11043 if (TREE_CODE (basetype
) == TYPE_DECL
)
11044 basetype
= TREE_TYPE (basetype
);
11045 if (!MAYBE_CLASS_TYPE_P (basetype
) || TREE_CODE (basetype
) == UNION_TYPE
)
11047 error ("base type %qT fails to be a struct or class type",
11052 if (TYPE_FOR_JAVA (basetype
) && (current_lang_depth () == 0))
11053 TYPE_FOR_JAVA (ref
) = 1;
11055 base_binfo
= NULL_TREE
;
11056 if (CLASS_TYPE_P (basetype
) && !dependent_type_p (basetype
))
11058 base_binfo
= TYPE_BINFO (basetype
);
11059 /* The original basetype could have been a typedef'd type. */
11060 basetype
= BINFO_TYPE (base_binfo
);
11062 /* Inherit flags from the base. */
11063 TYPE_HAS_NEW_OPERATOR (ref
)
11064 |= TYPE_HAS_NEW_OPERATOR (basetype
);
11065 TYPE_HAS_ARRAY_NEW_OPERATOR (ref
)
11066 |= TYPE_HAS_ARRAY_NEW_OPERATOR (basetype
);
11067 TYPE_GETS_DELETE (ref
) |= TYPE_GETS_DELETE (basetype
);
11068 TYPE_HAS_CONVERSION (ref
) |= TYPE_HAS_CONVERSION (basetype
);
11069 CLASSTYPE_DIAMOND_SHAPED_P (ref
)
11070 |= CLASSTYPE_DIAMOND_SHAPED_P (basetype
);
11071 CLASSTYPE_REPEATED_BASE_P (ref
)
11072 |= CLASSTYPE_REPEATED_BASE_P (basetype
);
11075 /* We must do this test after we've seen through a typedef
11077 if (TYPE_MARKED_P (basetype
))
11079 if (basetype
== ref
)
11080 error ("recursive type %qT undefined", basetype
);
11082 error ("duplicate base type %qT invalid", basetype
);
11086 if (PACK_EXPANSION_P (TREE_VALUE (base_list
)))
11087 /* Regenerate the pack expansion for the bases. */
11088 basetype
= make_pack_expansion (basetype
);
11090 TYPE_MARKED_P (basetype
) = 1;
11092 base_binfo
= copy_binfo (base_binfo
, basetype
, ref
,
11093 &igo_prev
, via_virtual
);
11094 if (!BINFO_INHERITANCE_CHAIN (base_binfo
))
11095 BINFO_INHERITANCE_CHAIN (base_binfo
) = binfo
;
11097 BINFO_BASE_APPEND (binfo
, base_binfo
);
11098 BINFO_BASE_ACCESS_APPEND (binfo
, access
);
11101 if (VEC_space (tree
, CLASSTYPE_VBASECLASSES (ref
), 1))
11102 /* If we have space in the vbase vector, we must have shared at
11103 least one of them, and are therefore diamond shaped. */
11104 CLASSTYPE_DIAMOND_SHAPED_P (ref
) = 1;
11106 /* Unmark all the types. */
11107 for (i
= 0; BINFO_BASE_ITERATE (binfo
, i
, base_binfo
); i
++)
11108 TYPE_MARKED_P (BINFO_TYPE (base_binfo
)) = 0;
11109 TYPE_MARKED_P (ref
) = 0;
11111 /* Now see if we have a repeated base type. */
11112 if (!CLASSTYPE_REPEATED_BASE_P (ref
))
11114 for (base_binfo
= binfo
; base_binfo
;
11115 base_binfo
= TREE_CHAIN (base_binfo
))
11117 if (TYPE_MARKED_P (BINFO_TYPE (base_binfo
)))
11119 CLASSTYPE_REPEATED_BASE_P (ref
) = 1;
11122 TYPE_MARKED_P (BINFO_TYPE (base_binfo
)) = 1;
11124 for (base_binfo
= binfo
; base_binfo
;
11125 base_binfo
= TREE_CHAIN (base_binfo
))
11126 if (TYPE_MARKED_P (BINFO_TYPE (base_binfo
)))
11127 TYPE_MARKED_P (BINFO_TYPE (base_binfo
)) = 0;
11136 /* Begin compiling the definition of an enumeration type.
11139 UNDERLYING_TYPE is the type that will be used as the storage for
11140 the enumeration type. This should be NULL_TREE if no storage type
11143 SCOPED_ENUM_P is true if this is a scoped enumeration type.
11145 Returns the type object, as yet incomplete.
11146 Also records info about it so that build_enumerator
11147 may be used to declare the individual values as they are read. */
11150 start_enum (tree name
, tree underlying_type
, bool scoped_enum_p
)
11154 gcc_assert (TREE_CODE (name
) == IDENTIFIER_NODE
);
11156 /* If this is the real definition for a previous forward reference,
11157 fill in the contents in the same object that used to be the
11158 forward reference. */
11160 enumtype
= lookup_and_check_tag (enum_type
, name
,
11161 /*tag_scope=*/ts_current
,
11162 /*template_header_p=*/false);
11164 if (enumtype
!= NULL_TREE
&& TREE_CODE (enumtype
) == ENUMERAL_TYPE
)
11166 error_at (input_location
, "multiple definition of %q#T", enumtype
);
11167 error_at (DECL_SOURCE_LOCATION (TYPE_MAIN_DECL (enumtype
)),
11168 "previous definition here");
11169 /* Clear out TYPE_VALUES, and start again. */
11170 TYPE_VALUES (enumtype
) = NULL_TREE
;
11174 /* In case of error, make a dummy enum to allow parsing to
11176 if (enumtype
== error_mark_node
)
11177 name
= make_anon_name ();
11179 enumtype
= cxx_make_type (ENUMERAL_TYPE
);
11180 enumtype
= pushtag (name
, enumtype
, /*tag_scope=*/ts_current
);
11183 if (enumtype
== error_mark_node
)
11188 SET_SCOPED_ENUM_P (enumtype
, 1);
11189 begin_scope (sk_scoped_enum
, enumtype
);
11191 /* [C++0x dcl.enum]p5:
11193 If not explicitly specified, the underlying type of a scoped
11194 enumeration type is int. */
11195 if (!underlying_type
)
11196 underlying_type
= integer_type_node
;
11199 if (underlying_type
)
11201 if (CP_INTEGRAL_TYPE_P (underlying_type
))
11203 TYPE_MIN_VALUE (enumtype
) = TYPE_MIN_VALUE (underlying_type
);
11204 TYPE_MAX_VALUE (enumtype
) = TYPE_MAX_VALUE (underlying_type
);
11205 TYPE_SIZE (enumtype
) = TYPE_SIZE (underlying_type
);
11206 TYPE_SIZE_UNIT (enumtype
) = TYPE_SIZE_UNIT (underlying_type
);
11207 SET_TYPE_MODE (enumtype
, TYPE_MODE (underlying_type
));
11208 TYPE_PRECISION (enumtype
) = TYPE_PRECISION (underlying_type
);
11209 TYPE_ALIGN (enumtype
) = TYPE_ALIGN (underlying_type
);
11210 TYPE_USER_ALIGN (enumtype
) = TYPE_USER_ALIGN (underlying_type
);
11211 TYPE_UNSIGNED (enumtype
) = TYPE_UNSIGNED (underlying_type
);
11212 ENUM_UNDERLYING_TYPE (enumtype
) = underlying_type
;
11214 else if (!dependent_type_p (underlying_type
))
11215 error ("underlying type %<%T%> of %<%T%> must be an integral type",
11216 underlying_type
, enumtype
);
11222 /* After processing and defining all the values of an enumeration type,
11223 install their decls in the enumeration type and finish it off.
11224 ENUMTYPE is the type object and VALUES a list of name-value pairs. */
11227 finish_enum (tree enumtype
)
11236 bool use_short_enum
;
11241 tree underlying_type
= NULL_TREE
;
11242 bool fixed_underlying_type_p
11243 = ENUM_UNDERLYING_TYPE (enumtype
) != NULL_TREE
;
11245 /* We built up the VALUES in reverse order. */
11246 TYPE_VALUES (enumtype
) = nreverse (TYPE_VALUES (enumtype
));
11248 /* For an enum defined in a template, just set the type of the values;
11249 all further processing is postponed until the template is
11250 instantiated. We need to set the type so that tsubst of a CONST_DECL
11252 if (processing_template_decl
)
11254 for (values
= TYPE_VALUES (enumtype
);
11256 values
= TREE_CHAIN (values
))
11257 TREE_TYPE (TREE_VALUE (values
)) = enumtype
;
11258 if (at_function_scope_p ())
11259 add_stmt (build_min (TAG_DEFN
, enumtype
));
11260 if (SCOPED_ENUM_P (enumtype
))
11265 /* Determine the minimum and maximum values of the enumerators. */
11266 if (TYPE_VALUES (enumtype
))
11268 minnode
= maxnode
= NULL_TREE
;
11270 for (values
= TYPE_VALUES (enumtype
);
11272 values
= TREE_CHAIN (values
))
11274 decl
= TREE_VALUE (values
);
11276 /* [dcl.enum]: Following the closing brace of an enum-specifier,
11277 each enumerator has the type of its enumeration. Prior to the
11278 closing brace, the type of each enumerator is the type of its
11279 initializing value. */
11280 TREE_TYPE (decl
) = enumtype
;
11282 /* Update the minimum and maximum values, if appropriate. */
11283 value
= DECL_INITIAL (decl
);
11284 if (value
== error_mark_node
)
11285 value
= integer_zero_node
;
11286 /* Figure out what the minimum and maximum values of the
11287 enumerators are. */
11289 minnode
= maxnode
= value
;
11290 else if (tree_int_cst_lt (maxnode
, value
))
11292 else if (tree_int_cst_lt (value
, minnode
))
11299 If the enumerator-list is empty, the underlying type is as if
11300 the enumeration had a single enumerator with value 0. */
11301 minnode
= maxnode
= integer_zero_node
;
11303 /* Compute the number of bits require to represent all values of the
11304 enumeration. We must do this before the type of MINNODE and
11305 MAXNODE are transformed, since tree_int_cst_min_precision relies
11306 on the TREE_TYPE of the value it is passed. */
11307 unsignedp
= tree_int_cst_sgn (minnode
) >= 0;
11308 lowprec
= tree_int_cst_min_precision (minnode
, unsignedp
);
11309 highprec
= tree_int_cst_min_precision (maxnode
, unsignedp
);
11310 precision
= MAX (lowprec
, highprec
);
11312 if (!fixed_underlying_type_p
)
11314 /* Determine the underlying type of the enumeration.
11318 The underlying type of an enumeration is an integral type that
11319 can represent all the enumerator values defined in the
11320 enumeration. It is implementation-defined which integral type is
11321 used as the underlying type for an enumeration except that the
11322 underlying type shall not be larger than int unless the value of
11323 an enumerator cannot fit in an int or unsigned int.
11325 We use "int" or an "unsigned int" as the underlying type, even if
11326 a smaller integral type would work, unless the user has
11327 explicitly requested that we use the smallest possible type. The
11328 user can request that for all enumerations with a command line
11329 flag, or for just one enumeration with an attribute. */
11331 use_short_enum
= flag_short_enums
11332 || lookup_attribute ("packed", TYPE_ATTRIBUTES (enumtype
));
11334 for (itk
= (use_short_enum
? itk_char
: itk_int
);
11338 underlying_type
= integer_types
[itk
];
11339 if (TYPE_PRECISION (underlying_type
) >= precision
11340 && TYPE_UNSIGNED (underlying_type
) == unsignedp
)
11343 if (itk
== itk_none
)
11347 IF no integral type can represent all the enumerator values, the
11348 enumeration is ill-formed. */
11349 error ("no integral type can represent all of the enumerator values "
11350 "for %qT", enumtype
);
11351 precision
= TYPE_PRECISION (long_long_integer_type_node
);
11352 underlying_type
= integer_types
[itk_unsigned_long_long
];
11357 The value of sizeof() applied to an enumeration type, an object
11358 of an enumeration type, or an enumerator, is the value of sizeof()
11359 applied to the underlying type. */
11360 TYPE_SIZE (enumtype
) = TYPE_SIZE (underlying_type
);
11361 TYPE_SIZE_UNIT (enumtype
) = TYPE_SIZE_UNIT (underlying_type
);
11362 SET_TYPE_MODE (enumtype
, TYPE_MODE (underlying_type
));
11363 TYPE_ALIGN (enumtype
) = TYPE_ALIGN (underlying_type
);
11364 TYPE_USER_ALIGN (enumtype
) = TYPE_USER_ALIGN (underlying_type
);
11365 TYPE_UNSIGNED (enumtype
) = TYPE_UNSIGNED (underlying_type
);
11367 /* Set the underlying type of the enumeration type to the
11368 computed enumeration type, restricted to the enumerator
11370 ENUM_UNDERLYING_TYPE (enumtype
)
11371 = build_distinct_type_copy (underlying_type
);
11372 set_min_and_max_values_for_integral_type
11373 (ENUM_UNDERLYING_TYPE (enumtype
), precision
, unsignedp
);
11376 underlying_type
= ENUM_UNDERLYING_TYPE (enumtype
);
11378 /* Compute the minimum and maximum values for the type.
11382 For an enumeration where emin is the smallest enumerator and emax
11383 is the largest, the values of the enumeration are the values of the
11384 underlying type in the range bmin to bmax, where bmin and bmax are,
11385 respectively, the smallest and largest values of the smallest bit-
11386 field that can store emin and emax. */
11388 /* The middle-end currently assumes that types with TYPE_PRECISION
11389 narrower than their underlying type are suitably zero or sign
11390 extended to fill their mode. g++ doesn't make these guarantees.
11391 Until the middle-end can represent such paradoxical types, we
11392 set the TYPE_PRECISION to the width of the underlying type. */
11393 TYPE_PRECISION (enumtype
) = TYPE_PRECISION (underlying_type
);
11395 set_min_and_max_values_for_integral_type (enumtype
, precision
, unsignedp
);
11397 /* Convert each of the enumerators to the type of the underlying
11398 type of the enumeration. */
11399 for (values
= TYPE_VALUES (enumtype
); values
; values
= TREE_CHAIN (values
))
11401 location_t saved_location
;
11403 decl
= TREE_VALUE (values
);
11404 saved_location
= input_location
;
11405 input_location
= DECL_SOURCE_LOCATION (decl
);
11406 if (fixed_underlying_type_p
)
11407 /* If the enumeration type has a fixed underlying type, we
11408 already checked all of the enumerator values. */
11409 value
= DECL_INITIAL (decl
);
11411 value
= perform_implicit_conversion (underlying_type
,
11412 DECL_INITIAL (decl
),
11413 tf_warning_or_error
);
11414 input_location
= saved_location
;
11416 /* Do not clobber shared ints. */
11417 value
= copy_node (value
);
11419 TREE_TYPE (value
) = enumtype
;
11420 DECL_INITIAL (decl
) = value
;
11423 /* Fix up all variant types of this enum type. */
11424 for (t
= TYPE_MAIN_VARIANT (enumtype
); t
; t
= TYPE_NEXT_VARIANT (t
))
11426 TYPE_VALUES (t
) = TYPE_VALUES (enumtype
);
11427 TYPE_MIN_VALUE (t
) = TYPE_MIN_VALUE (enumtype
);
11428 TYPE_MAX_VALUE (t
) = TYPE_MAX_VALUE (enumtype
);
11429 TYPE_SIZE (t
) = TYPE_SIZE (enumtype
);
11430 TYPE_SIZE_UNIT (t
) = TYPE_SIZE_UNIT (enumtype
);
11431 SET_TYPE_MODE (t
, TYPE_MODE (enumtype
));
11432 TYPE_PRECISION (t
) = TYPE_PRECISION (enumtype
);
11433 TYPE_ALIGN (t
) = TYPE_ALIGN (enumtype
);
11434 TYPE_USER_ALIGN (t
) = TYPE_USER_ALIGN (enumtype
);
11435 TYPE_UNSIGNED (t
) = TYPE_UNSIGNED (enumtype
);
11436 ENUM_UNDERLYING_TYPE (t
) = ENUM_UNDERLYING_TYPE (enumtype
);
11439 /* Finish up the scope of a scoped enumeration. */
11440 if (SCOPED_ENUM_P (enumtype
))
11443 /* Finish debugging output for this type. */
11444 rest_of_type_compilation (enumtype
, namespace_bindings_p ());
11447 /* Build and install a CONST_DECL for an enumeration constant of the
11448 enumeration type ENUMTYPE whose NAME and VALUE (if any) are provided.
11449 Assignment of sequential values by default is handled here. */
11452 build_enumerator (tree name
, tree value
, tree enumtype
)
11458 /* If the VALUE was erroneous, pretend it wasn't there; that will
11459 result in the enum being assigned the next value in sequence. */
11460 if (value
== error_mark_node
)
11463 /* Remove no-op casts from the value. */
11465 STRIP_TYPE_NOPS (value
);
11467 if (! processing_template_decl
)
11469 /* Validate and default VALUE. */
11470 if (value
!= NULL_TREE
)
11472 value
= integral_constant_value (value
);
11474 if (TREE_CODE (value
) == INTEGER_CST
)
11476 value
= perform_integral_promotions (value
);
11477 constant_expression_warning (value
);
11481 error ("enumerator value for %qD is not an integer constant", name
);
11486 /* Default based on previous value. */
11487 if (value
== NULL_TREE
)
11489 if (TYPE_VALUES (enumtype
))
11492 unsigned HOST_WIDE_INT lo
;
11496 /* The next value is the previous value plus one.
11497 add_double doesn't know the type of the target expression,
11498 so we must check with int_fits_type_p as well. */
11499 prev_value
= DECL_INITIAL (TREE_VALUE (TYPE_VALUES (enumtype
)));
11500 if (error_operand_p (prev_value
))
11501 value
= error_mark_node
;
11504 overflowed
= add_double (TREE_INT_CST_LOW (prev_value
),
11505 TREE_INT_CST_HIGH (prev_value
),
11507 value
= build_int_cst_wide (TREE_TYPE (prev_value
), lo
, hi
);
11509 |= !int_fits_type_p (value
, TREE_TYPE (prev_value
));
11513 error ("overflow in enumeration values at %qD", name
);
11514 value
= error_mark_node
;
11519 value
= integer_zero_node
;
11522 /* Remove no-op casts from the value. */
11523 STRIP_TYPE_NOPS (value
);
11525 /* If the underlying type of the enum is fixed, check whether
11526 the enumerator values fits in the underlying type. If it
11527 does not fit, the program is ill-formed [C++0x dcl.enum]. */
11528 if (ENUM_UNDERLYING_TYPE (enumtype
)
11530 && TREE_CODE (value
) == INTEGER_CST
11531 && !int_fits_type_p (value
, ENUM_UNDERLYING_TYPE (enumtype
)))
11533 error ("enumerator value %E is too large for underlying type %<%T%>",
11534 value
, ENUM_UNDERLYING_TYPE (enumtype
));
11536 /* Silently convert the value so that we can continue. */
11537 value
= perform_implicit_conversion (ENUM_UNDERLYING_TYPE (enumtype
),
11542 /* C++ associates enums with global, function, or class declarations. */
11543 context
= current_scope ();
11545 /* Build the actual enumeration constant. Note that the enumeration
11546 constants have the underlying type of the enum (if it is fixed)
11547 or the type of their initializer (if the underlying type of the
11548 enum is not fixed):
11552 If the underlying type is fixed, the type of each enumerator
11553 prior to the closing brace is the underlying type; if the
11554 initializing value of an enumerator cannot be represented by
11555 the underlying type, the program is ill-formed. If the
11556 underlying type is not fixed, the type of each enumerator is
11557 the type of its initializing value.
11559 If the underlying type is not fixed, it will be computed by
11560 finish_enum and we will reset the type of this enumerator. Of
11561 course, if we're processing a template, there may be no value. */
11562 type
= value
? TREE_TYPE (value
) : NULL_TREE
;
11564 if (context
&& context
== current_class_type
)
11565 /* This enum declaration is local to the class. We need the full
11566 lang_decl so that we can record DECL_CLASS_CONTEXT, for example. */
11567 decl
= build_lang_decl (CONST_DECL
, name
, type
);
11569 /* It's a global enum, or it's local to a function. (Note local to
11570 a function could mean local to a class method. */
11571 decl
= build_decl (input_location
, CONST_DECL
, name
, type
);
11573 DECL_CONTEXT (decl
) = FROB_CONTEXT (context
);
11574 TREE_CONSTANT (decl
) = 1;
11575 TREE_READONLY (decl
) = 1;
11576 DECL_INITIAL (decl
) = value
;
11578 if (context
&& context
== current_class_type
&& !SCOPED_ENUM_P (enumtype
))
11579 /* In something like `struct S { enum E { i = 7 }; };' we put `i'
11580 on the TYPE_FIELDS list for `S'. (That's so that you can say
11581 things like `S::i' later.) */
11582 finish_member_declaration (decl
);
11586 /* Add this enumeration constant to the list for this type. */
11587 TYPE_VALUES (enumtype
) = tree_cons (name
, decl
, TYPE_VALUES (enumtype
));
11590 /* Look for an enumerator with the given NAME within the enumeration
11591 type ENUMTYPE. This routine is used primarily for qualified name
11592 lookup into an enumerator in C++0x, e.g.,
11594 enum class Color { Red, Green, Blue };
11596 Color color = Color::Red;
11598 Returns the value corresponding to the enumerator, or
11599 NULL_TREE if no such enumerator was found. */
11601 lookup_enumerator (tree enumtype
, tree name
)
11604 gcc_assert (enumtype
&& TREE_CODE (enumtype
) == ENUMERAL_TYPE
);
11606 e
= purpose_member (name
, TYPE_VALUES (enumtype
));
11607 return e
? TREE_VALUE (e
) : NULL_TREE
;
11611 /* We're defining DECL. Make sure that its type is OK. */
11614 check_function_type (tree decl
, tree current_function_parms
)
11616 tree fntype
= TREE_TYPE (decl
);
11617 tree return_type
= complete_type (TREE_TYPE (fntype
));
11619 /* In a function definition, arg types must be complete. */
11620 require_complete_types_for_parms (current_function_parms
);
11622 /* constexpr functions must have literal argument types and
11623 literal return type. */
11624 validate_constexpr_fundecl (decl
);
11626 if (dependent_type_p (return_type
))
11628 if (!COMPLETE_OR_VOID_TYPE_P (return_type
)
11629 || (TYPE_FOR_JAVA (return_type
) && MAYBE_CLASS_TYPE_P (return_type
)))
11631 tree args
= TYPE_ARG_TYPES (fntype
);
11633 if (!COMPLETE_OR_VOID_TYPE_P (return_type
))
11634 error ("return type %q#T is incomplete", return_type
);
11636 error ("return type has Java class type %q#T", return_type
);
11638 /* Make it return void instead. */
11639 if (TREE_CODE (fntype
) == METHOD_TYPE
)
11640 fntype
= build_method_type_directly (TREE_TYPE (TREE_VALUE (args
)),
11642 TREE_CHAIN (args
));
11644 fntype
= build_function_type (void_type_node
, args
);
11646 = build_exception_variant (fntype
,
11647 TYPE_RAISES_EXCEPTIONS (TREE_TYPE (decl
)));
11648 fntype
= (cp_build_type_attribute_variant
11649 (fntype
, TYPE_ATTRIBUTES (TREE_TYPE (decl
))));
11650 TREE_TYPE (decl
) = fntype
;
11653 abstract_virtuals_error (decl
, TREE_TYPE (fntype
));
11656 /* Create the FUNCTION_DECL for a function definition.
11657 DECLSPECS and DECLARATOR are the parts of the declaration;
11658 they describe the function's name and the type it returns,
11659 but twisted together in a fashion that parallels the syntax of C.
11661 FLAGS is a bitwise or of SF_PRE_PARSED (indicating that the
11662 DECLARATOR is really the DECL for the function we are about to
11663 process and that DECLSPECS should be ignored), SF_INCLASS_INLINE
11664 indicating that the function is an inline defined in-class.
11666 This function creates a binding context for the function body
11667 as well as setting up the FUNCTION_DECL in current_function_decl.
11669 For C++, we must first check whether that datum makes any sense.
11670 For example, "class A local_a(1,2);" means that variable local_a
11671 is an aggregate of type A, which should have a constructor
11672 applied to it with the argument list [1, 2].
11674 On entry, DECL_INITIAL (decl1) should be NULL_TREE or error_mark_node,
11675 or may be a BLOCK if the function has been defined previously
11676 in this translation unit. On exit, DECL_INITIAL (decl1) will be
11677 error_mark_node if the function has never been defined, or
11678 a BLOCK if the function has been defined somewhere. */
11681 start_preparsed_function (tree decl1
, tree attrs
, int flags
)
11683 tree ctype
= NULL_TREE
;
11686 int doing_friend
= 0;
11687 struct cp_binding_level
*bl
;
11688 tree current_function_parms
;
11689 struct c_fileinfo
*finfo
11690 = get_fileinfo (LOCATION_FILE (DECL_SOURCE_LOCATION (decl1
)));
11691 bool honor_interface
;
11693 /* Sanity check. */
11694 gcc_assert (TREE_CODE (TREE_VALUE (void_list_node
)) == VOID_TYPE
);
11695 gcc_assert (TREE_CHAIN (void_list_node
) == NULL_TREE
);
11697 fntype
= TREE_TYPE (decl1
);
11698 if (TREE_CODE (fntype
) == METHOD_TYPE
)
11699 ctype
= TYPE_METHOD_BASETYPE (fntype
);
11701 /* ISO C++ 11.4/5. A friend function defined in a class is in
11702 the (lexical) scope of the class in which it is defined. */
11703 if (!ctype
&& DECL_FRIEND_P (decl1
))
11705 ctype
= DECL_FRIEND_CONTEXT (decl1
);
11707 /* CTYPE could be null here if we're dealing with a template;
11708 for example, `inline friend float foo()' inside a template
11709 will have no CTYPE set. */
11710 if (ctype
&& TREE_CODE (ctype
) != RECORD_TYPE
)
11716 if (DECL_DECLARED_INLINE_P (decl1
)
11717 && lookup_attribute ("noinline", attrs
))
11718 warning (0, "inline function %q+D given attribute noinline", decl1
);
11720 /* Handle gnu_inline attribute. */
11721 if (GNU_INLINE_P (decl1
))
11723 DECL_EXTERNAL (decl1
) = 1;
11724 DECL_NOT_REALLY_EXTERN (decl1
) = 0;
11725 DECL_INTERFACE_KNOWN (decl1
) = 1;
11726 DECL_DISREGARD_INLINE_LIMITS (decl1
) = 1;
11729 if (DECL_MAYBE_IN_CHARGE_CONSTRUCTOR_P (decl1
))
11730 /* This is a constructor, we must ensure that any default args
11731 introduced by this definition are propagated to the clones
11732 now. The clones are used directly in overload resolution. */
11733 adjust_clone_args (decl1
);
11735 /* Sometimes we don't notice that a function is a static member, and
11736 build a METHOD_TYPE for it. Fix that up now. */
11737 if (ctype
!= NULL_TREE
&& DECL_STATIC_FUNCTION_P (decl1
)
11738 && TREE_CODE (TREE_TYPE (decl1
)) == METHOD_TYPE
)
11740 revert_static_member_fn (decl1
);
11744 /* Set up current_class_type, and enter the scope of the class, if
11747 push_nested_class (ctype
);
11748 else if (DECL_STATIC_FUNCTION_P (decl1
))
11749 push_nested_class (DECL_CONTEXT (decl1
));
11751 /* Now that we have entered the scope of the class, we must restore
11752 the bindings for any template parameters surrounding DECL1, if it
11753 is an inline member template. (Order is important; consider the
11754 case where a template parameter has the same name as a field of
11755 the class.) It is not until after this point that
11756 PROCESSING_TEMPLATE_DECL is guaranteed to be set up correctly. */
11757 if (flags
& SF_INCLASS_INLINE
)
11758 maybe_begin_member_template_processing (decl1
);
11760 /* Effective C++ rule 15. */
11762 && DECL_OVERLOADED_OPERATOR_P (decl1
) == NOP_EXPR
11763 && TREE_CODE (TREE_TYPE (fntype
)) == VOID_TYPE
)
11764 warning (OPT_Weffc__
, "%<operator=%> should return a reference to %<*this%>");
11766 /* Make the init_value nonzero so pushdecl knows this is not tentative.
11767 error_mark_node is replaced below (in poplevel) with the BLOCK. */
11768 if (!DECL_INITIAL (decl1
))
11769 DECL_INITIAL (decl1
) = error_mark_node
;
11771 /* This function exists in static storage.
11772 (This does not mean `static' in the C sense!) */
11773 TREE_STATIC (decl1
) = 1;
11775 /* We must call push_template_decl after current_class_type is set
11776 up. (If we are processing inline definitions after exiting a
11777 class scope, current_class_type will be NULL_TREE until set above
11778 by push_nested_class.) */
11779 if (processing_template_decl
)
11781 /* FIXME: Handle error_mark_node more gracefully. */
11782 tree newdecl1
= push_template_decl (decl1
);
11783 if (newdecl1
!= error_mark_node
)
11787 /* We are now in the scope of the function being defined. */
11788 current_function_decl
= decl1
;
11790 /* Save the parm names or decls from this function's declarator
11791 where store_parm_decls will find them. */
11792 current_function_parms
= DECL_ARGUMENTS (decl1
);
11794 /* Make sure the parameter and return types are reasonable. When
11795 you declare a function, these types can be incomplete, but they
11796 must be complete when you define the function. */
11797 check_function_type (decl1
, current_function_parms
);
11799 /* Build the return declaration for the function. */
11800 restype
= TREE_TYPE (fntype
);
11801 if (DECL_RESULT (decl1
) == NULL_TREE
)
11805 resdecl
= build_decl (input_location
, RESULT_DECL
, 0, restype
);
11806 DECL_ARTIFICIAL (resdecl
) = 1;
11807 DECL_IGNORED_P (resdecl
) = 1;
11808 DECL_RESULT (decl1
) = resdecl
;
11810 cp_apply_type_quals_to_decl (cp_type_quals (restype
), resdecl
);
11813 /* Let the user know we're compiling this function. */
11814 announce_function (decl1
);
11816 /* Record the decl so that the function name is defined.
11817 If we already have a decl for this name, and it is a FUNCTION_DECL,
11818 use the old decl. */
11819 if (!processing_template_decl
&& !(flags
& SF_PRE_PARSED
))
11821 /* A specialization is not used to guide overload resolution. */
11822 if (!DECL_FUNCTION_MEMBER_P (decl1
)
11823 && !(DECL_USE_TEMPLATE (decl1
) &&
11824 PRIMARY_TEMPLATE_P (DECL_TI_TEMPLATE (decl1
))))
11826 tree olddecl
= pushdecl (decl1
);
11828 if (olddecl
== error_mark_node
)
11829 /* If something went wrong when registering the declaration,
11830 use DECL1; we have to have a FUNCTION_DECL to use when
11831 parsing the body of the function. */
11835 /* Otherwise, OLDDECL is either a previous declaration
11836 of the same function or DECL1 itself. */
11838 if (warn_missing_declarations
11839 && olddecl
== decl1
11840 && !DECL_MAIN_P (decl1
)
11841 && TREE_PUBLIC (decl1
)
11842 && !DECL_DECLARED_INLINE_P (decl1
))
11846 /* Check whether DECL1 is in an anonymous
11848 for (context
= DECL_CONTEXT (decl1
);
11850 context
= DECL_CONTEXT (context
))
11852 if (TREE_CODE (context
) == NAMESPACE_DECL
11853 && DECL_NAME (context
) == NULL_TREE
)
11857 if (context
== NULL
)
11858 warning (OPT_Wmissing_declarations
,
11859 "no previous declaration for %q+D", decl1
);
11867 /* We need to set the DECL_CONTEXT. */
11868 if (!DECL_CONTEXT (decl1
) && DECL_TEMPLATE_INFO (decl1
))
11869 DECL_CONTEXT (decl1
) = DECL_CONTEXT (DECL_TI_TEMPLATE (decl1
));
11871 fntype
= TREE_TYPE (decl1
);
11873 /* If #pragma weak applies, mark the decl appropriately now.
11874 The pragma only applies to global functions. Because
11875 determining whether or not the #pragma applies involves
11876 computing the mangled name for the declaration, we cannot
11877 apply the pragma until after we have merged this declaration
11878 with any previous declarations; if the original declaration
11879 has a linkage specification, that specification applies to
11880 the definition as well, and may affect the mangled name. */
11881 if (!DECL_CONTEXT (decl1
))
11882 maybe_apply_pragma_weak (decl1
);
11885 /* Reset this in case the call to pushdecl changed it. */
11886 current_function_decl
= decl1
;
11888 gcc_assert (DECL_INITIAL (decl1
));
11890 /* This function may already have been parsed, in which case just
11891 return; our caller will skip over the body without parsing. */
11892 if (DECL_INITIAL (decl1
) != error_mark_node
)
11895 /* Initialize RTL machinery. We cannot do this until
11896 CURRENT_FUNCTION_DECL and DECL_RESULT are set up. We do this
11897 even when processing a template; this is how we get
11898 CFUN set up, and our per-function variables initialized.
11899 FIXME factor out the non-RTL stuff. */
11900 bl
= current_binding_level
;
11901 allocate_struct_function (decl1
, processing_template_decl
);
11903 /* Initialize the language data structures. Whenever we start
11904 a new function, we destroy temporaries in the usual way. */
11905 cfun
->language
= GGC_CNEW (struct language_function
);
11906 current_stmt_tree ()->stmts_are_full_exprs_p
= 1;
11907 current_binding_level
= bl
;
11909 /* Even though we're inside a function body, we still don't want to
11910 call expand_expr to calculate the size of a variable-sized array.
11911 We haven't necessarily assigned RTL to all variables yet, so it's
11912 not safe to try to expand expressions involving them. */
11913 cfun
->dont_save_pending_sizes_p
= 1;
11915 /* Start the statement-tree, start the tree now. */
11916 DECL_SAVED_TREE (decl1
) = push_stmt_list ();
11918 /* If we are (erroneously) defining a function that we have already
11919 defined before, wipe out what we knew before. */
11920 if (!DECL_PENDING_INLINE_P (decl1
))
11921 DECL_SAVED_FUNCTION_DATA (decl1
) = NULL
;
11923 if (ctype
&& !doing_friend
&& !DECL_STATIC_FUNCTION_P (decl1
))
11925 /* We know that this was set up by `grokclassfn'. We do not
11926 wait until `store_parm_decls', since evil parse errors may
11927 never get us to that point. Here we keep the consistency
11928 between `current_class_type' and `current_class_ptr'. */
11929 tree t
= DECL_ARGUMENTS (decl1
);
11931 gcc_assert (t
!= NULL_TREE
&& TREE_CODE (t
) == PARM_DECL
);
11932 gcc_assert (TREE_CODE (TREE_TYPE (t
)) == POINTER_TYPE
);
11934 cp_function_chain
->x_current_class_ref
11935 = cp_build_indirect_ref (t
, RO_NULL
, tf_warning_or_error
);
11936 cp_function_chain
->x_current_class_ptr
= t
;
11938 /* Constructors and destructors need to know whether they're "in
11939 charge" of initializing virtual base classes. */
11940 t
= TREE_CHAIN (t
);
11941 if (DECL_HAS_IN_CHARGE_PARM_P (decl1
))
11943 current_in_charge_parm
= t
;
11944 t
= TREE_CHAIN (t
);
11946 if (DECL_HAS_VTT_PARM_P (decl1
))
11948 gcc_assert (DECL_NAME (t
) == vtt_parm_identifier
);
11949 current_vtt_parm
= t
;
11953 honor_interface
= (!DECL_TEMPLATE_INSTANTIATION (decl1
)
11954 /* Implicitly-defined methods (like the
11955 destructor for a class in which no destructor
11956 is explicitly declared) must not be defined
11957 until their definition is needed. So, we
11958 ignore interface specifications for
11959 compiler-generated functions. */
11960 && !DECL_ARTIFICIAL (decl1
));
11962 if (DECL_INTERFACE_KNOWN (decl1
))
11964 tree ctx
= decl_function_context (decl1
);
11966 if (DECL_NOT_REALLY_EXTERN (decl1
))
11967 DECL_EXTERNAL (decl1
) = 0;
11969 if (ctx
!= NULL_TREE
&& DECL_DECLARED_INLINE_P (ctx
)
11970 && TREE_PUBLIC (ctx
))
11971 /* This is a function in a local class in an extern inline
11973 comdat_linkage (decl1
);
11975 /* If this function belongs to an interface, it is public.
11976 If it belongs to someone else's interface, it is also external.
11977 This only affects inlines and template instantiations. */
11978 else if (!finfo
->interface_unknown
&& honor_interface
)
11980 if (DECL_DECLARED_INLINE_P (decl1
)
11981 || DECL_TEMPLATE_INSTANTIATION (decl1
)
11982 || processing_template_decl
)
11984 DECL_EXTERNAL (decl1
)
11985 = (finfo
->interface_only
11986 || (DECL_DECLARED_INLINE_P (decl1
)
11987 && ! flag_implement_inlines
11988 && !DECL_VINDEX (decl1
)));
11990 /* For WIN32 we also want to put these in linkonce sections. */
11991 maybe_make_one_only (decl1
);
11994 DECL_EXTERNAL (decl1
) = 0;
11995 DECL_INTERFACE_KNOWN (decl1
) = 1;
11996 /* If this function is in an interface implemented in this file,
11997 make sure that the back end knows to emit this function
11999 if (!DECL_EXTERNAL (decl1
))
12000 mark_needed (decl1
);
12002 else if (finfo
->interface_unknown
&& finfo
->interface_only
12003 && honor_interface
)
12005 /* If MULTIPLE_SYMBOL_SPACES is defined and we saw a #pragma
12006 interface, we will have both finfo->interface_unknown and
12007 finfo->interface_only set. In that case, we don't want to
12008 use the normal heuristics because someone will supply a
12009 #pragma implementation elsewhere, and deducing it here would
12010 produce a conflict. */
12011 comdat_linkage (decl1
);
12012 DECL_EXTERNAL (decl1
) = 0;
12013 DECL_INTERFACE_KNOWN (decl1
) = 1;
12014 DECL_DEFER_OUTPUT (decl1
) = 1;
12018 /* This is a definition, not a reference.
12019 So clear DECL_EXTERNAL, unless this is a GNU extern inline. */
12020 if (!GNU_INLINE_P (decl1
))
12021 DECL_EXTERNAL (decl1
) = 0;
12023 if ((DECL_DECLARED_INLINE_P (decl1
)
12024 || DECL_TEMPLATE_INSTANTIATION (decl1
))
12025 && ! DECL_INTERFACE_KNOWN (decl1
)
12026 /* Don't try to defer nested functions for now. */
12027 && ! decl_function_context (decl1
))
12028 DECL_DEFER_OUTPUT (decl1
) = 1;
12030 DECL_INTERFACE_KNOWN (decl1
) = 1;
12033 /* Determine the ELF visibility attribute for the function. We must not
12034 do this before calling "pushdecl", as we must allow "duplicate_decls"
12035 to merge any attributes appropriately. We also need to wait until
12037 if (!DECL_CLONED_FUNCTION_P (decl1
))
12038 determine_visibility (decl1
);
12040 begin_scope (sk_function_parms
, decl1
);
12044 if (DECL_DESTRUCTOR_P (decl1
)
12045 || (DECL_CONSTRUCTOR_P (decl1
)
12046 && targetm
.cxx
.cdtor_returns_this ()))
12048 cdtor_label
= build_decl (input_location
,
12049 LABEL_DECL
, NULL_TREE
, NULL_TREE
);
12050 DECL_CONTEXT (cdtor_label
) = current_function_decl
;
12053 start_fname_decls ();
12055 store_parm_decls (current_function_parms
);
12059 /* Like start_preparsed_function, except that instead of a
12060 FUNCTION_DECL, this function takes DECLSPECS and DECLARATOR.
12062 Returns 1 on success. If the DECLARATOR is not suitable for a function
12063 (it defines a datum instead), we return 0, which tells
12064 yyparse to report a parse error. */
12067 start_function (cp_decl_specifier_seq
*declspecs
,
12068 const cp_declarator
*declarator
,
12073 decl1
= grokdeclarator (declarator
, declspecs
, FUNCDEF
, 1, &attrs
);
12074 if (decl1
== error_mark_node
)
12076 /* If the declarator is not suitable for a function definition,
12077 cause a syntax error. */
12078 if (decl1
== NULL_TREE
|| TREE_CODE (decl1
) != FUNCTION_DECL
)
12080 error ("invalid function declaration");
12084 if (DECL_MAIN_P (decl1
))
12085 /* main must return int. grokfndecl should have corrected it
12086 (and issued a diagnostic) if the user got it wrong. */
12087 gcc_assert (same_type_p (TREE_TYPE (TREE_TYPE (decl1
)),
12088 integer_type_node
));
12090 start_preparsed_function (decl1
, attrs
, /*flags=*/SF_DEFAULT
);
12095 /* Returns true iff an EH_SPEC_BLOCK should be created in the body of
12099 use_eh_spec_block (tree fn
)
12101 return (flag_exceptions
&& flag_enforce_eh_specs
12102 && !processing_template_decl
12103 && TYPE_RAISES_EXCEPTIONS (TREE_TYPE (fn
))
12104 /* We insert the EH_SPEC_BLOCK only in the original
12105 function; then, it is copied automatically to the
12107 && !DECL_CLONED_FUNCTION_P (fn
)
12108 /* Implicitly-generated constructors and destructors have
12109 exception specifications. However, those specifications
12110 are the union of the possible exceptions specified by the
12111 constructors/destructors for bases and members, so no
12112 unallowed exception will ever reach this function. By
12113 not creating the EH_SPEC_BLOCK we save a little memory,
12114 and we avoid spurious warnings about unreachable
12116 && !DECL_ARTIFICIAL (fn
));
12119 /* Store the parameter declarations into the current function declaration.
12120 This is called after parsing the parameter declarations, before
12121 digesting the body of the function.
12123 Also install to binding contour return value identifier, if any. */
12126 store_parm_decls (tree current_function_parms
)
12128 tree fndecl
= current_function_decl
;
12131 /* This is a chain of any other decls that came in among the parm
12132 declarations. If a parm is declared with enum {foo, bar} x;
12133 then CONST_DECLs for foo and bar are put here. */
12134 tree nonparms
= NULL_TREE
;
12136 if (current_function_parms
)
12138 /* This case is when the function was defined with an ANSI prototype.
12139 The parms already have decls, so we need not do anything here
12140 except record them as in effect
12141 and complain if any redundant old-style parm decls were written. */
12143 tree specparms
= current_function_parms
;
12146 /* Must clear this because it might contain TYPE_DECLs declared
12148 current_binding_level
->names
= NULL
;
12150 /* If we're doing semantic analysis, then we'll call pushdecl
12151 for each of these. We must do them in reverse order so that
12152 they end in the correct forward order. */
12153 specparms
= nreverse (specparms
);
12155 for (parm
= specparms
; parm
; parm
= next
)
12157 next
= TREE_CHAIN (parm
);
12158 if (TREE_CODE (parm
) == PARM_DECL
)
12160 if (DECL_NAME (parm
) == NULL_TREE
12161 || TREE_CODE (parm
) != VOID_TYPE
)
12164 error ("parameter %qD declared void", parm
);
12168 /* If we find an enum constant or a type tag,
12169 put it aside for the moment. */
12170 TREE_CHAIN (parm
) = NULL_TREE
;
12171 nonparms
= chainon (nonparms
, parm
);
12175 /* Get the decls in their original chain order and record in the
12176 function. This is all and only the PARM_DECLs that were
12177 pushed into scope by the loop above. */
12178 DECL_ARGUMENTS (fndecl
) = getdecls ();
12181 DECL_ARGUMENTS (fndecl
) = NULL_TREE
;
12183 /* Now store the final chain of decls for the arguments
12184 as the decl-chain of the current lexical scope.
12185 Put the enumerators in as well, at the front so that
12186 DECL_ARGUMENTS is not modified. */
12187 current_binding_level
->names
= chainon (nonparms
, DECL_ARGUMENTS (fndecl
));
12189 if (use_eh_spec_block (current_function_decl
))
12190 current_eh_spec_block
= begin_eh_spec_block ();
12194 /* We have finished doing semantic analysis on DECL, but have not yet
12195 generated RTL for its body. Save away our current state, so that
12196 when we want to generate RTL later we know what to do. */
12199 save_function_data (tree decl
)
12201 struct language_function
*f
;
12203 /* Save the language-specific per-function data so that we can
12204 get it back when we really expand this function. */
12205 gcc_assert (!DECL_PENDING_INLINE_P (decl
));
12208 f
= GGC_NEW (struct language_function
);
12209 memcpy (f
, cp_function_chain
, sizeof (struct language_function
));
12210 DECL_SAVED_FUNCTION_DATA (decl
) = f
;
12212 /* Clear out the bits we don't need. */
12213 f
->base
.x_stmt_tree
.x_cur_stmt_list
= NULL_TREE
;
12214 f
->bindings
= NULL
;
12215 f
->x_local_names
= NULL
;
12219 /* Set the return value of the constructor (if present). */
12222 finish_constructor_body (void)
12227 if (targetm
.cxx
.cdtor_returns_this ()
12228 && (! TYPE_FOR_JAVA (current_class_type
)))
12230 /* Any return from a constructor will end up here. */
12231 add_stmt (build_stmt (input_location
, LABEL_EXPR
, cdtor_label
));
12233 val
= DECL_ARGUMENTS (current_function_decl
);
12234 val
= build2 (MODIFY_EXPR
, TREE_TYPE (val
),
12235 DECL_RESULT (current_function_decl
), val
);
12236 /* Return the address of the object. */
12237 exprstmt
= build_stmt (input_location
, RETURN_EXPR
, val
);
12238 add_stmt (exprstmt
);
12242 /* Do all the processing for the beginning of a destructor; set up the
12243 vtable pointers and cleanups for bases and members. */
12246 begin_destructor_body (void)
12248 tree compound_stmt
;
12250 /* If the CURRENT_CLASS_TYPE is incomplete, we will have already
12251 issued an error message. We still want to try to process the
12252 body of the function, but initialize_vtbl_ptrs will crash if
12253 TYPE_BINFO is NULL. */
12254 if (COMPLETE_TYPE_P (current_class_type
))
12256 compound_stmt
= begin_compound_stmt (0);
12257 /* Make all virtual function table pointers in non-virtual base
12258 classes point to CURRENT_CLASS_TYPE's virtual function
12260 initialize_vtbl_ptrs (current_class_ptr
);
12261 finish_compound_stmt (compound_stmt
);
12263 /* And insert cleanups for our bases and members so that they
12264 will be properly destroyed if we throw. */
12265 push_base_cleanups ();
12269 /* At the end of every destructor we generate code to delete the object if
12270 necessary. Do that now. */
12273 finish_destructor_body (void)
12277 /* Any return from a destructor will end up here; that way all base
12278 and member cleanups will be run when the function returns. */
12279 add_stmt (build_stmt (input_location
, LABEL_EXPR
, cdtor_label
));
12281 /* In a virtual destructor, we must call delete. */
12282 if (DECL_VIRTUAL_P (current_function_decl
))
12285 tree virtual_size
= cxx_sizeof (current_class_type
);
12289 At the point of definition of a virtual destructor (including
12290 an implicit definition), non-placement operator delete shall
12291 be looked up in the scope of the destructor's class and if
12292 found shall be accessible and unambiguous. */
12293 exprstmt
= build_op_delete_call(DELETE_EXPR
, current_class_ptr
,
12295 /*global_p=*/false,
12296 /*placement=*/NULL_TREE
,
12297 /*alloc_fn=*/NULL_TREE
);
12299 if_stmt
= begin_if_stmt ();
12300 finish_if_stmt_cond (build2 (BIT_AND_EXPR
, integer_type_node
,
12301 current_in_charge_parm
,
12304 finish_expr_stmt (exprstmt
);
12305 finish_then_clause (if_stmt
);
12306 finish_if_stmt (if_stmt
);
12309 if (targetm
.cxx
.cdtor_returns_this ())
12313 val
= DECL_ARGUMENTS (current_function_decl
);
12314 val
= build2 (MODIFY_EXPR
, TREE_TYPE (val
),
12315 DECL_RESULT (current_function_decl
), val
);
12316 /* Return the address of the object. */
12317 exprstmt
= build_stmt (input_location
, RETURN_EXPR
, val
);
12318 add_stmt (exprstmt
);
12322 /* Do the necessary processing for the beginning of a function body, which
12323 in this case includes member-initializers, but not the catch clauses of
12324 a function-try-block. Currently, this means opening a binding level
12325 for the member-initializers (in a ctor) and member cleanups (in a dtor). */
12328 begin_function_body (void)
12332 if (! FUNCTION_NEEDS_BODY_BLOCK (current_function_decl
))
12335 if (processing_template_decl
)
12336 /* Do nothing now. */;
12338 /* Always keep the BLOCK node associated with the outermost pair of
12339 curly braces of a function. These are needed for correct
12340 operation of dwarfout.c. */
12341 keep_next_level (true);
12343 stmt
= begin_compound_stmt (BCS_FN_BODY
);
12345 if (processing_template_decl
)
12346 /* Do nothing now. */;
12347 else if (DECL_DESTRUCTOR_P (current_function_decl
))
12348 begin_destructor_body ();
12353 /* Do the processing for the end of a function body. Currently, this means
12354 closing out the cleanups for fully-constructed bases and members, and in
12355 the case of the destructor, deleting the object if desired. Again, this
12356 is only meaningful for [cd]tors, since they are the only functions where
12357 there is a significant distinction between the main body and any
12358 function catch clauses. Handling, say, main() return semantics here
12359 would be wrong, as flowing off the end of a function catch clause for
12360 main() would also need to return 0. */
12363 finish_function_body (tree compstmt
)
12365 if (compstmt
== NULL_TREE
)
12368 /* Close the block. */
12369 finish_compound_stmt (compstmt
);
12371 if (processing_template_decl
)
12372 /* Do nothing now. */;
12373 else if (DECL_CONSTRUCTOR_P (current_function_decl
))
12374 finish_constructor_body ();
12375 else if (DECL_DESTRUCTOR_P (current_function_decl
))
12376 finish_destructor_body ();
12379 /* Given a function, returns the BLOCK corresponding to the outermost level
12380 of curly braces, skipping the artificial block created for constructor
12384 outer_curly_brace_block (tree fndecl
)
12386 tree block
= BLOCK_SUBBLOCKS (DECL_INITIAL (fndecl
));
12387 if (FUNCTION_NEEDS_BODY_BLOCK (current_function_decl
))
12388 /* Skip the artificial function body block. */
12389 block
= BLOCK_SUBBLOCKS (block
);
12393 /* Finish up a function declaration and compile that function
12394 all the way to assembler language output. The free the storage
12395 for the function definition.
12397 FLAGS is a bitwise or of the following values:
12399 We just finished processing the body of an in-class inline
12400 function definition. (This processing will have taken place
12401 after the class definition is complete.) */
12404 finish_function (int flags
)
12406 tree fndecl
= current_function_decl
;
12407 tree fntype
, ctype
= NULL_TREE
;
12408 int inclass_inline
= (flags
& 2) != 0;
12411 /* When we get some parse errors, we can end up without a
12412 current_function_decl, so cope. */
12413 if (fndecl
== NULL_TREE
)
12414 return error_mark_node
;
12416 gcc_assert (!defer_mark_used_calls
);
12417 defer_mark_used_calls
= true;
12419 if (DECL_NONSTATIC_MEMBER_FUNCTION_P (fndecl
)
12420 && DECL_VIRTUAL_P (fndecl
)
12421 && !processing_template_decl
)
12423 tree fnclass
= DECL_CONTEXT (fndecl
);
12424 if (fndecl
== CLASSTYPE_KEY_METHOD (fnclass
))
12425 keyed_classes
= tree_cons (NULL_TREE
, fnclass
, keyed_classes
);
12428 nested
= function_depth
> 1;
12429 fntype
= TREE_TYPE (fndecl
);
12431 /* TREE_READONLY (fndecl) = 1;
12432 This caused &foo to be of type ptr-to-const-function
12433 which then got a warning when stored in a ptr-to-function variable. */
12435 gcc_assert (building_stmt_tree ());
12436 /* The current function is being defined, so its DECL_INITIAL should
12437 be set, and unless there's a multiple definition, it should be
12438 error_mark_node. */
12439 gcc_assert (DECL_INITIAL (fndecl
) == error_mark_node
);
12441 /* For a cloned function, we've already got all the code we need;
12442 there's no need to add any extra bits. */
12443 if (!DECL_CLONED_FUNCTION_P (fndecl
))
12445 if (DECL_MAIN_P (current_function_decl
))
12449 /* Make it so that `main' always returns 0 by default (or
12452 stmt
= finish_return_stmt (integer_one_node
);
12454 stmt
= finish_return_stmt (integer_zero_node
);
12456 /* Hack. We don't want the middle-end to warn that this
12457 return is unreachable, so put the statement on the
12460 location_t linezero
= linemap_line_start (line_table
, 0, 1);
12461 SET_EXPR_LOCATION (stmt
, linezero
);
12465 if (use_eh_spec_block (current_function_decl
))
12466 finish_eh_spec_block (TYPE_RAISES_EXCEPTIONS
12467 (TREE_TYPE (current_function_decl
)),
12468 current_eh_spec_block
);
12471 /* If we're saving up tree structure, tie off the function now. */
12472 DECL_SAVED_TREE (fndecl
) = pop_stmt_list (DECL_SAVED_TREE (fndecl
));
12474 finish_fname_decls ();
12476 /* If this function can't throw any exceptions, remember that. */
12477 if (!processing_template_decl
12478 && !cp_function_chain
->can_throw
12479 && !flag_non_call_exceptions
12480 && !DECL_REPLACEABLE_P (fndecl
))
12481 TREE_NOTHROW (fndecl
) = 1;
12483 /* This must come after expand_function_end because cleanups might
12484 have declarations (from inline functions) that need to go into
12485 this function's blocks. */
12487 /* If the current binding level isn't the outermost binding level
12488 for this function, either there is a bug, or we have experienced
12489 syntax errors and the statement tree is malformed. */
12490 if (current_binding_level
->kind
!= sk_function_parms
)
12492 /* Make sure we have already experienced errors. */
12493 gcc_assert (errorcount
);
12495 /* Throw away the broken statement tree and extra binding
12497 DECL_SAVED_TREE (fndecl
) = alloc_stmt_list ();
12499 while (current_binding_level
->kind
!= sk_function_parms
)
12501 if (current_binding_level
->kind
== sk_class
)
12502 pop_nested_class ();
12504 poplevel (0, 0, 0);
12507 poplevel (1, 0, 1);
12509 /* Statements should always be full-expressions at the outermost set
12510 of curly braces for a function. */
12511 gcc_assert (stmts_are_full_exprs_p ());
12513 /* Set up the named return value optimization, if we can. Candidate
12514 variables are selected in check_return_expr. */
12515 if (current_function_return_value
)
12517 tree r
= current_function_return_value
;
12520 if (r
!= error_mark_node
12521 /* This is only worth doing for fns that return in memory--and
12522 simpler, since we don't have to worry about promoted modes. */
12523 && aggregate_value_p (TREE_TYPE (TREE_TYPE (fndecl
)), fndecl
)
12524 /* Only allow this for variables declared in the outer scope of
12525 the function so we know that their lifetime always ends with a
12526 return; see g++.dg/opt/nrv6.C. We could be more flexible if
12527 we were to do this optimization in tree-ssa. */
12528 && (outer
= outer_curly_brace_block (fndecl
))
12529 && chain_member (r
, BLOCK_VARS (outer
)))
12530 finalize_nrv (&DECL_SAVED_TREE (fndecl
), r
, DECL_RESULT (fndecl
));
12532 current_function_return_value
= NULL_TREE
;
12535 /* Remember that we were in class scope. */
12536 if (current_class_name
)
12537 ctype
= current_class_type
;
12539 /* Must mark the RESULT_DECL as being in this function. */
12540 DECL_CONTEXT (DECL_RESULT (fndecl
)) = fndecl
;
12542 /* Set the BLOCK_SUPERCONTEXT of the outermost function scope to point
12543 to the FUNCTION_DECL node itself. */
12544 BLOCK_SUPERCONTEXT (DECL_INITIAL (fndecl
)) = fndecl
;
12546 /* Save away current state, if appropriate. */
12547 if (!processing_template_decl
)
12548 save_function_data (fndecl
);
12550 /* Complain if there's just no return statement. */
12551 if (warn_return_type
12552 && TREE_CODE (TREE_TYPE (fntype
)) != VOID_TYPE
12553 && !dependent_type_p (TREE_TYPE (fntype
))
12554 && !current_function_returns_value
&& !current_function_returns_null
12555 /* Don't complain if we abort or throw. */
12556 && !current_function_returns_abnormally
12557 /* Don't complain if we are declared noreturn. */
12558 && !TREE_THIS_VOLATILE (fndecl
)
12559 && !DECL_NAME (DECL_RESULT (fndecl
))
12560 && !TREE_NO_WARNING (fndecl
)
12561 /* Structor return values (if any) are set by the compiler. */
12562 && !DECL_CONSTRUCTOR_P (fndecl
)
12563 && !DECL_DESTRUCTOR_P (fndecl
))
12565 warning (OPT_Wreturn_type
,
12566 "no return statement in function returning non-void");
12567 TREE_NO_WARNING (fndecl
) = 1;
12570 /* Store the end of the function, so that we get good line number
12571 info for the epilogue. */
12572 cfun
->function_end_locus
= input_location
;
12574 /* Genericize before inlining. */
12575 if (!processing_template_decl
)
12577 struct language_function
*f
= DECL_SAVED_FUNCTION_DATA (fndecl
);
12578 invoke_plugin_callbacks (PLUGIN_PRE_GENERICIZE
, fndecl
);
12579 cp_genericize (fndecl
);
12580 /* Clear out the bits we don't need. */
12581 f
->x_current_class_ptr
= NULL
;
12582 f
->x_current_class_ref
= NULL
;
12583 f
->x_eh_spec_block
= NULL
;
12584 f
->x_in_charge_parm
= NULL
;
12585 f
->x_vtt_parm
= NULL
;
12586 f
->x_return_value
= NULL
;
12587 f
->bindings
= NULL
;
12588 f
->extern_decl_map
= NULL
;
12590 /* Clear out the bits we don't need. */
12591 local_names
= NULL
;
12593 /* We're leaving the context of this function, so zap cfun. It's still in
12594 DECL_STRUCT_FUNCTION, and we'll restore it in tree_rest_of_compilation. */
12596 current_function_decl
= NULL
;
12598 /* If this is an in-class inline definition, we may have to pop the
12599 bindings for the template parameters that we added in
12600 maybe_begin_member_template_processing when start_function was
12602 if (inclass_inline
)
12603 maybe_end_member_template_processing ();
12605 /* Leave the scope of the class. */
12607 pop_nested_class ();
12613 /* Let the error reporting routines know that we're outside a
12614 function. For a nested function, this value is used in
12615 cxx_pop_function_context and then reset via pop_function_context. */
12616 current_function_decl
= NULL_TREE
;
12618 defer_mark_used_calls
= false;
12619 if (deferred_mark_used_calls
)
12624 for (i
= 0; VEC_iterate (tree
, deferred_mark_used_calls
, i
, decl
); i
++)
12626 VEC_free (tree
, gc
, deferred_mark_used_calls
);
12632 /* Create the FUNCTION_DECL for a function definition.
12633 DECLSPECS and DECLARATOR are the parts of the declaration;
12634 they describe the return type and the name of the function,
12635 but twisted together in a fashion that parallels the syntax of C.
12637 This function creates a binding context for the function body
12638 as well as setting up the FUNCTION_DECL in current_function_decl.
12640 Returns a FUNCTION_DECL on success.
12642 If the DECLARATOR is not suitable for a function (it defines a datum
12643 instead), we return 0, which tells yyparse to report a parse error.
12645 May return void_type_node indicating that this method is actually
12646 a friend. See grokfield for more details.
12648 Came here with a `.pushlevel' .
12650 DO NOT MAKE ANY CHANGES TO THIS CODE WITHOUT MAKING CORRESPONDING
12651 CHANGES TO CODE IN `grokfield'. */
12654 grokmethod (cp_decl_specifier_seq
*declspecs
,
12655 const cp_declarator
*declarator
, tree attrlist
)
12657 tree fndecl
= grokdeclarator (declarator
, declspecs
, MEMFUNCDEF
, 0,
12660 if (fndecl
== error_mark_node
)
12661 return error_mark_node
;
12663 if (fndecl
== NULL
|| TREE_CODE (fndecl
) != FUNCTION_DECL
)
12665 error ("invalid member function declaration");
12666 return error_mark_node
;
12670 cplus_decl_attributes (&fndecl
, attrlist
, 0);
12672 /* Pass friends other than inline friend functions back. */
12673 if (fndecl
== void_type_node
)
12676 if (DECL_IN_AGGR_P (fndecl
))
12678 if (DECL_CONTEXT (fndecl
)
12679 && TREE_CODE (DECL_CONTEXT (fndecl
)) != NAMESPACE_DECL
)
12680 error ("%qD is already defined in class %qT", fndecl
,
12681 DECL_CONTEXT (fndecl
));
12682 return error_mark_node
;
12685 check_template_shadow (fndecl
);
12687 DECL_DECLARED_INLINE_P (fndecl
) = 1;
12688 DECL_NO_INLINE_WARNING_P (fndecl
) = 1;
12690 /* We process method specializations in finish_struct_1. */
12691 if (processing_template_decl
&& !DECL_TEMPLATE_SPECIALIZATION (fndecl
))
12693 fndecl
= push_template_decl (fndecl
);
12694 if (fndecl
== error_mark_node
)
12698 if (! DECL_FRIEND_P (fndecl
))
12700 if (TREE_CHAIN (fndecl
))
12702 fndecl
= copy_node (fndecl
);
12703 TREE_CHAIN (fndecl
) = NULL_TREE
;
12707 cp_finish_decl (fndecl
, NULL_TREE
, false, NULL_TREE
, 0);
12709 DECL_IN_AGGR_P (fndecl
) = 1;
12714 /* VAR is a VAR_DECL. If its type is incomplete, remember VAR so that
12715 we can lay it out later, when and if its type becomes complete. */
12718 maybe_register_incomplete_var (tree var
)
12720 gcc_assert (TREE_CODE (var
) == VAR_DECL
);
12722 /* Keep track of variables with incomplete types. */
12723 if (!processing_template_decl
&& TREE_TYPE (var
) != error_mark_node
12724 && DECL_EXTERNAL (var
))
12726 tree inner_type
= TREE_TYPE (var
);
12728 while (TREE_CODE (inner_type
) == ARRAY_TYPE
)
12729 inner_type
= TREE_TYPE (inner_type
);
12730 inner_type
= TYPE_MAIN_VARIANT (inner_type
);
12732 if ((!COMPLETE_TYPE_P (inner_type
) && CLASS_TYPE_P (inner_type
))
12733 /* RTTI TD entries are created while defining the type_info. */
12734 || (TYPE_LANG_SPECIFIC (inner_type
)
12735 && TYPE_BEING_DEFINED (inner_type
)))
12736 incomplete_vars
= tree_cons (inner_type
, var
, incomplete_vars
);
12740 /* Called when a class type (given by TYPE) is defined. If there are
12741 any existing VAR_DECLs whose type has been completed by this
12742 declaration, update them now. */
12745 complete_vars (tree type
)
12747 tree
*list
= &incomplete_vars
;
12749 gcc_assert (CLASS_TYPE_P (type
));
12752 if (same_type_p (type
, TREE_PURPOSE (*list
)))
12754 tree var
= TREE_VALUE (*list
);
12755 tree type
= TREE_TYPE (var
);
12756 /* Complete the type of the variable. The VAR_DECL itself
12757 will be laid out in expand_expr. */
12758 complete_type (type
);
12759 cp_apply_type_quals_to_decl (cp_type_quals (type
), var
);
12760 /* Remove this entry from the list. */
12761 *list
= TREE_CHAIN (*list
);
12764 list
= &TREE_CHAIN (*list
);
12767 /* Check for pending declarations which may have abstract type. */
12768 complete_type_check_abstract (type
);
12771 /* If DECL is of a type which needs a cleanup, build and return an
12772 expression to perform that cleanup here. Return NULL_TREE if no
12773 cleanup need be done. */
12776 cxx_maybe_build_cleanup (tree decl
)
12782 /* Assume no cleanup is required. */
12783 cleanup
= NULL_TREE
;
12785 if (error_operand_p (decl
))
12788 /* Handle "__attribute__((cleanup))". We run the cleanup function
12789 before the destructor since the destructor is what actually
12790 terminates the lifetime of the object. */
12791 attr
= lookup_attribute ("cleanup", DECL_ATTRIBUTES (decl
));
12798 /* Get the name specified by the user for the cleanup function. */
12799 id
= TREE_VALUE (TREE_VALUE (attr
));
12800 /* Look up the name to find the cleanup function to call. It is
12801 important to use lookup_name here because that is what is
12802 used in c-common.c:handle_cleanup_attribute when performing
12803 initial checks on the attribute. Note that those checks
12804 include ensuring that the function found is not an overloaded
12805 function, or an object with an overloaded call operator,
12806 etc.; we can rely on the fact that the function found is an
12807 ordinary FUNCTION_DECL. */
12808 fn
= lookup_name (id
);
12809 arg
= build_address (decl
);
12811 cleanup
= cp_build_function_call (fn
, build_tree_list (NULL_TREE
,
12813 tf_warning_or_error
);
12815 /* Handle ordinary C++ destructors. */
12816 type
= TREE_TYPE (decl
);
12817 if (TYPE_HAS_NONTRIVIAL_DESTRUCTOR (type
))
12819 int flags
= LOOKUP_NORMAL
|LOOKUP_DESTRUCTOR
;
12820 bool has_vbases
= (TREE_CODE (type
) == RECORD_TYPE
12821 && CLASSTYPE_VBASECLASSES (type
));
12825 if (TREE_CODE (type
) == ARRAY_TYPE
)
12828 addr
= build_address (decl
);
12830 /* Optimize for space over speed here. */
12831 if (!has_vbases
|| flag_expensive_optimizations
)
12832 flags
|= LOOKUP_NONVIRTUAL
;
12834 call
= build_delete (TREE_TYPE (addr
), addr
,
12835 sfk_complete_destructor
, flags
, 0);
12837 cleanup
= build_compound_expr (input_location
, cleanup
, call
);
12845 /* When a stmt has been parsed, this function is called. */
12852 /* Return the FUNCTION_TYPE that corresponds to MEMFNTYPE, which can be a
12853 FUNCTION_DECL, METHOD_TYPE, FUNCTION_TYPE, pointer or reference to
12854 METHOD_TYPE or FUNCTION_TYPE, or pointer to member function. */
12857 static_fn_type (tree memfntype
)
12863 if (TYPE_PTRMEMFUNC_P (memfntype
))
12864 memfntype
= TYPE_PTRMEMFUNC_FN_TYPE (memfntype
);
12865 if (POINTER_TYPE_P (memfntype
)
12866 || TREE_CODE (memfntype
) == FUNCTION_DECL
)
12867 memfntype
= TREE_TYPE (memfntype
);
12868 if (TREE_CODE (memfntype
) == FUNCTION_TYPE
)
12870 gcc_assert (TREE_CODE (memfntype
) == METHOD_TYPE
);
12871 args
= TYPE_ARG_TYPES (memfntype
);
12872 fntype
= build_function_type (TREE_TYPE (memfntype
), TREE_CHAIN (args
));
12873 quals
= cp_type_quals (TREE_TYPE (TREE_VALUE (args
)));
12874 fntype
= build_qualified_type (fntype
, quals
);
12875 fntype
= (cp_build_type_attribute_variant
12876 (fntype
, TYPE_ATTRIBUTES (memfntype
)));
12877 fntype
= (build_exception_variant
12878 (fntype
, TYPE_RAISES_EXCEPTIONS (memfntype
)));
12882 /* DECL was originally constructed as a non-static member function,
12883 but turned out to be static. Update it accordingly. */
12886 revert_static_member_fn (tree decl
)
12888 TREE_TYPE (decl
) = static_fn_type (decl
);
12890 if (cp_type_quals (TREE_TYPE (decl
)) != TYPE_UNQUALIFIED
)
12891 error ("static member function %q#D declared with type qualifiers", decl
);
12893 if (DECL_ARGUMENTS (decl
))
12894 DECL_ARGUMENTS (decl
) = TREE_CHAIN (DECL_ARGUMENTS (decl
));
12895 DECL_STATIC_FUNCTION_P (decl
) = 1;
12898 /* Return which tree structure is used by T, or TS_CP_GENERIC if T is
12899 one of the language-independent trees. */
12901 enum cp_tree_node_structure_enum
12902 cp_tree_node_structure (union lang_tree_node
* t
)
12904 switch (TREE_CODE (&t
->generic
))
12906 case DEFAULT_ARG
: return TS_CP_DEFAULT_ARG
;
12907 case IDENTIFIER_NODE
: return TS_CP_IDENTIFIER
;
12908 case OVERLOAD
: return TS_CP_OVERLOAD
;
12909 case TEMPLATE_PARM_INDEX
: return TS_CP_TPI
;
12910 case PTRMEM_CST
: return TS_CP_PTRMEM
;
12911 case BASELINK
: return TS_CP_BASELINK
;
12912 case STATIC_ASSERT
: return TS_CP_STATIC_ASSERT
;
12913 case ARGUMENT_PACK_SELECT
: return TS_CP_ARGUMENT_PACK_SELECT
;
12914 case TRAIT_EXPR
: return TS_CP_TRAIT_EXPR
;
12915 case LAMBDA_EXPR
: return TS_CP_LAMBDA_EXPR
;
12916 case TEMPLATE_INFO
: return TS_CP_TEMPLATE_INFO
;
12917 default: return TS_CP_GENERIC
;
12921 /* Build the void_list_node (void_type_node having been created). */
12923 build_void_list_node (void)
12925 tree t
= build_tree_list (NULL_TREE
, void_type_node
);
12930 cp_missing_noreturn_ok_p (tree decl
)
12932 /* A missing noreturn is ok for the `main' function. */
12933 return DECL_MAIN_P (decl
);
12936 /* Return the COMDAT group into which DECL should be placed. */
12939 cxx_comdat_group (tree decl
)
12943 /* Virtual tables, construction virtual tables, and virtual table
12944 tables all go in a single COMDAT group, named after the primary
12946 if (TREE_CODE (decl
) == VAR_DECL
&& DECL_VTABLE_OR_VTT_P (decl
))
12947 name
= DECL_ASSEMBLER_NAME (CLASSTYPE_VTABLES (DECL_CONTEXT (decl
)));
12948 /* For all other DECLs, the COMDAT group is the mangled name of the
12949 declaration itself. */
12952 while (DECL_THUNK_P (decl
))
12954 /* If TARGET_USE_LOCAL_THUNK_ALIAS_P, use_thunk puts the thunk
12955 into the same section as the target function. In that case
12956 we must return target's name. */
12957 tree target
= THUNK_TARGET (decl
);
12958 if (TARGET_USE_LOCAL_THUNK_ALIAS_P (target
)
12959 && DECL_SECTION_NAME (target
) != NULL
12960 && DECL_ONE_ONLY (target
))
12965 name
= DECL_ASSEMBLER_NAME (decl
);
12971 #include "gt-cp-decl.h"