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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 Free Software Foundation, Inc.
4
5 This file is part of GCC.
6
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 3, or (at your option) any later
10 version.
11
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
20
21 /* Process declarations and symbol lookup for C front end.
22 Also constructs types; the standard scalar types at initialization,
23 and structure, union, array and enum types when they are declared. */
24
25 /* ??? not all decl nodes are given the most useful possible
26 line numbers. For example, the CONST_DECLs for enum values. */
27
28 #include "config.h"
29 #include "system.h"
30 #include "coretypes.h"
31 #include "input.h"
32 #include "tm.h"
33 #include "intl.h"
34 #include "tree.h"
35 #include "tree-inline.h"
36 #include "rtl.h"
37 #include "flags.h"
38 #include "function.h"
39 #include "output.h"
40 #include "expr.h"
41 #include "c-tree.h"
42 #include "toplev.h"
43 #include "ggc.h"
44 #include "tm_p.h"
45 #include "cpplib.h"
46 #include "target.h"
47 #include "debug.h"
48 #include "opts.h"
49 #include "timevar.h"
50 #include "c-common.h"
51 #include "c-pragma.h"
52 #include "langhooks.h"
53 #include "tree-mudflap.h"
54 #include "tree-gimple.h"
55 #include "diagnostic.h"
56 #include "tree-dump.h"
57 #include "cgraph.h"
58 #include "hashtab.h"
59 #include "libfuncs.h"
60 #include "except.h"
61 #include "langhooks-def.h"
62 #include "pointer-set.h"
63
64 /* In grokdeclarator, distinguish syntactic contexts of declarators. */
65 enum decl_context
66 { NORMAL, /* Ordinary declaration */
67 FUNCDEF, /* Function definition */
68 PARM, /* Declaration of parm before function body */
69 FIELD, /* Declaration inside struct or union */
70 TYPENAME}; /* Typename (inside cast or sizeof) */
71
72 /* States indicating how grokdeclarator() should handle declspecs marked
73 with __attribute__((deprecated)). An object declared as
74 __attribute__((deprecated)) suppresses warnings of uses of other
75 deprecated items. */
76
77 enum deprecated_states {
78 DEPRECATED_NORMAL,
79 DEPRECATED_SUPPRESS
80 };
81
82 \f
83 /* Nonzero if we have seen an invalid cross reference
84 to a struct, union, or enum, but not yet printed the message. */
85 tree pending_invalid_xref;
86
87 /* File and line to appear in the eventual error message. */
88 location_t pending_invalid_xref_location;
89
90 /* True means we've initialized exception handling. */
91 bool c_eh_initialized_p;
92
93 /* The file and line that the prototype came from if this is an
94 old-style definition; used for diagnostics in
95 store_parm_decls_oldstyle. */
96
97 static location_t current_function_prototype_locus;
98
99 /* Whether this prototype was built-in. */
100
101 static bool current_function_prototype_built_in;
102
103 /* The argument type information of this prototype. */
104
105 static tree current_function_prototype_arg_types;
106
107 /* The argument information structure for the function currently being
108 defined. */
109
110 static struct c_arg_info *current_function_arg_info;
111
112 /* The obstack on which parser and related data structures, which are
113 not live beyond their top-level declaration or definition, are
114 allocated. */
115 struct obstack parser_obstack;
116
117 /* The current statement tree. */
118
119 static GTY(()) struct stmt_tree_s c_stmt_tree;
120
121 /* State saving variables. */
122 tree c_break_label;
123 tree c_cont_label;
124
125 /* Linked list of TRANSLATION_UNIT_DECLS for the translation units
126 included in this invocation. Note that the current translation
127 unit is not included in this list. */
128
129 static GTY(()) tree all_translation_units;
130
131 /* A list of decls to be made automatically visible in each file scope. */
132 static GTY(()) tree visible_builtins;
133
134 /* Set to 0 at beginning of a function definition, set to 1 if
135 a return statement that specifies a return value is seen. */
136
137 int current_function_returns_value;
138
139 /* Set to 0 at beginning of a function definition, set to 1 if
140 a return statement with no argument is seen. */
141
142 int current_function_returns_null;
143
144 /* Set to 0 at beginning of a function definition, set to 1 if
145 a call to a noreturn function is seen. */
146
147 int current_function_returns_abnormally;
148
149 /* Set to nonzero by `grokdeclarator' for a function
150 whose return type is defaulted, if warnings for this are desired. */
151
152 static int warn_about_return_type;
153
154 /* Nonzero when the current toplevel function contains a declaration
155 of a nested function which is never defined. */
156
157 static bool undef_nested_function;
158
159 /* True means global_bindings_p should return false even if the scope stack
160 says we are in file scope. */
161 bool c_override_global_bindings_to_false;
162
163 \f
164 /* Each c_binding structure describes one binding of an identifier to
165 a decl. All the decls in a scope - irrespective of namespace - are
166 chained together by the ->prev field, which (as the name implies)
167 runs in reverse order. All the decls in a given namespace bound to
168 a given identifier are chained by the ->shadowed field, which runs
169 from inner to outer scopes.
170
171 The ->decl field usually points to a DECL node, but there are two
172 exceptions. In the namespace of type tags, the bound entity is a
173 RECORD_TYPE, UNION_TYPE, or ENUMERAL_TYPE node. If an undeclared
174 identifier is encountered, it is bound to error_mark_node to
175 suppress further errors about that identifier in the current
176 function.
177
178 The ->type field stores the type of the declaration in this scope;
179 if NULL, the type is the type of the ->decl field. This is only of
180 relevance for objects with external or internal linkage which may
181 be redeclared in inner scopes, forming composite types that only
182 persist for the duration of those scopes. In the external scope,
183 this stores the composite of all the types declared for this
184 object, visible or not. The ->inner_comp field (used only at file
185 scope) stores whether an incomplete array type at file scope was
186 completed at an inner scope to an array size other than 1.
187
188 The depth field is copied from the scope structure that holds this
189 decl. It is used to preserve the proper ordering of the ->shadowed
190 field (see bind()) and also for a handful of special-case checks.
191 Finally, the invisible bit is true for a decl which should be
192 ignored for purposes of normal name lookup, and the nested bit is
193 true for a decl that's been bound a second time in an inner scope;
194 in all such cases, the binding in the outer scope will have its
195 invisible bit true. */
196
197 struct c_binding GTY((chain_next ("%h.prev")))
198 {
199 tree decl; /* the decl bound */
200 tree type; /* the type in this scope */
201 tree id; /* the identifier it's bound to */
202 struct c_binding *prev; /* the previous decl in this scope */
203 struct c_binding *shadowed; /* the innermost decl shadowed by this one */
204 unsigned int depth : 28; /* depth of this scope */
205 BOOL_BITFIELD invisible : 1; /* normal lookup should ignore this binding */
206 BOOL_BITFIELD nested : 1; /* do not set DECL_CONTEXT when popping */
207 BOOL_BITFIELD inner_comp : 1; /* incomplete array completed in inner scope */
208 /* one free bit */
209 };
210 #define B_IN_SCOPE(b1, b2) ((b1)->depth == (b2)->depth)
211 #define B_IN_CURRENT_SCOPE(b) ((b)->depth == current_scope->depth)
212 #define B_IN_FILE_SCOPE(b) ((b)->depth == 1 /*file_scope->depth*/)
213 #define B_IN_EXTERNAL_SCOPE(b) ((b)->depth == 0 /*external_scope->depth*/)
214
215 #define I_SYMBOL_BINDING(node) \
216 (((struct lang_identifier *) IDENTIFIER_NODE_CHECK(node))->symbol_binding)
217 #define I_SYMBOL_DECL(node) \
218 (I_SYMBOL_BINDING(node) ? I_SYMBOL_BINDING(node)->decl : 0)
219
220 #define I_TAG_BINDING(node) \
221 (((struct lang_identifier *) IDENTIFIER_NODE_CHECK(node))->tag_binding)
222 #define I_TAG_DECL(node) \
223 (I_TAG_BINDING(node) ? I_TAG_BINDING(node)->decl : 0)
224
225 #define I_LABEL_BINDING(node) \
226 (((struct lang_identifier *) IDENTIFIER_NODE_CHECK(node))->label_binding)
227 #define I_LABEL_DECL(node) \
228 (I_LABEL_BINDING(node) ? I_LABEL_BINDING(node)->decl : 0)
229
230 /* Each C symbol points to three linked lists of c_binding structures.
231 These describe the values of the identifier in the three different
232 namespaces defined by the language. */
233
234 struct lang_identifier GTY(())
235 {
236 struct c_common_identifier common_id;
237 struct c_binding *symbol_binding; /* vars, funcs, constants, typedefs */
238 struct c_binding *tag_binding; /* struct/union/enum tags */
239 struct c_binding *label_binding; /* labels */
240 };
241
242 /* Validate c-lang.c's assumptions. */
243 extern char C_SIZEOF_STRUCT_LANG_IDENTIFIER_isnt_accurate
244 [(sizeof(struct lang_identifier) == C_SIZEOF_STRUCT_LANG_IDENTIFIER) ? 1 : -1];
245
246 /* The resulting tree type. */
247
248 union lang_tree_node
249 GTY((desc ("TREE_CODE (&%h.generic) == IDENTIFIER_NODE"),
250 chain_next ("TREE_CODE (&%h.generic) == INTEGER_TYPE ? (union lang_tree_node *) TYPE_NEXT_VARIANT (&%h.generic) : ((union lang_tree_node *) GENERIC_NEXT (&%h.generic))")))
251 {
252 union tree_node GTY ((tag ("0"),
253 desc ("tree_node_structure (&%h)")))
254 generic;
255 struct lang_identifier GTY ((tag ("1"))) identifier;
256 };
257
258 /* Each c_scope structure describes the complete contents of one
259 scope. Four scopes are distinguished specially: the innermost or
260 current scope, the innermost function scope, the file scope (always
261 the second to outermost) and the outermost or external scope.
262
263 Most declarations are recorded in the current scope.
264
265 All normal label declarations are recorded in the innermost
266 function scope, as are bindings of undeclared identifiers to
267 error_mark_node. (GCC permits nested functions as an extension,
268 hence the 'innermost' qualifier.) Explicitly declared labels
269 (using the __label__ extension) appear in the current scope.
270
271 Being in the file scope (current_scope == file_scope) causes
272 special behavior in several places below. Also, under some
273 conditions the Objective-C front end records declarations in the
274 file scope even though that isn't the current scope.
275
276 All declarations with external linkage are recorded in the external
277 scope, even if they aren't visible there; this models the fact that
278 such declarations are visible to the entire program, and (with a
279 bit of cleverness, see pushdecl) allows diagnosis of some violations
280 of C99 6.2.2p7 and 6.2.7p2:
281
282 If, within the same translation unit, the same identifier appears
283 with both internal and external linkage, the behavior is
284 undefined.
285
286 All declarations that refer to the same object or function shall
287 have compatible type; otherwise, the behavior is undefined.
288
289 Initially only the built-in declarations, which describe compiler
290 intrinsic functions plus a subset of the standard library, are in
291 this scope.
292
293 The order of the blocks list matters, and it is frequently appended
294 to. To avoid having to walk all the way to the end of the list on
295 each insertion, or reverse the list later, we maintain a pointer to
296 the last list entry. (FIXME: It should be feasible to use a reversed
297 list here.)
298
299 The bindings list is strictly in reverse order of declarations;
300 pop_scope relies on this. */
301
302
303 struct c_scope GTY((chain_next ("%h.outer")))
304 {
305 /* The scope containing this one. */
306 struct c_scope *outer;
307
308 /* The next outermost function scope. */
309 struct c_scope *outer_function;
310
311 /* All bindings in this scope. */
312 struct c_binding *bindings;
313
314 /* For each scope (except the global one), a chain of BLOCK nodes
315 for all the scopes that were entered and exited one level down. */
316 tree blocks;
317 tree blocks_last;
318
319 /* The depth of this scope. Used to keep the ->shadowed chain of
320 bindings sorted innermost to outermost. */
321 unsigned int depth : 28;
322
323 /* True if we are currently filling this scope with parameter
324 declarations. */
325 BOOL_BITFIELD parm_flag : 1;
326
327 /* True if we saw [*] in this scope. Used to give an error messages
328 if these appears in a function definition. */
329 BOOL_BITFIELD had_vla_unspec : 1;
330
331 /* True if we already complained about forward parameter decls
332 in this scope. This prevents double warnings on
333 foo (int a; int b; ...) */
334 BOOL_BITFIELD warned_forward_parm_decls : 1;
335
336 /* True if this is the outermost block scope of a function body.
337 This scope contains the parameters, the local variables declared
338 in the outermost block, and all the labels (except those in
339 nested functions, or declared at block scope with __label__). */
340 BOOL_BITFIELD function_body : 1;
341
342 /* True means make a BLOCK for this scope no matter what. */
343 BOOL_BITFIELD keep : 1;
344 };
345
346 /* The scope currently in effect. */
347
348 static GTY(()) struct c_scope *current_scope;
349
350 /* The innermost function scope. Ordinary (not explicitly declared)
351 labels, bindings to error_mark_node, and the lazily-created
352 bindings of __func__ and its friends get this scope. */
353
354 static GTY(()) struct c_scope *current_function_scope;
355
356 /* The C file scope. This is reset for each input translation unit. */
357
358 static GTY(()) struct c_scope *file_scope;
359
360 /* The outermost scope. This is used for all declarations with
361 external linkage, and only these, hence the name. */
362
363 static GTY(()) struct c_scope *external_scope;
364
365 /* A chain of c_scope structures awaiting reuse. */
366
367 static GTY((deletable)) struct c_scope *scope_freelist;
368
369 /* A chain of c_binding structures awaiting reuse. */
370
371 static GTY((deletable)) struct c_binding *binding_freelist;
372
373 /* Append VAR to LIST in scope SCOPE. */
374 #define SCOPE_LIST_APPEND(scope, list, decl) do { \
375 struct c_scope *s_ = (scope); \
376 tree d_ = (decl); \
377 if (s_->list##_last) \
378 TREE_CHAIN (s_->list##_last) = d_; \
379 else \
380 s_->list = d_; \
381 s_->list##_last = d_; \
382 } while (0)
383
384 /* Concatenate FROM in scope FSCOPE onto TO in scope TSCOPE. */
385 #define SCOPE_LIST_CONCAT(tscope, to, fscope, from) do { \
386 struct c_scope *t_ = (tscope); \
387 struct c_scope *f_ = (fscope); \
388 if (t_->to##_last) \
389 TREE_CHAIN (t_->to##_last) = f_->from; \
390 else \
391 t_->to = f_->from; \
392 t_->to##_last = f_->from##_last; \
393 } while (0)
394
395 /* True means unconditionally make a BLOCK for the next scope pushed. */
396
397 static bool keep_next_level_flag;
398
399 /* True means the next call to push_scope will be the outermost scope
400 of a function body, so do not push a new scope, merely cease
401 expecting parameter decls. */
402
403 static bool next_is_function_body;
404
405 /* Forward declarations. */
406 static tree lookup_name_in_scope (tree, struct c_scope *);
407 static tree c_make_fname_decl (tree, int);
408 static tree grokdeclarator (const struct c_declarator *,
409 struct c_declspecs *,
410 enum decl_context, bool, tree *,
411 enum deprecated_states);
412 static tree grokparms (struct c_arg_info *, bool);
413 static void layout_array_type (tree);
414 \f
415 /* T is a statement. Add it to the statement-tree. This is the
416 C/ObjC version--C++ has a slightly different version of this
417 function. */
418
419 tree
420 add_stmt (tree t)
421 {
422 enum tree_code code = TREE_CODE (t);
423
424 if (CAN_HAVE_LOCATION_P (t) && code != LABEL_EXPR)
425 {
426 if (!EXPR_HAS_LOCATION (t))
427 SET_EXPR_LOCATION (t, input_location);
428 }
429
430 if (code == LABEL_EXPR || code == CASE_LABEL_EXPR)
431 STATEMENT_LIST_HAS_LABEL (cur_stmt_list) = 1;
432
433 /* Add T to the statement-tree. Non-side-effect statements need to be
434 recorded during statement expressions. */
435 append_to_statement_list_force (t, &cur_stmt_list);
436
437 return t;
438 }
439 \f
440
441 void
442 c_print_identifier (FILE *file, tree node, int indent)
443 {
444 print_node (file, "symbol", I_SYMBOL_DECL (node), indent + 4);
445 print_node (file, "tag", I_TAG_DECL (node), indent + 4);
446 print_node (file, "label", I_LABEL_DECL (node), indent + 4);
447 if (C_IS_RESERVED_WORD (node))
448 {
449 tree rid = ridpointers[C_RID_CODE (node)];
450 indent_to (file, indent + 4);
451 fprintf (file, "rid %p \"%s\"",
452 (void *) rid, IDENTIFIER_POINTER (rid));
453 }
454 }
455
456 /* Establish a binding between NAME, an IDENTIFIER_NODE, and DECL,
457 which may be any of several kinds of DECL or TYPE or error_mark_node,
458 in the scope SCOPE. */
459 static void
460 bind (tree name, tree decl, struct c_scope *scope, bool invisible, bool nested)
461 {
462 struct c_binding *b, **here;
463
464 if (binding_freelist)
465 {
466 b = binding_freelist;
467 binding_freelist = b->prev;
468 }
469 else
470 b = GGC_NEW (struct c_binding);
471
472 b->shadowed = 0;
473 b->decl = decl;
474 b->id = name;
475 b->depth = scope->depth;
476 b->invisible = invisible;
477 b->nested = nested;
478 b->inner_comp = 0;
479
480 b->type = 0;
481
482 b->prev = scope->bindings;
483 scope->bindings = b;
484
485 if (!name)
486 return;
487
488 switch (TREE_CODE (decl))
489 {
490 case LABEL_DECL: here = &I_LABEL_BINDING (name); break;
491 case ENUMERAL_TYPE:
492 case UNION_TYPE:
493 case RECORD_TYPE: here = &I_TAG_BINDING (name); break;
494 case VAR_DECL:
495 case FUNCTION_DECL:
496 case TYPE_DECL:
497 case CONST_DECL:
498 case PARM_DECL:
499 case ERROR_MARK: here = &I_SYMBOL_BINDING (name); break;
500
501 default:
502 gcc_unreachable ();
503 }
504
505 /* Locate the appropriate place in the chain of shadowed decls
506 to insert this binding. Normally, scope == current_scope and
507 this does nothing. */
508 while (*here && (*here)->depth > scope->depth)
509 here = &(*here)->shadowed;
510
511 b->shadowed = *here;
512 *here = b;
513 }
514
515 /* Clear the binding structure B, stick it on the binding_freelist,
516 and return the former value of b->prev. This is used by pop_scope
517 and get_parm_info to iterate destructively over all the bindings
518 from a given scope. */
519 static struct c_binding *
520 free_binding_and_advance (struct c_binding *b)
521 {
522 struct c_binding *prev = b->prev;
523
524 memset (b, 0, sizeof (struct c_binding));
525 b->prev = binding_freelist;
526 binding_freelist = b;
527
528 return prev;
529 }
530
531 \f
532 /* Hook called at end of compilation to assume 1 elt
533 for a file-scope tentative array defn that wasn't complete before. */
534
535 void
536 c_finish_incomplete_decl (tree decl)
537 {
538 if (TREE_CODE (decl) == VAR_DECL)
539 {
540 tree type = TREE_TYPE (decl);
541 if (type != error_mark_node
542 && TREE_CODE (type) == ARRAY_TYPE
543 && !DECL_EXTERNAL (decl)
544 && TYPE_DOMAIN (type) == 0)
545 {
546 warning (0, "array %q+D assumed to have one element", decl);
547
548 complete_array_type (&TREE_TYPE (decl), NULL_TREE, true);
549
550 layout_decl (decl, 0);
551 }
552 }
553 }
554 \f
555 /* The Objective-C front-end often needs to determine the current scope. */
556
557 void *
558 objc_get_current_scope (void)
559 {
560 return current_scope;
561 }
562
563 /* The following function is used only by Objective-C. It needs to live here
564 because it accesses the innards of c_scope. */
565
566 void
567 objc_mark_locals_volatile (void *enclosing_blk)
568 {
569 struct c_scope *scope;
570 struct c_binding *b;
571
572 for (scope = current_scope;
573 scope && scope != enclosing_blk;
574 scope = scope->outer)
575 {
576 for (b = scope->bindings; b; b = b->prev)
577 objc_volatilize_decl (b->decl);
578
579 /* Do not climb up past the current function. */
580 if (scope->function_body)
581 break;
582 }
583 }
584
585 /* Nonzero if we are currently in file scope. */
586
587 int
588 global_bindings_p (void)
589 {
590 return current_scope == file_scope && !c_override_global_bindings_to_false;
591 }
592
593 void
594 keep_next_level (void)
595 {
596 keep_next_level_flag = true;
597 }
598
599 /* Identify this scope as currently being filled with parameters. */
600
601 void
602 declare_parm_level (void)
603 {
604 current_scope->parm_flag = true;
605 }
606
607 void
608 push_scope (void)
609 {
610 if (next_is_function_body)
611 {
612 /* This is the transition from the parameters to the top level
613 of the function body. These are the same scope
614 (C99 6.2.1p4,6) so we do not push another scope structure.
615 next_is_function_body is set only by store_parm_decls, which
616 in turn is called when and only when we are about to
617 encounter the opening curly brace for the function body.
618
619 The outermost block of a function always gets a BLOCK node,
620 because the debugging output routines expect that each
621 function has at least one BLOCK. */
622 current_scope->parm_flag = false;
623 current_scope->function_body = true;
624 current_scope->keep = true;
625 current_scope->outer_function = current_function_scope;
626 current_function_scope = current_scope;
627
628 keep_next_level_flag = false;
629 next_is_function_body = false;
630 }
631 else
632 {
633 struct c_scope *scope;
634 if (scope_freelist)
635 {
636 scope = scope_freelist;
637 scope_freelist = scope->outer;
638 }
639 else
640 scope = GGC_CNEW (struct c_scope);
641
642 scope->keep = keep_next_level_flag;
643 scope->outer = current_scope;
644 scope->depth = current_scope ? (current_scope->depth + 1) : 0;
645
646 /* Check for scope depth overflow. Unlikely (2^28 == 268,435,456) but
647 possible. */
648 if (current_scope && scope->depth == 0)
649 {
650 scope->depth--;
651 sorry ("GCC supports only %u nested scopes", scope->depth);
652 }
653
654 current_scope = scope;
655 keep_next_level_flag = false;
656 }
657 }
658
659 /* Set the TYPE_CONTEXT of all of TYPE's variants to CONTEXT. */
660
661 static void
662 set_type_context (tree type, tree context)
663 {
664 for (type = TYPE_MAIN_VARIANT (type); type;
665 type = TYPE_NEXT_VARIANT (type))
666 TYPE_CONTEXT (type) = context;
667 }
668
669 /* Exit a scope. Restore the state of the identifier-decl mappings
670 that were in effect when this scope was entered. Return a BLOCK
671 node containing all the DECLs in this scope that are of interest
672 to debug info generation. */
673
674 tree
675 pop_scope (void)
676 {
677 struct c_scope *scope = current_scope;
678 tree block, context, p;
679 struct c_binding *b;
680
681 bool functionbody = scope->function_body;
682 bool keep = functionbody || scope->keep || scope->bindings;
683
684 c_end_vm_scope (scope->depth);
685
686 /* If appropriate, create a BLOCK to record the decls for the life
687 of this function. */
688 block = 0;
689 if (keep)
690 {
691 block = make_node (BLOCK);
692 BLOCK_SUBBLOCKS (block) = scope->blocks;
693 TREE_USED (block) = 1;
694
695 /* In each subblock, record that this is its superior. */
696 for (p = scope->blocks; p; p = TREE_CHAIN (p))
697 BLOCK_SUPERCONTEXT (p) = block;
698
699 BLOCK_VARS (block) = 0;
700 }
701
702 /* The TYPE_CONTEXTs for all of the tagged types belonging to this
703 scope must be set so that they point to the appropriate
704 construct, i.e. either to the current FUNCTION_DECL node, or
705 else to the BLOCK node we just constructed.
706
707 Note that for tagged types whose scope is just the formal
708 parameter list for some function type specification, we can't
709 properly set their TYPE_CONTEXTs here, because we don't have a
710 pointer to the appropriate FUNCTION_TYPE node readily available
711 to us. For those cases, the TYPE_CONTEXTs of the relevant tagged
712 type nodes get set in `grokdeclarator' as soon as we have created
713 the FUNCTION_TYPE node which will represent the "scope" for these
714 "parameter list local" tagged types. */
715 if (scope->function_body)
716 context = current_function_decl;
717 else if (scope == file_scope)
718 {
719 tree file_decl = build_decl (TRANSLATION_UNIT_DECL, 0, 0);
720 TREE_CHAIN (file_decl) = all_translation_units;
721 all_translation_units = file_decl;
722 context = file_decl;
723 }
724 else
725 context = block;
726
727 /* Clear all bindings in this scope. */
728 for (b = scope->bindings; b; b = free_binding_and_advance (b))
729 {
730 p = b->decl;
731 switch (TREE_CODE (p))
732 {
733 case LABEL_DECL:
734 /* Warnings for unused labels, errors for undefined labels. */
735 if (TREE_USED (p) && !DECL_INITIAL (p))
736 {
737 error ("label %q+D used but not defined", p);
738 DECL_INITIAL (p) = error_mark_node;
739 }
740 else
741 warn_for_unused_label (p);
742
743 /* Labels go in BLOCK_VARS. */
744 TREE_CHAIN (p) = BLOCK_VARS (block);
745 BLOCK_VARS (block) = p;
746 gcc_assert (I_LABEL_BINDING (b->id) == b);
747 I_LABEL_BINDING (b->id) = b->shadowed;
748 break;
749
750 case ENUMERAL_TYPE:
751 case UNION_TYPE:
752 case RECORD_TYPE:
753 set_type_context (p, context);
754
755 /* Types may not have tag-names, in which case the type
756 appears in the bindings list with b->id NULL. */
757 if (b->id)
758 {
759 gcc_assert (I_TAG_BINDING (b->id) == b);
760 I_TAG_BINDING (b->id) = b->shadowed;
761 }
762 break;
763
764 case FUNCTION_DECL:
765 /* Propagate TREE_ADDRESSABLE from nested functions to their
766 containing functions. */
767 if (!TREE_ASM_WRITTEN (p)
768 && DECL_INITIAL (p) != 0
769 && TREE_ADDRESSABLE (p)
770 && DECL_ABSTRACT_ORIGIN (p) != 0
771 && DECL_ABSTRACT_ORIGIN (p) != p)
772 TREE_ADDRESSABLE (DECL_ABSTRACT_ORIGIN (p)) = 1;
773 if (!DECL_EXTERNAL (p)
774 && !DECL_INITIAL (p)
775 && scope != file_scope
776 && scope != external_scope)
777 {
778 error ("nested function %q+D declared but never defined", p);
779 undef_nested_function = true;
780 }
781 /* C99 6.7.4p6: "a function with external linkage... declared
782 with an inline function specifier ... shall also be defined in the
783 same translation unit." */
784 else if (DECL_DECLARED_INLINE_P (p)
785 && TREE_PUBLIC (p)
786 && !DECL_INITIAL (p)
787 && !flag_gnu89_inline)
788 pedwarn ("inline function %q+D declared but never defined", p);
789
790 goto common_symbol;
791
792 case VAR_DECL:
793 /* Warnings for unused variables. */
794 if (!TREE_USED (p)
795 && !TREE_NO_WARNING (p)
796 && !DECL_IN_SYSTEM_HEADER (p)
797 && DECL_NAME (p)
798 && !DECL_ARTIFICIAL (p)
799 && scope != file_scope
800 && scope != external_scope)
801 warning (OPT_Wunused_variable, "unused variable %q+D", p);
802
803 if (b->inner_comp)
804 {
805 error ("type of array %q+D completed incompatibly with"
806 " implicit initialization", p);
807 }
808
809 /* Fall through. */
810 case TYPE_DECL:
811 case CONST_DECL:
812 common_symbol:
813 /* All of these go in BLOCK_VARS, but only if this is the
814 binding in the home scope. */
815 if (!b->nested)
816 {
817 TREE_CHAIN (p) = BLOCK_VARS (block);
818 BLOCK_VARS (block) = p;
819 }
820 /* If this is the file scope, and we are processing more
821 than one translation unit in this compilation, set
822 DECL_CONTEXT of each decl to the TRANSLATION_UNIT_DECL.
823 This makes same_translation_unit_p work, and causes
824 static declarations to be given disambiguating suffixes. */
825 if (scope == file_scope && num_in_fnames > 1)
826 {
827 DECL_CONTEXT (p) = context;
828 if (TREE_CODE (p) == TYPE_DECL)
829 set_type_context (TREE_TYPE (p), context);
830 }
831
832 /* Fall through. */
833 /* Parameters go in DECL_ARGUMENTS, not BLOCK_VARS, and have
834 already been put there by store_parm_decls. Unused-
835 parameter warnings are handled by function.c.
836 error_mark_node obviously does not go in BLOCK_VARS and
837 does not get unused-variable warnings. */
838 case PARM_DECL:
839 case ERROR_MARK:
840 /* It is possible for a decl not to have a name. We get
841 here with b->id NULL in this case. */
842 if (b->id)
843 {
844 gcc_assert (I_SYMBOL_BINDING (b->id) == b);
845 I_SYMBOL_BINDING (b->id) = b->shadowed;
846 if (b->shadowed && b->shadowed->type)
847 TREE_TYPE (b->shadowed->decl) = b->shadowed->type;
848 }
849 break;
850
851 default:
852 gcc_unreachable ();
853 }
854 }
855
856
857 /* Dispose of the block that we just made inside some higher level. */
858 if ((scope->function_body || scope == file_scope) && context)
859 {
860 DECL_INITIAL (context) = block;
861 BLOCK_SUPERCONTEXT (block) = context;
862 }
863 else if (scope->outer)
864 {
865 if (block)
866 SCOPE_LIST_APPEND (scope->outer, blocks, block);
867 /* If we did not make a block for the scope just exited, any
868 blocks made for inner scopes must be carried forward so they
869 will later become subblocks of something else. */
870 else if (scope->blocks)
871 SCOPE_LIST_CONCAT (scope->outer, blocks, scope, blocks);
872 }
873
874 /* Pop the current scope, and free the structure for reuse. */
875 current_scope = scope->outer;
876 if (scope->function_body)
877 current_function_scope = scope->outer_function;
878
879 memset (scope, 0, sizeof (struct c_scope));
880 scope->outer = scope_freelist;
881 scope_freelist = scope;
882
883 return block;
884 }
885
886 void
887 push_file_scope (void)
888 {
889 tree decl;
890
891 if (file_scope)
892 return;
893
894 push_scope ();
895 file_scope = current_scope;
896
897 start_fname_decls ();
898
899 for (decl = visible_builtins; decl; decl = TREE_CHAIN (decl))
900 bind (DECL_NAME (decl), decl, file_scope,
901 /*invisible=*/false, /*nested=*/true);
902 }
903
904 void
905 pop_file_scope (void)
906 {
907 /* In case there were missing closebraces, get us back to the global
908 binding level. */
909 while (current_scope != file_scope)
910 pop_scope ();
911
912 /* __FUNCTION__ is defined at file scope (""). This
913 call may not be necessary as my tests indicate it
914 still works without it. */
915 finish_fname_decls ();
916
917 /* This is the point to write out a PCH if we're doing that.
918 In that case we do not want to do anything else. */
919 if (pch_file)
920 {
921 c_common_write_pch ();
922 return;
923 }
924
925 /* Pop off the file scope and close this translation unit. */
926 pop_scope ();
927 file_scope = 0;
928
929 maybe_apply_pending_pragma_weaks ();
930 cgraph_finalize_compilation_unit ();
931 }
932
933 /* Insert BLOCK at the end of the list of subblocks of the current
934 scope. This is used when a BIND_EXPR is expanded, to handle the
935 BLOCK node inside the BIND_EXPR. */
936
937 void
938 insert_block (tree block)
939 {
940 TREE_USED (block) = 1;
941 SCOPE_LIST_APPEND (current_scope, blocks, block);
942 }
943 \f
944 /* Push a definition or a declaration of struct, union or enum tag "name".
945 "type" should be the type node.
946 We assume that the tag "name" is not already defined.
947
948 Note that the definition may really be just a forward reference.
949 In that case, the TYPE_SIZE will be zero. */
950
951 static void
952 pushtag (tree name, tree type)
953 {
954 /* Record the identifier as the type's name if it has none. */
955 if (name && !TYPE_NAME (type))
956 TYPE_NAME (type) = name;
957 bind (name, type, current_scope, /*invisible=*/false, /*nested=*/false);
958
959 /* Create a fake NULL-named TYPE_DECL node whose TREE_TYPE will be the
960 tagged type we just added to the current scope. This fake
961 NULL-named TYPE_DECL node helps dwarfout.c to know when it needs
962 to output a representation of a tagged type, and it also gives
963 us a convenient place to record the "scope start" address for the
964 tagged type. */
965
966 TYPE_STUB_DECL (type) = pushdecl (build_decl (TYPE_DECL, NULL_TREE, type));
967
968 /* An approximation for now, so we can tell this is a function-scope tag.
969 This will be updated in pop_scope. */
970 TYPE_CONTEXT (type) = DECL_CONTEXT (TYPE_STUB_DECL (type));
971 }
972 \f
973 /* Subroutine of compare_decls. Allow harmless mismatches in return
974 and argument types provided that the type modes match. This function
975 return a unified type given a suitable match, and 0 otherwise. */
976
977 static tree
978 match_builtin_function_types (tree newtype, tree oldtype)
979 {
980 tree newrettype, oldrettype;
981 tree newargs, oldargs;
982 tree trytype, tryargs;
983
984 /* Accept the return type of the new declaration if same modes. */
985 oldrettype = TREE_TYPE (oldtype);
986 newrettype = TREE_TYPE (newtype);
987
988 if (TYPE_MODE (oldrettype) != TYPE_MODE (newrettype))
989 return 0;
990
991 oldargs = TYPE_ARG_TYPES (oldtype);
992 newargs = TYPE_ARG_TYPES (newtype);
993 tryargs = newargs;
994
995 while (oldargs || newargs)
996 {
997 if (!oldargs
998 || !newargs
999 || !TREE_VALUE (oldargs)
1000 || !TREE_VALUE (newargs)
1001 || TYPE_MODE (TREE_VALUE (oldargs))
1002 != TYPE_MODE (TREE_VALUE (newargs)))
1003 return 0;
1004
1005 oldargs = TREE_CHAIN (oldargs);
1006 newargs = TREE_CHAIN (newargs);
1007 }
1008
1009 trytype = build_function_type (newrettype, tryargs);
1010 return build_type_attribute_variant (trytype, TYPE_ATTRIBUTES (oldtype));
1011 }
1012
1013 /* Subroutine of diagnose_mismatched_decls. Check for function type
1014 mismatch involving an empty arglist vs a nonempty one and give clearer
1015 diagnostics. */
1016 static void
1017 diagnose_arglist_conflict (tree newdecl, tree olddecl,
1018 tree newtype, tree oldtype)
1019 {
1020 tree t;
1021
1022 if (TREE_CODE (olddecl) != FUNCTION_DECL
1023 || !comptypes (TREE_TYPE (oldtype), TREE_TYPE (newtype))
1024 || !((TYPE_ARG_TYPES (oldtype) == 0 && DECL_INITIAL (olddecl) == 0)
1025 ||
1026 (TYPE_ARG_TYPES (newtype) == 0 && DECL_INITIAL (newdecl) == 0)))
1027 return;
1028
1029 t = TYPE_ARG_TYPES (oldtype);
1030 if (t == 0)
1031 t = TYPE_ARG_TYPES (newtype);
1032 for (; t; t = TREE_CHAIN (t))
1033 {
1034 tree type = TREE_VALUE (t);
1035
1036 if (TREE_CHAIN (t) == 0
1037 && TYPE_MAIN_VARIANT (type) != void_type_node)
1038 {
1039 inform ("a parameter list with an ellipsis can%'t match "
1040 "an empty parameter name list declaration");
1041 break;
1042 }
1043
1044 if (c_type_promotes_to (type) != type)
1045 {
1046 inform ("an argument type that has a default promotion can%'t match "
1047 "an empty parameter name list declaration");
1048 break;
1049 }
1050 }
1051 }
1052
1053 /* Another subroutine of diagnose_mismatched_decls. OLDDECL is an
1054 old-style function definition, NEWDECL is a prototype declaration.
1055 Diagnose inconsistencies in the argument list. Returns TRUE if
1056 the prototype is compatible, FALSE if not. */
1057 static bool
1058 validate_proto_after_old_defn (tree newdecl, tree newtype, tree oldtype)
1059 {
1060 tree newargs, oldargs;
1061 int i;
1062
1063 #define END_OF_ARGLIST(t) ((t) == void_type_node)
1064
1065 oldargs = TYPE_ACTUAL_ARG_TYPES (oldtype);
1066 newargs = TYPE_ARG_TYPES (newtype);
1067 i = 1;
1068
1069 for (;;)
1070 {
1071 tree oldargtype = TREE_VALUE (oldargs);
1072 tree newargtype = TREE_VALUE (newargs);
1073
1074 if (oldargtype == error_mark_node || newargtype == error_mark_node)
1075 return false;
1076
1077 oldargtype = TYPE_MAIN_VARIANT (oldargtype);
1078 newargtype = TYPE_MAIN_VARIANT (newargtype);
1079
1080 if (END_OF_ARGLIST (oldargtype) && END_OF_ARGLIST (newargtype))
1081 break;
1082
1083 /* Reaching the end of just one list means the two decls don't
1084 agree on the number of arguments. */
1085 if (END_OF_ARGLIST (oldargtype))
1086 {
1087 error ("prototype for %q+D declares more arguments "
1088 "than previous old-style definition", newdecl);
1089 return false;
1090 }
1091 else if (END_OF_ARGLIST (newargtype))
1092 {
1093 error ("prototype for %q+D declares fewer arguments "
1094 "than previous old-style definition", newdecl);
1095 return false;
1096 }
1097
1098 /* Type for passing arg must be consistent with that declared
1099 for the arg. */
1100 else if (!comptypes (oldargtype, newargtype))
1101 {
1102 error ("prototype for %q+D declares argument %d"
1103 " with incompatible type",
1104 newdecl, i);
1105 return false;
1106 }
1107
1108 oldargs = TREE_CHAIN (oldargs);
1109 newargs = TREE_CHAIN (newargs);
1110 i++;
1111 }
1112
1113 /* If we get here, no errors were found, but do issue a warning
1114 for this poor-style construct. */
1115 warning (0, "prototype for %q+D follows non-prototype definition",
1116 newdecl);
1117 return true;
1118 #undef END_OF_ARGLIST
1119 }
1120
1121 /* Subroutine of diagnose_mismatched_decls. Report the location of DECL,
1122 first in a pair of mismatched declarations, using the diagnostic
1123 function DIAG. */
1124 static void
1125 locate_old_decl (tree decl, void (*diag)(const char *, ...) ATTRIBUTE_GCC_CDIAG(1,2))
1126 {
1127 if (TREE_CODE (decl) == FUNCTION_DECL && DECL_BUILT_IN (decl))
1128 ;
1129 else if (DECL_INITIAL (decl))
1130 diag (G_("previous definition of %q+D was here"), decl);
1131 else if (C_DECL_IMPLICIT (decl))
1132 diag (G_("previous implicit declaration of %q+D was here"), decl);
1133 else
1134 diag (G_("previous declaration of %q+D was here"), decl);
1135 }
1136
1137 /* Subroutine of duplicate_decls. Compare NEWDECL to OLDDECL.
1138 Returns true if the caller should proceed to merge the two, false
1139 if OLDDECL should simply be discarded. As a side effect, issues
1140 all necessary diagnostics for invalid or poor-style combinations.
1141 If it returns true, writes the types of NEWDECL and OLDDECL to
1142 *NEWTYPEP and *OLDTYPEP - these may have been adjusted from
1143 TREE_TYPE (NEWDECL, OLDDECL) respectively. */
1144
1145 static bool
1146 diagnose_mismatched_decls (tree newdecl, tree olddecl,
1147 tree *newtypep, tree *oldtypep)
1148 {
1149 tree newtype, oldtype;
1150 bool pedwarned = false;
1151 bool warned = false;
1152 bool retval = true;
1153
1154 #define DECL_EXTERN_INLINE(DECL) (DECL_DECLARED_INLINE_P (DECL) \
1155 && DECL_EXTERNAL (DECL))
1156
1157 /* If we have error_mark_node for either decl or type, just discard
1158 the previous decl - we're in an error cascade already. */
1159 if (olddecl == error_mark_node || newdecl == error_mark_node)
1160 return false;
1161 *oldtypep = oldtype = TREE_TYPE (olddecl);
1162 *newtypep = newtype = TREE_TYPE (newdecl);
1163 if (oldtype == error_mark_node || newtype == error_mark_node)
1164 return false;
1165
1166 /* Two different categories of symbol altogether. This is an error
1167 unless OLDDECL is a builtin. OLDDECL will be discarded in any case. */
1168 if (TREE_CODE (olddecl) != TREE_CODE (newdecl))
1169 {
1170 if (!(TREE_CODE (olddecl) == FUNCTION_DECL
1171 && DECL_BUILT_IN (olddecl)
1172 && !C_DECL_DECLARED_BUILTIN (olddecl)))
1173 {
1174 error ("%q+D redeclared as different kind of symbol", newdecl);
1175 locate_old_decl (olddecl, error);
1176 }
1177 else if (TREE_PUBLIC (newdecl))
1178 warning (0, "built-in function %q+D declared as non-function",
1179 newdecl);
1180 else
1181 warning (OPT_Wshadow, "declaration of %q+D shadows "
1182 "a built-in function", newdecl);
1183 return false;
1184 }
1185
1186 /* Enumerators have no linkage, so may only be declared once in a
1187 given scope. */
1188 if (TREE_CODE (olddecl) == CONST_DECL)
1189 {
1190 error ("redeclaration of enumerator %q+D", newdecl);
1191 locate_old_decl (olddecl, error);
1192 return false;
1193 }
1194
1195 if (!comptypes (oldtype, newtype))
1196 {
1197 if (TREE_CODE (olddecl) == FUNCTION_DECL
1198 && DECL_BUILT_IN (olddecl) && !C_DECL_DECLARED_BUILTIN (olddecl))
1199 {
1200 /* Accept harmless mismatch in function types.
1201 This is for the ffs and fprintf builtins. */
1202 tree trytype = match_builtin_function_types (newtype, oldtype);
1203
1204 if (trytype && comptypes (newtype, trytype))
1205 *oldtypep = oldtype = trytype;
1206 else
1207 {
1208 /* If types don't match for a built-in, throw away the
1209 built-in. No point in calling locate_old_decl here, it
1210 won't print anything. */
1211 warning (0, "conflicting types for built-in function %q+D",
1212 newdecl);
1213 return false;
1214 }
1215 }
1216 else if (TREE_CODE (olddecl) == FUNCTION_DECL
1217 && DECL_IS_BUILTIN (olddecl))
1218 {
1219 /* A conflicting function declaration for a predeclared
1220 function that isn't actually built in. Objective C uses
1221 these. The new declaration silently overrides everything
1222 but the volatility (i.e. noreturn) indication. See also
1223 below. FIXME: Make Objective C use normal builtins. */
1224 TREE_THIS_VOLATILE (newdecl) |= TREE_THIS_VOLATILE (olddecl);
1225 return false;
1226 }
1227 /* Permit void foo (...) to match int foo (...) if the latter is
1228 the definition and implicit int was used. See
1229 c-torture/compile/920625-2.c. */
1230 else if (TREE_CODE (newdecl) == FUNCTION_DECL && DECL_INITIAL (newdecl)
1231 && TYPE_MAIN_VARIANT (TREE_TYPE (oldtype)) == void_type_node
1232 && TYPE_MAIN_VARIANT (TREE_TYPE (newtype)) == integer_type_node
1233 && C_FUNCTION_IMPLICIT_INT (newdecl) && !DECL_INITIAL (olddecl))
1234 {
1235 pedwarn ("conflicting types for %q+D", newdecl);
1236 /* Make sure we keep void as the return type. */
1237 TREE_TYPE (newdecl) = *newtypep = newtype = oldtype;
1238 C_FUNCTION_IMPLICIT_INT (newdecl) = 0;
1239 pedwarned = true;
1240 }
1241 /* Permit void foo (...) to match an earlier call to foo (...) with
1242 no declared type (thus, implicitly int). */
1243 else if (TREE_CODE (newdecl) == FUNCTION_DECL
1244 && TYPE_MAIN_VARIANT (TREE_TYPE (newtype)) == void_type_node
1245 && TYPE_MAIN_VARIANT (TREE_TYPE (oldtype)) == integer_type_node
1246 && C_DECL_IMPLICIT (olddecl) && !DECL_INITIAL (olddecl))
1247 {
1248 pedwarn ("conflicting types for %q+D", newdecl);
1249 /* Make sure we keep void as the return type. */
1250 TREE_TYPE (olddecl) = *oldtypep = oldtype = newtype;
1251 pedwarned = true;
1252 }
1253 else
1254 {
1255 if (TYPE_QUALS (newtype) != TYPE_QUALS (oldtype))
1256 error ("conflicting type qualifiers for %q+D", newdecl);
1257 else
1258 error ("conflicting types for %q+D", newdecl);
1259 diagnose_arglist_conflict (newdecl, olddecl, newtype, oldtype);
1260 locate_old_decl (olddecl, error);
1261 return false;
1262 }
1263 }
1264
1265 /* Redeclaration of a type is a constraint violation (6.7.2.3p1),
1266 but silently ignore the redeclaration if either is in a system
1267 header. (Conflicting redeclarations were handled above.) */
1268 if (TREE_CODE (newdecl) == TYPE_DECL)
1269 {
1270 if (DECL_IN_SYSTEM_HEADER (newdecl) || DECL_IN_SYSTEM_HEADER (olddecl))
1271 return true; /* Allow OLDDECL to continue in use. */
1272
1273 error ("redefinition of typedef %q+D", newdecl);
1274 locate_old_decl (olddecl, error);
1275 return false;
1276 }
1277
1278 /* Function declarations can either be 'static' or 'extern' (no
1279 qualifier is equivalent to 'extern' - C99 6.2.2p5) and therefore
1280 can never conflict with each other on account of linkage
1281 (6.2.2p4). Multiple definitions are not allowed (6.9p3,5) but
1282 gnu89 mode permits two definitions if one is 'extern inline' and
1283 one is not. The non- extern-inline definition supersedes the
1284 extern-inline definition. */
1285
1286 else if (TREE_CODE (newdecl) == FUNCTION_DECL)
1287 {
1288 /* If you declare a built-in function name as static, or
1289 define the built-in with an old-style definition (so we
1290 can't validate the argument list) the built-in definition is
1291 overridden, but optionally warn this was a bad choice of name. */
1292 if (DECL_BUILT_IN (olddecl)
1293 && !C_DECL_DECLARED_BUILTIN (olddecl)
1294 && (!TREE_PUBLIC (newdecl)
1295 || (DECL_INITIAL (newdecl)
1296 && !TYPE_ARG_TYPES (TREE_TYPE (newdecl)))))
1297 {
1298 warning (OPT_Wshadow, "declaration of %q+D shadows "
1299 "a built-in function", newdecl);
1300 /* Discard the old built-in function. */
1301 return false;
1302 }
1303
1304 if (DECL_INITIAL (newdecl))
1305 {
1306 if (DECL_INITIAL (olddecl))
1307 {
1308 /* If both decls are in the same TU and the new declaration
1309 isn't overriding an extern inline reject the new decl.
1310 In c99, no overriding is allowed in the same translation
1311 unit. */
1312 if ((!DECL_EXTERN_INLINE (olddecl)
1313 || DECL_EXTERN_INLINE (newdecl)
1314 || (!flag_gnu89_inline
1315 && (!DECL_DECLARED_INLINE_P (olddecl)
1316 || !lookup_attribute ("gnu_inline",
1317 DECL_ATTRIBUTES (olddecl)))
1318 && (!DECL_DECLARED_INLINE_P (newdecl)
1319 || !lookup_attribute ("gnu_inline",
1320 DECL_ATTRIBUTES (newdecl))))
1321 )
1322 && same_translation_unit_p (newdecl, olddecl))
1323 {
1324 error ("redefinition of %q+D", newdecl);
1325 locate_old_decl (olddecl, error);
1326 return false;
1327 }
1328 }
1329 }
1330 /* If we have a prototype after an old-style function definition,
1331 the argument types must be checked specially. */
1332 else if (DECL_INITIAL (olddecl)
1333 && !TYPE_ARG_TYPES (oldtype) && TYPE_ARG_TYPES (newtype)
1334 && TYPE_ACTUAL_ARG_TYPES (oldtype)
1335 && !validate_proto_after_old_defn (newdecl, newtype, oldtype))
1336 {
1337 locate_old_decl (olddecl, error);
1338 return false;
1339 }
1340 /* A non-static declaration (even an "extern") followed by a
1341 static declaration is undefined behavior per C99 6.2.2p3-5,7.
1342 The same is true for a static forward declaration at block
1343 scope followed by a non-static declaration/definition at file
1344 scope. Static followed by non-static at the same scope is
1345 not undefined behavior, and is the most convenient way to get
1346 some effects (see e.g. what unwind-dw2-fde-glibc.c does to
1347 the definition of _Unwind_Find_FDE in unwind-dw2-fde.c), but
1348 we do diagnose it if -Wtraditional. */
1349 if (TREE_PUBLIC (olddecl) && !TREE_PUBLIC (newdecl))
1350 {
1351 /* Two exceptions to the rule. If olddecl is an extern
1352 inline, or a predeclared function that isn't actually
1353 built in, newdecl silently overrides olddecl. The latter
1354 occur only in Objective C; see also above. (FIXME: Make
1355 Objective C use normal builtins.) */
1356 if (!DECL_IS_BUILTIN (olddecl)
1357 && !DECL_EXTERN_INLINE (olddecl))
1358 {
1359 error ("static declaration of %q+D follows "
1360 "non-static declaration", newdecl);
1361 locate_old_decl (olddecl, error);
1362 }
1363 return false;
1364 }
1365 else if (TREE_PUBLIC (newdecl) && !TREE_PUBLIC (olddecl))
1366 {
1367 if (DECL_CONTEXT (olddecl))
1368 {
1369 error ("non-static declaration of %q+D follows "
1370 "static declaration", newdecl);
1371 locate_old_decl (olddecl, error);
1372 return false;
1373 }
1374 else if (warn_traditional)
1375 {
1376 warning (OPT_Wtraditional, "non-static declaration of %q+D "
1377 "follows static declaration", newdecl);
1378 warned = true;
1379 }
1380 }
1381
1382 /* Make sure gnu_inline attribute is either not present, or
1383 present on all inline decls. */
1384 if (DECL_DECLARED_INLINE_P (olddecl)
1385 && DECL_DECLARED_INLINE_P (newdecl))
1386 {
1387 bool newa = lookup_attribute ("gnu_inline",
1388 DECL_ATTRIBUTES (newdecl)) != NULL;
1389 bool olda = lookup_attribute ("gnu_inline",
1390 DECL_ATTRIBUTES (olddecl)) != NULL;
1391 if (newa != olda)
1392 {
1393 error ("%<gnu_inline%> attribute present on %q+D",
1394 newa ? newdecl : olddecl);
1395 error ("%Jbut not here", newa ? olddecl : newdecl);
1396 }
1397 }
1398 }
1399 else if (TREE_CODE (newdecl) == VAR_DECL)
1400 {
1401 /* Only variables can be thread-local, and all declarations must
1402 agree on this property. */
1403 if (C_DECL_THREADPRIVATE_P (olddecl) && !DECL_THREAD_LOCAL_P (newdecl))
1404 {
1405 /* Nothing to check. Since OLDDECL is marked threadprivate
1406 and NEWDECL does not have a thread-local attribute, we
1407 will merge the threadprivate attribute into NEWDECL. */
1408 ;
1409 }
1410 else if (DECL_THREAD_LOCAL_P (newdecl) != DECL_THREAD_LOCAL_P (olddecl))
1411 {
1412 if (DECL_THREAD_LOCAL_P (newdecl))
1413 error ("thread-local declaration of %q+D follows "
1414 "non-thread-local declaration", newdecl);
1415 else
1416 error ("non-thread-local declaration of %q+D follows "
1417 "thread-local declaration", newdecl);
1418
1419 locate_old_decl (olddecl, error);
1420 return false;
1421 }
1422
1423 /* Multiple initialized definitions are not allowed (6.9p3,5). */
1424 if (DECL_INITIAL (newdecl) && DECL_INITIAL (olddecl))
1425 {
1426 error ("redefinition of %q+D", newdecl);
1427 locate_old_decl (olddecl, error);
1428 return false;
1429 }
1430
1431 /* Objects declared at file scope: if the first declaration had
1432 external linkage (even if it was an external reference) the
1433 second must have external linkage as well, or the behavior is
1434 undefined. If the first declaration had internal linkage, then
1435 the second must too, or else be an external reference (in which
1436 case the composite declaration still has internal linkage).
1437 As for function declarations, we warn about the static-then-
1438 extern case only for -Wtraditional. See generally 6.2.2p3-5,7. */
1439 if (DECL_FILE_SCOPE_P (newdecl)
1440 && TREE_PUBLIC (newdecl) != TREE_PUBLIC (olddecl))
1441 {
1442 if (DECL_EXTERNAL (newdecl))
1443 {
1444 if (!DECL_FILE_SCOPE_P (olddecl))
1445 {
1446 error ("extern declaration of %q+D follows "
1447 "declaration with no linkage", newdecl);
1448 locate_old_decl (olddecl, error);
1449 return false;
1450 }
1451 else if (warn_traditional)
1452 {
1453 warning (OPT_Wtraditional, "non-static declaration of %q+D "
1454 "follows static declaration", newdecl);
1455 warned = true;
1456 }
1457 }
1458 else
1459 {
1460 if (TREE_PUBLIC (newdecl))
1461 error ("non-static declaration of %q+D follows "
1462 "static declaration", newdecl);
1463 else
1464 error ("static declaration of %q+D follows "
1465 "non-static declaration", newdecl);
1466
1467 locate_old_decl (olddecl, error);
1468 return false;
1469 }
1470 }
1471 /* Two objects with the same name declared at the same block
1472 scope must both be external references (6.7p3). */
1473 else if (!DECL_FILE_SCOPE_P (newdecl))
1474 {
1475 if (DECL_EXTERNAL (newdecl))
1476 {
1477 /* Extern with initializer at block scope, which will
1478 already have received an error. */
1479 }
1480 else if (DECL_EXTERNAL (olddecl))
1481 {
1482 error ("declaration of %q+D with no linkage follows "
1483 "extern declaration", newdecl);
1484 locate_old_decl (olddecl, error);
1485 }
1486 else
1487 {
1488 error ("redeclaration of %q+D with no linkage", newdecl);
1489 locate_old_decl (olddecl, error);
1490 }
1491
1492 return false;
1493 }
1494 }
1495
1496 /* warnings */
1497 /* All decls must agree on a visibility. */
1498 if (CODE_CONTAINS_STRUCT (TREE_CODE (newdecl), TS_DECL_WITH_VIS)
1499 && DECL_VISIBILITY_SPECIFIED (newdecl) && DECL_VISIBILITY_SPECIFIED (olddecl)
1500 && DECL_VISIBILITY (newdecl) != DECL_VISIBILITY (olddecl))
1501 {
1502 warning (0, "redeclaration of %q+D with different visibility "
1503 "(old visibility preserved)", newdecl);
1504 warned = true;
1505 }
1506
1507 if (TREE_CODE (newdecl) == FUNCTION_DECL)
1508 {
1509 /* Diagnose inline __attribute__ ((noinline)) which is silly. */
1510 if (DECL_DECLARED_INLINE_P (newdecl)
1511 && lookup_attribute ("noinline", DECL_ATTRIBUTES (olddecl)))
1512 {
1513 warning (OPT_Wattributes, "inline declaration of %qD follows "
1514 "declaration with attribute noinline", newdecl);
1515 warned = true;
1516 }
1517 else if (DECL_DECLARED_INLINE_P (olddecl)
1518 && lookup_attribute ("noinline", DECL_ATTRIBUTES (newdecl)))
1519 {
1520 warning (OPT_Wattributes, "declaration of %q+D with attribute "
1521 "noinline follows inline declaration ", newdecl);
1522 warned = true;
1523 }
1524
1525 /* Inline declaration after use or definition.
1526 ??? Should we still warn about this now we have unit-at-a-time
1527 mode and can get it right?
1528 Definitely don't complain if the decls are in different translation
1529 units.
1530 C99 permits this, so don't warn in that case. (The function
1531 may not be inlined everywhere in function-at-a-time mode, but
1532 we still shouldn't warn.) */
1533 if (DECL_DECLARED_INLINE_P (newdecl) && !DECL_DECLARED_INLINE_P (olddecl)
1534 && same_translation_unit_p (olddecl, newdecl)
1535 && flag_gnu89_inline)
1536 {
1537 if (TREE_USED (olddecl))
1538 {
1539 warning (0, "%q+D declared inline after being called", olddecl);
1540 warned = true;
1541 }
1542 else if (DECL_INITIAL (olddecl))
1543 {
1544 warning (0, "%q+D declared inline after its definition", olddecl);
1545 warned = true;
1546 }
1547 }
1548 }
1549 else /* PARM_DECL, VAR_DECL */
1550 {
1551 /* Redeclaration of a parameter is a constraint violation (this is
1552 not explicitly stated, but follows from C99 6.7p3 [no more than
1553 one declaration of the same identifier with no linkage in the
1554 same scope, except type tags] and 6.2.2p6 [parameters have no
1555 linkage]). We must check for a forward parameter declaration,
1556 indicated by TREE_ASM_WRITTEN on the old declaration - this is
1557 an extension, the mandatory diagnostic for which is handled by
1558 mark_forward_parm_decls. */
1559
1560 if (TREE_CODE (newdecl) == PARM_DECL
1561 && (!TREE_ASM_WRITTEN (olddecl) || TREE_ASM_WRITTEN (newdecl)))
1562 {
1563 error ("redefinition of parameter %q+D", newdecl);
1564 locate_old_decl (olddecl, error);
1565 return false;
1566 }
1567 }
1568
1569 /* Optional warning for completely redundant decls. */
1570 if (!warned && !pedwarned
1571 && warn_redundant_decls
1572 /* Don't warn about a function declaration followed by a
1573 definition. */
1574 && !(TREE_CODE (newdecl) == FUNCTION_DECL
1575 && DECL_INITIAL (newdecl) && !DECL_INITIAL (olddecl))
1576 /* Don't warn about redundant redeclarations of builtins. */
1577 && !(TREE_CODE (newdecl) == FUNCTION_DECL
1578 && !DECL_BUILT_IN (newdecl)
1579 && DECL_BUILT_IN (olddecl)
1580 && !C_DECL_DECLARED_BUILTIN (olddecl))
1581 /* Don't warn about an extern followed by a definition. */
1582 && !(DECL_EXTERNAL (olddecl) && !DECL_EXTERNAL (newdecl))
1583 /* Don't warn about forward parameter decls. */
1584 && !(TREE_CODE (newdecl) == PARM_DECL
1585 && TREE_ASM_WRITTEN (olddecl) && !TREE_ASM_WRITTEN (newdecl))
1586 /* Don't warn about a variable definition following a declaration. */
1587 && !(TREE_CODE (newdecl) == VAR_DECL
1588 && DECL_INITIAL (newdecl) && !DECL_INITIAL (olddecl)))
1589 {
1590 warning (OPT_Wredundant_decls, "redundant redeclaration of %q+D",
1591 newdecl);
1592 warned = true;
1593 }
1594
1595 /* Report location of previous decl/defn in a consistent manner. */
1596 if (warned || pedwarned)
1597 locate_old_decl (olddecl, pedwarned ? pedwarn : warning0);
1598
1599 #undef DECL_EXTERN_INLINE
1600
1601 return retval;
1602 }
1603
1604 /* Subroutine of duplicate_decls. NEWDECL has been found to be
1605 consistent with OLDDECL, but carries new information. Merge the
1606 new information into OLDDECL. This function issues no
1607 diagnostics. */
1608
1609 static void
1610 merge_decls (tree newdecl, tree olddecl, tree newtype, tree oldtype)
1611 {
1612 bool new_is_definition = (TREE_CODE (newdecl) == FUNCTION_DECL
1613 && DECL_INITIAL (newdecl) != 0);
1614 bool new_is_prototype = (TREE_CODE (newdecl) == FUNCTION_DECL
1615 && TYPE_ARG_TYPES (TREE_TYPE (newdecl)) != 0);
1616 bool old_is_prototype = (TREE_CODE (olddecl) == FUNCTION_DECL
1617 && TYPE_ARG_TYPES (TREE_TYPE (olddecl)) != 0);
1618 bool extern_changed = false;
1619
1620 /* For real parm decl following a forward decl, rechain the old decl
1621 in its new location and clear TREE_ASM_WRITTEN (it's not a
1622 forward decl anymore). */
1623 if (TREE_CODE (newdecl) == PARM_DECL
1624 && TREE_ASM_WRITTEN (olddecl) && !TREE_ASM_WRITTEN (newdecl))
1625 {
1626 struct c_binding *b, **here;
1627
1628 for (here = &current_scope->bindings; *here; here = &(*here)->prev)
1629 if ((*here)->decl == olddecl)
1630 goto found;
1631 gcc_unreachable ();
1632
1633 found:
1634 b = *here;
1635 *here = b->prev;
1636 b->prev = current_scope->bindings;
1637 current_scope->bindings = b;
1638
1639 TREE_ASM_WRITTEN (olddecl) = 0;
1640 }
1641
1642 DECL_ATTRIBUTES (newdecl)
1643 = targetm.merge_decl_attributes (olddecl, newdecl);
1644
1645 /* Merge the data types specified in the two decls. */
1646 TREE_TYPE (newdecl)
1647 = TREE_TYPE (olddecl)
1648 = composite_type (newtype, oldtype);
1649
1650 /* Lay the type out, unless already done. */
1651 if (!comptypes (oldtype, TREE_TYPE (newdecl)))
1652 {
1653 if (TREE_TYPE (newdecl) != error_mark_node)
1654 layout_type (TREE_TYPE (newdecl));
1655 if (TREE_CODE (newdecl) != FUNCTION_DECL
1656 && TREE_CODE (newdecl) != TYPE_DECL
1657 && TREE_CODE (newdecl) != CONST_DECL)
1658 layout_decl (newdecl, 0);
1659 }
1660 else
1661 {
1662 /* Since the type is OLDDECL's, make OLDDECL's size go with. */
1663 DECL_SIZE (newdecl) = DECL_SIZE (olddecl);
1664 DECL_SIZE_UNIT (newdecl) = DECL_SIZE_UNIT (olddecl);
1665 DECL_MODE (newdecl) = DECL_MODE (olddecl);
1666 if (DECL_ALIGN (olddecl) > DECL_ALIGN (newdecl))
1667 {
1668 DECL_ALIGN (newdecl) = DECL_ALIGN (olddecl);
1669 DECL_USER_ALIGN (newdecl) |= DECL_ALIGN (olddecl);
1670 }
1671 }
1672
1673
1674 /* Merge the type qualifiers. */
1675 if (TREE_READONLY (newdecl))
1676 TREE_READONLY (olddecl) = 1;
1677
1678 if (TREE_THIS_VOLATILE (newdecl))
1679 TREE_THIS_VOLATILE (olddecl) = 1;
1680
1681 /* Merge deprecatedness. */
1682 if (TREE_DEPRECATED (newdecl))
1683 TREE_DEPRECATED (olddecl) = 1;
1684
1685 /* Keep source location of definition rather than declaration and of
1686 prototype rather than non-prototype unless that prototype is
1687 built-in. */
1688 if ((DECL_INITIAL (newdecl) == 0 && DECL_INITIAL (olddecl) != 0)
1689 || (old_is_prototype && !new_is_prototype
1690 && !C_DECL_BUILTIN_PROTOTYPE (olddecl)))
1691 DECL_SOURCE_LOCATION (newdecl) = DECL_SOURCE_LOCATION (olddecl);
1692
1693 /* Merge the initialization information. */
1694 if (DECL_INITIAL (newdecl) == 0)
1695 DECL_INITIAL (newdecl) = DECL_INITIAL (olddecl);
1696
1697 /* Merge the threadprivate attribute. */
1698 if (TREE_CODE (olddecl) == VAR_DECL && C_DECL_THREADPRIVATE_P (olddecl))
1699 {
1700 DECL_TLS_MODEL (newdecl) = DECL_TLS_MODEL (olddecl);
1701 C_DECL_THREADPRIVATE_P (newdecl) = 1;
1702 }
1703
1704 if (CODE_CONTAINS_STRUCT (TREE_CODE (olddecl), TS_DECL_WITH_VIS))
1705 {
1706 /* Merge the unused-warning information. */
1707 if (DECL_IN_SYSTEM_HEADER (olddecl))
1708 DECL_IN_SYSTEM_HEADER (newdecl) = 1;
1709 else if (DECL_IN_SYSTEM_HEADER (newdecl))
1710 DECL_IN_SYSTEM_HEADER (olddecl) = 1;
1711
1712 /* Merge the section attribute.
1713 We want to issue an error if the sections conflict but that
1714 must be done later in decl_attributes since we are called
1715 before attributes are assigned. */
1716 if (DECL_SECTION_NAME (newdecl) == NULL_TREE)
1717 DECL_SECTION_NAME (newdecl) = DECL_SECTION_NAME (olddecl);
1718
1719 /* Copy the assembler name.
1720 Currently, it can only be defined in the prototype. */
1721 COPY_DECL_ASSEMBLER_NAME (olddecl, newdecl);
1722
1723 /* Use visibility of whichever declaration had it specified */
1724 if (DECL_VISIBILITY_SPECIFIED (olddecl))
1725 {
1726 DECL_VISIBILITY (newdecl) = DECL_VISIBILITY (olddecl);
1727 DECL_VISIBILITY_SPECIFIED (newdecl) = 1;
1728 }
1729
1730 if (TREE_CODE (newdecl) == FUNCTION_DECL)
1731 {
1732 DECL_STATIC_CONSTRUCTOR(newdecl) |= DECL_STATIC_CONSTRUCTOR(olddecl);
1733 DECL_STATIC_DESTRUCTOR (newdecl) |= DECL_STATIC_DESTRUCTOR (olddecl);
1734 DECL_NO_LIMIT_STACK (newdecl) |= DECL_NO_LIMIT_STACK (olddecl);
1735 DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT (newdecl)
1736 |= DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT (olddecl);
1737 TREE_THIS_VOLATILE (newdecl) |= TREE_THIS_VOLATILE (olddecl);
1738 TREE_READONLY (newdecl) |= TREE_READONLY (olddecl);
1739 DECL_IS_MALLOC (newdecl) |= DECL_IS_MALLOC (olddecl);
1740 DECL_IS_PURE (newdecl) |= DECL_IS_PURE (olddecl);
1741 DECL_IS_NOVOPS (newdecl) |= DECL_IS_NOVOPS (olddecl);
1742 }
1743
1744 /* Merge the storage class information. */
1745 merge_weak (newdecl, olddecl);
1746
1747 /* For functions, static overrides non-static. */
1748 if (TREE_CODE (newdecl) == FUNCTION_DECL)
1749 {
1750 TREE_PUBLIC (newdecl) &= TREE_PUBLIC (olddecl);
1751 /* This is since we don't automatically
1752 copy the attributes of NEWDECL into OLDDECL. */
1753 TREE_PUBLIC (olddecl) = TREE_PUBLIC (newdecl);
1754 /* If this clears `static', clear it in the identifier too. */
1755 if (!TREE_PUBLIC (olddecl))
1756 TREE_PUBLIC (DECL_NAME (olddecl)) = 0;
1757 }
1758 }
1759
1760 /* In c99, 'extern' declaration before (or after) 'inline' means this
1761 function is not DECL_EXTERNAL, unless 'gnu_inline' attribute
1762 is present. */
1763 if (TREE_CODE (newdecl) == FUNCTION_DECL
1764 && !flag_gnu89_inline
1765 && (DECL_DECLARED_INLINE_P (newdecl)
1766 || DECL_DECLARED_INLINE_P (olddecl))
1767 && (!DECL_DECLARED_INLINE_P (newdecl)
1768 || !DECL_DECLARED_INLINE_P (olddecl)
1769 || !DECL_EXTERNAL (olddecl))
1770 && DECL_EXTERNAL (newdecl)
1771 && !lookup_attribute ("gnu_inline", DECL_ATTRIBUTES (newdecl)))
1772 DECL_EXTERNAL (newdecl) = 0;
1773
1774 if (DECL_EXTERNAL (newdecl))
1775 {
1776 TREE_STATIC (newdecl) = TREE_STATIC (olddecl);
1777 DECL_EXTERNAL (newdecl) = DECL_EXTERNAL (olddecl);
1778
1779 /* An extern decl does not override previous storage class. */
1780 TREE_PUBLIC (newdecl) = TREE_PUBLIC (olddecl);
1781 if (!DECL_EXTERNAL (newdecl))
1782 {
1783 DECL_CONTEXT (newdecl) = DECL_CONTEXT (olddecl);
1784 DECL_COMMON (newdecl) = DECL_COMMON (olddecl);
1785 }
1786 }
1787 else
1788 {
1789 TREE_STATIC (olddecl) = TREE_STATIC (newdecl);
1790 TREE_PUBLIC (olddecl) = TREE_PUBLIC (newdecl);
1791 }
1792
1793 if (TREE_CODE (newdecl) == FUNCTION_DECL)
1794 {
1795 /* If we're redefining a function previously defined as extern
1796 inline, make sure we emit debug info for the inline before we
1797 throw it away, in case it was inlined into a function that
1798 hasn't been written out yet. */
1799 if (new_is_definition && DECL_INITIAL (olddecl))
1800 {
1801 if (TREE_USED (olddecl)
1802 /* In unit-at-a-time mode we never inline re-defined extern
1803 inline functions. */
1804 && !flag_unit_at_a_time
1805 && cgraph_function_possibly_inlined_p (olddecl))
1806 (*debug_hooks->outlining_inline_function) (olddecl);
1807
1808 /* The new defn must not be inline. */
1809 DECL_INLINE (newdecl) = 0;
1810 DECL_UNINLINABLE (newdecl) = 1;
1811 }
1812 else
1813 {
1814 /* If either decl says `inline', this fn is inline, unless
1815 its definition was passed already. */
1816 if (DECL_DECLARED_INLINE_P (newdecl)
1817 || DECL_DECLARED_INLINE_P (olddecl))
1818 DECL_DECLARED_INLINE_P (newdecl) = 1;
1819
1820 DECL_UNINLINABLE (newdecl) = DECL_UNINLINABLE (olddecl)
1821 = (DECL_UNINLINABLE (newdecl) || DECL_UNINLINABLE (olddecl));
1822 }
1823
1824 if (DECL_BUILT_IN (olddecl))
1825 {
1826 /* If redeclaring a builtin function, it stays built in.
1827 But it gets tagged as having been declared. */
1828 DECL_BUILT_IN_CLASS (newdecl) = DECL_BUILT_IN_CLASS (olddecl);
1829 DECL_FUNCTION_CODE (newdecl) = DECL_FUNCTION_CODE (olddecl);
1830 C_DECL_DECLARED_BUILTIN (newdecl) = 1;
1831 if (new_is_prototype)
1832 C_DECL_BUILTIN_PROTOTYPE (newdecl) = 0;
1833 else
1834 C_DECL_BUILTIN_PROTOTYPE (newdecl)
1835 = C_DECL_BUILTIN_PROTOTYPE (olddecl);
1836 }
1837
1838 /* Also preserve various other info from the definition. */
1839 if (!new_is_definition)
1840 {
1841 DECL_RESULT (newdecl) = DECL_RESULT (olddecl);
1842 DECL_INITIAL (newdecl) = DECL_INITIAL (olddecl);
1843 DECL_STRUCT_FUNCTION (newdecl) = DECL_STRUCT_FUNCTION (olddecl);
1844 DECL_SAVED_TREE (newdecl) = DECL_SAVED_TREE (olddecl);
1845 DECL_ARGUMENTS (newdecl) = DECL_ARGUMENTS (olddecl);
1846
1847 /* Set DECL_INLINE on the declaration if we've got a body
1848 from which to instantiate. */
1849 if (DECL_INLINE (olddecl) && !DECL_UNINLINABLE (newdecl))
1850 {
1851 DECL_INLINE (newdecl) = 1;
1852 DECL_ABSTRACT_ORIGIN (newdecl)
1853 = DECL_ABSTRACT_ORIGIN (olddecl);
1854 }
1855 }
1856 else
1857 {
1858 /* If a previous declaration said inline, mark the
1859 definition as inlinable. */
1860 if (DECL_DECLARED_INLINE_P (newdecl)
1861 && !DECL_UNINLINABLE (newdecl))
1862 DECL_INLINE (newdecl) = 1;
1863 }
1864 }
1865
1866 extern_changed = DECL_EXTERNAL (olddecl) && !DECL_EXTERNAL (newdecl);
1867
1868 /* Copy most of the decl-specific fields of NEWDECL into OLDDECL.
1869 But preserve OLDDECL's DECL_UID and DECL_CONTEXT. */
1870 {
1871 unsigned olddecl_uid = DECL_UID (olddecl);
1872 tree olddecl_context = DECL_CONTEXT (olddecl);
1873
1874 memcpy ((char *) olddecl + sizeof (struct tree_common),
1875 (char *) newdecl + sizeof (struct tree_common),
1876 sizeof (struct tree_decl_common) - sizeof (struct tree_common));
1877 switch (TREE_CODE (olddecl))
1878 {
1879 case FIELD_DECL:
1880 case VAR_DECL:
1881 case PARM_DECL:
1882 case LABEL_DECL:
1883 case RESULT_DECL:
1884 case CONST_DECL:
1885 case TYPE_DECL:
1886 case FUNCTION_DECL:
1887 memcpy ((char *) olddecl + sizeof (struct tree_decl_common),
1888 (char *) newdecl + sizeof (struct tree_decl_common),
1889 tree_code_size (TREE_CODE (olddecl)) - sizeof (struct tree_decl_common));
1890 break;
1891
1892 default:
1893
1894 memcpy ((char *) olddecl + sizeof (struct tree_decl_common),
1895 (char *) newdecl + sizeof (struct tree_decl_common),
1896 sizeof (struct tree_decl_non_common) - sizeof (struct tree_decl_common));
1897 }
1898 DECL_UID (olddecl) = olddecl_uid;
1899 DECL_CONTEXT (olddecl) = olddecl_context;
1900 }
1901
1902 /* If OLDDECL had its DECL_RTL instantiated, re-invoke make_decl_rtl
1903 so that encode_section_info has a chance to look at the new decl
1904 flags and attributes. */
1905 if (DECL_RTL_SET_P (olddecl)
1906 && (TREE_CODE (olddecl) == FUNCTION_DECL
1907 || (TREE_CODE (olddecl) == VAR_DECL
1908 && TREE_STATIC (olddecl))))
1909 make_decl_rtl (olddecl);
1910
1911 /* If we changed a function from DECL_EXTERNAL to !DECL_EXTERNAL,
1912 and the definition is coming from the old version, cgraph needs
1913 to be called again. */
1914 if (extern_changed && !new_is_definition
1915 && TREE_CODE (olddecl) == FUNCTION_DECL && DECL_INITIAL (olddecl))
1916 cgraph_finalize_function (olddecl, false);
1917 }
1918
1919 /* Handle when a new declaration NEWDECL has the same name as an old
1920 one OLDDECL in the same binding contour. Prints an error message
1921 if appropriate.
1922
1923 If safely possible, alter OLDDECL to look like NEWDECL, and return
1924 true. Otherwise, return false. */
1925
1926 static bool
1927 duplicate_decls (tree newdecl, tree olddecl)
1928 {
1929 tree newtype = NULL, oldtype = NULL;
1930
1931 if (!diagnose_mismatched_decls (newdecl, olddecl, &newtype, &oldtype))
1932 {
1933 /* Avoid `unused variable' and other warnings warnings for OLDDECL. */
1934 TREE_NO_WARNING (olddecl) = 1;
1935 return false;
1936 }
1937
1938 merge_decls (newdecl, olddecl, newtype, oldtype);
1939 return true;
1940 }
1941
1942 \f
1943 /* Check whether decl-node NEW_DECL shadows an existing declaration. */
1944 static void
1945 warn_if_shadowing (tree new_decl)
1946 {
1947 struct c_binding *b;
1948
1949 /* Shadow warnings wanted? */
1950 if (!warn_shadow
1951 /* No shadow warnings for internally generated vars. */
1952 || DECL_IS_BUILTIN (new_decl)
1953 /* No shadow warnings for vars made for inlining. */
1954 || DECL_FROM_INLINE (new_decl))
1955 return;
1956
1957 /* Is anything being shadowed? Invisible decls do not count. */
1958 for (b = I_SYMBOL_BINDING (DECL_NAME (new_decl)); b; b = b->shadowed)
1959 if (b->decl && b->decl != new_decl && !b->invisible)
1960 {
1961 tree old_decl = b->decl;
1962
1963 if (old_decl == error_mark_node)
1964 {
1965 warning (OPT_Wshadow, "declaration of %q+D shadows previous "
1966 "non-variable", new_decl);
1967 break;
1968 }
1969 else if (TREE_CODE (old_decl) == PARM_DECL)
1970 warning (OPT_Wshadow, "declaration of %q+D shadows a parameter",
1971 new_decl);
1972 else if (DECL_FILE_SCOPE_P (old_decl))
1973 warning (OPT_Wshadow, "declaration of %q+D shadows a global "
1974 "declaration", new_decl);
1975 else if (TREE_CODE (old_decl) == FUNCTION_DECL
1976 && DECL_BUILT_IN (old_decl))
1977 {
1978 warning (OPT_Wshadow, "declaration of %q+D shadows "
1979 "a built-in function", new_decl);
1980 break;
1981 }
1982 else
1983 warning (OPT_Wshadow, "declaration of %q+D shadows a previous local",
1984 new_decl);
1985
1986 warning (OPT_Wshadow, "%Jshadowed declaration is here", old_decl);
1987
1988 break;
1989 }
1990 }
1991
1992
1993 /* Subroutine of pushdecl.
1994
1995 X is a TYPE_DECL for a typedef statement. Create a brand new
1996 ..._TYPE node (which will be just a variant of the existing
1997 ..._TYPE node with identical properties) and then install X
1998 as the TYPE_NAME of this brand new (duplicate) ..._TYPE node.
1999
2000 The whole point here is to end up with a situation where each
2001 and every ..._TYPE node the compiler creates will be uniquely
2002 associated with AT MOST one node representing a typedef name.
2003 This way, even though the compiler substitutes corresponding
2004 ..._TYPE nodes for TYPE_DECL (i.e. "typedef name") nodes very
2005 early on, later parts of the compiler can always do the reverse
2006 translation and get back the corresponding typedef name. For
2007 example, given:
2008
2009 typedef struct S MY_TYPE;
2010 MY_TYPE object;
2011
2012 Later parts of the compiler might only know that `object' was of
2013 type `struct S' if it were not for code just below. With this
2014 code however, later parts of the compiler see something like:
2015
2016 struct S' == struct S
2017 typedef struct S' MY_TYPE;
2018 struct S' object;
2019
2020 And they can then deduce (from the node for type struct S') that
2021 the original object declaration was:
2022
2023 MY_TYPE object;
2024
2025 Being able to do this is important for proper support of protoize,
2026 and also for generating precise symbolic debugging information
2027 which takes full account of the programmer's (typedef) vocabulary.
2028
2029 Obviously, we don't want to generate a duplicate ..._TYPE node if
2030 the TYPE_DECL node that we are now processing really represents a
2031 standard built-in type.
2032
2033 Since all standard types are effectively declared at line zero
2034 in the source file, we can easily check to see if we are working
2035 on a standard type by checking the current value of lineno. */
2036
2037 static void
2038 clone_underlying_type (tree x)
2039 {
2040 if (DECL_IS_BUILTIN (x))
2041 {
2042 if (TYPE_NAME (TREE_TYPE (x)) == 0)
2043 TYPE_NAME (TREE_TYPE (x)) = x;
2044 }
2045 else if (TREE_TYPE (x) != error_mark_node
2046 && DECL_ORIGINAL_TYPE (x) == NULL_TREE)
2047 {
2048 tree tt = TREE_TYPE (x);
2049 DECL_ORIGINAL_TYPE (x) = tt;
2050 tt = build_variant_type_copy (tt);
2051 TYPE_NAME (tt) = x;
2052 TREE_USED (tt) = TREE_USED (x);
2053 TREE_TYPE (x) = tt;
2054 }
2055 }
2056
2057 /* Record a decl-node X as belonging to the current lexical scope.
2058 Check for errors (such as an incompatible declaration for the same
2059 name already seen in the same scope).
2060
2061 Returns either X or an old decl for the same name.
2062 If an old decl is returned, it may have been smashed
2063 to agree with what X says. */
2064
2065 tree
2066 pushdecl (tree x)
2067 {
2068 tree name = DECL_NAME (x);
2069 struct c_scope *scope = current_scope;
2070 struct c_binding *b;
2071 bool nested = false;
2072
2073 /* Functions need the lang_decl data. */
2074 if (TREE_CODE (x) == FUNCTION_DECL && !DECL_LANG_SPECIFIC (x))
2075 DECL_LANG_SPECIFIC (x) = GGC_CNEW (struct lang_decl);
2076
2077 /* Must set DECL_CONTEXT for everything not at file scope or
2078 DECL_FILE_SCOPE_P won't work. Local externs don't count
2079 unless they have initializers (which generate code). */
2080 if (current_function_decl
2081 && ((TREE_CODE (x) != FUNCTION_DECL && TREE_CODE (x) != VAR_DECL)
2082 || DECL_INITIAL (x) || !DECL_EXTERNAL (x)))
2083 DECL_CONTEXT (x) = current_function_decl;
2084
2085 /* If this is of variably modified type, prevent jumping into its
2086 scope. */
2087 if ((TREE_CODE (x) == VAR_DECL || TREE_CODE (x) == TYPE_DECL)
2088 && variably_modified_type_p (TREE_TYPE (x), NULL_TREE))
2089 c_begin_vm_scope (scope->depth);
2090
2091 /* Anonymous decls are just inserted in the scope. */
2092 if (!name)
2093 {
2094 bind (name, x, scope, /*invisible=*/false, /*nested=*/false);
2095 return x;
2096 }
2097
2098 /* First, see if there is another declaration with the same name in
2099 the current scope. If there is, duplicate_decls may do all the
2100 work for us. If duplicate_decls returns false, that indicates
2101 two incompatible decls in the same scope; we are to silently
2102 replace the old one (duplicate_decls has issued all appropriate
2103 diagnostics). In particular, we should not consider possible
2104 duplicates in the external scope, or shadowing. */
2105 b = I_SYMBOL_BINDING (name);
2106 if (b && B_IN_SCOPE (b, scope))
2107 {
2108 struct c_binding *b_ext, *b_use;
2109 tree type = TREE_TYPE (x);
2110 tree visdecl = b->decl;
2111 tree vistype = TREE_TYPE (visdecl);
2112 if (TREE_CODE (TREE_TYPE (x)) == ARRAY_TYPE
2113 && COMPLETE_TYPE_P (TREE_TYPE (x)))
2114 b->inner_comp = false;
2115 b_use = b;
2116 b_ext = b;
2117 /* If this is an external linkage declaration, we should check
2118 for compatibility with the type in the external scope before
2119 setting the type at this scope based on the visible
2120 information only. */
2121 if (TREE_PUBLIC (x) && TREE_PUBLIC (visdecl))
2122 {
2123 while (b_ext && !B_IN_EXTERNAL_SCOPE (b_ext))
2124 b_ext = b_ext->shadowed;
2125 if (b_ext)
2126 {
2127 b_use = b_ext;
2128 if (b_use->type)
2129 TREE_TYPE (b_use->decl) = b_use->type;
2130 }
2131 }
2132 if (duplicate_decls (x, b_use->decl))
2133 {
2134 if (b_use != b)
2135 {
2136 /* Save the updated type in the external scope and
2137 restore the proper type for this scope. */
2138 tree thistype;
2139 if (comptypes (vistype, type))
2140 thistype = composite_type (vistype, type);
2141 else
2142 thistype = TREE_TYPE (b_use->decl);
2143 b_use->type = TREE_TYPE (b_use->decl);
2144 if (TREE_CODE (b_use->decl) == FUNCTION_DECL
2145 && DECL_BUILT_IN (b_use->decl))
2146 thistype
2147 = build_type_attribute_variant (thistype,
2148 TYPE_ATTRIBUTES
2149 (b_use->type));
2150 TREE_TYPE (b_use->decl) = thistype;
2151 }
2152 return b_use->decl;
2153 }
2154 else
2155 goto skip_external_and_shadow_checks;
2156 }
2157
2158 /* All declarations with external linkage, and all external
2159 references, go in the external scope, no matter what scope is
2160 current. However, the binding in that scope is ignored for
2161 purposes of normal name lookup. A separate binding structure is
2162 created in the requested scope; this governs the normal
2163 visibility of the symbol.
2164
2165 The binding in the externals scope is used exclusively for
2166 detecting duplicate declarations of the same object, no matter
2167 what scope they are in; this is what we do here. (C99 6.2.7p2:
2168 All declarations that refer to the same object or function shall
2169 have compatible type; otherwise, the behavior is undefined.) */
2170 if (DECL_EXTERNAL (x) || scope == file_scope)
2171 {
2172 tree type = TREE_TYPE (x);
2173 tree vistype = 0;
2174 tree visdecl = 0;
2175 bool type_saved = false;
2176 if (b && !B_IN_EXTERNAL_SCOPE (b)
2177 && (TREE_CODE (b->decl) == FUNCTION_DECL
2178 || TREE_CODE (b->decl) == VAR_DECL)
2179 && DECL_FILE_SCOPE_P (b->decl))
2180 {
2181 visdecl = b->decl;
2182 vistype = TREE_TYPE (visdecl);
2183 }
2184 if (scope != file_scope
2185 && !DECL_IN_SYSTEM_HEADER (x))
2186 warning (OPT_Wnested_externs, "nested extern declaration of %qD", x);
2187
2188 while (b && !B_IN_EXTERNAL_SCOPE (b))
2189 {
2190 /* If this decl might be modified, save its type. This is
2191 done here rather than when the decl is first bound
2192 because the type may change after first binding, through
2193 being completed or through attributes being added. If we
2194 encounter multiple such decls, only the first should have
2195 its type saved; the others will already have had their
2196 proper types saved and the types will not have changed as
2197 their scopes will not have been re-entered. */
2198 if (DECL_P (b->decl) && DECL_FILE_SCOPE_P (b->decl) && !type_saved)
2199 {
2200 b->type = TREE_TYPE (b->decl);
2201 type_saved = true;
2202 }
2203 if (B_IN_FILE_SCOPE (b)
2204 && TREE_CODE (b->decl) == VAR_DECL
2205 && TREE_STATIC (b->decl)
2206 && TREE_CODE (TREE_TYPE (b->decl)) == ARRAY_TYPE
2207 && !TYPE_DOMAIN (TREE_TYPE (b->decl))
2208 && TREE_CODE (type) == ARRAY_TYPE
2209 && TYPE_DOMAIN (type)
2210 && TYPE_MAX_VALUE (TYPE_DOMAIN (type))
2211 && !integer_zerop (TYPE_MAX_VALUE (TYPE_DOMAIN (type))))
2212 {
2213 /* Array type completed in inner scope, which should be
2214 diagnosed if the completion does not have size 1 and
2215 it does not get completed in the file scope. */
2216 b->inner_comp = true;
2217 }
2218 b = b->shadowed;
2219 }
2220
2221 /* If a matching external declaration has been found, set its
2222 type to the composite of all the types of that declaration.
2223 After the consistency checks, it will be reset to the
2224 composite of the visible types only. */
2225 if (b && (TREE_PUBLIC (x) || same_translation_unit_p (x, b->decl))
2226 && b->type)
2227 TREE_TYPE (b->decl) = b->type;
2228
2229 /* The point of the same_translation_unit_p check here is,
2230 we want to detect a duplicate decl for a construct like
2231 foo() { extern bar(); } ... static bar(); but not if
2232 they are in different translation units. In any case,
2233 the static does not go in the externals scope. */
2234 if (b
2235 && (TREE_PUBLIC (x) || same_translation_unit_p (x, b->decl))
2236 && duplicate_decls (x, b->decl))
2237 {
2238 tree thistype;
2239 if (vistype)
2240 {
2241 if (comptypes (vistype, type))
2242 thistype = composite_type (vistype, type);
2243 else
2244 thistype = TREE_TYPE (b->decl);
2245 }
2246 else
2247 thistype = type;
2248 b->type = TREE_TYPE (b->decl);
2249 if (TREE_CODE (b->decl) == FUNCTION_DECL && DECL_BUILT_IN (b->decl))
2250 thistype
2251 = build_type_attribute_variant (thistype,
2252 TYPE_ATTRIBUTES (b->type));
2253 TREE_TYPE (b->decl) = thistype;
2254 bind (name, b->decl, scope, /*invisible=*/false, /*nested=*/true);
2255 return b->decl;
2256 }
2257 else if (TREE_PUBLIC (x))
2258 {
2259 if (visdecl && !b && duplicate_decls (x, visdecl))
2260 {
2261 /* An external declaration at block scope referring to a
2262 visible entity with internal linkage. The composite
2263 type will already be correct for this scope, so we
2264 just need to fall through to make the declaration in
2265 this scope. */
2266 nested = true;
2267 x = visdecl;
2268 }
2269 else
2270 {
2271 bind (name, x, external_scope, /*invisible=*/true,
2272 /*nested=*/false);
2273 nested = true;
2274 }
2275 }
2276 }
2277
2278 if (TREE_CODE (x) != PARM_DECL)
2279 warn_if_shadowing (x);
2280
2281 skip_external_and_shadow_checks:
2282 if (TREE_CODE (x) == TYPE_DECL)
2283 clone_underlying_type (x);
2284
2285 bind (name, x, scope, /*invisible=*/false, nested);
2286
2287 /* If x's type is incomplete because it's based on a
2288 structure or union which has not yet been fully declared,
2289 attach it to that structure or union type, so we can go
2290 back and complete the variable declaration later, if the
2291 structure or union gets fully declared.
2292
2293 If the input is erroneous, we can have error_mark in the type
2294 slot (e.g. "f(void a, ...)") - that doesn't count as an
2295 incomplete type. */
2296 if (TREE_TYPE (x) != error_mark_node
2297 && !COMPLETE_TYPE_P (TREE_TYPE (x)))
2298 {
2299 tree element = TREE_TYPE (x);
2300
2301 while (TREE_CODE (element) == ARRAY_TYPE)
2302 element = TREE_TYPE (element);
2303 element = TYPE_MAIN_VARIANT (element);
2304
2305 if ((TREE_CODE (element) == RECORD_TYPE
2306 || TREE_CODE (element) == UNION_TYPE)
2307 && (TREE_CODE (x) != TYPE_DECL
2308 || TREE_CODE (TREE_TYPE (x)) == ARRAY_TYPE)
2309 && !COMPLETE_TYPE_P (element))
2310 C_TYPE_INCOMPLETE_VARS (element)
2311 = tree_cons (NULL_TREE, x, C_TYPE_INCOMPLETE_VARS (element));
2312 }
2313 return x;
2314 }
2315
2316 /* Record X as belonging to file scope.
2317 This is used only internally by the Objective-C front end,
2318 and is limited to its needs. duplicate_decls is not called;
2319 if there is any preexisting decl for this identifier, it is an ICE. */
2320
2321 tree
2322 pushdecl_top_level (tree x)
2323 {
2324 tree name;
2325 bool nested = false;
2326 gcc_assert (TREE_CODE (x) == VAR_DECL || TREE_CODE (x) == CONST_DECL);
2327
2328 name = DECL_NAME (x);
2329
2330 gcc_assert (TREE_CODE (x) == CONST_DECL || !I_SYMBOL_BINDING (name));
2331
2332 if (TREE_PUBLIC (x))
2333 {
2334 bind (name, x, external_scope, /*invisible=*/true, /*nested=*/false);
2335 nested = true;
2336 }
2337 if (file_scope)
2338 bind (name, x, file_scope, /*invisible=*/false, nested);
2339
2340 return x;
2341 }
2342 \f
2343 static void
2344 implicit_decl_warning (tree id, tree olddecl)
2345 {
2346 if (warn_implicit_function_declaration)
2347 {
2348 if (flag_isoc99)
2349 pedwarn (G_("implicit declaration of function %qE"), id);
2350 else
2351 warning (OPT_Wimplicit_function_declaration,
2352 G_("implicit declaration of function %qE"), id);
2353 if (olddecl)
2354 locate_old_decl (olddecl, inform);
2355 }
2356 }
2357
2358 /* Generate an implicit declaration for identifier FUNCTIONID as a
2359 function of type int (). */
2360
2361 tree
2362 implicitly_declare (tree functionid)
2363 {
2364 struct c_binding *b;
2365 tree decl = 0;
2366 tree asmspec_tree;
2367
2368 for (b = I_SYMBOL_BINDING (functionid); b; b = b->shadowed)
2369 {
2370 if (B_IN_SCOPE (b, external_scope))
2371 {
2372 decl = b->decl;
2373 break;
2374 }
2375 }
2376
2377 if (decl)
2378 {
2379 if (decl == error_mark_node)
2380 return decl;
2381
2382 /* FIXME: Objective-C has weird not-really-builtin functions
2383 which are supposed to be visible automatically. They wind up
2384 in the external scope because they're pushed before the file
2385 scope gets created. Catch this here and rebind them into the
2386 file scope. */
2387 if (!DECL_BUILT_IN (decl) && DECL_IS_BUILTIN (decl))
2388 {
2389 bind (functionid, decl, file_scope,
2390 /*invisible=*/false, /*nested=*/true);
2391 return decl;
2392 }
2393 else
2394 {
2395 tree newtype = default_function_type;
2396 if (b->type)
2397 TREE_TYPE (decl) = b->type;
2398 /* Implicit declaration of a function already declared
2399 (somehow) in a different scope, or as a built-in.
2400 If this is the first time this has happened, warn;
2401 then recycle the old declaration but with the new type. */
2402 if (!C_DECL_IMPLICIT (decl))
2403 {
2404 implicit_decl_warning (functionid, decl);
2405 C_DECL_IMPLICIT (decl) = 1;
2406 }
2407 if (DECL_BUILT_IN (decl))
2408 {
2409 newtype = build_type_attribute_variant (newtype,
2410 TYPE_ATTRIBUTES
2411 (TREE_TYPE (decl)));
2412 if (!comptypes (newtype, TREE_TYPE (decl)))
2413 {
2414 warning (0, "incompatible implicit declaration of built-in"
2415 " function %qD", decl);
2416 newtype = TREE_TYPE (decl);
2417 }
2418 }
2419 else
2420 {
2421 if (!comptypes (newtype, TREE_TYPE (decl)))
2422 {
2423 error ("incompatible implicit declaration of function %qD",
2424 decl);
2425 locate_old_decl (decl, error);
2426 }
2427 }
2428 b->type = TREE_TYPE (decl);
2429 TREE_TYPE (decl) = newtype;
2430 bind (functionid, decl, current_scope,
2431 /*invisible=*/false, /*nested=*/true);
2432 return decl;
2433 }
2434 }
2435
2436 /* Not seen before. */
2437 decl = build_decl (FUNCTION_DECL, functionid, default_function_type);
2438 DECL_EXTERNAL (decl) = 1;
2439 TREE_PUBLIC (decl) = 1;
2440 C_DECL_IMPLICIT (decl) = 1;
2441 implicit_decl_warning (functionid, 0);
2442 asmspec_tree = maybe_apply_renaming_pragma (decl, /*asmname=*/NULL);
2443 if (asmspec_tree)
2444 set_user_assembler_name (decl, TREE_STRING_POINTER (asmspec_tree));
2445
2446 /* C89 says implicit declarations are in the innermost block.
2447 So we record the decl in the standard fashion. */
2448 decl = pushdecl (decl);
2449
2450 /* No need to call objc_check_decl here - it's a function type. */
2451 rest_of_decl_compilation (decl, 0, 0);
2452
2453 /* Write a record describing this implicit function declaration
2454 to the prototypes file (if requested). */
2455 gen_aux_info_record (decl, 0, 1, 0);
2456
2457 /* Possibly apply some default attributes to this implicit declaration. */
2458 decl_attributes (&decl, NULL_TREE, 0);
2459
2460 return decl;
2461 }
2462
2463 /* Issue an error message for a reference to an undeclared variable
2464 ID, including a reference to a builtin outside of function-call
2465 context. Establish a binding of the identifier to error_mark_node
2466 in an appropriate scope, which will suppress further errors for the
2467 same identifier. The error message should be given location LOC. */
2468 void
2469 undeclared_variable (tree id, location_t loc)
2470 {
2471 static bool already = false;
2472 struct c_scope *scope;
2473
2474 if (current_function_decl == 0)
2475 {
2476 error ("%H%qE undeclared here (not in a function)", &loc, id);
2477 scope = current_scope;
2478 }
2479 else
2480 {
2481 error ("%H%qE undeclared (first use in this function)", &loc, id);
2482
2483 if (!already)
2484 {
2485 error ("%H(Each undeclared identifier is reported only once", &loc);
2486 error ("%Hfor each function it appears in.)", &loc);
2487 already = true;
2488 }
2489
2490 /* If we are parsing old-style parameter decls, current_function_decl
2491 will be nonnull but current_function_scope will be null. */
2492 scope = current_function_scope ? current_function_scope : current_scope;
2493 }
2494 bind (id, error_mark_node, scope, /*invisible=*/false, /*nested=*/false);
2495 }
2496 \f
2497 /* Subroutine of lookup_label, declare_label, define_label: construct a
2498 LABEL_DECL with all the proper frills. */
2499
2500 static tree
2501 make_label (tree name, location_t location)
2502 {
2503 tree label = build_decl (LABEL_DECL, name, void_type_node);
2504
2505 DECL_CONTEXT (label) = current_function_decl;
2506 DECL_MODE (label) = VOIDmode;
2507 DECL_SOURCE_LOCATION (label) = location;
2508
2509 return label;
2510 }
2511
2512 /* Get the LABEL_DECL corresponding to identifier NAME as a label.
2513 Create one if none exists so far for the current function.
2514 This is called when a label is used in a goto expression or
2515 has its address taken. */
2516
2517 tree
2518 lookup_label (tree name)
2519 {
2520 tree label;
2521
2522 if (current_function_decl == 0)
2523 {
2524 error ("label %qE referenced outside of any function", name);
2525 return 0;
2526 }
2527
2528 /* Use a label already defined or ref'd with this name, but not if
2529 it is inherited from a containing function and wasn't declared
2530 using __label__. */
2531 label = I_LABEL_DECL (name);
2532 if (label && (DECL_CONTEXT (label) == current_function_decl
2533 || C_DECLARED_LABEL_FLAG (label)))
2534 {
2535 /* If the label has only been declared, update its apparent
2536 location to point here, for better diagnostics if it
2537 turns out not to have been defined. */
2538 if (!TREE_USED (label))
2539 DECL_SOURCE_LOCATION (label) = input_location;
2540 return label;
2541 }
2542
2543 /* No label binding for that identifier; make one. */
2544 label = make_label (name, input_location);
2545
2546 /* Ordinary labels go in the current function scope. */
2547 bind (name, label, current_function_scope,
2548 /*invisible=*/false, /*nested=*/false);
2549 return label;
2550 }
2551
2552 /* Make a label named NAME in the current function, shadowing silently
2553 any that may be inherited from containing functions or containing
2554 scopes. This is called for __label__ declarations. */
2555
2556 tree
2557 declare_label (tree name)
2558 {
2559 struct c_binding *b = I_LABEL_BINDING (name);
2560 tree label;
2561
2562 /* Check to make sure that the label hasn't already been declared
2563 at this scope */
2564 if (b && B_IN_CURRENT_SCOPE (b))
2565 {
2566 error ("duplicate label declaration %qE", name);
2567 locate_old_decl (b->decl, error);
2568
2569 /* Just use the previous declaration. */
2570 return b->decl;
2571 }
2572
2573 label = make_label (name, input_location);
2574 C_DECLARED_LABEL_FLAG (label) = 1;
2575
2576 /* Declared labels go in the current scope. */
2577 bind (name, label, current_scope,
2578 /*invisible=*/false, /*nested=*/false);
2579 return label;
2580 }
2581
2582 /* Define a label, specifying the location in the source file.
2583 Return the LABEL_DECL node for the label, if the definition is valid.
2584 Otherwise return 0. */
2585
2586 tree
2587 define_label (location_t location, tree name)
2588 {
2589 /* Find any preexisting label with this name. It is an error
2590 if that label has already been defined in this function, or
2591 if there is a containing function with a declared label with
2592 the same name. */
2593 tree label = I_LABEL_DECL (name);
2594 struct c_label_list *nlist_se, *nlist_vm;
2595
2596 if (label
2597 && ((DECL_CONTEXT (label) == current_function_decl
2598 && DECL_INITIAL (label) != 0)
2599 || (DECL_CONTEXT (label) != current_function_decl
2600 && C_DECLARED_LABEL_FLAG (label))))
2601 {
2602 error ("%Hduplicate label %qD", &location, label);
2603 locate_old_decl (label, error);
2604 return 0;
2605 }
2606 else if (label && DECL_CONTEXT (label) == current_function_decl)
2607 {
2608 /* The label has been used or declared already in this function,
2609 but not defined. Update its location to point to this
2610 definition. */
2611 if (C_DECL_UNDEFINABLE_STMT_EXPR (label))
2612 error ("%Jjump into statement expression", label);
2613 if (C_DECL_UNDEFINABLE_VM (label))
2614 error ("%Jjump into scope of identifier with variably modified type",
2615 label);
2616 DECL_SOURCE_LOCATION (label) = location;
2617 }
2618 else
2619 {
2620 /* No label binding for that identifier; make one. */
2621 label = make_label (name, location);
2622
2623 /* Ordinary labels go in the current function scope. */
2624 bind (name, label, current_function_scope,
2625 /*invisible=*/false, /*nested=*/false);
2626 }
2627
2628 if (!in_system_header && lookup_name (name))
2629 warning (OPT_Wtraditional, "%Htraditional C lacks a separate namespace "
2630 "for labels, identifier %qE conflicts", &location, name);
2631
2632 nlist_se = XOBNEW (&parser_obstack, struct c_label_list);
2633 nlist_se->next = label_context_stack_se->labels_def;
2634 nlist_se->label = label;
2635 label_context_stack_se->labels_def = nlist_se;
2636
2637 nlist_vm = XOBNEW (&parser_obstack, struct c_label_list);
2638 nlist_vm->next = label_context_stack_vm->labels_def;
2639 nlist_vm->label = label;
2640 label_context_stack_vm->labels_def = nlist_vm;
2641
2642 /* Mark label as having been defined. */
2643 DECL_INITIAL (label) = error_mark_node;
2644 return label;
2645 }
2646 \f
2647 /* Given NAME, an IDENTIFIER_NODE,
2648 return the structure (or union or enum) definition for that name.
2649 If THISLEVEL_ONLY is nonzero, searches only the current_scope.
2650 CODE says which kind of type the caller wants;
2651 it is RECORD_TYPE or UNION_TYPE or ENUMERAL_TYPE.
2652 If the wrong kind of type is found, an error is reported. */
2653
2654 static tree
2655 lookup_tag (enum tree_code code, tree name, int thislevel_only)
2656 {
2657 struct c_binding *b = I_TAG_BINDING (name);
2658 int thislevel = 0;
2659
2660 if (!b || !b->decl)
2661 return 0;
2662
2663 /* We only care about whether it's in this level if
2664 thislevel_only was set or it might be a type clash. */
2665 if (thislevel_only || TREE_CODE (b->decl) != code)
2666 {
2667 /* For our purposes, a tag in the external scope is the same as
2668 a tag in the file scope. (Primarily relevant to Objective-C
2669 and its builtin structure tags, which get pushed before the
2670 file scope is created.) */
2671 if (B_IN_CURRENT_SCOPE (b)
2672 || (current_scope == file_scope && B_IN_EXTERNAL_SCOPE (b)))
2673 thislevel = 1;
2674 }
2675
2676 if (thislevel_only && !thislevel)
2677 return 0;
2678
2679 if (TREE_CODE (b->decl) != code)
2680 {
2681 /* Definition isn't the kind we were looking for. */
2682 pending_invalid_xref = name;
2683 pending_invalid_xref_location = input_location;
2684
2685 /* If in the same binding level as a declaration as a tag
2686 of a different type, this must not be allowed to
2687 shadow that tag, so give the error immediately.
2688 (For example, "struct foo; union foo;" is invalid.) */
2689 if (thislevel)
2690 pending_xref_error ();
2691 }
2692 return b->decl;
2693 }
2694
2695 /* Print an error message now
2696 for a recent invalid struct, union or enum cross reference.
2697 We don't print them immediately because they are not invalid
2698 when used in the `struct foo;' construct for shadowing. */
2699
2700 void
2701 pending_xref_error (void)
2702 {
2703 if (pending_invalid_xref != 0)
2704 error ("%H%qE defined as wrong kind of tag",
2705 &pending_invalid_xref_location, pending_invalid_xref);
2706 pending_invalid_xref = 0;
2707 }
2708
2709 \f
2710 /* Look up NAME in the current scope and its superiors
2711 in the namespace of variables, functions and typedefs.
2712 Return a ..._DECL node of some kind representing its definition,
2713 or return 0 if it is undefined. */
2714
2715 tree
2716 lookup_name (tree name)
2717 {
2718 struct c_binding *b = I_SYMBOL_BINDING (name);
2719 if (b && !b->invisible)
2720 return b->decl;
2721 return 0;
2722 }
2723
2724 /* Similar to `lookup_name' but look only at the indicated scope. */
2725
2726 static tree
2727 lookup_name_in_scope (tree name, struct c_scope *scope)
2728 {
2729 struct c_binding *b;
2730
2731 for (b = I_SYMBOL_BINDING (name); b; b = b->shadowed)
2732 if (B_IN_SCOPE (b, scope))
2733 return b->decl;
2734 return 0;
2735 }
2736 \f
2737 /* Create the predefined scalar types of C,
2738 and some nodes representing standard constants (0, 1, (void *) 0).
2739 Initialize the global scope.
2740 Make definitions for built-in primitive functions. */
2741
2742 void
2743 c_init_decl_processing (void)
2744 {
2745 location_t save_loc = input_location;
2746
2747 /* Initialize reserved words for parser. */
2748 c_parse_init ();
2749
2750 current_function_decl = 0;
2751
2752 gcc_obstack_init (&parser_obstack);
2753
2754 /* Make the externals scope. */
2755 push_scope ();
2756 external_scope = current_scope;
2757
2758 /* Declarations from c_common_nodes_and_builtins must not be associated
2759 with this input file, lest we get differences between using and not
2760 using preprocessed headers. */
2761 #ifdef USE_MAPPED_LOCATION
2762 input_location = BUILTINS_LOCATION;
2763 #else
2764 input_location.file = "<built-in>";
2765 input_location.line = 0;
2766 #endif
2767
2768 build_common_tree_nodes (flag_signed_char, false);
2769
2770 c_common_nodes_and_builtins ();
2771
2772 /* In C, comparisons and TRUTH_* expressions have type int. */
2773 truthvalue_type_node = integer_type_node;
2774 truthvalue_true_node = integer_one_node;
2775 truthvalue_false_node = integer_zero_node;
2776
2777 /* Even in C99, which has a real boolean type. */
2778 pushdecl (build_decl (TYPE_DECL, get_identifier ("_Bool"),
2779 boolean_type_node));
2780
2781 input_location = save_loc;
2782
2783 pedantic_lvalues = true;
2784
2785 make_fname_decl = c_make_fname_decl;
2786 start_fname_decls ();
2787 }
2788
2789 /* Create the VAR_DECL for __FUNCTION__ etc. ID is the name to give the
2790 decl, NAME is the initialization string and TYPE_DEP indicates whether
2791 NAME depended on the type of the function. As we don't yet implement
2792 delayed emission of static data, we mark the decl as emitted
2793 so it is not placed in the output. Anything using it must therefore pull
2794 out the STRING_CST initializer directly. FIXME. */
2795
2796 static tree
2797 c_make_fname_decl (tree id, int type_dep)
2798 {
2799 const char *name = fname_as_string (type_dep);
2800 tree decl, type, init;
2801 size_t length = strlen (name);
2802
2803 type = build_array_type (char_type_node,
2804 build_index_type (size_int (length)));
2805 type = c_build_qualified_type (type, TYPE_QUAL_CONST);
2806
2807 decl = build_decl (VAR_DECL, id, type);
2808
2809 TREE_STATIC (decl) = 1;
2810 TREE_READONLY (decl) = 1;
2811 DECL_ARTIFICIAL (decl) = 1;
2812
2813 init = build_string (length + 1, name);
2814 free ((char *) name);
2815 TREE_TYPE (init) = type;
2816 DECL_INITIAL (decl) = init;
2817
2818 TREE_USED (decl) = 1;
2819
2820 if (current_function_decl
2821 /* For invalid programs like this:
2822
2823 void foo()
2824 const char* p = __FUNCTION__;
2825
2826 the __FUNCTION__ is believed to appear in K&R style function
2827 parameter declarator. In that case we still don't have
2828 function_scope. */
2829 && (!errorcount || current_function_scope))
2830 {
2831 DECL_CONTEXT (decl) = current_function_decl;
2832 bind (id, decl, current_function_scope,
2833 /*invisible=*/false, /*nested=*/false);
2834 }
2835
2836 finish_decl (decl, init, NULL_TREE);
2837
2838 return decl;
2839 }
2840
2841 tree
2842 c_builtin_function (tree decl)
2843 {
2844 tree type = TREE_TYPE (decl);
2845 tree id = DECL_NAME (decl);
2846
2847 const char *name = IDENTIFIER_POINTER (id);
2848 DECL_LANG_SPECIFIC (decl) = GGC_CNEW (struct lang_decl);
2849 C_DECL_BUILTIN_PROTOTYPE (decl) = (TYPE_ARG_TYPES (type) != 0);
2850
2851 /* Should never be called on a symbol with a preexisting meaning. */
2852 gcc_assert (!I_SYMBOL_BINDING (id));
2853
2854 bind (id, decl, external_scope, /*invisible=*/true, /*nested=*/false);
2855
2856 /* Builtins in the implementation namespace are made visible without
2857 needing to be explicitly declared. See push_file_scope. */
2858 if (name[0] == '_' && (name[1] == '_' || ISUPPER (name[1])))
2859 {
2860 TREE_CHAIN (decl) = visible_builtins;
2861 visible_builtins = decl;
2862 }
2863
2864 return decl;
2865 }
2866 \f
2867 /* Called when a declaration is seen that contains no names to declare.
2868 If its type is a reference to a structure, union or enum inherited
2869 from a containing scope, shadow that tag name for the current scope
2870 with a forward reference.
2871 If its type defines a new named structure or union
2872 or defines an enum, it is valid but we need not do anything here.
2873 Otherwise, it is an error. */
2874
2875 void
2876 shadow_tag (const struct c_declspecs *declspecs)
2877 {
2878 shadow_tag_warned (declspecs, 0);
2879 }
2880
2881 /* WARNED is 1 if we have done a pedwarn, 2 if we have done a warning,
2882 but no pedwarn. */
2883 void
2884 shadow_tag_warned (const struct c_declspecs *declspecs, int warned)
2885 {
2886 bool found_tag = false;
2887
2888 if (declspecs->type && !declspecs->default_int_p && !declspecs->typedef_p)
2889 {
2890 tree value = declspecs->type;
2891 enum tree_code code = TREE_CODE (value);
2892
2893 if (code == RECORD_TYPE || code == UNION_TYPE || code == ENUMERAL_TYPE)
2894 /* Used to test also that TYPE_SIZE (value) != 0.
2895 That caused warning for `struct foo;' at top level in the file. */
2896 {
2897 tree name = TYPE_NAME (value);
2898 tree t;
2899
2900 found_tag = true;
2901
2902 if (name == 0)
2903 {
2904 if (warned != 1 && code != ENUMERAL_TYPE)
2905 /* Empty unnamed enum OK */
2906 {
2907 pedwarn ("unnamed struct/union that defines no instances");
2908 warned = 1;
2909 }
2910 }
2911 else if (!declspecs->tag_defined_p
2912 && declspecs->storage_class != csc_none)
2913 {
2914 if (warned != 1)
2915 pedwarn ("empty declaration with storage class specifier "
2916 "does not redeclare tag");
2917 warned = 1;
2918 pending_xref_error ();
2919 }
2920 else if (!declspecs->tag_defined_p
2921 && (declspecs->const_p
2922 || declspecs->volatile_p
2923 || declspecs->restrict_p))
2924 {
2925 if (warned != 1)
2926 pedwarn ("empty declaration with type qualifier "
2927 "does not redeclare tag");
2928 warned = 1;
2929 pending_xref_error ();
2930 }
2931 else
2932 {
2933 pending_invalid_xref = 0;
2934 t = lookup_tag (code, name, 1);
2935
2936 if (t == 0)
2937 {
2938 t = make_node (code);
2939 pushtag (name, t);
2940 }
2941 }
2942 }
2943 else
2944 {
2945 if (warned != 1 && !in_system_header)
2946 {
2947 pedwarn ("useless type name in empty declaration");
2948 warned = 1;
2949 }
2950 }
2951 }
2952 else if (warned != 1 && !in_system_header && declspecs->typedef_p)
2953 {
2954 pedwarn ("useless type name in empty declaration");
2955 warned = 1;
2956 }
2957
2958 pending_invalid_xref = 0;
2959
2960 if (declspecs->inline_p)
2961 {
2962 error ("%<inline%> in empty declaration");
2963 warned = 1;
2964 }
2965
2966 if (current_scope == file_scope && declspecs->storage_class == csc_auto)
2967 {
2968 error ("%<auto%> in file-scope empty declaration");
2969 warned = 1;
2970 }
2971
2972 if (current_scope == file_scope && declspecs->storage_class == csc_register)
2973 {
2974 error ("%<register%> in file-scope empty declaration");
2975 warned = 1;
2976 }
2977
2978 if (!warned && !in_system_header && declspecs->storage_class != csc_none)
2979 {
2980 warning (0, "useless storage class specifier in empty declaration");
2981 warned = 2;
2982 }
2983
2984 if (!warned && !in_system_header && declspecs->thread_p)
2985 {
2986 warning (0, "useless %<__thread%> in empty declaration");
2987 warned = 2;
2988 }
2989
2990 if (!warned && !in_system_header && (declspecs->const_p
2991 || declspecs->volatile_p
2992 || declspecs->restrict_p))
2993 {
2994 warning (0, "useless type qualifier in empty declaration");
2995 warned = 2;
2996 }
2997
2998 if (warned != 1)
2999 {
3000 if (!found_tag)
3001 pedwarn ("empty declaration");
3002 }
3003 }
3004 \f
3005
3006 /* Return the qualifiers from SPECS as a bitwise OR of TYPE_QUAL_*
3007 bits. SPECS represents declaration specifiers that the grammar
3008 only permits to contain type qualifiers and attributes. */
3009
3010 int
3011 quals_from_declspecs (const struct c_declspecs *specs)
3012 {
3013 int quals = ((specs->const_p ? TYPE_QUAL_CONST : 0)
3014 | (specs->volatile_p ? TYPE_QUAL_VOLATILE : 0)
3015 | (specs->restrict_p ? TYPE_QUAL_RESTRICT : 0));
3016 gcc_assert (!specs->type
3017 && !specs->decl_attr
3018 && specs->typespec_word == cts_none
3019 && specs->storage_class == csc_none
3020 && !specs->typedef_p
3021 && !specs->explicit_signed_p
3022 && !specs->deprecated_p
3023 && !specs->long_p
3024 && !specs->long_long_p
3025 && !specs->short_p
3026 && !specs->signed_p
3027 && !specs->unsigned_p
3028 && !specs->complex_p
3029 && !specs->inline_p
3030 && !specs->thread_p);
3031 return quals;
3032 }
3033
3034 /* Construct an array declarator. EXPR is the expression inside [],
3035 or NULL_TREE. QUALS are the type qualifiers inside the [] (to be
3036 applied to the pointer to which a parameter array is converted).
3037 STATIC_P is true if "static" is inside the [], false otherwise.
3038 VLA_UNSPEC_P is true if the array is [*], a VLA of unspecified
3039 length which is nevertheless a complete type, false otherwise. The
3040 field for the contained declarator is left to be filled in by
3041 set_array_declarator_inner. */
3042
3043 struct c_declarator *
3044 build_array_declarator (tree expr, struct c_declspecs *quals, bool static_p,
3045 bool vla_unspec_p)
3046 {
3047 struct c_declarator *declarator = XOBNEW (&parser_obstack,
3048 struct c_declarator);
3049 declarator->kind = cdk_array;
3050 declarator->declarator = 0;
3051 declarator->u.array.dimen = expr;
3052 if (quals)
3053 {
3054 declarator->u.array.attrs = quals->attrs;
3055 declarator->u.array.quals = quals_from_declspecs (quals);
3056 }
3057 else
3058 {
3059 declarator->u.array.attrs = NULL_TREE;
3060 declarator->u.array.quals = 0;
3061 }
3062 declarator->u.array.static_p = static_p;
3063 declarator->u.array.vla_unspec_p = vla_unspec_p;
3064 if (pedantic && !flag_isoc99)
3065 {
3066 if (static_p || quals != NULL)
3067 pedwarn ("ISO C90 does not support %<static%> or type "
3068 "qualifiers in parameter array declarators");
3069 if (vla_unspec_p)
3070 pedwarn ("ISO C90 does not support %<[*]%> array declarators");
3071 }
3072 if (vla_unspec_p)
3073 {
3074 if (!current_scope->parm_flag)
3075 {
3076 /* C99 6.7.5.2p4 */
3077 error ("%<[*]%> not allowed in other than function prototype scope");
3078 declarator->u.array.vla_unspec_p = false;
3079 return NULL;
3080 }
3081 current_scope->had_vla_unspec = true;
3082 }
3083 return declarator;
3084 }
3085
3086 /* Set the contained declarator of an array declarator. DECL is the
3087 declarator, as constructed by build_array_declarator; INNER is what
3088 appears on the left of the []. ABSTRACT_P is true if it is an
3089 abstract declarator, false otherwise; this is used to reject static
3090 and type qualifiers in abstract declarators, where they are not in
3091 the C99 grammar (subject to possible change in DR#289). */
3092
3093 struct c_declarator *
3094 set_array_declarator_inner (struct c_declarator *decl,
3095 struct c_declarator *inner, bool abstract_p)
3096 {
3097 decl->declarator = inner;
3098 if (abstract_p && (decl->u.array.quals != TYPE_UNQUALIFIED
3099 || decl->u.array.attrs != NULL_TREE
3100 || decl->u.array.static_p))
3101 error ("static or type qualifiers in abstract declarator");
3102 return decl;
3103 }
3104
3105 /* INIT is a constructor that forms DECL's initializer. If the final
3106 element initializes a flexible array field, add the size of that
3107 initializer to DECL's size. */
3108
3109 static void
3110 add_flexible_array_elts_to_size (tree decl, tree init)
3111 {
3112 tree elt, type;
3113
3114 if (VEC_empty (constructor_elt, CONSTRUCTOR_ELTS (init)))
3115 return;
3116
3117 elt = VEC_last (constructor_elt, CONSTRUCTOR_ELTS (init))->value;
3118 type = TREE_TYPE (elt);
3119 if (TREE_CODE (type) == ARRAY_TYPE
3120 && TYPE_SIZE (type) == NULL_TREE
3121 && TYPE_DOMAIN (type) != NULL_TREE
3122 && TYPE_MAX_VALUE (TYPE_DOMAIN (type)) == NULL_TREE)
3123 {
3124 complete_array_type (&type, elt, false);
3125 DECL_SIZE (decl)
3126 = size_binop (PLUS_EXPR, DECL_SIZE (decl), TYPE_SIZE (type));
3127 DECL_SIZE_UNIT (decl)
3128 = size_binop (PLUS_EXPR, DECL_SIZE_UNIT (decl), TYPE_SIZE_UNIT (type));
3129 }
3130 }
3131 \f
3132 /* Decode a "typename", such as "int **", returning a ..._TYPE node. */
3133
3134 tree
3135 groktypename (struct c_type_name *type_name)
3136 {
3137 tree type;
3138 tree attrs = type_name->specs->attrs;
3139
3140 type_name->specs->attrs = NULL_TREE;
3141
3142 type = grokdeclarator (type_name->declarator, type_name->specs, TYPENAME,
3143 false, NULL, DEPRECATED_NORMAL);
3144
3145 /* Apply attributes. */
3146 decl_attributes (&type, attrs, 0);
3147
3148 return type;
3149 }
3150
3151 /* Decode a declarator in an ordinary declaration or data definition.
3152 This is called as soon as the type information and variable name
3153 have been parsed, before parsing the initializer if any.
3154 Here we create the ..._DECL node, fill in its type,
3155 and put it on the list of decls for the current context.
3156 The ..._DECL node is returned as the value.
3157
3158 Exception: for arrays where the length is not specified,
3159 the type is left null, to be filled in by `finish_decl'.
3160
3161 Function definitions do not come here; they go to start_function
3162 instead. However, external and forward declarations of functions
3163 do go through here. Structure field declarations are done by
3164 grokfield and not through here. */
3165
3166 tree
3167 start_decl (struct c_declarator *declarator, struct c_declspecs *declspecs,
3168 bool initialized, tree attributes)
3169 {
3170 tree decl;
3171 tree tem;
3172 enum deprecated_states deprecated_state = DEPRECATED_NORMAL;
3173
3174 /* An object declared as __attribute__((deprecated)) suppresses
3175 warnings of uses of other deprecated items. */
3176 if (lookup_attribute ("deprecated", attributes))
3177 deprecated_state = DEPRECATED_SUPPRESS;
3178
3179 decl = grokdeclarator (declarator, declspecs,
3180 NORMAL, initialized, NULL,
3181 deprecated_state);
3182 if (!decl)
3183 return 0;
3184
3185 if (warn_main > 0 && TREE_CODE (decl) != FUNCTION_DECL
3186 && MAIN_NAME_P (DECL_NAME (decl)))
3187 warning (OPT_Wmain, "%q+D is usually a function", decl);
3188
3189 if (initialized)
3190 /* Is it valid for this decl to have an initializer at all?
3191 If not, set INITIALIZED to zero, which will indirectly
3192 tell 'finish_decl' to ignore the initializer once it is parsed. */
3193 switch (TREE_CODE (decl))
3194 {
3195 case TYPE_DECL:
3196 error ("typedef %qD is initialized (use __typeof__ instead)", decl);
3197 initialized = 0;
3198 break;
3199
3200 case FUNCTION_DECL:
3201 error ("function %qD is initialized like a variable", decl);
3202 initialized = 0;
3203 break;
3204
3205 case PARM_DECL:
3206 /* DECL_INITIAL in a PARM_DECL is really DECL_ARG_TYPE. */
3207 error ("parameter %qD is initialized", decl);
3208 initialized = 0;
3209 break;
3210
3211 default:
3212 /* Don't allow initializations for incomplete types except for
3213 arrays which might be completed by the initialization. */
3214
3215 /* This can happen if the array size is an undefined macro.
3216 We already gave a warning, so we don't need another one. */
3217 if (TREE_TYPE (decl) == error_mark_node)
3218 initialized = 0;
3219 else if (COMPLETE_TYPE_P (TREE_TYPE (decl)))
3220 {
3221 /* A complete type is ok if size is fixed. */
3222
3223 if (TREE_CODE (TYPE_SIZE (TREE_TYPE (decl))) != INTEGER_CST
3224 || C_DECL_VARIABLE_SIZE (decl))
3225 {
3226 error ("variable-sized object may not be initialized");
3227 initialized = 0;
3228 }
3229 }
3230 else if (TREE_CODE (TREE_TYPE (decl)) != ARRAY_TYPE)
3231 {
3232 error ("variable %qD has initializer but incomplete type", decl);
3233 initialized = 0;
3234 }
3235 else if (C_DECL_VARIABLE_SIZE (decl))
3236 {
3237 /* Although C99 is unclear about whether incomplete arrays
3238 of VLAs themselves count as VLAs, it does not make
3239 sense to permit them to be initialized given that
3240 ordinary VLAs may not be initialized. */
3241 error ("variable-sized object may not be initialized");
3242 initialized = 0;
3243 }
3244 }
3245
3246 if (initialized)
3247 {
3248 if (current_scope == file_scope)
3249 TREE_STATIC (decl) = 1;
3250
3251 /* Tell 'pushdecl' this is an initialized decl
3252 even though we don't yet have the initializer expression.
3253 Also tell 'finish_decl' it may store the real initializer. */
3254 DECL_INITIAL (decl) = error_mark_node;
3255 }
3256
3257 /* If this is a function declaration, write a record describing it to the
3258 prototypes file (if requested). */
3259
3260 if (TREE_CODE (decl) == FUNCTION_DECL)
3261 gen_aux_info_record (decl, 0, 0, TYPE_ARG_TYPES (TREE_TYPE (decl)) != 0);
3262
3263 /* ANSI specifies that a tentative definition which is not merged with
3264 a non-tentative definition behaves exactly like a definition with an
3265 initializer equal to zero. (Section 3.7.2)
3266
3267 -fno-common gives strict ANSI behavior, though this tends to break
3268 a large body of code that grew up without this rule.
3269
3270 Thread-local variables are never common, since there's no entrenched
3271 body of code to break, and it allows more efficient variable references
3272 in the presence of dynamic linking. */
3273
3274 if (TREE_CODE (decl) == VAR_DECL
3275 && !initialized
3276 && TREE_PUBLIC (decl)
3277 && !DECL_THREAD_LOCAL_P (decl)
3278 && !flag_no_common)
3279 DECL_COMMON (decl) = 1;
3280
3281 /* Set attributes here so if duplicate decl, will have proper attributes. */
3282 decl_attributes (&decl, attributes, 0);
3283
3284 /* Handle gnu_inline attribute. */
3285 if (declspecs->inline_p
3286 && !flag_gnu89_inline
3287 && TREE_CODE (decl) == FUNCTION_DECL
3288 && lookup_attribute ("gnu_inline", DECL_ATTRIBUTES (decl)))
3289 {
3290 if (declspecs->storage_class == csc_auto && current_scope != file_scope)
3291 ;
3292 else if (declspecs->storage_class != csc_static)
3293 DECL_EXTERNAL (decl) = !DECL_EXTERNAL (decl);
3294 }
3295
3296 if (TREE_CODE (decl) == FUNCTION_DECL
3297 && targetm.calls.promote_prototypes (TREE_TYPE (decl)))
3298 {
3299 struct c_declarator *ce = declarator;
3300
3301 if (ce->kind == cdk_pointer)
3302 ce = declarator->declarator;
3303 if (ce->kind == cdk_function)
3304 {
3305 tree args = ce->u.arg_info->parms;
3306 for (; args; args = TREE_CHAIN (args))
3307 {
3308 tree type = TREE_TYPE (args);
3309 if (type && INTEGRAL_TYPE_P (type)
3310 && TYPE_PRECISION (type) < TYPE_PRECISION (integer_type_node))
3311 DECL_ARG_TYPE (args) = integer_type_node;
3312 }
3313 }
3314 }
3315
3316 if (TREE_CODE (decl) == FUNCTION_DECL
3317 && DECL_DECLARED_INLINE_P (decl)
3318 && DECL_UNINLINABLE (decl)
3319 && lookup_attribute ("noinline", DECL_ATTRIBUTES (decl)))
3320 warning (OPT_Wattributes, "inline function %q+D given attribute noinline",
3321 decl);
3322
3323 /* C99 6.7.4p3: An inline definition of a function with external
3324 linkage shall not contain a definition of a modifiable object
3325 with static storage duration... */
3326 if (TREE_CODE (decl) == VAR_DECL
3327 && current_scope != file_scope
3328 && TREE_STATIC (decl)
3329 && DECL_DECLARED_INLINE_P (current_function_decl)
3330 && DECL_EXTERNAL (current_function_decl))
3331 pedwarn ("%q+D is static but declared in inline function %qD "
3332 "which is not static", decl, current_function_decl);
3333
3334 /* Add this decl to the current scope.
3335 TEM may equal DECL or it may be a previous decl of the same name. */
3336 tem = pushdecl (decl);
3337
3338 if (initialized && DECL_EXTERNAL (tem))
3339 {
3340 DECL_EXTERNAL (tem) = 0;
3341 TREE_STATIC (tem) = 1;
3342 }
3343
3344 return tem;
3345 }
3346
3347 /* Initialize EH if not initialized yet and exceptions are enabled. */
3348
3349 void
3350 c_maybe_initialize_eh (void)
3351 {
3352 if (!flag_exceptions || c_eh_initialized_p)
3353 return;
3354
3355 c_eh_initialized_p = true;
3356 eh_personality_libfunc
3357 = init_one_libfunc (USING_SJLJ_EXCEPTIONS
3358 ? "__gcc_personality_sj0"
3359 : "__gcc_personality_v0");
3360 default_init_unwind_resume_libfunc ();
3361 using_eh_for_cleanups ();
3362 }
3363
3364 /* Finish processing of a declaration;
3365 install its initial value.
3366 If the length of an array type is not known before,
3367 it must be determined now, from the initial value, or it is an error. */
3368
3369 void
3370 finish_decl (tree decl, tree init, tree asmspec_tree)
3371 {
3372 tree type;
3373 int was_incomplete = (DECL_SIZE (decl) == 0);
3374 const char *asmspec = 0;
3375
3376 /* If a name was specified, get the string. */
3377 if ((TREE_CODE (decl) == FUNCTION_DECL || TREE_CODE (decl) == VAR_DECL)
3378 && DECL_FILE_SCOPE_P (decl))
3379 asmspec_tree = maybe_apply_renaming_pragma (decl, asmspec_tree);
3380 if (asmspec_tree)
3381 asmspec = TREE_STRING_POINTER (asmspec_tree);
3382
3383 /* If `start_decl' didn't like having an initialization, ignore it now. */
3384 if (init != 0 && DECL_INITIAL (decl) == 0)
3385 init = 0;
3386
3387 /* Don't crash if parm is initialized. */
3388 if (TREE_CODE (decl) == PARM_DECL)
3389 init = 0;
3390
3391 if (init)
3392 store_init_value (decl, init);
3393
3394 if (c_dialect_objc () && (TREE_CODE (decl) == VAR_DECL
3395 || TREE_CODE (decl) == FUNCTION_DECL
3396 || TREE_CODE (decl) == FIELD_DECL))
3397 objc_check_decl (decl);
3398
3399 type = TREE_TYPE (decl);
3400
3401 /* Deduce size of array from initialization, if not already known. */
3402 if (TREE_CODE (type) == ARRAY_TYPE
3403 && TYPE_DOMAIN (type) == 0
3404 && TREE_CODE (decl) != TYPE_DECL)
3405 {
3406 bool do_default
3407 = (TREE_STATIC (decl)
3408 /* Even if pedantic, an external linkage array
3409 may have incomplete type at first. */
3410 ? pedantic && !TREE_PUBLIC (decl)
3411 : !DECL_EXTERNAL (decl));
3412 int failure
3413 = complete_array_type (&TREE_TYPE (decl), DECL_INITIAL (decl),
3414 do_default);
3415
3416 /* Get the completed type made by complete_array_type. */
3417 type = TREE_TYPE (decl);
3418
3419 switch (failure)
3420 {
3421 case 1:
3422 error ("initializer fails to determine size of %q+D", decl);
3423 break;
3424
3425 case 2:
3426 if (do_default)
3427 error ("array size missing in %q+D", decl);
3428 /* If a `static' var's size isn't known,
3429 make it extern as well as static, so it does not get
3430 allocated.
3431 If it is not `static', then do not mark extern;
3432 finish_incomplete_decl will give it a default size
3433 and it will get allocated. */
3434 else if (!pedantic && TREE_STATIC (decl) && !TREE_PUBLIC (decl))
3435 DECL_EXTERNAL (decl) = 1;
3436 break;
3437
3438 case 3:
3439 error ("zero or negative size array %q+D", decl);
3440 break;
3441
3442 case 0:
3443 /* For global variables, update the copy of the type that
3444 exists in the binding. */
3445 if (TREE_PUBLIC (decl))
3446 {
3447 struct c_binding *b_ext = I_SYMBOL_BINDING (DECL_NAME (decl));
3448 while (b_ext && !B_IN_EXTERNAL_SCOPE (b_ext))
3449 b_ext = b_ext->shadowed;
3450 if (b_ext)
3451 {
3452 if (b_ext->type)
3453 b_ext->type = composite_type (b_ext->type, type);
3454 else
3455 b_ext->type = type;
3456 }
3457 }
3458 break;
3459
3460 default:
3461 gcc_unreachable ();
3462 }
3463
3464 if (DECL_INITIAL (decl))
3465 TREE_TYPE (DECL_INITIAL (decl)) = type;
3466
3467 layout_decl (decl, 0);
3468 }
3469
3470 if (TREE_CODE (decl) == VAR_DECL)
3471 {
3472 if (init && TREE_CODE (init) == CONSTRUCTOR)
3473 add_flexible_array_elts_to_size (decl, init);
3474
3475 if (DECL_SIZE (decl) == 0 && TREE_TYPE (decl) != error_mark_node
3476 && COMPLETE_TYPE_P (TREE_TYPE (decl)))
3477 layout_decl (decl, 0);
3478
3479 if (DECL_SIZE (decl) == 0
3480 /* Don't give an error if we already gave one earlier. */
3481 && TREE_TYPE (decl) != error_mark_node
3482 && (TREE_STATIC (decl)
3483 /* A static variable with an incomplete type
3484 is an error if it is initialized.
3485 Also if it is not file scope.
3486 Otherwise, let it through, but if it is not `extern'
3487 then it may cause an error message later. */
3488 ? (DECL_INITIAL (decl) != 0
3489 || !DECL_FILE_SCOPE_P (decl))
3490 /* An automatic variable with an incomplete type
3491 is an error. */
3492 : !DECL_EXTERNAL (decl)))
3493 {
3494 error ("storage size of %q+D isn%'t known", decl);
3495 TREE_TYPE (decl) = error_mark_node;
3496 }
3497
3498 if ((DECL_EXTERNAL (decl) || TREE_STATIC (decl))
3499 && DECL_SIZE (decl) != 0)
3500 {
3501 if (TREE_CODE (DECL_SIZE (decl)) == INTEGER_CST)
3502 constant_expression_warning (DECL_SIZE (decl));
3503 else
3504 error ("storage size of %q+D isn%'t constant", decl);
3505 }
3506
3507 if (TREE_USED (type))
3508 TREE_USED (decl) = 1;
3509 }
3510
3511 /* If this is a function and an assembler name is specified, reset DECL_RTL
3512 so we can give it its new name. Also, update built_in_decls if it
3513 was a normal built-in. */
3514 if (TREE_CODE (decl) == FUNCTION_DECL && asmspec)
3515 {
3516 if (DECL_BUILT_IN_CLASS (decl) == BUILT_IN_NORMAL)
3517 set_builtin_user_assembler_name (decl, asmspec);
3518 set_user_assembler_name (decl, asmspec);
3519 }
3520
3521 /* If #pragma weak was used, mark the decl weak now. */
3522 maybe_apply_pragma_weak (decl);
3523
3524 /* Output the assembler code and/or RTL code for variables and functions,
3525 unless the type is an undefined structure or union.
3526 If not, it will get done when the type is completed. */
3527
3528 if (TREE_CODE (decl) == VAR_DECL || TREE_CODE (decl) == FUNCTION_DECL)
3529 {
3530 /* Determine the ELF visibility. */
3531 if (TREE_PUBLIC (decl))
3532 c_determine_visibility (decl);
3533
3534 /* This is a no-op in c-lang.c or something real in objc-act.c. */
3535 if (c_dialect_objc ())
3536 objc_check_decl (decl);
3537
3538 if (asmspec)
3539 {
3540 /* If this is not a static variable, issue a warning.
3541 It doesn't make any sense to give an ASMSPEC for an
3542 ordinary, non-register local variable. Historically,
3543 GCC has accepted -- but ignored -- the ASMSPEC in
3544 this case. */
3545 if (!DECL_FILE_SCOPE_P (decl)
3546 && TREE_CODE (decl) == VAR_DECL
3547 && !C_DECL_REGISTER (decl)
3548 && !TREE_STATIC (decl))
3549 warning (0, "ignoring asm-specifier for non-static local "
3550 "variable %q+D", decl);
3551 else
3552 set_user_assembler_name (decl, asmspec);
3553 }
3554
3555 if (DECL_FILE_SCOPE_P (decl))
3556 {
3557 if (DECL_INITIAL (decl) == NULL_TREE
3558 || DECL_INITIAL (decl) == error_mark_node)
3559 /* Don't output anything
3560 when a tentative file-scope definition is seen.
3561 But at end of compilation, do output code for them. */
3562 DECL_DEFER_OUTPUT (decl) = 1;
3563 rest_of_decl_compilation (decl, true, 0);
3564 }
3565 else
3566 {
3567 /* In conjunction with an ASMSPEC, the `register'
3568 keyword indicates that we should place the variable
3569 in a particular register. */
3570 if (asmspec && C_DECL_REGISTER (decl))
3571 {
3572 DECL_HARD_REGISTER (decl) = 1;
3573 /* This cannot be done for a structure with volatile
3574 fields, on which DECL_REGISTER will have been
3575 reset. */
3576 if (!DECL_REGISTER (decl))
3577 error ("cannot put object with volatile field into register");
3578 }
3579
3580 if (TREE_CODE (decl) != FUNCTION_DECL)
3581 {
3582 /* If we're building a variable sized type, and we might be
3583 reachable other than via the top of the current binding
3584 level, then create a new BIND_EXPR so that we deallocate
3585 the object at the right time. */
3586 /* Note that DECL_SIZE can be null due to errors. */
3587 if (DECL_SIZE (decl)
3588 && !TREE_CONSTANT (DECL_SIZE (decl))
3589 && STATEMENT_LIST_HAS_LABEL (cur_stmt_list))
3590 {
3591 tree bind;
3592 bind = build3 (BIND_EXPR, void_type_node, NULL, NULL, NULL);
3593 TREE_SIDE_EFFECTS (bind) = 1;
3594 add_stmt (bind);
3595 BIND_EXPR_BODY (bind) = push_stmt_list ();
3596 }
3597 add_stmt (build_stmt (DECL_EXPR, decl));
3598 }
3599 }
3600
3601
3602 if (!DECL_FILE_SCOPE_P (decl))
3603 {
3604 /* Recompute the RTL of a local array now
3605 if it used to be an incomplete type. */
3606 if (was_incomplete
3607 && !TREE_STATIC (decl) && !DECL_EXTERNAL (decl))
3608 {
3609 /* If we used it already as memory, it must stay in memory. */
3610 TREE_ADDRESSABLE (decl) = TREE_USED (decl);
3611 /* If it's still incomplete now, no init will save it. */
3612 if (DECL_SIZE (decl) == 0)
3613 DECL_INITIAL (decl) = 0;
3614 }
3615 }
3616 }
3617
3618 /* If this was marked 'used', be sure it will be output. */
3619 if (!flag_unit_at_a_time && lookup_attribute ("used", DECL_ATTRIBUTES (decl)))
3620 mark_decl_referenced (decl);
3621
3622 if (TREE_CODE (decl) == TYPE_DECL)
3623 {
3624 if (!DECL_FILE_SCOPE_P (decl)
3625 && variably_modified_type_p (TREE_TYPE (decl), NULL_TREE))
3626 add_stmt (build_stmt (DECL_EXPR, decl));
3627
3628 rest_of_decl_compilation (decl, DECL_FILE_SCOPE_P (decl), 0);
3629 }
3630
3631 /* At the end of a declaration, throw away any variable type sizes
3632 of types defined inside that declaration. There is no use
3633 computing them in the following function definition. */
3634 if (current_scope == file_scope)
3635 get_pending_sizes ();
3636
3637 /* Install a cleanup (aka destructor) if one was given. */
3638 if (TREE_CODE (decl) == VAR_DECL && !TREE_STATIC (decl))
3639 {
3640 tree attr = lookup_attribute ("cleanup", DECL_ATTRIBUTES (decl));
3641 if (attr)
3642 {
3643 tree cleanup_id = TREE_VALUE (TREE_VALUE (attr));
3644 tree cleanup_decl = lookup_name (cleanup_id);
3645 tree cleanup;
3646
3647 /* Build "cleanup(&decl)" for the destructor. */
3648 cleanup = build_unary_op (ADDR_EXPR, decl, 0);
3649 cleanup = build_tree_list (NULL_TREE, cleanup);
3650 cleanup = build_function_call (cleanup_decl, cleanup);
3651
3652 /* Don't warn about decl unused; the cleanup uses it. */
3653 TREE_USED (decl) = 1;
3654 TREE_USED (cleanup_decl) = 1;
3655
3656 /* Initialize EH, if we've been told to do so. */
3657 c_maybe_initialize_eh ();
3658
3659 push_cleanup (decl, cleanup, false);
3660 }
3661 }
3662 }
3663
3664 /* Given a parsed parameter declaration, decode it into a PARM_DECL. */
3665
3666 tree
3667 grokparm (const struct c_parm *parm)
3668 {
3669 tree decl = grokdeclarator (parm->declarator, parm->specs, PARM, false,
3670 NULL, DEPRECATED_NORMAL);
3671
3672 decl_attributes (&decl, parm->attrs, 0);
3673
3674 return decl;
3675 }
3676
3677 /* Given a parsed parameter declaration, decode it into a PARM_DECL
3678 and push that on the current scope. */
3679
3680 void
3681 push_parm_decl (const struct c_parm *parm)
3682 {
3683 tree decl;
3684
3685 decl = grokdeclarator (parm->declarator, parm->specs, PARM, false, NULL,
3686 DEPRECATED_NORMAL);
3687 decl_attributes (&decl, parm->attrs, 0);
3688
3689 decl = pushdecl (decl);
3690
3691 finish_decl (decl, NULL_TREE, NULL_TREE);
3692 }
3693
3694 /* Mark all the parameter declarations to date as forward decls.
3695 Also diagnose use of this extension. */
3696
3697 void
3698 mark_forward_parm_decls (void)
3699 {
3700 struct c_binding *b;
3701
3702 if (pedantic && !current_scope->warned_forward_parm_decls)
3703 {
3704 pedwarn ("ISO C forbids forward parameter declarations");
3705 current_scope->warned_forward_parm_decls = true;
3706 }
3707
3708 for (b = current_scope->bindings; b; b = b->prev)
3709 if (TREE_CODE (b->decl) == PARM_DECL)
3710 TREE_ASM_WRITTEN (b->decl) = 1;
3711 }
3712 \f
3713 /* Build a COMPOUND_LITERAL_EXPR. TYPE is the type given in the compound
3714 literal, which may be an incomplete array type completed by the
3715 initializer; INIT is a CONSTRUCTOR that initializes the compound
3716 literal. */
3717
3718 tree
3719 build_compound_literal (tree type, tree init)
3720 {
3721 /* We do not use start_decl here because we have a type, not a declarator;
3722 and do not use finish_decl because the decl should be stored inside
3723 the COMPOUND_LITERAL_EXPR rather than added elsewhere as a DECL_EXPR. */
3724 tree decl;
3725 tree complit;
3726 tree stmt;
3727
3728 if (type == error_mark_node)
3729 return error_mark_node;
3730
3731 decl = build_decl (VAR_DECL, NULL_TREE, type);
3732 DECL_EXTERNAL (decl) = 0;
3733 TREE_PUBLIC (decl) = 0;
3734 TREE_STATIC (decl) = (current_scope == file_scope);
3735 DECL_CONTEXT (decl) = current_function_decl;
3736 TREE_USED (decl) = 1;
3737 TREE_TYPE (decl) = type;
3738 TREE_READONLY (decl) = TYPE_READONLY (type);
3739 store_init_value (decl, init);
3740
3741 if (TREE_CODE (type) == ARRAY_TYPE && !COMPLETE_TYPE_P (type))
3742 {
3743 int failure = complete_array_type (&TREE_TYPE (decl),
3744 DECL_INITIAL (decl), true);
3745 gcc_assert (!failure);
3746
3747 type = TREE_TYPE (decl);
3748 TREE_TYPE (DECL_INITIAL (decl)) = type;
3749 }
3750
3751 if (type == error_mark_node || !COMPLETE_TYPE_P (type))
3752 return error_mark_node;
3753
3754 stmt = build_stmt (DECL_EXPR, decl);
3755 complit = build1 (COMPOUND_LITERAL_EXPR, type, stmt);
3756 TREE_SIDE_EFFECTS (complit) = 1;
3757
3758 layout_decl (decl, 0);
3759
3760 if (TREE_STATIC (decl))
3761 {
3762 /* This decl needs a name for the assembler output. */
3763 set_compound_literal_name (decl);
3764 DECL_DEFER_OUTPUT (decl) = 1;
3765 DECL_COMDAT (decl) = 1;
3766 DECL_ARTIFICIAL (decl) = 1;
3767 DECL_IGNORED_P (decl) = 1;
3768 pushdecl (decl);
3769 rest_of_decl_compilation (decl, 1, 0);
3770 }
3771
3772 return complit;
3773 }
3774 \f
3775 /* Determine whether TYPE is a structure with a flexible array member,
3776 or a union containing such a structure (possibly recursively). */
3777
3778 static bool
3779 flexible_array_type_p (tree type)
3780 {
3781 tree x;
3782 switch (TREE_CODE (type))
3783 {
3784 case RECORD_TYPE:
3785 x = TYPE_FIELDS (type);
3786 if (x == NULL_TREE)
3787 return false;
3788 while (TREE_CHAIN (x) != NULL_TREE)
3789 x = TREE_CHAIN (x);
3790 if (TREE_CODE (TREE_TYPE (x)) == ARRAY_TYPE
3791 && TYPE_SIZE (TREE_TYPE (x)) == NULL_TREE
3792 && TYPE_DOMAIN (TREE_TYPE (x)) != NULL_TREE
3793 && TYPE_MAX_VALUE (TYPE_DOMAIN (TREE_TYPE (x))) == NULL_TREE)
3794 return true;
3795 return false;
3796 case UNION_TYPE:
3797 for (x = TYPE_FIELDS (type); x != NULL_TREE; x = TREE_CHAIN (x))
3798 {
3799 if (flexible_array_type_p (TREE_TYPE (x)))
3800 return true;
3801 }
3802 return false;
3803 default:
3804 return false;
3805 }
3806 }
3807 \f
3808 /* Performs sanity checks on the TYPE and WIDTH of the bit-field NAME,
3809 replacing with appropriate values if they are invalid. */
3810 static void
3811 check_bitfield_type_and_width (tree *type, tree *width, const char *orig_name)
3812 {
3813 tree type_mv;
3814 unsigned int max_width;
3815 unsigned HOST_WIDE_INT w;
3816 const char *name = orig_name ? orig_name: _("<anonymous>");
3817
3818 /* Detect and ignore out of range field width and process valid
3819 field widths. */
3820 if (!INTEGRAL_TYPE_P (TREE_TYPE (*width))
3821 || TREE_CODE (*width) != INTEGER_CST)
3822 {
3823 error ("bit-field %qs width not an integer constant", name);
3824 *width = integer_one_node;
3825 }
3826 else
3827 {
3828 constant_expression_warning (*width);
3829 if (tree_int_cst_sgn (*width) < 0)
3830 {
3831 error ("negative width in bit-field %qs", name);
3832 *width = integer_one_node;
3833 }
3834 else if (integer_zerop (*width) && orig_name)
3835 {
3836 error ("zero width for bit-field %qs", name);
3837 *width = integer_one_node;
3838 }
3839 }
3840
3841 /* Detect invalid bit-field type. */
3842 if (TREE_CODE (*type) != INTEGER_TYPE
3843 && TREE_CODE (*type) != BOOLEAN_TYPE
3844 && TREE_CODE (*type) != ENUMERAL_TYPE)
3845 {
3846 error ("bit-field %qs has invalid type", name);
3847 *type = unsigned_type_node;
3848 }
3849
3850 type_mv = TYPE_MAIN_VARIANT (*type);
3851 if (pedantic
3852 && !in_system_header
3853 && type_mv != integer_type_node
3854 && type_mv != unsigned_type_node
3855 && type_mv != boolean_type_node)
3856 pedwarn ("type of bit-field %qs is a GCC extension", name);
3857
3858 if (type_mv == boolean_type_node)
3859 max_width = CHAR_TYPE_SIZE;
3860 else
3861 max_width = TYPE_PRECISION (*type);
3862
3863 if (0 < compare_tree_int (*width, max_width))
3864 {
3865 error ("width of %qs exceeds its type", name);
3866 w = max_width;
3867 *width = build_int_cst (NULL_TREE, w);
3868 }
3869 else
3870 w = tree_low_cst (*width, 1);
3871
3872 if (TREE_CODE (*type) == ENUMERAL_TYPE)
3873 {
3874 struct lang_type *lt = TYPE_LANG_SPECIFIC (*type);
3875 if (!lt
3876 || w < min_precision (lt->enum_min, TYPE_UNSIGNED (*type))
3877 || w < min_precision (lt->enum_max, TYPE_UNSIGNED (*type)))
3878 warning (0, "%qs is narrower than values of its type", name);
3879 }
3880 }
3881
3882 \f
3883
3884 /* Print warning about variable length array if necessary. */
3885
3886 static void
3887 warn_variable_length_array (const char *name, tree size)
3888 {
3889 int ped = !flag_isoc99 && pedantic && warn_vla != 0;
3890 int const_size = TREE_CONSTANT (size);
3891
3892 if (ped)
3893 {
3894 if (const_size)
3895 {
3896 if (name)
3897 pedwarn ("ISO C90 forbids array %qs whose size "
3898 "can%'t be evaluated",
3899 name);
3900 else
3901 pedwarn ("ISO C90 forbids array whose size "
3902 "can%'t be evaluated");
3903 }
3904 else
3905 {
3906 if (name)
3907 pedwarn ("ISO C90 forbids variable length array %qs",
3908 name);
3909 else
3910 pedwarn ("ISO C90 forbids variable length array");
3911 }
3912 }
3913 else if (warn_vla > 0)
3914 {
3915 if (const_size)
3916 {
3917 if (name)
3918 warning (OPT_Wvla,
3919 "the size of array %qs can"
3920 "%'t be evaluated", name);
3921 else
3922 warning (OPT_Wvla,
3923 "the size of array can %'t be evaluated");
3924 }
3925 else
3926 {
3927 if (name)
3928 warning (OPT_Wvla,
3929 "variable length array %qs is used",
3930 name);
3931 else
3932 warning (OPT_Wvla,
3933 "variable length array is used");
3934 }
3935 }
3936 }
3937
3938 /* Given declspecs and a declarator,
3939 determine the name and type of the object declared
3940 and construct a ..._DECL node for it.
3941 (In one case we can return a ..._TYPE node instead.
3942 For invalid input we sometimes return 0.)
3943
3944 DECLSPECS is a c_declspecs structure for the declaration specifiers.
3945
3946 DECL_CONTEXT says which syntactic context this declaration is in:
3947 NORMAL for most contexts. Make a VAR_DECL or FUNCTION_DECL or TYPE_DECL.
3948 FUNCDEF for a function definition. Like NORMAL but a few different
3949 error messages in each case. Return value may be zero meaning
3950 this definition is too screwy to try to parse.
3951 PARM for a parameter declaration (either within a function prototype
3952 or before a function body). Make a PARM_DECL, or return void_type_node.
3953 TYPENAME if for a typename (in a cast or sizeof).
3954 Don't make a DECL node; just return the ..._TYPE node.
3955 FIELD for a struct or union field; make a FIELD_DECL.
3956 INITIALIZED is true if the decl has an initializer.
3957 WIDTH is non-NULL for bit-fields, and is a pointer to an INTEGER_CST node
3958 representing the width of the bit-field.
3959 DEPRECATED_STATE is a deprecated_states value indicating whether
3960 deprecation warnings should be suppressed.
3961
3962 In the TYPENAME case, DECLARATOR is really an absolute declarator.
3963 It may also be so in the PARM case, for a prototype where the
3964 argument type is specified but not the name.
3965
3966 This function is where the complicated C meanings of `static'
3967 and `extern' are interpreted. */
3968
3969 static tree
3970 grokdeclarator (const struct c_declarator *declarator,
3971 struct c_declspecs *declspecs,
3972 enum decl_context decl_context, bool initialized, tree *width,
3973 enum deprecated_states deprecated_state)
3974 {
3975 tree type = declspecs->type;
3976 bool threadp = declspecs->thread_p;
3977 enum c_storage_class storage_class = declspecs->storage_class;
3978 int constp;
3979 int restrictp;
3980 int volatilep;
3981 int type_quals = TYPE_UNQUALIFIED;
3982 const char *name, *orig_name;
3983 tree typedef_type = 0;
3984 bool funcdef_flag = false;
3985 bool funcdef_syntax = false;
3986 int size_varies = 0;
3987 tree decl_attr = declspecs->decl_attr;
3988 int array_ptr_quals = TYPE_UNQUALIFIED;
3989 tree array_ptr_attrs = NULL_TREE;
3990 int array_parm_static = 0;
3991 bool array_parm_vla_unspec_p = false;
3992 tree returned_attrs = NULL_TREE;
3993 bool bitfield = width != NULL;
3994 tree element_type;
3995 struct c_arg_info *arg_info = 0;
3996
3997 if (decl_context == FUNCDEF)
3998 funcdef_flag = true, decl_context = NORMAL;
3999
4000 /* Look inside a declarator for the name being declared
4001 and get it as a string, for an error message. */
4002 {
4003 const struct c_declarator *decl = declarator;
4004 name = 0;
4005
4006 while (decl)
4007 switch (decl->kind)
4008 {
4009 case cdk_function:
4010 case cdk_array:
4011 case cdk_pointer:
4012 funcdef_syntax = (decl->kind == cdk_function);
4013 decl = decl->declarator;
4014 break;
4015
4016 case cdk_attrs:
4017 decl = decl->declarator;
4018 break;
4019
4020 case cdk_id:
4021 if (decl->u.id)
4022 name = IDENTIFIER_POINTER (decl->u.id);
4023 decl = 0;
4024 break;
4025
4026 default:
4027 gcc_unreachable ();
4028 }
4029 orig_name = name;
4030 if (name == 0)
4031 name = "type name";
4032 }
4033
4034 /* A function definition's declarator must have the form of
4035 a function declarator. */
4036
4037 if (funcdef_flag && !funcdef_syntax)
4038 return 0;
4039
4040 /* If this looks like a function definition, make it one,
4041 even if it occurs where parms are expected.
4042 Then store_parm_decls will reject it and not use it as a parm. */
4043 if (decl_context == NORMAL && !funcdef_flag && current_scope->parm_flag)
4044 decl_context = PARM;
4045
4046 if (declspecs->deprecated_p && deprecated_state != DEPRECATED_SUPPRESS)
4047 warn_deprecated_use (declspecs->type);
4048
4049 if ((decl_context == NORMAL || decl_context == FIELD)
4050 && current_scope == file_scope
4051 && variably_modified_type_p (type, NULL_TREE))
4052 {
4053 error ("variably modified %qs at file scope", name);
4054 type = integer_type_node;
4055 }
4056
4057 typedef_type = type;
4058 size_varies = C_TYPE_VARIABLE_SIZE (type);
4059
4060 /* Diagnose defaulting to "int". */
4061
4062 if (declspecs->default_int_p && !in_system_header)
4063 {
4064 /* Issue a warning if this is an ISO C 99 program or if
4065 -Wreturn-type and this is a function, or if -Wimplicit;
4066 prefer the former warning since it is more explicit. */
4067 if ((warn_implicit_int || warn_return_type || flag_isoc99)
4068 && funcdef_flag)
4069 warn_about_return_type = 1;
4070 else if (warn_implicit_int || flag_isoc99)
4071 pedwarn_c99 ("type defaults to %<int%> in declaration of %qs", name);
4072 }
4073
4074 /* Adjust the type if a bit-field is being declared,
4075 -funsigned-bitfields applied and the type is not explicitly
4076 "signed". */
4077 if (bitfield && !flag_signed_bitfields && !declspecs->explicit_signed_p
4078 && TREE_CODE (type) == INTEGER_TYPE)
4079 type = c_common_unsigned_type (type);
4080
4081 /* Figure out the type qualifiers for the declaration. There are
4082 two ways a declaration can become qualified. One is something
4083 like `const int i' where the `const' is explicit. Another is
4084 something like `typedef const int CI; CI i' where the type of the
4085 declaration contains the `const'. A third possibility is that
4086 there is a type qualifier on the element type of a typedefed
4087 array type, in which case we should extract that qualifier so
4088 that c_apply_type_quals_to_decls receives the full list of
4089 qualifiers to work with (C90 is not entirely clear about whether
4090 duplicate qualifiers should be diagnosed in this case, but it
4091 seems most appropriate to do so). */
4092 element_type = strip_array_types (type);
4093 constp = declspecs->const_p + TYPE_READONLY (element_type);
4094 restrictp = declspecs->restrict_p + TYPE_RESTRICT (element_type);
4095 volatilep = declspecs->volatile_p + TYPE_VOLATILE (element_type);
4096 if (pedantic && !flag_isoc99)
4097 {
4098 if (constp > 1)
4099 pedwarn ("duplicate %<const%>");
4100 if (restrictp > 1)
4101 pedwarn ("duplicate %<restrict%>");
4102 if (volatilep > 1)
4103 pedwarn ("duplicate %<volatile%>");
4104 }
4105 if (!flag_gen_aux_info && (TYPE_QUALS (element_type)))
4106 type = TYPE_MAIN_VARIANT (type);
4107 type_quals = ((constp ? TYPE_QUAL_CONST : 0)
4108 | (restrictp ? TYPE_QUAL_RESTRICT : 0)
4109 | (volatilep ? TYPE_QUAL_VOLATILE : 0));
4110
4111 /* Warn about storage classes that are invalid for certain
4112 kinds of declarations (parameters, typenames, etc.). */
4113
4114 if (funcdef_flag
4115 && (threadp
4116 || storage_class == csc_auto
4117 || storage_class == csc_register
4118 || storage_class == csc_typedef))
4119 {
4120 if (storage_class == csc_auto
4121 && (pedantic || current_scope == file_scope))
4122 pedwarn ("function definition declared %<auto%>");
4123 if (storage_class == csc_register)
4124 error ("function definition declared %<register%>");
4125 if (storage_class == csc_typedef)
4126 error ("function definition declared %<typedef%>");
4127 if (threadp)
4128 error ("function definition declared %<__thread%>");
4129 threadp = false;
4130 if (storage_class == csc_auto
4131 || storage_class == csc_register
4132 || storage_class == csc_typedef)
4133 storage_class = csc_none;
4134 }
4135 else if (decl_context != NORMAL && (storage_class != csc_none || threadp))
4136 {
4137 if (decl_context == PARM && storage_class == csc_register)
4138 ;
4139 else
4140 {
4141 switch (decl_context)
4142 {
4143 case FIELD:
4144 error ("storage class specified for structure field %qs",
4145 name);
4146 break;
4147 case PARM:
4148 error ("storage class specified for parameter %qs", name);
4149 break;
4150 default:
4151 error ("storage class specified for typename");
4152 break;
4153 }
4154 storage_class = csc_none;
4155 threadp = false;
4156 }
4157 }
4158 else if (storage_class == csc_extern
4159 && initialized
4160 && !funcdef_flag)
4161 {
4162 /* 'extern' with initialization is invalid if not at file scope. */
4163 if (current_scope == file_scope)
4164 {
4165 /* It is fine to have 'extern const' when compiling at C
4166 and C++ intersection. */
4167 if (!(warn_cxx_compat && constp))
4168 warning (0, "%qs initialized and declared %<extern%>", name);
4169 }
4170 else
4171 error ("%qs has both %<extern%> and initializer", name);
4172 }
4173 else if (current_scope == file_scope)
4174 {
4175 if (storage_class == csc_auto)
4176 error ("file-scope declaration of %qs specifies %<auto%>", name);
4177 if (pedantic && storage_class == csc_register)
4178 pedwarn ("file-scope declaration of %qs specifies %<register%>", name);
4179 }
4180 else
4181 {
4182 if (storage_class == csc_extern && funcdef_flag)
4183 error ("nested function %qs declared %<extern%>", name);
4184 else if (threadp && storage_class == csc_none)
4185 {
4186 error ("function-scope %qs implicitly auto and declared "
4187 "%<__thread%>",
4188 name);
4189 threadp = false;
4190 }
4191 }
4192
4193 /* Now figure out the structure of the declarator proper.
4194 Descend through it, creating more complex types, until we reach
4195 the declared identifier (or NULL_TREE, in an absolute declarator).
4196 At each stage we maintain an unqualified version of the type
4197 together with any qualifiers that should be applied to it with
4198 c_build_qualified_type; this way, array types including
4199 multidimensional array types are first built up in unqualified
4200 form and then the qualified form is created with
4201 TYPE_MAIN_VARIANT pointing to the unqualified form. */
4202
4203 while (declarator && declarator->kind != cdk_id)
4204 {
4205 if (type == error_mark_node)
4206 {
4207 declarator = declarator->declarator;
4208 continue;
4209 }
4210
4211 /* Each level of DECLARATOR is either a cdk_array (for ...[..]),
4212 a cdk_pointer (for *...),
4213 a cdk_function (for ...(...)),
4214 a cdk_attrs (for nested attributes),
4215 or a cdk_id (for the name being declared
4216 or the place in an absolute declarator
4217 where the name was omitted).
4218 For the last case, we have just exited the loop.
4219
4220 At this point, TYPE is the type of elements of an array,
4221 or for a function to return, or for a pointer to point to.
4222 After this sequence of ifs, TYPE is the type of the
4223 array or function or pointer, and DECLARATOR has had its
4224 outermost layer removed. */
4225
4226 if (array_ptr_quals != TYPE_UNQUALIFIED
4227 || array_ptr_attrs != NULL_TREE
4228 || array_parm_static)
4229 {
4230 /* Only the innermost declarator (making a parameter be of
4231 array type which is converted to pointer type)
4232 may have static or type qualifiers. */
4233 error ("static or type qualifiers in non-parameter array declarator");
4234 array_ptr_quals = TYPE_UNQUALIFIED;
4235 array_ptr_attrs = NULL_TREE;
4236 array_parm_static = 0;
4237 }
4238
4239 switch (declarator->kind)
4240 {
4241 case cdk_attrs:
4242 {
4243 /* A declarator with embedded attributes. */
4244 tree attrs = declarator->u.attrs;
4245 const struct c_declarator *inner_decl;
4246 int attr_flags = 0;
4247 declarator = declarator->declarator;
4248 inner_decl = declarator;
4249 while (inner_decl->kind == cdk_attrs)
4250 inner_decl = inner_decl->declarator;
4251 if (inner_decl->kind == cdk_id)
4252 attr_flags |= (int) ATTR_FLAG_DECL_NEXT;
4253 else if (inner_decl->kind == cdk_function)
4254 attr_flags |= (int) ATTR_FLAG_FUNCTION_NEXT;
4255 else if (inner_decl->kind == cdk_array)
4256 attr_flags |= (int) ATTR_FLAG_ARRAY_NEXT;
4257 returned_attrs = decl_attributes (&type,
4258 chainon (returned_attrs, attrs),
4259 attr_flags);
4260 break;
4261 }
4262 case cdk_array:
4263 {
4264 tree itype = NULL_TREE;
4265 tree size = declarator->u.array.dimen;
4266 /* The index is a signed object `sizetype' bits wide. */
4267 tree index_type = c_common_signed_type (sizetype);
4268
4269 array_ptr_quals = declarator->u.array.quals;
4270 array_ptr_attrs = declarator->u.array.attrs;
4271 array_parm_static = declarator->u.array.static_p;
4272 array_parm_vla_unspec_p = declarator->u.array.vla_unspec_p;
4273
4274 declarator = declarator->declarator;
4275
4276 /* Check for some types that there cannot be arrays of. */
4277
4278 if (VOID_TYPE_P (type))
4279 {
4280 error ("declaration of %qs as array of voids", name);
4281 type = error_mark_node;
4282 }
4283
4284 if (TREE_CODE (type) == FUNCTION_TYPE)
4285 {
4286 error ("declaration of %qs as array of functions", name);
4287 type = error_mark_node;
4288 }
4289
4290 if (pedantic && !in_system_header && flexible_array_type_p (type))
4291 pedwarn ("invalid use of structure with flexible array member");
4292
4293 if (size == error_mark_node)
4294 type = error_mark_node;
4295
4296 if (type == error_mark_node)
4297 continue;
4298
4299 /* If size was specified, set ITYPE to a range-type for
4300 that size. Otherwise, ITYPE remains null. finish_decl
4301 may figure it out from an initial value. */
4302
4303 if (size)
4304 {
4305 /* Strip NON_LVALUE_EXPRs since we aren't using as an
4306 lvalue. */
4307 STRIP_TYPE_NOPS (size);
4308
4309 if (!INTEGRAL_TYPE_P (TREE_TYPE (size)))
4310 {
4311 error ("size of array %qs has non-integer type", name);
4312 size = integer_one_node;
4313 }
4314
4315 if (pedantic && integer_zerop (size))
4316 pedwarn ("ISO C forbids zero-size array %qs", name);
4317
4318 if (TREE_CODE (size) == INTEGER_CST)
4319 {
4320 constant_expression_warning (size);
4321 if (tree_int_cst_sgn (size) < 0)
4322 {
4323 error ("size of array %qs is negative", name);
4324 size = integer_one_node;
4325 }
4326 }
4327 else if ((decl_context == NORMAL || decl_context == FIELD)
4328 && current_scope == file_scope)
4329 {
4330 error ("variably modified %qs at file scope", name);
4331 size = integer_one_node;
4332 }
4333 else
4334 {
4335 /* Make sure the array size remains visibly
4336 nonconstant even if it is (eg) a const variable
4337 with known value. */
4338 size_varies = 1;
4339 warn_variable_length_array (orig_name, size);
4340 }
4341
4342 if (integer_zerop (size))
4343 {
4344 /* A zero-length array cannot be represented with
4345 an unsigned index type, which is what we'll
4346 get with build_index_type. Create an
4347 open-ended range instead. */
4348 itype = build_range_type (sizetype, size, NULL_TREE);
4349 }
4350 else
4351 {
4352 /* Arrange for the SAVE_EXPR on the inside of the
4353 MINUS_EXPR, which allows the -1 to get folded
4354 with the +1 that happens when building TYPE_SIZE. */
4355 if (size_varies)
4356 size = variable_size (size);
4357
4358 /* Compute the maximum valid index, that is, size
4359 - 1. Do the calculation in index_type, so that
4360 if it is a variable the computations will be
4361 done in the proper mode. */
4362 itype = fold_build2 (MINUS_EXPR, index_type,
4363 convert (index_type, size),
4364 convert (index_type,
4365 size_one_node));
4366
4367 /* If that overflowed, the array is too big. ???
4368 While a size of INT_MAX+1 technically shouldn't
4369 cause an overflow (because we subtract 1), the
4370 overflow is recorded during the conversion to
4371 index_type, before the subtraction. Handling
4372 this case seems like an unnecessary
4373 complication. */
4374 if (TREE_CODE (itype) == INTEGER_CST
4375 && TREE_OVERFLOW (itype))
4376 {
4377 error ("size of array %qs is too large", name);
4378 type = error_mark_node;
4379 continue;
4380 }
4381
4382 itype = build_index_type (itype);
4383 }
4384 }
4385 else if (decl_context == FIELD)
4386 {
4387 if (pedantic && !flag_isoc99 && !in_system_header)
4388 pedwarn ("ISO C90 does not support flexible array members");
4389
4390 /* ISO C99 Flexible array members are effectively
4391 identical to GCC's zero-length array extension. */
4392 itype = build_range_type (sizetype, size_zero_node, NULL_TREE);
4393 }
4394 else if (decl_context == PARM)
4395 {
4396 if (array_parm_vla_unspec_p)
4397 {
4398 if (! orig_name)
4399 {
4400 /* C99 6.7.5.2p4 */
4401 error ("%<[*]%> not allowed in other than a declaration");
4402 }
4403
4404 itype = build_range_type (sizetype, size_zero_node, NULL_TREE);
4405 size_varies = 1;
4406 }
4407 }
4408 else if (decl_context == TYPENAME)
4409 {
4410 if (array_parm_vla_unspec_p)
4411 {
4412 /* The error is printed elsewhere. We use this to
4413 avoid messing up with incomplete array types of
4414 the same type, that would otherwise be modified
4415 below. */
4416 itype = build_range_type (sizetype, size_zero_node,
4417 NULL_TREE);
4418 }
4419 }
4420
4421 /* Complain about arrays of incomplete types. */
4422 if (!COMPLETE_TYPE_P (type))
4423 {
4424 error ("array type has incomplete element type");
4425 type = error_mark_node;
4426 }
4427 else
4428 /* When itype is NULL, a shared incomplete array type is
4429 returned for all array of a given type. Elsewhere we
4430 make sure we don't complete that type before copying
4431 it, but here we want to make sure we don't ever
4432 modify the shared type, so we gcc_assert (itype)
4433 below. */
4434 type = build_array_type (type, itype);
4435
4436 if (type != error_mark_node)
4437 {
4438 if (size_varies)
4439 {
4440 /* It is ok to modify type here even if itype is
4441 NULL: if size_varies, we're in a
4442 multi-dimensional array and the inner type has
4443 variable size, so the enclosing shared array type
4444 must too. */
4445 if (size && TREE_CODE (size) == INTEGER_CST)
4446 type
4447 = build_distinct_type_copy (TYPE_MAIN_VARIANT (type));
4448 C_TYPE_VARIABLE_SIZE (type) = 1;
4449 }
4450
4451 /* The GCC extension for zero-length arrays differs from
4452 ISO flexible array members in that sizeof yields
4453 zero. */
4454 if (size && integer_zerop (size))
4455 {
4456 gcc_assert (itype);
4457 TYPE_SIZE (type) = bitsize_zero_node;
4458 TYPE_SIZE_UNIT (type) = size_zero_node;
4459 }
4460 if (array_parm_vla_unspec_p)
4461 {
4462 gcc_assert (itype);
4463 /* The type is complete. C99 6.7.5.2p4 */
4464 TYPE_SIZE (type) = bitsize_zero_node;
4465 TYPE_SIZE_UNIT (type) = size_zero_node;
4466 }
4467 }
4468
4469 if (decl_context != PARM
4470 && (array_ptr_quals != TYPE_UNQUALIFIED
4471 || array_ptr_attrs != NULL_TREE
4472 || array_parm_static))
4473 {
4474 error ("static or type qualifiers in non-parameter array declarator");
4475 array_ptr_quals = TYPE_UNQUALIFIED;
4476 array_ptr_attrs = NULL_TREE;
4477 array_parm_static = 0;
4478 }
4479 break;
4480 }
4481 case cdk_function:
4482 {
4483 /* Say it's a definition only for the declarator closest
4484 to the identifier, apart possibly from some
4485 attributes. */
4486 bool really_funcdef = false;
4487 tree arg_types;
4488 if (funcdef_flag)
4489 {
4490 const struct c_declarator *t = declarator->declarator;
4491 while (t->kind == cdk_attrs)
4492 t = t->declarator;
4493 really_funcdef = (t->kind == cdk_id);
4494 }
4495
4496 /* Declaring a function type. Make sure we have a valid
4497 type for the function to return. */
4498 if (type == error_mark_node)
4499 continue;
4500
4501 size_varies = 0;
4502
4503 /* Warn about some types functions can't return. */
4504 if (TREE_CODE (type) == FUNCTION_TYPE)
4505 {
4506 error ("%qs declared as function returning a function", name);
4507 type = integer_type_node;
4508 }
4509 if (TREE_CODE (type) == ARRAY_TYPE)
4510 {
4511 error ("%qs declared as function returning an array", name);
4512 type = integer_type_node;
4513 }
4514
4515 /* Construct the function type and go to the next
4516 inner layer of declarator. */
4517 arg_info = declarator->u.arg_info;
4518 arg_types = grokparms (arg_info, really_funcdef);
4519 if (really_funcdef)
4520 put_pending_sizes (arg_info->pending_sizes);
4521
4522 /* Type qualifiers before the return type of the function
4523 qualify the return type, not the function type. */
4524 if (type_quals)
4525 {
4526 /* Type qualifiers on a function return type are
4527 normally permitted by the standard but have no
4528 effect, so give a warning at -Wreturn-type.
4529 Qualifiers on a void return type are banned on
4530 function definitions in ISO C; GCC used to used
4531 them for noreturn functions. */
4532 if (VOID_TYPE_P (type) && really_funcdef)
4533 pedwarn ("function definition has qualified void return type");
4534 else
4535 warning (OPT_Wreturn_type,
4536 "type qualifiers ignored on function return type");
4537
4538 type = c_build_qualified_type (type, type_quals);
4539 }
4540 type_quals = TYPE_UNQUALIFIED;
4541
4542 type = build_function_type (type, arg_types);
4543 declarator = declarator->declarator;
4544
4545 /* Set the TYPE_CONTEXTs for each tagged type which is local to
4546 the formal parameter list of this FUNCTION_TYPE to point to
4547 the FUNCTION_TYPE node itself. */
4548 {
4549 tree link;
4550
4551 for (link = arg_info->tags;
4552 link;
4553 link = TREE_CHAIN (link))
4554 TYPE_CONTEXT (TREE_VALUE (link)) = type;
4555 }
4556 break;
4557 }
4558 case cdk_pointer:
4559 {
4560 /* Merge any constancy or volatility into the target type
4561 for the pointer. */
4562
4563 if (pedantic && TREE_CODE (type) == FUNCTION_TYPE
4564 && type_quals)
4565 pedwarn ("ISO C forbids qualified function types");
4566 if (type_quals)
4567 type = c_build_qualified_type (type, type_quals);
4568 size_varies = 0;
4569
4570 /* When the pointed-to type involves components of variable size,
4571 care must be taken to ensure that the size evaluation code is
4572 emitted early enough to dominate all the possible later uses
4573 and late enough for the variables on which it depends to have
4574 been assigned.
4575
4576 This is expected to happen automatically when the pointed-to
4577 type has a name/declaration of it's own, but special attention
4578 is required if the type is anonymous.
4579
4580 We handle the NORMAL and FIELD contexts here by attaching an
4581 artificial TYPE_DECL to such pointed-to type. This forces the
4582 sizes evaluation at a safe point and ensures it is not deferred
4583 until e.g. within a deeper conditional context.
4584
4585 We expect nothing to be needed here for PARM or TYPENAME.
4586 Pushing a TYPE_DECL at this point for TYPENAME would actually
4587 be incorrect, as we might be in the middle of an expression
4588 with side effects on the pointed-to type size "arguments" prior
4589 to the pointer declaration point and the fake TYPE_DECL in the
4590 enclosing context would force the size evaluation prior to the
4591 side effects. */
4592
4593 if (!TYPE_NAME (type)
4594 && (decl_context == NORMAL || decl_context == FIELD)
4595 && variably_modified_type_p (type, NULL_TREE))
4596 {
4597 tree decl = build_decl (TYPE_DECL, NULL_TREE, type);
4598 DECL_ARTIFICIAL (decl) = 1;
4599 pushdecl (decl);
4600 finish_decl (decl, NULL_TREE, NULL_TREE);
4601 TYPE_NAME (type) = decl;
4602 }
4603
4604 type = build_pointer_type (type);
4605
4606 /* Process type qualifiers (such as const or volatile)
4607 that were given inside the `*'. */
4608 type_quals = declarator->u.pointer_quals;
4609
4610 declarator = declarator->declarator;
4611 break;
4612 }
4613 default:
4614 gcc_unreachable ();
4615 }
4616 }
4617
4618 /* Now TYPE has the actual type, apart from any qualifiers in
4619 TYPE_QUALS. */
4620
4621 /* Check the type and width of a bit-field. */
4622 if (bitfield)
4623 check_bitfield_type_and_width (&type, width, orig_name);
4624
4625 /* Did array size calculations overflow? */
4626
4627 if (TREE_CODE (type) == ARRAY_TYPE
4628 && COMPLETE_TYPE_P (type)
4629 && TREE_CODE (TYPE_SIZE_UNIT (type)) == INTEGER_CST
4630 && TREE_OVERFLOW (TYPE_SIZE_UNIT (type)))
4631 {
4632 error ("size of array %qs is too large", name);
4633 /* If we proceed with the array type as it is, we'll eventually
4634 crash in tree_low_cst(). */
4635 type = error_mark_node;
4636 }
4637
4638 /* If this is declaring a typedef name, return a TYPE_DECL. */
4639
4640 if (storage_class == csc_typedef)
4641 {
4642 tree decl;
4643 if (pedantic && TREE_CODE (type) == FUNCTION_TYPE
4644 && type_quals)
4645 pedwarn ("ISO C forbids qualified function types");
4646 if (type_quals)
4647 type = c_build_qualified_type (type, type_quals);
4648 decl = build_decl (TYPE_DECL, declarator->u.id, type);
4649 if (declspecs->explicit_signed_p)
4650 C_TYPEDEF_EXPLICITLY_SIGNED (decl) = 1;
4651 decl_attributes (&decl, returned_attrs, 0);
4652 if (declspecs->inline_p)
4653 pedwarn ("typedef %q+D declared %<inline%>", decl);
4654 return decl;
4655 }
4656
4657 /* If this is a type name (such as, in a cast or sizeof),
4658 compute the type and return it now. */
4659
4660 if (decl_context == TYPENAME)
4661 {
4662 /* Note that the grammar rejects storage classes in typenames
4663 and fields. */
4664 gcc_assert (storage_class == csc_none && !threadp
4665 && !declspecs->inline_p);
4666 if (pedantic && TREE_CODE (type) == FUNCTION_TYPE
4667 && type_quals)
4668 pedwarn ("ISO C forbids const or volatile function types");
4669 if (type_quals)
4670 type = c_build_qualified_type (type, type_quals);
4671 decl_attributes (&type, returned_attrs, 0);
4672 return type;
4673 }
4674
4675 if (pedantic && decl_context == FIELD
4676 && variably_modified_type_p (type, NULL_TREE))
4677 {
4678 /* C99 6.7.2.1p8 */
4679 pedwarn ("a member of a structure or union cannot have a variably modified type");
4680 }
4681
4682 /* Aside from typedefs and type names (handle above),
4683 `void' at top level (not within pointer)
4684 is allowed only in public variables.
4685 We don't complain about parms either, but that is because
4686 a better error message can be made later. */
4687
4688 if (VOID_TYPE_P (type) && decl_context != PARM
4689 && !((decl_context != FIELD && TREE_CODE (type) != FUNCTION_TYPE)
4690 && (storage_class == csc_extern
4691 || (current_scope == file_scope
4692 && !(storage_class == csc_static
4693 || storage_class == csc_register)))))
4694 {
4695 error ("variable or field %qs declared void", name);
4696 type = integer_type_node;
4697 }
4698
4699 /* Now create the decl, which may be a VAR_DECL, a PARM_DECL
4700 or a FUNCTION_DECL, depending on DECL_CONTEXT and TYPE. */
4701
4702 {
4703 tree decl;
4704
4705 if (decl_context == PARM)
4706 {
4707 tree type_as_written;
4708 tree promoted_type;
4709
4710 /* A parameter declared as an array of T is really a pointer to T.
4711 One declared as a function is really a pointer to a function. */
4712
4713 if (TREE_CODE (type) == ARRAY_TYPE)
4714 {
4715 /* Transfer const-ness of array into that of type pointed to. */
4716 type = TREE_TYPE (type);
4717 if (type_quals)
4718 type = c_build_qualified_type (type, type_quals);
4719 type = build_pointer_type (type);
4720 type_quals = array_ptr_quals;
4721
4722 /* We don't yet implement attributes in this context. */
4723 if (array_ptr_attrs != NULL_TREE)
4724 warning (OPT_Wattributes,
4725 "attributes in parameter array declarator ignored");
4726
4727 size_varies = 0;
4728 }
4729 else if (TREE_CODE (type) == FUNCTION_TYPE)
4730 {
4731 if (pedantic && type_quals)
4732 pedwarn ("ISO C forbids qualified function types");
4733 if (type_quals)
4734 type = c_build_qualified_type (type, type_quals);
4735 type = build_pointer_type (type);
4736 type_quals = TYPE_UNQUALIFIED;
4737 }
4738 else if (type_quals)
4739 type = c_build_qualified_type (type, type_quals);
4740
4741 type_as_written = type;
4742
4743 decl = build_decl (PARM_DECL, declarator->u.id, type);
4744 if (size_varies)
4745 C_DECL_VARIABLE_SIZE (decl) = 1;
4746
4747 /* Compute the type actually passed in the parmlist,
4748 for the case where there is no prototype.
4749 (For example, shorts and chars are passed as ints.)
4750 When there is a prototype, this is overridden later. */
4751
4752 if (type == error_mark_node)
4753 promoted_type = type;
4754 else
4755 promoted_type = c_type_promotes_to (type);
4756
4757 DECL_ARG_TYPE (decl) = promoted_type;
4758 if (declspecs->inline_p)
4759 pedwarn ("parameter %q+D declared %<inline%>", decl);
4760 }
4761 else if (decl_context == FIELD)
4762 {
4763 /* Note that the grammar rejects storage classes in typenames
4764 and fields. */
4765 gcc_assert (storage_class == csc_none && !threadp
4766 && !declspecs->inline_p);
4767
4768 /* Structure field. It may not be a function. */
4769
4770 if (TREE_CODE (type) == FUNCTION_TYPE)
4771 {
4772 error ("field %qs declared as a function", name);
4773 type = build_pointer_type (type);
4774 }
4775 else if (TREE_CODE (type) != ERROR_MARK
4776 && !COMPLETE_OR_UNBOUND_ARRAY_TYPE_P (type))
4777 {
4778 error ("field %qs has incomplete type", name);
4779 type = error_mark_node;
4780 }
4781 type = c_build_qualified_type (type, type_quals);
4782 decl = build_decl (FIELD_DECL, declarator->u.id, type);
4783 DECL_NONADDRESSABLE_P (decl) = bitfield;
4784 if (bitfield && !declarator->u.id)
4785 TREE_NO_WARNING (decl) = 1;
4786
4787 if (size_varies)
4788 C_DECL_VARIABLE_SIZE (decl) = 1;
4789 }
4790 else if (TREE_CODE (type) == FUNCTION_TYPE)
4791 {
4792 if (storage_class == csc_register || threadp)
4793 {
4794 error ("invalid storage class for function %qs", name);
4795 }
4796 else if (current_scope != file_scope)
4797 {
4798 /* Function declaration not at file scope. Storage
4799 classes other than `extern' are not allowed, C99
4800 6.7.1p5, and `extern' makes no difference. However,
4801 GCC allows 'auto', perhaps with 'inline', to support
4802 nested functions. */
4803 if (storage_class == csc_auto)
4804 {
4805 if (pedantic)
4806 pedwarn ("invalid storage class for function %qs", name);
4807 }
4808 else if (storage_class == csc_static)
4809 {
4810 error ("invalid storage class for function %qs", name);
4811 if (funcdef_flag)
4812 storage_class = declspecs->storage_class = csc_none;
4813 else
4814 return 0;
4815 }
4816 }
4817
4818 decl = build_decl (FUNCTION_DECL, declarator->u.id, type);
4819 decl = build_decl_attribute_variant (decl, decl_attr);
4820
4821 DECL_LANG_SPECIFIC (decl) = GGC_CNEW (struct lang_decl);
4822
4823 if (pedantic && type_quals && !DECL_IN_SYSTEM_HEADER (decl))
4824 pedwarn ("ISO C forbids qualified function types");
4825
4826 /* GNU C interprets a volatile-qualified function type to indicate
4827 that the function does not return. */
4828 if ((type_quals & TYPE_QUAL_VOLATILE)
4829 && !VOID_TYPE_P (TREE_TYPE (TREE_TYPE (decl))))
4830 warning (0, "%<noreturn%> function returns non-void value");
4831
4832 /* Every function declaration is an external reference
4833 (DECL_EXTERNAL) except for those which are not at file
4834 scope and are explicitly declared "auto". This is
4835 forbidden by standard C (C99 6.7.1p5) and is interpreted by
4836 GCC to signify a forward declaration of a nested function. */
4837 if (storage_class == csc_auto && current_scope != file_scope)
4838 DECL_EXTERNAL (decl) = 0;
4839 /* In C99, a function which is declared 'inline' with 'extern'
4840 is not an external reference (which is confusing). It
4841 means that the later definition of the function must be output
4842 in this file, C99 6.7.4p6. In GNU C89, a function declared
4843 'extern inline' is an external reference. */
4844 else if (declspecs->inline_p && storage_class != csc_static)
4845 DECL_EXTERNAL (decl) = ((storage_class == csc_extern)
4846 == flag_gnu89_inline);
4847 else
4848 DECL_EXTERNAL (decl) = !initialized;
4849
4850 /* Record absence of global scope for `static' or `auto'. */
4851 TREE_PUBLIC (decl)
4852 = !(storage_class == csc_static || storage_class == csc_auto);
4853
4854 /* For a function definition, record the argument information
4855 block where store_parm_decls will look for it. */
4856 if (funcdef_flag)
4857 current_function_arg_info = arg_info;
4858
4859 if (declspecs->default_int_p)
4860 C_FUNCTION_IMPLICIT_INT (decl) = 1;
4861
4862 /* Record presence of `inline', if it is reasonable. */
4863 if (flag_hosted && MAIN_NAME_P (declarator->u.id))
4864 {
4865 if (declspecs->inline_p)
4866 pedwarn ("cannot inline function %<main%>");
4867 }
4868 else if (declspecs->inline_p)
4869 {
4870 /* Record that the function is declared `inline'. */
4871 DECL_DECLARED_INLINE_P (decl) = 1;
4872
4873 /* Do not mark bare declarations as DECL_INLINE. Doing so
4874 in the presence of multiple declarations can result in
4875 the abstract origin pointing between the declarations,
4876 which will confuse dwarf2out. */
4877 if (initialized)
4878 DECL_INLINE (decl) = 1;
4879 }
4880 /* If -finline-functions, assume it can be inlined. This does
4881 two things: let the function be deferred until it is actually
4882 needed, and let dwarf2 know that the function is inlinable. */
4883 else if (flag_inline_trees == 2 && initialized)
4884 DECL_INLINE (decl) = 1;
4885 }
4886 else
4887 {
4888 /* It's a variable. */
4889 /* An uninitialized decl with `extern' is a reference. */
4890 int extern_ref = !initialized && storage_class == csc_extern;
4891
4892 type = c_build_qualified_type (type, type_quals);
4893
4894 /* C99 6.2.2p7: It is invalid (compile-time undefined
4895 behavior) to create an 'extern' declaration for a
4896 variable if there is a global declaration that is
4897 'static' and the global declaration is not visible.
4898 (If the static declaration _is_ currently visible,
4899 the 'extern' declaration is taken to refer to that decl.) */
4900 if (extern_ref && current_scope != file_scope)
4901 {
4902 tree global_decl = identifier_global_value (declarator->u.id);
4903 tree visible_decl = lookup_name (declarator->u.id);
4904
4905 if (global_decl
4906 && global_decl != visible_decl
4907 && TREE_CODE (global_decl) == VAR_DECL
4908 && !TREE_PUBLIC (global_decl))
4909 error ("variable previously declared %<static%> redeclared "
4910 "%<extern%>");
4911 }
4912
4913 decl = build_decl (VAR_DECL, declarator->u.id, type);
4914 DECL_SOURCE_LOCATION (decl) = declarator->id_loc;
4915 if (size_varies)
4916 C_DECL_VARIABLE_SIZE (decl) = 1;
4917
4918 if (declspecs->inline_p)
4919 pedwarn ("variable %q+D declared %<inline%>", decl);
4920
4921 /* At file scope, an initialized extern declaration may follow
4922 a static declaration. In that case, DECL_EXTERNAL will be
4923 reset later in start_decl. */
4924 DECL_EXTERNAL (decl) = (storage_class == csc_extern);
4925
4926 /* At file scope, the presence of a `static' or `register' storage
4927 class specifier, or the absence of all storage class specifiers
4928 makes this declaration a definition (perhaps tentative). Also,
4929 the absence of `static' makes it public. */
4930 if (current_scope == file_scope)
4931 {
4932 TREE_PUBLIC (decl) = storage_class != csc_static;
4933 TREE_STATIC (decl) = !extern_ref;
4934 }
4935 /* Not at file scope, only `static' makes a static definition. */
4936 else
4937 {
4938 TREE_STATIC (decl) = (storage_class == csc_static);
4939 TREE_PUBLIC (decl) = extern_ref;
4940 }
4941
4942 if (threadp)
4943 DECL_TLS_MODEL (decl) = decl_default_tls_model (decl);
4944 }
4945
4946 if (storage_class == csc_extern
4947 && variably_modified_type_p (type, NULL_TREE))
4948 {
4949 /* C99 6.7.5.2p2 */
4950 error ("object with variably modified type must have no linkage");
4951 }
4952
4953 /* Record `register' declaration for warnings on &
4954 and in case doing stupid register allocation. */
4955
4956 if (storage_class == csc_register)
4957 {
4958 C_DECL_REGISTER (decl) = 1;
4959 DECL_REGISTER (decl) = 1;
4960 }
4961
4962 /* Record constancy and volatility. */
4963 c_apply_type_quals_to_decl (type_quals, decl);
4964
4965 /* If a type has volatile components, it should be stored in memory.
4966 Otherwise, the fact that those components are volatile
4967 will be ignored, and would even crash the compiler.
4968 Of course, this only makes sense on VAR,PARM, and RESULT decl's. */
4969 if (C_TYPE_FIELDS_VOLATILE (TREE_TYPE (decl))
4970 && (TREE_CODE (decl) == VAR_DECL || TREE_CODE (decl) == PARM_DECL
4971 || TREE_CODE (decl) == RESULT_DECL))
4972 {
4973 /* It is not an error for a structure with volatile fields to
4974 be declared register, but reset DECL_REGISTER since it
4975 cannot actually go in a register. */
4976 int was_reg = C_DECL_REGISTER (decl);
4977 C_DECL_REGISTER (decl) = 0;
4978 DECL_REGISTER (decl) = 0;
4979 c_mark_addressable (decl);
4980 C_DECL_REGISTER (decl) = was_reg;
4981 }
4982
4983 /* This is the earliest point at which we might know the assembler
4984 name of a variable. Thus, if it's known before this, die horribly. */
4985 gcc_assert (!DECL_ASSEMBLER_NAME_SET_P (decl));
4986
4987 decl_attributes (&decl, returned_attrs, 0);
4988
4989 return decl;
4990 }
4991 }
4992 \f
4993 /* Decode the parameter-list info for a function type or function definition.
4994 The argument is the value returned by `get_parm_info' (or made in c-parse.c
4995 if there is an identifier list instead of a parameter decl list).
4996 These two functions are separate because when a function returns
4997 or receives functions then each is called multiple times but the order
4998 of calls is different. The last call to `grokparms' is always the one
4999 that contains the formal parameter names of a function definition.
5000
5001 Return a list of arg types to use in the FUNCTION_TYPE for this function.
5002
5003 FUNCDEF_FLAG is true for a function definition, false for
5004 a mere declaration. A nonempty identifier-list gets an error message
5005 when FUNCDEF_FLAG is false. */
5006
5007 static tree
5008 grokparms (struct c_arg_info *arg_info, bool funcdef_flag)
5009 {
5010 tree arg_types = arg_info->types;
5011
5012 if (funcdef_flag && arg_info->had_vla_unspec)
5013 {
5014 /* A function definition isn't function prototype scope C99 6.2.1p4. */
5015 /* C99 6.7.5.2p4 */
5016 error ("%<[*]%> not allowed in other than function prototype scope");
5017 }
5018
5019 if (arg_types == 0 && !funcdef_flag && !in_system_header)
5020 warning (OPT_Wstrict_prototypes,
5021 "function declaration isn%'t a prototype");
5022
5023 if (arg_types == error_mark_node)
5024 return 0; /* don't set TYPE_ARG_TYPES in this case */
5025
5026 else if (arg_types && TREE_CODE (TREE_VALUE (arg_types)) == IDENTIFIER_NODE)
5027 {
5028 if (!funcdef_flag)
5029 pedwarn ("parameter names (without types) in function declaration");
5030
5031 arg_info->parms = arg_info->types;
5032 arg_info->types = 0;
5033 return 0;
5034 }
5035 else
5036 {
5037 tree parm, type, typelt;
5038 unsigned int parmno;
5039
5040 /* If there is a parameter of incomplete type in a definition,
5041 this is an error. In a declaration this is valid, and a
5042 struct or union type may be completed later, before any calls
5043 or definition of the function. In the case where the tag was
5044 first declared within the parameter list, a warning has
5045 already been given. If a parameter has void type, then
5046 however the function cannot be defined or called, so
5047 warn. */
5048
5049 for (parm = arg_info->parms, typelt = arg_types, parmno = 1;
5050 parm;
5051 parm = TREE_CHAIN (parm), typelt = TREE_CHAIN (typelt), parmno++)
5052 {
5053 type = TREE_VALUE (typelt);
5054 if (type == error_mark_node)
5055 continue;
5056
5057 if (!COMPLETE_TYPE_P (type))
5058 {
5059 if (funcdef_flag)
5060 {
5061 if (DECL_NAME (parm))
5062 error ("parameter %u (%q+D) has incomplete type",
5063 parmno, parm);
5064 else
5065 error ("%Jparameter %u has incomplete type",
5066 parm, parmno);
5067
5068 TREE_VALUE (typelt) = error_mark_node;
5069 TREE_TYPE (parm) = error_mark_node;
5070 }
5071 else if (VOID_TYPE_P (type))
5072 {
5073 if (DECL_NAME (parm))
5074 warning (0, "parameter %u (%q+D) has void type",
5075 parmno, parm);
5076 else
5077 warning (0, "%Jparameter %u has void type",
5078 parm, parmno);
5079 }
5080 }
5081
5082 if (DECL_NAME (parm) && TREE_USED (parm))
5083 warn_if_shadowing (parm);
5084 }
5085 return arg_types;
5086 }
5087 }
5088
5089 /* Take apart the current scope and return a c_arg_info structure with
5090 info on a parameter list just parsed.
5091
5092 This structure is later fed to 'grokparms' and 'store_parm_decls'.
5093
5094 ELLIPSIS being true means the argument list ended in '...' so don't
5095 append a sentinel (void_list_node) to the end of the type-list. */
5096
5097 struct c_arg_info *
5098 get_parm_info (bool ellipsis)
5099 {
5100 struct c_binding *b = current_scope->bindings;
5101 struct c_arg_info *arg_info = XOBNEW (&parser_obstack,
5102 struct c_arg_info);
5103 tree parms = 0;
5104 tree tags = 0;
5105 tree types = 0;
5106 tree others = 0;
5107
5108 static bool explained_incomplete_types = false;
5109 bool gave_void_only_once_err = false;
5110
5111 arg_info->parms = 0;
5112 arg_info->tags = 0;
5113 arg_info->types = 0;
5114 arg_info->others = 0;
5115 arg_info->pending_sizes = 0;
5116 arg_info->had_vla_unspec = current_scope->had_vla_unspec;
5117
5118 /* The bindings in this scope must not get put into a block.
5119 We will take care of deleting the binding nodes. */
5120 current_scope->bindings = 0;
5121
5122 /* This function is only called if there was *something* on the
5123 parameter list. */
5124 gcc_assert (b);
5125
5126 /* A parameter list consisting solely of 'void' indicates that the
5127 function takes no arguments. But if the 'void' is qualified
5128 (by 'const' or 'volatile'), or has a storage class specifier
5129 ('register'), then the behavior is undefined; issue an error.
5130 Typedefs for 'void' are OK (see DR#157). */
5131 if (b->prev == 0 /* one binding */
5132 && TREE_CODE (b->decl) == PARM_DECL /* which is a parameter */
5133 && !DECL_NAME (b->decl) /* anonymous */
5134 && VOID_TYPE_P (TREE_TYPE (b->decl))) /* of void type */
5135 {
5136 if (TREE_THIS_VOLATILE (b->decl)
5137 || TREE_READONLY (b->decl)
5138 || C_DECL_REGISTER (b->decl))
5139 error ("%<void%> as only parameter may not be qualified");
5140
5141 /* There cannot be an ellipsis. */
5142 if (ellipsis)
5143 error ("%<void%> must be the only parameter");
5144
5145 arg_info->types = void_list_node;
5146 return arg_info;
5147 }
5148
5149 if (!ellipsis)
5150 types = void_list_node;
5151
5152 /* Break up the bindings list into parms, tags, types, and others;
5153 apply sanity checks; purge the name-to-decl bindings. */
5154 while (b)
5155 {
5156 tree decl = b->decl;
5157 tree type = TREE_TYPE (decl);
5158 const char *keyword;
5159
5160 switch (TREE_CODE (decl))
5161 {
5162 case PARM_DECL:
5163 if (b->id)
5164 {
5165 gcc_assert (I_SYMBOL_BINDING (b->id) == b);
5166 I_SYMBOL_BINDING (b->id) = b->shadowed;
5167 }
5168
5169 /* Check for forward decls that never got their actual decl. */
5170 if (TREE_ASM_WRITTEN (decl))
5171 error ("parameter %q+D has just a forward declaration", decl);
5172 /* Check for (..., void, ...) and issue an error. */
5173 else if (VOID_TYPE_P (type) && !DECL_NAME (decl))
5174 {
5175 if (!gave_void_only_once_err)
5176 {
5177 error ("%<void%> must be the only parameter");
5178 gave_void_only_once_err = true;
5179 }
5180 }
5181 else
5182 {
5183 /* Valid parameter, add it to the list. */
5184 TREE_CHAIN (decl) = parms;
5185 parms = decl;
5186
5187 /* Since there is a prototype, args are passed in their
5188 declared types. The back end may override this later. */
5189 DECL_ARG_TYPE (decl) = type;
5190 types = tree_cons (0, type, types);
5191 }
5192 break;
5193
5194 case ENUMERAL_TYPE: keyword = "enum"; goto tag;
5195 case UNION_TYPE: keyword = "union"; goto tag;
5196 case RECORD_TYPE: keyword = "struct"; goto tag;
5197 tag:
5198 /* Types may not have tag-names, in which case the type
5199 appears in the bindings list with b->id NULL. */
5200 if (b->id)
5201 {
5202 gcc_assert (I_TAG_BINDING (b->id) == b);
5203 I_TAG_BINDING (b->id) = b->shadowed;
5204 }
5205
5206 /* Warn about any struct, union or enum tags defined in a
5207 parameter list. The scope of such types is limited to
5208 the parameter list, which is rarely if ever desirable
5209 (it's impossible to call such a function with type-
5210 correct arguments). An anonymous union parm type is
5211 meaningful as a GNU extension, so don't warn for that. */
5212 if (TREE_CODE (decl) != UNION_TYPE || b->id != 0)
5213 {
5214 if (b->id)
5215 /* The %s will be one of 'struct', 'union', or 'enum'. */
5216 warning (0, "%<%s %E%> declared inside parameter list",
5217 keyword, b->id);
5218 else
5219 /* The %s will be one of 'struct', 'union', or 'enum'. */
5220 warning (0, "anonymous %s declared inside parameter list",
5221 keyword);
5222
5223 if (!explained_incomplete_types)
5224 {
5225 warning (0, "its scope is only this definition or declaration,"
5226 " which is probably not what you want");
5227 explained_incomplete_types = true;
5228 }
5229 }
5230
5231 tags = tree_cons (b->id, decl, tags);
5232 break;
5233
5234 case CONST_DECL:
5235 case TYPE_DECL:
5236 case FUNCTION_DECL:
5237 /* CONST_DECLs appear here when we have an embedded enum,
5238 and TYPE_DECLs appear here when we have an embedded struct
5239 or union. No warnings for this - we already warned about the
5240 type itself. FUNCTION_DECLs appear when there is an implicit
5241 function declaration in the parameter list. */
5242
5243 TREE_CHAIN (decl) = others;
5244 others = decl;
5245 /* fall through */
5246
5247 case ERROR_MARK:
5248 /* error_mark_node appears here when we have an undeclared
5249 variable. Just throw it away. */
5250 if (b->id)
5251 {
5252 gcc_assert (I_SYMBOL_BINDING (b->id) == b);
5253 I_SYMBOL_BINDING (b->id) = b->shadowed;
5254 }
5255 break;
5256
5257 /* Other things that might be encountered. */
5258 case LABEL_DECL:
5259 case VAR_DECL:
5260 default:
5261 gcc_unreachable ();
5262 }
5263
5264 b = free_binding_and_advance (b);
5265 }
5266
5267 arg_info->parms = parms;
5268 arg_info->tags = tags;
5269 arg_info->types = types;
5270 arg_info->others = others;
5271 arg_info->pending_sizes = get_pending_sizes ();
5272 return arg_info;
5273 }
5274 \f
5275 /* Get the struct, enum or union (CODE says which) with tag NAME.
5276 Define the tag as a forward-reference if it is not defined.
5277 Return a c_typespec structure for the type specifier. */
5278
5279 struct c_typespec
5280 parser_xref_tag (enum tree_code code, tree name)
5281 {
5282 struct c_typespec ret;
5283 /* If a cross reference is requested, look up the type
5284 already defined for this tag and return it. */
5285
5286 tree ref = lookup_tag (code, name, 0);
5287 /* If this is the right type of tag, return what we found.
5288 (This reference will be shadowed by shadow_tag later if appropriate.)
5289 If this is the wrong type of tag, do not return it. If it was the
5290 wrong type in the same scope, we will have had an error
5291 message already; if in a different scope and declaring
5292 a name, pending_xref_error will give an error message; but if in a
5293 different scope and not declaring a name, this tag should
5294 shadow the previous declaration of a different type of tag, and
5295 this would not work properly if we return the reference found.
5296 (For example, with "struct foo" in an outer scope, "union foo;"
5297 must shadow that tag with a new one of union type.) */
5298 ret.kind = (ref ? ctsk_tagref : ctsk_tagfirstref);
5299 if (ref && TREE_CODE (ref) == code)
5300 {
5301 ret.spec = ref;
5302 return ret;
5303 }
5304
5305 /* If no such tag is yet defined, create a forward-reference node
5306 and record it as the "definition".
5307 When a real declaration of this type is found,
5308 the forward-reference will be altered into a real type. */
5309
5310 ref = make_node (code);
5311 if (code == ENUMERAL_TYPE)
5312 {
5313 /* Give the type a default layout like unsigned int
5314 to avoid crashing if it does not get defined. */
5315 TYPE_MODE (ref) = TYPE_MODE (unsigned_type_node);
5316 TYPE_ALIGN (ref) = TYPE_ALIGN (unsigned_type_node);
5317 TYPE_USER_ALIGN (ref) = 0;
5318 TYPE_UNSIGNED (ref) = 1;
5319 TYPE_PRECISION (ref) = TYPE_PRECISION (unsigned_type_node);
5320 TYPE_MIN_VALUE (ref) = TYPE_MIN_VALUE (unsigned_type_node);
5321 TYPE_MAX_VALUE (ref) = TYPE_MAX_VALUE (unsigned_type_node);
5322 }
5323
5324 pushtag (name, ref);
5325
5326 ret.spec = ref;
5327 return ret;
5328 }
5329
5330 /* Get the struct, enum or union (CODE says which) with tag NAME.
5331 Define the tag as a forward-reference if it is not defined.
5332 Return a tree for the type. */
5333
5334 tree
5335 xref_tag (enum tree_code code, tree name)
5336 {
5337 return parser_xref_tag (code, name).spec;
5338 }
5339 \f
5340 /* Make sure that the tag NAME is defined *in the current scope*
5341 at least as a forward reference.
5342 CODE says which kind of tag NAME ought to be. */
5343
5344 tree
5345 start_struct (enum tree_code code, tree name)
5346 {
5347 /* If there is already a tag defined at this scope
5348 (as a forward reference), just return it. */
5349
5350 tree ref = 0;
5351
5352 if (name != 0)
5353 ref = lookup_tag (code, name, 1);
5354 if (ref && TREE_CODE (ref) == code)
5355 {
5356 if (TYPE_SIZE (ref))
5357 {
5358 if (code == UNION_TYPE)
5359 error ("redefinition of %<union %E%>", name);
5360 else
5361 error ("redefinition of %<struct %E%>", name);
5362 }
5363 else if (C_TYPE_BEING_DEFINED (ref))
5364 {
5365 if (code == UNION_TYPE)
5366 error ("nested redefinition of %<union %E%>", name);
5367 else
5368 error ("nested redefinition of %<struct %E%>", name);
5369 /* Don't create structures that contain themselves. */
5370 ref = NULL_TREE;
5371 }
5372 }
5373
5374 /* Otherwise create a forward-reference just so the tag is in scope. */
5375
5376 if (ref == NULL_TREE || TREE_CODE (ref) != code)
5377 {
5378 ref = make_node (code);
5379 pushtag (name, ref);
5380 }
5381
5382 C_TYPE_BEING_DEFINED (ref) = 1;
5383 TYPE_PACKED (ref) = flag_pack_struct;
5384 return ref;
5385 }
5386
5387 /* Process the specs, declarator and width (NULL if omitted)
5388 of a structure component, returning a FIELD_DECL node.
5389 WIDTH is non-NULL for bit-fields only, and is an INTEGER_CST node.
5390
5391 This is done during the parsing of the struct declaration.
5392 The FIELD_DECL nodes are chained together and the lot of them
5393 are ultimately passed to `build_struct' to make the RECORD_TYPE node. */
5394
5395 tree
5396 grokfield (struct c_declarator *declarator, struct c_declspecs *declspecs,
5397 tree width)
5398 {
5399 tree value;
5400
5401 if (declarator->kind == cdk_id && declarator->u.id == NULL_TREE
5402 && width == NULL_TREE)
5403 {
5404 /* This is an unnamed decl.
5405
5406 If we have something of the form "union { list } ;" then this
5407 is the anonymous union extension. Similarly for struct.
5408
5409 If this is something of the form "struct foo;", then
5410 If MS extensions are enabled, this is handled as an
5411 anonymous struct.
5412 Otherwise this is a forward declaration of a structure tag.
5413
5414 If this is something of the form "foo;" and foo is a TYPE_DECL, then
5415 If MS extensions are enabled and foo names a structure, then
5416 again this is an anonymous struct.
5417 Otherwise this is an error.
5418
5419 Oh what a horrid tangled web we weave. I wonder if MS consciously
5420 took this from Plan 9 or if it was an accident of implementation
5421 that took root before someone noticed the bug... */
5422
5423 tree type = declspecs->type;
5424 bool type_ok = (TREE_CODE (type) == RECORD_TYPE
5425 || TREE_CODE (type) == UNION_TYPE);
5426 bool ok = false;
5427
5428 if (type_ok
5429 && (flag_ms_extensions || !declspecs->typedef_p))
5430 {
5431 if (flag_ms_extensions)
5432 ok = true;
5433 else if (flag_iso)
5434 ok = false;
5435 else if (TYPE_NAME (type) == NULL)
5436 ok = true;
5437 else
5438 ok = false;
5439 }
5440 if (!ok)
5441 {
5442 pedwarn ("declaration does not declare anything");
5443 return NULL_TREE;
5444 }
5445 if (pedantic)
5446 pedwarn ("ISO C doesn%'t support unnamed structs/unions");
5447 }
5448
5449 value = grokdeclarator (declarator, declspecs, FIELD, false,
5450 width ? &width : NULL, DEPRECATED_NORMAL);
5451
5452 finish_decl (value, NULL_TREE, NULL_TREE);
5453 DECL_INITIAL (value) = width;
5454
5455 return value;
5456 }
5457 \f
5458 /* Generate an error for any duplicate field names in FIELDLIST. Munge
5459 the list such that this does not present a problem later. */
5460
5461 static void
5462 detect_field_duplicates (tree fieldlist)
5463 {
5464 tree x, y;
5465 int timeout = 10;
5466
5467 /* First, see if there are more than "a few" fields.
5468 This is trivially true if there are zero or one fields. */
5469 if (!fieldlist)
5470 return;
5471 x = TREE_CHAIN (fieldlist);
5472 if (!x)
5473 return;
5474 do {
5475 timeout--;
5476 x = TREE_CHAIN (x);
5477 } while (timeout > 0 && x);
5478
5479 /* If there were "few" fields, avoid the overhead of allocating
5480 a hash table. Instead just do the nested traversal thing. */
5481 if (timeout > 0)
5482 {
5483 for (x = TREE_CHAIN (fieldlist); x ; x = TREE_CHAIN (x))
5484 if (DECL_NAME (x))
5485 {
5486 for (y = fieldlist; y != x; y = TREE_CHAIN (y))
5487 if (DECL_NAME (y) == DECL_NAME (x))
5488 {
5489 error ("duplicate member %q+D", x);
5490 DECL_NAME (x) = NULL_TREE;
5491 }
5492 }
5493 }
5494 else
5495 {
5496 htab_t htab = htab_create (37, htab_hash_pointer, htab_eq_pointer, NULL);
5497 void **slot;
5498
5499 for (x = fieldlist; x ; x = TREE_CHAIN (x))
5500 if ((y = DECL_NAME (x)) != 0)
5501 {
5502 slot = htab_find_slot (htab, y, INSERT);
5503 if (*slot)
5504 {
5505 error ("duplicate member %q+D", x);
5506 DECL_NAME (x) = NULL_TREE;
5507 }
5508 *slot = y;
5509 }
5510
5511 htab_delete (htab);
5512 }
5513 }
5514
5515 /* Fill in the fields of a RECORD_TYPE or UNION_TYPE node, T.
5516 FIELDLIST is a chain of FIELD_DECL nodes for the fields.
5517 ATTRIBUTES are attributes to be applied to the structure. */
5518
5519 tree
5520 finish_struct (tree t, tree fieldlist, tree attributes)
5521 {
5522 tree x;
5523 bool toplevel = file_scope == current_scope;
5524 int saw_named_field;
5525
5526 /* If this type was previously laid out as a forward reference,
5527 make sure we lay it out again. */
5528
5529 TYPE_SIZE (t) = 0;
5530
5531 decl_attributes (&t, attributes, (int) ATTR_FLAG_TYPE_IN_PLACE);
5532
5533 if (pedantic)
5534 {
5535 for (x = fieldlist; x; x = TREE_CHAIN (x))
5536 if (DECL_NAME (x) != 0)
5537 break;
5538
5539 if (x == 0)
5540 {
5541 if (TREE_CODE (t) == UNION_TYPE)
5542 {
5543 if (fieldlist)
5544 pedwarn ("union has no named members");
5545 else
5546 pedwarn ("union has no members");
5547 }
5548 else
5549 {
5550 if (fieldlist)
5551 pedwarn ("struct has no named members");
5552 else
5553 pedwarn ("struct has no members");
5554 }
5555 }
5556 }
5557
5558 /* Install struct as DECL_CONTEXT of each field decl.
5559 Also process specified field sizes, found in the DECL_INITIAL,
5560 storing 0 there after the type has been changed to precision equal
5561 to its width, rather than the precision of the specified standard
5562 type. (Correct layout requires the original type to have been preserved
5563 until now.) */
5564
5565 saw_named_field = 0;
5566 for (x = fieldlist; x; x = TREE_CHAIN (x))
5567 {
5568 if (TREE_TYPE (x) == error_mark_node)
5569 continue;
5570
5571 DECL_CONTEXT (x) = t;
5572
5573 if (TYPE_PACKED (t) && TYPE_ALIGN (TREE_TYPE (x)) > BITS_PER_UNIT)
5574 DECL_PACKED (x) = 1;
5575
5576 /* If any field is const, the structure type is pseudo-const. */
5577 if (TREE_READONLY (x))
5578 C_TYPE_FIELDS_READONLY (t) = 1;
5579 else
5580 {
5581 /* A field that is pseudo-const makes the structure likewise. */
5582 tree t1 = TREE_TYPE (x);
5583 while (TREE_CODE (t1) == ARRAY_TYPE)
5584 t1 = TREE_TYPE (t1);
5585 if ((TREE_CODE (t1) == RECORD_TYPE || TREE_CODE (t1) == UNION_TYPE)
5586 && C_TYPE_FIELDS_READONLY (t1))
5587 C_TYPE_FIELDS_READONLY (t) = 1;
5588 }
5589
5590 /* Any field that is volatile means variables of this type must be
5591 treated in some ways as volatile. */
5592 if (TREE_THIS_VOLATILE (x))
5593 C_TYPE_FIELDS_VOLATILE (t) = 1;
5594
5595 /* Any field of nominal variable size implies structure is too. */
5596 if (C_DECL_VARIABLE_SIZE (x))
5597 C_TYPE_VARIABLE_SIZE (t) = 1;
5598
5599 if (DECL_INITIAL (x))
5600 {
5601 unsigned HOST_WIDE_INT width = tree_low_cst (DECL_INITIAL (x), 1);
5602 DECL_SIZE (x) = bitsize_int (width);
5603 DECL_BIT_FIELD (x) = 1;
5604 SET_DECL_C_BIT_FIELD (x);
5605 }
5606
5607 /* Detect flexible array member in an invalid context. */
5608 if (TREE_CODE (TREE_TYPE (x)) == ARRAY_TYPE
5609 && TYPE_SIZE (TREE_TYPE (x)) == NULL_TREE
5610 && TYPE_DOMAIN (TREE_TYPE (x)) != NULL_TREE
5611 && TYPE_MAX_VALUE (TYPE_DOMAIN (TREE_TYPE (x))) == NULL_TREE)
5612 {
5613 if (TREE_CODE (t) == UNION_TYPE)
5614 {
5615 error ("%Jflexible array member in union", x);
5616 TREE_TYPE (x) = error_mark_node;
5617 }
5618 else if (TREE_CHAIN (x) != NULL_TREE)
5619 {
5620 error ("%Jflexible array member not at end of struct", x);
5621 TREE_TYPE (x) = error_mark_node;
5622 }
5623 else if (!saw_named_field)
5624 {
5625 error ("%Jflexible array member in otherwise empty struct", x);
5626 TREE_TYPE (x) = error_mark_node;
5627 }
5628 }
5629
5630 if (pedantic && !in_system_header && TREE_CODE (t) == RECORD_TYPE
5631 && flexible_array_type_p (TREE_TYPE (x)))
5632 pedwarn ("%Jinvalid use of structure with flexible array member", x);
5633
5634 if (DECL_NAME (x))
5635 saw_named_field = 1;
5636 }
5637
5638 detect_field_duplicates (fieldlist);
5639
5640 /* Now we have the nearly final fieldlist. Record it,
5641 then lay out the structure or union (including the fields). */
5642
5643 TYPE_FIELDS (t) = fieldlist;
5644
5645 layout_type (t);
5646
5647 /* Give bit-fields their proper types. */
5648 {
5649 tree *fieldlistp = &fieldlist;
5650 while (*fieldlistp)
5651 if (TREE_CODE (*fieldlistp) == FIELD_DECL && DECL_INITIAL (*fieldlistp)
5652 && TREE_TYPE (*fieldlistp) != error_mark_node)
5653 {
5654 unsigned HOST_WIDE_INT width
5655 = tree_low_cst (DECL_INITIAL (*fieldlistp), 1);
5656 tree type = TREE_TYPE (*fieldlistp);
5657 if (width != TYPE_PRECISION (type))
5658 {
5659 TREE_TYPE (*fieldlistp)
5660 = c_build_bitfield_integer_type (width, TYPE_UNSIGNED (type));
5661 DECL_MODE (*fieldlistp) = TYPE_MODE (TREE_TYPE (*fieldlistp));
5662 }
5663 DECL_INITIAL (*fieldlistp) = 0;
5664 }
5665 else
5666 fieldlistp = &TREE_CHAIN (*fieldlistp);
5667 }
5668
5669 /* Now we have the truly final field list.
5670 Store it in this type and in the variants. */
5671
5672 TYPE_FIELDS (t) = fieldlist;
5673
5674 /* If there are lots of fields, sort so we can look through them fast.
5675 We arbitrarily consider 16 or more elts to be "a lot". */
5676
5677 {
5678 int len = 0;
5679
5680 for (x = fieldlist; x; x = TREE_CHAIN (x))
5681 {
5682 if (len > 15 || DECL_NAME (x) == NULL)
5683 break;
5684 len += 1;
5685 }
5686
5687 if (len > 15)
5688 {
5689 tree *field_array;
5690 struct lang_type *space;
5691 struct sorted_fields_type *space2;
5692
5693 len += list_length (x);
5694
5695 /* Use the same allocation policy here that make_node uses, to
5696 ensure that this lives as long as the rest of the struct decl.
5697 All decls in an inline function need to be saved. */
5698
5699 space = GGC_CNEW (struct lang_type);
5700 space2 = GGC_NEWVAR (struct sorted_fields_type,
5701 sizeof (struct sorted_fields_type) + len * sizeof (tree));
5702
5703 len = 0;
5704 space->s = space2;
5705 field_array = &space2->elts[0];
5706 for (x = fieldlist; x; x = TREE_CHAIN (x))
5707 {
5708 field_array[len++] = x;
5709
5710 /* If there is anonymous struct or union, break out of the loop. */
5711 if (DECL_NAME (x) == NULL)
5712 break;
5713 }
5714 /* Found no anonymous struct/union. Add the TYPE_LANG_SPECIFIC. */
5715 if (x == NULL)
5716 {
5717 TYPE_LANG_SPECIFIC (t) = space;
5718 TYPE_LANG_SPECIFIC (t)->s->len = len;
5719 field_array = TYPE_LANG_SPECIFIC (t)->s->elts;
5720 qsort (field_array, len, sizeof (tree), field_decl_cmp);
5721 }
5722 }
5723 }
5724
5725 for (x = TYPE_MAIN_VARIANT (t); x; x = TYPE_NEXT_VARIANT (x))
5726 {
5727 TYPE_FIELDS (x) = TYPE_FIELDS (t);
5728 TYPE_LANG_SPECIFIC (x) = TYPE_LANG_SPECIFIC (t);
5729 C_TYPE_FIELDS_READONLY (x) = C_TYPE_FIELDS_READONLY (t);
5730 C_TYPE_FIELDS_VOLATILE (x) = C_TYPE_FIELDS_VOLATILE (t);
5731 C_TYPE_VARIABLE_SIZE (x) = C_TYPE_VARIABLE_SIZE (t);
5732 }
5733
5734 /* If this was supposed to be a transparent union, but we can't
5735 make it one, warn and turn off the flag. */
5736 if (TREE_CODE (t) == UNION_TYPE
5737 && TYPE_TRANSPARENT_UNION (t)
5738 && (!TYPE_FIELDS (t) || TYPE_MODE (t) != DECL_MODE (TYPE_FIELDS (t))))
5739 {
5740 TYPE_TRANSPARENT_UNION (t) = 0;
5741 warning (0, "union cannot be made transparent");
5742 }
5743
5744 /* If this structure or union completes the type of any previous
5745 variable declaration, lay it out and output its rtl. */
5746 for (x = C_TYPE_INCOMPLETE_VARS (TYPE_MAIN_VARIANT (t));
5747 x;
5748 x = TREE_CHAIN (x))
5749 {
5750 tree decl = TREE_VALUE (x);
5751 if (TREE_CODE (TREE_TYPE (decl)) == ARRAY_TYPE)
5752 layout_array_type (TREE_TYPE (decl));
5753 if (TREE_CODE (decl) != TYPE_DECL)
5754 {
5755 layout_decl (decl, 0);
5756 if (c_dialect_objc ())
5757 objc_check_decl (decl);
5758 rest_of_decl_compilation (decl, toplevel, 0);
5759 if (!toplevel)
5760 expand_decl (decl);
5761 }
5762 }
5763 C_TYPE_INCOMPLETE_VARS (TYPE_MAIN_VARIANT (t)) = 0;
5764
5765 /* Finish debugging output for this type. */
5766 rest_of_type_compilation (t, toplevel);
5767
5768 /* If we're inside a function proper, i.e. not file-scope and not still
5769 parsing parameters, then arrange for the size of a variable sized type
5770 to be bound now. */
5771 if (cur_stmt_list && variably_modified_type_p (t, NULL_TREE))
5772 add_stmt (build_stmt (DECL_EXPR, build_decl (TYPE_DECL, NULL, t)));
5773
5774 return t;
5775 }
5776
5777 /* Lay out the type T, and its element type, and so on. */
5778
5779 static void
5780 layout_array_type (tree t)
5781 {
5782 if (TREE_CODE (TREE_TYPE (t)) == ARRAY_TYPE)
5783 layout_array_type (TREE_TYPE (t));
5784 layout_type (t);
5785 }
5786 \f
5787 /* Begin compiling the definition of an enumeration type.
5788 NAME is its name (or null if anonymous).
5789 Returns the type object, as yet incomplete.
5790 Also records info about it so that build_enumerator
5791 may be used to declare the individual values as they are read. */
5792
5793 tree
5794 start_enum (struct c_enum_contents *the_enum, tree name)
5795 {
5796 tree enumtype = 0;
5797
5798 /* If this is the real definition for a previous forward reference,
5799 fill in the contents in the same object that used to be the
5800 forward reference. */
5801
5802 if (name != 0)
5803 enumtype = lookup_tag (ENUMERAL_TYPE, name, 1);
5804
5805 if (enumtype == 0 || TREE_CODE (enumtype) != ENUMERAL_TYPE)
5806 {
5807 enumtype = make_node (ENUMERAL_TYPE);
5808 pushtag (name, enumtype);
5809 }
5810
5811 if (C_TYPE_BEING_DEFINED (enumtype))
5812 error ("nested redefinition of %<enum %E%>", name);
5813
5814 C_TYPE_BEING_DEFINED (enumtype) = 1;
5815
5816 if (TYPE_VALUES (enumtype) != 0)
5817 {
5818 /* This enum is a named one that has been declared already. */
5819 error ("redeclaration of %<enum %E%>", name);
5820
5821 /* Completely replace its old definition.
5822 The old enumerators remain defined, however. */
5823 TYPE_VALUES (enumtype) = 0;
5824 }
5825
5826 the_enum->enum_next_value = integer_zero_node;
5827 the_enum->enum_overflow = 0;
5828
5829 if (flag_short_enums)
5830 TYPE_PACKED (enumtype) = 1;
5831
5832 return enumtype;
5833 }
5834
5835 /* After processing and defining all the values of an enumeration type,
5836 install their decls in the enumeration type and finish it off.
5837 ENUMTYPE is the type object, VALUES a list of decl-value pairs,
5838 and ATTRIBUTES are the specified attributes.
5839 Returns ENUMTYPE. */
5840
5841 tree
5842 finish_enum (tree enumtype, tree values, tree attributes)
5843 {
5844 tree pair, tem;
5845 tree minnode = 0, maxnode = 0;
5846 int precision, unsign;
5847 bool toplevel = (file_scope == current_scope);
5848 struct lang_type *lt;
5849
5850 decl_attributes (&enumtype, attributes, (int) ATTR_FLAG_TYPE_IN_PLACE);
5851
5852 /* Calculate the maximum value of any enumerator in this type. */
5853
5854 if (values == error_mark_node)
5855 minnode = maxnode = integer_zero_node;
5856 else
5857 {
5858 minnode = maxnode = TREE_VALUE (values);
5859 for (pair = TREE_CHAIN (values); pair; pair = TREE_CHAIN (pair))
5860 {
5861 tree value = TREE_VALUE (pair);
5862 if (tree_int_cst_lt (maxnode, value))
5863 maxnode = value;
5864 if (tree_int_cst_lt (value, minnode))
5865 minnode = value;
5866 }
5867 }
5868
5869 /* Construct the final type of this enumeration. It is the same
5870 as one of the integral types - the narrowest one that fits, except
5871 that normally we only go as narrow as int - and signed iff any of
5872 the values are negative. */
5873 unsign = (tree_int_cst_sgn (minnode) >= 0);
5874 precision = MAX (min_precision (minnode, unsign),
5875 min_precision (maxnode, unsign));
5876
5877 if (TYPE_PACKED (enumtype) || precision > TYPE_PRECISION (integer_type_node))
5878 {
5879 tem = c_common_type_for_size (precision, unsign);
5880 if (tem == NULL)
5881 {
5882 warning (0, "enumeration values exceed range of largest integer");
5883 tem = long_long_integer_type_node;
5884 }
5885 }
5886 else
5887 tem = unsign ? unsigned_type_node : integer_type_node;
5888
5889 TYPE_MIN_VALUE (enumtype) = TYPE_MIN_VALUE (tem);
5890 TYPE_MAX_VALUE (enumtype) = TYPE_MAX_VALUE (tem);
5891 TYPE_UNSIGNED (enumtype) = TYPE_UNSIGNED (tem);
5892 TYPE_SIZE (enumtype) = 0;
5893
5894 /* If the precision of the type was specific with an attribute and it
5895 was too small, give an error. Otherwise, use it. */
5896 if (TYPE_PRECISION (enumtype))
5897 {
5898 if (precision > TYPE_PRECISION (enumtype))
5899 error ("specified mode too small for enumeral values");
5900 }
5901 else
5902 TYPE_PRECISION (enumtype) = TYPE_PRECISION (tem);
5903
5904 layout_type (enumtype);
5905
5906 if (values != error_mark_node)
5907 {
5908 /* Change the type of the enumerators to be the enum type. We
5909 need to do this irrespective of the size of the enum, for
5910 proper type checking. Replace the DECL_INITIALs of the
5911 enumerators, and the value slots of the list, with copies
5912 that have the enum type; they cannot be modified in place
5913 because they may be shared (e.g. integer_zero_node) Finally,
5914 change the purpose slots to point to the names of the decls. */
5915 for (pair = values; pair; pair = TREE_CHAIN (pair))
5916 {
5917 tree enu = TREE_PURPOSE (pair);
5918 tree ini = DECL_INITIAL (enu);
5919
5920 TREE_TYPE (enu) = enumtype;
5921
5922 /* The ISO C Standard mandates enumerators to have type int,
5923 even though the underlying type of an enum type is
5924 unspecified. Here we convert any enumerators that fit in
5925 an int to type int, to avoid promotions to unsigned types
5926 when comparing integers with enumerators that fit in the
5927 int range. When -pedantic is given, build_enumerator()
5928 would have already taken care of those that don't fit. */
5929 if (int_fits_type_p (ini, integer_type_node))
5930 tem = integer_type_node;
5931 else
5932 tem = enumtype;
5933 ini = convert (tem, ini);
5934
5935 DECL_INITIAL (enu) = ini;
5936 TREE_PURPOSE (pair) = DECL_NAME (enu);
5937 TREE_VALUE (pair) = ini;
5938 }
5939
5940 TYPE_VALUES (enumtype) = values;
5941 }
5942
5943 /* Record the min/max values so that we can warn about bit-field
5944 enumerations that are too small for the values. */
5945 lt = GGC_CNEW (struct lang_type);
5946 lt->enum_min = minnode;
5947 lt->enum_max = maxnode;
5948 TYPE_LANG_SPECIFIC (enumtype) = lt;
5949
5950 /* Fix up all variant types of this enum type. */
5951 for (tem = TYPE_MAIN_VARIANT (enumtype); tem; tem = TYPE_NEXT_VARIANT (tem))
5952 {
5953 if (tem == enumtype)
5954 continue;
5955 TYPE_VALUES (tem) = TYPE_VALUES (enumtype);
5956 TYPE_MIN_VALUE (tem) = TYPE_MIN_VALUE (enumtype);
5957 TYPE_MAX_VALUE (tem) = TYPE_MAX_VALUE (enumtype);
5958 TYPE_SIZE (tem) = TYPE_SIZE (enumtype);
5959 TYPE_SIZE_UNIT (tem) = TYPE_SIZE_UNIT (enumtype);
5960 TYPE_MODE (tem) = TYPE_MODE (enumtype);
5961 TYPE_PRECISION (tem) = TYPE_PRECISION (enumtype);
5962 TYPE_ALIGN (tem) = TYPE_ALIGN (enumtype);
5963 TYPE_USER_ALIGN (tem) = TYPE_USER_ALIGN (enumtype);
5964 TYPE_UNSIGNED (tem) = TYPE_UNSIGNED (enumtype);
5965 TYPE_LANG_SPECIFIC (tem) = TYPE_LANG_SPECIFIC (enumtype);
5966 }
5967
5968 /* Finish debugging output for this type. */
5969 rest_of_type_compilation (enumtype, toplevel);
5970
5971 return enumtype;
5972 }
5973
5974 /* Build and install a CONST_DECL for one value of the
5975 current enumeration type (one that was begun with start_enum).
5976 Return a tree-list containing the CONST_DECL and its value.
5977 Assignment of sequential values by default is handled here. */
5978
5979 tree
5980 build_enumerator (struct c_enum_contents *the_enum, tree name, tree value)
5981 {
5982 tree decl, type;
5983
5984 /* Validate and default VALUE. */
5985
5986 if (value != 0)
5987 {
5988 /* Don't issue more errors for error_mark_node (i.e. an
5989 undeclared identifier) - just ignore the value expression. */
5990 if (value == error_mark_node)
5991 value = 0;
5992 else if (!INTEGRAL_TYPE_P (TREE_TYPE (value))
5993 || TREE_CODE (value) != INTEGER_CST)
5994 {
5995 error ("enumerator value for %qE is not an integer constant", name);
5996 value = 0;
5997 }
5998 else
5999 {
6000 value = default_conversion (value);
6001 constant_expression_warning (value);
6002 }
6003 }
6004
6005 /* Default based on previous value. */
6006 /* It should no longer be possible to have NON_LVALUE_EXPR
6007 in the default. */
6008 if (value == 0)
6009 {
6010 value = the_enum->enum_next_value;
6011 if (the_enum->enum_overflow)
6012 error ("overflow in enumeration values");
6013 }
6014
6015 if (pedantic && !int_fits_type_p (value, integer_type_node))
6016 {
6017 pedwarn ("ISO C restricts enumerator values to range of %<int%>");
6018 /* XXX This causes -pedantic to change the meaning of the program.
6019 Remove? -zw 2004-03-15 */
6020 value = convert (integer_type_node, value);
6021 }
6022
6023 /* Set basis for default for next value. */
6024 the_enum->enum_next_value = build_binary_op (PLUS_EXPR, value,
6025 integer_one_node, 0);
6026 the_enum->enum_overflow = tree_int_cst_lt (the_enum->enum_next_value, value);
6027
6028 /* Now create a declaration for the enum value name. */
6029
6030 type = TREE_TYPE (value);
6031 type = c_common_type_for_size (MAX (TYPE_PRECISION (type),
6032 TYPE_PRECISION (integer_type_node)),
6033 (TYPE_PRECISION (type)
6034 >= TYPE_PRECISION (integer_type_node)
6035 && TYPE_UNSIGNED (type)));
6036
6037 decl = build_decl (CONST_DECL, name, type);
6038 DECL_INITIAL (decl) = convert (type, value);
6039 pushdecl (decl);
6040
6041 return tree_cons (decl, value, NULL_TREE);
6042 }
6043
6044 \f
6045 /* Create the FUNCTION_DECL for a function definition.
6046 DECLSPECS, DECLARATOR and ATTRIBUTES are the parts of
6047 the declaration; they describe the function's name and the type it returns,
6048 but twisted together in a fashion that parallels the syntax of C.
6049
6050 This function creates a binding context for the function body
6051 as well as setting up the FUNCTION_DECL in current_function_decl.
6052
6053 Returns 1 on success. If the DECLARATOR is not suitable for a function
6054 (it defines a datum instead), we return 0, which tells
6055 yyparse to report a parse error. */
6056
6057 int
6058 start_function (struct c_declspecs *declspecs, struct c_declarator *declarator,
6059 tree attributes)
6060 {
6061 tree decl1, old_decl;
6062 tree restype, resdecl;
6063 struct c_label_context_se *nstack_se;
6064 struct c_label_context_vm *nstack_vm;
6065
6066 current_function_returns_value = 0; /* Assume, until we see it does. */
6067 current_function_returns_null = 0;
6068 current_function_returns_abnormally = 0;
6069 warn_about_return_type = 0;
6070 c_switch_stack = NULL;
6071
6072 nstack_se = XOBNEW (&parser_obstack, struct c_label_context_se);
6073 nstack_se->labels_def = NULL;
6074 nstack_se->labels_used = NULL;
6075 nstack_se->next = label_context_stack_se;
6076 label_context_stack_se = nstack_se;
6077
6078 nstack_vm = XOBNEW (&parser_obstack, struct c_label_context_vm);
6079 nstack_vm->labels_def = NULL;
6080 nstack_vm->labels_used = NULL;
6081 nstack_vm->scope = 0;
6082 nstack_vm->next = label_context_stack_vm;
6083 label_context_stack_vm = nstack_vm;
6084
6085 /* Indicate no valid break/continue context by setting these variables
6086 to some non-null, non-label value. We'll notice and emit the proper
6087 error message in c_finish_bc_stmt. */
6088 c_break_label = c_cont_label = size_zero_node;
6089
6090 decl1 = grokdeclarator (declarator, declspecs, FUNCDEF, true, NULL,
6091 DEPRECATED_NORMAL);
6092
6093 /* If the declarator is not suitable for a function definition,
6094 cause a syntax error. */
6095 if (decl1 == 0)
6096 {
6097 label_context_stack_se = label_context_stack_se->next;
6098 label_context_stack_vm = label_context_stack_vm->next;
6099 return 0;
6100 }
6101
6102 decl_attributes (&decl1, attributes, 0);
6103
6104 if (DECL_DECLARED_INLINE_P (decl1)
6105 && DECL_UNINLINABLE (decl1)
6106 && lookup_attribute ("noinline", DECL_ATTRIBUTES (decl1)))
6107 warning (OPT_Wattributes, "inline function %q+D given attribute noinline",
6108 decl1);
6109
6110 /* Handle gnu_inline attribute. */
6111 if (declspecs->inline_p
6112 && !flag_gnu89_inline
6113 && TREE_CODE (decl1) == FUNCTION_DECL
6114 && lookup_attribute ("gnu_inline", DECL_ATTRIBUTES (decl1)))
6115 {
6116 if (declspecs->storage_class != csc_static)
6117 DECL_EXTERNAL (decl1) = !DECL_EXTERNAL (decl1);
6118 }
6119
6120 announce_function (decl1);
6121
6122 if (!COMPLETE_OR_VOID_TYPE_P (TREE_TYPE (TREE_TYPE (decl1))))
6123 {
6124 error ("return type is an incomplete type");
6125 /* Make it return void instead. */
6126 TREE_TYPE (decl1)
6127 = build_function_type (void_type_node,
6128 TYPE_ARG_TYPES (TREE_TYPE (decl1)));
6129 }
6130
6131 if (warn_about_return_type)
6132 pedwarn_c99 ("return type defaults to %<int%>");
6133
6134 /* Make the init_value nonzero so pushdecl knows this is not tentative.
6135 error_mark_node is replaced below (in pop_scope) with the BLOCK. */
6136 DECL_INITIAL (decl1) = error_mark_node;
6137
6138 /* If this definition isn't a prototype and we had a prototype declaration
6139 before, copy the arg type info from that prototype. */
6140 old_decl = lookup_name_in_scope (DECL_NAME (decl1), current_scope);
6141 if (old_decl && TREE_CODE (old_decl) != FUNCTION_DECL)
6142 old_decl = 0;
6143 current_function_prototype_locus = UNKNOWN_LOCATION;
6144 current_function_prototype_built_in = false;
6145 current_function_prototype_arg_types = NULL_TREE;
6146 if (TYPE_ARG_TYPES (TREE_TYPE (decl1)) == 0)
6147 {
6148 if (old_decl != 0 && TREE_CODE (TREE_TYPE (old_decl)) == FUNCTION_TYPE
6149 && comptypes (TREE_TYPE (TREE_TYPE (decl1)),
6150 TREE_TYPE (TREE_TYPE (old_decl))))
6151 {
6152 TREE_TYPE (decl1) = composite_type (TREE_TYPE (old_decl),
6153 TREE_TYPE (decl1));
6154 current_function_prototype_locus = DECL_SOURCE_LOCATION (old_decl);
6155 current_function_prototype_built_in
6156 = C_DECL_BUILTIN_PROTOTYPE (old_decl);
6157 current_function_prototype_arg_types
6158 = TYPE_ARG_TYPES (TREE_TYPE (decl1));
6159 }
6160 if (TREE_PUBLIC (decl1))
6161 {
6162 /* If there is an external prototype declaration of this
6163 function, record its location but do not copy information
6164 to this decl. This may be an invisible declaration
6165 (built-in or in a scope which has finished) or simply
6166 have more refined argument types than any declaration
6167 found above. */
6168 struct c_binding *b;
6169 for (b = I_SYMBOL_BINDING (DECL_NAME (decl1)); b; b = b->shadowed)
6170 if (B_IN_SCOPE (b, external_scope))
6171 break;
6172 if (b)
6173 {
6174 tree ext_decl, ext_type;
6175 ext_decl = b->decl;
6176 ext_type = b->type ? b->type : TREE_TYPE (ext_decl);
6177 if (TREE_CODE (ext_type) == FUNCTION_TYPE
6178 && comptypes (TREE_TYPE (TREE_TYPE (decl1)),
6179 TREE_TYPE (ext_type)))
6180 {
6181 current_function_prototype_locus
6182 = DECL_SOURCE_LOCATION (ext_decl);
6183 current_function_prototype_built_in
6184 = C_DECL_BUILTIN_PROTOTYPE (ext_decl);
6185 current_function_prototype_arg_types
6186 = TYPE_ARG_TYPES (ext_type);
6187 }
6188 }
6189 }
6190 }
6191
6192 /* Optionally warn of old-fashioned def with no previous prototype. */
6193 if (warn_strict_prototypes
6194 && old_decl != error_mark_node
6195 && TYPE_ARG_TYPES (TREE_TYPE (decl1)) == 0
6196 && C_DECL_ISNT_PROTOTYPE (old_decl))
6197 warning (OPT_Wstrict_prototypes,
6198 "function declaration isn%'t a prototype");
6199 /* Optionally warn of any global def with no previous prototype. */
6200 else if (warn_missing_prototypes
6201 && old_decl != error_mark_node
6202 && TREE_PUBLIC (decl1)
6203 && !MAIN_NAME_P (DECL_NAME (decl1))
6204 && C_DECL_ISNT_PROTOTYPE (old_decl))
6205 warning (OPT_Wmissing_prototypes, "no previous prototype for %q+D", decl1);
6206 /* Optionally warn of any def with no previous prototype
6207 if the function has already been used. */
6208 else if (warn_missing_prototypes
6209 && old_decl != 0
6210 && old_decl != error_mark_node
6211 && TREE_USED (old_decl)
6212 && TYPE_ARG_TYPES (TREE_TYPE (old_decl)) == 0)
6213 warning (OPT_Wmissing_prototypes,
6214 "%q+D was used with no prototype before its definition", decl1);
6215 /* Optionally warn of any global def with no previous declaration. */
6216 else if (warn_missing_declarations
6217 && TREE_PUBLIC (decl1)
6218 && old_decl == 0
6219 && !MAIN_NAME_P (DECL_NAME (decl1)))
6220 warning (OPT_Wmissing_declarations, "no previous declaration for %q+D",
6221 decl1);
6222 /* Optionally warn of any def with no previous declaration
6223 if the function has already been used. */
6224 else if (warn_missing_declarations
6225 && old_decl != 0
6226 && old_decl != error_mark_node
6227 && TREE_USED (old_decl)
6228 && C_DECL_IMPLICIT (old_decl))
6229 warning (OPT_Wmissing_declarations,
6230 "%q+D was used with no declaration before its definition", decl1);
6231
6232 /* This function exists in static storage.
6233 (This does not mean `static' in the C sense!) */
6234 TREE_STATIC (decl1) = 1;
6235
6236 /* A nested function is not global. */
6237 if (current_function_decl != 0)
6238 TREE_PUBLIC (decl1) = 0;
6239
6240 /* This is the earliest point at which we might know the assembler
6241 name of the function. Thus, if it's set before this, die horribly. */
6242 gcc_assert (!DECL_ASSEMBLER_NAME_SET_P (decl1));
6243
6244 /* If #pragma weak was used, mark the decl weak now. */
6245 if (current_scope == file_scope)
6246 maybe_apply_pragma_weak (decl1);
6247
6248 /* Warn for unlikely, improbable, or stupid declarations of `main'. */
6249 if (warn_main > 0 && MAIN_NAME_P (DECL_NAME (decl1)))
6250 {
6251 if (TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (decl1)))
6252 != integer_type_node)
6253 pedwarn ("return type of %q+D is not %<int%>", decl1);
6254
6255 check_main_parameter_types(decl1);
6256
6257 if (!TREE_PUBLIC (decl1))
6258 pedwarn ("%q+D is normally a non-static function", decl1);
6259 }
6260
6261 /* Record the decl so that the function name is defined.
6262 If we already have a decl for this name, and it is a FUNCTION_DECL,
6263 use the old decl. */
6264
6265 current_function_decl = pushdecl (decl1);
6266
6267 push_scope ();
6268 declare_parm_level ();
6269
6270 restype = TREE_TYPE (TREE_TYPE (current_function_decl));
6271 resdecl = build_decl (RESULT_DECL, NULL_TREE, restype);
6272 DECL_ARTIFICIAL (resdecl) = 1;
6273 DECL_IGNORED_P (resdecl) = 1;
6274 DECL_RESULT (current_function_decl) = resdecl;
6275
6276 start_fname_decls ();
6277
6278 return 1;
6279 }
6280 \f
6281 /* Subroutine of store_parm_decls which handles new-style function
6282 definitions (prototype format). The parms already have decls, so we
6283 need only record them as in effect and complain if any redundant
6284 old-style parm decls were written. */
6285 static void
6286 store_parm_decls_newstyle (tree fndecl, const struct c_arg_info *arg_info)
6287 {
6288 tree decl;
6289
6290 if (current_scope->bindings)
6291 {
6292 error ("%Jold-style parameter declarations in prototyped "
6293 "function definition", fndecl);
6294
6295 /* Get rid of the old-style declarations. */
6296 pop_scope ();
6297 push_scope ();
6298 }
6299 /* Don't issue this warning for nested functions, and don't issue this
6300 warning if we got here because ARG_INFO_TYPES was error_mark_node
6301 (this happens when a function definition has just an ellipsis in
6302 its parameter list). */
6303 else if (!in_system_header && !current_function_scope
6304 && arg_info->types != error_mark_node)
6305 warning (OPT_Wtraditional,
6306 "%Jtraditional C rejects ISO C style function definitions",
6307 fndecl);
6308
6309 /* Now make all the parameter declarations visible in the function body.
6310 We can bypass most of the grunt work of pushdecl. */
6311 for (decl = arg_info->parms; decl; decl = TREE_CHAIN (decl))
6312 {
6313 DECL_CONTEXT (decl) = current_function_decl;
6314 if (DECL_NAME (decl))
6315 {
6316 bind (DECL_NAME (decl), decl, current_scope,
6317 /*invisible=*/false, /*nested=*/false);
6318 if (!TREE_USED (decl))
6319 warn_if_shadowing (decl);
6320 }
6321 else
6322 error ("%Jparameter name omitted", decl);
6323 }
6324
6325 /* Record the parameter list in the function declaration. */
6326 DECL_ARGUMENTS (fndecl) = arg_info->parms;
6327
6328 /* Now make all the ancillary declarations visible, likewise. */
6329 for (decl = arg_info->others; decl; decl = TREE_CHAIN (decl))
6330 {
6331 DECL_CONTEXT (decl) = current_function_decl;
6332 if (DECL_NAME (decl))
6333 bind (DECL_NAME (decl), decl, current_scope,
6334 /*invisible=*/false, /*nested=*/false);
6335 }
6336
6337 /* And all the tag declarations. */
6338 for (decl = arg_info->tags; decl; decl = TREE_CHAIN (decl))
6339 if (TREE_PURPOSE (decl))
6340 bind (TREE_PURPOSE (decl), TREE_VALUE (decl), current_scope,
6341 /*invisible=*/false, /*nested=*/false);
6342 }
6343
6344 /* Subroutine of store_parm_decls which handles old-style function
6345 definitions (separate parameter list and declarations). */
6346
6347 static void
6348 store_parm_decls_oldstyle (tree fndecl, const struct c_arg_info *arg_info)
6349 {
6350 struct c_binding *b;
6351 tree parm, decl, last;
6352 tree parmids = arg_info->parms;
6353 struct pointer_set_t *seen_args = pointer_set_create ();
6354
6355 if (!in_system_header)
6356 warning (OPT_Wold_style_definition, "%Jold-style function definition",
6357 fndecl);
6358
6359 /* Match each formal parameter name with its declaration. Save each
6360 decl in the appropriate TREE_PURPOSE slot of the parmids chain. */
6361 for (parm = parmids; parm; parm = TREE_CHAIN (parm))
6362 {
6363 if (TREE_VALUE (parm) == 0)
6364 {
6365 error ("%Jparameter name missing from parameter list", fndecl);
6366 TREE_PURPOSE (parm) = 0;
6367 continue;
6368 }
6369
6370 b = I_SYMBOL_BINDING (TREE_VALUE (parm));
6371 if (b && B_IN_CURRENT_SCOPE (b))
6372 {
6373 decl = b->decl;
6374 /* If we got something other than a PARM_DECL it is an error. */
6375 if (TREE_CODE (decl) != PARM_DECL)
6376 error ("%q+D declared as a non-parameter", decl);
6377 /* If the declaration is already marked, we have a duplicate
6378 name. Complain and ignore the duplicate. */
6379 else if (pointer_set_contains (seen_args, decl))
6380 {
6381 error ("multiple parameters named %q+D", decl);
6382 TREE_PURPOSE (parm) = 0;
6383 continue;
6384 }
6385 /* If the declaration says "void", complain and turn it into
6386 an int. */
6387 else if (VOID_TYPE_P (TREE_TYPE (decl)))
6388 {
6389 error ("parameter %q+D declared with void type", decl);
6390 TREE_TYPE (decl) = integer_type_node;
6391 DECL_ARG_TYPE (decl) = integer_type_node;
6392 layout_decl (decl, 0);
6393 }
6394 warn_if_shadowing (decl);
6395 }
6396 /* If no declaration found, default to int. */
6397 else
6398 {
6399 decl = build_decl (PARM_DECL, TREE_VALUE (parm), integer_type_node);
6400 DECL_ARG_TYPE (decl) = TREE_TYPE (decl);
6401 DECL_SOURCE_LOCATION (decl) = DECL_SOURCE_LOCATION (fndecl);
6402 pushdecl (decl);
6403 warn_if_shadowing (decl);
6404
6405 if (flag_isoc99)
6406 pedwarn ("type of %q+D defaults to %<int%>", decl);
6407 else
6408 warning (OPT_Wmissing_parameter_type, "type of %q+D defaults to %<int%>", decl);
6409 }
6410
6411 TREE_PURPOSE (parm) = decl;
6412 pointer_set_insert (seen_args, decl);
6413 }
6414
6415 /* Now examine the parms chain for incomplete declarations
6416 and declarations with no corresponding names. */
6417
6418 for (b = current_scope->bindings; b; b = b->prev)
6419 {
6420 parm = b->decl;
6421 if (TREE_CODE (parm) != PARM_DECL)
6422 continue;
6423
6424 if (TREE_TYPE (parm) != error_mark_node
6425 && !COMPLETE_TYPE_P (TREE_TYPE (parm)))
6426 {
6427 error ("parameter %q+D has incomplete type", parm);
6428 TREE_TYPE (parm) = error_mark_node;
6429 }
6430
6431 if (!pointer_set_contains (seen_args, parm))
6432 {
6433 error ("declaration for parameter %q+D but no such parameter", parm);
6434
6435 /* Pretend the parameter was not missing.
6436 This gets us to a standard state and minimizes
6437 further error messages. */
6438 parmids = chainon (parmids, tree_cons (parm, 0, 0));
6439 }
6440 }
6441
6442 /* Chain the declarations together in the order of the list of
6443 names. Store that chain in the function decl, replacing the
6444 list of names. Update the current scope to match. */
6445 DECL_ARGUMENTS (fndecl) = 0;
6446
6447 for (parm = parmids; parm; parm = TREE_CHAIN (parm))
6448 if (TREE_PURPOSE (parm))
6449 break;
6450 if (parm && TREE_PURPOSE (parm))
6451 {
6452 last = TREE_PURPOSE (parm);
6453 DECL_ARGUMENTS (fndecl) = last;
6454
6455 for (parm = TREE_CHAIN (parm); parm; parm = TREE_CHAIN (parm))
6456 if (TREE_PURPOSE (parm))
6457 {
6458 TREE_CHAIN (last) = TREE_PURPOSE (parm);
6459 last = TREE_PURPOSE (parm);
6460 }
6461 TREE_CHAIN (last) = 0;
6462 }
6463
6464 pointer_set_destroy (seen_args);
6465
6466 /* If there was a previous prototype,
6467 set the DECL_ARG_TYPE of each argument according to
6468 the type previously specified, and report any mismatches. */
6469
6470 if (current_function_prototype_arg_types)
6471 {
6472 tree type;
6473 for (parm = DECL_ARGUMENTS (fndecl),
6474 type = current_function_prototype_arg_types;
6475 parm || (type && TREE_VALUE (type) != error_mark_node
6476 && (TYPE_MAIN_VARIANT (TREE_VALUE (type)) != void_type_node));
6477 parm = TREE_CHAIN (parm), type = TREE_CHAIN (type))
6478 {
6479 if (parm == 0 || type == 0
6480 || TYPE_MAIN_VARIANT (TREE_VALUE (type)) == void_type_node)
6481 {
6482 if (current_function_prototype_built_in)
6483 warning (0, "number of arguments doesn%'t match "
6484 "built-in prototype");
6485 else
6486 {
6487 error ("number of arguments doesn%'t match prototype");
6488 error ("%Hprototype declaration",
6489 &current_function_prototype_locus);
6490 }
6491 break;
6492 }
6493 /* Type for passing arg must be consistent with that
6494 declared for the arg. ISO C says we take the unqualified
6495 type for parameters declared with qualified type. */
6496 if (!comptypes (TYPE_MAIN_VARIANT (DECL_ARG_TYPE (parm)),
6497 TYPE_MAIN_VARIANT (TREE_VALUE (type))))
6498 {
6499 if (TYPE_MAIN_VARIANT (TREE_TYPE (parm))
6500 == TYPE_MAIN_VARIANT (TREE_VALUE (type)))
6501 {
6502 /* Adjust argument to match prototype. E.g. a previous
6503 `int foo(float);' prototype causes
6504 `int foo(x) float x; {...}' to be treated like
6505 `int foo(float x) {...}'. This is particularly
6506 useful for argument types like uid_t. */
6507 DECL_ARG_TYPE (parm) = TREE_TYPE (parm);
6508
6509 if (targetm.calls.promote_prototypes (TREE_TYPE (current_function_decl))
6510 && INTEGRAL_TYPE_P (TREE_TYPE (parm))
6511 && TYPE_PRECISION (TREE_TYPE (parm))
6512 < TYPE_PRECISION (integer_type_node))
6513 DECL_ARG_TYPE (parm) = integer_type_node;
6514
6515 if (pedantic)
6516 {
6517 /* ??? Is it possible to get here with a
6518 built-in prototype or will it always have
6519 been diagnosed as conflicting with an
6520 old-style definition and discarded? */
6521 if (current_function_prototype_built_in)
6522 warning (0, "promoted argument %qD "
6523 "doesn%'t match built-in prototype", parm);
6524 else
6525 {
6526 pedwarn ("promoted argument %qD "
6527 "doesn%'t match prototype", parm);
6528 pedwarn ("%Hprototype declaration",
6529 &current_function_prototype_locus);
6530 }
6531 }
6532 }
6533 else
6534 {
6535 if (current_function_prototype_built_in)
6536 warning (0, "argument %qD doesn%'t match "
6537 "built-in prototype", parm);
6538 else
6539 {
6540 error ("argument %qD doesn%'t match prototype", parm);
6541 error ("%Hprototype declaration",
6542 &current_function_prototype_locus);
6543 }
6544 }
6545 }
6546 }
6547 TYPE_ACTUAL_ARG_TYPES (TREE_TYPE (fndecl)) = 0;
6548 }
6549
6550 /* Otherwise, create a prototype that would match. */
6551
6552 else
6553 {
6554 tree actual = 0, last = 0, type;
6555
6556 for (parm = DECL_ARGUMENTS (fndecl); parm; parm = TREE_CHAIN (parm))
6557 {
6558 type = tree_cons (NULL_TREE, DECL_ARG_TYPE (parm), NULL_TREE);
6559 if (last)
6560 TREE_CHAIN (last) = type;
6561 else
6562 actual = type;
6563 last = type;
6564 }
6565 type = tree_cons (NULL_TREE, void_type_node, NULL_TREE);
6566 if (last)
6567 TREE_CHAIN (last) = type;
6568 else
6569 actual = type;
6570
6571 /* We are going to assign a new value for the TYPE_ACTUAL_ARG_TYPES
6572 of the type of this function, but we need to avoid having this
6573 affect the types of other similarly-typed functions, so we must
6574 first force the generation of an identical (but separate) type
6575 node for the relevant function type. The new node we create
6576 will be a variant of the main variant of the original function
6577 type. */
6578
6579 TREE_TYPE (fndecl) = build_variant_type_copy (TREE_TYPE (fndecl));
6580
6581 TYPE_ACTUAL_ARG_TYPES (TREE_TYPE (fndecl)) = actual;
6582 }
6583 }
6584
6585 /* Store parameter declarations passed in ARG_INFO into the current
6586 function declaration. */
6587
6588 void
6589 store_parm_decls_from (struct c_arg_info *arg_info)
6590 {
6591 current_function_arg_info = arg_info;
6592 store_parm_decls ();
6593 }
6594
6595 /* Store the parameter declarations into the current function declaration.
6596 This is called after parsing the parameter declarations, before
6597 digesting the body of the function.
6598
6599 For an old-style definition, construct a prototype out of the old-style
6600 parameter declarations and inject it into the function's type. */
6601
6602 void
6603 store_parm_decls (void)
6604 {
6605 tree fndecl = current_function_decl;
6606 bool proto;
6607
6608 /* The argument information block for FNDECL. */
6609 struct c_arg_info *arg_info = current_function_arg_info;
6610 current_function_arg_info = 0;
6611
6612 /* True if this definition is written with a prototype. Note:
6613 despite C99 6.7.5.3p14, we can *not* treat an empty argument
6614 list in a function definition as equivalent to (void) -- an
6615 empty argument list specifies the function has no parameters,
6616 but only (void) sets up a prototype for future calls. */
6617 proto = arg_info->types != 0;
6618
6619 if (proto)
6620 store_parm_decls_newstyle (fndecl, arg_info);
6621 else
6622 store_parm_decls_oldstyle (fndecl, arg_info);
6623
6624 /* The next call to push_scope will be a function body. */
6625
6626 next_is_function_body = true;
6627
6628 /* Write a record describing this function definition to the prototypes
6629 file (if requested). */
6630
6631 gen_aux_info_record (fndecl, 1, 0, proto);
6632
6633 /* Initialize the RTL code for the function. */
6634 allocate_struct_function (fndecl);
6635
6636 /* Begin the statement tree for this function. */
6637 DECL_SAVED_TREE (fndecl) = push_stmt_list ();
6638
6639 /* ??? Insert the contents of the pending sizes list into the function
6640 to be evaluated. The only reason left to have this is
6641 void foo(int n, int array[n++])
6642 because we throw away the array type in favor of a pointer type, and
6643 thus won't naturally see the SAVE_EXPR containing the increment. All
6644 other pending sizes would be handled by gimplify_parameters. */
6645 {
6646 tree t;
6647 for (t = nreverse (get_pending_sizes ()); t ; t = TREE_CHAIN (t))
6648 add_stmt (TREE_VALUE (t));
6649 }
6650
6651 /* Even though we're inside a function body, we still don't want to
6652 call expand_expr to calculate the size of a variable-sized array.
6653 We haven't necessarily assigned RTL to all variables yet, so it's
6654 not safe to try to expand expressions involving them. */
6655 cfun->x_dont_save_pending_sizes_p = 1;
6656 }
6657 \f
6658 /* Emit diagnostics that require gimple input for detection. Operate on
6659 FNDECL and all its nested functions. */
6660
6661 static void
6662 c_gimple_diagnostics_recursively (tree fndecl)
6663 {
6664 struct cgraph_node *cgn;
6665
6666 /* Handle attribute((warn_unused_result)). Relies on gimple input. */
6667 c_warn_unused_result (&DECL_SAVED_TREE (fndecl));
6668
6669 /* Notice when OpenMP structured block constraints are violated. */
6670 if (flag_openmp)
6671 diagnose_omp_structured_block_errors (fndecl);
6672
6673 /* Finalize all nested functions now. */
6674 cgn = cgraph_node (fndecl);
6675 for (cgn = cgn->nested; cgn ; cgn = cgn->next_nested)
6676 c_gimple_diagnostics_recursively (cgn->decl);
6677 }
6678
6679 /* Finish up a function declaration and compile that function
6680 all the way to assembler language output. The free the storage
6681 for the function definition.
6682
6683 This is called after parsing the body of the function definition. */
6684
6685 void
6686 finish_function (void)
6687 {
6688 tree fndecl = current_function_decl;
6689
6690 label_context_stack_se = label_context_stack_se->next;
6691 label_context_stack_vm = label_context_stack_vm->next;
6692
6693 if (TREE_CODE (fndecl) == FUNCTION_DECL
6694 && targetm.calls.promote_prototypes (TREE_TYPE (fndecl)))
6695 {
6696 tree args = DECL_ARGUMENTS (fndecl);
6697 for (; args; args = TREE_CHAIN (args))
6698 {
6699 tree type = TREE_TYPE (args);
6700 if (INTEGRAL_TYPE_P (type)
6701 && TYPE_PRECISION (type) < TYPE_PRECISION (integer_type_node))
6702 DECL_ARG_TYPE (args) = integer_type_node;
6703 }
6704 }
6705
6706 if (DECL_INITIAL (fndecl) && DECL_INITIAL (fndecl) != error_mark_node)
6707 BLOCK_SUPERCONTEXT (DECL_INITIAL (fndecl)) = fndecl;
6708
6709 /* Must mark the RESULT_DECL as being in this function. */
6710
6711 if (DECL_RESULT (fndecl) && DECL_RESULT (fndecl) != error_mark_node)
6712 DECL_CONTEXT (DECL_RESULT (fndecl)) = fndecl;
6713
6714 if (MAIN_NAME_P (DECL_NAME (fndecl)) && flag_hosted)
6715 {
6716 if (TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (fndecl)))
6717 != integer_type_node)
6718 {
6719 /* If warn_main is 1 (-Wmain) or 2 (-Wall), we have already warned.
6720 If warn_main is -1 (-Wno-main) we don't want to be warned. */
6721 if (!warn_main)
6722 pedwarn ("return type of %q+D is not %<int%>", fndecl);
6723 }
6724 else
6725 {
6726 if (flag_isoc99)
6727 {
6728 tree stmt = c_finish_return (integer_zero_node);
6729 #ifdef USE_MAPPED_LOCATION
6730 /* Hack. We don't want the middle-end to warn that this return
6731 is unreachable, so we mark its location as special. Using
6732 UNKNOWN_LOCATION has the problem that it gets clobbered in
6733 annotate_one_with_locus. A cleaner solution might be to
6734 ensure ! should_carry_locus_p (stmt), but that needs a flag.
6735 */
6736 SET_EXPR_LOCATION (stmt, BUILTINS_LOCATION);
6737 #else
6738 /* Hack. We don't want the middle-end to warn that this
6739 return is unreachable, so put the statement on the
6740 special line 0. */
6741 annotate_with_file_line (stmt, input_filename, 0);
6742 #endif
6743 }
6744 }
6745 }
6746
6747 /* Tie off the statement tree for this function. */
6748 DECL_SAVED_TREE (fndecl) = pop_stmt_list (DECL_SAVED_TREE (fndecl));
6749
6750 finish_fname_decls ();
6751
6752 /* Complain if there's just no return statement. */
6753 if (warn_return_type
6754 && TREE_CODE (TREE_TYPE (TREE_TYPE (fndecl))) != VOID_TYPE
6755 && !current_function_returns_value && !current_function_returns_null
6756 /* Don't complain if we are no-return. */
6757 && !current_function_returns_abnormally
6758 /* Don't warn for main(). */
6759 && !MAIN_NAME_P (DECL_NAME (fndecl))
6760 /* Or if they didn't actually specify a return type. */
6761 && !C_FUNCTION_IMPLICIT_INT (fndecl)
6762 /* Normally, with -Wreturn-type, flow will complain. Unless we're an
6763 inline function, as we might never be compiled separately. */
6764 && DECL_INLINE (fndecl))
6765 {
6766 warning (OPT_Wreturn_type,
6767 "no return statement in function returning non-void");
6768 TREE_NO_WARNING (fndecl) = 1;
6769 }
6770
6771 /* Store the end of the function, so that we get good line number
6772 info for the epilogue. */
6773 cfun->function_end_locus = input_location;
6774
6775 /* Finalize the ELF visibility for the function. */
6776 c_determine_visibility (fndecl);
6777
6778 /* Genericize before inlining. Delay genericizing nested functions
6779 until their parent function is genericized. Since finalizing
6780 requires GENERIC, delay that as well. */
6781
6782 if (DECL_INITIAL (fndecl) && DECL_INITIAL (fndecl) != error_mark_node
6783 && !undef_nested_function)
6784 {
6785 if (!decl_function_context (fndecl))
6786 {
6787 c_genericize (fndecl);
6788 c_gimple_diagnostics_recursively (fndecl);
6789
6790 /* ??? Objc emits functions after finalizing the compilation unit.
6791 This should be cleaned up later and this conditional removed. */
6792 if (cgraph_global_info_ready)
6793 {
6794 c_expand_body (fndecl);
6795 return;
6796 }
6797
6798 cgraph_finalize_function (fndecl, false);
6799 }
6800 else
6801 {
6802 /* Register this function with cgraph just far enough to get it
6803 added to our parent's nested function list. Handy, since the
6804 C front end doesn't have such a list. */
6805 (void) cgraph_node (fndecl);
6806 }
6807 }
6808
6809 if (!decl_function_context (fndecl))
6810 undef_nested_function = false;
6811
6812 /* We're leaving the context of this function, so zap cfun.
6813 It's still in DECL_STRUCT_FUNCTION, and we'll restore it in
6814 tree_rest_of_compilation. */
6815 cfun = NULL;
6816 current_function_decl = NULL;
6817 }
6818 \f
6819 /* Check the declarations given in a for-loop for satisfying the C99
6820 constraints. If exactly one such decl is found, return it. */
6821
6822 tree
6823 check_for_loop_decls (void)
6824 {
6825 struct c_binding *b;
6826 tree one_decl = NULL_TREE;
6827 int n_decls = 0;
6828
6829
6830 if (!flag_isoc99)
6831 {
6832 /* If we get here, declarations have been used in a for loop without
6833 the C99 for loop scope. This doesn't make much sense, so don't
6834 allow it. */
6835 error ("%<for%> loop initial declaration used outside C99 mode");
6836 return NULL_TREE;
6837 }
6838 /* C99 subclause 6.8.5 paragraph 3:
6839
6840 [#3] The declaration part of a for statement shall only
6841 declare identifiers for objects having storage class auto or
6842 register.
6843
6844 It isn't clear whether, in this sentence, "identifiers" binds to
6845 "shall only declare" or to "objects" - that is, whether all identifiers
6846 declared must be identifiers for objects, or whether the restriction
6847 only applies to those that are. (A question on this in comp.std.c
6848 in November 2000 received no answer.) We implement the strictest
6849 interpretation, to avoid creating an extension which later causes
6850 problems. */
6851
6852 for (b = current_scope->bindings; b; b = b->prev)
6853 {
6854 tree id = b->id;
6855 tree decl = b->decl;
6856
6857 if (!id)
6858 continue;
6859
6860 switch (TREE_CODE (decl))
6861 {
6862 case VAR_DECL:
6863 if (TREE_STATIC (decl))
6864 error ("declaration of static variable %q+D in %<for%> loop "
6865 "initial declaration", decl);
6866 else if (DECL_EXTERNAL (decl))
6867 error ("declaration of %<extern%> variable %q+D in %<for%> loop "
6868 "initial declaration", decl);
6869 break;
6870
6871 case RECORD_TYPE:
6872 error ("%<struct %E%> declared in %<for%> loop initial declaration",
6873 id);
6874 break;
6875 case UNION_TYPE:
6876 error ("%<union %E%> declared in %<for%> loop initial declaration",
6877 id);
6878 break;
6879 case ENUMERAL_TYPE:
6880 error ("%<enum %E%> declared in %<for%> loop initial declaration",
6881 id);
6882 break;
6883 default:
6884 error ("declaration of non-variable %q+D in %<for%> loop "
6885 "initial declaration", decl);
6886 }
6887
6888 n_decls++;
6889 one_decl = decl;
6890 }
6891
6892 return n_decls == 1 ? one_decl : NULL_TREE;
6893 }
6894 \f
6895 /* Save and reinitialize the variables
6896 used during compilation of a C function. */
6897
6898 void
6899 c_push_function_context (struct function *f)
6900 {
6901 struct language_function *p;
6902 p = GGC_NEW (struct language_function);
6903 f->language = p;
6904
6905 p->base.x_stmt_tree = c_stmt_tree;
6906 p->x_break_label = c_break_label;
6907 p->x_cont_label = c_cont_label;
6908 p->x_switch_stack = c_switch_stack;
6909 p->arg_info = current_function_arg_info;
6910 p->returns_value = current_function_returns_value;
6911 p->returns_null = current_function_returns_null;
6912 p->returns_abnormally = current_function_returns_abnormally;
6913 p->warn_about_return_type = warn_about_return_type;
6914 }
6915
6916 /* Restore the variables used during compilation of a C function. */
6917
6918 void
6919 c_pop_function_context (struct function *f)
6920 {
6921 struct language_function *p = f->language;
6922
6923 if (DECL_STRUCT_FUNCTION (current_function_decl) == 0
6924 && DECL_SAVED_TREE (current_function_decl) == NULL_TREE)
6925 {
6926 /* Stop pointing to the local nodes about to be freed. */
6927 /* But DECL_INITIAL must remain nonzero so we know this
6928 was an actual function definition. */
6929 DECL_INITIAL (current_function_decl) = error_mark_node;
6930 DECL_ARGUMENTS (current_function_decl) = 0;
6931 }
6932
6933 c_stmt_tree = p->base.x_stmt_tree;
6934 c_break_label = p->x_break_label;
6935 c_cont_label = p->x_cont_label;
6936 c_switch_stack = p->x_switch_stack;
6937 current_function_arg_info = p->arg_info;
6938 current_function_returns_value = p->returns_value;
6939 current_function_returns_null = p->returns_null;
6940 current_function_returns_abnormally = p->returns_abnormally;
6941 warn_about_return_type = p->warn_about_return_type;
6942
6943 f->language = NULL;
6944 }
6945
6946 /* Copy the DECL_LANG_SPECIFIC data associated with DECL. */
6947
6948 void
6949 c_dup_lang_specific_decl (tree decl)
6950 {
6951 struct lang_decl *ld;
6952
6953 if (!DECL_LANG_SPECIFIC (decl))
6954 return;
6955
6956 ld = GGC_NEW (struct lang_decl);
6957 memcpy (ld, DECL_LANG_SPECIFIC (decl), sizeof (struct lang_decl));
6958 DECL_LANG_SPECIFIC (decl) = ld;
6959 }
6960
6961 /* The functions below are required for functionality of doing
6962 function at once processing in the C front end. Currently these
6963 functions are not called from anywhere in the C front end, but as
6964 these changes continue, that will change. */
6965
6966 /* Returns the stmt_tree (if any) to which statements are currently
6967 being added. If there is no active statement-tree, NULL is
6968 returned. */
6969
6970 stmt_tree
6971 current_stmt_tree (void)
6972 {
6973 return &c_stmt_tree;
6974 }
6975
6976 /* Nonzero if TYPE is an anonymous union or struct type. Always 0 in
6977 C. */
6978
6979 int
6980 anon_aggr_type_p (tree ARG_UNUSED (node))
6981 {
6982 return 0;
6983 }
6984
6985 /* Return the global value of T as a symbol. */
6986
6987 tree
6988 identifier_global_value (tree t)
6989 {
6990 struct c_binding *b;
6991
6992 for (b = I_SYMBOL_BINDING (t); b; b = b->shadowed)
6993 if (B_IN_FILE_SCOPE (b) || B_IN_EXTERNAL_SCOPE (b))
6994 return b->decl;
6995
6996 return 0;
6997 }
6998
6999 /* Record a builtin type for C. If NAME is non-NULL, it is the name used;
7000 otherwise the name is found in ridpointers from RID_INDEX. */
7001
7002 void
7003 record_builtin_type (enum rid rid_index, const char *name, tree type)
7004 {
7005 tree id, decl;
7006 if (name == 0)
7007 id = ridpointers[(int) rid_index];
7008 else
7009 id = get_identifier (name);
7010 decl = build_decl (TYPE_DECL, id, type);
7011 pushdecl (decl);
7012 if (debug_hooks->type_decl)
7013 debug_hooks->type_decl (decl, false);
7014 }
7015
7016 /* Build the void_list_node (void_type_node having been created). */
7017 tree
7018 build_void_list_node (void)
7019 {
7020 tree t = build_tree_list (NULL_TREE, void_type_node);
7021 return t;
7022 }
7023
7024 /* Return a c_parm structure with the given SPECS, ATTRS and DECLARATOR. */
7025
7026 struct c_parm *
7027 build_c_parm (struct c_declspecs *specs, tree attrs,
7028 struct c_declarator *declarator)
7029 {
7030 struct c_parm *ret = XOBNEW (&parser_obstack, struct c_parm);
7031 ret->specs = specs;
7032 ret->attrs = attrs;
7033 ret->declarator = declarator;
7034 return ret;
7035 }
7036
7037 /* Return a declarator with nested attributes. TARGET is the inner
7038 declarator to which these attributes apply. ATTRS are the
7039 attributes. */
7040
7041 struct c_declarator *
7042 build_attrs_declarator (tree attrs, struct c_declarator *target)
7043 {
7044 struct c_declarator *ret = XOBNEW (&parser_obstack, struct c_declarator);
7045 ret->kind = cdk_attrs;
7046 ret->declarator = target;
7047 ret->u.attrs = attrs;
7048 return ret;
7049 }
7050
7051 /* Return a declarator for a function with arguments specified by ARGS
7052 and return type specified by TARGET. */
7053
7054 struct c_declarator *
7055 build_function_declarator (struct c_arg_info *args,
7056 struct c_declarator *target)
7057 {
7058 struct c_declarator *ret = XOBNEW (&parser_obstack, struct c_declarator);
7059 ret->kind = cdk_function;
7060 ret->declarator = target;
7061 ret->u.arg_info = args;
7062 return ret;
7063 }
7064
7065 /* Return a declarator for the identifier IDENT (which may be
7066 NULL_TREE for an abstract declarator). */
7067
7068 struct c_declarator *
7069 build_id_declarator (tree ident)
7070 {
7071 struct c_declarator *ret = XOBNEW (&parser_obstack, struct c_declarator);
7072 ret->kind = cdk_id;
7073 ret->declarator = 0;
7074 ret->u.id = ident;
7075 /* Default value - may get reset to a more precise location. */
7076 ret->id_loc = input_location;
7077 return ret;
7078 }
7079
7080 /* Return something to represent absolute declarators containing a *.
7081 TARGET is the absolute declarator that the * contains.
7082 TYPE_QUALS_ATTRS is a structure for type qualifiers and attributes
7083 to apply to the pointer type. */
7084
7085 struct c_declarator *
7086 make_pointer_declarator (struct c_declspecs *type_quals_attrs,
7087 struct c_declarator *target)
7088 {
7089 tree attrs;
7090 int quals = 0;
7091 struct c_declarator *itarget = target;
7092 struct c_declarator *ret = XOBNEW (&parser_obstack, struct c_declarator);
7093 if (type_quals_attrs)
7094 {
7095 attrs = type_quals_attrs->attrs;
7096 quals = quals_from_declspecs (type_quals_attrs);
7097 if (attrs != NULL_TREE)
7098 itarget = build_attrs_declarator (attrs, target);
7099 }
7100 ret->kind = cdk_pointer;
7101 ret->declarator = itarget;
7102 ret->u.pointer_quals = quals;
7103 return ret;
7104 }
7105
7106 /* Return a pointer to a structure for an empty list of declaration
7107 specifiers. */
7108
7109 struct c_declspecs *
7110 build_null_declspecs (void)
7111 {
7112 struct c_declspecs *ret = XOBNEW (&parser_obstack, struct c_declspecs);
7113 ret->type = 0;
7114 ret->decl_attr = 0;
7115 ret->attrs = 0;
7116 ret->typespec_word = cts_none;
7117 ret->storage_class = csc_none;
7118 ret->declspecs_seen_p = false;
7119 ret->type_seen_p = false;
7120 ret->non_sc_seen_p = false;
7121 ret->typedef_p = false;
7122 ret->tag_defined_p = false;
7123 ret->explicit_signed_p = false;
7124 ret->deprecated_p = false;
7125 ret->default_int_p = false;
7126 ret->long_p = false;
7127 ret->long_long_p = false;
7128 ret->short_p = false;
7129 ret->signed_p = false;
7130 ret->unsigned_p = false;
7131 ret->complex_p = false;
7132 ret->inline_p = false;
7133 ret->thread_p = false;
7134 ret->const_p = false;
7135 ret->volatile_p = false;
7136 ret->restrict_p = false;
7137 return ret;
7138 }
7139
7140 /* Add the type qualifier QUAL to the declaration specifiers SPECS,
7141 returning SPECS. */
7142
7143 struct c_declspecs *
7144 declspecs_add_qual (struct c_declspecs *specs, tree qual)
7145 {
7146 enum rid i;
7147 bool dupe = false;
7148 specs->non_sc_seen_p = true;
7149 specs->declspecs_seen_p = true;
7150 gcc_assert (TREE_CODE (qual) == IDENTIFIER_NODE
7151 && C_IS_RESERVED_WORD (qual));
7152 i = C_RID_CODE (qual);
7153 switch (i)
7154 {
7155 case RID_CONST:
7156 dupe = specs->const_p;
7157 specs->const_p = true;
7158 break;
7159 case RID_VOLATILE:
7160 dupe = specs->volatile_p;
7161 specs->volatile_p = true;
7162 break;
7163 case RID_RESTRICT:
7164 dupe = specs->restrict_p;
7165 specs->restrict_p = true;
7166 break;
7167 default:
7168 gcc_unreachable ();
7169 }
7170 if (dupe && pedantic && !flag_isoc99)
7171 pedwarn ("duplicate %qE", qual);
7172 return specs;
7173 }
7174
7175 /* Add the type specifier TYPE to the declaration specifiers SPECS,
7176 returning SPECS. */
7177
7178 struct c_declspecs *
7179 declspecs_add_type (struct c_declspecs *specs, struct c_typespec spec)
7180 {
7181 tree type = spec.spec;
7182 specs->non_sc_seen_p = true;
7183 specs->declspecs_seen_p = true;
7184 specs->type_seen_p = true;
7185 if (TREE_DEPRECATED (type))
7186 specs->deprecated_p = true;
7187
7188 /* Handle type specifier keywords. */
7189 if (TREE_CODE (type) == IDENTIFIER_NODE && C_IS_RESERVED_WORD (type))
7190 {
7191 enum rid i = C_RID_CODE (type);
7192 if (specs->type)
7193 {
7194 error ("two or more data types in declaration specifiers");
7195 return specs;
7196 }
7197 if ((int) i <= (int) RID_LAST_MODIFIER)
7198 {
7199 /* "long", "short", "signed", "unsigned" or "_Complex". */
7200 bool dupe = false;
7201 switch (i)
7202 {
7203 case RID_LONG:
7204 if (specs->long_long_p)
7205 {
7206 error ("%<long long long%> is too long for GCC");
7207 break;
7208 }
7209 if (specs->long_p)
7210 {
7211 if (specs->typespec_word == cts_double)
7212 {
7213 error ("both %<long long%> and %<double%> in "
7214 "declaration specifiers");
7215 break;
7216 }
7217 if (pedantic && !flag_isoc99 && !in_system_header
7218 && warn_long_long)
7219 pedwarn ("ISO C90 does not support %<long long%>");
7220 specs->long_long_p = 1;
7221 break;
7222 }
7223 if (specs->short_p)
7224 error ("both %<long%> and %<short%> in "
7225 "declaration specifiers");
7226 else if (specs->typespec_word == cts_void)
7227 error ("both %<long%> and %<void%> in "
7228 "declaration specifiers");
7229 else if (specs->typespec_word == cts_bool)
7230 error ("both %<long%> and %<_Bool%> in "
7231 "declaration specifiers");
7232 else if (specs->typespec_word == cts_char)
7233 error ("both %<long%> and %<char%> in "
7234 "declaration specifiers");
7235 else if (specs->typespec_word == cts_float)
7236 error ("both %<long%> and %<float%> in "
7237 "declaration specifiers");
7238 else if (specs->typespec_word == cts_dfloat32)
7239 error ("both %<long%> and %<_Decimal32%> in "
7240 "declaration specifiers");
7241 else if (specs->typespec_word == cts_dfloat64)
7242 error ("both %<long%> and %<_Decimal64%> in "
7243 "declaration specifiers");
7244 else if (specs->typespec_word == cts_dfloat128)
7245 error ("both %<long%> and %<_Decimal128%> in "
7246 "declaration specifiers");
7247 else
7248 specs->long_p = true;
7249 break;
7250 case RID_SHORT:
7251 dupe = specs->short_p;
7252 if (specs->long_p)
7253 error ("both %<long%> and %<short%> in "
7254 "declaration specifiers");
7255 else if (specs->typespec_word == cts_void)
7256 error ("both %<short%> and %<void%> in "
7257 "declaration specifiers");
7258 else if (specs->typespec_word == cts_bool)
7259 error ("both %<short%> and %<_Bool%> in "
7260 "declaration specifiers");
7261 else if (specs->typespec_word == cts_char)
7262 error ("both %<short%> and %<char%> in "
7263 "declaration specifiers");
7264 else if (specs->typespec_word == cts_float)
7265 error ("both %<short%> and %<float%> in "
7266 "declaration specifiers");
7267 else if (specs->typespec_word == cts_double)
7268 error ("both %<short%> and %<double%> in "
7269 "declaration specifiers");
7270 else if (specs->typespec_word == cts_dfloat32)
7271 error ("both %<short%> and %<_Decimal32%> in "
7272 "declaration specifiers");
7273 else if (specs->typespec_word == cts_dfloat64)
7274 error ("both %<short%> and %<_Decimal64%> in "
7275 "declaration specifiers");
7276 else if (specs->typespec_word == cts_dfloat128)
7277 error ("both %<short%> and %<_Decimal128%> in "
7278 "declaration specifiers");
7279 else
7280 specs->short_p = true;
7281 break;
7282 case RID_SIGNED:
7283 dupe = specs->signed_p;
7284 if (specs->unsigned_p)
7285 error ("both %<signed%> and %<unsigned%> in "
7286 "declaration specifiers");
7287 else if (specs->typespec_word == cts_void)
7288 error ("both %<signed%> and %<void%> in "
7289 "declaration specifiers");
7290 else if (specs->typespec_word == cts_bool)
7291 error ("both %<signed%> and %<_Bool%> in "
7292 "declaration specifiers");
7293 else if (specs->typespec_word == cts_float)
7294 error ("both %<signed%> and %<float%> in "
7295 "declaration specifiers");
7296 else if (specs->typespec_word == cts_double)
7297 error ("both %<signed%> and %<double%> in "
7298 "declaration specifiers");
7299 else if (specs->typespec_word == cts_dfloat32)
7300 error ("both %<signed%> and %<_Decimal32%> in "
7301 "declaration specifiers");
7302 else if (specs->typespec_word == cts_dfloat64)
7303 error ("both %<signed%> and %<_Decimal64%> in "
7304 "declaration specifiers");
7305 else if (specs->typespec_word == cts_dfloat128)
7306 error ("both %<signed%> and %<_Decimal128%> in "
7307 "declaration specifiers");
7308 else
7309 specs->signed_p = true;
7310 break;
7311 case RID_UNSIGNED:
7312 dupe = specs->unsigned_p;
7313 if (specs->signed_p)
7314 error ("both %<signed%> and %<unsigned%> in "
7315 "declaration specifiers");
7316 else if (specs->typespec_word == cts_void)
7317 error ("both %<unsigned%> and %<void%> in "
7318 "declaration specifiers");
7319 else if (specs->typespec_word == cts_bool)
7320 error ("both %<unsigned%> and %<_Bool%> in "
7321 "declaration specifiers");
7322 else if (specs->typespec_word == cts_float)
7323 error ("both %<unsigned%> and %<float%> in "
7324 "declaration specifiers");
7325 else if (specs->typespec_word == cts_double)
7326 error ("both %<unsigned%> and %<double%> in "
7327 "declaration specifiers");
7328 else if (specs->typespec_word == cts_dfloat32)
7329 error ("both %<unsigned%> and %<_Decimal32%> in "
7330 "declaration specifiers");
7331 else if (specs->typespec_word == cts_dfloat64)
7332 error ("both %<unsigned%> and %<_Decimal64%> in "
7333 "declaration specifiers");
7334 else if (specs->typespec_word == cts_dfloat128)
7335 error ("both %<unsigned%> and %<_Decimal128%> in "
7336 "declaration specifiers");
7337 else
7338 specs->unsigned_p = true;
7339 break;
7340 case RID_COMPLEX:
7341 dupe = specs->complex_p;
7342 if (pedantic && !flag_isoc99 && !in_system_header)
7343 pedwarn ("ISO C90 does not support complex types");
7344 if (specs->typespec_word == cts_void)
7345 error ("both %<complex%> and %<void%> in "
7346 "declaration specifiers");
7347 else if (specs->typespec_word == cts_bool)
7348 error ("both %<complex%> and %<_Bool%> in "
7349 "declaration specifiers");
7350 else if (specs->typespec_word == cts_dfloat32)
7351 error ("both %<complex%> and %<_Decimal32%> in "
7352 "declaration specifiers");
7353 else if (specs->typespec_word == cts_dfloat64)
7354 error ("both %<complex%> and %<_Decimal64%> in "
7355 "declaration specifiers");
7356 else if (specs->typespec_word == cts_dfloat128)
7357 error ("both %<complex%> and %<_Decimal128%> in "
7358 "declaration specifiers");
7359 else
7360 specs->complex_p = true;
7361 break;
7362 default:
7363 gcc_unreachable ();
7364 }
7365
7366 if (dupe)
7367 error ("duplicate %qE", type);
7368
7369 return specs;
7370 }
7371 else
7372 {
7373 /* "void", "_Bool", "char", "int", "float" or "double". */
7374 if (specs->typespec_word != cts_none)
7375 {
7376 error ("two or more data types in declaration specifiers");
7377 return specs;
7378 }
7379 switch (i)
7380 {
7381 case RID_VOID:
7382 if (specs->long_p)
7383 error ("both %<long%> and %<void%> in "
7384 "declaration specifiers");
7385 else if (specs->short_p)
7386 error ("both %<short%> and %<void%> in "
7387 "declaration specifiers");
7388 else if (specs->signed_p)
7389 error ("both %<signed%> and %<void%> in "
7390 "declaration specifiers");
7391 else if (specs->unsigned_p)
7392 error ("both %<unsigned%> and %<void%> in "
7393 "declaration specifiers");
7394 else if (specs->complex_p)
7395 error ("both %<complex%> and %<void%> in "
7396 "declaration specifiers");
7397 else
7398 specs->typespec_word = cts_void;
7399 return specs;
7400 case RID_BOOL:
7401 if (specs->long_p)
7402 error ("both %<long%> and %<_Bool%> in "
7403 "declaration specifiers");
7404 else if (specs->short_p)
7405 error ("both %<short%> and %<_Bool%> in "
7406 "declaration specifiers");
7407 else if (specs->signed_p)
7408 error ("both %<signed%> and %<_Bool%> in "
7409 "declaration specifiers");
7410 else if (specs->unsigned_p)
7411 error ("both %<unsigned%> and %<_Bool%> in "
7412 "declaration specifiers");
7413 else if (specs->complex_p)
7414 error ("both %<complex%> and %<_Bool%> in "
7415 "declaration specifiers");
7416 else
7417 specs->typespec_word = cts_bool;
7418 return specs;
7419 case RID_CHAR:
7420 if (specs->long_p)
7421 error ("both %<long%> and %<char%> in "
7422 "declaration specifiers");
7423 else if (specs->short_p)
7424 error ("both %<short%> and %<char%> in "
7425 "declaration specifiers");
7426 else
7427 specs->typespec_word = cts_char;
7428 return specs;
7429 case RID_INT:
7430 specs->typespec_word = cts_int;
7431 return specs;
7432 case RID_FLOAT:
7433 if (specs->long_p)
7434 error ("both %<long%> and %<float%> in "
7435 "declaration specifiers");
7436 else if (specs->short_p)
7437 error ("both %<short%> and %<float%> in "
7438 "declaration specifiers");
7439 else if (specs->signed_p)
7440 error ("both %<signed%> and %<float%> in "
7441 "declaration specifiers");
7442 else if (specs->unsigned_p)
7443 error ("both %<unsigned%> and %<float%> in "
7444 "declaration specifiers");
7445 else
7446 specs->typespec_word = cts_float;
7447 return specs;
7448 case RID_DOUBLE:
7449 if (specs->long_long_p)
7450 error ("both %<long long%> and %<double%> in "
7451 "declaration specifiers");
7452 else if (specs->short_p)
7453 error ("both %<short%> and %<double%> in "
7454 "declaration specifiers");
7455 else if (specs->signed_p)
7456 error ("both %<signed%> and %<double%> in "
7457 "declaration specifiers");
7458 else if (specs->unsigned_p)
7459 error ("both %<unsigned%> and %<double%> in "
7460 "declaration specifiers");
7461 else
7462 specs->typespec_word = cts_double;
7463 return specs;
7464 case RID_DFLOAT32:
7465 case RID_DFLOAT64:
7466 case RID_DFLOAT128:
7467 {
7468 const char *str;
7469 if (i == RID_DFLOAT32)
7470 str = "_Decimal32";
7471 else if (i == RID_DFLOAT64)
7472 str = "_Decimal64";
7473 else
7474 str = "_Decimal128";
7475 if (specs->long_long_p)
7476 error ("both %<long long%> and %<%s%> in "
7477 "declaration specifiers", str);
7478 if (specs->long_p)
7479 error ("both %<long%> and %<%s%> in "
7480 "declaration specifiers", str);
7481 else if (specs->short_p)
7482 error ("both %<short%> and %<%s%> in "
7483 "declaration specifiers", str);
7484 else if (specs->signed_p)
7485 error ("both %<signed%> and %<%s%> in "
7486 "declaration specifiers", str);
7487 else if (specs->unsigned_p)
7488 error ("both %<unsigned%> and %<%s%> in "
7489 "declaration specifiers", str);
7490 else if (specs->complex_p)
7491 error ("both %<complex%> and %<%s%> in "
7492 "declaration specifiers", str);
7493 else if (i == RID_DFLOAT32)
7494 specs->typespec_word = cts_dfloat32;
7495 else if (i == RID_DFLOAT64)
7496 specs->typespec_word = cts_dfloat64;
7497 else
7498 specs->typespec_word = cts_dfloat128;
7499 }
7500 if (!targetm.decimal_float_supported_p ())
7501 error ("decimal floating point not supported for this target");
7502 if (pedantic)
7503 pedwarn ("ISO C does not support decimal floating point");
7504 return specs;
7505 default:
7506 /* ObjC reserved word "id", handled below. */
7507 break;
7508 }
7509 }
7510 }
7511
7512 /* Now we have a typedef (a TYPE_DECL node), an identifier (some
7513 form of ObjC type, cases such as "int" and "long" being handled
7514 above), a TYPE (struct, union, enum and typeof specifiers) or an
7515 ERROR_MARK. In none of these cases may there have previously
7516 been any type specifiers. */
7517 if (specs->type || specs->typespec_word != cts_none
7518 || specs->long_p || specs->short_p || specs->signed_p
7519 || specs->unsigned_p || specs->complex_p)
7520 error ("two or more data types in declaration specifiers");
7521 else if (TREE_CODE (type) == TYPE_DECL)
7522 {
7523 if (TREE_TYPE (type) == error_mark_node)
7524 ; /* Allow the type to default to int to avoid cascading errors. */
7525 else
7526 {
7527 specs->type = TREE_TYPE (type);
7528 specs->decl_attr = DECL_ATTRIBUTES (type);
7529 specs->typedef_p = true;
7530 specs->explicit_signed_p = C_TYPEDEF_EXPLICITLY_SIGNED (type);
7531 }
7532 }
7533 else if (TREE_CODE (type) == IDENTIFIER_NODE)
7534 {
7535 tree t = lookup_name (type);
7536 if (!t || TREE_CODE (t) != TYPE_DECL)
7537 error ("%qE fails to be a typedef or built in type", type);
7538 else if (TREE_TYPE (t) == error_mark_node)
7539 ;
7540 else
7541 specs->type = TREE_TYPE (t);
7542 }
7543 else if (TREE_CODE (type) != ERROR_MARK)
7544 {
7545 if (spec.kind == ctsk_tagdef || spec.kind == ctsk_tagfirstref)
7546 specs->tag_defined_p = true;
7547 if (spec.kind == ctsk_typeof)
7548 specs->typedef_p = true;
7549 specs->type = type;
7550 }
7551
7552 return specs;
7553 }
7554
7555 /* Add the storage class specifier or function specifier SCSPEC to the
7556 declaration specifiers SPECS, returning SPECS. */
7557
7558 struct c_declspecs *
7559 declspecs_add_scspec (struct c_declspecs *specs, tree scspec)
7560 {
7561 enum rid i;
7562 enum c_storage_class n = csc_none;
7563 bool dupe = false;
7564 specs->declspecs_seen_p = true;
7565 gcc_assert (TREE_CODE (scspec) == IDENTIFIER_NODE
7566 && C_IS_RESERVED_WORD (scspec));
7567 i = C_RID_CODE (scspec);
7568 if (specs->non_sc_seen_p)
7569 warning (OPT_Wold_style_declaration,
7570 "%qE is not at beginning of declaration", scspec);
7571 switch (i)
7572 {
7573 case RID_INLINE:
7574 /* C99 permits duplicate inline. Although of doubtful utility,
7575 it seems simplest to permit it in gnu89 mode as well, as
7576 there is also little utility in maintaining this as a
7577 difference between gnu89 and C99 inline. */
7578 dupe = false;
7579 specs->inline_p = true;
7580 break;
7581 case RID_THREAD:
7582 dupe = specs->thread_p;
7583 if (specs->storage_class == csc_auto)
7584 error ("%<__thread%> used with %<auto%>");
7585 else if (specs->storage_class == csc_register)
7586 error ("%<__thread%> used with %<register%>");
7587 else if (specs->storage_class == csc_typedef)
7588 error ("%<__thread%> used with %<typedef%>");
7589 else
7590 specs->thread_p = true;
7591 break;
7592 case RID_AUTO:
7593 n = csc_auto;
7594 break;
7595 case RID_EXTERN:
7596 n = csc_extern;
7597 /* Diagnose "__thread extern". */
7598 if (specs->thread_p)
7599 error ("%<__thread%> before %<extern%>");
7600 break;
7601 case RID_REGISTER:
7602 n = csc_register;
7603 break;
7604 case RID_STATIC:
7605 n = csc_static;
7606 /* Diagnose "__thread static". */
7607 if (specs->thread_p)
7608 error ("%<__thread%> before %<static%>");
7609 break;
7610 case RID_TYPEDEF:
7611 n = csc_typedef;
7612 break;
7613 default:
7614 gcc_unreachable ();
7615 }
7616 if (n != csc_none && n == specs->storage_class)
7617 dupe = true;
7618 if (dupe)
7619 error ("duplicate %qE", scspec);
7620 if (n != csc_none)
7621 {
7622 if (specs->storage_class != csc_none && n != specs->storage_class)
7623 {
7624 error ("multiple storage classes in declaration specifiers");
7625 }
7626 else
7627 {
7628 specs->storage_class = n;
7629 if (n != csc_extern && n != csc_static && specs->thread_p)
7630 {
7631 error ("%<__thread%> used with %qE", scspec);
7632 specs->thread_p = false;
7633 }
7634 }
7635 }
7636 return specs;
7637 }
7638
7639 /* Add the attributes ATTRS to the declaration specifiers SPECS,
7640 returning SPECS. */
7641
7642 struct c_declspecs *
7643 declspecs_add_attrs (struct c_declspecs *specs, tree attrs)
7644 {
7645 specs->attrs = chainon (attrs, specs->attrs);
7646 specs->declspecs_seen_p = true;
7647 return specs;
7648 }
7649
7650 /* Combine "long", "short", "signed", "unsigned" and "_Complex" type
7651 specifiers with any other type specifier to determine the resulting
7652 type. This is where ISO C checks on complex types are made, since
7653 "_Complex long" is a prefix of the valid ISO C type "_Complex long
7654 double". */
7655
7656 struct c_declspecs *
7657 finish_declspecs (struct c_declspecs *specs)
7658 {
7659 /* If a type was specified as a whole, we have no modifiers and are
7660 done. */
7661 if (specs->type != NULL_TREE)
7662 {
7663 gcc_assert (!specs->long_p && !specs->long_long_p && !specs->short_p
7664 && !specs->signed_p && !specs->unsigned_p
7665 && !specs->complex_p);
7666 return specs;
7667 }
7668
7669 /* If none of "void", "_Bool", "char", "int", "float" or "double"
7670 has been specified, treat it as "int" unless "_Complex" is
7671 present and there are no other specifiers. If we just have
7672 "_Complex", it is equivalent to "_Complex double", but e.g.
7673 "_Complex short" is equivalent to "_Complex short int". */
7674 if (specs->typespec_word == cts_none)
7675 {
7676 if (specs->long_p || specs->short_p
7677 || specs->signed_p || specs->unsigned_p)
7678 {
7679 specs->typespec_word = cts_int;
7680 }
7681 else if (specs->complex_p)
7682 {
7683 specs->typespec_word = cts_double;
7684 if (pedantic)
7685 pedwarn ("ISO C does not support plain %<complex%> meaning "
7686 "%<double complex%>");
7687 }
7688 else
7689 {
7690 specs->typespec_word = cts_int;
7691 specs->default_int_p = true;
7692 /* We don't diagnose this here because grokdeclarator will
7693 give more specific diagnostics according to whether it is
7694 a function definition. */
7695 }
7696 }
7697
7698 /* If "signed" was specified, record this to distinguish "int" and
7699 "signed int" in the case of a bit-field with
7700 -funsigned-bitfields. */
7701 specs->explicit_signed_p = specs->signed_p;
7702
7703 /* Now compute the actual type. */
7704 switch (specs->typespec_word)
7705 {
7706 case cts_void:
7707 gcc_assert (!specs->long_p && !specs->short_p
7708 && !specs->signed_p && !specs->unsigned_p
7709 && !specs->complex_p);
7710 specs->type = void_type_node;
7711 break;
7712 case cts_bool:
7713 gcc_assert (!specs->long_p && !specs->short_p
7714 && !specs->signed_p && !specs->unsigned_p
7715 && !specs->complex_p);
7716 specs->type = boolean_type_node;
7717 break;
7718 case cts_char:
7719 gcc_assert (!specs->long_p && !specs->short_p);
7720 gcc_assert (!(specs->signed_p && specs->unsigned_p));
7721 if (specs->signed_p)
7722 specs->type = signed_char_type_node;
7723 else if (specs->unsigned_p)
7724 specs->type = unsigned_char_type_node;
7725 else
7726 specs->type = char_type_node;
7727 if (specs->complex_p)
7728 {
7729 if (pedantic)
7730 pedwarn ("ISO C does not support complex integer types");
7731 specs->type = build_complex_type (specs->type);
7732 }
7733 break;
7734 case cts_int:
7735 gcc_assert (!(specs->long_p && specs->short_p));
7736 gcc_assert (!(specs->signed_p && specs->unsigned_p));
7737 if (specs->long_long_p)
7738 specs->type = (specs->unsigned_p
7739 ? long_long_unsigned_type_node
7740 : long_long_integer_type_node);
7741 else if (specs->long_p)
7742 specs->type = (specs->unsigned_p
7743 ? long_unsigned_type_node
7744 : long_integer_type_node);
7745 else if (specs->short_p)
7746 specs->type = (specs->unsigned_p
7747 ? short_unsigned_type_node
7748 : short_integer_type_node);
7749 else
7750 specs->type = (specs->unsigned_p
7751 ? unsigned_type_node
7752 : integer_type_node);
7753 if (specs->complex_p)
7754 {
7755 if (pedantic)
7756 pedwarn ("ISO C does not support complex integer types");
7757 specs->type = build_complex_type (specs->type);
7758 }
7759 break;
7760 case cts_float:
7761 gcc_assert (!specs->long_p && !specs->short_p
7762 && !specs->signed_p && !specs->unsigned_p);
7763 specs->type = (specs->complex_p
7764 ? complex_float_type_node
7765 : float_type_node);
7766 break;
7767 case cts_double:
7768 gcc_assert (!specs->long_long_p && !specs->short_p
7769 && !specs->signed_p && !specs->unsigned_p);
7770 if (specs->long_p)
7771 {
7772 specs->type = (specs->complex_p
7773 ? complex_long_double_type_node
7774 : long_double_type_node);
7775 }
7776 else
7777 {
7778 specs->type = (specs->complex_p
7779 ? complex_double_type_node
7780 : double_type_node);
7781 }
7782 break;
7783 case cts_dfloat32:
7784 case cts_dfloat64:
7785 case cts_dfloat128:
7786 gcc_assert (!specs->long_p && !specs->long_long_p && !specs->short_p
7787 && !specs->signed_p && !specs->unsigned_p && !specs->complex_p);
7788 if (specs->typespec_word == cts_dfloat32)
7789 specs->type = dfloat32_type_node;
7790 else if (specs->typespec_word == cts_dfloat64)
7791 specs->type = dfloat64_type_node;
7792 else
7793 specs->type = dfloat128_type_node;
7794 break;
7795 default:
7796 gcc_unreachable ();
7797 }
7798
7799 return specs;
7800 }
7801
7802 /* A subroutine of c_write_global_declarations. Perform final processing
7803 on one file scope's declarations (or the external scope's declarations),
7804 GLOBALS. */
7805
7806 static void
7807 c_write_global_declarations_1 (tree globals)
7808 {
7809 tree decl;
7810 bool reconsider;
7811
7812 /* Process the decls in the order they were written. */
7813 for (decl = globals; decl; decl = TREE_CHAIN (decl))
7814 {
7815 /* Check for used but undefined static functions using the C
7816 standard's definition of "used", and set TREE_NO_WARNING so
7817 that check_global_declarations doesn't repeat the check. */
7818 if (TREE_CODE (decl) == FUNCTION_DECL
7819 && DECL_INITIAL (decl) == 0
7820 && DECL_EXTERNAL (decl)
7821 && !TREE_PUBLIC (decl)
7822 && C_DECL_USED (decl))
7823 {
7824 pedwarn ("%q+F used but never defined", decl);
7825 TREE_NO_WARNING (decl) = 1;
7826 }
7827
7828 wrapup_global_declaration_1 (decl);
7829 }
7830
7831 do
7832 {
7833 reconsider = false;
7834 for (decl = globals; decl; decl = TREE_CHAIN (decl))
7835 reconsider |= wrapup_global_declaration_2 (decl);
7836 }
7837 while (reconsider);
7838
7839 for (decl = globals; decl; decl = TREE_CHAIN (decl))
7840 check_global_declaration_1 (decl);
7841 }
7842
7843 /* A subroutine of c_write_global_declarations Emit debug information for each
7844 of the declarations in GLOBALS. */
7845
7846 static void
7847 c_write_global_declarations_2 (tree globals)
7848 {
7849 tree decl;
7850
7851 for (decl = globals; decl ; decl = TREE_CHAIN (decl))
7852 debug_hooks->global_decl (decl);
7853 }
7854
7855 /* Preserve the external declarations scope across a garbage collect. */
7856 static GTY(()) tree ext_block;
7857
7858 void
7859 c_write_global_declarations (void)
7860 {
7861 tree t;
7862
7863 /* We don't want to do this if generating a PCH. */
7864 if (pch_file)
7865 return;
7866
7867 /* Don't waste time on further processing if -fsyntax-only or we've
7868 encountered errors. */
7869 if (flag_syntax_only || errorcount || sorrycount || cpp_errors (parse_in))
7870 return;
7871
7872 /* Close the external scope. */
7873 ext_block = pop_scope ();
7874 external_scope = 0;
7875 gcc_assert (!current_scope);
7876
7877 if (ext_block)
7878 {
7879 tree tmp = BLOCK_VARS (ext_block);
7880 int flags;
7881 FILE * stream = dump_begin (TDI_tu, &flags);
7882 if (stream && tmp)
7883 {
7884 dump_node (tmp, flags & ~TDF_SLIM, stream);
7885 dump_end (TDI_tu, stream);
7886 }
7887 }
7888
7889 /* Process all file scopes in this compilation, and the external_scope,
7890 through wrapup_global_declarations and check_global_declarations. */
7891 for (t = all_translation_units; t; t = TREE_CHAIN (t))
7892 c_write_global_declarations_1 (BLOCK_VARS (DECL_INITIAL (t)));
7893 c_write_global_declarations_1 (BLOCK_VARS (ext_block));
7894
7895 /* We're done parsing; proceed to optimize and emit assembly.
7896 FIXME: shouldn't be the front end's responsibility to call this. */
7897 cgraph_optimize ();
7898
7899 /* After cgraph has had a chance to emit everything that's going to
7900 be emitted, output debug information for globals. */
7901 if (errorcount == 0 && sorrycount == 0)
7902 {
7903 timevar_push (TV_SYMOUT);
7904 for (t = all_translation_units; t; t = TREE_CHAIN (t))
7905 c_write_global_declarations_2 (BLOCK_VARS (DECL_INITIAL (t)));
7906 c_write_global_declarations_2 (BLOCK_VARS (ext_block));
7907 timevar_pop (TV_SYMOUT);
7908 }
7909
7910 ext_block = NULL;
7911 }
7912
7913 #include "gt-c-decl.h"