]> gcc.gnu.org Git - gcc.git/blob - gcc/c-parse.in
c-parse.in: Apply Ulrich's changes from c-parse.y.
[gcc.git] / gcc / c-parse.in
1 /* YACC parser for C syntax and for Objective C. -*-c-*-
2 Copyright (C) 1987, 88, 89, 92-99, 2000 Free Software Foundation, Inc.
3
4 This file is part of GNU CC.
5
6 GNU CC is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2, or (at your option)
9 any later version.
10
11 GNU CC is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with GNU CC; see the file COPYING. If not, write to
18 the Free Software Foundation, 59 Temple Place - Suite 330,
19 Boston, MA 02111-1307, USA. */
20
21 /* This file defines the grammar of C and that of Objective C.
22 ifobjc ... end ifobjc conditionals contain code for Objective C only.
23 ifc ... end ifc conditionals contain code for C only.
24 Sed commands in Makefile.in are used to convert this file into
25 c-parse.y and into objc-parse.y. */
26
27 /* To whomever it may concern: I have heard that such a thing was once
28 written by AT&T, but I have never seen it. */
29
30 ifobjc
31 %expect 74
32 end ifobjc
33 ifc
34 %expect 53
35 end ifc
36
37 %{
38 #include "config.h"
39 #include "system.h"
40 #include <setjmp.h>
41 #include "tree.h"
42 #include "input.h"
43 #include "c-lex.h"
44 #include "c-tree.h"
45 #include "flags.h"
46 #include "output.h"
47 #include "toplev.h"
48 #include "ggc.h"
49
50 #ifdef MULTIBYTE_CHARS
51 #include <locale.h>
52 #endif
53
54 ifobjc
55 #include "objc-act.h"
56 end ifobjc
57
58 /* Since parsers are distinct for each language, put the language string
59 definition here. */
60 ifobjc
61 const char * const language_string = "GNU Obj-C";
62 end ifobjc
63 ifc
64 const char * const language_string = "GNU C";
65 end ifc
66
67 /* Like YYERROR but do call yyerror. */
68 #define YYERROR1 { yyerror ("syntax error"); YYERROR; }
69
70 /* Cause the `yydebug' variable to be defined. */
71 #define YYDEBUG 1
72 %}
73
74 %start program
75
76 %union {long itype; tree ttype; enum tree_code code;
77 char *filename; int lineno; int ends_in_label; }
78
79 /* All identifiers that are not reserved words
80 and are not declared typedefs in the current block */
81 %token IDENTIFIER
82
83 /* All identifiers that are declared typedefs in the current block.
84 In some contexts, they are treated just like IDENTIFIER,
85 but they can also serve as typespecs in declarations. */
86 %token TYPENAME
87
88 /* Reserved words that specify storage class.
89 yylval contains an IDENTIFIER_NODE which indicates which one. */
90 %token SCSPEC
91
92 /* Reserved words that specify type.
93 yylval contains an IDENTIFIER_NODE which indicates which one. */
94 %token TYPESPEC
95
96 /* Reserved words that qualify type: "const", "volatile", or "restrict".
97 yylval contains an IDENTIFIER_NODE which indicates which one. */
98 %token TYPE_QUAL
99
100 /* Character or numeric constants.
101 yylval is the node for the constant. */
102 %token CONSTANT
103
104 /* String constants in raw form.
105 yylval is a STRING_CST node. */
106 %token STRING
107
108 /* "...", used for functions with variable arglists. */
109 %token ELLIPSIS
110
111 /* the reserved words */
112 /* SCO include files test "ASM", so use something else. */
113 %token SIZEOF ENUM STRUCT UNION IF ELSE WHILE DO FOR SWITCH CASE DEFAULT
114 %token BREAK CONTINUE RETURN GOTO ASM_KEYWORD TYPEOF ALIGNOF
115 %token ATTRIBUTE EXTENSION LABEL
116 %token REALPART IMAGPART VA_ARG
117
118 /* Used in c-lex.c for parsing pragmas. */
119 %token END_OF_LINE
120
121 /* Add precedence rules to solve dangling else s/r conflict */
122 %nonassoc IF
123 %nonassoc ELSE
124
125 /* Define the operator tokens and their precedences.
126 The value is an integer because, if used, it is the tree code
127 to use in the expression made from the operator. */
128
129 %right <code> ASSIGN '='
130 %right <code> '?' ':'
131 %left <code> OROR
132 %left <code> ANDAND
133 %left <code> '|'
134 %left <code> '^'
135 %left <code> '&'
136 %left <code> EQCOMPARE
137 %left <code> ARITHCOMPARE
138 %left <code> LSHIFT RSHIFT
139 %left <code> '+' '-'
140 %left <code> '*' '/' '%'
141 %right <code> UNARY PLUSPLUS MINUSMINUS
142 %left HYPERUNARY
143 %left <code> POINTSAT '.' '(' '['
144
145 /* The Objective-C keywords. These are included in C and in
146 Objective C, so that the token codes are the same in both. */
147 %token INTERFACE IMPLEMENTATION END SELECTOR DEFS ENCODE
148 %token CLASSNAME PUBLIC PRIVATE PROTECTED PROTOCOL OBJECTNAME CLASS ALIAS
149
150 /* Objective-C string constants in raw form.
151 yylval is an OBJC_STRING_CST node. */
152 %token OBJC_STRING
153
154
155 %type <code> unop
156
157 %type <ttype> identifier IDENTIFIER TYPENAME CONSTANT expr nonnull_exprlist exprlist
158 %type <ttype> expr_no_commas cast_expr unary_expr primary string STRING
159 %type <ttype> typed_declspecs reserved_declspecs
160 %type <ttype> typed_typespecs reserved_typespecquals
161 %type <ttype> declmods typespec typespecqual_reserved
162 %type <ttype> typed_declspecs_no_prefix_attr reserved_declspecs_no_prefix_attr
163 %type <ttype> declmods_no_prefix_attr
164 %type <ttype> SCSPEC TYPESPEC TYPE_QUAL nonempty_type_quals maybe_type_qual
165 %type <ttype> initdecls notype_initdecls initdcl notype_initdcl
166 %type <ttype> init maybeasm
167 %type <ttype> asm_operands nonnull_asm_operands asm_operand asm_clobbers
168 %type <ttype> maybe_attribute attributes attribute attribute_list attrib
169 %type <ttype> any_word extension
170
171 %type <ttype> compstmt compstmt_nostart compstmt_primary_start
172
173 %type <ttype> declarator
174 %type <ttype> notype_declarator after_type_declarator
175 %type <ttype> parm_declarator
176
177 %type <ttype> structsp component_decl_list component_decl_list2
178 %type <ttype> component_decl components component_declarator
179 %type <ttype> enumlist enumerator
180 %type <ttype> struct_head union_head enum_head
181 %type <ttype> typename absdcl absdcl1 type_quals
182 %type <ttype> xexpr parms parm identifiers
183
184 %type <ttype> parmlist parmlist_1 parmlist_2
185 %type <ttype> parmlist_or_identifiers parmlist_or_identifiers_1
186 %type <ttype> identifiers_or_typenames
187
188 %type <itype> setspecs
189
190 %type <ends_in_label> lineno_stmt_or_label lineno_stmt_or_labels stmt_or_label
191
192 %type <filename> save_filename
193 %type <lineno> save_lineno
194 \f
195 ifobjc
196 /* the Objective-C nonterminals */
197
198 %type <ttype> ivar_decl_list ivar_decls ivar_decl ivars ivar_declarator
199 %type <ttype> methoddecl unaryselector keywordselector selector
200 %type <ttype> keyworddecl receiver objcmessageexpr messageargs
201 %type <ttype> keywordexpr keywordarglist keywordarg
202 %type <ttype> myparms myparm optparmlist reservedwords objcselectorexpr
203 %type <ttype> selectorarg keywordnamelist keywordname objcencodeexpr
204 %type <ttype> objc_string non_empty_protocolrefs protocolrefs identifier_list objcprotocolexpr
205
206 %type <ttype> CLASSNAME OBJC_STRING OBJECTNAME
207 end ifobjc
208 \f
209 %{
210 /* Number of statements (loosely speaking) and compound statements
211 seen so far. */
212 static int stmt_count;
213 static int compstmt_count;
214
215 /* Input file and line number of the end of the body of last simple_if;
216 used by the stmt-rule immediately after simple_if returns. */
217 static char *if_stmt_file;
218 static int if_stmt_line;
219
220 /* List of types and structure classes of the current declaration. */
221 static tree current_declspecs = NULL_TREE;
222 static tree prefix_attributes = NULL_TREE;
223
224 /* Stack of saved values of current_declspecs and prefix_attributes. */
225 static tree declspec_stack;
226
227 /* 1 if we explained undeclared var errors. */
228 static int undeclared_variable_notice;
229
230 /* For __extension__, save/restore the warning flags which are
231 controlled by __extension__. */
232 #define SAVE_WARN_FLAGS() \
233 build_int_2 (pedantic | (warn_pointer_arith << 1), 0)
234 #define RESTORE_WARN_FLAGS(tval) \
235 do { \
236 int val = TREE_INT_CST_LOW (tval); \
237 pedantic = val & 1; \
238 warn_pointer_arith = (val >> 1) & 1; \
239 } while (0)
240
241 ifobjc
242 /* Objective-C specific information */
243
244 tree objc_interface_context;
245 tree objc_implementation_context;
246 tree objc_method_context;
247 tree objc_ivar_chain;
248 tree objc_ivar_context;
249 enum tree_code objc_inherit_code;
250 int objc_receiver_context;
251 int objc_public_flag;
252
253 end ifobjc
254
255 /* Tell yyparse how to print a token's value, if yydebug is set. */
256
257 #define YYPRINT(FILE,YYCHAR,YYLVAL) yyprint(FILE,YYCHAR,YYLVAL)
258 extern void yyprint PARAMS ((FILE *, int, YYSTYPE));
259
260 /* Add GC roots for variables local to this file. */
261 void
262 c_parse_init ()
263 {
264 ggc_add_tree_root (&declspec_stack, 1);
265 ggc_add_tree_root (&current_declspecs, 1);
266 ggc_add_tree_root (&prefix_attributes, 1);
267 }
268
269 %}
270 \f
271 %%
272 program: /* empty */
273 { if (pedantic)
274 pedwarn ("ANSI C forbids an empty source file");
275 finish_file ();
276 }
277 | extdefs
278 {
279 /* In case there were missing closebraces,
280 get us back to the global binding level. */
281 while (! global_bindings_p ())
282 poplevel (0, 0, 0);
283 finish_file ();
284 }
285 ;
286
287 /* the reason for the strange actions in this rule
288 is so that notype_initdecls when reached via datadef
289 can find a valid list of type and sc specs in $0. */
290
291 extdefs:
292 {$<ttype>$ = NULL_TREE; } extdef
293 | extdefs {$<ttype>$ = NULL_TREE; } extdef
294 ;
295
296 extdef:
297 fndef
298 | datadef
299 ifobjc
300 | objcdef
301 end ifobjc
302 | ASM_KEYWORD '(' expr ')' ';'
303 { STRIP_NOPS ($3);
304 if ((TREE_CODE ($3) == ADDR_EXPR
305 && TREE_CODE (TREE_OPERAND ($3, 0)) == STRING_CST)
306 || TREE_CODE ($3) == STRING_CST)
307 assemble_asm ($3);
308 else
309 error ("argument of `asm' is not a constant string"); }
310 | extension extdef
311 { RESTORE_WARN_FLAGS ($1); }
312 ;
313
314 datadef:
315 setspecs notype_initdecls ';'
316 { if (pedantic)
317 error ("ANSI C forbids data definition with no type or storage class");
318 else if (!flag_traditional)
319 warning ("data definition has no type or storage class");
320
321 current_declspecs = TREE_VALUE (declspec_stack);
322 prefix_attributes = TREE_PURPOSE (declspec_stack);
323 declspec_stack = TREE_CHAIN (declspec_stack); }
324 | declmods setspecs notype_initdecls ';'
325 { current_declspecs = TREE_VALUE (declspec_stack);
326 prefix_attributes = TREE_PURPOSE (declspec_stack);
327 declspec_stack = TREE_CHAIN (declspec_stack); }
328 | typed_declspecs setspecs initdecls ';'
329 { current_declspecs = TREE_VALUE (declspec_stack);
330 prefix_attributes = TREE_PURPOSE (declspec_stack);
331 declspec_stack = TREE_CHAIN (declspec_stack); }
332 | declmods ';'
333 { pedwarn ("empty declaration"); }
334 | typed_declspecs ';'
335 { shadow_tag ($1); }
336 | error ';'
337 | error '}'
338 | ';'
339 { if (pedantic)
340 pedwarn ("ANSI C does not allow extra `;' outside of a function"); }
341 ;
342 \f
343 fndef:
344 typed_declspecs setspecs declarator
345 { if (! start_function (current_declspecs, $3,
346 prefix_attributes, NULL_TREE))
347 YYERROR1;
348 reinit_parse_for_function (); }
349 old_style_parm_decls
350 { store_parm_decls (); }
351 compstmt_or_error
352 { finish_function (0);
353 current_declspecs = TREE_VALUE (declspec_stack);
354 prefix_attributes = TREE_PURPOSE (declspec_stack);
355 declspec_stack = TREE_CHAIN (declspec_stack); }
356 | typed_declspecs setspecs declarator error
357 { current_declspecs = TREE_VALUE (declspec_stack);
358 prefix_attributes = TREE_PURPOSE (declspec_stack);
359 declspec_stack = TREE_CHAIN (declspec_stack); }
360 | declmods setspecs notype_declarator
361 { if (! start_function (current_declspecs, $3,
362 prefix_attributes, NULL_TREE))
363 YYERROR1;
364 reinit_parse_for_function (); }
365 old_style_parm_decls
366 { store_parm_decls (); }
367 compstmt_or_error
368 { finish_function (0);
369 current_declspecs = TREE_VALUE (declspec_stack);
370 prefix_attributes = TREE_PURPOSE (declspec_stack);
371 declspec_stack = TREE_CHAIN (declspec_stack); }
372 | declmods setspecs notype_declarator error
373 { current_declspecs = TREE_VALUE (declspec_stack);
374 prefix_attributes = TREE_PURPOSE (declspec_stack);
375 declspec_stack = TREE_CHAIN (declspec_stack); }
376 | setspecs notype_declarator
377 { if (! start_function (NULL_TREE, $2,
378 prefix_attributes, NULL_TREE))
379 YYERROR1;
380 reinit_parse_for_function (); }
381 old_style_parm_decls
382 { store_parm_decls (); }
383 compstmt_or_error
384 { finish_function (0);
385 current_declspecs = TREE_VALUE (declspec_stack);
386 prefix_attributes = TREE_PURPOSE (declspec_stack);
387 declspec_stack = TREE_CHAIN (declspec_stack); }
388 | setspecs notype_declarator error
389 { current_declspecs = TREE_VALUE (declspec_stack);
390 prefix_attributes = TREE_PURPOSE (declspec_stack);
391 declspec_stack = TREE_CHAIN (declspec_stack); }
392 ;
393
394 identifier:
395 IDENTIFIER
396 | TYPENAME
397 ifobjc
398 | OBJECTNAME
399 | CLASSNAME
400 end ifobjc
401 ;
402
403 unop: '&'
404 { $$ = ADDR_EXPR; }
405 | '-'
406 { $$ = NEGATE_EXPR; }
407 | '+'
408 { $$ = CONVERT_EXPR; }
409 | PLUSPLUS
410 { $$ = PREINCREMENT_EXPR; }
411 | MINUSMINUS
412 { $$ = PREDECREMENT_EXPR; }
413 | '~'
414 { $$ = BIT_NOT_EXPR; }
415 | '!'
416 { $$ = TRUTH_NOT_EXPR; }
417 ;
418
419 expr: nonnull_exprlist
420 { $$ = build_compound_expr ($1); }
421 ;
422
423 exprlist:
424 /* empty */
425 { $$ = NULL_TREE; }
426 | nonnull_exprlist
427 ;
428
429 nonnull_exprlist:
430 expr_no_commas
431 { $$ = build_tree_list (NULL_TREE, $1); }
432 | nonnull_exprlist ',' expr_no_commas
433 { chainon ($1, build_tree_list (NULL_TREE, $3)); }
434 ;
435
436 unary_expr:
437 primary
438 | '*' cast_expr %prec UNARY
439 { $$ = build_indirect_ref ($2, "unary *"); }
440 /* __extension__ turns off -pedantic for following primary. */
441 | extension cast_expr %prec UNARY
442 { $$ = $2;
443 RESTORE_WARN_FLAGS ($1); }
444 | unop cast_expr %prec UNARY
445 { $$ = build_unary_op ($1, $2, 0);
446 overflow_warning ($$); }
447 /* Refer to the address of a label as a pointer. */
448 | ANDAND identifier
449 { tree label = lookup_label ($2);
450 if (pedantic)
451 pedwarn ("ANSI C forbids `&&'");
452 if (label == 0)
453 $$ = null_pointer_node;
454 else
455 {
456 TREE_USED (label) = 1;
457 $$ = build1 (ADDR_EXPR, ptr_type_node, label);
458 TREE_CONSTANT ($$) = 1;
459 }
460 }
461 /* This seems to be impossible on some machines, so let's turn it off.
462 You can use __builtin_next_arg to find the anonymous stack args.
463 | '&' ELLIPSIS
464 { tree types = TYPE_ARG_TYPES (TREE_TYPE (current_function_decl));
465 $$ = error_mark_node;
466 if (TREE_VALUE (tree_last (types)) == void_type_node)
467 error ("`&...' used in function with fixed number of arguments");
468 else
469 {
470 if (pedantic)
471 pedwarn ("ANSI C forbids `&...'");
472 $$ = tree_last (DECL_ARGUMENTS (current_function_decl));
473 $$ = build_unary_op (ADDR_EXPR, $$, 0);
474 } }
475 */
476 | sizeof unary_expr %prec UNARY
477 { skip_evaluation--;
478 if (TREE_CODE ($2) == COMPONENT_REF
479 && DECL_C_BIT_FIELD (TREE_OPERAND ($2, 1)))
480 error ("`sizeof' applied to a bit-field");
481 $$ = c_sizeof (TREE_TYPE ($2)); }
482 | sizeof '(' typename ')' %prec HYPERUNARY
483 { skip_evaluation--;
484 $$ = c_sizeof (groktypename ($3)); }
485 | alignof unary_expr %prec UNARY
486 { skip_evaluation--;
487 $$ = c_alignof_expr ($2); }
488 | alignof '(' typename ')' %prec HYPERUNARY
489 { skip_evaluation--;
490 $$ = c_alignof (groktypename ($3)); }
491 | REALPART cast_expr %prec UNARY
492 { $$ = build_unary_op (REALPART_EXPR, $2, 0); }
493 | IMAGPART cast_expr %prec UNARY
494 { $$ = build_unary_op (IMAGPART_EXPR, $2, 0); }
495 | VA_ARG '(' expr_no_commas ',' typename ')'
496 { $$ = build_va_arg ($3, groktypename ($5)); }
497 ;
498
499 sizeof:
500 SIZEOF { skip_evaluation++; }
501 ;
502
503 alignof:
504 ALIGNOF { skip_evaluation++; }
505 ;
506
507 cast_expr:
508 unary_expr
509 | '(' typename ')' cast_expr %prec UNARY
510 { tree type = groktypename ($2);
511 $$ = build_c_cast (type, $4); }
512 | '(' typename ')' '{'
513 { start_init (NULL_TREE, NULL, 0);
514 $2 = groktypename ($2);
515 really_start_incremental_init ($2); }
516 initlist_maybe_comma '}' %prec UNARY
517 { const char *name;
518 tree result = pop_init_level (0);
519 tree type = $2;
520 finish_init ();
521
522 if (pedantic && ! flag_isoc99)
523 pedwarn ("ANSI C forbids constructor expressions");
524 if (TYPE_NAME (type) != 0)
525 {
526 if (TREE_CODE (TYPE_NAME (type)) == IDENTIFIER_NODE)
527 name = IDENTIFIER_POINTER (TYPE_NAME (type));
528 else
529 name = IDENTIFIER_POINTER (DECL_NAME (TYPE_NAME (type)));
530 }
531 else
532 name = "";
533 $$ = result;
534 if (TREE_CODE (type) == ARRAY_TYPE && TYPE_SIZE (type) == 0)
535 {
536 int failure = complete_array_type (type, $$, 1);
537 if (failure)
538 abort ();
539 }
540 }
541 ;
542
543 expr_no_commas:
544 cast_expr
545 | expr_no_commas '+' expr_no_commas
546 { $$ = parser_build_binary_op ($2, $1, $3); }
547 | expr_no_commas '-' expr_no_commas
548 { $$ = parser_build_binary_op ($2, $1, $3); }
549 | expr_no_commas '*' expr_no_commas
550 { $$ = parser_build_binary_op ($2, $1, $3); }
551 | expr_no_commas '/' expr_no_commas
552 { $$ = parser_build_binary_op ($2, $1, $3); }
553 | expr_no_commas '%' expr_no_commas
554 { $$ = parser_build_binary_op ($2, $1, $3); }
555 | expr_no_commas LSHIFT expr_no_commas
556 { $$ = parser_build_binary_op ($2, $1, $3); }
557 | expr_no_commas RSHIFT expr_no_commas
558 { $$ = parser_build_binary_op ($2, $1, $3); }
559 | expr_no_commas ARITHCOMPARE expr_no_commas
560 { $$ = parser_build_binary_op ($2, $1, $3); }
561 | expr_no_commas EQCOMPARE expr_no_commas
562 { $$ = parser_build_binary_op ($2, $1, $3); }
563 | expr_no_commas '&' expr_no_commas
564 { $$ = parser_build_binary_op ($2, $1, $3); }
565 | expr_no_commas '|' expr_no_commas
566 { $$ = parser_build_binary_op ($2, $1, $3); }
567 | expr_no_commas '^' expr_no_commas
568 { $$ = parser_build_binary_op ($2, $1, $3); }
569 | expr_no_commas ANDAND
570 { $1 = truthvalue_conversion (default_conversion ($1));
571 skip_evaluation += $1 == boolean_false_node; }
572 expr_no_commas
573 { skip_evaluation -= $1 == boolean_false_node;
574 $$ = parser_build_binary_op (TRUTH_ANDIF_EXPR, $1, $4); }
575 | expr_no_commas OROR
576 { $1 = truthvalue_conversion (default_conversion ($1));
577 skip_evaluation += $1 == boolean_true_node; }
578 expr_no_commas
579 { skip_evaluation -= $1 == boolean_true_node;
580 $$ = parser_build_binary_op (TRUTH_ORIF_EXPR, $1, $4); }
581 | expr_no_commas '?'
582 { $1 = truthvalue_conversion (default_conversion ($1));
583 skip_evaluation += $1 == boolean_false_node; }
584 expr ':'
585 { skip_evaluation += (($1 == boolean_true_node)
586 - ($1 == boolean_false_node)); }
587 expr_no_commas
588 { skip_evaluation -= $1 == boolean_true_node;
589 $$ = build_conditional_expr ($1, $4, $7); }
590 | expr_no_commas '?'
591 { if (pedantic)
592 pedwarn ("ANSI C forbids omitting the middle term of a ?: expression");
593 /* Make sure first operand is calculated only once. */
594 $<ttype>2 = save_expr ($1);
595 $1 = truthvalue_conversion (default_conversion ($<ttype>2));
596 skip_evaluation += $1 == boolean_true_node; }
597 ':' expr_no_commas
598 { skip_evaluation -= $1 == boolean_true_node;
599 $$ = build_conditional_expr ($1, $<ttype>2, $5); }
600 | expr_no_commas '=' expr_no_commas
601 { char class;
602 $$ = build_modify_expr ($1, NOP_EXPR, $3);
603 class = TREE_CODE_CLASS (TREE_CODE ($$));
604 if (class == 'e' || class == '1'
605 || class == '2' || class == '<')
606 C_SET_EXP_ORIGINAL_CODE ($$, MODIFY_EXPR);
607 }
608 | expr_no_commas ASSIGN expr_no_commas
609 { char class;
610 $$ = build_modify_expr ($1, $2, $3);
611 /* This inhibits warnings in truthvalue_conversion. */
612 class = TREE_CODE_CLASS (TREE_CODE ($$));
613 if (class == 'e' || class == '1'
614 || class == '2' || class == '<')
615 C_SET_EXP_ORIGINAL_CODE ($$, ERROR_MARK);
616 }
617 ;
618
619 primary:
620 IDENTIFIER
621 {
622 $$ = lastiddecl;
623 if (!$$ || $$ == error_mark_node)
624 {
625 if (yychar == YYEMPTY)
626 yychar = YYLEX;
627 if (yychar == '(')
628 {
629 ifobjc
630 tree decl;
631
632 if (objc_receiver_context
633 && ! (objc_receiver_context
634 && strcmp (IDENTIFIER_POINTER ($1), "super")))
635 /* we have a message to super */
636 $$ = get_super_receiver ();
637 else if (objc_method_context
638 && (decl = is_ivar (objc_ivar_chain, $1)))
639 {
640 if (is_private (decl))
641 $$ = error_mark_node;
642 else
643 $$ = build_ivar_reference ($1);
644 }
645 else
646 end ifobjc
647 {
648 /* Ordinary implicit function declaration. */
649 $$ = implicitly_declare ($1);
650 assemble_external ($$);
651 TREE_USED ($$) = 1;
652 }
653 }
654 else if (current_function_decl == 0)
655 {
656 error ("`%s' undeclared here (not in a function)",
657 IDENTIFIER_POINTER ($1));
658 $$ = error_mark_node;
659 }
660 else
661 {
662 ifobjc
663 tree decl;
664
665 if (objc_receiver_context
666 && ! strcmp (IDENTIFIER_POINTER ($1), "super"))
667 /* we have a message to super */
668 $$ = get_super_receiver ();
669 else if (objc_method_context
670 && (decl = is_ivar (objc_ivar_chain, $1)))
671 {
672 if (is_private (decl))
673 $$ = error_mark_node;
674 else
675 $$ = build_ivar_reference ($1);
676 }
677 else
678 end ifobjc
679 {
680 if (IDENTIFIER_GLOBAL_VALUE ($1) != error_mark_node
681 || IDENTIFIER_ERROR_LOCUS ($1) != current_function_decl)
682 {
683 error ("`%s' undeclared (first use in this function)",
684 IDENTIFIER_POINTER ($1));
685
686 if (! undeclared_variable_notice)
687 {
688 error ("(Each undeclared identifier is reported only once");
689 error ("for each function it appears in.)");
690 undeclared_variable_notice = 1;
691 }
692 }
693 $$ = error_mark_node;
694 /* Prevent repeated error messages. */
695 IDENTIFIER_GLOBAL_VALUE ($1) = error_mark_node;
696 IDENTIFIER_ERROR_LOCUS ($1) = current_function_decl;
697 }
698 }
699 }
700 else if (TREE_TYPE ($$) == error_mark_node)
701 $$ = error_mark_node;
702 else if (C_DECL_ANTICIPATED ($$))
703 {
704 /* The first time we see a build-in function used,
705 if it has not been declared. */
706 C_DECL_ANTICIPATED ($$) = 0;
707 if (yychar == YYEMPTY)
708 yychar = YYLEX;
709 if (yychar == '(')
710 {
711 /* Omit the implicit declaration we
712 would ordinarily do, so we don't lose
713 the actual built in type.
714 But print a diagnostic for the mismatch. */
715 ifobjc
716 if (objc_method_context
717 && is_ivar (objc_ivar_chain, $1))
718 error ("Instance variable `%s' implicitly declared as function",
719 IDENTIFIER_POINTER (DECL_NAME ($$)));
720 else
721 end ifobjc
722 if (TREE_CODE ($$) != FUNCTION_DECL)
723 error ("`%s' implicitly declared as function",
724 IDENTIFIER_POINTER (DECL_NAME ($$)));
725 else if ((TYPE_MODE (TREE_TYPE (TREE_TYPE ($$)))
726 != TYPE_MODE (integer_type_node))
727 && (TREE_TYPE (TREE_TYPE ($$))
728 != void_type_node))
729 pedwarn ("type mismatch in implicit declaration for built-in function `%s'",
730 IDENTIFIER_POINTER (DECL_NAME ($$)));
731 /* If it really returns void, change that to int. */
732 if (TREE_TYPE (TREE_TYPE ($$)) == void_type_node)
733 TREE_TYPE ($$)
734 = build_function_type (integer_type_node,
735 TYPE_ARG_TYPES (TREE_TYPE ($$)));
736 }
737 else
738 pedwarn ("built-in function `%s' used without declaration",
739 IDENTIFIER_POINTER (DECL_NAME ($$)));
740
741 /* Do what we would ordinarily do when a fn is used. */
742 assemble_external ($$);
743 TREE_USED ($$) = 1;
744 }
745 else
746 {
747 assemble_external ($$);
748 TREE_USED ($$) = 1;
749 ifobjc
750 /* we have a definition - still check if iVariable */
751
752 if (!objc_receiver_context
753 || (objc_receiver_context
754 && strcmp (IDENTIFIER_POINTER ($1), "super")))
755 {
756 tree decl;
757
758 if (objc_method_context
759 && (decl = is_ivar (objc_ivar_chain, $1)))
760 {
761 if (IDENTIFIER_LOCAL_VALUE ($1))
762 warning ("local declaration of `%s' hides instance variable",
763 IDENTIFIER_POINTER ($1));
764 else
765 {
766 if (is_private (decl))
767 $$ = error_mark_node;
768 else
769 $$ = build_ivar_reference ($1);
770 }
771 }
772 }
773 else /* we have a message to super */
774 $$ = get_super_receiver ();
775 end ifobjc
776 }
777
778 if (TREE_CODE ($$) == CONST_DECL)
779 {
780 $$ = DECL_INITIAL ($$);
781 /* This is to prevent an enum whose value is 0
782 from being considered a null pointer constant. */
783 $$ = build1 (NOP_EXPR, TREE_TYPE ($$), $$);
784 TREE_CONSTANT ($$) = 1;
785 }
786 }
787 | CONSTANT
788 | string
789 { $$ = combine_strings ($1); }
790 | '(' expr ')'
791 { char class = TREE_CODE_CLASS (TREE_CODE ($2));
792 if (class == 'e' || class == '1'
793 || class == '2' || class == '<')
794 C_SET_EXP_ORIGINAL_CODE ($2, ERROR_MARK);
795 $$ = $2; }
796 | '(' error ')'
797 { $$ = error_mark_node; }
798 | compstmt_primary_start compstmt_nostart ')'
799 { tree rtl_exp;
800 if (pedantic)
801 pedwarn ("ANSI C forbids braced-groups within expressions");
802 pop_iterator_stack ();
803 pop_label_level ();
804 rtl_exp = expand_end_stmt_expr ($1);
805 /* The statements have side effects, so the group does. */
806 TREE_SIDE_EFFECTS (rtl_exp) = 1;
807
808 if (TREE_CODE ($2) == BLOCK)
809 {
810 /* Make a BIND_EXPR for the BLOCK already made. */
811 $$ = build (BIND_EXPR, TREE_TYPE (rtl_exp),
812 NULL_TREE, rtl_exp, $2);
813 /* Remove the block from the tree at this point.
814 It gets put back at the proper place
815 when the BIND_EXPR is expanded. */
816 delete_block ($2);
817 }
818 else
819 $$ = $2;
820 }
821 | compstmt_primary_start error ')'
822 {
823 /* Make sure we call expand_end_stmt_expr. Otherwise
824 we are likely to lose sequences and crash later. */
825 pop_iterator_stack ();
826 pop_label_level ();
827 expand_end_stmt_expr ($1);
828 $$ = error_mark_node;
829 }
830 | primary '(' exprlist ')' %prec '.'
831 { $$ = build_function_call ($1, $3); }
832 | primary '[' expr ']' %prec '.'
833 { $$ = build_array_ref ($1, $3); }
834 | primary '.' identifier
835 {
836 ifobjc
837 if (doing_objc_thang)
838 {
839 if (is_public ($1, $3))
840 $$ = build_component_ref ($1, $3);
841 else
842 $$ = error_mark_node;
843 }
844 else
845 end ifobjc
846 $$ = build_component_ref ($1, $3);
847 }
848 | primary POINTSAT identifier
849 {
850 tree expr = build_indirect_ref ($1, "->");
851
852 ifobjc
853 if (doing_objc_thang)
854 {
855 if (is_public (expr, $3))
856 $$ = build_component_ref (expr, $3);
857 else
858 $$ = error_mark_node;
859 }
860 else
861 end ifobjc
862 $$ = build_component_ref (expr, $3);
863 }
864 | primary PLUSPLUS
865 { $$ = build_unary_op (POSTINCREMENT_EXPR, $1, 0); }
866 | primary MINUSMINUS
867 { $$ = build_unary_op (POSTDECREMENT_EXPR, $1, 0); }
868 ifobjc
869 | objcmessageexpr
870 { $$ = build_message_expr ($1); }
871 | objcselectorexpr
872 { $$ = build_selector_expr ($1); }
873 | objcprotocolexpr
874 { $$ = build_protocol_expr ($1); }
875 | objcencodeexpr
876 { $$ = build_encode_expr ($1); }
877 | objc_string
878 { $$ = build_objc_string_object ($1); }
879 end ifobjc
880 ;
881
882 /* Produces a STRING_CST with perhaps more STRING_CSTs chained onto it. */
883 string:
884 STRING
885 | string STRING
886 { $$ = chainon ($1, $2);
887 ifc
888 if (warn_traditional && !in_system_header)
889 warning ("Use of ANSI string concatenation");
890 end ifc
891 }
892 ;
893
894 ifobjc
895 /* Produces an OBJC_STRING_CST with perhaps more OBJC_STRING_CSTs chained
896 onto it. */
897 objc_string:
898 OBJC_STRING
899 | objc_string OBJC_STRING
900 { $$ = chainon ($1, $2); }
901 ;
902 end ifobjc
903
904 old_style_parm_decls:
905 /* empty */
906 | datadecls
907 | datadecls ELLIPSIS
908 /* ... is used here to indicate a varargs function. */
909 { c_mark_varargs ();
910 if (pedantic)
911 pedwarn ("ANSI C does not permit use of `varargs.h'"); }
912 ;
913
914 /* The following are analogous to lineno_decl, decls and decl
915 except that they do not allow nested functions.
916 They are used for old-style parm decls. */
917 lineno_datadecl:
918 save_filename save_lineno datadecl
919 { }
920 ;
921
922 datadecls:
923 lineno_datadecl
924 | errstmt
925 | datadecls lineno_datadecl
926 | lineno_datadecl errstmt
927 ;
928
929 /* We don't allow prefix attributes here because they cause reduce/reduce
930 conflicts: we can't know whether we're parsing a function decl with
931 attribute suffix, or function defn with attribute prefix on first old
932 style parm. */
933 datadecl:
934 typed_declspecs_no_prefix_attr setspecs initdecls ';'
935 { current_declspecs = TREE_VALUE (declspec_stack);
936 prefix_attributes = TREE_PURPOSE (declspec_stack);
937 declspec_stack = TREE_CHAIN (declspec_stack); }
938 | declmods_no_prefix_attr setspecs notype_initdecls ';'
939 { current_declspecs = TREE_VALUE (declspec_stack);
940 prefix_attributes = TREE_PURPOSE (declspec_stack);
941 declspec_stack = TREE_CHAIN (declspec_stack); }
942 | typed_declspecs_no_prefix_attr ';'
943 { shadow_tag_warned ($1, 1);
944 pedwarn ("empty declaration"); }
945 | declmods_no_prefix_attr ';'
946 { pedwarn ("empty declaration"); }
947 ;
948
949 /* This combination which saves a lineno before a decl
950 is the normal thing to use, rather than decl itself.
951 This is to avoid shift/reduce conflicts in contexts
952 where statement labels are allowed. */
953 lineno_decl:
954 save_filename save_lineno decl
955 { }
956 ;
957
958 decls:
959 lineno_decl
960 | errstmt
961 | decls lineno_decl
962 | lineno_decl errstmt
963 ;
964
965 /* records the type and storage class specs to use for processing
966 the declarators that follow.
967 Maintains a stack of outer-level values of current_declspecs,
968 for the sake of parm declarations nested in function declarators. */
969 setspecs: /* empty */
970 { pending_xref_error ();
971 declspec_stack = tree_cons (prefix_attributes,
972 current_declspecs,
973 declspec_stack);
974 split_specs_attrs ($<ttype>0,
975 &current_declspecs, &prefix_attributes); }
976 ;
977
978 /* ??? Yuck. See after_type_declarator. */
979 setattrs: /* empty */
980 { prefix_attributes = chainon (prefix_attributes, $<ttype>0); }
981 ;
982
983 decl:
984 typed_declspecs setspecs initdecls ';'
985 { current_declspecs = TREE_VALUE (declspec_stack);
986 prefix_attributes = TREE_PURPOSE (declspec_stack);
987 declspec_stack = TREE_CHAIN (declspec_stack); }
988 | declmods setspecs notype_initdecls ';'
989 { current_declspecs = TREE_VALUE (declspec_stack);
990 prefix_attributes = TREE_PURPOSE (declspec_stack);
991 declspec_stack = TREE_CHAIN (declspec_stack); }
992 | typed_declspecs setspecs nested_function
993 { current_declspecs = TREE_VALUE (declspec_stack);
994 prefix_attributes = TREE_PURPOSE (declspec_stack);
995 declspec_stack = TREE_CHAIN (declspec_stack); }
996 | declmods setspecs notype_nested_function
997 { current_declspecs = TREE_VALUE (declspec_stack);
998 prefix_attributes = TREE_PURPOSE (declspec_stack);
999 declspec_stack = TREE_CHAIN (declspec_stack); }
1000 | typed_declspecs ';'
1001 { shadow_tag ($1); }
1002 | declmods ';'
1003 { pedwarn ("empty declaration"); }
1004 | extension decl
1005 { RESTORE_WARN_FLAGS ($1); }
1006 ;
1007
1008 /* Declspecs which contain at least one type specifier or typedef name.
1009 (Just `const' or `volatile' is not enough.)
1010 A typedef'd name following these is taken as a name to be declared.
1011 Declspecs have a non-NULL TREE_VALUE, attributes do not. */
1012
1013 typed_declspecs:
1014 typespec reserved_declspecs
1015 { $$ = tree_cons (NULL_TREE, $1, $2); }
1016 | declmods typespec reserved_declspecs
1017 { $$ = chainon ($3, tree_cons (NULL_TREE, $2, $1)); }
1018 ;
1019
1020 reserved_declspecs: /* empty */
1021 { $$ = NULL_TREE; }
1022 | reserved_declspecs typespecqual_reserved
1023 { $$ = tree_cons (NULL_TREE, $2, $1); }
1024 | reserved_declspecs SCSPEC
1025 { if (extra_warnings)
1026 warning ("`%s' is not at beginning of declaration",
1027 IDENTIFIER_POINTER ($2));
1028 $$ = tree_cons (NULL_TREE, $2, $1); }
1029 | reserved_declspecs attributes
1030 { $$ = tree_cons ($2, NULL_TREE, $1); }
1031 ;
1032
1033 typed_declspecs_no_prefix_attr:
1034 typespec reserved_declspecs_no_prefix_attr
1035 { $$ = tree_cons (NULL_TREE, $1, $2); }
1036 | declmods_no_prefix_attr typespec reserved_declspecs_no_prefix_attr
1037 { $$ = chainon ($3, tree_cons (NULL_TREE, $2, $1)); }
1038 ;
1039
1040 reserved_declspecs_no_prefix_attr:
1041 /* empty */
1042 { $$ = NULL_TREE; }
1043 | reserved_declspecs_no_prefix_attr typespecqual_reserved
1044 { $$ = tree_cons (NULL_TREE, $2, $1); }
1045 | reserved_declspecs_no_prefix_attr SCSPEC
1046 { if (extra_warnings)
1047 warning ("`%s' is not at beginning of declaration",
1048 IDENTIFIER_POINTER ($2));
1049 $$ = tree_cons (NULL_TREE, $2, $1); }
1050 ;
1051
1052 /* List of just storage classes, type modifiers, and prefix attributes.
1053 A declaration can start with just this, but then it cannot be used
1054 to redeclare a typedef-name.
1055 Declspecs have a non-NULL TREE_VALUE, attributes do not. */
1056
1057 declmods:
1058 declmods_no_prefix_attr
1059 { $$ = $1; }
1060 | attributes
1061 { $$ = tree_cons ($1, NULL_TREE, NULL_TREE); }
1062 | declmods declmods_no_prefix_attr
1063 { $$ = chainon ($2, $1); }
1064 | declmods attributes
1065 { $$ = tree_cons ($2, NULL_TREE, $1); }
1066 ;
1067
1068 declmods_no_prefix_attr:
1069 TYPE_QUAL
1070 { $$ = tree_cons (NULL_TREE, $1, NULL_TREE);
1071 TREE_STATIC ($$) = 1; }
1072 | SCSPEC
1073 { $$ = tree_cons (NULL_TREE, $1, NULL_TREE); }
1074 | declmods_no_prefix_attr TYPE_QUAL
1075 { $$ = tree_cons (NULL_TREE, $2, $1);
1076 TREE_STATIC ($$) = 1; }
1077 | declmods_no_prefix_attr SCSPEC
1078 { if (extra_warnings && TREE_STATIC ($1))
1079 warning ("`%s' is not at beginning of declaration",
1080 IDENTIFIER_POINTER ($2));
1081 $$ = tree_cons (NULL_TREE, $2, $1);
1082 TREE_STATIC ($$) = TREE_STATIC ($1); }
1083 ;
1084
1085
1086 /* Used instead of declspecs where storage classes are not allowed
1087 (that is, for typenames and structure components).
1088 Don't accept a typedef-name if anything but a modifier precedes it. */
1089
1090 typed_typespecs:
1091 typespec reserved_typespecquals
1092 { $$ = tree_cons (NULL_TREE, $1, $2); }
1093 | nonempty_type_quals typespec reserved_typespecquals
1094 { $$ = chainon ($3, tree_cons (NULL_TREE, $2, $1)); }
1095 ;
1096
1097 reserved_typespecquals: /* empty */
1098 { $$ = NULL_TREE; }
1099 | reserved_typespecquals typespecqual_reserved
1100 { $$ = tree_cons (NULL_TREE, $2, $1); }
1101 ;
1102
1103 /* A typespec (but not a type qualifier).
1104 Once we have seen one of these in a declaration,
1105 if a typedef name appears then it is being redeclared. */
1106
1107 typespec: TYPESPEC
1108 | structsp
1109 | TYPENAME
1110 { /* For a typedef name, record the meaning, not the name.
1111 In case of `foo foo, bar;'. */
1112 $$ = lookup_name ($1); }
1113 ifobjc
1114 | CLASSNAME protocolrefs
1115 { $$ = get_static_reference ($1, $2); }
1116 | OBJECTNAME protocolrefs
1117 { $$ = get_object_reference ($2); }
1118
1119 /* Make "<SomeProtocol>" equivalent to "id <SomeProtocol>"
1120 - nisse@lysator.liu.se */
1121 | non_empty_protocolrefs
1122 { $$ = get_object_reference ($1); }
1123 end ifobjc
1124 | TYPEOF '(' expr ')'
1125 { $$ = TREE_TYPE ($3); }
1126 | TYPEOF '(' typename ')'
1127 { $$ = groktypename ($3); }
1128 ;
1129
1130 /* A typespec that is a reserved word, or a type qualifier. */
1131
1132 typespecqual_reserved: TYPESPEC
1133 | TYPE_QUAL
1134 | structsp
1135 ;
1136
1137 initdecls:
1138 initdcl
1139 | initdecls ',' initdcl
1140 ;
1141
1142 notype_initdecls:
1143 notype_initdcl
1144 | notype_initdecls ',' initdcl
1145 ;
1146
1147 maybeasm:
1148 /* empty */
1149 { $$ = NULL_TREE; }
1150 | ASM_KEYWORD '(' string ')'
1151 { if (TREE_CHAIN ($3)) $3 = combine_strings ($3);
1152 $$ = $3;
1153 }
1154 ;
1155
1156 initdcl:
1157 declarator maybeasm maybe_attribute '='
1158 { $<ttype>$ = start_decl ($1, current_declspecs, 1,
1159 $3, prefix_attributes);
1160 start_init ($<ttype>$, $2, global_bindings_p ()); }
1161 init
1162 /* Note how the declaration of the variable is in effect while its init is parsed! */
1163 { finish_init ();
1164 finish_decl ($<ttype>5, $6, $2); }
1165 | declarator maybeasm maybe_attribute
1166 { tree d = start_decl ($1, current_declspecs, 0,
1167 $3, prefix_attributes);
1168 finish_decl (d, NULL_TREE, $2);
1169 }
1170 ;
1171
1172 notype_initdcl:
1173 notype_declarator maybeasm maybe_attribute '='
1174 { $<ttype>$ = start_decl ($1, current_declspecs, 1,
1175 $3, prefix_attributes);
1176 start_init ($<ttype>$, $2, global_bindings_p ()); }
1177 init
1178 /* Note how the declaration of the variable is in effect while its init is parsed! */
1179 { finish_init ();
1180 decl_attributes ($<ttype>5, $3, prefix_attributes);
1181 finish_decl ($<ttype>5, $6, $2); }
1182 | notype_declarator maybeasm maybe_attribute
1183 { tree d = start_decl ($1, current_declspecs, 0,
1184 $3, prefix_attributes);
1185 finish_decl (d, NULL_TREE, $2); }
1186 ;
1187 /* the * rules are dummies to accept the Apollo extended syntax
1188 so that the header files compile. */
1189 maybe_attribute:
1190 /* empty */
1191 { $$ = NULL_TREE; }
1192 | attributes
1193 { $$ = $1; }
1194 ;
1195
1196 attributes:
1197 attribute
1198 { $$ = $1; }
1199 | attributes attribute
1200 { $$ = chainon ($1, $2); }
1201 ;
1202
1203 attribute:
1204 ATTRIBUTE '(' '(' attribute_list ')' ')'
1205 { $$ = $4; }
1206 ;
1207
1208 attribute_list:
1209 attrib
1210 { $$ = $1; }
1211 | attribute_list ',' attrib
1212 { $$ = chainon ($1, $3); }
1213 ;
1214
1215 attrib:
1216 /* empty */
1217 { $$ = NULL_TREE; }
1218 | any_word
1219 { $$ = build_tree_list ($1, NULL_TREE); }
1220 | any_word '(' IDENTIFIER ')'
1221 { $$ = build_tree_list ($1, build_tree_list (NULL_TREE, $3)); }
1222 | any_word '(' IDENTIFIER ',' nonnull_exprlist ')'
1223 { $$ = build_tree_list ($1, tree_cons (NULL_TREE, $3, $5)); }
1224 | any_word '(' exprlist ')'
1225 { $$ = build_tree_list ($1, $3); }
1226 ;
1227
1228 /* This still leaves out most reserved keywords,
1229 shouldn't we include them? */
1230
1231 any_word:
1232 identifier
1233 | SCSPEC
1234 | TYPESPEC
1235 | TYPE_QUAL
1236 ;
1237 \f
1238 /* Initializers. `init' is the entry point. */
1239
1240 init:
1241 expr_no_commas
1242 | '{'
1243 { really_start_incremental_init (NULL_TREE); }
1244 initlist_maybe_comma '}'
1245 { $$ = pop_init_level (0); }
1246 | error
1247 { $$ = error_mark_node; }
1248 ;
1249
1250 /* `initlist_maybe_comma' is the guts of an initializer in braces. */
1251 initlist_maybe_comma:
1252 /* empty */
1253 { if (pedantic)
1254 pedwarn ("ANSI C forbids empty initializer braces"); }
1255 | initlist1 maybecomma
1256 ;
1257
1258 initlist1:
1259 initelt
1260 | initlist1 ',' initelt
1261 ;
1262
1263 /* `initelt' is a single element of an initializer.
1264 It may use braces. */
1265 initelt:
1266 designator_list '=' initval
1267 | designator initval
1268 | identifier ':'
1269 { set_init_label ($1); }
1270 initval
1271 | initval
1272 ;
1273
1274 initval:
1275 '{'
1276 { push_init_level (0); }
1277 initlist_maybe_comma '}'
1278 { process_init_element (pop_init_level (0)); }
1279 | expr_no_commas
1280 { process_init_element ($1); }
1281 | error
1282 ;
1283
1284 designator_list:
1285 designator
1286 | designator_list designator
1287 ;
1288
1289 designator:
1290 '.' identifier
1291 { set_init_label ($2); }
1292 /* These are for labeled elements. The syntax for an array element
1293 initializer conflicts with the syntax for an Objective-C message,
1294 so don't include these productions in the Objective-C grammar. */
1295 ifc
1296 | '[' expr_no_commas ELLIPSIS expr_no_commas ']'
1297 { set_init_index ($2, $4); }
1298 | '[' expr_no_commas ']'
1299 { set_init_index ($2, NULL_TREE); }
1300 end ifc
1301 ;
1302 \f
1303 nested_function:
1304 declarator
1305 { if (pedantic)
1306 pedwarn ("ANSI C forbids nested functions");
1307
1308 push_function_context ();
1309 if (! start_function (current_declspecs, $1,
1310 prefix_attributes, NULL_TREE))
1311 {
1312 pop_function_context ();
1313 YYERROR1;
1314 }
1315 reinit_parse_for_function (); }
1316 old_style_parm_decls
1317 { store_parm_decls (); }
1318 /* This used to use compstmt_or_error.
1319 That caused a bug with input `f(g) int g {}',
1320 where the use of YYERROR1 above caused an error
1321 which then was handled by compstmt_or_error.
1322 There followed a repeated execution of that same rule,
1323 which called YYERROR1 again, and so on. */
1324 compstmt
1325 { finish_function (1);
1326 pop_function_context (); }
1327 ;
1328
1329 notype_nested_function:
1330 notype_declarator
1331 { if (pedantic)
1332 pedwarn ("ANSI C forbids nested functions");
1333
1334 push_function_context ();
1335 if (! start_function (current_declspecs, $1,
1336 prefix_attributes, NULL_TREE))
1337 {
1338 pop_function_context ();
1339 YYERROR1;
1340 }
1341 reinit_parse_for_function (); }
1342 old_style_parm_decls
1343 { store_parm_decls (); }
1344 /* This used to use compstmt_or_error.
1345 That caused a bug with input `f(g) int g {}',
1346 where the use of YYERROR1 above caused an error
1347 which then was handled by compstmt_or_error.
1348 There followed a repeated execution of that same rule,
1349 which called YYERROR1 again, and so on. */
1350 compstmt
1351 { finish_function (1);
1352 pop_function_context (); }
1353 ;
1354
1355 /* Any kind of declarator (thus, all declarators allowed
1356 after an explicit typespec). */
1357
1358 declarator:
1359 after_type_declarator
1360 | notype_declarator
1361 ;
1362
1363 /* A declarator that is allowed only after an explicit typespec. */
1364
1365 after_type_declarator:
1366 '(' after_type_declarator ')'
1367 { $$ = $2; }
1368 | after_type_declarator '(' parmlist_or_identifiers %prec '.'
1369 { $$ = build_nt (CALL_EXPR, $1, $3, NULL_TREE); }
1370 /* | after_type_declarator '(' error ')' %prec '.'
1371 { $$ = build_nt (CALL_EXPR, $1, NULL_TREE, NULL_TREE);
1372 poplevel (0, 0, 0); } */
1373 | after_type_declarator '[' expr ']' %prec '.'
1374 { $$ = build_nt (ARRAY_REF, $1, $3); }
1375 | after_type_declarator '[' ']' %prec '.'
1376 { $$ = build_nt (ARRAY_REF, $1, NULL_TREE); }
1377 | '*' type_quals after_type_declarator %prec UNARY
1378 { $$ = make_pointer_declarator ($2, $3); }
1379 /* ??? Yuck. setattrs is a quick hack. We can't use
1380 prefix_attributes because $1 only applies to this
1381 declarator. We assume setspecs has already been done.
1382 setattrs also avoids 5 reduce/reduce conflicts (otherwise multiple
1383 attributes could be recognized here or in `attributes'). */
1384 | attributes setattrs after_type_declarator
1385 { $$ = $3; }
1386 | TYPENAME
1387 ifobjc
1388 | OBJECTNAME
1389 end ifobjc
1390 ;
1391
1392 /* Kinds of declarator that can appear in a parameter list
1393 in addition to notype_declarator. This is like after_type_declarator
1394 but does not allow a typedef name in parentheses as an identifier
1395 (because it would conflict with a function with that typedef as arg). */
1396
1397 parm_declarator:
1398 parm_declarator '(' parmlist_or_identifiers %prec '.'
1399 { $$ = build_nt (CALL_EXPR, $1, $3, NULL_TREE); }
1400 /* | parm_declarator '(' error ')' %prec '.'
1401 { $$ = build_nt (CALL_EXPR, $1, NULL_TREE, NULL_TREE);
1402 poplevel (0, 0, 0); } */
1403 ifc
1404 | parm_declarator '[' '*' ']' %prec '.'
1405 { $$ = build_nt (ARRAY_REF, $1, NULL_TREE);
1406 if (! flag_isoc99)
1407 error ("`[*]' in parameter declaration only allowed in ISO C 99");
1408 }
1409 end ifc
1410 | parm_declarator '[' expr ']' %prec '.'
1411 { $$ = build_nt (ARRAY_REF, $1, $3); }
1412 | parm_declarator '[' ']' %prec '.'
1413 { $$ = build_nt (ARRAY_REF, $1, NULL_TREE); }
1414 | '*' type_quals parm_declarator %prec UNARY
1415 { $$ = make_pointer_declarator ($2, $3); }
1416 /* ??? Yuck. setattrs is a quick hack. We can't use
1417 prefix_attributes because $1 only applies to this
1418 declarator. We assume setspecs has already been done.
1419 setattrs also avoids 5 reduce/reduce conflicts (otherwise multiple
1420 attributes could be recognized here or in `attributes'). */
1421 | attributes setattrs parm_declarator
1422 { $$ = $3; }
1423 | TYPENAME
1424 ;
1425
1426 /* A declarator allowed whether or not there has been
1427 an explicit typespec. These cannot redeclare a typedef-name. */
1428
1429 notype_declarator:
1430 notype_declarator '(' parmlist_or_identifiers %prec '.'
1431 { $$ = build_nt (CALL_EXPR, $1, $3, NULL_TREE); }
1432 /* | notype_declarator '(' error ')' %prec '.'
1433 { $$ = build_nt (CALL_EXPR, $1, NULL_TREE, NULL_TREE);
1434 poplevel (0, 0, 0); } */
1435 | '(' notype_declarator ')'
1436 { $$ = $2; }
1437 | '*' type_quals notype_declarator %prec UNARY
1438 { $$ = make_pointer_declarator ($2, $3); }
1439 ifc
1440 | notype_declarator '[' '*' ']' %prec '.'
1441 { $$ = build_nt (ARRAY_REF, $1, NULL_TREE);
1442 if (! flag_isoc99)
1443 error ("`[*]' in parameter declaration only allowed in ISO C 99");
1444 }
1445 end ifc
1446 | notype_declarator '[' expr ']' %prec '.'
1447 { $$ = build_nt (ARRAY_REF, $1, $3); }
1448 | notype_declarator '[' ']' %prec '.'
1449 { $$ = build_nt (ARRAY_REF, $1, NULL_TREE); }
1450 /* ??? Yuck. setattrs is a quick hack. We can't use
1451 prefix_attributes because $1 only applies to this
1452 declarator. We assume setspecs has already been done.
1453 setattrs also avoids 5 reduce/reduce conflicts (otherwise multiple
1454 attributes could be recognized here or in `attributes'). */
1455 | attributes setattrs notype_declarator
1456 { $$ = $3; }
1457 | IDENTIFIER
1458 ;
1459
1460 struct_head:
1461 STRUCT
1462 { $$ = NULL_TREE; }
1463 | STRUCT attributes
1464 { $$ = $2; }
1465 ;
1466
1467 union_head:
1468 UNION
1469 { $$ = NULL_TREE; }
1470 | UNION attributes
1471 { $$ = $2; }
1472 ;
1473
1474 enum_head:
1475 ENUM
1476 { $$ = NULL_TREE; }
1477 | ENUM attributes
1478 { $$ = $2; }
1479 ;
1480
1481 structsp:
1482 struct_head identifier '{'
1483 { $$ = start_struct (RECORD_TYPE, $2);
1484 /* Start scope of tag before parsing components. */
1485 }
1486 component_decl_list '}' maybe_attribute
1487 { $$ = finish_struct ($<ttype>4, $5, chainon ($1, $7)); }
1488 | struct_head '{' component_decl_list '}' maybe_attribute
1489 { $$ = finish_struct (start_struct (RECORD_TYPE, NULL_TREE),
1490 $3, chainon ($1, $5));
1491 }
1492 | struct_head identifier
1493 { $$ = xref_tag (RECORD_TYPE, $2); }
1494 | union_head identifier '{'
1495 { $$ = start_struct (UNION_TYPE, $2); }
1496 component_decl_list '}' maybe_attribute
1497 { $$ = finish_struct ($<ttype>4, $5, chainon ($1, $7)); }
1498 | union_head '{' component_decl_list '}' maybe_attribute
1499 { $$ = finish_struct (start_struct (UNION_TYPE, NULL_TREE),
1500 $3, chainon ($1, $5));
1501 }
1502 | union_head identifier
1503 { $$ = xref_tag (UNION_TYPE, $2); }
1504 | enum_head identifier '{'
1505 { $$ = start_enum ($2); }
1506 enumlist maybecomma_warn '}' maybe_attribute
1507 { $$ = finish_enum ($<ttype>4, nreverse ($5),
1508 chainon ($1, $8)); }
1509 | enum_head '{'
1510 { $$ = start_enum (NULL_TREE); }
1511 enumlist maybecomma_warn '}' maybe_attribute
1512 { $$ = finish_enum ($<ttype>3, nreverse ($4),
1513 chainon ($1, $7)); }
1514 | enum_head identifier
1515 { $$ = xref_tag (ENUMERAL_TYPE, $2); }
1516 ;
1517
1518 maybecomma:
1519 /* empty */
1520 | ','
1521 ;
1522
1523 maybecomma_warn:
1524 /* empty */
1525 | ','
1526 { if (pedantic && ! flag_isoc99)
1527 pedwarn ("comma at end of enumerator list"); }
1528 ;
1529
1530 component_decl_list:
1531 component_decl_list2
1532 { $$ = $1; }
1533 | component_decl_list2 component_decl
1534 { $$ = chainon ($1, $2);
1535 pedwarn ("no semicolon at end of struct or union"); }
1536 ;
1537
1538 component_decl_list2: /* empty */
1539 { $$ = NULL_TREE; }
1540 | component_decl_list2 component_decl ';'
1541 { $$ = chainon ($1, $2); }
1542 | component_decl_list2 ';'
1543 { if (pedantic)
1544 pedwarn ("extra semicolon in struct or union specified"); }
1545 ifobjc
1546 /* foo(sizeof(struct{ @defs(ClassName)})); */
1547 | DEFS '(' CLASSNAME ')'
1548 {
1549 tree interface = lookup_interface ($3);
1550
1551 if (interface)
1552 $$ = get_class_ivars (interface);
1553 else
1554 {
1555 error ("Cannot find interface declaration for `%s'",
1556 IDENTIFIER_POINTER ($3));
1557 $$ = NULL_TREE;
1558 }
1559 }
1560 end ifobjc
1561 ;
1562
1563 /* There is a shift-reduce conflict here, because `components' may
1564 start with a `typename'. It happens that shifting (the default resolution)
1565 does the right thing, because it treats the `typename' as part of
1566 a `typed_typespecs'.
1567
1568 It is possible that this same technique would allow the distinction
1569 between `notype_initdecls' and `initdecls' to be eliminated.
1570 But I am being cautious and not trying it. */
1571
1572 component_decl:
1573 typed_typespecs setspecs components
1574 { $$ = $3;
1575 current_declspecs = TREE_VALUE (declspec_stack);
1576 prefix_attributes = TREE_PURPOSE (declspec_stack);
1577 declspec_stack = TREE_CHAIN (declspec_stack); }
1578 | typed_typespecs setspecs save_filename save_lineno maybe_attribute
1579 {
1580 /* Support for unnamed structs or unions as members of
1581 structs or unions (which is [a] useful and [b] supports
1582 MS P-SDK). */
1583 if (pedantic)
1584 pedwarn ("ANSI C doesn't support unnamed structs/unions");
1585
1586 $$ = grokfield($3, $4, NULL, current_declspecs, NULL_TREE);
1587 current_declspecs = TREE_VALUE (declspec_stack);
1588 prefix_attributes = TREE_PURPOSE (declspec_stack);
1589 declspec_stack = TREE_CHAIN (declspec_stack);
1590 }
1591 | nonempty_type_quals setspecs components
1592 { $$ = $3;
1593 current_declspecs = TREE_VALUE (declspec_stack);
1594 prefix_attributes = TREE_PURPOSE (declspec_stack);
1595 declspec_stack = TREE_CHAIN (declspec_stack); }
1596 | nonempty_type_quals
1597 { if (pedantic)
1598 pedwarn ("ANSI C forbids member declarations with no members");
1599 shadow_tag($1);
1600 $$ = NULL_TREE; }
1601 | error
1602 { $$ = NULL_TREE; }
1603 | extension component_decl
1604 { $$ = $2;
1605 RESTORE_WARN_FLAGS ($1); }
1606 ;
1607
1608 components:
1609 component_declarator
1610 | components ',' component_declarator
1611 { $$ = chainon ($1, $3); }
1612 ;
1613
1614 component_declarator:
1615 save_filename save_lineno declarator maybe_attribute
1616 { $$ = grokfield ($1, $2, $3, current_declspecs, NULL_TREE);
1617 decl_attributes ($$, $4, prefix_attributes); }
1618 | save_filename save_lineno
1619 declarator ':' expr_no_commas maybe_attribute
1620 { $$ = grokfield ($1, $2, $3, current_declspecs, $5);
1621 decl_attributes ($$, $6, prefix_attributes); }
1622 | save_filename save_lineno ':' expr_no_commas maybe_attribute
1623 { $$ = grokfield ($1, $2, NULL_TREE, current_declspecs, $4);
1624 decl_attributes ($$, $5, prefix_attributes); }
1625 ;
1626
1627 /* We chain the enumerators in reverse order.
1628 They are put in forward order where enumlist is used.
1629 (The order used to be significant, but no longer is so.
1630 However, we still maintain the order, just to be clean.) */
1631
1632 enumlist:
1633 enumerator
1634 | enumlist ',' enumerator
1635 { if ($1 == error_mark_node)
1636 $$ = $1;
1637 else
1638 $$ = chainon ($3, $1); }
1639 | error
1640 { $$ = error_mark_node; }
1641 ;
1642
1643
1644 enumerator:
1645 identifier
1646 { $$ = build_enumerator ($1, NULL_TREE); }
1647 | identifier '=' expr_no_commas
1648 { $$ = build_enumerator ($1, $3); }
1649 ;
1650
1651 typename:
1652 typed_typespecs absdcl
1653 { $$ = build_tree_list ($1, $2); }
1654 | nonempty_type_quals absdcl
1655 { $$ = build_tree_list ($1, $2); }
1656 ;
1657
1658 absdcl: /* an absolute declarator */
1659 /* empty */
1660 { $$ = NULL_TREE; }
1661 | absdcl1
1662 ;
1663
1664 nonempty_type_quals:
1665 TYPE_QUAL
1666 { $$ = tree_cons (NULL_TREE, $1, NULL_TREE); }
1667 | nonempty_type_quals TYPE_QUAL
1668 { $$ = tree_cons (NULL_TREE, $2, $1); }
1669 ;
1670
1671 type_quals:
1672 /* empty */
1673 { $$ = NULL_TREE; }
1674 | type_quals TYPE_QUAL
1675 { $$ = tree_cons (NULL_TREE, $2, $1); }
1676 ;
1677
1678 absdcl1: /* a nonempty absolute declarator */
1679 '(' absdcl1 ')'
1680 { $$ = $2; }
1681 /* `(typedef)1' is `int'. */
1682 | '*' type_quals absdcl1 %prec UNARY
1683 { $$ = make_pointer_declarator ($2, $3); }
1684 | '*' type_quals %prec UNARY
1685 { $$ = make_pointer_declarator ($2, NULL_TREE); }
1686 | absdcl1 '(' parmlist %prec '.'
1687 { $$ = build_nt (CALL_EXPR, $1, $3, NULL_TREE); }
1688 | absdcl1 '[' expr ']' %prec '.'
1689 { $$ = build_nt (ARRAY_REF, $1, $3); }
1690 | absdcl1 '[' ']' %prec '.'
1691 { $$ = build_nt (ARRAY_REF, $1, NULL_TREE); }
1692 | '(' parmlist %prec '.'
1693 { $$ = build_nt (CALL_EXPR, NULL_TREE, $2, NULL_TREE); }
1694 | '[' expr ']' %prec '.'
1695 { $$ = build_nt (ARRAY_REF, NULL_TREE, $2); }
1696 | '[' ']' %prec '.'
1697 { $$ = build_nt (ARRAY_REF, NULL_TREE, NULL_TREE); }
1698 /* ??? It appears we have to support attributes here, however
1699 using prefix_attributes is wrong. */
1700 | attributes setattrs absdcl1
1701 { $$ = $3; }
1702 ;
1703
1704 /* at least one statement, the first of which parses without error. */
1705 /* stmts is used only after decls, so an invalid first statement
1706 is actually regarded as an invalid decl and part of the decls. */
1707
1708 stmts:
1709 lineno_stmt_or_labels
1710 {
1711 if (pedantic && $1)
1712 pedwarn ("ANSI C forbids label at end of compound statement");
1713 }
1714 ;
1715
1716 lineno_stmt_or_labels:
1717 lineno_stmt_or_label
1718 | lineno_stmt_or_labels lineno_stmt_or_label
1719 { $$ = $2; }
1720 | lineno_stmt_or_labels errstmt
1721 { $$ = 0; }
1722 ;
1723
1724 xstmts:
1725 /* empty */
1726 | stmts
1727 ;
1728
1729 errstmt: error ';'
1730 ;
1731
1732 pushlevel: /* empty */
1733 { emit_line_note (input_filename, lineno);
1734 pushlevel (0);
1735 clear_last_expr ();
1736 expand_start_bindings (0);
1737 ifobjc
1738 if (objc_method_context)
1739 add_objc_decls ();
1740 end ifobjc
1741 }
1742 ;
1743
1744 /* Read zero or more forward-declarations for labels
1745 that nested functions can jump to. */
1746 maybe_label_decls:
1747 /* empty */
1748 | label_decls
1749 { if (pedantic)
1750 pedwarn ("ANSI C forbids label declarations"); }
1751 ;
1752
1753 label_decls:
1754 label_decl
1755 | label_decls label_decl
1756 ;
1757
1758 label_decl:
1759 LABEL identifiers_or_typenames ';'
1760 { tree link;
1761 for (link = $2; link; link = TREE_CHAIN (link))
1762 {
1763 tree label = shadow_label (TREE_VALUE (link));
1764 C_DECLARED_LABEL_FLAG (label) = 1;
1765 declare_nonlocal_label (label);
1766 }
1767 }
1768 ;
1769
1770 /* This is the body of a function definition.
1771 It causes syntax errors to ignore to the next openbrace. */
1772 compstmt_or_error:
1773 compstmt
1774 {}
1775 | error compstmt
1776 ;
1777
1778 compstmt_start: '{' { compstmt_count++; }
1779
1780 compstmt_nostart: '}'
1781 { $$ = convert (void_type_node, integer_zero_node); }
1782 | pushlevel maybe_label_decls decls xstmts '}'
1783 { emit_line_note (input_filename, lineno);
1784 expand_end_bindings (getdecls (), 1, 0);
1785 $$ = poplevel (1, 1, 0); }
1786 | pushlevel maybe_label_decls error '}'
1787 { emit_line_note (input_filename, lineno);
1788 expand_end_bindings (getdecls (), kept_level_p (), 0);
1789 $$ = poplevel (kept_level_p (), 0, 0); }
1790 | pushlevel maybe_label_decls stmts '}'
1791 { emit_line_note (input_filename, lineno);
1792 expand_end_bindings (getdecls (), kept_level_p (), 0);
1793 $$ = poplevel (kept_level_p (), 0, 0); }
1794 ;
1795
1796 compstmt_primary_start:
1797 '(' '{'
1798 { if (current_function_decl == 0)
1799 {
1800 error ("braced-group within expression allowed only inside a function");
1801 YYERROR;
1802 }
1803 /* We must force a BLOCK for this level
1804 so that, if it is not expanded later,
1805 there is a way to turn off the entire subtree of blocks
1806 that are contained in it. */
1807 keep_next_level ();
1808 push_iterator_stack ();
1809 push_label_level ();
1810 $$ = expand_start_stmt_expr ();
1811 compstmt_count++;
1812 }
1813
1814 compstmt: compstmt_start compstmt_nostart
1815 { $$ = $2; }
1816 ;
1817
1818 /* Value is number of statements counted as of the closeparen. */
1819 simple_if:
1820 if_prefix lineno_labeled_stmt
1821 /* Make sure c_expand_end_cond is run once
1822 for each call to c_expand_start_cond.
1823 Otherwise a crash is likely. */
1824 | if_prefix error
1825 ;
1826
1827 if_prefix:
1828 IF '(' expr ')'
1829 { emit_line_note ($<filename>-1, $<lineno>0);
1830 c_expand_start_cond (truthvalue_conversion ($3), 0,
1831 compstmt_count);
1832 $<itype>$ = stmt_count;
1833 if_stmt_file = $<filename>-1;
1834 if_stmt_line = $<lineno>0;
1835 position_after_white_space (); }
1836 ;
1837
1838 /* This is a subroutine of stmt.
1839 It is used twice, once for valid DO statements
1840 and once for catching errors in parsing the end test. */
1841 do_stmt_start:
1842 DO
1843 { stmt_count++;
1844 compstmt_count++;
1845 emit_line_note ($<filename>-1, $<lineno>0);
1846 /* See comment in `while' alternative, above. */
1847 emit_nop ();
1848 expand_start_loop_continue_elsewhere (1);
1849 position_after_white_space (); }
1850 lineno_labeled_stmt WHILE
1851 { expand_loop_continue_here (); }
1852 ;
1853
1854 save_filename:
1855 { $$ = input_filename; }
1856 ;
1857
1858 save_lineno:
1859 { $$ = lineno; }
1860 ;
1861
1862 lineno_labeled_stmt:
1863 save_filename save_lineno stmt
1864 { }
1865 /* | save_filename save_lineno error
1866 { }
1867 */
1868 | save_filename save_lineno label lineno_labeled_stmt
1869 { }
1870 ;
1871
1872 lineno_stmt_or_label:
1873 save_filename save_lineno stmt_or_label
1874 { $$ = $3; }
1875 ;
1876
1877 stmt_or_label:
1878 stmt
1879 { $$ = 0; }
1880 | label
1881 { $$ = 1; }
1882 ;
1883
1884 /* Parse a single real statement, not including any labels. */
1885 stmt:
1886 compstmt
1887 { stmt_count++; }
1888 | all_iter_stmt
1889 | expr ';'
1890 { stmt_count++;
1891 emit_line_note ($<filename>-1, $<lineno>0);
1892 /* It appears that this should not be done--that a non-lvalue array
1893 shouldn't get an error if the value isn't used.
1894 Section 3.2.2.1 says that an array lvalue gets converted to a pointer
1895 if it appears as a top-level expression,
1896 but says nothing about non-lvalue arrays. */
1897 #if 0
1898 /* Call default_conversion to get an error
1899 on referring to a register array if pedantic. */
1900 if (TREE_CODE (TREE_TYPE ($1)) == ARRAY_TYPE
1901 || TREE_CODE (TREE_TYPE ($1)) == FUNCTION_TYPE)
1902 $1 = default_conversion ($1);
1903 #endif
1904 iterator_expand ($1); }
1905 | simple_if ELSE
1906 { c_expand_start_else ();
1907 $<itype>1 = stmt_count;
1908 position_after_white_space (); }
1909 lineno_labeled_stmt
1910 { c_expand_end_cond ();
1911 if (extra_warnings && stmt_count == $<itype>1)
1912 warning ("empty body in an else-statement"); }
1913 | simple_if %prec IF
1914 { c_expand_end_cond ();
1915 /* This warning is here instead of in simple_if, because we
1916 do not want a warning if an empty if is followed by an
1917 else statement. Increment stmt_count so we don't
1918 give a second error if this is a nested `if'. */
1919 if (extra_warnings && stmt_count++ == $<itype>1)
1920 warning_with_file_and_line (if_stmt_file, if_stmt_line,
1921 "empty body in an if-statement"); }
1922 /* Make sure c_expand_end_cond is run once
1923 for each call to c_expand_start_cond.
1924 Otherwise a crash is likely. */
1925 | simple_if ELSE error
1926 { c_expand_end_cond (); }
1927 | WHILE
1928 { stmt_count++;
1929 emit_line_note ($<filename>-1, $<lineno>0);
1930 /* The emit_nop used to come before emit_line_note,
1931 but that made the nop seem like part of the preceding line.
1932 And that was confusing when the preceding line was
1933 inside of an if statement and was not really executed.
1934 I think it ought to work to put the nop after the line number.
1935 We will see. --rms, July 15, 1991. */
1936 emit_nop (); }
1937 '(' expr ')'
1938 { /* Don't start the loop till we have succeeded
1939 in parsing the end test. This is to make sure
1940 that we end every loop we start. */
1941 expand_start_loop (1);
1942 emit_line_note (input_filename, lineno);
1943 expand_exit_loop_if_false (NULL_PTR,
1944 truthvalue_conversion ($4));
1945 position_after_white_space (); }
1946 lineno_labeled_stmt
1947 { expand_end_loop (); }
1948 | do_stmt_start
1949 '(' expr ')' ';'
1950 { emit_line_note (input_filename, lineno);
1951 expand_exit_loop_if_false (NULL_PTR,
1952 truthvalue_conversion ($3));
1953 expand_end_loop (); }
1954 /* This rule is needed to make sure we end every loop we start. */
1955 | do_stmt_start error
1956 { expand_end_loop (); }
1957 | FOR
1958 '(' xexpr ';'
1959 { stmt_count++;
1960 emit_line_note ($<filename>-1, $<lineno>0);
1961 /* See comment in `while' alternative, above. */
1962 emit_nop ();
1963 if ($3) c_expand_expr_stmt ($3);
1964 /* Next step is to call expand_start_loop_continue_elsewhere,
1965 but wait till after we parse the entire for (...).
1966 Otherwise, invalid input might cause us to call that
1967 fn without calling expand_end_loop. */
1968 }
1969 xexpr ';'
1970 /* Can't emit now; wait till after expand_start_loop... */
1971 { $<lineno>7 = lineno;
1972 $<filename>$ = input_filename; }
1973 xexpr ')'
1974 {
1975 /* Start the loop. Doing this after parsing
1976 all the expressions ensures we will end the loop. */
1977 expand_start_loop_continue_elsewhere (1);
1978 /* Emit the end-test, with a line number. */
1979 emit_line_note ($<filename>8, $<lineno>7);
1980 if ($6)
1981 expand_exit_loop_if_false (NULL_PTR,
1982 truthvalue_conversion ($6));
1983 $<lineno>7 = lineno;
1984 $<filename>8 = input_filename;
1985 position_after_white_space (); }
1986 lineno_labeled_stmt
1987 { /* Emit the increment expression, with a line number. */
1988 emit_line_note ($<filename>8, $<lineno>7);
1989 expand_loop_continue_here ();
1990 if ($9)
1991 c_expand_expr_stmt ($9);
1992 expand_end_loop (); }
1993 | SWITCH '(' expr ')'
1994 { stmt_count++;
1995 emit_line_note ($<filename>-1, $<lineno>0);
1996 c_expand_start_case ($3);
1997 position_after_white_space (); }
1998 lineno_labeled_stmt
1999 { expand_end_case ($3); }
2000 | BREAK ';'
2001 { stmt_count++;
2002 emit_line_note ($<filename>-1, $<lineno>0);
2003 if ( ! expand_exit_something ())
2004 error ("break statement not within loop or switch"); }
2005 | CONTINUE ';'
2006 { stmt_count++;
2007 emit_line_note ($<filename>-1, $<lineno>0);
2008 if (! expand_continue_loop (NULL_PTR))
2009 error ("continue statement not within a loop"); }
2010 | RETURN ';'
2011 { stmt_count++;
2012 emit_line_note ($<filename>-1, $<lineno>0);
2013 c_expand_return (NULL_TREE); }
2014 | RETURN expr ';'
2015 { stmt_count++;
2016 emit_line_note ($<filename>-1, $<lineno>0);
2017 c_expand_return ($2); }
2018 | ASM_KEYWORD maybe_type_qual '(' expr ')' ';'
2019 { stmt_count++;
2020 emit_line_note ($<filename>-1, $<lineno>0);
2021 STRIP_NOPS ($4);
2022 if ((TREE_CODE ($4) == ADDR_EXPR
2023 && TREE_CODE (TREE_OPERAND ($4, 0)) == STRING_CST)
2024 || TREE_CODE ($4) == STRING_CST)
2025 expand_asm ($4);
2026 else
2027 error ("argument of `asm' is not a constant string"); }
2028 /* This is the case with just output operands. */
2029 | ASM_KEYWORD maybe_type_qual '(' expr ':' asm_operands ')' ';'
2030 { stmt_count++;
2031 emit_line_note ($<filename>-1, $<lineno>0);
2032 c_expand_asm_operands ($4, $6, NULL_TREE, NULL_TREE,
2033 $2 == ridpointers[(int)RID_VOLATILE],
2034 input_filename, lineno); }
2035 /* This is the case with input operands as well. */
2036 | ASM_KEYWORD maybe_type_qual '(' expr ':' asm_operands ':' asm_operands ')' ';'
2037 { stmt_count++;
2038 emit_line_note ($<filename>-1, $<lineno>0);
2039 c_expand_asm_operands ($4, $6, $8, NULL_TREE,
2040 $2 == ridpointers[(int)RID_VOLATILE],
2041 input_filename, lineno); }
2042 /* This is the case with clobbered registers as well. */
2043 | ASM_KEYWORD maybe_type_qual '(' expr ':' asm_operands ':'
2044 asm_operands ':' asm_clobbers ')' ';'
2045 { stmt_count++;
2046 emit_line_note ($<filename>-1, $<lineno>0);
2047 c_expand_asm_operands ($4, $6, $8, $10,
2048 $2 == ridpointers[(int)RID_VOLATILE],
2049 input_filename, lineno); }
2050 | GOTO identifier ';'
2051 { tree decl;
2052 stmt_count++;
2053 emit_line_note ($<filename>-1, $<lineno>0);
2054 decl = lookup_label ($2);
2055 if (decl != 0)
2056 {
2057 TREE_USED (decl) = 1;
2058 expand_goto (decl);
2059 }
2060 }
2061 | GOTO '*' expr ';'
2062 { if (pedantic)
2063 pedwarn ("ANSI C forbids `goto *expr;'");
2064 stmt_count++;
2065 emit_line_note ($<filename>-1, $<lineno>0);
2066 expand_computed_goto (convert (ptr_type_node, $3)); }
2067 | ';'
2068 ;
2069
2070 all_iter_stmt:
2071 all_iter_stmt_simple
2072 /* | all_iter_stmt_with_decl */
2073 ;
2074
2075 all_iter_stmt_simple:
2076 FOR '(' primary ')'
2077 {
2078 /* The value returned by this action is */
2079 /* 1 if everything is OK */
2080 /* 0 in case of error or already bound iterator */
2081
2082 $<itype>$ = 0;
2083 if (TREE_CODE ($3) != VAR_DECL)
2084 error ("invalid `for (ITERATOR)' syntax");
2085 else if (! ITERATOR_P ($3))
2086 error ("`%s' is not an iterator",
2087 IDENTIFIER_POINTER (DECL_NAME ($3)));
2088 else if (ITERATOR_BOUND_P ($3))
2089 error ("`for (%s)' inside expansion of same iterator",
2090 IDENTIFIER_POINTER (DECL_NAME ($3)));
2091 else
2092 {
2093 $<itype>$ = 1;
2094 iterator_for_loop_start ($3);
2095 }
2096 }
2097 lineno_labeled_stmt
2098 {
2099 if ($<itype>5)
2100 iterator_for_loop_end ($3);
2101 }
2102
2103 /* This really should allow any kind of declaration,
2104 for generality. Fix it before turning it back on.
2105
2106 all_iter_stmt_with_decl:
2107 FOR '(' ITERATOR pushlevel setspecs iterator_spec ')'
2108 {
2109 */ /* The value returned by this action is */
2110 /* 1 if everything is OK */
2111 /* 0 in case of error or already bound iterator */
2112 /*
2113 iterator_for_loop_start ($6);
2114 }
2115 lineno_labeled_stmt
2116 {
2117 iterator_for_loop_end ($6);
2118 emit_line_note (input_filename, lineno);
2119 expand_end_bindings (getdecls (), 1, 0);
2120 $<ttype>$ = poplevel (1, 1, 0);
2121 }
2122 */
2123
2124 /* Any kind of label, including jump labels and case labels.
2125 ANSI C accepts labels only before statements, but we allow them
2126 also at the end of a compound statement. */
2127
2128 label: CASE expr_no_commas ':'
2129 { register tree value = check_case_value ($2);
2130 register tree label
2131 = build_decl (LABEL_DECL, NULL_TREE, NULL_TREE);
2132
2133 stmt_count++;
2134
2135 if (value != error_mark_node)
2136 {
2137 tree duplicate;
2138 int success;
2139
2140 if (pedantic && ! INTEGRAL_TYPE_P (TREE_TYPE (value)))
2141 pedwarn ("label must have integral type in ANSI C");
2142
2143 success = pushcase (value, convert_and_check,
2144 label, &duplicate);
2145
2146 if (success == 1)
2147 error ("case label not within a switch statement");
2148 else if (success == 2)
2149 {
2150 error ("duplicate case value");
2151 error_with_decl (duplicate, "this is the first entry for that value");
2152 }
2153 else if (success == 3)
2154 warning ("case value out of range");
2155 else if (success == 5)
2156 error ("case label within scope of cleanup or variable array");
2157 }
2158 position_after_white_space (); }
2159 | CASE expr_no_commas ELLIPSIS expr_no_commas ':'
2160 { register tree value1 = check_case_value ($2);
2161 register tree value2 = check_case_value ($4);
2162 register tree label
2163 = build_decl (LABEL_DECL, NULL_TREE, NULL_TREE);
2164
2165 if (pedantic)
2166 pedwarn ("ANSI C forbids case ranges");
2167 stmt_count++;
2168
2169 if (value1 != error_mark_node && value2 != error_mark_node)
2170 {
2171 tree duplicate;
2172 int success = pushcase_range (value1, value2,
2173 convert_and_check, label,
2174 &duplicate);
2175 if (success == 1)
2176 error ("case label not within a switch statement");
2177 else if (success == 2)
2178 {
2179 error ("duplicate case value");
2180 error_with_decl (duplicate, "this is the first entry for that value");
2181 }
2182 else if (success == 3)
2183 warning ("case value out of range");
2184 else if (success == 4)
2185 warning ("empty case range");
2186 else if (success == 5)
2187 error ("case label within scope of cleanup or variable array");
2188 }
2189 position_after_white_space (); }
2190 | DEFAULT ':'
2191 {
2192 tree duplicate;
2193 register tree label
2194 = build_decl (LABEL_DECL, NULL_TREE, NULL_TREE);
2195 int success = pushcase (NULL_TREE, 0, label, &duplicate);
2196 stmt_count++;
2197 if (success == 1)
2198 error ("default label not within a switch statement");
2199 else if (success == 2)
2200 {
2201 error ("multiple default labels in one switch");
2202 error_with_decl (duplicate, "this is the first default label");
2203 }
2204 position_after_white_space (); }
2205 | identifier ':' maybe_attribute
2206 { tree label = define_label (input_filename, lineno, $1);
2207 stmt_count++;
2208 emit_nop ();
2209 if (label)
2210 {
2211 expand_label (label);
2212 decl_attributes (label, $3, NULL_TREE);
2213 }
2214 position_after_white_space (); }
2215 ;
2216
2217 /* Either a type-qualifier or nothing. First thing in an `asm' statement. */
2218
2219 maybe_type_qual:
2220 /* empty */
2221 { emit_line_note (input_filename, lineno);
2222 $$ = NULL_TREE; }
2223 | TYPE_QUAL
2224 { emit_line_note (input_filename, lineno); }
2225 ;
2226
2227 xexpr:
2228 /* empty */
2229 { $$ = NULL_TREE; }
2230 | expr
2231 ;
2232
2233 /* These are the operands other than the first string and colon
2234 in asm ("addextend %2,%1": "=dm" (x), "0" (y), "g" (*x)) */
2235 asm_operands: /* empty */
2236 { $$ = NULL_TREE; }
2237 | nonnull_asm_operands
2238 ;
2239
2240 nonnull_asm_operands:
2241 asm_operand
2242 | nonnull_asm_operands ',' asm_operand
2243 { $$ = chainon ($1, $3); }
2244 ;
2245
2246 asm_operand:
2247 STRING '(' expr ')'
2248 { $$ = build_tree_list ($1, $3); }
2249 ;
2250
2251 asm_clobbers:
2252 string
2253 { $$ = tree_cons (NULL_TREE, combine_strings ($1), NULL_TREE); }
2254 | asm_clobbers ',' string
2255 { $$ = tree_cons (NULL_TREE, combine_strings ($3), $1); }
2256 ;
2257 \f
2258 /* This is what appears inside the parens in a function declarator.
2259 Its value is a list of ..._TYPE nodes. */
2260 parmlist:
2261 { pushlevel (0);
2262 clear_parm_order ();
2263 declare_parm_level (0); }
2264 parmlist_1
2265 { $$ = $2;
2266 parmlist_tags_warning ();
2267 poplevel (0, 0, 0); }
2268 ;
2269
2270 parmlist_1:
2271 parmlist_2 ')'
2272 | parms ';'
2273 { tree parm;
2274 if (pedantic)
2275 pedwarn ("ANSI C forbids forward parameter declarations");
2276 /* Mark the forward decls as such. */
2277 for (parm = getdecls (); parm; parm = TREE_CHAIN (parm))
2278 TREE_ASM_WRITTEN (parm) = 1;
2279 clear_parm_order (); }
2280 parmlist_1
2281 { $$ = $4; }
2282 | error ')'
2283 { $$ = tree_cons (NULL_TREE, NULL_TREE, NULL_TREE); }
2284 ;
2285
2286 /* This is what appears inside the parens in a function declarator.
2287 Is value is represented in the format that grokdeclarator expects. */
2288 parmlist_2: /* empty */
2289 { $$ = get_parm_info (0); }
2290 | ELLIPSIS
2291 { $$ = get_parm_info (0);
2292 /* Gcc used to allow this as an extension. However, it does
2293 not work for all targets, and thus has been disabled.
2294 Also, since func (...) and func () are indistinguishable,
2295 it caused problems with the code in expand_builtin which
2296 tries to verify that BUILT_IN_NEXT_ARG is being used
2297 correctly. */
2298 error ("ANSI C requires a named argument before `...'");
2299 }
2300 | parms
2301 { $$ = get_parm_info (1); }
2302 | parms ',' ELLIPSIS
2303 { $$ = get_parm_info (0); }
2304 ;
2305
2306 parms:
2307 parm
2308 { push_parm_decl ($1); }
2309 | parms ',' parm
2310 { push_parm_decl ($3); }
2311 ;
2312
2313 /* A single parameter declaration or parameter type name,
2314 as found in a parmlist. */
2315 parm:
2316 typed_declspecs setspecs parm_declarator maybe_attribute
2317 { $$ = build_tree_list (build_tree_list (current_declspecs,
2318 $3),
2319 build_tree_list (prefix_attributes,
2320 $4));
2321 current_declspecs = TREE_VALUE (declspec_stack);
2322 prefix_attributes = TREE_PURPOSE (declspec_stack);
2323 declspec_stack = TREE_CHAIN (declspec_stack); }
2324 | typed_declspecs setspecs notype_declarator maybe_attribute
2325 { $$ = build_tree_list (build_tree_list (current_declspecs,
2326 $3),
2327 build_tree_list (prefix_attributes,
2328 $4));
2329 current_declspecs = TREE_VALUE (declspec_stack);
2330 prefix_attributes = TREE_PURPOSE (declspec_stack);
2331 declspec_stack = TREE_CHAIN (declspec_stack); }
2332 | typed_declspecs setspecs absdcl maybe_attribute
2333 { $$ = build_tree_list (build_tree_list (current_declspecs,
2334 $3),
2335 build_tree_list (prefix_attributes,
2336 $4));
2337 current_declspecs = TREE_VALUE (declspec_stack);
2338 prefix_attributes = TREE_PURPOSE (declspec_stack);
2339 declspec_stack = TREE_CHAIN (declspec_stack); }
2340 | declmods setspecs notype_declarator maybe_attribute
2341 { $$ = build_tree_list (build_tree_list (current_declspecs,
2342 $3),
2343 build_tree_list (prefix_attributes,
2344 $4));
2345 current_declspecs = TREE_VALUE (declspec_stack);
2346 prefix_attributes = TREE_PURPOSE (declspec_stack);
2347 declspec_stack = TREE_CHAIN (declspec_stack); }
2348
2349 | declmods setspecs absdcl maybe_attribute
2350 { $$ = build_tree_list (build_tree_list (current_declspecs,
2351 $3),
2352 build_tree_list (prefix_attributes,
2353 $4));
2354 current_declspecs = TREE_VALUE (declspec_stack);
2355 prefix_attributes = TREE_PURPOSE (declspec_stack);
2356 declspec_stack = TREE_CHAIN (declspec_stack); }
2357 ;
2358
2359 /* This is used in a function definition
2360 where either a parmlist or an identifier list is ok.
2361 Its value is a list of ..._TYPE nodes or a list of identifiers. */
2362 parmlist_or_identifiers:
2363 { pushlevel (0);
2364 clear_parm_order ();
2365 declare_parm_level (1); }
2366 parmlist_or_identifiers_1
2367 { $$ = $2;
2368 parmlist_tags_warning ();
2369 poplevel (0, 0, 0); }
2370 ;
2371
2372 parmlist_or_identifiers_1:
2373 parmlist_1
2374 | identifiers ')'
2375 { tree t;
2376 for (t = $1; t; t = TREE_CHAIN (t))
2377 if (TREE_VALUE (t) == NULL_TREE)
2378 error ("`...' in old-style identifier list");
2379 $$ = tree_cons (NULL_TREE, NULL_TREE, $1); }
2380 ;
2381
2382 /* A nonempty list of identifiers. */
2383 identifiers:
2384 IDENTIFIER
2385 { $$ = build_tree_list (NULL_TREE, $1); }
2386 | identifiers ',' IDENTIFIER
2387 { $$ = chainon ($1, build_tree_list (NULL_TREE, $3)); }
2388 ;
2389
2390 /* A nonempty list of identifiers, including typenames. */
2391 identifiers_or_typenames:
2392 identifier
2393 { $$ = build_tree_list (NULL_TREE, $1); }
2394 | identifiers_or_typenames ',' identifier
2395 { $$ = chainon ($1, build_tree_list (NULL_TREE, $3)); }
2396 ;
2397
2398 extension:
2399 EXTENSION
2400 { $$ = SAVE_WARN_FLAGS();
2401 pedantic = 0;
2402 warn_pointer_arith = 0; }
2403 ;
2404 \f
2405 ifobjc
2406 /* Objective-C productions. */
2407
2408 objcdef:
2409 classdef
2410 | classdecl
2411 | aliasdecl
2412 | protocoldef
2413 | methoddef
2414 | END
2415 {
2416 if (objc_implementation_context)
2417 {
2418 finish_class (objc_implementation_context);
2419 objc_ivar_chain = NULL_TREE;
2420 objc_implementation_context = NULL_TREE;
2421 }
2422 else
2423 warning ("`@end' must appear in an implementation context");
2424 }
2425 ;
2426
2427 /* A nonempty list of identifiers. */
2428 identifier_list:
2429 identifier
2430 { $$ = build_tree_list (NULL_TREE, $1); }
2431 | identifier_list ',' identifier
2432 { $$ = chainon ($1, build_tree_list (NULL_TREE, $3)); }
2433 ;
2434
2435 classdecl:
2436 CLASS identifier_list ';'
2437 {
2438 objc_declare_class ($2);
2439 }
2440
2441 aliasdecl:
2442 ALIAS identifier identifier ';'
2443 {
2444 objc_declare_alias ($2, $3);
2445 }
2446
2447 classdef:
2448 INTERFACE identifier protocolrefs '{'
2449 {
2450 objc_interface_context = objc_ivar_context
2451 = start_class (CLASS_INTERFACE_TYPE, $2, NULL_TREE, $3);
2452 objc_public_flag = 0;
2453 }
2454 ivar_decl_list '}'
2455 {
2456 continue_class (objc_interface_context);
2457 }
2458 methodprotolist
2459 END
2460 {
2461 finish_class (objc_interface_context);
2462 objc_interface_context = NULL_TREE;
2463 }
2464
2465 | INTERFACE identifier protocolrefs
2466 {
2467 objc_interface_context
2468 = start_class (CLASS_INTERFACE_TYPE, $2, NULL_TREE, $3);
2469 continue_class (objc_interface_context);
2470 }
2471 methodprotolist
2472 END
2473 {
2474 finish_class (objc_interface_context);
2475 objc_interface_context = NULL_TREE;
2476 }
2477
2478 | INTERFACE identifier ':' identifier protocolrefs '{'
2479 {
2480 objc_interface_context = objc_ivar_context
2481 = start_class (CLASS_INTERFACE_TYPE, $2, $4, $5);
2482 objc_public_flag = 0;
2483 }
2484 ivar_decl_list '}'
2485 {
2486 continue_class (objc_interface_context);
2487 }
2488 methodprotolist
2489 END
2490 {
2491 finish_class (objc_interface_context);
2492 objc_interface_context = NULL_TREE;
2493 }
2494
2495 | INTERFACE identifier ':' identifier protocolrefs
2496 {
2497 objc_interface_context
2498 = start_class (CLASS_INTERFACE_TYPE, $2, $4, $5);
2499 continue_class (objc_interface_context);
2500 }
2501 methodprotolist
2502 END
2503 {
2504 finish_class (objc_interface_context);
2505 objc_interface_context = NULL_TREE;
2506 }
2507
2508 | IMPLEMENTATION identifier '{'
2509 {
2510 objc_implementation_context = objc_ivar_context
2511 = start_class (CLASS_IMPLEMENTATION_TYPE, $2, NULL_TREE, NULL_TREE);
2512 objc_public_flag = 0;
2513 }
2514 ivar_decl_list '}'
2515 {
2516 objc_ivar_chain
2517 = continue_class (objc_implementation_context);
2518 }
2519
2520 | IMPLEMENTATION identifier
2521 {
2522 objc_implementation_context
2523 = start_class (CLASS_IMPLEMENTATION_TYPE, $2, NULL_TREE, NULL_TREE);
2524 objc_ivar_chain
2525 = continue_class (objc_implementation_context);
2526 }
2527
2528 | IMPLEMENTATION identifier ':' identifier '{'
2529 {
2530 objc_implementation_context = objc_ivar_context
2531 = start_class (CLASS_IMPLEMENTATION_TYPE, $2, $4, NULL_TREE);
2532 objc_public_flag = 0;
2533 }
2534 ivar_decl_list '}'
2535 {
2536 objc_ivar_chain
2537 = continue_class (objc_implementation_context);
2538 }
2539
2540 | IMPLEMENTATION identifier ':' identifier
2541 {
2542 objc_implementation_context
2543 = start_class (CLASS_IMPLEMENTATION_TYPE, $2, $4, NULL_TREE);
2544 objc_ivar_chain
2545 = continue_class (objc_implementation_context);
2546 }
2547
2548 | INTERFACE identifier '(' identifier ')' protocolrefs
2549 {
2550 objc_interface_context
2551 = start_class (CATEGORY_INTERFACE_TYPE, $2, $4, $6);
2552 continue_class (objc_interface_context);
2553 }
2554 methodprotolist
2555 END
2556 {
2557 finish_class (objc_interface_context);
2558 objc_interface_context = NULL_TREE;
2559 }
2560
2561 | IMPLEMENTATION identifier '(' identifier ')'
2562 {
2563 objc_implementation_context
2564 = start_class (CATEGORY_IMPLEMENTATION_TYPE, $2, $4, NULL_TREE);
2565 objc_ivar_chain
2566 = continue_class (objc_implementation_context);
2567 }
2568 ;
2569
2570 protocoldef:
2571 PROTOCOL identifier protocolrefs
2572 {
2573 remember_protocol_qualifiers ();
2574 objc_interface_context
2575 = start_protocol(PROTOCOL_INTERFACE_TYPE, $2, $3);
2576 }
2577 methodprotolist END
2578 {
2579 forget_protocol_qualifiers();
2580 finish_protocol(objc_interface_context);
2581 objc_interface_context = NULL_TREE;
2582 }
2583 ;
2584
2585 protocolrefs:
2586 /* empty */
2587 {
2588 $$ = NULL_TREE;
2589 }
2590 | non_empty_protocolrefs
2591 ;
2592
2593 non_empty_protocolrefs:
2594 ARITHCOMPARE identifier_list ARITHCOMPARE
2595 {
2596 if ($1 == LT_EXPR && $3 == GT_EXPR)
2597 $$ = $2;
2598 else
2599 YYERROR1;
2600 }
2601 ;
2602
2603 ivar_decl_list:
2604 ivar_decl_list visibility_spec ivar_decls
2605 | ivar_decls
2606 ;
2607
2608 visibility_spec:
2609 PRIVATE { objc_public_flag = 2; }
2610 | PROTECTED { objc_public_flag = 0; }
2611 | PUBLIC { objc_public_flag = 1; }
2612 ;
2613
2614 ivar_decls:
2615 /* empty */
2616 {
2617 $$ = NULL_TREE;
2618 }
2619 | ivar_decls ivar_decl ';'
2620 | ivar_decls ';'
2621 {
2622 if (pedantic)
2623 pedwarn ("extra semicolon in struct or union specified");
2624 }
2625 ;
2626
2627
2628 /* There is a shift-reduce conflict here, because `components' may
2629 start with a `typename'. It happens that shifting (the default resolution)
2630 does the right thing, because it treats the `typename' as part of
2631 a `typed_typespecs'.
2632
2633 It is possible that this same technique would allow the distinction
2634 between `notype_initdecls' and `initdecls' to be eliminated.
2635 But I am being cautious and not trying it. */
2636
2637 ivar_decl:
2638 typed_typespecs setspecs ivars
2639 { $$ = $3;
2640 current_declspecs = TREE_VALUE (declspec_stack);
2641 prefix_attributes = TREE_PURPOSE (declspec_stack);
2642 declspec_stack = TREE_CHAIN (declspec_stack); }
2643 | nonempty_type_quals setspecs ivars
2644 { $$ = $3;
2645 current_declspecs = TREE_VALUE (declspec_stack);
2646 prefix_attributes = TREE_PURPOSE (declspec_stack);
2647 declspec_stack = TREE_CHAIN (declspec_stack); }
2648 | error
2649 { $$ = NULL_TREE; }
2650 ;
2651
2652 ivars:
2653 /* empty */
2654 { $$ = NULL_TREE; }
2655 | ivar_declarator
2656 | ivars ',' ivar_declarator
2657 ;
2658
2659 ivar_declarator:
2660 declarator
2661 {
2662 $$ = add_instance_variable (objc_ivar_context,
2663 objc_public_flag,
2664 $1, current_declspecs,
2665 NULL_TREE);
2666 }
2667 | declarator ':' expr_no_commas
2668 {
2669 $$ = add_instance_variable (objc_ivar_context,
2670 objc_public_flag,
2671 $1, current_declspecs, $3);
2672 }
2673 | ':' expr_no_commas
2674 {
2675 $$ = add_instance_variable (objc_ivar_context,
2676 objc_public_flag,
2677 NULL_TREE,
2678 current_declspecs, $2);
2679 }
2680 ;
2681
2682 methoddef:
2683 '+'
2684 {
2685 remember_protocol_qualifiers ();
2686 if (objc_implementation_context)
2687 objc_inherit_code = CLASS_METHOD_DECL;
2688 else
2689 fatal ("method definition not in class context");
2690 }
2691 methoddecl
2692 {
2693 forget_protocol_qualifiers ();
2694 add_class_method (objc_implementation_context, $3);
2695 start_method_def ($3);
2696 objc_method_context = $3;
2697 }
2698 optarglist
2699 {
2700 continue_method_def ();
2701 }
2702 compstmt_or_error
2703 {
2704 finish_method_def ();
2705 objc_method_context = NULL_TREE;
2706 }
2707
2708 | '-'
2709 {
2710 remember_protocol_qualifiers ();
2711 if (objc_implementation_context)
2712 objc_inherit_code = INSTANCE_METHOD_DECL;
2713 else
2714 fatal ("method definition not in class context");
2715 }
2716 methoddecl
2717 {
2718 forget_protocol_qualifiers ();
2719 add_instance_method (objc_implementation_context, $3);
2720 start_method_def ($3);
2721 objc_method_context = $3;
2722 }
2723 optarglist
2724 {
2725 continue_method_def ();
2726 }
2727 compstmt_or_error
2728 {
2729 finish_method_def ();
2730 objc_method_context = NULL_TREE;
2731 }
2732 ;
2733
2734 /* the reason for the strange actions in this rule
2735 is so that notype_initdecls when reached via datadef
2736 can find a valid list of type and sc specs in $0. */
2737
2738 methodprotolist:
2739 /* empty */
2740 | {$<ttype>$ = NULL_TREE; } methodprotolist2
2741 ;
2742
2743 methodprotolist2: /* eliminates a shift/reduce conflict */
2744 methodproto
2745 | datadef
2746 | methodprotolist2 methodproto
2747 | methodprotolist2 {$<ttype>$ = NULL_TREE; } datadef
2748 ;
2749
2750 semi_or_error:
2751 ';'
2752 | error
2753 ;
2754
2755 methodproto:
2756 '+'
2757 {
2758 /* Remember protocol qualifiers in prototypes. */
2759 remember_protocol_qualifiers ();
2760 objc_inherit_code = CLASS_METHOD_DECL;
2761 }
2762 methoddecl
2763 {
2764 /* Forget protocol qualifiers here. */
2765 forget_protocol_qualifiers ();
2766 add_class_method (objc_interface_context, $3);
2767 }
2768 semi_or_error
2769
2770 | '-'
2771 {
2772 /* Remember protocol qualifiers in prototypes. */
2773 remember_protocol_qualifiers ();
2774 objc_inherit_code = INSTANCE_METHOD_DECL;
2775 }
2776 methoddecl
2777 {
2778 /* Forget protocol qualifiers here. */
2779 forget_protocol_qualifiers ();
2780 add_instance_method (objc_interface_context, $3);
2781 }
2782 semi_or_error
2783 ;
2784
2785 methoddecl:
2786 '(' typename ')' unaryselector
2787 {
2788 $$ = build_method_decl (objc_inherit_code, $2, $4, NULL_TREE);
2789 }
2790
2791 | unaryselector
2792 {
2793 $$ = build_method_decl (objc_inherit_code, NULL_TREE, $1, NULL_TREE);
2794 }
2795
2796 | '(' typename ')' keywordselector optparmlist
2797 {
2798 $$ = build_method_decl (objc_inherit_code, $2, $4, $5);
2799 }
2800
2801 | keywordselector optparmlist
2802 {
2803 $$ = build_method_decl (objc_inherit_code, NULL_TREE, $1, $2);
2804 }
2805 ;
2806
2807 /* "optarglist" assumes that start_method_def has already been called...
2808 if it is not, the "xdecls" will not be placed in the proper scope */
2809
2810 optarglist:
2811 /* empty */
2812 | ';' myxdecls
2813 ;
2814
2815 /* to get around the following situation: "int foo (int a) int b; {}" that
2816 is synthesized when parsing "- a:a b:b; id c; id d; { ... }" */
2817
2818 myxdecls:
2819 /* empty */
2820 | mydecls
2821 ;
2822
2823 mydecls:
2824 mydecl
2825 | errstmt
2826 | mydecls mydecl
2827 | mydecl errstmt
2828 ;
2829
2830 mydecl:
2831 typed_declspecs setspecs myparms ';'
2832 { current_declspecs = TREE_VALUE (declspec_stack);
2833 prefix_attributes = TREE_PURPOSE (declspec_stack);
2834 declspec_stack = TREE_CHAIN (declspec_stack); }
2835 | typed_declspecs ';'
2836 { shadow_tag ($1); }
2837 | declmods ';'
2838 { pedwarn ("empty declaration"); }
2839 ;
2840
2841 myparms:
2842 myparm
2843 { push_parm_decl ($1); }
2844 | myparms ',' myparm
2845 { push_parm_decl ($3); }
2846 ;
2847
2848 /* A single parameter declaration or parameter type name,
2849 as found in a parmlist. DOES NOT ALLOW AN INITIALIZER OR ASMSPEC */
2850
2851 myparm:
2852 parm_declarator maybe_attribute
2853 { $$ = build_tree_list (build_tree_list (current_declspecs,
2854 $1),
2855 build_tree_list (prefix_attributes,
2856 $2)); }
2857 | notype_declarator maybe_attribute
2858 { $$ = build_tree_list (build_tree_list (current_declspecs,
2859 $1),
2860 build_tree_list (prefix_attributes,
2861 $2)); }
2862 | absdcl maybe_attribute
2863 { $$ = build_tree_list (build_tree_list (current_declspecs,
2864 $1),
2865 build_tree_list (prefix_attributes,
2866 $2)); }
2867 ;
2868
2869 optparmlist:
2870 /* empty */
2871 {
2872 $$ = NULL_TREE;
2873 }
2874 | ',' ELLIPSIS
2875 {
2876 /* oh what a kludge! */
2877 $$ = (tree)1;
2878 }
2879 | ','
2880 {
2881 pushlevel (0);
2882 }
2883 parmlist_2
2884 {
2885 /* returns a tree list node generated by get_parm_info */
2886 $$ = $3;
2887 poplevel (0, 0, 0);
2888 }
2889 ;
2890
2891 unaryselector:
2892 selector
2893 ;
2894
2895 keywordselector:
2896 keyworddecl
2897
2898 | keywordselector keyworddecl
2899 {
2900 $$ = chainon ($1, $2);
2901 }
2902 ;
2903
2904 selector:
2905 IDENTIFIER
2906 | TYPENAME
2907 | OBJECTNAME
2908 | reservedwords
2909 ;
2910
2911 reservedwords:
2912 ENUM { $$ = get_identifier (token_buffer); }
2913 | STRUCT { $$ = get_identifier (token_buffer); }
2914 | UNION { $$ = get_identifier (token_buffer); }
2915 | IF { $$ = get_identifier (token_buffer); }
2916 | ELSE { $$ = get_identifier (token_buffer); }
2917 | WHILE { $$ = get_identifier (token_buffer); }
2918 | DO { $$ = get_identifier (token_buffer); }
2919 | FOR { $$ = get_identifier (token_buffer); }
2920 | SWITCH { $$ = get_identifier (token_buffer); }
2921 | CASE { $$ = get_identifier (token_buffer); }
2922 | DEFAULT { $$ = get_identifier (token_buffer); }
2923 | BREAK { $$ = get_identifier (token_buffer); }
2924 | CONTINUE { $$ = get_identifier (token_buffer); }
2925 | RETURN { $$ = get_identifier (token_buffer); }
2926 | GOTO { $$ = get_identifier (token_buffer); }
2927 | ASM_KEYWORD { $$ = get_identifier (token_buffer); }
2928 | SIZEOF { $$ = get_identifier (token_buffer); }
2929 | TYPEOF { $$ = get_identifier (token_buffer); }
2930 | ALIGNOF { $$ = get_identifier (token_buffer); }
2931 | TYPESPEC | TYPE_QUAL
2932 ;
2933
2934 keyworddecl:
2935 selector ':' '(' typename ')' identifier
2936 {
2937 $$ = build_keyword_decl ($1, $4, $6);
2938 }
2939
2940 | selector ':' identifier
2941 {
2942 $$ = build_keyword_decl ($1, NULL_TREE, $3);
2943 }
2944
2945 | ':' '(' typename ')' identifier
2946 {
2947 $$ = build_keyword_decl (NULL_TREE, $3, $5);
2948 }
2949
2950 | ':' identifier
2951 {
2952 $$ = build_keyword_decl (NULL_TREE, NULL_TREE, $2);
2953 }
2954 ;
2955
2956 messageargs:
2957 selector
2958 | keywordarglist
2959 ;
2960
2961 keywordarglist:
2962 keywordarg
2963 | keywordarglist keywordarg
2964 {
2965 $$ = chainon ($1, $2);
2966 }
2967 ;
2968
2969
2970 keywordexpr:
2971 nonnull_exprlist
2972 {
2973 if (TREE_CHAIN ($1) == NULL_TREE)
2974 /* just return the expr., remove a level of indirection */
2975 $$ = TREE_VALUE ($1);
2976 else
2977 /* we have a comma expr., we will collapse later */
2978 $$ = $1;
2979 }
2980 ;
2981
2982 keywordarg:
2983 selector ':' keywordexpr
2984 {
2985 $$ = build_tree_list ($1, $3);
2986 }
2987 | ':' keywordexpr
2988 {
2989 $$ = build_tree_list (NULL_TREE, $2);
2990 }
2991 ;
2992
2993 receiver:
2994 expr
2995 | CLASSNAME
2996 {
2997 $$ = get_class_reference ($1);
2998 }
2999 ;
3000
3001 objcmessageexpr:
3002 '['
3003 { objc_receiver_context = 1; }
3004 receiver
3005 { objc_receiver_context = 0; }
3006 messageargs ']'
3007 {
3008 $$ = build_tree_list ($3, $5);
3009 }
3010 ;
3011
3012 selectorarg:
3013 selector
3014 | keywordnamelist
3015 ;
3016
3017 keywordnamelist:
3018 keywordname
3019 | keywordnamelist keywordname
3020 {
3021 $$ = chainon ($1, $2);
3022 }
3023 ;
3024
3025 keywordname:
3026 selector ':'
3027 {
3028 $$ = build_tree_list ($1, NULL_TREE);
3029 }
3030 | ':'
3031 {
3032 $$ = build_tree_list (NULL_TREE, NULL_TREE);
3033 }
3034 ;
3035
3036 objcselectorexpr:
3037 SELECTOR '(' selectorarg ')'
3038 {
3039 $$ = $3;
3040 }
3041 ;
3042
3043 objcprotocolexpr:
3044 PROTOCOL '(' identifier ')'
3045 {
3046 $$ = $3;
3047 }
3048 ;
3049
3050 /* extension to support C-structures in the archiver */
3051
3052 objcencodeexpr:
3053 ENCODE '(' typename ')'
3054 {
3055 $$ = groktypename ($3);
3056 }
3057 ;
3058
3059 end ifobjc
3060 %%
This page took 0.17138 seconds and 5 git commands to generate.