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1 /* Subroutines shared by all languages that are variants of C.
2 Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000,
3 2001, 2002, 2003, 2004, 2005 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 2, 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 COPYING. If not, write to the Free
19 Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA
20 02110-1301, USA. */
21
22 #include "config.h"
23 #include "system.h"
24 #include "coretypes.h"
25 #include "tm.h"
26 #include "intl.h"
27 #include "tree.h"
28 #include "flags.h"
29 #include "output.h"
30 #include "c-pragma.h"
31 #include "rtl.h"
32 #include "ggc.h"
33 #include "varray.h"
34 #include "expr.h"
35 #include "c-common.h"
36 #include "diagnostic.h"
37 #include "tm_p.h"
38 #include "obstack.h"
39 #include "cpplib.h"
40 #include "target.h"
41 #include "langhooks.h"
42 #include "tree-inline.h"
43 #include "c-tree.h"
44 #include "toplev.h"
45 #include "tree-iterator.h"
46 #include "hashtab.h"
47 #include "tree-mudflap.h"
48 #include "opts.h"
49 #include "real.h"
50 #include "cgraph.h"
51
52 cpp_reader *parse_in; /* Declared in c-pragma.h. */
53
54 /* We let tm.h override the types used here, to handle trivial differences
55 such as the choice of unsigned int or long unsigned int for size_t.
56 When machines start needing nontrivial differences in the size type,
57 it would be best to do something here to figure out automatically
58 from other information what type to use. */
59
60 #ifndef SIZE_TYPE
61 #define SIZE_TYPE "long unsigned int"
62 #endif
63
64 #ifndef PID_TYPE
65 #define PID_TYPE "int"
66 #endif
67
68 #ifndef WCHAR_TYPE
69 #define WCHAR_TYPE "int"
70 #endif
71
72 /* WCHAR_TYPE gets overridden by -fshort-wchar. */
73 #define MODIFIED_WCHAR_TYPE \
74 (flag_short_wchar ? "short unsigned int" : WCHAR_TYPE)
75
76 #ifndef PTRDIFF_TYPE
77 #define PTRDIFF_TYPE "long int"
78 #endif
79
80 #ifndef WINT_TYPE
81 #define WINT_TYPE "unsigned int"
82 #endif
83
84 #ifndef INTMAX_TYPE
85 #define INTMAX_TYPE ((INT_TYPE_SIZE == LONG_LONG_TYPE_SIZE) \
86 ? "int" \
87 : ((LONG_TYPE_SIZE == LONG_LONG_TYPE_SIZE) \
88 ? "long int" \
89 : "long long int"))
90 #endif
91
92 #ifndef UINTMAX_TYPE
93 #define UINTMAX_TYPE ((INT_TYPE_SIZE == LONG_LONG_TYPE_SIZE) \
94 ? "unsigned int" \
95 : ((LONG_TYPE_SIZE == LONG_LONG_TYPE_SIZE) \
96 ? "long unsigned int" \
97 : "long long unsigned int"))
98 #endif
99
100 /* The following symbols are subsumed in the c_global_trees array, and
101 listed here individually for documentation purposes.
102
103 INTEGER_TYPE and REAL_TYPE nodes for the standard data types.
104
105 tree short_integer_type_node;
106 tree long_integer_type_node;
107 tree long_long_integer_type_node;
108
109 tree short_unsigned_type_node;
110 tree long_unsigned_type_node;
111 tree long_long_unsigned_type_node;
112
113 tree truthvalue_type_node;
114 tree truthvalue_false_node;
115 tree truthvalue_true_node;
116
117 tree ptrdiff_type_node;
118
119 tree unsigned_char_type_node;
120 tree signed_char_type_node;
121 tree wchar_type_node;
122 tree signed_wchar_type_node;
123 tree unsigned_wchar_type_node;
124
125 tree float_type_node;
126 tree double_type_node;
127 tree long_double_type_node;
128
129 tree complex_integer_type_node;
130 tree complex_float_type_node;
131 tree complex_double_type_node;
132 tree complex_long_double_type_node;
133
134 tree dfloat32_type_node;
135 tree dfloat64_type_node;
136 tree_dfloat128_type_node;
137
138 tree intQI_type_node;
139 tree intHI_type_node;
140 tree intSI_type_node;
141 tree intDI_type_node;
142 tree intTI_type_node;
143
144 tree unsigned_intQI_type_node;
145 tree unsigned_intHI_type_node;
146 tree unsigned_intSI_type_node;
147 tree unsigned_intDI_type_node;
148 tree unsigned_intTI_type_node;
149
150 tree widest_integer_literal_type_node;
151 tree widest_unsigned_literal_type_node;
152
153 Nodes for types `void *' and `const void *'.
154
155 tree ptr_type_node, const_ptr_type_node;
156
157 Nodes for types `char *' and `const char *'.
158
159 tree string_type_node, const_string_type_node;
160
161 Type `char[SOMENUMBER]'.
162 Used when an array of char is needed and the size is irrelevant.
163
164 tree char_array_type_node;
165
166 Type `int[SOMENUMBER]' or something like it.
167 Used when an array of int needed and the size is irrelevant.
168
169 tree int_array_type_node;
170
171 Type `wchar_t[SOMENUMBER]' or something like it.
172 Used when a wide string literal is created.
173
174 tree wchar_array_type_node;
175
176 Type `int ()' -- used for implicit declaration of functions.
177
178 tree default_function_type;
179
180 A VOID_TYPE node, packaged in a TREE_LIST.
181
182 tree void_list_node;
183
184 The lazily created VAR_DECLs for __FUNCTION__, __PRETTY_FUNCTION__,
185 and __func__. (C doesn't generate __FUNCTION__ and__PRETTY_FUNCTION__
186 VAR_DECLS, but C++ does.)
187
188 tree function_name_decl_node;
189 tree pretty_function_name_decl_node;
190 tree c99_function_name_decl_node;
191
192 Stack of nested function name VAR_DECLs.
193
194 tree saved_function_name_decls;
195
196 */
197
198 tree c_global_trees[CTI_MAX];
199 \f
200 /* Switches common to the C front ends. */
201
202 /* Nonzero if prepreprocessing only. */
203
204 int flag_preprocess_only;
205
206 /* Nonzero means don't output line number information. */
207
208 char flag_no_line_commands;
209
210 /* Nonzero causes -E output not to be done, but directives such as
211 #define that have side effects are still obeyed. */
212
213 char flag_no_output;
214
215 /* Nonzero means dump macros in some fashion. */
216
217 char flag_dump_macros;
218
219 /* Nonzero means pass #include lines through to the output. */
220
221 char flag_dump_includes;
222
223 /* Nonzero means process PCH files while preprocessing. */
224
225 bool flag_pch_preprocess;
226
227 /* The file name to which we should write a precompiled header, or
228 NULL if no header will be written in this compile. */
229
230 const char *pch_file;
231
232 /* Nonzero if an ISO standard was selected. It rejects macros in the
233 user's namespace. */
234 int flag_iso;
235
236 /* Nonzero if -undef was given. It suppresses target built-in macros
237 and assertions. */
238 int flag_undef;
239
240 /* Nonzero means don't recognize the non-ANSI builtin functions. */
241
242 int flag_no_builtin;
243
244 /* Nonzero means don't recognize the non-ANSI builtin functions.
245 -ansi sets this. */
246
247 int flag_no_nonansi_builtin;
248
249 /* Nonzero means give `double' the same size as `float'. */
250
251 int flag_short_double;
252
253 /* Nonzero means give `wchar_t' the same size as `short'. */
254
255 int flag_short_wchar;
256
257 /* Nonzero means allow Microsoft extensions without warnings or errors. */
258 int flag_ms_extensions;
259
260 /* Nonzero means don't recognize the keyword `asm'. */
261
262 int flag_no_asm;
263
264 /* Nonzero means give string constants the type `const char *', as mandated
265 by the standard. */
266
267 int flag_const_strings;
268
269 /* Nonzero means to treat bitfields as signed unless they say `unsigned'. */
270
271 int flag_signed_bitfields = 1;
272
273 /* Nonzero means warn about deprecated conversion from string constant to
274 `char *'. */
275
276 int warn_write_strings;
277
278 /* Warn about #pragma directives that are not recognized. */
279
280 int warn_unknown_pragmas; /* Tri state variable. */
281
282 /* Warn about format/argument anomalies in calls to formatted I/O functions
283 (*printf, *scanf, strftime, strfmon, etc.). */
284
285 int warn_format;
286
287 /* Warn about using __null (as NULL in C++) as sentinel. For code compiled
288 with GCC this doesn't matter as __null is guaranteed to have the right
289 size. */
290
291 int warn_strict_null_sentinel;
292
293 /* Zero means that faster, ...NonNil variants of objc_msgSend...
294 calls will be used in ObjC; passing nil receivers to such calls
295 will most likely result in crashes. */
296 int flag_nil_receivers = 1;
297
298 /* Nonzero means that code generation will be altered to support
299 "zero-link" execution. This currently affects ObjC only, but may
300 affect other languages in the future. */
301 int flag_zero_link = 0;
302
303 /* Nonzero means emit an '__OBJC, __image_info' for the current translation
304 unit. It will inform the ObjC runtime that class definition(s) herein
305 contained are to replace one(s) previously loaded. */
306 int flag_replace_objc_classes = 0;
307
308 /* C/ObjC language option variables. */
309
310
311 /* Nonzero means allow type mismatches in conditional expressions;
312 just make their values `void'. */
313
314 int flag_cond_mismatch;
315
316 /* Nonzero means enable C89 Amendment 1 features. */
317
318 int flag_isoc94;
319
320 /* Nonzero means use the ISO C99 dialect of C. */
321
322 int flag_isoc99;
323
324 /* Nonzero means that we have builtin functions, and main is an int. */
325
326 int flag_hosted = 1;
327
328 /* Warn if main is suspicious. */
329
330 int warn_main;
331
332
333 /* ObjC language option variables. */
334
335
336 /* Open and close the file for outputting class declarations, if
337 requested (ObjC). */
338
339 int flag_gen_declaration;
340
341 /* Tells the compiler that this is a special run. Do not perform any
342 compiling, instead we are to test some platform dependent features
343 and output a C header file with appropriate definitions. */
344
345 int print_struct_values;
346
347 /* Tells the compiler what is the constant string class for Objc. */
348
349 const char *constant_string_class_name;
350
351
352 /* C++ language option variables. */
353
354
355 /* Nonzero means don't recognize any extension keywords. */
356
357 int flag_no_gnu_keywords;
358
359 /* Nonzero means do emit exported implementations of functions even if
360 they can be inlined. */
361
362 int flag_implement_inlines = 1;
363
364 /* Nonzero means that implicit instantiations will be emitted if needed. */
365
366 int flag_implicit_templates = 1;
367
368 /* Nonzero means that implicit instantiations of inline templates will be
369 emitted if needed, even if instantiations of non-inline templates
370 aren't. */
371
372 int flag_implicit_inline_templates = 1;
373
374 /* Nonzero means generate separate instantiation control files and
375 juggle them at link time. */
376
377 int flag_use_repository;
378
379 /* Nonzero if we want to issue diagnostics that the standard says are not
380 required. */
381
382 int flag_optional_diags = 1;
383
384 /* Nonzero means we should attempt to elide constructors when possible. */
385
386 int flag_elide_constructors = 1;
387
388 /* Nonzero means that member functions defined in class scope are
389 inline by default. */
390
391 int flag_default_inline = 1;
392
393 /* Controls whether compiler generates 'type descriptor' that give
394 run-time type information. */
395
396 int flag_rtti = 1;
397
398 /* Nonzero if we want to conserve space in the .o files. We do this
399 by putting uninitialized data and runtime initialized data into
400 .common instead of .data at the expense of not flagging multiple
401 definitions. */
402
403 int flag_conserve_space;
404
405 /* Nonzero if we want to obey access control semantics. */
406
407 int flag_access_control = 1;
408
409 /* Nonzero if we want to check the return value of new and avoid calling
410 constructors if it is a null pointer. */
411
412 int flag_check_new;
413
414 /* Nonzero if we want the new ISO rules for pushing a new scope for `for'
415 initialization variables.
416 0: Old rules, set by -fno-for-scope.
417 2: New ISO rules, set by -ffor-scope.
418 1: Try to implement new ISO rules, but with backup compatibility
419 (and warnings). This is the default, for now. */
420
421 int flag_new_for_scope = 1;
422
423 /* Nonzero if we want to emit defined symbols with common-like linkage as
424 weak symbols where possible, in order to conform to C++ semantics.
425 Otherwise, emit them as local symbols. */
426
427 int flag_weak = 1;
428
429 /* 0 means we want the preprocessor to not emit line directives for
430 the current working directory. 1 means we want it to do it. -1
431 means we should decide depending on whether debugging information
432 is being emitted or not. */
433
434 int flag_working_directory = -1;
435
436 /* Nonzero to use __cxa_atexit, rather than atexit, to register
437 destructors for local statics and global objects. */
438
439 int flag_use_cxa_atexit = DEFAULT_USE_CXA_ATEXIT;
440
441 /* Nonzero means make the default pedwarns warnings instead of errors.
442 The value of this flag is ignored if -pedantic is specified. */
443
444 int flag_permissive;
445
446 /* Nonzero means to implement standard semantics for exception
447 specifications, calling unexpected if an exception is thrown that
448 doesn't match the specification. Zero means to treat them as
449 assertions and optimize accordingly, but not check them. */
450
451 int flag_enforce_eh_specs = 1;
452
453 /* Nonzero means to generate thread-safe code for initializing local
454 statics. */
455
456 int flag_threadsafe_statics = 1;
457
458 /* Nonzero means warn about implicit declarations. */
459
460 int warn_implicit = 1;
461
462 /* Maximum template instantiation depth. This limit is rather
463 arbitrary, but it exists to limit the time it takes to notice
464 infinite template instantiations. */
465
466 int max_tinst_depth = 500;
467
468
469
470 /* The elements of `ridpointers' are identifier nodes for the reserved
471 type names and storage classes. It is indexed by a RID_... value. */
472 tree *ridpointers;
473
474 tree (*make_fname_decl) (tree, int);
475
476 /* Nonzero means the expression being parsed will never be evaluated.
477 This is a count, since unevaluated expressions can nest. */
478 int skip_evaluation;
479
480 /* Information about how a function name is generated. */
481 struct fname_var_t
482 {
483 tree *const decl; /* pointer to the VAR_DECL. */
484 const unsigned rid; /* RID number for the identifier. */
485 const int pretty; /* How pretty is it? */
486 };
487
488 /* The three ways of getting then name of the current function. */
489
490 const struct fname_var_t fname_vars[] =
491 {
492 /* C99 compliant __func__, must be first. */
493 {&c99_function_name_decl_node, RID_C99_FUNCTION_NAME, 0},
494 /* GCC __FUNCTION__ compliant. */
495 {&function_name_decl_node, RID_FUNCTION_NAME, 0},
496 /* GCC __PRETTY_FUNCTION__ compliant. */
497 {&pretty_function_name_decl_node, RID_PRETTY_FUNCTION_NAME, 1},
498 {NULL, 0, 0},
499 };
500
501 static int constant_fits_type_p (tree, tree);
502 static tree check_case_value (tree);
503 static bool check_case_bounds (tree, tree, tree *, tree *);
504
505 static tree handle_packed_attribute (tree *, tree, tree, int, bool *);
506 static tree handle_nocommon_attribute (tree *, tree, tree, int, bool *);
507 static tree handle_common_attribute (tree *, tree, tree, int, bool *);
508 static tree handle_noreturn_attribute (tree *, tree, tree, int, bool *);
509 static tree handle_noinline_attribute (tree *, tree, tree, int, bool *);
510 static tree handle_always_inline_attribute (tree *, tree, tree, int,
511 bool *);
512 static tree handle_flatten_attribute (tree *, tree, tree, int, bool *);
513 static tree handle_used_attribute (tree *, tree, tree, int, bool *);
514 static tree handle_unused_attribute (tree *, tree, tree, int, bool *);
515 static tree handle_externally_visible_attribute (tree *, tree, tree, int,
516 bool *);
517 static tree handle_const_attribute (tree *, tree, tree, int, bool *);
518 static tree handle_transparent_union_attribute (tree *, tree, tree,
519 int, bool *);
520 static tree handle_constructor_attribute (tree *, tree, tree, int, bool *);
521 static tree handle_destructor_attribute (tree *, tree, tree, int, bool *);
522 static tree handle_mode_attribute (tree *, tree, tree, int, bool *);
523 static tree handle_section_attribute (tree *, tree, tree, int, bool *);
524 static tree handle_aligned_attribute (tree *, tree, tree, int, bool *);
525 static tree handle_weak_attribute (tree *, tree, tree, int, bool *) ;
526 static tree handle_alias_attribute (tree *, tree, tree, int, bool *);
527 static tree handle_weakref_attribute (tree *, tree, tree, int, bool *) ;
528 static tree handle_visibility_attribute (tree *, tree, tree, int,
529 bool *);
530 static tree handle_tls_model_attribute (tree *, tree, tree, int,
531 bool *);
532 static tree handle_no_instrument_function_attribute (tree *, tree,
533 tree, int, bool *);
534 static tree handle_malloc_attribute (tree *, tree, tree, int, bool *);
535 static tree handle_returns_twice_attribute (tree *, tree, tree, int, bool *);
536 static tree handle_no_limit_stack_attribute (tree *, tree, tree, int,
537 bool *);
538 static tree handle_pure_attribute (tree *, tree, tree, int, bool *);
539 static tree handle_novops_attribute (tree *, tree, tree, int, bool *);
540 static tree handle_deprecated_attribute (tree *, tree, tree, int,
541 bool *);
542 static tree handle_vector_size_attribute (tree *, tree, tree, int,
543 bool *);
544 static tree handle_nonnull_attribute (tree *, tree, tree, int, bool *);
545 static tree handle_nothrow_attribute (tree *, tree, tree, int, bool *);
546 static tree handle_cleanup_attribute (tree *, tree, tree, int, bool *);
547 static tree handle_warn_unused_result_attribute (tree *, tree, tree, int,
548 bool *);
549 static tree handle_sentinel_attribute (tree *, tree, tree, int, bool *);
550
551 static void check_function_nonnull (tree, tree);
552 static void check_nonnull_arg (void *, tree, unsigned HOST_WIDE_INT);
553 static bool nonnull_check_p (tree, unsigned HOST_WIDE_INT);
554 static bool get_nonnull_operand (tree, unsigned HOST_WIDE_INT *);
555 static int resort_field_decl_cmp (const void *, const void *);
556
557 /* Table of machine-independent attributes common to all C-like languages. */
558 const struct attribute_spec c_common_attribute_table[] =
559 {
560 /* { name, min_len, max_len, decl_req, type_req, fn_type_req, handler } */
561 { "packed", 0, 0, false, false, false,
562 handle_packed_attribute },
563 { "nocommon", 0, 0, true, false, false,
564 handle_nocommon_attribute },
565 { "common", 0, 0, true, false, false,
566 handle_common_attribute },
567 /* FIXME: logically, noreturn attributes should be listed as
568 "false, true, true" and apply to function types. But implementing this
569 would require all the places in the compiler that use TREE_THIS_VOLATILE
570 on a decl to identify non-returning functions to be located and fixed
571 to check the function type instead. */
572 { "noreturn", 0, 0, true, false, false,
573 handle_noreturn_attribute },
574 { "volatile", 0, 0, true, false, false,
575 handle_noreturn_attribute },
576 { "noinline", 0, 0, true, false, false,
577 handle_noinline_attribute },
578 { "always_inline", 0, 0, true, false, false,
579 handle_always_inline_attribute },
580 { "flatten", 0, 0, true, false, false,
581 handle_flatten_attribute },
582 { "used", 0, 0, true, false, false,
583 handle_used_attribute },
584 { "unused", 0, 0, false, false, false,
585 handle_unused_attribute },
586 { "externally_visible", 0, 0, true, false, false,
587 handle_externally_visible_attribute },
588 /* The same comments as for noreturn attributes apply to const ones. */
589 { "const", 0, 0, true, false, false,
590 handle_const_attribute },
591 { "transparent_union", 0, 0, false, false, false,
592 handle_transparent_union_attribute },
593 { "constructor", 0, 0, true, false, false,
594 handle_constructor_attribute },
595 { "destructor", 0, 0, true, false, false,
596 handle_destructor_attribute },
597 { "mode", 1, 1, false, true, false,
598 handle_mode_attribute },
599 { "section", 1, 1, true, false, false,
600 handle_section_attribute },
601 { "aligned", 0, 1, false, false, false,
602 handle_aligned_attribute },
603 { "weak", 0, 0, true, false, false,
604 handle_weak_attribute },
605 { "alias", 1, 1, true, false, false,
606 handle_alias_attribute },
607 { "weakref", 0, 1, true, false, false,
608 handle_weakref_attribute },
609 { "no_instrument_function", 0, 0, true, false, false,
610 handle_no_instrument_function_attribute },
611 { "malloc", 0, 0, true, false, false,
612 handle_malloc_attribute },
613 { "returns_twice", 0, 0, true, false, false,
614 handle_returns_twice_attribute },
615 { "no_stack_limit", 0, 0, true, false, false,
616 handle_no_limit_stack_attribute },
617 { "pure", 0, 0, true, false, false,
618 handle_pure_attribute },
619 /* For internal use (marking of builtins) only. The name contains space
620 to prevent its usage in source code. */
621 { "no vops", 0, 0, true, false, false,
622 handle_novops_attribute },
623 { "deprecated", 0, 0, false, false, false,
624 handle_deprecated_attribute },
625 { "vector_size", 1, 1, false, true, false,
626 handle_vector_size_attribute },
627 { "visibility", 1, 1, false, false, false,
628 handle_visibility_attribute },
629 { "tls_model", 1, 1, true, false, false,
630 handle_tls_model_attribute },
631 { "nonnull", 0, -1, false, true, true,
632 handle_nonnull_attribute },
633 { "nothrow", 0, 0, true, false, false,
634 handle_nothrow_attribute },
635 { "may_alias", 0, 0, false, true, false, NULL },
636 { "cleanup", 1, 1, true, false, false,
637 handle_cleanup_attribute },
638 { "warn_unused_result", 0, 0, false, true, true,
639 handle_warn_unused_result_attribute },
640 { "sentinel", 0, 1, false, true, true,
641 handle_sentinel_attribute },
642 { NULL, 0, 0, false, false, false, NULL }
643 };
644
645 /* Give the specifications for the format attributes, used by C and all
646 descendants. */
647
648 const struct attribute_spec c_common_format_attribute_table[] =
649 {
650 /* { name, min_len, max_len, decl_req, type_req, fn_type_req, handler } */
651 { "format", 3, 3, false, true, true,
652 handle_format_attribute },
653 { "format_arg", 1, 1, false, true, true,
654 handle_format_arg_attribute },
655 { NULL, 0, 0, false, false, false, NULL }
656 };
657
658 /* Push current bindings for the function name VAR_DECLS. */
659
660 void
661 start_fname_decls (void)
662 {
663 unsigned ix;
664 tree saved = NULL_TREE;
665
666 for (ix = 0; fname_vars[ix].decl; ix++)
667 {
668 tree decl = *fname_vars[ix].decl;
669
670 if (decl)
671 {
672 saved = tree_cons (decl, build_int_cst (NULL_TREE, ix), saved);
673 *fname_vars[ix].decl = NULL_TREE;
674 }
675 }
676 if (saved || saved_function_name_decls)
677 /* Normally they'll have been NULL, so only push if we've got a
678 stack, or they are non-NULL. */
679 saved_function_name_decls = tree_cons (saved, NULL_TREE,
680 saved_function_name_decls);
681 }
682
683 /* Finish up the current bindings, adding them into the current function's
684 statement tree. This must be done _before_ finish_stmt_tree is called.
685 If there is no current function, we must be at file scope and no statements
686 are involved. Pop the previous bindings. */
687
688 void
689 finish_fname_decls (void)
690 {
691 unsigned ix;
692 tree stmts = NULL_TREE;
693 tree stack = saved_function_name_decls;
694
695 for (; stack && TREE_VALUE (stack); stack = TREE_CHAIN (stack))
696 append_to_statement_list (TREE_VALUE (stack), &stmts);
697
698 if (stmts)
699 {
700 tree *bodyp = &DECL_SAVED_TREE (current_function_decl);
701
702 if (TREE_CODE (*bodyp) == BIND_EXPR)
703 bodyp = &BIND_EXPR_BODY (*bodyp);
704
705 append_to_statement_list_force (*bodyp, &stmts);
706 *bodyp = stmts;
707 }
708
709 for (ix = 0; fname_vars[ix].decl; ix++)
710 *fname_vars[ix].decl = NULL_TREE;
711
712 if (stack)
713 {
714 /* We had saved values, restore them. */
715 tree saved;
716
717 for (saved = TREE_PURPOSE (stack); saved; saved = TREE_CHAIN (saved))
718 {
719 tree decl = TREE_PURPOSE (saved);
720 unsigned ix = TREE_INT_CST_LOW (TREE_VALUE (saved));
721
722 *fname_vars[ix].decl = decl;
723 }
724 stack = TREE_CHAIN (stack);
725 }
726 saved_function_name_decls = stack;
727 }
728
729 /* Return the text name of the current function, suitably prettified
730 by PRETTY_P. Return string must be freed by caller. */
731
732 const char *
733 fname_as_string (int pretty_p)
734 {
735 const char *name = "top level";
736 char *namep;
737 int vrb = 2;
738
739 if (!pretty_p)
740 {
741 name = "";
742 vrb = 0;
743 }
744
745 if (current_function_decl)
746 name = lang_hooks.decl_printable_name (current_function_decl, vrb);
747
748 if (c_lex_string_translate)
749 {
750 int len = strlen (name) + 3; /* Two for '"'s. One for NULL. */
751 cpp_string cstr = { 0, 0 }, strname;
752
753 namep = XNEWVEC (char, len);
754 snprintf (namep, len, "\"%s\"", name);
755 strname.text = (unsigned char *) namep;
756 strname.len = len - 1;
757
758 if (cpp_interpret_string (parse_in, &strname, 1, &cstr, false))
759 {
760 XDELETEVEC (namep);
761 return (char *) cstr.text;
762 }
763 }
764 else
765 namep = xstrdup (name);
766
767 return namep;
768 }
769
770 /* Expand DECL if it declares an entity not handled by the
771 common code. */
772
773 int
774 c_expand_decl (tree decl)
775 {
776 if (TREE_CODE (decl) == VAR_DECL && !TREE_STATIC (decl))
777 {
778 /* Let the back-end know about this variable. */
779 if (!anon_aggr_type_p (TREE_TYPE (decl)))
780 emit_local_var (decl);
781 else
782 expand_anon_union_decl (decl, NULL_TREE,
783 DECL_ANON_UNION_ELEMS (decl));
784 }
785 else
786 return 0;
787
788 return 1;
789 }
790
791
792 /* Return the VAR_DECL for a const char array naming the current
793 function. If the VAR_DECL has not yet been created, create it
794 now. RID indicates how it should be formatted and IDENTIFIER_NODE
795 ID is its name (unfortunately C and C++ hold the RID values of
796 keywords in different places, so we can't derive RID from ID in
797 this language independent code. */
798
799 tree
800 fname_decl (unsigned int rid, tree id)
801 {
802 unsigned ix;
803 tree decl = NULL_TREE;
804
805 for (ix = 0; fname_vars[ix].decl; ix++)
806 if (fname_vars[ix].rid == rid)
807 break;
808
809 decl = *fname_vars[ix].decl;
810 if (!decl)
811 {
812 /* If a tree is built here, it would normally have the lineno of
813 the current statement. Later this tree will be moved to the
814 beginning of the function and this line number will be wrong.
815 To avoid this problem set the lineno to 0 here; that prevents
816 it from appearing in the RTL. */
817 tree stmts;
818 location_t saved_location = input_location;
819 #ifdef USE_MAPPED_LOCATION
820 input_location = UNKNOWN_LOCATION;
821 #else
822 input_line = 0;
823 #endif
824
825 stmts = push_stmt_list ();
826 decl = (*make_fname_decl) (id, fname_vars[ix].pretty);
827 stmts = pop_stmt_list (stmts);
828 if (!IS_EMPTY_STMT (stmts))
829 saved_function_name_decls
830 = tree_cons (decl, stmts, saved_function_name_decls);
831 *fname_vars[ix].decl = decl;
832 input_location = saved_location;
833 }
834 if (!ix && !current_function_decl)
835 pedwarn ("%qD is not defined outside of function scope", decl);
836
837 return decl;
838 }
839
840 /* Given a STRING_CST, give it a suitable array-of-chars data type. */
841
842 tree
843 fix_string_type (tree value)
844 {
845 const int wchar_bytes = TYPE_PRECISION (wchar_type_node) / BITS_PER_UNIT;
846 const int wide_flag = TREE_TYPE (value) == wchar_array_type_node;
847 const int nchars_max = flag_isoc99 ? 4095 : 509;
848 int length = TREE_STRING_LENGTH (value);
849 int nchars;
850 tree e_type, i_type, a_type;
851
852 /* Compute the number of elements, for the array type. */
853 nchars = wide_flag ? length / wchar_bytes : length;
854
855 if (pedantic && nchars - 1 > nchars_max && !c_dialect_cxx ())
856 pedwarn ("string length %qd is greater than the length %qd ISO C%d compilers are required to support",
857 nchars - 1, nchars_max, flag_isoc99 ? 99 : 89);
858
859 e_type = wide_flag ? wchar_type_node : char_type_node;
860 /* Create the array type for the string constant. flag_const_strings
861 says make the string constant an array of const char so that
862 copying it to a non-const pointer will get a warning. For C++,
863 this is the standard behavior.
864
865 The C++ front end relies on TYPE_MAIN_VARIANT of a cv-qualified
866 array type being the unqualified version of that type.
867 Therefore, if we are constructing an array of const char, we must
868 construct the matching unqualified array type first. The C front
869 end does not require this, but it does no harm, so we do it
870 unconditionally. */
871 i_type = build_index_type (build_int_cst (NULL_TREE, nchars - 1));
872 a_type = build_array_type (e_type, i_type);
873 if (flag_const_strings)
874 a_type = c_build_qualified_type (a_type, TYPE_QUAL_CONST);
875
876 TREE_TYPE (value) = a_type;
877 TREE_CONSTANT (value) = 1;
878 TREE_INVARIANT (value) = 1;
879 TREE_READONLY (value) = 1;
880 TREE_STATIC (value) = 1;
881 return value;
882 }
883 \f
884 /* Print a warning if a constant expression had overflow in folding.
885 Invoke this function on every expression that the language
886 requires to be a constant expression.
887 Note the ANSI C standard says it is erroneous for a
888 constant expression to overflow. */
889
890 void
891 constant_expression_warning (tree value)
892 {
893 if ((TREE_CODE (value) == INTEGER_CST || TREE_CODE (value) == REAL_CST
894 || TREE_CODE (value) == VECTOR_CST
895 || TREE_CODE (value) == COMPLEX_CST)
896 && TREE_CONSTANT_OVERFLOW (value) && pedantic)
897 pedwarn ("overflow in constant expression");
898 }
899
900 /* Print a warning if an expression had overflow in folding.
901 Invoke this function on every expression that
902 (1) appears in the source code, and
903 (2) might be a constant expression that overflowed, and
904 (3) is not already checked by convert_and_check;
905 however, do not invoke this function on operands of explicit casts. */
906
907 void
908 overflow_warning (tree value)
909 {
910 if ((TREE_CODE (value) == INTEGER_CST
911 || (TREE_CODE (value) == COMPLEX_CST
912 && TREE_CODE (TREE_REALPART (value)) == INTEGER_CST))
913 && TREE_OVERFLOW (value))
914 {
915 TREE_OVERFLOW (value) = 0;
916 if (skip_evaluation == 0)
917 warning (0, "integer overflow in expression");
918 }
919 else if ((TREE_CODE (value) == REAL_CST
920 || (TREE_CODE (value) == COMPLEX_CST
921 && TREE_CODE (TREE_REALPART (value)) == REAL_CST))
922 && TREE_OVERFLOW (value))
923 {
924 TREE_OVERFLOW (value) = 0;
925 if (skip_evaluation == 0)
926 warning (0, "floating point overflow in expression");
927 }
928 else if (TREE_CODE (value) == VECTOR_CST && TREE_OVERFLOW (value))
929 {
930 TREE_OVERFLOW (value) = 0;
931 if (skip_evaluation == 0)
932 warning (0, "vector overflow in expression");
933 }
934 }
935
936 /* Print a warning if a large constant is truncated to unsigned,
937 or if -Wconversion is used and a constant < 0 is converted to unsigned.
938 Invoke this function on every expression that might be implicitly
939 converted to an unsigned type. */
940
941 void
942 unsigned_conversion_warning (tree result, tree operand)
943 {
944 tree type = TREE_TYPE (result);
945
946 if (TREE_CODE (operand) == INTEGER_CST
947 && TREE_CODE (type) == INTEGER_TYPE
948 && TYPE_UNSIGNED (type)
949 && skip_evaluation == 0
950 && !int_fits_type_p (operand, type))
951 {
952 if (!int_fits_type_p (operand, c_common_signed_type (type)))
953 /* This detects cases like converting -129 or 256 to unsigned char. */
954 warning (0, "large integer implicitly truncated to unsigned type");
955 else
956 warning (OPT_Wconversion,
957 "negative integer implicitly converted to unsigned type");
958 }
959 }
960
961 /* Print a warning about casts that might indicate violation
962 of strict aliasing rules if -Wstrict-aliasing is used and
963 strict aliasing mode is in effect. otype is the original
964 TREE_TYPE of expr, and type the type we're casting to. */
965
966 void
967 strict_aliasing_warning(tree otype, tree type, tree expr)
968 {
969 if (flag_strict_aliasing && warn_strict_aliasing
970 && POINTER_TYPE_P (type) && POINTER_TYPE_P (otype)
971 && TREE_CODE (expr) == ADDR_EXPR
972 && (DECL_P (TREE_OPERAND (expr, 0))
973 || handled_component_p (TREE_OPERAND (expr, 0)))
974 && !VOID_TYPE_P (TREE_TYPE (type)))
975 {
976 /* Casting the address of an object to non void pointer. Warn
977 if the cast breaks type based aliasing. */
978 if (!COMPLETE_TYPE_P (TREE_TYPE (type)))
979 warning (OPT_Wstrict_aliasing, "type-punning to incomplete type "
980 "might break strict-aliasing rules");
981 else
982 {
983 HOST_WIDE_INT set1 = get_alias_set (TREE_TYPE (TREE_OPERAND (expr, 0)));
984 HOST_WIDE_INT set2 = get_alias_set (TREE_TYPE (type));
985
986 if (!alias_sets_conflict_p (set1, set2))
987 warning (OPT_Wstrict_aliasing, "dereferencing type-punned "
988 "pointer will break strict-aliasing rules");
989 else if (warn_strict_aliasing > 1
990 && !alias_sets_might_conflict_p (set1, set2))
991 warning (OPT_Wstrict_aliasing, "dereferencing type-punned "
992 "pointer might break strict-aliasing rules");
993 }
994 }
995 }
996
997 /* Nonzero if constant C has a value that is permissible
998 for type TYPE (an INTEGER_TYPE). */
999
1000 static int
1001 constant_fits_type_p (tree c, tree type)
1002 {
1003 if (TREE_CODE (c) == INTEGER_CST)
1004 return int_fits_type_p (c, type);
1005
1006 c = convert (type, c);
1007 return !TREE_OVERFLOW (c);
1008 }
1009
1010 /* Nonzero if vector types T1 and T2 can be converted to each other
1011 without an explicit cast. */
1012 int
1013 vector_types_convertible_p (tree t1, tree t2)
1014 {
1015 return targetm.vector_opaque_p (t1)
1016 || targetm.vector_opaque_p (t2)
1017 || (tree_int_cst_equal (TYPE_SIZE (t1), TYPE_SIZE (t2))
1018 && (TREE_CODE (TREE_TYPE (t1)) != REAL_TYPE ||
1019 TYPE_PRECISION (t1) == TYPE_PRECISION (t2))
1020 && INTEGRAL_TYPE_P (TREE_TYPE (t1))
1021 == INTEGRAL_TYPE_P (TREE_TYPE (t2)));
1022 }
1023
1024 /* Convert EXPR to TYPE, warning about conversion problems with constants.
1025 Invoke this function on every expression that is converted implicitly,
1026 i.e. because of language rules and not because of an explicit cast. */
1027
1028 tree
1029 convert_and_check (tree type, tree expr)
1030 {
1031 tree t = convert (type, expr);
1032 if (TREE_CODE (t) == INTEGER_CST)
1033 {
1034 if (TREE_OVERFLOW (t))
1035 {
1036 TREE_OVERFLOW (t) = 0;
1037
1038 /* Do not diagnose overflow in a constant expression merely
1039 because a conversion overflowed. */
1040 TREE_CONSTANT_OVERFLOW (t) = TREE_CONSTANT_OVERFLOW (expr);
1041
1042 /* No warning for converting 0x80000000 to int. */
1043 if (!(TYPE_UNSIGNED (type) < TYPE_UNSIGNED (TREE_TYPE (expr))
1044 && TREE_CODE (TREE_TYPE (expr)) == INTEGER_TYPE
1045 && TYPE_PRECISION (type) == TYPE_PRECISION (TREE_TYPE (expr))))
1046 /* If EXPR fits in the unsigned version of TYPE,
1047 don't warn unless pedantic. */
1048 if ((pedantic
1049 || TYPE_UNSIGNED (type)
1050 || !constant_fits_type_p (expr,
1051 c_common_unsigned_type (type)))
1052 && skip_evaluation == 0)
1053 warning (0, "overflow in implicit constant conversion");
1054 }
1055 else
1056 unsigned_conversion_warning (t, expr);
1057 }
1058 return t;
1059 }
1060 \f
1061 /* A node in a list that describes references to variables (EXPR), which are
1062 either read accesses if WRITER is zero, or write accesses, in which case
1063 WRITER is the parent of EXPR. */
1064 struct tlist
1065 {
1066 struct tlist *next;
1067 tree expr, writer;
1068 };
1069
1070 /* Used to implement a cache the results of a call to verify_tree. We only
1071 use this for SAVE_EXPRs. */
1072 struct tlist_cache
1073 {
1074 struct tlist_cache *next;
1075 struct tlist *cache_before_sp;
1076 struct tlist *cache_after_sp;
1077 tree expr;
1078 };
1079
1080 /* Obstack to use when allocating tlist structures, and corresponding
1081 firstobj. */
1082 static struct obstack tlist_obstack;
1083 static char *tlist_firstobj = 0;
1084
1085 /* Keep track of the identifiers we've warned about, so we can avoid duplicate
1086 warnings. */
1087 static struct tlist *warned_ids;
1088 /* SAVE_EXPRs need special treatment. We process them only once and then
1089 cache the results. */
1090 static struct tlist_cache *save_expr_cache;
1091
1092 static void add_tlist (struct tlist **, struct tlist *, tree, int);
1093 static void merge_tlist (struct tlist **, struct tlist *, int);
1094 static void verify_tree (tree, struct tlist **, struct tlist **, tree);
1095 static int warning_candidate_p (tree);
1096 static void warn_for_collisions (struct tlist *);
1097 static void warn_for_collisions_1 (tree, tree, struct tlist *, int);
1098 static struct tlist *new_tlist (struct tlist *, tree, tree);
1099
1100 /* Create a new struct tlist and fill in its fields. */
1101 static struct tlist *
1102 new_tlist (struct tlist *next, tree t, tree writer)
1103 {
1104 struct tlist *l;
1105 l = XOBNEW (&tlist_obstack, struct tlist);
1106 l->next = next;
1107 l->expr = t;
1108 l->writer = writer;
1109 return l;
1110 }
1111
1112 /* Add duplicates of the nodes found in ADD to the list *TO. If EXCLUDE_WRITER
1113 is nonnull, we ignore any node we find which has a writer equal to it. */
1114
1115 static void
1116 add_tlist (struct tlist **to, struct tlist *add, tree exclude_writer, int copy)
1117 {
1118 while (add)
1119 {
1120 struct tlist *next = add->next;
1121 if (!copy)
1122 add->next = *to;
1123 if (!exclude_writer || add->writer != exclude_writer)
1124 *to = copy ? new_tlist (*to, add->expr, add->writer) : add;
1125 add = next;
1126 }
1127 }
1128
1129 /* Merge the nodes of ADD into TO. This merging process is done so that for
1130 each variable that already exists in TO, no new node is added; however if
1131 there is a write access recorded in ADD, and an occurrence on TO is only
1132 a read access, then the occurrence in TO will be modified to record the
1133 write. */
1134
1135 static void
1136 merge_tlist (struct tlist **to, struct tlist *add, int copy)
1137 {
1138 struct tlist **end = to;
1139
1140 while (*end)
1141 end = &(*end)->next;
1142
1143 while (add)
1144 {
1145 int found = 0;
1146 struct tlist *tmp2;
1147 struct tlist *next = add->next;
1148
1149 for (tmp2 = *to; tmp2; tmp2 = tmp2->next)
1150 if (tmp2->expr == add->expr)
1151 {
1152 found = 1;
1153 if (!tmp2->writer)
1154 tmp2->writer = add->writer;
1155 }
1156 if (!found)
1157 {
1158 *end = copy ? add : new_tlist (NULL, add->expr, add->writer);
1159 end = &(*end)->next;
1160 *end = 0;
1161 }
1162 add = next;
1163 }
1164 }
1165
1166 /* WRITTEN is a variable, WRITER is its parent. Warn if any of the variable
1167 references in list LIST conflict with it, excluding reads if ONLY writers
1168 is nonzero. */
1169
1170 static void
1171 warn_for_collisions_1 (tree written, tree writer, struct tlist *list,
1172 int only_writes)
1173 {
1174 struct tlist *tmp;
1175
1176 /* Avoid duplicate warnings. */
1177 for (tmp = warned_ids; tmp; tmp = tmp->next)
1178 if (tmp->expr == written)
1179 return;
1180
1181 while (list)
1182 {
1183 if (list->expr == written
1184 && list->writer != writer
1185 && (!only_writes || list->writer)
1186 && DECL_NAME (list->expr))
1187 {
1188 warned_ids = new_tlist (warned_ids, written, NULL_TREE);
1189 warning (0, "operation on %qE may be undefined", list->expr);
1190 }
1191 list = list->next;
1192 }
1193 }
1194
1195 /* Given a list LIST of references to variables, find whether any of these
1196 can cause conflicts due to missing sequence points. */
1197
1198 static void
1199 warn_for_collisions (struct tlist *list)
1200 {
1201 struct tlist *tmp;
1202
1203 for (tmp = list; tmp; tmp = tmp->next)
1204 {
1205 if (tmp->writer)
1206 warn_for_collisions_1 (tmp->expr, tmp->writer, list, 0);
1207 }
1208 }
1209
1210 /* Return nonzero if X is a tree that can be verified by the sequence point
1211 warnings. */
1212 static int
1213 warning_candidate_p (tree x)
1214 {
1215 return TREE_CODE (x) == VAR_DECL || TREE_CODE (x) == PARM_DECL;
1216 }
1217
1218 /* Walk the tree X, and record accesses to variables. If X is written by the
1219 parent tree, WRITER is the parent.
1220 We store accesses in one of the two lists: PBEFORE_SP, and PNO_SP. If this
1221 expression or its only operand forces a sequence point, then everything up
1222 to the sequence point is stored in PBEFORE_SP. Everything else gets stored
1223 in PNO_SP.
1224 Once we return, we will have emitted warnings if any subexpression before
1225 such a sequence point could be undefined. On a higher level, however, the
1226 sequence point may not be relevant, and we'll merge the two lists.
1227
1228 Example: (b++, a) + b;
1229 The call that processes the COMPOUND_EXPR will store the increment of B
1230 in PBEFORE_SP, and the use of A in PNO_SP. The higher-level call that
1231 processes the PLUS_EXPR will need to merge the two lists so that
1232 eventually, all accesses end up on the same list (and we'll warn about the
1233 unordered subexpressions b++ and b.
1234
1235 A note on merging. If we modify the former example so that our expression
1236 becomes
1237 (b++, b) + a
1238 care must be taken not simply to add all three expressions into the final
1239 PNO_SP list. The function merge_tlist takes care of that by merging the
1240 before-SP list of the COMPOUND_EXPR into its after-SP list in a special
1241 way, so that no more than one access to B is recorded. */
1242
1243 static void
1244 verify_tree (tree x, struct tlist **pbefore_sp, struct tlist **pno_sp,
1245 tree writer)
1246 {
1247 struct tlist *tmp_before, *tmp_nosp, *tmp_list2, *tmp_list3;
1248 enum tree_code code;
1249 enum tree_code_class cl;
1250
1251 /* X may be NULL if it is the operand of an empty statement expression
1252 ({ }). */
1253 if (x == NULL)
1254 return;
1255
1256 restart:
1257 code = TREE_CODE (x);
1258 cl = TREE_CODE_CLASS (code);
1259
1260 if (warning_candidate_p (x))
1261 {
1262 *pno_sp = new_tlist (*pno_sp, x, writer);
1263 return;
1264 }
1265
1266 switch (code)
1267 {
1268 case CONSTRUCTOR:
1269 return;
1270
1271 case COMPOUND_EXPR:
1272 case TRUTH_ANDIF_EXPR:
1273 case TRUTH_ORIF_EXPR:
1274 tmp_before = tmp_nosp = tmp_list3 = 0;
1275 verify_tree (TREE_OPERAND (x, 0), &tmp_before, &tmp_nosp, NULL_TREE);
1276 warn_for_collisions (tmp_nosp);
1277 merge_tlist (pbefore_sp, tmp_before, 0);
1278 merge_tlist (pbefore_sp, tmp_nosp, 0);
1279 verify_tree (TREE_OPERAND (x, 1), &tmp_list3, pno_sp, NULL_TREE);
1280 merge_tlist (pbefore_sp, tmp_list3, 0);
1281 return;
1282
1283 case COND_EXPR:
1284 tmp_before = tmp_list2 = 0;
1285 verify_tree (TREE_OPERAND (x, 0), &tmp_before, &tmp_list2, NULL_TREE);
1286 warn_for_collisions (tmp_list2);
1287 merge_tlist (pbefore_sp, tmp_before, 0);
1288 merge_tlist (pbefore_sp, tmp_list2, 1);
1289
1290 tmp_list3 = tmp_nosp = 0;
1291 verify_tree (TREE_OPERAND (x, 1), &tmp_list3, &tmp_nosp, NULL_TREE);
1292 warn_for_collisions (tmp_nosp);
1293 merge_tlist (pbefore_sp, tmp_list3, 0);
1294
1295 tmp_list3 = tmp_list2 = 0;
1296 verify_tree (TREE_OPERAND (x, 2), &tmp_list3, &tmp_list2, NULL_TREE);
1297 warn_for_collisions (tmp_list2);
1298 merge_tlist (pbefore_sp, tmp_list3, 0);
1299 /* Rather than add both tmp_nosp and tmp_list2, we have to merge the
1300 two first, to avoid warning for (a ? b++ : b++). */
1301 merge_tlist (&tmp_nosp, tmp_list2, 0);
1302 add_tlist (pno_sp, tmp_nosp, NULL_TREE, 0);
1303 return;
1304
1305 case PREDECREMENT_EXPR:
1306 case PREINCREMENT_EXPR:
1307 case POSTDECREMENT_EXPR:
1308 case POSTINCREMENT_EXPR:
1309 verify_tree (TREE_OPERAND (x, 0), pno_sp, pno_sp, x);
1310 return;
1311
1312 case MODIFY_EXPR:
1313 tmp_before = tmp_nosp = tmp_list3 = 0;
1314 verify_tree (TREE_OPERAND (x, 1), &tmp_before, &tmp_nosp, NULL_TREE);
1315 verify_tree (TREE_OPERAND (x, 0), &tmp_list3, &tmp_list3, x);
1316 /* Expressions inside the LHS are not ordered wrt. the sequence points
1317 in the RHS. Example:
1318 *a = (a++, 2)
1319 Despite the fact that the modification of "a" is in the before_sp
1320 list (tmp_before), it conflicts with the use of "a" in the LHS.
1321 We can handle this by adding the contents of tmp_list3
1322 to those of tmp_before, and redoing the collision warnings for that
1323 list. */
1324 add_tlist (&tmp_before, tmp_list3, x, 1);
1325 warn_for_collisions (tmp_before);
1326 /* Exclude the LHS itself here; we first have to merge it into the
1327 tmp_nosp list. This is done to avoid warning for "a = a"; if we
1328 didn't exclude the LHS, we'd get it twice, once as a read and once
1329 as a write. */
1330 add_tlist (pno_sp, tmp_list3, x, 0);
1331 warn_for_collisions_1 (TREE_OPERAND (x, 0), x, tmp_nosp, 1);
1332
1333 merge_tlist (pbefore_sp, tmp_before, 0);
1334 if (warning_candidate_p (TREE_OPERAND (x, 0)))
1335 merge_tlist (&tmp_nosp, new_tlist (NULL, TREE_OPERAND (x, 0), x), 0);
1336 add_tlist (pno_sp, tmp_nosp, NULL_TREE, 1);
1337 return;
1338
1339 case CALL_EXPR:
1340 /* We need to warn about conflicts among arguments and conflicts between
1341 args and the function address. Side effects of the function address,
1342 however, are not ordered by the sequence point of the call. */
1343 tmp_before = tmp_nosp = tmp_list2 = tmp_list3 = 0;
1344 verify_tree (TREE_OPERAND (x, 0), &tmp_before, &tmp_nosp, NULL_TREE);
1345 if (TREE_OPERAND (x, 1))
1346 verify_tree (TREE_OPERAND (x, 1), &tmp_list2, &tmp_list3, NULL_TREE);
1347 merge_tlist (&tmp_list3, tmp_list2, 0);
1348 add_tlist (&tmp_before, tmp_list3, NULL_TREE, 0);
1349 add_tlist (&tmp_before, tmp_nosp, NULL_TREE, 0);
1350 warn_for_collisions (tmp_before);
1351 add_tlist (pbefore_sp, tmp_before, NULL_TREE, 0);
1352 return;
1353
1354 case TREE_LIST:
1355 /* Scan all the list, e.g. indices of multi dimensional array. */
1356 while (x)
1357 {
1358 tmp_before = tmp_nosp = 0;
1359 verify_tree (TREE_VALUE (x), &tmp_before, &tmp_nosp, NULL_TREE);
1360 merge_tlist (&tmp_nosp, tmp_before, 0);
1361 add_tlist (pno_sp, tmp_nosp, NULL_TREE, 0);
1362 x = TREE_CHAIN (x);
1363 }
1364 return;
1365
1366 case SAVE_EXPR:
1367 {
1368 struct tlist_cache *t;
1369 for (t = save_expr_cache; t; t = t->next)
1370 if (t->expr == x)
1371 break;
1372
1373 if (!t)
1374 {
1375 t = XOBNEW (&tlist_obstack, struct tlist_cache);
1376 t->next = save_expr_cache;
1377 t->expr = x;
1378 save_expr_cache = t;
1379
1380 tmp_before = tmp_nosp = 0;
1381 verify_tree (TREE_OPERAND (x, 0), &tmp_before, &tmp_nosp, NULL_TREE);
1382 warn_for_collisions (tmp_nosp);
1383
1384 tmp_list3 = 0;
1385 while (tmp_nosp)
1386 {
1387 struct tlist *t = tmp_nosp;
1388 tmp_nosp = t->next;
1389 merge_tlist (&tmp_list3, t, 0);
1390 }
1391 t->cache_before_sp = tmp_before;
1392 t->cache_after_sp = tmp_list3;
1393 }
1394 merge_tlist (pbefore_sp, t->cache_before_sp, 1);
1395 add_tlist (pno_sp, t->cache_after_sp, NULL_TREE, 1);
1396 return;
1397 }
1398
1399 default:
1400 /* For other expressions, simply recurse on their operands.
1401 Manual tail recursion for unary expressions.
1402 Other non-expressions need not be processed. */
1403 if (cl == tcc_unary)
1404 {
1405 x = TREE_OPERAND (x, 0);
1406 writer = 0;
1407 goto restart;
1408 }
1409 else if (IS_EXPR_CODE_CLASS (cl))
1410 {
1411 int lp;
1412 int max = TREE_CODE_LENGTH (TREE_CODE (x));
1413 for (lp = 0; lp < max; lp++)
1414 {
1415 tmp_before = tmp_nosp = 0;
1416 verify_tree (TREE_OPERAND (x, lp), &tmp_before, &tmp_nosp, 0);
1417 merge_tlist (&tmp_nosp, tmp_before, 0);
1418 add_tlist (pno_sp, tmp_nosp, NULL_TREE, 0);
1419 }
1420 }
1421 return;
1422 }
1423 }
1424
1425 /* Try to warn for undefined behavior in EXPR due to missing sequence
1426 points. */
1427
1428 void
1429 verify_sequence_points (tree expr)
1430 {
1431 struct tlist *before_sp = 0, *after_sp = 0;
1432
1433 warned_ids = 0;
1434 save_expr_cache = 0;
1435 if (tlist_firstobj == 0)
1436 {
1437 gcc_obstack_init (&tlist_obstack);
1438 tlist_firstobj = (char *) obstack_alloc (&tlist_obstack, 0);
1439 }
1440
1441 verify_tree (expr, &before_sp, &after_sp, 0);
1442 warn_for_collisions (after_sp);
1443 obstack_free (&tlist_obstack, tlist_firstobj);
1444 }
1445 \f
1446 /* Validate the expression after `case' and apply default promotions. */
1447
1448 static tree
1449 check_case_value (tree value)
1450 {
1451 if (value == NULL_TREE)
1452 return value;
1453
1454 /* ??? Can we ever get nops here for a valid case value? We
1455 shouldn't for C. */
1456 STRIP_TYPE_NOPS (value);
1457 /* In C++, the following is allowed:
1458
1459 const int i = 3;
1460 switch (...) { case i: ... }
1461
1462 So, we try to reduce the VALUE to a constant that way. */
1463 if (c_dialect_cxx ())
1464 {
1465 value = decl_constant_value (value);
1466 STRIP_TYPE_NOPS (value);
1467 value = fold (value);
1468 }
1469
1470 if (TREE_CODE (value) == INTEGER_CST)
1471 /* Promote char or short to int. */
1472 value = perform_integral_promotions (value);
1473 else if (value != error_mark_node)
1474 {
1475 error ("case label does not reduce to an integer constant");
1476 value = error_mark_node;
1477 }
1478
1479 constant_expression_warning (value);
1480
1481 return value;
1482 }
1483 \f
1484 /* See if the case values LOW and HIGH are in the range of the original
1485 type (i.e. before the default conversion to int) of the switch testing
1486 expression.
1487 TYPE is the promoted type of the testing expression, and ORIG_TYPE is
1488 the type before promoting it. CASE_LOW_P is a pointer to the lower
1489 bound of the case label, and CASE_HIGH_P is the upper bound or NULL
1490 if the case is not a case range.
1491 The caller has to make sure that we are not called with NULL for
1492 CASE_LOW_P (i.e. the default case).
1493 Returns true if the case label is in range of ORIG_TYPE (saturated or
1494 untouched) or false if the label is out of range. */
1495
1496 static bool
1497 check_case_bounds (tree type, tree orig_type,
1498 tree *case_low_p, tree *case_high_p)
1499 {
1500 tree min_value, max_value;
1501 tree case_low = *case_low_p;
1502 tree case_high = case_high_p ? *case_high_p : case_low;
1503
1504 /* If there was a problem with the original type, do nothing. */
1505 if (orig_type == error_mark_node)
1506 return true;
1507
1508 min_value = TYPE_MIN_VALUE (orig_type);
1509 max_value = TYPE_MAX_VALUE (orig_type);
1510
1511 /* Case label is less than minimum for type. */
1512 if (tree_int_cst_compare (case_low, min_value) < 0
1513 && tree_int_cst_compare (case_high, min_value) < 0)
1514 {
1515 warning (0, "case label value is less than minimum value for type");
1516 return false;
1517 }
1518
1519 /* Case value is greater than maximum for type. */
1520 if (tree_int_cst_compare (case_low, max_value) > 0
1521 && tree_int_cst_compare (case_high, max_value) > 0)
1522 {
1523 warning (0, "case label value exceeds maximum value for type");
1524 return false;
1525 }
1526
1527 /* Saturate lower case label value to minimum. */
1528 if (tree_int_cst_compare (case_high, min_value) >= 0
1529 && tree_int_cst_compare (case_low, min_value) < 0)
1530 {
1531 warning (0, "lower value in case label range"
1532 " less than minimum value for type");
1533 case_low = min_value;
1534 }
1535
1536 /* Saturate upper case label value to maximum. */
1537 if (tree_int_cst_compare (case_low, max_value) <= 0
1538 && tree_int_cst_compare (case_high, max_value) > 0)
1539 {
1540 warning (0, "upper value in case label range"
1541 " exceeds maximum value for type");
1542 case_high = max_value;
1543 }
1544
1545 if (*case_low_p != case_low)
1546 *case_low_p = convert (type, case_low);
1547 if (case_high_p && *case_high_p != case_high)
1548 *case_high_p = convert (type, case_high);
1549
1550 return true;
1551 }
1552 \f
1553 /* Return an integer type with BITS bits of precision,
1554 that is unsigned if UNSIGNEDP is nonzero, otherwise signed. */
1555
1556 tree
1557 c_common_type_for_size (unsigned int bits, int unsignedp)
1558 {
1559 if (bits == TYPE_PRECISION (integer_type_node))
1560 return unsignedp ? unsigned_type_node : integer_type_node;
1561
1562 if (bits == TYPE_PRECISION (signed_char_type_node))
1563 return unsignedp ? unsigned_char_type_node : signed_char_type_node;
1564
1565 if (bits == TYPE_PRECISION (short_integer_type_node))
1566 return unsignedp ? short_unsigned_type_node : short_integer_type_node;
1567
1568 if (bits == TYPE_PRECISION (long_integer_type_node))
1569 return unsignedp ? long_unsigned_type_node : long_integer_type_node;
1570
1571 if (bits == TYPE_PRECISION (long_long_integer_type_node))
1572 return (unsignedp ? long_long_unsigned_type_node
1573 : long_long_integer_type_node);
1574
1575 if (bits == TYPE_PRECISION (widest_integer_literal_type_node))
1576 return (unsignedp ? widest_unsigned_literal_type_node
1577 : widest_integer_literal_type_node);
1578
1579 if (bits <= TYPE_PRECISION (intQI_type_node))
1580 return unsignedp ? unsigned_intQI_type_node : intQI_type_node;
1581
1582 if (bits <= TYPE_PRECISION (intHI_type_node))
1583 return unsignedp ? unsigned_intHI_type_node : intHI_type_node;
1584
1585 if (bits <= TYPE_PRECISION (intSI_type_node))
1586 return unsignedp ? unsigned_intSI_type_node : intSI_type_node;
1587
1588 if (bits <= TYPE_PRECISION (intDI_type_node))
1589 return unsignedp ? unsigned_intDI_type_node : intDI_type_node;
1590
1591 return 0;
1592 }
1593
1594 /* Used for communication between c_common_type_for_mode and
1595 c_register_builtin_type. */
1596 static GTY(()) tree registered_builtin_types;
1597
1598 /* Return a data type that has machine mode MODE.
1599 If the mode is an integer,
1600 then UNSIGNEDP selects between signed and unsigned types. */
1601
1602 tree
1603 c_common_type_for_mode (enum machine_mode mode, int unsignedp)
1604 {
1605 tree t;
1606
1607 if (mode == TYPE_MODE (integer_type_node))
1608 return unsignedp ? unsigned_type_node : integer_type_node;
1609
1610 if (mode == TYPE_MODE (signed_char_type_node))
1611 return unsignedp ? unsigned_char_type_node : signed_char_type_node;
1612
1613 if (mode == TYPE_MODE (short_integer_type_node))
1614 return unsignedp ? short_unsigned_type_node : short_integer_type_node;
1615
1616 if (mode == TYPE_MODE (long_integer_type_node))
1617 return unsignedp ? long_unsigned_type_node : long_integer_type_node;
1618
1619 if (mode == TYPE_MODE (long_long_integer_type_node))
1620 return unsignedp ? long_long_unsigned_type_node : long_long_integer_type_node;
1621
1622 if (mode == TYPE_MODE (widest_integer_literal_type_node))
1623 return unsignedp ? widest_unsigned_literal_type_node
1624 : widest_integer_literal_type_node;
1625
1626 if (mode == QImode)
1627 return unsignedp ? unsigned_intQI_type_node : intQI_type_node;
1628
1629 if (mode == HImode)
1630 return unsignedp ? unsigned_intHI_type_node : intHI_type_node;
1631
1632 if (mode == SImode)
1633 return unsignedp ? unsigned_intSI_type_node : intSI_type_node;
1634
1635 if (mode == DImode)
1636 return unsignedp ? unsigned_intDI_type_node : intDI_type_node;
1637
1638 #if HOST_BITS_PER_WIDE_INT >= 64
1639 if (mode == TYPE_MODE (intTI_type_node))
1640 return unsignedp ? unsigned_intTI_type_node : intTI_type_node;
1641 #endif
1642
1643 if (mode == TYPE_MODE (float_type_node))
1644 return float_type_node;
1645
1646 if (mode == TYPE_MODE (double_type_node))
1647 return double_type_node;
1648
1649 if (mode == TYPE_MODE (long_double_type_node))
1650 return long_double_type_node;
1651
1652 if (mode == TYPE_MODE (void_type_node))
1653 return void_type_node;
1654
1655 if (mode == TYPE_MODE (build_pointer_type (char_type_node)))
1656 return (unsignedp
1657 ? make_unsigned_type (GET_MODE_PRECISION (mode))
1658 : make_signed_type (GET_MODE_PRECISION (mode)));
1659
1660 if (mode == TYPE_MODE (build_pointer_type (integer_type_node)))
1661 return (unsignedp
1662 ? make_unsigned_type (GET_MODE_PRECISION (mode))
1663 : make_signed_type (GET_MODE_PRECISION (mode)));
1664
1665 if (COMPLEX_MODE_P (mode))
1666 {
1667 enum machine_mode inner_mode;
1668 tree inner_type;
1669
1670 if (mode == TYPE_MODE (complex_float_type_node))
1671 return complex_float_type_node;
1672 if (mode == TYPE_MODE (complex_double_type_node))
1673 return complex_double_type_node;
1674 if (mode == TYPE_MODE (complex_long_double_type_node))
1675 return complex_long_double_type_node;
1676
1677 if (mode == TYPE_MODE (complex_integer_type_node) && !unsignedp)
1678 return complex_integer_type_node;
1679
1680 inner_mode = GET_MODE_INNER (mode);
1681 inner_type = c_common_type_for_mode (inner_mode, unsignedp);
1682 if (inner_type != NULL_TREE)
1683 return build_complex_type (inner_type);
1684 }
1685 else if (VECTOR_MODE_P (mode))
1686 {
1687 enum machine_mode inner_mode = GET_MODE_INNER (mode);
1688 tree inner_type = c_common_type_for_mode (inner_mode, unsignedp);
1689 if (inner_type != NULL_TREE)
1690 return build_vector_type_for_mode (inner_type, mode);
1691 }
1692
1693 if (mode == TYPE_MODE (dfloat32_type_node))
1694 return dfloat32_type_node;
1695 if (mode == TYPE_MODE (dfloat64_type_node))
1696 return dfloat64_type_node;
1697 if (mode == TYPE_MODE (dfloat128_type_node))
1698 return dfloat128_type_node;
1699
1700 for (t = registered_builtin_types; t; t = TREE_CHAIN (t))
1701 if (TYPE_MODE (TREE_VALUE (t)) == mode)
1702 return TREE_VALUE (t);
1703
1704 return 0;
1705 }
1706
1707 /* Return an unsigned type the same as TYPE in other respects. */
1708 tree
1709 c_common_unsigned_type (tree type)
1710 {
1711 tree type1 = TYPE_MAIN_VARIANT (type);
1712 if (type1 == signed_char_type_node || type1 == char_type_node)
1713 return unsigned_char_type_node;
1714 if (type1 == integer_type_node)
1715 return unsigned_type_node;
1716 if (type1 == short_integer_type_node)
1717 return short_unsigned_type_node;
1718 if (type1 == long_integer_type_node)
1719 return long_unsigned_type_node;
1720 if (type1 == long_long_integer_type_node)
1721 return long_long_unsigned_type_node;
1722 if (type1 == widest_integer_literal_type_node)
1723 return widest_unsigned_literal_type_node;
1724 #if HOST_BITS_PER_WIDE_INT >= 64
1725 if (type1 == intTI_type_node)
1726 return unsigned_intTI_type_node;
1727 #endif
1728 if (type1 == intDI_type_node)
1729 return unsigned_intDI_type_node;
1730 if (type1 == intSI_type_node)
1731 return unsigned_intSI_type_node;
1732 if (type1 == intHI_type_node)
1733 return unsigned_intHI_type_node;
1734 if (type1 == intQI_type_node)
1735 return unsigned_intQI_type_node;
1736
1737 return c_common_signed_or_unsigned_type (1, type);
1738 }
1739
1740 /* Return a signed type the same as TYPE in other respects. */
1741
1742 tree
1743 c_common_signed_type (tree type)
1744 {
1745 tree type1 = TYPE_MAIN_VARIANT (type);
1746 if (type1 == unsigned_char_type_node || type1 == char_type_node)
1747 return signed_char_type_node;
1748 if (type1 == unsigned_type_node)
1749 return integer_type_node;
1750 if (type1 == short_unsigned_type_node)
1751 return short_integer_type_node;
1752 if (type1 == long_unsigned_type_node)
1753 return long_integer_type_node;
1754 if (type1 == long_long_unsigned_type_node)
1755 return long_long_integer_type_node;
1756 if (type1 == widest_unsigned_literal_type_node)
1757 return widest_integer_literal_type_node;
1758 #if HOST_BITS_PER_WIDE_INT >= 64
1759 if (type1 == unsigned_intTI_type_node)
1760 return intTI_type_node;
1761 #endif
1762 if (type1 == unsigned_intDI_type_node)
1763 return intDI_type_node;
1764 if (type1 == unsigned_intSI_type_node)
1765 return intSI_type_node;
1766 if (type1 == unsigned_intHI_type_node)
1767 return intHI_type_node;
1768 if (type1 == unsigned_intQI_type_node)
1769 return intQI_type_node;
1770
1771 return c_common_signed_or_unsigned_type (0, type);
1772 }
1773
1774 /* Return a type the same as TYPE except unsigned or
1775 signed according to UNSIGNEDP. */
1776
1777 tree
1778 c_common_signed_or_unsigned_type (int unsignedp, tree type)
1779 {
1780 if (!INTEGRAL_TYPE_P (type)
1781 || TYPE_UNSIGNED (type) == unsignedp)
1782 return type;
1783
1784 /* For ENUMERAL_TYPEs in C++, must check the mode of the types, not
1785 the precision; they have precision set to match their range, but
1786 may use a wider mode to match an ABI. If we change modes, we may
1787 wind up with bad conversions. For INTEGER_TYPEs in C, must check
1788 the precision as well, so as to yield correct results for
1789 bit-field types. C++ does not have these separate bit-field
1790 types, and producing a signed or unsigned variant of an
1791 ENUMERAL_TYPE may cause other problems as well. */
1792
1793 #define TYPE_OK(node) \
1794 (TYPE_MODE (type) == TYPE_MODE (node) \
1795 && (c_dialect_cxx () || TYPE_PRECISION (type) == TYPE_PRECISION (node)))
1796 if (TYPE_OK (signed_char_type_node))
1797 return unsignedp ? unsigned_char_type_node : signed_char_type_node;
1798 if (TYPE_OK (integer_type_node))
1799 return unsignedp ? unsigned_type_node : integer_type_node;
1800 if (TYPE_OK (short_integer_type_node))
1801 return unsignedp ? short_unsigned_type_node : short_integer_type_node;
1802 if (TYPE_OK (long_integer_type_node))
1803 return unsignedp ? long_unsigned_type_node : long_integer_type_node;
1804 if (TYPE_OK (long_long_integer_type_node))
1805 return (unsignedp ? long_long_unsigned_type_node
1806 : long_long_integer_type_node);
1807 if (TYPE_OK (widest_integer_literal_type_node))
1808 return (unsignedp ? widest_unsigned_literal_type_node
1809 : widest_integer_literal_type_node);
1810
1811 #if HOST_BITS_PER_WIDE_INT >= 64
1812 if (TYPE_OK (intTI_type_node))
1813 return unsignedp ? unsigned_intTI_type_node : intTI_type_node;
1814 #endif
1815 if (TYPE_OK (intDI_type_node))
1816 return unsignedp ? unsigned_intDI_type_node : intDI_type_node;
1817 if (TYPE_OK (intSI_type_node))
1818 return unsignedp ? unsigned_intSI_type_node : intSI_type_node;
1819 if (TYPE_OK (intHI_type_node))
1820 return unsignedp ? unsigned_intHI_type_node : intHI_type_node;
1821 if (TYPE_OK (intQI_type_node))
1822 return unsignedp ? unsigned_intQI_type_node : intQI_type_node;
1823 #undef TYPE_OK
1824
1825 if (c_dialect_cxx ())
1826 return type;
1827 else
1828 return build_nonstandard_integer_type (TYPE_PRECISION (type), unsignedp);
1829 }
1830
1831 /* The C version of the register_builtin_type langhook. */
1832
1833 void
1834 c_register_builtin_type (tree type, const char* name)
1835 {
1836 tree decl;
1837
1838 decl = build_decl (TYPE_DECL, get_identifier (name), type);
1839 DECL_ARTIFICIAL (decl) = 1;
1840 if (!TYPE_NAME (type))
1841 TYPE_NAME (type) = decl;
1842 pushdecl (decl);
1843
1844 registered_builtin_types = tree_cons (0, type, registered_builtin_types);
1845 }
1846
1847 \f
1848 /* Return the minimum number of bits needed to represent VALUE in a
1849 signed or unsigned type, UNSIGNEDP says which. */
1850
1851 unsigned int
1852 min_precision (tree value, int unsignedp)
1853 {
1854 int log;
1855
1856 /* If the value is negative, compute its negative minus 1. The latter
1857 adjustment is because the absolute value of the largest negative value
1858 is one larger than the largest positive value. This is equivalent to
1859 a bit-wise negation, so use that operation instead. */
1860
1861 if (tree_int_cst_sgn (value) < 0)
1862 value = fold_build1 (BIT_NOT_EXPR, TREE_TYPE (value), value);
1863
1864 /* Return the number of bits needed, taking into account the fact
1865 that we need one more bit for a signed than unsigned type. */
1866
1867 if (integer_zerop (value))
1868 log = 0;
1869 else
1870 log = tree_floor_log2 (value);
1871
1872 return log + 1 + !unsignedp;
1873 }
1874 \f
1875 /* Print an error message for invalid operands to arith operation
1876 CODE. */
1877
1878 void
1879 binary_op_error (enum tree_code code)
1880 {
1881 const char *opname;
1882
1883 switch (code)
1884 {
1885 case PLUS_EXPR:
1886 opname = "+"; break;
1887 case MINUS_EXPR:
1888 opname = "-"; break;
1889 case MULT_EXPR:
1890 opname = "*"; break;
1891 case MAX_EXPR:
1892 opname = "max"; break;
1893 case MIN_EXPR:
1894 opname = "min"; break;
1895 case EQ_EXPR:
1896 opname = "=="; break;
1897 case NE_EXPR:
1898 opname = "!="; break;
1899 case LE_EXPR:
1900 opname = "<="; break;
1901 case GE_EXPR:
1902 opname = ">="; break;
1903 case LT_EXPR:
1904 opname = "<"; break;
1905 case GT_EXPR:
1906 opname = ">"; break;
1907 case LSHIFT_EXPR:
1908 opname = "<<"; break;
1909 case RSHIFT_EXPR:
1910 opname = ">>"; break;
1911 case TRUNC_MOD_EXPR:
1912 case FLOOR_MOD_EXPR:
1913 opname = "%"; break;
1914 case TRUNC_DIV_EXPR:
1915 case FLOOR_DIV_EXPR:
1916 opname = "/"; break;
1917 case BIT_AND_EXPR:
1918 opname = "&"; break;
1919 case BIT_IOR_EXPR:
1920 opname = "|"; break;
1921 case TRUTH_ANDIF_EXPR:
1922 opname = "&&"; break;
1923 case TRUTH_ORIF_EXPR:
1924 opname = "||"; break;
1925 case BIT_XOR_EXPR:
1926 opname = "^"; break;
1927 default:
1928 gcc_unreachable ();
1929 }
1930 error ("invalid operands to binary %s", opname);
1931 }
1932 \f
1933 /* Subroutine of build_binary_op, used for comparison operations.
1934 See if the operands have both been converted from subword integer types
1935 and, if so, perhaps change them both back to their original type.
1936 This function is also responsible for converting the two operands
1937 to the proper common type for comparison.
1938
1939 The arguments of this function are all pointers to local variables
1940 of build_binary_op: OP0_PTR is &OP0, OP1_PTR is &OP1,
1941 RESTYPE_PTR is &RESULT_TYPE and RESCODE_PTR is &RESULTCODE.
1942
1943 If this function returns nonzero, it means that the comparison has
1944 a constant value. What this function returns is an expression for
1945 that value. */
1946
1947 tree
1948 shorten_compare (tree *op0_ptr, tree *op1_ptr, tree *restype_ptr,
1949 enum tree_code *rescode_ptr)
1950 {
1951 tree type;
1952 tree op0 = *op0_ptr;
1953 tree op1 = *op1_ptr;
1954 int unsignedp0, unsignedp1;
1955 int real1, real2;
1956 tree primop0, primop1;
1957 enum tree_code code = *rescode_ptr;
1958
1959 /* Throw away any conversions to wider types
1960 already present in the operands. */
1961
1962 primop0 = get_narrower (op0, &unsignedp0);
1963 primop1 = get_narrower (op1, &unsignedp1);
1964
1965 /* Handle the case that OP0 does not *contain* a conversion
1966 but it *requires* conversion to FINAL_TYPE. */
1967
1968 if (op0 == primop0 && TREE_TYPE (op0) != *restype_ptr)
1969 unsignedp0 = TYPE_UNSIGNED (TREE_TYPE (op0));
1970 if (op1 == primop1 && TREE_TYPE (op1) != *restype_ptr)
1971 unsignedp1 = TYPE_UNSIGNED (TREE_TYPE (op1));
1972
1973 /* If one of the operands must be floated, we cannot optimize. */
1974 real1 = TREE_CODE (TREE_TYPE (primop0)) == REAL_TYPE;
1975 real2 = TREE_CODE (TREE_TYPE (primop1)) == REAL_TYPE;
1976
1977 /* If first arg is constant, swap the args (changing operation
1978 so value is preserved), for canonicalization. Don't do this if
1979 the second arg is 0. */
1980
1981 if (TREE_CONSTANT (primop0)
1982 && !integer_zerop (primop1) && !real_zerop (primop1))
1983 {
1984 tree tem = primop0;
1985 int temi = unsignedp0;
1986 primop0 = primop1;
1987 primop1 = tem;
1988 tem = op0;
1989 op0 = op1;
1990 op1 = tem;
1991 *op0_ptr = op0;
1992 *op1_ptr = op1;
1993 unsignedp0 = unsignedp1;
1994 unsignedp1 = temi;
1995 temi = real1;
1996 real1 = real2;
1997 real2 = temi;
1998
1999 switch (code)
2000 {
2001 case LT_EXPR:
2002 code = GT_EXPR;
2003 break;
2004 case GT_EXPR:
2005 code = LT_EXPR;
2006 break;
2007 case LE_EXPR:
2008 code = GE_EXPR;
2009 break;
2010 case GE_EXPR:
2011 code = LE_EXPR;
2012 break;
2013 default:
2014 break;
2015 }
2016 *rescode_ptr = code;
2017 }
2018
2019 /* If comparing an integer against a constant more bits wide,
2020 maybe we can deduce a value of 1 or 0 independent of the data.
2021 Or else truncate the constant now
2022 rather than extend the variable at run time.
2023
2024 This is only interesting if the constant is the wider arg.
2025 Also, it is not safe if the constant is unsigned and the
2026 variable arg is signed, since in this case the variable
2027 would be sign-extended and then regarded as unsigned.
2028 Our technique fails in this case because the lowest/highest
2029 possible unsigned results don't follow naturally from the
2030 lowest/highest possible values of the variable operand.
2031 For just EQ_EXPR and NE_EXPR there is another technique that
2032 could be used: see if the constant can be faithfully represented
2033 in the other operand's type, by truncating it and reextending it
2034 and see if that preserves the constant's value. */
2035
2036 if (!real1 && !real2
2037 && TREE_CODE (primop1) == INTEGER_CST
2038 && TYPE_PRECISION (TREE_TYPE (primop0)) < TYPE_PRECISION (*restype_ptr))
2039 {
2040 int min_gt, max_gt, min_lt, max_lt;
2041 tree maxval, minval;
2042 /* 1 if comparison is nominally unsigned. */
2043 int unsignedp = TYPE_UNSIGNED (*restype_ptr);
2044 tree val;
2045
2046 type = c_common_signed_or_unsigned_type (unsignedp0,
2047 TREE_TYPE (primop0));
2048
2049 maxval = TYPE_MAX_VALUE (type);
2050 minval = TYPE_MIN_VALUE (type);
2051
2052 if (unsignedp && !unsignedp0)
2053 *restype_ptr = c_common_signed_type (*restype_ptr);
2054
2055 if (TREE_TYPE (primop1) != *restype_ptr)
2056 {
2057 /* Convert primop1 to target type, but do not introduce
2058 additional overflow. We know primop1 is an int_cst. */
2059 tree tmp = build_int_cst_wide (*restype_ptr,
2060 TREE_INT_CST_LOW (primop1),
2061 TREE_INT_CST_HIGH (primop1));
2062
2063 primop1 = force_fit_type (tmp, 0, TREE_OVERFLOW (primop1),
2064 TREE_CONSTANT_OVERFLOW (primop1));
2065 }
2066 if (type != *restype_ptr)
2067 {
2068 minval = convert (*restype_ptr, minval);
2069 maxval = convert (*restype_ptr, maxval);
2070 }
2071
2072 if (unsignedp && unsignedp0)
2073 {
2074 min_gt = INT_CST_LT_UNSIGNED (primop1, minval);
2075 max_gt = INT_CST_LT_UNSIGNED (primop1, maxval);
2076 min_lt = INT_CST_LT_UNSIGNED (minval, primop1);
2077 max_lt = INT_CST_LT_UNSIGNED (maxval, primop1);
2078 }
2079 else
2080 {
2081 min_gt = INT_CST_LT (primop1, minval);
2082 max_gt = INT_CST_LT (primop1, maxval);
2083 min_lt = INT_CST_LT (minval, primop1);
2084 max_lt = INT_CST_LT (maxval, primop1);
2085 }
2086
2087 val = 0;
2088 /* This used to be a switch, but Genix compiler can't handle that. */
2089 if (code == NE_EXPR)
2090 {
2091 if (max_lt || min_gt)
2092 val = truthvalue_true_node;
2093 }
2094 else if (code == EQ_EXPR)
2095 {
2096 if (max_lt || min_gt)
2097 val = truthvalue_false_node;
2098 }
2099 else if (code == LT_EXPR)
2100 {
2101 if (max_lt)
2102 val = truthvalue_true_node;
2103 if (!min_lt)
2104 val = truthvalue_false_node;
2105 }
2106 else if (code == GT_EXPR)
2107 {
2108 if (min_gt)
2109 val = truthvalue_true_node;
2110 if (!max_gt)
2111 val = truthvalue_false_node;
2112 }
2113 else if (code == LE_EXPR)
2114 {
2115 if (!max_gt)
2116 val = truthvalue_true_node;
2117 if (min_gt)
2118 val = truthvalue_false_node;
2119 }
2120 else if (code == GE_EXPR)
2121 {
2122 if (!min_lt)
2123 val = truthvalue_true_node;
2124 if (max_lt)
2125 val = truthvalue_false_node;
2126 }
2127
2128 /* If primop0 was sign-extended and unsigned comparison specd,
2129 we did a signed comparison above using the signed type bounds.
2130 But the comparison we output must be unsigned.
2131
2132 Also, for inequalities, VAL is no good; but if the signed
2133 comparison had *any* fixed result, it follows that the
2134 unsigned comparison just tests the sign in reverse
2135 (positive values are LE, negative ones GE).
2136 So we can generate an unsigned comparison
2137 against an extreme value of the signed type. */
2138
2139 if (unsignedp && !unsignedp0)
2140 {
2141 if (val != 0)
2142 switch (code)
2143 {
2144 case LT_EXPR:
2145 case GE_EXPR:
2146 primop1 = TYPE_MIN_VALUE (type);
2147 val = 0;
2148 break;
2149
2150 case LE_EXPR:
2151 case GT_EXPR:
2152 primop1 = TYPE_MAX_VALUE (type);
2153 val = 0;
2154 break;
2155
2156 default:
2157 break;
2158 }
2159 type = c_common_unsigned_type (type);
2160 }
2161
2162 if (TREE_CODE (primop0) != INTEGER_CST)
2163 {
2164 if (val == truthvalue_false_node)
2165 warning (0, "comparison is always false due to limited range of data type");
2166 if (val == truthvalue_true_node)
2167 warning (0, "comparison is always true due to limited range of data type");
2168 }
2169
2170 if (val != 0)
2171 {
2172 /* Don't forget to evaluate PRIMOP0 if it has side effects. */
2173 if (TREE_SIDE_EFFECTS (primop0))
2174 return build2 (COMPOUND_EXPR, TREE_TYPE (val), primop0, val);
2175 return val;
2176 }
2177
2178 /* Value is not predetermined, but do the comparison
2179 in the type of the operand that is not constant.
2180 TYPE is already properly set. */
2181 }
2182
2183 /* If either arg is decimal float and the other is float, find the
2184 proper common type to use for comparison. */
2185 else if (real1 && real2
2186 && (DECIMAL_FLOAT_MODE_P (TYPE_MODE (TREE_TYPE (primop0)))
2187 || DECIMAL_FLOAT_MODE_P (TYPE_MODE (TREE_TYPE (primop1)))))
2188 type = common_type (TREE_TYPE (primop0), TREE_TYPE (primop1));
2189
2190 else if (real1 && real2
2191 && (TYPE_PRECISION (TREE_TYPE (primop0))
2192 == TYPE_PRECISION (TREE_TYPE (primop1))))
2193 type = TREE_TYPE (primop0);
2194
2195 /* If args' natural types are both narrower than nominal type
2196 and both extend in the same manner, compare them
2197 in the type of the wider arg.
2198 Otherwise must actually extend both to the nominal
2199 common type lest different ways of extending
2200 alter the result.
2201 (eg, (short)-1 == (unsigned short)-1 should be 0.) */
2202
2203 else if (unsignedp0 == unsignedp1 && real1 == real2
2204 && TYPE_PRECISION (TREE_TYPE (primop0)) < TYPE_PRECISION (*restype_ptr)
2205 && TYPE_PRECISION (TREE_TYPE (primop1)) < TYPE_PRECISION (*restype_ptr))
2206 {
2207 type = common_type (TREE_TYPE (primop0), TREE_TYPE (primop1));
2208 type = c_common_signed_or_unsigned_type (unsignedp0
2209 || TYPE_UNSIGNED (*restype_ptr),
2210 type);
2211 /* Make sure shorter operand is extended the right way
2212 to match the longer operand. */
2213 primop0
2214 = convert (c_common_signed_or_unsigned_type (unsignedp0,
2215 TREE_TYPE (primop0)),
2216 primop0);
2217 primop1
2218 = convert (c_common_signed_or_unsigned_type (unsignedp1,
2219 TREE_TYPE (primop1)),
2220 primop1);
2221 }
2222 else
2223 {
2224 /* Here we must do the comparison on the nominal type
2225 using the args exactly as we received them. */
2226 type = *restype_ptr;
2227 primop0 = op0;
2228 primop1 = op1;
2229
2230 if (!real1 && !real2 && integer_zerop (primop1)
2231 && TYPE_UNSIGNED (*restype_ptr))
2232 {
2233 tree value = 0;
2234 switch (code)
2235 {
2236 case GE_EXPR:
2237 /* All unsigned values are >= 0, so we warn if extra warnings
2238 are requested. However, if OP0 is a constant that is
2239 >= 0, the signedness of the comparison isn't an issue,
2240 so suppress the warning. */
2241 if (extra_warnings && !in_system_header
2242 && !(TREE_CODE (primop0) == INTEGER_CST
2243 && !TREE_OVERFLOW (convert (c_common_signed_type (type),
2244 primop0))))
2245 warning (0, "comparison of unsigned expression >= 0 is always true");
2246 value = truthvalue_true_node;
2247 break;
2248
2249 case LT_EXPR:
2250 if (extra_warnings && !in_system_header
2251 && !(TREE_CODE (primop0) == INTEGER_CST
2252 && !TREE_OVERFLOW (convert (c_common_signed_type (type),
2253 primop0))))
2254 warning (0, "comparison of unsigned expression < 0 is always false");
2255 value = truthvalue_false_node;
2256 break;
2257
2258 default:
2259 break;
2260 }
2261
2262 if (value != 0)
2263 {
2264 /* Don't forget to evaluate PRIMOP0 if it has side effects. */
2265 if (TREE_SIDE_EFFECTS (primop0))
2266 return build2 (COMPOUND_EXPR, TREE_TYPE (value),
2267 primop0, value);
2268 return value;
2269 }
2270 }
2271 }
2272
2273 *op0_ptr = convert (type, primop0);
2274 *op1_ptr = convert (type, primop1);
2275
2276 *restype_ptr = truthvalue_type_node;
2277
2278 return 0;
2279 }
2280 \f
2281 /* Return a tree for the sum or difference (RESULTCODE says which)
2282 of pointer PTROP and integer INTOP. */
2283
2284 tree
2285 pointer_int_sum (enum tree_code resultcode, tree ptrop, tree intop)
2286 {
2287 tree size_exp;
2288
2289 /* The result is a pointer of the same type that is being added. */
2290
2291 tree result_type = TREE_TYPE (ptrop);
2292
2293 if (TREE_CODE (TREE_TYPE (result_type)) == VOID_TYPE)
2294 {
2295 if (pedantic || warn_pointer_arith)
2296 pedwarn ("pointer of type %<void *%> used in arithmetic");
2297 size_exp = integer_one_node;
2298 }
2299 else if (TREE_CODE (TREE_TYPE (result_type)) == FUNCTION_TYPE)
2300 {
2301 if (pedantic || warn_pointer_arith)
2302 pedwarn ("pointer to a function used in arithmetic");
2303 size_exp = integer_one_node;
2304 }
2305 else if (TREE_CODE (TREE_TYPE (result_type)) == METHOD_TYPE)
2306 {
2307 if (pedantic || warn_pointer_arith)
2308 pedwarn ("pointer to member function used in arithmetic");
2309 size_exp = integer_one_node;
2310 }
2311 else
2312 size_exp = size_in_bytes (TREE_TYPE (result_type));
2313
2314 /* If what we are about to multiply by the size of the elements
2315 contains a constant term, apply distributive law
2316 and multiply that constant term separately.
2317 This helps produce common subexpressions. */
2318
2319 if ((TREE_CODE (intop) == PLUS_EXPR || TREE_CODE (intop) == MINUS_EXPR)
2320 && !TREE_CONSTANT (intop)
2321 && TREE_CONSTANT (TREE_OPERAND (intop, 1))
2322 && TREE_CONSTANT (size_exp)
2323 /* If the constant comes from pointer subtraction,
2324 skip this optimization--it would cause an error. */
2325 && TREE_CODE (TREE_TYPE (TREE_OPERAND (intop, 0))) == INTEGER_TYPE
2326 /* If the constant is unsigned, and smaller than the pointer size,
2327 then we must skip this optimization. This is because it could cause
2328 an overflow error if the constant is negative but INTOP is not. */
2329 && (!TYPE_UNSIGNED (TREE_TYPE (intop))
2330 || (TYPE_PRECISION (TREE_TYPE (intop))
2331 == TYPE_PRECISION (TREE_TYPE (ptrop)))))
2332 {
2333 enum tree_code subcode = resultcode;
2334 tree int_type = TREE_TYPE (intop);
2335 if (TREE_CODE (intop) == MINUS_EXPR)
2336 subcode = (subcode == PLUS_EXPR ? MINUS_EXPR : PLUS_EXPR);
2337 /* Convert both subexpression types to the type of intop,
2338 because weird cases involving pointer arithmetic
2339 can result in a sum or difference with different type args. */
2340 ptrop = build_binary_op (subcode, ptrop,
2341 convert (int_type, TREE_OPERAND (intop, 1)), 1);
2342 intop = convert (int_type, TREE_OPERAND (intop, 0));
2343 }
2344
2345 /* Convert the integer argument to a type the same size as sizetype
2346 so the multiply won't overflow spuriously. */
2347
2348 if (TYPE_PRECISION (TREE_TYPE (intop)) != TYPE_PRECISION (sizetype)
2349 || TYPE_UNSIGNED (TREE_TYPE (intop)) != TYPE_UNSIGNED (sizetype))
2350 intop = convert (c_common_type_for_size (TYPE_PRECISION (sizetype),
2351 TYPE_UNSIGNED (sizetype)), intop);
2352
2353 /* Replace the integer argument with a suitable product by the object size.
2354 Do this multiplication as signed, then convert to the appropriate
2355 pointer type (actually unsigned integral). */
2356
2357 intop = convert (result_type,
2358 build_binary_op (MULT_EXPR, intop,
2359 convert (TREE_TYPE (intop), size_exp), 1));
2360
2361 /* Create the sum or difference. */
2362 return fold_build2 (resultcode, result_type, ptrop, intop);
2363 }
2364 \f
2365 /* Prepare expr to be an argument of a TRUTH_NOT_EXPR,
2366 or for an `if' or `while' statement or ?..: exp. It should already
2367 have been validated to be of suitable type; otherwise, a bad
2368 diagnostic may result.
2369
2370 This preparation consists of taking the ordinary
2371 representation of an expression expr and producing a valid tree
2372 boolean expression describing whether expr is nonzero. We could
2373 simply always do build_binary_op (NE_EXPR, expr, truthvalue_false_node, 1),
2374 but we optimize comparisons, &&, ||, and !.
2375
2376 The resulting type should always be `truthvalue_type_node'. */
2377
2378 tree
2379 c_common_truthvalue_conversion (tree expr)
2380 {
2381 switch (TREE_CODE (expr))
2382 {
2383 case EQ_EXPR: case NE_EXPR: case UNEQ_EXPR: case LTGT_EXPR:
2384 case LE_EXPR: case GE_EXPR: case LT_EXPR: case GT_EXPR:
2385 case UNLE_EXPR: case UNGE_EXPR: case UNLT_EXPR: case UNGT_EXPR:
2386 case ORDERED_EXPR: case UNORDERED_EXPR:
2387 if (TREE_TYPE (expr) == truthvalue_type_node)
2388 return expr;
2389 return build2 (TREE_CODE (expr), truthvalue_type_node,
2390 TREE_OPERAND (expr, 0), TREE_OPERAND (expr, 1));
2391
2392 case TRUTH_ANDIF_EXPR:
2393 case TRUTH_ORIF_EXPR:
2394 case TRUTH_AND_EXPR:
2395 case TRUTH_OR_EXPR:
2396 case TRUTH_XOR_EXPR:
2397 if (TREE_TYPE (expr) == truthvalue_type_node)
2398 return expr;
2399 return build2 (TREE_CODE (expr), truthvalue_type_node,
2400 c_common_truthvalue_conversion (TREE_OPERAND (expr, 0)),
2401 c_common_truthvalue_conversion (TREE_OPERAND (expr, 1)));
2402
2403 case TRUTH_NOT_EXPR:
2404 if (TREE_TYPE (expr) == truthvalue_type_node)
2405 return expr;
2406 return build1 (TREE_CODE (expr), truthvalue_type_node,
2407 c_common_truthvalue_conversion (TREE_OPERAND (expr, 0)));
2408
2409 case ERROR_MARK:
2410 return expr;
2411
2412 case INTEGER_CST:
2413 /* Avoid integer_zerop to ignore TREE_CONSTANT_OVERFLOW. */
2414 return (TREE_INT_CST_LOW (expr) != 0 || TREE_INT_CST_HIGH (expr) != 0)
2415 ? truthvalue_true_node
2416 : truthvalue_false_node;
2417
2418 case REAL_CST:
2419 return real_compare (NE_EXPR, &TREE_REAL_CST (expr), &dconst0)
2420 ? truthvalue_true_node
2421 : truthvalue_false_node;
2422
2423 case FUNCTION_DECL:
2424 expr = build_unary_op (ADDR_EXPR, expr, 0);
2425 /* Fall through. */
2426
2427 case ADDR_EXPR:
2428 {
2429 if (DECL_P (TREE_OPERAND (expr, 0))
2430 && !DECL_WEAK (TREE_OPERAND (expr, 0)))
2431 {
2432 /* Common Ada/Pascal programmer's mistake. We always warn
2433 about this since it is so bad. */
2434 warning (OPT_Walways_true, "the address of %qD, will always evaluate as %<true%>",
2435 TREE_OPERAND (expr, 0));
2436 return truthvalue_true_node;
2437 }
2438
2439 /* If we are taking the address of an external decl, it might be
2440 zero if it is weak, so we cannot optimize. */
2441 if (DECL_P (TREE_OPERAND (expr, 0))
2442 && DECL_EXTERNAL (TREE_OPERAND (expr, 0)))
2443 break;
2444
2445 if (TREE_SIDE_EFFECTS (TREE_OPERAND (expr, 0)))
2446 return build2 (COMPOUND_EXPR, truthvalue_type_node,
2447 TREE_OPERAND (expr, 0), truthvalue_true_node);
2448 else
2449 return truthvalue_true_node;
2450 }
2451
2452 case COMPLEX_EXPR:
2453 return build_binary_op ((TREE_SIDE_EFFECTS (TREE_OPERAND (expr, 1))
2454 ? TRUTH_OR_EXPR : TRUTH_ORIF_EXPR),
2455 c_common_truthvalue_conversion (TREE_OPERAND (expr, 0)),
2456 c_common_truthvalue_conversion (TREE_OPERAND (expr, 1)),
2457 0);
2458
2459 case NEGATE_EXPR:
2460 case ABS_EXPR:
2461 case FLOAT_EXPR:
2462 /* These don't change whether an object is nonzero or zero. */
2463 return c_common_truthvalue_conversion (TREE_OPERAND (expr, 0));
2464
2465 case LROTATE_EXPR:
2466 case RROTATE_EXPR:
2467 /* These don't change whether an object is zero or nonzero, but
2468 we can't ignore them if their second arg has side-effects. */
2469 if (TREE_SIDE_EFFECTS (TREE_OPERAND (expr, 1)))
2470 return build2 (COMPOUND_EXPR, truthvalue_type_node,
2471 TREE_OPERAND (expr, 1),
2472 c_common_truthvalue_conversion (TREE_OPERAND (expr, 0)));
2473 else
2474 return c_common_truthvalue_conversion (TREE_OPERAND (expr, 0));
2475
2476 case COND_EXPR:
2477 /* Distribute the conversion into the arms of a COND_EXPR. */
2478 return fold_build3 (COND_EXPR, truthvalue_type_node,
2479 TREE_OPERAND (expr, 0),
2480 c_common_truthvalue_conversion (TREE_OPERAND (expr, 1)),
2481 c_common_truthvalue_conversion (TREE_OPERAND (expr, 2)));
2482
2483 case CONVERT_EXPR:
2484 case NOP_EXPR:
2485 /* Don't cancel the effect of a CONVERT_EXPR from a REFERENCE_TYPE,
2486 since that affects how `default_conversion' will behave. */
2487 if (TREE_CODE (TREE_TYPE (expr)) == REFERENCE_TYPE
2488 || TREE_CODE (TREE_TYPE (TREE_OPERAND (expr, 0))) == REFERENCE_TYPE)
2489 break;
2490 /* If this is widening the argument, we can ignore it. */
2491 if (TYPE_PRECISION (TREE_TYPE (expr))
2492 >= TYPE_PRECISION (TREE_TYPE (TREE_OPERAND (expr, 0))))
2493 return c_common_truthvalue_conversion (TREE_OPERAND (expr, 0));
2494 break;
2495
2496 case MINUS_EXPR:
2497 /* Perhaps reduce (x - y) != 0 to (x != y). The expressions
2498 aren't guaranteed to the be same for modes that can represent
2499 infinity, since if x and y are both +infinity, or both
2500 -infinity, then x - y is not a number.
2501
2502 Note that this transformation is safe when x or y is NaN.
2503 (x - y) is then NaN, and both (x - y) != 0 and x != y will
2504 be false. */
2505 if (HONOR_INFINITIES (TYPE_MODE (TREE_TYPE (TREE_OPERAND (expr, 0)))))
2506 break;
2507 /* Fall through.... */
2508 case BIT_XOR_EXPR:
2509 /* This and MINUS_EXPR can be changed into a comparison of the
2510 two objects. */
2511 if (TREE_TYPE (TREE_OPERAND (expr, 0))
2512 == TREE_TYPE (TREE_OPERAND (expr, 1)))
2513 return fold_build2 (NE_EXPR, truthvalue_type_node,
2514 TREE_OPERAND (expr, 0), TREE_OPERAND (expr, 1));
2515 return fold_build2 (NE_EXPR, truthvalue_type_node,
2516 TREE_OPERAND (expr, 0),
2517 fold_convert (TREE_TYPE (TREE_OPERAND (expr, 0)),
2518 TREE_OPERAND (expr, 1)));
2519
2520 case BIT_AND_EXPR:
2521 if (integer_onep (TREE_OPERAND (expr, 1))
2522 && TREE_TYPE (expr) != truthvalue_type_node)
2523 /* Using convert here would cause infinite recursion. */
2524 return build1 (NOP_EXPR, truthvalue_type_node, expr);
2525 break;
2526
2527 case MODIFY_EXPR:
2528 if (!TREE_NO_WARNING (expr))
2529 warning (OPT_Wparentheses,
2530 "suggest parentheses around assignment used as truth value");
2531 break;
2532
2533 default:
2534 break;
2535 }
2536
2537 if (TREE_CODE (TREE_TYPE (expr)) == COMPLEX_TYPE)
2538 {
2539 tree t = save_expr (expr);
2540 return (build_binary_op
2541 ((TREE_SIDE_EFFECTS (expr)
2542 ? TRUTH_OR_EXPR : TRUTH_ORIF_EXPR),
2543 c_common_truthvalue_conversion (build_unary_op (REALPART_EXPR, t, 0)),
2544 c_common_truthvalue_conversion (build_unary_op (IMAGPART_EXPR, t, 0)),
2545 0));
2546 }
2547
2548 return build_binary_op (NE_EXPR, expr, integer_zero_node, 1);
2549 }
2550 \f
2551 static void def_builtin_1 (enum built_in_function fncode,
2552 const char *name,
2553 enum built_in_class fnclass,
2554 tree fntype, tree libtype,
2555 bool both_p, bool fallback_p, bool nonansi_p,
2556 tree fnattrs, bool implicit_p);
2557
2558 /* Make a variant type in the proper way for C/C++, propagating qualifiers
2559 down to the element type of an array. */
2560
2561 tree
2562 c_build_qualified_type (tree type, int type_quals)
2563 {
2564 if (type == error_mark_node)
2565 return type;
2566
2567 if (TREE_CODE (type) == ARRAY_TYPE)
2568 {
2569 tree t;
2570 tree element_type = c_build_qualified_type (TREE_TYPE (type),
2571 type_quals);
2572
2573 /* See if we already have an identically qualified type. */
2574 for (t = TYPE_MAIN_VARIANT (type); t; t = TYPE_NEXT_VARIANT (t))
2575 {
2576 if (TYPE_QUALS (strip_array_types (t)) == type_quals
2577 && TYPE_NAME (t) == TYPE_NAME (type)
2578 && TYPE_CONTEXT (t) == TYPE_CONTEXT (type)
2579 && attribute_list_equal (TYPE_ATTRIBUTES (t),
2580 TYPE_ATTRIBUTES (type)))
2581 break;
2582 }
2583 if (!t)
2584 {
2585 t = build_variant_type_copy (type);
2586 TREE_TYPE (t) = element_type;
2587 }
2588 return t;
2589 }
2590
2591 /* A restrict-qualified pointer type must be a pointer to object or
2592 incomplete type. Note that the use of POINTER_TYPE_P also allows
2593 REFERENCE_TYPEs, which is appropriate for C++. */
2594 if ((type_quals & TYPE_QUAL_RESTRICT)
2595 && (!POINTER_TYPE_P (type)
2596 || !C_TYPE_OBJECT_OR_INCOMPLETE_P (TREE_TYPE (type))))
2597 {
2598 error ("invalid use of %<restrict%>");
2599 type_quals &= ~TYPE_QUAL_RESTRICT;
2600 }
2601
2602 return build_qualified_type (type, type_quals);
2603 }
2604
2605 /* Apply the TYPE_QUALS to the new DECL. */
2606
2607 void
2608 c_apply_type_quals_to_decl (int type_quals, tree decl)
2609 {
2610 tree type = TREE_TYPE (decl);
2611
2612 if (type == error_mark_node)
2613 return;
2614
2615 if (((type_quals & TYPE_QUAL_CONST)
2616 || (type && TREE_CODE (type) == REFERENCE_TYPE))
2617 /* An object declared 'const' is only readonly after it is
2618 initialized. We don't have any way of expressing this currently,
2619 so we need to be conservative and unset TREE_READONLY for types
2620 with constructors. Otherwise aliasing code will ignore stores in
2621 an inline constructor. */
2622 && !(type && TYPE_NEEDS_CONSTRUCTING (type)))
2623 TREE_READONLY (decl) = 1;
2624 if (type_quals & TYPE_QUAL_VOLATILE)
2625 {
2626 TREE_SIDE_EFFECTS (decl) = 1;
2627 TREE_THIS_VOLATILE (decl) = 1;
2628 }
2629 if (type_quals & TYPE_QUAL_RESTRICT)
2630 {
2631 while (type && TREE_CODE (type) == ARRAY_TYPE)
2632 /* Allow 'restrict' on arrays of pointers.
2633 FIXME currently we just ignore it. */
2634 type = TREE_TYPE (type);
2635 if (!type
2636 || !POINTER_TYPE_P (type)
2637 || !C_TYPE_OBJECT_OR_INCOMPLETE_P (TREE_TYPE (type)))
2638 error ("invalid use of %<restrict%>");
2639 else if (flag_strict_aliasing && type == TREE_TYPE (decl))
2640 /* Indicate we need to make a unique alias set for this pointer.
2641 We can't do it here because it might be pointing to an
2642 incomplete type. */
2643 DECL_POINTER_ALIAS_SET (decl) = -2;
2644 }
2645 }
2646
2647 /* Hash function for the problem of multiple type definitions in
2648 different files. This must hash all types that will compare
2649 equal via comptypes to the same value. In practice it hashes
2650 on some of the simple stuff and leaves the details to comptypes. */
2651
2652 static hashval_t
2653 c_type_hash (const void *p)
2654 {
2655 int i = 0;
2656 int shift, size;
2657 tree t = (tree) p;
2658 tree t2;
2659 switch (TREE_CODE (t))
2660 {
2661 /* For pointers, hash on pointee type plus some swizzling. */
2662 case POINTER_TYPE:
2663 return c_type_hash (TREE_TYPE (t)) ^ 0x3003003;
2664 /* Hash on number of elements and total size. */
2665 case ENUMERAL_TYPE:
2666 shift = 3;
2667 t2 = TYPE_VALUES (t);
2668 break;
2669 case RECORD_TYPE:
2670 shift = 0;
2671 t2 = TYPE_FIELDS (t);
2672 break;
2673 case QUAL_UNION_TYPE:
2674 shift = 1;
2675 t2 = TYPE_FIELDS (t);
2676 break;
2677 case UNION_TYPE:
2678 shift = 2;
2679 t2 = TYPE_FIELDS (t);
2680 break;
2681 default:
2682 gcc_unreachable ();
2683 }
2684 for (; t2; t2 = TREE_CHAIN (t2))
2685 i++;
2686 size = TREE_INT_CST_LOW (TYPE_SIZE (t));
2687 return ((size << 24) | (i << shift));
2688 }
2689
2690 static GTY((param_is (union tree_node))) htab_t type_hash_table;
2691
2692 /* Return the typed-based alias set for T, which may be an expression
2693 or a type. Return -1 if we don't do anything special. */
2694
2695 HOST_WIDE_INT
2696 c_common_get_alias_set (tree t)
2697 {
2698 tree u;
2699 PTR *slot;
2700
2701 /* Permit type-punning when accessing a union, provided the access
2702 is directly through the union. For example, this code does not
2703 permit taking the address of a union member and then storing
2704 through it. Even the type-punning allowed here is a GCC
2705 extension, albeit a common and useful one; the C standard says
2706 that such accesses have implementation-defined behavior. */
2707 for (u = t;
2708 TREE_CODE (u) == COMPONENT_REF || TREE_CODE (u) == ARRAY_REF;
2709 u = TREE_OPERAND (u, 0))
2710 if (TREE_CODE (u) == COMPONENT_REF
2711 && TREE_CODE (TREE_TYPE (TREE_OPERAND (u, 0))) == UNION_TYPE)
2712 return 0;
2713
2714 /* That's all the expressions we handle specially. */
2715 if (!TYPE_P (t))
2716 return -1;
2717
2718 /* The C standard guarantees that any object may be accessed via an
2719 lvalue that has character type. */
2720 if (t == char_type_node
2721 || t == signed_char_type_node
2722 || t == unsigned_char_type_node)
2723 return 0;
2724
2725 /* If it has the may_alias attribute, it can alias anything. */
2726 if (lookup_attribute ("may_alias", TYPE_ATTRIBUTES (t)))
2727 return 0;
2728
2729 /* The C standard specifically allows aliasing between signed and
2730 unsigned variants of the same type. We treat the signed
2731 variant as canonical. */
2732 if (TREE_CODE (t) == INTEGER_TYPE && TYPE_UNSIGNED (t))
2733 {
2734 tree t1 = c_common_signed_type (t);
2735
2736 /* t1 == t can happen for boolean nodes which are always unsigned. */
2737 if (t1 != t)
2738 return get_alias_set (t1);
2739 }
2740 else if (POINTER_TYPE_P (t))
2741 {
2742 tree t1;
2743
2744 /* Unfortunately, there is no canonical form of a pointer type.
2745 In particular, if we have `typedef int I', then `int *', and
2746 `I *' are different types. So, we have to pick a canonical
2747 representative. We do this below.
2748
2749 Technically, this approach is actually more conservative that
2750 it needs to be. In particular, `const int *' and `int *'
2751 should be in different alias sets, according to the C and C++
2752 standard, since their types are not the same, and so,
2753 technically, an `int **' and `const int **' cannot point at
2754 the same thing.
2755
2756 But, the standard is wrong. In particular, this code is
2757 legal C++:
2758
2759 int *ip;
2760 int **ipp = &ip;
2761 const int* const* cipp = ipp;
2762
2763 And, it doesn't make sense for that to be legal unless you
2764 can dereference IPP and CIPP. So, we ignore cv-qualifiers on
2765 the pointed-to types. This issue has been reported to the
2766 C++ committee. */
2767 t1 = build_type_no_quals (t);
2768 if (t1 != t)
2769 return get_alias_set (t1);
2770 }
2771
2772 /* Handle the case of multiple type nodes referring to "the same" type,
2773 which occurs with IMA. These share an alias set. FIXME: Currently only
2774 C90 is handled. (In C99 type compatibility is not transitive, which
2775 complicates things mightily. The alias set splay trees can theoretically
2776 represent this, but insertion is tricky when you consider all the
2777 different orders things might arrive in.) */
2778
2779 if (c_language != clk_c || flag_isoc99)
2780 return -1;
2781
2782 /* Save time if there's only one input file. */
2783 if (num_in_fnames == 1)
2784 return -1;
2785
2786 /* Pointers need special handling if they point to any type that
2787 needs special handling (below). */
2788 if (TREE_CODE (t) == POINTER_TYPE)
2789 {
2790 tree t2;
2791 /* Find bottom type under any nested POINTERs. */
2792 for (t2 = TREE_TYPE (t);
2793 TREE_CODE (t2) == POINTER_TYPE;
2794 t2 = TREE_TYPE (t2))
2795 ;
2796 if (TREE_CODE (t2) != RECORD_TYPE
2797 && TREE_CODE (t2) != ENUMERAL_TYPE
2798 && TREE_CODE (t2) != QUAL_UNION_TYPE
2799 && TREE_CODE (t2) != UNION_TYPE)
2800 return -1;
2801 if (TYPE_SIZE (t2) == 0)
2802 return -1;
2803 }
2804 /* These are the only cases that need special handling. */
2805 if (TREE_CODE (t) != RECORD_TYPE
2806 && TREE_CODE (t) != ENUMERAL_TYPE
2807 && TREE_CODE (t) != QUAL_UNION_TYPE
2808 && TREE_CODE (t) != UNION_TYPE
2809 && TREE_CODE (t) != POINTER_TYPE)
2810 return -1;
2811 /* Undefined? */
2812 if (TYPE_SIZE (t) == 0)
2813 return -1;
2814
2815 /* Look up t in hash table. Only one of the compatible types within each
2816 alias set is recorded in the table. */
2817 if (!type_hash_table)
2818 type_hash_table = htab_create_ggc (1021, c_type_hash,
2819 (htab_eq) lang_hooks.types_compatible_p,
2820 NULL);
2821 slot = htab_find_slot (type_hash_table, t, INSERT);
2822 if (*slot != NULL)
2823 {
2824 TYPE_ALIAS_SET (t) = TYPE_ALIAS_SET ((tree)*slot);
2825 return TYPE_ALIAS_SET ((tree)*slot);
2826 }
2827 else
2828 /* Our caller will assign and record (in t) a new alias set; all we need
2829 to do is remember t in the hash table. */
2830 *slot = t;
2831
2832 return -1;
2833 }
2834 \f
2835 /* Compute the value of 'sizeof (TYPE)' or '__alignof__ (TYPE)', where the
2836 second parameter indicates which OPERATOR is being applied. The COMPLAIN
2837 flag controls whether we should diagnose possibly ill-formed
2838 constructs or not. */
2839
2840 tree
2841 c_sizeof_or_alignof_type (tree type, bool is_sizeof, int complain)
2842 {
2843 const char *op_name;
2844 tree value = NULL;
2845 enum tree_code type_code = TREE_CODE (type);
2846
2847 op_name = is_sizeof ? "sizeof" : "__alignof__";
2848
2849 if (type_code == FUNCTION_TYPE)
2850 {
2851 if (is_sizeof)
2852 {
2853 if (complain && (pedantic || warn_pointer_arith))
2854 pedwarn ("invalid application of %<sizeof%> to a function type");
2855 value = size_one_node;
2856 }
2857 else
2858 value = size_int (FUNCTION_BOUNDARY / BITS_PER_UNIT);
2859 }
2860 else if (type_code == VOID_TYPE || type_code == ERROR_MARK)
2861 {
2862 if (type_code == VOID_TYPE
2863 && complain && (pedantic || warn_pointer_arith))
2864 pedwarn ("invalid application of %qs to a void type", op_name);
2865 value = size_one_node;
2866 }
2867 else if (!COMPLETE_TYPE_P (type))
2868 {
2869 if (complain)
2870 error ("invalid application of %qs to incomplete type %qT ",
2871 op_name, type);
2872 value = size_zero_node;
2873 }
2874 else
2875 {
2876 if (is_sizeof)
2877 /* Convert in case a char is more than one unit. */
2878 value = size_binop (CEIL_DIV_EXPR, TYPE_SIZE_UNIT (type),
2879 size_int (TYPE_PRECISION (char_type_node)
2880 / BITS_PER_UNIT));
2881 else
2882 value = size_int (TYPE_ALIGN_UNIT (type));
2883 }
2884
2885 /* VALUE will have an integer type with TYPE_IS_SIZETYPE set.
2886 TYPE_IS_SIZETYPE means that certain things (like overflow) will
2887 never happen. However, this node should really have type
2888 `size_t', which is just a typedef for an ordinary integer type. */
2889 value = fold_convert (size_type_node, value);
2890 gcc_assert (!TYPE_IS_SIZETYPE (TREE_TYPE (value)));
2891
2892 return value;
2893 }
2894
2895 /* Implement the __alignof keyword: Return the minimum required
2896 alignment of EXPR, measured in bytes. For VAR_DECL's and
2897 FIELD_DECL's return DECL_ALIGN (which can be set from an
2898 "aligned" __attribute__ specification). */
2899
2900 tree
2901 c_alignof_expr (tree expr)
2902 {
2903 tree t;
2904
2905 if (TREE_CODE (expr) == VAR_DECL)
2906 t = size_int (DECL_ALIGN_UNIT (expr));
2907
2908 else if (TREE_CODE (expr) == COMPONENT_REF
2909 && DECL_C_BIT_FIELD (TREE_OPERAND (expr, 1)))
2910 {
2911 error ("%<__alignof%> applied to a bit-field");
2912 t = size_one_node;
2913 }
2914 else if (TREE_CODE (expr) == COMPONENT_REF
2915 && TREE_CODE (TREE_OPERAND (expr, 1)) == FIELD_DECL)
2916 t = size_int (DECL_ALIGN_UNIT (TREE_OPERAND (expr, 1)));
2917
2918 else if (TREE_CODE (expr) == INDIRECT_REF)
2919 {
2920 tree t = TREE_OPERAND (expr, 0);
2921 tree best = t;
2922 int bestalign = TYPE_ALIGN (TREE_TYPE (TREE_TYPE (t)));
2923
2924 while ((TREE_CODE (t) == NOP_EXPR || TREE_CODE (t) == CONVERT_EXPR)
2925 && TREE_CODE (TREE_TYPE (TREE_OPERAND (t, 0))) == POINTER_TYPE)
2926 {
2927 int thisalign;
2928
2929 t = TREE_OPERAND (t, 0);
2930 thisalign = TYPE_ALIGN (TREE_TYPE (TREE_TYPE (t)));
2931 if (thisalign > bestalign)
2932 best = t, bestalign = thisalign;
2933 }
2934 return c_alignof (TREE_TYPE (TREE_TYPE (best)));
2935 }
2936 else
2937 return c_alignof (TREE_TYPE (expr));
2938
2939 return fold_convert (size_type_node, t);
2940 }
2941 \f
2942 /* Handle C and C++ default attributes. */
2943
2944 enum built_in_attribute
2945 {
2946 #define DEF_ATTR_NULL_TREE(ENUM) ENUM,
2947 #define DEF_ATTR_INT(ENUM, VALUE) ENUM,
2948 #define DEF_ATTR_IDENT(ENUM, STRING) ENUM,
2949 #define DEF_ATTR_TREE_LIST(ENUM, PURPOSE, VALUE, CHAIN) ENUM,
2950 #include "builtin-attrs.def"
2951 #undef DEF_ATTR_NULL_TREE
2952 #undef DEF_ATTR_INT
2953 #undef DEF_ATTR_IDENT
2954 #undef DEF_ATTR_TREE_LIST
2955 ATTR_LAST
2956 };
2957
2958 static GTY(()) tree built_in_attributes[(int) ATTR_LAST];
2959
2960 static void c_init_attributes (void);
2961
2962 enum c_builtin_type
2963 {
2964 #define DEF_PRIMITIVE_TYPE(NAME, VALUE) NAME,
2965 #define DEF_FUNCTION_TYPE_0(NAME, RETURN) NAME,
2966 #define DEF_FUNCTION_TYPE_1(NAME, RETURN, ARG1) NAME,
2967 #define DEF_FUNCTION_TYPE_2(NAME, RETURN, ARG1, ARG2) NAME,
2968 #define DEF_FUNCTION_TYPE_3(NAME, RETURN, ARG1, ARG2, ARG3) NAME,
2969 #define DEF_FUNCTION_TYPE_4(NAME, RETURN, ARG1, ARG2, ARG3, ARG4) NAME,
2970 #define DEF_FUNCTION_TYPE_5(NAME, RETURN, ARG1, ARG2, ARG3, ARG4, ARG5) NAME,
2971 #define DEF_FUNCTION_TYPE_6(NAME, RETURN, ARG1, ARG2, ARG3, ARG4, ARG5, ARG6) NAME,
2972 #define DEF_FUNCTION_TYPE_7(NAME, RETURN, ARG1, ARG2, ARG3, ARG4, ARG5, ARG6, ARG7) NAME,
2973 #define DEF_FUNCTION_TYPE_VAR_0(NAME, RETURN) NAME,
2974 #define DEF_FUNCTION_TYPE_VAR_1(NAME, RETURN, ARG1) NAME,
2975 #define DEF_FUNCTION_TYPE_VAR_2(NAME, RETURN, ARG1, ARG2) NAME,
2976 #define DEF_FUNCTION_TYPE_VAR_3(NAME, RETURN, ARG1, ARG2, ARG3) NAME,
2977 #define DEF_FUNCTION_TYPE_VAR_4(NAME, RETURN, ARG1, ARG2, ARG3, ARG4) NAME,
2978 #define DEF_FUNCTION_TYPE_VAR_5(NAME, RETURN, ARG1, ARG2, ARG3, ARG4, ARG6) \
2979 NAME,
2980 #define DEF_POINTER_TYPE(NAME, TYPE) NAME,
2981 #include "builtin-types.def"
2982 #undef DEF_PRIMITIVE_TYPE
2983 #undef DEF_FUNCTION_TYPE_0
2984 #undef DEF_FUNCTION_TYPE_1
2985 #undef DEF_FUNCTION_TYPE_2
2986 #undef DEF_FUNCTION_TYPE_3
2987 #undef DEF_FUNCTION_TYPE_4
2988 #undef DEF_FUNCTION_TYPE_5
2989 #undef DEF_FUNCTION_TYPE_6
2990 #undef DEF_FUNCTION_TYPE_7
2991 #undef DEF_FUNCTION_TYPE_VAR_0
2992 #undef DEF_FUNCTION_TYPE_VAR_1
2993 #undef DEF_FUNCTION_TYPE_VAR_2
2994 #undef DEF_FUNCTION_TYPE_VAR_3
2995 #undef DEF_FUNCTION_TYPE_VAR_4
2996 #undef DEF_FUNCTION_TYPE_VAR_5
2997 #undef DEF_POINTER_TYPE
2998 BT_LAST
2999 };
3000
3001 typedef enum c_builtin_type builtin_type;
3002
3003 /* A temporary array for c_common_nodes_and_builtins. Used in
3004 communication with def_fn_type. */
3005 static tree builtin_types[(int) BT_LAST + 1];
3006
3007 /* A helper function for c_common_nodes_and_builtins. Build function type
3008 for DEF with return type RET and N arguments. If VAR is true, then the
3009 function should be variadic after those N arguments.
3010
3011 Takes special care not to ICE if any of the types involved are
3012 error_mark_node, which indicates that said type is not in fact available
3013 (see builtin_type_for_size). In which case the function type as a whole
3014 should be error_mark_node. */
3015
3016 static void
3017 def_fn_type (builtin_type def, builtin_type ret, bool var, int n, ...)
3018 {
3019 tree args = NULL, t;
3020 va_list list;
3021 int i;
3022
3023 va_start (list, n);
3024 for (i = 0; i < n; ++i)
3025 {
3026 builtin_type a = va_arg (list, builtin_type);
3027 t = builtin_types[a];
3028 if (t == error_mark_node)
3029 goto egress;
3030 args = tree_cons (NULL_TREE, t, args);
3031 }
3032 va_end (list);
3033
3034 args = nreverse (args);
3035 if (!var)
3036 args = chainon (args, void_list_node);
3037
3038 t = builtin_types[ret];
3039 if (t == error_mark_node)
3040 goto egress;
3041 t = build_function_type (t, args);
3042
3043 egress:
3044 builtin_types[def] = t;
3045 }
3046
3047 /* Build tree nodes and builtin functions common to both C and C++ language
3048 frontends. */
3049
3050 void
3051 c_common_nodes_and_builtins (void)
3052 {
3053 int wchar_type_size;
3054 tree array_domain_type;
3055 tree va_list_ref_type_node;
3056 tree va_list_arg_type_node;
3057
3058 /* Define `int' and `char' first so that dbx will output them first. */
3059 record_builtin_type (RID_INT, NULL, integer_type_node);
3060 record_builtin_type (RID_CHAR, "char", char_type_node);
3061
3062 /* `signed' is the same as `int'. FIXME: the declarations of "signed",
3063 "unsigned long", "long long unsigned" and "unsigned short" were in C++
3064 but not C. Are the conditionals here needed? */
3065 if (c_dialect_cxx ())
3066 record_builtin_type (RID_SIGNED, NULL, integer_type_node);
3067 record_builtin_type (RID_LONG, "long int", long_integer_type_node);
3068 record_builtin_type (RID_UNSIGNED, "unsigned int", unsigned_type_node);
3069 record_builtin_type (RID_MAX, "long unsigned int",
3070 long_unsigned_type_node);
3071 if (c_dialect_cxx ())
3072 record_builtin_type (RID_MAX, "unsigned long", long_unsigned_type_node);
3073 record_builtin_type (RID_MAX, "long long int",
3074 long_long_integer_type_node);
3075 record_builtin_type (RID_MAX, "long long unsigned int",
3076 long_long_unsigned_type_node);
3077 if (c_dialect_cxx ())
3078 record_builtin_type (RID_MAX, "long long unsigned",
3079 long_long_unsigned_type_node);
3080 record_builtin_type (RID_SHORT, "short int", short_integer_type_node);
3081 record_builtin_type (RID_MAX, "short unsigned int",
3082 short_unsigned_type_node);
3083 if (c_dialect_cxx ())
3084 record_builtin_type (RID_MAX, "unsigned short",
3085 short_unsigned_type_node);
3086
3087 /* Define both `signed char' and `unsigned char'. */
3088 record_builtin_type (RID_MAX, "signed char", signed_char_type_node);
3089 record_builtin_type (RID_MAX, "unsigned char", unsigned_char_type_node);
3090
3091 /* These are types that c_common_type_for_size and
3092 c_common_type_for_mode use. */
3093 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3094 intQI_type_node));
3095 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3096 intHI_type_node));
3097 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3098 intSI_type_node));
3099 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3100 intDI_type_node));
3101 #if HOST_BITS_PER_WIDE_INT >= 64
3102 if (targetm.scalar_mode_supported_p (TImode))
3103 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL,
3104 get_identifier ("__int128_t"),
3105 intTI_type_node));
3106 #endif
3107 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3108 unsigned_intQI_type_node));
3109 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3110 unsigned_intHI_type_node));
3111 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3112 unsigned_intSI_type_node));
3113 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3114 unsigned_intDI_type_node));
3115 #if HOST_BITS_PER_WIDE_INT >= 64
3116 if (targetm.scalar_mode_supported_p (TImode))
3117 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL,
3118 get_identifier ("__uint128_t"),
3119 unsigned_intTI_type_node));
3120 #endif
3121
3122 /* Create the widest literal types. */
3123 widest_integer_literal_type_node
3124 = make_signed_type (HOST_BITS_PER_WIDE_INT * 2);
3125 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3126 widest_integer_literal_type_node));
3127
3128 widest_unsigned_literal_type_node
3129 = make_unsigned_type (HOST_BITS_PER_WIDE_INT * 2);
3130 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL, NULL_TREE,
3131 widest_unsigned_literal_type_node));
3132
3133 /* `unsigned long' is the standard type for sizeof.
3134 Note that stddef.h uses `unsigned long',
3135 and this must agree, even if long and int are the same size. */
3136 size_type_node =
3137 TREE_TYPE (identifier_global_value (get_identifier (SIZE_TYPE)));
3138 signed_size_type_node = c_common_signed_type (size_type_node);
3139 set_sizetype (size_type_node);
3140
3141 pid_type_node =
3142 TREE_TYPE (identifier_global_value (get_identifier (PID_TYPE)));
3143
3144 build_common_tree_nodes_2 (flag_short_double);
3145
3146 record_builtin_type (RID_FLOAT, NULL, float_type_node);
3147 record_builtin_type (RID_DOUBLE, NULL, double_type_node);
3148 record_builtin_type (RID_MAX, "long double", long_double_type_node);
3149
3150 /* Only supported decimal floating point extension if the target
3151 actually supports underlying modes. */
3152 if (targetm.scalar_mode_supported_p (SDmode)
3153 && targetm.scalar_mode_supported_p (DDmode)
3154 && targetm.scalar_mode_supported_p (TDmode))
3155 {
3156 record_builtin_type (RID_DFLOAT32, NULL, dfloat32_type_node);
3157 record_builtin_type (RID_DFLOAT64, NULL, dfloat64_type_node);
3158 record_builtin_type (RID_DFLOAT128, NULL, dfloat128_type_node);
3159 }
3160
3161 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL,
3162 get_identifier ("complex int"),
3163 complex_integer_type_node));
3164 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL,
3165 get_identifier ("complex float"),
3166 complex_float_type_node));
3167 lang_hooks.decls.pushdecl (build_decl (TYPE_DECL,
3168 get_identifier ("complex double"),
3169 complex_double_type_node));
3170 lang_hooks.decls.pushdecl
3171 (build_decl (TYPE_DECL, get_identifier ("complex long double"),
3172 complex_long_double_type_node));
3173
3174 if (c_dialect_cxx ())
3175 /* For C++, make fileptr_type_node a distinct void * type until
3176 FILE type is defined. */
3177 fileptr_type_node = build_variant_type_copy (ptr_type_node);
3178
3179 record_builtin_type (RID_VOID, NULL, void_type_node);
3180
3181 /* This node must not be shared. */
3182 void_zero_node = make_node (INTEGER_CST);
3183 TREE_TYPE (void_zero_node) = void_type_node;
3184
3185 void_list_node = build_void_list_node ();
3186
3187 /* Make a type to be the domain of a few array types
3188 whose domains don't really matter.
3189 200 is small enough that it always fits in size_t
3190 and large enough that it can hold most function names for the
3191 initializations of __FUNCTION__ and __PRETTY_FUNCTION__. */
3192 array_domain_type = build_index_type (size_int (200));
3193
3194 /* Make a type for arrays of characters.
3195 With luck nothing will ever really depend on the length of this
3196 array type. */
3197 char_array_type_node
3198 = build_array_type (char_type_node, array_domain_type);
3199
3200 /* Likewise for arrays of ints. */
3201 int_array_type_node
3202 = build_array_type (integer_type_node, array_domain_type);
3203
3204 string_type_node = build_pointer_type (char_type_node);
3205 const_string_type_node
3206 = build_pointer_type (build_qualified_type
3207 (char_type_node, TYPE_QUAL_CONST));
3208
3209 /* This is special for C++ so functions can be overloaded. */
3210 wchar_type_node = get_identifier (MODIFIED_WCHAR_TYPE);
3211 wchar_type_node = TREE_TYPE (identifier_global_value (wchar_type_node));
3212 wchar_type_size = TYPE_PRECISION (wchar_type_node);
3213 if (c_dialect_cxx ())
3214 {
3215 if (TYPE_UNSIGNED (wchar_type_node))
3216 wchar_type_node = make_unsigned_type (wchar_type_size);
3217 else
3218 wchar_type_node = make_signed_type (wchar_type_size);
3219 record_builtin_type (RID_WCHAR, "wchar_t", wchar_type_node);
3220 }
3221 else
3222 {
3223 signed_wchar_type_node = c_common_signed_type (wchar_type_node);
3224 unsigned_wchar_type_node = c_common_unsigned_type (wchar_type_node);
3225 }
3226
3227 /* This is for wide string constants. */
3228 wchar_array_type_node
3229 = build_array_type (wchar_type_node, array_domain_type);
3230
3231 wint_type_node =
3232 TREE_TYPE (identifier_global_value (get_identifier (WINT_TYPE)));
3233
3234 intmax_type_node =
3235 TREE_TYPE (identifier_global_value (get_identifier (INTMAX_TYPE)));
3236 uintmax_type_node =
3237 TREE_TYPE (identifier_global_value (get_identifier (UINTMAX_TYPE)));
3238
3239 default_function_type = build_function_type (integer_type_node, NULL_TREE);
3240 ptrdiff_type_node
3241 = TREE_TYPE (identifier_global_value (get_identifier (PTRDIFF_TYPE)));
3242 unsigned_ptrdiff_type_node = c_common_unsigned_type (ptrdiff_type_node);
3243
3244 lang_hooks.decls.pushdecl
3245 (build_decl (TYPE_DECL, get_identifier ("__builtin_va_list"),
3246 va_list_type_node));
3247
3248 if (TREE_CODE (va_list_type_node) == ARRAY_TYPE)
3249 {
3250 va_list_arg_type_node = va_list_ref_type_node =
3251 build_pointer_type (TREE_TYPE (va_list_type_node));
3252 }
3253 else
3254 {
3255 va_list_arg_type_node = va_list_type_node;
3256 va_list_ref_type_node = build_reference_type (va_list_type_node);
3257 }
3258
3259 #define DEF_PRIMITIVE_TYPE(ENUM, VALUE) \
3260 builtin_types[ENUM] = VALUE;
3261 #define DEF_FUNCTION_TYPE_0(ENUM, RETURN) \
3262 def_fn_type (ENUM, RETURN, 0, 0);
3263 #define DEF_FUNCTION_TYPE_1(ENUM, RETURN, ARG1) \
3264 def_fn_type (ENUM, RETURN, 0, 1, ARG1);
3265 #define DEF_FUNCTION_TYPE_2(ENUM, RETURN, ARG1, ARG2) \
3266 def_fn_type (ENUM, RETURN, 0, 2, ARG1, ARG2);
3267 #define DEF_FUNCTION_TYPE_3(ENUM, RETURN, ARG1, ARG2, ARG3) \
3268 def_fn_type (ENUM, RETURN, 0, 3, ARG1, ARG2, ARG3);
3269 #define DEF_FUNCTION_TYPE_4(ENUM, RETURN, ARG1, ARG2, ARG3, ARG4) \
3270 def_fn_type (ENUM, RETURN, 0, 4, ARG1, ARG2, ARG3, ARG4);
3271 #define DEF_FUNCTION_TYPE_5(ENUM, RETURN, ARG1, ARG2, ARG3, ARG4, ARG5) \
3272 def_fn_type (ENUM, RETURN, 0, 5, ARG1, ARG2, ARG3, ARG4, ARG5);
3273 #define DEF_FUNCTION_TYPE_6(ENUM, RETURN, ARG1, ARG2, ARG3, ARG4, ARG5, \
3274 ARG6) \
3275 def_fn_type (ENUM, RETURN, 0, 6, ARG1, ARG2, ARG3, ARG4, ARG5, ARG6);
3276 #define DEF_FUNCTION_TYPE_7(ENUM, RETURN, ARG1, ARG2, ARG3, ARG4, ARG5, \
3277 ARG6, ARG7) \
3278 def_fn_type (ENUM, RETURN, 0, 7, ARG1, ARG2, ARG3, ARG4, ARG5, ARG6, ARG7);
3279 #define DEF_FUNCTION_TYPE_VAR_0(ENUM, RETURN) \
3280 def_fn_type (ENUM, RETURN, 1, 0);
3281 #define DEF_FUNCTION_TYPE_VAR_1(ENUM, RETURN, ARG1) \
3282 def_fn_type (ENUM, RETURN, 1, 1, ARG1);
3283 #define DEF_FUNCTION_TYPE_VAR_2(ENUM, RETURN, ARG1, ARG2) \
3284 def_fn_type (ENUM, RETURN, 1, 2, ARG1, ARG2);
3285 #define DEF_FUNCTION_TYPE_VAR_3(ENUM, RETURN, ARG1, ARG2, ARG3) \
3286 def_fn_type (ENUM, RETURN, 1, 3, ARG1, ARG2, ARG3);
3287 #define DEF_FUNCTION_TYPE_VAR_4(ENUM, RETURN, ARG1, ARG2, ARG3, ARG4) \
3288 def_fn_type (ENUM, RETURN, 1, 4, ARG1, ARG2, ARG3, ARG4);
3289 #define DEF_FUNCTION_TYPE_VAR_5(ENUM, RETURN, ARG1, ARG2, ARG3, ARG4, ARG5) \
3290 def_fn_type (ENUM, RETURN, 1, 5, ARG1, ARG2, ARG3, ARG4, ARG5);
3291 #define DEF_POINTER_TYPE(ENUM, TYPE) \
3292 builtin_types[(int) ENUM] = build_pointer_type (builtin_types[(int) TYPE]);
3293
3294 #include "builtin-types.def"
3295
3296 #undef DEF_PRIMITIVE_TYPE
3297 #undef DEF_FUNCTION_TYPE_1
3298 #undef DEF_FUNCTION_TYPE_2
3299 #undef DEF_FUNCTION_TYPE_3
3300 #undef DEF_FUNCTION_TYPE_4
3301 #undef DEF_FUNCTION_TYPE_5
3302 #undef DEF_FUNCTION_TYPE_6
3303 #undef DEF_FUNCTION_TYPE_VAR_0
3304 #undef DEF_FUNCTION_TYPE_VAR_1
3305 #undef DEF_FUNCTION_TYPE_VAR_2
3306 #undef DEF_FUNCTION_TYPE_VAR_3
3307 #undef DEF_FUNCTION_TYPE_VAR_4
3308 #undef DEF_FUNCTION_TYPE_VAR_5
3309 #undef DEF_POINTER_TYPE
3310 builtin_types[(int) BT_LAST] = NULL_TREE;
3311
3312 c_init_attributes ();
3313
3314 #define DEF_BUILTIN(ENUM, NAME, CLASS, TYPE, LIBTYPE, BOTH_P, FALLBACK_P, \
3315 NONANSI_P, ATTRS, IMPLICIT, COND) \
3316 if (NAME && COND) \
3317 def_builtin_1 (ENUM, NAME, CLASS, \
3318 builtin_types[(int) TYPE], \
3319 builtin_types[(int) LIBTYPE], \
3320 BOTH_P, FALLBACK_P, NONANSI_P, \
3321 built_in_attributes[(int) ATTRS], IMPLICIT);
3322 #include "builtins.def"
3323 #undef DEF_BUILTIN
3324
3325 build_common_builtin_nodes ();
3326
3327 targetm.init_builtins ();
3328 if (flag_mudflap)
3329 mudflap_init ();
3330
3331 main_identifier_node = get_identifier ("main");
3332
3333 /* Create the built-in __null node. It is important that this is
3334 not shared. */
3335 null_node = make_node (INTEGER_CST);
3336 TREE_TYPE (null_node) = c_common_type_for_size (POINTER_SIZE, 0);
3337
3338 /* Since builtin_types isn't gc'ed, don't export these nodes. */
3339 memset (builtin_types, 0, sizeof (builtin_types));
3340 }
3341
3342 /* Look up the function in built_in_decls that corresponds to DECL
3343 and set ASMSPEC as its user assembler name. DECL must be a
3344 function decl that declares a builtin. */
3345
3346 void
3347 set_builtin_user_assembler_name (tree decl, const char *asmspec)
3348 {
3349 tree builtin;
3350 gcc_assert (TREE_CODE (decl) == FUNCTION_DECL
3351 && DECL_BUILT_IN_CLASS (decl) == BUILT_IN_NORMAL
3352 && asmspec != 0);
3353
3354 builtin = built_in_decls [DECL_FUNCTION_CODE (decl)];
3355 set_user_assembler_name (builtin, asmspec);
3356 if (DECL_FUNCTION_CODE (decl) == BUILT_IN_MEMCPY)
3357 init_block_move_fn (asmspec);
3358 else if (DECL_FUNCTION_CODE (decl) == BUILT_IN_MEMSET)
3359 init_block_clear_fn (asmspec);
3360 }
3361
3362 tree
3363 build_va_arg (tree expr, tree type)
3364 {
3365 return build1 (VA_ARG_EXPR, type, expr);
3366 }
3367
3368
3369 /* Linked list of disabled built-in functions. */
3370
3371 typedef struct disabled_builtin
3372 {
3373 const char *name;
3374 struct disabled_builtin *next;
3375 } disabled_builtin;
3376 static disabled_builtin *disabled_builtins = NULL;
3377
3378 static bool builtin_function_disabled_p (const char *);
3379
3380 /* Disable a built-in function specified by -fno-builtin-NAME. If NAME
3381 begins with "__builtin_", give an error. */
3382
3383 void
3384 disable_builtin_function (const char *name)
3385 {
3386 if (strncmp (name, "__builtin_", strlen ("__builtin_")) == 0)
3387 error ("cannot disable built-in function %qs", name);
3388 else
3389 {
3390 disabled_builtin *new_disabled_builtin = XNEW (disabled_builtin);
3391 new_disabled_builtin->name = name;
3392 new_disabled_builtin->next = disabled_builtins;
3393 disabled_builtins = new_disabled_builtin;
3394 }
3395 }
3396
3397
3398 /* Return true if the built-in function NAME has been disabled, false
3399 otherwise. */
3400
3401 static bool
3402 builtin_function_disabled_p (const char *name)
3403 {
3404 disabled_builtin *p;
3405 for (p = disabled_builtins; p != NULL; p = p->next)
3406 {
3407 if (strcmp (name, p->name) == 0)
3408 return true;
3409 }
3410 return false;
3411 }
3412
3413
3414 /* Worker for DEF_BUILTIN.
3415 Possibly define a builtin function with one or two names.
3416 Does not declare a non-__builtin_ function if flag_no_builtin, or if
3417 nonansi_p and flag_no_nonansi_builtin. */
3418
3419 static void
3420 def_builtin_1 (enum built_in_function fncode,
3421 const char *name,
3422 enum built_in_class fnclass,
3423 tree fntype, tree libtype,
3424 bool both_p, bool fallback_p, bool nonansi_p,
3425 tree fnattrs, bool implicit_p)
3426 {
3427 tree decl;
3428 const char *libname;
3429
3430 if (fntype == error_mark_node)
3431 return;
3432
3433 gcc_assert ((!both_p && !fallback_p)
3434 || !strncmp (name, "__builtin_",
3435 strlen ("__builtin_")));
3436
3437 libname = name + strlen ("__builtin_");
3438 decl = lang_hooks.builtin_function (name, fntype, fncode, fnclass,
3439 (fallback_p ? libname : NULL),
3440 fnattrs);
3441 if (both_p
3442 && !flag_no_builtin && !builtin_function_disabled_p (libname)
3443 && !(nonansi_p && flag_no_nonansi_builtin))
3444 lang_hooks.builtin_function (libname, libtype, fncode, fnclass,
3445 NULL, fnattrs);
3446
3447 built_in_decls[(int) fncode] = decl;
3448 if (implicit_p)
3449 implicit_built_in_decls[(int) fncode] = decl;
3450 }
3451 \f
3452 /* Nonzero if the type T promotes to int. This is (nearly) the
3453 integral promotions defined in ISO C99 6.3.1.1/2. */
3454
3455 bool
3456 c_promoting_integer_type_p (tree t)
3457 {
3458 switch (TREE_CODE (t))
3459 {
3460 case INTEGER_TYPE:
3461 return (TYPE_MAIN_VARIANT (t) == char_type_node
3462 || TYPE_MAIN_VARIANT (t) == signed_char_type_node
3463 || TYPE_MAIN_VARIANT (t) == unsigned_char_type_node
3464 || TYPE_MAIN_VARIANT (t) == short_integer_type_node
3465 || TYPE_MAIN_VARIANT (t) == short_unsigned_type_node
3466 || TYPE_PRECISION (t) < TYPE_PRECISION (integer_type_node));
3467
3468 case ENUMERAL_TYPE:
3469 /* ??? Technically all enumerations not larger than an int
3470 promote to an int. But this is used along code paths
3471 that only want to notice a size change. */
3472 return TYPE_PRECISION (t) < TYPE_PRECISION (integer_type_node);
3473
3474 case BOOLEAN_TYPE:
3475 return 1;
3476
3477 default:
3478 return 0;
3479 }
3480 }
3481
3482 /* Return 1 if PARMS specifies a fixed number of parameters
3483 and none of their types is affected by default promotions. */
3484
3485 int
3486 self_promoting_args_p (tree parms)
3487 {
3488 tree t;
3489 for (t = parms; t; t = TREE_CHAIN (t))
3490 {
3491 tree type = TREE_VALUE (t);
3492
3493 if (TREE_CHAIN (t) == 0 && type != void_type_node)
3494 return 0;
3495
3496 if (type == 0)
3497 return 0;
3498
3499 if (TYPE_MAIN_VARIANT (type) == float_type_node)
3500 return 0;
3501
3502 if (c_promoting_integer_type_p (type))
3503 return 0;
3504 }
3505 return 1;
3506 }
3507
3508 /* Recursively examines the array elements of TYPE, until a non-array
3509 element type is found. */
3510
3511 tree
3512 strip_array_types (tree type)
3513 {
3514 while (TREE_CODE (type) == ARRAY_TYPE)
3515 type = TREE_TYPE (type);
3516
3517 return type;
3518 }
3519
3520 /* Recursively remove any '*' or '&' operator from TYPE. */
3521 tree
3522 strip_pointer_operator (tree t)
3523 {
3524 while (POINTER_TYPE_P (t))
3525 t = TREE_TYPE (t);
3526 return t;
3527 }
3528
3529 /* Used to compare case labels. K1 and K2 are actually tree nodes
3530 representing case labels, or NULL_TREE for a `default' label.
3531 Returns -1 if K1 is ordered before K2, -1 if K1 is ordered after
3532 K2, and 0 if K1 and K2 are equal. */
3533
3534 int
3535 case_compare (splay_tree_key k1, splay_tree_key k2)
3536 {
3537 /* Consider a NULL key (such as arises with a `default' label) to be
3538 smaller than anything else. */
3539 if (!k1)
3540 return k2 ? -1 : 0;
3541 else if (!k2)
3542 return k1 ? 1 : 0;
3543
3544 return tree_int_cst_compare ((tree) k1, (tree) k2);
3545 }
3546
3547 /* Process a case label for the range LOW_VALUE ... HIGH_VALUE. If
3548 LOW_VALUE and HIGH_VALUE are both NULL_TREE then this case label is
3549 actually a `default' label. If only HIGH_VALUE is NULL_TREE, then
3550 case label was declared using the usual C/C++ syntax, rather than
3551 the GNU case range extension. CASES is a tree containing all the
3552 case ranges processed so far; COND is the condition for the
3553 switch-statement itself. Returns the CASE_LABEL_EXPR created, or
3554 ERROR_MARK_NODE if no CASE_LABEL_EXPR is created. */
3555
3556 tree
3557 c_add_case_label (splay_tree cases, tree cond, tree orig_type,
3558 tree low_value, tree high_value)
3559 {
3560 tree type;
3561 tree label;
3562 tree case_label;
3563 splay_tree_node node;
3564
3565 /* Create the LABEL_DECL itself. */
3566 label = create_artificial_label ();
3567
3568 /* If there was an error processing the switch condition, bail now
3569 before we get more confused. */
3570 if (!cond || cond == error_mark_node)
3571 goto error_out;
3572
3573 if ((low_value && TREE_TYPE (low_value)
3574 && POINTER_TYPE_P (TREE_TYPE (low_value)))
3575 || (high_value && TREE_TYPE (high_value)
3576 && POINTER_TYPE_P (TREE_TYPE (high_value))))
3577 {
3578 error ("pointers are not permitted as case values");
3579 goto error_out;
3580 }
3581
3582 /* Case ranges are a GNU extension. */
3583 if (high_value && pedantic)
3584 pedwarn ("range expressions in switch statements are non-standard");
3585
3586 type = TREE_TYPE (cond);
3587 if (low_value)
3588 {
3589 low_value = check_case_value (low_value);
3590 low_value = convert_and_check (type, low_value);
3591 if (low_value == error_mark_node)
3592 goto error_out;
3593 }
3594 if (high_value)
3595 {
3596 high_value = check_case_value (high_value);
3597 high_value = convert_and_check (type, high_value);
3598 if (high_value == error_mark_node)
3599 goto error_out;
3600 }
3601
3602 if (low_value && high_value)
3603 {
3604 /* If the LOW_VALUE and HIGH_VALUE are the same, then this isn't
3605 really a case range, even though it was written that way.
3606 Remove the HIGH_VALUE to simplify later processing. */
3607 if (tree_int_cst_equal (low_value, high_value))
3608 high_value = NULL_TREE;
3609 else if (!tree_int_cst_lt (low_value, high_value))
3610 warning (0, "empty range specified");
3611 }
3612
3613 /* See if the case is in range of the type of the original testing
3614 expression. If both low_value and high_value are out of range,
3615 don't insert the case label and return NULL_TREE. */
3616 if (low_value
3617 && !check_case_bounds (type, orig_type,
3618 &low_value, high_value ? &high_value : NULL))
3619 return NULL_TREE;
3620
3621 /* Look up the LOW_VALUE in the table of case labels we already
3622 have. */
3623 node = splay_tree_lookup (cases, (splay_tree_key) low_value);
3624 /* If there was not an exact match, check for overlapping ranges.
3625 There's no need to do this if there's no LOW_VALUE or HIGH_VALUE;
3626 that's a `default' label and the only overlap is an exact match. */
3627 if (!node && (low_value || high_value))
3628 {
3629 splay_tree_node low_bound;
3630 splay_tree_node high_bound;
3631
3632 /* Even though there wasn't an exact match, there might be an
3633 overlap between this case range and another case range.
3634 Since we've (inductively) not allowed any overlapping case
3635 ranges, we simply need to find the greatest low case label
3636 that is smaller that LOW_VALUE, and the smallest low case
3637 label that is greater than LOW_VALUE. If there is an overlap
3638 it will occur in one of these two ranges. */
3639 low_bound = splay_tree_predecessor (cases,
3640 (splay_tree_key) low_value);
3641 high_bound = splay_tree_successor (cases,
3642 (splay_tree_key) low_value);
3643
3644 /* Check to see if the LOW_BOUND overlaps. It is smaller than
3645 the LOW_VALUE, so there is no need to check unless the
3646 LOW_BOUND is in fact itself a case range. */
3647 if (low_bound
3648 && CASE_HIGH ((tree) low_bound->value)
3649 && tree_int_cst_compare (CASE_HIGH ((tree) low_bound->value),
3650 low_value) >= 0)
3651 node = low_bound;
3652 /* Check to see if the HIGH_BOUND overlaps. The low end of that
3653 range is bigger than the low end of the current range, so we
3654 are only interested if the current range is a real range, and
3655 not an ordinary case label. */
3656 else if (high_bound
3657 && high_value
3658 && (tree_int_cst_compare ((tree) high_bound->key,
3659 high_value)
3660 <= 0))
3661 node = high_bound;
3662 }
3663 /* If there was an overlap, issue an error. */
3664 if (node)
3665 {
3666 tree duplicate = CASE_LABEL ((tree) node->value);
3667
3668 if (high_value)
3669 {
3670 error ("duplicate (or overlapping) case value");
3671 error ("%Jthis is the first entry overlapping that value", duplicate);
3672 }
3673 else if (low_value)
3674 {
3675 error ("duplicate case value") ;
3676 error ("%Jpreviously used here", duplicate);
3677 }
3678 else
3679 {
3680 error ("multiple default labels in one switch");
3681 error ("%Jthis is the first default label", duplicate);
3682 }
3683 goto error_out;
3684 }
3685
3686 /* Add a CASE_LABEL to the statement-tree. */
3687 case_label = add_stmt (build_case_label (low_value, high_value, label));
3688 /* Register this case label in the splay tree. */
3689 splay_tree_insert (cases,
3690 (splay_tree_key) low_value,
3691 (splay_tree_value) case_label);
3692
3693 return case_label;
3694
3695 error_out:
3696 /* Add a label so that the back-end doesn't think that the beginning of
3697 the switch is unreachable. Note that we do not add a case label, as
3698 that just leads to duplicates and thence to failure later on. */
3699 if (!cases->root)
3700 {
3701 tree t = create_artificial_label ();
3702 add_stmt (build_stmt (LABEL_EXPR, t));
3703 }
3704 return error_mark_node;
3705 }
3706
3707 /* Subroutines of c_do_switch_warnings, called via splay_tree_foreach.
3708 Used to verify that case values match up with enumerator values. */
3709
3710 static void
3711 match_case_to_enum_1 (tree key, tree type, tree label)
3712 {
3713 char buf[2 + 2*HOST_BITS_PER_WIDE_INT/4 + 1];
3714
3715 /* ??? Not working too hard to print the double-word value.
3716 Should perhaps be done with %lwd in the diagnostic routines? */
3717 if (TREE_INT_CST_HIGH (key) == 0)
3718 snprintf (buf, sizeof (buf), HOST_WIDE_INT_PRINT_UNSIGNED,
3719 TREE_INT_CST_LOW (key));
3720 else if (!TYPE_UNSIGNED (type)
3721 && TREE_INT_CST_HIGH (key) == -1
3722 && TREE_INT_CST_LOW (key) != 0)
3723 snprintf (buf, sizeof (buf), "-" HOST_WIDE_INT_PRINT_UNSIGNED,
3724 -TREE_INT_CST_LOW (key));
3725 else
3726 snprintf (buf, sizeof (buf), HOST_WIDE_INT_PRINT_DOUBLE_HEX,
3727 TREE_INT_CST_HIGH (key), TREE_INT_CST_LOW (key));
3728
3729 if (TYPE_NAME (type) == 0)
3730 warning (0, "%Jcase value %qs not in enumerated type",
3731 CASE_LABEL (label), buf);
3732 else
3733 warning (0, "%Jcase value %qs not in enumerated type %qT",
3734 CASE_LABEL (label), buf, type);
3735 }
3736
3737 static int
3738 match_case_to_enum (splay_tree_node node, void *data)
3739 {
3740 tree label = (tree) node->value;
3741 tree type = (tree) data;
3742
3743 /* Skip default case. */
3744 if (!CASE_LOW (label))
3745 return 0;
3746
3747 /* If TREE_ADDRESSABLE is not set, that means CASE_LOW did not appear
3748 when we did our enum->case scan. Reset our scratch bit after. */
3749 if (!TREE_ADDRESSABLE (label))
3750 match_case_to_enum_1 (CASE_LOW (label), type, label);
3751 else
3752 TREE_ADDRESSABLE (label) = 0;
3753
3754 /* If CASE_HIGH is non-null, we have a range. Here we must search.
3755 Note that the old code in stmt.c did not check for the values in
3756 the range either, just the endpoints. */
3757 if (CASE_HIGH (label))
3758 {
3759 tree chain, key = CASE_HIGH (label);
3760
3761 for (chain = TYPE_VALUES (type);
3762 chain && !tree_int_cst_equal (key, TREE_VALUE (chain));
3763 chain = TREE_CHAIN (chain))
3764 continue;
3765 if (!chain)
3766 match_case_to_enum_1 (key, type, label);
3767 }
3768
3769 return 0;
3770 }
3771
3772 /* Handle -Wswitch*. Called from the front end after parsing the
3773 switch construct. */
3774 /* ??? Should probably be somewhere generic, since other languages
3775 besides C and C++ would want this. At the moment, however, C/C++
3776 are the only tree-ssa languages that support enumerations at all,
3777 so the point is moot. */
3778
3779 void
3780 c_do_switch_warnings (splay_tree cases, location_t switch_location,
3781 tree type, tree cond)
3782 {
3783 splay_tree_node default_node;
3784
3785 if (!warn_switch && !warn_switch_enum && !warn_switch_default)
3786 return;
3787
3788 default_node = splay_tree_lookup (cases, (splay_tree_key) NULL);
3789 if (!default_node)
3790 warning (OPT_Wswitch_default, "%Hswitch missing default case",
3791 &switch_location);
3792
3793 /* If the switch expression was an enumerated type, check that
3794 exactly all enumeration literals are covered by the cases.
3795 The check is made when -Wswitch was specified and there is no
3796 default case, or when -Wswitch-enum was specified. */
3797 if (((warn_switch && !default_node) || warn_switch_enum)
3798 && type && TREE_CODE (type) == ENUMERAL_TYPE
3799 && TREE_CODE (cond) != INTEGER_CST)
3800 {
3801 tree chain;
3802
3803 /* The time complexity here is O(N*lg(N)) worst case, but for the
3804 common case of monotonically increasing enumerators, it is
3805 O(N), since the nature of the splay tree will keep the next
3806 element adjacent to the root at all times. */
3807
3808 for (chain = TYPE_VALUES (type); chain; chain = TREE_CHAIN (chain))
3809 {
3810 splay_tree_node node
3811 = splay_tree_lookup (cases, (splay_tree_key) TREE_VALUE (chain));
3812 if (!node)
3813 {
3814 tree low_value = TREE_VALUE (chain);
3815 splay_tree_node low_bound;
3816 splay_tree_node high_bound;
3817 /* Even though there wasn't an exact match, there might be a
3818 case range which includes the enumator's value. */
3819 low_bound = splay_tree_predecessor (cases,
3820 (splay_tree_key) low_value);
3821 high_bound = splay_tree_successor (cases,
3822 (splay_tree_key) low_value);
3823
3824 /* It is smaller than the LOW_VALUE, so there is no need to check
3825 unless the LOW_BOUND is in fact itself a case range. */
3826 if (low_bound
3827 && CASE_HIGH ((tree) low_bound->value)
3828 && tree_int_cst_compare (CASE_HIGH ((tree) low_bound->value),
3829 low_value) >= 0)
3830 node = low_bound;
3831 /* The low end of that range is bigger than the current value. */
3832 else if (high_bound
3833 && (tree_int_cst_compare ((tree) high_bound->key,
3834 low_value)
3835 <= 0))
3836 node = high_bound;
3837 }
3838 if (node)
3839 {
3840 /* Mark the CASE_LOW part of the case entry as seen, so
3841 that we save time later. Choose TREE_ADDRESSABLE
3842 randomly as a bit that won't have been set to-date. */
3843 tree label = (tree) node->value;
3844 TREE_ADDRESSABLE (label) = 1;
3845 }
3846 else
3847 {
3848 /* Warn if there are enumerators that don't correspond to
3849 case expressions. */
3850 warning (0, "%Henumeration value %qE not handled in switch",
3851 &switch_location, TREE_PURPOSE (chain));
3852 }
3853 }
3854
3855 /* Warn if there are case expressions that don't correspond to
3856 enumerators. This can occur since C and C++ don't enforce
3857 type-checking of assignments to enumeration variables.
3858
3859 The time complexity here is O(N**2) worst case, since we've
3860 not sorted the enumeration values. However, in the absence
3861 of case ranges this is O(N), since all single cases that
3862 corresponded to enumerations have been marked above. */
3863
3864 splay_tree_foreach (cases, match_case_to_enum, type);
3865 }
3866 }
3867
3868 /* Finish an expression taking the address of LABEL (an
3869 IDENTIFIER_NODE). Returns an expression for the address. */
3870
3871 tree
3872 finish_label_address_expr (tree label)
3873 {
3874 tree result;
3875
3876 if (pedantic)
3877 pedwarn ("taking the address of a label is non-standard");
3878
3879 if (label == error_mark_node)
3880 return error_mark_node;
3881
3882 label = lookup_label (label);
3883 if (label == NULL_TREE)
3884 result = null_pointer_node;
3885 else
3886 {
3887 TREE_USED (label) = 1;
3888 result = build1 (ADDR_EXPR, ptr_type_node, label);
3889 /* The current function in not necessarily uninlinable.
3890 Computed gotos are incompatible with inlining, but the value
3891 here could be used only in a diagnostic, for example. */
3892 }
3893
3894 return result;
3895 }
3896
3897 /* Hook used by expand_expr to expand language-specific tree codes. */
3898 /* The only things that should go here are bits needed to expand
3899 constant initializers. Everything else should be handled by the
3900 gimplification routines. */
3901
3902 rtx
3903 c_expand_expr (tree exp, rtx target, enum machine_mode tmode,
3904 int modifier /* Actually enum_modifier. */,
3905 rtx *alt_rtl)
3906 {
3907 switch (TREE_CODE (exp))
3908 {
3909 case COMPOUND_LITERAL_EXPR:
3910 {
3911 /* Initialize the anonymous variable declared in the compound
3912 literal, then return the variable. */
3913 tree decl = COMPOUND_LITERAL_EXPR_DECL (exp);
3914 emit_local_var (decl);
3915 return expand_expr_real (decl, target, tmode, modifier, alt_rtl);
3916 }
3917
3918 default:
3919 gcc_unreachable ();
3920 }
3921 }
3922
3923 /* Hook used by staticp to handle language-specific tree codes. */
3924
3925 tree
3926 c_staticp (tree exp)
3927 {
3928 return (TREE_CODE (exp) == COMPOUND_LITERAL_EXPR
3929 && TREE_STATIC (COMPOUND_LITERAL_EXPR_DECL (exp))
3930 ? exp : NULL);
3931 }
3932 \f
3933
3934 /* Given a boolean expression ARG, return a tree representing an increment
3935 or decrement (as indicated by CODE) of ARG. The front end must check for
3936 invalid cases (e.g., decrement in C++). */
3937 tree
3938 boolean_increment (enum tree_code code, tree arg)
3939 {
3940 tree val;
3941 tree true_res = boolean_true_node;
3942
3943 arg = stabilize_reference (arg);
3944 switch (code)
3945 {
3946 case PREINCREMENT_EXPR:
3947 val = build2 (MODIFY_EXPR, TREE_TYPE (arg), arg, true_res);
3948 break;
3949 case POSTINCREMENT_EXPR:
3950 val = build2 (MODIFY_EXPR, TREE_TYPE (arg), arg, true_res);
3951 arg = save_expr (arg);
3952 val = build2 (COMPOUND_EXPR, TREE_TYPE (arg), val, arg);
3953 val = build2 (COMPOUND_EXPR, TREE_TYPE (arg), arg, val);
3954 break;
3955 case PREDECREMENT_EXPR:
3956 val = build2 (MODIFY_EXPR, TREE_TYPE (arg), arg,
3957 invert_truthvalue (arg));
3958 break;
3959 case POSTDECREMENT_EXPR:
3960 val = build2 (MODIFY_EXPR, TREE_TYPE (arg), arg,
3961 invert_truthvalue (arg));
3962 arg = save_expr (arg);
3963 val = build2 (COMPOUND_EXPR, TREE_TYPE (arg), val, arg);
3964 val = build2 (COMPOUND_EXPR, TREE_TYPE (arg), arg, val);
3965 break;
3966 default:
3967 gcc_unreachable ();
3968 }
3969 TREE_SIDE_EFFECTS (val) = 1;
3970 return val;
3971 }
3972 \f
3973 /* Built-in macros for stddef.h, that require macros defined in this
3974 file. */
3975 void
3976 c_stddef_cpp_builtins(void)
3977 {
3978 builtin_define_with_value ("__SIZE_TYPE__", SIZE_TYPE, 0);
3979 builtin_define_with_value ("__PTRDIFF_TYPE__", PTRDIFF_TYPE, 0);
3980 builtin_define_with_value ("__WCHAR_TYPE__", MODIFIED_WCHAR_TYPE, 0);
3981 builtin_define_with_value ("__WINT_TYPE__", WINT_TYPE, 0);
3982 builtin_define_with_value ("__INTMAX_TYPE__", INTMAX_TYPE, 0);
3983 builtin_define_with_value ("__UINTMAX_TYPE__", UINTMAX_TYPE, 0);
3984 }
3985
3986 static void
3987 c_init_attributes (void)
3988 {
3989 /* Fill in the built_in_attributes array. */
3990 #define DEF_ATTR_NULL_TREE(ENUM) \
3991 built_in_attributes[(int) ENUM] = NULL_TREE;
3992 #define DEF_ATTR_INT(ENUM, VALUE) \
3993 built_in_attributes[(int) ENUM] = build_int_cst (NULL_TREE, VALUE);
3994 #define DEF_ATTR_IDENT(ENUM, STRING) \
3995 built_in_attributes[(int) ENUM] = get_identifier (STRING);
3996 #define DEF_ATTR_TREE_LIST(ENUM, PURPOSE, VALUE, CHAIN) \
3997 built_in_attributes[(int) ENUM] \
3998 = tree_cons (built_in_attributes[(int) PURPOSE], \
3999 built_in_attributes[(int) VALUE], \
4000 built_in_attributes[(int) CHAIN]);
4001 #include "builtin-attrs.def"
4002 #undef DEF_ATTR_NULL_TREE
4003 #undef DEF_ATTR_INT
4004 #undef DEF_ATTR_IDENT
4005 #undef DEF_ATTR_TREE_LIST
4006 }
4007
4008 /* Attribute handlers common to C front ends. */
4009
4010 /* Handle a "packed" attribute; arguments as in
4011 struct attribute_spec.handler. */
4012
4013 static tree
4014 handle_packed_attribute (tree *node, tree name, tree ARG_UNUSED (args),
4015 int flags, bool *no_add_attrs)
4016 {
4017 if (TYPE_P (*node))
4018 {
4019 if (!(flags & (int) ATTR_FLAG_TYPE_IN_PLACE))
4020 *node = build_variant_type_copy (*node);
4021 TYPE_PACKED (*node) = 1;
4022 if (TYPE_MAIN_VARIANT (*node) == *node)
4023 {
4024 /* If it is the main variant, then pack the other variants
4025 too. This happens in,
4026
4027 struct Foo {
4028 struct Foo const *ptr; // creates a variant w/o packed flag
4029 } __ attribute__((packed)); // packs it now.
4030 */
4031 tree probe;
4032
4033 for (probe = *node; probe; probe = TYPE_NEXT_VARIANT (probe))
4034 TYPE_PACKED (probe) = 1;
4035 }
4036 }
4037 else if (TREE_CODE (*node) == FIELD_DECL)
4038 {
4039 if (TYPE_ALIGN (TREE_TYPE (*node)) <= BITS_PER_UNIT)
4040 warning (OPT_Wattributes,
4041 "%qE attribute ignored for field of type %qT",
4042 name, TREE_TYPE (*node));
4043 else
4044 DECL_PACKED (*node) = 1;
4045 }
4046 /* We can't set DECL_PACKED for a VAR_DECL, because the bit is
4047 used for DECL_REGISTER. It wouldn't mean anything anyway.
4048 We can't set DECL_PACKED on the type of a TYPE_DECL, because
4049 that changes what the typedef is typing. */
4050 else
4051 {
4052 warning (OPT_Wattributes, "%qE attribute ignored", name);
4053 *no_add_attrs = true;
4054 }
4055
4056 return NULL_TREE;
4057 }
4058
4059 /* Handle a "nocommon" attribute; arguments as in
4060 struct attribute_spec.handler. */
4061
4062 static tree
4063 handle_nocommon_attribute (tree *node, tree name,
4064 tree ARG_UNUSED (args),
4065 int ARG_UNUSED (flags), bool *no_add_attrs)
4066 {
4067 if (TREE_CODE (*node) == VAR_DECL)
4068 DECL_COMMON (*node) = 0;
4069 else
4070 {
4071 warning (OPT_Wattributes, "%qE attribute ignored", name);
4072 *no_add_attrs = true;
4073 }
4074
4075 return NULL_TREE;
4076 }
4077
4078 /* Handle a "common" attribute; arguments as in
4079 struct attribute_spec.handler. */
4080
4081 static tree
4082 handle_common_attribute (tree *node, tree name, tree ARG_UNUSED (args),
4083 int ARG_UNUSED (flags), bool *no_add_attrs)
4084 {
4085 if (TREE_CODE (*node) == VAR_DECL)
4086 DECL_COMMON (*node) = 1;
4087 else
4088 {
4089 warning (OPT_Wattributes, "%qE attribute ignored", name);
4090 *no_add_attrs = true;
4091 }
4092
4093 return NULL_TREE;
4094 }
4095
4096 /* Handle a "noreturn" attribute; arguments as in
4097 struct attribute_spec.handler. */
4098
4099 static tree
4100 handle_noreturn_attribute (tree *node, tree name, tree ARG_UNUSED (args),
4101 int ARG_UNUSED (flags), bool *no_add_attrs)
4102 {
4103 tree type = TREE_TYPE (*node);
4104
4105 /* See FIXME comment in c_common_attribute_table. */
4106 if (TREE_CODE (*node) == FUNCTION_DECL)
4107 TREE_THIS_VOLATILE (*node) = 1;
4108 else if (TREE_CODE (type) == POINTER_TYPE
4109 && TREE_CODE (TREE_TYPE (type)) == FUNCTION_TYPE)
4110 TREE_TYPE (*node)
4111 = build_pointer_type
4112 (build_type_variant (TREE_TYPE (type),
4113 TYPE_READONLY (TREE_TYPE (type)), 1));
4114 else
4115 {
4116 warning (OPT_Wattributes, "%qE attribute ignored", name);
4117 *no_add_attrs = true;
4118 }
4119
4120 return NULL_TREE;
4121 }
4122
4123 /* Handle a "noinline" attribute; arguments as in
4124 struct attribute_spec.handler. */
4125
4126 static tree
4127 handle_noinline_attribute (tree *node, tree name,
4128 tree ARG_UNUSED (args),
4129 int ARG_UNUSED (flags), bool *no_add_attrs)
4130 {
4131 if (TREE_CODE (*node) == FUNCTION_DECL)
4132 DECL_UNINLINABLE (*node) = 1;
4133 else
4134 {
4135 warning (OPT_Wattributes, "%qE attribute ignored", name);
4136 *no_add_attrs = true;
4137 }
4138
4139 return NULL_TREE;
4140 }
4141
4142 /* Handle a "always_inline" attribute; arguments as in
4143 struct attribute_spec.handler. */
4144
4145 static tree
4146 handle_always_inline_attribute (tree *node, tree name,
4147 tree ARG_UNUSED (args),
4148 int ARG_UNUSED (flags),
4149 bool *no_add_attrs)
4150 {
4151 if (TREE_CODE (*node) == FUNCTION_DECL)
4152 {
4153 /* Do nothing else, just set the attribute. We'll get at
4154 it later with lookup_attribute. */
4155 }
4156 else
4157 {
4158 warning (OPT_Wattributes, "%qE attribute ignored", name);
4159 *no_add_attrs = true;
4160 }
4161
4162 return NULL_TREE;
4163 }
4164
4165 /* Handle a "flatten" attribute; arguments as in
4166 struct attribute_spec.handler. */
4167
4168 static tree
4169 handle_flatten_attribute (tree *node, tree name,
4170 tree args ATTRIBUTE_UNUSED,
4171 int flags ATTRIBUTE_UNUSED, bool *no_add_attrs)
4172 {
4173 if (TREE_CODE (*node) == FUNCTION_DECL)
4174 /* Do nothing else, just set the attribute. We'll get at
4175 it later with lookup_attribute. */
4176 ;
4177 else
4178 {
4179 warning (OPT_Wattributes, "%qE attribute ignored", name);
4180 *no_add_attrs = true;
4181 }
4182
4183 return NULL_TREE;
4184 }
4185
4186
4187 /* Handle a "used" attribute; arguments as in
4188 struct attribute_spec.handler. */
4189
4190 static tree
4191 handle_used_attribute (tree *pnode, tree name, tree ARG_UNUSED (args),
4192 int ARG_UNUSED (flags), bool *no_add_attrs)
4193 {
4194 tree node = *pnode;
4195
4196 if (TREE_CODE (node) == FUNCTION_DECL
4197 || (TREE_CODE (node) == VAR_DECL && TREE_STATIC (node)))
4198 {
4199 TREE_USED (node) = 1;
4200 DECL_PRESERVE_P (node) = 1;
4201 }
4202 else
4203 {
4204 warning (OPT_Wattributes, "%qE attribute ignored", name);
4205 *no_add_attrs = true;
4206 }
4207
4208 return NULL_TREE;
4209 }
4210
4211 /* Handle a "unused" attribute; arguments as in
4212 struct attribute_spec.handler. */
4213
4214 static tree
4215 handle_unused_attribute (tree *node, tree name, tree ARG_UNUSED (args),
4216 int flags, bool *no_add_attrs)
4217 {
4218 if (DECL_P (*node))
4219 {
4220 tree decl = *node;
4221
4222 if (TREE_CODE (decl) == PARM_DECL
4223 || TREE_CODE (decl) == VAR_DECL
4224 || TREE_CODE (decl) == FUNCTION_DECL
4225 || TREE_CODE (decl) == LABEL_DECL
4226 || TREE_CODE (decl) == TYPE_DECL)
4227 TREE_USED (decl) = 1;
4228 else
4229 {
4230 warning (OPT_Wattributes, "%qE attribute ignored", name);
4231 *no_add_attrs = true;
4232 }
4233 }
4234 else
4235 {
4236 if (!(flags & (int) ATTR_FLAG_TYPE_IN_PLACE))
4237 *node = build_variant_type_copy (*node);
4238 TREE_USED (*node) = 1;
4239 }
4240
4241 return NULL_TREE;
4242 }
4243
4244 /* Handle a "externally_visible" attribute; arguments as in
4245 struct attribute_spec.handler. */
4246
4247 static tree
4248 handle_externally_visible_attribute (tree *pnode, tree name,
4249 tree ARG_UNUSED (args),
4250 int ARG_UNUSED (flags),
4251 bool *no_add_attrs)
4252 {
4253 tree node = *pnode;
4254
4255 if ((!TREE_STATIC (node) && TREE_CODE (node) != FUNCTION_DECL)
4256 || !TREE_PUBLIC (node))
4257 {
4258 warning (OPT_Wattributes,
4259 "%qE attribute have effect only on public objects", name);
4260 *no_add_attrs = true;
4261 }
4262 else if (TREE_CODE (node) == FUNCTION_DECL)
4263 {
4264 struct cgraph_node *n = cgraph_node (node);
4265 n->local.externally_visible = true;
4266 if (n->local.finalized)
4267 cgraph_mark_needed_node (n);
4268 }
4269 else if (TREE_CODE (node) == VAR_DECL)
4270 {
4271 struct cgraph_varpool_node *n = cgraph_varpool_node (node);
4272 n->externally_visible = true;
4273 if (n->finalized)
4274 cgraph_varpool_mark_needed_node (n);
4275 }
4276 else
4277 {
4278 warning (OPT_Wattributes, "%qE attribute ignored", name);
4279 *no_add_attrs = true;
4280 }
4281
4282 return NULL_TREE;
4283 }
4284
4285 /* Handle a "const" attribute; arguments as in
4286 struct attribute_spec.handler. */
4287
4288 static tree
4289 handle_const_attribute (tree *node, tree name, tree ARG_UNUSED (args),
4290 int ARG_UNUSED (flags), bool *no_add_attrs)
4291 {
4292 tree type = TREE_TYPE (*node);
4293
4294 /* See FIXME comment on noreturn in c_common_attribute_table. */
4295 if (TREE_CODE (*node) == FUNCTION_DECL)
4296 TREE_READONLY (*node) = 1;
4297 else if (TREE_CODE (type) == POINTER_TYPE
4298 && TREE_CODE (TREE_TYPE (type)) == FUNCTION_TYPE)
4299 TREE_TYPE (*node)
4300 = build_pointer_type
4301 (build_type_variant (TREE_TYPE (type), 1,
4302 TREE_THIS_VOLATILE (TREE_TYPE (type))));
4303 else
4304 {
4305 warning (OPT_Wattributes, "%qE attribute ignored", name);
4306 *no_add_attrs = true;
4307 }
4308
4309 return NULL_TREE;
4310 }
4311
4312 /* Handle a "transparent_union" attribute; arguments as in
4313 struct attribute_spec.handler. */
4314
4315 static tree
4316 handle_transparent_union_attribute (tree *node, tree name,
4317 tree ARG_UNUSED (args), int flags,
4318 bool *no_add_attrs)
4319 {
4320 tree type = NULL;
4321
4322 *no_add_attrs = true;
4323
4324 if (DECL_P (*node))
4325 {
4326 if (TREE_CODE (*node) != TYPE_DECL)
4327 goto ignored;
4328 node = &TREE_TYPE (*node);
4329 type = *node;
4330 }
4331 else if (TYPE_P (*node))
4332 type = *node;
4333 else
4334 goto ignored;
4335
4336 if (TREE_CODE (type) == UNION_TYPE)
4337 {
4338 /* When IN_PLACE is set, leave the check for FIELDS and MODE to
4339 the code in finish_struct. */
4340 if (!(flags & (int) ATTR_FLAG_TYPE_IN_PLACE))
4341 {
4342 if (TYPE_FIELDS (type) == NULL_TREE
4343 || TYPE_MODE (type) != DECL_MODE (TYPE_FIELDS (type)))
4344 goto ignored;
4345
4346 /* A type variant isn't good enough, since we don't a cast
4347 to such a type removed as a no-op. */
4348 *node = type = build_duplicate_type (type);
4349 }
4350
4351 TYPE_TRANSPARENT_UNION (type) = 1;
4352 return NULL_TREE;
4353 }
4354
4355 ignored:
4356 warning (OPT_Wattributes, "%qE attribute ignored", name);
4357 return NULL_TREE;
4358 }
4359
4360 /* Handle a "constructor" attribute; arguments as in
4361 struct attribute_spec.handler. */
4362
4363 static tree
4364 handle_constructor_attribute (tree *node, tree name,
4365 tree ARG_UNUSED (args),
4366 int ARG_UNUSED (flags),
4367 bool *no_add_attrs)
4368 {
4369 tree decl = *node;
4370 tree type = TREE_TYPE (decl);
4371
4372 if (TREE_CODE (decl) == FUNCTION_DECL
4373 && TREE_CODE (type) == FUNCTION_TYPE
4374 && decl_function_context (decl) == 0)
4375 {
4376 DECL_STATIC_CONSTRUCTOR (decl) = 1;
4377 TREE_USED (decl) = 1;
4378 }
4379 else
4380 {
4381 warning (OPT_Wattributes, "%qE attribute ignored", name);
4382 *no_add_attrs = true;
4383 }
4384
4385 return NULL_TREE;
4386 }
4387
4388 /* Handle a "destructor" attribute; arguments as in
4389 struct attribute_spec.handler. */
4390
4391 static tree
4392 handle_destructor_attribute (tree *node, tree name,
4393 tree ARG_UNUSED (args),
4394 int ARG_UNUSED (flags),
4395 bool *no_add_attrs)
4396 {
4397 tree decl = *node;
4398 tree type = TREE_TYPE (decl);
4399
4400 if (TREE_CODE (decl) == FUNCTION_DECL
4401 && TREE_CODE (type) == FUNCTION_TYPE
4402 && decl_function_context (decl) == 0)
4403 {
4404 DECL_STATIC_DESTRUCTOR (decl) = 1;
4405 TREE_USED (decl) = 1;
4406 }
4407 else
4408 {
4409 warning (OPT_Wattributes, "%qE attribute ignored", name);
4410 *no_add_attrs = true;
4411 }
4412
4413 return NULL_TREE;
4414 }
4415
4416 /* Handle a "mode" attribute; arguments as in
4417 struct attribute_spec.handler. */
4418
4419 static tree
4420 handle_mode_attribute (tree *node, tree name, tree args,
4421 int ARG_UNUSED (flags), bool *no_add_attrs)
4422 {
4423 tree type = *node;
4424
4425 *no_add_attrs = true;
4426
4427 if (TREE_CODE (TREE_VALUE (args)) != IDENTIFIER_NODE)
4428 warning (OPT_Wattributes, "%qE attribute ignored", name);
4429 else
4430 {
4431 int j;
4432 const char *p = IDENTIFIER_POINTER (TREE_VALUE (args));
4433 int len = strlen (p);
4434 enum machine_mode mode = VOIDmode;
4435 tree typefm;
4436 bool valid_mode;
4437
4438 if (len > 4 && p[0] == '_' && p[1] == '_'
4439 && p[len - 1] == '_' && p[len - 2] == '_')
4440 {
4441 char *newp = (char *) alloca (len - 1);
4442
4443 strcpy (newp, &p[2]);
4444 newp[len - 4] = '\0';
4445 p = newp;
4446 }
4447
4448 /* Change this type to have a type with the specified mode.
4449 First check for the special modes. */
4450 if (!strcmp (p, "byte"))
4451 mode = byte_mode;
4452 else if (!strcmp (p, "word"))
4453 mode = word_mode;
4454 else if (!strcmp (p, "pointer"))
4455 mode = ptr_mode;
4456 else
4457 for (j = 0; j < NUM_MACHINE_MODES; j++)
4458 if (!strcmp (p, GET_MODE_NAME (j)))
4459 {
4460 mode = (enum machine_mode) j;
4461 break;
4462 }
4463
4464 if (mode == VOIDmode)
4465 {
4466 error ("unknown machine mode %qs", p);
4467 return NULL_TREE;
4468 }
4469
4470 valid_mode = false;
4471 switch (GET_MODE_CLASS (mode))
4472 {
4473 case MODE_INT:
4474 case MODE_PARTIAL_INT:
4475 case MODE_FLOAT:
4476 case MODE_DECIMAL_FLOAT:
4477 valid_mode = targetm.scalar_mode_supported_p (mode);
4478 break;
4479
4480 case MODE_COMPLEX_INT:
4481 case MODE_COMPLEX_FLOAT:
4482 valid_mode = targetm.scalar_mode_supported_p (GET_MODE_INNER (mode));
4483 break;
4484
4485 case MODE_VECTOR_INT:
4486 case MODE_VECTOR_FLOAT:
4487 warning (OPT_Wattributes, "specifying vector types with "
4488 "__attribute__ ((mode)) is deprecated");
4489 warning (OPT_Wattributes,
4490 "use __attribute__ ((vector_size)) instead");
4491 valid_mode = vector_mode_valid_p (mode);
4492 break;
4493
4494 default:
4495 break;
4496 }
4497 if (!valid_mode)
4498 {
4499 error ("unable to emulate %qs", p);
4500 return NULL_TREE;
4501 }
4502
4503 if (POINTER_TYPE_P (type))
4504 {
4505 tree (*fn)(tree, enum machine_mode, bool);
4506
4507 if (!targetm.valid_pointer_mode (mode))
4508 {
4509 error ("invalid pointer mode %qs", p);
4510 return NULL_TREE;
4511 }
4512
4513 if (TREE_CODE (type) == POINTER_TYPE)
4514 fn = build_pointer_type_for_mode;
4515 else
4516 fn = build_reference_type_for_mode;
4517 typefm = fn (TREE_TYPE (type), mode, false);
4518 }
4519 else
4520 typefm = lang_hooks.types.type_for_mode (mode, TYPE_UNSIGNED (type));
4521
4522 if (typefm == NULL_TREE)
4523 {
4524 error ("no data type for mode %qs", p);
4525 return NULL_TREE;
4526 }
4527 else if (TREE_CODE (type) == ENUMERAL_TYPE)
4528 {
4529 /* For enumeral types, copy the precision from the integer
4530 type returned above. If not an INTEGER_TYPE, we can't use
4531 this mode for this type. */
4532 if (TREE_CODE (typefm) != INTEGER_TYPE)
4533 {
4534 error ("cannot use mode %qs for enumeral types", p);
4535 return NULL_TREE;
4536 }
4537
4538 if (flags & ATTR_FLAG_TYPE_IN_PLACE)
4539 {
4540 TYPE_PRECISION (type) = TYPE_PRECISION (typefm);
4541 typefm = type;
4542 }
4543 else
4544 {
4545 /* We cannot build a type variant, as there's code that assumes
4546 that TYPE_MAIN_VARIANT has the same mode. This includes the
4547 debug generators. Instead, create a subrange type. This
4548 results in all of the enumeral values being emitted only once
4549 in the original, and the subtype gets them by reference. */
4550 if (TYPE_UNSIGNED (type))
4551 typefm = make_unsigned_type (TYPE_PRECISION (typefm));
4552 else
4553 typefm = make_signed_type (TYPE_PRECISION (typefm));
4554 TREE_TYPE (typefm) = type;
4555 }
4556 }
4557 else if (VECTOR_MODE_P (mode)
4558 ? TREE_CODE (type) != TREE_CODE (TREE_TYPE (typefm))
4559 : TREE_CODE (type) != TREE_CODE (typefm))
4560 {
4561 error ("mode %qs applied to inappropriate type", p);
4562 return NULL_TREE;
4563 }
4564
4565 *node = typefm;
4566 }
4567
4568 return NULL_TREE;
4569 }
4570
4571 /* Handle a "section" attribute; arguments as in
4572 struct attribute_spec.handler. */
4573
4574 static tree
4575 handle_section_attribute (tree *node, tree ARG_UNUSED (name), tree args,
4576 int ARG_UNUSED (flags), bool *no_add_attrs)
4577 {
4578 tree decl = *node;
4579
4580 if (targetm.have_named_sections)
4581 {
4582 user_defined_section_attribute = true;
4583
4584 if ((TREE_CODE (decl) == FUNCTION_DECL
4585 || TREE_CODE (decl) == VAR_DECL)
4586 && TREE_CODE (TREE_VALUE (args)) == STRING_CST)
4587 {
4588 if (TREE_CODE (decl) == VAR_DECL
4589 && current_function_decl != NULL_TREE
4590 && !TREE_STATIC (decl))
4591 {
4592 error ("%Jsection attribute cannot be specified for "
4593 "local variables", decl);
4594 *no_add_attrs = true;
4595 }
4596
4597 /* The decl may have already been given a section attribute
4598 from a previous declaration. Ensure they match. */
4599 else if (DECL_SECTION_NAME (decl) != NULL_TREE
4600 && strcmp (TREE_STRING_POINTER (DECL_SECTION_NAME (decl)),
4601 TREE_STRING_POINTER (TREE_VALUE (args))) != 0)
4602 {
4603 error ("section of %q+D conflicts with previous declaration",
4604 *node);
4605 *no_add_attrs = true;
4606 }
4607 else
4608 DECL_SECTION_NAME (decl) = TREE_VALUE (args);
4609 }
4610 else
4611 {
4612 error ("section attribute not allowed for %q+D", *node);
4613 *no_add_attrs = true;
4614 }
4615 }
4616 else
4617 {
4618 error ("%Jsection attributes are not supported for this target", *node);
4619 *no_add_attrs = true;
4620 }
4621
4622 return NULL_TREE;
4623 }
4624
4625 /* Handle a "aligned" attribute; arguments as in
4626 struct attribute_spec.handler. */
4627
4628 static tree
4629 handle_aligned_attribute (tree *node, tree ARG_UNUSED (name), tree args,
4630 int flags, bool *no_add_attrs)
4631 {
4632 tree decl = NULL_TREE;
4633 tree *type = NULL;
4634 int is_type = 0;
4635 tree align_expr = (args ? TREE_VALUE (args)
4636 : size_int (BIGGEST_ALIGNMENT / BITS_PER_UNIT));
4637 int i;
4638
4639 if (DECL_P (*node))
4640 {
4641 decl = *node;
4642 type = &TREE_TYPE (decl);
4643 is_type = TREE_CODE (*node) == TYPE_DECL;
4644 }
4645 else if (TYPE_P (*node))
4646 type = node, is_type = 1;
4647
4648 if (TREE_CODE (align_expr) != INTEGER_CST)
4649 {
4650 error ("requested alignment is not a constant");
4651 *no_add_attrs = true;
4652 }
4653 else if ((i = tree_log2 (align_expr)) == -1)
4654 {
4655 error ("requested alignment is not a power of 2");
4656 *no_add_attrs = true;
4657 }
4658 else if (i > HOST_BITS_PER_INT - 2)
4659 {
4660 error ("requested alignment is too large");
4661 *no_add_attrs = true;
4662 }
4663 else if (is_type)
4664 {
4665 /* If we have a TYPE_DECL, then copy the type, so that we
4666 don't accidentally modify a builtin type. See pushdecl. */
4667 if (decl && TREE_TYPE (decl) != error_mark_node
4668 && DECL_ORIGINAL_TYPE (decl) == NULL_TREE)
4669 {
4670 tree tt = TREE_TYPE (decl);
4671 *type = build_variant_type_copy (*type);
4672 DECL_ORIGINAL_TYPE (decl) = tt;
4673 TYPE_NAME (*type) = decl;
4674 TREE_USED (*type) = TREE_USED (decl);
4675 TREE_TYPE (decl) = *type;
4676 }
4677 else if (!(flags & (int) ATTR_FLAG_TYPE_IN_PLACE))
4678 *type = build_variant_type_copy (*type);
4679
4680 TYPE_ALIGN (*type) = (1 << i) * BITS_PER_UNIT;
4681 TYPE_USER_ALIGN (*type) = 1;
4682 }
4683 else if (TREE_CODE (decl) != VAR_DECL
4684 && TREE_CODE (decl) != FIELD_DECL)
4685 {
4686 error ("alignment may not be specified for %q+D", decl);
4687 *no_add_attrs = true;
4688 }
4689 else
4690 {
4691 DECL_ALIGN (decl) = (1 << i) * BITS_PER_UNIT;
4692 DECL_USER_ALIGN (decl) = 1;
4693 }
4694
4695 return NULL_TREE;
4696 }
4697
4698 /* Handle a "weak" attribute; arguments as in
4699 struct attribute_spec.handler. */
4700
4701 static tree
4702 handle_weak_attribute (tree *node, tree ARG_UNUSED (name),
4703 tree ARG_UNUSED (args),
4704 int ARG_UNUSED (flags),
4705 bool * ARG_UNUSED (no_add_attrs))
4706 {
4707 declare_weak (*node);
4708
4709 return NULL_TREE;
4710 }
4711
4712 /* Handle an "alias" attribute; arguments as in
4713 struct attribute_spec.handler. */
4714
4715 static tree
4716 handle_alias_attribute (tree *node, tree name, tree args,
4717 int ARG_UNUSED (flags), bool *no_add_attrs)
4718 {
4719 tree decl = *node;
4720
4721 if ((TREE_CODE (decl) == FUNCTION_DECL && DECL_INITIAL (decl))
4722 || (TREE_CODE (decl) != FUNCTION_DECL
4723 && TREE_PUBLIC (decl) && !DECL_EXTERNAL (decl))
4724 /* A static variable declaration is always a tentative definition,
4725 but the alias is a non-tentative definition which overrides. */
4726 || (TREE_CODE (decl) != FUNCTION_DECL
4727 && ! TREE_PUBLIC (decl) && DECL_INITIAL (decl)))
4728 {
4729 error ("%q+D defined both normally and as an alias", decl);
4730 *no_add_attrs = true;
4731 }
4732
4733 /* Note that the very first time we process a nested declaration,
4734 decl_function_context will not be set. Indeed, *would* never
4735 be set except for the DECL_INITIAL/DECL_EXTERNAL frobbery that
4736 we do below. After such frobbery, pushdecl would set the context.
4737 In any case, this is never what we want. */
4738 else if (decl_function_context (decl) == 0 && current_function_decl == NULL)
4739 {
4740 tree id;
4741
4742 id = TREE_VALUE (args);
4743 if (TREE_CODE (id) != STRING_CST)
4744 {
4745 error ("alias argument not a string");
4746 *no_add_attrs = true;
4747 return NULL_TREE;
4748 }
4749 id = get_identifier (TREE_STRING_POINTER (id));
4750 /* This counts as a use of the object pointed to. */
4751 TREE_USED (id) = 1;
4752
4753 if (TREE_CODE (decl) == FUNCTION_DECL)
4754 DECL_INITIAL (decl) = error_mark_node;
4755 else
4756 {
4757 if (lookup_attribute ("weakref", DECL_ATTRIBUTES (decl)))
4758 DECL_EXTERNAL (decl) = 1;
4759 else
4760 DECL_EXTERNAL (decl) = 0;
4761 TREE_STATIC (decl) = 1;
4762 }
4763 }
4764 else
4765 {
4766 warning (OPT_Wattributes, "%qE attribute ignored", name);
4767 *no_add_attrs = true;
4768 }
4769
4770 return NULL_TREE;
4771 }
4772
4773 /* Handle a "weakref" attribute; arguments as in struct
4774 attribute_spec.handler. */
4775
4776 static tree
4777 handle_weakref_attribute (tree *node, tree ARG_UNUSED (name), tree args,
4778 int flags, bool *no_add_attrs)
4779 {
4780 tree attr = NULL_TREE;
4781
4782 /* The idea here is that `weakref("name")' mutates into `weakref,
4783 alias("name")', and weakref without arguments, in turn,
4784 implicitly adds weak. */
4785
4786 if (args)
4787 {
4788 attr = tree_cons (get_identifier ("alias"), args, attr);
4789 attr = tree_cons (get_identifier ("weakref"), NULL_TREE, attr);
4790
4791 *no_add_attrs = true;
4792
4793 decl_attributes (node, attr, flags);
4794 }
4795 else
4796 {
4797 if (lookup_attribute ("alias", DECL_ATTRIBUTES (*node)))
4798 error ("%Jweakref attribute must appear before alias attribute",
4799 *node);
4800
4801 /* Can't call declare_weak because it wants this to be TREE_PUBLIC,
4802 and that isn't supported; and because it wants to add it to
4803 the list of weak decls, which isn't helpful. */
4804 DECL_WEAK (*node) = 1;
4805 }
4806
4807 return NULL_TREE;
4808 }
4809
4810 /* Handle an "visibility" attribute; arguments as in
4811 struct attribute_spec.handler. */
4812
4813 static tree
4814 handle_visibility_attribute (tree *node, tree name, tree args,
4815 int ARG_UNUSED (flags),
4816 bool *no_add_attrs)
4817 {
4818 tree decl = *node;
4819 tree id = TREE_VALUE (args);
4820
4821 *no_add_attrs = true;
4822
4823 if (TYPE_P (*node))
4824 {
4825 if (TREE_CODE (*node) != RECORD_TYPE && TREE_CODE (*node) != UNION_TYPE)
4826 {
4827 warning (OPT_Wattributes, "%qE attribute ignored on non-class types",
4828 name);
4829 return NULL_TREE;
4830 }
4831 }
4832 else if (decl_function_context (decl) != 0 || !TREE_PUBLIC (decl))
4833 {
4834 warning (OPT_Wattributes, "%qE attribute ignored", name);
4835 return NULL_TREE;
4836 }
4837
4838 if (TREE_CODE (id) != STRING_CST)
4839 {
4840 error ("visibility argument not a string");
4841 return NULL_TREE;
4842 }
4843
4844 /* If this is a type, set the visibility on the type decl. */
4845 if (TYPE_P (decl))
4846 {
4847 decl = TYPE_NAME (decl);
4848 if (!decl)
4849 return NULL_TREE;
4850 if (TREE_CODE (decl) == IDENTIFIER_NODE)
4851 {
4852 warning (OPT_Wattributes, "%qE attribute ignored on types",
4853 name);
4854 return NULL_TREE;
4855 }
4856 }
4857
4858 if (strcmp (TREE_STRING_POINTER (id), "default") == 0)
4859 DECL_VISIBILITY (decl) = VISIBILITY_DEFAULT;
4860 else if (strcmp (TREE_STRING_POINTER (id), "internal") == 0)
4861 DECL_VISIBILITY (decl) = VISIBILITY_INTERNAL;
4862 else if (strcmp (TREE_STRING_POINTER (id), "hidden") == 0)
4863 DECL_VISIBILITY (decl) = VISIBILITY_HIDDEN;
4864 else if (strcmp (TREE_STRING_POINTER (id), "protected") == 0)
4865 DECL_VISIBILITY (decl) = VISIBILITY_PROTECTED;
4866 else
4867 error ("visibility argument must be one of \"default\", \"hidden\", \"protected\" or \"internal\"");
4868 DECL_VISIBILITY_SPECIFIED (decl) = 1;
4869
4870 /* For decls only, go ahead and attach the attribute to the node as well.
4871 This is needed so we can determine whether we have VISIBILITY_DEFAULT
4872 because the visibility was not specified, or because it was explicitly
4873 overridden from the class visibility. */
4874 if (DECL_P (*node))
4875 *no_add_attrs = false;
4876
4877 return NULL_TREE;
4878 }
4879
4880 /* Determine the ELF symbol visibility for DECL, which is either a
4881 variable or a function. It is an error to use this function if a
4882 definition of DECL is not available in this translation unit.
4883 Returns true if the final visibility has been determined by this
4884 function; false if the caller is free to make additional
4885 modifications. */
4886
4887 bool
4888 c_determine_visibility (tree decl)
4889 {
4890 gcc_assert (TREE_CODE (decl) == VAR_DECL
4891 || TREE_CODE (decl) == FUNCTION_DECL);
4892
4893 /* If the user explicitly specified the visibility with an
4894 attribute, honor that. DECL_VISIBILITY will have been set during
4895 the processing of the attribute. We check for an explicit
4896 attribute, rather than just checking DECL_VISIBILITY_SPECIFIED,
4897 to distinguish the use of an attribute from the use of a "#pragma
4898 GCC visibility push(...)"; in the latter case we still want other
4899 considerations to be able to overrule the #pragma. */
4900 if (lookup_attribute ("visibility", DECL_ATTRIBUTES (decl)))
4901 return true;
4902
4903 /* Anything that is exported must have default visibility. */
4904 if (TARGET_DLLIMPORT_DECL_ATTRIBUTES
4905 && lookup_attribute ("dllexport", DECL_ATTRIBUTES (decl)))
4906 {
4907 DECL_VISIBILITY (decl) = VISIBILITY_DEFAULT;
4908 DECL_VISIBILITY_SPECIFIED (decl) = 1;
4909 return true;
4910 }
4911
4912 return false;
4913 }
4914
4915 /* Handle an "tls_model" attribute; arguments as in
4916 struct attribute_spec.handler. */
4917
4918 static tree
4919 handle_tls_model_attribute (tree *node, tree name, tree args,
4920 int ARG_UNUSED (flags), bool *no_add_attrs)
4921 {
4922 tree id;
4923 tree decl = *node;
4924 enum tls_model kind;
4925
4926 *no_add_attrs = true;
4927
4928 if (!DECL_THREAD_LOCAL_P (decl))
4929 {
4930 warning (OPT_Wattributes, "%qE attribute ignored", name);
4931 return NULL_TREE;
4932 }
4933
4934 kind = DECL_TLS_MODEL (decl);
4935 id = TREE_VALUE (args);
4936 if (TREE_CODE (id) != STRING_CST)
4937 {
4938 error ("tls_model argument not a string");
4939 return NULL_TREE;
4940 }
4941
4942 if (!strcmp (TREE_STRING_POINTER (id), "local-exec"))
4943 kind = TLS_MODEL_LOCAL_EXEC;
4944 else if (!strcmp (TREE_STRING_POINTER (id), "initial-exec"))
4945 kind = TLS_MODEL_INITIAL_EXEC;
4946 else if (!strcmp (TREE_STRING_POINTER (id), "local-dynamic"))
4947 kind = optimize ? TLS_MODEL_LOCAL_DYNAMIC : TLS_MODEL_GLOBAL_DYNAMIC;
4948 else if (!strcmp (TREE_STRING_POINTER (id), "global-dynamic"))
4949 kind = TLS_MODEL_GLOBAL_DYNAMIC;
4950 else
4951 error ("tls_model argument must be one of \"local-exec\", \"initial-exec\", \"local-dynamic\" or \"global-dynamic\"");
4952
4953 DECL_TLS_MODEL (decl) = kind;
4954 return NULL_TREE;
4955 }
4956
4957 /* Handle a "no_instrument_function" attribute; arguments as in
4958 struct attribute_spec.handler. */
4959
4960 static tree
4961 handle_no_instrument_function_attribute (tree *node, tree name,
4962 tree ARG_UNUSED (args),
4963 int ARG_UNUSED (flags),
4964 bool *no_add_attrs)
4965 {
4966 tree decl = *node;
4967
4968 if (TREE_CODE (decl) != FUNCTION_DECL)
4969 {
4970 error ("%J%qE attribute applies only to functions", decl, name);
4971 *no_add_attrs = true;
4972 }
4973 else if (DECL_INITIAL (decl))
4974 {
4975 error ("%Jcan%'t set %qE attribute after definition", decl, name);
4976 *no_add_attrs = true;
4977 }
4978 else
4979 DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT (decl) = 1;
4980
4981 return NULL_TREE;
4982 }
4983
4984 /* Handle a "malloc" attribute; arguments as in
4985 struct attribute_spec.handler. */
4986
4987 static tree
4988 handle_malloc_attribute (tree *node, tree name, tree ARG_UNUSED (args),
4989 int ARG_UNUSED (flags), bool *no_add_attrs)
4990 {
4991 if (TREE_CODE (*node) == FUNCTION_DECL
4992 && POINTER_TYPE_P (TREE_TYPE (TREE_TYPE (*node))))
4993 DECL_IS_MALLOC (*node) = 1;
4994 else
4995 {
4996 warning (OPT_Wattributes, "%qE attribute ignored", name);
4997 *no_add_attrs = true;
4998 }
4999
5000 return NULL_TREE;
5001 }
5002
5003 /* Handle a "returns_twice" attribute; arguments as in
5004 struct attribute_spec.handler. */
5005
5006 static tree
5007 handle_returns_twice_attribute (tree *node, tree name, tree ARG_UNUSED (args),
5008 int ARG_UNUSED (flags), bool *no_add_attrs)
5009 {
5010 if (TREE_CODE (*node) == FUNCTION_DECL)
5011 DECL_IS_RETURNS_TWICE (*node) = 1;
5012 else
5013 {
5014 warning (OPT_Wattributes, "%qE attribute ignored", name);
5015 *no_add_attrs = true;
5016 }
5017
5018 return NULL_TREE;
5019 }
5020
5021 /* Handle a "no_limit_stack" attribute; arguments as in
5022 struct attribute_spec.handler. */
5023
5024 static tree
5025 handle_no_limit_stack_attribute (tree *node, tree name,
5026 tree ARG_UNUSED (args),
5027 int ARG_UNUSED (flags),
5028 bool *no_add_attrs)
5029 {
5030 tree decl = *node;
5031
5032 if (TREE_CODE (decl) != FUNCTION_DECL)
5033 {
5034 error ("%J%qE attribute applies only to functions", decl, name);
5035 *no_add_attrs = true;
5036 }
5037 else if (DECL_INITIAL (decl))
5038 {
5039 error ("%Jcan%'t set %qE attribute after definition", decl, name);
5040 *no_add_attrs = true;
5041 }
5042 else
5043 DECL_NO_LIMIT_STACK (decl) = 1;
5044
5045 return NULL_TREE;
5046 }
5047
5048 /* Handle a "pure" attribute; arguments as in
5049 struct attribute_spec.handler. */
5050
5051 static tree
5052 handle_pure_attribute (tree *node, tree name, tree ARG_UNUSED (args),
5053 int ARG_UNUSED (flags), bool *no_add_attrs)
5054 {
5055 if (TREE_CODE (*node) == FUNCTION_DECL)
5056 DECL_IS_PURE (*node) = 1;
5057 /* ??? TODO: Support types. */
5058 else
5059 {
5060 warning (OPT_Wattributes, "%qE attribute ignored", name);
5061 *no_add_attrs = true;
5062 }
5063
5064 return NULL_TREE;
5065 }
5066
5067 /* Handle a "no vops" attribute; arguments as in
5068 struct attribute_spec.handler. */
5069
5070 static tree
5071 handle_novops_attribute (tree *node, tree ARG_UNUSED (name),
5072 tree ARG_UNUSED (args), int ARG_UNUSED (flags),
5073 bool *ARG_UNUSED (no_add_attrs))
5074 {
5075 gcc_assert (TREE_CODE (*node) == FUNCTION_DECL);
5076 DECL_IS_NOVOPS (*node) = 1;
5077 return NULL_TREE;
5078 }
5079
5080 /* Handle a "deprecated" attribute; arguments as in
5081 struct attribute_spec.handler. */
5082
5083 static tree
5084 handle_deprecated_attribute (tree *node, tree name,
5085 tree ARG_UNUSED (args), int flags,
5086 bool *no_add_attrs)
5087 {
5088 tree type = NULL_TREE;
5089 int warn = 0;
5090 tree what = NULL_TREE;
5091
5092 if (DECL_P (*node))
5093 {
5094 tree decl = *node;
5095 type = TREE_TYPE (decl);
5096
5097 if (TREE_CODE (decl) == TYPE_DECL
5098 || TREE_CODE (decl) == PARM_DECL
5099 || TREE_CODE (decl) == VAR_DECL
5100 || TREE_CODE (decl) == FUNCTION_DECL
5101 || TREE_CODE (decl) == FIELD_DECL)
5102 TREE_DEPRECATED (decl) = 1;
5103 else
5104 warn = 1;
5105 }
5106 else if (TYPE_P (*node))
5107 {
5108 if (!(flags & (int) ATTR_FLAG_TYPE_IN_PLACE))
5109 *node = build_variant_type_copy (*node);
5110 TREE_DEPRECATED (*node) = 1;
5111 type = *node;
5112 }
5113 else
5114 warn = 1;
5115
5116 if (warn)
5117 {
5118 *no_add_attrs = true;
5119 if (type && TYPE_NAME (type))
5120 {
5121 if (TREE_CODE (TYPE_NAME (type)) == IDENTIFIER_NODE)
5122 what = TYPE_NAME (*node);
5123 else if (TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
5124 && DECL_NAME (TYPE_NAME (type)))
5125 what = DECL_NAME (TYPE_NAME (type));
5126 }
5127 if (what)
5128 warning (OPT_Wattributes, "%qE attribute ignored for %qE", name, what);
5129 else
5130 warning (OPT_Wattributes, "%qE attribute ignored", name);
5131 }
5132
5133 return NULL_TREE;
5134 }
5135
5136 /* Handle a "vector_size" attribute; arguments as in
5137 struct attribute_spec.handler. */
5138
5139 static tree
5140 handle_vector_size_attribute (tree *node, tree name, tree args,
5141 int ARG_UNUSED (flags),
5142 bool *no_add_attrs)
5143 {
5144 unsigned HOST_WIDE_INT vecsize, nunits;
5145 enum machine_mode orig_mode;
5146 tree type = *node, new_type, size;
5147
5148 *no_add_attrs = true;
5149
5150 size = TREE_VALUE (args);
5151
5152 if (!host_integerp (size, 1))
5153 {
5154 warning (OPT_Wattributes, "%qE attribute ignored", name);
5155 return NULL_TREE;
5156 }
5157
5158 /* Get the vector size (in bytes). */
5159 vecsize = tree_low_cst (size, 1);
5160
5161 /* We need to provide for vector pointers, vector arrays, and
5162 functions returning vectors. For example:
5163
5164 __attribute__((vector_size(16))) short *foo;
5165
5166 In this case, the mode is SI, but the type being modified is
5167 HI, so we need to look further. */
5168
5169 while (POINTER_TYPE_P (type)
5170 || TREE_CODE (type) == FUNCTION_TYPE
5171 || TREE_CODE (type) == METHOD_TYPE
5172 || TREE_CODE (type) == ARRAY_TYPE)
5173 type = TREE_TYPE (type);
5174
5175 /* Get the mode of the type being modified. */
5176 orig_mode = TYPE_MODE (type);
5177
5178 if (TREE_CODE (type) == RECORD_TYPE
5179 || (!SCALAR_FLOAT_MODE_P (orig_mode)
5180 && GET_MODE_CLASS (orig_mode) != MODE_INT)
5181 || !host_integerp (TYPE_SIZE_UNIT (type), 1))
5182 {
5183 error ("invalid vector type for attribute %qE", name);
5184 return NULL_TREE;
5185 }
5186
5187 /* Calculate how many units fit in the vector. */
5188 nunits = vecsize / tree_low_cst (TYPE_SIZE_UNIT (type), 1);
5189 if (nunits & (nunits - 1))
5190 {
5191 error ("number of components of the vector not a power of two");
5192 return NULL_TREE;
5193 }
5194
5195 new_type = build_vector_type (type, nunits);
5196
5197 /* Build back pointers if needed. */
5198 *node = reconstruct_complex_type (*node, new_type);
5199
5200 return NULL_TREE;
5201 }
5202
5203 /* Handle the "nonnull" attribute. */
5204 static tree
5205 handle_nonnull_attribute (tree *node, tree ARG_UNUSED (name),
5206 tree args, int ARG_UNUSED (flags),
5207 bool *no_add_attrs)
5208 {
5209 tree type = *node;
5210 unsigned HOST_WIDE_INT attr_arg_num;
5211
5212 /* If no arguments are specified, all pointer arguments should be
5213 non-null. Verify a full prototype is given so that the arguments
5214 will have the correct types when we actually check them later. */
5215 if (!args)
5216 {
5217 if (!TYPE_ARG_TYPES (type))
5218 {
5219 error ("nonnull attribute without arguments on a non-prototype");
5220 *no_add_attrs = true;
5221 }
5222 return NULL_TREE;
5223 }
5224
5225 /* Argument list specified. Verify that each argument number references
5226 a pointer argument. */
5227 for (attr_arg_num = 1; args; args = TREE_CHAIN (args))
5228 {
5229 tree argument;
5230 unsigned HOST_WIDE_INT arg_num = 0, ck_num;
5231
5232 if (!get_nonnull_operand (TREE_VALUE (args), &arg_num))
5233 {
5234 error ("nonnull argument has invalid operand number (argument %lu)",
5235 (unsigned long) attr_arg_num);
5236 *no_add_attrs = true;
5237 return NULL_TREE;
5238 }
5239
5240 argument = TYPE_ARG_TYPES (type);
5241 if (argument)
5242 {
5243 for (ck_num = 1; ; ck_num++)
5244 {
5245 if (!argument || ck_num == arg_num)
5246 break;
5247 argument = TREE_CHAIN (argument);
5248 }
5249
5250 if (!argument
5251 || TREE_CODE (TREE_VALUE (argument)) == VOID_TYPE)
5252 {
5253 error ("nonnull argument with out-of-range operand number (argument %lu, operand %lu)",
5254 (unsigned long) attr_arg_num, (unsigned long) arg_num);
5255 *no_add_attrs = true;
5256 return NULL_TREE;
5257 }
5258
5259 if (TREE_CODE (TREE_VALUE (argument)) != POINTER_TYPE)
5260 {
5261 error ("nonnull argument references non-pointer operand (argument %lu, operand %lu)",
5262 (unsigned long) attr_arg_num, (unsigned long) arg_num);
5263 *no_add_attrs = true;
5264 return NULL_TREE;
5265 }
5266 }
5267 }
5268
5269 return NULL_TREE;
5270 }
5271
5272 /* Check the argument list of a function call for null in argument slots
5273 that are marked as requiring a non-null pointer argument. */
5274
5275 static void
5276 check_function_nonnull (tree attrs, tree params)
5277 {
5278 tree a, args, param;
5279 int param_num;
5280
5281 for (a = attrs; a; a = TREE_CHAIN (a))
5282 {
5283 if (is_attribute_p ("nonnull", TREE_PURPOSE (a)))
5284 {
5285 args = TREE_VALUE (a);
5286
5287 /* Walk the argument list. If we encounter an argument number we
5288 should check for non-null, do it. If the attribute has no args,
5289 then every pointer argument is checked (in which case the check
5290 for pointer type is done in check_nonnull_arg). */
5291 for (param = params, param_num = 1; ;
5292 param_num++, param = TREE_CHAIN (param))
5293 {
5294 if (!param)
5295 break;
5296 if (!args || nonnull_check_p (args, param_num))
5297 check_function_arguments_recurse (check_nonnull_arg, NULL,
5298 TREE_VALUE (param),
5299 param_num);
5300 }
5301 }
5302 }
5303 }
5304
5305 /* Check that the Nth argument of a function call (counting backwards
5306 from the end) is a (pointer)0. */
5307
5308 static void
5309 check_function_sentinel (tree attrs, tree params, tree typelist)
5310 {
5311 tree attr = lookup_attribute ("sentinel", attrs);
5312
5313 if (attr)
5314 {
5315 /* Skip over the named arguments. */
5316 while (typelist && params)
5317 {
5318 typelist = TREE_CHAIN (typelist);
5319 params = TREE_CHAIN (params);
5320 }
5321
5322 if (typelist || !params)
5323 warning (OPT_Wformat,
5324 "not enough variable arguments to fit a sentinel");
5325 else
5326 {
5327 tree sentinel, end;
5328 unsigned pos = 0;
5329
5330 if (TREE_VALUE (attr))
5331 {
5332 tree p = TREE_VALUE (TREE_VALUE (attr));
5333 pos = TREE_INT_CST_LOW (p);
5334 }
5335
5336 sentinel = end = params;
5337
5338 /* Advance `end' ahead of `sentinel' by `pos' positions. */
5339 while (pos > 0 && TREE_CHAIN (end))
5340 {
5341 pos--;
5342 end = TREE_CHAIN (end);
5343 }
5344 if (pos > 0)
5345 {
5346 warning (OPT_Wformat,
5347 "not enough variable arguments to fit a sentinel");
5348 return;
5349 }
5350
5351 /* Now advance both until we find the last parameter. */
5352 while (TREE_CHAIN (end))
5353 {
5354 end = TREE_CHAIN (end);
5355 sentinel = TREE_CHAIN (sentinel);
5356 }
5357
5358 /* Validate the sentinel. */
5359 if ((!POINTER_TYPE_P (TREE_TYPE (TREE_VALUE (sentinel)))
5360 || !integer_zerop (TREE_VALUE (sentinel)))
5361 /* Although __null (in C++) is only an integer we allow it
5362 nevertheless, as we are guaranteed that it's exactly
5363 as wide as a pointer, and we don't want to force
5364 users to cast the NULL they have written there.
5365 We warn with -Wstrict-null-sentinel, though. */
5366 && (warn_strict_null_sentinel
5367 || null_node != TREE_VALUE (sentinel)))
5368 warning (OPT_Wformat, "missing sentinel in function call");
5369 }
5370 }
5371 }
5372
5373 /* Helper for check_function_nonnull; given a list of operands which
5374 must be non-null in ARGS, determine if operand PARAM_NUM should be
5375 checked. */
5376
5377 static bool
5378 nonnull_check_p (tree args, unsigned HOST_WIDE_INT param_num)
5379 {
5380 unsigned HOST_WIDE_INT arg_num = 0;
5381
5382 for (; args; args = TREE_CHAIN (args))
5383 {
5384 bool found = get_nonnull_operand (TREE_VALUE (args), &arg_num);
5385
5386 gcc_assert (found);
5387
5388 if (arg_num == param_num)
5389 return true;
5390 }
5391 return false;
5392 }
5393
5394 /* Check that the function argument PARAM (which is operand number
5395 PARAM_NUM) is non-null. This is called by check_function_nonnull
5396 via check_function_arguments_recurse. */
5397
5398 static void
5399 check_nonnull_arg (void * ARG_UNUSED (ctx), tree param,
5400 unsigned HOST_WIDE_INT param_num)
5401 {
5402 /* Just skip checking the argument if it's not a pointer. This can
5403 happen if the "nonnull" attribute was given without an operand
5404 list (which means to check every pointer argument). */
5405
5406 if (TREE_CODE (TREE_TYPE (param)) != POINTER_TYPE)
5407 return;
5408
5409 if (integer_zerop (param))
5410 warning (OPT_Wnonnull, "null argument where non-null required "
5411 "(argument %lu)", (unsigned long) param_num);
5412 }
5413
5414 /* Helper for nonnull attribute handling; fetch the operand number
5415 from the attribute argument list. */
5416
5417 static bool
5418 get_nonnull_operand (tree arg_num_expr, unsigned HOST_WIDE_INT *valp)
5419 {
5420 /* Verify the arg number is a constant. */
5421 if (TREE_CODE (arg_num_expr) != INTEGER_CST
5422 || TREE_INT_CST_HIGH (arg_num_expr) != 0)
5423 return false;
5424
5425 *valp = TREE_INT_CST_LOW (arg_num_expr);
5426 return true;
5427 }
5428
5429 /* Handle a "nothrow" attribute; arguments as in
5430 struct attribute_spec.handler. */
5431
5432 static tree
5433 handle_nothrow_attribute (tree *node, tree name, tree ARG_UNUSED (args),
5434 int ARG_UNUSED (flags), bool *no_add_attrs)
5435 {
5436 if (TREE_CODE (*node) == FUNCTION_DECL)
5437 TREE_NOTHROW (*node) = 1;
5438 /* ??? TODO: Support types. */
5439 else
5440 {
5441 warning (OPT_Wattributes, "%qE attribute ignored", name);
5442 *no_add_attrs = true;
5443 }
5444
5445 return NULL_TREE;
5446 }
5447
5448 /* Handle a "cleanup" attribute; arguments as in
5449 struct attribute_spec.handler. */
5450
5451 static tree
5452 handle_cleanup_attribute (tree *node, tree name, tree args,
5453 int ARG_UNUSED (flags), bool *no_add_attrs)
5454 {
5455 tree decl = *node;
5456 tree cleanup_id, cleanup_decl;
5457
5458 /* ??? Could perhaps support cleanups on TREE_STATIC, much like we do
5459 for global destructors in C++. This requires infrastructure that
5460 we don't have generically at the moment. It's also not a feature
5461 we'd be missing too much, since we do have attribute constructor. */
5462 if (TREE_CODE (decl) != VAR_DECL || TREE_STATIC (decl))
5463 {
5464 warning (OPT_Wattributes, "%qE attribute ignored", name);
5465 *no_add_attrs = true;
5466 return NULL_TREE;
5467 }
5468
5469 /* Verify that the argument is a function in scope. */
5470 /* ??? We could support pointers to functions here as well, if
5471 that was considered desirable. */
5472 cleanup_id = TREE_VALUE (args);
5473 if (TREE_CODE (cleanup_id) != IDENTIFIER_NODE)
5474 {
5475 error ("cleanup argument not an identifier");
5476 *no_add_attrs = true;
5477 return NULL_TREE;
5478 }
5479 cleanup_decl = lookup_name (cleanup_id);
5480 if (!cleanup_decl || TREE_CODE (cleanup_decl) != FUNCTION_DECL)
5481 {
5482 error ("cleanup argument not a function");
5483 *no_add_attrs = true;
5484 return NULL_TREE;
5485 }
5486
5487 /* That the function has proper type is checked with the
5488 eventual call to build_function_call. */
5489
5490 return NULL_TREE;
5491 }
5492
5493 /* Handle a "warn_unused_result" attribute. No special handling. */
5494
5495 static tree
5496 handle_warn_unused_result_attribute (tree *node, tree name,
5497 tree ARG_UNUSED (args),
5498 int ARG_UNUSED (flags), bool *no_add_attrs)
5499 {
5500 /* Ignore the attribute for functions not returning any value. */
5501 if (VOID_TYPE_P (TREE_TYPE (*node)))
5502 {
5503 warning (OPT_Wattributes, "%qE attribute ignored", name);
5504 *no_add_attrs = true;
5505 }
5506
5507 return NULL_TREE;
5508 }
5509
5510 /* Handle a "sentinel" attribute. */
5511
5512 static tree
5513 handle_sentinel_attribute (tree *node, tree name, tree args,
5514 int ARG_UNUSED (flags), bool *no_add_attrs)
5515 {
5516 tree params = TYPE_ARG_TYPES (*node);
5517
5518 if (!params)
5519 {
5520 warning (OPT_Wattributes,
5521 "%qE attribute requires prototypes with named arguments", name);
5522 *no_add_attrs = true;
5523 }
5524 else
5525 {
5526 while (TREE_CHAIN (params))
5527 params = TREE_CHAIN (params);
5528
5529 if (VOID_TYPE_P (TREE_VALUE (params)))
5530 {
5531 warning (OPT_Wattributes,
5532 "%qE attribute only applies to variadic functions", name);
5533 *no_add_attrs = true;
5534 }
5535 }
5536
5537 if (args)
5538 {
5539 tree position = TREE_VALUE (args);
5540
5541 if (TREE_CODE (position) != INTEGER_CST)
5542 {
5543 warning (0, "requested position is not an integer constant");
5544 *no_add_attrs = true;
5545 }
5546 else
5547 {
5548 if (tree_int_cst_lt (position, integer_zero_node))
5549 {
5550 warning (0, "requested position is less than zero");
5551 *no_add_attrs = true;
5552 }
5553 }
5554 }
5555
5556 return NULL_TREE;
5557 }
5558 \f
5559 /* Check for valid arguments being passed to a function. */
5560 void
5561 check_function_arguments (tree attrs, tree params, tree typelist)
5562 {
5563 /* Check for null being passed in a pointer argument that must be
5564 non-null. We also need to do this if format checking is enabled. */
5565
5566 if (warn_nonnull)
5567 check_function_nonnull (attrs, params);
5568
5569 /* Check for errors in format strings. */
5570
5571 if (warn_format || warn_missing_format_attribute)
5572 check_function_format (attrs, params);
5573
5574 if (warn_format)
5575 check_function_sentinel (attrs, params, typelist);
5576 }
5577
5578 /* Generic argument checking recursion routine. PARAM is the argument to
5579 be checked. PARAM_NUM is the number of the argument. CALLBACK is invoked
5580 once the argument is resolved. CTX is context for the callback. */
5581 void
5582 check_function_arguments_recurse (void (*callback)
5583 (void *, tree, unsigned HOST_WIDE_INT),
5584 void *ctx, tree param,
5585 unsigned HOST_WIDE_INT param_num)
5586 {
5587 if ((TREE_CODE (param) == NOP_EXPR || TREE_CODE (param) == CONVERT_EXPR)
5588 && (TYPE_PRECISION (TREE_TYPE (param))
5589 == TYPE_PRECISION (TREE_TYPE (TREE_OPERAND (param, 0)))))
5590 {
5591 /* Strip coercion. */
5592 check_function_arguments_recurse (callback, ctx,
5593 TREE_OPERAND (param, 0), param_num);
5594 return;
5595 }
5596
5597 if (TREE_CODE (param) == CALL_EXPR)
5598 {
5599 tree type = TREE_TYPE (TREE_TYPE (TREE_OPERAND (param, 0)));
5600 tree attrs;
5601 bool found_format_arg = false;
5602
5603 /* See if this is a call to a known internationalization function
5604 that modifies a format arg. Such a function may have multiple
5605 format_arg attributes (for example, ngettext). */
5606
5607 for (attrs = TYPE_ATTRIBUTES (type);
5608 attrs;
5609 attrs = TREE_CHAIN (attrs))
5610 if (is_attribute_p ("format_arg", TREE_PURPOSE (attrs)))
5611 {
5612 tree inner_args;
5613 tree format_num_expr;
5614 int format_num;
5615 int i;
5616
5617 /* Extract the argument number, which was previously checked
5618 to be valid. */
5619 format_num_expr = TREE_VALUE (TREE_VALUE (attrs));
5620
5621 gcc_assert (TREE_CODE (format_num_expr) == INTEGER_CST
5622 && !TREE_INT_CST_HIGH (format_num_expr));
5623
5624 format_num = TREE_INT_CST_LOW (format_num_expr);
5625
5626 for (inner_args = TREE_OPERAND (param, 1), i = 1;
5627 inner_args != 0;
5628 inner_args = TREE_CHAIN (inner_args), i++)
5629 if (i == format_num)
5630 {
5631 check_function_arguments_recurse (callback, ctx,
5632 TREE_VALUE (inner_args),
5633 param_num);
5634 found_format_arg = true;
5635 break;
5636 }
5637 }
5638
5639 /* If we found a format_arg attribute and did a recursive check,
5640 we are done with checking this argument. Otherwise, we continue
5641 and this will be considered a non-literal. */
5642 if (found_format_arg)
5643 return;
5644 }
5645
5646 if (TREE_CODE (param) == COND_EXPR)
5647 {
5648 /* Check both halves of the conditional expression. */
5649 check_function_arguments_recurse (callback, ctx,
5650 TREE_OPERAND (param, 1), param_num);
5651 check_function_arguments_recurse (callback, ctx,
5652 TREE_OPERAND (param, 2), param_num);
5653 return;
5654 }
5655
5656 (*callback) (ctx, param, param_num);
5657 }
5658
5659 /* Function to help qsort sort FIELD_DECLs by name order. */
5660
5661 int
5662 field_decl_cmp (const void *x_p, const void *y_p)
5663 {
5664 const tree *const x = (const tree *const) x_p;
5665 const tree *const y = (const tree *const) y_p;
5666
5667 if (DECL_NAME (*x) == DECL_NAME (*y))
5668 /* A nontype is "greater" than a type. */
5669 return (TREE_CODE (*y) == TYPE_DECL) - (TREE_CODE (*x) == TYPE_DECL);
5670 if (DECL_NAME (*x) == NULL_TREE)
5671 return -1;
5672 if (DECL_NAME (*y) == NULL_TREE)
5673 return 1;
5674 if (DECL_NAME (*x) < DECL_NAME (*y))
5675 return -1;
5676 return 1;
5677 }
5678
5679 static struct {
5680 gt_pointer_operator new_value;
5681 void *cookie;
5682 } resort_data;
5683
5684 /* This routine compares two fields like field_decl_cmp but using the
5685 pointer operator in resort_data. */
5686
5687 static int
5688 resort_field_decl_cmp (const void *x_p, const void *y_p)
5689 {
5690 const tree *const x = (const tree *const) x_p;
5691 const tree *const y = (const tree *const) y_p;
5692
5693 if (DECL_NAME (*x) == DECL_NAME (*y))
5694 /* A nontype is "greater" than a type. */
5695 return (TREE_CODE (*y) == TYPE_DECL) - (TREE_CODE (*x) == TYPE_DECL);
5696 if (DECL_NAME (*x) == NULL_TREE)
5697 return -1;
5698 if (DECL_NAME (*y) == NULL_TREE)
5699 return 1;
5700 {
5701 tree d1 = DECL_NAME (*x);
5702 tree d2 = DECL_NAME (*y);
5703 resort_data.new_value (&d1, resort_data.cookie);
5704 resort_data.new_value (&d2, resort_data.cookie);
5705 if (d1 < d2)
5706 return -1;
5707 }
5708 return 1;
5709 }
5710
5711 /* Resort DECL_SORTED_FIELDS because pointers have been reordered. */
5712
5713 void
5714 resort_sorted_fields (void *obj,
5715 void * ARG_UNUSED (orig_obj),
5716 gt_pointer_operator new_value,
5717 void *cookie)
5718 {
5719 struct sorted_fields_type *sf = (struct sorted_fields_type *) obj;
5720 resort_data.new_value = new_value;
5721 resort_data.cookie = cookie;
5722 qsort (&sf->elts[0], sf->len, sizeof (tree),
5723 resort_field_decl_cmp);
5724 }
5725
5726 /* Subroutine of c_parse_error.
5727 Return the result of concatenating LHS and RHS. RHS is really
5728 a string literal, its first character is indicated by RHS_START and
5729 RHS_SIZE is its length (including the terminating NUL character).
5730
5731 The caller is responsible for deleting the returned pointer. */
5732
5733 static char *
5734 catenate_strings (const char *lhs, const char *rhs_start, int rhs_size)
5735 {
5736 const int lhs_size = strlen (lhs);
5737 char *result = XNEWVEC (char, lhs_size + rhs_size);
5738 strncpy (result, lhs, lhs_size);
5739 strncpy (result + lhs_size, rhs_start, rhs_size);
5740 return result;
5741 }
5742
5743 /* Issue the error given by GMSGID, indicating that it occurred before
5744 TOKEN, which had the associated VALUE. */
5745
5746 void
5747 c_parse_error (const char *gmsgid, enum cpp_ttype token, tree value)
5748 {
5749 #define catenate_messages(M1, M2) catenate_strings ((M1), (M2), sizeof (M2))
5750
5751 char *message = NULL;
5752
5753 if (token == CPP_EOF)
5754 message = catenate_messages (gmsgid, " at end of input");
5755 else if (token == CPP_CHAR || token == CPP_WCHAR)
5756 {
5757 unsigned int val = TREE_INT_CST_LOW (value);
5758 const char *const ell = (token == CPP_CHAR) ? "" : "L";
5759 if (val <= UCHAR_MAX && ISGRAPH (val))
5760 message = catenate_messages (gmsgid, " before %s'%c'");
5761 else
5762 message = catenate_messages (gmsgid, " before %s'\\x%x'");
5763
5764 error (message, ell, val);
5765 free (message);
5766 message = NULL;
5767 }
5768 else if (token == CPP_STRING || token == CPP_WSTRING)
5769 message = catenate_messages (gmsgid, " before string constant");
5770 else if (token == CPP_NUMBER)
5771 message = catenate_messages (gmsgid, " before numeric constant");
5772 else if (token == CPP_NAME)
5773 {
5774 message = catenate_messages (gmsgid, " before %qE");
5775 error (message, value);
5776 free (message);
5777 message = NULL;
5778 }
5779 else if (token < N_TTYPES)
5780 {
5781 message = catenate_messages (gmsgid, " before %qs token");
5782 error (message, cpp_type2name (token));
5783 free (message);
5784 message = NULL;
5785 }
5786 else
5787 error (gmsgid);
5788
5789 if (message)
5790 {
5791 error (message);
5792 free (message);
5793 }
5794 #undef catenate_messages
5795 }
5796
5797 /* Walk a gimplified function and warn for functions whose return value is
5798 ignored and attribute((warn_unused_result)) is set. This is done before
5799 inlining, so we don't have to worry about that. */
5800
5801 void
5802 c_warn_unused_result (tree *top_p)
5803 {
5804 tree t = *top_p;
5805 tree_stmt_iterator i;
5806 tree fdecl, ftype;
5807
5808 switch (TREE_CODE (t))
5809 {
5810 case STATEMENT_LIST:
5811 for (i = tsi_start (*top_p); !tsi_end_p (i); tsi_next (&i))
5812 c_warn_unused_result (tsi_stmt_ptr (i));
5813 break;
5814
5815 case COND_EXPR:
5816 c_warn_unused_result (&COND_EXPR_THEN (t));
5817 c_warn_unused_result (&COND_EXPR_ELSE (t));
5818 break;
5819 case BIND_EXPR:
5820 c_warn_unused_result (&BIND_EXPR_BODY (t));
5821 break;
5822 case TRY_FINALLY_EXPR:
5823 case TRY_CATCH_EXPR:
5824 c_warn_unused_result (&TREE_OPERAND (t, 0));
5825 c_warn_unused_result (&TREE_OPERAND (t, 1));
5826 break;
5827 case CATCH_EXPR:
5828 c_warn_unused_result (&CATCH_BODY (t));
5829 break;
5830 case EH_FILTER_EXPR:
5831 c_warn_unused_result (&EH_FILTER_FAILURE (t));
5832 break;
5833
5834 case CALL_EXPR:
5835 if (TREE_USED (t))
5836 break;
5837
5838 /* This is a naked call, as opposed to a CALL_EXPR nested inside
5839 a MODIFY_EXPR. All calls whose value is ignored should be
5840 represented like this. Look for the attribute. */
5841 fdecl = get_callee_fndecl (t);
5842 if (fdecl)
5843 ftype = TREE_TYPE (fdecl);
5844 else
5845 {
5846 ftype = TREE_TYPE (TREE_OPERAND (t, 0));
5847 /* Look past pointer-to-function to the function type itself. */
5848 ftype = TREE_TYPE (ftype);
5849 }
5850
5851 if (lookup_attribute ("warn_unused_result", TYPE_ATTRIBUTES (ftype)))
5852 {
5853 if (fdecl)
5854 warning (0, "%Hignoring return value of %qD, "
5855 "declared with attribute warn_unused_result",
5856 EXPR_LOCUS (t), fdecl);
5857 else
5858 warning (0, "%Hignoring return value of function "
5859 "declared with attribute warn_unused_result",
5860 EXPR_LOCUS (t));
5861 }
5862 break;
5863
5864 default:
5865 /* Not a container, not a call, or a call whose value is used. */
5866 break;
5867 }
5868 }
5869
5870 /* Convert a character from the host to the target execution character
5871 set. cpplib handles this, mostly. */
5872
5873 HOST_WIDE_INT
5874 c_common_to_target_charset (HOST_WIDE_INT c)
5875 {
5876 /* Character constants in GCC proper are sign-extended under -fsigned-char,
5877 zero-extended under -fno-signed-char. cpplib insists that characters
5878 and character constants are always unsigned. Hence we must convert
5879 back and forth. */
5880 cppchar_t uc = ((cppchar_t)c) & ((((cppchar_t)1) << CHAR_BIT)-1);
5881
5882 uc = cpp_host_to_exec_charset (parse_in, uc);
5883
5884 if (flag_signed_char)
5885 return ((HOST_WIDE_INT)uc) << (HOST_BITS_PER_WIDE_INT - CHAR_TYPE_SIZE)
5886 >> (HOST_BITS_PER_WIDE_INT - CHAR_TYPE_SIZE);
5887 else
5888 return uc;
5889 }
5890
5891 /* Build the result of __builtin_offsetof. EXPR is a nested sequence of
5892 component references, with an INDIRECT_REF at the bottom; much like
5893 the traditional rendering of offsetof as a macro. Returns the folded
5894 and properly cast result. */
5895
5896 static tree
5897 fold_offsetof_1 (tree expr)
5898 {
5899 enum tree_code code = PLUS_EXPR;
5900 tree base, off, t;
5901
5902 switch (TREE_CODE (expr))
5903 {
5904 case ERROR_MARK:
5905 return expr;
5906
5907 case INDIRECT_REF:
5908 return size_zero_node;
5909
5910 case COMPONENT_REF:
5911 base = fold_offsetof_1 (TREE_OPERAND (expr, 0));
5912 if (base == error_mark_node)
5913 return base;
5914
5915 t = TREE_OPERAND (expr, 1);
5916 if (DECL_C_BIT_FIELD (t))
5917 {
5918 error ("attempt to take address of bit-field structure "
5919 "member %qD", t);
5920 return error_mark_node;
5921 }
5922 off = size_binop (PLUS_EXPR, DECL_FIELD_OFFSET (t),
5923 size_int (tree_low_cst (DECL_FIELD_BIT_OFFSET (t), 1)
5924 / BITS_PER_UNIT));
5925 break;
5926
5927 case ARRAY_REF:
5928 base = fold_offsetof_1 (TREE_OPERAND (expr, 0));
5929 if (base == error_mark_node)
5930 return base;
5931
5932 t = TREE_OPERAND (expr, 1);
5933 if (TREE_CODE (t) == INTEGER_CST && tree_int_cst_sgn (t) < 0)
5934 {
5935 code = MINUS_EXPR;
5936 t = fold_build1 (NEGATE_EXPR, TREE_TYPE (t), t);
5937 }
5938 t = convert (sizetype, t);
5939 off = size_binop (MULT_EXPR, TYPE_SIZE_UNIT (TREE_TYPE (expr)), t);
5940 break;
5941
5942 default:
5943 gcc_unreachable ();
5944 }
5945
5946 return size_binop (code, base, off);
5947 }
5948
5949 tree
5950 fold_offsetof (tree expr)
5951 {
5952 /* Convert back from the internal sizetype to size_t. */
5953 return convert (size_type_node, fold_offsetof_1 (expr));
5954 }
5955
5956 /* Print an error message for an invalid lvalue. USE says
5957 how the lvalue is being used and so selects the error message. */
5958
5959 void
5960 lvalue_error (enum lvalue_use use)
5961 {
5962 switch (use)
5963 {
5964 case lv_assign:
5965 error ("lvalue required as left operand of assignment");
5966 break;
5967 case lv_increment:
5968 error ("lvalue required as increment operand");
5969 break;
5970 case lv_decrement:
5971 error ("lvalue required as decrement operand");
5972 break;
5973 case lv_addressof:
5974 error ("lvalue required as unary %<&%> operand");
5975 break;
5976 case lv_asm:
5977 error ("lvalue required in asm statement");
5978 break;
5979 default:
5980 gcc_unreachable ();
5981 }
5982 }
5983 \f
5984 /* *PTYPE is an incomplete array. Complete it with a domain based on
5985 INITIAL_VALUE. If INITIAL_VALUE is not present, use 1 if DO_DEFAULT
5986 is true. Return 0 if successful, 1 if INITIAL_VALUE can't be deciphered,
5987 2 if INITIAL_VALUE was NULL, and 3 if INITIAL_VALUE was empty. */
5988
5989 int
5990 complete_array_type (tree *ptype, tree initial_value, bool do_default)
5991 {
5992 tree maxindex, type, main_type, elt, unqual_elt;
5993 int failure = 0, quals;
5994
5995 maxindex = size_zero_node;
5996 if (initial_value)
5997 {
5998 if (TREE_CODE (initial_value) == STRING_CST)
5999 {
6000 int eltsize
6001 = int_size_in_bytes (TREE_TYPE (TREE_TYPE (initial_value)));
6002 maxindex = size_int (TREE_STRING_LENGTH (initial_value)/eltsize - 1);
6003 }
6004 else if (TREE_CODE (initial_value) == CONSTRUCTOR)
6005 {
6006 VEC(constructor_elt,gc) *v = CONSTRUCTOR_ELTS (initial_value);
6007
6008 if (VEC_empty (constructor_elt, v))
6009 {
6010 if (pedantic)
6011 failure = 3;
6012 maxindex = integer_minus_one_node;
6013 }
6014 else
6015 {
6016 tree curindex;
6017 unsigned HOST_WIDE_INT cnt;
6018 constructor_elt *ce;
6019
6020 if (VEC_index (constructor_elt, v, 0)->index)
6021 maxindex = fold_convert (sizetype,
6022 VEC_index (constructor_elt,
6023 v, 0)->index);
6024 curindex = maxindex;
6025
6026 for (cnt = 1;
6027 VEC_iterate (constructor_elt, v, cnt, ce);
6028 cnt++)
6029 {
6030 if (ce->index)
6031 curindex = fold_convert (sizetype, ce->index);
6032 else
6033 curindex = size_binop (PLUS_EXPR, curindex, size_one_node);
6034
6035 if (tree_int_cst_lt (maxindex, curindex))
6036 maxindex = curindex;
6037 }
6038 }
6039 }
6040 else
6041 {
6042 /* Make an error message unless that happened already. */
6043 if (initial_value != error_mark_node)
6044 failure = 1;
6045 }
6046 }
6047 else
6048 {
6049 failure = 2;
6050 if (!do_default)
6051 return failure;
6052 }
6053
6054 type = *ptype;
6055 elt = TREE_TYPE (type);
6056 quals = TYPE_QUALS (strip_array_types (elt));
6057 if (quals == 0)
6058 unqual_elt = elt;
6059 else
6060 unqual_elt = c_build_qualified_type (elt, TYPE_UNQUALIFIED);
6061
6062 /* Using build_distinct_type_copy and modifying things afterward instead
6063 of using build_array_type to create a new type preserves all of the
6064 TYPE_LANG_FLAG_? bits that the front end may have set. */
6065 main_type = build_distinct_type_copy (TYPE_MAIN_VARIANT (type));
6066 TREE_TYPE (main_type) = unqual_elt;
6067 TYPE_DOMAIN (main_type) = build_index_type (maxindex);
6068 layout_type (main_type);
6069
6070 if (quals == 0)
6071 type = main_type;
6072 else
6073 type = c_build_qualified_type (main_type, quals);
6074
6075 *ptype = type;
6076 return failure;
6077 }
6078
6079 \f
6080 /* Used to help initialize the builtin-types.def table. When a type of
6081 the correct size doesn't exist, use error_mark_node instead of NULL.
6082 The later results in segfaults even when a decl using the type doesn't
6083 get invoked. */
6084
6085 tree
6086 builtin_type_for_size (int size, bool unsignedp)
6087 {
6088 tree type = lang_hooks.types.type_for_size (size, unsignedp);
6089 return type ? type : error_mark_node;
6090 }
6091
6092 /* A helper function for resolve_overloaded_builtin in resolving the
6093 overloaded __sync_ builtins. Returns a positive power of 2 if the
6094 first operand of PARAMS is a pointer to a supported data type.
6095 Returns 0 if an error is encountered. */
6096
6097 static int
6098 sync_resolve_size (tree function, tree params)
6099 {
6100 tree type;
6101 int size;
6102
6103 if (params == NULL)
6104 {
6105 error ("too few arguments to function %qE", function);
6106 return 0;
6107 }
6108
6109 type = TREE_TYPE (TREE_VALUE (params));
6110 if (TREE_CODE (type) != POINTER_TYPE)
6111 goto incompatible;
6112
6113 type = TREE_TYPE (type);
6114 if (!INTEGRAL_TYPE_P (type) && !POINTER_TYPE_P (type))
6115 goto incompatible;
6116
6117 size = tree_low_cst (TYPE_SIZE_UNIT (type), 1);
6118 if (size == 1 || size == 2 || size == 4 || size == 8 || size == 16)
6119 return size;
6120
6121 incompatible:
6122 error ("incompatible type for argument %d of %qE", 1, function);
6123 return 0;
6124 }
6125
6126 /* A helper function for resolve_overloaded_builtin. Adds casts to
6127 PARAMS to make arguments match up with those of FUNCTION. Drops
6128 the variadic arguments at the end. Returns false if some error
6129 was encountered; true on success. */
6130
6131 static bool
6132 sync_resolve_params (tree orig_function, tree function, tree params)
6133 {
6134 tree arg_types = TYPE_ARG_TYPES (TREE_TYPE (function));
6135 tree ptype;
6136 int number;
6137
6138 /* We've declared the implementation functions to use "volatile void *"
6139 as the pointer parameter, so we shouldn't get any complaints from the
6140 call to check_function_arguments what ever type the user used. */
6141 arg_types = TREE_CHAIN (arg_types);
6142 ptype = TREE_TYPE (TREE_TYPE (TREE_VALUE (params)));
6143 number = 2;
6144
6145 /* For the rest of the values, we need to cast these to FTYPE, so that we
6146 don't get warnings for passing pointer types, etc. */
6147 while (arg_types != void_list_node)
6148 {
6149 tree val;
6150
6151 params = TREE_CHAIN (params);
6152 if (params == NULL)
6153 {
6154 error ("too few arguments to function %qE", orig_function);
6155 return false;
6156 }
6157
6158 /* ??? Ideally for the first conversion we'd use convert_for_assignment
6159 so that we get warnings for anything that doesn't match the pointer
6160 type. This isn't portable across the C and C++ front ends atm. */
6161 val = TREE_VALUE (params);
6162 val = convert (ptype, val);
6163 val = convert (TREE_VALUE (arg_types), val);
6164 TREE_VALUE (params) = val;
6165
6166 arg_types = TREE_CHAIN (arg_types);
6167 number++;
6168 }
6169
6170 /* The definition of these primitives is variadic, with the remaining
6171 being "an optional list of variables protected by the memory barrier".
6172 No clue what that's supposed to mean, precisely, but we consider all
6173 call-clobbered variables to be protected so we're safe. */
6174 TREE_CHAIN (params) = NULL;
6175
6176 return true;
6177 }
6178
6179 /* A helper function for resolve_overloaded_builtin. Adds a cast to
6180 RESULT to make it match the type of the first pointer argument in
6181 PARAMS. */
6182
6183 static tree
6184 sync_resolve_return (tree params, tree result)
6185 {
6186 tree ptype = TREE_TYPE (TREE_TYPE (TREE_VALUE (params)));
6187 ptype = TYPE_MAIN_VARIANT (ptype);
6188 return convert (ptype, result);
6189 }
6190
6191 /* Some builtin functions are placeholders for other expressions. This
6192 function should be called immediately after parsing the call expression
6193 before surrounding code has committed to the type of the expression.
6194
6195 FUNCTION is the DECL that has been invoked; it is known to be a builtin.
6196 PARAMS is the argument list for the call. The return value is non-null
6197 when expansion is complete, and null if normal processing should
6198 continue. */
6199
6200 tree
6201 resolve_overloaded_builtin (tree function, tree params)
6202 {
6203 enum built_in_function orig_code = DECL_FUNCTION_CODE (function);
6204 switch (DECL_BUILT_IN_CLASS (function))
6205 {
6206 case BUILT_IN_NORMAL:
6207 break;
6208 case BUILT_IN_MD:
6209 if (targetm.resolve_overloaded_builtin)
6210 return targetm.resolve_overloaded_builtin (function, params);
6211 else
6212 return NULL_TREE;
6213 default:
6214 return NULL_TREE;
6215 }
6216
6217 /* Handle BUILT_IN_NORMAL here. */
6218 switch (orig_code)
6219 {
6220 case BUILT_IN_FETCH_AND_ADD_N:
6221 case BUILT_IN_FETCH_AND_SUB_N:
6222 case BUILT_IN_FETCH_AND_OR_N:
6223 case BUILT_IN_FETCH_AND_AND_N:
6224 case BUILT_IN_FETCH_AND_XOR_N:
6225 case BUILT_IN_FETCH_AND_NAND_N:
6226 case BUILT_IN_ADD_AND_FETCH_N:
6227 case BUILT_IN_SUB_AND_FETCH_N:
6228 case BUILT_IN_OR_AND_FETCH_N:
6229 case BUILT_IN_AND_AND_FETCH_N:
6230 case BUILT_IN_XOR_AND_FETCH_N:
6231 case BUILT_IN_NAND_AND_FETCH_N:
6232 case BUILT_IN_BOOL_COMPARE_AND_SWAP_N:
6233 case BUILT_IN_VAL_COMPARE_AND_SWAP_N:
6234 case BUILT_IN_LOCK_TEST_AND_SET_N:
6235 case BUILT_IN_LOCK_RELEASE_N:
6236 {
6237 int n = sync_resolve_size (function, params);
6238 tree new_function, result;
6239
6240 if (n == 0)
6241 return error_mark_node;
6242
6243 new_function = built_in_decls[orig_code + exact_log2 (n) + 1];
6244 if (!sync_resolve_params (function, new_function, params))
6245 return error_mark_node;
6246
6247 result = build_function_call (new_function, params);
6248 if (orig_code != BUILT_IN_BOOL_COMPARE_AND_SWAP_N
6249 && orig_code != BUILT_IN_LOCK_RELEASE_N)
6250 result = sync_resolve_return (params, result);
6251
6252 return result;
6253 }
6254
6255 default:
6256 return NULL_TREE;
6257 }
6258 }
6259
6260 /* Ignoring their sign, return true if two scalar types are the same. */
6261 bool
6262 same_scalar_type_ignoring_signedness (tree t1, tree t2)
6263 {
6264 enum tree_code c1 = TREE_CODE (t1), c2 = TREE_CODE (t2);
6265
6266 gcc_assert ((c1 == INTEGER_TYPE || c1 == REAL_TYPE)
6267 && (c2 == INTEGER_TYPE || c2 == REAL_TYPE));
6268
6269 /* Equality works here because c_common_signed_type uses
6270 TYPE_MAIN_VARIANT. */
6271 return lang_hooks.types.signed_type (t1)
6272 == lang_hooks.types.signed_type (t2);
6273 }
6274
6275 /* Check for missing format attributes on function pointers. LTYPE is
6276 the new type or left-hand side type. RTYPE is the old type or
6277 right-hand side type. Returns TRUE if LTYPE is missing the desired
6278 attribute. */
6279
6280 bool
6281 check_missing_format_attribute (tree ltype, tree rtype)
6282 {
6283 tree const ttr = TREE_TYPE (rtype), ttl = TREE_TYPE (ltype);
6284 tree ra;
6285
6286 for (ra = TYPE_ATTRIBUTES (ttr); ra; ra = TREE_CHAIN (ra))
6287 if (is_attribute_p ("format", TREE_PURPOSE (ra)))
6288 break;
6289 if (ra)
6290 {
6291 tree la;
6292 for (la = TYPE_ATTRIBUTES (ttl); la; la = TREE_CHAIN (la))
6293 if (is_attribute_p ("format", TREE_PURPOSE (la)))
6294 break;
6295 return !la;
6296 }
6297 else
6298 return false;
6299 }
6300
6301 /* Subscripting with type char is likely to lose on a machine where
6302 chars are signed. So warn on any machine, but optionally. Don't
6303 warn for unsigned char since that type is safe. Don't warn for
6304 signed char because anyone who uses that must have done so
6305 deliberately. Furthermore, we reduce the false positive load by
6306 warning only for non-constant value of type char. */
6307
6308 void
6309 warn_array_subscript_with_type_char (tree index)
6310 {
6311 if (TYPE_MAIN_VARIANT (TREE_TYPE (index)) == char_type_node
6312 && TREE_CODE (index) != INTEGER_CST)
6313 warning (OPT_Wchar_subscripts, "array subscript has type %<char%>");
6314 }
6315
6316
6317 #include "gt-c-common.h"