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1 /* Handle #pragma, system V.4 style. Supports #pragma weak and #pragma pack.
2 Copyright (C) 1992, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005,
3 2006, 2007, 2008, 2009, 2010, 2012 Free Software Foundation, Inc.
4
5 This file is part of GCC.
6
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 3, or (at your option) any later
10 version.
11
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
20
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "tm.h"
25 #include "tree.h"
26 #include "function.h" /* For cfun. FIXME: Does the parser know
27 when it is inside a function, so that
28 we don't have to look at cfun? */
29 #include "cpplib.h"
30 #include "c-pragma.h"
31 #include "flags.h"
32 #include "c-common.h"
33 #include "output.h"
34 #include "tm_p.h" /* For REGISTER_TARGET_PRAGMAS (why is
35 this not a target hook?). */
36 #include "vec.h"
37 #include "vecprim.h"
38 #include "target.h"
39 #include "diagnostic.h"
40 #include "opts.h"
41 #include "plugin.h"
42
43 #define GCC_BAD(gmsgid) \
44 do { warning (OPT_Wpragmas, gmsgid); return; } while (0)
45 #define GCC_BAD2(gmsgid, arg) \
46 do { warning (OPT_Wpragmas, gmsgid, arg); return; } while (0)
47
48 typedef struct GTY(()) align_stack {
49 int alignment;
50 tree id;
51 struct align_stack * prev;
52 } align_stack;
53
54 static GTY(()) struct align_stack * alignment_stack;
55
56 static void handle_pragma_pack (cpp_reader *);
57
58 /* If we have a "global" #pragma pack(<n>) in effect when the first
59 #pragma pack(push,<n>) is encountered, this stores the value of
60 maximum_field_alignment in effect. When the final pop_alignment()
61 happens, we restore the value to this, not to a value of 0 for
62 maximum_field_alignment. Value is in bits. */
63 static int default_alignment;
64 #define SET_GLOBAL_ALIGNMENT(ALIGN) (maximum_field_alignment = *(alignment_stack == NULL \
65 ? &default_alignment \
66 : &alignment_stack->alignment) = (ALIGN))
67
68 static void push_alignment (int, tree);
69 static void pop_alignment (tree);
70
71 /* Push an alignment value onto the stack. */
72 static void
73 push_alignment (int alignment, tree id)
74 {
75 align_stack * entry;
76
77 entry = ggc_alloc_align_stack ();
78
79 entry->alignment = alignment;
80 entry->id = id;
81 entry->prev = alignment_stack;
82
83 /* The current value of maximum_field_alignment is not necessarily
84 0 since there may be a #pragma pack(<n>) in effect; remember it
85 so that we can restore it after the final #pragma pop(). */
86 if (alignment_stack == NULL)
87 default_alignment = maximum_field_alignment;
88
89 alignment_stack = entry;
90
91 maximum_field_alignment = alignment;
92 }
93
94 /* Undo a push of an alignment onto the stack. */
95 static void
96 pop_alignment (tree id)
97 {
98 align_stack * entry;
99
100 if (alignment_stack == NULL)
101 GCC_BAD ("#pragma pack (pop) encountered without matching #pragma pack (push)");
102
103 /* If we got an identifier, strip away everything above the target
104 entry so that the next step will restore the state just below it. */
105 if (id)
106 {
107 for (entry = alignment_stack; entry; entry = entry->prev)
108 if (entry->id == id)
109 {
110 alignment_stack = entry;
111 break;
112 }
113 if (entry == NULL)
114 warning (OPT_Wpragmas, "\
115 #pragma pack(pop, %E) encountered without matching #pragma pack(push, %E)"
116 , id, id);
117 }
118
119 entry = alignment_stack->prev;
120
121 maximum_field_alignment = entry ? entry->alignment : default_alignment;
122
123 alignment_stack = entry;
124 }
125
126 /* #pragma pack ()
127 #pragma pack (N)
128
129 #pragma pack (push)
130 #pragma pack (push, N)
131 #pragma pack (push, ID)
132 #pragma pack (push, ID, N)
133 #pragma pack (pop)
134 #pragma pack (pop, ID) */
135 static void
136 handle_pragma_pack (cpp_reader * ARG_UNUSED (dummy))
137 {
138 tree x, id = 0;
139 int align = -1;
140 enum cpp_ttype token;
141 enum { set, push, pop } action;
142
143 if (pragma_lex (&x) != CPP_OPEN_PAREN)
144 GCC_BAD ("missing %<(%> after %<#pragma pack%> - ignored");
145
146 token = pragma_lex (&x);
147 if (token == CPP_CLOSE_PAREN)
148 {
149 action = set;
150 align = initial_max_fld_align;
151 }
152 else if (token == CPP_NUMBER)
153 {
154 if (TREE_CODE (x) != INTEGER_CST)
155 GCC_BAD ("invalid constant in %<#pragma pack%> - ignored");
156 align = TREE_INT_CST_LOW (x);
157 action = set;
158 if (pragma_lex (&x) != CPP_CLOSE_PAREN)
159 GCC_BAD ("malformed %<#pragma pack%> - ignored");
160 }
161 else if (token == CPP_NAME)
162 {
163 #define GCC_BAD_ACTION do { if (action != pop) \
164 GCC_BAD ("malformed %<#pragma pack(push[, id][, <n>])%> - ignored"); \
165 else \
166 GCC_BAD ("malformed %<#pragma pack(pop[, id])%> - ignored"); \
167 } while (0)
168
169 const char *op = IDENTIFIER_POINTER (x);
170 if (!strcmp (op, "push"))
171 action = push;
172 else if (!strcmp (op, "pop"))
173 action = pop;
174 else
175 GCC_BAD2 ("unknown action %qE for %<#pragma pack%> - ignored", x);
176
177 while ((token = pragma_lex (&x)) == CPP_COMMA)
178 {
179 token = pragma_lex (&x);
180 if (token == CPP_NAME && id == 0)
181 {
182 id = x;
183 }
184 else if (token == CPP_NUMBER && action == push && align == -1)
185 {
186 if (TREE_CODE (x) != INTEGER_CST)
187 GCC_BAD ("invalid constant in %<#pragma pack%> - ignored");
188 align = TREE_INT_CST_LOW (x);
189 if (align == -1)
190 action = set;
191 }
192 else
193 GCC_BAD_ACTION;
194 }
195
196 if (token != CPP_CLOSE_PAREN)
197 GCC_BAD_ACTION;
198 #undef GCC_BAD_ACTION
199 }
200 else
201 GCC_BAD ("malformed %<#pragma pack%> - ignored");
202
203 if (pragma_lex (&x) != CPP_EOF)
204 warning (OPT_Wpragmas, "junk at end of %<#pragma pack%>");
205
206 if (flag_pack_struct)
207 GCC_BAD ("#pragma pack has no effect with -fpack-struct - ignored");
208
209 if (action != pop)
210 switch (align)
211 {
212 case 0:
213 case 1:
214 case 2:
215 case 4:
216 case 8:
217 case 16:
218 align *= BITS_PER_UNIT;
219 break;
220 case -1:
221 if (action == push)
222 {
223 align = maximum_field_alignment;
224 break;
225 }
226 default:
227 GCC_BAD2 ("alignment must be a small power of two, not %d", align);
228 }
229
230 switch (action)
231 {
232 case set: SET_GLOBAL_ALIGNMENT (align); break;
233 case push: push_alignment (align, id); break;
234 case pop: pop_alignment (id); break;
235 }
236 }
237
238 typedef struct GTY(()) pending_weak_d
239 {
240 tree name;
241 tree value;
242 } pending_weak;
243
244 DEF_VEC_O(pending_weak);
245 DEF_VEC_ALLOC_O(pending_weak,gc);
246
247 static GTY(()) VEC(pending_weak,gc) *pending_weaks;
248
249 static void apply_pragma_weak (tree, tree);
250 static void handle_pragma_weak (cpp_reader *);
251
252 static void
253 apply_pragma_weak (tree decl, tree value)
254 {
255 if (value)
256 {
257 value = build_string (IDENTIFIER_LENGTH (value),
258 IDENTIFIER_POINTER (value));
259 decl_attributes (&decl, build_tree_list (get_identifier ("alias"),
260 build_tree_list (NULL, value)),
261 0);
262 }
263
264 if (SUPPORTS_WEAK && DECL_EXTERNAL (decl) && TREE_USED (decl)
265 && !DECL_WEAK (decl) /* Don't complain about a redundant #pragma. */
266 && TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (decl)))
267 warning (OPT_Wpragmas, "applying #pragma weak %q+D after first use "
268 "results in unspecified behavior", decl);
269
270 declare_weak (decl);
271 }
272
273 void
274 maybe_apply_pragma_weak (tree decl)
275 {
276 tree id;
277 int i;
278 pending_weak *pe;
279
280 /* Avoid asking for DECL_ASSEMBLER_NAME when it's not needed. */
281
282 /* No weak symbols pending, take the short-cut. */
283 if (!pending_weaks)
284 return;
285 /* If it's not visible outside this file, it doesn't matter whether
286 it's weak. */
287 if (!DECL_EXTERNAL (decl) && !TREE_PUBLIC (decl))
288 return;
289 /* If it's not a function or a variable, it can't be weak.
290 FIXME: what kinds of things are visible outside this file but
291 aren't functions or variables? Should this be an assert instead? */
292 if (TREE_CODE (decl) != FUNCTION_DECL && TREE_CODE (decl) != VAR_DECL)
293 return;
294
295 id = DECL_ASSEMBLER_NAME (decl);
296
297 FOR_EACH_VEC_ELT (pending_weak, pending_weaks, i, pe)
298 if (id == pe->name)
299 {
300 apply_pragma_weak (decl, pe->value);
301 VEC_unordered_remove (pending_weak, pending_weaks, i);
302 break;
303 }
304 }
305
306 /* Process all "#pragma weak A = B" directives where we have not seen
307 a decl for A. */
308 void
309 maybe_apply_pending_pragma_weaks (void)
310 {
311 tree alias_id, id, decl;
312 int i;
313 pending_weak *pe;
314
315 FOR_EACH_VEC_ELT (pending_weak, pending_weaks, i, pe)
316 {
317 alias_id = pe->name;
318 id = pe->value;
319
320 if (id == NULL)
321 continue;
322
323 decl = build_decl (UNKNOWN_LOCATION,
324 FUNCTION_DECL, alias_id, default_function_type);
325
326 DECL_ARTIFICIAL (decl) = 1;
327 TREE_PUBLIC (decl) = 1;
328 DECL_EXTERNAL (decl) = 1;
329 DECL_WEAK (decl) = 1;
330
331 assemble_alias (decl, id);
332 }
333 }
334
335 /* #pragma weak name [= value] */
336 static void
337 handle_pragma_weak (cpp_reader * ARG_UNUSED (dummy))
338 {
339 tree name, value, x, decl;
340 enum cpp_ttype t;
341
342 value = 0;
343
344 if (pragma_lex (&name) != CPP_NAME)
345 GCC_BAD ("malformed #pragma weak, ignored");
346 t = pragma_lex (&x);
347 if (t == CPP_EQ)
348 {
349 if (pragma_lex (&value) != CPP_NAME)
350 GCC_BAD ("malformed #pragma weak, ignored");
351 t = pragma_lex (&x);
352 }
353 if (t != CPP_EOF)
354 warning (OPT_Wpragmas, "junk at end of %<#pragma weak%>");
355
356 decl = identifier_global_value (name);
357 if (decl && DECL_P (decl))
358 {
359 apply_pragma_weak (decl, value);
360 if (value)
361 assemble_alias (decl, value);
362 }
363 else
364 {
365 pending_weak *pe;
366 pe = VEC_safe_push (pending_weak, gc, pending_weaks, NULL);
367 pe->name = name;
368 pe->value = value;
369 }
370 }
371
372 /* GCC supports two #pragma directives for renaming the external
373 symbol associated with a declaration (DECL_ASSEMBLER_NAME), for
374 compatibility with the Solaris and VMS system headers. GCC also
375 has its own notation for this, __asm__("name") annotations.
376
377 Corner cases of these features and their interaction:
378
379 1) Both pragmas silently apply only to declarations with external
380 linkage (that is, TREE_PUBLIC || DECL_EXTERNAL). Asm labels
381 do not have this restriction.
382
383 2) In C++, both #pragmas silently apply only to extern "C" declarations.
384 Asm labels do not have this restriction.
385
386 3) If any of the three ways of changing DECL_ASSEMBLER_NAME is
387 applied to a decl whose DECL_ASSEMBLER_NAME is already set, and the
388 new name is different, a warning issues and the name does not change.
389
390 4) The "source name" for #pragma redefine_extname is the DECL_NAME,
391 *not* the DECL_ASSEMBLER_NAME.
392
393 5) If #pragma extern_prefix is in effect and a declaration occurs
394 with an __asm__ name, the #pragma extern_prefix is silently
395 ignored for that declaration.
396
397 6) If #pragma extern_prefix and #pragma redefine_extname apply to
398 the same declaration, whichever triggered first wins, and a warning
399 is issued. (We would like to have #pragma redefine_extname always
400 win, but it can appear either before or after the declaration, and
401 if it appears afterward, we have no way of knowing whether a modified
402 DECL_ASSEMBLER_NAME is due to #pragma extern_prefix.) */
403
404 typedef struct GTY(()) pending_redefinition_d {
405 tree oldname;
406 tree newname;
407 } pending_redefinition;
408
409 DEF_VEC_O(pending_redefinition);
410 DEF_VEC_ALLOC_O(pending_redefinition,gc);
411
412 static GTY(()) VEC(pending_redefinition,gc) *pending_redefine_extname;
413
414 static void handle_pragma_redefine_extname (cpp_reader *);
415
416 /* #pragma redefine_extname oldname newname */
417 static void
418 handle_pragma_redefine_extname (cpp_reader * ARG_UNUSED (dummy))
419 {
420 tree oldname, newname, decls, x;
421 enum cpp_ttype t;
422 bool found;
423
424 if (pragma_lex (&oldname) != CPP_NAME)
425 GCC_BAD ("malformed #pragma redefine_extname, ignored");
426 if (pragma_lex (&newname) != CPP_NAME)
427 GCC_BAD ("malformed #pragma redefine_extname, ignored");
428 t = pragma_lex (&x);
429 if (t != CPP_EOF)
430 warning (OPT_Wpragmas, "junk at end of %<#pragma redefine_extname%>");
431
432 found = false;
433 for (decls = c_linkage_bindings (oldname);
434 decls; )
435 {
436 tree decl;
437 if (TREE_CODE (decls) == TREE_LIST)
438 {
439 decl = TREE_VALUE (decls);
440 decls = TREE_CHAIN (decls);
441 }
442 else
443 {
444 decl = decls;
445 decls = NULL_TREE;
446 }
447
448 if ((TREE_PUBLIC (decl) || DECL_EXTERNAL (decl))
449 && (TREE_CODE (decl) == FUNCTION_DECL
450 || TREE_CODE (decl) == VAR_DECL))
451 {
452 found = true;
453 if (DECL_ASSEMBLER_NAME_SET_P (decl))
454 {
455 const char *name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
456 name = targetm.strip_name_encoding (name);
457
458 if (strcmp (name, IDENTIFIER_POINTER (newname)))
459 warning (OPT_Wpragmas, "#pragma redefine_extname ignored due to "
460 "conflict with previous rename");
461 }
462 else
463 change_decl_assembler_name (decl, newname);
464 }
465 }
466
467 if (!found)
468 /* We have to add this to the rename list even if there's already
469 a global value that doesn't meet the above criteria, because in
470 C++ "struct foo {...};" puts "foo" in the current namespace but
471 does *not* conflict with a subsequent declaration of a function
472 or variable foo. See g++.dg/other/pragma-re-2.C. */
473 add_to_renaming_pragma_list (oldname, newname);
474 }
475
476 /* This is called from here and from ia64.c. */
477 void
478 add_to_renaming_pragma_list (tree oldname, tree newname)
479 {
480 unsigned ix;
481 pending_redefinition *p;
482
483 FOR_EACH_VEC_ELT (pending_redefinition, pending_redefine_extname, ix, p)
484 if (oldname == p->oldname)
485 {
486 if (p->newname != newname)
487 warning (OPT_Wpragmas, "#pragma redefine_extname ignored due to "
488 "conflict with previous #pragma redefine_extname");
489 return;
490 }
491
492 p = VEC_safe_push (pending_redefinition, gc, pending_redefine_extname, NULL);
493 p->oldname = oldname;
494 p->newname = newname;
495 }
496
497 /* The current prefix set by #pragma extern_prefix. */
498 GTY(()) tree pragma_extern_prefix;
499
500 /* Hook from the front ends to apply the results of one of the preceding
501 pragmas that rename variables. */
502
503 tree
504 maybe_apply_renaming_pragma (tree decl, tree asmname)
505 {
506 unsigned ix;
507 pending_redefinition *p;
508
509 /* The renaming pragmas are only applied to declarations with
510 external linkage. */
511 if ((TREE_CODE (decl) != FUNCTION_DECL && TREE_CODE (decl) != VAR_DECL)
512 || (!TREE_PUBLIC (decl) && !DECL_EXTERNAL (decl))
513 || !has_c_linkage (decl))
514 return asmname;
515
516 /* If the DECL_ASSEMBLER_NAME is already set, it does not change,
517 but we may warn about a rename that conflicts. */
518 if (DECL_ASSEMBLER_NAME_SET_P (decl))
519 {
520 const char *oldname = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
521 oldname = targetm.strip_name_encoding (oldname);
522
523 if (asmname && strcmp (TREE_STRING_POINTER (asmname), oldname))
524 warning (OPT_Wpragmas, "asm declaration ignored due to "
525 "conflict with previous rename");
526
527 /* Take any pending redefine_extname off the list. */
528 FOR_EACH_VEC_ELT (pending_redefinition, pending_redefine_extname, ix, p)
529 if (DECL_NAME (decl) == p->oldname)
530 {
531 /* Only warn if there is a conflict. */
532 if (strcmp (IDENTIFIER_POINTER (p->newname), oldname))
533 warning (OPT_Wpragmas, "#pragma redefine_extname ignored due to "
534 "conflict with previous rename");
535
536 VEC_unordered_remove (pending_redefinition,
537 pending_redefine_extname, ix);
538 break;
539 }
540 return 0;
541 }
542
543 /* Find out if we have a pending #pragma redefine_extname. */
544 FOR_EACH_VEC_ELT (pending_redefinition, pending_redefine_extname, ix, p)
545 if (DECL_NAME (decl) == p->oldname)
546 {
547 tree newname = p->newname;
548 VEC_unordered_remove (pending_redefinition,
549 pending_redefine_extname, ix);
550
551 /* If we already have an asmname, #pragma redefine_extname is
552 ignored (with a warning if it conflicts). */
553 if (asmname)
554 {
555 if (strcmp (TREE_STRING_POINTER (asmname),
556 IDENTIFIER_POINTER (newname)) != 0)
557 warning (OPT_Wpragmas, "#pragma redefine_extname ignored due to "
558 "conflict with __asm__ declaration");
559 return asmname;
560 }
561
562 /* Otherwise we use what we've got; #pragma extern_prefix is
563 silently ignored. */
564 return build_string (IDENTIFIER_LENGTH (newname),
565 IDENTIFIER_POINTER (newname));
566 }
567
568 /* If we've got an asmname, #pragma extern_prefix is silently ignored. */
569 if (asmname)
570 return asmname;
571
572 /* If #pragma extern_prefix is in effect, apply it. */
573 if (pragma_extern_prefix)
574 {
575 const char *prefix = TREE_STRING_POINTER (pragma_extern_prefix);
576 size_t plen = TREE_STRING_LENGTH (pragma_extern_prefix) - 1;
577
578 const char *id = IDENTIFIER_POINTER (DECL_NAME (decl));
579 size_t ilen = IDENTIFIER_LENGTH (DECL_NAME (decl));
580
581 char *newname = (char *) alloca (plen + ilen + 1);
582
583 memcpy (newname, prefix, plen);
584 memcpy (newname + plen, id, ilen + 1);
585
586 return build_string (plen + ilen, newname);
587 }
588
589 /* Nada. */
590 return 0;
591 }
592
593
594 static void handle_pragma_visibility (cpp_reader *);
595
596 static VEC (int, heap) *visstack;
597
598 /* Push the visibility indicated by STR onto the top of the #pragma
599 visibility stack. KIND is 0 for #pragma GCC visibility, 1 for
600 C++ namespace with visibility attribute and 2 for C++ builtin
601 ABI namespace. push_visibility/pop_visibility calls must have
602 matching KIND, it is not allowed to push visibility using one
603 KIND and pop using a different one. */
604
605 void
606 push_visibility (const char *str, int kind)
607 {
608 VEC_safe_push (int, heap, visstack,
609 ((int) default_visibility) | (kind << 8));
610 if (!strcmp (str, "default"))
611 default_visibility = VISIBILITY_DEFAULT;
612 else if (!strcmp (str, "internal"))
613 default_visibility = VISIBILITY_INTERNAL;
614 else if (!strcmp (str, "hidden"))
615 default_visibility = VISIBILITY_HIDDEN;
616 else if (!strcmp (str, "protected"))
617 default_visibility = VISIBILITY_PROTECTED;
618 else
619 GCC_BAD ("#pragma GCC visibility push() must specify default, internal, hidden or protected");
620 visibility_options.inpragma = 1;
621 }
622
623 /* Pop a level of the #pragma visibility stack. Return true if
624 successful. */
625
626 bool
627 pop_visibility (int kind)
628 {
629 if (!VEC_length (int, visstack))
630 return false;
631 if ((VEC_last (int, visstack) >> 8) != kind)
632 return false;
633 default_visibility
634 = (enum symbol_visibility) (VEC_pop (int, visstack) & 0xff);
635 visibility_options.inpragma
636 = VEC_length (int, visstack) != 0;
637 return true;
638 }
639
640 /* Sets the default visibility for symbols to something other than that
641 specified on the command line. */
642
643 static void
644 handle_pragma_visibility (cpp_reader *dummy ATTRIBUTE_UNUSED)
645 {
646 /* Form is #pragma GCC visibility push(hidden)|pop */
647 tree x;
648 enum cpp_ttype token;
649 enum { bad, push, pop } action = bad;
650
651 token = pragma_lex (&x);
652 if (token == CPP_NAME)
653 {
654 const char *op = IDENTIFIER_POINTER (x);
655 if (!strcmp (op, "push"))
656 action = push;
657 else if (!strcmp (op, "pop"))
658 action = pop;
659 }
660 if (bad == action)
661 GCC_BAD ("#pragma GCC visibility must be followed by push or pop");
662 else
663 {
664 if (pop == action)
665 {
666 if (! pop_visibility (0))
667 GCC_BAD ("no matching push for %<#pragma GCC visibility pop%>");
668 }
669 else
670 {
671 if (pragma_lex (&x) != CPP_OPEN_PAREN)
672 GCC_BAD ("missing %<(%> after %<#pragma GCC visibility push%> - ignored");
673 token = pragma_lex (&x);
674 if (token != CPP_NAME)
675 GCC_BAD ("malformed #pragma GCC visibility push");
676 else
677 push_visibility (IDENTIFIER_POINTER (x), 0);
678 if (pragma_lex (&x) != CPP_CLOSE_PAREN)
679 GCC_BAD ("missing %<(%> after %<#pragma GCC visibility push%> - ignored");
680 }
681 }
682 if (pragma_lex (&x) != CPP_EOF)
683 warning (OPT_Wpragmas, "junk at end of %<#pragma GCC visibility%>");
684 }
685
686 static void
687 handle_pragma_diagnostic(cpp_reader *ARG_UNUSED(dummy))
688 {
689 const char *kind_string, *option_string;
690 unsigned int option_index;
691 enum cpp_ttype token;
692 diagnostic_t kind;
693 tree x;
694 struct cl_option_handlers handlers;
695
696 token = pragma_lex (&x);
697 if (token != CPP_NAME)
698 GCC_BAD ("missing [error|warning|ignored] after %<#pragma GCC diagnostic%>");
699 kind_string = IDENTIFIER_POINTER (x);
700 if (strcmp (kind_string, "error") == 0)
701 kind = DK_ERROR;
702 else if (strcmp (kind_string, "warning") == 0)
703 kind = DK_WARNING;
704 else if (strcmp (kind_string, "ignored") == 0)
705 kind = DK_IGNORED;
706 else if (strcmp (kind_string, "push") == 0)
707 {
708 diagnostic_push_diagnostics (global_dc, input_location);
709 return;
710 }
711 else if (strcmp (kind_string, "pop") == 0)
712 {
713 diagnostic_pop_diagnostics (global_dc, input_location);
714 return;
715 }
716 else
717 GCC_BAD ("expected [error|warning|ignored|push|pop] after %<#pragma GCC diagnostic%>");
718
719 token = pragma_lex (&x);
720 if (token != CPP_STRING)
721 GCC_BAD ("missing option after %<#pragma GCC diagnostic%> kind");
722 option_string = TREE_STRING_POINTER (x);
723 set_default_handlers (&handlers);
724 for (option_index = 0; option_index < cl_options_count; option_index++)
725 if (strcmp (cl_options[option_index].opt_text, option_string) == 0)
726 {
727 control_warning_option (option_index, (int) kind, kind != DK_IGNORED,
728 input_location, c_family_lang_mask, &handlers,
729 &global_options, &global_options_set,
730 global_dc);
731 return;
732 }
733 GCC_BAD ("unknown option after %<#pragma GCC diagnostic%> kind");
734 }
735
736 /* Parse #pragma GCC target (xxx) to set target specific options. */
737 static void
738 handle_pragma_target(cpp_reader *ARG_UNUSED(dummy))
739 {
740 enum cpp_ttype token;
741 tree x;
742 bool close_paren_needed_p = false;
743
744 if (cfun)
745 {
746 error ("#pragma GCC option is not allowed inside functions");
747 return;
748 }
749
750 token = pragma_lex (&x);
751 if (token == CPP_OPEN_PAREN)
752 {
753 close_paren_needed_p = true;
754 token = pragma_lex (&x);
755 }
756
757 if (token != CPP_STRING)
758 {
759 GCC_BAD ("%<#pragma GCC option%> is not a string");
760 return;
761 }
762
763 /* Strings are user options. */
764 else
765 {
766 tree args = NULL_TREE;
767
768 do
769 {
770 /* Build up the strings now as a tree linked list. Skip empty
771 strings. */
772 if (TREE_STRING_LENGTH (x) > 0)
773 args = tree_cons (NULL_TREE, x, args);
774
775 token = pragma_lex (&x);
776 while (token == CPP_COMMA)
777 token = pragma_lex (&x);
778 }
779 while (token == CPP_STRING);
780
781 if (close_paren_needed_p)
782 {
783 if (token == CPP_CLOSE_PAREN)
784 token = pragma_lex (&x);
785 else
786 GCC_BAD ("%<#pragma GCC target (string [,string]...)%> does "
787 "not have a final %<)%>");
788 }
789
790 if (token != CPP_EOF)
791 {
792 error ("#pragma GCC target string... is badly formed");
793 return;
794 }
795
796 /* put arguments in the order the user typed them. */
797 args = nreverse (args);
798
799 if (targetm.target_option.pragma_parse (args, NULL_TREE))
800 current_target_pragma = args;
801 }
802 }
803
804 /* Handle #pragma GCC optimize to set optimization options. */
805 static void
806 handle_pragma_optimize (cpp_reader *ARG_UNUSED(dummy))
807 {
808 enum cpp_ttype token;
809 tree x;
810 bool close_paren_needed_p = false;
811 tree optimization_previous_node = optimization_current_node;
812
813 if (cfun)
814 {
815 error ("#pragma GCC optimize is not allowed inside functions");
816 return;
817 }
818
819 token = pragma_lex (&x);
820 if (token == CPP_OPEN_PAREN)
821 {
822 close_paren_needed_p = true;
823 token = pragma_lex (&x);
824 }
825
826 if (token != CPP_STRING && token != CPP_NUMBER)
827 {
828 GCC_BAD ("%<#pragma GCC optimize%> is not a string or number");
829 return;
830 }
831
832 /* Strings/numbers are user options. */
833 else
834 {
835 tree args = NULL_TREE;
836
837 do
838 {
839 /* Build up the numbers/strings now as a list. */
840 if (token != CPP_STRING || TREE_STRING_LENGTH (x) > 0)
841 args = tree_cons (NULL_TREE, x, args);
842
843 token = pragma_lex (&x);
844 while (token == CPP_COMMA)
845 token = pragma_lex (&x);
846 }
847 while (token == CPP_STRING || token == CPP_NUMBER);
848
849 if (close_paren_needed_p)
850 {
851 if (token == CPP_CLOSE_PAREN)
852 token = pragma_lex (&x);
853 else
854 GCC_BAD ("%<#pragma GCC optimize (string [,string]...)%> does "
855 "not have a final %<)%>");
856 }
857
858 if (token != CPP_EOF)
859 {
860 error ("#pragma GCC optimize string... is badly formed");
861 return;
862 }
863
864 /* put arguments in the order the user typed them. */
865 args = nreverse (args);
866
867 parse_optimize_options (args, false);
868 current_optimize_pragma = chainon (current_optimize_pragma, args);
869 optimization_current_node = build_optimization_node ();
870 c_cpp_builtins_optimize_pragma (parse_in,
871 optimization_previous_node,
872 optimization_current_node);
873 }
874 }
875
876 /* Stack of the #pragma GCC options created with #pragma GCC push_option. Save
877 both the binary representation of the options and the TREE_LIST of
878 strings that will be added to the function's attribute list. */
879 typedef struct GTY(()) opt_stack {
880 struct opt_stack *prev;
881 tree target_binary;
882 tree target_strings;
883 tree optimize_binary;
884 tree optimize_strings;
885 } opt_stack;
886
887 static GTY(()) struct opt_stack * options_stack;
888
889 /* Handle #pragma GCC push_options to save the current target and optimization
890 options. */
891
892 static void
893 handle_pragma_push_options (cpp_reader *ARG_UNUSED(dummy))
894 {
895 enum cpp_ttype token;
896 tree x = 0;
897 opt_stack *p;
898
899 token = pragma_lex (&x);
900 if (token != CPP_EOF)
901 {
902 warning (OPT_Wpragmas, "junk at end of %<#pragma push_options%>");
903 return;
904 }
905
906 p = ggc_alloc_opt_stack ();
907 p->prev = options_stack;
908 options_stack = p;
909
910 /* Save optimization and target flags in binary format. */
911 p->optimize_binary = build_optimization_node ();
912 p->target_binary = build_target_option_node ();
913
914 /* Save optimization and target flags in string list format. */
915 p->optimize_strings = copy_list (current_optimize_pragma);
916 p->target_strings = copy_list (current_target_pragma);
917 }
918
919 /* Handle #pragma GCC pop_options to restore the current target and
920 optimization options from a previous push_options. */
921
922 static void
923 handle_pragma_pop_options (cpp_reader *ARG_UNUSED(dummy))
924 {
925 enum cpp_ttype token;
926 tree x = 0;
927 opt_stack *p;
928
929 token = pragma_lex (&x);
930 if (token != CPP_EOF)
931 {
932 warning (OPT_Wpragmas, "junk at end of %<#pragma pop_options%>");
933 return;
934 }
935
936 if (! options_stack)
937 {
938 warning (OPT_Wpragmas,
939 "%<#pragma GCC pop_options%> without a corresponding "
940 "%<#pragma GCC push_options%>");
941 return;
942 }
943
944 p = options_stack;
945 options_stack = p->prev;
946
947 if (p->target_binary != target_option_current_node)
948 {
949 (void) targetm.target_option.pragma_parse (NULL_TREE, p->target_binary);
950 target_option_current_node = p->target_binary;
951 }
952
953 if (p->optimize_binary != optimization_current_node)
954 {
955 tree old_optimize = optimization_current_node;
956 cl_optimization_restore (&global_options,
957 TREE_OPTIMIZATION (p->optimize_binary));
958 c_cpp_builtins_optimize_pragma (parse_in, old_optimize,
959 p->optimize_binary);
960 optimization_current_node = p->optimize_binary;
961 }
962
963 current_target_pragma = p->target_strings;
964 current_optimize_pragma = p->optimize_strings;
965 }
966
967 /* Handle #pragma GCC reset_options to restore the current target and
968 optimization options to the original options used on the command line. */
969
970 static void
971 handle_pragma_reset_options (cpp_reader *ARG_UNUSED(dummy))
972 {
973 enum cpp_ttype token;
974 tree x = 0;
975 tree new_optimize = optimization_default_node;
976 tree new_target = target_option_default_node;
977
978 token = pragma_lex (&x);
979 if (token != CPP_EOF)
980 {
981 warning (OPT_Wpragmas, "junk at end of %<#pragma reset_options%>");
982 return;
983 }
984
985 if (new_target != target_option_current_node)
986 {
987 (void) targetm.target_option.pragma_parse (NULL_TREE, new_target);
988 target_option_current_node = new_target;
989 }
990
991 if (new_optimize != optimization_current_node)
992 {
993 tree old_optimize = optimization_current_node;
994 cl_optimization_restore (&global_options,
995 TREE_OPTIMIZATION (new_optimize));
996 c_cpp_builtins_optimize_pragma (parse_in, old_optimize, new_optimize);
997 optimization_current_node = new_optimize;
998 }
999
1000 current_target_pragma = NULL_TREE;
1001 current_optimize_pragma = NULL_TREE;
1002 }
1003
1004 /* Print a plain user-specified message. */
1005
1006 static void
1007 handle_pragma_message (cpp_reader *ARG_UNUSED(dummy))
1008 {
1009 enum cpp_ttype token;
1010 tree x, message = 0;
1011
1012 token = pragma_lex (&x);
1013 if (token == CPP_OPEN_PAREN)
1014 {
1015 token = pragma_lex (&x);
1016 if (token == CPP_STRING)
1017 message = x;
1018 else
1019 GCC_BAD ("expected a string after %<#pragma message%>");
1020 if (pragma_lex (&x) != CPP_CLOSE_PAREN)
1021 GCC_BAD ("malformed %<#pragma message%>, ignored");
1022 }
1023 else if (token == CPP_STRING)
1024 message = x;
1025 else
1026 GCC_BAD ("expected a string after %<#pragma message%>");
1027
1028 gcc_assert (message);
1029
1030 if (pragma_lex (&x) != CPP_EOF)
1031 warning (OPT_Wpragmas, "junk at end of %<#pragma message%>");
1032
1033 if (TREE_STRING_LENGTH (message) > 1)
1034 inform (input_location, "#pragma message: %s", TREE_STRING_POINTER (message));
1035 }
1036
1037 /* Mark whether the current location is valid for a STDC pragma. */
1038
1039 static bool valid_location_for_stdc_pragma;
1040
1041 void
1042 mark_valid_location_for_stdc_pragma (bool flag)
1043 {
1044 valid_location_for_stdc_pragma = flag;
1045 }
1046
1047 /* Return true if the current location is valid for a STDC pragma. */
1048
1049 bool
1050 valid_location_for_stdc_pragma_p (void)
1051 {
1052 return valid_location_for_stdc_pragma;
1053 }
1054
1055 enum pragma_switch_t { PRAGMA_ON, PRAGMA_OFF, PRAGMA_DEFAULT, PRAGMA_BAD };
1056
1057 /* A STDC pragma must appear outside of external declarations or
1058 preceding all explicit declarations and statements inside a compound
1059 statement; its behavior is undefined if used in any other context.
1060 It takes a switch of ON, OFF, or DEFAULT. */
1061
1062 static enum pragma_switch_t
1063 handle_stdc_pragma (const char *pname)
1064 {
1065 const char *arg;
1066 tree t;
1067 enum pragma_switch_t ret;
1068
1069 if (!valid_location_for_stdc_pragma_p ())
1070 {
1071 warning (OPT_Wpragmas, "invalid location for %<pragma %s%>, ignored",
1072 pname);
1073 return PRAGMA_BAD;
1074 }
1075
1076 if (pragma_lex (&t) != CPP_NAME)
1077 {
1078 warning (OPT_Wpragmas, "malformed %<#pragma %s%>, ignored", pname);
1079 return PRAGMA_BAD;
1080 }
1081
1082 arg = IDENTIFIER_POINTER (t);
1083
1084 if (!strcmp (arg, "ON"))
1085 ret = PRAGMA_ON;
1086 else if (!strcmp (arg, "OFF"))
1087 ret = PRAGMA_OFF;
1088 else if (!strcmp (arg, "DEFAULT"))
1089 ret = PRAGMA_DEFAULT;
1090 else
1091 {
1092 warning (OPT_Wpragmas, "malformed %<#pragma %s%>, ignored", pname);
1093 return PRAGMA_BAD;
1094 }
1095
1096 if (pragma_lex (&t) != CPP_EOF)
1097 {
1098 warning (OPT_Wpragmas, "junk at end of %<#pragma %s%>", pname);
1099 return PRAGMA_BAD;
1100 }
1101
1102 return ret;
1103 }
1104
1105 /* #pragma STDC FLOAT_CONST_DECIMAL64 ON
1106 #pragma STDC FLOAT_CONST_DECIMAL64 OFF
1107 #pragma STDC FLOAT_CONST_DECIMAL64 DEFAULT */
1108
1109 static void
1110 handle_pragma_float_const_decimal64 (cpp_reader *ARG_UNUSED (dummy))
1111 {
1112 if (c_dialect_cxx ())
1113 {
1114 if (warn_unknown_pragmas > in_system_header)
1115 warning (OPT_Wunknown_pragmas,
1116 "%<#pragma STDC FLOAT_CONST_DECIMAL64%> is not supported"
1117 " for C++");
1118 return;
1119 }
1120
1121 if (!targetm.decimal_float_supported_p ())
1122 {
1123 if (warn_unknown_pragmas > in_system_header)
1124 warning (OPT_Wunknown_pragmas,
1125 "%<#pragma STDC FLOAT_CONST_DECIMAL64%> is not supported"
1126 " on this target");
1127 return;
1128 }
1129
1130 pedwarn (input_location, OPT_pedantic,
1131 "ISO C does not support %<#pragma STDC FLOAT_CONST_DECIMAL64%>");
1132
1133 switch (handle_stdc_pragma ("STDC FLOAT_CONST_DECIMAL64"))
1134 {
1135 case PRAGMA_ON:
1136 set_float_const_decimal64 ();
1137 break;
1138 case PRAGMA_OFF:
1139 case PRAGMA_DEFAULT:
1140 clear_float_const_decimal64 ();
1141 break;
1142 case PRAGMA_BAD:
1143 break;
1144 }
1145 }
1146
1147 /* A vector of registered pragma callbacks, which is never freed. */
1148 DEF_VEC_O (internal_pragma_handler);
1149 DEF_VEC_ALLOC_O (internal_pragma_handler, heap);
1150
1151 static VEC(internal_pragma_handler, heap) *registered_pragmas;
1152
1153 typedef struct
1154 {
1155 const char *space;
1156 const char *name;
1157 } pragma_ns_name;
1158
1159 DEF_VEC_O (pragma_ns_name);
1160 DEF_VEC_ALLOC_O (pragma_ns_name, heap);
1161
1162 static VEC(pragma_ns_name, heap) *registered_pp_pragmas;
1163
1164 struct omp_pragma_def { const char *name; unsigned int id; };
1165 static const struct omp_pragma_def omp_pragmas[] = {
1166 { "atomic", PRAGMA_OMP_ATOMIC },
1167 { "barrier", PRAGMA_OMP_BARRIER },
1168 { "critical", PRAGMA_OMP_CRITICAL },
1169 { "flush", PRAGMA_OMP_FLUSH },
1170 { "for", PRAGMA_OMP_FOR },
1171 { "master", PRAGMA_OMP_MASTER },
1172 { "ordered", PRAGMA_OMP_ORDERED },
1173 { "parallel", PRAGMA_OMP_PARALLEL },
1174 { "section", PRAGMA_OMP_SECTION },
1175 { "sections", PRAGMA_OMP_SECTIONS },
1176 { "single", PRAGMA_OMP_SINGLE },
1177 { "task", PRAGMA_OMP_TASK },
1178 { "taskwait", PRAGMA_OMP_TASKWAIT },
1179 { "taskyield", PRAGMA_OMP_TASKYIELD },
1180 { "threadprivate", PRAGMA_OMP_THREADPRIVATE }
1181 };
1182
1183 void
1184 c_pp_lookup_pragma (unsigned int id, const char **space, const char **name)
1185 {
1186 const int n_omp_pragmas = sizeof (omp_pragmas) / sizeof (*omp_pragmas);
1187 int i;
1188
1189 for (i = 0; i < n_omp_pragmas; ++i)
1190 if (omp_pragmas[i].id == id)
1191 {
1192 *space = "omp";
1193 *name = omp_pragmas[i].name;
1194 return;
1195 }
1196
1197 if (id >= PRAGMA_FIRST_EXTERNAL
1198 && (id < PRAGMA_FIRST_EXTERNAL
1199 + VEC_length (pragma_ns_name, registered_pp_pragmas)))
1200 {
1201 *space = VEC_index (pragma_ns_name, registered_pp_pragmas,
1202 id - PRAGMA_FIRST_EXTERNAL)->space;
1203 *name = VEC_index (pragma_ns_name, registered_pp_pragmas,
1204 id - PRAGMA_FIRST_EXTERNAL)->name;
1205 return;
1206 }
1207
1208 gcc_unreachable ();
1209 }
1210
1211 /* Front-end wrappers for pragma registration to avoid dragging
1212 cpplib.h in almost everywhere. */
1213
1214 static void
1215 c_register_pragma_1 (const char *space, const char *name,
1216 internal_pragma_handler ihandler, bool allow_expansion)
1217 {
1218 unsigned id;
1219
1220 if (flag_preprocess_only)
1221 {
1222 pragma_ns_name ns_name;
1223
1224 if (!allow_expansion)
1225 return;
1226
1227 ns_name.space = space;
1228 ns_name.name = name;
1229 VEC_safe_push (pragma_ns_name, heap, registered_pp_pragmas, &ns_name);
1230 id = VEC_length (pragma_ns_name, registered_pp_pragmas);
1231 id += PRAGMA_FIRST_EXTERNAL - 1;
1232 }
1233 else
1234 {
1235 VEC_safe_push (internal_pragma_handler, heap, registered_pragmas,
1236 &ihandler);
1237 id = VEC_length (internal_pragma_handler, registered_pragmas);
1238 id += PRAGMA_FIRST_EXTERNAL - 1;
1239
1240 /* The C++ front end allocates 6 bits in cp_token; the C front end
1241 allocates 7 bits in c_token. At present this is sufficient. */
1242 gcc_assert (id < 64);
1243 }
1244
1245 cpp_register_deferred_pragma (parse_in, space, name, id,
1246 allow_expansion, false);
1247 }
1248
1249 /* Register a C pragma handler, using a space and a name. It disallows pragma
1250 expansion (if you want it, use c_register_pragma_with_expansion instead). */
1251 void
1252 c_register_pragma (const char *space, const char *name,
1253 pragma_handler_1arg handler)
1254 {
1255 internal_pragma_handler ihandler;
1256
1257 ihandler.handler.handler_1arg = handler;
1258 ihandler.extra_data = false;
1259 ihandler.data = NULL;
1260 c_register_pragma_1 (space, name, ihandler, false);
1261 }
1262
1263 /* Register a C pragma handler, using a space and a name, it also carries an
1264 extra data field which can be used by the handler. It disallows pragma
1265 expansion (if you want it, use c_register_pragma_with_expansion_and_data
1266 instead). */
1267 void
1268 c_register_pragma_with_data (const char *space, const char *name,
1269 pragma_handler_2arg handler, void * data)
1270 {
1271 internal_pragma_handler ihandler;
1272
1273 ihandler.handler.handler_2arg = handler;
1274 ihandler.extra_data = true;
1275 ihandler.data = data;
1276 c_register_pragma_1 (space, name, ihandler, false);
1277 }
1278
1279 /* Register a C pragma handler, using a space and a name. It allows pragma
1280 expansion as in the following example:
1281
1282 #define NUMBER 10
1283 #pragma count (NUMBER)
1284
1285 Name expansion is still disallowed. */
1286 void
1287 c_register_pragma_with_expansion (const char *space, const char *name,
1288 pragma_handler_1arg handler)
1289 {
1290 internal_pragma_handler ihandler;
1291
1292 ihandler.handler.handler_1arg = handler;
1293 ihandler.extra_data = false;
1294 ihandler.data = NULL;
1295 c_register_pragma_1 (space, name, ihandler, true);
1296 }
1297
1298 /* Register a C pragma handler, using a space and a name, it also carries an
1299 extra data field which can be used by the handler. It allows pragma
1300 expansion as in the following example:
1301
1302 #define NUMBER 10
1303 #pragma count (NUMBER)
1304
1305 Name expansion is still disallowed. */
1306 void
1307 c_register_pragma_with_expansion_and_data (const char *space, const char *name,
1308 pragma_handler_2arg handler,
1309 void *data)
1310 {
1311 internal_pragma_handler ihandler;
1312
1313 ihandler.handler.handler_2arg = handler;
1314 ihandler.extra_data = true;
1315 ihandler.data = data;
1316 c_register_pragma_1 (space, name, ihandler, true);
1317 }
1318
1319 void
1320 c_invoke_pragma_handler (unsigned int id)
1321 {
1322 internal_pragma_handler *ihandler;
1323 pragma_handler_1arg handler_1arg;
1324 pragma_handler_2arg handler_2arg;
1325
1326 id -= PRAGMA_FIRST_EXTERNAL;
1327 ihandler = VEC_index (internal_pragma_handler, registered_pragmas, id);
1328 if (ihandler->extra_data)
1329 {
1330 handler_2arg = ihandler->handler.handler_2arg;
1331 handler_2arg (parse_in, ihandler->data);
1332 }
1333 else
1334 {
1335 handler_1arg = ihandler->handler.handler_1arg;
1336 handler_1arg (parse_in);
1337 }
1338 }
1339
1340 /* Set up front-end pragmas. */
1341 void
1342 init_pragma (void)
1343 {
1344 if (flag_openmp)
1345 {
1346 const int n_omp_pragmas = sizeof (omp_pragmas) / sizeof (*omp_pragmas);
1347 int i;
1348
1349 for (i = 0; i < n_omp_pragmas; ++i)
1350 cpp_register_deferred_pragma (parse_in, "omp", omp_pragmas[i].name,
1351 omp_pragmas[i].id, true, true);
1352 }
1353
1354 if (!flag_preprocess_only)
1355 cpp_register_deferred_pragma (parse_in, "GCC", "pch_preprocess",
1356 PRAGMA_GCC_PCH_PREPROCESS, false, false);
1357
1358 #ifdef HANDLE_PRAGMA_PACK_WITH_EXPANSION
1359 c_register_pragma_with_expansion (0, "pack", handle_pragma_pack);
1360 #else
1361 c_register_pragma (0, "pack", handle_pragma_pack);
1362 #endif
1363 c_register_pragma (0, "weak", handle_pragma_weak);
1364 c_register_pragma ("GCC", "visibility", handle_pragma_visibility);
1365
1366 c_register_pragma ("GCC", "diagnostic", handle_pragma_diagnostic);
1367 c_register_pragma ("GCC", "target", handle_pragma_target);
1368 c_register_pragma ("GCC", "optimize", handle_pragma_optimize);
1369 c_register_pragma ("GCC", "push_options", handle_pragma_push_options);
1370 c_register_pragma ("GCC", "pop_options", handle_pragma_pop_options);
1371 c_register_pragma ("GCC", "reset_options", handle_pragma_reset_options);
1372
1373 c_register_pragma ("STDC", "FLOAT_CONST_DECIMAL64",
1374 handle_pragma_float_const_decimal64);
1375
1376 c_register_pragma_with_expansion (0, "redefine_extname",
1377 handle_pragma_redefine_extname);
1378
1379 c_register_pragma_with_expansion (0, "message", handle_pragma_message);
1380
1381 #ifdef REGISTER_TARGET_PRAGMAS
1382 REGISTER_TARGET_PRAGMAS ();
1383 #endif
1384
1385 /* Allow plugins to register their own pragmas. */
1386 invoke_plugin_callbacks (PLUGIN_PRAGMAS, NULL);
1387 }
1388
1389 #include "gt-c-family-c-pragma.h"