* cgraph.h (cgraph_node_ptr): New type for vector functions.
[official-gcc.git] / gcc / crtstuff.c
blobfb278bc446052586d43f3d0c0bee80de3c0192d3
1 /* Specialized bits of code needed to support construction and
2 destruction of file-scope objects in C++ code.
3 Copyright (C) 1991, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001
4 2002, 2003, 2004, 2005, 2006, 2007, 2009 Free Software Foundation, Inc.
5 Contributed by Ron Guilmette (rfg@monkeys.com).
7 This file is part of GCC.
9 GCC is free software; you can redistribute it and/or modify it under
10 the terms of the GNU General Public License as published by the Free
11 Software Foundation; either version 3, or (at your option) any later
12 version.
14 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
15 WARRANTY; without even the implied warranty of MERCHANTABILITY or
16 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
17 for more details.
19 Under Section 7 of GPL version 3, you are granted additional
20 permissions described in the GCC Runtime Library Exception, version
21 3.1, as published by the Free Software Foundation.
23 You should have received a copy of the GNU General Public License and
24 a copy of the GCC Runtime Library Exception along with this program;
25 see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
26 <http://www.gnu.org/licenses/>. */
28 /* This file is a bit like libgcc2.c in that it is compiled
29 multiple times and yields multiple .o files.
31 This file is useful on target machines where the object file format
32 supports multiple "user-defined" sections (e.g. COFF, ELF, ROSE). On
33 such systems, this file allows us to avoid running collect (or any
34 other such slow and painful kludge). Additionally, if the target
35 system supports a .init section, this file allows us to support the
36 linking of C++ code with a non-C++ main program.
38 Note that if INIT_SECTION_ASM_OP is defined in the tm.h file, then
39 this file *will* make use of the .init section. If that symbol is
40 not defined however, then the .init section will not be used.
42 Currently, only ELF and COFF are supported. It is likely however that
43 ROSE could also be supported, if someone was willing to do the work to
44 make whatever (small?) adaptations are needed. (Some work may be
45 needed on the ROSE assembler and linker also.)
47 This file must be compiled with gcc. */
49 /* Target machine header files require this define. */
50 #define IN_LIBGCC2
52 /* FIXME: Including auto-host is incorrect, but until we have
53 identified the set of defines that need to go into auto-target.h,
54 this will have to do. */
55 #include "auto-host.h"
56 #undef pid_t
57 #undef rlim_t
58 #undef ssize_t
59 #undef vfork
60 #include "tconfig.h"
61 #include "tsystem.h"
62 #include "coretypes.h"
63 #include "tm.h"
64 #include "unwind-dw2-fde.h"
66 #ifndef FORCE_CODE_SECTION_ALIGN
67 # define FORCE_CODE_SECTION_ALIGN
68 #endif
70 #ifndef CRT_CALL_STATIC_FUNCTION
71 # define CRT_CALL_STATIC_FUNCTION(SECTION_OP, FUNC) \
72 static void __attribute__((__used__)) \
73 call_ ## FUNC (void) \
74 { \
75 asm (SECTION_OP); \
76 FUNC (); \
77 FORCE_CODE_SECTION_ALIGN \
78 asm (TEXT_SECTION_ASM_OP); \
80 #endif
82 #if defined(OBJECT_FORMAT_ELF) \
83 && !defined(OBJECT_FORMAT_FLAT) \
84 && defined(HAVE_LD_EH_FRAME_HDR) \
85 && !defined(inhibit_libc) && !defined(CRTSTUFFT_O) \
86 && defined(__GLIBC__) && __GLIBC__ >= 2
87 #include <link.h>
88 /* uClibc pretends to be glibc 2.2 and DT_CONFIG is defined in its link.h.
89 But it doesn't use PT_GNU_EH_FRAME ELF segment currently. */
90 # if !defined(__UCLIBC__) \
91 && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ > 2) \
92 || (__GLIBC__ == 2 && __GLIBC_MINOR__ == 2 && defined(DT_CONFIG)))
93 # define USE_PT_GNU_EH_FRAME
94 # endif
95 #endif
96 #if defined(EH_FRAME_SECTION_NAME) && !defined(USE_PT_GNU_EH_FRAME)
97 # define USE_EH_FRAME_REGISTRY
98 #endif
99 #if defined(EH_FRAME_SECTION_NAME) && EH_TABLES_CAN_BE_READ_ONLY
100 # define EH_FRAME_SECTION_CONST const
101 #else
102 # define EH_FRAME_SECTION_CONST
103 #endif
105 #if !defined(DTOR_LIST_END) && defined(OBJECT_FORMAT_ELF) \
106 && defined(HAVE_GAS_HIDDEN) && !defined(FINI_ARRAY_SECTION_ASM_OP)
107 # define HIDDEN_DTOR_LIST_END
108 #endif
110 /* We do not want to add the weak attribute to the declarations of these
111 routines in unwind-dw2-fde.h because that will cause the definition of
112 these symbols to be weak as well.
114 This exposes a core issue, how to handle creating weak references vs
115 how to create weak definitions. Either we have to have the definition
116 of TARGET_WEAK_ATTRIBUTE be conditional in the shared header files or
117 have a second declaration if we want a function's references to be weak,
118 but not its definition.
120 Making TARGET_WEAK_ATTRIBUTE conditional seems like a good solution until
121 one thinks about scaling to larger problems -- i.e., the condition under
122 which TARGET_WEAK_ATTRIBUTE is active will eventually get far too
123 complicated.
125 So, we take an approach similar to #pragma weak -- we have a second
126 declaration for functions that we want to have weak references.
128 Neither way is particularly good. */
130 /* References to __register_frame_info and __deregister_frame_info should
131 be weak in this file if at all possible. */
132 extern void __register_frame_info (const void *, struct object *)
133 TARGET_ATTRIBUTE_WEAK;
134 extern void __register_frame_info_bases (const void *, struct object *,
135 void *, void *)
136 TARGET_ATTRIBUTE_WEAK;
137 extern void *__deregister_frame_info (const void *)
138 TARGET_ATTRIBUTE_WEAK;
139 extern void *__deregister_frame_info_bases (const void *)
140 TARGET_ATTRIBUTE_WEAK;
141 extern void __do_global_ctors_1 (void);
143 /* Likewise for _Jv_RegisterClasses. */
144 extern void _Jv_RegisterClasses (void *) TARGET_ATTRIBUTE_WEAK;
146 #ifdef OBJECT_FORMAT_ELF
148 /* Declare a pointer to void function type. */
149 typedef void (*func_ptr) (void);
150 #define STATIC static
152 #else /* OBJECT_FORMAT_ELF */
154 #include "gbl-ctors.h"
156 #define STATIC
158 #endif /* OBJECT_FORMAT_ELF */
160 #ifdef CRT_BEGIN
162 /* NOTE: In order to be able to support SVR4 shared libraries, we arrange
163 to have one set of symbols { __CTOR_LIST__, __DTOR_LIST__, __CTOR_END__,
164 __DTOR_END__ } per root executable and also one set of these symbols
165 per shared library. So in any given whole process image, we may have
166 multiple definitions of each of these symbols. In order to prevent
167 these definitions from conflicting with one another, and in order to
168 ensure that the proper lists are used for the initialization/finalization
169 of each individual shared library (respectively), we give these symbols
170 only internal (i.e. `static') linkage, and we also make it a point to
171 refer to only the __CTOR_END__ symbol in crtend.o and the __DTOR_LIST__
172 symbol in crtbegin.o, where they are defined. */
174 /* The -1 is a flag to __do_global_[cd]tors indicating that this table
175 does not start with a count of elements. */
176 #ifdef CTOR_LIST_BEGIN
177 CTOR_LIST_BEGIN;
178 #elif defined(CTORS_SECTION_ASM_OP)
179 /* Hack: force cc1 to switch to .data section early, so that assembling
180 __CTOR_LIST__ does not undo our behind-the-back change to .ctors. */
181 static func_ptr force_to_data[1] __attribute__ ((__unused__)) = { };
182 asm (CTORS_SECTION_ASM_OP);
183 STATIC func_ptr __CTOR_LIST__[1]
184 __attribute__ ((__unused__, aligned(sizeof(func_ptr))))
185 = { (func_ptr) (-1) };
186 #else
187 STATIC func_ptr __CTOR_LIST__[1]
188 __attribute__ ((__unused__, section(".ctors"), aligned(sizeof(func_ptr))))
189 = { (func_ptr) (-1) };
190 #endif /* __CTOR_LIST__ alternatives */
192 #ifdef DTOR_LIST_BEGIN
193 DTOR_LIST_BEGIN;
194 #elif defined(DTORS_SECTION_ASM_OP)
195 asm (DTORS_SECTION_ASM_OP);
196 STATIC func_ptr __DTOR_LIST__[1]
197 __attribute__ ((aligned(sizeof(func_ptr))))
198 = { (func_ptr) (-1) };
199 #else
200 STATIC func_ptr __DTOR_LIST__[1]
201 __attribute__((section(".dtors"), aligned(sizeof(func_ptr))))
202 = { (func_ptr) (-1) };
203 #endif /* __DTOR_LIST__ alternatives */
205 #ifdef USE_EH_FRAME_REGISTRY
206 /* Stick a label at the beginning of the frame unwind info so we can register
207 and deregister it with the exception handling library code. */
208 STATIC EH_FRAME_SECTION_CONST char __EH_FRAME_BEGIN__[]
209 __attribute__((section(EH_FRAME_SECTION_NAME), aligned(4)))
210 = { };
211 #endif /* USE_EH_FRAME_REGISTRY */
213 #ifdef JCR_SECTION_NAME
214 /* Stick a label at the beginning of the java class registration info
215 so we can register them properly. */
216 STATIC void *__JCR_LIST__[]
217 __attribute__ ((unused, section(JCR_SECTION_NAME), aligned(sizeof(void*))))
218 = { };
219 #endif /* JCR_SECTION_NAME */
221 #if defined(INIT_SECTION_ASM_OP) || defined(INIT_ARRAY_SECTION_ASM_OP)
223 #ifdef OBJECT_FORMAT_ELF
225 /* Declare the __dso_handle variable. It should have a unique value
226 in every shared-object; in a main program its value is zero. The
227 object should in any case be protected. This means the instance
228 in one DSO or the main program is not used in another object. The
229 dynamic linker takes care of this. */
231 #ifdef TARGET_LIBGCC_SDATA_SECTION
232 extern void *__dso_handle __attribute__ ((__section__ (TARGET_LIBGCC_SDATA_SECTION)));
233 #endif
234 #ifdef HAVE_GAS_HIDDEN
235 extern void *__dso_handle __attribute__ ((__visibility__ ("hidden")));
236 #endif
237 #ifdef CRTSTUFFS_O
238 void *__dso_handle = &__dso_handle;
239 #else
240 void *__dso_handle = 0;
241 #endif
243 /* The __cxa_finalize function may not be available so we use only a
244 weak declaration. */
245 extern void __cxa_finalize (void *) TARGET_ATTRIBUTE_WEAK;
247 /* Run all the global destructors on exit from the program. */
249 /* Some systems place the number of pointers in the first word of the
250 table. On SVR4 however, that word is -1. In all cases, the table is
251 null-terminated. On SVR4, we start from the beginning of the list and
252 invoke each per-compilation-unit destructor routine in order
253 until we find that null.
255 Note that this function MUST be static. There will be one of these
256 functions in each root executable and one in each shared library, but
257 although they all have the same code, each one is unique in that it
258 refers to one particular associated `__DTOR_LIST__' which belongs to the
259 same particular root executable or shared library file.
261 On some systems, this routine is run more than once from the .fini,
262 when exit is called recursively, so we arrange to remember where in
263 the list we left off processing, and we resume at that point,
264 should we be re-invoked. */
266 static void __attribute__((used))
267 __do_global_dtors_aux (void)
269 static _Bool completed;
271 if (__builtin_expect (completed, 0))
272 return;
274 #ifdef CRTSTUFFS_O
275 if (__cxa_finalize)
276 __cxa_finalize (__dso_handle);
277 #endif
279 #ifdef FINI_ARRAY_SECTION_ASM_OP
280 /* If we are using .fini_array then destructors will be run via that
281 mechanism. */
282 #elif defined(HIDDEN_DTOR_LIST_END)
284 /* Safer version that makes sure only .dtors function pointers are
285 called even if the static variable is maliciously changed. */
286 extern func_ptr __DTOR_END__[] __attribute__((visibility ("hidden")));
287 static size_t dtor_idx;
288 const size_t max_idx = __DTOR_END__ - __DTOR_LIST__ - 1;
289 func_ptr f;
291 while (dtor_idx < max_idx)
293 f = __DTOR_LIST__[++dtor_idx];
294 f ();
297 #else /* !defined (FINI_ARRAY_SECTION_ASM_OP) */
299 static func_ptr *p = __DTOR_LIST__ + 1;
300 func_ptr f;
302 while ((f = *p))
304 p++;
305 f ();
308 #endif /* !defined(FINI_ARRAY_SECTION_ASM_OP) */
310 #ifdef USE_EH_FRAME_REGISTRY
311 #ifdef CRT_GET_RFIB_DATA
312 /* If we used the new __register_frame_info_bases interface,
313 make sure that we deregister from the same place. */
314 if (__deregister_frame_info_bases)
315 __deregister_frame_info_bases (__EH_FRAME_BEGIN__);
316 #else
317 if (__deregister_frame_info)
318 __deregister_frame_info (__EH_FRAME_BEGIN__);
319 #endif
320 #endif
322 completed = 1;
325 /* Stick a call to __do_global_dtors_aux into the .fini section. */
326 #ifdef FINI_SECTION_ASM_OP
327 CRT_CALL_STATIC_FUNCTION (FINI_SECTION_ASM_OP, __do_global_dtors_aux)
328 #else /* !defined(FINI_SECTION_ASM_OP) */
329 static func_ptr __do_global_dtors_aux_fini_array_entry[]
330 __attribute__ ((__unused__, section(".fini_array")))
331 = { __do_global_dtors_aux };
332 #endif /* !defined(FINI_SECTION_ASM_OP) */
334 #if defined(USE_EH_FRAME_REGISTRY) || defined(JCR_SECTION_NAME)
335 /* Stick a call to __register_frame_info into the .init section. For some
336 reason calls with no arguments work more reliably in .init, so stick the
337 call in another function. */
339 static void __attribute__((used))
340 frame_dummy (void)
342 #ifdef USE_EH_FRAME_REGISTRY
343 static struct object object;
344 #ifdef CRT_GET_RFIB_DATA
345 void *tbase, *dbase;
346 tbase = 0;
347 CRT_GET_RFIB_DATA (dbase);
348 if (__register_frame_info_bases)
349 __register_frame_info_bases (__EH_FRAME_BEGIN__, &object, tbase, dbase);
350 #else
351 if (__register_frame_info)
352 __register_frame_info (__EH_FRAME_BEGIN__, &object);
353 #endif /* CRT_GET_RFIB_DATA */
354 #endif /* USE_EH_FRAME_REGISTRY */
355 #ifdef JCR_SECTION_NAME
356 if (__JCR_LIST__[0])
358 void (*register_classes) (void *) = _Jv_RegisterClasses;
359 __asm ("" : "+r" (register_classes));
360 if (register_classes)
361 register_classes (__JCR_LIST__);
363 #endif /* JCR_SECTION_NAME */
366 #ifdef INIT_SECTION_ASM_OP
367 CRT_CALL_STATIC_FUNCTION (INIT_SECTION_ASM_OP, frame_dummy)
368 #else /* defined(INIT_SECTION_ASM_OP) */
369 static func_ptr __frame_dummy_init_array_entry[]
370 __attribute__ ((__unused__, section(".init_array")))
371 = { frame_dummy };
372 #endif /* !defined(INIT_SECTION_ASM_OP) */
373 #endif /* USE_EH_FRAME_REGISTRY || JCR_SECTION_NAME */
375 #else /* OBJECT_FORMAT_ELF */
377 /* The function __do_global_ctors_aux is compiled twice (once in crtbegin.o
378 and once in crtend.o). It must be declared static to avoid a link
379 error. Here, we define __do_global_ctors as an externally callable
380 function. It is externally callable so that __main can invoke it when
381 INVOKE__main is defined. This has the additional effect of forcing cc1
382 to switch to the .text section. */
384 static void __do_global_ctors_aux (void);
385 void
386 __do_global_ctors (void)
388 #ifdef INVOKE__main
389 /* If __main won't actually call __do_global_ctors then it doesn't matter
390 what's inside the function. The inside of __do_global_ctors_aux is
391 called automatically in that case. And the Alliant fx2800 linker
392 crashes on this reference. So prevent the crash. */
393 __do_global_ctors_aux ();
394 #endif
397 asm (INIT_SECTION_ASM_OP); /* cc1 doesn't know that we are switching! */
399 /* A routine to invoke all of the global constructors upon entry to the
400 program. We put this into the .init section (for systems that have
401 such a thing) so that we can properly perform the construction of
402 file-scope static-storage C++ objects within shared libraries. */
404 static void __attribute__((used))
405 __do_global_ctors_aux (void) /* prologue goes in .init section */
407 FORCE_CODE_SECTION_ALIGN /* explicit align before switch to .text */
408 asm (TEXT_SECTION_ASM_OP); /* don't put epilogue and body in .init */
409 DO_GLOBAL_CTORS_BODY;
410 atexit (__do_global_dtors);
413 #endif /* OBJECT_FORMAT_ELF */
415 #elif defined(HAS_INIT_SECTION) /* ! INIT_SECTION_ASM_OP */
417 extern void __do_global_dtors (void);
419 /* This case is used by the Irix 6 port, which supports named sections but
420 not an SVR4-style .fini section. __do_global_dtors can be non-static
421 in this case because we protect it with -hidden_symbol. */
423 void
424 __do_global_dtors (void)
426 func_ptr *p, f;
427 for (p = __DTOR_LIST__ + 1; (f = *p); p++)
428 f ();
430 #ifdef USE_EH_FRAME_REGISTRY
431 if (__deregister_frame_info)
432 __deregister_frame_info (__EH_FRAME_BEGIN__);
433 #endif
436 #if defined(USE_EH_FRAME_REGISTRY) || defined(JCR_SECTION_NAME)
437 /* A helper function for __do_global_ctors, which is in crtend.o. Here
438 in crtbegin.o, we can reference a couple of symbols not visible there.
439 Plus, since we're before libgcc.a, we have no problems referencing
440 functions from there. */
441 void
442 __do_global_ctors_1(void)
444 #ifdef USE_EH_FRAME_REGISTRY
445 static struct object object;
446 if (__register_frame_info)
447 __register_frame_info (__EH_FRAME_BEGIN__, &object);
448 #endif
449 #ifdef JCR_SECTION_NAME
450 if (__JCR_LIST__[0])
452 void (*register_classes) (void *) = _Jv_RegisterClasses;
453 __asm ("" : "+r" (register_classes));
454 if (register_classes)
455 register_classes (__JCR_LIST__);
457 #endif
459 #endif /* USE_EH_FRAME_REGISTRY || JCR_SECTION_NAME */
461 #else /* ! INIT_SECTION_ASM_OP && ! HAS_INIT_SECTION */
462 #error "What are you doing with crtstuff.c, then?"
463 #endif
465 #elif defined(CRT_END) /* ! CRT_BEGIN */
467 /* Put a word containing zero at the end of each of our two lists of function
468 addresses. Note that the words defined here go into the .ctors and .dtors
469 sections of the crtend.o file, and since that file is always linked in
470 last, these words naturally end up at the very ends of the two lists
471 contained in these two sections. */
473 #ifdef CTOR_LIST_END
474 CTOR_LIST_END;
475 #elif defined(CTORS_SECTION_ASM_OP)
476 /* Hack: force cc1 to switch to .data section early, so that assembling
477 __CTOR_LIST__ does not undo our behind-the-back change to .ctors. */
478 static func_ptr force_to_data[1] __attribute__ ((__unused__)) = { };
479 asm (CTORS_SECTION_ASM_OP);
480 STATIC func_ptr __CTOR_END__[1]
481 __attribute__((aligned(sizeof(func_ptr))))
482 = { (func_ptr) 0 };
483 #else
484 STATIC func_ptr __CTOR_END__[1]
485 __attribute__((section(".ctors"), aligned(sizeof(func_ptr))))
486 = { (func_ptr) 0 };
487 #endif
489 #ifdef DTOR_LIST_END
490 DTOR_LIST_END;
491 #elif defined(HIDDEN_DTOR_LIST_END)
492 #ifdef DTORS_SECTION_ASM_OP
493 asm (DTORS_SECTION_ASM_OP);
494 #endif
495 func_ptr __DTOR_END__[1]
496 __attribute__ ((unused,
497 #ifndef DTORS_SECTION_ASM_OP
498 section(".dtors"),
499 #endif
500 aligned(sizeof(func_ptr)), visibility ("hidden")))
501 = { (func_ptr) 0 };
502 #elif defined(DTORS_SECTION_ASM_OP)
503 asm (DTORS_SECTION_ASM_OP);
504 STATIC func_ptr __DTOR_END__[1]
505 __attribute__ ((unused, aligned(sizeof(func_ptr))))
506 = { (func_ptr) 0 };
507 #else
508 STATIC func_ptr __DTOR_END__[1]
509 __attribute__((unused, section(".dtors"), aligned(sizeof(func_ptr))))
510 = { (func_ptr) 0 };
511 #endif
513 #ifdef EH_FRAME_SECTION_NAME
514 /* Terminate the frame unwind info section with a 4byte 0 as a sentinel;
515 this would be the 'length' field in a real FDE. */
516 # if __INT_MAX__ == 2147483647
517 typedef int int32;
518 # elif __LONG_MAX__ == 2147483647
519 typedef long int32;
520 # elif __SHRT_MAX__ == 2147483647
521 typedef short int32;
522 # else
523 # error "Missing a 4 byte integer"
524 # endif
525 STATIC EH_FRAME_SECTION_CONST int32 __FRAME_END__[]
526 __attribute__ ((unused, section(EH_FRAME_SECTION_NAME),
527 aligned(sizeof(int32))))
528 = { 0 };
529 #endif /* EH_FRAME_SECTION_NAME */
531 #ifdef JCR_SECTION_NAME
532 /* Null terminate the .jcr section array. */
533 STATIC void *__JCR_END__[1]
534 __attribute__ ((unused, section(JCR_SECTION_NAME),
535 aligned(sizeof(void *))))
536 = { 0 };
537 #endif /* JCR_SECTION_NAME */
539 #ifdef INIT_ARRAY_SECTION_ASM_OP
541 /* If we are using .init_array, there is nothing to do. */
543 #elif defined(INIT_SECTION_ASM_OP)
545 #ifdef OBJECT_FORMAT_ELF
546 static void __attribute__((used))
547 __do_global_ctors_aux (void)
549 func_ptr *p;
550 for (p = __CTOR_END__ - 1; *p != (func_ptr) -1; p--)
551 (*p) ();
554 /* Stick a call to __do_global_ctors_aux into the .init section. */
555 CRT_CALL_STATIC_FUNCTION (INIT_SECTION_ASM_OP, __do_global_ctors_aux)
556 #else /* OBJECT_FORMAT_ELF */
558 /* Stick the real initialization code, followed by a normal sort of
559 function epilogue at the very end of the .init section for this
560 entire root executable file or for this entire shared library file.
562 Note that we use some tricks here to get *just* the body and just
563 a function epilogue (but no function prologue) into the .init
564 section of the crtend.o file. Specifically, we switch to the .text
565 section, start to define a function, and then we switch to the .init
566 section just before the body code.
568 Earlier on, we put the corresponding function prologue into the .init
569 section of the crtbegin.o file (which will be linked in first).
571 Note that we want to invoke all constructors for C++ file-scope static-
572 storage objects AFTER any other possible initialization actions which
573 may be performed by the code in the .init section contributions made by
574 other libraries, etc. That's because those other initializations may
575 include setup operations for very primitive things (e.g. initializing
576 the state of the floating-point coprocessor, etc.) which should be done
577 before we start to execute any of the user's code. */
579 static void
580 __do_global_ctors_aux (void) /* prologue goes in .text section */
582 asm (INIT_SECTION_ASM_OP);
583 DO_GLOBAL_CTORS_BODY;
584 atexit (__do_global_dtors);
585 } /* epilogue and body go in .init section */
587 FORCE_CODE_SECTION_ALIGN
588 asm (TEXT_SECTION_ASM_OP);
590 #endif /* OBJECT_FORMAT_ELF */
592 #elif defined(HAS_INIT_SECTION) /* ! INIT_SECTION_ASM_OP */
594 extern void __do_global_ctors (void);
596 /* This case is used by the Irix 6 port, which supports named sections but
597 not an SVR4-style .init section. __do_global_ctors can be non-static
598 in this case because we protect it with -hidden_symbol. */
599 void
600 __do_global_ctors (void)
602 func_ptr *p;
603 #if defined(USE_EH_FRAME_REGISTRY) || defined(JCR_SECTION_NAME)
604 __do_global_ctors_1();
605 #endif
606 for (p = __CTOR_END__ - 1; *p != (func_ptr) -1; p--)
607 (*p) ();
610 #else /* ! INIT_SECTION_ASM_OP && ! HAS_INIT_SECTION */
611 #error "What are you doing with crtstuff.c, then?"
612 #endif
614 #else /* ! CRT_BEGIN && ! CRT_END */
615 #error "One of CRT_BEGIN or CRT_END must be defined."
616 #endif