1 /* Generic ECOFF (Extended-COFF) routines.
2 Copyright (C) 1990-2024 Free Software Foundation, Inc.
3 Original version by Per Bothner.
4 Full support added by Ian Lance Taylor, ian@cygnus.com.
6 This file is part of BFD, the Binary File Descriptor library.
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3 of the License, or
11 (at your option) any later version.
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21 MA 02110-1301, USA. */
27 #include "ecoff-bfd.h"
29 #include "aout/stab_gnu.h"
31 /* FIXME: We need the definitions of N_SET[ADTB], but aout64.h defines
32 some other stuff which we don't want and which conflicts with stuff
35 #include "aout/aout64.h"
38 #undef obj_sym_filepos
40 #include "coff/internal.h"
42 #include "coff/symconst.h"
43 #include "coff/ecoff.h"
46 #include "libiberty.h"
48 #define streq(a, b) (strcmp ((a), (b)) == 0)
51 /* This stuff is somewhat copied from coffcode.h. */
52 static asection bfd_debug_section
=
53 BFD_FAKE_SECTION (bfd_debug_section
, NULL
, "*DEBUG*", 0, 0);
55 /* Create an ECOFF object. */
58 _bfd_ecoff_mkobject (bfd
*abfd
)
60 size_t amt
= sizeof (ecoff_data_type
);
62 abfd
->tdata
.ecoff_obj_data
= (struct ecoff_tdata
*) bfd_zalloc (abfd
, amt
);
63 if (abfd
->tdata
.ecoff_obj_data
== NULL
)
69 /* This is a hook called by coff_real_object_p to create any backend
70 specific information. */
73 _bfd_ecoff_mkobject_hook (bfd
*abfd
, void * filehdr
, void * aouthdr
)
75 struct internal_filehdr
*internal_f
= (struct internal_filehdr
*) filehdr
;
76 struct internal_aouthdr
*internal_a
= (struct internal_aouthdr
*) aouthdr
;
77 ecoff_data_type
*ecoff
;
79 if (! _bfd_ecoff_mkobject (abfd
))
82 ecoff
= ecoff_data (abfd
);
84 ecoff
->sym_filepos
= internal_f
->f_symptr
;
86 if (internal_a
!= NULL
)
90 ecoff
->text_start
= internal_a
->text_start
;
91 ecoff
->text_end
= internal_a
->text_start
+ internal_a
->tsize
;
92 ecoff
->gp
= internal_a
->gp_value
;
93 ecoff
->gprmask
= internal_a
->gprmask
;
94 for (i
= 0; i
< 4; i
++)
95 ecoff
->cprmask
[i
] = internal_a
->cprmask
[i
];
96 ecoff
->fprmask
= internal_a
->fprmask
;
97 if (internal_a
->magic
== ECOFF_AOUT_ZMAGIC
)
98 abfd
->flags
|= D_PAGED
;
100 abfd
->flags
&=~ D_PAGED
;
103 /* It turns out that no special action is required by the MIPS or
104 Alpha ECOFF backends. They have different information in the
105 a.out header, but we just copy it all (e.g., gprmask, cprmask and
106 fprmask) and let the swapping routines ensure that only relevant
107 information is written out. */
109 return (void *) ecoff
;
113 _bfd_ecoff_bfd_free_cached_info (bfd
*abfd
)
115 struct ecoff_tdata
*tdata
;
117 if ((bfd_get_format (abfd
) == bfd_object
118 || bfd_get_format (abfd
) == bfd_core
)
119 && (tdata
= ecoff_data (abfd
)) != NULL
)
121 while (tdata
->mips_refhi_list
!= NULL
)
123 struct mips_hi
*ref
= tdata
->mips_refhi_list
;
124 tdata
->mips_refhi_list
= ref
->next
;
127 _bfd_ecoff_free_ecoff_debug_info (&tdata
->debug_info
);
129 return _bfd_generic_bfd_free_cached_info (abfd
);
132 /* Initialize a new section. */
135 _bfd_ecoff_new_section_hook (bfd
*abfd
, asection
*section
)
145 { _TEXT
, SEC_ALLOC
| SEC_CODE
| SEC_LOAD
},
146 { _INIT
, SEC_ALLOC
| SEC_CODE
| SEC_LOAD
},
147 { _FINI
, SEC_ALLOC
| SEC_CODE
| SEC_LOAD
},
148 { _DATA
, SEC_ALLOC
| SEC_DATA
| SEC_LOAD
},
149 { _SDATA
, SEC_ALLOC
| SEC_DATA
| SEC_LOAD
| SEC_SMALL_DATA
},
150 { _RDATA
, SEC_ALLOC
| SEC_DATA
| SEC_LOAD
| SEC_READONLY
},
151 { _LIT8
, SEC_ALLOC
| SEC_DATA
| SEC_LOAD
| SEC_READONLY
| SEC_SMALL_DATA
},
152 { _LIT4
, SEC_ALLOC
| SEC_DATA
| SEC_LOAD
| SEC_READONLY
| SEC_SMALL_DATA
},
153 { _RCONST
, SEC_ALLOC
| SEC_DATA
| SEC_LOAD
| SEC_READONLY
},
154 { _PDATA
, SEC_ALLOC
| SEC_DATA
| SEC_LOAD
| SEC_READONLY
},
156 { _SBSS
, SEC_ALLOC
| SEC_SMALL_DATA
},
157 /* An Irix 4 shared libary. */
158 { _LIB
, SEC_COFF_SHARED_LIBRARY
}
161 section
->alignment_power
= 4;
163 for (i
= 0; i
< ARRAY_SIZE (section_flags
); i
++)
164 if (streq (section
->name
, section_flags
[i
].name
))
166 section
->flags
|= section_flags
[i
].flags
;
171 /* Probably any other section name is SEC_NEVER_LOAD, but I'm
172 uncertain about .init on some systems and I don't know how shared
175 return _bfd_generic_new_section_hook (abfd
, section
);
179 _bfd_ecoff_set_alignment_hook (bfd
*abfd ATTRIBUTE_UNUSED
,
180 asection
*section ATTRIBUTE_UNUSED
,
181 void *scnhdr ATTRIBUTE_UNUSED
)
185 /* Determine the machine architecture and type. This is called from
186 the generic COFF routines. It is the inverse of ecoff_get_magic,
187 below. This could be an ECOFF backend routine, with one version
188 for each target, but there aren't all that many ECOFF targets. */
191 _bfd_ecoff_set_arch_mach_hook (bfd
*abfd
, void * filehdr
)
193 struct internal_filehdr
*internal_f
= (struct internal_filehdr
*) filehdr
;
194 enum bfd_architecture arch
;
197 switch (internal_f
->f_magic
)
200 case MIPS_MAGIC_LITTLE
:
202 arch
= bfd_arch_mips
;
203 mach
= bfd_mach_mips3000
;
206 case MIPS_MAGIC_LITTLE2
:
207 case MIPS_MAGIC_BIG2
:
208 /* MIPS ISA level 2: the r6000. */
209 arch
= bfd_arch_mips
;
210 mach
= bfd_mach_mips6000
;
213 case MIPS_MAGIC_LITTLE3
:
214 case MIPS_MAGIC_BIG3
:
215 /* MIPS ISA level 3: the r4000. */
216 arch
= bfd_arch_mips
;
217 mach
= bfd_mach_mips4000
;
221 arch
= bfd_arch_alpha
;
226 arch
= bfd_arch_obscure
;
231 return bfd_default_set_arch_mach (abfd
, arch
, mach
);
235 _bfd_ecoff_no_long_sections (bfd
*abfd
, int enable
)
242 /* Get the magic number to use based on the architecture and machine.
243 This is the inverse of _bfd_ecoff_set_arch_mach_hook, above. */
246 ecoff_get_magic (bfd
*abfd
)
250 switch (bfd_get_arch (abfd
))
253 switch (bfd_get_mach (abfd
))
257 case bfd_mach_mips3000
:
258 big
= MIPS_MAGIC_BIG
;
259 little
= MIPS_MAGIC_LITTLE
;
262 case bfd_mach_mips6000
:
263 big
= MIPS_MAGIC_BIG2
;
264 little
= MIPS_MAGIC_LITTLE2
;
267 case bfd_mach_mips4000
:
268 big
= MIPS_MAGIC_BIG3
;
269 little
= MIPS_MAGIC_LITTLE3
;
273 return bfd_big_endian (abfd
) ? big
: little
;
284 /* Get the section s_flags to use for a section. */
287 ecoff_sec_to_styp_flags (const char *name
, flagword flags
)
297 { _TEXT
, STYP_TEXT
},
298 { _DATA
, STYP_DATA
},
299 { _SDATA
, STYP_SDATA
},
300 { _RDATA
, STYP_RDATA
},
301 { _LITA
, STYP_LITA
},
302 { _LIT8
, STYP_LIT8
},
303 { _LIT4
, STYP_LIT4
},
305 { _SBSS
, STYP_SBSS
},
306 { _INIT
, STYP_ECOFF_INIT
},
307 { _FINI
, STYP_ECOFF_FINI
},
308 { _PDATA
, STYP_PDATA
},
309 { _XDATA
, STYP_XDATA
},
310 { _LIB
, STYP_ECOFF_LIB
},
312 { _HASH
, STYP_HASH
},
313 { _DYNAMIC
, STYP_DYNAMIC
},
314 { _LIBLIST
, STYP_LIBLIST
},
315 { _RELDYN
, STYP_RELDYN
},
316 { _CONFLIC
, STYP_CONFLIC
},
317 { _DYNSTR
, STYP_DYNSTR
},
318 { _DYNSYM
, STYP_DYNSYM
},
319 { _RCONST
, STYP_RCONST
}
323 for (i
= 0; i
< ARRAY_SIZE (styp_flags
); i
++)
324 if (streq (name
, styp_flags
[i
].name
))
326 styp
= styp_flags
[i
].flags
;
332 if (streq (name
, _COMMENT
))
335 flags
&=~ SEC_NEVER_LOAD
;
337 else if (flags
& SEC_CODE
)
339 else if (flags
& SEC_DATA
)
341 else if (flags
& SEC_READONLY
)
343 else if (flags
& SEC_LOAD
)
349 if (flags
& SEC_NEVER_LOAD
)
355 /* Get the BFD flags to use for a section. */
358 _bfd_ecoff_styp_to_sec_flags (bfd
*abfd ATTRIBUTE_UNUSED
,
360 const char *name ATTRIBUTE_UNUSED
,
361 asection
*section ATTRIBUTE_UNUSED
,
362 flagword
* flags_ptr
)
364 struct internal_scnhdr
*internal_s
= (struct internal_scnhdr
*) hdr
;
365 long styp_flags
= internal_s
->s_flags
;
366 flagword sec_flags
= 0;
368 if (styp_flags
& STYP_NOLOAD
)
369 sec_flags
|= SEC_NEVER_LOAD
;
371 /* For 386 COFF, at least, an unloadable text or data section is
372 actually a shared library section. */
373 if ((styp_flags
& STYP_TEXT
)
374 || (styp_flags
& STYP_ECOFF_INIT
)
375 || (styp_flags
& STYP_ECOFF_FINI
)
376 || (styp_flags
& STYP_DYNAMIC
)
377 || (styp_flags
& STYP_LIBLIST
)
378 || (styp_flags
& STYP_RELDYN
)
379 || styp_flags
== STYP_CONFLIC
380 || (styp_flags
& STYP_DYNSTR
)
381 || (styp_flags
& STYP_DYNSYM
)
382 || (styp_flags
& STYP_HASH
))
384 if (sec_flags
& SEC_NEVER_LOAD
)
385 sec_flags
|= SEC_CODE
| SEC_COFF_SHARED_LIBRARY
;
387 sec_flags
|= SEC_CODE
| SEC_LOAD
| SEC_ALLOC
;
389 else if ((styp_flags
& STYP_DATA
)
390 || (styp_flags
& STYP_RDATA
)
391 || (styp_flags
& STYP_SDATA
)
392 || styp_flags
== STYP_PDATA
393 || styp_flags
== STYP_XDATA
394 || (styp_flags
& STYP_GOT
)
395 || styp_flags
== STYP_RCONST
)
397 if (sec_flags
& SEC_NEVER_LOAD
)
398 sec_flags
|= SEC_DATA
| SEC_COFF_SHARED_LIBRARY
;
400 sec_flags
|= SEC_DATA
| SEC_LOAD
| SEC_ALLOC
;
401 if ((styp_flags
& STYP_RDATA
)
402 || styp_flags
== STYP_PDATA
403 || styp_flags
== STYP_RCONST
)
404 sec_flags
|= SEC_READONLY
;
405 if (styp_flags
& STYP_SDATA
)
406 sec_flags
|= SEC_SMALL_DATA
;
408 else if (styp_flags
& STYP_SBSS
)
409 sec_flags
|= SEC_ALLOC
| SEC_SMALL_DATA
;
410 else if (styp_flags
& STYP_BSS
)
411 sec_flags
|= SEC_ALLOC
;
412 else if ((styp_flags
& STYP_INFO
) || styp_flags
== STYP_COMMENT
)
413 sec_flags
|= SEC_NEVER_LOAD
;
414 else if ((styp_flags
& STYP_LITA
)
415 || (styp_flags
& STYP_LIT8
)
416 || (styp_flags
& STYP_LIT4
))
417 sec_flags
|= SEC_DATA
|SEC_SMALL_DATA
| SEC_LOAD
| SEC_ALLOC
| SEC_READONLY
;
418 else if (styp_flags
& STYP_ECOFF_LIB
)
419 sec_flags
|= SEC_COFF_SHARED_LIBRARY
;
421 sec_flags
|= SEC_ALLOC
| SEC_LOAD
;
423 * flags_ptr
= sec_flags
;
427 /* Read in the symbolic header for an ECOFF object file. */
430 ecoff_slurp_symbolic_header (bfd
*abfd
)
432 const struct ecoff_backend_data
* const backend
= ecoff_backend (abfd
);
433 bfd_size_type external_hdr_size
;
435 HDRR
*internal_symhdr
;
437 /* See if we've already read it in. */
438 if (ecoff_data (abfd
)->debug_info
.symbolic_header
.magic
==
439 backend
->debug_swap
.sym_magic
)
442 /* See whether there is a symbolic header. */
443 if (ecoff_data (abfd
)->sym_filepos
== 0)
449 /* At this point bfd_get_symcount (abfd) holds the number of symbols
450 as read from the file header, but on ECOFF this is always the
451 size of the symbolic information header. It would be cleaner to
452 handle this when we first read the file in coffgen.c. */
453 external_hdr_size
= backend
->debug_swap
.external_hdr_size
;
454 if (bfd_get_symcount (abfd
) != external_hdr_size
)
456 bfd_set_error (bfd_error_bad_value
);
460 /* Read the symbolic information header. */
461 if (bfd_seek (abfd
, ecoff_data (abfd
)->sym_filepos
, SEEK_SET
) != 0)
463 raw
= _bfd_malloc_and_read (abfd
, external_hdr_size
, external_hdr_size
);
467 internal_symhdr
= &ecoff_data (abfd
)->debug_info
.symbolic_header
;
468 (*backend
->debug_swap
.swap_hdr_in
) (abfd
, raw
, internal_symhdr
);
470 if (internal_symhdr
->magic
!= backend
->debug_swap
.sym_magic
)
472 bfd_set_error (bfd_error_bad_value
);
476 #define FIX(start, count) \
477 if (internal_symhdr->start == 0) \
478 internal_symhdr->count = 0;
480 FIX (cbLineOffset
, cbLine
);
481 FIX (cbDnOffset
, idnMax
);
482 FIX (cbPdOffset
, ipdMax
);
483 FIX (cbSymOffset
, isymMax
);
484 FIX (cbOptOffset
, ioptMax
);
485 FIX (cbAuxOffset
, iauxMax
);
486 FIX (cbSsOffset
, issMax
);
487 FIX (cbSsExtOffset
, issExtMax
);
488 FIX (cbFdOffset
, ifdMax
);
489 FIX (cbRfdOffset
, crfd
);
490 FIX (cbExtOffset
, iextMax
);
493 /* Now we can get the correct number of symbols. */
494 abfd
->symcount
= internal_symhdr
->isymMax
+ internal_symhdr
->iextMax
;
503 /* Read in and swap the important symbolic information for an ECOFF
504 object file. This is called by gdb via the read_debug_info entry
505 point in the backend structure. */
508 _bfd_ecoff_slurp_symbolic_info (bfd
*abfd
,
509 asection
*ignore ATTRIBUTE_UNUSED
,
510 struct ecoff_debug_info
*debug
)
512 const struct ecoff_backend_data
* const backend
= ecoff_backend (abfd
);
513 HDRR
*internal_symhdr
;
514 bfd_size_type raw_base
;
515 bfd_size_type raw_size
;
517 bfd_size_type external_fdr_size
;
521 bfd_size_type raw_end
;
522 bfd_size_type cb_end
;
526 BFD_ASSERT (debug
== &ecoff_data (abfd
)->debug_info
);
528 /* Check whether we've already gotten it, and whether there's any to
530 if (debug
->alloc_syments
)
532 if (ecoff_data (abfd
)->sym_filepos
== 0)
538 if (! ecoff_slurp_symbolic_header (abfd
))
541 internal_symhdr
= &debug
->symbolic_header
;
543 /* Read all the symbolic information at once. */
544 raw_base
= (ecoff_data (abfd
)->sym_filepos
545 + backend
->debug_swap
.external_hdr_size
);
547 /* Alpha ecoff makes the determination of raw_size difficult. It has
548 an undocumented debug data section between the symhdr and the first
549 documented section. And the ordering of the sections varies between
550 statically and dynamically linked executables.
551 If bfd supports SEEK_END someday, this code could be simplified. */
554 #define UPDATE_RAW_END(start, count, size) \
556 if (internal_symhdr->count != 0) \
558 if (internal_symhdr->start < raw_base) \
560 if (_bfd_mul_overflow ((unsigned long) internal_symhdr->count, \
563 cb_end = internal_symhdr->start + amt; \
564 if (cb_end < internal_symhdr->start) \
566 if (cb_end > raw_end) \
571 UPDATE_RAW_END (cbLineOffset
, cbLine
, sizeof (unsigned char));
572 UPDATE_RAW_END (cbDnOffset
, idnMax
, backend
->debug_swap
.external_dnr_size
);
573 UPDATE_RAW_END (cbPdOffset
, ipdMax
, backend
->debug_swap
.external_pdr_size
);
574 UPDATE_RAW_END (cbSymOffset
, isymMax
, backend
->debug_swap
.external_sym_size
);
575 /* eraxxon@alumni.rice.edu: ioptMax refers to the size of the
576 optimization symtab, not the number of entries. */
577 UPDATE_RAW_END (cbOptOffset
, ioptMax
, sizeof (char));
578 UPDATE_RAW_END (cbAuxOffset
, iauxMax
, sizeof (union aux_ext
));
579 UPDATE_RAW_END (cbSsOffset
, issMax
, sizeof (char));
580 UPDATE_RAW_END (cbSsExtOffset
, issExtMax
, sizeof (char));
581 UPDATE_RAW_END (cbFdOffset
, ifdMax
, backend
->debug_swap
.external_fdr_size
);
582 UPDATE_RAW_END (cbRfdOffset
, crfd
, backend
->debug_swap
.external_rfd_size
);
583 UPDATE_RAW_END (cbExtOffset
, iextMax
, backend
->debug_swap
.external_ext_size
);
585 #undef UPDATE_RAW_END
587 raw_size
= raw_end
- raw_base
;
590 ecoff_data (abfd
)->sym_filepos
= 0;
593 pos
= ecoff_data (abfd
)->sym_filepos
;
594 pos
+= backend
->debug_swap
.external_hdr_size
;
595 if (bfd_seek (abfd
, pos
, SEEK_SET
) != 0)
597 raw
= _bfd_alloc_and_read (abfd
, raw_size
, raw_size
);
601 debug
->alloc_syments
= true;
603 /* Get pointers for the numeric offsets in the HDRR structure. */
604 #define FIX(start, count, ptr, type) \
605 if (internal_symhdr->count == 0) \
608 debug->ptr = (type) ((char *) raw \
609 + (internal_symhdr->start - raw_base))
611 FIX (cbLineOffset
, cbLine
, line
, unsigned char *);
612 FIX (cbDnOffset
, idnMax
, external_dnr
, void *);
613 FIX (cbPdOffset
, ipdMax
, external_pdr
, void *);
614 FIX (cbSymOffset
, isymMax
, external_sym
, void *);
615 FIX (cbOptOffset
, ioptMax
, external_opt
, void *);
616 FIX (cbAuxOffset
, iauxMax
, external_aux
, union aux_ext
*);
617 FIX (cbSsOffset
, issMax
, ss
, char *);
618 FIX (cbSsExtOffset
, issExtMax
, ssext
, char *);
619 FIX (cbFdOffset
, ifdMax
, external_fdr
, void *);
620 FIX (cbRfdOffset
, crfd
, external_rfd
, void *);
621 FIX (cbExtOffset
, iextMax
, external_ext
, void *);
624 /* Ensure string sections are zero terminated. */
626 debug
->ss
[internal_symhdr
->issMax
- 1] = 0;
628 debug
->ssext
[internal_symhdr
->issExtMax
- 1] = 0;
630 /* I don't want to always swap all the data, because it will just
631 waste time and most programs will never look at it. The only
632 time the linker needs most of the debugging information swapped
633 is when linking big-endian and little-endian MIPS object files
634 together, which is not a common occurrence.
636 We need to look at the fdr to deal with a lot of information in
637 the symbols, so we swap them here. */
638 if (_bfd_mul_overflow ((unsigned long) internal_symhdr
->ifdMax
,
639 sizeof (struct fdr
), &amt
))
642 bfd_set_error (bfd_error_file_too_big
);
645 debug
->fdr
= (FDR
*) bfd_alloc (abfd
, amt
);
646 if (debug
->fdr
== NULL
)
648 external_fdr_size
= backend
->debug_swap
.external_fdr_size
;
649 fdr_ptr
= debug
->fdr
;
650 fraw_src
= (char *) debug
->external_fdr
;
651 /* PR 17512: file: 3372-1243-0.004. */
652 if (fraw_src
== NULL
&& internal_symhdr
->ifdMax
> 0)
654 fraw_end
= fraw_src
+ internal_symhdr
->ifdMax
* external_fdr_size
;
655 for (; fraw_src
< fraw_end
; fraw_src
+= external_fdr_size
, fdr_ptr
++)
656 (*backend
->debug_swap
.swap_fdr_in
) (abfd
, (void *) fraw_src
, fdr_ptr
);
661 /* ECOFF symbol table routines. The ECOFF symbol table is described
662 in gcc/mips-tfile.c. */
664 /* ECOFF uses two common sections. One is the usual one, and the
665 other is for small objects. All the small objects are kept
666 together, and then referenced via the gp pointer, which yields
667 faster assembler code. This is what we use for the small common
669 static asection ecoff_scom_section
;
670 static const asymbol ecoff_scom_symbol
=
671 GLOBAL_SYM_INIT (SCOMMON
, &ecoff_scom_section
);
672 static asection ecoff_scom_section
=
673 BFD_FAKE_SECTION (ecoff_scom_section
, &ecoff_scom_symbol
,
674 SCOMMON
, 0, SEC_IS_COMMON
| SEC_SMALL_DATA
);
676 /* Create an empty symbol. */
679 _bfd_ecoff_make_empty_symbol (bfd
*abfd
)
681 ecoff_symbol_type
*new_symbol
;
682 size_t amt
= sizeof (ecoff_symbol_type
);
684 new_symbol
= (ecoff_symbol_type
*) bfd_zalloc (abfd
, amt
);
685 if (new_symbol
== NULL
)
687 new_symbol
->symbol
.section
= NULL
;
688 new_symbol
->fdr
= NULL
;
689 new_symbol
->local
= false;
690 new_symbol
->native
= NULL
;
691 new_symbol
->symbol
.the_bfd
= abfd
;
692 return &new_symbol
->symbol
;
695 /* Set the BFD flags and section for an ECOFF symbol. */
698 ecoff_set_symbol_info (bfd
*abfd
,
704 asym
->the_bfd
= abfd
;
705 asym
->value
= ecoff_sym
->value
;
706 asym
->section
= &bfd_debug_section
;
709 /* Most symbol types are just for debugging. */
710 switch (ecoff_sym
->st
)
719 if (ECOFF_IS_STAB (ecoff_sym
))
721 asym
->flags
= BSF_DEBUGGING
;
726 asym
->flags
= BSF_DEBUGGING
;
731 asym
->flags
= BSF_EXPORT
| BSF_WEAK
;
733 asym
->flags
= BSF_EXPORT
| BSF_GLOBAL
;
736 asym
->flags
= BSF_LOCAL
;
737 /* Normally, a local stProc symbol will have a corresponding
738 external symbol. We mark the local symbol as a debugging
739 symbol, in order to prevent nm from printing both out.
740 Similarly, we mark stLabel and stabs symbols as debugging
741 symbols. In both cases, we do want to set the value
742 correctly based on the symbol class. */
743 if (ecoff_sym
->st
== stProc
744 || ecoff_sym
->st
== stLabel
745 || ECOFF_IS_STAB (ecoff_sym
))
746 asym
->flags
|= BSF_DEBUGGING
;
749 if (ecoff_sym
->st
== stProc
|| ecoff_sym
->st
== stStaticProc
)
750 asym
->flags
|= BSF_FUNCTION
;
752 switch (ecoff_sym
->sc
)
755 /* Used for compiler generated labels. Leave them in the
756 debugging section, and mark them as local. If BSF_DEBUGGING
757 is set, then nm does not display them for some reason. If no
758 flags are set then the linker whines about them. */
759 asym
->flags
= BSF_LOCAL
;
762 asym
->section
= bfd_make_section_old_way (abfd
, _TEXT
);
763 asym
->value
-= asym
->section
->vma
;
766 asym
->section
= bfd_make_section_old_way (abfd
, _DATA
);
767 asym
->value
-= asym
->section
->vma
;
770 asym
->section
= bfd_make_section_old_way (abfd
, _BSS
);
771 asym
->value
-= asym
->section
->vma
;
774 asym
->flags
= BSF_DEBUGGING
;
777 asym
->section
= bfd_abs_section_ptr
;
780 asym
->section
= bfd_und_section_ptr
;
790 asym
->flags
= BSF_DEBUGGING
;
793 asym
->section
= bfd_make_section_old_way (abfd
, ".sdata");
794 asym
->value
-= asym
->section
->vma
;
797 asym
->section
= bfd_make_section_old_way (abfd
, ".sbss");
798 asym
->value
-= asym
->section
->vma
;
801 asym
->section
= bfd_make_section_old_way (abfd
, ".rdata");
802 asym
->value
-= asym
->section
->vma
;
805 asym
->flags
= BSF_DEBUGGING
;
808 if (asym
->value
> ecoff_data (abfd
)->gp_size
)
810 asym
->section
= bfd_com_section_ptr
;
816 asym
->section
= &ecoff_scom_section
;
821 asym
->flags
= BSF_DEBUGGING
;
824 asym
->section
= bfd_und_section_ptr
;
829 asym
->section
= bfd_make_section_old_way (abfd
, ".init");
830 asym
->value
-= asym
->section
->vma
;
835 asym
->flags
= BSF_DEBUGGING
;
838 asym
->section
= bfd_make_section_old_way (abfd
, ".fini");
839 asym
->value
-= asym
->section
->vma
;
842 asym
->section
= bfd_make_section_old_way (abfd
, ".rconst");
843 asym
->value
-= asym
->section
->vma
;
849 /* Look for special constructors symbols and make relocation entries
850 in a special construction section. These are produced by the
851 -fgnu-linker argument to g++. */
852 if (ECOFF_IS_STAB (ecoff_sym
))
854 switch (ECOFF_UNMARK_STAB (ecoff_sym
->index
))
863 /* Mark the symbol as a constructor. */
864 asym
->flags
|= BSF_CONSTRUCTOR
;
871 /* Read an ECOFF symbol table. */
874 _bfd_ecoff_slurp_symbol_table (bfd
*abfd
)
876 const struct ecoff_backend_data
* const backend
= ecoff_backend (abfd
);
877 const bfd_size_type external_ext_size
878 = backend
->debug_swap
.external_ext_size
;
879 const bfd_size_type external_sym_size
880 = backend
->debug_swap
.external_sym_size
;
881 void (* const swap_ext_in
) (bfd
*, void *, EXTR
*)
882 = backend
->debug_swap
.swap_ext_in
;
883 void (* const swap_sym_in
) (bfd
*, void *, SYMR
*)
884 = backend
->debug_swap
.swap_sym_in
;
885 ecoff_symbol_type
*internal
;
886 ecoff_symbol_type
*internal_ptr
;
893 /* If we've already read in the symbol table, do nothing. */
894 if (ecoff_data (abfd
)->canonical_symbols
!= NULL
)
897 /* Get the symbolic information. */
898 if (! _bfd_ecoff_slurp_symbolic_info (abfd
, NULL
,
899 &ecoff_data (abfd
)->debug_info
))
901 if (bfd_get_symcount (abfd
) == 0)
904 if (_bfd_mul_overflow (bfd_get_symcount (abfd
),
905 sizeof (ecoff_symbol_type
), &amt
))
907 bfd_set_error (bfd_error_file_too_big
);
910 internal
= (ecoff_symbol_type
*) bfd_alloc (abfd
, amt
);
911 if (internal
== NULL
)
914 internal_ptr
= internal
;
915 eraw_src
= (char *) ecoff_data (abfd
)->debug_info
.external_ext
;
917 + (ecoff_data (abfd
)->debug_info
.symbolic_header
.iextMax
918 * external_ext_size
));
919 for (; eraw_src
< eraw_end
; eraw_src
+= external_ext_size
, internal_ptr
++)
923 (*swap_ext_in
) (abfd
, (void *) eraw_src
, &internal_esym
);
925 /* PR 17512: file: 3372-1000-0.004. */
926 HDRR
*symhdr
= &ecoff_data (abfd
)->debug_info
.symbolic_header
;
927 if (internal_esym
.asym
.iss
>= symhdr
->issExtMax
928 || internal_esym
.asym
.iss
< 0)
930 bfd_set_error (bfd_error_bad_value
);
934 internal_ptr
->symbol
.name
= (ecoff_data (abfd
)->debug_info
.ssext
935 + internal_esym
.asym
.iss
);
937 if (!ecoff_set_symbol_info (abfd
, &internal_esym
.asym
,
938 &internal_ptr
->symbol
, 1,
939 internal_esym
.weakext
))
942 /* The alpha uses a negative ifd field for section symbols. */
943 /* PR 17512: file: 3372-1983-0.004. */
944 if (internal_esym
.ifd
>= symhdr
->ifdMax
945 || internal_esym
.ifd
< 0)
946 internal_ptr
->fdr
= NULL
;
948 internal_ptr
->fdr
= (ecoff_data (abfd
)->debug_info
.fdr
949 + internal_esym
.ifd
);
950 internal_ptr
->local
= false;
951 internal_ptr
->native
= (void *) eraw_src
;
954 /* The local symbols must be accessed via the fdr's, because the
955 string and aux indices are relative to the fdr information. */
956 fdr_ptr
= ecoff_data (abfd
)->debug_info
.fdr
;
957 fdr_end
= fdr_ptr
+ ecoff_data (abfd
)->debug_info
.symbolic_header
.ifdMax
;
958 for (; fdr_ptr
< fdr_end
; fdr_ptr
++)
962 HDRR
*symhdr
= &ecoff_data (abfd
)->debug_info
.symbolic_header
;
964 if (fdr_ptr
->csym
== 0)
966 if (fdr_ptr
->isymBase
< 0
967 || fdr_ptr
->isymBase
> symhdr
->isymMax
969 || fdr_ptr
->csym
> ((long) bfd_get_symcount (abfd
)
970 - (internal_ptr
- internal
))
971 || fdr_ptr
->issBase
< 0
972 || fdr_ptr
->issBase
> symhdr
->issMax
)
974 bfd_set_error (bfd_error_bad_value
);
977 lraw_src
= ((char *) ecoff_data (abfd
)->debug_info
.external_sym
978 + fdr_ptr
->isymBase
* external_sym_size
);
979 lraw_end
= lraw_src
+ fdr_ptr
->csym
* external_sym_size
;
982 lraw_src
+= external_sym_size
, internal_ptr
++)
986 (*swap_sym_in
) (abfd
, (void *) lraw_src
, &internal_sym
);
988 if (internal_sym
.iss
>= symhdr
->issMax
- fdr_ptr
->issBase
989 || internal_sym
.iss
< 0)
991 bfd_set_error (bfd_error_bad_value
);
994 internal_ptr
->symbol
.name
= (ecoff_data (abfd
)->debug_info
.ss
997 if (!ecoff_set_symbol_info (abfd
, &internal_sym
,
998 &internal_ptr
->symbol
, 0, 0))
1000 internal_ptr
->fdr
= fdr_ptr
;
1001 internal_ptr
->local
= true;
1002 internal_ptr
->native
= (void *) lraw_src
;
1006 /* PR 17512: file: 3372-3080-0.004.
1007 A discrepancy between ecoff_data (abfd)->debug_info.symbolic_header.isymMax
1008 and ecoff_data (abfd)->debug_info.symbolic_header.ifdMax can mean that
1009 we have fewer symbols than we were expecting. Allow for this by updating
1010 the symbol count and warning the user. */
1011 if (internal_ptr
- internal
< (ptrdiff_t) bfd_get_symcount (abfd
))
1013 abfd
->symcount
= internal_ptr
- internal
;
1015 /* xgettext:c-format */
1016 (_("%pB: warning: isymMax (%ld) is greater than ifdMax (%ld)"),
1017 abfd
, ecoff_data (abfd
)->debug_info
.symbolic_header
.isymMax
,
1018 ecoff_data (abfd
)->debug_info
.symbolic_header
.ifdMax
);
1021 ecoff_data (abfd
)->canonical_symbols
= internal
;
1026 /* Return the amount of space needed for the canonical symbols. */
1029 _bfd_ecoff_get_symtab_upper_bound (bfd
*abfd
)
1031 if (! _bfd_ecoff_slurp_symbolic_info (abfd
, NULL
,
1032 &ecoff_data (abfd
)->debug_info
))
1035 if (bfd_get_symcount (abfd
) == 0)
1038 return (bfd_get_symcount (abfd
) + 1) * (sizeof (ecoff_symbol_type
*));
1041 /* Get the canonical symbols. */
1044 _bfd_ecoff_canonicalize_symtab (bfd
*abfd
, asymbol
**alocation
)
1046 unsigned int counter
= 0;
1047 ecoff_symbol_type
*symbase
;
1048 ecoff_symbol_type
**location
= (ecoff_symbol_type
**) alocation
;
1050 if (! _bfd_ecoff_slurp_symbol_table (abfd
))
1052 if (bfd_get_symcount (abfd
) == 0)
1055 symbase
= ecoff_data (abfd
)->canonical_symbols
;
1056 while (counter
< bfd_get_symcount (abfd
))
1058 *(location
++) = symbase
++;
1062 return bfd_get_symcount (abfd
);
1065 /* Turn ECOFF type information into a printable string.
1066 ecoff_emit_aggregate and ecoff_type_to_string are from
1067 gcc/mips-tdump.c, with swapping added and used_ptr removed. */
1069 /* Write aggregate information to a string. */
1072 ecoff_emit_aggregate (bfd
*abfd
,
1079 const struct ecoff_debug_swap
* const debug_swap
=
1080 &ecoff_backend (abfd
)->debug_swap
;
1081 struct ecoff_debug_info
* const debug_info
= &ecoff_data (abfd
)->debug_info
;
1082 unsigned int ifd
= rndx
->rfd
;
1083 unsigned int indx
= rndx
->index
;
1089 /* An ifd of -1 is an opaque type. An escaped index of 0 is a
1090 struct return type of a procedure compiled without -g. */
1091 if (ifd
== 0xffffffff
1092 || (rndx
->rfd
== 0xfff && indx
== 0))
1093 name
= "<undefined>";
1094 else if (indx
== indexNil
)
1100 if (debug_info
->external_rfd
== NULL
)
1101 fdr
= debug_info
->fdr
+ ifd
;
1106 (*debug_swap
->swap_rfd_in
) (abfd
,
1107 ((char *) debug_info
->external_rfd
1108 + ((fdr
->rfdBase
+ ifd
)
1109 * debug_swap
->external_rfd_size
)),
1111 fdr
= debug_info
->fdr
+ rfd
;
1114 indx
+= fdr
->isymBase
;
1116 (*debug_swap
->swap_sym_in
) (abfd
,
1117 ((char *) debug_info
->external_sym
1118 + indx
* debug_swap
->external_sym_size
),
1121 name
= debug_info
->ss
+ fdr
->issBase
+ sym
.iss
;
1125 "%s %s { ifd = %u, index = %lu }",
1127 ((unsigned long) indx
1128 + debug_info
->symbolic_header
.iextMax
));
1131 /* Convert the type information to string format. */
1134 ecoff_type_to_string (bfd
*abfd
, FDR
*fdr
, unsigned int indx
, char *buff
)
1136 union aux_ext
*aux_ptr
;
1146 unsigned int basic_type
;
1153 aux_ptr
= ecoff_data (abfd
)->debug_info
.external_aux
+ fdr
->iauxBase
;
1154 bigendian
= fdr
->fBigendian
;
1156 for (i
= 0; i
< 7; i
++)
1158 qualifiers
[i
].low_bound
= 0;
1159 qualifiers
[i
].high_bound
= 0;
1160 qualifiers
[i
].stride
= 0;
1163 if (AUX_GET_ISYM (bigendian
, &aux_ptr
[indx
]) == (bfd_vma
) -1)
1164 return "-1 (no type)";
1165 _bfd_ecoff_swap_tir_in (bigendian
, &aux_ptr
[indx
++].a_ti
, &u
.ti
);
1167 basic_type
= u
.ti
.bt
;
1168 qualifiers
[0].type
= u
.ti
.tq0
;
1169 qualifiers
[1].type
= u
.ti
.tq1
;
1170 qualifiers
[2].type
= u
.ti
.tq2
;
1171 qualifiers
[3].type
= u
.ti
.tq3
;
1172 qualifiers
[4].type
= u
.ti
.tq4
;
1173 qualifiers
[5].type
= u
.ti
.tq5
;
1174 qualifiers
[6].type
= tqNil
;
1176 /* Go get the basic type. */
1179 case btNil
: /* Undefined. */
1183 case btAdr
: /* Address - integer same size as pointer. */
1184 strcpy (p1
, "address");
1187 case btChar
: /* Character. */
1188 strcpy (p1
, "char");
1191 case btUChar
: /* Unsigned character. */
1192 strcpy (p1
, "unsigned char");
1195 case btShort
: /* Short. */
1196 strcpy (p1
, "short");
1199 case btUShort
: /* Unsigned short. */
1200 strcpy (p1
, "unsigned short");
1203 case btInt
: /* Int. */
1207 case btUInt
: /* Unsigned int. */
1208 strcpy (p1
, "unsigned int");
1211 case btLong
: /* Long. */
1212 strcpy (p1
, "long");
1215 case btULong
: /* Unsigned long. */
1216 strcpy (p1
, "unsigned long");
1219 case btFloat
: /* Float (real). */
1220 strcpy (p1
, "float");
1223 case btDouble
: /* Double (real). */
1224 strcpy (p1
, "double");
1227 /* Structures add 1-2 aux words:
1228 1st word is [ST_RFDESCAPE, offset] pointer to struct def;
1229 2nd word is file index if 1st word rfd is ST_RFDESCAPE. */
1231 case btStruct
: /* Structure (Record). */
1232 _bfd_ecoff_swap_rndx_in (bigendian
, &aux_ptr
[indx
].a_rndx
, &rndx
);
1233 ecoff_emit_aggregate (abfd
, fdr
, p1
, &rndx
,
1234 (long) AUX_GET_ISYM (bigendian
, &aux_ptr
[indx
+1]),
1236 indx
++; /* Skip aux words. */
1239 /* Unions add 1-2 aux words:
1240 1st word is [ST_RFDESCAPE, offset] pointer to union def;
1241 2nd word is file index if 1st word rfd is ST_RFDESCAPE. */
1243 case btUnion
: /* Union. */
1244 _bfd_ecoff_swap_rndx_in (bigendian
, &aux_ptr
[indx
].a_rndx
, &rndx
);
1245 ecoff_emit_aggregate (abfd
, fdr
, p1
, &rndx
,
1246 (long) AUX_GET_ISYM (bigendian
, &aux_ptr
[indx
+1]),
1248 indx
++; /* Skip aux words. */
1251 /* Enumerations add 1-2 aux words:
1252 1st word is [ST_RFDESCAPE, offset] pointer to enum def;
1253 2nd word is file index if 1st word rfd is ST_RFDESCAPE. */
1255 case btEnum
: /* Enumeration. */
1256 _bfd_ecoff_swap_rndx_in (bigendian
, &aux_ptr
[indx
].a_rndx
, &rndx
);
1257 ecoff_emit_aggregate (abfd
, fdr
, p1
, &rndx
,
1258 (long) AUX_GET_ISYM (bigendian
, &aux_ptr
[indx
+1]),
1260 indx
++; /* Skip aux words. */
1263 case btTypedef
: /* Defined via a typedef, isymRef points. */
1264 strcpy (p1
, "typedef");
1267 case btRange
: /* Subrange of int. */
1268 strcpy (p1
, "subrange");
1271 case btSet
: /* Pascal sets. */
1275 case btComplex
: /* Fortran complex. */
1276 strcpy (p1
, "complex");
1279 case btDComplex
: /* Fortran double complex. */
1280 strcpy (p1
, "double complex");
1283 case btIndirect
: /* Forward or unnamed typedef. */
1284 strcpy (p1
, "forward/unamed typedef");
1287 case btFixedDec
: /* Fixed Decimal. */
1288 strcpy (p1
, "fixed decimal");
1291 case btFloatDec
: /* Float Decimal. */
1292 strcpy (p1
, "float decimal");
1295 case btString
: /* Varying Length Character String. */
1296 strcpy (p1
, "string");
1299 case btBit
: /* Aligned Bit String. */
1303 case btPicture
: /* Picture. */
1304 strcpy (p1
, "picture");
1307 case btVoid
: /* Void. */
1308 strcpy (p1
, "void");
1312 sprintf (p1
, _("unknown basic type %d"), (int) basic_type
);
1318 /* If this is a bitfield, get the bitsize. */
1323 bitsize
= AUX_GET_WIDTH (bigendian
, &aux_ptr
[indx
++]);
1324 sprintf (p1
, " : %d", bitsize
);
1327 /* Deal with any qualifiers. */
1328 if (qualifiers
[0].type
!= tqNil
)
1330 /* Snarf up any array bounds in the correct order. Arrays
1331 store 5 successive words in the aux. table:
1332 word 0 RNDXR to type of the bounds (ie, int)
1333 word 1 Current file descriptor index
1335 word 3 high bound (or -1 if [])
1336 word 4 stride size in bits. */
1337 for (i
= 0; i
< 7; i
++)
1339 if (qualifiers
[i
].type
== tqArray
)
1341 qualifiers
[i
].low_bound
=
1342 AUX_GET_DNLOW (bigendian
, &aux_ptr
[indx
+2]);
1343 qualifiers
[i
].high_bound
=
1344 AUX_GET_DNHIGH (bigendian
, &aux_ptr
[indx
+3]);
1345 qualifiers
[i
].stride
=
1346 AUX_GET_WIDTH (bigendian
, &aux_ptr
[indx
+4]);
1351 /* Now print out the qualifiers. */
1352 for (i
= 0; i
< 6; i
++)
1354 switch (qualifiers
[i
].type
)
1361 strcpy (p2
, "ptr to ");
1362 p2
+= sizeof ("ptr to ")-1;
1366 strcpy (p2
, "volatile ");
1367 p2
+= sizeof ("volatile ")-1;
1371 strcpy (p2
, "far ");
1372 p2
+= sizeof ("far ")-1;
1376 strcpy (p2
, "func. ret. ");
1377 p2
+= sizeof ("func. ret. ");
1382 int first_array
= i
;
1385 /* Print array bounds reversed (ie, in the order the C
1386 programmer writes them). C is such a fun language.... */
1387 while (i
< 5 && qualifiers
[i
+1].type
== tqArray
)
1390 for (j
= i
; j
>= first_array
; j
--)
1392 strcpy (p2
, "array [");
1393 p2
+= sizeof ("array [")-1;
1394 if (qualifiers
[j
].low_bound
!= 0)
1396 "%ld:%ld {%ld bits}",
1397 (long) qualifiers
[j
].low_bound
,
1398 (long) qualifiers
[j
].high_bound
,
1399 (long) qualifiers
[j
].stride
);
1401 else if (qualifiers
[j
].high_bound
!= -1)
1404 (long) (qualifiers
[j
].high_bound
+ 1),
1405 (long) (qualifiers
[j
].stride
));
1408 sprintf (p2
, " {%ld bits}", (long) qualifiers
[j
].stride
);
1411 strcpy (p2
, "] of ");
1412 p2
+= sizeof ("] of ")-1;
1420 strcpy (p2
, buffer1
);
1424 /* Return information about ECOFF symbol SYMBOL in RET. */
1427 _bfd_ecoff_get_symbol_info (bfd
*abfd ATTRIBUTE_UNUSED
,
1431 bfd_symbol_info (symbol
, ret
);
1434 /* Return whether this is a local label. */
1437 _bfd_ecoff_bfd_is_local_label_name (bfd
*abfd ATTRIBUTE_UNUSED
,
1440 return name
[0] == '$';
1443 /* Print information about an ECOFF symbol. */
1446 _bfd_ecoff_print_symbol (bfd
*abfd
,
1449 bfd_print_symbol_type how
)
1451 const struct ecoff_debug_swap
* const debug_swap
1452 = &ecoff_backend (abfd
)->debug_swap
;
1453 FILE *file
= (FILE *)filep
;
1457 case bfd_print_symbol_name
:
1458 fprintf (file
, "%s", symbol
->name
);
1460 case bfd_print_symbol_more
:
1461 if (ecoffsymbol (symbol
)->local
)
1465 (*debug_swap
->swap_sym_in
) (abfd
, ecoffsymbol (symbol
)->native
,
1467 fprintf (file
, "ecoff local ");
1468 bfd_fprintf_vma (abfd
, file
, ecoff_sym
.value
);
1469 fprintf (file
, " %x %x", (unsigned) ecoff_sym
.st
,
1470 (unsigned) ecoff_sym
.sc
);
1476 (*debug_swap
->swap_ext_in
) (abfd
, ecoffsymbol (symbol
)->native
,
1478 fprintf (file
, "ecoff extern ");
1479 bfd_fprintf_vma (abfd
, file
, ecoff_ext
.asym
.value
);
1480 fprintf (file
, " %x %x", (unsigned) ecoff_ext
.asym
.st
,
1481 (unsigned) ecoff_ext
.asym
.sc
);
1484 case bfd_print_symbol_all
:
1485 /* Print out the symbols in a reasonable way. */
1494 if (ecoffsymbol (symbol
)->local
)
1496 (*debug_swap
->swap_sym_in
) (abfd
, ecoffsymbol (symbol
)->native
,
1499 pos
= ((((char *) ecoffsymbol (symbol
)->native
1500 - (char *) ecoff_data (abfd
)->debug_info
.external_sym
)
1501 / debug_swap
->external_sym_size
)
1502 + ecoff_data (abfd
)->debug_info
.symbolic_header
.iextMax
);
1509 (*debug_swap
->swap_ext_in
) (abfd
, ecoffsymbol (symbol
)->native
,
1512 pos
= (((char *) ecoffsymbol (symbol
)->native
1513 - (char *) ecoff_data (abfd
)->debug_info
.external_ext
)
1514 / debug_swap
->external_ext_size
);
1515 jmptbl
= ecoff_ext
.jmptbl
? 'j' : ' ';
1516 cobol_main
= ecoff_ext
.cobol_main
? 'c' : ' ';
1517 weakext
= ecoff_ext
.weakext
? 'w' : ' ';
1520 fprintf (file
, "[%3d] %c ",
1522 bfd_fprintf_vma (abfd
, file
, ecoff_ext
.asym
.value
);
1523 fprintf (file
, " st %x sc %x indx %x %c%c%c %s",
1524 (unsigned) ecoff_ext
.asym
.st
,
1525 (unsigned) ecoff_ext
.asym
.sc
,
1526 (unsigned) ecoff_ext
.asym
.index
,
1527 jmptbl
, cobol_main
, weakext
,
1530 if (ecoffsymbol (symbol
)->fdr
!= NULL
1531 && ecoff_ext
.asym
.index
!= indexNil
)
1536 bfd_size_type sym_base
;
1537 union aux_ext
*aux_base
;
1539 fdr
= ecoffsymbol (symbol
)->fdr
;
1540 indx
= ecoff_ext
.asym
.index
;
1542 /* sym_base is used to map the fdr relative indices which
1543 appear in the file to the position number which we are
1545 sym_base
= fdr
->isymBase
;
1546 if (ecoffsymbol (symbol
)->local
)
1548 ecoff_data (abfd
)->debug_info
.symbolic_header
.iextMax
;
1550 /* aux_base is the start of the aux entries for this file;
1551 asym.index is an offset from this. */
1552 aux_base
= (ecoff_data (abfd
)->debug_info
.external_aux
1555 /* The aux entries are stored in host byte order; the
1556 order is indicated by a bit in the fdr. */
1557 bigendian
= fdr
->fBigendian
;
1559 /* This switch is basically from gcc/mips-tdump.c. */
1560 switch (ecoff_ext
.asym
.st
)
1568 fprintf (file
, _("\n End+1 symbol: %ld"),
1569 (long) (indx
+ sym_base
));
1573 if (ecoff_ext
.asym
.sc
== scText
1574 || ecoff_ext
.asym
.sc
== scInfo
)
1575 fprintf (file
, _("\n First symbol: %ld"),
1576 (long) (indx
+ sym_base
));
1578 fprintf (file
, _("\n First symbol: %ld"),
1580 (AUX_GET_ISYM (bigendian
,
1581 &aux_base
[ecoff_ext
.asym
.index
])
1587 if (ECOFF_IS_STAB (&ecoff_ext
.asym
))
1589 else if (ecoffsymbol (symbol
)->local
)
1592 /* xgettext:c-format */
1593 fprintf (file
, _("\n End+1 symbol: %-7ld Type: %s"),
1595 (AUX_GET_ISYM (bigendian
,
1596 &aux_base
[ecoff_ext
.asym
.index
])
1598 ecoff_type_to_string (abfd
, fdr
, indx
+ 1, buff
));
1601 fprintf (file
, _("\n Local symbol: %ld"),
1604 + (ecoff_data (abfd
)
1605 ->debug_info
.symbolic_header
.iextMax
)));
1609 fprintf (file
, _("\n struct; End+1 symbol: %ld"),
1610 (long) (indx
+ sym_base
));
1614 fprintf (file
, _("\n union; End+1 symbol: %ld"),
1615 (long) (indx
+ sym_base
));
1619 fprintf (file
, _("\n enum; End+1 symbol: %ld"),
1620 (long) (indx
+ sym_base
));
1624 if (! ECOFF_IS_STAB (&ecoff_ext
.asym
))
1627 fprintf (file
, _("\n Type: %s"),
1628 ecoff_type_to_string (abfd
, fdr
, indx
, buff
));
1638 /* Read in the relocs for a section. */
1641 ecoff_slurp_reloc_table (bfd
*abfd
,
1645 const struct ecoff_backend_data
* const backend
= ecoff_backend (abfd
);
1646 arelent
*internal_relocs
;
1647 bfd_size_type external_reloc_size
;
1649 bfd_byte
*external_relocs
;
1653 if (section
->relocation
!= NULL
1654 || section
->reloc_count
== 0
1655 || (section
->flags
& SEC_CONSTRUCTOR
) != 0)
1658 if (! _bfd_ecoff_slurp_symbol_table (abfd
))
1661 external_reloc_size
= backend
->external_reloc_size
;
1662 amt
= external_reloc_size
* section
->reloc_count
;
1663 if (bfd_seek (abfd
, section
->rel_filepos
, SEEK_SET
) != 0)
1665 external_relocs
= _bfd_malloc_and_read (abfd
, amt
, amt
);
1666 if (external_relocs
== NULL
)
1669 amt
= section
->reloc_count
;
1670 amt
*= sizeof (arelent
);
1671 internal_relocs
= (arelent
*) bfd_alloc (abfd
, amt
);
1672 if (internal_relocs
== NULL
)
1674 free (external_relocs
);
1678 for (i
= 0, rptr
= internal_relocs
; i
< section
->reloc_count
; i
++, rptr
++)
1680 struct internal_reloc intern
;
1682 (*backend
->swap_reloc_in
) (abfd
,
1683 external_relocs
+ i
* external_reloc_size
,
1685 rptr
->sym_ptr_ptr
= bfd_abs_section_ptr
->symbol_ptr_ptr
;
1688 if (intern
.r_extern
)
1690 /* r_symndx is an index into the external symbols. */
1692 && intern
.r_symndx
>= 0
1694 < (ecoff_data (abfd
)->debug_info
.symbolic_header
.iextMax
)))
1695 rptr
->sym_ptr_ptr
= symbols
+ intern
.r_symndx
;
1699 const char *sec_name
;
1702 /* r_symndx is a section key. */
1703 switch (intern
.r_symndx
)
1705 case RELOC_SECTION_TEXT
: sec_name
= _TEXT
; break;
1706 case RELOC_SECTION_RDATA
: sec_name
= _RDATA
; break;
1707 case RELOC_SECTION_DATA
: sec_name
= _DATA
; break;
1708 case RELOC_SECTION_SDATA
: sec_name
= _SDATA
; break;
1709 case RELOC_SECTION_SBSS
: sec_name
= _SBSS
; break;
1710 case RELOC_SECTION_BSS
: sec_name
= _BSS
; break;
1711 case RELOC_SECTION_INIT
: sec_name
= _INIT
; break;
1712 case RELOC_SECTION_LIT8
: sec_name
= _LIT8
; break;
1713 case RELOC_SECTION_LIT4
: sec_name
= _LIT4
; break;
1714 case RELOC_SECTION_XDATA
: sec_name
= _XDATA
; break;
1715 case RELOC_SECTION_PDATA
: sec_name
= _PDATA
; break;
1716 case RELOC_SECTION_FINI
: sec_name
= _FINI
; break;
1717 case RELOC_SECTION_LITA
: sec_name
= _LITA
; break;
1718 case RELOC_SECTION_RCONST
: sec_name
= _RCONST
; break;
1724 if (sec_name
!= NULL
)
1726 sec
= bfd_get_section_by_name (abfd
, sec_name
);
1729 rptr
->sym_ptr_ptr
= sec
->symbol_ptr_ptr
;
1730 rptr
->addend
= - bfd_section_vma (sec
);
1735 rptr
->address
= intern
.r_vaddr
- bfd_section_vma (section
);
1737 /* Let the backend select the howto field and do any other
1738 required processing. */
1739 (*backend
->adjust_reloc_in
) (abfd
, &intern
, rptr
);
1742 free (external_relocs
);
1744 section
->relocation
= internal_relocs
;
1749 /* Get a canonical list of relocs. */
1752 _bfd_ecoff_canonicalize_reloc (bfd
*abfd
,
1759 if (section
->flags
& SEC_CONSTRUCTOR
)
1761 arelent_chain
*chain
;
1763 /* This section has relocs made up by us, not the file, so take
1764 them out of their chain and place them into the data area
1766 for (count
= 0, chain
= section
->constructor_chain
;
1767 count
< section
->reloc_count
;
1768 count
++, chain
= chain
->next
)
1769 *relptr
++ = &chain
->relent
;
1775 if (! ecoff_slurp_reloc_table (abfd
, section
, symbols
))
1778 tblptr
= section
->relocation
;
1780 for (count
= 0; count
< section
->reloc_count
; count
++)
1781 *relptr
++ = tblptr
++;
1786 return section
->reloc_count
;
1789 /* Provided a BFD, a section and an offset into the section, calculate
1790 and return the name of the source file and the line nearest to the
1794 _bfd_ecoff_find_nearest_line (bfd
*abfd
,
1795 asymbol
**symbols ATTRIBUTE_UNUSED
,
1798 const char **filename_ptr
,
1799 const char **functionname_ptr
,
1800 unsigned int *retline_ptr
,
1801 unsigned int *discriminator_ptr
)
1803 const struct ecoff_debug_swap
* const debug_swap
1804 = &ecoff_backend (abfd
)->debug_swap
;
1805 struct ecoff_debug_info
* const debug_info
= &ecoff_data (abfd
)->debug_info
;
1806 struct ecoff_find_line
*line_info
;
1808 /* Make sure we have the FDR's. */
1809 if (! _bfd_ecoff_slurp_symbolic_info (abfd
, NULL
, debug_info
)
1810 || bfd_get_symcount (abfd
) == 0)
1813 if (ecoff_data (abfd
)->find_line_info
== NULL
)
1815 size_t amt
= sizeof (struct ecoff_find_line
);
1817 ecoff_data (abfd
)->find_line_info
=
1818 (struct ecoff_find_line
*) bfd_zalloc (abfd
, amt
);
1819 if (ecoff_data (abfd
)->find_line_info
== NULL
)
1823 if (discriminator_ptr
)
1824 *discriminator_ptr
= 0;
1825 line_info
= ecoff_data (abfd
)->find_line_info
;
1826 return _bfd_ecoff_locate_line (abfd
, section
, offset
, debug_info
,
1827 debug_swap
, line_info
, filename_ptr
,
1828 functionname_ptr
, retline_ptr
);
1831 /* Copy private BFD data. This is called by objcopy and strip. We
1832 use it to copy the ECOFF debugging information from one BFD to the
1833 other. It would be theoretically possible to represent the ECOFF
1834 debugging information in the symbol table. However, it would be a
1835 lot of work, and there would be little gain (gas, gdb, and ld
1836 already access the ECOFF debugging information via the
1837 ecoff_debug_info structure, and that structure would have to be
1838 retained in order to support ECOFF debugging in MIPS ELF).
1840 The debugging information for the ECOFF external symbols comes from
1841 the symbol table, so this function only handles the other debugging
1845 _bfd_ecoff_bfd_copy_private_bfd_data (bfd
*ibfd
, bfd
*obfd
)
1847 struct ecoff_debug_info
*iinfo
= &ecoff_data (ibfd
)->debug_info
;
1848 struct ecoff_debug_info
*oinfo
= &ecoff_data (obfd
)->debug_info
;
1850 asymbol
**sym_ptr_ptr
;
1854 /* We only want to copy information over if both BFD's use ECOFF
1856 if (bfd_get_flavour (ibfd
) != bfd_target_ecoff_flavour
1857 || bfd_get_flavour (obfd
) != bfd_target_ecoff_flavour
)
1860 /* Copy the GP value and the register masks. */
1861 ecoff_data (obfd
)->gp
= ecoff_data (ibfd
)->gp
;
1862 ecoff_data (obfd
)->gprmask
= ecoff_data (ibfd
)->gprmask
;
1863 ecoff_data (obfd
)->fprmask
= ecoff_data (ibfd
)->fprmask
;
1864 for (i
= 0; i
< 3; i
++)
1865 ecoff_data (obfd
)->cprmask
[i
] = ecoff_data (ibfd
)->cprmask
[i
];
1867 /* Copy the version stamp. */
1868 oinfo
->symbolic_header
.vstamp
= iinfo
->symbolic_header
.vstamp
;
1870 /* If there are no symbols, don't copy any debugging information. */
1871 c
= bfd_get_symcount (obfd
);
1872 sym_ptr_ptr
= bfd_get_outsymbols (obfd
);
1873 if (c
== 0 || sym_ptr_ptr
== NULL
)
1876 /* See if there are any local symbols. */
1878 for (; c
> 0; c
--, sym_ptr_ptr
++)
1880 if (ecoffsymbol (*sym_ptr_ptr
)->local
)
1889 /* There are some local symbols. We just bring over all the
1890 debugging information. FIXME: This is not quite the right
1891 thing to do. If the user has asked us to discard all
1892 debugging information, then we are probably going to wind up
1893 keeping it because there will probably be some local symbol
1894 which objcopy did not discard. We should actually break
1895 apart the debugging information and only keep that which
1896 applies to the symbols we want to keep. */
1897 oinfo
->symbolic_header
.ilineMax
= iinfo
->symbolic_header
.ilineMax
;
1898 oinfo
->symbolic_header
.cbLine
= iinfo
->symbolic_header
.cbLine
;
1899 oinfo
->line
= iinfo
->line
;
1901 oinfo
->symbolic_header
.idnMax
= iinfo
->symbolic_header
.idnMax
;
1902 oinfo
->external_dnr
= iinfo
->external_dnr
;
1904 oinfo
->symbolic_header
.ipdMax
= iinfo
->symbolic_header
.ipdMax
;
1905 oinfo
->external_pdr
= iinfo
->external_pdr
;
1907 oinfo
->symbolic_header
.isymMax
= iinfo
->symbolic_header
.isymMax
;
1908 oinfo
->external_sym
= iinfo
->external_sym
;
1910 oinfo
->symbolic_header
.ioptMax
= iinfo
->symbolic_header
.ioptMax
;
1911 oinfo
->external_opt
= iinfo
->external_opt
;
1913 oinfo
->symbolic_header
.iauxMax
= iinfo
->symbolic_header
.iauxMax
;
1914 oinfo
->external_aux
= iinfo
->external_aux
;
1916 oinfo
->symbolic_header
.issMax
= iinfo
->symbolic_header
.issMax
;
1917 oinfo
->ss
= iinfo
->ss
;
1919 oinfo
->symbolic_header
.ifdMax
= iinfo
->symbolic_header
.ifdMax
;
1920 oinfo
->external_fdr
= iinfo
->external_fdr
;
1922 oinfo
->symbolic_header
.crfd
= iinfo
->symbolic_header
.crfd
;
1923 oinfo
->external_rfd
= iinfo
->external_rfd
;
1925 /* Flag that oinfo entries should not be freed. */
1926 oinfo
->alloc_syments
= true;
1930 /* We are discarding all the local symbol information. Look
1931 through the external symbols and remove all references to FDR
1932 or aux information. */
1933 c
= bfd_get_symcount (obfd
);
1934 sym_ptr_ptr
= bfd_get_outsymbols (obfd
);
1935 for (; c
> 0; c
--, sym_ptr_ptr
++)
1939 (*(ecoff_backend (obfd
)->debug_swap
.swap_ext_in
))
1940 (obfd
, ecoffsymbol (*sym_ptr_ptr
)->native
, &esym
);
1942 esym
.asym
.index
= indexNil
;
1943 (*(ecoff_backend (obfd
)->debug_swap
.swap_ext_out
))
1944 (obfd
, &esym
, ecoffsymbol (*sym_ptr_ptr
)->native
);
1951 /* Set the architecture. The supported architecture is stored in the
1952 backend pointer. We always set the architecture anyhow, since many
1953 callers ignore the return value. */
1956 _bfd_ecoff_set_arch_mach (bfd
*abfd
,
1957 enum bfd_architecture arch
,
1958 unsigned long machine
)
1960 bfd_default_set_arch_mach (abfd
, arch
, machine
);
1961 return arch
== ecoff_backend (abfd
)->arch
;
1964 /* Get the size of the section headers. */
1967 _bfd_ecoff_sizeof_headers (bfd
*abfd
,
1968 struct bfd_link_info
*info ATTRIBUTE_UNUSED
)
1975 for (current
= abfd
->sections
;
1977 current
= current
->next
)
1980 ret
= (bfd_coff_filhsz (abfd
)
1981 + bfd_coff_aoutsz (abfd
)
1982 + c
* bfd_coff_scnhsz (abfd
));
1983 return (int) BFD_ALIGN (ret
, 16);
1986 /* Get the contents of a section. */
1989 _bfd_ecoff_get_section_contents (bfd
*abfd
,
1993 bfd_size_type count
)
1995 return _bfd_generic_get_section_contents (abfd
, section
, location
,
1999 /* Sort sections by VMA, but put SEC_ALLOC sections first. This is
2000 called via qsort. */
2003 ecoff_sort_hdrs (const void * arg1
, const void * arg2
)
2005 const asection
*hdr1
= *(const asection
**) arg1
;
2006 const asection
*hdr2
= *(const asection
**) arg2
;
2008 if ((hdr1
->flags
& SEC_ALLOC
) != 0)
2010 if ((hdr2
->flags
& SEC_ALLOC
) == 0)
2015 if ((hdr2
->flags
& SEC_ALLOC
) != 0)
2018 if (hdr1
->vma
< hdr2
->vma
)
2020 else if (hdr1
->vma
> hdr2
->vma
)
2026 /* Calculate the file position for each section, and set
2030 ecoff_compute_section_file_positions (bfd
*abfd
)
2032 file_ptr sofar
, file_sofar
;
2033 asection
**sorted_hdrs
;
2038 bool first_data
, first_nonalloc
;
2039 const bfd_vma round
= ecoff_backend (abfd
)->round
;
2042 sofar
= _bfd_ecoff_sizeof_headers (abfd
, NULL
);
2045 /* Sort the sections by VMA. */
2046 amt
= abfd
->section_count
;
2047 amt
*= sizeof (asection
*);
2048 sorted_hdrs
= (asection
**) bfd_malloc (amt
);
2049 if (sorted_hdrs
== NULL
)
2051 for (current
= abfd
->sections
, i
= 0;
2053 current
= current
->next
, i
++)
2054 sorted_hdrs
[i
] = current
;
2055 BFD_ASSERT (i
== abfd
->section_count
);
2057 qsort (sorted_hdrs
, abfd
->section_count
, sizeof (asection
*),
2060 /* Some versions of the OSF linker put the .rdata section in the
2061 text segment, and some do not. */
2062 rdata_in_text
= ecoff_backend (abfd
)->rdata_in_text
;
2065 for (i
= 0; i
< abfd
->section_count
; i
++)
2067 current
= sorted_hdrs
[i
];
2068 if (streq (current
->name
, _RDATA
))
2070 if ((current
->flags
& SEC_CODE
) == 0
2071 && ! streq (current
->name
, _PDATA
)
2072 && ! streq (current
->name
, _RCONST
))
2074 rdata_in_text
= false;
2079 ecoff_data (abfd
)->rdata_in_text
= rdata_in_text
;
2082 first_nonalloc
= true;
2083 for (i
= 0; i
< abfd
->section_count
; i
++)
2085 unsigned int alignment_power
;
2087 current
= sorted_hdrs
[i
];
2089 /* For the Alpha ECOFF .pdata section the lnnoptr field is
2090 supposed to indicate the number of .pdata entries that are
2091 really in the section. Each entry is 8 bytes. We store this
2092 away in line_filepos before increasing the section size. */
2093 if (streq (current
->name
, _PDATA
))
2094 current
->line_filepos
= current
->size
/ 8;
2096 alignment_power
= current
->alignment_power
;
2098 /* On Ultrix, the data sections in an executable file must be
2099 aligned to a page boundary within the file. This does not
2100 affect the section size, though. FIXME: Does this work for
2101 other platforms? It requires some modification for the
2102 Alpha, because .rdata on the Alpha goes with the text, not
2104 if ((abfd
->flags
& EXEC_P
) != 0
2105 && (abfd
->flags
& D_PAGED
) != 0
2107 && (current
->flags
& SEC_CODE
) == 0
2109 || ! streq (current
->name
, _RDATA
))
2110 && ! streq (current
->name
, _PDATA
)
2111 && ! streq (current
->name
, _RCONST
))
2113 sofar
= (sofar
+ round
- 1) &~ (round
- 1);
2114 file_sofar
= (file_sofar
+ round
- 1) &~ (round
- 1);
2117 else if (streq (current
->name
, _LIB
))
2119 /* On Irix 4, the location of contents of the .lib section
2120 from a shared library section is also rounded up to a
2123 sofar
= (sofar
+ round
- 1) &~ (round
- 1);
2124 file_sofar
= (file_sofar
+ round
- 1) &~ (round
- 1);
2126 else if (first_nonalloc
2127 && (current
->flags
& SEC_ALLOC
) == 0
2128 && (abfd
->flags
& D_PAGED
) != 0)
2130 /* Skip up to the next page for an unallocated section, such
2131 as the .comment section on the Alpha. This leaves room
2132 for the .bss section. */
2133 first_nonalloc
= false;
2134 sofar
= (sofar
+ round
- 1) &~ (round
- 1);
2135 file_sofar
= (file_sofar
+ round
- 1) &~ (round
- 1);
2138 /* Align the sections in the file to the same boundary on
2139 which they are aligned in virtual memory. */
2140 sofar
= BFD_ALIGN (sofar
, 1 << alignment_power
);
2141 if ((current
->flags
& SEC_HAS_CONTENTS
) != 0)
2142 file_sofar
= BFD_ALIGN (file_sofar
, 1 << alignment_power
);
2144 if ((abfd
->flags
& D_PAGED
) != 0
2145 && (current
->flags
& SEC_ALLOC
) != 0)
2147 sofar
+= (current
->vma
- sofar
) % round
;
2148 if ((current
->flags
& SEC_HAS_CONTENTS
) != 0)
2149 file_sofar
+= (current
->vma
- file_sofar
) % round
;
2152 if ((current
->flags
& (SEC_HAS_CONTENTS
| SEC_LOAD
)) != 0)
2153 current
->filepos
= file_sofar
;
2155 sofar
+= current
->size
;
2156 if ((current
->flags
& SEC_HAS_CONTENTS
) != 0)
2157 file_sofar
+= current
->size
;
2159 /* Make sure that this section is of the right size too. */
2161 sofar
= BFD_ALIGN (sofar
, 1 << alignment_power
);
2162 if ((current
->flags
& SEC_HAS_CONTENTS
) != 0)
2163 file_sofar
= BFD_ALIGN (file_sofar
, 1 << alignment_power
);
2164 current
->size
+= sofar
- old_sofar
;
2170 ecoff_data (abfd
)->reloc_filepos
= file_sofar
;
2175 /* Determine the location of the relocs for all the sections in the
2176 output file, as well as the location of the symbolic debugging
2179 static bfd_size_type
2180 ecoff_compute_reloc_file_positions (bfd
*abfd
)
2182 const bfd_size_type external_reloc_size
=
2183 ecoff_backend (abfd
)->external_reloc_size
;
2184 file_ptr reloc_base
;
2185 bfd_size_type reloc_size
;
2189 if (! abfd
->output_has_begun
)
2191 if (! ecoff_compute_section_file_positions (abfd
))
2193 abfd
->output_has_begun
= true;
2196 reloc_base
= ecoff_data (abfd
)->reloc_filepos
;
2199 for (current
= abfd
->sections
;
2201 current
= current
->next
)
2203 if (current
->reloc_count
== 0)
2204 current
->rel_filepos
= 0;
2207 bfd_size_type relsize
;
2209 current
->rel_filepos
= reloc_base
;
2210 relsize
= current
->reloc_count
* external_reloc_size
;
2211 reloc_size
+= relsize
;
2212 reloc_base
+= relsize
;
2216 sym_base
= ecoff_data (abfd
)->reloc_filepos
+ reloc_size
;
2218 /* At least on Ultrix, the symbol table of an executable file must
2219 be aligned to a page boundary. FIXME: Is this true on other
2221 if ((abfd
->flags
& EXEC_P
) != 0
2222 && (abfd
->flags
& D_PAGED
) != 0)
2223 sym_base
= ((sym_base
+ ecoff_backend (abfd
)->round
- 1)
2224 &~ (ecoff_backend (abfd
)->round
- 1));
2226 ecoff_data (abfd
)->sym_filepos
= sym_base
;
2231 /* Set the contents of a section. */
2234 _bfd_ecoff_set_section_contents (bfd
*abfd
,
2236 const void * location
,
2238 bfd_size_type count
)
2242 /* This must be done first, because bfd_set_section_contents is
2243 going to set output_has_begun to TRUE. */
2244 if (! abfd
->output_has_begun
2245 && ! ecoff_compute_section_file_positions (abfd
))
2248 /* Handle the .lib section specially so that Irix 4 shared libraries
2249 work out. See coff_set_section_contents in coffcode.h. */
2250 if (streq (section
->name
, _LIB
))
2252 bfd_byte
*rec
, *recend
;
2254 rec
= (bfd_byte
*) location
;
2255 recend
= rec
+ count
;
2256 while (rec
< recend
)
2259 rec
+= bfd_get_32 (abfd
, rec
) * 4;
2262 BFD_ASSERT (rec
== recend
);
2268 pos
= section
->filepos
+ offset
;
2269 if (bfd_seek (abfd
, pos
, SEEK_SET
) != 0
2270 || bfd_write (location
, count
, abfd
) != count
)
2276 /* Set the GP value for an ECOFF file. This is a hook used by the
2280 bfd_ecoff_set_gp_value (bfd
*abfd
, bfd_vma gp_value
)
2282 if (bfd_get_flavour (abfd
) != bfd_target_ecoff_flavour
2283 || bfd_get_format (abfd
) != bfd_object
)
2285 bfd_set_error (bfd_error_invalid_operation
);
2289 ecoff_data (abfd
)->gp
= gp_value
;
2294 /* Set the register masks for an ECOFF file. This is a hook used by
2298 bfd_ecoff_set_regmasks (bfd
*abfd
,
2299 unsigned long gprmask
,
2300 unsigned long fprmask
,
2301 unsigned long *cprmask
)
2303 ecoff_data_type
*tdata
;
2305 if (bfd_get_flavour (abfd
) != bfd_target_ecoff_flavour
2306 || bfd_get_format (abfd
) != bfd_object
)
2308 bfd_set_error (bfd_error_invalid_operation
);
2312 tdata
= ecoff_data (abfd
);
2313 tdata
->gprmask
= gprmask
;
2314 tdata
->fprmask
= fprmask
;
2315 if (cprmask
!= NULL
)
2319 for (i
= 0; i
< 3; i
++)
2320 tdata
->cprmask
[i
] = cprmask
[i
];
2326 /* Get ECOFF EXTR information for an external symbol. This function
2327 is passed to bfd_ecoff_debug_externals. */
2330 ecoff_get_extr (asymbol
*sym
, EXTR
*esym
)
2332 ecoff_symbol_type
*ecoff_sym_ptr
;
2335 if (bfd_asymbol_flavour (sym
) != bfd_target_ecoff_flavour
2336 || ecoffsymbol (sym
)->native
== NULL
)
2338 /* Don't include debugging, local, or section symbols. */
2339 if ((sym
->flags
& BSF_DEBUGGING
) != 0
2340 || (sym
->flags
& BSF_LOCAL
) != 0
2341 || (sym
->flags
& BSF_SECTION_SYM
) != 0)
2345 esym
->cobol_main
= 0;
2346 esym
->weakext
= (sym
->flags
& BSF_WEAK
) != 0;
2349 /* FIXME: we can do better than this for st and sc. */
2350 esym
->asym
.st
= stGlobal
;
2351 esym
->asym
.sc
= scAbs
;
2352 esym
->asym
.reserved
= 0;
2353 esym
->asym
.index
= indexNil
;
2357 ecoff_sym_ptr
= ecoffsymbol (sym
);
2359 if (ecoff_sym_ptr
->local
)
2362 input_bfd
= bfd_asymbol_bfd (sym
);
2363 (*(ecoff_backend (input_bfd
)->debug_swap
.swap_ext_in
))
2364 (input_bfd
, ecoff_sym_ptr
->native
, esym
);
2366 /* If the symbol was defined by the linker, then esym will be
2367 undefined but sym will not be. Get a better class for such a
2369 if ((esym
->asym
.sc
== scUndefined
2370 || esym
->asym
.sc
== scSUndefined
)
2371 && ! bfd_is_und_section (bfd_asymbol_section (sym
)))
2372 esym
->asym
.sc
= scAbs
;
2374 /* Adjust the FDR index for the symbol by that used for the input
2376 if (esym
->ifd
!= -1)
2378 struct ecoff_debug_info
*input_debug
;
2380 input_debug
= &ecoff_data (input_bfd
)->debug_info
;
2381 BFD_ASSERT (esym
->ifd
< input_debug
->symbolic_header
.ifdMax
);
2382 if (input_debug
->ifdmap
!= NULL
)
2383 esym
->ifd
= input_debug
->ifdmap
[esym
->ifd
];
2389 /* Set the external symbol index. This routine is passed to
2390 bfd_ecoff_debug_externals. */
2393 ecoff_set_index (asymbol
*sym
, bfd_size_type indx
)
2395 ecoff_set_sym_index (sym
, indx
);
2398 /* Write out an ECOFF file. */
2401 _bfd_ecoff_write_object_contents (bfd
*abfd
)
2403 const struct ecoff_backend_data
* const backend
= ecoff_backend (abfd
);
2404 const bfd_vma round
= backend
->round
;
2405 const bfd_size_type filhsz
= bfd_coff_filhsz (abfd
);
2406 const bfd_size_type aoutsz
= bfd_coff_aoutsz (abfd
);
2407 const bfd_size_type scnhsz
= bfd_coff_scnhsz (abfd
);
2408 const bfd_size_type external_hdr_size
2409 = backend
->debug_swap
.external_hdr_size
;
2410 const bfd_size_type external_reloc_size
= backend
->external_reloc_size
;
2411 void (* const adjust_reloc_out
) (bfd
*, const arelent
*, struct internal_reloc
*)
2412 = backend
->adjust_reloc_out
;
2413 void (* const swap_reloc_out
) (bfd
*, const struct internal_reloc
*, void *)
2414 = backend
->swap_reloc_out
;
2415 struct ecoff_debug_info
* const debug
= &ecoff_data (abfd
)->debug_info
;
2416 HDRR
* const symhdr
= &debug
->symbolic_header
;
2419 bfd_size_type reloc_size
;
2420 bfd_size_type text_size
;
2422 bool set_text_start
;
2423 bfd_size_type data_size
;
2425 bool set_data_start
;
2426 bfd_size_type bss_size
;
2428 void * reloc_buff
= NULL
;
2429 struct internal_filehdr internal_f
;
2430 struct internal_aouthdr internal_a
;
2433 /* Determine where the sections and relocs will go in the output
2435 reloc_size
= ecoff_compute_reloc_file_positions (abfd
);
2438 for (current
= abfd
->sections
;
2440 current
= current
->next
)
2442 current
->target_index
= count
;
2446 if ((abfd
->flags
& D_PAGED
) != 0)
2447 text_size
= _bfd_ecoff_sizeof_headers (abfd
, NULL
);
2451 set_text_start
= false;
2454 set_data_start
= false;
2457 /* Write section headers to the file. */
2459 /* Allocate buff big enough to hold a section header,
2460 file header, or a.out header. */
2469 buff
= bfd_malloc (siz
);
2474 internal_f
.f_nscns
= 0;
2475 if (bfd_seek (abfd
, filhsz
+ aoutsz
, SEEK_SET
) != 0)
2478 for (current
= abfd
->sections
;
2480 current
= current
->next
)
2482 struct internal_scnhdr section
;
2485 ++internal_f
.f_nscns
;
2487 strncpy (section
.s_name
, current
->name
, sizeof section
.s_name
);
2489 /* This seems to be correct for Irix 4 shared libraries. */
2490 vma
= bfd_section_vma (current
);
2491 if (streq (current
->name
, _LIB
))
2492 section
.s_vaddr
= 0;
2494 section
.s_vaddr
= vma
;
2496 section
.s_paddr
= current
->lma
;
2497 section
.s_size
= current
->size
;
2499 /* If this section is unloadable then the scnptr will be 0. */
2500 if ((current
->flags
& (SEC_LOAD
| SEC_HAS_CONTENTS
)) == 0)
2501 section
.s_scnptr
= 0;
2503 section
.s_scnptr
= current
->filepos
;
2504 section
.s_relptr
= current
->rel_filepos
;
2506 /* FIXME: the lnnoptr of the .sbss or .sdata section of an
2507 object file produced by the assembler is supposed to point to
2508 information about how much room is required by objects of
2509 various different sizes. I think this only matters if we
2510 want the linker to compute the best size to use, or
2511 something. I don't know what happens if the information is
2513 if (! streq (current
->name
, _PDATA
))
2514 section
.s_lnnoptr
= 0;
2517 /* The Alpha ECOFF .pdata section uses the lnnoptr field to
2518 hold the number of entries in the section (each entry is
2519 8 bytes). We stored this in the line_filepos field in
2520 ecoff_compute_section_file_positions. */
2521 section
.s_lnnoptr
= current
->line_filepos
;
2524 section
.s_nreloc
= current
->reloc_count
;
2525 section
.s_nlnno
= 0;
2526 section
.s_flags
= ecoff_sec_to_styp_flags (current
->name
,
2529 if (bfd_coff_swap_scnhdr_out (abfd
, (void *) §ion
, buff
) == 0
2530 || bfd_write (buff
, scnhsz
, abfd
) != scnhsz
)
2533 if ((section
.s_flags
& STYP_TEXT
) != 0
2534 || ((section
.s_flags
& STYP_RDATA
) != 0
2535 && ecoff_data (abfd
)->rdata_in_text
)
2536 || section
.s_flags
== STYP_PDATA
2537 || (section
.s_flags
& STYP_DYNAMIC
) != 0
2538 || (section
.s_flags
& STYP_LIBLIST
) != 0
2539 || (section
.s_flags
& STYP_RELDYN
) != 0
2540 || section
.s_flags
== STYP_CONFLIC
2541 || (section
.s_flags
& STYP_DYNSTR
) != 0
2542 || (section
.s_flags
& STYP_DYNSYM
) != 0
2543 || (section
.s_flags
& STYP_HASH
) != 0
2544 || (section
.s_flags
& STYP_ECOFF_INIT
) != 0
2545 || (section
.s_flags
& STYP_ECOFF_FINI
) != 0
2546 || section
.s_flags
== STYP_RCONST
)
2548 text_size
+= current
->size
;
2549 if (! set_text_start
|| text_start
> vma
)
2552 set_text_start
= true;
2555 else if ((section
.s_flags
& STYP_RDATA
) != 0
2556 || (section
.s_flags
& STYP_DATA
) != 0
2557 || (section
.s_flags
& STYP_LITA
) != 0
2558 || (section
.s_flags
& STYP_LIT8
) != 0
2559 || (section
.s_flags
& STYP_LIT4
) != 0
2560 || (section
.s_flags
& STYP_SDATA
) != 0
2561 || section
.s_flags
== STYP_XDATA
2562 || (section
.s_flags
& STYP_GOT
) != 0)
2564 data_size
+= current
->size
;
2565 if (! set_data_start
|| data_start
> vma
)
2568 set_data_start
= true;
2571 else if ((section
.s_flags
& STYP_BSS
) != 0
2572 || (section
.s_flags
& STYP_SBSS
) != 0)
2573 bss_size
+= current
->size
;
2574 else if (section
.s_flags
== 0
2575 || (section
.s_flags
& STYP_ECOFF_LIB
) != 0
2576 || section
.s_flags
== STYP_COMMENT
)
2582 /* Set up the file header. */
2583 internal_f
.f_magic
= ecoff_get_magic (abfd
);
2585 /* We will NOT put a fucking timestamp in the header here. Every
2586 time you put it back, I will come in and take it out again. I'm
2587 sorry. This field does not belong here. We fill it with a 0 so
2588 it compares the same but is not a reasonable time. --
2590 internal_f
.f_timdat
= 0;
2592 if (bfd_get_symcount (abfd
) != 0)
2594 /* The ECOFF f_nsyms field is not actually the number of
2595 symbols, it's the size of symbolic information header. */
2596 internal_f
.f_nsyms
= external_hdr_size
;
2597 internal_f
.f_symptr
= ecoff_data (abfd
)->sym_filepos
;
2601 internal_f
.f_nsyms
= 0;
2602 internal_f
.f_symptr
= 0;
2605 internal_f
.f_opthdr
= aoutsz
;
2607 internal_f
.f_flags
= F_LNNO
;
2608 if (reloc_size
== 0)
2609 internal_f
.f_flags
|= F_RELFLG
;
2610 if (bfd_get_symcount (abfd
) == 0)
2611 internal_f
.f_flags
|= F_LSYMS
;
2612 if (abfd
->flags
& EXEC_P
)
2613 internal_f
.f_flags
|= F_EXEC
;
2615 if (bfd_little_endian (abfd
))
2616 internal_f
.f_flags
|= F_AR32WR
;
2618 internal_f
.f_flags
|= F_AR32W
;
2620 /* Set up the ``optional'' header. */
2621 if ((abfd
->flags
& D_PAGED
) != 0)
2622 internal_a
.magic
= ECOFF_AOUT_ZMAGIC
;
2624 internal_a
.magic
= ECOFF_AOUT_OMAGIC
;
2626 /* FIXME: Is this really correct? */
2627 internal_a
.vstamp
= symhdr
->vstamp
;
2629 /* At least on Ultrix, these have to be rounded to page boundaries.
2630 FIXME: Is this true on other platforms? */
2631 if ((abfd
->flags
& D_PAGED
) != 0)
2633 internal_a
.tsize
= (text_size
+ round
- 1) &~ (round
- 1);
2634 internal_a
.text_start
= text_start
&~ (round
- 1);
2635 internal_a
.dsize
= (data_size
+ round
- 1) &~ (round
- 1);
2636 internal_a
.data_start
= data_start
&~ (round
- 1);
2640 internal_a
.tsize
= text_size
;
2641 internal_a
.text_start
= text_start
;
2642 internal_a
.dsize
= data_size
;
2643 internal_a
.data_start
= data_start
;
2646 /* On Ultrix, the initial portions of the .sbss and .bss segments
2647 are at the end of the data section. The bsize field in the
2648 optional header records how many bss bytes are required beyond
2649 those in the data section. The value is not rounded to a page
2651 if (bss_size
< internal_a
.dsize
- data_size
)
2654 bss_size
-= internal_a
.dsize
- data_size
;
2655 internal_a
.bsize
= bss_size
;
2656 internal_a
.bss_start
= internal_a
.data_start
+ internal_a
.dsize
;
2658 internal_a
.entry
= bfd_get_start_address (abfd
);
2660 internal_a
.gp_value
= ecoff_data (abfd
)->gp
;
2662 internal_a
.gprmask
= ecoff_data (abfd
)->gprmask
;
2663 internal_a
.fprmask
= ecoff_data (abfd
)->fprmask
;
2664 for (i
= 0; i
< 4; i
++)
2665 internal_a
.cprmask
[i
] = ecoff_data (abfd
)->cprmask
[i
];
2667 /* Let the backend adjust the headers if necessary. */
2668 if (backend
->adjust_headers
)
2670 if (! (*backend
->adjust_headers
) (abfd
, &internal_f
, &internal_a
))
2674 /* Write out the file header and the optional header. */
2675 if (bfd_seek (abfd
, 0, SEEK_SET
) != 0)
2678 bfd_coff_swap_filehdr_out (abfd
, (void *) &internal_f
, buff
);
2679 if (bfd_write (buff
, filhsz
, abfd
) != filhsz
)
2682 bfd_coff_swap_aouthdr_out (abfd
, (void *) &internal_a
, buff
);
2683 if (bfd_write (buff
, aoutsz
, abfd
) != aoutsz
)
2686 /* Build the external symbol information. This must be done before
2687 writing out the relocs so that we know the symbol indices. We
2688 don't do this if this BFD was created by the backend linker,
2689 since it will have already handled the symbols and relocs. */
2690 if (! ecoff_data (abfd
)->linker
)
2692 symhdr
->iextMax
= 0;
2693 symhdr
->issExtMax
= 0;
2694 debug
->external_ext
= debug
->external_ext_end
= NULL
;
2695 debug
->ssext
= debug
->ssext_end
= NULL
;
2696 if (! bfd_ecoff_debug_externals (abfd
, debug
, &backend
->debug_swap
,
2697 (abfd
->flags
& EXEC_P
) == 0,
2698 ecoff_get_extr
, ecoff_set_index
))
2701 /* Write out the relocs. */
2702 for (current
= abfd
->sections
;
2704 current
= current
->next
)
2706 arelent
**reloc_ptr_ptr
;
2707 arelent
**reloc_end
;
2711 if (current
->reloc_count
== 0)
2714 amt
= current
->reloc_count
* external_reloc_size
;
2715 reloc_buff
= bfd_zalloc (abfd
, amt
);
2716 if (reloc_buff
== NULL
)
2719 reloc_ptr_ptr
= current
->orelocation
;
2720 reloc_end
= reloc_ptr_ptr
+ current
->reloc_count
;
2721 out_ptr
= (char *) reloc_buff
;
2724 reloc_ptr_ptr
< reloc_end
;
2725 reloc_ptr_ptr
++, out_ptr
+= external_reloc_size
)
2729 struct internal_reloc in
;
2731 memset ((void *) &in
, 0, sizeof in
);
2733 reloc
= *reloc_ptr_ptr
;
2734 sym
= *reloc
->sym_ptr_ptr
;
2736 /* If the howto field has not been initialised then skip this reloc.
2737 This assumes that an error message has been issued elsewhere. */
2738 if (reloc
->howto
== NULL
)
2741 in
.r_vaddr
= reloc
->address
+ bfd_section_vma (current
);
2742 in
.r_type
= reloc
->howto
->type
;
2744 if ((sym
->flags
& BSF_SECTION_SYM
) == 0)
2746 in
.r_symndx
= ecoff_get_sym_index (*reloc
->sym_ptr_ptr
);
2760 { _TEXT
, RELOC_SECTION_TEXT
},
2761 { _RDATA
, RELOC_SECTION_RDATA
},
2762 { _DATA
, RELOC_SECTION_DATA
},
2763 { _SDATA
, RELOC_SECTION_SDATA
},
2764 { _SBSS
, RELOC_SECTION_SBSS
},
2765 { _BSS
, RELOC_SECTION_BSS
},
2766 { _INIT
, RELOC_SECTION_INIT
},
2767 { _LIT8
, RELOC_SECTION_LIT8
},
2768 { _LIT4
, RELOC_SECTION_LIT4
},
2769 { _XDATA
, RELOC_SECTION_XDATA
},
2770 { _PDATA
, RELOC_SECTION_PDATA
},
2771 { _FINI
, RELOC_SECTION_FINI
},
2772 { _LITA
, RELOC_SECTION_LITA
},
2773 { "*ABS*", RELOC_SECTION_ABS
},
2774 { _RCONST
, RELOC_SECTION_RCONST
}
2777 name
= bfd_section_name (bfd_asymbol_section (sym
));
2779 for (j
= 0; j
< ARRAY_SIZE (section_symndx
); j
++)
2780 if (streq (name
, section_symndx
[j
].name
))
2782 in
.r_symndx
= section_symndx
[j
].r_symndx
;
2786 if (j
== ARRAY_SIZE (section_symndx
))
2791 (*adjust_reloc_out
) (abfd
, reloc
, &in
);
2793 (*swap_reloc_out
) (abfd
, &in
, (void *) out_ptr
);
2796 if (bfd_seek (abfd
, current
->rel_filepos
, SEEK_SET
) != 0)
2798 amt
= current
->reloc_count
* external_reloc_size
;
2799 if (bfd_write (reloc_buff
, amt
, abfd
) != amt
)
2801 bfd_release (abfd
, reloc_buff
);
2805 /* Write out the symbolic debugging information. */
2806 if (bfd_get_symcount (abfd
) > 0)
2808 /* Write out the debugging information. */
2809 if (! bfd_ecoff_write_debug (abfd
, debug
, &backend
->debug_swap
,
2810 ecoff_data (abfd
)->sym_filepos
))
2815 /* The .bss section of a demand paged executable must receive an
2816 entire page. If there are symbols, the symbols will start on the
2817 next page. If there are no symbols, we must fill out the page by
2819 if (bfd_get_symcount (abfd
) == 0
2820 && (abfd
->flags
& EXEC_P
) != 0
2821 && (abfd
->flags
& D_PAGED
) != 0)
2825 if (bfd_seek (abfd
, ecoff_data (abfd
)->sym_filepos
- 1, SEEK_SET
) != 0)
2827 if (bfd_read (&c
, 1, abfd
) == 0)
2829 if (bfd_seek (abfd
, ecoff_data (abfd
)->sym_filepos
- 1, SEEK_SET
) != 0)
2831 if (bfd_write (&c
, 1, abfd
) != 1)
2835 if (reloc_buff
!= NULL
)
2836 bfd_release (abfd
, reloc_buff
);
2840 if (reloc_buff
!= NULL
)
2841 bfd_release (abfd
, reloc_buff
);
2846 /* Archive handling. ECOFF uses what appears to be a unique type of
2847 archive header (armap). The byte ordering of the armap and the
2848 contents are encoded in the name of the armap itself. At least for
2849 now, we only support archives with the same byte ordering in the
2850 armap and the contents.
2852 The first four bytes in the armap are the number of symbol
2853 definitions. This is always a power of two.
2855 This is followed by the symbol definitions. Each symbol definition
2856 occupies 8 bytes. The first four bytes are the offset from the
2857 start of the armap strings to the null-terminated string naming
2858 this symbol. The second four bytes are the file offset to the
2859 archive member which defines this symbol. If the second four bytes
2860 are 0, then this is not actually a symbol definition, and it should
2863 The symbols are hashed into the armap with a closed hashing scheme.
2864 See the functions below for the details of the algorithm.
2866 After the symbol definitions comes four bytes holding the size of
2867 the string table, followed by the string table itself. */
2869 /* The name of an archive headers looks like this:
2870 __________E[BL]E[BL]_ (with a trailing space).
2871 The trailing space is changed to an X if the archive is changed to
2872 indicate that the armap is out of date.
2874 The Alpha seems to use ________64E[BL]E[BL]_. */
2876 #define ARMAP_BIG_ENDIAN 'B'
2877 #define ARMAP_LITTLE_ENDIAN 'L'
2878 #define ARMAP_MARKER 'E'
2879 #define ARMAP_START_LENGTH 10
2880 #define ARMAP_HEADER_MARKER_INDEX 10
2881 #define ARMAP_HEADER_ENDIAN_INDEX 11
2882 #define ARMAP_OBJECT_MARKER_INDEX 12
2883 #define ARMAP_OBJECT_ENDIAN_INDEX 13
2884 #define ARMAP_END_INDEX 14
2885 #define ARMAP_END "_ "
2887 /* This is a magic number used in the hashing algorithm. */
2888 #define ARMAP_HASH_MAGIC 0x9dd68ab5
2890 /* This returns the hash value to use for a string. It also sets
2891 *REHASH to the rehash adjustment if the first slot is taken. SIZE
2892 is the number of entries in the hash table, and HLOG is the log
2896 ecoff_armap_hash (const char *s
,
2897 unsigned int *rehash
,
2907 hash
= ((hash
>> 27) | (hash
<< 5)) + *s
++;
2908 hash
*= ARMAP_HASH_MAGIC
;
2909 *rehash
= (hash
& (size
- 1)) | 1;
2910 return hash
>> (32 - hlog
);
2913 /* Read in the armap. */
2916 _bfd_ecoff_slurp_armap (bfd
*abfd
)
2920 struct areltdata
*mapdata
;
2921 bfd_size_type parsed_size
, stringsize
;
2923 struct artdata
*ardata
;
2930 /* Get the name of the first element. */
2931 i
= bfd_read (nextname
, 16, abfd
);
2937 if (bfd_seek (abfd
, -16, SEEK_CUR
) != 0)
2940 /* Irix 4.0.5F apparently can use either an ECOFF armap or a
2941 standard COFF armap. We could move the ECOFF armap stuff into
2942 bfd_slurp_armap, but that seems inappropriate since no other
2943 target uses this format. Instead, we check directly for a COFF
2945 if (startswith (nextname
, "/ "))
2946 return bfd_slurp_armap (abfd
);
2948 /* See if the first element is an armap. */
2949 if (strncmp (nextname
, ecoff_backend (abfd
)->armap_start
, ARMAP_START_LENGTH
) != 0
2950 || nextname
[ARMAP_HEADER_MARKER_INDEX
] != ARMAP_MARKER
2951 || (nextname
[ARMAP_HEADER_ENDIAN_INDEX
] != ARMAP_BIG_ENDIAN
2952 && nextname
[ARMAP_HEADER_ENDIAN_INDEX
] != ARMAP_LITTLE_ENDIAN
)
2953 || nextname
[ARMAP_OBJECT_MARKER_INDEX
] != ARMAP_MARKER
2954 || (nextname
[ARMAP_OBJECT_ENDIAN_INDEX
] != ARMAP_BIG_ENDIAN
2955 && nextname
[ARMAP_OBJECT_ENDIAN_INDEX
] != ARMAP_LITTLE_ENDIAN
)
2956 || strncmp (nextname
+ ARMAP_END_INDEX
, ARMAP_END
, sizeof ARMAP_END
- 1) != 0)
2958 abfd
->has_armap
= false;
2962 /* Make sure we have the right byte ordering. */
2963 if (((nextname
[ARMAP_HEADER_ENDIAN_INDEX
] == ARMAP_BIG_ENDIAN
)
2964 ^ (bfd_header_big_endian (abfd
)))
2965 || ((nextname
[ARMAP_OBJECT_ENDIAN_INDEX
] == ARMAP_BIG_ENDIAN
)
2966 ^ (bfd_big_endian (abfd
))))
2968 bfd_set_error (bfd_error_wrong_format
);
2972 /* Read in the armap. */
2973 ardata
= bfd_ardata (abfd
);
2974 mapdata
= (struct areltdata
*) _bfd_read_ar_hdr (abfd
);
2975 if (mapdata
== NULL
)
2977 parsed_size
= mapdata
->parsed_size
;
2980 if (parsed_size
+ 1 < 9)
2982 bfd_set_error (bfd_error_malformed_archive
);
2986 raw_armap
= (char *) _bfd_alloc_and_read (abfd
, parsed_size
+ 1, parsed_size
);
2987 if (raw_armap
== NULL
)
2989 raw_armap
[parsed_size
] = 0;
2991 ardata
->tdata
= (void *) raw_armap
;
2993 count
= H_GET_32 (abfd
, raw_armap
);
2994 if ((parsed_size
- 8) / 8 < count
)
2995 goto error_malformed
;
2997 ardata
->symdef_count
= 0;
2998 ardata
->cache
= NULL
;
3000 /* This code used to overlay the symdefs over the raw archive data,
3001 but that doesn't work on a 64 bit host. */
3002 stringbase
= raw_armap
+ count
* 8 + 8;
3003 stringsize
= parsed_size
- (count
* 8 + 8);
3005 #ifdef CHECK_ARMAP_HASH
3009 /* Double check that I have the hashing algorithm right by making
3010 sure that every symbol can be looked up successfully. */
3012 for (i
= 1; i
< count
; i
<<= 1)
3014 BFD_ASSERT (i
== count
);
3016 raw_ptr
= raw_armap
+ 4;
3017 for (i
= 0; i
< count
; i
++, raw_ptr
+= 8)
3019 unsigned int name_offset
, file_offset
;
3020 unsigned int hash
, rehash
, srch
;
3022 name_offset
= H_GET_32 (abfd
, raw_ptr
);
3023 file_offset
= H_GET_32 (abfd
, (raw_ptr
+ 4));
3024 if (file_offset
== 0)
3026 hash
= ecoff_armap_hash (stringbase
+ name_offset
, &rehash
, count
,
3031 /* See if we can rehash to this location. */
3032 for (srch
= (hash
+ rehash
) & (count
- 1);
3033 srch
!= hash
&& srch
!= i
;
3034 srch
= (srch
+ rehash
) & (count
- 1))
3035 BFD_ASSERT (H_GET_32 (abfd
, (raw_armap
+ 8 + srch
* 8)) != 0);
3036 BFD_ASSERT (srch
== i
);
3040 #endif /* CHECK_ARMAP_HASH */
3042 raw_ptr
= raw_armap
+ 4;
3043 for (i
= 0; i
< count
; i
++, raw_ptr
+= 8)
3044 if (H_GET_32 (abfd
, (raw_ptr
+ 4)) != 0)
3045 ++ardata
->symdef_count
;
3047 amt
= ardata
->symdef_count
;
3048 amt
*= sizeof (carsym
);
3049 symdef_ptr
= (carsym
*) bfd_alloc (abfd
, amt
);
3053 ardata
->symdefs
= symdef_ptr
;
3055 raw_ptr
= raw_armap
+ 4;
3056 for (i
= 0; i
< count
; i
++, raw_ptr
+= 8)
3058 unsigned int name_offset
, file_offset
;
3060 file_offset
= H_GET_32 (abfd
, (raw_ptr
+ 4));
3061 if (file_offset
== 0)
3063 name_offset
= H_GET_32 (abfd
, raw_ptr
);
3064 if (name_offset
> stringsize
)
3065 goto error_malformed
;
3066 symdef_ptr
->name
= stringbase
+ name_offset
;
3067 symdef_ptr
->file_offset
= file_offset
;
3071 ardata
->first_file_filepos
= bfd_tell (abfd
);
3072 /* Pad to an even boundary. */
3073 ardata
->first_file_filepos
+= ardata
->first_file_filepos
% 2;
3074 abfd
->has_armap
= true;
3078 bfd_set_error (bfd_error_malformed_archive
);
3080 ardata
->symdef_count
= 0;
3081 ardata
->symdefs
= NULL
;
3082 ardata
->tdata
= NULL
;
3083 bfd_release (abfd
, raw_armap
);
3087 /* Write out an armap. */
3090 _bfd_ecoff_write_armap (bfd
*abfd
,
3091 unsigned int elength
,
3093 unsigned int orl_count
,
3096 unsigned int hashsize
, hashlog
;
3097 bfd_size_type symdefsize
;
3099 unsigned int stringsize
;
3100 unsigned int mapsize
;
3103 struct stat statbuf
;
3106 bfd_byte
*hashtable
;
3110 /* Ultrix appears to use as a hash table size the least power of two
3111 greater than twice the number of entries. */
3112 for (hashlog
= 0; ((unsigned int) 1 << hashlog
) <= 2 * orl_count
; hashlog
++)
3114 hashsize
= 1 << hashlog
;
3116 symdefsize
= hashsize
* 8;
3118 stringsize
= stridx
+ padit
;
3120 /* Include 8 bytes to store symdefsize and stringsize in output. */
3121 mapsize
= symdefsize
+ stringsize
+ 8;
3123 firstreal
= SARMAG
+ sizeof (struct ar_hdr
) + mapsize
+ elength
;
3125 memset ((void *) &hdr
, 0, sizeof hdr
);
3127 /* Work out the ECOFF armap name. */
3128 strcpy (hdr
.ar_name
, ecoff_backend (abfd
)->armap_start
);
3129 hdr
.ar_name
[ARMAP_HEADER_MARKER_INDEX
] = ARMAP_MARKER
;
3130 hdr
.ar_name
[ARMAP_HEADER_ENDIAN_INDEX
] =
3131 (bfd_header_big_endian (abfd
)
3133 : ARMAP_LITTLE_ENDIAN
);
3134 hdr
.ar_name
[ARMAP_OBJECT_MARKER_INDEX
] = ARMAP_MARKER
;
3135 hdr
.ar_name
[ARMAP_OBJECT_ENDIAN_INDEX
] =
3136 bfd_big_endian (abfd
) ? ARMAP_BIG_ENDIAN
: ARMAP_LITTLE_ENDIAN
;
3137 memcpy (hdr
.ar_name
+ ARMAP_END_INDEX
, ARMAP_END
, sizeof ARMAP_END
- 1);
3139 /* Write the timestamp of the archive header to be just a little bit
3140 later than the timestamp of the file, otherwise the linker will
3141 complain that the index is out of date. Actually, the Ultrix
3142 linker just checks the archive name; the GNU linker may check the
3144 stat (bfd_get_filename (abfd
), &statbuf
);
3145 _bfd_ar_spacepad (hdr
.ar_date
, sizeof (hdr
.ar_date
), "%ld",
3146 (long) (statbuf
.st_mtime
+ 60));
3148 /* The DECstation uses zeroes for the uid, gid and mode of the
3150 hdr
.ar_uid
[0] = '0';
3151 hdr
.ar_gid
[0] = '0';
3152 /* Building gcc ends up extracting the armap as a file - twice. */
3153 hdr
.ar_mode
[0] = '6';
3154 hdr
.ar_mode
[1] = '4';
3155 hdr
.ar_mode
[2] = '4';
3157 _bfd_ar_spacepad (hdr
.ar_size
, sizeof (hdr
.ar_size
), "%-10ld", mapsize
);
3159 hdr
.ar_fmag
[0] = '`';
3160 hdr
.ar_fmag
[1] = '\012';
3162 /* Turn all null bytes in the header into spaces. */
3163 for (i
= 0; i
< sizeof (struct ar_hdr
); i
++)
3164 if (((char *) (&hdr
))[i
] == '\0')
3165 (((char *) (&hdr
))[i
]) = ' ';
3167 if (bfd_write (&hdr
, sizeof (struct ar_hdr
), abfd
) != sizeof (struct ar_hdr
))
3170 H_PUT_32 (abfd
, hashsize
, temp
);
3171 if (bfd_write (temp
, 4, abfd
) != 4)
3174 hashtable
= (bfd_byte
*) bfd_zalloc (abfd
, symdefsize
);
3178 current
= abfd
->archive_head
;
3180 for (i
= 0; i
< orl_count
; i
++)
3182 unsigned int hash
, rehash
= 0;
3184 /* Advance firstreal to the file position of this archive
3186 if (map
[i
].u
.abfd
!= last_elt
)
3190 firstreal
+= arelt_size (current
) + sizeof (struct ar_hdr
);
3191 firstreal
+= firstreal
% 2;
3192 current
= current
->archive_next
;
3194 while (current
!= map
[i
].u
.abfd
);
3199 hash
= ecoff_armap_hash (*map
[i
].name
, &rehash
, hashsize
, hashlog
);
3200 if (H_GET_32 (abfd
, (hashtable
+ (hash
* 8) + 4)) != 0)
3204 /* The desired slot is already taken. */
3205 for (srch
= (hash
+ rehash
) & (hashsize
- 1);
3207 srch
= (srch
+ rehash
) & (hashsize
- 1))
3208 if (H_GET_32 (abfd
, (hashtable
+ (srch
* 8) + 4)) == 0)
3211 BFD_ASSERT (srch
!= hash
);
3216 H_PUT_32 (abfd
, map
[i
].namidx
, (hashtable
+ hash
* 8));
3217 H_PUT_32 (abfd
, firstreal
, (hashtable
+ hash
* 8 + 4));
3220 if (bfd_write (hashtable
, symdefsize
, abfd
) != symdefsize
)
3223 bfd_release (abfd
, hashtable
);
3225 /* Now write the strings. */
3226 H_PUT_32 (abfd
, stringsize
, temp
);
3227 if (bfd_write (temp
, 4, abfd
) != 4)
3229 for (i
= 0; i
< orl_count
; i
++)
3233 len
= strlen (*map
[i
].name
) + 1;
3234 if (bfd_write (*map
[i
].name
, len
, abfd
) != len
)
3238 /* The spec sez this should be a newline. But in order to be
3239 bug-compatible for DECstation ar we use a null. */
3242 if (bfd_write ("", 1, abfd
) != 1)
3249 /* ECOFF linker code. */
3251 /* Routine to create an entry in an ECOFF link hash table. */
3253 static struct bfd_hash_entry
*
3254 ecoff_link_hash_newfunc (struct bfd_hash_entry
*entry
,
3255 struct bfd_hash_table
*table
,
3258 struct ecoff_link_hash_entry
*ret
= (struct ecoff_link_hash_entry
*) entry
;
3260 /* Allocate the structure if it has not already been allocated by a
3263 ret
= ((struct ecoff_link_hash_entry
*)
3264 bfd_hash_allocate (table
, sizeof (struct ecoff_link_hash_entry
)));
3268 /* Call the allocation method of the superclass. */
3269 ret
= ((struct ecoff_link_hash_entry
*)
3270 _bfd_link_hash_newfunc ((struct bfd_hash_entry
*) ret
,
3275 /* Set local fields. */
3281 memset ((void *) &ret
->esym
, 0, sizeof ret
->esym
);
3283 return (struct bfd_hash_entry
*) ret
;
3286 /* Create an ECOFF link hash table. */
3288 struct bfd_link_hash_table
*
3289 _bfd_ecoff_bfd_link_hash_table_create (bfd
*abfd
)
3291 struct ecoff_link_hash_table
*ret
;
3292 size_t amt
= sizeof (struct ecoff_link_hash_table
);
3294 ret
= (struct ecoff_link_hash_table
*) bfd_malloc (amt
);
3297 if (!_bfd_link_hash_table_init (&ret
->root
, abfd
,
3298 ecoff_link_hash_newfunc
,
3299 sizeof (struct ecoff_link_hash_entry
)))
3307 /* Look up an entry in an ECOFF link hash table. */
3309 #define ecoff_link_hash_lookup(table, string, create, copy, follow) \
3310 ((struct ecoff_link_hash_entry *) \
3311 bfd_link_hash_lookup (&(table)->root, (string), (create), (copy), (follow)))
3313 /* Get the ECOFF link hash table from the info structure. This is
3316 #define ecoff_hash_table(p) ((struct ecoff_link_hash_table *) ((p)->hash))
3318 /* Add the external symbols of an object file to the global linker
3319 hash table. The external symbols and strings we are passed are
3320 just allocated on the stack, and will be discarded. We must
3321 explicitly save any information we may need later on in the link.
3322 We do not want to read the external symbol information again. */
3325 ecoff_link_add_externals (bfd
*abfd
,
3326 struct bfd_link_info
*info
,
3327 void * external_ext
,
3330 const struct ecoff_backend_data
* const backend
= ecoff_backend (abfd
);
3331 void (* const swap_ext_in
) (bfd
*, void *, EXTR
*)
3332 = backend
->debug_swap
.swap_ext_in
;
3333 bfd_size_type external_ext_size
= backend
->debug_swap
.external_ext_size
;
3334 unsigned long ext_count
;
3335 struct bfd_link_hash_entry
**sym_hash
;
3340 ext_count
= ecoff_data (abfd
)->debug_info
.symbolic_header
.iextMax
;
3343 amt
*= sizeof (struct bfd_link_hash_entry
*);
3344 sym_hash
= (struct bfd_link_hash_entry
**) bfd_alloc (abfd
, amt
);
3347 ecoff_data (abfd
)->sym_hashes
= (struct ecoff_link_hash_entry
**) sym_hash
;
3349 ext_ptr
= (char *) external_ext
;
3350 ext_end
= ext_ptr
+ ext_count
* external_ext_size
;
3351 for (; ext_ptr
< ext_end
; ext_ptr
+= external_ext_size
, sym_hash
++)
3358 struct ecoff_link_hash_entry
*h
;
3362 (*swap_ext_in
) (abfd
, (void *) ext_ptr
, &esym
);
3364 /* Skip debugging symbols. */
3366 switch (esym
.asym
.st
)
3382 /* Get the information for this symbol. */
3383 value
= esym
.asym
.value
;
3384 switch (esym
.asym
.sc
)
3404 section
= bfd_make_section_old_way (abfd
, _TEXT
);
3405 value
-= section
->vma
;
3408 section
= bfd_make_section_old_way (abfd
, _DATA
);
3409 value
-= section
->vma
;
3412 section
= bfd_make_section_old_way (abfd
, _BSS
);
3413 value
-= section
->vma
;
3416 section
= bfd_abs_section_ptr
;
3419 section
= bfd_und_section_ptr
;
3422 section
= bfd_make_section_old_way (abfd
, _SDATA
);
3423 value
-= section
->vma
;
3426 section
= bfd_make_section_old_way (abfd
, _SBSS
);
3427 value
-= section
->vma
;
3430 section
= bfd_make_section_old_way (abfd
, _RDATA
);
3431 value
-= section
->vma
;
3434 if (value
> ecoff_data (abfd
)->gp_size
)
3436 section
= bfd_com_section_ptr
;
3441 section
= &ecoff_scom_section
;
3444 section
= bfd_und_section_ptr
;
3447 section
= bfd_make_section_old_way (abfd
, _INIT
);
3448 value
-= section
->vma
;
3451 section
= bfd_make_section_old_way (abfd
, _FINI
);
3452 value
-= section
->vma
;
3455 section
= bfd_make_section_old_way (abfd
, _RCONST
);
3456 value
-= section
->vma
;
3460 if (section
== NULL
)
3463 name
= ssext
+ esym
.asym
.iss
;
3465 if (! (_bfd_generic_link_add_one_symbol
3467 (flagword
) (esym
.weakext
? BSF_WEAK
: BSF_GLOBAL
),
3468 section
, value
, NULL
, true, true, sym_hash
)))
3471 h
= (struct ecoff_link_hash_entry
*) *sym_hash
;
3473 /* If we are building an ECOFF hash table, save the external
3474 symbol information. */
3475 if (bfd_get_flavour (info
->output_bfd
) == bfd_get_flavour (abfd
))
3478 || (! bfd_is_und_section (section
)
3479 && (! bfd_is_com_section (section
)
3480 || (h
->root
.type
!= bfd_link_hash_defined
3481 && h
->root
.type
!= bfd_link_hash_defweak
))))
3487 /* Remember whether this symbol was small undefined. */
3488 if (esym
.asym
.sc
== scSUndefined
)
3491 /* If this symbol was ever small undefined, it needs to wind
3492 up in a GP relative section. We can't control the
3493 section of a defined symbol, but we can control the
3494 section of a common symbol. This case is actually needed
3495 on Ultrix 4.2 to handle the symbol cred in -lckrb. */
3497 && h
->root
.type
== bfd_link_hash_common
3498 && streq (h
->root
.u
.c
.p
->section
->name
, SCOMMON
))
3500 h
->root
.u
.c
.p
->section
= bfd_make_section_old_way (abfd
,
3502 h
->root
.u
.c
.p
->section
->flags
= SEC_ALLOC
;
3503 if (h
->esym
.asym
.sc
== scCommon
)
3504 h
->esym
.asym
.sc
= scSCommon
;
3512 /* Add symbols from an ECOFF object file to the global linker hash
3516 ecoff_link_add_object_symbols (bfd
*abfd
, struct bfd_link_info
*info
)
3519 bfd_size_type external_ext_size
;
3520 void * external_ext
= NULL
;
3521 bfd_size_type esize
;
3525 if (! ecoff_slurp_symbolic_header (abfd
))
3528 /* If there are no symbols, we don't want it. */
3529 if (bfd_get_symcount (abfd
) == 0)
3532 symhdr
= &ecoff_data (abfd
)->debug_info
.symbolic_header
;
3534 /* Read in the external symbols and external strings. */
3535 if (bfd_seek (abfd
, symhdr
->cbExtOffset
, SEEK_SET
) != 0)
3537 external_ext_size
= ecoff_backend (abfd
)->debug_swap
.external_ext_size
;
3538 esize
= symhdr
->iextMax
* external_ext_size
;
3539 external_ext
= _bfd_malloc_and_read (abfd
, esize
, esize
);
3540 if (external_ext
== NULL
&& esize
!= 0)
3543 if (bfd_seek (abfd
, symhdr
->cbSsExtOffset
, SEEK_SET
) != 0)
3545 ssext
= (char *) _bfd_malloc_and_read (abfd
, symhdr
->issExtMax
,
3547 if (ssext
== NULL
&& symhdr
->issExtMax
!= 0)
3550 result
= ecoff_link_add_externals (abfd
, info
, external_ext
, ssext
);
3553 free (external_ext
);
3558 free (external_ext
);
3562 /* This is called if we used _bfd_generic_link_add_archive_symbols
3563 because we were not dealing with an ECOFF archive. */
3566 ecoff_link_check_archive_element (bfd
*abfd
,
3567 struct bfd_link_info
*info
,
3568 struct bfd_link_hash_entry
*h
,
3574 /* Unlike the generic linker, we do not pull in elements because
3575 of common symbols. */
3576 if (h
->type
!= bfd_link_hash_undefined
)
3579 /* Include this element? */
3580 if (!(*info
->callbacks
->add_archive_element
) (info
, abfd
, name
, &abfd
))
3584 return ecoff_link_add_object_symbols (abfd
, info
);
3587 /* Add the symbols from an archive file to the global hash table.
3588 This looks through the undefined symbols, looks each one up in the
3589 archive hash table, and adds any associated object file. We do not
3590 use _bfd_generic_link_add_archive_symbols because ECOFF archives
3591 already have a hash table, so there is no reason to construct
3595 ecoff_link_add_archive_symbols (bfd
*abfd
, struct bfd_link_info
*info
)
3597 const struct ecoff_backend_data
* const backend
= ecoff_backend (abfd
);
3598 const bfd_byte
*raw_armap
;
3599 struct bfd_link_hash_entry
**pundef
;
3600 unsigned int armap_count
;
3601 unsigned int armap_log
;
3603 const bfd_byte
*hashtable
;
3604 const char *stringbase
;
3606 if (! bfd_has_map (abfd
))
3608 /* An empty archive is a special case. */
3609 if (bfd_openr_next_archived_file (abfd
, NULL
) == NULL
)
3611 bfd_set_error (bfd_error_no_armap
);
3615 /* If we don't have any raw data for this archive, as can happen on
3616 Irix 4.0.5F, we call the generic routine.
3617 FIXME: We should be more clever about this, since someday tdata
3618 may get to something for a generic archive. */
3619 raw_armap
= (const bfd_byte
*) bfd_ardata (abfd
)->tdata
;
3620 if (raw_armap
== NULL
)
3621 return (_bfd_generic_link_add_archive_symbols
3622 (abfd
, info
, ecoff_link_check_archive_element
));
3624 armap_count
= H_GET_32 (abfd
, raw_armap
);
3627 for (i
= 1; i
< armap_count
; i
<<= 1)
3629 BFD_ASSERT (i
== armap_count
);
3631 hashtable
= raw_armap
+ 4;
3632 stringbase
= (const char *) raw_armap
+ armap_count
* 8 + 8;
3634 /* Look through the list of undefined symbols. */
3635 pundef
= &info
->hash
->undefs
;
3636 while (*pundef
!= NULL
)
3638 struct bfd_link_hash_entry
*h
;
3639 unsigned int hash
, rehash
= 0;
3640 unsigned int file_offset
;
3646 /* When a symbol is defined, it is not necessarily removed from
3648 if (h
->type
!= bfd_link_hash_undefined
3649 && h
->type
!= bfd_link_hash_common
)
3651 /* Remove this entry from the list, for general cleanliness
3652 and because we are going to look through the list again
3653 if we search any more libraries. We can't remove the
3654 entry if it is the tail, because that would lose any
3655 entries we add to the list later on. */
3656 if (*pundef
!= info
->hash
->undefs_tail
)
3657 *pundef
= (*pundef
)->u
.undef
.next
;
3659 pundef
= &(*pundef
)->u
.undef
.next
;
3663 /* Native ECOFF linkers do not pull in archive elements merely
3664 to satisfy common definitions, so neither do we. We leave
3665 them on the list, though, in case we are linking against some
3666 other object format. */
3667 if (h
->type
!= bfd_link_hash_undefined
)
3669 pundef
= &(*pundef
)->u
.undef
.next
;
3673 /* Look for this symbol in the archive hash table. */
3674 hash
= ecoff_armap_hash (h
->root
.string
, &rehash
, armap_count
,
3677 file_offset
= H_GET_32 (abfd
, hashtable
+ (hash
* 8) + 4);
3678 if (file_offset
== 0)
3680 /* Nothing in this slot. */
3681 pundef
= &(*pundef
)->u
.undef
.next
;
3685 name
= stringbase
+ H_GET_32 (abfd
, hashtable
+ (hash
* 8));
3686 if (name
[0] != h
->root
.string
[0]
3687 || ! streq (name
, h
->root
.string
))
3692 /* That was the wrong symbol. Try rehashing. */
3694 for (srch
= (hash
+ rehash
) & (armap_count
- 1);
3696 srch
= (srch
+ rehash
) & (armap_count
- 1))
3698 file_offset
= H_GET_32 (abfd
, hashtable
+ (srch
* 8) + 4);
3699 if (file_offset
== 0)
3701 name
= stringbase
+ H_GET_32 (abfd
, hashtable
+ (srch
* 8));
3702 if (name
[0] == h
->root
.string
[0]
3703 && streq (name
, h
->root
.string
))
3712 pundef
= &(*pundef
)->u
.undef
.next
;
3719 element
= (*backend
->get_elt_at_filepos
) (abfd
,
3720 (file_ptr
) file_offset
,
3722 if (element
== NULL
)
3725 if (! bfd_check_format (element
, bfd_object
))
3728 /* Unlike the generic linker, we know that this element provides
3729 a definition for an undefined symbol and we know that we want
3730 to include it. We don't need to check anything. */
3731 if (!(*info
->callbacks
3732 ->add_archive_element
) (info
, element
, name
, &element
))
3734 if (! ecoff_link_add_object_symbols (element
, info
))
3737 pundef
= &(*pundef
)->u
.undef
.next
;
3743 /* Given an ECOFF BFD, add symbols to the global hash table as
3747 _bfd_ecoff_bfd_link_add_symbols (bfd
*abfd
, struct bfd_link_info
*info
)
3749 switch (bfd_get_format (abfd
))
3752 return ecoff_link_add_object_symbols (abfd
, info
);
3754 return ecoff_link_add_archive_symbols (abfd
, info
);
3756 bfd_set_error (bfd_error_wrong_format
);
3762 /* ECOFF final link routines. */
3764 /* Structure used to pass information to ecoff_link_write_external. */
3769 struct bfd_link_info
*info
;
3772 /* Accumulate the debugging information for an input BFD into the
3773 output BFD. This must read in the symbolic information of the
3777 ecoff_final_link_debug_accumulate (bfd
*output_bfd
,
3779 struct bfd_link_info
*info
,
3782 struct ecoff_debug_info
* const debug
= &ecoff_data (input_bfd
)->debug_info
;
3783 const struct ecoff_debug_swap
* const swap
=
3784 &ecoff_backend (input_bfd
)->debug_swap
;
3785 HDRR
*symhdr
= &debug
->symbolic_header
;
3788 #define READ(ptr, offset, count, size) \
3792 debug->ptr = NULL; \
3793 if (symhdr->count == 0) \
3795 if (_bfd_mul_overflow (size, symhdr->count, &amt)) \
3797 bfd_set_error (bfd_error_file_too_big); \
3799 goto return_something; \
3801 if (bfd_seek (input_bfd, symhdr->offset, SEEK_SET) != 0) \
3804 goto return_something; \
3806 debug->ptr = _bfd_malloc_and_read (input_bfd, amt + 1, amt); \
3807 if (debug->ptr == NULL) \
3810 goto return_something; \
3812 ((char *) debug->ptr)[amt] = 0; \
3815 /* If alloc_syments is true, then the data was already by read by
3816 _bfd_ecoff_slurp_symbolic_info. */
3817 if (!debug
->alloc_syments
)
3819 READ (line
, cbLineOffset
, cbLine
, sizeof (unsigned char));
3820 READ (external_dnr
, cbDnOffset
, idnMax
, swap
->external_dnr_size
);
3821 READ (external_pdr
, cbPdOffset
, ipdMax
, swap
->external_pdr_size
);
3822 READ (external_sym
, cbSymOffset
, isymMax
, swap
->external_sym_size
);
3823 READ (external_opt
, cbOptOffset
, ioptMax
, swap
->external_opt_size
);
3824 READ (external_aux
, cbAuxOffset
, iauxMax
, sizeof (union aux_ext
));
3825 READ (ss
, cbSsOffset
, issMax
, sizeof (char));
3826 READ (external_fdr
, cbFdOffset
, ifdMax
, swap
->external_fdr_size
);
3827 READ (external_rfd
, cbRfdOffset
, crfd
, swap
->external_rfd_size
);
3831 /* We do not read the external strings or the external symbols. */
3833 ret
= (bfd_ecoff_debug_accumulate
3834 (handle
, output_bfd
, &ecoff_data (output_bfd
)->debug_info
,
3835 &ecoff_backend (output_bfd
)->debug_swap
,
3836 input_bfd
, debug
, swap
, info
));
3839 _bfd_ecoff_free_ecoff_debug_info (debug
);
3843 /* Relocate and write an ECOFF section into an ECOFF output file. */
3846 ecoff_indirect_link_order (bfd
*output_bfd
,
3847 struct bfd_link_info
*info
,
3848 asection
*output_section
,
3849 struct bfd_link_order
*link_order
)
3851 asection
*input_section
;
3853 bfd_byte
*contents
= NULL
;
3854 bfd_size_type external_reloc_size
;
3855 bfd_size_type external_relocs_size
;
3856 void * external_relocs
= NULL
;
3858 BFD_ASSERT ((output_section
->flags
& SEC_HAS_CONTENTS
) != 0);
3860 input_section
= link_order
->u
.indirect
.section
;
3861 input_bfd
= input_section
->owner
;
3862 if (input_section
->size
== 0)
3865 BFD_ASSERT (input_section
->output_section
== output_section
);
3866 BFD_ASSERT (input_section
->output_offset
== link_order
->offset
);
3867 BFD_ASSERT (input_section
->size
== link_order
->size
);
3869 /* Get the section contents. */
3870 if (!bfd_malloc_and_get_section (input_bfd
, input_section
, &contents
))
3873 /* Get the relocs. If we are relaxing MIPS code, they will already
3874 have been read in. Otherwise, we read them in now. */
3875 external_reloc_size
= ecoff_backend (input_bfd
)->external_reloc_size
;
3876 external_relocs_size
= external_reloc_size
* input_section
->reloc_count
;
3878 if (bfd_seek (input_bfd
, input_section
->rel_filepos
, SEEK_SET
) != 0)
3880 external_relocs
= _bfd_malloc_and_read (input_bfd
, external_relocs_size
,
3881 external_relocs_size
);
3882 if (external_relocs
== NULL
&& external_relocs_size
!= 0)
3885 /* Relocate the section contents. */
3886 if (! ((*ecoff_backend (input_bfd
)->relocate_section
)
3887 (output_bfd
, info
, input_bfd
, input_section
, contents
,
3891 /* Write out the relocated section. */
3892 if (! bfd_set_section_contents (output_bfd
,
3895 input_section
->output_offset
,
3896 input_section
->size
))
3899 /* If we are producing relocatable output, the relocs were
3900 modified, and we write them out now. We use the reloc_count
3901 field of output_section to keep track of the number of relocs we
3902 have output so far. */
3903 if (bfd_link_relocatable (info
))
3905 file_ptr pos
= (output_section
->rel_filepos
3906 + output_section
->reloc_count
* external_reloc_size
);
3907 if (bfd_seek (output_bfd
, pos
, SEEK_SET
) != 0
3908 || (bfd_write (external_relocs
, external_relocs_size
, output_bfd
)
3909 != external_relocs_size
))
3911 output_section
->reloc_count
+= input_section
->reloc_count
;
3915 free (external_relocs
);
3920 free (external_relocs
);
3924 /* Generate a reloc when linking an ECOFF file. This is a reloc
3925 requested by the linker, and does come from any input file. This
3926 is used to build constructor and destructor tables when linking
3930 ecoff_reloc_link_order (bfd
*output_bfd
,
3931 struct bfd_link_info
*info
,
3932 asection
*output_section
,
3933 struct bfd_link_order
*link_order
)
3935 enum bfd_link_order_type type
;
3939 struct internal_reloc in
;
3940 bfd_size_type external_reloc_size
;
3945 type
= link_order
->type
;
3947 addend
= link_order
->u
.reloc
.p
->addend
;
3949 /* We set up an arelent to pass to the backend adjust_reloc_out
3951 rel
.address
= link_order
->offset
;
3953 rel
.howto
= bfd_reloc_type_lookup (output_bfd
, link_order
->u
.reloc
.p
->reloc
);
3956 bfd_set_error (bfd_error_bad_value
);
3960 if (type
== bfd_section_reloc_link_order
)
3962 section
= link_order
->u
.reloc
.p
->u
.section
;
3963 rel
.sym_ptr_ptr
= section
->symbol_ptr_ptr
;
3967 struct bfd_link_hash_entry
*h
;
3969 /* Treat a reloc against a defined symbol as though it were
3970 actually against the section. */
3971 h
= bfd_wrapped_link_hash_lookup (output_bfd
, info
,
3972 link_order
->u
.reloc
.p
->u
.name
,
3973 false, false, false);
3975 && (h
->type
== bfd_link_hash_defined
3976 || h
->type
== bfd_link_hash_defweak
))
3978 type
= bfd_section_reloc_link_order
;
3979 section
= h
->u
.def
.section
->output_section
;
3980 /* It seems that we ought to add the symbol value to the
3981 addend here, but in practice it has already been added
3982 because it was passed to constructor_callback. */
3983 addend
+= section
->vma
+ h
->u
.def
.section
->output_offset
;
3987 /* We can't set up a reloc against a symbol correctly,
3988 because we have no asymbol structure. Currently no
3989 adjust_reloc_out routine cares. */
3990 rel
.sym_ptr_ptr
= NULL
;
3994 /* All ECOFF relocs are in-place. Put the addend into the object
3997 BFD_ASSERT (rel
.howto
->partial_inplace
);
4001 bfd_reloc_status_type rstat
;
4004 size
= bfd_get_reloc_size (rel
.howto
);
4005 buf
= (bfd_byte
*) bfd_zmalloc (size
);
4006 if (buf
== NULL
&& size
!= 0)
4008 rstat
= _bfd_relocate_contents (rel
.howto
, output_bfd
,
4009 (bfd_vma
) addend
, buf
);
4015 case bfd_reloc_outofrange
:
4017 case bfd_reloc_overflow
:
4018 (*info
->callbacks
->reloc_overflow
)
4020 (link_order
->type
== bfd_section_reloc_link_order
4021 ? bfd_section_name (section
)
4022 : link_order
->u
.reloc
.p
->u
.name
),
4023 rel
.howto
->name
, addend
, NULL
, NULL
, (bfd_vma
) 0);
4026 ok
= bfd_set_section_contents (output_bfd
, output_section
, (void *) buf
,
4027 (file_ptr
) link_order
->offset
, size
);
4035 /* Move the information into an internal_reloc structure. */
4036 in
.r_vaddr
= rel
.address
+ bfd_section_vma (output_section
);
4037 in
.r_type
= rel
.howto
->type
;
4039 if (type
== bfd_symbol_reloc_link_order
)
4041 struct ecoff_link_hash_entry
*h
;
4043 h
= ((struct ecoff_link_hash_entry
*)
4044 bfd_wrapped_link_hash_lookup (output_bfd
, info
,
4045 link_order
->u
.reloc
.p
->u
.name
,
4046 false, false, true));
4049 in
.r_symndx
= h
->indx
;
4052 (*info
->callbacks
->unattached_reloc
)
4053 (info
, link_order
->u
.reloc
.p
->u
.name
, NULL
, NULL
, (bfd_vma
) 0);
4069 { _TEXT
, RELOC_SECTION_TEXT
},
4070 { _RDATA
, RELOC_SECTION_RDATA
},
4071 { _DATA
, RELOC_SECTION_DATA
},
4072 { _SDATA
, RELOC_SECTION_SDATA
},
4073 { _SBSS
, RELOC_SECTION_SBSS
},
4074 { _BSS
, RELOC_SECTION_BSS
},
4075 { _INIT
, RELOC_SECTION_INIT
},
4076 { _LIT8
, RELOC_SECTION_LIT8
},
4077 { _LIT4
, RELOC_SECTION_LIT4
},
4078 { _XDATA
, RELOC_SECTION_XDATA
},
4079 { _PDATA
, RELOC_SECTION_PDATA
},
4080 { _FINI
, RELOC_SECTION_FINI
},
4081 { _LITA
, RELOC_SECTION_LITA
},
4082 { "*ABS*", RELOC_SECTION_ABS
},
4083 { _RCONST
, RELOC_SECTION_RCONST
}
4086 name
= bfd_section_name (section
);
4088 for (i
= 0; i
< ARRAY_SIZE (section_symndx
); i
++)
4089 if (streq (name
, section_symndx
[i
].name
))
4091 in
.r_symndx
= section_symndx
[i
].r_symndx
;
4095 if (i
== ARRAY_SIZE (section_symndx
))
4101 /* Let the BFD backend adjust the reloc. */
4102 (*ecoff_backend (output_bfd
)->adjust_reloc_out
) (output_bfd
, &rel
, &in
);
4104 /* Get some memory and swap out the reloc. */
4105 external_reloc_size
= ecoff_backend (output_bfd
)->external_reloc_size
;
4106 rbuf
= (bfd_byte
*) bfd_malloc (external_reloc_size
);
4110 (*ecoff_backend (output_bfd
)->swap_reloc_out
) (output_bfd
, &in
, (void *) rbuf
);
4112 pos
= (output_section
->rel_filepos
4113 + output_section
->reloc_count
* external_reloc_size
);
4114 ok
= (bfd_seek (output_bfd
, pos
, SEEK_SET
) == 0
4115 && (bfd_write (rbuf
, external_reloc_size
, output_bfd
)
4116 == external_reloc_size
));
4119 ++output_section
->reloc_count
;
4126 /* Put out information for an external symbol. These come only from
4130 ecoff_link_write_external (struct bfd_hash_entry
*bh
, void * data
)
4132 struct ecoff_link_hash_entry
*h
= (struct ecoff_link_hash_entry
*) bh
;
4133 struct extsym_info
*einfo
= (struct extsym_info
*) data
;
4134 bfd
*output_bfd
= einfo
->abfd
;
4137 if (h
->root
.type
== bfd_link_hash_warning
)
4139 h
= (struct ecoff_link_hash_entry
*) h
->root
.u
.i
.link
;
4140 if (h
->root
.type
== bfd_link_hash_new
)
4144 /* We need to check if this symbol is being stripped. */
4145 if (h
->root
.type
== bfd_link_hash_undefined
4146 || h
->root
.type
== bfd_link_hash_undefweak
)
4148 else if (einfo
->info
->strip
== strip_all
4149 || (einfo
->info
->strip
== strip_some
4150 && bfd_hash_lookup (einfo
->info
->keep_hash
,
4151 h
->root
.root
.string
,
4152 false, false) == NULL
))
4157 if (strip
|| h
->written
)
4160 if (h
->abfd
== NULL
)
4163 h
->esym
.cobol_main
= 0;
4164 h
->esym
.weakext
= 0;
4165 h
->esym
.reserved
= 0;
4166 h
->esym
.ifd
= ifdNil
;
4167 h
->esym
.asym
.value
= 0;
4168 h
->esym
.asym
.st
= stGlobal
;
4170 if (h
->root
.type
!= bfd_link_hash_defined
4171 && h
->root
.type
!= bfd_link_hash_defweak
)
4172 h
->esym
.asym
.sc
= scAbs
;
4175 asection
*output_section
;
4183 section_storage_classes
[] =
4187 { _SDATA
, scSData
},
4188 { _RDATA
, scRData
},
4193 { _PDATA
, scPData
},
4194 { _XDATA
, scXData
},
4195 { _RCONST
, scRConst
}
4198 output_section
= h
->root
.u
.def
.section
->output_section
;
4199 name
= bfd_section_name (output_section
);
4201 for (i
= 0; i
< ARRAY_SIZE (section_storage_classes
); i
++)
4202 if (streq (name
, section_storage_classes
[i
].name
))
4204 h
->esym
.asym
.sc
= section_storage_classes
[i
].sc
;
4208 if (i
== ARRAY_SIZE (section_storage_classes
))
4209 h
->esym
.asym
.sc
= scAbs
;
4212 h
->esym
.asym
.reserved
= 0;
4213 h
->esym
.asym
.index
= indexNil
;
4215 else if (h
->esym
.ifd
!= -1)
4217 struct ecoff_debug_info
*debug
;
4219 /* Adjust the FDR index for the symbol by that used for the
4221 debug
= &ecoff_data (h
->abfd
)->debug_info
;
4222 BFD_ASSERT (h
->esym
.ifd
>= 0
4223 && h
->esym
.ifd
< debug
->symbolic_header
.ifdMax
);
4224 h
->esym
.ifd
= debug
->ifdmap
[h
->esym
.ifd
];
4227 switch (h
->root
.type
)
4230 case bfd_link_hash_warning
:
4231 case bfd_link_hash_new
:
4233 case bfd_link_hash_undefined
:
4234 case bfd_link_hash_undefweak
:
4235 if (h
->esym
.asym
.sc
!= scUndefined
4236 && h
->esym
.asym
.sc
!= scSUndefined
)
4237 h
->esym
.asym
.sc
= scUndefined
;
4239 case bfd_link_hash_defined
:
4240 case bfd_link_hash_defweak
:
4241 if (h
->esym
.asym
.sc
== scUndefined
4242 || h
->esym
.asym
.sc
== scSUndefined
)
4243 h
->esym
.asym
.sc
= scAbs
;
4244 else if (h
->esym
.asym
.sc
== scCommon
)
4245 h
->esym
.asym
.sc
= scBss
;
4246 else if (h
->esym
.asym
.sc
== scSCommon
)
4247 h
->esym
.asym
.sc
= scSBss
;
4248 h
->esym
.asym
.value
= (h
->root
.u
.def
.value
4249 + h
->root
.u
.def
.section
->output_section
->vma
4250 + h
->root
.u
.def
.section
->output_offset
);
4252 case bfd_link_hash_common
:
4253 if (h
->esym
.asym
.sc
!= scCommon
4254 && h
->esym
.asym
.sc
!= scSCommon
)
4255 h
->esym
.asym
.sc
= scCommon
;
4256 h
->esym
.asym
.value
= h
->root
.u
.c
.size
;
4258 case bfd_link_hash_indirect
:
4259 /* We ignore these symbols, since the indirected symbol is
4260 already in the hash table. */
4264 /* bfd_ecoff_debug_one_external uses iextMax to keep track of the
4266 h
->indx
= ecoff_data (output_bfd
)->debug_info
.symbolic_header
.iextMax
;
4269 return (bfd_ecoff_debug_one_external
4270 (output_bfd
, &ecoff_data (output_bfd
)->debug_info
,
4271 &ecoff_backend (output_bfd
)->debug_swap
, h
->root
.root
.string
,
4275 /* ECOFF final link routine. This looks through all the input BFDs
4276 and gathers together all the debugging information, and then
4277 processes all the link order information. This may cause it to
4278 close and reopen some input BFDs; I'll see how bad this is. */
4281 _bfd_ecoff_bfd_final_link (bfd
*abfd
, struct bfd_link_info
*info
)
4283 const struct ecoff_backend_data
* const backend
= ecoff_backend (abfd
);
4284 struct ecoff_debug_info
* const debug
= &ecoff_data (abfd
)->debug_info
;
4289 struct bfd_link_order
*p
;
4290 struct extsym_info einfo
;
4292 /* We accumulate the debugging information counts in the symbolic
4294 symhdr
= &debug
->symbolic_header
;
4296 symhdr
->ilineMax
= 0;
4300 symhdr
->isymMax
= 0;
4301 symhdr
->ioptMax
= 0;
4302 symhdr
->iauxMax
= 0;
4304 symhdr
->issExtMax
= 0;
4307 symhdr
->iextMax
= 0;
4309 /* We accumulate the debugging information itself in the debug_info
4312 debug
->external_dnr
= NULL
;
4313 debug
->external_pdr
= NULL
;
4314 debug
->external_sym
= NULL
;
4315 debug
->external_opt
= NULL
;
4316 debug
->external_aux
= NULL
;
4318 debug
->ssext
= debug
->ssext_end
= NULL
;
4319 debug
->external_fdr
= NULL
;
4320 debug
->external_rfd
= NULL
;
4321 debug
->external_ext
= debug
->external_ext_end
= NULL
;
4323 handle
= bfd_ecoff_debug_init (abfd
, debug
, &backend
->debug_swap
, info
);
4327 /* Accumulate the debugging symbols from each input BFD. */
4328 for (input_bfd
= info
->input_bfds
;
4330 input_bfd
= input_bfd
->link
.next
)
4334 if (bfd_get_flavour (input_bfd
) == bfd_target_ecoff_flavour
)
4336 /* Arbitrarily set the symbolic header vstamp to the vstamp
4337 of the first object file in the link. */
4338 if (symhdr
->vstamp
== 0)
4340 = ecoff_data (input_bfd
)->debug_info
.symbolic_header
.vstamp
;
4341 ret
= ecoff_final_link_debug_accumulate (abfd
, input_bfd
, info
,
4345 ret
= bfd_ecoff_debug_accumulate_other (handle
, abfd
,
4346 debug
, &backend
->debug_swap
,
4351 /* Combine the register masks. */
4352 ecoff_data (abfd
)->gprmask
|= ecoff_data (input_bfd
)->gprmask
;
4353 ecoff_data (abfd
)->fprmask
|= ecoff_data (input_bfd
)->fprmask
;
4354 ecoff_data (abfd
)->cprmask
[0] |= ecoff_data (input_bfd
)->cprmask
[0];
4355 ecoff_data (abfd
)->cprmask
[1] |= ecoff_data (input_bfd
)->cprmask
[1];
4356 ecoff_data (abfd
)->cprmask
[2] |= ecoff_data (input_bfd
)->cprmask
[2];
4357 ecoff_data (abfd
)->cprmask
[3] |= ecoff_data (input_bfd
)->cprmask
[3];
4360 /* Write out the external symbols. */
4363 bfd_hash_traverse (&info
->hash
->table
, ecoff_link_write_external
, &einfo
);
4365 if (bfd_link_relocatable (info
))
4367 /* We need to make a pass over the link_orders to count up the
4368 number of relocations we will need to output, so that we know
4369 how much space they will take up. */
4370 for (o
= abfd
->sections
; o
!= NULL
; o
= o
->next
)
4373 for (p
= o
->map_head
.link_order
;
4376 if (p
->type
== bfd_indirect_link_order
)
4377 o
->reloc_count
+= p
->u
.indirect
.section
->reloc_count
;
4378 else if (p
->type
== bfd_section_reloc_link_order
4379 || p
->type
== bfd_symbol_reloc_link_order
)
4384 /* Compute the reloc and symbol file positions. */
4385 ecoff_compute_reloc_file_positions (abfd
);
4387 /* Write out the debugging information. */
4388 if (! bfd_ecoff_write_accumulated_debug (handle
, abfd
, debug
,
4389 &backend
->debug_swap
, info
,
4390 ecoff_data (abfd
)->sym_filepos
))
4393 bfd_ecoff_debug_free (handle
, abfd
, debug
, &backend
->debug_swap
, info
);
4395 if (bfd_link_relocatable (info
))
4397 /* Now reset the reloc_count field of the sections in the output
4398 BFD to 0, so that we can use them to keep track of how many
4399 relocs we have output thus far. */
4400 for (o
= abfd
->sections
; o
!= NULL
; o
= o
->next
)
4404 /* Get a value for the GP register. */
4405 if (ecoff_data (abfd
)->gp
== 0)
4407 struct bfd_link_hash_entry
*h
;
4409 h
= bfd_link_hash_lookup (info
->hash
, "_gp", false, false, true);
4411 && h
->type
== bfd_link_hash_defined
)
4412 ecoff_data (abfd
)->gp
= (h
->u
.def
.value
4413 + h
->u
.def
.section
->output_section
->vma
4414 + h
->u
.def
.section
->output_offset
);
4415 else if (bfd_link_relocatable (info
))
4419 /* Make up a value. */
4421 for (o
= abfd
->sections
; o
!= NULL
; o
= o
->next
)
4424 && (streq (o
->name
, _SBSS
)
4425 || streq (o
->name
, _SDATA
)
4426 || streq (o
->name
, _LIT4
)
4427 || streq (o
->name
, _LIT8
)
4428 || streq (o
->name
, _LITA
)))
4431 ecoff_data (abfd
)->gp
= lo
+ 0x8000;
4435 /* If the relocate_section function needs to do a reloc
4436 involving the GP value, it should make a reloc_dangerous
4437 callback to warn that GP is not defined. */
4441 for (o
= abfd
->sections
; o
!= NULL
; o
= o
->next
)
4443 for (p
= o
->map_head
.link_order
;
4447 if (p
->type
== bfd_indirect_link_order
4448 && (bfd_get_flavour (p
->u
.indirect
.section
->owner
)
4449 == bfd_target_ecoff_flavour
))
4451 if (! ecoff_indirect_link_order (abfd
, info
, o
, p
))
4454 else if (p
->type
== bfd_section_reloc_link_order
4455 || p
->type
== bfd_symbol_reloc_link_order
)
4457 if (! ecoff_reloc_link_order (abfd
, info
, o
, p
))
4462 if (! _bfd_default_link_order (abfd
, info
, o
, p
))
4468 abfd
->symcount
= symhdr
->iextMax
+ symhdr
->isymMax
;
4470 ecoff_data (abfd
)->linker
= true;