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252b5132 1/* BFD back-end for IBM RS/6000 "XCOFF" files.
b3adc24a 2 Copyright (C) 1990-2020 Free Software Foundation, Inc.
2ce18a16 3 Written by Metin G. Ozisik, Mimi Phuong-Thao Vo, and John Gilmore.
252b5132
RH
4 Archive support from Damon A. Permezel.
5 Contributed by IBM Corporation and Cygnus Support.
6
cd123cb7 7 This file is part of BFD, the Binary File Descriptor library.
252b5132 8
cd123cb7
NC
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3 of the License, or
12 (at your option) any later version.
252b5132 13
cd123cb7
NC
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
252b5132 18
cd123cb7
NC
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
21 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
22 MA 02110-1301, USA. */
252b5132 23
252b5132 24#include "sysdep.h"
9a1ada6c 25#include "libiberty.h"
3db64b00 26#include "bfd.h"
beb1bf64 27#include "bfdlink.h"
252b5132
RH
28#include "libbfd.h"
29#include "coff/internal.h"
beb1bf64 30#include "coff/xcoff.h"
252b5132
RH
31#include "coff/rs6000.h"
32#include "libcoff.h"
beb1bf64
TR
33#include "libxcoff.h"
34
417236c0
TG
35extern bfd_boolean _bfd_xcoff_mkobject (bfd *);
36extern bfd_boolean _bfd_xcoff_copy_private_bfd_data (bfd *, bfd *);
37extern bfd_boolean _bfd_xcoff_is_local_label_name (bfd *, const char *);
beb1bf64 38extern reloc_howto_type *_bfd_xcoff_reloc_type_lookup
417236c0
TG
39 (bfd *, bfd_reloc_code_real_type);
40extern bfd_boolean _bfd_xcoff_slurp_armap (bfd *);
cb001c0d 41extern bfd_cleanup _bfd_xcoff_archive_p (bfd *);
2c3fc389 42extern void * _bfd_xcoff_read_ar_hdr (bfd *);
417236c0
TG
43extern bfd *_bfd_xcoff_openr_next_archived_file (bfd *, bfd *);
44extern int _bfd_xcoff_stat_arch_elt (bfd *, struct stat *);
b34976b6 45extern bfd_boolean _bfd_xcoff_write_armap
417236c0
TG
46 (bfd *, unsigned int, struct orl *, unsigned int, int);
47extern bfd_boolean _bfd_xcoff_write_archive_contents (bfd *);
48extern int _bfd_xcoff_sizeof_headers (bfd *, struct bfd_link_info *);
2c3fc389
NC
49extern void _bfd_xcoff_swap_sym_in (bfd *, void *, void *);
50extern unsigned int _bfd_xcoff_swap_sym_out (bfd *, void *, void *);
51extern void _bfd_xcoff_swap_aux_in (bfd *, void *, int, int, int, int, void *);
b34976b6 52extern unsigned int _bfd_xcoff_swap_aux_out
2c3fc389
NC
53 (bfd *, void *, int, int, int, int, void *);
54static void xcoff_swap_reloc_in (bfd *, void *, void *);
55static unsigned int xcoff_swap_reloc_out (bfd *, void *, void *);
beb1bf64 56
59862849 57/* Forward declare xcoff_rtype2howto for coffcode.h macro. */
417236c0 58void xcoff_rtype2howto (arelent *, struct internal_reloc *);
beb1bf64 59
f4ffd778 60/* coffcode.h needs these to be defined. */
beb1bf64
TR
61#define RS6000COFF_C 1
62
63#define SELECT_RELOC(internal, howto) \
64 { \
65 internal.r_type = howto->type; \
66 internal.r_size = \
67 ((howto->complain_on_overflow == complain_overflow_signed \
68 ? 0x80 \
69 : 0) \
70 | (howto->bitsize - 1)); \
71 }
72
73#define COFF_DEFAULT_SECTION_ALIGNMENT_POWER (3)
74#define COFF_LONG_FILENAMES
75#define NO_COFF_SYMBOLS
59862849 76#define RTYPE2HOWTO(cache_ptr, dst) xcoff_rtype2howto (cache_ptr, dst)
dc810e39 77#define coff_mkobject _bfd_xcoff_mkobject
dc810e39 78#define coff_bfd_is_local_label_name _bfd_xcoff_is_local_label_name
b55039f4 79#ifdef AIX_CORE
cb001c0d 80extern bfd_cleanup rs6000coff_core_p (bfd *abfd);
b34976b6 81extern bfd_boolean rs6000coff_core_file_matches_executable_p
417236c0
TG
82 (bfd *cbfd, bfd *ebfd);
83extern char *rs6000coff_core_file_failing_command (bfd *abfd);
84extern int rs6000coff_core_file_failing_signal (bfd *abfd);
beb1bf64 85#define CORE_FILE_P rs6000coff_core_p
b55039f4
L
86#define coff_core_file_failing_command \
87 rs6000coff_core_file_failing_command
88#define coff_core_file_failing_signal \
89 rs6000coff_core_file_failing_signal
90#define coff_core_file_matches_executable_p \
91 rs6000coff_core_file_matches_executable_p
261b8d08
PA
92#define coff_core_file_pid \
93 _bfd_nocore_core_file_pid
b55039f4
L
94#else
95#define CORE_FILE_P _bfd_dummy_target
96#define coff_core_file_failing_command \
97 _bfd_nocore_core_file_failing_command
98#define coff_core_file_failing_signal \
99 _bfd_nocore_core_file_failing_signal
100#define coff_core_file_matches_executable_p \
101 _bfd_nocore_core_file_matches_executable_p
261b8d08
PA
102#define coff_core_file_pid \
103 _bfd_nocore_core_file_pid
b55039f4 104#endif
beb1bf64
TR
105#define coff_SWAP_sym_in _bfd_xcoff_swap_sym_in
106#define coff_SWAP_sym_out _bfd_xcoff_swap_sym_out
107#define coff_SWAP_aux_in _bfd_xcoff_swap_aux_in
108#define coff_SWAP_aux_out _bfd_xcoff_swap_aux_out
59862849
TR
109#define coff_swap_reloc_in xcoff_swap_reloc_in
110#define coff_swap_reloc_out xcoff_swap_reloc_out
111#define NO_COFF_RELOCS
beb1bf64 112
2b5c217d
NC
113#ifndef bfd_pe_print_pdata
114#define bfd_pe_print_pdata NULL
115#endif
116
beb1bf64 117#include "coffcode.h"
14958a43 118
252b5132
RH
119/* The main body of code is in coffcode.h. */
120
417236c0 121static const char *normalize_filename (bfd *);
b34976b6 122static bfd_boolean xcoff_write_armap_old
417236c0 123 (bfd *, unsigned int, struct orl *, unsigned int, int);
b34976b6 124static bfd_boolean xcoff_write_armap_big
417236c0
TG
125 (bfd *, unsigned int, struct orl *, unsigned int, int);
126static bfd_boolean xcoff_write_archive_contents_old (bfd *);
127static bfd_boolean xcoff_write_archive_contents_big (bfd *);
2c3fc389
NC
128static void xcoff_swap_ldhdr_in (bfd *, const void *, struct internal_ldhdr *);
129static void xcoff_swap_ldhdr_out (bfd *, const struct internal_ldhdr *, void *);
130static void xcoff_swap_ldsym_in (bfd *, const void *, struct internal_ldsym *);
131static void xcoff_swap_ldsym_out (bfd *, const struct internal_ldsym *, void *);
132static void xcoff_swap_ldrel_in (bfd *, const void *, struct internal_ldrel *);
133static void xcoff_swap_ldrel_out (bfd *, const struct internal_ldrel *, void *);
b34976b6 134static bfd_boolean xcoff_ppc_relocate_section
417236c0
TG
135 (bfd *, struct bfd_link_info *, bfd *, asection *, bfd_byte *,
136 struct internal_reloc *, struct internal_syment *, asection **);
b34976b6 137static bfd_boolean _bfd_xcoff_put_ldsymbol_name
417236c0 138 (bfd *, struct xcoff_loader_info *, struct internal_ldsym *, const char *);
a7b97311 139static asection *xcoff_create_csect_from_smclas
417236c0
TG
140 (bfd *, union internal_auxent *, const char *);
141static bfd_boolean xcoff_is_lineno_count_overflow (bfd *, bfd_vma);
142static bfd_boolean xcoff_is_reloc_count_overflow (bfd *, bfd_vma);
143static bfd_vma xcoff_loader_symbol_offset (bfd *, struct internal_ldhdr *);
144static bfd_vma xcoff_loader_reloc_offset (bfd *, struct internal_ldhdr *);
b34976b6 145static bfd_boolean xcoff_generate_rtinit
417236c0
TG
146 (bfd *, const char *, const char *, bfd_boolean);
147static bfd_boolean do_pad (bfd *, unsigned int);
148static bfd_boolean do_copy (bfd *, bfd *);
14958a43 149
dbe341c6 150/* Relocation functions */
417236c0 151static bfd_boolean xcoff_reloc_type_br (XCOFF_RELOC_FUNCTION_ARGS);
dbe341c6 152
b34976b6 153static bfd_boolean xcoff_complain_overflow_dont_func
417236c0 154 (XCOFF_COMPLAIN_FUNCTION_ARGS);
b34976b6 155static bfd_boolean xcoff_complain_overflow_bitfield_func
417236c0 156 (XCOFF_COMPLAIN_FUNCTION_ARGS);
b34976b6 157static bfd_boolean xcoff_complain_overflow_signed_func
417236c0 158 (XCOFF_COMPLAIN_FUNCTION_ARGS);
b34976b6 159static bfd_boolean xcoff_complain_overflow_unsigned_func
417236c0 160 (XCOFF_COMPLAIN_FUNCTION_ARGS);
dbe341c6 161
b34976b6 162bfd_boolean (*xcoff_calculate_relocation[XCOFF_MAX_CALCULATE_RELOCATION])
417236c0 163 (XCOFF_RELOC_FUNCTION_ARGS) =
dbe341c6 164{
cf9ab45b
AM
165 xcoff_reloc_type_pos, /* R_POS (0x00) */
166 xcoff_reloc_type_neg, /* R_NEG (0x01) */
167 xcoff_reloc_type_rel, /* R_REL (0x02) */
168 xcoff_reloc_type_toc, /* R_TOC (0x03) */
dbe341c6 169 xcoff_reloc_type_fail, /* R_RTB (0x04) */
cf9ab45b
AM
170 xcoff_reloc_type_toc, /* R_GL (0x05) */
171 xcoff_reloc_type_toc, /* R_TCL (0x06) */
172 xcoff_reloc_type_fail, /* (0x07) */
173 xcoff_reloc_type_ba, /* R_BA (0x08) */
174 xcoff_reloc_type_fail, /* (0x09) */
175 xcoff_reloc_type_br, /* R_BR (0x0a) */
176 xcoff_reloc_type_fail, /* (0x0b) */
177 xcoff_reloc_type_pos, /* R_RL (0x0c) */
178 xcoff_reloc_type_pos, /* R_RLA (0x0d) */
179 xcoff_reloc_type_fail, /* (0x0e) */
dbe341c6 180 xcoff_reloc_type_noop, /* R_REF (0x0f) */
cf9ab45b
AM
181 xcoff_reloc_type_fail, /* (0x10) */
182 xcoff_reloc_type_fail, /* (0x11) */
183 xcoff_reloc_type_toc, /* R_TRL (0x12) */
184 xcoff_reloc_type_toc, /* R_TRLA (0x13) */
dbe341c6
TR
185 xcoff_reloc_type_fail, /* R_RRTBI (0x14) */
186 xcoff_reloc_type_fail, /* R_RRTBA (0x15) */
cf9ab45b 187 xcoff_reloc_type_ba, /* R_CAI (0x16) */
dbe341c6 188 xcoff_reloc_type_crel, /* R_CREL (0x17) */
cf9ab45b
AM
189 xcoff_reloc_type_ba, /* R_RBA (0x18) */
190 xcoff_reloc_type_ba, /* R_RBAC (0x19) */
191 xcoff_reloc_type_br, /* R_RBR (0x1a) */
192 xcoff_reloc_type_ba, /* R_RBRC (0x1b) */
dbe341c6
TR
193};
194
b34976b6 195bfd_boolean (*xcoff_complain_overflow[XCOFF_MAX_COMPLAIN_OVERFLOW])
417236c0 196 (XCOFF_COMPLAIN_FUNCTION_ARGS) =
dbe341c6
TR
197{
198 xcoff_complain_overflow_dont_func,
199 xcoff_complain_overflow_bitfield_func,
200 xcoff_complain_overflow_signed_func,
201 xcoff_complain_overflow_unsigned_func,
202};
203
2e470849 204/* Information about one member of an archive. */
29866fa1
NC
205struct member_layout
206{
2e470849
RS
207 /* The archive member that this structure describes. */
208 bfd *member;
209
210 /* The number of bytes of padding that must be inserted before the
211 start of the member in order to ensure that the section contents
212 are correctly aligned. */
213 unsigned int leading_padding;
214
215 /* The offset of MEMBER from the start of the archive (i.e. the end
216 of the leading padding). */
217 file_ptr offset;
218
219 /* The normalized name of MEMBER. */
220 const char *name;
221
222 /* The length of NAME, without padding. */
223 bfd_size_type namlen;
224
225 /* The length of NAME, with padding. */
226 bfd_size_type padded_namlen;
227
228 /* The size of MEMBER's header, including the name and magic sequence. */
229 bfd_size_type header_size;
230
231 /* The size of the MEMBER's contents. */
232 bfd_size_type contents_size;
233
234 /* The number of bytes of padding that must be inserted after MEMBER
235 in order to preserve even alignment. */
236 bfd_size_type trailing_padding;
237};
238
239/* A structure used for iterating over the members of an archive. */
29866fa1
NC
240struct archive_iterator
241{
2e470849
RS
242 /* The archive itself. */
243 bfd *archive;
244
245 /* Information about the current archive member. */
246 struct member_layout current;
247
248 /* Information about the next archive member. MEMBER is null if there
249 are no more archive members, in which case OFFSET is the offset of
250 the first unused byte. */
251 struct member_layout next;
252};
253
254/* Initialize INFO so that it describes member MEMBER of archive ARCHIVE.
255 OFFSET is the even-padded offset of MEMBER, not including any leading
256 padding needed for section alignment. */
257
258static void
259member_layout_init (struct member_layout *info, bfd *archive,
260 bfd *member, file_ptr offset)
261{
262 info->member = member;
263 info->leading_padding = 0;
264 if (member)
265 {
266 info->name = normalize_filename (member);
267 info->namlen = strlen (info->name);
268 info->padded_namlen = info->namlen + (info->namlen & 1);
269 if (xcoff_big_format_p (archive))
270 info->header_size = SIZEOF_AR_HDR_BIG;
271 else
272 info->header_size = SIZEOF_AR_HDR;
273 info->header_size += info->padded_namlen + SXCOFFARFMAG;
274 info->contents_size = arelt_size (member);
275 info->trailing_padding = info->contents_size & 1;
276
277 if (bfd_check_format (member, bfd_object)
278 && bfd_get_flavour (member) == bfd_target_xcoff_flavour
279 && (member->flags & DYNAMIC) != 0)
280 info->leading_padding
281 = (-(offset + info->header_size)
282 & ((1 << bfd_xcoff_text_align_power (member)) - 1));
283 }
284 info->offset = offset + info->leading_padding;
285}
286
287/* Set up ITERATOR to iterate through archive ARCHIVE. */
288
289static void
290archive_iterator_begin (struct archive_iterator *iterator,
291 bfd *archive)
292{
293 iterator->archive = archive;
294 member_layout_init (&iterator->next, archive, archive->archive_head,
295 xcoff_big_format_p (archive)
296 ? SIZEOF_AR_FILE_HDR_BIG
297 : SIZEOF_AR_FILE_HDR);
298}
299
300/* Make ITERATOR visit the first unvisited archive member. Return true
301 on success; return false if all members have been visited. */
302
303static bfd_boolean
304archive_iterator_next (struct archive_iterator *iterator)
305{
306 if (!iterator->next.member)
307 return FALSE;
308
309 iterator->current = iterator->next;
310 member_layout_init (&iterator->next, iterator->archive,
311 iterator->current.member->archive_next,
312 iterator->current.offset
313 + iterator->current.header_size
314 + iterator->current.contents_size
315 + iterator->current.trailing_padding);
316 return TRUE;
317}
318
252b5132
RH
319/* We use our own tdata type. Its first field is the COFF tdata type,
320 so the COFF routines are compatible. */
321
b34976b6 322bfd_boolean
417236c0 323_bfd_xcoff_mkobject (bfd *abfd)
252b5132
RH
324{
325 coff_data_type *coff;
986f0783 326 size_t amt = sizeof (struct xcoff_tdata);
252b5132 327
dc810e39 328 abfd->tdata.xcoff_obj_data = (struct xcoff_tdata *) bfd_zalloc (abfd, amt);
252b5132 329 if (abfd->tdata.xcoff_obj_data == NULL)
b34976b6 330 return FALSE;
252b5132
RH
331 coff = coff_data (abfd);
332 coff->symbols = (coff_symbol_type *) NULL;
333 coff->conversion_table = (unsigned int *) NULL;
334 coff->raw_syments = (struct coff_ptr_struct *) NULL;
335 coff->relocbase = 0;
336
337 xcoff_data (abfd)->modtype = ('1' << 8) | 'L';
338
339 /* We set cputype to -1 to indicate that it has not been
340 initialized. */
341 xcoff_data (abfd)->cputype = -1;
342
343 xcoff_data (abfd)->csects = NULL;
344 xcoff_data (abfd)->debug_indices = NULL;
345
beb1bf64 346 /* text section alignment is different than the default */
f3813499 347 bfd_xcoff_text_align_power (abfd) = 2;
beb1bf64 348
b34976b6 349 return TRUE;
252b5132
RH
350}
351
352/* Copy XCOFF data from one BFD to another. */
353
b34976b6 354bfd_boolean
417236c0 355_bfd_xcoff_copy_private_bfd_data (bfd *ibfd, bfd *obfd)
252b5132
RH
356{
357 struct xcoff_tdata *ix, *ox;
358 asection *sec;
359
360 if (ibfd->xvec != obfd->xvec)
b34976b6 361 return TRUE;
252b5132
RH
362 ix = xcoff_data (ibfd);
363 ox = xcoff_data (obfd);
364 ox->full_aouthdr = ix->full_aouthdr;
365 ox->toc = ix->toc;
366 if (ix->sntoc == 0)
367 ox->sntoc = 0;
368 else
369 {
370 sec = coff_section_from_bfd_index (ibfd, ix->sntoc);
371 if (sec == NULL)
372 ox->sntoc = 0;
373 else
374 ox->sntoc = sec->output_section->target_index;
375 }
376 if (ix->snentry == 0)
377 ox->snentry = 0;
378 else
379 {
380 sec = coff_section_from_bfd_index (ibfd, ix->snentry);
381 if (sec == NULL)
382 ox->snentry = 0;
383 else
384 ox->snentry = sec->output_section->target_index;
385 }
f3813499
TR
386 bfd_xcoff_text_align_power (obfd) = bfd_xcoff_text_align_power (ibfd);
387 bfd_xcoff_data_align_power (obfd) = bfd_xcoff_data_align_power (ibfd);
252b5132
RH
388 ox->modtype = ix->modtype;
389 ox->cputype = ix->cputype;
390 ox->maxdata = ix->maxdata;
391 ox->maxstack = ix->maxstack;
b34976b6 392 return TRUE;
252b5132
RH
393}
394
395/* I don't think XCOFF really has a notion of local labels based on
396 name. This will mean that ld -X doesn't actually strip anything.
397 The AIX native linker does not have a -X option, and it ignores the
398 -x option. */
399
b34976b6 400bfd_boolean
417236c0 401_bfd_xcoff_is_local_label_name (bfd *abfd ATTRIBUTE_UNUSED,
07d6d2b8 402 const char *name ATTRIBUTE_UNUSED)
252b5132 403{
b34976b6 404 return FALSE;
252b5132 405}
7f6d05e8 406\f
14958a43 407void
2c3fc389 408_bfd_xcoff_swap_sym_in (bfd *abfd, void * ext1, void * in1)
7f6d05e8
CP
409{
410 SYMENT *ext = (SYMENT *)ext1;
f4ffd778 411 struct internal_syment * in = (struct internal_syment *)in1;
7f6d05e8 412
f4ffd778
NC
413 if (ext->e.e_name[0] != 0)
414 {
cf9ab45b 415 memcpy (in->_n._n_name, ext->e.e_name, SYMNMLEN);
f4ffd778
NC
416 }
417 else
418 {
419 in->_n._n_n._n_zeroes = 0;
dc810e39 420 in->_n._n_n._n_offset = H_GET_32 (abfd, ext->e.e.e_offset);
f4ffd778 421 }
7f6d05e8 422
dc810e39 423 in->n_value = H_GET_32 (abfd, ext->e_value);
9ae678af 424 in->n_scnum = (short) H_GET_16 (abfd, ext->e_scnum);
dc810e39
AM
425 in->n_type = H_GET_16 (abfd, ext->e_type);
426 in->n_sclass = H_GET_8 (abfd, ext->e_sclass);
427 in->n_numaux = H_GET_8 (abfd, ext->e_numaux);
7f6d05e8
CP
428}
429
14958a43 430unsigned int
2c3fc389 431_bfd_xcoff_swap_sym_out (bfd *abfd, void * inp, void * extp)
7f6d05e8
CP
432{
433 struct internal_syment *in = (struct internal_syment *)inp;
434 SYMENT *ext =(SYMENT *)extp;
435
f4ffd778
NC
436 if (in->_n._n_name[0] != 0)
437 {
cf9ab45b 438 memcpy (ext->e.e_name, in->_n._n_name, SYMNMLEN);
f4ffd778
NC
439 }
440 else
441 {
dc810e39
AM
442 H_PUT_32 (abfd, 0, ext->e.e.e_zeroes);
443 H_PUT_32 (abfd, in->_n._n_n._n_offset, ext->e.e.e_offset);
f4ffd778 444 }
7f6d05e8 445
dc810e39
AM
446 H_PUT_32 (abfd, in->n_value, ext->e_value);
447 H_PUT_16 (abfd, in->n_scnum, ext->e_scnum);
448 H_PUT_16 (abfd, in->n_type, ext->e_type);
449 H_PUT_8 (abfd, in->n_sclass, ext->e_sclass);
450 H_PUT_8 (abfd, in->n_numaux, ext->e_numaux);
7f6d05e8
CP
451 return bfd_coff_symesz (abfd);
452}
453
14958a43 454void
2c3fc389 455_bfd_xcoff_swap_aux_in (bfd *abfd, void * ext1, int type, int in_class,
07d6d2b8 456 int indx, int numaux, void * in1)
7f6d05e8 457{
f4ffd778 458 AUXENT * ext = (AUXENT *)ext1;
7f6d05e8
CP
459 union internal_auxent *in = (union internal_auxent *)in1;
460
96d56e9f 461 switch (in_class)
f4ffd778 462 {
7f6d05e8 463 case C_FILE:
7f41df2e 464 if (ext->x_file.x_n.x_fname[0] == 0)
f4ffd778 465 {
7f6d05e8 466 in->x_file.x_n.x_zeroes = 0;
dc810e39 467 in->x_file.x_n.x_offset =
7f41df2e 468 H_GET_32 (abfd, ext->x_file.x_n.x_n.x_offset);
f4ffd778
NC
469 }
470 else
471 {
472 if (numaux > 1)
473 {
474 if (indx == 0)
7f41df2e 475 memcpy (in->x_file.x_fname, ext->x_file.x_n.x_fname,
f4ffd778
NC
476 numaux * sizeof (AUXENT));
477 }
478 else
479 {
7f41df2e 480 memcpy (in->x_file.x_fname, ext->x_file.x_n.x_fname, FILNMLEN);
f4ffd778
NC
481 }
482 }
7f6d05e8
CP
483 goto end;
484
485 /* RS/6000 "csect" auxents */
486 case C_EXT:
8602d4fe 487 case C_AIX_WEAKEXT:
7f6d05e8
CP
488 case C_HIDEXT:
489 if (indx + 1 == numaux)
490 {
dc810e39
AM
491 in->x_csect.x_scnlen.l = H_GET_32 (abfd, ext->x_csect.x_scnlen);
492 in->x_csect.x_parmhash = H_GET_32 (abfd, ext->x_csect.x_parmhash);
493 in->x_csect.x_snhash = H_GET_16 (abfd, ext->x_csect.x_snhash);
7f6d05e8
CP
494 /* We don't have to hack bitfields in x_smtyp because it's
495 defined by shifts-and-ands, which are equivalent on all
496 byte orders. */
dc810e39
AM
497 in->x_csect.x_smtyp = H_GET_8 (abfd, ext->x_csect.x_smtyp);
498 in->x_csect.x_smclas = H_GET_8 (abfd, ext->x_csect.x_smclas);
499 in->x_csect.x_stab = H_GET_32 (abfd, ext->x_csect.x_stab);
500 in->x_csect.x_snstab = H_GET_16 (abfd, ext->x_csect.x_snstab);
7f6d05e8
CP
501 goto end;
502 }
503 break;
504
505 case C_STAT:
506 case C_LEAFSTAT:
507 case C_HIDDEN:
f4ffd778
NC
508 if (type == T_NULL)
509 {
dc810e39
AM
510 in->x_scn.x_scnlen = H_GET_32 (abfd, ext->x_scn.x_scnlen);
511 in->x_scn.x_nreloc = H_GET_16 (abfd, ext->x_scn.x_nreloc);
512 in->x_scn.x_nlinno = H_GET_16 (abfd, ext->x_scn.x_nlinno);
7f6d05e8 513 /* PE defines some extra fields; we zero them out for
cf9ab45b 514 safety. */
7f6d05e8
CP
515 in->x_scn.x_checksum = 0;
516 in->x_scn.x_associated = 0;
517 in->x_scn.x_comdat = 0;
518
519 goto end;
520 }
521 break;
522 }
523
dc810e39
AM
524 in->x_sym.x_tagndx.l = H_GET_32 (abfd, ext->x_sym.x_tagndx);
525 in->x_sym.x_tvndx = H_GET_16 (abfd, ext->x_sym.x_tvndx);
7f6d05e8 526
96d56e9f
NC
527 if (in_class == C_BLOCK || in_class == C_FCN || ISFCN (type)
528 || ISTAG (in_class))
7f6d05e8 529 {
dc810e39
AM
530 in->x_sym.x_fcnary.x_fcn.x_lnnoptr =
531 H_GET_32 (abfd, ext->x_sym.x_fcnary.x_fcn.x_lnnoptr);
532 in->x_sym.x_fcnary.x_fcn.x_endndx.l =
533 H_GET_32 (abfd, ext->x_sym.x_fcnary.x_fcn.x_endndx);
7f6d05e8
CP
534 }
535 else
536 {
537 in->x_sym.x_fcnary.x_ary.x_dimen[0] =
dc810e39 538 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[0]);
7f6d05e8 539 in->x_sym.x_fcnary.x_ary.x_dimen[1] =
dc810e39 540 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[1]);
7f6d05e8 541 in->x_sym.x_fcnary.x_ary.x_dimen[2] =
dc810e39 542 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[2]);
7f6d05e8 543 in->x_sym.x_fcnary.x_ary.x_dimen[3] =
dc810e39 544 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[3]);
7f6d05e8 545 }
7f6d05e8 546
f4ffd778
NC
547 if (ISFCN (type))
548 {
dc810e39 549 in->x_sym.x_misc.x_fsize = H_GET_32 (abfd, ext->x_sym.x_misc.x_fsize);
f4ffd778
NC
550 }
551 else
552 {
dc810e39
AM
553 in->x_sym.x_misc.x_lnsz.x_lnno =
554 H_GET_16 (abfd, ext->x_sym.x_misc.x_lnsz.x_lnno);
555 in->x_sym.x_misc.x_lnsz.x_size =
556 H_GET_16 (abfd, ext->x_sym.x_misc.x_lnsz.x_size);
f4ffd778 557 }
7f6d05e8 558
f4ffd778
NC
559 end: ;
560 /* The semicolon is because MSVC doesn't like labels at
561 end of block. */
7f6d05e8
CP
562}
563
14958a43 564unsigned int
2c3fc389 565_bfd_xcoff_swap_aux_out (bfd *abfd, void * inp, int type, int in_class,
07d6d2b8
AM
566 int indx ATTRIBUTE_UNUSED,
567 int numaux ATTRIBUTE_UNUSED,
568 void * extp)
7f6d05e8
CP
569{
570 union internal_auxent *in = (union internal_auxent *)inp;
571 AUXENT *ext = (AUXENT *)extp;
572
2c3fc389 573 memset (ext, 0, bfd_coff_auxesz (abfd));
96d56e9f 574 switch (in_class)
7f6d05e8 575 {
f4ffd778
NC
576 case C_FILE:
577 if (in->x_file.x_fname[0] == 0)
578 {
7f41df2e
TG
579 H_PUT_32 (abfd, 0, ext->x_file.x_n.x_n.x_zeroes);
580 H_PUT_32 (abfd, in->x_file.x_n.x_offset,
07d6d2b8 581 ext->x_file.x_n.x_n.x_offset);
f4ffd778
NC
582 }
583 else
584 {
7f41df2e 585 memcpy (ext->x_file.x_n.x_fname, in->x_file.x_fname, FILNMLEN);
f4ffd778 586 }
7f6d05e8 587 goto end;
f4ffd778
NC
588
589 /* RS/6000 "csect" auxents */
590 case C_EXT:
8602d4fe 591 case C_AIX_WEAKEXT:
f4ffd778
NC
592 case C_HIDEXT:
593 if (indx + 1 == numaux)
594 {
dc810e39
AM
595 H_PUT_32 (abfd, in->x_csect.x_scnlen.l, ext->x_csect.x_scnlen);
596 H_PUT_32 (abfd, in->x_csect.x_parmhash, ext->x_csect.x_parmhash);
597 H_PUT_16 (abfd, in->x_csect.x_snhash, ext->x_csect.x_snhash);
f4ffd778
NC
598 /* We don't have to hack bitfields in x_smtyp because it's
599 defined by shifts-and-ands, which are equivalent on all
600 byte orders. */
dc810e39
AM
601 H_PUT_8 (abfd, in->x_csect.x_smtyp, ext->x_csect.x_smtyp);
602 H_PUT_8 (abfd, in->x_csect.x_smclas, ext->x_csect.x_smclas);
603 H_PUT_32 (abfd, in->x_csect.x_stab, ext->x_csect.x_stab);
604 H_PUT_16 (abfd, in->x_csect.x_snstab, ext->x_csect.x_snstab);
f4ffd778
NC
605 goto end;
606 }
607 break;
608
609 case C_STAT:
610 case C_LEAFSTAT:
611 case C_HIDDEN:
612 if (type == T_NULL)
613 {
dc810e39
AM
614 H_PUT_32 (abfd, in->x_scn.x_scnlen, ext->x_scn.x_scnlen);
615 H_PUT_16 (abfd, in->x_scn.x_nreloc, ext->x_scn.x_nreloc);
616 H_PUT_16 (abfd, in->x_scn.x_nlinno, ext->x_scn.x_nlinno);
f4ffd778
NC
617 goto end;
618 }
619 break;
7f6d05e8 620 }
7f6d05e8 621
dc810e39
AM
622 H_PUT_32 (abfd, in->x_sym.x_tagndx.l, ext->x_sym.x_tagndx);
623 H_PUT_16 (abfd, in->x_sym.x_tvndx, ext->x_sym.x_tvndx);
7f6d05e8 624
96d56e9f
NC
625 if (in_class == C_BLOCK || in_class == C_FCN || ISFCN (type)
626 || ISTAG (in_class))
7f6d05e8 627 {
dc810e39
AM
628 H_PUT_32 (abfd, in->x_sym.x_fcnary.x_fcn.x_lnnoptr,
629 ext->x_sym.x_fcnary.x_fcn.x_lnnoptr);
630 H_PUT_32 (abfd, in->x_sym.x_fcnary.x_fcn.x_endndx.l,
631 ext->x_sym.x_fcnary.x_fcn.x_endndx);
7f6d05e8
CP
632 }
633 else
634 {
dc810e39
AM
635 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[0],
636 ext->x_sym.x_fcnary.x_ary.x_dimen[0]);
637 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[1],
638 ext->x_sym.x_fcnary.x_ary.x_dimen[1]);
639 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[2],
640 ext->x_sym.x_fcnary.x_ary.x_dimen[2]);
641 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[3],
642 ext->x_sym.x_fcnary.x_ary.x_dimen[3]);
7f6d05e8
CP
643 }
644
645 if (ISFCN (type))
dc810e39 646 H_PUT_32 (abfd, in->x_sym.x_misc.x_fsize, ext->x_sym.x_misc.x_fsize);
7f6d05e8
CP
647 else
648 {
dc810e39
AM
649 H_PUT_16 (abfd, in->x_sym.x_misc.x_lnsz.x_lnno,
650 ext->x_sym.x_misc.x_lnsz.x_lnno);
651 H_PUT_16 (abfd, in->x_sym.x_misc.x_lnsz.x_size,
652 ext->x_sym.x_misc.x_lnsz.x_size);
7f6d05e8
CP
653 }
654
dc1e8a47 655 end:
7f6d05e8
CP
656 return bfd_coff_auxesz (abfd);
657}
252b5132
RH
658\f
659/* The XCOFF reloc table. Actually, XCOFF relocations specify the
660 bitsize and whether they are signed or not, along with a
661 conventional type. This table is for the types, which are used for
662 different algorithms for putting in the reloc. Many of these
663 relocs need special_function entries, which I have not written. */
664
7f6d05e8 665reloc_howto_type xcoff_howto_table[] =
252b5132 666{
7fa9fcb6 667 /* 0x00: Standard 32 bit relocation. */
cf9ab45b
AM
668 HOWTO (R_POS, /* type */
669 0, /* rightshift */
670 2, /* size (0 = byte, 1 = short, 2 = long) */
671 32, /* bitsize */
b34976b6 672 FALSE, /* pc_relative */
cf9ab45b 673 0, /* bitpos */
252b5132 674 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
675 0, /* special_function */
676 "R_POS", /* name */
b34976b6 677 TRUE, /* partial_inplace */
cf9ab45b
AM
678 0xffffffff, /* src_mask */
679 0xffffffff, /* dst_mask */
b34976b6 680 FALSE), /* pcrel_offset */
252b5132 681
7fa9fcb6 682 /* 0x01: 32 bit relocation, but store negative value. */
cf9ab45b
AM
683 HOWTO (R_NEG, /* type */
684 0, /* rightshift */
685 -2, /* size (0 = byte, 1 = short, 2 = long) */
686 32, /* bitsize */
b34976b6 687 FALSE, /* pc_relative */
cf9ab45b 688 0, /* bitpos */
252b5132 689 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
690 0, /* special_function */
691 "R_NEG", /* name */
b34976b6 692 TRUE, /* partial_inplace */
cf9ab45b
AM
693 0xffffffff, /* src_mask */
694 0xffffffff, /* dst_mask */
b34976b6 695 FALSE), /* pcrel_offset */
252b5132 696
7fa9fcb6 697 /* 0x02: 32 bit PC relative relocation. */
cf9ab45b
AM
698 HOWTO (R_REL, /* type */
699 0, /* rightshift */
700 2, /* size (0 = byte, 1 = short, 2 = long) */
701 32, /* bitsize */
b34976b6 702 TRUE, /* pc_relative */
cf9ab45b 703 0, /* bitpos */
252b5132 704 complain_overflow_signed, /* complain_on_overflow */
cf9ab45b
AM
705 0, /* special_function */
706 "R_REL", /* name */
b34976b6 707 TRUE, /* partial_inplace */
cf9ab45b
AM
708 0xffffffff, /* src_mask */
709 0xffffffff, /* dst_mask */
b34976b6 710 FALSE), /* pcrel_offset */
c5930ee6 711
7fa9fcb6 712 /* 0x03: 16 bit TOC relative relocation. */
cf9ab45b
AM
713 HOWTO (R_TOC, /* type */
714 0, /* rightshift */
715 1, /* size (0 = byte, 1 = short, 2 = long) */
716 16, /* bitsize */
b34976b6 717 FALSE, /* pc_relative */
cf9ab45b 718 0, /* bitpos */
252b5132 719 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
720 0, /* special_function */
721 "R_TOC", /* name */
b34976b6 722 TRUE, /* partial_inplace */
cf9ab45b
AM
723 0xffff, /* src_mask */
724 0xffff, /* dst_mask */
b34976b6 725 FALSE), /* pcrel_offset */
c5930ee6 726
7fa9fcb6 727 /* 0x04: I don't really know what this is. */
cf9ab45b
AM
728 HOWTO (R_RTB, /* type */
729 1, /* rightshift */
730 2, /* size (0 = byte, 1 = short, 2 = long) */
731 32, /* bitsize */
b34976b6 732 FALSE, /* pc_relative */
cf9ab45b 733 0, /* bitpos */
252b5132 734 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
735 0, /* special_function */
736 "R_RTB", /* name */
b34976b6 737 TRUE, /* partial_inplace */
cf9ab45b
AM
738 0xffffffff, /* src_mask */
739 0xffffffff, /* dst_mask */
b34976b6 740 FALSE), /* pcrel_offset */
c5930ee6 741
7fa9fcb6 742 /* 0x05: External TOC relative symbol. */
cf9ab45b
AM
743 HOWTO (R_GL, /* type */
744 0, /* rightshift */
48bfecdd 745 1, /* size (0 = byte, 1 = short, 2 = long) */
cf9ab45b 746 16, /* bitsize */
b34976b6 747 FALSE, /* pc_relative */
cf9ab45b 748 0, /* bitpos */
252b5132 749 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
750 0, /* special_function */
751 "R_GL", /* name */
b34976b6 752 TRUE, /* partial_inplace */
cf9ab45b
AM
753 0xffff, /* src_mask */
754 0xffff, /* dst_mask */
b34976b6 755 FALSE), /* pcrel_offset */
cf9ab45b 756
7fa9fcb6 757 /* 0x06: Local TOC relative symbol. */
cf9ab45b
AM
758 HOWTO (R_TCL, /* type */
759 0, /* rightshift */
48bfecdd 760 1, /* size (0 = byte, 1 = short, 2 = long) */
cf9ab45b 761 16, /* bitsize */
b34976b6 762 FALSE, /* pc_relative */
cf9ab45b 763 0, /* bitpos */
252b5132 764 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
765 0, /* special_function */
766 "R_TCL", /* name */
b34976b6 767 TRUE, /* partial_inplace */
cf9ab45b
AM
768 0xffff, /* src_mask */
769 0xffff, /* dst_mask */
b34976b6 770 FALSE), /* pcrel_offset */
c5930ee6 771
5f771d47 772 EMPTY_HOWTO (7),
c5930ee6 773
7fa9fcb6 774 /* 0x08: Non modifiable absolute branch. */
cf9ab45b
AM
775 HOWTO (R_BA, /* type */
776 0, /* rightshift */
777 2, /* size (0 = byte, 1 = short, 2 = long) */
778 26, /* bitsize */
b34976b6 779 FALSE, /* pc_relative */
cf9ab45b 780 0, /* bitpos */
252b5132 781 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
782 0, /* special_function */
783 "R_BA_26", /* name */
b34976b6 784 TRUE, /* partial_inplace */
a78eab4e 785 0x03fffffc, /* src_mask */
48bfecdd 786 0x03fffffc, /* dst_mask */
b34976b6 787 FALSE), /* pcrel_offset */
c5930ee6 788
5f771d47 789 EMPTY_HOWTO (9),
252b5132 790
7fa9fcb6 791 /* 0x0a: Non modifiable relative branch. */
cf9ab45b
AM
792 HOWTO (R_BR, /* type */
793 0, /* rightshift */
794 2, /* size (0 = byte, 1 = short, 2 = long) */
795 26, /* bitsize */
b34976b6 796 TRUE, /* pc_relative */
cf9ab45b 797 0, /* bitpos */
252b5132 798 complain_overflow_signed, /* complain_on_overflow */
cf9ab45b
AM
799 0, /* special_function */
800 "R_BR", /* name */
b34976b6 801 TRUE, /* partial_inplace */
a78eab4e 802 0x03fffffc, /* src_mask */
48bfecdd 803 0x03fffffc, /* dst_mask */
b34976b6 804 FALSE), /* pcrel_offset */
c5930ee6 805
5f771d47 806 EMPTY_HOWTO (0xb),
252b5132 807
7fa9fcb6 808 /* 0x0c: Indirect load. */
cf9ab45b
AM
809 HOWTO (R_RL, /* type */
810 0, /* rightshift */
48bfecdd 811 1, /* size (0 = byte, 1 = short, 2 = long) */
cf9ab45b 812 16, /* bitsize */
b34976b6 813 FALSE, /* pc_relative */
cf9ab45b 814 0, /* bitpos */
252b5132 815 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
816 0, /* special_function */
817 "R_RL", /* name */
b34976b6 818 TRUE, /* partial_inplace */
cf9ab45b
AM
819 0xffff, /* src_mask */
820 0xffff, /* dst_mask */
b34976b6 821 FALSE), /* pcrel_offset */
c5930ee6 822
7fa9fcb6 823 /* 0x0d: Load address. */
cf9ab45b
AM
824 HOWTO (R_RLA, /* type */
825 0, /* rightshift */
48bfecdd 826 1, /* size (0 = byte, 1 = short, 2 = long) */
cf9ab45b 827 16, /* bitsize */
b34976b6 828 FALSE, /* pc_relative */
cf9ab45b 829 0, /* bitpos */
252b5132 830 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
831 0, /* special_function */
832 "R_RLA", /* name */
b34976b6 833 TRUE, /* partial_inplace */
cf9ab45b
AM
834 0xffff, /* src_mask */
835 0xffff, /* dst_mask */
b34976b6 836 FALSE), /* pcrel_offset */
c5930ee6 837
5f771d47 838 EMPTY_HOWTO (0xe),
c5930ee6 839
7fa9fcb6 840 /* 0x0f: Non-relocating reference. Bitsize is 1 so that r_rsize is 0. */
cf9ab45b
AM
841 HOWTO (R_REF, /* type */
842 0, /* rightshift */
c865e45b
RS
843 0, /* size (0 = byte, 1 = short, 2 = long) */
844 1, /* bitsize */
b34976b6 845 FALSE, /* pc_relative */
cf9ab45b 846 0, /* bitpos */
48bfecdd 847 complain_overflow_dont, /* complain_on_overflow */
cf9ab45b
AM
848 0, /* special_function */
849 "R_REF", /* name */
b34976b6 850 FALSE, /* partial_inplace */
cf9ab45b
AM
851 0, /* src_mask */
852 0, /* dst_mask */
b34976b6 853 FALSE), /* pcrel_offset */
c5930ee6 854
5f771d47
ILT
855 EMPTY_HOWTO (0x10),
856 EMPTY_HOWTO (0x11),
c5930ee6 857
7fa9fcb6 858 /* 0x12: TOC relative indirect load. */
cf9ab45b
AM
859 HOWTO (R_TRL, /* type */
860 0, /* rightshift */
48bfecdd 861 1, /* size (0 = byte, 1 = short, 2 = long) */
cf9ab45b 862 16, /* bitsize */
b34976b6 863 FALSE, /* pc_relative */
cf9ab45b 864 0, /* bitpos */
252b5132 865 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
866 0, /* special_function */
867 "R_TRL", /* name */
b34976b6 868 TRUE, /* partial_inplace */
cf9ab45b
AM
869 0xffff, /* src_mask */
870 0xffff, /* dst_mask */
b34976b6 871 FALSE), /* pcrel_offset */
c5930ee6 872
7fa9fcb6 873 /* 0x13: TOC relative load address. */
cf9ab45b
AM
874 HOWTO (R_TRLA, /* type */
875 0, /* rightshift */
48bfecdd 876 1, /* size (0 = byte, 1 = short, 2 = long) */
cf9ab45b 877 16, /* bitsize */
b34976b6 878 FALSE, /* pc_relative */
cf9ab45b 879 0, /* bitpos */
252b5132 880 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
881 0, /* special_function */
882 "R_TRLA", /* name */
b34976b6 883 TRUE, /* partial_inplace */
cf9ab45b
AM
884 0xffff, /* src_mask */
885 0xffff, /* dst_mask */
b34976b6 886 FALSE), /* pcrel_offset */
c5930ee6 887
7fa9fcb6 888 /* 0x14: Modifiable relative branch. */
cf9ab45b
AM
889 HOWTO (R_RRTBI, /* type */
890 1, /* rightshift */
891 2, /* size (0 = byte, 1 = short, 2 = long) */
892 32, /* bitsize */
b34976b6 893 FALSE, /* pc_relative */
cf9ab45b 894 0, /* bitpos */
252b5132 895 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
896 0, /* special_function */
897 "R_RRTBI", /* name */
b34976b6 898 TRUE, /* partial_inplace */
cf9ab45b
AM
899 0xffffffff, /* src_mask */
900 0xffffffff, /* dst_mask */
b34976b6 901 FALSE), /* pcrel_offset */
c5930ee6 902
7fa9fcb6 903 /* 0x15: Modifiable absolute branch. */
cf9ab45b
AM
904 HOWTO (R_RRTBA, /* type */
905 1, /* rightshift */
906 2, /* size (0 = byte, 1 = short, 2 = long) */
907 32, /* bitsize */
b34976b6 908 FALSE, /* pc_relative */
cf9ab45b 909 0, /* bitpos */
252b5132 910 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
911 0, /* special_function */
912 "R_RRTBA", /* name */
b34976b6 913 TRUE, /* partial_inplace */
cf9ab45b
AM
914 0xffffffff, /* src_mask */
915 0xffffffff, /* dst_mask */
b34976b6 916 FALSE), /* pcrel_offset */
c5930ee6 917
7fa9fcb6 918 /* 0x16: Modifiable call absolute indirect. */
cf9ab45b
AM
919 HOWTO (R_CAI, /* type */
920 0, /* rightshift */
48bfecdd 921 1, /* size (0 = byte, 1 = short, 2 = long) */
cf9ab45b 922 16, /* bitsize */
b34976b6 923 FALSE, /* pc_relative */
cf9ab45b 924 0, /* bitpos */
252b5132 925 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
926 0, /* special_function */
927 "R_CAI", /* name */
b34976b6 928 TRUE, /* partial_inplace */
cf9ab45b
AM
929 0xffff, /* src_mask */
930 0xffff, /* dst_mask */
b34976b6 931 FALSE), /* pcrel_offset */
c5930ee6 932
7fa9fcb6 933 /* 0x17: Modifiable call relative. */
cf9ab45b
AM
934 HOWTO (R_CREL, /* type */
935 0, /* rightshift */
48bfecdd 936 1, /* size (0 = byte, 1 = short, 2 = long) */
cf9ab45b 937 16, /* bitsize */
b34976b6 938 FALSE, /* pc_relative */
cf9ab45b 939 0, /* bitpos */
252b5132 940 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
941 0, /* special_function */
942 "R_CREL", /* name */
b34976b6 943 TRUE, /* partial_inplace */
cf9ab45b
AM
944 0xffff, /* src_mask */
945 0xffff, /* dst_mask */
b34976b6 946 FALSE), /* pcrel_offset */
c5930ee6 947
7fa9fcb6 948 /* 0x18: Modifiable branch absolute. */
cf9ab45b
AM
949 HOWTO (R_RBA, /* type */
950 0, /* rightshift */
951 2, /* size (0 = byte, 1 = short, 2 = long) */
952 26, /* bitsize */
b34976b6 953 FALSE, /* pc_relative */
cf9ab45b 954 0, /* bitpos */
252b5132 955 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
956 0, /* special_function */
957 "R_RBA", /* name */
b34976b6 958 TRUE, /* partial_inplace */
a78eab4e 959 0x03fffffc, /* src_mask */
48bfecdd 960 0x03fffffc, /* dst_mask */
b34976b6 961 FALSE), /* pcrel_offset */
c5930ee6 962
7fa9fcb6 963 /* 0x19: Modifiable branch absolute. */
cf9ab45b
AM
964 HOWTO (R_RBAC, /* type */
965 0, /* rightshift */
966 2, /* size (0 = byte, 1 = short, 2 = long) */
967 32, /* bitsize */
b34976b6 968 FALSE, /* pc_relative */
cf9ab45b 969 0, /* bitpos */
252b5132 970 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
971 0, /* special_function */
972 "R_RBAC", /* name */
b34976b6 973 TRUE, /* partial_inplace */
a78eab4e 974 0xffffffff, /* src_mask */
48bfecdd 975 0xffffffff, /* dst_mask */
b34976b6 976 FALSE), /* pcrel_offset */
c5930ee6 977
7fa9fcb6 978 /* 0x1a: Modifiable branch relative. */
cf9ab45b
AM
979 HOWTO (R_RBR, /* type */
980 0, /* rightshift */
981 2, /* size (0 = byte, 1 = short, 2 = long) */
982 26, /* bitsize */
b34976b6 983 FALSE, /* pc_relative */
cf9ab45b 984 0, /* bitpos */
252b5132 985 complain_overflow_signed, /* complain_on_overflow */
cf9ab45b
AM
986 0, /* special_function */
987 "R_RBR_26", /* name */
b34976b6 988 TRUE, /* partial_inplace */
a78eab4e 989 0x03fffffc, /* src_mask */
48bfecdd 990 0x03fffffc, /* dst_mask */
b34976b6 991 FALSE), /* pcrel_offset */
c5930ee6 992
7fa9fcb6 993 /* 0x1b: Modifiable branch absolute. */
cf9ab45b
AM
994 HOWTO (R_RBRC, /* type */
995 0, /* rightshift */
48bfecdd 996 1, /* size (0 = byte, 1 = short, 2 = long) */
cf9ab45b 997 16, /* bitsize */
b34976b6 998 FALSE, /* pc_relative */
cf9ab45b 999 0, /* bitpos */
252b5132 1000 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
1001 0, /* special_function */
1002 "R_RBRC", /* name */
b34976b6 1003 TRUE, /* partial_inplace */
cf9ab45b
AM
1004 0xffff, /* src_mask */
1005 0xffff, /* dst_mask */
b34976b6 1006 FALSE), /* pcrel_offset */
beb1bf64 1007
7fa9fcb6 1008 /* 0x1c: 16 bit Non modifiable absolute branch. */
cf9ab45b
AM
1009 HOWTO (R_BA, /* type */
1010 0, /* rightshift */
1011 1, /* size (0 = byte, 1 = short, 2 = long) */
1012 16, /* bitsize */
b34976b6 1013 FALSE, /* pc_relative */
cf9ab45b 1014 0, /* bitpos */
ff3a6ee3 1015 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
1016 0, /* special_function */
1017 "R_BA_16", /* name */
b34976b6 1018 TRUE, /* partial_inplace */
cf9ab45b
AM
1019 0xfffc, /* src_mask */
1020 0xfffc, /* dst_mask */
b34976b6 1021 FALSE), /* pcrel_offset */
59862849 1022
7fa9fcb6 1023 /* 0x1d: Modifiable branch relative. */
cf9ab45b
AM
1024 HOWTO (R_RBR, /* type */
1025 0, /* rightshift */
1026 1, /* size (0 = byte, 1 = short, 2 = long) */
1027 16, /* bitsize */
7fa9fcb6 1028 TRUE, /* pc_relative */
cf9ab45b 1029 0, /* bitpos */
59862849 1030 complain_overflow_signed, /* complain_on_overflow */
cf9ab45b
AM
1031 0, /* special_function */
1032 "R_RBR_16", /* name */
b34976b6 1033 TRUE, /* partial_inplace */
7fa9fcb6
TG
1034 0xfffc, /* src_mask */
1035 0xfffc, /* dst_mask */
b34976b6 1036 FALSE), /* pcrel_offset */
59862849 1037
7fa9fcb6 1038 /* 0x1e: Modifiable branch relative. */
cf9ab45b
AM
1039 HOWTO (R_RBA, /* type */
1040 0, /* rightshift */
1041 1, /* size (0 = byte, 1 = short, 2 = long) */
1042 16, /* bitsize */
b34976b6 1043 FALSE, /* pc_relative */
cf9ab45b 1044 0, /* bitpos */
1b164155 1045 complain_overflow_signed, /* complain_on_overflow */
cf9ab45b
AM
1046 0, /* special_function */
1047 "R_RBA_16", /* name */
b34976b6 1048 TRUE, /* partial_inplace */
cf9ab45b
AM
1049 0xffff, /* src_mask */
1050 0xffff, /* dst_mask */
b34976b6 1051 FALSE), /* pcrel_offset */
252b5132
RH
1052};
1053
7f6d05e8 1054void
417236c0 1055xcoff_rtype2howto (arelent *relent, struct internal_reloc *internal)
252b5132 1056{
59862849 1057 if (internal->r_type > R_RBRC)
beb1bf64 1058 abort ();
5ea1af0d 1059
59862849
TR
1060 /* Default howto layout works most of the time */
1061 relent->howto = &xcoff_howto_table[internal->r_type];
cf9ab45b 1062
5c4491d3 1063 /* Special case some 16 bit reloc */
59862849
TR
1064 if (15 == (internal->r_size & 0x1f))
1065 {
cf9ab45b 1066 if (R_BA == internal->r_type)
59862849 1067 relent->howto = &xcoff_howto_table[0x1c];
cf9ab45b 1068 else if (R_RBR == internal->r_type)
59862849 1069 relent->howto = &xcoff_howto_table[0x1d];
cf9ab45b 1070 else if (R_RBA == internal->r_type)
1b164155 1071 relent->howto = &xcoff_howto_table[0x1e];
59862849 1072 }
cf9ab45b 1073
252b5132
RH
1074 /* The r_size field of an XCOFF reloc encodes the bitsize of the
1075 relocation, as well as indicating whether it is signed or not.
1076 Doublecheck that the relocation information gathered from the
c5930ee6
KH
1077 type matches this information. The bitsize is not significant
1078 for R_REF relocs. */
1079 if (relent->howto->dst_mask != 0
dc810e39 1080 && (relent->howto->bitsize
59862849 1081 != ((unsigned int) internal->r_size & 0x1f) + 1))
252b5132 1082 abort ();
252b5132
RH
1083}
1084
7f6d05e8 1085reloc_howto_type *
417236c0 1086_bfd_xcoff_reloc_type_lookup (bfd *abfd ATTRIBUTE_UNUSED,
07d6d2b8 1087 bfd_reloc_code_real_type code)
252b5132
RH
1088{
1089 switch (code)
1090 {
1091 case BFD_RELOC_PPC_B26:
1092 return &xcoff_howto_table[0xa];
ff3a6ee3 1093 case BFD_RELOC_PPC_BA16:
59862849 1094 return &xcoff_howto_table[0x1c];
252b5132
RH
1095 case BFD_RELOC_PPC_BA26:
1096 return &xcoff_howto_table[8];
1097 case BFD_RELOC_PPC_TOC16:
1098 return &xcoff_howto_table[3];
9f6e76f4
TG
1099 case BFD_RELOC_16:
1100 /* Note that this relocation is only internally used by gas. */
1101 return &xcoff_howto_table[0xc];
7fa9fcb6
TG
1102 case BFD_RELOC_PPC_B16:
1103 return &xcoff_howto_table[0x1d];
252b5132
RH
1104 case BFD_RELOC_32:
1105 case BFD_RELOC_CTOR:
1106 return &xcoff_howto_table[0];
c865e45b
RS
1107 case BFD_RELOC_NONE:
1108 return &xcoff_howto_table[0xf];
252b5132
RH
1109 default:
1110 return NULL;
1111 }
1112}
beb1bf64 1113
157090f7
AM
1114static reloc_howto_type *
1115_bfd_xcoff_reloc_name_lookup (bfd *abfd ATTRIBUTE_UNUSED,
1116 const char *r_name)
1117{
1118 unsigned int i;
1119
1120 for (i = 0;
1121 i < sizeof (xcoff_howto_table) / sizeof (xcoff_howto_table[0]);
1122 i++)
1123 if (xcoff_howto_table[i].name != NULL
1124 && strcasecmp (xcoff_howto_table[i].name, r_name) == 0)
1125 return &xcoff_howto_table[i];
1126
1127 return NULL;
1128}
252b5132
RH
1129\f
1130/* XCOFF archive support. The original version of this code was by
1131 Damon A. Permezel. It was enhanced to permit cross support, and
1132 writing archive files, by Ian Lance Taylor, Cygnus Support.
1133
1134 XCOFF uses its own archive format. Everything is hooked together
1135 with file offset links, so it is possible to rapidly update an
1136 archive in place. Of course, we don't do that. An XCOFF archive
1137 has a real file header, not just an ARMAG string. The structure of
1138 the file header and of each archive header appear below.
1139
1140 An XCOFF archive also has a member table, which is a list of
1141 elements in the archive (you can get that by looking through the
1142 linked list, but you have to read a lot more of the file). The
1143 member table has a normal archive header with an empty name. It is
1144 normally (and perhaps must be) the second to last entry in the
1145 archive. The member table data is almost printable ASCII. It
1146 starts with a 12 character decimal string which is the number of
1147 entries in the table. For each entry it has a 12 character decimal
1148 string which is the offset in the archive of that member. These
1149 entries are followed by a series of null terminated strings which
1150 are the member names for each entry.
1151
1152 Finally, an XCOFF archive has a global symbol table, which is what
1153 we call the armap. The global symbol table has a normal archive
1154 header with an empty name. It is normally (and perhaps must be)
1155 the last entry in the archive. The contents start with a four byte
1156 binary number which is the number of entries. This is followed by
1157 a that many four byte binary numbers; each is the file offset of an
1158 entry in the archive. These numbers are followed by a series of
5ea1af0d
GK
1159 null terminated strings, which are symbol names.
1160
1161 AIX 4.3 introduced a new archive format which can handle larger
1162 files and also 32- and 64-bit objects in the same archive. The
1163 things said above remain true except that there is now more than
1164 one global symbol table. The one is used to index 32-bit objects,
1165 the other for 64-bit objects.
1166
1167 The new archives (recognizable by the new ARMAG string) has larger
1168 field lengths so that we cannot really share any code. Also we have
1169 to take care that we are not generating the new form of archives
1170 on AIX 4.2 or earlier systems. */
252b5132 1171
29866fa1
NC
1172/* PR 21786: The PE/COFF standard does not require NUL termination for any of
1173 the ASCII fields in the archive headers. So in order to be able to extract
1174 numerical values we provide our own versions of strtol and strtoll which
1175 take a maximum length as an additional parameter. Also - just to save space,
1176 we omit the endptr return parameter, since we know that it is never used. */
1177
1178static long
1179_bfd_strntol (const char * nptr, int base, unsigned int maxlen)
1180{
1181 char buf[24]; /* Should be enough. */
1182
1183 BFD_ASSERT (maxlen < (sizeof (buf) - 1));
1184
1185 memcpy (buf, nptr, maxlen);
1186 buf[maxlen] = 0;
1187 return strtol (buf, NULL, base);
1188}
1189
1190static long long
1191_bfd_strntoll (const char * nptr, int base, unsigned int maxlen)
1192{
1193 char buf[32]; /* Should be enough. */
1194
1195 BFD_ASSERT (maxlen < (sizeof (buf) - 1));
1196
1197 memcpy (buf, nptr, maxlen);
1198 buf[maxlen] = 0;
1199 return strtoll (buf, NULL, base);
1200}
1201
1202/* Macro to read an ASCII value stored in an archive header field. */
677bd4c6
AM
1203#define GET_VALUE_IN_FIELD(VAR, FIELD, BASE) \
1204 do \
1205 { \
1206 (VAR) = (sizeof (VAR) > sizeof (long) \
1207 ? _bfd_strntoll (FIELD, BASE, sizeof FIELD) \
1208 : _bfd_strntol (FIELD, BASE, sizeof FIELD)); \
1209 } \
29866fa1
NC
1210 while (0)
1211
677bd4c6
AM
1212#define EQ_VALUE_IN_FIELD(VAR, FIELD, BASE) \
1213 (sizeof (VAR) > sizeof (long) \
1214 ? (VAR) == _bfd_strntoll (FIELD, BASE, sizeof FIELD) \
1215 : (VAR) == _bfd_strntol (FIELD, BASE, sizeof FIELD))
29866fa1 1216
252b5132
RH
1217/* Read in the armap of an XCOFF archive. */
1218
b34976b6 1219bfd_boolean
417236c0 1220_bfd_xcoff_slurp_armap (bfd *abfd)
252b5132
RH
1221{
1222 file_ptr off;
252b5132
RH
1223 size_t namlen;
1224 bfd_size_type sz;
1225 bfd_byte *contents, *cend;
31612ca6 1226 bfd_vma c, i;
252b5132
RH
1227 carsym *arsym;
1228 bfd_byte *p;
1229
1230 if (xcoff_ardata (abfd) == NULL)
1231 {
ed48ec2e 1232 abfd->has_armap = FALSE;
b34976b6 1233 return TRUE;
252b5132
RH
1234 }
1235
5ea1af0d 1236 if (! xcoff_big_format_p (abfd))
252b5132 1237 {
5ea1af0d
GK
1238 /* This is for the old format. */
1239 struct xcoff_ar_hdr hdr;
1240
677bd4c6 1241 GET_VALUE_IN_FIELD (off, xcoff_ardata (abfd)->symoff, 10);
5ea1af0d
GK
1242 if (off == 0)
1243 {
ed48ec2e 1244 abfd->has_armap = FALSE;
b34976b6 1245 return TRUE;
5ea1af0d
GK
1246 }
1247
1248 if (bfd_seek (abfd, off, SEEK_SET) != 0)
b34976b6 1249 return FALSE;
5ea1af0d
GK
1250
1251 /* The symbol table starts with a normal archive header. */
2c3fc389 1252 if (bfd_bread (&hdr, (bfd_size_type) SIZEOF_AR_HDR, abfd)
dc810e39 1253 != SIZEOF_AR_HDR)
b34976b6 1254 return FALSE;
5ea1af0d
GK
1255
1256 /* Skip the name (normally empty). */
677bd4c6 1257 GET_VALUE_IN_FIELD (namlen, hdr.namlen, 10);
dc810e39
AM
1258 off = ((namlen + 1) & ~ (size_t) 1) + SXCOFFARFMAG;
1259 if (bfd_seek (abfd, off, SEEK_CUR) != 0)
b34976b6 1260 return FALSE;
5ea1af0d 1261
677bd4c6 1262 GET_VALUE_IN_FIELD (sz, hdr.size, 10);
67338173 1263 if (sz + 1 < 5)
228c8f4b 1264 {
67338173 1265 bfd_set_error (bfd_error_bad_value);
228c8f4b
AM
1266 return FALSE;
1267 }
31612ca6
GK
1268
1269 /* Read in the entire symbol table. */
2bb3687b 1270 contents = (bfd_byte *) _bfd_alloc_and_read (abfd, sz + 1, sz);
31612ca6 1271 if (contents == NULL)
b34976b6 1272 return FALSE;
31612ca6 1273
228c8f4b
AM
1274 /* Ensure strings are NULL terminated so we don't wander off the
1275 end of the buffer. */
1276 contents[sz] = 0;
1277
31612ca6 1278 /* The symbol table starts with a four byte count. */
dc810e39
AM
1279 c = H_GET_32 (abfd, contents);
1280
228c8f4b 1281 if (c >= sz / 4)
31612ca6
GK
1282 {
1283 bfd_set_error (bfd_error_bad_value);
b34976b6 1284 return FALSE;
31612ca6 1285 }
dc810e39
AM
1286
1287 bfd_ardata (abfd)->symdefs =
1288 ((carsym *) bfd_alloc (abfd, c * sizeof (carsym)));
31612ca6 1289 if (bfd_ardata (abfd)->symdefs == NULL)
b34976b6 1290 return FALSE;
dc810e39 1291
31612ca6
GK
1292 /* After the count comes a list of four byte file offsets. */
1293 for (i = 0, arsym = bfd_ardata (abfd)->symdefs, p = contents + 4;
1294 i < c;
1295 ++i, ++arsym, p += 4)
dc810e39 1296 arsym->file_offset = H_GET_32 (abfd, p);
252b5132 1297 }
5ea1af0d
GK
1298 else
1299 {
1300 /* This is for the new format. */
1301 struct xcoff_ar_hdr_big hdr;
252b5132 1302
677bd4c6 1303 GET_VALUE_IN_FIELD (off, xcoff_ardata_big (abfd)->symoff, 10);
5ea1af0d
GK
1304 if (off == 0)
1305 {
ed48ec2e 1306 abfd->has_armap = FALSE;
b34976b6 1307 return TRUE;
5ea1af0d 1308 }
252b5132 1309
5ea1af0d 1310 if (bfd_seek (abfd, off, SEEK_SET) != 0)
b34976b6 1311 return FALSE;
252b5132 1312
5ea1af0d 1313 /* The symbol table starts with a normal archive header. */
2c3fc389 1314 if (bfd_bread (&hdr, (bfd_size_type) SIZEOF_AR_HDR_BIG, abfd)
5ea1af0d 1315 != SIZEOF_AR_HDR_BIG)
b34976b6 1316 return FALSE;
5ea1af0d
GK
1317
1318 /* Skip the name (normally empty). */
677bd4c6 1319 GET_VALUE_IN_FIELD (namlen, hdr.namlen, 10);
dc810e39
AM
1320 off = ((namlen + 1) & ~ (size_t) 1) + SXCOFFARFMAG;
1321 if (bfd_seek (abfd, off, SEEK_CUR) != 0)
b34976b6 1322 return FALSE;
5ea1af0d 1323
677bd4c6 1324 GET_VALUE_IN_FIELD (sz, hdr.size, 10);
67338173 1325 if (sz + 1 < 9)
228c8f4b 1326 {
67338173 1327 bfd_set_error (bfd_error_bad_value);
228c8f4b
AM
1328 return FALSE;
1329 }
252b5132 1330
31612ca6 1331 /* Read in the entire symbol table. */
2bb3687b 1332 contents = (bfd_byte *) _bfd_alloc_and_read (abfd, sz + 1, sz);
31612ca6 1333 if (contents == NULL)
b34976b6 1334 return FALSE;
252b5132 1335
228c8f4b
AM
1336 /* Ensure strings are NULL terminated so we don't wander off the
1337 end of the buffer. */
1338 contents[sz] = 0;
1339
31612ca6 1340 /* The symbol table starts with an eight byte count. */
dc810e39 1341 c = H_GET_64 (abfd, contents);
252b5132 1342
228c8f4b 1343 if (c >= sz / 8)
31612ca6
GK
1344 {
1345 bfd_set_error (bfd_error_bad_value);
b34976b6 1346 return FALSE;
31612ca6 1347 }
dc810e39
AM
1348
1349 bfd_ardata (abfd)->symdefs =
1350 ((carsym *) bfd_alloc (abfd, c * sizeof (carsym)));
31612ca6 1351 if (bfd_ardata (abfd)->symdefs == NULL)
b34976b6 1352 return FALSE;
dc810e39 1353
31612ca6
GK
1354 /* After the count comes a list of eight byte file offsets. */
1355 for (i = 0, arsym = bfd_ardata (abfd)->symdefs, p = contents + 8;
1356 i < c;
1357 ++i, ++arsym, p += 8)
dc810e39 1358 arsym->file_offset = H_GET_64 (abfd, p);
252b5132
RH
1359 }
1360
252b5132
RH
1361 /* After the file offsets come null terminated symbol names. */
1362 cend = contents + sz;
1363 for (i = 0, arsym = bfd_ardata (abfd)->symdefs;
1364 i < c;
1365 ++i, ++arsym, p += strlen ((char *) p) + 1)
1366 {
1367 if (p >= cend)
1368 {
1369 bfd_set_error (bfd_error_bad_value);
b34976b6 1370 return FALSE;
252b5132
RH
1371 }
1372 arsym->name = (char *) p;
1373 }
1374
1375 bfd_ardata (abfd)->symdef_count = c;
ed48ec2e 1376 abfd->has_armap = TRUE;
252b5132 1377
b34976b6 1378 return TRUE;
252b5132
RH
1379}
1380
1381/* See if this is an XCOFF archive. */
1382
cb001c0d 1383bfd_cleanup
417236c0 1384_bfd_xcoff_archive_p (bfd *abfd)
252b5132 1385{
487e54f2 1386 struct artdata *tdata_hold;
5ea1af0d 1387 char magic[SXCOFFARMAG];
986f0783 1388 size_t amt = SXCOFFARMAG;
252b5132 1389
2c3fc389 1390 if (bfd_bread (magic, amt, abfd) != amt)
252b5132
RH
1391 {
1392 if (bfd_get_error () != bfd_error_system_call)
1393 bfd_set_error (bfd_error_wrong_format);
1394 return NULL;
1395 }
1396
5ea1af0d
GK
1397 if (strncmp (magic, XCOFFARMAG, SXCOFFARMAG) != 0
1398 && strncmp (magic, XCOFFARMAGBIG, SXCOFFARMAG) != 0)
252b5132
RH
1399 {
1400 bfd_set_error (bfd_error_wrong_format);
1401 return NULL;
1402 }
1403
487e54f2
AM
1404 tdata_hold = bfd_ardata (abfd);
1405
dc810e39 1406 amt = sizeof (struct artdata);
487e54f2 1407 bfd_ardata (abfd) = (struct artdata *) bfd_zalloc (abfd, amt);
252b5132 1408 if (bfd_ardata (abfd) == (struct artdata *) NULL)
487e54f2 1409 goto error_ret_restore;
252b5132 1410
9e492e05
JJ
1411 /* Cleared by bfd_zalloc above.
1412 bfd_ardata (abfd)->cache = NULL;
1413 bfd_ardata (abfd)->archive_head = NULL;
1414 bfd_ardata (abfd)->symdefs = NULL;
1415 bfd_ardata (abfd)->extended_names = NULL;
1416 bfd_ardata (abfd)->extended_names_size = 0; */
252b5132 1417
5ea1af0d
GK
1418 /* Now handle the two formats. */
1419 if (magic[1] != 'b')
1420 {
1421 /* This is the old format. */
1422 struct xcoff_ar_file_hdr hdr;
252b5132 1423
5ea1af0d
GK
1424 /* Copy over the magic string. */
1425 memcpy (hdr.magic, magic, SXCOFFARMAG);
1426
1427 /* Now read the rest of the file header. */
487e54f2 1428 amt = SIZEOF_AR_FILE_HDR - SXCOFFARMAG;
2c3fc389 1429 if (bfd_bread (&hdr.memoff, amt, abfd) != amt)
5ea1af0d
GK
1430 {
1431 if (bfd_get_error () != bfd_error_system_call)
1432 bfd_set_error (bfd_error_wrong_format);
487e54f2 1433 goto error_ret;
5ea1af0d
GK
1434 }
1435
29866fa1 1436 GET_VALUE_IN_FIELD (bfd_ardata (abfd)->first_file_filepos,
677bd4c6 1437 hdr.firstmemoff, 10);
5ea1af0d 1438
dc810e39
AM
1439 amt = SIZEOF_AR_FILE_HDR;
1440 bfd_ardata (abfd)->tdata = bfd_zalloc (abfd, amt);
5ea1af0d 1441 if (bfd_ardata (abfd)->tdata == NULL)
487e54f2 1442 goto error_ret;
5ea1af0d
GK
1443
1444 memcpy (bfd_ardata (abfd)->tdata, &hdr, SIZEOF_AR_FILE_HDR);
1445 }
1446 else
1447 {
1448 /* This is the new format. */
1449 struct xcoff_ar_file_hdr_big hdr;
1450
1451 /* Copy over the magic string. */
1452 memcpy (hdr.magic, magic, SXCOFFARMAG);
1453
1454 /* Now read the rest of the file header. */
487e54f2 1455 amt = SIZEOF_AR_FILE_HDR_BIG - SXCOFFARMAG;
2c3fc389 1456 if (bfd_bread (&hdr.memoff, amt, abfd) != amt)
5ea1af0d
GK
1457 {
1458 if (bfd_get_error () != bfd_error_system_call)
1459 bfd_set_error (bfd_error_wrong_format);
487e54f2 1460 goto error_ret;
5ea1af0d
GK
1461 }
1462
487e54f2
AM
1463 bfd_ardata (abfd)->first_file_filepos = bfd_scan_vma (hdr.firstmemoff,
1464 (const char **) 0,
1465 10);
5ea1af0d 1466
dc810e39
AM
1467 amt = SIZEOF_AR_FILE_HDR_BIG;
1468 bfd_ardata (abfd)->tdata = bfd_zalloc (abfd, amt);
5ea1af0d 1469 if (bfd_ardata (abfd)->tdata == NULL)
487e54f2 1470 goto error_ret;
5ea1af0d
GK
1471
1472 memcpy (bfd_ardata (abfd)->tdata, &hdr, SIZEOF_AR_FILE_HDR_BIG);
1473 }
252b5132 1474
7f6d05e8 1475 if (! _bfd_xcoff_slurp_armap (abfd))
252b5132 1476 {
487e54f2 1477 error_ret:
252b5132 1478 bfd_release (abfd, bfd_ardata (abfd));
487e54f2
AM
1479 error_ret_restore:
1480 bfd_ardata (abfd) = tdata_hold;
252b5132
RH
1481 return NULL;
1482 }
1483
cb001c0d 1484 return _bfd_no_cleanup;
252b5132
RH
1485}
1486
1487/* Read the archive header in an XCOFF archive. */
1488
2c3fc389 1489void *
417236c0 1490_bfd_xcoff_read_ar_hdr (bfd *abfd)
252b5132 1491{
dc810e39 1492 bfd_size_type namlen;
252b5132 1493 struct areltdata *ret;
05f52dc2 1494 bfd_size_type amt;
5ea1af0d
GK
1495
1496 if (! xcoff_big_format_p (abfd))
1497 {
1498 struct xcoff_ar_hdr hdr;
1499 struct xcoff_ar_hdr *hdrp;
1500
05f52dc2
AM
1501 if (bfd_bread (&hdr, SIZEOF_AR_HDR, abfd) != SIZEOF_AR_HDR)
1502 return NULL;
5ea1af0d 1503
677bd4c6 1504 GET_VALUE_IN_FIELD (namlen, hdr.namlen, 10);
05f52dc2
AM
1505 amt = sizeof (struct areltdata) + SIZEOF_AR_HDR + namlen + 1;
1506 ret = (struct areltdata *) bfd_malloc (amt);
1507 if (ret == NULL)
1508 return ret;
1509
1510 hdrp = (struct xcoff_ar_hdr *) (ret + 1);
5ea1af0d 1511 memcpy (hdrp, &hdr, SIZEOF_AR_HDR);
dc810e39 1512 if (bfd_bread ((char *) hdrp + SIZEOF_AR_HDR, namlen, abfd) != namlen)
5ea1af0d
GK
1513 {
1514 free (ret);
1515 return NULL;
1516 }
1517 ((char *) hdrp)[SIZEOF_AR_HDR + namlen] = '\0';
1518
1519 ret->arch_header = (char *) hdrp;
677bd4c6 1520 GET_VALUE_IN_FIELD (ret->parsed_size, hdr.size, 10);
5ea1af0d
GK
1521 ret->filename = (char *) hdrp + SIZEOF_AR_HDR;
1522 }
1523 else
1524 {
1525 struct xcoff_ar_hdr_big hdr;
1526 struct xcoff_ar_hdr_big *hdrp;
1527
05f52dc2
AM
1528 if (bfd_bread (&hdr, SIZEOF_AR_HDR_BIG, abfd) != SIZEOF_AR_HDR_BIG)
1529 return NULL;
5ea1af0d 1530
677bd4c6 1531 GET_VALUE_IN_FIELD (namlen, hdr.namlen, 10);
05f52dc2
AM
1532 amt = sizeof (struct areltdata) + SIZEOF_AR_HDR_BIG + namlen + 1;
1533 ret = (struct areltdata *) bfd_malloc (amt);
1534 if (ret == NULL)
1535 return ret;
1536
1537 hdrp = (struct xcoff_ar_hdr_big *) (ret + 1);
5ea1af0d 1538 memcpy (hdrp, &hdr, SIZEOF_AR_HDR_BIG);
dc810e39 1539 if (bfd_bread ((char *) hdrp + SIZEOF_AR_HDR_BIG, namlen, abfd) != namlen)
5ea1af0d
GK
1540 {
1541 free (ret);
1542 return NULL;
1543 }
1544 ((char *) hdrp)[SIZEOF_AR_HDR_BIG + namlen] = '\0';
1545
1546 ret->arch_header = (char *) hdrp;
677bd4c6 1547 GET_VALUE_IN_FIELD (ret->parsed_size, hdr.size, 10);
5ea1af0d
GK
1548 ret->filename = (char *) hdrp + SIZEOF_AR_HDR_BIG;
1549 }
252b5132
RH
1550
1551 /* Skip over the XCOFFARFMAG at the end of the file name. */
dc810e39 1552 if (bfd_seek (abfd, (file_ptr) ((namlen & 1) + SXCOFFARFMAG), SEEK_CUR) != 0)
252b5132
RH
1553 return NULL;
1554
2c3fc389 1555 return ret;
252b5132
RH
1556}
1557
1558/* Open the next element in an XCOFF archive. */
1559
7f6d05e8 1560bfd *
417236c0 1561_bfd_xcoff_openr_next_archived_file (bfd *archive, bfd *last_file)
252b5132
RH
1562{
1563 file_ptr filestart;
1564
1565 if (xcoff_ardata (archive) == NULL)
1566 {
1567 bfd_set_error (bfd_error_invalid_operation);
1568 return NULL;
1569 }
1570
5ea1af0d
GK
1571 if (! xcoff_big_format_p (archive))
1572 {
1573 if (last_file == NULL)
1574 filestart = bfd_ardata (archive)->first_file_filepos;
1575 else
677bd4c6 1576 GET_VALUE_IN_FIELD (filestart, arch_xhdr (last_file)->nextoff, 10);
5ea1af0d
GK
1577
1578 if (filestart == 0
677bd4c6
AM
1579 || EQ_VALUE_IN_FIELD (filestart, xcoff_ardata (archive)->memoff, 10)
1580 || EQ_VALUE_IN_FIELD (filestart, xcoff_ardata (archive)->symoff, 10))
5ea1af0d
GK
1581 {
1582 bfd_set_error (bfd_error_no_more_archived_files);
1583 return NULL;
1584 }
1585 }
252b5132 1586 else
252b5132 1587 {
5ea1af0d
GK
1588 if (last_file == NULL)
1589 filestart = bfd_ardata (archive)->first_file_filepos;
1590 else
677bd4c6 1591 GET_VALUE_IN_FIELD (filestart, arch_xhdr_big (last_file)->nextoff, 10);
29866fa1 1592
5ea1af0d 1593 if (filestart == 0
677bd4c6
AM
1594 || EQ_VALUE_IN_FIELD (filestart, xcoff_ardata_big (archive)->memoff, 10)
1595 || EQ_VALUE_IN_FIELD (filestart, xcoff_ardata_big (archive)->symoff, 10))
5ea1af0d
GK
1596 {
1597 bfd_set_error (bfd_error_no_more_archived_files);
1598 return NULL;
1599 }
252b5132
RH
1600 }
1601
1602 return _bfd_get_elt_at_filepos (archive, filestart);
1603}
1604
1605/* Stat an element in an XCOFF archive. */
1606
7f6d05e8 1607int
417236c0 1608_bfd_xcoff_stat_arch_elt (bfd *abfd, struct stat *s)
252b5132 1609{
252b5132
RH
1610 if (abfd->arelt_data == NULL)
1611 {
1612 bfd_set_error (bfd_error_invalid_operation);
1613 return -1;
1614 }
1615
51b9608c 1616 if (! xcoff_big_format_p (abfd->my_archive))
5ea1af0d
GK
1617 {
1618 struct xcoff_ar_hdr *hdrp = arch_xhdr (abfd);
1619
677bd4c6
AM
1620 GET_VALUE_IN_FIELD (s->st_mtime, hdrp->date, 10);
1621 GET_VALUE_IN_FIELD (s->st_uid, hdrp->uid, 10);
1622 GET_VALUE_IN_FIELD (s->st_gid, hdrp->gid, 10);
1623 GET_VALUE_IN_FIELD (s->st_mode, hdrp->mode, 8);
5ea1af0d
GK
1624 s->st_size = arch_eltdata (abfd)->parsed_size;
1625 }
1626 else
1627 {
1628 struct xcoff_ar_hdr_big *hdrp = arch_xhdr_big (abfd);
252b5132 1629
677bd4c6
AM
1630 GET_VALUE_IN_FIELD (s->st_mtime, hdrp->date, 10);
1631 GET_VALUE_IN_FIELD (s->st_uid, hdrp->uid, 10);
1632 GET_VALUE_IN_FIELD (s->st_gid, hdrp->gid, 10);
1633 GET_VALUE_IN_FIELD (s->st_mode, hdrp->mode, 8);
5ea1af0d
GK
1634 s->st_size = arch_eltdata (abfd)->parsed_size;
1635 }
252b5132
RH
1636
1637 return 0;
1638}
1639
1640/* Normalize a file name for inclusion in an archive. */
1641
1642static const char *
417236c0 1643normalize_filename (bfd *abfd)
252b5132
RH
1644{
1645 const char *file;
1646 const char *filename;
1647
1648 file = bfd_get_filename (abfd);
1649 filename = strrchr (file, '/');
1650 if (filename != NULL)
1651 filename++;
1652 else
1653 filename = file;
1654 return filename;
1655}
1656
1657/* Write out an XCOFF armap. */
1658
b34976b6 1659static bfd_boolean
417236c0 1660xcoff_write_armap_old (bfd *abfd, unsigned int elength ATTRIBUTE_UNUSED,
07d6d2b8 1661 struct orl *map, unsigned int orl_count, int stridx)
252b5132 1662{
2e470849 1663 struct archive_iterator iterator;
252b5132
RH
1664 struct xcoff_ar_hdr hdr;
1665 char *p;
1666 unsigned char buf[4];
252b5132
RH
1667 unsigned int i;
1668
1669 memset (&hdr, 0, sizeof hdr);
1670 sprintf (hdr.size, "%ld", (long) (4 + orl_count * 4 + stridx));
1671 sprintf (hdr.nextoff, "%d", 0);
330693f5 1672 memcpy (hdr.prevoff, xcoff_ardata (abfd)->memoff, XCOFFARMAG_ELEMENT_SIZE);
252b5132
RH
1673 sprintf (hdr.date, "%d", 0);
1674 sprintf (hdr.uid, "%d", 0);
1675 sprintf (hdr.gid, "%d", 0);
1676 sprintf (hdr.mode, "%d", 0);
1677 sprintf (hdr.namlen, "%d", 0);
1678
1679 /* We need spaces, not null bytes, in the header. */
1680 for (p = (char *) &hdr; p < (char *) &hdr + SIZEOF_AR_HDR; p++)
1681 if (*p == '\0')
1682 *p = ' ';
1683
2c3fc389 1684 if (bfd_bwrite (&hdr, (bfd_size_type) SIZEOF_AR_HDR, abfd)
dc810e39
AM
1685 != SIZEOF_AR_HDR
1686 || (bfd_bwrite (XCOFFARFMAG, (bfd_size_type) SXCOFFARFMAG, abfd)
1687 != SXCOFFARFMAG))
b34976b6 1688 return FALSE;
5ea1af0d 1689
dc810e39
AM
1690 H_PUT_32 (abfd, orl_count, buf);
1691 if (bfd_bwrite (buf, (bfd_size_type) 4, abfd) != 4)
b34976b6 1692 return FALSE;
252b5132 1693
252b5132 1694 i = 0;
2e470849
RS
1695 archive_iterator_begin (&iterator, abfd);
1696 while (i < orl_count && archive_iterator_next (&iterator))
1697 while (map[i].u.abfd == iterator.current.member)
1698 {
1699 H_PUT_32 (abfd, iterator.current.offset, buf);
1700 if (bfd_bwrite (buf, (bfd_size_type) 4, abfd) != 4)
1701 return FALSE;
1702 ++i;
1703 }
252b5132
RH
1704
1705 for (i = 0; i < orl_count; i++)
1706 {
1707 const char *name;
1708 size_t namlen;
1709
1710 name = *map[i].name;
1711 namlen = strlen (name);
dc810e39 1712 if (bfd_bwrite (name, (bfd_size_type) (namlen + 1), abfd) != namlen + 1)
b34976b6 1713 return FALSE;
252b5132
RH
1714 }
1715
1716 if ((stridx & 1) != 0)
1717 {
1718 char b;
1719
1720 b = '\0';
dc810e39 1721 if (bfd_bwrite (&b, (bfd_size_type) 1, abfd) != 1)
b34976b6 1722 return FALSE;
252b5132
RH
1723 }
1724
b34976b6 1725 return TRUE;
252b5132
RH
1726}
1727
330693f5 1728static char buff20[XCOFFARMAGBIG_ELEMENT_SIZE + 1];
ce9116fd
AM
1729#if BFD_HOST_64BIT_LONG
1730#define FMT20 "%-20ld"
1731#elif defined (__MSVCRT__)
1732#define FMT20 "%-20I64d"
1733#else
330693f5 1734#define FMT20 "%-20lld"
ce9116fd 1735#endif
330693f5
TR
1736#define FMT12 "%-12d"
1737#define FMT12_OCTAL "%-12o"
1738#define FMT4 "%-4d"
1739#define PRINT20(d, v) \
ce9116fd 1740 sprintf (buff20, FMT20, (bfd_uint64_t)(v)), \
330693f5
TR
1741 memcpy ((void *) (d), buff20, 20)
1742
1743#define PRINT12(d, v) \
1744 sprintf (buff20, FMT12, (int)(v)), \
cf9ab45b 1745 memcpy ((void *) (d), buff20, 12)
330693f5
TR
1746
1747#define PRINT12_OCTAL(d, v) \
1748 sprintf (buff20, FMT12_OCTAL, (unsigned int)(v)), \
1749 memcpy ((void *) (d), buff20, 12)
1750
1751#define PRINT4(d, v) \
1752 sprintf (buff20, FMT4, (int)(v)), \
cf9ab45b 1753 memcpy ((void *) (d), buff20, 4)
330693f5
TR
1754
1755#define READ20(d, v) \
1756 buff20[20] = 0, \
1757 memcpy (buff20, (d), 20), \
1dba4cb4 1758 (v) = bfd_scan_vma (buff20, (const char **) NULL, 10)
f4ffd778 1759
b34976b6 1760static bfd_boolean
417236c0 1761do_pad (bfd *abfd, unsigned int number)
eb1e0e80
NC
1762{
1763 bfd_byte b = 0;
1764
1765 /* Limit pad to <= 4096. */
1766 if (number > 4096)
b34976b6 1767 return FALSE;
eb1e0e80
NC
1768
1769 while (number--)
1770 if (bfd_bwrite (&b, (bfd_size_type) 1, abfd) != 1)
b34976b6 1771 return FALSE;
eb1e0e80 1772
b34976b6 1773 return TRUE;
eb1e0e80
NC
1774}
1775
b34976b6 1776static bfd_boolean
417236c0 1777do_copy (bfd *out_bfd, bfd *in_bfd)
eb1e0e80
NC
1778{
1779 bfd_size_type remaining;
1780 bfd_byte buffer[DEFAULT_BUFFERSIZE];
1781
1782 if (bfd_seek (in_bfd, (file_ptr) 0, SEEK_SET) != 0)
b34976b6 1783 return FALSE;
eb1e0e80
NC
1784
1785 remaining = arelt_size (in_bfd);
1786
1787 while (remaining >= DEFAULT_BUFFERSIZE)
1788 {
1789 if (bfd_bread (buffer, DEFAULT_BUFFERSIZE, in_bfd) != DEFAULT_BUFFERSIZE
1790 || bfd_bwrite (buffer, DEFAULT_BUFFERSIZE, out_bfd) != DEFAULT_BUFFERSIZE)
b34976b6 1791 return FALSE;
eb1e0e80
NC
1792
1793 remaining -= DEFAULT_BUFFERSIZE;
1794 }
1795
1796 if (remaining)
1797 {
cf9ab45b 1798 if (bfd_bread (buffer, remaining, in_bfd) != remaining
eb1e0e80 1799 || bfd_bwrite (buffer, remaining, out_bfd) != remaining)
b34976b6 1800 return FALSE;
eb1e0e80
NC
1801 }
1802
b34976b6 1803 return TRUE;
eb1e0e80
NC
1804}
1805
b34976b6 1806static bfd_boolean
417236c0 1807xcoff_write_armap_big (bfd *abfd, unsigned int elength ATTRIBUTE_UNUSED,
07d6d2b8 1808 struct orl *map, unsigned int orl_count, int stridx)
252b5132 1809{
2e470849 1810 struct archive_iterator iterator;
330693f5
TR
1811 struct xcoff_ar_file_hdr_big *fhdr;
1812 bfd_vma i, sym_32, sym_64, str_32, str_64;
2e470849 1813 const bfd_arch_info_type *arch_info;
330693f5
TR
1814 bfd *current_bfd;
1815 size_t string_length;
9dadfa79 1816 file_ptr nextoff, prevoff;
cf9ab45b 1817
330693f5
TR
1818 /* First, we look through the symbols and work out which are
1819 from 32-bit objects and which from 64-bit ones. */
1820 sym_32 = sym_64 = str_32 = str_64 = 0;
252b5132 1821
2e470849
RS
1822 i = 0;
1823 for (current_bfd = abfd->archive_head;
1824 current_bfd != NULL && i < orl_count;
1825 current_bfd = current_bfd->archive_next)
f4ffd778 1826 {
2e470849 1827 arch_info = bfd_get_arch_info (current_bfd);
330693f5
TR
1828 while (map[i].u.abfd == current_bfd)
1829 {
1830 string_length = strlen (*map[i].name) + 1;
330693f5
TR
1831 if (arch_info->bits_per_address == 64)
1832 {
1833 sym_64++;
1834 str_64 += string_length;
1835 }
1836 else
1837 {
1838 sym_32++;
1839 str_32 += string_length;
1840 }
1841 i++;
1842 }
330693f5 1843 }
5ea1af0d 1844
330693f5
TR
1845 /* A quick sanity check... */
1846 BFD_ASSERT (sym_64 + sym_32 == orl_count);
1847 /* Explicit cast to int for compiler. */
1848 BFD_ASSERT ((int)(str_64 + str_32) == stridx);
1a6df346 1849
330693f5 1850 fhdr = xcoff_ardata_big (abfd);
252b5132 1851
330693f5
TR
1852 /* xcoff_write_archive_contents_big passes nextoff in symoff. */
1853 READ20 (fhdr->memoff, prevoff);
1854 READ20 (fhdr->symoff, nextoff);
252b5132 1855
330693f5 1856 BFD_ASSERT (nextoff == bfd_tell (abfd));
5ea1af0d 1857
cf9ab45b
AM
1858 /* Write out the symbol table.
1859 Layout :
1860
330693f5 1861 standard big archive header
cf9ab45b
AM
1862 0x0000 ar_size [0x14]
1863 0x0014 ar_nxtmem [0x14]
1864 0x0028 ar_prvmem [0x14]
1865 0x003C ar_date [0x0C]
1866 0x0048 ar_uid [0x0C]
1867 0x0054 ar_gid [0x0C]
1868 0x0060 ar_mod [0x0C]
1869 0x006C ar_namelen[0x04]
1870 0x0070 ar_fmag [SXCOFFARFMAG]
1871
1872 Symbol table
1873 0x0072 num_syms [0x08], binary
1874 0x0078 offsets [0x08 * num_syms], binary
1875 0x0086 + 0x08 * num_syms names [??]
1876 ?? pad to even bytes.
330693f5
TR
1877 */
1878
cf9ab45b 1879 if (sym_32)
330693f5
TR
1880 {
1881 struct xcoff_ar_hdr_big *hdr;
f075ee0c
AM
1882 char *symbol_table;
1883 char *st;
330693f5 1884
cf9ab45b 1885 bfd_vma symbol_table_size =
330693f5
TR
1886 SIZEOF_AR_HDR_BIG
1887 + SXCOFFARFMAG
cf9ab45b
AM
1888 + 8
1889 + 8 * sym_32
330693f5
TR
1890 + str_32 + (str_32 & 1);
1891
f075ee0c 1892 symbol_table = bfd_zmalloc (symbol_table_size);
330693f5 1893 if (symbol_table == NULL)
b34976b6 1894 return FALSE;
330693f5
TR
1895
1896 hdr = (struct xcoff_ar_hdr_big *) symbol_table;
cf9ab45b 1897
330693f5 1898 PRINT20 (hdr->size, 8 + 8 * sym_32 + str_32 + (str_32 & 1));
cf9ab45b 1899
330693f5
TR
1900 if (sym_64)
1901 PRINT20 (hdr->nextoff, nextoff + symbol_table_size);
1a6df346 1902 else
330693f5
TR
1903 PRINT20 (hdr->nextoff, 0);
1904
1905 PRINT20 (hdr->prevoff, prevoff);
1906 PRINT12 (hdr->date, 0);
1907 PRINT12 (hdr->uid, 0);
1908 PRINT12 (hdr->gid, 0);
1909 PRINT12 (hdr->mode, 0);
1910 PRINT4 (hdr->namlen, 0) ;
1911
1912 st = symbol_table + SIZEOF_AR_HDR_BIG;
1913 memcpy (st, XCOFFARFMAG, SXCOFFARFMAG);
1914 st += SXCOFFARFMAG;
1915
1916 bfd_h_put_64 (abfd, sym_32, st);
1917 st += 8;
cf9ab45b 1918
330693f5 1919 /* loop over the 32 bit offsets */
330693f5 1920 i = 0;
2e470849
RS
1921 archive_iterator_begin (&iterator, abfd);
1922 while (i < orl_count && archive_iterator_next (&iterator))
330693f5 1923 {
2e470849
RS
1924 arch_info = bfd_get_arch_info (iterator.current.member);
1925 while (map[i].u.abfd == iterator.current.member)
330693f5
TR
1926 {
1927 if (arch_info->bits_per_address == 32)
1928 {
2e470849 1929 bfd_h_put_64 (abfd, iterator.current.offset, st);
330693f5
TR
1930 st += 8;
1931 }
1932 i++;
1933 }
330693f5 1934 }
1a6df346 1935
330693f5 1936 /* loop over the 32 bit symbol names */
330693f5 1937 i = 0;
2e470849
RS
1938 for (current_bfd = abfd->archive_head;
1939 current_bfd != NULL && i < orl_count;
1940 current_bfd = current_bfd->archive_next)
330693f5 1941 {
2e470849 1942 arch_info = bfd_get_arch_info (current_bfd);
330693f5
TR
1943 while (map[i].u.abfd == current_bfd)
1944 {
1945 if (arch_info->bits_per_address == 32)
1946 {
1947 string_length = sprintf (st, "%s", *map[i].name);
1948 st += string_length + 1;
1949 }
1950 i++;
1951 }
330693f5 1952 }
5ea1af0d 1953
330693f5 1954 bfd_bwrite (symbol_table, symbol_table_size, abfd);
1a6df346 1955
330693f5 1956 free (symbol_table);
5ea1af0d 1957
330693f5
TR
1958 prevoff = nextoff;
1959 nextoff = nextoff + symbol_table_size;
5ea1af0d 1960 }
cf9ab45b 1961 else
330693f5 1962 PRINT20 (fhdr->symoff, 0);
cf9ab45b
AM
1963
1964 if (sym_64)
330693f5
TR
1965 {
1966 struct xcoff_ar_hdr_big *hdr;
f075ee0c
AM
1967 char *symbol_table;
1968 char *st;
330693f5 1969
cf9ab45b 1970 bfd_vma symbol_table_size =
330693f5
TR
1971 SIZEOF_AR_HDR_BIG
1972 + SXCOFFARFMAG
cf9ab45b
AM
1973 + 8
1974 + 8 * sym_64
330693f5
TR
1975 + str_64 + (str_64 & 1);
1976
f075ee0c 1977 symbol_table = bfd_zmalloc (symbol_table_size);
330693f5 1978 if (symbol_table == NULL)
b34976b6 1979 return FALSE;
330693f5
TR
1980
1981 hdr = (struct xcoff_ar_hdr_big *) symbol_table;
1982
1983 PRINT20 (hdr->size, 8 + 8 * sym_64 + str_64 + (str_64 & 1));
1984 PRINT20 (hdr->nextoff, 0);
1985 PRINT20 (hdr->prevoff, prevoff);
1986 PRINT12 (hdr->date, 0);
1987 PRINT12 (hdr->uid, 0);
1988 PRINT12 (hdr->gid, 0);
1989 PRINT12 (hdr->mode, 0);
1990 PRINT4 (hdr->namlen, 0);
1991
1992 st = symbol_table + SIZEOF_AR_HDR_BIG;
1993 memcpy (st, XCOFFARFMAG, SXCOFFARFMAG);
1994 st += SXCOFFARFMAG;
1995
1996 bfd_h_put_64 (abfd, sym_64, st);
1997 st += 8;
cf9ab45b 1998
330693f5 1999 /* loop over the 64 bit offsets */
330693f5 2000 i = 0;
2e470849
RS
2001 archive_iterator_begin (&iterator, abfd);
2002 while (i < orl_count && archive_iterator_next (&iterator))
1a6df346 2003 {
2e470849
RS
2004 arch_info = bfd_get_arch_info (iterator.current.member);
2005 while (map[i].u.abfd == iterator.current.member)
330693f5
TR
2006 {
2007 if (arch_info->bits_per_address == 64)
2008 {
2e470849 2009 bfd_h_put_64 (abfd, iterator.current.offset, st);
330693f5
TR
2010 st += 8;
2011 }
2012 i++;
2013 }
1a6df346 2014 }
330693f5
TR
2015
2016 /* loop over the 64 bit symbol names */
330693f5 2017 i = 0;
2e470849
RS
2018 for (current_bfd = abfd->archive_head;
2019 current_bfd != NULL && i < orl_count;
2020 current_bfd = current_bfd->archive_next)
1a6df346 2021 {
2e470849 2022 arch_info = bfd_get_arch_info (current_bfd);
330693f5
TR
2023 while (map[i].u.abfd == current_bfd)
2024 {
2025 if (arch_info->bits_per_address == 64)
2026 {
2027 string_length = sprintf (st, "%s", *map[i].name);
2028 st += string_length + 1;
2029 }
2030 i++;
2031 }
1a6df346 2032 }
1a6df346 2033
330693f5
TR
2034 bfd_bwrite (symbol_table, symbol_table_size, abfd);
2035
2036 free (symbol_table);
dc810e39 2037
330693f5
TR
2038 PRINT20 (fhdr->symoff64, nextoff);
2039 }
cf9ab45b 2040 else
330693f5 2041 PRINT20 (fhdr->symoff64, 0);
cf9ab45b 2042
b34976b6 2043 return TRUE;
1a6df346
GK
2044}
2045
b34976b6 2046bfd_boolean
417236c0 2047_bfd_xcoff_write_armap (bfd *abfd, unsigned int elength ATTRIBUTE_UNUSED,
07d6d2b8 2048 struct orl *map, unsigned int orl_count, int stridx)
5ea1af0d
GK
2049{
2050 if (! xcoff_big_format_p (abfd))
2051 return xcoff_write_armap_old (abfd, elength, map, orl_count, stridx);
2052 else
2053 return xcoff_write_armap_big (abfd, elength, map, orl_count, stridx);
2054}
2055
2056/* Write out an XCOFF archive. We always write an entire archive,
2057 rather than fussing with the freelist and so forth. */
2058
b34976b6 2059static bfd_boolean
417236c0 2060xcoff_write_archive_contents_old (bfd *abfd)
5ea1af0d 2061{
2e470849 2062 struct archive_iterator iterator;
5ea1af0d 2063 struct xcoff_ar_file_hdr fhdr;
dc810e39
AM
2064 bfd_size_type count;
2065 bfd_size_type total_namlen;
5ea1af0d 2066 file_ptr *offsets;
b34976b6
AM
2067 bfd_boolean makemap;
2068 bfd_boolean hasobjects;
9dadfa79 2069 file_ptr prevoff, nextoff;
5ea1af0d 2070 bfd *sub;
dc810e39 2071 size_t i;
5ea1af0d
GK
2072 struct xcoff_ar_hdr ahdr;
2073 bfd_size_type size;
2074 char *p;
330693f5 2075 char decbuf[XCOFFARMAG_ELEMENT_SIZE + 1];
5ea1af0d
GK
2076
2077 memset (&fhdr, 0, sizeof fhdr);
8278e7ce 2078 (void) memcpy (fhdr.magic, XCOFFARMAG, SXCOFFARMAG);
5ea1af0d
GK
2079 sprintf (fhdr.firstmemoff, "%d", SIZEOF_AR_FILE_HDR);
2080 sprintf (fhdr.freeoff, "%d", 0);
2081
2082 count = 0;
2083 total_namlen = 0;
cc481421 2084 for (sub = abfd->archive_head; sub != NULL; sub = sub->archive_next)
5ea1af0d
GK
2085 {
2086 ++count;
2087 total_namlen += strlen (normalize_filename (sub)) + 1;
2e470849 2088 if (sub->arelt_data == NULL)
252b5132 2089 {
06e7acd7 2090 sub->arelt_data = bfd_zmalloc (sizeof (struct areltdata));
2e470849
RS
2091 if (sub->arelt_data == NULL)
2092 return FALSE;
252b5132 2093 }
2e470849 2094 if (arch_xhdr (sub) == NULL)
252b5132 2095 {
2e470849 2096 struct xcoff_ar_hdr *ahdrp;
252b5132
RH
2097 struct stat s;
2098
252b5132
RH
2099 if (stat (bfd_get_filename (sub), &s) != 0)
2100 {
2101 bfd_set_error (bfd_error_system_call);
b34976b6 2102 return FALSE;
252b5132 2103 }
c8001886
AM
2104 if ((abfd->flags & BFD_DETERMINISTIC_OUTPUT) != 0)
2105 {
2106 s.st_mtime = 0;
2107 s.st_uid = 0;
2108 s.st_gid = 0;
2109 s.st_mode = 0644;
2110 }
252b5132 2111
2e470849
RS
2112 ahdrp = bfd_zalloc (sub, sizeof (*ahdrp));
2113 if (ahdrp == NULL)
2114 return FALSE;
2115
252b5132
RH
2116 sprintf (ahdrp->size, "%ld", (long) s.st_size);
2117 sprintf (ahdrp->date, "%ld", (long) s.st_mtime);
2118 sprintf (ahdrp->uid, "%ld", (long) s.st_uid);
2119 sprintf (ahdrp->gid, "%ld", (long) s.st_gid);
2120 sprintf (ahdrp->mode, "%o", (unsigned int) s.st_mode);
2121
2e470849 2122 arch_eltdata (sub)->arch_header = (char *) ahdrp;
252b5132
RH
2123 arch_eltdata (sub)->parsed_size = s.st_size;
2124 }
2e470849
RS
2125 }
2126 offsets = (file_ptr *) bfd_alloc (abfd, count * sizeof (file_ptr));
2127 if (offsets == NULL)
2128 return FALSE;
252b5132 2129
2e470849
RS
2130 if (bfd_seek (abfd, (file_ptr) SIZEOF_AR_FILE_HDR, SEEK_SET) != 0)
2131 return FALSE;
252b5132 2132
2e470849
RS
2133 makemap = bfd_has_map (abfd);
2134 hasobjects = FALSE;
2135 prevoff = 0;
2136 for (archive_iterator_begin (&iterator, abfd), i = 0;
2137 archive_iterator_next (&iterator);
2138 i++)
2139 {
2140 bfd_size_type namlen;
2141 struct xcoff_ar_hdr *ahdrp;
252b5132 2142
2e470849
RS
2143 if (makemap && ! hasobjects)
2144 {
2145 if (bfd_check_format (iterator.current.member, bfd_object))
2146 hasobjects = TRUE;
2147 }
252b5132 2148
2e470849
RS
2149 ahdrp = arch_xhdr (iterator.current.member);
2150 sprintf (ahdrp->prevoff, "%ld", (long) prevoff);
2151 sprintf (ahdrp->namlen, "%ld", (long) iterator.current.namlen);
2152 sprintf (ahdrp->nextoff, "%ld", (long) iterator.next.offset);
252b5132
RH
2153
2154 /* We need spaces, not null bytes, in the header. */
2155 for (p = (char *) ahdrp; p < (char *) ahdrp + SIZEOF_AR_HDR; p++)
2156 if (*p == '\0')
2157 *p = ' ';
2158
2e470849 2159 if (!do_pad (abfd, iterator.current.leading_padding))
b34976b6 2160 return FALSE;
252b5132 2161
2e470849
RS
2162 BFD_ASSERT (iterator.current.offset == bfd_tell (abfd));
2163 namlen = iterator.current.padded_namlen;
2164 if (bfd_bwrite (ahdrp, SIZEOF_AR_HDR, abfd) != SIZEOF_AR_HDR
2165 || bfd_bwrite (iterator.current.name, namlen, abfd) != namlen
2166 || bfd_bwrite (XCOFFARFMAG, SXCOFFARFMAG, abfd) != SXCOFFARFMAG
2167 || bfd_seek (iterator.current.member, 0, SEEK_SET) != 0
2168 || !do_copy (abfd, iterator.current.member)
2169 || !do_pad (abfd, iterator.current.trailing_padding))
b34976b6 2170 return FALSE;
cf9ab45b 2171
2e470849
RS
2172 offsets[i] = iterator.current.offset;
2173 prevoff = iterator.current.offset;
252b5132
RH
2174 }
2175
2176 sprintf (fhdr.lastmemoff, "%ld", (long) prevoff);
2177
2178 /* Write out the member table. */
2179
2e470849 2180 nextoff = iterator.next.offset;
252b5132
RH
2181 BFD_ASSERT (nextoff == bfd_tell (abfd));
2182 sprintf (fhdr.memoff, "%ld", (long) nextoff);
2183
2184 memset (&ahdr, 0, sizeof ahdr);
cf9ab45b
AM
2185 sprintf (ahdr.size, "%ld", (long) (XCOFFARMAG_ELEMENT_SIZE
2186 + count * XCOFFARMAG_ELEMENT_SIZE
2187 + total_namlen));
252b5132
RH
2188 sprintf (ahdr.prevoff, "%ld", (long) prevoff);
2189 sprintf (ahdr.date, "%d", 0);
2190 sprintf (ahdr.uid, "%d", 0);
2191 sprintf (ahdr.gid, "%d", 0);
2192 sprintf (ahdr.mode, "%d", 0);
2193 sprintf (ahdr.namlen, "%d", 0);
2194
2195 size = (SIZEOF_AR_HDR
330693f5
TR
2196 + XCOFFARMAG_ELEMENT_SIZE
2197 + count * XCOFFARMAG_ELEMENT_SIZE
252b5132
RH
2198 + total_namlen
2199 + SXCOFFARFMAG);
2200
2201 prevoff = nextoff;
2202 nextoff += size + (size & 1);
2203
2204 if (makemap && hasobjects)
2205 sprintf (ahdr.nextoff, "%ld", (long) nextoff);
2206 else
2207 sprintf (ahdr.nextoff, "%d", 0);
2208
2209 /* We need spaces, not null bytes, in the header. */
2210 for (p = (char *) &ahdr; p < (char *) &ahdr + SIZEOF_AR_HDR; p++)
2211 if (*p == '\0')
2212 *p = ' ';
2213
2c3fc389 2214 if ((bfd_bwrite (&ahdr, (bfd_size_type) SIZEOF_AR_HDR, abfd)
dc810e39 2215 != SIZEOF_AR_HDR)
2c3fc389 2216 || (bfd_bwrite (XCOFFARFMAG, (bfd_size_type) SXCOFFARFMAG, abfd)
252b5132 2217 != SXCOFFARFMAG))
b34976b6 2218 return FALSE;
252b5132
RH
2219
2220 sprintf (decbuf, "%-12ld", (long) count);
2c3fc389 2221 if (bfd_bwrite (decbuf, (bfd_size_type) XCOFFARMAG_ELEMENT_SIZE, abfd)
330693f5 2222 != XCOFFARMAG_ELEMENT_SIZE)
b34976b6 2223 return FALSE;
dc810e39 2224 for (i = 0; i < (size_t) count; i++)
252b5132
RH
2225 {
2226 sprintf (decbuf, "%-12ld", (long) offsets[i]);
2c3fc389 2227 if (bfd_bwrite (decbuf, (bfd_size_type) XCOFFARMAG_ELEMENT_SIZE,
330693f5 2228 abfd) != XCOFFARMAG_ELEMENT_SIZE)
b34976b6 2229 return FALSE;
252b5132 2230 }
cc481421 2231 for (sub = abfd->archive_head; sub != NULL; sub = sub->archive_next)
252b5132
RH
2232 {
2233 const char *name;
dc810e39 2234 bfd_size_type namlen;
252b5132
RH
2235
2236 name = normalize_filename (sub);
2237 namlen = strlen (name);
2c3fc389 2238 if (bfd_bwrite (name, namlen + 1, abfd) != namlen + 1)
b34976b6 2239 return FALSE;
252b5132 2240 }
252b5132 2241
eb1e0e80 2242 if (! do_pad (abfd, size & 1))
b34976b6 2243 return FALSE;
252b5132
RH
2244
2245 /* Write out the armap, if appropriate. */
252b5132
RH
2246 if (! makemap || ! hasobjects)
2247 sprintf (fhdr.symoff, "%d", 0);
2248 else
2249 {
2250 BFD_ASSERT (nextoff == bfd_tell (abfd));
2251 sprintf (fhdr.symoff, "%ld", (long) nextoff);
2c3fc389 2252 bfd_ardata (abfd)->tdata = &fhdr;
252b5132 2253 if (! _bfd_compute_and_write_armap (abfd, 0))
b34976b6 2254 return FALSE;
252b5132
RH
2255 }
2256
2257 /* Write out the archive file header. */
2258
2259 /* We need spaces, not null bytes, in the header. */
2260 for (p = (char *) &fhdr; p < (char *) &fhdr + SIZEOF_AR_FILE_HDR; p++)
2261 if (*p == '\0')
2262 *p = ' ';
2263
2264 if (bfd_seek (abfd, (file_ptr) 0, SEEK_SET) != 0
2c3fc389 2265 || (bfd_bwrite (&fhdr, (bfd_size_type) SIZEOF_AR_FILE_HDR, abfd)
dc810e39 2266 != SIZEOF_AR_FILE_HDR))
b34976b6 2267 return FALSE;
252b5132 2268
b34976b6 2269 return TRUE;
252b5132 2270}
5ea1af0d 2271
b34976b6 2272static bfd_boolean
417236c0 2273xcoff_write_archive_contents_big (bfd *abfd)
5ea1af0d
GK
2274{
2275 struct xcoff_ar_file_hdr_big fhdr;
dc810e39
AM
2276 bfd_size_type count;
2277 bfd_size_type total_namlen;
5ea1af0d 2278 file_ptr *offsets;
b34976b6
AM
2279 bfd_boolean makemap;
2280 bfd_boolean hasobjects;
9dadfa79 2281 file_ptr prevoff, nextoff;
330693f5 2282 bfd *current_bfd;
dc810e39 2283 size_t i;
2e470849 2284 struct xcoff_ar_hdr_big *hdr;
5ea1af0d 2285 bfd_size_type size;
f075ee0c 2286 char *member_table, *mt;
330693f5 2287 bfd_vma member_table_size;
2e470849 2288 struct archive_iterator iterator;
5ea1af0d 2289
eb1e0e80 2290 memset (&fhdr, 0, SIZEOF_AR_FILE_HDR_BIG);
330693f5 2291 memcpy (fhdr.magic, XCOFFARMAGBIG, SXCOFFARMAG);
5ea1af0d 2292
eb1e0e80 2293 if (bfd_seek (abfd, (file_ptr) SIZEOF_AR_FILE_HDR_BIG, SEEK_SET) != 0)
b34976b6 2294 return FALSE;
cf9ab45b 2295
eb1e0e80
NC
2296 /* Calculate count and total_namlen. */
2297 makemap = bfd_has_map (abfd);
b34976b6 2298 hasobjects = FALSE;
cf9ab45b
AM
2299 for (current_bfd = abfd->archive_head, count = 0, total_namlen = 0;
2300 current_bfd != NULL;
cc481421 2301 current_bfd = current_bfd->archive_next, count++)
eb1e0e80
NC
2302 {
2303 total_namlen += strlen (normalize_filename (current_bfd)) + 1;
2304
2305 if (makemap
2306 && ! hasobjects
2307 && bfd_check_format (current_bfd, bfd_object))
b34976b6 2308 hasobjects = TRUE;
330693f5 2309
2e470849
RS
2310 if (current_bfd->arelt_data == NULL)
2311 {
2312 size = sizeof (struct areltdata);
06e7acd7 2313 current_bfd->arelt_data = bfd_zmalloc (size);
2e470849
RS
2314 if (current_bfd->arelt_data == NULL)
2315 return FALSE;
2316 }
5ea1af0d 2317
2e470849 2318 if (arch_xhdr_big (current_bfd) == NULL)
5ea1af0d 2319 {
2e470849 2320 struct xcoff_ar_hdr_big *ahdrp;
5ea1af0d
GK
2321 struct stat s;
2322
5ea1af0d 2323 /* XXX This should actually be a call to stat64 (at least on
cf9ab45b 2324 32-bit machines).
330693f5
TR
2325 XXX This call will fail if the original object is not found. */
2326 if (stat (bfd_get_filename (current_bfd), &s) != 0)
5ea1af0d
GK
2327 {
2328 bfd_set_error (bfd_error_system_call);
b34976b6 2329 return FALSE;
5ea1af0d 2330 }
c8001886
AM
2331 if ((abfd->flags & BFD_DETERMINISTIC_OUTPUT) != 0)
2332 {
2333 s.st_mtime = 0;
2334 s.st_uid = 0;
2335 s.st_gid = 0;
2336 s.st_mode = 0644;
2337 }
5ea1af0d 2338
2e470849
RS
2339 ahdrp = bfd_zalloc (current_bfd, sizeof (*ahdrp));
2340 if (ahdrp == NULL)
2341 return FALSE;
2342
330693f5
TR
2343 PRINT20 (ahdrp->size, s.st_size);
2344 PRINT12 (ahdrp->date, s.st_mtime);
2345 PRINT12 (ahdrp->uid, s.st_uid);
2346 PRINT12 (ahdrp->gid, s.st_gid);
2347 PRINT12_OCTAL (ahdrp->mode, s.st_mode);
5ea1af0d 2348
2e470849 2349 arch_eltdata (current_bfd)->arch_header = (char *) ahdrp;
330693f5 2350 arch_eltdata (current_bfd)->parsed_size = s.st_size;
5ea1af0d 2351 }
2e470849 2352 }
5ea1af0d 2353
2e470849
RS
2354 offsets = NULL;
2355 if (count)
2356 {
2357 offsets = (file_ptr *) bfd_malloc (count * sizeof (file_ptr));
2358 if (offsets == NULL)
b34976b6 2359 return FALSE;
2e470849 2360 }
eb1e0e80 2361
2e470849
RS
2362 prevoff = 0;
2363 for (archive_iterator_begin (&iterator, abfd), i = 0;
2364 archive_iterator_next (&iterator);
2365 i++)
2366 {
2367 bfd_size_type namlen;
2368 struct xcoff_ar_hdr_big *ahdrp;
5ea1af0d 2369
2e470849
RS
2370 ahdrp = arch_xhdr_big (iterator.current.member);
2371 PRINT20 (ahdrp->prevoff, prevoff);
2372 PRINT4 (ahdrp->namlen, iterator.current.namlen);
2373 PRINT20 (ahdrp->nextoff, iterator.next.offset);
5ea1af0d 2374
2e470849 2375 if (!do_pad (abfd, iterator.current.leading_padding))
2915c55b
JK
2376 {
2377 free (offsets);
2378 return FALSE;
2379 }
5ea1af0d 2380
2e470849
RS
2381 BFD_ASSERT (iterator.current.offset == bfd_tell (abfd));
2382 namlen = iterator.current.padded_namlen;
2383 if (bfd_bwrite (ahdrp, SIZEOF_AR_HDR_BIG, abfd) != SIZEOF_AR_HDR_BIG
2384 || bfd_bwrite (iterator.current.name, namlen, abfd) != namlen
2385 || bfd_bwrite (XCOFFARFMAG, SXCOFFARFMAG, abfd) != SXCOFFARFMAG
2386 || bfd_seek (iterator.current.member, 0, SEEK_SET) != 0
2387 || !do_copy (abfd, iterator.current.member)
2388 || !do_pad (abfd, iterator.current.trailing_padding))
2915c55b
JK
2389 {
2390 free (offsets);
2391 return FALSE;
2392 }
cf9ab45b 2393
2e470849
RS
2394 offsets[i] = iterator.current.offset;
2395 prevoff = iterator.current.offset;
5ea1af0d
GK
2396 }
2397
eb1e0e80
NC
2398 if (count)
2399 {
2400 PRINT20 (fhdr.firstmemoff, offsets[0]);
2401 PRINT20 (fhdr.lastmemoff, prevoff);
2402 }
5ea1af0d 2403
cf9ab45b
AM
2404 /* Write out the member table.
2405 Layout :
5ea1af0d 2406
330693f5 2407 standard big archive header
cf9ab45b
AM
2408 0x0000 ar_size [0x14]
2409 0x0014 ar_nxtmem [0x14]
2410 0x0028 ar_prvmem [0x14]
2411 0x003C ar_date [0x0C]
2412 0x0048 ar_uid [0x0C]
2413 0x0054 ar_gid [0x0C]
2414 0x0060 ar_mod [0x0C]
2415 0x006C ar_namelen[0x04]
2416 0x0070 ar_fmag [0x02]
2417
2418 Member table
2419 0x0072 count [0x14]
2420 0x0086 offsets [0x14 * counts]
2421 0x0086 + 0x14 * counts names [??]
2422 ?? pad to even bytes.
330693f5 2423 */
5ea1af0d 2424
2e470849 2425 nextoff = iterator.next.offset;
330693f5 2426 BFD_ASSERT (nextoff == bfd_tell (abfd));
5ea1af0d 2427
330693f5
TR
2428 member_table_size = (SIZEOF_AR_HDR_BIG
2429 + SXCOFFARFMAG
2430 + XCOFFARMAGBIG_ELEMENT_SIZE
2431 + count * XCOFFARMAGBIG_ELEMENT_SIZE
2432 + total_namlen);
5ea1af0d 2433
330693f5 2434 member_table_size += member_table_size & 1;
f075ee0c 2435 member_table = bfd_zmalloc (member_table_size);
330693f5 2436 if (member_table == NULL)
2915c55b
JK
2437 {
2438 free (offsets);
2439 return FALSE;
2440 }
5ea1af0d 2441
330693f5 2442 hdr = (struct xcoff_ar_hdr_big *) member_table;
5ea1af0d 2443
cf9ab45b
AM
2444 PRINT20 (hdr->size, (XCOFFARMAGBIG_ELEMENT_SIZE
2445 + count * XCOFFARMAGBIG_ELEMENT_SIZE
2446 + total_namlen + (total_namlen & 1)));
2447 if (makemap && hasobjects)
330693f5
TR
2448 PRINT20 (hdr->nextoff, nextoff + member_table_size);
2449 else
2450 PRINT20 (hdr->nextoff, 0);
2451 PRINT20 (hdr->prevoff, prevoff);
2452 PRINT12 (hdr->date, 0);
2453 PRINT12 (hdr->uid, 0);
2454 PRINT12 (hdr->gid, 0);
2455 PRINT12 (hdr->mode, 0);
2456 PRINT4 (hdr->namlen, 0);
cf9ab45b 2457
330693f5
TR
2458 mt = member_table + SIZEOF_AR_HDR_BIG;
2459 memcpy (mt, XCOFFARFMAG, SXCOFFARFMAG);
2460 mt += SXCOFFARFMAG;
5ea1af0d 2461
330693f5
TR
2462 PRINT20 (mt, count);
2463 mt += XCOFFARMAGBIG_ELEMENT_SIZE;
dc810e39 2464 for (i = 0; i < (size_t) count; i++)
5ea1af0d 2465 {
330693f5
TR
2466 PRINT20 (mt, offsets[i]);
2467 mt += XCOFFARMAGBIG_ELEMENT_SIZE;
5ea1af0d 2468 }
330693f5 2469
cf9ab45b 2470 if (count)
330693f5
TR
2471 {
2472 free (offsets);
2473 offsets = NULL;
2474 }
2475
cc481421
AM
2476 for (current_bfd = abfd->archive_head;
2477 current_bfd != NULL;
2478 current_bfd = current_bfd->archive_next)
5ea1af0d
GK
2479 {
2480 const char *name;
2481 size_t namlen;
2482
330693f5 2483 name = normalize_filename (current_bfd);
cf9ab45b 2484 namlen = sprintf (mt, "%s", name);
330693f5 2485 mt += namlen + 1;
5ea1af0d 2486 }
cf9ab45b 2487
330693f5 2488 if (bfd_bwrite (member_table, member_table_size, abfd) != member_table_size)
b34976b6 2489 return FALSE;
5ea1af0d 2490
330693f5 2491 free (member_table);
330693f5
TR
2492
2493 PRINT20 (fhdr.memoff, nextoff);
2494
2495 prevoff = nextoff;
2496 nextoff += member_table_size;
5ea1af0d
GK
2497
2498 /* Write out the armap, if appropriate. */
2499
cf9ab45b 2500 if (! makemap || ! hasobjects)
330693f5 2501 PRINT20 (fhdr.symoff, 0);
5ea1af0d
GK
2502 else
2503 {
2504 BFD_ASSERT (nextoff == bfd_tell (abfd));
330693f5
TR
2505
2506 /* Save nextoff in fhdr.symoff so the armap routine can use it. */
2507 PRINT20 (fhdr.symoff, nextoff);
cf9ab45b 2508
2c3fc389 2509 bfd_ardata (abfd)->tdata = &fhdr;
5ea1af0d 2510 if (! _bfd_compute_and_write_armap (abfd, 0))
b34976b6 2511 return FALSE;
5ea1af0d
GK
2512 }
2513
2514 /* Write out the archive file header. */
2515
5ea1af0d 2516 if (bfd_seek (abfd, (file_ptr) 0, SEEK_SET) != 0
2c3fc389 2517 || (bfd_bwrite (&fhdr, (bfd_size_type) SIZEOF_AR_FILE_HDR_BIG,
330693f5 2518 abfd) != SIZEOF_AR_FILE_HDR_BIG))
b34976b6 2519 return FALSE;
cf9ab45b 2520
b34976b6 2521 return TRUE;
5ea1af0d
GK
2522}
2523
b34976b6 2524bfd_boolean
417236c0 2525_bfd_xcoff_write_archive_contents (bfd *abfd)
5ea1af0d
GK
2526{
2527 if (! xcoff_big_format_p (abfd))
2528 return xcoff_write_archive_contents_old (abfd);
2529 else
2530 return xcoff_write_archive_contents_big (abfd);
2531}
252b5132
RH
2532\f
2533/* We can't use the usual coff_sizeof_headers routine, because AIX
2534 always uses an a.out header. */
2535
7f6d05e8 2536int
a6b96beb
AM
2537_bfd_xcoff_sizeof_headers (bfd *abfd,
2538 struct bfd_link_info *info ATTRIBUTE_UNUSED)
252b5132
RH
2539{
2540 int size;
2541
2542 size = FILHSZ;
2543 if (xcoff_data (abfd)->full_aouthdr)
2544 size += AOUTSZ;
2545 else
2546 size += SMALL_AOUTSZ;
2547 size += abfd->section_count * SCNHSZ;
2eea2440
TG
2548
2549 if (info->strip != strip_all)
2550 {
2551 /* There can be additional sections just for dealing with overflow in
2552 reloc and lineno counts. But the numbers of relocs and lineno aren't
2553 known when bfd_sizeof_headers is called, so we compute them by
2554 summing the numbers from input sections. */
2555 struct nbr_reloc_lineno
2556 {
2557 unsigned int reloc_count;
2558 unsigned int lineno_count;
2559 };
2560 struct nbr_reloc_lineno *n_rl;
2561 bfd *sub;
7292b3ac 2562 unsigned int max_index;
2eea2440
TG
2563 asection *s;
2564
2565 /* Although the number of sections is known, the maximum value of
2566 section->index isn't (because some sections may have been removed).
2567 Don't try to renumber sections, just compute the upper bound. */
2568 max_index = 0;
2569 for (s = abfd->sections; s != NULL; s = s->next)
2570 if (s->index > max_index)
2571 max_index = s->index;
2572
2573 /* Allocate the per section counters. It could be possible to use a
2574 preallocated array as the number of sections is limited on XCOFF,
2575 but this creates a maintainance issue. */
2576 n_rl = bfd_zmalloc ((max_index + 1) * sizeof (*n_rl));
2577 if (n_rl == NULL)
2578 return -1;
2579
2580 /* Sum. */
c72f2fb2 2581 for (sub = info->input_bfds; sub != NULL; sub = sub->link.next)
2eea2440
TG
2582 for (s = sub->sections; s != NULL; s = s->next)
2583 {
2584 struct nbr_reloc_lineno *e = &n_rl[s->output_section->index];
2585 e->reloc_count += s->reloc_count;
2586 e->lineno_count += s->lineno_count;
2587 }
2588
2589 /* Add the size of a section for each section with an overflow. */
2590 for (s = abfd->sections; s != NULL; s = s->next)
2591 {
2592 struct nbr_reloc_lineno *e = &n_rl[s->index];
2593
2594 if (e->reloc_count >= 0xffff
2595 || (e->lineno_count >= 0xffff && info->strip != strip_debugger))
2596 size += SCNHSZ;
2597 }
2598
2599 free (n_rl);
2600 }
2601
252b5132
RH
2602 return size;
2603}
beb1bf64
TR
2604\f
2605/* Routines to swap information in the XCOFF .loader section. If we
2606 ever need to write an XCOFF loader, this stuff will need to be
2607 moved to another file shared by the linker (which XCOFF calls the
2608 ``binder'') and the loader. */
2609
2610/* Swap in the ldhdr structure. */
2611
2612static void
2c3fc389 2613xcoff_swap_ldhdr_in (bfd *abfd, const void * s, struct internal_ldhdr *dst)
beb1bf64 2614{
814fa6ab
AM
2615 const struct external_ldhdr *src = (const struct external_ldhdr *) s;
2616
beb1bf64
TR
2617 dst->l_version = bfd_get_32 (abfd, src->l_version);
2618 dst->l_nsyms = bfd_get_32 (abfd, src->l_nsyms);
2619 dst->l_nreloc = bfd_get_32 (abfd, src->l_nreloc);
2620 dst->l_istlen = bfd_get_32 (abfd, src->l_istlen);
2621 dst->l_nimpid = bfd_get_32 (abfd, src->l_nimpid);
2622 dst->l_impoff = bfd_get_32 (abfd, src->l_impoff);
2623 dst->l_stlen = bfd_get_32 (abfd, src->l_stlen);
2624 dst->l_stoff = bfd_get_32 (abfd, src->l_stoff);
2625}
2626
2627/* Swap out the ldhdr structure. */
2628
2629static void
2c3fc389 2630xcoff_swap_ldhdr_out (bfd *abfd, const struct internal_ldhdr *src, void * d)
beb1bf64 2631{
814fa6ab
AM
2632 struct external_ldhdr *dst = (struct external_ldhdr *) d;
2633
dc810e39 2634 bfd_put_32 (abfd, (bfd_vma) src->l_version, dst->l_version);
beb1bf64
TR
2635 bfd_put_32 (abfd, src->l_nsyms, dst->l_nsyms);
2636 bfd_put_32 (abfd, src->l_nreloc, dst->l_nreloc);
2637 bfd_put_32 (abfd, src->l_istlen, dst->l_istlen);
2638 bfd_put_32 (abfd, src->l_nimpid, dst->l_nimpid);
2639 bfd_put_32 (abfd, src->l_impoff, dst->l_impoff);
2640 bfd_put_32 (abfd, src->l_stlen, dst->l_stlen);
2641 bfd_put_32 (abfd, src->l_stoff, dst->l_stoff);
2642}
2643
2644/* Swap in the ldsym structure. */
2645
2646static void
2c3fc389 2647xcoff_swap_ldsym_in (bfd *abfd, const void * s, struct internal_ldsym *dst)
beb1bf64 2648{
814fa6ab
AM
2649 const struct external_ldsym *src = (const struct external_ldsym *) s;
2650
beb1bf64
TR
2651 if (bfd_get_32 (abfd, src->_l._l_l._l_zeroes) != 0) {
2652 memcpy (dst->_l._l_name, src->_l._l_name, SYMNMLEN);
2653 } else {
2654 dst->_l._l_l._l_zeroes = 0;
2655 dst->_l._l_l._l_offset = bfd_get_32 (abfd, src->_l._l_l._l_offset);
2656 }
2657 dst->l_value = bfd_get_32 (abfd, src->l_value);
2658 dst->l_scnum = bfd_get_16 (abfd, src->l_scnum);
2659 dst->l_smtype = bfd_get_8 (abfd, src->l_smtype);
2660 dst->l_smclas = bfd_get_8 (abfd, src->l_smclas);
2661 dst->l_ifile = bfd_get_32 (abfd, src->l_ifile);
2662 dst->l_parm = bfd_get_32 (abfd, src->l_parm);
2663}
2664
2665/* Swap out the ldsym structure. */
2666
2667static void
2c3fc389 2668xcoff_swap_ldsym_out (bfd *abfd, const struct internal_ldsym *src, void * d)
beb1bf64 2669{
814fa6ab 2670 struct external_ldsym *dst = (struct external_ldsym *) d;
beb1bf64
TR
2671
2672 if (src->_l._l_l._l_zeroes != 0)
2673 memcpy (dst->_l._l_name, src->_l._l_name, SYMNMLEN);
2674 else
2675 {
dc810e39
AM
2676 bfd_put_32 (abfd, (bfd_vma) 0, dst->_l._l_l._l_zeroes);
2677 bfd_put_32 (abfd, (bfd_vma) src->_l._l_l._l_offset,
2678 dst->_l._l_l._l_offset);
beb1bf64
TR
2679 }
2680 bfd_put_32 (abfd, src->l_value, dst->l_value);
dc810e39 2681 bfd_put_16 (abfd, (bfd_vma) src->l_scnum, dst->l_scnum);
beb1bf64
TR
2682 bfd_put_8 (abfd, src->l_smtype, dst->l_smtype);
2683 bfd_put_8 (abfd, src->l_smclas, dst->l_smclas);
2684 bfd_put_32 (abfd, src->l_ifile, dst->l_ifile);
2685 bfd_put_32 (abfd, src->l_parm, dst->l_parm);
2686}
2687
59862849 2688static void
2c3fc389 2689xcoff_swap_reloc_in (bfd *abfd, void * s, void * d)
59862849
TR
2690{
2691 struct external_reloc *src = (struct external_reloc *) s;
2692 struct internal_reloc *dst = (struct internal_reloc *) d;
2693
2694 memset (dst, 0, sizeof (struct internal_reloc));
2695
2696 dst->r_vaddr = bfd_get_32 (abfd, src->r_vaddr);
2697 dst->r_symndx = bfd_get_32 (abfd, src->r_symndx);
2698 dst->r_size = bfd_get_8 (abfd, src->r_size);
2699 dst->r_type = bfd_get_8 (abfd, src->r_type);
2700}
2701
2702static unsigned int
2c3fc389 2703xcoff_swap_reloc_out (bfd *abfd, void * s, void * d)
59862849
TR
2704{
2705 struct internal_reloc *src = (struct internal_reloc *) s;
2706 struct external_reloc *dst = (struct external_reloc *) d;
2707
2708 bfd_put_32 (abfd, src->r_vaddr, dst->r_vaddr);
2709 bfd_put_32 (abfd, src->r_symndx, dst->r_symndx);
2710 bfd_put_8 (abfd, src->r_type, dst->r_type);
2711 bfd_put_8 (abfd, src->r_size, dst->r_size);
2712
2713 return bfd_coff_relsz (abfd);
2714}
2715
beb1bf64
TR
2716/* Swap in the ldrel structure. */
2717
2718static void
2c3fc389 2719xcoff_swap_ldrel_in (bfd *abfd, const void * s, struct internal_ldrel *dst)
beb1bf64 2720{
814fa6ab
AM
2721 const struct external_ldrel *src = (const struct external_ldrel *) s;
2722
beb1bf64
TR
2723 dst->l_vaddr = bfd_get_32 (abfd, src->l_vaddr);
2724 dst->l_symndx = bfd_get_32 (abfd, src->l_symndx);
2725 dst->l_rtype = bfd_get_16 (abfd, src->l_rtype);
2726 dst->l_rsecnm = bfd_get_16 (abfd, src->l_rsecnm);
2727}
2728
2729/* Swap out the ldrel structure. */
2730
2731static void
2c3fc389 2732xcoff_swap_ldrel_out (bfd *abfd, const struct internal_ldrel *src, void * d)
beb1bf64 2733{
814fa6ab
AM
2734 struct external_ldrel *dst = (struct external_ldrel *) d;
2735
beb1bf64
TR
2736 bfd_put_32 (abfd, src->l_vaddr, dst->l_vaddr);
2737 bfd_put_32 (abfd, src->l_symndx, dst->l_symndx);
dc810e39
AM
2738 bfd_put_16 (abfd, (bfd_vma) src->l_rtype, dst->l_rtype);
2739 bfd_put_16 (abfd, (bfd_vma) src->l_rsecnm, dst->l_rsecnm);
beb1bf64
TR
2740}
2741\f
2742
b34976b6 2743bfd_boolean
417236c0 2744xcoff_reloc_type_noop (bfd *input_bfd ATTRIBUTE_UNUSED,
07d6d2b8
AM
2745 asection *input_section ATTRIBUTE_UNUSED,
2746 bfd *output_bfd ATTRIBUTE_UNUSED,
2747 struct internal_reloc *rel ATTRIBUTE_UNUSED,
2748 struct internal_syment *sym ATTRIBUTE_UNUSED,
2749 struct reloc_howto_struct *howto ATTRIBUTE_UNUSED,
2750 bfd_vma val ATTRIBUTE_UNUSED,
2751 bfd_vma addend ATTRIBUTE_UNUSED,
2752 bfd_vma *relocation ATTRIBUTE_UNUSED,
2753 bfd_byte *contents ATTRIBUTE_UNUSED)
dbe341c6 2754{
b34976b6 2755 return TRUE;
dbe341c6
TR
2756}
2757
b34976b6 2758bfd_boolean
417236c0 2759xcoff_reloc_type_fail (bfd *input_bfd,
07d6d2b8
AM
2760 asection *input_section ATTRIBUTE_UNUSED,
2761 bfd *output_bfd ATTRIBUTE_UNUSED,
2762 struct internal_reloc *rel,
2763 struct internal_syment *sym ATTRIBUTE_UNUSED,
2764 struct reloc_howto_struct *howto ATTRIBUTE_UNUSED,
2765 bfd_vma val ATTRIBUTE_UNUSED,
2766 bfd_vma addend ATTRIBUTE_UNUSED,
2767 bfd_vma *relocation ATTRIBUTE_UNUSED,
2768 bfd_byte *contents ATTRIBUTE_UNUSED)
dbe341c6 2769{
4eca0228 2770 _bfd_error_handler
695344c0 2771 /* xgettext: c-format */
0aa13fee 2772 (_("%pB: unsupported relocation type %#x"),
dae82561 2773 input_bfd, (unsigned int) rel->r_type);
dbe341c6 2774 bfd_set_error (bfd_error_bad_value);
b34976b6 2775 return FALSE;
dbe341c6
TR
2776}
2777
b34976b6 2778bfd_boolean
417236c0 2779xcoff_reloc_type_pos (bfd *input_bfd ATTRIBUTE_UNUSED,
07d6d2b8
AM
2780 asection *input_section ATTRIBUTE_UNUSED,
2781 bfd *output_bfd ATTRIBUTE_UNUSED,
2782 struct internal_reloc *rel ATTRIBUTE_UNUSED,
2783 struct internal_syment *sym ATTRIBUTE_UNUSED,
2784 struct reloc_howto_struct *howto ATTRIBUTE_UNUSED,
2785 bfd_vma val,
2786 bfd_vma addend,
2787 bfd_vma *relocation,
2788 bfd_byte *contents ATTRIBUTE_UNUSED)
dbe341c6
TR
2789{
2790 *relocation = val + addend;
b34976b6 2791 return TRUE;
dbe341c6
TR
2792}
2793
b34976b6 2794bfd_boolean
417236c0 2795xcoff_reloc_type_neg (bfd *input_bfd ATTRIBUTE_UNUSED,
07d6d2b8
AM
2796 asection *input_section ATTRIBUTE_UNUSED,
2797 bfd *output_bfd ATTRIBUTE_UNUSED,
2798 struct internal_reloc *rel ATTRIBUTE_UNUSED,
2799 struct internal_syment *sym ATTRIBUTE_UNUSED,
2800 struct reloc_howto_struct *howto ATTRIBUTE_UNUSED,
2801 bfd_vma val,
2802 bfd_vma addend,
2803 bfd_vma *relocation,
2804 bfd_byte *contents ATTRIBUTE_UNUSED)
dbe341c6
TR
2805{
2806 *relocation = addend - val;
b34976b6 2807 return TRUE;
dbe341c6
TR
2808}
2809
b34976b6 2810bfd_boolean
417236c0 2811xcoff_reloc_type_rel (bfd *input_bfd ATTRIBUTE_UNUSED,
07d6d2b8
AM
2812 asection *input_section,
2813 bfd *output_bfd ATTRIBUTE_UNUSED,
2814 struct internal_reloc *rel ATTRIBUTE_UNUSED,
2815 struct internal_syment *sym ATTRIBUTE_UNUSED,
2816 struct reloc_howto_struct *howto,
2817 bfd_vma val,
2818 bfd_vma addend,
2819 bfd_vma *relocation,
2820 bfd_byte *contents ATTRIBUTE_UNUSED)
dbe341c6 2821{
b34976b6 2822 howto->pc_relative = TRUE;
dbe341c6
TR
2823
2824 /* A PC relative reloc includes the section address. */
2825 addend += input_section->vma;
2826
2827 *relocation = val + addend;
cf9ab45b
AM
2828 *relocation -= (input_section->output_section->vma
2829 + input_section->output_offset);
b34976b6 2830 return TRUE;
dbe341c6 2831}
f1f0d9ab 2832
b34976b6 2833bfd_boolean
417236c0 2834xcoff_reloc_type_toc (bfd *input_bfd,
07d6d2b8
AM
2835 asection *input_section ATTRIBUTE_UNUSED,
2836 bfd *output_bfd,
2837 struct internal_reloc *rel,
2838 struct internal_syment *sym,
2839 struct reloc_howto_struct *howto ATTRIBUTE_UNUSED,
2840 bfd_vma val,
2841 bfd_vma addend ATTRIBUTE_UNUSED,
2842 bfd_vma *relocation,
2843 bfd_byte *contents ATTRIBUTE_UNUSED)
dbe341c6
TR
2844{
2845 struct xcoff_link_hash_entry *h;
2846
cf9ab45b 2847 if (0 > rel->r_symndx)
b34976b6 2848 return FALSE;
dbe341c6
TR
2849
2850 h = obj_xcoff_sym_hashes (input_bfd)[rel->r_symndx];
2851
2852 if (h != NULL && h->smclas != XMC_TD)
2853 {
2854 if (h->toc_section == NULL)
2855 {
4eca0228 2856 _bfd_error_handler
695344c0 2857 /* xgettext: c-format */
2dcf00ce
AM
2858 (_("%pB: TOC reloc at %#" PRIx64 " to symbol `%s' with no TOC entry"),
2859 input_bfd, (uint64_t) rel->r_vaddr, h->root.root.string);
dbe341c6 2860 bfd_set_error (bfd_error_bad_value);
b34976b6 2861 return FALSE;
dbe341c6 2862 }
cf9ab45b 2863
dbe341c6
TR
2864 BFD_ASSERT ((h->flags & XCOFF_SET_TOC) == 0);
2865 val = (h->toc_section->output_section->vma
2866 + h->toc_section->output_offset);
2867 }
cf9ab45b
AM
2868
2869 *relocation = ((val - xcoff_data (output_bfd)->toc)
2870 - (sym->n_value - xcoff_data (input_bfd)->toc));
b34976b6 2871 return TRUE;
dbe341c6 2872}
f1f0d9ab 2873
b34976b6 2874bfd_boolean
417236c0 2875xcoff_reloc_type_ba (bfd *input_bfd ATTRIBUTE_UNUSED,
07d6d2b8
AM
2876 asection *input_section ATTRIBUTE_UNUSED,
2877 bfd *output_bfd ATTRIBUTE_UNUSED,
2878 struct internal_reloc *rel ATTRIBUTE_UNUSED,
2879 struct internal_syment *sym ATTRIBUTE_UNUSED,
2880 struct reloc_howto_struct *howto,
2881 bfd_vma val,
2882 bfd_vma addend,
2883 bfd_vma *relocation,
2884 bfd_byte *contents ATTRIBUTE_UNUSED)
dbe341c6 2885{
a78eab4e
AM
2886 howto->src_mask &= ~3;
2887 howto->dst_mask = howto->src_mask;
dbe341c6
TR
2888
2889 *relocation = val + addend;
2890
b34976b6 2891 return TRUE;
dbe341c6
TR
2892}
2893
b34976b6 2894static bfd_boolean
417236c0 2895xcoff_reloc_type_br (bfd *input_bfd,
07d6d2b8
AM
2896 asection *input_section,
2897 bfd *output_bfd ATTRIBUTE_UNUSED,
2898 struct internal_reloc *rel,
2899 struct internal_syment *sym ATTRIBUTE_UNUSED,
2900 struct reloc_howto_struct *howto,
2901 bfd_vma val,
2902 bfd_vma addend,
2903 bfd_vma *relocation,
2904 bfd_byte *contents)
dbe341c6
TR
2905{
2906 struct xcoff_link_hash_entry *h;
12b2cce9 2907 bfd_vma section_offset;
dbe341c6 2908
cf9ab45b 2909 if (0 > rel->r_symndx)
b34976b6 2910 return FALSE;
dbe341c6
TR
2911
2912 h = obj_xcoff_sym_hashes (input_bfd)[rel->r_symndx];
12b2cce9 2913 section_offset = rel->r_vaddr - input_section->vma;
dbe341c6
TR
2914
2915 /* If we see an R_BR or R_RBR reloc which is jumping to global
2916 linkage code, and it is followed by an appropriate cror nop
2917 instruction, we replace the cror with lwz r2,20(r1). This
2918 restores the TOC after the glink code. Contrariwise, if the
2919 call is followed by a lwz r2,20(r1), but the call is not
2920 going to global linkage code, we can replace the load with a
2921 cror. */
cf9ab45b 2922 if (NULL != h
8602d4fe
RS
2923 && (bfd_link_hash_defined == h->root.type
2924 || bfd_link_hash_defweak == h->root.type)
12b2cce9 2925 && section_offset + 8 <= input_section->size)
dbe341c6
TR
2926 {
2927 bfd_byte *pnext;
2928 unsigned long next;
cf9ab45b 2929
12b2cce9 2930 pnext = contents + section_offset + 4;
dbe341c6 2931 next = bfd_get_32 (input_bfd, pnext);
cf9ab45b 2932
dbe341c6
TR
2933 /* The _ptrgl function is magic. It is used by the AIX
2934 compiler to call a function through a pointer. */
2935 if (h->smclas == XMC_GL || strcmp (h->root.root.string, "._ptrgl") == 0)
2936 {
cf9ab45b
AM
2937 if (next == 0x4def7b82 /* cror 15,15,15 */
2938 || next == 0x4ffffb82 /* cror 31,31,31 */
2939 || next == 0x60000000) /* ori r0,r0,0 */
12b2cce9 2940 bfd_put_32 (input_bfd, 0x80410014, pnext); /* lwz r2,20(r1) */
cf9ab45b
AM
2941
2942 }
2943 else
2944 {
12b2cce9 2945 if (next == 0x80410014) /* lwz r2,20(r1) */
cf9ab45b
AM
2946 bfd_put_32 (input_bfd, 0x60000000, pnext); /* ori r0,r0,0 */
2947 }
2948 }
2949 else if (NULL != h && bfd_link_hash_undefined == h->root.type)
dbe341c6
TR
2950 {
2951 /* Normally, this relocation is against a defined symbol. In the
2952 case where this is a partial link and the output section offset
cf9ab45b 2953 is greater than 2^25, the linker will return an invalid error
dbe341c6 2954 message that the relocation has been truncated. Yes it has been
cf9ab45b 2955 truncated but no it not important. For this case, disable the
dbe341c6 2956 overflow checking. */
cf9ab45b 2957
dbe341c6
TR
2958 howto->complain_on_overflow = complain_overflow_dont;
2959 }
cf9ab45b 2960
12b2cce9
RS
2961 /* The original PC-relative relocation is biased by -r_vaddr, so adding
2962 the value below will give the absolute target address. */
2963 *relocation = val + addend + rel->r_vaddr;
2964
a78eab4e
AM
2965 howto->src_mask &= ~3;
2966 howto->dst_mask = howto->src_mask;
dbe341c6 2967
12b2cce9 2968 if (h != NULL
8602d4fe
RS
2969 && (h->root.type == bfd_link_hash_defined
2970 || h->root.type == bfd_link_hash_defweak)
12b2cce9
RS
2971 && bfd_is_abs_section (h->root.u.def.section)
2972 && section_offset + 4 <= input_section->size)
2973 {
2974 bfd_byte *ptr;
2975 bfd_vma insn;
cf9ab45b 2976
12b2cce9
RS
2977 /* Turn the relative branch into an absolute one by setting the
2978 AA bit. */
2979 ptr = contents + section_offset;
2980 insn = bfd_get_32 (input_bfd, ptr);
2981 insn |= 2;
2982 bfd_put_32 (input_bfd, insn, ptr);
2983
2984 /* Make the howto absolute too. */
2985 howto->pc_relative = FALSE;
2986 howto->complain_on_overflow = complain_overflow_bitfield;
2987 }
2988 else
2989 {
2990 /* Use a PC-relative howto and subtract the instruction's address
2991 from the target address we calculated above. */
2992 howto->pc_relative = TRUE;
2993 *relocation -= (input_section->output_section->vma
2994 + input_section->output_offset
2995 + section_offset);
2996 }
b34976b6 2997 return TRUE;
dbe341c6
TR
2998}
2999
b34976b6 3000bfd_boolean
417236c0 3001xcoff_reloc_type_crel (bfd *input_bfd ATTRIBUTE_UNUSED,
07d6d2b8
AM
3002 asection *input_section,
3003 bfd *output_bfd ATTRIBUTE_UNUSED,
3004 struct internal_reloc *rel ATTRIBUTE_UNUSED,
3005 struct internal_syment *sym ATTRIBUTE_UNUSED,
3006 struct reloc_howto_struct *howto,
3007 bfd_vma val ATTRIBUTE_UNUSED,
3008 bfd_vma addend,
3009 bfd_vma *relocation,
3010 bfd_byte *contents ATTRIBUTE_UNUSED)
dbe341c6 3011{
b34976b6 3012 howto->pc_relative = TRUE;
a78eab4e
AM
3013 howto->src_mask &= ~3;
3014 howto->dst_mask = howto->src_mask;
dbe341c6
TR
3015
3016 /* A PC relative reloc includes the section address. */
3017 addend += input_section->vma;
3018
3019 *relocation = val + addend;
cf9ab45b
AM
3020 *relocation -= (input_section->output_section->vma
3021 + input_section->output_offset);
b34976b6 3022 return TRUE;
dbe341c6
TR
3023}
3024
b34976b6 3025static bfd_boolean
417236c0 3026xcoff_complain_overflow_dont_func (bfd *input_bfd ATTRIBUTE_UNUSED,
07d6d2b8
AM
3027 bfd_vma val ATTRIBUTE_UNUSED,
3028 bfd_vma relocation ATTRIBUTE_UNUSED,
3029 struct reloc_howto_struct *
3030 howto ATTRIBUTE_UNUSED)
dbe341c6 3031{
b34976b6 3032 return FALSE;
dbe341c6
TR
3033}
3034
b34976b6 3035static bfd_boolean
417236c0 3036xcoff_complain_overflow_bitfield_func (bfd *input_bfd,
07d6d2b8
AM
3037 bfd_vma val,
3038 bfd_vma relocation,
3039 struct reloc_howto_struct *howto)
dbe341c6 3040{
c7e2358a 3041 bfd_vma fieldmask, signmask, ss;
dbe341c6 3042 bfd_vma a, b, sum;
cf9ab45b 3043
dbe341c6
TR
3044 /* Get the values to be added together. For signed and unsigned
3045 relocations, we assume that all values should be truncated to
3046 the size of an address. For bitfields, all the bits matter.
3047 See also bfd_check_overflow. */
3048 fieldmask = N_ONES (howto->bitsize);
dbe341c6
TR
3049 a = relocation;
3050 b = val & howto->src_mask;
3051
3052 /* Much like unsigned, except no trimming with addrmask. In
3053 addition, the sum overflows if there is a carry out of
3054 the bfd_vma, i.e., the sum is less than either input
3055 operand. */
3056 a >>= howto->rightshift;
3057 b >>= howto->bitpos;
cf9ab45b 3058
dbe341c6
TR
3059 /* Bitfields are sometimes used for signed numbers; for
3060 example, a 13-bit field sometimes represents values in
3061 0..8191 and sometimes represents values in -4096..4095.
3062 If the field is signed and a is -4095 (0x1001) and b is
3063 -1 (0x1fff), the sum is -4096 (0x1000), but (0x1001 +
3064 0x1fff is 0x3000). It's not clear how to handle this
3065 everywhere, since there is not way to know how many bits
3066 are significant in the relocation, but the original code
3067 assumed that it was fully sign extended, and we will keep
3068 that assumption. */
3069 signmask = (fieldmask >> 1) + 1;
cf9ab45b 3070
dbe341c6
TR
3071 if ((a & ~ fieldmask) != 0)
3072 {
3073 /* Some bits out of the field are set. This might not
3074 be a problem: if this is a signed bitfield, it is OK
3075 iff all the high bits are set, including the sign
3076 bit. We'll try setting all but the most significant
3077 bit in the original relocation value: if this is all
3078 ones, we are OK, assuming a signed bitfield. */
3079 ss = (signmask << howto->rightshift) - 1;
3080 if ((ss | relocation) != ~ (bfd_vma) 0)
b34976b6 3081 return TRUE;
dbe341c6
TR
3082 a &= fieldmask;
3083 }
cf9ab45b 3084
dbe341c6 3085 /* We just assume (b & ~ fieldmask) == 0. */
cf9ab45b 3086
dbe341c6
TR
3087 /* We explicitly permit wrap around if this relocation
3088 covers the high bit of an address. The Linux kernel
3089 relies on it, and it is the only way to write assembler
3090 code which can run when loaded at a location 0x80000000
3091 away from the location at which it is linked. */
706704c8 3092 if ((unsigned) howto->bitsize + howto->rightshift
dbe341c6 3093 == bfd_arch_bits_per_address (input_bfd))
b34976b6 3094 return FALSE;
cf9ab45b 3095
dbe341c6
TR
3096 sum = a + b;
3097 if (sum < a || (sum & ~ fieldmask) != 0)
3098 {
3099 /* There was a carry out, or the field overflow. Test
3100 for signed operands again. Here is the overflow test
3101 is as for complain_overflow_signed. */
3102 if (((~ (a ^ b)) & (a ^ sum)) & signmask)
b34976b6 3103 return TRUE;
dbe341c6 3104 }
cf9ab45b 3105
b34976b6 3106 return FALSE;
dbe341c6
TR
3107}
3108
b34976b6 3109static bfd_boolean
417236c0 3110xcoff_complain_overflow_signed_func (bfd *input_bfd,
07d6d2b8
AM
3111 bfd_vma val,
3112 bfd_vma relocation,
3113 struct reloc_howto_struct *howto)
dbe341c6
TR
3114{
3115 bfd_vma addrmask, fieldmask, signmask, ss;
3116 bfd_vma a, b, sum;
cf9ab45b 3117
dbe341c6
TR
3118 /* Get the values to be added together. For signed and unsigned
3119 relocations, we assume that all values should be truncated to
3120 the size of an address. For bitfields, all the bits matter.
3121 See also bfd_check_overflow. */
3122 fieldmask = N_ONES (howto->bitsize);
3123 addrmask = N_ONES (bfd_arch_bits_per_address (input_bfd)) | fieldmask;
3124 a = relocation;
3125 b = val & howto->src_mask;
3126
3127 a = (a & addrmask) >> howto->rightshift;
cf9ab45b 3128
dbe341c6
TR
3129 /* If any sign bits are set, all sign bits must be set.
3130 That is, A must be a valid negative address after
3131 shifting. */
3132 signmask = ~ (fieldmask >> 1);
3133 ss = a & signmask;
3134 if (ss != 0 && ss != ((addrmask >> howto->rightshift) & signmask))
b34976b6 3135 return TRUE;
cf9ab45b 3136
dbe341c6
TR
3137 /* We only need this next bit of code if the sign bit of B
3138 is below the sign bit of A. This would only happen if
3139 SRC_MASK had fewer bits than BITSIZE. Note that if
3140 SRC_MASK has more bits than BITSIZE, we can get into
3141 trouble; we would need to verify that B is in range, as
3142 we do for A above. */
3143 signmask = ((~ howto->src_mask) >> 1) & howto->src_mask;
3144 if ((b & signmask) != 0)
3145 {
3146 /* Set all the bits above the sign bit. */
3147 b -= signmask <<= 1;
3148 }
cf9ab45b 3149
dbe341c6 3150 b = (b & addrmask) >> howto->bitpos;
cf9ab45b 3151
dbe341c6
TR
3152 /* Now we can do the addition. */
3153 sum = a + b;
cf9ab45b 3154
dbe341c6
TR
3155 /* See if the result has the correct sign. Bits above the
3156 sign bit are junk now; ignore them. If the sum is
3157 positive, make sure we did not have all negative inputs;
3158 if the sum is negative, make sure we did not have all
3159 positive inputs. The test below looks only at the sign
3160 bits, and it really just
3161 SIGN (A) == SIGN (B) && SIGN (A) != SIGN (SUM)
3162 */
3163 signmask = (fieldmask >> 1) + 1;
3164 if (((~ (a ^ b)) & (a ^ sum)) & signmask)
b34976b6 3165 return TRUE;
cf9ab45b 3166
b34976b6 3167 return FALSE;
dbe341c6
TR
3168}
3169
b34976b6 3170static bfd_boolean
417236c0 3171xcoff_complain_overflow_unsigned_func (bfd *input_bfd,
07d6d2b8
AM
3172 bfd_vma val,
3173 bfd_vma relocation,
3174 struct reloc_howto_struct *howto)
dbe341c6
TR
3175{
3176 bfd_vma addrmask, fieldmask;
3177 bfd_vma a, b, sum;
cf9ab45b 3178
dbe341c6
TR
3179 /* Get the values to be added together. For signed and unsigned
3180 relocations, we assume that all values should be truncated to
3181 the size of an address. For bitfields, all the bits matter.
3182 See also bfd_check_overflow. */
3183 fieldmask = N_ONES (howto->bitsize);
3184 addrmask = N_ONES (bfd_arch_bits_per_address (input_bfd)) | fieldmask;
3185 a = relocation;
3186 b = val & howto->src_mask;
3187
3188 /* Checking for an unsigned overflow is relatively easy:
3189 trim the addresses and add, and trim the result as well.
3190 Overflow is normally indicated when the result does not
3191 fit in the field. However, we also need to consider the
3192 case when, e.g., fieldmask is 0x7fffffff or smaller, an
3193 input is 0x80000000, and bfd_vma is only 32 bits; then we
3194 will get sum == 0, but there is an overflow, since the
3195 inputs did not fit in the field. Instead of doing a
3196 separate test, we can check for this by or-ing in the
3197 operands when testing for the sum overflowing its final
3198 field. */
3199 a = (a & addrmask) >> howto->rightshift;
3200 b = (b & addrmask) >> howto->bitpos;
3201 sum = (a + b) & addrmask;
3202 if ((a | b | sum) & ~ fieldmask)
b34976b6 3203 return TRUE;
cf9ab45b 3204
b34976b6 3205 return FALSE;
dbe341c6 3206}
beb1bf64
TR
3207
3208/* This is the relocation function for the RS/6000/POWER/PowerPC.
3209 This is currently the only processor which uses XCOFF; I hope that
cf9ab45b 3210 will never change.
beb1bf64 3211
dbe341c6
TR
3212 I took the relocation type definitions from two documents:
3213 the PowerPC AIX Version 4 Application Binary Interface, First
3214 Edition (April 1992), and the PowerOpen ABI, Big-Endian
3215 32-Bit Hardware Implementation (June 30, 1994). Differences
cf9ab45b 3216 between the documents are noted below.
dbe341c6 3217
cf9ab45b 3218 Unsupported r_type's
dbe341c6
TR
3219
3220 R_RTB:
3221 R_RRTBI:
3222 R_RRTBA:
cf9ab45b 3223
dbe341c6
TR
3224 These relocs are defined by the PowerPC ABI to be
3225 relative branches which use half of the difference
3226 between the symbol and the program counter. I can't
3227 quite figure out when this is useful. These relocs are
cf9ab45b 3228 not defined by the PowerOpen ABI.
dbe341c6
TR
3229
3230 Supported r_type's
3231
3232 R_POS:
3233 Simple positive relocation.
3234
3235 R_NEG:
cf9ab45b 3236 Simple negative relocation.
dbe341c6
TR
3237
3238 R_REL:
3239 Simple PC relative relocation.
3240
3241 R_TOC:
3242 TOC relative relocation. The value in the instruction in
3243 the input file is the offset from the input file TOC to
3244 the desired location. We want the offset from the final
3245 TOC to the desired location. We have:
3246 isym = iTOC + in
3247 iinsn = in + o
3248 osym = oTOC + on
3249 oinsn = on + o
3250 so we must change insn by on - in.
3251
3252 R_GL:
3253 GL linkage relocation. The value of this relocation
cf9ab45b 3254 is the address of the entry in the TOC section.
dbe341c6
TR
3255
3256 R_TCL:
3257 Local object TOC address. I can't figure out the
cf9ab45b 3258 difference between this and case R_GL.
dbe341c6
TR
3259
3260 R_TRL:
3261 TOC relative relocation. A TOC relative load instruction
3262 which may be changed to a load address instruction.
cf9ab45b 3263 FIXME: We don't currently implement this optimization.
dbe341c6
TR
3264
3265 R_TRLA:
3266 TOC relative relocation. This is a TOC relative load
3267 address instruction which may be changed to a load
3268 instruction. FIXME: I don't know if this is the correct
3269 implementation.
3270
3271 R_BA:
3272 Absolute branch. We don't want to mess with the lower
cf9ab45b 3273 two bits of the instruction.
dbe341c6
TR
3274
3275 R_CAI:
3276 The PowerPC ABI defines this as an absolute call which
3277 may be modified to become a relative call. The PowerOpen
cf9ab45b
AM
3278 ABI does not define this relocation type.
3279
dbe341c6
TR
3280 R_RBA:
3281 Absolute branch which may be modified to become a
cf9ab45b 3282 relative branch.
dbe341c6
TR
3283
3284 R_RBAC:
3285 The PowerPC ABI defines this as an absolute branch to a
3286 fixed address which may be modified to an absolute branch
3287 to a symbol. The PowerOpen ABI does not define this
cf9ab45b 3288 relocation type.
dbe341c6
TR
3289
3290 R_RBRC:
3291 The PowerPC ABI defines this as an absolute branch to a
3292 fixed address which may be modified to a relative branch.
cf9ab45b 3293 The PowerOpen ABI does not define this relocation type.
dbe341c6
TR
3294
3295 R_BR:
3296 Relative branch. We don't want to mess with the lower
cf9ab45b 3297 two bits of the instruction.
dbe341c6
TR
3298
3299 R_CREL:
3300 The PowerPC ABI defines this as a relative call which may
3301 be modified to become an absolute call. The PowerOpen
cf9ab45b 3302 ABI does not define this relocation type.
dbe341c6
TR
3303
3304 R_RBR:
3305 A relative branch which may be modified to become an
12b2cce9 3306 absolute branch.
dbe341c6
TR
3307
3308 R_RL:
3309 The PowerPC AIX ABI describes this as a load which may be
3310 changed to a load address. The PowerOpen ABI says this
cf9ab45b 3311 is the same as case R_POS.
dbe341c6
TR
3312
3313 R_RLA:
3314 The PowerPC AIX ABI describes this as a load address
3315 which may be changed to a load. The PowerOpen ABI says
cf9ab45b 3316 this is the same as R_POS.
dbe341c6
TR
3317*/
3318
b34976b6 3319bfd_boolean
417236c0 3320xcoff_ppc_relocate_section (bfd *output_bfd,
07d6d2b8
AM
3321 struct bfd_link_info *info,
3322 bfd *input_bfd,
3323 asection *input_section,
3324 bfd_byte *contents,
3325 struct internal_reloc *relocs,
3326 struct internal_syment *syms,
3327 asection **sections)
beb1bf64
TR
3328{
3329 struct internal_reloc *rel;
3330 struct internal_reloc *relend;
3331
3332 rel = relocs;
3333 relend = rel + input_section->reloc_count;
beb1bf64
TR
3334 for (; rel < relend; rel++)
3335 {
3336 long symndx;
3337 struct xcoff_link_hash_entry *h;
3338 struct internal_syment *sym;
3339 bfd_vma addend;
3340 bfd_vma val;
3341 struct reloc_howto_struct howto;
dbe341c6
TR
3342 bfd_vma relocation;
3343 bfd_vma value_to_relocate;
3344 bfd_vma address;
3345 bfd_byte *location;
beb1bf64
TR
3346
3347 /* Relocation type R_REF is a special relocation type which is
cf9ab45b
AM
3348 merely used to prevent garbage collection from occurring for
3349 the csect including the symbol which it references. */
beb1bf64
TR
3350 if (rel->r_type == R_REF)
3351 continue;
3352
dbe341c6 3353 /* howto */
beb1bf64
TR
3354 howto.type = rel->r_type;
3355 howto.rightshift = 0;
beb1bf64 3356 howto.bitsize = (rel->r_size & 0x1f) + 1;
dbe341c6 3357 howto.size = howto.bitsize > 16 ? 2 : 1;
b34976b6 3358 howto.pc_relative = FALSE;
beb1bf64 3359 howto.bitpos = 0;
cf9ab45b
AM
3360 howto.complain_on_overflow = (rel->r_size & 0x80
3361 ? complain_overflow_signed
3362 : complain_overflow_bitfield);
beb1bf64
TR
3363 howto.special_function = NULL;
3364 howto.name = "internal";
b34976b6 3365 howto.partial_inplace = TRUE;
cf9ab45b 3366 howto.src_mask = howto.dst_mask = N_ONES (howto.bitsize);
b34976b6 3367 howto.pcrel_offset = FALSE;
beb1bf64 3368
dbe341c6 3369 /* symbol */
beb1bf64 3370 val = 0;
dbe341c6
TR
3371 addend = 0;
3372 h = NULL;
3373 sym = NULL;
cf9ab45b 3374 symndx = rel->r_symndx;
beb1bf64 3375
cf9ab45b 3376 if (-1 != symndx)
beb1bf64
TR
3377 {
3378 asection *sec;
cf9ab45b 3379
dbe341c6
TR
3380 h = obj_xcoff_sym_hashes (input_bfd)[symndx];
3381 sym = syms + symndx;
3382 addend = - sym->n_value;
cf9ab45b
AM
3383
3384 if (NULL == h)
beb1bf64
TR
3385 {
3386 sec = sections[symndx];
3387 /* Hack to make sure we use the right TOC anchor value
dbe341c6 3388 if this reloc is against the TOC anchor. */
beb1bf64 3389 if (sec->name[3] == '0'
dbe341c6
TR
3390 && strcmp (sec->name, ".tc0") == 0)
3391 val = xcoff_data (output_bfd)->toc;
f4ffd778 3392 else
dbe341c6
TR
3393 val = (sec->output_section->vma
3394 + sec->output_offset
3395 + sym->n_value
3396 - sec->vma);
cf9ab45b
AM
3397 }
3398 else
dbe341c6 3399 {
858ef0ce
RS
3400 if (info->unresolved_syms_in_objects != RM_IGNORE
3401 && (h->flags & XCOFF_WAS_UNDEFINED) != 0)
1a72702b
AM
3402 (*info->callbacks->undefined_symbol)
3403 (info, h->root.root.string,
3404 input_bfd, input_section,
3405 rel->r_vaddr - input_section->vma,
95a51568
FS
3406 info->unresolved_syms_in_objects == RM_DIAGNOSE &&
3407 !info->warn_unresolved_syms);
1a72702b 3408
cf9ab45b
AM
3409 if (h->root.type == bfd_link_hash_defined
3410 || h->root.type == bfd_link_hash_defweak)
dbe341c6
TR
3411 {
3412 sec = h->root.u.def.section;
3413 val = (h->root.u.def.value
3414 + sec->output_section->vma
3415 + sec->output_offset);
cf9ab45b
AM
3416 }
3417 else if (h->root.type == bfd_link_hash_common)
f4ffd778 3418 {
dbe341c6 3419 sec = h->root.u.c.p->section;
f4ffd778 3420 val = (sec->output_section->vma
dbe341c6 3421 + sec->output_offset);
cf9ab45b
AM
3422
3423 }
858ef0ce 3424 else
dbe341c6 3425 {
0e1862bb 3426 BFD_ASSERT (bfd_link_relocatable (info)
94313f36
RS
3427 || (info->static_link
3428 && (h->flags & XCOFF_WAS_UNDEFINED) != 0)
858ef0ce
RS
3429 || (h->flags & XCOFF_DEF_DYNAMIC) != 0
3430 || (h->flags & XCOFF_IMPORT) != 0);
f4ffd778 3431 }
beb1bf64
TR
3432 }
3433 }
beb1bf64 3434
cf9ab45b
AM
3435 if (rel->r_type >= XCOFF_MAX_CALCULATE_RELOCATION
3436 || !((*xcoff_calculate_relocation[rel->r_type])
3437 (input_bfd, input_section, output_bfd, rel, sym, &howto, val,
3438 addend, &relocation, contents)))
b34976b6 3439 return FALSE;
cf9ab45b 3440
dbe341c6
TR
3441 /* address */
3442 address = rel->r_vaddr - input_section->vma;
3443 location = contents + address;
cf9ab45b 3444
eea6121a 3445 if (address > input_section->size)
cf9ab45b 3446 abort ();
dbe341c6
TR
3447
3448 /* Get the value we are going to relocate. */
3449 if (1 == howto.size)
3450 value_to_relocate = bfd_get_16 (input_bfd, location);
cf9ab45b 3451 else
dbe341c6 3452 value_to_relocate = bfd_get_32 (input_bfd, location);
cf9ab45b
AM
3453
3454 /* overflow.
3455
dbe341c6
TR
3456 FIXME: We may drop bits during the addition
3457 which we don't check for. We must either check at every single
3458 operation, which would be tedious, or we must do the computations
3459 in a type larger than bfd_vma, which would be inefficient. */
beb1bf64 3460
cf9ab45b
AM
3461 if (((*xcoff_complain_overflow[howto.complain_on_overflow])
3462 (input_bfd, value_to_relocate, relocation, &howto)))
beb1bf64 3463 {
dbe341c6
TR
3464 const char *name;
3465 char buf[SYMNMLEN + 1];
3466 char reloc_type_name[10];
cf9ab45b
AM
3467
3468 if (symndx == -1)
beb1bf64 3469 {
dbe341c6 3470 name = "*ABS*";
cf9ab45b
AM
3471 }
3472 else if (h != NULL)
beb1bf64 3473 {
dfeffb9f 3474 name = NULL;
cf9ab45b
AM
3475 }
3476 else
beb1bf64 3477 {
dbe341c6
TR
3478 name = _bfd_coff_internal_syment_name (input_bfd, sym, buf);
3479 if (name == NULL)
3480 name = "UNKNOWN";
beb1bf64 3481 }
dbe341c6 3482 sprintf (reloc_type_name, "0x%02x", rel->r_type);
cf9ab45b 3483
1a72702b
AM
3484 (*info->callbacks->reloc_overflow)
3485 (info, (h ? &h->root : NULL), name, reloc_type_name,
3486 (bfd_vma) 0, input_bfd, input_section,
3487 rel->r_vaddr - input_section->vma);
beb1bf64 3488 }
cf9ab45b 3489
dbe341c6 3490 /* Add RELOCATION to the right bits of VALUE_TO_RELOCATE. */
cf9ab45b
AM
3491 value_to_relocate = ((value_to_relocate & ~howto.dst_mask)
3492 | (((value_to_relocate & howto.src_mask)
3493 + relocation) & howto.dst_mask));
3494
dbe341c6
TR
3495 /* Put the value back in the object file. */
3496 if (1 == howto.size)
3497 bfd_put_16 (input_bfd, value_to_relocate, location);
cf9ab45b 3498 else
dbe341c6 3499 bfd_put_32 (input_bfd, value_to_relocate, location);
beb1bf64
TR
3500 }
3501
b34976b6 3502 return TRUE;
beb1bf64
TR
3503}
3504
c25179e7
NC
3505/* gcc-8 warns (*) on all the strncpy calls in this function about
3506 possible string truncation. The "truncation" is not a bug. We
3507 have an external representation of structs with fields that are not
3508 necessarily NULL terminated and corresponding internal
3509 representation fields that are one larger so that they can always
3510 be NULL terminated.
3511 gcc versions between 4.2 and 4.6 do not allow pragma control of
3512 diagnostics inside functions, giving a hard error if you try to use
3513 the finer control available with later versions.
3514 gcc prior to 4.2 warns about diagnostic push and pop.
3515 gcc-5, gcc-6 and gcc-7 warn that -Wstringop-truncation is unknown,
3516 unless you also add #pragma GCC diagnostic ignored "-Wpragma".
3517 (*) Depending on your system header files! */
3518#if GCC_VERSION >= 8000
3519# pragma GCC diagnostic push
3520# pragma GCC diagnostic ignored "-Wstringop-truncation"
3521#endif
b34976b6 3522static bfd_boolean
417236c0 3523_bfd_xcoff_put_ldsymbol_name (bfd *abfd ATTRIBUTE_UNUSED,
07d6d2b8
AM
3524 struct xcoff_loader_info *ldinfo,
3525 struct internal_ldsym *ldsym,
3526 const char *name)
beb1bf64
TR
3527{
3528 size_t len;
3529 len = strlen (name);
3530
3531 if (len <= SYMNMLEN)
3532 strncpy (ldsym->_l._l_name, name, SYMNMLEN);
3533 else
3534 {
3535 if (ldinfo->string_size + len + 3 > ldinfo->string_alc)
3536 {
dc810e39 3537 bfd_size_type newalc;
f075ee0c 3538 char *newstrings;
beb1bf64
TR
3539
3540 newalc = ldinfo->string_alc * 2;
3541 if (newalc == 0)
3542 newalc = 32;
3543 while (ldinfo->string_size + len + 3 > newalc)
3544 newalc *= 2;
3545
f075ee0c 3546 newstrings = bfd_realloc (ldinfo->strings, newalc);
beb1bf64
TR
3547 if (newstrings == NULL)
3548 {
b34976b6
AM
3549 ldinfo->failed = TRUE;
3550 return FALSE;
beb1bf64
TR
3551 }
3552 ldinfo->string_alc = newalc;
3553 ldinfo->strings = newstrings;
3554 }
3555
dc810e39
AM
3556 bfd_put_16 (ldinfo->output_bfd, (bfd_vma) (len + 1),
3557 ldinfo->strings + ldinfo->string_size);
beb1bf64
TR
3558 strcpy (ldinfo->strings + ldinfo->string_size + 2, name);
3559 ldsym->_l._l_l._l_zeroes = 0;
3560 ldsym->_l._l_l._l_offset = ldinfo->string_size + 2;
3561 ldinfo->string_size += len + 3;
3562 }
3563
b34976b6 3564 return TRUE;
beb1bf64
TR
3565}
3566
b34976b6 3567static bfd_boolean
b560e2ac
AM
3568_bfd_xcoff_put_symbol_name (struct bfd_link_info *info,
3569 struct bfd_strtab_hash *strtab,
beb1bf64 3570 struct internal_syment *sym,
f4ffd778
NC
3571 const char *name)
3572{
3573 if (strlen (name) <= SYMNMLEN)
3574 {
3575 strncpy (sym->_n._n_name, name, SYMNMLEN);
3576 }
3577 else
3578 {
b34976b6 3579 bfd_boolean hash;
f4ffd778
NC
3580 bfd_size_type indx;
3581
b560e2ac 3582 hash = !info->traditional_format;
b34976b6 3583 indx = _bfd_stringtab_add (strtab, name, hash, FALSE);
f4ffd778 3584 if (indx == (bfd_size_type) -1)
b34976b6 3585 return FALSE;
f4ffd778
NC
3586 sym->_n._n_n._n_zeroes = 0;
3587 sym->_n._n_n._n_offset = STRING_SIZE_SIZE + indx;
3588 }
b34976b6 3589 return TRUE;
beb1bf64 3590}
c25179e7
NC
3591#if GCC_VERSION >= 8000
3592# pragma GCC diagnostic pop
3593#endif
beb1bf64
TR
3594
3595static asection *
417236c0 3596xcoff_create_csect_from_smclas (bfd *abfd,
07d6d2b8
AM
3597 union internal_auxent *aux,
3598 const char *symbol_name)
beb1bf64 3599{
beb1bf64
TR
3600 asection *return_value = NULL;
3601
f4ffd778
NC
3602 /* .sv64 = x_smclas == 17
3603 This is an invalid csect for 32 bit apps. */
9a1ada6c
TG
3604 static const char * const names[] =
3605 {
3606 ".pr", ".ro", ".db", ".tc", ".ua", ".rw", ".gl", ".xo", /* 0 - 7 */
3607 ".sv", ".bs", ".ds", ".uc", ".ti", ".tb", NULL, ".tc0", /* 8 - 15 */
3608 ".td", NULL, ".sv3264", NULL, ".tl", ".ul", ".te"
3609 };
1b786873 3610
9a1ada6c 3611 if ((aux->x_csect.x_smclas < ARRAY_SIZE (names))
cf9ab45b 3612 && (NULL != names[aux->x_csect.x_smclas]))
f4ffd778 3613 {
dc810e39 3614 return_value = bfd_make_section_anyway
f4ffd778
NC
3615 (abfd, names[aux->x_csect.x_smclas]);
3616 }
3617 else
3618 {
4eca0228 3619 _bfd_error_handler
695344c0 3620 /* xgettext: c-format */
871b3ab2 3621 (_("%pB: symbol `%s' has unrecognized smclas %d"),
d003868e 3622 abfd, symbol_name, aux->x_csect.x_smclas);
f4ffd778
NC
3623 bfd_set_error (bfd_error_bad_value);
3624 }
beb1bf64
TR
3625
3626 return return_value;
3627}
3628
b34976b6 3629static bfd_boolean
417236c0 3630xcoff_is_lineno_count_overflow (bfd *abfd ATTRIBUTE_UNUSED, bfd_vma value)
beb1bf64 3631{
f4ffd778 3632 if (0xffff <= value)
b34976b6 3633 return TRUE;
f4ffd778 3634
b34976b6 3635 return FALSE;
beb1bf64
TR
3636}
3637
b34976b6 3638static bfd_boolean
417236c0 3639xcoff_is_reloc_count_overflow (bfd *abfd ATTRIBUTE_UNUSED, bfd_vma value)
beb1bf64 3640{
f4ffd778 3641 if (0xffff <= value)
b34976b6 3642 return TRUE;
f4ffd778 3643
b34976b6 3644 return FALSE;
beb1bf64
TR
3645}
3646
a7b97311 3647static bfd_vma
417236c0 3648xcoff_loader_symbol_offset (bfd *abfd,
07d6d2b8 3649 struct internal_ldhdr *ldhdr ATTRIBUTE_UNUSED)
beb1bf64 3650{
cf9ab45b 3651 return bfd_xcoff_ldhdrsz (abfd);
beb1bf64
TR
3652}
3653
a7b97311 3654static bfd_vma
417236c0 3655xcoff_loader_reloc_offset (bfd *abfd, struct internal_ldhdr *ldhdr)
beb1bf64 3656{
cf9ab45b 3657 return bfd_xcoff_ldhdrsz (abfd) + ldhdr->l_nsyms * bfd_xcoff_ldsymsz (abfd);
beb1bf64
TR
3658}
3659
b34976b6 3660static bfd_boolean
417236c0 3661xcoff_generate_rtinit (bfd *abfd, const char *init, const char *fini,
07d6d2b8 3662 bfd_boolean rtld)
9a4c7f16
TR
3663{
3664 bfd_byte filehdr_ext[FILHSZ];
3665 bfd_byte scnhdr_ext[SCNHSZ];
69f284c7
TR
3666 bfd_byte syment_ext[SYMESZ * 10];
3667 bfd_byte reloc_ext[RELSZ * 3];
9a4c7f16
TR
3668 bfd_byte *data_buffer;
3669 bfd_size_type data_buffer_size;
d426c6b0 3670 bfd_byte *string_table = NULL, *st_tmp = NULL;
9a4c7f16
TR
3671 bfd_size_type string_table_size;
3672 bfd_vma val;
3673 size_t initsz, finisz;
3674 struct internal_filehdr filehdr;
3675 struct internal_scnhdr scnhdr;
3676 struct internal_syment syment;
3677 union internal_auxent auxent;
3678 struct internal_reloc reloc;
cf9ab45b 3679
9a4c7f16
TR
3680 char *data_name = ".data";
3681 char *rtinit_name = "__rtinit";
69f284c7 3682 char *rtld_name = "__rtld";
cf9ab45b 3683
69f284c7 3684 if (! bfd_xcoff_rtinit_size (abfd))
b34976b6 3685 return FALSE;
9a4c7f16
TR
3686
3687 initsz = (init == NULL ? 0 : 1 + strlen (init));
3688 finisz = (fini == NULL ? 0 : 1 + strlen (fini));
3689
3690 /* file header */
3691 memset (filehdr_ext, 0, FILHSZ);
3692 memset (&filehdr, 0, sizeof (struct internal_filehdr));
3693 filehdr.f_magic = bfd_xcoff_magic_number (abfd);
cf9ab45b 3694 filehdr.f_nscns = 1;
9a4c7f16 3695 filehdr.f_timdat = 0;
69f284c7 3696 filehdr.f_nsyms = 0; /* at least 6, no more than 10 */
9a4c7f16
TR
3697 filehdr.f_symptr = 0; /* set below */
3698 filehdr.f_opthdr = 0;
3699 filehdr.f_flags = 0;
3700
3701 /* section header */
3702 memset (scnhdr_ext, 0, SCNHSZ);
3703 memset (&scnhdr, 0, sizeof (struct internal_scnhdr));
3704 memcpy (scnhdr.s_name, data_name, strlen (data_name));
3705 scnhdr.s_paddr = 0;
3706 scnhdr.s_vaddr = 0;
3707 scnhdr.s_size = 0; /* set below */
3708 scnhdr.s_scnptr = FILHSZ + SCNHSZ;
3709 scnhdr.s_relptr = 0; /* set below */
3710 scnhdr.s_lnnoptr = 0;
3711 scnhdr.s_nreloc = 0; /* either 1 or 2 */
3712 scnhdr.s_nlnno = 0;
3713 scnhdr.s_flags = STYP_DATA;
3714
cf9ab45b
AM
3715 /* .data
3716 0x0000 0x00000000 : rtl
3717 0x0004 0x00000010 : offset to init, or 0
3718 0x0008 0x00000028 : offset to fini, or 0
3719 0x000C 0x0000000C : size of descriptor
3720 0x0010 0x00000000 : init, needs a reloc
3721 0x0014 0x00000040 : offset to init name
3722 0x0018 0x00000000 : flags, padded to a word
3723 0x001C 0x00000000 : empty init
3724 0x0020 0x00000000 :
3725 0x0024 0x00000000 :
3726 0x0028 0x00000000 : fini, needs a reloc
3727 0x002C 0x00000??? : offset to fini name
3728 0x0030 0x00000000 : flags, padded to a word
3729 0x0034 0x00000000 : empty fini
3730 0x0038 0x00000000 :
3731 0x003C 0x00000000 :
3732 0x0040 init name
9a4c7f16
TR
3733 0x0040 + initsz fini name */
3734
3735 data_buffer_size = 0x0040 + initsz + finisz;
2a52da53 3736 data_buffer_size = (data_buffer_size + 7) &~ (bfd_size_type) 7;
330693f5 3737 data_buffer = NULL;
9bab7074 3738 data_buffer = (bfd_byte *) bfd_zmalloc (data_buffer_size);
330693f5 3739 if (data_buffer == NULL)
b34976b6 3740 return FALSE;
9a4c7f16 3741
cf9ab45b 3742 if (initsz)
9a4c7f16
TR
3743 {
3744 val = 0x10;
3745 bfd_h_put_32 (abfd, val, &data_buffer[0x04]);
3746 val = 0x40;
3747 bfd_h_put_32 (abfd, val, &data_buffer[0x14]);
3748 memcpy (&data_buffer[val], init, initsz);
3749 }
3750
cf9ab45b 3751 if (finisz)
9a4c7f16
TR
3752 {
3753 val = 0x28;
3754 bfd_h_put_32 (abfd, val, &data_buffer[0x08]);
3755 val = 0x40 + initsz;
3756 bfd_h_put_32 (abfd, val, &data_buffer[0x2C]);
3757 memcpy (&data_buffer[val], fini, finisz);
3758 }
3759
3760 val = 0x0C;
3761 bfd_h_put_32 (abfd, val, &data_buffer[0x0C]);
3762
3763 scnhdr.s_size = data_buffer_size;
3764
3765 /* string table */
3766 string_table_size = 0;
cf9ab45b 3767 if (initsz > 9)
9a4c7f16
TR
3768 string_table_size += initsz;
3769 if (finisz > 9)
3770 string_table_size += finisz;
3771 if (string_table_size)
3772 {
3773 string_table_size += 4;
9bab7074 3774 string_table = (bfd_byte *) bfd_zmalloc (string_table_size);
021d6096 3775 if (string_table == NULL)
b34976b6 3776 return FALSE;
9bab7074 3777
9a4c7f16
TR
3778 val = string_table_size;
3779 bfd_h_put_32 (abfd, val, &string_table[0]);
3780 st_tmp = string_table + 4;
3781 }
cf9ab45b
AM
3782
3783 /* symbols
9a4c7f16
TR
3784 0. .data csect
3785 2. __rtinit
cf9ab45b
AM
3786 4. init function
3787 6. fini function
69f284c7
TR
3788 8. __rtld */
3789 memset (syment_ext, 0, 10 * SYMESZ);
3790 memset (reloc_ext, 0, 3 * RELSZ);
9a4c7f16
TR
3791
3792 /* .data csect */
3793 memset (&syment, 0, sizeof (struct internal_syment));
3794 memset (&auxent, 0, sizeof (union internal_auxent));
3795 memcpy (syment._n._n_name, data_name, strlen (data_name));
3796 syment.n_scnum = 1;
3797 syment.n_sclass = C_HIDEXT;
3798 syment.n_numaux = 1;
3799 auxent.x_csect.x_scnlen.l = data_buffer_size;
3800 auxent.x_csect.x_smtyp = 3 << 3 | XTY_SD;
3801 auxent.x_csect.x_smclas = XMC_RW;
cf9ab45b 3802 bfd_coff_swap_sym_out (abfd, &syment,
9a4c7f16 3803 &syment_ext[filehdr.f_nsyms * SYMESZ]);
cf9ab45b
AM
3804 bfd_coff_swap_aux_out (abfd, &auxent, syment.n_type, syment.n_sclass, 0,
3805 syment.n_numaux,
9a4c7f16
TR
3806 &syment_ext[(filehdr.f_nsyms + 1) * SYMESZ]);
3807 filehdr.f_nsyms += 2;
3808
3809 /* __rtinit */
3810 memset (&syment, 0, sizeof (struct internal_syment));
3811 memset (&auxent, 0, sizeof (union internal_auxent));
3812 memcpy (syment._n._n_name, rtinit_name, strlen (rtinit_name));
3813 syment.n_scnum = 1;
3814 syment.n_sclass = C_EXT;
3815 syment.n_numaux = 1;
3816 auxent.x_csect.x_smtyp = XTY_LD;
3817 auxent.x_csect.x_smclas = XMC_RW;
cf9ab45b 3818 bfd_coff_swap_sym_out (abfd, &syment,
9a4c7f16 3819 &syment_ext[filehdr.f_nsyms * SYMESZ]);
cf9ab45b
AM
3820 bfd_coff_swap_aux_out (abfd, &auxent, syment.n_type, syment.n_sclass, 0,
3821 syment.n_numaux,
9a4c7f16
TR
3822 &syment_ext[(filehdr.f_nsyms + 1) * SYMESZ]);
3823 filehdr.f_nsyms += 2;
3824
3825 /* init */
cf9ab45b 3826 if (initsz)
9a4c7f16
TR
3827 {
3828 memset (&syment, 0, sizeof (struct internal_syment));
3829 memset (&auxent, 0, sizeof (union internal_auxent));
3830
cf9ab45b 3831 if (initsz > 9)
9a4c7f16
TR
3832 {
3833 syment._n._n_n._n_offset = st_tmp - string_table;
3834 memcpy (st_tmp, init, initsz);
3835 st_tmp += initsz;
3836 }
3837 else
3838 memcpy (syment._n._n_name, init, initsz - 1);
3839
3840 syment.n_sclass = C_EXT;
3841 syment.n_numaux = 1;
cf9ab45b 3842 bfd_coff_swap_sym_out (abfd, &syment,
9a4c7f16 3843 &syment_ext[filehdr.f_nsyms * SYMESZ]);
cf9ab45b
AM
3844 bfd_coff_swap_aux_out (abfd, &auxent, syment.n_type, syment.n_sclass, 0,
3845 syment.n_numaux,
9a4c7f16
TR
3846 &syment_ext[(filehdr.f_nsyms + 1) * SYMESZ]);
3847
3848 /* reloc */
3849 memset (&reloc, 0, sizeof (struct internal_reloc));
3850 reloc.r_vaddr = 0x0010;
3851 reloc.r_symndx = filehdr.f_nsyms;
3852 reloc.r_type = R_POS;
3853 reloc.r_size = 31;
3854 bfd_coff_swap_reloc_out (abfd, &reloc, &reloc_ext[0]);
3855
3856 filehdr.f_nsyms += 2;
3857 scnhdr.s_nreloc += 1;
3858 }
cf9ab45b 3859
9a4c7f16 3860 /* fini */
cf9ab45b 3861 if (finisz)
9a4c7f16
TR
3862 {
3863 memset (&syment, 0, sizeof (struct internal_syment));
3864 memset (&auxent, 0, sizeof (union internal_auxent));
3865
cf9ab45b 3866 if (finisz > 9)
9a4c7f16
TR
3867 {
3868 syment._n._n_n._n_offset = st_tmp - string_table;
3869 memcpy (st_tmp, fini, finisz);
3870 st_tmp += finisz;
3871 }
3872 else
3873 memcpy (syment._n._n_name, fini, finisz - 1);
3874
3875 syment.n_sclass = C_EXT;
3876 syment.n_numaux = 1;
cf9ab45b 3877 bfd_coff_swap_sym_out (abfd, &syment,
9a4c7f16 3878 &syment_ext[filehdr.f_nsyms * SYMESZ]);
cf9ab45b
AM
3879 bfd_coff_swap_aux_out (abfd, &auxent, syment.n_type, syment.n_sclass, 0,
3880 syment.n_numaux,
9a4c7f16
TR
3881 &syment_ext[(filehdr.f_nsyms + 1) * SYMESZ]);
3882
3883 /* reloc */
3884 memset (&reloc, 0, sizeof (struct internal_reloc));
3885 reloc.r_vaddr = 0x0028;
3886 reloc.r_symndx = filehdr.f_nsyms;
3887 reloc.r_type = R_POS;
3888 reloc.r_size = 31;
cf9ab45b 3889 bfd_coff_swap_reloc_out (abfd, &reloc,
9a4c7f16
TR
3890 &reloc_ext[scnhdr.s_nreloc * RELSZ]);
3891
3892 filehdr.f_nsyms += 2;
3893 scnhdr.s_nreloc += 1;
3894 }
3895
69f284c7
TR
3896 if (rtld)
3897 {
3898 memset (&syment, 0, sizeof (struct internal_syment));
3899 memset (&auxent, 0, sizeof (union internal_auxent));
3900 memcpy (syment._n._n_name, rtld_name, strlen (rtld_name));
3901 syment.n_sclass = C_EXT;
3902 syment.n_numaux = 1;
cf9ab45b 3903 bfd_coff_swap_sym_out (abfd, &syment,
69f284c7 3904 &syment_ext[filehdr.f_nsyms * SYMESZ]);
cf9ab45b
AM
3905 bfd_coff_swap_aux_out (abfd, &auxent, syment.n_type, syment.n_sclass, 0,
3906 syment.n_numaux,
69f284c7
TR
3907 &syment_ext[(filehdr.f_nsyms + 1) * SYMESZ]);
3908
3909 /* reloc */
3910 memset (&reloc, 0, sizeof (struct internal_reloc));
3911 reloc.r_vaddr = 0x0000;
3912 reloc.r_symndx = filehdr.f_nsyms;
3913 reloc.r_type = R_POS;
3914 reloc.r_size = 31;
cf9ab45b 3915 bfd_coff_swap_reloc_out (abfd, &reloc,
69f284c7
TR
3916 &reloc_ext[scnhdr.s_nreloc * RELSZ]);
3917
3918 filehdr.f_nsyms += 2;
3919 scnhdr.s_nreloc += 1;
3920 }
3921
9a4c7f16
TR
3922 scnhdr.s_relptr = scnhdr.s_scnptr + data_buffer_size;
3923 filehdr.f_symptr = scnhdr.s_relptr + scnhdr.s_nreloc * RELSZ;
3924
3925 bfd_coff_swap_filehdr_out (abfd, &filehdr, filehdr_ext);
3926 bfd_bwrite (filehdr_ext, FILHSZ, abfd);
3927 bfd_coff_swap_scnhdr_out (abfd, &scnhdr, scnhdr_ext);
3928 bfd_bwrite (scnhdr_ext, SCNHSZ, abfd);
3929 bfd_bwrite (data_buffer, data_buffer_size, abfd);
3930 bfd_bwrite (reloc_ext, scnhdr.s_nreloc * RELSZ, abfd);
3931 bfd_bwrite (syment_ext, filehdr.f_nsyms * SYMESZ, abfd);
3932 bfd_bwrite (string_table, string_table_size, abfd);
3933
330693f5
TR
3934 free (data_buffer);
3935 data_buffer = NULL;
3936
b34976b6 3937 return TRUE;
9a4c7f16
TR
3938}
3939
beb1bf64
TR
3940
3941static reloc_howto_type xcoff_dynamic_reloc =
cf9ab45b
AM
3942HOWTO (0, /* type */
3943 0, /* rightshift */
3944 2, /* size (0 = byte, 1 = short, 2 = long) */
3945 32, /* bitsize */
b34976b6 3946 FALSE, /* pc_relative */
cf9ab45b 3947 0, /* bitpos */
beb1bf64 3948 complain_overflow_bitfield, /* complain_on_overflow */
cf9ab45b
AM
3949 0, /* special_function */
3950 "R_POS", /* name */
b34976b6 3951 TRUE, /* partial_inplace */
cf9ab45b
AM
3952 0xffffffff, /* src_mask */
3953 0xffffffff, /* dst_mask */
b34976b6 3954 FALSE); /* pcrel_offset */
beb1bf64 3955
dc810e39
AM
3956/* glink
3957
3958 The first word of global linkage code must be modified by filling in
f4ffd778
NC
3959 the correct TOC offset. */
3960
beb1bf64 3961static unsigned long xcoff_glink_code[9] =
f4ffd778
NC
3962 {
3963 0x81820000, /* lwz r12,0(r2) */
3964 0x90410014, /* stw r2,20(r1) */
3965 0x800c0000, /* lwz r0,0(r12) */
3966 0x804c0004, /* lwz r2,4(r12) */
3967 0x7c0903a6, /* mtctr r0 */
3968 0x4e800420, /* bctr */
3969 0x00000000, /* start of traceback table */
3970 0x000c8000, /* traceback table */
3971 0x00000000, /* traceback table */
3972 };
beb1bf64 3973
85645aed
TG
3974/* Table to convert DWARF flags to section names. */
3975
3976const struct xcoff_dwsect_name xcoff_dwsect_names[] = {
3977 { SSUBTYP_DWINFO, ".dwinfo", TRUE },
3978 { SSUBTYP_DWLINE, ".dwline", TRUE },
3979 { SSUBTYP_DWPBNMS, ".dwpbnms", TRUE },
3980 { SSUBTYP_DWPBTYP, ".dwpbtyp", TRUE },
3981 { SSUBTYP_DWARNGE, ".dwarnge", TRUE },
3982 { SSUBTYP_DWABREV, ".dwabrev", FALSE },
3983 { SSUBTYP_DWSTR, ".dwstr", TRUE },
3984 { SSUBTYP_DWRNGES, ".dwrnges", TRUE }
3985};
beb1bf64 3986
09bf66a8
TG
3987/* For generic entry points. */
3988#define _bfd_xcoff_close_and_cleanup _bfd_archive_close_and_cleanup
d00dd7dc 3989#define _bfd_xcoff_bfd_free_cached_info _bfd_bool_bfd_true
09bf66a8
TG
3990#define _bfd_xcoff_new_section_hook coff_new_section_hook
3991#define _bfd_xcoff_get_section_contents _bfd_generic_get_section_contents
3992#define _bfd_xcoff_get_section_contents_in_window \
3993 _bfd_generic_get_section_contents_in_window
3994
3995/* For copy private data entry points. */
3996#define _bfd_xcoff_bfd_copy_private_bfd_data \
3997 _bfd_xcoff_copy_private_bfd_data
3998#define _bfd_xcoff_bfd_merge_private_bfd_data \
3999 _bfd_generic_bfd_merge_private_bfd_data
4000#define _bfd_xcoff_bfd_copy_private_section_data \
4001 _bfd_generic_bfd_copy_private_section_data
4002#define _bfd_xcoff_bfd_copy_private_symbol_data \
4003 _bfd_generic_bfd_copy_private_symbol_data
4004#define _bfd_xcoff_bfd_copy_private_header_data \
4005 _bfd_generic_bfd_copy_private_header_data
4006#define _bfd_xcoff_bfd_set_private_flags \
4007 _bfd_generic_bfd_set_private_flags
4008#define _bfd_xcoff_bfd_print_private_bfd_data \
4009 _bfd_generic_bfd_print_private_bfd_data
4010
4011/* For archive entry points. */
4012#define _bfd_xcoff_slurp_extended_name_table \
4013 _bfd_noarchive_slurp_extended_name_table
4014#define _bfd_xcoff_construct_extended_name_table \
4015 _bfd_noarchive_construct_extended_name_table
4016#define _bfd_xcoff_truncate_arname bfd_dont_truncate_arname
4017#define _bfd_xcoff_write_ar_hdr _bfd_generic_write_ar_hdr
4018#define _bfd_xcoff_get_elt_at_index _bfd_generic_get_elt_at_index
4019#define _bfd_xcoff_generic_stat_arch_elt _bfd_xcoff_stat_arch_elt
d00dd7dc 4020#define _bfd_xcoff_update_armap_timestamp _bfd_bool_bfd_true
09bf66a8
TG
4021
4022/* For symbols entry points. */
4023#define _bfd_xcoff_get_symtab_upper_bound coff_get_symtab_upper_bound
4024#define _bfd_xcoff_canonicalize_symtab coff_canonicalize_symtab
4025#define _bfd_xcoff_make_empty_symbol coff_make_empty_symbol
4026#define _bfd_xcoff_print_symbol coff_print_symbol
4027#define _bfd_xcoff_get_symbol_info coff_get_symbol_info
60bb06bc
L
4028#define _bfd_xcoff_get_symbol_version_string \
4029 _bfd_nosymbols_get_symbol_version_string
09bf66a8
TG
4030#define _bfd_xcoff_bfd_is_local_label_name _bfd_xcoff_is_local_label_name
4031#define _bfd_xcoff_bfd_is_target_special_symbol \
4032 coff_bfd_is_target_special_symbol
4033#define _bfd_xcoff_get_lineno coff_get_lineno
fb167eb2 4034#define _bfd_xcoff_find_nearest_line coff_find_nearest_line
9c461f7d 4035#define _bfd_xcoff_find_line coff_find_line
09bf66a8
TG
4036#define _bfd_xcoff_find_inliner_info coff_find_inliner_info
4037#define _bfd_xcoff_bfd_make_debug_symbol coff_bfd_make_debug_symbol
4038#define _bfd_xcoff_read_minisymbols _bfd_generic_read_minisymbols
4039#define _bfd_xcoff_minisymbol_to_symbol _bfd_generic_minisymbol_to_symbol
4040
4041/* For reloc entry points. */
4042#define _bfd_xcoff_get_reloc_upper_bound coff_get_reloc_upper_bound
4043#define _bfd_xcoff_canonicalize_reloc coff_canonicalize_reloc
23186865 4044#define _bfd_xcoff_set_reloc _bfd_generic_set_reloc
09bf66a8
TG
4045#define _bfd_xcoff_bfd_reloc_type_lookup _bfd_xcoff_reloc_type_lookup
4046#define _bfd_xcoff_bfd_reloc_name_lookup _bfd_xcoff_reloc_name_lookup
4047
4048/* For link entry points. */
4049#define _bfd_xcoff_bfd_get_relocated_section_contents \
4050 bfd_generic_get_relocated_section_contents
4051#define _bfd_xcoff_bfd_relax_section bfd_generic_relax_section
4052#define _bfd_xcoff_bfd_link_hash_table_free _bfd_generic_link_hash_table_free
4053#define _bfd_xcoff_bfd_link_just_syms _bfd_generic_link_just_syms
4054#define _bfd_xcoff_bfd_copy_link_hash_symbol_type \
4055 _bfd_generic_copy_link_hash_symbol_type
4056#define _bfd_xcoff_bfd_link_split_section _bfd_generic_link_split_section
4057#define _bfd_xcoff_bfd_gc_sections bfd_generic_gc_sections
4058#define _bfd_xcoff_bfd_lookup_section_flags bfd_generic_lookup_section_flags
4059#define _bfd_xcoff_bfd_merge_sections bfd_generic_merge_sections
4060#define _bfd_xcoff_bfd_is_group_section bfd_generic_is_group_section
cb7f4b29 4061#define _bfd_xcoff_bfd_group_name bfd_generic_group_name
09bf66a8
TG
4062#define _bfd_xcoff_bfd_discard_group bfd_generic_discard_group
4063#define _bfd_xcoff_section_already_linked _bfd_generic_section_already_linked
4064#define _bfd_xcoff_bfd_define_common_symbol _bfd_xcoff_define_common_symbol
34a87bb0 4065#define _bfd_xcoff_bfd_link_hide_symbol _bfd_generic_link_hide_symbol
7dba9362 4066#define _bfd_xcoff_bfd_define_start_stop bfd_generic_define_start_stop
4f3b23b3 4067#define _bfd_xcoff_bfd_link_check_relocs _bfd_generic_link_check_relocs
09bf66a8
TG
4068
4069/* For dynamic symbols and relocs entry points. */
4070#define _bfd_xcoff_get_synthetic_symtab _bfd_nodynamic_get_synthetic_symtab
4071
dc810e39 4072static const struct xcoff_backend_data_rec bfd_xcoff_backend_data =
f4ffd778
NC
4073 {
4074 { /* COFF backend, defined in libcoff.h. */
cf9ab45b
AM
4075 _bfd_xcoff_swap_aux_in,
4076 _bfd_xcoff_swap_sym_in,
4077 coff_swap_lineno_in,
4078 _bfd_xcoff_swap_aux_out,
4079 _bfd_xcoff_swap_sym_out,
4080 coff_swap_lineno_out,
4081 xcoff_swap_reloc_out,
4082 coff_swap_filehdr_out,
4083 coff_swap_aouthdr_out,
4084 coff_swap_scnhdr_out,
4085 FILHSZ,
4086 AOUTSZ,
4087 SCNHSZ,
4088 SYMESZ,
4089 AUXESZ,
4090 RELSZ,
4091 LINESZ,
4092 FILNMLEN,
b34976b6 4093 TRUE, /* _bfd_coff_long_filenames */
88183869 4094 XCOFF_NO_LONG_SECTION_NAMES, /* _bfd_coff_long_section_names */
cf9ab45b 4095 3, /* _bfd_coff_default_section_alignment_power */
b34976b6 4096 FALSE, /* _bfd_coff_force_symnames_in_strings */
cf9ab45b 4097 2, /* _bfd_coff_debug_string_prefix_length */
167ad85b 4098 32768, /* _bfd_coff_max_nscns */
cf9ab45b
AM
4099 coff_swap_filehdr_in,
4100 coff_swap_aouthdr_in,
4101 coff_swap_scnhdr_in,
4102 xcoff_swap_reloc_in,
4103 coff_bad_format_hook,
4104 coff_set_arch_mach_hook,
4105 coff_mkobject_hook,
4106 styp_to_sec_flags,
4107 coff_set_alignment_hook,
4108 coff_slurp_symbol_table,
4109 symname_in_debug_hook,
4110 coff_pointerize_aux_hook,
4111 coff_print_aux,
4112 dummy_reloc16_extra_cases,
4113 dummy_reloc16_estimate,
4114 NULL, /* bfd_coff_sym_is_global */
4115 coff_compute_section_file_positions,
4116 NULL, /* _bfd_coff_start_final_link */
4117 xcoff_ppc_relocate_section,
4118 coff_rtype_to_howto,
4119 NULL, /* _bfd_coff_adjust_symndx */
4120 _bfd_generic_link_add_one_symbol,
4121 coff_link_output_has_begun,
2b5c217d
NC
4122 coff_final_link_postscript,
4123 NULL /* print_pdata. */
f4ffd778
NC
4124 },
4125
cf9ab45b
AM
4126 0x01DF, /* magic number */
4127 bfd_arch_rs6000,
4128 bfd_mach_rs6k,
dc810e39 4129
f4ffd778 4130 /* Function pointers to xcoff specific swap routines. */
cf9ab45b
AM
4131 xcoff_swap_ldhdr_in,
4132 xcoff_swap_ldhdr_out,
4133 xcoff_swap_ldsym_in,
4134 xcoff_swap_ldsym_out,
4135 xcoff_swap_ldrel_in,
4136 xcoff_swap_ldrel_out,
f4ffd778
NC
4137
4138 /* Sizes. */
cf9ab45b
AM
4139 LDHDRSZ,
4140 LDSYMSZ,
4141 LDRELSZ,
4142 12, /* _xcoff_function_descriptor_size */
4143 SMALL_AOUTSZ,
f4ffd778 4144
cf9ab45b
AM
4145 /* Versions. */
4146 1, /* _xcoff_ldhdr_version */
f4ffd778 4147
cf9ab45b
AM
4148 _bfd_xcoff_put_symbol_name,
4149 _bfd_xcoff_put_ldsymbol_name,
4150 &xcoff_dynamic_reloc,
4151 xcoff_create_csect_from_smclas,
f4ffd778
NC
4152
4153 /* Lineno and reloc count overflow. */
4154 xcoff_is_lineno_count_overflow,
4155 xcoff_is_reloc_count_overflow,
4156
4157 xcoff_loader_symbol_offset,
4158 xcoff_loader_reloc_offset,
4159
4160 /* glink. */
cf9ab45b
AM
4161 &xcoff_glink_code[0],
4162 36, /* _xcoff_glink_size */
9a4c7f16
TR
4163
4164 /* rtinit */
cf9ab45b
AM
4165 64, /* _xcoff_rtinit_size */
4166 xcoff_generate_rtinit,
4167 };
beb1bf64 4168
eb1e0e80 4169/* The transfer vector that leads the outside world to all of the above. */
6d00b590 4170const bfd_target rs6000_xcoff_vec =
cf9ab45b
AM
4171 {
4172 "aixcoff-rs6000",
4173 bfd_target_xcoff_flavour,
4174 BFD_ENDIAN_BIG, /* data byte order is big */
4175 BFD_ENDIAN_BIG, /* header byte order is big */
4176
4177 (HAS_RELOC | EXEC_P | HAS_LINENO | HAS_DEBUG | DYNAMIC
4178 | HAS_SYMS | HAS_LOCALS | WP_TEXT),
4179
a7c71b0c 4180 SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD | SEC_RELOC | SEC_CODE | SEC_DATA,
cf9ab45b
AM
4181 0, /* leading char */
4182 '/', /* ar_pad_char */
4183 15, /* ar_max_namelen */
0aabe54e 4184 0, /* match priority. */
cf9ab45b
AM
4185
4186 /* data */
4187 bfd_getb64,
4188 bfd_getb_signed_64,
4189 bfd_putb64,
4190 bfd_getb32,
4191 bfd_getb_signed_32,
4192 bfd_putb32,
4193 bfd_getb16,
4194 bfd_getb_signed_16,
4195 bfd_putb16,
4196
4197 /* hdrs */
4198 bfd_getb64,
4199 bfd_getb_signed_64,
4200 bfd_putb64,
4201 bfd_getb32,
4202 bfd_getb_signed_32,
4203 bfd_putb32,
4204 bfd_getb16,
4205 bfd_getb_signed_16,
4206 bfd_putb16,
4207
4208 { /* bfd_check_format */
4209 _bfd_dummy_target,
4210 coff_object_p,
4211 _bfd_xcoff_archive_p,
4212 CORE_FILE_P
4213 },
dc810e39 4214
cf9ab45b 4215 { /* bfd_set_format */
d00dd7dc 4216 _bfd_bool_bfd_false_error,
cf9ab45b
AM
4217 coff_mkobject,
4218 _bfd_generic_mkarchive,
d00dd7dc 4219 _bfd_bool_bfd_false_error
cf9ab45b
AM
4220 },
4221
4222 {/* bfd_write_contents */
d00dd7dc 4223 _bfd_bool_bfd_false_error,
cf9ab45b
AM
4224 coff_write_object_contents,
4225 _bfd_xcoff_write_archive_contents,
d00dd7dc 4226 _bfd_bool_bfd_false_error
cf9ab45b
AM
4227 },
4228
09bf66a8
TG
4229 BFD_JUMP_TABLE_GENERIC (_bfd_xcoff),
4230 BFD_JUMP_TABLE_COPY (_bfd_xcoff),
261b8d08 4231 BFD_JUMP_TABLE_CORE (coff),
09bf66a8
TG
4232 BFD_JUMP_TABLE_ARCHIVE (_bfd_xcoff),
4233 BFD_JUMP_TABLE_SYMBOLS (_bfd_xcoff),
4234 BFD_JUMP_TABLE_RELOCS (_bfd_xcoff),
4235 BFD_JUMP_TABLE_WRITE (coff),
4236 BFD_JUMP_TABLE_LINK (_bfd_xcoff),
4237 BFD_JUMP_TABLE_DYNAMIC (_bfd_xcoff),
cf9ab45b
AM
4238
4239 /* Opposite endian version, none exists */
4240 NULL,
4241
2c3fc389 4242 & bfd_xcoff_backend_data,
cf9ab45b 4243 };
beb1bf64 4244
cf9ab45b
AM
4245/* xcoff-powermac target
4246 Old target.
4247 Only difference between this target and the rs6000 target is the
4248 the default architecture and machine type used in coffcode.h
4249
4250 PowerPC Macs use the same magic numbers as RS/6000
4251 (because that's how they were bootstrapped originally),
4252 but they are always PowerPC architecture. */
dc810e39 4253static const struct xcoff_backend_data_rec bfd_pmac_xcoff_backend_data =
cf9ab45b
AM
4254 {
4255 { /* COFF backend, defined in libcoff.h. */
4256 _bfd_xcoff_swap_aux_in,
4257 _bfd_xcoff_swap_sym_in,
4258 coff_swap_lineno_in,
4259 _bfd_xcoff_swap_aux_out,
4260 _bfd_xcoff_swap_sym_out,
4261 coff_swap_lineno_out,
4262 xcoff_swap_reloc_out,
4263 coff_swap_filehdr_out,
4264 coff_swap_aouthdr_out,
4265 coff_swap_scnhdr_out,
4266 FILHSZ,
4267 AOUTSZ,
4268 SCNHSZ,
4269 SYMESZ,
4270 AUXESZ,
4271 RELSZ,
4272 LINESZ,
4273 FILNMLEN,
b34976b6 4274 TRUE, /* _bfd_coff_long_filenames */
88183869 4275 XCOFF_NO_LONG_SECTION_NAMES, /* _bfd_coff_long_section_names */
cf9ab45b 4276 3, /* _bfd_coff_default_section_alignment_power */
b34976b6 4277 FALSE, /* _bfd_coff_force_symnames_in_strings */
cf9ab45b 4278 2, /* _bfd_coff_debug_string_prefix_length */
167ad85b 4279 32768, /* _bfd_coff_max_nscns */
cf9ab45b
AM
4280 coff_swap_filehdr_in,
4281 coff_swap_aouthdr_in,
4282 coff_swap_scnhdr_in,
4283 xcoff_swap_reloc_in,
4284 coff_bad_format_hook,
4285 coff_set_arch_mach_hook,
4286 coff_mkobject_hook,
4287 styp_to_sec_flags,
4288 coff_set_alignment_hook,
4289 coff_slurp_symbol_table,
4290 symname_in_debug_hook,
4291 coff_pointerize_aux_hook,
4292 coff_print_aux,
4293 dummy_reloc16_extra_cases,
4294 dummy_reloc16_estimate,
4295 NULL, /* bfd_coff_sym_is_global */
4296 coff_compute_section_file_positions,
4297 NULL, /* _bfd_coff_start_final_link */
4298 xcoff_ppc_relocate_section,
4299 coff_rtype_to_howto,
4300 NULL, /* _bfd_coff_adjust_symndx */
4301 _bfd_generic_link_add_one_symbol,
4302 coff_link_output_has_begun,
2b5c217d
NC
4303 coff_final_link_postscript,
4304 NULL /* print_pdata. */
cf9ab45b
AM
4305 },
4306
4307 0x01DF, /* magic number */
4308 bfd_arch_powerpc,
4309 bfd_mach_ppc,
4310
4311 /* Function pointers to xcoff specific swap routines. */
4312 xcoff_swap_ldhdr_in,
4313 xcoff_swap_ldhdr_out,
4314 xcoff_swap_ldsym_in,
4315 xcoff_swap_ldsym_out,
4316 xcoff_swap_ldrel_in,
4317 xcoff_swap_ldrel_out,
4318
4319 /* Sizes. */
4320 LDHDRSZ,
4321 LDSYMSZ,
4322 LDRELSZ,
4323 12, /* _xcoff_function_descriptor_size */
4324 SMALL_AOUTSZ,
4325
4326 /* Versions. */
4327 1, /* _xcoff_ldhdr_version */
4328
4329 _bfd_xcoff_put_symbol_name,
4330 _bfd_xcoff_put_ldsymbol_name,
4331 &xcoff_dynamic_reloc,
4332 xcoff_create_csect_from_smclas,
4333
4334 /* Lineno and reloc count overflow. */
4335 xcoff_is_lineno_count_overflow,
4336 xcoff_is_reloc_count_overflow,
4337
4338 xcoff_loader_symbol_offset,
4339 xcoff_loader_reloc_offset,
beb1bf64 4340
cf9ab45b
AM
4341 /* glink. */
4342 &xcoff_glink_code[0],
4343 36, /* _xcoff_glink_size */
4344
4345 /* rtinit */
4346 0, /* _xcoff_rtinit_size */
4347 xcoff_generate_rtinit,
4348 };
4349
4350/* The transfer vector that leads the outside world to all of the above. */
6d00b590 4351const bfd_target powerpc_xcoff_vec =
cf9ab45b
AM
4352 {
4353 "xcoff-powermac",
4354 bfd_target_xcoff_flavour,
4355 BFD_ENDIAN_BIG, /* data byte order is big */
4356 BFD_ENDIAN_BIG, /* header byte order is big */
4357
4358 (HAS_RELOC | EXEC_P | HAS_LINENO | HAS_DEBUG | DYNAMIC
4359 | HAS_SYMS | HAS_LOCALS | WP_TEXT),
4360
a7c71b0c 4361 SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD | SEC_RELOC | SEC_CODE | SEC_DATA,
cf9ab45b
AM
4362 0, /* leading char */
4363 '/', /* ar_pad_char */
4364 15, /* ar_max_namelen */
0aabe54e 4365 0, /* match priority. */
cf9ab45b
AM
4366
4367 /* data */
4368 bfd_getb64,
4369 bfd_getb_signed_64,
4370 bfd_putb64,
4371 bfd_getb32,
4372 bfd_getb_signed_32,
4373 bfd_putb32,
4374 bfd_getb16,
4375 bfd_getb_signed_16,
4376 bfd_putb16,
4377
4378 /* hdrs */
4379 bfd_getb64,
4380 bfd_getb_signed_64,
4381 bfd_putb64,
4382 bfd_getb32,
4383 bfd_getb_signed_32,
4384 bfd_putb32,
4385 bfd_getb16,
4386 bfd_getb_signed_16,
4387 bfd_putb16,
4388
4389 { /* bfd_check_format */
4390 _bfd_dummy_target,
4391 coff_object_p,
4392 _bfd_xcoff_archive_p,
4393 CORE_FILE_P
4394 },
4395
4396 { /* bfd_set_format */
d00dd7dc 4397 _bfd_bool_bfd_false_error,
cf9ab45b
AM
4398 coff_mkobject,
4399 _bfd_generic_mkarchive,
d00dd7dc 4400 _bfd_bool_bfd_false_error
cf9ab45b
AM
4401 },
4402
4403 {/* bfd_write_contents */
d00dd7dc 4404 _bfd_bool_bfd_false_error,
cf9ab45b
AM
4405 coff_write_object_contents,
4406 _bfd_xcoff_write_archive_contents,
d00dd7dc 4407 _bfd_bool_bfd_false_error
cf9ab45b 4408 },
dc810e39 4409
09bf66a8
TG
4410 BFD_JUMP_TABLE_GENERIC (_bfd_xcoff),
4411 BFD_JUMP_TABLE_COPY (_bfd_xcoff),
261b8d08 4412 BFD_JUMP_TABLE_CORE (coff),
09bf66a8
TG
4413 BFD_JUMP_TABLE_ARCHIVE (_bfd_xcoff),
4414 BFD_JUMP_TABLE_SYMBOLS (_bfd_xcoff),
4415 BFD_JUMP_TABLE_RELOCS (_bfd_xcoff),
4416 BFD_JUMP_TABLE_WRITE (coff),
4417 BFD_JUMP_TABLE_LINK (_bfd_xcoff),
4418 BFD_JUMP_TABLE_DYNAMIC (_bfd_xcoff),
cf9ab45b
AM
4419
4420 /* Opposite endian version, none exists */
4421 NULL,
4422
2c3fc389 4423 & bfd_pmac_xcoff_backend_data,
cf9ab45b 4424 };