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Linker part of PR16563 fix
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CommitLineData
277d1b5e 1/* Support for the generic parts of PE/PEI; the common executable parts.
4b95cf5c 2 Copyright (C) 1995-2014 Free Software Foundation, Inc.
277d1b5e
ILT
3 Written by Cygnus Solutions.
4
5e226794 5 This file is part of BFD, the Binary File Descriptor library.
277d1b5e 6
5e226794
NC
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
cd123cb7 9 the Free Software Foundation; either version 3 of the License, or
5e226794 10 (at your option) any later version.
277d1b5e 11
5e226794
NC
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
277d1b5e 16
5e226794
NC
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
cd123cb7
NC
19 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20 MA 02110-1301, USA. */
21
277d1b5e 22
6fa957a9 23/* Most of this hacked by Steve Chamberlain <sac@cygnus.com>.
277d1b5e 24
6fa957a9 25 PE/PEI rearrangement (and code added): Donn Terry
ca09e32b 26 Softway Systems, Inc. */
277d1b5e
ILT
27
28/* Hey look, some documentation [and in a place you expect to find it]!
29
30 The main reference for the pei format is "Microsoft Portable Executable
31 and Common Object File Format Specification 4.1". Get it if you need to
32 do some serious hacking on this code.
33
34 Another reference:
35 "Peering Inside the PE: A Tour of the Win32 Portable Executable
36 File Format", MSJ 1994, Volume 9.
37
38 The *sole* difference between the pe format and the pei format is that the
39 latter has an MSDOS 2.0 .exe header on the front that prints the message
40 "This app must be run under Windows." (or some such).
41 (FIXME: Whether that statement is *really* true or not is unknown.
42 Are there more subtle differences between pe and pei formats?
43 For now assume there aren't. If you find one, then for God sakes
44 document it here!)
45
46 The Microsoft docs use the word "image" instead of "executable" because
47 the former can also refer to a DLL (shared library). Confusion can arise
48 because the `i' in `pei' also refers to "image". The `pe' format can
49 also create images (i.e. executables), it's just that to run on a win32
50 system you need to use the pei format.
51
52 FIXME: Please add more docs here so the next poor fool that has to hack
53 on this code has a chance of getting something accomplished without
ca09e32b 54 wasting too much time. */
277d1b5e 55
99ad8390
NC
56/* This expands into COFF_WITH_pe, COFF_WITH_pep, or COFF_WITH_pex64
57 depending on whether we're compiling for straight PE or PE+. */
cbff5e0d
DD
58#define COFF_WITH_XX
59
277d1b5e 60#include "sysdep.h"
3db64b00 61#include "bfd.h"
277d1b5e
ILT
62#include "libbfd.h"
63#include "coff/internal.h"
5fdcb63c 64#include "bfdver.h"
5879bb8f
NC
65#ifdef HAVE_WCHAR_H
66#include <wchar.h>
67#endif
277d1b5e
ILT
68
69/* NOTE: it's strange to be including an architecture specific header
70 in what's supposed to be general (to PE/PEI) code. However, that's
71 where the definitions are, and they don't vary per architecture
72 within PE/PEI, so we get them from there. FIXME: The lack of
73 variance is an assumption which may prove to be incorrect if new
74 PE/PEI targets are created. */
99ad8390
NC
75#if defined COFF_WITH_pex64
76# include "coff/x86_64.h"
77#elif defined COFF_WITH_pep
cbff5e0d
DD
78# include "coff/ia64.h"
79#else
80# include "coff/i386.h"
81#endif
277d1b5e
ILT
82
83#include "coff/pe.h"
84#include "libcoff.h"
85#include "libpei.h"
5879bb8f 86#include "safe-ctype.h"
277d1b5e 87
99ad8390 88#if defined COFF_WITH_pep || defined COFF_WITH_pex64
cbff5e0d
DD
89# undef AOUTSZ
90# define AOUTSZ PEPAOUTSZ
91# define PEAOUTHDR PEPAOUTHDR
92#endif
93
5879bb8f
NC
94#define HighBitSet(val) ((val) & 0x80000000)
95#define SetHighBit(val) ((val) | 0x80000000)
96#define WithoutHighBit(val) ((val) & 0x7fffffff)
97
277d1b5e
ILT
98/* FIXME: This file has various tests of POWERPC_LE_PE. Those tests
99 worked when the code was in peicode.h, but no longer work now that
100 the code is in peigen.c. PowerPC NT is said to be dead. If
101 anybody wants to revive the code, you will have to figure out how
102 to handle those issues. */
1725a96e 103\f
277d1b5e 104void
7920ce38 105_bfd_XXi_swap_sym_in (bfd * abfd, void * ext1, void * in1)
277d1b5e 106{
6fa957a9
KH
107 SYMENT *ext = (SYMENT *) ext1;
108 struct internal_syment *in = (struct internal_syment *) in1;
277d1b5e 109
6fa957a9
KH
110 if (ext->e.e_name[0] == 0)
111 {
112 in->_n._n_n._n_zeroes = 0;
dc810e39 113 in->_n._n_n._n_offset = H_GET_32 (abfd, ext->e.e.e_offset);
6fa957a9
KH
114 }
115 else
1725a96e 116 memcpy (in->_n._n_name, ext->e.e_name, SYMNMLEN);
277d1b5e 117
dc810e39
AM
118 in->n_value = H_GET_32 (abfd, ext->e_value);
119 in->n_scnum = H_GET_16 (abfd, ext->e_scnum);
1725a96e 120
6fa957a9 121 if (sizeof (ext->e_type) == 2)
dc810e39 122 in->n_type = H_GET_16 (abfd, ext->e_type);
6fa957a9 123 else
dc810e39 124 in->n_type = H_GET_32 (abfd, ext->e_type);
1725a96e 125
dc810e39
AM
126 in->n_sclass = H_GET_8 (abfd, ext->e_sclass);
127 in->n_numaux = H_GET_8 (abfd, ext->e_numaux);
277d1b5e
ILT
128
129#ifndef STRICT_PE_FORMAT
6fa957a9 130 /* This is for Gnu-created DLLs. */
277d1b5e
ILT
131
132 /* The section symbols for the .idata$ sections have class 0x68
133 (C_SECTION), which MS documentation indicates is a section
134 symbol. Unfortunately, the value field in the symbol is simply a
135 copy of the .idata section's flags rather than something useful.
136 When these symbols are encountered, change the value to 0 so that
137 they will be handled somewhat correctly in the bfd code. */
138 if (in->n_sclass == C_SECTION)
139 {
383c383f 140 char namebuf[SYMNMLEN + 1];
ba775898 141 const char *name = NULL;
383c383f 142
277d1b5e
ILT
143 in->n_value = 0x0;
144
277d1b5e
ILT
145 /* Create synthetic empty sections as needed. DJ */
146 if (in->n_scnum == 0)
147 {
148 asection *sec;
1725a96e 149
383c383f
AM
150 name = _bfd_coff_internal_syment_name (abfd, in, namebuf);
151 if (name == NULL)
152 /* FIXME: Return error. */
153 abort ();
154 sec = bfd_get_section_by_name (abfd, name);
155 if (sec != NULL)
156 in->n_scnum = sec->target_index;
277d1b5e 157 }
1725a96e 158
277d1b5e
ILT
159 if (in->n_scnum == 0)
160 {
161 int unused_section_number = 0;
162 asection *sec;
117ed4f8 163 flagword flags;
1725a96e 164
6fa957a9 165 for (sec = abfd->sections; sec; sec = sec->next)
277d1b5e 166 if (unused_section_number <= sec->target_index)
6fa957a9 167 unused_section_number = sec->target_index + 1;
277d1b5e 168
383c383f
AM
169 if (name == namebuf)
170 {
a50b1753 171 name = (const char *) bfd_alloc (abfd, strlen (namebuf) + 1);
383c383f
AM
172 if (name == NULL)
173 /* FIXME: Return error. */
174 abort ();
175 strcpy ((char *) name, namebuf);
176 }
117ed4f8
AM
177 flags = SEC_HAS_CONTENTS | SEC_ALLOC | SEC_DATA | SEC_LOAD;
178 sec = bfd_make_section_anyway_with_flags (abfd, name, flags);
383c383f
AM
179 if (sec == NULL)
180 /* FIXME: Return error. */
181 abort ();
277d1b5e
ILT
182
183 sec->vma = 0;
184 sec->lma = 0;
eea6121a 185 sec->size = 0;
277d1b5e
ILT
186 sec->filepos = 0;
187 sec->rel_filepos = 0;
188 sec->reloc_count = 0;
189 sec->line_filepos = 0;
190 sec->lineno_count = 0;
191 sec->userdata = NULL;
7920ce38 192 sec->next = NULL;
277d1b5e 193 sec->alignment_power = 2;
277d1b5e
ILT
194
195 sec->target_index = unused_section_number;
196
197 in->n_scnum = unused_section_number;
198 }
199 in->n_sclass = C_STAT;
277d1b5e
ILT
200 }
201#endif
202
203#ifdef coff_swap_sym_in_hook
204 /* This won't work in peigen.c, but since it's for PPC PE, it's not
9602af51 205 worth fixing. */
6fa957a9 206 coff_swap_sym_in_hook (abfd, ext1, in1);
277d1b5e
ILT
207#endif
208}
209
32ae0d80
NC
210static bfd_boolean
211abs_finder (bfd * abfd ATTRIBUTE_UNUSED, asection * sec, void * data)
212{
213 bfd_vma abs_val = * (bfd_vma *) data;
214
3714081c 215 return (sec->vma <= abs_val) && ((sec->vma + (1ULL << 32)) > abs_val);
32ae0d80
NC
216}
217
277d1b5e 218unsigned int
7920ce38 219_bfd_XXi_swap_sym_out (bfd * abfd, void * inp, void * extp)
277d1b5e 220{
6fa957a9
KH
221 struct internal_syment *in = (struct internal_syment *) inp;
222 SYMENT *ext = (SYMENT *) extp;
1725a96e 223
6fa957a9
KH
224 if (in->_n._n_name[0] == 0)
225 {
dc810e39
AM
226 H_PUT_32 (abfd, 0, ext->e.e.e_zeroes);
227 H_PUT_32 (abfd, in->_n._n_n._n_offset, ext->e.e.e_offset);
6fa957a9
KH
228 }
229 else
1725a96e 230 memcpy (ext->e.e_name, in->_n._n_name, SYMNMLEN);
277d1b5e 231
32ae0d80
NC
232 /* The PE32 and PE32+ formats only use 4 bytes to hold the value of a
233 symbol. This is a problem on 64-bit targets where we can generate
234 absolute symbols with values >= 1^32. We try to work around this
235 problem by finding a section whose base address is sufficient to
236 reduce the absolute value to < 1^32, and then transforming the
237 symbol into a section relative symbol. This of course is a hack. */
238 if (sizeof (in->n_value) > 4
40af4a36
NC
239 /* The strange computation of the shift amount is here in order to
240 avoid a compile time warning about the comparison always being
241 false. It does not matter if this test fails to work as expected
242 as the worst that can happen is that some absolute symbols are
243 needlessly converted into section relative symbols. */
244 && in->n_value > ((1ULL << (sizeof (in->n_value) > 4 ? 32 : 31)) - 1)
32ae0d80
NC
245 && in->n_scnum == -1)
246 {
247 asection * sec;
248
249 sec = bfd_sections_find_if (abfd, abs_finder, & in->n_value);
250 if (sec)
251 {
252 in->n_value -= sec->vma;
253 in->n_scnum = sec->target_index;
254 }
255 /* else: FIXME: The value is outside the range of any section. This
88667baf 256 happens for __image_base__ and __ImageBase and maybe some other
32ae0d80
NC
257 symbols as well. We should find a way to handle these values. */
258 }
259
dc810e39
AM
260 H_PUT_32 (abfd, in->n_value, ext->e_value);
261 H_PUT_16 (abfd, in->n_scnum, ext->e_scnum);
1725a96e 262
9602af51 263 if (sizeof (ext->e_type) == 2)
dc810e39 264 H_PUT_16 (abfd, in->n_type, ext->e_type);
277d1b5e 265 else
dc810e39 266 H_PUT_32 (abfd, in->n_type, ext->e_type);
1725a96e 267
dc810e39
AM
268 H_PUT_8 (abfd, in->n_sclass, ext->e_sclass);
269 H_PUT_8 (abfd, in->n_numaux, ext->e_numaux);
277d1b5e
ILT
270
271 return SYMESZ;
272}
273
274void
7920ce38
NC
275_bfd_XXi_swap_aux_in (bfd * abfd,
276 void * ext1,
277 int type,
96d56e9f 278 int in_class,
7920ce38
NC
279 int indx ATTRIBUTE_UNUSED,
280 int numaux ATTRIBUTE_UNUSED,
281 void * in1)
277d1b5e 282{
6fa957a9
KH
283 AUXENT *ext = (AUXENT *) ext1;
284 union internal_auxent *in = (union internal_auxent *) in1;
285
96d56e9f 286 switch (in_class)
6fa957a9
KH
287 {
288 case C_FILE:
289 if (ext->x_file.x_fname[0] == 0)
290 {
291 in->x_file.x_n.x_zeroes = 0;
dc810e39 292 in->x_file.x_n.x_offset = H_GET_32 (abfd, ext->x_file.x_n.x_offset);
6fa957a9
KH
293 }
294 else
1725a96e 295 memcpy (in->x_file.x_fname, ext->x_file.x_fname, FILNMLEN);
277d1b5e 296 return;
6fa957a9
KH
297
298 case C_STAT:
299 case C_LEAFSTAT:
300 case C_HIDDEN:
301 if (type == T_NULL)
302 {
303 in->x_scn.x_scnlen = GET_SCN_SCNLEN (abfd, ext);
304 in->x_scn.x_nreloc = GET_SCN_NRELOC (abfd, ext);
305 in->x_scn.x_nlinno = GET_SCN_NLINNO (abfd, ext);
dc810e39
AM
306 in->x_scn.x_checksum = H_GET_32 (abfd, ext->x_scn.x_checksum);
307 in->x_scn.x_associated = H_GET_16 (abfd, ext->x_scn.x_associated);
308 in->x_scn.x_comdat = H_GET_8 (abfd, ext->x_scn.x_comdat);
6fa957a9
KH
309 return;
310 }
311 break;
277d1b5e 312 }
277d1b5e 313
dc810e39
AM
314 in->x_sym.x_tagndx.l = H_GET_32 (abfd, ext->x_sym.x_tagndx);
315 in->x_sym.x_tvndx = H_GET_16 (abfd, ext->x_sym.x_tvndx);
277d1b5e 316
96d56e9f
NC
317 if (in_class == C_BLOCK || in_class == C_FCN || ISFCN (type)
318 || ISTAG (in_class))
277d1b5e
ILT
319 {
320 in->x_sym.x_fcnary.x_fcn.x_lnnoptr = GET_FCN_LNNOPTR (abfd, ext);
321 in->x_sym.x_fcnary.x_fcn.x_endndx.l = GET_FCN_ENDNDX (abfd, ext);
322 }
323 else
324 {
325 in->x_sym.x_fcnary.x_ary.x_dimen[0] =
dc810e39 326 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[0]);
277d1b5e 327 in->x_sym.x_fcnary.x_ary.x_dimen[1] =
dc810e39 328 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[1]);
277d1b5e 329 in->x_sym.x_fcnary.x_ary.x_dimen[2] =
dc810e39 330 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[2]);
277d1b5e 331 in->x_sym.x_fcnary.x_ary.x_dimen[3] =
dc810e39 332 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[3]);
277d1b5e
ILT
333 }
334
6fa957a9
KH
335 if (ISFCN (type))
336 {
dc810e39 337 in->x_sym.x_misc.x_fsize = H_GET_32 (abfd, ext->x_sym.x_misc.x_fsize);
6fa957a9
KH
338 }
339 else
340 {
341 in->x_sym.x_misc.x_lnsz.x_lnno = GET_LNSZ_LNNO (abfd, ext);
342 in->x_sym.x_misc.x_lnsz.x_size = GET_LNSZ_SIZE (abfd, ext);
343 }
277d1b5e
ILT
344}
345
346unsigned int
7920ce38
NC
347_bfd_XXi_swap_aux_out (bfd * abfd,
348 void * inp,
349 int type,
96d56e9f 350 int in_class,
7920ce38
NC
351 int indx ATTRIBUTE_UNUSED,
352 int numaux ATTRIBUTE_UNUSED,
353 void * extp)
277d1b5e 354{
6fa957a9
KH
355 union internal_auxent *in = (union internal_auxent *) inp;
356 AUXENT *ext = (AUXENT *) extp;
357
7920ce38
NC
358 memset (ext, 0, AUXESZ);
359
96d56e9f 360 switch (in_class)
6fa957a9
KH
361 {
362 case C_FILE:
363 if (in->x_file.x_fname[0] == 0)
364 {
dc810e39
AM
365 H_PUT_32 (abfd, 0, ext->x_file.x_n.x_zeroes);
366 H_PUT_32 (abfd, in->x_file.x_n.x_offset, ext->x_file.x_n.x_offset);
6fa957a9
KH
367 }
368 else
1725a96e
NC
369 memcpy (ext->x_file.x_fname, in->x_file.x_fname, FILNMLEN);
370
277d1b5e 371 return AUXESZ;
6fa957a9
KH
372
373 case C_STAT:
374 case C_LEAFSTAT:
375 case C_HIDDEN:
376 if (type == T_NULL)
377 {
378 PUT_SCN_SCNLEN (abfd, in->x_scn.x_scnlen, ext);
379 PUT_SCN_NRELOC (abfd, in->x_scn.x_nreloc, ext);
380 PUT_SCN_NLINNO (abfd, in->x_scn.x_nlinno, ext);
dc810e39
AM
381 H_PUT_32 (abfd, in->x_scn.x_checksum, ext->x_scn.x_checksum);
382 H_PUT_16 (abfd, in->x_scn.x_associated, ext->x_scn.x_associated);
383 H_PUT_8 (abfd, in->x_scn.x_comdat, ext->x_scn.x_comdat);
6fa957a9
KH
384 return AUXESZ;
385 }
386 break;
277d1b5e 387 }
277d1b5e 388
dc810e39
AM
389 H_PUT_32 (abfd, in->x_sym.x_tagndx.l, ext->x_sym.x_tagndx);
390 H_PUT_16 (abfd, in->x_sym.x_tvndx, ext->x_sym.x_tvndx);
277d1b5e 391
96d56e9f
NC
392 if (in_class == C_BLOCK || in_class == C_FCN || ISFCN (type)
393 || ISTAG (in_class))
277d1b5e 394 {
6fa957a9
KH
395 PUT_FCN_LNNOPTR (abfd, in->x_sym.x_fcnary.x_fcn.x_lnnoptr, ext);
396 PUT_FCN_ENDNDX (abfd, in->x_sym.x_fcnary.x_fcn.x_endndx.l, ext);
277d1b5e
ILT
397 }
398 else
399 {
dc810e39
AM
400 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[0],
401 ext->x_sym.x_fcnary.x_ary.x_dimen[0]);
402 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[1],
403 ext->x_sym.x_fcnary.x_ary.x_dimen[1]);
404 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[2],
405 ext->x_sym.x_fcnary.x_ary.x_dimen[2]);
406 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[3],
407 ext->x_sym.x_fcnary.x_ary.x_dimen[3]);
277d1b5e
ILT
408 }
409
410 if (ISFCN (type))
dc810e39 411 H_PUT_32 (abfd, in->x_sym.x_misc.x_fsize, ext->x_sym.x_misc.x_fsize);
277d1b5e
ILT
412 else
413 {
414 PUT_LNSZ_LNNO (abfd, in->x_sym.x_misc.x_lnsz.x_lnno, ext);
415 PUT_LNSZ_SIZE (abfd, in->x_sym.x_misc.x_lnsz.x_size, ext);
416 }
417
418 return AUXESZ;
419}
420
421void
7920ce38 422_bfd_XXi_swap_lineno_in (bfd * abfd, void * ext1, void * in1)
277d1b5e 423{
6fa957a9
KH
424 LINENO *ext = (LINENO *) ext1;
425 struct internal_lineno *in = (struct internal_lineno *) in1;
277d1b5e 426
dc810e39 427 in->l_addr.l_symndx = H_GET_32 (abfd, ext->l_addr.l_symndx);
6fa957a9 428 in->l_lnno = GET_LINENO_LNNO (abfd, ext);
277d1b5e
ILT
429}
430
431unsigned int
7920ce38 432_bfd_XXi_swap_lineno_out (bfd * abfd, void * inp, void * outp)
277d1b5e 433{
6fa957a9
KH
434 struct internal_lineno *in = (struct internal_lineno *) inp;
435 struct external_lineno *ext = (struct external_lineno *) outp;
dc810e39 436 H_PUT_32 (abfd, in->l_addr.l_symndx, ext->l_addr.l_symndx);
277d1b5e
ILT
437
438 PUT_LINENO_LNNO (abfd, in->l_lnno, ext);
439 return LINESZ;
440}
441
442void
7920ce38
NC
443_bfd_XXi_swap_aouthdr_in (bfd * abfd,
444 void * aouthdr_ext1,
445 void * aouthdr_int1)
277d1b5e 446{
d13c9dc6 447 PEAOUTHDR * src = (PEAOUTHDR *) aouthdr_ext1;
7920ce38 448 AOUTHDR * aouthdr_ext = (AOUTHDR *) aouthdr_ext1;
d13c9dc6
L
449 struct internal_aouthdr *aouthdr_int
450 = (struct internal_aouthdr *) aouthdr_int1;
451 struct internal_extra_pe_aouthdr *a = &aouthdr_int->pe;
277d1b5e 452
dc810e39
AM
453 aouthdr_int->magic = H_GET_16 (abfd, aouthdr_ext->magic);
454 aouthdr_int->vstamp = H_GET_16 (abfd, aouthdr_ext->vstamp);
455 aouthdr_int->tsize = GET_AOUTHDR_TSIZE (abfd, aouthdr_ext->tsize);
456 aouthdr_int->dsize = GET_AOUTHDR_DSIZE (abfd, aouthdr_ext->dsize);
457 aouthdr_int->bsize = GET_AOUTHDR_BSIZE (abfd, aouthdr_ext->bsize);
458 aouthdr_int->entry = GET_AOUTHDR_ENTRY (abfd, aouthdr_ext->entry);
277d1b5e 459 aouthdr_int->text_start =
dc810e39 460 GET_AOUTHDR_TEXT_START (abfd, aouthdr_ext->text_start);
99ad8390 461#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
7920ce38 462 /* PE32+ does not have data_start member! */
277d1b5e 463 aouthdr_int->data_start =
dc810e39 464 GET_AOUTHDR_DATA_START (abfd, aouthdr_ext->data_start);
d13c9dc6 465 a->BaseOfData = aouthdr_int->data_start;
fac41780 466#endif
277d1b5e 467
d13c9dc6
L
468 a->Magic = aouthdr_int->magic;
469 a->MajorLinkerVersion = H_GET_8 (abfd, aouthdr_ext->vstamp);
470 a->MinorLinkerVersion = H_GET_8 (abfd, aouthdr_ext->vstamp + 1);
471 a->SizeOfCode = aouthdr_int->tsize ;
472 a->SizeOfInitializedData = aouthdr_int->dsize ;
473 a->SizeOfUninitializedData = aouthdr_int->bsize ;
474 a->AddressOfEntryPoint = aouthdr_int->entry;
475 a->BaseOfCode = aouthdr_int->text_start;
dc810e39
AM
476 a->ImageBase = GET_OPTHDR_IMAGE_BASE (abfd, src->ImageBase);
477 a->SectionAlignment = H_GET_32 (abfd, src->SectionAlignment);
478 a->FileAlignment = H_GET_32 (abfd, src->FileAlignment);
277d1b5e 479 a->MajorOperatingSystemVersion =
dc810e39 480 H_GET_16 (abfd, src->MajorOperatingSystemVersion);
277d1b5e 481 a->MinorOperatingSystemVersion =
dc810e39
AM
482 H_GET_16 (abfd, src->MinorOperatingSystemVersion);
483 a->MajorImageVersion = H_GET_16 (abfd, src->MajorImageVersion);
484 a->MinorImageVersion = H_GET_16 (abfd, src->MinorImageVersion);
485 a->MajorSubsystemVersion = H_GET_16 (abfd, src->MajorSubsystemVersion);
486 a->MinorSubsystemVersion = H_GET_16 (abfd, src->MinorSubsystemVersion);
487 a->Reserved1 = H_GET_32 (abfd, src->Reserved1);
488 a->SizeOfImage = H_GET_32 (abfd, src->SizeOfImage);
489 a->SizeOfHeaders = H_GET_32 (abfd, src->SizeOfHeaders);
490 a->CheckSum = H_GET_32 (abfd, src->CheckSum);
491 a->Subsystem = H_GET_16 (abfd, src->Subsystem);
492 a->DllCharacteristics = H_GET_16 (abfd, src->DllCharacteristics);
493 a->SizeOfStackReserve =
494 GET_OPTHDR_SIZE_OF_STACK_RESERVE (abfd, src->SizeOfStackReserve);
495 a->SizeOfStackCommit =
496 GET_OPTHDR_SIZE_OF_STACK_COMMIT (abfd, src->SizeOfStackCommit);
497 a->SizeOfHeapReserve =
498 GET_OPTHDR_SIZE_OF_HEAP_RESERVE (abfd, src->SizeOfHeapReserve);
499 a->SizeOfHeapCommit =
500 GET_OPTHDR_SIZE_OF_HEAP_COMMIT (abfd, src->SizeOfHeapCommit);
501 a->LoaderFlags = H_GET_32 (abfd, src->LoaderFlags);
502 a->NumberOfRvaAndSizes = H_GET_32 (abfd, src->NumberOfRvaAndSizes);
277d1b5e
ILT
503
504 {
505 int idx;
1725a96e 506
ce63b7b3 507 for (idx = 0; idx < a->NumberOfRvaAndSizes; idx++)
277d1b5e 508 {
6fa957a9
KH
509 /* If data directory is empty, rva also should be 0. */
510 int size =
dc810e39 511 H_GET_32 (abfd, src->DataDirectory[idx][1]);
99ad8390 512
3028b4c0
DD
513 a->DataDirectory[idx].Size = size;
514
515 if (size)
1725a96e 516 a->DataDirectory[idx].VirtualAddress =
dc810e39 517 H_GET_32 (abfd, src->DataDirectory[idx][0]);
6fa957a9 518 else
3028b4c0 519 a->DataDirectory[idx].VirtualAddress = 0;
277d1b5e
ILT
520 }
521 }
522
523 if (aouthdr_int->entry)
524 {
525 aouthdr_int->entry += a->ImageBase;
99ad8390 526#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
277d1b5e 527 aouthdr_int->entry &= 0xffffffff;
fac41780 528#endif
277d1b5e 529 }
1725a96e 530
9602af51 531 if (aouthdr_int->tsize)
277d1b5e
ILT
532 {
533 aouthdr_int->text_start += a->ImageBase;
99ad8390 534#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
277d1b5e 535 aouthdr_int->text_start &= 0xffffffff;
fac41780 536#endif
277d1b5e 537 }
1725a96e 538
99ad8390 539#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
7920ce38 540 /* PE32+ does not have data_start member! */
9602af51 541 if (aouthdr_int->dsize)
277d1b5e
ILT
542 {
543 aouthdr_int->data_start += a->ImageBase;
544 aouthdr_int->data_start &= 0xffffffff;
545 }
fac41780 546#endif
277d1b5e
ILT
547
548#ifdef POWERPC_LE_PE
549 /* These three fields are normally set up by ppc_relocate_section.
550 In the case of reading a file in, we can pick them up from the
551 DataDirectory. */
6c73cbb1
NC
552 first_thunk_address = a->DataDirectory[PE_IMPORT_ADDRESS_TABLE].VirtualAddress;
553 thunk_size = a->DataDirectory[PE_IMPORT_ADDRESS_TABLE].Size;
554 import_table_size = a->DataDirectory[PE_IMPORT_TABLE].Size;
277d1b5e 555#endif
277d1b5e
ILT
556}
557
5933bdc9
ILT
558/* A support function for below. */
559
560static void
7920ce38
NC
561add_data_entry (bfd * abfd,
562 struct internal_extra_pe_aouthdr *aout,
563 int idx,
564 char *name,
565 bfd_vma base)
277d1b5e
ILT
566{
567 asection *sec = bfd_get_section_by_name (abfd, name);
568
1725a96e 569 /* Add import directory information if it exists. */
277d1b5e
ILT
570 if ((sec != NULL)
571 && (coff_section_data (abfd, sec) != NULL)
572 && (pei_section_data (abfd, sec) != NULL))
573 {
1725a96e 574 /* If data directory is empty, rva also should be 0. */
3028b4c0
DD
575 int size = pei_section_data (abfd, sec)->virt_size;
576 aout->DataDirectory[idx].Size = size;
577
578 if (size)
6fa957a9
KH
579 {
580 aout->DataDirectory[idx].VirtualAddress =
581 (sec->vma - base) & 0xffffffff;
582 sec->flags |= SEC_DATA;
583 }
277d1b5e
ILT
584 }
585}
586
587unsigned int
7920ce38 588_bfd_XXi_swap_aouthdr_out (bfd * abfd, void * in, void * out)
277d1b5e 589{
6fa957a9 590 struct internal_aouthdr *aouthdr_in = (struct internal_aouthdr *) in;
cbff5e0d
DD
591 pe_data_type *pe = pe_data (abfd);
592 struct internal_extra_pe_aouthdr *extra = &pe->pe_opthdr;
6fa957a9 593 PEAOUTHDR *aouthdr_out = (PEAOUTHDR *) out;
fac41780 594 bfd_vma sa, fa, ib;
ca6dee30 595 IMAGE_DATA_DIRECTORY idata2, idata5, tls;
4e1fc599 596
fac41780
JW
597 sa = extra->SectionAlignment;
598 fa = extra->FileAlignment;
599 ib = extra->ImageBase;
277d1b5e 600
6c73cbb1
NC
601 idata2 = pe->pe_opthdr.DataDirectory[PE_IMPORT_TABLE];
602 idata5 = pe->pe_opthdr.DataDirectory[PE_IMPORT_ADDRESS_TABLE];
603 tls = pe->pe_opthdr.DataDirectory[PE_TLS_TABLE];
4e1fc599 604
9602af51 605 if (aouthdr_in->tsize)
277d1b5e
ILT
606 {
607 aouthdr_in->text_start -= ib;
99ad8390 608#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
277d1b5e 609 aouthdr_in->text_start &= 0xffffffff;
cbff5e0d 610#endif
277d1b5e 611 }
1725a96e 612
9602af51 613 if (aouthdr_in->dsize)
277d1b5e
ILT
614 {
615 aouthdr_in->data_start -= ib;
99ad8390 616#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
277d1b5e 617 aouthdr_in->data_start &= 0xffffffff;
cbff5e0d 618#endif
277d1b5e 619 }
1725a96e 620
9602af51 621 if (aouthdr_in->entry)
277d1b5e
ILT
622 {
623 aouthdr_in->entry -= ib;
99ad8390 624#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
277d1b5e 625 aouthdr_in->entry &= 0xffffffff;
cbff5e0d 626#endif
277d1b5e
ILT
627 }
628
6fa957a9
KH
629#define FA(x) (((x) + fa -1 ) & (- fa))
630#define SA(x) (((x) + sa -1 ) & (- sa))
277d1b5e 631
6fa957a9 632 /* We like to have the sizes aligned. */
277d1b5e
ILT
633 aouthdr_in->bsize = FA (aouthdr_in->bsize);
634
277d1b5e
ILT
635 extra->NumberOfRvaAndSizes = IMAGE_NUMBEROF_DIRECTORY_ENTRIES;
636
8181c403 637 add_data_entry (abfd, extra, 0, ".edata", ib);
9602af51 638 add_data_entry (abfd, extra, 2, ".rsrc", ib);
8181c403 639 add_data_entry (abfd, extra, 3, ".pdata", ib);
2fbadf2c 640
c25cfdf8
NC
641 /* In theory we do not need to call add_data_entry for .idata$2 or
642 .idata$5. It will be done in bfd_coff_final_link where all the
643 required information is available. If however, we are not going
644 to perform a final link, eg because we have been invoked by objcopy
645 or strip, then we need to make sure that these Data Directory
646 entries are initialised properly.
647
648 So - we copy the input values into the output values, and then, if
649 a final link is going to be performed, it can overwrite them. */
6c73cbb1
NC
650 extra->DataDirectory[PE_IMPORT_TABLE] = idata2;
651 extra->DataDirectory[PE_IMPORT_ADDRESS_TABLE] = idata5;
652 extra->DataDirectory[PE_TLS_TABLE] = tls;
c25cfdf8 653
6c73cbb1 654 if (extra->DataDirectory[PE_IMPORT_TABLE].VirtualAddress == 0)
c25cfdf8 655 /* Until other .idata fixes are made (pending patch), the entry for
7dee875e 656 .idata is needed for backwards compatibility. FIXME. */
c25cfdf8 657 add_data_entry (abfd, extra, 1, ".idata", ib);
4e1fc599 658
2fbadf2c
ILT
659 /* For some reason, the virtual size (which is what's set by
660 add_data_entry) for .reloc is not the same as the size recorded
661 in this slot by MSVC; it doesn't seem to cause problems (so far),
662 but since it's the best we've got, use it. It does do the right
663 thing for .pdata. */
cbff5e0d 664 if (pe->has_reloc_section)
8181c403 665 add_data_entry (abfd, extra, 5, ".reloc", ib);
277d1b5e
ILT
666
667 {
668 asection *sec;
d48bdb99 669 bfd_vma hsize = 0;
6fa957a9 670 bfd_vma dsize = 0;
d48bdb99 671 bfd_vma isize = 0;
6fa957a9 672 bfd_vma tsize = 0;
277d1b5e
ILT
673
674 for (sec = abfd->sections; sec; sec = sec->next)
675 {
7920ce38 676 int rounded = FA (sec->size);
277d1b5e 677
d48bdb99
AM
678 /* The first non-zero section filepos is the header size.
679 Sections without contents will have a filepos of 0. */
680 if (hsize == 0)
681 hsize = sec->filepos;
277d1b5e
ILT
682 if (sec->flags & SEC_DATA)
683 dsize += rounded;
684 if (sec->flags & SEC_CODE)
685 tsize += rounded;
5933bdc9
ILT
686 /* The image size is the total VIRTUAL size (which is what is
687 in the virt_size field). Files have been seen (from MSVC
688 5.0 link.exe) where the file size of the .data segment is
689 quite small compared to the virtual size. Without this
50572669
L
690 fix, strip munges the file.
691
692 FIXME: We need to handle holes between sections, which may
693 happpen when we covert from another format. We just use
694 the virtual address and virtual size of the last section
695 for the image size. */
98a96df7
CF
696 if (coff_section_data (abfd, sec) != NULL
697 && pei_section_data (abfd, sec) != NULL)
50572669
L
698 isize = (sec->vma - extra->ImageBase
699 + SA (FA (pei_section_data (abfd, sec)->virt_size)));
277d1b5e
ILT
700 }
701
702 aouthdr_in->dsize = dsize;
703 aouthdr_in->tsize = tsize;
d48bdb99 704 extra->SizeOfHeaders = hsize;
50572669 705 extra->SizeOfImage = isize;
277d1b5e
ILT
706 }
707
dc810e39 708 H_PUT_16 (abfd, aouthdr_in->magic, aouthdr_out->standard.magic);
277d1b5e 709
5fdcb63c
KT
710/* e.g. 219510000 is linker version 2.19 */
711#define LINKER_VERSION ((short) (BFD_VERSION / 1000000))
5933bdc9
ILT
712
713 /* This piece of magic sets the "linker version" field to
714 LINKER_VERSION. */
dc810e39
AM
715 H_PUT_16 (abfd, (LINKER_VERSION / 100 + (LINKER_VERSION % 100) * 256),
716 aouthdr_out->standard.vstamp);
717
718 PUT_AOUTHDR_TSIZE (abfd, aouthdr_in->tsize, aouthdr_out->standard.tsize);
719 PUT_AOUTHDR_DSIZE (abfd, aouthdr_in->dsize, aouthdr_out->standard.dsize);
720 PUT_AOUTHDR_BSIZE (abfd, aouthdr_in->bsize, aouthdr_out->standard.bsize);
721 PUT_AOUTHDR_ENTRY (abfd, aouthdr_in->entry, aouthdr_out->standard.entry);
277d1b5e 722 PUT_AOUTHDR_TEXT_START (abfd, aouthdr_in->text_start,
dc810e39 723 aouthdr_out->standard.text_start);
277d1b5e 724
99ad8390 725#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
c25cfdf8 726 /* PE32+ does not have data_start member! */
277d1b5e 727 PUT_AOUTHDR_DATA_START (abfd, aouthdr_in->data_start,
dc810e39 728 aouthdr_out->standard.data_start);
fac41780 729#endif
277d1b5e 730
dc810e39
AM
731 PUT_OPTHDR_IMAGE_BASE (abfd, extra->ImageBase, aouthdr_out->ImageBase);
732 H_PUT_32 (abfd, extra->SectionAlignment, aouthdr_out->SectionAlignment);
733 H_PUT_32 (abfd, extra->FileAlignment, aouthdr_out->FileAlignment);
734 H_PUT_16 (abfd, extra->MajorOperatingSystemVersion,
735 aouthdr_out->MajorOperatingSystemVersion);
736 H_PUT_16 (abfd, extra->MinorOperatingSystemVersion,
737 aouthdr_out->MinorOperatingSystemVersion);
738 H_PUT_16 (abfd, extra->MajorImageVersion, aouthdr_out->MajorImageVersion);
739 H_PUT_16 (abfd, extra->MinorImageVersion, aouthdr_out->MinorImageVersion);
740 H_PUT_16 (abfd, extra->MajorSubsystemVersion,
741 aouthdr_out->MajorSubsystemVersion);
742 H_PUT_16 (abfd, extra->MinorSubsystemVersion,
743 aouthdr_out->MinorSubsystemVersion);
744 H_PUT_32 (abfd, extra->Reserved1, aouthdr_out->Reserved1);
745 H_PUT_32 (abfd, extra->SizeOfImage, aouthdr_out->SizeOfImage);
746 H_PUT_32 (abfd, extra->SizeOfHeaders, aouthdr_out->SizeOfHeaders);
747 H_PUT_32 (abfd, extra->CheckSum, aouthdr_out->CheckSum);
748 H_PUT_16 (abfd, extra->Subsystem, aouthdr_out->Subsystem);
749 H_PUT_16 (abfd, extra->DllCharacteristics, aouthdr_out->DllCharacteristics);
fac41780 750 PUT_OPTHDR_SIZE_OF_STACK_RESERVE (abfd, extra->SizeOfStackReserve,
dc810e39 751 aouthdr_out->SizeOfStackReserve);
fac41780 752 PUT_OPTHDR_SIZE_OF_STACK_COMMIT (abfd, extra->SizeOfStackCommit,
dc810e39 753 aouthdr_out->SizeOfStackCommit);
fac41780 754 PUT_OPTHDR_SIZE_OF_HEAP_RESERVE (abfd, extra->SizeOfHeapReserve,
dc810e39 755 aouthdr_out->SizeOfHeapReserve);
fac41780 756 PUT_OPTHDR_SIZE_OF_HEAP_COMMIT (abfd, extra->SizeOfHeapCommit,
dc810e39
AM
757 aouthdr_out->SizeOfHeapCommit);
758 H_PUT_32 (abfd, extra->LoaderFlags, aouthdr_out->LoaderFlags);
759 H_PUT_32 (abfd, extra->NumberOfRvaAndSizes,
760 aouthdr_out->NumberOfRvaAndSizes);
277d1b5e
ILT
761 {
762 int idx;
1725a96e 763
6fa957a9 764 for (idx = 0; idx < 16; idx++)
277d1b5e 765 {
dc810e39
AM
766 H_PUT_32 (abfd, extra->DataDirectory[idx].VirtualAddress,
767 aouthdr_out->DataDirectory[idx][0]);
768 H_PUT_32 (abfd, extra->DataDirectory[idx].Size,
769 aouthdr_out->DataDirectory[idx][1]);
277d1b5e
ILT
770 }
771 }
772
773 return AOUTSZ;
774}
775
776unsigned int
7920ce38 777_bfd_XXi_only_swap_filehdr_out (bfd * abfd, void * in, void * out)
277d1b5e
ILT
778{
779 int idx;
6fa957a9
KH
780 struct internal_filehdr *filehdr_in = (struct internal_filehdr *) in;
781 struct external_PEI_filehdr *filehdr_out = (struct external_PEI_filehdr *) out;
277d1b5e 782
441f34fa
L
783 if (pe_data (abfd)->has_reloc_section
784 || pe_data (abfd)->dont_strip_reloc)
277d1b5e
ILT
785 filehdr_in->f_flags &= ~F_RELFLG;
786
787 if (pe_data (abfd)->dll)
788 filehdr_in->f_flags |= F_DLL;
789
790 filehdr_in->pe.e_magic = DOSMAGIC;
791 filehdr_in->pe.e_cblp = 0x90;
792 filehdr_in->pe.e_cp = 0x3;
793 filehdr_in->pe.e_crlc = 0x0;
794 filehdr_in->pe.e_cparhdr = 0x4;
795 filehdr_in->pe.e_minalloc = 0x0;
796 filehdr_in->pe.e_maxalloc = 0xffff;
797 filehdr_in->pe.e_ss = 0x0;
798 filehdr_in->pe.e_sp = 0xb8;
799 filehdr_in->pe.e_csum = 0x0;
800 filehdr_in->pe.e_ip = 0x0;
801 filehdr_in->pe.e_cs = 0x0;
802 filehdr_in->pe.e_lfarlc = 0x40;
803 filehdr_in->pe.e_ovno = 0x0;
804
6fa957a9 805 for (idx = 0; idx < 4; idx++)
277d1b5e
ILT
806 filehdr_in->pe.e_res[idx] = 0x0;
807
808 filehdr_in->pe.e_oemid = 0x0;
809 filehdr_in->pe.e_oeminfo = 0x0;
810
6fa957a9 811 for (idx = 0; idx < 10; idx++)
277d1b5e
ILT
812 filehdr_in->pe.e_res2[idx] = 0x0;
813
814 filehdr_in->pe.e_lfanew = 0x80;
815
6fa957a9
KH
816 /* This next collection of data are mostly just characters. It
817 appears to be constant within the headers put on NT exes. */
277d1b5e
ILT
818 filehdr_in->pe.dos_message[0] = 0x0eba1f0e;
819 filehdr_in->pe.dos_message[1] = 0xcd09b400;
820 filehdr_in->pe.dos_message[2] = 0x4c01b821;
821 filehdr_in->pe.dos_message[3] = 0x685421cd;
822 filehdr_in->pe.dos_message[4] = 0x70207369;
823 filehdr_in->pe.dos_message[5] = 0x72676f72;
824 filehdr_in->pe.dos_message[6] = 0x63206d61;
825 filehdr_in->pe.dos_message[7] = 0x6f6e6e61;
826 filehdr_in->pe.dos_message[8] = 0x65622074;
827 filehdr_in->pe.dos_message[9] = 0x6e757220;
828 filehdr_in->pe.dos_message[10] = 0x206e6920;
829 filehdr_in->pe.dos_message[11] = 0x20534f44;
830 filehdr_in->pe.dos_message[12] = 0x65646f6d;
831 filehdr_in->pe.dos_message[13] = 0x0a0d0d2e;
832 filehdr_in->pe.dos_message[14] = 0x24;
833 filehdr_in->pe.dos_message[15] = 0x0;
834 filehdr_in->pe.nt_signature = NT_SIGNATURE;
835
dc810e39
AM
836 H_PUT_16 (abfd, filehdr_in->f_magic, filehdr_out->f_magic);
837 H_PUT_16 (abfd, filehdr_in->f_nscns, filehdr_out->f_nscns);
277d1b5e 838
0cb112f7
CF
839 /* Only use a real timestamp if the option was chosen. */
840 if ((pe_data (abfd)->insert_timestamp))
61e2488c 841 H_PUT_32 (abfd, time (0), filehdr_out->f_timdat);
0cb112f7 842
dc810e39
AM
843 PUT_FILEHDR_SYMPTR (abfd, filehdr_in->f_symptr,
844 filehdr_out->f_symptr);
845 H_PUT_32 (abfd, filehdr_in->f_nsyms, filehdr_out->f_nsyms);
846 H_PUT_16 (abfd, filehdr_in->f_opthdr, filehdr_out->f_opthdr);
847 H_PUT_16 (abfd, filehdr_in->f_flags, filehdr_out->f_flags);
277d1b5e 848
1725a96e 849 /* Put in extra dos header stuff. This data remains essentially
277d1b5e 850 constant, it just has to be tacked on to the beginning of all exes
1725a96e 851 for NT. */
dc810e39
AM
852 H_PUT_16 (abfd, filehdr_in->pe.e_magic, filehdr_out->e_magic);
853 H_PUT_16 (abfd, filehdr_in->pe.e_cblp, filehdr_out->e_cblp);
854 H_PUT_16 (abfd, filehdr_in->pe.e_cp, filehdr_out->e_cp);
855 H_PUT_16 (abfd, filehdr_in->pe.e_crlc, filehdr_out->e_crlc);
856 H_PUT_16 (abfd, filehdr_in->pe.e_cparhdr, filehdr_out->e_cparhdr);
857 H_PUT_16 (abfd, filehdr_in->pe.e_minalloc, filehdr_out->e_minalloc);
858 H_PUT_16 (abfd, filehdr_in->pe.e_maxalloc, filehdr_out->e_maxalloc);
859 H_PUT_16 (abfd, filehdr_in->pe.e_ss, filehdr_out->e_ss);
860 H_PUT_16 (abfd, filehdr_in->pe.e_sp, filehdr_out->e_sp);
861 H_PUT_16 (abfd, filehdr_in->pe.e_csum, filehdr_out->e_csum);
862 H_PUT_16 (abfd, filehdr_in->pe.e_ip, filehdr_out->e_ip);
863 H_PUT_16 (abfd, filehdr_in->pe.e_cs, filehdr_out->e_cs);
864 H_PUT_16 (abfd, filehdr_in->pe.e_lfarlc, filehdr_out->e_lfarlc);
865 H_PUT_16 (abfd, filehdr_in->pe.e_ovno, filehdr_out->e_ovno);
1725a96e
NC
866
867 for (idx = 0; idx < 4; idx++)
dc810e39 868 H_PUT_16 (abfd, filehdr_in->pe.e_res[idx], filehdr_out->e_res[idx]);
1725a96e 869
dc810e39
AM
870 H_PUT_16 (abfd, filehdr_in->pe.e_oemid, filehdr_out->e_oemid);
871 H_PUT_16 (abfd, filehdr_in->pe.e_oeminfo, filehdr_out->e_oeminfo);
1725a96e
NC
872
873 for (idx = 0; idx < 10; idx++)
dc810e39 874 H_PUT_16 (abfd, filehdr_in->pe.e_res2[idx], filehdr_out->e_res2[idx]);
1725a96e 875
dc810e39 876 H_PUT_32 (abfd, filehdr_in->pe.e_lfanew, filehdr_out->e_lfanew);
277d1b5e 877
1725a96e 878 for (idx = 0; idx < 16; idx++)
dc810e39
AM
879 H_PUT_32 (abfd, filehdr_in->pe.dos_message[idx],
880 filehdr_out->dos_message[idx]);
277d1b5e 881
6fa957a9 882 /* Also put in the NT signature. */
dc810e39 883 H_PUT_32 (abfd, filehdr_in->pe.nt_signature, filehdr_out->nt_signature);
277d1b5e 884
277d1b5e
ILT
885 return FILHSZ;
886}
887
888unsigned int
7920ce38 889_bfd_XX_only_swap_filehdr_out (bfd * abfd, void * in, void * out)
277d1b5e 890{
6fa957a9
KH
891 struct internal_filehdr *filehdr_in = (struct internal_filehdr *) in;
892 FILHDR *filehdr_out = (FILHDR *) out;
277d1b5e 893
dc810e39
AM
894 H_PUT_16 (abfd, filehdr_in->f_magic, filehdr_out->f_magic);
895 H_PUT_16 (abfd, filehdr_in->f_nscns, filehdr_out->f_nscns);
896 H_PUT_32 (abfd, filehdr_in->f_timdat, filehdr_out->f_timdat);
897 PUT_FILEHDR_SYMPTR (abfd, filehdr_in->f_symptr, filehdr_out->f_symptr);
898 H_PUT_32 (abfd, filehdr_in->f_nsyms, filehdr_out->f_nsyms);
899 H_PUT_16 (abfd, filehdr_in->f_opthdr, filehdr_out->f_opthdr);
900 H_PUT_16 (abfd, filehdr_in->f_flags, filehdr_out->f_flags);
277d1b5e
ILT
901
902 return FILHSZ;
903}
904
905unsigned int
7920ce38 906_bfd_XXi_swap_scnhdr_out (bfd * abfd, void * in, void * out)
277d1b5e 907{
6fa957a9
KH
908 struct internal_scnhdr *scnhdr_int = (struct internal_scnhdr *) in;
909 SCNHDR *scnhdr_ext = (SCNHDR *) out;
277d1b5e
ILT
910 unsigned int ret = SCNHSZ;
911 bfd_vma ps;
912 bfd_vma ss;
913
6fa957a9 914 memcpy (scnhdr_ext->s_name, scnhdr_int->s_name, sizeof (scnhdr_int->s_name));
277d1b5e
ILT
915
916 PUT_SCNHDR_VADDR (abfd,
9602af51 917 ((scnhdr_int->s_vaddr
6fa957a9 918 - pe_data (abfd)->pe_opthdr.ImageBase)
277d1b5e 919 & 0xffffffff),
dc810e39 920 scnhdr_ext->s_vaddr);
277d1b5e 921
5933bdc9
ILT
922 /* NT wants the size data to be rounded up to the next
923 NT_FILE_ALIGNMENT, but zero if it has no content (as in .bss,
924 sometimes). */
5933bdc9 925 if ((scnhdr_int->s_flags & IMAGE_SCN_CNT_UNINITIALIZED_DATA) != 0)
277d1b5e 926 {
92dd4511 927 if (bfd_pei_p (abfd))
ff0c9faf
NC
928 {
929 ps = scnhdr_int->s_size;
930 ss = 0;
931 }
932 else
933 {
934 ps = 0;
935 ss = scnhdr_int->s_size;
936 }
277d1b5e
ILT
937 }
938 else
939 {
92dd4511 940 if (bfd_pei_p (abfd))
ff0c9faf
NC
941 ps = scnhdr_int->s_paddr;
942 else
943 ps = 0;
944
277d1b5e
ILT
945 ss = scnhdr_int->s_size;
946 }
947
948 PUT_SCNHDR_SIZE (abfd, ss,
dc810e39 949 scnhdr_ext->s_size);
277d1b5e 950
5933bdc9 951 /* s_paddr in PE is really the virtual size. */
dc810e39 952 PUT_SCNHDR_PADDR (abfd, ps, scnhdr_ext->s_paddr);
277d1b5e
ILT
953
954 PUT_SCNHDR_SCNPTR (abfd, scnhdr_int->s_scnptr,
dc810e39 955 scnhdr_ext->s_scnptr);
277d1b5e 956 PUT_SCNHDR_RELPTR (abfd, scnhdr_int->s_relptr,
dc810e39 957 scnhdr_ext->s_relptr);
277d1b5e 958 PUT_SCNHDR_LNNOPTR (abfd, scnhdr_int->s_lnnoptr,
dc810e39 959 scnhdr_ext->s_lnnoptr);
277d1b5e 960
277d1b5e 961 {
25c80428
NC
962 /* Extra flags must be set when dealing with PE. All sections should also
963 have the IMAGE_SCN_MEM_READ (0x40000000) flag set. In addition, the
964 .text section must have IMAGE_SCN_MEM_EXECUTE (0x20000000) and the data
965 sections (.idata, .data, .bss, .CRT) must have IMAGE_SCN_MEM_WRITE set
966 (this is especially important when dealing with the .idata section since
967 the addresses for routines from .dlls must be overwritten). If .reloc
968 section data is ever generated, we must add IMAGE_SCN_MEM_DISCARDABLE
969 (0x02000000). Also, the resource data should also be read and
970 writable. */
971
4e1fc599 972 /* FIXME: Alignment is also encoded in this field, at least on PPC and
25c80428
NC
973 ARM-WINCE. Although - how do we get the original alignment field
974 back ? */
975
976 typedef struct
977 {
978 const char * section_name;
979 unsigned long must_have;
980 }
981 pe_required_section_flags;
4e1fc599 982
25c80428
NC
983 pe_required_section_flags known_sections [] =
984 {
985 { ".arch", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA | IMAGE_SCN_MEM_DISCARDABLE | IMAGE_SCN_ALIGN_8BYTES },
986 { ".bss", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_UNINITIALIZED_DATA | IMAGE_SCN_MEM_WRITE },
987 { ".data", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA | IMAGE_SCN_MEM_WRITE },
988 { ".edata", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA },
989 { ".idata", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA | IMAGE_SCN_MEM_WRITE },
990 { ".pdata", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA },
991 { ".rdata", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA },
992 { ".reloc", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA | IMAGE_SCN_MEM_DISCARDABLE },
993 { ".rsrc", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA | IMAGE_SCN_MEM_WRITE },
994 { ".text" , IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_CODE | IMAGE_SCN_MEM_EXECUTE },
995 { ".tls", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA | IMAGE_SCN_MEM_WRITE },
996 { ".xdata", IMAGE_SCN_MEM_READ | IMAGE_SCN_CNT_INITIALIZED_DATA },
997 { NULL, 0}
998 };
999
1000 pe_required_section_flags * p;
1725a96e 1001
66bed356
DS
1002 /* We have defaulted to adding the IMAGE_SCN_MEM_WRITE flag, but now
1003 we know exactly what this specific section wants so we remove it
1004 and then allow the must_have field to add it back in if necessary.
1005 However, we don't remove IMAGE_SCN_MEM_WRITE flag from .text if the
1006 default WP_TEXT file flag has been cleared. WP_TEXT may be cleared
1007 by ld --enable-auto-import (if auto-import is actually needed),
1008 by ld --omagic, or by obcopy --writable-text. */
66bed356 1009
25c80428
NC
1010 for (p = known_sections; p->section_name; p++)
1011 if (strcmp (scnhdr_int->s_name, p->section_name) == 0)
1012 {
3c9d0484
DS
1013 if (strcmp (scnhdr_int->s_name, ".text")
1014 || (bfd_get_file_flags (abfd) & WP_TEXT))
d48bdb99
AM
1015 scnhdr_int->s_flags &= ~IMAGE_SCN_MEM_WRITE;
1016 scnhdr_int->s_flags |= p->must_have;
25c80428
NC
1017 break;
1018 }
1019
d48bdb99 1020 H_PUT_32 (abfd, scnhdr_int->s_flags, scnhdr_ext->s_flags);
277d1b5e
ILT
1021 }
1022
cb43721d 1023 if (coff_data (abfd)->link_info
1049f94e 1024 && ! coff_data (abfd)->link_info->relocatable
cb43721d
ILT
1025 && ! coff_data (abfd)->link_info->shared
1026 && strcmp (scnhdr_int->s_name, ".text") == 0)
277d1b5e 1027 {
cb43721d 1028 /* By inference from looking at MS output, the 32 bit field
7dee875e 1029 which is the combination of the number_of_relocs and
cb43721d
ILT
1030 number_of_linenos is used for the line number count in
1031 executables. A 16-bit field won't do for cc1. The MS
1032 document says that the number of relocs is zero for
1033 executables, but the 17-th bit has been observed to be there.
1034 Overflow is not an issue: a 4G-line program will overflow a
1035 bunch of other fields long before this! */
dc810e39
AM
1036 H_PUT_16 (abfd, (scnhdr_int->s_nlnno & 0xffff), scnhdr_ext->s_nlnno);
1037 H_PUT_16 (abfd, (scnhdr_int->s_nlnno >> 16), scnhdr_ext->s_nreloc);
277d1b5e 1038 }
277d1b5e
ILT
1039 else
1040 {
cb43721d 1041 if (scnhdr_int->s_nlnno <= 0xffff)
dc810e39 1042 H_PUT_16 (abfd, scnhdr_int->s_nlnno, scnhdr_ext->s_nlnno);
cb43721d
ILT
1043 else
1044 {
1045 (*_bfd_error_handler) (_("%s: line number overflow: 0x%lx > 0xffff"),
1046 bfd_get_filename (abfd),
1047 scnhdr_int->s_nlnno);
1048 bfd_set_error (bfd_error_file_truncated);
dc810e39 1049 H_PUT_16 (abfd, 0xffff, scnhdr_ext->s_nlnno);
cb43721d
ILT
1050 ret = 0;
1051 }
1725a96e 1052
cd339148
NS
1053 /* Although we could encode 0xffff relocs here, we do not, to be
1054 consistent with other parts of bfd. Also it lets us warn, as
1055 we should never see 0xffff here w/o having the overflow flag
1056 set. */
1057 if (scnhdr_int->s_nreloc < 0xffff)
dc810e39 1058 H_PUT_16 (abfd, scnhdr_int->s_nreloc, scnhdr_ext->s_nreloc);
cb43721d
ILT
1059 else
1060 {
1725a96e 1061 /* PE can deal with large #s of relocs, but not here. */
dc810e39 1062 H_PUT_16 (abfd, 0xffff, scnhdr_ext->s_nreloc);
3e4554a2 1063 scnhdr_int->s_flags |= IMAGE_SCN_LNK_NRELOC_OVFL;
dc810e39 1064 H_PUT_32 (abfd, scnhdr_int->s_flags, scnhdr_ext->s_flags);
cb43721d 1065 }
277d1b5e
ILT
1066 }
1067 return ret;
1068}
1069
61e2488c
JT
1070void
1071_bfd_XXi_swap_debugdir_in (bfd * abfd, void * ext1, void * in1)
1072{
1073 struct external_IMAGE_DEBUG_DIRECTORY *ext = (struct external_IMAGE_DEBUG_DIRECTORY *) ext1;
1074 struct internal_IMAGE_DEBUG_DIRECTORY *in = (struct internal_IMAGE_DEBUG_DIRECTORY *) in1;
1075
1076 in->Characteristics = H_GET_32(abfd, ext->Characteristics);
1077 in->TimeDateStamp = H_GET_32(abfd, ext->TimeDateStamp);
1078 in->MajorVersion = H_GET_16(abfd, ext->MajorVersion);
1079 in->MinorVersion = H_GET_16(abfd, ext->MinorVersion);
1080 in->Type = H_GET_32(abfd, ext->Type);
1081 in->SizeOfData = H_GET_32(abfd, ext->SizeOfData);
1082 in->AddressOfRawData = H_GET_32(abfd, ext->AddressOfRawData);
1083 in->PointerToRawData = H_GET_32(abfd, ext->PointerToRawData);
1084}
1085
1086unsigned int
1087_bfd_XXi_swap_debugdir_out (bfd * abfd, void * inp, void * extp)
1088{
1089 struct external_IMAGE_DEBUG_DIRECTORY *ext = (struct external_IMAGE_DEBUG_DIRECTORY *) extp;
1090 struct internal_IMAGE_DEBUG_DIRECTORY *in = (struct internal_IMAGE_DEBUG_DIRECTORY *) inp;
1091
1092 H_PUT_32(abfd, in->Characteristics, ext->Characteristics);
1093 H_PUT_32(abfd, in->TimeDateStamp, ext->TimeDateStamp);
1094 H_PUT_16(abfd, in->MajorVersion, ext->MajorVersion);
1095 H_PUT_16(abfd, in->MinorVersion, ext->MinorVersion);
1096 H_PUT_32(abfd, in->Type, ext->Type);
1097 H_PUT_32(abfd, in->SizeOfData, ext->SizeOfData);
1098 H_PUT_32(abfd, in->AddressOfRawData, ext->AddressOfRawData);
1099 H_PUT_32(abfd, in->PointerToRawData, ext->PointerToRawData);
1100
1101 return sizeof (struct external_IMAGE_DEBUG_DIRECTORY);
1102}
1103
1104static CODEVIEW_INFO *
1105_bfd_XXi_slurp_codeview_record (bfd * abfd, file_ptr where, unsigned long length, CODEVIEW_INFO *cvinfo)
1106{
1107 char buffer[256+1];
1108
1109 if (bfd_seek (abfd, where, SEEK_SET) != 0)
1110 return NULL;
1111
1112 if (bfd_bread (buffer, 256, abfd) < 4)
1113 return NULL;
1114
6e6e7cfc 1115 /* Ensure null termination of filename. */
61e2488c
JT
1116 buffer[256] = '\0';
1117
1118 cvinfo->CVSignature = H_GET_32(abfd, buffer);
1119 cvinfo->Age = 0;
1120
1121 if ((cvinfo->CVSignature == CVINFO_PDB70_CVSIGNATURE)
1122 && (length > sizeof (CV_INFO_PDB70)))
1123 {
1124 CV_INFO_PDB70 *cvinfo70 = (CV_INFO_PDB70 *)(buffer);
1125
1126 cvinfo->Age = H_GET_32(abfd, cvinfo70->Age);
6e6e7cfc
JT
1127
1128 /* A GUID consists of 4,2,2 byte values in little-endian order, followed
1129 by 8 single bytes. Byte swap them so we can conveniently treat the GUID
1130 as 16 bytes in big-endian order. */
1131 bfd_putb32 (bfd_getl32 (cvinfo70->Signature), cvinfo->Signature);
1132 bfd_putb16 (bfd_getl16 (&(cvinfo70->Signature[4])), &(cvinfo->Signature[4]));
1133 bfd_putb16 (bfd_getl16 (&(cvinfo70->Signature[6])), &(cvinfo->Signature[6]));
1134 memcpy (&(cvinfo->Signature[8]), &(cvinfo70->Signature[8]), 8);
1135
61e2488c
JT
1136 cvinfo->SignatureLength = CV_INFO_SIGNATURE_LENGTH;
1137 // cvinfo->PdbFileName = cvinfo70->PdbFileName;
1138
1139 return cvinfo;
1140 }
1141 else if ((cvinfo->CVSignature == CVINFO_PDB20_CVSIGNATURE)
1142 && (length > sizeof (CV_INFO_PDB20)))
1143 {
1144 CV_INFO_PDB20 *cvinfo20 = (CV_INFO_PDB20 *)(buffer);
1145 cvinfo->Age = H_GET_32(abfd, cvinfo20->Age);
1146 memcpy (cvinfo->Signature, cvinfo20->Signature, 4);
1147 cvinfo->SignatureLength = 4;
1148 // cvinfo->PdbFileName = cvinfo20->PdbFileName;
1149
1150 return cvinfo;
1151 }
1152
1153 return NULL;
1154}
1155
1156unsigned int
1157_bfd_XXi_write_codeview_record (bfd * abfd, file_ptr where, CODEVIEW_INFO *cvinfo)
1158{
1159 unsigned int size = sizeof (CV_INFO_PDB70) + 1;
1160 CV_INFO_PDB70 *cvinfo70;
1161 char buffer[size];
1162
1163 if (bfd_seek (abfd, where, SEEK_SET) != 0)
1164 return 0;
1165
1166 cvinfo70 = (CV_INFO_PDB70 *) buffer;
1167 H_PUT_32 (abfd, CVINFO_PDB70_CVSIGNATURE, cvinfo70->CvSignature);
6e6e7cfc
JT
1168
1169 /* Byte swap the GUID from 16 bytes in big-endian order to 4,2,2 byte values
1170 in little-endian order, followed by 8 single bytes. */
1171 bfd_putl32 (bfd_getb32 (cvinfo->Signature), cvinfo70->Signature);
1172 bfd_putl16 (bfd_getb16 (&(cvinfo->Signature[4])), &(cvinfo70->Signature[4]));
1173 bfd_putl16 (bfd_getb16 (&(cvinfo->Signature[6])), &(cvinfo70->Signature[6]));
1174 memcpy (&(cvinfo70->Signature[8]), &(cvinfo->Signature[8]), 8);
1175
61e2488c
JT
1176 H_PUT_32 (abfd, cvinfo->Age, cvinfo70->Age);
1177 cvinfo70->PdbFileName[0] = '\0';
1178
1179 if (bfd_bwrite (buffer, size, abfd) != size)
1180 return 0;
1181
1182 return size;
1183}
1184
1725a96e 1185static char * dir_names[IMAGE_NUMBEROF_DIRECTORY_ENTRIES] =
7920ce38
NC
1186{
1187 N_("Export Directory [.edata (or where ever we found it)]"),
1188 N_("Import Directory [parts of .idata]"),
1189 N_("Resource Directory [.rsrc]"),
1190 N_("Exception Directory [.pdata]"),
1191 N_("Security Directory"),
1192 N_("Base Relocation Directory [.reloc]"),
1193 N_("Debug Directory"),
1194 N_("Description Directory"),
1195 N_("Special Directory"),
1196 N_("Thread Storage Directory [.tls]"),
1197 N_("Load Configuration Directory"),
1198 N_("Bound Import Directory"),
1199 N_("Import Address Table Directory"),
1200 N_("Delay Import Directory"),
6c73cbb1 1201 N_("CLR Runtime Header"),
7920ce38
NC
1202 N_("Reserved")
1203};
1725a96e 1204
277d1b5e
ILT
1205#ifdef POWERPC_LE_PE
1206/* The code for the PPC really falls in the "architecture dependent"
1207 category. However, it's not clear that anyone will ever care, so
1208 we're ignoring the issue for now; if/when PPC matters, some of this
1209 may need to go into peicode.h, or arguments passed to enable the
1210 PPC- specific code. */
1211#endif
1212
b34976b6 1213static bfd_boolean
7920ce38 1214pe_print_idata (bfd * abfd, void * vfile)
277d1b5e
ILT
1215{
1216 FILE *file = (FILE *) vfile;
a76b448c 1217 bfd_byte *data;
8181c403
AM
1218 asection *section;
1219 bfd_signed_vma adj;
277d1b5e
ILT
1220
1221#ifdef POWERPC_LE_PE
1222 asection *rel_section = bfd_get_section_by_name (abfd, ".reldata");
1223#endif
1224
a76b448c 1225 bfd_size_type datasize = 0;
277d1b5e 1226 bfd_size_type dataoff;
277d1b5e 1227 bfd_size_type i;
277d1b5e
ILT
1228 int onaline = 20;
1229
1230 pe_data_type *pe = pe_data (abfd);
1231 struct internal_extra_pe_aouthdr *extra = &pe->pe_opthdr;
1232
8181c403 1233 bfd_vma addr;
277d1b5e 1234
6c73cbb1 1235 addr = extra->DataDirectory[PE_IMPORT_TABLE].VirtualAddress;
277d1b5e 1236
6c73cbb1 1237 if (addr == 0 && extra->DataDirectory[PE_IMPORT_TABLE].Size == 0)
8181c403 1238 {
a76b448c
AM
1239 /* Maybe the extra header isn't there. Look for the section. */
1240 section = bfd_get_section_by_name (abfd, ".idata");
1241 if (section == NULL)
b34976b6 1242 return TRUE;
a76b448c
AM
1243
1244 addr = section->vma;
eea6121a 1245 datasize = section->size;
a76b448c 1246 if (datasize == 0)
b34976b6 1247 return TRUE;
8181c403 1248 }
a76b448c 1249 else
8181c403 1250 {
a76b448c
AM
1251 addr += extra->ImageBase;
1252 for (section = abfd->sections; section != NULL; section = section->next)
1253 {
eea6121a 1254 datasize = section->size;
a76b448c
AM
1255 if (addr >= section->vma && addr < section->vma + datasize)
1256 break;
1257 }
1258
1259 if (section == NULL)
1260 {
1261 fprintf (file,
1262 _("\nThere is an import table, but the section containing it could not be found\n"));
b34976b6 1263 return TRUE;
a76b448c 1264 }
b69c8728
JT
1265 else if (!(section->flags & SEC_HAS_CONTENTS))
1266 {
1267 fprintf (file,
1268 _("\nThere is an import table in %s, but that section has no contents\n"),
1269 section->name);
1270 return TRUE;
1271 }
8181c403 1272 }
5933bdc9 1273
8181c403
AM
1274 fprintf (file, _("\nThere is an import table in %s at 0x%lx\n"),
1275 section->name, (unsigned long) addr);
277d1b5e 1276
8181c403 1277 dataoff = addr - section->vma;
277d1b5e
ILT
1278
1279#ifdef POWERPC_LE_PE
eea6121a 1280 if (rel_section != 0 && rel_section->size != 0)
277d1b5e
ILT
1281 {
1282 /* The toc address can be found by taking the starting address,
1283 which on the PPC locates a function descriptor. The
1284 descriptor consists of the function code starting address
1285 followed by the address of the toc. The starting address we
1286 get from the bfd, and the descriptor is supposed to be in the
1287 .reldata section. */
1288
1289 bfd_vma loadable_toc_address;
1290 bfd_vma toc_address;
1291 bfd_vma start_address;
eea6121a 1292 bfd_byte *data;
a50b2160 1293 bfd_vma offset;
8181c403 1294
eea6121a
AM
1295 if (!bfd_malloc_and_get_section (abfd, rel_section, &data))
1296 {
1297 if (data != NULL)
1298 free (data);
1299 return FALSE;
1300 }
277d1b5e
ILT
1301
1302 offset = abfd->start_address - rel_section->vma;
1303
a50b2160
JJ
1304 if (offset >= rel_section->size || offset + 8 > rel_section->size)
1305 {
1306 if (data != NULL)
1307 free (data);
1308 return FALSE;
1309 }
1310
db8503c4
AM
1311 start_address = bfd_get_32 (abfd, data + offset);
1312 loadable_toc_address = bfd_get_32 (abfd, data + offset + 4);
277d1b5e
ILT
1313 toc_address = loadable_toc_address - 32768;
1314
9602af51 1315 fprintf (file,
6fa957a9
KH
1316 _("\nFunction descriptor located at the start address: %04lx\n"),
1317 (unsigned long int) (abfd->start_address));
277d1b5e
ILT
1318 fprintf (file,
1319 _("\tcode-base %08lx toc (loadable/actual) %08lx/%08lx\n"),
1320 start_address, loadable_toc_address, toc_address);
eea6121a
AM
1321 if (data != NULL)
1322 free (data);
277d1b5e
ILT
1323 }
1324 else
1325 {
9602af51 1326 fprintf (file,
6fa957a9 1327 _("\nNo reldata section! Function descriptor not decoded.\n"));
277d1b5e
ILT
1328 }
1329#endif
1330
9602af51 1331 fprintf (file,
6fa957a9
KH
1332 _("\nThe Import Tables (interpreted %s section contents)\n"),
1333 section->name);
9602af51 1334 fprintf (file,
ca09e32b
NC
1335 _("\
1336 vma: Hint Time Forward DLL First\n\
1337 Table Stamp Chain Name Thunk\n"));
277d1b5e 1338
db8503c4 1339 /* Read the whole section. Some of the fields might be before dataoff. */
eea6121a
AM
1340 if (!bfd_malloc_and_get_section (abfd, section, &data))
1341 {
1342 if (data != NULL)
1343 free (data);
1344 return FALSE;
1345 }
277d1b5e 1346
db8503c4 1347 adj = section->vma - extra->ImageBase;
277d1b5e 1348
5e226794 1349 /* Print all image import descriptors. */
4e1fc599 1350 for (i = dataoff; i + onaline <= datasize; i += onaline)
277d1b5e
ILT
1351 {
1352 bfd_vma hint_addr;
1353 bfd_vma time_stamp;
1354 bfd_vma forward_chain;
1355 bfd_vma dll_name;
1356 bfd_vma first_thunk;
1357 int idx = 0;
1358 bfd_size_type j;
1359 char *dll;
1360
6c73cbb1 1361 /* Print (i + extra->DataDirectory[PE_IMPORT_TABLE].VirtualAddress). */
4e1fc599
AM
1362 fprintf (file, " %08lx\t", (unsigned long) (i + adj));
1363 hint_addr = bfd_get_32 (abfd, data + i);
1364 time_stamp = bfd_get_32 (abfd, data + i + 4);
1365 forward_chain = bfd_get_32 (abfd, data + i + 8);
1366 dll_name = bfd_get_32 (abfd, data + i + 12);
1367 first_thunk = bfd_get_32 (abfd, data + i + 16);
5933bdc9
ILT
1368
1369 fprintf (file, "%08lx %08lx %08lx %08lx %08lx\n",
a76b448c
AM
1370 (unsigned long) hint_addr,
1371 (unsigned long) time_stamp,
1372 (unsigned long) forward_chain,
1373 (unsigned long) dll_name,
1374 (unsigned long) first_thunk);
277d1b5e
ILT
1375
1376 if (hint_addr == 0 && first_thunk == 0)
1377 break;
1378
a50b2160
JJ
1379 if (dll_name - adj >= section->size)
1380 break;
1381
8181c403 1382 dll = (char *) data + dll_name - adj;
9602af51 1383 fprintf (file, _("\n\tDLL Name: %s\n"), dll);
277d1b5e
ILT
1384
1385 if (hint_addr != 0)
1386 {
6e7c73dd
CF
1387 bfd_byte *ft_data;
1388 asection *ft_section;
1389 bfd_vma ft_addr;
1390 bfd_size_type ft_datasize;
1391 int ft_idx;
4e1fc599 1392 int ft_allocated;
6e7c73dd 1393
5e226794 1394 fprintf (file, _("\tvma: Hint/Ord Member-Name Bound-To\n"));
277d1b5e 1395
8181c403 1396 idx = hint_addr - adj;
4e1fc599 1397
5e226794 1398 ft_addr = first_thunk + extra->ImageBase;
6e7c73dd 1399 ft_idx = first_thunk - adj;
4e1fc599
AM
1400 ft_data = data + ft_idx;
1401 ft_datasize = datasize - ft_idx;
1402 ft_allocated = 0;
6c73cbb1
NC
1403
1404 if (first_thunk != hint_addr)
6e7c73dd
CF
1405 {
1406 /* Find the section which contains the first thunk. */
1407 for (ft_section = abfd->sections;
1408 ft_section != NULL;
1409 ft_section = ft_section->next)
1410 {
6e7c73dd 1411 if (ft_addr >= ft_section->vma
4e1fc599 1412 && ft_addr < ft_section->vma + ft_section->size)
6e7c73dd
CF
1413 break;
1414 }
1415
1416 if (ft_section == NULL)
1417 {
1418 fprintf (file,
1419 _("\nThere is a first thunk, but the section containing it could not be found\n"));
1420 continue;
1421 }
1422
1423 /* Now check to see if this section is the same as our current
1424 section. If it is not then we will have to load its data in. */
4e1fc599 1425 if (ft_section != section)
6e7c73dd
CF
1426 {
1427 ft_idx = first_thunk - (ft_section->vma - extra->ImageBase);
4e1fc599
AM
1428 ft_datasize = ft_section->size - ft_idx;
1429 ft_data = (bfd_byte *) bfd_malloc (ft_datasize);
6e7c73dd
CF
1430 if (ft_data == NULL)
1431 continue;
1432
4e1fc599
AM
1433 /* Read ft_datasize bytes starting at offset ft_idx. */
1434 if (!bfd_get_section_contents (abfd, ft_section, ft_data,
1435 (bfd_vma) ft_idx, ft_datasize))
6e7c73dd
CF
1436 {
1437 free (ft_data);
1438 continue;
1439 }
6e7c73dd
CF
1440 ft_allocated = 1;
1441 }
1442 }
5e226794
NC
1443
1444 /* Print HintName vector entries. */
99ad8390 1445#ifdef COFF_WITH_pex64
4e1fc599 1446 for (j = 0; idx + j + 8 <= datasize; j += 8)
99ad8390
NC
1447 {
1448 unsigned long member = bfd_get_32 (abfd, data + idx + j);
1449 unsigned long member_high = bfd_get_32 (abfd, data + idx + j + 4);
1450
1451 if (!member && !member_high)
1452 break;
1453
5879bb8f 1454 if (HighBitSet (member_high))
99ad8390 1455 fprintf (file, "\t%lx%08lx\t %4lx%08lx <none>",
5879bb8f
NC
1456 member_high, member,
1457 WithoutHighBit (member_high), member);
99ad8390
NC
1458 else
1459 {
1460 int ordinal;
1461 char *member_name;
1462
1463 ordinal = bfd_get_16 (abfd, data + member - adj);
1464 member_name = (char *) data + member - adj + 2;
1465 fprintf (file, "\t%04lx\t %4d %s",member, ordinal, member_name);
1466 }
1467
1468 /* If the time stamp is not zero, the import address
1469 table holds actual addresses. */
1470 if (time_stamp != 0
1471 && first_thunk != 0
4e1fc599
AM
1472 && first_thunk != hint_addr
1473 && j + 4 <= ft_datasize)
99ad8390 1474 fprintf (file, "\t%04lx",
4e1fc599 1475 (unsigned long) bfd_get_32 (abfd, ft_data + j));
99ad8390
NC
1476 fprintf (file, "\n");
1477 }
1478#else
4e1fc599 1479 for (j = 0; idx + j + 4 <= datasize; j += 4)
277d1b5e
ILT
1480 {
1481 unsigned long member = bfd_get_32 (abfd, data + idx + j);
1482
4e1fc599 1483 /* Print single IMAGE_IMPORT_BY_NAME vector. */
277d1b5e
ILT
1484 if (member == 0)
1485 break;
5e226794 1486
5879bb8f 1487 if (HighBitSet (member))
5e226794 1488 fprintf (file, "\t%04lx\t %4lu <none>",
5879bb8f 1489 member, WithoutHighBit (member));
277d1b5e
ILT
1490 else
1491 {
1492 int ordinal;
1493 char *member_name;
1494
8181c403
AM
1495 ordinal = bfd_get_16 (abfd, data + member - adj);
1496 member_name = (char *) data + member - adj + 2;
277d1b5e
ILT
1497 fprintf (file, "\t%04lx\t %4d %s",
1498 member, ordinal, member_name);
1499 }
5e226794 1500
277d1b5e 1501 /* If the time stamp is not zero, the import address
5e226794
NC
1502 table holds actual addresses. */
1503 if (time_stamp != 0
1504 && first_thunk != 0
4e1fc599
AM
1505 && first_thunk != hint_addr
1506 && j + 4 <= ft_datasize)
277d1b5e 1507 fprintf (file, "\t%04lx",
4e1fc599 1508 (unsigned long) bfd_get_32 (abfd, ft_data + j));
277d1b5e
ILT
1509
1510 fprintf (file, "\n");
1511 }
99ad8390 1512#endif
e4cf60a8
NC
1513 if (ft_allocated)
1514 free (ft_data);
277d1b5e
ILT
1515 }
1516
9602af51 1517 fprintf (file, "\n");
277d1b5e
ILT
1518 }
1519
1520 free (data);
1521
b34976b6 1522 return TRUE;
277d1b5e
ILT
1523}
1524
b34976b6 1525static bfd_boolean
7920ce38 1526pe_print_edata (bfd * abfd, void * vfile)
277d1b5e
ILT
1527{
1528 FILE *file = (FILE *) vfile;
a76b448c 1529 bfd_byte *data;
8181c403 1530 asection *section;
a76b448c 1531 bfd_size_type datasize = 0;
277d1b5e
ILT
1532 bfd_size_type dataoff;
1533 bfd_size_type i;
b69c8728 1534 bfd_vma adj;
1725a96e
NC
1535 struct EDT_type
1536 {
7920ce38 1537 long export_flags; /* Reserved - should be zero. */
6fa957a9
KH
1538 long time_stamp;
1539 short major_ver;
1540 short minor_ver;
7920ce38
NC
1541 bfd_vma name; /* RVA - relative to image base. */
1542 long base; /* Ordinal base. */
1543 unsigned long num_functions;/* Number in the export address table. */
1544 unsigned long num_names; /* Number in the name pointer table. */
1545 bfd_vma eat_addr; /* RVA to the export address table. */
1546 bfd_vma npt_addr; /* RVA to the Export Name Pointer Table. */
1547 bfd_vma ot_addr; /* RVA to the Ordinal Table. */
6fa957a9 1548 } edt;
277d1b5e
ILT
1549
1550 pe_data_type *pe = pe_data (abfd);
1551 struct internal_extra_pe_aouthdr *extra = &pe->pe_opthdr;
1552
8181c403 1553 bfd_vma addr;
277d1b5e 1554
6c73cbb1 1555 addr = extra->DataDirectory[PE_EXPORT_TABLE].VirtualAddress;
277d1b5e 1556
6c73cbb1 1557 if (addr == 0 && extra->DataDirectory[PE_EXPORT_TABLE].Size == 0)
8181c403 1558 {
a76b448c
AM
1559 /* Maybe the extra header isn't there. Look for the section. */
1560 section = bfd_get_section_by_name (abfd, ".edata");
1561 if (section == NULL)
b34976b6 1562 return TRUE;
a76b448c
AM
1563
1564 addr = section->vma;
0facbdf5 1565 dataoff = 0;
eea6121a 1566 datasize = section->size;
a76b448c 1567 if (datasize == 0)
b34976b6 1568 return TRUE;
8181c403 1569 }
a76b448c 1570 else
8181c403 1571 {
a76b448c 1572 addr += extra->ImageBase;
1725a96e 1573
a76b448c 1574 for (section = abfd->sections; section != NULL; section = section->next)
0facbdf5
NC
1575 if (addr >= section->vma && addr < section->vma + section->size)
1576 break;
a76b448c
AM
1577
1578 if (section == NULL)
1579 {
1580 fprintf (file,
1581 _("\nThere is an export table, but the section containing it could not be found\n"));
b34976b6 1582 return TRUE;
a76b448c 1583 }
b69c8728
JT
1584 else if (!(section->flags & SEC_HAS_CONTENTS))
1585 {
1586 fprintf (file,
1587 _("\nThere is an export table in %s, but that section has no contents\n"),
1588 section->name);
1589 return TRUE;
1590 }
0facbdf5
NC
1591
1592 dataoff = addr - section->vma;
6c73cbb1 1593 datasize = extra->DataDirectory[PE_EXPORT_TABLE].Size;
0facbdf5
NC
1594 if (datasize > section->size - dataoff)
1595 {
1596 fprintf (file,
1597 _("\nThere is an export table in %s, but it does not fit into that section\n"),
1598 section->name);
1599 return TRUE;
1600 }
277d1b5e
ILT
1601 }
1602
8181c403
AM
1603 fprintf (file, _("\nThere is an export table in %s at 0x%lx\n"),
1604 section->name, (unsigned long) addr);
1605
a50b1753 1606 data = (bfd_byte *) bfd_malloc (datasize);
8181c403 1607 if (data == NULL)
b34976b6 1608 return FALSE;
277d1b5e 1609
7920ce38 1610 if (! bfd_get_section_contents (abfd, section, data,
dc810e39 1611 (file_ptr) dataoff, datasize))
b34976b6 1612 return FALSE;
277d1b5e 1613
6fa957a9
KH
1614 /* Go get Export Directory Table. */
1615 edt.export_flags = bfd_get_32 (abfd, data + 0);
1616 edt.time_stamp = bfd_get_32 (abfd, data + 4);
1617 edt.major_ver = bfd_get_16 (abfd, data + 8);
1618 edt.minor_ver = bfd_get_16 (abfd, data + 10);
1619 edt.name = bfd_get_32 (abfd, data + 12);
1620 edt.base = bfd_get_32 (abfd, data + 16);
1621 edt.num_functions = bfd_get_32 (abfd, data + 20);
1622 edt.num_names = bfd_get_32 (abfd, data + 24);
1623 edt.eat_addr = bfd_get_32 (abfd, data + 28);
1624 edt.npt_addr = bfd_get_32 (abfd, data + 32);
1625 edt.ot_addr = bfd_get_32 (abfd, data + 36);
277d1b5e 1626
8181c403 1627 adj = section->vma - extra->ImageBase + dataoff;
277d1b5e 1628
1725a96e 1629 /* Dump the EDT first. */
9602af51 1630 fprintf (file,
6fa957a9
KH
1631 _("\nThe Export Tables (interpreted %s section contents)\n\n"),
1632 section->name);
277d1b5e 1633
9602af51 1634 fprintf (file,
6fa957a9 1635 _("Export Flags \t\t\t%lx\n"), (unsigned long) edt.export_flags);
277d1b5e 1636
9602af51 1637 fprintf (file,
6fa957a9 1638 _("Time/Date stamp \t\t%lx\n"), (unsigned long) edt.time_stamp);
277d1b5e 1639
9602af51 1640 fprintf (file,
6fa957a9 1641 _("Major/Minor \t\t\t%d/%d\n"), edt.major_ver, edt.minor_ver);
277d1b5e
ILT
1642
1643 fprintf (file,
1644 _("Name \t\t\t\t"));
ebf12fbe 1645 bfd_fprintf_vma (abfd, file, edt.name);
b69c8728
JT
1646
1647 if ((edt.name >= adj) && (edt.name < adj + datasize))
1648 fprintf (file, " %s\n", data + edt.name - adj);
1649 else
1650 fprintf (file, "(outside .edata section)\n");
277d1b5e 1651
9602af51 1652 fprintf (file,
6fa957a9 1653 _("Ordinal Base \t\t\t%ld\n"), edt.base);
277d1b5e 1654
9602af51 1655 fprintf (file,
6fa957a9 1656 _("Number in:\n"));
277d1b5e 1657
9602af51 1658 fprintf (file,
6fa957a9
KH
1659 _("\tExport Address Table \t\t%08lx\n"),
1660 edt.num_functions);
277d1b5e 1661
9602af51 1662 fprintf (file,
6fa957a9 1663 _("\t[Name Pointer/Ordinal] Table\t%08lx\n"), edt.num_names);
277d1b5e 1664
9602af51 1665 fprintf (file,
6fa957a9 1666 _("Table Addresses\n"));
277d1b5e
ILT
1667
1668 fprintf (file,
1669 _("\tExport Address Table \t\t"));
ebf12fbe 1670 bfd_fprintf_vma (abfd, file, edt.eat_addr);
277d1b5e
ILT
1671 fprintf (file, "\n");
1672
1673 fprintf (file,
6fa957a9 1674 _("\tName Pointer Table \t\t"));
ebf12fbe 1675 bfd_fprintf_vma (abfd, file, edt.npt_addr);
277d1b5e
ILT
1676 fprintf (file, "\n");
1677
1678 fprintf (file,
1679 _("\tOrdinal Table \t\t\t"));
ebf12fbe 1680 bfd_fprintf_vma (abfd, file, edt.ot_addr);
277d1b5e
ILT
1681 fprintf (file, "\n");
1682
5933bdc9 1683 /* The next table to find is the Export Address Table. It's basically
277d1b5e
ILT
1684 a list of pointers that either locate a function in this dll, or
1685 forward the call to another dll. Something like:
1725a96e
NC
1686 typedef union
1687 {
277d1b5e
ILT
1688 long export_rva;
1689 long forwarder_rva;
7920ce38 1690 } export_address_table_entry; */
277d1b5e 1691
9602af51 1692 fprintf (file,
277d1b5e
ILT
1693 _("\nExport Address Table -- Ordinal Base %ld\n"),
1694 edt.base);
1695
1696 for (i = 0; i < edt.num_functions; ++i)
1697 {
1698 bfd_vma eat_member = bfd_get_32 (abfd,
8181c403 1699 data + edt.eat_addr + (i * 4) - adj);
277d1b5e
ILT
1700 if (eat_member == 0)
1701 continue;
1702
db8503c4 1703 if (eat_member - adj <= datasize)
277d1b5e 1704 {
db8503c4 1705 /* This rva is to a name (forwarding function) in our section. */
6fa957a9 1706 /* Should locate a function descriptor. */
5933bdc9
ILT
1707 fprintf (file,
1708 "\t[%4ld] +base[%4ld] %04lx %s -- %s\n",
a76b448c
AM
1709 (long) i,
1710 (long) (i + edt.base),
1711 (unsigned long) eat_member,
1712 _("Forwarder RVA"),
1713 data + eat_member - adj);
277d1b5e
ILT
1714 }
1715 else
1716 {
6fa957a9 1717 /* Should locate a function descriptor in the reldata section. */
5933bdc9
ILT
1718 fprintf (file,
1719 "\t[%4ld] +base[%4ld] %04lx %s\n",
a76b448c
AM
1720 (long) i,
1721 (long) (i + edt.base),
1722 (unsigned long) eat_member,
5933bdc9 1723 _("Export RVA"));
277d1b5e
ILT
1724 }
1725 }
1726
6fa957a9
KH
1727 /* The Export Name Pointer Table is paired with the Export Ordinal Table. */
1728 /* Dump them in parallel for clarity. */
9602af51 1729 fprintf (file,
6fa957a9 1730 _("\n[Ordinal/Name Pointer] Table\n"));
277d1b5e
ILT
1731
1732 for (i = 0; i < edt.num_names; ++i)
1733 {
9602af51 1734 bfd_vma name_ptr = bfd_get_32 (abfd,
277d1b5e
ILT
1735 data +
1736 edt.npt_addr
8181c403 1737 + (i*4) - adj);
9602af51 1738
8181c403 1739 char *name = (char *) data + name_ptr - adj;
277d1b5e 1740
9602af51 1741 bfd_vma ord = bfd_get_16 (abfd,
277d1b5e
ILT
1742 data +
1743 edt.ot_addr
8181c403 1744 + (i*2) - adj);
9602af51 1745 fprintf (file,
277d1b5e 1746 "\t[%4ld] %s\n", (long) ord, name);
277d1b5e
ILT
1747 }
1748
1749 free (data);
1750
b34976b6 1751 return TRUE;
277d1b5e
ILT
1752}
1753
fac41780
JW
1754/* This really is architecture dependent. On IA-64, a .pdata entry
1755 consists of three dwords containing relative virtual addresses that
1756 specify the start and end address of the code range the entry
4e1fc599 1757 covers and the address of the corresponding unwind info data.
2b5c217d
NC
1758
1759 On ARM and SH-4, a compressed PDATA structure is used :
1760 _IMAGE_CE_RUNTIME_FUNCTION_ENTRY, whereas MIPS is documented to use
1761 _IMAGE_ALPHA_RUNTIME_FUNCTION_ENTRY.
1762 See http://msdn2.microsoft.com/en-us/library/ms253988(VS.80).aspx .
1763
799c00e0 1764 This is the version for uncompressed data. */
6fa957a9 1765
b34976b6 1766static bfd_boolean
7920ce38 1767pe_print_pdata (bfd * abfd, void * vfile)
277d1b5e 1768{
99ad8390
NC
1769#if defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
1770# define PDATA_ROW_SIZE (3 * 8)
fac41780 1771#else
99ad8390 1772# define PDATA_ROW_SIZE (5 * 4)
fac41780 1773#endif
277d1b5e
ILT
1774 FILE *file = (FILE *) vfile;
1775 bfd_byte *data = 0;
1776 asection *section = bfd_get_section_by_name (abfd, ".pdata");
1777 bfd_size_type datasize = 0;
1778 bfd_size_type i;
1779 bfd_size_type start, stop;
fac41780 1780 int onaline = PDATA_ROW_SIZE;
277d1b5e 1781
5933bdc9
ILT
1782 if (section == NULL
1783 || coff_section_data (abfd, section) == NULL
1784 || pei_section_data (abfd, section) == NULL)
b34976b6 1785 return TRUE;
277d1b5e 1786
5933bdc9 1787 stop = pei_section_data (abfd, section)->virt_size;
277d1b5e 1788 if ((stop % onaline) != 0)
6fa957a9
KH
1789 fprintf (file,
1790 _("Warning, .pdata section size (%ld) is not a multiple of %d\n"),
1791 (long) stop, onaline);
277d1b5e 1792
5933bdc9
ILT
1793 fprintf (file,
1794 _("\nThe Function Table (interpreted .pdata section contents)\n"));
99ad8390 1795#if defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
9602af51 1796 fprintf (file,
6fa957a9 1797 _(" vma:\t\t\tBegin Address End Address Unwind Info\n"));
fac41780 1798#else
ca09e32b
NC
1799 fprintf (file, _("\
1800 vma:\t\tBegin End EH EH PrologEnd Exception\n\
1801 \t\tAddress Address Handler Data Address Mask\n"));
fac41780 1802#endif
277d1b5e 1803
eea6121a 1804 datasize = section->size;
dc810e39 1805 if (datasize == 0)
b34976b6 1806 return TRUE;
277d1b5e 1807
7920ce38 1808 if (! bfd_malloc_and_get_section (abfd, section, &data))
eea6121a
AM
1809 {
1810 if (data != NULL)
1811 free (data);
1812 return FALSE;
1813 }
277d1b5e
ILT
1814
1815 start = 0;
1816
1817 for (i = start; i < stop; i += onaline)
1818 {
1819 bfd_vma begin_addr;
1820 bfd_vma end_addr;
1821 bfd_vma eh_handler;
1822 bfd_vma eh_data;
1823 bfd_vma prolog_end_addr;
c7e2358a 1824#if !defined(COFF_WITH_pep) || defined(COFF_WITH_pex64)
5933bdc9 1825 int em_data;
c7e2358a 1826#endif
277d1b5e 1827
fac41780 1828 if (i + PDATA_ROW_SIZE > stop)
277d1b5e 1829 break;
5933bdc9 1830
6fa957a9
KH
1831 begin_addr = GET_PDATA_ENTRY (abfd, data + i );
1832 end_addr = GET_PDATA_ENTRY (abfd, data + i + 4);
1833 eh_handler = GET_PDATA_ENTRY (abfd, data + i + 8);
1834 eh_data = GET_PDATA_ENTRY (abfd, data + i + 12);
1835 prolog_end_addr = GET_PDATA_ENTRY (abfd, data + i + 16);
9602af51 1836
277d1b5e
ILT
1837 if (begin_addr == 0 && end_addr == 0 && eh_handler == 0
1838 && eh_data == 0 && prolog_end_addr == 0)
1725a96e
NC
1839 /* We are probably into the padding of the section now. */
1840 break;
277d1b5e 1841
c7e2358a 1842#if !defined(COFF_WITH_pep) || defined(COFF_WITH_pex64)
5933bdc9 1843 em_data = ((eh_handler & 0x1) << 2) | (prolog_end_addr & 0x3);
c7e2358a 1844#endif
6fa957a9
KH
1845 eh_handler &= ~(bfd_vma) 0x3;
1846 prolog_end_addr &= ~(bfd_vma) 0x3;
fac41780
JW
1847
1848 fputc (' ', file);
ebf12fbe
DK
1849 bfd_fprintf_vma (abfd, file, i + section->vma); fputc ('\t', file);
1850 bfd_fprintf_vma (abfd, file, begin_addr); fputc (' ', file);
1851 bfd_fprintf_vma (abfd, file, end_addr); fputc (' ', file);
1852 bfd_fprintf_vma (abfd, file, eh_handler);
99ad8390 1853#if !defined(COFF_WITH_pep) || defined(COFF_WITH_pex64)
fac41780 1854 fputc (' ', file);
ebf12fbe
DK
1855 bfd_fprintf_vma (abfd, file, eh_data); fputc (' ', file);
1856 bfd_fprintf_vma (abfd, file, prolog_end_addr);
fac41780
JW
1857 fprintf (file, " %x", em_data);
1858#endif
277d1b5e
ILT
1859
1860#ifdef POWERPC_LE_PE
1861 if (eh_handler == 0 && eh_data != 0)
1862 {
6fa957a9 1863 /* Special bits here, although the meaning may be a little
7920ce38
NC
1864 mysterious. The only one I know for sure is 0x03
1865 Code Significance
1866 0x00 None
1867 0x01 Register Save Millicode
1868 0x02 Register Restore Millicode
1869 0x03 Glue Code Sequence. */
277d1b5e
ILT
1870 switch (eh_data)
1871 {
1872 case 0x01:
9602af51 1873 fprintf (file, _(" Register save millicode"));
277d1b5e
ILT
1874 break;
1875 case 0x02:
9602af51 1876 fprintf (file, _(" Register restore millicode"));
277d1b5e
ILT
1877 break;
1878 case 0x03:
9602af51 1879 fprintf (file, _(" Glue code sequence"));
277d1b5e
ILT
1880 break;
1881 default:
1882 break;
1883 }
1884 }
1885#endif
9602af51 1886 fprintf (file, "\n");
277d1b5e
ILT
1887 }
1888
1889 free (data);
1890
b34976b6 1891 return TRUE;
2b5c217d 1892#undef PDATA_ROW_SIZE
277d1b5e
ILT
1893}
1894
799c00e0
NC
1895typedef struct sym_cache
1896{
1897 int symcount;
1898 asymbol ** syms;
1899} sym_cache;
1900
1901static asymbol **
1902slurp_symtab (bfd *abfd, sym_cache *psc)
1903{
1904 asymbol ** sy = NULL;
1905 long storage;
1906
1907 if (!(bfd_get_file_flags (abfd) & HAS_SYMS))
1908 {
1909 psc->symcount = 0;
1910 return NULL;
1911 }
1912
1913 storage = bfd_get_symtab_upper_bound (abfd);
1914 if (storage < 0)
1915 return NULL;
1916 if (storage)
a50b1753 1917 sy = (asymbol **) bfd_malloc (storage);
799c00e0
NC
1918
1919 psc->symcount = bfd_canonicalize_symtab (abfd, sy);
1920 if (psc->symcount < 0)
1921 return NULL;
1922 return sy;
1923}
1924
1925static const char *
1926my_symbol_for_address (bfd *abfd, bfd_vma func, sym_cache *psc)
1927{
1928 int i;
1929
1930 if (psc->syms == 0)
1931 psc->syms = slurp_symtab (abfd, psc);
1932
1933 for (i = 0; i < psc->symcount; i++)
1934 {
1935 if (psc->syms[i]->section->vma + psc->syms[i]->value == func)
1936 return psc->syms[i]->name;
1937 }
1938
1939 return NULL;
1940}
1941
1942static void
1943cleanup_syms (sym_cache *psc)
1944{
1945 psc->symcount = 0;
1946 free (psc->syms);
1947 psc->syms = NULL;
1948}
1949
1950/* This is the version for "compressed" pdata. */
1951
1952bfd_boolean
1953_bfd_XX_print_ce_compressed_pdata (bfd * abfd, void * vfile)
1954{
1955# define PDATA_ROW_SIZE (2 * 4)
1956 FILE *file = (FILE *) vfile;
1957 bfd_byte *data = NULL;
1958 asection *section = bfd_get_section_by_name (abfd, ".pdata");
1959 bfd_size_type datasize = 0;
1960 bfd_size_type i;
1961 bfd_size_type start, stop;
1962 int onaline = PDATA_ROW_SIZE;
91d6fa6a 1963 struct sym_cache cache = {0, 0} ;
799c00e0
NC
1964
1965 if (section == NULL
1966 || coff_section_data (abfd, section) == NULL
1967 || pei_section_data (abfd, section) == NULL)
1968 return TRUE;
1969
1970 stop = pei_section_data (abfd, section)->virt_size;
1971 if ((stop % onaline) != 0)
1972 fprintf (file,
1973 _("Warning, .pdata section size (%ld) is not a multiple of %d\n"),
1974 (long) stop, onaline);
1975
1976 fprintf (file,
1977 _("\nThe Function Table (interpreted .pdata section contents)\n"));
1978
1979 fprintf (file, _("\
1980 vma:\t\tBegin Prolog Function Flags Exception EH\n\
1981 \t\tAddress Length Length 32b exc Handler Data\n"));
1982
1983 datasize = section->size;
1984 if (datasize == 0)
1985 return TRUE;
1986
1987 if (! bfd_malloc_and_get_section (abfd, section, &data))
1988 {
1989 if (data != NULL)
1990 free (data);
1991 return FALSE;
1992 }
1993
1994 start = 0;
1995
1996 for (i = start; i < stop; i += onaline)
1997 {
1998 bfd_vma begin_addr;
1999 bfd_vma other_data;
2000 bfd_vma prolog_length, function_length;
2001 int flag32bit, exception_flag;
799c00e0
NC
2002 asection *tsection;
2003
2004 if (i + PDATA_ROW_SIZE > stop)
2005 break;
2006
2007 begin_addr = GET_PDATA_ENTRY (abfd, data + i );
2008 other_data = GET_PDATA_ENTRY (abfd, data + i + 4);
2009
2010 if (begin_addr == 0 && other_data == 0)
2011 /* We are probably into the padding of the section now. */
2012 break;
2013
2014 prolog_length = (other_data & 0x000000FF);
2015 function_length = (other_data & 0x3FFFFF00) >> 8;
2016 flag32bit = (int)((other_data & 0x40000000) >> 30);
2017 exception_flag = (int)((other_data & 0x80000000) >> 31);
2018
2019 fputc (' ', file);
ebf12fbe
DK
2020 bfd_fprintf_vma (abfd, file, i + section->vma); fputc ('\t', file);
2021 bfd_fprintf_vma (abfd, file, begin_addr); fputc (' ', file);
2022 bfd_fprintf_vma (abfd, file, prolog_length); fputc (' ', file);
2023 bfd_fprintf_vma (abfd, file, function_length); fputc (' ', file);
799c00e0
NC
2024 fprintf (file, "%2d %2d ", flag32bit, exception_flag);
2025
2026 /* Get the exception handler's address and the data passed from the
2027 .text section. This is really the data that belongs with the .pdata
2028 but got "compressed" out for the ARM and SH4 architectures. */
2029 tsection = bfd_get_section_by_name (abfd, ".text");
2030 if (tsection && coff_section_data (abfd, tsection)
2031 && pei_section_data (abfd, tsection))
2032 {
4e1fc599
AM
2033 bfd_vma eh_off = (begin_addr - 8) - tsection->vma;
2034 bfd_byte *tdata;
799c00e0 2035
4e1fc599
AM
2036 tdata = (bfd_byte *) bfd_malloc (8);
2037 if (tdata)
2038 {
2039 if (bfd_get_section_contents (abfd, tsection, tdata, eh_off, 8))
799c00e0
NC
2040 {
2041 bfd_vma eh, eh_data;
2042
2043 eh = bfd_get_32 (abfd, tdata);
2044 eh_data = bfd_get_32 (abfd, tdata + 4);
2045 fprintf (file, "%08x ", (unsigned int) eh);
2046 fprintf (file, "%08x", (unsigned int) eh_data);
2047 if (eh != 0)
2048 {
91d6fa6a 2049 const char *s = my_symbol_for_address (abfd, eh, &cache);
799c00e0
NC
2050
2051 if (s)
2052 fprintf (file, " (%s) ", s);
2053 }
2054 }
2055 free (tdata);
2056 }
799c00e0
NC
2057 }
2058
2059 fprintf (file, "\n");
2060 }
2061
2062 free (data);
2063
91d6fa6a 2064 cleanup_syms (& cache);
799c00e0
NC
2065
2066 return TRUE;
2067#undef PDATA_ROW_SIZE
2068}
c7c7219d 2069
799c00e0 2070\f
5933bdc9 2071#define IMAGE_REL_BASED_HIGHADJ 4
1725a96e 2072static const char * const tbl[] =
7920ce38
NC
2073{
2074 "ABSOLUTE",
2075 "HIGH",
2076 "LOW",
2077 "HIGHLOW",
2078 "HIGHADJ",
2079 "MIPS_JMPADDR",
2080 "SECTION",
2081 "REL32",
2082 "RESERVED1",
2083 "MIPS_JMPADDR16",
2084 "DIR64",
2bfd55ca 2085 "HIGH3ADJ",
7920ce38
NC
2086 "UNKNOWN", /* MUST be last. */
2087};
277d1b5e 2088
b34976b6 2089static bfd_boolean
7920ce38 2090pe_print_reloc (bfd * abfd, void * vfile)
277d1b5e
ILT
2091{
2092 FILE *file = (FILE *) vfile;
2093 bfd_byte *data = 0;
2094 asection *section = bfd_get_section_by_name (abfd, ".reloc");
277d1b5e
ILT
2095 bfd_size_type i;
2096 bfd_size_type start, stop;
2097
b69c8728 2098 if (section == NULL || section->size == 0 || !(section->flags & SEC_HAS_CONTENTS))
b34976b6 2099 return TRUE;
277d1b5e 2100
5933bdc9
ILT
2101 fprintf (file,
2102 _("\n\nPE File Base Relocations (interpreted .reloc section contents)\n"));
277d1b5e 2103
7920ce38 2104 if (! bfd_malloc_and_get_section (abfd, section, &data))
eea6121a
AM
2105 {
2106 if (data != NULL)
2107 free (data);
2108 return FALSE;
2109 }
277d1b5e
ILT
2110
2111 start = 0;
2112
eea6121a 2113 stop = section->size;
277d1b5e
ILT
2114
2115 for (i = start; i < stop;)
2116 {
2117 int j;
2118 bfd_vma virtual_address;
2119 long number, size;
2120
2121 /* The .reloc section is a sequence of blocks, with a header consisting
1725a96e 2122 of two 32 bit quantities, followed by a number of 16 bit entries. */
9602af51
KH
2123 virtual_address = bfd_get_32 (abfd, data+i);
2124 size = bfd_get_32 (abfd, data+i+4);
277d1b5e
ILT
2125 number = (size - 8) / 2;
2126
2127 if (size == 0)
1725a96e 2128 break;
277d1b5e
ILT
2129
2130 fprintf (file,
2131 _("\nVirtual Address: %08lx Chunk size %ld (0x%lx) Number of fixups %ld\n"),
0af1713e 2132 (unsigned long) virtual_address, size, (unsigned long) size, number);
277d1b5e
ILT
2133
2134 for (j = 0; j < number; ++j)
2135 {
5933bdc9
ILT
2136 unsigned short e = bfd_get_16 (abfd, data + i + 8 + j * 2);
2137 unsigned int t = (e & 0xF000) >> 12;
277d1b5e
ILT
2138 int off = e & 0x0FFF;
2139
5933bdc9
ILT
2140 if (t >= sizeof (tbl) / sizeof (tbl[0]))
2141 t = (sizeof (tbl) / sizeof (tbl[0])) - 1;
277d1b5e 2142
5933bdc9
ILT
2143 fprintf (file,
2144 _("\treloc %4d offset %4x [%4lx] %s"),
0af1713e 2145 j, off, (unsigned long) (off + virtual_address), tbl[t]);
277d1b5e 2146
17505c5c 2147 /* HIGHADJ takes an argument, - the next record *is* the
9602af51 2148 low 16 bits of addend. */
5933bdc9
ILT
2149 if (t == IMAGE_REL_BASED_HIGHADJ)
2150 {
6fa957a9
KH
2151 fprintf (file, " (%4x)",
2152 ((unsigned int)
2153 bfd_get_16 (abfd, data + i + 8 + j * 2 + 2)));
2154 j++;
5933bdc9 2155 }
9602af51 2156
17505c5c 2157 fprintf (file, "\n");
277d1b5e 2158 }
1725a96e 2159
277d1b5e
ILT
2160 i += size;
2161 }
2162
2163 free (data);
2164
b34976b6 2165 return TRUE;
277d1b5e 2166}
5879bb8f 2167\f
3714081c
NC
2168/* A data structure describing the regions of a .rsrc section.
2169 Some fields are filled in as the section is parsed. */
2170
2171typedef struct rsrc_regions
2172{
2173 bfd_byte * section_start;
2174 bfd_byte * section_end;
2175 bfd_byte * strings_start;
2176 bfd_byte * resource_start;
2177} rsrc_regions;
277d1b5e 2178
11a6da56 2179static bfd_byte *
3714081c
NC
2180rsrc_print_resource_directory (FILE * , bfd *, unsigned int, bfd_byte *,
2181 rsrc_regions *, bfd_vma);
11a6da56
NC
2182
2183static bfd_byte *
3714081c
NC
2184rsrc_print_resource_entries (FILE * file,
2185 bfd * abfd,
2186 unsigned int indent,
2187 bfd_boolean is_name,
2188 bfd_byte * data,
2189 rsrc_regions * regions,
2190 bfd_vma rva_bias)
11a6da56
NC
2191{
2192 unsigned long entry, addr, size;
2193
3714081c
NC
2194 if (data + 8 >= regions->section_end)
2195 return regions->section_end + 1;
11a6da56 2196
3714081c 2197 fprintf (file, _("%03x %*.s Entry: "), (int)(data - regions->section_start), indent, " ");
11a6da56
NC
2198
2199 entry = (long) bfd_get_32 (abfd, data);
2200 if (is_name)
2201 {
5879bb8f
NC
2202 bfd_byte * name;
2203
3714081c 2204 /* Note - the documentation says that this field is an RVA value
5879bb8f
NC
2205 but windres appears to produce a section relative offset with
2206 the top bit set. Support both styles for now. */
2207 if (HighBitSet (entry))
3714081c 2208 name = regions->section_start + WithoutHighBit (entry);
5879bb8f 2209 else
3714081c 2210 name = regions->section_start + entry - rva_bias;
5879bb8f 2211
3714081c 2212 if (name + 2 < regions->section_end)
11a6da56
NC
2213 {
2214 unsigned int len;
3714081c
NC
2215
2216 if (regions->strings_start == NULL)
2217 regions->strings_start = name;
2218
5879bb8f 2219 len = bfd_get_16 (abfd, name);
9373215c 2220
5879bb8f 2221 fprintf (file, _("name: [val: %08lx len %d]: "), entry, len);
3714081c 2222 if (name + 2 + len * 2 < regions->section_end)
5879bb8f
NC
2223 {
2224 /* This strange loop is to cope with multibyte characters. */
2225 while (len --)
2226 {
2227 name += 2;
2228 fprintf (file, "%.1s", name);
2229 }
2230 }
11a6da56 2231 else
5879bb8f 2232 fprintf (file, _("<corrupt string length: %#x>"), len);
11a6da56
NC
2233 }
2234 else
5879bb8f 2235 fprintf (file, _("<corrupt string offset: %#lx>"), entry);
11a6da56
NC
2236 }
2237 else
2238 fprintf (file, _("ID: %#08lx"), entry);
9373215c 2239
11a6da56 2240 entry = (long) bfd_get_32 (abfd, data + 4);
5879bb8f 2241 fprintf (file, _(", Value: %#08lx\n"), entry);
11a6da56 2242
5879bb8f
NC
2243 if (HighBitSet (entry))
2244 return rsrc_print_resource_directory (file, abfd, indent + 1,
3714081c
NC
2245 regions->section_start + WithoutHighBit (entry),
2246 regions, rva_bias);
11a6da56 2247
3714081c
NC
2248 if (regions->section_start + entry + 16 >= regions->section_end)
2249 return regions->section_end + 1;
11a6da56 2250
3714081c
NC
2251 fprintf (file, _("%03x %*.s Leaf: Addr: %#08lx, Size: %#08lx, Codepage: %d\n"),
2252 (int) (entry),
5879bb8f 2253 indent, " ",
3714081c
NC
2254 addr = (long) bfd_get_32 (abfd, regions->section_start + entry),
2255 size = (long) bfd_get_32 (abfd, regions->section_start + entry + 4),
2256 (int) bfd_get_32 (abfd, regions->section_start + entry + 8));
9373215c 2257
11a6da56 2258 /* Check that the reserved entry is 0. */
3714081c 2259 if (bfd_get_32 (abfd, regions->section_start + entry + 12) != 0
11a6da56 2260 /* And that the data address/size is valid too. */
3714081c
NC
2261 || (regions->section_start + (addr - rva_bias) + size > regions->section_end))
2262 return regions->section_end + 1;
11a6da56 2263
3714081c
NC
2264 if (regions->resource_start == NULL)
2265 regions->resource_start = regions->section_start + (addr - rva_bias);
2266
2267 return regions->section_start + (addr - rva_bias) + size;
11a6da56
NC
2268}
2269
5879bb8f
NC
2270#define max(a,b) ((a) > (b) ? (a) : (b))
2271#define min(a,b) ((a) < (b) ? (a) : (b))
2272
11a6da56 2273static bfd_byte *
3714081c
NC
2274rsrc_print_resource_directory (FILE * file,
2275 bfd * abfd,
2276 unsigned int indent,
2277 bfd_byte * data,
2278 rsrc_regions * regions,
2279 bfd_vma rva_bias)
11a6da56
NC
2280{
2281 unsigned int num_names, num_ids;
5879bb8f 2282 bfd_byte * highest_data = data;
11a6da56 2283
3714081c
NC
2284 if (data + 16 >= regions->section_end)
2285 return regions->section_end + 1;
11a6da56 2286
3714081c 2287 fprintf (file, "%03x %*.s ", (int)(data - regions->section_start), indent, " ");
11a6da56
NC
2288 switch (indent)
2289 {
2290 case 0: fprintf (file, "Type"); break;
2291 case 2: fprintf (file, "Name"); break;
2292 case 4: fprintf (file, "Language"); break;
2293 default: fprintf (file, "<unknown>"); break;
2294 }
2295
2296 fprintf (file, _(" Table: Char: %d, Time: %08lx, Ver: %d/%d, Num Names: %d, IDs: %d\n"),
2297 (int) bfd_get_32 (abfd, data),
2298 (long) bfd_get_32 (abfd, data + 4),
2299 (int) bfd_get_16 (abfd, data + 8),
2300 (int) bfd_get_16 (abfd, data + 10),
2301 num_names = (int) bfd_get_16 (abfd, data + 12),
2302 num_ids = (int) bfd_get_16 (abfd, data + 14));
2303 data += 16;
2304
5879bb8f 2305 while (num_names --)
11a6da56 2306 {
5879bb8f
NC
2307 bfd_byte * entry_end;
2308
2309 entry_end = rsrc_print_resource_entries (file, abfd, indent + 1, TRUE,
3714081c 2310 data, regions, rva_bias);
5879bb8f
NC
2311 data += 8;
2312 highest_data = max (highest_data, entry_end);
3714081c 2313 if (entry_end >= regions->section_end)
5879bb8f 2314 return entry_end;
11a6da56
NC
2315 }
2316
5879bb8f 2317 while (num_ids --)
11a6da56 2318 {
5879bb8f
NC
2319 bfd_byte * entry_end;
2320
2321 entry_end = rsrc_print_resource_entries (file, abfd, indent + 1, FALSE,
3714081c 2322 data, regions, rva_bias);
5879bb8f
NC
2323 data += 8;
2324 highest_data = max (highest_data, entry_end);
3714081c 2325 if (entry_end >= regions->section_end)
5879bb8f 2326 return entry_end;
11a6da56
NC
2327 }
2328
5879bb8f 2329 return max (highest_data, data);
11a6da56
NC
2330}
2331
2332/* Display the contents of a .rsrc section. We do not try to
2333 reproduce the resources, windres does that. Instead we dump
2334 the tables in a human readable format. */
2335
2336static bfd_boolean
5879bb8f 2337rsrc_print_section (bfd * abfd, void * vfile)
11a6da56
NC
2338{
2339 bfd_vma rva_bias;
2340 pe_data_type * pe;
2341 FILE * file = (FILE *) vfile;
2342 bfd_size_type datasize;
2343 asection * section;
2344 bfd_byte * data;
3714081c 2345 rsrc_regions regions;
11a6da56 2346
11a6da56 2347 pe = pe_data (abfd);
5879bb8f 2348 if (pe == NULL)
11a6da56
NC
2349 return TRUE;
2350
5879bb8f
NC
2351 section = bfd_get_section_by_name (abfd, ".rsrc");
2352 if (section == NULL)
11a6da56 2353 return TRUE;
b69c8728
JT
2354 if (!(section->flags & SEC_HAS_CONTENTS))
2355 return TRUE;
5879bb8f 2356
11a6da56
NC
2357 datasize = section->size;
2358 if (datasize == 0)
2359 return TRUE;
2360
b69c8728
JT
2361 rva_bias = section->vma - pe->pe_opthdr.ImageBase;
2362
5879bb8f 2363 if (! bfd_malloc_and_get_section (abfd, section, & data))
11a6da56
NC
2364 {
2365 if (data != NULL)
2366 free (data);
2367 return FALSE;
2368 }
3714081c
NC
2369
2370 regions.section_start = data;
2371 regions.section_end = data + datasize;
2372 regions.strings_start = NULL;
2373 regions.resource_start = NULL;
11a6da56
NC
2374
2375 fflush (file);
2376 fprintf (file, "\nThe .rsrc Resource Directory section:\n");
2377
3714081c 2378 while (data < regions.section_end)
11a6da56 2379 {
5879bb8f
NC
2380 bfd_byte * p = data;
2381
3714081c 2382 data = rsrc_print_resource_directory (file, abfd, 0, data, & regions, rva_bias);
11a6da56 2383
3714081c 2384 if (data == regions.section_end + 1)
11a6da56
NC
2385 fprintf (file, _("Corrupt .rsrc section detected!\n"));
2386 else
2387 {
2388 /* Align data before continuing. */
2389 int align = (1 << section->alignment_power) - 1;
5879bb8f 2390
b9e95fa2 2391 data = (bfd_byte *) (((ptrdiff_t) (data + align)) & ~ align);
5879bb8f 2392 rva_bias += data - p;
11a6da56
NC
2393
2394 /* For reasons that are unclear .rsrc sections are sometimes created
2395 aligned to a 1^3 boundary even when their alignment is set at
2396 1^2. Catch that case here before we issue a spurious warning
2397 message. */
3714081c
NC
2398 if (data == (regions.section_end - 4))
2399 data = regions.section_end;
2400 else if (data < regions.section_end)
c32abae8
NC
2401 {
2402 /* If the extra data is all zeros then do not complain.
2403 This is just padding so that the section meets the
2404 page size requirements. */
2405 while (data ++ < regions.section_end)
2406 if (*data != 0)
2407 break;
2408 if (data < regions.section_end)
2409 fprintf (file, _("\nWARNING: Extra data in .rsrc section - it will be ignored by Windows:\n"));
2410 }
11a6da56
NC
2411 }
2412 }
2413
3714081c 2414 if (regions.strings_start != NULL)
08937d80
NC
2415 fprintf (file, " String table starts at %03x\n",
2416 (int) (regions.strings_start - regions.section_start));
3714081c 2417 if (regions.resource_start != NULL)
08937d80
NC
2418 fprintf (file, " Resources start at %03xx\n",
2419 (int) (regions.resource_start - regions.section_start));
3714081c
NC
2420
2421 free (regions.section_start);
11a6da56
NC
2422 return TRUE;
2423}
2424
61e2488c
JT
2425#define IMAGE_NUMBEROF_DEBUG_TYPES 12
2426
2427static char * debug_type_names[IMAGE_NUMBEROF_DEBUG_TYPES] =
2428{
2429 "Unknown",
2430 "COFF",
2431 "CodeView",
2432 "FPO",
2433 "Misc",
2434 "Exception",
2435 "Fixup",
2436 "OMAP-to-SRC",
2437 "OMAP-from-SRC",
2438 "Borland",
2439 "Reserved",
2440 "CLSID",
2441};
2442
2443static bfd_boolean
2444pe_print_debugdata (bfd * abfd, void * vfile)
2445{
2446 FILE *file = (FILE *) vfile;
2447 pe_data_type *pe = pe_data (abfd);
2448 struct internal_extra_pe_aouthdr *extra = &pe->pe_opthdr;
2449 asection *section;
2450 bfd_byte *data = 0;
2451 bfd_size_type dataoff;
2452 unsigned int i;
2453
2454 bfd_vma addr = extra->DataDirectory[PE_DEBUG_DATA].VirtualAddress;
2455 bfd_size_type size = extra->DataDirectory[PE_DEBUG_DATA].Size;
2456
2457 if (size == 0)
2458 return TRUE;
2459
2460 addr += extra->ImageBase;
2461 for (section = abfd->sections; section != NULL; section = section->next)
2462 {
2463 if ((addr >= section->vma) && (addr < (section->vma + section->size)))
2464 break;
2465 }
2466
2467 if (section == NULL)
2468 {
2469 fprintf (file,
2470 _("\nThere is a debug directory, but the section containing it could not be found\n"));
2471 return TRUE;
2472 }
6e6e7cfc
JT
2473 else if (!(section->flags & SEC_HAS_CONTENTS))
2474 {
2475 fprintf (file,
2476 _("\nThere is a debug directory in %s, but that section has no contents\n"),
2477 section->name);
2478 return TRUE;
2479 }
61e2488c
JT
2480
2481 fprintf (file, _("\nThere is a debug directory in %s at 0x%lx\n\n"),
2482 section->name, (unsigned long) addr);
2483
2484 dataoff = addr - section->vma;
2485
2486 fprintf (file,
2487 _("Type Size Rva Offset\n"));
2488
2489 /* Read the whole section. */
2490 if (!bfd_malloc_and_get_section (abfd, section, &data))
2491 {
2492 if (data != NULL)
2493 free (data);
2494 return FALSE;
2495 }
2496
2497 for (i = 0; i < size / sizeof (struct external_IMAGE_DEBUG_DIRECTORY); i++)
2498 {
2499 const char *type_name;
2500 struct external_IMAGE_DEBUG_DIRECTORY *ext
2501 = &((struct external_IMAGE_DEBUG_DIRECTORY *)(data + dataoff))[i];
2502 struct internal_IMAGE_DEBUG_DIRECTORY idd;
2503
2504 _bfd_XXi_swap_debugdir_in (abfd, ext, &idd);
2505
2506 if ((idd.Type) > IMAGE_NUMBEROF_DEBUG_TYPES)
2507 type_name = debug_type_names[0];
2508 else
2509 type_name = debug_type_names[idd.Type];
2510
2511 fprintf (file, " %2ld %14s %08lx %08lx %08lx\n",
2512 idd.Type, type_name, idd.SizeOfData,
2513 idd.AddressOfRawData, idd.PointerToRawData);
2514
2515 if (idd.Type == PE_IMAGE_DEBUG_TYPE_CODEVIEW)
2516 {
2517 char signature[CV_INFO_SIGNATURE_LENGTH * 2 + 1];
2518 char buffer[256 + 1];
2519 CODEVIEW_INFO *cvinfo = (CODEVIEW_INFO *) buffer;
2520
2521 /* The debug entry doesn't have to have to be in a section,
2522 in which case AddressOfRawData is 0, so always use PointerToRawData. */
2523 if (!_bfd_XXi_slurp_codeview_record (abfd, (file_ptr) idd.PointerToRawData,
2524 idd.SizeOfData, cvinfo))
2525 continue;
2526
2527 for (i = 0; i < cvinfo->SignatureLength; i++)
2528 sprintf (&signature[i*2], "%02x", cvinfo->Signature[i] & 0xff);
2529
2530 fprintf (file, "(format %c%c%c%c signature %s age %ld)\n",
2531 buffer[0], buffer[1], buffer[2], buffer[3],
2532 signature, cvinfo->Age);
2533 }
2534 }
2535
2536 if (size % sizeof (struct external_IMAGE_DEBUG_DIRECTORY) != 0)
2537 fprintf (file,
2538 _("The debug directory size is not a multiple of the debug directory entry size\n"));
2539
2540 return TRUE;
2541}
2542
277d1b5e
ILT
2543/* Print out the program headers. */
2544
b34976b6 2545bfd_boolean
7920ce38 2546_bfd_XX_print_private_bfd_data_common (bfd * abfd, void * vfile)
277d1b5e
ILT
2547{
2548 FILE *file = (FILE *) vfile;
2549 int j;
2550 pe_data_type *pe = pe_data (abfd);
2551 struct internal_extra_pe_aouthdr *i = &pe->pe_opthdr;
fac41780 2552 const char *subsystem_name = NULL;
d13c9dc6 2553 const char *name;
277d1b5e
ILT
2554
2555 /* The MS dumpbin program reportedly ands with 0xff0f before
2556 printing the characteristics field. Not sure why. No reason to
2557 emulate it here. */
2558 fprintf (file, _("\nCharacteristics 0x%x\n"), pe->real_flags);
2559#undef PF
6fa957a9 2560#define PF(x, y) if (pe->real_flags & x) { fprintf (file, "\t%s\n", y); }
d70270c5
BF
2561 PF (IMAGE_FILE_RELOCS_STRIPPED, "relocations stripped");
2562 PF (IMAGE_FILE_EXECUTABLE_IMAGE, "executable");
2563 PF (IMAGE_FILE_LINE_NUMS_STRIPPED, "line numbers stripped");
2564 PF (IMAGE_FILE_LOCAL_SYMS_STRIPPED, "symbols stripped");
2565 PF (IMAGE_FILE_LARGE_ADDRESS_AWARE, "large address aware");
2566 PF (IMAGE_FILE_BYTES_REVERSED_LO, "little endian");
2567 PF (IMAGE_FILE_32BIT_MACHINE, "32 bit words");
2568 PF (IMAGE_FILE_DEBUG_STRIPPED, "debugging information removed");
2569 PF (IMAGE_FILE_SYSTEM, "system file");
2570 PF (IMAGE_FILE_DLL, "DLL");
2571 PF (IMAGE_FILE_BYTES_REVERSED_HI, "big endian");
277d1b5e
ILT
2572#undef PF
2573
5933bdc9 2574 /* ctime implies '\n'. */
0b6488e2
RH
2575 {
2576 time_t t = pe->coff.timestamp;
2577 fprintf (file, "\nTime/Date\t\t%s", ctime (&t));
2578 }
d13c9dc6
L
2579
2580#ifndef IMAGE_NT_OPTIONAL_HDR_MAGIC
2581# define IMAGE_NT_OPTIONAL_HDR_MAGIC 0x10b
2582#endif
2583#ifndef IMAGE_NT_OPTIONAL_HDR64_MAGIC
2584# define IMAGE_NT_OPTIONAL_HDR64_MAGIC 0x20b
2585#endif
2586#ifndef IMAGE_NT_OPTIONAL_HDRROM_MAGIC
2587# define IMAGE_NT_OPTIONAL_HDRROM_MAGIC 0x107
2588#endif
2589
2590 switch (i->Magic)
2591 {
2592 case IMAGE_NT_OPTIONAL_HDR_MAGIC:
2593 name = "PE32";
2594 break;
2595 case IMAGE_NT_OPTIONAL_HDR64_MAGIC:
2596 name = "PE32+";
2597 break;
2598 case IMAGE_NT_OPTIONAL_HDRROM_MAGIC:
2599 name = "ROM";
2600 break;
2601 default:
2602 name = NULL;
2603 break;
2604 }
2605 fprintf (file, "Magic\t\t\t%04x", i->Magic);
2606 if (name)
2607 fprintf (file, "\t(%s)",name);
2608 fprintf (file, "\nMajorLinkerVersion\t%d\n", i->MajorLinkerVersion);
2609 fprintf (file, "MinorLinkerVersion\t%d\n", i->MinorLinkerVersion);
0af1713e 2610 fprintf (file, "SizeOfCode\t\t%08lx\n", (unsigned long) i->SizeOfCode);
d13c9dc6 2611 fprintf (file, "SizeOfInitializedData\t%08lx\n",
0af1713e 2612 (unsigned long) i->SizeOfInitializedData);
d13c9dc6 2613 fprintf (file, "SizeOfUninitializedData\t%08lx\n",
0af1713e 2614 (unsigned long) i->SizeOfUninitializedData);
d13c9dc6 2615 fprintf (file, "AddressOfEntryPoint\t");
ebf12fbe 2616 bfd_fprintf_vma (abfd, file, i->AddressOfEntryPoint);
d13c9dc6 2617 fprintf (file, "\nBaseOfCode\t\t");
ebf12fbe 2618 bfd_fprintf_vma (abfd, file, i->BaseOfCode);
d13c9dc6
L
2619#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
2620 /* PE32+ does not have BaseOfData member! */
2621 fprintf (file, "\nBaseOfData\t\t");
ebf12fbe 2622 bfd_fprintf_vma (abfd, file, i->BaseOfData);
d13c9dc6
L
2623#endif
2624
9602af51 2625 fprintf (file, "\nImageBase\t\t");
ebf12fbe 2626 bfd_fprintf_vma (abfd, file, i->ImageBase);
9602af51 2627 fprintf (file, "\nSectionAlignment\t");
ebf12fbe 2628 bfd_fprintf_vma (abfd, file, i->SectionAlignment);
9602af51 2629 fprintf (file, "\nFileAlignment\t\t");
ebf12fbe 2630 bfd_fprintf_vma (abfd, file, i->FileAlignment);
9602af51
KH
2631 fprintf (file, "\nMajorOSystemVersion\t%d\n", i->MajorOperatingSystemVersion);
2632 fprintf (file, "MinorOSystemVersion\t%d\n", i->MinorOperatingSystemVersion);
2633 fprintf (file, "MajorImageVersion\t%d\n", i->MajorImageVersion);
2634 fprintf (file, "MinorImageVersion\t%d\n", i->MinorImageVersion);
2635 fprintf (file, "MajorSubsystemVersion\t%d\n", i->MajorSubsystemVersion);
2636 fprintf (file, "MinorSubsystemVersion\t%d\n", i->MinorSubsystemVersion);
0af1713e
AM
2637 fprintf (file, "Win32Version\t\t%08lx\n", (unsigned long) i->Reserved1);
2638 fprintf (file, "SizeOfImage\t\t%08lx\n", (unsigned long) i->SizeOfImage);
2639 fprintf (file, "SizeOfHeaders\t\t%08lx\n", (unsigned long) i->SizeOfHeaders);
2640 fprintf (file, "CheckSum\t\t%08lx\n", (unsigned long) i->CheckSum);
1725a96e 2641
fac41780
JW
2642 switch (i->Subsystem)
2643 {
2644 case IMAGE_SUBSYSTEM_UNKNOWN:
2645 subsystem_name = "unspecified";
2646 break;
2647 case IMAGE_SUBSYSTEM_NATIVE:
2648 subsystem_name = "NT native";
2649 break;
2650 case IMAGE_SUBSYSTEM_WINDOWS_GUI:
2651 subsystem_name = "Windows GUI";
2652 break;
2653 case IMAGE_SUBSYSTEM_WINDOWS_CUI:
2654 subsystem_name = "Windows CUI";
2655 break;
2656 case IMAGE_SUBSYSTEM_POSIX_CUI:
2657 subsystem_name = "POSIX CUI";
2658 break;
2659 case IMAGE_SUBSYSTEM_WINDOWS_CE_GUI:
2660 subsystem_name = "Wince CUI";
2661 break;
d9118602 2662 // These are from UEFI Platform Initialization Specification 1.1.
fac41780
JW
2663 case IMAGE_SUBSYSTEM_EFI_APPLICATION:
2664 subsystem_name = "EFI application";
2665 break;
2666 case IMAGE_SUBSYSTEM_EFI_BOOT_SERVICE_DRIVER:
2667 subsystem_name = "EFI boot service driver";
2668 break;
2669 case IMAGE_SUBSYSTEM_EFI_RUNTIME_DRIVER:
9602af51 2670 subsystem_name = "EFI runtime driver";
fac41780 2671 break;
d9118602
L
2672 case IMAGE_SUBSYSTEM_SAL_RUNTIME_DRIVER:
2673 subsystem_name = "SAL runtime driver";
6c73cbb1 2674 break;
d9118602 2675 // This is from revision 8.0 of the MS PE/COFF spec
6c73cbb1
NC
2676 case IMAGE_SUBSYSTEM_XBOX:
2677 subsystem_name = "XBOX";
2678 break;
2679 // Added default case for clarity - subsystem_name is NULL anyway.
2680 default:
2681 subsystem_name = NULL;
fac41780 2682 }
1725a96e 2683
9602af51 2684 fprintf (file, "Subsystem\t\t%08x", i->Subsystem);
fac41780
JW
2685 if (subsystem_name)
2686 fprintf (file, "\t(%s)", subsystem_name);
9602af51
KH
2687 fprintf (file, "\nDllCharacteristics\t%08x\n", i->DllCharacteristics);
2688 fprintf (file, "SizeOfStackReserve\t");
ebf12fbe 2689 bfd_fprintf_vma (abfd, file, i->SizeOfStackReserve);
9602af51 2690 fprintf (file, "\nSizeOfStackCommit\t");
ebf12fbe 2691 bfd_fprintf_vma (abfd, file, i->SizeOfStackCommit);
9602af51 2692 fprintf (file, "\nSizeOfHeapReserve\t");
ebf12fbe 2693 bfd_fprintf_vma (abfd, file, i->SizeOfHeapReserve);
9602af51 2694 fprintf (file, "\nSizeOfHeapCommit\t");
ebf12fbe 2695 bfd_fprintf_vma (abfd, file, i->SizeOfHeapCommit);
0af1713e
AM
2696 fprintf (file, "\nLoaderFlags\t\t%08lx\n", (unsigned long) i->LoaderFlags);
2697 fprintf (file, "NumberOfRvaAndSizes\t%08lx\n",
2698 (unsigned long) i->NumberOfRvaAndSizes);
277d1b5e 2699
9602af51 2700 fprintf (file, "\nThe Data Directory\n");
277d1b5e
ILT
2701 for (j = 0; j < IMAGE_NUMBEROF_DIRECTORY_ENTRIES; j++)
2702 {
2703 fprintf (file, "Entry %1x ", j);
ebf12fbe 2704 bfd_fprintf_vma (abfd, file, i->DataDirectory[j].VirtualAddress);
0af1713e 2705 fprintf (file, " %08lx ", (unsigned long) i->DataDirectory[j].Size);
277d1b5e
ILT
2706 fprintf (file, "%s\n", dir_names[j]);
2707 }
2708
2709 pe_print_idata (abfd, vfile);
2710 pe_print_edata (abfd, vfile);
2b5c217d
NC
2711 if (bfd_coff_have_print_pdata (abfd))
2712 bfd_coff_print_pdata (abfd, vfile);
2713 else
2714 pe_print_pdata (abfd, vfile);
277d1b5e 2715 pe_print_reloc (abfd, vfile);
61e2488c 2716 pe_print_debugdata (abfd, file);
277d1b5e 2717
5879bb8f 2718 rsrc_print_section (abfd, vfile);
9373215c 2719
b34976b6 2720 return TRUE;
277d1b5e
ILT
2721}
2722
6e6e7cfc
JT
2723static bfd_boolean
2724is_vma_in_section (bfd *abfd ATTRIBUTE_UNUSED, asection *sect, void *obj)
2725{
2726 bfd_vma addr = * (bfd_vma *) obj;
2727 return (addr >= sect->vma) && (addr < (sect->vma + sect->size));
2728}
2729
2730static asection *
2731find_section_by_vma (bfd *abfd, bfd_vma addr)
2732{
2733 return bfd_sections_find_if (abfd, is_vma_in_section, (void *) & addr);
2734}
2735
277d1b5e
ILT
2736/* Copy any private info we understand from the input bfd
2737 to the output bfd. */
2738
b34976b6 2739bfd_boolean
7920ce38 2740_bfd_XX_bfd_copy_private_bfd_data_common (bfd * ibfd, bfd * obfd)
277d1b5e 2741{
4be8cddc
L
2742 pe_data_type *ipe, *ope;
2743
277d1b5e
ILT
2744 /* One day we may try to grok other private data. */
2745 if (ibfd->xvec->flavour != bfd_target_coff_flavour
2746 || obfd->xvec->flavour != bfd_target_coff_flavour)
b34976b6 2747 return TRUE;
277d1b5e 2748
4be8cddc
L
2749 ipe = pe_data (ibfd);
2750 ope = pe_data (obfd);
4e1fc599 2751
325c681d 2752 /* pe_opthdr is copied in copy_object. */
4be8cddc
L
2753 ope->dll = ipe->dll;
2754
2755 /* Don't copy input subsystem if output is different from input. */
2756 if (obfd->xvec != ibfd->xvec)
2757 ope->pe_opthdr.Subsystem = IMAGE_SUBSYSTEM_UNKNOWN;
277d1b5e 2758
1725a96e 2759 /* For strip: if we removed .reloc, we'll make a real mess of things
5933bdc9
ILT
2760 if we don't remove this entry as well. */
2761 if (! pe_data (obfd)->has_reloc_section)
2762 {
6c73cbb1
NC
2763 pe_data (obfd)->pe_opthdr.DataDirectory[PE_BASE_RELOCATION_TABLE].VirtualAddress = 0;
2764 pe_data (obfd)->pe_opthdr.DataDirectory[PE_BASE_RELOCATION_TABLE].Size = 0;
5933bdc9 2765 }
441f34fa
L
2766
2767 /* For PIE, if there is .reloc, we won't add IMAGE_FILE_RELOCS_STRIPPED.
2768 But there is no .reloc, we make sure that IMAGE_FILE_RELOCS_STRIPPED
2769 won't be added. */
2770 if (! pe_data (ibfd)->has_reloc_section
2771 && ! (pe_data (ibfd)->real_flags & IMAGE_FILE_RELOCS_STRIPPED))
2772 pe_data (obfd)->dont_strip_reloc = 1;
2773
6e6e7cfc
JT
2774 /* The file offsets contained in the debug directory need rewriting. */
2775 if (ope->pe_opthdr.DataDirectory[PE_DEBUG_DATA].Size != 0)
2776 {
2777 bfd_vma addr = ope->pe_opthdr.DataDirectory[PE_DEBUG_DATA].VirtualAddress
2778 + ope->pe_opthdr.ImageBase;
2779 asection *section = find_section_by_vma (obfd, addr);
2780 bfd_byte *data;
2781
2782 if (section && bfd_malloc_and_get_section (obfd, section, &data))
2783 {
2784 unsigned int i;
2785 struct external_IMAGE_DEBUG_DIRECTORY *dd =
2786 (struct external_IMAGE_DEBUG_DIRECTORY *)(data + (addr - section->vma));
2787
2788 for (i = 0; i < ope->pe_opthdr.DataDirectory[PE_DEBUG_DATA].Size
2789 / sizeof (struct external_IMAGE_DEBUG_DIRECTORY); i++)
2790 {
2791 asection *ddsection;
2792 struct external_IMAGE_DEBUG_DIRECTORY *edd = &(dd[i]);
2793 struct internal_IMAGE_DEBUG_DIRECTORY idd;
2794
2795 _bfd_XXi_swap_debugdir_in (obfd, edd, &idd);
2796
2797 if (idd.AddressOfRawData == 0)
2798 continue; /* RVA 0 means only offset is valid, not handled yet. */
2799
2800 ddsection = find_section_by_vma (obfd, idd.AddressOfRawData + ope->pe_opthdr.ImageBase);
2801 if (!ddsection)
2802 continue; /* Not in a section! */
2803
2804 idd.PointerToRawData = ddsection->filepos + (idd.AddressOfRawData
2805 + ope->pe_opthdr.ImageBase) - ddsection->vma;
2806
2807 _bfd_XXi_swap_debugdir_out (obfd, &idd, edd);
2808 }
2809
2810 if (!bfd_set_section_contents (obfd, section, data, 0, section->size))
2811 _bfd_error_handler (_("Failed to update file offsets in debug directory"));
2812 }
2813 }
2814
b34976b6 2815 return TRUE;
277d1b5e
ILT
2816}
2817
9602af51 2818/* Copy private section data. */
1725a96e 2819
b34976b6 2820bfd_boolean
7920ce38
NC
2821_bfd_XX_bfd_copy_private_section_data (bfd *ibfd,
2822 asection *isec,
2823 bfd *obfd,
2824 asection *osec)
277d1b5e
ILT
2825{
2826 if (bfd_get_flavour (ibfd) != bfd_target_coff_flavour
2827 || bfd_get_flavour (obfd) != bfd_target_coff_flavour)
b34976b6 2828 return TRUE;
277d1b5e
ILT
2829
2830 if (coff_section_data (ibfd, isec) != NULL
2831 && pei_section_data (ibfd, isec) != NULL)
2832 {
2833 if (coff_section_data (obfd, osec) == NULL)
2834 {
dc810e39 2835 bfd_size_type amt = sizeof (struct coff_section_tdata);
7920ce38 2836 osec->used_by_bfd = bfd_zalloc (obfd, amt);
277d1b5e 2837 if (osec->used_by_bfd == NULL)
b34976b6 2838 return FALSE;
277d1b5e 2839 }
1725a96e 2840
277d1b5e
ILT
2841 if (pei_section_data (obfd, osec) == NULL)
2842 {
dc810e39 2843 bfd_size_type amt = sizeof (struct pei_section_tdata);
7920ce38 2844 coff_section_data (obfd, osec)->tdata = bfd_zalloc (obfd, amt);
277d1b5e 2845 if (coff_section_data (obfd, osec)->tdata == NULL)
b34976b6 2846 return FALSE;
277d1b5e 2847 }
1725a96e 2848
277d1b5e
ILT
2849 pei_section_data (obfd, osec)->virt_size =
2850 pei_section_data (ibfd, isec)->virt_size;
5933bdc9 2851 pei_section_data (obfd, osec)->pe_flags =
6fa957a9 2852 pei_section_data (ibfd, isec)->pe_flags;
277d1b5e
ILT
2853 }
2854
b34976b6 2855 return TRUE;
277d1b5e 2856}
7d2b58d6
ILT
2857
2858void
7920ce38 2859_bfd_XX_get_symbol_info (bfd * abfd, asymbol *symbol, symbol_info *ret)
7d2b58d6
ILT
2860{
2861 coff_get_symbol_info (abfd, symbol, ret);
7d2b58d6 2862}
2fbadf2c 2863
5174d0fb
KT
2864#if !defined(COFF_WITH_pep) && defined(COFF_WITH_pex64)
2865static int
2866sort_x64_pdata (const void *l, const void *r)
2867{
2868 const char *lp = (const char *) l;
2869 const char *rp = (const char *) r;
2870 bfd_vma vl, vr;
2871 vl = bfd_getl32 (lp); vr = bfd_getl32 (rp);
2872 if (vl != vr)
2873 return (vl < vr ? -1 : 1);
2874 /* We compare just begin address. */
2875 return 0;
2876}
2877#endif
5879bb8f
NC
2878\f
2879/* Functions to process a .rsrc section. */
2880
2881static unsigned int sizeof_leaves;
2882static unsigned int sizeof_strings;
2883static unsigned int sizeof_tables_and_entries;
2884
2885static bfd_byte *
2886rsrc_count_directory (bfd *, bfd_byte *, bfd_byte *, bfd_byte *, bfd_vma);
2887
2888static bfd_byte *
2889rsrc_count_entries (bfd * abfd,
2890 bfd_boolean is_name,
2891 bfd_byte * datastart,
2892 bfd_byte * data,
2893 bfd_byte * dataend,
2894 bfd_vma rva_bias)
2895{
2896 unsigned long entry, addr, size;
2897
2898 if (data + 8 >= dataend)
2899 return dataend + 1;
2900
2901 if (is_name)
2902 {
2903 bfd_byte * name;
2904
2905 entry = (long) bfd_get_32 (abfd, data);
2906
2907 if (HighBitSet (entry))
2908 name = datastart + WithoutHighBit (entry);
2909 else
2910 name = datastart + entry - rva_bias;
2911
2912 if (name + 2 >= dataend)
2913 return dataend + 1;
2914
2915 unsigned int len = bfd_get_16 (abfd, name);
2916 if (len == 0 || len > 256)
2917 return dataend + 1;
5879bb8f
NC
2918 }
2919
2920 entry = (long) bfd_get_32 (abfd, data + 4);
2921
2922 if (HighBitSet (entry))
2923 return rsrc_count_directory (abfd,
2924 datastart,
2925 datastart + WithoutHighBit (entry),
2926 dataend, rva_bias);
2927
2928 if (datastart + entry + 16 >= dataend)
2929 return dataend + 1;
2930
2931 addr = (long) bfd_get_32 (abfd, datastart + entry);
2932 size = (long) bfd_get_32 (abfd, datastart + entry + 4);
2933
5879bb8f
NC
2934 return datastart + addr - rva_bias + size;
2935}
9373215c 2936
5879bb8f
NC
2937static bfd_byte *
2938rsrc_count_directory (bfd * abfd,
2939 bfd_byte * datastart,
2940 bfd_byte * data,
2941 bfd_byte * dataend,
2942 bfd_vma rva_bias)
2943{
2944 unsigned int num_entries, num_ids;
2945 bfd_byte * highest_data = data;
2946
2947 if (data + 16 >= dataend)
2948 return dataend + 1;
2949
2950 num_entries = (int) bfd_get_16 (abfd, data + 12);
2951 num_ids = (int) bfd_get_16 (abfd, data + 14);
2952
2953 num_entries += num_ids;
2954
2955 data += 16;
5879bb8f
NC
2956
2957 while (num_entries --)
2958 {
2959 bfd_byte * entry_end;
2960
2961 entry_end = rsrc_count_entries (abfd, num_entries >= num_ids,
2962 datastart, data, dataend, rva_bias);
2963 data += 8;
5879bb8f
NC
2964 highest_data = max (highest_data, entry_end);
2965 if (entry_end >= dataend)
2966 break;
2967 }
2968
2969 return max (highest_data, data);
2970}
2971
2972typedef struct rsrc_dir_chain
2973{
2974 unsigned int num_entries;
2975 struct rsrc_entry * first_entry;
2976 struct rsrc_entry * last_entry;
2977} rsrc_dir_chain;
2978
2979typedef struct rsrc_directory
2980{
2981 unsigned int characteristics;
2982 unsigned int time;
2983 unsigned int major;
2984 unsigned int minor;
2985
2986 rsrc_dir_chain names;
2987 rsrc_dir_chain ids;
2988
2989 struct rsrc_entry * entry;
2990} rsrc_directory;
2991
2992typedef struct rsrc_string
2993{
2994 unsigned int len;
2995 bfd_byte * string;
2996} rsrc_string;
9373215c 2997
5879bb8f
NC
2998typedef struct rsrc_leaf
2999{
3000 unsigned int size;
3001 unsigned int codepage;
3002 bfd_byte * data;
3003} rsrc_leaf;
3004
3005typedef struct rsrc_entry
3006{
3007 bfd_boolean is_name;
3008 union
3009 {
3010 unsigned int id;
3011 struct rsrc_string name;
3012 } name_id;
3013
3014 bfd_boolean is_dir;
3015 union
3016 {
3017 struct rsrc_directory * directory;
3018 struct rsrc_leaf * leaf;
3019 } value;
3020
3021 struct rsrc_entry * next_entry;
3022 struct rsrc_directory * parent;
3023} rsrc_entry;
3024
3025static bfd_byte *
3026rsrc_parse_directory (bfd *, rsrc_directory *, bfd_byte *,
3027 bfd_byte *, bfd_byte *, bfd_vma, rsrc_entry *);
3028
3029static bfd_byte *
3030rsrc_parse_entry (bfd * abfd,
3031 bfd_boolean is_name,
3032 rsrc_entry * entry,
3033 bfd_byte * datastart,
3034 bfd_byte * data,
3035 bfd_byte * dataend,
3036 bfd_vma rva_bias,
3037 rsrc_directory * parent)
3038{
3039 unsigned long val, addr, size;
3040
3041 val = bfd_get_32 (abfd, data);
3042
3043 entry->parent = parent;
3044 entry->is_name = is_name;
3045
3046 if (is_name)
3047 {
3048 /* FIXME: Add range checking ? */
3049 if (HighBitSet (val))
3050 {
3051 val = WithoutHighBit (val);
3052
3053 entry->name_id.name.len = bfd_get_16 (abfd, datastart + val);
3054 entry->name_id.name.string = datastart + val + 2;
3055 }
3056 else
3057 {
9373215c
PM
3058 entry->name_id.name.len = bfd_get_16 (abfd, datastart + val
3059 - rva_bias);
5879bb8f
NC
3060 entry->name_id.name.string = datastart + val - rva_bias + 2;
3061 }
3062 }
3063 else
3064 entry->name_id.id = val;
3065
3066 val = bfd_get_32 (abfd, data + 4);
3067
3068 if (HighBitSet (val))
3069 {
3070 entry->is_dir = TRUE;
3071 entry->value.directory = bfd_malloc (sizeof * entry->value.directory);
3072 if (entry->value.directory == NULL)
3073 return dataend;
3074
3075 return rsrc_parse_directory (abfd, entry->value.directory,
3076 datastart,
3077 datastart + WithoutHighBit (val),
3078 dataend, rva_bias, entry);
3079 }
3080
3081 entry->is_dir = FALSE;
3082 entry->value.leaf = bfd_malloc (sizeof * entry->value.leaf);
3083 if (entry->value.leaf == NULL)
3084 return dataend;
3085
3086 addr = bfd_get_32 (abfd, datastart + val);
3087 size = entry->value.leaf->size = bfd_get_32 (abfd, datastart + val + 4);
3088 entry->value.leaf->codepage = bfd_get_32 (abfd, datastart + val + 8);
3089
3090 entry->value.leaf->data = bfd_malloc (size);
3091 if (entry->value.leaf->data == NULL)
3092 return dataend;
3093
3094 memcpy (entry->value.leaf->data, datastart + addr - rva_bias, size);
3095 return datastart + (addr - rva_bias) + size;
3096}
3097
3098static bfd_byte *
3099rsrc_parse_entries (bfd * abfd,
3100 rsrc_dir_chain * chain,
3101 bfd_boolean is_name,
3102 bfd_byte * highest_data,
3103 bfd_byte * datastart,
3104 bfd_byte * data,
3105 bfd_byte * dataend,
3106 bfd_vma rva_bias,
3107 rsrc_directory * parent)
3108{
9373215c 3109 unsigned int i;
5879bb8f
NC
3110 rsrc_entry * entry;
3111
3112 if (chain->num_entries == 0)
3113 {
3114 chain->first_entry = chain->last_entry = NULL;
3115 return highest_data;
3116 }
3117
3118 entry = bfd_malloc (sizeof * entry);
3119 if (entry == NULL)
3120 return dataend;
3121
3122 chain->first_entry = entry;
3123
5879bb8f
NC
3124 for (i = chain->num_entries; i--;)
3125 {
3126 bfd_byte * entry_end;
3127
3128 entry_end = rsrc_parse_entry (abfd, is_name, entry, datastart,
3129 data, dataend, rva_bias, parent);
3130 data += 8;
3131 highest_data = max (entry_end, highest_data);
3132 if (entry_end > dataend)
3133 return dataend;
3134
3135 if (i)
3136 {
3137 entry->next_entry = bfd_malloc (sizeof * entry);
3138 entry = entry->next_entry;
3139 if (entry == NULL)
3140 return dataend;
3141 }
3142 else
3143 entry->next_entry = NULL;
3144 }
3145
3146 chain->last_entry = entry;
3147
3148 return highest_data;
3149}
3150
3151static bfd_byte *
3152rsrc_parse_directory (bfd * abfd,
3153 rsrc_directory * table,
3154 bfd_byte * datastart,
3155 bfd_byte * data,
3156 bfd_byte * dataend,
3157 bfd_vma rva_bias,
3158 rsrc_entry * entry)
3159{
3160 bfd_byte * highest_data = data;
3161
3162 if (table == NULL)
3163 return dataend;
3164
3165 table->characteristics = bfd_get_32 (abfd, data);
3166 table->time = bfd_get_32 (abfd, data + 4);
3167 table->major = bfd_get_16 (abfd, data + 8);
3168 table->minor = bfd_get_16 (abfd, data + 10);
3169 table->names.num_entries = bfd_get_16 (abfd, data + 12);
3170 table->ids.num_entries = bfd_get_16 (abfd, data + 14);
3171 table->entry = entry;
3172
3173 data += 16;
3174
3175 highest_data = rsrc_parse_entries (abfd, & table->names, TRUE, data,
3176 datastart, data, dataend, rva_bias, table);
3177 data += table->names.num_entries * 8;
3178
3179 highest_data = rsrc_parse_entries (abfd, & table->ids, FALSE, highest_data,
3180 datastart, data, dataend, rva_bias, table);
3181 data += table->ids.num_entries * 8;
3182
3183 return max (highest_data, data);
3184}
3185
3186typedef struct rsrc_write_data
3187{
3188 bfd * abfd;
3189 bfd_byte * datastart;
3190 bfd_byte * next_table;
3191 bfd_byte * next_leaf;
3192 bfd_byte * next_string;
3193 bfd_byte * next_data;
3194 bfd_vma rva_bias;
9373215c
PM
3195} rsrc_write_data;
3196
5879bb8f
NC
3197static void
3198rsrc_write_string (rsrc_write_data * data,
3199 rsrc_string * string)
3200{
3201 bfd_put_16 (data->abfd, string->len, data->next_string);
3202 memcpy (data->next_string + 2, string->string, string->len * 2);
3203 data->next_string += (string->len + 1) * 2;
3204}
3205
3206static inline unsigned int
3207rsrc_compute_rva (rsrc_write_data * data,
3208 bfd_byte * addr)
3209{
3210 return (addr - data->datastart) + data->rva_bias;
3211}
3212
3213static void
3214rsrc_write_leaf (rsrc_write_data * data,
3215 rsrc_leaf * leaf)
3216{
9373215c
PM
3217 bfd_put_32 (data->abfd, rsrc_compute_rva (data, data->next_data),
3218 data->next_leaf);
5879bb8f
NC
3219 bfd_put_32 (data->abfd, leaf->size, data->next_leaf + 4);
3220 bfd_put_32 (data->abfd, leaf->codepage, data->next_leaf + 8);
3221 bfd_put_32 (data->abfd, 0 /*reserved*/, data->next_leaf + 12);
3222 data->next_leaf += 16;
3223
3224 memcpy (data->next_data, leaf->data, leaf->size);
3714081c
NC
3225 /* An undocumented feature of Windows resources is that each unit
3226 of raw data is 8-byte aligned... */
3227 data->next_data += ((leaf->size + 7) & ~7);
5879bb8f
NC
3228}
3229
3230static void rsrc_write_directory (rsrc_write_data *, rsrc_directory *);
3231
3232static void
3233rsrc_write_entry (rsrc_write_data * data,
3234 bfd_byte * where,
3235 rsrc_entry * entry)
3236{
3237 if (entry->is_name)
3238 {
3239 bfd_put_32 (data->abfd,
3240 SetHighBit (data->next_string - data->datastart),
3241 where);
3242 rsrc_write_string (data, & entry->name_id.name);
3243 }
3244 else
3245 bfd_put_32 (data->abfd, entry->name_id.id, where);
3246
3247 if (entry->is_dir)
3248 {
3249 bfd_put_32 (data->abfd,
3250 SetHighBit (data->next_table - data->datastart),
3251 where + 4);
3252 rsrc_write_directory (data, entry->value.directory);
3253 }
3254 else
3255 {
3256 bfd_put_32 (data->abfd, data->next_leaf - data->datastart, where + 4);
3257 rsrc_write_leaf (data, entry->value.leaf);
3258 }
3259}
3260
3714081c
NC
3261static void
3262rsrc_compute_region_sizes (rsrc_directory * dir)
3263{
3264 struct rsrc_entry * entry;
3265
3266 if (dir == NULL)
3267 return;
3268
3269 sizeof_tables_and_entries += 16;
3270
3271 for (entry = dir->names.first_entry; entry != NULL; entry = entry->next_entry)
3272 {
3273 sizeof_tables_and_entries += 8;
3274
3275 sizeof_strings += (entry->name_id.name.len + 1) * 2;
3276
3277 if (entry->is_dir)
3278 rsrc_compute_region_sizes (entry->value.directory);
3279 else
3280 sizeof_leaves += 16;
3281 }
3282
3283 for (entry = dir->ids.first_entry; entry != NULL; entry = entry->next_entry)
3284 {
3285 sizeof_tables_and_entries += 8;
3286
3287 if (entry->is_dir)
3288 rsrc_compute_region_sizes (entry->value.directory);
3289 else
3290 sizeof_leaves += 16;
3291 }
3292}
3293
5879bb8f
NC
3294static void
3295rsrc_write_directory (rsrc_write_data * data,
3296 rsrc_directory * dir)
3297{
3298 rsrc_entry * entry;
3299 unsigned int i;
9373215c
PM
3300 bfd_byte * next_entry;
3301 bfd_byte * nt;
5879bb8f
NC
3302
3303 bfd_put_32 (data->abfd, dir->characteristics, data->next_table);
3304 bfd_put_32 (data->abfd, 0 /*dir->time*/, data->next_table + 4);
3305 bfd_put_16 (data->abfd, dir->major, data->next_table + 8);
3306 bfd_put_16 (data->abfd, dir->minor, data->next_table + 10);
3307 bfd_put_16 (data->abfd, dir->names.num_entries, data->next_table + 12);
3308 bfd_put_16 (data->abfd, dir->ids.num_entries, data->next_table + 14);
3309
3310 /* Compute where the entries and the next table will be placed. */
9373215c
PM
3311 next_entry = data->next_table + 16;
3312 data->next_table = next_entry + (dir->names.num_entries * 8)
3313 + (dir->ids.num_entries * 8);
3314 nt = data->next_table;
3315
5879bb8f
NC
3316 /* Write the entries. */
3317 for (i = dir->names.num_entries, entry = dir->names.first_entry;
3318 i > 0 && entry != NULL;
3319 i--, entry = entry->next_entry)
3320 {
3714081c 3321 BFD_ASSERT (entry->is_name);
5879bb8f
NC
3322 rsrc_write_entry (data, next_entry, entry);
3323 next_entry += 8;
3324 }
3325 BFD_ASSERT (i == 0);
3326 BFD_ASSERT (entry == NULL);
3327
3328 for (i = dir->ids.num_entries, entry = dir->ids.first_entry;
3329 i > 0 && entry != NULL;
3330 i--, entry = entry->next_entry)
3331 {
3714081c 3332 BFD_ASSERT (! entry->is_name);
5879bb8f
NC
3333 rsrc_write_entry (data, next_entry, entry);
3334 next_entry += 8;
3335 }
3336 BFD_ASSERT (i == 0);
3337 BFD_ASSERT (entry == NULL);
3338 BFD_ASSERT (nt == next_entry);
3339}
3340
9373215c 3341#if defined HAVE_WCHAR_H && ! defined __CYGWIN__ && ! defined __MINGW32__
5879bb8f
NC
3342/* Return the length (number of units) of the first character in S,
3343 putting its 'ucs4_t' representation in *PUC. */
3344
3345static unsigned int
3346u16_mbtouc (wchar_t * puc, const unsigned short * s, unsigned int n)
3347{
3348 unsigned short c = * s;
3349
3350 if (c < 0xd800 || c >= 0xe000)
3351 {
3352 *puc = c;
3353 return 1;
3354 }
3355
3356 if (c < 0xdc00)
3357 {
3358 if (n >= 2)
3359 {
3360 if (s[1] >= 0xdc00 && s[1] < 0xe000)
3361 {
3362 *puc = 0x10000 + ((c - 0xd800) << 10) + (s[1] - 0xdc00);
3363 return 2;
3364 }
3365 }
3366 else
3367 {
3368 /* Incomplete multibyte character. */
3369 *puc = 0xfffd;
3370 return n;
3371 }
3372 }
3373
3374 /* Invalid multibyte character. */
3375 *puc = 0xfffd;
3376 return 1;
3377}
9373215c 3378#endif /* HAVE_WCHAR_H and not Cygwin/Mingw */
5879bb8f
NC
3379
3380/* Perform a comparison of two entries. */
3381static signed int
3382rsrc_cmp (bfd_boolean is_name, rsrc_entry * a, rsrc_entry * b)
3383{
9373215c 3384 signed int res;
9373215c
PM
3385 bfd_byte * astring;
3386 unsigned int alen;
3387 bfd_byte * bstring;
3388 unsigned int blen;
3389
5879bb8f 3390 if (! is_name)
9373215c 3391 return a->name_id.id - b->name_id.id;
5879bb8f
NC
3392
3393 /* We have to perform a case insenstive, unicode string comparison... */
9373215c
PM
3394 astring = a->name_id.name.string;
3395 alen = a->name_id.name.len;
3396 bstring = b->name_id.name.string;
3397 blen = b->name_id.name.len;
5879bb8f 3398
9373215c
PM
3399#if defined __CYGWIN__ || defined __MINGW32__
3400 /* Under Windows hosts (both Cygwin and Mingw types),
3401 unicode == UTF-16 == wchar_t. The case insensitive string comparison
3402 function however goes by different names in the two environments... */
3403
3404#undef rscpcmp
5879bb8f 3405#ifdef __CYGWIN__
9373215c
PM
3406#define rscpcmp wcsncasecmp
3407#endif
3408#ifdef __MINGW32__
3409#define rscpcmp wcsnicmp
3410#endif
3411
3412 res = rscpcmp ((const wchar_t *) astring, (const wchar_t *) bstring,
3413 min (alen, blen));
5879bb8f 3414
9373215c 3415#elif defined HAVE_WCHAR_H
3f10b67a
PM
3416 {
3417 unsigned int i;
3418 res = 0;
3419 for (i = min (alen, blen); i--; astring += 2, bstring += 2)
3420 {
3421 wchar_t awc;
3422 wchar_t bwc;
3423
3424 /* Convert UTF-16 unicode characters into wchar_t characters so
3425 that we can then perform a case insensitive comparison. */
3426 int Alen = u16_mbtouc (& awc, (const unsigned short *) astring, 2);
3427 int Blen = u16_mbtouc (& bwc, (const unsigned short *) bstring, 2);
3428
3429 if (Alen != Blen)
3430 return Alen - Blen;
3431 res = wcsncasecmp (& awc, & bwc, 1);
3432 if (res)
3433 break;
3434 }
3435 }
5879bb8f 3436#else
9373215c
PM
3437 /* Do the best we can - a case sensitive, untranslated comparison. */
3438 res = memcmp (astring, bstring, min (alen, blen) * 2);
5879bb8f
NC
3439#endif
3440
3441 if (res == 0)
3442 res = alen - blen;
3443
3444 return res;
3445}
3446
3447static void
3448rsrc_print_name (char * buffer, rsrc_string string)
3449{
3450 unsigned int i;
3451 bfd_byte * name = string.string;
3452
3453 for (i = string.len; i--; name += 2)
3454 sprintf (buffer + strlen (buffer), "%.1s", name);
3455}
3456
3457static const char *
3458rsrc_resource_name (rsrc_entry * entry, rsrc_directory * dir)
3459{
3460 static char buffer [256];
3461 bfd_boolean is_string = FALSE;
3462
3463 buffer[0] = 0;
3464
9373215c
PM
3465 if (dir != NULL && dir->entry != NULL && dir->entry->parent != NULL
3466 && dir->entry->parent->entry != NULL)
5879bb8f
NC
3467 {
3468 strcpy (buffer, "type: ");
3469 if (dir->entry->parent->entry->is_name)
9373215c
PM
3470 rsrc_print_name (buffer + strlen (buffer),
3471 dir->entry->parent->entry->name_id.name);
5879bb8f
NC
3472 else
3473 {
3474 unsigned int id = dir->entry->parent->entry->name_id.id;
3475
3476 sprintf (buffer + strlen (buffer), "%x", id);
3477 switch (id)
3478 {
3479 case 1: strcat (buffer, " (CURSOR)"); break;
3480 case 2: strcat (buffer, " (BITMAP)"); break;
3481 case 3: strcat (buffer, " (ICON)"); break;
3482 case 4: strcat (buffer, " (MENU)"); break;
3483 case 5: strcat (buffer, " (DIALOG)"); break;
3484 case 6: strcat (buffer, " (STRING)"); is_string = TRUE; break;
3485 case 7: strcat (buffer, " (FONTDIR)"); break;
3486 case 8: strcat (buffer, " (FONT)"); break;
3487 case 9: strcat (buffer, " (ACCELERATOR)"); break;
3488 case 10: strcat (buffer, " (RCDATA)"); break;
3489 case 11: strcat (buffer, " (MESSAGETABLE)"); break;
3490 case 12: strcat (buffer, " (GROUP_CURSOR)"); break;
3491 case 14: strcat (buffer, " (GROUP_ICON)"); break;
3492 case 16: strcat (buffer, " (VERSION)"); break;
3493 case 17: strcat (buffer, " (DLGINCLUDE)"); break;
3494 case 19: strcat (buffer, " (PLUGPLAY)"); break;
3495 case 20: strcat (buffer, " (VXD)"); break;
3496 case 21: strcat (buffer, " (ANICURSOR)"); break;
3497 case 22: strcat (buffer, " (ANIICON)"); break;
3498 case 23: strcat (buffer, " (HTML)"); break;
3499 case 24: strcat (buffer, " (MANIFEST)"); break;
3500 case 240: strcat (buffer, " (DLGINIT)"); break;
3501 case 241: strcat (buffer, " (TOOLBAR)"); break;
3502 }
3503 }
3504 }
3505
3506 if (dir != NULL && dir->entry != NULL)
3507 {
3508 strcat (buffer, " name: ");
3509 if (dir->entry->is_name)
3510 rsrc_print_name (buffer + strlen (buffer), dir->entry->name_id.name);
3511 else
3512 {
3513 unsigned int id = dir->entry->name_id.id;
3514
3515 sprintf (buffer + strlen (buffer), "%x", id);
3516
3517 if (is_string)
3518 sprintf (buffer + strlen (buffer), " (resource id range: %d - %d)",
3519 (id - 1) << 4, (id << 4) - 1);
3520 }
3521 }
3522
3523 if (entry != NULL)
3524 {
3525 strcat (buffer, " lang: ");
3526
3527 if (entry->is_name)
3528 rsrc_print_name (buffer + strlen (buffer), entry->name_id.name);
3529 else
3530 sprintf (buffer + strlen (buffer), "%x", entry->name_id.id);
3531 }
3532
3533 return buffer;
3534}
3535
3536/* *sigh* Windows resource strings are special. Only the top 28-bits of
3537 their ID is stored in the NAME entry. The bottom four bits are used as
3538 an index into unicode string table that makes up the data of the leaf.
3539 So identical type-name-lang string resources may not actually be
3540 identical at all.
3541
3542 This function is called when we have detected two string resources with
3543 match top-28-bit IDs. We have to scan the string tables inside the leaves
3544 and discover if there are any real collisions. If there are then we report
9373215c
PM
3545 them and return FALSE. Otherwise we copy any strings from B into A and
3546 then return TRUE. */
5879bb8f
NC
3547
3548static bfd_boolean
3549rsrc_merge_string_entries (rsrc_entry * a ATTRIBUTE_UNUSED,
3550 rsrc_entry * b ATTRIBUTE_UNUSED)
3551{
3552 unsigned int copy_needed = 0;
3553 unsigned int i;
9373215c
PM
3554 bfd_byte * astring;
3555 bfd_byte * bstring;
3556 bfd_byte * new_data;
3557 bfd_byte * nstring;
5879bb8f
NC
3558
3559 /* Step one: Find out what we have to do. */
3560 BFD_ASSERT (! a->is_dir);
9373215c 3561 astring = a->value.leaf->data;
5879bb8f
NC
3562
3563 BFD_ASSERT (! b->is_dir);
9373215c 3564 bstring = b->value.leaf->data;
5879bb8f
NC
3565
3566 for (i = 0; i < 16; i++)
3567 {
3568 unsigned int alen = astring[0] + (astring[1] << 8);
3569 unsigned int blen = bstring[0] + (bstring[1] << 8);
3570
3571 if (alen == 0)
3572 {
3573 copy_needed += blen * 2;
3574 }
3575 else if (blen == 0)
3576 ;
3577 else if (alen != blen)
3578 /* FIXME: Should we continue the loop in order to report other duplicates ? */
3579 break;
3580 /* alen == blen != 0. We might have two identical strings. If so we
3581 can ignore the second one. There is no need for wchar_t vs UTF-16
3582 theatrics here - we are only interested in (case sensitive) equality. */
3583 else if (memcmp (astring + 2, bstring + 2, alen * 2) != 0)
3584 break;
3585
3586 astring += (alen + 1) * 2;
3587 bstring += (blen + 1) * 2;
3588 }
3589
3590 if (i != 16)
3591 {
3592 if (a->parent != NULL
3593 && a->parent->entry != NULL
3594 && a->parent->entry->is_name == FALSE)
3595 _bfd_error_handler (_(".rsrc merge failure: duplicate string resource: %d"),
3596 ((a->parent->entry->name_id.id - 1) << 4) + i);
3597 return FALSE;
3598 }
3599
3600 if (copy_needed == 0)
3601 return TRUE;
3602
3603 /* If we reach here then A and B must both have non-colliding strings.
3604 (We never get string resources with fully empty string tables).
3605 We need to allocate an extra COPY_NEEDED bytes in A and then bring
3606 in B's strings. */
9373215c 3607 new_data = bfd_malloc (a->value.leaf->size + copy_needed);
5879bb8f
NC
3608 if (new_data == NULL)
3609 return FALSE;
3610
9373215c 3611 nstring = new_data;
5879bb8f
NC
3612 astring = a->value.leaf->data;
3613 bstring = b->value.leaf->data;
3614
3615 for (i = 0; i < 16; i++)
3616 {
3617 unsigned int alen = astring[0] + (astring[1] << 8);
3618 unsigned int blen = bstring[0] + (bstring[1] << 8);
3619
3620 if (alen != 0)
3621 {
3622 memcpy (nstring, astring, (alen + 1) * 2);
3623 nstring += (alen + 1) * 2;
3624 }
3625 else if (blen != 0)
3626 {
3627 memcpy (nstring, bstring, (blen + 1) * 2);
3628 nstring += (blen + 1) * 2;
3629 }
3630 else
3631 {
3632 * nstring++ = 0;
3633 * nstring++ = 0;
3634 }
9373215c 3635
5879bb8f
NC
3636 astring += (alen + 1) * 2;
3637 bstring += (blen + 1) * 2;
3638 }
3639
3640 BFD_ASSERT (nstring - new_data == (signed) (a->value.leaf->size + copy_needed));
9373215c 3641
5879bb8f
NC
3642 free (a->value.leaf->data);
3643 a->value.leaf->data = new_data;
3644 a->value.leaf->size += copy_needed;
3645
3646 return TRUE;
3647}
3648
3649static void rsrc_merge (rsrc_entry *, rsrc_entry *);
3650
3651/* Sort the entries in given part of the directory.
3652 We use an old fashioned bubble sort because we are dealing
9373215c 3653 with lists and we want to handle matches specially. */
5879bb8f
NC
3654
3655static void
3656rsrc_sort_entries (rsrc_dir_chain * chain,
3657 bfd_boolean is_name,
3658 rsrc_directory * dir)
3659{
3660 rsrc_entry * entry;
3661 rsrc_entry * next;
3662 rsrc_entry ** points_to_entry;
3663 bfd_boolean swapped;
3664
3665 if (chain->num_entries < 2)
3666 return;
3667
3668 do
3669 {
3670 swapped = FALSE;
3671 points_to_entry = & chain->first_entry;
3672 entry = * points_to_entry;
3673 next = entry->next_entry;
3674
3675 do
3676 {
3677 signed int cmp = rsrc_cmp (is_name, entry, next);
3678
3679 if (cmp > 0)
3680 {
3681 entry->next_entry = next->next_entry;
3682 next->next_entry = entry;
3683 * points_to_entry = next;
3684 points_to_entry = & next->next_entry;
3685 next = entry->next_entry;
3686 swapped = TRUE;
3687 }
3688 else if (cmp == 0)
3689 {
3690 if (entry->is_dir && next->is_dir)
3691 {
3692 /* When we encounter identical directory entries we have to
3693 merge them together. The exception to this rule is for
3694 resource manifests - there can only be one of these,
3695 even if they differ in language. Zero-language manifests
3696 are assumed to be default manifests (provided by the
3714081c 3697 Cygwin/MinGW build system) and these can be silently dropped,
5879bb8f
NC
3698 unless that would reduce the number of manifests to zero.
3699 There should only ever be one non-zero lang manifest -
3700 if there are more it is an error. A non-zero lang
3701 manifest takes precedence over a default manifest. */
3702 if (entry->is_name == FALSE
3703 && entry->name_id.id == 1
3704 && dir != NULL
3705 && dir->entry != NULL
3706 && dir->entry->is_name == FALSE
3707 && dir->entry->name_id.id == 0x18)
3708 {
3709 if (next->value.directory->names.num_entries == 0
3710 && next->value.directory->ids.num_entries == 1
3711 && next->value.directory->ids.first_entry->is_name == FALSE
3712 && next->value.directory->ids.first_entry->name_id.id == 0)
3713 /* Fall through so that NEXT is dropped. */
3714 ;
3715 else if (entry->value.directory->names.num_entries == 0
3716 && entry->value.directory->ids.num_entries == 1
3717 && entry->value.directory->ids.first_entry->is_name == FALSE
3718 && entry->value.directory->ids.first_entry->name_id.id == 0)
3719 {
3720 /* Swap ENTRY and NEXT. Then fall through so that the old ENTRY is dropped. */
3721 entry->next_entry = next->next_entry;
3722 next->next_entry = entry;
3723 * points_to_entry = next;
3724 points_to_entry = & next->next_entry;
3725 next = entry->next_entry;
3726 swapped = TRUE;
3727 }
3728 else
3729 {
3730 _bfd_error_handler (_(".rsrc merge failure: multiple non-default manifests"));
3731 bfd_set_error (bfd_error_file_truncated);
3732 return;
3733 }
9373215c 3734
5879bb8f
NC
3735 /* Unhook NEXT from the chain. */
3736 /* FIXME: memory loss here. */
3737 entry->next_entry = next->next_entry;
3738 chain->num_entries --;
3739 if (chain->num_entries < 2)
3740 return;
3741 next = next->next_entry;
3742 }
3743 else
3744 rsrc_merge (entry, next);
3745 }
3746 else if (entry->is_dir != next->is_dir)
3747 {
3748 _bfd_error_handler (_(".rsrc merge failure: a directory matches a leaf"));
3749 bfd_set_error (bfd_error_file_truncated);
3750 return;
3751 }
3752 else
3753 {
3754 /* Otherwise with identical leaves we issue an error
3755 message - because there should never be duplicates.
3756 The exception is Type 18/Name 1/Lang 0 which is the
3757 defaul manifest - this can just be dropped. */
3758 if (entry->is_name == FALSE
3759 && entry->name_id.id == 0
3760 && dir != NULL
3761 && dir->entry != NULL
3762 && dir->entry->is_name == FALSE
3763 && dir->entry->name_id.id == 1
3764 && dir->entry->parent != NULL
3765 && dir->entry->parent->entry != NULL
3766 && dir->entry->parent->entry->is_name == FALSE
3767 && dir->entry->parent->entry->name_id.id == 0x18 /* RT_MANIFEST */)
3768 ;
3769 else if (dir != NULL
3770 && dir->entry != NULL
3771 && dir->entry->parent != NULL
3772 && dir->entry->parent->entry != NULL
3773 && dir->entry->parent->entry->is_name == FALSE
3774 && dir->entry->parent->entry->name_id.id == 0x6 /* RT_STRING */)
3775 {
3776 /* Strings need special handling. */
3777 if (! rsrc_merge_string_entries (entry, next))
3778 {
3779 /* _bfd_error_handler should have been called inside merge_strings. */
3780 bfd_set_error (bfd_error_file_truncated);
3781 return;
3782 }
3783 }
3784 else
3785 {
3786 if (dir == NULL
3787 || dir->entry == NULL
3788 || dir->entry->parent == NULL
3789 || dir->entry->parent->entry == NULL)
3790 _bfd_error_handler (_(".rsrc merge failure: duplicate leaf"));
3791 else
3792 _bfd_error_handler (_(".rsrc merge failure: duplicate leaf: %s"),
3793 rsrc_resource_name (entry, dir));
3794 bfd_set_error (bfd_error_file_truncated);
3795 return;
3796 }
3797 }
3798
3799 /* Unhook NEXT from the chain. */
3800 entry->next_entry = next->next_entry;
3801 chain->num_entries --;
3802 if (chain->num_entries < 2)
3803 return;
3804 next = next->next_entry;
3805 }
3806 else
3807 {
3808 points_to_entry = & entry->next_entry;
3809 entry = next;
3810 next = next->next_entry;
3811 }
3812 }
3813 while (next);
3814
3815 chain->last_entry = entry;
3816 }
3817 while (swapped);
3818}
3819
3820/* Attach B's chain onto A. */
3821static void
9373215c 3822rsrc_attach_chain (rsrc_dir_chain * achain, rsrc_dir_chain * bchain)
5879bb8f
NC
3823{
3824 if (bchain->num_entries == 0)
3825 return;
3826
3827 achain->num_entries += bchain->num_entries;
3828
3829 if (achain->first_entry == NULL)
3830 {
3831 achain->first_entry = bchain->first_entry;
3832 achain->last_entry = bchain->last_entry;
3833 }
3834 else
3835 {
3836 achain->last_entry->next_entry = bchain->first_entry;
3837 achain->last_entry = bchain->last_entry;
3838 }
9373215c 3839
5879bb8f
NC
3840 bchain->num_entries = 0;
3841 bchain->first_entry = bchain->last_entry = NULL;
3842}
3843
3844static void
3845rsrc_merge (struct rsrc_entry * a, struct rsrc_entry * b)
3846{
9373215c
PM
3847 rsrc_directory * adir;
3848 rsrc_directory * bdir;
3849
5879bb8f
NC
3850 BFD_ASSERT (a->is_dir);
3851 BFD_ASSERT (b->is_dir);
3852
9373215c
PM
3853 adir = a->value.directory;
3854 bdir = b->value.directory;
3855
5879bb8f
NC
3856 if (adir->characteristics != bdir->characteristics)
3857 {
3858 _bfd_error_handler (_(".rsrc merge failure: dirs with differing characteristics\n"));
3859 bfd_set_error (bfd_error_file_truncated);
3860 return;
3861 }
9373215c 3862
5879bb8f
NC
3863 if (adir->major != bdir->major || adir->minor != bdir->minor)
3864 {
3865 _bfd_error_handler (_(".rsrc merge failure: differing directory versions\n"));
3866 bfd_set_error (bfd_error_file_truncated);
3867 return;
3868 }
3869
3870 /* Attach B's name chain to A. */
3871 rsrc_attach_chain (& adir->names, & bdir->names);
3872
3873 /* Attach B's ID chain to A. */
3874 rsrc_attach_chain (& adir->ids, & bdir->ids);
3875
3876 /* Now sort A's entries. */
3877 rsrc_sort_entries (& adir->names, TRUE, adir);
3878 rsrc_sort_entries (& adir->ids, FALSE, adir);
3879}
3880
3881/* Check the .rsrc section. If it contains multiple concatenated
3882 resources then we must merge them properly. Otherwise Windows
3883 will ignore all but the first set. */
3884
3885static void
3886rsrc_process_section (bfd * abfd,
3887 struct coff_final_link_info * pfinfo)
3888{
9373215c
PM
3889 rsrc_directory new_table;
3890 bfd_size_type size;
3891 asection * sec;
3892 pe_data_type * pe;
3893 bfd_vma rva_bias;
3894 bfd_byte * data;
3895 bfd_byte * datastart;
3896 bfd_byte * dataend;
3897 bfd_byte * new_data;
3898 unsigned int num_resource_sets;
3899 rsrc_directory * type_tables;
3900 rsrc_write_data write_data;
3901 unsigned int indx;
6caf7111
NC
3902 bfd * input;
3903 unsigned int num_input_rsrc = 0;
3904 unsigned int max_num_input_rsrc = 4;
3905 ptrdiff_t * rsrc_sizes = NULL;
5879bb8f
NC
3906
3907 new_table.names.num_entries = 0;
3908 new_table.ids.num_entries = 0;
9373215c 3909
5879bb8f
NC
3910 sec = bfd_get_section_by_name (abfd, ".rsrc");
3911 if (sec == NULL || (size = sec->rawsize) == 0)
3912 return;
3913
9373215c 3914 pe = pe_data (abfd);
5879bb8f
NC
3915 if (pe == NULL)
3916 return;
3917
5879bb8f
NC
3918 rva_bias = sec->vma - pe->pe_opthdr.ImageBase;
3919
9373215c 3920 data = bfd_malloc (size);
5879bb8f
NC
3921 if (data == NULL)
3922 return;
c32abae8 3923
9373215c 3924 datastart = data;
5879bb8f
NC
3925
3926 if (! bfd_get_section_contents (abfd, sec, data, 0, size))
3927 goto end;
3928
6caf7111
NC
3929 /* Step zero: Scan the input bfds looking for .rsrc sections and record
3930 their lengths. Note - we rely upon the fact that the linker script
3931 does *not* sort the input .rsrc sections, so that the order in the
3932 linkinfo list matches the order in the output .rsrc section.
3933
3934 We need to know the lengths because each input .rsrc section has padding
3935 at the end of a variable amount. (It does not appear to be based upon
3936 the section alignment or the file alignment). We need to skip any
3937 padding bytes when parsing the input .rsrc sections. */
3938 rsrc_sizes = bfd_malloc (max_num_input_rsrc * sizeof * rsrc_sizes);
3939 if (rsrc_sizes == NULL)
3940 goto end;
3941
3942 for (input = pfinfo->info->input_bfds;
3943 input != NULL;
c72f2fb2 3944 input = input->link.next)
6caf7111
NC
3945 {
3946 asection * rsrc_sec = bfd_get_section_by_name (input, ".rsrc");
3947
3948 if (rsrc_sec != NULL)
3949 {
3950 if (num_input_rsrc == max_num_input_rsrc)
3951 {
3952 max_num_input_rsrc += 10;
3953 rsrc_sizes = bfd_realloc (rsrc_sizes, max_num_input_rsrc
3954 * sizeof * rsrc_sizes);
3955 if (rsrc_sizes == NULL)
3956 goto end;
3957 }
3958
3959 BFD_ASSERT (rsrc_sec->size > 0);
3960 rsrc_sizes [num_input_rsrc ++] = rsrc_sec->size;
3961 }
3962 }
3963
3964 if (num_input_rsrc < 2)
3965 goto end;
61e2488c 3966
5879bb8f
NC
3967 /* Step one: Walk the section, computing the size of the tables,
3968 leaves and data and decide if we need to do anything. */
1d63324c 3969 dataend = data + size;
9373215c 3970 num_resource_sets = 0;
5879bb8f
NC
3971
3972 while (data < dataend)
3973 {
3974 bfd_byte * p = data;
3975
3976 data = rsrc_count_directory (abfd, data, data, dataend, rva_bias);
1d63324c 3977
5879bb8f
NC
3978 if (data > dataend)
3979 {
3980 /* Corrupted .rsrc section - cannot merge. */
3981 _bfd_error_handler (_("%s: .rsrc merge failure: corrupt .rsrc section"),
3982 bfd_get_filename (abfd));
3983 bfd_set_error (bfd_error_file_truncated);
3984 goto end;
3985 }
3986
6caf7111
NC
3987 if ((data - p) > rsrc_sizes [num_resource_sets])
3988 {
3989 _bfd_error_handler (_("%s: .rsrc merge failure: unexpected .rsrc size"),
3990 bfd_get_filename (abfd));
3991 bfd_set_error (bfd_error_file_truncated);
3992 goto end;
3993 }
3994 /* FIXME: Should we add a check for "data - p" being much smaller
3995 than rsrc_sizes[num_resource_sets] ? */
3996
3997 data = p + rsrc_sizes[num_resource_sets];
5879bb8f 3998 rva_bias += data - p;
5879bb8f
NC
3999 ++ num_resource_sets;
4000 }
6caf7111 4001 BFD_ASSERT (num_resource_sets == num_input_rsrc);
5879bb8f
NC
4002
4003 /* Step two: Walk the data again, building trees of the resources. */
4004 data = datastart;
4005 rva_bias = sec->vma - pe->pe_opthdr.ImageBase;
4006
9373215c 4007 type_tables = bfd_malloc (num_resource_sets * sizeof * type_tables);
5879bb8f
NC
4008 if (type_tables == NULL)
4009 goto end;
4010
9373215c 4011 indx = 0;
5879bb8f
NC
4012 while (data < dataend)
4013 {
4014 bfd_byte * p = data;
4015
6caf7111 4016 (void) rsrc_parse_directory (abfd, type_tables + indx, data, data,
9373215c 4017 dataend, rva_bias, NULL);
6caf7111 4018 data = p + rsrc_sizes[indx];
5879bb8f 4019 rva_bias += data - p;
6caf7111 4020 ++ indx;
5879bb8f 4021 }
337e86d7 4022 BFD_ASSERT (indx == num_resource_sets);
9373215c 4023
5879bb8f 4024 /* Step three: Merge the top level tables (there can be only one).
9373215c 4025
5879bb8f 4026 We must ensure that the merged entries are in ascending order.
9373215c 4027
5879bb8f
NC
4028 We also thread the top level table entries from the old tree onto
4029 the new table, so that they can be pulled off later. */
4030
4031 /* FIXME: Should we verify that all type tables are the same ? */
4032 new_table.characteristics = type_tables[0].characteristics;
4033 new_table.time = type_tables[0].time;
4034 new_table.major = type_tables[0].major;
4035 new_table.minor = type_tables[0].minor;
4036
4037 /* Chain the NAME entries onto the table. */
4038 new_table.names.first_entry = NULL;
4039 new_table.names.last_entry = NULL;
4040
337e86d7
L
4041 for (indx = 0; indx < num_resource_sets; indx++)
4042 rsrc_attach_chain (& new_table.names, & type_tables[indx].names);
5879bb8f
NC
4043
4044 rsrc_sort_entries (& new_table.names, TRUE, & new_table);
9373215c 4045
5879bb8f
NC
4046 /* Chain the ID entries onto the table. */
4047 new_table.ids.first_entry = NULL;
4048 new_table.ids.last_entry = NULL;
4049
337e86d7
L
4050 for (indx = 0; indx < num_resource_sets; indx++)
4051 rsrc_attach_chain (& new_table.ids, & type_tables[indx].ids);
5879bb8f
NC
4052
4053 rsrc_sort_entries (& new_table.ids, FALSE, & new_table);
4054
4055 /* Step four: Create new contents for the .rsrc section. */
3714081c
NC
4056 /* Step four point one: Compute the size of each region of the .rsrc section.
4057 We do this now, rather than earlier, as the merging above may have dropped
4058 some entries. */
4059 sizeof_leaves = sizeof_strings = sizeof_tables_and_entries = 0;
4060 rsrc_compute_region_sizes (& new_table);
4061 /* We increment sizeof_strings to make sure that resource data
4062 starts on an 8-byte boundary. FIXME: Is this correct ? */
4063 sizeof_strings = (sizeof_strings + 7) & ~ 7;
4064
c32abae8 4065 new_data = bfd_zalloc (abfd, size);
5879bb8f
NC
4066 if (new_data == NULL)
4067 goto end;
4068
5879bb8f
NC
4069 write_data.abfd = abfd;
4070 write_data.datastart = new_data;
4071 write_data.next_table = new_data;
4072 write_data.next_leaf = new_data + sizeof_tables_and_entries;
4073 write_data.next_string = write_data.next_leaf + sizeof_leaves;
4074 write_data.next_data = write_data.next_string + sizeof_strings;
9373215c 4075 write_data.rva_bias = sec->vma - pe->pe_opthdr.ImageBase;
5879bb8f
NC
4076
4077 rsrc_write_directory (& write_data, & new_table);
4078
4079 /* Step five: Replace the old contents with the new.
4080 We recompute the size as we may have lost entries due to mergeing. */
9373215c 4081 size = ((write_data.next_data - new_data) + 3) & ~ 3;
c32abae8
NC
4082
4083 {
4084 int page_size;
4085
4086 if (coff_data (abfd)->link_info)
4087 {
4088 page_size = pe_data (abfd)->pe_opthdr.FileAlignment;
4089
4090 /* If no file alignment has been set, default to one.
4091 This repairs 'ld -r' for arm-wince-pe target. */
4092 if (page_size == 0)
4093 page_size = 1;
4094 }
4095 else
4096 page_size = PE_DEF_FILE_ALIGNMENT;
4097 size = (size + page_size - 1) & - page_size;
4098 }
4099
5879bb8f
NC
4100 bfd_set_section_contents (pfinfo->output_bfd, sec, new_data, 0, size);
4101 sec->size = sec->rawsize = size;
9373215c 4102
5879bb8f 4103 end:
3714081c 4104 /* Step six: Free all the memory that we have used. */
5879bb8f
NC
4105 /* FIXME: Free the resource tree, if we have one. */
4106 free (datastart);
6caf7111 4107 free (rsrc_sizes);
5879bb8f 4108}
5174d0fb 4109
2fbadf2c
ILT
4110/* Handle the .idata section and other things that need symbol table
4111 access. */
4112
b34976b6 4113bfd_boolean
7920ce38 4114_bfd_XXi_final_link_postscript (bfd * abfd, struct coff_final_link_info *pfinfo)
2fbadf2c
ILT
4115{
4116 struct coff_link_hash_entry *h1;
4117 struct bfd_link_info *info = pfinfo->info;
4e22f78d 4118 bfd_boolean result = TRUE;
2fbadf2c
ILT
4119
4120 /* There are a few fields that need to be filled in now while we
4121 have symbol table access.
4122
4123 The .idata subsections aren't directly available as sections, but
4124 they are in the symbol table, so get them from there. */
4125
4126 /* The import directory. This is the address of .idata$2, with size
4127 of .idata$2 + .idata$3. */
4128 h1 = coff_link_hash_lookup (coff_hash_table (info),
b34976b6 4129 ".idata$2", FALSE, FALSE, TRUE);
2fbadf2c
ILT
4130 if (h1 != NULL)
4131 {
4e1fc599 4132 /* PR ld/2729: We cannot rely upon all the output sections having been
4e22f78d
NC
4133 created properly, so check before referencing them. Issue a warning
4134 message for any sections tht could not be found. */
b92997d6
AM
4135 if ((h1->root.type == bfd_link_hash_defined
4136 || h1->root.type == bfd_link_hash_defweak)
4137 && h1->root.u.def.section != NULL
4e22f78d 4138 && h1->root.u.def.section->output_section != NULL)
6c73cbb1 4139 pe_data (abfd)->pe_opthdr.DataDirectory[PE_IMPORT_TABLE].VirtualAddress =
4e22f78d
NC
4140 (h1->root.u.def.value
4141 + h1->root.u.def.section->output_section->vma
4142 + h1->root.u.def.section->output_offset);
4143 else
4144 {
4145 _bfd_error_handler
4e1fc599 4146 (_("%B: unable to fill in DataDictionary[1] because .idata$2 is missing"),
4e22f78d
NC
4147 abfd);
4148 result = FALSE;
4149 }
4150
2fbadf2c 4151 h1 = coff_link_hash_lookup (coff_hash_table (info),
b34976b6 4152 ".idata$4", FALSE, FALSE, TRUE);
4e22f78d 4153 if (h1 != NULL
b92997d6
AM
4154 && (h1->root.type == bfd_link_hash_defined
4155 || h1->root.type == bfd_link_hash_defweak)
4e22f78d
NC
4156 && h1->root.u.def.section != NULL
4157 && h1->root.u.def.section->output_section != NULL)
6c73cbb1 4158 pe_data (abfd)->pe_opthdr.DataDirectory[PE_IMPORT_TABLE].Size =
4e22f78d
NC
4159 ((h1->root.u.def.value
4160 + h1->root.u.def.section->output_section->vma
4161 + h1->root.u.def.section->output_offset)
6c73cbb1 4162 - pe_data (abfd)->pe_opthdr.DataDirectory[PE_IMPORT_TABLE].VirtualAddress);
4e22f78d
NC
4163 else
4164 {
4165 _bfd_error_handler
4e1fc599 4166 (_("%B: unable to fill in DataDictionary[1] because .idata$4 is missing"),
4e22f78d
NC
4167 abfd);
4168 result = FALSE;
4169 }
2fbadf2c
ILT
4170
4171 /* The import address table. This is the size/address of
4172 .idata$5. */
4173 h1 = coff_link_hash_lookup (coff_hash_table (info),
b34976b6 4174 ".idata$5", FALSE, FALSE, TRUE);
4e22f78d 4175 if (h1 != NULL
b92997d6
AM
4176 && (h1->root.type == bfd_link_hash_defined
4177 || h1->root.type == bfd_link_hash_defweak)
4e22f78d
NC
4178 && h1->root.u.def.section != NULL
4179 && h1->root.u.def.section->output_section != NULL)
6c73cbb1 4180 pe_data (abfd)->pe_opthdr.DataDirectory[PE_IMPORT_ADDRESS_TABLE].VirtualAddress =
4e22f78d
NC
4181 (h1->root.u.def.value
4182 + h1->root.u.def.section->output_section->vma
4183 + h1->root.u.def.section->output_offset);
4184 else
4185 {
4186 _bfd_error_handler
4e1fc599 4187 (_("%B: unable to fill in DataDictionary[12] because .idata$5 is missing"),
4e22f78d
NC
4188 abfd);
4189 result = FALSE;
4190 }
4191
2fbadf2c 4192 h1 = coff_link_hash_lookup (coff_hash_table (info),
b34976b6 4193 ".idata$6", FALSE, FALSE, TRUE);
4e22f78d 4194 if (h1 != NULL
b92997d6
AM
4195 && (h1->root.type == bfd_link_hash_defined
4196 || h1->root.type == bfd_link_hash_defweak)
4e22f78d
NC
4197 && h1->root.u.def.section != NULL
4198 && h1->root.u.def.section->output_section != NULL)
6c73cbb1 4199 pe_data (abfd)->pe_opthdr.DataDirectory[PE_IMPORT_ADDRESS_TABLE].Size =
4e22f78d
NC
4200 ((h1->root.u.def.value
4201 + h1->root.u.def.section->output_section->vma
4202 + h1->root.u.def.section->output_offset)
4e1fc599 4203 - pe_data (abfd)->pe_opthdr.DataDirectory[PE_IMPORT_ADDRESS_TABLE].VirtualAddress);
4e22f78d
NC
4204 else
4205 {
4206 _bfd_error_handler
4e1fc599 4207 (_("%B: unable to fill in DataDictionary[PE_IMPORT_ADDRESS_TABLE (12)] because .idata$6 is missing"),
4e22f78d
NC
4208 abfd);
4209 result = FALSE;
4210 }
2fbadf2c 4211 }
cb2f80e6
KT
4212 else
4213 {
4214 h1 = coff_link_hash_lookup (coff_hash_table (info),
4215 "__IAT_start__", FALSE, FALSE, TRUE);
4216 if (h1 != NULL
4217 && (h1->root.type == bfd_link_hash_defined
4218 || h1->root.type == bfd_link_hash_defweak)
4219 && h1->root.u.def.section != NULL
4220 && h1->root.u.def.section->output_section != NULL)
4221 {
4222 bfd_vma iat_va;
4223
4224 iat_va =
4225 (h1->root.u.def.value
4226 + h1->root.u.def.section->output_section->vma
4227 + h1->root.u.def.section->output_offset);
4228
4229 h1 = coff_link_hash_lookup (coff_hash_table (info),
4230 "__IAT_end__", FALSE, FALSE, TRUE);
4231 if (h1 != NULL
4232 && (h1->root.type == bfd_link_hash_defined
4233 || h1->root.type == bfd_link_hash_defweak)
4234 && h1->root.u.def.section != NULL
4235 && h1->root.u.def.section->output_section != NULL)
4236 {
4237 pe_data (abfd)->pe_opthdr.DataDirectory[PE_IMPORT_ADDRESS_TABLE].Size =
4238 ((h1->root.u.def.value
4239 + h1->root.u.def.section->output_section->vma
4240 + h1->root.u.def.section->output_offset)
4241 - iat_va);
4242 if (pe_data (abfd)->pe_opthdr.DataDirectory[PE_IMPORT_ADDRESS_TABLE].Size != 0)
4243 pe_data (abfd)->pe_opthdr.DataDirectory[PE_IMPORT_ADDRESS_TABLE].VirtualAddress =
4244 iat_va - pe_data (abfd)->pe_opthdr.ImageBase;
4245 }
4246 else
4247 {
4248 _bfd_error_handler
4249 (_("%B: unable to fill in DataDictionary[PE_IMPORT_ADDRESS_TABLE(12)]"
4250 " because .idata$6 is missing"), abfd);
4251 result = FALSE;
4252 }
4253 }
4254 }
ca6dee30
NC
4255
4256 h1 = coff_link_hash_lookup (coff_hash_table (info),
61e2488c 4257 (bfd_get_symbol_leading_char (abfd) != 0
c91a930c
KT
4258 ? "__tls_used" : "_tls_used"),
4259 FALSE, FALSE, TRUE);
ca6dee30
NC
4260 if (h1 != NULL)
4261 {
b92997d6
AM
4262 if ((h1->root.type == bfd_link_hash_defined
4263 || h1->root.type == bfd_link_hash_defweak)
4264 && h1->root.u.def.section != NULL
4e22f78d 4265 && h1->root.u.def.section->output_section != NULL)
6c73cbb1 4266 pe_data (abfd)->pe_opthdr.DataDirectory[PE_TLS_TABLE].VirtualAddress =
4e22f78d
NC
4267 (h1->root.u.def.value
4268 + h1->root.u.def.section->output_section->vma
4269 + h1->root.u.def.section->output_offset
4270 - pe_data (abfd)->pe_opthdr.ImageBase);
4271 else
4272 {
4273 _bfd_error_handler
4e1fc599 4274 (_("%B: unable to fill in DataDictionary[9] because __tls_used is missing"),
4e22f78d
NC
4275 abfd);
4276 result = FALSE;
4277 }
bc2b2990
PM
4278 /* According to PECOFF sepcifications by Microsoft version 8.2
4279 the TLS data directory consists of 4 pointers, followed
4280 by two 4-byte integer. This implies that the total size
68ffbac6 4281 is different for 32-bit and 64-bit executables. */
bc2b2990 4282#if !defined(COFF_WITH_pep) && !defined(COFF_WITH_pex64)
6c73cbb1 4283 pe_data (abfd)->pe_opthdr.DataDirectory[PE_TLS_TABLE].Size = 0x18;
bc2b2990
PM
4284#else
4285 pe_data (abfd)->pe_opthdr.DataDirectory[PE_TLS_TABLE].Size = 0x28;
4286#endif
ca6dee30
NC
4287 }
4288
5174d0fb
KT
4289/* If there is a .pdata section and we have linked pdata finally, we
4290 need to sort the entries ascending. */
4291#if !defined(COFF_WITH_pep) && defined(COFF_WITH_pex64)
4292 {
4293 asection *sec = bfd_get_section_by_name (abfd, ".pdata");
4294
4295 if (sec)
4296 {
21e68916
KT
4297 bfd_size_type x = sec->rawsize;
4298 bfd_byte *tmp_data = NULL;
5174d0fb 4299
21e68916
KT
4300 if (x)
4301 tmp_data = bfd_malloc (x);
4302
4303 if (tmp_data != NULL)
5174d0fb 4304 {
21e68916
KT
4305 if (bfd_get_section_contents (abfd, sec, tmp_data, 0, x))
4306 {
4307 qsort (tmp_data,
4308 (size_t) (x / 12),
4309 12, sort_x64_pdata);
4310 bfd_set_section_contents (pfinfo->output_bfd, sec,
4311 tmp_data, 0, x);
4312 }
4313 free (tmp_data);
5174d0fb
KT
4314 }
4315 }
4316 }
4317#endif
4318
5879bb8f
NC
4319 rsrc_process_section (abfd, pfinfo);
4320
2fbadf2c
ILT
4321 /* If we couldn't find idata$2, we either have an excessively
4322 trivial program or are in DEEP trouble; we have to assume trivial
4323 program.... */
4e22f78d 4324 return result;
2fbadf2c 4325}