Correct spelling of "relocatable".
[deliverable/binutils-gdb.git] / bfd / peXXigen.c
1 /* Support for the generic parts of PE/PEI; the common executable parts.
2 Copyright 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003
3 Free Software Foundation, Inc.
4 Written by Cygnus Solutions.
5
6 This file is part of BFD, the Binary File Descriptor library.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2 of the License, or
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
21
22 /* Most of this hacked by Steve Chamberlain <sac@cygnus.com>.
23
24 PE/PEI rearrangement (and code added): Donn Terry
25 Softway Systems, Inc. */
26
27 /* Hey look, some documentation [and in a place you expect to find it]!
28
29 The main reference for the pei format is "Microsoft Portable Executable
30 and Common Object File Format Specification 4.1". Get it if you need to
31 do some serious hacking on this code.
32
33 Another reference:
34 "Peering Inside the PE: A Tour of the Win32 Portable Executable
35 File Format", MSJ 1994, Volume 9.
36
37 The *sole* difference between the pe format and the pei format is that the
38 latter has an MSDOS 2.0 .exe header on the front that prints the message
39 "This app must be run under Windows." (or some such).
40 (FIXME: Whether that statement is *really* true or not is unknown.
41 Are there more subtle differences between pe and pei formats?
42 For now assume there aren't. If you find one, then for God sakes
43 document it here!)
44
45 The Microsoft docs use the word "image" instead of "executable" because
46 the former can also refer to a DLL (shared library). Confusion can arise
47 because the `i' in `pei' also refers to "image". The `pe' format can
48 also create images (i.e. executables), it's just that to run on a win32
49 system you need to use the pei format.
50
51 FIXME: Please add more docs here so the next poor fool that has to hack
52 on this code has a chance of getting something accomplished without
53 wasting too much time. */
54
55 /* This expands into COFF_WITH_pe or COFF_WITH_pep depending on whether
56 we're compiling for straight PE or PE+. */
57 #define COFF_WITH_XX
58
59 #include "bfd.h"
60 #include "sysdep.h"
61 #include "libbfd.h"
62 #include "coff/internal.h"
63
64 /* NOTE: it's strange to be including an architecture specific header
65 in what's supposed to be general (to PE/PEI) code. However, that's
66 where the definitions are, and they don't vary per architecture
67 within PE/PEI, so we get them from there. FIXME: The lack of
68 variance is an assumption which may prove to be incorrect if new
69 PE/PEI targets are created. */
70 #ifdef COFF_WITH_pep
71 # include "coff/ia64.h"
72 #else
73 # include "coff/i386.h"
74 #endif
75
76 #include "coff/pe.h"
77 #include "libcoff.h"
78 #include "libpei.h"
79
80 #ifdef COFF_WITH_pep
81 # undef AOUTSZ
82 # define AOUTSZ PEPAOUTSZ
83 # define PEAOUTHDR PEPAOUTHDR
84 #endif
85
86 /* FIXME: This file has various tests of POWERPC_LE_PE. Those tests
87 worked when the code was in peicode.h, but no longer work now that
88 the code is in peigen.c. PowerPC NT is said to be dead. If
89 anybody wants to revive the code, you will have to figure out how
90 to handle those issues. */
91
92 static void add_data_entry
93 PARAMS ((bfd *, struct internal_extra_pe_aouthdr *, int, char *, bfd_vma));
94 static bfd_boolean pe_print_pdata PARAMS ((bfd *, PTR));
95 static bfd_boolean pe_print_reloc PARAMS ((bfd *, PTR));
96 static bfd_boolean pe_print_idata PARAMS ((bfd *, PTR));
97 static bfd_boolean pe_print_edata PARAMS ((bfd *, PTR));
98 \f
99
100 void
101 _bfd_XXi_swap_sym_in (abfd, ext1, in1)
102 bfd *abfd;
103 PTR ext1;
104 PTR in1;
105 {
106 SYMENT *ext = (SYMENT *) ext1;
107 struct internal_syment *in = (struct internal_syment *) in1;
108
109 if (ext->e.e_name[0] == 0)
110 {
111 in->_n._n_n._n_zeroes = 0;
112 in->_n._n_n._n_offset = H_GET_32 (abfd, ext->e.e.e_offset);
113 }
114 else
115 memcpy (in->_n._n_name, ext->e.e_name, SYMNMLEN);
116
117 in->n_value = H_GET_32 (abfd, ext->e_value);
118 in->n_scnum = H_GET_16 (abfd, ext->e_scnum);
119
120 if (sizeof (ext->e_type) == 2)
121 in->n_type = H_GET_16 (abfd, ext->e_type);
122 else
123 in->n_type = H_GET_32 (abfd, ext->e_type);
124
125 in->n_sclass = H_GET_8 (abfd, ext->e_sclass);
126 in->n_numaux = H_GET_8 (abfd, ext->e_numaux);
127
128 #ifndef STRICT_PE_FORMAT
129 /* This is for Gnu-created DLLs. */
130
131 /* The section symbols for the .idata$ sections have class 0x68
132 (C_SECTION), which MS documentation indicates is a section
133 symbol. Unfortunately, the value field in the symbol is simply a
134 copy of the .idata section's flags rather than something useful.
135 When these symbols are encountered, change the value to 0 so that
136 they will be handled somewhat correctly in the bfd code. */
137 if (in->n_sclass == C_SECTION)
138 {
139 in->n_value = 0x0;
140
141 #if 0
142 /* FIXME: This is clearly wrong. The problem seems to be that
143 undefined C_SECTION symbols appear in the first object of a
144 MS generated .lib file, and the symbols are not defined
145 anywhere. */
146 in->n_scnum = 1;
147
148 /* I have tried setting the class to 3 and using the following
149 to set the section number. This will put the address of the
150 pointer to the string kernel32.dll at addresses 0 and 0x10
151 off start of idata section which is not correct. */
152 #if 0
153 if (strcmp (in->_n._n_name, ".idata$4") == 0)
154 in->n_scnum = 3;
155 else
156 in->n_scnum = 2;
157 #endif
158 #else
159 /* Create synthetic empty sections as needed. DJ */
160 if (in->n_scnum == 0)
161 {
162 asection *sec;
163
164 for (sec = abfd->sections; sec; sec = sec->next)
165 {
166 if (strcmp (sec->name, in->n_name) == 0)
167 {
168 in->n_scnum = sec->target_index;
169 break;
170 }
171 }
172 }
173
174 if (in->n_scnum == 0)
175 {
176 int unused_section_number = 0;
177 asection *sec;
178 char *name;
179
180 for (sec = abfd->sections; sec; sec = sec->next)
181 if (unused_section_number <= sec->target_index)
182 unused_section_number = sec->target_index + 1;
183
184 name = bfd_alloc (abfd, (bfd_size_type) strlen (in->n_name) + 10);
185 if (name == NULL)
186 return;
187 strcpy (name, in->n_name);
188 sec = bfd_make_section_anyway (abfd, name);
189
190 sec->vma = 0;
191 sec->lma = 0;
192 sec->_cooked_size = 0;
193 sec->_raw_size = 0;
194 sec->filepos = 0;
195 sec->rel_filepos = 0;
196 sec->reloc_count = 0;
197 sec->line_filepos = 0;
198 sec->lineno_count = 0;
199 sec->userdata = NULL;
200 sec->next = (asection *) NULL;
201 sec->flags = 0;
202 sec->alignment_power = 2;
203 sec->flags = SEC_HAS_CONTENTS | SEC_ALLOC | SEC_DATA | SEC_LOAD;
204
205 sec->target_index = unused_section_number;
206
207 in->n_scnum = unused_section_number;
208 }
209 in->n_sclass = C_STAT;
210 #endif
211 }
212 #endif
213
214 #ifdef coff_swap_sym_in_hook
215 /* This won't work in peigen.c, but since it's for PPC PE, it's not
216 worth fixing. */
217 coff_swap_sym_in_hook (abfd, ext1, in1);
218 #endif
219 }
220
221 unsigned int
222 _bfd_XXi_swap_sym_out (abfd, inp, extp)
223 bfd *abfd;
224 PTR inp;
225 PTR extp;
226 {
227 struct internal_syment *in = (struct internal_syment *) inp;
228 SYMENT *ext = (SYMENT *) extp;
229
230 if (in->_n._n_name[0] == 0)
231 {
232 H_PUT_32 (abfd, 0, ext->e.e.e_zeroes);
233 H_PUT_32 (abfd, in->_n._n_n._n_offset, ext->e.e.e_offset);
234 }
235 else
236 memcpy (ext->e.e_name, in->_n._n_name, SYMNMLEN);
237
238 H_PUT_32 (abfd, in->n_value, ext->e_value);
239 H_PUT_16 (abfd, in->n_scnum, ext->e_scnum);
240
241 if (sizeof (ext->e_type) == 2)
242 H_PUT_16 (abfd, in->n_type, ext->e_type);
243 else
244 H_PUT_32 (abfd, in->n_type, ext->e_type);
245
246 H_PUT_8 (abfd, in->n_sclass, ext->e_sclass);
247 H_PUT_8 (abfd, in->n_numaux, ext->e_numaux);
248
249 return SYMESZ;
250 }
251
252 void
253 _bfd_XXi_swap_aux_in (abfd, ext1, type, class, indx, numaux, in1)
254 bfd *abfd;
255 PTR ext1;
256 int type;
257 int class;
258 int indx ATTRIBUTE_UNUSED;
259 int numaux ATTRIBUTE_UNUSED;
260 PTR in1;
261 {
262 AUXENT *ext = (AUXENT *) ext1;
263 union internal_auxent *in = (union internal_auxent *) in1;
264
265 switch (class)
266 {
267 case C_FILE:
268 if (ext->x_file.x_fname[0] == 0)
269 {
270 in->x_file.x_n.x_zeroes = 0;
271 in->x_file.x_n.x_offset = H_GET_32 (abfd, ext->x_file.x_n.x_offset);
272 }
273 else
274 memcpy (in->x_file.x_fname, ext->x_file.x_fname, FILNMLEN);
275 return;
276
277 case C_STAT:
278 case C_LEAFSTAT:
279 case C_HIDDEN:
280 if (type == T_NULL)
281 {
282 in->x_scn.x_scnlen = GET_SCN_SCNLEN (abfd, ext);
283 in->x_scn.x_nreloc = GET_SCN_NRELOC (abfd, ext);
284 in->x_scn.x_nlinno = GET_SCN_NLINNO (abfd, ext);
285 in->x_scn.x_checksum = H_GET_32 (abfd, ext->x_scn.x_checksum);
286 in->x_scn.x_associated = H_GET_16 (abfd, ext->x_scn.x_associated);
287 in->x_scn.x_comdat = H_GET_8 (abfd, ext->x_scn.x_comdat);
288 return;
289 }
290 break;
291 }
292
293 in->x_sym.x_tagndx.l = H_GET_32 (abfd, ext->x_sym.x_tagndx);
294 in->x_sym.x_tvndx = H_GET_16 (abfd, ext->x_sym.x_tvndx);
295
296 if (class == C_BLOCK || class == C_FCN || ISFCN (type) || ISTAG (class))
297 {
298 in->x_sym.x_fcnary.x_fcn.x_lnnoptr = GET_FCN_LNNOPTR (abfd, ext);
299 in->x_sym.x_fcnary.x_fcn.x_endndx.l = GET_FCN_ENDNDX (abfd, ext);
300 }
301 else
302 {
303 in->x_sym.x_fcnary.x_ary.x_dimen[0] =
304 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[0]);
305 in->x_sym.x_fcnary.x_ary.x_dimen[1] =
306 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[1]);
307 in->x_sym.x_fcnary.x_ary.x_dimen[2] =
308 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[2]);
309 in->x_sym.x_fcnary.x_ary.x_dimen[3] =
310 H_GET_16 (abfd, ext->x_sym.x_fcnary.x_ary.x_dimen[3]);
311 }
312
313 if (ISFCN (type))
314 {
315 in->x_sym.x_misc.x_fsize = H_GET_32 (abfd, ext->x_sym.x_misc.x_fsize);
316 }
317 else
318 {
319 in->x_sym.x_misc.x_lnsz.x_lnno = GET_LNSZ_LNNO (abfd, ext);
320 in->x_sym.x_misc.x_lnsz.x_size = GET_LNSZ_SIZE (abfd, ext);
321 }
322 }
323
324 unsigned int
325 _bfd_XXi_swap_aux_out (abfd, inp, type, class, indx, numaux, extp)
326 bfd *abfd;
327 PTR inp;
328 int type;
329 int class;
330 int indx ATTRIBUTE_UNUSED;
331 int numaux ATTRIBUTE_UNUSED;
332 PTR extp;
333 {
334 union internal_auxent *in = (union internal_auxent *) inp;
335 AUXENT *ext = (AUXENT *) extp;
336
337 memset ((PTR) ext, 0, AUXESZ);
338 switch (class)
339 {
340 case C_FILE:
341 if (in->x_file.x_fname[0] == 0)
342 {
343 H_PUT_32 (abfd, 0, ext->x_file.x_n.x_zeroes);
344 H_PUT_32 (abfd, in->x_file.x_n.x_offset, ext->x_file.x_n.x_offset);
345 }
346 else
347 memcpy (ext->x_file.x_fname, in->x_file.x_fname, FILNMLEN);
348
349 return AUXESZ;
350
351 case C_STAT:
352 case C_LEAFSTAT:
353 case C_HIDDEN:
354 if (type == T_NULL)
355 {
356 PUT_SCN_SCNLEN (abfd, in->x_scn.x_scnlen, ext);
357 PUT_SCN_NRELOC (abfd, in->x_scn.x_nreloc, ext);
358 PUT_SCN_NLINNO (abfd, in->x_scn.x_nlinno, ext);
359 H_PUT_32 (abfd, in->x_scn.x_checksum, ext->x_scn.x_checksum);
360 H_PUT_16 (abfd, in->x_scn.x_associated, ext->x_scn.x_associated);
361 H_PUT_8 (abfd, in->x_scn.x_comdat, ext->x_scn.x_comdat);
362 return AUXESZ;
363 }
364 break;
365 }
366
367 H_PUT_32 (abfd, in->x_sym.x_tagndx.l, ext->x_sym.x_tagndx);
368 H_PUT_16 (abfd, in->x_sym.x_tvndx, ext->x_sym.x_tvndx);
369
370 if (class == C_BLOCK || class == C_FCN || ISFCN (type) || ISTAG (class))
371 {
372 PUT_FCN_LNNOPTR (abfd, in->x_sym.x_fcnary.x_fcn.x_lnnoptr, ext);
373 PUT_FCN_ENDNDX (abfd, in->x_sym.x_fcnary.x_fcn.x_endndx.l, ext);
374 }
375 else
376 {
377 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[0],
378 ext->x_sym.x_fcnary.x_ary.x_dimen[0]);
379 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[1],
380 ext->x_sym.x_fcnary.x_ary.x_dimen[1]);
381 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[2],
382 ext->x_sym.x_fcnary.x_ary.x_dimen[2]);
383 H_PUT_16 (abfd, in->x_sym.x_fcnary.x_ary.x_dimen[3],
384 ext->x_sym.x_fcnary.x_ary.x_dimen[3]);
385 }
386
387 if (ISFCN (type))
388 H_PUT_32 (abfd, in->x_sym.x_misc.x_fsize, ext->x_sym.x_misc.x_fsize);
389 else
390 {
391 PUT_LNSZ_LNNO (abfd, in->x_sym.x_misc.x_lnsz.x_lnno, ext);
392 PUT_LNSZ_SIZE (abfd, in->x_sym.x_misc.x_lnsz.x_size, ext);
393 }
394
395 return AUXESZ;
396 }
397
398 void
399 _bfd_XXi_swap_lineno_in (abfd, ext1, in1)
400 bfd *abfd;
401 PTR ext1;
402 PTR in1;
403 {
404 LINENO *ext = (LINENO *) ext1;
405 struct internal_lineno *in = (struct internal_lineno *) in1;
406
407 in->l_addr.l_symndx = H_GET_32 (abfd, ext->l_addr.l_symndx);
408 in->l_lnno = GET_LINENO_LNNO (abfd, ext);
409 }
410
411 unsigned int
412 _bfd_XXi_swap_lineno_out (abfd, inp, outp)
413 bfd *abfd;
414 PTR inp;
415 PTR outp;
416 {
417 struct internal_lineno *in = (struct internal_lineno *) inp;
418 struct external_lineno *ext = (struct external_lineno *) outp;
419 H_PUT_32 (abfd, in->l_addr.l_symndx, ext->l_addr.l_symndx);
420
421 PUT_LINENO_LNNO (abfd, in->l_lnno, ext);
422 return LINESZ;
423 }
424
425 void
426 _bfd_XXi_swap_aouthdr_in (abfd, aouthdr_ext1, aouthdr_int1)
427 bfd *abfd;
428 PTR aouthdr_ext1;
429 PTR aouthdr_int1;
430 {
431 struct internal_extra_pe_aouthdr *a;
432 PEAOUTHDR *src = (PEAOUTHDR *) (aouthdr_ext1);
433 AOUTHDR *aouthdr_ext = (AOUTHDR *) aouthdr_ext1;
434 struct internal_aouthdr *aouthdr_int = (struct internal_aouthdr *)aouthdr_int1;
435
436 aouthdr_int->magic = H_GET_16 (abfd, aouthdr_ext->magic);
437 aouthdr_int->vstamp = H_GET_16 (abfd, aouthdr_ext->vstamp);
438 aouthdr_int->tsize = GET_AOUTHDR_TSIZE (abfd, aouthdr_ext->tsize);
439 aouthdr_int->dsize = GET_AOUTHDR_DSIZE (abfd, aouthdr_ext->dsize);
440 aouthdr_int->bsize = GET_AOUTHDR_BSIZE (abfd, aouthdr_ext->bsize);
441 aouthdr_int->entry = GET_AOUTHDR_ENTRY (abfd, aouthdr_ext->entry);
442 aouthdr_int->text_start =
443 GET_AOUTHDR_TEXT_START (abfd, aouthdr_ext->text_start);
444 #ifndef COFF_WITH_pep
445 /* PE32+ does not have data_start member! */
446 aouthdr_int->data_start =
447 GET_AOUTHDR_DATA_START (abfd, aouthdr_ext->data_start);
448 #endif
449
450 a = &aouthdr_int->pe;
451 a->ImageBase = GET_OPTHDR_IMAGE_BASE (abfd, src->ImageBase);
452 a->SectionAlignment = H_GET_32 (abfd, src->SectionAlignment);
453 a->FileAlignment = H_GET_32 (abfd, src->FileAlignment);
454 a->MajorOperatingSystemVersion =
455 H_GET_16 (abfd, src->MajorOperatingSystemVersion);
456 a->MinorOperatingSystemVersion =
457 H_GET_16 (abfd, src->MinorOperatingSystemVersion);
458 a->MajorImageVersion = H_GET_16 (abfd, src->MajorImageVersion);
459 a->MinorImageVersion = H_GET_16 (abfd, src->MinorImageVersion);
460 a->MajorSubsystemVersion = H_GET_16 (abfd, src->MajorSubsystemVersion);
461 a->MinorSubsystemVersion = H_GET_16 (abfd, src->MinorSubsystemVersion);
462 a->Reserved1 = H_GET_32 (abfd, src->Reserved1);
463 a->SizeOfImage = H_GET_32 (abfd, src->SizeOfImage);
464 a->SizeOfHeaders = H_GET_32 (abfd, src->SizeOfHeaders);
465 a->CheckSum = H_GET_32 (abfd, src->CheckSum);
466 a->Subsystem = H_GET_16 (abfd, src->Subsystem);
467 a->DllCharacteristics = H_GET_16 (abfd, src->DllCharacteristics);
468 a->SizeOfStackReserve =
469 GET_OPTHDR_SIZE_OF_STACK_RESERVE (abfd, src->SizeOfStackReserve);
470 a->SizeOfStackCommit =
471 GET_OPTHDR_SIZE_OF_STACK_COMMIT (abfd, src->SizeOfStackCommit);
472 a->SizeOfHeapReserve =
473 GET_OPTHDR_SIZE_OF_HEAP_RESERVE (abfd, src->SizeOfHeapReserve);
474 a->SizeOfHeapCommit =
475 GET_OPTHDR_SIZE_OF_HEAP_COMMIT (abfd, src->SizeOfHeapCommit);
476 a->LoaderFlags = H_GET_32 (abfd, src->LoaderFlags);
477 a->NumberOfRvaAndSizes = H_GET_32 (abfd, src->NumberOfRvaAndSizes);
478
479 {
480 int idx;
481
482 for (idx = 0; idx < 16; idx++)
483 {
484 /* If data directory is empty, rva also should be 0. */
485 int size =
486 H_GET_32 (abfd, src->DataDirectory[idx][1]);
487 a->DataDirectory[idx].Size = size;
488
489 if (size)
490 a->DataDirectory[idx].VirtualAddress =
491 H_GET_32 (abfd, src->DataDirectory[idx][0]);
492 else
493 a->DataDirectory[idx].VirtualAddress = 0;
494 }
495 }
496
497 if (aouthdr_int->entry)
498 {
499 aouthdr_int->entry += a->ImageBase;
500 #ifndef COFF_WITH_pep
501 aouthdr_int->entry &= 0xffffffff;
502 #endif
503 }
504
505 if (aouthdr_int->tsize)
506 {
507 aouthdr_int->text_start += a->ImageBase;
508 #ifndef COFF_WITH_pep
509 aouthdr_int->text_start &= 0xffffffff;
510 #endif
511 }
512
513 #ifndef COFF_WITH_pep
514 /* PE32+ does not have data_start member! */
515 if (aouthdr_int->dsize)
516 {
517 aouthdr_int->data_start += a->ImageBase;
518 aouthdr_int->data_start &= 0xffffffff;
519 }
520 #endif
521
522 #ifdef POWERPC_LE_PE
523 /* These three fields are normally set up by ppc_relocate_section.
524 In the case of reading a file in, we can pick them up from the
525 DataDirectory. */
526 first_thunk_address = a->DataDirectory[12].VirtualAddress;
527 thunk_size = a->DataDirectory[12].Size;
528 import_table_size = a->DataDirectory[1].Size;
529 #endif
530 }
531
532 /* A support function for below. */
533
534 static void
535 add_data_entry (abfd, aout, idx, name, base)
536 bfd *abfd;
537 struct internal_extra_pe_aouthdr *aout;
538 int idx;
539 char *name;
540 bfd_vma base;
541 {
542 asection *sec = bfd_get_section_by_name (abfd, name);
543
544 /* Add import directory information if it exists. */
545 if ((sec != NULL)
546 && (coff_section_data (abfd, sec) != NULL)
547 && (pei_section_data (abfd, sec) != NULL))
548 {
549 /* If data directory is empty, rva also should be 0. */
550 int size = pei_section_data (abfd, sec)->virt_size;
551 aout->DataDirectory[idx].Size = size;
552
553 if (size)
554 {
555 aout->DataDirectory[idx].VirtualAddress =
556 (sec->vma - base) & 0xffffffff;
557 sec->flags |= SEC_DATA;
558 }
559 }
560 }
561
562 unsigned int
563 _bfd_XXi_swap_aouthdr_out (abfd, in, out)
564 bfd *abfd;
565 PTR in;
566 PTR out;
567 {
568 struct internal_aouthdr *aouthdr_in = (struct internal_aouthdr *) in;
569 pe_data_type *pe = pe_data (abfd);
570 struct internal_extra_pe_aouthdr *extra = &pe->pe_opthdr;
571 PEAOUTHDR *aouthdr_out = (PEAOUTHDR *) out;
572 bfd_vma sa, fa, ib;
573 IMAGE_DATA_DIRECTORY idata2, idata5;
574
575
576 if (pe->force_minimum_alignment)
577 {
578 if (!extra->FileAlignment)
579 extra->FileAlignment = PE_DEF_FILE_ALIGNMENT;
580 if (!extra->SectionAlignment)
581 extra->SectionAlignment = PE_DEF_SECTION_ALIGNMENT;
582 }
583
584 if (extra->Subsystem == IMAGE_SUBSYSTEM_UNKNOWN)
585 extra->Subsystem = pe->target_subsystem;
586
587 sa = extra->SectionAlignment;
588 fa = extra->FileAlignment;
589 ib = extra->ImageBase;
590
591 idata2 = pe->pe_opthdr.DataDirectory[1];
592 idata5 = pe->pe_opthdr.DataDirectory[12];
593
594 if (aouthdr_in->tsize)
595 {
596 aouthdr_in->text_start -= ib;
597 #ifndef COFF_WITH_pep
598 aouthdr_in->text_start &= 0xffffffff;
599 #endif
600 }
601
602 if (aouthdr_in->dsize)
603 {
604 aouthdr_in->data_start -= ib;
605 #ifndef COFF_WITH_pep
606 aouthdr_in->data_start &= 0xffffffff;
607 #endif
608 }
609
610 if (aouthdr_in->entry)
611 {
612 aouthdr_in->entry -= ib;
613 #ifndef COFF_WITH_pep
614 aouthdr_in->entry &= 0xffffffff;
615 #endif
616 }
617
618 #define FA(x) (((x) + fa -1 ) & (- fa))
619 #define SA(x) (((x) + sa -1 ) & (- sa))
620
621 /* We like to have the sizes aligned. */
622 aouthdr_in->bsize = FA (aouthdr_in->bsize);
623
624 extra->NumberOfRvaAndSizes = IMAGE_NUMBEROF_DIRECTORY_ENTRIES;
625
626 /* First null out all data directory entries. */
627 memset (extra->DataDirectory, 0, sizeof (extra->DataDirectory));
628
629 add_data_entry (abfd, extra, 0, ".edata", ib);
630 add_data_entry (abfd, extra, 2, ".rsrc", ib);
631 add_data_entry (abfd, extra, 3, ".pdata", ib);
632
633 /* In theory we do not need to call add_data_entry for .idata$2 or
634 .idata$5. It will be done in bfd_coff_final_link where all the
635 required information is available. If however, we are not going
636 to perform a final link, eg because we have been invoked by objcopy
637 or strip, then we need to make sure that these Data Directory
638 entries are initialised properly.
639
640 So - we copy the input values into the output values, and then, if
641 a final link is going to be performed, it can overwrite them. */
642 extra->DataDirectory[1] = idata2;
643 extra->DataDirectory[12] = idata5;
644
645 if (extra->DataDirectory[1].VirtualAddress == 0)
646 /* Until other .idata fixes are made (pending patch), the entry for
647 .idata is needed for backwards compatability. FIXME. */
648 add_data_entry (abfd, extra, 1, ".idata", ib);
649
650 /* For some reason, the virtual size (which is what's set by
651 add_data_entry) for .reloc is not the same as the size recorded
652 in this slot by MSVC; it doesn't seem to cause problems (so far),
653 but since it's the best we've got, use it. It does do the right
654 thing for .pdata. */
655 if (pe->has_reloc_section)
656 add_data_entry (abfd, extra, 5, ".reloc", ib);
657
658 {
659 asection *sec;
660 bfd_vma dsize = 0;
661 bfd_vma isize = SA(abfd->sections->filepos);
662 bfd_vma tsize = 0;
663
664 for (sec = abfd->sections; sec; sec = sec->next)
665 {
666 int rounded = FA(sec->_raw_size);
667
668 if (sec->flags & SEC_DATA)
669 dsize += rounded;
670 if (sec->flags & SEC_CODE)
671 tsize += rounded;
672 /* The image size is the total VIRTUAL size (which is what is
673 in the virt_size field). Files have been seen (from MSVC
674 5.0 link.exe) where the file size of the .data segment is
675 quite small compared to the virtual size. Without this
676 fix, strip munges the file. */
677 isize += SA (FA (pei_section_data (abfd, sec)->virt_size));
678 }
679
680 aouthdr_in->dsize = dsize;
681 aouthdr_in->tsize = tsize;
682 extra->SizeOfImage = isize;
683 }
684
685 extra->SizeOfHeaders = abfd->sections->filepos;
686 H_PUT_16 (abfd, aouthdr_in->magic, aouthdr_out->standard.magic);
687
688 #define LINKER_VERSION 256 /* That is, 2.56 */
689
690 /* This piece of magic sets the "linker version" field to
691 LINKER_VERSION. */
692 H_PUT_16 (abfd, (LINKER_VERSION / 100 + (LINKER_VERSION % 100) * 256),
693 aouthdr_out->standard.vstamp);
694
695 PUT_AOUTHDR_TSIZE (abfd, aouthdr_in->tsize, aouthdr_out->standard.tsize);
696 PUT_AOUTHDR_DSIZE (abfd, aouthdr_in->dsize, aouthdr_out->standard.dsize);
697 PUT_AOUTHDR_BSIZE (abfd, aouthdr_in->bsize, aouthdr_out->standard.bsize);
698 PUT_AOUTHDR_ENTRY (abfd, aouthdr_in->entry, aouthdr_out->standard.entry);
699 PUT_AOUTHDR_TEXT_START (abfd, aouthdr_in->text_start,
700 aouthdr_out->standard.text_start);
701
702 #ifndef COFF_WITH_pep
703 /* PE32+ does not have data_start member! */
704 PUT_AOUTHDR_DATA_START (abfd, aouthdr_in->data_start,
705 aouthdr_out->standard.data_start);
706 #endif
707
708 PUT_OPTHDR_IMAGE_BASE (abfd, extra->ImageBase, aouthdr_out->ImageBase);
709 H_PUT_32 (abfd, extra->SectionAlignment, aouthdr_out->SectionAlignment);
710 H_PUT_32 (abfd, extra->FileAlignment, aouthdr_out->FileAlignment);
711 H_PUT_16 (abfd, extra->MajorOperatingSystemVersion,
712 aouthdr_out->MajorOperatingSystemVersion);
713 H_PUT_16 (abfd, extra->MinorOperatingSystemVersion,
714 aouthdr_out->MinorOperatingSystemVersion);
715 H_PUT_16 (abfd, extra->MajorImageVersion, aouthdr_out->MajorImageVersion);
716 H_PUT_16 (abfd, extra->MinorImageVersion, aouthdr_out->MinorImageVersion);
717 H_PUT_16 (abfd, extra->MajorSubsystemVersion,
718 aouthdr_out->MajorSubsystemVersion);
719 H_PUT_16 (abfd, extra->MinorSubsystemVersion,
720 aouthdr_out->MinorSubsystemVersion);
721 H_PUT_32 (abfd, extra->Reserved1, aouthdr_out->Reserved1);
722 H_PUT_32 (abfd, extra->SizeOfImage, aouthdr_out->SizeOfImage);
723 H_PUT_32 (abfd, extra->SizeOfHeaders, aouthdr_out->SizeOfHeaders);
724 H_PUT_32 (abfd, extra->CheckSum, aouthdr_out->CheckSum);
725 H_PUT_16 (abfd, extra->Subsystem, aouthdr_out->Subsystem);
726 H_PUT_16 (abfd, extra->DllCharacteristics, aouthdr_out->DllCharacteristics);
727 PUT_OPTHDR_SIZE_OF_STACK_RESERVE (abfd, extra->SizeOfStackReserve,
728 aouthdr_out->SizeOfStackReserve);
729 PUT_OPTHDR_SIZE_OF_STACK_COMMIT (abfd, extra->SizeOfStackCommit,
730 aouthdr_out->SizeOfStackCommit);
731 PUT_OPTHDR_SIZE_OF_HEAP_RESERVE (abfd, extra->SizeOfHeapReserve,
732 aouthdr_out->SizeOfHeapReserve);
733 PUT_OPTHDR_SIZE_OF_HEAP_COMMIT (abfd, extra->SizeOfHeapCommit,
734 aouthdr_out->SizeOfHeapCommit);
735 H_PUT_32 (abfd, extra->LoaderFlags, aouthdr_out->LoaderFlags);
736 H_PUT_32 (abfd, extra->NumberOfRvaAndSizes,
737 aouthdr_out->NumberOfRvaAndSizes);
738 {
739 int idx;
740
741 for (idx = 0; idx < 16; idx++)
742 {
743 H_PUT_32 (abfd, extra->DataDirectory[idx].VirtualAddress,
744 aouthdr_out->DataDirectory[idx][0]);
745 H_PUT_32 (abfd, extra->DataDirectory[idx].Size,
746 aouthdr_out->DataDirectory[idx][1]);
747 }
748 }
749
750 return AOUTSZ;
751 }
752
753 unsigned int
754 _bfd_XXi_only_swap_filehdr_out (abfd, in, out)
755 bfd *abfd;
756 PTR in;
757 PTR out;
758 {
759 int idx;
760 struct internal_filehdr *filehdr_in = (struct internal_filehdr *) in;
761 struct external_PEI_filehdr *filehdr_out = (struct external_PEI_filehdr *) out;
762
763 if (pe_data (abfd)->has_reloc_section)
764 filehdr_in->f_flags &= ~F_RELFLG;
765
766 if (pe_data (abfd)->dll)
767 filehdr_in->f_flags |= F_DLL;
768
769 filehdr_in->pe.e_magic = DOSMAGIC;
770 filehdr_in->pe.e_cblp = 0x90;
771 filehdr_in->pe.e_cp = 0x3;
772 filehdr_in->pe.e_crlc = 0x0;
773 filehdr_in->pe.e_cparhdr = 0x4;
774 filehdr_in->pe.e_minalloc = 0x0;
775 filehdr_in->pe.e_maxalloc = 0xffff;
776 filehdr_in->pe.e_ss = 0x0;
777 filehdr_in->pe.e_sp = 0xb8;
778 filehdr_in->pe.e_csum = 0x0;
779 filehdr_in->pe.e_ip = 0x0;
780 filehdr_in->pe.e_cs = 0x0;
781 filehdr_in->pe.e_lfarlc = 0x40;
782 filehdr_in->pe.e_ovno = 0x0;
783
784 for (idx = 0; idx < 4; idx++)
785 filehdr_in->pe.e_res[idx] = 0x0;
786
787 filehdr_in->pe.e_oemid = 0x0;
788 filehdr_in->pe.e_oeminfo = 0x0;
789
790 for (idx = 0; idx < 10; idx++)
791 filehdr_in->pe.e_res2[idx] = 0x0;
792
793 filehdr_in->pe.e_lfanew = 0x80;
794
795 /* This next collection of data are mostly just characters. It
796 appears to be constant within the headers put on NT exes. */
797 filehdr_in->pe.dos_message[0] = 0x0eba1f0e;
798 filehdr_in->pe.dos_message[1] = 0xcd09b400;
799 filehdr_in->pe.dos_message[2] = 0x4c01b821;
800 filehdr_in->pe.dos_message[3] = 0x685421cd;
801 filehdr_in->pe.dos_message[4] = 0x70207369;
802 filehdr_in->pe.dos_message[5] = 0x72676f72;
803 filehdr_in->pe.dos_message[6] = 0x63206d61;
804 filehdr_in->pe.dos_message[7] = 0x6f6e6e61;
805 filehdr_in->pe.dos_message[8] = 0x65622074;
806 filehdr_in->pe.dos_message[9] = 0x6e757220;
807 filehdr_in->pe.dos_message[10] = 0x206e6920;
808 filehdr_in->pe.dos_message[11] = 0x20534f44;
809 filehdr_in->pe.dos_message[12] = 0x65646f6d;
810 filehdr_in->pe.dos_message[13] = 0x0a0d0d2e;
811 filehdr_in->pe.dos_message[14] = 0x24;
812 filehdr_in->pe.dos_message[15] = 0x0;
813 filehdr_in->pe.nt_signature = NT_SIGNATURE;
814
815 H_PUT_16 (abfd, filehdr_in->f_magic, filehdr_out->f_magic);
816 H_PUT_16 (abfd, filehdr_in->f_nscns, filehdr_out->f_nscns);
817
818 H_PUT_32 (abfd, time (0), filehdr_out->f_timdat);
819 PUT_FILEHDR_SYMPTR (abfd, filehdr_in->f_symptr,
820 filehdr_out->f_symptr);
821 H_PUT_32 (abfd, filehdr_in->f_nsyms, filehdr_out->f_nsyms);
822 H_PUT_16 (abfd, filehdr_in->f_opthdr, filehdr_out->f_opthdr);
823 H_PUT_16 (abfd, filehdr_in->f_flags, filehdr_out->f_flags);
824
825 /* Put in extra dos header stuff. This data remains essentially
826 constant, it just has to be tacked on to the beginning of all exes
827 for NT. */
828 H_PUT_16 (abfd, filehdr_in->pe.e_magic, filehdr_out->e_magic);
829 H_PUT_16 (abfd, filehdr_in->pe.e_cblp, filehdr_out->e_cblp);
830 H_PUT_16 (abfd, filehdr_in->pe.e_cp, filehdr_out->e_cp);
831 H_PUT_16 (abfd, filehdr_in->pe.e_crlc, filehdr_out->e_crlc);
832 H_PUT_16 (abfd, filehdr_in->pe.e_cparhdr, filehdr_out->e_cparhdr);
833 H_PUT_16 (abfd, filehdr_in->pe.e_minalloc, filehdr_out->e_minalloc);
834 H_PUT_16 (abfd, filehdr_in->pe.e_maxalloc, filehdr_out->e_maxalloc);
835 H_PUT_16 (abfd, filehdr_in->pe.e_ss, filehdr_out->e_ss);
836 H_PUT_16 (abfd, filehdr_in->pe.e_sp, filehdr_out->e_sp);
837 H_PUT_16 (abfd, filehdr_in->pe.e_csum, filehdr_out->e_csum);
838 H_PUT_16 (abfd, filehdr_in->pe.e_ip, filehdr_out->e_ip);
839 H_PUT_16 (abfd, filehdr_in->pe.e_cs, filehdr_out->e_cs);
840 H_PUT_16 (abfd, filehdr_in->pe.e_lfarlc, filehdr_out->e_lfarlc);
841 H_PUT_16 (abfd, filehdr_in->pe.e_ovno, filehdr_out->e_ovno);
842
843 for (idx = 0; idx < 4; idx++)
844 H_PUT_16 (abfd, filehdr_in->pe.e_res[idx], filehdr_out->e_res[idx]);
845
846 H_PUT_16 (abfd, filehdr_in->pe.e_oemid, filehdr_out->e_oemid);
847 H_PUT_16 (abfd, filehdr_in->pe.e_oeminfo, filehdr_out->e_oeminfo);
848
849 for (idx = 0; idx < 10; idx++)
850 H_PUT_16 (abfd, filehdr_in->pe.e_res2[idx], filehdr_out->e_res2[idx]);
851
852 H_PUT_32 (abfd, filehdr_in->pe.e_lfanew, filehdr_out->e_lfanew);
853
854 for (idx = 0; idx < 16; idx++)
855 H_PUT_32 (abfd, filehdr_in->pe.dos_message[idx],
856 filehdr_out->dos_message[idx]);
857
858 /* Also put in the NT signature. */
859 H_PUT_32 (abfd, filehdr_in->pe.nt_signature, filehdr_out->nt_signature);
860
861 return FILHSZ;
862 }
863
864 unsigned int
865 _bfd_XX_only_swap_filehdr_out (abfd, in, out)
866 bfd *abfd;
867 PTR in;
868 PTR out;
869 {
870 struct internal_filehdr *filehdr_in = (struct internal_filehdr *) in;
871 FILHDR *filehdr_out = (FILHDR *) out;
872
873 H_PUT_16 (abfd, filehdr_in->f_magic, filehdr_out->f_magic);
874 H_PUT_16 (abfd, filehdr_in->f_nscns, filehdr_out->f_nscns);
875 H_PUT_32 (abfd, filehdr_in->f_timdat, filehdr_out->f_timdat);
876 PUT_FILEHDR_SYMPTR (abfd, filehdr_in->f_symptr, filehdr_out->f_symptr);
877 H_PUT_32 (abfd, filehdr_in->f_nsyms, filehdr_out->f_nsyms);
878 H_PUT_16 (abfd, filehdr_in->f_opthdr, filehdr_out->f_opthdr);
879 H_PUT_16 (abfd, filehdr_in->f_flags, filehdr_out->f_flags);
880
881 return FILHSZ;
882 }
883
884 unsigned int
885 _bfd_XXi_swap_scnhdr_out (abfd, in, out)
886 bfd *abfd;
887 PTR in;
888 PTR out;
889 {
890 struct internal_scnhdr *scnhdr_int = (struct internal_scnhdr *) in;
891 SCNHDR *scnhdr_ext = (SCNHDR *) out;
892 unsigned int ret = SCNHSZ;
893 bfd_vma ps;
894 bfd_vma ss;
895
896 memcpy (scnhdr_ext->s_name, scnhdr_int->s_name, sizeof (scnhdr_int->s_name));
897
898 PUT_SCNHDR_VADDR (abfd,
899 ((scnhdr_int->s_vaddr
900 - pe_data (abfd)->pe_opthdr.ImageBase)
901 & 0xffffffff),
902 scnhdr_ext->s_vaddr);
903
904 /* NT wants the size data to be rounded up to the next
905 NT_FILE_ALIGNMENT, but zero if it has no content (as in .bss,
906 sometimes). */
907 if ((scnhdr_int->s_flags & IMAGE_SCN_CNT_UNINITIALIZED_DATA) != 0)
908 {
909 if (bfd_pe_executable_p (abfd))
910 {
911 ps = scnhdr_int->s_size;
912 ss = 0;
913 }
914 else
915 {
916 ps = 0;
917 ss = scnhdr_int->s_size;
918 }
919 }
920 else
921 {
922 if (bfd_pe_executable_p (abfd))
923 ps = scnhdr_int->s_paddr;
924 else
925 ps = 0;
926
927 ss = scnhdr_int->s_size;
928 }
929
930 PUT_SCNHDR_SIZE (abfd, ss,
931 scnhdr_ext->s_size);
932
933 /* s_paddr in PE is really the virtual size. */
934 PUT_SCNHDR_PADDR (abfd, ps, scnhdr_ext->s_paddr);
935
936 PUT_SCNHDR_SCNPTR (abfd, scnhdr_int->s_scnptr,
937 scnhdr_ext->s_scnptr);
938 PUT_SCNHDR_RELPTR (abfd, scnhdr_int->s_relptr,
939 scnhdr_ext->s_relptr);
940 PUT_SCNHDR_LNNOPTR (abfd, scnhdr_int->s_lnnoptr,
941 scnhdr_ext->s_lnnoptr);
942
943 /* Extra flags must be set when dealing with NT. All sections should also
944 have the IMAGE_SCN_MEM_READ (0x40000000) flag set. In addition, the
945 .text section must have IMAGE_SCN_MEM_EXECUTE (0x20000000) and the data
946 sections (.idata, .data, .bss, .CRT) must have IMAGE_SCN_MEM_WRITE set
947 (this is especially important when dealing with the .idata section since
948 the addresses for routines from .dlls must be overwritten). If .reloc
949 section data is ever generated, we must add IMAGE_SCN_MEM_DISCARDABLE
950 (0x02000000). Also, the resource data should also be read and
951 writable. */
952
953 /* FIXME: alignment is also encoded in this field, at least on ppc (krk) */
954 /* FIXME: even worse, I don't see how to get the original alignment field*/
955 /* back... */
956
957 {
958 int flags = scnhdr_int->s_flags;
959
960 H_PUT_32 (abfd, flags, scnhdr_ext->s_flags);
961 }
962
963 if (coff_data (abfd)->link_info
964 && ! coff_data (abfd)->link_info->relocatable
965 && ! coff_data (abfd)->link_info->shared
966 && strcmp (scnhdr_int->s_name, ".text") == 0)
967 {
968 /* By inference from looking at MS output, the 32 bit field
969 which is the combintion of the number_of_relocs and
970 number_of_linenos is used for the line number count in
971 executables. A 16-bit field won't do for cc1. The MS
972 document says that the number of relocs is zero for
973 executables, but the 17-th bit has been observed to be there.
974 Overflow is not an issue: a 4G-line program will overflow a
975 bunch of other fields long before this! */
976 H_PUT_16 (abfd, (scnhdr_int->s_nlnno & 0xffff), scnhdr_ext->s_nlnno);
977 H_PUT_16 (abfd, (scnhdr_int->s_nlnno >> 16), scnhdr_ext->s_nreloc);
978 }
979 else
980 {
981 if (scnhdr_int->s_nlnno <= 0xffff)
982 H_PUT_16 (abfd, scnhdr_int->s_nlnno, scnhdr_ext->s_nlnno);
983 else
984 {
985 (*_bfd_error_handler) (_("%s: line number overflow: 0x%lx > 0xffff"),
986 bfd_get_filename (abfd),
987 scnhdr_int->s_nlnno);
988 bfd_set_error (bfd_error_file_truncated);
989 H_PUT_16 (abfd, 0xffff, scnhdr_ext->s_nlnno);
990 ret = 0;
991 }
992
993 if (scnhdr_int->s_nreloc <= 0xffff)
994 H_PUT_16 (abfd, scnhdr_int->s_nreloc, scnhdr_ext->s_nreloc);
995 else
996 {
997 /* PE can deal with large #s of relocs, but not here. */
998 H_PUT_16 (abfd, 0xffff, scnhdr_ext->s_nreloc);
999 scnhdr_int->s_flags |= IMAGE_SCN_LNK_NRELOC_OVFL;
1000 H_PUT_32 (abfd, scnhdr_int->s_flags, scnhdr_ext->s_flags);
1001 #if 0
1002 (*_bfd_error_handler) (_("%s: reloc overflow 1: 0x%lx > 0xffff"),
1003 bfd_get_filename (abfd),
1004 scnhdr_int->s_nreloc);
1005 bfd_set_error (bfd_error_file_truncated);
1006 H_PUT_16 (abfd, 0xffff, scnhdr_ext->s_nreloc);
1007 ret = 0;
1008 #endif
1009 }
1010 }
1011 return ret;
1012 }
1013
1014 static char * dir_names[IMAGE_NUMBEROF_DIRECTORY_ENTRIES] =
1015 {
1016 N_("Export Directory [.edata (or where ever we found it)]"),
1017 N_("Import Directory [parts of .idata]"),
1018 N_("Resource Directory [.rsrc]"),
1019 N_("Exception Directory [.pdata]"),
1020 N_("Security Directory"),
1021 N_("Base Relocation Directory [.reloc]"),
1022 N_("Debug Directory"),
1023 N_("Description Directory"),
1024 N_("Special Directory"),
1025 N_("Thread Storage Directory [.tls]"),
1026 N_("Load Configuration Directory"),
1027 N_("Bound Import Directory"),
1028 N_("Import Address Table Directory"),
1029 N_("Delay Import Directory"),
1030 N_("Reserved"),
1031 N_("Reserved")
1032 };
1033
1034 #ifdef POWERPC_LE_PE
1035 /* The code for the PPC really falls in the "architecture dependent"
1036 category. However, it's not clear that anyone will ever care, so
1037 we're ignoring the issue for now; if/when PPC matters, some of this
1038 may need to go into peicode.h, or arguments passed to enable the
1039 PPC- specific code. */
1040 #endif
1041
1042 static bfd_boolean
1043 pe_print_idata (abfd, vfile)
1044 bfd *abfd;
1045 PTR vfile;
1046 {
1047 FILE *file = (FILE *) vfile;
1048 bfd_byte *data;
1049 asection *section;
1050 bfd_signed_vma adj;
1051
1052 #ifdef POWERPC_LE_PE
1053 asection *rel_section = bfd_get_section_by_name (abfd, ".reldata");
1054 #endif
1055
1056 bfd_size_type datasize = 0;
1057 bfd_size_type dataoff;
1058 bfd_size_type i;
1059 bfd_size_type amt;
1060 int onaline = 20;
1061
1062 pe_data_type *pe = pe_data (abfd);
1063 struct internal_extra_pe_aouthdr *extra = &pe->pe_opthdr;
1064
1065 bfd_vma addr;
1066
1067 addr = extra->DataDirectory[1].VirtualAddress;
1068
1069 if (addr == 0 && extra->DataDirectory[1].Size == 0)
1070 {
1071 /* Maybe the extra header isn't there. Look for the section. */
1072 section = bfd_get_section_by_name (abfd, ".idata");
1073 if (section == NULL)
1074 return TRUE;
1075
1076 addr = section->vma;
1077 datasize = bfd_section_size (abfd, section);
1078 if (datasize == 0)
1079 return TRUE;
1080 }
1081 else
1082 {
1083 addr += extra->ImageBase;
1084 for (section = abfd->sections; section != NULL; section = section->next)
1085 {
1086 datasize = bfd_section_size (abfd, section);
1087 if (addr >= section->vma && addr < section->vma + datasize)
1088 break;
1089 }
1090
1091 if (section == NULL)
1092 {
1093 fprintf (file,
1094 _("\nThere is an import table, but the section containing it could not be found\n"));
1095 return TRUE;
1096 }
1097 }
1098
1099 fprintf (file, _("\nThere is an import table in %s at 0x%lx\n"),
1100 section->name, (unsigned long) addr);
1101
1102 dataoff = addr - section->vma;
1103 datasize -= dataoff;
1104
1105 #ifdef POWERPC_LE_PE
1106 if (rel_section != 0 && bfd_section_size (abfd, rel_section) != 0)
1107 {
1108 /* The toc address can be found by taking the starting address,
1109 which on the PPC locates a function descriptor. The
1110 descriptor consists of the function code starting address
1111 followed by the address of the toc. The starting address we
1112 get from the bfd, and the descriptor is supposed to be in the
1113 .reldata section. */
1114
1115 bfd_vma loadable_toc_address;
1116 bfd_vma toc_address;
1117 bfd_vma start_address;
1118 bfd_byte *data = 0;
1119 int offset;
1120
1121 amt = bfd_section_size (abfd, rel_section);
1122 data = (bfd_byte *) bfd_malloc (amt);
1123 if (data == NULL && amt != 0)
1124 return FALSE;
1125
1126 bfd_get_section_contents (abfd, rel_section, (PTR) data, (bfd_vma) 0,
1127 amt);
1128
1129 offset = abfd->start_address - rel_section->vma;
1130
1131 start_address = bfd_get_32 (abfd, data + offset);
1132 loadable_toc_address = bfd_get_32 (abfd, data + offset + 4);
1133 toc_address = loadable_toc_address - 32768;
1134
1135 fprintf (file,
1136 _("\nFunction descriptor located at the start address: %04lx\n"),
1137 (unsigned long int) (abfd->start_address));
1138 fprintf (file,
1139 _("\tcode-base %08lx toc (loadable/actual) %08lx/%08lx\n"),
1140 start_address, loadable_toc_address, toc_address);
1141 }
1142 else
1143 {
1144 fprintf (file,
1145 _("\nNo reldata section! Function descriptor not decoded.\n"));
1146 }
1147 #endif
1148
1149 fprintf (file,
1150 _("\nThe Import Tables (interpreted %s section contents)\n"),
1151 section->name);
1152 fprintf (file,
1153 _("\
1154 vma: Hint Time Forward DLL First\n\
1155 Table Stamp Chain Name Thunk\n"));
1156
1157 amt = dataoff + datasize;
1158 data = (bfd_byte *) bfd_malloc (amt);
1159 if (data == NULL)
1160 return FALSE;
1161
1162 /* Read the whole section. Some of the fields might be before dataoff. */
1163 if (! bfd_get_section_contents (abfd, section, (PTR) data, (bfd_vma) 0, amt))
1164 return FALSE;
1165
1166 adj = section->vma - extra->ImageBase;
1167
1168 /* Print all image import descriptors. */
1169 for (i = 0; i < datasize; i += onaline)
1170 {
1171 bfd_vma hint_addr;
1172 bfd_vma time_stamp;
1173 bfd_vma forward_chain;
1174 bfd_vma dll_name;
1175 bfd_vma first_thunk;
1176 int idx = 0;
1177 bfd_size_type j;
1178 char *dll;
1179
1180 /* Print (i + extra->DataDirectory[1].VirtualAddress). */
1181 fprintf (file, " %08lx\t", (unsigned long) (i + adj + dataoff));
1182 #if 0
1183 if (i + 20 > datasize)
1184 /* Check stuff. */
1185 ;
1186 #endif
1187 hint_addr = bfd_get_32 (abfd, data + i + dataoff);
1188 time_stamp = bfd_get_32 (abfd, data + i + 4 + dataoff);
1189 forward_chain = bfd_get_32 (abfd, data + i + 8 + dataoff);
1190 dll_name = bfd_get_32 (abfd, data + i + 12 + dataoff);
1191 first_thunk = bfd_get_32 (abfd, data + i + 16 + dataoff);
1192
1193 fprintf (file, "%08lx %08lx %08lx %08lx %08lx\n",
1194 (unsigned long) hint_addr,
1195 (unsigned long) time_stamp,
1196 (unsigned long) forward_chain,
1197 (unsigned long) dll_name,
1198 (unsigned long) first_thunk);
1199
1200 if (hint_addr == 0 && first_thunk == 0)
1201 break;
1202
1203 dll = (char *) data + dll_name - adj;
1204 fprintf (file, _("\n\tDLL Name: %s\n"), dll);
1205
1206 if (hint_addr != 0)
1207 {
1208 bfd_byte *ft_data;
1209 asection *ft_section;
1210 bfd_vma ft_addr;
1211 bfd_size_type ft_datasize;
1212 int ft_idx;
1213 int ft_allocated = 0;
1214
1215 fprintf (file, _("\tvma: Hint/Ord Member-Name Bound-To\n"));
1216
1217 idx = hint_addr - adj;
1218
1219 ft_addr = first_thunk + extra->ImageBase;
1220 ft_data = data;
1221 ft_idx = first_thunk - adj;
1222 ft_allocated = 0;
1223
1224 if (first_thunk != hint_addr)
1225 {
1226 /* Find the section which contains the first thunk. */
1227 for (ft_section = abfd->sections;
1228 ft_section != NULL;
1229 ft_section = ft_section->next)
1230 {
1231 ft_datasize = bfd_section_size (abfd, ft_section);
1232 if (ft_addr >= ft_section->vma
1233 && ft_addr < ft_section->vma + ft_datasize)
1234 break;
1235 }
1236
1237 if (ft_section == NULL)
1238 {
1239 fprintf (file,
1240 _("\nThere is a first thunk, but the section containing it could not be found\n"));
1241 continue;
1242 }
1243
1244 /* Now check to see if this section is the same as our current
1245 section. If it is not then we will have to load its data in. */
1246 if (ft_section == section)
1247 {
1248 ft_data = data;
1249 ft_idx = first_thunk - adj;
1250 }
1251 else
1252 {
1253 ft_idx = first_thunk - (ft_section->vma - extra->ImageBase);
1254 ft_data = (bfd_byte *) bfd_malloc (datasize);
1255 if (ft_data == NULL)
1256 continue;
1257
1258 /* Read datasize bfd_bytes starting at offset ft_idx. */
1259 if (! bfd_get_section_contents (abfd, ft_section,
1260 (PTR) ft_data,
1261 (bfd_vma) ft_idx,
1262 datasize))
1263 {
1264 free (ft_data);
1265 continue;
1266 }
1267
1268 ft_idx = 0;
1269 ft_allocated = 1;
1270 }
1271 }
1272
1273 /* Print HintName vector entries. */
1274 for (j = 0; j < datasize; j += 4)
1275 {
1276 unsigned long member = bfd_get_32 (abfd, data + idx + j);
1277
1278 /* Print single IMAGE_IMPORT_BY_NAME vector. */
1279 if (member == 0)
1280 break;
1281
1282 if (member & 0x80000000)
1283 fprintf (file, "\t%04lx\t %4lu <none>",
1284 member, member & 0x7fffffff);
1285 else
1286 {
1287 int ordinal;
1288 char *member_name;
1289
1290 ordinal = bfd_get_16 (abfd, data + member - adj);
1291 member_name = (char *) data + member - adj + 2;
1292 fprintf (file, "\t%04lx\t %4d %s",
1293 member, ordinal, member_name);
1294 }
1295
1296 /* If the time stamp is not zero, the import address
1297 table holds actual addresses. */
1298 if (time_stamp != 0
1299 && first_thunk != 0
1300 && first_thunk != hint_addr)
1301 fprintf (file, "\t%04lx",
1302 (long) bfd_get_32 (abfd, ft_data + ft_idx + j));
1303
1304 fprintf (file, "\n");
1305 }
1306
1307 if (ft_allocated)
1308 free (ft_data);
1309 }
1310
1311 fprintf (file, "\n");
1312 }
1313
1314 free (data);
1315
1316 return TRUE;
1317 }
1318
1319 static bfd_boolean
1320 pe_print_edata (abfd, vfile)
1321 bfd *abfd;
1322 PTR vfile;
1323 {
1324 FILE *file = (FILE *) vfile;
1325 bfd_byte *data;
1326 asection *section;
1327 bfd_size_type datasize = 0;
1328 bfd_size_type dataoff;
1329 bfd_size_type i;
1330 bfd_signed_vma adj;
1331 struct EDT_type
1332 {
1333 long export_flags; /* reserved - should be zero */
1334 long time_stamp;
1335 short major_ver;
1336 short minor_ver;
1337 bfd_vma name; /* rva - relative to image base */
1338 long base; /* ordinal base */
1339 unsigned long num_functions;/* Number in the export address table */
1340 unsigned long num_names; /* Number in the name pointer table */
1341 bfd_vma eat_addr; /* rva to the export address table */
1342 bfd_vma npt_addr; /* rva to the Export Name Pointer Table */
1343 bfd_vma ot_addr; /* rva to the Ordinal Table */
1344 } edt;
1345
1346 pe_data_type *pe = pe_data (abfd);
1347 struct internal_extra_pe_aouthdr *extra = &pe->pe_opthdr;
1348
1349 bfd_vma addr;
1350
1351 addr = extra->DataDirectory[0].VirtualAddress;
1352
1353 if (addr == 0 && extra->DataDirectory[0].Size == 0)
1354 {
1355 /* Maybe the extra header isn't there. Look for the section. */
1356 section = bfd_get_section_by_name (abfd, ".edata");
1357 if (section == NULL)
1358 return TRUE;
1359
1360 addr = section->vma;
1361 datasize = bfd_section_size (abfd, section);
1362 if (datasize == 0)
1363 return TRUE;
1364 }
1365 else
1366 {
1367 addr += extra->ImageBase;
1368
1369 for (section = abfd->sections; section != NULL; section = section->next)
1370 {
1371 datasize = bfd_section_size (abfd, section);
1372
1373 if (addr >= section->vma && addr < section->vma + datasize)
1374 break;
1375 }
1376
1377 if (section == NULL)
1378 {
1379 fprintf (file,
1380 _("\nThere is an export table, but the section containing it could not be found\n"));
1381 return TRUE;
1382 }
1383 }
1384
1385 fprintf (file, _("\nThere is an export table in %s at 0x%lx\n"),
1386 section->name, (unsigned long) addr);
1387
1388 dataoff = addr - section->vma;
1389 datasize -= dataoff;
1390
1391 data = (bfd_byte *) bfd_malloc (datasize);
1392 if (data == NULL)
1393 return FALSE;
1394
1395 if (! bfd_get_section_contents (abfd, section, (PTR) data,
1396 (file_ptr) dataoff, datasize))
1397 return FALSE;
1398
1399 /* Go get Export Directory Table. */
1400 edt.export_flags = bfd_get_32 (abfd, data + 0);
1401 edt.time_stamp = bfd_get_32 (abfd, data + 4);
1402 edt.major_ver = bfd_get_16 (abfd, data + 8);
1403 edt.minor_ver = bfd_get_16 (abfd, data + 10);
1404 edt.name = bfd_get_32 (abfd, data + 12);
1405 edt.base = bfd_get_32 (abfd, data + 16);
1406 edt.num_functions = bfd_get_32 (abfd, data + 20);
1407 edt.num_names = bfd_get_32 (abfd, data + 24);
1408 edt.eat_addr = bfd_get_32 (abfd, data + 28);
1409 edt.npt_addr = bfd_get_32 (abfd, data + 32);
1410 edt.ot_addr = bfd_get_32 (abfd, data + 36);
1411
1412 adj = section->vma - extra->ImageBase + dataoff;
1413
1414 /* Dump the EDT first. */
1415 fprintf (file,
1416 _("\nThe Export Tables (interpreted %s section contents)\n\n"),
1417 section->name);
1418
1419 fprintf (file,
1420 _("Export Flags \t\t\t%lx\n"), (unsigned long) edt.export_flags);
1421
1422 fprintf (file,
1423 _("Time/Date stamp \t\t%lx\n"), (unsigned long) edt.time_stamp);
1424
1425 fprintf (file,
1426 _("Major/Minor \t\t\t%d/%d\n"), edt.major_ver, edt.minor_ver);
1427
1428 fprintf (file,
1429 _("Name \t\t\t\t"));
1430 fprintf_vma (file, edt.name);
1431 fprintf (file,
1432 " %s\n", data + edt.name - adj);
1433
1434 fprintf (file,
1435 _("Ordinal Base \t\t\t%ld\n"), edt.base);
1436
1437 fprintf (file,
1438 _("Number in:\n"));
1439
1440 fprintf (file,
1441 _("\tExport Address Table \t\t%08lx\n"),
1442 edt.num_functions);
1443
1444 fprintf (file,
1445 _("\t[Name Pointer/Ordinal] Table\t%08lx\n"), edt.num_names);
1446
1447 fprintf (file,
1448 _("Table Addresses\n"));
1449
1450 fprintf (file,
1451 _("\tExport Address Table \t\t"));
1452 fprintf_vma (file, edt.eat_addr);
1453 fprintf (file, "\n");
1454
1455 fprintf (file,
1456 _("\tName Pointer Table \t\t"));
1457 fprintf_vma (file, edt.npt_addr);
1458 fprintf (file, "\n");
1459
1460 fprintf (file,
1461 _("\tOrdinal Table \t\t\t"));
1462 fprintf_vma (file, edt.ot_addr);
1463 fprintf (file, "\n");
1464
1465 /* The next table to find is the Export Address Table. It's basically
1466 a list of pointers that either locate a function in this dll, or
1467 forward the call to another dll. Something like:
1468 typedef union
1469 {
1470 long export_rva;
1471 long forwarder_rva;
1472 } export_address_table_entry;
1473 */
1474
1475 fprintf (file,
1476 _("\nExport Address Table -- Ordinal Base %ld\n"),
1477 edt.base);
1478
1479 for (i = 0; i < edt.num_functions; ++i)
1480 {
1481 bfd_vma eat_member = bfd_get_32 (abfd,
1482 data + edt.eat_addr + (i * 4) - adj);
1483 if (eat_member == 0)
1484 continue;
1485
1486 if (eat_member - adj <= datasize)
1487 {
1488 /* This rva is to a name (forwarding function) in our section. */
1489 /* Should locate a function descriptor. */
1490 fprintf (file,
1491 "\t[%4ld] +base[%4ld] %04lx %s -- %s\n",
1492 (long) i,
1493 (long) (i + edt.base),
1494 (unsigned long) eat_member,
1495 _("Forwarder RVA"),
1496 data + eat_member - adj);
1497 }
1498 else
1499 {
1500 /* Should locate a function descriptor in the reldata section. */
1501 fprintf (file,
1502 "\t[%4ld] +base[%4ld] %04lx %s\n",
1503 (long) i,
1504 (long) (i + edt.base),
1505 (unsigned long) eat_member,
1506 _("Export RVA"));
1507 }
1508 }
1509
1510 /* The Export Name Pointer Table is paired with the Export Ordinal Table. */
1511 /* Dump them in parallel for clarity. */
1512 fprintf (file,
1513 _("\n[Ordinal/Name Pointer] Table\n"));
1514
1515 for (i = 0; i < edt.num_names; ++i)
1516 {
1517 bfd_vma name_ptr = bfd_get_32 (abfd,
1518 data +
1519 edt.npt_addr
1520 + (i*4) - adj);
1521
1522 char *name = (char *) data + name_ptr - adj;
1523
1524 bfd_vma ord = bfd_get_16 (abfd,
1525 data +
1526 edt.ot_addr
1527 + (i*2) - adj);
1528 fprintf (file,
1529 "\t[%4ld] %s\n", (long) ord, name);
1530 }
1531
1532 free (data);
1533
1534 return TRUE;
1535 }
1536
1537 /* This really is architecture dependent. On IA-64, a .pdata entry
1538 consists of three dwords containing relative virtual addresses that
1539 specify the start and end address of the code range the entry
1540 covers and the address of the corresponding unwind info data. */
1541
1542 static bfd_boolean
1543 pe_print_pdata (abfd, vfile)
1544 bfd *abfd;
1545 PTR vfile;
1546 {
1547 #ifdef COFF_WITH_pep
1548 # define PDATA_ROW_SIZE (3*8)
1549 #else
1550 # define PDATA_ROW_SIZE (5*4)
1551 #endif
1552 FILE *file = (FILE *) vfile;
1553 bfd_byte *data = 0;
1554 asection *section = bfd_get_section_by_name (abfd, ".pdata");
1555 bfd_size_type datasize = 0;
1556 bfd_size_type i;
1557 bfd_size_type start, stop;
1558 int onaline = PDATA_ROW_SIZE;
1559
1560 if (section == NULL
1561 || coff_section_data (abfd, section) == NULL
1562 || pei_section_data (abfd, section) == NULL)
1563 return TRUE;
1564
1565 stop = pei_section_data (abfd, section)->virt_size;
1566 if ((stop % onaline) != 0)
1567 fprintf (file,
1568 _("Warning, .pdata section size (%ld) is not a multiple of %d\n"),
1569 (long) stop, onaline);
1570
1571 fprintf (file,
1572 _("\nThe Function Table (interpreted .pdata section contents)\n"));
1573 #ifdef COFF_WITH_pep
1574 fprintf (file,
1575 _(" vma:\t\t\tBegin Address End Address Unwind Info\n"));
1576 #else
1577 fprintf (file, _("\
1578 vma:\t\tBegin End EH EH PrologEnd Exception\n\
1579 \t\tAddress Address Handler Data Address Mask\n"));
1580 #endif
1581
1582 datasize = bfd_section_size (abfd, section);
1583 if (datasize == 0)
1584 return TRUE;
1585
1586 data = (bfd_byte *) bfd_malloc (datasize);
1587 if (data == NULL && datasize != 0)
1588 return FALSE;
1589
1590 bfd_get_section_contents (abfd, section, (PTR) data, (bfd_vma) 0,
1591 datasize);
1592
1593 start = 0;
1594
1595 for (i = start; i < stop; i += onaline)
1596 {
1597 bfd_vma begin_addr;
1598 bfd_vma end_addr;
1599 bfd_vma eh_handler;
1600 bfd_vma eh_data;
1601 bfd_vma prolog_end_addr;
1602 int em_data;
1603
1604 if (i + PDATA_ROW_SIZE > stop)
1605 break;
1606
1607 begin_addr = GET_PDATA_ENTRY (abfd, data + i );
1608 end_addr = GET_PDATA_ENTRY (abfd, data + i + 4);
1609 eh_handler = GET_PDATA_ENTRY (abfd, data + i + 8);
1610 eh_data = GET_PDATA_ENTRY (abfd, data + i + 12);
1611 prolog_end_addr = GET_PDATA_ENTRY (abfd, data + i + 16);
1612
1613 if (begin_addr == 0 && end_addr == 0 && eh_handler == 0
1614 && eh_data == 0 && prolog_end_addr == 0)
1615 /* We are probably into the padding of the section now. */
1616 break;
1617
1618 em_data = ((eh_handler & 0x1) << 2) | (prolog_end_addr & 0x3);
1619 eh_handler &= ~(bfd_vma) 0x3;
1620 prolog_end_addr &= ~(bfd_vma) 0x3;
1621
1622 fputc (' ', file);
1623 fprintf_vma (file, i + section->vma); fputc ('\t', file);
1624 fprintf_vma (file, begin_addr); fputc (' ', file);
1625 fprintf_vma (file, end_addr); fputc (' ', file);
1626 fprintf_vma (file, eh_handler);
1627 #ifndef COFF_WITH_pep
1628 fputc (' ', file);
1629 fprintf_vma (file, eh_data); fputc (' ', file);
1630 fprintf_vma (file, prolog_end_addr);
1631 fprintf (file, " %x", em_data);
1632 #endif
1633
1634 #ifdef POWERPC_LE_PE
1635 if (eh_handler == 0 && eh_data != 0)
1636 {
1637 /* Special bits here, although the meaning may be a little
1638 mysterious. The only one I know for sure is 0x03. */
1639 /* Code Significance */
1640 /* 0x00 None */
1641 /* 0x01 Register Save Millicode */
1642 /* 0x02 Register Restore Millicode */
1643 /* 0x03 Glue Code Sequence */
1644 switch (eh_data)
1645 {
1646 case 0x01:
1647 fprintf (file, _(" Register save millicode"));
1648 break;
1649 case 0x02:
1650 fprintf (file, _(" Register restore millicode"));
1651 break;
1652 case 0x03:
1653 fprintf (file, _(" Glue code sequence"));
1654 break;
1655 default:
1656 break;
1657 }
1658 }
1659 #endif
1660 fprintf (file, "\n");
1661 }
1662
1663 free (data);
1664
1665 return TRUE;
1666 }
1667
1668 #define IMAGE_REL_BASED_HIGHADJ 4
1669 static const char * const tbl[] =
1670 {
1671 "ABSOLUTE",
1672 "HIGH",
1673 "LOW",
1674 "HIGHLOW",
1675 "HIGHADJ",
1676 "MIPS_JMPADDR",
1677 "SECTION",
1678 "REL32",
1679 "RESERVED1",
1680 "MIPS_JMPADDR16",
1681 "DIR64",
1682 "HIGH3ADJ"
1683 "UNKNOWN", /* MUST be last */
1684 };
1685
1686 static bfd_boolean
1687 pe_print_reloc (abfd, vfile)
1688 bfd *abfd;
1689 PTR vfile;
1690 {
1691 FILE *file = (FILE *) vfile;
1692 bfd_byte *data = 0;
1693 asection *section = bfd_get_section_by_name (abfd, ".reloc");
1694 bfd_size_type datasize;
1695 bfd_size_type i;
1696 bfd_size_type start, stop;
1697
1698 if (section == NULL)
1699 return TRUE;
1700
1701 if (bfd_section_size (abfd, section) == 0)
1702 return TRUE;
1703
1704 fprintf (file,
1705 _("\n\nPE File Base Relocations (interpreted .reloc section contents)\n"));
1706
1707 datasize = bfd_section_size (abfd, section);
1708 data = (bfd_byte *) bfd_malloc (datasize);
1709 if (data == NULL && datasize != 0)
1710 return FALSE;
1711
1712 bfd_get_section_contents (abfd, section, (PTR) data, (bfd_vma) 0,
1713 datasize);
1714
1715 start = 0;
1716
1717 stop = bfd_section_size (abfd, section);
1718
1719 for (i = start; i < stop;)
1720 {
1721 int j;
1722 bfd_vma virtual_address;
1723 long number, size;
1724
1725 /* The .reloc section is a sequence of blocks, with a header consisting
1726 of two 32 bit quantities, followed by a number of 16 bit entries. */
1727 virtual_address = bfd_get_32 (abfd, data+i);
1728 size = bfd_get_32 (abfd, data+i+4);
1729 number = (size - 8) / 2;
1730
1731 if (size == 0)
1732 break;
1733
1734 fprintf (file,
1735 _("\nVirtual Address: %08lx Chunk size %ld (0x%lx) Number of fixups %ld\n"),
1736 (unsigned long) virtual_address, size, size, number);
1737
1738 for (j = 0; j < number; ++j)
1739 {
1740 unsigned short e = bfd_get_16 (abfd, data + i + 8 + j * 2);
1741 unsigned int t = (e & 0xF000) >> 12;
1742 int off = e & 0x0FFF;
1743
1744 if (t >= sizeof (tbl) / sizeof (tbl[0]))
1745 t = (sizeof (tbl) / sizeof (tbl[0])) - 1;
1746
1747 fprintf (file,
1748 _("\treloc %4d offset %4x [%4lx] %s"),
1749 j, off, (long) (off + virtual_address), tbl[t]);
1750
1751 /* HIGHADJ takes an argument, - the next record *is* the
1752 low 16 bits of addend. */
1753 if (t == IMAGE_REL_BASED_HIGHADJ)
1754 {
1755 fprintf (file, " (%4x)",
1756 ((unsigned int)
1757 bfd_get_16 (abfd, data + i + 8 + j * 2 + 2)));
1758 j++;
1759 }
1760
1761 fprintf (file, "\n");
1762 }
1763
1764 i += size;
1765 }
1766
1767 free (data);
1768
1769 return TRUE;
1770 }
1771
1772 /* Print out the program headers. */
1773
1774 bfd_boolean
1775 _bfd_XX_print_private_bfd_data_common (abfd, vfile)
1776 bfd *abfd;
1777 PTR vfile;
1778 {
1779 FILE *file = (FILE *) vfile;
1780 int j;
1781 pe_data_type *pe = pe_data (abfd);
1782 struct internal_extra_pe_aouthdr *i = &pe->pe_opthdr;
1783 const char *subsystem_name = NULL;
1784
1785 /* The MS dumpbin program reportedly ands with 0xff0f before
1786 printing the characteristics field. Not sure why. No reason to
1787 emulate it here. */
1788 fprintf (file, _("\nCharacteristics 0x%x\n"), pe->real_flags);
1789 #undef PF
1790 #define PF(x, y) if (pe->real_flags & x) { fprintf (file, "\t%s\n", y); }
1791 PF (F_RELFLG, "relocations stripped");
1792 PF (F_EXEC, "executable");
1793 PF (F_LNNO, "line numbers stripped");
1794 PF (F_LSYMS, "symbols stripped");
1795 PF (0x80, "little endian");
1796 PF (F_AR32WR, "32 bit words");
1797 PF (0x200, "debugging information removed");
1798 PF (0x1000, "system file");
1799 PF (F_DLL, "DLL");
1800 PF (0x8000, "big endian");
1801 #undef PF
1802
1803 /* ctime implies '\n'. */
1804 {
1805 time_t t = pe->coff.timestamp;
1806 fprintf (file, "\nTime/Date\t\t%s", ctime (&t));
1807 }
1808 fprintf (file, "\nImageBase\t\t");
1809 fprintf_vma (file, i->ImageBase);
1810 fprintf (file, "\nSectionAlignment\t");
1811 fprintf_vma (file, i->SectionAlignment);
1812 fprintf (file, "\nFileAlignment\t\t");
1813 fprintf_vma (file, i->FileAlignment);
1814 fprintf (file, "\nMajorOSystemVersion\t%d\n", i->MajorOperatingSystemVersion);
1815 fprintf (file, "MinorOSystemVersion\t%d\n", i->MinorOperatingSystemVersion);
1816 fprintf (file, "MajorImageVersion\t%d\n", i->MajorImageVersion);
1817 fprintf (file, "MinorImageVersion\t%d\n", i->MinorImageVersion);
1818 fprintf (file, "MajorSubsystemVersion\t%d\n", i->MajorSubsystemVersion);
1819 fprintf (file, "MinorSubsystemVersion\t%d\n", i->MinorSubsystemVersion);
1820 fprintf (file, "Win32Version\t\t%08lx\n", i->Reserved1);
1821 fprintf (file, "SizeOfImage\t\t%08lx\n", i->SizeOfImage);
1822 fprintf (file, "SizeOfHeaders\t\t%08lx\n", i->SizeOfHeaders);
1823 fprintf (file, "CheckSum\t\t%08lx\n", i->CheckSum);
1824
1825 switch (i->Subsystem)
1826 {
1827 case IMAGE_SUBSYSTEM_UNKNOWN:
1828 subsystem_name = "unspecified";
1829 break;
1830 case IMAGE_SUBSYSTEM_NATIVE:
1831 subsystem_name = "NT native";
1832 break;
1833 case IMAGE_SUBSYSTEM_WINDOWS_GUI:
1834 subsystem_name = "Windows GUI";
1835 break;
1836 case IMAGE_SUBSYSTEM_WINDOWS_CUI:
1837 subsystem_name = "Windows CUI";
1838 break;
1839 case IMAGE_SUBSYSTEM_POSIX_CUI:
1840 subsystem_name = "POSIX CUI";
1841 break;
1842 case IMAGE_SUBSYSTEM_WINDOWS_CE_GUI:
1843 subsystem_name = "Wince CUI";
1844 break;
1845 case IMAGE_SUBSYSTEM_EFI_APPLICATION:
1846 subsystem_name = "EFI application";
1847 break;
1848 case IMAGE_SUBSYSTEM_EFI_BOOT_SERVICE_DRIVER:
1849 subsystem_name = "EFI boot service driver";
1850 break;
1851 case IMAGE_SUBSYSTEM_EFI_RUNTIME_DRIVER:
1852 subsystem_name = "EFI runtime driver";
1853 break;
1854 }
1855
1856 fprintf (file, "Subsystem\t\t%08x", i->Subsystem);
1857 if (subsystem_name)
1858 fprintf (file, "\t(%s)", subsystem_name);
1859 fprintf (file, "\nDllCharacteristics\t%08x\n", i->DllCharacteristics);
1860 fprintf (file, "SizeOfStackReserve\t");
1861 fprintf_vma (file, i->SizeOfStackReserve);
1862 fprintf (file, "\nSizeOfStackCommit\t");
1863 fprintf_vma (file, i->SizeOfStackCommit);
1864 fprintf (file, "\nSizeOfHeapReserve\t");
1865 fprintf_vma (file, i->SizeOfHeapReserve);
1866 fprintf (file, "\nSizeOfHeapCommit\t");
1867 fprintf_vma (file, i->SizeOfHeapCommit);
1868 fprintf (file, "\nLoaderFlags\t\t%08lx\n", i->LoaderFlags);
1869 fprintf (file, "NumberOfRvaAndSizes\t%08lx\n", i->NumberOfRvaAndSizes);
1870
1871 fprintf (file, "\nThe Data Directory\n");
1872 for (j = 0; j < IMAGE_NUMBEROF_DIRECTORY_ENTRIES; j++)
1873 {
1874 fprintf (file, "Entry %1x ", j);
1875 fprintf_vma (file, i->DataDirectory[j].VirtualAddress);
1876 fprintf (file, " %08lx ", i->DataDirectory[j].Size);
1877 fprintf (file, "%s\n", dir_names[j]);
1878 }
1879
1880 pe_print_idata (abfd, vfile);
1881 pe_print_edata (abfd, vfile);
1882 pe_print_pdata (abfd, vfile);
1883 pe_print_reloc (abfd, vfile);
1884
1885 return TRUE;
1886 }
1887
1888 /* Copy any private info we understand from the input bfd
1889 to the output bfd. */
1890
1891 bfd_boolean
1892 _bfd_XX_bfd_copy_private_bfd_data_common (ibfd, obfd)
1893 bfd *ibfd, *obfd;
1894 {
1895 /* One day we may try to grok other private data. */
1896 if (ibfd->xvec->flavour != bfd_target_coff_flavour
1897 || obfd->xvec->flavour != bfd_target_coff_flavour)
1898 return TRUE;
1899
1900 pe_data (obfd)->pe_opthdr = pe_data (ibfd)->pe_opthdr;
1901 pe_data (obfd)->dll = pe_data (ibfd)->dll;
1902
1903 /* For strip: if we removed .reloc, we'll make a real mess of things
1904 if we don't remove this entry as well. */
1905 if (! pe_data (obfd)->has_reloc_section)
1906 {
1907 pe_data (obfd)->pe_opthdr.DataDirectory[5].VirtualAddress = 0;
1908 pe_data (obfd)->pe_opthdr.DataDirectory[5].Size = 0;
1909 }
1910 return TRUE;
1911 }
1912
1913 /* Copy private section data. */
1914
1915 bfd_boolean
1916 _bfd_XX_bfd_copy_private_section_data (ibfd, isec, obfd, osec)
1917 bfd *ibfd;
1918 asection *isec;
1919 bfd *obfd;
1920 asection *osec;
1921 {
1922 if (bfd_get_flavour (ibfd) != bfd_target_coff_flavour
1923 || bfd_get_flavour (obfd) != bfd_target_coff_flavour)
1924 return TRUE;
1925
1926 if (coff_section_data (ibfd, isec) != NULL
1927 && pei_section_data (ibfd, isec) != NULL)
1928 {
1929 if (coff_section_data (obfd, osec) == NULL)
1930 {
1931 bfd_size_type amt = sizeof (struct coff_section_tdata);
1932 osec->used_by_bfd = (PTR) bfd_zalloc (obfd, amt);
1933 if (osec->used_by_bfd == NULL)
1934 return FALSE;
1935 }
1936
1937 if (pei_section_data (obfd, osec) == NULL)
1938 {
1939 bfd_size_type amt = sizeof (struct pei_section_tdata);
1940 coff_section_data (obfd, osec)->tdata = (PTR) bfd_zalloc (obfd, amt);
1941 if (coff_section_data (obfd, osec)->tdata == NULL)
1942 return FALSE;
1943 }
1944
1945 pei_section_data (obfd, osec)->virt_size =
1946 pei_section_data (ibfd, isec)->virt_size;
1947 pei_section_data (obfd, osec)->pe_flags =
1948 pei_section_data (ibfd, isec)->pe_flags;
1949 }
1950
1951 return TRUE;
1952 }
1953
1954 void
1955 _bfd_XX_get_symbol_info (abfd, symbol, ret)
1956 bfd *abfd;
1957 asymbol *symbol;
1958 symbol_info *ret;
1959 {
1960 coff_get_symbol_info (abfd, symbol, ret);
1961 #if 0 /* This code no longer appears to be necessary.
1962 ImageBase has already been added in by coff_swap_scnhdr_in. */
1963 if (pe_data (abfd) != NULL
1964 && ((symbol->flags & BSF_DEBUGGING) == 0
1965 || (symbol->flags & BSF_DEBUGGING_RELOC) != 0)
1966 && ! bfd_is_abs_section (symbol->section))
1967 ret->value += pe_data (abfd)->pe_opthdr.ImageBase;
1968 #endif
1969 }
1970
1971 /* Handle the .idata section and other things that need symbol table
1972 access. */
1973
1974 bfd_boolean
1975 _bfd_XXi_final_link_postscript (abfd, pfinfo)
1976 bfd *abfd;
1977 struct coff_final_link_info *pfinfo;
1978 {
1979 struct coff_link_hash_entry *h1;
1980 struct bfd_link_info *info = pfinfo->info;
1981
1982 /* There are a few fields that need to be filled in now while we
1983 have symbol table access.
1984
1985 The .idata subsections aren't directly available as sections, but
1986 they are in the symbol table, so get them from there. */
1987
1988 /* The import directory. This is the address of .idata$2, with size
1989 of .idata$2 + .idata$3. */
1990 h1 = coff_link_hash_lookup (coff_hash_table (info),
1991 ".idata$2", FALSE, FALSE, TRUE);
1992 if (h1 != NULL)
1993 {
1994 pe_data (abfd)->pe_opthdr.DataDirectory[1].VirtualAddress =
1995 (h1->root.u.def.value
1996 + h1->root.u.def.section->output_section->vma
1997 + h1->root.u.def.section->output_offset);
1998 h1 = coff_link_hash_lookup (coff_hash_table (info),
1999 ".idata$4", FALSE, FALSE, TRUE);
2000 pe_data (abfd)->pe_opthdr.DataDirectory[1].Size =
2001 ((h1->root.u.def.value
2002 + h1->root.u.def.section->output_section->vma
2003 + h1->root.u.def.section->output_offset)
2004 - pe_data (abfd)->pe_opthdr.DataDirectory[1].VirtualAddress);
2005
2006 /* The import address table. This is the size/address of
2007 .idata$5. */
2008 h1 = coff_link_hash_lookup (coff_hash_table (info),
2009 ".idata$5", FALSE, FALSE, TRUE);
2010 pe_data (abfd)->pe_opthdr.DataDirectory[12].VirtualAddress =
2011 (h1->root.u.def.value
2012 + h1->root.u.def.section->output_section->vma
2013 + h1->root.u.def.section->output_offset);
2014 h1 = coff_link_hash_lookup (coff_hash_table (info),
2015 ".idata$6", FALSE, FALSE, TRUE);
2016 pe_data (abfd)->pe_opthdr.DataDirectory[12].Size =
2017 ((h1->root.u.def.value
2018 + h1->root.u.def.section->output_section->vma
2019 + h1->root.u.def.section->output_offset)
2020 - pe_data (abfd)->pe_opthdr.DataDirectory[12].VirtualAddress);
2021 }
2022
2023 /* If we couldn't find idata$2, we either have an excessively
2024 trivial program or are in DEEP trouble; we have to assume trivial
2025 program.... */
2026 return TRUE;
2027 }
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