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252b5132 1/* readelf.c -- display contents of an ELF format file
6f2750fe 2 Copyright (C) 1998-2016 Free Software Foundation, Inc.
252b5132
RH
3
4 Originally developed by Eric Youngdale <eric@andante.jic.com>
12ab83a9 5 Modifications by Nick Clifton <nickc@redhat.com>
252b5132
RH
6
7 This file is part of GNU Binutils.
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
32866df7 11 the Free Software Foundation; either version 3 of the License, or
252b5132
RH
12 (at your option) any later version.
13
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
b43b5d5f
NC
21 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA
22 02110-1301, USA. */
252b5132 23\f
9eb20dd8 24/* The difference between readelf and objdump:
252b5132 25
74013231 26 Both programs are capable of displaying the contents of ELF format files,
9eb20dd8 27 so why does the binutils project have two file dumpers ?
0de14b54 28
9eb20dd8
NC
29 The reason is that objdump sees an ELF file through a BFD filter of the
30 world; if BFD has a bug where, say, it disagrees about a machine constant
31 in e_flags, then the odds are good that it will remain internally
32 consistent. The linker sees it the BFD way, objdump sees it the BFD way,
33 GAS sees it the BFD way. There was need for a tool to go find out what
34 the file actually says.
35
36 This is why the readelf program does not link against the BFD library - it
37 exists as an independent program to help verify the correct working of BFD.
38
39 There is also the case that readelf can provide more information about an
40 ELF file than is provided by objdump. In particular it can display DWARF
41 debugging information which (at the moment) objdump cannot. */
42\f
3db64b00 43#include "sysdep.h"
252b5132 44#include <assert.h>
252b5132 45#include <time.h>
1b315056 46#include <zlib.h>
3bfcb652 47#ifdef HAVE_WCHAR_H
7bfd842d 48#include <wchar.h>
3bfcb652 49#endif
252b5132 50
a952a375 51#if __GNUC__ >= 2
19936277 52/* Define BFD64 here, even if our default architecture is 32 bit ELF
a952a375 53 as this will allow us to read in and parse 64bit and 32bit ELF files.
b34976b6 54 Only do this if we believe that the compiler can support a 64 bit
a952a375 55 data type. For now we only rely on GCC being able to do this. */
19936277 56#define BFD64
a952a375
NC
57#endif
58
3db64b00
AM
59#include "bfd.h"
60#include "bucomm.h"
3284fe0c 61#include "elfcomm.h"
19e6b90e 62#include "dwarf.h"
252b5132
RH
63
64#include "elf/common.h"
65#include "elf/external.h"
66#include "elf/internal.h"
252b5132 67
4b78141a
NC
68
69/* Included here, before RELOC_MACROS_GEN_FUNC is defined, so that
70 we can obtain the H8 reloc numbers. We need these for the
71 get_reloc_size() function. We include h8.h again after defining
72 RELOC_MACROS_GEN_FUNC so that we get the naming function as well. */
73
74#include "elf/h8.h"
75#undef _ELF_H8_H
76
77/* Undo the effects of #including reloc-macros.h. */
78
79#undef START_RELOC_NUMBERS
80#undef RELOC_NUMBER
81#undef FAKE_RELOC
82#undef EMPTY_RELOC
83#undef END_RELOC_NUMBERS
84#undef _RELOC_MACROS_H
85
252b5132
RH
86/* The following headers use the elf/reloc-macros.h file to
87 automatically generate relocation recognition functions
88 such as elf_mips_reloc_type() */
89
90#define RELOC_MACROS_GEN_FUNC
91
a06ea964 92#include "elf/aarch64.h"
252b5132 93#include "elf/alpha.h"
3b16e843 94#include "elf/arc.h"
252b5132 95#include "elf/arm.h"
3b16e843 96#include "elf/avr.h"
1d65ded4 97#include "elf/bfin.h"
60bca95a 98#include "elf/cr16.h"
3b16e843 99#include "elf/cris.h"
1c0d3aa6 100#include "elf/crx.h"
252b5132
RH
101#include "elf/d10v.h"
102#include "elf/d30v.h"
d172d4ba 103#include "elf/dlx.h"
cfb8c092 104#include "elf/epiphany.h"
252b5132 105#include "elf/fr30.h"
5c70f934 106#include "elf/frv.h"
3f8107ab 107#include "elf/ft32.h"
3b16e843
NC
108#include "elf/h8.h"
109#include "elf/hppa.h"
110#include "elf/i386.h"
35b1837e 111#include "elf/i370.h"
3b16e843
NC
112#include "elf/i860.h"
113#include "elf/i960.h"
114#include "elf/ia64.h"
1e4cf259 115#include "elf/ip2k.h"
84e94c90 116#include "elf/lm32.h"
1c0d3aa6 117#include "elf/iq2000.h"
49f58d10 118#include "elf/m32c.h"
3b16e843
NC
119#include "elf/m32r.h"
120#include "elf/m68k.h"
75751cd9 121#include "elf/m68hc11.h"
252b5132 122#include "elf/mcore.h"
15ab5209 123#include "elf/mep.h"
a3c62988 124#include "elf/metag.h"
7ba29e2a 125#include "elf/microblaze.h"
3b16e843 126#include "elf/mips.h"
3c3bdf30 127#include "elf/mmix.h"
3b16e843
NC
128#include "elf/mn10200.h"
129#include "elf/mn10300.h"
5506d11a 130#include "elf/moxie.h"
4970f871 131#include "elf/mt.h"
2469cfa2 132#include "elf/msp430.h"
35c08157 133#include "elf/nds32.h"
13761a11 134#include "elf/nios2.h"
73589c9d 135#include "elf/or1k.h"
7d466069 136#include "elf/pj.h"
3b16e843 137#include "elf/ppc.h"
c833c019 138#include "elf/ppc64.h"
99c513f6 139#include "elf/rl78.h"
c7927a3c 140#include "elf/rx.h"
a85d7ed0 141#include "elf/s390.h"
1c0d3aa6 142#include "elf/score.h"
3b16e843
NC
143#include "elf/sh.h"
144#include "elf/sparc.h"
e9f53129 145#include "elf/spu.h"
40b36596 146#include "elf/tic6x.h"
aa137e4d
NC
147#include "elf/tilegx.h"
148#include "elf/tilepro.h"
3b16e843 149#include "elf/v850.h"
179d3252 150#include "elf/vax.h"
619ed720 151#include "elf/visium.h"
3b16e843 152#include "elf/x86-64.h"
c29aca4a 153#include "elf/xc16x.h"
f6c1a2d5 154#include "elf/xgate.h"
93fbbb04 155#include "elf/xstormy16.h"
88da6820 156#include "elf/xtensa.h"
252b5132 157
252b5132 158#include "getopt.h"
566b0d53 159#include "libiberty.h"
09c11c86 160#include "safe-ctype.h"
2cf0635d 161#include "filenames.h"
252b5132 162
15b42fb0
AM
163#ifndef offsetof
164#define offsetof(TYPE, MEMBER) ((size_t) &(((TYPE *) 0)->MEMBER))
165#endif
166
6a40cf0c
NC
167typedef struct elf_section_list
168{
169 Elf_Internal_Shdr * hdr;
170 struct elf_section_list * next;
171} elf_section_list;
172
2cf0635d 173char * program_name = "readelf";
c9c1d674 174static unsigned long archive_file_offset;
85b1c36d 175static unsigned long archive_file_size;
f54498b4 176static bfd_size_type current_file_size;
85b1c36d
BE
177static unsigned long dynamic_addr;
178static bfd_size_type dynamic_size;
8b73c356 179static size_t dynamic_nent;
2cf0635d 180static char * dynamic_strings;
85b1c36d 181static unsigned long dynamic_strings_length;
2cf0635d 182static char * string_table;
85b1c36d
BE
183static unsigned long string_table_length;
184static unsigned long num_dynamic_syms;
2cf0635d
NC
185static Elf_Internal_Sym * dynamic_symbols;
186static Elf_Internal_Syminfo * dynamic_syminfo;
85b1c36d
BE
187static unsigned long dynamic_syminfo_offset;
188static unsigned int dynamic_syminfo_nent;
f8eae8b2 189static char program_interpreter[PATH_MAX];
bb8a0291 190static bfd_vma dynamic_info[DT_ENCODING];
fdc90cb4 191static bfd_vma dynamic_info_DT_GNU_HASH;
85b1c36d
BE
192static bfd_vma version_info[16];
193static Elf_Internal_Ehdr elf_header;
2cf0635d
NC
194static Elf_Internal_Shdr * section_headers;
195static Elf_Internal_Phdr * program_headers;
196static Elf_Internal_Dyn * dynamic_section;
6a40cf0c 197static elf_section_list * symtab_shndx_list;
85b1c36d
BE
198static int show_name;
199static int do_dynamic;
200static int do_syms;
2c610e4b 201static int do_dyn_syms;
85b1c36d
BE
202static int do_reloc;
203static int do_sections;
204static int do_section_groups;
5477e8a0 205static int do_section_details;
85b1c36d
BE
206static int do_segments;
207static int do_unwind;
208static int do_using_dynamic;
209static int do_header;
210static int do_dump;
211static int do_version;
85b1c36d
BE
212static int do_histogram;
213static int do_debugging;
85b1c36d
BE
214static int do_arch;
215static int do_notes;
4145f1d5 216static int do_archive_index;
85b1c36d 217static int is_32bit_elf;
0e602686 218static int decompress_dumps;
252b5132 219
e4b17d5c
L
220struct group_list
221{
2cf0635d 222 struct group_list * next;
e4b17d5c
L
223 unsigned int section_index;
224};
225
226struct group
227{
2cf0635d 228 struct group_list * root;
e4b17d5c
L
229 unsigned int group_index;
230};
231
85b1c36d 232static size_t group_count;
2cf0635d
NC
233static struct group * section_groups;
234static struct group ** section_headers_groups;
e4b17d5c 235
09c11c86
NC
236
237/* Flag bits indicating particular types of dump. */
238#define HEX_DUMP (1 << 0) /* The -x command line switch. */
239#define DISASS_DUMP (1 << 1) /* The -i command line switch. */
240#define DEBUG_DUMP (1 << 2) /* The -w command line switch. */
241#define STRING_DUMP (1 << 3) /* The -p command line switch. */
cf13d699 242#define RELOC_DUMP (1 << 4) /* The -R command line switch. */
09c11c86
NC
243
244typedef unsigned char dump_type;
245
246/* A linked list of the section names for which dumps were requested. */
aef1f6d0
DJ
247struct dump_list_entry
248{
2cf0635d 249 char * name;
09c11c86 250 dump_type type;
2cf0635d 251 struct dump_list_entry * next;
aef1f6d0 252};
2cf0635d 253static struct dump_list_entry * dump_sects_byname;
aef1f6d0 254
09c11c86
NC
255/* A dynamic array of flags indicating for which sections a dump
256 has been requested via command line switches. */
257static dump_type * cmdline_dump_sects = NULL;
258static unsigned int num_cmdline_dump_sects = 0;
18bd398b
NC
259
260/* A dynamic array of flags indicating for which sections a dump of
261 some kind has been requested. It is reset on a per-object file
aef1f6d0
DJ
262 basis and then initialised from the cmdline_dump_sects array,
263 the results of interpreting the -w switch, and the
264 dump_sects_byname list. */
09c11c86
NC
265static dump_type * dump_sects = NULL;
266static unsigned int num_dump_sects = 0;
252b5132 267
252b5132 268
c256ffe7 269/* How to print a vma value. */
843dd992
NC
270typedef enum print_mode
271{
272 HEX,
273 DEC,
274 DEC_5,
275 UNSIGNED,
276 PREFIX_HEX,
277 FULL_HEX,
278 LONG_HEX
279}
280print_mode;
281
bb4d2ac2
L
282/* Versioned symbol info. */
283enum versioned_symbol_info
284{
285 symbol_undefined,
286 symbol_hidden,
287 symbol_public
288};
289
290static const char *get_symbol_version_string
291 (FILE *file, int is_dynsym, const char *strtab,
292 unsigned long int strtab_size, unsigned int si,
293 Elf_Internal_Sym *psym, enum versioned_symbol_info *sym_info,
294 unsigned short *vna_other);
295
9c19a809
NC
296#define UNKNOWN -1
297
2b692964
NC
298#define SECTION_NAME(X) \
299 ((X) == NULL ? _("<none>") \
300 : string_table == NULL ? _("<no-name>") \
301 : ((X)->sh_name >= string_table_length ? _("<corrupt>") \
0b49d371 302 : string_table + (X)->sh_name))
252b5132 303
ee42cf8c 304#define DT_VERSIONTAGIDX(tag) (DT_VERNEEDNUM - (tag)) /* Reverse order! */
252b5132 305
ba5cdace
NC
306#define GET_ELF_SYMBOLS(file, section, sym_count) \
307 (is_32bit_elf ? get_32bit_elf_symbols (file, section, sym_count) \
308 : get_64bit_elf_symbols (file, section, sym_count))
9ea033b2 309
d79b3d50
NC
310#define VALID_DYNAMIC_NAME(offset) ((dynamic_strings != NULL) && (offset < dynamic_strings_length))
311/* GET_DYNAMIC_NAME asssumes that VALID_DYNAMIC_NAME has
312 already been called and verified that the string exists. */
313#define GET_DYNAMIC_NAME(offset) (dynamic_strings + offset)
18bd398b 314
61865e30
NC
315#define REMOVE_ARCH_BITS(ADDR) \
316 do \
317 { \
318 if (elf_header.e_machine == EM_ARM) \
319 (ADDR) &= ~1; \
320 } \
321 while (0)
d79b3d50 322\f
c9c1d674
EG
323/* Retrieve NMEMB structures, each SIZE bytes long from FILE starting at OFFSET +
324 the offset of the current archive member, if we are examining an archive.
59245841
NC
325 Put the retrieved data into VAR, if it is not NULL. Otherwise allocate a buffer
326 using malloc and fill that. In either case return the pointer to the start of
327 the retrieved data or NULL if something went wrong. If something does go wrong
c9c1d674
EG
328 and REASON is not NULL then emit an error message using REASON as part of the
329 context. */
59245841 330
c256ffe7 331static void *
57028622
NC
332get_data (void * var, FILE * file, unsigned long offset, bfd_size_type size,
333 bfd_size_type nmemb, const char * reason)
a6e9f9df 334{
2cf0635d 335 void * mvar;
57028622 336 bfd_size_type amt = size * nmemb;
a6e9f9df 337
c256ffe7 338 if (size == 0 || nmemb == 0)
a6e9f9df
AM
339 return NULL;
340
57028622
NC
341 /* If the size_t type is smaller than the bfd_size_type, eg because
342 you are building a 32-bit tool on a 64-bit host, then make sure
343 that when the sizes are cast to (size_t) no information is lost. */
344 if (sizeof (size_t) < sizeof (bfd_size_type)
345 && ( (bfd_size_type) ((size_t) size) != size
346 || (bfd_size_type) ((size_t) nmemb) != nmemb))
347 {
348 if (reason)
349 error (_("Size truncation prevents reading 0x%llx elements of size 0x%llx for %s\n"),
350 (unsigned long long) nmemb, (unsigned long long) size, reason);
351 return NULL;
352 }
353
354 /* Check for size overflow. */
355 if (amt < nmemb)
356 {
357 if (reason)
358 error (_("Size overflow prevents reading 0x%llx elements of size 0x%llx for %s\n"),
359 (unsigned long long) nmemb, (unsigned long long) size, reason);
360 return NULL;
361 }
362
c9c1d674
EG
363 /* Be kind to memory chekers (eg valgrind, address sanitizer) by not
364 attempting to allocate memory when the read is bound to fail. */
365 if (amt > current_file_size
366 || offset + archive_file_offset + amt > current_file_size)
a6e9f9df 367 {
049b0c3a 368 if (reason)
57028622
NC
369 error (_("Reading 0x%llx bytes extends past end of file for %s\n"),
370 (unsigned long long) amt, reason);
a6e9f9df
AM
371 return NULL;
372 }
373
c9c1d674 374 if (fseek (file, archive_file_offset + offset, SEEK_SET))
071436c6
NC
375 {
376 if (reason)
c9c1d674
EG
377 error (_("Unable to seek to 0x%lx for %s\n"),
378 (unsigned long) archive_file_offset + offset, reason);
071436c6
NC
379 return NULL;
380 }
381
a6e9f9df
AM
382 mvar = var;
383 if (mvar == NULL)
384 {
c256ffe7 385 /* Check for overflow. */
57028622 386 if (nmemb < (~(bfd_size_type) 0 - 1) / size)
c256ffe7 387 /* + 1 so that we can '\0' terminate invalid string table sections. */
57028622 388 mvar = malloc ((size_t) amt + 1);
a6e9f9df
AM
389
390 if (mvar == NULL)
391 {
049b0c3a 392 if (reason)
57028622
NC
393 error (_("Out of memory allocating 0x%llx bytes for %s\n"),
394 (unsigned long long) amt, reason);
a6e9f9df
AM
395 return NULL;
396 }
c256ffe7 397
c9c1d674 398 ((char *) mvar)[amt] = '\0';
a6e9f9df
AM
399 }
400
57028622 401 if (fread (mvar, (size_t) size, (size_t) nmemb, file) != nmemb)
a6e9f9df 402 {
049b0c3a 403 if (reason)
57028622
NC
404 error (_("Unable to read in 0x%llx bytes of %s\n"),
405 (unsigned long long) amt, reason);
a6e9f9df
AM
406 if (mvar != var)
407 free (mvar);
408 return NULL;
409 }
410
411 return mvar;
412}
413
14a91970 414/* Print a VMA value. */
cb8f3167 415
66543521 416static int
14a91970 417print_vma (bfd_vma vma, print_mode mode)
66543521 418{
66543521
AM
419 int nc = 0;
420
14a91970 421 switch (mode)
66543521 422 {
14a91970
AM
423 case FULL_HEX:
424 nc = printf ("0x");
425 /* Drop through. */
66543521 426
14a91970 427 case LONG_HEX:
f7a99963 428#ifdef BFD64
14a91970 429 if (is_32bit_elf)
437c2fb7 430 return nc + printf ("%8.8" BFD_VMA_FMT "x", vma);
f7a99963 431#endif
14a91970
AM
432 printf_vma (vma);
433 return nc + 16;
b19aac67 434
14a91970
AM
435 case DEC_5:
436 if (vma <= 99999)
437 return printf ("%5" BFD_VMA_FMT "d", vma);
438 /* Drop through. */
66543521 439
14a91970
AM
440 case PREFIX_HEX:
441 nc = printf ("0x");
442 /* Drop through. */
66543521 443
14a91970
AM
444 case HEX:
445 return nc + printf ("%" BFD_VMA_FMT "x", vma);
b19aac67 446
14a91970
AM
447 case DEC:
448 return printf ("%" BFD_VMA_FMT "d", vma);
b19aac67 449
14a91970
AM
450 case UNSIGNED:
451 return printf ("%" BFD_VMA_FMT "u", vma);
f7a99963 452 }
66543521 453 return 0;
f7a99963
NC
454}
455
7bfd842d 456/* Display a symbol on stdout. Handles the display of control characters and
3bfcb652 457 multibye characters (assuming the host environment supports them).
31104126 458
7bfd842d
NC
459 Display at most abs(WIDTH) characters, truncating as necessary, unless do_wide is true.
460
461 If WIDTH is negative then ensure that the output is at least (- WIDTH) characters,
462 padding as necessary.
171191ba
NC
463
464 Returns the number of emitted characters. */
465
466static unsigned int
7a88bc9c 467print_symbol (int width, const char *symbol)
31104126 468{
171191ba 469 bfd_boolean extra_padding = FALSE;
7bfd842d 470 int num_printed = 0;
3bfcb652 471#ifdef HAVE_MBSTATE_T
7bfd842d 472 mbstate_t state;
3bfcb652 473#endif
7bfd842d 474 int width_remaining;
961c521f 475
7bfd842d 476 if (width < 0)
961c521f 477 {
961c521f
NC
478 /* Keep the width positive. This also helps. */
479 width = - width;
171191ba 480 extra_padding = TRUE;
0b4362b0 481 }
74e1a04b 482 assert (width != 0);
961c521f 483
7bfd842d
NC
484 if (do_wide)
485 /* Set the remaining width to a very large value.
486 This simplifies the code below. */
487 width_remaining = INT_MAX;
488 else
489 width_remaining = width;
cb8f3167 490
3bfcb652 491#ifdef HAVE_MBSTATE_T
7bfd842d
NC
492 /* Initialise the multibyte conversion state. */
493 memset (& state, 0, sizeof (state));
3bfcb652 494#endif
961c521f 495
7bfd842d
NC
496 while (width_remaining)
497 {
498 size_t n;
7bfd842d 499 const char c = *symbol++;
961c521f 500
7bfd842d 501 if (c == 0)
961c521f
NC
502 break;
503
7bfd842d
NC
504 /* Do not print control characters directly as they can affect terminal
505 settings. Such characters usually appear in the names generated
506 by the assembler for local labels. */
507 if (ISCNTRL (c))
961c521f 508 {
7bfd842d 509 if (width_remaining < 2)
961c521f
NC
510 break;
511
7bfd842d
NC
512 printf ("^%c", c + 0x40);
513 width_remaining -= 2;
171191ba 514 num_printed += 2;
961c521f 515 }
7bfd842d
NC
516 else if (ISPRINT (c))
517 {
518 putchar (c);
519 width_remaining --;
520 num_printed ++;
521 }
961c521f
NC
522 else
523 {
3bfcb652
NC
524#ifdef HAVE_MBSTATE_T
525 wchar_t w;
526#endif
7bfd842d
NC
527 /* Let printf do the hard work of displaying multibyte characters. */
528 printf ("%.1s", symbol - 1);
529 width_remaining --;
530 num_printed ++;
531
3bfcb652 532#ifdef HAVE_MBSTATE_T
7bfd842d
NC
533 /* Try to find out how many bytes made up the character that was
534 just printed. Advance the symbol pointer past the bytes that
535 were displayed. */
536 n = mbrtowc (& w, symbol - 1, MB_CUR_MAX, & state);
3bfcb652
NC
537#else
538 n = 1;
539#endif
7bfd842d
NC
540 if (n != (size_t) -1 && n != (size_t) -2 && n > 0)
541 symbol += (n - 1);
961c521f 542 }
961c521f 543 }
171191ba 544
7bfd842d 545 if (extra_padding && num_printed < width)
171191ba
NC
546 {
547 /* Fill in the remaining spaces. */
7bfd842d
NC
548 printf ("%-*s", width - num_printed, " ");
549 num_printed = width;
171191ba
NC
550 }
551
552 return num_printed;
31104126
NC
553}
554
74e1a04b
NC
555/* Returns a pointer to a static buffer containing a printable version of
556 the given section's name. Like print_symbol, except that it does not try
557 to print multibyte characters, it just interprets them as hex values. */
558
559static const char *
0d2a7a93 560printable_section_name (const Elf_Internal_Shdr * sec)
74e1a04b
NC
561{
562#define MAX_PRINT_SEC_NAME_LEN 128
563 static char sec_name_buf [MAX_PRINT_SEC_NAME_LEN + 1];
564 const char * name = SECTION_NAME (sec);
565 char * buf = sec_name_buf;
566 char c;
567 unsigned int remaining = MAX_PRINT_SEC_NAME_LEN;
568
569 while ((c = * name ++) != 0)
570 {
571 if (ISCNTRL (c))
572 {
573 if (remaining < 2)
574 break;
948f632f 575
74e1a04b
NC
576 * buf ++ = '^';
577 * buf ++ = c + 0x40;
578 remaining -= 2;
579 }
580 else if (ISPRINT (c))
581 {
582 * buf ++ = c;
583 remaining -= 1;
584 }
585 else
586 {
587 static char hex[17] = "0123456789ABCDEF";
588
589 if (remaining < 4)
590 break;
591 * buf ++ = '<';
592 * buf ++ = hex[(c & 0xf0) >> 4];
593 * buf ++ = hex[c & 0x0f];
594 * buf ++ = '>';
595 remaining -= 4;
596 }
597
598 if (remaining == 0)
599 break;
600 }
601
602 * buf = 0;
603 return sec_name_buf;
604}
605
606static const char *
607printable_section_name_from_index (unsigned long ndx)
608{
609 if (ndx >= elf_header.e_shnum)
610 return _("<corrupt>");
611
612 return printable_section_name (section_headers + ndx);
613}
614
89fac5e3
RS
615/* Return a pointer to section NAME, or NULL if no such section exists. */
616
617static Elf_Internal_Shdr *
2cf0635d 618find_section (const char * name)
89fac5e3
RS
619{
620 unsigned int i;
621
622 for (i = 0; i < elf_header.e_shnum; i++)
623 if (streq (SECTION_NAME (section_headers + i), name))
624 return section_headers + i;
625
626 return NULL;
627}
628
0b6ae522
DJ
629/* Return a pointer to a section containing ADDR, or NULL if no such
630 section exists. */
631
632static Elf_Internal_Shdr *
633find_section_by_address (bfd_vma addr)
634{
635 unsigned int i;
636
637 for (i = 0; i < elf_header.e_shnum; i++)
638 {
639 Elf_Internal_Shdr *sec = section_headers + i;
640 if (addr >= sec->sh_addr && addr < sec->sh_addr + sec->sh_size)
641 return sec;
642 }
643
644 return NULL;
645}
646
071436c6
NC
647static Elf_Internal_Shdr *
648find_section_by_type (unsigned int type)
649{
650 unsigned int i;
651
652 for (i = 0; i < elf_header.e_shnum; i++)
653 {
654 Elf_Internal_Shdr *sec = section_headers + i;
655 if (sec->sh_type == type)
656 return sec;
657 }
658
659 return NULL;
660}
661
657d0d47
CC
662/* Return a pointer to section NAME, or NULL if no such section exists,
663 restricted to the list of sections given in SET. */
664
665static Elf_Internal_Shdr *
666find_section_in_set (const char * name, unsigned int * set)
667{
668 unsigned int i;
669
670 if (set != NULL)
671 {
672 while ((i = *set++) > 0)
673 if (streq (SECTION_NAME (section_headers + i), name))
674 return section_headers + i;
675 }
676
677 return find_section (name);
678}
679
0b6ae522
DJ
680/* Read an unsigned LEB128 encoded value from p. Set *PLEN to the number of
681 bytes read. */
682
f6f0e17b
NC
683static inline unsigned long
684read_uleb128 (unsigned char *data,
685 unsigned int *length_return,
686 const unsigned char * const end)
0b6ae522 687{
f6f0e17b 688 return read_leb128 (data, length_return, FALSE, end);
0b6ae522
DJ
689}
690
28f997cf
TG
691/* Return true if the current file is for IA-64 machine and OpenVMS ABI.
692 This OS has so many departures from the ELF standard that we test it at
693 many places. */
694
695static inline int
696is_ia64_vms (void)
697{
698 return elf_header.e_machine == EM_IA_64
699 && elf_header.e_ident[EI_OSABI] == ELFOSABI_OPENVMS;
700}
701
bcedfee6 702/* Guess the relocation size commonly used by the specific machines. */
252b5132 703
252b5132 704static int
2dc4cec1 705guess_is_rela (unsigned int e_machine)
252b5132 706{
9c19a809 707 switch (e_machine)
252b5132
RH
708 {
709 /* Targets that use REL relocations. */
252b5132 710 case EM_386:
22abe556 711 case EM_IAMCU:
63fcb9e9 712 case EM_960:
e9f53129 713 case EM_ARM:
2b0337b0 714 case EM_D10V:
252b5132 715 case EM_CYGNUS_D10V:
e9f53129 716 case EM_DLX:
252b5132 717 case EM_MIPS:
4fe85591 718 case EM_MIPS_RS3_LE:
e9f53129 719 case EM_CYGNUS_M32R:
1c0d3aa6 720 case EM_SCORE:
f6c1a2d5 721 case EM_XGATE:
9c19a809 722 return FALSE;
103f02d3 723
252b5132
RH
724 /* Targets that use RELA relocations. */
725 case EM_68K:
e9f53129 726 case EM_860:
a06ea964 727 case EM_AARCH64:
cfb8c092 728 case EM_ADAPTEVA_EPIPHANY:
e9f53129
AM
729 case EM_ALPHA:
730 case EM_ALTERA_NIOS2:
886a2506
NC
731 case EM_ARC:
732 case EM_ARC_COMPACT:
733 case EM_ARC_COMPACT2:
e9f53129
AM
734 case EM_AVR:
735 case EM_AVR_OLD:
736 case EM_BLACKFIN:
60bca95a 737 case EM_CR16:
e9f53129
AM
738 case EM_CRIS:
739 case EM_CRX:
2b0337b0 740 case EM_D30V:
252b5132 741 case EM_CYGNUS_D30V:
2b0337b0 742 case EM_FR30:
3f8107ab 743 case EM_FT32:
252b5132 744 case EM_CYGNUS_FR30:
5c70f934 745 case EM_CYGNUS_FRV:
e9f53129
AM
746 case EM_H8S:
747 case EM_H8_300:
748 case EM_H8_300H:
800eeca4 749 case EM_IA_64:
1e4cf259
NC
750 case EM_IP2K:
751 case EM_IP2K_OLD:
3b36097d 752 case EM_IQ2000:
84e94c90 753 case EM_LATTICEMICO32:
ff7eeb89 754 case EM_M32C_OLD:
49f58d10 755 case EM_M32C:
e9f53129
AM
756 case EM_M32R:
757 case EM_MCORE:
15ab5209 758 case EM_CYGNUS_MEP:
a3c62988 759 case EM_METAG:
e9f53129
AM
760 case EM_MMIX:
761 case EM_MN10200:
762 case EM_CYGNUS_MN10200:
763 case EM_MN10300:
764 case EM_CYGNUS_MN10300:
5506d11a 765 case EM_MOXIE:
e9f53129
AM
766 case EM_MSP430:
767 case EM_MSP430_OLD:
d031aafb 768 case EM_MT:
35c08157 769 case EM_NDS32:
64fd6348 770 case EM_NIOS32:
73589c9d 771 case EM_OR1K:
e9f53129
AM
772 case EM_PPC64:
773 case EM_PPC:
99c513f6 774 case EM_RL78:
c7927a3c 775 case EM_RX:
e9f53129
AM
776 case EM_S390:
777 case EM_S390_OLD:
778 case EM_SH:
779 case EM_SPARC:
780 case EM_SPARC32PLUS:
781 case EM_SPARCV9:
782 case EM_SPU:
40b36596 783 case EM_TI_C6000:
aa137e4d
NC
784 case EM_TILEGX:
785 case EM_TILEPRO:
708e2187 786 case EM_V800:
e9f53129
AM
787 case EM_V850:
788 case EM_CYGNUS_V850:
789 case EM_VAX:
619ed720 790 case EM_VISIUM:
e9f53129 791 case EM_X86_64:
8a9036a4 792 case EM_L1OM:
7a9068fe 793 case EM_K1OM:
e9f53129
AM
794 case EM_XSTORMY16:
795 case EM_XTENSA:
796 case EM_XTENSA_OLD:
7ba29e2a
NC
797 case EM_MICROBLAZE:
798 case EM_MICROBLAZE_OLD:
9c19a809 799 return TRUE;
103f02d3 800
e9f53129
AM
801 case EM_68HC05:
802 case EM_68HC08:
803 case EM_68HC11:
804 case EM_68HC16:
805 case EM_FX66:
806 case EM_ME16:
d1133906 807 case EM_MMA:
d1133906
NC
808 case EM_NCPU:
809 case EM_NDR1:
e9f53129 810 case EM_PCP:
d1133906 811 case EM_ST100:
e9f53129 812 case EM_ST19:
d1133906 813 case EM_ST7:
e9f53129
AM
814 case EM_ST9PLUS:
815 case EM_STARCORE:
d1133906 816 case EM_SVX:
e9f53129 817 case EM_TINYJ:
9c19a809
NC
818 default:
819 warn (_("Don't know about relocations on this machine architecture\n"));
820 return FALSE;
821 }
822}
252b5132 823
9c19a809 824static int
2cf0635d 825slurp_rela_relocs (FILE * file,
d3ba0551
AM
826 unsigned long rel_offset,
827 unsigned long rel_size,
2cf0635d
NC
828 Elf_Internal_Rela ** relasp,
829 unsigned long * nrelasp)
9c19a809 830{
2cf0635d 831 Elf_Internal_Rela * relas;
8b73c356 832 size_t nrelas;
4d6ed7c8 833 unsigned int i;
252b5132 834
4d6ed7c8
NC
835 if (is_32bit_elf)
836 {
2cf0635d 837 Elf32_External_Rela * erelas;
103f02d3 838
3f5e193b 839 erelas = (Elf32_External_Rela *) get_data (NULL, file, rel_offset, 1,
9cf03b7e 840 rel_size, _("32-bit relocation data"));
a6e9f9df
AM
841 if (!erelas)
842 return 0;
252b5132 843
4d6ed7c8 844 nrelas = rel_size / sizeof (Elf32_External_Rela);
103f02d3 845
3f5e193b
NC
846 relas = (Elf_Internal_Rela *) cmalloc (nrelas,
847 sizeof (Elf_Internal_Rela));
103f02d3 848
4d6ed7c8
NC
849 if (relas == NULL)
850 {
c256ffe7 851 free (erelas);
591a748a 852 error (_("out of memory parsing relocs\n"));
4d6ed7c8
NC
853 return 0;
854 }
103f02d3 855
4d6ed7c8
NC
856 for (i = 0; i < nrelas; i++)
857 {
858 relas[i].r_offset = BYTE_GET (erelas[i].r_offset);
859 relas[i].r_info = BYTE_GET (erelas[i].r_info);
598aaa76 860 relas[i].r_addend = BYTE_GET_SIGNED (erelas[i].r_addend);
4d6ed7c8 861 }
103f02d3 862
4d6ed7c8
NC
863 free (erelas);
864 }
865 else
866 {
2cf0635d 867 Elf64_External_Rela * erelas;
103f02d3 868
3f5e193b 869 erelas = (Elf64_External_Rela *) get_data (NULL, file, rel_offset, 1,
9cf03b7e 870 rel_size, _("64-bit relocation data"));
a6e9f9df
AM
871 if (!erelas)
872 return 0;
4d6ed7c8
NC
873
874 nrelas = rel_size / sizeof (Elf64_External_Rela);
103f02d3 875
3f5e193b
NC
876 relas = (Elf_Internal_Rela *) cmalloc (nrelas,
877 sizeof (Elf_Internal_Rela));
103f02d3 878
4d6ed7c8
NC
879 if (relas == NULL)
880 {
c256ffe7 881 free (erelas);
591a748a 882 error (_("out of memory parsing relocs\n"));
4d6ed7c8 883 return 0;
9c19a809 884 }
4d6ed7c8
NC
885
886 for (i = 0; i < nrelas; i++)
9c19a809 887 {
66543521
AM
888 relas[i].r_offset = BYTE_GET (erelas[i].r_offset);
889 relas[i].r_info = BYTE_GET (erelas[i].r_info);
598aaa76 890 relas[i].r_addend = BYTE_GET_SIGNED (erelas[i].r_addend);
861fb55a
DJ
891
892 /* The #ifdef BFD64 below is to prevent a compile time
893 warning. We know that if we do not have a 64 bit data
894 type that we will never execute this code anyway. */
895#ifdef BFD64
896 if (elf_header.e_machine == EM_MIPS
897 && elf_header.e_ident[EI_DATA] != ELFDATA2MSB)
898 {
899 /* In little-endian objects, r_info isn't really a
900 64-bit little-endian value: it has a 32-bit
901 little-endian symbol index followed by four
902 individual byte fields. Reorder INFO
903 accordingly. */
91d6fa6a
NC
904 bfd_vma inf = relas[i].r_info;
905 inf = (((inf & 0xffffffff) << 32)
906 | ((inf >> 56) & 0xff)
907 | ((inf >> 40) & 0xff00)
908 | ((inf >> 24) & 0xff0000)
909 | ((inf >> 8) & 0xff000000));
910 relas[i].r_info = inf;
861fb55a
DJ
911 }
912#endif /* BFD64 */
4d6ed7c8 913 }
103f02d3 914
4d6ed7c8
NC
915 free (erelas);
916 }
917 *relasp = relas;
918 *nrelasp = nrelas;
919 return 1;
920}
103f02d3 921
4d6ed7c8 922static int
2cf0635d 923slurp_rel_relocs (FILE * file,
d3ba0551
AM
924 unsigned long rel_offset,
925 unsigned long rel_size,
2cf0635d
NC
926 Elf_Internal_Rela ** relsp,
927 unsigned long * nrelsp)
4d6ed7c8 928{
2cf0635d 929 Elf_Internal_Rela * rels;
8b73c356 930 size_t nrels;
4d6ed7c8 931 unsigned int i;
103f02d3 932
4d6ed7c8
NC
933 if (is_32bit_elf)
934 {
2cf0635d 935 Elf32_External_Rel * erels;
103f02d3 936
3f5e193b 937 erels = (Elf32_External_Rel *) get_data (NULL, file, rel_offset, 1,
9cf03b7e 938 rel_size, _("32-bit relocation data"));
a6e9f9df
AM
939 if (!erels)
940 return 0;
103f02d3 941
4d6ed7c8 942 nrels = rel_size / sizeof (Elf32_External_Rel);
103f02d3 943
3f5e193b 944 rels = (Elf_Internal_Rela *) cmalloc (nrels, sizeof (Elf_Internal_Rela));
103f02d3 945
4d6ed7c8
NC
946 if (rels == NULL)
947 {
c256ffe7 948 free (erels);
591a748a 949 error (_("out of memory parsing relocs\n"));
4d6ed7c8
NC
950 return 0;
951 }
952
953 for (i = 0; i < nrels; i++)
954 {
955 rels[i].r_offset = BYTE_GET (erels[i].r_offset);
956 rels[i].r_info = BYTE_GET (erels[i].r_info);
c8286bd1 957 rels[i].r_addend = 0;
9ea033b2 958 }
4d6ed7c8
NC
959
960 free (erels);
9c19a809
NC
961 }
962 else
963 {
2cf0635d 964 Elf64_External_Rel * erels;
9ea033b2 965
3f5e193b 966 erels = (Elf64_External_Rel *) get_data (NULL, file, rel_offset, 1,
9cf03b7e 967 rel_size, _("64-bit relocation data"));
a6e9f9df
AM
968 if (!erels)
969 return 0;
103f02d3 970
4d6ed7c8 971 nrels = rel_size / sizeof (Elf64_External_Rel);
103f02d3 972
3f5e193b 973 rels = (Elf_Internal_Rela *) cmalloc (nrels, sizeof (Elf_Internal_Rela));
103f02d3 974
4d6ed7c8 975 if (rels == NULL)
9c19a809 976 {
c256ffe7 977 free (erels);
591a748a 978 error (_("out of memory parsing relocs\n"));
4d6ed7c8
NC
979 return 0;
980 }
103f02d3 981
4d6ed7c8
NC
982 for (i = 0; i < nrels; i++)
983 {
66543521
AM
984 rels[i].r_offset = BYTE_GET (erels[i].r_offset);
985 rels[i].r_info = BYTE_GET (erels[i].r_info);
c8286bd1 986 rels[i].r_addend = 0;
861fb55a
DJ
987
988 /* The #ifdef BFD64 below is to prevent a compile time
989 warning. We know that if we do not have a 64 bit data
990 type that we will never execute this code anyway. */
991#ifdef BFD64
992 if (elf_header.e_machine == EM_MIPS
993 && elf_header.e_ident[EI_DATA] != ELFDATA2MSB)
994 {
995 /* In little-endian objects, r_info isn't really a
996 64-bit little-endian value: it has a 32-bit
997 little-endian symbol index followed by four
998 individual byte fields. Reorder INFO
999 accordingly. */
91d6fa6a
NC
1000 bfd_vma inf = rels[i].r_info;
1001 inf = (((inf & 0xffffffff) << 32)
1002 | ((inf >> 56) & 0xff)
1003 | ((inf >> 40) & 0xff00)
1004 | ((inf >> 24) & 0xff0000)
1005 | ((inf >> 8) & 0xff000000));
1006 rels[i].r_info = inf;
861fb55a
DJ
1007 }
1008#endif /* BFD64 */
4d6ed7c8 1009 }
103f02d3 1010
4d6ed7c8
NC
1011 free (erels);
1012 }
1013 *relsp = rels;
1014 *nrelsp = nrels;
1015 return 1;
1016}
103f02d3 1017
aca88567
NC
1018/* Returns the reloc type extracted from the reloc info field. */
1019
1020static unsigned int
1021get_reloc_type (bfd_vma reloc_info)
1022{
1023 if (is_32bit_elf)
1024 return ELF32_R_TYPE (reloc_info);
1025
1026 switch (elf_header.e_machine)
1027 {
1028 case EM_MIPS:
1029 /* Note: We assume that reloc_info has already been adjusted for us. */
1030 return ELF64_MIPS_R_TYPE (reloc_info);
1031
1032 case EM_SPARCV9:
1033 return ELF64_R_TYPE_ID (reloc_info);
1034
1035 default:
1036 return ELF64_R_TYPE (reloc_info);
1037 }
1038}
1039
1040/* Return the symbol index extracted from the reloc info field. */
1041
1042static bfd_vma
1043get_reloc_symindex (bfd_vma reloc_info)
1044{
1045 return is_32bit_elf ? ELF32_R_SYM (reloc_info) : ELF64_R_SYM (reloc_info);
1046}
1047
13761a11
NC
1048static inline bfd_boolean
1049uses_msp430x_relocs (void)
1050{
1051 return
1052 elf_header.e_machine == EM_MSP430 /* Paranoia. */
1053 /* GCC uses osabi == ELFOSBI_STANDALONE. */
1054 && (((elf_header.e_flags & EF_MSP430_MACH) == E_MSP430_MACH_MSP430X)
1055 /* TI compiler uses ELFOSABI_NONE. */
1056 || (elf_header.e_ident[EI_OSABI] == ELFOSABI_NONE));
1057}
1058
d3ba0551
AM
1059/* Display the contents of the relocation data found at the specified
1060 offset. */
ee42cf8c 1061
41e92641 1062static void
2cf0635d 1063dump_relocations (FILE * file,
d3ba0551
AM
1064 unsigned long rel_offset,
1065 unsigned long rel_size,
2cf0635d 1066 Elf_Internal_Sym * symtab,
d3ba0551 1067 unsigned long nsyms,
2cf0635d 1068 char * strtab,
d79b3d50 1069 unsigned long strtablen,
bb4d2ac2
L
1070 int is_rela,
1071 int is_dynsym)
4d6ed7c8 1072{
b34976b6 1073 unsigned int i;
2cf0635d 1074 Elf_Internal_Rela * rels;
103f02d3 1075
4d6ed7c8
NC
1076 if (is_rela == UNKNOWN)
1077 is_rela = guess_is_rela (elf_header.e_machine);
103f02d3 1078
4d6ed7c8
NC
1079 if (is_rela)
1080 {
c8286bd1 1081 if (!slurp_rela_relocs (file, rel_offset, rel_size, &rels, &rel_size))
41e92641 1082 return;
4d6ed7c8
NC
1083 }
1084 else
1085 {
1086 if (!slurp_rel_relocs (file, rel_offset, rel_size, &rels, &rel_size))
41e92641 1087 return;
252b5132
RH
1088 }
1089
410f7a12
L
1090 if (is_32bit_elf)
1091 {
1092 if (is_rela)
2c71103e
NC
1093 {
1094 if (do_wide)
1095 printf (_(" Offset Info Type Sym. Value Symbol's Name + Addend\n"));
1096 else
1097 printf (_(" Offset Info Type Sym.Value Sym. Name + Addend\n"));
1098 }
410f7a12 1099 else
2c71103e
NC
1100 {
1101 if (do_wide)
1102 printf (_(" Offset Info Type Sym. Value Symbol's Name\n"));
1103 else
1104 printf (_(" Offset Info Type Sym.Value Sym. Name\n"));
1105 }
410f7a12 1106 }
252b5132 1107 else
410f7a12
L
1108 {
1109 if (is_rela)
2c71103e
NC
1110 {
1111 if (do_wide)
8beeaeb7 1112 printf (_(" Offset Info Type Symbol's Value Symbol's Name + Addend\n"));
2c71103e
NC
1113 else
1114 printf (_(" Offset Info Type Sym. Value Sym. Name + Addend\n"));
1115 }
410f7a12 1116 else
2c71103e
NC
1117 {
1118 if (do_wide)
8beeaeb7 1119 printf (_(" Offset Info Type Symbol's Value Symbol's Name\n"));
2c71103e
NC
1120 else
1121 printf (_(" Offset Info Type Sym. Value Sym. Name\n"));
1122 }
410f7a12 1123 }
252b5132
RH
1124
1125 for (i = 0; i < rel_size; i++)
1126 {
2cf0635d 1127 const char * rtype;
b34976b6 1128 bfd_vma offset;
91d6fa6a 1129 bfd_vma inf;
b34976b6
AM
1130 bfd_vma symtab_index;
1131 bfd_vma type;
103f02d3 1132
b34976b6 1133 offset = rels[i].r_offset;
91d6fa6a 1134 inf = rels[i].r_info;
103f02d3 1135
91d6fa6a
NC
1136 type = get_reloc_type (inf);
1137 symtab_index = get_reloc_symindex (inf);
252b5132 1138
410f7a12
L
1139 if (is_32bit_elf)
1140 {
39dbeff8
AM
1141 printf ("%8.8lx %8.8lx ",
1142 (unsigned long) offset & 0xffffffff,
91d6fa6a 1143 (unsigned long) inf & 0xffffffff);
410f7a12
L
1144 }
1145 else
1146 {
39dbeff8
AM
1147#if BFD_HOST_64BIT_LONG
1148 printf (do_wide
1149 ? "%16.16lx %16.16lx "
1150 : "%12.12lx %12.12lx ",
91d6fa6a 1151 offset, inf);
39dbeff8 1152#elif BFD_HOST_64BIT_LONG_LONG
6e3d6dc1 1153#ifndef __MSVCRT__
39dbeff8
AM
1154 printf (do_wide
1155 ? "%16.16llx %16.16llx "
1156 : "%12.12llx %12.12llx ",
91d6fa6a 1157 offset, inf);
6e3d6dc1
NC
1158#else
1159 printf (do_wide
1160 ? "%16.16I64x %16.16I64x "
1161 : "%12.12I64x %12.12I64x ",
91d6fa6a 1162 offset, inf);
6e3d6dc1 1163#endif
39dbeff8 1164#else
2c71103e
NC
1165 printf (do_wide
1166 ? "%8.8lx%8.8lx %8.8lx%8.8lx "
1167 : "%4.4lx%8.8lx %4.4lx%8.8lx ",
410f7a12
L
1168 _bfd_int64_high (offset),
1169 _bfd_int64_low (offset),
91d6fa6a
NC
1170 _bfd_int64_high (inf),
1171 _bfd_int64_low (inf));
9ea033b2 1172#endif
410f7a12 1173 }
103f02d3 1174
252b5132
RH
1175 switch (elf_header.e_machine)
1176 {
1177 default:
1178 rtype = NULL;
1179 break;
1180
a06ea964
NC
1181 case EM_AARCH64:
1182 rtype = elf_aarch64_reloc_type (type);
1183 break;
1184
2b0337b0 1185 case EM_M32R:
252b5132 1186 case EM_CYGNUS_M32R:
9ea033b2 1187 rtype = elf_m32r_reloc_type (type);
252b5132
RH
1188 break;
1189
1190 case EM_386:
22abe556 1191 case EM_IAMCU:
9ea033b2 1192 rtype = elf_i386_reloc_type (type);
252b5132
RH
1193 break;
1194
ba2685cc
AM
1195 case EM_68HC11:
1196 case EM_68HC12:
1197 rtype = elf_m68hc11_reloc_type (type);
1198 break;
75751cd9 1199
252b5132 1200 case EM_68K:
9ea033b2 1201 rtype = elf_m68k_reloc_type (type);
252b5132
RH
1202 break;
1203
63fcb9e9 1204 case EM_960:
9ea033b2 1205 rtype = elf_i960_reloc_type (type);
63fcb9e9
ILT
1206 break;
1207
adde6300 1208 case EM_AVR:
2b0337b0 1209 case EM_AVR_OLD:
adde6300
AM
1210 rtype = elf_avr_reloc_type (type);
1211 break;
1212
9ea033b2
NC
1213 case EM_OLD_SPARCV9:
1214 case EM_SPARC32PLUS:
1215 case EM_SPARCV9:
252b5132 1216 case EM_SPARC:
9ea033b2 1217 rtype = elf_sparc_reloc_type (type);
252b5132
RH
1218 break;
1219
e9f53129
AM
1220 case EM_SPU:
1221 rtype = elf_spu_reloc_type (type);
1222 break;
1223
708e2187
NC
1224 case EM_V800:
1225 rtype = v800_reloc_type (type);
1226 break;
2b0337b0 1227 case EM_V850:
252b5132 1228 case EM_CYGNUS_V850:
9ea033b2 1229 rtype = v850_reloc_type (type);
252b5132
RH
1230 break;
1231
2b0337b0 1232 case EM_D10V:
252b5132 1233 case EM_CYGNUS_D10V:
9ea033b2 1234 rtype = elf_d10v_reloc_type (type);
252b5132
RH
1235 break;
1236
2b0337b0 1237 case EM_D30V:
252b5132 1238 case EM_CYGNUS_D30V:
9ea033b2 1239 rtype = elf_d30v_reloc_type (type);
252b5132
RH
1240 break;
1241
d172d4ba
NC
1242 case EM_DLX:
1243 rtype = elf_dlx_reloc_type (type);
1244 break;
1245
252b5132 1246 case EM_SH:
9ea033b2 1247 rtype = elf_sh_reloc_type (type);
252b5132
RH
1248 break;
1249
2b0337b0 1250 case EM_MN10300:
252b5132 1251 case EM_CYGNUS_MN10300:
9ea033b2 1252 rtype = elf_mn10300_reloc_type (type);
252b5132
RH
1253 break;
1254
2b0337b0 1255 case EM_MN10200:
252b5132 1256 case EM_CYGNUS_MN10200:
9ea033b2 1257 rtype = elf_mn10200_reloc_type (type);
252b5132
RH
1258 break;
1259
2b0337b0 1260 case EM_FR30:
252b5132 1261 case EM_CYGNUS_FR30:
9ea033b2 1262 rtype = elf_fr30_reloc_type (type);
252b5132
RH
1263 break;
1264
ba2685cc
AM
1265 case EM_CYGNUS_FRV:
1266 rtype = elf_frv_reloc_type (type);
1267 break;
5c70f934 1268
3f8107ab
AM
1269 case EM_FT32:
1270 rtype = elf_ft32_reloc_type (type);
1271 break;
1272
252b5132 1273 case EM_MCORE:
9ea033b2 1274 rtype = elf_mcore_reloc_type (type);
252b5132
RH
1275 break;
1276
3c3bdf30
NC
1277 case EM_MMIX:
1278 rtype = elf_mmix_reloc_type (type);
1279 break;
1280
5506d11a
AM
1281 case EM_MOXIE:
1282 rtype = elf_moxie_reloc_type (type);
1283 break;
1284
2469cfa2 1285 case EM_MSP430:
13761a11
NC
1286 if (uses_msp430x_relocs ())
1287 {
1288 rtype = elf_msp430x_reloc_type (type);
1289 break;
1290 }
2469cfa2
NC
1291 case EM_MSP430_OLD:
1292 rtype = elf_msp430_reloc_type (type);
1293 break;
1294
35c08157
KLC
1295 case EM_NDS32:
1296 rtype = elf_nds32_reloc_type (type);
1297 break;
1298
252b5132 1299 case EM_PPC:
9ea033b2 1300 rtype = elf_ppc_reloc_type (type);
252b5132
RH
1301 break;
1302
c833c019
AM
1303 case EM_PPC64:
1304 rtype = elf_ppc64_reloc_type (type);
1305 break;
1306
252b5132 1307 case EM_MIPS:
4fe85591 1308 case EM_MIPS_RS3_LE:
9ea033b2 1309 rtype = elf_mips_reloc_type (type);
252b5132
RH
1310 break;
1311
1312 case EM_ALPHA:
9ea033b2 1313 rtype = elf_alpha_reloc_type (type);
252b5132
RH
1314 break;
1315
1316 case EM_ARM:
9ea033b2 1317 rtype = elf_arm_reloc_type (type);
252b5132
RH
1318 break;
1319
584da044 1320 case EM_ARC:
886a2506
NC
1321 case EM_ARC_COMPACT:
1322 case EM_ARC_COMPACT2:
9ea033b2 1323 rtype = elf_arc_reloc_type (type);
252b5132
RH
1324 break;
1325
1326 case EM_PARISC:
69e617ca 1327 rtype = elf_hppa_reloc_type (type);
252b5132 1328 break;
7d466069 1329
b8720f9d
JL
1330 case EM_H8_300:
1331 case EM_H8_300H:
1332 case EM_H8S:
1333 rtype = elf_h8_reloc_type (type);
1334 break;
1335
73589c9d
CS
1336 case EM_OR1K:
1337 rtype = elf_or1k_reloc_type (type);
3b16e843
NC
1338 break;
1339
7d466069 1340 case EM_PJ:
2b0337b0 1341 case EM_PJ_OLD:
7d466069
ILT
1342 rtype = elf_pj_reloc_type (type);
1343 break;
800eeca4
JW
1344 case EM_IA_64:
1345 rtype = elf_ia64_reloc_type (type);
1346 break;
1b61cf92
HPN
1347
1348 case EM_CRIS:
1349 rtype = elf_cris_reloc_type (type);
1350 break;
535c37ff
JE
1351
1352 case EM_860:
1353 rtype = elf_i860_reloc_type (type);
1354 break;
bcedfee6
NC
1355
1356 case EM_X86_64:
8a9036a4 1357 case EM_L1OM:
7a9068fe 1358 case EM_K1OM:
bcedfee6
NC
1359 rtype = elf_x86_64_reloc_type (type);
1360 break;
a85d7ed0 1361
35b1837e
AM
1362 case EM_S370:
1363 rtype = i370_reloc_type (type);
1364 break;
1365
53c7db4b
KH
1366 case EM_S390_OLD:
1367 case EM_S390:
1368 rtype = elf_s390_reloc_type (type);
1369 break;
93fbbb04 1370
1c0d3aa6
NC
1371 case EM_SCORE:
1372 rtype = elf_score_reloc_type (type);
1373 break;
1374
93fbbb04
GK
1375 case EM_XSTORMY16:
1376 rtype = elf_xstormy16_reloc_type (type);
1377 break;
179d3252 1378
1fe1f39c
NC
1379 case EM_CRX:
1380 rtype = elf_crx_reloc_type (type);
1381 break;
1382
179d3252
JT
1383 case EM_VAX:
1384 rtype = elf_vax_reloc_type (type);
1385 break;
1e4cf259 1386
619ed720
EB
1387 case EM_VISIUM:
1388 rtype = elf_visium_reloc_type (type);
1389 break;
1390
cfb8c092
NC
1391 case EM_ADAPTEVA_EPIPHANY:
1392 rtype = elf_epiphany_reloc_type (type);
1393 break;
1394
1e4cf259
NC
1395 case EM_IP2K:
1396 case EM_IP2K_OLD:
1397 rtype = elf_ip2k_reloc_type (type);
1398 break;
3b36097d
SC
1399
1400 case EM_IQ2000:
1401 rtype = elf_iq2000_reloc_type (type);
1402 break;
88da6820
NC
1403
1404 case EM_XTENSA_OLD:
1405 case EM_XTENSA:
1406 rtype = elf_xtensa_reloc_type (type);
1407 break;
a34e3ecb 1408
84e94c90
NC
1409 case EM_LATTICEMICO32:
1410 rtype = elf_lm32_reloc_type (type);
1411 break;
1412
ff7eeb89 1413 case EM_M32C_OLD:
49f58d10
JB
1414 case EM_M32C:
1415 rtype = elf_m32c_reloc_type (type);
1416 break;
1417
d031aafb
NS
1418 case EM_MT:
1419 rtype = elf_mt_reloc_type (type);
a34e3ecb 1420 break;
1d65ded4
CM
1421
1422 case EM_BLACKFIN:
1423 rtype = elf_bfin_reloc_type (type);
1424 break;
15ab5209
DB
1425
1426 case EM_CYGNUS_MEP:
1427 rtype = elf_mep_reloc_type (type);
1428 break;
60bca95a
NC
1429
1430 case EM_CR16:
1431 rtype = elf_cr16_reloc_type (type);
1432 break;
dd24e3da 1433
7ba29e2a
NC
1434 case EM_MICROBLAZE:
1435 case EM_MICROBLAZE_OLD:
1436 rtype = elf_microblaze_reloc_type (type);
1437 break;
c7927a3c 1438
99c513f6
DD
1439 case EM_RL78:
1440 rtype = elf_rl78_reloc_type (type);
1441 break;
1442
c7927a3c
NC
1443 case EM_RX:
1444 rtype = elf_rx_reloc_type (type);
1445 break;
c29aca4a 1446
a3c62988
NC
1447 case EM_METAG:
1448 rtype = elf_metag_reloc_type (type);
1449 break;
1450
c29aca4a
NC
1451 case EM_XC16X:
1452 case EM_C166:
1453 rtype = elf_xc16x_reloc_type (type);
1454 break;
40b36596
JM
1455
1456 case EM_TI_C6000:
1457 rtype = elf_tic6x_reloc_type (type);
1458 break;
aa137e4d
NC
1459
1460 case EM_TILEGX:
1461 rtype = elf_tilegx_reloc_type (type);
1462 break;
1463
1464 case EM_TILEPRO:
1465 rtype = elf_tilepro_reloc_type (type);
1466 break;
f6c1a2d5
NC
1467
1468 case EM_XGATE:
1469 rtype = elf_xgate_reloc_type (type);
1470 break;
36591ba1
SL
1471
1472 case EM_ALTERA_NIOS2:
1473 rtype = elf_nios2_reloc_type (type);
1474 break;
252b5132
RH
1475 }
1476
1477 if (rtype == NULL)
39dbeff8 1478 printf (_("unrecognized: %-7lx"), (unsigned long) type & 0xffffffff);
252b5132 1479 else
8beeaeb7 1480 printf (do_wide ? "%-22.22s" : "%-17.17s", rtype);
252b5132 1481
7ace3541 1482 if (elf_header.e_machine == EM_ALPHA
157c2599 1483 && rtype != NULL
7ace3541
RH
1484 && streq (rtype, "R_ALPHA_LITUSE")
1485 && is_rela)
1486 {
1487 switch (rels[i].r_addend)
1488 {
1489 case LITUSE_ALPHA_ADDR: rtype = "ADDR"; break;
1490 case LITUSE_ALPHA_BASE: rtype = "BASE"; break;
1491 case LITUSE_ALPHA_BYTOFF: rtype = "BYTOFF"; break;
1492 case LITUSE_ALPHA_JSR: rtype = "JSR"; break;
1493 case LITUSE_ALPHA_TLSGD: rtype = "TLSGD"; break;
1494 case LITUSE_ALPHA_TLSLDM: rtype = "TLSLDM"; break;
1495 case LITUSE_ALPHA_JSRDIRECT: rtype = "JSRDIRECT"; break;
1496 default: rtype = NULL;
1497 }
1498 if (rtype)
1499 printf (" (%s)", rtype);
1500 else
1501 {
1502 putchar (' ');
1503 printf (_("<unknown addend: %lx>"),
1504 (unsigned long) rels[i].r_addend);
1505 }
1506 }
1507 else if (symtab_index)
252b5132 1508 {
af3fc3bc 1509 if (symtab == NULL || symtab_index >= nsyms)
2b692964 1510 printf (_(" bad symbol index: %08lx"), (unsigned long) symtab_index);
af3fc3bc 1511 else
19936277 1512 {
2cf0635d 1513 Elf_Internal_Sym * psym;
bb4d2ac2
L
1514 const char * version_string;
1515 enum versioned_symbol_info sym_info;
1516 unsigned short vna_other;
19936277 1517
af3fc3bc 1518 psym = symtab + symtab_index;
103f02d3 1519
bb4d2ac2
L
1520 version_string
1521 = get_symbol_version_string (file, is_dynsym,
1522 strtab, strtablen,
1523 symtab_index,
1524 psym,
1525 &sym_info,
1526 &vna_other);
1527
af3fc3bc 1528 printf (" ");
171191ba 1529
d8045f23
NC
1530 if (ELF_ST_TYPE (psym->st_info) == STT_GNU_IFUNC)
1531 {
1532 const char * name;
1533 unsigned int len;
1534 unsigned int width = is_32bit_elf ? 8 : 14;
1535
1536 /* Relocations against GNU_IFUNC symbols do not use the value
1537 of the symbol as the address to relocate against. Instead
1538 they invoke the function named by the symbol and use its
1539 result as the address for relocation.
1540
1541 To indicate this to the user, do not display the value of
1542 the symbol in the "Symbols's Value" field. Instead show
1543 its name followed by () as a hint that the symbol is
1544 invoked. */
1545
1546 if (strtab == NULL
1547 || psym->st_name == 0
1548 || psym->st_name >= strtablen)
1549 name = "??";
1550 else
1551 name = strtab + psym->st_name;
1552
1553 len = print_symbol (width, name);
bb4d2ac2
L
1554 if (version_string)
1555 printf (sym_info == symbol_public ? "@@%s" : "@%s",
1556 version_string);
d8045f23
NC
1557 printf ("()%-*s", len <= width ? (width + 1) - len : 1, " ");
1558 }
1559 else
1560 {
1561 print_vma (psym->st_value, LONG_HEX);
171191ba 1562
d8045f23
NC
1563 printf (is_32bit_elf ? " " : " ");
1564 }
103f02d3 1565
af3fc3bc 1566 if (psym->st_name == 0)
f1ef08cb 1567 {
2cf0635d 1568 const char * sec_name = "<null>";
f1ef08cb
AM
1569 char name_buf[40];
1570
1571 if (ELF_ST_TYPE (psym->st_info) == STT_SECTION)
1572 {
4fbb74a6 1573 if (psym->st_shndx < elf_header.e_shnum)
74e1a04b 1574 sec_name = SECTION_NAME (section_headers + psym->st_shndx);
f1ef08cb
AM
1575 else if (psym->st_shndx == SHN_ABS)
1576 sec_name = "ABS";
1577 else if (psym->st_shndx == SHN_COMMON)
1578 sec_name = "COMMON";
ac145307
BS
1579 else if ((elf_header.e_machine == EM_MIPS
1580 && psym->st_shndx == SHN_MIPS_SCOMMON)
1581 || (elf_header.e_machine == EM_TI_C6000
1582 && psym->st_shndx == SHN_TIC6X_SCOMMON))
172553c7
TS
1583 sec_name = "SCOMMON";
1584 else if (elf_header.e_machine == EM_MIPS
1585 && psym->st_shndx == SHN_MIPS_SUNDEFINED)
1586 sec_name = "SUNDEF";
8a9036a4 1587 else if ((elf_header.e_machine == EM_X86_64
7a9068fe
L
1588 || elf_header.e_machine == EM_L1OM
1589 || elf_header.e_machine == EM_K1OM)
3b22753a
L
1590 && psym->st_shndx == SHN_X86_64_LCOMMON)
1591 sec_name = "LARGE_COMMON";
9ce701e2
L
1592 else if (elf_header.e_machine == EM_IA_64
1593 && elf_header.e_ident[EI_OSABI] == ELFOSABI_HPUX
1594 && psym->st_shndx == SHN_IA_64_ANSI_COMMON)
1595 sec_name = "ANSI_COM";
28f997cf 1596 else if (is_ia64_vms ()
148b93f2
NC
1597 && psym->st_shndx == SHN_IA_64_VMS_SYMVEC)
1598 sec_name = "VMS_SYMVEC";
f1ef08cb
AM
1599 else
1600 {
1601 sprintf (name_buf, "<section 0x%x>",
1602 (unsigned int) psym->st_shndx);
1603 sec_name = name_buf;
1604 }
1605 }
1606 print_symbol (22, sec_name);
1607 }
af3fc3bc 1608 else if (strtab == NULL)
d79b3d50 1609 printf (_("<string table index: %3ld>"), psym->st_name);
c256ffe7 1610 else if (psym->st_name >= strtablen)
d79b3d50 1611 printf (_("<corrupt string table index: %3ld>"), psym->st_name);
af3fc3bc 1612 else
bb4d2ac2
L
1613 {
1614 print_symbol (22, strtab + psym->st_name);
1615 if (version_string)
1616 printf (sym_info == symbol_public ? "@@%s" : "@%s",
1617 version_string);
1618 }
103f02d3 1619
af3fc3bc 1620 if (is_rela)
171191ba 1621 {
7360e63f 1622 bfd_vma off = rels[i].r_addend;
171191ba 1623
7360e63f 1624 if ((bfd_signed_vma) off < 0)
598aaa76 1625 printf (" - %" BFD_VMA_FMT "x", - off);
171191ba 1626 else
598aaa76 1627 printf (" + %" BFD_VMA_FMT "x", off);
171191ba 1628 }
19936277 1629 }
252b5132 1630 }
1b228002 1631 else if (is_rela)
f7a99963 1632 {
7360e63f 1633 bfd_vma off = rels[i].r_addend;
e04d7088
L
1634
1635 printf ("%*c", is_32bit_elf ? 12 : 20, ' ');
7360e63f 1636 if ((bfd_signed_vma) off < 0)
e04d7088
L
1637 printf ("-%" BFD_VMA_FMT "x", - off);
1638 else
1639 printf ("%" BFD_VMA_FMT "x", off);
f7a99963 1640 }
252b5132 1641
157c2599
NC
1642 if (elf_header.e_machine == EM_SPARCV9
1643 && rtype != NULL
1644 && streq (rtype, "R_SPARC_OLO10"))
91d6fa6a 1645 printf (" + %lx", (unsigned long) ELF64_R_TYPE_DATA (inf));
351b4b40 1646
252b5132 1647 putchar ('\n');
2c71103e 1648
aca88567 1649#ifdef BFD64
53c7db4b 1650 if (! is_32bit_elf && elf_header.e_machine == EM_MIPS)
2c71103e 1651 {
91d6fa6a
NC
1652 bfd_vma type2 = ELF64_MIPS_R_TYPE2 (inf);
1653 bfd_vma type3 = ELF64_MIPS_R_TYPE3 (inf);
2cf0635d
NC
1654 const char * rtype2 = elf_mips_reloc_type (type2);
1655 const char * rtype3 = elf_mips_reloc_type (type3);
aca88567 1656
2c71103e
NC
1657 printf (" Type2: ");
1658
1659 if (rtype2 == NULL)
39dbeff8
AM
1660 printf (_("unrecognized: %-7lx"),
1661 (unsigned long) type2 & 0xffffffff);
2c71103e
NC
1662 else
1663 printf ("%-17.17s", rtype2);
1664
18bd398b 1665 printf ("\n Type3: ");
2c71103e
NC
1666
1667 if (rtype3 == NULL)
39dbeff8
AM
1668 printf (_("unrecognized: %-7lx"),
1669 (unsigned long) type3 & 0xffffffff);
2c71103e
NC
1670 else
1671 printf ("%-17.17s", rtype3);
1672
53c7db4b 1673 putchar ('\n');
2c71103e 1674 }
aca88567 1675#endif /* BFD64 */
252b5132
RH
1676 }
1677
c8286bd1 1678 free (rels);
252b5132
RH
1679}
1680
1681static const char *
d3ba0551 1682get_mips_dynamic_type (unsigned long type)
252b5132
RH
1683{
1684 switch (type)
1685 {
1686 case DT_MIPS_RLD_VERSION: return "MIPS_RLD_VERSION";
1687 case DT_MIPS_TIME_STAMP: return "MIPS_TIME_STAMP";
1688 case DT_MIPS_ICHECKSUM: return "MIPS_ICHECKSUM";
1689 case DT_MIPS_IVERSION: return "MIPS_IVERSION";
1690 case DT_MIPS_FLAGS: return "MIPS_FLAGS";
1691 case DT_MIPS_BASE_ADDRESS: return "MIPS_BASE_ADDRESS";
1692 case DT_MIPS_MSYM: return "MIPS_MSYM";
1693 case DT_MIPS_CONFLICT: return "MIPS_CONFLICT";
1694 case DT_MIPS_LIBLIST: return "MIPS_LIBLIST";
1695 case DT_MIPS_LOCAL_GOTNO: return "MIPS_LOCAL_GOTNO";
1696 case DT_MIPS_CONFLICTNO: return "MIPS_CONFLICTNO";
1697 case DT_MIPS_LIBLISTNO: return "MIPS_LIBLISTNO";
1698 case DT_MIPS_SYMTABNO: return "MIPS_SYMTABNO";
1699 case DT_MIPS_UNREFEXTNO: return "MIPS_UNREFEXTNO";
1700 case DT_MIPS_GOTSYM: return "MIPS_GOTSYM";
1701 case DT_MIPS_HIPAGENO: return "MIPS_HIPAGENO";
1702 case DT_MIPS_RLD_MAP: return "MIPS_RLD_MAP";
a5499fa4 1703 case DT_MIPS_RLD_MAP_REL: return "MIPS_RLD_MAP_REL";
252b5132
RH
1704 case DT_MIPS_DELTA_CLASS: return "MIPS_DELTA_CLASS";
1705 case DT_MIPS_DELTA_CLASS_NO: return "MIPS_DELTA_CLASS_NO";
1706 case DT_MIPS_DELTA_INSTANCE: return "MIPS_DELTA_INSTANCE";
1707 case DT_MIPS_DELTA_INSTANCE_NO: return "MIPS_DELTA_INSTANCE_NO";
1708 case DT_MIPS_DELTA_RELOC: return "MIPS_DELTA_RELOC";
1709 case DT_MIPS_DELTA_RELOC_NO: return "MIPS_DELTA_RELOC_NO";
1710 case DT_MIPS_DELTA_SYM: return "MIPS_DELTA_SYM";
1711 case DT_MIPS_DELTA_SYM_NO: return "MIPS_DELTA_SYM_NO";
1712 case DT_MIPS_DELTA_CLASSSYM: return "MIPS_DELTA_CLASSSYM";
1713 case DT_MIPS_DELTA_CLASSSYM_NO: return "MIPS_DELTA_CLASSSYM_NO";
1714 case DT_MIPS_CXX_FLAGS: return "MIPS_CXX_FLAGS";
1715 case DT_MIPS_PIXIE_INIT: return "MIPS_PIXIE_INIT";
1716 case DT_MIPS_SYMBOL_LIB: return "MIPS_SYMBOL_LIB";
1717 case DT_MIPS_LOCALPAGE_GOTIDX: return "MIPS_LOCALPAGE_GOTIDX";
1718 case DT_MIPS_LOCAL_GOTIDX: return "MIPS_LOCAL_GOTIDX";
1719 case DT_MIPS_HIDDEN_GOTIDX: return "MIPS_HIDDEN_GOTIDX";
1720 case DT_MIPS_PROTECTED_GOTIDX: return "MIPS_PROTECTED_GOTIDX";
1721 case DT_MIPS_OPTIONS: return "MIPS_OPTIONS";
1722 case DT_MIPS_INTERFACE: return "MIPS_INTERFACE";
1723 case DT_MIPS_DYNSTR_ALIGN: return "MIPS_DYNSTR_ALIGN";
1724 case DT_MIPS_INTERFACE_SIZE: return "MIPS_INTERFACE_SIZE";
1725 case DT_MIPS_RLD_TEXT_RESOLVE_ADDR: return "MIPS_RLD_TEXT_RESOLVE_ADDR";
1726 case DT_MIPS_PERF_SUFFIX: return "MIPS_PERF_SUFFIX";
1727 case DT_MIPS_COMPACT_SIZE: return "MIPS_COMPACT_SIZE";
1728 case DT_MIPS_GP_VALUE: return "MIPS_GP_VALUE";
1729 case DT_MIPS_AUX_DYNAMIC: return "MIPS_AUX_DYNAMIC";
861fb55a
DJ
1730 case DT_MIPS_PLTGOT: return "MIPS_PLTGOT";
1731 case DT_MIPS_RWPLT: return "MIPS_RWPLT";
252b5132
RH
1732 default:
1733 return NULL;
1734 }
1735}
1736
9a097730 1737static const char *
d3ba0551 1738get_sparc64_dynamic_type (unsigned long type)
9a097730
RH
1739{
1740 switch (type)
1741 {
1742 case DT_SPARC_REGISTER: return "SPARC_REGISTER";
1743 default:
1744 return NULL;
1745 }
103f02d3
UD
1746}
1747
7490d522
AM
1748static const char *
1749get_ppc_dynamic_type (unsigned long type)
1750{
1751 switch (type)
1752 {
a7f2871e 1753 case DT_PPC_GOT: return "PPC_GOT";
e8910a83 1754 case DT_PPC_OPT: return "PPC_OPT";
7490d522
AM
1755 default:
1756 return NULL;
1757 }
1758}
1759
f1cb7e17 1760static const char *
d3ba0551 1761get_ppc64_dynamic_type (unsigned long type)
f1cb7e17
AM
1762{
1763 switch (type)
1764 {
a7f2871e
AM
1765 case DT_PPC64_GLINK: return "PPC64_GLINK";
1766 case DT_PPC64_OPD: return "PPC64_OPD";
1767 case DT_PPC64_OPDSZ: return "PPC64_OPDSZ";
e8910a83 1768 case DT_PPC64_OPT: return "PPC64_OPT";
f1cb7e17
AM
1769 default:
1770 return NULL;
1771 }
1772}
1773
103f02d3 1774static const char *
d3ba0551 1775get_parisc_dynamic_type (unsigned long type)
103f02d3
UD
1776{
1777 switch (type)
1778 {
1779 case DT_HP_LOAD_MAP: return "HP_LOAD_MAP";
1780 case DT_HP_DLD_FLAGS: return "HP_DLD_FLAGS";
1781 case DT_HP_DLD_HOOK: return "HP_DLD_HOOK";
1782 case DT_HP_UX10_INIT: return "HP_UX10_INIT";
1783 case DT_HP_UX10_INITSZ: return "HP_UX10_INITSZ";
1784 case DT_HP_PREINIT: return "HP_PREINIT";
1785 case DT_HP_PREINITSZ: return "HP_PREINITSZ";
1786 case DT_HP_NEEDED: return "HP_NEEDED";
1787 case DT_HP_TIME_STAMP: return "HP_TIME_STAMP";
1788 case DT_HP_CHECKSUM: return "HP_CHECKSUM";
1789 case DT_HP_GST_SIZE: return "HP_GST_SIZE";
1790 case DT_HP_GST_VERSION: return "HP_GST_VERSION";
1791 case DT_HP_GST_HASHVAL: return "HP_GST_HASHVAL";
eec8f817
DA
1792 case DT_HP_EPLTREL: return "HP_GST_EPLTREL";
1793 case DT_HP_EPLTRELSZ: return "HP_GST_EPLTRELSZ";
1794 case DT_HP_FILTERED: return "HP_FILTERED";
1795 case DT_HP_FILTER_TLS: return "HP_FILTER_TLS";
1796 case DT_HP_COMPAT_FILTERED: return "HP_COMPAT_FILTERED";
1797 case DT_HP_LAZYLOAD: return "HP_LAZYLOAD";
1798 case DT_HP_BIND_NOW_COUNT: return "HP_BIND_NOW_COUNT";
1799 case DT_PLT: return "PLT";
1800 case DT_PLT_SIZE: return "PLT_SIZE";
1801 case DT_DLT: return "DLT";
1802 case DT_DLT_SIZE: return "DLT_SIZE";
103f02d3
UD
1803 default:
1804 return NULL;
1805 }
1806}
9a097730 1807
ecc51f48 1808static const char *
d3ba0551 1809get_ia64_dynamic_type (unsigned long type)
ecc51f48
NC
1810{
1811 switch (type)
1812 {
148b93f2
NC
1813 case DT_IA_64_PLT_RESERVE: return "IA_64_PLT_RESERVE";
1814 case DT_IA_64_VMS_SUBTYPE: return "VMS_SUBTYPE";
1815 case DT_IA_64_VMS_IMGIOCNT: return "VMS_IMGIOCNT";
1816 case DT_IA_64_VMS_LNKFLAGS: return "VMS_LNKFLAGS";
1817 case DT_IA_64_VMS_VIR_MEM_BLK_SIZ: return "VMS_VIR_MEM_BLK_SIZ";
1818 case DT_IA_64_VMS_IDENT: return "VMS_IDENT";
1819 case DT_IA_64_VMS_NEEDED_IDENT: return "VMS_NEEDED_IDENT";
1820 case DT_IA_64_VMS_IMG_RELA_CNT: return "VMS_IMG_RELA_CNT";
1821 case DT_IA_64_VMS_SEG_RELA_CNT: return "VMS_SEG_RELA_CNT";
1822 case DT_IA_64_VMS_FIXUP_RELA_CNT: return "VMS_FIXUP_RELA_CNT";
1823 case DT_IA_64_VMS_FIXUP_NEEDED: return "VMS_FIXUP_NEEDED";
1824 case DT_IA_64_VMS_SYMVEC_CNT: return "VMS_SYMVEC_CNT";
1825 case DT_IA_64_VMS_XLATED: return "VMS_XLATED";
1826 case DT_IA_64_VMS_STACKSIZE: return "VMS_STACKSIZE";
1827 case DT_IA_64_VMS_UNWINDSZ: return "VMS_UNWINDSZ";
1828 case DT_IA_64_VMS_UNWIND_CODSEG: return "VMS_UNWIND_CODSEG";
1829 case DT_IA_64_VMS_UNWIND_INFOSEG: return "VMS_UNWIND_INFOSEG";
1830 case DT_IA_64_VMS_LINKTIME: return "VMS_LINKTIME";
1831 case DT_IA_64_VMS_SEG_NO: return "VMS_SEG_NO";
1832 case DT_IA_64_VMS_SYMVEC_OFFSET: return "VMS_SYMVEC_OFFSET";
1833 case DT_IA_64_VMS_SYMVEC_SEG: return "VMS_SYMVEC_SEG";
1834 case DT_IA_64_VMS_UNWIND_OFFSET: return "VMS_UNWIND_OFFSET";
1835 case DT_IA_64_VMS_UNWIND_SEG: return "VMS_UNWIND_SEG";
1836 case DT_IA_64_VMS_STRTAB_OFFSET: return "VMS_STRTAB_OFFSET";
1837 case DT_IA_64_VMS_SYSVER_OFFSET: return "VMS_SYSVER_OFFSET";
1838 case DT_IA_64_VMS_IMG_RELA_OFF: return "VMS_IMG_RELA_OFF";
1839 case DT_IA_64_VMS_SEG_RELA_OFF: return "VMS_SEG_RELA_OFF";
1840 case DT_IA_64_VMS_FIXUP_RELA_OFF: return "VMS_FIXUP_RELA_OFF";
1841 case DT_IA_64_VMS_PLTGOT_OFFSET: return "VMS_PLTGOT_OFFSET";
1842 case DT_IA_64_VMS_PLTGOT_SEG: return "VMS_PLTGOT_SEG";
1843 case DT_IA_64_VMS_FPMODE: return "VMS_FPMODE";
ecc51f48
NC
1844 default:
1845 return NULL;
1846 }
1847}
1848
fabcb361
RH
1849static const char *
1850get_alpha_dynamic_type (unsigned long type)
1851{
1852 switch (type)
1853 {
1854 case DT_ALPHA_PLTRO: return "ALPHA_PLTRO";
1855 default:
1856 return NULL;
1857 }
1858}
1859
1c0d3aa6
NC
1860static const char *
1861get_score_dynamic_type (unsigned long type)
1862{
1863 switch (type)
1864 {
1865 case DT_SCORE_BASE_ADDRESS: return "SCORE_BASE_ADDRESS";
1866 case DT_SCORE_LOCAL_GOTNO: return "SCORE_LOCAL_GOTNO";
1867 case DT_SCORE_SYMTABNO: return "SCORE_SYMTABNO";
1868 case DT_SCORE_GOTSYM: return "SCORE_GOTSYM";
1869 case DT_SCORE_UNREFEXTNO: return "SCORE_UNREFEXTNO";
1870 case DT_SCORE_HIPAGENO: return "SCORE_HIPAGENO";
1871 default:
1872 return NULL;
1873 }
1874}
1875
40b36596
JM
1876static const char *
1877get_tic6x_dynamic_type (unsigned long type)
1878{
1879 switch (type)
1880 {
1881 case DT_C6000_GSYM_OFFSET: return "C6000_GSYM_OFFSET";
1882 case DT_C6000_GSTR_OFFSET: return "C6000_GSTR_OFFSET";
1883 case DT_C6000_DSBT_BASE: return "C6000_DSBT_BASE";
1884 case DT_C6000_DSBT_SIZE: return "C6000_DSBT_SIZE";
1885 case DT_C6000_PREEMPTMAP: return "C6000_PREEMPTMAP";
1886 case DT_C6000_DSBT_INDEX: return "C6000_DSBT_INDEX";
1887 default:
1888 return NULL;
1889 }
1890}
1c0d3aa6 1891
36591ba1
SL
1892static const char *
1893get_nios2_dynamic_type (unsigned long type)
1894{
1895 switch (type)
1896 {
1897 case DT_NIOS2_GP: return "NIOS2_GP";
1898 default:
1899 return NULL;
1900 }
1901}
1902
252b5132 1903static const char *
d3ba0551 1904get_dynamic_type (unsigned long type)
252b5132 1905{
e9e44622 1906 static char buff[64];
252b5132
RH
1907
1908 switch (type)
1909 {
1910 case DT_NULL: return "NULL";
1911 case DT_NEEDED: return "NEEDED";
1912 case DT_PLTRELSZ: return "PLTRELSZ";
1913 case DT_PLTGOT: return "PLTGOT";
1914 case DT_HASH: return "HASH";
1915 case DT_STRTAB: return "STRTAB";
1916 case DT_SYMTAB: return "SYMTAB";
1917 case DT_RELA: return "RELA";
1918 case DT_RELASZ: return "RELASZ";
1919 case DT_RELAENT: return "RELAENT";
1920 case DT_STRSZ: return "STRSZ";
1921 case DT_SYMENT: return "SYMENT";
1922 case DT_INIT: return "INIT";
1923 case DT_FINI: return "FINI";
1924 case DT_SONAME: return "SONAME";
1925 case DT_RPATH: return "RPATH";
1926 case DT_SYMBOLIC: return "SYMBOLIC";
1927 case DT_REL: return "REL";
1928 case DT_RELSZ: return "RELSZ";
1929 case DT_RELENT: return "RELENT";
1930 case DT_PLTREL: return "PLTREL";
1931 case DT_DEBUG: return "DEBUG";
1932 case DT_TEXTREL: return "TEXTREL";
1933 case DT_JMPREL: return "JMPREL";
1934 case DT_BIND_NOW: return "BIND_NOW";
1935 case DT_INIT_ARRAY: return "INIT_ARRAY";
1936 case DT_FINI_ARRAY: return "FINI_ARRAY";
1937 case DT_INIT_ARRAYSZ: return "INIT_ARRAYSZ";
1938 case DT_FINI_ARRAYSZ: return "FINI_ARRAYSZ";
d1133906
NC
1939 case DT_RUNPATH: return "RUNPATH";
1940 case DT_FLAGS: return "FLAGS";
2d0e6f43 1941
d1133906
NC
1942 case DT_PREINIT_ARRAY: return "PREINIT_ARRAY";
1943 case DT_PREINIT_ARRAYSZ: return "PREINIT_ARRAYSZ";
103f02d3 1944
05107a46 1945 case DT_CHECKSUM: return "CHECKSUM";
252b5132
RH
1946 case DT_PLTPADSZ: return "PLTPADSZ";
1947 case DT_MOVEENT: return "MOVEENT";
1948 case DT_MOVESZ: return "MOVESZ";
dcefbbbd 1949 case DT_FEATURE: return "FEATURE";
252b5132
RH
1950 case DT_POSFLAG_1: return "POSFLAG_1";
1951 case DT_SYMINSZ: return "SYMINSZ";
1952 case DT_SYMINENT: return "SYMINENT"; /* aka VALRNGHI */
103f02d3 1953
252b5132 1954 case DT_ADDRRNGLO: return "ADDRRNGLO";
dcefbbbd
L
1955 case DT_CONFIG: return "CONFIG";
1956 case DT_DEPAUDIT: return "DEPAUDIT";
1957 case DT_AUDIT: return "AUDIT";
1958 case DT_PLTPAD: return "PLTPAD";
1959 case DT_MOVETAB: return "MOVETAB";
252b5132 1960 case DT_SYMINFO: return "SYMINFO"; /* aka ADDRRNGHI */
103f02d3 1961
252b5132 1962 case DT_VERSYM: return "VERSYM";
103f02d3 1963
67a4f2b7
AO
1964 case DT_TLSDESC_GOT: return "TLSDESC_GOT";
1965 case DT_TLSDESC_PLT: return "TLSDESC_PLT";
252b5132
RH
1966 case DT_RELACOUNT: return "RELACOUNT";
1967 case DT_RELCOUNT: return "RELCOUNT";
1968 case DT_FLAGS_1: return "FLAGS_1";
1969 case DT_VERDEF: return "VERDEF";
1970 case DT_VERDEFNUM: return "VERDEFNUM";
1971 case DT_VERNEED: return "VERNEED";
1972 case DT_VERNEEDNUM: return "VERNEEDNUM";
103f02d3 1973
019148e4 1974 case DT_AUXILIARY: return "AUXILIARY";
252b5132
RH
1975 case DT_USED: return "USED";
1976 case DT_FILTER: return "FILTER";
103f02d3 1977
047b2264
JJ
1978 case DT_GNU_PRELINKED: return "GNU_PRELINKED";
1979 case DT_GNU_CONFLICT: return "GNU_CONFLICT";
1980 case DT_GNU_CONFLICTSZ: return "GNU_CONFLICTSZ";
1981 case DT_GNU_LIBLIST: return "GNU_LIBLIST";
1982 case DT_GNU_LIBLISTSZ: return "GNU_LIBLISTSZ";
fdc90cb4 1983 case DT_GNU_HASH: return "GNU_HASH";
047b2264 1984
252b5132
RH
1985 default:
1986 if ((type >= DT_LOPROC) && (type <= DT_HIPROC))
1987 {
2cf0635d 1988 const char * result;
103f02d3 1989
252b5132
RH
1990 switch (elf_header.e_machine)
1991 {
1992 case EM_MIPS:
4fe85591 1993 case EM_MIPS_RS3_LE:
252b5132
RH
1994 result = get_mips_dynamic_type (type);
1995 break;
9a097730
RH
1996 case EM_SPARCV9:
1997 result = get_sparc64_dynamic_type (type);
1998 break;
7490d522
AM
1999 case EM_PPC:
2000 result = get_ppc_dynamic_type (type);
2001 break;
f1cb7e17
AM
2002 case EM_PPC64:
2003 result = get_ppc64_dynamic_type (type);
2004 break;
ecc51f48
NC
2005 case EM_IA_64:
2006 result = get_ia64_dynamic_type (type);
2007 break;
fabcb361
RH
2008 case EM_ALPHA:
2009 result = get_alpha_dynamic_type (type);
2010 break;
1c0d3aa6
NC
2011 case EM_SCORE:
2012 result = get_score_dynamic_type (type);
2013 break;
40b36596
JM
2014 case EM_TI_C6000:
2015 result = get_tic6x_dynamic_type (type);
2016 break;
36591ba1
SL
2017 case EM_ALTERA_NIOS2:
2018 result = get_nios2_dynamic_type (type);
2019 break;
252b5132
RH
2020 default:
2021 result = NULL;
2022 break;
2023 }
2024
2025 if (result != NULL)
2026 return result;
2027
e9e44622 2028 snprintf (buff, sizeof (buff), _("Processor Specific: %lx"), type);
252b5132 2029 }
eec8f817
DA
2030 else if (((type >= DT_LOOS) && (type <= DT_HIOS))
2031 || (elf_header.e_machine == EM_PARISC
2032 && (type >= OLD_DT_LOOS) && (type <= OLD_DT_HIOS)))
103f02d3 2033 {
2cf0635d 2034 const char * result;
103f02d3
UD
2035
2036 switch (elf_header.e_machine)
2037 {
2038 case EM_PARISC:
2039 result = get_parisc_dynamic_type (type);
2040 break;
148b93f2
NC
2041 case EM_IA_64:
2042 result = get_ia64_dynamic_type (type);
2043 break;
103f02d3
UD
2044 default:
2045 result = NULL;
2046 break;
2047 }
2048
2049 if (result != NULL)
2050 return result;
2051
e9e44622
JJ
2052 snprintf (buff, sizeof (buff), _("Operating System specific: %lx"),
2053 type);
103f02d3 2054 }
252b5132 2055 else
e9e44622 2056 snprintf (buff, sizeof (buff), _("<unknown>: %lx"), type);
103f02d3 2057
252b5132
RH
2058 return buff;
2059 }
2060}
2061
2062static char *
d3ba0551 2063get_file_type (unsigned e_type)
252b5132 2064{
b34976b6 2065 static char buff[32];
252b5132
RH
2066
2067 switch (e_type)
2068 {
2069 case ET_NONE: return _("NONE (None)");
2070 case ET_REL: return _("REL (Relocatable file)");
ba2685cc
AM
2071 case ET_EXEC: return _("EXEC (Executable file)");
2072 case ET_DYN: return _("DYN (Shared object file)");
2073 case ET_CORE: return _("CORE (Core file)");
252b5132
RH
2074
2075 default:
2076 if ((e_type >= ET_LOPROC) && (e_type <= ET_HIPROC))
e9e44622 2077 snprintf (buff, sizeof (buff), _("Processor Specific: (%x)"), e_type);
252b5132 2078 else if ((e_type >= ET_LOOS) && (e_type <= ET_HIOS))
e9e44622 2079 snprintf (buff, sizeof (buff), _("OS Specific: (%x)"), e_type);
252b5132 2080 else
e9e44622 2081 snprintf (buff, sizeof (buff), _("<unknown>: %x"), e_type);
252b5132
RH
2082 return buff;
2083 }
2084}
2085
2086static char *
d3ba0551 2087get_machine_name (unsigned e_machine)
252b5132 2088{
b34976b6 2089 static char buff[64]; /* XXX */
252b5132
RH
2090
2091 switch (e_machine)
2092 {
c45021f2 2093 case EM_NONE: return _("None");
a06ea964 2094 case EM_AARCH64: return "AArch64";
c45021f2
NC
2095 case EM_M32: return "WE32100";
2096 case EM_SPARC: return "Sparc";
e9f53129 2097 case EM_SPU: return "SPU";
c45021f2
NC
2098 case EM_386: return "Intel 80386";
2099 case EM_68K: return "MC68000";
2100 case EM_88K: return "MC88000";
22abe556 2101 case EM_IAMCU: return "Intel MCU";
c45021f2
NC
2102 case EM_860: return "Intel 80860";
2103 case EM_MIPS: return "MIPS R3000";
2104 case EM_S370: return "IBM System/370";
7036c0e1 2105 case EM_MIPS_RS3_LE: return "MIPS R4000 big-endian";
252b5132 2106 case EM_OLD_SPARCV9: return "Sparc v9 (old)";
c45021f2 2107 case EM_PARISC: return "HPPA";
252b5132 2108 case EM_PPC_OLD: return "Power PC (old)";
7036c0e1 2109 case EM_SPARC32PLUS: return "Sparc v8+" ;
c45021f2
NC
2110 case EM_960: return "Intel 90860";
2111 case EM_PPC: return "PowerPC";
285d1771 2112 case EM_PPC64: return "PowerPC64";
c45021f2 2113 case EM_FR20: return "Fujitsu FR20";
3f8107ab 2114 case EM_FT32: return "FTDI FT32";
c45021f2 2115 case EM_RH32: return "TRW RH32";
b34976b6 2116 case EM_MCORE: return "MCORE";
7036c0e1
AJ
2117 case EM_ARM: return "ARM";
2118 case EM_OLD_ALPHA: return "Digital Alpha (old)";
ef230218 2119 case EM_SH: return "Renesas / SuperH SH";
c45021f2
NC
2120 case EM_SPARCV9: return "Sparc v9";
2121 case EM_TRICORE: return "Siemens Tricore";
584da044 2122 case EM_ARC: return "ARC";
886a2506
NC
2123 case EM_ARC_COMPACT: return "ARCompact";
2124 case EM_ARC_COMPACT2: return "ARCv2";
c2dcd04e
NC
2125 case EM_H8_300: return "Renesas H8/300";
2126 case EM_H8_300H: return "Renesas H8/300H";
2127 case EM_H8S: return "Renesas H8S";
2128 case EM_H8_500: return "Renesas H8/500";
30800947 2129 case EM_IA_64: return "Intel IA-64";
252b5132
RH
2130 case EM_MIPS_X: return "Stanford MIPS-X";
2131 case EM_COLDFIRE: return "Motorola Coldfire";
c45021f2 2132 case EM_ALPHA: return "Alpha";
2b0337b0
AO
2133 case EM_CYGNUS_D10V:
2134 case EM_D10V: return "d10v";
2135 case EM_CYGNUS_D30V:
b34976b6 2136 case EM_D30V: return "d30v";
2b0337b0 2137 case EM_CYGNUS_M32R:
26597c86 2138 case EM_M32R: return "Renesas M32R (formerly Mitsubishi M32r)";
2b0337b0 2139 case EM_CYGNUS_V850:
708e2187 2140 case EM_V800: return "Renesas V850 (using RH850 ABI)";
f6c1a2d5 2141 case EM_V850: return "Renesas V850";
2b0337b0
AO
2142 case EM_CYGNUS_MN10300:
2143 case EM_MN10300: return "mn10300";
2144 case EM_CYGNUS_MN10200:
2145 case EM_MN10200: return "mn10200";
5506d11a 2146 case EM_MOXIE: return "Moxie";
2b0337b0
AO
2147 case EM_CYGNUS_FR30:
2148 case EM_FR30: return "Fujitsu FR30";
b34976b6 2149 case EM_CYGNUS_FRV: return "Fujitsu FR-V";
2b0337b0 2150 case EM_PJ_OLD:
b34976b6 2151 case EM_PJ: return "picoJava";
7036c0e1
AJ
2152 case EM_MMA: return "Fujitsu Multimedia Accelerator";
2153 case EM_PCP: return "Siemens PCP";
2154 case EM_NCPU: return "Sony nCPU embedded RISC processor";
2155 case EM_NDR1: return "Denso NDR1 microprocesspr";
2156 case EM_STARCORE: return "Motorola Star*Core processor";
2157 case EM_ME16: return "Toyota ME16 processor";
2158 case EM_ST100: return "STMicroelectronics ST100 processor";
2159 case EM_TINYJ: return "Advanced Logic Corp. TinyJ embedded processor";
11636f9e
JM
2160 case EM_PDSP: return "Sony DSP processor";
2161 case EM_PDP10: return "Digital Equipment Corp. PDP-10";
2162 case EM_PDP11: return "Digital Equipment Corp. PDP-11";
7036c0e1
AJ
2163 case EM_FX66: return "Siemens FX66 microcontroller";
2164 case EM_ST9PLUS: return "STMicroelectronics ST9+ 8/16 bit microcontroller";
2165 case EM_ST7: return "STMicroelectronics ST7 8-bit microcontroller";
2166 case EM_68HC16: return "Motorola MC68HC16 Microcontroller";
6927f982 2167 case EM_68HC12: return "Motorola MC68HC12 Microcontroller";
7036c0e1
AJ
2168 case EM_68HC11: return "Motorola MC68HC11 Microcontroller";
2169 case EM_68HC08: return "Motorola MC68HC08 Microcontroller";
2170 case EM_68HC05: return "Motorola MC68HC05 Microcontroller";
2171 case EM_SVX: return "Silicon Graphics SVx";
2172 case EM_ST19: return "STMicroelectronics ST19 8-bit microcontroller";
2173 case EM_VAX: return "Digital VAX";
619ed720 2174 case EM_VISIUM: return "CDS VISIUMcore processor";
2b0337b0 2175 case EM_AVR_OLD:
b34976b6 2176 case EM_AVR: return "Atmel AVR 8-bit microcontroller";
1b61cf92 2177 case EM_CRIS: return "Axis Communications 32-bit embedded processor";
c45021f2
NC
2178 case EM_JAVELIN: return "Infineon Technologies 32-bit embedded cpu";
2179 case EM_FIREPATH: return "Element 14 64-bit DSP processor";
2180 case EM_ZSP: return "LSI Logic's 16-bit DSP processor";
b34976b6 2181 case EM_MMIX: return "Donald Knuth's educational 64-bit processor";
c45021f2 2182 case EM_HUANY: return "Harvard Universitys's machine-independent object format";
3b36097d 2183 case EM_PRISM: return "Vitesse Prism";
bcedfee6 2184 case EM_X86_64: return "Advanced Micro Devices X86-64";
8a9036a4 2185 case EM_L1OM: return "Intel L1OM";
7a9068fe 2186 case EM_K1OM: return "Intel K1OM";
b7498e0e 2187 case EM_S390_OLD:
b34976b6 2188 case EM_S390: return "IBM S/390";
1c0d3aa6 2189 case EM_SCORE: return "SUNPLUS S+Core";
61865e30 2190 case EM_XSTORMY16: return "Sanyo XStormy16 CPU core";
73589c9d 2191 case EM_OR1K: return "OpenRISC 1000";
1fe1f39c 2192 case EM_CRX: return "National Semiconductor CRX microprocessor";
cfb8c092 2193 case EM_ADAPTEVA_EPIPHANY: return "Adapteva EPIPHANY";
d172d4ba 2194 case EM_DLX: return "OpenDLX";
1e4cf259 2195 case EM_IP2K_OLD:
b34976b6 2196 case EM_IP2K: return "Ubicom IP2xxx 8-bit microcontrollers";
3b36097d 2197 case EM_IQ2000: return "Vitesse IQ2000";
88da6820
NC
2198 case EM_XTENSA_OLD:
2199 case EM_XTENSA: return "Tensilica Xtensa Processor";
11636f9e
JM
2200 case EM_VIDEOCORE: return "Alphamosaic VideoCore processor";
2201 case EM_TMM_GPP: return "Thompson Multimedia General Purpose Processor";
2202 case EM_NS32K: return "National Semiconductor 32000 series";
2203 case EM_TPC: return "Tenor Network TPC processor";
2204 case EM_ST200: return "STMicroelectronics ST200 microcontroller";
2205 case EM_MAX: return "MAX Processor";
2206 case EM_CR: return "National Semiconductor CompactRISC";
2207 case EM_F2MC16: return "Fujitsu F2MC16";
2208 case EM_MSP430: return "Texas Instruments msp430 microcontroller";
84e94c90 2209 case EM_LATTICEMICO32: return "Lattice Mico32";
ff7eeb89 2210 case EM_M32C_OLD:
49f58d10 2211 case EM_M32C: return "Renesas M32c";
d031aafb 2212 case EM_MT: return "Morpho Techologies MT processor";
7bbe5bc5 2213 case EM_BLACKFIN: return "Analog Devices Blackfin";
11636f9e
JM
2214 case EM_SE_C33: return "S1C33 Family of Seiko Epson processors";
2215 case EM_SEP: return "Sharp embedded microprocessor";
2216 case EM_ARCA: return "Arca RISC microprocessor";
2217 case EM_UNICORE: return "Unicore";
2218 case EM_EXCESS: return "eXcess 16/32/64-bit configurable embedded CPU";
2219 case EM_DXP: return "Icera Semiconductor Inc. Deep Execution Processor";
64fd6348
NC
2220 case EM_NIOS32: return "Altera Nios";
2221 case EM_ALTERA_NIOS2: return "Altera Nios II";
c29aca4a 2222 case EM_C166:
d70c5fc7 2223 case EM_XC16X: return "Infineon Technologies xc16x";
11636f9e
JM
2224 case EM_M16C: return "Renesas M16C series microprocessors";
2225 case EM_DSPIC30F: return "Microchip Technology dsPIC30F Digital Signal Controller";
2226 case EM_CE: return "Freescale Communication Engine RISC core";
2227 case EM_TSK3000: return "Altium TSK3000 core";
2228 case EM_RS08: return "Freescale RS08 embedded processor";
2229 case EM_ECOG2: return "Cyan Technology eCOG2 microprocessor";
2230 case EM_DSP24: return "New Japan Radio (NJR) 24-bit DSP Processor";
2231 case EM_VIDEOCORE3: return "Broadcom VideoCore III processor";
2232 case EM_SE_C17: return "Seiko Epson C17 family";
2233 case EM_TI_C6000: return "Texas Instruments TMS320C6000 DSP family";
2234 case EM_TI_C2000: return "Texas Instruments TMS320C2000 DSP family";
2235 case EM_TI_C5500: return "Texas Instruments TMS320C55x DSP family";
2236 case EM_MMDSP_PLUS: return "STMicroelectronics 64bit VLIW Data Signal Processor";
2237 case EM_CYPRESS_M8C: return "Cypress M8C microprocessor";
2238 case EM_R32C: return "Renesas R32C series microprocessors";
2239 case EM_TRIMEDIA: return "NXP Semiconductors TriMedia architecture family";
2240 case EM_QDSP6: return "QUALCOMM DSP6 Processor";
2241 case EM_8051: return "Intel 8051 and variants";
2242 case EM_STXP7X: return "STMicroelectronics STxP7x family";
2243 case EM_NDS32: return "Andes Technology compact code size embedded RISC processor family";
2244 case EM_ECOG1X: return "Cyan Technology eCOG1X family";
2245 case EM_MAXQ30: return "Dallas Semiconductor MAXQ30 Core microcontrollers";
2246 case EM_XIMO16: return "New Japan Radio (NJR) 16-bit DSP Processor";
2247 case EM_MANIK: return "M2000 Reconfigurable RISC Microprocessor";
2248 case EM_CRAYNV2: return "Cray Inc. NV2 vector architecture";
15ab5209 2249 case EM_CYGNUS_MEP: return "Toshiba MeP Media Engine";
cb8f3167 2250 case EM_CR16:
f6c1a2d5 2251 case EM_MICROBLAZE:
7ba29e2a 2252 case EM_MICROBLAZE_OLD: return "Xilinx MicroBlaze";
99c513f6 2253 case EM_RL78: return "Renesas RL78";
c7927a3c 2254 case EM_RX: return "Renesas RX";
a3c62988 2255 case EM_METAG: return "Imagination Technologies Meta processor architecture";
11636f9e
JM
2256 case EM_MCST_ELBRUS: return "MCST Elbrus general purpose hardware architecture";
2257 case EM_ECOG16: return "Cyan Technology eCOG16 family";
2258 case EM_ETPU: return "Freescale Extended Time Processing Unit";
2259 case EM_SLE9X: return "Infineon Technologies SLE9X core";
2260 case EM_AVR32: return "Atmel Corporation 32-bit microprocessor family";
2261 case EM_STM8: return "STMicroeletronics STM8 8-bit microcontroller";
2262 case EM_TILE64: return "Tilera TILE64 multicore architecture family";
2263 case EM_TILEPRO: return "Tilera TILEPro multicore architecture family";
aa137e4d 2264 case EM_TILEGX: return "Tilera TILE-Gx multicore architecture family";
11636f9e 2265 case EM_CUDA: return "NVIDIA CUDA architecture";
f6c1a2d5 2266 case EM_XGATE: return "Motorola XGATE embedded processor";
252b5132 2267 default:
35d9dd2f 2268 snprintf (buff, sizeof (buff), _("<unknown>: 0x%x"), e_machine);
252b5132
RH
2269 return buff;
2270 }
2271}
2272
f3485b74 2273static void
d3ba0551 2274decode_ARM_machine_flags (unsigned e_flags, char buf[])
f3485b74
NC
2275{
2276 unsigned eabi;
2277 int unknown = 0;
2278
2279 eabi = EF_ARM_EABI_VERSION (e_flags);
2280 e_flags &= ~ EF_ARM_EABIMASK;
2281
2282 /* Handle "generic" ARM flags. */
2283 if (e_flags & EF_ARM_RELEXEC)
2284 {
2285 strcat (buf, ", relocatable executable");
2286 e_flags &= ~ EF_ARM_RELEXEC;
2287 }
76da6bbe 2288
f3485b74
NC
2289 /* Now handle EABI specific flags. */
2290 switch (eabi)
2291 {
2292 default:
2c71103e 2293 strcat (buf, ", <unrecognized EABI>");
f3485b74
NC
2294 if (e_flags)
2295 unknown = 1;
2296 break;
2297
2298 case EF_ARM_EABI_VER1:
a5bcd848 2299 strcat (buf, ", Version1 EABI");
f3485b74
NC
2300 while (e_flags)
2301 {
2302 unsigned flag;
76da6bbe 2303
f3485b74
NC
2304 /* Process flags one bit at a time. */
2305 flag = e_flags & - e_flags;
2306 e_flags &= ~ flag;
76da6bbe 2307
f3485b74
NC
2308 switch (flag)
2309 {
a5bcd848 2310 case EF_ARM_SYMSARESORTED: /* Conflicts with EF_ARM_INTERWORK. */
f3485b74
NC
2311 strcat (buf, ", sorted symbol tables");
2312 break;
76da6bbe 2313
f3485b74
NC
2314 default:
2315 unknown = 1;
2316 break;
2317 }
2318 }
2319 break;
76da6bbe 2320
a5bcd848
PB
2321 case EF_ARM_EABI_VER2:
2322 strcat (buf, ", Version2 EABI");
2323 while (e_flags)
2324 {
2325 unsigned flag;
2326
2327 /* Process flags one bit at a time. */
2328 flag = e_flags & - e_flags;
2329 e_flags &= ~ flag;
2330
2331 switch (flag)
2332 {
2333 case EF_ARM_SYMSARESORTED: /* Conflicts with EF_ARM_INTERWORK. */
2334 strcat (buf, ", sorted symbol tables");
2335 break;
2336
2337 case EF_ARM_DYNSYMSUSESEGIDX:
2338 strcat (buf, ", dynamic symbols use segment index");
2339 break;
2340
2341 case EF_ARM_MAPSYMSFIRST:
2342 strcat (buf, ", mapping symbols precede others");
2343 break;
2344
2345 default:
2346 unknown = 1;
2347 break;
2348 }
2349 }
2350 break;
2351
d507cf36
PB
2352 case EF_ARM_EABI_VER3:
2353 strcat (buf, ", Version3 EABI");
8cb51566
PB
2354 break;
2355
2356 case EF_ARM_EABI_VER4:
2357 strcat (buf, ", Version4 EABI");
3bfcb652
NC
2358 while (e_flags)
2359 {
2360 unsigned flag;
2361
2362 /* Process flags one bit at a time. */
2363 flag = e_flags & - e_flags;
2364 e_flags &= ~ flag;
2365
2366 switch (flag)
2367 {
2368 case EF_ARM_BE8:
2369 strcat (buf, ", BE8");
2370 break;
2371
2372 case EF_ARM_LE8:
2373 strcat (buf, ", LE8");
2374 break;
2375
2376 default:
2377 unknown = 1;
2378 break;
2379 }
2380 break;
2381 }
2382 break;
3a4a14e9
PB
2383
2384 case EF_ARM_EABI_VER5:
2385 strcat (buf, ", Version5 EABI");
d507cf36
PB
2386 while (e_flags)
2387 {
2388 unsigned flag;
2389
2390 /* Process flags one bit at a time. */
2391 flag = e_flags & - e_flags;
2392 e_flags &= ~ flag;
2393
2394 switch (flag)
2395 {
2396 case EF_ARM_BE8:
2397 strcat (buf, ", BE8");
2398 break;
2399
2400 case EF_ARM_LE8:
2401 strcat (buf, ", LE8");
2402 break;
2403
3bfcb652
NC
2404 case EF_ARM_ABI_FLOAT_SOFT: /* Conflicts with EF_ARM_SOFT_FLOAT. */
2405 strcat (buf, ", soft-float ABI");
2406 break;
2407
2408 case EF_ARM_ABI_FLOAT_HARD: /* Conflicts with EF_ARM_VFP_FLOAT. */
2409 strcat (buf, ", hard-float ABI");
2410 break;
2411
d507cf36
PB
2412 default:
2413 unknown = 1;
2414 break;
2415 }
2416 }
2417 break;
2418
f3485b74 2419 case EF_ARM_EABI_UNKNOWN:
a5bcd848 2420 strcat (buf, ", GNU EABI");
f3485b74
NC
2421 while (e_flags)
2422 {
2423 unsigned flag;
76da6bbe 2424
f3485b74
NC
2425 /* Process flags one bit at a time. */
2426 flag = e_flags & - e_flags;
2427 e_flags &= ~ flag;
76da6bbe 2428
f3485b74
NC
2429 switch (flag)
2430 {
a5bcd848 2431 case EF_ARM_INTERWORK:
f3485b74
NC
2432 strcat (buf, ", interworking enabled");
2433 break;
76da6bbe 2434
a5bcd848 2435 case EF_ARM_APCS_26:
f3485b74
NC
2436 strcat (buf, ", uses APCS/26");
2437 break;
76da6bbe 2438
a5bcd848 2439 case EF_ARM_APCS_FLOAT:
f3485b74
NC
2440 strcat (buf, ", uses APCS/float");
2441 break;
76da6bbe 2442
a5bcd848 2443 case EF_ARM_PIC:
f3485b74
NC
2444 strcat (buf, ", position independent");
2445 break;
76da6bbe 2446
a5bcd848 2447 case EF_ARM_ALIGN8:
f3485b74
NC
2448 strcat (buf, ", 8 bit structure alignment");
2449 break;
76da6bbe 2450
a5bcd848 2451 case EF_ARM_NEW_ABI:
f3485b74
NC
2452 strcat (buf, ", uses new ABI");
2453 break;
76da6bbe 2454
a5bcd848 2455 case EF_ARM_OLD_ABI:
f3485b74
NC
2456 strcat (buf, ", uses old ABI");
2457 break;
76da6bbe 2458
a5bcd848 2459 case EF_ARM_SOFT_FLOAT:
f3485b74
NC
2460 strcat (buf, ", software FP");
2461 break;
76da6bbe 2462
90e01f86
ILT
2463 case EF_ARM_VFP_FLOAT:
2464 strcat (buf, ", VFP");
2465 break;
2466
fde78edd
NC
2467 case EF_ARM_MAVERICK_FLOAT:
2468 strcat (buf, ", Maverick FP");
2469 break;
2470
f3485b74
NC
2471 default:
2472 unknown = 1;
2473 break;
2474 }
2475 }
2476 }
f3485b74
NC
2477
2478 if (unknown)
2b692964 2479 strcat (buf,_(", <unknown>"));
f3485b74
NC
2480}
2481
343433df
AB
2482static void
2483decode_AVR_machine_flags (unsigned e_flags, char buf[], size_t size)
2484{
2485 --size; /* Leave space for null terminator. */
2486
2487 switch (e_flags & EF_AVR_MACH)
2488 {
2489 case E_AVR_MACH_AVR1:
2490 strncat (buf, ", avr:1", size);
2491 break;
2492 case E_AVR_MACH_AVR2:
2493 strncat (buf, ", avr:2", size);
2494 break;
2495 case E_AVR_MACH_AVR25:
2496 strncat (buf, ", avr:25", size);
2497 break;
2498 case E_AVR_MACH_AVR3:
2499 strncat (buf, ", avr:3", size);
2500 break;
2501 case E_AVR_MACH_AVR31:
2502 strncat (buf, ", avr:31", size);
2503 break;
2504 case E_AVR_MACH_AVR35:
2505 strncat (buf, ", avr:35", size);
2506 break;
2507 case E_AVR_MACH_AVR4:
2508 strncat (buf, ", avr:4", size);
2509 break;
2510 case E_AVR_MACH_AVR5:
2511 strncat (buf, ", avr:5", size);
2512 break;
2513 case E_AVR_MACH_AVR51:
2514 strncat (buf, ", avr:51", size);
2515 break;
2516 case E_AVR_MACH_AVR6:
2517 strncat (buf, ", avr:6", size);
2518 break;
2519 case E_AVR_MACH_AVRTINY:
2520 strncat (buf, ", avr:100", size);
2521 break;
2522 case E_AVR_MACH_XMEGA1:
2523 strncat (buf, ", avr:101", size);
2524 break;
2525 case E_AVR_MACH_XMEGA2:
2526 strncat (buf, ", avr:102", size);
2527 break;
2528 case E_AVR_MACH_XMEGA3:
2529 strncat (buf, ", avr:103", size);
2530 break;
2531 case E_AVR_MACH_XMEGA4:
2532 strncat (buf, ", avr:104", size);
2533 break;
2534 case E_AVR_MACH_XMEGA5:
2535 strncat (buf, ", avr:105", size);
2536 break;
2537 case E_AVR_MACH_XMEGA6:
2538 strncat (buf, ", avr:106", size);
2539 break;
2540 case E_AVR_MACH_XMEGA7:
2541 strncat (buf, ", avr:107", size);
2542 break;
2543 default:
2544 strncat (buf, ", avr:<unknown>", size);
2545 break;
2546 }
2547
2548 size -= strlen (buf);
2549 if (e_flags & EF_AVR_LINKRELAX_PREPARED)
2550 strncat (buf, ", link-relax", size);
2551}
2552
35c08157
KLC
2553static void
2554decode_NDS32_machine_flags (unsigned e_flags, char buf[], size_t size)
2555{
2556 unsigned abi;
2557 unsigned arch;
2558 unsigned config;
2559 unsigned version;
2560 int has_fpu = 0;
2561 int r = 0;
2562
2563 static const char *ABI_STRINGS[] =
2564 {
2565 "ABI v0", /* use r5 as return register; only used in N1213HC */
2566 "ABI v1", /* use r0 as return register */
2567 "ABI v2", /* use r0 as return register and don't reserve 24 bytes for arguments */
2568 "ABI v2fp", /* for FPU */
40c7a7cb
KLC
2569 "AABI",
2570 "ABI2 FP+"
35c08157
KLC
2571 };
2572 static const char *VER_STRINGS[] =
2573 {
2574 "Andes ELF V1.3 or older",
2575 "Andes ELF V1.3.1",
2576 "Andes ELF V1.4"
2577 };
2578 static const char *ARCH_STRINGS[] =
2579 {
2580 "",
2581 "Andes Star v1.0",
2582 "Andes Star v2.0",
2583 "Andes Star v3.0",
2584 "Andes Star v3.0m"
2585 };
2586
2587 abi = EF_NDS_ABI & e_flags;
2588 arch = EF_NDS_ARCH & e_flags;
2589 config = EF_NDS_INST & e_flags;
2590 version = EF_NDS32_ELF_VERSION & e_flags;
2591
2592 memset (buf, 0, size);
2593
2594 switch (abi)
2595 {
2596 case E_NDS_ABI_V0:
2597 case E_NDS_ABI_V1:
2598 case E_NDS_ABI_V2:
2599 case E_NDS_ABI_V2FP:
2600 case E_NDS_ABI_AABI:
40c7a7cb 2601 case E_NDS_ABI_V2FP_PLUS:
35c08157
KLC
2602 /* In case there are holes in the array. */
2603 r += snprintf (buf + r, size - r, ", %s", ABI_STRINGS[abi >> EF_NDS_ABI_SHIFT]);
2604 break;
2605
2606 default:
2607 r += snprintf (buf + r, size - r, ", <unrecognized ABI>");
2608 break;
2609 }
2610
2611 switch (version)
2612 {
2613 case E_NDS32_ELF_VER_1_2:
2614 case E_NDS32_ELF_VER_1_3:
2615 case E_NDS32_ELF_VER_1_4:
2616 r += snprintf (buf + r, size - r, ", %s", VER_STRINGS[version >> EF_NDS32_ELF_VERSION_SHIFT]);
2617 break;
2618
2619 default:
2620 r += snprintf (buf + r, size - r, ", <unrecognized ELF version number>");
2621 break;
2622 }
2623
2624 if (E_NDS_ABI_V0 == abi)
2625 {
2626 /* OLD ABI; only used in N1213HC, has performance extension 1. */
2627 r += snprintf (buf + r, size - r, ", Andes Star v1.0, N1213HC, MAC, PERF1");
2628 if (arch == E_NDS_ARCH_STAR_V1_0)
2629 r += snprintf (buf + r, size -r, ", 16b"); /* has 16-bit instructions */
2630 return;
2631 }
2632
2633 switch (arch)
2634 {
2635 case E_NDS_ARCH_STAR_V1_0:
2636 case E_NDS_ARCH_STAR_V2_0:
2637 case E_NDS_ARCH_STAR_V3_0:
2638 case E_NDS_ARCH_STAR_V3_M:
2639 r += snprintf (buf + r, size - r, ", %s", ARCH_STRINGS[arch >> EF_NDS_ARCH_SHIFT]);
2640 break;
2641
2642 default:
2643 r += snprintf (buf + r, size - r, ", <unrecognized architecture>");
2644 /* ARCH version determines how the e_flags are interpreted.
2645 If it is unknown, we cannot proceed. */
2646 return;
2647 }
2648
2649 /* Newer ABI; Now handle architecture specific flags. */
2650 if (arch == E_NDS_ARCH_STAR_V1_0)
2651 {
2652 if (config & E_NDS32_HAS_MFUSR_PC_INST)
2653 r += snprintf (buf + r, size -r, ", MFUSR_PC");
2654
2655 if (!(config & E_NDS32_HAS_NO_MAC_INST))
2656 r += snprintf (buf + r, size -r, ", MAC");
2657
2658 if (config & E_NDS32_HAS_DIV_INST)
2659 r += snprintf (buf + r, size -r, ", DIV");
2660
2661 if (config & E_NDS32_HAS_16BIT_INST)
2662 r += snprintf (buf + r, size -r, ", 16b");
2663 }
2664 else
2665 {
2666 if (config & E_NDS32_HAS_MFUSR_PC_INST)
2667 {
2668 if (version <= E_NDS32_ELF_VER_1_3)
2669 r += snprintf (buf + r, size -r, ", [B8]");
2670 else
2671 r += snprintf (buf + r, size -r, ", EX9");
2672 }
2673
2674 if (config & E_NDS32_HAS_MAC_DX_INST)
2675 r += snprintf (buf + r, size -r, ", MAC_DX");
2676
2677 if (config & E_NDS32_HAS_DIV_DX_INST)
2678 r += snprintf (buf + r, size -r, ", DIV_DX");
2679
2680 if (config & E_NDS32_HAS_16BIT_INST)
2681 {
2682 if (version <= E_NDS32_ELF_VER_1_3)
2683 r += snprintf (buf + r, size -r, ", 16b");
2684 else
2685 r += snprintf (buf + r, size -r, ", IFC");
2686 }
2687 }
2688
2689 if (config & E_NDS32_HAS_EXT_INST)
2690 r += snprintf (buf + r, size -r, ", PERF1");
2691
2692 if (config & E_NDS32_HAS_EXT2_INST)
2693 r += snprintf (buf + r, size -r, ", PERF2");
2694
2695 if (config & E_NDS32_HAS_FPU_INST)
2696 {
2697 has_fpu = 1;
2698 r += snprintf (buf + r, size -r, ", FPU_SP");
2699 }
2700
2701 if (config & E_NDS32_HAS_FPU_DP_INST)
2702 {
2703 has_fpu = 1;
2704 r += snprintf (buf + r, size -r, ", FPU_DP");
2705 }
2706
2707 if (config & E_NDS32_HAS_FPU_MAC_INST)
2708 {
2709 has_fpu = 1;
2710 r += snprintf (buf + r, size -r, ", FPU_MAC");
2711 }
2712
2713 if (has_fpu)
2714 {
2715 switch ((config & E_NDS32_FPU_REG_CONF) >> E_NDS32_FPU_REG_CONF_SHIFT)
2716 {
2717 case E_NDS32_FPU_REG_8SP_4DP:
2718 r += snprintf (buf + r, size -r, ", FPU_REG:8/4");
2719 break;
2720 case E_NDS32_FPU_REG_16SP_8DP:
2721 r += snprintf (buf + r, size -r, ", FPU_REG:16/8");
2722 break;
2723 case E_NDS32_FPU_REG_32SP_16DP:
2724 r += snprintf (buf + r, size -r, ", FPU_REG:32/16");
2725 break;
2726 case E_NDS32_FPU_REG_32SP_32DP:
2727 r += snprintf (buf + r, size -r, ", FPU_REG:32/32");
2728 break;
2729 }
2730 }
2731
2732 if (config & E_NDS32_HAS_AUDIO_INST)
2733 r += snprintf (buf + r, size -r, ", AUDIO");
2734
2735 if (config & E_NDS32_HAS_STRING_INST)
2736 r += snprintf (buf + r, size -r, ", STR");
2737
2738 if (config & E_NDS32_HAS_REDUCED_REGS)
2739 r += snprintf (buf + r, size -r, ", 16REG");
2740
2741 if (config & E_NDS32_HAS_VIDEO_INST)
2742 {
2743 if (version <= E_NDS32_ELF_VER_1_3)
2744 r += snprintf (buf + r, size -r, ", VIDEO");
2745 else
2746 r += snprintf (buf + r, size -r, ", SATURATION");
2747 }
2748
2749 if (config & E_NDS32_HAS_ENCRIPT_INST)
2750 r += snprintf (buf + r, size -r, ", ENCRP");
2751
2752 if (config & E_NDS32_HAS_L2C_INST)
2753 r += snprintf (buf + r, size -r, ", L2C");
2754}
2755
252b5132 2756static char *
d3ba0551 2757get_machine_flags (unsigned e_flags, unsigned e_machine)
252b5132 2758{
b34976b6 2759 static char buf[1024];
252b5132
RH
2760
2761 buf[0] = '\0';
76da6bbe 2762
252b5132
RH
2763 if (e_flags)
2764 {
2765 switch (e_machine)
2766 {
2767 default:
2768 break;
2769
886a2506
NC
2770 case EM_ARC_COMPACT2:
2771 switch (e_flags & EF_ARC_MACH_MSK)
2772 {
2773 case EF_ARC_CPU_ARCV2EM:
2774 strcat (buf, ", ARC EM");
2775 break;
2776 case EF_ARC_CPU_ARCV2HS:
2777 strcat (buf, ", ARC HS");
2778 break;
34e967a5
MC
2779 case EF_ARC_CPU_GENERIC:
2780 strcat (buf, ", ARC generic");
2781 break;
2782 case E_ARC_MACH_ARC600:
2783 strcat (buf, ", ARC600");
2784 break;
2785 case E_ARC_MACH_ARC601:
2786 strcat (buf, ", ARC601");
2787 break;
2788 case E_ARC_MACH_ARC700:
2789 strcat (buf, ", ARC700");
2790 break;
886a2506 2791 default:
34e967a5 2792 strcat (buf, ", unrecognized cpu flag for ARCv2");
886a2506
NC
2793 break;
2794 }
2795 switch (e_flags & EF_ARC_OSABI_MSK)
2796 {
34e967a5
MC
2797 case E_ARC_OSABI_ORIG:
2798 strcat (buf, ", (ABI:legacy)");
2799 break;
2800 case E_ARC_OSABI_V2:
2801 strcat (buf, ", (ABI:v2)");
2802 break;
2803 /* Only upstream 3.9+ kernels will support ARCv2 ISA. */
886a2506
NC
2804 case E_ARC_OSABI_V3:
2805 strcat (buf, ", v3 no-legacy-syscalls ABI");
2806 break;
34e967a5
MC
2807 default:
2808 strcat (buf, ", unrecognised ARC OSABI flag");
2809 break;
886a2506
NC
2810 }
2811 break;
2812
2813 case EM_ARC_COMPACT:
2814 switch (e_flags & EF_ARC_MACH_MSK)
2815 {
2816 case E_ARC_MACH_ARC600:
2817 strcat (buf, ", ARC 600");
2818 break;
2819 case E_ARC_MACH_ARC601:
2820 strcat (buf, ", ARC 601");
2821 break;
2822 case E_ARC_MACH_ARC700:
2823 strcat (buf, ", ARC 700");
2824 break;
2825 default:
2826 strcat (buf, ", Generic ARCompact");
2827 break;
2828 }
2829 switch (e_flags & EF_ARC_OSABI_MSK)
2830 {
2831 case E_ARC_OSABI_ORIG:
2832 strcat (buf, ", legacy syscall ABI");
2833 break;
2834 case E_ARC_OSABI_V2:
2835 /* For 3.2+ Linux kernels which use asm-generic
2836 hdrs. */
2837 strcat (buf, ", v2 syscall ABI");
2838 break;
2839 case E_ARC_OSABI_V3:
2840 /* Upstream 3.9+ kernels which don't use any legacy
2841 syscalls. */
2842 strcat (buf, ", v3 no-legacy-syscalls ABI");
2843 break;
2844 }
2845 break;
2846
f3485b74
NC
2847 case EM_ARM:
2848 decode_ARM_machine_flags (e_flags, buf);
2849 break;
76da6bbe 2850
343433df
AB
2851 case EM_AVR:
2852 decode_AVR_machine_flags (e_flags, buf, sizeof buf);
2853 break;
2854
781303ce
MF
2855 case EM_BLACKFIN:
2856 if (e_flags & EF_BFIN_PIC)
2857 strcat (buf, ", PIC");
2858
2859 if (e_flags & EF_BFIN_FDPIC)
2860 strcat (buf, ", FDPIC");
2861
2862 if (e_flags & EF_BFIN_CODE_IN_L1)
2863 strcat (buf, ", code in L1");
2864
2865 if (e_flags & EF_BFIN_DATA_IN_L1)
2866 strcat (buf, ", data in L1");
2867
2868 break;
2869
ec2dfb42
AO
2870 case EM_CYGNUS_FRV:
2871 switch (e_flags & EF_FRV_CPU_MASK)
2872 {
2873 case EF_FRV_CPU_GENERIC:
2874 break;
2875
2876 default:
2877 strcat (buf, ", fr???");
2878 break;
57346661 2879
ec2dfb42
AO
2880 case EF_FRV_CPU_FR300:
2881 strcat (buf, ", fr300");
2882 break;
2883
2884 case EF_FRV_CPU_FR400:
2885 strcat (buf, ", fr400");
2886 break;
2887 case EF_FRV_CPU_FR405:
2888 strcat (buf, ", fr405");
2889 break;
2890
2891 case EF_FRV_CPU_FR450:
2892 strcat (buf, ", fr450");
2893 break;
2894
2895 case EF_FRV_CPU_FR500:
2896 strcat (buf, ", fr500");
2897 break;
2898 case EF_FRV_CPU_FR550:
2899 strcat (buf, ", fr550");
2900 break;
2901
2902 case EF_FRV_CPU_SIMPLE:
2903 strcat (buf, ", simple");
2904 break;
2905 case EF_FRV_CPU_TOMCAT:
2906 strcat (buf, ", tomcat");
2907 break;
2908 }
1c877e87 2909 break;
ec2dfb42 2910
53c7db4b 2911 case EM_68K:
425c6cb0 2912 if ((e_flags & EF_M68K_ARCH_MASK) == EF_M68K_M68000)
76f57f3a 2913 strcat (buf, ", m68000");
425c6cb0 2914 else if ((e_flags & EF_M68K_ARCH_MASK) == EF_M68K_CPU32)
3bdcfdf4
KH
2915 strcat (buf, ", cpu32");
2916 else if ((e_flags & EF_M68K_ARCH_MASK) == EF_M68K_FIDO)
2917 strcat (buf, ", fido_a");
425c6cb0 2918 else
266abb8f 2919 {
2cf0635d
NC
2920 char const * isa = _("unknown");
2921 char const * mac = _("unknown mac");
2922 char const * additional = NULL;
0112cd26 2923
c694fd50 2924 switch (e_flags & EF_M68K_CF_ISA_MASK)
266abb8f 2925 {
c694fd50 2926 case EF_M68K_CF_ISA_A_NODIV:
0b2e31dc
NS
2927 isa = "A";
2928 additional = ", nodiv";
2929 break;
c694fd50 2930 case EF_M68K_CF_ISA_A:
266abb8f
NS
2931 isa = "A";
2932 break;
c694fd50 2933 case EF_M68K_CF_ISA_A_PLUS:
266abb8f
NS
2934 isa = "A+";
2935 break;
c694fd50 2936 case EF_M68K_CF_ISA_B_NOUSP:
0b2e31dc
NS
2937 isa = "B";
2938 additional = ", nousp";
2939 break;
c694fd50 2940 case EF_M68K_CF_ISA_B:
266abb8f
NS
2941 isa = "B";
2942 break;
f608cd77
NS
2943 case EF_M68K_CF_ISA_C:
2944 isa = "C";
2945 break;
2946 case EF_M68K_CF_ISA_C_NODIV:
2947 isa = "C";
2948 additional = ", nodiv";
2949 break;
266abb8f
NS
2950 }
2951 strcat (buf, ", cf, isa ");
2952 strcat (buf, isa);
0b2e31dc
NS
2953 if (additional)
2954 strcat (buf, additional);
c694fd50 2955 if (e_flags & EF_M68K_CF_FLOAT)
0b2e31dc 2956 strcat (buf, ", float");
c694fd50 2957 switch (e_flags & EF_M68K_CF_MAC_MASK)
266abb8f
NS
2958 {
2959 case 0:
2960 mac = NULL;
2961 break;
c694fd50 2962 case EF_M68K_CF_MAC:
266abb8f
NS
2963 mac = "mac";
2964 break;
c694fd50 2965 case EF_M68K_CF_EMAC:
266abb8f
NS
2966 mac = "emac";
2967 break;
f608cd77
NS
2968 case EF_M68K_CF_EMAC_B:
2969 mac = "emac_b";
2970 break;
266abb8f
NS
2971 }
2972 if (mac)
2973 {
2974 strcat (buf, ", ");
2975 strcat (buf, mac);
2976 }
266abb8f 2977 }
53c7db4b 2978 break;
33c63f9d 2979
153a2776
NC
2980 case EM_CYGNUS_MEP:
2981 switch (e_flags & EF_MEP_CPU_MASK)
2982 {
2983 case EF_MEP_CPU_MEP: strcat (buf, ", generic MeP"); break;
2984 case EF_MEP_CPU_C2: strcat (buf, ", MeP C2"); break;
2985 case EF_MEP_CPU_C3: strcat (buf, ", MeP C3"); break;
2986 case EF_MEP_CPU_C4: strcat (buf, ", MeP C4"); break;
2987 case EF_MEP_CPU_C5: strcat (buf, ", MeP C5"); break;
2988 case EF_MEP_CPU_H1: strcat (buf, ", MeP H1"); break;
2989 default: strcat (buf, _(", <unknown MeP cpu type>")); break;
2990 }
2991
2992 switch (e_flags & EF_MEP_COP_MASK)
2993 {
2994 case EF_MEP_COP_NONE: break;
2995 case EF_MEP_COP_AVC: strcat (buf, ", AVC coprocessor"); break;
2996 case EF_MEP_COP_AVC2: strcat (buf, ", AVC2 coprocessor"); break;
2997 case EF_MEP_COP_FMAX: strcat (buf, ", FMAX coprocessor"); break;
2998 case EF_MEP_COP_IVC2: strcat (buf, ", IVC2 coprocessor"); break;
2999 default: strcat (buf, _("<unknown MeP copro type>")); break;
3000 }
3001
3002 if (e_flags & EF_MEP_LIBRARY)
3003 strcat (buf, ", Built for Library");
3004
3005 if (e_flags & EF_MEP_INDEX_MASK)
3006 sprintf (buf + strlen (buf), ", Configuration Index: %#x",
3007 e_flags & EF_MEP_INDEX_MASK);
3008
3009 if (e_flags & ~ EF_MEP_ALL_FLAGS)
3010 sprintf (buf + strlen (buf), _(", unknown flags bits: %#x"),
3011 e_flags & ~ EF_MEP_ALL_FLAGS);
3012 break;
3013
252b5132
RH
3014 case EM_PPC:
3015 if (e_flags & EF_PPC_EMB)
3016 strcat (buf, ", emb");
3017
3018 if (e_flags & EF_PPC_RELOCATABLE)
2b692964 3019 strcat (buf, _(", relocatable"));
252b5132
RH
3020
3021 if (e_flags & EF_PPC_RELOCATABLE_LIB)
2b692964 3022 strcat (buf, _(", relocatable-lib"));
252b5132
RH
3023 break;
3024
ee67d69a
AM
3025 case EM_PPC64:
3026 if (e_flags & EF_PPC64_ABI)
3027 {
3028 char abi[] = ", abiv0";
3029
3030 abi[6] += e_flags & EF_PPC64_ABI;
3031 strcat (buf, abi);
3032 }
3033 break;
3034
708e2187
NC
3035 case EM_V800:
3036 if ((e_flags & EF_RH850_ABI) == EF_RH850_ABI)
3037 strcat (buf, ", RH850 ABI");
0b4362b0 3038
708e2187
NC
3039 if (e_flags & EF_V800_850E3)
3040 strcat (buf, ", V3 architecture");
3041
3042 if ((e_flags & (EF_RH850_FPU_DOUBLE | EF_RH850_FPU_SINGLE)) == 0)
3043 strcat (buf, ", FPU not used");
3044
3045 if ((e_flags & (EF_RH850_REGMODE22 | EF_RH850_REGMODE32)) == 0)
3046 strcat (buf, ", regmode: COMMON");
3047
3048 if ((e_flags & (EF_RH850_GP_FIX | EF_RH850_GP_NOFIX)) == 0)
3049 strcat (buf, ", r4 not used");
3050
3051 if ((e_flags & (EF_RH850_EP_FIX | EF_RH850_EP_NOFIX)) == 0)
3052 strcat (buf, ", r30 not used");
3053
3054 if ((e_flags & (EF_RH850_TP_FIX | EF_RH850_TP_NOFIX)) == 0)
3055 strcat (buf, ", r5 not used");
3056
3057 if ((e_flags & (EF_RH850_REG2_RESERVE | EF_RH850_REG2_NORESERVE)) == 0)
3058 strcat (buf, ", r2 not used");
3059
3060 for (e_flags &= 0xFFFF; e_flags; e_flags &= ~ (e_flags & - e_flags))
3061 {
3062 switch (e_flags & - e_flags)
3063 {
3064 case EF_RH850_FPU_DOUBLE: strcat (buf, ", double precision FPU"); break;
3065 case EF_RH850_FPU_SINGLE: strcat (buf, ", single precision FPU"); break;
708e2187
NC
3066 case EF_RH850_REGMODE22: strcat (buf, ", regmode:22"); break;
3067 case EF_RH850_REGMODE32: strcat (buf, ", regmode:23"); break;
708e2187
NC
3068 case EF_RH850_GP_FIX: strcat (buf, ", r4 fixed"); break;
3069 case EF_RH850_GP_NOFIX: strcat (buf, ", r4 free"); break;
3070 case EF_RH850_EP_FIX: strcat (buf, ", r30 fixed"); break;
3071 case EF_RH850_EP_NOFIX: strcat (buf, ", r30 free"); break;
3072 case EF_RH850_TP_FIX: strcat (buf, ", r5 fixed"); break;
3073 case EF_RH850_TP_NOFIX: strcat (buf, ", r5 free"); break;
3074 case EF_RH850_REG2_RESERVE: strcat (buf, ", r2 fixed"); break;
3075 case EF_RH850_REG2_NORESERVE: strcat (buf, ", r2 free"); break;
3076 default: break;
3077 }
3078 }
3079 break;
3080
2b0337b0 3081 case EM_V850:
252b5132
RH
3082 case EM_CYGNUS_V850:
3083 switch (e_flags & EF_V850_ARCH)
3084 {
78c8d46c
NC
3085 case E_V850E3V5_ARCH:
3086 strcat (buf, ", v850e3v5");
3087 break;
1cd986c5
NC
3088 case E_V850E2V3_ARCH:
3089 strcat (buf, ", v850e2v3");
3090 break;
3091 case E_V850E2_ARCH:
3092 strcat (buf, ", v850e2");
3093 break;
3094 case E_V850E1_ARCH:
3095 strcat (buf, ", v850e1");
8ad30312 3096 break;
252b5132
RH
3097 case E_V850E_ARCH:
3098 strcat (buf, ", v850e");
3099 break;
252b5132
RH
3100 case E_V850_ARCH:
3101 strcat (buf, ", v850");
3102 break;
3103 default:
2b692964 3104 strcat (buf, _(", unknown v850 architecture variant"));
252b5132
RH
3105 break;
3106 }
3107 break;
3108
2b0337b0 3109 case EM_M32R:
252b5132
RH
3110 case EM_CYGNUS_M32R:
3111 if ((e_flags & EF_M32R_ARCH) == E_M32R_ARCH)
3112 strcat (buf, ", m32r");
252b5132
RH
3113 break;
3114
3115 case EM_MIPS:
4fe85591 3116 case EM_MIPS_RS3_LE:
252b5132
RH
3117 if (e_flags & EF_MIPS_NOREORDER)
3118 strcat (buf, ", noreorder");
3119
3120 if (e_flags & EF_MIPS_PIC)
3121 strcat (buf, ", pic");
3122
3123 if (e_flags & EF_MIPS_CPIC)
3124 strcat (buf, ", cpic");
3125
d1bdd336
TS
3126 if (e_flags & EF_MIPS_UCODE)
3127 strcat (buf, ", ugen_reserved");
3128
252b5132
RH
3129 if (e_flags & EF_MIPS_ABI2)
3130 strcat (buf, ", abi2");
3131
43521d43
TS
3132 if (e_flags & EF_MIPS_OPTIONS_FIRST)
3133 strcat (buf, ", odk first");
3134
a5d22d2a
TS
3135 if (e_flags & EF_MIPS_32BITMODE)
3136 strcat (buf, ", 32bitmode");
3137
ba92f887
MR
3138 if (e_flags & EF_MIPS_NAN2008)
3139 strcat (buf, ", nan2008");
3140
fef1b0b3
SE
3141 if (e_flags & EF_MIPS_FP64)
3142 strcat (buf, ", fp64");
3143
156c2f8b
NC
3144 switch ((e_flags & EF_MIPS_MACH))
3145 {
3146 case E_MIPS_MACH_3900: strcat (buf, ", 3900"); break;
3147 case E_MIPS_MACH_4010: strcat (buf, ", 4010"); break;
3148 case E_MIPS_MACH_4100: strcat (buf, ", 4100"); break;
156c2f8b 3149 case E_MIPS_MACH_4111: strcat (buf, ", 4111"); break;
810dfa6e
L
3150 case E_MIPS_MACH_4120: strcat (buf, ", 4120"); break;
3151 case E_MIPS_MACH_4650: strcat (buf, ", 4650"); break;
3152 case E_MIPS_MACH_5400: strcat (buf, ", 5400"); break;
3153 case E_MIPS_MACH_5500: strcat (buf, ", 5500"); break;
c6c98b38 3154 case E_MIPS_MACH_SB1: strcat (buf, ", sb1"); break;
ebcb91b7 3155 case E_MIPS_MACH_9000: strcat (buf, ", 9000"); break;
350cc38d
MS
3156 case E_MIPS_MACH_LS2E: strcat (buf, ", loongson-2e"); break;
3157 case E_MIPS_MACH_LS2F: strcat (buf, ", loongson-2f"); break;
fd503541 3158 case E_MIPS_MACH_LS3A: strcat (buf, ", loongson-3a"); break;
05c6f050 3159 case E_MIPS_MACH_OCTEON: strcat (buf, ", octeon"); break;
67c2a3e8 3160 case E_MIPS_MACH_OCTEON2: strcat (buf, ", octeon2"); break;
d32e5c54 3161 case E_MIPS_MACH_OCTEON3: strcat (buf, ", octeon3"); break;
52b6b6b9 3162 case E_MIPS_MACH_XLR: strcat (buf, ", xlr"); break;
43521d43
TS
3163 case 0:
3164 /* We simply ignore the field in this case to avoid confusion:
3165 MIPS ELF does not specify EF_MIPS_MACH, it is a GNU
3166 extension. */
3167 break;
2b692964 3168 default: strcat (buf, _(", unknown CPU")); break;
156c2f8b 3169 }
43521d43
TS
3170
3171 switch ((e_flags & EF_MIPS_ABI))
3172 {
3173 case E_MIPS_ABI_O32: strcat (buf, ", o32"); break;
3174 case E_MIPS_ABI_O64: strcat (buf, ", o64"); break;
3175 case E_MIPS_ABI_EABI32: strcat (buf, ", eabi32"); break;
3176 case E_MIPS_ABI_EABI64: strcat (buf, ", eabi64"); break;
3177 case 0:
3178 /* We simply ignore the field in this case to avoid confusion:
3179 MIPS ELF does not specify EF_MIPS_ABI, it is a GNU extension.
3180 This means it is likely to be an o32 file, but not for
3181 sure. */
3182 break;
2b692964 3183 default: strcat (buf, _(", unknown ABI")); break;
43521d43
TS
3184 }
3185
3186 if (e_flags & EF_MIPS_ARCH_ASE_MDMX)
3187 strcat (buf, ", mdmx");
3188
3189 if (e_flags & EF_MIPS_ARCH_ASE_M16)
3190 strcat (buf, ", mips16");
3191
df58fc94
RS
3192 if (e_flags & EF_MIPS_ARCH_ASE_MICROMIPS)
3193 strcat (buf, ", micromips");
3194
43521d43
TS
3195 switch ((e_flags & EF_MIPS_ARCH))
3196 {
3197 case E_MIPS_ARCH_1: strcat (buf, ", mips1"); break;
3198 case E_MIPS_ARCH_2: strcat (buf, ", mips2"); break;
3199 case E_MIPS_ARCH_3: strcat (buf, ", mips3"); break;
3200 case E_MIPS_ARCH_4: strcat (buf, ", mips4"); break;
3201 case E_MIPS_ARCH_5: strcat (buf, ", mips5"); break;
3202 case E_MIPS_ARCH_32: strcat (buf, ", mips32"); break;
cb44e358 3203 case E_MIPS_ARCH_32R2: strcat (buf, ", mips32r2"); break;
7361da2c 3204 case E_MIPS_ARCH_32R6: strcat (buf, ", mips32r6"); break;
43521d43 3205 case E_MIPS_ARCH_64: strcat (buf, ", mips64"); break;
5f74bc13 3206 case E_MIPS_ARCH_64R2: strcat (buf, ", mips64r2"); break;
7361da2c 3207 case E_MIPS_ARCH_64R6: strcat (buf, ", mips64r6"); break;
2b692964 3208 default: strcat (buf, _(", unknown ISA")); break;
43521d43 3209 }
252b5132 3210 break;
351b4b40 3211
35c08157
KLC
3212 case EM_NDS32:
3213 decode_NDS32_machine_flags (e_flags, buf, sizeof buf);
3214 break;
3215
ccde1100
AO
3216 case EM_SH:
3217 switch ((e_flags & EF_SH_MACH_MASK))
3218 {
3219 case EF_SH1: strcat (buf, ", sh1"); break;
3220 case EF_SH2: strcat (buf, ", sh2"); break;
3221 case EF_SH3: strcat (buf, ", sh3"); break;
3222 case EF_SH_DSP: strcat (buf, ", sh-dsp"); break;
3223 case EF_SH3_DSP: strcat (buf, ", sh3-dsp"); break;
3224 case EF_SH4AL_DSP: strcat (buf, ", sh4al-dsp"); break;
3225 case EF_SH3E: strcat (buf, ", sh3e"); break;
3226 case EF_SH4: strcat (buf, ", sh4"); break;
3227 case EF_SH5: strcat (buf, ", sh5"); break;
3228 case EF_SH2E: strcat (buf, ", sh2e"); break;
3229 case EF_SH4A: strcat (buf, ", sh4a"); break;
1d70c7fb 3230 case EF_SH2A: strcat (buf, ", sh2a"); break;
ccde1100
AO
3231 case EF_SH4_NOFPU: strcat (buf, ", sh4-nofpu"); break;
3232 case EF_SH4A_NOFPU: strcat (buf, ", sh4a-nofpu"); break;
1d70c7fb 3233 case EF_SH2A_NOFPU: strcat (buf, ", sh2a-nofpu"); break;
0b92ab21
NH
3234 case EF_SH3_NOMMU: strcat (buf, ", sh3-nommu"); break;
3235 case EF_SH4_NOMMU_NOFPU: strcat (buf, ", sh4-nommu-nofpu"); break;
3236 case EF_SH2A_SH4_NOFPU: strcat (buf, ", sh2a-nofpu-or-sh4-nommu-nofpu"); break;
3237 case EF_SH2A_SH3_NOFPU: strcat (buf, ", sh2a-nofpu-or-sh3-nommu"); break;
3238 case EF_SH2A_SH4: strcat (buf, ", sh2a-or-sh4"); break;
3239 case EF_SH2A_SH3E: strcat (buf, ", sh2a-or-sh3e"); break;
2b692964 3240 default: strcat (buf, _(", unknown ISA")); break;
ccde1100
AO
3241 }
3242
cec6a5b8
MR
3243 if (e_flags & EF_SH_PIC)
3244 strcat (buf, ", pic");
3245
3246 if (e_flags & EF_SH_FDPIC)
3247 strcat (buf, ", fdpic");
ccde1100 3248 break;
948f632f 3249
73589c9d
CS
3250 case EM_OR1K:
3251 if (e_flags & EF_OR1K_NODELAY)
3252 strcat (buf, ", no delay");
3253 break;
57346661 3254
351b4b40
RH
3255 case EM_SPARCV9:
3256 if (e_flags & EF_SPARC_32PLUS)
3257 strcat (buf, ", v8+");
3258
3259 if (e_flags & EF_SPARC_SUN_US1)
d07faca2
RH
3260 strcat (buf, ", ultrasparcI");
3261
3262 if (e_flags & EF_SPARC_SUN_US3)
3263 strcat (buf, ", ultrasparcIII");
351b4b40
RH
3264
3265 if (e_flags & EF_SPARC_HAL_R1)
3266 strcat (buf, ", halr1");
3267
3268 if (e_flags & EF_SPARC_LEDATA)
3269 strcat (buf, ", ledata");
3270
3271 if ((e_flags & EF_SPARCV9_MM) == EF_SPARCV9_TSO)
3272 strcat (buf, ", tso");
3273
3274 if ((e_flags & EF_SPARCV9_MM) == EF_SPARCV9_PSO)
3275 strcat (buf, ", pso");
3276
3277 if ((e_flags & EF_SPARCV9_MM) == EF_SPARCV9_RMO)
3278 strcat (buf, ", rmo");
3279 break;
7d466069 3280
103f02d3
UD
3281 case EM_PARISC:
3282 switch (e_flags & EF_PARISC_ARCH)
3283 {
3284 case EFA_PARISC_1_0:
3285 strcpy (buf, ", PA-RISC 1.0");
3286 break;
3287 case EFA_PARISC_1_1:
3288 strcpy (buf, ", PA-RISC 1.1");
3289 break;
3290 case EFA_PARISC_2_0:
3291 strcpy (buf, ", PA-RISC 2.0");
3292 break;
3293 default:
3294 break;
3295 }
3296 if (e_flags & EF_PARISC_TRAPNIL)
3297 strcat (buf, ", trapnil");
3298 if (e_flags & EF_PARISC_EXT)
3299 strcat (buf, ", ext");
3300 if (e_flags & EF_PARISC_LSB)
3301 strcat (buf, ", lsb");
3302 if (e_flags & EF_PARISC_WIDE)
3303 strcat (buf, ", wide");
3304 if (e_flags & EF_PARISC_NO_KABP)
3305 strcat (buf, ", no kabp");
3306 if (e_flags & EF_PARISC_LAZYSWAP)
3307 strcat (buf, ", lazyswap");
30800947 3308 break;
76da6bbe 3309
7d466069 3310 case EM_PJ:
2b0337b0 3311 case EM_PJ_OLD:
7d466069
ILT
3312 if ((e_flags & EF_PICOJAVA_NEWCALLS) == EF_PICOJAVA_NEWCALLS)
3313 strcat (buf, ", new calling convention");
3314
3315 if ((e_flags & EF_PICOJAVA_GNUCALLS) == EF_PICOJAVA_GNUCALLS)
3316 strcat (buf, ", gnu calling convention");
3317 break;
4d6ed7c8
NC
3318
3319 case EM_IA_64:
3320 if ((e_flags & EF_IA_64_ABI64))
3321 strcat (buf, ", 64-bit");
3322 else
3323 strcat (buf, ", 32-bit");
3324 if ((e_flags & EF_IA_64_REDUCEDFP))
3325 strcat (buf, ", reduced fp model");
3326 if ((e_flags & EF_IA_64_NOFUNCDESC_CONS_GP))
3327 strcat (buf, ", no function descriptors, constant gp");
3328 else if ((e_flags & EF_IA_64_CONS_GP))
3329 strcat (buf, ", constant gp");
3330 if ((e_flags & EF_IA_64_ABSOLUTE))
3331 strcat (buf, ", absolute");
28f997cf
TG
3332 if (elf_header.e_ident[EI_OSABI] == ELFOSABI_OPENVMS)
3333 {
3334 if ((e_flags & EF_IA_64_VMS_LINKAGES))
3335 strcat (buf, ", vms_linkages");
3336 switch ((e_flags & EF_IA_64_VMS_COMCOD))
3337 {
3338 case EF_IA_64_VMS_COMCOD_SUCCESS:
3339 break;
3340 case EF_IA_64_VMS_COMCOD_WARNING:
3341 strcat (buf, ", warning");
3342 break;
3343 case EF_IA_64_VMS_COMCOD_ERROR:
3344 strcat (buf, ", error");
3345 break;
3346 case EF_IA_64_VMS_COMCOD_ABORT:
3347 strcat (buf, ", abort");
3348 break;
3349 default:
bee0ee85
NC
3350 warn (_("Unrecognised IA64 VMS Command Code: %x\n"),
3351 e_flags & EF_IA_64_VMS_COMCOD);
3352 strcat (buf, ", <unknown>");
28f997cf
TG
3353 }
3354 }
4d6ed7c8 3355 break;
179d3252
JT
3356
3357 case EM_VAX:
3358 if ((e_flags & EF_VAX_NONPIC))
3359 strcat (buf, ", non-PIC");
3360 if ((e_flags & EF_VAX_DFLOAT))
3361 strcat (buf, ", D-Float");
3362 if ((e_flags & EF_VAX_GFLOAT))
3363 strcat (buf, ", G-Float");
3364 break;
c7927a3c 3365
619ed720
EB
3366 case EM_VISIUM:
3367 if (e_flags & EF_VISIUM_ARCH_MCM)
3368 strcat (buf, ", mcm");
3369 else if (e_flags & EF_VISIUM_ARCH_MCM24)
3370 strcat (buf, ", mcm24");
3371 if (e_flags & EF_VISIUM_ARCH_GR6)
3372 strcat (buf, ", gr6");
3373 break;
3374
4046d87a 3375 case EM_RL78:
1740ba0c
NC
3376 switch (e_flags & E_FLAG_RL78_CPU_MASK)
3377 {
3378 case E_FLAG_RL78_ANY_CPU: break;
3379 case E_FLAG_RL78_G10: strcat (buf, ", G10"); break;
3380 case E_FLAG_RL78_G13: strcat (buf, ", G13"); break;
3381 case E_FLAG_RL78_G14: strcat (buf, ", G14"); break;
3382 }
856ea05c
KP
3383 if (e_flags & E_FLAG_RL78_64BIT_DOUBLES)
3384 strcat (buf, ", 64-bit doubles");
4046d87a 3385 break;
0b4362b0 3386
c7927a3c
NC
3387 case EM_RX:
3388 if (e_flags & E_FLAG_RX_64BIT_DOUBLES)
3389 strcat (buf, ", 64-bit doubles");
3390 if (e_flags & E_FLAG_RX_DSP)
dd24e3da 3391 strcat (buf, ", dsp");
d4cb0ea0 3392 if (e_flags & E_FLAG_RX_PID)
0b4362b0 3393 strcat (buf, ", pid");
708e2187
NC
3394 if (e_flags & E_FLAG_RX_ABI)
3395 strcat (buf, ", RX ABI");
3525236c
NC
3396 if (e_flags & E_FLAG_RX_SINSNS_SET)
3397 strcat (buf, e_flags & E_FLAG_RX_SINSNS_YES
3398 ? ", uses String instructions" : ", bans String instructions");
a117b0a5
YS
3399 if (e_flags & E_FLAG_RX_V2)
3400 strcat (buf, ", V2");
d4cb0ea0 3401 break;
55786da2
AK
3402
3403 case EM_S390:
3404 if (e_flags & EF_S390_HIGH_GPRS)
3405 strcat (buf, ", highgprs");
d4cb0ea0 3406 break;
40b36596
JM
3407
3408 case EM_TI_C6000:
3409 if ((e_flags & EF_C6000_REL))
3410 strcat (buf, ", relocatable module");
d4cb0ea0 3411 break;
13761a11
NC
3412
3413 case EM_MSP430:
3414 strcat (buf, _(": architecture variant: "));
3415 switch (e_flags & EF_MSP430_MACH)
3416 {
3417 case E_MSP430_MACH_MSP430x11: strcat (buf, "MSP430x11"); break;
3418 case E_MSP430_MACH_MSP430x11x1 : strcat (buf, "MSP430x11x1 "); break;
3419 case E_MSP430_MACH_MSP430x12: strcat (buf, "MSP430x12"); break;
3420 case E_MSP430_MACH_MSP430x13: strcat (buf, "MSP430x13"); break;
3421 case E_MSP430_MACH_MSP430x14: strcat (buf, "MSP430x14"); break;
3422 case E_MSP430_MACH_MSP430x15: strcat (buf, "MSP430x15"); break;
3423 case E_MSP430_MACH_MSP430x16: strcat (buf, "MSP430x16"); break;
3424 case E_MSP430_MACH_MSP430x31: strcat (buf, "MSP430x31"); break;
3425 case E_MSP430_MACH_MSP430x32: strcat (buf, "MSP430x32"); break;
3426 case E_MSP430_MACH_MSP430x33: strcat (buf, "MSP430x33"); break;
3427 case E_MSP430_MACH_MSP430x41: strcat (buf, "MSP430x41"); break;
3428 case E_MSP430_MACH_MSP430x42: strcat (buf, "MSP430x42"); break;
3429 case E_MSP430_MACH_MSP430x43: strcat (buf, "MSP430x43"); break;
3430 case E_MSP430_MACH_MSP430x44: strcat (buf, "MSP430x44"); break;
3431 case E_MSP430_MACH_MSP430X : strcat (buf, "MSP430X"); break;
3432 default:
3433 strcat (buf, _(": unknown")); break;
3434 }
3435
3436 if (e_flags & ~ EF_MSP430_MACH)
3437 strcat (buf, _(": unknown extra flag bits also present"));
252b5132
RH
3438 }
3439 }
3440
3441 return buf;
3442}
3443
252b5132 3444static const char *
d3ba0551
AM
3445get_osabi_name (unsigned int osabi)
3446{
3447 static char buff[32];
3448
3449 switch (osabi)
3450 {
3451 case ELFOSABI_NONE: return "UNIX - System V";
3452 case ELFOSABI_HPUX: return "UNIX - HP-UX";
3453 case ELFOSABI_NETBSD: return "UNIX - NetBSD";
9c55345c 3454 case ELFOSABI_GNU: return "UNIX - GNU";
d3ba0551
AM
3455 case ELFOSABI_SOLARIS: return "UNIX - Solaris";
3456 case ELFOSABI_AIX: return "UNIX - AIX";
3457 case ELFOSABI_IRIX: return "UNIX - IRIX";
3458 case ELFOSABI_FREEBSD: return "UNIX - FreeBSD";
3459 case ELFOSABI_TRU64: return "UNIX - TRU64";
3460 case ELFOSABI_MODESTO: return "Novell - Modesto";
3461 case ELFOSABI_OPENBSD: return "UNIX - OpenBSD";
3462 case ELFOSABI_OPENVMS: return "VMS - OpenVMS";
3463 case ELFOSABI_NSK: return "HP - Non-Stop Kernel";
3b26c801 3464 case ELFOSABI_AROS: return "AROS";
11636f9e 3465 case ELFOSABI_FENIXOS: return "FenixOS";
d3ba0551 3466 default:
40b36596
JM
3467 if (osabi >= 64)
3468 switch (elf_header.e_machine)
3469 {
3470 case EM_ARM:
3471 switch (osabi)
3472 {
3473 case ELFOSABI_ARM: return "ARM";
3474 default:
3475 break;
3476 }
3477 break;
3478
3479 case EM_MSP430:
3480 case EM_MSP430_OLD:
619ed720 3481 case EM_VISIUM:
40b36596
JM
3482 switch (osabi)
3483 {
3484 case ELFOSABI_STANDALONE: return _("Standalone App");
3485 default:
3486 break;
3487 }
3488 break;
3489
3490 case EM_TI_C6000:
3491 switch (osabi)
3492 {
3493 case ELFOSABI_C6000_ELFABI: return _("Bare-metal C6000");
3494 case ELFOSABI_C6000_LINUX: return "Linux C6000";
3495 default:
3496 break;
3497 }
3498 break;
3499
3500 default:
3501 break;
3502 }
e9e44622 3503 snprintf (buff, sizeof (buff), _("<unknown: %x>"), osabi);
d3ba0551
AM
3504 return buff;
3505 }
3506}
3507
a06ea964
NC
3508static const char *
3509get_aarch64_segment_type (unsigned long type)
3510{
3511 switch (type)
3512 {
3513 case PT_AARCH64_ARCHEXT:
3514 return "AARCH64_ARCHEXT";
3515 default:
3516 break;
3517 }
3518
3519 return NULL;
3520}
3521
b294bdf8
MM
3522static const char *
3523get_arm_segment_type (unsigned long type)
3524{
3525 switch (type)
3526 {
3527 case PT_ARM_EXIDX:
3528 return "EXIDX";
3529 default:
3530 break;
3531 }
3532
3533 return NULL;
3534}
3535
d3ba0551
AM
3536static const char *
3537get_mips_segment_type (unsigned long type)
252b5132
RH
3538{
3539 switch (type)
3540 {
3541 case PT_MIPS_REGINFO:
3542 return "REGINFO";
3543 case PT_MIPS_RTPROC:
3544 return "RTPROC";
3545 case PT_MIPS_OPTIONS:
3546 return "OPTIONS";
351cdf24
MF
3547 case PT_MIPS_ABIFLAGS:
3548 return "ABIFLAGS";
252b5132
RH
3549 default:
3550 break;
3551 }
3552
3553 return NULL;
3554}
3555
103f02d3 3556static const char *
d3ba0551 3557get_parisc_segment_type (unsigned long type)
103f02d3
UD
3558{
3559 switch (type)
3560 {
3561 case PT_HP_TLS: return "HP_TLS";
3562 case PT_HP_CORE_NONE: return "HP_CORE_NONE";
3563 case PT_HP_CORE_VERSION: return "HP_CORE_VERSION";
3564 case PT_HP_CORE_KERNEL: return "HP_CORE_KERNEL";
3565 case PT_HP_CORE_COMM: return "HP_CORE_COMM";
3566 case PT_HP_CORE_PROC: return "HP_CORE_PROC";
3567 case PT_HP_CORE_LOADABLE: return "HP_CORE_LOADABLE";
3568 case PT_HP_CORE_STACK: return "HP_CORE_STACK";
3569 case PT_HP_CORE_SHM: return "HP_CORE_SHM";
3570 case PT_HP_CORE_MMF: return "HP_CORE_MMF";
3571 case PT_HP_PARALLEL: return "HP_PARALLEL";
3572 case PT_HP_FASTBIND: return "HP_FASTBIND";
eec8f817
DA
3573 case PT_HP_OPT_ANNOT: return "HP_OPT_ANNOT";
3574 case PT_HP_HSL_ANNOT: return "HP_HSL_ANNOT";
3575 case PT_HP_STACK: return "HP_STACK";
3576 case PT_HP_CORE_UTSNAME: return "HP_CORE_UTSNAME";
103f02d3
UD
3577 case PT_PARISC_ARCHEXT: return "PARISC_ARCHEXT";
3578 case PT_PARISC_UNWIND: return "PARISC_UNWIND";
61472819 3579 case PT_PARISC_WEAKORDER: return "PARISC_WEAKORDER";
103f02d3
UD
3580 default:
3581 break;
3582 }
3583
3584 return NULL;
3585}
3586
4d6ed7c8 3587static const char *
d3ba0551 3588get_ia64_segment_type (unsigned long type)
4d6ed7c8
NC
3589{
3590 switch (type)
3591 {
3592 case PT_IA_64_ARCHEXT: return "IA_64_ARCHEXT";
3593 case PT_IA_64_UNWIND: return "IA_64_UNWIND";
00428cca
AM
3594 case PT_HP_TLS: return "HP_TLS";
3595 case PT_IA_64_HP_OPT_ANOT: return "HP_OPT_ANNOT";
3596 case PT_IA_64_HP_HSL_ANOT: return "HP_HSL_ANNOT";
3597 case PT_IA_64_HP_STACK: return "HP_STACK";
4d6ed7c8
NC
3598 default:
3599 break;
3600 }
3601
3602 return NULL;
3603}
3604
40b36596
JM
3605static const char *
3606get_tic6x_segment_type (unsigned long type)
3607{
3608 switch (type)
3609 {
3610 case PT_C6000_PHATTR: return "C6000_PHATTR";
3611 default:
3612 break;
3613 }
3614
3615 return NULL;
3616}
3617
252b5132 3618static const char *
d3ba0551 3619get_segment_type (unsigned long p_type)
252b5132 3620{
b34976b6 3621 static char buff[32];
252b5132
RH
3622
3623 switch (p_type)
3624 {
b34976b6
AM
3625 case PT_NULL: return "NULL";
3626 case PT_LOAD: return "LOAD";
252b5132 3627 case PT_DYNAMIC: return "DYNAMIC";
b34976b6
AM
3628 case PT_INTERP: return "INTERP";
3629 case PT_NOTE: return "NOTE";
3630 case PT_SHLIB: return "SHLIB";
3631 case PT_PHDR: return "PHDR";
13ae64f3 3632 case PT_TLS: return "TLS";
252b5132 3633
65765700
JJ
3634 case PT_GNU_EH_FRAME:
3635 return "GNU_EH_FRAME";
2b05f1b7 3636 case PT_GNU_STACK: return "GNU_STACK";
8c37241b 3637 case PT_GNU_RELRO: return "GNU_RELRO";
65765700 3638
252b5132
RH
3639 default:
3640 if ((p_type >= PT_LOPROC) && (p_type <= PT_HIPROC))
3641 {
2cf0635d 3642 const char * result;
103f02d3 3643
252b5132
RH
3644 switch (elf_header.e_machine)
3645 {
a06ea964
NC
3646 case EM_AARCH64:
3647 result = get_aarch64_segment_type (p_type);
3648 break;
b294bdf8
MM
3649 case EM_ARM:
3650 result = get_arm_segment_type (p_type);
3651 break;
252b5132 3652 case EM_MIPS:
4fe85591 3653 case EM_MIPS_RS3_LE:
252b5132
RH
3654 result = get_mips_segment_type (p_type);
3655 break;
103f02d3
UD
3656 case EM_PARISC:
3657 result = get_parisc_segment_type (p_type);
3658 break;
4d6ed7c8
NC
3659 case EM_IA_64:
3660 result = get_ia64_segment_type (p_type);
3661 break;
40b36596
JM
3662 case EM_TI_C6000:
3663 result = get_tic6x_segment_type (p_type);
3664 break;
252b5132
RH
3665 default:
3666 result = NULL;
3667 break;
3668 }
103f02d3 3669
252b5132
RH
3670 if (result != NULL)
3671 return result;
103f02d3 3672
252b5132
RH
3673 sprintf (buff, "LOPROC+%lx", p_type - PT_LOPROC);
3674 }
3675 else if ((p_type >= PT_LOOS) && (p_type <= PT_HIOS))
103f02d3 3676 {
2cf0635d 3677 const char * result;
103f02d3
UD
3678
3679 switch (elf_header.e_machine)
3680 {
3681 case EM_PARISC:
3682 result = get_parisc_segment_type (p_type);
3683 break;
00428cca
AM
3684 case EM_IA_64:
3685 result = get_ia64_segment_type (p_type);
3686 break;
103f02d3
UD
3687 default:
3688 result = NULL;
3689 break;
3690 }
3691
3692 if (result != NULL)
3693 return result;
3694
3695 sprintf (buff, "LOOS+%lx", p_type - PT_LOOS);
3696 }
252b5132 3697 else
e9e44622 3698 snprintf (buff, sizeof (buff), _("<unknown>: %lx"), p_type);
252b5132
RH
3699
3700 return buff;
3701 }
3702}
3703
3704static const char *
d3ba0551 3705get_mips_section_type_name (unsigned int sh_type)
252b5132
RH
3706{
3707 switch (sh_type)
3708 {
b34976b6
AM
3709 case SHT_MIPS_LIBLIST: return "MIPS_LIBLIST";
3710 case SHT_MIPS_MSYM: return "MIPS_MSYM";
3711 case SHT_MIPS_CONFLICT: return "MIPS_CONFLICT";
3712 case SHT_MIPS_GPTAB: return "MIPS_GPTAB";
3713 case SHT_MIPS_UCODE: return "MIPS_UCODE";
3714 case SHT_MIPS_DEBUG: return "MIPS_DEBUG";
3715 case SHT_MIPS_REGINFO: return "MIPS_REGINFO";
3716 case SHT_MIPS_PACKAGE: return "MIPS_PACKAGE";
3717 case SHT_MIPS_PACKSYM: return "MIPS_PACKSYM";
3718 case SHT_MIPS_RELD: return "MIPS_RELD";
3719 case SHT_MIPS_IFACE: return "MIPS_IFACE";
3720 case SHT_MIPS_CONTENT: return "MIPS_CONTENT";
3721 case SHT_MIPS_OPTIONS: return "MIPS_OPTIONS";
3722 case SHT_MIPS_SHDR: return "MIPS_SHDR";
3723 case SHT_MIPS_FDESC: return "MIPS_FDESC";
3724 case SHT_MIPS_EXTSYM: return "MIPS_EXTSYM";
3725 case SHT_MIPS_DENSE: return "MIPS_DENSE";
3726 case SHT_MIPS_PDESC: return "MIPS_PDESC";
3727 case SHT_MIPS_LOCSYM: return "MIPS_LOCSYM";
3728 case SHT_MIPS_AUXSYM: return "MIPS_AUXSYM";
3729 case SHT_MIPS_OPTSYM: return "MIPS_OPTSYM";
3730 case SHT_MIPS_LOCSTR: return "MIPS_LOCSTR";
3731 case SHT_MIPS_LINE: return "MIPS_LINE";
3732 case SHT_MIPS_RFDESC: return "MIPS_RFDESC";
3733 case SHT_MIPS_DELTASYM: return "MIPS_DELTASYM";
3734 case SHT_MIPS_DELTAINST: return "MIPS_DELTAINST";
3735 case SHT_MIPS_DELTACLASS: return "MIPS_DELTACLASS";
3736 case SHT_MIPS_DWARF: return "MIPS_DWARF";
3737 case SHT_MIPS_DELTADECL: return "MIPS_DELTADECL";
3738 case SHT_MIPS_SYMBOL_LIB: return "MIPS_SYMBOL_LIB";
3739 case SHT_MIPS_EVENTS: return "MIPS_EVENTS";
3740 case SHT_MIPS_TRANSLATE: return "MIPS_TRANSLATE";
3741 case SHT_MIPS_PIXIE: return "MIPS_PIXIE";
3742 case SHT_MIPS_XLATE: return "MIPS_XLATE";
3743 case SHT_MIPS_XLATE_DEBUG: return "MIPS_XLATE_DEBUG";
3744 case SHT_MIPS_WHIRL: return "MIPS_WHIRL";
3745 case SHT_MIPS_EH_REGION: return "MIPS_EH_REGION";
3746 case SHT_MIPS_XLATE_OLD: return "MIPS_XLATE_OLD";
252b5132 3747 case SHT_MIPS_PDR_EXCEPTION: return "MIPS_PDR_EXCEPTION";
351cdf24 3748 case SHT_MIPS_ABIFLAGS: return "MIPS_ABIFLAGS";
252b5132
RH
3749 default:
3750 break;
3751 }
3752 return NULL;
3753}
3754
103f02d3 3755static const char *
d3ba0551 3756get_parisc_section_type_name (unsigned int sh_type)
103f02d3
UD
3757{
3758 switch (sh_type)
3759 {
3760 case SHT_PARISC_EXT: return "PARISC_EXT";
3761 case SHT_PARISC_UNWIND: return "PARISC_UNWIND";
3762 case SHT_PARISC_DOC: return "PARISC_DOC";
eec8f817
DA
3763 case SHT_PARISC_ANNOT: return "PARISC_ANNOT";
3764 case SHT_PARISC_SYMEXTN: return "PARISC_SYMEXTN";
3765 case SHT_PARISC_STUBS: return "PARISC_STUBS";
61472819 3766 case SHT_PARISC_DLKM: return "PARISC_DLKM";
103f02d3
UD
3767 default:
3768 break;
3769 }
3770 return NULL;
3771}
3772
4d6ed7c8 3773static const char *
d3ba0551 3774get_ia64_section_type_name (unsigned int sh_type)
4d6ed7c8 3775{
18bd398b 3776 /* If the top 8 bits are 0x78 the next 8 are the os/abi ID. */
ecc51f48
NC
3777 if ((sh_type & 0xFF000000) == SHT_IA_64_LOPSREG)
3778 return get_osabi_name ((sh_type & 0x00FF0000) >> 16);
0de14b54 3779
4d6ed7c8
NC
3780 switch (sh_type)
3781 {
148b93f2
NC
3782 case SHT_IA_64_EXT: return "IA_64_EXT";
3783 case SHT_IA_64_UNWIND: return "IA_64_UNWIND";
3784 case SHT_IA_64_PRIORITY_INIT: return "IA_64_PRIORITY_INIT";
3785 case SHT_IA_64_VMS_TRACE: return "VMS_TRACE";
3786 case SHT_IA_64_VMS_TIE_SIGNATURES: return "VMS_TIE_SIGNATURES";
3787 case SHT_IA_64_VMS_DEBUG: return "VMS_DEBUG";
3788 case SHT_IA_64_VMS_DEBUG_STR: return "VMS_DEBUG_STR";
3789 case SHT_IA_64_VMS_LINKAGES: return "VMS_LINKAGES";
3790 case SHT_IA_64_VMS_SYMBOL_VECTOR: return "VMS_SYMBOL_VECTOR";
3791 case SHT_IA_64_VMS_FIXUP: return "VMS_FIXUP";
4d6ed7c8
NC
3792 default:
3793 break;
3794 }
3795 return NULL;
3796}
3797
d2b2c203
DJ
3798static const char *
3799get_x86_64_section_type_name (unsigned int sh_type)
3800{
3801 switch (sh_type)
3802 {
3803 case SHT_X86_64_UNWIND: return "X86_64_UNWIND";
3804 default:
3805 break;
3806 }
3807 return NULL;
3808}
3809
a06ea964
NC
3810static const char *
3811get_aarch64_section_type_name (unsigned int sh_type)
3812{
3813 switch (sh_type)
3814 {
3815 case SHT_AARCH64_ATTRIBUTES:
3816 return "AARCH64_ATTRIBUTES";
3817 default:
3818 break;
3819 }
3820 return NULL;
3821}
3822
40a18ebd
NC
3823static const char *
3824get_arm_section_type_name (unsigned int sh_type)
3825{
3826 switch (sh_type)
3827 {
7f6fed87
NC
3828 case SHT_ARM_EXIDX: return "ARM_EXIDX";
3829 case SHT_ARM_PREEMPTMAP: return "ARM_PREEMPTMAP";
3830 case SHT_ARM_ATTRIBUTES: return "ARM_ATTRIBUTES";
3831 case SHT_ARM_DEBUGOVERLAY: return "ARM_DEBUGOVERLAY";
3832 case SHT_ARM_OVERLAYSECTION: return "ARM_OVERLAYSECTION";
40a18ebd
NC
3833 default:
3834 break;
3835 }
3836 return NULL;
3837}
3838
40b36596
JM
3839static const char *
3840get_tic6x_section_type_name (unsigned int sh_type)
3841{
3842 switch (sh_type)
3843 {
3844 case SHT_C6000_UNWIND:
3845 return "C6000_UNWIND";
3846 case SHT_C6000_PREEMPTMAP:
3847 return "C6000_PREEMPTMAP";
3848 case SHT_C6000_ATTRIBUTES:
3849 return "C6000_ATTRIBUTES";
3850 case SHT_TI_ICODE:
3851 return "TI_ICODE";
3852 case SHT_TI_XREF:
3853 return "TI_XREF";
3854 case SHT_TI_HANDLER:
3855 return "TI_HANDLER";
3856 case SHT_TI_INITINFO:
3857 return "TI_INITINFO";
3858 case SHT_TI_PHATTRS:
3859 return "TI_PHATTRS";
3860 default:
3861 break;
3862 }
3863 return NULL;
3864}
3865
13761a11
NC
3866static const char *
3867get_msp430x_section_type_name (unsigned int sh_type)
3868{
3869 switch (sh_type)
3870 {
3871 case SHT_MSP430_SEC_FLAGS: return "MSP430_SEC_FLAGS";
3872 case SHT_MSP430_SYM_ALIASES: return "MSP430_SYM_ALIASES";
3873 case SHT_MSP430_ATTRIBUTES: return "MSP430_ATTRIBUTES";
3874 default: return NULL;
3875 }
3876}
3877
685080f2
NC
3878static const char *
3879get_v850_section_type_name (unsigned int sh_type)
3880{
3881 switch (sh_type)
3882 {
3883 case SHT_V850_SCOMMON: return "V850 Small Common";
3884 case SHT_V850_TCOMMON: return "V850 Tiny Common";
3885 case SHT_V850_ZCOMMON: return "V850 Zero Common";
3886 case SHT_RENESAS_IOP: return "RENESAS IOP";
3887 case SHT_RENESAS_INFO: return "RENESAS INFO";
3888 default: return NULL;
3889 }
3890}
3891
252b5132 3892static const char *
d3ba0551 3893get_section_type_name (unsigned int sh_type)
252b5132 3894{
b34976b6 3895 static char buff[32];
9fb71ee4 3896 const char * result;
252b5132
RH
3897
3898 switch (sh_type)
3899 {
3900 case SHT_NULL: return "NULL";
3901 case SHT_PROGBITS: return "PROGBITS";
3902 case SHT_SYMTAB: return "SYMTAB";
3903 case SHT_STRTAB: return "STRTAB";
3904 case SHT_RELA: return "RELA";
3905 case SHT_HASH: return "HASH";
3906 case SHT_DYNAMIC: return "DYNAMIC";
3907 case SHT_NOTE: return "NOTE";
3908 case SHT_NOBITS: return "NOBITS";
3909 case SHT_REL: return "REL";
3910 case SHT_SHLIB: return "SHLIB";
3911 case SHT_DYNSYM: return "DYNSYM";
d1133906
NC
3912 case SHT_INIT_ARRAY: return "INIT_ARRAY";
3913 case SHT_FINI_ARRAY: return "FINI_ARRAY";
3914 case SHT_PREINIT_ARRAY: return "PREINIT_ARRAY";
fdc90cb4 3915 case SHT_GNU_HASH: return "GNU_HASH";
93ebe586
NC
3916 case SHT_GROUP: return "GROUP";
3917 case SHT_SYMTAB_SHNDX: return "SYMTAB SECTION INDICIES";
252b5132
RH
3918 case SHT_GNU_verdef: return "VERDEF";
3919 case SHT_GNU_verneed: return "VERNEED";
3920 case SHT_GNU_versym: return "VERSYM";
b34976b6
AM
3921 case 0x6ffffff0: return "VERSYM";
3922 case 0x6ffffffc: return "VERDEF";
252b5132
RH
3923 case 0x7ffffffd: return "AUXILIARY";
3924 case 0x7fffffff: return "FILTER";
047b2264 3925 case SHT_GNU_LIBLIST: return "GNU_LIBLIST";
252b5132
RH
3926
3927 default:
3928 if ((sh_type >= SHT_LOPROC) && (sh_type <= SHT_HIPROC))
3929 {
252b5132
RH
3930 switch (elf_header.e_machine)
3931 {
3932 case EM_MIPS:
4fe85591 3933 case EM_MIPS_RS3_LE:
252b5132
RH
3934 result = get_mips_section_type_name (sh_type);
3935 break;
103f02d3
UD
3936 case EM_PARISC:
3937 result = get_parisc_section_type_name (sh_type);
3938 break;
4d6ed7c8
NC
3939 case EM_IA_64:
3940 result = get_ia64_section_type_name (sh_type);
3941 break;
d2b2c203 3942 case EM_X86_64:
8a9036a4 3943 case EM_L1OM:
7a9068fe 3944 case EM_K1OM:
d2b2c203
DJ
3945 result = get_x86_64_section_type_name (sh_type);
3946 break;
a06ea964
NC
3947 case EM_AARCH64:
3948 result = get_aarch64_section_type_name (sh_type);
3949 break;
40a18ebd
NC
3950 case EM_ARM:
3951 result = get_arm_section_type_name (sh_type);
3952 break;
40b36596
JM
3953 case EM_TI_C6000:
3954 result = get_tic6x_section_type_name (sh_type);
3955 break;
13761a11
NC
3956 case EM_MSP430:
3957 result = get_msp430x_section_type_name (sh_type);
3958 break;
685080f2
NC
3959 case EM_V800:
3960 case EM_V850:
3961 case EM_CYGNUS_V850:
3962 result = get_v850_section_type_name (sh_type);
3963 break;
252b5132
RH
3964 default:
3965 result = NULL;
3966 break;
3967 }
3968
3969 if (result != NULL)
3970 return result;
3971
9fb71ee4 3972 sprintf (buff, "LOPROC+%#x", sh_type - SHT_LOPROC);
252b5132
RH
3973 }
3974 else if ((sh_type >= SHT_LOOS) && (sh_type <= SHT_HIOS))
148b93f2 3975 {
148b93f2
NC
3976 switch (elf_header.e_machine)
3977 {
3978 case EM_IA_64:
3979 result = get_ia64_section_type_name (sh_type);
3980 break;
3981 default:
3982 result = NULL;
3983 break;
3984 }
3985
3986 if (result != NULL)
3987 return result;
3988
9fb71ee4 3989 sprintf (buff, "LOOS+%#x", sh_type - SHT_LOOS);
148b93f2 3990 }
252b5132 3991 else if ((sh_type >= SHT_LOUSER) && (sh_type <= SHT_HIUSER))
685080f2
NC
3992 {
3993 switch (elf_header.e_machine)
3994 {
3995 case EM_V800:
3996 case EM_V850:
3997 case EM_CYGNUS_V850:
9fb71ee4 3998 result = get_v850_section_type_name (sh_type);
685080f2 3999 default:
9fb71ee4 4000 result = NULL;
685080f2
NC
4001 break;
4002 }
4003
9fb71ee4
NC
4004 if (result != NULL)
4005 return result;
4006
4007 sprintf (buff, "LOUSER+%#x", sh_type - SHT_LOUSER);
685080f2 4008 }
252b5132 4009 else
a7dbfd1c
NC
4010 /* This message is probably going to be displayed in a 15
4011 character wide field, so put the hex value first. */
4012 snprintf (buff, sizeof (buff), _("%08x: <unknown>"), sh_type);
103f02d3 4013
252b5132
RH
4014 return buff;
4015 }
4016}
4017
2979dc34 4018#define OPTION_DEBUG_DUMP 512
2c610e4b 4019#define OPTION_DYN_SYMS 513
fd2f0033
TT
4020#define OPTION_DWARF_DEPTH 514
4021#define OPTION_DWARF_START 515
4723351a 4022#define OPTION_DWARF_CHECK 516
2979dc34 4023
85b1c36d 4024static struct option options[] =
252b5132 4025{
b34976b6 4026 {"all", no_argument, 0, 'a'},
252b5132
RH
4027 {"file-header", no_argument, 0, 'h'},
4028 {"program-headers", no_argument, 0, 'l'},
b34976b6
AM
4029 {"headers", no_argument, 0, 'e'},
4030 {"histogram", no_argument, 0, 'I'},
4031 {"segments", no_argument, 0, 'l'},
4032 {"sections", no_argument, 0, 'S'},
252b5132 4033 {"section-headers", no_argument, 0, 'S'},
f5842774 4034 {"section-groups", no_argument, 0, 'g'},
5477e8a0 4035 {"section-details", no_argument, 0, 't'},
595cf52e 4036 {"full-section-name",no_argument, 0, 'N'},
b34976b6
AM
4037 {"symbols", no_argument, 0, 's'},
4038 {"syms", no_argument, 0, 's'},
2c610e4b 4039 {"dyn-syms", no_argument, 0, OPTION_DYN_SYMS},
b34976b6
AM
4040 {"relocs", no_argument, 0, 'r'},
4041 {"notes", no_argument, 0, 'n'},
4042 {"dynamic", no_argument, 0, 'd'},
a952a375 4043 {"arch-specific", no_argument, 0, 'A'},
252b5132
RH
4044 {"version-info", no_argument, 0, 'V'},
4045 {"use-dynamic", no_argument, 0, 'D'},
09c11c86 4046 {"unwind", no_argument, 0, 'u'},
4145f1d5 4047 {"archive-index", no_argument, 0, 'c'},
b34976b6 4048 {"hex-dump", required_argument, 0, 'x'},
cf13d699 4049 {"relocated-dump", required_argument, 0, 'R'},
09c11c86 4050 {"string-dump", required_argument, 0, 'p'},
0e602686 4051 {"decompress", no_argument, 0, 'z'},
252b5132
RH
4052#ifdef SUPPORT_DISASSEMBLY
4053 {"instruction-dump", required_argument, 0, 'i'},
4054#endif
cf13d699 4055 {"debug-dump", optional_argument, 0, OPTION_DEBUG_DUMP},
252b5132 4056
fd2f0033
TT
4057 {"dwarf-depth", required_argument, 0, OPTION_DWARF_DEPTH},
4058 {"dwarf-start", required_argument, 0, OPTION_DWARF_START},
4723351a 4059 {"dwarf-check", no_argument, 0, OPTION_DWARF_CHECK},
fd2f0033 4060
b34976b6
AM
4061 {"version", no_argument, 0, 'v'},
4062 {"wide", no_argument, 0, 'W'},
4063 {"help", no_argument, 0, 'H'},
4064 {0, no_argument, 0, 0}
252b5132
RH
4065};
4066
4067static void
2cf0635d 4068usage (FILE * stream)
252b5132 4069{
92f01d61
JM
4070 fprintf (stream, _("Usage: readelf <option(s)> elf-file(s)\n"));
4071 fprintf (stream, _(" Display information about the contents of ELF format files\n"));
4072 fprintf (stream, _(" Options are:\n\
8b53311e
NC
4073 -a --all Equivalent to: -h -l -S -s -r -d -V -A -I\n\
4074 -h --file-header Display the ELF file header\n\
4075 -l --program-headers Display the program headers\n\
4076 --segments An alias for --program-headers\n\
4077 -S --section-headers Display the sections' header\n\
4078 --sections An alias for --section-headers\n\
f5842774 4079 -g --section-groups Display the section groups\n\
5477e8a0 4080 -t --section-details Display the section details\n\
8b53311e
NC
4081 -e --headers Equivalent to: -h -l -S\n\
4082 -s --syms Display the symbol table\n\
3f08eb35 4083 --symbols An alias for --syms\n\
2c610e4b 4084 --dyn-syms Display the dynamic symbol table\n\
8b53311e
NC
4085 -n --notes Display the core notes (if present)\n\
4086 -r --relocs Display the relocations (if present)\n\
4087 -u --unwind Display the unwind info (if present)\n\
b2d38a17 4088 -d --dynamic Display the dynamic section (if present)\n\
8b53311e 4089 -V --version-info Display the version sections (if present)\n\
1b31d05e 4090 -A --arch-specific Display architecture specific information (if any)\n\
4145f1d5 4091 -c --archive-index Display the symbol/file index in an archive\n\
8b53311e 4092 -D --use-dynamic Use the dynamic section info when displaying symbols\n\
09c11c86
NC
4093 -x --hex-dump=<number|name>\n\
4094 Dump the contents of section <number|name> as bytes\n\
4095 -p --string-dump=<number|name>\n\
4096 Dump the contents of section <number|name> as strings\n\
cf13d699
NC
4097 -R --relocated-dump=<number|name>\n\
4098 Dump the contents of section <number|name> as relocated bytes\n\
0e602686 4099 -z --decompress Decompress section before dumping it\n\
f9f0e732 4100 -w[lLiaprmfFsoRt] or\n\
1ed06042 4101 --debug-dump[=rawline,=decodedline,=info,=abbrev,=pubnames,=aranges,=macro,=frames,\n\
6f875884 4102 =frames-interp,=str,=loc,=Ranges,=pubtypes,\n\
657d0d47
CC
4103 =gdb_index,=trace_info,=trace_abbrev,=trace_aranges,\n\
4104 =addr,=cu_index]\n\
8b53311e 4105 Display the contents of DWARF2 debug sections\n"));
fd2f0033
TT
4106 fprintf (stream, _("\
4107 --dwarf-depth=N Do not display DIEs at depth N or greater\n\
4108 --dwarf-start=N Display DIEs starting with N, at the same depth\n\
4109 or deeper\n"));
252b5132 4110#ifdef SUPPORT_DISASSEMBLY
92f01d61 4111 fprintf (stream, _("\
09c11c86
NC
4112 -i --instruction-dump=<number|name>\n\
4113 Disassemble the contents of section <number|name>\n"));
252b5132 4114#endif
92f01d61 4115 fprintf (stream, _("\
8b53311e
NC
4116 -I --histogram Display histogram of bucket list lengths\n\
4117 -W --wide Allow output width to exceed 80 characters\n\
07012eee 4118 @<file> Read options from <file>\n\
8b53311e
NC
4119 -H --help Display this information\n\
4120 -v --version Display the version number of readelf\n"));
1118d252 4121
92f01d61
JM
4122 if (REPORT_BUGS_TO[0] && stream == stdout)
4123 fprintf (stdout, _("Report bugs to %s\n"), REPORT_BUGS_TO);
252b5132 4124
92f01d61 4125 exit (stream == stdout ? 0 : 1);
252b5132
RH
4126}
4127
18bd398b
NC
4128/* Record the fact that the user wants the contents of section number
4129 SECTION to be displayed using the method(s) encoded as flags bits
4130 in TYPE. Note, TYPE can be zero if we are creating the array for
4131 the first time. */
4132
252b5132 4133static void
09c11c86 4134request_dump_bynumber (unsigned int section, dump_type type)
252b5132
RH
4135{
4136 if (section >= num_dump_sects)
4137 {
2cf0635d 4138 dump_type * new_dump_sects;
252b5132 4139
3f5e193b
NC
4140 new_dump_sects = (dump_type *) calloc (section + 1,
4141 sizeof (* dump_sects));
252b5132
RH
4142
4143 if (new_dump_sects == NULL)
591a748a 4144 error (_("Out of memory allocating dump request table.\n"));
252b5132
RH
4145 else
4146 {
4147 /* Copy current flag settings. */
09c11c86 4148 memcpy (new_dump_sects, dump_sects, num_dump_sects * sizeof (* dump_sects));
252b5132
RH
4149
4150 free (dump_sects);
4151
4152 dump_sects = new_dump_sects;
4153 num_dump_sects = section + 1;
4154 }
4155 }
4156
4157 if (dump_sects)
b34976b6 4158 dump_sects[section] |= type;
252b5132
RH
4159
4160 return;
4161}
4162
aef1f6d0
DJ
4163/* Request a dump by section name. */
4164
4165static void
2cf0635d 4166request_dump_byname (const char * section, dump_type type)
aef1f6d0 4167{
2cf0635d 4168 struct dump_list_entry * new_request;
aef1f6d0 4169
3f5e193b
NC
4170 new_request = (struct dump_list_entry *)
4171 malloc (sizeof (struct dump_list_entry));
aef1f6d0 4172 if (!new_request)
591a748a 4173 error (_("Out of memory allocating dump request table.\n"));
aef1f6d0
DJ
4174
4175 new_request->name = strdup (section);
4176 if (!new_request->name)
591a748a 4177 error (_("Out of memory allocating dump request table.\n"));
aef1f6d0
DJ
4178
4179 new_request->type = type;
4180
4181 new_request->next = dump_sects_byname;
4182 dump_sects_byname = new_request;
4183}
4184
cf13d699
NC
4185static inline void
4186request_dump (dump_type type)
4187{
4188 int section;
4189 char * cp;
4190
4191 do_dump++;
4192 section = strtoul (optarg, & cp, 0);
4193
4194 if (! *cp && section >= 0)
4195 request_dump_bynumber (section, type);
4196 else
4197 request_dump_byname (optarg, type);
4198}
4199
4200
252b5132 4201static void
2cf0635d 4202parse_args (int argc, char ** argv)
252b5132
RH
4203{
4204 int c;
4205
4206 if (argc < 2)
92f01d61 4207 usage (stderr);
252b5132
RH
4208
4209 while ((c = getopt_long
0e602686 4210 (argc, argv, "ADHINR:SVWacdeghi:lnp:rstuvw::x:z", options, NULL)) != EOF)
252b5132 4211 {
252b5132
RH
4212 switch (c)
4213 {
4214 case 0:
4215 /* Long options. */
4216 break;
4217 case 'H':
92f01d61 4218 usage (stdout);
252b5132
RH
4219 break;
4220
4221 case 'a':
b34976b6
AM
4222 do_syms++;
4223 do_reloc++;
4224 do_unwind++;
4225 do_dynamic++;
4226 do_header++;
4227 do_sections++;
f5842774 4228 do_section_groups++;
b34976b6
AM
4229 do_segments++;
4230 do_version++;
4231 do_histogram++;
4232 do_arch++;
4233 do_notes++;
252b5132 4234 break;
f5842774
L
4235 case 'g':
4236 do_section_groups++;
4237 break;
5477e8a0 4238 case 't':
595cf52e 4239 case 'N':
5477e8a0
L
4240 do_sections++;
4241 do_section_details++;
595cf52e 4242 break;
252b5132 4243 case 'e':
b34976b6
AM
4244 do_header++;
4245 do_sections++;
4246 do_segments++;
252b5132 4247 break;
a952a375 4248 case 'A':
b34976b6 4249 do_arch++;
a952a375 4250 break;
252b5132 4251 case 'D':
b34976b6 4252 do_using_dynamic++;
252b5132
RH
4253 break;
4254 case 'r':
b34976b6 4255 do_reloc++;
252b5132 4256 break;
4d6ed7c8 4257 case 'u':
b34976b6 4258 do_unwind++;
4d6ed7c8 4259 break;
252b5132 4260 case 'h':
b34976b6 4261 do_header++;
252b5132
RH
4262 break;
4263 case 'l':
b34976b6 4264 do_segments++;
252b5132
RH
4265 break;
4266 case 's':
b34976b6 4267 do_syms++;
252b5132
RH
4268 break;
4269 case 'S':
b34976b6 4270 do_sections++;
252b5132
RH
4271 break;
4272 case 'd':
b34976b6 4273 do_dynamic++;
252b5132 4274 break;
a952a375 4275 case 'I':
b34976b6 4276 do_histogram++;
a952a375 4277 break;
779fe533 4278 case 'n':
b34976b6 4279 do_notes++;
779fe533 4280 break;
4145f1d5
NC
4281 case 'c':
4282 do_archive_index++;
4283 break;
252b5132 4284 case 'x':
cf13d699 4285 request_dump (HEX_DUMP);
aef1f6d0 4286 break;
09c11c86 4287 case 'p':
cf13d699
NC
4288 request_dump (STRING_DUMP);
4289 break;
4290 case 'R':
4291 request_dump (RELOC_DUMP);
09c11c86 4292 break;
0e602686
NC
4293 case 'z':
4294 decompress_dumps++;
4295 break;
252b5132 4296 case 'w':
b34976b6 4297 do_dump++;
252b5132 4298 if (optarg == 0)
613ff48b
CC
4299 {
4300 do_debugging = 1;
4301 dwarf_select_sections_all ();
4302 }
252b5132
RH
4303 else
4304 {
4305 do_debugging = 0;
4cb93e3b 4306 dwarf_select_sections_by_letters (optarg);
252b5132
RH
4307 }
4308 break;
2979dc34 4309 case OPTION_DEBUG_DUMP:
b34976b6 4310 do_dump++;
2979dc34
JJ
4311 if (optarg == 0)
4312 do_debugging = 1;
4313 else
4314 {
2979dc34 4315 do_debugging = 0;
4cb93e3b 4316 dwarf_select_sections_by_names (optarg);
2979dc34
JJ
4317 }
4318 break;
fd2f0033
TT
4319 case OPTION_DWARF_DEPTH:
4320 {
4321 char *cp;
4322
4323 dwarf_cutoff_level = strtoul (optarg, & cp, 0);
4324 }
4325 break;
4326 case OPTION_DWARF_START:
4327 {
4328 char *cp;
4329
4330 dwarf_start_die = strtoul (optarg, & cp, 0);
4331 }
4332 break;
4723351a
CC
4333 case OPTION_DWARF_CHECK:
4334 dwarf_check = 1;
4335 break;
2c610e4b
L
4336 case OPTION_DYN_SYMS:
4337 do_dyn_syms++;
4338 break;
252b5132
RH
4339#ifdef SUPPORT_DISASSEMBLY
4340 case 'i':
cf13d699
NC
4341 request_dump (DISASS_DUMP);
4342 break;
252b5132
RH
4343#endif
4344 case 'v':
4345 print_version (program_name);
4346 break;
4347 case 'V':
b34976b6 4348 do_version++;
252b5132 4349 break;
d974e256 4350 case 'W':
b34976b6 4351 do_wide++;
d974e256 4352 break;
252b5132 4353 default:
252b5132
RH
4354 /* xgettext:c-format */
4355 error (_("Invalid option '-%c'\n"), c);
4356 /* Drop through. */
4357 case '?':
92f01d61 4358 usage (stderr);
252b5132
RH
4359 }
4360 }
4361
4d6ed7c8 4362 if (!do_dynamic && !do_syms && !do_reloc && !do_unwind && !do_sections
252b5132 4363 && !do_segments && !do_header && !do_dump && !do_version
f5842774 4364 && !do_histogram && !do_debugging && !do_arch && !do_notes
2c610e4b
L
4365 && !do_section_groups && !do_archive_index
4366 && !do_dyn_syms)
92f01d61 4367 usage (stderr);
252b5132
RH
4368}
4369
4370static const char *
d3ba0551 4371get_elf_class (unsigned int elf_class)
252b5132 4372{
b34976b6 4373 static char buff[32];
103f02d3 4374
252b5132
RH
4375 switch (elf_class)
4376 {
4377 case ELFCLASSNONE: return _("none");
e3c8793a
NC
4378 case ELFCLASS32: return "ELF32";
4379 case ELFCLASS64: return "ELF64";
ab5e7794 4380 default:
e9e44622 4381 snprintf (buff, sizeof (buff), _("<unknown: %x>"), elf_class);
ab5e7794 4382 return buff;
252b5132
RH
4383 }
4384}
4385
4386static const char *
d3ba0551 4387get_data_encoding (unsigned int encoding)
252b5132 4388{
b34976b6 4389 static char buff[32];
103f02d3 4390
252b5132
RH
4391 switch (encoding)
4392 {
4393 case ELFDATANONE: return _("none");
33c63f9d
CM
4394 case ELFDATA2LSB: return _("2's complement, little endian");
4395 case ELFDATA2MSB: return _("2's complement, big endian");
103f02d3 4396 default:
e9e44622 4397 snprintf (buff, sizeof (buff), _("<unknown: %x>"), encoding);
ab5e7794 4398 return buff;
252b5132
RH
4399 }
4400}
4401
252b5132 4402/* Decode the data held in 'elf_header'. */
ee42cf8c 4403
252b5132 4404static int
d3ba0551 4405process_file_header (void)
252b5132 4406{
b34976b6
AM
4407 if ( elf_header.e_ident[EI_MAG0] != ELFMAG0
4408 || elf_header.e_ident[EI_MAG1] != ELFMAG1
4409 || elf_header.e_ident[EI_MAG2] != ELFMAG2
4410 || elf_header.e_ident[EI_MAG3] != ELFMAG3)
252b5132
RH
4411 {
4412 error
4413 (_("Not an ELF file - it has the wrong magic bytes at the start\n"));
4414 return 0;
4415 }
4416
2dc4cec1
L
4417 init_dwarf_regnames (elf_header.e_machine);
4418
252b5132
RH
4419 if (do_header)
4420 {
4421 int i;
4422
4423 printf (_("ELF Header:\n"));
4424 printf (_(" Magic: "));
b34976b6
AM
4425 for (i = 0; i < EI_NIDENT; i++)
4426 printf ("%2.2x ", elf_header.e_ident[i]);
252b5132
RH
4427 printf ("\n");
4428 printf (_(" Class: %s\n"),
b34976b6 4429 get_elf_class (elf_header.e_ident[EI_CLASS]));
252b5132 4430 printf (_(" Data: %s\n"),
b34976b6 4431 get_data_encoding (elf_header.e_ident[EI_DATA]));
252b5132 4432 printf (_(" Version: %d %s\n"),
b34976b6
AM
4433 elf_header.e_ident[EI_VERSION],
4434 (elf_header.e_ident[EI_VERSION] == EV_CURRENT
789be9f7 4435 ? "(current)"
b34976b6 4436 : (elf_header.e_ident[EI_VERSION] != EV_NONE
2b692964 4437 ? _("<unknown: %lx>")
789be9f7 4438 : "")));
252b5132 4439 printf (_(" OS/ABI: %s\n"),
b34976b6 4440 get_osabi_name (elf_header.e_ident[EI_OSABI]));
252b5132 4441 printf (_(" ABI Version: %d\n"),
b34976b6 4442 elf_header.e_ident[EI_ABIVERSION]);
252b5132
RH
4443 printf (_(" Type: %s\n"),
4444 get_file_type (elf_header.e_type));
4445 printf (_(" Machine: %s\n"),
4446 get_machine_name (elf_header.e_machine));
4447 printf (_(" Version: 0x%lx\n"),
4448 (unsigned long) elf_header.e_version);
76da6bbe 4449
f7a99963
NC
4450 printf (_(" Entry point address: "));
4451 print_vma ((bfd_vma) elf_header.e_entry, PREFIX_HEX);
4452 printf (_("\n Start of program headers: "));
4453 print_vma ((bfd_vma) elf_header.e_phoff, DEC);
4454 printf (_(" (bytes into file)\n Start of section headers: "));
4455 print_vma ((bfd_vma) elf_header.e_shoff, DEC);
4456 printf (_(" (bytes into file)\n"));
76da6bbe 4457
252b5132
RH
4458 printf (_(" Flags: 0x%lx%s\n"),
4459 (unsigned long) elf_header.e_flags,
4460 get_machine_flags (elf_header.e_flags, elf_header.e_machine));
4461 printf (_(" Size of this header: %ld (bytes)\n"),
4462 (long) elf_header.e_ehsize);
4463 printf (_(" Size of program headers: %ld (bytes)\n"),
4464 (long) elf_header.e_phentsize);
2046a35d 4465 printf (_(" Number of program headers: %ld"),
252b5132 4466 (long) elf_header.e_phnum);
2046a35d
AM
4467 if (section_headers != NULL
4468 && elf_header.e_phnum == PN_XNUM
4469 && section_headers[0].sh_info != 0)
cc5914eb 4470 printf (" (%ld)", (long) section_headers[0].sh_info);
2046a35d 4471 putc ('\n', stdout);
252b5132
RH
4472 printf (_(" Size of section headers: %ld (bytes)\n"),
4473 (long) elf_header.e_shentsize);
560f3c1c 4474 printf (_(" Number of section headers: %ld"),
252b5132 4475 (long) elf_header.e_shnum);
4fbb74a6 4476 if (section_headers != NULL && elf_header.e_shnum == SHN_UNDEF)
560f3c1c
AM
4477 printf (" (%ld)", (long) section_headers[0].sh_size);
4478 putc ('\n', stdout);
4479 printf (_(" Section header string table index: %ld"),
252b5132 4480 (long) elf_header.e_shstrndx);
4fbb74a6
AM
4481 if (section_headers != NULL
4482 && elf_header.e_shstrndx == (SHN_XINDEX & 0xffff))
72de5009 4483 printf (" (%u)", section_headers[0].sh_link);
15ba6505
AM
4484 else if (elf_header.e_shstrndx != SHN_UNDEF
4485 && elf_header.e_shstrndx >= elf_header.e_shnum)
2b692964 4486 printf (_(" <corrupt: out of range>"));
560f3c1c
AM
4487 putc ('\n', stdout);
4488 }
4489
4490 if (section_headers != NULL)
4491 {
2046a35d
AM
4492 if (elf_header.e_phnum == PN_XNUM
4493 && section_headers[0].sh_info != 0)
4494 elf_header.e_phnum = section_headers[0].sh_info;
4fbb74a6 4495 if (elf_header.e_shnum == SHN_UNDEF)
560f3c1c 4496 elf_header.e_shnum = section_headers[0].sh_size;
4fbb74a6 4497 if (elf_header.e_shstrndx == (SHN_XINDEX & 0xffff))
560f3c1c 4498 elf_header.e_shstrndx = section_headers[0].sh_link;
4fbb74a6 4499 else if (elf_header.e_shstrndx >= elf_header.e_shnum)
0b49d371 4500 elf_header.e_shstrndx = SHN_UNDEF;
560f3c1c
AM
4501 free (section_headers);
4502 section_headers = NULL;
252b5132 4503 }
103f02d3 4504
9ea033b2
NC
4505 return 1;
4506}
4507
e0a31db1 4508static bfd_boolean
91d6fa6a 4509get_32bit_program_headers (FILE * file, Elf_Internal_Phdr * pheaders)
9ea033b2 4510{
2cf0635d
NC
4511 Elf32_External_Phdr * phdrs;
4512 Elf32_External_Phdr * external;
4513 Elf_Internal_Phdr * internal;
b34976b6 4514 unsigned int i;
e0a31db1
NC
4515 unsigned int size = elf_header.e_phentsize;
4516 unsigned int num = elf_header.e_phnum;
4517
4518 /* PR binutils/17531: Cope with unexpected section header sizes. */
4519 if (size == 0 || num == 0)
4520 return FALSE;
4521 if (size < sizeof * phdrs)
4522 {
4523 error (_("The e_phentsize field in the ELF header is less than the size of an ELF program header\n"));
4524 return FALSE;
4525 }
4526 if (size > sizeof * phdrs)
4527 warn (_("The e_phentsize field in the ELF header is larger than the size of an ELF program header\n"));
103f02d3 4528
3f5e193b 4529 phdrs = (Elf32_External_Phdr *) get_data (NULL, file, elf_header.e_phoff,
e0a31db1
NC
4530 size, num, _("program headers"));
4531 if (phdrs == NULL)
4532 return FALSE;
9ea033b2 4533
91d6fa6a 4534 for (i = 0, internal = pheaders, external = phdrs;
9ea033b2 4535 i < elf_header.e_phnum;
b34976b6 4536 i++, internal++, external++)
252b5132 4537 {
9ea033b2
NC
4538 internal->p_type = BYTE_GET (external->p_type);
4539 internal->p_offset = BYTE_GET (external->p_offset);
4540 internal->p_vaddr = BYTE_GET (external->p_vaddr);
4541 internal->p_paddr = BYTE_GET (external->p_paddr);
4542 internal->p_filesz = BYTE_GET (external->p_filesz);
4543 internal->p_memsz = BYTE_GET (external->p_memsz);
4544 internal->p_flags = BYTE_GET (external->p_flags);
4545 internal->p_align = BYTE_GET (external->p_align);
252b5132
RH
4546 }
4547
9ea033b2 4548 free (phdrs);
e0a31db1 4549 return TRUE;
252b5132
RH
4550}
4551
e0a31db1 4552static bfd_boolean
91d6fa6a 4553get_64bit_program_headers (FILE * file, Elf_Internal_Phdr * pheaders)
9ea033b2 4554{
2cf0635d
NC
4555 Elf64_External_Phdr * phdrs;
4556 Elf64_External_Phdr * external;
4557 Elf_Internal_Phdr * internal;
b34976b6 4558 unsigned int i;
e0a31db1
NC
4559 unsigned int size = elf_header.e_phentsize;
4560 unsigned int num = elf_header.e_phnum;
4561
4562 /* PR binutils/17531: Cope with unexpected section header sizes. */
4563 if (size == 0 || num == 0)
4564 return FALSE;
4565 if (size < sizeof * phdrs)
4566 {
4567 error (_("The e_phentsize field in the ELF header is less than the size of an ELF program header\n"));
4568 return FALSE;
4569 }
4570 if (size > sizeof * phdrs)
4571 warn (_("The e_phentsize field in the ELF header is larger than the size of an ELF program header\n"));
103f02d3 4572
3f5e193b 4573 phdrs = (Elf64_External_Phdr *) get_data (NULL, file, elf_header.e_phoff,
e0a31db1 4574 size, num, _("program headers"));
a6e9f9df 4575 if (!phdrs)
e0a31db1 4576 return FALSE;
9ea033b2 4577
91d6fa6a 4578 for (i = 0, internal = pheaders, external = phdrs;
9ea033b2 4579 i < elf_header.e_phnum;
b34976b6 4580 i++, internal++, external++)
9ea033b2
NC
4581 {
4582 internal->p_type = BYTE_GET (external->p_type);
4583 internal->p_flags = BYTE_GET (external->p_flags);
66543521
AM
4584 internal->p_offset = BYTE_GET (external->p_offset);
4585 internal->p_vaddr = BYTE_GET (external->p_vaddr);
4586 internal->p_paddr = BYTE_GET (external->p_paddr);
4587 internal->p_filesz = BYTE_GET (external->p_filesz);
4588 internal->p_memsz = BYTE_GET (external->p_memsz);
4589 internal->p_align = BYTE_GET (external->p_align);
9ea033b2
NC
4590 }
4591
4592 free (phdrs);
e0a31db1 4593 return TRUE;
9ea033b2 4594}
252b5132 4595
d93f0186
NC
4596/* Returns 1 if the program headers were read into `program_headers'. */
4597
4598static int
2cf0635d 4599get_program_headers (FILE * file)
d93f0186 4600{
2cf0635d 4601 Elf_Internal_Phdr * phdrs;
d93f0186
NC
4602
4603 /* Check cache of prior read. */
4604 if (program_headers != NULL)
4605 return 1;
4606
3f5e193b
NC
4607 phdrs = (Elf_Internal_Phdr *) cmalloc (elf_header.e_phnum,
4608 sizeof (Elf_Internal_Phdr));
d93f0186
NC
4609
4610 if (phdrs == NULL)
4611 {
8b73c356
NC
4612 error (_("Out of memory reading %u program headers\n"),
4613 elf_header.e_phnum);
d93f0186
NC
4614 return 0;
4615 }
4616
4617 if (is_32bit_elf
4618 ? get_32bit_program_headers (file, phdrs)
4619 : get_64bit_program_headers (file, phdrs))
4620 {
4621 program_headers = phdrs;
4622 return 1;
4623 }
4624
4625 free (phdrs);
4626 return 0;
4627}
4628
2f62977e
NC
4629/* Returns 1 if the program headers were loaded. */
4630
252b5132 4631static int
2cf0635d 4632process_program_headers (FILE * file)
252b5132 4633{
2cf0635d 4634 Elf_Internal_Phdr * segment;
b34976b6 4635 unsigned int i;
252b5132
RH
4636
4637 if (elf_header.e_phnum == 0)
4638 {
82f2dbf7
NC
4639 /* PR binutils/12467. */
4640 if (elf_header.e_phoff != 0)
4641 warn (_("possibly corrupt ELF header - it has a non-zero program"
9035ed51 4642 " header offset, but no program headers\n"));
82f2dbf7 4643 else if (do_segments)
252b5132 4644 printf (_("\nThere are no program headers in this file.\n"));
2f62977e 4645 return 0;
252b5132
RH
4646 }
4647
4648 if (do_segments && !do_header)
4649 {
f7a99963
NC
4650 printf (_("\nElf file type is %s\n"), get_file_type (elf_header.e_type));
4651 printf (_("Entry point "));
4652 print_vma ((bfd_vma) elf_header.e_entry, PREFIX_HEX);
4653 printf (_("\nThere are %d program headers, starting at offset "),
4654 elf_header.e_phnum);
4655 print_vma ((bfd_vma) elf_header.e_phoff, DEC);
4656 printf ("\n");
252b5132
RH
4657 }
4658
d93f0186 4659 if (! get_program_headers (file))
252b5132 4660 return 0;
103f02d3 4661
252b5132
RH
4662 if (do_segments)
4663 {
3a1a2036
NC
4664 if (elf_header.e_phnum > 1)
4665 printf (_("\nProgram Headers:\n"));
4666 else
4667 printf (_("\nProgram Headers:\n"));
76da6bbe 4668
f7a99963
NC
4669 if (is_32bit_elf)
4670 printf
4671 (_(" Type Offset VirtAddr PhysAddr FileSiz MemSiz Flg Align\n"));
d974e256
JJ
4672 else if (do_wide)
4673 printf
4674 (_(" Type Offset VirtAddr PhysAddr FileSiz MemSiz Flg Align\n"));
f7a99963
NC
4675 else
4676 {
4677 printf
4678 (_(" Type Offset VirtAddr PhysAddr\n"));
4679 printf
4680 (_(" FileSiz MemSiz Flags Align\n"));
4681 }
252b5132
RH
4682 }
4683
252b5132 4684 dynamic_addr = 0;
1b228002 4685 dynamic_size = 0;
252b5132
RH
4686
4687 for (i = 0, segment = program_headers;
4688 i < elf_header.e_phnum;
b34976b6 4689 i++, segment++)
252b5132
RH
4690 {
4691 if (do_segments)
4692 {
103f02d3 4693 printf (" %-14.14s ", get_segment_type (segment->p_type));
f7a99963
NC
4694
4695 if (is_32bit_elf)
4696 {
4697 printf ("0x%6.6lx ", (unsigned long) segment->p_offset);
4698 printf ("0x%8.8lx ", (unsigned long) segment->p_vaddr);
4699 printf ("0x%8.8lx ", (unsigned long) segment->p_paddr);
4700 printf ("0x%5.5lx ", (unsigned long) segment->p_filesz);
4701 printf ("0x%5.5lx ", (unsigned long) segment->p_memsz);
4702 printf ("%c%c%c ",
4703 (segment->p_flags & PF_R ? 'R' : ' '),
4704 (segment->p_flags & PF_W ? 'W' : ' '),
4705 (segment->p_flags & PF_X ? 'E' : ' '));
4706 printf ("%#lx", (unsigned long) segment->p_align);
4707 }
d974e256
JJ
4708 else if (do_wide)
4709 {
4710 if ((unsigned long) segment->p_offset == segment->p_offset)
4711 printf ("0x%6.6lx ", (unsigned long) segment->p_offset);
4712 else
4713 {
4714 print_vma (segment->p_offset, FULL_HEX);
4715 putchar (' ');
4716 }
4717
4718 print_vma (segment->p_vaddr, FULL_HEX);
4719 putchar (' ');
4720 print_vma (segment->p_paddr, FULL_HEX);
4721 putchar (' ');
4722
4723 if ((unsigned long) segment->p_filesz == segment->p_filesz)
4724 printf ("0x%6.6lx ", (unsigned long) segment->p_filesz);
4725 else
4726 {
4727 print_vma (segment->p_filesz, FULL_HEX);
4728 putchar (' ');
4729 }
4730
4731 if ((unsigned long) segment->p_memsz == segment->p_memsz)
4732 printf ("0x%6.6lx", (unsigned long) segment->p_memsz);
4733 else
4734 {
f48e6c45 4735 print_vma (segment->p_memsz, FULL_HEX);
d974e256
JJ
4736 }
4737
4738 printf (" %c%c%c ",
4739 (segment->p_flags & PF_R ? 'R' : ' '),
4740 (segment->p_flags & PF_W ? 'W' : ' '),
4741 (segment->p_flags & PF_X ? 'E' : ' '));
4742
4743 if ((unsigned long) segment->p_align == segment->p_align)
4744 printf ("%#lx", (unsigned long) segment->p_align);
4745 else
4746 {
4747 print_vma (segment->p_align, PREFIX_HEX);
4748 }
4749 }
f7a99963
NC
4750 else
4751 {
4752 print_vma (segment->p_offset, FULL_HEX);
4753 putchar (' ');
4754 print_vma (segment->p_vaddr, FULL_HEX);
4755 putchar (' ');
4756 print_vma (segment->p_paddr, FULL_HEX);
4757 printf ("\n ");
4758 print_vma (segment->p_filesz, FULL_HEX);
4759 putchar (' ');
4760 print_vma (segment->p_memsz, FULL_HEX);
4761 printf (" %c%c%c ",
4762 (segment->p_flags & PF_R ? 'R' : ' '),
4763 (segment->p_flags & PF_W ? 'W' : ' '),
4764 (segment->p_flags & PF_X ? 'E' : ' '));
4765 print_vma (segment->p_align, HEX);
4766 }
252b5132
RH
4767 }
4768
f54498b4
NC
4769 if (do_segments)
4770 putc ('\n', stdout);
4771
252b5132
RH
4772 switch (segment->p_type)
4773 {
252b5132
RH
4774 case PT_DYNAMIC:
4775 if (dynamic_addr)
4776 error (_("more than one dynamic segment\n"));
4777
20737c13
AM
4778 /* By default, assume that the .dynamic section is the first
4779 section in the DYNAMIC segment. */
4780 dynamic_addr = segment->p_offset;
4781 dynamic_size = segment->p_filesz;
f54498b4
NC
4782 /* PR binutils/17512: Avoid corrupt dynamic section info in the segment. */
4783 if (dynamic_addr + dynamic_size >= current_file_size)
4784 {
4785 error (_("the dynamic segment offset + size exceeds the size of the file\n"));
4786 dynamic_addr = dynamic_size = 0;
4787 }
20737c13 4788
b2d38a17
NC
4789 /* Try to locate the .dynamic section. If there is
4790 a section header table, we can easily locate it. */
4791 if (section_headers != NULL)
4792 {
2cf0635d 4793 Elf_Internal_Shdr * sec;
b2d38a17 4794
89fac5e3
RS
4795 sec = find_section (".dynamic");
4796 if (sec == NULL || sec->sh_size == 0)
b2d38a17 4797 {
28f997cf
TG
4798 /* A corresponding .dynamic section is expected, but on
4799 IA-64/OpenVMS it is OK for it to be missing. */
4800 if (!is_ia64_vms ())
4801 error (_("no .dynamic section in the dynamic segment\n"));
b2d38a17
NC
4802 break;
4803 }
4804
42bb2e33 4805 if (sec->sh_type == SHT_NOBITS)
20737c13
AM
4806 {
4807 dynamic_size = 0;
4808 break;
4809 }
42bb2e33 4810
b2d38a17
NC
4811 dynamic_addr = sec->sh_offset;
4812 dynamic_size = sec->sh_size;
4813
4814 if (dynamic_addr < segment->p_offset
4815 || dynamic_addr > segment->p_offset + segment->p_filesz)
20737c13
AM
4816 warn (_("the .dynamic section is not contained"
4817 " within the dynamic segment\n"));
b2d38a17 4818 else if (dynamic_addr > segment->p_offset)
20737c13
AM
4819 warn (_("the .dynamic section is not the first section"
4820 " in the dynamic segment.\n"));
b2d38a17 4821 }
252b5132
RH
4822 break;
4823
4824 case PT_INTERP:
fb52b2f4
NC
4825 if (fseek (file, archive_file_offset + (long) segment->p_offset,
4826 SEEK_SET))
252b5132
RH
4827 error (_("Unable to find program interpreter name\n"));
4828 else
4829 {
f8eae8b2 4830 char fmt [32];
9495b2e6 4831 int ret = snprintf (fmt, sizeof (fmt), "%%%ds", PATH_MAX - 1);
f8eae8b2
L
4832
4833 if (ret >= (int) sizeof (fmt) || ret < 0)
591a748a 4834 error (_("Internal error: failed to create format string to display program interpreter\n"));
f8eae8b2 4835
252b5132 4836 program_interpreter[0] = 0;
7bd7b3ef
AM
4837 if (fscanf (file, fmt, program_interpreter) <= 0)
4838 error (_("Unable to read program interpreter name\n"));
252b5132
RH
4839
4840 if (do_segments)
f54498b4 4841 printf (_(" [Requesting program interpreter: %s]\n"),
252b5132
RH
4842 program_interpreter);
4843 }
4844 break;
4845 }
252b5132
RH
4846 }
4847
c256ffe7 4848 if (do_segments && section_headers != NULL && string_table != NULL)
252b5132
RH
4849 {
4850 printf (_("\n Section to Segment mapping:\n"));
4851 printf (_(" Segment Sections...\n"));
4852
252b5132
RH
4853 for (i = 0; i < elf_header.e_phnum; i++)
4854 {
9ad5cbcf 4855 unsigned int j;
2cf0635d 4856 Elf_Internal_Shdr * section;
252b5132
RH
4857
4858 segment = program_headers + i;
b391a3e3 4859 section = section_headers + 1;
252b5132
RH
4860
4861 printf (" %2.2d ", i);
4862
b34976b6 4863 for (j = 1; j < elf_header.e_shnum; j++, section++)
252b5132 4864 {
f4638467
AM
4865 if (!ELF_TBSS_SPECIAL (section, segment)
4866 && ELF_SECTION_IN_SEGMENT_STRICT (section, segment))
74e1a04b 4867 printf ("%s ", printable_section_name (section));
252b5132
RH
4868 }
4869
4870 putc ('\n',stdout);
4871 }
4872 }
4873
252b5132
RH
4874 return 1;
4875}
4876
4877
d93f0186
NC
4878/* Find the file offset corresponding to VMA by using the program headers. */
4879
4880static long
2cf0635d 4881offset_from_vma (FILE * file, bfd_vma vma, bfd_size_type size)
d93f0186 4882{
2cf0635d 4883 Elf_Internal_Phdr * seg;
d93f0186
NC
4884
4885 if (! get_program_headers (file))
4886 {
4887 warn (_("Cannot interpret virtual addresses without program headers.\n"));
4888 return (long) vma;
4889 }
4890
4891 for (seg = program_headers;
4892 seg < program_headers + elf_header.e_phnum;
4893 ++seg)
4894 {
4895 if (seg->p_type != PT_LOAD)
4896 continue;
4897
4898 if (vma >= (seg->p_vaddr & -seg->p_align)
4899 && vma + size <= seg->p_vaddr + seg->p_filesz)
4900 return vma - seg->p_vaddr + seg->p_offset;
4901 }
4902
4903 warn (_("Virtual address 0x%lx not located in any PT_LOAD segment.\n"),
0af1713e 4904 (unsigned long) vma);
d93f0186
NC
4905 return (long) vma;
4906}
4907
4908
049b0c3a
NC
4909/* Allocate memory and load the sections headers into the global pointer
4910 SECTION_HEADERS. If PROBE is true, this is just a probe and we do not
4911 generate any error messages if the load fails. */
4912
4913static bfd_boolean
4914get_32bit_section_headers (FILE * file, bfd_boolean probe)
252b5132 4915{
2cf0635d
NC
4916 Elf32_External_Shdr * shdrs;
4917 Elf_Internal_Shdr * internal;
b34976b6 4918 unsigned int i;
049b0c3a
NC
4919 unsigned int size = elf_header.e_shentsize;
4920 unsigned int num = probe ? 1 : elf_header.e_shnum;
4921
4922 /* PR binutils/17531: Cope with unexpected section header sizes. */
4923 if (size == 0 || num == 0)
4924 return FALSE;
4925 if (size < sizeof * shdrs)
4926 {
4927 if (! probe)
4928 error (_("The e_shentsize field in the ELF header is less than the size of an ELF section header\n"));
4929 return FALSE;
4930 }
4931 if (!probe && size > sizeof * shdrs)
4932 warn (_("The e_shentsize field in the ELF header is larger than the size of an ELF section header\n"));
252b5132 4933
3f5e193b 4934 shdrs = (Elf32_External_Shdr *) get_data (NULL, file, elf_header.e_shoff,
049b0c3a
NC
4935 size, num,
4936 probe ? NULL : _("section headers"));
4937 if (shdrs == NULL)
4938 return FALSE;
252b5132 4939
049b0c3a
NC
4940 if (section_headers != NULL)
4941 free (section_headers);
3f5e193b
NC
4942 section_headers = (Elf_Internal_Shdr *) cmalloc (num,
4943 sizeof (Elf_Internal_Shdr));
252b5132
RH
4944 if (section_headers == NULL)
4945 {
049b0c3a 4946 if (!probe)
8b73c356 4947 error (_("Out of memory reading %u section headers\n"), num);
049b0c3a 4948 return FALSE;
252b5132
RH
4949 }
4950
4951 for (i = 0, internal = section_headers;
560f3c1c 4952 i < num;
b34976b6 4953 i++, internal++)
252b5132
RH
4954 {
4955 internal->sh_name = BYTE_GET (shdrs[i].sh_name);
4956 internal->sh_type = BYTE_GET (shdrs[i].sh_type);
4957 internal->sh_flags = BYTE_GET (shdrs[i].sh_flags);
4958 internal->sh_addr = BYTE_GET (shdrs[i].sh_addr);
4959 internal->sh_offset = BYTE_GET (shdrs[i].sh_offset);
4960 internal->sh_size = BYTE_GET (shdrs[i].sh_size);
4961 internal->sh_link = BYTE_GET (shdrs[i].sh_link);
4962 internal->sh_info = BYTE_GET (shdrs[i].sh_info);
4963 internal->sh_addralign = BYTE_GET (shdrs[i].sh_addralign);
4964 internal->sh_entsize = BYTE_GET (shdrs[i].sh_entsize);
4965 }
4966
4967 free (shdrs);
049b0c3a 4968 return TRUE;
252b5132
RH
4969}
4970
049b0c3a
NC
4971static bfd_boolean
4972get_64bit_section_headers (FILE * file, bfd_boolean probe)
9ea033b2 4973{
2cf0635d
NC
4974 Elf64_External_Shdr * shdrs;
4975 Elf_Internal_Shdr * internal;
b34976b6 4976 unsigned int i;
049b0c3a
NC
4977 unsigned int size = elf_header.e_shentsize;
4978 unsigned int num = probe ? 1 : elf_header.e_shnum;
4979
4980 /* PR binutils/17531: Cope with unexpected section header sizes. */
4981 if (size == 0 || num == 0)
4982 return FALSE;
4983 if (size < sizeof * shdrs)
4984 {
4985 if (! probe)
4986 error (_("The e_shentsize field in the ELF header is less than the size of an ELF section header\n"));
4987 return FALSE;
4988 }
4989 if (! probe && size > sizeof * shdrs)
4990 warn (_("The e_shentsize field in the ELF header is larger than the size of an ELF section header\n"));
9ea033b2 4991
3f5e193b 4992 shdrs = (Elf64_External_Shdr *) get_data (NULL, file, elf_header.e_shoff,
049b0c3a
NC
4993 size, num,
4994 probe ? NULL : _("section headers"));
4995 if (shdrs == NULL)
4996 return FALSE;
9ea033b2 4997
049b0c3a
NC
4998 if (section_headers != NULL)
4999 free (section_headers);
3f5e193b
NC
5000 section_headers = (Elf_Internal_Shdr *) cmalloc (num,
5001 sizeof (Elf_Internal_Shdr));
9ea033b2
NC
5002 if (section_headers == NULL)
5003 {
049b0c3a 5004 if (! probe)
8b73c356 5005 error (_("Out of memory reading %u section headers\n"), num);
049b0c3a 5006 return FALSE;
9ea033b2
NC
5007 }
5008
5009 for (i = 0, internal = section_headers;
560f3c1c 5010 i < num;
b34976b6 5011 i++, internal++)
9ea033b2
NC
5012 {
5013 internal->sh_name = BYTE_GET (shdrs[i].sh_name);
5014 internal->sh_type = BYTE_GET (shdrs[i].sh_type);
66543521
AM
5015 internal->sh_flags = BYTE_GET (shdrs[i].sh_flags);
5016 internal->sh_addr = BYTE_GET (shdrs[i].sh_addr);
5017 internal->sh_size = BYTE_GET (shdrs[i].sh_size);
5018 internal->sh_entsize = BYTE_GET (shdrs[i].sh_entsize);
9ea033b2
NC
5019 internal->sh_link = BYTE_GET (shdrs[i].sh_link);
5020 internal->sh_info = BYTE_GET (shdrs[i].sh_info);
5021 internal->sh_offset = BYTE_GET (shdrs[i].sh_offset);
5022 internal->sh_addralign = BYTE_GET (shdrs[i].sh_addralign);
5023 }
5024
5025 free (shdrs);
049b0c3a 5026 return TRUE;
9ea033b2
NC
5027}
5028
252b5132 5029static Elf_Internal_Sym *
ba5cdace
NC
5030get_32bit_elf_symbols (FILE * file,
5031 Elf_Internal_Shdr * section,
5032 unsigned long * num_syms_return)
252b5132 5033{
ba5cdace 5034 unsigned long number = 0;
dd24e3da 5035 Elf32_External_Sym * esyms = NULL;
ba5cdace 5036 Elf_External_Sym_Shndx * shndx = NULL;
dd24e3da 5037 Elf_Internal_Sym * isyms = NULL;
2cf0635d 5038 Elf_Internal_Sym * psym;
b34976b6 5039 unsigned int j;
252b5132 5040
c9c1d674
EG
5041 if (section->sh_size == 0)
5042 {
5043 if (num_syms_return != NULL)
5044 * num_syms_return = 0;
5045 return NULL;
5046 }
5047
dd24e3da 5048 /* Run some sanity checks first. */
c9c1d674 5049 if (section->sh_entsize == 0 || section->sh_entsize > section->sh_size)
dd24e3da 5050 {
c9c1d674
EG
5051 error (_("Section %s has an invalid sh_entsize of 0x%lx\n"),
5052 printable_section_name (section), (unsigned long) section->sh_entsize);
ba5cdace 5053 goto exit_point;
dd24e3da
NC
5054 }
5055
f54498b4
NC
5056 if (section->sh_size > current_file_size)
5057 {
5058 error (_("Section %s has an invalid sh_size of 0x%lx\n"),
74e1a04b 5059 printable_section_name (section), (unsigned long) section->sh_size);
f54498b4
NC
5060 goto exit_point;
5061 }
5062
dd24e3da
NC
5063 number = section->sh_size / section->sh_entsize;
5064
5065 if (number * sizeof (Elf32_External_Sym) > section->sh_size + 1)
5066 {
c9c1d674 5067 error (_("Size (0x%lx) of section %s is not a multiple of its sh_entsize (0x%lx)\n"),
8066deb1
AM
5068 (unsigned long) section->sh_size,
5069 printable_section_name (section),
5070 (unsigned long) section->sh_entsize);
ba5cdace 5071 goto exit_point;
dd24e3da
NC
5072 }
5073
3f5e193b
NC
5074 esyms = (Elf32_External_Sym *) get_data (NULL, file, section->sh_offset, 1,
5075 section->sh_size, _("symbols"));
dd24e3da 5076 if (esyms == NULL)
ba5cdace 5077 goto exit_point;
252b5132 5078
6a40cf0c
NC
5079 {
5080 elf_section_list * entry;
5081
5082 shndx = NULL;
5083 for (entry = symtab_shndx_list; entry != NULL; entry = entry->next)
5084 if (entry->hdr->sh_link == (unsigned long) (section - section_headers))
c9c1d674 5085 {
6a40cf0c
NC
5086 shndx = (Elf_External_Sym_Shndx *) get_data (NULL, file,
5087 entry->hdr->sh_offset,
5088 1, entry->hdr->sh_size,
5089 _("symbol table section indicies"));
5090 if (shndx == NULL)
5091 goto exit_point;
5092 /* PR17531: file: heap-buffer-overflow */
5093 else if (entry->hdr->sh_size / sizeof (Elf_External_Sym_Shndx) < number)
5094 {
5095 error (_("Index section %s has an sh_size of 0x%lx - expected 0x%lx\n"),
5096 printable_section_name (entry->hdr),
5097 (unsigned long) entry->hdr->sh_size,
5098 (unsigned long) section->sh_size);
5099 goto exit_point;
5100 }
c9c1d674 5101 }
6a40cf0c 5102 }
9ad5cbcf 5103
3f5e193b 5104 isyms = (Elf_Internal_Sym *) cmalloc (number, sizeof (Elf_Internal_Sym));
252b5132
RH
5105
5106 if (isyms == NULL)
5107 {
8b73c356
NC
5108 error (_("Out of memory reading %lu symbols\n"),
5109 (unsigned long) number);
dd24e3da 5110 goto exit_point;
252b5132
RH
5111 }
5112
dd24e3da 5113 for (j = 0, psym = isyms; j < number; j++, psym++)
252b5132
RH
5114 {
5115 psym->st_name = BYTE_GET (esyms[j].st_name);
5116 psym->st_value = BYTE_GET (esyms[j].st_value);
5117 psym->st_size = BYTE_GET (esyms[j].st_size);
5118 psym->st_shndx = BYTE_GET (esyms[j].st_shndx);
4fbb74a6 5119 if (psym->st_shndx == (SHN_XINDEX & 0xffff) && shndx != NULL)
9ad5cbcf
AM
5120 psym->st_shndx
5121 = byte_get ((unsigned char *) &shndx[j], sizeof (shndx[j]));
4fbb74a6
AM
5122 else if (psym->st_shndx >= (SHN_LORESERVE & 0xffff))
5123 psym->st_shndx += SHN_LORESERVE - (SHN_LORESERVE & 0xffff);
252b5132
RH
5124 psym->st_info = BYTE_GET (esyms[j].st_info);
5125 psym->st_other = BYTE_GET (esyms[j].st_other);
5126 }
5127
dd24e3da 5128 exit_point:
ba5cdace 5129 if (shndx != NULL)
9ad5cbcf 5130 free (shndx);
ba5cdace 5131 if (esyms != NULL)
dd24e3da 5132 free (esyms);
252b5132 5133
ba5cdace
NC
5134 if (num_syms_return != NULL)
5135 * num_syms_return = isyms == NULL ? 0 : number;
5136
252b5132
RH
5137 return isyms;
5138}
5139
9ea033b2 5140static Elf_Internal_Sym *
ba5cdace
NC
5141get_64bit_elf_symbols (FILE * file,
5142 Elf_Internal_Shdr * section,
5143 unsigned long * num_syms_return)
9ea033b2 5144{
ba5cdace
NC
5145 unsigned long number = 0;
5146 Elf64_External_Sym * esyms = NULL;
5147 Elf_External_Sym_Shndx * shndx = NULL;
5148 Elf_Internal_Sym * isyms = NULL;
2cf0635d 5149 Elf_Internal_Sym * psym;
b34976b6 5150 unsigned int j;
9ea033b2 5151
c9c1d674
EG
5152 if (section->sh_size == 0)
5153 {
5154 if (num_syms_return != NULL)
5155 * num_syms_return = 0;
5156 return NULL;
5157 }
5158
dd24e3da 5159 /* Run some sanity checks first. */
c9c1d674 5160 if (section->sh_entsize == 0 || section->sh_entsize > section->sh_size)
dd24e3da 5161 {
c9c1d674 5162 error (_("Section %s has an invalid sh_entsize of 0x%lx\n"),
8066deb1
AM
5163 printable_section_name (section),
5164 (unsigned long) section->sh_entsize);
ba5cdace 5165 goto exit_point;
dd24e3da
NC
5166 }
5167
f54498b4
NC
5168 if (section->sh_size > current_file_size)
5169 {
5170 error (_("Section %s has an invalid sh_size of 0x%lx\n"),
8066deb1
AM
5171 printable_section_name (section),
5172 (unsigned long) section->sh_size);
f54498b4
NC
5173 goto exit_point;
5174 }
5175
dd24e3da
NC
5176 number = section->sh_size / section->sh_entsize;
5177
5178 if (number * sizeof (Elf64_External_Sym) > section->sh_size + 1)
5179 {
c9c1d674 5180 error (_("Size (0x%lx) of section %s is not a multiple of its sh_entsize (0x%lx)\n"),
8066deb1
AM
5181 (unsigned long) section->sh_size,
5182 printable_section_name (section),
5183 (unsigned long) section->sh_entsize);
ba5cdace 5184 goto exit_point;
dd24e3da
NC
5185 }
5186
3f5e193b
NC
5187 esyms = (Elf64_External_Sym *) get_data (NULL, file, section->sh_offset, 1,
5188 section->sh_size, _("symbols"));
a6e9f9df 5189 if (!esyms)
ba5cdace 5190 goto exit_point;
9ea033b2 5191
6a40cf0c
NC
5192 {
5193 elf_section_list * entry;
5194
5195 shndx = NULL;
5196 for (entry = symtab_shndx_list; entry != NULL; entry = entry->next)
5197 if (entry->hdr->sh_link == (unsigned long) (section - section_headers))
c9c1d674 5198 {
6a40cf0c
NC
5199 shndx = (Elf_External_Sym_Shndx *) get_data (NULL, file,
5200 entry->hdr->sh_offset,
5201 1, entry->hdr->sh_size,
5202 _("symbol table section indicies"));
5203 if (shndx == NULL)
5204 goto exit_point;
5205 /* PR17531: file: heap-buffer-overflow */
5206 else if (entry->hdr->sh_size / sizeof (Elf_External_Sym_Shndx) < number)
5207 {
5208 error (_("Index section %s has an sh_size of 0x%lx - expected 0x%lx\n"),
5209 printable_section_name (entry->hdr),
5210 (unsigned long) entry->hdr->sh_size,
5211 (unsigned long) section->sh_size);
5212 goto exit_point;
5213 }
c9c1d674 5214 }
6a40cf0c 5215 }
9ad5cbcf 5216
3f5e193b 5217 isyms = (Elf_Internal_Sym *) cmalloc (number, sizeof (Elf_Internal_Sym));
9ea033b2
NC
5218
5219 if (isyms == NULL)
5220 {
8b73c356
NC
5221 error (_("Out of memory reading %lu symbols\n"),
5222 (unsigned long) number);
ba5cdace 5223 goto exit_point;
9ea033b2
NC
5224 }
5225
ba5cdace 5226 for (j = 0, psym = isyms; j < number; j++, psym++)
9ea033b2
NC
5227 {
5228 psym->st_name = BYTE_GET (esyms[j].st_name);
5229 psym->st_info = BYTE_GET (esyms[j].st_info);
5230 psym->st_other = BYTE_GET (esyms[j].st_other);
5231 psym->st_shndx = BYTE_GET (esyms[j].st_shndx);
ba5cdace 5232
4fbb74a6 5233 if (psym->st_shndx == (SHN_XINDEX & 0xffff) && shndx != NULL)
9ad5cbcf
AM
5234 psym->st_shndx
5235 = byte_get ((unsigned char *) &shndx[j], sizeof (shndx[j]));
4fbb74a6
AM
5236 else if (psym->st_shndx >= (SHN_LORESERVE & 0xffff))
5237 psym->st_shndx += SHN_LORESERVE - (SHN_LORESERVE & 0xffff);
ba5cdace 5238
66543521
AM
5239 psym->st_value = BYTE_GET (esyms[j].st_value);
5240 psym->st_size = BYTE_GET (esyms[j].st_size);
9ea033b2
NC
5241 }
5242
ba5cdace
NC
5243 exit_point:
5244 if (shndx != NULL)
9ad5cbcf 5245 free (shndx);
ba5cdace
NC
5246 if (esyms != NULL)
5247 free (esyms);
5248
5249 if (num_syms_return != NULL)
5250 * num_syms_return = isyms == NULL ? 0 : number;
9ea033b2
NC
5251
5252 return isyms;
5253}
5254
d1133906 5255static const char *
d3ba0551 5256get_elf_section_flags (bfd_vma sh_flags)
d1133906 5257{
5477e8a0 5258 static char buff[1024];
2cf0635d 5259 char * p = buff;
8d5ff12c 5260 int field_size = is_32bit_elf ? 8 : 16;
91d6fa6a
NC
5261 int sindex;
5262 int size = sizeof (buff) - (field_size + 4 + 1);
8d5ff12c
L
5263 bfd_vma os_flags = 0;
5264 bfd_vma proc_flags = 0;
5265 bfd_vma unknown_flags = 0;
148b93f2 5266 static const struct
5477e8a0 5267 {
2cf0635d 5268 const char * str;
5477e8a0
L
5269 int len;
5270 }
5271 flags [] =
5272 {
cfcac11d
NC
5273 /* 0 */ { STRING_COMMA_LEN ("WRITE") },
5274 /* 1 */ { STRING_COMMA_LEN ("ALLOC") },
5275 /* 2 */ { STRING_COMMA_LEN ("EXEC") },
5276 /* 3 */ { STRING_COMMA_LEN ("MERGE") },
5277 /* 4 */ { STRING_COMMA_LEN ("STRINGS") },
5278 /* 5 */ { STRING_COMMA_LEN ("INFO LINK") },
5279 /* 6 */ { STRING_COMMA_LEN ("LINK ORDER") },
5280 /* 7 */ { STRING_COMMA_LEN ("OS NONCONF") },
5281 /* 8 */ { STRING_COMMA_LEN ("GROUP") },
5282 /* 9 */ { STRING_COMMA_LEN ("TLS") },
5283 /* IA-64 specific. */
5284 /* 10 */ { STRING_COMMA_LEN ("SHORT") },
5285 /* 11 */ { STRING_COMMA_LEN ("NORECOV") },
5286 /* IA-64 OpenVMS specific. */
5287 /* 12 */ { STRING_COMMA_LEN ("VMS_GLOBAL") },
5288 /* 13 */ { STRING_COMMA_LEN ("VMS_OVERLAID") },
5289 /* 14 */ { STRING_COMMA_LEN ("VMS_SHARED") },
5290 /* 15 */ { STRING_COMMA_LEN ("VMS_VECTOR") },
5291 /* 16 */ { STRING_COMMA_LEN ("VMS_ALLOC_64BIT") },
5292 /* 17 */ { STRING_COMMA_LEN ("VMS_PROTECTED") },
18ae9cc1 5293 /* Generic. */
cfcac11d 5294 /* 18 */ { STRING_COMMA_LEN ("EXCLUDE") },
18ae9cc1 5295 /* SPARC specific. */
77115a4a 5296 /* 19 */ { STRING_COMMA_LEN ("ORDERED") },
ac4c9b04
MG
5297 /* 20 */ { STRING_COMMA_LEN ("COMPRESSED") },
5298 /* ARM specific. */
5299 /* 21 */ { STRING_COMMA_LEN ("ENTRYSECT") },
5300 /* 22 */ { STRING_COMMA_LEN ("ARM_NOREAD") },
5301 /* 23 */ { STRING_COMMA_LEN ("COMDEF") }
5477e8a0
L
5302 };
5303
5304 if (do_section_details)
5305 {
8d5ff12c
L
5306 sprintf (buff, "[%*.*lx]: ",
5307 field_size, field_size, (unsigned long) sh_flags);
5308 p += field_size + 4;
5477e8a0 5309 }
76da6bbe 5310
d1133906
NC
5311 while (sh_flags)
5312 {
5313 bfd_vma flag;
5314
5315 flag = sh_flags & - sh_flags;
5316 sh_flags &= ~ flag;
76da6bbe 5317
5477e8a0 5318 if (do_section_details)
d1133906 5319 {
5477e8a0
L
5320 switch (flag)
5321 {
91d6fa6a
NC
5322 case SHF_WRITE: sindex = 0; break;
5323 case SHF_ALLOC: sindex = 1; break;
5324 case SHF_EXECINSTR: sindex = 2; break;
5325 case SHF_MERGE: sindex = 3; break;
5326 case SHF_STRINGS: sindex = 4; break;
5327 case SHF_INFO_LINK: sindex = 5; break;
5328 case SHF_LINK_ORDER: sindex = 6; break;
5329 case SHF_OS_NONCONFORMING: sindex = 7; break;
5330 case SHF_GROUP: sindex = 8; break;
5331 case SHF_TLS: sindex = 9; break;
18ae9cc1 5332 case SHF_EXCLUDE: sindex = 18; break;
77115a4a 5333 case SHF_COMPRESSED: sindex = 20; break;
76da6bbe 5334
5477e8a0 5335 default:
91d6fa6a 5336 sindex = -1;
cfcac11d 5337 switch (elf_header.e_machine)
148b93f2 5338 {
cfcac11d 5339 case EM_IA_64:
148b93f2 5340 if (flag == SHF_IA_64_SHORT)
91d6fa6a 5341 sindex = 10;
148b93f2 5342 else if (flag == SHF_IA_64_NORECOV)
91d6fa6a 5343 sindex = 11;
148b93f2
NC
5344#ifdef BFD64
5345 else if (elf_header.e_ident[EI_OSABI] == ELFOSABI_OPENVMS)
5346 switch (flag)
5347 {
91d6fa6a
NC
5348 case SHF_IA_64_VMS_GLOBAL: sindex = 12; break;
5349 case SHF_IA_64_VMS_OVERLAID: sindex = 13; break;
5350 case SHF_IA_64_VMS_SHARED: sindex = 14; break;
5351 case SHF_IA_64_VMS_VECTOR: sindex = 15; break;
5352 case SHF_IA_64_VMS_ALLOC_64BIT: sindex = 16; break;
5353 case SHF_IA_64_VMS_PROTECTED: sindex = 17; break;
148b93f2
NC
5354 default: break;
5355 }
5356#endif
cfcac11d
NC
5357 break;
5358
caa83f8b 5359 case EM_386:
22abe556 5360 case EM_IAMCU:
caa83f8b 5361 case EM_X86_64:
7f502d6c 5362 case EM_L1OM:
7a9068fe 5363 case EM_K1OM:
cfcac11d
NC
5364 case EM_OLD_SPARCV9:
5365 case EM_SPARC32PLUS:
5366 case EM_SPARCV9:
5367 case EM_SPARC:
18ae9cc1 5368 if (flag == SHF_ORDERED)
91d6fa6a 5369 sindex = 19;
cfcac11d 5370 break;
ac4c9b04
MG
5371
5372 case EM_ARM:
5373 switch (flag)
5374 {
5375 case SHF_ENTRYSECT: sindex = 21; break;
5376 case SHF_ARM_NOREAD: sindex = 22; break;
5377 case SHF_COMDEF: sindex = 23; break;
5378 default: break;
5379 }
5380 break;
5381
cfcac11d
NC
5382 default:
5383 break;
148b93f2 5384 }
5477e8a0
L
5385 }
5386
91d6fa6a 5387 if (sindex != -1)
5477e8a0 5388 {
8d5ff12c
L
5389 if (p != buff + field_size + 4)
5390 {
5391 if (size < (10 + 2))
bee0ee85
NC
5392 {
5393 warn (_("Internal error: not enough buffer room for section flag info"));
5394 return _("<unknown>");
5395 }
8d5ff12c
L
5396 size -= 2;
5397 *p++ = ',';
5398 *p++ = ' ';
5399 }
5400
91d6fa6a
NC
5401 size -= flags [sindex].len;
5402 p = stpcpy (p, flags [sindex].str);
5477e8a0 5403 }
3b22753a 5404 else if (flag & SHF_MASKOS)
8d5ff12c 5405 os_flags |= flag;
d1133906 5406 else if (flag & SHF_MASKPROC)
8d5ff12c 5407 proc_flags |= flag;
d1133906 5408 else
8d5ff12c 5409 unknown_flags |= flag;
5477e8a0
L
5410 }
5411 else
5412 {
5413 switch (flag)
5414 {
5415 case SHF_WRITE: *p = 'W'; break;
5416 case SHF_ALLOC: *p = 'A'; break;
5417 case SHF_EXECINSTR: *p = 'X'; break;
5418 case SHF_MERGE: *p = 'M'; break;
5419 case SHF_STRINGS: *p = 'S'; break;
5420 case SHF_INFO_LINK: *p = 'I'; break;
5421 case SHF_LINK_ORDER: *p = 'L'; break;
5422 case SHF_OS_NONCONFORMING: *p = 'O'; break;
5423 case SHF_GROUP: *p = 'G'; break;
5424 case SHF_TLS: *p = 'T'; break;
18ae9cc1 5425 case SHF_EXCLUDE: *p = 'E'; break;
77115a4a 5426 case SHF_COMPRESSED: *p = 'C'; break;
5477e8a0
L
5427
5428 default:
8a9036a4 5429 if ((elf_header.e_machine == EM_X86_64
7a9068fe
L
5430 || elf_header.e_machine == EM_L1OM
5431 || elf_header.e_machine == EM_K1OM)
5477e8a0
L
5432 && flag == SHF_X86_64_LARGE)
5433 *p = 'l';
91f68a68
MG
5434 else if (elf_header.e_machine == EM_ARM
5435 && flag == SHF_ARM_NOREAD)
5436 *p = 'y';
5477e8a0
L
5437 else if (flag & SHF_MASKOS)
5438 {
5439 *p = 'o';
5440 sh_flags &= ~ SHF_MASKOS;
5441 }
5442 else if (flag & SHF_MASKPROC)
5443 {
5444 *p = 'p';
5445 sh_flags &= ~ SHF_MASKPROC;
5446 }
5447 else
5448 *p = 'x';
5449 break;
5450 }
5451 p++;
d1133906
NC
5452 }
5453 }
76da6bbe 5454
8d5ff12c
L
5455 if (do_section_details)
5456 {
5457 if (os_flags)
5458 {
5459 size -= 5 + field_size;
5460 if (p != buff + field_size + 4)
5461 {
5462 if (size < (2 + 1))
bee0ee85
NC
5463 {
5464 warn (_("Internal error: not enough buffer room for section flag info"));
5465 return _("<unknown>");
5466 }
8d5ff12c
L
5467 size -= 2;
5468 *p++ = ',';
5469 *p++ = ' ';
5470 }
5471 sprintf (p, "OS (%*.*lx)", field_size, field_size,
5472 (unsigned long) os_flags);
5473 p += 5 + field_size;
5474 }
5475 if (proc_flags)
5476 {
5477 size -= 7 + field_size;
5478 if (p != buff + field_size + 4)
5479 {
5480 if (size < (2 + 1))
bee0ee85
NC
5481 {
5482 warn (_("Internal error: not enough buffer room for section flag info"));
5483 return _("<unknown>");
5484 }
8d5ff12c
L
5485 size -= 2;
5486 *p++ = ',';
5487 *p++ = ' ';
5488 }
5489 sprintf (p, "PROC (%*.*lx)", field_size, field_size,
5490 (unsigned long) proc_flags);
5491 p += 7 + field_size;
5492 }
5493 if (unknown_flags)
5494 {
5495 size -= 10 + field_size;
5496 if (p != buff + field_size + 4)
5497 {
5498 if (size < (2 + 1))
bee0ee85
NC
5499 {
5500 warn (_("Internal error: not enough buffer room for section flag info"));
5501 return _("<unknown>");
5502 }
8d5ff12c
L
5503 size -= 2;
5504 *p++ = ',';
5505 *p++ = ' ';
5506 }
2b692964 5507 sprintf (p, _("UNKNOWN (%*.*lx)"), field_size, field_size,
8d5ff12c
L
5508 (unsigned long) unknown_flags);
5509 p += 10 + field_size;
5510 }
5511 }
5512
e9e44622 5513 *p = '\0';
d1133906
NC
5514 return buff;
5515}
5516
77115a4a
L
5517static unsigned int
5518get_compression_header (Elf_Internal_Chdr *chdr, unsigned char *buf)
5519{
5520 if (is_32bit_elf)
5521 {
5522 Elf32_External_Chdr *echdr = (Elf32_External_Chdr *) buf;
5523 chdr->ch_type = BYTE_GET (echdr->ch_type);
5524 chdr->ch_size = BYTE_GET (echdr->ch_size);
5525 chdr->ch_addralign = BYTE_GET (echdr->ch_addralign);
5526 return sizeof (*echdr);
5527 }
5528 else
5529 {
5530 Elf64_External_Chdr *echdr = (Elf64_External_Chdr *) buf;
5531 chdr->ch_type = BYTE_GET (echdr->ch_type);
5532 chdr->ch_size = BYTE_GET (echdr->ch_size);
5533 chdr->ch_addralign = BYTE_GET (echdr->ch_addralign);
5534 return sizeof (*echdr);
5535 }
5536}
5537
252b5132 5538static int
2cf0635d 5539process_section_headers (FILE * file)
252b5132 5540{
2cf0635d 5541 Elf_Internal_Shdr * section;
b34976b6 5542 unsigned int i;
252b5132
RH
5543
5544 section_headers = NULL;
5545
5546 if (elf_header.e_shnum == 0)
5547 {
82f2dbf7
NC
5548 /* PR binutils/12467. */
5549 if (elf_header.e_shoff != 0)
5550 warn (_("possibly corrupt ELF file header - it has a non-zero"
5551 " section header offset, but no section headers\n"));
5552 else if (do_sections)
252b5132
RH
5553 printf (_("\nThere are no sections in this file.\n"));
5554
5555 return 1;
5556 }
5557
5558 if (do_sections && !do_header)
9ea033b2 5559 printf (_("There are %d section headers, starting at offset 0x%lx:\n"),
252b5132
RH
5560 elf_header.e_shnum, (unsigned long) elf_header.e_shoff);
5561
9ea033b2
NC
5562 if (is_32bit_elf)
5563 {
049b0c3a 5564 if (! get_32bit_section_headers (file, FALSE))
9ea033b2
NC
5565 return 0;
5566 }
049b0c3a 5567 else if (! get_64bit_section_headers (file, FALSE))
252b5132
RH
5568 return 0;
5569
5570 /* Read in the string table, so that we have names to display. */
0b49d371 5571 if (elf_header.e_shstrndx != SHN_UNDEF
4fbb74a6 5572 && elf_header.e_shstrndx < elf_header.e_shnum)
252b5132 5573 {
4fbb74a6 5574 section = section_headers + elf_header.e_shstrndx;
d40ac9bd 5575
c256ffe7
JJ
5576 if (section->sh_size != 0)
5577 {
3f5e193b
NC
5578 string_table = (char *) get_data (NULL, file, section->sh_offset,
5579 1, section->sh_size,
5580 _("string table"));
0de14b54 5581
c256ffe7
JJ
5582 string_table_length = string_table != NULL ? section->sh_size : 0;
5583 }
252b5132
RH
5584 }
5585
5586 /* Scan the sections for the dynamic symbol table
e3c8793a 5587 and dynamic string table and debug sections. */
252b5132
RH
5588 dynamic_symbols = NULL;
5589 dynamic_strings = NULL;
5590 dynamic_syminfo = NULL;
6a40cf0c 5591 symtab_shndx_list = NULL;
103f02d3 5592
89fac5e3
RS
5593 eh_addr_size = is_32bit_elf ? 4 : 8;
5594 switch (elf_header.e_machine)
5595 {
5596 case EM_MIPS:
5597 case EM_MIPS_RS3_LE:
5598 /* The 64-bit MIPS EABI uses a combination of 32-bit ELF and 64-bit
5599 FDE addresses. However, the ABI also has a semi-official ILP32
5600 variant for which the normal FDE address size rules apply.
5601
5602 GCC 4.0 marks EABI64 objects with a dummy .gcc_compiled_longXX
5603 section, where XX is the size of longs in bits. Unfortunately,
5604 earlier compilers provided no way of distinguishing ILP32 objects
5605 from LP64 objects, so if there's any doubt, we should assume that
5606 the official LP64 form is being used. */
5607 if ((elf_header.e_flags & EF_MIPS_ABI) == E_MIPS_ABI_EABI64
5608 && find_section (".gcc_compiled_long32") == NULL)
5609 eh_addr_size = 8;
5610 break;
0f56a26a
DD
5611
5612 case EM_H8_300:
5613 case EM_H8_300H:
5614 switch (elf_header.e_flags & EF_H8_MACH)
5615 {
5616 case E_H8_MACH_H8300:
5617 case E_H8_MACH_H8300HN:
5618 case E_H8_MACH_H8300SN:
5619 case E_H8_MACH_H8300SXN:
5620 eh_addr_size = 2;
5621 break;
5622 case E_H8_MACH_H8300H:
5623 case E_H8_MACH_H8300S:
5624 case E_H8_MACH_H8300SX:
5625 eh_addr_size = 4;
5626 break;
5627 }
f4236fe4
DD
5628 break;
5629
ff7eeb89 5630 case EM_M32C_OLD:
f4236fe4
DD
5631 case EM_M32C:
5632 switch (elf_header.e_flags & EF_M32C_CPU_MASK)
5633 {
5634 case EF_M32C_CPU_M16C:
5635 eh_addr_size = 2;
5636 break;
5637 }
5638 break;
89fac5e3
RS
5639 }
5640
76ca31c0
NC
5641#define CHECK_ENTSIZE_VALUES(section, i, size32, size64) \
5642 do \
5643 { \
5644 bfd_size_type expected_entsize = is_32bit_elf ? size32 : size64; \
5645 if (section->sh_entsize != expected_entsize) \
9dd3a467 5646 { \
76ca31c0
NC
5647 char buf[40]; \
5648 sprintf_vma (buf, section->sh_entsize); \
5649 /* Note: coded this way so that there is a single string for \
5650 translation. */ \
5651 error (_("Section %d has invalid sh_entsize of %s\n"), i, buf); \
5652 error (_("(Using the expected size of %u for the rest of this dump)\n"), \
5653 (unsigned) expected_entsize); \
9dd3a467 5654 section->sh_entsize = expected_entsize; \
76ca31c0
NC
5655 } \
5656 } \
08d8fa11 5657 while (0)
9dd3a467
NC
5658
5659#define CHECK_ENTSIZE(section, i, type) \
08d8fa11
JJ
5660 CHECK_ENTSIZE_VALUES (section, i, sizeof (Elf32_External_##type), \
5661 sizeof (Elf64_External_##type))
5662
252b5132
RH
5663 for (i = 0, section = section_headers;
5664 i < elf_header.e_shnum;
b34976b6 5665 i++, section++)
252b5132 5666 {
2cf0635d 5667 char * name = SECTION_NAME (section);
252b5132
RH
5668
5669 if (section->sh_type == SHT_DYNSYM)
5670 {
5671 if (dynamic_symbols != NULL)
5672 {
5673 error (_("File contains multiple dynamic symbol tables\n"));
5674 continue;
5675 }
5676
08d8fa11 5677 CHECK_ENTSIZE (section, i, Sym);
ba5cdace 5678 dynamic_symbols = GET_ELF_SYMBOLS (file, section, & num_dynamic_syms);
252b5132
RH
5679 }
5680 else if (section->sh_type == SHT_STRTAB
18bd398b 5681 && streq (name, ".dynstr"))
252b5132
RH
5682 {
5683 if (dynamic_strings != NULL)
5684 {
5685 error (_("File contains multiple dynamic string tables\n"));
5686 continue;
5687 }
5688
3f5e193b
NC
5689 dynamic_strings = (char *) get_data (NULL, file, section->sh_offset,
5690 1, section->sh_size,
5691 _("dynamic strings"));
59245841 5692 dynamic_strings_length = dynamic_strings == NULL ? 0 : section->sh_size;
252b5132 5693 }
9ad5cbcf
AM
5694 else if (section->sh_type == SHT_SYMTAB_SHNDX)
5695 {
6a40cf0c
NC
5696 elf_section_list * entry = xmalloc (sizeof * entry);
5697 entry->hdr = section;
5698 entry->next = symtab_shndx_list;
5699 symtab_shndx_list = entry;
9ad5cbcf 5700 }
08d8fa11
JJ
5701 else if (section->sh_type == SHT_SYMTAB)
5702 CHECK_ENTSIZE (section, i, Sym);
5703 else if (section->sh_type == SHT_GROUP)
5704 CHECK_ENTSIZE_VALUES (section, i, GRP_ENTRY_SIZE, GRP_ENTRY_SIZE);
5705 else if (section->sh_type == SHT_REL)
5706 CHECK_ENTSIZE (section, i, Rel);
5707 else if (section->sh_type == SHT_RELA)
5708 CHECK_ENTSIZE (section, i, Rela);
252b5132 5709 else if ((do_debugging || do_debug_info || do_debug_abbrevs
f9f0e732 5710 || do_debug_lines || do_debug_pubnames || do_debug_pubtypes
cb8f3167 5711 || do_debug_aranges || do_debug_frames || do_debug_macinfo
657d0d47
CC
5712 || do_debug_str || do_debug_loc || do_debug_ranges
5713 || do_debug_addr || do_debug_cu_index)
1b315056
CS
5714 && (const_strneq (name, ".debug_")
5715 || const_strneq (name, ".zdebug_")))
252b5132 5716 {
1b315056
CS
5717 if (name[1] == 'z')
5718 name += sizeof (".zdebug_") - 1;
5719 else
5720 name += sizeof (".debug_") - 1;
252b5132
RH
5721
5722 if (do_debugging
4723351a
CC
5723 || (do_debug_info && const_strneq (name, "info"))
5724 || (do_debug_info && const_strneq (name, "types"))
5725 || (do_debug_abbrevs && const_strneq (name, "abbrev"))
b40bf0a2
NC
5726 || (do_debug_lines && strcmp (name, "line") == 0)
5727 || (do_debug_lines && const_strneq (name, "line."))
4723351a
CC
5728 || (do_debug_pubnames && const_strneq (name, "pubnames"))
5729 || (do_debug_pubtypes && const_strneq (name, "pubtypes"))
459d52c8
DE
5730 || (do_debug_pubnames && const_strneq (name, "gnu_pubnames"))
5731 || (do_debug_pubtypes && const_strneq (name, "gnu_pubtypes"))
4723351a
CC
5732 || (do_debug_aranges && const_strneq (name, "aranges"))
5733 || (do_debug_ranges && const_strneq (name, "ranges"))
5734 || (do_debug_frames && const_strneq (name, "frame"))
5735 || (do_debug_macinfo && const_strneq (name, "macinfo"))
5736 || (do_debug_macinfo && const_strneq (name, "macro"))
5737 || (do_debug_str && const_strneq (name, "str"))
5738 || (do_debug_loc && const_strneq (name, "loc"))
657d0d47
CC
5739 || (do_debug_addr && const_strneq (name, "addr"))
5740 || (do_debug_cu_index && const_strneq (name, "cu_index"))
5741 || (do_debug_cu_index && const_strneq (name, "tu_index"))
252b5132 5742 )
09c11c86 5743 request_dump_bynumber (i, DEBUG_DUMP);
252b5132 5744 }
a262ae96 5745 /* Linkonce section to be combined with .debug_info at link time. */
09fd7e38 5746 else if ((do_debugging || do_debug_info)
0112cd26 5747 && const_strneq (name, ".gnu.linkonce.wi."))
09c11c86 5748 request_dump_bynumber (i, DEBUG_DUMP);
18bd398b 5749 else if (do_debug_frames && streq (name, ".eh_frame"))
09c11c86 5750 request_dump_bynumber (i, DEBUG_DUMP);
5bbdf3d5
DE
5751 else if (do_gdb_index && streq (name, ".gdb_index"))
5752 request_dump_bynumber (i, DEBUG_DUMP);
6f875884
TG
5753 /* Trace sections for Itanium VMS. */
5754 else if ((do_debugging || do_trace_info || do_trace_abbrevs
5755 || do_trace_aranges)
5756 && const_strneq (name, ".trace_"))
5757 {
5758 name += sizeof (".trace_") - 1;
5759
5760 if (do_debugging
5761 || (do_trace_info && streq (name, "info"))
5762 || (do_trace_abbrevs && streq (name, "abbrev"))
5763 || (do_trace_aranges && streq (name, "aranges"))
5764 )
5765 request_dump_bynumber (i, DEBUG_DUMP);
5766 }
252b5132
RH
5767 }
5768
5769 if (! do_sections)
5770 return 1;
5771
3a1a2036
NC
5772 if (elf_header.e_shnum > 1)
5773 printf (_("\nSection Headers:\n"));
5774 else
5775 printf (_("\nSection Header:\n"));
76da6bbe 5776
f7a99963 5777 if (is_32bit_elf)
595cf52e 5778 {
5477e8a0 5779 if (do_section_details)
595cf52e
L
5780 {
5781 printf (_(" [Nr] Name\n"));
5477e8a0 5782 printf (_(" Type Addr Off Size ES Lk Inf Al\n"));
595cf52e
L
5783 }
5784 else
5785 printf
5786 (_(" [Nr] Name Type Addr Off Size ES Flg Lk Inf Al\n"));
5787 }
d974e256 5788 else if (do_wide)
595cf52e 5789 {
5477e8a0 5790 if (do_section_details)
595cf52e
L
5791 {
5792 printf (_(" [Nr] Name\n"));
5477e8a0 5793 printf (_(" Type Address Off Size ES Lk Inf Al\n"));
595cf52e
L
5794 }
5795 else
5796 printf
5797 (_(" [Nr] Name Type Address Off Size ES Flg Lk Inf Al\n"));
5798 }
f7a99963
NC
5799 else
5800 {
5477e8a0 5801 if (do_section_details)
595cf52e
L
5802 {
5803 printf (_(" [Nr] Name\n"));
5477e8a0
L
5804 printf (_(" Type Address Offset Link\n"));
5805 printf (_(" Size EntSize Info Align\n"));
595cf52e
L
5806 }
5807 else
5808 {
5809 printf (_(" [Nr] Name Type Address Offset\n"));
5810 printf (_(" Size EntSize Flags Link Info Align\n"));
5811 }
f7a99963 5812 }
252b5132 5813
5477e8a0
L
5814 if (do_section_details)
5815 printf (_(" Flags\n"));
5816
252b5132
RH
5817 for (i = 0, section = section_headers;
5818 i < elf_header.e_shnum;
b34976b6 5819 i++, section++)
252b5132 5820 {
7bfd842d 5821 printf (" [%2u] ", i);
5477e8a0 5822 if (do_section_details)
74e1a04b 5823 printf ("%s\n ", printable_section_name (section));
595cf52e 5824 else
74e1a04b 5825 print_symbol (-17, SECTION_NAME (section));
0b4362b0 5826
ea52a088
NC
5827 printf (do_wide ? " %-15s " : " %-15.15s ",
5828 get_section_type_name (section->sh_type));
0b4362b0 5829
f7a99963
NC
5830 if (is_32bit_elf)
5831 {
cfcac11d
NC
5832 const char * link_too_big = NULL;
5833
f7a99963 5834 print_vma (section->sh_addr, LONG_HEX);
76da6bbe 5835
f7a99963
NC
5836 printf ( " %6.6lx %6.6lx %2.2lx",
5837 (unsigned long) section->sh_offset,
5838 (unsigned long) section->sh_size,
5839 (unsigned long) section->sh_entsize);
d1133906 5840
5477e8a0
L
5841 if (do_section_details)
5842 fputs (" ", stdout);
5843 else
5844 printf (" %3s ", get_elf_section_flags (section->sh_flags));
76da6bbe 5845
cfcac11d
NC
5846 if (section->sh_link >= elf_header.e_shnum)
5847 {
5848 link_too_big = "";
5849 /* The sh_link value is out of range. Normally this indicates
caa83f8b 5850 an error but it can have special values in Solaris binaries. */
cfcac11d
NC
5851 switch (elf_header.e_machine)
5852 {
caa83f8b 5853 case EM_386:
22abe556 5854 case EM_IAMCU:
caa83f8b 5855 case EM_X86_64:
7f502d6c 5856 case EM_L1OM:
7a9068fe 5857 case EM_K1OM:
cfcac11d
NC
5858 case EM_OLD_SPARCV9:
5859 case EM_SPARC32PLUS:
5860 case EM_SPARCV9:
5861 case EM_SPARC:
5862 if (section->sh_link == (SHN_BEFORE & 0xffff))
5863 link_too_big = "BEFORE";
5864 else if (section->sh_link == (SHN_AFTER & 0xffff))
5865 link_too_big = "AFTER";
5866 break;
5867 default:
5868 break;
5869 }
5870 }
5871
5872 if (do_section_details)
5873 {
5874 if (link_too_big != NULL && * link_too_big)
5875 printf ("<%s> ", link_too_big);
5876 else
5877 printf ("%2u ", section->sh_link);
5878 printf ("%3u %2lu\n", section->sh_info,
5879 (unsigned long) section->sh_addralign);
5880 }
5881 else
5882 printf ("%2u %3u %2lu\n",
5883 section->sh_link,
5884 section->sh_info,
5885 (unsigned long) section->sh_addralign);
5886
5887 if (link_too_big && ! * link_too_big)
5888 warn (_("section %u: sh_link value of %u is larger than the number of sections\n"),
5889 i, section->sh_link);
f7a99963 5890 }
d974e256
JJ
5891 else if (do_wide)
5892 {
5893 print_vma (section->sh_addr, LONG_HEX);
5894
5895 if ((long) section->sh_offset == section->sh_offset)
5896 printf (" %6.6lx", (unsigned long) section->sh_offset);
5897 else
5898 {
5899 putchar (' ');
5900 print_vma (section->sh_offset, LONG_HEX);
5901 }
5902
5903 if ((unsigned long) section->sh_size == section->sh_size)
5904 printf (" %6.6lx", (unsigned long) section->sh_size);
5905 else
5906 {
5907 putchar (' ');
5908 print_vma (section->sh_size, LONG_HEX);
5909 }
5910
5911 if ((unsigned long) section->sh_entsize == section->sh_entsize)
5912 printf (" %2.2lx", (unsigned long) section->sh_entsize);
5913 else
5914 {
5915 putchar (' ');
5916 print_vma (section->sh_entsize, LONG_HEX);
5917 }
5918
5477e8a0
L
5919 if (do_section_details)
5920 fputs (" ", stdout);
5921 else
5922 printf (" %3s ", get_elf_section_flags (section->sh_flags));
d974e256 5923
72de5009 5924 printf ("%2u %3u ", section->sh_link, section->sh_info);
d974e256
JJ
5925
5926 if ((unsigned long) section->sh_addralign == section->sh_addralign)
72de5009 5927 printf ("%2lu\n", (unsigned long) section->sh_addralign);
d974e256
JJ
5928 else
5929 {
5930 print_vma (section->sh_addralign, DEC);
5931 putchar ('\n');
5932 }
5933 }
5477e8a0 5934 else if (do_section_details)
595cf52e 5935 {
5477e8a0 5936 printf (" %-15.15s ",
595cf52e 5937 get_section_type_name (section->sh_type));
595cf52e
L
5938 print_vma (section->sh_addr, LONG_HEX);
5939 if ((long) section->sh_offset == section->sh_offset)
5477e8a0 5940 printf (" %16.16lx", (unsigned long) section->sh_offset);
595cf52e
L
5941 else
5942 {
5943 printf (" ");
5944 print_vma (section->sh_offset, LONG_HEX);
5945 }
72de5009 5946 printf (" %u\n ", section->sh_link);
595cf52e 5947 print_vma (section->sh_size, LONG_HEX);
5477e8a0 5948 putchar (' ');
595cf52e
L
5949 print_vma (section->sh_entsize, LONG_HEX);
5950
72de5009
AM
5951 printf (" %-16u %lu\n",
5952 section->sh_info,
595cf52e
L
5953 (unsigned long) section->sh_addralign);
5954 }
f7a99963
NC
5955 else
5956 {
5957 putchar (' ');
5958 print_vma (section->sh_addr, LONG_HEX);
53c7db4b
KH
5959 if ((long) section->sh_offset == section->sh_offset)
5960 printf (" %8.8lx", (unsigned long) section->sh_offset);
5961 else
5962 {
5963 printf (" ");
5964 print_vma (section->sh_offset, LONG_HEX);
5965 }
f7a99963
NC
5966 printf ("\n ");
5967 print_vma (section->sh_size, LONG_HEX);
5968 printf (" ");
5969 print_vma (section->sh_entsize, LONG_HEX);
76da6bbe 5970
d1133906 5971 printf (" %3s ", get_elf_section_flags (section->sh_flags));
76da6bbe 5972
72de5009
AM
5973 printf (" %2u %3u %lu\n",
5974 section->sh_link,
5975 section->sh_info,
f7a99963
NC
5976 (unsigned long) section->sh_addralign);
5977 }
5477e8a0
L
5978
5979 if (do_section_details)
77115a4a
L
5980 {
5981 printf (" %s\n", get_elf_section_flags (section->sh_flags));
5982 if ((section->sh_flags & SHF_COMPRESSED) != 0)
5983 {
5984 /* Minimum section size is 12 bytes for 32-bit compression
5985 header + 12 bytes for compressed data header. */
5986 unsigned char buf[24];
5987 assert (sizeof (buf) >= sizeof (Elf64_External_Chdr));
5988 if (get_data (&buf, (FILE *) file, section->sh_offset, 1,
5989 sizeof (buf), _("compression header")))
5990 {
5991 Elf_Internal_Chdr chdr;
5992 get_compression_header (&chdr, buf);
5993 if (chdr.ch_type == ELFCOMPRESS_ZLIB)
5994 printf (" ZLIB, ");
5995 else
5996 printf (_(" [<unknown>: 0x%x], "),
5997 chdr.ch_type);
5998 print_vma (chdr.ch_size, LONG_HEX);
5999 printf (", %lu\n", (unsigned long) chdr.ch_addralign);
6000 }
6001 }
6002 }
252b5132
RH
6003 }
6004
5477e8a0 6005 if (!do_section_details)
3dbcc61d 6006 {
9fb71ee4
NC
6007 /* The ordering of the letters shown here matches the ordering of the
6008 corresponding SHF_xxx values, and hence the order in which these
6009 letters will be displayed to the user. */
6010 printf (_("Key to Flags:\n\
6011 W (write), A (alloc), X (execute), M (merge), S (strings), I (info),\n\
6012 L (link order), O (extra OS processing required), G (group), T (TLS),\n\
6013 C (compressed), x (unknown), o (OS specific), E (exclude),\n"));
3dbcc61d 6014 if (elf_header.e_machine == EM_X86_64
7a9068fe
L
6015 || elf_header.e_machine == EM_L1OM
6016 || elf_header.e_machine == EM_K1OM)
9fb71ee4 6017 printf (_("l (large), "));
91f68a68 6018 else if (elf_header.e_machine == EM_ARM)
9fb71ee4
NC
6019 printf (_("y (noread), "));
6020 printf ("p (processor specific)\n");
0b4362b0 6021 }
d1133906 6022
252b5132
RH
6023 return 1;
6024}
6025
f5842774
L
6026static const char *
6027get_group_flags (unsigned int flags)
6028{
6029 static char buff[32];
6030 switch (flags)
6031 {
220453ec
AM
6032 case 0:
6033 return "";
6034
f5842774 6035 case GRP_COMDAT:
220453ec 6036 return "COMDAT ";
f5842774
L
6037
6038 default:
220453ec 6039 snprintf (buff, sizeof (buff), _("[<unknown>: 0x%x] "), flags);
f5842774
L
6040 break;
6041 }
6042 return buff;
6043}
6044
6045static int
2cf0635d 6046process_section_groups (FILE * file)
f5842774 6047{
2cf0635d 6048 Elf_Internal_Shdr * section;
f5842774 6049 unsigned int i;
2cf0635d
NC
6050 struct group * group;
6051 Elf_Internal_Shdr * symtab_sec;
6052 Elf_Internal_Shdr * strtab_sec;
6053 Elf_Internal_Sym * symtab;
ba5cdace 6054 unsigned long num_syms;
2cf0635d 6055 char * strtab;
c256ffe7 6056 size_t strtab_size;
d1f5c6e3
L
6057
6058 /* Don't process section groups unless needed. */
6059 if (!do_unwind && !do_section_groups)
6060 return 1;
f5842774
L
6061
6062 if (elf_header.e_shnum == 0)
6063 {
6064 if (do_section_groups)
82f2dbf7 6065 printf (_("\nThere are no sections to group in this file.\n"));
f5842774
L
6066
6067 return 1;
6068 }
6069
6070 if (section_headers == NULL)
6071 {
6072 error (_("Section headers are not available!\n"));
fa1908fd
NC
6073 /* PR 13622: This can happen with a corrupt ELF header. */
6074 return 0;
f5842774
L
6075 }
6076
3f5e193b
NC
6077 section_headers_groups = (struct group **) calloc (elf_header.e_shnum,
6078 sizeof (struct group *));
e4b17d5c
L
6079
6080 if (section_headers_groups == NULL)
6081 {
8b73c356
NC
6082 error (_("Out of memory reading %u section group headers\n"),
6083 elf_header.e_shnum);
e4b17d5c
L
6084 return 0;
6085 }
6086
f5842774 6087 /* Scan the sections for the group section. */
d1f5c6e3 6088 group_count = 0;
f5842774
L
6089 for (i = 0, section = section_headers;
6090 i < elf_header.e_shnum;
6091 i++, section++)
e4b17d5c
L
6092 if (section->sh_type == SHT_GROUP)
6093 group_count++;
6094
d1f5c6e3
L
6095 if (group_count == 0)
6096 {
6097 if (do_section_groups)
6098 printf (_("\nThere are no section groups in this file.\n"));
6099
6100 return 1;
6101 }
6102
3f5e193b 6103 section_groups = (struct group *) calloc (group_count, sizeof (struct group));
e4b17d5c
L
6104
6105 if (section_groups == NULL)
6106 {
8b73c356
NC
6107 error (_("Out of memory reading %lu groups\n"),
6108 (unsigned long) group_count);
e4b17d5c
L
6109 return 0;
6110 }
6111
d1f5c6e3
L
6112 symtab_sec = NULL;
6113 strtab_sec = NULL;
6114 symtab = NULL;
ba5cdace 6115 num_syms = 0;
d1f5c6e3 6116 strtab = NULL;
c256ffe7 6117 strtab_size = 0;
e4b17d5c
L
6118 for (i = 0, section = section_headers, group = section_groups;
6119 i < elf_header.e_shnum;
6120 i++, section++)
f5842774
L
6121 {
6122 if (section->sh_type == SHT_GROUP)
6123 {
74e1a04b
NC
6124 const char * name = printable_section_name (section);
6125 const char * group_name;
2cf0635d
NC
6126 unsigned char * start;
6127 unsigned char * indices;
f5842774 6128 unsigned int entry, j, size;
2cf0635d
NC
6129 Elf_Internal_Shdr * sec;
6130 Elf_Internal_Sym * sym;
f5842774
L
6131
6132 /* Get the symbol table. */
4fbb74a6
AM
6133 if (section->sh_link >= elf_header.e_shnum
6134 || ((sec = section_headers + section->sh_link)->sh_type
c256ffe7 6135 != SHT_SYMTAB))
f5842774
L
6136 {
6137 error (_("Bad sh_link in group section `%s'\n"), name);
6138 continue;
6139 }
d1f5c6e3
L
6140
6141 if (symtab_sec != sec)
6142 {
6143 symtab_sec = sec;
6144 if (symtab)
6145 free (symtab);
ba5cdace 6146 symtab = GET_ELF_SYMBOLS (file, symtab_sec, & num_syms);
d1f5c6e3 6147 }
f5842774 6148
dd24e3da
NC
6149 if (symtab == NULL)
6150 {
6151 error (_("Corrupt header in group section `%s'\n"), name);
6152 continue;
6153 }
6154
ba5cdace
NC
6155 if (section->sh_info >= num_syms)
6156 {
6157 error (_("Bad sh_info in group section `%s'\n"), name);
6158 continue;
6159 }
6160
f5842774
L
6161 sym = symtab + section->sh_info;
6162
6163 if (ELF_ST_TYPE (sym->st_info) == STT_SECTION)
6164 {
4fbb74a6
AM
6165 if (sym->st_shndx == 0
6166 || sym->st_shndx >= elf_header.e_shnum)
f5842774
L
6167 {
6168 error (_("Bad sh_info in group section `%s'\n"), name);
6169 continue;
6170 }
ba2685cc 6171
4fbb74a6 6172 group_name = SECTION_NAME (section_headers + sym->st_shndx);
c256ffe7
JJ
6173 strtab_sec = NULL;
6174 if (strtab)
6175 free (strtab);
f5842774 6176 strtab = NULL;
c256ffe7 6177 strtab_size = 0;
f5842774
L
6178 }
6179 else
6180 {
6181 /* Get the string table. */
4fbb74a6 6182 if (symtab_sec->sh_link >= elf_header.e_shnum)
c256ffe7
JJ
6183 {
6184 strtab_sec = NULL;
6185 if (strtab)
6186 free (strtab);
6187 strtab = NULL;
6188 strtab_size = 0;
6189 }
6190 else if (strtab_sec
4fbb74a6 6191 != (sec = section_headers + symtab_sec->sh_link))
d1f5c6e3
L
6192 {
6193 strtab_sec = sec;
6194 if (strtab)
6195 free (strtab);
071436c6 6196
3f5e193b 6197 strtab = (char *) get_data (NULL, file, strtab_sec->sh_offset,
071436c6
NC
6198 1, strtab_sec->sh_size,
6199 _("string table"));
c256ffe7 6200 strtab_size = strtab != NULL ? strtab_sec->sh_size : 0;
d1f5c6e3 6201 }
c256ffe7 6202 group_name = sym->st_name < strtab_size
2b692964 6203 ? strtab + sym->st_name : _("<corrupt>");
f5842774
L
6204 }
6205
c9c1d674
EG
6206 /* PR 17531: file: loop. */
6207 if (section->sh_entsize > section->sh_size)
6208 {
6209 error (_("Section %s has sh_entsize (0x%lx) which is larger than its size (0x%lx)\n"),
6210 printable_section_name (section),
8066deb1
AM
6211 (unsigned long) section->sh_entsize,
6212 (unsigned long) section->sh_size);
c9c1d674
EG
6213 break;
6214 }
6215
3f5e193b
NC
6216 start = (unsigned char *) get_data (NULL, file, section->sh_offset,
6217 1, section->sh_size,
6218 _("section data"));
59245841
NC
6219 if (start == NULL)
6220 continue;
f5842774
L
6221
6222 indices = start;
6223 size = (section->sh_size / section->sh_entsize) - 1;
6224 entry = byte_get (indices, 4);
6225 indices += 4;
e4b17d5c
L
6226
6227 if (do_section_groups)
6228 {
2b692964 6229 printf (_("\n%sgroup section [%5u] `%s' [%s] contains %u sections:\n"),
391cb864 6230 get_group_flags (entry), i, name, group_name, size);
ba2685cc 6231
e4b17d5c
L
6232 printf (_(" [Index] Name\n"));
6233 }
6234
6235 group->group_index = i;
6236
f5842774
L
6237 for (j = 0; j < size; j++)
6238 {
2cf0635d 6239 struct group_list * g;
e4b17d5c 6240
f5842774
L
6241 entry = byte_get (indices, 4);
6242 indices += 4;
6243
4fbb74a6 6244 if (entry >= elf_header.e_shnum)
391cb864 6245 {
57028622
NC
6246 static unsigned num_group_errors = 0;
6247
6248 if (num_group_errors ++ < 10)
6249 {
6250 error (_("section [%5u] in group section [%5u] > maximum section [%5u]\n"),
6251 entry, i, elf_header.e_shnum - 1);
6252 if (num_group_errors == 10)
6253 warn (_("Futher error messages about overlarge group section indicies suppressed\n"));
6254 }
391cb864
L
6255 continue;
6256 }
391cb864 6257
4fbb74a6 6258 if (section_headers_groups [entry] != NULL)
e4b17d5c 6259 {
d1f5c6e3
L
6260 if (entry)
6261 {
57028622
NC
6262 static unsigned num_errs = 0;
6263
6264 if (num_errs ++ < 10)
6265 {
6266 error (_("section [%5u] in group section [%5u] already in group section [%5u]\n"),
6267 entry, i,
6268 section_headers_groups [entry]->group_index);
6269 if (num_errs == 10)
6270 warn (_("Further error messages about already contained group sections suppressed\n"));
6271 }
d1f5c6e3
L
6272 continue;
6273 }
6274 else
6275 {
6276 /* Intel C/C++ compiler may put section 0 in a
6277 section group. We just warn it the first time
6278 and ignore it afterwards. */
6279 static int warned = 0;
6280 if (!warned)
6281 {
6282 error (_("section 0 in group section [%5u]\n"),
4fbb74a6 6283 section_headers_groups [entry]->group_index);
d1f5c6e3
L
6284 warned++;
6285 }
6286 }
e4b17d5c
L
6287 }
6288
4fbb74a6 6289 section_headers_groups [entry] = group;
e4b17d5c
L
6290
6291 if (do_section_groups)
6292 {
4fbb74a6 6293 sec = section_headers + entry;
74e1a04b 6294 printf (" [%5u] %s\n", entry, printable_section_name (sec));
ba2685cc
AM
6295 }
6296
3f5e193b 6297 g = (struct group_list *) xmalloc (sizeof (struct group_list));
e4b17d5c
L
6298 g->section_index = entry;
6299 g->next = group->root;
6300 group->root = g;
f5842774
L
6301 }
6302
f5842774
L
6303 if (start)
6304 free (start);
e4b17d5c
L
6305
6306 group++;
f5842774
L
6307 }
6308 }
6309
d1f5c6e3
L
6310 if (symtab)
6311 free (symtab);
6312 if (strtab)
6313 free (strtab);
f5842774
L
6314 return 1;
6315}
6316
28f997cf
TG
6317/* Data used to display dynamic fixups. */
6318
6319struct ia64_vms_dynfixup
6320{
6321 bfd_vma needed_ident; /* Library ident number. */
6322 bfd_vma needed; /* Index in the dstrtab of the library name. */
6323 bfd_vma fixup_needed; /* Index of the library. */
6324 bfd_vma fixup_rela_cnt; /* Number of fixups. */
6325 bfd_vma fixup_rela_off; /* Fixups offset in the dynamic segment. */
6326};
6327
6328/* Data used to display dynamic relocations. */
6329
6330struct ia64_vms_dynimgrela
6331{
6332 bfd_vma img_rela_cnt; /* Number of relocations. */
6333 bfd_vma img_rela_off; /* Reloc offset in the dynamic segment. */
6334};
6335
6336/* Display IA-64 OpenVMS dynamic fixups (used to dynamically link a shared
6337 library). */
6338
6339static void
6340dump_ia64_vms_dynamic_fixups (FILE *file, struct ia64_vms_dynfixup *fixup,
6341 const char *strtab, unsigned int strtab_sz)
6342{
6343 Elf64_External_VMS_IMAGE_FIXUP *imfs;
6344 long i;
6345 const char *lib_name;
6346
6347 imfs = get_data (NULL, file, dynamic_addr + fixup->fixup_rela_off,
6348 1, fixup->fixup_rela_cnt * sizeof (*imfs),
6349 _("dynamic section image fixups"));
6350 if (!imfs)
6351 return;
6352
6353 if (fixup->needed < strtab_sz)
6354 lib_name = strtab + fixup->needed;
6355 else
6356 {
6357 warn ("corrupt library name index of 0x%lx found in dynamic entry",
7f01b0c6 6358 (unsigned long) fixup->needed);
28f997cf
TG
6359 lib_name = "???";
6360 }
6361 printf (_("\nImage fixups for needed library #%d: %s - ident: %lx\n"),
6362 (int) fixup->fixup_needed, lib_name, (long) fixup->needed_ident);
6363 printf
6364 (_("Seg Offset Type SymVec DataType\n"));
6365
6366 for (i = 0; i < (long) fixup->fixup_rela_cnt; i++)
6367 {
6368 unsigned int type;
6369 const char *rtype;
6370
6371 printf ("%3u ", (unsigned) BYTE_GET (imfs [i].fixup_seg));
6372 printf_vma ((bfd_vma) BYTE_GET (imfs [i].fixup_offset));
6373 type = BYTE_GET (imfs [i].type);
6374 rtype = elf_ia64_reloc_type (type);
6375 if (rtype == NULL)
6376 printf (" 0x%08x ", type);
6377 else
6378 printf (" %-32s ", rtype);
6379 printf ("%6u ", (unsigned) BYTE_GET (imfs [i].symvec_index));
6380 printf ("0x%08x\n", (unsigned) BYTE_GET (imfs [i].data_type));
6381 }
6382
6383 free (imfs);
6384}
6385
6386/* Display IA-64 OpenVMS dynamic relocations (used to relocate an image). */
6387
6388static void
6389dump_ia64_vms_dynamic_relocs (FILE *file, struct ia64_vms_dynimgrela *imgrela)
6390{
6391 Elf64_External_VMS_IMAGE_RELA *imrs;
6392 long i;
6393
6394 imrs = get_data (NULL, file, dynamic_addr + imgrela->img_rela_off,
6395 1, imgrela->img_rela_cnt * sizeof (*imrs),
9cf03b7e 6396 _("dynamic section image relocations"));
28f997cf
TG
6397 if (!imrs)
6398 return;
6399
6400 printf (_("\nImage relocs\n"));
6401 printf
6402 (_("Seg Offset Type Addend Seg Sym Off\n"));
6403
6404 for (i = 0; i < (long) imgrela->img_rela_cnt; i++)
6405 {
6406 unsigned int type;
6407 const char *rtype;
6408
6409 printf ("%3u ", (unsigned) BYTE_GET (imrs [i].rela_seg));
6410 printf ("%08" BFD_VMA_FMT "x ",
6411 (bfd_vma) BYTE_GET (imrs [i].rela_offset));
6412 type = BYTE_GET (imrs [i].type);
6413 rtype = elf_ia64_reloc_type (type);
6414 if (rtype == NULL)
6415 printf ("0x%08x ", type);
6416 else
6417 printf ("%-31s ", rtype);
6418 print_vma (BYTE_GET (imrs [i].addend), FULL_HEX);
6419 printf ("%3u ", (unsigned) BYTE_GET (imrs [i].sym_seg));
6420 printf ("%08" BFD_VMA_FMT "x\n",
6421 (bfd_vma) BYTE_GET (imrs [i].sym_offset));
6422 }
6423
6424 free (imrs);
6425}
6426
6427/* Display IA-64 OpenVMS dynamic relocations and fixups. */
6428
6429static int
6430process_ia64_vms_dynamic_relocs (FILE *file)
6431{
6432 struct ia64_vms_dynfixup fixup;
6433 struct ia64_vms_dynimgrela imgrela;
6434 Elf_Internal_Dyn *entry;
6435 int res = 0;
6436 bfd_vma strtab_off = 0;
6437 bfd_vma strtab_sz = 0;
6438 char *strtab = NULL;
6439
6440 memset (&fixup, 0, sizeof (fixup));
6441 memset (&imgrela, 0, sizeof (imgrela));
6442
6443 /* Note: the order of the entries is specified by the OpenVMS specs. */
6444 for (entry = dynamic_section;
6445 entry < dynamic_section + dynamic_nent;
6446 entry++)
6447 {
6448 switch (entry->d_tag)
6449 {
6450 case DT_IA_64_VMS_STRTAB_OFFSET:
6451 strtab_off = entry->d_un.d_val;
6452 break;
6453 case DT_STRSZ:
6454 strtab_sz = entry->d_un.d_val;
6455 if (strtab == NULL)
6456 strtab = get_data (NULL, file, dynamic_addr + strtab_off,
6457 1, strtab_sz, _("dynamic string section"));
6458 break;
6459
6460 case DT_IA_64_VMS_NEEDED_IDENT:
6461 fixup.needed_ident = entry->d_un.d_val;
6462 break;
6463 case DT_NEEDED:
6464 fixup.needed = entry->d_un.d_val;
6465 break;
6466 case DT_IA_64_VMS_FIXUP_NEEDED:
6467 fixup.fixup_needed = entry->d_un.d_val;
6468 break;
6469 case DT_IA_64_VMS_FIXUP_RELA_CNT:
6470 fixup.fixup_rela_cnt = entry->d_un.d_val;
6471 break;
6472 case DT_IA_64_VMS_FIXUP_RELA_OFF:
6473 fixup.fixup_rela_off = entry->d_un.d_val;
6474 res++;
6475 dump_ia64_vms_dynamic_fixups (file, &fixup, strtab, strtab_sz);
6476 break;
6477
6478 case DT_IA_64_VMS_IMG_RELA_CNT:
6479 imgrela.img_rela_cnt = entry->d_un.d_val;
6480 break;
6481 case DT_IA_64_VMS_IMG_RELA_OFF:
6482 imgrela.img_rela_off = entry->d_un.d_val;
6483 res++;
6484 dump_ia64_vms_dynamic_relocs (file, &imgrela);
6485 break;
6486
6487 default:
6488 break;
6489 }
6490 }
6491
6492 if (strtab != NULL)
6493 free (strtab);
6494
6495 return res;
6496}
6497
85b1c36d 6498static struct
566b0d53 6499{
2cf0635d 6500 const char * name;
566b0d53
L
6501 int reloc;
6502 int size;
6503 int rela;
6504} dynamic_relocations [] =
6505{
6506 { "REL", DT_REL, DT_RELSZ, FALSE },
6507 { "RELA", DT_RELA, DT_RELASZ, TRUE },
6508 { "PLT", DT_JMPREL, DT_PLTRELSZ, UNKNOWN }
6509};
6510
252b5132 6511/* Process the reloc section. */
18bd398b 6512
252b5132 6513static int
2cf0635d 6514process_relocs (FILE * file)
252b5132 6515{
b34976b6
AM
6516 unsigned long rel_size;
6517 unsigned long rel_offset;
252b5132
RH
6518
6519
6520 if (!do_reloc)
6521 return 1;
6522
6523 if (do_using_dynamic)
6524 {
566b0d53 6525 int is_rela;
2cf0635d 6526 const char * name;
566b0d53
L
6527 int has_dynamic_reloc;
6528 unsigned int i;
0de14b54 6529
566b0d53 6530 has_dynamic_reloc = 0;
252b5132 6531
566b0d53 6532 for (i = 0; i < ARRAY_SIZE (dynamic_relocations); i++)
252b5132 6533 {
566b0d53
L
6534 is_rela = dynamic_relocations [i].rela;
6535 name = dynamic_relocations [i].name;
6536 rel_size = dynamic_info [dynamic_relocations [i].size];
6537 rel_offset = dynamic_info [dynamic_relocations [i].reloc];
103f02d3 6538
566b0d53
L
6539 has_dynamic_reloc |= rel_size;
6540
6541 if (is_rela == UNKNOWN)
aa903cfb 6542 {
566b0d53
L
6543 if (dynamic_relocations [i].reloc == DT_JMPREL)
6544 switch (dynamic_info[DT_PLTREL])
6545 {
6546 case DT_REL:
6547 is_rela = FALSE;
6548 break;
6549 case DT_RELA:
6550 is_rela = TRUE;
6551 break;
6552 }
aa903cfb 6553 }
252b5132 6554
566b0d53
L
6555 if (rel_size)
6556 {
6557 printf
6558 (_("\n'%s' relocation section at offset 0x%lx contains %ld bytes:\n"),
6559 name, rel_offset, rel_size);
252b5132 6560
d93f0186
NC
6561 dump_relocations (file,
6562 offset_from_vma (file, rel_offset, rel_size),
6563 rel_size,
566b0d53 6564 dynamic_symbols, num_dynamic_syms,
bb4d2ac2
L
6565 dynamic_strings, dynamic_strings_length,
6566 is_rela, 1);
566b0d53 6567 }
252b5132 6568 }
566b0d53 6569
28f997cf
TG
6570 if (is_ia64_vms ())
6571 has_dynamic_reloc |= process_ia64_vms_dynamic_relocs (file);
6572
566b0d53 6573 if (! has_dynamic_reloc)
252b5132
RH
6574 printf (_("\nThere are no dynamic relocations in this file.\n"));
6575 }
6576 else
6577 {
2cf0635d 6578 Elf_Internal_Shdr * section;
b34976b6
AM
6579 unsigned long i;
6580 int found = 0;
252b5132
RH
6581
6582 for (i = 0, section = section_headers;
6583 i < elf_header.e_shnum;
b34976b6 6584 i++, section++)
252b5132
RH
6585 {
6586 if ( section->sh_type != SHT_RELA
6587 && section->sh_type != SHT_REL)
6588 continue;
6589
6590 rel_offset = section->sh_offset;
6591 rel_size = section->sh_size;
6592
6593 if (rel_size)
6594 {
2cf0635d 6595 Elf_Internal_Shdr * strsec;
b34976b6 6596 int is_rela;
103f02d3 6597
252b5132
RH
6598 printf (_("\nRelocation section "));
6599
6600 if (string_table == NULL)
19936277 6601 printf ("%d", section->sh_name);
252b5132 6602 else
74e1a04b 6603 printf ("'%s'", printable_section_name (section));
252b5132
RH
6604
6605 printf (_(" at offset 0x%lx contains %lu entries:\n"),
6606 rel_offset, (unsigned long) (rel_size / section->sh_entsize));
6607
d79b3d50
NC
6608 is_rela = section->sh_type == SHT_RELA;
6609
4fbb74a6
AM
6610 if (section->sh_link != 0
6611 && section->sh_link < elf_header.e_shnum)
af3fc3bc 6612 {
2cf0635d
NC
6613 Elf_Internal_Shdr * symsec;
6614 Elf_Internal_Sym * symtab;
d79b3d50 6615 unsigned long nsyms;
c256ffe7 6616 unsigned long strtablen = 0;
2cf0635d 6617 char * strtab = NULL;
57346661 6618
4fbb74a6 6619 symsec = section_headers + section->sh_link;
08d8fa11
JJ
6620 if (symsec->sh_type != SHT_SYMTAB
6621 && symsec->sh_type != SHT_DYNSYM)
6622 continue;
6623
ba5cdace 6624 symtab = GET_ELF_SYMBOLS (file, symsec, & nsyms);
252b5132 6625
af3fc3bc
AM
6626 if (symtab == NULL)
6627 continue;
252b5132 6628
4fbb74a6
AM
6629 if (symsec->sh_link != 0
6630 && symsec->sh_link < elf_header.e_shnum)
c256ffe7 6631 {
4fbb74a6 6632 strsec = section_headers + symsec->sh_link;
103f02d3 6633
3f5e193b 6634 strtab = (char *) get_data (NULL, file, strsec->sh_offset,
071436c6
NC
6635 1, strsec->sh_size,
6636 _("string table"));
c256ffe7
JJ
6637 strtablen = strtab == NULL ? 0 : strsec->sh_size;
6638 }
252b5132 6639
d79b3d50 6640 dump_relocations (file, rel_offset, rel_size,
bb4d2ac2
L
6641 symtab, nsyms, strtab, strtablen,
6642 is_rela,
6643 symsec->sh_type == SHT_DYNSYM);
d79b3d50
NC
6644 if (strtab)
6645 free (strtab);
6646 free (symtab);
6647 }
6648 else
6649 dump_relocations (file, rel_offset, rel_size,
bb4d2ac2 6650 NULL, 0, NULL, 0, is_rela, 0);
252b5132
RH
6651
6652 found = 1;
6653 }
6654 }
6655
6656 if (! found)
6657 printf (_("\nThere are no relocations in this file.\n"));
6658 }
6659
6660 return 1;
6661}
6662
4d6ed7c8
NC
6663/* An absolute address consists of a section and an offset. If the
6664 section is NULL, the offset itself is the address, otherwise, the
6665 address equals to LOAD_ADDRESS(section) + offset. */
6666
6667struct absaddr
948f632f
DA
6668{
6669 unsigned short section;
6670 bfd_vma offset;
6671};
4d6ed7c8 6672
1949de15
L
6673#define ABSADDR(a) \
6674 ((a).section \
6675 ? section_headers [(a).section].sh_addr + (a).offset \
6676 : (a).offset)
6677
948f632f
DA
6678/* Find the nearest symbol at or below ADDR. Returns the symbol
6679 name, if found, and the offset from the symbol to ADDR. */
4d6ed7c8 6680
4d6ed7c8 6681static void
2cf0635d 6682find_symbol_for_address (Elf_Internal_Sym * symtab,
948f632f
DA
6683 unsigned long nsyms,
6684 const char * strtab,
6685 unsigned long strtab_size,
6686 struct absaddr addr,
6687 const char ** symname,
6688 bfd_vma * offset)
4d6ed7c8 6689{
d3ba0551 6690 bfd_vma dist = 0x100000;
2cf0635d 6691 Elf_Internal_Sym * sym;
948f632f
DA
6692 Elf_Internal_Sym * beg;
6693 Elf_Internal_Sym * end;
2cf0635d 6694 Elf_Internal_Sym * best = NULL;
4d6ed7c8 6695
0b6ae522 6696 REMOVE_ARCH_BITS (addr.offset);
948f632f
DA
6697 beg = symtab;
6698 end = symtab + nsyms;
0b6ae522 6699
948f632f 6700 while (beg < end)
4d6ed7c8 6701 {
948f632f
DA
6702 bfd_vma value;
6703
6704 sym = beg + (end - beg) / 2;
0b6ae522 6705
948f632f 6706 value = sym->st_value;
0b6ae522
DJ
6707 REMOVE_ARCH_BITS (value);
6708
948f632f 6709 if (sym->st_name != 0
4d6ed7c8 6710 && (addr.section == SHN_UNDEF || addr.section == sym->st_shndx)
0b6ae522
DJ
6711 && addr.offset >= value
6712 && addr.offset - value < dist)
4d6ed7c8
NC
6713 {
6714 best = sym;
0b6ae522 6715 dist = addr.offset - value;
4d6ed7c8
NC
6716 if (!dist)
6717 break;
6718 }
948f632f
DA
6719
6720 if (addr.offset < value)
6721 end = sym;
6722 else
6723 beg = sym + 1;
4d6ed7c8 6724 }
1b31d05e 6725
4d6ed7c8
NC
6726 if (best)
6727 {
57346661 6728 *symname = (best->st_name >= strtab_size
2b692964 6729 ? _("<corrupt>") : strtab + best->st_name);
4d6ed7c8
NC
6730 *offset = dist;
6731 return;
6732 }
1b31d05e 6733
4d6ed7c8
NC
6734 *symname = NULL;
6735 *offset = addr.offset;
6736}
6737
948f632f
DA
6738static int
6739symcmp (const void *p, const void *q)
6740{
6741 Elf_Internal_Sym *sp = (Elf_Internal_Sym *) p;
6742 Elf_Internal_Sym *sq = (Elf_Internal_Sym *) q;
6743
6744 return sp->st_value > sq->st_value ? 1 : (sp->st_value < sq->st_value ? -1 : 0);
6745}
6746
6747/* Process the unwind section. */
6748
6749#include "unwind-ia64.h"
6750
6751struct ia64_unw_table_entry
6752{
6753 struct absaddr start;
6754 struct absaddr end;
6755 struct absaddr info;
6756};
6757
6758struct ia64_unw_aux_info
6759{
6760 struct ia64_unw_table_entry *table; /* Unwind table. */
6761 unsigned long table_len; /* Length of unwind table. */
6762 unsigned char * info; /* Unwind info. */
6763 unsigned long info_size; /* Size of unwind info. */
6764 bfd_vma info_addr; /* Starting address of unwind info. */
6765 bfd_vma seg_base; /* Starting address of segment. */
6766 Elf_Internal_Sym * symtab; /* The symbol table. */
6767 unsigned long nsyms; /* Number of symbols. */
6768 Elf_Internal_Sym * funtab; /* Sorted table of STT_FUNC symbols. */
6769 unsigned long nfuns; /* Number of entries in funtab. */
6770 char * strtab; /* The string table. */
6771 unsigned long strtab_size; /* Size of string table. */
6772};
6773
4d6ed7c8 6774static void
2cf0635d 6775dump_ia64_unwind (struct ia64_unw_aux_info * aux)
4d6ed7c8 6776{
2cf0635d 6777 struct ia64_unw_table_entry * tp;
948f632f 6778 unsigned long j, nfuns;
4d6ed7c8 6779 int in_body;
7036c0e1 6780
948f632f
DA
6781 aux->funtab = xmalloc (aux->nsyms * sizeof (Elf_Internal_Sym));
6782 for (nfuns = 0, j = 0; j < aux->nsyms; j++)
6783 if (aux->symtab[j].st_value && ELF_ST_TYPE (aux->symtab[j].st_info) == STT_FUNC)
6784 aux->funtab[nfuns++] = aux->symtab[j];
6785 aux->nfuns = nfuns;
6786 qsort (aux->funtab, aux->nfuns, sizeof (Elf_Internal_Sym), symcmp);
6787
4d6ed7c8
NC
6788 for (tp = aux->table; tp < aux->table + aux->table_len; ++tp)
6789 {
6790 bfd_vma stamp;
6791 bfd_vma offset;
2cf0635d
NC
6792 const unsigned char * dp;
6793 const unsigned char * head;
53774b7e 6794 const unsigned char * end;
2cf0635d 6795 const char * procname;
4d6ed7c8 6796
948f632f 6797 find_symbol_for_address (aux->funtab, aux->nfuns, aux->strtab,
57346661 6798 aux->strtab_size, tp->start, &procname, &offset);
4d6ed7c8
NC
6799
6800 fputs ("\n<", stdout);
6801
6802 if (procname)
6803 {
6804 fputs (procname, stdout);
6805
6806 if (offset)
6807 printf ("+%lx", (unsigned long) offset);
6808 }
6809
6810 fputs (">: [", stdout);
6811 print_vma (tp->start.offset, PREFIX_HEX);
6812 fputc ('-', stdout);
6813 print_vma (tp->end.offset, PREFIX_HEX);
86f55779 6814 printf ("], info at +0x%lx\n",
4d6ed7c8
NC
6815 (unsigned long) (tp->info.offset - aux->seg_base));
6816
53774b7e
NC
6817 /* PR 17531: file: 86232b32. */
6818 if (aux->info == NULL)
6819 continue;
6820
6821 /* PR 17531: file: 0997b4d1. */
6822 if ((ABSADDR (tp->info) - aux->info_addr) >= aux->info_size)
6823 {
6824 warn (_("Invalid offset %lx in table entry %ld\n"),
6825 (long) tp->info.offset, (long) (tp - aux->table));
6826 continue;
6827 }
6828
1949de15 6829 head = aux->info + (ABSADDR (tp->info) - aux->info_addr);
a4a00738 6830 stamp = byte_get ((unsigned char *) head, sizeof (stamp));
4d6ed7c8 6831
86f55779 6832 printf (" v%u, flags=0x%lx (%s%s), len=%lu bytes\n",
4d6ed7c8
NC
6833 (unsigned) UNW_VER (stamp),
6834 (unsigned long) ((stamp & UNW_FLAG_MASK) >> 32),
6835 UNW_FLAG_EHANDLER (stamp) ? " ehandler" : "",
6836 UNW_FLAG_UHANDLER (stamp) ? " uhandler" : "",
89fac5e3 6837 (unsigned long) (eh_addr_size * UNW_LENGTH (stamp)));
4d6ed7c8
NC
6838
6839 if (UNW_VER (stamp) != 1)
6840 {
2b692964 6841 printf (_("\tUnknown version.\n"));
4d6ed7c8
NC
6842 continue;
6843 }
6844
6845 in_body = 0;
53774b7e
NC
6846 end = head + 8 + eh_addr_size * UNW_LENGTH (stamp);
6847 /* PR 17531: file: 16ceda89. */
6848 if (end > aux->info + aux->info_size)
6849 end = aux->info + aux->info_size;
6850 for (dp = head + 8; dp < end;)
b4477bc8 6851 dp = unw_decode (dp, in_body, & in_body, end);
4d6ed7c8 6852 }
948f632f
DA
6853
6854 free (aux->funtab);
4d6ed7c8
NC
6855}
6856
53774b7e 6857static bfd_boolean
2cf0635d
NC
6858slurp_ia64_unwind_table (FILE * file,
6859 struct ia64_unw_aux_info * aux,
6860 Elf_Internal_Shdr * sec)
4d6ed7c8 6861{
89fac5e3 6862 unsigned long size, nrelas, i;
2cf0635d
NC
6863 Elf_Internal_Phdr * seg;
6864 struct ia64_unw_table_entry * tep;
6865 Elf_Internal_Shdr * relsec;
6866 Elf_Internal_Rela * rela;
6867 Elf_Internal_Rela * rp;
6868 unsigned char * table;
6869 unsigned char * tp;
6870 Elf_Internal_Sym * sym;
6871 const char * relname;
4d6ed7c8 6872
53774b7e
NC
6873 aux->table_len = 0;
6874
4d6ed7c8
NC
6875 /* First, find the starting address of the segment that includes
6876 this section: */
6877
6878 if (elf_header.e_phnum)
6879 {
d93f0186 6880 if (! get_program_headers (file))
53774b7e 6881 return FALSE;
4d6ed7c8 6882
d93f0186
NC
6883 for (seg = program_headers;
6884 seg < program_headers + elf_header.e_phnum;
6885 ++seg)
4d6ed7c8
NC
6886 {
6887 if (seg->p_type != PT_LOAD)
6888 continue;
6889
6890 if (sec->sh_addr >= seg->p_vaddr
6891 && (sec->sh_addr + sec->sh_size <= seg->p_vaddr + seg->p_memsz))
6892 {
6893 aux->seg_base = seg->p_vaddr;
6894 break;
6895 }
6896 }
4d6ed7c8
NC
6897 }
6898
6899 /* Second, build the unwind table from the contents of the unwind section: */
6900 size = sec->sh_size;
3f5e193b
NC
6901 table = (unsigned char *) get_data (NULL, file, sec->sh_offset, 1, size,
6902 _("unwind table"));
a6e9f9df 6903 if (!table)
53774b7e 6904 return FALSE;
4d6ed7c8 6905
53774b7e 6906 aux->table_len = size / (3 * eh_addr_size);
3f5e193b 6907 aux->table = (struct ia64_unw_table_entry *)
53774b7e 6908 xcmalloc (aux->table_len, sizeof (aux->table[0]));
89fac5e3 6909 tep = aux->table;
53774b7e
NC
6910
6911 for (tp = table; tp <= table + size - (3 * eh_addr_size); ++tep)
4d6ed7c8
NC
6912 {
6913 tep->start.section = SHN_UNDEF;
6914 tep->end.section = SHN_UNDEF;
6915 tep->info.section = SHN_UNDEF;
c6a0c689
AM
6916 tep->start.offset = byte_get (tp, eh_addr_size); tp += eh_addr_size;
6917 tep->end.offset = byte_get (tp, eh_addr_size); tp += eh_addr_size;
6918 tep->info.offset = byte_get (tp, eh_addr_size); tp += eh_addr_size;
4d6ed7c8
NC
6919 tep->start.offset += aux->seg_base;
6920 tep->end.offset += aux->seg_base;
6921 tep->info.offset += aux->seg_base;
6922 }
6923 free (table);
6924
41e92641 6925 /* Third, apply any relocations to the unwind table: */
4d6ed7c8
NC
6926 for (relsec = section_headers;
6927 relsec < section_headers + elf_header.e_shnum;
6928 ++relsec)
6929 {
6930 if (relsec->sh_type != SHT_RELA
4fbb74a6
AM
6931 || relsec->sh_info >= elf_header.e_shnum
6932 || section_headers + relsec->sh_info != sec)
4d6ed7c8
NC
6933 continue;
6934
6935 if (!slurp_rela_relocs (file, relsec->sh_offset, relsec->sh_size,
6936 & rela, & nrelas))
53774b7e
NC
6937 {
6938 free (aux->table);
6939 aux->table = NULL;
6940 aux->table_len = 0;
6941 return FALSE;
6942 }
4d6ed7c8
NC
6943
6944 for (rp = rela; rp < rela + nrelas; ++rp)
6945 {
aca88567
NC
6946 relname = elf_ia64_reloc_type (get_reloc_type (rp->r_info));
6947 sym = aux->symtab + get_reloc_symindex (rp->r_info);
4d6ed7c8 6948
82b1b41b
NC
6949 /* PR 17531: file: 9fa67536. */
6950 if (relname == NULL)
6951 {
6952 warn (_("Skipping unknown relocation type: %u\n"), get_reloc_type (rp->r_info));
6953 continue;
6954 }
948f632f 6955
0112cd26 6956 if (! const_strneq (relname, "R_IA64_SEGREL"))
4d6ed7c8 6957 {
82b1b41b 6958 warn (_("Skipping unexpected relocation type: %s\n"), relname);
4d6ed7c8
NC
6959 continue;
6960 }
6961
89fac5e3 6962 i = rp->r_offset / (3 * eh_addr_size);
4d6ed7c8 6963
53774b7e
NC
6964 /* PR 17531: file: 5bc8d9bf. */
6965 if (i >= aux->table_len)
6966 {
6967 warn (_("Skipping reloc with overlarge offset: %lx\n"), i);
6968 continue;
6969 }
6970
6971 switch (rp->r_offset / eh_addr_size % 3)
4d6ed7c8
NC
6972 {
6973 case 0:
6974 aux->table[i].start.section = sym->st_shndx;
e466bc6e 6975 aux->table[i].start.offset = rp->r_addend + sym->st_value;
4d6ed7c8
NC
6976 break;
6977 case 1:
6978 aux->table[i].end.section = sym->st_shndx;
e466bc6e 6979 aux->table[i].end.offset = rp->r_addend + sym->st_value;
4d6ed7c8
NC
6980 break;
6981 case 2:
6982 aux->table[i].info.section = sym->st_shndx;
e466bc6e 6983 aux->table[i].info.offset = rp->r_addend + sym->st_value;
4d6ed7c8
NC
6984 break;
6985 default:
6986 break;
6987 }
6988 }
6989
6990 free (rela);
6991 }
6992
53774b7e 6993 return TRUE;
4d6ed7c8
NC
6994}
6995
1b31d05e 6996static void
2cf0635d 6997ia64_process_unwind (FILE * file)
4d6ed7c8 6998{
2cf0635d
NC
6999 Elf_Internal_Shdr * sec;
7000 Elf_Internal_Shdr * unwsec = NULL;
7001 Elf_Internal_Shdr * strsec;
89fac5e3 7002 unsigned long i, unwcount = 0, unwstart = 0;
57346661 7003 struct ia64_unw_aux_info aux;
f1467e33 7004
4d6ed7c8
NC
7005 memset (& aux, 0, sizeof (aux));
7006
4d6ed7c8
NC
7007 for (i = 0, sec = section_headers; i < elf_header.e_shnum; ++i, ++sec)
7008 {
c256ffe7 7009 if (sec->sh_type == SHT_SYMTAB
4fbb74a6 7010 && sec->sh_link < elf_header.e_shnum)
4d6ed7c8 7011 {
ba5cdace 7012 aux.symtab = GET_ELF_SYMBOLS (file, sec, & aux.nsyms);
4d6ed7c8 7013
4fbb74a6 7014 strsec = section_headers + sec->sh_link;
4082ef84
NC
7015 if (aux.strtab != NULL)
7016 {
7017 error (_("Multiple auxillary string tables encountered\n"));
7018 free (aux.strtab);
7019 }
3f5e193b
NC
7020 aux.strtab = (char *) get_data (NULL, file, strsec->sh_offset,
7021 1, strsec->sh_size,
7022 _("string table"));
c256ffe7 7023 aux.strtab_size = aux.strtab != NULL ? strsec->sh_size : 0;
4d6ed7c8
NC
7024 }
7025 else if (sec->sh_type == SHT_IA_64_UNWIND)
579f31ac
JJ
7026 unwcount++;
7027 }
7028
7029 if (!unwcount)
7030 printf (_("\nThere are no unwind sections in this file.\n"));
7031
7032 while (unwcount-- > 0)
7033 {
2cf0635d 7034 char * suffix;
579f31ac
JJ
7035 size_t len, len2;
7036
4082ef84 7037 for (i = unwstart, sec = section_headers + unwstart, unwsec = NULL;
579f31ac
JJ
7038 i < elf_header.e_shnum; ++i, ++sec)
7039 if (sec->sh_type == SHT_IA_64_UNWIND)
7040 {
7041 unwsec = sec;
7042 break;
7043 }
4082ef84
NC
7044 /* We have already counted the number of SHT_IA64_UNWIND
7045 sections so the loop above should never fail. */
7046 assert (unwsec != NULL);
579f31ac
JJ
7047
7048 unwstart = i + 1;
7049 len = sizeof (ELF_STRING_ia64_unwind_once) - 1;
7050
e4b17d5c
L
7051 if ((unwsec->sh_flags & SHF_GROUP) != 0)
7052 {
7053 /* We need to find which section group it is in. */
4082ef84 7054 struct group_list * g;
e4b17d5c 7055
4082ef84
NC
7056 if (section_headers_groups == NULL
7057 || section_headers_groups [i] == NULL)
7058 i = elf_header.e_shnum;
7059 else
e4b17d5c 7060 {
4082ef84 7061 g = section_headers_groups [i]->root;
18bd398b 7062
4082ef84
NC
7063 for (; g != NULL; g = g->next)
7064 {
7065 sec = section_headers + g->section_index;
e4b17d5c 7066
4082ef84
NC
7067 if (streq (SECTION_NAME (sec), ELF_STRING_ia64_unwind_info))
7068 break;
7069 }
7070
7071 if (g == NULL)
7072 i = elf_header.e_shnum;
7073 }
e4b17d5c 7074 }
18bd398b 7075 else if (strneq (SECTION_NAME (unwsec), ELF_STRING_ia64_unwind_once, len))
579f31ac 7076 {
18bd398b 7077 /* .gnu.linkonce.ia64unw.FOO -> .gnu.linkonce.ia64unwi.FOO. */
579f31ac
JJ
7078 len2 = sizeof (ELF_STRING_ia64_unwind_info_once) - 1;
7079 suffix = SECTION_NAME (unwsec) + len;
7080 for (i = 0, sec = section_headers; i < elf_header.e_shnum;
7081 ++i, ++sec)
18bd398b
NC
7082 if (strneq (SECTION_NAME (sec), ELF_STRING_ia64_unwind_info_once, len2)
7083 && streq (SECTION_NAME (sec) + len2, suffix))
579f31ac
JJ
7084 break;
7085 }
7086 else
7087 {
7088 /* .IA_64.unwindFOO -> .IA_64.unwind_infoFOO
18bd398b 7089 .IA_64.unwind or BAR -> .IA_64.unwind_info. */
579f31ac
JJ
7090 len = sizeof (ELF_STRING_ia64_unwind) - 1;
7091 len2 = sizeof (ELF_STRING_ia64_unwind_info) - 1;
7092 suffix = "";
18bd398b 7093 if (strneq (SECTION_NAME (unwsec), ELF_STRING_ia64_unwind, len))
579f31ac
JJ
7094 suffix = SECTION_NAME (unwsec) + len;
7095 for (i = 0, sec = section_headers; i < elf_header.e_shnum;
7096 ++i, ++sec)
18bd398b
NC
7097 if (strneq (SECTION_NAME (sec), ELF_STRING_ia64_unwind_info, len2)
7098 && streq (SECTION_NAME (sec) + len2, suffix))
579f31ac
JJ
7099 break;
7100 }
7101
7102 if (i == elf_header.e_shnum)
7103 {
7104 printf (_("\nCould not find unwind info section for "));
7105
7106 if (string_table == NULL)
7107 printf ("%d", unwsec->sh_name);
7108 else
74e1a04b 7109 printf ("'%s'", printable_section_name (unwsec));
579f31ac
JJ
7110 }
7111 else
4d6ed7c8 7112 {
4d6ed7c8 7113 aux.info_addr = sec->sh_addr;
3f5e193b 7114 aux.info = (unsigned char *) get_data (NULL, file, sec->sh_offset, 1,
4082ef84
NC
7115 sec->sh_size,
7116 _("unwind info"));
59245841 7117 aux.info_size = aux.info == NULL ? 0 : sec->sh_size;
4d6ed7c8 7118
579f31ac 7119 printf (_("\nUnwind section "));
4d6ed7c8 7120
579f31ac
JJ
7121 if (string_table == NULL)
7122 printf ("%d", unwsec->sh_name);
7123 else
74e1a04b 7124 printf ("'%s'", printable_section_name (unwsec));
4d6ed7c8 7125
579f31ac 7126 printf (_(" at offset 0x%lx contains %lu entries:\n"),
e59b4dfb 7127 (unsigned long) unwsec->sh_offset,
89fac5e3 7128 (unsigned long) (unwsec->sh_size / (3 * eh_addr_size)));
4d6ed7c8 7129
53774b7e
NC
7130 if (slurp_ia64_unwind_table (file, & aux, unwsec)
7131 && aux.table_len > 0)
579f31ac
JJ
7132 dump_ia64_unwind (& aux);
7133
7134 if (aux.table)
7135 free ((char *) aux.table);
7136 if (aux.info)
7137 free ((char *) aux.info);
7138 aux.table = NULL;
7139 aux.info = NULL;
7140 }
4d6ed7c8 7141 }
4d6ed7c8 7142
4d6ed7c8
NC
7143 if (aux.symtab)
7144 free (aux.symtab);
7145 if (aux.strtab)
7146 free ((char *) aux.strtab);
4d6ed7c8
NC
7147}
7148
3f5e193b
NC
7149struct hppa_unw_table_entry
7150 {
7151 struct absaddr start;
7152 struct absaddr end;
948f632f 7153 unsigned int Cannot_unwind:1; /* 0 */
3f5e193b
NC
7154 unsigned int Millicode:1; /* 1 */
7155 unsigned int Millicode_save_sr0:1; /* 2 */
7156 unsigned int Region_description:2; /* 3..4 */
7157 unsigned int reserved1:1; /* 5 */
7158 unsigned int Entry_SR:1; /* 6 */
7159 unsigned int Entry_FR:4; /* number saved */ /* 7..10 */
7160 unsigned int Entry_GR:5; /* number saved */ /* 11..15 */
7161 unsigned int Args_stored:1; /* 16 */
948f632f
DA
7162 unsigned int Variable_Frame:1; /* 17 */
7163 unsigned int Separate_Package_Body:1; /* 18 */
3f5e193b 7164 unsigned int Frame_Extension_Millicode:1; /* 19 */
948f632f
DA
7165 unsigned int Stack_Overflow_Check:1; /* 20 */
7166 unsigned int Two_Instruction_SP_Increment:1;/* 21 */
3f5e193b
NC
7167 unsigned int Ada_Region:1; /* 22 */
7168 unsigned int cxx_info:1; /* 23 */
948f632f
DA
7169 unsigned int cxx_try_catch:1; /* 24 */
7170 unsigned int sched_entry_seq:1; /* 25 */
3f5e193b 7171 unsigned int reserved2:1; /* 26 */
948f632f
DA
7172 unsigned int Save_SP:1; /* 27 */
7173 unsigned int Save_RP:1; /* 28 */
3f5e193b
NC
7174 unsigned int Save_MRP_in_frame:1; /* 29 */
7175 unsigned int extn_ptr_defined:1; /* 30 */
948f632f 7176 unsigned int Cleanup_defined:1; /* 31 */
3f5e193b 7177
948f632f
DA
7178 unsigned int MPE_XL_interrupt_marker:1; /* 0 */
7179 unsigned int HP_UX_interrupt_marker:1; /* 1 */
3f5e193b 7180 unsigned int Large_frame:1; /* 2 */
948f632f 7181 unsigned int Pseudo_SP_Set:1; /* 3 */
3f5e193b
NC
7182 unsigned int reserved4:1; /* 4 */
7183 unsigned int Total_frame_size:27; /* 5..31 */
7184 };
7185
57346661 7186struct hppa_unw_aux_info
948f632f
DA
7187{
7188 struct hppa_unw_table_entry * table; /* Unwind table. */
7189 unsigned long table_len; /* Length of unwind table. */
7190 bfd_vma seg_base; /* Starting address of segment. */
7191 Elf_Internal_Sym * symtab; /* The symbol table. */
7192 unsigned long nsyms; /* Number of symbols. */
7193 Elf_Internal_Sym * funtab; /* Sorted table of STT_FUNC symbols. */
7194 unsigned long nfuns; /* Number of entries in funtab. */
7195 char * strtab; /* The string table. */
7196 unsigned long strtab_size; /* Size of string table. */
7197};
57346661
AM
7198
7199static void
2cf0635d 7200dump_hppa_unwind (struct hppa_unw_aux_info * aux)
57346661 7201{
2cf0635d 7202 struct hppa_unw_table_entry * tp;
948f632f
DA
7203 unsigned long j, nfuns;
7204
7205 aux->funtab = xmalloc (aux->nsyms * sizeof (Elf_Internal_Sym));
7206 for (nfuns = 0, j = 0; j < aux->nsyms; j++)
7207 if (aux->symtab[j].st_value && ELF_ST_TYPE (aux->symtab[j].st_info) == STT_FUNC)
7208 aux->funtab[nfuns++] = aux->symtab[j];
7209 aux->nfuns = nfuns;
7210 qsort (aux->funtab, aux->nfuns, sizeof (Elf_Internal_Sym), symcmp);
57346661 7211
57346661
AM
7212 for (tp = aux->table; tp < aux->table + aux->table_len; ++tp)
7213 {
7214 bfd_vma offset;
2cf0635d 7215 const char * procname;
57346661 7216
948f632f 7217 find_symbol_for_address (aux->funtab, aux->nfuns, aux->strtab,
57346661
AM
7218 aux->strtab_size, tp->start, &procname,
7219 &offset);
7220
7221 fputs ("\n<", stdout);
7222
7223 if (procname)
7224 {
7225 fputs (procname, stdout);
7226
7227 if (offset)
7228 printf ("+%lx", (unsigned long) offset);
7229 }
7230
7231 fputs (">: [", stdout);
7232 print_vma (tp->start.offset, PREFIX_HEX);
7233 fputc ('-', stdout);
7234 print_vma (tp->end.offset, PREFIX_HEX);
7235 printf ("]\n\t");
7236
18bd398b
NC
7237#define PF(_m) if (tp->_m) printf (#_m " ");
7238#define PV(_m) if (tp->_m) printf (#_m "=%d ", tp->_m);
57346661
AM
7239 PF(Cannot_unwind);
7240 PF(Millicode);
7241 PF(Millicode_save_sr0);
18bd398b 7242 /* PV(Region_description); */
57346661
AM
7243 PF(Entry_SR);
7244 PV(Entry_FR);
7245 PV(Entry_GR);
7246 PF(Args_stored);
7247 PF(Variable_Frame);
7248 PF(Separate_Package_Body);
7249 PF(Frame_Extension_Millicode);
7250 PF(Stack_Overflow_Check);
7251 PF(Two_Instruction_SP_Increment);
7252 PF(Ada_Region);
7253 PF(cxx_info);
7254 PF(cxx_try_catch);
7255 PF(sched_entry_seq);
7256 PF(Save_SP);
7257 PF(Save_RP);
7258 PF(Save_MRP_in_frame);
7259 PF(extn_ptr_defined);
7260 PF(Cleanup_defined);
7261 PF(MPE_XL_interrupt_marker);
7262 PF(HP_UX_interrupt_marker);
7263 PF(Large_frame);
7264 PF(Pseudo_SP_Set);
7265 PV(Total_frame_size);
7266#undef PF
7267#undef PV
7268 }
7269
18bd398b 7270 printf ("\n");
948f632f
DA
7271
7272 free (aux->funtab);
57346661
AM
7273}
7274
7275static int
2cf0635d
NC
7276slurp_hppa_unwind_table (FILE * file,
7277 struct hppa_unw_aux_info * aux,
7278 Elf_Internal_Shdr * sec)
57346661 7279{
1c0751b2 7280 unsigned long size, unw_ent_size, nentries, nrelas, i;
2cf0635d
NC
7281 Elf_Internal_Phdr * seg;
7282 struct hppa_unw_table_entry * tep;
7283 Elf_Internal_Shdr * relsec;
7284 Elf_Internal_Rela * rela;
7285 Elf_Internal_Rela * rp;
7286 unsigned char * table;
7287 unsigned char * tp;
7288 Elf_Internal_Sym * sym;
7289 const char * relname;
57346661 7290
57346661
AM
7291 /* First, find the starting address of the segment that includes
7292 this section. */
7293
7294 if (elf_header.e_phnum)
7295 {
7296 if (! get_program_headers (file))
7297 return 0;
7298
7299 for (seg = program_headers;
7300 seg < program_headers + elf_header.e_phnum;
7301 ++seg)
7302 {
7303 if (seg->p_type != PT_LOAD)
7304 continue;
7305
7306 if (sec->sh_addr >= seg->p_vaddr
7307 && (sec->sh_addr + sec->sh_size <= seg->p_vaddr + seg->p_memsz))
7308 {
7309 aux->seg_base = seg->p_vaddr;
7310 break;
7311 }
7312 }
7313 }
7314
7315 /* Second, build the unwind table from the contents of the unwind
7316 section. */
7317 size = sec->sh_size;
3f5e193b
NC
7318 table = (unsigned char *) get_data (NULL, file, sec->sh_offset, 1, size,
7319 _("unwind table"));
57346661
AM
7320 if (!table)
7321 return 0;
7322
1c0751b2
DA
7323 unw_ent_size = 16;
7324 nentries = size / unw_ent_size;
7325 size = unw_ent_size * nentries;
57346661 7326
3f5e193b
NC
7327 tep = aux->table = (struct hppa_unw_table_entry *)
7328 xcmalloc (nentries, sizeof (aux->table[0]));
57346661 7329
1c0751b2 7330 for (tp = table; tp < table + size; tp += unw_ent_size, ++tep)
57346661
AM
7331 {
7332 unsigned int tmp1, tmp2;
7333
7334 tep->start.section = SHN_UNDEF;
7335 tep->end.section = SHN_UNDEF;
7336
1c0751b2
DA
7337 tep->start.offset = byte_get ((unsigned char *) tp + 0, 4);
7338 tep->end.offset = byte_get ((unsigned char *) tp + 4, 4);
7339 tmp1 = byte_get ((unsigned char *) tp + 8, 4);
7340 tmp2 = byte_get ((unsigned char *) tp + 12, 4);
7341
7342 tep->start.offset += aux->seg_base;
7343 tep->end.offset += aux->seg_base;
57346661
AM
7344
7345 tep->Cannot_unwind = (tmp1 >> 31) & 0x1;
7346 tep->Millicode = (tmp1 >> 30) & 0x1;
7347 tep->Millicode_save_sr0 = (tmp1 >> 29) & 0x1;
7348 tep->Region_description = (tmp1 >> 27) & 0x3;
7349 tep->reserved1 = (tmp1 >> 26) & 0x1;
7350 tep->Entry_SR = (tmp1 >> 25) & 0x1;
7351 tep->Entry_FR = (tmp1 >> 21) & 0xf;
7352 tep->Entry_GR = (tmp1 >> 16) & 0x1f;
7353 tep->Args_stored = (tmp1 >> 15) & 0x1;
7354 tep->Variable_Frame = (tmp1 >> 14) & 0x1;
7355 tep->Separate_Package_Body = (tmp1 >> 13) & 0x1;
7356 tep->Frame_Extension_Millicode = (tmp1 >> 12) & 0x1;
7357 tep->Stack_Overflow_Check = (tmp1 >> 11) & 0x1;
7358 tep->Two_Instruction_SP_Increment = (tmp1 >> 10) & 0x1;
7359 tep->Ada_Region = (tmp1 >> 9) & 0x1;
7360 tep->cxx_info = (tmp1 >> 8) & 0x1;
7361 tep->cxx_try_catch = (tmp1 >> 7) & 0x1;
7362 tep->sched_entry_seq = (tmp1 >> 6) & 0x1;
7363 tep->reserved2 = (tmp1 >> 5) & 0x1;
7364 tep->Save_SP = (tmp1 >> 4) & 0x1;
7365 tep->Save_RP = (tmp1 >> 3) & 0x1;
7366 tep->Save_MRP_in_frame = (tmp1 >> 2) & 0x1;
7367 tep->extn_ptr_defined = (tmp1 >> 1) & 0x1;
7368 tep->Cleanup_defined = tmp1 & 0x1;
7369
7370 tep->MPE_XL_interrupt_marker = (tmp2 >> 31) & 0x1;
7371 tep->HP_UX_interrupt_marker = (tmp2 >> 30) & 0x1;
7372 tep->Large_frame = (tmp2 >> 29) & 0x1;
7373 tep->Pseudo_SP_Set = (tmp2 >> 28) & 0x1;
7374 tep->reserved4 = (tmp2 >> 27) & 0x1;
7375 tep->Total_frame_size = tmp2 & 0x7ffffff;
57346661
AM
7376 }
7377 free (table);
7378
7379 /* Third, apply any relocations to the unwind table. */
57346661
AM
7380 for (relsec = section_headers;
7381 relsec < section_headers + elf_header.e_shnum;
7382 ++relsec)
7383 {
7384 if (relsec->sh_type != SHT_RELA
4fbb74a6
AM
7385 || relsec->sh_info >= elf_header.e_shnum
7386 || section_headers + relsec->sh_info != sec)
57346661
AM
7387 continue;
7388
7389 if (!slurp_rela_relocs (file, relsec->sh_offset, relsec->sh_size,
7390 & rela, & nrelas))
7391 return 0;
7392
7393 for (rp = rela; rp < rela + nrelas; ++rp)
7394 {
aca88567
NC
7395 relname = elf_hppa_reloc_type (get_reloc_type (rp->r_info));
7396 sym = aux->symtab + get_reloc_symindex (rp->r_info);
57346661
AM
7397
7398 /* R_PARISC_SEGREL32 or R_PARISC_SEGREL64. */
0112cd26 7399 if (! const_strneq (relname, "R_PARISC_SEGREL"))
57346661
AM
7400 {
7401 warn (_("Skipping unexpected relocation type %s\n"), relname);
7402 continue;
7403 }
7404
7405 i = rp->r_offset / unw_ent_size;
7406
89fac5e3 7407 switch ((rp->r_offset % unw_ent_size) / eh_addr_size)
57346661
AM
7408 {
7409 case 0:
7410 aux->table[i].start.section = sym->st_shndx;
1e456d54 7411 aux->table[i].start.offset = sym->st_value + rp->r_addend;
57346661
AM
7412 break;
7413 case 1:
7414 aux->table[i].end.section = sym->st_shndx;
1e456d54 7415 aux->table[i].end.offset = sym->st_value + rp->r_addend;
57346661
AM
7416 break;
7417 default:
7418 break;
7419 }
7420 }
7421
7422 free (rela);
7423 }
7424
1c0751b2 7425 aux->table_len = nentries;
57346661
AM
7426
7427 return 1;
7428}
7429
1b31d05e 7430static void
2cf0635d 7431hppa_process_unwind (FILE * file)
57346661 7432{
57346661 7433 struct hppa_unw_aux_info aux;
2cf0635d
NC
7434 Elf_Internal_Shdr * unwsec = NULL;
7435 Elf_Internal_Shdr * strsec;
7436 Elf_Internal_Shdr * sec;
18bd398b 7437 unsigned long i;
57346661 7438
c256ffe7 7439 if (string_table == NULL)
1b31d05e
NC
7440 return;
7441
7442 memset (& aux, 0, sizeof (aux));
57346661
AM
7443
7444 for (i = 0, sec = section_headers; i < elf_header.e_shnum; ++i, ++sec)
7445 {
c256ffe7 7446 if (sec->sh_type == SHT_SYMTAB
4fbb74a6 7447 && sec->sh_link < elf_header.e_shnum)
57346661 7448 {
ba5cdace 7449 aux.symtab = GET_ELF_SYMBOLS (file, sec, & aux.nsyms);
57346661 7450
4fbb74a6 7451 strsec = section_headers + sec->sh_link;
4082ef84
NC
7452 if (aux.strtab != NULL)
7453 {
7454 error (_("Multiple auxillary string tables encountered\n"));
7455 free (aux.strtab);
7456 }
3f5e193b
NC
7457 aux.strtab = (char *) get_data (NULL, file, strsec->sh_offset,
7458 1, strsec->sh_size,
7459 _("string table"));
c256ffe7 7460 aux.strtab_size = aux.strtab != NULL ? strsec->sh_size : 0;
57346661 7461 }
18bd398b 7462 else if (streq (SECTION_NAME (sec), ".PARISC.unwind"))
57346661
AM
7463 unwsec = sec;
7464 }
7465
7466 if (!unwsec)
7467 printf (_("\nThere are no unwind sections in this file.\n"));
7468
7469 for (i = 0, sec = section_headers; i < elf_header.e_shnum; ++i, ++sec)
7470 {
18bd398b 7471 if (streq (SECTION_NAME (sec), ".PARISC.unwind"))
57346661 7472 {
74e1a04b
NC
7473 printf (_("\nUnwind section '%s' at offset 0x%lx contains %lu entries:\n"),
7474 printable_section_name (sec),
57346661 7475 (unsigned long) sec->sh_offset,
89fac5e3 7476 (unsigned long) (sec->sh_size / (2 * eh_addr_size + 8)));
57346661
AM
7477
7478 slurp_hppa_unwind_table (file, &aux, sec);
7479 if (aux.table_len > 0)
7480 dump_hppa_unwind (&aux);
7481
7482 if (aux.table)
7483 free ((char *) aux.table);
7484 aux.table = NULL;
7485 }
7486 }
7487
7488 if (aux.symtab)
7489 free (aux.symtab);
7490 if (aux.strtab)
7491 free ((char *) aux.strtab);
57346661
AM
7492}
7493
0b6ae522
DJ
7494struct arm_section
7495{
a734115a
NC
7496 unsigned char * data; /* The unwind data. */
7497 Elf_Internal_Shdr * sec; /* The cached unwind section header. */
7498 Elf_Internal_Rela * rela; /* The cached relocations for this section. */
7499 unsigned long nrelas; /* The number of relocations. */
7500 unsigned int rel_type; /* REL or RELA ? */
7501 Elf_Internal_Rela * next_rela; /* Cyclic pointer to the next reloc to process. */
0b6ae522
DJ
7502};
7503
7504struct arm_unw_aux_info
7505{
a734115a
NC
7506 FILE * file; /* The file containing the unwind sections. */
7507 Elf_Internal_Sym * symtab; /* The file's symbol table. */
7508 unsigned long nsyms; /* Number of symbols. */
948f632f
DA
7509 Elf_Internal_Sym * funtab; /* Sorted table of STT_FUNC symbols. */
7510 unsigned long nfuns; /* Number of these symbols. */
a734115a
NC
7511 char * strtab; /* The file's string table. */
7512 unsigned long strtab_size; /* Size of string table. */
0b6ae522
DJ
7513};
7514
7515static const char *
7516arm_print_vma_and_name (struct arm_unw_aux_info *aux,
7517 bfd_vma fn, struct absaddr addr)
7518{
7519 const char *procname;
7520 bfd_vma sym_offset;
7521
7522 if (addr.section == SHN_UNDEF)
7523 addr.offset = fn;
7524
948f632f 7525 find_symbol_for_address (aux->funtab, aux->nfuns, aux->strtab,
0b6ae522
DJ
7526 aux->strtab_size, addr, &procname,
7527 &sym_offset);
7528
7529 print_vma (fn, PREFIX_HEX);
7530
7531 if (procname)
7532 {
7533 fputs (" <", stdout);
7534 fputs (procname, stdout);
7535
7536 if (sym_offset)
7537 printf ("+0x%lx", (unsigned long) sym_offset);
7538 fputc ('>', stdout);
7539 }
7540
7541 return procname;
7542}
7543
7544static void
7545arm_free_section (struct arm_section *arm_sec)
7546{
7547 if (arm_sec->data != NULL)
7548 free (arm_sec->data);
7549
7550 if (arm_sec->rela != NULL)
7551 free (arm_sec->rela);
7552}
7553
a734115a
NC
7554/* 1) If SEC does not match the one cached in ARM_SEC, then free the current
7555 cached section and install SEC instead.
7556 2) Locate the 32-bit word at WORD_OFFSET in unwind section SEC
7557 and return its valued in * WORDP, relocating if necessary.
1b31d05e 7558 3) Update the NEXT_RELA field in ARM_SEC and store the section index and
a734115a 7559 relocation's offset in ADDR.
1b31d05e
NC
7560 4) If SYM_NAME is non-NULL and a relocation was applied, record the offset
7561 into the string table of the symbol associated with the reloc. If no
7562 reloc was applied store -1 there.
7563 5) Return TRUE upon success, FALSE otherwise. */
a734115a
NC
7564
7565static bfd_boolean
1b31d05e
NC
7566get_unwind_section_word (struct arm_unw_aux_info * aux,
7567 struct arm_section * arm_sec,
7568 Elf_Internal_Shdr * sec,
7569 bfd_vma word_offset,
7570 unsigned int * wordp,
7571 struct absaddr * addr,
7572 bfd_vma * sym_name)
0b6ae522
DJ
7573{
7574 Elf_Internal_Rela *rp;
7575 Elf_Internal_Sym *sym;
7576 const char * relname;
7577 unsigned int word;
7578 bfd_boolean wrapped;
7579
e0a31db1
NC
7580 if (sec == NULL || arm_sec == NULL)
7581 return FALSE;
7582
0b6ae522
DJ
7583 addr->section = SHN_UNDEF;
7584 addr->offset = 0;
7585
1b31d05e
NC
7586 if (sym_name != NULL)
7587 *sym_name = (bfd_vma) -1;
7588
a734115a 7589 /* If necessary, update the section cache. */
0b6ae522
DJ
7590 if (sec != arm_sec->sec)
7591 {
7592 Elf_Internal_Shdr *relsec;
7593
7594 arm_free_section (arm_sec);
7595
7596 arm_sec->sec = sec;
7597 arm_sec->data = get_data (NULL, aux->file, sec->sh_offset, 1,
7598 sec->sh_size, _("unwind data"));
0b6ae522
DJ
7599 arm_sec->rela = NULL;
7600 arm_sec->nrelas = 0;
7601
7602 for (relsec = section_headers;
7603 relsec < section_headers + elf_header.e_shnum;
7604 ++relsec)
7605 {
7606 if (relsec->sh_info >= elf_header.e_shnum
1ae40aa4
NC
7607 || section_headers + relsec->sh_info != sec
7608 /* PR 15745: Check the section type as well. */
7609 || (relsec->sh_type != SHT_REL
7610 && relsec->sh_type != SHT_RELA))
0b6ae522
DJ
7611 continue;
7612
a734115a 7613 arm_sec->rel_type = relsec->sh_type;
0b6ae522
DJ
7614 if (relsec->sh_type == SHT_REL)
7615 {
7616 if (!slurp_rel_relocs (aux->file, relsec->sh_offset,
7617 relsec->sh_size,
7618 & arm_sec->rela, & arm_sec->nrelas))
a734115a 7619 return FALSE;
0b6ae522 7620 }
1ae40aa4 7621 else /* relsec->sh_type == SHT_RELA */
0b6ae522
DJ
7622 {
7623 if (!slurp_rela_relocs (aux->file, relsec->sh_offset,
7624 relsec->sh_size,
7625 & arm_sec->rela, & arm_sec->nrelas))
a734115a 7626 return FALSE;
0b6ae522 7627 }
1ae40aa4 7628 break;
0b6ae522
DJ
7629 }
7630
7631 arm_sec->next_rela = arm_sec->rela;
7632 }
7633
a734115a 7634 /* If there is no unwind data we can do nothing. */
0b6ae522 7635 if (arm_sec->data == NULL)
a734115a 7636 return FALSE;
0b6ae522 7637
e0a31db1 7638 /* If the offset is invalid then fail. */
1a915552
NC
7639 if (word_offset > (sec->sh_size - 4)
7640 /* PR 18879 */
7641 || (sec->sh_size < 5 && word_offset >= sec->sh_size)
7642 || ((bfd_signed_vma) word_offset) < 0)
e0a31db1
NC
7643 return FALSE;
7644
a734115a 7645 /* Get the word at the required offset. */
0b6ae522
DJ
7646 word = byte_get (arm_sec->data + word_offset, 4);
7647
0eff7165
NC
7648 /* PR 17531: file: id:000001,src:001266+003044,op:splice,rep:128. */
7649 if (arm_sec->rela == NULL)
7650 {
7651 * wordp = word;
7652 return TRUE;
7653 }
7654
a734115a 7655 /* Look through the relocs to find the one that applies to the provided offset. */
0b6ae522
DJ
7656 wrapped = FALSE;
7657 for (rp = arm_sec->next_rela; rp != arm_sec->rela + arm_sec->nrelas; rp++)
7658 {
7659 bfd_vma prelval, offset;
7660
7661 if (rp->r_offset > word_offset && !wrapped)
7662 {
7663 rp = arm_sec->rela;
7664 wrapped = TRUE;
7665 }
7666 if (rp->r_offset > word_offset)
7667 break;
7668
7669 if (rp->r_offset & 3)
7670 {
7671 warn (_("Skipping unexpected relocation at offset 0x%lx\n"),
7672 (unsigned long) rp->r_offset);
7673 continue;
7674 }
7675
7676 if (rp->r_offset < word_offset)
7677 continue;
7678
74e1a04b
NC
7679 /* PR 17531: file: 027-161405-0.004 */
7680 if (aux->symtab == NULL)
7681 continue;
7682
0b6ae522
DJ
7683 if (arm_sec->rel_type == SHT_REL)
7684 {
7685 offset = word & 0x7fffffff;
7686 if (offset & 0x40000000)
7687 offset |= ~ (bfd_vma) 0x7fffffff;
7688 }
a734115a 7689 else if (arm_sec->rel_type == SHT_RELA)
0b6ae522 7690 offset = rp->r_addend;
a734115a 7691 else
74e1a04b
NC
7692 {
7693 error (_("Unknown section relocation type %d encountered\n"),
7694 arm_sec->rel_type);
7695 break;
7696 }
0b6ae522 7697
071436c6
NC
7698 /* PR 17531 file: 027-1241568-0.004. */
7699 if (ELF32_R_SYM (rp->r_info) >= aux->nsyms)
7700 {
7701 error (_("Bad symbol index in unwind relocation (%lu > %lu)\n"),
7702 (unsigned long) ELF32_R_SYM (rp->r_info), aux->nsyms);
7703 break;
7704 }
7705
7706 sym = aux->symtab + ELF32_R_SYM (rp->r_info);
0b6ae522
DJ
7707 offset += sym->st_value;
7708 prelval = offset - (arm_sec->sec->sh_addr + rp->r_offset);
7709
a734115a
NC
7710 /* Check that we are processing the expected reloc type. */
7711 if (elf_header.e_machine == EM_ARM)
7712 {
7713 relname = elf_arm_reloc_type (ELF32_R_TYPE (rp->r_info));
071436c6
NC
7714 if (relname == NULL)
7715 {
7716 warn (_("Skipping unknown ARM relocation type: %d\n"),
7717 (int) ELF32_R_TYPE (rp->r_info));
7718 continue;
7719 }
a734115a
NC
7720
7721 if (streq (relname, "R_ARM_NONE"))
7722 continue;
0b4362b0 7723
a734115a
NC
7724 if (! streq (relname, "R_ARM_PREL31"))
7725 {
071436c6 7726 warn (_("Skipping unexpected ARM relocation type %s\n"), relname);
a734115a
NC
7727 continue;
7728 }
7729 }
7730 else if (elf_header.e_machine == EM_TI_C6000)
7731 {
7732 relname = elf_tic6x_reloc_type (ELF32_R_TYPE (rp->r_info));
071436c6
NC
7733 if (relname == NULL)
7734 {
7735 warn (_("Skipping unknown C6000 relocation type: %d\n"),
7736 (int) ELF32_R_TYPE (rp->r_info));
7737 continue;
7738 }
0b4362b0 7739
a734115a
NC
7740 if (streq (relname, "R_C6000_NONE"))
7741 continue;
7742
7743 if (! streq (relname, "R_C6000_PREL31"))
7744 {
071436c6 7745 warn (_("Skipping unexpected C6000 relocation type %s\n"), relname);
a734115a
NC
7746 continue;
7747 }
7748
7749 prelval >>= 1;
7750 }
7751 else
74e1a04b
NC
7752 {
7753 /* This function currently only supports ARM and TI unwinders. */
7754 warn (_("Only TI and ARM unwinders are currently supported\n"));
7755 break;
7756 }
fa197c1c 7757
0b6ae522
DJ
7758 word = (word & ~ (bfd_vma) 0x7fffffff) | (prelval & 0x7fffffff);
7759 addr->section = sym->st_shndx;
7760 addr->offset = offset;
74e1a04b 7761
1b31d05e
NC
7762 if (sym_name)
7763 * sym_name = sym->st_name;
0b6ae522
DJ
7764 break;
7765 }
7766
7767 *wordp = word;
7768 arm_sec->next_rela = rp;
7769
a734115a 7770 return TRUE;
0b6ae522
DJ
7771}
7772
a734115a
NC
7773static const char *tic6x_unwind_regnames[16] =
7774{
0b4362b0
RM
7775 "A15", "B15", "B14", "B13", "B12", "B11", "B10", "B3",
7776 "A14", "A13", "A12", "A11", "A10",
a734115a
NC
7777 "[invalid reg 13]", "[invalid reg 14]", "[invalid reg 15]"
7778};
fa197c1c 7779
0b6ae522 7780static void
fa197c1c 7781decode_tic6x_unwind_regmask (unsigned int mask)
0b6ae522 7782{
fa197c1c
PB
7783 int i;
7784
7785 for (i = 12; mask; mask >>= 1, i--)
7786 {
7787 if (mask & 1)
7788 {
7789 fputs (tic6x_unwind_regnames[i], stdout);
7790 if (mask > 1)
7791 fputs (", ", stdout);
7792 }
7793 }
7794}
0b6ae522
DJ
7795
7796#define ADVANCE \
7797 if (remaining == 0 && more_words) \
7798 { \
7799 data_offset += 4; \
1b31d05e
NC
7800 if (! get_unwind_section_word (aux, data_arm_sec, data_sec, \
7801 data_offset, & word, & addr, NULL)) \
0b6ae522
DJ
7802 return; \
7803 remaining = 4; \
7804 more_words--; \
7805 } \
7806
7807#define GET_OP(OP) \
7808 ADVANCE; \
7809 if (remaining) \
7810 { \
7811 remaining--; \
7812 (OP) = word >> 24; \
7813 word <<= 8; \
7814 } \
7815 else \
7816 { \
2b692964 7817 printf (_("[Truncated opcode]\n")); \
0b6ae522
DJ
7818 return; \
7819 } \
cc5914eb 7820 printf ("0x%02x ", OP)
0b6ae522 7821
fa197c1c 7822static void
948f632f
DA
7823decode_arm_unwind_bytecode (struct arm_unw_aux_info * aux,
7824 unsigned int word,
7825 unsigned int remaining,
7826 unsigned int more_words,
7827 bfd_vma data_offset,
7828 Elf_Internal_Shdr * data_sec,
7829 struct arm_section * data_arm_sec)
fa197c1c
PB
7830{
7831 struct absaddr addr;
0b6ae522
DJ
7832
7833 /* Decode the unwinding instructions. */
7834 while (1)
7835 {
7836 unsigned int op, op2;
7837
7838 ADVANCE;
7839 if (remaining == 0)
7840 break;
7841 remaining--;
7842 op = word >> 24;
7843 word <<= 8;
7844
cc5914eb 7845 printf (" 0x%02x ", op);
0b6ae522
DJ
7846
7847 if ((op & 0xc0) == 0x00)
7848 {
7849 int offset = ((op & 0x3f) << 2) + 4;
61865e30 7850
cc5914eb 7851 printf (" vsp = vsp + %d", offset);
0b6ae522
DJ
7852 }
7853 else if ((op & 0xc0) == 0x40)
7854 {
7855 int offset = ((op & 0x3f) << 2) + 4;
61865e30 7856
cc5914eb 7857 printf (" vsp = vsp - %d", offset);
0b6ae522
DJ
7858 }
7859 else if ((op & 0xf0) == 0x80)
7860 {
7861 GET_OP (op2);
7862 if (op == 0x80 && op2 == 0)
7863 printf (_("Refuse to unwind"));
7864 else
7865 {
7866 unsigned int mask = ((op & 0x0f) << 8) | op2;
7867 int first = 1;
7868 int i;
2b692964 7869
0b6ae522
DJ
7870 printf ("pop {");
7871 for (i = 0; i < 12; i++)
7872 if (mask & (1 << i))
7873 {
7874 if (first)
7875 first = 0;
7876 else
7877 printf (", ");
7878 printf ("r%d", 4 + i);
7879 }
7880 printf ("}");
7881 }
7882 }
7883 else if ((op & 0xf0) == 0x90)
7884 {
7885 if (op == 0x9d || op == 0x9f)
7886 printf (_(" [Reserved]"));
7887 else
cc5914eb 7888 printf (" vsp = r%d", op & 0x0f);
0b6ae522
DJ
7889 }
7890 else if ((op & 0xf0) == 0xa0)
7891 {
7892 int end = 4 + (op & 0x07);
7893 int first = 1;
7894 int i;
61865e30 7895
0b6ae522
DJ
7896 printf (" pop {");
7897 for (i = 4; i <= end; i++)
7898 {
7899 if (first)
7900 first = 0;
7901 else
7902 printf (", ");
7903 printf ("r%d", i);
7904 }
7905 if (op & 0x08)
7906 {
1b31d05e 7907 if (!first)
0b6ae522
DJ
7908 printf (", ");
7909 printf ("r14");
7910 }
7911 printf ("}");
7912 }
7913 else if (op == 0xb0)
7914 printf (_(" finish"));
7915 else if (op == 0xb1)
7916 {
7917 GET_OP (op2);
7918 if (op2 == 0 || (op2 & 0xf0) != 0)
7919 printf (_("[Spare]"));
7920 else
7921 {
7922 unsigned int mask = op2 & 0x0f;
7923 int first = 1;
7924 int i;
61865e30 7925
0b6ae522
DJ
7926 printf ("pop {");
7927 for (i = 0; i < 12; i++)
7928 if (mask & (1 << i))
7929 {
7930 if (first)
7931 first = 0;
7932 else
7933 printf (", ");
7934 printf ("r%d", i);
7935 }
7936 printf ("}");
7937 }
7938 }
7939 else if (op == 0xb2)
7940 {
b115cf96 7941 unsigned char buf[9];
0b6ae522
DJ
7942 unsigned int i, len;
7943 unsigned long offset;
61865e30 7944
b115cf96 7945 for (i = 0; i < sizeof (buf); i++)
0b6ae522
DJ
7946 {
7947 GET_OP (buf[i]);
7948 if ((buf[i] & 0x80) == 0)
7949 break;
7950 }
4082ef84
NC
7951 if (i == sizeof (buf))
7952 printf (_("corrupt change to vsp"));
7953 else
7954 {
7955 offset = read_uleb128 (buf, &len, buf + i + 1);
7956 assert (len == i + 1);
7957 offset = offset * 4 + 0x204;
7958 printf ("vsp = vsp + %ld", offset);
7959 }
0b6ae522 7960 }
61865e30 7961 else if (op == 0xb3 || op == 0xc8 || op == 0xc9)
0b6ae522 7962 {
61865e30
NC
7963 unsigned int first, last;
7964
7965 GET_OP (op2);
7966 first = op2 >> 4;
7967 last = op2 & 0x0f;
7968 if (op == 0xc8)
7969 first = first + 16;
7970 printf ("pop {D%d", first);
7971 if (last)
7972 printf ("-D%d", first + last);
7973 printf ("}");
7974 }
7975 else if ((op & 0xf8) == 0xb8 || (op & 0xf8) == 0xd0)
7976 {
7977 unsigned int count = op & 0x07;
7978
7979 printf ("pop {D8");
7980 if (count)
7981 printf ("-D%d", 8 + count);
7982 printf ("}");
7983 }
7984 else if (op >= 0xc0 && op <= 0xc5)
7985 {
7986 unsigned int count = op & 0x07;
7987
7988 printf (" pop {wR10");
7989 if (count)
7990 printf ("-wR%d", 10 + count);
7991 printf ("}");
7992 }
7993 else if (op == 0xc6)
7994 {
7995 unsigned int first, last;
7996
7997 GET_OP (op2);
7998 first = op2 >> 4;
7999 last = op2 & 0x0f;
8000 printf ("pop {wR%d", first);
8001 if (last)
8002 printf ("-wR%d", first + last);
8003 printf ("}");
8004 }
8005 else if (op == 0xc7)
8006 {
8007 GET_OP (op2);
8008 if (op2 == 0 || (op2 & 0xf0) != 0)
8009 printf (_("[Spare]"));
0b6ae522
DJ
8010 else
8011 {
61865e30
NC
8012 unsigned int mask = op2 & 0x0f;
8013 int first = 1;
8014 int i;
8015
8016 printf ("pop {");
8017 for (i = 0; i < 4; i++)
8018 if (mask & (1 << i))
8019 {
8020 if (first)
8021 first = 0;
8022 else
8023 printf (", ");
8024 printf ("wCGR%d", i);
8025 }
8026 printf ("}");
0b6ae522
DJ
8027 }
8028 }
61865e30
NC
8029 else
8030 printf (_(" [unsupported opcode]"));
0b6ae522
DJ
8031 printf ("\n");
8032 }
fa197c1c
PB
8033}
8034
8035static void
948f632f
DA
8036decode_tic6x_unwind_bytecode (struct arm_unw_aux_info * aux,
8037 unsigned int word,
8038 unsigned int remaining,
8039 unsigned int more_words,
8040 bfd_vma data_offset,
8041 Elf_Internal_Shdr * data_sec,
8042 struct arm_section * data_arm_sec)
fa197c1c
PB
8043{
8044 struct absaddr addr;
8045
8046 /* Decode the unwinding instructions. */
8047 while (1)
8048 {
8049 unsigned int op, op2;
8050
8051 ADVANCE;
8052 if (remaining == 0)
8053 break;
8054 remaining--;
8055 op = word >> 24;
8056 word <<= 8;
8057
9cf03b7e 8058 printf (" 0x%02x ", op);
fa197c1c
PB
8059
8060 if ((op & 0xc0) == 0x00)
8061 {
8062 int offset = ((op & 0x3f) << 3) + 8;
9cf03b7e 8063 printf (" sp = sp + %d", offset);
fa197c1c
PB
8064 }
8065 else if ((op & 0xc0) == 0x80)
8066 {
8067 GET_OP (op2);
8068 if (op == 0x80 && op2 == 0)
8069 printf (_("Refuse to unwind"));
8070 else
8071 {
8072 unsigned int mask = ((op & 0x1f) << 8) | op2;
8073 if (op & 0x20)
8074 printf ("pop compact {");
8075 else
8076 printf ("pop {");
8077
8078 decode_tic6x_unwind_regmask (mask);
8079 printf("}");
8080 }
8081 }
8082 else if ((op & 0xf0) == 0xc0)
8083 {
8084 unsigned int reg;
8085 unsigned int nregs;
8086 unsigned int i;
8087 const char *name;
a734115a
NC
8088 struct
8089 {
fa197c1c
PB
8090 unsigned int offset;
8091 unsigned int reg;
8092 } regpos[16];
8093
8094 /* Scan entire instruction first so that GET_OP output is not
8095 interleaved with disassembly. */
8096 nregs = 0;
8097 for (i = 0; nregs < (op & 0xf); i++)
8098 {
8099 GET_OP (op2);
8100 reg = op2 >> 4;
8101 if (reg != 0xf)
8102 {
8103 regpos[nregs].offset = i * 2;
8104 regpos[nregs].reg = reg;
8105 nregs++;
8106 }
8107
8108 reg = op2 & 0xf;
8109 if (reg != 0xf)
8110 {
8111 regpos[nregs].offset = i * 2 + 1;
8112 regpos[nregs].reg = reg;
8113 nregs++;
8114 }
8115 }
8116
8117 printf (_("pop frame {"));
8118 reg = nregs - 1;
8119 for (i = i * 2; i > 0; i--)
8120 {
8121 if (regpos[reg].offset == i - 1)
8122 {
8123 name = tic6x_unwind_regnames[regpos[reg].reg];
8124 if (reg > 0)
8125 reg--;
8126 }
8127 else
8128 name = _("[pad]");
8129
8130 fputs (name, stdout);
8131 if (i > 1)
8132 printf (", ");
8133 }
8134
8135 printf ("}");
8136 }
8137 else if (op == 0xd0)
8138 printf (" MOV FP, SP");
8139 else if (op == 0xd1)
8140 printf (" __c6xabi_pop_rts");
8141 else if (op == 0xd2)
8142 {
8143 unsigned char buf[9];
8144 unsigned int i, len;
8145 unsigned long offset;
a734115a 8146
fa197c1c
PB
8147 for (i = 0; i < sizeof (buf); i++)
8148 {
8149 GET_OP (buf[i]);
8150 if ((buf[i] & 0x80) == 0)
8151 break;
8152 }
0eff7165
NC
8153 /* PR 17531: file: id:000001,src:001906+004739,op:splice,rep:2. */
8154 if (i == sizeof (buf))
8155 {
8156 printf ("<corrupt sp adjust>\n");
8157 warn (_("Corrupt stack pointer adjustment detected\n"));
8158 return;
8159 }
948f632f 8160
f6f0e17b 8161 offset = read_uleb128 (buf, &len, buf + i + 1);
fa197c1c
PB
8162 assert (len == i + 1);
8163 offset = offset * 8 + 0x408;
8164 printf (_("sp = sp + %ld"), offset);
8165 }
8166 else if ((op & 0xf0) == 0xe0)
8167 {
8168 if ((op & 0x0f) == 7)
8169 printf (" RETURN");
8170 else
8171 printf (" MV %s, B3", tic6x_unwind_regnames[op & 0x0f]);
8172 }
8173 else
8174 {
8175 printf (_(" [unsupported opcode]"));
8176 }
8177 putchar ('\n');
8178 }
8179}
8180
8181static bfd_vma
a734115a 8182arm_expand_prel31 (bfd_vma word, bfd_vma where)
fa197c1c
PB
8183{
8184 bfd_vma offset;
8185
8186 offset = word & 0x7fffffff;
8187 if (offset & 0x40000000)
8188 offset |= ~ (bfd_vma) 0x7fffffff;
8189
8190 if (elf_header.e_machine == EM_TI_C6000)
8191 offset <<= 1;
8192
8193 return offset + where;
8194}
8195
8196static void
1b31d05e
NC
8197decode_arm_unwind (struct arm_unw_aux_info * aux,
8198 unsigned int word,
8199 unsigned int remaining,
8200 bfd_vma data_offset,
8201 Elf_Internal_Shdr * data_sec,
8202 struct arm_section * data_arm_sec)
fa197c1c
PB
8203{
8204 int per_index;
8205 unsigned int more_words = 0;
37e14bc3 8206 struct absaddr addr;
1b31d05e 8207 bfd_vma sym_name = (bfd_vma) -1;
fa197c1c
PB
8208
8209 if (remaining == 0)
8210 {
1b31d05e
NC
8211 /* Fetch the first word.
8212 Note - when decoding an object file the address extracted
8213 here will always be 0. So we also pass in the sym_name
8214 parameter so that we can find the symbol associated with
8215 the personality routine. */
8216 if (! get_unwind_section_word (aux, data_arm_sec, data_sec, data_offset,
8217 & word, & addr, & sym_name))
fa197c1c 8218 return;
1b31d05e 8219
fa197c1c
PB
8220 remaining = 4;
8221 }
8222
8223 if ((word & 0x80000000) == 0)
8224 {
8225 /* Expand prel31 for personality routine. */
8226 bfd_vma fn;
8227 const char *procname;
8228
a734115a 8229 fn = arm_expand_prel31 (word, data_sec->sh_addr + data_offset);
fa197c1c 8230 printf (_(" Personality routine: "));
1b31d05e
NC
8231 if (fn == 0
8232 && addr.section == SHN_UNDEF && addr.offset == 0
8233 && sym_name != (bfd_vma) -1 && sym_name < aux->strtab_size)
8234 {
8235 procname = aux->strtab + sym_name;
8236 print_vma (fn, PREFIX_HEX);
8237 if (procname)
8238 {
8239 fputs (" <", stdout);
8240 fputs (procname, stdout);
8241 fputc ('>', stdout);
8242 }
8243 }
8244 else
8245 procname = arm_print_vma_and_name (aux, fn, addr);
fa197c1c
PB
8246 fputc ('\n', stdout);
8247
8248 /* The GCC personality routines use the standard compact
8249 encoding, starting with one byte giving the number of
8250 words. */
8251 if (procname != NULL
8252 && (const_strneq (procname, "__gcc_personality_v0")
8253 || const_strneq (procname, "__gxx_personality_v0")
8254 || const_strneq (procname, "__gcj_personality_v0")
8255 || const_strneq (procname, "__gnu_objc_personality_v0")))
8256 {
8257 remaining = 0;
8258 more_words = 1;
8259 ADVANCE;
8260 if (!remaining)
8261 {
8262 printf (_(" [Truncated data]\n"));
8263 return;
8264 }
8265 more_words = word >> 24;
8266 word <<= 8;
8267 remaining--;
8268 per_index = -1;
8269 }
8270 else
8271 return;
8272 }
8273 else
8274 {
1b31d05e 8275 /* ARM EHABI Section 6.3:
0b4362b0 8276
1b31d05e 8277 An exception-handling table entry for the compact model looks like:
0b4362b0 8278
1b31d05e
NC
8279 31 30-28 27-24 23-0
8280 -- ----- ----- ----
8281 1 0 index Data for personalityRoutine[index] */
8282
8283 if (elf_header.e_machine == EM_ARM
8284 && (word & 0x70000000))
83c257ca 8285 warn (_("Corrupt ARM compact model table entry: %x \n"), word);
1b31d05e 8286
fa197c1c 8287 per_index = (word >> 24) & 0x7f;
1b31d05e 8288 printf (_(" Compact model index: %d\n"), per_index);
fa197c1c
PB
8289 if (per_index == 0)
8290 {
8291 more_words = 0;
8292 word <<= 8;
8293 remaining--;
8294 }
8295 else if (per_index < 3)
8296 {
8297 more_words = (word >> 16) & 0xff;
8298 word <<= 16;
8299 remaining -= 2;
8300 }
8301 }
8302
8303 switch (elf_header.e_machine)
8304 {
8305 case EM_ARM:
8306 if (per_index < 3)
8307 {
8308 decode_arm_unwind_bytecode (aux, word, remaining, more_words,
8309 data_offset, data_sec, data_arm_sec);
8310 }
8311 else
1b31d05e
NC
8312 {
8313 warn (_("Unknown ARM compact model index encountered\n"));
8314 printf (_(" [reserved]\n"));
8315 }
fa197c1c
PB
8316 break;
8317
8318 case EM_TI_C6000:
8319 if (per_index < 3)
8320 {
8321 decode_tic6x_unwind_bytecode (aux, word, remaining, more_words,
1b31d05e 8322 data_offset, data_sec, data_arm_sec);
fa197c1c
PB
8323 }
8324 else if (per_index < 5)
8325 {
8326 if (((word >> 17) & 0x7f) == 0x7f)
8327 printf (_(" Restore stack from frame pointer\n"));
8328 else
8329 printf (_(" Stack increment %d\n"), (word >> 14) & 0x1fc);
8330 printf (_(" Registers restored: "));
8331 if (per_index == 4)
8332 printf (" (compact) ");
8333 decode_tic6x_unwind_regmask ((word >> 4) & 0x1fff);
8334 putchar ('\n');
8335 printf (_(" Return register: %s\n"),
8336 tic6x_unwind_regnames[word & 0xf]);
8337 }
8338 else
1b31d05e 8339 printf (_(" [reserved (%d)]\n"), per_index);
fa197c1c
PB
8340 break;
8341
8342 default:
74e1a04b 8343 error (_("Unsupported architecture type %d encountered when decoding unwind table\n"),
1b31d05e 8344 elf_header.e_machine);
fa197c1c 8345 }
0b6ae522
DJ
8346
8347 /* Decode the descriptors. Not implemented. */
8348}
8349
8350static void
8351dump_arm_unwind (struct arm_unw_aux_info *aux, Elf_Internal_Shdr *exidx_sec)
8352{
8353 struct arm_section exidx_arm_sec, extab_arm_sec;
8354 unsigned int i, exidx_len;
948f632f 8355 unsigned long j, nfuns;
0b6ae522
DJ
8356
8357 memset (&exidx_arm_sec, 0, sizeof (exidx_arm_sec));
8358 memset (&extab_arm_sec, 0, sizeof (extab_arm_sec));
8359 exidx_len = exidx_sec->sh_size / 8;
8360
948f632f
DA
8361 aux->funtab = xmalloc (aux->nsyms * sizeof (Elf_Internal_Sym));
8362 for (nfuns = 0, j = 0; j < aux->nsyms; j++)
8363 if (aux->symtab[j].st_value && ELF_ST_TYPE (aux->symtab[j].st_info) == STT_FUNC)
8364 aux->funtab[nfuns++] = aux->symtab[j];
8365 aux->nfuns = nfuns;
8366 qsort (aux->funtab, aux->nfuns, sizeof (Elf_Internal_Sym), symcmp);
8367
0b6ae522
DJ
8368 for (i = 0; i < exidx_len; i++)
8369 {
8370 unsigned int exidx_fn, exidx_entry;
8371 struct absaddr fn_addr, entry_addr;
8372 bfd_vma fn;
8373
8374 fputc ('\n', stdout);
8375
1b31d05e
NC
8376 if (! get_unwind_section_word (aux, & exidx_arm_sec, exidx_sec,
8377 8 * i, & exidx_fn, & fn_addr, NULL)
8378 || ! get_unwind_section_word (aux, & exidx_arm_sec, exidx_sec,
8379 8 * i + 4, & exidx_entry, & entry_addr, NULL))
0b6ae522 8380 {
948f632f 8381 free (aux->funtab);
1b31d05e
NC
8382 arm_free_section (& exidx_arm_sec);
8383 arm_free_section (& extab_arm_sec);
0b6ae522
DJ
8384 return;
8385 }
8386
83c257ca
NC
8387 /* ARM EHABI, Section 5:
8388 An index table entry consists of 2 words.
8389 The first word contains a prel31 offset to the start of a function, with bit 31 clear. */
8390 if (exidx_fn & 0x80000000)
8391 warn (_("corrupt index table entry: %x\n"), exidx_fn);
8392
a734115a 8393 fn = arm_expand_prel31 (exidx_fn, exidx_sec->sh_addr + 8 * i);
0b6ae522 8394
a734115a 8395 arm_print_vma_and_name (aux, fn, fn_addr);
0b6ae522
DJ
8396 fputs (": ", stdout);
8397
8398 if (exidx_entry == 1)
8399 {
8400 print_vma (exidx_entry, PREFIX_HEX);
8401 fputs (" [cantunwind]\n", stdout);
8402 }
8403 else if (exidx_entry & 0x80000000)
8404 {
8405 print_vma (exidx_entry, PREFIX_HEX);
8406 fputc ('\n', stdout);
8407 decode_arm_unwind (aux, exidx_entry, 4, 0, NULL, NULL);
8408 }
8409 else
8410 {
8f73510c 8411 bfd_vma table, table_offset = 0;
0b6ae522
DJ
8412 Elf_Internal_Shdr *table_sec;
8413
8414 fputs ("@", stdout);
a734115a 8415 table = arm_expand_prel31 (exidx_entry, exidx_sec->sh_addr + 8 * i + 4);
0b6ae522
DJ
8416 print_vma (table, PREFIX_HEX);
8417 printf ("\n");
8418
8419 /* Locate the matching .ARM.extab. */
8420 if (entry_addr.section != SHN_UNDEF
8421 && entry_addr.section < elf_header.e_shnum)
8422 {
8423 table_sec = section_headers + entry_addr.section;
8424 table_offset = entry_addr.offset;
1a915552
NC
8425 /* PR 18879 */
8426 if (table_offset > table_sec->sh_size
8427 || ((bfd_signed_vma) table_offset) < 0)
8428 {
8429 warn (_("Unwind entry contains corrupt offset (0x%lx) into section %s\n"),
8430 (unsigned long) table_offset,
8431 printable_section_name (table_sec));
8432 continue;
8433 }
0b6ae522
DJ
8434 }
8435 else
8436 {
8437 table_sec = find_section_by_address (table);
8438 if (table_sec != NULL)
8439 table_offset = table - table_sec->sh_addr;
8440 }
8441 if (table_sec == NULL)
8442 {
8443 warn (_("Could not locate .ARM.extab section containing 0x%lx.\n"),
8444 (unsigned long) table);
8445 continue;
8446 }
8447 decode_arm_unwind (aux, 0, 0, table_offset, table_sec,
8448 &extab_arm_sec);
8449 }
8450 }
8451
8452 printf ("\n");
8453
948f632f 8454 free (aux->funtab);
0b6ae522
DJ
8455 arm_free_section (&exidx_arm_sec);
8456 arm_free_section (&extab_arm_sec);
8457}
8458
fa197c1c 8459/* Used for both ARM and C6X unwinding tables. */
1b31d05e
NC
8460
8461static void
0b6ae522
DJ
8462arm_process_unwind (FILE *file)
8463{
8464 struct arm_unw_aux_info aux;
8465 Elf_Internal_Shdr *unwsec = NULL;
8466 Elf_Internal_Shdr *strsec;
8467 Elf_Internal_Shdr *sec;
8468 unsigned long i;
fa197c1c 8469 unsigned int sec_type;
0b6ae522 8470
fa197c1c
PB
8471 switch (elf_header.e_machine)
8472 {
8473 case EM_ARM:
8474 sec_type = SHT_ARM_EXIDX;
8475 break;
8476
8477 case EM_TI_C6000:
8478 sec_type = SHT_C6000_UNWIND;
8479 break;
8480
0b4362b0 8481 default:
74e1a04b 8482 error (_("Unsupported architecture type %d encountered when processing unwind table\n"),
1b31d05e
NC
8483 elf_header.e_machine);
8484 return;
fa197c1c
PB
8485 }
8486
0b6ae522 8487 if (string_table == NULL)
1b31d05e
NC
8488 return;
8489
8490 memset (& aux, 0, sizeof (aux));
8491 aux.file = file;
0b6ae522
DJ
8492
8493 for (i = 0, sec = section_headers; i < elf_header.e_shnum; ++i, ++sec)
8494 {
8495 if (sec->sh_type == SHT_SYMTAB && sec->sh_link < elf_header.e_shnum)
8496 {
ba5cdace 8497 aux.symtab = GET_ELF_SYMBOLS (file, sec, & aux.nsyms);
0b6ae522
DJ
8498
8499 strsec = section_headers + sec->sh_link;
74e1a04b
NC
8500
8501 /* PR binutils/17531 file: 011-12666-0.004. */
8502 if (aux.strtab != NULL)
8503 {
4082ef84 8504 error (_("Multiple string tables found in file.\n"));
74e1a04b
NC
8505 free (aux.strtab);
8506 }
0b6ae522
DJ
8507 aux.strtab = get_data (NULL, file, strsec->sh_offset,
8508 1, strsec->sh_size, _("string table"));
8509 aux.strtab_size = aux.strtab != NULL ? strsec->sh_size : 0;
8510 }
fa197c1c 8511 else if (sec->sh_type == sec_type)
0b6ae522
DJ
8512 unwsec = sec;
8513 }
8514
1b31d05e 8515 if (unwsec == NULL)
0b6ae522 8516 printf (_("\nThere are no unwind sections in this file.\n"));
1b31d05e
NC
8517 else
8518 for (i = 0, sec = section_headers; i < elf_header.e_shnum; ++i, ++sec)
8519 {
8520 if (sec->sh_type == sec_type)
8521 {
8522 printf (_("\nUnwind table index '%s' at offset 0x%lx contains %lu entries:\n"),
74e1a04b 8523 printable_section_name (sec),
1b31d05e
NC
8524 (unsigned long) sec->sh_offset,
8525 (unsigned long) (sec->sh_size / (2 * eh_addr_size)));
0b6ae522 8526
1b31d05e
NC
8527 dump_arm_unwind (&aux, sec);
8528 }
8529 }
0b6ae522
DJ
8530
8531 if (aux.symtab)
8532 free (aux.symtab);
8533 if (aux.strtab)
8534 free ((char *) aux.strtab);
0b6ae522
DJ
8535}
8536
1b31d05e 8537static void
2cf0635d 8538process_unwind (FILE * file)
57346661 8539{
2cf0635d
NC
8540 struct unwind_handler
8541 {
57346661 8542 int machtype;
1b31d05e 8543 void (* handler)(FILE *);
2cf0635d
NC
8544 } handlers[] =
8545 {
0b6ae522 8546 { EM_ARM, arm_process_unwind },
57346661
AM
8547 { EM_IA_64, ia64_process_unwind },
8548 { EM_PARISC, hppa_process_unwind },
fa197c1c 8549 { EM_TI_C6000, arm_process_unwind },
57346661
AM
8550 { 0, 0 }
8551 };
8552 int i;
8553
8554 if (!do_unwind)
1b31d05e 8555 return;
57346661
AM
8556
8557 for (i = 0; handlers[i].handler != NULL; i++)
8558 if (elf_header.e_machine == handlers[i].machtype)
9f758fdc
NC
8559 {
8560 handlers[i].handler (file);
8561 return;
8562 }
57346661 8563
1b31d05e
NC
8564 printf (_("\nThe decoding of unwind sections for machine type %s is not currently supported.\n"),
8565 get_machine_name (elf_header.e_machine));
57346661
AM
8566}
8567
252b5132 8568static void
2cf0635d 8569dynamic_section_mips_val (Elf_Internal_Dyn * entry)
252b5132
RH
8570{
8571 switch (entry->d_tag)
8572 {
8573 case DT_MIPS_FLAGS:
8574 if (entry->d_un.d_val == 0)
4b68bca3 8575 printf (_("NONE"));
252b5132
RH
8576 else
8577 {
8578 static const char * opts[] =
8579 {
8580 "QUICKSTART", "NOTPOT", "NO_LIBRARY_REPLACEMENT",
8581 "NO_MOVE", "SGI_ONLY", "GUARANTEE_INIT", "DELTA_C_PLUS_PLUS",
8582 "GUARANTEE_START_INIT", "PIXIE", "DEFAULT_DELAY_LOAD",
8583 "REQUICKSTART", "REQUICKSTARTED", "CORD", "NO_UNRES_UNDEF",
8584 "RLD_ORDER_SAFE"
8585 };
8586 unsigned int cnt;
8587 int first = 1;
2b692964 8588
60bca95a 8589 for (cnt = 0; cnt < ARRAY_SIZE (opts); ++cnt)
252b5132
RH
8590 if (entry->d_un.d_val & (1 << cnt))
8591 {
8592 printf ("%s%s", first ? "" : " ", opts[cnt]);
8593 first = 0;
8594 }
252b5132
RH
8595 }
8596 break;
103f02d3 8597
252b5132 8598 case DT_MIPS_IVERSION:
d79b3d50 8599 if (VALID_DYNAMIC_NAME (entry->d_un.d_val))
4b68bca3 8600 printf (_("Interface Version: %s"), GET_DYNAMIC_NAME (entry->d_un.d_val));
252b5132 8601 else
76ca31c0
NC
8602 {
8603 char buf[40];
8604 sprintf_vma (buf, entry->d_un.d_ptr);
8605 /* Note: coded this way so that there is a single string for translation. */
8606 printf (_("<corrupt: %s>"), buf);
8607 }
252b5132 8608 break;
103f02d3 8609
252b5132
RH
8610 case DT_MIPS_TIME_STAMP:
8611 {
8612 char timebuf[20];
2cf0635d 8613 struct tm * tmp;
91d6fa6a 8614 time_t atime = entry->d_un.d_val;
82b1b41b 8615
91d6fa6a 8616 tmp = gmtime (&atime);
82b1b41b
NC
8617 /* PR 17531: file: 6accc532. */
8618 if (tmp == NULL)
8619 snprintf (timebuf, sizeof (timebuf), _("<corrupt>"));
8620 else
8621 snprintf (timebuf, sizeof (timebuf), "%04u-%02u-%02uT%02u:%02u:%02u",
8622 tmp->tm_year + 1900, tmp->tm_mon + 1, tmp->tm_mday,
8623 tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
4b68bca3 8624 printf (_("Time Stamp: %s"), timebuf);
252b5132
RH
8625 }
8626 break;
103f02d3 8627
252b5132
RH
8628 case DT_MIPS_RLD_VERSION:
8629 case DT_MIPS_LOCAL_GOTNO:
8630 case DT_MIPS_CONFLICTNO:
8631 case DT_MIPS_LIBLISTNO:
8632 case DT_MIPS_SYMTABNO:
8633 case DT_MIPS_UNREFEXTNO:
8634 case DT_MIPS_HIPAGENO:
8635 case DT_MIPS_DELTA_CLASS_NO:
8636 case DT_MIPS_DELTA_INSTANCE_NO:
8637 case DT_MIPS_DELTA_RELOC_NO:
8638 case DT_MIPS_DELTA_SYM_NO:
8639 case DT_MIPS_DELTA_CLASSSYM_NO:
8640 case DT_MIPS_COMPACT_SIZE:
4b68bca3 8641 print_vma (entry->d_un.d_ptr, DEC);
252b5132 8642 break;
103f02d3
UD
8643
8644 default:
4b68bca3 8645 print_vma (entry->d_un.d_ptr, PREFIX_HEX);
103f02d3 8646 }
4b68bca3 8647 putchar ('\n');
103f02d3
UD
8648}
8649
103f02d3 8650static void
2cf0635d 8651dynamic_section_parisc_val (Elf_Internal_Dyn * entry)
103f02d3
UD
8652{
8653 switch (entry->d_tag)
8654 {
8655 case DT_HP_DLD_FLAGS:
8656 {
8657 static struct
8658 {
8659 long int bit;
2cf0635d 8660 const char * str;
5e220199
NC
8661 }
8662 flags[] =
8663 {
8664 { DT_HP_DEBUG_PRIVATE, "HP_DEBUG_PRIVATE" },
8665 { DT_HP_DEBUG_CALLBACK, "HP_DEBUG_CALLBACK" },
8666 { DT_HP_DEBUG_CALLBACK_BOR, "HP_DEBUG_CALLBACK_BOR" },
8667 { DT_HP_NO_ENVVAR, "HP_NO_ENVVAR" },
8668 { DT_HP_BIND_NOW, "HP_BIND_NOW" },
8669 { DT_HP_BIND_NONFATAL, "HP_BIND_NONFATAL" },
8670 { DT_HP_BIND_VERBOSE, "HP_BIND_VERBOSE" },
8671 { DT_HP_BIND_RESTRICTED, "HP_BIND_RESTRICTED" },
8672 { DT_HP_BIND_SYMBOLIC, "HP_BIND_SYMBOLIC" },
8673 { DT_HP_RPATH_FIRST, "HP_RPATH_FIRST" },
eec8f817
DA
8674 { DT_HP_BIND_DEPTH_FIRST, "HP_BIND_DEPTH_FIRST" },
8675 { DT_HP_GST, "HP_GST" },
8676 { DT_HP_SHLIB_FIXED, "HP_SHLIB_FIXED" },
8677 { DT_HP_MERGE_SHLIB_SEG, "HP_MERGE_SHLIB_SEG" },
8678 { DT_HP_NODELETE, "HP_NODELETE" },
8679 { DT_HP_GROUP, "HP_GROUP" },
8680 { DT_HP_PROTECT_LINKAGE_TABLE, "HP_PROTECT_LINKAGE_TABLE" }
5e220199 8681 };
103f02d3 8682 int first = 1;
5e220199 8683 size_t cnt;
f7a99963 8684 bfd_vma val = entry->d_un.d_val;
103f02d3 8685
60bca95a 8686 for (cnt = 0; cnt < ARRAY_SIZE (flags); ++cnt)
103f02d3 8687 if (val & flags[cnt].bit)
30800947
NC
8688 {
8689 if (! first)
8690 putchar (' ');
8691 fputs (flags[cnt].str, stdout);
8692 first = 0;
8693 val ^= flags[cnt].bit;
8694 }
76da6bbe 8695
103f02d3 8696 if (val != 0 || first)
f7a99963
NC
8697 {
8698 if (! first)
8699 putchar (' ');
8700 print_vma (val, HEX);
8701 }
103f02d3
UD
8702 }
8703 break;
76da6bbe 8704
252b5132 8705 default:
f7a99963
NC
8706 print_vma (entry->d_un.d_ptr, PREFIX_HEX);
8707 break;
252b5132 8708 }
35b1837e 8709 putchar ('\n');
252b5132
RH
8710}
8711
28f997cf
TG
8712#ifdef BFD64
8713
8714/* VMS vs Unix time offset and factor. */
8715
8716#define VMS_EPOCH_OFFSET 35067168000000000LL
8717#define VMS_GRANULARITY_FACTOR 10000000
8718
8719/* Display a VMS time in a human readable format. */
8720
8721static void
8722print_vms_time (bfd_int64_t vmstime)
8723{
8724 struct tm *tm;
8725 time_t unxtime;
8726
8727 unxtime = (vmstime - VMS_EPOCH_OFFSET) / VMS_GRANULARITY_FACTOR;
8728 tm = gmtime (&unxtime);
8729 printf ("%04u-%02u-%02uT%02u:%02u:%02u",
8730 tm->tm_year + 1900, tm->tm_mon + 1, tm->tm_mday,
8731 tm->tm_hour, tm->tm_min, tm->tm_sec);
8732}
8733#endif /* BFD64 */
8734
ecc51f48 8735static void
2cf0635d 8736dynamic_section_ia64_val (Elf_Internal_Dyn * entry)
ecc51f48
NC
8737{
8738 switch (entry->d_tag)
8739 {
0de14b54 8740 case DT_IA_64_PLT_RESERVE:
bdf4d63a 8741 /* First 3 slots reserved. */
ecc51f48
NC
8742 print_vma (entry->d_un.d_ptr, PREFIX_HEX);
8743 printf (" -- ");
8744 print_vma (entry->d_un.d_ptr + (3 * 8), PREFIX_HEX);
bdf4d63a
JJ
8745 break;
8746
28f997cf
TG
8747 case DT_IA_64_VMS_LINKTIME:
8748#ifdef BFD64
8749 print_vms_time (entry->d_un.d_val);
8750#endif
8751 break;
8752
8753 case DT_IA_64_VMS_LNKFLAGS:
8754 print_vma (entry->d_un.d_ptr, PREFIX_HEX);
8755 if (entry->d_un.d_val & VMS_LF_CALL_DEBUG)
8756 printf (" CALL_DEBUG");
8757 if (entry->d_un.d_val & VMS_LF_NOP0BUFS)
8758 printf (" NOP0BUFS");
8759 if (entry->d_un.d_val & VMS_LF_P0IMAGE)
8760 printf (" P0IMAGE");
8761 if (entry->d_un.d_val & VMS_LF_MKTHREADS)
8762 printf (" MKTHREADS");
8763 if (entry->d_un.d_val & VMS_LF_UPCALLS)
8764 printf (" UPCALLS");
8765 if (entry->d_un.d_val & VMS_LF_IMGSTA)
8766 printf (" IMGSTA");
8767 if (entry->d_un.d_val & VMS_LF_INITIALIZE)
8768 printf (" INITIALIZE");
8769 if (entry->d_un.d_val & VMS_LF_MAIN)
8770 printf (" MAIN");
8771 if (entry->d_un.d_val & VMS_LF_EXE_INIT)
8772 printf (" EXE_INIT");
8773 if (entry->d_un.d_val & VMS_LF_TBK_IN_IMG)
8774 printf (" TBK_IN_IMG");
8775 if (entry->d_un.d_val & VMS_LF_DBG_IN_IMG)
8776 printf (" DBG_IN_IMG");
8777 if (entry->d_un.d_val & VMS_LF_TBK_IN_DSF)
8778 printf (" TBK_IN_DSF");
8779 if (entry->d_un.d_val & VMS_LF_DBG_IN_DSF)
8780 printf (" DBG_IN_DSF");
8781 if (entry->d_un.d_val & VMS_LF_SIGNATURES)
8782 printf (" SIGNATURES");
8783 if (entry->d_un.d_val & VMS_LF_REL_SEG_OFF)
8784 printf (" REL_SEG_OFF");
8785 break;
8786
bdf4d63a
JJ
8787 default:
8788 print_vma (entry->d_un.d_ptr, PREFIX_HEX);
8789 break;
ecc51f48 8790 }
bdf4d63a 8791 putchar ('\n');
ecc51f48
NC
8792}
8793
252b5132 8794static int
2cf0635d 8795get_32bit_dynamic_section (FILE * file)
252b5132 8796{
2cf0635d
NC
8797 Elf32_External_Dyn * edyn;
8798 Elf32_External_Dyn * ext;
8799 Elf_Internal_Dyn * entry;
103f02d3 8800
3f5e193b
NC
8801 edyn = (Elf32_External_Dyn *) get_data (NULL, file, dynamic_addr, 1,
8802 dynamic_size, _("dynamic section"));
a6e9f9df
AM
8803 if (!edyn)
8804 return 0;
103f02d3 8805
071436c6
NC
8806 /* SGI's ELF has more than one section in the DYNAMIC segment, and we
8807 might not have the luxury of section headers. Look for the DT_NULL
8808 terminator to determine the number of entries. */
ba2685cc 8809 for (ext = edyn, dynamic_nent = 0;
53c3012c 8810 (char *) (ext + 1) <= (char *) edyn + dynamic_size;
ba2685cc
AM
8811 ext++)
8812 {
8813 dynamic_nent++;
8814 if (BYTE_GET (ext->d_tag) == DT_NULL)
8815 break;
8816 }
252b5132 8817
3f5e193b
NC
8818 dynamic_section = (Elf_Internal_Dyn *) cmalloc (dynamic_nent,
8819 sizeof (* entry));
b2d38a17 8820 if (dynamic_section == NULL)
252b5132 8821 {
8b73c356
NC
8822 error (_("Out of memory allocating space for %lu dynamic entries\n"),
8823 (unsigned long) dynamic_nent);
9ea033b2
NC
8824 free (edyn);
8825 return 0;
8826 }
252b5132 8827
fb514b26 8828 for (ext = edyn, entry = dynamic_section;
ba2685cc 8829 entry < dynamic_section + dynamic_nent;
fb514b26 8830 ext++, entry++)
9ea033b2 8831 {
fb514b26
AM
8832 entry->d_tag = BYTE_GET (ext->d_tag);
8833 entry->d_un.d_val = BYTE_GET (ext->d_un.d_val);
252b5132
RH
8834 }
8835
9ea033b2
NC
8836 free (edyn);
8837
8838 return 1;
8839}
8840
8841static int
2cf0635d 8842get_64bit_dynamic_section (FILE * file)
9ea033b2 8843{
2cf0635d
NC
8844 Elf64_External_Dyn * edyn;
8845 Elf64_External_Dyn * ext;
8846 Elf_Internal_Dyn * entry;
103f02d3 8847
071436c6 8848 /* Read in the data. */
3f5e193b
NC
8849 edyn = (Elf64_External_Dyn *) get_data (NULL, file, dynamic_addr, 1,
8850 dynamic_size, _("dynamic section"));
a6e9f9df
AM
8851 if (!edyn)
8852 return 0;
103f02d3 8853
071436c6
NC
8854 /* SGI's ELF has more than one section in the DYNAMIC segment, and we
8855 might not have the luxury of section headers. Look for the DT_NULL
8856 terminator to determine the number of entries. */
ba2685cc 8857 for (ext = edyn, dynamic_nent = 0;
53c3012c
AM
8858 /* PR 17533 file: 033-67080-0.004 - do not read past end of buffer. */
8859 (char *) (ext + 1) <= (char *) edyn + dynamic_size;
ba2685cc
AM
8860 ext++)
8861 {
8862 dynamic_nent++;
66543521 8863 if (BYTE_GET (ext->d_tag) == DT_NULL)
ba2685cc
AM
8864 break;
8865 }
252b5132 8866
3f5e193b
NC
8867 dynamic_section = (Elf_Internal_Dyn *) cmalloc (dynamic_nent,
8868 sizeof (* entry));
b2d38a17 8869 if (dynamic_section == NULL)
252b5132 8870 {
8b73c356
NC
8871 error (_("Out of memory allocating space for %lu dynamic entries\n"),
8872 (unsigned long) dynamic_nent);
252b5132
RH
8873 free (edyn);
8874 return 0;
8875 }
8876
071436c6 8877 /* Convert from external to internal formats. */
fb514b26 8878 for (ext = edyn, entry = dynamic_section;
ba2685cc 8879 entry < dynamic_section + dynamic_nent;
fb514b26 8880 ext++, entry++)
252b5132 8881 {
66543521
AM
8882 entry->d_tag = BYTE_GET (ext->d_tag);
8883 entry->d_un.d_val = BYTE_GET (ext->d_un.d_val);
252b5132
RH
8884 }
8885
8886 free (edyn);
8887
9ea033b2
NC
8888 return 1;
8889}
8890
e9e44622
JJ
8891static void
8892print_dynamic_flags (bfd_vma flags)
d1133906 8893{
e9e44622 8894 int first = 1;
13ae64f3 8895
d1133906
NC
8896 while (flags)
8897 {
8898 bfd_vma flag;
8899
8900 flag = flags & - flags;
8901 flags &= ~ flag;
8902
e9e44622
JJ
8903 if (first)
8904 first = 0;
8905 else
8906 putc (' ', stdout);
13ae64f3 8907
d1133906
NC
8908 switch (flag)
8909 {
e9e44622
JJ
8910 case DF_ORIGIN: fputs ("ORIGIN", stdout); break;
8911 case DF_SYMBOLIC: fputs ("SYMBOLIC", stdout); break;
8912 case DF_TEXTREL: fputs ("TEXTREL", stdout); break;
8913 case DF_BIND_NOW: fputs ("BIND_NOW", stdout); break;
8914 case DF_STATIC_TLS: fputs ("STATIC_TLS", stdout); break;
2b692964 8915 default: fputs (_("unknown"), stdout); break;
d1133906
NC
8916 }
8917 }
e9e44622 8918 puts ("");
d1133906
NC
8919}
8920
b2d38a17
NC
8921/* Parse and display the contents of the dynamic section. */
8922
9ea033b2 8923static int
2cf0635d 8924process_dynamic_section (FILE * file)
9ea033b2 8925{
2cf0635d 8926 Elf_Internal_Dyn * entry;
9ea033b2
NC
8927
8928 if (dynamic_size == 0)
8929 {
8930 if (do_dynamic)
b2d38a17 8931 printf (_("\nThere is no dynamic section in this file.\n"));
9ea033b2
NC
8932
8933 return 1;
8934 }
8935
8936 if (is_32bit_elf)
8937 {
b2d38a17 8938 if (! get_32bit_dynamic_section (file))
9ea033b2
NC
8939 return 0;
8940 }
b2d38a17 8941 else if (! get_64bit_dynamic_section (file))
9ea033b2
NC
8942 return 0;
8943
252b5132
RH
8944 /* Find the appropriate symbol table. */
8945 if (dynamic_symbols == NULL)
8946 {
86dba8ee
AM
8947 for (entry = dynamic_section;
8948 entry < dynamic_section + dynamic_nent;
8949 ++entry)
252b5132 8950 {
c8286bd1 8951 Elf_Internal_Shdr section;
252b5132
RH
8952
8953 if (entry->d_tag != DT_SYMTAB)
8954 continue;
8955
8956 dynamic_info[DT_SYMTAB] = entry->d_un.d_val;
8957
8958 /* Since we do not know how big the symbol table is,
8959 we default to reading in the entire file (!) and
8960 processing that. This is overkill, I know, but it
e3c8793a 8961 should work. */
d93f0186 8962 section.sh_offset = offset_from_vma (file, entry->d_un.d_val, 0);
252b5132 8963
fb52b2f4
NC
8964 if (archive_file_offset != 0)
8965 section.sh_size = archive_file_size - section.sh_offset;
8966 else
8967 {
8968 if (fseek (file, 0, SEEK_END))
591a748a 8969 error (_("Unable to seek to end of file!\n"));
fb52b2f4
NC
8970
8971 section.sh_size = ftell (file) - section.sh_offset;
8972 }
252b5132 8973
9ea033b2 8974 if (is_32bit_elf)
9ad5cbcf 8975 section.sh_entsize = sizeof (Elf32_External_Sym);
9ea033b2 8976 else
9ad5cbcf 8977 section.sh_entsize = sizeof (Elf64_External_Sym);
071436c6 8978 section.sh_name = string_table_length;
252b5132 8979
ba5cdace 8980 dynamic_symbols = GET_ELF_SYMBOLS (file, &section, & num_dynamic_syms);
19936277 8981 if (num_dynamic_syms < 1)
252b5132
RH
8982 {
8983 error (_("Unable to determine the number of symbols to load\n"));
8984 continue;
8985 }
252b5132
RH
8986 }
8987 }
8988
8989 /* Similarly find a string table. */
8990 if (dynamic_strings == NULL)
8991 {
86dba8ee
AM
8992 for (entry = dynamic_section;
8993 entry < dynamic_section + dynamic_nent;
8994 ++entry)
252b5132
RH
8995 {
8996 unsigned long offset;
b34976b6 8997 long str_tab_len;
252b5132
RH
8998
8999 if (entry->d_tag != DT_STRTAB)
9000 continue;
9001
9002 dynamic_info[DT_STRTAB] = entry->d_un.d_val;
9003
9004 /* Since we do not know how big the string table is,
9005 we default to reading in the entire file (!) and
9006 processing that. This is overkill, I know, but it
e3c8793a 9007 should work. */
252b5132 9008
d93f0186 9009 offset = offset_from_vma (file, entry->d_un.d_val, 0);
fb52b2f4
NC
9010
9011 if (archive_file_offset != 0)
9012 str_tab_len = archive_file_size - offset;
9013 else
9014 {
9015 if (fseek (file, 0, SEEK_END))
9016 error (_("Unable to seek to end of file\n"));
9017 str_tab_len = ftell (file) - offset;
9018 }
252b5132
RH
9019
9020 if (str_tab_len < 1)
9021 {
9022 error
9023 (_("Unable to determine the length of the dynamic string table\n"));
9024 continue;
9025 }
9026
3f5e193b
NC
9027 dynamic_strings = (char *) get_data (NULL, file, offset, 1,
9028 str_tab_len,
9029 _("dynamic string table"));
59245841 9030 dynamic_strings_length = dynamic_strings == NULL ? 0 : str_tab_len;
252b5132
RH
9031 break;
9032 }
9033 }
9034
9035 /* And find the syminfo section if available. */
9036 if (dynamic_syminfo == NULL)
9037 {
3e8bba36 9038 unsigned long syminsz = 0;
252b5132 9039
86dba8ee
AM
9040 for (entry = dynamic_section;
9041 entry < dynamic_section + dynamic_nent;
9042 ++entry)
252b5132
RH
9043 {
9044 if (entry->d_tag == DT_SYMINENT)
9045 {
9046 /* Note: these braces are necessary to avoid a syntax
9047 error from the SunOS4 C compiler. */
049b0c3a
NC
9048 /* PR binutils/17531: A corrupt file can trigger this test.
9049 So do not use an assert, instead generate an error message. */
9050 if (sizeof (Elf_External_Syminfo) != entry->d_un.d_val)
071436c6 9051 error (_("Bad value (%d) for SYMINENT entry\n"),
049b0c3a 9052 (int) entry->d_un.d_val);
252b5132
RH
9053 }
9054 else if (entry->d_tag == DT_SYMINSZ)
9055 syminsz = entry->d_un.d_val;
9056 else if (entry->d_tag == DT_SYMINFO)
d93f0186
NC
9057 dynamic_syminfo_offset = offset_from_vma (file, entry->d_un.d_val,
9058 syminsz);
252b5132
RH
9059 }
9060
9061 if (dynamic_syminfo_offset != 0 && syminsz != 0)
9062 {
2cf0635d
NC
9063 Elf_External_Syminfo * extsyminfo;
9064 Elf_External_Syminfo * extsym;
9065 Elf_Internal_Syminfo * syminfo;
252b5132
RH
9066
9067 /* There is a syminfo section. Read the data. */
3f5e193b
NC
9068 extsyminfo = (Elf_External_Syminfo *)
9069 get_data (NULL, file, dynamic_syminfo_offset, 1, syminsz,
9070 _("symbol information"));
a6e9f9df
AM
9071 if (!extsyminfo)
9072 return 0;
252b5132 9073
3f5e193b 9074 dynamic_syminfo = (Elf_Internal_Syminfo *) malloc (syminsz);
252b5132
RH
9075 if (dynamic_syminfo == NULL)
9076 {
8b73c356
NC
9077 error (_("Out of memory allocating %lu byte for dynamic symbol info\n"),
9078 (unsigned long) syminsz);
252b5132
RH
9079 return 0;
9080 }
9081
9082 dynamic_syminfo_nent = syminsz / sizeof (Elf_External_Syminfo);
86dba8ee
AM
9083 for (syminfo = dynamic_syminfo, extsym = extsyminfo;
9084 syminfo < dynamic_syminfo + dynamic_syminfo_nent;
9085 ++syminfo, ++extsym)
252b5132 9086 {
86dba8ee
AM
9087 syminfo->si_boundto = BYTE_GET (extsym->si_boundto);
9088 syminfo->si_flags = BYTE_GET (extsym->si_flags);
252b5132
RH
9089 }
9090
9091 free (extsyminfo);
9092 }
9093 }
9094
9095 if (do_dynamic && dynamic_addr)
8b73c356
NC
9096 printf (_("\nDynamic section at offset 0x%lx contains %lu entries:\n"),
9097 dynamic_addr, (unsigned long) dynamic_nent);
252b5132
RH
9098 if (do_dynamic)
9099 printf (_(" Tag Type Name/Value\n"));
9100
86dba8ee
AM
9101 for (entry = dynamic_section;
9102 entry < dynamic_section + dynamic_nent;
9103 entry++)
252b5132
RH
9104 {
9105 if (do_dynamic)
f7a99963 9106 {
2cf0635d 9107 const char * dtype;
e699b9ff 9108
f7a99963
NC
9109 putchar (' ');
9110 print_vma (entry->d_tag, FULL_HEX);
e699b9ff
ILT
9111 dtype = get_dynamic_type (entry->d_tag);
9112 printf (" (%s)%*s", dtype,
9113 ((is_32bit_elf ? 27 : 19)
9114 - (int) strlen (dtype)),
f7a99963
NC
9115 " ");
9116 }
252b5132
RH
9117
9118 switch (entry->d_tag)
9119 {
d1133906
NC
9120 case DT_FLAGS:
9121 if (do_dynamic)
e9e44622 9122 print_dynamic_flags (entry->d_un.d_val);
d1133906 9123 break;
76da6bbe 9124
252b5132
RH
9125 case DT_AUXILIARY:
9126 case DT_FILTER:
019148e4
L
9127 case DT_CONFIG:
9128 case DT_DEPAUDIT:
9129 case DT_AUDIT:
252b5132
RH
9130 if (do_dynamic)
9131 {
019148e4 9132 switch (entry->d_tag)
b34976b6 9133 {
019148e4
L
9134 case DT_AUXILIARY:
9135 printf (_("Auxiliary library"));
9136 break;
9137
9138 case DT_FILTER:
9139 printf (_("Filter library"));
9140 break;
9141
b34976b6 9142 case DT_CONFIG:
019148e4
L
9143 printf (_("Configuration file"));
9144 break;
9145
9146 case DT_DEPAUDIT:
9147 printf (_("Dependency audit library"));
9148 break;
9149
9150 case DT_AUDIT:
9151 printf (_("Audit library"));
9152 break;
9153 }
252b5132 9154
d79b3d50
NC
9155 if (VALID_DYNAMIC_NAME (entry->d_un.d_val))
9156 printf (": [%s]\n", GET_DYNAMIC_NAME (entry->d_un.d_val));
252b5132 9157 else
f7a99963
NC
9158 {
9159 printf (": ");
9160 print_vma (entry->d_un.d_val, PREFIX_HEX);
9161 putchar ('\n');
9162 }
252b5132
RH
9163 }
9164 break;
9165
dcefbbbd 9166 case DT_FEATURE:
252b5132
RH
9167 if (do_dynamic)
9168 {
9169 printf (_("Flags:"));
86f55779 9170
252b5132
RH
9171 if (entry->d_un.d_val == 0)
9172 printf (_(" None\n"));
9173 else
9174 {
9175 unsigned long int val = entry->d_un.d_val;
86f55779 9176
252b5132
RH
9177 if (val & DTF_1_PARINIT)
9178 {
9179 printf (" PARINIT");
9180 val ^= DTF_1_PARINIT;
9181 }
dcefbbbd
L
9182 if (val & DTF_1_CONFEXP)
9183 {
9184 printf (" CONFEXP");
9185 val ^= DTF_1_CONFEXP;
9186 }
252b5132
RH
9187 if (val != 0)
9188 printf (" %lx", val);
9189 puts ("");
9190 }
9191 }
9192 break;
9193
9194 case DT_POSFLAG_1:
9195 if (do_dynamic)
9196 {
9197 printf (_("Flags:"));
86f55779 9198
252b5132
RH
9199 if (entry->d_un.d_val == 0)
9200 printf (_(" None\n"));
9201 else
9202 {
9203 unsigned long int val = entry->d_un.d_val;
86f55779 9204
252b5132
RH
9205 if (val & DF_P1_LAZYLOAD)
9206 {
9207 printf (" LAZYLOAD");
9208 val ^= DF_P1_LAZYLOAD;
9209 }
9210 if (val & DF_P1_GROUPPERM)
9211 {
9212 printf (" GROUPPERM");
9213 val ^= DF_P1_GROUPPERM;
9214 }
9215 if (val != 0)
9216 printf (" %lx", val);
9217 puts ("");
9218 }
9219 }
9220 break;
9221
9222 case DT_FLAGS_1:
9223 if (do_dynamic)
9224 {
9225 printf (_("Flags:"));
9226 if (entry->d_un.d_val == 0)
9227 printf (_(" None\n"));
9228 else
9229 {
9230 unsigned long int val = entry->d_un.d_val;
86f55779 9231
252b5132
RH
9232 if (val & DF_1_NOW)
9233 {
9234 printf (" NOW");
9235 val ^= DF_1_NOW;
9236 }
9237 if (val & DF_1_GLOBAL)
9238 {
9239 printf (" GLOBAL");
9240 val ^= DF_1_GLOBAL;
9241 }
9242 if (val & DF_1_GROUP)
9243 {
9244 printf (" GROUP");
9245 val ^= DF_1_GROUP;
9246 }
9247 if (val & DF_1_NODELETE)
9248 {
9249 printf (" NODELETE");
9250 val ^= DF_1_NODELETE;
9251 }
9252 if (val & DF_1_LOADFLTR)
9253 {
9254 printf (" LOADFLTR");
9255 val ^= DF_1_LOADFLTR;
9256 }
9257 if (val & DF_1_INITFIRST)
9258 {
9259 printf (" INITFIRST");
9260 val ^= DF_1_INITFIRST;
9261 }
9262 if (val & DF_1_NOOPEN)
9263 {
9264 printf (" NOOPEN");
9265 val ^= DF_1_NOOPEN;
9266 }
9267 if (val & DF_1_ORIGIN)
9268 {
9269 printf (" ORIGIN");
9270 val ^= DF_1_ORIGIN;
9271 }
9272 if (val & DF_1_DIRECT)
9273 {
9274 printf (" DIRECT");
9275 val ^= DF_1_DIRECT;
9276 }
9277 if (val & DF_1_TRANS)
9278 {
9279 printf (" TRANS");
9280 val ^= DF_1_TRANS;
9281 }
9282 if (val & DF_1_INTERPOSE)
9283 {
9284 printf (" INTERPOSE");
9285 val ^= DF_1_INTERPOSE;
9286 }
f7db6139 9287 if (val & DF_1_NODEFLIB)
dcefbbbd 9288 {
f7db6139
L
9289 printf (" NODEFLIB");
9290 val ^= DF_1_NODEFLIB;
dcefbbbd
L
9291 }
9292 if (val & DF_1_NODUMP)
9293 {
9294 printf (" NODUMP");
9295 val ^= DF_1_NODUMP;
9296 }
34b60028 9297 if (val & DF_1_CONFALT)
dcefbbbd 9298 {
34b60028
L
9299 printf (" CONFALT");
9300 val ^= DF_1_CONFALT;
9301 }
9302 if (val & DF_1_ENDFILTEE)
9303 {
9304 printf (" ENDFILTEE");
9305 val ^= DF_1_ENDFILTEE;
9306 }
9307 if (val & DF_1_DISPRELDNE)
9308 {
9309 printf (" DISPRELDNE");
9310 val ^= DF_1_DISPRELDNE;
9311 }
9312 if (val & DF_1_DISPRELPND)
9313 {
9314 printf (" DISPRELPND");
9315 val ^= DF_1_DISPRELPND;
9316 }
9317 if (val & DF_1_NODIRECT)
9318 {
9319 printf (" NODIRECT");
9320 val ^= DF_1_NODIRECT;
9321 }
9322 if (val & DF_1_IGNMULDEF)
9323 {
9324 printf (" IGNMULDEF");
9325 val ^= DF_1_IGNMULDEF;
9326 }
9327 if (val & DF_1_NOKSYMS)
9328 {
9329 printf (" NOKSYMS");
9330 val ^= DF_1_NOKSYMS;
9331 }
9332 if (val & DF_1_NOHDR)
9333 {
9334 printf (" NOHDR");
9335 val ^= DF_1_NOHDR;
9336 }
9337 if (val & DF_1_EDITED)
9338 {
9339 printf (" EDITED");
9340 val ^= DF_1_EDITED;
9341 }
9342 if (val & DF_1_NORELOC)
9343 {
9344 printf (" NORELOC");
9345 val ^= DF_1_NORELOC;
9346 }
9347 if (val & DF_1_SYMINTPOSE)
9348 {
9349 printf (" SYMINTPOSE");
9350 val ^= DF_1_SYMINTPOSE;
9351 }
9352 if (val & DF_1_GLOBAUDIT)
9353 {
9354 printf (" GLOBAUDIT");
9355 val ^= DF_1_GLOBAUDIT;
9356 }
9357 if (val & DF_1_SINGLETON)
9358 {
9359 printf (" SINGLETON");
9360 val ^= DF_1_SINGLETON;
dcefbbbd 9361 }
5c383f02
RO
9362 if (val & DF_1_STUB)
9363 {
9364 printf (" STUB");
9365 val ^= DF_1_STUB;
9366 }
9367 if (val & DF_1_PIE)
9368 {
9369 printf (" PIE");
9370 val ^= DF_1_PIE;
9371 }
252b5132
RH
9372 if (val != 0)
9373 printf (" %lx", val);
9374 puts ("");
9375 }
9376 }
9377 break;
9378
9379 case DT_PLTREL:
566b0d53 9380 dynamic_info[entry->d_tag] = entry->d_un.d_val;
252b5132
RH
9381 if (do_dynamic)
9382 puts (get_dynamic_type (entry->d_un.d_val));
9383 break;
9384
9385 case DT_NULL :
9386 case DT_NEEDED :
9387 case DT_PLTGOT :
9388 case DT_HASH :
9389 case DT_STRTAB :
9390 case DT_SYMTAB :
9391 case DT_RELA :
9392 case DT_INIT :
9393 case DT_FINI :
9394 case DT_SONAME :
9395 case DT_RPATH :
9396 case DT_SYMBOLIC:
9397 case DT_REL :
9398 case DT_DEBUG :
9399 case DT_TEXTREL :
9400 case DT_JMPREL :
019148e4 9401 case DT_RUNPATH :
252b5132
RH
9402 dynamic_info[entry->d_tag] = entry->d_un.d_val;
9403
9404 if (do_dynamic)
9405 {
2cf0635d 9406 char * name;
252b5132 9407
d79b3d50
NC
9408 if (VALID_DYNAMIC_NAME (entry->d_un.d_val))
9409 name = GET_DYNAMIC_NAME (entry->d_un.d_val);
252b5132 9410 else
d79b3d50 9411 name = NULL;
252b5132
RH
9412
9413 if (name)
9414 {
9415 switch (entry->d_tag)
9416 {
9417 case DT_NEEDED:
9418 printf (_("Shared library: [%s]"), name);
9419
18bd398b 9420 if (streq (name, program_interpreter))
f7a99963 9421 printf (_(" program interpreter"));
252b5132
RH
9422 break;
9423
9424 case DT_SONAME:
f7a99963 9425 printf (_("Library soname: [%s]"), name);
252b5132
RH
9426 break;
9427
9428 case DT_RPATH:
f7a99963 9429 printf (_("Library rpath: [%s]"), name);
252b5132
RH
9430 break;
9431
019148e4
L
9432 case DT_RUNPATH:
9433 printf (_("Library runpath: [%s]"), name);
9434 break;
9435
252b5132 9436 default:
f7a99963
NC
9437 print_vma (entry->d_un.d_val, PREFIX_HEX);
9438 break;
252b5132
RH
9439 }
9440 }
9441 else
f7a99963
NC
9442 print_vma (entry->d_un.d_val, PREFIX_HEX);
9443
9444 putchar ('\n');
252b5132
RH
9445 }
9446 break;
9447
9448 case DT_PLTRELSZ:
9449 case DT_RELASZ :
9450 case DT_STRSZ :
9451 case DT_RELSZ :
9452 case DT_RELAENT :
9453 case DT_SYMENT :
9454 case DT_RELENT :
566b0d53 9455 dynamic_info[entry->d_tag] = entry->d_un.d_val;
252b5132
RH
9456 case DT_PLTPADSZ:
9457 case DT_MOVEENT :
9458 case DT_MOVESZ :
9459 case DT_INIT_ARRAYSZ:
9460 case DT_FINI_ARRAYSZ:
047b2264
JJ
9461 case DT_GNU_CONFLICTSZ:
9462 case DT_GNU_LIBLISTSZ:
252b5132 9463 if (do_dynamic)
f7a99963
NC
9464 {
9465 print_vma (entry->d_un.d_val, UNSIGNED);
2b692964 9466 printf (_(" (bytes)\n"));
f7a99963 9467 }
252b5132
RH
9468 break;
9469
9470 case DT_VERDEFNUM:
9471 case DT_VERNEEDNUM:
9472 case DT_RELACOUNT:
9473 case DT_RELCOUNT:
9474 if (do_dynamic)
f7a99963
NC
9475 {
9476 print_vma (entry->d_un.d_val, UNSIGNED);
9477 putchar ('\n');
9478 }
252b5132
RH
9479 break;
9480
9481 case DT_SYMINSZ:
9482 case DT_SYMINENT:
9483 case DT_SYMINFO:
9484 case DT_USED:
9485 case DT_INIT_ARRAY:
9486 case DT_FINI_ARRAY:
9487 if (do_dynamic)
9488 {
d79b3d50
NC
9489 if (entry->d_tag == DT_USED
9490 && VALID_DYNAMIC_NAME (entry->d_un.d_val))
252b5132 9491 {
2cf0635d 9492 char * name = GET_DYNAMIC_NAME (entry->d_un.d_val);
252b5132 9493
b34976b6 9494 if (*name)
252b5132
RH
9495 {
9496 printf (_("Not needed object: [%s]\n"), name);
9497 break;
9498 }
9499 }
103f02d3 9500
f7a99963
NC
9501 print_vma (entry->d_un.d_val, PREFIX_HEX);
9502 putchar ('\n');
252b5132
RH
9503 }
9504 break;
9505
9506 case DT_BIND_NOW:
9507 /* The value of this entry is ignored. */
35b1837e
AM
9508 if (do_dynamic)
9509 putchar ('\n');
252b5132 9510 break;
103f02d3 9511
047b2264
JJ
9512 case DT_GNU_PRELINKED:
9513 if (do_dynamic)
9514 {
2cf0635d 9515 struct tm * tmp;
91d6fa6a 9516 time_t atime = entry->d_un.d_val;
047b2264 9517
91d6fa6a 9518 tmp = gmtime (&atime);
071436c6
NC
9519 /* PR 17533 file: 041-1244816-0.004. */
9520 if (tmp == NULL)
5a2cbcf4
L
9521 printf (_("<corrupt time val: %lx"),
9522 (unsigned long) atime);
071436c6
NC
9523 else
9524 printf ("%04u-%02u-%02uT%02u:%02u:%02u\n",
9525 tmp->tm_year + 1900, tmp->tm_mon + 1, tmp->tm_mday,
9526 tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
047b2264
JJ
9527
9528 }
9529 break;
9530
fdc90cb4
JJ
9531 case DT_GNU_HASH:
9532 dynamic_info_DT_GNU_HASH = entry->d_un.d_val;
9533 if (do_dynamic)
9534 {
9535 print_vma (entry->d_un.d_val, PREFIX_HEX);
9536 putchar ('\n');
9537 }
9538 break;
9539
252b5132
RH
9540 default:
9541 if ((entry->d_tag >= DT_VERSYM) && (entry->d_tag <= DT_VERNEEDNUM))
b34976b6 9542 version_info[DT_VERSIONTAGIDX (entry->d_tag)] =
252b5132
RH
9543 entry->d_un.d_val;
9544
9545 if (do_dynamic)
9546 {
9547 switch (elf_header.e_machine)
9548 {
9549 case EM_MIPS:
4fe85591 9550 case EM_MIPS_RS3_LE:
b2d38a17 9551 dynamic_section_mips_val (entry);
252b5132 9552 break;
103f02d3 9553 case EM_PARISC:
b2d38a17 9554 dynamic_section_parisc_val (entry);
103f02d3 9555 break;
ecc51f48 9556 case EM_IA_64:
b2d38a17 9557 dynamic_section_ia64_val (entry);
ecc51f48 9558 break;
252b5132 9559 default:
f7a99963
NC
9560 print_vma (entry->d_un.d_val, PREFIX_HEX);
9561 putchar ('\n');
252b5132
RH
9562 }
9563 }
9564 break;
9565 }
9566 }
9567
9568 return 1;
9569}
9570
9571static char *
d3ba0551 9572get_ver_flags (unsigned int flags)
252b5132 9573{
b34976b6 9574 static char buff[32];
252b5132
RH
9575
9576 buff[0] = 0;
9577
9578 if (flags == 0)
9579 return _("none");
9580
9581 if (flags & VER_FLG_BASE)
9582 strcat (buff, "BASE ");
9583
9584 if (flags & VER_FLG_WEAK)
9585 {
9586 if (flags & VER_FLG_BASE)
9587 strcat (buff, "| ");
9588
9589 strcat (buff, "WEAK ");
9590 }
9591
44ec90b9
RO
9592 if (flags & VER_FLG_INFO)
9593 {
9594 if (flags & (VER_FLG_BASE|VER_FLG_WEAK))
9595 strcat (buff, "| ");
9596
9597 strcat (buff, "INFO ");
9598 }
9599
9600 if (flags & ~(VER_FLG_BASE | VER_FLG_WEAK | VER_FLG_INFO))
2b692964 9601 strcat (buff, _("| <unknown>"));
252b5132
RH
9602
9603 return buff;
9604}
9605
9606/* Display the contents of the version sections. */
98fb390a 9607
252b5132 9608static int
2cf0635d 9609process_version_sections (FILE * file)
252b5132 9610{
2cf0635d 9611 Elf_Internal_Shdr * section;
b34976b6
AM
9612 unsigned i;
9613 int found = 0;
252b5132
RH
9614
9615 if (! do_version)
9616 return 1;
9617
9618 for (i = 0, section = section_headers;
9619 i < elf_header.e_shnum;
b34976b6 9620 i++, section++)
252b5132
RH
9621 {
9622 switch (section->sh_type)
9623 {
9624 case SHT_GNU_verdef:
9625 {
2cf0635d 9626 Elf_External_Verdef * edefs;
b34976b6
AM
9627 unsigned int idx;
9628 unsigned int cnt;
2cf0635d 9629 char * endbuf;
252b5132
RH
9630
9631 found = 1;
9632
74e1a04b
NC
9633 printf (_("\nVersion definition section '%s' contains %u entries:\n"),
9634 printable_section_name (section),
9635 section->sh_info);
252b5132
RH
9636
9637 printf (_(" Addr: 0x"));
9638 printf_vma (section->sh_addr);
74e1a04b 9639 printf (_(" Offset: %#08lx Link: %u (%s)"),
1b228002 9640 (unsigned long) section->sh_offset, section->sh_link,
74e1a04b 9641 printable_section_name_from_index (section->sh_link));
252b5132 9642
3f5e193b
NC
9643 edefs = (Elf_External_Verdef *)
9644 get_data (NULL, file, section->sh_offset, 1,section->sh_size,
9645 _("version definition section"));
a6e9f9df
AM
9646 if (!edefs)
9647 break;
59245841 9648 endbuf = (char *) edefs + section->sh_size;
252b5132 9649
b34976b6 9650 for (idx = cnt = 0; cnt < section->sh_info; ++cnt)
252b5132 9651 {
2cf0635d
NC
9652 char * vstart;
9653 Elf_External_Verdef * edef;
b34976b6 9654 Elf_Internal_Verdef ent;
2cf0635d 9655 Elf_External_Verdaux * eaux;
b34976b6
AM
9656 Elf_Internal_Verdaux aux;
9657 int j;
9658 int isum;
103f02d3 9659
7e26601c
NC
9660 /* Check for very large indicies. */
9661 if (idx > (size_t) (endbuf - (char *) edefs))
dd24e3da
NC
9662 break;
9663
252b5132 9664 vstart = ((char *) edefs) + idx;
54806181
AM
9665 if (vstart + sizeof (*edef) > endbuf)
9666 break;
252b5132
RH
9667
9668 edef = (Elf_External_Verdef *) vstart;
9669
9670 ent.vd_version = BYTE_GET (edef->vd_version);
9671 ent.vd_flags = BYTE_GET (edef->vd_flags);
9672 ent.vd_ndx = BYTE_GET (edef->vd_ndx);
9673 ent.vd_cnt = BYTE_GET (edef->vd_cnt);
9674 ent.vd_hash = BYTE_GET (edef->vd_hash);
9675 ent.vd_aux = BYTE_GET (edef->vd_aux);
9676 ent.vd_next = BYTE_GET (edef->vd_next);
9677
9678 printf (_(" %#06x: Rev: %d Flags: %s"),
9679 idx, ent.vd_version, get_ver_flags (ent.vd_flags));
9680
9681 printf (_(" Index: %d Cnt: %d "),
9682 ent.vd_ndx, ent.vd_cnt);
9683
dd24e3da 9684 /* Check for overflow. */
7e26601c 9685 if (ent.vd_aux > (size_t) (endbuf - vstart))
dd24e3da
NC
9686 break;
9687
252b5132
RH
9688 vstart += ent.vd_aux;
9689
9690 eaux = (Elf_External_Verdaux *) vstart;
9691
9692 aux.vda_name = BYTE_GET (eaux->vda_name);
9693 aux.vda_next = BYTE_GET (eaux->vda_next);
9694
d79b3d50
NC
9695 if (VALID_DYNAMIC_NAME (aux.vda_name))
9696 printf (_("Name: %s\n"), GET_DYNAMIC_NAME (aux.vda_name));
252b5132
RH
9697 else
9698 printf (_("Name index: %ld\n"), aux.vda_name);
9699
9700 isum = idx + ent.vd_aux;
9701
b34976b6 9702 for (j = 1; j < ent.vd_cnt; j++)
252b5132 9703 {
dd24e3da 9704 /* Check for overflow. */
7e26601c 9705 if (aux.vda_next > (size_t) (endbuf - vstart))
dd24e3da
NC
9706 break;
9707
252b5132
RH
9708 isum += aux.vda_next;
9709 vstart += aux.vda_next;
9710
9711 eaux = (Elf_External_Verdaux *) vstart;
54806181
AM
9712 if (vstart + sizeof (*eaux) > endbuf)
9713 break;
252b5132
RH
9714
9715 aux.vda_name = BYTE_GET (eaux->vda_name);
9716 aux.vda_next = BYTE_GET (eaux->vda_next);
9717
d79b3d50 9718 if (VALID_DYNAMIC_NAME (aux.vda_name))
252b5132 9719 printf (_(" %#06x: Parent %d: %s\n"),
d79b3d50 9720 isum, j, GET_DYNAMIC_NAME (aux.vda_name));
252b5132
RH
9721 else
9722 printf (_(" %#06x: Parent %d, name index: %ld\n"),
9723 isum, j, aux.vda_name);
9724 }
dd24e3da 9725
54806181
AM
9726 if (j < ent.vd_cnt)
9727 printf (_(" Version def aux past end of section\n"));
252b5132 9728
5d921cbd
NC
9729 /* PR 17531: file: id:000001,src:000172+005151,op:splice,rep:2. */
9730 if (idx + ent.vd_next <= idx)
9731 break;
9732
252b5132
RH
9733 idx += ent.vd_next;
9734 }
dd24e3da 9735
54806181
AM
9736 if (cnt < section->sh_info)
9737 printf (_(" Version definition past end of section\n"));
252b5132
RH
9738
9739 free (edefs);
9740 }
9741 break;
103f02d3 9742
252b5132
RH
9743 case SHT_GNU_verneed:
9744 {
2cf0635d 9745 Elf_External_Verneed * eneed;
b34976b6
AM
9746 unsigned int idx;
9747 unsigned int cnt;
2cf0635d 9748 char * endbuf;
252b5132
RH
9749
9750 found = 1;
9751
72de5009 9752 printf (_("\nVersion needs section '%s' contains %u entries:\n"),
74e1a04b 9753 printable_section_name (section), section->sh_info);
252b5132
RH
9754
9755 printf (_(" Addr: 0x"));
9756 printf_vma (section->sh_addr);
72de5009 9757 printf (_(" Offset: %#08lx Link: %u (%s)\n"),
1b228002 9758 (unsigned long) section->sh_offset, section->sh_link,
74e1a04b 9759 printable_section_name_from_index (section->sh_link));
252b5132 9760
3f5e193b
NC
9761 eneed = (Elf_External_Verneed *) get_data (NULL, file,
9762 section->sh_offset, 1,
9763 section->sh_size,
9cf03b7e 9764 _("Version Needs section"));
a6e9f9df
AM
9765 if (!eneed)
9766 break;
59245841 9767 endbuf = (char *) eneed + section->sh_size;
252b5132
RH
9768
9769 for (idx = cnt = 0; cnt < section->sh_info; ++cnt)
9770 {
2cf0635d 9771 Elf_External_Verneed * entry;
b34976b6
AM
9772 Elf_Internal_Verneed ent;
9773 int j;
9774 int isum;
2cf0635d 9775 char * vstart;
252b5132 9776
7e26601c 9777 if (idx > (size_t) (endbuf - (char *) eneed))
dd24e3da
NC
9778 break;
9779
252b5132 9780 vstart = ((char *) eneed) + idx;
54806181
AM
9781 if (vstart + sizeof (*entry) > endbuf)
9782 break;
252b5132
RH
9783
9784 entry = (Elf_External_Verneed *) vstart;
9785
9786 ent.vn_version = BYTE_GET (entry->vn_version);
9787 ent.vn_cnt = BYTE_GET (entry->vn_cnt);
9788 ent.vn_file = BYTE_GET (entry->vn_file);
9789 ent.vn_aux = BYTE_GET (entry->vn_aux);
9790 ent.vn_next = BYTE_GET (entry->vn_next);
9791
9792 printf (_(" %#06x: Version: %d"), idx, ent.vn_version);
9793
d79b3d50
NC
9794 if (VALID_DYNAMIC_NAME (ent.vn_file))
9795 printf (_(" File: %s"), GET_DYNAMIC_NAME (ent.vn_file));
252b5132
RH
9796 else
9797 printf (_(" File: %lx"), ent.vn_file);
9798
9799 printf (_(" Cnt: %d\n"), ent.vn_cnt);
9800
dd24e3da 9801 /* Check for overflow. */
7e26601c 9802 if (ent.vn_aux > (size_t) (endbuf - vstart))
dd24e3da 9803 break;
252b5132
RH
9804 vstart += ent.vn_aux;
9805
9806 for (j = 0, isum = idx + ent.vn_aux; j < ent.vn_cnt; ++j)
9807 {
2cf0635d 9808 Elf_External_Vernaux * eaux;
b34976b6 9809 Elf_Internal_Vernaux aux;
252b5132 9810
54806181
AM
9811 if (vstart + sizeof (*eaux) > endbuf)
9812 break;
252b5132
RH
9813 eaux = (Elf_External_Vernaux *) vstart;
9814
9815 aux.vna_hash = BYTE_GET (eaux->vna_hash);
9816 aux.vna_flags = BYTE_GET (eaux->vna_flags);
9817 aux.vna_other = BYTE_GET (eaux->vna_other);
9818 aux.vna_name = BYTE_GET (eaux->vna_name);
9819 aux.vna_next = BYTE_GET (eaux->vna_next);
9820
d79b3d50 9821 if (VALID_DYNAMIC_NAME (aux.vna_name))
ecc2063b 9822 printf (_(" %#06x: Name: %s"),
d79b3d50 9823 isum, GET_DYNAMIC_NAME (aux.vna_name));
252b5132 9824 else
ecc2063b 9825 printf (_(" %#06x: Name index: %lx"),
252b5132
RH
9826 isum, aux.vna_name);
9827
9828 printf (_(" Flags: %s Version: %d\n"),
9829 get_ver_flags (aux.vna_flags), aux.vna_other);
9830
dd24e3da 9831 /* Check for overflow. */
53774b7e
NC
9832 if (aux.vna_next > (size_t) (endbuf - vstart)
9833 || (aux.vna_next == 0 && j < ent.vn_cnt - 1))
9834 {
9835 warn (_("Invalid vna_next field of %lx\n"),
9836 aux.vna_next);
9837 j = ent.vn_cnt;
9838 break;
9839 }
252b5132
RH
9840 isum += aux.vna_next;
9841 vstart += aux.vna_next;
9842 }
9cf03b7e 9843
54806181 9844 if (j < ent.vn_cnt)
9cf03b7e 9845 warn (_("Missing Version Needs auxillary information\n"));
252b5132 9846
bcf83b2a 9847 if (ent.vn_next == 0 && cnt < section->sh_info - 1)
c24cf8b6
NC
9848 {
9849 warn (_("Corrupt Version Needs structure - offset to next structure is zero with entries still left to be processed\n"));
9850 cnt = section->sh_info;
9851 break;
9852 }
252b5132
RH
9853 idx += ent.vn_next;
9854 }
9cf03b7e 9855
54806181 9856 if (cnt < section->sh_info)
9cf03b7e 9857 warn (_("Missing Version Needs information\n"));
103f02d3 9858
252b5132
RH
9859 free (eneed);
9860 }
9861 break;
9862
9863 case SHT_GNU_versym:
9864 {
2cf0635d 9865 Elf_Internal_Shdr * link_section;
8b73c356
NC
9866 size_t total;
9867 unsigned int cnt;
2cf0635d
NC
9868 unsigned char * edata;
9869 unsigned short * data;
9870 char * strtab;
9871 Elf_Internal_Sym * symbols;
9872 Elf_Internal_Shdr * string_sec;
ba5cdace 9873 unsigned long num_syms;
d3ba0551 9874 long off;
252b5132 9875
4fbb74a6 9876 if (section->sh_link >= elf_header.e_shnum)
c256ffe7
JJ
9877 break;
9878
4fbb74a6 9879 link_section = section_headers + section->sh_link;
08d8fa11 9880 total = section->sh_size / sizeof (Elf_External_Versym);
252b5132 9881
4fbb74a6 9882 if (link_section->sh_link >= elf_header.e_shnum)
c256ffe7
JJ
9883 break;
9884
252b5132
RH
9885 found = 1;
9886
ba5cdace 9887 symbols = GET_ELF_SYMBOLS (file, link_section, & num_syms);
dd24e3da
NC
9888 if (symbols == NULL)
9889 break;
252b5132 9890
4fbb74a6 9891 string_sec = section_headers + link_section->sh_link;
252b5132 9892
3f5e193b
NC
9893 strtab = (char *) get_data (NULL, file, string_sec->sh_offset, 1,
9894 string_sec->sh_size,
9895 _("version string table"));
a6e9f9df 9896 if (!strtab)
0429c154
MS
9897 {
9898 free (symbols);
9899 break;
9900 }
252b5132 9901
8b73c356
NC
9902 printf (_("\nVersion symbols section '%s' contains %lu entries:\n"),
9903 printable_section_name (section), (unsigned long) total);
252b5132
RH
9904
9905 printf (_(" Addr: "));
9906 printf_vma (section->sh_addr);
72de5009 9907 printf (_(" Offset: %#08lx Link: %u (%s)\n"),
1b228002 9908 (unsigned long) section->sh_offset, section->sh_link,
74e1a04b 9909 printable_section_name (link_section));
252b5132 9910
d3ba0551
AM
9911 off = offset_from_vma (file,
9912 version_info[DT_VERSIONTAGIDX (DT_VERSYM)],
9913 total * sizeof (short));
3f5e193b
NC
9914 edata = (unsigned char *) get_data (NULL, file, off, total,
9915 sizeof (short),
9916 _("version symbol data"));
a6e9f9df
AM
9917 if (!edata)
9918 {
9919 free (strtab);
0429c154 9920 free (symbols);
a6e9f9df
AM
9921 break;
9922 }
252b5132 9923
3f5e193b 9924 data = (short unsigned int *) cmalloc (total, sizeof (short));
252b5132
RH
9925
9926 for (cnt = total; cnt --;)
b34976b6
AM
9927 data[cnt] = byte_get (edata + cnt * sizeof (short),
9928 sizeof (short));
252b5132
RH
9929
9930 free (edata);
9931
9932 for (cnt = 0; cnt < total; cnt += 4)
9933 {
9934 int j, nn;
ab273396
AM
9935 char *name;
9936 char *invalid = _("*invalid*");
252b5132
RH
9937
9938 printf (" %03x:", cnt);
9939
9940 for (j = 0; (j < 4) && (cnt + j) < total; ++j)
b34976b6 9941 switch (data[cnt + j])
252b5132
RH
9942 {
9943 case 0:
9944 fputs (_(" 0 (*local*) "), stdout);
9945 break;
9946
9947 case 1:
9948 fputs (_(" 1 (*global*) "), stdout);
9949 break;
9950
9951 default:
c244d050
NC
9952 nn = printf ("%4x%c", data[cnt + j] & VERSYM_VERSION,
9953 data[cnt + j] & VERSYM_HIDDEN ? 'h' : ' ');
252b5132 9954
dd24e3da 9955 /* If this index value is greater than the size of the symbols
ba5cdace
NC
9956 array, break to avoid an out-of-bounds read. */
9957 if ((unsigned long)(cnt + j) >= num_syms)
dd24e3da
NC
9958 {
9959 warn (_("invalid index into symbol array\n"));
9960 break;
9961 }
9962
ab273396
AM
9963 name = NULL;
9964 if (version_info[DT_VERSIONTAGIDX (DT_VERNEED)])
252b5132 9965 {
b34976b6
AM
9966 Elf_Internal_Verneed ivn;
9967 unsigned long offset;
252b5132 9968
d93f0186
NC
9969 offset = offset_from_vma
9970 (file, version_info[DT_VERSIONTAGIDX (DT_VERNEED)],
9971 sizeof (Elf_External_Verneed));
252b5132 9972
b34976b6 9973 do
252b5132 9974 {
b34976b6
AM
9975 Elf_Internal_Vernaux ivna;
9976 Elf_External_Verneed evn;
9977 Elf_External_Vernaux evna;
9978 unsigned long a_off;
252b5132 9979
59245841
NC
9980 if (get_data (&evn, file, offset, sizeof (evn), 1,
9981 _("version need")) == NULL)
9982 break;
0b4362b0 9983
252b5132
RH
9984 ivn.vn_aux = BYTE_GET (evn.vn_aux);
9985 ivn.vn_next = BYTE_GET (evn.vn_next);
9986
9987 a_off = offset + ivn.vn_aux;
9988
9989 do
9990 {
59245841
NC
9991 if (get_data (&evna, file, a_off, sizeof (evna),
9992 1, _("version need aux (2)")) == NULL)
9993 {
9994 ivna.vna_next = 0;
9995 ivna.vna_other = 0;
9996 }
9997 else
9998 {
9999 ivna.vna_next = BYTE_GET (evna.vna_next);
10000 ivna.vna_other = BYTE_GET (evna.vna_other);
10001 }
252b5132
RH
10002
10003 a_off += ivna.vna_next;
10004 }
b34976b6 10005 while (ivna.vna_other != data[cnt + j]
252b5132
RH
10006 && ivna.vna_next != 0);
10007
b34976b6 10008 if (ivna.vna_other == data[cnt + j])
252b5132
RH
10009 {
10010 ivna.vna_name = BYTE_GET (evna.vna_name);
10011
54806181 10012 if (ivna.vna_name >= string_sec->sh_size)
ab273396 10013 name = invalid;
54806181
AM
10014 else
10015 name = strtab + ivna.vna_name;
252b5132
RH
10016 break;
10017 }
10018
10019 offset += ivn.vn_next;
10020 }
10021 while (ivn.vn_next);
10022 }
00d93f34 10023
ab273396 10024 if (data[cnt + j] != 0x8001
b34976b6 10025 && version_info[DT_VERSIONTAGIDX (DT_VERDEF)])
252b5132 10026 {
b34976b6
AM
10027 Elf_Internal_Verdef ivd;
10028 Elf_External_Verdef evd;
10029 unsigned long offset;
252b5132 10030
d93f0186
NC
10031 offset = offset_from_vma
10032 (file, version_info[DT_VERSIONTAGIDX (DT_VERDEF)],
10033 sizeof evd);
252b5132
RH
10034
10035 do
10036 {
59245841
NC
10037 if (get_data (&evd, file, offset, sizeof (evd), 1,
10038 _("version def")) == NULL)
10039 {
10040 ivd.vd_next = 0;
948f632f 10041 /* PR 17531: file: 046-1082287-0.004. */
3102e897
NC
10042 ivd.vd_ndx = (data[cnt + j] & VERSYM_VERSION) + 1;
10043 break;
59245841
NC
10044 }
10045 else
10046 {
10047 ivd.vd_next = BYTE_GET (evd.vd_next);
10048 ivd.vd_ndx = BYTE_GET (evd.vd_ndx);
10049 }
252b5132
RH
10050
10051 offset += ivd.vd_next;
10052 }
c244d050 10053 while (ivd.vd_ndx != (data[cnt + j] & VERSYM_VERSION)
252b5132
RH
10054 && ivd.vd_next != 0);
10055
c244d050 10056 if (ivd.vd_ndx == (data[cnt + j] & VERSYM_VERSION))
252b5132 10057 {
b34976b6
AM
10058 Elf_External_Verdaux evda;
10059 Elf_Internal_Verdaux ivda;
252b5132
RH
10060
10061 ivd.vd_aux = BYTE_GET (evd.vd_aux);
10062
59245841
NC
10063 if (get_data (&evda, file,
10064 offset - ivd.vd_next + ivd.vd_aux,
10065 sizeof (evda), 1,
10066 _("version def aux")) == NULL)
10067 break;
252b5132
RH
10068
10069 ivda.vda_name = BYTE_GET (evda.vda_name);
10070
54806181 10071 if (ivda.vda_name >= string_sec->sh_size)
ab273396
AM
10072 name = invalid;
10073 else if (name != NULL && name != invalid)
10074 name = _("*both*");
54806181
AM
10075 else
10076 name = strtab + ivda.vda_name;
252b5132
RH
10077 }
10078 }
ab273396
AM
10079 if (name != NULL)
10080 nn += printf ("(%s%-*s",
10081 name,
10082 12 - (int) strlen (name),
10083 ")");
252b5132
RH
10084
10085 if (nn < 18)
10086 printf ("%*c", 18 - nn, ' ');
10087 }
10088
10089 putchar ('\n');
10090 }
10091
10092 free (data);
10093 free (strtab);
10094 free (symbols);
10095 }
10096 break;
103f02d3 10097
252b5132
RH
10098 default:
10099 break;
10100 }
10101 }
10102
10103 if (! found)
10104 printf (_("\nNo version information found in this file.\n"));
10105
10106 return 1;
10107}
10108
d1133906 10109static const char *
d3ba0551 10110get_symbol_binding (unsigned int binding)
252b5132 10111{
b34976b6 10112 static char buff[32];
252b5132
RH
10113
10114 switch (binding)
10115 {
b34976b6
AM
10116 case STB_LOCAL: return "LOCAL";
10117 case STB_GLOBAL: return "GLOBAL";
10118 case STB_WEAK: return "WEAK";
252b5132
RH
10119 default:
10120 if (binding >= STB_LOPROC && binding <= STB_HIPROC)
e9e44622
JJ
10121 snprintf (buff, sizeof (buff), _("<processor specific>: %d"),
10122 binding);
252b5132 10123 else if (binding >= STB_LOOS && binding <= STB_HIOS)
3e7a7d11
NC
10124 {
10125 if (binding == STB_GNU_UNIQUE
9c55345c
TS
10126 && (elf_header.e_ident[EI_OSABI] == ELFOSABI_GNU
10127 /* GNU is still using the default value 0. */
3e7a7d11
NC
10128 || elf_header.e_ident[EI_OSABI] == ELFOSABI_NONE))
10129 return "UNIQUE";
10130 snprintf (buff, sizeof (buff), _("<OS specific>: %d"), binding);
10131 }
252b5132 10132 else
e9e44622 10133 snprintf (buff, sizeof (buff), _("<unknown>: %d"), binding);
252b5132
RH
10134 return buff;
10135 }
10136}
10137
d1133906 10138static const char *
d3ba0551 10139get_symbol_type (unsigned int type)
252b5132 10140{
b34976b6 10141 static char buff[32];
252b5132
RH
10142
10143 switch (type)
10144 {
b34976b6
AM
10145 case STT_NOTYPE: return "NOTYPE";
10146 case STT_OBJECT: return "OBJECT";
10147 case STT_FUNC: return "FUNC";
10148 case STT_SECTION: return "SECTION";
10149 case STT_FILE: return "FILE";
10150 case STT_COMMON: return "COMMON";
10151 case STT_TLS: return "TLS";
15ab5209
DB
10152 case STT_RELC: return "RELC";
10153 case STT_SRELC: return "SRELC";
252b5132
RH
10154 default:
10155 if (type >= STT_LOPROC && type <= STT_HIPROC)
df75f1af 10156 {
3510a7b8
NC
10157 if (elf_header.e_machine == EM_ARM && type == STT_ARM_TFUNC)
10158 return "THUMB_FUNC";
103f02d3 10159
351b4b40 10160 if (elf_header.e_machine == EM_SPARCV9 && type == STT_REGISTER)
103f02d3
UD
10161 return "REGISTER";
10162
10163 if (elf_header.e_machine == EM_PARISC && type == STT_PARISC_MILLI)
10164 return "PARISC_MILLI";
10165
e9e44622 10166 snprintf (buff, sizeof (buff), _("<processor specific>: %d"), type);
df75f1af 10167 }
252b5132 10168 else if (type >= STT_LOOS && type <= STT_HIOS)
103f02d3
UD
10169 {
10170 if (elf_header.e_machine == EM_PARISC)
10171 {
10172 if (type == STT_HP_OPAQUE)
10173 return "HP_OPAQUE";
10174 if (type == STT_HP_STUB)
10175 return "HP_STUB";
10176 }
10177
d8045f23 10178 if (type == STT_GNU_IFUNC
9c55345c 10179 && (elf_header.e_ident[EI_OSABI] == ELFOSABI_GNU
83c257ca 10180 || elf_header.e_ident[EI_OSABI] == ELFOSABI_FREEBSD
9c55345c 10181 /* GNU is still using the default value 0. */
d8045f23
NC
10182 || elf_header.e_ident[EI_OSABI] == ELFOSABI_NONE))
10183 return "IFUNC";
10184
e9e44622 10185 snprintf (buff, sizeof (buff), _("<OS specific>: %d"), type);
103f02d3 10186 }
252b5132 10187 else
e9e44622 10188 snprintf (buff, sizeof (buff), _("<unknown>: %d"), type);
252b5132
RH
10189 return buff;
10190 }
10191}
10192
d1133906 10193static const char *
d3ba0551 10194get_symbol_visibility (unsigned int visibility)
d1133906
NC
10195{
10196 switch (visibility)
10197 {
b34976b6
AM
10198 case STV_DEFAULT: return "DEFAULT";
10199 case STV_INTERNAL: return "INTERNAL";
10200 case STV_HIDDEN: return "HIDDEN";
d1133906 10201 case STV_PROTECTED: return "PROTECTED";
bee0ee85
NC
10202 default:
10203 error (_("Unrecognized visibility value: %u"), visibility);
10204 return _("<unknown>");
d1133906
NC
10205 }
10206}
10207
5e2b0d47
NC
10208static const char *
10209get_mips_symbol_other (unsigned int other)
10210{
10211 switch (other)
10212 {
df58fc94
RS
10213 case STO_OPTIONAL:
10214 return "OPTIONAL";
10215 case STO_MIPS_PLT:
10216 return "MIPS PLT";
10217 case STO_MIPS_PIC:
10218 return "MIPS PIC";
10219 case STO_MICROMIPS:
10220 return "MICROMIPS";
10221 case STO_MICROMIPS | STO_MIPS_PIC:
10222 return "MICROMIPS, MIPS PIC";
10223 case STO_MIPS16:
10224 return "MIPS16";
10225 default:
10226 return NULL;
5e2b0d47
NC
10227 }
10228}
10229
28f997cf
TG
10230static const char *
10231get_ia64_symbol_other (unsigned int other)
10232{
10233 if (is_ia64_vms ())
10234 {
10235 static char res[32];
10236
10237 res[0] = 0;
10238
10239 /* Function types is for images and .STB files only. */
10240 switch (elf_header.e_type)
10241 {
10242 case ET_DYN:
10243 case ET_EXEC:
10244 switch (VMS_ST_FUNC_TYPE (other))
10245 {
10246 case VMS_SFT_CODE_ADDR:
10247 strcat (res, " CA");
10248 break;
10249 case VMS_SFT_SYMV_IDX:
10250 strcat (res, " VEC");
10251 break;
10252 case VMS_SFT_FD:
10253 strcat (res, " FD");
10254 break;
10255 case VMS_SFT_RESERVE:
10256 strcat (res, " RSV");
10257 break;
10258 default:
bee0ee85
NC
10259 warn (_("Unrecognized IA64 VMS ST Function type: %d\n"),
10260 VMS_ST_FUNC_TYPE (other));
10261 strcat (res, " <unknown>");
10262 break;
28f997cf
TG
10263 }
10264 break;
10265 default:
10266 break;
10267 }
10268 switch (VMS_ST_LINKAGE (other))
10269 {
10270 case VMS_STL_IGNORE:
10271 strcat (res, " IGN");
10272 break;
10273 case VMS_STL_RESERVE:
10274 strcat (res, " RSV");
10275 break;
10276 case VMS_STL_STD:
10277 strcat (res, " STD");
10278 break;
10279 case VMS_STL_LNK:
10280 strcat (res, " LNK");
10281 break;
10282 default:
bee0ee85
NC
10283 warn (_("Unrecognized IA64 VMS ST Linkage: %d\n"),
10284 VMS_ST_LINKAGE (other));
10285 strcat (res, " <unknown>");
10286 break;
28f997cf
TG
10287 }
10288
10289 if (res[0] != 0)
10290 return res + 1;
10291 else
10292 return res;
10293 }
10294 return NULL;
10295}
10296
6911b7dc
AM
10297static const char *
10298get_ppc64_symbol_other (unsigned int other)
10299{
10300 if (PPC64_LOCAL_ENTRY_OFFSET (other) != 0)
10301 {
10302 static char buf[32];
10303 snprintf (buf, sizeof buf, _("<localentry>: %d"),
10304 PPC64_LOCAL_ENTRY_OFFSET (other));
10305 return buf;
10306 }
10307 return NULL;
10308}
10309
5e2b0d47
NC
10310static const char *
10311get_symbol_other (unsigned int other)
10312{
10313 const char * result = NULL;
10314 static char buff [32];
10315
10316 if (other == 0)
10317 return "";
10318
10319 switch (elf_header.e_machine)
10320 {
10321 case EM_MIPS:
10322 result = get_mips_symbol_other (other);
28f997cf
TG
10323 break;
10324 case EM_IA_64:
10325 result = get_ia64_symbol_other (other);
10326 break;
6911b7dc
AM
10327 case EM_PPC64:
10328 result = get_ppc64_symbol_other (other);
10329 break;
5e2b0d47
NC
10330 default:
10331 break;
10332 }
10333
10334 if (result)
10335 return result;
10336
10337 snprintf (buff, sizeof buff, _("<other>: %x"), other);
10338 return buff;
10339}
10340
d1133906 10341static const char *
d3ba0551 10342get_symbol_index_type (unsigned int type)
252b5132 10343{
b34976b6 10344 static char buff[32];
5cf1065c 10345
252b5132
RH
10346 switch (type)
10347 {
b34976b6
AM
10348 case SHN_UNDEF: return "UND";
10349 case SHN_ABS: return "ABS";
10350 case SHN_COMMON: return "COM";
252b5132 10351 default:
9ce701e2
L
10352 if (type == SHN_IA_64_ANSI_COMMON
10353 && elf_header.e_machine == EM_IA_64
10354 && elf_header.e_ident[EI_OSABI] == ELFOSABI_HPUX)
10355 return "ANSI_COM";
8a9036a4 10356 else if ((elf_header.e_machine == EM_X86_64
7a9068fe
L
10357 || elf_header.e_machine == EM_L1OM
10358 || elf_header.e_machine == EM_K1OM)
3b22753a
L
10359 && type == SHN_X86_64_LCOMMON)
10360 return "LARGE_COM";
ac145307
BS
10361 else if ((type == SHN_MIPS_SCOMMON
10362 && elf_header.e_machine == EM_MIPS)
10363 || (type == SHN_TIC6X_SCOMMON
10364 && elf_header.e_machine == EM_TI_C6000))
172553c7
TS
10365 return "SCOM";
10366 else if (type == SHN_MIPS_SUNDEFINED
10367 && elf_header.e_machine == EM_MIPS)
10368 return "SUND";
9ce701e2 10369 else if (type >= SHN_LOPROC && type <= SHN_HIPROC)
4fbb74a6 10370 sprintf (buff, "PRC[0x%04x]", type & 0xffff);
252b5132 10371 else if (type >= SHN_LOOS && type <= SHN_HIOS)
4fbb74a6
AM
10372 sprintf (buff, "OS [0x%04x]", type & 0xffff);
10373 else if (type >= SHN_LORESERVE)
10374 sprintf (buff, "RSV[0x%04x]", type & 0xffff);
c6d8cab4 10375 else if (type >= elf_header.e_shnum)
e0a31db1 10376 sprintf (buff, _("bad section index[%3d]"), type);
252b5132 10377 else
232e7cb8 10378 sprintf (buff, "%3d", type);
5cf1065c 10379 break;
252b5132 10380 }
5cf1065c
NC
10381
10382 return buff;
252b5132
RH
10383}
10384
66543521 10385static bfd_vma *
57028622 10386get_dynamic_data (FILE * file, bfd_size_type number, unsigned int ent_size)
252b5132 10387{
2cf0635d
NC
10388 unsigned char * e_data;
10389 bfd_vma * i_data;
252b5132 10390
57028622
NC
10391 /* If the size_t type is smaller than the bfd_size_type, eg because
10392 you are building a 32-bit tool on a 64-bit host, then make sure
10393 that when (number) is cast to (size_t) no information is lost. */
10394 if (sizeof (size_t) < sizeof (bfd_size_type)
10395 && (bfd_size_type) ((size_t) number) != number)
10396 {
10397 error (_("Size truncation prevents reading %llu elements of size %u\n"),
10398 (unsigned long long) number, ent_size);
10399 return NULL;
10400 }
948f632f 10401
3102e897
NC
10402 /* Be kind to memory chekers (eg valgrind, address sanitizer) by not
10403 attempting to allocate memory when the read is bound to fail. */
10404 if (ent_size * number > current_file_size)
10405 {
57028622
NC
10406 error (_("Invalid number of dynamic entries: %llu\n"),
10407 (unsigned long long) number);
3102e897
NC
10408 return NULL;
10409 }
10410
57028622 10411 e_data = (unsigned char *) cmalloc ((size_t) number, ent_size);
252b5132
RH
10412 if (e_data == NULL)
10413 {
57028622
NC
10414 error (_("Out of memory reading %llu dynamic entries\n"),
10415 (unsigned long long) number);
252b5132
RH
10416 return NULL;
10417 }
10418
57028622 10419 if (fread (e_data, ent_size, (size_t) number, file) != number)
252b5132 10420 {
57028622
NC
10421 error (_("Unable to read in %llu bytes of dynamic data\n"),
10422 (unsigned long long) (number * ent_size));
3102e897 10423 free (e_data);
252b5132
RH
10424 return NULL;
10425 }
10426
57028622 10427 i_data = (bfd_vma *) cmalloc ((size_t) number, sizeof (*i_data));
252b5132
RH
10428 if (i_data == NULL)
10429 {
57028622
NC
10430 error (_("Out of memory allocating space for %llu dynamic entries\n"),
10431 (unsigned long long) number);
252b5132
RH
10432 free (e_data);
10433 return NULL;
10434 }
10435
10436 while (number--)
66543521 10437 i_data[number] = byte_get (e_data + number * ent_size, ent_size);
252b5132
RH
10438
10439 free (e_data);
10440
10441 return i_data;
10442}
10443
6bd1a22c
L
10444static void
10445print_dynamic_symbol (bfd_vma si, unsigned long hn)
10446{
2cf0635d 10447 Elf_Internal_Sym * psym;
6bd1a22c
L
10448 int n;
10449
6bd1a22c
L
10450 n = print_vma (si, DEC_5);
10451 if (n < 5)
0b4362b0 10452 fputs (&" "[n], stdout);
6bd1a22c 10453 printf (" %3lu: ", hn);
e0a31db1
NC
10454
10455 if (dynamic_symbols == NULL || si >= num_dynamic_syms)
10456 {
3102e897
NC
10457 printf (_("<No info available for dynamic symbol number %lu>\n"),
10458 (unsigned long) si);
e0a31db1
NC
10459 return;
10460 }
10461
10462 psym = dynamic_symbols + si;
6bd1a22c
L
10463 print_vma (psym->st_value, LONG_HEX);
10464 putchar (' ');
10465 print_vma (psym->st_size, DEC_5);
10466
f4be36b3
AM
10467 printf (" %-7s", get_symbol_type (ELF_ST_TYPE (psym->st_info)));
10468 printf (" %-6s", get_symbol_binding (ELF_ST_BIND (psym->st_info)));
10469 printf (" %-7s", get_symbol_visibility (ELF_ST_VISIBILITY (psym->st_other)));
6bd1a22c
L
10470 /* Check to see if any other bits in the st_other field are set.
10471 Note - displaying this information disrupts the layout of the
10472 table being generated, but for the moment this case is very
10473 rare. */
10474 if (psym->st_other ^ ELF_ST_VISIBILITY (psym->st_other))
10475 printf (" [%s] ", get_symbol_other (psym->st_other ^ ELF_ST_VISIBILITY (psym->st_other)));
10476 printf (" %3.3s ", get_symbol_index_type (psym->st_shndx));
10477 if (VALID_DYNAMIC_NAME (psym->st_name))
10478 print_symbol (25, GET_DYNAMIC_NAME (psym->st_name));
10479 else
2b692964 10480 printf (_(" <corrupt: %14ld>"), psym->st_name);
6bd1a22c
L
10481 putchar ('\n');
10482}
10483
bb4d2ac2
L
10484static const char *
10485get_symbol_version_string (FILE *file, int is_dynsym,
10486 const char *strtab,
10487 unsigned long int strtab_size,
10488 unsigned int si, Elf_Internal_Sym *psym,
10489 enum versioned_symbol_info *sym_info,
10490 unsigned short *vna_other)
10491{
ab273396
AM
10492 unsigned char data[2];
10493 unsigned short vers_data;
10494 unsigned long offset;
bb4d2ac2 10495
ab273396
AM
10496 if (!is_dynsym
10497 || version_info[DT_VERSIONTAGIDX (DT_VERSYM)] == 0)
10498 return NULL;
bb4d2ac2 10499
ab273396
AM
10500 offset = offset_from_vma (file, version_info[DT_VERSIONTAGIDX (DT_VERSYM)],
10501 sizeof data + si * sizeof (vers_data));
bb4d2ac2 10502
ab273396
AM
10503 if (get_data (&data, file, offset + si * sizeof (vers_data),
10504 sizeof (data), 1, _("version data")) == NULL)
10505 return NULL;
10506
10507 vers_data = byte_get (data, 2);
bb4d2ac2 10508
ab273396
AM
10509 if ((vers_data & VERSYM_HIDDEN) == 0 && vers_data <= 1)
10510 return NULL;
bb4d2ac2 10511
ab273396
AM
10512 /* Usually we'd only see verdef for defined symbols, and verneed for
10513 undefined symbols. However, symbols defined by the linker in
10514 .dynbss for variables copied from a shared library in order to
10515 avoid text relocations are defined yet have verneed. We could
10516 use a heuristic to detect the special case, for example, check
10517 for verneed first on symbols defined in SHT_NOBITS sections, but
10518 it is simpler and more reliable to just look for both verdef and
10519 verneed. .dynbss might not be mapped to a SHT_NOBITS section. */
bb4d2ac2 10520
ab273396
AM
10521 if (psym->st_shndx != SHN_UNDEF
10522 && vers_data != 0x8001
10523 && version_info[DT_VERSIONTAGIDX (DT_VERDEF)])
10524 {
10525 Elf_Internal_Verdef ivd;
10526 Elf_Internal_Verdaux ivda;
10527 Elf_External_Verdaux evda;
10528 unsigned long off;
bb4d2ac2 10529
ab273396
AM
10530 off = offset_from_vma (file,
10531 version_info[DT_VERSIONTAGIDX (DT_VERDEF)],
10532 sizeof (Elf_External_Verdef));
10533
10534 do
bb4d2ac2 10535 {
ab273396
AM
10536 Elf_External_Verdef evd;
10537
10538 if (get_data (&evd, file, off, sizeof (evd), 1,
10539 _("version def")) == NULL)
10540 {
10541 ivd.vd_ndx = 0;
10542 ivd.vd_aux = 0;
10543 ivd.vd_next = 0;
10544 }
10545 else
bb4d2ac2 10546 {
ab273396
AM
10547 ivd.vd_ndx = BYTE_GET (evd.vd_ndx);
10548 ivd.vd_aux = BYTE_GET (evd.vd_aux);
10549 ivd.vd_next = BYTE_GET (evd.vd_next);
10550 }
bb4d2ac2 10551
ab273396
AM
10552 off += ivd.vd_next;
10553 }
10554 while (ivd.vd_ndx != (vers_data & VERSYM_VERSION) && ivd.vd_next != 0);
bb4d2ac2 10555
ab273396
AM
10556 if (ivd.vd_ndx == (vers_data & VERSYM_VERSION))
10557 {
10558 off -= ivd.vd_next;
10559 off += ivd.vd_aux;
bb4d2ac2 10560
ab273396
AM
10561 if (get_data (&evda, file, off, sizeof (evda), 1,
10562 _("version def aux")) != NULL)
10563 {
10564 ivda.vda_name = BYTE_GET (evda.vda_name);
bb4d2ac2 10565
ab273396
AM
10566 if (psym->st_name != ivda.vda_name)
10567 {
10568 *sym_info = ((vers_data & VERSYM_HIDDEN) != 0
10569 ? symbol_hidden : symbol_public);
10570 return (ivda.vda_name < strtab_size
10571 ? strtab + ivda.vda_name : _("<corrupt>"));
10572 }
10573 }
10574 }
10575 }
bb4d2ac2 10576
ab273396
AM
10577 if (version_info[DT_VERSIONTAGIDX (DT_VERNEED)])
10578 {
10579 Elf_External_Verneed evn;
10580 Elf_Internal_Verneed ivn;
10581 Elf_Internal_Vernaux ivna;
bb4d2ac2 10582
ab273396
AM
10583 offset = offset_from_vma (file,
10584 version_info[DT_VERSIONTAGIDX (DT_VERNEED)],
10585 sizeof evn);
10586 do
10587 {
10588 unsigned long vna_off;
bb4d2ac2 10589
ab273396
AM
10590 if (get_data (&evn, file, offset, sizeof (evn), 1,
10591 _("version need")) == NULL)
10592 {
10593 ivna.vna_next = 0;
10594 ivna.vna_other = 0;
10595 ivna.vna_name = 0;
10596 break;
10597 }
bb4d2ac2 10598
ab273396
AM
10599 ivn.vn_aux = BYTE_GET (evn.vn_aux);
10600 ivn.vn_next = BYTE_GET (evn.vn_next);
bb4d2ac2 10601
ab273396 10602 vna_off = offset + ivn.vn_aux;
bb4d2ac2 10603
ab273396
AM
10604 do
10605 {
10606 Elf_External_Vernaux evna;
bb4d2ac2 10607
ab273396
AM
10608 if (get_data (&evna, file, vna_off, sizeof (evna), 1,
10609 _("version need aux (3)")) == NULL)
bb4d2ac2 10610 {
ab273396
AM
10611 ivna.vna_next = 0;
10612 ivna.vna_other = 0;
10613 ivna.vna_name = 0;
bb4d2ac2 10614 }
bb4d2ac2 10615 else
bb4d2ac2 10616 {
ab273396
AM
10617 ivna.vna_other = BYTE_GET (evna.vna_other);
10618 ivna.vna_next = BYTE_GET (evna.vna_next);
10619 ivna.vna_name = BYTE_GET (evna.vna_name);
10620 }
bb4d2ac2 10621
ab273396
AM
10622 vna_off += ivna.vna_next;
10623 }
10624 while (ivna.vna_other != vers_data && ivna.vna_next != 0);
bb4d2ac2 10625
ab273396
AM
10626 if (ivna.vna_other == vers_data)
10627 break;
bb4d2ac2 10628
ab273396
AM
10629 offset += ivn.vn_next;
10630 }
10631 while (ivn.vn_next != 0);
bb4d2ac2 10632
ab273396
AM
10633 if (ivna.vna_other == vers_data)
10634 {
10635 *sym_info = symbol_undefined;
10636 *vna_other = ivna.vna_other;
10637 return (ivna.vna_name < strtab_size
10638 ? strtab + ivna.vna_name : _("<corrupt>"));
bb4d2ac2
L
10639 }
10640 }
ab273396 10641 return NULL;
bb4d2ac2
L
10642}
10643
e3c8793a 10644/* Dump the symbol table. */
252b5132 10645static int
2cf0635d 10646process_symbol_table (FILE * file)
252b5132 10647{
2cf0635d 10648 Elf_Internal_Shdr * section;
8b73c356
NC
10649 bfd_size_type nbuckets = 0;
10650 bfd_size_type nchains = 0;
2cf0635d
NC
10651 bfd_vma * buckets = NULL;
10652 bfd_vma * chains = NULL;
fdc90cb4 10653 bfd_vma ngnubuckets = 0;
2cf0635d
NC
10654 bfd_vma * gnubuckets = NULL;
10655 bfd_vma * gnuchains = NULL;
6bd1a22c 10656 bfd_vma gnusymidx = 0;
071436c6 10657 bfd_size_type ngnuchains = 0;
252b5132 10658
2c610e4b 10659 if (!do_syms && !do_dyn_syms && !do_histogram)
252b5132
RH
10660 return 1;
10661
6bd1a22c
L
10662 if (dynamic_info[DT_HASH]
10663 && (do_histogram
2c610e4b
L
10664 || (do_using_dynamic
10665 && !do_dyn_syms
10666 && dynamic_strings != NULL)))
252b5132 10667 {
66543521
AM
10668 unsigned char nb[8];
10669 unsigned char nc[8];
8b73c356 10670 unsigned int hash_ent_size = 4;
66543521
AM
10671
10672 if ((elf_header.e_machine == EM_ALPHA
10673 || elf_header.e_machine == EM_S390
10674 || elf_header.e_machine == EM_S390_OLD)
10675 && elf_header.e_ident[EI_CLASS] == ELFCLASS64)
10676 hash_ent_size = 8;
10677
fb52b2f4
NC
10678 if (fseek (file,
10679 (archive_file_offset
10680 + offset_from_vma (file, dynamic_info[DT_HASH],
10681 sizeof nb + sizeof nc)),
d93f0186 10682 SEEK_SET))
252b5132 10683 {
591a748a 10684 error (_("Unable to seek to start of dynamic information\n"));
d3a44ec6 10685 goto no_hash;
252b5132
RH
10686 }
10687
66543521 10688 if (fread (nb, hash_ent_size, 1, file) != 1)
252b5132
RH
10689 {
10690 error (_("Failed to read in number of buckets\n"));
d3a44ec6 10691 goto no_hash;
252b5132
RH
10692 }
10693
66543521 10694 if (fread (nc, hash_ent_size, 1, file) != 1)
252b5132
RH
10695 {
10696 error (_("Failed to read in number of chains\n"));
d3a44ec6 10697 goto no_hash;
252b5132
RH
10698 }
10699
66543521
AM
10700 nbuckets = byte_get (nb, hash_ent_size);
10701 nchains = byte_get (nc, hash_ent_size);
252b5132 10702
66543521
AM
10703 buckets = get_dynamic_data (file, nbuckets, hash_ent_size);
10704 chains = get_dynamic_data (file, nchains, hash_ent_size);
252b5132 10705
d3a44ec6 10706 no_hash:
252b5132 10707 if (buckets == NULL || chains == NULL)
d3a44ec6
JJ
10708 {
10709 if (do_using_dynamic)
10710 return 0;
10711 free (buckets);
10712 free (chains);
10713 buckets = NULL;
10714 chains = NULL;
10715 nbuckets = 0;
10716 nchains = 0;
10717 }
252b5132
RH
10718 }
10719
6bd1a22c
L
10720 if (dynamic_info_DT_GNU_HASH
10721 && (do_histogram
2c610e4b
L
10722 || (do_using_dynamic
10723 && !do_dyn_syms
10724 && dynamic_strings != NULL)))
252b5132 10725 {
6bd1a22c
L
10726 unsigned char nb[16];
10727 bfd_vma i, maxchain = 0xffffffff, bitmaskwords;
10728 bfd_vma buckets_vma;
10729
10730 if (fseek (file,
10731 (archive_file_offset
10732 + offset_from_vma (file, dynamic_info_DT_GNU_HASH,
10733 sizeof nb)),
10734 SEEK_SET))
10735 {
10736 error (_("Unable to seek to start of dynamic information\n"));
d3a44ec6 10737 goto no_gnu_hash;
6bd1a22c 10738 }
252b5132 10739
6bd1a22c
L
10740 if (fread (nb, 16, 1, file) != 1)
10741 {
10742 error (_("Failed to read in number of buckets\n"));
d3a44ec6 10743 goto no_gnu_hash;
6bd1a22c
L
10744 }
10745
10746 ngnubuckets = byte_get (nb, 4);
10747 gnusymidx = byte_get (nb + 4, 4);
10748 bitmaskwords = byte_get (nb + 8, 4);
10749 buckets_vma = dynamic_info_DT_GNU_HASH + 16;
f7a99963 10750 if (is_32bit_elf)
6bd1a22c 10751 buckets_vma += bitmaskwords * 4;
f7a99963 10752 else
6bd1a22c 10753 buckets_vma += bitmaskwords * 8;
252b5132 10754
6bd1a22c
L
10755 if (fseek (file,
10756 (archive_file_offset
10757 + offset_from_vma (file, buckets_vma, 4)),
10758 SEEK_SET))
252b5132 10759 {
6bd1a22c 10760 error (_("Unable to seek to start of dynamic information\n"));
d3a44ec6 10761 goto no_gnu_hash;
6bd1a22c
L
10762 }
10763
10764 gnubuckets = get_dynamic_data (file, ngnubuckets, 4);
252b5132 10765
6bd1a22c 10766 if (gnubuckets == NULL)
d3a44ec6 10767 goto no_gnu_hash;
6bd1a22c
L
10768
10769 for (i = 0; i < ngnubuckets; i++)
10770 if (gnubuckets[i] != 0)
10771 {
10772 if (gnubuckets[i] < gnusymidx)
10773 return 0;
10774
10775 if (maxchain == 0xffffffff || gnubuckets[i] > maxchain)
10776 maxchain = gnubuckets[i];
10777 }
10778
10779 if (maxchain == 0xffffffff)
d3a44ec6 10780 goto no_gnu_hash;
6bd1a22c
L
10781
10782 maxchain -= gnusymidx;
10783
10784 if (fseek (file,
10785 (archive_file_offset
10786 + offset_from_vma (file, buckets_vma
10787 + 4 * (ngnubuckets + maxchain), 4)),
10788 SEEK_SET))
10789 {
10790 error (_("Unable to seek to start of dynamic information\n"));
d3a44ec6 10791 goto no_gnu_hash;
6bd1a22c
L
10792 }
10793
10794 do
10795 {
10796 if (fread (nb, 4, 1, file) != 1)
252b5132 10797 {
6bd1a22c 10798 error (_("Failed to determine last chain length\n"));
d3a44ec6 10799 goto no_gnu_hash;
6bd1a22c 10800 }
252b5132 10801
6bd1a22c 10802 if (maxchain + 1 == 0)
d3a44ec6 10803 goto no_gnu_hash;
252b5132 10804
6bd1a22c
L
10805 ++maxchain;
10806 }
10807 while ((byte_get (nb, 4) & 1) == 0);
76da6bbe 10808
6bd1a22c
L
10809 if (fseek (file,
10810 (archive_file_offset
10811 + offset_from_vma (file, buckets_vma + 4 * ngnubuckets, 4)),
10812 SEEK_SET))
10813 {
10814 error (_("Unable to seek to start of dynamic information\n"));
d3a44ec6 10815 goto no_gnu_hash;
6bd1a22c
L
10816 }
10817
10818 gnuchains = get_dynamic_data (file, maxchain, 4);
071436c6 10819 ngnuchains = maxchain;
6bd1a22c 10820
d3a44ec6 10821 no_gnu_hash:
6bd1a22c 10822 if (gnuchains == NULL)
d3a44ec6
JJ
10823 {
10824 free (gnubuckets);
d3a44ec6
JJ
10825 gnubuckets = NULL;
10826 ngnubuckets = 0;
f64fddf1
NC
10827 if (do_using_dynamic)
10828 return 0;
d3a44ec6 10829 }
6bd1a22c
L
10830 }
10831
10832 if ((dynamic_info[DT_HASH] || dynamic_info_DT_GNU_HASH)
10833 && do_syms
10834 && do_using_dynamic
3102e897
NC
10835 && dynamic_strings != NULL
10836 && dynamic_symbols != NULL)
6bd1a22c
L
10837 {
10838 unsigned long hn;
10839
10840 if (dynamic_info[DT_HASH])
10841 {
10842 bfd_vma si;
10843
10844 printf (_("\nSymbol table for image:\n"));
10845 if (is_32bit_elf)
10846 printf (_(" Num Buc: Value Size Type Bind Vis Ndx Name\n"));
10847 else
10848 printf (_(" Num Buc: Value Size Type Bind Vis Ndx Name\n"));
10849
10850 for (hn = 0; hn < nbuckets; hn++)
10851 {
10852 if (! buckets[hn])
10853 continue;
10854
10855 for (si = buckets[hn]; si < nchains && si > 0; si = chains[si])
10856 print_dynamic_symbol (si, hn);
252b5132
RH
10857 }
10858 }
6bd1a22c
L
10859
10860 if (dynamic_info_DT_GNU_HASH)
10861 {
10862 printf (_("\nSymbol table of `.gnu.hash' for image:\n"));
10863 if (is_32bit_elf)
10864 printf (_(" Num Buc: Value Size Type Bind Vis Ndx Name\n"));
10865 else
10866 printf (_(" Num Buc: Value Size Type Bind Vis Ndx Name\n"));
10867
10868 for (hn = 0; hn < ngnubuckets; ++hn)
10869 if (gnubuckets[hn] != 0)
10870 {
10871 bfd_vma si = gnubuckets[hn];
10872 bfd_vma off = si - gnusymidx;
10873
10874 do
10875 {
10876 print_dynamic_symbol (si, hn);
10877 si++;
10878 }
071436c6 10879 while (off < ngnuchains && (gnuchains[off++] & 1) == 0);
6bd1a22c
L
10880 }
10881 }
252b5132 10882 }
8b73c356
NC
10883 else if ((do_dyn_syms || (do_syms && !do_using_dynamic))
10884 && section_headers != NULL)
252b5132 10885 {
b34976b6 10886 unsigned int i;
252b5132
RH
10887
10888 for (i = 0, section = section_headers;
10889 i < elf_header.e_shnum;
10890 i++, section++)
10891 {
b34976b6 10892 unsigned int si;
2cf0635d 10893 char * strtab = NULL;
c256ffe7 10894 unsigned long int strtab_size = 0;
2cf0635d
NC
10895 Elf_Internal_Sym * symtab;
10896 Elf_Internal_Sym * psym;
ba5cdace 10897 unsigned long num_syms;
252b5132 10898
2c610e4b
L
10899 if ((section->sh_type != SHT_SYMTAB
10900 && section->sh_type != SHT_DYNSYM)
10901 || (!do_syms
10902 && section->sh_type == SHT_SYMTAB))
252b5132
RH
10903 continue;
10904
dd24e3da
NC
10905 if (section->sh_entsize == 0)
10906 {
10907 printf (_("\nSymbol table '%s' has a sh_entsize of zero!\n"),
74e1a04b 10908 printable_section_name (section));
dd24e3da
NC
10909 continue;
10910 }
10911
252b5132 10912 printf (_("\nSymbol table '%s' contains %lu entries:\n"),
74e1a04b 10913 printable_section_name (section),
252b5132 10914 (unsigned long) (section->sh_size / section->sh_entsize));
dd24e3da 10915
f7a99963 10916 if (is_32bit_elf)
ca47b30c 10917 printf (_(" Num: Value Size Type Bind Vis Ndx Name\n"));
f7a99963 10918 else
ca47b30c 10919 printf (_(" Num: Value Size Type Bind Vis Ndx Name\n"));
252b5132 10920
ba5cdace 10921 symtab = GET_ELF_SYMBOLS (file, section, & num_syms);
252b5132
RH
10922 if (symtab == NULL)
10923 continue;
10924
10925 if (section->sh_link == elf_header.e_shstrndx)
c256ffe7
JJ
10926 {
10927 strtab = string_table;
10928 strtab_size = string_table_length;
10929 }
4fbb74a6 10930 else if (section->sh_link < elf_header.e_shnum)
252b5132 10931 {
2cf0635d 10932 Elf_Internal_Shdr * string_sec;
252b5132 10933
4fbb74a6 10934 string_sec = section_headers + section->sh_link;
252b5132 10935
3f5e193b
NC
10936 strtab = (char *) get_data (NULL, file, string_sec->sh_offset,
10937 1, string_sec->sh_size,
10938 _("string table"));
c256ffe7 10939 strtab_size = strtab != NULL ? string_sec->sh_size : 0;
252b5132
RH
10940 }
10941
ba5cdace 10942 for (si = 0, psym = symtab; si < num_syms; si++, psym++)
252b5132 10943 {
bb4d2ac2
L
10944 const char *version_string;
10945 enum versioned_symbol_info sym_info;
10946 unsigned short vna_other;
10947
5e220199 10948 printf ("%6d: ", si);
f7a99963
NC
10949 print_vma (psym->st_value, LONG_HEX);
10950 putchar (' ');
10951 print_vma (psym->st_size, DEC_5);
d1133906
NC
10952 printf (" %-7s", get_symbol_type (ELF_ST_TYPE (psym->st_info)));
10953 printf (" %-6s", get_symbol_binding (ELF_ST_BIND (psym->st_info)));
f4be36b3 10954 printf (" %-7s", get_symbol_visibility (ELF_ST_VISIBILITY (psym->st_other)));
5e2b0d47
NC
10955 /* Check to see if any other bits in the st_other field are set.
10956 Note - displaying this information disrupts the layout of the
10957 table being generated, but for the moment this case is very rare. */
10958 if (psym->st_other ^ ELF_ST_VISIBILITY (psym->st_other))
10959 printf (" [%s] ", get_symbol_other (psym->st_other ^ ELF_ST_VISIBILITY (psym->st_other)));
31104126 10960 printf (" %4s ", get_symbol_index_type (psym->st_shndx));
c256ffe7 10961 print_symbol (25, psym->st_name < strtab_size
2b692964 10962 ? strtab + psym->st_name : _("<corrupt>"));
252b5132 10963
bb4d2ac2
L
10964 version_string
10965 = get_symbol_version_string (file,
10966 section->sh_type == SHT_DYNSYM,
10967 strtab, strtab_size, si,
10968 psym, &sym_info, &vna_other);
10969 if (version_string)
252b5132 10970 {
bb4d2ac2
L
10971 if (sym_info == symbol_undefined)
10972 printf ("@%s (%d)", version_string, vna_other);
10973 else
10974 printf (sym_info == symbol_hidden ? "@%s" : "@@%s",
10975 version_string);
252b5132
RH
10976 }
10977
10978 putchar ('\n');
10979 }
10980
10981 free (symtab);
10982 if (strtab != string_table)
10983 free (strtab);
10984 }
10985 }
10986 else if (do_syms)
10987 printf
10988 (_("\nDynamic symbol information is not available for displaying symbols.\n"));
10989
10990 if (do_histogram && buckets != NULL)
10991 {
2cf0635d
NC
10992 unsigned long * lengths;
10993 unsigned long * counts;
66543521
AM
10994 unsigned long hn;
10995 bfd_vma si;
10996 unsigned long maxlength = 0;
10997 unsigned long nzero_counts = 0;
10998 unsigned long nsyms = 0;
94d15024 10999 unsigned long chained;
252b5132 11000
66543521
AM
11001 printf (_("\nHistogram for bucket list length (total of %lu buckets):\n"),
11002 (unsigned long) nbuckets);
252b5132 11003
3f5e193b 11004 lengths = (unsigned long *) calloc (nbuckets, sizeof (*lengths));
252b5132
RH
11005 if (lengths == NULL)
11006 {
8b73c356 11007 error (_("Out of memory allocating space for histogram buckets\n"));
252b5132
RH
11008 return 0;
11009 }
8b73c356
NC
11010
11011 printf (_(" Length Number %% of total Coverage\n"));
252b5132
RH
11012 for (hn = 0; hn < nbuckets; ++hn)
11013 {
94d15024
MF
11014 for (si = buckets[hn], chained = 0;
11015 si > 0 && si < nchains && si < nbuckets && chained <= nchains;
11016 si = chains[si], ++chained)
252b5132 11017 {
b34976b6 11018 ++nsyms;
252b5132 11019 if (maxlength < ++lengths[hn])
b34976b6 11020 ++maxlength;
252b5132 11021 }
94d15024
MF
11022
11023 /* PR binutils/17531: A corrupt binary could contain broken
11024 histogram data. Do not go into an infinite loop trying
11025 to process it. */
11026 if (chained > nchains)
11027 {
11028 error (_("histogram chain is corrupt\n"));
11029 break;
11030 }
252b5132
RH
11031 }
11032
3f5e193b 11033 counts = (unsigned long *) calloc (maxlength + 1, sizeof (*counts));
252b5132
RH
11034 if (counts == NULL)
11035 {
b2e951ec 11036 free (lengths);
8b73c356 11037 error (_("Out of memory allocating space for histogram counts\n"));
252b5132
RH
11038 return 0;
11039 }
11040
11041 for (hn = 0; hn < nbuckets; ++hn)
b34976b6 11042 ++counts[lengths[hn]];
252b5132 11043
103f02d3 11044 if (nbuckets > 0)
252b5132 11045 {
66543521
AM
11046 unsigned long i;
11047 printf (" 0 %-10lu (%5.1f%%)\n",
103f02d3 11048 counts[0], (counts[0] * 100.0) / nbuckets);
66543521 11049 for (i = 1; i <= maxlength; ++i)
103f02d3 11050 {
66543521
AM
11051 nzero_counts += counts[i] * i;
11052 printf ("%7lu %-10lu (%5.1f%%) %5.1f%%\n",
11053 i, counts[i], (counts[i] * 100.0) / nbuckets,
103f02d3
UD
11054 (nzero_counts * 100.0) / nsyms);
11055 }
252b5132
RH
11056 }
11057
11058 free (counts);
11059 free (lengths);
11060 }
11061
11062 if (buckets != NULL)
11063 {
11064 free (buckets);
11065 free (chains);
11066 }
11067
d3a44ec6 11068 if (do_histogram && gnubuckets != NULL)
fdc90cb4 11069 {
2cf0635d
NC
11070 unsigned long * lengths;
11071 unsigned long * counts;
fdc90cb4
JJ
11072 unsigned long hn;
11073 unsigned long maxlength = 0;
11074 unsigned long nzero_counts = 0;
11075 unsigned long nsyms = 0;
fdc90cb4 11076
8b73c356
NC
11077 printf (_("\nHistogram for `.gnu.hash' bucket list length (total of %lu buckets):\n"),
11078 (unsigned long) ngnubuckets);
11079
3f5e193b 11080 lengths = (unsigned long *) calloc (ngnubuckets, sizeof (*lengths));
fdc90cb4
JJ
11081 if (lengths == NULL)
11082 {
8b73c356 11083 error (_("Out of memory allocating space for gnu histogram buckets\n"));
fdc90cb4
JJ
11084 return 0;
11085 }
11086
fdc90cb4
JJ
11087 printf (_(" Length Number %% of total Coverage\n"));
11088
11089 for (hn = 0; hn < ngnubuckets; ++hn)
11090 if (gnubuckets[hn] != 0)
11091 {
11092 bfd_vma off, length = 1;
11093
6bd1a22c 11094 for (off = gnubuckets[hn] - gnusymidx;
071436c6
NC
11095 /* PR 17531 file: 010-77222-0.004. */
11096 off < ngnuchains && (gnuchains[off] & 1) == 0;
11097 ++off)
fdc90cb4
JJ
11098 ++length;
11099 lengths[hn] = length;
11100 if (length > maxlength)
11101 maxlength = length;
11102 nsyms += length;
11103 }
11104
3f5e193b 11105 counts = (unsigned long *) calloc (maxlength + 1, sizeof (*counts));
fdc90cb4
JJ
11106 if (counts == NULL)
11107 {
b2e951ec 11108 free (lengths);
8b73c356 11109 error (_("Out of memory allocating space for gnu histogram counts\n"));
fdc90cb4
JJ
11110 return 0;
11111 }
11112
11113 for (hn = 0; hn < ngnubuckets; ++hn)
11114 ++counts[lengths[hn]];
11115
11116 if (ngnubuckets > 0)
11117 {
11118 unsigned long j;
11119 printf (" 0 %-10lu (%5.1f%%)\n",
11120 counts[0], (counts[0] * 100.0) / ngnubuckets);
11121 for (j = 1; j <= maxlength; ++j)
11122 {
11123 nzero_counts += counts[j] * j;
11124 printf ("%7lu %-10lu (%5.1f%%) %5.1f%%\n",
11125 j, counts[j], (counts[j] * 100.0) / ngnubuckets,
11126 (nzero_counts * 100.0) / nsyms);
11127 }
11128 }
11129
11130 free (counts);
11131 free (lengths);
11132 free (gnubuckets);
11133 free (gnuchains);
11134 }
11135
252b5132
RH
11136 return 1;
11137}
11138
11139static int
2cf0635d 11140process_syminfo (FILE * file ATTRIBUTE_UNUSED)
252b5132 11141{
b4c96d0d 11142 unsigned int i;
252b5132
RH
11143
11144 if (dynamic_syminfo == NULL
11145 || !do_dynamic)
11146 /* No syminfo, this is ok. */
11147 return 1;
11148
11149 /* There better should be a dynamic symbol section. */
11150 if (dynamic_symbols == NULL || dynamic_strings == NULL)
11151 return 0;
11152
11153 if (dynamic_addr)
11154 printf (_("\nDynamic info segment at offset 0x%lx contains %d entries:\n"),
11155 dynamic_syminfo_offset, dynamic_syminfo_nent);
11156
11157 printf (_(" Num: Name BoundTo Flags\n"));
11158 for (i = 0; i < dynamic_syminfo_nent; ++i)
11159 {
11160 unsigned short int flags = dynamic_syminfo[i].si_flags;
11161
31104126 11162 printf ("%4d: ", i);
4082ef84
NC
11163 if (i >= num_dynamic_syms)
11164 printf (_("<corrupt index>"));
11165 else if (VALID_DYNAMIC_NAME (dynamic_symbols[i].st_name))
d79b3d50
NC
11166 print_symbol (30, GET_DYNAMIC_NAME (dynamic_symbols[i].st_name));
11167 else
2b692964 11168 printf (_("<corrupt: %19ld>"), dynamic_symbols[i].st_name);
31104126 11169 putchar (' ');
252b5132
RH
11170
11171 switch (dynamic_syminfo[i].si_boundto)
11172 {
11173 case SYMINFO_BT_SELF:
11174 fputs ("SELF ", stdout);
11175 break;
11176 case SYMINFO_BT_PARENT:
11177 fputs ("PARENT ", stdout);
11178 break;
11179 default:
11180 if (dynamic_syminfo[i].si_boundto > 0
d79b3d50
NC
11181 && dynamic_syminfo[i].si_boundto < dynamic_nent
11182 && VALID_DYNAMIC_NAME (dynamic_section[dynamic_syminfo[i].si_boundto].d_un.d_val))
31104126 11183 {
d79b3d50 11184 print_symbol (10, GET_DYNAMIC_NAME (dynamic_section[dynamic_syminfo[i].si_boundto].d_un.d_val));
31104126
NC
11185 putchar (' ' );
11186 }
252b5132
RH
11187 else
11188 printf ("%-10d ", dynamic_syminfo[i].si_boundto);
11189 break;
11190 }
11191
11192 if (flags & SYMINFO_FLG_DIRECT)
11193 printf (" DIRECT");
11194 if (flags & SYMINFO_FLG_PASSTHRU)
11195 printf (" PASSTHRU");
11196 if (flags & SYMINFO_FLG_COPY)
11197 printf (" COPY");
11198 if (flags & SYMINFO_FLG_LAZYLOAD)
11199 printf (" LAZYLOAD");
11200
11201 puts ("");
11202 }
11203
11204 return 1;
11205}
11206
cf13d699
NC
11207/* Check to see if the given reloc needs to be handled in a target specific
11208 manner. If so then process the reloc and return TRUE otherwise return
11209 FALSE. */
09c11c86 11210
cf13d699
NC
11211static bfd_boolean
11212target_specific_reloc_handling (Elf_Internal_Rela * reloc,
11213 unsigned char * start,
11214 Elf_Internal_Sym * symtab)
252b5132 11215{
cf13d699 11216 unsigned int reloc_type = get_reloc_type (reloc->r_info);
252b5132 11217
cf13d699 11218 switch (elf_header.e_machine)
252b5132 11219 {
13761a11
NC
11220 case EM_MSP430:
11221 case EM_MSP430_OLD:
11222 {
11223 static Elf_Internal_Sym * saved_sym = NULL;
11224
11225 switch (reloc_type)
11226 {
11227 case 10: /* R_MSP430_SYM_DIFF */
11228 if (uses_msp430x_relocs ())
11229 break;
11230 case 21: /* R_MSP430X_SYM_DIFF */
11231 saved_sym = symtab + get_reloc_symindex (reloc->r_info);
11232 return TRUE;
11233
11234 case 1: /* R_MSP430_32 or R_MSP430_ABS32 */
11235 case 3: /* R_MSP430_16 or R_MSP430_ABS8 */
11236 goto handle_sym_diff;
0b4362b0 11237
13761a11
NC
11238 case 5: /* R_MSP430_16_BYTE */
11239 case 9: /* R_MSP430_8 */
11240 if (uses_msp430x_relocs ())
11241 break;
11242 goto handle_sym_diff;
11243
11244 case 2: /* R_MSP430_ABS16 */
11245 case 15: /* R_MSP430X_ABS16 */
11246 if (! uses_msp430x_relocs ())
11247 break;
11248 goto handle_sym_diff;
0b4362b0 11249
13761a11
NC
11250 handle_sym_diff:
11251 if (saved_sym != NULL)
11252 {
11253 bfd_vma value;
11254
11255 value = reloc->r_addend
11256 + (symtab[get_reloc_symindex (reloc->r_info)].st_value
11257 - saved_sym->st_value);
11258
11259 byte_put (start + reloc->r_offset, value, reloc_type == 1 ? 4 : 2);
11260
11261 saved_sym = NULL;
11262 return TRUE;
11263 }
11264 break;
11265
11266 default:
11267 if (saved_sym != NULL)
071436c6 11268 error (_("Unhandled MSP430 reloc type found after SYM_DIFF reloc\n"));
13761a11
NC
11269 break;
11270 }
11271 break;
11272 }
11273
cf13d699
NC
11274 case EM_MN10300:
11275 case EM_CYGNUS_MN10300:
11276 {
11277 static Elf_Internal_Sym * saved_sym = NULL;
252b5132 11278
cf13d699
NC
11279 switch (reloc_type)
11280 {
11281 case 34: /* R_MN10300_ALIGN */
11282 return TRUE;
11283 case 33: /* R_MN10300_SYM_DIFF */
11284 saved_sym = symtab + get_reloc_symindex (reloc->r_info);
11285 return TRUE;
11286 case 1: /* R_MN10300_32 */
11287 case 2: /* R_MN10300_16 */
11288 if (saved_sym != NULL)
11289 {
11290 bfd_vma value;
252b5132 11291
cf13d699
NC
11292 value = reloc->r_addend
11293 + (symtab[get_reloc_symindex (reloc->r_info)].st_value
11294 - saved_sym->st_value);
252b5132 11295
cf13d699 11296 byte_put (start + reloc->r_offset, value, reloc_type == 1 ? 4 : 2);
252b5132 11297
cf13d699
NC
11298 saved_sym = NULL;
11299 return TRUE;
11300 }
11301 break;
11302 default:
11303 if (saved_sym != NULL)
071436c6 11304 error (_("Unhandled MN10300 reloc type found after SYM_DIFF reloc\n"));
cf13d699
NC
11305 break;
11306 }
11307 break;
11308 }
6ff71e76
NC
11309
11310 case EM_RL78:
11311 {
11312 static bfd_vma saved_sym1 = 0;
11313 static bfd_vma saved_sym2 = 0;
11314 static bfd_vma value;
11315
11316 switch (reloc_type)
11317 {
11318 case 0x80: /* R_RL78_SYM. */
11319 saved_sym1 = saved_sym2;
11320 saved_sym2 = symtab[get_reloc_symindex (reloc->r_info)].st_value;
11321 saved_sym2 += reloc->r_addend;
11322 return TRUE;
11323
11324 case 0x83: /* R_RL78_OPsub. */
11325 value = saved_sym1 - saved_sym2;
11326 saved_sym2 = saved_sym1 = 0;
11327 return TRUE;
11328 break;
11329
11330 case 0x41: /* R_RL78_ABS32. */
11331 byte_put (start + reloc->r_offset, value, 4);
11332 value = 0;
11333 return TRUE;
11334
11335 case 0x43: /* R_RL78_ABS16. */
11336 byte_put (start + reloc->r_offset, value, 2);
11337 value = 0;
11338 return TRUE;
11339
11340 default:
11341 break;
11342 }
11343 break;
11344 }
252b5132
RH
11345 }
11346
cf13d699 11347 return FALSE;
252b5132
RH
11348}
11349
aca88567
NC
11350/* Returns TRUE iff RELOC_TYPE is a 32-bit absolute RELA relocation used in
11351 DWARF debug sections. This is a target specific test. Note - we do not
11352 go through the whole including-target-headers-multiple-times route, (as
11353 we have already done with <elf/h8.h>) because this would become very
11354 messy and even then this function would have to contain target specific
11355 information (the names of the relocs instead of their numeric values).
11356 FIXME: This is not the correct way to solve this problem. The proper way
11357 is to have target specific reloc sizing and typing functions created by
11358 the reloc-macros.h header, in the same way that it already creates the
11359 reloc naming functions. */
11360
11361static bfd_boolean
11362is_32bit_abs_reloc (unsigned int reloc_type)
11363{
11364 switch (elf_header.e_machine)
11365 {
41e92641 11366 case EM_386:
22abe556 11367 case EM_IAMCU:
41e92641 11368 return reloc_type == 1; /* R_386_32. */
aca88567
NC
11369 case EM_68K:
11370 return reloc_type == 1; /* R_68K_32. */
11371 case EM_860:
11372 return reloc_type == 1; /* R_860_32. */
137b6b5f
AM
11373 case EM_960:
11374 return reloc_type == 2; /* R_960_32. */
a06ea964
NC
11375 case EM_AARCH64:
11376 return reloc_type == 258; /* R_AARCH64_ABS32 */
aca88567 11377 case EM_ALPHA:
137b6b5f 11378 return reloc_type == 1; /* R_ALPHA_REFLONG. */
41e92641
NC
11379 case EM_ARC:
11380 return reloc_type == 1; /* R_ARC_32. */
886a2506
NC
11381 case EM_ARC_COMPACT:
11382 case EM_ARC_COMPACT2:
11383 return reloc_type == 4; /* R_ARC_32. */
41e92641
NC
11384 case EM_ARM:
11385 return reloc_type == 2; /* R_ARM_ABS32 */
cb8f3167 11386 case EM_AVR_OLD:
aca88567
NC
11387 case EM_AVR:
11388 return reloc_type == 1;
cfb8c092
NC
11389 case EM_ADAPTEVA_EPIPHANY:
11390 return reloc_type == 3;
aca88567
NC
11391 case EM_BLACKFIN:
11392 return reloc_type == 0x12; /* R_byte4_data. */
11393 case EM_CRIS:
11394 return reloc_type == 3; /* R_CRIS_32. */
11395 case EM_CR16:
11396 return reloc_type == 3; /* R_CR16_NUM32. */
11397 case EM_CRX:
11398 return reloc_type == 15; /* R_CRX_NUM32. */
11399 case EM_CYGNUS_FRV:
11400 return reloc_type == 1;
41e92641
NC
11401 case EM_CYGNUS_D10V:
11402 case EM_D10V:
11403 return reloc_type == 6; /* R_D10V_32. */
aca88567
NC
11404 case EM_CYGNUS_D30V:
11405 case EM_D30V:
11406 return reloc_type == 12; /* R_D30V_32_NORMAL. */
41e92641
NC
11407 case EM_DLX:
11408 return reloc_type == 3; /* R_DLX_RELOC_32. */
aca88567
NC
11409 case EM_CYGNUS_FR30:
11410 case EM_FR30:
11411 return reloc_type == 3; /* R_FR30_32. */
3f8107ab
AM
11412 case EM_FT32:
11413 return reloc_type == 1; /* R_FT32_32. */
aca88567
NC
11414 case EM_H8S:
11415 case EM_H8_300:
11416 case EM_H8_300H:
11417 return reloc_type == 1; /* R_H8_DIR32. */
3730236a 11418 case EM_IA_64:
d1c4b12b
NC
11419 return reloc_type == 0x65 /* R_IA64_SECREL32LSB. */
11420 || reloc_type == 0x25; /* R_IA64_DIR32LSB. */
aca88567
NC
11421 case EM_IP2K_OLD:
11422 case EM_IP2K:
11423 return reloc_type == 2; /* R_IP2K_32. */
11424 case EM_IQ2000:
11425 return reloc_type == 2; /* R_IQ2000_32. */
84e94c90
NC
11426 case EM_LATTICEMICO32:
11427 return reloc_type == 3; /* R_LM32_32. */
ff7eeb89 11428 case EM_M32C_OLD:
aca88567
NC
11429 case EM_M32C:
11430 return reloc_type == 3; /* R_M32C_32. */
11431 case EM_M32R:
11432 return reloc_type == 34; /* R_M32R_32_RELA. */
adec12c1
AM
11433 case EM_68HC11:
11434 case EM_68HC12:
11435 return reloc_type == 6; /* R_M68HC11_32. */
aca88567
NC
11436 case EM_MCORE:
11437 return reloc_type == 1; /* R_MCORE_ADDR32. */
11438 case EM_CYGNUS_MEP:
11439 return reloc_type == 4; /* R_MEP_32. */
a3c62988
NC
11440 case EM_METAG:
11441 return reloc_type == 2; /* R_METAG_ADDR32. */
137b6b5f
AM
11442 case EM_MICROBLAZE:
11443 return reloc_type == 1; /* R_MICROBLAZE_32. */
aca88567
NC
11444 case EM_MIPS:
11445 return reloc_type == 2; /* R_MIPS_32. */
11446 case EM_MMIX:
11447 return reloc_type == 4; /* R_MMIX_32. */
11448 case EM_CYGNUS_MN10200:
11449 case EM_MN10200:
11450 return reloc_type == 1; /* R_MN10200_32. */
11451 case EM_CYGNUS_MN10300:
11452 case EM_MN10300:
11453 return reloc_type == 1; /* R_MN10300_32. */
5506d11a
AM
11454 case EM_MOXIE:
11455 return reloc_type == 1; /* R_MOXIE_32. */
aca88567
NC
11456 case EM_MSP430_OLD:
11457 case EM_MSP430:
13761a11 11458 return reloc_type == 1; /* R_MSP430_32 or R_MSP320_ABS32. */
aca88567
NC
11459 case EM_MT:
11460 return reloc_type == 2; /* R_MT_32. */
35c08157
KLC
11461 case EM_NDS32:
11462 return reloc_type == 20; /* R_NDS32_RELA. */
3e0873ac 11463 case EM_ALTERA_NIOS2:
36591ba1 11464 return reloc_type == 12; /* R_NIOS2_BFD_RELOC_32. */
3e0873ac
NC
11465 case EM_NIOS32:
11466 return reloc_type == 1; /* R_NIOS_32. */
73589c9d
CS
11467 case EM_OR1K:
11468 return reloc_type == 1; /* R_OR1K_32. */
aca88567 11469 case EM_PARISC:
5fda8eca
NC
11470 return (reloc_type == 1 /* R_PARISC_DIR32. */
11471 || reloc_type == 41); /* R_PARISC_SECREL32. */
aca88567
NC
11472 case EM_PJ:
11473 case EM_PJ_OLD:
11474 return reloc_type == 1; /* R_PJ_DATA_DIR32. */
11475 case EM_PPC64:
11476 return reloc_type == 1; /* R_PPC64_ADDR32. */
11477 case EM_PPC:
11478 return reloc_type == 1; /* R_PPC_ADDR32. */
99c513f6
DD
11479 case EM_RL78:
11480 return reloc_type == 1; /* R_RL78_DIR32. */
c7927a3c
NC
11481 case EM_RX:
11482 return reloc_type == 1; /* R_RX_DIR32. */
aca88567
NC
11483 case EM_S370:
11484 return reloc_type == 1; /* R_I370_ADDR31. */
11485 case EM_S390_OLD:
11486 case EM_S390:
11487 return reloc_type == 4; /* R_S390_32. */
41e92641
NC
11488 case EM_SCORE:
11489 return reloc_type == 8; /* R_SCORE_ABS32. */
aca88567
NC
11490 case EM_SH:
11491 return reloc_type == 1; /* R_SH_DIR32. */
11492 case EM_SPARC32PLUS:
11493 case EM_SPARCV9:
11494 case EM_SPARC:
11495 return reloc_type == 3 /* R_SPARC_32. */
11496 || reloc_type == 23; /* R_SPARC_UA32. */
a7dd7d05
AM
11497 case EM_SPU:
11498 return reloc_type == 6; /* R_SPU_ADDR32 */
40b36596
JM
11499 case EM_TI_C6000:
11500 return reloc_type == 1; /* R_C6000_ABS32. */
aa137e4d
NC
11501 case EM_TILEGX:
11502 return reloc_type == 2; /* R_TILEGX_32. */
11503 case EM_TILEPRO:
11504 return reloc_type == 1; /* R_TILEPRO_32. */
aca88567
NC
11505 case EM_CYGNUS_V850:
11506 case EM_V850:
11507 return reloc_type == 6; /* R_V850_ABS32. */
708e2187
NC
11508 case EM_V800:
11509 return reloc_type == 0x33; /* R_V810_WORD. */
aca88567
NC
11510 case EM_VAX:
11511 return reloc_type == 1; /* R_VAX_32. */
619ed720
EB
11512 case EM_VISIUM:
11513 return reloc_type == 3; /* R_VISIUM_32. */
aca88567 11514 case EM_X86_64:
8a9036a4 11515 case EM_L1OM:
7a9068fe 11516 case EM_K1OM:
aca88567 11517 return reloc_type == 10; /* R_X86_64_32. */
c29aca4a
NC
11518 case EM_XC16X:
11519 case EM_C166:
11520 return reloc_type == 3; /* R_XC16C_ABS_32. */
f6c1a2d5
NC
11521 case EM_XGATE:
11522 return reloc_type == 4; /* R_XGATE_32. */
aca88567
NC
11523 case EM_XSTORMY16:
11524 return reloc_type == 1; /* R_XSTROMY16_32. */
11525 case EM_XTENSA_OLD:
11526 case EM_XTENSA:
11527 return reloc_type == 1; /* R_XTENSA_32. */
aca88567 11528 default:
bee0ee85
NC
11529 {
11530 static unsigned int prev_warn = 0;
11531
11532 /* Avoid repeating the same warning multiple times. */
11533 if (prev_warn != elf_header.e_machine)
11534 error (_("Missing knowledge of 32-bit reloc types used in DWARF sections of machine number %d\n"),
11535 elf_header.e_machine);
11536 prev_warn = elf_header.e_machine;
11537 return FALSE;
11538 }
aca88567
NC
11539 }
11540}
11541
11542/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
11543 a 32-bit pc-relative RELA relocation used in DWARF debug sections. */
11544
11545static bfd_boolean
11546is_32bit_pcrel_reloc (unsigned int reloc_type)
11547{
11548 switch (elf_header.e_machine)
11549 {
41e92641 11550 case EM_386:
22abe556 11551 case EM_IAMCU:
3e0873ac 11552 return reloc_type == 2; /* R_386_PC32. */
aca88567 11553 case EM_68K:
3e0873ac 11554 return reloc_type == 4; /* R_68K_PC32. */
a06ea964
NC
11555 case EM_AARCH64:
11556 return reloc_type == 261; /* R_AARCH64_PREL32 */
cfb8c092
NC
11557 case EM_ADAPTEVA_EPIPHANY:
11558 return reloc_type == 6;
aca88567
NC
11559 case EM_ALPHA:
11560 return reloc_type == 10; /* R_ALPHA_SREL32. */
726c18e1
CZ
11561 case EM_ARC_COMPACT:
11562 case EM_ARC_COMPACT2:
11563 return reloc_type == 49; /* R_ARC_32_PCREL. */
41e92641 11564 case EM_ARM:
3e0873ac 11565 return reloc_type == 3; /* R_ARM_REL32 */
137b6b5f
AM
11566 case EM_MICROBLAZE:
11567 return reloc_type == 2; /* R_MICROBLAZE_32_PCREL. */
73589c9d
CS
11568 case EM_OR1K:
11569 return reloc_type == 9; /* R_OR1K_32_PCREL. */
aca88567 11570 case EM_PARISC:
85acf597 11571 return reloc_type == 9; /* R_PARISC_PCREL32. */
aca88567
NC
11572 case EM_PPC:
11573 return reloc_type == 26; /* R_PPC_REL32. */
11574 case EM_PPC64:
3e0873ac 11575 return reloc_type == 26; /* R_PPC64_REL32. */
aca88567
NC
11576 case EM_S390_OLD:
11577 case EM_S390:
3e0873ac 11578 return reloc_type == 5; /* R_390_PC32. */
aca88567 11579 case EM_SH:
3e0873ac 11580 return reloc_type == 2; /* R_SH_REL32. */
aca88567
NC
11581 case EM_SPARC32PLUS:
11582 case EM_SPARCV9:
11583 case EM_SPARC:
3e0873ac 11584 return reloc_type == 6; /* R_SPARC_DISP32. */
a7dd7d05
AM
11585 case EM_SPU:
11586 return reloc_type == 13; /* R_SPU_REL32. */
aa137e4d
NC
11587 case EM_TILEGX:
11588 return reloc_type == 6; /* R_TILEGX_32_PCREL. */
11589 case EM_TILEPRO:
11590 return reloc_type == 4; /* R_TILEPRO_32_PCREL. */
619ed720
EB
11591 case EM_VISIUM:
11592 return reloc_type == 6; /* R_VISIUM_32_PCREL */
aca88567 11593 case EM_X86_64:
8a9036a4 11594 case EM_L1OM:
7a9068fe 11595 case EM_K1OM:
3e0873ac 11596 return reloc_type == 2; /* R_X86_64_PC32. */
2fcb9706
BW
11597 case EM_XTENSA_OLD:
11598 case EM_XTENSA:
11599 return reloc_type == 14; /* R_XTENSA_32_PCREL. */
aca88567
NC
11600 default:
11601 /* Do not abort or issue an error message here. Not all targets use
11602 pc-relative 32-bit relocs in their DWARF debug information and we
11603 have already tested for target coverage in is_32bit_abs_reloc. A
cf13d699
NC
11604 more helpful warning message will be generated by apply_relocations
11605 anyway, so just return. */
aca88567
NC
11606 return FALSE;
11607 }
11608}
11609
11610/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
11611 a 64-bit absolute RELA relocation used in DWARF debug sections. */
11612
11613static bfd_boolean
11614is_64bit_abs_reloc (unsigned int reloc_type)
11615{
11616 switch (elf_header.e_machine)
11617 {
a06ea964
NC
11618 case EM_AARCH64:
11619 return reloc_type == 257; /* R_AARCH64_ABS64. */
aca88567
NC
11620 case EM_ALPHA:
11621 return reloc_type == 2; /* R_ALPHA_REFQUAD. */
3730236a
NC
11622 case EM_IA_64:
11623 return reloc_type == 0x27; /* R_IA64_DIR64LSB. */
3e0873ac
NC
11624 case EM_PARISC:
11625 return reloc_type == 80; /* R_PARISC_DIR64. */
aca88567
NC
11626 case EM_PPC64:
11627 return reloc_type == 38; /* R_PPC64_ADDR64. */
11628 case EM_SPARC32PLUS:
11629 case EM_SPARCV9:
11630 case EM_SPARC:
11631 return reloc_type == 54; /* R_SPARC_UA64. */
11632 case EM_X86_64:
8a9036a4 11633 case EM_L1OM:
7a9068fe 11634 case EM_K1OM:
aca88567 11635 return reloc_type == 1; /* R_X86_64_64. */
e819ade1
AS
11636 case EM_S390_OLD:
11637 case EM_S390:
aa137e4d
NC
11638 return reloc_type == 22; /* R_S390_64. */
11639 case EM_TILEGX:
11640 return reloc_type == 1; /* R_TILEGX_64. */
85a82265 11641 case EM_MIPS:
aa137e4d 11642 return reloc_type == 18; /* R_MIPS_64. */
aca88567
NC
11643 default:
11644 return FALSE;
11645 }
11646}
11647
85acf597
RH
11648/* Like is_32bit_pcrel_reloc except that it returns TRUE iff RELOC_TYPE is
11649 a 64-bit pc-relative RELA relocation used in DWARF debug sections. */
11650
11651static bfd_boolean
11652is_64bit_pcrel_reloc (unsigned int reloc_type)
11653{
11654 switch (elf_header.e_machine)
11655 {
a06ea964
NC
11656 case EM_AARCH64:
11657 return reloc_type == 260; /* R_AARCH64_PREL64. */
85acf597 11658 case EM_ALPHA:
aa137e4d 11659 return reloc_type == 11; /* R_ALPHA_SREL64. */
85acf597 11660 case EM_IA_64:
aa137e4d 11661 return reloc_type == 0x4f; /* R_IA64_PCREL64LSB. */
85acf597 11662 case EM_PARISC:
aa137e4d 11663 return reloc_type == 72; /* R_PARISC_PCREL64. */
85acf597 11664 case EM_PPC64:
aa137e4d 11665 return reloc_type == 44; /* R_PPC64_REL64. */
85acf597
RH
11666 case EM_SPARC32PLUS:
11667 case EM_SPARCV9:
11668 case EM_SPARC:
aa137e4d 11669 return reloc_type == 46; /* R_SPARC_DISP64. */
85acf597 11670 case EM_X86_64:
8a9036a4 11671 case EM_L1OM:
7a9068fe 11672 case EM_K1OM:
aa137e4d 11673 return reloc_type == 24; /* R_X86_64_PC64. */
85acf597
RH
11674 case EM_S390_OLD:
11675 case EM_S390:
aa137e4d
NC
11676 return reloc_type == 23; /* R_S390_PC64. */
11677 case EM_TILEGX:
11678 return reloc_type == 5; /* R_TILEGX_64_PCREL. */
85acf597
RH
11679 default:
11680 return FALSE;
11681 }
11682}
11683
4dc3c23d
AM
11684/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
11685 a 24-bit absolute RELA relocation used in DWARF debug sections. */
11686
11687static bfd_boolean
11688is_24bit_abs_reloc (unsigned int reloc_type)
11689{
11690 switch (elf_header.e_machine)
11691 {
11692 case EM_CYGNUS_MN10200:
11693 case EM_MN10200:
11694 return reloc_type == 4; /* R_MN10200_24. */
11695 default:
11696 return FALSE;
11697 }
11698}
11699
aca88567
NC
11700/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
11701 a 16-bit absolute RELA relocation used in DWARF debug sections. */
11702
11703static bfd_boolean
11704is_16bit_abs_reloc (unsigned int reloc_type)
4b78141a
NC
11705{
11706 switch (elf_header.e_machine)
11707 {
886a2506
NC
11708 case EM_ARC:
11709 case EM_ARC_COMPACT:
11710 case EM_ARC_COMPACT2:
11711 return reloc_type == 2; /* R_ARC_16. */
aca88567
NC
11712 case EM_AVR_OLD:
11713 case EM_AVR:
11714 return reloc_type == 4; /* R_AVR_16. */
cfb8c092
NC
11715 case EM_ADAPTEVA_EPIPHANY:
11716 return reloc_type == 5;
41e92641
NC
11717 case EM_CYGNUS_D10V:
11718 case EM_D10V:
11719 return reloc_type == 3; /* R_D10V_16. */
4b78141a
NC
11720 case EM_H8S:
11721 case EM_H8_300:
11722 case EM_H8_300H:
aca88567
NC
11723 return reloc_type == R_H8_DIR16;
11724 case EM_IP2K_OLD:
11725 case EM_IP2K:
11726 return reloc_type == 1; /* R_IP2K_16. */
ff7eeb89 11727 case EM_M32C_OLD:
f4236fe4
DD
11728 case EM_M32C:
11729 return reloc_type == 1; /* R_M32C_16 */
aca88567 11730 case EM_MSP430:
13761a11
NC
11731 if (uses_msp430x_relocs ())
11732 return reloc_type == 2; /* R_MSP430_ABS16. */
78c8d46c 11733 case EM_MSP430_OLD:
aca88567 11734 return reloc_type == 5; /* R_MSP430_16_BYTE. */
35c08157
KLC
11735 case EM_NDS32:
11736 return reloc_type == 19; /* R_NDS32_RELA. */
3e0873ac 11737 case EM_ALTERA_NIOS2:
36591ba1 11738 return reloc_type == 13; /* R_NIOS2_BFD_RELOC_16. */
3e0873ac
NC
11739 case EM_NIOS32:
11740 return reloc_type == 9; /* R_NIOS_16. */
73589c9d
CS
11741 case EM_OR1K:
11742 return reloc_type == 2; /* R_OR1K_16. */
40b36596
JM
11743 case EM_TI_C6000:
11744 return reloc_type == 2; /* R_C6000_ABS16. */
c29aca4a
NC
11745 case EM_XC16X:
11746 case EM_C166:
11747 return reloc_type == 2; /* R_XC16C_ABS_16. */
e63734a3
AM
11748 case EM_CYGNUS_MN10200:
11749 case EM_MN10200:
11750 return reloc_type == 2; /* R_MN10200_16. */
0a22ae8e
NC
11751 case EM_CYGNUS_MN10300:
11752 case EM_MN10300:
11753 return reloc_type == 2; /* R_MN10300_16. */
619ed720
EB
11754 case EM_VISIUM:
11755 return reloc_type == 2; /* R_VISIUM_16. */
f6c1a2d5
NC
11756 case EM_XGATE:
11757 return reloc_type == 3; /* R_XGATE_16. */
4b78141a 11758 default:
aca88567 11759 return FALSE;
4b78141a
NC
11760 }
11761}
11762
2a7b2e88
JK
11763/* Returns TRUE iff RELOC_TYPE is a NONE relocation used for discarded
11764 relocation entries (possibly formerly used for SHT_GROUP sections). */
11765
11766static bfd_boolean
11767is_none_reloc (unsigned int reloc_type)
11768{
11769 switch (elf_header.e_machine)
11770 {
cb8f3167
NC
11771 case EM_68K: /* R_68K_NONE. */
11772 case EM_386: /* R_386_NONE. */
2a7b2e88
JK
11773 case EM_SPARC32PLUS:
11774 case EM_SPARCV9:
cb8f3167
NC
11775 case EM_SPARC: /* R_SPARC_NONE. */
11776 case EM_MIPS: /* R_MIPS_NONE. */
11777 case EM_PARISC: /* R_PARISC_NONE. */
11778 case EM_ALPHA: /* R_ALPHA_NONE. */
cfb8c092 11779 case EM_ADAPTEVA_EPIPHANY:
cb8f3167
NC
11780 case EM_PPC: /* R_PPC_NONE. */
11781 case EM_PPC64: /* R_PPC64_NONE. */
886a2506
NC
11782 case EM_ARC: /* R_ARC_NONE. */
11783 case EM_ARC_COMPACT: /* R_ARC_NONE. */
11784 case EM_ARC_COMPACT2: /* R_ARC_NONE. */
cb8f3167
NC
11785 case EM_ARM: /* R_ARM_NONE. */
11786 case EM_IA_64: /* R_IA64_NONE. */
11787 case EM_SH: /* R_SH_NONE. */
2a7b2e88 11788 case EM_S390_OLD:
cb8f3167
NC
11789 case EM_S390: /* R_390_NONE. */
11790 case EM_CRIS: /* R_CRIS_NONE. */
11791 case EM_X86_64: /* R_X86_64_NONE. */
8a9036a4 11792 case EM_L1OM: /* R_X86_64_NONE. */
7a9068fe 11793 case EM_K1OM: /* R_X86_64_NONE. */
cb8f3167 11794 case EM_MN10300: /* R_MN10300_NONE. */
3f8107ab 11795 case EM_FT32: /* R_FT32_NONE. */
5506d11a 11796 case EM_MOXIE: /* R_MOXIE_NONE. */
cb8f3167 11797 case EM_M32R: /* R_M32R_NONE. */
40b36596 11798 case EM_TI_C6000:/* R_C6000_NONE. */
aa137e4d
NC
11799 case EM_TILEGX: /* R_TILEGX_NONE. */
11800 case EM_TILEPRO: /* R_TILEPRO_NONE. */
c29aca4a
NC
11801 case EM_XC16X:
11802 case EM_C166: /* R_XC16X_NONE. */
36591ba1
SL
11803 case EM_ALTERA_NIOS2: /* R_NIOS2_NONE. */
11804 case EM_NIOS32: /* R_NIOS_NONE. */
73589c9d 11805 case EM_OR1K: /* R_OR1K_NONE. */
cb8f3167 11806 return reloc_type == 0;
a06ea964
NC
11807 case EM_AARCH64:
11808 return reloc_type == 0 || reloc_type == 256;
35c08157
KLC
11809 case EM_NDS32:
11810 return (reloc_type == 0 /* R_XTENSA_NONE. */
11811 || reloc_type == 204 /* R_NDS32_DIFF8. */
11812 || reloc_type == 205 /* R_NDS32_DIFF16. */
11813 || reloc_type == 206 /* R_NDS32_DIFF32. */
11814 || reloc_type == 207 /* R_NDS32_ULEB128. */);
58332dda
JK
11815 case EM_XTENSA_OLD:
11816 case EM_XTENSA:
4dc3c23d
AM
11817 return (reloc_type == 0 /* R_XTENSA_NONE. */
11818 || reloc_type == 17 /* R_XTENSA_DIFF8. */
11819 || reloc_type == 18 /* R_XTENSA_DIFF16. */
11820 || reloc_type == 19 /* R_XTENSA_DIFF32. */);
a3c62988
NC
11821 case EM_METAG:
11822 return reloc_type == 3; /* R_METAG_NONE. */
2a7b2e88
JK
11823 }
11824 return FALSE;
11825}
11826
d1c4b12b
NC
11827/* Returns TRUE if there is a relocation against
11828 section NAME at OFFSET bytes. */
11829
11830bfd_boolean
11831reloc_at (struct dwarf_section * dsec, dwarf_vma offset)
11832{
11833 Elf_Internal_Rela * relocs;
11834 Elf_Internal_Rela * rp;
11835
11836 if (dsec == NULL || dsec->reloc_info == NULL)
11837 return FALSE;
11838
11839 relocs = (Elf_Internal_Rela *) dsec->reloc_info;
11840
11841 for (rp = relocs; rp < relocs + dsec->num_relocs; ++rp)
11842 if (rp->r_offset == offset)
11843 return TRUE;
11844
11845 return FALSE;
11846}
11847
cf13d699
NC
11848/* Apply relocations to a section.
11849 Note: So far support has been added only for those relocations
11850 which can be found in debug sections.
d1c4b12b
NC
11851 If RELOCS_RETURN is non-NULL then returns in it a pointer to the
11852 loaded relocs. It is then the caller's responsibility to free them.
cf13d699 11853 FIXME: Add support for more relocations ? */
1b315056 11854
cf13d699 11855static void
d1c4b12b
NC
11856apply_relocations (void * file,
11857 const Elf_Internal_Shdr * section,
11858 unsigned char * start,
11859 bfd_size_type size,
11860 void ** relocs_return,
11861 unsigned long * num_relocs_return)
1b315056 11862{
cf13d699 11863 Elf_Internal_Shdr * relsec;
0d2a7a93 11864 unsigned char * end = start + size;
cb8f3167 11865
d1c4b12b
NC
11866 if (relocs_return != NULL)
11867 {
11868 * (Elf_Internal_Rela **) relocs_return = NULL;
11869 * num_relocs_return = 0;
11870 }
11871
cf13d699
NC
11872 if (elf_header.e_type != ET_REL)
11873 return;
1b315056 11874
cf13d699 11875 /* Find the reloc section associated with the section. */
5b18a4bc
NC
11876 for (relsec = section_headers;
11877 relsec < section_headers + elf_header.e_shnum;
11878 ++relsec)
252b5132 11879 {
41e92641
NC
11880 bfd_boolean is_rela;
11881 unsigned long num_relocs;
2cf0635d
NC
11882 Elf_Internal_Rela * relocs;
11883 Elf_Internal_Rela * rp;
11884 Elf_Internal_Shdr * symsec;
11885 Elf_Internal_Sym * symtab;
ba5cdace 11886 unsigned long num_syms;
2cf0635d 11887 Elf_Internal_Sym * sym;
252b5132 11888
41e92641 11889 if ((relsec->sh_type != SHT_RELA && relsec->sh_type != SHT_REL)
4fbb74a6
AM
11890 || relsec->sh_info >= elf_header.e_shnum
11891 || section_headers + relsec->sh_info != section
c256ffe7 11892 || relsec->sh_size == 0
4fbb74a6 11893 || relsec->sh_link >= elf_header.e_shnum)
5b18a4bc 11894 continue;
428409d5 11895
41e92641
NC
11896 is_rela = relsec->sh_type == SHT_RELA;
11897
11898 if (is_rela)
11899 {
3f5e193b
NC
11900 if (!slurp_rela_relocs ((FILE *) file, relsec->sh_offset,
11901 relsec->sh_size, & relocs, & num_relocs))
41e92641
NC
11902 return;
11903 }
11904 else
11905 {
3f5e193b
NC
11906 if (!slurp_rel_relocs ((FILE *) file, relsec->sh_offset,
11907 relsec->sh_size, & relocs, & num_relocs))
41e92641
NC
11908 return;
11909 }
11910
11911 /* SH uses RELA but uses in place value instead of the addend field. */
11912 if (elf_header.e_machine == EM_SH)
11913 is_rela = FALSE;
428409d5 11914
4fbb74a6 11915 symsec = section_headers + relsec->sh_link;
ba5cdace 11916 symtab = GET_ELF_SYMBOLS ((FILE *) file, symsec, & num_syms);
103f02d3 11917
41e92641 11918 for (rp = relocs; rp < relocs + num_relocs; ++rp)
252b5132 11919 {
41e92641
NC
11920 bfd_vma addend;
11921 unsigned int reloc_type;
11922 unsigned int reloc_size;
91d6fa6a 11923 unsigned char * rloc;
ba5cdace 11924 unsigned long sym_index;
4b78141a 11925
aca88567 11926 reloc_type = get_reloc_type (rp->r_info);
41e92641 11927
98fb390a 11928 if (target_specific_reloc_handling (rp, start, symtab))
2a7b2e88 11929 continue;
98fb390a
NC
11930 else if (is_none_reloc (reloc_type))
11931 continue;
11932 else if (is_32bit_abs_reloc (reloc_type)
11933 || is_32bit_pcrel_reloc (reloc_type))
aca88567 11934 reloc_size = 4;
85acf597
RH
11935 else if (is_64bit_abs_reloc (reloc_type)
11936 || is_64bit_pcrel_reloc (reloc_type))
aca88567 11937 reloc_size = 8;
4dc3c23d
AM
11938 else if (is_24bit_abs_reloc (reloc_type))
11939 reloc_size = 3;
aca88567
NC
11940 else if (is_16bit_abs_reloc (reloc_type))
11941 reloc_size = 2;
11942 else
4b78141a 11943 {
bee0ee85
NC
11944 static unsigned int prev_reloc = 0;
11945 if (reloc_type != prev_reloc)
11946 warn (_("unable to apply unsupported reloc type %d to section %s\n"),
11947 reloc_type, printable_section_name (section));
11948 prev_reloc = reloc_type;
4b78141a
NC
11949 continue;
11950 }
103f02d3 11951
91d6fa6a 11952 rloc = start + rp->r_offset;
c8da6823 11953 if ((rloc + reloc_size) > end || (rloc < start))
700dd8b7
L
11954 {
11955 warn (_("skipping invalid relocation offset 0x%lx in section %s\n"),
11956 (unsigned long) rp->r_offset,
74e1a04b 11957 printable_section_name (section));
700dd8b7
L
11958 continue;
11959 }
103f02d3 11960
ba5cdace
NC
11961 sym_index = (unsigned long) get_reloc_symindex (rp->r_info);
11962 if (sym_index >= num_syms)
11963 {
11964 warn (_("skipping invalid relocation symbol index 0x%lx in section %s\n"),
74e1a04b 11965 sym_index, printable_section_name (section));
ba5cdace
NC
11966 continue;
11967 }
11968 sym = symtab + sym_index;
41e92641
NC
11969
11970 /* If the reloc has a symbol associated with it,
55f25fc3
L
11971 make sure that it is of an appropriate type.
11972
11973 Relocations against symbols without type can happen.
11974 Gcc -feliminate-dwarf2-dups may generate symbols
11975 without type for debug info.
11976
11977 Icc generates relocations against function symbols
11978 instead of local labels.
11979
11980 Relocations against object symbols can happen, eg when
11981 referencing a global array. For an example of this see
11982 the _clz.o binary in libgcc.a. */
aca88567 11983 if (sym != symtab
55f25fc3 11984 && ELF_ST_TYPE (sym->st_info) > STT_SECTION)
5b18a4bc 11985 {
41e92641 11986 warn (_("skipping unexpected symbol type %s in %ld'th relocation in section %s\n"),
aca88567 11987 get_symbol_type (ELF_ST_TYPE (sym->st_info)),
99dcb0b9 11988 (long int)(rp - relocs),
74e1a04b 11989 printable_section_name (relsec));
aca88567 11990 continue;
5b18a4bc 11991 }
252b5132 11992
4dc3c23d
AM
11993 addend = 0;
11994 if (is_rela)
11995 addend += rp->r_addend;
c47320c3
AM
11996 /* R_XTENSA_32, R_PJ_DATA_DIR32 and R_D30V_32_NORMAL are
11997 partial_inplace. */
4dc3c23d
AM
11998 if (!is_rela
11999 || (elf_header.e_machine == EM_XTENSA
12000 && reloc_type == 1)
12001 || ((elf_header.e_machine == EM_PJ
12002 || elf_header.e_machine == EM_PJ_OLD)
c47320c3
AM
12003 && reloc_type == 1)
12004 || ((elf_header.e_machine == EM_D30V
12005 || elf_header.e_machine == EM_CYGNUS_D30V)
12006 && reloc_type == 12))
91d6fa6a 12007 addend += byte_get (rloc, reloc_size);
cb8f3167 12008
85acf597
RH
12009 if (is_32bit_pcrel_reloc (reloc_type)
12010 || is_64bit_pcrel_reloc (reloc_type))
12011 {
12012 /* On HPPA, all pc-relative relocations are biased by 8. */
12013 if (elf_header.e_machine == EM_PARISC)
12014 addend -= 8;
91d6fa6a 12015 byte_put (rloc, (addend + sym->st_value) - rp->r_offset,
85acf597
RH
12016 reloc_size);
12017 }
41e92641 12018 else
91d6fa6a 12019 byte_put (rloc, addend + sym->st_value, reloc_size);
5b18a4bc 12020 }
252b5132 12021
5b18a4bc 12022 free (symtab);
d1c4b12b
NC
12023
12024 if (relocs_return)
12025 {
12026 * (Elf_Internal_Rela **) relocs_return = relocs;
12027 * num_relocs_return = num_relocs;
12028 }
12029 else
12030 free (relocs);
12031
5b18a4bc
NC
12032 break;
12033 }
5b18a4bc 12034}
103f02d3 12035
cf13d699
NC
12036#ifdef SUPPORT_DISASSEMBLY
12037static int
12038disassemble_section (Elf_Internal_Shdr * section, FILE * file)
12039{
74e1a04b 12040 printf (_("\nAssembly dump of section %s\n"), printable_section_name (section));
cf13d699 12041
74e1a04b 12042 /* FIXME: XXX -- to be done --- XXX */
cf13d699
NC
12043
12044 return 1;
12045}
12046#endif
12047
12048/* Reads in the contents of SECTION from FILE, returning a pointer
12049 to a malloc'ed buffer or NULL if something went wrong. */
12050
12051static char *
12052get_section_contents (Elf_Internal_Shdr * section, FILE * file)
12053{
12054 bfd_size_type num_bytes;
12055
12056 num_bytes = section->sh_size;
12057
12058 if (num_bytes == 0 || section->sh_type == SHT_NOBITS)
12059 {
12060 printf (_("\nSection '%s' has no data to dump.\n"),
74e1a04b 12061 printable_section_name (section));
cf13d699
NC
12062 return NULL;
12063 }
12064
3f5e193b
NC
12065 return (char *) get_data (NULL, file, section->sh_offset, 1, num_bytes,
12066 _("section contents"));
cf13d699
NC
12067}
12068
0e602686
NC
12069/* Uncompresses a section that was compressed using zlib, in place. */
12070
12071static bfd_boolean
12072uncompress_section_contents (unsigned char **buffer,
12073 dwarf_size_type uncompressed_size,
12074 dwarf_size_type *size)
12075{
12076 dwarf_size_type compressed_size = *size;
12077 unsigned char * compressed_buffer = *buffer;
12078 unsigned char * uncompressed_buffer;
12079 z_stream strm;
12080 int rc;
12081
12082 /* It is possible the section consists of several compressed
12083 buffers concatenated together, so we uncompress in a loop. */
12084 /* PR 18313: The state field in the z_stream structure is supposed
12085 to be invisible to the user (ie us), but some compilers will
12086 still complain about it being used without initialisation. So
12087 we first zero the entire z_stream structure and then set the fields
12088 that we need. */
12089 memset (& strm, 0, sizeof strm);
12090 strm.avail_in = compressed_size;
12091 strm.next_in = (Bytef *) compressed_buffer;
12092 strm.avail_out = uncompressed_size;
12093 uncompressed_buffer = (unsigned char *) xmalloc (uncompressed_size);
12094
12095 rc = inflateInit (& strm);
12096 while (strm.avail_in > 0)
12097 {
12098 if (rc != Z_OK)
12099 goto fail;
12100 strm.next_out = ((Bytef *) uncompressed_buffer
12101 + (uncompressed_size - strm.avail_out));
12102 rc = inflate (&strm, Z_FINISH);
12103 if (rc != Z_STREAM_END)
12104 goto fail;
12105 rc = inflateReset (& strm);
12106 }
12107 rc = inflateEnd (& strm);
12108 if (rc != Z_OK
12109 || strm.avail_out != 0)
12110 goto fail;
12111
12112 *buffer = uncompressed_buffer;
12113 *size = uncompressed_size;
12114 return TRUE;
12115
12116 fail:
12117 free (uncompressed_buffer);
12118 /* Indicate decompression failure. */
12119 *buffer = NULL;
12120 return FALSE;
12121}
dd24e3da 12122
cf13d699
NC
12123static void
12124dump_section_as_strings (Elf_Internal_Shdr * section, FILE * file)
12125{
0e602686
NC
12126 Elf_Internal_Shdr * relsec;
12127 bfd_size_type num_bytes;
fd8008d8
L
12128 unsigned char * data;
12129 unsigned char * end;
12130 unsigned char * real_start;
12131 unsigned char * start;
0e602686 12132 bfd_boolean some_strings_shown;
cf13d699 12133
fd8008d8
L
12134 real_start = start = (unsigned char *) get_section_contents (section,
12135 file);
cf13d699
NC
12136 if (start == NULL)
12137 return;
0e602686 12138 num_bytes = section->sh_size;
cf13d699 12139
74e1a04b 12140 printf (_("\nString dump of section '%s':\n"), printable_section_name (section));
cf13d699 12141
0e602686
NC
12142 if (decompress_dumps)
12143 {
12144 dwarf_size_type new_size = num_bytes;
12145 dwarf_size_type uncompressed_size = 0;
12146
12147 if ((section->sh_flags & SHF_COMPRESSED) != 0)
12148 {
12149 Elf_Internal_Chdr chdr;
12150 unsigned int compression_header_size
12151 = get_compression_header (& chdr, (unsigned char *) start);
12152
813dabb9 12153 if (chdr.ch_type != ELFCOMPRESS_ZLIB)
0e602686 12154 {
813dabb9
L
12155 warn (_("section '%s' has unsupported compress type: %d\n"),
12156 printable_section_name (section), chdr.ch_type);
12157 return;
12158 }
12159 else if (chdr.ch_addralign != section->sh_addralign)
12160 {
12161 warn (_("compressed section '%s' is corrupted\n"),
12162 printable_section_name (section));
12163 return;
0e602686 12164 }
813dabb9
L
12165 uncompressed_size = chdr.ch_size;
12166 start += compression_header_size;
12167 new_size -= compression_header_size;
0e602686
NC
12168 }
12169 else if (new_size > 12 && streq ((char *) start, "ZLIB"))
12170 {
12171 /* Read the zlib header. In this case, it should be "ZLIB"
12172 followed by the uncompressed section size, 8 bytes in
12173 big-endian order. */
12174 uncompressed_size = start[4]; uncompressed_size <<= 8;
12175 uncompressed_size += start[5]; uncompressed_size <<= 8;
12176 uncompressed_size += start[6]; uncompressed_size <<= 8;
12177 uncompressed_size += start[7]; uncompressed_size <<= 8;
12178 uncompressed_size += start[8]; uncompressed_size <<= 8;
12179 uncompressed_size += start[9]; uncompressed_size <<= 8;
12180 uncompressed_size += start[10]; uncompressed_size <<= 8;
12181 uncompressed_size += start[11];
12182 start += 12;
12183 new_size -= 12;
12184 }
12185
12186 if (uncompressed_size
fd8008d8 12187 && uncompress_section_contents (& start,
0e602686
NC
12188 uncompressed_size, & new_size))
12189 num_bytes = new_size;
12190 }
fd8008d8 12191
cf13d699
NC
12192 /* If the section being dumped has relocations against it the user might
12193 be expecting these relocations to have been applied. Check for this
12194 case and issue a warning message in order to avoid confusion.
12195 FIXME: Maybe we ought to have an option that dumps a section with
12196 relocs applied ? */
12197 for (relsec = section_headers;
12198 relsec < section_headers + elf_header.e_shnum;
12199 ++relsec)
12200 {
12201 if ((relsec->sh_type != SHT_RELA && relsec->sh_type != SHT_REL)
12202 || relsec->sh_info >= elf_header.e_shnum
12203 || section_headers + relsec->sh_info != section
12204 || relsec->sh_size == 0
12205 || relsec->sh_link >= elf_header.e_shnum)
12206 continue;
12207
12208 printf (_(" Note: This section has relocations against it, but these have NOT been applied to this dump.\n"));
12209 break;
12210 }
12211
cf13d699
NC
12212 data = start;
12213 end = start + num_bytes;
12214 some_strings_shown = FALSE;
12215
12216 while (data < end)
12217 {
12218 while (!ISPRINT (* data))
12219 if (++ data >= end)
12220 break;
12221
12222 if (data < end)
12223 {
071436c6
NC
12224 size_t maxlen = end - data;
12225
cf13d699 12226#ifndef __MSVCRT__
c975cc98
NC
12227 /* PR 11128: Use two separate invocations in order to work
12228 around bugs in the Solaris 8 implementation of printf. */
12229 printf (" [%6tx] ", data - start);
cf13d699 12230#else
071436c6 12231 printf (" [%6Ix] ", (size_t) (data - start));
cf13d699 12232#endif
4082ef84
NC
12233 if (maxlen > 0)
12234 {
fd8008d8 12235 print_symbol ((int) maxlen, (const char *) data);
4082ef84 12236 putchar ('\n');
fd8008d8 12237 data += strnlen ((const char *) data, maxlen);
4082ef84
NC
12238 }
12239 else
12240 {
12241 printf (_("<corrupt>\n"));
12242 data = end;
12243 }
cf13d699
NC
12244 some_strings_shown = TRUE;
12245 }
12246 }
12247
12248 if (! some_strings_shown)
12249 printf (_(" No strings found in this section."));
12250
0e602686 12251 free (real_start);
cf13d699
NC
12252
12253 putchar ('\n');
12254}
12255
12256static void
12257dump_section_as_bytes (Elf_Internal_Shdr * section,
12258 FILE * file,
12259 bfd_boolean relocate)
12260{
12261 Elf_Internal_Shdr * relsec;
0e602686
NC
12262 bfd_size_type bytes;
12263 bfd_size_type section_size;
12264 bfd_vma addr;
12265 unsigned char * data;
12266 unsigned char * real_start;
12267 unsigned char * start;
12268
12269 real_start = start = (unsigned char *) get_section_contents (section, file);
cf13d699
NC
12270 if (start == NULL)
12271 return;
0e602686 12272 section_size = section->sh_size;
cf13d699 12273
74e1a04b 12274 printf (_("\nHex dump of section '%s':\n"), printable_section_name (section));
cf13d699 12275
0e602686
NC
12276 if (decompress_dumps)
12277 {
12278 dwarf_size_type new_size = section_size;
12279 dwarf_size_type uncompressed_size = 0;
12280
12281 if ((section->sh_flags & SHF_COMPRESSED) != 0)
12282 {
12283 Elf_Internal_Chdr chdr;
12284 unsigned int compression_header_size
12285 = get_compression_header (& chdr, start);
12286
813dabb9 12287 if (chdr.ch_type != ELFCOMPRESS_ZLIB)
0e602686 12288 {
813dabb9
L
12289 warn (_("section '%s' has unsupported compress type: %d\n"),
12290 printable_section_name (section), chdr.ch_type);
12291 return;
0e602686 12292 }
813dabb9
L
12293 else if (chdr.ch_addralign != section->sh_addralign)
12294 {
12295 warn (_("compressed section '%s' is corrupted\n"),
12296 printable_section_name (section));
12297 return;
12298 }
12299 uncompressed_size = chdr.ch_size;
12300 start += compression_header_size;
12301 new_size -= compression_header_size;
0e602686
NC
12302 }
12303 else if (new_size > 12 && streq ((char *) start, "ZLIB"))
12304 {
12305 /* Read the zlib header. In this case, it should be "ZLIB"
12306 followed by the uncompressed section size, 8 bytes in
12307 big-endian order. */
12308 uncompressed_size = start[4]; uncompressed_size <<= 8;
12309 uncompressed_size += start[5]; uncompressed_size <<= 8;
12310 uncompressed_size += start[6]; uncompressed_size <<= 8;
12311 uncompressed_size += start[7]; uncompressed_size <<= 8;
12312 uncompressed_size += start[8]; uncompressed_size <<= 8;
12313 uncompressed_size += start[9]; uncompressed_size <<= 8;
12314 uncompressed_size += start[10]; uncompressed_size <<= 8;
12315 uncompressed_size += start[11];
12316 start += 12;
12317 new_size -= 12;
12318 }
12319
12320 if (uncompressed_size
12321 && uncompress_section_contents (& start, uncompressed_size,
12322 & new_size))
12323 section_size = new_size;
12324 }
14ae95f2 12325
cf13d699
NC
12326 if (relocate)
12327 {
0e602686 12328 apply_relocations (file, section, start, section_size, NULL, NULL);
cf13d699
NC
12329 }
12330 else
12331 {
12332 /* If the section being dumped has relocations against it the user might
12333 be expecting these relocations to have been applied. Check for this
12334 case and issue a warning message in order to avoid confusion.
12335 FIXME: Maybe we ought to have an option that dumps a section with
12336 relocs applied ? */
12337 for (relsec = section_headers;
12338 relsec < section_headers + elf_header.e_shnum;
12339 ++relsec)
12340 {
12341 if ((relsec->sh_type != SHT_RELA && relsec->sh_type != SHT_REL)
12342 || relsec->sh_info >= elf_header.e_shnum
12343 || section_headers + relsec->sh_info != section
12344 || relsec->sh_size == 0
12345 || relsec->sh_link >= elf_header.e_shnum)
12346 continue;
12347
12348 printf (_(" NOTE: This section has relocations against it, but these have NOT been applied to this dump.\n"));
12349 break;
12350 }
12351 }
12352
12353 addr = section->sh_addr;
0e602686 12354 bytes = section_size;
cf13d699
NC
12355 data = start;
12356
12357 while (bytes)
12358 {
12359 int j;
12360 int k;
12361 int lbytes;
12362
12363 lbytes = (bytes > 16 ? 16 : bytes);
12364
12365 printf (" 0x%8.8lx ", (unsigned long) addr);
12366
12367 for (j = 0; j < 16; j++)
12368 {
12369 if (j < lbytes)
12370 printf ("%2.2x", data[j]);
12371 else
12372 printf (" ");
12373
12374 if ((j & 3) == 3)
12375 printf (" ");
12376 }
12377
12378 for (j = 0; j < lbytes; j++)
12379 {
12380 k = data[j];
12381 if (k >= ' ' && k < 0x7f)
12382 printf ("%c", k);
12383 else
12384 printf (".");
12385 }
12386
12387 putchar ('\n');
12388
12389 data += lbytes;
12390 addr += lbytes;
12391 bytes -= lbytes;
12392 }
12393
0e602686 12394 free (real_start);
cf13d699
NC
12395
12396 putchar ('\n');
12397}
12398
d966045b
DJ
12399static int
12400load_specific_debug_section (enum dwarf_section_display_enum debug,
0d2a7a93 12401 const Elf_Internal_Shdr * sec, void * file)
1007acb3 12402{
2cf0635d 12403 struct dwarf_section * section = &debug_displays [debug].section;
19e6b90e 12404 char buf [64];
1007acb3 12405
19e6b90e
L
12406 /* If it is already loaded, do nothing. */
12407 if (section->start != NULL)
12408 return 1;
1007acb3 12409
19e6b90e
L
12410 snprintf (buf, sizeof (buf), _("%s section data"), section->name);
12411 section->address = sec->sh_addr;
06614111 12412 section->user_data = NULL;
3f5e193b
NC
12413 section->start = (unsigned char *) get_data (NULL, (FILE *) file,
12414 sec->sh_offset, 1,
12415 sec->sh_size, buf);
59245841
NC
12416 if (section->start == NULL)
12417 section->size = 0;
12418 else
12419 {
77115a4a
L
12420 unsigned char *start = section->start;
12421 dwarf_size_type size = sec->sh_size;
dab394de 12422 dwarf_size_type uncompressed_size = 0;
77115a4a
L
12423
12424 if ((sec->sh_flags & SHF_COMPRESSED) != 0)
12425 {
12426 Elf_Internal_Chdr chdr;
12427 unsigned int compression_header_size
12428 = get_compression_header (&chdr, start);
813dabb9
L
12429 if (chdr.ch_type != ELFCOMPRESS_ZLIB)
12430 {
12431 warn (_("section '%s' has unsupported compress type: %d\n"),
12432 section->name, chdr.ch_type);
12433 return 0;
12434 }
12435 else if (chdr.ch_addralign != sec->sh_addralign)
12436 {
12437 warn (_("compressed section '%s' is corrupted\n"),
12438 section->name);
12439 return 0;
12440 }
dab394de 12441 uncompressed_size = chdr.ch_size;
77115a4a
L
12442 start += compression_header_size;
12443 size -= compression_header_size;
12444 }
dab394de
L
12445 else if (size > 12 && streq ((char *) start, "ZLIB"))
12446 {
12447 /* Read the zlib header. In this case, it should be "ZLIB"
12448 followed by the uncompressed section size, 8 bytes in
12449 big-endian order. */
12450 uncompressed_size = start[4]; uncompressed_size <<= 8;
12451 uncompressed_size += start[5]; uncompressed_size <<= 8;
12452 uncompressed_size += start[6]; uncompressed_size <<= 8;
12453 uncompressed_size += start[7]; uncompressed_size <<= 8;
12454 uncompressed_size += start[8]; uncompressed_size <<= 8;
12455 uncompressed_size += start[9]; uncompressed_size <<= 8;
12456 uncompressed_size += start[10]; uncompressed_size <<= 8;
12457 uncompressed_size += start[11];
12458 start += 12;
12459 size -= 12;
12460 }
12461
12462 if (uncompressed_size
12463 && uncompress_section_contents (&start, uncompressed_size,
12464 &size))
77115a4a
L
12465 {
12466 /* Free the compressed buffer, update the section buffer
12467 and the section size if uncompress is successful. */
12468 free (section->start);
12469 section->start = start;
77115a4a
L
12470 }
12471 section->size = size;
59245841 12472 }
4a114e3e 12473
1b315056
CS
12474 if (section->start == NULL)
12475 return 0;
12476
19e6b90e 12477 if (debug_displays [debug].relocate)
d1c4b12b
NC
12478 apply_relocations ((FILE *) file, sec, section->start, section->size,
12479 & section->reloc_info, & section->num_relocs);
12480 else
12481 {
12482 section->reloc_info = NULL;
12483 section->num_relocs = 0;
12484 }
1007acb3 12485
1b315056 12486 return 1;
1007acb3
L
12487}
12488
657d0d47
CC
12489/* If this is not NULL, load_debug_section will only look for sections
12490 within the list of sections given here. */
12491unsigned int *section_subset = NULL;
12492
d966045b 12493int
2cf0635d 12494load_debug_section (enum dwarf_section_display_enum debug, void * file)
d966045b 12495{
2cf0635d
NC
12496 struct dwarf_section * section = &debug_displays [debug].section;
12497 Elf_Internal_Shdr * sec;
d966045b
DJ
12498
12499 /* Locate the debug section. */
657d0d47 12500 sec = find_section_in_set (section->uncompressed_name, section_subset);
d966045b
DJ
12501 if (sec != NULL)
12502 section->name = section->uncompressed_name;
12503 else
12504 {
657d0d47 12505 sec = find_section_in_set (section->compressed_name, section_subset);
d966045b
DJ
12506 if (sec != NULL)
12507 section->name = section->compressed_name;
12508 }
12509 if (sec == NULL)
12510 return 0;
12511
657d0d47
CC
12512 /* If we're loading from a subset of sections, and we've loaded
12513 a section matching this name before, it's likely that it's a
12514 different one. */
12515 if (section_subset != NULL)
12516 free_debug_section (debug);
12517
3f5e193b 12518 return load_specific_debug_section (debug, sec, (FILE *) file);
d966045b
DJ
12519}
12520
19e6b90e
L
12521void
12522free_debug_section (enum dwarf_section_display_enum debug)
1007acb3 12523{
2cf0635d 12524 struct dwarf_section * section = &debug_displays [debug].section;
1007acb3 12525
19e6b90e
L
12526 if (section->start == NULL)
12527 return;
1007acb3 12528
19e6b90e
L
12529 free ((char *) section->start);
12530 section->start = NULL;
12531 section->address = 0;
12532 section->size = 0;
1007acb3
L
12533}
12534
1007acb3 12535static int
657d0d47 12536display_debug_section (int shndx, Elf_Internal_Shdr * section, FILE * file)
1007acb3 12537{
2cf0635d 12538 char * name = SECTION_NAME (section);
74e1a04b 12539 const char * print_name = printable_section_name (section);
19e6b90e
L
12540 bfd_size_type length;
12541 int result = 1;
3f5e193b 12542 int i;
1007acb3 12543
19e6b90e
L
12544 length = section->sh_size;
12545 if (length == 0)
1007acb3 12546 {
74e1a04b 12547 printf (_("\nSection '%s' has no debugging data.\n"), print_name);
19e6b90e 12548 return 0;
1007acb3 12549 }
5dff79d8
NC
12550 if (section->sh_type == SHT_NOBITS)
12551 {
12552 /* There is no point in dumping the contents of a debugging section
12553 which has the NOBITS type - the bits in the file will be random.
12554 This can happen when a file containing a .eh_frame section is
12555 stripped with the --only-keep-debug command line option. */
74e1a04b
NC
12556 printf (_("section '%s' has the NOBITS type - its contents are unreliable.\n"),
12557 print_name);
5dff79d8
NC
12558 return 0;
12559 }
1007acb3 12560
0112cd26 12561 if (const_strneq (name, ".gnu.linkonce.wi."))
19e6b90e 12562 name = ".debug_info";
1007acb3 12563
19e6b90e
L
12564 /* See if we know how to display the contents of this section. */
12565 for (i = 0; i < max; i++)
1b315056 12566 if (streq (debug_displays[i].section.uncompressed_name, name)
b40bf0a2 12567 || (i == line && const_strneq (name, ".debug_line."))
1b315056 12568 || streq (debug_displays[i].section.compressed_name, name))
19e6b90e 12569 {
2cf0635d 12570 struct dwarf_section * sec = &debug_displays [i].section;
d966045b
DJ
12571 int secondary = (section != find_section (name));
12572
12573 if (secondary)
3f5e193b 12574 free_debug_section ((enum dwarf_section_display_enum) i);
1007acb3 12575
b40bf0a2
NC
12576 if (i == line && const_strneq (name, ".debug_line."))
12577 sec->name = name;
12578 else if (streq (sec->uncompressed_name, name))
d966045b
DJ
12579 sec->name = sec->uncompressed_name;
12580 else
12581 sec->name = sec->compressed_name;
3f5e193b
NC
12582 if (load_specific_debug_section ((enum dwarf_section_display_enum) i,
12583 section, file))
19e6b90e 12584 {
657d0d47
CC
12585 /* If this debug section is part of a CU/TU set in a .dwp file,
12586 restrict load_debug_section to the sections in that set. */
12587 section_subset = find_cu_tu_set (file, shndx);
12588
19e6b90e 12589 result &= debug_displays[i].display (sec, file);
1007acb3 12590
657d0d47
CC
12591 section_subset = NULL;
12592
d966045b 12593 if (secondary || (i != info && i != abbrev))
3f5e193b 12594 free_debug_section ((enum dwarf_section_display_enum) i);
19e6b90e 12595 }
1007acb3 12596
19e6b90e
L
12597 break;
12598 }
1007acb3 12599
19e6b90e 12600 if (i == max)
1007acb3 12601 {
74e1a04b 12602 printf (_("Unrecognized debug section: %s\n"), print_name);
19e6b90e 12603 result = 0;
1007acb3
L
12604 }
12605
19e6b90e 12606 return result;
5b18a4bc 12607}
103f02d3 12608
aef1f6d0
DJ
12609/* Set DUMP_SECTS for all sections where dumps were requested
12610 based on section name. */
12611
12612static void
12613initialise_dumps_byname (void)
12614{
2cf0635d 12615 struct dump_list_entry * cur;
aef1f6d0
DJ
12616
12617 for (cur = dump_sects_byname; cur; cur = cur->next)
12618 {
12619 unsigned int i;
12620 int any;
12621
12622 for (i = 0, any = 0; i < elf_header.e_shnum; i++)
12623 if (streq (SECTION_NAME (section_headers + i), cur->name))
12624 {
09c11c86 12625 request_dump_bynumber (i, cur->type);
aef1f6d0
DJ
12626 any = 1;
12627 }
12628
12629 if (!any)
12630 warn (_("Section '%s' was not dumped because it does not exist!\n"),
12631 cur->name);
12632 }
12633}
12634
5b18a4bc 12635static void
2cf0635d 12636process_section_contents (FILE * file)
5b18a4bc 12637{
2cf0635d 12638 Elf_Internal_Shdr * section;
19e6b90e 12639 unsigned int i;
103f02d3 12640
19e6b90e
L
12641 if (! do_dump)
12642 return;
103f02d3 12643
aef1f6d0
DJ
12644 initialise_dumps_byname ();
12645
19e6b90e
L
12646 for (i = 0, section = section_headers;
12647 i < elf_header.e_shnum && i < num_dump_sects;
12648 i++, section++)
12649 {
12650#ifdef SUPPORT_DISASSEMBLY
12651 if (dump_sects[i] & DISASS_DUMP)
12652 disassemble_section (section, file);
12653#endif
12654 if (dump_sects[i] & HEX_DUMP)
cf13d699 12655 dump_section_as_bytes (section, file, FALSE);
103f02d3 12656
cf13d699
NC
12657 if (dump_sects[i] & RELOC_DUMP)
12658 dump_section_as_bytes (section, file, TRUE);
09c11c86
NC
12659
12660 if (dump_sects[i] & STRING_DUMP)
12661 dump_section_as_strings (section, file);
cf13d699
NC
12662
12663 if (dump_sects[i] & DEBUG_DUMP)
657d0d47 12664 display_debug_section (i, section, file);
5b18a4bc 12665 }
103f02d3 12666
19e6b90e
L
12667 /* Check to see if the user requested a
12668 dump of a section that does not exist. */
12669 while (i++ < num_dump_sects)
12670 if (dump_sects[i])
12671 warn (_("Section %d was not dumped because it does not exist!\n"), i);
5b18a4bc 12672}
103f02d3 12673
5b18a4bc 12674static void
19e6b90e 12675process_mips_fpe_exception (int mask)
5b18a4bc 12676{
19e6b90e
L
12677 if (mask)
12678 {
12679 int first = 1;
12680 if (mask & OEX_FPU_INEX)
12681 fputs ("INEX", stdout), first = 0;
12682 if (mask & OEX_FPU_UFLO)
12683 printf ("%sUFLO", first ? "" : "|"), first = 0;
12684 if (mask & OEX_FPU_OFLO)
12685 printf ("%sOFLO", first ? "" : "|"), first = 0;
12686 if (mask & OEX_FPU_DIV0)
12687 printf ("%sDIV0", first ? "" : "|"), first = 0;
12688 if (mask & OEX_FPU_INVAL)
12689 printf ("%sINVAL", first ? "" : "|");
12690 }
5b18a4bc 12691 else
19e6b90e 12692 fputs ("0", stdout);
5b18a4bc 12693}
103f02d3 12694
f6f0e17b
NC
12695/* Display's the value of TAG at location P. If TAG is
12696 greater than 0 it is assumed to be an unknown tag, and
12697 a message is printed to this effect. Otherwise it is
12698 assumed that a message has already been printed.
12699
12700 If the bottom bit of TAG is set it assumed to have a
12701 string value, otherwise it is assumed to have an integer
12702 value.
12703
12704 Returns an updated P pointing to the first unread byte
12705 beyond the end of TAG's value.
12706
12707 Reads at or beyond END will not be made. */
12708
12709static unsigned char *
12710display_tag_value (int tag,
12711 unsigned char * p,
12712 const unsigned char * const end)
12713{
12714 unsigned long val;
12715
12716 if (tag > 0)
12717 printf (" Tag_unknown_%d: ", tag);
12718
12719 if (p >= end)
12720 {
4082ef84 12721 warn (_("<corrupt tag>\n"));
f6f0e17b
NC
12722 }
12723 else if (tag & 1)
12724 {
071436c6
NC
12725 /* PR 17531 file: 027-19978-0.004. */
12726 size_t maxlen = (end - p) - 1;
12727
12728 putchar ('"');
4082ef84
NC
12729 if (maxlen > 0)
12730 {
12731 print_symbol ((int) maxlen, (const char *) p);
12732 p += strnlen ((char *) p, maxlen) + 1;
12733 }
12734 else
12735 {
12736 printf (_("<corrupt string tag>"));
12737 p = (unsigned char *) end;
12738 }
071436c6 12739 printf ("\"\n");
f6f0e17b
NC
12740 }
12741 else
12742 {
12743 unsigned int len;
12744
12745 val = read_uleb128 (p, &len, end);
12746 p += len;
12747 printf ("%ld (0x%lx)\n", val, val);
12748 }
12749
4082ef84 12750 assert (p <= end);
f6f0e17b
NC
12751 return p;
12752}
12753
11c1ff18
PB
12754/* ARM EABI attributes section. */
12755typedef struct
12756{
70e99720 12757 unsigned int tag;
2cf0635d 12758 const char * name;
11c1ff18 12759 /* 0 = special, 1 = string, 2 = uleb123, > 0x80 == table lookup. */
70e99720 12760 unsigned int type;
2cf0635d 12761 const char ** table;
11c1ff18
PB
12762} arm_attr_public_tag;
12763
2cf0635d 12764static const char * arm_attr_tag_CPU_arch[] =
11c1ff18 12765 {"Pre-v4", "v4", "v4T", "v5T", "v5TE", "v5TEJ", "v6", "v6KZ", "v6T2",
ff8646ee
TP
12766 "v6K", "v7", "v6-M", "v6S-M", "v7E-M", "v8", "", "v8-M.baseline",
12767 "v8-M.mainline"};
2cf0635d
NC
12768static const char * arm_attr_tag_ARM_ISA_use[] = {"No", "Yes"};
12769static const char * arm_attr_tag_THUMB_ISA_use[] =
4ed7ed8d 12770 {"No", "Thumb-1", "Thumb-2", "Yes"};
75375b3e 12771static const char * arm_attr_tag_FP_arch[] =
bca38921 12772 {"No", "VFPv1", "VFPv2", "VFPv3", "VFPv3-D16", "VFPv4", "VFPv4-D16",
a715796b 12773 "FP for ARMv8", "FPv5/FP-D16 for ARMv8"};
2cf0635d 12774static const char * arm_attr_tag_WMMX_arch[] = {"No", "WMMXv1", "WMMXv2"};
dd24e3da 12775static const char * arm_attr_tag_Advanced_SIMD_arch[] =
bca38921 12776 {"No", "NEONv1", "NEONv1 with Fused-MAC", "NEON for ARMv8"};
2cf0635d 12777static const char * arm_attr_tag_PCS_config[] =
11c1ff18
PB
12778 {"None", "Bare platform", "Linux application", "Linux DSO", "PalmOS 2004",
12779 "PalmOS (reserved)", "SymbianOS 2004", "SymbianOS (reserved)"};
2cf0635d 12780static const char * arm_attr_tag_ABI_PCS_R9_use[] =
11c1ff18 12781 {"V6", "SB", "TLS", "Unused"};
2cf0635d 12782static const char * arm_attr_tag_ABI_PCS_RW_data[] =
11c1ff18 12783 {"Absolute", "PC-relative", "SB-relative", "None"};
2cf0635d 12784static const char * arm_attr_tag_ABI_PCS_RO_data[] =
11c1ff18 12785 {"Absolute", "PC-relative", "None"};
2cf0635d 12786static const char * arm_attr_tag_ABI_PCS_GOT_use[] =
11c1ff18 12787 {"None", "direct", "GOT-indirect"};
2cf0635d 12788static const char * arm_attr_tag_ABI_PCS_wchar_t[] =
11c1ff18 12789 {"None", "??? 1", "2", "??? 3", "4"};
2cf0635d
NC
12790static const char * arm_attr_tag_ABI_FP_rounding[] = {"Unused", "Needed"};
12791static const char * arm_attr_tag_ABI_FP_denormal[] =
f5f53991 12792 {"Unused", "Needed", "Sign only"};
2cf0635d
NC
12793static const char * arm_attr_tag_ABI_FP_exceptions[] = {"Unused", "Needed"};
12794static const char * arm_attr_tag_ABI_FP_user_exceptions[] = {"Unused", "Needed"};
12795static const char * arm_attr_tag_ABI_FP_number_model[] =
11c1ff18 12796 {"Unused", "Finite", "RTABI", "IEEE 754"};
2cf0635d 12797static const char * arm_attr_tag_ABI_enum_size[] =
11c1ff18 12798 {"Unused", "small", "int", "forced to int"};
2cf0635d 12799static const char * arm_attr_tag_ABI_HardFP_use[] =
99654aaf 12800 {"As Tag_FP_arch", "SP only", "Reserved", "Deprecated"};
2cf0635d 12801static const char * arm_attr_tag_ABI_VFP_args[] =
5c294fee 12802 {"AAPCS", "VFP registers", "custom", "compatible"};
2cf0635d 12803static const char * arm_attr_tag_ABI_WMMX_args[] =
11c1ff18 12804 {"AAPCS", "WMMX registers", "custom"};
2cf0635d 12805static const char * arm_attr_tag_ABI_optimization_goals[] =
11c1ff18
PB
12806 {"None", "Prefer Speed", "Aggressive Speed", "Prefer Size",
12807 "Aggressive Size", "Prefer Debug", "Aggressive Debug"};
2cf0635d 12808static const char * arm_attr_tag_ABI_FP_optimization_goals[] =
11c1ff18
PB
12809 {"None", "Prefer Speed", "Aggressive Speed", "Prefer Size",
12810 "Aggressive Size", "Prefer Accuracy", "Aggressive Accuracy"};
2cf0635d 12811static const char * arm_attr_tag_CPU_unaligned_access[] = {"None", "v6"};
75375b3e 12812static const char * arm_attr_tag_FP_HP_extension[] =
8e79c3df 12813 {"Not Allowed", "Allowed"};
2cf0635d 12814static const char * arm_attr_tag_ABI_FP_16bit_format[] =
8e79c3df 12815 {"None", "IEEE 754", "Alternative Format"};
dd24e3da 12816static const char * arm_attr_tag_MPextension_use[] =
cd21e546
MGD
12817 {"Not Allowed", "Allowed"};
12818static const char * arm_attr_tag_DIV_use[] =
dd24e3da 12819 {"Allowed in Thumb-ISA, v7-R or v7-M", "Not allowed",
cd21e546 12820 "Allowed in v7-A with integer division extension"};
2cf0635d
NC
12821static const char * arm_attr_tag_T2EE_use[] = {"Not Allowed", "Allowed"};
12822static const char * arm_attr_tag_Virtualization_use[] =
dd24e3da 12823 {"Not Allowed", "TrustZone", "Virtualization Extensions",
cd21e546 12824 "TrustZone and Virtualization Extensions"};
dd24e3da 12825static const char * arm_attr_tag_MPextension_use_legacy[] =
f5f53991 12826 {"Not Allowed", "Allowed"};
11c1ff18
PB
12827
12828#define LOOKUP(id, name) \
12829 {id, #name, 0x80 | ARRAY_SIZE(arm_attr_tag_##name), arm_attr_tag_##name}
d70c5fc7 12830static arm_attr_public_tag arm_attr_public_tags[] =
11c1ff18
PB
12831{
12832 {4, "CPU_raw_name", 1, NULL},
12833 {5, "CPU_name", 1, NULL},
12834 LOOKUP(6, CPU_arch),
12835 {7, "CPU_arch_profile", 0, NULL},
12836 LOOKUP(8, ARM_ISA_use),
12837 LOOKUP(9, THUMB_ISA_use),
75375b3e 12838 LOOKUP(10, FP_arch),
11c1ff18 12839 LOOKUP(11, WMMX_arch),
f5f53991
AS
12840 LOOKUP(12, Advanced_SIMD_arch),
12841 LOOKUP(13, PCS_config),
11c1ff18
PB
12842 LOOKUP(14, ABI_PCS_R9_use),
12843 LOOKUP(15, ABI_PCS_RW_data),
f5f53991 12844 LOOKUP(16, ABI_PCS_RO_data),
11c1ff18
PB
12845 LOOKUP(17, ABI_PCS_GOT_use),
12846 LOOKUP(18, ABI_PCS_wchar_t),
12847 LOOKUP(19, ABI_FP_rounding),
12848 LOOKUP(20, ABI_FP_denormal),
12849 LOOKUP(21, ABI_FP_exceptions),
12850 LOOKUP(22, ABI_FP_user_exceptions),
12851 LOOKUP(23, ABI_FP_number_model),
75375b3e
MGD
12852 {24, "ABI_align_needed", 0, NULL},
12853 {25, "ABI_align_preserved", 0, NULL},
11c1ff18
PB
12854 LOOKUP(26, ABI_enum_size),
12855 LOOKUP(27, ABI_HardFP_use),
12856 LOOKUP(28, ABI_VFP_args),
12857 LOOKUP(29, ABI_WMMX_args),
12858 LOOKUP(30, ABI_optimization_goals),
12859 LOOKUP(31, ABI_FP_optimization_goals),
8e79c3df 12860 {32, "compatibility", 0, NULL},
f5f53991 12861 LOOKUP(34, CPU_unaligned_access),
75375b3e 12862 LOOKUP(36, FP_HP_extension),
8e79c3df 12863 LOOKUP(38, ABI_FP_16bit_format),
cd21e546
MGD
12864 LOOKUP(42, MPextension_use),
12865 LOOKUP(44, DIV_use),
f5f53991
AS
12866 {64, "nodefaults", 0, NULL},
12867 {65, "also_compatible_with", 0, NULL},
12868 LOOKUP(66, T2EE_use),
12869 {67, "conformance", 1, NULL},
12870 LOOKUP(68, Virtualization_use),
cd21e546 12871 LOOKUP(70, MPextension_use_legacy)
11c1ff18
PB
12872};
12873#undef LOOKUP
12874
11c1ff18 12875static unsigned char *
f6f0e17b
NC
12876display_arm_attribute (unsigned char * p,
12877 const unsigned char * const end)
11c1ff18 12878{
70e99720 12879 unsigned int tag;
11c1ff18 12880 unsigned int len;
70e99720 12881 unsigned int val;
2cf0635d 12882 arm_attr_public_tag * attr;
11c1ff18 12883 unsigned i;
70e99720 12884 unsigned int type;
11c1ff18 12885
f6f0e17b 12886 tag = read_uleb128 (p, &len, end);
11c1ff18
PB
12887 p += len;
12888 attr = NULL;
2cf0635d 12889 for (i = 0; i < ARRAY_SIZE (arm_attr_public_tags); i++)
11c1ff18
PB
12890 {
12891 if (arm_attr_public_tags[i].tag == tag)
12892 {
12893 attr = &arm_attr_public_tags[i];
12894 break;
12895 }
12896 }
12897
12898 if (attr)
12899 {
12900 printf (" Tag_%s: ", attr->name);
12901 switch (attr->type)
12902 {
12903 case 0:
12904 switch (tag)
12905 {
12906 case 7: /* Tag_CPU_arch_profile. */
f6f0e17b 12907 val = read_uleb128 (p, &len, end);
11c1ff18
PB
12908 p += len;
12909 switch (val)
12910 {
2b692964
NC
12911 case 0: printf (_("None\n")); break;
12912 case 'A': printf (_("Application\n")); break;
12913 case 'R': printf (_("Realtime\n")); break;
12914 case 'M': printf (_("Microcontroller\n")); break;
12915 case 'S': printf (_("Application or Realtime\n")); break;
11c1ff18
PB
12916 default: printf ("??? (%d)\n", val); break;
12917 }
12918 break;
12919
75375b3e 12920 case 24: /* Tag_align_needed. */
f6f0e17b 12921 val = read_uleb128 (p, &len, end);
75375b3e
MGD
12922 p += len;
12923 switch (val)
12924 {
2b692964
NC
12925 case 0: printf (_("None\n")); break;
12926 case 1: printf (_("8-byte\n")); break;
12927 case 2: printf (_("4-byte\n")); break;
75375b3e
MGD
12928 case 3: printf ("??? 3\n"); break;
12929 default:
12930 if (val <= 12)
dd24e3da 12931 printf (_("8-byte and up to %d-byte extended\n"),
75375b3e
MGD
12932 1 << val);
12933 else
12934 printf ("??? (%d)\n", val);
12935 break;
12936 }
12937 break;
12938
12939 case 25: /* Tag_align_preserved. */
f6f0e17b 12940 val = read_uleb128 (p, &len, end);
75375b3e
MGD
12941 p += len;
12942 switch (val)
12943 {
2b692964
NC
12944 case 0: printf (_("None\n")); break;
12945 case 1: printf (_("8-byte, except leaf SP\n")); break;
12946 case 2: printf (_("8-byte\n")); break;
75375b3e
MGD
12947 case 3: printf ("??? 3\n"); break;
12948 default:
12949 if (val <= 12)
dd24e3da 12950 printf (_("8-byte and up to %d-byte extended\n"),
75375b3e
MGD
12951 1 << val);
12952 else
12953 printf ("??? (%d)\n", val);
12954 break;
12955 }
12956 break;
12957
11c1ff18 12958 case 32: /* Tag_compatibility. */
071436c6 12959 {
071436c6
NC
12960 val = read_uleb128 (p, &len, end);
12961 p += len;
071436c6 12962 printf (_("flag = %d, vendor = "), val);
4082ef84
NC
12963 if (p < end - 1)
12964 {
12965 size_t maxlen = (end - p) - 1;
12966
12967 print_symbol ((int) maxlen, (const char *) p);
12968 p += strnlen ((char *) p, maxlen) + 1;
12969 }
12970 else
12971 {
12972 printf (_("<corrupt>"));
12973 p = (unsigned char *) end;
12974 }
071436c6 12975 putchar ('\n');
071436c6 12976 }
11c1ff18
PB
12977 break;
12978
f5f53991 12979 case 64: /* Tag_nodefaults. */
541a3cbd
NC
12980 /* PR 17531: file: 001-505008-0.01. */
12981 if (p < end)
12982 p++;
2b692964 12983 printf (_("True\n"));
f5f53991
AS
12984 break;
12985
12986 case 65: /* Tag_also_compatible_with. */
f6f0e17b 12987 val = read_uleb128 (p, &len, end);
f5f53991
AS
12988 p += len;
12989 if (val == 6 /* Tag_CPU_arch. */)
12990 {
f6f0e17b 12991 val = read_uleb128 (p, &len, end);
f5f53991 12992 p += len;
071436c6 12993 if ((unsigned int) val >= ARRAY_SIZE (arm_attr_tag_CPU_arch))
f5f53991
AS
12994 printf ("??? (%d)\n", val);
12995 else
12996 printf ("%s\n", arm_attr_tag_CPU_arch[val]);
12997 }
12998 else
12999 printf ("???\n");
071436c6
NC
13000 while (p < end && *(p++) != '\0' /* NUL terminator. */)
13001 ;
f5f53991
AS
13002 break;
13003
11c1ff18 13004 default:
bee0ee85
NC
13005 printf (_("<unknown: %d>\n"), tag);
13006 break;
11c1ff18
PB
13007 }
13008 return p;
13009
13010 case 1:
f6f0e17b 13011 return display_tag_value (-1, p, end);
11c1ff18 13012 case 2:
f6f0e17b 13013 return display_tag_value (0, p, end);
11c1ff18
PB
13014
13015 default:
13016 assert (attr->type & 0x80);
f6f0e17b 13017 val = read_uleb128 (p, &len, end);
11c1ff18
PB
13018 p += len;
13019 type = attr->type & 0x7f;
13020 if (val >= type)
13021 printf ("??? (%d)\n", val);
13022 else
13023 printf ("%s\n", attr->table[val]);
13024 return p;
13025 }
13026 }
11c1ff18 13027
f6f0e17b 13028 return display_tag_value (tag, p, end);
11c1ff18
PB
13029}
13030
104d59d1 13031static unsigned char *
60bca95a 13032display_gnu_attribute (unsigned char * p,
f6f0e17b
NC
13033 unsigned char * (* display_proc_gnu_attribute) (unsigned char *, int, const unsigned char * const),
13034 const unsigned char * const end)
104d59d1
JM
13035{
13036 int tag;
13037 unsigned int len;
13038 int val;
104d59d1 13039
f6f0e17b 13040 tag = read_uleb128 (p, &len, end);
104d59d1
JM
13041 p += len;
13042
13043 /* Tag_compatibility is the only generic GNU attribute defined at
13044 present. */
13045 if (tag == 32)
13046 {
f6f0e17b 13047 val = read_uleb128 (p, &len, end);
104d59d1 13048 p += len;
071436c6
NC
13049
13050 printf (_("flag = %d, vendor = "), val);
f6f0e17b
NC
13051 if (p == end)
13052 {
071436c6 13053 printf (_("<corrupt>\n"));
f6f0e17b
NC
13054 warn (_("corrupt vendor attribute\n"));
13055 }
13056 else
13057 {
4082ef84
NC
13058 if (p < end - 1)
13059 {
13060 size_t maxlen = (end - p) - 1;
071436c6 13061
4082ef84
NC
13062 print_symbol ((int) maxlen, (const char *) p);
13063 p += strnlen ((char *) p, maxlen) + 1;
13064 }
13065 else
13066 {
13067 printf (_("<corrupt>"));
13068 p = (unsigned char *) end;
13069 }
071436c6 13070 putchar ('\n');
f6f0e17b 13071 }
104d59d1
JM
13072 return p;
13073 }
13074
13075 if ((tag & 2) == 0 && display_proc_gnu_attribute)
f6f0e17b 13076 return display_proc_gnu_attribute (p, tag, end);
104d59d1 13077
f6f0e17b 13078 return display_tag_value (tag, p, end);
104d59d1
JM
13079}
13080
34c8bcba 13081static unsigned char *
f6f0e17b
NC
13082display_power_gnu_attribute (unsigned char * p,
13083 int tag,
13084 const unsigned char * const end)
34c8bcba 13085{
34c8bcba
JM
13086 unsigned int len;
13087 int val;
13088
13089 if (tag == Tag_GNU_Power_ABI_FP)
13090 {
f6f0e17b 13091 val = read_uleb128 (p, &len, end);
34c8bcba
JM
13092 p += len;
13093 printf (" Tag_GNU_Power_ABI_FP: ");
60bca95a 13094
34c8bcba
JM
13095 switch (val)
13096 {
13097 case 0:
2b692964 13098 printf (_("Hard or soft float\n"));
34c8bcba
JM
13099 break;
13100 case 1:
2b692964 13101 printf (_("Hard float\n"));
34c8bcba
JM
13102 break;
13103 case 2:
2b692964 13104 printf (_("Soft float\n"));
34c8bcba 13105 break;
3c7b9897 13106 case 3:
2b692964 13107 printf (_("Single-precision hard float\n"));
3c7b9897 13108 break;
34c8bcba
JM
13109 default:
13110 printf ("??? (%d)\n", val);
13111 break;
13112 }
13113 return p;
13114 }
13115
c6e65352
DJ
13116 if (tag == Tag_GNU_Power_ABI_Vector)
13117 {
f6f0e17b 13118 val = read_uleb128 (p, &len, end);
c6e65352
DJ
13119 p += len;
13120 printf (" Tag_GNU_Power_ABI_Vector: ");
13121 switch (val)
13122 {
13123 case 0:
2b692964 13124 printf (_("Any\n"));
c6e65352
DJ
13125 break;
13126 case 1:
2b692964 13127 printf (_("Generic\n"));
c6e65352
DJ
13128 break;
13129 case 2:
13130 printf ("AltiVec\n");
13131 break;
13132 case 3:
13133 printf ("SPE\n");
13134 break;
13135 default:
13136 printf ("??? (%d)\n", val);
13137 break;
13138 }
13139 return p;
13140 }
13141
f82e0623
NF
13142 if (tag == Tag_GNU_Power_ABI_Struct_Return)
13143 {
f6f0e17b
NC
13144 if (p == end)
13145 {
071436c6 13146 warn (_("corrupt Tag_GNU_Power_ABI_Struct_Return\n"));
f6f0e17b
NC
13147 return p;
13148 }
0b4362b0 13149
f6f0e17b 13150 val = read_uleb128 (p, &len, end);
f82e0623
NF
13151 p += len;
13152 printf (" Tag_GNU_Power_ABI_Struct_Return: ");
13153 switch (val)
13154 {
13155 case 0:
2b692964 13156 printf (_("Any\n"));
f82e0623
NF
13157 break;
13158 case 1:
13159 printf ("r3/r4\n");
13160 break;
13161 case 2:
2b692964 13162 printf (_("Memory\n"));
f82e0623
NF
13163 break;
13164 default:
13165 printf ("??? (%d)\n", val);
13166 break;
13167 }
13168 return p;
13169 }
13170
f6f0e17b 13171 return display_tag_value (tag & 1, p, end);
34c8bcba
JM
13172}
13173
643f7afb
AK
13174static unsigned char *
13175display_s390_gnu_attribute (unsigned char * p,
13176 int tag,
13177 const unsigned char * const end)
13178{
13179 unsigned int len;
13180 int val;
13181
13182 if (tag == Tag_GNU_S390_ABI_Vector)
13183 {
13184 val = read_uleb128 (p, &len, end);
13185 p += len;
13186 printf (" Tag_GNU_S390_ABI_Vector: ");
13187
13188 switch (val)
13189 {
13190 case 0:
13191 printf (_("any\n"));
13192 break;
13193 case 1:
13194 printf (_("software\n"));
13195 break;
13196 case 2:
13197 printf (_("hardware\n"));
13198 break;
13199 default:
13200 printf ("??? (%d)\n", val);
13201 break;
13202 }
13203 return p;
13204 }
13205
13206 return display_tag_value (tag & 1, p, end);
13207}
13208
9e8c70f9
DM
13209static void
13210display_sparc_hwcaps (int mask)
13211{
13212 if (mask)
13213 {
13214 int first = 1;
071436c6 13215
9e8c70f9
DM
13216 if (mask & ELF_SPARC_HWCAP_MUL32)
13217 fputs ("mul32", stdout), first = 0;
13218 if (mask & ELF_SPARC_HWCAP_DIV32)
13219 printf ("%sdiv32", first ? "" : "|"), first = 0;
13220 if (mask & ELF_SPARC_HWCAP_FSMULD)
13221 printf ("%sfsmuld", first ? "" : "|"), first = 0;
13222 if (mask & ELF_SPARC_HWCAP_V8PLUS)
13223 printf ("%sv8plus", first ? "" : "|"), first = 0;
13224 if (mask & ELF_SPARC_HWCAP_POPC)
13225 printf ("%spopc", first ? "" : "|"), first = 0;
13226 if (mask & ELF_SPARC_HWCAP_VIS)
13227 printf ("%svis", first ? "" : "|"), first = 0;
13228 if (mask & ELF_SPARC_HWCAP_VIS2)
13229 printf ("%svis2", first ? "" : "|"), first = 0;
13230 if (mask & ELF_SPARC_HWCAP_ASI_BLK_INIT)
13231 printf ("%sASIBlkInit", first ? "" : "|"), first = 0;
13232 if (mask & ELF_SPARC_HWCAP_FMAF)
13233 printf ("%sfmaf", first ? "" : "|"), first = 0;
13234 if (mask & ELF_SPARC_HWCAP_VIS3)
13235 printf ("%svis3", first ? "" : "|"), first = 0;
13236 if (mask & ELF_SPARC_HWCAP_HPC)
13237 printf ("%shpc", first ? "" : "|"), first = 0;
13238 if (mask & ELF_SPARC_HWCAP_RANDOM)
13239 printf ("%srandom", first ? "" : "|"), first = 0;
13240 if (mask & ELF_SPARC_HWCAP_TRANS)
13241 printf ("%strans", first ? "" : "|"), first = 0;
13242 if (mask & ELF_SPARC_HWCAP_FJFMAU)
13243 printf ("%sfjfmau", first ? "" : "|"), first = 0;
13244 if (mask & ELF_SPARC_HWCAP_IMA)
13245 printf ("%sima", first ? "" : "|"), first = 0;
13246 if (mask & ELF_SPARC_HWCAP_ASI_CACHE_SPARING)
13247 printf ("%scspare", first ? "" : "|"), first = 0;
13248 }
13249 else
071436c6
NC
13250 fputc ('0', stdout);
13251 fputc ('\n', stdout);
9e8c70f9
DM
13252}
13253
3d68f91c
JM
13254static void
13255display_sparc_hwcaps2 (int mask)
13256{
13257 if (mask)
13258 {
13259 int first = 1;
071436c6 13260
3d68f91c
JM
13261 if (mask & ELF_SPARC_HWCAP2_FJATHPLUS)
13262 fputs ("fjathplus", stdout), first = 0;
13263 if (mask & ELF_SPARC_HWCAP2_VIS3B)
13264 printf ("%svis3b", first ? "" : "|"), first = 0;
13265 if (mask & ELF_SPARC_HWCAP2_ADP)
13266 printf ("%sadp", first ? "" : "|"), first = 0;
13267 if (mask & ELF_SPARC_HWCAP2_SPARC5)
13268 printf ("%ssparc5", first ? "" : "|"), first = 0;
13269 if (mask & ELF_SPARC_HWCAP2_MWAIT)
13270 printf ("%smwait", first ? "" : "|"), first = 0;
13271 if (mask & ELF_SPARC_HWCAP2_XMPMUL)
13272 printf ("%sxmpmul", first ? "" : "|"), first = 0;
13273 if (mask & ELF_SPARC_HWCAP2_XMONT)
13274 printf ("%sxmont2", first ? "" : "|"), first = 0;
13275 if (mask & ELF_SPARC_HWCAP2_NSEC)
13276 printf ("%snsec", first ? "" : "|"), first = 0;
13277 if (mask & ELF_SPARC_HWCAP2_FJATHHPC)
13278 printf ("%sfjathhpc", first ? "" : "|"), first = 0;
13279 if (mask & ELF_SPARC_HWCAP2_FJDES)
13280 printf ("%sfjdes", first ? "" : "|"), first = 0;
13281 if (mask & ELF_SPARC_HWCAP2_FJAES)
13282 printf ("%sfjaes", first ? "" : "|"), first = 0;
13283 }
13284 else
071436c6
NC
13285 fputc ('0', stdout);
13286 fputc ('\n', stdout);
3d68f91c
JM
13287}
13288
9e8c70f9 13289static unsigned char *
f6f0e17b
NC
13290display_sparc_gnu_attribute (unsigned char * p,
13291 int tag,
13292 const unsigned char * const end)
9e8c70f9 13293{
3d68f91c
JM
13294 unsigned int len;
13295 int val;
13296
9e8c70f9
DM
13297 if (tag == Tag_GNU_Sparc_HWCAPS)
13298 {
f6f0e17b 13299 val = read_uleb128 (p, &len, end);
9e8c70f9
DM
13300 p += len;
13301 printf (" Tag_GNU_Sparc_HWCAPS: ");
9e8c70f9
DM
13302 display_sparc_hwcaps (val);
13303 return p;
3d68f91c
JM
13304 }
13305 if (tag == Tag_GNU_Sparc_HWCAPS2)
13306 {
13307 val = read_uleb128 (p, &len, end);
13308 p += len;
13309 printf (" Tag_GNU_Sparc_HWCAPS2: ");
13310 display_sparc_hwcaps2 (val);
13311 return p;
13312 }
9e8c70f9 13313
f6f0e17b 13314 return display_tag_value (tag, p, end);
9e8c70f9
DM
13315}
13316
351cdf24
MF
13317static void
13318print_mips_fp_abi_value (int val)
13319{
13320 switch (val)
13321 {
13322 case Val_GNU_MIPS_ABI_FP_ANY:
13323 printf (_("Hard or soft float\n"));
13324 break;
13325 case Val_GNU_MIPS_ABI_FP_DOUBLE:
13326 printf (_("Hard float (double precision)\n"));
13327 break;
13328 case Val_GNU_MIPS_ABI_FP_SINGLE:
13329 printf (_("Hard float (single precision)\n"));
13330 break;
13331 case Val_GNU_MIPS_ABI_FP_SOFT:
13332 printf (_("Soft float\n"));
13333 break;
13334 case Val_GNU_MIPS_ABI_FP_OLD_64:
13335 printf (_("Hard float (MIPS32r2 64-bit FPU 12 callee-saved)\n"));
13336 break;
13337 case Val_GNU_MIPS_ABI_FP_XX:
13338 printf (_("Hard float (32-bit CPU, Any FPU)\n"));
13339 break;
13340 case Val_GNU_MIPS_ABI_FP_64:
13341 printf (_("Hard float (32-bit CPU, 64-bit FPU)\n"));
13342 break;
13343 case Val_GNU_MIPS_ABI_FP_64A:
13344 printf (_("Hard float compat (32-bit CPU, 64-bit FPU)\n"));
13345 break;
3350cc01
CM
13346 case Val_GNU_MIPS_ABI_FP_NAN2008:
13347 printf (_("NaN 2008 compatibility\n"));
13348 break;
351cdf24
MF
13349 default:
13350 printf ("??? (%d)\n", val);
13351 break;
13352 }
13353}
13354
2cf19d5c 13355static unsigned char *
f6f0e17b
NC
13356display_mips_gnu_attribute (unsigned char * p,
13357 int tag,
13358 const unsigned char * const end)
2cf19d5c 13359{
2cf19d5c
JM
13360 if (tag == Tag_GNU_MIPS_ABI_FP)
13361 {
f6f0e17b
NC
13362 unsigned int len;
13363 int val;
13364
13365 val = read_uleb128 (p, &len, end);
2cf19d5c
JM
13366 p += len;
13367 printf (" Tag_GNU_MIPS_ABI_FP: ");
60bca95a 13368
351cdf24
MF
13369 print_mips_fp_abi_value (val);
13370
2cf19d5c
JM
13371 return p;
13372 }
13373
a9f58168
CF
13374 if (tag == Tag_GNU_MIPS_ABI_MSA)
13375 {
13376 unsigned int len;
13377 int val;
13378
13379 val = read_uleb128 (p, &len, end);
13380 p += len;
13381 printf (" Tag_GNU_MIPS_ABI_MSA: ");
13382
13383 switch (val)
13384 {
13385 case Val_GNU_MIPS_ABI_MSA_ANY:
13386 printf (_("Any MSA or not\n"));
13387 break;
13388 case Val_GNU_MIPS_ABI_MSA_128:
13389 printf (_("128-bit MSA\n"));
13390 break;
13391 default:
13392 printf ("??? (%d)\n", val);
13393 break;
13394 }
13395 return p;
13396 }
13397
f6f0e17b 13398 return display_tag_value (tag & 1, p, end);
2cf19d5c
JM
13399}
13400
59e6276b 13401static unsigned char *
f6f0e17b
NC
13402display_tic6x_attribute (unsigned char * p,
13403 const unsigned char * const end)
59e6276b
JM
13404{
13405 int tag;
13406 unsigned int len;
13407 int val;
13408
f6f0e17b 13409 tag = read_uleb128 (p, &len, end);
59e6276b
JM
13410 p += len;
13411
13412 switch (tag)
13413 {
75fa6dc1 13414 case Tag_ISA:
f6f0e17b 13415 val = read_uleb128 (p, &len, end);
59e6276b 13416 p += len;
75fa6dc1 13417 printf (" Tag_ISA: ");
59e6276b
JM
13418
13419 switch (val)
13420 {
75fa6dc1 13421 case C6XABI_Tag_ISA_none:
59e6276b
JM
13422 printf (_("None\n"));
13423 break;
75fa6dc1 13424 case C6XABI_Tag_ISA_C62X:
59e6276b
JM
13425 printf ("C62x\n");
13426 break;
75fa6dc1 13427 case C6XABI_Tag_ISA_C67X:
59e6276b
JM
13428 printf ("C67x\n");
13429 break;
75fa6dc1 13430 case C6XABI_Tag_ISA_C67XP:
59e6276b
JM
13431 printf ("C67x+\n");
13432 break;
75fa6dc1 13433 case C6XABI_Tag_ISA_C64X:
59e6276b
JM
13434 printf ("C64x\n");
13435 break;
75fa6dc1 13436 case C6XABI_Tag_ISA_C64XP:
59e6276b
JM
13437 printf ("C64x+\n");
13438 break;
75fa6dc1 13439 case C6XABI_Tag_ISA_C674X:
59e6276b
JM
13440 printf ("C674x\n");
13441 break;
13442 default:
13443 printf ("??? (%d)\n", val);
13444 break;
13445 }
13446 return p;
13447
87779176 13448 case Tag_ABI_wchar_t:
f6f0e17b 13449 val = read_uleb128 (p, &len, end);
87779176
JM
13450 p += len;
13451 printf (" Tag_ABI_wchar_t: ");
13452 switch (val)
13453 {
13454 case 0:
13455 printf (_("Not used\n"));
13456 break;
13457 case 1:
13458 printf (_("2 bytes\n"));
13459 break;
13460 case 2:
13461 printf (_("4 bytes\n"));
13462 break;
13463 default:
13464 printf ("??? (%d)\n", val);
13465 break;
13466 }
13467 return p;
13468
13469 case Tag_ABI_stack_align_needed:
f6f0e17b 13470 val = read_uleb128 (p, &len, end);
87779176
JM
13471 p += len;
13472 printf (" Tag_ABI_stack_align_needed: ");
13473 switch (val)
13474 {
13475 case 0:
13476 printf (_("8-byte\n"));
13477 break;
13478 case 1:
13479 printf (_("16-byte\n"));
13480 break;
13481 default:
13482 printf ("??? (%d)\n", val);
13483 break;
13484 }
13485 return p;
13486
13487 case Tag_ABI_stack_align_preserved:
f6f0e17b 13488 val = read_uleb128 (p, &len, end);
87779176
JM
13489 p += len;
13490 printf (" Tag_ABI_stack_align_preserved: ");
13491 switch (val)
13492 {
13493 case 0:
13494 printf (_("8-byte\n"));
13495 break;
13496 case 1:
13497 printf (_("16-byte\n"));
13498 break;
13499 default:
13500 printf ("??? (%d)\n", val);
13501 break;
13502 }
13503 return p;
13504
b5593623 13505 case Tag_ABI_DSBT:
f6f0e17b 13506 val = read_uleb128 (p, &len, end);
b5593623
JM
13507 p += len;
13508 printf (" Tag_ABI_DSBT: ");
13509 switch (val)
13510 {
13511 case 0:
13512 printf (_("DSBT addressing not used\n"));
13513 break;
13514 case 1:
13515 printf (_("DSBT addressing used\n"));
13516 break;
13517 default:
13518 printf ("??? (%d)\n", val);
13519 break;
13520 }
13521 return p;
13522
87779176 13523 case Tag_ABI_PID:
f6f0e17b 13524 val = read_uleb128 (p, &len, end);
87779176
JM
13525 p += len;
13526 printf (" Tag_ABI_PID: ");
13527 switch (val)
13528 {
13529 case 0:
13530 printf (_("Data addressing position-dependent\n"));
13531 break;
13532 case 1:
13533 printf (_("Data addressing position-independent, GOT near DP\n"));
13534 break;
13535 case 2:
13536 printf (_("Data addressing position-independent, GOT far from DP\n"));
13537 break;
13538 default:
13539 printf ("??? (%d)\n", val);
13540 break;
13541 }
13542 return p;
13543
13544 case Tag_ABI_PIC:
f6f0e17b 13545 val = read_uleb128 (p, &len, end);
87779176
JM
13546 p += len;
13547 printf (" Tag_ABI_PIC: ");
13548 switch (val)
13549 {
13550 case 0:
13551 printf (_("Code addressing position-dependent\n"));
13552 break;
13553 case 1:
13554 printf (_("Code addressing position-independent\n"));
13555 break;
13556 default:
13557 printf ("??? (%d)\n", val);
13558 break;
13559 }
13560 return p;
13561
13562 case Tag_ABI_array_object_alignment:
f6f0e17b 13563 val = read_uleb128 (p, &len, end);
87779176
JM
13564 p += len;
13565 printf (" Tag_ABI_array_object_alignment: ");
13566 switch (val)
13567 {
13568 case 0:
13569 printf (_("8-byte\n"));
13570 break;
13571 case 1:
13572 printf (_("4-byte\n"));
13573 break;
13574 case 2:
13575 printf (_("16-byte\n"));
13576 break;
13577 default:
13578 printf ("??? (%d)\n", val);
13579 break;
13580 }
13581 return p;
13582
13583 case Tag_ABI_array_object_align_expected:
f6f0e17b 13584 val = read_uleb128 (p, &len, end);
87779176
JM
13585 p += len;
13586 printf (" Tag_ABI_array_object_align_expected: ");
13587 switch (val)
13588 {
13589 case 0:
13590 printf (_("8-byte\n"));
13591 break;
13592 case 1:
13593 printf (_("4-byte\n"));
13594 break;
13595 case 2:
13596 printf (_("16-byte\n"));
13597 break;
13598 default:
13599 printf ("??? (%d)\n", val);
13600 break;
13601 }
13602 return p;
13603
3cbd1c06 13604 case Tag_ABI_compatibility:
071436c6 13605 {
071436c6
NC
13606 val = read_uleb128 (p, &len, end);
13607 p += len;
13608 printf (" Tag_ABI_compatibility: ");
071436c6 13609 printf (_("flag = %d, vendor = "), val);
4082ef84
NC
13610 if (p < end - 1)
13611 {
13612 size_t maxlen = (end - p) - 1;
13613
13614 print_symbol ((int) maxlen, (const char *) p);
13615 p += strnlen ((char *) p, maxlen) + 1;
13616 }
13617 else
13618 {
13619 printf (_("<corrupt>"));
13620 p = (unsigned char *) end;
13621 }
071436c6 13622 putchar ('\n');
071436c6
NC
13623 return p;
13624 }
87779176
JM
13625
13626 case Tag_ABI_conformance:
071436c6 13627 {
4082ef84
NC
13628 printf (" Tag_ABI_conformance: \"");
13629 if (p < end - 1)
13630 {
13631 size_t maxlen = (end - p) - 1;
071436c6 13632
4082ef84
NC
13633 print_symbol ((int) maxlen, (const char *) p);
13634 p += strnlen ((char *) p, maxlen) + 1;
13635 }
13636 else
13637 {
13638 printf (_("<corrupt>"));
13639 p = (unsigned char *) end;
13640 }
071436c6 13641 printf ("\"\n");
071436c6
NC
13642 return p;
13643 }
59e6276b
JM
13644 }
13645
f6f0e17b
NC
13646 return display_tag_value (tag, p, end);
13647}
59e6276b 13648
f6f0e17b
NC
13649static void
13650display_raw_attribute (unsigned char * p, unsigned char * end)
13651{
13652 unsigned long addr = 0;
13653 size_t bytes = end - p;
13654
e0a31db1 13655 assert (end > p);
f6f0e17b 13656 while (bytes)
87779176 13657 {
f6f0e17b
NC
13658 int j;
13659 int k;
13660 int lbytes = (bytes > 16 ? 16 : bytes);
13661
13662 printf (" 0x%8.8lx ", addr);
13663
13664 for (j = 0; j < 16; j++)
13665 {
13666 if (j < lbytes)
13667 printf ("%2.2x", p[j]);
13668 else
13669 printf (" ");
13670
13671 if ((j & 3) == 3)
13672 printf (" ");
13673 }
13674
13675 for (j = 0; j < lbytes; j++)
13676 {
13677 k = p[j];
13678 if (k >= ' ' && k < 0x7f)
13679 printf ("%c", k);
13680 else
13681 printf (".");
13682 }
13683
13684 putchar ('\n');
13685
13686 p += lbytes;
13687 bytes -= lbytes;
13688 addr += lbytes;
87779176 13689 }
59e6276b 13690
f6f0e17b 13691 putchar ('\n');
59e6276b
JM
13692}
13693
13761a11
NC
13694static unsigned char *
13695display_msp430x_attribute (unsigned char * p,
13696 const unsigned char * const end)
13697{
13698 unsigned int len;
13699 int val;
13700 int tag;
13701
13702 tag = read_uleb128 (p, & len, end);
13703 p += len;
0b4362b0 13704
13761a11
NC
13705 switch (tag)
13706 {
13707 case OFBA_MSPABI_Tag_ISA:
13708 val = read_uleb128 (p, &len, end);
13709 p += len;
13710 printf (" Tag_ISA: ");
13711 switch (val)
13712 {
13713 case 0: printf (_("None\n")); break;
13714 case 1: printf (_("MSP430\n")); break;
13715 case 2: printf (_("MSP430X\n")); break;
13716 default: printf ("??? (%d)\n", val); break;
13717 }
13718 break;
13719
13720 case OFBA_MSPABI_Tag_Code_Model:
13721 val = read_uleb128 (p, &len, end);
13722 p += len;
13723 printf (" Tag_Code_Model: ");
13724 switch (val)
13725 {
13726 case 0: printf (_("None\n")); break;
13727 case 1: printf (_("Small\n")); break;
13728 case 2: printf (_("Large\n")); break;
13729 default: printf ("??? (%d)\n", val); break;
13730 }
13731 break;
13732
13733 case OFBA_MSPABI_Tag_Data_Model:
13734 val = read_uleb128 (p, &len, end);
13735 p += len;
13736 printf (" Tag_Data_Model: ");
13737 switch (val)
13738 {
13739 case 0: printf (_("None\n")); break;
13740 case 1: printf (_("Small\n")); break;
13741 case 2: printf (_("Large\n")); break;
13742 case 3: printf (_("Restricted Large\n")); break;
13743 default: printf ("??? (%d)\n", val); break;
13744 }
13745 break;
13746
13747 default:
13748 printf (_(" <unknown tag %d>: "), tag);
13749
13750 if (tag & 1)
13751 {
071436c6 13752 putchar ('"');
4082ef84
NC
13753 if (p < end - 1)
13754 {
13755 size_t maxlen = (end - p) - 1;
13756
13757 print_symbol ((int) maxlen, (const char *) p);
13758 p += strnlen ((char *) p, maxlen) + 1;
13759 }
13760 else
13761 {
13762 printf (_("<corrupt>"));
13763 p = (unsigned char *) end;
13764 }
071436c6 13765 printf ("\"\n");
13761a11
NC
13766 }
13767 else
13768 {
13769 val = read_uleb128 (p, &len, end);
13770 p += len;
13771 printf ("%d (0x%x)\n", val, val);
13772 }
13773 break;
13774 }
13775
4082ef84 13776 assert (p <= end);
13761a11
NC
13777 return p;
13778}
13779
11c1ff18 13780static int
60bca95a
NC
13781process_attributes (FILE * file,
13782 const char * public_name,
104d59d1 13783 unsigned int proc_type,
f6f0e17b
NC
13784 unsigned char * (* display_pub_attribute) (unsigned char *, const unsigned char * const),
13785 unsigned char * (* display_proc_gnu_attribute) (unsigned char *, int, const unsigned char * const))
11c1ff18 13786{
2cf0635d 13787 Elf_Internal_Shdr * sect;
11c1ff18
PB
13788 unsigned i;
13789
13790 /* Find the section header so that we get the size. */
13791 for (i = 0, sect = section_headers;
13792 i < elf_header.e_shnum;
13793 i++, sect++)
13794 {
071436c6
NC
13795 unsigned char * contents;
13796 unsigned char * p;
13797
104d59d1 13798 if (sect->sh_type != proc_type && sect->sh_type != SHT_GNU_ATTRIBUTES)
11c1ff18
PB
13799 continue;
13800
3f5e193b
NC
13801 contents = (unsigned char *) get_data (NULL, file, sect->sh_offset, 1,
13802 sect->sh_size, _("attributes"));
60bca95a 13803 if (contents == NULL)
11c1ff18 13804 continue;
60bca95a 13805
11c1ff18
PB
13806 p = contents;
13807 if (*p == 'A')
13808 {
071436c6
NC
13809 bfd_vma section_len;
13810
13811 section_len = sect->sh_size - 1;
11c1ff18 13812 p++;
60bca95a 13813
071436c6 13814 while (section_len > 0)
11c1ff18 13815 {
071436c6 13816 bfd_vma attr_len;
e9847026 13817 unsigned int namelen;
11c1ff18 13818 bfd_boolean public_section;
104d59d1 13819 bfd_boolean gnu_section;
11c1ff18 13820
071436c6 13821 if (section_len <= 4)
e0a31db1
NC
13822 {
13823 error (_("Tag section ends prematurely\n"));
13824 break;
13825 }
071436c6 13826 attr_len = byte_get (p, 4);
11c1ff18 13827 p += 4;
60bca95a 13828
071436c6 13829 if (attr_len > section_len)
11c1ff18 13830 {
071436c6
NC
13831 error (_("Bad attribute length (%u > %u)\n"),
13832 (unsigned) attr_len, (unsigned) section_len);
13833 attr_len = section_len;
11c1ff18 13834 }
74e1a04b 13835 /* PR 17531: file: 001-101425-0.004 */
071436c6 13836 else if (attr_len < 5)
74e1a04b 13837 {
071436c6 13838 error (_("Attribute length of %u is too small\n"), (unsigned) attr_len);
74e1a04b
NC
13839 break;
13840 }
e9847026 13841
071436c6
NC
13842 section_len -= attr_len;
13843 attr_len -= 4;
13844
13845 namelen = strnlen ((char *) p, attr_len) + 1;
13846 if (namelen == 0 || namelen >= attr_len)
e9847026
NC
13847 {
13848 error (_("Corrupt attribute section name\n"));
13849 break;
13850 }
13851
071436c6
NC
13852 printf (_("Attribute Section: "));
13853 print_symbol (INT_MAX, (const char *) p);
13854 putchar ('\n');
60bca95a
NC
13855
13856 if (public_name && streq ((char *) p, public_name))
11c1ff18
PB
13857 public_section = TRUE;
13858 else
13859 public_section = FALSE;
60bca95a
NC
13860
13861 if (streq ((char *) p, "gnu"))
104d59d1
JM
13862 gnu_section = TRUE;
13863 else
13864 gnu_section = FALSE;
60bca95a 13865
11c1ff18 13866 p += namelen;
071436c6 13867 attr_len -= namelen;
e0a31db1 13868
071436c6 13869 while (attr_len > 0 && p < contents + sect->sh_size)
11c1ff18 13870 {
e0a31db1 13871 int tag;
11c1ff18
PB
13872 int val;
13873 bfd_vma size;
071436c6 13874 unsigned char * end;
60bca95a 13875
e0a31db1 13876 /* PR binutils/17531: Safe handling of corrupt files. */
071436c6 13877 if (attr_len < 6)
e0a31db1
NC
13878 {
13879 error (_("Unused bytes at end of section\n"));
13880 section_len = 0;
13881 break;
13882 }
13883
13884 tag = *(p++);
11c1ff18 13885 size = byte_get (p, 4);
071436c6 13886 if (size > attr_len)
11c1ff18 13887 {
e9847026 13888 error (_("Bad subsection length (%u > %u)\n"),
071436c6
NC
13889 (unsigned) size, (unsigned) attr_len);
13890 size = attr_len;
11c1ff18 13891 }
e0a31db1
NC
13892 /* PR binutils/17531: Safe handling of corrupt files. */
13893 if (size < 6)
13894 {
13895 error (_("Bad subsection length (%u < 6)\n"),
13896 (unsigned) size);
13897 section_len = 0;
13898 break;
13899 }
60bca95a 13900
071436c6 13901 attr_len -= size;
11c1ff18 13902 end = p + size - 1;
071436c6 13903 assert (end <= contents + sect->sh_size);
11c1ff18 13904 p += 4;
60bca95a 13905
11c1ff18
PB
13906 switch (tag)
13907 {
13908 case 1:
2b692964 13909 printf (_("File Attributes\n"));
11c1ff18
PB
13910 break;
13911 case 2:
2b692964 13912 printf (_("Section Attributes:"));
11c1ff18
PB
13913 goto do_numlist;
13914 case 3:
2b692964 13915 printf (_("Symbol Attributes:"));
11c1ff18
PB
13916 do_numlist:
13917 for (;;)
13918 {
91d6fa6a 13919 unsigned int j;
60bca95a 13920
f6f0e17b 13921 val = read_uleb128 (p, &j, end);
91d6fa6a 13922 p += j;
11c1ff18
PB
13923 if (val == 0)
13924 break;
13925 printf (" %d", val);
13926 }
13927 printf ("\n");
13928 break;
13929 default:
2b692964 13930 printf (_("Unknown tag: %d\n"), tag);
11c1ff18
PB
13931 public_section = FALSE;
13932 break;
13933 }
60bca95a 13934
071436c6 13935 if (public_section && display_pub_attribute != NULL)
11c1ff18
PB
13936 {
13937 while (p < end)
f6f0e17b 13938 p = display_pub_attribute (p, end);
071436c6 13939 assert (p <= end);
104d59d1 13940 }
071436c6 13941 else if (gnu_section && display_proc_gnu_attribute != NULL)
104d59d1
JM
13942 {
13943 while (p < end)
13944 p = display_gnu_attribute (p,
f6f0e17b
NC
13945 display_proc_gnu_attribute,
13946 end);
071436c6 13947 assert (p <= end);
11c1ff18 13948 }
071436c6 13949 else if (p < end)
11c1ff18 13950 {
071436c6 13951 printf (_(" Unknown attribute:\n"));
f6f0e17b 13952 display_raw_attribute (p, end);
11c1ff18
PB
13953 p = end;
13954 }
071436c6
NC
13955 else
13956 attr_len = 0;
11c1ff18
PB
13957 }
13958 }
13959 }
13960 else
e9847026 13961 printf (_("Unknown format '%c' (%d)\n"), *p, *p);
d70c5fc7 13962
60bca95a 13963 free (contents);
11c1ff18
PB
13964 }
13965 return 1;
13966}
13967
104d59d1 13968static int
2cf0635d 13969process_arm_specific (FILE * file)
104d59d1
JM
13970{
13971 return process_attributes (file, "aeabi", SHT_ARM_ATTRIBUTES,
13972 display_arm_attribute, NULL);
13973}
13974
34c8bcba 13975static int
2cf0635d 13976process_power_specific (FILE * file)
34c8bcba
JM
13977{
13978 return process_attributes (file, NULL, SHT_GNU_ATTRIBUTES, NULL,
13979 display_power_gnu_attribute);
13980}
13981
643f7afb
AK
13982static int
13983process_s390_specific (FILE * file)
13984{
13985 return process_attributes (file, NULL, SHT_GNU_ATTRIBUTES, NULL,
13986 display_s390_gnu_attribute);
13987}
13988
9e8c70f9
DM
13989static int
13990process_sparc_specific (FILE * file)
13991{
13992 return process_attributes (file, NULL, SHT_GNU_ATTRIBUTES, NULL,
13993 display_sparc_gnu_attribute);
13994}
13995
59e6276b
JM
13996static int
13997process_tic6x_specific (FILE * file)
13998{
13999 return process_attributes (file, "c6xabi", SHT_C6000_ATTRIBUTES,
14000 display_tic6x_attribute, NULL);
14001}
14002
13761a11
NC
14003static int
14004process_msp430x_specific (FILE * file)
14005{
14006 return process_attributes (file, "mspabi", SHT_MSP430_ATTRIBUTES,
14007 display_msp430x_attribute, NULL);
14008}
14009
ccb4c951
RS
14010/* DATA points to the contents of a MIPS GOT that starts at VMA PLTGOT.
14011 Print the Address, Access and Initial fields of an entry at VMA ADDR
82b1b41b
NC
14012 and return the VMA of the next entry, or -1 if there was a problem.
14013 Does not read from DATA_END or beyond. */
ccb4c951
RS
14014
14015static bfd_vma
82b1b41b
NC
14016print_mips_got_entry (unsigned char * data, bfd_vma pltgot, bfd_vma addr,
14017 unsigned char * data_end)
ccb4c951
RS
14018{
14019 printf (" ");
14020 print_vma (addr, LONG_HEX);
14021 printf (" ");
14022 if (addr < pltgot + 0xfff0)
14023 printf ("%6d(gp)", (int) (addr - pltgot - 0x7ff0));
14024 else
14025 printf ("%10s", "");
14026 printf (" ");
14027 if (data == NULL)
2b692964 14028 printf ("%*s", is_32bit_elf ? 8 : 16, _("<unknown>"));
ccb4c951
RS
14029 else
14030 {
14031 bfd_vma entry;
82b1b41b 14032 unsigned char * from = data + addr - pltgot;
ccb4c951 14033
82b1b41b
NC
14034 if (from + (is_32bit_elf ? 4 : 8) > data_end)
14035 {
14036 warn (_("MIPS GOT entry extends beyond the end of available data\n"));
14037 printf ("%*s", is_32bit_elf ? 8 : 16, _("<corrupt>"));
14038 return (bfd_vma) -1;
14039 }
14040 else
14041 {
14042 entry = byte_get (data + addr - pltgot, is_32bit_elf ? 4 : 8);
14043 print_vma (entry, LONG_HEX);
14044 }
ccb4c951
RS
14045 }
14046 return addr + (is_32bit_elf ? 4 : 8);
14047}
14048
861fb55a
DJ
14049/* DATA points to the contents of a MIPS PLT GOT that starts at VMA
14050 PLTGOT. Print the Address and Initial fields of an entry at VMA
14051 ADDR and return the VMA of the next entry. */
14052
14053static bfd_vma
2cf0635d 14054print_mips_pltgot_entry (unsigned char * data, bfd_vma pltgot, bfd_vma addr)
861fb55a
DJ
14055{
14056 printf (" ");
14057 print_vma (addr, LONG_HEX);
14058 printf (" ");
14059 if (data == NULL)
2b692964 14060 printf ("%*s", is_32bit_elf ? 8 : 16, _("<unknown>"));
861fb55a
DJ
14061 else
14062 {
14063 bfd_vma entry;
14064
14065 entry = byte_get (data + addr - pltgot, is_32bit_elf ? 4 : 8);
14066 print_vma (entry, LONG_HEX);
14067 }
14068 return addr + (is_32bit_elf ? 4 : 8);
14069}
14070
351cdf24
MF
14071static void
14072print_mips_ases (unsigned int mask)
14073{
14074 if (mask & AFL_ASE_DSP)
14075 fputs ("\n\tDSP ASE", stdout);
14076 if (mask & AFL_ASE_DSPR2)
14077 fputs ("\n\tDSP R2 ASE", stdout);
14078 if (mask & AFL_ASE_EVA)
14079 fputs ("\n\tEnhanced VA Scheme", stdout);
14080 if (mask & AFL_ASE_MCU)
14081 fputs ("\n\tMCU (MicroController) ASE", stdout);
14082 if (mask & AFL_ASE_MDMX)
14083 fputs ("\n\tMDMX ASE", stdout);
14084 if (mask & AFL_ASE_MIPS3D)
14085 fputs ("\n\tMIPS-3D ASE", stdout);
14086 if (mask & AFL_ASE_MT)
14087 fputs ("\n\tMT ASE", stdout);
14088 if (mask & AFL_ASE_SMARTMIPS)
14089 fputs ("\n\tSmartMIPS ASE", stdout);
14090 if (mask & AFL_ASE_VIRT)
14091 fputs ("\n\tVZ ASE", stdout);
14092 if (mask & AFL_ASE_MSA)
14093 fputs ("\n\tMSA ASE", stdout);
14094 if (mask & AFL_ASE_MIPS16)
14095 fputs ("\n\tMIPS16 ASE", stdout);
14096 if (mask & AFL_ASE_MICROMIPS)
14097 fputs ("\n\tMICROMIPS ASE", stdout);
14098 if (mask & AFL_ASE_XPA)
14099 fputs ("\n\tXPA ASE", stdout);
14100 if (mask == 0)
14101 fprintf (stdout, "\n\t%s", _("None"));
00ac7aa0
MF
14102 else if ((mask & ~AFL_ASE_MASK) != 0)
14103 fprintf (stdout, "\n\t%s (%x)", _("Unknown"), mask & ~AFL_ASE_MASK);
351cdf24
MF
14104}
14105
14106static void
14107print_mips_isa_ext (unsigned int isa_ext)
14108{
14109 switch (isa_ext)
14110 {
14111 case 0:
14112 fputs (_("None"), stdout);
14113 break;
14114 case AFL_EXT_XLR:
14115 fputs ("RMI XLR", stdout);
14116 break;
2c629856
N
14117 case AFL_EXT_OCTEON3:
14118 fputs ("Cavium Networks Octeon3", stdout);
14119 break;
351cdf24
MF
14120 case AFL_EXT_OCTEON2:
14121 fputs ("Cavium Networks Octeon2", stdout);
14122 break;
14123 case AFL_EXT_OCTEONP:
14124 fputs ("Cavium Networks OcteonP", stdout);
14125 break;
14126 case AFL_EXT_LOONGSON_3A:
14127 fputs ("Loongson 3A", stdout);
14128 break;
14129 case AFL_EXT_OCTEON:
14130 fputs ("Cavium Networks Octeon", stdout);
14131 break;
14132 case AFL_EXT_5900:
14133 fputs ("Toshiba R5900", stdout);
14134 break;
14135 case AFL_EXT_4650:
14136 fputs ("MIPS R4650", stdout);
14137 break;
14138 case AFL_EXT_4010:
14139 fputs ("LSI R4010", stdout);
14140 break;
14141 case AFL_EXT_4100:
14142 fputs ("NEC VR4100", stdout);
14143 break;
14144 case AFL_EXT_3900:
14145 fputs ("Toshiba R3900", stdout);
14146 break;
14147 case AFL_EXT_10000:
14148 fputs ("MIPS R10000", stdout);
14149 break;
14150 case AFL_EXT_SB1:
14151 fputs ("Broadcom SB-1", stdout);
14152 break;
14153 case AFL_EXT_4111:
14154 fputs ("NEC VR4111/VR4181", stdout);
14155 break;
14156 case AFL_EXT_4120:
14157 fputs ("NEC VR4120", stdout);
14158 break;
14159 case AFL_EXT_5400:
14160 fputs ("NEC VR5400", stdout);
14161 break;
14162 case AFL_EXT_5500:
14163 fputs ("NEC VR5500", stdout);
14164 break;
14165 case AFL_EXT_LOONGSON_2E:
14166 fputs ("ST Microelectronics Loongson 2E", stdout);
14167 break;
14168 case AFL_EXT_LOONGSON_2F:
14169 fputs ("ST Microelectronics Loongson 2F", stdout);
14170 break;
14171 default:
00ac7aa0 14172 fprintf (stdout, "%s (%d)", _("Unknown"), isa_ext);
351cdf24
MF
14173 }
14174}
14175
14176static int
14177get_mips_reg_size (int reg_size)
14178{
14179 return (reg_size == AFL_REG_NONE) ? 0
14180 : (reg_size == AFL_REG_32) ? 32
14181 : (reg_size == AFL_REG_64) ? 64
14182 : (reg_size == AFL_REG_128) ? 128
14183 : -1;
14184}
14185
19e6b90e 14186static int
2cf0635d 14187process_mips_specific (FILE * file)
5b18a4bc 14188{
2cf0635d 14189 Elf_Internal_Dyn * entry;
351cdf24 14190 Elf_Internal_Shdr *sect = NULL;
19e6b90e
L
14191 size_t liblist_offset = 0;
14192 size_t liblistno = 0;
14193 size_t conflictsno = 0;
14194 size_t options_offset = 0;
14195 size_t conflicts_offset = 0;
861fb55a
DJ
14196 size_t pltrelsz = 0;
14197 size_t pltrel = 0;
ccb4c951 14198 bfd_vma pltgot = 0;
861fb55a
DJ
14199 bfd_vma mips_pltgot = 0;
14200 bfd_vma jmprel = 0;
ccb4c951
RS
14201 bfd_vma local_gotno = 0;
14202 bfd_vma gotsym = 0;
14203 bfd_vma symtabno = 0;
103f02d3 14204
2cf19d5c
JM
14205 process_attributes (file, NULL, SHT_GNU_ATTRIBUTES, NULL,
14206 display_mips_gnu_attribute);
14207
351cdf24
MF
14208 sect = find_section (".MIPS.abiflags");
14209
14210 if (sect != NULL)
14211 {
14212 Elf_External_ABIFlags_v0 *abiflags_ext;
14213 Elf_Internal_ABIFlags_v0 abiflags_in;
14214
14215 if (sizeof (Elf_External_ABIFlags_v0) != sect->sh_size)
14216 fputs ("\nCorrupt ABI Flags section.\n", stdout);
14217 else
14218 {
14219 abiflags_ext = get_data (NULL, file, sect->sh_offset, 1,
14220 sect->sh_size, _("MIPS ABI Flags section"));
14221 if (abiflags_ext)
14222 {
14223 abiflags_in.version = BYTE_GET (abiflags_ext->version);
14224 abiflags_in.isa_level = BYTE_GET (abiflags_ext->isa_level);
14225 abiflags_in.isa_rev = BYTE_GET (abiflags_ext->isa_rev);
14226 abiflags_in.gpr_size = BYTE_GET (abiflags_ext->gpr_size);
14227 abiflags_in.cpr1_size = BYTE_GET (abiflags_ext->cpr1_size);
14228 abiflags_in.cpr2_size = BYTE_GET (abiflags_ext->cpr2_size);
14229 abiflags_in.fp_abi = BYTE_GET (abiflags_ext->fp_abi);
14230 abiflags_in.isa_ext = BYTE_GET (abiflags_ext->isa_ext);
14231 abiflags_in.ases = BYTE_GET (abiflags_ext->ases);
14232 abiflags_in.flags1 = BYTE_GET (abiflags_ext->flags1);
14233 abiflags_in.flags2 = BYTE_GET (abiflags_ext->flags2);
14234
14235 printf ("\nMIPS ABI Flags Version: %d\n", abiflags_in.version);
14236 printf ("\nISA: MIPS%d", abiflags_in.isa_level);
14237 if (abiflags_in.isa_rev > 1)
14238 printf ("r%d", abiflags_in.isa_rev);
14239 printf ("\nGPR size: %d",
14240 get_mips_reg_size (abiflags_in.gpr_size));
14241 printf ("\nCPR1 size: %d",
14242 get_mips_reg_size (abiflags_in.cpr1_size));
14243 printf ("\nCPR2 size: %d",
14244 get_mips_reg_size (abiflags_in.cpr2_size));
14245 fputs ("\nFP ABI: ", stdout);
14246 print_mips_fp_abi_value (abiflags_in.fp_abi);
14247 fputs ("ISA Extension: ", stdout);
14248 print_mips_isa_ext (abiflags_in.isa_ext);
14249 fputs ("\nASEs:", stdout);
14250 print_mips_ases (abiflags_in.ases);
14251 printf ("\nFLAGS 1: %8.8lx", abiflags_in.flags1);
14252 printf ("\nFLAGS 2: %8.8lx", abiflags_in.flags2);
14253 fputc ('\n', stdout);
14254 free (abiflags_ext);
14255 }
14256 }
14257 }
14258
19e6b90e
L
14259 /* We have a lot of special sections. Thanks SGI! */
14260 if (dynamic_section == NULL)
14261 /* No information available. */
14262 return 0;
252b5132 14263
071436c6
NC
14264 for (entry = dynamic_section;
14265 /* PR 17531 file: 012-50589-0.004. */
14266 entry < dynamic_section + dynamic_nent && entry->d_tag != DT_NULL;
14267 ++entry)
252b5132
RH
14268 switch (entry->d_tag)
14269 {
14270 case DT_MIPS_LIBLIST:
d93f0186
NC
14271 liblist_offset
14272 = offset_from_vma (file, entry->d_un.d_val,
14273 liblistno * sizeof (Elf32_External_Lib));
252b5132
RH
14274 break;
14275 case DT_MIPS_LIBLISTNO:
14276 liblistno = entry->d_un.d_val;
14277 break;
14278 case DT_MIPS_OPTIONS:
d93f0186 14279 options_offset = offset_from_vma (file, entry->d_un.d_val, 0);
252b5132
RH
14280 break;
14281 case DT_MIPS_CONFLICT:
d93f0186
NC
14282 conflicts_offset
14283 = offset_from_vma (file, entry->d_un.d_val,
14284 conflictsno * sizeof (Elf32_External_Conflict));
252b5132
RH
14285 break;
14286 case DT_MIPS_CONFLICTNO:
14287 conflictsno = entry->d_un.d_val;
14288 break;
ccb4c951 14289 case DT_PLTGOT:
861fb55a
DJ
14290 pltgot = entry->d_un.d_ptr;
14291 break;
ccb4c951
RS
14292 case DT_MIPS_LOCAL_GOTNO:
14293 local_gotno = entry->d_un.d_val;
14294 break;
14295 case DT_MIPS_GOTSYM:
14296 gotsym = entry->d_un.d_val;
14297 break;
14298 case DT_MIPS_SYMTABNO:
14299 symtabno = entry->d_un.d_val;
14300 break;
861fb55a
DJ
14301 case DT_MIPS_PLTGOT:
14302 mips_pltgot = entry->d_un.d_ptr;
14303 break;
14304 case DT_PLTREL:
14305 pltrel = entry->d_un.d_val;
14306 break;
14307 case DT_PLTRELSZ:
14308 pltrelsz = entry->d_un.d_val;
14309 break;
14310 case DT_JMPREL:
14311 jmprel = entry->d_un.d_ptr;
14312 break;
252b5132
RH
14313 default:
14314 break;
14315 }
14316
14317 if (liblist_offset != 0 && liblistno != 0 && do_dynamic)
14318 {
2cf0635d 14319 Elf32_External_Lib * elib;
252b5132
RH
14320 size_t cnt;
14321
3f5e193b
NC
14322 elib = (Elf32_External_Lib *) get_data (NULL, file, liblist_offset,
14323 liblistno,
14324 sizeof (Elf32_External_Lib),
9cf03b7e 14325 _("liblist section data"));
a6e9f9df 14326 if (elib)
252b5132 14327 {
2b692964 14328 printf (_("\nSection '.liblist' contains %lu entries:\n"),
a6e9f9df 14329 (unsigned long) liblistno);
2b692964 14330 fputs (_(" Library Time Stamp Checksum Version Flags\n"),
a6e9f9df
AM
14331 stdout);
14332
14333 for (cnt = 0; cnt < liblistno; ++cnt)
252b5132 14334 {
a6e9f9df 14335 Elf32_Lib liblist;
91d6fa6a 14336 time_t atime;
a6e9f9df 14337 char timebuf[20];
2cf0635d 14338 struct tm * tmp;
a6e9f9df
AM
14339
14340 liblist.l_name = BYTE_GET (elib[cnt].l_name);
91d6fa6a 14341 atime = BYTE_GET (elib[cnt].l_time_stamp);
a6e9f9df
AM
14342 liblist.l_checksum = BYTE_GET (elib[cnt].l_checksum);
14343 liblist.l_version = BYTE_GET (elib[cnt].l_version);
14344 liblist.l_flags = BYTE_GET (elib[cnt].l_flags);
14345
91d6fa6a 14346 tmp = gmtime (&atime);
e9e44622
JJ
14347 snprintf (timebuf, sizeof (timebuf),
14348 "%04u-%02u-%02uT%02u:%02u:%02u",
14349 tmp->tm_year + 1900, tmp->tm_mon + 1, tmp->tm_mday,
14350 tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
a6e9f9df 14351
31104126 14352 printf ("%3lu: ", (unsigned long) cnt);
d79b3d50
NC
14353 if (VALID_DYNAMIC_NAME (liblist.l_name))
14354 print_symbol (20, GET_DYNAMIC_NAME (liblist.l_name));
14355 else
2b692964 14356 printf (_("<corrupt: %9ld>"), liblist.l_name);
31104126
NC
14357 printf (" %s %#10lx %-7ld", timebuf, liblist.l_checksum,
14358 liblist.l_version);
a6e9f9df
AM
14359
14360 if (liblist.l_flags == 0)
2b692964 14361 puts (_(" NONE"));
a6e9f9df
AM
14362 else
14363 {
14364 static const struct
252b5132 14365 {
2cf0635d 14366 const char * name;
a6e9f9df 14367 int bit;
252b5132 14368 }
a6e9f9df
AM
14369 l_flags_vals[] =
14370 {
14371 { " EXACT_MATCH", LL_EXACT_MATCH },
14372 { " IGNORE_INT_VER", LL_IGNORE_INT_VER },
14373 { " REQUIRE_MINOR", LL_REQUIRE_MINOR },
14374 { " EXPORTS", LL_EXPORTS },
14375 { " DELAY_LOAD", LL_DELAY_LOAD },
14376 { " DELTA", LL_DELTA }
14377 };
14378 int flags = liblist.l_flags;
14379 size_t fcnt;
14380
60bca95a 14381 for (fcnt = 0; fcnt < ARRAY_SIZE (l_flags_vals); ++fcnt)
a6e9f9df
AM
14382 if ((flags & l_flags_vals[fcnt].bit) != 0)
14383 {
14384 fputs (l_flags_vals[fcnt].name, stdout);
14385 flags ^= l_flags_vals[fcnt].bit;
14386 }
14387 if (flags != 0)
14388 printf (" %#x", (unsigned int) flags);
252b5132 14389
a6e9f9df
AM
14390 puts ("");
14391 }
252b5132 14392 }
252b5132 14393
a6e9f9df
AM
14394 free (elib);
14395 }
252b5132
RH
14396 }
14397
14398 if (options_offset != 0)
14399 {
2cf0635d 14400 Elf_External_Options * eopt;
2cf0635d
NC
14401 Elf_Internal_Options * iopt;
14402 Elf_Internal_Options * option;
252b5132
RH
14403 size_t offset;
14404 int cnt;
351cdf24 14405 sect = section_headers;
252b5132
RH
14406
14407 /* Find the section header so that we get the size. */
071436c6 14408 sect = find_section_by_type (SHT_MIPS_OPTIONS);
948f632f 14409 /* PR 17533 file: 012-277276-0.004. */
071436c6
NC
14410 if (sect == NULL)
14411 {
14412 error (_("No MIPS_OPTIONS header found\n"));
14413 return 0;
14414 }
252b5132 14415
3f5e193b
NC
14416 eopt = (Elf_External_Options *) get_data (NULL, file, options_offset, 1,
14417 sect->sh_size, _("options"));
a6e9f9df 14418 if (eopt)
252b5132 14419 {
3f5e193b
NC
14420 iopt = (Elf_Internal_Options *)
14421 cmalloc ((sect->sh_size / sizeof (eopt)), sizeof (* iopt));
a6e9f9df
AM
14422 if (iopt == NULL)
14423 {
8b73c356 14424 error (_("Out of memory allocatinf space for MIPS options\n"));
a6e9f9df
AM
14425 return 0;
14426 }
76da6bbe 14427
a6e9f9df
AM
14428 offset = cnt = 0;
14429 option = iopt;
252b5132 14430
82b1b41b 14431 while (offset <= sect->sh_size - sizeof (* eopt))
a6e9f9df 14432 {
2cf0635d 14433 Elf_External_Options * eoption;
252b5132 14434
a6e9f9df 14435 eoption = (Elf_External_Options *) ((char *) eopt + offset);
252b5132 14436
a6e9f9df
AM
14437 option->kind = BYTE_GET (eoption->kind);
14438 option->size = BYTE_GET (eoption->size);
14439 option->section = BYTE_GET (eoption->section);
14440 option->info = BYTE_GET (eoption->info);
76da6bbe 14441
82b1b41b
NC
14442 /* PR 17531: file: ffa0fa3b. */
14443 if (option->size < sizeof (* eopt)
14444 || offset + option->size > sect->sh_size)
14445 {
55325047
NC
14446 error (_("Invalid size (%u) for MIPS option\n"), option->size);
14447 return 0;
82b1b41b 14448 }
a6e9f9df 14449 offset += option->size;
14ae95f2 14450
a6e9f9df
AM
14451 ++option;
14452 ++cnt;
14453 }
252b5132 14454
a6e9f9df 14455 printf (_("\nSection '%s' contains %d entries:\n"),
74e1a04b 14456 printable_section_name (sect), cnt);
76da6bbe 14457
a6e9f9df 14458 option = iopt;
82b1b41b 14459 offset = 0;
252b5132 14460
a6e9f9df 14461 while (cnt-- > 0)
252b5132 14462 {
a6e9f9df
AM
14463 size_t len;
14464
14465 switch (option->kind)
252b5132 14466 {
a6e9f9df
AM
14467 case ODK_NULL:
14468 /* This shouldn't happen. */
14469 printf (" NULL %d %lx", option->section, option->info);
14470 break;
14471 case ODK_REGINFO:
14472 printf (" REGINFO ");
14473 if (elf_header.e_machine == EM_MIPS)
14474 {
14475 /* 32bit form. */
2cf0635d 14476 Elf32_External_RegInfo * ereg;
b34976b6 14477 Elf32_RegInfo reginfo;
a6e9f9df
AM
14478
14479 ereg = (Elf32_External_RegInfo *) (option + 1);
14480 reginfo.ri_gprmask = BYTE_GET (ereg->ri_gprmask);
14481 reginfo.ri_cprmask[0] = BYTE_GET (ereg->ri_cprmask[0]);
14482 reginfo.ri_cprmask[1] = BYTE_GET (ereg->ri_cprmask[1]);
14483 reginfo.ri_cprmask[2] = BYTE_GET (ereg->ri_cprmask[2]);
14484 reginfo.ri_cprmask[3] = BYTE_GET (ereg->ri_cprmask[3]);
14485 reginfo.ri_gp_value = BYTE_GET (ereg->ri_gp_value);
14486
14487 printf ("GPR %08lx GP 0x%lx\n",
14488 reginfo.ri_gprmask,
14489 (unsigned long) reginfo.ri_gp_value);
14490 printf (" CPR0 %08lx CPR1 %08lx CPR2 %08lx CPR3 %08lx\n",
14491 reginfo.ri_cprmask[0], reginfo.ri_cprmask[1],
14492 reginfo.ri_cprmask[2], reginfo.ri_cprmask[3]);
14493 }
14494 else
14495 {
14496 /* 64 bit form. */
2cf0635d 14497 Elf64_External_RegInfo * ereg;
a6e9f9df
AM
14498 Elf64_Internal_RegInfo reginfo;
14499
14500 ereg = (Elf64_External_RegInfo *) (option + 1);
14501 reginfo.ri_gprmask = BYTE_GET (ereg->ri_gprmask);
14502 reginfo.ri_cprmask[0] = BYTE_GET (ereg->ri_cprmask[0]);
14503 reginfo.ri_cprmask[1] = BYTE_GET (ereg->ri_cprmask[1]);
14504 reginfo.ri_cprmask[2] = BYTE_GET (ereg->ri_cprmask[2]);
14505 reginfo.ri_cprmask[3] = BYTE_GET (ereg->ri_cprmask[3]);
66543521 14506 reginfo.ri_gp_value = BYTE_GET (ereg->ri_gp_value);
a6e9f9df
AM
14507
14508 printf ("GPR %08lx GP 0x",
14509 reginfo.ri_gprmask);
14510 printf_vma (reginfo.ri_gp_value);
14511 printf ("\n");
14512
14513 printf (" CPR0 %08lx CPR1 %08lx CPR2 %08lx CPR3 %08lx\n",
14514 reginfo.ri_cprmask[0], reginfo.ri_cprmask[1],
14515 reginfo.ri_cprmask[2], reginfo.ri_cprmask[3]);
14516 }
14517 ++option;
14518 continue;
14519 case ODK_EXCEPTIONS:
14520 fputs (" EXCEPTIONS fpe_min(", stdout);
14521 process_mips_fpe_exception (option->info & OEX_FPU_MIN);
14522 fputs (") fpe_max(", stdout);
14523 process_mips_fpe_exception ((option->info & OEX_FPU_MAX) >> 8);
14524 fputs (")", stdout);
14525
14526 if (option->info & OEX_PAGE0)
14527 fputs (" PAGE0", stdout);
14528 if (option->info & OEX_SMM)
14529 fputs (" SMM", stdout);
14530 if (option->info & OEX_FPDBUG)
14531 fputs (" FPDBUG", stdout);
14532 if (option->info & OEX_DISMISS)
14533 fputs (" DISMISS", stdout);
14534 break;
14535 case ODK_PAD:
14536 fputs (" PAD ", stdout);
14537 if (option->info & OPAD_PREFIX)
14538 fputs (" PREFIX", stdout);
14539 if (option->info & OPAD_POSTFIX)
14540 fputs (" POSTFIX", stdout);
14541 if (option->info & OPAD_SYMBOL)
14542 fputs (" SYMBOL", stdout);
14543 break;
14544 case ODK_HWPATCH:
14545 fputs (" HWPATCH ", stdout);
14546 if (option->info & OHW_R4KEOP)
14547 fputs (" R4KEOP", stdout);
14548 if (option->info & OHW_R8KPFETCH)
14549 fputs (" R8KPFETCH", stdout);
14550 if (option->info & OHW_R5KEOP)
14551 fputs (" R5KEOP", stdout);
14552 if (option->info & OHW_R5KCVTL)
14553 fputs (" R5KCVTL", stdout);
14554 break;
14555 case ODK_FILL:
14556 fputs (" FILL ", stdout);
14557 /* XXX Print content of info word? */
14558 break;
14559 case ODK_TAGS:
14560 fputs (" TAGS ", stdout);
14561 /* XXX Print content of info word? */
14562 break;
14563 case ODK_HWAND:
14564 fputs (" HWAND ", stdout);
14565 if (option->info & OHWA0_R4KEOP_CHECKED)
14566 fputs (" R4KEOP_CHECKED", stdout);
14567 if (option->info & OHWA0_R4KEOP_CLEAN)
14568 fputs (" R4KEOP_CLEAN", stdout);
14569 break;
14570 case ODK_HWOR:
14571 fputs (" HWOR ", stdout);
14572 if (option->info & OHWA0_R4KEOP_CHECKED)
14573 fputs (" R4KEOP_CHECKED", stdout);
14574 if (option->info & OHWA0_R4KEOP_CLEAN)
14575 fputs (" R4KEOP_CLEAN", stdout);
14576 break;
14577 case ODK_GP_GROUP:
14578 printf (" GP_GROUP %#06lx self-contained %#06lx",
14579 option->info & OGP_GROUP,
14580 (option->info & OGP_SELF) >> 16);
14581 break;
14582 case ODK_IDENT:
14583 printf (" IDENT %#06lx self-contained %#06lx",
14584 option->info & OGP_GROUP,
14585 (option->info & OGP_SELF) >> 16);
14586 break;
14587 default:
14588 /* This shouldn't happen. */
14589 printf (" %3d ??? %d %lx",
14590 option->kind, option->section, option->info);
14591 break;
252b5132 14592 }
a6e9f9df 14593
2cf0635d 14594 len = sizeof (* eopt);
a6e9f9df 14595 while (len < option->size)
82b1b41b 14596 {
7e27a9d5 14597 unsigned char datum = * ((unsigned char *) eopt + offset + len);
a6e9f9df 14598
82b1b41b
NC
14599 if (ISPRINT (datum))
14600 printf ("%c", datum);
14601 else
14602 printf ("\\%03o", datum);
14603 len ++;
14604 }
a6e9f9df 14605 fputs ("\n", stdout);
82b1b41b
NC
14606
14607 offset += option->size;
252b5132 14608 ++option;
252b5132
RH
14609 }
14610
a6e9f9df 14611 free (eopt);
252b5132 14612 }
252b5132
RH
14613 }
14614
14615 if (conflicts_offset != 0 && conflictsno != 0)
14616 {
2cf0635d 14617 Elf32_Conflict * iconf;
252b5132
RH
14618 size_t cnt;
14619
14620 if (dynamic_symbols == NULL)
14621 {
591a748a 14622 error (_("conflict list found without a dynamic symbol table\n"));
252b5132
RH
14623 return 0;
14624 }
14625
3f5e193b 14626 iconf = (Elf32_Conflict *) cmalloc (conflictsno, sizeof (* iconf));
252b5132
RH
14627 if (iconf == NULL)
14628 {
8b73c356 14629 error (_("Out of memory allocating space for dynamic conflicts\n"));
252b5132
RH
14630 return 0;
14631 }
14632
9ea033b2 14633 if (is_32bit_elf)
252b5132 14634 {
2cf0635d 14635 Elf32_External_Conflict * econf32;
a6e9f9df 14636
3f5e193b
NC
14637 econf32 = (Elf32_External_Conflict *)
14638 get_data (NULL, file, conflicts_offset, conflictsno,
14639 sizeof (* econf32), _("conflict"));
a6e9f9df
AM
14640 if (!econf32)
14641 return 0;
252b5132
RH
14642
14643 for (cnt = 0; cnt < conflictsno; ++cnt)
14644 iconf[cnt] = BYTE_GET (econf32[cnt]);
a6e9f9df
AM
14645
14646 free (econf32);
252b5132
RH
14647 }
14648 else
14649 {
2cf0635d 14650 Elf64_External_Conflict * econf64;
a6e9f9df 14651
3f5e193b
NC
14652 econf64 = (Elf64_External_Conflict *)
14653 get_data (NULL, file, conflicts_offset, conflictsno,
14654 sizeof (* econf64), _("conflict"));
a6e9f9df
AM
14655 if (!econf64)
14656 return 0;
252b5132
RH
14657
14658 for (cnt = 0; cnt < conflictsno; ++cnt)
14659 iconf[cnt] = BYTE_GET (econf64[cnt]);
a6e9f9df
AM
14660
14661 free (econf64);
252b5132
RH
14662 }
14663
c7e7ca54
NC
14664 printf (_("\nSection '.conflict' contains %lu entries:\n"),
14665 (unsigned long) conflictsno);
252b5132
RH
14666 puts (_(" Num: Index Value Name"));
14667
14668 for (cnt = 0; cnt < conflictsno; ++cnt)
14669 {
b34976b6 14670 printf ("%5lu: %8lu ", (unsigned long) cnt, iconf[cnt]);
e0a31db1
NC
14671
14672 if (iconf[cnt] >= num_dynamic_syms)
14673 printf (_("<corrupt symbol index>"));
d79b3d50 14674 else
e0a31db1
NC
14675 {
14676 Elf_Internal_Sym * psym;
14677
14678 psym = & dynamic_symbols[iconf[cnt]];
14679 print_vma (psym->st_value, FULL_HEX);
14680 putchar (' ');
14681 if (VALID_DYNAMIC_NAME (psym->st_name))
14682 print_symbol (25, GET_DYNAMIC_NAME (psym->st_name));
14683 else
14684 printf (_("<corrupt: %14ld>"), psym->st_name);
14685 }
31104126 14686 putchar ('\n');
252b5132
RH
14687 }
14688
252b5132
RH
14689 free (iconf);
14690 }
14691
ccb4c951
RS
14692 if (pltgot != 0 && local_gotno != 0)
14693 {
91d6fa6a 14694 bfd_vma ent, local_end, global_end;
bbeee7ea 14695 size_t i, offset;
2cf0635d 14696 unsigned char * data;
82b1b41b 14697 unsigned char * data_end;
bbeee7ea 14698 int addr_size;
ccb4c951 14699
91d6fa6a 14700 ent = pltgot;
ccb4c951
RS
14701 addr_size = (is_32bit_elf ? 4 : 8);
14702 local_end = pltgot + local_gotno * addr_size;
ccb4c951 14703
74e1a04b
NC
14704 /* PR binutils/17533 file: 012-111227-0.004 */
14705 if (symtabno < gotsym)
14706 {
14707 error (_("The GOT symbol offset (%lu) is greater than the symbol table size (%lu)\n"),
82b1b41b 14708 (unsigned long) gotsym, (unsigned long) symtabno);
74e1a04b
NC
14709 return 0;
14710 }
82b1b41b 14711
74e1a04b 14712 global_end = local_end + (symtabno - gotsym) * addr_size;
82b1b41b
NC
14713 /* PR 17531: file: 54c91a34. */
14714 if (global_end < local_end)
14715 {
14716 error (_("Too many GOT symbols: %lu\n"), (unsigned long) symtabno);
14717 return 0;
14718 }
948f632f 14719
ccb4c951 14720 offset = offset_from_vma (file, pltgot, global_end - pltgot);
3f5e193b 14721 data = (unsigned char *) get_data (NULL, file, offset,
9cf03b7e
NC
14722 global_end - pltgot, 1,
14723 _("Global Offset Table data"));
59245841
NC
14724 if (data == NULL)
14725 return 0;
82b1b41b 14726 data_end = data + (global_end - pltgot);
59245841 14727
ccb4c951
RS
14728 printf (_("\nPrimary GOT:\n"));
14729 printf (_(" Canonical gp value: "));
14730 print_vma (pltgot + 0x7ff0, LONG_HEX);
14731 printf ("\n\n");
14732
14733 printf (_(" Reserved entries:\n"));
14734 printf (_(" %*s %10s %*s Purpose\n"),
2b692964
NC
14735 addr_size * 2, _("Address"), _("Access"),
14736 addr_size * 2, _("Initial"));
82b1b41b 14737 ent = print_mips_got_entry (data, pltgot, ent, data_end);
2b692964 14738 printf (_(" Lazy resolver\n"));
82b1b41b
NC
14739 if (ent == (bfd_vma) -1)
14740 goto got_print_fail;
ccb4c951 14741 if (data
91d6fa6a 14742 && (byte_get (data + ent - pltgot, addr_size)
ccb4c951
RS
14743 >> (addr_size * 8 - 1)) != 0)
14744 {
82b1b41b 14745 ent = print_mips_got_entry (data, pltgot, ent, data_end);
2b692964 14746 printf (_(" Module pointer (GNU extension)\n"));
82b1b41b
NC
14747 if (ent == (bfd_vma) -1)
14748 goto got_print_fail;
ccb4c951
RS
14749 }
14750 printf ("\n");
14751
91d6fa6a 14752 if (ent < local_end)
ccb4c951
RS
14753 {
14754 printf (_(" Local entries:\n"));
cc5914eb 14755 printf (" %*s %10s %*s\n",
2b692964
NC
14756 addr_size * 2, _("Address"), _("Access"),
14757 addr_size * 2, _("Initial"));
91d6fa6a 14758 while (ent < local_end)
ccb4c951 14759 {
82b1b41b 14760 ent = print_mips_got_entry (data, pltgot, ent, data_end);
ccb4c951 14761 printf ("\n");
82b1b41b
NC
14762 if (ent == (bfd_vma) -1)
14763 goto got_print_fail;
ccb4c951
RS
14764 }
14765 printf ("\n");
14766 }
14767
14768 if (gotsym < symtabno)
14769 {
14770 int sym_width;
14771
14772 printf (_(" Global entries:\n"));
cc5914eb 14773 printf (" %*s %10s %*s %*s %-7s %3s %s\n",
9cf03b7e
NC
14774 addr_size * 2, _("Address"),
14775 _("Access"),
2b692964 14776 addr_size * 2, _("Initial"),
9cf03b7e
NC
14777 addr_size * 2, _("Sym.Val."),
14778 _("Type"),
14779 /* Note for translators: "Ndx" = abbreviated form of "Index". */
14780 _("Ndx"), _("Name"));
0b4362b0 14781
ccb4c951 14782 sym_width = (is_32bit_elf ? 80 : 160) - 28 - addr_size * 6 - 1;
e0a31db1 14783
ccb4c951
RS
14784 for (i = gotsym; i < symtabno; i++)
14785 {
82b1b41b 14786 ent = print_mips_got_entry (data, pltgot, ent, data_end);
ccb4c951 14787 printf (" ");
e0a31db1
NC
14788
14789 if (dynamic_symbols == NULL)
14790 printf (_("<no dynamic symbols>"));
14791 else if (i < num_dynamic_syms)
14792 {
14793 Elf_Internal_Sym * psym = dynamic_symbols + i;
14794
14795 print_vma (psym->st_value, LONG_HEX);
14796 printf (" %-7s %3s ",
14797 get_symbol_type (ELF_ST_TYPE (psym->st_info)),
14798 get_symbol_index_type (psym->st_shndx));
14799
14800 if (VALID_DYNAMIC_NAME (psym->st_name))
14801 print_symbol (sym_width, GET_DYNAMIC_NAME (psym->st_name));
14802 else
14803 printf (_("<corrupt: %14ld>"), psym->st_name);
14804 }
ccb4c951 14805 else
7fc5ac57
JBG
14806 printf (_("<symbol index %lu exceeds number of dynamic symbols>"),
14807 (unsigned long) i);
e0a31db1 14808
ccb4c951 14809 printf ("\n");
82b1b41b
NC
14810 if (ent == (bfd_vma) -1)
14811 break;
ccb4c951
RS
14812 }
14813 printf ("\n");
14814 }
14815
82b1b41b 14816 got_print_fail:
ccb4c951
RS
14817 if (data)
14818 free (data);
14819 }
14820
861fb55a
DJ
14821 if (mips_pltgot != 0 && jmprel != 0 && pltrel != 0 && pltrelsz != 0)
14822 {
91d6fa6a 14823 bfd_vma ent, end;
861fb55a
DJ
14824 size_t offset, rel_offset;
14825 unsigned long count, i;
2cf0635d 14826 unsigned char * data;
861fb55a 14827 int addr_size, sym_width;
2cf0635d 14828 Elf_Internal_Rela * rels;
861fb55a
DJ
14829
14830 rel_offset = offset_from_vma (file, jmprel, pltrelsz);
14831 if (pltrel == DT_RELA)
14832 {
14833 if (!slurp_rela_relocs (file, rel_offset, pltrelsz, &rels, &count))
14834 return 0;
14835 }
14836 else
14837 {
14838 if (!slurp_rel_relocs (file, rel_offset, pltrelsz, &rels, &count))
14839 return 0;
14840 }
14841
91d6fa6a 14842 ent = mips_pltgot;
861fb55a
DJ
14843 addr_size = (is_32bit_elf ? 4 : 8);
14844 end = mips_pltgot + (2 + count) * addr_size;
14845
14846 offset = offset_from_vma (file, mips_pltgot, end - mips_pltgot);
3f5e193b 14847 data = (unsigned char *) get_data (NULL, file, offset, end - mips_pltgot,
9cf03b7e 14848 1, _("Procedure Linkage Table data"));
59245841
NC
14849 if (data == NULL)
14850 return 0;
14851
9cf03b7e 14852 printf ("\nPLT GOT:\n\n");
861fb55a
DJ
14853 printf (_(" Reserved entries:\n"));
14854 printf (_(" %*s %*s Purpose\n"),
2b692964 14855 addr_size * 2, _("Address"), addr_size * 2, _("Initial"));
91d6fa6a 14856 ent = print_mips_pltgot_entry (data, mips_pltgot, ent);
2b692964 14857 printf (_(" PLT lazy resolver\n"));
91d6fa6a 14858 ent = print_mips_pltgot_entry (data, mips_pltgot, ent);
2b692964 14859 printf (_(" Module pointer\n"));
861fb55a
DJ
14860 printf ("\n");
14861
14862 printf (_(" Entries:\n"));
cc5914eb 14863 printf (" %*s %*s %*s %-7s %3s %s\n",
2b692964
NC
14864 addr_size * 2, _("Address"),
14865 addr_size * 2, _("Initial"),
14866 addr_size * 2, _("Sym.Val."), _("Type"), _("Ndx"), _("Name"));
861fb55a
DJ
14867 sym_width = (is_32bit_elf ? 80 : 160) - 17 - addr_size * 6 - 1;
14868 for (i = 0; i < count; i++)
14869 {
df97ab2a 14870 unsigned long idx = get_reloc_symindex (rels[i].r_info);
861fb55a 14871
91d6fa6a 14872 ent = print_mips_pltgot_entry (data, mips_pltgot, ent);
861fb55a 14873 printf (" ");
e0a31db1 14874
df97ab2a
MF
14875 if (idx >= num_dynamic_syms)
14876 printf (_("<corrupt symbol index: %lu>"), idx);
861fb55a 14877 else
e0a31db1 14878 {
df97ab2a 14879 Elf_Internal_Sym * psym = dynamic_symbols + idx;
e0a31db1
NC
14880
14881 print_vma (psym->st_value, LONG_HEX);
14882 printf (" %-7s %3s ",
14883 get_symbol_type (ELF_ST_TYPE (psym->st_info)),
14884 get_symbol_index_type (psym->st_shndx));
14885 if (VALID_DYNAMIC_NAME (psym->st_name))
14886 print_symbol (sym_width, GET_DYNAMIC_NAME (psym->st_name));
14887 else
14888 printf (_("<corrupt: %14ld>"), psym->st_name);
14889 }
861fb55a
DJ
14890 printf ("\n");
14891 }
14892 printf ("\n");
14893
14894 if (data)
14895 free (data);
14896 free (rels);
14897 }
14898
252b5132
RH
14899 return 1;
14900}
14901
35c08157
KLC
14902static int
14903process_nds32_specific (FILE * file)
14904{
14905 Elf_Internal_Shdr *sect = NULL;
14906
14907 sect = find_section (".nds32_e_flags");
14908 if (sect != NULL)
14909 {
14910 unsigned int *flag;
14911
14912 printf ("\nNDS32 elf flags section:\n");
14913 flag = get_data (NULL, file, sect->sh_offset, 1,
14914 sect->sh_size, _("NDS32 elf flags section"));
14915
14916 switch ((*flag) & 0x3)
14917 {
14918 case 0:
14919 printf ("(VEC_SIZE):\tNo entry.\n");
14920 break;
14921 case 1:
14922 printf ("(VEC_SIZE):\t4 bytes\n");
14923 break;
14924 case 2:
14925 printf ("(VEC_SIZE):\t16 bytes\n");
14926 break;
14927 case 3:
14928 printf ("(VEC_SIZE):\treserved\n");
14929 break;
14930 }
14931 }
14932
14933 return TRUE;
14934}
14935
047b2264 14936static int
2cf0635d 14937process_gnu_liblist (FILE * file)
047b2264 14938{
2cf0635d
NC
14939 Elf_Internal_Shdr * section;
14940 Elf_Internal_Shdr * string_sec;
14941 Elf32_External_Lib * elib;
14942 char * strtab;
c256ffe7 14943 size_t strtab_size;
047b2264
JJ
14944 size_t cnt;
14945 unsigned i;
14946
14947 if (! do_arch)
14948 return 0;
14949
14950 for (i = 0, section = section_headers;
14951 i < elf_header.e_shnum;
b34976b6 14952 i++, section++)
047b2264
JJ
14953 {
14954 switch (section->sh_type)
14955 {
14956 case SHT_GNU_LIBLIST:
4fbb74a6 14957 if (section->sh_link >= elf_header.e_shnum)
c256ffe7
JJ
14958 break;
14959
3f5e193b
NC
14960 elib = (Elf32_External_Lib *)
14961 get_data (NULL, file, section->sh_offset, 1, section->sh_size,
9cf03b7e 14962 _("liblist section data"));
047b2264
JJ
14963
14964 if (elib == NULL)
14965 break;
4fbb74a6 14966 string_sec = section_headers + section->sh_link;
047b2264 14967
3f5e193b
NC
14968 strtab = (char *) get_data (NULL, file, string_sec->sh_offset, 1,
14969 string_sec->sh_size,
14970 _("liblist string table"));
047b2264
JJ
14971 if (strtab == NULL
14972 || section->sh_entsize != sizeof (Elf32_External_Lib))
14973 {
14974 free (elib);
2842702f 14975 free (strtab);
047b2264
JJ
14976 break;
14977 }
59245841 14978 strtab_size = string_sec->sh_size;
047b2264
JJ
14979
14980 printf (_("\nLibrary list section '%s' contains %lu entries:\n"),
74e1a04b 14981 printable_section_name (section),
0af1713e 14982 (unsigned long) (section->sh_size / sizeof (Elf32_External_Lib)));
047b2264 14983
2b692964 14984 puts (_(" Library Time Stamp Checksum Version Flags"));
047b2264
JJ
14985
14986 for (cnt = 0; cnt < section->sh_size / sizeof (Elf32_External_Lib);
14987 ++cnt)
14988 {
14989 Elf32_Lib liblist;
91d6fa6a 14990 time_t atime;
047b2264 14991 char timebuf[20];
2cf0635d 14992 struct tm * tmp;
047b2264
JJ
14993
14994 liblist.l_name = BYTE_GET (elib[cnt].l_name);
91d6fa6a 14995 atime = BYTE_GET (elib[cnt].l_time_stamp);
047b2264
JJ
14996 liblist.l_checksum = BYTE_GET (elib[cnt].l_checksum);
14997 liblist.l_version = BYTE_GET (elib[cnt].l_version);
14998 liblist.l_flags = BYTE_GET (elib[cnt].l_flags);
14999
91d6fa6a 15000 tmp = gmtime (&atime);
e9e44622
JJ
15001 snprintf (timebuf, sizeof (timebuf),
15002 "%04u-%02u-%02uT%02u:%02u:%02u",
15003 tmp->tm_year + 1900, tmp->tm_mon + 1, tmp->tm_mday,
15004 tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
047b2264
JJ
15005
15006 printf ("%3lu: ", (unsigned long) cnt);
15007 if (do_wide)
c256ffe7 15008 printf ("%-20s", liblist.l_name < strtab_size
2b692964 15009 ? strtab + liblist.l_name : _("<corrupt>"));
047b2264 15010 else
c256ffe7 15011 printf ("%-20.20s", liblist.l_name < strtab_size
2b692964 15012 ? strtab + liblist.l_name : _("<corrupt>"));
047b2264
JJ
15013 printf (" %s %#010lx %-7ld %-7ld\n", timebuf, liblist.l_checksum,
15014 liblist.l_version, liblist.l_flags);
15015 }
15016
15017 free (elib);
2842702f 15018 free (strtab);
047b2264
JJ
15019 }
15020 }
15021
15022 return 1;
15023}
15024
9437c45b 15025static const char *
d3ba0551 15026get_note_type (unsigned e_type)
779fe533
NC
15027{
15028 static char buff[64];
103f02d3 15029
1ec5cd37
NC
15030 if (elf_header.e_type == ET_CORE)
15031 switch (e_type)
15032 {
57346661 15033 case NT_AUXV:
1ec5cd37 15034 return _("NT_AUXV (auxiliary vector)");
57346661 15035 case NT_PRSTATUS:
1ec5cd37 15036 return _("NT_PRSTATUS (prstatus structure)");
57346661 15037 case NT_FPREGSET:
1ec5cd37 15038 return _("NT_FPREGSET (floating point registers)");
57346661 15039 case NT_PRPSINFO:
1ec5cd37 15040 return _("NT_PRPSINFO (prpsinfo structure)");
57346661 15041 case NT_TASKSTRUCT:
1ec5cd37 15042 return _("NT_TASKSTRUCT (task structure)");
57346661 15043 case NT_PRXFPREG:
1ec5cd37 15044 return _("NT_PRXFPREG (user_xfpregs structure)");
e1e95dec
AM
15045 case NT_PPC_VMX:
15046 return _("NT_PPC_VMX (ppc Altivec registers)");
89eeb0bc
LM
15047 case NT_PPC_VSX:
15048 return _("NT_PPC_VSX (ppc VSX registers)");
ff826ef3
TT
15049 case NT_386_TLS:
15050 return _("NT_386_TLS (x86 TLS information)");
15051 case NT_386_IOPERM:
15052 return _("NT_386_IOPERM (x86 I/O permissions)");
4339cae0
L
15053 case NT_X86_XSTATE:
15054 return _("NT_X86_XSTATE (x86 XSAVE extended state)");
0675e188
UW
15055 case NT_S390_HIGH_GPRS:
15056 return _("NT_S390_HIGH_GPRS (s390 upper register halves)");
d7eeb400
MS
15057 case NT_S390_TIMER:
15058 return _("NT_S390_TIMER (s390 timer register)");
15059 case NT_S390_TODCMP:
15060 return _("NT_S390_TODCMP (s390 TOD comparator register)");
15061 case NT_S390_TODPREG:
15062 return _("NT_S390_TODPREG (s390 TOD programmable register)");
15063 case NT_S390_CTRS:
15064 return _("NT_S390_CTRS (s390 control registers)");
15065 case NT_S390_PREFIX:
15066 return _("NT_S390_PREFIX (s390 prefix register)");
a367d729
AK
15067 case NT_S390_LAST_BREAK:
15068 return _("NT_S390_LAST_BREAK (s390 last breaking event address)");
15069 case NT_S390_SYSTEM_CALL:
15070 return _("NT_S390_SYSTEM_CALL (s390 system call restart data)");
abb3f6cc
NC
15071 case NT_S390_TDB:
15072 return _("NT_S390_TDB (s390 transaction diagnostic block)");
4ef9f41a
AA
15073 case NT_S390_VXRS_LOW:
15074 return _("NT_S390_VXRS_LOW (s390 vector registers 0-15 upper half)");
15075 case NT_S390_VXRS_HIGH:
15076 return _("NT_S390_VXRS_HIGH (s390 vector registers 16-31)");
faa9a424
UW
15077 case NT_ARM_VFP:
15078 return _("NT_ARM_VFP (arm VFP registers)");
652451f8
YZ
15079 case NT_ARM_TLS:
15080 return _("NT_ARM_TLS (AArch TLS registers)");
15081 case NT_ARM_HW_BREAK:
15082 return _("NT_ARM_HW_BREAK (AArch hardware breakpoint registers)");
15083 case NT_ARM_HW_WATCH:
15084 return _("NT_ARM_HW_WATCH (AArch hardware watchpoint registers)");
57346661 15085 case NT_PSTATUS:
1ec5cd37 15086 return _("NT_PSTATUS (pstatus structure)");
57346661 15087 case NT_FPREGS:
1ec5cd37 15088 return _("NT_FPREGS (floating point registers)");
57346661 15089 case NT_PSINFO:
1ec5cd37 15090 return _("NT_PSINFO (psinfo structure)");
57346661 15091 case NT_LWPSTATUS:
1ec5cd37 15092 return _("NT_LWPSTATUS (lwpstatus_t structure)");
57346661 15093 case NT_LWPSINFO:
1ec5cd37 15094 return _("NT_LWPSINFO (lwpsinfo_t structure)");
57346661 15095 case NT_WIN32PSTATUS:
1ec5cd37 15096 return _("NT_WIN32PSTATUS (win32_pstatus structure)");
9ece1fa9
TT
15097 case NT_SIGINFO:
15098 return _("NT_SIGINFO (siginfo_t data)");
15099 case NT_FILE:
15100 return _("NT_FILE (mapped files)");
1ec5cd37
NC
15101 default:
15102 break;
15103 }
15104 else
15105 switch (e_type)
15106 {
15107 case NT_VERSION:
15108 return _("NT_VERSION (version)");
15109 case NT_ARCH:
15110 return _("NT_ARCH (architecture)");
15111 default:
15112 break;
15113 }
15114
e9e44622 15115 snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
1ec5cd37 15116 return buff;
779fe533
NC
15117}
15118
9ece1fa9
TT
15119static int
15120print_core_note (Elf_Internal_Note *pnote)
15121{
15122 unsigned int addr_size = is_32bit_elf ? 4 : 8;
15123 bfd_vma count, page_size;
15124 unsigned char *descdata, *filenames, *descend;
15125
15126 if (pnote->type != NT_FILE)
15127 return 1;
15128
15129#ifndef BFD64
15130 if (!is_32bit_elf)
15131 {
15132 printf (_(" Cannot decode 64-bit note in 32-bit build\n"));
15133 /* Still "successful". */
15134 return 1;
15135 }
15136#endif
15137
15138 if (pnote->descsz < 2 * addr_size)
15139 {
15140 printf (_(" Malformed note - too short for header\n"));
15141 return 0;
15142 }
15143
15144 descdata = (unsigned char *) pnote->descdata;
15145 descend = descdata + pnote->descsz;
15146
15147 if (descdata[pnote->descsz - 1] != '\0')
15148 {
15149 printf (_(" Malformed note - does not end with \\0\n"));
15150 return 0;
15151 }
15152
15153 count = byte_get (descdata, addr_size);
15154 descdata += addr_size;
15155
15156 page_size = byte_get (descdata, addr_size);
15157 descdata += addr_size;
15158
15159 if (pnote->descsz < 2 * addr_size + count * 3 * addr_size)
15160 {
15161 printf (_(" Malformed note - too short for supplied file count\n"));
15162 return 0;
15163 }
15164
15165 printf (_(" Page size: "));
15166 print_vma (page_size, DEC);
15167 printf ("\n");
15168
15169 printf (_(" %*s%*s%*s\n"),
15170 (int) (2 + 2 * addr_size), _("Start"),
15171 (int) (4 + 2 * addr_size), _("End"),
15172 (int) (4 + 2 * addr_size), _("Page Offset"));
15173 filenames = descdata + count * 3 * addr_size;
595712bb 15174 while (count-- > 0)
9ece1fa9
TT
15175 {
15176 bfd_vma start, end, file_ofs;
15177
15178 if (filenames == descend)
15179 {
15180 printf (_(" Malformed note - filenames end too early\n"));
15181 return 0;
15182 }
15183
15184 start = byte_get (descdata, addr_size);
15185 descdata += addr_size;
15186 end = byte_get (descdata, addr_size);
15187 descdata += addr_size;
15188 file_ofs = byte_get (descdata, addr_size);
15189 descdata += addr_size;
15190
15191 printf (" ");
15192 print_vma (start, FULL_HEX);
15193 printf (" ");
15194 print_vma (end, FULL_HEX);
15195 printf (" ");
15196 print_vma (file_ofs, FULL_HEX);
15197 printf ("\n %s\n", filenames);
15198
15199 filenames += 1 + strlen ((char *) filenames);
15200 }
15201
15202 return 1;
15203}
15204
1118d252
RM
15205static const char *
15206get_gnu_elf_note_type (unsigned e_type)
15207{
15208 static char buff[64];
15209
15210 switch (e_type)
15211 {
15212 case NT_GNU_ABI_TAG:
15213 return _("NT_GNU_ABI_TAG (ABI version tag)");
15214 case NT_GNU_HWCAP:
15215 return _("NT_GNU_HWCAP (DSO-supplied software HWCAP info)");
15216 case NT_GNU_BUILD_ID:
15217 return _("NT_GNU_BUILD_ID (unique build ID bitstring)");
0297aed6
DM
15218 case NT_GNU_GOLD_VERSION:
15219 return _("NT_GNU_GOLD_VERSION (gold version)");
1118d252
RM
15220 default:
15221 break;
15222 }
15223
15224 snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
15225 return buff;
15226}
15227
664f90a3
TT
15228static int
15229print_gnu_note (Elf_Internal_Note *pnote)
15230{
15231 switch (pnote->type)
15232 {
15233 case NT_GNU_BUILD_ID:
15234 {
15235 unsigned long i;
15236
15237 printf (_(" Build ID: "));
15238 for (i = 0; i < pnote->descsz; ++i)
15239 printf ("%02x", pnote->descdata[i] & 0xff);
9cf03b7e 15240 printf ("\n");
664f90a3
TT
15241 }
15242 break;
15243
15244 case NT_GNU_ABI_TAG:
15245 {
15246 unsigned long os, major, minor, subminor;
15247 const char *osname;
15248
3102e897
NC
15249 /* PR 17531: file: 030-599401-0.004. */
15250 if (pnote->descsz < 16)
15251 {
15252 printf (_(" <corrupt GNU_ABI_TAG>\n"));
15253 break;
15254 }
15255
664f90a3
TT
15256 os = byte_get ((unsigned char *) pnote->descdata, 4);
15257 major = byte_get ((unsigned char *) pnote->descdata + 4, 4);
15258 minor = byte_get ((unsigned char *) pnote->descdata + 8, 4);
15259 subminor = byte_get ((unsigned char *) pnote->descdata + 12, 4);
15260
15261 switch (os)
15262 {
15263 case GNU_ABI_TAG_LINUX:
15264 osname = "Linux";
15265 break;
15266 case GNU_ABI_TAG_HURD:
15267 osname = "Hurd";
15268 break;
15269 case GNU_ABI_TAG_SOLARIS:
15270 osname = "Solaris";
15271 break;
15272 case GNU_ABI_TAG_FREEBSD:
15273 osname = "FreeBSD";
15274 break;
15275 case GNU_ABI_TAG_NETBSD:
15276 osname = "NetBSD";
15277 break;
14ae95f2
RM
15278 case GNU_ABI_TAG_SYLLABLE:
15279 osname = "Syllable";
15280 break;
15281 case GNU_ABI_TAG_NACL:
15282 osname = "NaCl";
15283 break;
664f90a3
TT
15284 default:
15285 osname = "Unknown";
15286 break;
15287 }
15288
15289 printf (_(" OS: %s, ABI: %ld.%ld.%ld\n"), osname,
15290 major, minor, subminor);
15291 }
15292 break;
926c5385
CC
15293
15294 case NT_GNU_GOLD_VERSION:
15295 {
15296 unsigned long i;
15297
15298 printf (_(" Version: "));
15299 for (i = 0; i < pnote->descsz && pnote->descdata[i] != '\0'; ++i)
15300 printf ("%c", pnote->descdata[i]);
15301 printf ("\n");
15302 }
15303 break;
664f90a3
TT
15304 }
15305
15306 return 1;
15307}
15308
685080f2
NC
15309static const char *
15310get_v850_elf_note_type (enum v850_notes n_type)
15311{
15312 static char buff[64];
15313
15314 switch (n_type)
15315 {
15316 case V850_NOTE_ALIGNMENT: return _("Alignment of 8-byte objects");
15317 case V850_NOTE_DATA_SIZE: return _("Sizeof double and long double");
15318 case V850_NOTE_FPU_INFO: return _("Type of FPU support needed");
15319 case V850_NOTE_SIMD_INFO: return _("Use of SIMD instructions");
15320 case V850_NOTE_CACHE_INFO: return _("Use of cache");
15321 case V850_NOTE_MMU_INFO: return _("Use of MMU");
15322 default:
15323 snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), n_type);
15324 return buff;
15325 }
15326}
15327
15328static int
15329print_v850_note (Elf_Internal_Note * pnote)
15330{
15331 unsigned int val;
15332
15333 if (pnote->descsz != 4)
15334 return 0;
15335 val = byte_get ((unsigned char *) pnote->descdata, pnote->descsz);
15336
15337 if (val == 0)
15338 {
15339 printf (_("not set\n"));
15340 return 1;
15341 }
15342
15343 switch (pnote->type)
15344 {
15345 case V850_NOTE_ALIGNMENT:
15346 switch (val)
15347 {
15348 case EF_RH850_DATA_ALIGN4: printf (_("4-byte\n")); return 1;
15349 case EF_RH850_DATA_ALIGN8: printf (_("8-byte\n")); return 1;
15350 }
15351 break;
14ae95f2 15352
685080f2
NC
15353 case V850_NOTE_DATA_SIZE:
15354 switch (val)
15355 {
15356 case EF_RH850_DOUBLE32: printf (_("4-bytes\n")); return 1;
15357 case EF_RH850_DOUBLE64: printf (_("8-bytes\n")); return 1;
15358 }
15359 break;
14ae95f2 15360
685080f2
NC
15361 case V850_NOTE_FPU_INFO:
15362 switch (val)
15363 {
15364 case EF_RH850_FPU20: printf (_("FPU-2.0\n")); return 1;
15365 case EF_RH850_FPU30: printf (_("FPU-3.0\n")); return 1;
15366 }
15367 break;
14ae95f2 15368
685080f2
NC
15369 case V850_NOTE_MMU_INFO:
15370 case V850_NOTE_CACHE_INFO:
15371 case V850_NOTE_SIMD_INFO:
15372 if (val == EF_RH850_SIMD)
15373 {
15374 printf (_("yes\n"));
15375 return 1;
15376 }
15377 break;
15378
15379 default:
15380 /* An 'unknown note type' message will already have been displayed. */
15381 break;
15382 }
15383
15384 printf (_("unknown value: %x\n"), val);
15385 return 0;
15386}
15387
c6056a74
SF
15388static int
15389process_netbsd_elf_note (Elf_Internal_Note * pnote)
15390{
15391 unsigned int version;
15392
15393 switch (pnote->type)
15394 {
15395 case NT_NETBSD_IDENT:
15396 version = byte_get ((unsigned char *) pnote->descdata, sizeof (version));
15397 if ((version / 10000) % 100)
15398 printf (" NetBSD\t\t0x%08lx\tIDENT %u (%u.%u%s%c)\n", pnote->descsz,
15399 version, version / 100000000, (version / 1000000) % 100,
15400 (version / 10000) % 100 > 26 ? "Z" : "",
15401 'A' + (version / 10000) % 26);
15402 else
15403 printf (" NetBSD\t\t0x%08lx\tIDENT %u (%u.%u.%u)\n", pnote->descsz,
15404 version, version / 100000000, (version / 1000000) % 100,
15405 (version / 100) % 100);
15406 return 1;
15407
15408 case NT_NETBSD_MARCH:
15409 printf (" NetBSD\t0x%08lx\tMARCH <%s>\n", pnote->descsz,
15410 pnote->descdata);
15411 return 1;
15412
15413 default:
15414 break;
15415 }
15416
15417 printf (" NetBSD\t0x%08lx\tUnknown note type: (0x%08lx)\n", pnote->descsz,
15418 pnote->type);
15419 return 1;
15420}
15421
f4ddf30f
JB
15422static const char *
15423get_freebsd_elfcore_note_type (unsigned e_type)
15424{
f4ddf30f
JB
15425 switch (e_type)
15426 {
15427 case NT_FREEBSD_THRMISC:
15428 return _("NT_THRMISC (thrmisc structure)");
15429 case NT_FREEBSD_PROCSTAT_PROC:
15430 return _("NT_PROCSTAT_PROC (proc data)");
15431 case NT_FREEBSD_PROCSTAT_FILES:
15432 return _("NT_PROCSTAT_FILES (files data)");
15433 case NT_FREEBSD_PROCSTAT_VMMAP:
15434 return _("NT_PROCSTAT_VMMAP (vmmap data)");
15435 case NT_FREEBSD_PROCSTAT_GROUPS:
15436 return _("NT_PROCSTAT_GROUPS (groups data)");
15437 case NT_FREEBSD_PROCSTAT_UMASK:
15438 return _("NT_PROCSTAT_UMASK (umask data)");
15439 case NT_FREEBSD_PROCSTAT_RLIMIT:
15440 return _("NT_PROCSTAT_RLIMIT (rlimit data)");
15441 case NT_FREEBSD_PROCSTAT_OSREL:
15442 return _("NT_PROCSTAT_OSREL (osreldate data)");
15443 case NT_FREEBSD_PROCSTAT_PSSTRINGS:
15444 return _("NT_PROCSTAT_PSSTRINGS (ps_strings data)");
15445 case NT_FREEBSD_PROCSTAT_AUXV:
15446 return _("NT_PROCSTAT_AUXV (auxv data)");
15447 }
15448 return get_note_type (e_type);
15449}
15450
9437c45b 15451static const char *
d3ba0551 15452get_netbsd_elfcore_note_type (unsigned e_type)
9437c45b
JT
15453{
15454 static char buff[64];
15455
b4db1224 15456 if (e_type == NT_NETBSDCORE_PROCINFO)
9437c45b
JT
15457 {
15458 /* NetBSD core "procinfo" structure. */
15459 return _("NetBSD procinfo structure");
15460 }
15461
15462 /* As of Jan 2002 there are no other machine-independent notes
15463 defined for NetBSD core files. If the note type is less
15464 than the start of the machine-dependent note types, we don't
15465 understand it. */
15466
b4db1224 15467 if (e_type < NT_NETBSDCORE_FIRSTMACH)
9437c45b 15468 {
e9e44622 15469 snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
9437c45b
JT
15470 return buff;
15471 }
15472
15473 switch (elf_header.e_machine)
15474 {
15475 /* On the Alpha, SPARC (32-bit and 64-bit), PT_GETREGS == mach+0
15476 and PT_GETFPREGS == mach+2. */
15477
15478 case EM_OLD_ALPHA:
15479 case EM_ALPHA:
15480 case EM_SPARC:
15481 case EM_SPARC32PLUS:
15482 case EM_SPARCV9:
15483 switch (e_type)
15484 {
2b692964 15485 case NT_NETBSDCORE_FIRSTMACH + 0:
b4db1224 15486 return _("PT_GETREGS (reg structure)");
2b692964 15487 case NT_NETBSDCORE_FIRSTMACH + 2:
b4db1224 15488 return _("PT_GETFPREGS (fpreg structure)");
9437c45b
JT
15489 default:
15490 break;
15491 }
15492 break;
15493
15494 /* On all other arch's, PT_GETREGS == mach+1 and
15495 PT_GETFPREGS == mach+3. */
15496 default:
15497 switch (e_type)
15498 {
2b692964 15499 case NT_NETBSDCORE_FIRSTMACH + 1:
b4db1224 15500 return _("PT_GETREGS (reg structure)");
2b692964 15501 case NT_NETBSDCORE_FIRSTMACH + 3:
b4db1224 15502 return _("PT_GETFPREGS (fpreg structure)");
9437c45b
JT
15503 default:
15504 break;
15505 }
15506 }
15507
9cf03b7e 15508 snprintf (buff, sizeof (buff), "PT_FIRSTMACH+%d",
e9e44622 15509 e_type - NT_NETBSDCORE_FIRSTMACH);
9437c45b
JT
15510 return buff;
15511}
15512
70616151
TT
15513static const char *
15514get_stapsdt_note_type (unsigned e_type)
15515{
15516 static char buff[64];
15517
15518 switch (e_type)
15519 {
15520 case NT_STAPSDT:
15521 return _("NT_STAPSDT (SystemTap probe descriptors)");
15522
15523 default:
15524 break;
15525 }
15526
15527 snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
15528 return buff;
15529}
15530
c6a9fc58
TT
15531static int
15532print_stapsdt_note (Elf_Internal_Note *pnote)
15533{
15534 int addr_size = is_32bit_elf ? 4 : 8;
15535 char *data = pnote->descdata;
15536 char *data_end = pnote->descdata + pnote->descsz;
15537 bfd_vma pc, base_addr, semaphore;
15538 char *provider, *probe, *arg_fmt;
15539
15540 pc = byte_get ((unsigned char *) data, addr_size);
15541 data += addr_size;
15542 base_addr = byte_get ((unsigned char *) data, addr_size);
15543 data += addr_size;
15544 semaphore = byte_get ((unsigned char *) data, addr_size);
15545 data += addr_size;
15546
15547 provider = data;
15548 data += strlen (data) + 1;
15549 probe = data;
15550 data += strlen (data) + 1;
15551 arg_fmt = data;
15552 data += strlen (data) + 1;
15553
15554 printf (_(" Provider: %s\n"), provider);
15555 printf (_(" Name: %s\n"), probe);
15556 printf (_(" Location: "));
15557 print_vma (pc, FULL_HEX);
15558 printf (_(", Base: "));
15559 print_vma (base_addr, FULL_HEX);
15560 printf (_(", Semaphore: "));
15561 print_vma (semaphore, FULL_HEX);
9cf03b7e 15562 printf ("\n");
c6a9fc58
TT
15563 printf (_(" Arguments: %s\n"), arg_fmt);
15564
15565 return data == data_end;
15566}
15567
00e98fc7
TG
15568static const char *
15569get_ia64_vms_note_type (unsigned e_type)
15570{
15571 static char buff[64];
15572
15573 switch (e_type)
15574 {
15575 case NT_VMS_MHD:
15576 return _("NT_VMS_MHD (module header)");
15577 case NT_VMS_LNM:
15578 return _("NT_VMS_LNM (language name)");
15579 case NT_VMS_SRC:
15580 return _("NT_VMS_SRC (source files)");
15581 case NT_VMS_TITLE:
9cf03b7e 15582 return "NT_VMS_TITLE";
00e98fc7
TG
15583 case NT_VMS_EIDC:
15584 return _("NT_VMS_EIDC (consistency check)");
15585 case NT_VMS_FPMODE:
15586 return _("NT_VMS_FPMODE (FP mode)");
15587 case NT_VMS_LINKTIME:
9cf03b7e 15588 return "NT_VMS_LINKTIME";
00e98fc7
TG
15589 case NT_VMS_IMGNAM:
15590 return _("NT_VMS_IMGNAM (image name)");
15591 case NT_VMS_IMGID:
15592 return _("NT_VMS_IMGID (image id)");
15593 case NT_VMS_LINKID:
15594 return _("NT_VMS_LINKID (link id)");
15595 case NT_VMS_IMGBID:
15596 return _("NT_VMS_IMGBID (build id)");
15597 case NT_VMS_GSTNAM:
15598 return _("NT_VMS_GSTNAM (sym table name)");
15599 case NT_VMS_ORIG_DYN:
9cf03b7e 15600 return "NT_VMS_ORIG_DYN";
00e98fc7 15601 case NT_VMS_PATCHTIME:
9cf03b7e 15602 return "NT_VMS_PATCHTIME";
00e98fc7
TG
15603 default:
15604 snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
15605 return buff;
15606 }
15607}
15608
15609static int
15610print_ia64_vms_note (Elf_Internal_Note * pnote)
15611{
15612 switch (pnote->type)
15613 {
15614 case NT_VMS_MHD:
15615 if (pnote->descsz > 36)
15616 {
15617 size_t l = strlen (pnote->descdata + 34);
15618 printf (_(" Creation date : %.17s\n"), pnote->descdata);
15619 printf (_(" Last patch date: %.17s\n"), pnote->descdata + 17);
15620 printf (_(" Module name : %s\n"), pnote->descdata + 34);
15621 printf (_(" Module version : %s\n"), pnote->descdata + 34 + l + 1);
15622 }
15623 else
15624 printf (_(" Invalid size\n"));
15625 break;
15626 case NT_VMS_LNM:
15627 printf (_(" Language: %s\n"), pnote->descdata);
15628 break;
15629#ifdef BFD64
15630 case NT_VMS_FPMODE:
9cf03b7e 15631 printf (_(" Floating Point mode: "));
4a5cb34f 15632 printf ("0x%016" BFD_VMA_FMT "x\n",
948f632f 15633 (bfd_vma) byte_get ((unsigned char *)pnote->descdata, 8));
00e98fc7
TG
15634 break;
15635 case NT_VMS_LINKTIME:
15636 printf (_(" Link time: "));
15637 print_vms_time
15638 ((bfd_int64_t) byte_get ((unsigned char *)pnote->descdata, 8));
15639 printf ("\n");
15640 break;
15641 case NT_VMS_PATCHTIME:
15642 printf (_(" Patch time: "));
15643 print_vms_time
15644 ((bfd_int64_t) byte_get ((unsigned char *)pnote->descdata, 8));
15645 printf ("\n");
15646 break;
15647 case NT_VMS_ORIG_DYN:
15648 printf (_(" Major id: %u, minor id: %u\n"),
15649 (unsigned) byte_get ((unsigned char *)pnote->descdata, 4),
15650 (unsigned) byte_get ((unsigned char *)pnote->descdata + 4, 4));
9cf03b7e 15651 printf (_(" Last modified : "));
00e98fc7
TG
15652 print_vms_time
15653 ((bfd_int64_t) byte_get ((unsigned char *)pnote->descdata + 8, 8));
9cf03b7e 15654 printf (_("\n Link flags : "));
4a5cb34f 15655 printf ("0x%016" BFD_VMA_FMT "x\n",
948f632f 15656 (bfd_vma) byte_get ((unsigned char *)pnote->descdata + 16, 8));
00e98fc7 15657 printf (_(" Header flags: 0x%08x\n"),
948f632f 15658 (unsigned) byte_get ((unsigned char *)pnote->descdata + 24, 4));
00e98fc7
TG
15659 printf (_(" Image id : %s\n"), pnote->descdata + 32);
15660 break;
15661#endif
15662 case NT_VMS_IMGNAM:
15663 printf (_(" Image name: %s\n"), pnote->descdata);
15664 break;
15665 case NT_VMS_GSTNAM:
15666 printf (_(" Global symbol table name: %s\n"), pnote->descdata);
15667 break;
15668 case NT_VMS_IMGID:
15669 printf (_(" Image id: %s\n"), pnote->descdata);
15670 break;
15671 case NT_VMS_LINKID:
15672 printf (_(" Linker id: %s\n"), pnote->descdata);
15673 break;
15674 default:
15675 break;
15676 }
15677 return 1;
15678}
15679
6d118b09
NC
15680/* Note that by the ELF standard, the name field is already null byte
15681 terminated, and namesz includes the terminating null byte.
15682 I.E. the value of namesz for the name "FSF" is 4.
15683
e3c8793a 15684 If the value of namesz is zero, there is no name present. */
779fe533 15685static int
2cf0635d 15686process_note (Elf_Internal_Note * pnote)
779fe533 15687{
2cf0635d
NC
15688 const char * name = pnote->namesz ? pnote->namedata : "(NONE)";
15689 const char * nt;
9437c45b
JT
15690
15691 if (pnote->namesz == 0)
1ec5cd37
NC
15692 /* If there is no note name, then use the default set of
15693 note type strings. */
15694 nt = get_note_type (pnote->type);
15695
1118d252
RM
15696 else if (const_strneq (pnote->namedata, "GNU"))
15697 /* GNU-specific object file notes. */
15698 nt = get_gnu_elf_note_type (pnote->type);
f4ddf30f
JB
15699
15700 else if (const_strneq (pnote->namedata, "FreeBSD"))
15701 /* FreeBSD-specific core file notes. */
15702 nt = get_freebsd_elfcore_note_type (pnote->type);
1118d252 15703
0112cd26 15704 else if (const_strneq (pnote->namedata, "NetBSD-CORE"))
1ec5cd37
NC
15705 /* NetBSD-specific core file notes. */
15706 nt = get_netbsd_elfcore_note_type (pnote->type);
15707
c6056a74
SF
15708 else if (const_strneq (pnote->namedata, "NetBSD"))
15709 /* NetBSD-specific core file notes. */
15710 return process_netbsd_elf_note (pnote);
15711
b15fa79e
AM
15712 else if (strneq (pnote->namedata, "SPU/", 4))
15713 {
15714 /* SPU-specific core file notes. */
15715 nt = pnote->namedata + 4;
15716 name = "SPU";
15717 }
15718
00e98fc7
TG
15719 else if (const_strneq (pnote->namedata, "IPF/VMS"))
15720 /* VMS/ia64-specific file notes. */
15721 nt = get_ia64_vms_note_type (pnote->type);
15722
70616151
TT
15723 else if (const_strneq (pnote->namedata, "stapsdt"))
15724 nt = get_stapsdt_note_type (pnote->type);
15725
9437c45b 15726 else
1ec5cd37
NC
15727 /* Don't recognize this note name; just use the default set of
15728 note type strings. */
00e98fc7 15729 nt = get_note_type (pnote->type);
9437c45b 15730
2aee03ae 15731 printf (" %-20s 0x%08lx\t%s\n", name, pnote->descsz, nt);
00e98fc7
TG
15732
15733 if (const_strneq (pnote->namedata, "IPF/VMS"))
15734 return print_ia64_vms_note (pnote);
664f90a3
TT
15735 else if (const_strneq (pnote->namedata, "GNU"))
15736 return print_gnu_note (pnote);
c6a9fc58
TT
15737 else if (const_strneq (pnote->namedata, "stapsdt"))
15738 return print_stapsdt_note (pnote);
9ece1fa9
TT
15739 else if (const_strneq (pnote->namedata, "CORE"))
15740 return print_core_note (pnote);
00e98fc7
TG
15741 else
15742 return 1;
779fe533
NC
15743}
15744
6d118b09 15745
779fe533 15746static int
2cf0635d 15747process_corefile_note_segment (FILE * file, bfd_vma offset, bfd_vma length)
779fe533 15748{
2cf0635d
NC
15749 Elf_External_Note * pnotes;
15750 Elf_External_Note * external;
c8071705 15751 char * end;
b34976b6 15752 int res = 1;
103f02d3 15753
779fe533
NC
15754 if (length <= 0)
15755 return 0;
103f02d3 15756
3f5e193b 15757 pnotes = (Elf_External_Note *) get_data (NULL, file, offset, 1, length,
15b42fb0 15758 _("notes"));
dd24e3da 15759 if (pnotes == NULL)
a6e9f9df 15760 return 0;
779fe533 15761
103f02d3 15762 external = pnotes;
103f02d3 15763
9dd3a467 15764 printf (_("\nDisplaying notes found at file offset 0x%08lx with length 0x%08lx:\n"),
f3485b74 15765 (unsigned long) offset, (unsigned long) length);
2aee03ae 15766 printf (_(" %-20s %10s\tDescription\n"), _("Owner"), _("Data size"));
103f02d3 15767
c8071705
NC
15768 end = (char *) pnotes + length;
15769 while ((char *) external < end)
779fe533 15770 {
b34976b6 15771 Elf_Internal_Note inote;
15b42fb0
AM
15772 size_t min_notesz;
15773 char *next;
2cf0635d 15774 char * temp = NULL;
c8071705 15775 size_t data_remaining = end - (char *) external;
6d118b09 15776
00e98fc7 15777 if (!is_ia64_vms ())
15b42fb0 15778 {
9dd3a467
NC
15779 /* PR binutils/15191
15780 Make sure that there is enough data to read. */
15b42fb0
AM
15781 min_notesz = offsetof (Elf_External_Note, name);
15782 if (data_remaining < min_notesz)
9dd3a467
NC
15783 {
15784 warn (_("Corrupt note: only %d bytes remain, not enough for a full note\n"),
15785 (int) data_remaining);
15786 break;
15787 }
15b42fb0
AM
15788 inote.type = BYTE_GET (external->type);
15789 inote.namesz = BYTE_GET (external->namesz);
15790 inote.namedata = external->name;
15791 inote.descsz = BYTE_GET (external->descsz);
15792 inote.descdata = inote.namedata + align_power (inote.namesz, 2);
834f871c 15793 /* PR 17531: file: 3443835e. */
c8071705 15794 if (inote.descdata < (char *) pnotes || inote.descdata > end)
834f871c
NC
15795 {
15796 warn (_("Corrupt note: name size is too big: %lx\n"), inote.namesz);
15797 inote.descdata = inote.namedata;
15798 inote.namesz = 0;
15799 }
14ae95f2 15800
15b42fb0
AM
15801 inote.descpos = offset + (inote.descdata - (char *) pnotes);
15802 next = inote.descdata + align_power (inote.descsz, 2);
15803 }
00e98fc7 15804 else
15b42fb0
AM
15805 {
15806 Elf64_External_VMS_Note *vms_external;
00e98fc7 15807
9dd3a467
NC
15808 /* PR binutils/15191
15809 Make sure that there is enough data to read. */
15b42fb0
AM
15810 min_notesz = offsetof (Elf64_External_VMS_Note, name);
15811 if (data_remaining < min_notesz)
9dd3a467
NC
15812 {
15813 warn (_("Corrupt note: only %d bytes remain, not enough for a full note\n"),
15814 (int) data_remaining);
15815 break;
15816 }
3e55a963 15817
15b42fb0
AM
15818 vms_external = (Elf64_External_VMS_Note *) external;
15819 inote.type = BYTE_GET (vms_external->type);
15820 inote.namesz = BYTE_GET (vms_external->namesz);
15821 inote.namedata = vms_external->name;
15822 inote.descsz = BYTE_GET (vms_external->descsz);
15823 inote.descdata = inote.namedata + align_power (inote.namesz, 3);
15824 inote.descpos = offset + (inote.descdata - (char *) pnotes);
15825 next = inote.descdata + align_power (inote.descsz, 3);
15826 }
15827
15828 if (inote.descdata < (char *) external + min_notesz
15829 || next < (char *) external + min_notesz
5d921cbd
NC
15830 /* PR binutils/17531: file: id:000000,sig:11,src:006986,op:havoc,rep:4. */
15831 || inote.namedata + inote.namesz < inote.namedata
15832 || inote.descdata + inote.descsz < inote.descdata
15b42fb0 15833 || data_remaining < (size_t)(next - (char *) external))
3e55a963 15834 {
15b42fb0 15835 warn (_("note with invalid namesz and/or descsz found at offset 0x%lx\n"),
0af1713e 15836 (unsigned long) ((char *) external - (char *) pnotes));
9dd3a467 15837 warn (_(" type: 0x%lx, namesize: 0x%08lx, descsize: 0x%08lx\n"),
3e55a963
NC
15838 inote.type, inote.namesz, inote.descsz);
15839 break;
15840 }
15841
15b42fb0 15842 external = (Elf_External_Note *) next;
dd24e3da 15843
6d118b09
NC
15844 /* Verify that name is null terminated. It appears that at least
15845 one version of Linux (RedHat 6.0) generates corefiles that don't
15846 comply with the ELF spec by failing to include the null byte in
15847 namesz. */
8b971f9f 15848 if (inote.namedata[inote.namesz - 1] != '\0')
6d118b09 15849 {
3f5e193b 15850 temp = (char *) malloc (inote.namesz + 1);
6d118b09
NC
15851 if (temp == NULL)
15852 {
8b73c356 15853 error (_("Out of memory allocating space for inote name\n"));
6d118b09
NC
15854 res = 0;
15855 break;
15856 }
76da6bbe 15857
6d118b09
NC
15858 strncpy (temp, inote.namedata, inote.namesz);
15859 temp[inote.namesz] = 0;
76da6bbe 15860
6d118b09
NC
15861 /* warn (_("'%s' NOTE name not properly null terminated\n"), temp); */
15862 inote.namedata = temp;
15863 }
15864
15865 res &= process_note (& inote);
103f02d3 15866
6d118b09
NC
15867 if (temp != NULL)
15868 {
15869 free (temp);
15870 temp = NULL;
15871 }
779fe533
NC
15872 }
15873
15874 free (pnotes);
103f02d3 15875
779fe533
NC
15876 return res;
15877}
15878
15879static int
2cf0635d 15880process_corefile_note_segments (FILE * file)
779fe533 15881{
2cf0635d 15882 Elf_Internal_Phdr * segment;
b34976b6
AM
15883 unsigned int i;
15884 int res = 1;
103f02d3 15885
d93f0186 15886 if (! get_program_headers (file))
779fe533 15887 return 0;
103f02d3 15888
779fe533
NC
15889 for (i = 0, segment = program_headers;
15890 i < elf_header.e_phnum;
b34976b6 15891 i++, segment++)
779fe533
NC
15892 {
15893 if (segment->p_type == PT_NOTE)
103f02d3 15894 res &= process_corefile_note_segment (file,
30800947
NC
15895 (bfd_vma) segment->p_offset,
15896 (bfd_vma) segment->p_filesz);
779fe533 15897 }
103f02d3 15898
779fe533
NC
15899 return res;
15900}
15901
685080f2
NC
15902static int
15903process_v850_notes (FILE * file, bfd_vma offset, bfd_vma length)
15904{
15905 Elf_External_Note * pnotes;
15906 Elf_External_Note * external;
c8071705 15907 char * end;
685080f2
NC
15908 int res = 1;
15909
15910 if (length <= 0)
15911 return 0;
15912
15913 pnotes = (Elf_External_Note *) get_data (NULL, file, offset, 1, length,
15914 _("v850 notes"));
15915 if (pnotes == NULL)
15916 return 0;
15917
15918 external = pnotes;
c8071705 15919 end = (char*) pnotes + length;
685080f2
NC
15920
15921 printf (_("\nDisplaying contents of Renesas V850 notes section at offset 0x%lx with length 0x%lx:\n"),
15922 (unsigned long) offset, (unsigned long) length);
15923
c8071705 15924 while ((char *) external + sizeof (Elf_External_Note) < end)
685080f2
NC
15925 {
15926 Elf_External_Note * next;
15927 Elf_Internal_Note inote;
15928
15929 inote.type = BYTE_GET (external->type);
15930 inote.namesz = BYTE_GET (external->namesz);
15931 inote.namedata = external->name;
15932 inote.descsz = BYTE_GET (external->descsz);
15933 inote.descdata = inote.namedata + align_power (inote.namesz, 2);
15934 inote.descpos = offset + (inote.descdata - (char *) pnotes);
15935
c8071705
NC
15936 if (inote.descdata < (char *) pnotes || inote.descdata >= end)
15937 {
15938 warn (_("Corrupt note: name size is too big: %lx\n"), inote.namesz);
15939 inote.descdata = inote.namedata;
15940 inote.namesz = 0;
15941 }
15942
685080f2
NC
15943 next = (Elf_External_Note *) (inote.descdata + align_power (inote.descsz, 2));
15944
c8071705 15945 if ( ((char *) next > end)
685080f2
NC
15946 || ((char *) next < (char *) pnotes))
15947 {
15948 warn (_("corrupt descsz found in note at offset 0x%lx\n"),
15949 (unsigned long) ((char *) external - (char *) pnotes));
15950 warn (_(" type: 0x%lx, namesize: 0x%lx, descsize: 0x%lx\n"),
15951 inote.type, inote.namesz, inote.descsz);
15952 break;
15953 }
15954
15955 external = next;
15956
15957 /* Prevent out-of-bounds indexing. */
c8071705 15958 if ( inote.namedata + inote.namesz > end
685080f2
NC
15959 || inote.namedata + inote.namesz < inote.namedata)
15960 {
15961 warn (_("corrupt namesz found in note at offset 0x%lx\n"),
15962 (unsigned long) ((char *) external - (char *) pnotes));
15963 warn (_(" type: 0x%lx, namesize: 0x%lx, descsize: 0x%lx\n"),
15964 inote.type, inote.namesz, inote.descsz);
15965 break;
15966 }
15967
15968 printf (" %s: ", get_v850_elf_note_type (inote.type));
15969
15970 if (! print_v850_note (& inote))
15971 {
15972 res = 0;
15973 printf ("<corrupt sizes: namesz: %lx, descsz: %lx>\n",
15974 inote.namesz, inote.descsz);
15975 }
15976 }
15977
15978 free (pnotes);
15979
15980 return res;
15981}
15982
779fe533 15983static int
2cf0635d 15984process_note_sections (FILE * file)
1ec5cd37 15985{
2cf0635d 15986 Elf_Internal_Shdr * section;
1ec5cd37 15987 unsigned long i;
df565f32 15988 int n = 0;
1ec5cd37
NC
15989 int res = 1;
15990
15991 for (i = 0, section = section_headers;
fa1908fd 15992 i < elf_header.e_shnum && section != NULL;
1ec5cd37 15993 i++, section++)
685080f2
NC
15994 {
15995 if (section->sh_type == SHT_NOTE)
15996 {
15997 res &= process_corefile_note_segment (file,
15998 (bfd_vma) section->sh_offset,
15999 (bfd_vma) section->sh_size);
16000 n++;
16001 }
16002
16003 if (( elf_header.e_machine == EM_V800
16004 || elf_header.e_machine == EM_V850
16005 || elf_header.e_machine == EM_CYGNUS_V850)
16006 && section->sh_type == SHT_RENESAS_INFO)
16007 {
16008 res &= process_v850_notes (file,
16009 (bfd_vma) section->sh_offset,
16010 (bfd_vma) section->sh_size);
16011 n++;
16012 }
16013 }
df565f32
NC
16014
16015 if (n == 0)
16016 /* Try processing NOTE segments instead. */
16017 return process_corefile_note_segments (file);
1ec5cd37
NC
16018
16019 return res;
16020}
16021
16022static int
2cf0635d 16023process_notes (FILE * file)
779fe533
NC
16024{
16025 /* If we have not been asked to display the notes then do nothing. */
16026 if (! do_notes)
16027 return 1;
103f02d3 16028
779fe533 16029 if (elf_header.e_type != ET_CORE)
1ec5cd37 16030 return process_note_sections (file);
103f02d3 16031
779fe533 16032 /* No program headers means no NOTE segment. */
1ec5cd37
NC
16033 if (elf_header.e_phnum > 0)
16034 return process_corefile_note_segments (file);
779fe533 16035
1ec5cd37
NC
16036 printf (_("No note segments present in the core file.\n"));
16037 return 1;
779fe533
NC
16038}
16039
252b5132 16040static int
2cf0635d 16041process_arch_specific (FILE * file)
252b5132 16042{
a952a375
NC
16043 if (! do_arch)
16044 return 1;
16045
252b5132
RH
16046 switch (elf_header.e_machine)
16047 {
11c1ff18
PB
16048 case EM_ARM:
16049 return process_arm_specific (file);
252b5132 16050 case EM_MIPS:
4fe85591 16051 case EM_MIPS_RS3_LE:
252b5132
RH
16052 return process_mips_specific (file);
16053 break;
35c08157
KLC
16054 case EM_NDS32:
16055 return process_nds32_specific (file);
16056 break;
34c8bcba
JM
16057 case EM_PPC:
16058 return process_power_specific (file);
16059 break;
643f7afb
AK
16060 case EM_S390:
16061 case EM_S390_OLD:
16062 return process_s390_specific (file);
16063 break;
9e8c70f9
DM
16064 case EM_SPARC:
16065 case EM_SPARC32PLUS:
16066 case EM_SPARCV9:
16067 return process_sparc_specific (file);
16068 break;
59e6276b
JM
16069 case EM_TI_C6000:
16070 return process_tic6x_specific (file);
16071 break;
13761a11
NC
16072 case EM_MSP430:
16073 return process_msp430x_specific (file);
252b5132
RH
16074 default:
16075 break;
16076 }
16077 return 1;
16078}
16079
16080static int
2cf0635d 16081get_file_header (FILE * file)
252b5132 16082{
9ea033b2
NC
16083 /* Read in the identity array. */
16084 if (fread (elf_header.e_ident, EI_NIDENT, 1, file) != 1)
252b5132
RH
16085 return 0;
16086
9ea033b2 16087 /* Determine how to read the rest of the header. */
b34976b6 16088 switch (elf_header.e_ident[EI_DATA])
9ea033b2
NC
16089 {
16090 default: /* fall through */
16091 case ELFDATANONE: /* fall through */
adab8cdc
AO
16092 case ELFDATA2LSB:
16093 byte_get = byte_get_little_endian;
16094 byte_put = byte_put_little_endian;
16095 break;
16096 case ELFDATA2MSB:
16097 byte_get = byte_get_big_endian;
16098 byte_put = byte_put_big_endian;
16099 break;
9ea033b2
NC
16100 }
16101
16102 /* For now we only support 32 bit and 64 bit ELF files. */
b34976b6 16103 is_32bit_elf = (elf_header.e_ident[EI_CLASS] != ELFCLASS64);
9ea033b2
NC
16104
16105 /* Read in the rest of the header. */
16106 if (is_32bit_elf)
16107 {
16108 Elf32_External_Ehdr ehdr32;
252b5132 16109
9ea033b2
NC
16110 if (fread (ehdr32.e_type, sizeof (ehdr32) - EI_NIDENT, 1, file) != 1)
16111 return 0;
103f02d3 16112
9ea033b2
NC
16113 elf_header.e_type = BYTE_GET (ehdr32.e_type);
16114 elf_header.e_machine = BYTE_GET (ehdr32.e_machine);
16115 elf_header.e_version = BYTE_GET (ehdr32.e_version);
16116 elf_header.e_entry = BYTE_GET (ehdr32.e_entry);
16117 elf_header.e_phoff = BYTE_GET (ehdr32.e_phoff);
16118 elf_header.e_shoff = BYTE_GET (ehdr32.e_shoff);
16119 elf_header.e_flags = BYTE_GET (ehdr32.e_flags);
16120 elf_header.e_ehsize = BYTE_GET (ehdr32.e_ehsize);
16121 elf_header.e_phentsize = BYTE_GET (ehdr32.e_phentsize);
16122 elf_header.e_phnum = BYTE_GET (ehdr32.e_phnum);
16123 elf_header.e_shentsize = BYTE_GET (ehdr32.e_shentsize);
16124 elf_header.e_shnum = BYTE_GET (ehdr32.e_shnum);
16125 elf_header.e_shstrndx = BYTE_GET (ehdr32.e_shstrndx);
16126 }
252b5132 16127 else
9ea033b2
NC
16128 {
16129 Elf64_External_Ehdr ehdr64;
a952a375
NC
16130
16131 /* If we have been compiled with sizeof (bfd_vma) == 4, then
16132 we will not be able to cope with the 64bit data found in
16133 64 ELF files. Detect this now and abort before we start
50c2245b 16134 overwriting things. */
a952a375
NC
16135 if (sizeof (bfd_vma) < 8)
16136 {
e3c8793a
NC
16137 error (_("This instance of readelf has been built without support for a\n\
1613864 bit data type and so it cannot read 64 bit ELF files.\n"));
a952a375
NC
16139 return 0;
16140 }
103f02d3 16141
9ea033b2
NC
16142 if (fread (ehdr64.e_type, sizeof (ehdr64) - EI_NIDENT, 1, file) != 1)
16143 return 0;
103f02d3 16144
9ea033b2
NC
16145 elf_header.e_type = BYTE_GET (ehdr64.e_type);
16146 elf_header.e_machine = BYTE_GET (ehdr64.e_machine);
16147 elf_header.e_version = BYTE_GET (ehdr64.e_version);
66543521
AM
16148 elf_header.e_entry = BYTE_GET (ehdr64.e_entry);
16149 elf_header.e_phoff = BYTE_GET (ehdr64.e_phoff);
16150 elf_header.e_shoff = BYTE_GET (ehdr64.e_shoff);
9ea033b2
NC
16151 elf_header.e_flags = BYTE_GET (ehdr64.e_flags);
16152 elf_header.e_ehsize = BYTE_GET (ehdr64.e_ehsize);
16153 elf_header.e_phentsize = BYTE_GET (ehdr64.e_phentsize);
16154 elf_header.e_phnum = BYTE_GET (ehdr64.e_phnum);
16155 elf_header.e_shentsize = BYTE_GET (ehdr64.e_shentsize);
16156 elf_header.e_shnum = BYTE_GET (ehdr64.e_shnum);
16157 elf_header.e_shstrndx = BYTE_GET (ehdr64.e_shstrndx);
16158 }
252b5132 16159
7ece0d85
JJ
16160 if (elf_header.e_shoff)
16161 {
16162 /* There may be some extensions in the first section header. Don't
16163 bomb if we can't read it. */
16164 if (is_32bit_elf)
049b0c3a 16165 get_32bit_section_headers (file, TRUE);
7ece0d85 16166 else
049b0c3a 16167 get_64bit_section_headers (file, TRUE);
7ece0d85 16168 }
560f3c1c 16169
252b5132
RH
16170 return 1;
16171}
16172
fb52b2f4
NC
16173/* Process one ELF object file according to the command line options.
16174 This file may actually be stored in an archive. The file is
16175 positioned at the start of the ELF object. */
16176
ff78d6d6 16177static int
2cf0635d 16178process_object (char * file_name, FILE * file)
252b5132 16179{
252b5132
RH
16180 unsigned int i;
16181
252b5132
RH
16182 if (! get_file_header (file))
16183 {
16184 error (_("%s: Failed to read file header\n"), file_name);
ff78d6d6 16185 return 1;
252b5132
RH
16186 }
16187
16188 /* Initialise per file variables. */
60bca95a 16189 for (i = ARRAY_SIZE (version_info); i--;)
252b5132
RH
16190 version_info[i] = 0;
16191
60bca95a 16192 for (i = ARRAY_SIZE (dynamic_info); i--;)
252b5132 16193 dynamic_info[i] = 0;
5115b233 16194 dynamic_info_DT_GNU_HASH = 0;
252b5132
RH
16195
16196 /* Process the file. */
16197 if (show_name)
16198 printf (_("\nFile: %s\n"), file_name);
16199
18bd398b
NC
16200 /* Initialise the dump_sects array from the cmdline_dump_sects array.
16201 Note we do this even if cmdline_dump_sects is empty because we
16202 must make sure that the dump_sets array is zeroed out before each
16203 object file is processed. */
16204 if (num_dump_sects > num_cmdline_dump_sects)
09c11c86 16205 memset (dump_sects, 0, num_dump_sects * sizeof (* dump_sects));
18bd398b
NC
16206
16207 if (num_cmdline_dump_sects > 0)
16208 {
16209 if (num_dump_sects == 0)
16210 /* A sneaky way of allocating the dump_sects array. */
09c11c86 16211 request_dump_bynumber (num_cmdline_dump_sects, 0);
18bd398b
NC
16212
16213 assert (num_dump_sects >= num_cmdline_dump_sects);
09c11c86
NC
16214 memcpy (dump_sects, cmdline_dump_sects,
16215 num_cmdline_dump_sects * sizeof (* dump_sects));
18bd398b 16216 }
d70c5fc7 16217
252b5132 16218 if (! process_file_header ())
fb52b2f4 16219 return 1;
252b5132 16220
d1f5c6e3 16221 if (! process_section_headers (file))
2f62977e 16222 {
d1f5c6e3
L
16223 /* Without loaded section headers we cannot process lots of
16224 things. */
2f62977e 16225 do_unwind = do_version = do_dump = do_arch = 0;
252b5132 16226
2f62977e 16227 if (! do_using_dynamic)
2c610e4b 16228 do_syms = do_dyn_syms = do_reloc = 0;
2f62977e 16229 }
252b5132 16230
d1f5c6e3
L
16231 if (! process_section_groups (file))
16232 {
16233 /* Without loaded section groups we cannot process unwind. */
16234 do_unwind = 0;
16235 }
16236
2f62977e 16237 if (process_program_headers (file))
b2d38a17 16238 process_dynamic_section (file);
252b5132
RH
16239
16240 process_relocs (file);
16241
4d6ed7c8
NC
16242 process_unwind (file);
16243
252b5132
RH
16244 process_symbol_table (file);
16245
16246 process_syminfo (file);
16247
16248 process_version_sections (file);
16249
16250 process_section_contents (file);
f5842774 16251
1ec5cd37 16252 process_notes (file);
103f02d3 16253
047b2264
JJ
16254 process_gnu_liblist (file);
16255
252b5132
RH
16256 process_arch_specific (file);
16257
d93f0186
NC
16258 if (program_headers)
16259 {
16260 free (program_headers);
16261 program_headers = NULL;
16262 }
16263
252b5132
RH
16264 if (section_headers)
16265 {
16266 free (section_headers);
16267 section_headers = NULL;
16268 }
16269
16270 if (string_table)
16271 {
16272 free (string_table);
16273 string_table = NULL;
d40ac9bd 16274 string_table_length = 0;
252b5132
RH
16275 }
16276
16277 if (dynamic_strings)
16278 {
16279 free (dynamic_strings);
16280 dynamic_strings = NULL;
d79b3d50 16281 dynamic_strings_length = 0;
252b5132
RH
16282 }
16283
16284 if (dynamic_symbols)
16285 {
16286 free (dynamic_symbols);
16287 dynamic_symbols = NULL;
19936277 16288 num_dynamic_syms = 0;
252b5132
RH
16289 }
16290
16291 if (dynamic_syminfo)
16292 {
16293 free (dynamic_syminfo);
16294 dynamic_syminfo = NULL;
16295 }
ff78d6d6 16296
293c573e
MR
16297 if (dynamic_section)
16298 {
16299 free (dynamic_section);
16300 dynamic_section = NULL;
16301 }
16302
e4b17d5c
L
16303 if (section_headers_groups)
16304 {
16305 free (section_headers_groups);
16306 section_headers_groups = NULL;
16307 }
16308
16309 if (section_groups)
16310 {
2cf0635d
NC
16311 struct group_list * g;
16312 struct group_list * next;
e4b17d5c
L
16313
16314 for (i = 0; i < group_count; i++)
16315 {
16316 for (g = section_groups [i].root; g != NULL; g = next)
16317 {
16318 next = g->next;
16319 free (g);
16320 }
16321 }
16322
16323 free (section_groups);
16324 section_groups = NULL;
16325 }
16326
19e6b90e 16327 free_debug_memory ();
18bd398b 16328
ff78d6d6 16329 return 0;
252b5132
RH
16330}
16331
2cf0635d
NC
16332/* Process an ELF archive.
16333 On entry the file is positioned just after the ARMAG string. */
16334
16335static int
16336process_archive (char * file_name, FILE * file, bfd_boolean is_thin_archive)
16337{
16338 struct archive_info arch;
16339 struct archive_info nested_arch;
16340 size_t got;
2cf0635d
NC
16341 int ret;
16342
16343 show_name = 1;
16344
16345 /* The ARCH structure is used to hold information about this archive. */
16346 arch.file_name = NULL;
16347 arch.file = NULL;
16348 arch.index_array = NULL;
16349 arch.sym_table = NULL;
16350 arch.longnames = NULL;
16351
16352 /* The NESTED_ARCH structure is used as a single-item cache of information
16353 about a nested archive (when members of a thin archive reside within
16354 another regular archive file). */
16355 nested_arch.file_name = NULL;
16356 nested_arch.file = NULL;
16357 nested_arch.index_array = NULL;
16358 nested_arch.sym_table = NULL;
16359 nested_arch.longnames = NULL;
16360
16361 if (setup_archive (&arch, file_name, file, is_thin_archive, do_archive_index) != 0)
16362 {
16363 ret = 1;
16364 goto out;
4145f1d5 16365 }
fb52b2f4 16366
4145f1d5
NC
16367 if (do_archive_index)
16368 {
2cf0635d 16369 if (arch.sym_table == NULL)
4145f1d5
NC
16370 error (_("%s: unable to dump the index as none was found\n"), file_name);
16371 else
16372 {
591f7597 16373 unsigned long i, l;
4145f1d5
NC
16374 unsigned long current_pos;
16375
591f7597
NC
16376 printf (_("Index of archive %s: (%lu entries, 0x%lx bytes in the symbol table)\n"),
16377 file_name, (unsigned long) arch.index_num, arch.sym_size);
4145f1d5
NC
16378 current_pos = ftell (file);
16379
2cf0635d 16380 for (i = l = 0; i < arch.index_num; i++)
4145f1d5 16381 {
2cf0635d
NC
16382 if ((i == 0) || ((i > 0) && (arch.index_array[i] != arch.index_array[i - 1])))
16383 {
16384 char * member_name;
4145f1d5 16385
2cf0635d
NC
16386 member_name = get_archive_member_name_at (&arch, arch.index_array[i], &nested_arch);
16387
16388 if (member_name != NULL)
16389 {
16390 char * qualified_name = make_qualified_name (&arch, &nested_arch, member_name);
16391
16392 if (qualified_name != NULL)
16393 {
c2a7d3f5
NC
16394 printf (_("Contents of binary %s at offset "), qualified_name);
16395 (void) print_vma (arch.index_array[i], PREFIX_HEX);
16396 putchar ('\n');
2cf0635d
NC
16397 free (qualified_name);
16398 }
4145f1d5
NC
16399 }
16400 }
2cf0635d
NC
16401
16402 if (l >= arch.sym_size)
4145f1d5
NC
16403 {
16404 error (_("%s: end of the symbol table reached before the end of the index\n"),
16405 file_name);
cb8f3167 16406 break;
4145f1d5 16407 }
591f7597
NC
16408 /* PR 17531: file: 0b6630b2. */
16409 printf ("\t%.*s\n", (int) (arch.sym_size - l), arch.sym_table + l);
16410 l += strnlen (arch.sym_table + l, arch.sym_size - l) + 1;
4145f1d5
NC
16411 }
16412
c2a7d3f5
NC
16413 if (arch.uses_64bit_indicies)
16414 l = (l + 7) & ~ 7;
16415 else
16416 l += l & 1;
16417
2cf0635d 16418 if (l < arch.sym_size)
c2a7d3f5
NC
16419 error (_("%s: %ld bytes remain in the symbol table, but without corresponding entries in the index table\n"),
16420 file_name, arch.sym_size - l);
4145f1d5 16421
4145f1d5
NC
16422 if (fseek (file, current_pos, SEEK_SET) != 0)
16423 {
16424 error (_("%s: failed to seek back to start of object files in the archive\n"), file_name);
2cf0635d
NC
16425 ret = 1;
16426 goto out;
4145f1d5 16427 }
fb52b2f4 16428 }
4145f1d5
NC
16429
16430 if (!do_dynamic && !do_syms && !do_reloc && !do_unwind && !do_sections
16431 && !do_segments && !do_header && !do_dump && !do_version
16432 && !do_histogram && !do_debugging && !do_arch && !do_notes
2c610e4b 16433 && !do_section_groups && !do_dyn_syms)
2cf0635d
NC
16434 {
16435 ret = 0; /* Archive index only. */
16436 goto out;
16437 }
fb52b2f4
NC
16438 }
16439
d989285c 16440 ret = 0;
fb52b2f4
NC
16441
16442 while (1)
16443 {
2cf0635d
NC
16444 char * name;
16445 size_t namelen;
16446 char * qualified_name;
16447
16448 /* Read the next archive header. */
16449 if (fseek (file, arch.next_arhdr_offset, SEEK_SET) != 0)
16450 {
16451 error (_("%s: failed to seek to next archive header\n"), file_name);
16452 return 1;
16453 }
16454 got = fread (&arch.arhdr, 1, sizeof arch.arhdr, file);
16455 if (got != sizeof arch.arhdr)
16456 {
16457 if (got == 0)
16458 break;
16459 error (_("%s: failed to read archive header\n"), file_name);
16460 ret = 1;
16461 break;
16462 }
16463 if (memcmp (arch.arhdr.ar_fmag, ARFMAG, 2) != 0)
16464 {
16465 error (_("%s: did not find a valid archive header\n"), arch.file_name);
16466 ret = 1;
16467 break;
16468 }
16469
16470 arch.next_arhdr_offset += sizeof arch.arhdr;
16471
16472 archive_file_size = strtoul (arch.arhdr.ar_size, NULL, 10);
16473 if (archive_file_size & 01)
16474 ++archive_file_size;
16475
16476 name = get_archive_member_name (&arch, &nested_arch);
16477 if (name == NULL)
fb52b2f4 16478 {
0fd3a477 16479 error (_("%s: bad archive file name\n"), file_name);
d989285c
ILT
16480 ret = 1;
16481 break;
fb52b2f4 16482 }
2cf0635d 16483 namelen = strlen (name);
fb52b2f4 16484
2cf0635d
NC
16485 qualified_name = make_qualified_name (&arch, &nested_arch, name);
16486 if (qualified_name == NULL)
fb52b2f4 16487 {
2cf0635d 16488 error (_("%s: bad archive file name\n"), file_name);
d989285c
ILT
16489 ret = 1;
16490 break;
fb52b2f4
NC
16491 }
16492
2cf0635d
NC
16493 if (is_thin_archive && arch.nested_member_origin == 0)
16494 {
16495 /* This is a proxy for an external member of a thin archive. */
16496 FILE * member_file;
16497 char * member_file_name = adjust_relative_path (file_name, name, namelen);
16498 if (member_file_name == NULL)
16499 {
16500 ret = 1;
16501 break;
16502 }
16503
16504 member_file = fopen (member_file_name, "rb");
16505 if (member_file == NULL)
16506 {
16507 error (_("Input file '%s' is not readable.\n"), member_file_name);
16508 free (member_file_name);
16509 ret = 1;
16510 break;
16511 }
16512
16513 archive_file_offset = arch.nested_member_origin;
16514
16515 ret |= process_object (qualified_name, member_file);
16516
16517 fclose (member_file);
16518 free (member_file_name);
16519 }
16520 else if (is_thin_archive)
16521 {
a043396b
NC
16522 /* PR 15140: Allow for corrupt thin archives. */
16523 if (nested_arch.file == NULL)
16524 {
16525 error (_("%s: contains corrupt thin archive: %s\n"),
16526 file_name, name);
16527 ret = 1;
16528 break;
16529 }
16530
2cf0635d
NC
16531 /* This is a proxy for a member of a nested archive. */
16532 archive_file_offset = arch.nested_member_origin + sizeof arch.arhdr;
16533
16534 /* The nested archive file will have been opened and setup by
16535 get_archive_member_name. */
16536 if (fseek (nested_arch.file, archive_file_offset, SEEK_SET) != 0)
16537 {
16538 error (_("%s: failed to seek to archive member.\n"), nested_arch.file_name);
16539 ret = 1;
16540 break;
16541 }
16542
16543 ret |= process_object (qualified_name, nested_arch.file);
16544 }
16545 else
16546 {
16547 archive_file_offset = arch.next_arhdr_offset;
16548 arch.next_arhdr_offset += archive_file_size;
fb52b2f4 16549
2cf0635d
NC
16550 ret |= process_object (qualified_name, file);
16551 }
fb52b2f4 16552
2b52916e
L
16553 if (dump_sects != NULL)
16554 {
16555 free (dump_sects);
16556 dump_sects = NULL;
16557 num_dump_sects = 0;
16558 }
16559
2cf0635d 16560 free (qualified_name);
fb52b2f4
NC
16561 }
16562
4145f1d5 16563 out:
2cf0635d
NC
16564 if (nested_arch.file != NULL)
16565 fclose (nested_arch.file);
16566 release_archive (&nested_arch);
16567 release_archive (&arch);
fb52b2f4 16568
d989285c 16569 return ret;
fb52b2f4
NC
16570}
16571
16572static int
2cf0635d 16573process_file (char * file_name)
fb52b2f4 16574{
2cf0635d 16575 FILE * file;
fb52b2f4
NC
16576 struct stat statbuf;
16577 char armag[SARMAG];
16578 int ret;
16579
16580 if (stat (file_name, &statbuf) < 0)
16581 {
f24ddbdd
NC
16582 if (errno == ENOENT)
16583 error (_("'%s': No such file\n"), file_name);
16584 else
16585 error (_("Could not locate '%s'. System error message: %s\n"),
16586 file_name, strerror (errno));
16587 return 1;
16588 }
16589
16590 if (! S_ISREG (statbuf.st_mode))
16591 {
16592 error (_("'%s' is not an ordinary file\n"), file_name);
fb52b2f4
NC
16593 return 1;
16594 }
16595
16596 file = fopen (file_name, "rb");
16597 if (file == NULL)
16598 {
f24ddbdd 16599 error (_("Input file '%s' is not readable.\n"), file_name);
fb52b2f4
NC
16600 return 1;
16601 }
16602
16603 if (fread (armag, SARMAG, 1, file) != 1)
16604 {
4145f1d5 16605 error (_("%s: Failed to read file's magic number\n"), file_name);
fb52b2f4
NC
16606 fclose (file);
16607 return 1;
16608 }
16609
f54498b4
NC
16610 current_file_size = (bfd_size_type) statbuf.st_size;
16611
fb52b2f4 16612 if (memcmp (armag, ARMAG, SARMAG) == 0)
2cf0635d
NC
16613 ret = process_archive (file_name, file, FALSE);
16614 else if (memcmp (armag, ARMAGT, SARMAG) == 0)
16615 ret = process_archive (file_name, file, TRUE);
fb52b2f4
NC
16616 else
16617 {
4145f1d5
NC
16618 if (do_archive_index)
16619 error (_("File %s is not an archive so its index cannot be displayed.\n"),
16620 file_name);
16621
fb52b2f4
NC
16622 rewind (file);
16623 archive_file_size = archive_file_offset = 0;
16624 ret = process_object (file_name, file);
16625 }
16626
16627 fclose (file);
16628
f54498b4 16629 current_file_size = 0;
fb52b2f4
NC
16630 return ret;
16631}
16632
252b5132
RH
16633#ifdef SUPPORT_DISASSEMBLY
16634/* Needed by the i386 disassembler. For extra credit, someone could
9ea033b2 16635 fix this so that we insert symbolic addresses here, esp for GOT/PLT
e3c8793a 16636 symbols. */
252b5132
RH
16637
16638void
2cf0635d 16639print_address (unsigned int addr, FILE * outfile)
252b5132
RH
16640{
16641 fprintf (outfile,"0x%8.8x", addr);
16642}
16643
e3c8793a 16644/* Needed by the i386 disassembler. */
252b5132
RH
16645void
16646db_task_printsym (unsigned int addr)
16647{
16648 print_address (addr, stderr);
16649}
16650#endif
16651
16652int
2cf0635d 16653main (int argc, char ** argv)
252b5132 16654{
ff78d6d6
L
16655 int err;
16656
252b5132
RH
16657#if defined (HAVE_SETLOCALE) && defined (HAVE_LC_MESSAGES)
16658 setlocale (LC_MESSAGES, "");
3882b010
L
16659#endif
16660#if defined (HAVE_SETLOCALE)
16661 setlocale (LC_CTYPE, "");
252b5132
RH
16662#endif
16663 bindtextdomain (PACKAGE, LOCALEDIR);
16664 textdomain (PACKAGE);
16665
869b9d07
MM
16666 expandargv (&argc, &argv);
16667
252b5132
RH
16668 parse_args (argc, argv);
16669
18bd398b 16670 if (num_dump_sects > 0)
59f14fc0 16671 {
18bd398b 16672 /* Make a copy of the dump_sects array. */
3f5e193b
NC
16673 cmdline_dump_sects = (dump_type *)
16674 malloc (num_dump_sects * sizeof (* dump_sects));
59f14fc0 16675 if (cmdline_dump_sects == NULL)
591a748a 16676 error (_("Out of memory allocating dump request table.\n"));
59f14fc0
AS
16677 else
16678 {
09c11c86
NC
16679 memcpy (cmdline_dump_sects, dump_sects,
16680 num_dump_sects * sizeof (* dump_sects));
59f14fc0
AS
16681 num_cmdline_dump_sects = num_dump_sects;
16682 }
16683 }
16684
18bd398b
NC
16685 if (optind < (argc - 1))
16686 show_name = 1;
5656ba2c
L
16687 else if (optind >= argc)
16688 {
16689 warn (_("Nothing to do.\n"));
16690 usage (stderr);
16691 }
18bd398b 16692
ff78d6d6 16693 err = 0;
252b5132 16694 while (optind < argc)
18bd398b 16695 err |= process_file (argv[optind++]);
252b5132
RH
16696
16697 if (dump_sects != NULL)
16698 free (dump_sects);
59f14fc0
AS
16699 if (cmdline_dump_sects != NULL)
16700 free (cmdline_dump_sects);
252b5132 16701
ff78d6d6 16702 return err;
252b5132 16703}