1 /* readelf.c -- display contents of an ELF format file
2 Copyright 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007,
4 Free Software Foundation, Inc.
6 Originally developed by Eric Youngdale <eric@andante.jic.com>
7 Modifications by Nick Clifton <nickc@redhat.com>
9 This file is part of GNU Binutils.
11 This program is free software; you can redistribute it and/or modify
12 it under the terms of the GNU General Public License as published by
13 the Free Software Foundation; either version 3 of the License, or
14 (at your option) any later version.
16 This program is distributed in the hope that it will be useful,
17 but WITHOUT ANY WARRANTY; without even the implied warranty of
18 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 GNU General Public License for more details.
21 You should have received a copy of the GNU General Public License
22 along with this program; if not, write to the Free Software
23 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA
26 /* The difference between readelf and objdump:
28 Both programs are capable of displaying the contents of ELF format files,
29 so why does the binutils project have two file dumpers ?
31 The reason is that objdump sees an ELF file through a BFD filter of the
32 world; if BFD has a bug where, say, it disagrees about a machine constant
33 in e_flags, then the odds are good that it will remain internally
34 consistent. The linker sees it the BFD way, objdump sees it the BFD way,
35 GAS sees it the BFD way. There was need for a tool to go find out what
36 the file actually says.
38 This is why the readelf program does not link against the BFD library - it
39 exists as an independent program to help verify the correct working of BFD.
41 There is also the case that readelf can provide more information about an
42 ELF file than is provided by objdump. In particular it can display DWARF
43 debugging information which (at the moment) objdump cannot. */
55 /* Define BFD64 here, even if our default architecture is 32 bit ELF
56 as this will allow us to read in and parse 64bit and 32bit ELF files.
57 Only do this if we believe that the compiler can support a 64 bit
58 data type. For now we only rely on GCC being able to do this. */
67 #include "elf/common.h"
68 #include "elf/external.h"
69 #include "elf/internal.h"
72 /* Included here, before RELOC_MACROS_GEN_FUNC is defined, so that
73 we can obtain the H8 reloc numbers. We need these for the
74 get_reloc_size() function. We include h8.h again after defining
75 RELOC_MACROS_GEN_FUNC so that we get the naming function as well. */
80 /* Undo the effects of #including reloc-macros.h. */
82 #undef START_RELOC_NUMBERS
86 #undef END_RELOC_NUMBERS
87 #undef _RELOC_MACROS_H
89 /* The following headers use the elf/reloc-macros.h file to
90 automatically generate relocation recognition functions
91 such as elf_mips_reloc_type() */
93 #define RELOC_MACROS_GEN_FUNC
95 #include "elf/alpha.h"
100 #include "elf/cr16.h"
101 #include "elf/cris.h"
103 #include "elf/d10v.h"
104 #include "elf/d30v.h"
106 #include "elf/fr30.h"
109 #include "elf/hppa.h"
110 #include "elf/i386.h"
111 #include "elf/i370.h"
112 #include "elf/i860.h"
113 #include "elf/i960.h"
114 #include "elf/ia64.h"
115 #include "elf/ip2k.h"
116 #include "elf/lm32.h"
117 #include "elf/iq2000.h"
118 #include "elf/m32c.h"
119 #include "elf/m32r.h"
120 #include "elf/m68k.h"
121 #include "elf/m68hc11.h"
122 #include "elf/mcore.h"
124 #include "elf/microblaze.h"
125 #include "elf/mips.h"
126 #include "elf/mmix.h"
127 #include "elf/mn10200.h"
128 #include "elf/mn10300.h"
129 #include "elf/moxie.h"
131 #include "elf/msp430.h"
132 #include "elf/or32.h"
135 #include "elf/ppc64.h"
137 #include "elf/s390.h"
138 #include "elf/score.h"
140 #include "elf/sparc.h"
142 #include "elf/tic6x.h"
143 #include "elf/v850.h"
145 #include "elf/x86-64.h"
146 #include "elf/xc16x.h"
147 #include "elf/xstormy16.h"
148 #include "elf/xtensa.h"
151 #include "libiberty.h"
152 #include "safe-ctype.h"
153 #include "filenames.h"
155 char * program_name
= "readelf";
156 static long archive_file_offset
;
157 static unsigned long archive_file_size
;
158 static unsigned long dynamic_addr
;
159 static bfd_size_type dynamic_size
;
160 static unsigned int dynamic_nent
;
161 static char * dynamic_strings
;
162 static unsigned long dynamic_strings_length
;
163 static char * string_table
;
164 static unsigned long string_table_length
;
165 static unsigned long num_dynamic_syms
;
166 static Elf_Internal_Sym
* dynamic_symbols
;
167 static Elf_Internal_Syminfo
* dynamic_syminfo
;
168 static unsigned long dynamic_syminfo_offset
;
169 static unsigned int dynamic_syminfo_nent
;
170 static char program_interpreter
[PATH_MAX
];
171 static bfd_vma dynamic_info
[DT_ENCODING
];
172 static bfd_vma dynamic_info_DT_GNU_HASH
;
173 static bfd_vma version_info
[16];
174 static Elf_Internal_Ehdr elf_header
;
175 static Elf_Internal_Shdr
* section_headers
;
176 static Elf_Internal_Phdr
* program_headers
;
177 static Elf_Internal_Dyn
* dynamic_section
;
178 static Elf_Internal_Shdr
* symtab_shndx_hdr
;
179 static int show_name
;
180 static int do_dynamic
;
182 static int do_dyn_syms
;
184 static int do_sections
;
185 static int do_section_groups
;
186 static int do_section_details
;
187 static int do_segments
;
188 static int do_unwind
;
189 static int do_using_dynamic
;
190 static int do_header
;
192 static int do_version
;
193 static int do_histogram
;
194 static int do_debugging
;
197 static int do_archive_index
;
198 static int is_32bit_elf
;
202 struct group_list
* next
;
203 unsigned int section_index
;
208 struct group_list
* root
;
209 unsigned int group_index
;
212 static size_t group_count
;
213 static struct group
* section_groups
;
214 static struct group
** section_headers_groups
;
217 /* Flag bits indicating particular types of dump. */
218 #define HEX_DUMP (1 << 0) /* The -x command line switch. */
219 #define DISASS_DUMP (1 << 1) /* The -i command line switch. */
220 #define DEBUG_DUMP (1 << 2) /* The -w command line switch. */
221 #define STRING_DUMP (1 << 3) /* The -p command line switch. */
222 #define RELOC_DUMP (1 << 4) /* The -R command line switch. */
224 typedef unsigned char dump_type
;
226 /* A linked list of the section names for which dumps were requested. */
227 struct dump_list_entry
231 struct dump_list_entry
* next
;
233 static struct dump_list_entry
* dump_sects_byname
;
235 /* A dynamic array of flags indicating for which sections a dump
236 has been requested via command line switches. */
237 static dump_type
* cmdline_dump_sects
= NULL
;
238 static unsigned int num_cmdline_dump_sects
= 0;
240 /* A dynamic array of flags indicating for which sections a dump of
241 some kind has been requested. It is reset on a per-object file
242 basis and then initialised from the cmdline_dump_sects array,
243 the results of interpreting the -w switch, and the
244 dump_sects_byname list. */
245 static dump_type
* dump_sects
= NULL
;
246 static unsigned int num_dump_sects
= 0;
249 /* How to print a vma value. */
250 typedef enum print_mode
264 #define SECTION_NAME(X) \
265 ((X) == NULL ? _("<none>") \
266 : string_table == NULL ? _("<no-name>") \
267 : ((X)->sh_name >= string_table_length ? _("<corrupt>") \
268 : string_table + (X)->sh_name))
270 #define DT_VERSIONTAGIDX(tag) (DT_VERNEEDNUM - (tag)) /* Reverse order! */
272 #define GET_ELF_SYMBOLS(file, section) \
273 (is_32bit_elf ? get_32bit_elf_symbols (file, section) \
274 : get_64bit_elf_symbols (file, section))
276 #define VALID_DYNAMIC_NAME(offset) ((dynamic_strings != NULL) && (offset < dynamic_strings_length))
277 /* GET_DYNAMIC_NAME asssumes that VALID_DYNAMIC_NAME has
278 already been called and verified that the string exists. */
279 #define GET_DYNAMIC_NAME(offset) (dynamic_strings + offset)
281 #define REMOVE_ARCH_BITS(ADDR) do { \
282 if (elf_header.e_machine == EM_ARM) \
287 get_data (void * var
, FILE * file
, long offset
, size_t size
, size_t nmemb
,
292 if (size
== 0 || nmemb
== 0)
295 if (fseek (file
, archive_file_offset
+ offset
, SEEK_SET
))
297 error (_("Unable to seek to 0x%lx for %s\n"),
298 (unsigned long) archive_file_offset
+ offset
, reason
);
305 /* Check for overflow. */
306 if (nmemb
< (~(size_t) 0 - 1) / size
)
307 /* + 1 so that we can '\0' terminate invalid string table sections. */
308 mvar
= malloc (size
* nmemb
+ 1);
312 error (_("Out of memory allocating 0x%lx bytes for %s\n"),
313 (unsigned long)(size
* nmemb
), reason
);
317 ((char *) mvar
)[size
* nmemb
] = '\0';
320 if (fread (mvar
, size
, nmemb
, file
) != nmemb
)
322 error (_("Unable to read in 0x%lx bytes of %s\n"),
323 (unsigned long)(size
* nmemb
), reason
);
332 /* Print a VMA value. */
335 print_vma (bfd_vma vma
, print_mode mode
)
348 return nc
+ printf ("%8.8" BFD_VMA_FMT
"x", vma
);
355 return printf ("%5" BFD_VMA_FMT
"d", vma
);
363 return nc
+ printf ("%" BFD_VMA_FMT
"x", vma
);
366 return printf ("%" BFD_VMA_FMT
"d", vma
);
369 return printf ("%" BFD_VMA_FMT
"u", vma
);
374 /* Display a symbol on stdout. Handles the display of non-printing characters.
376 If DO_WIDE is not true then format the symbol to be at most WIDTH characters,
377 truncating as necessary. If WIDTH is negative then format the string to be
378 exactly - WIDTH characters, truncating or padding as necessary.
380 Returns the number of emitted characters. */
383 print_symbol (int width
, const char *symbol
)
386 bfd_boolean extra_padding
= FALSE
;
387 unsigned int num_printed
= 0;
391 /* Set the width to a very large value. This simplifies the
397 /* Keep the width positive. This also helps. */
399 extra_padding
= TRUE
;
408 /* Look for non-printing symbols inside the symbol's name.
409 This test is triggered in particular by the names generated
410 by the assembler for local labels. */
421 printf ("%.*s", len
, symbol
);
427 if (*c
== 0 || width
== 0)
430 /* Now display the non-printing character, if
431 there is room left in which to dipslay it. */
432 if ((unsigned char) *c
< 32)
437 printf ("^%c", *c
+ 0x40);
447 printf ("<0x%.2x>", (unsigned char) *c
);
456 if (extra_padding
&& width
> 0)
458 /* Fill in the remaining spaces. */
459 printf ("%-*s", width
, " ");
466 /* Return a pointer to section NAME, or NULL if no such section exists. */
468 static Elf_Internal_Shdr
*
469 find_section (const char * name
)
473 for (i
= 0; i
< elf_header
.e_shnum
; i
++)
474 if (streq (SECTION_NAME (section_headers
+ i
), name
))
475 return section_headers
+ i
;
480 /* Return a pointer to a section containing ADDR, or NULL if no such
483 static Elf_Internal_Shdr
*
484 find_section_by_address (bfd_vma addr
)
488 for (i
= 0; i
< elf_header
.e_shnum
; i
++)
490 Elf_Internal_Shdr
*sec
= section_headers
+ i
;
491 if (addr
>= sec
->sh_addr
&& addr
< sec
->sh_addr
+ sec
->sh_size
)
498 /* Read an unsigned LEB128 encoded value from p. Set *PLEN to the number of
502 read_uleb128 (unsigned char *data
, unsigned int *length_return
)
504 return read_leb128 (data
, length_return
, 0);
507 /* Return true if the current file is for IA-64 machine and OpenVMS ABI.
508 This OS has so many departures from the ELF standard that we test it at
514 return elf_header
.e_machine
== EM_IA_64
515 && elf_header
.e_ident
[EI_OSABI
] == ELFOSABI_OPENVMS
;
518 /* Guess the relocation size commonly used by the specific machines. */
521 guess_is_rela (unsigned int e_machine
)
525 /* Targets that use REL relocations. */
541 /* Targets that use RELA relocations. */
545 case EM_ALTERA_NIOS2
:
565 case EM_LATTICEMICO32
:
573 case EM_CYGNUS_MN10200
:
575 case EM_CYGNUS_MN10300
:
601 case EM_MICROBLAZE_OLD
:
622 warn (_("Don't know about relocations on this machine architecture\n"));
628 slurp_rela_relocs (FILE * file
,
629 unsigned long rel_offset
,
630 unsigned long rel_size
,
631 Elf_Internal_Rela
** relasp
,
632 unsigned long * nrelasp
)
634 Elf_Internal_Rela
* relas
;
635 unsigned long nrelas
;
640 Elf32_External_Rela
* erelas
;
642 erelas
= (Elf32_External_Rela
*) get_data (NULL
, file
, rel_offset
, 1,
643 rel_size
, _("relocs"));
647 nrelas
= rel_size
/ sizeof (Elf32_External_Rela
);
649 relas
= (Elf_Internal_Rela
*) cmalloc (nrelas
,
650 sizeof (Elf_Internal_Rela
));
655 error (_("out of memory parsing relocs\n"));
659 for (i
= 0; i
< nrelas
; i
++)
661 relas
[i
].r_offset
= BYTE_GET (erelas
[i
].r_offset
);
662 relas
[i
].r_info
= BYTE_GET (erelas
[i
].r_info
);
663 relas
[i
].r_addend
= BYTE_GET_SIGNED (erelas
[i
].r_addend
);
670 Elf64_External_Rela
* erelas
;
672 erelas
= (Elf64_External_Rela
*) get_data (NULL
, file
, rel_offset
, 1,
673 rel_size
, _("relocs"));
677 nrelas
= rel_size
/ sizeof (Elf64_External_Rela
);
679 relas
= (Elf_Internal_Rela
*) cmalloc (nrelas
,
680 sizeof (Elf_Internal_Rela
));
685 error (_("out of memory parsing relocs\n"));
689 for (i
= 0; i
< nrelas
; i
++)
691 relas
[i
].r_offset
= BYTE_GET (erelas
[i
].r_offset
);
692 relas
[i
].r_info
= BYTE_GET (erelas
[i
].r_info
);
693 relas
[i
].r_addend
= BYTE_GET_SIGNED (erelas
[i
].r_addend
);
695 /* The #ifdef BFD64 below is to prevent a compile time
696 warning. We know that if we do not have a 64 bit data
697 type that we will never execute this code anyway. */
699 if (elf_header
.e_machine
== EM_MIPS
700 && elf_header
.e_ident
[EI_DATA
] != ELFDATA2MSB
)
702 /* In little-endian objects, r_info isn't really a
703 64-bit little-endian value: it has a 32-bit
704 little-endian symbol index followed by four
705 individual byte fields. Reorder INFO
707 bfd_vma inf
= relas
[i
].r_info
;
708 inf
= (((inf
& 0xffffffff) << 32)
709 | ((inf
>> 56) & 0xff)
710 | ((inf
>> 40) & 0xff00)
711 | ((inf
>> 24) & 0xff0000)
712 | ((inf
>> 8) & 0xff000000));
713 relas
[i
].r_info
= inf
;
726 slurp_rel_relocs (FILE * file
,
727 unsigned long rel_offset
,
728 unsigned long rel_size
,
729 Elf_Internal_Rela
** relsp
,
730 unsigned long * nrelsp
)
732 Elf_Internal_Rela
* rels
;
738 Elf32_External_Rel
* erels
;
740 erels
= (Elf32_External_Rel
*) get_data (NULL
, file
, rel_offset
, 1,
741 rel_size
, _("relocs"));
745 nrels
= rel_size
/ sizeof (Elf32_External_Rel
);
747 rels
= (Elf_Internal_Rela
*) cmalloc (nrels
, sizeof (Elf_Internal_Rela
));
752 error (_("out of memory parsing relocs\n"));
756 for (i
= 0; i
< nrels
; i
++)
758 rels
[i
].r_offset
= BYTE_GET (erels
[i
].r_offset
);
759 rels
[i
].r_info
= BYTE_GET (erels
[i
].r_info
);
760 rels
[i
].r_addend
= 0;
767 Elf64_External_Rel
* erels
;
769 erels
= (Elf64_External_Rel
*) get_data (NULL
, file
, rel_offset
, 1,
770 rel_size
, _("relocs"));
774 nrels
= rel_size
/ sizeof (Elf64_External_Rel
);
776 rels
= (Elf_Internal_Rela
*) cmalloc (nrels
, sizeof (Elf_Internal_Rela
));
781 error (_("out of memory parsing relocs\n"));
785 for (i
= 0; i
< nrels
; i
++)
787 rels
[i
].r_offset
= BYTE_GET (erels
[i
].r_offset
);
788 rels
[i
].r_info
= BYTE_GET (erels
[i
].r_info
);
789 rels
[i
].r_addend
= 0;
791 /* The #ifdef BFD64 below is to prevent a compile time
792 warning. We know that if we do not have a 64 bit data
793 type that we will never execute this code anyway. */
795 if (elf_header
.e_machine
== EM_MIPS
796 && elf_header
.e_ident
[EI_DATA
] != ELFDATA2MSB
)
798 /* In little-endian objects, r_info isn't really a
799 64-bit little-endian value: it has a 32-bit
800 little-endian symbol index followed by four
801 individual byte fields. Reorder INFO
803 bfd_vma inf
= rels
[i
].r_info
;
804 inf
= (((inf
& 0xffffffff) << 32)
805 | ((inf
>> 56) & 0xff)
806 | ((inf
>> 40) & 0xff00)
807 | ((inf
>> 24) & 0xff0000)
808 | ((inf
>> 8) & 0xff000000));
809 rels
[i
].r_info
= inf
;
821 /* Returns the reloc type extracted from the reloc info field. */
824 get_reloc_type (bfd_vma reloc_info
)
827 return ELF32_R_TYPE (reloc_info
);
829 switch (elf_header
.e_machine
)
832 /* Note: We assume that reloc_info has already been adjusted for us. */
833 return ELF64_MIPS_R_TYPE (reloc_info
);
836 return ELF64_R_TYPE_ID (reloc_info
);
839 return ELF64_R_TYPE (reloc_info
);
843 /* Return the symbol index extracted from the reloc info field. */
846 get_reloc_symindex (bfd_vma reloc_info
)
848 return is_32bit_elf
? ELF32_R_SYM (reloc_info
) : ELF64_R_SYM (reloc_info
);
851 /* Display the contents of the relocation data found at the specified
855 dump_relocations (FILE * file
,
856 unsigned long rel_offset
,
857 unsigned long rel_size
,
858 Elf_Internal_Sym
* symtab
,
861 unsigned long strtablen
,
865 Elf_Internal_Rela
* rels
;
867 if (is_rela
== UNKNOWN
)
868 is_rela
= guess_is_rela (elf_header
.e_machine
);
872 if (!slurp_rela_relocs (file
, rel_offset
, rel_size
, &rels
, &rel_size
))
877 if (!slurp_rel_relocs (file
, rel_offset
, rel_size
, &rels
, &rel_size
))
886 printf (_(" Offset Info Type Sym. Value Symbol's Name + Addend\n"));
888 printf (_(" Offset Info Type Sym.Value Sym. Name + Addend\n"));
893 printf (_(" Offset Info Type Sym. Value Symbol's Name\n"));
895 printf (_(" Offset Info Type Sym.Value Sym. Name\n"));
903 printf (_(" Offset Info Type Symbol's Value Symbol's Name + Addend\n"));
905 printf (_(" Offset Info Type Sym. Value Sym. Name + Addend\n"));
910 printf (_(" Offset Info Type Symbol's Value Symbol's Name\n"));
912 printf (_(" Offset Info Type Sym. Value Sym. Name\n"));
916 for (i
= 0; i
< rel_size
; i
++)
921 bfd_vma symtab_index
;
924 offset
= rels
[i
].r_offset
;
925 inf
= rels
[i
].r_info
;
927 type
= get_reloc_type (inf
);
928 symtab_index
= get_reloc_symindex (inf
);
932 printf ("%8.8lx %8.8lx ",
933 (unsigned long) offset
& 0xffffffff,
934 (unsigned long) inf
& 0xffffffff);
938 #if BFD_HOST_64BIT_LONG
940 ? "%16.16lx %16.16lx "
941 : "%12.12lx %12.12lx ",
943 #elif BFD_HOST_64BIT_LONG_LONG
946 ? "%16.16llx %16.16llx "
947 : "%12.12llx %12.12llx ",
951 ? "%16.16I64x %16.16I64x "
952 : "%12.12I64x %12.12I64x ",
957 ? "%8.8lx%8.8lx %8.8lx%8.8lx "
958 : "%4.4lx%8.8lx %4.4lx%8.8lx ",
959 _bfd_int64_high (offset
),
960 _bfd_int64_low (offset
),
961 _bfd_int64_high (inf
),
962 _bfd_int64_low (inf
));
966 switch (elf_header
.e_machine
)
974 rtype
= elf_m32r_reloc_type (type
);
979 rtype
= elf_i386_reloc_type (type
);
984 rtype
= elf_m68hc11_reloc_type (type
);
988 rtype
= elf_m68k_reloc_type (type
);
992 rtype
= elf_i960_reloc_type (type
);
997 rtype
= elf_avr_reloc_type (type
);
1000 case EM_OLD_SPARCV9
:
1001 case EM_SPARC32PLUS
:
1004 rtype
= elf_sparc_reloc_type (type
);
1008 rtype
= elf_spu_reloc_type (type
);
1012 case EM_CYGNUS_V850
:
1013 rtype
= v850_reloc_type (type
);
1017 case EM_CYGNUS_D10V
:
1018 rtype
= elf_d10v_reloc_type (type
);
1022 case EM_CYGNUS_D30V
:
1023 rtype
= elf_d30v_reloc_type (type
);
1027 rtype
= elf_dlx_reloc_type (type
);
1031 rtype
= elf_sh_reloc_type (type
);
1035 case EM_CYGNUS_MN10300
:
1036 rtype
= elf_mn10300_reloc_type (type
);
1040 case EM_CYGNUS_MN10200
:
1041 rtype
= elf_mn10200_reloc_type (type
);
1045 case EM_CYGNUS_FR30
:
1046 rtype
= elf_fr30_reloc_type (type
);
1050 rtype
= elf_frv_reloc_type (type
);
1054 rtype
= elf_mcore_reloc_type (type
);
1058 rtype
= elf_mmix_reloc_type (type
);
1062 rtype
= elf_moxie_reloc_type (type
);
1067 rtype
= elf_msp430_reloc_type (type
);
1071 rtype
= elf_ppc_reloc_type (type
);
1075 rtype
= elf_ppc64_reloc_type (type
);
1079 case EM_MIPS_RS3_LE
:
1080 rtype
= elf_mips_reloc_type (type
);
1084 rtype
= elf_alpha_reloc_type (type
);
1088 rtype
= elf_arm_reloc_type (type
);
1092 rtype
= elf_arc_reloc_type (type
);
1096 rtype
= elf_hppa_reloc_type (type
);
1102 rtype
= elf_h8_reloc_type (type
);
1107 rtype
= elf_or32_reloc_type (type
);
1112 rtype
= elf_pj_reloc_type (type
);
1115 rtype
= elf_ia64_reloc_type (type
);
1119 rtype
= elf_cris_reloc_type (type
);
1123 rtype
= elf_i860_reloc_type (type
);
1128 rtype
= elf_x86_64_reloc_type (type
);
1132 rtype
= i370_reloc_type (type
);
1137 rtype
= elf_s390_reloc_type (type
);
1141 rtype
= elf_score_reloc_type (type
);
1145 rtype
= elf_xstormy16_reloc_type (type
);
1149 rtype
= elf_crx_reloc_type (type
);
1153 rtype
= elf_vax_reloc_type (type
);
1158 rtype
= elf_ip2k_reloc_type (type
);
1162 rtype
= elf_iq2000_reloc_type (type
);
1167 rtype
= elf_xtensa_reloc_type (type
);
1170 case EM_LATTICEMICO32
:
1171 rtype
= elf_lm32_reloc_type (type
);
1176 rtype
= elf_m32c_reloc_type (type
);
1180 rtype
= elf_mt_reloc_type (type
);
1184 rtype
= elf_bfin_reloc_type (type
);
1188 rtype
= elf_mep_reloc_type (type
);
1193 rtype
= elf_cr16_reloc_type (type
);
1197 case EM_MICROBLAZE_OLD
:
1198 rtype
= elf_microblaze_reloc_type (type
);
1202 rtype
= elf_rx_reloc_type (type
);
1207 rtype
= elf_xc16x_reloc_type (type
);
1211 rtype
= elf_tic6x_reloc_type (type
);
1216 printf (_("unrecognized: %-7lx"), (unsigned long) type
& 0xffffffff);
1218 printf (do_wide
? "%-22.22s" : "%-17.17s", rtype
);
1220 if (elf_header
.e_machine
== EM_ALPHA
1222 && streq (rtype
, "R_ALPHA_LITUSE")
1225 switch (rels
[i
].r_addend
)
1227 case LITUSE_ALPHA_ADDR
: rtype
= "ADDR"; break;
1228 case LITUSE_ALPHA_BASE
: rtype
= "BASE"; break;
1229 case LITUSE_ALPHA_BYTOFF
: rtype
= "BYTOFF"; break;
1230 case LITUSE_ALPHA_JSR
: rtype
= "JSR"; break;
1231 case LITUSE_ALPHA_TLSGD
: rtype
= "TLSGD"; break;
1232 case LITUSE_ALPHA_TLSLDM
: rtype
= "TLSLDM"; break;
1233 case LITUSE_ALPHA_JSRDIRECT
: rtype
= "JSRDIRECT"; break;
1234 default: rtype
= NULL
;
1237 printf (" (%s)", rtype
);
1241 printf (_("<unknown addend: %lx>"),
1242 (unsigned long) rels
[i
].r_addend
);
1245 else if (symtab_index
)
1247 if (symtab
== NULL
|| symtab_index
>= nsyms
)
1248 printf (_(" bad symbol index: %08lx"), (unsigned long) symtab_index
);
1251 Elf_Internal_Sym
* psym
;
1253 psym
= symtab
+ symtab_index
;
1257 if (ELF_ST_TYPE (psym
->st_info
) == STT_GNU_IFUNC
)
1261 unsigned int width
= is_32bit_elf
? 8 : 14;
1263 /* Relocations against GNU_IFUNC symbols do not use the value
1264 of the symbol as the address to relocate against. Instead
1265 they invoke the function named by the symbol and use its
1266 result as the address for relocation.
1268 To indicate this to the user, do not display the value of
1269 the symbol in the "Symbols's Value" field. Instead show
1270 its name followed by () as a hint that the symbol is
1274 || psym
->st_name
== 0
1275 || psym
->st_name
>= strtablen
)
1278 name
= strtab
+ psym
->st_name
;
1280 len
= print_symbol (width
, name
);
1281 printf ("()%-*s", len
<= width
? (width
+ 1) - len
: 1, " ");
1285 print_vma (psym
->st_value
, LONG_HEX
);
1287 printf (is_32bit_elf
? " " : " ");
1290 if (psym
->st_name
== 0)
1292 const char * sec_name
= "<null>";
1295 if (ELF_ST_TYPE (psym
->st_info
) == STT_SECTION
)
1297 if (psym
->st_shndx
< elf_header
.e_shnum
)
1299 = SECTION_NAME (section_headers
+ psym
->st_shndx
);
1300 else if (psym
->st_shndx
== SHN_ABS
)
1302 else if (psym
->st_shndx
== SHN_COMMON
)
1303 sec_name
= "COMMON";
1304 else if (elf_header
.e_machine
== EM_MIPS
1305 && psym
->st_shndx
== SHN_MIPS_SCOMMON
)
1306 sec_name
= "SCOMMON";
1307 else if (elf_header
.e_machine
== EM_MIPS
1308 && psym
->st_shndx
== SHN_MIPS_SUNDEFINED
)
1309 sec_name
= "SUNDEF";
1310 else if ((elf_header
.e_machine
== EM_X86_64
1311 || elf_header
.e_machine
== EM_L1OM
)
1312 && psym
->st_shndx
== SHN_X86_64_LCOMMON
)
1313 sec_name
= "LARGE_COMMON";
1314 else if (elf_header
.e_machine
== EM_IA_64
1315 && elf_header
.e_ident
[EI_OSABI
] == ELFOSABI_HPUX
1316 && psym
->st_shndx
== SHN_IA_64_ANSI_COMMON
)
1317 sec_name
= "ANSI_COM";
1318 else if (is_ia64_vms ()
1319 && psym
->st_shndx
== SHN_IA_64_VMS_SYMVEC
)
1320 sec_name
= "VMS_SYMVEC";
1323 sprintf (name_buf
, "<section 0x%x>",
1324 (unsigned int) psym
->st_shndx
);
1325 sec_name
= name_buf
;
1328 print_symbol (22, sec_name
);
1330 else if (strtab
== NULL
)
1331 printf (_("<string table index: %3ld>"), psym
->st_name
);
1332 else if (psym
->st_name
>= strtablen
)
1333 printf (_("<corrupt string table index: %3ld>"), psym
->st_name
);
1335 print_symbol (22, strtab
+ psym
->st_name
);
1339 bfd_signed_vma off
= rels
[i
].r_addend
;
1342 printf (" - %" BFD_VMA_FMT
"x", - off
);
1344 printf (" + %" BFD_VMA_FMT
"x", off
);
1350 printf ("%*c", is_32bit_elf
?
1351 (do_wide
? 34 : 28) : (do_wide
? 26 : 20), ' ');
1352 print_vma (rels
[i
].r_addend
, LONG_HEX
);
1355 if (elf_header
.e_machine
== EM_SPARCV9
1357 && streq (rtype
, "R_SPARC_OLO10"))
1358 printf (" + %lx", (unsigned long) ELF64_R_TYPE_DATA (inf
));
1363 if (! is_32bit_elf
&& elf_header
.e_machine
== EM_MIPS
)
1365 bfd_vma type2
= ELF64_MIPS_R_TYPE2 (inf
);
1366 bfd_vma type3
= ELF64_MIPS_R_TYPE3 (inf
);
1367 const char * rtype2
= elf_mips_reloc_type (type2
);
1368 const char * rtype3
= elf_mips_reloc_type (type3
);
1370 printf (" Type2: ");
1373 printf (_("unrecognized: %-7lx"),
1374 (unsigned long) type2
& 0xffffffff);
1376 printf ("%-17.17s", rtype2
);
1378 printf ("\n Type3: ");
1381 printf (_("unrecognized: %-7lx"),
1382 (unsigned long) type3
& 0xffffffff);
1384 printf ("%-17.17s", rtype3
);
1395 get_mips_dynamic_type (unsigned long type
)
1399 case DT_MIPS_RLD_VERSION
: return "MIPS_RLD_VERSION";
1400 case DT_MIPS_TIME_STAMP
: return "MIPS_TIME_STAMP";
1401 case DT_MIPS_ICHECKSUM
: return "MIPS_ICHECKSUM";
1402 case DT_MIPS_IVERSION
: return "MIPS_IVERSION";
1403 case DT_MIPS_FLAGS
: return "MIPS_FLAGS";
1404 case DT_MIPS_BASE_ADDRESS
: return "MIPS_BASE_ADDRESS";
1405 case DT_MIPS_MSYM
: return "MIPS_MSYM";
1406 case DT_MIPS_CONFLICT
: return "MIPS_CONFLICT";
1407 case DT_MIPS_LIBLIST
: return "MIPS_LIBLIST";
1408 case DT_MIPS_LOCAL_GOTNO
: return "MIPS_LOCAL_GOTNO";
1409 case DT_MIPS_CONFLICTNO
: return "MIPS_CONFLICTNO";
1410 case DT_MIPS_LIBLISTNO
: return "MIPS_LIBLISTNO";
1411 case DT_MIPS_SYMTABNO
: return "MIPS_SYMTABNO";
1412 case DT_MIPS_UNREFEXTNO
: return "MIPS_UNREFEXTNO";
1413 case DT_MIPS_GOTSYM
: return "MIPS_GOTSYM";
1414 case DT_MIPS_HIPAGENO
: return "MIPS_HIPAGENO";
1415 case DT_MIPS_RLD_MAP
: return "MIPS_RLD_MAP";
1416 case DT_MIPS_DELTA_CLASS
: return "MIPS_DELTA_CLASS";
1417 case DT_MIPS_DELTA_CLASS_NO
: return "MIPS_DELTA_CLASS_NO";
1418 case DT_MIPS_DELTA_INSTANCE
: return "MIPS_DELTA_INSTANCE";
1419 case DT_MIPS_DELTA_INSTANCE_NO
: return "MIPS_DELTA_INSTANCE_NO";
1420 case DT_MIPS_DELTA_RELOC
: return "MIPS_DELTA_RELOC";
1421 case DT_MIPS_DELTA_RELOC_NO
: return "MIPS_DELTA_RELOC_NO";
1422 case DT_MIPS_DELTA_SYM
: return "MIPS_DELTA_SYM";
1423 case DT_MIPS_DELTA_SYM_NO
: return "MIPS_DELTA_SYM_NO";
1424 case DT_MIPS_DELTA_CLASSSYM
: return "MIPS_DELTA_CLASSSYM";
1425 case DT_MIPS_DELTA_CLASSSYM_NO
: return "MIPS_DELTA_CLASSSYM_NO";
1426 case DT_MIPS_CXX_FLAGS
: return "MIPS_CXX_FLAGS";
1427 case DT_MIPS_PIXIE_INIT
: return "MIPS_PIXIE_INIT";
1428 case DT_MIPS_SYMBOL_LIB
: return "MIPS_SYMBOL_LIB";
1429 case DT_MIPS_LOCALPAGE_GOTIDX
: return "MIPS_LOCALPAGE_GOTIDX";
1430 case DT_MIPS_LOCAL_GOTIDX
: return "MIPS_LOCAL_GOTIDX";
1431 case DT_MIPS_HIDDEN_GOTIDX
: return "MIPS_HIDDEN_GOTIDX";
1432 case DT_MIPS_PROTECTED_GOTIDX
: return "MIPS_PROTECTED_GOTIDX";
1433 case DT_MIPS_OPTIONS
: return "MIPS_OPTIONS";
1434 case DT_MIPS_INTERFACE
: return "MIPS_INTERFACE";
1435 case DT_MIPS_DYNSTR_ALIGN
: return "MIPS_DYNSTR_ALIGN";
1436 case DT_MIPS_INTERFACE_SIZE
: return "MIPS_INTERFACE_SIZE";
1437 case DT_MIPS_RLD_TEXT_RESOLVE_ADDR
: return "MIPS_RLD_TEXT_RESOLVE_ADDR";
1438 case DT_MIPS_PERF_SUFFIX
: return "MIPS_PERF_SUFFIX";
1439 case DT_MIPS_COMPACT_SIZE
: return "MIPS_COMPACT_SIZE";
1440 case DT_MIPS_GP_VALUE
: return "MIPS_GP_VALUE";
1441 case DT_MIPS_AUX_DYNAMIC
: return "MIPS_AUX_DYNAMIC";
1442 case DT_MIPS_PLTGOT
: return "MIPS_PLTGOT";
1443 case DT_MIPS_RWPLT
: return "MIPS_RWPLT";
1450 get_sparc64_dynamic_type (unsigned long type
)
1454 case DT_SPARC_REGISTER
: return "SPARC_REGISTER";
1461 get_ppc_dynamic_type (unsigned long type
)
1465 case DT_PPC_GOT
: return "PPC_GOT";
1466 case DT_PPC_TLSOPT
: return "PPC_TLSOPT";
1473 get_ppc64_dynamic_type (unsigned long type
)
1477 case DT_PPC64_GLINK
: return "PPC64_GLINK";
1478 case DT_PPC64_OPD
: return "PPC64_OPD";
1479 case DT_PPC64_OPDSZ
: return "PPC64_OPDSZ";
1480 case DT_PPC64_TLSOPT
: return "PPC64_TLSOPT";
1487 get_parisc_dynamic_type (unsigned long type
)
1491 case DT_HP_LOAD_MAP
: return "HP_LOAD_MAP";
1492 case DT_HP_DLD_FLAGS
: return "HP_DLD_FLAGS";
1493 case DT_HP_DLD_HOOK
: return "HP_DLD_HOOK";
1494 case DT_HP_UX10_INIT
: return "HP_UX10_INIT";
1495 case DT_HP_UX10_INITSZ
: return "HP_UX10_INITSZ";
1496 case DT_HP_PREINIT
: return "HP_PREINIT";
1497 case DT_HP_PREINITSZ
: return "HP_PREINITSZ";
1498 case DT_HP_NEEDED
: return "HP_NEEDED";
1499 case DT_HP_TIME_STAMP
: return "HP_TIME_STAMP";
1500 case DT_HP_CHECKSUM
: return "HP_CHECKSUM";
1501 case DT_HP_GST_SIZE
: return "HP_GST_SIZE";
1502 case DT_HP_GST_VERSION
: return "HP_GST_VERSION";
1503 case DT_HP_GST_HASHVAL
: return "HP_GST_HASHVAL";
1504 case DT_HP_EPLTREL
: return "HP_GST_EPLTREL";
1505 case DT_HP_EPLTRELSZ
: return "HP_GST_EPLTRELSZ";
1506 case DT_HP_FILTERED
: return "HP_FILTERED";
1507 case DT_HP_FILTER_TLS
: return "HP_FILTER_TLS";
1508 case DT_HP_COMPAT_FILTERED
: return "HP_COMPAT_FILTERED";
1509 case DT_HP_LAZYLOAD
: return "HP_LAZYLOAD";
1510 case DT_HP_BIND_NOW_COUNT
: return "HP_BIND_NOW_COUNT";
1511 case DT_PLT
: return "PLT";
1512 case DT_PLT_SIZE
: return "PLT_SIZE";
1513 case DT_DLT
: return "DLT";
1514 case DT_DLT_SIZE
: return "DLT_SIZE";
1521 get_ia64_dynamic_type (unsigned long type
)
1525 case DT_IA_64_PLT_RESERVE
: return "IA_64_PLT_RESERVE";
1526 case DT_IA_64_VMS_SUBTYPE
: return "VMS_SUBTYPE";
1527 case DT_IA_64_VMS_IMGIOCNT
: return "VMS_IMGIOCNT";
1528 case DT_IA_64_VMS_LNKFLAGS
: return "VMS_LNKFLAGS";
1529 case DT_IA_64_VMS_VIR_MEM_BLK_SIZ
: return "VMS_VIR_MEM_BLK_SIZ";
1530 case DT_IA_64_VMS_IDENT
: return "VMS_IDENT";
1531 case DT_IA_64_VMS_NEEDED_IDENT
: return "VMS_NEEDED_IDENT";
1532 case DT_IA_64_VMS_IMG_RELA_CNT
: return "VMS_IMG_RELA_CNT";
1533 case DT_IA_64_VMS_SEG_RELA_CNT
: return "VMS_SEG_RELA_CNT";
1534 case DT_IA_64_VMS_FIXUP_RELA_CNT
: return "VMS_FIXUP_RELA_CNT";
1535 case DT_IA_64_VMS_FIXUP_NEEDED
: return "VMS_FIXUP_NEEDED";
1536 case DT_IA_64_VMS_SYMVEC_CNT
: return "VMS_SYMVEC_CNT";
1537 case DT_IA_64_VMS_XLATED
: return "VMS_XLATED";
1538 case DT_IA_64_VMS_STACKSIZE
: return "VMS_STACKSIZE";
1539 case DT_IA_64_VMS_UNWINDSZ
: return "VMS_UNWINDSZ";
1540 case DT_IA_64_VMS_UNWIND_CODSEG
: return "VMS_UNWIND_CODSEG";
1541 case DT_IA_64_VMS_UNWIND_INFOSEG
: return "VMS_UNWIND_INFOSEG";
1542 case DT_IA_64_VMS_LINKTIME
: return "VMS_LINKTIME";
1543 case DT_IA_64_VMS_SEG_NO
: return "VMS_SEG_NO";
1544 case DT_IA_64_VMS_SYMVEC_OFFSET
: return "VMS_SYMVEC_OFFSET";
1545 case DT_IA_64_VMS_SYMVEC_SEG
: return "VMS_SYMVEC_SEG";
1546 case DT_IA_64_VMS_UNWIND_OFFSET
: return "VMS_UNWIND_OFFSET";
1547 case DT_IA_64_VMS_UNWIND_SEG
: return "VMS_UNWIND_SEG";
1548 case DT_IA_64_VMS_STRTAB_OFFSET
: return "VMS_STRTAB_OFFSET";
1549 case DT_IA_64_VMS_SYSVER_OFFSET
: return "VMS_SYSVER_OFFSET";
1550 case DT_IA_64_VMS_IMG_RELA_OFF
: return "VMS_IMG_RELA_OFF";
1551 case DT_IA_64_VMS_SEG_RELA_OFF
: return "VMS_SEG_RELA_OFF";
1552 case DT_IA_64_VMS_FIXUP_RELA_OFF
: return "VMS_FIXUP_RELA_OFF";
1553 case DT_IA_64_VMS_PLTGOT_OFFSET
: return "VMS_PLTGOT_OFFSET";
1554 case DT_IA_64_VMS_PLTGOT_SEG
: return "VMS_PLTGOT_SEG";
1555 case DT_IA_64_VMS_FPMODE
: return "VMS_FPMODE";
1562 get_alpha_dynamic_type (unsigned long type
)
1566 case DT_ALPHA_PLTRO
: return "ALPHA_PLTRO";
1573 get_score_dynamic_type (unsigned long type
)
1577 case DT_SCORE_BASE_ADDRESS
: return "SCORE_BASE_ADDRESS";
1578 case DT_SCORE_LOCAL_GOTNO
: return "SCORE_LOCAL_GOTNO";
1579 case DT_SCORE_SYMTABNO
: return "SCORE_SYMTABNO";
1580 case DT_SCORE_GOTSYM
: return "SCORE_GOTSYM";
1581 case DT_SCORE_UNREFEXTNO
: return "SCORE_UNREFEXTNO";
1582 case DT_SCORE_HIPAGENO
: return "SCORE_HIPAGENO";
1589 get_tic6x_dynamic_type (unsigned long type
)
1593 case DT_C6000_GSYM_OFFSET
: return "C6000_GSYM_OFFSET";
1594 case DT_C6000_GSTR_OFFSET
: return "C6000_GSTR_OFFSET";
1595 case DT_C6000_DSBT_BASE
: return "C6000_DSBT_BASE";
1596 case DT_C6000_DSBT_SIZE
: return "C6000_DSBT_SIZE";
1597 case DT_C6000_PREEMPTMAP
: return "C6000_PREEMPTMAP";
1598 case DT_C6000_DSBT_INDEX
: return "C6000_DSBT_INDEX";
1605 get_dynamic_type (unsigned long type
)
1607 static char buff
[64];
1611 case DT_NULL
: return "NULL";
1612 case DT_NEEDED
: return "NEEDED";
1613 case DT_PLTRELSZ
: return "PLTRELSZ";
1614 case DT_PLTGOT
: return "PLTGOT";
1615 case DT_HASH
: return "HASH";
1616 case DT_STRTAB
: return "STRTAB";
1617 case DT_SYMTAB
: return "SYMTAB";
1618 case DT_RELA
: return "RELA";
1619 case DT_RELASZ
: return "RELASZ";
1620 case DT_RELAENT
: return "RELAENT";
1621 case DT_STRSZ
: return "STRSZ";
1622 case DT_SYMENT
: return "SYMENT";
1623 case DT_INIT
: return "INIT";
1624 case DT_FINI
: return "FINI";
1625 case DT_SONAME
: return "SONAME";
1626 case DT_RPATH
: return "RPATH";
1627 case DT_SYMBOLIC
: return "SYMBOLIC";
1628 case DT_REL
: return "REL";
1629 case DT_RELSZ
: return "RELSZ";
1630 case DT_RELENT
: return "RELENT";
1631 case DT_PLTREL
: return "PLTREL";
1632 case DT_DEBUG
: return "DEBUG";
1633 case DT_TEXTREL
: return "TEXTREL";
1634 case DT_JMPREL
: return "JMPREL";
1635 case DT_BIND_NOW
: return "BIND_NOW";
1636 case DT_INIT_ARRAY
: return "INIT_ARRAY";
1637 case DT_FINI_ARRAY
: return "FINI_ARRAY";
1638 case DT_INIT_ARRAYSZ
: return "INIT_ARRAYSZ";
1639 case DT_FINI_ARRAYSZ
: return "FINI_ARRAYSZ";
1640 case DT_RUNPATH
: return "RUNPATH";
1641 case DT_FLAGS
: return "FLAGS";
1643 case DT_PREINIT_ARRAY
: return "PREINIT_ARRAY";
1644 case DT_PREINIT_ARRAYSZ
: return "PREINIT_ARRAYSZ";
1646 case DT_CHECKSUM
: return "CHECKSUM";
1647 case DT_PLTPADSZ
: return "PLTPADSZ";
1648 case DT_MOVEENT
: return "MOVEENT";
1649 case DT_MOVESZ
: return "MOVESZ";
1650 case DT_FEATURE
: return "FEATURE";
1651 case DT_POSFLAG_1
: return "POSFLAG_1";
1652 case DT_SYMINSZ
: return "SYMINSZ";
1653 case DT_SYMINENT
: return "SYMINENT"; /* aka VALRNGHI */
1655 case DT_ADDRRNGLO
: return "ADDRRNGLO";
1656 case DT_CONFIG
: return "CONFIG";
1657 case DT_DEPAUDIT
: return "DEPAUDIT";
1658 case DT_AUDIT
: return "AUDIT";
1659 case DT_PLTPAD
: return "PLTPAD";
1660 case DT_MOVETAB
: return "MOVETAB";
1661 case DT_SYMINFO
: return "SYMINFO"; /* aka ADDRRNGHI */
1663 case DT_VERSYM
: return "VERSYM";
1665 case DT_TLSDESC_GOT
: return "TLSDESC_GOT";
1666 case DT_TLSDESC_PLT
: return "TLSDESC_PLT";
1667 case DT_RELACOUNT
: return "RELACOUNT";
1668 case DT_RELCOUNT
: return "RELCOUNT";
1669 case DT_FLAGS_1
: return "FLAGS_1";
1670 case DT_VERDEF
: return "VERDEF";
1671 case DT_VERDEFNUM
: return "VERDEFNUM";
1672 case DT_VERNEED
: return "VERNEED";
1673 case DT_VERNEEDNUM
: return "VERNEEDNUM";
1675 case DT_AUXILIARY
: return "AUXILIARY";
1676 case DT_USED
: return "USED";
1677 case DT_FILTER
: return "FILTER";
1679 case DT_GNU_PRELINKED
: return "GNU_PRELINKED";
1680 case DT_GNU_CONFLICT
: return "GNU_CONFLICT";
1681 case DT_GNU_CONFLICTSZ
: return "GNU_CONFLICTSZ";
1682 case DT_GNU_LIBLIST
: return "GNU_LIBLIST";
1683 case DT_GNU_LIBLISTSZ
: return "GNU_LIBLISTSZ";
1684 case DT_GNU_HASH
: return "GNU_HASH";
1687 if ((type
>= DT_LOPROC
) && (type
<= DT_HIPROC
))
1689 const char * result
;
1691 switch (elf_header
.e_machine
)
1694 case EM_MIPS_RS3_LE
:
1695 result
= get_mips_dynamic_type (type
);
1698 result
= get_sparc64_dynamic_type (type
);
1701 result
= get_ppc_dynamic_type (type
);
1704 result
= get_ppc64_dynamic_type (type
);
1707 result
= get_ia64_dynamic_type (type
);
1710 result
= get_alpha_dynamic_type (type
);
1713 result
= get_score_dynamic_type (type
);
1716 result
= get_tic6x_dynamic_type (type
);
1726 snprintf (buff
, sizeof (buff
), _("Processor Specific: %lx"), type
);
1728 else if (((type
>= DT_LOOS
) && (type
<= DT_HIOS
))
1729 || (elf_header
.e_machine
== EM_PARISC
1730 && (type
>= OLD_DT_LOOS
) && (type
<= OLD_DT_HIOS
)))
1732 const char * result
;
1734 switch (elf_header
.e_machine
)
1737 result
= get_parisc_dynamic_type (type
);
1740 result
= get_ia64_dynamic_type (type
);
1750 snprintf (buff
, sizeof (buff
), _("Operating System specific: %lx"),
1754 snprintf (buff
, sizeof (buff
), _("<unknown>: %lx"), type
);
1761 get_file_type (unsigned e_type
)
1763 static char buff
[32];
1767 case ET_NONE
: return _("NONE (None)");
1768 case ET_REL
: return _("REL (Relocatable file)");
1769 case ET_EXEC
: return _("EXEC (Executable file)");
1770 case ET_DYN
: return _("DYN (Shared object file)");
1771 case ET_CORE
: return _("CORE (Core file)");
1774 if ((e_type
>= ET_LOPROC
) && (e_type
<= ET_HIPROC
))
1775 snprintf (buff
, sizeof (buff
), _("Processor Specific: (%x)"), e_type
);
1776 else if ((e_type
>= ET_LOOS
) && (e_type
<= ET_HIOS
))
1777 snprintf (buff
, sizeof (buff
), _("OS Specific: (%x)"), e_type
);
1779 snprintf (buff
, sizeof (buff
), _("<unknown>: %x"), e_type
);
1785 get_machine_name (unsigned e_machine
)
1787 static char buff
[64]; /* XXX */
1791 case EM_NONE
: return _("None");
1792 case EM_M32
: return "WE32100";
1793 case EM_SPARC
: return "Sparc";
1794 case EM_SPU
: return "SPU";
1795 case EM_386
: return "Intel 80386";
1796 case EM_68K
: return "MC68000";
1797 case EM_88K
: return "MC88000";
1798 case EM_486
: return "Intel 80486";
1799 case EM_860
: return "Intel 80860";
1800 case EM_MIPS
: return "MIPS R3000";
1801 case EM_S370
: return "IBM System/370";
1802 case EM_MIPS_RS3_LE
: return "MIPS R4000 big-endian";
1803 case EM_OLD_SPARCV9
: return "Sparc v9 (old)";
1804 case EM_PARISC
: return "HPPA";
1805 case EM_PPC_OLD
: return "Power PC (old)";
1806 case EM_SPARC32PLUS
: return "Sparc v8+" ;
1807 case EM_960
: return "Intel 90860";
1808 case EM_PPC
: return "PowerPC";
1809 case EM_PPC64
: return "PowerPC64";
1810 case EM_V800
: return "NEC V800";
1811 case EM_FR20
: return "Fujitsu FR20";
1812 case EM_RH32
: return "TRW RH32";
1813 case EM_MCORE
: return "MCORE";
1814 case EM_ARM
: return "ARM";
1815 case EM_OLD_ALPHA
: return "Digital Alpha (old)";
1816 case EM_SH
: return "Renesas / SuperH SH";
1817 case EM_SPARCV9
: return "Sparc v9";
1818 case EM_TRICORE
: return "Siemens Tricore";
1819 case EM_ARC
: return "ARC";
1820 case EM_H8_300
: return "Renesas H8/300";
1821 case EM_H8_300H
: return "Renesas H8/300H";
1822 case EM_H8S
: return "Renesas H8S";
1823 case EM_H8_500
: return "Renesas H8/500";
1824 case EM_IA_64
: return "Intel IA-64";
1825 case EM_MIPS_X
: return "Stanford MIPS-X";
1826 case EM_COLDFIRE
: return "Motorola Coldfire";
1827 case EM_68HC12
: return "Motorola M68HC12";
1828 case EM_ALPHA
: return "Alpha";
1829 case EM_CYGNUS_D10V
:
1830 case EM_D10V
: return "d10v";
1831 case EM_CYGNUS_D30V
:
1832 case EM_D30V
: return "d30v";
1833 case EM_CYGNUS_M32R
:
1834 case EM_M32R
: return "Renesas M32R (formerly Mitsubishi M32r)";
1835 case EM_CYGNUS_V850
:
1836 case EM_V850
: return "NEC v850";
1837 case EM_CYGNUS_MN10300
:
1838 case EM_MN10300
: return "mn10300";
1839 case EM_CYGNUS_MN10200
:
1840 case EM_MN10200
: return "mn10200";
1841 case EM_MOXIE
: return "Moxie";
1842 case EM_CYGNUS_FR30
:
1843 case EM_FR30
: return "Fujitsu FR30";
1844 case EM_CYGNUS_FRV
: return "Fujitsu FR-V";
1846 case EM_PJ
: return "picoJava";
1847 case EM_MMA
: return "Fujitsu Multimedia Accelerator";
1848 case EM_PCP
: return "Siemens PCP";
1849 case EM_NCPU
: return "Sony nCPU embedded RISC processor";
1850 case EM_NDR1
: return "Denso NDR1 microprocesspr";
1851 case EM_STARCORE
: return "Motorola Star*Core processor";
1852 case EM_ME16
: return "Toyota ME16 processor";
1853 case EM_ST100
: return "STMicroelectronics ST100 processor";
1854 case EM_TINYJ
: return "Advanced Logic Corp. TinyJ embedded processor";
1855 case EM_PDSP
: return "Sony DSP processor";
1856 case EM_PDP10
: return "Digital Equipment Corp. PDP-10";
1857 case EM_PDP11
: return "Digital Equipment Corp. PDP-11";
1858 case EM_FX66
: return "Siemens FX66 microcontroller";
1859 case EM_ST9PLUS
: return "STMicroelectronics ST9+ 8/16 bit microcontroller";
1860 case EM_ST7
: return "STMicroelectronics ST7 8-bit microcontroller";
1861 case EM_68HC16
: return "Motorola MC68HC16 Microcontroller";
1862 case EM_68HC11
: return "Motorola MC68HC11 Microcontroller";
1863 case EM_68HC08
: return "Motorola MC68HC08 Microcontroller";
1864 case EM_68HC05
: return "Motorola MC68HC05 Microcontroller";
1865 case EM_SVX
: return "Silicon Graphics SVx";
1866 case EM_ST19
: return "STMicroelectronics ST19 8-bit microcontroller";
1867 case EM_VAX
: return "Digital VAX";
1869 case EM_AVR
: return "Atmel AVR 8-bit microcontroller";
1870 case EM_CRIS
: return "Axis Communications 32-bit embedded processor";
1871 case EM_JAVELIN
: return "Infineon Technologies 32-bit embedded cpu";
1872 case EM_FIREPATH
: return "Element 14 64-bit DSP processor";
1873 case EM_ZSP
: return "LSI Logic's 16-bit DSP processor";
1874 case EM_MMIX
: return "Donald Knuth's educational 64-bit processor";
1875 case EM_HUANY
: return "Harvard Universitys's machine-independent object format";
1876 case EM_PRISM
: return "Vitesse Prism";
1877 case EM_X86_64
: return "Advanced Micro Devices X86-64";
1878 case EM_L1OM
: return "Intel L1OM";
1880 case EM_S390
: return "IBM S/390";
1881 case EM_SCORE
: return "SUNPLUS S+Core";
1882 case EM_XSTORMY16
: return "Sanyo Xstormy16 CPU core";
1884 case EM_OR32
: return "OpenRISC";
1885 case EM_ARC_A5
: return "ARC International ARCompact processor";
1886 case EM_CRX
: return "National Semiconductor CRX microprocessor";
1887 case EM_DLX
: return "OpenDLX";
1889 case EM_IP2K
: return "Ubicom IP2xxx 8-bit microcontrollers";
1890 case EM_IQ2000
: return "Vitesse IQ2000";
1892 case EM_XTENSA
: return "Tensilica Xtensa Processor";
1893 case EM_VIDEOCORE
: return "Alphamosaic VideoCore processor";
1894 case EM_TMM_GPP
: return "Thompson Multimedia General Purpose Processor";
1895 case EM_NS32K
: return "National Semiconductor 32000 series";
1896 case EM_TPC
: return "Tenor Network TPC processor";
1897 case EM_ST200
: return "STMicroelectronics ST200 microcontroller";
1898 case EM_MAX
: return "MAX Processor";
1899 case EM_CR
: return "National Semiconductor CompactRISC";
1900 case EM_F2MC16
: return "Fujitsu F2MC16";
1901 case EM_MSP430
: return "Texas Instruments msp430 microcontroller";
1902 case EM_LATTICEMICO32
: return "Lattice Mico32";
1904 case EM_M32C
: return "Renesas M32c";
1905 case EM_MT
: return "Morpho Techologies MT processor";
1906 case EM_BLACKFIN
: return "Analog Devices Blackfin";
1907 case EM_SE_C33
: return "S1C33 Family of Seiko Epson processors";
1908 case EM_SEP
: return "Sharp embedded microprocessor";
1909 case EM_ARCA
: return "Arca RISC microprocessor";
1910 case EM_UNICORE
: return "Unicore";
1911 case EM_EXCESS
: return "eXcess 16/32/64-bit configurable embedded CPU";
1912 case EM_DXP
: return "Icera Semiconductor Inc. Deep Execution Processor";
1913 case EM_NIOS32
: return "Altera Nios";
1914 case EM_ALTERA_NIOS2
: return "Altera Nios II";
1916 case EM_XC16X
: return "Infineon Technologies xc16x";
1917 case EM_M16C
: return "Renesas M16C series microprocessors";
1918 case EM_DSPIC30F
: return "Microchip Technology dsPIC30F Digital Signal Controller";
1919 case EM_CE
: return "Freescale Communication Engine RISC core";
1920 case EM_TSK3000
: return "Altium TSK3000 core";
1921 case EM_RS08
: return "Freescale RS08 embedded processor";
1922 case EM_ECOG2
: return "Cyan Technology eCOG2 microprocessor";
1923 case EM_DSP24
: return "New Japan Radio (NJR) 24-bit DSP Processor";
1924 case EM_VIDEOCORE3
: return "Broadcom VideoCore III processor";
1925 case EM_SE_C17
: return "Seiko Epson C17 family";
1926 case EM_TI_C6000
: return "Texas Instruments TMS320C6000 DSP family";
1927 case EM_TI_C2000
: return "Texas Instruments TMS320C2000 DSP family";
1928 case EM_TI_C5500
: return "Texas Instruments TMS320C55x DSP family";
1929 case EM_MMDSP_PLUS
: return "STMicroelectronics 64bit VLIW Data Signal Processor";
1930 case EM_CYPRESS_M8C
: return "Cypress M8C microprocessor";
1931 case EM_R32C
: return "Renesas R32C series microprocessors";
1932 case EM_TRIMEDIA
: return "NXP Semiconductors TriMedia architecture family";
1933 case EM_QDSP6
: return "QUALCOMM DSP6 Processor";
1934 case EM_8051
: return "Intel 8051 and variants";
1935 case EM_STXP7X
: return "STMicroelectronics STxP7x family";
1936 case EM_NDS32
: return "Andes Technology compact code size embedded RISC processor family";
1937 case EM_ECOG1X
: return "Cyan Technology eCOG1X family";
1938 case EM_MAXQ30
: return "Dallas Semiconductor MAXQ30 Core microcontrollers";
1939 case EM_XIMO16
: return "New Japan Radio (NJR) 16-bit DSP Processor";
1940 case EM_MANIK
: return "M2000 Reconfigurable RISC Microprocessor";
1941 case EM_CRAYNV2
: return "Cray Inc. NV2 vector architecture";
1942 case EM_CYGNUS_MEP
: return "Toshiba MeP Media Engine";
1944 case EM_CR16_OLD
: return "National Semiconductor's CR16";
1945 case EM_MICROBLAZE
: return "Xilinx MicroBlaze";
1946 case EM_MICROBLAZE_OLD
: return "Xilinx MicroBlaze";
1947 case EM_RX
: return "Renesas RX";
1948 case EM_METAG
: return "Imagination Technologies META processor architecture";
1949 case EM_MCST_ELBRUS
: return "MCST Elbrus general purpose hardware architecture";
1950 case EM_ECOG16
: return "Cyan Technology eCOG16 family";
1951 case EM_ETPU
: return "Freescale Extended Time Processing Unit";
1952 case EM_SLE9X
: return "Infineon Technologies SLE9X core";
1953 case EM_AVR32
: return "Atmel Corporation 32-bit microprocessor family";
1954 case EM_STM8
: return "STMicroeletronics STM8 8-bit microcontroller";
1955 case EM_TILE64
: return "Tilera TILE64 multicore architecture family";
1956 case EM_TILEPRO
: return "Tilera TILEPro multicore architecture family";
1957 case EM_CUDA
: return "NVIDIA CUDA architecture";
1959 snprintf (buff
, sizeof (buff
), _("<unknown>: 0x%x"), e_machine
);
1965 decode_ARM_machine_flags (unsigned e_flags
, char buf
[])
1970 eabi
= EF_ARM_EABI_VERSION (e_flags
);
1971 e_flags
&= ~ EF_ARM_EABIMASK
;
1973 /* Handle "generic" ARM flags. */
1974 if (e_flags
& EF_ARM_RELEXEC
)
1976 strcat (buf
, ", relocatable executable");
1977 e_flags
&= ~ EF_ARM_RELEXEC
;
1980 if (e_flags
& EF_ARM_HASENTRY
)
1982 strcat (buf
, ", has entry point");
1983 e_flags
&= ~ EF_ARM_HASENTRY
;
1986 /* Now handle EABI specific flags. */
1990 strcat (buf
, ", <unrecognized EABI>");
1995 case EF_ARM_EABI_VER1
:
1996 strcat (buf
, ", Version1 EABI");
2001 /* Process flags one bit at a time. */
2002 flag
= e_flags
& - e_flags
;
2007 case EF_ARM_SYMSARESORTED
: /* Conflicts with EF_ARM_INTERWORK. */
2008 strcat (buf
, ", sorted symbol tables");
2018 case EF_ARM_EABI_VER2
:
2019 strcat (buf
, ", Version2 EABI");
2024 /* Process flags one bit at a time. */
2025 flag
= e_flags
& - e_flags
;
2030 case EF_ARM_SYMSARESORTED
: /* Conflicts with EF_ARM_INTERWORK. */
2031 strcat (buf
, ", sorted symbol tables");
2034 case EF_ARM_DYNSYMSUSESEGIDX
:
2035 strcat (buf
, ", dynamic symbols use segment index");
2038 case EF_ARM_MAPSYMSFIRST
:
2039 strcat (buf
, ", mapping symbols precede others");
2049 case EF_ARM_EABI_VER3
:
2050 strcat (buf
, ", Version3 EABI");
2053 case EF_ARM_EABI_VER4
:
2054 strcat (buf
, ", Version4 EABI");
2057 case EF_ARM_EABI_VER5
:
2058 strcat (buf
, ", Version5 EABI");
2064 /* Process flags one bit at a time. */
2065 flag
= e_flags
& - e_flags
;
2071 strcat (buf
, ", BE8");
2075 strcat (buf
, ", LE8");
2085 case EF_ARM_EABI_UNKNOWN
:
2086 strcat (buf
, ", GNU EABI");
2091 /* Process flags one bit at a time. */
2092 flag
= e_flags
& - e_flags
;
2097 case EF_ARM_INTERWORK
:
2098 strcat (buf
, ", interworking enabled");
2101 case EF_ARM_APCS_26
:
2102 strcat (buf
, ", uses APCS/26");
2105 case EF_ARM_APCS_FLOAT
:
2106 strcat (buf
, ", uses APCS/float");
2110 strcat (buf
, ", position independent");
2114 strcat (buf
, ", 8 bit structure alignment");
2117 case EF_ARM_NEW_ABI
:
2118 strcat (buf
, ", uses new ABI");
2121 case EF_ARM_OLD_ABI
:
2122 strcat (buf
, ", uses old ABI");
2125 case EF_ARM_SOFT_FLOAT
:
2126 strcat (buf
, ", software FP");
2129 case EF_ARM_VFP_FLOAT
:
2130 strcat (buf
, ", VFP");
2133 case EF_ARM_MAVERICK_FLOAT
:
2134 strcat (buf
, ", Maverick FP");
2145 strcat (buf
,_(", <unknown>"));
2149 get_machine_flags (unsigned e_flags
, unsigned e_machine
)
2151 static char buf
[1024];
2163 decode_ARM_machine_flags (e_flags
, buf
);
2167 if (e_flags
& EF_BFIN_PIC
)
2168 strcat (buf
, ", PIC");
2170 if (e_flags
& EF_BFIN_FDPIC
)
2171 strcat (buf
, ", FDPIC");
2173 if (e_flags
& EF_BFIN_CODE_IN_L1
)
2174 strcat (buf
, ", code in L1");
2176 if (e_flags
& EF_BFIN_DATA_IN_L1
)
2177 strcat (buf
, ", data in L1");
2182 switch (e_flags
& EF_FRV_CPU_MASK
)
2184 case EF_FRV_CPU_GENERIC
:
2188 strcat (buf
, ", fr???");
2191 case EF_FRV_CPU_FR300
:
2192 strcat (buf
, ", fr300");
2195 case EF_FRV_CPU_FR400
:
2196 strcat (buf
, ", fr400");
2198 case EF_FRV_CPU_FR405
:
2199 strcat (buf
, ", fr405");
2202 case EF_FRV_CPU_FR450
:
2203 strcat (buf
, ", fr450");
2206 case EF_FRV_CPU_FR500
:
2207 strcat (buf
, ", fr500");
2209 case EF_FRV_CPU_FR550
:
2210 strcat (buf
, ", fr550");
2213 case EF_FRV_CPU_SIMPLE
:
2214 strcat (buf
, ", simple");
2216 case EF_FRV_CPU_TOMCAT
:
2217 strcat (buf
, ", tomcat");
2223 if ((e_flags
& EF_M68K_ARCH_MASK
) == EF_M68K_M68000
)
2224 strcat (buf
, ", m68000");
2225 else if ((e_flags
& EF_M68K_ARCH_MASK
) == EF_M68K_CPU32
)
2226 strcat (buf
, ", cpu32");
2227 else if ((e_flags
& EF_M68K_ARCH_MASK
) == EF_M68K_FIDO
)
2228 strcat (buf
, ", fido_a");
2231 char const * isa
= _("unknown");
2232 char const * mac
= _("unknown mac");
2233 char const * additional
= NULL
;
2235 switch (e_flags
& EF_M68K_CF_ISA_MASK
)
2237 case EF_M68K_CF_ISA_A_NODIV
:
2239 additional
= ", nodiv";
2241 case EF_M68K_CF_ISA_A
:
2244 case EF_M68K_CF_ISA_A_PLUS
:
2247 case EF_M68K_CF_ISA_B_NOUSP
:
2249 additional
= ", nousp";
2251 case EF_M68K_CF_ISA_B
:
2254 case EF_M68K_CF_ISA_C
:
2257 case EF_M68K_CF_ISA_C_NODIV
:
2259 additional
= ", nodiv";
2262 strcat (buf
, ", cf, isa ");
2265 strcat (buf
, additional
);
2266 if (e_flags
& EF_M68K_CF_FLOAT
)
2267 strcat (buf
, ", float");
2268 switch (e_flags
& EF_M68K_CF_MAC_MASK
)
2273 case EF_M68K_CF_MAC
:
2276 case EF_M68K_CF_EMAC
:
2279 case EF_M68K_CF_EMAC_B
:
2292 if (e_flags
& EF_PPC_EMB
)
2293 strcat (buf
, ", emb");
2295 if (e_flags
& EF_PPC_RELOCATABLE
)
2296 strcat (buf
, _(", relocatable"));
2298 if (e_flags
& EF_PPC_RELOCATABLE_LIB
)
2299 strcat (buf
, _(", relocatable-lib"));
2303 case EM_CYGNUS_V850
:
2304 switch (e_flags
& EF_V850_ARCH
)
2306 case E_V850E2V3_ARCH
:
2307 strcat (buf
, ", v850e2v3");
2310 strcat (buf
, ", v850e2");
2313 strcat (buf
, ", v850e1");
2316 strcat (buf
, ", v850e");
2319 strcat (buf
, ", v850");
2322 strcat (buf
, _(", unknown v850 architecture variant"));
2328 case EM_CYGNUS_M32R
:
2329 if ((e_flags
& EF_M32R_ARCH
) == E_M32R_ARCH
)
2330 strcat (buf
, ", m32r");
2334 case EM_MIPS_RS3_LE
:
2335 if (e_flags
& EF_MIPS_NOREORDER
)
2336 strcat (buf
, ", noreorder");
2338 if (e_flags
& EF_MIPS_PIC
)
2339 strcat (buf
, ", pic");
2341 if (e_flags
& EF_MIPS_CPIC
)
2342 strcat (buf
, ", cpic");
2344 if (e_flags
& EF_MIPS_UCODE
)
2345 strcat (buf
, ", ugen_reserved");
2347 if (e_flags
& EF_MIPS_ABI2
)
2348 strcat (buf
, ", abi2");
2350 if (e_flags
& EF_MIPS_OPTIONS_FIRST
)
2351 strcat (buf
, ", odk first");
2353 if (e_flags
& EF_MIPS_32BITMODE
)
2354 strcat (buf
, ", 32bitmode");
2356 switch ((e_flags
& EF_MIPS_MACH
))
2358 case E_MIPS_MACH_3900
: strcat (buf
, ", 3900"); break;
2359 case E_MIPS_MACH_4010
: strcat (buf
, ", 4010"); break;
2360 case E_MIPS_MACH_4100
: strcat (buf
, ", 4100"); break;
2361 case E_MIPS_MACH_4111
: strcat (buf
, ", 4111"); break;
2362 case E_MIPS_MACH_4120
: strcat (buf
, ", 4120"); break;
2363 case E_MIPS_MACH_4650
: strcat (buf
, ", 4650"); break;
2364 case E_MIPS_MACH_5400
: strcat (buf
, ", 5400"); break;
2365 case E_MIPS_MACH_5500
: strcat (buf
, ", 5500"); break;
2366 case E_MIPS_MACH_SB1
: strcat (buf
, ", sb1"); break;
2367 case E_MIPS_MACH_9000
: strcat (buf
, ", 9000"); break;
2368 case E_MIPS_MACH_LS2E
: strcat (buf
, ", loongson-2e"); break;
2369 case E_MIPS_MACH_LS2F
: strcat (buf
, ", loongson-2f"); break;
2370 case E_MIPS_MACH_LS3A
: strcat (buf
, ", loongson-3a"); break;
2371 case E_MIPS_MACH_OCTEON
: strcat (buf
, ", octeon"); break;
2372 case E_MIPS_MACH_OCTEON2
: strcat (buf
, ", octeon2"); break;
2373 case E_MIPS_MACH_XLR
: strcat (buf
, ", xlr"); break;
2375 /* We simply ignore the field in this case to avoid confusion:
2376 MIPS ELF does not specify EF_MIPS_MACH, it is a GNU
2379 default: strcat (buf
, _(", unknown CPU")); break;
2382 switch ((e_flags
& EF_MIPS_ABI
))
2384 case E_MIPS_ABI_O32
: strcat (buf
, ", o32"); break;
2385 case E_MIPS_ABI_O64
: strcat (buf
, ", o64"); break;
2386 case E_MIPS_ABI_EABI32
: strcat (buf
, ", eabi32"); break;
2387 case E_MIPS_ABI_EABI64
: strcat (buf
, ", eabi64"); break;
2389 /* We simply ignore the field in this case to avoid confusion:
2390 MIPS ELF does not specify EF_MIPS_ABI, it is a GNU extension.
2391 This means it is likely to be an o32 file, but not for
2394 default: strcat (buf
, _(", unknown ABI")); break;
2397 if (e_flags
& EF_MIPS_ARCH_ASE_MDMX
)
2398 strcat (buf
, ", mdmx");
2400 if (e_flags
& EF_MIPS_ARCH_ASE_M16
)
2401 strcat (buf
, ", mips16");
2403 switch ((e_flags
& EF_MIPS_ARCH
))
2405 case E_MIPS_ARCH_1
: strcat (buf
, ", mips1"); break;
2406 case E_MIPS_ARCH_2
: strcat (buf
, ", mips2"); break;
2407 case E_MIPS_ARCH_3
: strcat (buf
, ", mips3"); break;
2408 case E_MIPS_ARCH_4
: strcat (buf
, ", mips4"); break;
2409 case E_MIPS_ARCH_5
: strcat (buf
, ", mips5"); break;
2410 case E_MIPS_ARCH_32
: strcat (buf
, ", mips32"); break;
2411 case E_MIPS_ARCH_32R2
: strcat (buf
, ", mips32r2"); break;
2412 case E_MIPS_ARCH_64
: strcat (buf
, ", mips64"); break;
2413 case E_MIPS_ARCH_64R2
: strcat (buf
, ", mips64r2"); break;
2414 default: strcat (buf
, _(", unknown ISA")); break;
2417 if (e_flags
& EF_SH_PIC
)
2418 strcat (buf
, ", pic");
2420 if (e_flags
& EF_SH_FDPIC
)
2421 strcat (buf
, ", fdpic");
2425 switch ((e_flags
& EF_SH_MACH_MASK
))
2427 case EF_SH1
: strcat (buf
, ", sh1"); break;
2428 case EF_SH2
: strcat (buf
, ", sh2"); break;
2429 case EF_SH3
: strcat (buf
, ", sh3"); break;
2430 case EF_SH_DSP
: strcat (buf
, ", sh-dsp"); break;
2431 case EF_SH3_DSP
: strcat (buf
, ", sh3-dsp"); break;
2432 case EF_SH4AL_DSP
: strcat (buf
, ", sh4al-dsp"); break;
2433 case EF_SH3E
: strcat (buf
, ", sh3e"); break;
2434 case EF_SH4
: strcat (buf
, ", sh4"); break;
2435 case EF_SH5
: strcat (buf
, ", sh5"); break;
2436 case EF_SH2E
: strcat (buf
, ", sh2e"); break;
2437 case EF_SH4A
: strcat (buf
, ", sh4a"); break;
2438 case EF_SH2A
: strcat (buf
, ", sh2a"); break;
2439 case EF_SH4_NOFPU
: strcat (buf
, ", sh4-nofpu"); break;
2440 case EF_SH4A_NOFPU
: strcat (buf
, ", sh4a-nofpu"); break;
2441 case EF_SH2A_NOFPU
: strcat (buf
, ", sh2a-nofpu"); break;
2442 case EF_SH3_NOMMU
: strcat (buf
, ", sh3-nommu"); break;
2443 case EF_SH4_NOMMU_NOFPU
: strcat (buf
, ", sh4-nommu-nofpu"); break;
2444 case EF_SH2A_SH4_NOFPU
: strcat (buf
, ", sh2a-nofpu-or-sh4-nommu-nofpu"); break;
2445 case EF_SH2A_SH3_NOFPU
: strcat (buf
, ", sh2a-nofpu-or-sh3-nommu"); break;
2446 case EF_SH2A_SH4
: strcat (buf
, ", sh2a-or-sh4"); break;
2447 case EF_SH2A_SH3E
: strcat (buf
, ", sh2a-or-sh3e"); break;
2448 default: strcat (buf
, _(", unknown ISA")); break;
2454 if (e_flags
& EF_SPARC_32PLUS
)
2455 strcat (buf
, ", v8+");
2457 if (e_flags
& EF_SPARC_SUN_US1
)
2458 strcat (buf
, ", ultrasparcI");
2460 if (e_flags
& EF_SPARC_SUN_US3
)
2461 strcat (buf
, ", ultrasparcIII");
2463 if (e_flags
& EF_SPARC_HAL_R1
)
2464 strcat (buf
, ", halr1");
2466 if (e_flags
& EF_SPARC_LEDATA
)
2467 strcat (buf
, ", ledata");
2469 if ((e_flags
& EF_SPARCV9_MM
) == EF_SPARCV9_TSO
)
2470 strcat (buf
, ", tso");
2472 if ((e_flags
& EF_SPARCV9_MM
) == EF_SPARCV9_PSO
)
2473 strcat (buf
, ", pso");
2475 if ((e_flags
& EF_SPARCV9_MM
) == EF_SPARCV9_RMO
)
2476 strcat (buf
, ", rmo");
2480 switch (e_flags
& EF_PARISC_ARCH
)
2482 case EFA_PARISC_1_0
:
2483 strcpy (buf
, ", PA-RISC 1.0");
2485 case EFA_PARISC_1_1
:
2486 strcpy (buf
, ", PA-RISC 1.1");
2488 case EFA_PARISC_2_0
:
2489 strcpy (buf
, ", PA-RISC 2.0");
2494 if (e_flags
& EF_PARISC_TRAPNIL
)
2495 strcat (buf
, ", trapnil");
2496 if (e_flags
& EF_PARISC_EXT
)
2497 strcat (buf
, ", ext");
2498 if (e_flags
& EF_PARISC_LSB
)
2499 strcat (buf
, ", lsb");
2500 if (e_flags
& EF_PARISC_WIDE
)
2501 strcat (buf
, ", wide");
2502 if (e_flags
& EF_PARISC_NO_KABP
)
2503 strcat (buf
, ", no kabp");
2504 if (e_flags
& EF_PARISC_LAZYSWAP
)
2505 strcat (buf
, ", lazyswap");
2510 if ((e_flags
& EF_PICOJAVA_NEWCALLS
) == EF_PICOJAVA_NEWCALLS
)
2511 strcat (buf
, ", new calling convention");
2513 if ((e_flags
& EF_PICOJAVA_GNUCALLS
) == EF_PICOJAVA_GNUCALLS
)
2514 strcat (buf
, ", gnu calling convention");
2518 if ((e_flags
& EF_IA_64_ABI64
))
2519 strcat (buf
, ", 64-bit");
2521 strcat (buf
, ", 32-bit");
2522 if ((e_flags
& EF_IA_64_REDUCEDFP
))
2523 strcat (buf
, ", reduced fp model");
2524 if ((e_flags
& EF_IA_64_NOFUNCDESC_CONS_GP
))
2525 strcat (buf
, ", no function descriptors, constant gp");
2526 else if ((e_flags
& EF_IA_64_CONS_GP
))
2527 strcat (buf
, ", constant gp");
2528 if ((e_flags
& EF_IA_64_ABSOLUTE
))
2529 strcat (buf
, ", absolute");
2530 if (elf_header
.e_ident
[EI_OSABI
] == ELFOSABI_OPENVMS
)
2532 if ((e_flags
& EF_IA_64_VMS_LINKAGES
))
2533 strcat (buf
, ", vms_linkages");
2534 switch ((e_flags
& EF_IA_64_VMS_COMCOD
))
2536 case EF_IA_64_VMS_COMCOD_SUCCESS
:
2538 case EF_IA_64_VMS_COMCOD_WARNING
:
2539 strcat (buf
, ", warning");
2541 case EF_IA_64_VMS_COMCOD_ERROR
:
2542 strcat (buf
, ", error");
2544 case EF_IA_64_VMS_COMCOD_ABORT
:
2545 strcat (buf
, ", abort");
2554 if ((e_flags
& EF_VAX_NONPIC
))
2555 strcat (buf
, ", non-PIC");
2556 if ((e_flags
& EF_VAX_DFLOAT
))
2557 strcat (buf
, ", D-Float");
2558 if ((e_flags
& EF_VAX_GFLOAT
))
2559 strcat (buf
, ", G-Float");
2563 if (e_flags
& E_FLAG_RX_64BIT_DOUBLES
)
2564 strcat (buf
, ", 64-bit doubles");
2565 if (e_flags
& E_FLAG_RX_DSP
)
2566 strcat (buf
, ", dsp");
2569 if (e_flags
& EF_S390_HIGH_GPRS
)
2570 strcat (buf
, ", highgprs");
2573 if ((e_flags
& EF_C6000_REL
))
2574 strcat (buf
, ", relocatable module");
2582 get_osabi_name (unsigned int osabi
)
2584 static char buff
[32];
2588 case ELFOSABI_NONE
: return "UNIX - System V";
2589 case ELFOSABI_HPUX
: return "UNIX - HP-UX";
2590 case ELFOSABI_NETBSD
: return "UNIX - NetBSD";
2591 case ELFOSABI_LINUX
: return "UNIX - Linux";
2592 case ELFOSABI_HURD
: return "GNU/Hurd";
2593 case ELFOSABI_SOLARIS
: return "UNIX - Solaris";
2594 case ELFOSABI_AIX
: return "UNIX - AIX";
2595 case ELFOSABI_IRIX
: return "UNIX - IRIX";
2596 case ELFOSABI_FREEBSD
: return "UNIX - FreeBSD";
2597 case ELFOSABI_TRU64
: return "UNIX - TRU64";
2598 case ELFOSABI_MODESTO
: return "Novell - Modesto";
2599 case ELFOSABI_OPENBSD
: return "UNIX - OpenBSD";
2600 case ELFOSABI_OPENVMS
: return "VMS - OpenVMS";
2601 case ELFOSABI_NSK
: return "HP - Non-Stop Kernel";
2602 case ELFOSABI_AROS
: return "AROS";
2603 case ELFOSABI_FENIXOS
: return "FenixOS";
2606 switch (elf_header
.e_machine
)
2611 case ELFOSABI_ARM
: return "ARM";
2621 case ELFOSABI_STANDALONE
: return _("Standalone App");
2630 case ELFOSABI_C6000_ELFABI
: return _("Bare-metal C6000");
2631 case ELFOSABI_C6000_LINUX
: return "Linux C6000";
2640 snprintf (buff
, sizeof (buff
), _("<unknown: %x>"), osabi
);
2646 get_arm_segment_type (unsigned long type
)
2660 get_mips_segment_type (unsigned long type
)
2664 case PT_MIPS_REGINFO
:
2666 case PT_MIPS_RTPROC
:
2668 case PT_MIPS_OPTIONS
:
2678 get_parisc_segment_type (unsigned long type
)
2682 case PT_HP_TLS
: return "HP_TLS";
2683 case PT_HP_CORE_NONE
: return "HP_CORE_NONE";
2684 case PT_HP_CORE_VERSION
: return "HP_CORE_VERSION";
2685 case PT_HP_CORE_KERNEL
: return "HP_CORE_KERNEL";
2686 case PT_HP_CORE_COMM
: return "HP_CORE_COMM";
2687 case PT_HP_CORE_PROC
: return "HP_CORE_PROC";
2688 case PT_HP_CORE_LOADABLE
: return "HP_CORE_LOADABLE";
2689 case PT_HP_CORE_STACK
: return "HP_CORE_STACK";
2690 case PT_HP_CORE_SHM
: return "HP_CORE_SHM";
2691 case PT_HP_CORE_MMF
: return "HP_CORE_MMF";
2692 case PT_HP_PARALLEL
: return "HP_PARALLEL";
2693 case PT_HP_FASTBIND
: return "HP_FASTBIND";
2694 case PT_HP_OPT_ANNOT
: return "HP_OPT_ANNOT";
2695 case PT_HP_HSL_ANNOT
: return "HP_HSL_ANNOT";
2696 case PT_HP_STACK
: return "HP_STACK";
2697 case PT_HP_CORE_UTSNAME
: return "HP_CORE_UTSNAME";
2698 case PT_PARISC_ARCHEXT
: return "PARISC_ARCHEXT";
2699 case PT_PARISC_UNWIND
: return "PARISC_UNWIND";
2700 case PT_PARISC_WEAKORDER
: return "PARISC_WEAKORDER";
2709 get_ia64_segment_type (unsigned long type
)
2713 case PT_IA_64_ARCHEXT
: return "IA_64_ARCHEXT";
2714 case PT_IA_64_UNWIND
: return "IA_64_UNWIND";
2715 case PT_HP_TLS
: return "HP_TLS";
2716 case PT_IA_64_HP_OPT_ANOT
: return "HP_OPT_ANNOT";
2717 case PT_IA_64_HP_HSL_ANOT
: return "HP_HSL_ANNOT";
2718 case PT_IA_64_HP_STACK
: return "HP_STACK";
2727 get_tic6x_segment_type (unsigned long type
)
2731 case PT_C6000_PHATTR
: return "C6000_PHATTR";
2740 get_segment_type (unsigned long p_type
)
2742 static char buff
[32];
2746 case PT_NULL
: return "NULL";
2747 case PT_LOAD
: return "LOAD";
2748 case PT_DYNAMIC
: return "DYNAMIC";
2749 case PT_INTERP
: return "INTERP";
2750 case PT_NOTE
: return "NOTE";
2751 case PT_SHLIB
: return "SHLIB";
2752 case PT_PHDR
: return "PHDR";
2753 case PT_TLS
: return "TLS";
2755 case PT_GNU_EH_FRAME
:
2756 return "GNU_EH_FRAME";
2757 case PT_GNU_STACK
: return "GNU_STACK";
2758 case PT_GNU_RELRO
: return "GNU_RELRO";
2761 if ((p_type
>= PT_LOPROC
) && (p_type
<= PT_HIPROC
))
2763 const char * result
;
2765 switch (elf_header
.e_machine
)
2768 result
= get_arm_segment_type (p_type
);
2771 case EM_MIPS_RS3_LE
:
2772 result
= get_mips_segment_type (p_type
);
2775 result
= get_parisc_segment_type (p_type
);
2778 result
= get_ia64_segment_type (p_type
);
2781 result
= get_tic6x_segment_type (p_type
);
2791 sprintf (buff
, "LOPROC+%lx", p_type
- PT_LOPROC
);
2793 else if ((p_type
>= PT_LOOS
) && (p_type
<= PT_HIOS
))
2795 const char * result
;
2797 switch (elf_header
.e_machine
)
2800 result
= get_parisc_segment_type (p_type
);
2803 result
= get_ia64_segment_type (p_type
);
2813 sprintf (buff
, "LOOS+%lx", p_type
- PT_LOOS
);
2816 snprintf (buff
, sizeof (buff
), _("<unknown>: %lx"), p_type
);
2823 get_mips_section_type_name (unsigned int sh_type
)
2827 case SHT_MIPS_LIBLIST
: return "MIPS_LIBLIST";
2828 case SHT_MIPS_MSYM
: return "MIPS_MSYM";
2829 case SHT_MIPS_CONFLICT
: return "MIPS_CONFLICT";
2830 case SHT_MIPS_GPTAB
: return "MIPS_GPTAB";
2831 case SHT_MIPS_UCODE
: return "MIPS_UCODE";
2832 case SHT_MIPS_DEBUG
: return "MIPS_DEBUG";
2833 case SHT_MIPS_REGINFO
: return "MIPS_REGINFO";
2834 case SHT_MIPS_PACKAGE
: return "MIPS_PACKAGE";
2835 case SHT_MIPS_PACKSYM
: return "MIPS_PACKSYM";
2836 case SHT_MIPS_RELD
: return "MIPS_RELD";
2837 case SHT_MIPS_IFACE
: return "MIPS_IFACE";
2838 case SHT_MIPS_CONTENT
: return "MIPS_CONTENT";
2839 case SHT_MIPS_OPTIONS
: return "MIPS_OPTIONS";
2840 case SHT_MIPS_SHDR
: return "MIPS_SHDR";
2841 case SHT_MIPS_FDESC
: return "MIPS_FDESC";
2842 case SHT_MIPS_EXTSYM
: return "MIPS_EXTSYM";
2843 case SHT_MIPS_DENSE
: return "MIPS_DENSE";
2844 case SHT_MIPS_PDESC
: return "MIPS_PDESC";
2845 case SHT_MIPS_LOCSYM
: return "MIPS_LOCSYM";
2846 case SHT_MIPS_AUXSYM
: return "MIPS_AUXSYM";
2847 case SHT_MIPS_OPTSYM
: return "MIPS_OPTSYM";
2848 case SHT_MIPS_LOCSTR
: return "MIPS_LOCSTR";
2849 case SHT_MIPS_LINE
: return "MIPS_LINE";
2850 case SHT_MIPS_RFDESC
: return "MIPS_RFDESC";
2851 case SHT_MIPS_DELTASYM
: return "MIPS_DELTASYM";
2852 case SHT_MIPS_DELTAINST
: return "MIPS_DELTAINST";
2853 case SHT_MIPS_DELTACLASS
: return "MIPS_DELTACLASS";
2854 case SHT_MIPS_DWARF
: return "MIPS_DWARF";
2855 case SHT_MIPS_DELTADECL
: return "MIPS_DELTADECL";
2856 case SHT_MIPS_SYMBOL_LIB
: return "MIPS_SYMBOL_LIB";
2857 case SHT_MIPS_EVENTS
: return "MIPS_EVENTS";
2858 case SHT_MIPS_TRANSLATE
: return "MIPS_TRANSLATE";
2859 case SHT_MIPS_PIXIE
: return "MIPS_PIXIE";
2860 case SHT_MIPS_XLATE
: return "MIPS_XLATE";
2861 case SHT_MIPS_XLATE_DEBUG
: return "MIPS_XLATE_DEBUG";
2862 case SHT_MIPS_WHIRL
: return "MIPS_WHIRL";
2863 case SHT_MIPS_EH_REGION
: return "MIPS_EH_REGION";
2864 case SHT_MIPS_XLATE_OLD
: return "MIPS_XLATE_OLD";
2865 case SHT_MIPS_PDR_EXCEPTION
: return "MIPS_PDR_EXCEPTION";
2873 get_parisc_section_type_name (unsigned int sh_type
)
2877 case SHT_PARISC_EXT
: return "PARISC_EXT";
2878 case SHT_PARISC_UNWIND
: return "PARISC_UNWIND";
2879 case SHT_PARISC_DOC
: return "PARISC_DOC";
2880 case SHT_PARISC_ANNOT
: return "PARISC_ANNOT";
2881 case SHT_PARISC_SYMEXTN
: return "PARISC_SYMEXTN";
2882 case SHT_PARISC_STUBS
: return "PARISC_STUBS";
2883 case SHT_PARISC_DLKM
: return "PARISC_DLKM";
2891 get_ia64_section_type_name (unsigned int sh_type
)
2893 /* If the top 8 bits are 0x78 the next 8 are the os/abi ID. */
2894 if ((sh_type
& 0xFF000000) == SHT_IA_64_LOPSREG
)
2895 return get_osabi_name ((sh_type
& 0x00FF0000) >> 16);
2899 case SHT_IA_64_EXT
: return "IA_64_EXT";
2900 case SHT_IA_64_UNWIND
: return "IA_64_UNWIND";
2901 case SHT_IA_64_PRIORITY_INIT
: return "IA_64_PRIORITY_INIT";
2902 case SHT_IA_64_VMS_TRACE
: return "VMS_TRACE";
2903 case SHT_IA_64_VMS_TIE_SIGNATURES
: return "VMS_TIE_SIGNATURES";
2904 case SHT_IA_64_VMS_DEBUG
: return "VMS_DEBUG";
2905 case SHT_IA_64_VMS_DEBUG_STR
: return "VMS_DEBUG_STR";
2906 case SHT_IA_64_VMS_LINKAGES
: return "VMS_LINKAGES";
2907 case SHT_IA_64_VMS_SYMBOL_VECTOR
: return "VMS_SYMBOL_VECTOR";
2908 case SHT_IA_64_VMS_FIXUP
: return "VMS_FIXUP";
2916 get_x86_64_section_type_name (unsigned int sh_type
)
2920 case SHT_X86_64_UNWIND
: return "X86_64_UNWIND";
2928 get_arm_section_type_name (unsigned int sh_type
)
2932 case SHT_ARM_EXIDX
: return "ARM_EXIDX";
2933 case SHT_ARM_PREEMPTMAP
: return "ARM_PREEMPTMAP";
2934 case SHT_ARM_ATTRIBUTES
: return "ARM_ATTRIBUTES";
2935 case SHT_ARM_DEBUGOVERLAY
: return "ARM_DEBUGOVERLAY";
2936 case SHT_ARM_OVERLAYSECTION
: return "ARM_OVERLAYSECTION";
2944 get_tic6x_section_type_name (unsigned int sh_type
)
2948 case SHT_C6000_UNWIND
:
2949 return "C6000_UNWIND";
2950 case SHT_C6000_PREEMPTMAP
:
2951 return "C6000_PREEMPTMAP";
2952 case SHT_C6000_ATTRIBUTES
:
2953 return "C6000_ATTRIBUTES";
2958 case SHT_TI_HANDLER
:
2959 return "TI_HANDLER";
2960 case SHT_TI_INITINFO
:
2961 return "TI_INITINFO";
2962 case SHT_TI_PHATTRS
:
2963 return "TI_PHATTRS";
2971 get_section_type_name (unsigned int sh_type
)
2973 static char buff
[32];
2977 case SHT_NULL
: return "NULL";
2978 case SHT_PROGBITS
: return "PROGBITS";
2979 case SHT_SYMTAB
: return "SYMTAB";
2980 case SHT_STRTAB
: return "STRTAB";
2981 case SHT_RELA
: return "RELA";
2982 case SHT_HASH
: return "HASH";
2983 case SHT_DYNAMIC
: return "DYNAMIC";
2984 case SHT_NOTE
: return "NOTE";
2985 case SHT_NOBITS
: return "NOBITS";
2986 case SHT_REL
: return "REL";
2987 case SHT_SHLIB
: return "SHLIB";
2988 case SHT_DYNSYM
: return "DYNSYM";
2989 case SHT_INIT_ARRAY
: return "INIT_ARRAY";
2990 case SHT_FINI_ARRAY
: return "FINI_ARRAY";
2991 case SHT_PREINIT_ARRAY
: return "PREINIT_ARRAY";
2992 case SHT_GNU_HASH
: return "GNU_HASH";
2993 case SHT_GROUP
: return "GROUP";
2994 case SHT_SYMTAB_SHNDX
: return "SYMTAB SECTION INDICIES";
2995 case SHT_GNU_verdef
: return "VERDEF";
2996 case SHT_GNU_verneed
: return "VERNEED";
2997 case SHT_GNU_versym
: return "VERSYM";
2998 case 0x6ffffff0: return "VERSYM";
2999 case 0x6ffffffc: return "VERDEF";
3000 case 0x7ffffffd: return "AUXILIARY";
3001 case 0x7fffffff: return "FILTER";
3002 case SHT_GNU_LIBLIST
: return "GNU_LIBLIST";
3005 if ((sh_type
>= SHT_LOPROC
) && (sh_type
<= SHT_HIPROC
))
3007 const char * result
;
3009 switch (elf_header
.e_machine
)
3012 case EM_MIPS_RS3_LE
:
3013 result
= get_mips_section_type_name (sh_type
);
3016 result
= get_parisc_section_type_name (sh_type
);
3019 result
= get_ia64_section_type_name (sh_type
);
3023 result
= get_x86_64_section_type_name (sh_type
);
3026 result
= get_arm_section_type_name (sh_type
);
3029 result
= get_tic6x_section_type_name (sh_type
);
3039 sprintf (buff
, "LOPROC+%x", sh_type
- SHT_LOPROC
);
3041 else if ((sh_type
>= SHT_LOOS
) && (sh_type
<= SHT_HIOS
))
3043 const char * result
;
3045 switch (elf_header
.e_machine
)
3048 result
= get_ia64_section_type_name (sh_type
);
3058 sprintf (buff
, "LOOS+%x", sh_type
- SHT_LOOS
);
3060 else if ((sh_type
>= SHT_LOUSER
) && (sh_type
<= SHT_HIUSER
))
3061 sprintf (buff
, "LOUSER+%x", sh_type
- SHT_LOUSER
);
3063 snprintf (buff
, sizeof (buff
), _("<unknown>: %x"), sh_type
);
3069 #define OPTION_DEBUG_DUMP 512
3070 #define OPTION_DYN_SYMS 513
3072 static struct option options
[] =
3074 {"all", no_argument
, 0, 'a'},
3075 {"file-header", no_argument
, 0, 'h'},
3076 {"program-headers", no_argument
, 0, 'l'},
3077 {"headers", no_argument
, 0, 'e'},
3078 {"histogram", no_argument
, 0, 'I'},
3079 {"segments", no_argument
, 0, 'l'},
3080 {"sections", no_argument
, 0, 'S'},
3081 {"section-headers", no_argument
, 0, 'S'},
3082 {"section-groups", no_argument
, 0, 'g'},
3083 {"section-details", no_argument
, 0, 't'},
3084 {"full-section-name",no_argument
, 0, 'N'},
3085 {"symbols", no_argument
, 0, 's'},
3086 {"syms", no_argument
, 0, 's'},
3087 {"dyn-syms", no_argument
, 0, OPTION_DYN_SYMS
},
3088 {"relocs", no_argument
, 0, 'r'},
3089 {"notes", no_argument
, 0, 'n'},
3090 {"dynamic", no_argument
, 0, 'd'},
3091 {"arch-specific", no_argument
, 0, 'A'},
3092 {"version-info", no_argument
, 0, 'V'},
3093 {"use-dynamic", no_argument
, 0, 'D'},
3094 {"unwind", no_argument
, 0, 'u'},
3095 {"archive-index", no_argument
, 0, 'c'},
3096 {"hex-dump", required_argument
, 0, 'x'},
3097 {"relocated-dump", required_argument
, 0, 'R'},
3098 {"string-dump", required_argument
, 0, 'p'},
3099 #ifdef SUPPORT_DISASSEMBLY
3100 {"instruction-dump", required_argument
, 0, 'i'},
3102 {"debug-dump", optional_argument
, 0, OPTION_DEBUG_DUMP
},
3104 {"version", no_argument
, 0, 'v'},
3105 {"wide", no_argument
, 0, 'W'},
3106 {"help", no_argument
, 0, 'H'},
3107 {0, no_argument
, 0, 0}
3111 usage (FILE * stream
)
3113 fprintf (stream
, _("Usage: readelf <option(s)> elf-file(s)\n"));
3114 fprintf (stream
, _(" Display information about the contents of ELF format files\n"));
3115 fprintf (stream
, _(" Options are:\n\
3116 -a --all Equivalent to: -h -l -S -s -r -d -V -A -I\n\
3117 -h --file-header Display the ELF file header\n\
3118 -l --program-headers Display the program headers\n\
3119 --segments An alias for --program-headers\n\
3120 -S --section-headers Display the sections' header\n\
3121 --sections An alias for --section-headers\n\
3122 -g --section-groups Display the section groups\n\
3123 -t --section-details Display the section details\n\
3124 -e --headers Equivalent to: -h -l -S\n\
3125 -s --syms Display the symbol table\n\
3126 --symbols An alias for --syms\n\
3127 --dyn-syms Display the dynamic symbol table\n\
3128 -n --notes Display the core notes (if present)\n\
3129 -r --relocs Display the relocations (if present)\n\
3130 -u --unwind Display the unwind info (if present)\n\
3131 -d --dynamic Display the dynamic section (if present)\n\
3132 -V --version-info Display the version sections (if present)\n\
3133 -A --arch-specific Display architecture specific information (if any).\n\
3134 -c --archive-index Display the symbol/file index in an archive\n\
3135 -D --use-dynamic Use the dynamic section info when displaying symbols\n\
3136 -x --hex-dump=<number|name>\n\
3137 Dump the contents of section <number|name> as bytes\n\
3138 -p --string-dump=<number|name>\n\
3139 Dump the contents of section <number|name> as strings\n\
3140 -R --relocated-dump=<number|name>\n\
3141 Dump the contents of section <number|name> as relocated bytes\n\
3142 -w[lLiaprmfFsoRt] or\n\
3143 --debug-dump[=rawline,=decodedline,=info,=abbrev,=pubnames,=aranges,=macro,=frames,\n\
3144 =frames-interp,=str,=loc,=Ranges,=pubtypes,\n\
3145 =gdb_index,=trace_info,=trace_abbrev,=trace_aranges]\n\
3146 Display the contents of DWARF2 debug sections\n"));
3147 #ifdef SUPPORT_DISASSEMBLY
3148 fprintf (stream
, _("\
3149 -i --instruction-dump=<number|name>\n\
3150 Disassemble the contents of section <number|name>\n"));
3152 fprintf (stream
, _("\
3153 -I --histogram Display histogram of bucket list lengths\n\
3154 -W --wide Allow output width to exceed 80 characters\n\
3155 @<file> Read options from <file>\n\
3156 -H --help Display this information\n\
3157 -v --version Display the version number of readelf\n"));
3159 if (REPORT_BUGS_TO
[0] && stream
== stdout
)
3160 fprintf (stdout
, _("Report bugs to %s\n"), REPORT_BUGS_TO
);
3162 exit (stream
== stdout
? 0 : 1);
3165 /* Record the fact that the user wants the contents of section number
3166 SECTION to be displayed using the method(s) encoded as flags bits
3167 in TYPE. Note, TYPE can be zero if we are creating the array for
3171 request_dump_bynumber (unsigned int section
, dump_type type
)
3173 if (section
>= num_dump_sects
)
3175 dump_type
* new_dump_sects
;
3177 new_dump_sects
= (dump_type
*) calloc (section
+ 1,
3178 sizeof (* dump_sects
));
3180 if (new_dump_sects
== NULL
)
3181 error (_("Out of memory allocating dump request table.\n"));
3184 /* Copy current flag settings. */
3185 memcpy (new_dump_sects
, dump_sects
, num_dump_sects
* sizeof (* dump_sects
));
3189 dump_sects
= new_dump_sects
;
3190 num_dump_sects
= section
+ 1;
3195 dump_sects
[section
] |= type
;
3200 /* Request a dump by section name. */
3203 request_dump_byname (const char * section
, dump_type type
)
3205 struct dump_list_entry
* new_request
;
3207 new_request
= (struct dump_list_entry
*)
3208 malloc (sizeof (struct dump_list_entry
));
3210 error (_("Out of memory allocating dump request table.\n"));
3212 new_request
->name
= strdup (section
);
3213 if (!new_request
->name
)
3214 error (_("Out of memory allocating dump request table.\n"));
3216 new_request
->type
= type
;
3218 new_request
->next
= dump_sects_byname
;
3219 dump_sects_byname
= new_request
;
3223 request_dump (dump_type type
)
3229 section
= strtoul (optarg
, & cp
, 0);
3231 if (! *cp
&& section
>= 0)
3232 request_dump_bynumber (section
, type
);
3234 request_dump_byname (optarg
, type
);
3239 parse_args (int argc
, char ** argv
)
3246 while ((c
= getopt_long
3247 (argc
, argv
, "ADHINR:SVWacdeghi:lnp:rstuvw::x:", options
, NULL
)) != EOF
)
3265 do_section_groups
++;
3273 do_section_groups
++;
3278 do_section_details
++;
3322 request_dump (HEX_DUMP
);
3325 request_dump (STRING_DUMP
);
3328 request_dump (RELOC_DUMP
);
3335 dwarf_select_sections_all ();
3340 dwarf_select_sections_by_letters (optarg
);
3343 case OPTION_DEBUG_DUMP
:
3350 dwarf_select_sections_by_names (optarg
);
3353 case OPTION_DYN_SYMS
:
3356 #ifdef SUPPORT_DISASSEMBLY
3358 request_dump (DISASS_DUMP
);
3362 print_version (program_name
);
3371 /* xgettext:c-format */
3372 error (_("Invalid option '-%c'\n"), c
);
3379 if (!do_dynamic
&& !do_syms
&& !do_reloc
&& !do_unwind
&& !do_sections
3380 && !do_segments
&& !do_header
&& !do_dump
&& !do_version
3381 && !do_histogram
&& !do_debugging
&& !do_arch
&& !do_notes
3382 && !do_section_groups
&& !do_archive_index
3387 warn (_("Nothing to do.\n"));
3393 get_elf_class (unsigned int elf_class
)
3395 static char buff
[32];
3399 case ELFCLASSNONE
: return _("none");
3400 case ELFCLASS32
: return "ELF32";
3401 case ELFCLASS64
: return "ELF64";
3403 snprintf (buff
, sizeof (buff
), _("<unknown: %x>"), elf_class
);
3409 get_data_encoding (unsigned int encoding
)
3411 static char buff
[32];
3415 case ELFDATANONE
: return _("none");
3416 case ELFDATA2LSB
: return _("2's complement, little endian");
3417 case ELFDATA2MSB
: return _("2's complement, big endian");
3419 snprintf (buff
, sizeof (buff
), _("<unknown: %x>"), encoding
);
3424 /* Decode the data held in 'elf_header'. */
3427 process_file_header (void)
3429 if ( elf_header
.e_ident
[EI_MAG0
] != ELFMAG0
3430 || elf_header
.e_ident
[EI_MAG1
] != ELFMAG1
3431 || elf_header
.e_ident
[EI_MAG2
] != ELFMAG2
3432 || elf_header
.e_ident
[EI_MAG3
] != ELFMAG3
)
3435 (_("Not an ELF file - it has the wrong magic bytes at the start\n"));
3439 init_dwarf_regnames (elf_header
.e_machine
);
3445 printf (_("ELF Header:\n"));
3446 printf (_(" Magic: "));
3447 for (i
= 0; i
< EI_NIDENT
; i
++)
3448 printf ("%2.2x ", elf_header
.e_ident
[i
]);
3450 printf (_(" Class: %s\n"),
3451 get_elf_class (elf_header
.e_ident
[EI_CLASS
]));
3452 printf (_(" Data: %s\n"),
3453 get_data_encoding (elf_header
.e_ident
[EI_DATA
]));
3454 printf (_(" Version: %d %s\n"),
3455 elf_header
.e_ident
[EI_VERSION
],
3456 (elf_header
.e_ident
[EI_VERSION
] == EV_CURRENT
3458 : (elf_header
.e_ident
[EI_VERSION
] != EV_NONE
3459 ? _("<unknown: %lx>")
3461 printf (_(" OS/ABI: %s\n"),
3462 get_osabi_name (elf_header
.e_ident
[EI_OSABI
]));
3463 printf (_(" ABI Version: %d\n"),
3464 elf_header
.e_ident
[EI_ABIVERSION
]);
3465 printf (_(" Type: %s\n"),
3466 get_file_type (elf_header
.e_type
));
3467 printf (_(" Machine: %s\n"),
3468 get_machine_name (elf_header
.e_machine
));
3469 printf (_(" Version: 0x%lx\n"),
3470 (unsigned long) elf_header
.e_version
);
3472 printf (_(" Entry point address: "));
3473 print_vma ((bfd_vma
) elf_header
.e_entry
, PREFIX_HEX
);
3474 printf (_("\n Start of program headers: "));
3475 print_vma ((bfd_vma
) elf_header
.e_phoff
, DEC
);
3476 printf (_(" (bytes into file)\n Start of section headers: "));
3477 print_vma ((bfd_vma
) elf_header
.e_shoff
, DEC
);
3478 printf (_(" (bytes into file)\n"));
3480 printf (_(" Flags: 0x%lx%s\n"),
3481 (unsigned long) elf_header
.e_flags
,
3482 get_machine_flags (elf_header
.e_flags
, elf_header
.e_machine
));
3483 printf (_(" Size of this header: %ld (bytes)\n"),
3484 (long) elf_header
.e_ehsize
);
3485 printf (_(" Size of program headers: %ld (bytes)\n"),
3486 (long) elf_header
.e_phentsize
);
3487 printf (_(" Number of program headers: %ld"),
3488 (long) elf_header
.e_phnum
);
3489 if (section_headers
!= NULL
3490 && elf_header
.e_phnum
== PN_XNUM
3491 && section_headers
[0].sh_info
!= 0)
3492 printf (" (%ld)", (long) section_headers
[0].sh_info
);
3493 putc ('\n', stdout
);
3494 printf (_(" Size of section headers: %ld (bytes)\n"),
3495 (long) elf_header
.e_shentsize
);
3496 printf (_(" Number of section headers: %ld"),
3497 (long) elf_header
.e_shnum
);
3498 if (section_headers
!= NULL
&& elf_header
.e_shnum
== SHN_UNDEF
)
3499 printf (" (%ld)", (long) section_headers
[0].sh_size
);
3500 putc ('\n', stdout
);
3501 printf (_(" Section header string table index: %ld"),
3502 (long) elf_header
.e_shstrndx
);
3503 if (section_headers
!= NULL
3504 && elf_header
.e_shstrndx
== (SHN_XINDEX
& 0xffff))
3505 printf (" (%u)", section_headers
[0].sh_link
);
3506 else if (elf_header
.e_shstrndx
!= SHN_UNDEF
3507 && elf_header
.e_shstrndx
>= elf_header
.e_shnum
)
3508 printf (_(" <corrupt: out of range>"));
3509 putc ('\n', stdout
);
3512 if (section_headers
!= NULL
)
3514 if (elf_header
.e_phnum
== PN_XNUM
3515 && section_headers
[0].sh_info
!= 0)
3516 elf_header
.e_phnum
= section_headers
[0].sh_info
;
3517 if (elf_header
.e_shnum
== SHN_UNDEF
)
3518 elf_header
.e_shnum
= section_headers
[0].sh_size
;
3519 if (elf_header
.e_shstrndx
== (SHN_XINDEX
& 0xffff))
3520 elf_header
.e_shstrndx
= section_headers
[0].sh_link
;
3521 else if (elf_header
.e_shstrndx
>= elf_header
.e_shnum
)
3522 elf_header
.e_shstrndx
= SHN_UNDEF
;
3523 free (section_headers
);
3524 section_headers
= NULL
;
3532 get_32bit_program_headers (FILE * file
, Elf_Internal_Phdr
* pheaders
)
3534 Elf32_External_Phdr
* phdrs
;
3535 Elf32_External_Phdr
* external
;
3536 Elf_Internal_Phdr
* internal
;
3539 phdrs
= (Elf32_External_Phdr
*) get_data (NULL
, file
, elf_header
.e_phoff
,
3540 elf_header
.e_phentsize
,
3542 _("program headers"));
3546 for (i
= 0, internal
= pheaders
, external
= phdrs
;
3547 i
< elf_header
.e_phnum
;
3548 i
++, internal
++, external
++)
3550 internal
->p_type
= BYTE_GET (external
->p_type
);
3551 internal
->p_offset
= BYTE_GET (external
->p_offset
);
3552 internal
->p_vaddr
= BYTE_GET (external
->p_vaddr
);
3553 internal
->p_paddr
= BYTE_GET (external
->p_paddr
);
3554 internal
->p_filesz
= BYTE_GET (external
->p_filesz
);
3555 internal
->p_memsz
= BYTE_GET (external
->p_memsz
);
3556 internal
->p_flags
= BYTE_GET (external
->p_flags
);
3557 internal
->p_align
= BYTE_GET (external
->p_align
);
3566 get_64bit_program_headers (FILE * file
, Elf_Internal_Phdr
* pheaders
)
3568 Elf64_External_Phdr
* phdrs
;
3569 Elf64_External_Phdr
* external
;
3570 Elf_Internal_Phdr
* internal
;
3573 phdrs
= (Elf64_External_Phdr
*) get_data (NULL
, file
, elf_header
.e_phoff
,
3574 elf_header
.e_phentsize
,
3576 _("program headers"));
3580 for (i
= 0, internal
= pheaders
, external
= phdrs
;
3581 i
< elf_header
.e_phnum
;
3582 i
++, internal
++, external
++)
3584 internal
->p_type
= BYTE_GET (external
->p_type
);
3585 internal
->p_flags
= BYTE_GET (external
->p_flags
);
3586 internal
->p_offset
= BYTE_GET (external
->p_offset
);
3587 internal
->p_vaddr
= BYTE_GET (external
->p_vaddr
);
3588 internal
->p_paddr
= BYTE_GET (external
->p_paddr
);
3589 internal
->p_filesz
= BYTE_GET (external
->p_filesz
);
3590 internal
->p_memsz
= BYTE_GET (external
->p_memsz
);
3591 internal
->p_align
= BYTE_GET (external
->p_align
);
3599 /* Returns 1 if the program headers were read into `program_headers'. */
3602 get_program_headers (FILE * file
)
3604 Elf_Internal_Phdr
* phdrs
;
3606 /* Check cache of prior read. */
3607 if (program_headers
!= NULL
)
3610 phdrs
= (Elf_Internal_Phdr
*) cmalloc (elf_header
.e_phnum
,
3611 sizeof (Elf_Internal_Phdr
));
3615 error (_("Out of memory\n"));
3620 ? get_32bit_program_headers (file
, phdrs
)
3621 : get_64bit_program_headers (file
, phdrs
))
3623 program_headers
= phdrs
;
3631 /* Returns 1 if the program headers were loaded. */
3634 process_program_headers (FILE * file
)
3636 Elf_Internal_Phdr
* segment
;
3639 if (elf_header
.e_phnum
== 0)
3642 printf (_("\nThere are no program headers in this file.\n"));
3646 if (do_segments
&& !do_header
)
3648 printf (_("\nElf file type is %s\n"), get_file_type (elf_header
.e_type
));
3649 printf (_("Entry point "));
3650 print_vma ((bfd_vma
) elf_header
.e_entry
, PREFIX_HEX
);
3651 printf (_("\nThere are %d program headers, starting at offset "),
3652 elf_header
.e_phnum
);
3653 print_vma ((bfd_vma
) elf_header
.e_phoff
, DEC
);
3657 if (! get_program_headers (file
))
3662 if (elf_header
.e_phnum
> 1)
3663 printf (_("\nProgram Headers:\n"));
3665 printf (_("\nProgram Headers:\n"));
3669 (_(" Type Offset VirtAddr PhysAddr FileSiz MemSiz Flg Align\n"));
3672 (_(" Type Offset VirtAddr PhysAddr FileSiz MemSiz Flg Align\n"));
3676 (_(" Type Offset VirtAddr PhysAddr\n"));
3678 (_(" FileSiz MemSiz Flags Align\n"));
3685 for (i
= 0, segment
= program_headers
;
3686 i
< elf_header
.e_phnum
;
3691 printf (" %-14.14s ", get_segment_type (segment
->p_type
));
3695 printf ("0x%6.6lx ", (unsigned long) segment
->p_offset
);
3696 printf ("0x%8.8lx ", (unsigned long) segment
->p_vaddr
);
3697 printf ("0x%8.8lx ", (unsigned long) segment
->p_paddr
);
3698 printf ("0x%5.5lx ", (unsigned long) segment
->p_filesz
);
3699 printf ("0x%5.5lx ", (unsigned long) segment
->p_memsz
);
3701 (segment
->p_flags
& PF_R
? 'R' : ' '),
3702 (segment
->p_flags
& PF_W
? 'W' : ' '),
3703 (segment
->p_flags
& PF_X
? 'E' : ' '));
3704 printf ("%#lx", (unsigned long) segment
->p_align
);
3708 if ((unsigned long) segment
->p_offset
== segment
->p_offset
)
3709 printf ("0x%6.6lx ", (unsigned long) segment
->p_offset
);
3712 print_vma (segment
->p_offset
, FULL_HEX
);
3716 print_vma (segment
->p_vaddr
, FULL_HEX
);
3718 print_vma (segment
->p_paddr
, FULL_HEX
);
3721 if ((unsigned long) segment
->p_filesz
== segment
->p_filesz
)
3722 printf ("0x%6.6lx ", (unsigned long) segment
->p_filesz
);
3725 print_vma (segment
->p_filesz
, FULL_HEX
);
3729 if ((unsigned long) segment
->p_memsz
== segment
->p_memsz
)
3730 printf ("0x%6.6lx", (unsigned long) segment
->p_memsz
);
3733 print_vma (segment
->p_offset
, FULL_HEX
);
3737 (segment
->p_flags
& PF_R
? 'R' : ' '),
3738 (segment
->p_flags
& PF_W
? 'W' : ' '),
3739 (segment
->p_flags
& PF_X
? 'E' : ' '));
3741 if ((unsigned long) segment
->p_align
== segment
->p_align
)
3742 printf ("%#lx", (unsigned long) segment
->p_align
);
3745 print_vma (segment
->p_align
, PREFIX_HEX
);
3750 print_vma (segment
->p_offset
, FULL_HEX
);
3752 print_vma (segment
->p_vaddr
, FULL_HEX
);
3754 print_vma (segment
->p_paddr
, FULL_HEX
);
3756 print_vma (segment
->p_filesz
, FULL_HEX
);
3758 print_vma (segment
->p_memsz
, FULL_HEX
);
3760 (segment
->p_flags
& PF_R
? 'R' : ' '),
3761 (segment
->p_flags
& PF_W
? 'W' : ' '),
3762 (segment
->p_flags
& PF_X
? 'E' : ' '));
3763 print_vma (segment
->p_align
, HEX
);
3767 switch (segment
->p_type
)
3771 error (_("more than one dynamic segment\n"));
3773 /* By default, assume that the .dynamic section is the first
3774 section in the DYNAMIC segment. */
3775 dynamic_addr
= segment
->p_offset
;
3776 dynamic_size
= segment
->p_filesz
;
3778 /* Try to locate the .dynamic section. If there is
3779 a section header table, we can easily locate it. */
3780 if (section_headers
!= NULL
)
3782 Elf_Internal_Shdr
* sec
;
3784 sec
= find_section (".dynamic");
3785 if (sec
== NULL
|| sec
->sh_size
== 0)
3787 /* A corresponding .dynamic section is expected, but on
3788 IA-64/OpenVMS it is OK for it to be missing. */
3789 if (!is_ia64_vms ())
3790 error (_("no .dynamic section in the dynamic segment\n"));
3794 if (sec
->sh_type
== SHT_NOBITS
)
3800 dynamic_addr
= sec
->sh_offset
;
3801 dynamic_size
= sec
->sh_size
;
3803 if (dynamic_addr
< segment
->p_offset
3804 || dynamic_addr
> segment
->p_offset
+ segment
->p_filesz
)
3805 warn (_("the .dynamic section is not contained"
3806 " within the dynamic segment\n"));
3807 else if (dynamic_addr
> segment
->p_offset
)
3808 warn (_("the .dynamic section is not the first section"
3809 " in the dynamic segment.\n"));
3814 if (fseek (file
, archive_file_offset
+ (long) segment
->p_offset
,
3816 error (_("Unable to find program interpreter name\n"));
3820 int ret
= snprintf (fmt
, sizeof (fmt
), "%%%ds", PATH_MAX
);
3822 if (ret
>= (int) sizeof (fmt
) || ret
< 0)
3823 error (_("Internal error: failed to create format string to display program interpreter\n"));
3825 program_interpreter
[0] = 0;
3826 if (fscanf (file
, fmt
, program_interpreter
) <= 0)
3827 error (_("Unable to read program interpreter name\n"));
3830 printf (_("\n [Requesting program interpreter: %s]"),
3831 program_interpreter
);
3837 putc ('\n', stdout
);
3840 if (do_segments
&& section_headers
!= NULL
&& string_table
!= NULL
)
3842 printf (_("\n Section to Segment mapping:\n"));
3843 printf (_(" Segment Sections...\n"));
3845 for (i
= 0; i
< elf_header
.e_phnum
; i
++)
3848 Elf_Internal_Shdr
* section
;
3850 segment
= program_headers
+ i
;
3851 section
= section_headers
+ 1;
3853 printf (" %2.2d ", i
);
3855 for (j
= 1; j
< elf_header
.e_shnum
; j
++, section
++)
3857 if (!ELF_TBSS_SPECIAL (section
, segment
)
3858 && ELF_SECTION_IN_SEGMENT_STRICT (section
, segment
))
3859 printf ("%s ", SECTION_NAME (section
));
3870 /* Find the file offset corresponding to VMA by using the program headers. */
3873 offset_from_vma (FILE * file
, bfd_vma vma
, bfd_size_type size
)
3875 Elf_Internal_Phdr
* seg
;
3877 if (! get_program_headers (file
))
3879 warn (_("Cannot interpret virtual addresses without program headers.\n"));
3883 for (seg
= program_headers
;
3884 seg
< program_headers
+ elf_header
.e_phnum
;
3887 if (seg
->p_type
!= PT_LOAD
)
3890 if (vma
>= (seg
->p_vaddr
& -seg
->p_align
)
3891 && vma
+ size
<= seg
->p_vaddr
+ seg
->p_filesz
)
3892 return vma
- seg
->p_vaddr
+ seg
->p_offset
;
3895 warn (_("Virtual address 0x%lx not located in any PT_LOAD segment.\n"),
3896 (unsigned long) vma
);
3902 get_32bit_section_headers (FILE * file
, unsigned int num
)
3904 Elf32_External_Shdr
* shdrs
;
3905 Elf_Internal_Shdr
* internal
;
3908 shdrs
= (Elf32_External_Shdr
*) get_data (NULL
, file
, elf_header
.e_shoff
,
3909 elf_header
.e_shentsize
, num
,
3910 _("section headers"));
3914 section_headers
= (Elf_Internal_Shdr
*) cmalloc (num
,
3915 sizeof (Elf_Internal_Shdr
));
3917 if (section_headers
== NULL
)
3919 error (_("Out of memory\n"));
3923 for (i
= 0, internal
= section_headers
;
3927 internal
->sh_name
= BYTE_GET (shdrs
[i
].sh_name
);
3928 internal
->sh_type
= BYTE_GET (shdrs
[i
].sh_type
);
3929 internal
->sh_flags
= BYTE_GET (shdrs
[i
].sh_flags
);
3930 internal
->sh_addr
= BYTE_GET (shdrs
[i
].sh_addr
);
3931 internal
->sh_offset
= BYTE_GET (shdrs
[i
].sh_offset
);
3932 internal
->sh_size
= BYTE_GET (shdrs
[i
].sh_size
);
3933 internal
->sh_link
= BYTE_GET (shdrs
[i
].sh_link
);
3934 internal
->sh_info
= BYTE_GET (shdrs
[i
].sh_info
);
3935 internal
->sh_addralign
= BYTE_GET (shdrs
[i
].sh_addralign
);
3936 internal
->sh_entsize
= BYTE_GET (shdrs
[i
].sh_entsize
);
3945 get_64bit_section_headers (FILE * file
, unsigned int num
)
3947 Elf64_External_Shdr
* shdrs
;
3948 Elf_Internal_Shdr
* internal
;
3951 shdrs
= (Elf64_External_Shdr
*) get_data (NULL
, file
, elf_header
.e_shoff
,
3952 elf_header
.e_shentsize
, num
,
3953 _("section headers"));
3957 section_headers
= (Elf_Internal_Shdr
*) cmalloc (num
,
3958 sizeof (Elf_Internal_Shdr
));
3960 if (section_headers
== NULL
)
3962 error (_("Out of memory\n"));
3966 for (i
= 0, internal
= section_headers
;
3970 internal
->sh_name
= BYTE_GET (shdrs
[i
].sh_name
);
3971 internal
->sh_type
= BYTE_GET (shdrs
[i
].sh_type
);
3972 internal
->sh_flags
= BYTE_GET (shdrs
[i
].sh_flags
);
3973 internal
->sh_addr
= BYTE_GET (shdrs
[i
].sh_addr
);
3974 internal
->sh_size
= BYTE_GET (shdrs
[i
].sh_size
);
3975 internal
->sh_entsize
= BYTE_GET (shdrs
[i
].sh_entsize
);
3976 internal
->sh_link
= BYTE_GET (shdrs
[i
].sh_link
);
3977 internal
->sh_info
= BYTE_GET (shdrs
[i
].sh_info
);
3978 internal
->sh_offset
= BYTE_GET (shdrs
[i
].sh_offset
);
3979 internal
->sh_addralign
= BYTE_GET (shdrs
[i
].sh_addralign
);
3987 static Elf_Internal_Sym
*
3988 get_32bit_elf_symbols (FILE * file
, Elf_Internal_Shdr
* section
)
3990 unsigned long number
;
3991 Elf32_External_Sym
* esyms
= NULL
;
3992 Elf_External_Sym_Shndx
* shndx
;
3993 Elf_Internal_Sym
* isyms
= NULL
;
3994 Elf_Internal_Sym
* psym
;
3997 /* Run some sanity checks first. */
3998 if (section
->sh_entsize
== 0)
4000 error (_("sh_entsize is zero\n"));
4004 number
= section
->sh_size
/ section
->sh_entsize
;
4006 if (number
* sizeof (Elf32_External_Sym
) > section
->sh_size
+ 1)
4008 error (_("Invalid sh_entsize\n"));
4012 esyms
= (Elf32_External_Sym
*) get_data (NULL
, file
, section
->sh_offset
, 1,
4013 section
->sh_size
, _("symbols"));
4018 if (symtab_shndx_hdr
!= NULL
4019 && (symtab_shndx_hdr
->sh_link
4020 == (unsigned long) (section
- section_headers
)))
4022 shndx
= (Elf_External_Sym_Shndx
*) get_data (NULL
, file
,
4023 symtab_shndx_hdr
->sh_offset
,
4024 1, symtab_shndx_hdr
->sh_size
,
4030 isyms
= (Elf_Internal_Sym
*) cmalloc (number
, sizeof (Elf_Internal_Sym
));
4034 error (_("Out of memory\n"));
4038 for (j
= 0, psym
= isyms
; j
< number
; j
++, psym
++)
4040 psym
->st_name
= BYTE_GET (esyms
[j
].st_name
);
4041 psym
->st_value
= BYTE_GET (esyms
[j
].st_value
);
4042 psym
->st_size
= BYTE_GET (esyms
[j
].st_size
);
4043 psym
->st_shndx
= BYTE_GET (esyms
[j
].st_shndx
);
4044 if (psym
->st_shndx
== (SHN_XINDEX
& 0xffff) && shndx
!= NULL
)
4046 = byte_get ((unsigned char *) &shndx
[j
], sizeof (shndx
[j
]));
4047 else if (psym
->st_shndx
>= (SHN_LORESERVE
& 0xffff))
4048 psym
->st_shndx
+= SHN_LORESERVE
- (SHN_LORESERVE
& 0xffff);
4049 psym
->st_info
= BYTE_GET (esyms
[j
].st_info
);
4050 psym
->st_other
= BYTE_GET (esyms
[j
].st_other
);
4062 static Elf_Internal_Sym
*
4063 get_64bit_elf_symbols (FILE * file
, Elf_Internal_Shdr
* section
)
4065 unsigned long number
;
4066 Elf64_External_Sym
* esyms
;
4067 Elf_External_Sym_Shndx
* shndx
;
4068 Elf_Internal_Sym
* isyms
;
4069 Elf_Internal_Sym
* psym
;
4072 /* Run some sanity checks first. */
4073 if (section
->sh_entsize
== 0)
4075 error (_("sh_entsize is zero\n"));
4079 number
= section
->sh_size
/ section
->sh_entsize
;
4081 if (number
* sizeof (Elf64_External_Sym
) > section
->sh_size
+ 1)
4083 error (_("Invalid sh_entsize\n"));
4087 esyms
= (Elf64_External_Sym
*) get_data (NULL
, file
, section
->sh_offset
, 1,
4088 section
->sh_size
, _("symbols"));
4093 if (symtab_shndx_hdr
!= NULL
4094 && (symtab_shndx_hdr
->sh_link
4095 == (unsigned long) (section
- section_headers
)))
4097 shndx
= (Elf_External_Sym_Shndx
*) get_data (NULL
, file
,
4098 symtab_shndx_hdr
->sh_offset
,
4099 1, symtab_shndx_hdr
->sh_size
,
4108 isyms
= (Elf_Internal_Sym
*) cmalloc (number
, sizeof (Elf_Internal_Sym
));
4112 error (_("Out of memory\n"));
4119 for (j
= 0, psym
= isyms
;
4123 psym
->st_name
= BYTE_GET (esyms
[j
].st_name
);
4124 psym
->st_info
= BYTE_GET (esyms
[j
].st_info
);
4125 psym
->st_other
= BYTE_GET (esyms
[j
].st_other
);
4126 psym
->st_shndx
= BYTE_GET (esyms
[j
].st_shndx
);
4127 if (psym
->st_shndx
== (SHN_XINDEX
& 0xffff) && shndx
!= NULL
)
4129 = byte_get ((unsigned char *) &shndx
[j
], sizeof (shndx
[j
]));
4130 else if (psym
->st_shndx
>= (SHN_LORESERVE
& 0xffff))
4131 psym
->st_shndx
+= SHN_LORESERVE
- (SHN_LORESERVE
& 0xffff);
4132 psym
->st_value
= BYTE_GET (esyms
[j
].st_value
);
4133 psym
->st_size
= BYTE_GET (esyms
[j
].st_size
);
4144 get_elf_section_flags (bfd_vma sh_flags
)
4146 static char buff
[1024];
4148 int field_size
= is_32bit_elf
? 8 : 16;
4150 int size
= sizeof (buff
) - (field_size
+ 4 + 1);
4151 bfd_vma os_flags
= 0;
4152 bfd_vma proc_flags
= 0;
4153 bfd_vma unknown_flags
= 0;
4161 /* 0 */ { STRING_COMMA_LEN ("WRITE") },
4162 /* 1 */ { STRING_COMMA_LEN ("ALLOC") },
4163 /* 2 */ { STRING_COMMA_LEN ("EXEC") },
4164 /* 3 */ { STRING_COMMA_LEN ("MERGE") },
4165 /* 4 */ { STRING_COMMA_LEN ("STRINGS") },
4166 /* 5 */ { STRING_COMMA_LEN ("INFO LINK") },
4167 /* 6 */ { STRING_COMMA_LEN ("LINK ORDER") },
4168 /* 7 */ { STRING_COMMA_LEN ("OS NONCONF") },
4169 /* 8 */ { STRING_COMMA_LEN ("GROUP") },
4170 /* 9 */ { STRING_COMMA_LEN ("TLS") },
4171 /* IA-64 specific. */
4172 /* 10 */ { STRING_COMMA_LEN ("SHORT") },
4173 /* 11 */ { STRING_COMMA_LEN ("NORECOV") },
4174 /* IA-64 OpenVMS specific. */
4175 /* 12 */ { STRING_COMMA_LEN ("VMS_GLOBAL") },
4176 /* 13 */ { STRING_COMMA_LEN ("VMS_OVERLAID") },
4177 /* 14 */ { STRING_COMMA_LEN ("VMS_SHARED") },
4178 /* 15 */ { STRING_COMMA_LEN ("VMS_VECTOR") },
4179 /* 16 */ { STRING_COMMA_LEN ("VMS_ALLOC_64BIT") },
4180 /* 17 */ { STRING_COMMA_LEN ("VMS_PROTECTED") },
4182 /* 18 */ { STRING_COMMA_LEN ("EXCLUDE") },
4183 /* SPARC specific. */
4184 /* 19 */ { STRING_COMMA_LEN ("ORDERED") }
4187 if (do_section_details
)
4189 sprintf (buff
, "[%*.*lx]: ",
4190 field_size
, field_size
, (unsigned long) sh_flags
);
4191 p
+= field_size
+ 4;
4198 flag
= sh_flags
& - sh_flags
;
4201 if (do_section_details
)
4205 case SHF_WRITE
: sindex
= 0; break;
4206 case SHF_ALLOC
: sindex
= 1; break;
4207 case SHF_EXECINSTR
: sindex
= 2; break;
4208 case SHF_MERGE
: sindex
= 3; break;
4209 case SHF_STRINGS
: sindex
= 4; break;
4210 case SHF_INFO_LINK
: sindex
= 5; break;
4211 case SHF_LINK_ORDER
: sindex
= 6; break;
4212 case SHF_OS_NONCONFORMING
: sindex
= 7; break;
4213 case SHF_GROUP
: sindex
= 8; break;
4214 case SHF_TLS
: sindex
= 9; break;
4215 case SHF_EXCLUDE
: sindex
= 18; break;
4219 switch (elf_header
.e_machine
)
4222 if (flag
== SHF_IA_64_SHORT
)
4224 else if (flag
== SHF_IA_64_NORECOV
)
4227 else if (elf_header
.e_ident
[EI_OSABI
] == ELFOSABI_OPENVMS
)
4230 case SHF_IA_64_VMS_GLOBAL
: sindex
= 12; break;
4231 case SHF_IA_64_VMS_OVERLAID
: sindex
= 13; break;
4232 case SHF_IA_64_VMS_SHARED
: sindex
= 14; break;
4233 case SHF_IA_64_VMS_VECTOR
: sindex
= 15; break;
4234 case SHF_IA_64_VMS_ALLOC_64BIT
: sindex
= 16; break;
4235 case SHF_IA_64_VMS_PROTECTED
: sindex
= 17; break;
4245 case EM_OLD_SPARCV9
:
4246 case EM_SPARC32PLUS
:
4249 if (flag
== SHF_ORDERED
)
4259 if (p
!= buff
+ field_size
+ 4)
4261 if (size
< (10 + 2))
4268 size
-= flags
[sindex
].len
;
4269 p
= stpcpy (p
, flags
[sindex
].str
);
4271 else if (flag
& SHF_MASKOS
)
4273 else if (flag
& SHF_MASKPROC
)
4276 unknown_flags
|= flag
;
4282 case SHF_WRITE
: *p
= 'W'; break;
4283 case SHF_ALLOC
: *p
= 'A'; break;
4284 case SHF_EXECINSTR
: *p
= 'X'; break;
4285 case SHF_MERGE
: *p
= 'M'; break;
4286 case SHF_STRINGS
: *p
= 'S'; break;
4287 case SHF_INFO_LINK
: *p
= 'I'; break;
4288 case SHF_LINK_ORDER
: *p
= 'L'; break;
4289 case SHF_OS_NONCONFORMING
: *p
= 'O'; break;
4290 case SHF_GROUP
: *p
= 'G'; break;
4291 case SHF_TLS
: *p
= 'T'; break;
4292 case SHF_EXCLUDE
: *p
= 'E'; break;
4295 if ((elf_header
.e_machine
== EM_X86_64
4296 || elf_header
.e_machine
== EM_L1OM
)
4297 && flag
== SHF_X86_64_LARGE
)
4299 else if (flag
& SHF_MASKOS
)
4302 sh_flags
&= ~ SHF_MASKOS
;
4304 else if (flag
& SHF_MASKPROC
)
4307 sh_flags
&= ~ SHF_MASKPROC
;
4317 if (do_section_details
)
4321 size
-= 5 + field_size
;
4322 if (p
!= buff
+ field_size
+ 4)
4330 sprintf (p
, "OS (%*.*lx)", field_size
, field_size
,
4331 (unsigned long) os_flags
);
4332 p
+= 5 + field_size
;
4336 size
-= 7 + field_size
;
4337 if (p
!= buff
+ field_size
+ 4)
4345 sprintf (p
, "PROC (%*.*lx)", field_size
, field_size
,
4346 (unsigned long) proc_flags
);
4347 p
+= 7 + field_size
;
4351 size
-= 10 + field_size
;
4352 if (p
!= buff
+ field_size
+ 4)
4360 sprintf (p
, _("UNKNOWN (%*.*lx)"), field_size
, field_size
,
4361 (unsigned long) unknown_flags
);
4362 p
+= 10 + field_size
;
4371 process_section_headers (FILE * file
)
4373 Elf_Internal_Shdr
* section
;
4376 section_headers
= NULL
;
4378 if (elf_header
.e_shnum
== 0)
4381 printf (_("\nThere are no sections in this file.\n"));
4386 if (do_sections
&& !do_header
)
4387 printf (_("There are %d section headers, starting at offset 0x%lx:\n"),
4388 elf_header
.e_shnum
, (unsigned long) elf_header
.e_shoff
);
4392 if (! get_32bit_section_headers (file
, elf_header
.e_shnum
))
4395 else if (! get_64bit_section_headers (file
, elf_header
.e_shnum
))
4398 /* Read in the string table, so that we have names to display. */
4399 if (elf_header
.e_shstrndx
!= SHN_UNDEF
4400 && elf_header
.e_shstrndx
< elf_header
.e_shnum
)
4402 section
= section_headers
+ elf_header
.e_shstrndx
;
4404 if (section
->sh_size
!= 0)
4406 string_table
= (char *) get_data (NULL
, file
, section
->sh_offset
,
4407 1, section
->sh_size
,
4410 string_table_length
= string_table
!= NULL
? section
->sh_size
: 0;
4414 /* Scan the sections for the dynamic symbol table
4415 and dynamic string table and debug sections. */
4416 dynamic_symbols
= NULL
;
4417 dynamic_strings
= NULL
;
4418 dynamic_syminfo
= NULL
;
4419 symtab_shndx_hdr
= NULL
;
4421 eh_addr_size
= is_32bit_elf
? 4 : 8;
4422 switch (elf_header
.e_machine
)
4425 case EM_MIPS_RS3_LE
:
4426 /* The 64-bit MIPS EABI uses a combination of 32-bit ELF and 64-bit
4427 FDE addresses. However, the ABI also has a semi-official ILP32
4428 variant for which the normal FDE address size rules apply.
4430 GCC 4.0 marks EABI64 objects with a dummy .gcc_compiled_longXX
4431 section, where XX is the size of longs in bits. Unfortunately,
4432 earlier compilers provided no way of distinguishing ILP32 objects
4433 from LP64 objects, so if there's any doubt, we should assume that
4434 the official LP64 form is being used. */
4435 if ((elf_header
.e_flags
& EF_MIPS_ABI
) == E_MIPS_ABI_EABI64
4436 && find_section (".gcc_compiled_long32") == NULL
)
4442 switch (elf_header
.e_flags
& EF_H8_MACH
)
4444 case E_H8_MACH_H8300
:
4445 case E_H8_MACH_H8300HN
:
4446 case E_H8_MACH_H8300SN
:
4447 case E_H8_MACH_H8300SXN
:
4450 case E_H8_MACH_H8300H
:
4451 case E_H8_MACH_H8300S
:
4452 case E_H8_MACH_H8300SX
:
4460 switch (elf_header
.e_flags
& EF_M32C_CPU_MASK
)
4462 case EF_M32C_CPU_M16C
:
4469 #define CHECK_ENTSIZE_VALUES(section, i, size32, size64) \
4472 size_t expected_entsize \
4473 = is_32bit_elf ? size32 : size64; \
4474 if (section->sh_entsize != expected_entsize) \
4475 error (_("Section %d has invalid sh_entsize %lx (expected %lx)\n"), \
4476 i, (unsigned long int) section->sh_entsize, \
4477 (unsigned long int) expected_entsize); \
4478 section->sh_entsize = expected_entsize; \
4481 #define CHECK_ENTSIZE(section, i, type) \
4482 CHECK_ENTSIZE_VALUES (section, i, sizeof (Elf32_External_##type), \
4483 sizeof (Elf64_External_##type))
4485 for (i
= 0, section
= section_headers
;
4486 i
< elf_header
.e_shnum
;
4489 char * name
= SECTION_NAME (section
);
4491 if (section
->sh_type
== SHT_DYNSYM
)
4493 if (dynamic_symbols
!= NULL
)
4495 error (_("File contains multiple dynamic symbol tables\n"));
4499 CHECK_ENTSIZE (section
, i
, Sym
);
4500 num_dynamic_syms
= section
->sh_size
/ section
->sh_entsize
;
4501 dynamic_symbols
= GET_ELF_SYMBOLS (file
, section
);
4503 else if (section
->sh_type
== SHT_STRTAB
4504 && streq (name
, ".dynstr"))
4506 if (dynamic_strings
!= NULL
)
4508 error (_("File contains multiple dynamic string tables\n"));
4512 dynamic_strings
= (char *) get_data (NULL
, file
, section
->sh_offset
,
4513 1, section
->sh_size
,
4514 _("dynamic strings"));
4515 dynamic_strings_length
= section
->sh_size
;
4517 else if (section
->sh_type
== SHT_SYMTAB_SHNDX
)
4519 if (symtab_shndx_hdr
!= NULL
)
4521 error (_("File contains multiple symtab shndx tables\n"));
4524 symtab_shndx_hdr
= section
;
4526 else if (section
->sh_type
== SHT_SYMTAB
)
4527 CHECK_ENTSIZE (section
, i
, Sym
);
4528 else if (section
->sh_type
== SHT_GROUP
)
4529 CHECK_ENTSIZE_VALUES (section
, i
, GRP_ENTRY_SIZE
, GRP_ENTRY_SIZE
);
4530 else if (section
->sh_type
== SHT_REL
)
4531 CHECK_ENTSIZE (section
, i
, Rel
);
4532 else if (section
->sh_type
== SHT_RELA
)
4533 CHECK_ENTSIZE (section
, i
, Rela
);
4534 else if ((do_debugging
|| do_debug_info
|| do_debug_abbrevs
4535 || do_debug_lines
|| do_debug_pubnames
|| do_debug_pubtypes
4536 || do_debug_aranges
|| do_debug_frames
|| do_debug_macinfo
4537 || do_debug_str
|| do_debug_loc
|| do_debug_ranges
)
4538 && (const_strneq (name
, ".debug_")
4539 || const_strneq (name
, ".zdebug_")))
4542 name
+= sizeof (".zdebug_") - 1;
4544 name
+= sizeof (".debug_") - 1;
4547 || (do_debug_info
&& streq (name
, "info"))
4548 || (do_debug_info
&& streq (name
, "types"))
4549 || (do_debug_abbrevs
&& streq (name
, "abbrev"))
4550 || (do_debug_lines
&& streq (name
, "line"))
4551 || (do_debug_pubnames
&& streq (name
, "pubnames"))
4552 || (do_debug_pubtypes
&& streq (name
, "pubtypes"))
4553 || (do_debug_aranges
&& streq (name
, "aranges"))
4554 || (do_debug_ranges
&& streq (name
, "ranges"))
4555 || (do_debug_frames
&& streq (name
, "frame"))
4556 || (do_debug_macinfo
&& streq (name
, "macinfo"))
4557 || (do_debug_str
&& streq (name
, "str"))
4558 || (do_debug_loc
&& streq (name
, "loc"))
4560 request_dump_bynumber (i
, DEBUG_DUMP
);
4562 /* Linkonce section to be combined with .debug_info at link time. */
4563 else if ((do_debugging
|| do_debug_info
)
4564 && const_strneq (name
, ".gnu.linkonce.wi."))
4565 request_dump_bynumber (i
, DEBUG_DUMP
);
4566 else if (do_debug_frames
&& streq (name
, ".eh_frame"))
4567 request_dump_bynumber (i
, DEBUG_DUMP
);
4568 else if (do_gdb_index
&& streq (name
, ".gdb_index"))
4569 request_dump_bynumber (i
, DEBUG_DUMP
);
4570 /* Trace sections for Itanium VMS. */
4571 else if ((do_debugging
|| do_trace_info
|| do_trace_abbrevs
4572 || do_trace_aranges
)
4573 && const_strneq (name
, ".trace_"))
4575 name
+= sizeof (".trace_") - 1;
4578 || (do_trace_info
&& streq (name
, "info"))
4579 || (do_trace_abbrevs
&& streq (name
, "abbrev"))
4580 || (do_trace_aranges
&& streq (name
, "aranges"))
4582 request_dump_bynumber (i
, DEBUG_DUMP
);
4590 if (elf_header
.e_shnum
> 1)
4591 printf (_("\nSection Headers:\n"));
4593 printf (_("\nSection Header:\n"));
4597 if (do_section_details
)
4599 printf (_(" [Nr] Name\n"));
4600 printf (_(" Type Addr Off Size ES Lk Inf Al\n"));
4604 (_(" [Nr] Name Type Addr Off Size ES Flg Lk Inf Al\n"));
4608 if (do_section_details
)
4610 printf (_(" [Nr] Name\n"));
4611 printf (_(" Type Address Off Size ES Lk Inf Al\n"));
4615 (_(" [Nr] Name Type Address Off Size ES Flg Lk Inf Al\n"));
4619 if (do_section_details
)
4621 printf (_(" [Nr] Name\n"));
4622 printf (_(" Type Address Offset Link\n"));
4623 printf (_(" Size EntSize Info Align\n"));
4627 printf (_(" [Nr] Name Type Address Offset\n"));
4628 printf (_(" Size EntSize Flags Link Info Align\n"));
4632 if (do_section_details
)
4633 printf (_(" Flags\n"));
4635 for (i
= 0, section
= section_headers
;
4636 i
< elf_header
.e_shnum
;
4639 if (do_section_details
)
4641 printf (" [%2u] %s\n",
4643 SECTION_NAME (section
));
4644 if (is_32bit_elf
|| do_wide
)
4645 printf (" %-15.15s ",
4646 get_section_type_name (section
->sh_type
));
4649 printf ((do_wide
? " [%2u] %-17s %-15s "
4650 : " [%2u] %-17.17s %-15.15s "),
4652 SECTION_NAME (section
),
4653 get_section_type_name (section
->sh_type
));
4657 const char * link_too_big
= NULL
;
4659 print_vma (section
->sh_addr
, LONG_HEX
);
4661 printf ( " %6.6lx %6.6lx %2.2lx",
4662 (unsigned long) section
->sh_offset
,
4663 (unsigned long) section
->sh_size
,
4664 (unsigned long) section
->sh_entsize
);
4666 if (do_section_details
)
4667 fputs (" ", stdout
);
4669 printf (" %3s ", get_elf_section_flags (section
->sh_flags
));
4671 if (section
->sh_link
>= elf_header
.e_shnum
)
4674 /* The sh_link value is out of range. Normally this indicates
4675 an error but it can have special values in Solaris binaries. */
4676 switch (elf_header
.e_machine
)
4682 case EM_OLD_SPARCV9
:
4683 case EM_SPARC32PLUS
:
4686 if (section
->sh_link
== (SHN_BEFORE
& 0xffff))
4687 link_too_big
= "BEFORE";
4688 else if (section
->sh_link
== (SHN_AFTER
& 0xffff))
4689 link_too_big
= "AFTER";
4696 if (do_section_details
)
4698 if (link_too_big
!= NULL
&& * link_too_big
)
4699 printf ("<%s> ", link_too_big
);
4701 printf ("%2u ", section
->sh_link
);
4702 printf ("%3u %2lu\n", section
->sh_info
,
4703 (unsigned long) section
->sh_addralign
);
4706 printf ("%2u %3u %2lu\n",
4709 (unsigned long) section
->sh_addralign
);
4711 if (link_too_big
&& ! * link_too_big
)
4712 warn (_("section %u: sh_link value of %u is larger than the number of sections\n"),
4713 i
, section
->sh_link
);
4717 print_vma (section
->sh_addr
, LONG_HEX
);
4719 if ((long) section
->sh_offset
== section
->sh_offset
)
4720 printf (" %6.6lx", (unsigned long) section
->sh_offset
);
4724 print_vma (section
->sh_offset
, LONG_HEX
);
4727 if ((unsigned long) section
->sh_size
== section
->sh_size
)
4728 printf (" %6.6lx", (unsigned long) section
->sh_size
);
4732 print_vma (section
->sh_size
, LONG_HEX
);
4735 if ((unsigned long) section
->sh_entsize
== section
->sh_entsize
)
4736 printf (" %2.2lx", (unsigned long) section
->sh_entsize
);
4740 print_vma (section
->sh_entsize
, LONG_HEX
);
4743 if (do_section_details
)
4744 fputs (" ", stdout
);
4746 printf (" %3s ", get_elf_section_flags (section
->sh_flags
));
4748 printf ("%2u %3u ", section
->sh_link
, section
->sh_info
);
4750 if ((unsigned long) section
->sh_addralign
== section
->sh_addralign
)
4751 printf ("%2lu\n", (unsigned long) section
->sh_addralign
);
4754 print_vma (section
->sh_addralign
, DEC
);
4758 else if (do_section_details
)
4760 printf (" %-15.15s ",
4761 get_section_type_name (section
->sh_type
));
4762 print_vma (section
->sh_addr
, LONG_HEX
);
4763 if ((long) section
->sh_offset
== section
->sh_offset
)
4764 printf (" %16.16lx", (unsigned long) section
->sh_offset
);
4768 print_vma (section
->sh_offset
, LONG_HEX
);
4770 printf (" %u\n ", section
->sh_link
);
4771 print_vma (section
->sh_size
, LONG_HEX
);
4773 print_vma (section
->sh_entsize
, LONG_HEX
);
4775 printf (" %-16u %lu\n",
4777 (unsigned long) section
->sh_addralign
);
4782 print_vma (section
->sh_addr
, LONG_HEX
);
4783 if ((long) section
->sh_offset
== section
->sh_offset
)
4784 printf (" %8.8lx", (unsigned long) section
->sh_offset
);
4788 print_vma (section
->sh_offset
, LONG_HEX
);
4791 print_vma (section
->sh_size
, LONG_HEX
);
4793 print_vma (section
->sh_entsize
, LONG_HEX
);
4795 printf (" %3s ", get_elf_section_flags (section
->sh_flags
));
4797 printf (" %2u %3u %lu\n",
4800 (unsigned long) section
->sh_addralign
);
4803 if (do_section_details
)
4804 printf (" %s\n", get_elf_section_flags (section
->sh_flags
));
4807 if (!do_section_details
)
4809 if (elf_header
.e_machine
== EM_X86_64
4810 || elf_header
.e_machine
== EM_L1OM
)
4811 printf (_("Key to Flags:\n\
4812 W (write), A (alloc), X (execute), M (merge), S (strings), l (large)\n\
4813 I (info), L (link order), G (group), T (TLS), E (exclude), x (unknown)\n\
4814 O (extra OS processing required) o (OS specific), p (processor specific)\n"));
4816 printf (_("Key to Flags:\n\
4817 W (write), A (alloc), X (execute), M (merge), S (strings)\n\
4818 I (info), L (link order), G (group), T (TLS), E (exclude), x (unknown)\n\
4819 O (extra OS processing required) o (OS specific), p (processor specific)\n"));
4826 get_group_flags (unsigned int flags
)
4828 static char buff
[32];
4838 snprintf (buff
, sizeof (buff
), _("[<unknown>: 0x%x] "), flags
);
4845 process_section_groups (FILE * file
)
4847 Elf_Internal_Shdr
* section
;
4849 struct group
* group
;
4850 Elf_Internal_Shdr
* symtab_sec
;
4851 Elf_Internal_Shdr
* strtab_sec
;
4852 Elf_Internal_Sym
* symtab
;
4856 /* Don't process section groups unless needed. */
4857 if (!do_unwind
&& !do_section_groups
)
4860 if (elf_header
.e_shnum
== 0)
4862 if (do_section_groups
)
4863 printf (_("\nThere are no sections in this file.\n"));
4868 if (section_headers
== NULL
)
4870 error (_("Section headers are not available!\n"));
4874 section_headers_groups
= (struct group
**) calloc (elf_header
.e_shnum
,
4875 sizeof (struct group
*));
4877 if (section_headers_groups
== NULL
)
4879 error (_("Out of memory\n"));
4883 /* Scan the sections for the group section. */
4885 for (i
= 0, section
= section_headers
;
4886 i
< elf_header
.e_shnum
;
4888 if (section
->sh_type
== SHT_GROUP
)
4891 if (group_count
== 0)
4893 if (do_section_groups
)
4894 printf (_("\nThere are no section groups in this file.\n"));
4899 section_groups
= (struct group
*) calloc (group_count
, sizeof (struct group
));
4901 if (section_groups
== NULL
)
4903 error (_("Out of memory\n"));
4912 for (i
= 0, section
= section_headers
, group
= section_groups
;
4913 i
< elf_header
.e_shnum
;
4916 if (section
->sh_type
== SHT_GROUP
)
4918 char * name
= SECTION_NAME (section
);
4920 unsigned char * start
;
4921 unsigned char * indices
;
4922 unsigned int entry
, j
, size
;
4923 Elf_Internal_Shdr
* sec
;
4924 Elf_Internal_Sym
* sym
;
4926 /* Get the symbol table. */
4927 if (section
->sh_link
>= elf_header
.e_shnum
4928 || ((sec
= section_headers
+ section
->sh_link
)->sh_type
4931 error (_("Bad sh_link in group section `%s'\n"), name
);
4935 if (symtab_sec
!= sec
)
4940 symtab
= GET_ELF_SYMBOLS (file
, symtab_sec
);
4945 error (_("Corrupt header in group section `%s'\n"), name
);
4949 sym
= symtab
+ section
->sh_info
;
4951 if (ELF_ST_TYPE (sym
->st_info
) == STT_SECTION
)
4953 if (sym
->st_shndx
== 0
4954 || sym
->st_shndx
>= elf_header
.e_shnum
)
4956 error (_("Bad sh_info in group section `%s'\n"), name
);
4960 group_name
= SECTION_NAME (section_headers
+ sym
->st_shndx
);
4969 /* Get the string table. */
4970 if (symtab_sec
->sh_link
>= elf_header
.e_shnum
)
4979 != (sec
= section_headers
+ symtab_sec
->sh_link
))
4984 strtab
= (char *) get_data (NULL
, file
, strtab_sec
->sh_offset
,
4985 1, strtab_sec
->sh_size
,
4987 strtab_size
= strtab
!= NULL
? strtab_sec
->sh_size
: 0;
4989 group_name
= sym
->st_name
< strtab_size
4990 ? strtab
+ sym
->st_name
: _("<corrupt>");
4993 start
= (unsigned char *) get_data (NULL
, file
, section
->sh_offset
,
4994 1, section
->sh_size
,
4998 size
= (section
->sh_size
/ section
->sh_entsize
) - 1;
4999 entry
= byte_get (indices
, 4);
5002 if (do_section_groups
)
5004 printf (_("\n%sgroup section [%5u] `%s' [%s] contains %u sections:\n"),
5005 get_group_flags (entry
), i
, name
, group_name
, size
);
5007 printf (_(" [Index] Name\n"));
5010 group
->group_index
= i
;
5012 for (j
= 0; j
< size
; j
++)
5014 struct group_list
* g
;
5016 entry
= byte_get (indices
, 4);
5019 if (entry
>= elf_header
.e_shnum
)
5021 error (_("section [%5u] in group section [%5u] > maximum section [%5u]\n"),
5022 entry
, i
, elf_header
.e_shnum
- 1);
5026 if (section_headers_groups
[entry
] != NULL
)
5030 error (_("section [%5u] in group section [%5u] already in group section [%5u]\n"),
5032 section_headers_groups
[entry
]->group_index
);
5037 /* Intel C/C++ compiler may put section 0 in a
5038 section group. We just warn it the first time
5039 and ignore it afterwards. */
5040 static int warned
= 0;
5043 error (_("section 0 in group section [%5u]\n"),
5044 section_headers_groups
[entry
]->group_index
);
5050 section_headers_groups
[entry
] = group
;
5052 if (do_section_groups
)
5054 sec
= section_headers
+ entry
;
5055 printf (" [%5u] %s\n", entry
, SECTION_NAME (sec
));
5058 g
= (struct group_list
*) xmalloc (sizeof (struct group_list
));
5059 g
->section_index
= entry
;
5060 g
->next
= group
->root
;
5078 /* Data used to display dynamic fixups. */
5080 struct ia64_vms_dynfixup
5082 bfd_vma needed_ident
; /* Library ident number. */
5083 bfd_vma needed
; /* Index in the dstrtab of the library name. */
5084 bfd_vma fixup_needed
; /* Index of the library. */
5085 bfd_vma fixup_rela_cnt
; /* Number of fixups. */
5086 bfd_vma fixup_rela_off
; /* Fixups offset in the dynamic segment. */
5089 /* Data used to display dynamic relocations. */
5091 struct ia64_vms_dynimgrela
5093 bfd_vma img_rela_cnt
; /* Number of relocations. */
5094 bfd_vma img_rela_off
; /* Reloc offset in the dynamic segment. */
5097 /* Display IA-64 OpenVMS dynamic fixups (used to dynamically link a shared
5101 dump_ia64_vms_dynamic_fixups (FILE *file
, struct ia64_vms_dynfixup
*fixup
,
5102 const char *strtab
, unsigned int strtab_sz
)
5104 Elf64_External_VMS_IMAGE_FIXUP
*imfs
;
5106 const char *lib_name
;
5108 imfs
= get_data (NULL
, file
, dynamic_addr
+ fixup
->fixup_rela_off
,
5109 1, fixup
->fixup_rela_cnt
* sizeof (*imfs
),
5110 _("dynamic section image fixups"));
5114 if (fixup
->needed
< strtab_sz
)
5115 lib_name
= strtab
+ fixup
->needed
;
5118 warn ("corrupt library name index of 0x%lx found in dynamic entry",
5119 (unsigned long) fixup
->needed
);
5122 printf (_("\nImage fixups for needed library #%d: %s - ident: %lx\n"),
5123 (int) fixup
->fixup_needed
, lib_name
, (long) fixup
->needed_ident
);
5125 (_("Seg Offset Type SymVec DataType\n"));
5127 for (i
= 0; i
< (long) fixup
->fixup_rela_cnt
; i
++)
5132 printf ("%3u ", (unsigned) BYTE_GET (imfs
[i
].fixup_seg
));
5133 printf_vma ((bfd_vma
) BYTE_GET (imfs
[i
].fixup_offset
));
5134 type
= BYTE_GET (imfs
[i
].type
);
5135 rtype
= elf_ia64_reloc_type (type
);
5137 printf (" 0x%08x ", type
);
5139 printf (" %-32s ", rtype
);
5140 printf ("%6u ", (unsigned) BYTE_GET (imfs
[i
].symvec_index
));
5141 printf ("0x%08x\n", (unsigned) BYTE_GET (imfs
[i
].data_type
));
5147 /* Display IA-64 OpenVMS dynamic relocations (used to relocate an image). */
5150 dump_ia64_vms_dynamic_relocs (FILE *file
, struct ia64_vms_dynimgrela
*imgrela
)
5152 Elf64_External_VMS_IMAGE_RELA
*imrs
;
5155 imrs
= get_data (NULL
, file
, dynamic_addr
+ imgrela
->img_rela_off
,
5156 1, imgrela
->img_rela_cnt
* sizeof (*imrs
),
5157 _("dynamic section image relas"));
5161 printf (_("\nImage relocs\n"));
5163 (_("Seg Offset Type Addend Seg Sym Off\n"));
5165 for (i
= 0; i
< (long) imgrela
->img_rela_cnt
; i
++)
5170 printf ("%3u ", (unsigned) BYTE_GET (imrs
[i
].rela_seg
));
5171 printf ("%08" BFD_VMA_FMT
"x ",
5172 (bfd_vma
) BYTE_GET (imrs
[i
].rela_offset
));
5173 type
= BYTE_GET (imrs
[i
].type
);
5174 rtype
= elf_ia64_reloc_type (type
);
5176 printf ("0x%08x ", type
);
5178 printf ("%-31s ", rtype
);
5179 print_vma (BYTE_GET (imrs
[i
].addend
), FULL_HEX
);
5180 printf ("%3u ", (unsigned) BYTE_GET (imrs
[i
].sym_seg
));
5181 printf ("%08" BFD_VMA_FMT
"x\n",
5182 (bfd_vma
) BYTE_GET (imrs
[i
].sym_offset
));
5188 /* Display IA-64 OpenVMS dynamic relocations and fixups. */
5191 process_ia64_vms_dynamic_relocs (FILE *file
)
5193 struct ia64_vms_dynfixup fixup
;
5194 struct ia64_vms_dynimgrela imgrela
;
5195 Elf_Internal_Dyn
*entry
;
5197 bfd_vma strtab_off
= 0;
5198 bfd_vma strtab_sz
= 0;
5199 char *strtab
= NULL
;
5201 memset (&fixup
, 0, sizeof (fixup
));
5202 memset (&imgrela
, 0, sizeof (imgrela
));
5204 /* Note: the order of the entries is specified by the OpenVMS specs. */
5205 for (entry
= dynamic_section
;
5206 entry
< dynamic_section
+ dynamic_nent
;
5209 switch (entry
->d_tag
)
5211 case DT_IA_64_VMS_STRTAB_OFFSET
:
5212 strtab_off
= entry
->d_un
.d_val
;
5215 strtab_sz
= entry
->d_un
.d_val
;
5217 strtab
= get_data (NULL
, file
, dynamic_addr
+ strtab_off
,
5218 1, strtab_sz
, _("dynamic string section"));
5221 case DT_IA_64_VMS_NEEDED_IDENT
:
5222 fixup
.needed_ident
= entry
->d_un
.d_val
;
5225 fixup
.needed
= entry
->d_un
.d_val
;
5227 case DT_IA_64_VMS_FIXUP_NEEDED
:
5228 fixup
.fixup_needed
= entry
->d_un
.d_val
;
5230 case DT_IA_64_VMS_FIXUP_RELA_CNT
:
5231 fixup
.fixup_rela_cnt
= entry
->d_un
.d_val
;
5233 case DT_IA_64_VMS_FIXUP_RELA_OFF
:
5234 fixup
.fixup_rela_off
= entry
->d_un
.d_val
;
5236 dump_ia64_vms_dynamic_fixups (file
, &fixup
, strtab
, strtab_sz
);
5239 case DT_IA_64_VMS_IMG_RELA_CNT
:
5240 imgrela
.img_rela_cnt
= entry
->d_un
.d_val
;
5242 case DT_IA_64_VMS_IMG_RELA_OFF
:
5243 imgrela
.img_rela_off
= entry
->d_un
.d_val
;
5245 dump_ia64_vms_dynamic_relocs (file
, &imgrela
);
5265 } dynamic_relocations
[] =
5267 { "REL", DT_REL
, DT_RELSZ
, FALSE
},
5268 { "RELA", DT_RELA
, DT_RELASZ
, TRUE
},
5269 { "PLT", DT_JMPREL
, DT_PLTRELSZ
, UNKNOWN
}
5272 /* Process the reloc section. */
5275 process_relocs (FILE * file
)
5277 unsigned long rel_size
;
5278 unsigned long rel_offset
;
5284 if (do_using_dynamic
)
5288 int has_dynamic_reloc
;
5291 has_dynamic_reloc
= 0;
5293 for (i
= 0; i
< ARRAY_SIZE (dynamic_relocations
); i
++)
5295 is_rela
= dynamic_relocations
[i
].rela
;
5296 name
= dynamic_relocations
[i
].name
;
5297 rel_size
= dynamic_info
[dynamic_relocations
[i
].size
];
5298 rel_offset
= dynamic_info
[dynamic_relocations
[i
].reloc
];
5300 has_dynamic_reloc
|= rel_size
;
5302 if (is_rela
== UNKNOWN
)
5304 if (dynamic_relocations
[i
].reloc
== DT_JMPREL
)
5305 switch (dynamic_info
[DT_PLTREL
])
5319 (_("\n'%s' relocation section at offset 0x%lx contains %ld bytes:\n"),
5320 name
, rel_offset
, rel_size
);
5322 dump_relocations (file
,
5323 offset_from_vma (file
, rel_offset
, rel_size
),
5325 dynamic_symbols
, num_dynamic_syms
,
5326 dynamic_strings
, dynamic_strings_length
, is_rela
);
5331 has_dynamic_reloc
|= process_ia64_vms_dynamic_relocs (file
);
5333 if (! has_dynamic_reloc
)
5334 printf (_("\nThere are no dynamic relocations in this file.\n"));
5338 Elf_Internal_Shdr
* section
;
5342 for (i
= 0, section
= section_headers
;
5343 i
< elf_header
.e_shnum
;
5346 if ( section
->sh_type
!= SHT_RELA
5347 && section
->sh_type
!= SHT_REL
)
5350 rel_offset
= section
->sh_offset
;
5351 rel_size
= section
->sh_size
;
5355 Elf_Internal_Shdr
* strsec
;
5358 printf (_("\nRelocation section "));
5360 if (string_table
== NULL
)
5361 printf ("%d", section
->sh_name
);
5363 printf (_("'%s'"), SECTION_NAME (section
));
5365 printf (_(" at offset 0x%lx contains %lu entries:\n"),
5366 rel_offset
, (unsigned long) (rel_size
/ section
->sh_entsize
));
5368 is_rela
= section
->sh_type
== SHT_RELA
;
5370 if (section
->sh_link
!= 0
5371 && section
->sh_link
< elf_header
.e_shnum
)
5373 Elf_Internal_Shdr
* symsec
;
5374 Elf_Internal_Sym
* symtab
;
5375 unsigned long nsyms
;
5376 unsigned long strtablen
= 0;
5377 char * strtab
= NULL
;
5379 symsec
= section_headers
+ section
->sh_link
;
5380 if (symsec
->sh_type
!= SHT_SYMTAB
5381 && symsec
->sh_type
!= SHT_DYNSYM
)
5384 nsyms
= symsec
->sh_size
/ symsec
->sh_entsize
;
5385 symtab
= GET_ELF_SYMBOLS (file
, symsec
);
5390 if (symsec
->sh_link
!= 0
5391 && symsec
->sh_link
< elf_header
.e_shnum
)
5393 strsec
= section_headers
+ symsec
->sh_link
;
5395 strtab
= (char *) get_data (NULL
, file
, strsec
->sh_offset
,
5398 strtablen
= strtab
== NULL
? 0 : strsec
->sh_size
;
5401 dump_relocations (file
, rel_offset
, rel_size
,
5402 symtab
, nsyms
, strtab
, strtablen
, is_rela
);
5408 dump_relocations (file
, rel_offset
, rel_size
,
5409 NULL
, 0, NULL
, 0, is_rela
);
5416 printf (_("\nThere are no relocations in this file.\n"));
5422 /* Process the unwind section. */
5424 #include "unwind-ia64.h"
5426 /* An absolute address consists of a section and an offset. If the
5427 section is NULL, the offset itself is the address, otherwise, the
5428 address equals to LOAD_ADDRESS(section) + offset. */
5432 unsigned short section
;
5436 #define ABSADDR(a) \
5438 ? section_headers [(a).section].sh_addr + (a).offset \
5441 struct ia64_unw_table_entry
5443 struct absaddr start
;
5445 struct absaddr info
;
5448 struct ia64_unw_aux_info
5451 struct ia64_unw_table_entry
*table
; /* Unwind table. */
5452 unsigned long table_len
; /* Length of unwind table. */
5453 unsigned char * info
; /* Unwind info. */
5454 unsigned long info_size
; /* Size of unwind info. */
5455 bfd_vma info_addr
; /* starting address of unwind info. */
5456 bfd_vma seg_base
; /* Starting address of segment. */
5457 Elf_Internal_Sym
* symtab
; /* The symbol table. */
5458 unsigned long nsyms
; /* Number of symbols. */
5459 char * strtab
; /* The string table. */
5460 unsigned long strtab_size
; /* Size of string table. */
5464 find_symbol_for_address (Elf_Internal_Sym
* symtab
,
5465 unsigned long nsyms
,
5466 const char * strtab
,
5467 unsigned long strtab_size
,
5468 struct absaddr addr
,
5469 const char ** symname
,
5472 bfd_vma dist
= 0x100000;
5473 Elf_Internal_Sym
* sym
;
5474 Elf_Internal_Sym
* best
= NULL
;
5477 REMOVE_ARCH_BITS (addr
.offset
);
5479 for (i
= 0, sym
= symtab
; i
< nsyms
; ++i
, ++sym
)
5481 bfd_vma value
= sym
->st_value
;
5483 REMOVE_ARCH_BITS (value
);
5485 if (ELF_ST_TYPE (sym
->st_info
) == STT_FUNC
5486 && sym
->st_name
!= 0
5487 && (addr
.section
== SHN_UNDEF
|| addr
.section
== sym
->st_shndx
)
5488 && addr
.offset
>= value
5489 && addr
.offset
- value
< dist
)
5492 dist
= addr
.offset
- value
;
5499 *symname
= (best
->st_name
>= strtab_size
5500 ? _("<corrupt>") : strtab
+ best
->st_name
);
5505 *offset
= addr
.offset
;
5509 dump_ia64_unwind (struct ia64_unw_aux_info
* aux
)
5511 struct ia64_unw_table_entry
* tp
;
5514 for (tp
= aux
->table
; tp
< aux
->table
+ aux
->table_len
; ++tp
)
5518 const unsigned char * dp
;
5519 const unsigned char * head
;
5520 const char * procname
;
5522 find_symbol_for_address (aux
->symtab
, aux
->nsyms
, aux
->strtab
,
5523 aux
->strtab_size
, tp
->start
, &procname
, &offset
);
5525 fputs ("\n<", stdout
);
5529 fputs (procname
, stdout
);
5532 printf ("+%lx", (unsigned long) offset
);
5535 fputs (">: [", stdout
);
5536 print_vma (tp
->start
.offset
, PREFIX_HEX
);
5537 fputc ('-', stdout
);
5538 print_vma (tp
->end
.offset
, PREFIX_HEX
);
5539 printf ("], info at +0x%lx\n",
5540 (unsigned long) (tp
->info
.offset
- aux
->seg_base
));
5542 head
= aux
->info
+ (ABSADDR (tp
->info
) - aux
->info_addr
);
5543 stamp
= byte_get ((unsigned char *) head
, sizeof (stamp
));
5545 printf (" v%u, flags=0x%lx (%s%s), len=%lu bytes\n",
5546 (unsigned) UNW_VER (stamp
),
5547 (unsigned long) ((stamp
& UNW_FLAG_MASK
) >> 32),
5548 UNW_FLAG_EHANDLER (stamp
) ? " ehandler" : "",
5549 UNW_FLAG_UHANDLER (stamp
) ? " uhandler" : "",
5550 (unsigned long) (eh_addr_size
* UNW_LENGTH (stamp
)));
5552 if (UNW_VER (stamp
) != 1)
5554 printf (_("\tUnknown version.\n"));
5559 for (dp
= head
+ 8; dp
< head
+ 8 + eh_addr_size
* UNW_LENGTH (stamp
);)
5560 dp
= unw_decode (dp
, in_body
, & in_body
);
5565 slurp_ia64_unwind_table (FILE * file
,
5566 struct ia64_unw_aux_info
* aux
,
5567 Elf_Internal_Shdr
* sec
)
5569 unsigned long size
, nrelas
, i
;
5570 Elf_Internal_Phdr
* seg
;
5571 struct ia64_unw_table_entry
* tep
;
5572 Elf_Internal_Shdr
* relsec
;
5573 Elf_Internal_Rela
* rela
;
5574 Elf_Internal_Rela
* rp
;
5575 unsigned char * table
;
5577 Elf_Internal_Sym
* sym
;
5578 const char * relname
;
5580 /* First, find the starting address of the segment that includes
5583 if (elf_header
.e_phnum
)
5585 if (! get_program_headers (file
))
5588 for (seg
= program_headers
;
5589 seg
< program_headers
+ elf_header
.e_phnum
;
5592 if (seg
->p_type
!= PT_LOAD
)
5595 if (sec
->sh_addr
>= seg
->p_vaddr
5596 && (sec
->sh_addr
+ sec
->sh_size
<= seg
->p_vaddr
+ seg
->p_memsz
))
5598 aux
->seg_base
= seg
->p_vaddr
;
5604 /* Second, build the unwind table from the contents of the unwind section: */
5605 size
= sec
->sh_size
;
5606 table
= (unsigned char *) get_data (NULL
, file
, sec
->sh_offset
, 1, size
,
5611 aux
->table
= (struct ia64_unw_table_entry
*)
5612 xcmalloc (size
/ (3 * eh_addr_size
), sizeof (aux
->table
[0]));
5614 for (tp
= table
; tp
< table
+ size
; ++tep
)
5616 tep
->start
.section
= SHN_UNDEF
;
5617 tep
->end
.section
= SHN_UNDEF
;
5618 tep
->info
.section
= SHN_UNDEF
;
5619 tep
->start
.offset
= byte_get (tp
, eh_addr_size
); tp
+= eh_addr_size
;
5620 tep
->end
.offset
= byte_get (tp
, eh_addr_size
); tp
+= eh_addr_size
;
5621 tep
->info
.offset
= byte_get (tp
, eh_addr_size
); tp
+= eh_addr_size
;
5622 tep
->start
.offset
+= aux
->seg_base
;
5623 tep
->end
.offset
+= aux
->seg_base
;
5624 tep
->info
.offset
+= aux
->seg_base
;
5628 /* Third, apply any relocations to the unwind table: */
5629 for (relsec
= section_headers
;
5630 relsec
< section_headers
+ elf_header
.e_shnum
;
5633 if (relsec
->sh_type
!= SHT_RELA
5634 || relsec
->sh_info
>= elf_header
.e_shnum
5635 || section_headers
+ relsec
->sh_info
!= sec
)
5638 if (!slurp_rela_relocs (file
, relsec
->sh_offset
, relsec
->sh_size
,
5642 for (rp
= rela
; rp
< rela
+ nrelas
; ++rp
)
5644 relname
= elf_ia64_reloc_type (get_reloc_type (rp
->r_info
));
5645 sym
= aux
->symtab
+ get_reloc_symindex (rp
->r_info
);
5647 if (! const_strneq (relname
, "R_IA64_SEGREL"))
5649 warn (_("Skipping unexpected relocation type %s\n"), relname
);
5653 i
= rp
->r_offset
/ (3 * eh_addr_size
);
5655 switch (rp
->r_offset
/eh_addr_size
% 3)
5658 aux
->table
[i
].start
.section
= sym
->st_shndx
;
5659 aux
->table
[i
].start
.offset
= rp
->r_addend
+ sym
->st_value
;
5662 aux
->table
[i
].end
.section
= sym
->st_shndx
;
5663 aux
->table
[i
].end
.offset
= rp
->r_addend
+ sym
->st_value
;
5666 aux
->table
[i
].info
.section
= sym
->st_shndx
;
5667 aux
->table
[i
].info
.offset
= rp
->r_addend
+ sym
->st_value
;
5677 aux
->table_len
= size
/ (3 * eh_addr_size
);
5682 ia64_process_unwind (FILE * file
)
5684 Elf_Internal_Shdr
* sec
;
5685 Elf_Internal_Shdr
* unwsec
= NULL
;
5686 Elf_Internal_Shdr
* strsec
;
5687 unsigned long i
, unwcount
= 0, unwstart
= 0;
5688 struct ia64_unw_aux_info aux
;
5690 memset (& aux
, 0, sizeof (aux
));
5692 for (i
= 0, sec
= section_headers
; i
< elf_header
.e_shnum
; ++i
, ++sec
)
5694 if (sec
->sh_type
== SHT_SYMTAB
5695 && sec
->sh_link
< elf_header
.e_shnum
)
5697 aux
.nsyms
= sec
->sh_size
/ sec
->sh_entsize
;
5698 aux
.symtab
= GET_ELF_SYMBOLS (file
, sec
);
5700 strsec
= section_headers
+ sec
->sh_link
;
5701 aux
.strtab
= (char *) get_data (NULL
, file
, strsec
->sh_offset
,
5704 aux
.strtab_size
= aux
.strtab
!= NULL
? strsec
->sh_size
: 0;
5706 else if (sec
->sh_type
== SHT_IA_64_UNWIND
)
5711 printf (_("\nThere are no unwind sections in this file.\n"));
5713 while (unwcount
-- > 0)
5718 for (i
= unwstart
, sec
= section_headers
+ unwstart
;
5719 i
< elf_header
.e_shnum
; ++i
, ++sec
)
5720 if (sec
->sh_type
== SHT_IA_64_UNWIND
)
5727 len
= sizeof (ELF_STRING_ia64_unwind_once
) - 1;
5729 if ((unwsec
->sh_flags
& SHF_GROUP
) != 0)
5731 /* We need to find which section group it is in. */
5732 struct group_list
* g
= section_headers_groups
[i
]->root
;
5734 for (; g
!= NULL
; g
= g
->next
)
5736 sec
= section_headers
+ g
->section_index
;
5738 if (streq (SECTION_NAME (sec
), ELF_STRING_ia64_unwind_info
))
5743 i
= elf_header
.e_shnum
;
5745 else if (strneq (SECTION_NAME (unwsec
), ELF_STRING_ia64_unwind_once
, len
))
5747 /* .gnu.linkonce.ia64unw.FOO -> .gnu.linkonce.ia64unwi.FOO. */
5748 len2
= sizeof (ELF_STRING_ia64_unwind_info_once
) - 1;
5749 suffix
= SECTION_NAME (unwsec
) + len
;
5750 for (i
= 0, sec
= section_headers
; i
< elf_header
.e_shnum
;
5752 if (strneq (SECTION_NAME (sec
), ELF_STRING_ia64_unwind_info_once
, len2
)
5753 && streq (SECTION_NAME (sec
) + len2
, suffix
))
5758 /* .IA_64.unwindFOO -> .IA_64.unwind_infoFOO
5759 .IA_64.unwind or BAR -> .IA_64.unwind_info. */
5760 len
= sizeof (ELF_STRING_ia64_unwind
) - 1;
5761 len2
= sizeof (ELF_STRING_ia64_unwind_info
) - 1;
5763 if (strneq (SECTION_NAME (unwsec
), ELF_STRING_ia64_unwind
, len
))
5764 suffix
= SECTION_NAME (unwsec
) + len
;
5765 for (i
= 0, sec
= section_headers
; i
< elf_header
.e_shnum
;
5767 if (strneq (SECTION_NAME (sec
), ELF_STRING_ia64_unwind_info
, len2
)
5768 && streq (SECTION_NAME (sec
) + len2
, suffix
))
5772 if (i
== elf_header
.e_shnum
)
5774 printf (_("\nCould not find unwind info section for "));
5776 if (string_table
== NULL
)
5777 printf ("%d", unwsec
->sh_name
);
5779 printf (_("'%s'"), SECTION_NAME (unwsec
));
5783 aux
.info_size
= sec
->sh_size
;
5784 aux
.info_addr
= sec
->sh_addr
;
5785 aux
.info
= (unsigned char *) get_data (NULL
, file
, sec
->sh_offset
, 1,
5789 printf (_("\nUnwind section "));
5791 if (string_table
== NULL
)
5792 printf ("%d", unwsec
->sh_name
);
5794 printf (_("'%s'"), SECTION_NAME (unwsec
));
5796 printf (_(" at offset 0x%lx contains %lu entries:\n"),
5797 (unsigned long) unwsec
->sh_offset
,
5798 (unsigned long) (unwsec
->sh_size
/ (3 * eh_addr_size
)));
5800 (void) slurp_ia64_unwind_table (file
, & aux
, unwsec
);
5802 if (aux
.table_len
> 0)
5803 dump_ia64_unwind (& aux
);
5806 free ((char *) aux
.table
);
5808 free ((char *) aux
.info
);
5817 free ((char *) aux
.strtab
);
5822 struct hppa_unw_table_entry
5824 struct absaddr start
;
5826 unsigned int Cannot_unwind
:1; /* 0 */
5827 unsigned int Millicode
:1; /* 1 */
5828 unsigned int Millicode_save_sr0
:1; /* 2 */
5829 unsigned int Region_description
:2; /* 3..4 */
5830 unsigned int reserved1
:1; /* 5 */
5831 unsigned int Entry_SR
:1; /* 6 */
5832 unsigned int Entry_FR
:4; /* number saved */ /* 7..10 */
5833 unsigned int Entry_GR
:5; /* number saved */ /* 11..15 */
5834 unsigned int Args_stored
:1; /* 16 */
5835 unsigned int Variable_Frame
:1; /* 17 */
5836 unsigned int Separate_Package_Body
:1; /* 18 */
5837 unsigned int Frame_Extension_Millicode
:1; /* 19 */
5838 unsigned int Stack_Overflow_Check
:1; /* 20 */
5839 unsigned int Two_Instruction_SP_Increment
:1; /* 21 */
5840 unsigned int Ada_Region
:1; /* 22 */
5841 unsigned int cxx_info
:1; /* 23 */
5842 unsigned int cxx_try_catch
:1; /* 24 */
5843 unsigned int sched_entry_seq
:1; /* 25 */
5844 unsigned int reserved2
:1; /* 26 */
5845 unsigned int Save_SP
:1; /* 27 */
5846 unsigned int Save_RP
:1; /* 28 */
5847 unsigned int Save_MRP_in_frame
:1; /* 29 */
5848 unsigned int extn_ptr_defined
:1; /* 30 */
5849 unsigned int Cleanup_defined
:1; /* 31 */
5851 unsigned int MPE_XL_interrupt_marker
:1; /* 0 */
5852 unsigned int HP_UX_interrupt_marker
:1; /* 1 */
5853 unsigned int Large_frame
:1; /* 2 */
5854 unsigned int Pseudo_SP_Set
:1; /* 3 */
5855 unsigned int reserved4
:1; /* 4 */
5856 unsigned int Total_frame_size
:27; /* 5..31 */
5859 struct hppa_unw_aux_info
5861 struct hppa_unw_table_entry
*table
; /* Unwind table. */
5862 unsigned long table_len
; /* Length of unwind table. */
5863 bfd_vma seg_base
; /* Starting address of segment. */
5864 Elf_Internal_Sym
* symtab
; /* The symbol table. */
5865 unsigned long nsyms
; /* Number of symbols. */
5866 char * strtab
; /* The string table. */
5867 unsigned long strtab_size
; /* Size of string table. */
5871 dump_hppa_unwind (struct hppa_unw_aux_info
* aux
)
5873 struct hppa_unw_table_entry
* tp
;
5875 for (tp
= aux
->table
; tp
< aux
->table
+ aux
->table_len
; ++tp
)
5878 const char * procname
;
5880 find_symbol_for_address (aux
->symtab
, aux
->nsyms
, aux
->strtab
,
5881 aux
->strtab_size
, tp
->start
, &procname
,
5884 fputs ("\n<", stdout
);
5888 fputs (procname
, stdout
);
5891 printf ("+%lx", (unsigned long) offset
);
5894 fputs (">: [", stdout
);
5895 print_vma (tp
->start
.offset
, PREFIX_HEX
);
5896 fputc ('-', stdout
);
5897 print_vma (tp
->end
.offset
, PREFIX_HEX
);
5900 #define PF(_m) if (tp->_m) printf (#_m " ");
5901 #define PV(_m) if (tp->_m) printf (#_m "=%d ", tp->_m);
5904 PF(Millicode_save_sr0
);
5905 /* PV(Region_description); */
5911 PF(Separate_Package_Body
);
5912 PF(Frame_Extension_Millicode
);
5913 PF(Stack_Overflow_Check
);
5914 PF(Two_Instruction_SP_Increment
);
5918 PF(sched_entry_seq
);
5921 PF(Save_MRP_in_frame
);
5922 PF(extn_ptr_defined
);
5923 PF(Cleanup_defined
);
5924 PF(MPE_XL_interrupt_marker
);
5925 PF(HP_UX_interrupt_marker
);
5928 PV(Total_frame_size
);
5937 slurp_hppa_unwind_table (FILE * file
,
5938 struct hppa_unw_aux_info
* aux
,
5939 Elf_Internal_Shdr
* sec
)
5941 unsigned long size
, unw_ent_size
, nentries
, nrelas
, i
;
5942 Elf_Internal_Phdr
* seg
;
5943 struct hppa_unw_table_entry
* tep
;
5944 Elf_Internal_Shdr
* relsec
;
5945 Elf_Internal_Rela
* rela
;
5946 Elf_Internal_Rela
* rp
;
5947 unsigned char * table
;
5949 Elf_Internal_Sym
* sym
;
5950 const char * relname
;
5952 /* First, find the starting address of the segment that includes
5955 if (elf_header
.e_phnum
)
5957 if (! get_program_headers (file
))
5960 for (seg
= program_headers
;
5961 seg
< program_headers
+ elf_header
.e_phnum
;
5964 if (seg
->p_type
!= PT_LOAD
)
5967 if (sec
->sh_addr
>= seg
->p_vaddr
5968 && (sec
->sh_addr
+ sec
->sh_size
<= seg
->p_vaddr
+ seg
->p_memsz
))
5970 aux
->seg_base
= seg
->p_vaddr
;
5976 /* Second, build the unwind table from the contents of the unwind
5978 size
= sec
->sh_size
;
5979 table
= (unsigned char *) get_data (NULL
, file
, sec
->sh_offset
, 1, size
,
5985 nentries
= size
/ unw_ent_size
;
5986 size
= unw_ent_size
* nentries
;
5988 tep
= aux
->table
= (struct hppa_unw_table_entry
*)
5989 xcmalloc (nentries
, sizeof (aux
->table
[0]));
5991 for (tp
= table
; tp
< table
+ size
; tp
+= unw_ent_size
, ++tep
)
5993 unsigned int tmp1
, tmp2
;
5995 tep
->start
.section
= SHN_UNDEF
;
5996 tep
->end
.section
= SHN_UNDEF
;
5998 tep
->start
.offset
= byte_get ((unsigned char *) tp
+ 0, 4);
5999 tep
->end
.offset
= byte_get ((unsigned char *) tp
+ 4, 4);
6000 tmp1
= byte_get ((unsigned char *) tp
+ 8, 4);
6001 tmp2
= byte_get ((unsigned char *) tp
+ 12, 4);
6003 tep
->start
.offset
+= aux
->seg_base
;
6004 tep
->end
.offset
+= aux
->seg_base
;
6006 tep
->Cannot_unwind
= (tmp1
>> 31) & 0x1;
6007 tep
->Millicode
= (tmp1
>> 30) & 0x1;
6008 tep
->Millicode_save_sr0
= (tmp1
>> 29) & 0x1;
6009 tep
->Region_description
= (tmp1
>> 27) & 0x3;
6010 tep
->reserved1
= (tmp1
>> 26) & 0x1;
6011 tep
->Entry_SR
= (tmp1
>> 25) & 0x1;
6012 tep
->Entry_FR
= (tmp1
>> 21) & 0xf;
6013 tep
->Entry_GR
= (tmp1
>> 16) & 0x1f;
6014 tep
->Args_stored
= (tmp1
>> 15) & 0x1;
6015 tep
->Variable_Frame
= (tmp1
>> 14) & 0x1;
6016 tep
->Separate_Package_Body
= (tmp1
>> 13) & 0x1;
6017 tep
->Frame_Extension_Millicode
= (tmp1
>> 12) & 0x1;
6018 tep
->Stack_Overflow_Check
= (tmp1
>> 11) & 0x1;
6019 tep
->Two_Instruction_SP_Increment
= (tmp1
>> 10) & 0x1;
6020 tep
->Ada_Region
= (tmp1
>> 9) & 0x1;
6021 tep
->cxx_info
= (tmp1
>> 8) & 0x1;
6022 tep
->cxx_try_catch
= (tmp1
>> 7) & 0x1;
6023 tep
->sched_entry_seq
= (tmp1
>> 6) & 0x1;
6024 tep
->reserved2
= (tmp1
>> 5) & 0x1;
6025 tep
->Save_SP
= (tmp1
>> 4) & 0x1;
6026 tep
->Save_RP
= (tmp1
>> 3) & 0x1;
6027 tep
->Save_MRP_in_frame
= (tmp1
>> 2) & 0x1;
6028 tep
->extn_ptr_defined
= (tmp1
>> 1) & 0x1;
6029 tep
->Cleanup_defined
= tmp1
& 0x1;
6031 tep
->MPE_XL_interrupt_marker
= (tmp2
>> 31) & 0x1;
6032 tep
->HP_UX_interrupt_marker
= (tmp2
>> 30) & 0x1;
6033 tep
->Large_frame
= (tmp2
>> 29) & 0x1;
6034 tep
->Pseudo_SP_Set
= (tmp2
>> 28) & 0x1;
6035 tep
->reserved4
= (tmp2
>> 27) & 0x1;
6036 tep
->Total_frame_size
= tmp2
& 0x7ffffff;
6040 /* Third, apply any relocations to the unwind table. */
6041 for (relsec
= section_headers
;
6042 relsec
< section_headers
+ elf_header
.e_shnum
;
6045 if (relsec
->sh_type
!= SHT_RELA
6046 || relsec
->sh_info
>= elf_header
.e_shnum
6047 || section_headers
+ relsec
->sh_info
!= sec
)
6050 if (!slurp_rela_relocs (file
, relsec
->sh_offset
, relsec
->sh_size
,
6054 for (rp
= rela
; rp
< rela
+ nrelas
; ++rp
)
6056 relname
= elf_hppa_reloc_type (get_reloc_type (rp
->r_info
));
6057 sym
= aux
->symtab
+ get_reloc_symindex (rp
->r_info
);
6059 /* R_PARISC_SEGREL32 or R_PARISC_SEGREL64. */
6060 if (! const_strneq (relname
, "R_PARISC_SEGREL"))
6062 warn (_("Skipping unexpected relocation type %s\n"), relname
);
6066 i
= rp
->r_offset
/ unw_ent_size
;
6068 switch ((rp
->r_offset
% unw_ent_size
) / eh_addr_size
)
6071 aux
->table
[i
].start
.section
= sym
->st_shndx
;
6072 aux
->table
[i
].start
.offset
= sym
->st_value
+ rp
->r_addend
;
6075 aux
->table
[i
].end
.section
= sym
->st_shndx
;
6076 aux
->table
[i
].end
.offset
= sym
->st_value
+ rp
->r_addend
;
6086 aux
->table_len
= nentries
;
6092 hppa_process_unwind (FILE * file
)
6094 struct hppa_unw_aux_info aux
;
6095 Elf_Internal_Shdr
* unwsec
= NULL
;
6096 Elf_Internal_Shdr
* strsec
;
6097 Elf_Internal_Shdr
* sec
;
6100 memset (& aux
, 0, sizeof (aux
));
6102 if (string_table
== NULL
)
6105 for (i
= 0, sec
= section_headers
; i
< elf_header
.e_shnum
; ++i
, ++sec
)
6107 if (sec
->sh_type
== SHT_SYMTAB
6108 && sec
->sh_link
< elf_header
.e_shnum
)
6110 aux
.nsyms
= sec
->sh_size
/ sec
->sh_entsize
;
6111 aux
.symtab
= GET_ELF_SYMBOLS (file
, sec
);
6113 strsec
= section_headers
+ sec
->sh_link
;
6114 aux
.strtab
= (char *) get_data (NULL
, file
, strsec
->sh_offset
,
6117 aux
.strtab_size
= aux
.strtab
!= NULL
? strsec
->sh_size
: 0;
6119 else if (streq (SECTION_NAME (sec
), ".PARISC.unwind"))
6124 printf (_("\nThere are no unwind sections in this file.\n"));
6126 for (i
= 0, sec
= section_headers
; i
< elf_header
.e_shnum
; ++i
, ++sec
)
6128 if (streq (SECTION_NAME (sec
), ".PARISC.unwind"))
6130 printf (_("\nUnwind section "));
6131 printf (_("'%s'"), SECTION_NAME (sec
));
6133 printf (_(" at offset 0x%lx contains %lu entries:\n"),
6134 (unsigned long) sec
->sh_offset
,
6135 (unsigned long) (sec
->sh_size
/ (2 * eh_addr_size
+ 8)));
6137 slurp_hppa_unwind_table (file
, &aux
, sec
);
6138 if (aux
.table_len
> 0)
6139 dump_hppa_unwind (&aux
);
6142 free ((char *) aux
.table
);
6150 free ((char *) aux
.strtab
);
6157 unsigned char *data
;
6159 Elf_Internal_Shdr
*sec
;
6160 Elf_Internal_Rela
*rela
;
6161 unsigned long nrelas
;
6162 unsigned int rel_type
;
6164 Elf_Internal_Rela
*next_rela
;
6167 struct arm_unw_aux_info
6171 Elf_Internal_Sym
*symtab
; /* The symbol table. */
6172 unsigned long nsyms
; /* Number of symbols. */
6173 char *strtab
; /* The string table. */
6174 unsigned long strtab_size
; /* Size of string table. */
6178 arm_print_vma_and_name (struct arm_unw_aux_info
*aux
,
6179 bfd_vma fn
, struct absaddr addr
)
6181 const char *procname
;
6184 if (addr
.section
== SHN_UNDEF
)
6187 find_symbol_for_address (aux
->symtab
, aux
->nsyms
, aux
->strtab
,
6188 aux
->strtab_size
, addr
, &procname
,
6191 print_vma (fn
, PREFIX_HEX
);
6195 fputs (" <", stdout
);
6196 fputs (procname
, stdout
);
6199 printf ("+0x%lx", (unsigned long) sym_offset
);
6200 fputc ('>', stdout
);
6207 arm_free_section (struct arm_section
*arm_sec
)
6209 if (arm_sec
->data
!= NULL
)
6210 free (arm_sec
->data
);
6212 if (arm_sec
->rela
!= NULL
)
6213 free (arm_sec
->rela
);
6217 arm_section_get_word (struct arm_unw_aux_info
*aux
,
6218 struct arm_section
*arm_sec
,
6219 Elf_Internal_Shdr
*sec
, bfd_vma word_offset
,
6220 unsigned int *wordp
, struct absaddr
*addr
)
6222 Elf_Internal_Rela
*rp
;
6223 Elf_Internal_Sym
*sym
;
6224 const char * relname
;
6226 bfd_boolean wrapped
;
6228 addr
->section
= SHN_UNDEF
;
6231 if (sec
!= arm_sec
->sec
)
6233 Elf_Internal_Shdr
*relsec
;
6235 arm_free_section (arm_sec
);
6238 arm_sec
->data
= get_data (NULL
, aux
->file
, sec
->sh_offset
, 1,
6239 sec
->sh_size
, _("unwind data"));
6241 arm_sec
->rela
= NULL
;
6242 arm_sec
->nrelas
= 0;
6244 for (relsec
= section_headers
;
6245 relsec
< section_headers
+ elf_header
.e_shnum
;
6248 if (relsec
->sh_info
>= elf_header
.e_shnum
6249 || section_headers
+ relsec
->sh_info
!= sec
)
6252 if (relsec
->sh_type
== SHT_REL
)
6254 if (!slurp_rel_relocs (aux
->file
, relsec
->sh_offset
,
6256 & arm_sec
->rela
, & arm_sec
->nrelas
))
6260 else if (relsec
->sh_type
== SHT_RELA
)
6262 if (!slurp_rela_relocs (aux
->file
, relsec
->sh_offset
,
6264 & arm_sec
->rela
, & arm_sec
->nrelas
))
6270 arm_sec
->next_rela
= arm_sec
->rela
;
6273 if (arm_sec
->data
== NULL
)
6276 word
= byte_get (arm_sec
->data
+ word_offset
, 4);
6279 for (rp
= arm_sec
->next_rela
; rp
!= arm_sec
->rela
+ arm_sec
->nrelas
; rp
++)
6281 bfd_vma prelval
, offset
;
6283 if (rp
->r_offset
> word_offset
&& !wrapped
)
6288 if (rp
->r_offset
> word_offset
)
6291 if (rp
->r_offset
& 3)
6293 warn (_("Skipping unexpected relocation at offset 0x%lx\n"),
6294 (unsigned long) rp
->r_offset
);
6298 if (rp
->r_offset
< word_offset
)
6301 relname
= elf_arm_reloc_type (ELF32_R_TYPE (rp
->r_info
));
6303 if (streq (relname
, "R_ARM_NONE"))
6306 if (! streq (relname
, "R_ARM_PREL31"))
6308 warn (_("Skipping unexpected relocation type %s\n"), relname
);
6312 sym
= aux
->symtab
+ ELF32_R_SYM (rp
->r_info
);
6314 if (arm_sec
->rel_type
== SHT_REL
)
6316 offset
= word
& 0x7fffffff;
6317 if (offset
& 0x40000000)
6318 offset
|= ~ (bfd_vma
) 0x7fffffff;
6321 offset
= rp
->r_addend
;
6323 offset
+= sym
->st_value
;
6324 prelval
= offset
- (arm_sec
->sec
->sh_addr
+ rp
->r_offset
);
6326 word
= (word
& ~ (bfd_vma
) 0x7fffffff) | (prelval
& 0x7fffffff);
6327 addr
->section
= sym
->st_shndx
;
6328 addr
->offset
= offset
;
6333 arm_sec
->next_rela
= rp
;
6339 decode_arm_unwind (struct arm_unw_aux_info
*aux
,
6340 unsigned int word
, unsigned int remaining
,
6341 bfd_vma data_offset
, Elf_Internal_Shdr
*data_sec
,
6342 struct arm_section
*data_arm_sec
)
6345 unsigned int more_words
;
6346 struct absaddr addr
;
6349 if (remaining == 0 && more_words) \
6352 if (!arm_section_get_word (aux, data_arm_sec, data_sec, \
6353 data_offset, &word, &addr)) \
6359 #define GET_OP(OP) \
6364 (OP) = word >> 24; \
6369 printf (_("[Truncated opcode]\n")); \
6372 printf ("0x%02x ", OP)
6376 /* Fetch the first word. */
6377 if (!arm_section_get_word (aux
, data_arm_sec
, data_sec
, data_offset
,
6383 if ((word
& 0x80000000) == 0)
6385 /* Expand prel31 for personality routine. */
6387 const char *procname
;
6390 if (fn
& 0x40000000)
6391 fn
|= ~ (bfd_vma
) 0x7fffffff;
6392 fn
= fn
+ data_sec
->sh_addr
+ data_offset
;
6394 printf (_(" Personality routine: "));
6395 procname
= arm_print_vma_and_name (aux
, fn
, addr
);
6396 fputc ('\n', stdout
);
6398 /* The GCC personality routines use the standard compact
6399 encoding, starting with one byte giving the number of
6401 if (procname
!= NULL
6402 && (const_strneq (procname
, "__gcc_personality_v0")
6403 || const_strneq (procname
, "__gxx_personality_v0")
6404 || const_strneq (procname
, "__gcj_personality_v0")
6405 || const_strneq (procname
, "__gnu_objc_personality_v0")))
6412 printf (_(" [Truncated data]\n"));
6415 more_words
= word
>> 24;
6424 per_index
= (word
>> 24) & 0x7f;
6425 if (per_index
!= 0 && per_index
!= 1 && per_index
!= 2)
6427 printf (_(" [reserved compact index %d]\n"), per_index
);
6431 printf (_(" Compact model %d\n"), per_index
);
6440 more_words
= (word
>> 16) & 0xff;
6446 /* Decode the unwinding instructions. */
6449 unsigned int op
, op2
;
6458 printf (" 0x%02x ", op
);
6460 if ((op
& 0xc0) == 0x00)
6462 int offset
= ((op
& 0x3f) << 2) + 4;
6463 printf (" vsp = vsp + %d", offset
);
6465 else if ((op
& 0xc0) == 0x40)
6467 int offset
= ((op
& 0x3f) << 2) + 4;
6468 printf (" vsp = vsp - %d", offset
);
6470 else if ((op
& 0xf0) == 0x80)
6473 if (op
== 0x80 && op2
== 0)
6474 printf (_("Refuse to unwind"));
6477 unsigned int mask
= ((op
& 0x0f) << 8) | op2
;
6482 for (i
= 0; i
< 12; i
++)
6483 if (mask
& (1 << i
))
6489 printf ("r%d", 4 + i
);
6494 else if ((op
& 0xf0) == 0x90)
6496 if (op
== 0x9d || op
== 0x9f)
6497 printf (_(" [Reserved]"));
6499 printf (" vsp = r%d", op
& 0x0f);
6501 else if ((op
& 0xf0) == 0xa0)
6503 int end
= 4 + (op
& 0x07);
6507 for (i
= 4; i
<= end
; i
++)
6523 else if (op
== 0xb0)
6524 printf (_(" finish"));
6525 else if (op
== 0xb1)
6528 if (op2
== 0 || (op2
& 0xf0) != 0)
6529 printf (_("[Spare]"));
6532 unsigned int mask
= op2
& 0x0f;
6536 for (i
= 0; i
< 12; i
++)
6537 if (mask
& (1 << i
))
6548 else if (op
== 0xb2)
6550 unsigned char buf
[9];
6551 unsigned int i
, len
;
6552 unsigned long offset
;
6553 for (i
= 0; i
< sizeof (buf
); i
++)
6556 if ((buf
[i
] & 0x80) == 0)
6559 assert (i
< sizeof (buf
));
6560 offset
= read_uleb128 (buf
, &len
);
6561 assert (len
== i
+ 1);
6562 offset
= offset
* 4 + 0x204;
6563 printf ("vsp = vsp + %ld", offset
);
6567 if (op
== 0xb3 || op
== 0xc6 || op
== 0xc7 || op
== 0xc8 || op
== 0xc9)
6570 printf (_("[unsupported two-byte opcode]"));
6574 printf (_(" [unsupported opcode]"));
6580 /* Decode the descriptors. Not implemented. */
6584 dump_arm_unwind (struct arm_unw_aux_info
*aux
, Elf_Internal_Shdr
*exidx_sec
)
6586 struct arm_section exidx_arm_sec
, extab_arm_sec
;
6587 unsigned int i
, exidx_len
;
6589 memset (&exidx_arm_sec
, 0, sizeof (exidx_arm_sec
));
6590 memset (&extab_arm_sec
, 0, sizeof (extab_arm_sec
));
6591 exidx_len
= exidx_sec
->sh_size
/ 8;
6593 for (i
= 0; i
< exidx_len
; i
++)
6595 unsigned int exidx_fn
, exidx_entry
;
6596 struct absaddr fn_addr
, entry_addr
;
6599 fputc ('\n', stdout
);
6601 if (!arm_section_get_word (aux
, &exidx_arm_sec
, exidx_sec
,
6602 8 * i
, &exidx_fn
, &fn_addr
)
6603 || !arm_section_get_word (aux
, &exidx_arm_sec
, exidx_sec
,
6604 8 * i
+ 4, &exidx_entry
, &entry_addr
))
6606 arm_free_section (&exidx_arm_sec
);
6607 arm_free_section (&extab_arm_sec
);
6611 fn
= exidx_fn
& 0x7fffffff;
6612 if (fn
& 0x40000000)
6613 fn
|= ~ (bfd_vma
) 0x7fffffff;
6614 fn
= fn
+ exidx_sec
->sh_addr
+ 8 * i
;
6616 arm_print_vma_and_name (aux
, fn
, entry_addr
);
6617 fputs (": ", stdout
);
6619 if (exidx_entry
== 1)
6621 print_vma (exidx_entry
, PREFIX_HEX
);
6622 fputs (" [cantunwind]\n", stdout
);
6624 else if (exidx_entry
& 0x80000000)
6626 print_vma (exidx_entry
, PREFIX_HEX
);
6627 fputc ('\n', stdout
);
6628 decode_arm_unwind (aux
, exidx_entry
, 4, 0, NULL
, NULL
);
6632 bfd_vma table
, table_offset
= 0;
6633 Elf_Internal_Shdr
*table_sec
;
6635 fputs ("@", stdout
);
6636 table
= exidx_entry
;
6637 if (table
& 0x40000000)
6638 table
|= ~ (bfd_vma
) 0x7fffffff;
6639 table
= table
+ exidx_sec
->sh_addr
+ 8 * i
+ 4;
6640 print_vma (table
, PREFIX_HEX
);
6643 /* Locate the matching .ARM.extab. */
6644 if (entry_addr
.section
!= SHN_UNDEF
6645 && entry_addr
.section
< elf_header
.e_shnum
)
6647 table_sec
= section_headers
+ entry_addr
.section
;
6648 table_offset
= entry_addr
.offset
;
6652 table_sec
= find_section_by_address (table
);
6653 if (table_sec
!= NULL
)
6654 table_offset
= table
- table_sec
->sh_addr
;
6656 if (table_sec
== NULL
)
6658 warn (_("Could not locate .ARM.extab section containing 0x%lx.\n"),
6659 (unsigned long) table
);
6662 decode_arm_unwind (aux
, 0, 0, table_offset
, table_sec
,
6669 arm_free_section (&exidx_arm_sec
);
6670 arm_free_section (&extab_arm_sec
);
6674 arm_process_unwind (FILE *file
)
6676 struct arm_unw_aux_info aux
;
6677 Elf_Internal_Shdr
*unwsec
= NULL
;
6678 Elf_Internal_Shdr
*strsec
;
6679 Elf_Internal_Shdr
*sec
;
6682 memset (& aux
, 0, sizeof (aux
));
6685 if (string_table
== NULL
)
6688 for (i
= 0, sec
= section_headers
; i
< elf_header
.e_shnum
; ++i
, ++sec
)
6690 if (sec
->sh_type
== SHT_SYMTAB
&& sec
->sh_link
< elf_header
.e_shnum
)
6692 aux
.nsyms
= sec
->sh_size
/ sec
->sh_entsize
;
6693 aux
.symtab
= GET_ELF_SYMBOLS (file
, sec
);
6695 strsec
= section_headers
+ sec
->sh_link
;
6696 aux
.strtab
= get_data (NULL
, file
, strsec
->sh_offset
,
6697 1, strsec
->sh_size
, _("string table"));
6698 aux
.strtab_size
= aux
.strtab
!= NULL
? strsec
->sh_size
: 0;
6700 else if (sec
->sh_type
== SHT_ARM_EXIDX
)
6705 printf (_("\nThere are no unwind sections in this file.\n"));
6707 for (i
= 0, sec
= section_headers
; i
< elf_header
.e_shnum
; ++i
, ++sec
)
6709 if (sec
->sh_type
== SHT_ARM_EXIDX
)
6711 printf (_("\nUnwind table index '%s' at offset 0x%lx contains %lu entries:\n"),
6713 (unsigned long) sec
->sh_offset
,
6714 (unsigned long) (sec
->sh_size
/ (2 * eh_addr_size
)));
6716 dump_arm_unwind (&aux
, sec
);
6723 free ((char *) aux
.strtab
);
6729 process_unwind (FILE * file
)
6731 struct unwind_handler
6734 int (* handler
)(FILE *);
6737 { EM_ARM
, arm_process_unwind
},
6738 { EM_IA_64
, ia64_process_unwind
},
6739 { EM_PARISC
, hppa_process_unwind
},
6747 for (i
= 0; handlers
[i
].handler
!= NULL
; i
++)
6748 if (elf_header
.e_machine
== handlers
[i
].machtype
)
6749 return handlers
[i
].handler (file
);
6751 printf (_("\nThere are no unwind sections in this file.\n"));
6756 dynamic_section_mips_val (Elf_Internal_Dyn
* entry
)
6758 switch (entry
->d_tag
)
6761 if (entry
->d_un
.d_val
== 0)
6762 printf (_("NONE\n"));
6765 static const char * opts
[] =
6767 "QUICKSTART", "NOTPOT", "NO_LIBRARY_REPLACEMENT",
6768 "NO_MOVE", "SGI_ONLY", "GUARANTEE_INIT", "DELTA_C_PLUS_PLUS",
6769 "GUARANTEE_START_INIT", "PIXIE", "DEFAULT_DELAY_LOAD",
6770 "REQUICKSTART", "REQUICKSTARTED", "CORD", "NO_UNRES_UNDEF",
6776 for (cnt
= 0; cnt
< ARRAY_SIZE (opts
); ++cnt
)
6777 if (entry
->d_un
.d_val
& (1 << cnt
))
6779 printf ("%s%s", first
? "" : " ", opts
[cnt
]);
6786 case DT_MIPS_IVERSION
:
6787 if (VALID_DYNAMIC_NAME (entry
->d_un
.d_val
))
6788 printf (_("Interface Version: %s\n"), GET_DYNAMIC_NAME (entry
->d_un
.d_val
));
6790 printf (_("<corrupt: %ld>\n"), (long) entry
->d_un
.d_ptr
);
6793 case DT_MIPS_TIME_STAMP
:
6798 time_t atime
= entry
->d_un
.d_val
;
6799 tmp
= gmtime (&atime
);
6800 snprintf (timebuf
, sizeof (timebuf
), "%04u-%02u-%02uT%02u:%02u:%02u",
6801 tmp
->tm_year
+ 1900, tmp
->tm_mon
+ 1, tmp
->tm_mday
,
6802 tmp
->tm_hour
, tmp
->tm_min
, tmp
->tm_sec
);
6803 printf (_("Time Stamp: %s\n"), timebuf
);
6807 case DT_MIPS_RLD_VERSION
:
6808 case DT_MIPS_LOCAL_GOTNO
:
6809 case DT_MIPS_CONFLICTNO
:
6810 case DT_MIPS_LIBLISTNO
:
6811 case DT_MIPS_SYMTABNO
:
6812 case DT_MIPS_UNREFEXTNO
:
6813 case DT_MIPS_HIPAGENO
:
6814 case DT_MIPS_DELTA_CLASS_NO
:
6815 case DT_MIPS_DELTA_INSTANCE_NO
:
6816 case DT_MIPS_DELTA_RELOC_NO
:
6817 case DT_MIPS_DELTA_SYM_NO
:
6818 case DT_MIPS_DELTA_CLASSSYM_NO
:
6819 case DT_MIPS_COMPACT_SIZE
:
6820 printf ("%ld\n", (long) entry
->d_un
.d_ptr
);
6824 printf ("%#lx\n", (unsigned long) entry
->d_un
.d_ptr
);
6829 dynamic_section_parisc_val (Elf_Internal_Dyn
* entry
)
6831 switch (entry
->d_tag
)
6833 case DT_HP_DLD_FLAGS
:
6842 { DT_HP_DEBUG_PRIVATE
, "HP_DEBUG_PRIVATE" },
6843 { DT_HP_DEBUG_CALLBACK
, "HP_DEBUG_CALLBACK" },
6844 { DT_HP_DEBUG_CALLBACK_BOR
, "HP_DEBUG_CALLBACK_BOR" },
6845 { DT_HP_NO_ENVVAR
, "HP_NO_ENVVAR" },
6846 { DT_HP_BIND_NOW
, "HP_BIND_NOW" },
6847 { DT_HP_BIND_NONFATAL
, "HP_BIND_NONFATAL" },
6848 { DT_HP_BIND_VERBOSE
, "HP_BIND_VERBOSE" },
6849 { DT_HP_BIND_RESTRICTED
, "HP_BIND_RESTRICTED" },
6850 { DT_HP_BIND_SYMBOLIC
, "HP_BIND_SYMBOLIC" },
6851 { DT_HP_RPATH_FIRST
, "HP_RPATH_FIRST" },
6852 { DT_HP_BIND_DEPTH_FIRST
, "HP_BIND_DEPTH_FIRST" },
6853 { DT_HP_GST
, "HP_GST" },
6854 { DT_HP_SHLIB_FIXED
, "HP_SHLIB_FIXED" },
6855 { DT_HP_MERGE_SHLIB_SEG
, "HP_MERGE_SHLIB_SEG" },
6856 { DT_HP_NODELETE
, "HP_NODELETE" },
6857 { DT_HP_GROUP
, "HP_GROUP" },
6858 { DT_HP_PROTECT_LINKAGE_TABLE
, "HP_PROTECT_LINKAGE_TABLE" }
6862 bfd_vma val
= entry
->d_un
.d_val
;
6864 for (cnt
= 0; cnt
< ARRAY_SIZE (flags
); ++cnt
)
6865 if (val
& flags
[cnt
].bit
)
6869 fputs (flags
[cnt
].str
, stdout
);
6871 val
^= flags
[cnt
].bit
;
6874 if (val
!= 0 || first
)
6878 print_vma (val
, HEX
);
6884 print_vma (entry
->d_un
.d_ptr
, PREFIX_HEX
);
6892 /* VMS vs Unix time offset and factor. */
6894 #define VMS_EPOCH_OFFSET 35067168000000000LL
6895 #define VMS_GRANULARITY_FACTOR 10000000
6897 /* Display a VMS time in a human readable format. */
6900 print_vms_time (bfd_int64_t vmstime
)
6905 unxtime
= (vmstime
- VMS_EPOCH_OFFSET
) / VMS_GRANULARITY_FACTOR
;
6906 tm
= gmtime (&unxtime
);
6907 printf ("%04u-%02u-%02uT%02u:%02u:%02u",
6908 tm
->tm_year
+ 1900, tm
->tm_mon
+ 1, tm
->tm_mday
,
6909 tm
->tm_hour
, tm
->tm_min
, tm
->tm_sec
);
6914 dynamic_section_ia64_val (Elf_Internal_Dyn
* entry
)
6916 switch (entry
->d_tag
)
6918 case DT_IA_64_PLT_RESERVE
:
6919 /* First 3 slots reserved. */
6920 print_vma (entry
->d_un
.d_ptr
, PREFIX_HEX
);
6922 print_vma (entry
->d_un
.d_ptr
+ (3 * 8), PREFIX_HEX
);
6925 case DT_IA_64_VMS_LINKTIME
:
6927 print_vms_time (entry
->d_un
.d_val
);
6931 case DT_IA_64_VMS_LNKFLAGS
:
6932 print_vma (entry
->d_un
.d_ptr
, PREFIX_HEX
);
6933 if (entry
->d_un
.d_val
& VMS_LF_CALL_DEBUG
)
6934 printf (" CALL_DEBUG");
6935 if (entry
->d_un
.d_val
& VMS_LF_NOP0BUFS
)
6936 printf (" NOP0BUFS");
6937 if (entry
->d_un
.d_val
& VMS_LF_P0IMAGE
)
6938 printf (" P0IMAGE");
6939 if (entry
->d_un
.d_val
& VMS_LF_MKTHREADS
)
6940 printf (" MKTHREADS");
6941 if (entry
->d_un
.d_val
& VMS_LF_UPCALLS
)
6942 printf (" UPCALLS");
6943 if (entry
->d_un
.d_val
& VMS_LF_IMGSTA
)
6945 if (entry
->d_un
.d_val
& VMS_LF_INITIALIZE
)
6946 printf (" INITIALIZE");
6947 if (entry
->d_un
.d_val
& VMS_LF_MAIN
)
6949 if (entry
->d_un
.d_val
& VMS_LF_EXE_INIT
)
6950 printf (" EXE_INIT");
6951 if (entry
->d_un
.d_val
& VMS_LF_TBK_IN_IMG
)
6952 printf (" TBK_IN_IMG");
6953 if (entry
->d_un
.d_val
& VMS_LF_DBG_IN_IMG
)
6954 printf (" DBG_IN_IMG");
6955 if (entry
->d_un
.d_val
& VMS_LF_TBK_IN_DSF
)
6956 printf (" TBK_IN_DSF");
6957 if (entry
->d_un
.d_val
& VMS_LF_DBG_IN_DSF
)
6958 printf (" DBG_IN_DSF");
6959 if (entry
->d_un
.d_val
& VMS_LF_SIGNATURES
)
6960 printf (" SIGNATURES");
6961 if (entry
->d_un
.d_val
& VMS_LF_REL_SEG_OFF
)
6962 printf (" REL_SEG_OFF");
6966 print_vma (entry
->d_un
.d_ptr
, PREFIX_HEX
);
6973 get_32bit_dynamic_section (FILE * file
)
6975 Elf32_External_Dyn
* edyn
;
6976 Elf32_External_Dyn
* ext
;
6977 Elf_Internal_Dyn
* entry
;
6979 edyn
= (Elf32_External_Dyn
*) get_data (NULL
, file
, dynamic_addr
, 1,
6980 dynamic_size
, _("dynamic section"));
6984 /* SGI's ELF has more than one section in the DYNAMIC segment, and we
6985 might not have the luxury of section headers. Look for the DT_NULL
6986 terminator to determine the number of entries. */
6987 for (ext
= edyn
, dynamic_nent
= 0;
6988 (char *) ext
< (char *) edyn
+ dynamic_size
;
6992 if (BYTE_GET (ext
->d_tag
) == DT_NULL
)
6996 dynamic_section
= (Elf_Internal_Dyn
*) cmalloc (dynamic_nent
,
6998 if (dynamic_section
== NULL
)
7000 error (_("Out of memory\n"));
7005 for (ext
= edyn
, entry
= dynamic_section
;
7006 entry
< dynamic_section
+ dynamic_nent
;
7009 entry
->d_tag
= BYTE_GET (ext
->d_tag
);
7010 entry
->d_un
.d_val
= BYTE_GET (ext
->d_un
.d_val
);
7019 get_64bit_dynamic_section (FILE * file
)
7021 Elf64_External_Dyn
* edyn
;
7022 Elf64_External_Dyn
* ext
;
7023 Elf_Internal_Dyn
* entry
;
7025 edyn
= (Elf64_External_Dyn
*) get_data (NULL
, file
, dynamic_addr
, 1,
7026 dynamic_size
, _("dynamic section"));
7030 /* SGI's ELF has more than one section in the DYNAMIC segment, and we
7031 might not have the luxury of section headers. Look for the DT_NULL
7032 terminator to determine the number of entries. */
7033 for (ext
= edyn
, dynamic_nent
= 0;
7034 (char *) ext
< (char *) edyn
+ dynamic_size
;
7038 if (BYTE_GET (ext
->d_tag
) == DT_NULL
)
7042 dynamic_section
= (Elf_Internal_Dyn
*) cmalloc (dynamic_nent
,
7044 if (dynamic_section
== NULL
)
7046 error (_("Out of memory\n"));
7051 for (ext
= edyn
, entry
= dynamic_section
;
7052 entry
< dynamic_section
+ dynamic_nent
;
7055 entry
->d_tag
= BYTE_GET (ext
->d_tag
);
7056 entry
->d_un
.d_val
= BYTE_GET (ext
->d_un
.d_val
);
7065 print_dynamic_flags (bfd_vma flags
)
7073 flag
= flags
& - flags
;
7083 case DF_ORIGIN
: fputs ("ORIGIN", stdout
); break;
7084 case DF_SYMBOLIC
: fputs ("SYMBOLIC", stdout
); break;
7085 case DF_TEXTREL
: fputs ("TEXTREL", stdout
); break;
7086 case DF_BIND_NOW
: fputs ("BIND_NOW", stdout
); break;
7087 case DF_STATIC_TLS
: fputs ("STATIC_TLS", stdout
); break;
7088 default: fputs (_("unknown"), stdout
); break;
7094 /* Parse and display the contents of the dynamic section. */
7097 process_dynamic_section (FILE * file
)
7099 Elf_Internal_Dyn
* entry
;
7101 if (dynamic_size
== 0)
7104 printf (_("\nThere is no dynamic section in this file.\n"));
7111 if (! get_32bit_dynamic_section (file
))
7114 else if (! get_64bit_dynamic_section (file
))
7117 /* Find the appropriate symbol table. */
7118 if (dynamic_symbols
== NULL
)
7120 for (entry
= dynamic_section
;
7121 entry
< dynamic_section
+ dynamic_nent
;
7124 Elf_Internal_Shdr section
;
7126 if (entry
->d_tag
!= DT_SYMTAB
)
7129 dynamic_info
[DT_SYMTAB
] = entry
->d_un
.d_val
;
7131 /* Since we do not know how big the symbol table is,
7132 we default to reading in the entire file (!) and
7133 processing that. This is overkill, I know, but it
7135 section
.sh_offset
= offset_from_vma (file
, entry
->d_un
.d_val
, 0);
7137 if (archive_file_offset
!= 0)
7138 section
.sh_size
= archive_file_size
- section
.sh_offset
;
7141 if (fseek (file
, 0, SEEK_END
))
7142 error (_("Unable to seek to end of file!\n"));
7144 section
.sh_size
= ftell (file
) - section
.sh_offset
;
7148 section
.sh_entsize
= sizeof (Elf32_External_Sym
);
7150 section
.sh_entsize
= sizeof (Elf64_External_Sym
);
7152 num_dynamic_syms
= section
.sh_size
/ section
.sh_entsize
;
7153 if (num_dynamic_syms
< 1)
7155 error (_("Unable to determine the number of symbols to load\n"));
7159 dynamic_symbols
= GET_ELF_SYMBOLS (file
, §ion
);
7163 /* Similarly find a string table. */
7164 if (dynamic_strings
== NULL
)
7166 for (entry
= dynamic_section
;
7167 entry
< dynamic_section
+ dynamic_nent
;
7170 unsigned long offset
;
7173 if (entry
->d_tag
!= DT_STRTAB
)
7176 dynamic_info
[DT_STRTAB
] = entry
->d_un
.d_val
;
7178 /* Since we do not know how big the string table is,
7179 we default to reading in the entire file (!) and
7180 processing that. This is overkill, I know, but it
7183 offset
= offset_from_vma (file
, entry
->d_un
.d_val
, 0);
7185 if (archive_file_offset
!= 0)
7186 str_tab_len
= archive_file_size
- offset
;
7189 if (fseek (file
, 0, SEEK_END
))
7190 error (_("Unable to seek to end of file\n"));
7191 str_tab_len
= ftell (file
) - offset
;
7194 if (str_tab_len
< 1)
7197 (_("Unable to determine the length of the dynamic string table\n"));
7201 dynamic_strings
= (char *) get_data (NULL
, file
, offset
, 1,
7203 _("dynamic string table"));
7204 dynamic_strings_length
= str_tab_len
;
7209 /* And find the syminfo section if available. */
7210 if (dynamic_syminfo
== NULL
)
7212 unsigned long syminsz
= 0;
7214 for (entry
= dynamic_section
;
7215 entry
< dynamic_section
+ dynamic_nent
;
7218 if (entry
->d_tag
== DT_SYMINENT
)
7220 /* Note: these braces are necessary to avoid a syntax
7221 error from the SunOS4 C compiler. */
7222 assert (sizeof (Elf_External_Syminfo
) == entry
->d_un
.d_val
);
7224 else if (entry
->d_tag
== DT_SYMINSZ
)
7225 syminsz
= entry
->d_un
.d_val
;
7226 else if (entry
->d_tag
== DT_SYMINFO
)
7227 dynamic_syminfo_offset
= offset_from_vma (file
, entry
->d_un
.d_val
,
7231 if (dynamic_syminfo_offset
!= 0 && syminsz
!= 0)
7233 Elf_External_Syminfo
* extsyminfo
;
7234 Elf_External_Syminfo
* extsym
;
7235 Elf_Internal_Syminfo
* syminfo
;
7237 /* There is a syminfo section. Read the data. */
7238 extsyminfo
= (Elf_External_Syminfo
*)
7239 get_data (NULL
, file
, dynamic_syminfo_offset
, 1, syminsz
,
7240 _("symbol information"));
7244 dynamic_syminfo
= (Elf_Internal_Syminfo
*) malloc (syminsz
);
7245 if (dynamic_syminfo
== NULL
)
7247 error (_("Out of memory\n"));
7251 dynamic_syminfo_nent
= syminsz
/ sizeof (Elf_External_Syminfo
);
7252 for (syminfo
= dynamic_syminfo
, extsym
= extsyminfo
;
7253 syminfo
< dynamic_syminfo
+ dynamic_syminfo_nent
;
7254 ++syminfo
, ++extsym
)
7256 syminfo
->si_boundto
= BYTE_GET (extsym
->si_boundto
);
7257 syminfo
->si_flags
= BYTE_GET (extsym
->si_flags
);
7264 if (do_dynamic
&& dynamic_addr
)
7265 printf (_("\nDynamic section at offset 0x%lx contains %u entries:\n"),
7266 dynamic_addr
, dynamic_nent
);
7268 printf (_(" Tag Type Name/Value\n"));
7270 for (entry
= dynamic_section
;
7271 entry
< dynamic_section
+ dynamic_nent
;
7279 print_vma (entry
->d_tag
, FULL_HEX
);
7280 dtype
= get_dynamic_type (entry
->d_tag
);
7281 printf (" (%s)%*s", dtype
,
7282 ((is_32bit_elf
? 27 : 19)
7283 - (int) strlen (dtype
)),
7287 switch (entry
->d_tag
)
7291 print_dynamic_flags (entry
->d_un
.d_val
);
7301 switch (entry
->d_tag
)
7304 printf (_("Auxiliary library"));
7308 printf (_("Filter library"));
7312 printf (_("Configuration file"));
7316 printf (_("Dependency audit library"));
7320 printf (_("Audit library"));
7324 if (VALID_DYNAMIC_NAME (entry
->d_un
.d_val
))
7325 printf (": [%s]\n", GET_DYNAMIC_NAME (entry
->d_un
.d_val
));
7329 print_vma (entry
->d_un
.d_val
, PREFIX_HEX
);
7338 printf (_("Flags:"));
7340 if (entry
->d_un
.d_val
== 0)
7341 printf (_(" None\n"));
7344 unsigned long int val
= entry
->d_un
.d_val
;
7346 if (val
& DTF_1_PARINIT
)
7348 printf (" PARINIT");
7349 val
^= DTF_1_PARINIT
;
7351 if (val
& DTF_1_CONFEXP
)
7353 printf (" CONFEXP");
7354 val
^= DTF_1_CONFEXP
;
7357 printf (" %lx", val
);
7366 printf (_("Flags:"));
7368 if (entry
->d_un
.d_val
== 0)
7369 printf (_(" None\n"));
7372 unsigned long int val
= entry
->d_un
.d_val
;
7374 if (val
& DF_P1_LAZYLOAD
)
7376 printf (" LAZYLOAD");
7377 val
^= DF_P1_LAZYLOAD
;
7379 if (val
& DF_P1_GROUPPERM
)
7381 printf (" GROUPPERM");
7382 val
^= DF_P1_GROUPPERM
;
7385 printf (" %lx", val
);
7394 printf (_("Flags:"));
7395 if (entry
->d_un
.d_val
== 0)
7396 printf (_(" None\n"));
7399 unsigned long int val
= entry
->d_un
.d_val
;
7406 if (val
& DF_1_GLOBAL
)
7411 if (val
& DF_1_GROUP
)
7416 if (val
& DF_1_NODELETE
)
7418 printf (" NODELETE");
7419 val
^= DF_1_NODELETE
;
7421 if (val
& DF_1_LOADFLTR
)
7423 printf (" LOADFLTR");
7424 val
^= DF_1_LOADFLTR
;
7426 if (val
& DF_1_INITFIRST
)
7428 printf (" INITFIRST");
7429 val
^= DF_1_INITFIRST
;
7431 if (val
& DF_1_NOOPEN
)
7436 if (val
& DF_1_ORIGIN
)
7441 if (val
& DF_1_DIRECT
)
7446 if (val
& DF_1_TRANS
)
7451 if (val
& DF_1_INTERPOSE
)
7453 printf (" INTERPOSE");
7454 val
^= DF_1_INTERPOSE
;
7456 if (val
& DF_1_NODEFLIB
)
7458 printf (" NODEFLIB");
7459 val
^= DF_1_NODEFLIB
;
7461 if (val
& DF_1_NODUMP
)
7466 if (val
& DF_1_CONLFAT
)
7468 printf (" CONLFAT");
7469 val
^= DF_1_CONLFAT
;
7472 printf (" %lx", val
);
7479 dynamic_info
[entry
->d_tag
] = entry
->d_un
.d_val
;
7481 puts (get_dynamic_type (entry
->d_un
.d_val
));
7501 dynamic_info
[entry
->d_tag
] = entry
->d_un
.d_val
;
7507 if (VALID_DYNAMIC_NAME (entry
->d_un
.d_val
))
7508 name
= GET_DYNAMIC_NAME (entry
->d_un
.d_val
);
7514 switch (entry
->d_tag
)
7517 printf (_("Shared library: [%s]"), name
);
7519 if (streq (name
, program_interpreter
))
7520 printf (_(" program interpreter"));
7524 printf (_("Library soname: [%s]"), name
);
7528 printf (_("Library rpath: [%s]"), name
);
7532 printf (_("Library runpath: [%s]"), name
);
7536 print_vma (entry
->d_un
.d_val
, PREFIX_HEX
);
7541 print_vma (entry
->d_un
.d_val
, PREFIX_HEX
);
7554 dynamic_info
[entry
->d_tag
] = entry
->d_un
.d_val
;
7558 case DT_INIT_ARRAYSZ
:
7559 case DT_FINI_ARRAYSZ
:
7560 case DT_GNU_CONFLICTSZ
:
7561 case DT_GNU_LIBLISTSZ
:
7564 print_vma (entry
->d_un
.d_val
, UNSIGNED
);
7565 printf (_(" (bytes)\n"));
7575 print_vma (entry
->d_un
.d_val
, UNSIGNED
);
7588 if (entry
->d_tag
== DT_USED
7589 && VALID_DYNAMIC_NAME (entry
->d_un
.d_val
))
7591 char * name
= GET_DYNAMIC_NAME (entry
->d_un
.d_val
);
7595 printf (_("Not needed object: [%s]\n"), name
);
7600 print_vma (entry
->d_un
.d_val
, PREFIX_HEX
);
7606 /* The value of this entry is ignored. */
7611 case DT_GNU_PRELINKED
:
7615 time_t atime
= entry
->d_un
.d_val
;
7617 tmp
= gmtime (&atime
);
7618 printf ("%04u-%02u-%02uT%02u:%02u:%02u\n",
7619 tmp
->tm_year
+ 1900, tmp
->tm_mon
+ 1, tmp
->tm_mday
,
7620 tmp
->tm_hour
, tmp
->tm_min
, tmp
->tm_sec
);
7626 dynamic_info_DT_GNU_HASH
= entry
->d_un
.d_val
;
7629 print_vma (entry
->d_un
.d_val
, PREFIX_HEX
);
7635 if ((entry
->d_tag
>= DT_VERSYM
) && (entry
->d_tag
<= DT_VERNEEDNUM
))
7636 version_info
[DT_VERSIONTAGIDX (entry
->d_tag
)] =
7641 switch (elf_header
.e_machine
)
7644 case EM_MIPS_RS3_LE
:
7645 dynamic_section_mips_val (entry
);
7648 dynamic_section_parisc_val (entry
);
7651 dynamic_section_ia64_val (entry
);
7654 print_vma (entry
->d_un
.d_val
, PREFIX_HEX
);
7666 get_ver_flags (unsigned int flags
)
7668 static char buff
[32];
7675 if (flags
& VER_FLG_BASE
)
7676 strcat (buff
, "BASE ");
7678 if (flags
& VER_FLG_WEAK
)
7680 if (flags
& VER_FLG_BASE
)
7681 strcat (buff
, "| ");
7683 strcat (buff
, "WEAK ");
7686 if (flags
& VER_FLG_INFO
)
7688 if (flags
& (VER_FLG_BASE
|VER_FLG_WEAK
))
7689 strcat (buff
, "| ");
7691 strcat (buff
, "INFO ");
7694 if (flags
& ~(VER_FLG_BASE
| VER_FLG_WEAK
| VER_FLG_INFO
))
7695 strcat (buff
, _("| <unknown>"));
7700 /* Display the contents of the version sections. */
7703 process_version_sections (FILE * file
)
7705 Elf_Internal_Shdr
* section
;
7712 for (i
= 0, section
= section_headers
;
7713 i
< elf_header
.e_shnum
;
7716 switch (section
->sh_type
)
7718 case SHT_GNU_verdef
:
7720 Elf_External_Verdef
* edefs
;
7728 (_("\nVersion definition section '%s' contains %u entries:\n"),
7729 SECTION_NAME (section
), section
->sh_info
);
7731 printf (_(" Addr: 0x"));
7732 printf_vma (section
->sh_addr
);
7733 printf (_(" Offset: %#08lx Link: %u (%s)\n"),
7734 (unsigned long) section
->sh_offset
, section
->sh_link
,
7735 section
->sh_link
< elf_header
.e_shnum
7736 ? SECTION_NAME (section_headers
+ section
->sh_link
)
7739 edefs
= (Elf_External_Verdef
*)
7740 get_data (NULL
, file
, section
->sh_offset
, 1,section
->sh_size
,
7741 _("version definition section"));
7742 endbuf
= (char *) edefs
+ section
->sh_size
;
7746 for (idx
= cnt
= 0; cnt
< section
->sh_info
; ++cnt
)
7749 Elf_External_Verdef
* edef
;
7750 Elf_Internal_Verdef ent
;
7751 Elf_External_Verdaux
* eaux
;
7752 Elf_Internal_Verdaux aux
;
7756 /* Check for negative or very large indicies. */
7757 if ((unsigned char *) edefs
+ idx
< (unsigned char *) edefs
)
7760 vstart
= ((char *) edefs
) + idx
;
7761 if (vstart
+ sizeof (*edef
) > endbuf
)
7764 edef
= (Elf_External_Verdef
*) vstart
;
7766 ent
.vd_version
= BYTE_GET (edef
->vd_version
);
7767 ent
.vd_flags
= BYTE_GET (edef
->vd_flags
);
7768 ent
.vd_ndx
= BYTE_GET (edef
->vd_ndx
);
7769 ent
.vd_cnt
= BYTE_GET (edef
->vd_cnt
);
7770 ent
.vd_hash
= BYTE_GET (edef
->vd_hash
);
7771 ent
.vd_aux
= BYTE_GET (edef
->vd_aux
);
7772 ent
.vd_next
= BYTE_GET (edef
->vd_next
);
7774 printf (_(" %#06x: Rev: %d Flags: %s"),
7775 idx
, ent
.vd_version
, get_ver_flags (ent
.vd_flags
));
7777 printf (_(" Index: %d Cnt: %d "),
7778 ent
.vd_ndx
, ent
.vd_cnt
);
7780 /* Check for overflow. */
7781 if ((unsigned char *)(vstart
+ ent
.vd_aux
) < (unsigned char *) vstart
7782 || (unsigned char *)(vstart
+ ent
.vd_aux
) > (unsigned char *) endbuf
)
7785 vstart
+= ent
.vd_aux
;
7787 eaux
= (Elf_External_Verdaux
*) vstart
;
7789 aux
.vda_name
= BYTE_GET (eaux
->vda_name
);
7790 aux
.vda_next
= BYTE_GET (eaux
->vda_next
);
7792 if (VALID_DYNAMIC_NAME (aux
.vda_name
))
7793 printf (_("Name: %s\n"), GET_DYNAMIC_NAME (aux
.vda_name
));
7795 printf (_("Name index: %ld\n"), aux
.vda_name
);
7797 isum
= idx
+ ent
.vd_aux
;
7799 for (j
= 1; j
< ent
.vd_cnt
; j
++)
7801 /* Check for overflow. */
7802 if ((unsigned char *)(vstart
+ aux
.vda_next
) < (unsigned char *) vstart
7803 || (unsigned char *)(vstart
+ aux
.vda_next
) > (unsigned char *) endbuf
)
7806 isum
+= aux
.vda_next
;
7807 vstart
+= aux
.vda_next
;
7809 eaux
= (Elf_External_Verdaux
*) vstart
;
7810 if (vstart
+ sizeof (*eaux
) > endbuf
)
7813 aux
.vda_name
= BYTE_GET (eaux
->vda_name
);
7814 aux
.vda_next
= BYTE_GET (eaux
->vda_next
);
7816 if (VALID_DYNAMIC_NAME (aux
.vda_name
))
7817 printf (_(" %#06x: Parent %d: %s\n"),
7818 isum
, j
, GET_DYNAMIC_NAME (aux
.vda_name
));
7820 printf (_(" %#06x: Parent %d, name index: %ld\n"),
7821 isum
, j
, aux
.vda_name
);
7825 printf (_(" Version def aux past end of section\n"));
7830 if (cnt
< section
->sh_info
)
7831 printf (_(" Version definition past end of section\n"));
7837 case SHT_GNU_verneed
:
7839 Elf_External_Verneed
* eneed
;
7846 printf (_("\nVersion needs section '%s' contains %u entries:\n"),
7847 SECTION_NAME (section
), section
->sh_info
);
7849 printf (_(" Addr: 0x"));
7850 printf_vma (section
->sh_addr
);
7851 printf (_(" Offset: %#08lx Link: %u (%s)\n"),
7852 (unsigned long) section
->sh_offset
, section
->sh_link
,
7853 section
->sh_link
< elf_header
.e_shnum
7854 ? SECTION_NAME (section_headers
+ section
->sh_link
)
7857 eneed
= (Elf_External_Verneed
*) get_data (NULL
, file
,
7858 section
->sh_offset
, 1,
7860 _("version need section"));
7861 endbuf
= (char *) eneed
+ section
->sh_size
;
7865 for (idx
= cnt
= 0; cnt
< section
->sh_info
; ++cnt
)
7867 Elf_External_Verneed
* entry
;
7868 Elf_Internal_Verneed ent
;
7873 if ((unsigned char *) eneed
+ idx
< (unsigned char *) eneed
)
7876 vstart
= ((char *) eneed
) + idx
;
7877 if (vstart
+ sizeof (*entry
) > endbuf
)
7880 entry
= (Elf_External_Verneed
*) vstart
;
7882 ent
.vn_version
= BYTE_GET (entry
->vn_version
);
7883 ent
.vn_cnt
= BYTE_GET (entry
->vn_cnt
);
7884 ent
.vn_file
= BYTE_GET (entry
->vn_file
);
7885 ent
.vn_aux
= BYTE_GET (entry
->vn_aux
);
7886 ent
.vn_next
= BYTE_GET (entry
->vn_next
);
7888 printf (_(" %#06x: Version: %d"), idx
, ent
.vn_version
);
7890 if (VALID_DYNAMIC_NAME (ent
.vn_file
))
7891 printf (_(" File: %s"), GET_DYNAMIC_NAME (ent
.vn_file
));
7893 printf (_(" File: %lx"), ent
.vn_file
);
7895 printf (_(" Cnt: %d\n"), ent
.vn_cnt
);
7897 /* Check for overflow. */
7898 if ((unsigned char *)(vstart
+ ent
.vn_aux
) < (unsigned char *) vstart
7899 || (unsigned char *)(vstart
+ ent
.vn_aux
) > (unsigned char *) endbuf
)
7902 vstart
+= ent
.vn_aux
;
7904 for (j
= 0, isum
= idx
+ ent
.vn_aux
; j
< ent
.vn_cnt
; ++j
)
7906 Elf_External_Vernaux
* eaux
;
7907 Elf_Internal_Vernaux aux
;
7909 if (vstart
+ sizeof (*eaux
) > endbuf
)
7911 eaux
= (Elf_External_Vernaux
*) vstart
;
7913 aux
.vna_hash
= BYTE_GET (eaux
->vna_hash
);
7914 aux
.vna_flags
= BYTE_GET (eaux
->vna_flags
);
7915 aux
.vna_other
= BYTE_GET (eaux
->vna_other
);
7916 aux
.vna_name
= BYTE_GET (eaux
->vna_name
);
7917 aux
.vna_next
= BYTE_GET (eaux
->vna_next
);
7919 if (VALID_DYNAMIC_NAME (aux
.vna_name
))
7920 printf (_(" %#06x: Name: %s"),
7921 isum
, GET_DYNAMIC_NAME (aux
.vna_name
));
7923 printf (_(" %#06x: Name index: %lx"),
7924 isum
, aux
.vna_name
);
7926 printf (_(" Flags: %s Version: %d\n"),
7927 get_ver_flags (aux
.vna_flags
), aux
.vna_other
);
7929 /* Check for overflow. */
7930 if ((unsigned char *)(vstart
+ aux
.vna_next
) < (unsigned char *) vstart
7931 || (unsigned char *)(vstart
+ aux
.vna_next
) > (unsigned char *) endbuf
)
7934 isum
+= aux
.vna_next
;
7935 vstart
+= aux
.vna_next
;
7938 printf (_(" Version need aux past end of section\n"));
7942 if (cnt
< section
->sh_info
)
7943 printf (_(" Version need past end of section\n"));
7949 case SHT_GNU_versym
:
7951 Elf_Internal_Shdr
* link_section
;
7954 unsigned char * edata
;
7955 unsigned short * data
;
7957 Elf_Internal_Sym
* symbols
;
7958 Elf_Internal_Shdr
* string_sec
;
7961 if (section
->sh_link
>= elf_header
.e_shnum
)
7964 link_section
= section_headers
+ section
->sh_link
;
7965 total
= section
->sh_size
/ sizeof (Elf_External_Versym
);
7967 if (link_section
->sh_link
>= elf_header
.e_shnum
)
7972 symbols
= GET_ELF_SYMBOLS (file
, link_section
);
7973 if (symbols
== NULL
)
7976 string_sec
= section_headers
+ link_section
->sh_link
;
7978 strtab
= (char *) get_data (NULL
, file
, string_sec
->sh_offset
, 1,
7979 string_sec
->sh_size
,
7980 _("version string table"));
7984 printf (_("\nVersion symbols section '%s' contains %d entries:\n"),
7985 SECTION_NAME (section
), total
);
7987 printf (_(" Addr: "));
7988 printf_vma (section
->sh_addr
);
7989 printf (_(" Offset: %#08lx Link: %u (%s)\n"),
7990 (unsigned long) section
->sh_offset
, section
->sh_link
,
7991 SECTION_NAME (link_section
));
7993 off
= offset_from_vma (file
,
7994 version_info
[DT_VERSIONTAGIDX (DT_VERSYM
)],
7995 total
* sizeof (short));
7996 edata
= (unsigned char *) get_data (NULL
, file
, off
, total
,
7998 _("version symbol data"));
8005 data
= (short unsigned int *) cmalloc (total
, sizeof (short));
8007 for (cnt
= total
; cnt
--;)
8008 data
[cnt
] = byte_get (edata
+ cnt
* sizeof (short),
8013 for (cnt
= 0; cnt
< total
; cnt
+= 4)
8016 int check_def
, check_need
;
8019 printf (" %03x:", cnt
);
8021 for (j
= 0; (j
< 4) && (cnt
+ j
) < total
; ++j
)
8022 switch (data
[cnt
+ j
])
8025 fputs (_(" 0 (*local*) "), stdout
);
8029 fputs (_(" 1 (*global*) "), stdout
);
8033 nn
= printf ("%4x%c", data
[cnt
+ j
] & VERSYM_VERSION
,
8034 data
[cnt
+ j
] & VERSYM_HIDDEN
? 'h' : ' ');
8036 /* If this index value is greater than the size of the symbols
8037 array, break to avoid an out-of-bounds read, */
8038 if ((unsigned long)(cnt
+ j
) >=
8039 ((unsigned long)link_section
->sh_size
/
8040 (unsigned long)link_section
->sh_entsize
))
8042 warn (_("invalid index into symbol array\n"));
8048 if (symbols
[cnt
+ j
].st_shndx
>= elf_header
.e_shnum
8049 || section_headers
[symbols
[cnt
+ j
].st_shndx
].sh_type
8052 if (symbols
[cnt
+ j
].st_shndx
== SHN_UNDEF
)
8059 && version_info
[DT_VERSIONTAGIDX (DT_VERNEED
)])
8061 Elf_Internal_Verneed ivn
;
8062 unsigned long offset
;
8064 offset
= offset_from_vma
8065 (file
, version_info
[DT_VERSIONTAGIDX (DT_VERNEED
)],
8066 sizeof (Elf_External_Verneed
));
8070 Elf_Internal_Vernaux ivna
;
8071 Elf_External_Verneed evn
;
8072 Elf_External_Vernaux evna
;
8073 unsigned long a_off
;
8075 get_data (&evn
, file
, offset
, sizeof (evn
), 1,
8078 ivn
.vn_aux
= BYTE_GET (evn
.vn_aux
);
8079 ivn
.vn_next
= BYTE_GET (evn
.vn_next
);
8081 a_off
= offset
+ ivn
.vn_aux
;
8085 get_data (&evna
, file
, a_off
, sizeof (evna
),
8086 1, _("version need aux (2)"));
8088 ivna
.vna_next
= BYTE_GET (evna
.vna_next
);
8089 ivna
.vna_other
= BYTE_GET (evna
.vna_other
);
8091 a_off
+= ivna
.vna_next
;
8093 while (ivna
.vna_other
!= data
[cnt
+ j
]
8094 && ivna
.vna_next
!= 0);
8096 if (ivna
.vna_other
== data
[cnt
+ j
])
8098 ivna
.vna_name
= BYTE_GET (evna
.vna_name
);
8100 if (ivna
.vna_name
>= string_sec
->sh_size
)
8101 name
= _("*invalid*");
8103 name
= strtab
+ ivna
.vna_name
;
8104 nn
+= printf ("(%s%-*s",
8106 12 - (int) strlen (name
),
8112 offset
+= ivn
.vn_next
;
8114 while (ivn
.vn_next
);
8117 if (check_def
&& data
[cnt
+ j
] != 0x8001
8118 && version_info
[DT_VERSIONTAGIDX (DT_VERDEF
)])
8120 Elf_Internal_Verdef ivd
;
8121 Elf_External_Verdef evd
;
8122 unsigned long offset
;
8124 offset
= offset_from_vma
8125 (file
, version_info
[DT_VERSIONTAGIDX (DT_VERDEF
)],
8130 get_data (&evd
, file
, offset
, sizeof (evd
), 1,
8133 ivd
.vd_next
= BYTE_GET (evd
.vd_next
);
8134 ivd
.vd_ndx
= BYTE_GET (evd
.vd_ndx
);
8136 offset
+= ivd
.vd_next
;
8138 while (ivd
.vd_ndx
!= (data
[cnt
+ j
] & VERSYM_VERSION
)
8139 && ivd
.vd_next
!= 0);
8141 if (ivd
.vd_ndx
== (data
[cnt
+ j
] & VERSYM_VERSION
))
8143 Elf_External_Verdaux evda
;
8144 Elf_Internal_Verdaux ivda
;
8146 ivd
.vd_aux
= BYTE_GET (evd
.vd_aux
);
8148 get_data (&evda
, file
,
8149 offset
- ivd
.vd_next
+ ivd
.vd_aux
,
8151 _("version def aux"));
8153 ivda
.vda_name
= BYTE_GET (evda
.vda_name
);
8155 if (ivda
.vda_name
>= string_sec
->sh_size
)
8156 name
= _("*invalid*");
8158 name
= strtab
+ ivda
.vda_name
;
8159 nn
+= printf ("(%s%-*s",
8161 12 - (int) strlen (name
),
8167 printf ("%*c", 18 - nn
, ' ');
8185 printf (_("\nNo version information found in this file.\n"));
8191 get_symbol_binding (unsigned int binding
)
8193 static char buff
[32];
8197 case STB_LOCAL
: return "LOCAL";
8198 case STB_GLOBAL
: return "GLOBAL";
8199 case STB_WEAK
: return "WEAK";
8201 if (binding
>= STB_LOPROC
&& binding
<= STB_HIPROC
)
8202 snprintf (buff
, sizeof (buff
), _("<processor specific>: %d"),
8204 else if (binding
>= STB_LOOS
&& binding
<= STB_HIOS
)
8206 if (binding
== STB_GNU_UNIQUE
8207 && (elf_header
.e_ident
[EI_OSABI
] == ELFOSABI_LINUX
8208 /* GNU/Linux is still using the default value 0. */
8209 || elf_header
.e_ident
[EI_OSABI
] == ELFOSABI_NONE
))
8211 snprintf (buff
, sizeof (buff
), _("<OS specific>: %d"), binding
);
8214 snprintf (buff
, sizeof (buff
), _("<unknown>: %d"), binding
);
8220 get_symbol_type (unsigned int type
)
8222 static char buff
[32];
8226 case STT_NOTYPE
: return "NOTYPE";
8227 case STT_OBJECT
: return "OBJECT";
8228 case STT_FUNC
: return "FUNC";
8229 case STT_SECTION
: return "SECTION";
8230 case STT_FILE
: return "FILE";
8231 case STT_COMMON
: return "COMMON";
8232 case STT_TLS
: return "TLS";
8233 case STT_RELC
: return "RELC";
8234 case STT_SRELC
: return "SRELC";
8236 if (type
>= STT_LOPROC
&& type
<= STT_HIPROC
)
8238 if (elf_header
.e_machine
== EM_ARM
&& type
== STT_ARM_TFUNC
)
8239 return "THUMB_FUNC";
8241 if (elf_header
.e_machine
== EM_SPARCV9
&& type
== STT_REGISTER
)
8244 if (elf_header
.e_machine
== EM_PARISC
&& type
== STT_PARISC_MILLI
)
8245 return "PARISC_MILLI";
8247 snprintf (buff
, sizeof (buff
), _("<processor specific>: %d"), type
);
8249 else if (type
>= STT_LOOS
&& type
<= STT_HIOS
)
8251 if (elf_header
.e_machine
== EM_PARISC
)
8253 if (type
== STT_HP_OPAQUE
)
8255 if (type
== STT_HP_STUB
)
8259 if (type
== STT_GNU_IFUNC
8260 && (elf_header
.e_ident
[EI_OSABI
] == ELFOSABI_LINUX
8261 /* GNU/Linux is still using the default value 0. */
8262 || elf_header
.e_ident
[EI_OSABI
] == ELFOSABI_NONE
))
8265 snprintf (buff
, sizeof (buff
), _("<OS specific>: %d"), type
);
8268 snprintf (buff
, sizeof (buff
), _("<unknown>: %d"), type
);
8274 get_symbol_visibility (unsigned int visibility
)
8278 case STV_DEFAULT
: return "DEFAULT";
8279 case STV_INTERNAL
: return "INTERNAL";
8280 case STV_HIDDEN
: return "HIDDEN";
8281 case STV_PROTECTED
: return "PROTECTED";
8287 get_mips_symbol_other (unsigned int other
)
8291 case STO_OPTIONAL
: return "OPTIONAL";
8292 case STO_MIPS16
: return "MIPS16";
8293 case STO_MIPS_PLT
: return "MIPS PLT";
8294 case STO_MIPS_PIC
: return "MIPS PIC";
8295 default: return NULL
;
8300 get_ia64_symbol_other (unsigned int other
)
8304 static char res
[32];
8308 /* Function types is for images and .STB files only. */
8309 switch (elf_header
.e_type
)
8313 switch (VMS_ST_FUNC_TYPE (other
))
8315 case VMS_SFT_CODE_ADDR
:
8316 strcat (res
, " CA");
8318 case VMS_SFT_SYMV_IDX
:
8319 strcat (res
, " VEC");
8322 strcat (res
, " FD");
8324 case VMS_SFT_RESERVE
:
8325 strcat (res
, " RSV");
8334 switch (VMS_ST_LINKAGE (other
))
8336 case VMS_STL_IGNORE
:
8337 strcat (res
, " IGN");
8339 case VMS_STL_RESERVE
:
8340 strcat (res
, " RSV");
8343 strcat (res
, " STD");
8346 strcat (res
, " LNK");
8361 get_symbol_other (unsigned int other
)
8363 const char * result
= NULL
;
8364 static char buff
[32];
8369 switch (elf_header
.e_machine
)
8372 result
= get_mips_symbol_other (other
);
8375 result
= get_ia64_symbol_other (other
);
8384 snprintf (buff
, sizeof buff
, _("<other>: %x"), other
);
8389 get_symbol_index_type (unsigned int type
)
8391 static char buff
[32];
8395 case SHN_UNDEF
: return "UND";
8396 case SHN_ABS
: return "ABS";
8397 case SHN_COMMON
: return "COM";
8399 if (type
== SHN_IA_64_ANSI_COMMON
8400 && elf_header
.e_machine
== EM_IA_64
8401 && elf_header
.e_ident
[EI_OSABI
] == ELFOSABI_HPUX
)
8403 else if ((elf_header
.e_machine
== EM_X86_64
8404 || elf_header
.e_machine
== EM_L1OM
)
8405 && type
== SHN_X86_64_LCOMMON
)
8407 else if (type
== SHN_MIPS_SCOMMON
8408 && elf_header
.e_machine
== EM_MIPS
)
8410 else if (type
== SHN_MIPS_SUNDEFINED
8411 && elf_header
.e_machine
== EM_MIPS
)
8413 else if (type
>= SHN_LOPROC
&& type
<= SHN_HIPROC
)
8414 sprintf (buff
, "PRC[0x%04x]", type
& 0xffff);
8415 else if (type
>= SHN_LOOS
&& type
<= SHN_HIOS
)
8416 sprintf (buff
, "OS [0x%04x]", type
& 0xffff);
8417 else if (type
>= SHN_LORESERVE
)
8418 sprintf (buff
, "RSV[0x%04x]", type
& 0xffff);
8420 sprintf (buff
, "%3d", type
);
8428 get_dynamic_data (FILE * file
, unsigned int number
, unsigned int ent_size
)
8430 unsigned char * e_data
;
8433 e_data
= (unsigned char *) cmalloc (number
, ent_size
);
8437 error (_("Out of memory\n"));
8441 if (fread (e_data
, ent_size
, number
, file
) != number
)
8443 error (_("Unable to read in dynamic data\n"));
8447 i_data
= (bfd_vma
*) cmalloc (number
, sizeof (*i_data
));
8451 error (_("Out of memory\n"));
8457 i_data
[number
] = byte_get (e_data
+ number
* ent_size
, ent_size
);
8465 print_dynamic_symbol (bfd_vma si
, unsigned long hn
)
8467 Elf_Internal_Sym
* psym
;
8470 psym
= dynamic_symbols
+ si
;
8472 n
= print_vma (si
, DEC_5
);
8474 fputs (" " + n
, stdout
);
8475 printf (" %3lu: ", hn
);
8476 print_vma (psym
->st_value
, LONG_HEX
);
8478 print_vma (psym
->st_size
, DEC_5
);
8480 printf (" %-7s", get_symbol_type (ELF_ST_TYPE (psym
->st_info
)));
8481 printf (" %-6s", get_symbol_binding (ELF_ST_BIND (psym
->st_info
)));
8482 printf (" %-7s", get_symbol_visibility (ELF_ST_VISIBILITY (psym
->st_other
)));
8483 /* Check to see if any other bits in the st_other field are set.
8484 Note - displaying this information disrupts the layout of the
8485 table being generated, but for the moment this case is very
8487 if (psym
->st_other
^ ELF_ST_VISIBILITY (psym
->st_other
))
8488 printf (" [%s] ", get_symbol_other (psym
->st_other
^ ELF_ST_VISIBILITY (psym
->st_other
)));
8489 printf (" %3.3s ", get_symbol_index_type (psym
->st_shndx
));
8490 if (VALID_DYNAMIC_NAME (psym
->st_name
))
8491 print_symbol (25, GET_DYNAMIC_NAME (psym
->st_name
));
8493 printf (_(" <corrupt: %14ld>"), psym
->st_name
);
8497 /* Dump the symbol table. */
8499 process_symbol_table (FILE * file
)
8501 Elf_Internal_Shdr
* section
;
8502 bfd_vma nbuckets
= 0;
8503 bfd_vma nchains
= 0;
8504 bfd_vma
* buckets
= NULL
;
8505 bfd_vma
* chains
= NULL
;
8506 bfd_vma ngnubuckets
= 0;
8507 bfd_vma
* gnubuckets
= NULL
;
8508 bfd_vma
* gnuchains
= NULL
;
8509 bfd_vma gnusymidx
= 0;
8511 if (!do_syms
&& !do_dyn_syms
&& !do_histogram
)
8514 if (dynamic_info
[DT_HASH
]
8516 || (do_using_dynamic
8518 && dynamic_strings
!= NULL
)))
8520 unsigned char nb
[8];
8521 unsigned char nc
[8];
8522 int hash_ent_size
= 4;
8524 if ((elf_header
.e_machine
== EM_ALPHA
8525 || elf_header
.e_machine
== EM_S390
8526 || elf_header
.e_machine
== EM_S390_OLD
)
8527 && elf_header
.e_ident
[EI_CLASS
] == ELFCLASS64
)
8531 (archive_file_offset
8532 + offset_from_vma (file
, dynamic_info
[DT_HASH
],
8533 sizeof nb
+ sizeof nc
)),
8536 error (_("Unable to seek to start of dynamic information\n"));
8540 if (fread (nb
, hash_ent_size
, 1, file
) != 1)
8542 error (_("Failed to read in number of buckets\n"));
8546 if (fread (nc
, hash_ent_size
, 1, file
) != 1)
8548 error (_("Failed to read in number of chains\n"));
8552 nbuckets
= byte_get (nb
, hash_ent_size
);
8553 nchains
= byte_get (nc
, hash_ent_size
);
8555 buckets
= get_dynamic_data (file
, nbuckets
, hash_ent_size
);
8556 chains
= get_dynamic_data (file
, nchains
, hash_ent_size
);
8559 if (buckets
== NULL
|| chains
== NULL
)
8561 if (do_using_dynamic
)
8572 if (dynamic_info_DT_GNU_HASH
8574 || (do_using_dynamic
8576 && dynamic_strings
!= NULL
)))
8578 unsigned char nb
[16];
8579 bfd_vma i
, maxchain
= 0xffffffff, bitmaskwords
;
8580 bfd_vma buckets_vma
;
8583 (archive_file_offset
8584 + offset_from_vma (file
, dynamic_info_DT_GNU_HASH
,
8588 error (_("Unable to seek to start of dynamic information\n"));
8592 if (fread (nb
, 16, 1, file
) != 1)
8594 error (_("Failed to read in number of buckets\n"));
8598 ngnubuckets
= byte_get (nb
, 4);
8599 gnusymidx
= byte_get (nb
+ 4, 4);
8600 bitmaskwords
= byte_get (nb
+ 8, 4);
8601 buckets_vma
= dynamic_info_DT_GNU_HASH
+ 16;
8603 buckets_vma
+= bitmaskwords
* 4;
8605 buckets_vma
+= bitmaskwords
* 8;
8608 (archive_file_offset
8609 + offset_from_vma (file
, buckets_vma
, 4)),
8612 error (_("Unable to seek to start of dynamic information\n"));
8616 gnubuckets
= get_dynamic_data (file
, ngnubuckets
, 4);
8618 if (gnubuckets
== NULL
)
8621 for (i
= 0; i
< ngnubuckets
; i
++)
8622 if (gnubuckets
[i
] != 0)
8624 if (gnubuckets
[i
] < gnusymidx
)
8627 if (maxchain
== 0xffffffff || gnubuckets
[i
] > maxchain
)
8628 maxchain
= gnubuckets
[i
];
8631 if (maxchain
== 0xffffffff)
8634 maxchain
-= gnusymidx
;
8637 (archive_file_offset
8638 + offset_from_vma (file
, buckets_vma
8639 + 4 * (ngnubuckets
+ maxchain
), 4)),
8642 error (_("Unable to seek to start of dynamic information\n"));
8648 if (fread (nb
, 4, 1, file
) != 1)
8650 error (_("Failed to determine last chain length\n"));
8654 if (maxchain
+ 1 == 0)
8659 while ((byte_get (nb
, 4) & 1) == 0);
8662 (archive_file_offset
8663 + offset_from_vma (file
, buckets_vma
+ 4 * ngnubuckets
, 4)),
8666 error (_("Unable to seek to start of dynamic information\n"));
8670 gnuchains
= get_dynamic_data (file
, maxchain
, 4);
8673 if (gnuchains
== NULL
)
8678 if (do_using_dynamic
)
8683 if ((dynamic_info
[DT_HASH
] || dynamic_info_DT_GNU_HASH
)
8686 && dynamic_strings
!= NULL
)
8690 if (dynamic_info
[DT_HASH
])
8694 printf (_("\nSymbol table for image:\n"));
8696 printf (_(" Num Buc: Value Size Type Bind Vis Ndx Name\n"));
8698 printf (_(" Num Buc: Value Size Type Bind Vis Ndx Name\n"));
8700 for (hn
= 0; hn
< nbuckets
; hn
++)
8705 for (si
= buckets
[hn
]; si
< nchains
&& si
> 0; si
= chains
[si
])
8706 print_dynamic_symbol (si
, hn
);
8710 if (dynamic_info_DT_GNU_HASH
)
8712 printf (_("\nSymbol table of `.gnu.hash' for image:\n"));
8714 printf (_(" Num Buc: Value Size Type Bind Vis Ndx Name\n"));
8716 printf (_(" Num Buc: Value Size Type Bind Vis Ndx Name\n"));
8718 for (hn
= 0; hn
< ngnubuckets
; ++hn
)
8719 if (gnubuckets
[hn
] != 0)
8721 bfd_vma si
= gnubuckets
[hn
];
8722 bfd_vma off
= si
- gnusymidx
;
8726 print_dynamic_symbol (si
, hn
);
8729 while ((gnuchains
[off
++] & 1) == 0);
8733 else if (do_dyn_syms
|| (do_syms
&& !do_using_dynamic
))
8737 for (i
= 0, section
= section_headers
;
8738 i
< elf_header
.e_shnum
;
8742 char * strtab
= NULL
;
8743 unsigned long int strtab_size
= 0;
8744 Elf_Internal_Sym
* symtab
;
8745 Elf_Internal_Sym
* psym
;
8747 if ((section
->sh_type
!= SHT_SYMTAB
8748 && section
->sh_type
!= SHT_DYNSYM
)
8750 && section
->sh_type
== SHT_SYMTAB
))
8753 if (section
->sh_entsize
== 0)
8755 printf (_("\nSymbol table '%s' has a sh_entsize of zero!\n"),
8756 SECTION_NAME (section
));
8760 printf (_("\nSymbol table '%s' contains %lu entries:\n"),
8761 SECTION_NAME (section
),
8762 (unsigned long) (section
->sh_size
/ section
->sh_entsize
));
8765 printf (_(" Num: Value Size Type Bind Vis Ndx Name\n"));
8767 printf (_(" Num: Value Size Type Bind Vis Ndx Name\n"));
8769 symtab
= GET_ELF_SYMBOLS (file
, section
);
8773 if (section
->sh_link
== elf_header
.e_shstrndx
)
8775 strtab
= string_table
;
8776 strtab_size
= string_table_length
;
8778 else if (section
->sh_link
< elf_header
.e_shnum
)
8780 Elf_Internal_Shdr
* string_sec
;
8782 string_sec
= section_headers
+ section
->sh_link
;
8784 strtab
= (char *) get_data (NULL
, file
, string_sec
->sh_offset
,
8785 1, string_sec
->sh_size
,
8787 strtab_size
= strtab
!= NULL
? string_sec
->sh_size
: 0;
8790 for (si
= 0, psym
= symtab
;
8791 si
< section
->sh_size
/ section
->sh_entsize
;
8794 printf ("%6d: ", si
);
8795 print_vma (psym
->st_value
, LONG_HEX
);
8797 print_vma (psym
->st_size
, DEC_5
);
8798 printf (" %-7s", get_symbol_type (ELF_ST_TYPE (psym
->st_info
)));
8799 printf (" %-6s", get_symbol_binding (ELF_ST_BIND (psym
->st_info
)));
8800 printf (" %-7s", get_symbol_visibility (ELF_ST_VISIBILITY (psym
->st_other
)));
8801 /* Check to see if any other bits in the st_other field are set.
8802 Note - displaying this information disrupts the layout of the
8803 table being generated, but for the moment this case is very rare. */
8804 if (psym
->st_other
^ ELF_ST_VISIBILITY (psym
->st_other
))
8805 printf (" [%s] ", get_symbol_other (psym
->st_other
^ ELF_ST_VISIBILITY (psym
->st_other
)));
8806 printf (" %4s ", get_symbol_index_type (psym
->st_shndx
));
8807 print_symbol (25, psym
->st_name
< strtab_size
8808 ? strtab
+ psym
->st_name
: _("<corrupt>"));
8810 if (section
->sh_type
== SHT_DYNSYM
&&
8811 version_info
[DT_VERSIONTAGIDX (DT_VERSYM
)] != 0)
8813 unsigned char data
[2];
8814 unsigned short vers_data
;
8815 unsigned long offset
;
8819 offset
= offset_from_vma
8820 (file
, version_info
[DT_VERSIONTAGIDX (DT_VERSYM
)],
8821 sizeof data
+ si
* sizeof (vers_data
));
8823 get_data (&data
, file
, offset
+ si
* sizeof (vers_data
),
8824 sizeof (data
), 1, _("version data"));
8826 vers_data
= byte_get (data
, 2);
8828 is_nobits
= (psym
->st_shndx
< elf_header
.e_shnum
8829 && section_headers
[psym
->st_shndx
].sh_type
8832 check_def
= (psym
->st_shndx
!= SHN_UNDEF
);
8834 if ((vers_data
& VERSYM_HIDDEN
) || vers_data
> 1)
8836 if (version_info
[DT_VERSIONTAGIDX (DT_VERNEED
)]
8837 && (is_nobits
|| ! check_def
))
8839 Elf_External_Verneed evn
;
8840 Elf_Internal_Verneed ivn
;
8841 Elf_Internal_Vernaux ivna
;
8843 /* We must test both. */
8844 offset
= offset_from_vma
8845 (file
, version_info
[DT_VERSIONTAGIDX (DT_VERNEED
)],
8850 unsigned long vna_off
;
8852 get_data (&evn
, file
, offset
, sizeof (evn
), 1,
8855 ivn
.vn_aux
= BYTE_GET (evn
.vn_aux
);
8856 ivn
.vn_next
= BYTE_GET (evn
.vn_next
);
8858 vna_off
= offset
+ ivn
.vn_aux
;
8862 Elf_External_Vernaux evna
;
8864 get_data (&evna
, file
, vna_off
,
8866 _("version need aux (3)"));
8868 ivna
.vna_other
= BYTE_GET (evna
.vna_other
);
8869 ivna
.vna_next
= BYTE_GET (evna
.vna_next
);
8870 ivna
.vna_name
= BYTE_GET (evna
.vna_name
);
8872 vna_off
+= ivna
.vna_next
;
8874 while (ivna
.vna_other
!= vers_data
8875 && ivna
.vna_next
!= 0);
8877 if (ivna
.vna_other
== vers_data
)
8880 offset
+= ivn
.vn_next
;
8882 while (ivn
.vn_next
!= 0);
8884 if (ivna
.vna_other
== vers_data
)
8887 ivna
.vna_name
< strtab_size
8888 ? strtab
+ ivna
.vna_name
: _("<corrupt>"),
8892 else if (! is_nobits
)
8893 error (_("bad dynamic symbol\n"));
8900 if (vers_data
!= 0x8001
8901 && version_info
[DT_VERSIONTAGIDX (DT_VERDEF
)])
8903 Elf_Internal_Verdef ivd
;
8904 Elf_Internal_Verdaux ivda
;
8905 Elf_External_Verdaux evda
;
8908 off
= offset_from_vma
8910 version_info
[DT_VERSIONTAGIDX (DT_VERDEF
)],
8911 sizeof (Elf_External_Verdef
));
8915 Elf_External_Verdef evd
;
8917 get_data (&evd
, file
, off
, sizeof (evd
),
8918 1, _("version def"));
8920 ivd
.vd_ndx
= BYTE_GET (evd
.vd_ndx
);
8921 ivd
.vd_aux
= BYTE_GET (evd
.vd_aux
);
8922 ivd
.vd_next
= BYTE_GET (evd
.vd_next
);
8926 while (ivd
.vd_ndx
!= (vers_data
& VERSYM_VERSION
)
8927 && ivd
.vd_next
!= 0);
8932 get_data (&evda
, file
, off
, sizeof (evda
),
8933 1, _("version def aux"));
8935 ivda
.vda_name
= BYTE_GET (evda
.vda_name
);
8937 if (psym
->st_name
!= ivda
.vda_name
)
8938 printf ((vers_data
& VERSYM_HIDDEN
)
8940 ivda
.vda_name
< strtab_size
8941 ? strtab
+ ivda
.vda_name
: _("<corrupt>"));
8951 if (strtab
!= string_table
)
8957 (_("\nDynamic symbol information is not available for displaying symbols.\n"));
8959 if (do_histogram
&& buckets
!= NULL
)
8961 unsigned long * lengths
;
8962 unsigned long * counts
;
8965 unsigned long maxlength
= 0;
8966 unsigned long nzero_counts
= 0;
8967 unsigned long nsyms
= 0;
8969 printf (_("\nHistogram for bucket list length (total of %lu buckets):\n"),
8970 (unsigned long) nbuckets
);
8971 printf (_(" Length Number %% of total Coverage\n"));
8973 lengths
= (unsigned long *) calloc (nbuckets
, sizeof (*lengths
));
8974 if (lengths
== NULL
)
8976 error (_("Out of memory\n"));
8979 for (hn
= 0; hn
< nbuckets
; ++hn
)
8981 for (si
= buckets
[hn
]; si
> 0 && si
< nchains
; si
= chains
[si
])
8984 if (maxlength
< ++lengths
[hn
])
8989 counts
= (unsigned long *) calloc (maxlength
+ 1, sizeof (*counts
));
8992 error (_("Out of memory\n"));
8996 for (hn
= 0; hn
< nbuckets
; ++hn
)
8997 ++counts
[lengths
[hn
]];
9002 printf (" 0 %-10lu (%5.1f%%)\n",
9003 counts
[0], (counts
[0] * 100.0) / nbuckets
);
9004 for (i
= 1; i
<= maxlength
; ++i
)
9006 nzero_counts
+= counts
[i
] * i
;
9007 printf ("%7lu %-10lu (%5.1f%%) %5.1f%%\n",
9008 i
, counts
[i
], (counts
[i
] * 100.0) / nbuckets
,
9009 (nzero_counts
* 100.0) / nsyms
);
9017 if (buckets
!= NULL
)
9023 if (do_histogram
&& gnubuckets
!= NULL
)
9025 unsigned long * lengths
;
9026 unsigned long * counts
;
9028 unsigned long maxlength
= 0;
9029 unsigned long nzero_counts
= 0;
9030 unsigned long nsyms
= 0;
9032 lengths
= (unsigned long *) calloc (ngnubuckets
, sizeof (*lengths
));
9033 if (lengths
== NULL
)
9035 error (_("Out of memory\n"));
9039 printf (_("\nHistogram for `.gnu.hash' bucket list length (total of %lu buckets):\n"),
9040 (unsigned long) ngnubuckets
);
9041 printf (_(" Length Number %% of total Coverage\n"));
9043 for (hn
= 0; hn
< ngnubuckets
; ++hn
)
9044 if (gnubuckets
[hn
] != 0)
9046 bfd_vma off
, length
= 1;
9048 for (off
= gnubuckets
[hn
] - gnusymidx
;
9049 (gnuchains
[off
] & 1) == 0; ++off
)
9051 lengths
[hn
] = length
;
9052 if (length
> maxlength
)
9057 counts
= (unsigned long *) calloc (maxlength
+ 1, sizeof (*counts
));
9060 error (_("Out of memory\n"));
9064 for (hn
= 0; hn
< ngnubuckets
; ++hn
)
9065 ++counts
[lengths
[hn
]];
9067 if (ngnubuckets
> 0)
9070 printf (" 0 %-10lu (%5.1f%%)\n",
9071 counts
[0], (counts
[0] * 100.0) / ngnubuckets
);
9072 for (j
= 1; j
<= maxlength
; ++j
)
9074 nzero_counts
+= counts
[j
] * j
;
9075 printf ("%7lu %-10lu (%5.1f%%) %5.1f%%\n",
9076 j
, counts
[j
], (counts
[j
] * 100.0) / ngnubuckets
,
9077 (nzero_counts
* 100.0) / nsyms
);
9091 process_syminfo (FILE * file ATTRIBUTE_UNUSED
)
9095 if (dynamic_syminfo
== NULL
9097 /* No syminfo, this is ok. */
9100 /* There better should be a dynamic symbol section. */
9101 if (dynamic_symbols
== NULL
|| dynamic_strings
== NULL
)
9105 printf (_("\nDynamic info segment at offset 0x%lx contains %d entries:\n"),
9106 dynamic_syminfo_offset
, dynamic_syminfo_nent
);
9108 printf (_(" Num: Name BoundTo Flags\n"));
9109 for (i
= 0; i
< dynamic_syminfo_nent
; ++i
)
9111 unsigned short int flags
= dynamic_syminfo
[i
].si_flags
;
9113 printf ("%4d: ", i
);
9114 if (VALID_DYNAMIC_NAME (dynamic_symbols
[i
].st_name
))
9115 print_symbol (30, GET_DYNAMIC_NAME (dynamic_symbols
[i
].st_name
));
9117 printf (_("<corrupt: %19ld>"), dynamic_symbols
[i
].st_name
);
9120 switch (dynamic_syminfo
[i
].si_boundto
)
9122 case SYMINFO_BT_SELF
:
9123 fputs ("SELF ", stdout
);
9125 case SYMINFO_BT_PARENT
:
9126 fputs ("PARENT ", stdout
);
9129 if (dynamic_syminfo
[i
].si_boundto
> 0
9130 && dynamic_syminfo
[i
].si_boundto
< dynamic_nent
9131 && VALID_DYNAMIC_NAME (dynamic_section
[dynamic_syminfo
[i
].si_boundto
].d_un
.d_val
))
9133 print_symbol (10, GET_DYNAMIC_NAME (dynamic_section
[dynamic_syminfo
[i
].si_boundto
].d_un
.d_val
));
9137 printf ("%-10d ", dynamic_syminfo
[i
].si_boundto
);
9141 if (flags
& SYMINFO_FLG_DIRECT
)
9143 if (flags
& SYMINFO_FLG_PASSTHRU
)
9144 printf (" PASSTHRU");
9145 if (flags
& SYMINFO_FLG_COPY
)
9147 if (flags
& SYMINFO_FLG_LAZYLOAD
)
9148 printf (" LAZYLOAD");
9156 /* Check to see if the given reloc needs to be handled in a target specific
9157 manner. If so then process the reloc and return TRUE otherwise return
9161 target_specific_reloc_handling (Elf_Internal_Rela
* reloc
,
9162 unsigned char * start
,
9163 Elf_Internal_Sym
* symtab
)
9165 unsigned int reloc_type
= get_reloc_type (reloc
->r_info
);
9167 switch (elf_header
.e_machine
)
9170 case EM_CYGNUS_MN10300
:
9172 static Elf_Internal_Sym
* saved_sym
= NULL
;
9176 case 34: /* R_MN10300_ALIGN */
9178 case 33: /* R_MN10300_SYM_DIFF */
9179 saved_sym
= symtab
+ get_reloc_symindex (reloc
->r_info
);
9181 case 1: /* R_MN10300_32 */
9182 case 2: /* R_MN10300_16 */
9183 if (saved_sym
!= NULL
)
9187 value
= reloc
->r_addend
9188 + (symtab
[get_reloc_symindex (reloc
->r_info
)].st_value
9189 - saved_sym
->st_value
);
9191 byte_put (start
+ reloc
->r_offset
, value
, reloc_type
== 1 ? 4 : 2);
9198 if (saved_sym
!= NULL
)
9199 error (_("Unhandled MN10300 reloc type found after SYM_DIFF reloc"));
9209 /* Returns TRUE iff RELOC_TYPE is a 32-bit absolute RELA relocation used in
9210 DWARF debug sections. This is a target specific test. Note - we do not
9211 go through the whole including-target-headers-multiple-times route, (as
9212 we have already done with <elf/h8.h>) because this would become very
9213 messy and even then this function would have to contain target specific
9214 information (the names of the relocs instead of their numeric values).
9215 FIXME: This is not the correct way to solve this problem. The proper way
9216 is to have target specific reloc sizing and typing functions created by
9217 the reloc-macros.h header, in the same way that it already creates the
9218 reloc naming functions. */
9221 is_32bit_abs_reloc (unsigned int reloc_type
)
9223 switch (elf_header
.e_machine
)
9227 return reloc_type
== 1; /* R_386_32. */
9229 return reloc_type
== 1; /* R_68K_32. */
9231 return reloc_type
== 1; /* R_860_32. */
9233 return reloc_type
== 2; /* R_960_32. */
9235 return reloc_type
== 1; /* R_ALPHA_REFLONG. */
9237 return reloc_type
== 1; /* R_ARC_32. */
9239 return reloc_type
== 2; /* R_ARM_ABS32 */
9242 return reloc_type
== 1;
9244 return reloc_type
== 0x12; /* R_byte4_data. */
9246 return reloc_type
== 3; /* R_CRIS_32. */
9249 return reloc_type
== 3; /* R_CR16_NUM32. */
9251 return reloc_type
== 15; /* R_CRX_NUM32. */
9253 return reloc_type
== 1;
9254 case EM_CYGNUS_D10V
:
9256 return reloc_type
== 6; /* R_D10V_32. */
9257 case EM_CYGNUS_D30V
:
9259 return reloc_type
== 12; /* R_D30V_32_NORMAL. */
9261 return reloc_type
== 3; /* R_DLX_RELOC_32. */
9262 case EM_CYGNUS_FR30
:
9264 return reloc_type
== 3; /* R_FR30_32. */
9268 return reloc_type
== 1; /* R_H8_DIR32. */
9270 return reloc_type
== 0x65; /* R_IA64_SECREL32LSB. */
9273 return reloc_type
== 2; /* R_IP2K_32. */
9275 return reloc_type
== 2; /* R_IQ2000_32. */
9276 case EM_LATTICEMICO32
:
9277 return reloc_type
== 3; /* R_LM32_32. */
9280 return reloc_type
== 3; /* R_M32C_32. */
9282 return reloc_type
== 34; /* R_M32R_32_RELA. */
9284 return reloc_type
== 1; /* R_MCORE_ADDR32. */
9286 return reloc_type
== 4; /* R_MEP_32. */
9288 return reloc_type
== 1; /* R_MICROBLAZE_32. */
9290 return reloc_type
== 2; /* R_MIPS_32. */
9292 return reloc_type
== 4; /* R_MMIX_32. */
9293 case EM_CYGNUS_MN10200
:
9295 return reloc_type
== 1; /* R_MN10200_32. */
9296 case EM_CYGNUS_MN10300
:
9298 return reloc_type
== 1; /* R_MN10300_32. */
9300 return reloc_type
== 1; /* R_MOXIE_32. */
9303 return reloc_type
== 1; /* R_MSP43_32. */
9305 return reloc_type
== 2; /* R_MT_32. */
9306 case EM_ALTERA_NIOS2
:
9308 return reloc_type
== 1; /* R_NIOS_32. */
9311 return reloc_type
== 1; /* R_OR32_32. */
9313 return (reloc_type
== 1 /* R_PARISC_DIR32. */
9314 || reloc_type
== 41); /* R_PARISC_SECREL32. */
9317 return reloc_type
== 1; /* R_PJ_DATA_DIR32. */
9319 return reloc_type
== 1; /* R_PPC64_ADDR32. */
9321 return reloc_type
== 1; /* R_PPC_ADDR32. */
9323 return reloc_type
== 1; /* R_RX_DIR32. */
9325 return reloc_type
== 1; /* R_I370_ADDR31. */
9328 return reloc_type
== 4; /* R_S390_32. */
9330 return reloc_type
== 8; /* R_SCORE_ABS32. */
9332 return reloc_type
== 1; /* R_SH_DIR32. */
9333 case EM_SPARC32PLUS
:
9336 return reloc_type
== 3 /* R_SPARC_32. */
9337 || reloc_type
== 23; /* R_SPARC_UA32. */
9339 return reloc_type
== 6; /* R_SPU_ADDR32 */
9341 return reloc_type
== 1; /* R_C6000_ABS32. */
9342 case EM_CYGNUS_V850
:
9344 return reloc_type
== 6; /* R_V850_ABS32. */
9346 return reloc_type
== 1; /* R_VAX_32. */
9349 return reloc_type
== 10; /* R_X86_64_32. */
9352 return reloc_type
== 3; /* R_XC16C_ABS_32. */
9354 return reloc_type
== 1; /* R_XSTROMY16_32. */
9357 return reloc_type
== 1; /* R_XTENSA_32. */
9359 error (_("Missing knowledge of 32-bit reloc types used in DWARF sections of machine number %d\n"),
9360 elf_header
.e_machine
);
9365 /* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
9366 a 32-bit pc-relative RELA relocation used in DWARF debug sections. */
9369 is_32bit_pcrel_reloc (unsigned int reloc_type
)
9371 switch (elf_header
.e_machine
)
9375 return reloc_type
== 2; /* R_386_PC32. */
9377 return reloc_type
== 4; /* R_68K_PC32. */
9379 return reloc_type
== 10; /* R_ALPHA_SREL32. */
9381 return reloc_type
== 3; /* R_ARM_REL32 */
9383 return reloc_type
== 2; /* R_MICROBLAZE_32_PCREL. */
9385 return reloc_type
== 9; /* R_PARISC_PCREL32. */
9387 return reloc_type
== 26; /* R_PPC_REL32. */
9389 return reloc_type
== 26; /* R_PPC64_REL32. */
9392 return reloc_type
== 5; /* R_390_PC32. */
9394 return reloc_type
== 2; /* R_SH_REL32. */
9395 case EM_SPARC32PLUS
:
9398 return reloc_type
== 6; /* R_SPARC_DISP32. */
9400 return reloc_type
== 13; /* R_SPU_REL32. */
9403 return reloc_type
== 2; /* R_X86_64_PC32. */
9406 return reloc_type
== 14; /* R_XTENSA_32_PCREL. */
9408 /* Do not abort or issue an error message here. Not all targets use
9409 pc-relative 32-bit relocs in their DWARF debug information and we
9410 have already tested for target coverage in is_32bit_abs_reloc. A
9411 more helpful warning message will be generated by apply_relocations
9412 anyway, so just return. */
9417 /* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
9418 a 64-bit absolute RELA relocation used in DWARF debug sections. */
9421 is_64bit_abs_reloc (unsigned int reloc_type
)
9423 switch (elf_header
.e_machine
)
9426 return reloc_type
== 2; /* R_ALPHA_REFQUAD. */
9428 return reloc_type
== 0x27; /* R_IA64_DIR64LSB. */
9430 return reloc_type
== 80; /* R_PARISC_DIR64. */
9432 return reloc_type
== 38; /* R_PPC64_ADDR64. */
9433 case EM_SPARC32PLUS
:
9436 return reloc_type
== 54; /* R_SPARC_UA64. */
9439 return reloc_type
== 1; /* R_X86_64_64. */
9442 return reloc_type
== 22; /* R_S390_64 */
9444 return reloc_type
== 18; /* R_MIPS_64 */
9450 /* Like is_32bit_pcrel_reloc except that it returns TRUE iff RELOC_TYPE is
9451 a 64-bit pc-relative RELA relocation used in DWARF debug sections. */
9454 is_64bit_pcrel_reloc (unsigned int reloc_type
)
9456 switch (elf_header
.e_machine
)
9459 return reloc_type
== 11; /* R_ALPHA_SREL64 */
9461 return reloc_type
== 0x4f; /* R_IA64_PCREL64LSB */
9463 return reloc_type
== 72; /* R_PARISC_PCREL64 */
9465 return reloc_type
== 44; /* R_PPC64_REL64 */
9466 case EM_SPARC32PLUS
:
9469 return reloc_type
== 46; /* R_SPARC_DISP64 */
9472 return reloc_type
== 24; /* R_X86_64_PC64 */
9475 return reloc_type
== 23; /* R_S390_PC64 */
9481 /* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
9482 a 24-bit absolute RELA relocation used in DWARF debug sections. */
9485 is_24bit_abs_reloc (unsigned int reloc_type
)
9487 switch (elf_header
.e_machine
)
9489 case EM_CYGNUS_MN10200
:
9491 return reloc_type
== 4; /* R_MN10200_24. */
9497 /* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
9498 a 16-bit absolute RELA relocation used in DWARF debug sections. */
9501 is_16bit_abs_reloc (unsigned int reloc_type
)
9503 switch (elf_header
.e_machine
)
9507 return reloc_type
== 4; /* R_AVR_16. */
9508 case EM_CYGNUS_D10V
:
9510 return reloc_type
== 3; /* R_D10V_16. */
9514 return reloc_type
== R_H8_DIR16
;
9517 return reloc_type
== 1; /* R_IP2K_16. */
9520 return reloc_type
== 1; /* R_M32C_16 */
9523 return reloc_type
== 5; /* R_MSP430_16_BYTE. */
9524 case EM_ALTERA_NIOS2
:
9526 return reloc_type
== 9; /* R_NIOS_16. */
9528 return reloc_type
== 2; /* R_C6000_ABS16. */
9531 return reloc_type
== 2; /* R_XC16C_ABS_16. */
9537 /* Returns TRUE iff RELOC_TYPE is a NONE relocation used for discarded
9538 relocation entries (possibly formerly used for SHT_GROUP sections). */
9541 is_none_reloc (unsigned int reloc_type
)
9543 switch (elf_header
.e_machine
)
9545 case EM_68K
: /* R_68K_NONE. */
9546 case EM_386
: /* R_386_NONE. */
9547 case EM_SPARC32PLUS
:
9549 case EM_SPARC
: /* R_SPARC_NONE. */
9550 case EM_MIPS
: /* R_MIPS_NONE. */
9551 case EM_PARISC
: /* R_PARISC_NONE. */
9552 case EM_ALPHA
: /* R_ALPHA_NONE. */
9553 case EM_PPC
: /* R_PPC_NONE. */
9554 case EM_PPC64
: /* R_PPC64_NONE. */
9555 case EM_ARM
: /* R_ARM_NONE. */
9556 case EM_IA_64
: /* R_IA64_NONE. */
9557 case EM_SH
: /* R_SH_NONE. */
9559 case EM_S390
: /* R_390_NONE. */
9560 case EM_CRIS
: /* R_CRIS_NONE. */
9561 case EM_X86_64
: /* R_X86_64_NONE. */
9562 case EM_L1OM
: /* R_X86_64_NONE. */
9563 case EM_MN10300
: /* R_MN10300_NONE. */
9564 case EM_MOXIE
: /* R_MOXIE_NONE. */
9565 case EM_M32R
: /* R_M32R_NONE. */
9566 case EM_TI_C6000
:/* R_C6000_NONE. */
9568 case EM_C166
: /* R_XC16X_NONE. */
9569 return reloc_type
== 0;
9572 return (reloc_type
== 0 /* R_XTENSA_NONE. */
9573 || reloc_type
== 17 /* R_XTENSA_DIFF8. */
9574 || reloc_type
== 18 /* R_XTENSA_DIFF16. */
9575 || reloc_type
== 19 /* R_XTENSA_DIFF32. */);
9580 /* Apply relocations to a section.
9581 Note: So far support has been added only for those relocations
9582 which can be found in debug sections.
9583 FIXME: Add support for more relocations ? */
9586 apply_relocations (void * file
,
9587 Elf_Internal_Shdr
* section
,
9588 unsigned char * start
)
9590 Elf_Internal_Shdr
* relsec
;
9591 unsigned char * end
= start
+ section
->sh_size
;
9593 if (elf_header
.e_type
!= ET_REL
)
9596 /* Find the reloc section associated with the section. */
9597 for (relsec
= section_headers
;
9598 relsec
< section_headers
+ elf_header
.e_shnum
;
9601 bfd_boolean is_rela
;
9602 unsigned long num_relocs
;
9603 Elf_Internal_Rela
* relocs
;
9604 Elf_Internal_Rela
* rp
;
9605 Elf_Internal_Shdr
* symsec
;
9606 Elf_Internal_Sym
* symtab
;
9607 Elf_Internal_Sym
* sym
;
9609 if ((relsec
->sh_type
!= SHT_RELA
&& relsec
->sh_type
!= SHT_REL
)
9610 || relsec
->sh_info
>= elf_header
.e_shnum
9611 || section_headers
+ relsec
->sh_info
!= section
9612 || relsec
->sh_size
== 0
9613 || relsec
->sh_link
>= elf_header
.e_shnum
)
9616 is_rela
= relsec
->sh_type
== SHT_RELA
;
9620 if (!slurp_rela_relocs ((FILE *) file
, relsec
->sh_offset
,
9621 relsec
->sh_size
, & relocs
, & num_relocs
))
9626 if (!slurp_rel_relocs ((FILE *) file
, relsec
->sh_offset
,
9627 relsec
->sh_size
, & relocs
, & num_relocs
))
9631 /* SH uses RELA but uses in place value instead of the addend field. */
9632 if (elf_header
.e_machine
== EM_SH
)
9635 symsec
= section_headers
+ relsec
->sh_link
;
9636 symtab
= GET_ELF_SYMBOLS ((FILE *) file
, symsec
);
9638 for (rp
= relocs
; rp
< relocs
+ num_relocs
; ++rp
)
9641 unsigned int reloc_type
;
9642 unsigned int reloc_size
;
9643 unsigned char * rloc
;
9645 reloc_type
= get_reloc_type (rp
->r_info
);
9647 if (target_specific_reloc_handling (rp
, start
, symtab
))
9649 else if (is_none_reloc (reloc_type
))
9651 else if (is_32bit_abs_reloc (reloc_type
)
9652 || is_32bit_pcrel_reloc (reloc_type
))
9654 else if (is_64bit_abs_reloc (reloc_type
)
9655 || is_64bit_pcrel_reloc (reloc_type
))
9657 else if (is_24bit_abs_reloc (reloc_type
))
9659 else if (is_16bit_abs_reloc (reloc_type
))
9663 warn (_("unable to apply unsupported reloc type %d to section %s\n"),
9664 reloc_type
, SECTION_NAME (section
));
9668 rloc
= start
+ rp
->r_offset
;
9669 if ((rloc
+ reloc_size
) > end
)
9671 warn (_("skipping invalid relocation offset 0x%lx in section %s\n"),
9672 (unsigned long) rp
->r_offset
,
9673 SECTION_NAME (section
));
9677 sym
= symtab
+ get_reloc_symindex (rp
->r_info
);
9679 /* If the reloc has a symbol associated with it,
9680 make sure that it is of an appropriate type.
9682 Relocations against symbols without type can happen.
9683 Gcc -feliminate-dwarf2-dups may generate symbols
9684 without type for debug info.
9686 Icc generates relocations against function symbols
9687 instead of local labels.
9689 Relocations against object symbols can happen, eg when
9690 referencing a global array. For an example of this see
9691 the _clz.o binary in libgcc.a. */
9693 && ELF_ST_TYPE (sym
->st_info
) > STT_SECTION
)
9695 warn (_("skipping unexpected symbol type %s in %ld'th relocation in section %s\n"),
9696 get_symbol_type (ELF_ST_TYPE (sym
->st_info
)),
9697 (long int)(rp
- relocs
),
9698 SECTION_NAME (relsec
));
9704 addend
+= rp
->r_addend
;
9705 /* R_XTENSA_32, R_PJ_DATA_DIR32 and R_D30V_32_NORMAL are
9708 || (elf_header
.e_machine
== EM_XTENSA
9710 || ((elf_header
.e_machine
== EM_PJ
9711 || elf_header
.e_machine
== EM_PJ_OLD
)
9713 || ((elf_header
.e_machine
== EM_D30V
9714 || elf_header
.e_machine
== EM_CYGNUS_D30V
)
9715 && reloc_type
== 12))
9716 addend
+= byte_get (rloc
, reloc_size
);
9718 if (is_32bit_pcrel_reloc (reloc_type
)
9719 || is_64bit_pcrel_reloc (reloc_type
))
9721 /* On HPPA, all pc-relative relocations are biased by 8. */
9722 if (elf_header
.e_machine
== EM_PARISC
)
9724 byte_put (rloc
, (addend
+ sym
->st_value
) - rp
->r_offset
,
9728 byte_put (rloc
, addend
+ sym
->st_value
, reloc_size
);
9737 #ifdef SUPPORT_DISASSEMBLY
9739 disassemble_section (Elf_Internal_Shdr
* section
, FILE * file
)
9741 printf (_("\nAssembly dump of section %s\n"),
9742 SECTION_NAME (section
));
9744 /* XXX -- to be done --- XXX */
9750 /* Reads in the contents of SECTION from FILE, returning a pointer
9751 to a malloc'ed buffer or NULL if something went wrong. */
9754 get_section_contents (Elf_Internal_Shdr
* section
, FILE * file
)
9756 bfd_size_type num_bytes
;
9758 num_bytes
= section
->sh_size
;
9760 if (num_bytes
== 0 || section
->sh_type
== SHT_NOBITS
)
9762 printf (_("\nSection '%s' has no data to dump.\n"),
9763 SECTION_NAME (section
));
9767 return (char *) get_data (NULL
, file
, section
->sh_offset
, 1, num_bytes
,
9768 _("section contents"));
9773 dump_section_as_strings (Elf_Internal_Shdr
* section
, FILE * file
)
9775 Elf_Internal_Shdr
* relsec
;
9776 bfd_size_type num_bytes
;
9780 char * name
= SECTION_NAME (section
);
9781 bfd_boolean some_strings_shown
;
9783 start
= get_section_contents (section
, file
);
9787 printf (_("\nString dump of section '%s':\n"), name
);
9789 /* If the section being dumped has relocations against it the user might
9790 be expecting these relocations to have been applied. Check for this
9791 case and issue a warning message in order to avoid confusion.
9792 FIXME: Maybe we ought to have an option that dumps a section with
9794 for (relsec
= section_headers
;
9795 relsec
< section_headers
+ elf_header
.e_shnum
;
9798 if ((relsec
->sh_type
!= SHT_RELA
&& relsec
->sh_type
!= SHT_REL
)
9799 || relsec
->sh_info
>= elf_header
.e_shnum
9800 || section_headers
+ relsec
->sh_info
!= section
9801 || relsec
->sh_size
== 0
9802 || relsec
->sh_link
>= elf_header
.e_shnum
)
9805 printf (_(" Note: This section has relocations against it, but these have NOT been applied to this dump.\n"));
9809 num_bytes
= section
->sh_size
;
9811 end
= start
+ num_bytes
;
9812 some_strings_shown
= FALSE
;
9816 while (!ISPRINT (* data
))
9823 /* PR 11128: Use two separate invocations in order to work
9824 around bugs in the Solaris 8 implementation of printf. */
9825 printf (" [%6tx] ", data
- start
);
9826 printf ("%s\n", data
);
9828 printf (" [%6Ix] %s\n", (size_t) (data
- start
), data
);
9830 data
+= strlen (data
);
9831 some_strings_shown
= TRUE
;
9835 if (! some_strings_shown
)
9836 printf (_(" No strings found in this section."));
9844 dump_section_as_bytes (Elf_Internal_Shdr
* section
,
9846 bfd_boolean relocate
)
9848 Elf_Internal_Shdr
* relsec
;
9849 bfd_size_type bytes
;
9851 unsigned char * data
;
9852 unsigned char * start
;
9854 start
= (unsigned char *) get_section_contents (section
, file
);
9858 printf (_("\nHex dump of section '%s':\n"), SECTION_NAME (section
));
9862 apply_relocations (file
, section
, start
);
9866 /* If the section being dumped has relocations against it the user might
9867 be expecting these relocations to have been applied. Check for this
9868 case and issue a warning message in order to avoid confusion.
9869 FIXME: Maybe we ought to have an option that dumps a section with
9871 for (relsec
= section_headers
;
9872 relsec
< section_headers
+ elf_header
.e_shnum
;
9875 if ((relsec
->sh_type
!= SHT_RELA
&& relsec
->sh_type
!= SHT_REL
)
9876 || relsec
->sh_info
>= elf_header
.e_shnum
9877 || section_headers
+ relsec
->sh_info
!= section
9878 || relsec
->sh_size
== 0
9879 || relsec
->sh_link
>= elf_header
.e_shnum
)
9882 printf (_(" NOTE: This section has relocations against it, but these have NOT been applied to this dump.\n"));
9887 addr
= section
->sh_addr
;
9888 bytes
= section
->sh_size
;
9897 lbytes
= (bytes
> 16 ? 16 : bytes
);
9899 printf (" 0x%8.8lx ", (unsigned long) addr
);
9901 for (j
= 0; j
< 16; j
++)
9904 printf ("%2.2x", data
[j
]);
9912 for (j
= 0; j
< lbytes
; j
++)
9915 if (k
>= ' ' && k
< 0x7f)
9933 /* Uncompresses a section that was compressed using zlib, in place. */
9936 uncompress_section_contents (unsigned char **buffer ATTRIBUTE_UNUSED
,
9937 dwarf_size_type
*size ATTRIBUTE_UNUSED
)
9942 dwarf_size_type compressed_size
= *size
;
9943 unsigned char * compressed_buffer
= *buffer
;
9944 dwarf_size_type uncompressed_size
;
9945 unsigned char * uncompressed_buffer
;
9948 dwarf_size_type header_size
= 12;
9950 /* Read the zlib header. In this case, it should be "ZLIB" followed
9951 by the uncompressed section size, 8 bytes in big-endian order. */
9952 if (compressed_size
< header_size
9953 || ! streq ((char *) compressed_buffer
, "ZLIB"))
9956 uncompressed_size
= compressed_buffer
[4]; uncompressed_size
<<= 8;
9957 uncompressed_size
+= compressed_buffer
[5]; uncompressed_size
<<= 8;
9958 uncompressed_size
+= compressed_buffer
[6]; uncompressed_size
<<= 8;
9959 uncompressed_size
+= compressed_buffer
[7]; uncompressed_size
<<= 8;
9960 uncompressed_size
+= compressed_buffer
[8]; uncompressed_size
<<= 8;
9961 uncompressed_size
+= compressed_buffer
[9]; uncompressed_size
<<= 8;
9962 uncompressed_size
+= compressed_buffer
[10]; uncompressed_size
<<= 8;
9963 uncompressed_size
+= compressed_buffer
[11];
9965 /* It is possible the section consists of several compressed
9966 buffers concatenated together, so we uncompress in a loop. */
9970 strm
.avail_in
= compressed_size
- header_size
;
9971 strm
.next_in
= (Bytef
*) compressed_buffer
+ header_size
;
9972 strm
.avail_out
= uncompressed_size
;
9973 uncompressed_buffer
= (unsigned char *) xmalloc (uncompressed_size
);
9975 rc
= inflateInit (& strm
);
9976 while (strm
.avail_in
> 0)
9980 strm
.next_out
= ((Bytef
*) uncompressed_buffer
9981 + (uncompressed_size
- strm
.avail_out
));
9982 rc
= inflate (&strm
, Z_FINISH
);
9983 if (rc
!= Z_STREAM_END
)
9985 rc
= inflateReset (& strm
);
9987 rc
= inflateEnd (& strm
);
9989 || strm
.avail_out
!= 0)
9992 free (compressed_buffer
);
9993 *buffer
= uncompressed_buffer
;
9994 *size
= uncompressed_size
;
9998 free (uncompressed_buffer
);
9999 /* Indicate decompression failure. */
10002 #endif /* HAVE_ZLIB_H */
10006 load_specific_debug_section (enum dwarf_section_display_enum debug
,
10007 Elf_Internal_Shdr
* sec
, void * file
)
10009 struct dwarf_section
* section
= &debug_displays
[debug
].section
;
10012 /* If it is already loaded, do nothing. */
10013 if (section
->start
!= NULL
)
10016 snprintf (buf
, sizeof (buf
), _("%s section data"), section
->name
);
10017 section
->address
= sec
->sh_addr
;
10018 section
->size
= sec
->sh_size
;
10019 section
->start
= (unsigned char *) get_data (NULL
, (FILE *) file
,
10021 sec
->sh_size
, buf
);
10022 if (uncompress_section_contents (§ion
->start
, §ion
->size
))
10023 sec
->sh_size
= section
->size
;
10025 if (section
->start
== NULL
)
10028 if (debug_displays
[debug
].relocate
)
10029 apply_relocations ((FILE *) file
, sec
, section
->start
);
10035 load_debug_section (enum dwarf_section_display_enum debug
, void * file
)
10037 struct dwarf_section
* section
= &debug_displays
[debug
].section
;
10038 Elf_Internal_Shdr
* sec
;
10040 /* Locate the debug section. */
10041 sec
= find_section (section
->uncompressed_name
);
10043 section
->name
= section
->uncompressed_name
;
10046 sec
= find_section (section
->compressed_name
);
10048 section
->name
= section
->compressed_name
;
10053 return load_specific_debug_section (debug
, sec
, (FILE *) file
);
10057 free_debug_section (enum dwarf_section_display_enum debug
)
10059 struct dwarf_section
* section
= &debug_displays
[debug
].section
;
10061 if (section
->start
== NULL
)
10064 free ((char *) section
->start
);
10065 section
->start
= NULL
;
10066 section
->address
= 0;
10071 display_debug_section (Elf_Internal_Shdr
* section
, FILE * file
)
10073 char * name
= SECTION_NAME (section
);
10074 bfd_size_type length
;
10078 length
= section
->sh_size
;
10081 printf (_("\nSection '%s' has no debugging data.\n"), name
);
10084 if (section
->sh_type
== SHT_NOBITS
)
10086 /* There is no point in dumping the contents of a debugging section
10087 which has the NOBITS type - the bits in the file will be random.
10088 This can happen when a file containing a .eh_frame section is
10089 stripped with the --only-keep-debug command line option. */
10090 printf (_("section '%s' has the NOBITS type - its contents are unreliable.\n"), name
);
10094 if (const_strneq (name
, ".gnu.linkonce.wi."))
10095 name
= ".debug_info";
10097 /* See if we know how to display the contents of this section. */
10098 for (i
= 0; i
< max
; i
++)
10099 if (streq (debug_displays
[i
].section
.uncompressed_name
, name
)
10100 || streq (debug_displays
[i
].section
.compressed_name
, name
))
10102 struct dwarf_section
* sec
= &debug_displays
[i
].section
;
10103 int secondary
= (section
!= find_section (name
));
10106 free_debug_section ((enum dwarf_section_display_enum
) i
);
10108 if (streq (sec
->uncompressed_name
, name
))
10109 sec
->name
= sec
->uncompressed_name
;
10111 sec
->name
= sec
->compressed_name
;
10112 if (load_specific_debug_section ((enum dwarf_section_display_enum
) i
,
10115 result
&= debug_displays
[i
].display (sec
, file
);
10117 if (secondary
|| (i
!= info
&& i
!= abbrev
))
10118 free_debug_section ((enum dwarf_section_display_enum
) i
);
10126 printf (_("Unrecognized debug section: %s\n"), name
);
10133 /* Set DUMP_SECTS for all sections where dumps were requested
10134 based on section name. */
10137 initialise_dumps_byname (void)
10139 struct dump_list_entry
* cur
;
10141 for (cur
= dump_sects_byname
; cur
; cur
= cur
->next
)
10146 for (i
= 0, any
= 0; i
< elf_header
.e_shnum
; i
++)
10147 if (streq (SECTION_NAME (section_headers
+ i
), cur
->name
))
10149 request_dump_bynumber (i
, cur
->type
);
10154 warn (_("Section '%s' was not dumped because it does not exist!\n"),
10160 process_section_contents (FILE * file
)
10162 Elf_Internal_Shdr
* section
;
10168 initialise_dumps_byname ();
10170 for (i
= 0, section
= section_headers
;
10171 i
< elf_header
.e_shnum
&& i
< num_dump_sects
;
10174 #ifdef SUPPORT_DISASSEMBLY
10175 if (dump_sects
[i
] & DISASS_DUMP
)
10176 disassemble_section (section
, file
);
10178 if (dump_sects
[i
] & HEX_DUMP
)
10179 dump_section_as_bytes (section
, file
, FALSE
);
10181 if (dump_sects
[i
] & RELOC_DUMP
)
10182 dump_section_as_bytes (section
, file
, TRUE
);
10184 if (dump_sects
[i
] & STRING_DUMP
)
10185 dump_section_as_strings (section
, file
);
10187 if (dump_sects
[i
] & DEBUG_DUMP
)
10188 display_debug_section (section
, file
);
10191 /* Check to see if the user requested a
10192 dump of a section that does not exist. */
10193 while (i
++ < num_dump_sects
)
10195 warn (_("Section %d was not dumped because it does not exist!\n"), i
);
10199 process_mips_fpe_exception (int mask
)
10204 if (mask
& OEX_FPU_INEX
)
10205 fputs ("INEX", stdout
), first
= 0;
10206 if (mask
& OEX_FPU_UFLO
)
10207 printf ("%sUFLO", first
? "" : "|"), first
= 0;
10208 if (mask
& OEX_FPU_OFLO
)
10209 printf ("%sOFLO", first
? "" : "|"), first
= 0;
10210 if (mask
& OEX_FPU_DIV0
)
10211 printf ("%sDIV0", first
? "" : "|"), first
= 0;
10212 if (mask
& OEX_FPU_INVAL
)
10213 printf ("%sINVAL", first
? "" : "|");
10216 fputs ("0", stdout
);
10219 /* ARM EABI attributes section. */
10224 /* 0 = special, 1 = string, 2 = uleb123, > 0x80 == table lookup. */
10226 const char ** table
;
10227 } arm_attr_public_tag
;
10229 static const char * arm_attr_tag_CPU_arch
[] =
10230 {"Pre-v4", "v4", "v4T", "v5T", "v5TE", "v5TEJ", "v6", "v6KZ", "v6T2",
10231 "v6K", "v7", "v6-M", "v6S-M", "v7E-M"};
10232 static const char * arm_attr_tag_ARM_ISA_use
[] = {"No", "Yes"};
10233 static const char * arm_attr_tag_THUMB_ISA_use
[] =
10234 {"No", "Thumb-1", "Thumb-2"};
10235 static const char * arm_attr_tag_FP_arch
[] =
10236 {"No", "VFPv1", "VFPv2", "VFPv3", "VFPv3-D16", "VFPv4", "VFPv4-D16"};
10237 static const char * arm_attr_tag_WMMX_arch
[] = {"No", "WMMXv1", "WMMXv2"};
10238 static const char * arm_attr_tag_Advanced_SIMD_arch
[] =
10239 {"No", "NEONv1", "NEONv1 with Fused-MAC"};
10240 static const char * arm_attr_tag_PCS_config
[] =
10241 {"None", "Bare platform", "Linux application", "Linux DSO", "PalmOS 2004",
10242 "PalmOS (reserved)", "SymbianOS 2004", "SymbianOS (reserved)"};
10243 static const char * arm_attr_tag_ABI_PCS_R9_use
[] =
10244 {"V6", "SB", "TLS", "Unused"};
10245 static const char * arm_attr_tag_ABI_PCS_RW_data
[] =
10246 {"Absolute", "PC-relative", "SB-relative", "None"};
10247 static const char * arm_attr_tag_ABI_PCS_RO_data
[] =
10248 {"Absolute", "PC-relative", "None"};
10249 static const char * arm_attr_tag_ABI_PCS_GOT_use
[] =
10250 {"None", "direct", "GOT-indirect"};
10251 static const char * arm_attr_tag_ABI_PCS_wchar_t
[] =
10252 {"None", "??? 1", "2", "??? 3", "4"};
10253 static const char * arm_attr_tag_ABI_FP_rounding
[] = {"Unused", "Needed"};
10254 static const char * arm_attr_tag_ABI_FP_denormal
[] =
10255 {"Unused", "Needed", "Sign only"};
10256 static const char * arm_attr_tag_ABI_FP_exceptions
[] = {"Unused", "Needed"};
10257 static const char * arm_attr_tag_ABI_FP_user_exceptions
[] = {"Unused", "Needed"};
10258 static const char * arm_attr_tag_ABI_FP_number_model
[] =
10259 {"Unused", "Finite", "RTABI", "IEEE 754"};
10260 static const char * arm_attr_tag_ABI_enum_size
[] =
10261 {"Unused", "small", "int", "forced to int"};
10262 static const char * arm_attr_tag_ABI_HardFP_use
[] =
10263 {"As Tag_FP_arch", "SP only", "DP only", "SP and DP"};
10264 static const char * arm_attr_tag_ABI_VFP_args
[] =
10265 {"AAPCS", "VFP registers", "custom"};
10266 static const char * arm_attr_tag_ABI_WMMX_args
[] =
10267 {"AAPCS", "WMMX registers", "custom"};
10268 static const char * arm_attr_tag_ABI_optimization_goals
[] =
10269 {"None", "Prefer Speed", "Aggressive Speed", "Prefer Size",
10270 "Aggressive Size", "Prefer Debug", "Aggressive Debug"};
10271 static const char * arm_attr_tag_ABI_FP_optimization_goals
[] =
10272 {"None", "Prefer Speed", "Aggressive Speed", "Prefer Size",
10273 "Aggressive Size", "Prefer Accuracy", "Aggressive Accuracy"};
10274 static const char * arm_attr_tag_CPU_unaligned_access
[] = {"None", "v6"};
10275 static const char * arm_attr_tag_FP_HP_extension
[] =
10276 {"Not Allowed", "Allowed"};
10277 static const char * arm_attr_tag_ABI_FP_16bit_format
[] =
10278 {"None", "IEEE 754", "Alternative Format"};
10279 static const char * arm_attr_tag_MPextension_use
[] =
10280 {"Not Allowed", "Allowed"};
10281 static const char * arm_attr_tag_DIV_use
[] =
10282 {"Allowed in Thumb-ISA, v7-R or v7-M", "Not allowed",
10283 "Allowed in v7-A with integer division extension"};
10284 static const char * arm_attr_tag_T2EE_use
[] = {"Not Allowed", "Allowed"};
10285 static const char * arm_attr_tag_Virtualization_use
[] =
10286 {"Not Allowed", "TrustZone", "Virtualization Extensions",
10287 "TrustZone and Virtualization Extensions"};
10288 static const char * arm_attr_tag_MPextension_use_legacy
[] =
10289 {"Not Allowed", "Allowed"};
10291 #define LOOKUP(id, name) \
10292 {id, #name, 0x80 | ARRAY_SIZE(arm_attr_tag_##name), arm_attr_tag_##name}
10293 static arm_attr_public_tag arm_attr_public_tags
[] =
10295 {4, "CPU_raw_name", 1, NULL
},
10296 {5, "CPU_name", 1, NULL
},
10297 LOOKUP(6, CPU_arch
),
10298 {7, "CPU_arch_profile", 0, NULL
},
10299 LOOKUP(8, ARM_ISA_use
),
10300 LOOKUP(9, THUMB_ISA_use
),
10301 LOOKUP(10, FP_arch
),
10302 LOOKUP(11, WMMX_arch
),
10303 LOOKUP(12, Advanced_SIMD_arch
),
10304 LOOKUP(13, PCS_config
),
10305 LOOKUP(14, ABI_PCS_R9_use
),
10306 LOOKUP(15, ABI_PCS_RW_data
),
10307 LOOKUP(16, ABI_PCS_RO_data
),
10308 LOOKUP(17, ABI_PCS_GOT_use
),
10309 LOOKUP(18, ABI_PCS_wchar_t
),
10310 LOOKUP(19, ABI_FP_rounding
),
10311 LOOKUP(20, ABI_FP_denormal
),
10312 LOOKUP(21, ABI_FP_exceptions
),
10313 LOOKUP(22, ABI_FP_user_exceptions
),
10314 LOOKUP(23, ABI_FP_number_model
),
10315 {24, "ABI_align_needed", 0, NULL
},
10316 {25, "ABI_align_preserved", 0, NULL
},
10317 LOOKUP(26, ABI_enum_size
),
10318 LOOKUP(27, ABI_HardFP_use
),
10319 LOOKUP(28, ABI_VFP_args
),
10320 LOOKUP(29, ABI_WMMX_args
),
10321 LOOKUP(30, ABI_optimization_goals
),
10322 LOOKUP(31, ABI_FP_optimization_goals
),
10323 {32, "compatibility", 0, NULL
},
10324 LOOKUP(34, CPU_unaligned_access
),
10325 LOOKUP(36, FP_HP_extension
),
10326 LOOKUP(38, ABI_FP_16bit_format
),
10327 LOOKUP(42, MPextension_use
),
10328 LOOKUP(44, DIV_use
),
10329 {64, "nodefaults", 0, NULL
},
10330 {65, "also_compatible_with", 0, NULL
},
10331 LOOKUP(66, T2EE_use
),
10332 {67, "conformance", 1, NULL
},
10333 LOOKUP(68, Virtualization_use
),
10334 LOOKUP(70, MPextension_use_legacy
)
10338 static unsigned char *
10339 display_arm_attribute (unsigned char * p
)
10344 arm_attr_public_tag
* attr
;
10348 tag
= read_uleb128 (p
, &len
);
10351 for (i
= 0; i
< ARRAY_SIZE (arm_attr_public_tags
); i
++)
10353 if (arm_attr_public_tags
[i
].tag
== tag
)
10355 attr
= &arm_attr_public_tags
[i
];
10362 printf (" Tag_%s: ", attr
->name
);
10363 switch (attr
->type
)
10368 case 7: /* Tag_CPU_arch_profile. */
10369 val
= read_uleb128 (p
, &len
);
10373 case 0: printf (_("None\n")); break;
10374 case 'A': printf (_("Application\n")); break;
10375 case 'R': printf (_("Realtime\n")); break;
10376 case 'M': printf (_("Microcontroller\n")); break;
10377 case 'S': printf (_("Application or Realtime\n")); break;
10378 default: printf ("??? (%d)\n", val
); break;
10382 case 24: /* Tag_align_needed. */
10383 val
= read_uleb128 (p
, &len
);
10387 case 0: printf (_("None\n")); break;
10388 case 1: printf (_("8-byte\n")); break;
10389 case 2: printf (_("4-byte\n")); break;
10390 case 3: printf ("??? 3\n"); break;
10393 printf (_("8-byte and up to %d-byte extended\n"),
10396 printf ("??? (%d)\n", val
);
10401 case 25: /* Tag_align_preserved. */
10402 val
= read_uleb128 (p
, &len
);
10406 case 0: printf (_("None\n")); break;
10407 case 1: printf (_("8-byte, except leaf SP\n")); break;
10408 case 2: printf (_("8-byte\n")); break;
10409 case 3: printf ("??? 3\n"); break;
10412 printf (_("8-byte and up to %d-byte extended\n"),
10415 printf ("??? (%d)\n", val
);
10420 case 32: /* Tag_compatibility. */
10421 val
= read_uleb128 (p
, &len
);
10423 printf (_("flag = %d, vendor = %s\n"), val
, p
);
10424 p
+= strlen ((char *) p
) + 1;
10427 case 64: /* Tag_nodefaults. */
10429 printf (_("True\n"));
10432 case 65: /* Tag_also_compatible_with. */
10433 val
= read_uleb128 (p
, &len
);
10435 if (val
== 6 /* Tag_CPU_arch. */)
10437 val
= read_uleb128 (p
, &len
);
10439 if ((unsigned int)val
>= ARRAY_SIZE (arm_attr_tag_CPU_arch
))
10440 printf ("??? (%d)\n", val
);
10442 printf ("%s\n", arm_attr_tag_CPU_arch
[val
]);
10446 while (*(p
++) != '\0' /* NUL terminator. */);
10460 assert (attr
->type
& 0x80);
10461 val
= read_uleb128 (p
, &len
);
10463 type
= attr
->type
& 0x7f;
10465 printf ("??? (%d)\n", val
);
10467 printf ("%s\n", attr
->table
[val
]);
10474 type
= 1; /* String. */
10476 type
= 2; /* uleb128. */
10477 printf (" Tag_unknown_%d: ", tag
);
10482 printf ("\"%s\"\n", p
);
10483 p
+= strlen ((char *) p
) + 1;
10487 val
= read_uleb128 (p
, &len
);
10489 printf ("%d (0x%x)\n", val
, val
);
10495 static unsigned char *
10496 display_gnu_attribute (unsigned char * p
,
10497 unsigned char * (* display_proc_gnu_attribute
) (unsigned char *, int))
10504 tag
= read_uleb128 (p
, &len
);
10507 /* Tag_compatibility is the only generic GNU attribute defined at
10511 val
= read_uleb128 (p
, &len
);
10513 printf (_("flag = %d, vendor = %s\n"), val
, p
);
10514 p
+= strlen ((char *) p
) + 1;
10518 if ((tag
& 2) == 0 && display_proc_gnu_attribute
)
10519 return display_proc_gnu_attribute (p
, tag
);
10522 type
= 1; /* String. */
10524 type
= 2; /* uleb128. */
10525 printf (" Tag_unknown_%d: ", tag
);
10529 printf ("\"%s\"\n", p
);
10530 p
+= strlen ((char *) p
) + 1;
10534 val
= read_uleb128 (p
, &len
);
10536 printf ("%d (0x%x)\n", val
, val
);
10542 static unsigned char *
10543 display_power_gnu_attribute (unsigned char * p
, int tag
)
10549 if (tag
== Tag_GNU_Power_ABI_FP
)
10551 val
= read_uleb128 (p
, &len
);
10553 printf (" Tag_GNU_Power_ABI_FP: ");
10558 printf (_("Hard or soft float\n"));
10561 printf (_("Hard float\n"));
10564 printf (_("Soft float\n"));
10567 printf (_("Single-precision hard float\n"));
10570 printf ("??? (%d)\n", val
);
10576 if (tag
== Tag_GNU_Power_ABI_Vector
)
10578 val
= read_uleb128 (p
, &len
);
10580 printf (" Tag_GNU_Power_ABI_Vector: ");
10584 printf (_("Any\n"));
10587 printf (_("Generic\n"));
10590 printf ("AltiVec\n");
10596 printf ("??? (%d)\n", val
);
10602 if (tag
== Tag_GNU_Power_ABI_Struct_Return
)
10604 val
= read_uleb128 (p
, &len
);
10606 printf (" Tag_GNU_Power_ABI_Struct_Return: ");
10610 printf (_("Any\n"));
10613 printf ("r3/r4\n");
10616 printf (_("Memory\n"));
10619 printf ("??? (%d)\n", val
);
10626 type
= 1; /* String. */
10628 type
= 2; /* uleb128. */
10629 printf (" Tag_unknown_%d: ", tag
);
10633 printf ("\"%s\"\n", p
);
10634 p
+= strlen ((char *) p
) + 1;
10638 val
= read_uleb128 (p
, &len
);
10640 printf ("%d (0x%x)\n", val
, val
);
10646 static unsigned char *
10647 display_mips_gnu_attribute (unsigned char * p
, int tag
)
10653 if (tag
== Tag_GNU_MIPS_ABI_FP
)
10655 val
= read_uleb128 (p
, &len
);
10657 printf (" Tag_GNU_MIPS_ABI_FP: ");
10662 printf (_("Hard or soft float\n"));
10665 printf (_("Hard float (double precision)\n"));
10668 printf (_("Hard float (single precision)\n"));
10671 printf (_("Soft float\n"));
10674 printf (_("Hard float (MIPS32r2 64-bit FPU)\n"));
10677 printf ("??? (%d)\n", val
);
10684 type
= 1; /* String. */
10686 type
= 2; /* uleb128. */
10687 printf (" Tag_unknown_%d: ", tag
);
10691 printf ("\"%s\"\n", p
);
10692 p
+= strlen ((char *) p
) + 1;
10696 val
= read_uleb128 (p
, &len
);
10698 printf ("%d (0x%x)\n", val
, val
);
10704 static unsigned char *
10705 display_tic6x_attribute (unsigned char * p
)
10711 tag
= read_uleb128 (p
, &len
);
10717 val
= read_uleb128 (p
, &len
);
10719 printf (" Tag_ISA: ");
10723 case C6XABI_Tag_ISA_none
:
10724 printf (_("None\n"));
10726 case C6XABI_Tag_ISA_C62X
:
10729 case C6XABI_Tag_ISA_C67X
:
10732 case C6XABI_Tag_ISA_C67XP
:
10733 printf ("C67x+\n");
10735 case C6XABI_Tag_ISA_C64X
:
10738 case C6XABI_Tag_ISA_C64XP
:
10739 printf ("C64x+\n");
10741 case C6XABI_Tag_ISA_C674X
:
10742 printf ("C674x\n");
10745 printf ("??? (%d)\n", val
);
10750 case Tag_ABI_wchar_t
:
10751 val
= read_uleb128 (p
, &len
);
10753 printf (" Tag_ABI_wchar_t: ");
10757 printf (_("Not used\n"));
10760 printf (_("2 bytes\n"));
10763 printf (_("4 bytes\n"));
10766 printf ("??? (%d)\n", val
);
10771 case Tag_ABI_stack_align_needed
:
10772 val
= read_uleb128 (p
, &len
);
10774 printf (" Tag_ABI_stack_align_needed: ");
10778 printf (_("8-byte\n"));
10781 printf (_("16-byte\n"));
10784 printf ("??? (%d)\n", val
);
10789 case Tag_ABI_stack_align_preserved
:
10790 val
= read_uleb128 (p
, &len
);
10792 printf (" Tag_ABI_stack_align_preserved: ");
10796 printf (_("8-byte\n"));
10799 printf (_("16-byte\n"));
10802 printf ("??? (%d)\n", val
);
10808 val
= read_uleb128 (p
, &len
);
10810 printf (" Tag_ABI_DSBT: ");
10814 printf (_("DSBT addressing not used\n"));
10817 printf (_("DSBT addressing used\n"));
10820 printf ("??? (%d)\n", val
);
10826 val
= read_uleb128 (p
, &len
);
10828 printf (" Tag_ABI_PID: ");
10832 printf (_("Data addressing position-dependent\n"));
10835 printf (_("Data addressing position-independent, GOT near DP\n"));
10838 printf (_("Data addressing position-independent, GOT far from DP\n"));
10841 printf ("??? (%d)\n", val
);
10847 val
= read_uleb128 (p
, &len
);
10849 printf (" Tag_ABI_PIC: ");
10853 printf (_("Code addressing position-dependent\n"));
10856 printf (_("Code addressing position-independent\n"));
10859 printf ("??? (%d)\n", val
);
10864 case Tag_ABI_array_object_alignment
:
10865 val
= read_uleb128 (p
, &len
);
10867 printf (" Tag_ABI_array_object_alignment: ");
10871 printf (_("8-byte\n"));
10874 printf (_("4-byte\n"));
10877 printf (_("16-byte\n"));
10880 printf ("??? (%d)\n", val
);
10885 case Tag_ABI_array_object_align_expected
:
10886 val
= read_uleb128 (p
, &len
);
10888 printf (" Tag_ABI_array_object_align_expected: ");
10892 printf (_("8-byte\n"));
10895 printf (_("4-byte\n"));
10898 printf (_("16-byte\n"));
10901 printf ("??? (%d)\n", val
);
10906 case Tag_ABI_compatibility
:
10907 val
= read_uleb128 (p
, &len
);
10909 printf (" Tag_ABI_compatibility: ");
10910 printf (_("flag = %d, vendor = %s\n"), val
, p
);
10911 p
+= strlen ((char *) p
) + 1;
10914 case Tag_ABI_conformance
:
10915 printf (" Tag_ABI_conformance: ");
10916 printf ("\"%s\"\n", p
);
10917 p
+= strlen ((char *) p
) + 1;
10921 printf (" Tag_unknown_%d: ", tag
);
10925 printf ("\"%s\"\n", p
);
10926 p
+= strlen ((char *) p
) + 1;
10930 val
= read_uleb128 (p
, &len
);
10932 printf ("%d (0x%x)\n", val
, val
);
10939 process_attributes (FILE * file
,
10940 const char * public_name
,
10941 unsigned int proc_type
,
10942 unsigned char * (* display_pub_attribute
) (unsigned char *),
10943 unsigned char * (* display_proc_gnu_attribute
) (unsigned char *, int))
10945 Elf_Internal_Shdr
* sect
;
10946 unsigned char * contents
;
10948 unsigned char * end
;
10949 bfd_vma section_len
;
10953 /* Find the section header so that we get the size. */
10954 for (i
= 0, sect
= section_headers
;
10955 i
< elf_header
.e_shnum
;
10958 if (sect
->sh_type
!= proc_type
&& sect
->sh_type
!= SHT_GNU_ATTRIBUTES
)
10961 contents
= (unsigned char *) get_data (NULL
, file
, sect
->sh_offset
, 1,
10962 sect
->sh_size
, _("attributes"));
10963 if (contents
== NULL
)
10969 len
= sect
->sh_size
- 1;
10975 bfd_boolean public_section
;
10976 bfd_boolean gnu_section
;
10978 section_len
= byte_get (p
, 4);
10981 if (section_len
> len
)
10983 printf (_("ERROR: Bad section length (%d > %d)\n"),
10984 (int) section_len
, (int) len
);
10988 len
-= section_len
;
10989 printf (_("Attribute Section: %s\n"), p
);
10991 if (public_name
&& streq ((char *) p
, public_name
))
10992 public_section
= TRUE
;
10994 public_section
= FALSE
;
10996 if (streq ((char *) p
, "gnu"))
10997 gnu_section
= TRUE
;
10999 gnu_section
= FALSE
;
11001 namelen
= strlen ((char *) p
) + 1;
11003 section_len
-= namelen
+ 4;
11005 while (section_len
> 0)
11011 size
= byte_get (p
, 4);
11012 if (size
> section_len
)
11014 printf (_("ERROR: Bad subsection length (%d > %d)\n"),
11015 (int) size
, (int) section_len
);
11016 size
= section_len
;
11019 section_len
-= size
;
11020 end
= p
+ size
- 1;
11026 printf (_("File Attributes\n"));
11029 printf (_("Section Attributes:"));
11032 printf (_("Symbol Attributes:"));
11038 val
= read_uleb128 (p
, &j
);
11042 printf (" %d", val
);
11047 printf (_("Unknown tag: %d\n"), tag
);
11048 public_section
= FALSE
;
11052 if (public_section
)
11055 p
= display_pub_attribute (p
);
11057 else if (gnu_section
)
11060 p
= display_gnu_attribute (p
,
11061 display_proc_gnu_attribute
);
11065 /* ??? Do something sensible, like dump hex. */
11066 printf (_(" Unknown section contexts\n"));
11073 printf (_("Unknown format '%c'\n"), *p
);
11081 process_arm_specific (FILE * file
)
11083 return process_attributes (file
, "aeabi", SHT_ARM_ATTRIBUTES
,
11084 display_arm_attribute
, NULL
);
11088 process_power_specific (FILE * file
)
11090 return process_attributes (file
, NULL
, SHT_GNU_ATTRIBUTES
, NULL
,
11091 display_power_gnu_attribute
);
11095 process_tic6x_specific (FILE * file
)
11097 return process_attributes (file
, "c6xabi", SHT_C6000_ATTRIBUTES
,
11098 display_tic6x_attribute
, NULL
);
11101 /* DATA points to the contents of a MIPS GOT that starts at VMA PLTGOT.
11102 Print the Address, Access and Initial fields of an entry at VMA ADDR
11103 and return the VMA of the next entry. */
11106 print_mips_got_entry (unsigned char * data
, bfd_vma pltgot
, bfd_vma addr
)
11109 print_vma (addr
, LONG_HEX
);
11111 if (addr
< pltgot
+ 0xfff0)
11112 printf ("%6d(gp)", (int) (addr
- pltgot
- 0x7ff0));
11114 printf ("%10s", "");
11117 printf ("%*s", is_32bit_elf
? 8 : 16, _("<unknown>"));
11122 entry
= byte_get (data
+ addr
- pltgot
, is_32bit_elf
? 4 : 8);
11123 print_vma (entry
, LONG_HEX
);
11125 return addr
+ (is_32bit_elf
? 4 : 8);
11128 /* DATA points to the contents of a MIPS PLT GOT that starts at VMA
11129 PLTGOT. Print the Address and Initial fields of an entry at VMA
11130 ADDR and return the VMA of the next entry. */
11133 print_mips_pltgot_entry (unsigned char * data
, bfd_vma pltgot
, bfd_vma addr
)
11136 print_vma (addr
, LONG_HEX
);
11139 printf ("%*s", is_32bit_elf
? 8 : 16, _("<unknown>"));
11144 entry
= byte_get (data
+ addr
- pltgot
, is_32bit_elf
? 4 : 8);
11145 print_vma (entry
, LONG_HEX
);
11147 return addr
+ (is_32bit_elf
? 4 : 8);
11151 process_mips_specific (FILE * file
)
11153 Elf_Internal_Dyn
* entry
;
11154 size_t liblist_offset
= 0;
11155 size_t liblistno
= 0;
11156 size_t conflictsno
= 0;
11157 size_t options_offset
= 0;
11158 size_t conflicts_offset
= 0;
11159 size_t pltrelsz
= 0;
11161 bfd_vma pltgot
= 0;
11162 bfd_vma mips_pltgot
= 0;
11163 bfd_vma jmprel
= 0;
11164 bfd_vma local_gotno
= 0;
11165 bfd_vma gotsym
= 0;
11166 bfd_vma symtabno
= 0;
11168 process_attributes (file
, NULL
, SHT_GNU_ATTRIBUTES
, NULL
,
11169 display_mips_gnu_attribute
);
11171 /* We have a lot of special sections. Thanks SGI! */
11172 if (dynamic_section
== NULL
)
11173 /* No information available. */
11176 for (entry
= dynamic_section
; entry
->d_tag
!= DT_NULL
; ++entry
)
11177 switch (entry
->d_tag
)
11179 case DT_MIPS_LIBLIST
:
11181 = offset_from_vma (file
, entry
->d_un
.d_val
,
11182 liblistno
* sizeof (Elf32_External_Lib
));
11184 case DT_MIPS_LIBLISTNO
:
11185 liblistno
= entry
->d_un
.d_val
;
11187 case DT_MIPS_OPTIONS
:
11188 options_offset
= offset_from_vma (file
, entry
->d_un
.d_val
, 0);
11190 case DT_MIPS_CONFLICT
:
11192 = offset_from_vma (file
, entry
->d_un
.d_val
,
11193 conflictsno
* sizeof (Elf32_External_Conflict
));
11195 case DT_MIPS_CONFLICTNO
:
11196 conflictsno
= entry
->d_un
.d_val
;
11199 pltgot
= entry
->d_un
.d_ptr
;
11201 case DT_MIPS_LOCAL_GOTNO
:
11202 local_gotno
= entry
->d_un
.d_val
;
11204 case DT_MIPS_GOTSYM
:
11205 gotsym
= entry
->d_un
.d_val
;
11207 case DT_MIPS_SYMTABNO
:
11208 symtabno
= entry
->d_un
.d_val
;
11210 case DT_MIPS_PLTGOT
:
11211 mips_pltgot
= entry
->d_un
.d_ptr
;
11214 pltrel
= entry
->d_un
.d_val
;
11217 pltrelsz
= entry
->d_un
.d_val
;
11220 jmprel
= entry
->d_un
.d_ptr
;
11226 if (liblist_offset
!= 0 && liblistno
!= 0 && do_dynamic
)
11228 Elf32_External_Lib
* elib
;
11231 elib
= (Elf32_External_Lib
*) get_data (NULL
, file
, liblist_offset
,
11233 sizeof (Elf32_External_Lib
),
11237 printf (_("\nSection '.liblist' contains %lu entries:\n"),
11238 (unsigned long) liblistno
);
11239 fputs (_(" Library Time Stamp Checksum Version Flags\n"),
11242 for (cnt
= 0; cnt
< liblistno
; ++cnt
)
11249 liblist
.l_name
= BYTE_GET (elib
[cnt
].l_name
);
11250 atime
= BYTE_GET (elib
[cnt
].l_time_stamp
);
11251 liblist
.l_checksum
= BYTE_GET (elib
[cnt
].l_checksum
);
11252 liblist
.l_version
= BYTE_GET (elib
[cnt
].l_version
);
11253 liblist
.l_flags
= BYTE_GET (elib
[cnt
].l_flags
);
11255 tmp
= gmtime (&atime
);
11256 snprintf (timebuf
, sizeof (timebuf
),
11257 "%04u-%02u-%02uT%02u:%02u:%02u",
11258 tmp
->tm_year
+ 1900, tmp
->tm_mon
+ 1, tmp
->tm_mday
,
11259 tmp
->tm_hour
, tmp
->tm_min
, tmp
->tm_sec
);
11261 printf ("%3lu: ", (unsigned long) cnt
);
11262 if (VALID_DYNAMIC_NAME (liblist
.l_name
))
11263 print_symbol (20, GET_DYNAMIC_NAME (liblist
.l_name
));
11265 printf (_("<corrupt: %9ld>"), liblist
.l_name
);
11266 printf (" %s %#10lx %-7ld", timebuf
, liblist
.l_checksum
,
11267 liblist
.l_version
);
11269 if (liblist
.l_flags
== 0)
11273 static const struct
11280 { " EXACT_MATCH", LL_EXACT_MATCH
},
11281 { " IGNORE_INT_VER", LL_IGNORE_INT_VER
},
11282 { " REQUIRE_MINOR", LL_REQUIRE_MINOR
},
11283 { " EXPORTS", LL_EXPORTS
},
11284 { " DELAY_LOAD", LL_DELAY_LOAD
},
11285 { " DELTA", LL_DELTA
}
11287 int flags
= liblist
.l_flags
;
11290 for (fcnt
= 0; fcnt
< ARRAY_SIZE (l_flags_vals
); ++fcnt
)
11291 if ((flags
& l_flags_vals
[fcnt
].bit
) != 0)
11293 fputs (l_flags_vals
[fcnt
].name
, stdout
);
11294 flags
^= l_flags_vals
[fcnt
].bit
;
11297 printf (" %#x", (unsigned int) flags
);
11307 if (options_offset
!= 0)
11309 Elf_External_Options
* eopt
;
11310 Elf_Internal_Shdr
* sect
= section_headers
;
11311 Elf_Internal_Options
* iopt
;
11312 Elf_Internal_Options
* option
;
11316 /* Find the section header so that we get the size. */
11317 while (sect
->sh_type
!= SHT_MIPS_OPTIONS
)
11320 eopt
= (Elf_External_Options
*) get_data (NULL
, file
, options_offset
, 1,
11321 sect
->sh_size
, _("options"));
11324 iopt
= (Elf_Internal_Options
*)
11325 cmalloc ((sect
->sh_size
/ sizeof (eopt
)), sizeof (* iopt
));
11328 error (_("Out of memory\n"));
11335 while (offset
< sect
->sh_size
)
11337 Elf_External_Options
* eoption
;
11339 eoption
= (Elf_External_Options
*) ((char *) eopt
+ offset
);
11341 option
->kind
= BYTE_GET (eoption
->kind
);
11342 option
->size
= BYTE_GET (eoption
->size
);
11343 option
->section
= BYTE_GET (eoption
->section
);
11344 option
->info
= BYTE_GET (eoption
->info
);
11346 offset
+= option
->size
;
11352 printf (_("\nSection '%s' contains %d entries:\n"),
11353 SECTION_NAME (sect
), cnt
);
11361 switch (option
->kind
)
11364 /* This shouldn't happen. */
11365 printf (" NULL %d %lx", option
->section
, option
->info
);
11368 printf (" REGINFO ");
11369 if (elf_header
.e_machine
== EM_MIPS
)
11372 Elf32_External_RegInfo
* ereg
;
11373 Elf32_RegInfo reginfo
;
11375 ereg
= (Elf32_External_RegInfo
*) (option
+ 1);
11376 reginfo
.ri_gprmask
= BYTE_GET (ereg
->ri_gprmask
);
11377 reginfo
.ri_cprmask
[0] = BYTE_GET (ereg
->ri_cprmask
[0]);
11378 reginfo
.ri_cprmask
[1] = BYTE_GET (ereg
->ri_cprmask
[1]);
11379 reginfo
.ri_cprmask
[2] = BYTE_GET (ereg
->ri_cprmask
[2]);
11380 reginfo
.ri_cprmask
[3] = BYTE_GET (ereg
->ri_cprmask
[3]);
11381 reginfo
.ri_gp_value
= BYTE_GET (ereg
->ri_gp_value
);
11383 printf ("GPR %08lx GP 0x%lx\n",
11384 reginfo
.ri_gprmask
,
11385 (unsigned long) reginfo
.ri_gp_value
);
11386 printf (" CPR0 %08lx CPR1 %08lx CPR2 %08lx CPR3 %08lx\n",
11387 reginfo
.ri_cprmask
[0], reginfo
.ri_cprmask
[1],
11388 reginfo
.ri_cprmask
[2], reginfo
.ri_cprmask
[3]);
11393 Elf64_External_RegInfo
* ereg
;
11394 Elf64_Internal_RegInfo reginfo
;
11396 ereg
= (Elf64_External_RegInfo
*) (option
+ 1);
11397 reginfo
.ri_gprmask
= BYTE_GET (ereg
->ri_gprmask
);
11398 reginfo
.ri_cprmask
[0] = BYTE_GET (ereg
->ri_cprmask
[0]);
11399 reginfo
.ri_cprmask
[1] = BYTE_GET (ereg
->ri_cprmask
[1]);
11400 reginfo
.ri_cprmask
[2] = BYTE_GET (ereg
->ri_cprmask
[2]);
11401 reginfo
.ri_cprmask
[3] = BYTE_GET (ereg
->ri_cprmask
[3]);
11402 reginfo
.ri_gp_value
= BYTE_GET (ereg
->ri_gp_value
);
11404 printf ("GPR %08lx GP 0x",
11405 reginfo
.ri_gprmask
);
11406 printf_vma (reginfo
.ri_gp_value
);
11409 printf (" CPR0 %08lx CPR1 %08lx CPR2 %08lx CPR3 %08lx\n",
11410 reginfo
.ri_cprmask
[0], reginfo
.ri_cprmask
[1],
11411 reginfo
.ri_cprmask
[2], reginfo
.ri_cprmask
[3]);
11415 case ODK_EXCEPTIONS
:
11416 fputs (" EXCEPTIONS fpe_min(", stdout
);
11417 process_mips_fpe_exception (option
->info
& OEX_FPU_MIN
);
11418 fputs (") fpe_max(", stdout
);
11419 process_mips_fpe_exception ((option
->info
& OEX_FPU_MAX
) >> 8);
11420 fputs (")", stdout
);
11422 if (option
->info
& OEX_PAGE0
)
11423 fputs (" PAGE0", stdout
);
11424 if (option
->info
& OEX_SMM
)
11425 fputs (" SMM", stdout
);
11426 if (option
->info
& OEX_FPDBUG
)
11427 fputs (" FPDBUG", stdout
);
11428 if (option
->info
& OEX_DISMISS
)
11429 fputs (" DISMISS", stdout
);
11432 fputs (" PAD ", stdout
);
11433 if (option
->info
& OPAD_PREFIX
)
11434 fputs (" PREFIX", stdout
);
11435 if (option
->info
& OPAD_POSTFIX
)
11436 fputs (" POSTFIX", stdout
);
11437 if (option
->info
& OPAD_SYMBOL
)
11438 fputs (" SYMBOL", stdout
);
11441 fputs (" HWPATCH ", stdout
);
11442 if (option
->info
& OHW_R4KEOP
)
11443 fputs (" R4KEOP", stdout
);
11444 if (option
->info
& OHW_R8KPFETCH
)
11445 fputs (" R8KPFETCH", stdout
);
11446 if (option
->info
& OHW_R5KEOP
)
11447 fputs (" R5KEOP", stdout
);
11448 if (option
->info
& OHW_R5KCVTL
)
11449 fputs (" R5KCVTL", stdout
);
11452 fputs (" FILL ", stdout
);
11453 /* XXX Print content of info word? */
11456 fputs (" TAGS ", stdout
);
11457 /* XXX Print content of info word? */
11460 fputs (" HWAND ", stdout
);
11461 if (option
->info
& OHWA0_R4KEOP_CHECKED
)
11462 fputs (" R4KEOP_CHECKED", stdout
);
11463 if (option
->info
& OHWA0_R4KEOP_CLEAN
)
11464 fputs (" R4KEOP_CLEAN", stdout
);
11467 fputs (" HWOR ", stdout
);
11468 if (option
->info
& OHWA0_R4KEOP_CHECKED
)
11469 fputs (" R4KEOP_CHECKED", stdout
);
11470 if (option
->info
& OHWA0_R4KEOP_CLEAN
)
11471 fputs (" R4KEOP_CLEAN", stdout
);
11474 printf (" GP_GROUP %#06lx self-contained %#06lx",
11475 option
->info
& OGP_GROUP
,
11476 (option
->info
& OGP_SELF
) >> 16);
11479 printf (" IDENT %#06lx self-contained %#06lx",
11480 option
->info
& OGP_GROUP
,
11481 (option
->info
& OGP_SELF
) >> 16);
11484 /* This shouldn't happen. */
11485 printf (" %3d ??? %d %lx",
11486 option
->kind
, option
->section
, option
->info
);
11490 len
= sizeof (* eopt
);
11491 while (len
< option
->size
)
11492 if (((char *) option
)[len
] >= ' '
11493 && ((char *) option
)[len
] < 0x7f)
11494 printf ("%c", ((char *) option
)[len
++]);
11496 printf ("\\%03o", ((char *) option
)[len
++]);
11498 fputs ("\n", stdout
);
11506 if (conflicts_offset
!= 0 && conflictsno
!= 0)
11508 Elf32_Conflict
* iconf
;
11511 if (dynamic_symbols
== NULL
)
11513 error (_("conflict list found without a dynamic symbol table\n"));
11517 iconf
= (Elf32_Conflict
*) cmalloc (conflictsno
, sizeof (* iconf
));
11520 error (_("Out of memory\n"));
11526 Elf32_External_Conflict
* econf32
;
11528 econf32
= (Elf32_External_Conflict
*)
11529 get_data (NULL
, file
, conflicts_offset
, conflictsno
,
11530 sizeof (* econf32
), _("conflict"));
11534 for (cnt
= 0; cnt
< conflictsno
; ++cnt
)
11535 iconf
[cnt
] = BYTE_GET (econf32
[cnt
]);
11541 Elf64_External_Conflict
* econf64
;
11543 econf64
= (Elf64_External_Conflict
*)
11544 get_data (NULL
, file
, conflicts_offset
, conflictsno
,
11545 sizeof (* econf64
), _("conflict"));
11549 for (cnt
= 0; cnt
< conflictsno
; ++cnt
)
11550 iconf
[cnt
] = BYTE_GET (econf64
[cnt
]);
11555 printf (_("\nSection '.conflict' contains %lu entries:\n"),
11556 (unsigned long) conflictsno
);
11557 puts (_(" Num: Index Value Name"));
11559 for (cnt
= 0; cnt
< conflictsno
; ++cnt
)
11561 Elf_Internal_Sym
* psym
= & dynamic_symbols
[iconf
[cnt
]];
11563 printf ("%5lu: %8lu ", (unsigned long) cnt
, iconf
[cnt
]);
11564 print_vma (psym
->st_value
, FULL_HEX
);
11566 if (VALID_DYNAMIC_NAME (psym
->st_name
))
11567 print_symbol (25, GET_DYNAMIC_NAME (psym
->st_name
));
11569 printf (_("<corrupt: %14ld>"), psym
->st_name
);
11576 if (pltgot
!= 0 && local_gotno
!= 0)
11578 bfd_vma ent
, local_end
, global_end
;
11580 unsigned char * data
;
11584 addr_size
= (is_32bit_elf
? 4 : 8);
11585 local_end
= pltgot
+ local_gotno
* addr_size
;
11586 global_end
= local_end
+ (symtabno
- gotsym
) * addr_size
;
11588 offset
= offset_from_vma (file
, pltgot
, global_end
- pltgot
);
11589 data
= (unsigned char *) get_data (NULL
, file
, offset
,
11590 global_end
- pltgot
, 1, _("GOT"));
11591 printf (_("\nPrimary GOT:\n"));
11592 printf (_(" Canonical gp value: "));
11593 print_vma (pltgot
+ 0x7ff0, LONG_HEX
);
11596 printf (_(" Reserved entries:\n"));
11597 printf (_(" %*s %10s %*s Purpose\n"),
11598 addr_size
* 2, _("Address"), _("Access"),
11599 addr_size
* 2, _("Initial"));
11600 ent
= print_mips_got_entry (data
, pltgot
, ent
);
11601 printf (_(" Lazy resolver\n"));
11603 && (byte_get (data
+ ent
- pltgot
, addr_size
)
11604 >> (addr_size
* 8 - 1)) != 0)
11606 ent
= print_mips_got_entry (data
, pltgot
, ent
);
11607 printf (_(" Module pointer (GNU extension)\n"));
11611 if (ent
< local_end
)
11613 printf (_(" Local entries:\n"));
11614 printf (" %*s %10s %*s\n",
11615 addr_size
* 2, _("Address"), _("Access"),
11616 addr_size
* 2, _("Initial"));
11617 while (ent
< local_end
)
11619 ent
= print_mips_got_entry (data
, pltgot
, ent
);
11625 if (gotsym
< symtabno
)
11629 printf (_(" Global entries:\n"));
11630 printf (" %*s %10s %*s %*s %-7s %3s %s\n",
11631 addr_size
* 2, _("Address"), _("Access"),
11632 addr_size
* 2, _("Initial"),
11633 addr_size
* 2, _("Sym.Val."), _("Type"), _("Ndx"), _("Name"));
11634 sym_width
= (is_32bit_elf
? 80 : 160) - 28 - addr_size
* 6 - 1;
11635 for (i
= gotsym
; i
< symtabno
; i
++)
11637 Elf_Internal_Sym
* psym
;
11639 psym
= dynamic_symbols
+ i
;
11640 ent
= print_mips_got_entry (data
, pltgot
, ent
);
11642 print_vma (psym
->st_value
, LONG_HEX
);
11643 printf (" %-7s %3s ",
11644 get_symbol_type (ELF_ST_TYPE (psym
->st_info
)),
11645 get_symbol_index_type (psym
->st_shndx
));
11646 if (VALID_DYNAMIC_NAME (psym
->st_name
))
11647 print_symbol (sym_width
, GET_DYNAMIC_NAME (psym
->st_name
));
11649 printf (_("<corrupt: %14ld>"), psym
->st_name
);
11659 if (mips_pltgot
!= 0 && jmprel
!= 0 && pltrel
!= 0 && pltrelsz
!= 0)
11662 size_t offset
, rel_offset
;
11663 unsigned long count
, i
;
11664 unsigned char * data
;
11665 int addr_size
, sym_width
;
11666 Elf_Internal_Rela
* rels
;
11668 rel_offset
= offset_from_vma (file
, jmprel
, pltrelsz
);
11669 if (pltrel
== DT_RELA
)
11671 if (!slurp_rela_relocs (file
, rel_offset
, pltrelsz
, &rels
, &count
))
11676 if (!slurp_rel_relocs (file
, rel_offset
, pltrelsz
, &rels
, &count
))
11681 addr_size
= (is_32bit_elf
? 4 : 8);
11682 end
= mips_pltgot
+ (2 + count
) * addr_size
;
11684 offset
= offset_from_vma (file
, mips_pltgot
, end
- mips_pltgot
);
11685 data
= (unsigned char *) get_data (NULL
, file
, offset
, end
- mips_pltgot
,
11687 printf (_("\nPLT GOT:\n\n"));
11688 printf (_(" Reserved entries:\n"));
11689 printf (_(" %*s %*s Purpose\n"),
11690 addr_size
* 2, _("Address"), addr_size
* 2, _("Initial"));
11691 ent
= print_mips_pltgot_entry (data
, mips_pltgot
, ent
);
11692 printf (_(" PLT lazy resolver\n"));
11693 ent
= print_mips_pltgot_entry (data
, mips_pltgot
, ent
);
11694 printf (_(" Module pointer\n"));
11697 printf (_(" Entries:\n"));
11698 printf (" %*s %*s %*s %-7s %3s %s\n",
11699 addr_size
* 2, _("Address"),
11700 addr_size
* 2, _("Initial"),
11701 addr_size
* 2, _("Sym.Val."), _("Type"), _("Ndx"), _("Name"));
11702 sym_width
= (is_32bit_elf
? 80 : 160) - 17 - addr_size
* 6 - 1;
11703 for (i
= 0; i
< count
; i
++)
11705 Elf_Internal_Sym
* psym
;
11707 psym
= dynamic_symbols
+ get_reloc_symindex (rels
[i
].r_info
);
11708 ent
= print_mips_pltgot_entry (data
, mips_pltgot
, ent
);
11710 print_vma (psym
->st_value
, LONG_HEX
);
11711 printf (" %-7s %3s ",
11712 get_symbol_type (ELF_ST_TYPE (psym
->st_info
)),
11713 get_symbol_index_type (psym
->st_shndx
));
11714 if (VALID_DYNAMIC_NAME (psym
->st_name
))
11715 print_symbol (sym_width
, GET_DYNAMIC_NAME (psym
->st_name
));
11717 printf (_("<corrupt: %14ld>"), psym
->st_name
);
11731 process_gnu_liblist (FILE * file
)
11733 Elf_Internal_Shdr
* section
;
11734 Elf_Internal_Shdr
* string_sec
;
11735 Elf32_External_Lib
* elib
;
11737 size_t strtab_size
;
11744 for (i
= 0, section
= section_headers
;
11745 i
< elf_header
.e_shnum
;
11748 switch (section
->sh_type
)
11750 case SHT_GNU_LIBLIST
:
11751 if (section
->sh_link
>= elf_header
.e_shnum
)
11754 elib
= (Elf32_External_Lib
*)
11755 get_data (NULL
, file
, section
->sh_offset
, 1, section
->sh_size
,
11760 string_sec
= section_headers
+ section
->sh_link
;
11762 strtab
= (char *) get_data (NULL
, file
, string_sec
->sh_offset
, 1,
11763 string_sec
->sh_size
,
11764 _("liblist string table"));
11765 strtab_size
= string_sec
->sh_size
;
11768 || section
->sh_entsize
!= sizeof (Elf32_External_Lib
))
11774 printf (_("\nLibrary list section '%s' contains %lu entries:\n"),
11775 SECTION_NAME (section
),
11776 (unsigned long) (section
->sh_size
/ sizeof (Elf32_External_Lib
)));
11778 puts (_(" Library Time Stamp Checksum Version Flags"));
11780 for (cnt
= 0; cnt
< section
->sh_size
/ sizeof (Elf32_External_Lib
);
11788 liblist
.l_name
= BYTE_GET (elib
[cnt
].l_name
);
11789 atime
= BYTE_GET (elib
[cnt
].l_time_stamp
);
11790 liblist
.l_checksum
= BYTE_GET (elib
[cnt
].l_checksum
);
11791 liblist
.l_version
= BYTE_GET (elib
[cnt
].l_version
);
11792 liblist
.l_flags
= BYTE_GET (elib
[cnt
].l_flags
);
11794 tmp
= gmtime (&atime
);
11795 snprintf (timebuf
, sizeof (timebuf
),
11796 "%04u-%02u-%02uT%02u:%02u:%02u",
11797 tmp
->tm_year
+ 1900, tmp
->tm_mon
+ 1, tmp
->tm_mday
,
11798 tmp
->tm_hour
, tmp
->tm_min
, tmp
->tm_sec
);
11800 printf ("%3lu: ", (unsigned long) cnt
);
11802 printf ("%-20s", liblist
.l_name
< strtab_size
11803 ? strtab
+ liblist
.l_name
: _("<corrupt>"));
11805 printf ("%-20.20s", liblist
.l_name
< strtab_size
11806 ? strtab
+ liblist
.l_name
: _("<corrupt>"));
11807 printf (" %s %#010lx %-7ld %-7ld\n", timebuf
, liblist
.l_checksum
,
11808 liblist
.l_version
, liblist
.l_flags
);
11818 static const char *
11819 get_note_type (unsigned e_type
)
11821 static char buff
[64];
11823 if (elf_header
.e_type
== ET_CORE
)
11827 return _("NT_AUXV (auxiliary vector)");
11829 return _("NT_PRSTATUS (prstatus structure)");
11831 return _("NT_FPREGSET (floating point registers)");
11833 return _("NT_PRPSINFO (prpsinfo structure)");
11834 case NT_TASKSTRUCT
:
11835 return _("NT_TASKSTRUCT (task structure)");
11837 return _("NT_PRXFPREG (user_xfpregs structure)");
11839 return _("NT_PPC_VMX (ppc Altivec registers)");
11841 return _("NT_PPC_VSX (ppc VSX registers)");
11842 case NT_X86_XSTATE
:
11843 return _("NT_X86_XSTATE (x86 XSAVE extended state)");
11844 case NT_S390_HIGH_GPRS
:
11845 return _("NT_S390_HIGH_GPRS (s390 upper register halves)");
11846 case NT_S390_TIMER
:
11847 return _("NT_S390_TIMER (s390 timer register)");
11848 case NT_S390_TODCMP
:
11849 return _("NT_S390_TODCMP (s390 TOD comparator register)");
11850 case NT_S390_TODPREG
:
11851 return _("NT_S390_TODPREG (s390 TOD programmable register)");
11853 return _("NT_S390_CTRS (s390 control registers)");
11854 case NT_S390_PREFIX
:
11855 return _("NT_S390_PREFIX (s390 prefix register)");
11857 return _("NT_PSTATUS (pstatus structure)");
11859 return _("NT_FPREGS (floating point registers)");
11861 return _("NT_PSINFO (psinfo structure)");
11863 return _("NT_LWPSTATUS (lwpstatus_t structure)");
11865 return _("NT_LWPSINFO (lwpsinfo_t structure)");
11866 case NT_WIN32PSTATUS
:
11867 return _("NT_WIN32PSTATUS (win32_pstatus structure)");
11875 return _("NT_VERSION (version)");
11877 return _("NT_ARCH (architecture)");
11882 snprintf (buff
, sizeof (buff
), _("Unknown note type: (0x%08x)"), e_type
);
11886 static const char *
11887 get_gnu_elf_note_type (unsigned e_type
)
11889 static char buff
[64];
11893 case NT_GNU_ABI_TAG
:
11894 return _("NT_GNU_ABI_TAG (ABI version tag)");
11896 return _("NT_GNU_HWCAP (DSO-supplied software HWCAP info)");
11897 case NT_GNU_BUILD_ID
:
11898 return _("NT_GNU_BUILD_ID (unique build ID bitstring)");
11899 case NT_GNU_GOLD_VERSION
:
11900 return _("NT_GNU_GOLD_VERSION (gold version)");
11905 snprintf (buff
, sizeof (buff
), _("Unknown note type: (0x%08x)"), e_type
);
11909 static const char *
11910 get_netbsd_elfcore_note_type (unsigned e_type
)
11912 static char buff
[64];
11914 if (e_type
== NT_NETBSDCORE_PROCINFO
)
11916 /* NetBSD core "procinfo" structure. */
11917 return _("NetBSD procinfo structure");
11920 /* As of Jan 2002 there are no other machine-independent notes
11921 defined for NetBSD core files. If the note type is less
11922 than the start of the machine-dependent note types, we don't
11925 if (e_type
< NT_NETBSDCORE_FIRSTMACH
)
11927 snprintf (buff
, sizeof (buff
), _("Unknown note type: (0x%08x)"), e_type
);
11931 switch (elf_header
.e_machine
)
11933 /* On the Alpha, SPARC (32-bit and 64-bit), PT_GETREGS == mach+0
11934 and PT_GETFPREGS == mach+2. */
11939 case EM_SPARC32PLUS
:
11943 case NT_NETBSDCORE_FIRSTMACH
+ 0:
11944 return _("PT_GETREGS (reg structure)");
11945 case NT_NETBSDCORE_FIRSTMACH
+ 2:
11946 return _("PT_GETFPREGS (fpreg structure)");
11952 /* On all other arch's, PT_GETREGS == mach+1 and
11953 PT_GETFPREGS == mach+3. */
11957 case NT_NETBSDCORE_FIRSTMACH
+ 1:
11958 return _("PT_GETREGS (reg structure)");
11959 case NT_NETBSDCORE_FIRSTMACH
+ 3:
11960 return _("PT_GETFPREGS (fpreg structure)");
11966 snprintf (buff
, sizeof (buff
), _("PT_FIRSTMACH+%d"),
11967 e_type
- NT_NETBSDCORE_FIRSTMACH
);
11971 /* Note that by the ELF standard, the name field is already null byte
11972 terminated, and namesz includes the terminating null byte.
11973 I.E. the value of namesz for the name "FSF" is 4.
11975 If the value of namesz is zero, there is no name present. */
11977 process_note (Elf_Internal_Note
* pnote
)
11979 const char * name
= pnote
->namesz
? pnote
->namedata
: "(NONE)";
11982 if (pnote
->namesz
== 0)
11983 /* If there is no note name, then use the default set of
11984 note type strings. */
11985 nt
= get_note_type (pnote
->type
);
11987 else if (const_strneq (pnote
->namedata
, "GNU"))
11988 /* GNU-specific object file notes. */
11989 nt
= get_gnu_elf_note_type (pnote
->type
);
11991 else if (const_strneq (pnote
->namedata
, "NetBSD-CORE"))
11992 /* NetBSD-specific core file notes. */
11993 nt
= get_netbsd_elfcore_note_type (pnote
->type
);
11995 else if (strneq (pnote
->namedata
, "SPU/", 4))
11997 /* SPU-specific core file notes. */
11998 nt
= pnote
->namedata
+ 4;
12003 /* Don't recognize this note name; just use the default set of
12004 note type strings. */
12005 nt
= get_note_type (pnote
->type
);
12007 printf (" %s\t\t0x%08lx\t%s\n", name
, pnote
->descsz
, nt
);
12013 process_corefile_note_segment (FILE * file
, bfd_vma offset
, bfd_vma length
)
12015 Elf_External_Note
* pnotes
;
12016 Elf_External_Note
* external
;
12022 pnotes
= (Elf_External_Note
*) get_data (NULL
, file
, offset
, 1, length
,
12024 if (pnotes
== NULL
)
12029 printf (_("\nNotes at offset 0x%08lx with length 0x%08lx:\n"),
12030 (unsigned long) offset
, (unsigned long) length
);
12031 printf (_(" Owner\t\tData size\tDescription\n"));
12033 while (external
< (Elf_External_Note
*) ((char *) pnotes
+ length
))
12035 Elf_External_Note
* next
;
12036 Elf_Internal_Note inote
;
12037 char * temp
= NULL
;
12039 inote
.type
= BYTE_GET (external
->type
);
12040 inote
.namesz
= BYTE_GET (external
->namesz
);
12041 inote
.namedata
= external
->name
;
12042 inote
.descsz
= BYTE_GET (external
->descsz
);
12043 inote
.descdata
= inote
.namedata
+ align_power (inote
.namesz
, 2);
12044 inote
.descpos
= offset
+ (inote
.descdata
- (char *) pnotes
);
12046 next
= (Elf_External_Note
*) (inote
.descdata
+ align_power (inote
.descsz
, 2));
12048 if ( ((char *) next
> ((char *) pnotes
) + length
)
12049 || ((char *) next
< (char *) pnotes
))
12051 warn (_("corrupt note found at offset %lx into core notes\n"),
12052 (unsigned long) ((char *) external
- (char *) pnotes
));
12053 warn (_(" type: %lx, namesize: %08lx, descsize: %08lx\n"),
12054 inote
.type
, inote
.namesz
, inote
.descsz
);
12060 /* Prevent out-of-bounds indexing. */
12061 if (inote
.namedata
+ inote
.namesz
>= (char *) pnotes
+ length
12062 || inote
.namedata
+ inote
.namesz
< inote
.namedata
)
12064 warn (_("corrupt note found at offset %lx into core notes\n"),
12065 (unsigned long) ((char *) external
- (char *) pnotes
));
12066 warn (_(" type: %lx, namesize: %08lx, descsize: %08lx\n"),
12067 inote
.type
, inote
.namesz
, inote
.descsz
);
12071 /* Verify that name is null terminated. It appears that at least
12072 one version of Linux (RedHat 6.0) generates corefiles that don't
12073 comply with the ELF spec by failing to include the null byte in
12075 if (inote
.namedata
[inote
.namesz
] != '\0')
12077 temp
= (char *) malloc (inote
.namesz
+ 1);
12081 error (_("Out of memory\n"));
12086 strncpy (temp
, inote
.namedata
, inote
.namesz
);
12087 temp
[inote
.namesz
] = 0;
12089 /* warn (_("'%s' NOTE name not properly null terminated\n"), temp); */
12090 inote
.namedata
= temp
;
12093 res
&= process_note (& inote
);
12108 process_corefile_note_segments (FILE * file
)
12110 Elf_Internal_Phdr
* segment
;
12114 if (! get_program_headers (file
))
12117 for (i
= 0, segment
= program_headers
;
12118 i
< elf_header
.e_phnum
;
12121 if (segment
->p_type
== PT_NOTE
)
12122 res
&= process_corefile_note_segment (file
,
12123 (bfd_vma
) segment
->p_offset
,
12124 (bfd_vma
) segment
->p_filesz
);
12131 process_note_sections (FILE * file
)
12133 Elf_Internal_Shdr
* section
;
12137 for (i
= 0, section
= section_headers
;
12138 i
< elf_header
.e_shnum
;
12140 if (section
->sh_type
== SHT_NOTE
)
12141 res
&= process_corefile_note_segment (file
,
12142 (bfd_vma
) section
->sh_offset
,
12143 (bfd_vma
) section
->sh_size
);
12149 process_notes (FILE * file
)
12151 /* If we have not been asked to display the notes then do nothing. */
12155 if (elf_header
.e_type
!= ET_CORE
)
12156 return process_note_sections (file
);
12158 /* No program headers means no NOTE segment. */
12159 if (elf_header
.e_phnum
> 0)
12160 return process_corefile_note_segments (file
);
12162 printf (_("No note segments present in the core file.\n"));
12167 process_arch_specific (FILE * file
)
12172 switch (elf_header
.e_machine
)
12175 return process_arm_specific (file
);
12177 case EM_MIPS_RS3_LE
:
12178 return process_mips_specific (file
);
12181 return process_power_specific (file
);
12184 return process_tic6x_specific (file
);
12193 get_file_header (FILE * file
)
12195 /* Read in the identity array. */
12196 if (fread (elf_header
.e_ident
, EI_NIDENT
, 1, file
) != 1)
12199 /* Determine how to read the rest of the header. */
12200 switch (elf_header
.e_ident
[EI_DATA
])
12202 default: /* fall through */
12203 case ELFDATANONE
: /* fall through */
12205 byte_get
= byte_get_little_endian
;
12206 byte_put
= byte_put_little_endian
;
12209 byte_get
= byte_get_big_endian
;
12210 byte_put
= byte_put_big_endian
;
12214 /* For now we only support 32 bit and 64 bit ELF files. */
12215 is_32bit_elf
= (elf_header
.e_ident
[EI_CLASS
] != ELFCLASS64
);
12217 /* Read in the rest of the header. */
12220 Elf32_External_Ehdr ehdr32
;
12222 if (fread (ehdr32
.e_type
, sizeof (ehdr32
) - EI_NIDENT
, 1, file
) != 1)
12225 elf_header
.e_type
= BYTE_GET (ehdr32
.e_type
);
12226 elf_header
.e_machine
= BYTE_GET (ehdr32
.e_machine
);
12227 elf_header
.e_version
= BYTE_GET (ehdr32
.e_version
);
12228 elf_header
.e_entry
= BYTE_GET (ehdr32
.e_entry
);
12229 elf_header
.e_phoff
= BYTE_GET (ehdr32
.e_phoff
);
12230 elf_header
.e_shoff
= BYTE_GET (ehdr32
.e_shoff
);
12231 elf_header
.e_flags
= BYTE_GET (ehdr32
.e_flags
);
12232 elf_header
.e_ehsize
= BYTE_GET (ehdr32
.e_ehsize
);
12233 elf_header
.e_phentsize
= BYTE_GET (ehdr32
.e_phentsize
);
12234 elf_header
.e_phnum
= BYTE_GET (ehdr32
.e_phnum
);
12235 elf_header
.e_shentsize
= BYTE_GET (ehdr32
.e_shentsize
);
12236 elf_header
.e_shnum
= BYTE_GET (ehdr32
.e_shnum
);
12237 elf_header
.e_shstrndx
= BYTE_GET (ehdr32
.e_shstrndx
);
12241 Elf64_External_Ehdr ehdr64
;
12243 /* If we have been compiled with sizeof (bfd_vma) == 4, then
12244 we will not be able to cope with the 64bit data found in
12245 64 ELF files. Detect this now and abort before we start
12246 overwriting things. */
12247 if (sizeof (bfd_vma
) < 8)
12249 error (_("This instance of readelf has been built without support for a\n\
12250 64 bit data type and so it cannot read 64 bit ELF files.\n"));
12254 if (fread (ehdr64
.e_type
, sizeof (ehdr64
) - EI_NIDENT
, 1, file
) != 1)
12257 elf_header
.e_type
= BYTE_GET (ehdr64
.e_type
);
12258 elf_header
.e_machine
= BYTE_GET (ehdr64
.e_machine
);
12259 elf_header
.e_version
= BYTE_GET (ehdr64
.e_version
);
12260 elf_header
.e_entry
= BYTE_GET (ehdr64
.e_entry
);
12261 elf_header
.e_phoff
= BYTE_GET (ehdr64
.e_phoff
);
12262 elf_header
.e_shoff
= BYTE_GET (ehdr64
.e_shoff
);
12263 elf_header
.e_flags
= BYTE_GET (ehdr64
.e_flags
);
12264 elf_header
.e_ehsize
= BYTE_GET (ehdr64
.e_ehsize
);
12265 elf_header
.e_phentsize
= BYTE_GET (ehdr64
.e_phentsize
);
12266 elf_header
.e_phnum
= BYTE_GET (ehdr64
.e_phnum
);
12267 elf_header
.e_shentsize
= BYTE_GET (ehdr64
.e_shentsize
);
12268 elf_header
.e_shnum
= BYTE_GET (ehdr64
.e_shnum
);
12269 elf_header
.e_shstrndx
= BYTE_GET (ehdr64
.e_shstrndx
);
12272 if (elf_header
.e_shoff
)
12274 /* There may be some extensions in the first section header. Don't
12275 bomb if we can't read it. */
12277 get_32bit_section_headers (file
, 1);
12279 get_64bit_section_headers (file
, 1);
12285 /* Process one ELF object file according to the command line options.
12286 This file may actually be stored in an archive. The file is
12287 positioned at the start of the ELF object. */
12290 process_object (char * file_name
, FILE * file
)
12294 if (! get_file_header (file
))
12296 error (_("%s: Failed to read file header\n"), file_name
);
12300 /* Initialise per file variables. */
12301 for (i
= ARRAY_SIZE (version_info
); i
--;)
12302 version_info
[i
] = 0;
12304 for (i
= ARRAY_SIZE (dynamic_info
); i
--;)
12305 dynamic_info
[i
] = 0;
12307 /* Process the file. */
12309 printf (_("\nFile: %s\n"), file_name
);
12311 /* Initialise the dump_sects array from the cmdline_dump_sects array.
12312 Note we do this even if cmdline_dump_sects is empty because we
12313 must make sure that the dump_sets array is zeroed out before each
12314 object file is processed. */
12315 if (num_dump_sects
> num_cmdline_dump_sects
)
12316 memset (dump_sects
, 0, num_dump_sects
* sizeof (* dump_sects
));
12318 if (num_cmdline_dump_sects
> 0)
12320 if (num_dump_sects
== 0)
12321 /* A sneaky way of allocating the dump_sects array. */
12322 request_dump_bynumber (num_cmdline_dump_sects
, 0);
12324 assert (num_dump_sects
>= num_cmdline_dump_sects
);
12325 memcpy (dump_sects
, cmdline_dump_sects
,
12326 num_cmdline_dump_sects
* sizeof (* dump_sects
));
12329 if (! process_file_header ())
12332 if (! process_section_headers (file
))
12334 /* Without loaded section headers we cannot process lots of
12336 do_unwind
= do_version
= do_dump
= do_arch
= 0;
12338 if (! do_using_dynamic
)
12339 do_syms
= do_dyn_syms
= do_reloc
= 0;
12342 if (! process_section_groups (file
))
12344 /* Without loaded section groups we cannot process unwind. */
12348 if (process_program_headers (file
))
12349 process_dynamic_section (file
);
12351 process_relocs (file
);
12353 process_unwind (file
);
12355 process_symbol_table (file
);
12357 process_syminfo (file
);
12359 process_version_sections (file
);
12361 process_section_contents (file
);
12363 process_notes (file
);
12365 process_gnu_liblist (file
);
12367 process_arch_specific (file
);
12369 if (program_headers
)
12371 free (program_headers
);
12372 program_headers
= NULL
;
12375 if (section_headers
)
12377 free (section_headers
);
12378 section_headers
= NULL
;
12383 free (string_table
);
12384 string_table
= NULL
;
12385 string_table_length
= 0;
12388 if (dynamic_strings
)
12390 free (dynamic_strings
);
12391 dynamic_strings
= NULL
;
12392 dynamic_strings_length
= 0;
12395 if (dynamic_symbols
)
12397 free (dynamic_symbols
);
12398 dynamic_symbols
= NULL
;
12399 num_dynamic_syms
= 0;
12402 if (dynamic_syminfo
)
12404 free (dynamic_syminfo
);
12405 dynamic_syminfo
= NULL
;
12408 if (section_headers_groups
)
12410 free (section_headers_groups
);
12411 section_headers_groups
= NULL
;
12414 if (section_groups
)
12416 struct group_list
* g
;
12417 struct group_list
* next
;
12419 for (i
= 0; i
< group_count
; i
++)
12421 for (g
= section_groups
[i
].root
; g
!= NULL
; g
= next
)
12428 free (section_groups
);
12429 section_groups
= NULL
;
12432 free_debug_memory ();
12437 /* Process an ELF archive.
12438 On entry the file is positioned just after the ARMAG string. */
12441 process_archive (char * file_name
, FILE * file
, bfd_boolean is_thin_archive
)
12443 struct archive_info arch
;
12444 struct archive_info nested_arch
;
12450 /* The ARCH structure is used to hold information about this archive. */
12451 arch
.file_name
= NULL
;
12453 arch
.index_array
= NULL
;
12454 arch
.sym_table
= NULL
;
12455 arch
.longnames
= NULL
;
12457 /* The NESTED_ARCH structure is used as a single-item cache of information
12458 about a nested archive (when members of a thin archive reside within
12459 another regular archive file). */
12460 nested_arch
.file_name
= NULL
;
12461 nested_arch
.file
= NULL
;
12462 nested_arch
.index_array
= NULL
;
12463 nested_arch
.sym_table
= NULL
;
12464 nested_arch
.longnames
= NULL
;
12466 if (setup_archive (&arch
, file_name
, file
, is_thin_archive
, do_archive_index
) != 0)
12472 if (do_archive_index
)
12474 if (arch
.sym_table
== NULL
)
12475 error (_("%s: unable to dump the index as none was found\n"), file_name
);
12479 unsigned long current_pos
;
12481 printf (_("Index of archive %s: (%ld entries, 0x%lx bytes in the symbol table)\n"),
12482 file_name
, arch
.index_num
, arch
.sym_size
);
12483 current_pos
= ftell (file
);
12485 for (i
= l
= 0; i
< arch
.index_num
; i
++)
12487 if ((i
== 0) || ((i
> 0) && (arch
.index_array
[i
] != arch
.index_array
[i
- 1])))
12489 char * member_name
;
12491 member_name
= get_archive_member_name_at (&arch
, arch
.index_array
[i
], &nested_arch
);
12493 if (member_name
!= NULL
)
12495 char * qualified_name
= make_qualified_name (&arch
, &nested_arch
, member_name
);
12497 if (qualified_name
!= NULL
)
12499 printf (_("Binary %s contains:\n"), qualified_name
);
12500 free (qualified_name
);
12505 if (l
>= arch
.sym_size
)
12507 error (_("%s: end of the symbol table reached before the end of the index\n"),
12511 printf ("\t%s\n", arch
.sym_table
+ l
);
12512 l
+= strlen (arch
.sym_table
+ l
) + 1;
12517 if (l
< arch
.sym_size
)
12518 error (_("%s: symbols remain in the index symbol table, but without corresponding entries in the index table\n"),
12521 if (fseek (file
, current_pos
, SEEK_SET
) != 0)
12523 error (_("%s: failed to seek back to start of object files in the archive\n"), file_name
);
12529 if (!do_dynamic
&& !do_syms
&& !do_reloc
&& !do_unwind
&& !do_sections
12530 && !do_segments
&& !do_header
&& !do_dump
&& !do_version
12531 && !do_histogram
&& !do_debugging
&& !do_arch
&& !do_notes
12532 && !do_section_groups
&& !do_dyn_syms
)
12534 ret
= 0; /* Archive index only. */
12545 char * qualified_name
;
12547 /* Read the next archive header. */
12548 if (fseek (file
, arch
.next_arhdr_offset
, SEEK_SET
) != 0)
12550 error (_("%s: failed to seek to next archive header\n"), file_name
);
12553 got
= fread (&arch
.arhdr
, 1, sizeof arch
.arhdr
, file
);
12554 if (got
!= sizeof arch
.arhdr
)
12558 error (_("%s: failed to read archive header\n"), file_name
);
12562 if (memcmp (arch
.arhdr
.ar_fmag
, ARFMAG
, 2) != 0)
12564 error (_("%s: did not find a valid archive header\n"), arch
.file_name
);
12569 arch
.next_arhdr_offset
+= sizeof arch
.arhdr
;
12571 archive_file_size
= strtoul (arch
.arhdr
.ar_size
, NULL
, 10);
12572 if (archive_file_size
& 01)
12573 ++archive_file_size
;
12575 name
= get_archive_member_name (&arch
, &nested_arch
);
12578 error (_("%s: bad archive file name\n"), file_name
);
12582 namelen
= strlen (name
);
12584 qualified_name
= make_qualified_name (&arch
, &nested_arch
, name
);
12585 if (qualified_name
== NULL
)
12587 error (_("%s: bad archive file name\n"), file_name
);
12592 if (is_thin_archive
&& arch
.nested_member_origin
== 0)
12594 /* This is a proxy for an external member of a thin archive. */
12595 FILE * member_file
;
12596 char * member_file_name
= adjust_relative_path (file_name
, name
, namelen
);
12597 if (member_file_name
== NULL
)
12603 member_file
= fopen (member_file_name
, "rb");
12604 if (member_file
== NULL
)
12606 error (_("Input file '%s' is not readable.\n"), member_file_name
);
12607 free (member_file_name
);
12612 archive_file_offset
= arch
.nested_member_origin
;
12614 ret
|= process_object (qualified_name
, member_file
);
12616 fclose (member_file
);
12617 free (member_file_name
);
12619 else if (is_thin_archive
)
12621 /* This is a proxy for a member of a nested archive. */
12622 archive_file_offset
= arch
.nested_member_origin
+ sizeof arch
.arhdr
;
12624 /* The nested archive file will have been opened and setup by
12625 get_archive_member_name. */
12626 if (fseek (nested_arch
.file
, archive_file_offset
, SEEK_SET
) != 0)
12628 error (_("%s: failed to seek to archive member.\n"), nested_arch
.file_name
);
12633 ret
|= process_object (qualified_name
, nested_arch
.file
);
12637 archive_file_offset
= arch
.next_arhdr_offset
;
12638 arch
.next_arhdr_offset
+= archive_file_size
;
12640 ret
|= process_object (qualified_name
, file
);
12643 free (qualified_name
);
12647 if (nested_arch
.file
!= NULL
)
12648 fclose (nested_arch
.file
);
12649 release_archive (&nested_arch
);
12650 release_archive (&arch
);
12656 process_file (char * file_name
)
12659 struct stat statbuf
;
12660 char armag
[SARMAG
];
12663 if (stat (file_name
, &statbuf
) < 0)
12665 if (errno
== ENOENT
)
12666 error (_("'%s': No such file\n"), file_name
);
12668 error (_("Could not locate '%s'. System error message: %s\n"),
12669 file_name
, strerror (errno
));
12673 if (! S_ISREG (statbuf
.st_mode
))
12675 error (_("'%s' is not an ordinary file\n"), file_name
);
12679 file
= fopen (file_name
, "rb");
12682 error (_("Input file '%s' is not readable.\n"), file_name
);
12686 if (fread (armag
, SARMAG
, 1, file
) != 1)
12688 error (_("%s: Failed to read file's magic number\n"), file_name
);
12693 if (memcmp (armag
, ARMAG
, SARMAG
) == 0)
12694 ret
= process_archive (file_name
, file
, FALSE
);
12695 else if (memcmp (armag
, ARMAGT
, SARMAG
) == 0)
12696 ret
= process_archive (file_name
, file
, TRUE
);
12699 if (do_archive_index
)
12700 error (_("File %s is not an archive so its index cannot be displayed.\n"),
12704 archive_file_size
= archive_file_offset
= 0;
12705 ret
= process_object (file_name
, file
);
12713 #ifdef SUPPORT_DISASSEMBLY
12714 /* Needed by the i386 disassembler. For extra credit, someone could
12715 fix this so that we insert symbolic addresses here, esp for GOT/PLT
12719 print_address (unsigned int addr
, FILE * outfile
)
12721 fprintf (outfile
,"0x%8.8x", addr
);
12724 /* Needed by the i386 disassembler. */
12726 db_task_printsym (unsigned int addr
)
12728 print_address (addr
, stderr
);
12733 main (int argc
, char ** argv
)
12737 #if defined (HAVE_SETLOCALE) && defined (HAVE_LC_MESSAGES)
12738 setlocale (LC_MESSAGES
, "");
12740 #if defined (HAVE_SETLOCALE)
12741 setlocale (LC_CTYPE
, "");
12743 bindtextdomain (PACKAGE
, LOCALEDIR
);
12744 textdomain (PACKAGE
);
12746 expandargv (&argc
, &argv
);
12748 parse_args (argc
, argv
);
12750 if (num_dump_sects
> 0)
12752 /* Make a copy of the dump_sects array. */
12753 cmdline_dump_sects
= (dump_type
*)
12754 malloc (num_dump_sects
* sizeof (* dump_sects
));
12755 if (cmdline_dump_sects
== NULL
)
12756 error (_("Out of memory allocating dump request table.\n"));
12759 memcpy (cmdline_dump_sects
, dump_sects
,
12760 num_dump_sects
* sizeof (* dump_sects
));
12761 num_cmdline_dump_sects
= num_dump_sects
;
12765 if (optind
< (argc
- 1))
12769 while (optind
< argc
)
12770 err
|= process_file (argv
[optind
++]);
12772 if (dump_sects
!= NULL
)
12774 if (cmdline_dump_sects
!= NULL
)
12775 free (cmdline_dump_sects
);