Copyright 1991, 1992, 1993, 1994, 1995, 1997, 1998, 2000, 2001, 2002,
2003, 2006, 2007, 2008, 2010, 2011 Free Software Foundation, Inc.
Written by Fred Fish @ Cygnus Support, from information published
in "UNIX System V Release 4, Programmers Guide: ANSI C and
Programming Support Tools".
This file is part of BFD, the Binary File Descriptor library.
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
MA 02110-1301, USA. */
that describe how ELF is represented internally in the BFD library.
I.E. it describes the in-memory representation of ELF. It requires
the elf-common.h file which contains the portions that are common to
both the internal and external representations. */
in the object file. In some cases they've been reordered for more optimal
packing under various circumstances. */
#ifndef _ELF_INTERNAL_H
#define _ELF_INTERNAL_H
other places. */
#undef SHN_UNDEF
#undef SHN_LORESERVE
#undef SHN_LOPROC
#undef SHN_HIPROC
#undef SHN_LOOS
#undef SHN_HIOS
#undef SHN_ABS
#undef SHN_COMMON
#undef SHN_XINDEX
#undef SHN_HIRESERVE
#define SHN_UNDEF 0 /* Undefined section reference */
#define SHN_LORESERVE (-0x100u) /* Begin range of reserved indices */
#define SHN_LOPROC (-0x100u) /* Begin range of appl-specific */
#define SHN_HIPROC (-0xE1u) /* End range of appl-specific */
#define SHN_LOOS (-0xE0u) /* OS specific semantics, lo */
#define SHN_HIOS (-0xC1u) /* OS specific semantics, hi */
#define SHN_ABS (-0xFu) /* Associated symbol is absolute */
#define SHN_COMMON (-0xEu) /* Associated symbol is in common */
#define SHN_XINDEX (-0x1u) /* Section index is held elsewhere */
#define SHN_HIRESERVE (-0x1u) /* End range of reserved indices */
#define SHN_BAD (-0x101u) /* Used internally by bfd */
#define EI_NIDENT 16 /* Size of e_ident[] */
typedef struct elf_internal_ehdr {
unsigned char e_ident[EI_NIDENT];
bfd_vma e_entry;
bfd_size_type e_phoff;
bfd_size_type e_shoff;
unsigned long e_version;
unsigned long e_flags;
unsigned short e_type;
unsigned short e_machine;
unsigned int e_ehsize;
unsigned int e_phentsize;
unsigned int e_phnum;
unsigned int e_shentsize;
unsigned int e_shnum;
unsigned int e_shstrndx;
} Elf_Internal_Ehdr;
struct elf_internal_phdr {
unsigned long p_type;
unsigned long p_flags;
bfd_vma p_offset;
bfd_vma p_vaddr;
bfd_vma p_paddr;
bfd_vma p_filesz;
bfd_vma p_memsz;
bfd_vma p_align;
};
typedef struct elf_internal_phdr Elf_Internal_Phdr;
typedef struct elf_internal_shdr {
unsigned int sh_name;
unsigned int sh_type;
bfd_vma sh_flags;
bfd_vma sh_addr;
file_ptr sh_offset;
bfd_size_type sh_size;
unsigned int sh_link;
unsigned int sh_info;
bfd_vma sh_addralign;
bfd_size_type sh_entsize;
asection * bfd_section;
unsigned char *contents;
} Elf_Internal_Shdr;
struct elf_internal_sym {
bfd_vma st_value;
bfd_vma st_size;
unsigned long st_name;
unsigned char st_info;
unsigned char st_other;
unsigned char st_target_internal;
unsigned int st_shndx;
};
typedef struct elf_internal_sym Elf_Internal_Sym;
typedef struct elf_internal_note {
unsigned long namesz;
unsigned long descsz;
unsigned long type;
char * namedata;
char * descdata;
bfd_vma descpos;
} Elf_Internal_Note;
typedef struct elf_internal_rela {
bfd_vma r_offset;
bfd_vma r_info;
bfd_vma r_addend;
} Elf_Internal_Rela;
typedef struct elf_internal_dyn {
bfd_vma d_tag;
union {
bfd_vma d_val;
bfd_vma d_ptr;
} d_un;
} Elf_Internal_Dyn;
typedef struct elf_internal_verdef {
unsigned short vd_version;
unsigned short vd_flags;
unsigned short vd_ndx;
unsigned short vd_cnt;
unsigned long vd_hash;
unsigned long vd_aux;
unsigned long vd_next;
It would be cleaner to store these in a different structure. */
bfd *vd_bfd;
const char *vd_nodename;
struct elf_internal_verdef *vd_nextdef;
struct elf_internal_verdaux *vd_auxptr;
unsigned int vd_exp_refno;
} Elf_Internal_Verdef;
typedef struct elf_internal_verdaux {
unsigned long vda_name;
unsigned long vda_next;
It would be cleaner to store these in a different structure. */
const char *vda_nodename;
struct elf_internal_verdaux *vda_nextptr;
} Elf_Internal_Verdaux;
typedef struct elf_internal_verneed {
unsigned short vn_version;
unsigned short vn_cnt;
unsigned long vn_file;
unsigned long vn_aux;
unsigned long vn_next;
It would be cleaner to store these in a different structure. */
bfd *vn_bfd;
const char *vn_filename;
struct elf_internal_vernaux *vn_auxptr;
struct elf_internal_verneed *vn_nextref;
} Elf_Internal_Verneed;
typedef struct elf_internal_vernaux {
unsigned long vna_hash;
unsigned short vna_flags;
unsigned short vna_other;
unsigned long vna_name;
unsigned long vna_next;
It would be cleaner to store these in a different structure. */
const char *vna_nodename;
struct elf_internal_vernaux *vna_nextptr;
} Elf_Internal_Vernaux;
standard ELF structure; ELF just uses Elf32_Half. */
typedef struct elf_internal_versym {
unsigned short vs_vers;
} Elf_Internal_Versym;
typedef struct
{
unsigned short int si_boundto;
unsigned short int si_flags;
} Elf_Internal_Syminfo;
typedef struct
{
bfd_vma a_type;
bfd_vma a_val;
} Elf_Internal_Auxv;
to program segments. */
struct elf_segment_map
{
struct elf_segment_map *next;
unsigned long p_type;
unsigned long p_flags;
bfd_vma p_paddr;
bfd_vma p_vaddr_offset;
bfd_vma p_align;
bfd_vma p_size;
bfd_vma header_size;
on the section flags. */
unsigned int p_flags_valid : 1;
is based on the section lma values. */
unsigned int p_paddr_valid : 1;
alignment is based on the default maximum page size. */
unsigned int p_align_valid : 1;
on the section sizes. */
unsigned int p_size_valid : 1;
unsigned int includes_filehdr : 1;
unsigned int includes_phdrs : 1;
unsigned int count;
asection *sections[1];
};
segments and it doesn't take file space in normal segments. */
#define ELF_TBSS_SPECIAL(sec_hdr, segment) \
(((sec_hdr)->sh_flags & SHF_TLS) != 0 \
&& (sec_hdr)->sh_type == SHT_NOBITS \
&& (segment)->p_type != PT_TLS)
#define ELF_SECTION_SIZE(sec_hdr, segment) \
(ELF_TBSS_SPECIAL(sec_hdr, segment) ? 0 : (sec_hdr)->sh_size)
VMAs are checked for alloc sections. If STRICT, then a zero size
section won't match at the end of a segment, unless the segment
is also zero size. Regardless of STRICT and CHECK_VMA, zero size
sections won't match at the start or end of PT_DYNAMIC, unless
PT_DYNAMIC is itself zero sized. */
#define ELF_SECTION_IN_SEGMENT_1(sec_hdr, segment, check_vma, strict) \
((/* Only PT_LOAD, PT_GNU_RELRO and PT_TLS segments can contain \
SHF_TLS sections. */ \
((((sec_hdr)->sh_flags & SHF_TLS) != 0) \
&& ((segment)->p_type == PT_TLS \
|| (segment)->p_type == PT_GNU_RELRO \
|| (segment)->p_type == PT_LOAD)) \
/* PT_TLS segment contains only SHF_TLS sections, PT_PHDR no \
sections at all. */ \
|| (((sec_hdr)->sh_flags & SHF_TLS) == 0 \
&& (segment)->p_type != PT_TLS \
&& (segment)->p_type != PT_PHDR)) \
/* Any section besides one of type SHT_NOBITS must have file \
offsets within the segment. */ \
&& ((sec_hdr)->sh_type == SHT_NOBITS \
|| ((bfd_vma) (sec_hdr)->sh_offset >= (segment)->p_offset \
&& (!(strict) \
|| ((sec_hdr)->sh_offset - (segment)->p_offset \
<= (segment)->p_filesz - 1)) \
&& (((sec_hdr)->sh_offset - (segment)->p_offset \
+ ELF_SECTION_SIZE(sec_hdr, segment)) \
<= (segment)->p_filesz))) \
/* SHF_ALLOC sections must have VMAs within the segment. */ \
&& (!(check_vma) \
|| ((sec_hdr)->sh_flags & SHF_ALLOC) == 0 \
|| ((sec_hdr)->sh_addr >= (segment)->p_vaddr \
&& (!(strict) \
|| ((sec_hdr)->sh_addr - (segment)->p_vaddr \
<= (segment)->p_memsz - 1)) \
&& (((sec_hdr)->sh_addr - (segment)->p_vaddr \
+ ELF_SECTION_SIZE(sec_hdr, segment)) \
<= (segment)->p_memsz))) \
/* No zero size sections at start or end of PT_DYNAMIC. */ \
&& ((segment)->p_type != PT_DYNAMIC \
|| (sec_hdr)->sh_size != 0 \
|| (segment)->p_memsz == 0 \
|| (((sec_hdr)->sh_type == SHT_NOBITS \
|| ((bfd_vma) (sec_hdr)->sh_offset > (segment)->p_offset \
&& ((sec_hdr)->sh_offset - (segment)->p_offset \
< (segment)->p_filesz))) \
&& (((sec_hdr)->sh_flags & SHF_ALLOC) == 0 \
|| ((sec_hdr)->sh_addr > (segment)->p_vaddr \
&& ((sec_hdr)->sh_addr - (segment)->p_vaddr \
< (segment)->p_memsz))))))
#define ELF_SECTION_IN_SEGMENT(sec_hdr, segment) \
(ELF_SECTION_IN_SEGMENT_1 (sec_hdr, segment, 1, 0))
#define ELF_SECTION_IN_SEGMENT_STRICT(sec_hdr, segment) \
(ELF_SECTION_IN_SEGMENT_1 (sec_hdr, segment, 1, 1))
#endif