Coverage Report

Created: 2025-08-03 07:07

/src/elfutils/libelf/gelf_xlate.c
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Source (jump to first uncovered line)
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/* Transformation functions for ELF data types.
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   Copyright (C) 1998,1999,2000,2002,2004,2005,2006,2007,2015 Red Hat, Inc.
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   Copyright (C) 2022 Mark J. Wielaard <mark@klomp.org>
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   This file is part of elfutils.
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   Written by Ulrich Drepper <drepper@redhat.com>, 1998.
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   This file is free software; you can redistribute it and/or modify
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   it under the terms of either
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     * the GNU Lesser General Public License as published by the Free
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       Software Foundation; either version 3 of the License, or (at
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       your option) any later version
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   or
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     * the GNU General Public License as published by the Free
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       Software Foundation; either version 2 of the License, or (at
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       your option) any later version
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   or both in parallel, as here.
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   elfutils is distributed in the hope that it will be useful, but
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   WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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   General Public License for more details.
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   You should have received copies of the GNU General Public License and
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   the GNU Lesser General Public License along with this program.  If
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   not, see <http://www.gnu.org/licenses/>.  */
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#ifdef HAVE_CONFIG_H
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# include <config.h>
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#endif
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#include <stdint.h>
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#include <string.h>
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#include <stdlib.h>
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#include "libelfP.h"
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#ifndef LIBELFBITS
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# define LIBELFBITS 32
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#endif
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/* Well, what shall I say.  Nothing to do here.  */
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#define elf_cvt_Byte(dest, src, n) \
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  (__builtin_constant_p (n) && (n) == 1               \
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   ? (void) (*((char *) (dest)) = *((char *) (src)))            \
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   : Elf32_cvt_Byte (dest, src, n))
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static void
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(elf_cvt_Byte) (void *dest, const void *src, size_t n,
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    int encode __attribute__ ((unused)))
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0
{
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0
  if (n != 0)
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0
    memmove (dest, src, n);
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0
}
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/* We'll optimize the definition of the conversion functions here a
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   bit.  We need only functions for 16, 32, and 64 bits.  The
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   functions referenced in the table will be aliases for one of these
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   functions.  Which one is decided by the ELFxx_FSZ_type.  */
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#if ALLOW_UNALIGNED
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#define FETCH(Bits, ptr)  (*(const uint##Bits##_t *) ptr)
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33.4M
#define STORE(Bits, ptr, val) (*(uint##Bits##_t *) ptr = val)
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#else
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union unaligned
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  {
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    uint16_t u16;
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    uint32_t u32;
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    uint64_t u64;
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  } attribute_packed;
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#define FETCH(Bits, ptr)  (((const union unaligned *) ptr)->u##Bits)
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#define STORE(Bits, ptr, val) (((union unaligned *) ptr)->u##Bits = val)
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#endif
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/* Now define the conversion functions for the basic types.  We use here
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   the fact that file and memory types are the same and that we have the
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   ELFxx_FSZ_* macros.
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   At the same time we define inline functions which we will use to
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   convert the complex types.  */
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#define FUNDAMENTAL(NAME, Name, Bits) \
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  INLINE2 (ELFW2(Bits,FSZ_##NAME), ElfW2(Bits,cvt_##Name), ElfW2(Bits,Name))
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#define INLINE2(Bytes, FName, TName) \
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  INLINE3 (Bytes, FName, TName)
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#define INLINE3(Bytes, FName, TName)                \
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  static inline void FName##1 (void *dest, const void *ptr)         \
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33.4M
  {                       \
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33.4M
    switch (Bytes)                    \
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      {                       \
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      case 2: STORE (16, dest, bswap_16 (FETCH (16, ptr))); break;       \
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      case 4: STORE (32, dest, bswap_32 (FETCH (32, ptr))); break;       \
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0
      case 8: STORE (64, dest, bswap_64 (FETCH (64, ptr))); break;       \
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      default:                      \
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  abort ();                   \
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33.4M
      }                       \
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  }                        \
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Addr1
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Sword1
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Half1
gelf_xlate.c:Elf32_cvt_Word1
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33.4M
  {                       \
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33.4M
    switch (Bytes)                    \
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      {                       \
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0
      case 2: STORE (16, dest, bswap_16 (FETCH (16, ptr))); break;       \
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33.4M
      case 4: STORE (32, dest, bswap_32 (FETCH (32, ptr))); break;       \
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      case 8: STORE (64, dest, bswap_64 (FETCH (64, ptr))); break;       \
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0
      default:                      \
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  abort ();                   \
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33.4M
      }                       \
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33.4M
  }                        \
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Off1
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Xword1
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Sxword1
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Relr1
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Addr1
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Xword1
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Half1
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Word1
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Off1
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Sxword1
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Sword1
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Relr1
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                        \
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  static void FName (void *dest, const void *ptr, size_t len,         \
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         int encode __attribute__ ((unused)))         \
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0
  {                       \
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    size_t n = len / sizeof (TName);                \
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    if (dest < ptr)                   \
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      while (n-- > 0)                   \
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  {                     \
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    FName##1 (dest, ptr);                 \
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    dest += Bytes;                  \
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    ptr += Bytes;                   \
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  }                      \
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    else                      \
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      {                       \
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  dest += len;                    \
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  ptr += len;                   \
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  while (n-- > 0)                   \
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    {                     \
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      ptr -= Bytes;                 \
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      dest -= Bytes;                  \
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      FName##1 (dest, ptr);               \
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    }                      \
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      }                       \
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0
  }
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Addr
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Half
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Off
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Sword
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Word
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Xword
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Sxword
Unexecuted instantiation: gelf_xlate.c:Elf32_cvt_Relr
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Addr
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Half
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Off
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Sword
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Word
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Xword
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Sxword
Unexecuted instantiation: gelf_xlate.c:Elf64_cvt_Relr
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/* Now the tricky part: define the transformation functions for the
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   complex types.  We will use the definitions of the types in
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   abstract.h.  */
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#define START(Bits, Name, EName) \
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  static void                     \
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  ElfW2 (Bits, cvt_##Name) (void *dest, const void *src, size_t len,        \
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          int encode __attribute__ ((unused)))        \
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11.1M
  { ElfW2(Bits, Name) *tdest = (ElfW2(Bits, Name) *) dest;         \
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11.1M
    ElfW2(Bits, Name) *tsrc = (ElfW2(Bits, Name) *) src;         \
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11.1M
    size_t sz = sizeof (ElfW2(Bits, Name));             \
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11.1M
    size_t n;                     \
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22.2M
    for (n = len / sz; n > 0; ++tdest, ++tsrc, --n) {
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#define END(Bits, Name)                   \
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11.1M
    }                        \
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11.1M
    if (len % sz > 0) /* Cannot convert partial structures, just copy. */     \
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11.1M
      memmove (dest, src, len % sz);               \
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11.1M
  }
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#define TYPE_EXTRA(Code)
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0
#define TYPE_XLATE(Code) Code
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33.4M
#define TYPE_NAME(Type, Name) TYPE_NAME2 (Type, Name)
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33.4M
#define TYPE_NAME2(Type, Name) Type##1 (&tdest->Name, &tsrc->Name);
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#define TYPE(Name, Bits) TYPE2 (Name, Bits)
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#define TYPE2(Name, Bits) TYPE3 (Name##Bits)
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#define TYPE3(Name) Name (cvt_)
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/* Signal that we are generating conversion functions.  */
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#define GENERATE_CONVERSION
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/* First generate the 32-bit conversion functions.  */
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#define LIBELFBITS 32
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#include "gelf_xlate.h"
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/* Now generate the 64-bit conversion functions.  */
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#define LIBELFBITS 64
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#include "gelf_xlate.h"
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/* We have a few functions which we must create by hand since the sections
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   do not contain records of only one type.  */
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#include "version_xlate.h"
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#include "gnuhash_xlate.h"
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#include "note_xlate.h"
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#include "chdr_xlate.h"
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/* Now the externally visible table with the function pointers.  */
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const xfct_t __elf_xfctstom[ELFCLASSNUM - 1][ELF_T_NUM] =
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{
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      [ELFCLASS32 - 1] = {
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#define define_xfcts(Bits) \
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  [ELF_T_BYTE]  = elf_cvt_Byte,               \
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  [ELF_T_ADDR]  = ElfW2(Bits, cvt_Addr),            \
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  [ELF_T_DYN] = ElfW2(Bits, cvt_Dyn),             \
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  [ELF_T_EHDR]  = ElfW2(Bits, cvt_Ehdr),            \
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  [ELF_T_HALF]  = ElfW2(Bits, cvt_Half),            \
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  [ELF_T_OFF] = ElfW2(Bits, cvt_Off),             \
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  [ELF_T_PHDR]  = ElfW2(Bits, cvt_Phdr),            \
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  [ELF_T_RELA]  = ElfW2(Bits, cvt_Rela),            \
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  [ELF_T_REL] = ElfW2(Bits, cvt_Rel),             \
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  [ELF_T_SHDR]  = ElfW2(Bits, cvt_Shdr),            \
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  [ELF_T_SWORD] = ElfW2(Bits, cvt_Sword),           \
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  [ELF_T_SYM] = ElfW2(Bits, cvt_Sym),             \
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  [ELF_T_WORD]  = ElfW2(Bits, cvt_Word),            \
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  [ELF_T_XWORD] = ElfW2(Bits, cvt_Xword),           \
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  [ELF_T_SXWORD]  = ElfW2(Bits, cvt_Sxword),            \
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  [ELF_T_VDEF]  = elf_cvt_Verdef,             \
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  [ELF_T_VDAUX] = elf_cvt_Verdef,             \
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  [ELF_T_VNEED] = elf_cvt_Verneed,              \
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  [ELF_T_VNAUX] = elf_cvt_Verneed,              \
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  [ELF_T_NHDR]  = elf_cvt_note4,              \
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  [ELF_T_NHDR8] = elf_cvt_note8,              \
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  [ELF_T_SYMINFO] = ElfW2(Bits, cvt_Syminfo),           \
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  [ELF_T_MOVE]  = ElfW2(Bits, cvt_Move),            \
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  [ELF_T_LIB] = ElfW2(Bits, cvt_Lib),             \
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  [ELF_T_AUXV]  = ElfW2(Bits, cvt_auxv_t),            \
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  [ELF_T_CHDR]  = ElfW2(Bits, cvt_chdr),            \
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  [ELF_T_RELR]  = ElfW2(Bits, cvt_Relr)
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        define_xfcts (32),
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  [ELF_T_GNUHASH] = Elf32_cvt_Word
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      },
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      [ELFCLASS64 - 1] = {
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  define_xfcts (64),
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  [ELF_T_GNUHASH] = elf_cvt_gnuhash
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      }
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};