1 | /* Intel 80386/80486-specific support for 32-bit ELF
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2 | Copyright 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001
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3 | Free Software Foundation, Inc.
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4 |
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5 | This file is part of BFD, the Binary File Descriptor library.
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6 |
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7 | This program is free software; you can redistribute it and/or modify
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8 | it under the terms of the GNU General Public License as published by
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9 | the Free Software Foundation; either version 2 of the License, or
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10 | (at your option) any later version.
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11 |
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12 | This program is distributed in the hope that it will be useful,
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13 | but WITHOUT ANY WARRANTY; without even the implied warranty of
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14 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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15 | GNU General Public License for more details.
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16 |
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17 | You should have received a copy of the GNU General Public License
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18 | along with this program; if not, write to the Free Software
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19 | Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
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20 |
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21 | #include "bfd.h"
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22 | #include "sysdep.h"
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23 | #include "bfdlink.h"
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24 | #include "libbfd.h"
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25 | #include "elf-bfd.h"
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26 |
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27 | static reloc_howto_type *elf_i386_reloc_type_lookup
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28 | PARAMS ((bfd *, bfd_reloc_code_real_type));
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29 | static void elf_i386_info_to_howto
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30 | PARAMS ((bfd *, arelent *, Elf32_Internal_Rela *));
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31 | static void elf_i386_info_to_howto_rel
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32 | PARAMS ((bfd *, arelent *, Elf32_Internal_Rel *));
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33 | static boolean elf_i386_is_local_label_name PARAMS ((bfd *, const char *));
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34 | static struct bfd_hash_entry *elf_i386_link_hash_newfunc
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35 | PARAMS ((struct bfd_hash_entry *, struct bfd_hash_table *, const char *));
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36 | static struct bfd_link_hash_table *elf_i386_link_hash_table_create
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37 | PARAMS ((bfd *));
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38 | static boolean elf_i386_check_relocs
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39 | PARAMS ((bfd *, struct bfd_link_info *, asection *,
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40 | const Elf_Internal_Rela *));
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41 | static boolean elf_i386_adjust_dynamic_symbol
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42 | PARAMS ((struct bfd_link_info *, struct elf_link_hash_entry *));
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43 | static boolean elf_i386_size_dynamic_sections
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44 | PARAMS ((bfd *, struct bfd_link_info *));
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45 | static boolean elf_i386_relocate_section
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46 | PARAMS ((bfd *, struct bfd_link_info *, bfd *, asection *, bfd_byte *,
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47 | Elf_Internal_Rela *, Elf_Internal_Sym *, asection **));
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48 | static boolean elf_i386_finish_dynamic_symbol
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49 | PARAMS ((bfd *, struct bfd_link_info *, struct elf_link_hash_entry *,
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50 | Elf_Internal_Sym *));
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51 | static boolean elf_i386_finish_dynamic_sections
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52 | PARAMS ((bfd *, struct bfd_link_info *));
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53 |
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54 | #define USE_REL 1 /* 386 uses REL relocations instead of RELA */
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55 |
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56 | #include "elf/i386.h"
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57 |
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58 | static reloc_howto_type elf_howto_table[]=
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59 | {
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60 | HOWTO(R_386_NONE, 0, 0, 0, false, 0, complain_overflow_bitfield,
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61 | bfd_elf_generic_reloc, "R_386_NONE",
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62 | true, 0x00000000, 0x00000000, false),
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63 | HOWTO(R_386_32, 0, 2, 32, false, 0, complain_overflow_bitfield,
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64 | bfd_elf_generic_reloc, "R_386_32",
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65 | true, 0xffffffff, 0xffffffff, false),
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66 | HOWTO(R_386_PC32, 0, 2, 32, true, 0, complain_overflow_bitfield,
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67 | bfd_elf_generic_reloc, "R_386_PC32",
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68 | true, 0xffffffff, 0xffffffff, true),
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69 | HOWTO(R_386_GOT32, 0, 2, 32, false, 0, complain_overflow_bitfield,
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70 | bfd_elf_generic_reloc, "R_386_GOT32",
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71 | true, 0xffffffff, 0xffffffff, false),
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72 | HOWTO(R_386_PLT32, 0, 2, 32, true, 0, complain_overflow_bitfield,
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73 | bfd_elf_generic_reloc, "R_386_PLT32",
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74 | true, 0xffffffff, 0xffffffff, true),
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75 | HOWTO(R_386_COPY, 0, 2, 32, false, 0, complain_overflow_bitfield,
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76 | bfd_elf_generic_reloc, "R_386_COPY",
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77 | true, 0xffffffff, 0xffffffff, false),
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78 | HOWTO(R_386_GLOB_DAT, 0, 2, 32, false, 0, complain_overflow_bitfield,
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79 | bfd_elf_generic_reloc, "R_386_GLOB_DAT",
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80 | true, 0xffffffff, 0xffffffff, false),
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81 | HOWTO(R_386_JUMP_SLOT, 0, 2, 32, false, 0, complain_overflow_bitfield,
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82 | bfd_elf_generic_reloc, "R_386_JUMP_SLOT",
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83 | true, 0xffffffff, 0xffffffff, false),
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84 | HOWTO(R_386_RELATIVE, 0, 2, 32, false, 0, complain_overflow_bitfield,
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85 | bfd_elf_generic_reloc, "R_386_RELATIVE",
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86 | true, 0xffffffff, 0xffffffff, false),
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87 | HOWTO(R_386_GOTOFF, 0, 2, 32, false, 0, complain_overflow_bitfield,
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88 | bfd_elf_generic_reloc, "R_386_GOTOFF",
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89 | true, 0xffffffff, 0xffffffff, false),
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90 | HOWTO(R_386_GOTPC, 0, 2, 32, true, 0, complain_overflow_bitfield,
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91 | bfd_elf_generic_reloc, "R_386_GOTPC",
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92 | true, 0xffffffff, 0xffffffff, true),
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93 |
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94 | /* We have a gap in the reloc numbers here.
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95 | R_386_standard counts the number up to this point, and
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96 | R_386_ext_offset is the value to subtract from a reloc type of
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97 | R_386_16 thru R_386_PC8 to form an index into this table. */
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98 | #define R_386_standard ((unsigned int) R_386_GOTPC + 1)
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99 | #define R_386_ext_offset ((unsigned int) R_386_16 - R_386_standard)
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100 |
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101 | /* The remaining relocs are a GNU extension. */
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102 | HOWTO(R_386_16, 0, 1, 16, false, 0, complain_overflow_bitfield,
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103 | bfd_elf_generic_reloc, "R_386_16",
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104 | true, 0xffff, 0xffff, false),
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105 | HOWTO(R_386_PC16, 0, 1, 16, true, 0, complain_overflow_bitfield,
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106 | bfd_elf_generic_reloc, "R_386_PC16",
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107 | true, 0xffff, 0xffff, true),
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108 | HOWTO(R_386_8, 0, 0, 8, false, 0, complain_overflow_bitfield,
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109 | bfd_elf_generic_reloc, "R_386_8",
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110 | true, 0xff, 0xff, false),
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111 | HOWTO(R_386_PC8, 0, 0, 8, true, 0, complain_overflow_signed,
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112 | bfd_elf_generic_reloc, "R_386_PC8",
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113 | true, 0xff, 0xff, true),
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114 |
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115 | /* Another gap. */
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116 | #define R_386_ext ((unsigned int) R_386_PC8 + 1 - R_386_ext_offset)
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117 | #define R_386_vt_offset ((unsigned int) R_386_GNU_VTINHERIT - R_386_ext)
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118 |
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119 | /* GNU extension to record C++ vtable hierarchy. */
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120 | HOWTO (R_386_GNU_VTINHERIT, /* type */
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121 | 0, /* rightshift */
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122 | 2, /* size (0 = byte, 1 = short, 2 = long) */
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123 | 0, /* bitsize */
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124 | false, /* pc_relative */
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125 | 0, /* bitpos */
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126 | complain_overflow_dont, /* complain_on_overflow */
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127 | NULL, /* special_function */
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128 | "R_386_GNU_VTINHERIT", /* name */
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129 | false, /* partial_inplace */
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130 | 0, /* src_mask */
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131 | 0, /* dst_mask */
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132 | false),
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133 |
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134 | /* GNU extension to record C++ vtable member usage. */
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135 | HOWTO (R_386_GNU_VTENTRY, /* type */
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136 | 0, /* rightshift */
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137 | 2, /* size (0 = byte, 1 = short, 2 = long) */
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138 | 0, /* bitsize */
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139 | false, /* pc_relative */
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140 | 0, /* bitpos */
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141 | complain_overflow_dont, /* complain_on_overflow */
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142 | _bfd_elf_rel_vtable_reloc_fn, /* special_function */
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143 | "R_386_GNU_VTENTRY", /* name */
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144 | false, /* partial_inplace */
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145 | 0, /* src_mask */
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146 | 0, /* dst_mask */
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147 | false)
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148 |
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149 | #define R_386_vt ((unsigned int) R_386_GNU_VTENTRY + 1 - R_386_vt_offset)
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150 |
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151 | };
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152 |
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153 | #ifdef DEBUG_GEN_RELOC
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154 | #define TRACE(str) fprintf (stderr, "i386 bfd reloc lookup %d (%s)\n", code, str)
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155 | #else
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156 | #define TRACE(str)
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157 | #endif
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158 |
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159 | static reloc_howto_type *
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160 | elf_i386_reloc_type_lookup (abfd, code)
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161 | bfd *abfd ATTRIBUTE_UNUSED;
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162 | bfd_reloc_code_real_type code;
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163 | {
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164 | switch (code)
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165 | {
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166 | case BFD_RELOC_NONE:
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167 | TRACE ("BFD_RELOC_NONE");
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168 | return &elf_howto_table[(unsigned int) R_386_NONE ];
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169 |
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170 | case BFD_RELOC_32:
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171 | TRACE ("BFD_RELOC_32");
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172 | return &elf_howto_table[(unsigned int) R_386_32 ];
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173 |
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174 | case BFD_RELOC_CTOR:
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175 | TRACE ("BFD_RELOC_CTOR");
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176 | return &elf_howto_table[(unsigned int) R_386_32 ];
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177 |
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178 | case BFD_RELOC_32_PCREL:
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179 | TRACE ("BFD_RELOC_PC32");
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180 | return &elf_howto_table[(unsigned int) R_386_PC32 ];
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181 |
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182 | case BFD_RELOC_386_GOT32:
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183 | TRACE ("BFD_RELOC_386_GOT32");
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184 | return &elf_howto_table[(unsigned int) R_386_GOT32 ];
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185 |
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186 | case BFD_RELOC_386_PLT32:
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187 | TRACE ("BFD_RELOC_386_PLT32");
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188 | return &elf_howto_table[(unsigned int) R_386_PLT32 ];
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189 |
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190 | case BFD_RELOC_386_COPY:
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191 | TRACE ("BFD_RELOC_386_COPY");
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192 | return &elf_howto_table[(unsigned int) R_386_COPY ];
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193 |
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194 | case BFD_RELOC_386_GLOB_DAT:
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195 | TRACE ("BFD_RELOC_386_GLOB_DAT");
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196 | return &elf_howto_table[(unsigned int) R_386_GLOB_DAT ];
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197 |
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198 | case BFD_RELOC_386_JUMP_SLOT:
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199 | TRACE ("BFD_RELOC_386_JUMP_SLOT");
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200 | return &elf_howto_table[(unsigned int) R_386_JUMP_SLOT ];
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201 |
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202 | case BFD_RELOC_386_RELATIVE:
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203 | TRACE ("BFD_RELOC_386_RELATIVE");
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204 | return &elf_howto_table[(unsigned int) R_386_RELATIVE ];
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205 |
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206 | case BFD_RELOC_386_GOTOFF:
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207 | TRACE ("BFD_RELOC_386_GOTOFF");
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208 | return &elf_howto_table[(unsigned int) R_386_GOTOFF ];
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209 |
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210 | case BFD_RELOC_386_GOTPC:
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211 | TRACE ("BFD_RELOC_386_GOTPC");
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212 | return &elf_howto_table[(unsigned int) R_386_GOTPC ];
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213 |
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214 | /* The remaining relocs are a GNU extension. */
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215 | case BFD_RELOC_16:
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216 | TRACE ("BFD_RELOC_16");
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217 | return &elf_howto_table[(unsigned int) R_386_16 - R_386_ext_offset];
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218 |
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219 | case BFD_RELOC_16_PCREL:
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220 | TRACE ("BFD_RELOC_16_PCREL");
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221 | return &elf_howto_table[(unsigned int) R_386_PC16 - R_386_ext_offset];
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222 |
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223 | case BFD_RELOC_8:
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224 | TRACE ("BFD_RELOC_8");
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225 | return &elf_howto_table[(unsigned int) R_386_8 - R_386_ext_offset];
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226 |
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227 | case BFD_RELOC_8_PCREL:
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228 | TRACE ("BFD_RELOC_8_PCREL");
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229 | return &elf_howto_table[(unsigned int) R_386_PC8 - R_386_ext_offset];
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230 |
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231 | case BFD_RELOC_VTABLE_INHERIT:
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232 | TRACE ("BFD_RELOC_VTABLE_INHERIT");
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233 | return &elf_howto_table[(unsigned int) R_386_GNU_VTINHERIT
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234 | - R_386_vt_offset];
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235 |
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236 | case BFD_RELOC_VTABLE_ENTRY:
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237 | TRACE ("BFD_RELOC_VTABLE_ENTRY");
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238 | return &elf_howto_table[(unsigned int) R_386_GNU_VTENTRY
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239 | - R_386_vt_offset];
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240 |
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241 | default:
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242 | break;
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243 | }
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244 |
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245 | TRACE ("Unknown");
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246 | return 0;
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247 | }
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248 |
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249 | static void
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250 | elf_i386_info_to_howto (abfd, cache_ptr, dst)
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251 | bfd *abfd ATTRIBUTE_UNUSED;
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252 | arelent *cache_ptr ATTRIBUTE_UNUSED;
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253 | Elf32_Internal_Rela *dst ATTRIBUTE_UNUSED;
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254 | {
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255 | abort ();
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256 | }
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257 |
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258 | static void
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259 | elf_i386_info_to_howto_rel (abfd, cache_ptr, dst)
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260 | bfd *abfd ATTRIBUTE_UNUSED;
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261 | arelent *cache_ptr;
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262 | Elf32_Internal_Rel *dst;
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263 | {
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264 | unsigned int r_type = ELF32_R_TYPE (dst->r_info);
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265 | unsigned int indx;
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266 |
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267 | if ((indx = r_type) >= R_386_standard
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268 | && ((indx = r_type - R_386_ext_offset) - R_386_standard
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269 | >= R_386_ext - R_386_standard)
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270 | && ((indx = r_type - R_386_vt_offset) - R_386_ext
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271 | >= R_386_vt - R_386_ext))
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272 | {
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273 | (*_bfd_error_handler) (_("%s: invalid relocation type %d"),
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274 | bfd_get_filename (abfd), (int) r_type);
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275 | indx = (unsigned int) R_386_NONE;
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276 | }
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277 | cache_ptr->howto = &elf_howto_table[indx];
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278 | }
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279 |
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280 | /* Return whether a symbol name implies a local label. The UnixWare
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281 | 2.1 cc generates temporary symbols that start with .X, so we
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282 | recognize them here. FIXME: do other SVR4 compilers also use .X?.
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283 | If so, we should move the .X recognition into
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284 | _bfd_elf_is_local_label_name. */
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285 |
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286 | static boolean
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287 | elf_i386_is_local_label_name (abfd, name)
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288 | bfd *abfd;
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289 | const char *name;
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290 | {
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291 | if (name[0] == '.' && name[1] == 'X')
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292 | return true;
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293 |
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294 | return _bfd_elf_is_local_label_name (abfd, name);
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295 | }
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296 | |
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297 |
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298 | /* Functions for the i386 ELF linker. */
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299 |
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300 | /* The name of the dynamic interpreter. This is put in the .interp
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301 | section. */
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302 |
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303 | #define ELF_DYNAMIC_INTERPRETER "/usr/lib/libc.so.1"
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304 |
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305 | /* The size in bytes of an entry in the procedure linkage table. */
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306 |
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307 | #define PLT_ENTRY_SIZE 16
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308 |
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309 | /* The first entry in an absolute procedure linkage table looks like
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310 | this. See the SVR4 ABI i386 supplement to see how this works. */
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311 |
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312 | static const bfd_byte elf_i386_plt0_entry[PLT_ENTRY_SIZE] =
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313 | {
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314 | 0xff, 0x35, /* pushl contents of address */
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315 | 0, 0, 0, 0, /* replaced with address of .got + 4. */
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316 | 0xff, 0x25, /* jmp indirect */
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317 | 0, 0, 0, 0, /* replaced with address of .got + 8. */
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318 | 0, 0, 0, 0 /* pad out to 16 bytes. */
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319 | };
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320 |
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321 | /* Subsequent entries in an absolute procedure linkage table look like
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322 | this. */
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323 |
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324 | static const bfd_byte elf_i386_plt_entry[PLT_ENTRY_SIZE] =
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325 | {
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326 | 0xff, 0x25, /* jmp indirect */
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327 | 0, 0, 0, 0, /* replaced with address of this symbol in .got. */
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328 | 0x68, /* pushl immediate */
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329 | 0, 0, 0, 0, /* replaced with offset into relocation table. */
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330 | 0xe9, /* jmp relative */
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331 | 0, 0, 0, 0 /* replaced with offset to start of .plt. */
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332 | };
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333 |
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334 | /* The first entry in a PIC procedure linkage table look like this. */
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335 |
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336 | static const bfd_byte elf_i386_pic_plt0_entry[PLT_ENTRY_SIZE] =
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337 | {
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338 | 0xff, 0xb3, 4, 0, 0, 0, /* pushl 4(%ebx) */
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339 | 0xff, 0xa3, 8, 0, 0, 0, /* jmp *8(%ebx) */
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340 | 0, 0, 0, 0 /* pad out to 16 bytes. */
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341 | };
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342 |
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343 | /* Subsequent entries in a PIC procedure linkage table look like this. */
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344 |
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345 | static const bfd_byte elf_i386_pic_plt_entry[PLT_ENTRY_SIZE] =
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346 | {
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347 | 0xff, 0xa3, /* jmp *offset(%ebx) */
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348 | 0, 0, 0, 0, /* replaced with offset of this symbol in .got. */
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349 | 0x68, /* pushl immediate */
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350 | 0, 0, 0, 0, /* replaced with offset into relocation table. */
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351 | 0xe9, /* jmp relative */
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352 | 0, 0, 0, 0 /* replaced with offset to start of .plt. */
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353 | };
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354 |
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355 | /* The i386 linker needs to keep track of the number of relocs that it
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356 | decides to copy in check_relocs for each symbol. This is so that
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357 | it can discard PC relative relocs if it doesn't need them when
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358 | linking with -Bsymbolic. We store the information in a field
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359 | extending the regular ELF linker hash table. */
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360 |
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361 | /* This structure keeps track of the number of PC relative relocs we
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362 | have copied for a given symbol. */
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363 |
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364 | struct elf_i386_pcrel_relocs_copied
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365 | {
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366 | /* Next section. */
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367 | struct elf_i386_pcrel_relocs_copied *next;
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368 | /* A section in dynobj. */
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369 | asection *section;
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370 | /* Number of relocs copied in this section. */
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371 | bfd_size_type count;
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372 | };
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373 |
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374 | /* i386 ELF linker hash entry. */
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375 |
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376 | struct elf_i386_link_hash_entry
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377 | {
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378 | struct elf_link_hash_entry root;
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379 |
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380 | /* Number of PC relative relocs copied for this symbol. */
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381 | struct elf_i386_pcrel_relocs_copied *pcrel_relocs_copied;
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382 | };
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383 |
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384 | /* i386 ELF linker hash table. */
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385 |
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386 | struct elf_i386_link_hash_table
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387 | {
|
---|
388 | struct elf_link_hash_table root;
|
---|
389 | };
|
---|
390 |
|
---|
391 | /* Declare this now that the above structures are defined. */
|
---|
392 |
|
---|
393 | static boolean elf_i386_discard_copies
|
---|
394 | PARAMS ((struct elf_i386_link_hash_entry *, PTR));
|
---|
395 |
|
---|
396 | /* Traverse an i386 ELF linker hash table. */
|
---|
397 |
|
---|
398 | #define elf_i386_link_hash_traverse(table, func, info) \
|
---|
399 | (elf_link_hash_traverse \
|
---|
400 | (&(table)->root, \
|
---|
401 | (boolean (*) PARAMS ((struct elf_link_hash_entry *, PTR))) (func), \
|
---|
402 | (info)))
|
---|
403 |
|
---|
404 | /* Get the i386 ELF linker hash table from a link_info structure. */
|
---|
405 |
|
---|
406 | #define elf_i386_hash_table(p) \
|
---|
407 | ((struct elf_i386_link_hash_table *) ((p)->hash))
|
---|
408 |
|
---|
409 | /* Create an entry in an i386 ELF linker hash table. */
|
---|
410 |
|
---|
411 | static struct bfd_hash_entry *
|
---|
412 | elf_i386_link_hash_newfunc (entry, table, string)
|
---|
413 | struct bfd_hash_entry *entry;
|
---|
414 | struct bfd_hash_table *table;
|
---|
415 | const char *string;
|
---|
416 | {
|
---|
417 | struct elf_i386_link_hash_entry *ret =
|
---|
418 | (struct elf_i386_link_hash_entry *) entry;
|
---|
419 |
|
---|
420 | /* Allocate the structure if it has not already been allocated by a
|
---|
421 | subclass. */
|
---|
422 | if (ret == (struct elf_i386_link_hash_entry *) NULL)
|
---|
423 | ret = ((struct elf_i386_link_hash_entry *)
|
---|
424 | bfd_hash_allocate (table,
|
---|
425 | sizeof (struct elf_i386_link_hash_entry)));
|
---|
426 | if (ret == (struct elf_i386_link_hash_entry *) NULL)
|
---|
427 | return (struct bfd_hash_entry *) ret;
|
---|
428 |
|
---|
429 | /* Call the allocation method of the superclass. */
|
---|
430 | ret = ((struct elf_i386_link_hash_entry *)
|
---|
431 | _bfd_elf_link_hash_newfunc ((struct bfd_hash_entry *) ret,
|
---|
432 | table, string));
|
---|
433 | if (ret != (struct elf_i386_link_hash_entry *) NULL)
|
---|
434 | {
|
---|
435 | ret->pcrel_relocs_copied = NULL;
|
---|
436 | }
|
---|
437 |
|
---|
438 | return (struct bfd_hash_entry *) ret;
|
---|
439 | }
|
---|
440 |
|
---|
441 | /* Create an i386 ELF linker hash table. */
|
---|
442 |
|
---|
443 | static struct bfd_link_hash_table *
|
---|
444 | elf_i386_link_hash_table_create (abfd)
|
---|
445 | bfd *abfd;
|
---|
446 | {
|
---|
447 | struct elf_i386_link_hash_table *ret;
|
---|
448 |
|
---|
449 | ret = ((struct elf_i386_link_hash_table *)
|
---|
450 | bfd_alloc (abfd, sizeof (struct elf_i386_link_hash_table)));
|
---|
451 | if (ret == (struct elf_i386_link_hash_table *) NULL)
|
---|
452 | return NULL;
|
---|
453 |
|
---|
454 | if (! _bfd_elf_link_hash_table_init (&ret->root, abfd,
|
---|
455 | elf_i386_link_hash_newfunc))
|
---|
456 | {
|
---|
457 | bfd_release (abfd, ret);
|
---|
458 | return NULL;
|
---|
459 | }
|
---|
460 |
|
---|
461 | return &ret->root.root;
|
---|
462 | }
|
---|
463 |
|
---|
464 | /* Look through the relocs for a section during the first phase, and
|
---|
465 | allocate space in the global offset table or procedure linkage
|
---|
466 | table. */
|
---|
467 |
|
---|
468 | static boolean
|
---|
469 | elf_i386_check_relocs (abfd, info, sec, relocs)
|
---|
470 | bfd *abfd;
|
---|
471 | struct bfd_link_info *info;
|
---|
472 | asection *sec;
|
---|
473 | const Elf_Internal_Rela *relocs;
|
---|
474 | {
|
---|
475 | bfd *dynobj;
|
---|
476 | Elf_Internal_Shdr *symtab_hdr;
|
---|
477 | struct elf_link_hash_entry **sym_hashes;
|
---|
478 | bfd_signed_vma *local_got_refcounts;
|
---|
479 | const Elf_Internal_Rela *rel;
|
---|
480 | const Elf_Internal_Rela *rel_end;
|
---|
481 | asection *sgot;
|
---|
482 | asection *srelgot;
|
---|
483 | asection *sreloc;
|
---|
484 |
|
---|
485 | if (info->relocateable)
|
---|
486 | return true;
|
---|
487 |
|
---|
488 | dynobj = elf_hash_table (info)->dynobj;
|
---|
489 | symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
|
---|
490 | sym_hashes = elf_sym_hashes (abfd);
|
---|
491 | local_got_refcounts = elf_local_got_refcounts (abfd);
|
---|
492 |
|
---|
493 | sgot = NULL;
|
---|
494 | srelgot = NULL;
|
---|
495 | sreloc = NULL;
|
---|
496 |
|
---|
497 | rel_end = relocs + sec->reloc_count;
|
---|
498 | for (rel = relocs; rel < rel_end; rel++)
|
---|
499 | {
|
---|
500 | unsigned long r_symndx;
|
---|
501 | struct elf_link_hash_entry *h;
|
---|
502 |
|
---|
503 | r_symndx = ELF32_R_SYM (rel->r_info);
|
---|
504 |
|
---|
505 | if (r_symndx >= NUM_SHDR_ENTRIES (symtab_hdr))
|
---|
506 | {
|
---|
507 | if (abfd->my_archive)
|
---|
508 | (*_bfd_error_handler) (_("%s(%s): bad symbol index: %d"),
|
---|
509 | bfd_get_filename (abfd->my_archive),
|
---|
510 | bfd_get_filename (abfd),
|
---|
511 | r_symndx);
|
---|
512 | else
|
---|
513 | (*_bfd_error_handler) (_("%s: bad symbol index: %d"),
|
---|
514 | bfd_get_filename (abfd),
|
---|
515 | r_symndx);
|
---|
516 | return false;
|
---|
517 | }
|
---|
518 |
|
---|
519 | if (r_symndx < symtab_hdr->sh_info)
|
---|
520 | h = NULL;
|
---|
521 | else
|
---|
522 | h = sym_hashes[r_symndx - symtab_hdr->sh_info];
|
---|
523 |
|
---|
524 | /* Some relocs require a global offset table. */
|
---|
525 | if (dynobj == NULL)
|
---|
526 | {
|
---|
527 | switch (ELF32_R_TYPE (rel->r_info))
|
---|
528 | {
|
---|
529 | case R_386_GOT32:
|
---|
530 | case R_386_GOTOFF:
|
---|
531 | case R_386_GOTPC:
|
---|
532 | elf_hash_table (info)->dynobj = dynobj = abfd;
|
---|
533 | if (! _bfd_elf_create_got_section (dynobj, info))
|
---|
534 | return false;
|
---|
535 | break;
|
---|
536 |
|
---|
537 | default:
|
---|
538 | break;
|
---|
539 | }
|
---|
540 | }
|
---|
541 |
|
---|
542 | switch (ELF32_R_TYPE (rel->r_info))
|
---|
543 | {
|
---|
544 | case R_386_GOT32:
|
---|
545 | /* This symbol requires a global offset table entry. */
|
---|
546 |
|
---|
547 | if (sgot == NULL)
|
---|
548 | {
|
---|
549 | sgot = bfd_get_section_by_name (dynobj, ".got");
|
---|
550 | BFD_ASSERT (sgot != NULL);
|
---|
551 | }
|
---|
552 |
|
---|
553 | if (srelgot == NULL
|
---|
554 | && (h != NULL || info->shared))
|
---|
555 | {
|
---|
556 | srelgot = bfd_get_section_by_name (dynobj, ".rel.got");
|
---|
557 | if (srelgot == NULL)
|
---|
558 | {
|
---|
559 | srelgot = bfd_make_section (dynobj, ".rel.got");
|
---|
560 | if (srelgot == NULL
|
---|
561 | || ! bfd_set_section_flags (dynobj, srelgot,
|
---|
562 | (SEC_ALLOC
|
---|
563 | | SEC_LOAD
|
---|
564 | | SEC_HAS_CONTENTS
|
---|
565 | | SEC_IN_MEMORY
|
---|
566 | | SEC_LINKER_CREATED
|
---|
567 | | SEC_READONLY))
|
---|
568 | || ! bfd_set_section_alignment (dynobj, srelgot, 2))
|
---|
569 | return false;
|
---|
570 | }
|
---|
571 | }
|
---|
572 |
|
---|
573 | if (h != NULL)
|
---|
574 | {
|
---|
575 | if (h->got.refcount == -1)
|
---|
576 | {
|
---|
577 | h->got.refcount = 1;
|
---|
578 |
|
---|
579 | /* Make sure this symbol is output as a dynamic symbol. */
|
---|
580 | if (h->dynindx == -1)
|
---|
581 | {
|
---|
582 | if (! bfd_elf32_link_record_dynamic_symbol (info, h))
|
---|
583 | return false;
|
---|
584 | }
|
---|
585 |
|
---|
586 | sgot->_raw_size += 4;
|
---|
587 | srelgot->_raw_size += sizeof (Elf32_External_Rel);
|
---|
588 | }
|
---|
589 | else
|
---|
590 | h->got.refcount += 1;
|
---|
591 | }
|
---|
592 | else
|
---|
593 | {
|
---|
594 | /* This is a global offset table entry for a local symbol. */
|
---|
595 | if (local_got_refcounts == NULL)
|
---|
596 | {
|
---|
597 | size_t size;
|
---|
598 |
|
---|
599 | size = symtab_hdr->sh_info * sizeof (bfd_signed_vma);
|
---|
600 | local_got_refcounts = ((bfd_signed_vma *)
|
---|
601 | bfd_alloc (abfd, size));
|
---|
602 | if (local_got_refcounts == NULL)
|
---|
603 | return false;
|
---|
604 | elf_local_got_refcounts (abfd) = local_got_refcounts;
|
---|
605 | memset (local_got_refcounts, -1, size);
|
---|
606 | }
|
---|
607 | if (local_got_refcounts[r_symndx] == -1)
|
---|
608 | {
|
---|
609 | local_got_refcounts[r_symndx] = 1;
|
---|
610 |
|
---|
611 | sgot->_raw_size += 4;
|
---|
612 | if (info->shared)
|
---|
613 | {
|
---|
614 | /* If we are generating a shared object, we need to
|
---|
615 | output a R_386_RELATIVE reloc so that the dynamic
|
---|
616 | linker can adjust this GOT entry. */
|
---|
617 | srelgot->_raw_size += sizeof (Elf32_External_Rel);
|
---|
618 | }
|
---|
619 | }
|
---|
620 | else
|
---|
621 | local_got_refcounts[r_symndx] += 1;
|
---|
622 | }
|
---|
623 | break;
|
---|
624 |
|
---|
625 | case R_386_PLT32:
|
---|
626 | /* This symbol requires a procedure linkage table entry. We
|
---|
627 | actually build the entry in adjust_dynamic_symbol,
|
---|
628 | because this might be a case of linking PIC code which is
|
---|
629 | never referenced by a dynamic object, in which case we
|
---|
630 | don't need to generate a procedure linkage table entry
|
---|
631 | after all. */
|
---|
632 |
|
---|
633 | /* If this is a local symbol, we resolve it directly without
|
---|
634 | creating a procedure linkage table entry. */
|
---|
635 | if (h == NULL)
|
---|
636 | continue;
|
---|
637 |
|
---|
638 | if (h->plt.refcount == -1)
|
---|
639 | {
|
---|
640 | h->plt.refcount = 1;
|
---|
641 | h->elf_link_hash_flags |= ELF_LINK_HASH_NEEDS_PLT;
|
---|
642 | }
|
---|
643 | else
|
---|
644 | h->plt.refcount += 1;
|
---|
645 | break;
|
---|
646 |
|
---|
647 | case R_386_32:
|
---|
648 | case R_386_PC32:
|
---|
649 | if (h != NULL)
|
---|
650 | h->elf_link_hash_flags |= ELF_LINK_NON_GOT_REF;
|
---|
651 |
|
---|
652 | /* If we are creating a shared library, and this is a reloc
|
---|
653 | against a global symbol, or a non PC relative reloc
|
---|
654 | against a local symbol, then we need to copy the reloc
|
---|
655 | into the shared library. However, if we are linking with
|
---|
656 | -Bsymbolic, we do not need to copy a reloc against a
|
---|
657 | global symbol which is defined in an object we are
|
---|
658 | including in the link (i.e., DEF_REGULAR is set). At
|
---|
659 | this point we have not seen all the input files, so it is
|
---|
660 | possible that DEF_REGULAR is not set now but will be set
|
---|
661 | later (it is never cleared). In case of a weak definition,
|
---|
662 | DEF_REGULAR may be cleared later by a strong definition in
|
---|
663 | a shared library. We account for that possibility below by
|
---|
664 | storing information in the relocs_copied field of the hash
|
---|
665 | table entry. A similar situation occurs when creating
|
---|
666 | shared libraries and symbol visibility changes render the
|
---|
667 | symbol local. */
|
---|
668 | if (info->shared
|
---|
669 | && (sec->flags & SEC_ALLOC) != 0
|
---|
670 | && (ELF32_R_TYPE (rel->r_info) != R_386_PC32
|
---|
671 | || (h != NULL
|
---|
672 | && (! info->symbolic
|
---|
673 | || h->root.type == bfd_link_hash_defweak
|
---|
674 | || (h->elf_link_hash_flags
|
---|
675 | & ELF_LINK_HASH_DEF_REGULAR) == 0))))
|
---|
676 | {
|
---|
677 | /* When creating a shared object, we must copy these
|
---|
678 | reloc types into the output file. We create a reloc
|
---|
679 | section in dynobj and make room for this reloc. */
|
---|
680 | if (sreloc == NULL)
|
---|
681 | {
|
---|
682 | const char *name;
|
---|
683 |
|
---|
684 | name = (bfd_elf_string_from_elf_section
|
---|
685 | (abfd,
|
---|
686 | elf_elfheader (abfd)->e_shstrndx,
|
---|
687 | elf_section_data (sec)->rel_hdr.sh_name));
|
---|
688 | if (name == NULL)
|
---|
689 | return false;
|
---|
690 |
|
---|
691 | if (strncmp (name, ".rel", 4) != 0
|
---|
692 | || strcmp (bfd_get_section_name (abfd, sec),
|
---|
693 | name + 4) != 0)
|
---|
694 | {
|
---|
695 | if (abfd->my_archive)
|
---|
696 | (*_bfd_error_handler) (_("%s(%s): bad relocation section name `%s\'"),
|
---|
697 | bfd_get_filename (abfd->my_archive),
|
---|
698 | bfd_get_filename (abfd),
|
---|
699 | name);
|
---|
700 | else
|
---|
701 | (*_bfd_error_handler) (_("%s: bad relocation section name `%s\'"),
|
---|
702 | bfd_get_filename (abfd),
|
---|
703 | name);
|
---|
704 | }
|
---|
705 |
|
---|
706 | sreloc = bfd_get_section_by_name (dynobj, name);
|
---|
707 | if (sreloc == NULL)
|
---|
708 | {
|
---|
709 | flagword flags;
|
---|
710 |
|
---|
711 | sreloc = bfd_make_section (dynobj, name);
|
---|
712 | flags = (SEC_HAS_CONTENTS | SEC_READONLY
|
---|
713 | | SEC_IN_MEMORY | SEC_LINKER_CREATED);
|
---|
714 | if ((sec->flags & SEC_ALLOC) != 0)
|
---|
715 | flags |= SEC_ALLOC | SEC_LOAD;
|
---|
716 | if (sreloc == NULL
|
---|
717 | || ! bfd_set_section_flags (dynobj, sreloc, flags)
|
---|
718 | || ! bfd_set_section_alignment (dynobj, sreloc, 2))
|
---|
719 | return false;
|
---|
720 | }
|
---|
721 | }
|
---|
722 |
|
---|
723 | sreloc->_raw_size += sizeof (Elf32_External_Rel);
|
---|
724 |
|
---|
725 | /* If this is a global symbol, we count the number of PC
|
---|
726 | relative relocations we have entered for this symbol,
|
---|
727 | so that we can discard them later as necessary. Note
|
---|
728 | that this function is only called if we are using an
|
---|
729 | elf_i386 linker hash table, which means that h is
|
---|
730 | really a pointer to an elf_i386_link_hash_entry. */
|
---|
731 | if (h != NULL
|
---|
732 | && ELF32_R_TYPE (rel->r_info) == R_386_PC32)
|
---|
733 | {
|
---|
734 | struct elf_i386_link_hash_entry *eh;
|
---|
735 | struct elf_i386_pcrel_relocs_copied *p;
|
---|
736 |
|
---|
737 | eh = (struct elf_i386_link_hash_entry *) h;
|
---|
738 |
|
---|
739 | for (p = eh->pcrel_relocs_copied; p != NULL; p = p->next)
|
---|
740 | if (p->section == sreloc)
|
---|
741 | break;
|
---|
742 |
|
---|
743 | if (p == NULL)
|
---|
744 | {
|
---|
745 | p = ((struct elf_i386_pcrel_relocs_copied *)
|
---|
746 | bfd_alloc (dynobj, sizeof *p));
|
---|
747 | if (p == NULL)
|
---|
748 | return false;
|
---|
749 | p->next = eh->pcrel_relocs_copied;
|
---|
750 | eh->pcrel_relocs_copied = p;
|
---|
751 | p->section = sreloc;
|
---|
752 | p->count = 0;
|
---|
753 | }
|
---|
754 |
|
---|
755 | ++p->count;
|
---|
756 | }
|
---|
757 | }
|
---|
758 |
|
---|
759 | break;
|
---|
760 |
|
---|
761 | /* This relocation describes the C++ object vtable hierarchy.
|
---|
762 | Reconstruct it for later use during GC. */
|
---|
763 | case R_386_GNU_VTINHERIT:
|
---|
764 | if (!_bfd_elf32_gc_record_vtinherit (abfd, sec, h, rel->r_offset))
|
---|
765 | return false;
|
---|
766 | break;
|
---|
767 |
|
---|
768 | /* This relocation describes which C++ vtable entries are actually
|
---|
769 | used. Record for later use during GC. */
|
---|
770 | case R_386_GNU_VTENTRY:
|
---|
771 | if (!_bfd_elf32_gc_record_vtentry (abfd, sec, h, rel->r_offset))
|
---|
772 | return false;
|
---|
773 | break;
|
---|
774 |
|
---|
775 | default:
|
---|
776 | break;
|
---|
777 | }
|
---|
778 | }
|
---|
779 |
|
---|
780 | return true;
|
---|
781 | }
|
---|
782 |
|
---|
783 | /* Return the section that should be marked against GC for a given
|
---|
784 | relocation. */
|
---|
785 |
|
---|
786 | static asection *
|
---|
787 | elf_i386_gc_mark_hook (abfd, info, rel, h, sym)
|
---|
788 | bfd *abfd;
|
---|
789 | struct bfd_link_info *info ATTRIBUTE_UNUSED;
|
---|
790 | Elf_Internal_Rela *rel;
|
---|
791 | struct elf_link_hash_entry *h;
|
---|
792 | Elf_Internal_Sym *sym;
|
---|
793 | {
|
---|
794 | if (h != NULL)
|
---|
795 | {
|
---|
796 | switch (ELF32_R_TYPE (rel->r_info))
|
---|
797 | {
|
---|
798 | case R_386_GNU_VTINHERIT:
|
---|
799 | case R_386_GNU_VTENTRY:
|
---|
800 | break;
|
---|
801 |
|
---|
802 | default:
|
---|
803 | switch (h->root.type)
|
---|
804 | {
|
---|
805 | case bfd_link_hash_defined:
|
---|
806 | case bfd_link_hash_defweak:
|
---|
807 | return h->root.u.def.section;
|
---|
808 |
|
---|
809 | case bfd_link_hash_common:
|
---|
810 | return h->root.u.c.p->section;
|
---|
811 |
|
---|
812 | default:
|
---|
813 | break;
|
---|
814 | }
|
---|
815 | }
|
---|
816 | }
|
---|
817 | else
|
---|
818 | {
|
---|
819 | if (!(elf_bad_symtab (abfd)
|
---|
820 | && ELF_ST_BIND (sym->st_info) != STB_LOCAL)
|
---|
821 | && ! ((sym->st_shndx <= 0 || sym->st_shndx >= SHN_LORESERVE)
|
---|
822 | && sym->st_shndx != SHN_COMMON))
|
---|
823 | {
|
---|
824 | return bfd_section_from_elf_index (abfd, sym->st_shndx);
|
---|
825 | }
|
---|
826 | }
|
---|
827 |
|
---|
828 | return NULL;
|
---|
829 | }
|
---|
830 |
|
---|
831 | /* Update the got entry reference counts for the section being removed. */
|
---|
832 |
|
---|
833 | static boolean
|
---|
834 | elf_i386_gc_sweep_hook (abfd, info, sec, relocs)
|
---|
835 | bfd *abfd;
|
---|
836 | struct bfd_link_info *info;
|
---|
837 | asection *sec;
|
---|
838 | const Elf_Internal_Rela *relocs;
|
---|
839 | {
|
---|
840 | Elf_Internal_Shdr *symtab_hdr;
|
---|
841 | struct elf_link_hash_entry **sym_hashes;
|
---|
842 | bfd_signed_vma *local_got_refcounts;
|
---|
843 | const Elf_Internal_Rela *rel, *relend;
|
---|
844 | unsigned long r_symndx;
|
---|
845 | struct elf_link_hash_entry *h;
|
---|
846 | bfd *dynobj;
|
---|
847 | asection *sgot;
|
---|
848 | asection *srelgot;
|
---|
849 |
|
---|
850 | symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
|
---|
851 | sym_hashes = elf_sym_hashes (abfd);
|
---|
852 | local_got_refcounts = elf_local_got_refcounts (abfd);
|
---|
853 |
|
---|
854 | dynobj = elf_hash_table (info)->dynobj;
|
---|
855 | if (dynobj == NULL)
|
---|
856 | return true;
|
---|
857 |
|
---|
858 | sgot = bfd_get_section_by_name (dynobj, ".got");
|
---|
859 | srelgot = bfd_get_section_by_name (dynobj, ".rel.got");
|
---|
860 |
|
---|
861 | relend = relocs + sec->reloc_count;
|
---|
862 | for (rel = relocs; rel < relend; rel++)
|
---|
863 | switch (ELF32_R_TYPE (rel->r_info))
|
---|
864 | {
|
---|
865 | case R_386_GOT32:
|
---|
866 | case R_386_GOTOFF:
|
---|
867 | case R_386_GOTPC:
|
---|
868 | r_symndx = ELF32_R_SYM (rel->r_info);
|
---|
869 | if (r_symndx >= symtab_hdr->sh_info)
|
---|
870 | {
|
---|
871 | h = sym_hashes[r_symndx - symtab_hdr->sh_info];
|
---|
872 | if (h->got.refcount > 0)
|
---|
873 | {
|
---|
874 | h->got.refcount -= 1;
|
---|
875 | if (h->got.refcount == 0)
|
---|
876 | {
|
---|
877 | sgot->_raw_size -= 4;
|
---|
878 | srelgot->_raw_size -= sizeof (Elf32_External_Rel);
|
---|
879 | }
|
---|
880 | }
|
---|
881 | }
|
---|
882 | else if (local_got_refcounts != NULL)
|
---|
883 | {
|
---|
884 | if (local_got_refcounts[r_symndx] > 0)
|
---|
885 | {
|
---|
886 | local_got_refcounts[r_symndx] -= 1;
|
---|
887 | if (local_got_refcounts[r_symndx] == 0)
|
---|
888 | {
|
---|
889 | sgot->_raw_size -= 4;
|
---|
890 | if (info->shared)
|
---|
891 | srelgot->_raw_size -= sizeof (Elf32_External_Rel);
|
---|
892 | }
|
---|
893 | }
|
---|
894 | }
|
---|
895 | break;
|
---|
896 |
|
---|
897 | case R_386_PLT32:
|
---|
898 | r_symndx = ELF32_R_SYM (rel->r_info);
|
---|
899 | if (r_symndx >= symtab_hdr->sh_info)
|
---|
900 | {
|
---|
901 | h = sym_hashes[r_symndx - symtab_hdr->sh_info];
|
---|
902 | if (h->plt.refcount > 0)
|
---|
903 | h->plt.refcount -= 1;
|
---|
904 | }
|
---|
905 | break;
|
---|
906 |
|
---|
907 | default:
|
---|
908 | break;
|
---|
909 | }
|
---|
910 |
|
---|
911 | return true;
|
---|
912 | }
|
---|
913 |
|
---|
914 | /* Adjust a symbol defined by a dynamic object and referenced by a
|
---|
915 | regular object. The current definition is in some section of the
|
---|
916 | dynamic object, but we're not including those sections. We have to
|
---|
917 | change the definition to something the rest of the link can
|
---|
918 | understand. */
|
---|
919 |
|
---|
920 | static boolean
|
---|
921 | elf_i386_adjust_dynamic_symbol (info, h)
|
---|
922 | struct bfd_link_info *info;
|
---|
923 | struct elf_link_hash_entry *h;
|
---|
924 | {
|
---|
925 | bfd *dynobj;
|
---|
926 | asection *s;
|
---|
927 | unsigned int power_of_two;
|
---|
928 |
|
---|
929 | dynobj = elf_hash_table (info)->dynobj;
|
---|
930 |
|
---|
931 | /* Make sure we know what is going on here. */
|
---|
932 | BFD_ASSERT (dynobj != NULL
|
---|
933 | && ((h->elf_link_hash_flags & ELF_LINK_HASH_NEEDS_PLT)
|
---|
934 | || h->weakdef != NULL
|
---|
935 | || ((h->elf_link_hash_flags
|
---|
936 | & ELF_LINK_HASH_DEF_DYNAMIC) != 0
|
---|
937 | && (h->elf_link_hash_flags
|
---|
938 | & ELF_LINK_HASH_REF_REGULAR) != 0
|
---|
939 | && (h->elf_link_hash_flags
|
---|
940 | & ELF_LINK_HASH_DEF_REGULAR) == 0)));
|
---|
941 |
|
---|
942 | /* If this is a function, put it in the procedure linkage table. We
|
---|
943 | will fill in the contents of the procedure linkage table later,
|
---|
944 | when we know the address of the .got section. */
|
---|
945 | if (h->type == STT_FUNC
|
---|
946 | || (h->elf_link_hash_flags & ELF_LINK_HASH_NEEDS_PLT) != 0)
|
---|
947 | {
|
---|
948 | if ((! info->shared
|
---|
949 | && (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_DYNAMIC) == 0
|
---|
950 | && (h->elf_link_hash_flags & ELF_LINK_HASH_REF_DYNAMIC) == 0)
|
---|
951 | || (info->shared && h->plt.refcount <= 0))
|
---|
952 | {
|
---|
953 | /* This case can occur if we saw a PLT32 reloc in an input
|
---|
954 | file, but the symbol was never referred to by a dynamic
|
---|
955 | object, or if all references were garbage collected. In
|
---|
956 | such a case, we don't actually need to build a procedure
|
---|
957 | linkage table, and we can just do a PC32 reloc instead. */
|
---|
958 | h->plt.offset = (bfd_vma) -1;
|
---|
959 | h->elf_link_hash_flags &= ~ELF_LINK_HASH_NEEDS_PLT;
|
---|
960 | return true;
|
---|
961 | }
|
---|
962 |
|
---|
963 | /* Make sure this symbol is output as a dynamic symbol. */
|
---|
964 | if (h->dynindx == -1)
|
---|
965 | {
|
---|
966 | if (! bfd_elf32_link_record_dynamic_symbol (info, h))
|
---|
967 | return false;
|
---|
968 | }
|
---|
969 |
|
---|
970 | s = bfd_get_section_by_name (dynobj, ".plt");
|
---|
971 | BFD_ASSERT (s != NULL);
|
---|
972 |
|
---|
973 | /* If this is the first .plt entry, make room for the special
|
---|
974 | first entry. */
|
---|
975 | if (s->_raw_size == 0)
|
---|
976 | s->_raw_size += PLT_ENTRY_SIZE;
|
---|
977 |
|
---|
978 | /* If this symbol is not defined in a regular file, and we are
|
---|
979 | not generating a shared library, then set the symbol to this
|
---|
980 | location in the .plt. This is required to make function
|
---|
981 | pointers compare as equal between the normal executable and
|
---|
982 | the shared library. */
|
---|
983 | if (! info->shared
|
---|
984 | && (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0)
|
---|
985 | {
|
---|
986 | h->root.u.def.section = s;
|
---|
987 | h->root.u.def.value = s->_raw_size;
|
---|
988 | }
|
---|
989 |
|
---|
990 | h->plt.offset = s->_raw_size;
|
---|
991 |
|
---|
992 | /* Make room for this entry. */
|
---|
993 | s->_raw_size += PLT_ENTRY_SIZE;
|
---|
994 |
|
---|
995 | /* We also need to make an entry in the .got.plt section, which
|
---|
996 | will be placed in the .got section by the linker script. */
|
---|
997 | s = bfd_get_section_by_name (dynobj, ".got.plt");
|
---|
998 | BFD_ASSERT (s != NULL);
|
---|
999 | s->_raw_size += 4;
|
---|
1000 |
|
---|
1001 | /* We also need to make an entry in the .rel.plt section. */
|
---|
1002 | s = bfd_get_section_by_name (dynobj, ".rel.plt");
|
---|
1003 | BFD_ASSERT (s != NULL);
|
---|
1004 | s->_raw_size += sizeof (Elf32_External_Rel);
|
---|
1005 |
|
---|
1006 | return true;
|
---|
1007 | }
|
---|
1008 |
|
---|
1009 | /* If this is a weak symbol, and there is a real definition, the
|
---|
1010 | processor independent code will have arranged for us to see the
|
---|
1011 | real definition first, and we can just use the same value. */
|
---|
1012 | if (h->weakdef != NULL)
|
---|
1013 | {
|
---|
1014 | BFD_ASSERT (h->weakdef->root.type == bfd_link_hash_defined
|
---|
1015 | || h->weakdef->root.type == bfd_link_hash_defweak);
|
---|
1016 | h->root.u.def.section = h->weakdef->root.u.def.section;
|
---|
1017 | h->root.u.def.value = h->weakdef->root.u.def.value;
|
---|
1018 | return true;
|
---|
1019 | }
|
---|
1020 |
|
---|
1021 | /* This is a reference to a symbol defined by a dynamic object which
|
---|
1022 | is not a function. */
|
---|
1023 |
|
---|
1024 | /* If we are creating a shared library, we must presume that the
|
---|
1025 | only references to the symbol are via the global offset table.
|
---|
1026 | For such cases we need not do anything here; the relocations will
|
---|
1027 | be handled correctly by relocate_section. */
|
---|
1028 | if (info->shared)
|
---|
1029 | return true;
|
---|
1030 |
|
---|
1031 | /* If there are no references to this symbol that do not use the
|
---|
1032 | GOT, we don't need to generate a copy reloc. */
|
---|
1033 | if ((h->elf_link_hash_flags & ELF_LINK_NON_GOT_REF) == 0)
|
---|
1034 | return true;
|
---|
1035 |
|
---|
1036 | /* We must allocate the symbol in our .dynbss section, which will
|
---|
1037 | become part of the .bss section of the executable. There will be
|
---|
1038 | an entry for this symbol in the .dynsym section. The dynamic
|
---|
1039 | object will contain position independent code, so all references
|
---|
1040 | from the dynamic object to this symbol will go through the global
|
---|
1041 | offset table. The dynamic linker will use the .dynsym entry to
|
---|
1042 | determine the address it must put in the global offset table, so
|
---|
1043 | both the dynamic object and the regular object will refer to the
|
---|
1044 | same memory location for the variable. */
|
---|
1045 |
|
---|
1046 | s = bfd_get_section_by_name (dynobj, ".dynbss");
|
---|
1047 | BFD_ASSERT (s != NULL);
|
---|
1048 |
|
---|
1049 | /* We must generate a R_386_COPY reloc to tell the dynamic linker to
|
---|
1050 | copy the initial value out of the dynamic object and into the
|
---|
1051 | runtime process image. We need to remember the offset into the
|
---|
1052 | .rel.bss section we are going to use. */
|
---|
1053 | if ((h->root.u.def.section->flags & SEC_ALLOC) != 0)
|
---|
1054 | {
|
---|
1055 | asection *srel;
|
---|
1056 |
|
---|
1057 | srel = bfd_get_section_by_name (dynobj, ".rel.bss");
|
---|
1058 | BFD_ASSERT (srel != NULL);
|
---|
1059 | srel->_raw_size += sizeof (Elf32_External_Rel);
|
---|
1060 | h->elf_link_hash_flags |= ELF_LINK_HASH_NEEDS_COPY;
|
---|
1061 | }
|
---|
1062 |
|
---|
1063 | /* We need to figure out the alignment required for this symbol. I
|
---|
1064 | have no idea how ELF linkers handle this. */
|
---|
1065 | power_of_two = bfd_log2 (h->size);
|
---|
1066 | if (power_of_two > 3)
|
---|
1067 | power_of_two = 3;
|
---|
1068 |
|
---|
1069 | /* Apply the required alignment. */
|
---|
1070 | s->_raw_size = BFD_ALIGN (s->_raw_size,
|
---|
1071 | (bfd_size_type) (1 << power_of_two));
|
---|
1072 | if (power_of_two > bfd_get_section_alignment (dynobj, s))
|
---|
1073 | {
|
---|
1074 | if (! bfd_set_section_alignment (dynobj, s, power_of_two))
|
---|
1075 | return false;
|
---|
1076 | }
|
---|
1077 |
|
---|
1078 | /* Define the symbol as being at this point in the section. */
|
---|
1079 | h->root.u.def.section = s;
|
---|
1080 | h->root.u.def.value = s->_raw_size;
|
---|
1081 |
|
---|
1082 | /* Increment the section size to make room for the symbol. */
|
---|
1083 | s->_raw_size += h->size;
|
---|
1084 |
|
---|
1085 | return true;
|
---|
1086 | }
|
---|
1087 |
|
---|
1088 | /* Set the sizes of the dynamic sections. */
|
---|
1089 |
|
---|
1090 | static boolean
|
---|
1091 | elf_i386_size_dynamic_sections (output_bfd, info)
|
---|
1092 | bfd *output_bfd;
|
---|
1093 | struct bfd_link_info *info;
|
---|
1094 | {
|
---|
1095 | bfd *dynobj;
|
---|
1096 | asection *s;
|
---|
1097 | boolean plt;
|
---|
1098 | boolean relocs;
|
---|
1099 | boolean reltext;
|
---|
1100 |
|
---|
1101 | dynobj = elf_hash_table (info)->dynobj;
|
---|
1102 | BFD_ASSERT (dynobj != NULL);
|
---|
1103 |
|
---|
1104 | if (elf_hash_table (info)->dynamic_sections_created)
|
---|
1105 | {
|
---|
1106 | /* Set the contents of the .interp section to the interpreter. */
|
---|
1107 | if (! info->shared)
|
---|
1108 | {
|
---|
1109 | s = bfd_get_section_by_name (dynobj, ".interp");
|
---|
1110 | BFD_ASSERT (s != NULL);
|
---|
1111 | s->_raw_size = sizeof ELF_DYNAMIC_INTERPRETER;
|
---|
1112 | s->contents = (unsigned char *) ELF_DYNAMIC_INTERPRETER;
|
---|
1113 | }
|
---|
1114 | }
|
---|
1115 | else
|
---|
1116 | {
|
---|
1117 | /* We may have created entries in the .rel.got section.
|
---|
1118 | However, if we are not creating the dynamic sections, we will
|
---|
1119 | not actually use these entries. Reset the size of .rel.got,
|
---|
1120 | which will cause it to get stripped from the output file
|
---|
1121 | below. */
|
---|
1122 | s = bfd_get_section_by_name (dynobj, ".rel.got");
|
---|
1123 | if (s != NULL)
|
---|
1124 | s->_raw_size = 0;
|
---|
1125 | }
|
---|
1126 |
|
---|
1127 | /* If this is a -Bsymbolic shared link, then we need to discard all
|
---|
1128 | PC relative relocs against symbols defined in a regular object.
|
---|
1129 | We allocated space for them in the check_relocs routine, but we
|
---|
1130 | will not fill them in in the relocate_section routine. */
|
---|
1131 | if (info->shared)
|
---|
1132 | elf_i386_link_hash_traverse (elf_i386_hash_table (info),
|
---|
1133 | elf_i386_discard_copies,
|
---|
1134 | (PTR) info);
|
---|
1135 |
|
---|
1136 | /* The check_relocs and adjust_dynamic_symbol entry points have
|
---|
1137 | determined the sizes of the various dynamic sections. Allocate
|
---|
1138 | memory for them. */
|
---|
1139 | plt = false;
|
---|
1140 | relocs = false;
|
---|
1141 | reltext = false;
|
---|
1142 | for (s = dynobj->sections; s != NULL; s = s->next)
|
---|
1143 | {
|
---|
1144 | const char *name;
|
---|
1145 | boolean strip;
|
---|
1146 |
|
---|
1147 | if ((s->flags & SEC_LINKER_CREATED) == 0)
|
---|
1148 | continue;
|
---|
1149 |
|
---|
1150 | /* It's OK to base decisions on the section name, because none
|
---|
1151 | of the dynobj section names depend upon the input files. */
|
---|
1152 | name = bfd_get_section_name (dynobj, s);
|
---|
1153 |
|
---|
1154 | strip = false;
|
---|
1155 |
|
---|
1156 | if (strcmp (name, ".plt") == 0)
|
---|
1157 | {
|
---|
1158 | if (s->_raw_size == 0)
|
---|
1159 | {
|
---|
1160 | /* Strip this section if we don't need it; see the
|
---|
1161 | comment below. */
|
---|
1162 | strip = true;
|
---|
1163 | }
|
---|
1164 | else
|
---|
1165 | {
|
---|
1166 | /* Remember whether there is a PLT. */
|
---|
1167 | plt = true;
|
---|
1168 | }
|
---|
1169 | }
|
---|
1170 | else if (strncmp (name, ".rel", 4) == 0)
|
---|
1171 | {
|
---|
1172 | if (s->_raw_size == 0)
|
---|
1173 | {
|
---|
1174 | /* If we don't need this section, strip it from the
|
---|
1175 | output file. This is mostly to handle .rel.bss and
|
---|
1176 | .rel.plt. We must create both sections in
|
---|
1177 | create_dynamic_sections, because they must be created
|
---|
1178 | before the linker maps input sections to output
|
---|
1179 | sections. The linker does that before
|
---|
1180 | adjust_dynamic_symbol is called, and it is that
|
---|
1181 | function which decides whether anything needs to go
|
---|
1182 | into these sections. */
|
---|
1183 | strip = true;
|
---|
1184 | }
|
---|
1185 | else
|
---|
1186 | {
|
---|
1187 | asection *target;
|
---|
1188 |
|
---|
1189 | /* Remember whether there are any reloc sections other
|
---|
1190 | than .rel.plt. */
|
---|
1191 | if (strcmp (name, ".rel.plt") != 0)
|
---|
1192 | {
|
---|
1193 | const char *outname;
|
---|
1194 |
|
---|
1195 | relocs = true;
|
---|
1196 |
|
---|
1197 | /* If this relocation section applies to a read only
|
---|
1198 | section, then we probably need a DT_TEXTREL
|
---|
1199 | entry. The entries in the .rel.plt section
|
---|
1200 | really apply to the .got section, which we
|
---|
1201 | created ourselves and so know is not readonly. */
|
---|
1202 | outname = bfd_get_section_name (output_bfd,
|
---|
1203 | s->output_section);
|
---|
1204 | target = bfd_get_section_by_name (output_bfd, outname + 4);
|
---|
1205 | if (target != NULL
|
---|
1206 | && (target->flags & SEC_READONLY) != 0
|
---|
1207 | && (target->flags & SEC_ALLOC) != 0)
|
---|
1208 | reltext = true;
|
---|
1209 | }
|
---|
1210 |
|
---|
1211 | /* We use the reloc_count field as a counter if we need
|
---|
1212 | to copy relocs into the output file. */
|
---|
1213 | s->reloc_count = 0;
|
---|
1214 | }
|
---|
1215 | }
|
---|
1216 | else if (strncmp (name, ".got", 4) != 0)
|
---|
1217 | {
|
---|
1218 | /* It's not one of our sections, so don't allocate space. */
|
---|
1219 | continue;
|
---|
1220 | }
|
---|
1221 |
|
---|
1222 | if (strip)
|
---|
1223 | {
|
---|
1224 | _bfd_strip_section_from_output (info, s);
|
---|
1225 | continue;
|
---|
1226 | }
|
---|
1227 |
|
---|
1228 | /* Allocate memory for the section contents. We use bfd_zalloc
|
---|
1229 | here in case unused entries are not reclaimed before the
|
---|
1230 | section's contents are written out. This should not happen,
|
---|
1231 | but this way if it does, we get a R_386_NONE reloc instead
|
---|
1232 | of garbage. */
|
---|
1233 | s->contents = (bfd_byte *) bfd_zalloc (dynobj, s->_raw_size);
|
---|
1234 | if (s->contents == NULL && s->_raw_size != 0)
|
---|
1235 | return false;
|
---|
1236 | }
|
---|
1237 |
|
---|
1238 | if (elf_hash_table (info)->dynamic_sections_created)
|
---|
1239 | {
|
---|
1240 | /* Add some entries to the .dynamic section. We fill in the
|
---|
1241 | values later, in elf_i386_finish_dynamic_sections, but we
|
---|
1242 | must add the entries now so that we get the correct size for
|
---|
1243 | the .dynamic section. The DT_DEBUG entry is filled in by the
|
---|
1244 | dynamic linker and used by the debugger. */
|
---|
1245 | if (! info->shared)
|
---|
1246 | {
|
---|
1247 | if (! bfd_elf32_add_dynamic_entry (info, DT_DEBUG, 0))
|
---|
1248 | return false;
|
---|
1249 | }
|
---|
1250 |
|
---|
1251 | if (plt)
|
---|
1252 | {
|
---|
1253 | if (! bfd_elf32_add_dynamic_entry (info, DT_PLTGOT, 0)
|
---|
1254 | || ! bfd_elf32_add_dynamic_entry (info, DT_PLTRELSZ, 0)
|
---|
1255 | || ! bfd_elf32_add_dynamic_entry (info, DT_PLTREL, DT_REL)
|
---|
1256 | || ! bfd_elf32_add_dynamic_entry (info, DT_JMPREL, 0))
|
---|
1257 | return false;
|
---|
1258 | }
|
---|
1259 |
|
---|
1260 | if (relocs)
|
---|
1261 | {
|
---|
1262 | if (! bfd_elf32_add_dynamic_entry (info, DT_REL, 0)
|
---|
1263 | || ! bfd_elf32_add_dynamic_entry (info, DT_RELSZ, 0)
|
---|
1264 | || ! bfd_elf32_add_dynamic_entry (info, DT_RELENT,
|
---|
1265 | sizeof (Elf32_External_Rel)))
|
---|
1266 | return false;
|
---|
1267 | }
|
---|
1268 |
|
---|
1269 | if (reltext)
|
---|
1270 | {
|
---|
1271 | if (! bfd_elf32_add_dynamic_entry (info, DT_TEXTREL, 0))
|
---|
1272 | return false;
|
---|
1273 | info->flags |= DF_TEXTREL;
|
---|
1274 | }
|
---|
1275 | }
|
---|
1276 |
|
---|
1277 | return true;
|
---|
1278 | }
|
---|
1279 |
|
---|
1280 | /* This function is called via elf_i386_link_hash_traverse if we are
|
---|
1281 | creating a shared object. In the -Bsymbolic case, it discards the
|
---|
1282 | space allocated to copy PC relative relocs against symbols which
|
---|
1283 | are defined in regular objects. For the normal non-symbolic case,
|
---|
1284 | we also discard space for relocs that have become local due to
|
---|
1285 | symbol visibility changes. We allocated space for them in the
|
---|
1286 | check_relocs routine, but we won't fill them in in the
|
---|
1287 | relocate_section routine. */
|
---|
1288 |
|
---|
1289 | static boolean
|
---|
1290 | elf_i386_discard_copies (h, inf)
|
---|
1291 | struct elf_i386_link_hash_entry *h;
|
---|
1292 | PTR inf;
|
---|
1293 | {
|
---|
1294 | struct elf_i386_pcrel_relocs_copied *s;
|
---|
1295 | struct bfd_link_info *info = (struct bfd_link_info *) inf;
|
---|
1296 |
|
---|
1297 | /* If a symbol has been forced local or we have found a regular
|
---|
1298 | definition for the symbolic link case, then we won't be needing
|
---|
1299 | any relocs. */
|
---|
1300 | if ((h->root.elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) != 0
|
---|
1301 | && ((h->root.elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) != 0
|
---|
1302 | || info->symbolic))
|
---|
1303 | {
|
---|
1304 | for (s = h->pcrel_relocs_copied; s != NULL; s = s->next)
|
---|
1305 | s->section->_raw_size -= s->count * sizeof (Elf32_External_Rel);
|
---|
1306 | }
|
---|
1307 |
|
---|
1308 | return true;
|
---|
1309 | }
|
---|
1310 |
|
---|
1311 | /* Relocate an i386 ELF section. */
|
---|
1312 |
|
---|
1313 | static boolean
|
---|
1314 | elf_i386_relocate_section (output_bfd, info, input_bfd, input_section,
|
---|
1315 | contents, relocs, local_syms, local_sections)
|
---|
1316 | bfd *output_bfd;
|
---|
1317 | struct bfd_link_info *info;
|
---|
1318 | bfd *input_bfd;
|
---|
1319 | asection *input_section;
|
---|
1320 | bfd_byte *contents;
|
---|
1321 | Elf_Internal_Rela *relocs;
|
---|
1322 | Elf_Internal_Sym *local_syms;
|
---|
1323 | asection **local_sections;
|
---|
1324 | {
|
---|
1325 | bfd *dynobj;
|
---|
1326 | Elf_Internal_Shdr *symtab_hdr;
|
---|
1327 | struct elf_link_hash_entry **sym_hashes;
|
---|
1328 | bfd_vma *local_got_offsets;
|
---|
1329 | asection *sgot;
|
---|
1330 | asection *splt;
|
---|
1331 | asection *sreloc;
|
---|
1332 | Elf_Internal_Rela *rel;
|
---|
1333 | Elf_Internal_Rela *relend;
|
---|
1334 |
|
---|
1335 | dynobj = elf_hash_table (info)->dynobj;
|
---|
1336 | symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr;
|
---|
1337 | sym_hashes = elf_sym_hashes (input_bfd);
|
---|
1338 | local_got_offsets = elf_local_got_offsets (input_bfd);
|
---|
1339 |
|
---|
1340 | sreloc = NULL;
|
---|
1341 | splt = NULL;
|
---|
1342 | sgot = NULL;
|
---|
1343 | if (dynobj != NULL)
|
---|
1344 | {
|
---|
1345 | splt = bfd_get_section_by_name (dynobj, ".plt");
|
---|
1346 | sgot = bfd_get_section_by_name (dynobj, ".got");
|
---|
1347 | }
|
---|
1348 |
|
---|
1349 | rel = relocs;
|
---|
1350 | relend = relocs + input_section->reloc_count;
|
---|
1351 | for (; rel < relend; rel++)
|
---|
1352 | {
|
---|
1353 | int r_type;
|
---|
1354 | reloc_howto_type *howto;
|
---|
1355 | unsigned long r_symndx;
|
---|
1356 | struct elf_link_hash_entry *h;
|
---|
1357 | Elf_Internal_Sym *sym;
|
---|
1358 | asection *sec;
|
---|
1359 | bfd_vma relocation;
|
---|
1360 | bfd_reloc_status_type r;
|
---|
1361 | unsigned int indx;
|
---|
1362 |
|
---|
1363 | r_type = ELF32_R_TYPE (rel->r_info);
|
---|
1364 | if (r_type == (int) R_386_GNU_VTINHERIT
|
---|
1365 | || r_type == (int) R_386_GNU_VTENTRY)
|
---|
1366 | continue;
|
---|
1367 |
|
---|
1368 | if ((indx = (unsigned) r_type) >= R_386_standard
|
---|
1369 | && ((indx = (unsigned) r_type - R_386_ext_offset) - R_386_standard
|
---|
1370 | >= R_386_ext - R_386_standard))
|
---|
1371 | {
|
---|
1372 | bfd_set_error (bfd_error_bad_value);
|
---|
1373 | return false;
|
---|
1374 | }
|
---|
1375 | howto = elf_howto_table + indx;
|
---|
1376 |
|
---|
1377 | r_symndx = ELF32_R_SYM (rel->r_info);
|
---|
1378 |
|
---|
1379 | if (info->relocateable)
|
---|
1380 | {
|
---|
1381 | /* This is a relocateable link. We don't have to change
|
---|
1382 | anything, unless the reloc is against a section symbol,
|
---|
1383 | in which case we have to adjust according to where the
|
---|
1384 | section symbol winds up in the output section. */
|
---|
1385 | if (r_symndx < symtab_hdr->sh_info)
|
---|
1386 | {
|
---|
1387 | sym = local_syms + r_symndx;
|
---|
1388 | if (ELF_ST_TYPE (sym->st_info) == STT_SECTION)
|
---|
1389 | {
|
---|
1390 | bfd_vma val;
|
---|
1391 |
|
---|
1392 | sec = local_sections[r_symndx];
|
---|
1393 | val = bfd_get_32 (input_bfd, contents + rel->r_offset);
|
---|
1394 | val += sec->output_offset + sym->st_value;
|
---|
1395 | bfd_put_32 (input_bfd, val, contents + rel->r_offset);
|
---|
1396 | }
|
---|
1397 | }
|
---|
1398 |
|
---|
1399 | continue;
|
---|
1400 | }
|
---|
1401 |
|
---|
1402 | /* This is a final link. */
|
---|
1403 | h = NULL;
|
---|
1404 | sym = NULL;
|
---|
1405 | sec = NULL;
|
---|
1406 | if (r_symndx < symtab_hdr->sh_info)
|
---|
1407 | {
|
---|
1408 | sym = local_syms + r_symndx;
|
---|
1409 | sec = local_sections[r_symndx];
|
---|
1410 | relocation = (sec->output_section->vma
|
---|
1411 | + sec->output_offset
|
---|
1412 | + sym->st_value);
|
---|
1413 | }
|
---|
1414 | else
|
---|
1415 | {
|
---|
1416 | h = sym_hashes[r_symndx - symtab_hdr->sh_info];
|
---|
1417 | while (h->root.type == bfd_link_hash_indirect
|
---|
1418 | || h->root.type == bfd_link_hash_warning)
|
---|
1419 | h = (struct elf_link_hash_entry *) h->root.u.i.link;
|
---|
1420 | if (h->root.type == bfd_link_hash_defined
|
---|
1421 | || h->root.type == bfd_link_hash_defweak)
|
---|
1422 | {
|
---|
1423 | sec = h->root.u.def.section;
|
---|
1424 | if (r_type == R_386_GOTPC
|
---|
1425 | || (r_type == R_386_PLT32
|
---|
1426 | && splt != NULL
|
---|
1427 | && h->plt.offset != (bfd_vma) -1)
|
---|
1428 | || (r_type == R_386_GOT32
|
---|
1429 | && elf_hash_table (info)->dynamic_sections_created
|
---|
1430 | && (! info->shared
|
---|
1431 | || (! info->symbolic && h->dynindx != -1)
|
---|
1432 | || (h->elf_link_hash_flags
|
---|
1433 | & ELF_LINK_HASH_DEF_REGULAR) == 0))
|
---|
1434 | || (info->shared
|
---|
1435 | && ((! info->symbolic && h->dynindx != -1)
|
---|
1436 | || (h->elf_link_hash_flags
|
---|
1437 | & ELF_LINK_HASH_DEF_REGULAR) == 0)
|
---|
1438 | && (r_type == R_386_32
|
---|
1439 | || r_type == R_386_PC32)
|
---|
1440 | && ((input_section->flags & SEC_ALLOC) != 0
|
---|
1441 | /* DWARF will emit R_386_32 relocations in its
|
---|
1442 | sections against symbols defined externally
|
---|
1443 | in shared libraries. We can't do anything
|
---|
1444 | with them here. */
|
---|
1445 | || ((input_section->flags & SEC_DEBUGGING) != 0
|
---|
1446 | && (h->elf_link_hash_flags
|
---|
1447 | & ELF_LINK_HASH_DEF_DYNAMIC) != 0))))
|
---|
1448 | {
|
---|
1449 | /* In these cases, we don't need the relocation
|
---|
1450 | value. We check specially because in some
|
---|
1451 | obscure cases sec->output_section will be NULL. */
|
---|
1452 | relocation = 0;
|
---|
1453 | }
|
---|
1454 | else if (sec->output_section == NULL)
|
---|
1455 | {
|
---|
1456 | (*_bfd_error_handler)
|
---|
1457 | (_("%s: warning: unresolvable relocation against symbol `%s' from %s section"),
|
---|
1458 | bfd_get_filename (input_bfd), h->root.root.string,
|
---|
1459 | bfd_get_section_name (input_bfd, input_section));
|
---|
1460 | relocation = 0;
|
---|
1461 | }
|
---|
1462 | else
|
---|
1463 | relocation = (h->root.u.def.value
|
---|
1464 | + sec->output_section->vma
|
---|
1465 | + sec->output_offset);
|
---|
1466 | }
|
---|
1467 | else if (h->root.type == bfd_link_hash_undefweak)
|
---|
1468 | relocation = 0;
|
---|
1469 | else if (info->shared && !info->symbolic
|
---|
1470 | && !info->no_undefined
|
---|
1471 | && ELF_ST_VISIBILITY (h->other) == STV_DEFAULT)
|
---|
1472 | relocation = 0;
|
---|
1473 | else
|
---|
1474 | {
|
---|
1475 | if (! ((*info->callbacks->undefined_symbol)
|
---|
1476 | (info, h->root.root.string, input_bfd,
|
---|
1477 | input_section, rel->r_offset,
|
---|
1478 | (!info->shared || info->no_undefined
|
---|
1479 | || ELF_ST_VISIBILITY (h->other)))))
|
---|
1480 | return false;
|
---|
1481 | relocation = 0;
|
---|
1482 | }
|
---|
1483 | }
|
---|
1484 |
|
---|
1485 | switch (r_type)
|
---|
1486 | {
|
---|
1487 | case R_386_GOT32:
|
---|
1488 | /* Relocation is to the entry for this symbol in the global
|
---|
1489 | offset table. */
|
---|
1490 | BFD_ASSERT (sgot != NULL);
|
---|
1491 |
|
---|
1492 | if (h != NULL)
|
---|
1493 | {
|
---|
1494 | bfd_vma off;
|
---|
1495 |
|
---|
1496 | off = h->got.offset;
|
---|
1497 | BFD_ASSERT (off != (bfd_vma) -1);
|
---|
1498 |
|
---|
1499 | if (! elf_hash_table (info)->dynamic_sections_created
|
---|
1500 | || (info->shared
|
---|
1501 | && (info->symbolic || h->dynindx == -1)
|
---|
1502 | && (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR)))
|
---|
1503 | {
|
---|
1504 | /* This is actually a static link, or it is a
|
---|
1505 | -Bsymbolic link and the symbol is defined
|
---|
1506 | locally, or the symbol was forced to be local
|
---|
1507 | because of a version file. We must initialize
|
---|
1508 | this entry in the global offset table. Since the
|
---|
1509 | offset must always be a multiple of 4, we use the
|
---|
1510 | least significant bit to record whether we have
|
---|
1511 | initialized it already.
|
---|
1512 |
|
---|
1513 | When doing a dynamic link, we create a .rel.got
|
---|
1514 | relocation entry to initialize the value. This
|
---|
1515 | is done in the finish_dynamic_symbol routine. */
|
---|
1516 | if ((off & 1) != 0)
|
---|
1517 | off &= ~1;
|
---|
1518 | else
|
---|
1519 | {
|
---|
1520 | bfd_put_32 (output_bfd, relocation,
|
---|
1521 | sgot->contents + off);
|
---|
1522 | h->got.offset |= 1;
|
---|
1523 | }
|
---|
1524 | }
|
---|
1525 |
|
---|
1526 | relocation = sgot->output_offset + off;
|
---|
1527 | }
|
---|
1528 | else
|
---|
1529 | {
|
---|
1530 | bfd_vma off;
|
---|
1531 |
|
---|
1532 | BFD_ASSERT (local_got_offsets != NULL
|
---|
1533 | && local_got_offsets[r_symndx] != (bfd_vma) -1);
|
---|
1534 |
|
---|
1535 | off = local_got_offsets[r_symndx];
|
---|
1536 |
|
---|
1537 | /* The offset must always be a multiple of 4. We use
|
---|
1538 | the least significant bit to record whether we have
|
---|
1539 | already generated the necessary reloc. */
|
---|
1540 | if ((off & 1) != 0)
|
---|
1541 | off &= ~1;
|
---|
1542 | else
|
---|
1543 | {
|
---|
1544 | bfd_put_32 (output_bfd, relocation, sgot->contents + off);
|
---|
1545 |
|
---|
1546 | if (info->shared)
|
---|
1547 | {
|
---|
1548 | asection *srelgot;
|
---|
1549 | Elf_Internal_Rel outrel;
|
---|
1550 |
|
---|
1551 | srelgot = bfd_get_section_by_name (dynobj, ".rel.got");
|
---|
1552 | BFD_ASSERT (srelgot != NULL);
|
---|
1553 |
|
---|
1554 | outrel.r_offset = (sgot->output_section->vma
|
---|
1555 | + sgot->output_offset
|
---|
1556 | + off);
|
---|
1557 | outrel.r_info = ELF32_R_INFO (0, R_386_RELATIVE);
|
---|
1558 | bfd_elf32_swap_reloc_out (output_bfd, &outrel,
|
---|
1559 | (((Elf32_External_Rel *)
|
---|
1560 | srelgot->contents)
|
---|
1561 | + srelgot->reloc_count));
|
---|
1562 | ++srelgot->reloc_count;
|
---|
1563 | }
|
---|
1564 |
|
---|
1565 | local_got_offsets[r_symndx] |= 1;
|
---|
1566 | }
|
---|
1567 |
|
---|
1568 | relocation = sgot->output_offset + off;
|
---|
1569 | }
|
---|
1570 |
|
---|
1571 | break;
|
---|
1572 |
|
---|
1573 | case R_386_GOTOFF:
|
---|
1574 | /* Relocation is relative to the start of the global offset
|
---|
1575 | table. */
|
---|
1576 |
|
---|
1577 | if (sgot == NULL)
|
---|
1578 | {
|
---|
1579 | sgot = bfd_get_section_by_name (dynobj, ".got");
|
---|
1580 | BFD_ASSERT (sgot != NULL);
|
---|
1581 | }
|
---|
1582 |
|
---|
1583 | /* Note that sgot->output_offset is not involved in this
|
---|
1584 | calculation. We always want the start of .got. If we
|
---|
1585 | defined _GLOBAL_OFFSET_TABLE in a different way, as is
|
---|
1586 | permitted by the ABI, we might have to change this
|
---|
1587 | calculation. */
|
---|
1588 | relocation -= sgot->output_section->vma;
|
---|
1589 |
|
---|
1590 | break;
|
---|
1591 |
|
---|
1592 | case R_386_GOTPC:
|
---|
1593 | /* Use global offset table as symbol value. */
|
---|
1594 |
|
---|
1595 | if (sgot == NULL)
|
---|
1596 | {
|
---|
1597 | sgot = bfd_get_section_by_name (dynobj, ".got");
|
---|
1598 | BFD_ASSERT (sgot != NULL);
|
---|
1599 | }
|
---|
1600 |
|
---|
1601 | relocation = sgot->output_section->vma;
|
---|
1602 |
|
---|
1603 | break;
|
---|
1604 |
|
---|
1605 | case R_386_PLT32:
|
---|
1606 | /* Relocation is to the entry for this symbol in the
|
---|
1607 | procedure linkage table. */
|
---|
1608 |
|
---|
1609 | /* Resolve a PLT32 reloc against a local symbol directly,
|
---|
1610 | without using the procedure linkage table. */
|
---|
1611 | if (h == NULL)
|
---|
1612 | break;
|
---|
1613 |
|
---|
1614 | if (h->plt.offset == (bfd_vma) -1
|
---|
1615 | || splt == NULL)
|
---|
1616 | {
|
---|
1617 | /* We didn't make a PLT entry for this symbol. This
|
---|
1618 | happens when statically linking PIC code, or when
|
---|
1619 | using -Bsymbolic. */
|
---|
1620 | break;
|
---|
1621 | }
|
---|
1622 |
|
---|
1623 | relocation = (splt->output_section->vma
|
---|
1624 | + splt->output_offset
|
---|
1625 | + h->plt.offset);
|
---|
1626 |
|
---|
1627 | break;
|
---|
1628 |
|
---|
1629 | case R_386_32:
|
---|
1630 | case R_386_PC32:
|
---|
1631 | if (info->shared
|
---|
1632 | && (input_section->flags & SEC_ALLOC) != 0
|
---|
1633 | && (r_type != R_386_PC32
|
---|
1634 | || (h != NULL
|
---|
1635 | && h->dynindx != -1
|
---|
1636 | && (! info->symbolic
|
---|
1637 | || (h->elf_link_hash_flags
|
---|
1638 | & ELF_LINK_HASH_DEF_REGULAR) == 0))))
|
---|
1639 | {
|
---|
1640 | Elf_Internal_Rel outrel;
|
---|
1641 | boolean skip, relocate;
|
---|
1642 |
|
---|
1643 | /* When generating a shared object, these relocations
|
---|
1644 | are copied into the output file to be resolved at run
|
---|
1645 | time. */
|
---|
1646 |
|
---|
1647 | if (sreloc == NULL)
|
---|
1648 | {
|
---|
1649 | const char *name;
|
---|
1650 |
|
---|
1651 | name = (bfd_elf_string_from_elf_section
|
---|
1652 | (input_bfd,
|
---|
1653 | elf_elfheader (input_bfd)->e_shstrndx,
|
---|
1654 | elf_section_data (input_section)->rel_hdr.sh_name));
|
---|
1655 | if (name == NULL)
|
---|
1656 | return false;
|
---|
1657 |
|
---|
1658 | if (strncmp (name, ".rel", 4) != 0
|
---|
1659 | || strcmp (bfd_get_section_name (input_bfd,
|
---|
1660 | input_section),
|
---|
1661 | name + 4) != 0)
|
---|
1662 | {
|
---|
1663 | if (input_bfd->my_archive)
|
---|
1664 | (*_bfd_error_handler) (_("%s(%s): bad relocation section name `%s\'"),
|
---|
1665 | bfd_get_filename (input_bfd->my_archive),
|
---|
1666 | bfd_get_filename (input_bfd),
|
---|
1667 | name);
|
---|
1668 | else
|
---|
1669 | (*_bfd_error_handler) (_("%s: bad relocation section name `%s\'"),
|
---|
1670 | bfd_get_filename (input_bfd),
|
---|
1671 | name);
|
---|
1672 | return false;
|
---|
1673 | }
|
---|
1674 |
|
---|
1675 | sreloc = bfd_get_section_by_name (dynobj, name);
|
---|
1676 | BFD_ASSERT (sreloc != NULL);
|
---|
1677 | }
|
---|
1678 |
|
---|
1679 | skip = false;
|
---|
1680 |
|
---|
1681 | if (elf_section_data (input_section)->stab_info == NULL)
|
---|
1682 | outrel.r_offset = rel->r_offset;
|
---|
1683 | else
|
---|
1684 | {
|
---|
1685 | bfd_vma off;
|
---|
1686 |
|
---|
1687 | off = (_bfd_stab_section_offset
|
---|
1688 | (output_bfd, &elf_hash_table (info)->stab_info,
|
---|
1689 | input_section,
|
---|
1690 | &elf_section_data (input_section)->stab_info,
|
---|
1691 | rel->r_offset));
|
---|
1692 | if (off == (bfd_vma) -1)
|
---|
1693 | skip = true;
|
---|
1694 | outrel.r_offset = off;
|
---|
1695 | }
|
---|
1696 |
|
---|
1697 | outrel.r_offset += (input_section->output_section->vma
|
---|
1698 | + input_section->output_offset);
|
---|
1699 |
|
---|
1700 | if (skip)
|
---|
1701 | {
|
---|
1702 | memset (&outrel, 0, sizeof outrel);
|
---|
1703 | relocate = false;
|
---|
1704 | }
|
---|
1705 | else if (r_type == R_386_PC32)
|
---|
1706 | {
|
---|
1707 | BFD_ASSERT (h != NULL && h->dynindx != -1);
|
---|
1708 | relocate = false;
|
---|
1709 | outrel.r_info = ELF32_R_INFO (h->dynindx, R_386_PC32);
|
---|
1710 | }
|
---|
1711 | else
|
---|
1712 | {
|
---|
1713 | /* h->dynindx may be -1 if this symbol was marked to
|
---|
1714 | become local. */
|
---|
1715 | if (h == NULL
|
---|
1716 | || ((info->symbolic || h->dynindx == -1)
|
---|
1717 | && (h->elf_link_hash_flags
|
---|
1718 | & ELF_LINK_HASH_DEF_REGULAR) != 0))
|
---|
1719 | {
|
---|
1720 | relocate = true;
|
---|
1721 | outrel.r_info = ELF32_R_INFO (0, R_386_RELATIVE);
|
---|
1722 | }
|
---|
1723 | else
|
---|
1724 | {
|
---|
1725 | BFD_ASSERT (h->dynindx != -1);
|
---|
1726 | relocate = false;
|
---|
1727 | outrel.r_info = ELF32_R_INFO (h->dynindx, R_386_32);
|
---|
1728 | }
|
---|
1729 | }
|
---|
1730 |
|
---|
1731 | bfd_elf32_swap_reloc_out (output_bfd, &outrel,
|
---|
1732 | (((Elf32_External_Rel *)
|
---|
1733 | sreloc->contents)
|
---|
1734 | + sreloc->reloc_count));
|
---|
1735 | ++sreloc->reloc_count;
|
---|
1736 |
|
---|
1737 | /* If this reloc is against an external symbol, we do
|
---|
1738 | not want to fiddle with the addend. Otherwise, we
|
---|
1739 | need to include the symbol value so that it becomes
|
---|
1740 | an addend for the dynamic reloc. */
|
---|
1741 | if (! relocate)
|
---|
1742 | continue;
|
---|
1743 | }
|
---|
1744 |
|
---|
1745 | break;
|
---|
1746 |
|
---|
1747 | default:
|
---|
1748 | break;
|
---|
1749 | }
|
---|
1750 |
|
---|
1751 | r = _bfd_final_link_relocate (howto, input_bfd, input_section,
|
---|
1752 | contents, rel->r_offset,
|
---|
1753 | relocation, (bfd_vma) 0);
|
---|
1754 |
|
---|
1755 | if (r != bfd_reloc_ok)
|
---|
1756 | {
|
---|
1757 | switch (r)
|
---|
1758 | {
|
---|
1759 | default:
|
---|
1760 | case bfd_reloc_outofrange:
|
---|
1761 | abort ();
|
---|
1762 | case bfd_reloc_overflow:
|
---|
1763 | {
|
---|
1764 | const char *name;
|
---|
1765 |
|
---|
1766 | if (h != NULL)
|
---|
1767 | name = h->root.root.string;
|
---|
1768 | else
|
---|
1769 | {
|
---|
1770 | name = bfd_elf_string_from_elf_section (input_bfd,
|
---|
1771 | symtab_hdr->sh_link,
|
---|
1772 | sym->st_name);
|
---|
1773 | if (name == NULL)
|
---|
1774 | return false;
|
---|
1775 | if (*name == '\0')
|
---|
1776 | name = bfd_section_name (input_bfd, sec);
|
---|
1777 | }
|
---|
1778 | if (! ((*info->callbacks->reloc_overflow)
|
---|
1779 | (info, name, howto->name, (bfd_vma) 0,
|
---|
1780 | input_bfd, input_section, rel->r_offset)))
|
---|
1781 | return false;
|
---|
1782 | }
|
---|
1783 | break;
|
---|
1784 | }
|
---|
1785 | }
|
---|
1786 | }
|
---|
1787 |
|
---|
1788 | return true;
|
---|
1789 | }
|
---|
1790 |
|
---|
1791 | /* Finish up dynamic symbol handling. We set the contents of various
|
---|
1792 | dynamic sections here. */
|
---|
1793 |
|
---|
1794 | static boolean
|
---|
1795 | elf_i386_finish_dynamic_symbol (output_bfd, info, h, sym)
|
---|
1796 | bfd *output_bfd;
|
---|
1797 | struct bfd_link_info *info;
|
---|
1798 | struct elf_link_hash_entry *h;
|
---|
1799 | Elf_Internal_Sym *sym;
|
---|
1800 | {
|
---|
1801 | bfd *dynobj;
|
---|
1802 |
|
---|
1803 | dynobj = elf_hash_table (info)->dynobj;
|
---|
1804 |
|
---|
1805 | if (h->plt.offset != (bfd_vma) -1)
|
---|
1806 | {
|
---|
1807 | asection *splt;
|
---|
1808 | asection *sgot;
|
---|
1809 | asection *srel;
|
---|
1810 | bfd_vma plt_index;
|
---|
1811 | bfd_vma got_offset;
|
---|
1812 | Elf_Internal_Rel rel;
|
---|
1813 |
|
---|
1814 | /* This symbol has an entry in the procedure linkage table. Set
|
---|
1815 | it up. */
|
---|
1816 |
|
---|
1817 | BFD_ASSERT (h->dynindx != -1);
|
---|
1818 |
|
---|
1819 | splt = bfd_get_section_by_name (dynobj, ".plt");
|
---|
1820 | sgot = bfd_get_section_by_name (dynobj, ".got.plt");
|
---|
1821 | srel = bfd_get_section_by_name (dynobj, ".rel.plt");
|
---|
1822 | BFD_ASSERT (splt != NULL && sgot != NULL && srel != NULL);
|
---|
1823 |
|
---|
1824 | /* Get the index in the procedure linkage table which
|
---|
1825 | corresponds to this symbol. This is the index of this symbol
|
---|
1826 | in all the symbols for which we are making plt entries. The
|
---|
1827 | first entry in the procedure linkage table is reserved. */
|
---|
1828 | plt_index = h->plt.offset / PLT_ENTRY_SIZE - 1;
|
---|
1829 |
|
---|
1830 | /* Get the offset into the .got table of the entry that
|
---|
1831 | corresponds to this function. Each .got entry is 4 bytes.
|
---|
1832 | The first three are reserved. */
|
---|
1833 | got_offset = (plt_index + 3) * 4;
|
---|
1834 |
|
---|
1835 | /* Fill in the entry in the procedure linkage table. */
|
---|
1836 | if (! info->shared)
|
---|
1837 | {
|
---|
1838 | memcpy (splt->contents + h->plt.offset, elf_i386_plt_entry,
|
---|
1839 | PLT_ENTRY_SIZE);
|
---|
1840 | bfd_put_32 (output_bfd,
|
---|
1841 | (sgot->output_section->vma
|
---|
1842 | + sgot->output_offset
|
---|
1843 | + got_offset),
|
---|
1844 | splt->contents + h->plt.offset + 2);
|
---|
1845 | }
|
---|
1846 | else
|
---|
1847 | {
|
---|
1848 | memcpy (splt->contents + h->plt.offset, elf_i386_pic_plt_entry,
|
---|
1849 | PLT_ENTRY_SIZE);
|
---|
1850 | bfd_put_32 (output_bfd, got_offset,
|
---|
1851 | splt->contents + h->plt.offset + 2);
|
---|
1852 | }
|
---|
1853 |
|
---|
1854 | bfd_put_32 (output_bfd, plt_index * sizeof (Elf32_External_Rel),
|
---|
1855 | splt->contents + h->plt.offset + 7);
|
---|
1856 | bfd_put_32 (output_bfd, - (h->plt.offset + PLT_ENTRY_SIZE),
|
---|
1857 | splt->contents + h->plt.offset + 12);
|
---|
1858 |
|
---|
1859 | /* Fill in the entry in the global offset table. */
|
---|
1860 | bfd_put_32 (output_bfd,
|
---|
1861 | (splt->output_section->vma
|
---|
1862 | + splt->output_offset
|
---|
1863 | + h->plt.offset
|
---|
1864 | + 6),
|
---|
1865 | sgot->contents + got_offset);
|
---|
1866 |
|
---|
1867 | /* Fill in the entry in the .rel.plt section. */
|
---|
1868 | rel.r_offset = (sgot->output_section->vma
|
---|
1869 | + sgot->output_offset
|
---|
1870 | + got_offset);
|
---|
1871 | rel.r_info = ELF32_R_INFO (h->dynindx, R_386_JUMP_SLOT);
|
---|
1872 | bfd_elf32_swap_reloc_out (output_bfd, &rel,
|
---|
1873 | ((Elf32_External_Rel *) srel->contents
|
---|
1874 | + plt_index));
|
---|
1875 |
|
---|
1876 | if ((h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0)
|
---|
1877 | {
|
---|
1878 | /* Mark the symbol as undefined, rather than as defined in
|
---|
1879 | the .plt section. Leave the value alone. */
|
---|
1880 | sym->st_shndx = SHN_UNDEF;
|
---|
1881 | }
|
---|
1882 | }
|
---|
1883 |
|
---|
1884 | if (h->got.offset != (bfd_vma) -1)
|
---|
1885 | {
|
---|
1886 | asection *sgot;
|
---|
1887 | asection *srel;
|
---|
1888 | Elf_Internal_Rel rel;
|
---|
1889 |
|
---|
1890 | /* This symbol has an entry in the global offset table. Set it
|
---|
1891 | up. */
|
---|
1892 |
|
---|
1893 | sgot = bfd_get_section_by_name (dynobj, ".got");
|
---|
1894 | srel = bfd_get_section_by_name (dynobj, ".rel.got");
|
---|
1895 | BFD_ASSERT (sgot != NULL && srel != NULL);
|
---|
1896 |
|
---|
1897 | rel.r_offset = (sgot->output_section->vma
|
---|
1898 | + sgot->output_offset
|
---|
1899 | + (h->got.offset &~ 1));
|
---|
1900 |
|
---|
1901 | /* If this is a static link, or it is a -Bsymbolic link and the
|
---|
1902 | symbol is defined locally or was forced to be local because
|
---|
1903 | of a version file, we just want to emit a RELATIVE reloc.
|
---|
1904 | The entry in the global offset table will already have been
|
---|
1905 | initialized in the relocate_section function. */
|
---|
1906 | if (! elf_hash_table (info)->dynamic_sections_created
|
---|
1907 | || (info->shared
|
---|
1908 | && (info->symbolic || h->dynindx == -1)
|
---|
1909 | && (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR)))
|
---|
1910 | {
|
---|
1911 | rel.r_info = ELF32_R_INFO (0, R_386_RELATIVE);
|
---|
1912 | }
|
---|
1913 | else
|
---|
1914 | {
|
---|
1915 | BFD_ASSERT((h->got.offset & 1) == 0);
|
---|
1916 | bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents + h->got.offset);
|
---|
1917 | rel.r_info = ELF32_R_INFO (h->dynindx, R_386_GLOB_DAT);
|
---|
1918 | }
|
---|
1919 |
|
---|
1920 | bfd_elf32_swap_reloc_out (output_bfd, &rel,
|
---|
1921 | ((Elf32_External_Rel *) srel->contents
|
---|
1922 | + srel->reloc_count));
|
---|
1923 | ++srel->reloc_count;
|
---|
1924 | }
|
---|
1925 |
|
---|
1926 | if ((h->elf_link_hash_flags & ELF_LINK_HASH_NEEDS_COPY) != 0)
|
---|
1927 | {
|
---|
1928 | asection *s;
|
---|
1929 | Elf_Internal_Rel rel;
|
---|
1930 |
|
---|
1931 | /* This symbol needs a copy reloc. Set it up. */
|
---|
1932 |
|
---|
1933 | BFD_ASSERT (h->dynindx != -1
|
---|
1934 | && (h->root.type == bfd_link_hash_defined
|
---|
1935 | || h->root.type == bfd_link_hash_defweak));
|
---|
1936 |
|
---|
1937 | s = bfd_get_section_by_name (h->root.u.def.section->owner,
|
---|
1938 | ".rel.bss");
|
---|
1939 | BFD_ASSERT (s != NULL);
|
---|
1940 |
|
---|
1941 | rel.r_offset = (h->root.u.def.value
|
---|
1942 | + h->root.u.def.section->output_section->vma
|
---|
1943 | + h->root.u.def.section->output_offset);
|
---|
1944 | rel.r_info = ELF32_R_INFO (h->dynindx, R_386_COPY);
|
---|
1945 | bfd_elf32_swap_reloc_out (output_bfd, &rel,
|
---|
1946 | ((Elf32_External_Rel *) s->contents
|
---|
1947 | + s->reloc_count));
|
---|
1948 | ++s->reloc_count;
|
---|
1949 | }
|
---|
1950 |
|
---|
1951 | /* Mark _DYNAMIC and _GLOBAL_OFFSET_TABLE_ as absolute. */
|
---|
1952 | if (strcmp (h->root.root.string, "_DYNAMIC") == 0
|
---|
1953 | || strcmp (h->root.root.string, "_GLOBAL_OFFSET_TABLE_") == 0)
|
---|
1954 | sym->st_shndx = SHN_ABS;
|
---|
1955 |
|
---|
1956 | return true;
|
---|
1957 | }
|
---|
1958 |
|
---|
1959 | /* Finish up the dynamic sections. */
|
---|
1960 |
|
---|
1961 | static boolean
|
---|
1962 | elf_i386_finish_dynamic_sections (output_bfd, info)
|
---|
1963 | bfd *output_bfd;
|
---|
1964 | struct bfd_link_info *info;
|
---|
1965 | {
|
---|
1966 | bfd *dynobj;
|
---|
1967 | asection *sgot;
|
---|
1968 | asection *sdyn;
|
---|
1969 |
|
---|
1970 | dynobj = elf_hash_table (info)->dynobj;
|
---|
1971 |
|
---|
1972 | sgot = bfd_get_section_by_name (dynobj, ".got.plt");
|
---|
1973 | BFD_ASSERT (sgot != NULL);
|
---|
1974 | sdyn = bfd_get_section_by_name (dynobj, ".dynamic");
|
---|
1975 |
|
---|
1976 | if (elf_hash_table (info)->dynamic_sections_created)
|
---|
1977 | {
|
---|
1978 | asection *splt;
|
---|
1979 | Elf32_External_Dyn *dyncon, *dynconend;
|
---|
1980 |
|
---|
1981 | BFD_ASSERT (sdyn != NULL);
|
---|
1982 |
|
---|
1983 | dyncon = (Elf32_External_Dyn *) sdyn->contents;
|
---|
1984 | dynconend = (Elf32_External_Dyn *) (sdyn->contents + sdyn->_raw_size);
|
---|
1985 | for (; dyncon < dynconend; dyncon++)
|
---|
1986 | {
|
---|
1987 | Elf_Internal_Dyn dyn;
|
---|
1988 | const char *name;
|
---|
1989 | asection *s;
|
---|
1990 |
|
---|
1991 | bfd_elf32_swap_dyn_in (dynobj, dyncon, &dyn);
|
---|
1992 |
|
---|
1993 | switch (dyn.d_tag)
|
---|
1994 | {
|
---|
1995 | default:
|
---|
1996 | break;
|
---|
1997 |
|
---|
1998 | case DT_PLTGOT:
|
---|
1999 | name = ".got";
|
---|
2000 | goto get_vma;
|
---|
2001 | case DT_JMPREL:
|
---|
2002 | name = ".rel.plt";
|
---|
2003 | get_vma:
|
---|
2004 | s = bfd_get_section_by_name (output_bfd, name);
|
---|
2005 | BFD_ASSERT (s != NULL);
|
---|
2006 | dyn.d_un.d_ptr = s->vma;
|
---|
2007 | bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
|
---|
2008 | break;
|
---|
2009 |
|
---|
2010 | case DT_PLTRELSZ:
|
---|
2011 | s = bfd_get_section_by_name (output_bfd, ".rel.plt");
|
---|
2012 | BFD_ASSERT (s != NULL);
|
---|
2013 | if (s->_cooked_size != 0)
|
---|
2014 | dyn.d_un.d_val = s->_cooked_size;
|
---|
2015 | else
|
---|
2016 | dyn.d_un.d_val = s->_raw_size;
|
---|
2017 | bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
|
---|
2018 | break;
|
---|
2019 |
|
---|
2020 | case DT_RELSZ:
|
---|
2021 | /* My reading of the SVR4 ABI indicates that the
|
---|
2022 | procedure linkage table relocs (DT_JMPREL) should be
|
---|
2023 | included in the overall relocs (DT_REL). This is
|
---|
2024 | what Solaris does. However, UnixWare can not handle
|
---|
2025 | that case. Therefore, we override the DT_RELSZ entry
|
---|
2026 | here to make it not include the JMPREL relocs. Since
|
---|
2027 | the linker script arranges for .rel.plt to follow all
|
---|
2028 | other relocation sections, we don't have to worry
|
---|
2029 | about changing the DT_REL entry. */
|
---|
2030 | s = bfd_get_section_by_name (output_bfd, ".rel.plt");
|
---|
2031 | if (s != NULL)
|
---|
2032 | {
|
---|
2033 | if (s->_cooked_size != 0)
|
---|
2034 | dyn.d_un.d_val -= s->_cooked_size;
|
---|
2035 | else
|
---|
2036 | dyn.d_un.d_val -= s->_raw_size;
|
---|
2037 | }
|
---|
2038 | bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
|
---|
2039 | break;
|
---|
2040 | }
|
---|
2041 | }
|
---|
2042 |
|
---|
2043 | /* Fill in the first entry in the procedure linkage table. */
|
---|
2044 | splt = bfd_get_section_by_name (dynobj, ".plt");
|
---|
2045 | if (splt && splt->_raw_size > 0)
|
---|
2046 | {
|
---|
2047 | if (info->shared)
|
---|
2048 | memcpy (splt->contents, elf_i386_pic_plt0_entry, PLT_ENTRY_SIZE);
|
---|
2049 | else
|
---|
2050 | {
|
---|
2051 | memcpy (splt->contents, elf_i386_plt0_entry, PLT_ENTRY_SIZE);
|
---|
2052 | bfd_put_32 (output_bfd,
|
---|
2053 | sgot->output_section->vma + sgot->output_offset + 4,
|
---|
2054 | splt->contents + 2);
|
---|
2055 | bfd_put_32 (output_bfd,
|
---|
2056 | sgot->output_section->vma + sgot->output_offset + 8,
|
---|
2057 | splt->contents + 8);
|
---|
2058 | }
|
---|
2059 |
|
---|
2060 | /* UnixWare sets the entsize of .plt to 4, although that doesn't
|
---|
2061 | really seem like the right value. */
|
---|
2062 | elf_section_data (splt->output_section)->this_hdr.sh_entsize = 4;
|
---|
2063 | }
|
---|
2064 | }
|
---|
2065 |
|
---|
2066 | /* Fill in the first three entries in the global offset table. */
|
---|
2067 | if (sgot->_raw_size > 0)
|
---|
2068 | {
|
---|
2069 | if (sdyn == NULL)
|
---|
2070 | bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents);
|
---|
2071 | else
|
---|
2072 | bfd_put_32 (output_bfd,
|
---|
2073 | sdyn->output_section->vma + sdyn->output_offset,
|
---|
2074 | sgot->contents);
|
---|
2075 | bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents + 4);
|
---|
2076 | bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents + 8);
|
---|
2077 | }
|
---|
2078 |
|
---|
2079 | elf_section_data (sgot->output_section)->this_hdr.sh_entsize = 4;
|
---|
2080 |
|
---|
2081 | return true;
|
---|
2082 | }
|
---|
2083 |
|
---|
2084 | /* Set the correct type for an x86 ELF section. We do this by the
|
---|
2085 | section name, which is a hack, but ought to work. */
|
---|
2086 |
|
---|
2087 | static boolean
|
---|
2088 | elf_i386_fake_sections (abfd, hdr, sec)
|
---|
2089 | bfd *abfd ATTRIBUTE_UNUSED;
|
---|
2090 | Elf32_Internal_Shdr *hdr;
|
---|
2091 | asection *sec;
|
---|
2092 | {
|
---|
2093 | register const char *name;
|
---|
2094 |
|
---|
2095 | name = bfd_get_section_name (abfd, sec);
|
---|
2096 |
|
---|
2097 | if (strcmp (name, ".reloc") == 0)
|
---|
2098 | /*
|
---|
2099 | * This is an ugly, but unfortunately necessary hack that is
|
---|
2100 | * needed when producing EFI binaries on x86. It tells
|
---|
2101 | * elf.c:elf_fake_sections() not to consider ".reloc" as a section
|
---|
2102 | * containing ELF relocation info. We need this hack in order to
|
---|
2103 | * be able to generate ELF binaries that can be translated into
|
---|
2104 | * EFI applications (which are essentially COFF objects). Those
|
---|
2105 | * files contain a COFF ".reloc" section inside an ELFNN object,
|
---|
2106 | * which would normally cause BFD to segfault because it would
|
---|
2107 | * attempt to interpret this section as containing relocation
|
---|
2108 | * entries for section "oc". With this hack enabled, ".reloc"
|
---|
2109 | * will be treated as a normal data section, which will avoid the
|
---|
2110 | * segfault. However, you won't be able to create an ELFNN binary
|
---|
2111 | * with a section named "oc" that needs relocations, but that's
|
---|
2112 | * the kind of ugly side-effects you get when detecting section
|
---|
2113 | * types based on their names... In practice, this limitation is
|
---|
2114 | * unlikely to bite.
|
---|
2115 | */
|
---|
2116 | hdr->sh_type = SHT_PROGBITS;
|
---|
2117 |
|
---|
2118 | return true;
|
---|
2119 | }
|
---|
2120 |
|
---|
2121 |
|
---|
2122 | #define TARGET_LITTLE_SYM bfd_elf32_i386_vec
|
---|
2123 | #define TARGET_LITTLE_NAME "elf32-i386"
|
---|
2124 | #define ELF_ARCH bfd_arch_i386
|
---|
2125 | #define ELF_MACHINE_CODE EM_386
|
---|
2126 | #define ELF_MAXPAGESIZE 0x1000
|
---|
2127 |
|
---|
2128 | #define elf_backend_can_gc_sections 1
|
---|
2129 | #define elf_backend_want_got_plt 1
|
---|
2130 | #define elf_backend_plt_readonly 1
|
---|
2131 | #define elf_backend_want_plt_sym 0
|
---|
2132 | #define elf_backend_got_header_size 12
|
---|
2133 | #define elf_backend_plt_header_size PLT_ENTRY_SIZE
|
---|
2134 |
|
---|
2135 | #define elf_info_to_howto elf_i386_info_to_howto
|
---|
2136 | #define elf_info_to_howto_rel elf_i386_info_to_howto_rel
|
---|
2137 |
|
---|
2138 | #define bfd_elf32_bfd_final_link _bfd_elf32_gc_common_final_link
|
---|
2139 | #define bfd_elf32_bfd_is_local_label_name elf_i386_is_local_label_name
|
---|
2140 | #define bfd_elf32_bfd_link_hash_table_create elf_i386_link_hash_table_create
|
---|
2141 | #define bfd_elf32_bfd_reloc_type_lookup elf_i386_reloc_type_lookup
|
---|
2142 |
|
---|
2143 | #define elf_backend_adjust_dynamic_symbol elf_i386_adjust_dynamic_symbol
|
---|
2144 | #define elf_backend_check_relocs elf_i386_check_relocs
|
---|
2145 | #define elf_backend_create_dynamic_sections _bfd_elf_create_dynamic_sections
|
---|
2146 | #define elf_backend_finish_dynamic_sections elf_i386_finish_dynamic_sections
|
---|
2147 | #define elf_backend_finish_dynamic_symbol elf_i386_finish_dynamic_symbol
|
---|
2148 | #define elf_backend_gc_mark_hook elf_i386_gc_mark_hook
|
---|
2149 | #define elf_backend_gc_sweep_hook elf_i386_gc_sweep_hook
|
---|
2150 | #define elf_backend_relocate_section elf_i386_relocate_section
|
---|
2151 | #define elf_backend_size_dynamic_sections elf_i386_size_dynamic_sections
|
---|
2152 | #define elf_backend_fake_sections elf_i386_fake_sections
|
---|
2153 |
|
---|
2154 | #include "elf32-target.h"
|
---|