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1 static void glue(bswap_ehdr, SZ)(struct elfhdr *ehdr) |
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2 { |
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3 bswap16s(&ehdr->e_type); /* Object file type */ |
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4 bswap16s(&ehdr->e_machine); /* Architecture */ |
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5 bswap32s(&ehdr->e_version); /* Object file version */ |
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6 bswapSZs(&ehdr->e_entry); /* Entry point virtual address */ |
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7 bswapSZs(&ehdr->e_phoff); /* Program header table file offset */ |
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8 bswapSZs(&ehdr->e_shoff); /* Section header table file offset */ |
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9 bswap32s(&ehdr->e_flags); /* Processor-specific flags */ |
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10 bswap16s(&ehdr->e_ehsize); /* ELF header size in bytes */ |
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11 bswap16s(&ehdr->e_phentsize); /* Program header table entry size */ |
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12 bswap16s(&ehdr->e_phnum); /* Program header table entry count */ |
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13 bswap16s(&ehdr->e_shentsize); /* Section header table entry size */ |
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14 bswap16s(&ehdr->e_shnum); /* Section header table entry count */ |
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15 bswap16s(&ehdr->e_shstrndx); /* Section header string table index */ |
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16 } |
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17 |
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18 static void glue(bswap_phdr, SZ)(struct elf_phdr *phdr) |
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19 { |
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20 bswap32s(&phdr->p_type); /* Segment type */ |
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21 bswapSZs(&phdr->p_offset); /* Segment file offset */ |
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22 bswapSZs(&phdr->p_vaddr); /* Segment virtual address */ |
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23 bswapSZs(&phdr->p_paddr); /* Segment physical address */ |
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24 bswapSZs(&phdr->p_filesz); /* Segment size in file */ |
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25 bswapSZs(&phdr->p_memsz); /* Segment size in memory */ |
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26 bswap32s(&phdr->p_flags); /* Segment flags */ |
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27 bswapSZs(&phdr->p_align); /* Segment alignment */ |
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28 } |
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29 |
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30 static void glue(bswap_shdr, SZ)(struct elf_shdr *shdr) |
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31 { |
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32 bswap32s(&shdr->sh_name); |
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33 bswap32s(&shdr->sh_type); |
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34 bswapSZs(&shdr->sh_flags); |
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35 bswapSZs(&shdr->sh_addr); |
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36 bswapSZs(&shdr->sh_offset); |
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37 bswapSZs(&shdr->sh_size); |
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38 bswap32s(&shdr->sh_link); |
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39 bswap32s(&shdr->sh_info); |
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40 bswapSZs(&shdr->sh_addralign); |
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41 bswapSZs(&shdr->sh_entsize); |
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42 } |
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43 |
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44 static void glue(bswap_sym, SZ)(struct elf_sym *sym) |
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45 { |
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46 bswap32s(&sym->st_name); |
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47 bswapSZs(&sym->st_value); |
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48 bswapSZs(&sym->st_size); |
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49 bswap16s(&sym->st_shndx); |
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50 } |
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51 |
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52 static struct elf_shdr *glue(find_section, SZ)(struct elf_shdr *shdr_table, |
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53 int n, int type) |
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54 { |
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55 int i; |
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56 for(i=0;i<n;i++) { |
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57 if (shdr_table[i].sh_type == type) |
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58 return shdr_table + i; |
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59 } |
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60 return NULL; |
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61 } |
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62 |
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63 static int glue(symfind, SZ)(const void *s0, const void *s1) |
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64 { |
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65 struct elf_sym *key = (struct elf_sym *)s0; |
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66 struct elf_sym *sym = (struct elf_sym *)s1; |
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67 int result = 0; |
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68 if (key->st_value < sym->st_value) { |
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69 result = -1; |
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70 } else if (key->st_value > sym->st_value + sym->st_size) { |
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71 result = 1; |
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72 } |
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73 return result; |
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74 } |
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75 |
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76 static const char *glue(lookup_symbol, SZ)(struct syminfo *s, target_ulong orig_addr) |
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77 { |
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78 struct elf_sym *syms = glue(s->disas_symtab.elf, SZ); |
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79 struct elf_sym key; |
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80 struct elf_sym *sym; |
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81 |
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82 key.st_value = orig_addr; |
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83 |
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84 sym = bsearch(&key, syms, s->disas_num_syms, sizeof(*syms), glue(symfind, SZ)); |
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85 if (sym != 0) { |
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86 return s->disas_strtab + sym->st_name; |
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87 } |
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88 |
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89 return ""; |
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90 } |
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91 |
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92 static int glue(symcmp, SZ)(const void *s0, const void *s1) |
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93 { |
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94 struct elf_sym *sym0 = (struct elf_sym *)s0; |
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95 struct elf_sym *sym1 = (struct elf_sym *)s1; |
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96 return (sym0->st_value < sym1->st_value) |
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97 ? -1 |
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98 : ((sym0->st_value > sym1->st_value) ? 1 : 0); |
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99 } |
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100 |
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101 static int glue(load_symbols, SZ)(struct elfhdr *ehdr, int fd, int must_swab) |
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102 { |
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103 struct elf_shdr *symtab, *strtab, *shdr_table = NULL; |
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104 struct elf_sym *syms = NULL; |
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105 struct syminfo *s; |
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106 int nsyms, i; |
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107 char *str = NULL; |
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108 |
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109 shdr_table = load_at(fd, ehdr->e_shoff, |
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110 sizeof(struct elf_shdr) * ehdr->e_shnum); |
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111 if (!shdr_table) |
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112 return -1; |
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113 |
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114 if (must_swab) { |
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115 for (i = 0; i < ehdr->e_shnum; i++) { |
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116 glue(bswap_shdr, SZ)(shdr_table + i); |
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117 } |
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118 } |
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119 |
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120 symtab = glue(find_section, SZ)(shdr_table, ehdr->e_shnum, SHT_SYMTAB); |
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121 if (!symtab) |
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122 goto fail; |
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123 syms = load_at(fd, symtab->sh_offset, symtab->sh_size); |
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124 if (!syms) |
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125 goto fail; |
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126 |
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127 nsyms = symtab->sh_size / sizeof(struct elf_sym); |
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128 |
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129 i = 0; |
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130 while (i < nsyms) { |
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131 if (must_swab) |
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132 glue(bswap_sym, SZ)(&syms[i]); |
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133 /* We are only interested in function symbols. |
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134 Throw everything else away. */ |
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135 if (syms[i].st_shndx == SHN_UNDEF || |
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136 syms[i].st_shndx >= SHN_LORESERVE || |
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137 ELF_ST_TYPE(syms[i].st_info) != STT_FUNC) { |
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138 nsyms--; |
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139 if (i < nsyms) { |
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140 syms[i] = syms[nsyms]; |
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141 } |
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142 continue; |
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143 } |
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144 #if defined(TARGET_ARM) || defined (TARGET_MIPS) |
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145 /* The bottom address bit marks a Thumb or MIPS16 symbol. */ |
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146 syms[i].st_value &= ~(target_ulong)1; |
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147 #endif |
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148 i++; |
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149 } |
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150 syms = qemu_realloc(syms, nsyms * sizeof(*syms)); |
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151 |
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152 qsort(syms, nsyms, sizeof(*syms), glue(symcmp, SZ)); |
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153 |
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154 /* String table */ |
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155 if (symtab->sh_link >= ehdr->e_shnum) |
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156 goto fail; |
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157 strtab = &shdr_table[symtab->sh_link]; |
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158 |
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159 str = load_at(fd, strtab->sh_offset, strtab->sh_size); |
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160 if (!str) |
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161 goto fail; |
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162 |
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163 /* Commit */ |
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164 s = qemu_mallocz(sizeof(*s)); |
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165 s->lookup_symbol = glue(lookup_symbol, SZ); |
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166 glue(s->disas_symtab.elf, SZ) = syms; |
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167 s->disas_num_syms = nsyms; |
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168 s->disas_strtab = str; |
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169 s->next = syminfos; |
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170 syminfos = s; |
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171 qemu_free(shdr_table); |
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172 return 0; |
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173 fail: |
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174 qemu_free(syms); |
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175 qemu_free(str); |
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176 qemu_free(shdr_table); |
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177 return -1; |
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178 } |
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179 |
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180 static int glue(load_elf, SZ)(int fd, int64_t address_offset, |
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181 int must_swab, uint64_t *pentry, |
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182 uint64_t *lowaddr, uint64_t *highaddr) |
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183 { |
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184 struct elfhdr ehdr; |
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185 struct elf_phdr *phdr = NULL, *ph; |
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186 int size, i, total_size; |
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187 elf_word mem_size; |
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188 uint64_t addr, low = 0, high = 0; |
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189 uint8_t *data = NULL; |
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190 |
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191 if (read(fd, &ehdr, sizeof(ehdr)) != sizeof(ehdr)) |
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192 goto fail; |
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193 if (must_swab) { |
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194 glue(bswap_ehdr, SZ)(&ehdr); |
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195 } |
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196 |
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197 if (ELF_MACHINE != ehdr.e_machine) |
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198 goto fail; |
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199 |
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200 if (pentry) |
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201 *pentry = (uint64_t)(elf_sword)ehdr.e_entry; |
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202 |
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203 glue(load_symbols, SZ)(&ehdr, fd, must_swab); |
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204 |
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205 size = ehdr.e_phnum * sizeof(phdr[0]); |
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206 lseek(fd, ehdr.e_phoff, SEEK_SET); |
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207 phdr = qemu_mallocz(size); |
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208 if (!phdr) |
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209 goto fail; |
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210 if (read(fd, phdr, size) != size) |
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211 goto fail; |
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212 if (must_swab) { |
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213 for(i = 0; i < ehdr.e_phnum; i++) { |
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214 ph = &phdr[i]; |
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215 glue(bswap_phdr, SZ)(ph); |
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216 } |
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217 } |
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218 |
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219 total_size = 0; |
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220 for(i = 0; i < ehdr.e_phnum; i++) { |
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221 ph = &phdr[i]; |
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222 if (ph->p_type == PT_LOAD) { |
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223 mem_size = ph->p_memsz; |
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224 /* XXX: avoid allocating */ |
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225 data = qemu_mallocz(mem_size); |
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226 if (ph->p_filesz > 0) { |
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227 if (lseek(fd, ph->p_offset, SEEK_SET) < 0) |
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228 goto fail; |
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229 if (read(fd, data, ph->p_filesz) != ph->p_filesz) |
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230 goto fail; |
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231 } |
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232 /* address_offset is hack for kernel images that are |
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233 linked at the wrong physical address. */ |
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234 addr = ph->p_paddr + address_offset; |
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235 |
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236 cpu_physical_memory_write_rom(addr, data, mem_size); |
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237 |
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238 total_size += mem_size; |
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239 if (!low || addr < low) |
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240 low = addr; |
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241 if (!high || (addr + mem_size) > high) |
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242 high = addr + mem_size; |
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243 |
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244 qemu_free(data); |
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245 data = NULL; |
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246 } |
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247 } |
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248 qemu_free(phdr); |
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249 if (lowaddr) |
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250 *lowaddr = (uint64_t)(elf_sword)low; |
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251 if (highaddr) |
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252 *highaddr = (uint64_t)(elf_sword)high; |
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253 return total_size; |
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254 fail: |
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255 qemu_free(data); |
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256 qemu_free(phdr); |
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257 return -1; |
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258 } |