elfinterp.c 9.2 KB

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  1. /* x86_64 ELF shared library loader suppport
  2. *
  3. * Copyright (c) 1994-2000 Eric Youngdale, Peter MacDonald,
  4. * David Engel, Hongjiu Lu and Mitch D'Souza
  5. * Copyright (C) 2001-2004 Erik Andersen
  6. *
  7. * All rights reserved.
  8. *
  9. * Redistribution and use in source and binary forms, with or without
  10. * modification, are permitted provided that the following conditions
  11. * are met:
  12. * 1. Redistributions of source code must retain the above copyright
  13. * notice, this list of conditions and the following disclaimer.
  14. * 2. The name of the above contributors may not be
  15. * used to endorse or promote products derived from this software
  16. * without specific prior written permission.
  17. *
  18. * THIS SOFTWARE IS PROVIDED BY THE CONTRIBUTORS ``AS IS'' AND
  19. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  20. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  21. * ARE DISCLAIMED. IN NO EVENT SHALL THE CONTRIBUTORS BE LIABLE
  22. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  23. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  24. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  25. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  26. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
  27. * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
  28. * SUCH DAMAGE.
  29. */
  30. #include "ldso.h"
  31. /* Program to load an ELF binary on a linux system, and run it.
  32. References to symbols in sharable libraries can be resolved by either
  33. an ELF sharable library or a linux style of shared library. */
  34. extern int _dl_linux_resolve(void);
  35. unsigned long
  36. _dl_linux_resolver(struct elf_resolve *tpnt, int reloc_entry)
  37. {
  38. ELF_RELOC *this_reloc;
  39. char *strtab;
  40. ElfW(Sym) *symtab;
  41. int symtab_index;
  42. char *rel_addr;
  43. char *new_addr;
  44. char **got_addr;
  45. ElfW(Addr) instr_addr;
  46. char *symname;
  47. rel_addr = (char *)tpnt->dynamic_info[DT_JMPREL];
  48. this_reloc = (ELF_RELOC *)(rel_addr + reloc_entry);
  49. symtab_index = ELF_R_SYM(this_reloc->r_info);
  50. symtab = (ElfW(Sym) *)tpnt->dynamic_info[DT_SYMTAB];
  51. strtab = (char *)tpnt->dynamic_info[DT_STRTAB];
  52. symname = strtab + symtab[symtab_index].st_name;
  53. /* Address of the jump instruction to fix up. */
  54. instr_addr = (this_reloc->r_offset + tpnt->loadaddr);
  55. got_addr = (char **)instr_addr;
  56. /* Get the address of the GOT entry. */
  57. new_addr = _dl_find_hash(symname, &_dl_loaded_modules->symbol_scope, tpnt, ELF_RTYPE_CLASS_PLT, NULL);
  58. if (unlikely(!new_addr)) {
  59. _dl_dprintf(2, "%s: Can't resolve symbol '%s'\n", _dl_progname, symname);
  60. _dl_exit(1);
  61. }
  62. #if defined (__SUPPORT_LD_DEBUG__)
  63. if ((unsigned long)got_addr < 0x40000000) {
  64. if (_dl_debug_bindings) {
  65. _dl_dprintf(_dl_debug_file, "\nresolve function: %s", symname);
  66. if (_dl_debug_detail)
  67. _dl_dprintf(_dl_debug_file,
  68. "\tpatched: %x ==> %x @ %x\n",
  69. *got_addr, new_addr, got_addr);
  70. }
  71. }
  72. if (!_dl_debug_nofixups)
  73. #endif
  74. *got_addr = new_addr;
  75. return (unsigned long)new_addr;
  76. }
  77. static int
  78. _dl_parse(struct elf_resolve *tpnt, struct r_scope_elem *scope,
  79. unsigned long rel_addr, unsigned long rel_size,
  80. int (*reloc_fnc)(struct elf_resolve *tpnt, struct r_scope_elem *scope,
  81. ELF_RELOC *rpnt, ElfW(Sym) *symtab, char *strtab))
  82. {
  83. unsigned int i;
  84. char *strtab;
  85. ElfW(Sym) *symtab;
  86. ELF_RELOC *rpnt;
  87. int symtab_index;
  88. /* Parse the relocation information. */
  89. rpnt = (ELF_RELOC *)rel_addr;
  90. rel_size /= sizeof(ELF_RELOC);
  91. symtab = (ElfW(Sym) *)tpnt->dynamic_info[DT_SYMTAB];
  92. strtab = (char *)tpnt->dynamic_info[DT_STRTAB];
  93. for (i = 0; i < rel_size; i++, rpnt++) {
  94. int res;
  95. symtab_index = ELF_R_SYM(rpnt->r_info);
  96. debug_sym(symtab, strtab, symtab_index);
  97. debug_reloc(symtab, strtab, rpnt);
  98. res = reloc_fnc(tpnt, scope, rpnt, symtab, strtab);
  99. if (res == 0)
  100. continue;
  101. _dl_dprintf(2, "\n%s: ", _dl_progname);
  102. if (symtab_index)
  103. _dl_dprintf(2, "symbol '%s': ",
  104. strtab + symtab[symtab_index].st_name);
  105. if (unlikely(res < 0)) {
  106. int reloc_type = ELF_R_TYPE(rpnt->r_info);
  107. _dl_dprintf(2, "can't handle reloc type "
  108. "%x\n", reloc_type);
  109. _dl_exit(-res);
  110. } else if (unlikely(res > 0)) {
  111. _dl_dprintf(2, "can't resolve symbol\n");
  112. return res;
  113. }
  114. }
  115. return 0;
  116. }
  117. static int
  118. _dl_do_reloc(struct elf_resolve *tpnt, struct r_scope_elem *scope,
  119. ELF_RELOC *rpnt, ElfW(Sym) *symtab, char *strtab)
  120. {
  121. int reloc_type;
  122. int symtab_index;
  123. char *symname;
  124. #if defined USE_TLS && USE_TLS
  125. struct elf_resolve *tls_tpnt;
  126. #endif
  127. struct symbol_ref sym_ref;
  128. ElfW(Addr) *reloc_addr;
  129. ElfW(Addr) symbol_addr;
  130. #if defined (__SUPPORT_LD_DEBUG__)
  131. ElfW(Addr) old_val;
  132. #endif
  133. reloc_addr = (ElfW(Addr)*)(tpnt->loadaddr + (unsigned long)rpnt->r_offset);
  134. reloc_type = ELF_R_TYPE(rpnt->r_info);
  135. symtab_index = ELF_R_SYM(rpnt->r_info);
  136. sym_ref.sym = &symtab[symtab_index];
  137. sym_ref.tpnt = NULL;
  138. symbol_addr = 0;
  139. symname = strtab + sym_ref.sym->st_name;
  140. if (symtab_index) {
  141. symbol_addr = (ElfW(Addr))_dl_find_hash(symname, scope, tpnt,
  142. elf_machine_type_class(reloc_type), &sym_ref);
  143. /*
  144. * We want to allow undefined references to weak symbols - this
  145. * might have been intentional. We should not be linking local
  146. * symbols here, so all bases should be covered.
  147. */
  148. if (unlikely(!symbol_addr && (ELF_ST_TYPE(sym_ref.sym->st_info) != STT_TLS)
  149. && (ELF_ST_BIND(sym_ref.sym->st_info) != STB_WEAK))) {
  150. /* This may be non-fatal if called from dlopen. */
  151. return 1;
  152. }
  153. if (_dl_trace_prelink) {
  154. _dl_debug_lookup (symname, tpnt, &symtab[symtab_index],
  155. &sym_ref, elf_machine_type_class(reloc_type));
  156. }
  157. #if defined USE_TLS && USE_TLS
  158. tls_tpnt = sym_ref.tpnt;
  159. #endif
  160. } else {
  161. /* Relocs against STN_UNDEF are usually treated as using a
  162. * symbol value of zero, and using the module containing the
  163. * reloc itself. */
  164. symbol_addr = sym_ref.sym->st_value;
  165. #if defined USE_TLS && USE_TLS
  166. tls_tpnt = tpnt;
  167. #endif
  168. }
  169. #if defined (__SUPPORT_LD_DEBUG__)
  170. old_val = *reloc_addr;
  171. #endif
  172. switch (reloc_type) {
  173. case R_X86_64_NONE:
  174. break;
  175. case R_X86_64_64:
  176. *reloc_addr = symbol_addr + rpnt->r_addend;
  177. break;
  178. case R_X86_64_PC32:
  179. *reloc_addr = symbol_addr + rpnt->r_addend - rpnt->r_offset;
  180. break;
  181. case R_X86_64_GLOB_DAT:
  182. case R_X86_64_JUMP_SLOT:
  183. *reloc_addr = symbol_addr + rpnt->r_addend;
  184. break;
  185. /* handled by elf_machine_relative()
  186. case R_X86_64_RELATIVE:
  187. *reloc_addr = map->l_addr + rpnt->r_addend;
  188. break;
  189. */
  190. #if defined USE_TLS && USE_TLS
  191. case R_X86_64_DTPMOD64:
  192. *reloc_addr = tls_tpnt->l_tls_modid;
  193. break;
  194. case R_X86_64_DTPOFF64:
  195. /* During relocation all TLS symbols are defined and used.
  196. * Therefore the offset is already correct. */
  197. *reloc_addr = symbol_addr + rpnt->r_addend;
  198. break;
  199. case R_X86_64_TPOFF64:
  200. /* The offset is negative, forward from the thread pointer.
  201. * We know the offset of the object the symbol is contained in.
  202. * It is a negative value which will be added to the
  203. * thread pointer. */
  204. CHECK_STATIC_TLS ((struct link_map *) tls_tpnt);
  205. *reloc_addr = symbol_addr - tls_tpnt->l_tls_offset + rpnt->r_addend;
  206. break;
  207. #endif
  208. case R_X86_64_32:
  209. *(unsigned int *) reloc_addr = symbol_addr + rpnt->r_addend;
  210. /* XXX: should check for overflow eh ? */
  211. break;
  212. case R_X86_64_COPY:
  213. if (symbol_addr) {
  214. #if defined (__SUPPORT_LD_DEBUG__)
  215. if (_dl_debug_move)
  216. _dl_dprintf(_dl_debug_file,
  217. "\t%s move %d bytes from %x to %x\n",
  218. symname, sym_ref.sym->st_size,
  219. symbol_addr, reloc_addr);
  220. #endif
  221. _dl_memcpy((char *)reloc_addr,
  222. (char *)symbol_addr,
  223. sym_ref.sym->st_size);
  224. }
  225. #if defined (__SUPPORT_LD_DEBUG__)
  226. else
  227. _dl_dprintf(_dl_debug_file, "no symbol_addr to copy !?\n");
  228. #endif
  229. break;
  230. default:
  231. return -1; /* Calls _dl_exit(1). */
  232. }
  233. #if defined (__SUPPORT_LD_DEBUG__)
  234. if (_dl_debug_reloc && _dl_debug_detail)
  235. _dl_dprintf(_dl_debug_file, "\tpatched: %x ==> %x @ %x\n",
  236. old_val, *reloc_addr, reloc_addr);
  237. #endif
  238. return 0;
  239. }
  240. static int
  241. _dl_do_lazy_reloc(struct elf_resolve *tpnt, struct r_scope_elem *scope,
  242. ELF_RELOC *rpnt, ElfW(Sym) *symtab, char *strtab)
  243. {
  244. int reloc_type;
  245. ElfW(Addr) *reloc_addr;
  246. #if defined (__SUPPORT_LD_DEBUG__)
  247. ElfW(Addr) old_val;
  248. #endif
  249. (void)scope;
  250. (void)strtab;
  251. reloc_addr = (ElfW(Addr)*)(tpnt->loadaddr + rpnt->r_offset);
  252. reloc_type = ELF_R_TYPE(rpnt->r_info);
  253. #if defined (__SUPPORT_LD_DEBUG__)
  254. old_val = *reloc_addr;
  255. #endif
  256. switch (reloc_type) {
  257. case R_X86_64_NONE:
  258. break;
  259. case R_X86_64_JUMP_SLOT:
  260. *reloc_addr += (unsigned long)tpnt->loadaddr;
  261. break;
  262. default:
  263. _dl_exit(1);
  264. }
  265. #if defined (__SUPPORT_LD_DEBUG__)
  266. if (_dl_debug_reloc && _dl_debug_detail)
  267. _dl_dprintf(_dl_debug_file, "\tpatched_lazy: %x ==> %x @ %x\n",
  268. old_val, *reloc_addr, reloc_addr);
  269. #endif
  270. return 0;
  271. }
  272. void
  273. _dl_parse_lazy_relocation_information(struct dyn_elf *rpnt,
  274. unsigned long rel_addr,
  275. unsigned long rel_size)
  276. {
  277. (void)_dl_parse(rpnt->dyn, NULL, rel_addr, rel_size, _dl_do_lazy_reloc);
  278. }
  279. int
  280. _dl_parse_relocation_information(struct dyn_elf *rpnt,
  281. struct r_scope_elem *scope,
  282. unsigned long rel_addr,
  283. unsigned long rel_size)
  284. {
  285. return _dl_parse(rpnt->dyn, scope, rel_addr, rel_size, _dl_do_reloc);
  286. }