106-no_module_reloc.patch 9.2 KB

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  1. --- a/arch/mips/Makefile
  2. +++ b/arch/mips/Makefile
  3. @@ -90,8 +90,8 @@ all-$(CONFIG_SYS_SUPPORTS_ZBOOT)+= vmlin
  4. cflags-y += -G 0 -mno-abicalls -fno-pic -pipe
  5. cflags-y += -msoft-float
  6. LDFLAGS_vmlinux += -G 0 -static -n -nostdlib
  7. -KBUILD_AFLAGS_MODULE += -mno-long-calls
  8. -KBUILD_CFLAGS_MODULE += -mno-long-calls
  9. +KBUILD_AFLAGS_MODULE += -mlong-calls
  10. +KBUILD_CFLAGS_MODULE += -mlong-calls
  11. cflags-y += -ffreestanding
  12. --- a/arch/mips/include/asm/module.h
  13. +++ b/arch/mips/include/asm/module.h
  14. @@ -9,11 +9,6 @@ struct mod_arch_specific {
  15. struct list_head dbe_list;
  16. const struct exception_table_entry *dbe_start;
  17. const struct exception_table_entry *dbe_end;
  18. -
  19. - void *phys_plt_tbl;
  20. - void *virt_plt_tbl;
  21. - unsigned int phys_plt_offset;
  22. - unsigned int virt_plt_offset;
  23. };
  24. typedef uint8_t Elf64_Byte; /* Type for a 8-bit quantity. */
  25. --- a/arch/mips/kernel/module.c
  26. +++ b/arch/mips/kernel/module.c
  27. @@ -44,117 +44,6 @@ static struct mips_hi16 *mips_hi16_list;
  28. static LIST_HEAD(dbe_list);
  29. static DEFINE_SPINLOCK(dbe_lock);
  30. -/*
  31. - * Get the potential max trampolines size required of the init and
  32. - * non-init sections. Only used if we cannot find enough contiguous
  33. - * physically mapped memory to put the module into.
  34. - */
  35. -static unsigned int
  36. -get_plt_size(const Elf_Ehdr *hdr, const Elf_Shdr *sechdrs,
  37. - const char *secstrings, unsigned int symindex, bool is_init)
  38. -{
  39. - unsigned long ret = 0;
  40. - unsigned int i, j;
  41. - Elf_Sym *syms;
  42. -
  43. - /* Everything marked ALLOC (this includes the exported symbols) */
  44. - for (i = 1; i < hdr->e_shnum; ++i) {
  45. - unsigned int info = sechdrs[i].sh_info;
  46. -
  47. - if (sechdrs[i].sh_type != SHT_REL
  48. - && sechdrs[i].sh_type != SHT_RELA)
  49. - continue;
  50. -
  51. - /* Not a valid relocation section? */
  52. - if (info >= hdr->e_shnum)
  53. - continue;
  54. -
  55. - /* Don't bother with non-allocated sections */
  56. - if (!(sechdrs[info].sh_flags & SHF_ALLOC))
  57. - continue;
  58. -
  59. - /* If it's called *.init*, and we're not init, we're
  60. - not interested */
  61. - if ((strstr(secstrings + sechdrs[i].sh_name, ".init") != 0)
  62. - != is_init)
  63. - continue;
  64. -
  65. - syms = (Elf_Sym *) sechdrs[symindex].sh_addr;
  66. - if (sechdrs[i].sh_type == SHT_REL) {
  67. - Elf_Mips_Rel *rel = (void *) sechdrs[i].sh_addr;
  68. - unsigned int size = sechdrs[i].sh_size / sizeof(*rel);
  69. -
  70. - for (j = 0; j < size; ++j) {
  71. - Elf_Sym *sym;
  72. -
  73. - if (ELF_MIPS_R_TYPE(rel[j]) != R_MIPS_26)
  74. - continue;
  75. -
  76. - sym = syms + ELF_MIPS_R_SYM(rel[j]);
  77. - if (!is_init && sym->st_shndx != SHN_UNDEF)
  78. - continue;
  79. -
  80. - ret += 4 * sizeof(int);
  81. - }
  82. - } else {
  83. - Elf_Mips_Rela *rela = (void *) sechdrs[i].sh_addr;
  84. - unsigned int size = sechdrs[i].sh_size / sizeof(*rela);
  85. -
  86. - for (j = 0; j < size; ++j) {
  87. - Elf_Sym *sym;
  88. -
  89. - if (ELF_MIPS_R_TYPE(rela[j]) != R_MIPS_26)
  90. - continue;
  91. -
  92. - sym = syms + ELF_MIPS_R_SYM(rela[j]);
  93. - if (!is_init && sym->st_shndx != SHN_UNDEF)
  94. - continue;
  95. -
  96. - ret += 4 * sizeof(int);
  97. - }
  98. - }
  99. - }
  100. -
  101. - return ret;
  102. -}
  103. -
  104. -#ifndef MODULE_START
  105. -static void *alloc_phys(unsigned long size)
  106. -{
  107. - unsigned order;
  108. - struct page *page;
  109. - struct page *p;
  110. -
  111. - size = PAGE_ALIGN(size);
  112. - order = get_order(size);
  113. -
  114. - page = alloc_pages(GFP_KERNEL | __GFP_NORETRY | __GFP_NOWARN |
  115. - __GFP_THISNODE, order);
  116. - if (!page)
  117. - return NULL;
  118. -
  119. - split_page(page, order);
  120. -
  121. - for (p = page + (size >> PAGE_SHIFT); p < page + (1 << order); ++p)
  122. - __free_page(p);
  123. -
  124. - return page_address(page);
  125. -}
  126. -#endif
  127. -
  128. -static void free_phys(void *ptr, unsigned long size)
  129. -{
  130. - struct page *page;
  131. - struct page *end;
  132. -
  133. - page = virt_to_page(ptr);
  134. - end = page + (PAGE_ALIGN(size) >> PAGE_SHIFT);
  135. -
  136. - for (; page < end; ++page)
  137. - __free_page(page);
  138. -}
  139. -
  140. -
  141. void *module_alloc(unsigned long size)
  142. {
  143. #ifdef MODULE_START
  144. @@ -162,99 +51,21 @@ void *module_alloc(unsigned long size)
  145. GFP_KERNEL, PAGE_KERNEL, -1,
  146. __builtin_return_address(0));
  147. #else
  148. - void *ptr;
  149. -
  150. if (size == 0)
  151. return NULL;
  152. -
  153. - ptr = alloc_phys(size);
  154. -
  155. - /* If we failed to allocate physically contiguous memory,
  156. - * fall back to regular vmalloc. The module loader code will
  157. - * create jump tables to handle long jumps */
  158. - if (!ptr)
  159. - return vmalloc(size);
  160. -
  161. - return ptr;
  162. -#endif
  163. -}
  164. -
  165. -static inline bool is_phys_addr(void *ptr)
  166. -{
  167. -#ifdef CONFIG_64BIT
  168. - return (KSEGX((unsigned long)ptr) == CKSEG0);
  169. -#else
  170. - return (KSEGX(ptr) == KSEG0);
  171. + return vmalloc(size);
  172. #endif
  173. }
  174. /* Free memory returned from module_alloc */
  175. void module_free(struct module *mod, void *module_region)
  176. {
  177. - if (is_phys_addr(module_region)) {
  178. - if (mod->module_init == module_region)
  179. - free_phys(module_region, mod->init_size);
  180. - else if (mod->module_core == module_region)
  181. - free_phys(module_region, mod->core_size);
  182. - else
  183. - BUG();
  184. - } else {
  185. - vfree(module_region);
  186. - }
  187. -}
  188. -
  189. -static void *__module_alloc(int size, bool phys)
  190. -{
  191. - void *ptr;
  192. -
  193. - if (phys)
  194. - ptr = kmalloc(size, GFP_KERNEL);
  195. - else
  196. - ptr = vmalloc(size);
  197. - return ptr;
  198. -}
  199. -
  200. -static void __module_free(void *ptr)
  201. -{
  202. - if (is_phys_addr(ptr))
  203. - kfree(ptr);
  204. - else
  205. - vfree(ptr);
  206. + vfree(module_region);
  207. }
  208. int module_frob_arch_sections(Elf_Ehdr *hdr, Elf_Shdr *sechdrs,
  209. char *secstrings, struct module *mod)
  210. {
  211. - unsigned int symindex = 0;
  212. - unsigned int core_size, init_size;
  213. - int i;
  214. -
  215. - for (i = 1; i < hdr->e_shnum; i++)
  216. - if (sechdrs[i].sh_type == SHT_SYMTAB)
  217. - symindex = i;
  218. -
  219. - core_size = get_plt_size(hdr, sechdrs, secstrings, symindex, false);
  220. - init_size = get_plt_size(hdr, sechdrs, secstrings, symindex, true);
  221. -
  222. - mod->arch.phys_plt_offset = 0;
  223. - mod->arch.virt_plt_offset = 0;
  224. - mod->arch.phys_plt_tbl = NULL;
  225. - mod->arch.virt_plt_tbl = NULL;
  226. -
  227. - if ((core_size + init_size) == 0)
  228. - return 0;
  229. -
  230. - mod->arch.phys_plt_tbl = __module_alloc(core_size + init_size, 1);
  231. - if (!mod->arch.phys_plt_tbl)
  232. - return -ENOMEM;
  233. -
  234. - mod->arch.virt_plt_tbl = __module_alloc(core_size + init_size, 0);
  235. - if (!mod->arch.virt_plt_tbl) {
  236. - __module_free(mod->arch.phys_plt_tbl);
  237. - mod->arch.phys_plt_tbl = NULL;
  238. - return -ENOMEM;
  239. - }
  240. -
  241. return 0;
  242. }
  243. @@ -277,36 +88,28 @@ static int apply_r_mips_32_rela(struct m
  244. return 0;
  245. }
  246. -static Elf_Addr add_plt_entry_to(unsigned *plt_offset,
  247. - void *start, Elf_Addr v)
  248. +static int apply_r_mips_26_rel(struct module *me, u32 *location, Elf_Addr v)
  249. {
  250. - unsigned *tramp = start + *plt_offset;
  251. - *plt_offset += 4 * sizeof(int);
  252. -
  253. - /* adjust carry for addiu */
  254. - if (v & 0x00008000)
  255. - v += 0x10000;
  256. -
  257. - tramp[0] = 0x3c190000 | (v >> 16); /* lui t9, hi16 */
  258. - tramp[1] = 0x27390000 | (v & 0xffff); /* addiu t9, t9, lo16 */
  259. - tramp[2] = 0x03200008; /* jr t9 */
  260. - tramp[3] = 0x00000000; /* nop */
  261. + if (v % 4) {
  262. + pr_err("module %s: dangerous R_MIPS_26 REL relocation\n",
  263. + me->name);
  264. + return -ENOEXEC;
  265. + }
  266. - return (Elf_Addr) tramp;
  267. -}
  268. + if ((v & 0xf0000000) != (((unsigned long)location + 4) & 0xf0000000)) {
  269. + printk(KERN_ERR
  270. + "module %s: relocation overflow\n",
  271. + me->name);
  272. + return -ENOEXEC;
  273. + }
  274. -static Elf_Addr add_plt_entry(struct module *me, void *location, Elf_Addr v)
  275. -{
  276. - if (is_phys_addr(location))
  277. - return add_plt_entry_to(&me->arch.phys_plt_offset,
  278. - me->arch.phys_plt_tbl, v);
  279. - else
  280. - return add_plt_entry_to(&me->arch.virt_plt_offset,
  281. - me->arch.virt_plt_tbl, v);
  282. + *location = (*location & ~0x03ffffff) |
  283. + ((*location + (v >> 2)) & 0x03ffffff);
  284. + return 0;
  285. }
  286. -static int set_r_mips_26(struct module *me, u32 *location, u32 ofs, Elf_Addr v)
  287. +static int apply_r_mips_26_rela(struct module *me, u32 *location, Elf_Addr v)
  288. {
  289. if (v % 4) {
  290. pr_err("module %s: dangerous R_MIPS_26 RELArelocation\n",
  291. @@ -315,31 +118,17 @@ static int set_r_mips_26(struct module *
  292. }
  293. if ((v & 0xf0000000) != (((unsigned long)location + 4) & 0xf0000000)) {
  294. - v = add_plt_entry(me, location, v + (ofs << 2));
  295. - if (!v) {
  296. - printk(KERN_ERR
  297. + printk(KERN_ERR
  298. "module %s: relocation overflow\n",
  299. me->name);
  300. - return -ENOEXEC;
  301. - }
  302. - ofs = 0;
  303. + return -ENOEXEC;
  304. }
  305. - *location = (*location & ~0x03ffffff) | ((ofs + (v >> 2)) & 0x03ffffff);
  306. + *location = (*location & ~0x03ffffff) | ((v >> 2) & 0x03ffffff);
  307. return 0;
  308. }
  309. -static int apply_r_mips_26_rel(struct module *me, u32 *location, Elf_Addr v)
  310. -{
  311. - return set_r_mips_26(me, location, *location & 0x03ffffff, v);
  312. -}
  313. -
  314. -static int apply_r_mips_26_rela(struct module *me, u32 *location, Elf_Addr v)
  315. -{
  316. - return set_r_mips_26(me, location, 0, v);
  317. -}
  318. -
  319. static int apply_r_mips_hi16_rel(struct module *me, u32 *location, Elf_Addr v)
  320. {
  321. struct mips_hi16 *n;
  322. @@ -607,32 +396,11 @@ int module_finalize(const Elf_Ehdr *hdr,
  323. list_add(&me->arch.dbe_list, &dbe_list);
  324. spin_unlock_irq(&dbe_lock);
  325. }
  326. -
  327. - /* Get rid of the fixup trampoline if we're running the module
  328. - * from physically mapped address space */
  329. - if (me->arch.phys_plt_offset == 0) {
  330. - __module_free(me->arch.phys_plt_tbl);
  331. - me->arch.phys_plt_tbl = NULL;
  332. - }
  333. - if (me->arch.virt_plt_offset == 0) {
  334. - __module_free(me->arch.virt_plt_tbl);
  335. - me->arch.virt_plt_tbl = NULL;
  336. - }
  337. -
  338. return 0;
  339. }
  340. void module_arch_cleanup(struct module *mod)
  341. {
  342. - if (mod->arch.phys_plt_tbl) {
  343. - __module_free(mod->arch.phys_plt_tbl);
  344. - mod->arch.phys_plt_tbl = NULL;
  345. - }
  346. - if (mod->arch.virt_plt_tbl) {
  347. - __module_free(mod->arch.virt_plt_tbl);
  348. - mod->arch.virt_plt_tbl = NULL;
  349. - }
  350. -
  351. spin_lock_irq(&dbe_lock);
  352. list_del(&mod->arch.dbe_list);
  353. spin_unlock_irq(&dbe_lock);