modpost.c 54 KB

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  1. /* Postprocess module symbol versions
  2. *
  3. * Copyright 2003 Kai Germaschewski
  4. * Copyright 2002-2004 Rusty Russell, IBM Corporation
  5. * Copyright 2006-2008 Sam Ravnborg
  6. * Based in part on module-init-tools/depmod.c,file2alias
  7. *
  8. * This software may be used and distributed according to the terms
  9. * of the GNU General Public License, incorporated herein by reference.
  10. *
  11. * Usage: modpost vmlinux module1.o module2.o ...
  12. */
  13. #define _GNU_SOURCE
  14. #include <stdio.h>
  15. #include <ctype.h>
  16. #include "modpost.h"
  17. #include "../../include/generated/autoconf.h"
  18. #include "../../include/linux/license.h"
  19. /* Some toolchains use a `_' prefix for all user symbols. */
  20. #ifdef CONFIG_SYMBOL_PREFIX
  21. #define MODULE_SYMBOL_PREFIX CONFIG_SYMBOL_PREFIX
  22. #else
  23. #define MODULE_SYMBOL_PREFIX ""
  24. #endif
  25. /* Are we using CONFIG_MODVERSIONS? */
  26. int modversions = 0;
  27. /* Warn about undefined symbols? (do so if we have vmlinux) */
  28. int have_vmlinux = 0;
  29. /* Is CONFIG_MODULE_SRCVERSION_ALL set? */
  30. static int all_versions = 0;
  31. /* If we are modposting external module set to 1 */
  32. static int external_module = 0;
  33. /* Warn about section mismatch in vmlinux if set to 1 */
  34. static int vmlinux_section_warnings = 1;
  35. /* Only warn about unresolved symbols */
  36. static int warn_unresolved = 0;
  37. /* How a symbol is exported */
  38. static int sec_mismatch_count = 0;
  39. static int sec_mismatch_verbose = 1;
  40. enum export {
  41. export_plain, export_unused, export_gpl,
  42. export_unused_gpl, export_gpl_future, export_unknown
  43. };
  44. #define PRINTF __attribute__ ((format (printf, 1, 2)))
  45. PRINTF void fatal(const char *fmt, ...)
  46. {
  47. va_list arglist;
  48. fprintf(stderr, "FATAL: ");
  49. va_start(arglist, fmt);
  50. vfprintf(stderr, fmt, arglist);
  51. va_end(arglist);
  52. exit(1);
  53. }
  54. PRINTF void warn(const char *fmt, ...)
  55. {
  56. va_list arglist;
  57. fprintf(stderr, "WARNING: ");
  58. va_start(arglist, fmt);
  59. vfprintf(stderr, fmt, arglist);
  60. va_end(arglist);
  61. }
  62. PRINTF void merror(const char *fmt, ...)
  63. {
  64. va_list arglist;
  65. fprintf(stderr, "ERROR: ");
  66. va_start(arglist, fmt);
  67. vfprintf(stderr, fmt, arglist);
  68. va_end(arglist);
  69. }
  70. static int is_vmlinux(const char *modname)
  71. {
  72. const char *myname;
  73. myname = strrchr(modname, '/');
  74. if (myname)
  75. myname++;
  76. else
  77. myname = modname;
  78. return (strcmp(myname, "vmlinux") == 0) ||
  79. (strcmp(myname, "vmlinux.o") == 0);
  80. }
  81. void *do_nofail(void *ptr, const char *expr)
  82. {
  83. if (!ptr)
  84. fatal("modpost: Memory allocation failure: %s.\n", expr);
  85. return ptr;
  86. }
  87. /* A list of all modules we processed */
  88. static struct module *modules;
  89. static struct module *find_module(char *modname)
  90. {
  91. struct module *mod;
  92. for (mod = modules; mod; mod = mod->next)
  93. if (strcmp(mod->name, modname) == 0)
  94. break;
  95. return mod;
  96. }
  97. static struct module *new_module(char *modname)
  98. {
  99. struct module *mod;
  100. char *p, *s;
  101. mod = NOFAIL(malloc(sizeof(*mod)));
  102. memset(mod, 0, sizeof(*mod));
  103. p = NOFAIL(strdup(modname));
  104. /* strip trailing .o */
  105. s = strrchr(p, '.');
  106. if (s != NULL)
  107. if (strcmp(s, ".o") == 0)
  108. *s = '\0';
  109. /* add to list */
  110. mod->name = p;
  111. mod->gpl_compatible = -1;
  112. mod->next = modules;
  113. modules = mod;
  114. return mod;
  115. }
  116. /* A hash of all exported symbols,
  117. * struct symbol is also used for lists of unresolved symbols */
  118. #define SYMBOL_HASH_SIZE 1024
  119. struct symbol {
  120. struct symbol *next;
  121. struct module *module;
  122. unsigned int crc;
  123. int crc_valid;
  124. unsigned int weak:1;
  125. unsigned int vmlinux:1; /* 1 if symbol is defined in vmlinux */
  126. unsigned int kernel:1; /* 1 if symbol is from kernel
  127. * (only for external modules) **/
  128. unsigned int preloaded:1; /* 1 if symbol from Module.symvers */
  129. enum export export; /* Type of export */
  130. char name[0];
  131. };
  132. static struct symbol *symbolhash[SYMBOL_HASH_SIZE];
  133. /* This is based on the hash agorithm from gdbm, via tdb */
  134. static inline unsigned int tdb_hash(const char *name)
  135. {
  136. unsigned value; /* Used to compute the hash value. */
  137. unsigned i; /* Used to cycle through random values. */
  138. /* Set the initial value from the key size. */
  139. for (value = 0x238F13AF * strlen(name), i = 0; name[i]; i++)
  140. value = (value + (((unsigned char *)name)[i] << (i*5 % 24)));
  141. return (1103515243 * value + 12345);
  142. }
  143. /**
  144. * Allocate a new symbols for use in the hash of exported symbols or
  145. * the list of unresolved symbols per module
  146. **/
  147. static struct symbol *alloc_symbol(const char *name, unsigned int weak,
  148. struct symbol *next)
  149. {
  150. struct symbol *s = NOFAIL(malloc(sizeof(*s) + strlen(name) + 1));
  151. memset(s, 0, sizeof(*s));
  152. strcpy(s->name, name);
  153. s->weak = weak;
  154. s->next = next;
  155. return s;
  156. }
  157. /* For the hash of exported symbols */
  158. static struct symbol *new_symbol(const char *name, struct module *module,
  159. enum export export)
  160. {
  161. unsigned int hash;
  162. struct symbol *new;
  163. hash = tdb_hash(name) % SYMBOL_HASH_SIZE;
  164. new = symbolhash[hash] = alloc_symbol(name, 0, symbolhash[hash]);
  165. new->module = module;
  166. new->export = export;
  167. return new;
  168. }
  169. static struct symbol *find_symbol(const char *name)
  170. {
  171. struct symbol *s;
  172. /* For our purposes, .foo matches foo. PPC64 needs this. */
  173. if (name[0] == '.')
  174. name++;
  175. for (s = symbolhash[tdb_hash(name) % SYMBOL_HASH_SIZE]; s; s = s->next) {
  176. if (strcmp(s->name, name) == 0)
  177. return s;
  178. }
  179. return NULL;
  180. }
  181. static struct {
  182. const char *str;
  183. enum export export;
  184. } export_list[] = {
  185. { .str = "EXPORT_SYMBOL", .export = export_plain },
  186. { .str = "EXPORT_UNUSED_SYMBOL", .export = export_unused },
  187. { .str = "EXPORT_SYMBOL_GPL", .export = export_gpl },
  188. { .str = "EXPORT_UNUSED_SYMBOL_GPL", .export = export_unused_gpl },
  189. { .str = "EXPORT_SYMBOL_GPL_FUTURE", .export = export_gpl_future },
  190. { .str = "(unknown)", .export = export_unknown },
  191. };
  192. static const char *export_str(enum export ex)
  193. {
  194. return export_list[ex].str;
  195. }
  196. static enum export export_no(const char *s)
  197. {
  198. int i;
  199. if (!s)
  200. return export_unknown;
  201. for (i = 0; export_list[i].export != export_unknown; i++) {
  202. if (strcmp(export_list[i].str, s) == 0)
  203. return export_list[i].export;
  204. }
  205. return export_unknown;
  206. }
  207. static enum export export_from_sec(struct elf_info *elf, unsigned int sec)
  208. {
  209. if (sec == elf->export_sec)
  210. return export_plain;
  211. else if (sec == elf->export_unused_sec)
  212. return export_unused;
  213. else if (sec == elf->export_gpl_sec)
  214. return export_gpl;
  215. else if (sec == elf->export_unused_gpl_sec)
  216. return export_unused_gpl;
  217. else if (sec == elf->export_gpl_future_sec)
  218. return export_gpl_future;
  219. else
  220. return export_unknown;
  221. }
  222. /**
  223. * Add an exported symbol - it may have already been added without a
  224. * CRC, in this case just update the CRC
  225. **/
  226. static struct symbol *sym_add_exported(const char *name, struct module *mod,
  227. enum export export)
  228. {
  229. struct symbol *s = find_symbol(name);
  230. if (!s) {
  231. s = new_symbol(name, mod, export);
  232. } else {
  233. if (!s->preloaded) {
  234. warn("%s: '%s' exported twice. Previous export "
  235. "was in %s%s\n", mod->name, name,
  236. s->module->name,
  237. is_vmlinux(s->module->name) ?"":".ko");
  238. } else {
  239. /* In case Modules.symvers was out of date */
  240. s->module = mod;
  241. }
  242. }
  243. s->preloaded = 0;
  244. s->vmlinux = is_vmlinux(mod->name);
  245. s->kernel = 0;
  246. s->export = export;
  247. return s;
  248. }
  249. static void sym_update_crc(const char *name, struct module *mod,
  250. unsigned int crc, enum export export)
  251. {
  252. struct symbol *s = find_symbol(name);
  253. if (!s)
  254. s = new_symbol(name, mod, export);
  255. s->crc = crc;
  256. s->crc_valid = 1;
  257. }
  258. void *grab_file(const char *filename, unsigned long *size)
  259. {
  260. struct stat st;
  261. void *map;
  262. int fd;
  263. fd = open(filename, O_RDONLY);
  264. if (fd < 0 || fstat(fd, &st) != 0)
  265. return NULL;
  266. *size = st.st_size;
  267. map = mmap(NULL, *size, PROT_READ|PROT_WRITE, MAP_PRIVATE, fd, 0);
  268. close(fd);
  269. if (map == MAP_FAILED)
  270. return NULL;
  271. return map;
  272. }
  273. /**
  274. * Return a copy of the next line in a mmap'ed file.
  275. * spaces in the beginning of the line is trimmed away.
  276. * Return a pointer to a static buffer.
  277. **/
  278. char *get_next_line(unsigned long *pos, void *file, unsigned long size)
  279. {
  280. static char line[4096];
  281. int skip = 1;
  282. size_t len = 0;
  283. signed char *p = (signed char *)file + *pos;
  284. char *s = line;
  285. for (; *pos < size ; (*pos)++) {
  286. if (skip && isspace(*p)) {
  287. p++;
  288. continue;
  289. }
  290. skip = 0;
  291. if (*p != '\n' && (*pos < size)) {
  292. len++;
  293. *s++ = *p++;
  294. if (len > 4095)
  295. break; /* Too long, stop */
  296. } else {
  297. /* End of string */
  298. *s = '\0';
  299. return line;
  300. }
  301. }
  302. /* End of buffer */
  303. return NULL;
  304. }
  305. void release_file(void *file, unsigned long size)
  306. {
  307. munmap(file, size);
  308. }
  309. static int parse_elf(struct elf_info *info, const char *filename)
  310. {
  311. unsigned int i;
  312. Elf_Ehdr *hdr;
  313. Elf_Shdr *sechdrs;
  314. Elf_Sym *sym;
  315. const char *secstrings;
  316. unsigned int symtab_idx = ~0U, symtab_shndx_idx = ~0U;
  317. hdr = grab_file(filename, &info->size);
  318. if (!hdr) {
  319. perror(filename);
  320. exit(1);
  321. }
  322. info->hdr = hdr;
  323. if (info->size < sizeof(*hdr)) {
  324. /* file too small, assume this is an empty .o file */
  325. return 0;
  326. }
  327. /* Is this a valid ELF file? */
  328. if ((hdr->e_ident[EI_MAG0] != ELFMAG0) ||
  329. (hdr->e_ident[EI_MAG1] != ELFMAG1) ||
  330. (hdr->e_ident[EI_MAG2] != ELFMAG2) ||
  331. (hdr->e_ident[EI_MAG3] != ELFMAG3)) {
  332. /* Not an ELF file - silently ignore it */
  333. return 0;
  334. }
  335. /* Fix endianness in ELF header */
  336. hdr->e_type = TO_NATIVE(hdr->e_type);
  337. hdr->e_machine = TO_NATIVE(hdr->e_machine);
  338. hdr->e_version = TO_NATIVE(hdr->e_version);
  339. hdr->e_entry = TO_NATIVE(hdr->e_entry);
  340. hdr->e_phoff = TO_NATIVE(hdr->e_phoff);
  341. hdr->e_shoff = TO_NATIVE(hdr->e_shoff);
  342. hdr->e_flags = TO_NATIVE(hdr->e_flags);
  343. hdr->e_ehsize = TO_NATIVE(hdr->e_ehsize);
  344. hdr->e_phentsize = TO_NATIVE(hdr->e_phentsize);
  345. hdr->e_phnum = TO_NATIVE(hdr->e_phnum);
  346. hdr->e_shentsize = TO_NATIVE(hdr->e_shentsize);
  347. hdr->e_shnum = TO_NATIVE(hdr->e_shnum);
  348. hdr->e_shstrndx = TO_NATIVE(hdr->e_shstrndx);
  349. sechdrs = (void *)hdr + hdr->e_shoff;
  350. info->sechdrs = sechdrs;
  351. /* Check if file offset is correct */
  352. if (hdr->e_shoff > info->size) {
  353. fatal("section header offset=%lu in file '%s' is bigger than "
  354. "filesize=%lu\n", (unsigned long)hdr->e_shoff,
  355. filename, info->size);
  356. return 0;
  357. }
  358. if (hdr->e_shnum == 0) {
  359. /*
  360. * There are more than 64k sections,
  361. * read count from .sh_size.
  362. * note: it doesn't need shndx2secindex()
  363. */
  364. info->num_sections = TO_NATIVE(sechdrs[0].sh_size);
  365. }
  366. else {
  367. info->num_sections = hdr->e_shnum;
  368. }
  369. if (hdr->e_shstrndx == SHN_XINDEX) {
  370. info->secindex_strings =
  371. shndx2secindex(TO_NATIVE(sechdrs[0].sh_link));
  372. }
  373. else {
  374. info->secindex_strings = hdr->e_shstrndx;
  375. }
  376. /* Fix endianness in section headers */
  377. for (i = 0; i < info->num_sections; i++) {
  378. sechdrs[i].sh_name = TO_NATIVE(sechdrs[i].sh_name);
  379. sechdrs[i].sh_type = TO_NATIVE(sechdrs[i].sh_type);
  380. sechdrs[i].sh_flags = TO_NATIVE(sechdrs[i].sh_flags);
  381. sechdrs[i].sh_addr = TO_NATIVE(sechdrs[i].sh_addr);
  382. sechdrs[i].sh_offset = TO_NATIVE(sechdrs[i].sh_offset);
  383. sechdrs[i].sh_size = TO_NATIVE(sechdrs[i].sh_size);
  384. sechdrs[i].sh_link = TO_NATIVE(sechdrs[i].sh_link);
  385. sechdrs[i].sh_info = TO_NATIVE(sechdrs[i].sh_info);
  386. sechdrs[i].sh_addralign = TO_NATIVE(sechdrs[i].sh_addralign);
  387. sechdrs[i].sh_entsize = TO_NATIVE(sechdrs[i].sh_entsize);
  388. }
  389. /* Find symbol table. */
  390. secstrings = (void *)hdr + sechdrs[info->secindex_strings].sh_offset;
  391. for (i = 1; i < info->num_sections; i++) {
  392. const char *secname;
  393. int nobits = sechdrs[i].sh_type == SHT_NOBITS;
  394. if (!nobits && sechdrs[i].sh_offset > info->size) {
  395. fatal("%s is truncated. sechdrs[i].sh_offset=%lu > "
  396. "sizeof(*hrd)=%zu\n", filename,
  397. (unsigned long)sechdrs[i].sh_offset,
  398. sizeof(*hdr));
  399. return 0;
  400. }
  401. secname = secstrings + sechdrs[i].sh_name;
  402. if (strcmp(secname, ".modinfo") == 0) {
  403. if (nobits)
  404. fatal("%s has NOBITS .modinfo\n", filename);
  405. info->modinfo = (void *)hdr + sechdrs[i].sh_offset;
  406. info->modinfo_len = sechdrs[i].sh_size;
  407. } else if (strcmp(secname, "__ksymtab") == 0)
  408. info->export_sec = i;
  409. else if (strcmp(secname, "__ksymtab_unused") == 0)
  410. info->export_unused_sec = i;
  411. else if (strcmp(secname, "__ksymtab_gpl") == 0)
  412. info->export_gpl_sec = i;
  413. else if (strcmp(secname, "__ksymtab_unused_gpl") == 0)
  414. info->export_unused_gpl_sec = i;
  415. else if (strcmp(secname, "__ksymtab_gpl_future") == 0)
  416. info->export_gpl_future_sec = i;
  417. if (sechdrs[i].sh_type == SHT_SYMTAB) {
  418. unsigned int sh_link_idx;
  419. symtab_idx = i;
  420. info->symtab_start = (void *)hdr +
  421. sechdrs[i].sh_offset;
  422. info->symtab_stop = (void *)hdr +
  423. sechdrs[i].sh_offset + sechdrs[i].sh_size;
  424. sh_link_idx = shndx2secindex(sechdrs[i].sh_link);
  425. info->strtab = (void *)hdr +
  426. sechdrs[sh_link_idx].sh_offset;
  427. }
  428. /* 32bit section no. table? ("more than 64k sections") */
  429. if (sechdrs[i].sh_type == SHT_SYMTAB_SHNDX) {
  430. symtab_shndx_idx = i;
  431. info->symtab_shndx_start = (void *)hdr +
  432. sechdrs[i].sh_offset;
  433. info->symtab_shndx_stop = (void *)hdr +
  434. sechdrs[i].sh_offset + sechdrs[i].sh_size;
  435. }
  436. }
  437. if (!info->symtab_start)
  438. fatal("%s has no symtab?\n", filename);
  439. /* Fix endianness in symbols */
  440. for (sym = info->symtab_start; sym < info->symtab_stop; sym++) {
  441. sym->st_shndx = TO_NATIVE(sym->st_shndx);
  442. sym->st_name = TO_NATIVE(sym->st_name);
  443. sym->st_value = TO_NATIVE(sym->st_value);
  444. sym->st_size = TO_NATIVE(sym->st_size);
  445. }
  446. if (symtab_shndx_idx != ~0U) {
  447. Elf32_Word *p;
  448. if (symtab_idx !=
  449. shndx2secindex(sechdrs[symtab_shndx_idx].sh_link))
  450. fatal("%s: SYMTAB_SHNDX has bad sh_link: %u!=%u\n",
  451. filename,
  452. shndx2secindex(sechdrs[symtab_shndx_idx].sh_link),
  453. symtab_idx);
  454. /* Fix endianness */
  455. for (p = info->symtab_shndx_start; p < info->symtab_shndx_stop;
  456. p++)
  457. *p = TO_NATIVE(*p);
  458. }
  459. return 1;
  460. }
  461. static void parse_elf_finish(struct elf_info *info)
  462. {
  463. release_file(info->hdr, info->size);
  464. }
  465. static int ignore_undef_symbol(struct elf_info *info, const char *symname)
  466. {
  467. /* ignore __this_module, it will be resolved shortly */
  468. if (strcmp(symname, MODULE_SYMBOL_PREFIX "__this_module") == 0)
  469. return 1;
  470. /* ignore global offset table */
  471. if (strcmp(symname, "_GLOBAL_OFFSET_TABLE_") == 0)
  472. return 1;
  473. if (info->hdr->e_machine == EM_PPC)
  474. /* Special register function linked on all modules during final link of .ko */
  475. if (strncmp(symname, "_restgpr_", sizeof("_restgpr_") - 1) == 0 ||
  476. strncmp(symname, "_savegpr_", sizeof("_savegpr_") - 1) == 0 ||
  477. strncmp(symname, "_rest32gpr_", sizeof("_rest32gpr_") - 1) == 0 ||
  478. strncmp(symname, "_save32gpr_", sizeof("_save32gpr_") - 1) == 0)
  479. return 1;
  480. /* Do not ignore this symbol */
  481. return 0;
  482. }
  483. #define CRC_PFX MODULE_SYMBOL_PREFIX "__crc_"
  484. #define KSYMTAB_PFX MODULE_SYMBOL_PREFIX "__ksymtab_"
  485. static void handle_modversions(struct module *mod, struct elf_info *info,
  486. Elf_Sym *sym, const char *symname)
  487. {
  488. unsigned int crc;
  489. enum export export = export_from_sec(info, get_secindex(info, sym));
  490. switch (sym->st_shndx) {
  491. case SHN_COMMON:
  492. warn("\"%s\" [%s] is COMMON symbol\n", symname, mod->name);
  493. break;
  494. case SHN_ABS:
  495. /* CRC'd symbol */
  496. if (strncmp(symname, CRC_PFX, strlen(CRC_PFX)) == 0) {
  497. crc = (unsigned int) sym->st_value;
  498. sym_update_crc(symname + strlen(CRC_PFX), mod, crc,
  499. export);
  500. }
  501. break;
  502. case SHN_UNDEF:
  503. /* undefined symbol */
  504. if (ELF_ST_BIND(sym->st_info) != STB_GLOBAL &&
  505. ELF_ST_BIND(sym->st_info) != STB_WEAK)
  506. break;
  507. if (ignore_undef_symbol(info, symname))
  508. break;
  509. /* cope with newer glibc (2.3.4 or higher) STT_ definition in elf.h */
  510. #if defined(STT_REGISTER) || defined(STT_SPARC_REGISTER)
  511. /* add compatibility with older glibc */
  512. #ifndef STT_SPARC_REGISTER
  513. #define STT_SPARC_REGISTER STT_REGISTER
  514. #endif
  515. if (info->hdr->e_machine == EM_SPARC ||
  516. info->hdr->e_machine == EM_SPARCV9) {
  517. /* Ignore register directives. */
  518. if (ELF_ST_TYPE(sym->st_info) == STT_SPARC_REGISTER)
  519. break;
  520. if (symname[0] == '.') {
  521. char *munged = strdup(symname);
  522. munged[0] = '_';
  523. munged[1] = toupper(munged[1]);
  524. symname = munged;
  525. }
  526. }
  527. #endif
  528. if (memcmp(symname, MODULE_SYMBOL_PREFIX,
  529. strlen(MODULE_SYMBOL_PREFIX)) == 0) {
  530. mod->unres =
  531. alloc_symbol(symname +
  532. strlen(MODULE_SYMBOL_PREFIX),
  533. ELF_ST_BIND(sym->st_info) == STB_WEAK,
  534. mod->unres);
  535. }
  536. break;
  537. default:
  538. /* All exported symbols */
  539. if (strncmp(symname, KSYMTAB_PFX, strlen(KSYMTAB_PFX)) == 0) {
  540. sym_add_exported(symname + strlen(KSYMTAB_PFX), mod,
  541. export);
  542. }
  543. if (strcmp(symname, MODULE_SYMBOL_PREFIX "init_module") == 0)
  544. mod->has_init = 1;
  545. if (strcmp(symname, MODULE_SYMBOL_PREFIX "cleanup_module") == 0)
  546. mod->has_cleanup = 1;
  547. break;
  548. }
  549. }
  550. /**
  551. * Parse tag=value strings from .modinfo section
  552. **/
  553. static char *next_string(char *string, unsigned long *secsize)
  554. {
  555. /* Skip non-zero chars */
  556. while (string[0]) {
  557. string++;
  558. if ((*secsize)-- <= 1)
  559. return NULL;
  560. }
  561. /* Skip any zero padding. */
  562. while (!string[0]) {
  563. string++;
  564. if ((*secsize)-- <= 1)
  565. return NULL;
  566. }
  567. return string;
  568. }
  569. static char *get_next_modinfo(void *modinfo, unsigned long modinfo_len,
  570. const char *tag, char *info)
  571. {
  572. char *p;
  573. unsigned int taglen = strlen(tag);
  574. unsigned long size = modinfo_len;
  575. if (info) {
  576. size -= info - (char *)modinfo;
  577. modinfo = next_string(info, &size);
  578. }
  579. for (p = modinfo; p; p = next_string(p, &size)) {
  580. if (strncmp(p, tag, taglen) == 0 && p[taglen] == '=')
  581. return p + taglen + 1;
  582. }
  583. return NULL;
  584. }
  585. static char *get_modinfo(void *modinfo, unsigned long modinfo_len,
  586. const char *tag)
  587. {
  588. return get_next_modinfo(modinfo, modinfo_len, tag, NULL);
  589. }
  590. /**
  591. * Test if string s ends in string sub
  592. * return 0 if match
  593. **/
  594. static int strrcmp(const char *s, const char *sub)
  595. {
  596. int slen, sublen;
  597. if (!s || !sub)
  598. return 1;
  599. slen = strlen(s);
  600. sublen = strlen(sub);
  601. if ((slen == 0) || (sublen == 0))
  602. return 1;
  603. if (sublen > slen)
  604. return 1;
  605. return memcmp(s + slen - sublen, sub, sublen);
  606. }
  607. static const char *sym_name(struct elf_info *elf, Elf_Sym *sym)
  608. {
  609. if (sym)
  610. return elf->strtab + sym->st_name;
  611. else
  612. return "(unknown)";
  613. }
  614. static const char *sec_name(struct elf_info *elf, int secindex)
  615. {
  616. Elf_Shdr *sechdrs = elf->sechdrs;
  617. return (void *)elf->hdr +
  618. elf->sechdrs[elf->secindex_strings].sh_offset +
  619. sechdrs[secindex].sh_name;
  620. }
  621. static const char *sech_name(struct elf_info *elf, Elf_Shdr *sechdr)
  622. {
  623. return (void *)elf->hdr +
  624. elf->sechdrs[elf->secindex_strings].sh_offset +
  625. sechdr->sh_name;
  626. }
  627. /* if sym is empty or point to a string
  628. * like ".[0-9]+" then return 1.
  629. * This is the optional prefix added by ld to some sections
  630. */
  631. static int number_prefix(const char *sym)
  632. {
  633. if (*sym++ == '\0')
  634. return 1;
  635. if (*sym != '.')
  636. return 0;
  637. do {
  638. char c = *sym++;
  639. if (c < '0' || c > '9')
  640. return 0;
  641. } while (*sym);
  642. return 1;
  643. }
  644. /* The pattern is an array of simple patterns.
  645. * "foo" will match an exact string equal to "foo"
  646. * "*foo" will match a string that ends with "foo"
  647. * "foo*" will match a string that begins with "foo"
  648. * "foo$" will match a string equal to "foo" or "foo.1"
  649. * where the '1' can be any number including several digits.
  650. * The $ syntax is for sections where ld append a dot number
  651. * to make section name unique.
  652. */
  653. static int match(const char *sym, const char * const pat[])
  654. {
  655. const char *p;
  656. while (*pat) {
  657. p = *pat++;
  658. const char *endp = p + strlen(p) - 1;
  659. /* "*foo" */
  660. if (*p == '*') {
  661. if (strrcmp(sym, p + 1) == 0)
  662. return 1;
  663. }
  664. /* "foo*" */
  665. else if (*endp == '*') {
  666. if (strncmp(sym, p, strlen(p) - 1) == 0)
  667. return 1;
  668. }
  669. /* "foo$" */
  670. else if (*endp == '$') {
  671. if (strncmp(sym, p, strlen(p) - 1) == 0) {
  672. if (number_prefix(sym + strlen(p) - 1))
  673. return 1;
  674. }
  675. }
  676. /* no wildcards */
  677. else {
  678. if (strcmp(p, sym) == 0)
  679. return 1;
  680. }
  681. }
  682. /* no match */
  683. return 0;
  684. }
  685. /* sections that we do not want to do full section mismatch check on */
  686. static const char *section_white_list[] =
  687. {
  688. ".comment*",
  689. ".debug*",
  690. ".mdebug*", /* alpha, score, mips etc. */
  691. ".pdr", /* alpha, score, mips etc. */
  692. ".stab*",
  693. ".note*",
  694. ".got*",
  695. ".toc*",
  696. NULL
  697. };
  698. /*
  699. * This is used to find sections missing the SHF_ALLOC flag.
  700. * The cause of this is often a section specified in assembler
  701. * without "ax" / "aw".
  702. */
  703. static void check_section(const char *modname, struct elf_info *elf,
  704. Elf_Shdr *sechdr)
  705. {
  706. const char *sec = sech_name(elf, sechdr);
  707. if (sechdr->sh_type == SHT_PROGBITS &&
  708. !(sechdr->sh_flags & SHF_ALLOC) &&
  709. !match(sec, section_white_list)) {
  710. warn("%s (%s): unexpected non-allocatable section.\n"
  711. "Did you forget to use \"ax\"/\"aw\" in a .S file?\n"
  712. "Note that for example <linux/init.h> contains\n"
  713. "section definitions for use in .S files.\n\n",
  714. modname, sec);
  715. }
  716. }
  717. #define ALL_INIT_DATA_SECTIONS \
  718. ".init.setup$", ".init.rodata$", \
  719. ".devinit.rodata$", ".cpuinit.rodata$", ".meminit.rodata$" \
  720. ".init.data$", ".devinit.data$", ".cpuinit.data$", ".meminit.data$"
  721. #define ALL_EXIT_DATA_SECTIONS \
  722. ".exit.data$", ".devexit.data$", ".cpuexit.data$", ".memexit.data$"
  723. #define ALL_INIT_TEXT_SECTIONS \
  724. ".init.text$", ".devinit.text$", ".cpuinit.text$", ".meminit.text$"
  725. #define ALL_EXIT_TEXT_SECTIONS \
  726. ".exit.text$", ".devexit.text$", ".cpuexit.text$", ".memexit.text$"
  727. #define ALL_XXXINIT_SECTIONS DEV_INIT_SECTIONS, CPU_INIT_SECTIONS, \
  728. MEM_INIT_SECTIONS
  729. #define ALL_XXXEXIT_SECTIONS DEV_EXIT_SECTIONS, CPU_EXIT_SECTIONS, \
  730. MEM_EXIT_SECTIONS
  731. #define ALL_INIT_SECTIONS INIT_SECTIONS, ALL_XXXINIT_SECTIONS
  732. #define ALL_EXIT_SECTIONS EXIT_SECTIONS, ALL_XXXEXIT_SECTIONS
  733. #define DATA_SECTIONS ".data$", ".data.rel$"
  734. #define TEXT_SECTIONS ".text$"
  735. #define INIT_SECTIONS ".init.*"
  736. #define DEV_INIT_SECTIONS ".devinit.*"
  737. #define CPU_INIT_SECTIONS ".cpuinit.*"
  738. #define MEM_INIT_SECTIONS ".meminit.*"
  739. #define EXIT_SECTIONS ".exit.*"
  740. #define DEV_EXIT_SECTIONS ".devexit.*"
  741. #define CPU_EXIT_SECTIONS ".cpuexit.*"
  742. #define MEM_EXIT_SECTIONS ".memexit.*"
  743. /* init data sections */
  744. static const char *init_data_sections[] = { ALL_INIT_DATA_SECTIONS, NULL };
  745. /* all init sections */
  746. static const char *init_sections[] = { ALL_INIT_SECTIONS, NULL };
  747. /* All init and exit sections (code + data) */
  748. static const char *init_exit_sections[] =
  749. {ALL_INIT_SECTIONS, ALL_EXIT_SECTIONS, NULL };
  750. /* data section */
  751. static const char *data_sections[] = { DATA_SECTIONS, NULL };
  752. /* symbols in .data that may refer to init/exit sections */
  753. #define DEFAULT_SYMBOL_WHITE_LIST \
  754. "*driver", \
  755. "*_template", /* scsi uses *_template a lot */ \
  756. "*_timer", /* arm uses ops structures named _timer a lot */ \
  757. "*_sht", /* scsi also used *_sht to some extent */ \
  758. "*_ops", \
  759. "*_probe", \
  760. "*_probe_one", \
  761. "*_console"
  762. static const char *head_sections[] = { ".head.text*", NULL };
  763. static const char *linker_symbols[] =
  764. { "__init_begin", "_sinittext", "_einittext", NULL };
  765. enum mismatch {
  766. TEXT_TO_ANY_INIT,
  767. DATA_TO_ANY_INIT,
  768. TEXT_TO_ANY_EXIT,
  769. DATA_TO_ANY_EXIT,
  770. XXXINIT_TO_SOME_INIT,
  771. XXXEXIT_TO_SOME_EXIT,
  772. ANY_INIT_TO_ANY_EXIT,
  773. ANY_EXIT_TO_ANY_INIT,
  774. EXPORT_TO_INIT_EXIT,
  775. };
  776. struct sectioncheck {
  777. const char *fromsec[20];
  778. const char *tosec[20];
  779. enum mismatch mismatch;
  780. const char *symbol_white_list[20];
  781. };
  782. const struct sectioncheck sectioncheck[] = {
  783. /* Do not reference init/exit code/data from
  784. * normal code and data
  785. */
  786. {
  787. .fromsec = { TEXT_SECTIONS, NULL },
  788. .tosec = { ALL_INIT_SECTIONS, NULL },
  789. .mismatch = TEXT_TO_ANY_INIT,
  790. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  791. },
  792. {
  793. .fromsec = { DATA_SECTIONS, NULL },
  794. .tosec = { ALL_XXXINIT_SECTIONS, NULL },
  795. .mismatch = DATA_TO_ANY_INIT,
  796. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  797. },
  798. {
  799. .fromsec = { DATA_SECTIONS, NULL },
  800. .tosec = { INIT_SECTIONS, NULL },
  801. .mismatch = DATA_TO_ANY_INIT,
  802. .symbol_white_list = {
  803. "*_template", "*_timer", "*_sht", "*_ops",
  804. "*_probe", "*_probe_one", "*_console", NULL
  805. },
  806. },
  807. {
  808. .fromsec = { TEXT_SECTIONS, NULL },
  809. .tosec = { ALL_EXIT_SECTIONS, NULL },
  810. .mismatch = TEXT_TO_ANY_EXIT,
  811. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  812. },
  813. {
  814. .fromsec = { DATA_SECTIONS, NULL },
  815. .tosec = { ALL_EXIT_SECTIONS, NULL },
  816. .mismatch = DATA_TO_ANY_EXIT,
  817. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  818. },
  819. /* Do not reference init code/data from devinit/cpuinit/meminit code/data */
  820. {
  821. .fromsec = { ALL_XXXINIT_SECTIONS, NULL },
  822. .tosec = { INIT_SECTIONS, NULL },
  823. .mismatch = XXXINIT_TO_SOME_INIT,
  824. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  825. },
  826. /* Do not reference cpuinit code/data from meminit code/data */
  827. {
  828. .fromsec = { MEM_INIT_SECTIONS, NULL },
  829. .tosec = { CPU_INIT_SECTIONS, NULL },
  830. .mismatch = XXXINIT_TO_SOME_INIT,
  831. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  832. },
  833. /* Do not reference meminit code/data from cpuinit code/data */
  834. {
  835. .fromsec = { CPU_INIT_SECTIONS, NULL },
  836. .tosec = { MEM_INIT_SECTIONS, NULL },
  837. .mismatch = XXXINIT_TO_SOME_INIT,
  838. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  839. },
  840. /* Do not reference exit code/data from devexit/cpuexit/memexit code/data */
  841. {
  842. .fromsec = { ALL_XXXEXIT_SECTIONS, NULL },
  843. .tosec = { EXIT_SECTIONS, NULL },
  844. .mismatch = XXXEXIT_TO_SOME_EXIT,
  845. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  846. },
  847. /* Do not reference cpuexit code/data from memexit code/data */
  848. {
  849. .fromsec = { MEM_EXIT_SECTIONS, NULL },
  850. .tosec = { CPU_EXIT_SECTIONS, NULL },
  851. .mismatch = XXXEXIT_TO_SOME_EXIT,
  852. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  853. },
  854. /* Do not reference memexit code/data from cpuexit code/data */
  855. {
  856. .fromsec = { CPU_EXIT_SECTIONS, NULL },
  857. .tosec = { MEM_EXIT_SECTIONS, NULL },
  858. .mismatch = XXXEXIT_TO_SOME_EXIT,
  859. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  860. },
  861. /* Do not use exit code/data from init code */
  862. {
  863. .fromsec = { ALL_INIT_SECTIONS, NULL },
  864. .tosec = { ALL_EXIT_SECTIONS, NULL },
  865. .mismatch = ANY_INIT_TO_ANY_EXIT,
  866. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  867. },
  868. /* Do not use init code/data from exit code */
  869. {
  870. .fromsec = { ALL_EXIT_SECTIONS, NULL },
  871. .tosec = { ALL_INIT_SECTIONS, NULL },
  872. .mismatch = ANY_EXIT_TO_ANY_INIT,
  873. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  874. },
  875. /* Do not export init/exit functions or data */
  876. {
  877. .fromsec = { "__ksymtab*", NULL },
  878. .tosec = { INIT_SECTIONS, EXIT_SECTIONS, NULL },
  879. .mismatch = EXPORT_TO_INIT_EXIT,
  880. .symbol_white_list = { DEFAULT_SYMBOL_WHITE_LIST, NULL },
  881. }
  882. };
  883. static const struct sectioncheck *section_mismatch(
  884. const char *fromsec, const char *tosec)
  885. {
  886. int i;
  887. int elems = sizeof(sectioncheck) / sizeof(struct sectioncheck);
  888. const struct sectioncheck *check = &sectioncheck[0];
  889. for (i = 0; i < elems; i++) {
  890. if (match(fromsec, check->fromsec) &&
  891. match(tosec, check->tosec))
  892. return check;
  893. check++;
  894. }
  895. return NULL;
  896. }
  897. /**
  898. * Whitelist to allow certain references to pass with no warning.
  899. *
  900. * Pattern 1:
  901. * If a module parameter is declared __initdata and permissions=0
  902. * then this is legal despite the warning generated.
  903. * We cannot see value of permissions here, so just ignore
  904. * this pattern.
  905. * The pattern is identified by:
  906. * tosec = .init.data
  907. * fromsec = .data*
  908. * atsym =__param*
  909. *
  910. * Pattern 2:
  911. * Many drivers utilise a *driver container with references to
  912. * add, remove, probe functions etc.
  913. * These functions may often be marked __devinit and we do not want to
  914. * warn here.
  915. * the pattern is identified by:
  916. * tosec = init or exit section
  917. * fromsec = data section
  918. * atsym = *driver, *_template, *_sht, *_ops, *_probe,
  919. * *probe_one, *_console, *_timer
  920. *
  921. * Pattern 3:
  922. * Whitelist all references from .head.text to any init section
  923. *
  924. * Pattern 4:
  925. * Some symbols belong to init section but still it is ok to reference
  926. * these from non-init sections as these symbols don't have any memory
  927. * allocated for them and symbol address and value are same. So even
  928. * if init section is freed, its ok to reference those symbols.
  929. * For ex. symbols marking the init section boundaries.
  930. * This pattern is identified by
  931. * refsymname = __init_begin, _sinittext, _einittext
  932. *
  933. **/
  934. static int secref_whitelist(const struct sectioncheck *mismatch,
  935. const char *fromsec, const char *fromsym,
  936. const char *tosec, const char *tosym)
  937. {
  938. /* Check for pattern 1 */
  939. if (match(tosec, init_data_sections) &&
  940. match(fromsec, data_sections) &&
  941. (strncmp(fromsym, "__param", strlen("__param")) == 0))
  942. return 0;
  943. /* Check for pattern 2 */
  944. if (match(tosec, init_exit_sections) &&
  945. match(fromsec, data_sections) &&
  946. match(fromsym, mismatch->symbol_white_list))
  947. return 0;
  948. /* Check for pattern 3 */
  949. if (match(fromsec, head_sections) &&
  950. match(tosec, init_sections))
  951. return 0;
  952. /* Check for pattern 4 */
  953. if (match(tosym, linker_symbols))
  954. return 0;
  955. return 1;
  956. }
  957. /**
  958. * Find symbol based on relocation record info.
  959. * In some cases the symbol supplied is a valid symbol so
  960. * return refsym. If st_name != 0 we assume this is a valid symbol.
  961. * In other cases the symbol needs to be looked up in the symbol table
  962. * based on section and address.
  963. * **/
  964. static Elf_Sym *find_elf_symbol(struct elf_info *elf, Elf64_Sword addr,
  965. Elf_Sym *relsym)
  966. {
  967. Elf_Sym *sym;
  968. Elf_Sym *near = NULL;
  969. Elf64_Sword distance = 20;
  970. Elf64_Sword d;
  971. unsigned int relsym_secindex;
  972. if (relsym->st_name != 0)
  973. return relsym;
  974. relsym_secindex = get_secindex(elf, relsym);
  975. for (sym = elf->symtab_start; sym < elf->symtab_stop; sym++) {
  976. if (get_secindex(elf, sym) != relsym_secindex)
  977. continue;
  978. if (ELF_ST_TYPE(sym->st_info) == STT_SECTION)
  979. continue;
  980. if (sym->st_value == addr)
  981. return sym;
  982. /* Find a symbol nearby - addr are maybe negative */
  983. d = sym->st_value - addr;
  984. if (d < 0)
  985. d = addr - sym->st_value;
  986. if (d < distance) {
  987. distance = d;
  988. near = sym;
  989. }
  990. }
  991. /* We need a close match */
  992. if (distance < 20)
  993. return near;
  994. else
  995. return NULL;
  996. }
  997. static inline int is_arm_mapping_symbol(const char *str)
  998. {
  999. return str[0] == '$' && strchr("atd", str[1])
  1000. && (str[2] == '\0' || str[2] == '.');
  1001. }
  1002. /*
  1003. * If there's no name there, ignore it; likewise, ignore it if it's
  1004. * one of the magic symbols emitted used by current ARM tools.
  1005. *
  1006. * Otherwise if find_symbols_between() returns those symbols, they'll
  1007. * fail the whitelist tests and cause lots of false alarms ... fixable
  1008. * only by merging __exit and __init sections into __text, bloating
  1009. * the kernel (which is especially evil on embedded platforms).
  1010. */
  1011. static inline int is_valid_name(struct elf_info *elf, Elf_Sym *sym)
  1012. {
  1013. const char *name = elf->strtab + sym->st_name;
  1014. if (!name || !strlen(name))
  1015. return 0;
  1016. return !is_arm_mapping_symbol(name);
  1017. }
  1018. /*
  1019. * Find symbols before or equal addr and after addr - in the section sec.
  1020. * If we find two symbols with equal offset prefer one with a valid name.
  1021. * The ELF format may have a better way to detect what type of symbol
  1022. * it is, but this works for now.
  1023. **/
  1024. static Elf_Sym *find_elf_symbol2(struct elf_info *elf, Elf_Addr addr,
  1025. const char *sec)
  1026. {
  1027. Elf_Sym *sym;
  1028. Elf_Sym *near = NULL;
  1029. Elf_Addr distance = ~0;
  1030. for (sym = elf->symtab_start; sym < elf->symtab_stop; sym++) {
  1031. const char *symsec;
  1032. if (is_shndx_special(sym->st_shndx))
  1033. continue;
  1034. symsec = sec_name(elf, get_secindex(elf, sym));
  1035. if (strcmp(symsec, sec) != 0)
  1036. continue;
  1037. if (!is_valid_name(elf, sym))
  1038. continue;
  1039. if (sym->st_value <= addr) {
  1040. if ((addr - sym->st_value) < distance) {
  1041. distance = addr - sym->st_value;
  1042. near = sym;
  1043. } else if ((addr - sym->st_value) == distance) {
  1044. near = sym;
  1045. }
  1046. }
  1047. }
  1048. return near;
  1049. }
  1050. /*
  1051. * Convert a section name to the function/data attribute
  1052. * .init.text => __init
  1053. * .cpuinit.data => __cpudata
  1054. * .memexitconst => __memconst
  1055. * etc.
  1056. */
  1057. static char *sec2annotation(const char *s)
  1058. {
  1059. if (match(s, init_exit_sections)) {
  1060. char *p = malloc(20);
  1061. char *r = p;
  1062. *p++ = '_';
  1063. *p++ = '_';
  1064. if (*s == '.')
  1065. s++;
  1066. while (*s && *s != '.')
  1067. *p++ = *s++;
  1068. *p = '\0';
  1069. if (*s == '.')
  1070. s++;
  1071. if (strstr(s, "rodata") != NULL)
  1072. strcat(p, "const ");
  1073. else if (strstr(s, "data") != NULL)
  1074. strcat(p, "data ");
  1075. else
  1076. strcat(p, " ");
  1077. return r; /* we leak her but we do not care */
  1078. } else {
  1079. return "";
  1080. }
  1081. }
  1082. static int is_function(Elf_Sym *sym)
  1083. {
  1084. if (sym)
  1085. return ELF_ST_TYPE(sym->st_info) == STT_FUNC;
  1086. else
  1087. return -1;
  1088. }
  1089. /*
  1090. * Print a warning about a section mismatch.
  1091. * Try to find symbols near it so user can find it.
  1092. * Check whitelist before warning - it may be a false positive.
  1093. */
  1094. static void report_sec_mismatch(const char *modname,
  1095. const struct sectioncheck *mismatch,
  1096. const char *fromsec,
  1097. unsigned long long fromaddr,
  1098. const char *fromsym,
  1099. int from_is_func,
  1100. const char *tosec, const char *tosym,
  1101. int to_is_func)
  1102. {
  1103. const char *from, *from_p;
  1104. const char *to, *to_p;
  1105. switch (from_is_func) {
  1106. case 0: from = "variable"; from_p = ""; break;
  1107. case 1: from = "function"; from_p = "()"; break;
  1108. default: from = "(unknown reference)"; from_p = ""; break;
  1109. }
  1110. switch (to_is_func) {
  1111. case 0: to = "variable"; to_p = ""; break;
  1112. case 1: to = "function"; to_p = "()"; break;
  1113. default: to = "(unknown reference)"; to_p = ""; break;
  1114. }
  1115. sec_mismatch_count++;
  1116. if (!sec_mismatch_verbose)
  1117. return;
  1118. warn("%s(%s+0x%llx): Section mismatch in reference from the %s %s%s "
  1119. "to the %s %s:%s%s\n",
  1120. modname, fromsec, fromaddr, from, fromsym, from_p, to, tosec,
  1121. tosym, to_p);
  1122. switch (mismatch->mismatch) {
  1123. case TEXT_TO_ANY_INIT:
  1124. fprintf(stderr,
  1125. "The function %s%s() references\n"
  1126. "the %s %s%s%s.\n"
  1127. "This is often because %s lacks a %s\n"
  1128. "annotation or the annotation of %s is wrong.\n",
  1129. sec2annotation(fromsec), fromsym,
  1130. to, sec2annotation(tosec), tosym, to_p,
  1131. fromsym, sec2annotation(tosec), tosym);
  1132. break;
  1133. case DATA_TO_ANY_INIT: {
  1134. const char *const *s = mismatch->symbol_white_list;
  1135. fprintf(stderr,
  1136. "The variable %s references\n"
  1137. "the %s %s%s%s\n"
  1138. "If the reference is valid then annotate the\n"
  1139. "variable with __init* or __refdata (see linux/init.h) "
  1140. "or name the variable:\n",
  1141. fromsym, to, sec2annotation(tosec), tosym, to_p);
  1142. while (*s)
  1143. fprintf(stderr, "%s, ", *s++);
  1144. fprintf(stderr, "\n");
  1145. break;
  1146. }
  1147. case TEXT_TO_ANY_EXIT:
  1148. fprintf(stderr,
  1149. "The function %s() references a %s in an exit section.\n"
  1150. "Often the %s %s%s has valid usage outside the exit section\n"
  1151. "and the fix is to remove the %sannotation of %s.\n",
  1152. fromsym, to, to, tosym, to_p, sec2annotation(tosec), tosym);
  1153. break;
  1154. case DATA_TO_ANY_EXIT: {
  1155. const char *const *s = mismatch->symbol_white_list;
  1156. fprintf(stderr,
  1157. "The variable %s references\n"
  1158. "the %s %s%s%s\n"
  1159. "If the reference is valid then annotate the\n"
  1160. "variable with __exit* (see linux/init.h) or "
  1161. "name the variable:\n",
  1162. fromsym, to, sec2annotation(tosec), tosym, to_p);
  1163. while (*s)
  1164. fprintf(stderr, "%s, ", *s++);
  1165. fprintf(stderr, "\n");
  1166. break;
  1167. }
  1168. case XXXINIT_TO_SOME_INIT:
  1169. case XXXEXIT_TO_SOME_EXIT:
  1170. fprintf(stderr,
  1171. "The %s %s%s%s references\n"
  1172. "a %s %s%s%s.\n"
  1173. "If %s is only used by %s then\n"
  1174. "annotate %s with a matching annotation.\n",
  1175. from, sec2annotation(fromsec), fromsym, from_p,
  1176. to, sec2annotation(tosec), tosym, to_p,
  1177. tosym, fromsym, tosym);
  1178. break;
  1179. case ANY_INIT_TO_ANY_EXIT:
  1180. fprintf(stderr,
  1181. "The %s %s%s%s references\n"
  1182. "a %s %s%s%s.\n"
  1183. "This is often seen when error handling "
  1184. "in the init function\n"
  1185. "uses functionality in the exit path.\n"
  1186. "The fix is often to remove the %sannotation of\n"
  1187. "%s%s so it may be used outside an exit section.\n",
  1188. from, sec2annotation(fromsec), fromsym, from_p,
  1189. to, sec2annotation(tosec), tosym, to_p,
  1190. sec2annotation(tosec), tosym, to_p);
  1191. break;
  1192. case ANY_EXIT_TO_ANY_INIT:
  1193. fprintf(stderr,
  1194. "The %s %s%s%s references\n"
  1195. "a %s %s%s%s.\n"
  1196. "This is often seen when error handling "
  1197. "in the exit function\n"
  1198. "uses functionality in the init path.\n"
  1199. "The fix is often to remove the %sannotation of\n"
  1200. "%s%s so it may be used outside an init section.\n",
  1201. from, sec2annotation(fromsec), fromsym, from_p,
  1202. to, sec2annotation(tosec), tosym, to_p,
  1203. sec2annotation(tosec), tosym, to_p);
  1204. break;
  1205. case EXPORT_TO_INIT_EXIT:
  1206. fprintf(stderr,
  1207. "The symbol %s is exported and annotated %s\n"
  1208. "Fix this by removing the %sannotation of %s "
  1209. "or drop the export.\n",
  1210. tosym, sec2annotation(tosec), sec2annotation(tosec), tosym);
  1211. break;
  1212. }
  1213. fprintf(stderr, "\n");
  1214. }
  1215. static void check_section_mismatch(const char *modname, struct elf_info *elf,
  1216. Elf_Rela *r, Elf_Sym *sym, const char *fromsec)
  1217. {
  1218. const char *tosec;
  1219. const struct sectioncheck *mismatch;
  1220. tosec = sec_name(elf, get_secindex(elf, sym));
  1221. mismatch = section_mismatch(fromsec, tosec);
  1222. if (mismatch) {
  1223. Elf_Sym *to;
  1224. Elf_Sym *from;
  1225. const char *tosym;
  1226. const char *fromsym;
  1227. from = find_elf_symbol2(elf, r->r_offset, fromsec);
  1228. fromsym = sym_name(elf, from);
  1229. to = find_elf_symbol(elf, r->r_addend, sym);
  1230. tosym = sym_name(elf, to);
  1231. /* check whitelist - we may ignore it */
  1232. if (secref_whitelist(mismatch,
  1233. fromsec, fromsym, tosec, tosym)) {
  1234. report_sec_mismatch(modname, mismatch,
  1235. fromsec, r->r_offset, fromsym,
  1236. is_function(from), tosec, tosym,
  1237. is_function(to));
  1238. }
  1239. }
  1240. }
  1241. static unsigned int *reloc_location(struct elf_info *elf,
  1242. Elf_Shdr *sechdr, Elf_Rela *r)
  1243. {
  1244. Elf_Shdr *sechdrs = elf->sechdrs;
  1245. int section = shndx2secindex(sechdr->sh_info);
  1246. return (void *)elf->hdr + sechdrs[section].sh_offset +
  1247. (r->r_offset - sechdrs[section].sh_addr);
  1248. }
  1249. static int addend_386_rel(struct elf_info *elf, Elf_Shdr *sechdr, Elf_Rela *r)
  1250. {
  1251. unsigned int r_typ = ELF_R_TYPE(r->r_info);
  1252. unsigned int *location = reloc_location(elf, sechdr, r);
  1253. switch (r_typ) {
  1254. case R_386_32:
  1255. r->r_addend = TO_NATIVE(*location);
  1256. break;
  1257. case R_386_PC32:
  1258. r->r_addend = TO_NATIVE(*location) + 4;
  1259. /* For CONFIG_RELOCATABLE=y */
  1260. if (elf->hdr->e_type == ET_EXEC)
  1261. r->r_addend += r->r_offset;
  1262. break;
  1263. }
  1264. return 0;
  1265. }
  1266. static int addend_arm_rel(struct elf_info *elf, Elf_Shdr *sechdr, Elf_Rela *r)
  1267. {
  1268. unsigned int r_typ = ELF_R_TYPE(r->r_info);
  1269. switch (r_typ) {
  1270. case R_ARM_ABS32:
  1271. /* From ARM ABI: (S + A) | T */
  1272. r->r_addend = (int)(long)
  1273. (elf->symtab_start + ELF_R_SYM(r->r_info));
  1274. break;
  1275. case R_ARM_PC24:
  1276. /* From ARM ABI: ((S + A) | T) - P */
  1277. r->r_addend = (int)(long)(elf->hdr +
  1278. sechdr->sh_offset +
  1279. (r->r_offset - sechdr->sh_addr));
  1280. break;
  1281. default:
  1282. return 1;
  1283. }
  1284. return 0;
  1285. }
  1286. static int addend_mips_rel(struct elf_info *elf, Elf_Shdr *sechdr, Elf_Rela *r)
  1287. {
  1288. unsigned int r_typ = ELF_R_TYPE(r->r_info);
  1289. unsigned int *location = reloc_location(elf, sechdr, r);
  1290. unsigned int inst;
  1291. if (r_typ == R_MIPS_HI16)
  1292. return 1; /* skip this */
  1293. inst = TO_NATIVE(*location);
  1294. switch (r_typ) {
  1295. case R_MIPS_LO16:
  1296. r->r_addend = inst & 0xffff;
  1297. break;
  1298. case R_MIPS_26:
  1299. r->r_addend = (inst & 0x03ffffff) << 2;
  1300. break;
  1301. case R_MIPS_32:
  1302. r->r_addend = inst;
  1303. break;
  1304. }
  1305. return 0;
  1306. }
  1307. static void section_rela(const char *modname, struct elf_info *elf,
  1308. Elf_Shdr *sechdr)
  1309. {
  1310. Elf_Sym *sym;
  1311. Elf_Rela *rela;
  1312. Elf_Rela r;
  1313. unsigned int r_sym;
  1314. const char *fromsec;
  1315. Elf_Rela *start = (void *)elf->hdr + sechdr->sh_offset;
  1316. Elf_Rela *stop = (void *)start + sechdr->sh_size;
  1317. fromsec = sech_name(elf, sechdr);
  1318. fromsec += strlen(".rela");
  1319. /* if from section (name) is know good then skip it */
  1320. if (match(fromsec, section_white_list))
  1321. return;
  1322. for (rela = start; rela < stop; rela++) {
  1323. r.r_offset = TO_NATIVE(rela->r_offset);
  1324. #if KERNEL_ELFCLASS == ELFCLASS64
  1325. if (elf->hdr->e_machine == EM_MIPS) {
  1326. unsigned int r_typ;
  1327. r_sym = ELF64_MIPS_R_SYM(rela->r_info);
  1328. r_sym = TO_NATIVE(r_sym);
  1329. r_typ = ELF64_MIPS_R_TYPE(rela->r_info);
  1330. r.r_info = ELF64_R_INFO(r_sym, r_typ);
  1331. } else {
  1332. r.r_info = TO_NATIVE(rela->r_info);
  1333. r_sym = ELF_R_SYM(r.r_info);
  1334. }
  1335. #else
  1336. r.r_info = TO_NATIVE(rela->r_info);
  1337. r_sym = ELF_R_SYM(r.r_info);
  1338. #endif
  1339. r.r_addend = TO_NATIVE(rela->r_addend);
  1340. sym = elf->symtab_start + r_sym;
  1341. /* Skip special sections */
  1342. if (is_shndx_special(sym->st_shndx))
  1343. continue;
  1344. check_section_mismatch(modname, elf, &r, sym, fromsec);
  1345. }
  1346. }
  1347. static void section_rel(const char *modname, struct elf_info *elf,
  1348. Elf_Shdr *sechdr)
  1349. {
  1350. Elf_Sym *sym;
  1351. Elf_Rel *rel;
  1352. Elf_Rela r;
  1353. unsigned int r_sym;
  1354. const char *fromsec;
  1355. Elf_Rel *start = (void *)elf->hdr + sechdr->sh_offset;
  1356. Elf_Rel *stop = (void *)start + sechdr->sh_size;
  1357. fromsec = sech_name(elf, sechdr);
  1358. fromsec += strlen(".rel");
  1359. /* if from section (name) is know good then skip it */
  1360. if (match(fromsec, section_white_list))
  1361. return;
  1362. for (rel = start; rel < stop; rel++) {
  1363. r.r_offset = TO_NATIVE(rel->r_offset);
  1364. #if KERNEL_ELFCLASS == ELFCLASS64
  1365. if (elf->hdr->e_machine == EM_MIPS) {
  1366. unsigned int r_typ;
  1367. r_sym = ELF64_MIPS_R_SYM(rel->r_info);
  1368. r_sym = TO_NATIVE(r_sym);
  1369. r_typ = ELF64_MIPS_R_TYPE(rel->r_info);
  1370. r.r_info = ELF64_R_INFO(r_sym, r_typ);
  1371. } else {
  1372. r.r_info = TO_NATIVE(rel->r_info);
  1373. r_sym = ELF_R_SYM(r.r_info);
  1374. }
  1375. #else
  1376. r.r_info = TO_NATIVE(rel->r_info);
  1377. r_sym = ELF_R_SYM(r.r_info);
  1378. #endif
  1379. r.r_addend = 0;
  1380. switch (elf->hdr->e_machine) {
  1381. case EM_386:
  1382. if (addend_386_rel(elf, sechdr, &r))
  1383. continue;
  1384. break;
  1385. case EM_ARM:
  1386. if (addend_arm_rel(elf, sechdr, &r))
  1387. continue;
  1388. break;
  1389. case EM_MIPS:
  1390. if (addend_mips_rel(elf, sechdr, &r))
  1391. continue;
  1392. break;
  1393. }
  1394. sym = elf->symtab_start + r_sym;
  1395. /* Skip special sections */
  1396. if (is_shndx_special(sym->st_shndx))
  1397. continue;
  1398. check_section_mismatch(modname, elf, &r, sym, fromsec);
  1399. }
  1400. }
  1401. /**
  1402. * A module includes a number of sections that are discarded
  1403. * either when loaded or when used as built-in.
  1404. * For loaded modules all functions marked __init and all data
  1405. * marked __initdata will be discarded when the module has been intialized.
  1406. * Likewise for modules used built-in the sections marked __exit
  1407. * are discarded because __exit marked function are supposed to be called
  1408. * only when a module is unloaded which never happens for built-in modules.
  1409. * The check_sec_ref() function traverses all relocation records
  1410. * to find all references to a section that reference a section that will
  1411. * be discarded and warns about it.
  1412. **/
  1413. static void check_sec_ref(struct module *mod, const char *modname,
  1414. struct elf_info *elf)
  1415. {
  1416. int i;
  1417. Elf_Shdr *sechdrs = elf->sechdrs;
  1418. /* Walk through all sections */
  1419. for (i = 0; i < elf->num_sections; i++) {
  1420. check_section(modname, elf, &elf->sechdrs[i]);
  1421. /* We want to process only relocation sections and not .init */
  1422. if (sechdrs[i].sh_type == SHT_RELA)
  1423. section_rela(modname, elf, &elf->sechdrs[i]);
  1424. else if (sechdrs[i].sh_type == SHT_REL)
  1425. section_rel(modname, elf, &elf->sechdrs[i]);
  1426. }
  1427. }
  1428. static void read_symbols(char *modname)
  1429. {
  1430. const char *symname;
  1431. char *version;
  1432. char *license;
  1433. struct module *mod;
  1434. struct elf_info info = { };
  1435. Elf_Sym *sym;
  1436. if (!parse_elf(&info, modname))
  1437. return;
  1438. mod = new_module(modname);
  1439. /* When there's no vmlinux, don't print warnings about
  1440. * unresolved symbols (since there'll be too many ;) */
  1441. if (is_vmlinux(modname)) {
  1442. have_vmlinux = 1;
  1443. mod->skip = 1;
  1444. }
  1445. license = get_modinfo(info.modinfo, info.modinfo_len, "license");
  1446. if (info.modinfo && !license && !is_vmlinux(modname))
  1447. warn("modpost: missing MODULE_LICENSE() in %s\n"
  1448. "see include/linux/module.h for "
  1449. "more information\n", modname);
  1450. while (license) {
  1451. if (license_is_gpl_compatible(license))
  1452. mod->gpl_compatible = 1;
  1453. else {
  1454. mod->gpl_compatible = 0;
  1455. break;
  1456. }
  1457. license = get_next_modinfo(info.modinfo, info.modinfo_len,
  1458. "license", license);
  1459. }
  1460. for (sym = info.symtab_start; sym < info.symtab_stop; sym++) {
  1461. symname = info.strtab + sym->st_name;
  1462. handle_modversions(mod, &info, sym, symname);
  1463. handle_moddevtable(mod, &info, sym, symname);
  1464. }
  1465. if (!is_vmlinux(modname) ||
  1466. (is_vmlinux(modname) && vmlinux_section_warnings))
  1467. check_sec_ref(mod, modname, &info);
  1468. version = get_modinfo(info.modinfo, info.modinfo_len, "version");
  1469. if (version)
  1470. maybe_frob_rcs_version(modname, version, info.modinfo,
  1471. version - (char *)info.hdr);
  1472. if (version || (all_versions && !is_vmlinux(modname)))
  1473. get_src_version(modname, mod->srcversion,
  1474. sizeof(mod->srcversion)-1);
  1475. parse_elf_finish(&info);
  1476. /* Our trick to get versioning for module struct etc. - it's
  1477. * never passed as an argument to an exported function, so
  1478. * the automatic versioning doesn't pick it up, but it's really
  1479. * important anyhow */
  1480. if (modversions)
  1481. mod->unres = alloc_symbol("module_layout", 0, mod->unres);
  1482. }
  1483. #define SZ 500
  1484. /* We first write the generated file into memory using the
  1485. * following helper, then compare to the file on disk and
  1486. * only update the later if anything changed */
  1487. void __attribute__((format(printf, 2, 3))) buf_printf(struct buffer *buf,
  1488. const char *fmt, ...)
  1489. {
  1490. char tmp[SZ];
  1491. int len;
  1492. va_list ap;
  1493. va_start(ap, fmt);
  1494. len = vsnprintf(tmp, SZ, fmt, ap);
  1495. buf_write(buf, tmp, len);
  1496. va_end(ap);
  1497. }
  1498. void buf_write(struct buffer *buf, const char *s, int len)
  1499. {
  1500. if (buf->size - buf->pos < len) {
  1501. buf->size += len + SZ;
  1502. buf->p = realloc(buf->p, buf->size);
  1503. }
  1504. strncpy(buf->p + buf->pos, s, len);
  1505. buf->pos += len;
  1506. }
  1507. static void check_for_gpl_usage(enum export exp, const char *m, const char *s)
  1508. {
  1509. const char *e = is_vmlinux(m) ?"":".ko";
  1510. switch (exp) {
  1511. case export_gpl:
  1512. fatal("modpost: GPL-incompatible module %s%s "
  1513. "uses GPL-only symbol '%s'\n", m, e, s);
  1514. break;
  1515. case export_unused_gpl:
  1516. fatal("modpost: GPL-incompatible module %s%s "
  1517. "uses GPL-only symbol marked UNUSED '%s'\n", m, e, s);
  1518. break;
  1519. case export_gpl_future:
  1520. warn("modpost: GPL-incompatible module %s%s "
  1521. "uses future GPL-only symbol '%s'\n", m, e, s);
  1522. break;
  1523. case export_plain:
  1524. case export_unused:
  1525. case export_unknown:
  1526. /* ignore */
  1527. break;
  1528. }
  1529. }
  1530. static void check_for_unused(enum export exp, const char *m, const char *s)
  1531. {
  1532. const char *e = is_vmlinux(m) ?"":".ko";
  1533. switch (exp) {
  1534. case export_unused:
  1535. case export_unused_gpl:
  1536. warn("modpost: module %s%s "
  1537. "uses symbol '%s' marked UNUSED\n", m, e, s);
  1538. break;
  1539. default:
  1540. /* ignore */
  1541. break;
  1542. }
  1543. }
  1544. static void check_exports(struct module *mod)
  1545. {
  1546. struct symbol *s, *exp;
  1547. for (s = mod->unres; s; s = s->next) {
  1548. const char *basename;
  1549. exp = find_symbol(s->name);
  1550. if (!exp || exp->module == mod)
  1551. continue;
  1552. basename = strrchr(mod->name, '/');
  1553. if (basename)
  1554. basename++;
  1555. else
  1556. basename = mod->name;
  1557. if (!mod->gpl_compatible)
  1558. check_for_gpl_usage(exp->export, basename, exp->name);
  1559. check_for_unused(exp->export, basename, exp->name);
  1560. }
  1561. }
  1562. /**
  1563. * Header for the generated file
  1564. **/
  1565. static void add_header(struct buffer *b, struct module *mod)
  1566. {
  1567. buf_printf(b, "#include <linux/module.h>\n");
  1568. buf_printf(b, "#include <linux/vermagic.h>\n");
  1569. buf_printf(b, "#include <linux/compiler.h>\n");
  1570. buf_printf(b, "\n");
  1571. buf_printf(b, "MODULE_INFO(vermagic, VERMAGIC_STRING);\n");
  1572. buf_printf(b, "\n");
  1573. buf_printf(b, "struct module __this_module\n");
  1574. buf_printf(b, "__attribute__((section(\".gnu.linkonce.this_module\"))) = {\n");
  1575. buf_printf(b, " .name = KBUILD_MODNAME,\n");
  1576. if (mod->has_init)
  1577. buf_printf(b, " .init = init_module,\n");
  1578. if (mod->has_cleanup)
  1579. buf_printf(b, "#ifdef CONFIG_MODULE_UNLOAD\n"
  1580. " .exit = cleanup_module,\n"
  1581. "#endif\n");
  1582. buf_printf(b, " .arch = MODULE_ARCH_INIT,\n");
  1583. buf_printf(b, "};\n");
  1584. }
  1585. static void add_staging_flag(struct buffer *b, const char *name)
  1586. {
  1587. static const char *staging_dir = "drivers/staging";
  1588. if (strncmp(staging_dir, name, strlen(staging_dir)) == 0)
  1589. buf_printf(b, "\nMODULE_INFO(staging, \"Y\");\n");
  1590. }
  1591. /**
  1592. * Record CRCs for unresolved symbols
  1593. **/
  1594. static int add_versions(struct buffer *b, struct module *mod)
  1595. {
  1596. struct symbol *s, *exp;
  1597. int err = 0;
  1598. for (s = mod->unres; s; s = s->next) {
  1599. exp = find_symbol(s->name);
  1600. if (!exp || exp->module == mod) {
  1601. if (have_vmlinux && !s->weak) {
  1602. if (warn_unresolved) {
  1603. warn("\"%s\" [%s.ko] undefined!\n",
  1604. s->name, mod->name);
  1605. } else {
  1606. merror("\"%s\" [%s.ko] undefined!\n",
  1607. s->name, mod->name);
  1608. err = 1;
  1609. }
  1610. }
  1611. continue;
  1612. }
  1613. s->module = exp->module;
  1614. s->crc_valid = exp->crc_valid;
  1615. s->crc = exp->crc;
  1616. }
  1617. if (!modversions)
  1618. return err;
  1619. buf_printf(b, "\n");
  1620. buf_printf(b, "static const struct modversion_info ____versions[]\n");
  1621. buf_printf(b, "__used\n");
  1622. buf_printf(b, "__attribute__((section(\"__versions\"))) = {\n");
  1623. for (s = mod->unres; s; s = s->next) {
  1624. if (!s->module)
  1625. continue;
  1626. if (!s->crc_valid) {
  1627. warn("\"%s\" [%s.ko] has no CRC!\n",
  1628. s->name, mod->name);
  1629. continue;
  1630. }
  1631. buf_printf(b, "\t{ %#8x, \"%s\" },\n", s->crc, s->name);
  1632. }
  1633. buf_printf(b, "};\n");
  1634. return err;
  1635. }
  1636. static void add_depends(struct buffer *b, struct module *mod,
  1637. struct module *modules)
  1638. {
  1639. struct symbol *s;
  1640. struct module *m;
  1641. int first = 1;
  1642. for (m = modules; m; m = m->next)
  1643. m->seen = is_vmlinux(m->name);
  1644. buf_printf(b, "\n");
  1645. buf_printf(b, "static const char __module_depends[]\n");
  1646. buf_printf(b, "__used\n");
  1647. buf_printf(b, "__attribute__((section(\".modinfo\"))) =\n");
  1648. buf_printf(b, "\"depends=");
  1649. for (s = mod->unres; s; s = s->next) {
  1650. const char *p;
  1651. if (!s->module)
  1652. continue;
  1653. if (s->module->seen)
  1654. continue;
  1655. s->module->seen = 1;
  1656. p = strrchr(s->module->name, '/');
  1657. if (p)
  1658. p++;
  1659. else
  1660. p = s->module->name;
  1661. buf_printf(b, "%s%s", first ? "" : ",", p);
  1662. first = 0;
  1663. }
  1664. buf_printf(b, "\";\n");
  1665. }
  1666. static void add_srcversion(struct buffer *b, struct module *mod)
  1667. {
  1668. if (mod->srcversion[0]) {
  1669. buf_printf(b, "\n");
  1670. buf_printf(b, "MODULE_INFO(srcversion, \"%s\");\n",
  1671. mod->srcversion);
  1672. }
  1673. }
  1674. static void write_if_changed(struct buffer *b, const char *fname)
  1675. {
  1676. char *tmp;
  1677. FILE *file;
  1678. struct stat st;
  1679. file = fopen(fname, "r");
  1680. if (!file)
  1681. goto write;
  1682. if (fstat(fileno(file), &st) < 0)
  1683. goto close_write;
  1684. if (st.st_size != b->pos)
  1685. goto close_write;
  1686. tmp = NOFAIL(malloc(b->pos));
  1687. if (fread(tmp, 1, b->pos, file) != b->pos)
  1688. goto free_write;
  1689. if (memcmp(tmp, b->p, b->pos) != 0)
  1690. goto free_write;
  1691. free(tmp);
  1692. fclose(file);
  1693. return;
  1694. free_write:
  1695. free(tmp);
  1696. close_write:
  1697. fclose(file);
  1698. write:
  1699. file = fopen(fname, "w");
  1700. if (!file) {
  1701. perror(fname);
  1702. exit(1);
  1703. }
  1704. if (fwrite(b->p, 1, b->pos, file) != b->pos) {
  1705. perror(fname);
  1706. exit(1);
  1707. }
  1708. fclose(file);
  1709. }
  1710. /* parse Module.symvers file. line format:
  1711. * 0x12345678<tab>symbol<tab>module[[<tab>export]<tab>something]
  1712. **/
  1713. static void read_dump(const char *fname, unsigned int kernel)
  1714. {
  1715. unsigned long size, pos = 0;
  1716. void *file = grab_file(fname, &size);
  1717. char *line;
  1718. if (!file)
  1719. /* No symbol versions, silently ignore */
  1720. return;
  1721. while ((line = get_next_line(&pos, file, size))) {
  1722. char *symname, *modname, *d, *export, *end;
  1723. unsigned int crc;
  1724. struct module *mod;
  1725. struct symbol *s;
  1726. if (!(symname = strchr(line, '\t')))
  1727. goto fail;
  1728. *symname++ = '\0';
  1729. if (!(modname = strchr(symname, '\t')))
  1730. goto fail;
  1731. *modname++ = '\0';
  1732. if ((export = strchr(modname, '\t')) != NULL)
  1733. *export++ = '\0';
  1734. if (export && ((end = strchr(export, '\t')) != NULL))
  1735. *end = '\0';
  1736. crc = strtoul(line, &d, 16);
  1737. if (*symname == '\0' || *modname == '\0' || *d != '\0')
  1738. goto fail;
  1739. mod = find_module(modname);
  1740. if (!mod) {
  1741. if (is_vmlinux(modname))
  1742. have_vmlinux = 1;
  1743. mod = new_module(modname);
  1744. mod->skip = 1;
  1745. }
  1746. s = sym_add_exported(symname, mod, export_no(export));
  1747. s->kernel = kernel;
  1748. s->preloaded = 1;
  1749. sym_update_crc(symname, mod, crc, export_no(export));
  1750. }
  1751. return;
  1752. fail:
  1753. fatal("parse error in symbol dump file\n");
  1754. }
  1755. /* For normal builds always dump all symbols.
  1756. * For external modules only dump symbols
  1757. * that are not read from kernel Module.symvers.
  1758. **/
  1759. static int dump_sym(struct symbol *sym)
  1760. {
  1761. if (!external_module)
  1762. return 1;
  1763. if (sym->vmlinux || sym->kernel)
  1764. return 0;
  1765. return 1;
  1766. }
  1767. static void write_dump(const char *fname)
  1768. {
  1769. struct buffer buf = { };
  1770. struct symbol *symbol;
  1771. int n;
  1772. for (n = 0; n < SYMBOL_HASH_SIZE ; n++) {
  1773. symbol = symbolhash[n];
  1774. while (symbol) {
  1775. if (dump_sym(symbol))
  1776. buf_printf(&buf, "0x%08x\t%s\t%s\t%s\n",
  1777. symbol->crc, symbol->name,
  1778. symbol->module->name,
  1779. export_str(symbol->export));
  1780. symbol = symbol->next;
  1781. }
  1782. }
  1783. write_if_changed(&buf, fname);
  1784. }
  1785. struct ext_sym_list {
  1786. struct ext_sym_list *next;
  1787. const char *file;
  1788. };
  1789. int main(int argc, char **argv)
  1790. {
  1791. struct module *mod;
  1792. struct buffer buf = { };
  1793. char *kernel_read = NULL, *module_read = NULL;
  1794. char *dump_write = NULL;
  1795. int opt;
  1796. int err;
  1797. struct ext_sym_list *extsym_iter;
  1798. struct ext_sym_list *extsym_start = NULL;
  1799. while ((opt = getopt(argc, argv, "i:I:e:cmsSo:awM:K:")) != -1) {
  1800. switch (opt) {
  1801. case 'i':
  1802. kernel_read = optarg;
  1803. break;
  1804. case 'I':
  1805. module_read = optarg;
  1806. external_module = 1;
  1807. break;
  1808. case 'c':
  1809. cross_build = 1;
  1810. break;
  1811. case 'e':
  1812. external_module = 1;
  1813. extsym_iter =
  1814. NOFAIL(malloc(sizeof(*extsym_iter)));
  1815. extsym_iter->next = extsym_start;
  1816. extsym_iter->file = optarg;
  1817. extsym_start = extsym_iter;
  1818. break;
  1819. case 'm':
  1820. modversions = 1;
  1821. break;
  1822. case 'o':
  1823. dump_write = optarg;
  1824. break;
  1825. case 'a':
  1826. all_versions = 1;
  1827. break;
  1828. case 's':
  1829. vmlinux_section_warnings = 0;
  1830. break;
  1831. case 'S':
  1832. sec_mismatch_verbose = 0;
  1833. break;
  1834. case 'w':
  1835. warn_unresolved = 1;
  1836. break;
  1837. default:
  1838. exit(1);
  1839. }
  1840. }
  1841. if (kernel_read)
  1842. read_dump(kernel_read, 1);
  1843. if (module_read)
  1844. read_dump(module_read, 0);
  1845. while (extsym_start) {
  1846. read_dump(extsym_start->file, 0);
  1847. extsym_iter = extsym_start->next;
  1848. free(extsym_start);
  1849. extsym_start = extsym_iter;
  1850. }
  1851. while (optind < argc)
  1852. read_symbols(argv[optind++]);
  1853. for (mod = modules; mod; mod = mod->next) {
  1854. if (mod->skip)
  1855. continue;
  1856. check_exports(mod);
  1857. }
  1858. err = 0;
  1859. for (mod = modules; mod; mod = mod->next) {
  1860. char fname[strlen(mod->name) + 10];
  1861. if (mod->skip)
  1862. continue;
  1863. buf.pos = 0;
  1864. add_header(&buf, mod);
  1865. add_staging_flag(&buf, mod->name);
  1866. err |= add_versions(&buf, mod);
  1867. add_depends(&buf, mod, modules);
  1868. add_moddevtable(&buf, mod);
  1869. add_srcversion(&buf, mod);
  1870. sprintf(fname, "%s.mod.c", mod->name);
  1871. write_if_changed(&buf, fname);
  1872. }
  1873. if (dump_write)
  1874. write_dump(dump_write);
  1875. if (sec_mismatch_count && !sec_mismatch_verbose)
  1876. warn("modpost: Found %d section mismatch(es).\n"
  1877. "To see full details build your kernel with:\n"
  1878. "'make CONFIG_DEBUG_SECTION_MISMATCH=y'\n",
  1879. sec_mismatch_count);
  1880. return err;
  1881. }