symbol.c 21 KB

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  1. #include "util.h"
  2. #include "../perf.h"
  3. #include "string.h"
  4. #include "symbol.h"
  5. #include "debug.h"
  6. #include <libelf.h>
  7. #include <gelf.h>
  8. #include <elf.h>
  9. const char *sym_hist_filter;
  10. enum dso_origin {
  11. DSO__ORIG_KERNEL = 0,
  12. DSO__ORIG_JAVA_JIT,
  13. DSO__ORIG_FEDORA,
  14. DSO__ORIG_UBUNTU,
  15. DSO__ORIG_BUILDID,
  16. DSO__ORIG_DSO,
  17. DSO__ORIG_NOT_FOUND,
  18. };
  19. static struct symbol *symbol__new(u64 start, u64 len,
  20. const char *name, unsigned int priv_size,
  21. u64 obj_start, int v)
  22. {
  23. size_t namelen = strlen(name) + 1;
  24. struct symbol *self = calloc(1, priv_size + sizeof(*self) + namelen);
  25. if (!self)
  26. return NULL;
  27. if (v >= 2)
  28. printf("new symbol: %016Lx [%08lx]: %s, hist: %p, obj_start: %p\n",
  29. (u64)start, (unsigned long)len, name, self->hist, (void *)(unsigned long)obj_start);
  30. self->obj_start= obj_start;
  31. self->hist = NULL;
  32. self->hist_sum = 0;
  33. if (sym_hist_filter && !strcmp(name, sym_hist_filter))
  34. self->hist = calloc(sizeof(u64), len);
  35. if (priv_size) {
  36. memset(self, 0, priv_size);
  37. self = ((void *)self) + priv_size;
  38. }
  39. self->start = start;
  40. self->end = len ? start + len - 1 : start;
  41. memcpy(self->name, name, namelen);
  42. return self;
  43. }
  44. static void symbol__delete(struct symbol *self, unsigned int priv_size)
  45. {
  46. free(((void *)self) - priv_size);
  47. }
  48. static size_t symbol__fprintf(struct symbol *self, FILE *fp)
  49. {
  50. if (!self->module)
  51. return fprintf(fp, " %llx-%llx %s\n",
  52. self->start, self->end, self->name);
  53. else
  54. return fprintf(fp, " %llx-%llx %s \t[%s]\n",
  55. self->start, self->end, self->name, self->module->name);
  56. }
  57. struct dso *dso__new(const char *name, unsigned int sym_priv_size)
  58. {
  59. struct dso *self = malloc(sizeof(*self) + strlen(name) + 1);
  60. if (self != NULL) {
  61. strcpy(self->name, name);
  62. self->syms = RB_ROOT;
  63. self->sym_priv_size = sym_priv_size;
  64. self->find_symbol = dso__find_symbol;
  65. self->slen_calculated = 0;
  66. self->origin = DSO__ORIG_NOT_FOUND;
  67. }
  68. return self;
  69. }
  70. static void dso__delete_symbols(struct dso *self)
  71. {
  72. struct symbol *pos;
  73. struct rb_node *next = rb_first(&self->syms);
  74. while (next) {
  75. pos = rb_entry(next, struct symbol, rb_node);
  76. next = rb_next(&pos->rb_node);
  77. rb_erase(&pos->rb_node, &self->syms);
  78. symbol__delete(pos, self->sym_priv_size);
  79. }
  80. }
  81. void dso__delete(struct dso *self)
  82. {
  83. dso__delete_symbols(self);
  84. free(self);
  85. }
  86. static void dso__insert_symbol(struct dso *self, struct symbol *sym)
  87. {
  88. struct rb_node **p = &self->syms.rb_node;
  89. struct rb_node *parent = NULL;
  90. const u64 ip = sym->start;
  91. struct symbol *s;
  92. while (*p != NULL) {
  93. parent = *p;
  94. s = rb_entry(parent, struct symbol, rb_node);
  95. if (ip < s->start)
  96. p = &(*p)->rb_left;
  97. else
  98. p = &(*p)->rb_right;
  99. }
  100. rb_link_node(&sym->rb_node, parent, p);
  101. rb_insert_color(&sym->rb_node, &self->syms);
  102. }
  103. struct symbol *dso__find_symbol(struct dso *self, u64 ip)
  104. {
  105. struct rb_node *n;
  106. if (self == NULL)
  107. return NULL;
  108. n = self->syms.rb_node;
  109. while (n) {
  110. struct symbol *s = rb_entry(n, struct symbol, rb_node);
  111. if (ip < s->start)
  112. n = n->rb_left;
  113. else if (ip > s->end)
  114. n = n->rb_right;
  115. else
  116. return s;
  117. }
  118. return NULL;
  119. }
  120. size_t dso__fprintf(struct dso *self, FILE *fp)
  121. {
  122. size_t ret = fprintf(fp, "dso: %s\n", self->name);
  123. struct rb_node *nd;
  124. for (nd = rb_first(&self->syms); nd; nd = rb_next(nd)) {
  125. struct symbol *pos = rb_entry(nd, struct symbol, rb_node);
  126. ret += symbol__fprintf(pos, fp);
  127. }
  128. return ret;
  129. }
  130. static int dso__load_kallsyms(struct dso *self, symbol_filter_t filter, int v)
  131. {
  132. struct rb_node *nd, *prevnd;
  133. char *line = NULL;
  134. size_t n;
  135. FILE *file = fopen("/proc/kallsyms", "r");
  136. int count = 0;
  137. if (file == NULL)
  138. goto out_failure;
  139. while (!feof(file)) {
  140. u64 start;
  141. struct symbol *sym;
  142. int line_len, len;
  143. char symbol_type;
  144. line_len = getline(&line, &n, file);
  145. if (line_len < 0)
  146. break;
  147. if (!line)
  148. goto out_failure;
  149. line[--line_len] = '\0'; /* \n */
  150. len = hex2u64(line, &start);
  151. len++;
  152. if (len + 2 >= line_len)
  153. continue;
  154. symbol_type = toupper(line[len]);
  155. /*
  156. * We're interested only in code ('T'ext)
  157. */
  158. if (symbol_type != 'T' && symbol_type != 'W')
  159. continue;
  160. /*
  161. * Well fix up the end later, when we have all sorted.
  162. */
  163. sym = symbol__new(start, 0xdead, line + len + 2,
  164. self->sym_priv_size, 0, v);
  165. if (sym == NULL)
  166. goto out_delete_line;
  167. if (filter && filter(self, sym))
  168. symbol__delete(sym, self->sym_priv_size);
  169. else {
  170. dso__insert_symbol(self, sym);
  171. count++;
  172. }
  173. }
  174. /*
  175. * Now that we have all sorted out, just set the ->end of all
  176. * symbols
  177. */
  178. prevnd = rb_first(&self->syms);
  179. if (prevnd == NULL)
  180. goto out_delete_line;
  181. for (nd = rb_next(prevnd); nd; nd = rb_next(nd)) {
  182. struct symbol *prev = rb_entry(prevnd, struct symbol, rb_node),
  183. *curr = rb_entry(nd, struct symbol, rb_node);
  184. prev->end = curr->start - 1;
  185. prevnd = nd;
  186. }
  187. free(line);
  188. fclose(file);
  189. return count;
  190. out_delete_line:
  191. free(line);
  192. out_failure:
  193. return -1;
  194. }
  195. static int dso__load_perf_map(struct dso *self, symbol_filter_t filter, int v)
  196. {
  197. char *line = NULL;
  198. size_t n;
  199. FILE *file;
  200. int nr_syms = 0;
  201. file = fopen(self->name, "r");
  202. if (file == NULL)
  203. goto out_failure;
  204. while (!feof(file)) {
  205. u64 start, size;
  206. struct symbol *sym;
  207. int line_len, len;
  208. line_len = getline(&line, &n, file);
  209. if (line_len < 0)
  210. break;
  211. if (!line)
  212. goto out_failure;
  213. line[--line_len] = '\0'; /* \n */
  214. len = hex2u64(line, &start);
  215. len++;
  216. if (len + 2 >= line_len)
  217. continue;
  218. len += hex2u64(line + len, &size);
  219. len++;
  220. if (len + 2 >= line_len)
  221. continue;
  222. sym = symbol__new(start, size, line + len,
  223. self->sym_priv_size, start, v);
  224. if (sym == NULL)
  225. goto out_delete_line;
  226. if (filter && filter(self, sym))
  227. symbol__delete(sym, self->sym_priv_size);
  228. else {
  229. dso__insert_symbol(self, sym);
  230. nr_syms++;
  231. }
  232. }
  233. free(line);
  234. fclose(file);
  235. return nr_syms;
  236. out_delete_line:
  237. free(line);
  238. out_failure:
  239. return -1;
  240. }
  241. /**
  242. * elf_symtab__for_each_symbol - iterate thru all the symbols
  243. *
  244. * @self: struct elf_symtab instance to iterate
  245. * @idx: uint32_t idx
  246. * @sym: GElf_Sym iterator
  247. */
  248. #define elf_symtab__for_each_symbol(syms, nr_syms, idx, sym) \
  249. for (idx = 0, gelf_getsym(syms, idx, &sym);\
  250. idx < nr_syms; \
  251. idx++, gelf_getsym(syms, idx, &sym))
  252. static inline uint8_t elf_sym__type(const GElf_Sym *sym)
  253. {
  254. return GELF_ST_TYPE(sym->st_info);
  255. }
  256. static inline int elf_sym__is_function(const GElf_Sym *sym)
  257. {
  258. return elf_sym__type(sym) == STT_FUNC &&
  259. sym->st_name != 0 &&
  260. sym->st_shndx != SHN_UNDEF &&
  261. sym->st_size != 0;
  262. }
  263. static inline int elf_sym__is_label(const GElf_Sym *sym)
  264. {
  265. return elf_sym__type(sym) == STT_NOTYPE &&
  266. sym->st_name != 0 &&
  267. sym->st_shndx != SHN_UNDEF &&
  268. sym->st_shndx != SHN_ABS;
  269. }
  270. static inline const char *elf_sec__name(const GElf_Shdr *shdr,
  271. const Elf_Data *secstrs)
  272. {
  273. return secstrs->d_buf + shdr->sh_name;
  274. }
  275. static inline int elf_sec__is_text(const GElf_Shdr *shdr,
  276. const Elf_Data *secstrs)
  277. {
  278. return strstr(elf_sec__name(shdr, secstrs), "text") != NULL;
  279. }
  280. static inline const char *elf_sym__name(const GElf_Sym *sym,
  281. const Elf_Data *symstrs)
  282. {
  283. return symstrs->d_buf + sym->st_name;
  284. }
  285. static Elf_Scn *elf_section_by_name(Elf *elf, GElf_Ehdr *ep,
  286. GElf_Shdr *shp, const char *name,
  287. size_t *idx)
  288. {
  289. Elf_Scn *sec = NULL;
  290. size_t cnt = 1;
  291. while ((sec = elf_nextscn(elf, sec)) != NULL) {
  292. char *str;
  293. gelf_getshdr(sec, shp);
  294. str = elf_strptr(elf, ep->e_shstrndx, shp->sh_name);
  295. if (!strcmp(name, str)) {
  296. if (idx)
  297. *idx = cnt;
  298. break;
  299. }
  300. ++cnt;
  301. }
  302. return sec;
  303. }
  304. #define elf_section__for_each_rel(reldata, pos, pos_mem, idx, nr_entries) \
  305. for (idx = 0, pos = gelf_getrel(reldata, 0, &pos_mem); \
  306. idx < nr_entries; \
  307. ++idx, pos = gelf_getrel(reldata, idx, &pos_mem))
  308. #define elf_section__for_each_rela(reldata, pos, pos_mem, idx, nr_entries) \
  309. for (idx = 0, pos = gelf_getrela(reldata, 0, &pos_mem); \
  310. idx < nr_entries; \
  311. ++idx, pos = gelf_getrela(reldata, idx, &pos_mem))
  312. /*
  313. * We need to check if we have a .dynsym, so that we can handle the
  314. * .plt, synthesizing its symbols, that aren't on the symtabs (be it
  315. * .dynsym or .symtab).
  316. * And always look at the original dso, not at debuginfo packages, that
  317. * have the PLT data stripped out (shdr_rel_plt.sh_type == SHT_NOBITS).
  318. */
  319. static int dso__synthesize_plt_symbols(struct dso *self, int v)
  320. {
  321. uint32_t nr_rel_entries, idx;
  322. GElf_Sym sym;
  323. u64 plt_offset;
  324. GElf_Shdr shdr_plt;
  325. struct symbol *f;
  326. GElf_Shdr shdr_rel_plt, shdr_dynsym;
  327. Elf_Data *reldata, *syms, *symstrs;
  328. Elf_Scn *scn_plt_rel, *scn_symstrs, *scn_dynsym;
  329. size_t dynsym_idx;
  330. GElf_Ehdr ehdr;
  331. char sympltname[1024];
  332. Elf *elf;
  333. int nr = 0, symidx, fd, err = 0;
  334. fd = open(self->name, O_RDONLY);
  335. if (fd < 0)
  336. goto out;
  337. elf = elf_begin(fd, ELF_C_READ_MMAP, NULL);
  338. if (elf == NULL)
  339. goto out_close;
  340. if (gelf_getehdr(elf, &ehdr) == NULL)
  341. goto out_elf_end;
  342. scn_dynsym = elf_section_by_name(elf, &ehdr, &shdr_dynsym,
  343. ".dynsym", &dynsym_idx);
  344. if (scn_dynsym == NULL)
  345. goto out_elf_end;
  346. scn_plt_rel = elf_section_by_name(elf, &ehdr, &shdr_rel_plt,
  347. ".rela.plt", NULL);
  348. if (scn_plt_rel == NULL) {
  349. scn_plt_rel = elf_section_by_name(elf, &ehdr, &shdr_rel_plt,
  350. ".rel.plt", NULL);
  351. if (scn_plt_rel == NULL)
  352. goto out_elf_end;
  353. }
  354. err = -1;
  355. if (shdr_rel_plt.sh_link != dynsym_idx)
  356. goto out_elf_end;
  357. if (elf_section_by_name(elf, &ehdr, &shdr_plt, ".plt", NULL) == NULL)
  358. goto out_elf_end;
  359. /*
  360. * Fetch the relocation section to find the idxes to the GOT
  361. * and the symbols in the .dynsym they refer to.
  362. */
  363. reldata = elf_getdata(scn_plt_rel, NULL);
  364. if (reldata == NULL)
  365. goto out_elf_end;
  366. syms = elf_getdata(scn_dynsym, NULL);
  367. if (syms == NULL)
  368. goto out_elf_end;
  369. scn_symstrs = elf_getscn(elf, shdr_dynsym.sh_link);
  370. if (scn_symstrs == NULL)
  371. goto out_elf_end;
  372. symstrs = elf_getdata(scn_symstrs, NULL);
  373. if (symstrs == NULL)
  374. goto out_elf_end;
  375. nr_rel_entries = shdr_rel_plt.sh_size / shdr_rel_plt.sh_entsize;
  376. plt_offset = shdr_plt.sh_offset;
  377. if (shdr_rel_plt.sh_type == SHT_RELA) {
  378. GElf_Rela pos_mem, *pos;
  379. elf_section__for_each_rela(reldata, pos, pos_mem, idx,
  380. nr_rel_entries) {
  381. symidx = GELF_R_SYM(pos->r_info);
  382. plt_offset += shdr_plt.sh_entsize;
  383. gelf_getsym(syms, symidx, &sym);
  384. snprintf(sympltname, sizeof(sympltname),
  385. "%s@plt", elf_sym__name(&sym, symstrs));
  386. f = symbol__new(plt_offset, shdr_plt.sh_entsize,
  387. sympltname, self->sym_priv_size, 0, v);
  388. if (!f)
  389. goto out_elf_end;
  390. dso__insert_symbol(self, f);
  391. ++nr;
  392. }
  393. } else if (shdr_rel_plt.sh_type == SHT_REL) {
  394. GElf_Rel pos_mem, *pos;
  395. elf_section__for_each_rel(reldata, pos, pos_mem, idx,
  396. nr_rel_entries) {
  397. symidx = GELF_R_SYM(pos->r_info);
  398. plt_offset += shdr_plt.sh_entsize;
  399. gelf_getsym(syms, symidx, &sym);
  400. snprintf(sympltname, sizeof(sympltname),
  401. "%s@plt", elf_sym__name(&sym, symstrs));
  402. f = symbol__new(plt_offset, shdr_plt.sh_entsize,
  403. sympltname, self->sym_priv_size, 0, v);
  404. if (!f)
  405. goto out_elf_end;
  406. dso__insert_symbol(self, f);
  407. ++nr;
  408. }
  409. }
  410. err = 0;
  411. out_elf_end:
  412. elf_end(elf);
  413. out_close:
  414. close(fd);
  415. if (err == 0)
  416. return nr;
  417. out:
  418. fprintf(stderr, "%s: problems reading %s PLT info.\n",
  419. __func__, self->name);
  420. return 0;
  421. }
  422. static int dso__load_sym(struct dso *self, int fd, const char *name,
  423. symbol_filter_t filter, int v, struct module *mod)
  424. {
  425. Elf_Data *symstrs, *secstrs;
  426. uint32_t nr_syms;
  427. int err = -1;
  428. uint32_t idx;
  429. GElf_Ehdr ehdr;
  430. GElf_Shdr shdr;
  431. Elf_Data *syms;
  432. GElf_Sym sym;
  433. Elf_Scn *sec, *sec_strndx;
  434. Elf *elf;
  435. int nr = 0, kernel = !strcmp("[kernel]", self->name);
  436. elf = elf_begin(fd, ELF_C_READ_MMAP, NULL);
  437. if (elf == NULL) {
  438. if (v)
  439. fprintf(stderr, "%s: cannot read %s ELF file.\n",
  440. __func__, name);
  441. goto out_close;
  442. }
  443. if (gelf_getehdr(elf, &ehdr) == NULL) {
  444. if (v)
  445. fprintf(stderr, "%s: cannot get elf header.\n", __func__);
  446. goto out_elf_end;
  447. }
  448. sec = elf_section_by_name(elf, &ehdr, &shdr, ".symtab", NULL);
  449. if (sec == NULL) {
  450. sec = elf_section_by_name(elf, &ehdr, &shdr, ".dynsym", NULL);
  451. if (sec == NULL)
  452. goto out_elf_end;
  453. }
  454. syms = elf_getdata(sec, NULL);
  455. if (syms == NULL)
  456. goto out_elf_end;
  457. sec = elf_getscn(elf, shdr.sh_link);
  458. if (sec == NULL)
  459. goto out_elf_end;
  460. symstrs = elf_getdata(sec, NULL);
  461. if (symstrs == NULL)
  462. goto out_elf_end;
  463. sec_strndx = elf_getscn(elf, ehdr.e_shstrndx);
  464. if (sec_strndx == NULL)
  465. goto out_elf_end;
  466. secstrs = elf_getdata(sec_strndx, NULL);
  467. if (secstrs == NULL)
  468. goto out_elf_end;
  469. nr_syms = shdr.sh_size / shdr.sh_entsize;
  470. memset(&sym, 0, sizeof(sym));
  471. if (!kernel) {
  472. self->adjust_symbols = (ehdr.e_type == ET_EXEC ||
  473. elf_section_by_name(elf, &ehdr, &shdr,
  474. ".gnu.prelink_undo",
  475. NULL) != NULL);
  476. } else self->adjust_symbols = 0;
  477. elf_symtab__for_each_symbol(syms, nr_syms, idx, sym) {
  478. struct symbol *f;
  479. const char *elf_name;
  480. char *demangled;
  481. u64 obj_start;
  482. struct section *section = NULL;
  483. int is_label = elf_sym__is_label(&sym);
  484. const char *section_name;
  485. if (!is_label && !elf_sym__is_function(&sym))
  486. continue;
  487. sec = elf_getscn(elf, sym.st_shndx);
  488. if (!sec)
  489. goto out_elf_end;
  490. gelf_getshdr(sec, &shdr);
  491. if (is_label && !elf_sec__is_text(&shdr, secstrs))
  492. continue;
  493. section_name = elf_sec__name(&shdr, secstrs);
  494. obj_start = sym.st_value;
  495. if (self->adjust_symbols) {
  496. if (v >= 2)
  497. printf("adjusting symbol: st_value: %Lx sh_addr: %Lx sh_offset: %Lx\n",
  498. (u64)sym.st_value, (u64)shdr.sh_addr, (u64)shdr.sh_offset);
  499. sym.st_value -= shdr.sh_addr - shdr.sh_offset;
  500. }
  501. if (mod) {
  502. section = mod->sections->find_section(mod->sections, section_name);
  503. if (section)
  504. sym.st_value += section->vma;
  505. else {
  506. fprintf(stderr, "dso__load_sym() module %s lookup of %s failed\n",
  507. mod->name, section_name);
  508. goto out_elf_end;
  509. }
  510. }
  511. /*
  512. * We need to figure out if the object was created from C++ sources
  513. * DWARF DW_compile_unit has this, but we don't always have access
  514. * to it...
  515. */
  516. elf_name = elf_sym__name(&sym, symstrs);
  517. demangled = bfd_demangle(NULL, elf_name, DMGL_PARAMS | DMGL_ANSI);
  518. if (demangled != NULL)
  519. elf_name = demangled;
  520. f = symbol__new(sym.st_value, sym.st_size, elf_name,
  521. self->sym_priv_size, obj_start, v);
  522. free(demangled);
  523. if (!f)
  524. goto out_elf_end;
  525. if (filter && filter(self, f))
  526. symbol__delete(f, self->sym_priv_size);
  527. else {
  528. f->module = mod;
  529. dso__insert_symbol(self, f);
  530. nr++;
  531. }
  532. }
  533. err = nr;
  534. out_elf_end:
  535. elf_end(elf);
  536. out_close:
  537. return err;
  538. }
  539. #define BUILD_ID_SIZE 128
  540. static char *dso__read_build_id(struct dso *self, int v)
  541. {
  542. int i;
  543. GElf_Ehdr ehdr;
  544. GElf_Shdr shdr;
  545. Elf_Data *build_id_data;
  546. Elf_Scn *sec;
  547. char *build_id = NULL, *bid;
  548. unsigned char *raw;
  549. Elf *elf;
  550. int fd = open(self->name, O_RDONLY);
  551. if (fd < 0)
  552. goto out;
  553. elf = elf_begin(fd, ELF_C_READ_MMAP, NULL);
  554. if (elf == NULL) {
  555. if (v)
  556. fprintf(stderr, "%s: cannot read %s ELF file.\n",
  557. __func__, self->name);
  558. goto out_close;
  559. }
  560. if (gelf_getehdr(elf, &ehdr) == NULL) {
  561. if (v)
  562. fprintf(stderr, "%s: cannot get elf header.\n", __func__);
  563. goto out_elf_end;
  564. }
  565. sec = elf_section_by_name(elf, &ehdr, &shdr, ".note.gnu.build-id", NULL);
  566. if (sec == NULL)
  567. goto out_elf_end;
  568. build_id_data = elf_getdata(sec, NULL);
  569. if (build_id_data == NULL)
  570. goto out_elf_end;
  571. build_id = malloc(BUILD_ID_SIZE);
  572. if (build_id == NULL)
  573. goto out_elf_end;
  574. raw = build_id_data->d_buf + 16;
  575. bid = build_id;
  576. for (i = 0; i < 20; ++i) {
  577. sprintf(bid, "%02x", *raw);
  578. ++raw;
  579. bid += 2;
  580. }
  581. if (v >= 2)
  582. printf("%s(%s): %s\n", __func__, self->name, build_id);
  583. out_elf_end:
  584. elf_end(elf);
  585. out_close:
  586. close(fd);
  587. out:
  588. return build_id;
  589. }
  590. char dso__symtab_origin(const struct dso *self)
  591. {
  592. static const char origin[] = {
  593. [DSO__ORIG_KERNEL] = 'k',
  594. [DSO__ORIG_JAVA_JIT] = 'j',
  595. [DSO__ORIG_FEDORA] = 'f',
  596. [DSO__ORIG_UBUNTU] = 'u',
  597. [DSO__ORIG_BUILDID] = 'b',
  598. [DSO__ORIG_DSO] = 'd',
  599. };
  600. if (self == NULL || self->origin == DSO__ORIG_NOT_FOUND)
  601. return '!';
  602. return origin[self->origin];
  603. }
  604. int dso__load(struct dso *self, symbol_filter_t filter, int v)
  605. {
  606. int size = PATH_MAX;
  607. char *name = malloc(size), *build_id = NULL;
  608. int ret = -1;
  609. int fd;
  610. if (!name)
  611. return -1;
  612. self->adjust_symbols = 0;
  613. if (strncmp(self->name, "/tmp/perf-", 10) == 0) {
  614. ret = dso__load_perf_map(self, filter, v);
  615. self->origin = ret > 0 ? DSO__ORIG_JAVA_JIT :
  616. DSO__ORIG_NOT_FOUND;
  617. return ret;
  618. }
  619. self->origin = DSO__ORIG_FEDORA - 1;
  620. more:
  621. do {
  622. self->origin++;
  623. switch (self->origin) {
  624. case DSO__ORIG_FEDORA:
  625. snprintf(name, size, "/usr/lib/debug%s.debug", self->name);
  626. break;
  627. case DSO__ORIG_UBUNTU:
  628. snprintf(name, size, "/usr/lib/debug%s", self->name);
  629. break;
  630. case DSO__ORIG_BUILDID:
  631. build_id = dso__read_build_id(self, v);
  632. if (build_id != NULL) {
  633. snprintf(name, size,
  634. "/usr/lib/debug/.build-id/%.2s/%s.debug",
  635. build_id, build_id + 2);
  636. free(build_id);
  637. break;
  638. }
  639. self->origin++;
  640. /* Fall thru */
  641. case DSO__ORIG_DSO:
  642. snprintf(name, size, "%s", self->name);
  643. break;
  644. default:
  645. goto out;
  646. }
  647. fd = open(name, O_RDONLY);
  648. } while (fd < 0);
  649. ret = dso__load_sym(self, fd, name, filter, v, NULL);
  650. close(fd);
  651. /*
  652. * Some people seem to have debuginfo files _WITHOUT_ debug info!?!?
  653. */
  654. if (!ret)
  655. goto more;
  656. if (ret > 0) {
  657. int nr_plt = dso__synthesize_plt_symbols(self, v);
  658. if (nr_plt > 0)
  659. ret += nr_plt;
  660. }
  661. out:
  662. free(name);
  663. if (ret < 0 && strstr(self->name, " (deleted)") != NULL)
  664. return 0;
  665. return ret;
  666. }
  667. static int dso__load_module(struct dso *self, struct mod_dso *mods, const char *name,
  668. symbol_filter_t filter, int v)
  669. {
  670. struct module *mod = mod_dso__find_module(mods, name);
  671. int err = 0, fd;
  672. if (mod == NULL || !mod->active)
  673. return err;
  674. fd = open(mod->path, O_RDONLY);
  675. if (fd < 0)
  676. return err;
  677. err = dso__load_sym(self, fd, name, filter, v, mod);
  678. close(fd);
  679. return err;
  680. }
  681. int dso__load_modules(struct dso *self, symbol_filter_t filter, int v)
  682. {
  683. struct mod_dso *mods = mod_dso__new_dso("modules");
  684. struct module *pos;
  685. struct rb_node *next;
  686. int err;
  687. err = mod_dso__load_modules(mods);
  688. if (err <= 0)
  689. return err;
  690. /*
  691. * Iterate over modules, and load active symbols.
  692. */
  693. next = rb_first(&mods->mods);
  694. while (next) {
  695. pos = rb_entry(next, struct module, rb_node);
  696. err = dso__load_module(self, mods, pos->name, filter, v);
  697. if (err < 0)
  698. break;
  699. next = rb_next(&pos->rb_node);
  700. }
  701. if (err < 0) {
  702. mod_dso__delete_modules(mods);
  703. mod_dso__delete_self(mods);
  704. }
  705. return err;
  706. }
  707. static inline void dso__fill_symbol_holes(struct dso *self)
  708. {
  709. struct symbol *prev = NULL;
  710. struct rb_node *nd;
  711. for (nd = rb_last(&self->syms); nd; nd = rb_prev(nd)) {
  712. struct symbol *pos = rb_entry(nd, struct symbol, rb_node);
  713. if (prev) {
  714. u64 hole = 0;
  715. int alias = pos->start == prev->start;
  716. if (!alias)
  717. hole = prev->start - pos->end - 1;
  718. if (hole || alias) {
  719. if (alias)
  720. pos->end = prev->end;
  721. else if (hole)
  722. pos->end = prev->start - 1;
  723. }
  724. }
  725. prev = pos;
  726. }
  727. }
  728. static int dso__load_vmlinux(struct dso *self, const char *vmlinux,
  729. symbol_filter_t filter, int v)
  730. {
  731. int err, fd = open(vmlinux, O_RDONLY);
  732. if (fd < 0)
  733. return -1;
  734. err = dso__load_sym(self, fd, vmlinux, filter, v, NULL);
  735. if (err > 0)
  736. dso__fill_symbol_holes(self);
  737. close(fd);
  738. return err;
  739. }
  740. int dso__load_kernel(struct dso *self, const char *vmlinux,
  741. symbol_filter_t filter, int v, int use_modules)
  742. {
  743. int err = -1;
  744. if (vmlinux) {
  745. err = dso__load_vmlinux(self, vmlinux, filter, v);
  746. if (err > 0 && use_modules)
  747. err = dso__load_modules(self, filter, v);
  748. }
  749. if (err <= 0)
  750. err = dso__load_kallsyms(self, filter, v);
  751. if (err > 0)
  752. self->origin = DSO__ORIG_KERNEL;
  753. return err;
  754. }
  755. LIST_HEAD(dsos);
  756. struct dso *kernel_dso;
  757. struct dso *vdso;
  758. struct dso *hypervisor_dso;
  759. const char *vmlinux_name = "vmlinux";
  760. int modules;
  761. static void dsos__add(struct dso *dso)
  762. {
  763. list_add_tail(&dso->node, &dsos);
  764. }
  765. static struct dso *dsos__find(const char *name)
  766. {
  767. struct dso *pos;
  768. list_for_each_entry(pos, &dsos, node)
  769. if (strcmp(pos->name, name) == 0)
  770. return pos;
  771. return NULL;
  772. }
  773. struct dso *dsos__findnew(const char *name)
  774. {
  775. struct dso *dso = dsos__find(name);
  776. int nr;
  777. if (dso)
  778. return dso;
  779. dso = dso__new(name, 0);
  780. if (!dso)
  781. goto out_delete_dso;
  782. nr = dso__load(dso, NULL, verbose);
  783. if (nr < 0) {
  784. eprintf("Failed to open: %s\n", name);
  785. goto out_delete_dso;
  786. }
  787. if (!nr)
  788. eprintf("No symbols found in: %s, maybe install a debug package?\n", name);
  789. dsos__add(dso);
  790. return dso;
  791. out_delete_dso:
  792. dso__delete(dso);
  793. return NULL;
  794. }
  795. void dsos__fprintf(FILE *fp)
  796. {
  797. struct dso *pos;
  798. list_for_each_entry(pos, &dsos, node)
  799. dso__fprintf(pos, fp);
  800. }
  801. static struct symbol *vdso__find_symbol(struct dso *dso, u64 ip)
  802. {
  803. return dso__find_symbol(dso, ip);
  804. }
  805. int load_kernel(void)
  806. {
  807. int err;
  808. kernel_dso = dso__new("[kernel]", 0);
  809. if (!kernel_dso)
  810. return -1;
  811. err = dso__load_kernel(kernel_dso, vmlinux_name, NULL, verbose, modules);
  812. if (err <= 0) {
  813. dso__delete(kernel_dso);
  814. kernel_dso = NULL;
  815. } else
  816. dsos__add(kernel_dso);
  817. vdso = dso__new("[vdso]", 0);
  818. if (!vdso)
  819. return -1;
  820. vdso->find_symbol = vdso__find_symbol;
  821. dsos__add(vdso);
  822. hypervisor_dso = dso__new("[hypervisor]", 0);
  823. if (!hypervisor_dso)
  824. return -1;
  825. dsos__add(hypervisor_dso);
  826. return err;
  827. }
  828. void symbol__init(void)
  829. {
  830. elf_version(EV_CURRENT);
  831. }