map.c 16 KB

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  1. #include "symbol.h"
  2. #include <errno.h>
  3. #include <inttypes.h>
  4. #include <limits.h>
  5. #include <stdlib.h>
  6. #include <string.h>
  7. #include <stdio.h>
  8. #include <unistd.h>
  9. #include "map.h"
  10. const char *map_type__name[MAP__NR_TYPES] = {
  11. [MAP__FUNCTION] = "Functions",
  12. [MAP__VARIABLE] = "Variables",
  13. };
  14. static inline int is_anon_memory(const char *filename)
  15. {
  16. return strcmp(filename, "//anon") == 0;
  17. }
  18. static inline int is_no_dso_memory(const char *filename)
  19. {
  20. return !strcmp(filename, "[stack]") ||
  21. !strcmp(filename, "[vdso]") ||
  22. !strcmp(filename, "[heap]");
  23. }
  24. void map__init(struct map *self, enum map_type type,
  25. u64 start, u64 end, u64 pgoff, struct dso *dso)
  26. {
  27. self->type = type;
  28. self->start = start;
  29. self->end = end;
  30. self->pgoff = pgoff;
  31. self->dso = dso;
  32. self->map_ip = map__map_ip;
  33. self->unmap_ip = map__unmap_ip;
  34. RB_CLEAR_NODE(&self->rb_node);
  35. self->groups = NULL;
  36. self->referenced = false;
  37. self->erange_warned = false;
  38. }
  39. struct map *map__new(struct list_head *dsos__list, u64 start, u64 len,
  40. u64 pgoff, u32 pid, char *filename,
  41. enum map_type type)
  42. {
  43. struct map *self = malloc(sizeof(*self));
  44. if (self != NULL) {
  45. char newfilename[PATH_MAX];
  46. struct dso *dso;
  47. int anon, no_dso;
  48. anon = is_anon_memory(filename);
  49. no_dso = is_no_dso_memory(filename);
  50. if (anon) {
  51. snprintf(newfilename, sizeof(newfilename), "/tmp/perf-%d.map", pid);
  52. filename = newfilename;
  53. }
  54. dso = __dsos__findnew(dsos__list, filename);
  55. if (dso == NULL)
  56. goto out_delete;
  57. map__init(self, type, start, start + len, pgoff, dso);
  58. if (anon || no_dso) {
  59. self->map_ip = self->unmap_ip = identity__map_ip;
  60. /*
  61. * Set memory without DSO as loaded. All map__find_*
  62. * functions still return NULL, and we avoid the
  63. * unnecessary map__load warning.
  64. */
  65. if (no_dso)
  66. dso__set_loaded(dso, self->type);
  67. }
  68. }
  69. return self;
  70. out_delete:
  71. free(self);
  72. return NULL;
  73. }
  74. void map__delete(struct map *self)
  75. {
  76. free(self);
  77. }
  78. void map__fixup_start(struct map *self)
  79. {
  80. struct rb_root *symbols = &self->dso->symbols[self->type];
  81. struct rb_node *nd = rb_first(symbols);
  82. if (nd != NULL) {
  83. struct symbol *sym = rb_entry(nd, struct symbol, rb_node);
  84. self->start = sym->start;
  85. }
  86. }
  87. void map__fixup_end(struct map *self)
  88. {
  89. struct rb_root *symbols = &self->dso->symbols[self->type];
  90. struct rb_node *nd = rb_last(symbols);
  91. if (nd != NULL) {
  92. struct symbol *sym = rb_entry(nd, struct symbol, rb_node);
  93. self->end = sym->end;
  94. }
  95. }
  96. #define DSO__DELETED "(deleted)"
  97. int map__load(struct map *self, symbol_filter_t filter)
  98. {
  99. const char *name = self->dso->long_name;
  100. int nr;
  101. if (dso__loaded(self->dso, self->type))
  102. return 0;
  103. nr = dso__load(self->dso, self, filter);
  104. if (nr < 0) {
  105. if (self->dso->has_build_id) {
  106. char sbuild_id[BUILD_ID_SIZE * 2 + 1];
  107. build_id__sprintf(self->dso->build_id,
  108. sizeof(self->dso->build_id),
  109. sbuild_id);
  110. pr_warning("%s with build id %s not found",
  111. name, sbuild_id);
  112. } else
  113. pr_warning("Failed to open %s", name);
  114. pr_warning(", continuing without symbols\n");
  115. return -1;
  116. } else if (nr == 0) {
  117. const size_t len = strlen(name);
  118. const size_t real_len = len - sizeof(DSO__DELETED);
  119. if (len > sizeof(DSO__DELETED) &&
  120. strcmp(name + real_len + 1, DSO__DELETED) == 0) {
  121. pr_warning("%.*s was updated (is prelink enabled?). "
  122. "Restart the long running apps that use it!\n",
  123. (int)real_len, name);
  124. } else {
  125. pr_warning("no symbols found in %s, maybe install "
  126. "a debug package?\n", name);
  127. }
  128. return -1;
  129. }
  130. /*
  131. * Only applies to the kernel, as its symtabs aren't relative like the
  132. * module ones.
  133. */
  134. if (self->dso->kernel)
  135. map__reloc_vmlinux(self);
  136. return 0;
  137. }
  138. struct symbol *map__find_symbol(struct map *self, u64 addr,
  139. symbol_filter_t filter)
  140. {
  141. if (map__load(self, filter) < 0)
  142. return NULL;
  143. return dso__find_symbol(self->dso, self->type, addr);
  144. }
  145. struct symbol *map__find_symbol_by_name(struct map *self, const char *name,
  146. symbol_filter_t filter)
  147. {
  148. if (map__load(self, filter) < 0)
  149. return NULL;
  150. if (!dso__sorted_by_name(self->dso, self->type))
  151. dso__sort_by_name(self->dso, self->type);
  152. return dso__find_symbol_by_name(self->dso, self->type, name);
  153. }
  154. struct map *map__clone(struct map *self)
  155. {
  156. struct map *map = malloc(sizeof(*self));
  157. if (!map)
  158. return NULL;
  159. memcpy(map, self, sizeof(*self));
  160. return map;
  161. }
  162. int map__overlap(struct map *l, struct map *r)
  163. {
  164. if (l->start > r->start) {
  165. struct map *t = l;
  166. l = r;
  167. r = t;
  168. }
  169. if (l->end > r->start)
  170. return 1;
  171. return 0;
  172. }
  173. size_t map__fprintf(struct map *self, FILE *fp)
  174. {
  175. return fprintf(fp, " %" PRIx64 "-%" PRIx64 " %" PRIx64 " %s\n",
  176. self->start, self->end, self->pgoff, self->dso->name);
  177. }
  178. size_t map__fprintf_dsoname(struct map *map, FILE *fp)
  179. {
  180. const char *dsoname;
  181. if (map && map->dso && (map->dso->name || map->dso->long_name)) {
  182. if (symbol_conf.show_kernel_path && map->dso->long_name)
  183. dsoname = map->dso->long_name;
  184. else if (map->dso->name)
  185. dsoname = map->dso->name;
  186. } else
  187. dsoname = "[unknown]";
  188. return fprintf(fp, "%s", dsoname);
  189. }
  190. /*
  191. * objdump wants/reports absolute IPs for ET_EXEC, and RIPs for ET_DYN.
  192. * map->dso->adjust_symbols==1 for ET_EXEC-like cases.
  193. */
  194. u64 map__rip_2objdump(struct map *map, u64 rip)
  195. {
  196. u64 addr = map->dso->adjust_symbols ?
  197. map->unmap_ip(map, rip) : /* RIP -> IP */
  198. rip;
  199. return addr;
  200. }
  201. u64 map__objdump_2ip(struct map *map, u64 addr)
  202. {
  203. u64 ip = map->dso->adjust_symbols ?
  204. addr :
  205. map->unmap_ip(map, addr); /* RIP -> IP */
  206. return ip;
  207. }
  208. void map_groups__init(struct map_groups *mg)
  209. {
  210. int i;
  211. for (i = 0; i < MAP__NR_TYPES; ++i) {
  212. mg->maps[i] = RB_ROOT;
  213. INIT_LIST_HEAD(&mg->removed_maps[i]);
  214. }
  215. mg->machine = NULL;
  216. }
  217. static void maps__delete(struct rb_root *maps)
  218. {
  219. struct rb_node *next = rb_first(maps);
  220. while (next) {
  221. struct map *pos = rb_entry(next, struct map, rb_node);
  222. next = rb_next(&pos->rb_node);
  223. rb_erase(&pos->rb_node, maps);
  224. map__delete(pos);
  225. }
  226. }
  227. static void maps__delete_removed(struct list_head *maps)
  228. {
  229. struct map *pos, *n;
  230. list_for_each_entry_safe(pos, n, maps, node) {
  231. list_del(&pos->node);
  232. map__delete(pos);
  233. }
  234. }
  235. void map_groups__exit(struct map_groups *mg)
  236. {
  237. int i;
  238. for (i = 0; i < MAP__NR_TYPES; ++i) {
  239. maps__delete(&mg->maps[i]);
  240. maps__delete_removed(&mg->removed_maps[i]);
  241. }
  242. }
  243. void map_groups__flush(struct map_groups *mg)
  244. {
  245. int type;
  246. for (type = 0; type < MAP__NR_TYPES; type++) {
  247. struct rb_root *root = &mg->maps[type];
  248. struct rb_node *next = rb_first(root);
  249. while (next) {
  250. struct map *pos = rb_entry(next, struct map, rb_node);
  251. next = rb_next(&pos->rb_node);
  252. rb_erase(&pos->rb_node, root);
  253. /*
  254. * We may have references to this map, for
  255. * instance in some hist_entry instances, so
  256. * just move them to a separate list.
  257. */
  258. list_add_tail(&pos->node, &mg->removed_maps[pos->type]);
  259. }
  260. }
  261. }
  262. struct symbol *map_groups__find_symbol(struct map_groups *mg,
  263. enum map_type type, u64 addr,
  264. struct map **mapp,
  265. symbol_filter_t filter)
  266. {
  267. struct map *map = map_groups__find(mg, type, addr);
  268. if (map != NULL) {
  269. if (mapp != NULL)
  270. *mapp = map;
  271. return map__find_symbol(map, map->map_ip(map, addr), filter);
  272. }
  273. return NULL;
  274. }
  275. struct symbol *map_groups__find_symbol_by_name(struct map_groups *mg,
  276. enum map_type type,
  277. const char *name,
  278. struct map **mapp,
  279. symbol_filter_t filter)
  280. {
  281. struct rb_node *nd;
  282. for (nd = rb_first(&mg->maps[type]); nd; nd = rb_next(nd)) {
  283. struct map *pos = rb_entry(nd, struct map, rb_node);
  284. struct symbol *sym = map__find_symbol_by_name(pos, name, filter);
  285. if (sym == NULL)
  286. continue;
  287. if (mapp != NULL)
  288. *mapp = pos;
  289. return sym;
  290. }
  291. return NULL;
  292. }
  293. size_t __map_groups__fprintf_maps(struct map_groups *mg,
  294. enum map_type type, int verbose, FILE *fp)
  295. {
  296. size_t printed = fprintf(fp, "%s:\n", map_type__name[type]);
  297. struct rb_node *nd;
  298. for (nd = rb_first(&mg->maps[type]); nd; nd = rb_next(nd)) {
  299. struct map *pos = rb_entry(nd, struct map, rb_node);
  300. printed += fprintf(fp, "Map:");
  301. printed += map__fprintf(pos, fp);
  302. if (verbose > 2) {
  303. printed += dso__fprintf(pos->dso, type, fp);
  304. printed += fprintf(fp, "--\n");
  305. }
  306. }
  307. return printed;
  308. }
  309. size_t map_groups__fprintf_maps(struct map_groups *mg, int verbose, FILE *fp)
  310. {
  311. size_t printed = 0, i;
  312. for (i = 0; i < MAP__NR_TYPES; ++i)
  313. printed += __map_groups__fprintf_maps(mg, i, verbose, fp);
  314. return printed;
  315. }
  316. static size_t __map_groups__fprintf_removed_maps(struct map_groups *mg,
  317. enum map_type type,
  318. int verbose, FILE *fp)
  319. {
  320. struct map *pos;
  321. size_t printed = 0;
  322. list_for_each_entry(pos, &mg->removed_maps[type], node) {
  323. printed += fprintf(fp, "Map:");
  324. printed += map__fprintf(pos, fp);
  325. if (verbose > 1) {
  326. printed += dso__fprintf(pos->dso, type, fp);
  327. printed += fprintf(fp, "--\n");
  328. }
  329. }
  330. return printed;
  331. }
  332. static size_t map_groups__fprintf_removed_maps(struct map_groups *mg,
  333. int verbose, FILE *fp)
  334. {
  335. size_t printed = 0, i;
  336. for (i = 0; i < MAP__NR_TYPES; ++i)
  337. printed += __map_groups__fprintf_removed_maps(mg, i, verbose, fp);
  338. return printed;
  339. }
  340. size_t map_groups__fprintf(struct map_groups *mg, int verbose, FILE *fp)
  341. {
  342. size_t printed = map_groups__fprintf_maps(mg, verbose, fp);
  343. printed += fprintf(fp, "Removed maps:\n");
  344. return printed + map_groups__fprintf_removed_maps(mg, verbose, fp);
  345. }
  346. int map_groups__fixup_overlappings(struct map_groups *mg, struct map *map,
  347. int verbose, FILE *fp)
  348. {
  349. struct rb_root *root = &mg->maps[map->type];
  350. struct rb_node *next = rb_first(root);
  351. int err = 0;
  352. while (next) {
  353. struct map *pos = rb_entry(next, struct map, rb_node);
  354. next = rb_next(&pos->rb_node);
  355. if (!map__overlap(pos, map))
  356. continue;
  357. if (verbose >= 2) {
  358. fputs("overlapping maps:\n", fp);
  359. map__fprintf(map, fp);
  360. map__fprintf(pos, fp);
  361. }
  362. rb_erase(&pos->rb_node, root);
  363. /*
  364. * Now check if we need to create new maps for areas not
  365. * overlapped by the new map:
  366. */
  367. if (map->start > pos->start) {
  368. struct map *before = map__clone(pos);
  369. if (before == NULL) {
  370. err = -ENOMEM;
  371. goto move_map;
  372. }
  373. before->end = map->start - 1;
  374. map_groups__insert(mg, before);
  375. if (verbose >= 2)
  376. map__fprintf(before, fp);
  377. }
  378. if (map->end < pos->end) {
  379. struct map *after = map__clone(pos);
  380. if (after == NULL) {
  381. err = -ENOMEM;
  382. goto move_map;
  383. }
  384. after->start = map->end + 1;
  385. map_groups__insert(mg, after);
  386. if (verbose >= 2)
  387. map__fprintf(after, fp);
  388. }
  389. move_map:
  390. /*
  391. * If we have references, just move them to a separate list.
  392. */
  393. if (pos->referenced)
  394. list_add_tail(&pos->node, &mg->removed_maps[map->type]);
  395. else
  396. map__delete(pos);
  397. if (err)
  398. return err;
  399. }
  400. return 0;
  401. }
  402. /*
  403. * XXX This should not really _copy_ te maps, but refcount them.
  404. */
  405. int map_groups__clone(struct map_groups *mg,
  406. struct map_groups *parent, enum map_type type)
  407. {
  408. struct rb_node *nd;
  409. for (nd = rb_first(&parent->maps[type]); nd; nd = rb_next(nd)) {
  410. struct map *map = rb_entry(nd, struct map, rb_node);
  411. struct map *new = map__clone(map);
  412. if (new == NULL)
  413. return -ENOMEM;
  414. map_groups__insert(mg, new);
  415. }
  416. return 0;
  417. }
  418. static u64 map__reloc_map_ip(struct map *map, u64 ip)
  419. {
  420. return ip + (s64)map->pgoff;
  421. }
  422. static u64 map__reloc_unmap_ip(struct map *map, u64 ip)
  423. {
  424. return ip - (s64)map->pgoff;
  425. }
  426. void map__reloc_vmlinux(struct map *self)
  427. {
  428. struct kmap *kmap = map__kmap(self);
  429. s64 reloc;
  430. if (!kmap->ref_reloc_sym || !kmap->ref_reloc_sym->unrelocated_addr)
  431. return;
  432. reloc = (kmap->ref_reloc_sym->unrelocated_addr -
  433. kmap->ref_reloc_sym->addr);
  434. if (!reloc)
  435. return;
  436. self->map_ip = map__reloc_map_ip;
  437. self->unmap_ip = map__reloc_unmap_ip;
  438. self->pgoff = reloc;
  439. }
  440. void maps__insert(struct rb_root *maps, struct map *map)
  441. {
  442. struct rb_node **p = &maps->rb_node;
  443. struct rb_node *parent = NULL;
  444. const u64 ip = map->start;
  445. struct map *m;
  446. while (*p != NULL) {
  447. parent = *p;
  448. m = rb_entry(parent, struct map, rb_node);
  449. if (ip < m->start)
  450. p = &(*p)->rb_left;
  451. else
  452. p = &(*p)->rb_right;
  453. }
  454. rb_link_node(&map->rb_node, parent, p);
  455. rb_insert_color(&map->rb_node, maps);
  456. }
  457. void maps__remove(struct rb_root *self, struct map *map)
  458. {
  459. rb_erase(&map->rb_node, self);
  460. }
  461. struct map *maps__find(struct rb_root *maps, u64 ip)
  462. {
  463. struct rb_node **p = &maps->rb_node;
  464. struct rb_node *parent = NULL;
  465. struct map *m;
  466. while (*p != NULL) {
  467. parent = *p;
  468. m = rb_entry(parent, struct map, rb_node);
  469. if (ip < m->start)
  470. p = &(*p)->rb_left;
  471. else if (ip > m->end)
  472. p = &(*p)->rb_right;
  473. else
  474. return m;
  475. }
  476. return NULL;
  477. }
  478. int machine__init(struct machine *self, const char *root_dir, pid_t pid)
  479. {
  480. map_groups__init(&self->kmaps);
  481. RB_CLEAR_NODE(&self->rb_node);
  482. INIT_LIST_HEAD(&self->user_dsos);
  483. INIT_LIST_HEAD(&self->kernel_dsos);
  484. self->threads = RB_ROOT;
  485. INIT_LIST_HEAD(&self->dead_threads);
  486. self->last_match = NULL;
  487. self->kmaps.machine = self;
  488. self->pid = pid;
  489. self->root_dir = strdup(root_dir);
  490. return self->root_dir == NULL ? -ENOMEM : 0;
  491. }
  492. static void dsos__delete(struct list_head *self)
  493. {
  494. struct dso *pos, *n;
  495. list_for_each_entry_safe(pos, n, self, node) {
  496. list_del(&pos->node);
  497. dso__delete(pos);
  498. }
  499. }
  500. void machine__exit(struct machine *self)
  501. {
  502. map_groups__exit(&self->kmaps);
  503. dsos__delete(&self->user_dsos);
  504. dsos__delete(&self->kernel_dsos);
  505. free(self->root_dir);
  506. self->root_dir = NULL;
  507. }
  508. void machine__delete(struct machine *self)
  509. {
  510. machine__exit(self);
  511. free(self);
  512. }
  513. struct machine *machines__add(struct rb_root *self, pid_t pid,
  514. const char *root_dir)
  515. {
  516. struct rb_node **p = &self->rb_node;
  517. struct rb_node *parent = NULL;
  518. struct machine *pos, *machine = malloc(sizeof(*machine));
  519. if (!machine)
  520. return NULL;
  521. if (machine__init(machine, root_dir, pid) != 0) {
  522. free(machine);
  523. return NULL;
  524. }
  525. while (*p != NULL) {
  526. parent = *p;
  527. pos = rb_entry(parent, struct machine, rb_node);
  528. if (pid < pos->pid)
  529. p = &(*p)->rb_left;
  530. else
  531. p = &(*p)->rb_right;
  532. }
  533. rb_link_node(&machine->rb_node, parent, p);
  534. rb_insert_color(&machine->rb_node, self);
  535. return machine;
  536. }
  537. struct machine *machines__find(struct rb_root *self, pid_t pid)
  538. {
  539. struct rb_node **p = &self->rb_node;
  540. struct rb_node *parent = NULL;
  541. struct machine *machine;
  542. struct machine *default_machine = NULL;
  543. while (*p != NULL) {
  544. parent = *p;
  545. machine = rb_entry(parent, struct machine, rb_node);
  546. if (pid < machine->pid)
  547. p = &(*p)->rb_left;
  548. else if (pid > machine->pid)
  549. p = &(*p)->rb_right;
  550. else
  551. return machine;
  552. if (!machine->pid)
  553. default_machine = machine;
  554. }
  555. return default_machine;
  556. }
  557. struct machine *machines__findnew(struct rb_root *self, pid_t pid)
  558. {
  559. char path[PATH_MAX];
  560. const char *root_dir;
  561. struct machine *machine = machines__find(self, pid);
  562. if (!machine || machine->pid != pid) {
  563. if (pid == HOST_KERNEL_ID || pid == DEFAULT_GUEST_KERNEL_ID)
  564. root_dir = "";
  565. else {
  566. if (!symbol_conf.guestmount)
  567. goto out;
  568. sprintf(path, "%s/%d", symbol_conf.guestmount, pid);
  569. if (access(path, R_OK)) {
  570. pr_err("Can't access file %s\n", path);
  571. goto out;
  572. }
  573. root_dir = path;
  574. }
  575. machine = machines__add(self, pid, root_dir);
  576. }
  577. out:
  578. return machine;
  579. }
  580. void machines__process(struct rb_root *self, machine__process_t process, void *data)
  581. {
  582. struct rb_node *nd;
  583. for (nd = rb_first(self); nd; nd = rb_next(nd)) {
  584. struct machine *pos = rb_entry(nd, struct machine, rb_node);
  585. process(pos, data);
  586. }
  587. }
  588. char *machine__mmap_name(struct machine *self, char *bf, size_t size)
  589. {
  590. if (machine__is_host(self))
  591. snprintf(bf, size, "[%s]", "kernel.kallsyms");
  592. else if (machine__is_default_guest(self))
  593. snprintf(bf, size, "[%s]", "guest.kernel.kallsyms");
  594. else
  595. snprintf(bf, size, "[%s.%d]", "guest.kernel.kallsyms", self->pid);
  596. return bf;
  597. }