bpf-loader.c 38 KB

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  1. /*
  2. * bpf-loader.c
  3. *
  4. * Copyright (C) 2015 Wang Nan <wangnan0@huawei.com>
  5. * Copyright (C) 2015 Huawei Inc.
  6. */
  7. #include <linux/bpf.h>
  8. #include <bpf/libbpf.h>
  9. #include <bpf/bpf.h>
  10. #include <linux/err.h>
  11. #include <linux/string.h>
  12. #include "perf.h"
  13. #include "debug.h"
  14. #include "bpf-loader.h"
  15. #include "bpf-prologue.h"
  16. #include "llvm-utils.h"
  17. #include "probe-event.h"
  18. #include "probe-finder.h" // for MAX_PROBES
  19. #include "parse-events.h"
  20. #include "llvm-utils.h"
  21. #define DEFINE_PRINT_FN(name, level) \
  22. static int libbpf_##name(const char *fmt, ...) \
  23. { \
  24. va_list args; \
  25. int ret; \
  26. \
  27. va_start(args, fmt); \
  28. ret = veprintf(level, verbose, pr_fmt(fmt), args);\
  29. va_end(args); \
  30. return ret; \
  31. }
  32. DEFINE_PRINT_FN(warning, 1)
  33. DEFINE_PRINT_FN(info, 1)
  34. DEFINE_PRINT_FN(debug, 1)
  35. struct bpf_prog_priv {
  36. struct perf_probe_event pev;
  37. bool need_prologue;
  38. struct bpf_insn *insns_buf;
  39. int nr_types;
  40. int *type_mapping;
  41. };
  42. static bool libbpf_initialized;
  43. struct bpf_object *
  44. bpf__prepare_load_buffer(void *obj_buf, size_t obj_buf_sz, const char *name)
  45. {
  46. struct bpf_object *obj;
  47. if (!libbpf_initialized) {
  48. libbpf_set_print(libbpf_warning,
  49. libbpf_info,
  50. libbpf_debug);
  51. libbpf_initialized = true;
  52. }
  53. obj = bpf_object__open_buffer(obj_buf, obj_buf_sz, name);
  54. if (IS_ERR(obj)) {
  55. pr_debug("bpf: failed to load buffer\n");
  56. return ERR_PTR(-EINVAL);
  57. }
  58. return obj;
  59. }
  60. struct bpf_object *bpf__prepare_load(const char *filename, bool source)
  61. {
  62. struct bpf_object *obj;
  63. if (!libbpf_initialized) {
  64. libbpf_set_print(libbpf_warning,
  65. libbpf_info,
  66. libbpf_debug);
  67. libbpf_initialized = true;
  68. }
  69. if (source) {
  70. int err;
  71. void *obj_buf;
  72. size_t obj_buf_sz;
  73. err = llvm__compile_bpf(filename, &obj_buf, &obj_buf_sz);
  74. if (err)
  75. return ERR_PTR(-BPF_LOADER_ERRNO__COMPILE);
  76. obj = bpf_object__open_buffer(obj_buf, obj_buf_sz, filename);
  77. free(obj_buf);
  78. } else
  79. obj = bpf_object__open(filename);
  80. if (IS_ERR(obj)) {
  81. pr_debug("bpf: failed to load %s\n", filename);
  82. return obj;
  83. }
  84. return obj;
  85. }
  86. void bpf__clear(void)
  87. {
  88. struct bpf_object *obj, *tmp;
  89. bpf_object__for_each_safe(obj, tmp) {
  90. bpf__unprobe(obj);
  91. bpf_object__close(obj);
  92. }
  93. }
  94. static void
  95. clear_prog_priv(struct bpf_program *prog __maybe_unused,
  96. void *_priv)
  97. {
  98. struct bpf_prog_priv *priv = _priv;
  99. cleanup_perf_probe_events(&priv->pev, 1);
  100. zfree(&priv->insns_buf);
  101. zfree(&priv->type_mapping);
  102. free(priv);
  103. }
  104. static int
  105. prog_config__exec(const char *value, struct perf_probe_event *pev)
  106. {
  107. pev->uprobes = true;
  108. pev->target = strdup(value);
  109. if (!pev->target)
  110. return -ENOMEM;
  111. return 0;
  112. }
  113. static int
  114. prog_config__module(const char *value, struct perf_probe_event *pev)
  115. {
  116. pev->uprobes = false;
  117. pev->target = strdup(value);
  118. if (!pev->target)
  119. return -ENOMEM;
  120. return 0;
  121. }
  122. static int
  123. prog_config__bool(const char *value, bool *pbool, bool invert)
  124. {
  125. int err;
  126. bool bool_value;
  127. if (!pbool)
  128. return -EINVAL;
  129. err = strtobool(value, &bool_value);
  130. if (err)
  131. return err;
  132. *pbool = invert ? !bool_value : bool_value;
  133. return 0;
  134. }
  135. static int
  136. prog_config__inlines(const char *value,
  137. struct perf_probe_event *pev __maybe_unused)
  138. {
  139. return prog_config__bool(value, &probe_conf.no_inlines, true);
  140. }
  141. static int
  142. prog_config__force(const char *value,
  143. struct perf_probe_event *pev __maybe_unused)
  144. {
  145. return prog_config__bool(value, &probe_conf.force_add, false);
  146. }
  147. static struct {
  148. const char *key;
  149. const char *usage;
  150. const char *desc;
  151. int (*func)(const char *, struct perf_probe_event *);
  152. } bpf_prog_config_terms[] = {
  153. {
  154. .key = "exec",
  155. .usage = "exec=<full path of file>",
  156. .desc = "Set uprobe target",
  157. .func = prog_config__exec,
  158. },
  159. {
  160. .key = "module",
  161. .usage = "module=<module name> ",
  162. .desc = "Set kprobe module",
  163. .func = prog_config__module,
  164. },
  165. {
  166. .key = "inlines",
  167. .usage = "inlines=[yes|no] ",
  168. .desc = "Probe at inline symbol",
  169. .func = prog_config__inlines,
  170. },
  171. {
  172. .key = "force",
  173. .usage = "force=[yes|no] ",
  174. .desc = "Forcibly add events with existing name",
  175. .func = prog_config__force,
  176. },
  177. };
  178. static int
  179. do_prog_config(const char *key, const char *value,
  180. struct perf_probe_event *pev)
  181. {
  182. unsigned int i;
  183. pr_debug("config bpf program: %s=%s\n", key, value);
  184. for (i = 0; i < ARRAY_SIZE(bpf_prog_config_terms); i++)
  185. if (strcmp(key, bpf_prog_config_terms[i].key) == 0)
  186. return bpf_prog_config_terms[i].func(value, pev);
  187. pr_debug("BPF: ERROR: invalid program config option: %s=%s\n",
  188. key, value);
  189. pr_debug("\nHint: Valid options are:\n");
  190. for (i = 0; i < ARRAY_SIZE(bpf_prog_config_terms); i++)
  191. pr_debug("\t%s:\t%s\n", bpf_prog_config_terms[i].usage,
  192. bpf_prog_config_terms[i].desc);
  193. pr_debug("\n");
  194. return -BPF_LOADER_ERRNO__PROGCONF_TERM;
  195. }
  196. static const char *
  197. parse_prog_config_kvpair(const char *config_str, struct perf_probe_event *pev)
  198. {
  199. char *text = strdup(config_str);
  200. char *sep, *line;
  201. const char *main_str = NULL;
  202. int err = 0;
  203. if (!text) {
  204. pr_debug("No enough memory: dup config_str failed\n");
  205. return ERR_PTR(-ENOMEM);
  206. }
  207. line = text;
  208. while ((sep = strchr(line, ';'))) {
  209. char *equ;
  210. *sep = '\0';
  211. equ = strchr(line, '=');
  212. if (!equ) {
  213. pr_warning("WARNING: invalid config in BPF object: %s\n",
  214. line);
  215. pr_warning("\tShould be 'key=value'.\n");
  216. goto nextline;
  217. }
  218. *equ = '\0';
  219. err = do_prog_config(line, equ + 1, pev);
  220. if (err)
  221. break;
  222. nextline:
  223. line = sep + 1;
  224. }
  225. if (!err)
  226. main_str = config_str + (line - text);
  227. free(text);
  228. return err ? ERR_PTR(err) : main_str;
  229. }
  230. static int
  231. parse_prog_config(const char *config_str, struct perf_probe_event *pev)
  232. {
  233. int err;
  234. const char *main_str = parse_prog_config_kvpair(config_str, pev);
  235. if (IS_ERR(main_str))
  236. return PTR_ERR(main_str);
  237. err = parse_perf_probe_command(main_str, pev);
  238. if (err < 0) {
  239. pr_debug("bpf: '%s' is not a valid config string\n",
  240. config_str);
  241. /* parse failed, don't need clear pev. */
  242. return -BPF_LOADER_ERRNO__CONFIG;
  243. }
  244. return 0;
  245. }
  246. static int
  247. config_bpf_program(struct bpf_program *prog)
  248. {
  249. struct perf_probe_event *pev = NULL;
  250. struct bpf_prog_priv *priv = NULL;
  251. const char *config_str;
  252. int err;
  253. /* Initialize per-program probing setting */
  254. probe_conf.no_inlines = false;
  255. probe_conf.force_add = false;
  256. config_str = bpf_program__title(prog, false);
  257. if (IS_ERR(config_str)) {
  258. pr_debug("bpf: unable to get title for program\n");
  259. return PTR_ERR(config_str);
  260. }
  261. priv = calloc(sizeof(*priv), 1);
  262. if (!priv) {
  263. pr_debug("bpf: failed to alloc priv\n");
  264. return -ENOMEM;
  265. }
  266. pev = &priv->pev;
  267. pr_debug("bpf: config program '%s'\n", config_str);
  268. err = parse_prog_config(config_str, pev);
  269. if (err)
  270. goto errout;
  271. if (pev->group && strcmp(pev->group, PERF_BPF_PROBE_GROUP)) {
  272. pr_debug("bpf: '%s': group for event is set and not '%s'.\n",
  273. config_str, PERF_BPF_PROBE_GROUP);
  274. err = -BPF_LOADER_ERRNO__GROUP;
  275. goto errout;
  276. } else if (!pev->group)
  277. pev->group = strdup(PERF_BPF_PROBE_GROUP);
  278. if (!pev->group) {
  279. pr_debug("bpf: strdup failed\n");
  280. err = -ENOMEM;
  281. goto errout;
  282. }
  283. if (!pev->event) {
  284. pr_debug("bpf: '%s': event name is missing. Section name should be 'key=value'\n",
  285. config_str);
  286. err = -BPF_LOADER_ERRNO__EVENTNAME;
  287. goto errout;
  288. }
  289. pr_debug("bpf: config '%s' is ok\n", config_str);
  290. err = bpf_program__set_private(prog, priv, clear_prog_priv);
  291. if (err) {
  292. pr_debug("Failed to set priv for program '%s'\n", config_str);
  293. goto errout;
  294. }
  295. return 0;
  296. errout:
  297. if (pev)
  298. clear_perf_probe_event(pev);
  299. free(priv);
  300. return err;
  301. }
  302. static int bpf__prepare_probe(void)
  303. {
  304. static int err = 0;
  305. static bool initialized = false;
  306. /*
  307. * Make err static, so if init failed the first, bpf__prepare_probe()
  308. * fails each time without calling init_probe_symbol_maps multiple
  309. * times.
  310. */
  311. if (initialized)
  312. return err;
  313. initialized = true;
  314. err = init_probe_symbol_maps(false);
  315. if (err < 0)
  316. pr_debug("Failed to init_probe_symbol_maps\n");
  317. probe_conf.max_probes = MAX_PROBES;
  318. return err;
  319. }
  320. static int
  321. preproc_gen_prologue(struct bpf_program *prog, int n,
  322. struct bpf_insn *orig_insns, int orig_insns_cnt,
  323. struct bpf_prog_prep_result *res)
  324. {
  325. struct probe_trace_event *tev;
  326. struct perf_probe_event *pev;
  327. struct bpf_prog_priv *priv;
  328. struct bpf_insn *buf;
  329. size_t prologue_cnt = 0;
  330. int i, err;
  331. err = bpf_program__get_private(prog, (void **)&priv);
  332. if (err || !priv)
  333. goto errout;
  334. pev = &priv->pev;
  335. if (n < 0 || n >= priv->nr_types)
  336. goto errout;
  337. /* Find a tev belongs to that type */
  338. for (i = 0; i < pev->ntevs; i++) {
  339. if (priv->type_mapping[i] == n)
  340. break;
  341. }
  342. if (i >= pev->ntevs) {
  343. pr_debug("Internal error: prologue type %d not found\n", n);
  344. return -BPF_LOADER_ERRNO__PROLOGUE;
  345. }
  346. tev = &pev->tevs[i];
  347. buf = priv->insns_buf;
  348. err = bpf__gen_prologue(tev->args, tev->nargs,
  349. buf, &prologue_cnt,
  350. BPF_MAXINSNS - orig_insns_cnt);
  351. if (err) {
  352. const char *title;
  353. title = bpf_program__title(prog, false);
  354. if (!title)
  355. title = "[unknown]";
  356. pr_debug("Failed to generate prologue for program %s\n",
  357. title);
  358. return err;
  359. }
  360. memcpy(&buf[prologue_cnt], orig_insns,
  361. sizeof(struct bpf_insn) * orig_insns_cnt);
  362. res->new_insn_ptr = buf;
  363. res->new_insn_cnt = prologue_cnt + orig_insns_cnt;
  364. res->pfd = NULL;
  365. return 0;
  366. errout:
  367. pr_debug("Internal error in preproc_gen_prologue\n");
  368. return -BPF_LOADER_ERRNO__PROLOGUE;
  369. }
  370. /*
  371. * compare_tev_args is reflexive, transitive and antisymmetric.
  372. * I can proof it but this margin is too narrow to contain.
  373. */
  374. static int compare_tev_args(const void *ptev1, const void *ptev2)
  375. {
  376. int i, ret;
  377. const struct probe_trace_event *tev1 =
  378. *(const struct probe_trace_event **)ptev1;
  379. const struct probe_trace_event *tev2 =
  380. *(const struct probe_trace_event **)ptev2;
  381. ret = tev2->nargs - tev1->nargs;
  382. if (ret)
  383. return ret;
  384. for (i = 0; i < tev1->nargs; i++) {
  385. struct probe_trace_arg *arg1, *arg2;
  386. struct probe_trace_arg_ref *ref1, *ref2;
  387. arg1 = &tev1->args[i];
  388. arg2 = &tev2->args[i];
  389. ret = strcmp(arg1->value, arg2->value);
  390. if (ret)
  391. return ret;
  392. ref1 = arg1->ref;
  393. ref2 = arg2->ref;
  394. while (ref1 && ref2) {
  395. ret = ref2->offset - ref1->offset;
  396. if (ret)
  397. return ret;
  398. ref1 = ref1->next;
  399. ref2 = ref2->next;
  400. }
  401. if (ref1 || ref2)
  402. return ref2 ? 1 : -1;
  403. }
  404. return 0;
  405. }
  406. /*
  407. * Assign a type number to each tevs in a pev.
  408. * mapping is an array with same slots as tevs in that pev.
  409. * nr_types will be set to number of types.
  410. */
  411. static int map_prologue(struct perf_probe_event *pev, int *mapping,
  412. int *nr_types)
  413. {
  414. int i, type = 0;
  415. struct probe_trace_event **ptevs;
  416. size_t array_sz = sizeof(*ptevs) * pev->ntevs;
  417. ptevs = malloc(array_sz);
  418. if (!ptevs) {
  419. pr_debug("No ehough memory: alloc ptevs failed\n");
  420. return -ENOMEM;
  421. }
  422. pr_debug("In map_prologue, ntevs=%d\n", pev->ntevs);
  423. for (i = 0; i < pev->ntevs; i++)
  424. ptevs[i] = &pev->tevs[i];
  425. qsort(ptevs, pev->ntevs, sizeof(*ptevs),
  426. compare_tev_args);
  427. for (i = 0; i < pev->ntevs; i++) {
  428. int n;
  429. n = ptevs[i] - pev->tevs;
  430. if (i == 0) {
  431. mapping[n] = type;
  432. pr_debug("mapping[%d]=%d\n", n, type);
  433. continue;
  434. }
  435. if (compare_tev_args(ptevs + i, ptevs + i - 1) == 0)
  436. mapping[n] = type;
  437. else
  438. mapping[n] = ++type;
  439. pr_debug("mapping[%d]=%d\n", n, mapping[n]);
  440. }
  441. free(ptevs);
  442. *nr_types = type + 1;
  443. return 0;
  444. }
  445. static int hook_load_preprocessor(struct bpf_program *prog)
  446. {
  447. struct perf_probe_event *pev;
  448. struct bpf_prog_priv *priv;
  449. bool need_prologue = false;
  450. int err, i;
  451. err = bpf_program__get_private(prog, (void **)&priv);
  452. if (err || !priv) {
  453. pr_debug("Internal error when hook preprocessor\n");
  454. return -BPF_LOADER_ERRNO__INTERNAL;
  455. }
  456. pev = &priv->pev;
  457. for (i = 0; i < pev->ntevs; i++) {
  458. struct probe_trace_event *tev = &pev->tevs[i];
  459. if (tev->nargs > 0) {
  460. need_prologue = true;
  461. break;
  462. }
  463. }
  464. /*
  465. * Since all tevs don't have argument, we don't need generate
  466. * prologue.
  467. */
  468. if (!need_prologue) {
  469. priv->need_prologue = false;
  470. return 0;
  471. }
  472. priv->need_prologue = true;
  473. priv->insns_buf = malloc(sizeof(struct bpf_insn) * BPF_MAXINSNS);
  474. if (!priv->insns_buf) {
  475. pr_debug("No enough memory: alloc insns_buf failed\n");
  476. return -ENOMEM;
  477. }
  478. priv->type_mapping = malloc(sizeof(int) * pev->ntevs);
  479. if (!priv->type_mapping) {
  480. pr_debug("No enough memory: alloc type_mapping failed\n");
  481. return -ENOMEM;
  482. }
  483. memset(priv->type_mapping, -1,
  484. sizeof(int) * pev->ntevs);
  485. err = map_prologue(pev, priv->type_mapping, &priv->nr_types);
  486. if (err)
  487. return err;
  488. err = bpf_program__set_prep(prog, priv->nr_types,
  489. preproc_gen_prologue);
  490. return err;
  491. }
  492. int bpf__probe(struct bpf_object *obj)
  493. {
  494. int err = 0;
  495. struct bpf_program *prog;
  496. struct bpf_prog_priv *priv;
  497. struct perf_probe_event *pev;
  498. err = bpf__prepare_probe();
  499. if (err) {
  500. pr_debug("bpf__prepare_probe failed\n");
  501. return err;
  502. }
  503. bpf_object__for_each_program(prog, obj) {
  504. err = config_bpf_program(prog);
  505. if (err)
  506. goto out;
  507. err = bpf_program__get_private(prog, (void **)&priv);
  508. if (err || !priv)
  509. goto out;
  510. pev = &priv->pev;
  511. err = convert_perf_probe_events(pev, 1);
  512. if (err < 0) {
  513. pr_debug("bpf_probe: failed to convert perf probe events");
  514. goto out;
  515. }
  516. err = apply_perf_probe_events(pev, 1);
  517. if (err < 0) {
  518. pr_debug("bpf_probe: failed to apply perf probe events");
  519. goto out;
  520. }
  521. /*
  522. * After probing, let's consider prologue, which
  523. * adds program fetcher to BPF programs.
  524. *
  525. * hook_load_preprocessorr() hooks pre-processor
  526. * to bpf_program, let it generate prologue
  527. * dynamically during loading.
  528. */
  529. err = hook_load_preprocessor(prog);
  530. if (err)
  531. goto out;
  532. }
  533. out:
  534. return err < 0 ? err : 0;
  535. }
  536. #define EVENTS_WRITE_BUFSIZE 4096
  537. int bpf__unprobe(struct bpf_object *obj)
  538. {
  539. int err, ret = 0;
  540. struct bpf_program *prog;
  541. struct bpf_prog_priv *priv;
  542. bpf_object__for_each_program(prog, obj) {
  543. int i;
  544. err = bpf_program__get_private(prog, (void **)&priv);
  545. if (err || !priv)
  546. continue;
  547. for (i = 0; i < priv->pev.ntevs; i++) {
  548. struct probe_trace_event *tev = &priv->pev.tevs[i];
  549. char name_buf[EVENTS_WRITE_BUFSIZE];
  550. struct strfilter *delfilter;
  551. snprintf(name_buf, EVENTS_WRITE_BUFSIZE,
  552. "%s:%s", tev->group, tev->event);
  553. name_buf[EVENTS_WRITE_BUFSIZE - 1] = '\0';
  554. delfilter = strfilter__new(name_buf, NULL);
  555. if (!delfilter) {
  556. pr_debug("Failed to create filter for unprobing\n");
  557. ret = -ENOMEM;
  558. continue;
  559. }
  560. err = del_perf_probe_events(delfilter);
  561. strfilter__delete(delfilter);
  562. if (err) {
  563. pr_debug("Failed to delete %s\n", name_buf);
  564. ret = err;
  565. continue;
  566. }
  567. }
  568. }
  569. return ret;
  570. }
  571. int bpf__load(struct bpf_object *obj)
  572. {
  573. int err;
  574. err = bpf_object__load(obj);
  575. if (err) {
  576. pr_debug("bpf: load objects failed\n");
  577. return err;
  578. }
  579. return 0;
  580. }
  581. int bpf__foreach_tev(struct bpf_object *obj,
  582. bpf_prog_iter_callback_t func,
  583. void *arg)
  584. {
  585. struct bpf_program *prog;
  586. int err;
  587. bpf_object__for_each_program(prog, obj) {
  588. struct probe_trace_event *tev;
  589. struct perf_probe_event *pev;
  590. struct bpf_prog_priv *priv;
  591. int i, fd;
  592. err = bpf_program__get_private(prog,
  593. (void **)&priv);
  594. if (err || !priv) {
  595. pr_debug("bpf: failed to get private field\n");
  596. return -BPF_LOADER_ERRNO__INTERNAL;
  597. }
  598. pev = &priv->pev;
  599. for (i = 0; i < pev->ntevs; i++) {
  600. tev = &pev->tevs[i];
  601. if (priv->need_prologue) {
  602. int type = priv->type_mapping[i];
  603. fd = bpf_program__nth_fd(prog, type);
  604. } else {
  605. fd = bpf_program__fd(prog);
  606. }
  607. if (fd < 0) {
  608. pr_debug("bpf: failed to get file descriptor\n");
  609. return fd;
  610. }
  611. err = (*func)(tev, fd, arg);
  612. if (err) {
  613. pr_debug("bpf: call back failed, stop iterate\n");
  614. return err;
  615. }
  616. }
  617. }
  618. return 0;
  619. }
  620. enum bpf_map_op_type {
  621. BPF_MAP_OP_SET_VALUE,
  622. BPF_MAP_OP_SET_EVSEL,
  623. };
  624. enum bpf_map_key_type {
  625. BPF_MAP_KEY_ALL,
  626. BPF_MAP_KEY_RANGES,
  627. };
  628. struct bpf_map_op {
  629. struct list_head list;
  630. enum bpf_map_op_type op_type;
  631. enum bpf_map_key_type key_type;
  632. union {
  633. struct parse_events_array array;
  634. } k;
  635. union {
  636. u64 value;
  637. struct perf_evsel *evsel;
  638. } v;
  639. };
  640. struct bpf_map_priv {
  641. struct list_head ops_list;
  642. };
  643. static void
  644. bpf_map_op__delete(struct bpf_map_op *op)
  645. {
  646. if (!list_empty(&op->list))
  647. list_del(&op->list);
  648. if (op->key_type == BPF_MAP_KEY_RANGES)
  649. parse_events__clear_array(&op->k.array);
  650. free(op);
  651. }
  652. static void
  653. bpf_map_priv__purge(struct bpf_map_priv *priv)
  654. {
  655. struct bpf_map_op *pos, *n;
  656. list_for_each_entry_safe(pos, n, &priv->ops_list, list) {
  657. list_del_init(&pos->list);
  658. bpf_map_op__delete(pos);
  659. }
  660. }
  661. static void
  662. bpf_map_priv__clear(struct bpf_map *map __maybe_unused,
  663. void *_priv)
  664. {
  665. struct bpf_map_priv *priv = _priv;
  666. bpf_map_priv__purge(priv);
  667. free(priv);
  668. }
  669. static int
  670. bpf_map_op_setkey(struct bpf_map_op *op, struct parse_events_term *term)
  671. {
  672. op->key_type = BPF_MAP_KEY_ALL;
  673. if (!term)
  674. return 0;
  675. if (term->array.nr_ranges) {
  676. size_t memsz = term->array.nr_ranges *
  677. sizeof(op->k.array.ranges[0]);
  678. op->k.array.ranges = memdup(term->array.ranges, memsz);
  679. if (!op->k.array.ranges) {
  680. pr_debug("No enough memory to alloc indices for map\n");
  681. return -ENOMEM;
  682. }
  683. op->key_type = BPF_MAP_KEY_RANGES;
  684. op->k.array.nr_ranges = term->array.nr_ranges;
  685. }
  686. return 0;
  687. }
  688. static struct bpf_map_op *
  689. bpf_map_op__new(struct parse_events_term *term)
  690. {
  691. struct bpf_map_op *op;
  692. int err;
  693. op = zalloc(sizeof(*op));
  694. if (!op) {
  695. pr_debug("Failed to alloc bpf_map_op\n");
  696. return ERR_PTR(-ENOMEM);
  697. }
  698. INIT_LIST_HEAD(&op->list);
  699. err = bpf_map_op_setkey(op, term);
  700. if (err) {
  701. free(op);
  702. return ERR_PTR(err);
  703. }
  704. return op;
  705. }
  706. static struct bpf_map_op *
  707. bpf_map_op__clone(struct bpf_map_op *op)
  708. {
  709. struct bpf_map_op *newop;
  710. newop = memdup(op, sizeof(*op));
  711. if (!newop) {
  712. pr_debug("Failed to alloc bpf_map_op\n");
  713. return NULL;
  714. }
  715. INIT_LIST_HEAD(&newop->list);
  716. if (op->key_type == BPF_MAP_KEY_RANGES) {
  717. size_t memsz = op->k.array.nr_ranges *
  718. sizeof(op->k.array.ranges[0]);
  719. newop->k.array.ranges = memdup(op->k.array.ranges, memsz);
  720. if (!newop->k.array.ranges) {
  721. pr_debug("Failed to alloc indices for map\n");
  722. free(newop);
  723. return NULL;
  724. }
  725. }
  726. return newop;
  727. }
  728. static struct bpf_map_priv *
  729. bpf_map_priv__clone(struct bpf_map_priv *priv)
  730. {
  731. struct bpf_map_priv *newpriv;
  732. struct bpf_map_op *pos, *newop;
  733. newpriv = zalloc(sizeof(*newpriv));
  734. if (!newpriv) {
  735. pr_debug("No enough memory to alloc map private\n");
  736. return NULL;
  737. }
  738. INIT_LIST_HEAD(&newpriv->ops_list);
  739. list_for_each_entry(pos, &priv->ops_list, list) {
  740. newop = bpf_map_op__clone(pos);
  741. if (!newop) {
  742. bpf_map_priv__purge(newpriv);
  743. return NULL;
  744. }
  745. list_add_tail(&newop->list, &newpriv->ops_list);
  746. }
  747. return newpriv;
  748. }
  749. static int
  750. bpf_map__add_op(struct bpf_map *map, struct bpf_map_op *op)
  751. {
  752. const char *map_name = bpf_map__name(map);
  753. struct bpf_map_priv *priv = bpf_map__priv(map);
  754. if (IS_ERR(priv)) {
  755. pr_debug("Failed to get private from map %s\n", map_name);
  756. return PTR_ERR(priv);
  757. }
  758. if (!priv) {
  759. priv = zalloc(sizeof(*priv));
  760. if (!priv) {
  761. pr_debug("No enough memory to alloc map private\n");
  762. return -ENOMEM;
  763. }
  764. INIT_LIST_HEAD(&priv->ops_list);
  765. if (bpf_map__set_private(map, priv, bpf_map_priv__clear)) {
  766. free(priv);
  767. return -BPF_LOADER_ERRNO__INTERNAL;
  768. }
  769. }
  770. list_add_tail(&op->list, &priv->ops_list);
  771. return 0;
  772. }
  773. static struct bpf_map_op *
  774. bpf_map__add_newop(struct bpf_map *map, struct parse_events_term *term)
  775. {
  776. struct bpf_map_op *op;
  777. int err;
  778. op = bpf_map_op__new(term);
  779. if (IS_ERR(op))
  780. return op;
  781. err = bpf_map__add_op(map, op);
  782. if (err) {
  783. bpf_map_op__delete(op);
  784. return ERR_PTR(err);
  785. }
  786. return op;
  787. }
  788. static int
  789. __bpf_map__config_value(struct bpf_map *map,
  790. struct parse_events_term *term)
  791. {
  792. struct bpf_map_op *op;
  793. const char *map_name = bpf_map__name(map);
  794. const struct bpf_map_def *def = bpf_map__def(map);
  795. if (IS_ERR(def)) {
  796. pr_debug("Unable to get map definition from '%s'\n",
  797. map_name);
  798. return -BPF_LOADER_ERRNO__INTERNAL;
  799. }
  800. if (def->type != BPF_MAP_TYPE_ARRAY) {
  801. pr_debug("Map %s type is not BPF_MAP_TYPE_ARRAY\n",
  802. map_name);
  803. return -BPF_LOADER_ERRNO__OBJCONF_MAP_TYPE;
  804. }
  805. if (def->key_size < sizeof(unsigned int)) {
  806. pr_debug("Map %s has incorrect key size\n", map_name);
  807. return -BPF_LOADER_ERRNO__OBJCONF_MAP_KEYSIZE;
  808. }
  809. switch (def->value_size) {
  810. case 1:
  811. case 2:
  812. case 4:
  813. case 8:
  814. break;
  815. default:
  816. pr_debug("Map %s has incorrect value size\n", map_name);
  817. return -BPF_LOADER_ERRNO__OBJCONF_MAP_VALUESIZE;
  818. }
  819. op = bpf_map__add_newop(map, term);
  820. if (IS_ERR(op))
  821. return PTR_ERR(op);
  822. op->op_type = BPF_MAP_OP_SET_VALUE;
  823. op->v.value = term->val.num;
  824. return 0;
  825. }
  826. static int
  827. bpf_map__config_value(struct bpf_map *map,
  828. struct parse_events_term *term,
  829. struct perf_evlist *evlist __maybe_unused)
  830. {
  831. if (!term->err_val) {
  832. pr_debug("Config value not set\n");
  833. return -BPF_LOADER_ERRNO__OBJCONF_CONF;
  834. }
  835. if (term->type_val != PARSE_EVENTS__TERM_TYPE_NUM) {
  836. pr_debug("ERROR: wrong value type for 'value'\n");
  837. return -BPF_LOADER_ERRNO__OBJCONF_MAP_VALUE;
  838. }
  839. return __bpf_map__config_value(map, term);
  840. }
  841. static int
  842. __bpf_map__config_event(struct bpf_map *map,
  843. struct parse_events_term *term,
  844. struct perf_evlist *evlist)
  845. {
  846. struct perf_evsel *evsel;
  847. const struct bpf_map_def *def;
  848. struct bpf_map_op *op;
  849. const char *map_name = bpf_map__name(map);
  850. evsel = perf_evlist__find_evsel_by_str(evlist, term->val.str);
  851. if (!evsel) {
  852. pr_debug("Event (for '%s') '%s' doesn't exist\n",
  853. map_name, term->val.str);
  854. return -BPF_LOADER_ERRNO__OBJCONF_MAP_NOEVT;
  855. }
  856. def = bpf_map__def(map);
  857. if (IS_ERR(def)) {
  858. pr_debug("Unable to get map definition from '%s'\n",
  859. map_name);
  860. return PTR_ERR(def);
  861. }
  862. /*
  863. * No need to check key_size and value_size:
  864. * kernel has already checked them.
  865. */
  866. if (def->type != BPF_MAP_TYPE_PERF_EVENT_ARRAY) {
  867. pr_debug("Map %s type is not BPF_MAP_TYPE_PERF_EVENT_ARRAY\n",
  868. map_name);
  869. return -BPF_LOADER_ERRNO__OBJCONF_MAP_TYPE;
  870. }
  871. op = bpf_map__add_newop(map, term);
  872. if (IS_ERR(op))
  873. return PTR_ERR(op);
  874. op->op_type = BPF_MAP_OP_SET_EVSEL;
  875. op->v.evsel = evsel;
  876. return 0;
  877. }
  878. static int
  879. bpf_map__config_event(struct bpf_map *map,
  880. struct parse_events_term *term,
  881. struct perf_evlist *evlist)
  882. {
  883. if (!term->err_val) {
  884. pr_debug("Config value not set\n");
  885. return -BPF_LOADER_ERRNO__OBJCONF_CONF;
  886. }
  887. if (term->type_val != PARSE_EVENTS__TERM_TYPE_STR) {
  888. pr_debug("ERROR: wrong value type for 'event'\n");
  889. return -BPF_LOADER_ERRNO__OBJCONF_MAP_VALUE;
  890. }
  891. return __bpf_map__config_event(map, term, evlist);
  892. }
  893. struct bpf_obj_config__map_func {
  894. const char *config_opt;
  895. int (*config_func)(struct bpf_map *, struct parse_events_term *,
  896. struct perf_evlist *);
  897. };
  898. struct bpf_obj_config__map_func bpf_obj_config__map_funcs[] = {
  899. {"value", bpf_map__config_value},
  900. {"event", bpf_map__config_event},
  901. };
  902. static int
  903. config_map_indices_range_check(struct parse_events_term *term,
  904. struct bpf_map *map,
  905. const char *map_name)
  906. {
  907. struct parse_events_array *array = &term->array;
  908. const struct bpf_map_def *def;
  909. unsigned int i;
  910. if (!array->nr_ranges)
  911. return 0;
  912. if (!array->ranges) {
  913. pr_debug("ERROR: map %s: array->nr_ranges is %d but range array is NULL\n",
  914. map_name, (int)array->nr_ranges);
  915. return -BPF_LOADER_ERRNO__INTERNAL;
  916. }
  917. def = bpf_map__def(map);
  918. if (IS_ERR(def)) {
  919. pr_debug("ERROR: Unable to get map definition from '%s'\n",
  920. map_name);
  921. return -BPF_LOADER_ERRNO__INTERNAL;
  922. }
  923. for (i = 0; i < array->nr_ranges; i++) {
  924. unsigned int start = array->ranges[i].start;
  925. size_t length = array->ranges[i].length;
  926. unsigned int idx = start + length - 1;
  927. if (idx >= def->max_entries) {
  928. pr_debug("ERROR: index %d too large\n", idx);
  929. return -BPF_LOADER_ERRNO__OBJCONF_MAP_IDX2BIG;
  930. }
  931. }
  932. return 0;
  933. }
  934. static int
  935. bpf__obj_config_map(struct bpf_object *obj,
  936. struct parse_events_term *term,
  937. struct perf_evlist *evlist,
  938. int *key_scan_pos)
  939. {
  940. /* key is "map:<mapname>.<config opt>" */
  941. char *map_name = strdup(term->config + sizeof("map:") - 1);
  942. struct bpf_map *map;
  943. int err = -BPF_LOADER_ERRNO__OBJCONF_OPT;
  944. char *map_opt;
  945. size_t i;
  946. if (!map_name)
  947. return -ENOMEM;
  948. map_opt = strchr(map_name, '.');
  949. if (!map_opt) {
  950. pr_debug("ERROR: Invalid map config: %s\n", map_name);
  951. goto out;
  952. }
  953. *map_opt++ = '\0';
  954. if (*map_opt == '\0') {
  955. pr_debug("ERROR: Invalid map option: %s\n", term->config);
  956. goto out;
  957. }
  958. map = bpf_object__get_map_by_name(obj, map_name);
  959. if (!map) {
  960. pr_debug("ERROR: Map %s doesn't exist\n", map_name);
  961. err = -BPF_LOADER_ERRNO__OBJCONF_MAP_NOTEXIST;
  962. goto out;
  963. }
  964. *key_scan_pos += strlen(map_opt);
  965. err = config_map_indices_range_check(term, map, map_name);
  966. if (err)
  967. goto out;
  968. *key_scan_pos -= strlen(map_opt);
  969. for (i = 0; i < ARRAY_SIZE(bpf_obj_config__map_funcs); i++) {
  970. struct bpf_obj_config__map_func *func =
  971. &bpf_obj_config__map_funcs[i];
  972. if (strcmp(map_opt, func->config_opt) == 0) {
  973. err = func->config_func(map, term, evlist);
  974. goto out;
  975. }
  976. }
  977. pr_debug("ERROR: Invalid map config option '%s'\n", map_opt);
  978. err = -BPF_LOADER_ERRNO__OBJCONF_MAP_OPT;
  979. out:
  980. free(map_name);
  981. if (!err)
  982. key_scan_pos += strlen(map_opt);
  983. return err;
  984. }
  985. int bpf__config_obj(struct bpf_object *obj,
  986. struct parse_events_term *term,
  987. struct perf_evlist *evlist,
  988. int *error_pos)
  989. {
  990. int key_scan_pos = 0;
  991. int err;
  992. if (!obj || !term || !term->config)
  993. return -EINVAL;
  994. if (!prefixcmp(term->config, "map:")) {
  995. key_scan_pos = sizeof("map:") - 1;
  996. err = bpf__obj_config_map(obj, term, evlist, &key_scan_pos);
  997. goto out;
  998. }
  999. err = -BPF_LOADER_ERRNO__OBJCONF_OPT;
  1000. out:
  1001. if (error_pos)
  1002. *error_pos = key_scan_pos;
  1003. return err;
  1004. }
  1005. typedef int (*map_config_func_t)(const char *name, int map_fd,
  1006. const struct bpf_map_def *pdef,
  1007. struct bpf_map_op *op,
  1008. void *pkey, void *arg);
  1009. static int
  1010. foreach_key_array_all(map_config_func_t func,
  1011. void *arg, const char *name,
  1012. int map_fd, const struct bpf_map_def *pdef,
  1013. struct bpf_map_op *op)
  1014. {
  1015. unsigned int i;
  1016. int err;
  1017. for (i = 0; i < pdef->max_entries; i++) {
  1018. err = func(name, map_fd, pdef, op, &i, arg);
  1019. if (err) {
  1020. pr_debug("ERROR: failed to insert value to %s[%u]\n",
  1021. name, i);
  1022. return err;
  1023. }
  1024. }
  1025. return 0;
  1026. }
  1027. static int
  1028. foreach_key_array_ranges(map_config_func_t func, void *arg,
  1029. const char *name, int map_fd,
  1030. const struct bpf_map_def *pdef,
  1031. struct bpf_map_op *op)
  1032. {
  1033. unsigned int i, j;
  1034. int err;
  1035. for (i = 0; i < op->k.array.nr_ranges; i++) {
  1036. unsigned int start = op->k.array.ranges[i].start;
  1037. size_t length = op->k.array.ranges[i].length;
  1038. for (j = 0; j < length; j++) {
  1039. unsigned int idx = start + j;
  1040. err = func(name, map_fd, pdef, op, &idx, arg);
  1041. if (err) {
  1042. pr_debug("ERROR: failed to insert value to %s[%u]\n",
  1043. name, idx);
  1044. return err;
  1045. }
  1046. }
  1047. }
  1048. return 0;
  1049. }
  1050. static int
  1051. bpf_map_config_foreach_key(struct bpf_map *map,
  1052. map_config_func_t func,
  1053. void *arg)
  1054. {
  1055. int err, map_fd;
  1056. struct bpf_map_op *op;
  1057. const struct bpf_map_def *def;
  1058. const char *name = bpf_map__name(map);
  1059. struct bpf_map_priv *priv = bpf_map__priv(map);
  1060. if (IS_ERR(priv)) {
  1061. pr_debug("ERROR: failed to get private from map %s\n", name);
  1062. return -BPF_LOADER_ERRNO__INTERNAL;
  1063. }
  1064. if (!priv || list_empty(&priv->ops_list)) {
  1065. pr_debug("INFO: nothing to config for map %s\n", name);
  1066. return 0;
  1067. }
  1068. def = bpf_map__def(map);
  1069. if (IS_ERR(def)) {
  1070. pr_debug("ERROR: failed to get definition from map %s\n", name);
  1071. return -BPF_LOADER_ERRNO__INTERNAL;
  1072. }
  1073. map_fd = bpf_map__fd(map);
  1074. if (map_fd < 0) {
  1075. pr_debug("ERROR: failed to get fd from map %s\n", name);
  1076. return map_fd;
  1077. }
  1078. list_for_each_entry(op, &priv->ops_list, list) {
  1079. switch (def->type) {
  1080. case BPF_MAP_TYPE_ARRAY:
  1081. case BPF_MAP_TYPE_PERF_EVENT_ARRAY:
  1082. switch (op->key_type) {
  1083. case BPF_MAP_KEY_ALL:
  1084. err = foreach_key_array_all(func, arg, name,
  1085. map_fd, def, op);
  1086. break;
  1087. case BPF_MAP_KEY_RANGES:
  1088. err = foreach_key_array_ranges(func, arg, name,
  1089. map_fd, def,
  1090. op);
  1091. break;
  1092. default:
  1093. pr_debug("ERROR: keytype for map '%s' invalid\n",
  1094. name);
  1095. return -BPF_LOADER_ERRNO__INTERNAL;
  1096. }
  1097. if (err)
  1098. return err;
  1099. break;
  1100. default:
  1101. pr_debug("ERROR: type of '%s' incorrect\n", name);
  1102. return -BPF_LOADER_ERRNO__OBJCONF_MAP_TYPE;
  1103. }
  1104. }
  1105. return 0;
  1106. }
  1107. static int
  1108. apply_config_value_for_key(int map_fd, void *pkey,
  1109. size_t val_size, u64 val)
  1110. {
  1111. int err = 0;
  1112. switch (val_size) {
  1113. case 1: {
  1114. u8 _val = (u8)(val);
  1115. err = bpf_map_update_elem(map_fd, pkey, &_val, BPF_ANY);
  1116. break;
  1117. }
  1118. case 2: {
  1119. u16 _val = (u16)(val);
  1120. err = bpf_map_update_elem(map_fd, pkey, &_val, BPF_ANY);
  1121. break;
  1122. }
  1123. case 4: {
  1124. u32 _val = (u32)(val);
  1125. err = bpf_map_update_elem(map_fd, pkey, &_val, BPF_ANY);
  1126. break;
  1127. }
  1128. case 8: {
  1129. err = bpf_map_update_elem(map_fd, pkey, &val, BPF_ANY);
  1130. break;
  1131. }
  1132. default:
  1133. pr_debug("ERROR: invalid value size\n");
  1134. return -BPF_LOADER_ERRNO__OBJCONF_MAP_VALUESIZE;
  1135. }
  1136. if (err && errno)
  1137. err = -errno;
  1138. return err;
  1139. }
  1140. static int
  1141. apply_config_evsel_for_key(const char *name, int map_fd, void *pkey,
  1142. struct perf_evsel *evsel)
  1143. {
  1144. struct xyarray *xy = evsel->fd;
  1145. struct perf_event_attr *attr;
  1146. unsigned int key, events;
  1147. bool check_pass = false;
  1148. int *evt_fd;
  1149. int err;
  1150. if (!xy) {
  1151. pr_debug("ERROR: evsel not ready for map %s\n", name);
  1152. return -BPF_LOADER_ERRNO__INTERNAL;
  1153. }
  1154. if (xy->row_size / xy->entry_size != 1) {
  1155. pr_debug("ERROR: Dimension of target event is incorrect for map %s\n",
  1156. name);
  1157. return -BPF_LOADER_ERRNO__OBJCONF_MAP_EVTDIM;
  1158. }
  1159. attr = &evsel->attr;
  1160. if (attr->inherit) {
  1161. pr_debug("ERROR: Can't put inherit event into map %s\n", name);
  1162. return -BPF_LOADER_ERRNO__OBJCONF_MAP_EVTINH;
  1163. }
  1164. if (perf_evsel__is_bpf_output(evsel))
  1165. check_pass = true;
  1166. if (attr->type == PERF_TYPE_RAW)
  1167. check_pass = true;
  1168. if (attr->type == PERF_TYPE_HARDWARE)
  1169. check_pass = true;
  1170. if (!check_pass) {
  1171. pr_debug("ERROR: Event type is wrong for map %s\n", name);
  1172. return -BPF_LOADER_ERRNO__OBJCONF_MAP_EVTTYPE;
  1173. }
  1174. events = xy->entries / (xy->row_size / xy->entry_size);
  1175. key = *((unsigned int *)pkey);
  1176. if (key >= events) {
  1177. pr_debug("ERROR: there is no event %d for map %s\n",
  1178. key, name);
  1179. return -BPF_LOADER_ERRNO__OBJCONF_MAP_MAPSIZE;
  1180. }
  1181. evt_fd = xyarray__entry(xy, key, 0);
  1182. err = bpf_map_update_elem(map_fd, pkey, evt_fd, BPF_ANY);
  1183. if (err && errno)
  1184. err = -errno;
  1185. return err;
  1186. }
  1187. static int
  1188. apply_obj_config_map_for_key(const char *name, int map_fd,
  1189. const struct bpf_map_def *pdef,
  1190. struct bpf_map_op *op,
  1191. void *pkey, void *arg __maybe_unused)
  1192. {
  1193. int err;
  1194. switch (op->op_type) {
  1195. case BPF_MAP_OP_SET_VALUE:
  1196. err = apply_config_value_for_key(map_fd, pkey,
  1197. pdef->value_size,
  1198. op->v.value);
  1199. break;
  1200. case BPF_MAP_OP_SET_EVSEL:
  1201. err = apply_config_evsel_for_key(name, map_fd, pkey,
  1202. op->v.evsel);
  1203. break;
  1204. default:
  1205. pr_debug("ERROR: unknown value type for '%s'\n", name);
  1206. err = -BPF_LOADER_ERRNO__INTERNAL;
  1207. }
  1208. return err;
  1209. }
  1210. static int
  1211. apply_obj_config_map(struct bpf_map *map)
  1212. {
  1213. return bpf_map_config_foreach_key(map,
  1214. apply_obj_config_map_for_key,
  1215. NULL);
  1216. }
  1217. static int
  1218. apply_obj_config_object(struct bpf_object *obj)
  1219. {
  1220. struct bpf_map *map;
  1221. int err;
  1222. bpf_map__for_each(map, obj) {
  1223. err = apply_obj_config_map(map);
  1224. if (err)
  1225. return err;
  1226. }
  1227. return 0;
  1228. }
  1229. int bpf__apply_obj_config(void)
  1230. {
  1231. struct bpf_object *obj, *tmp;
  1232. int err;
  1233. bpf_object__for_each_safe(obj, tmp) {
  1234. err = apply_obj_config_object(obj);
  1235. if (err)
  1236. return err;
  1237. }
  1238. return 0;
  1239. }
  1240. #define bpf__for_each_map(pos, obj, objtmp) \
  1241. bpf_object__for_each_safe(obj, objtmp) \
  1242. bpf_map__for_each(pos, obj)
  1243. #define bpf__for_each_stdout_map(pos, obj, objtmp) \
  1244. bpf__for_each_map(pos, obj, objtmp) \
  1245. if (bpf_map__name(pos) && \
  1246. (strcmp("__bpf_stdout__", \
  1247. bpf_map__name(pos)) == 0))
  1248. int bpf__setup_stdout(struct perf_evlist *evlist __maybe_unused)
  1249. {
  1250. struct bpf_map_priv *tmpl_priv = NULL;
  1251. struct bpf_object *obj, *tmp;
  1252. struct perf_evsel *evsel = NULL;
  1253. struct bpf_map *map;
  1254. int err;
  1255. bool need_init = false;
  1256. bpf__for_each_stdout_map(map, obj, tmp) {
  1257. struct bpf_map_priv *priv = bpf_map__priv(map);
  1258. if (IS_ERR(priv))
  1259. return -BPF_LOADER_ERRNO__INTERNAL;
  1260. /*
  1261. * No need to check map type: type should have been
  1262. * verified by kernel.
  1263. */
  1264. if (!need_init && !priv)
  1265. need_init = !priv;
  1266. if (!tmpl_priv && priv)
  1267. tmpl_priv = priv;
  1268. }
  1269. if (!need_init)
  1270. return 0;
  1271. if (!tmpl_priv) {
  1272. err = parse_events(evlist, "bpf-output/no-inherit=1,name=__bpf_stdout__/",
  1273. NULL);
  1274. if (err) {
  1275. pr_debug("ERROR: failed to create bpf-output event\n");
  1276. return -err;
  1277. }
  1278. evsel = perf_evlist__last(evlist);
  1279. }
  1280. bpf__for_each_stdout_map(map, obj, tmp) {
  1281. struct bpf_map_priv *priv = bpf_map__priv(map);
  1282. if (IS_ERR(priv))
  1283. return -BPF_LOADER_ERRNO__INTERNAL;
  1284. if (priv)
  1285. continue;
  1286. if (tmpl_priv) {
  1287. priv = bpf_map_priv__clone(tmpl_priv);
  1288. if (!priv)
  1289. return -ENOMEM;
  1290. err = bpf_map__set_private(map, priv, bpf_map_priv__clear);
  1291. if (err) {
  1292. bpf_map_priv__clear(map, priv);
  1293. return err;
  1294. }
  1295. } else if (evsel) {
  1296. struct bpf_map_op *op;
  1297. op = bpf_map__add_newop(map, NULL);
  1298. if (IS_ERR(op))
  1299. return PTR_ERR(op);
  1300. op->op_type = BPF_MAP_OP_SET_EVSEL;
  1301. op->v.evsel = evsel;
  1302. }
  1303. }
  1304. return 0;
  1305. }
  1306. #define ERRNO_OFFSET(e) ((e) - __BPF_LOADER_ERRNO__START)
  1307. #define ERRCODE_OFFSET(c) ERRNO_OFFSET(BPF_LOADER_ERRNO__##c)
  1308. #define NR_ERRNO (__BPF_LOADER_ERRNO__END - __BPF_LOADER_ERRNO__START)
  1309. static const char *bpf_loader_strerror_table[NR_ERRNO] = {
  1310. [ERRCODE_OFFSET(CONFIG)] = "Invalid config string",
  1311. [ERRCODE_OFFSET(GROUP)] = "Invalid group name",
  1312. [ERRCODE_OFFSET(EVENTNAME)] = "No event name found in config string",
  1313. [ERRCODE_OFFSET(INTERNAL)] = "BPF loader internal error",
  1314. [ERRCODE_OFFSET(COMPILE)] = "Error when compiling BPF scriptlet",
  1315. [ERRCODE_OFFSET(PROGCONF_TERM)] = "Invalid program config term in config string",
  1316. [ERRCODE_OFFSET(PROLOGUE)] = "Failed to generate prologue",
  1317. [ERRCODE_OFFSET(PROLOGUE2BIG)] = "Prologue too big for program",
  1318. [ERRCODE_OFFSET(PROLOGUEOOB)] = "Offset out of bound for prologue",
  1319. [ERRCODE_OFFSET(OBJCONF_OPT)] = "Invalid object config option",
  1320. [ERRCODE_OFFSET(OBJCONF_CONF)] = "Config value not set (missing '=')",
  1321. [ERRCODE_OFFSET(OBJCONF_MAP_OPT)] = "Invalid object map config option",
  1322. [ERRCODE_OFFSET(OBJCONF_MAP_NOTEXIST)] = "Target map doesn't exist",
  1323. [ERRCODE_OFFSET(OBJCONF_MAP_VALUE)] = "Incorrect value type for map",
  1324. [ERRCODE_OFFSET(OBJCONF_MAP_TYPE)] = "Incorrect map type",
  1325. [ERRCODE_OFFSET(OBJCONF_MAP_KEYSIZE)] = "Incorrect map key size",
  1326. [ERRCODE_OFFSET(OBJCONF_MAP_VALUESIZE)] = "Incorrect map value size",
  1327. [ERRCODE_OFFSET(OBJCONF_MAP_NOEVT)] = "Event not found for map setting",
  1328. [ERRCODE_OFFSET(OBJCONF_MAP_MAPSIZE)] = "Invalid map size for event setting",
  1329. [ERRCODE_OFFSET(OBJCONF_MAP_EVTDIM)] = "Event dimension too large",
  1330. [ERRCODE_OFFSET(OBJCONF_MAP_EVTINH)] = "Doesn't support inherit event",
  1331. [ERRCODE_OFFSET(OBJCONF_MAP_EVTTYPE)] = "Wrong event type for map",
  1332. [ERRCODE_OFFSET(OBJCONF_MAP_IDX2BIG)] = "Index too large",
  1333. };
  1334. static int
  1335. bpf_loader_strerror(int err, char *buf, size_t size)
  1336. {
  1337. char sbuf[STRERR_BUFSIZE];
  1338. const char *msg;
  1339. if (!buf || !size)
  1340. return -1;
  1341. err = err > 0 ? err : -err;
  1342. if (err >= __LIBBPF_ERRNO__START)
  1343. return libbpf_strerror(err, buf, size);
  1344. if (err >= __BPF_LOADER_ERRNO__START && err < __BPF_LOADER_ERRNO__END) {
  1345. msg = bpf_loader_strerror_table[ERRNO_OFFSET(err)];
  1346. snprintf(buf, size, "%s", msg);
  1347. buf[size - 1] = '\0';
  1348. return 0;
  1349. }
  1350. if (err >= __BPF_LOADER_ERRNO__END)
  1351. snprintf(buf, size, "Unknown bpf loader error %d", err);
  1352. else
  1353. snprintf(buf, size, "%s",
  1354. strerror_r(err, sbuf, sizeof(sbuf)));
  1355. buf[size - 1] = '\0';
  1356. return -1;
  1357. }
  1358. #define bpf__strerror_head(err, buf, size) \
  1359. char sbuf[STRERR_BUFSIZE], *emsg;\
  1360. if (!size)\
  1361. return 0;\
  1362. if (err < 0)\
  1363. err = -err;\
  1364. bpf_loader_strerror(err, sbuf, sizeof(sbuf));\
  1365. emsg = sbuf;\
  1366. switch (err) {\
  1367. default:\
  1368. scnprintf(buf, size, "%s", emsg);\
  1369. break;
  1370. #define bpf__strerror_entry(val, fmt...)\
  1371. case val: {\
  1372. scnprintf(buf, size, fmt);\
  1373. break;\
  1374. }
  1375. #define bpf__strerror_end(buf, size)\
  1376. }\
  1377. buf[size - 1] = '\0';
  1378. int bpf__strerror_prepare_load(const char *filename, bool source,
  1379. int err, char *buf, size_t size)
  1380. {
  1381. size_t n;
  1382. int ret;
  1383. n = snprintf(buf, size, "Failed to load %s%s: ",
  1384. filename, source ? " from source" : "");
  1385. if (n >= size) {
  1386. buf[size - 1] = '\0';
  1387. return 0;
  1388. }
  1389. buf += n;
  1390. size -= n;
  1391. ret = bpf_loader_strerror(err, buf, size);
  1392. buf[size - 1] = '\0';
  1393. return ret;
  1394. }
  1395. int bpf__strerror_probe(struct bpf_object *obj __maybe_unused,
  1396. int err, char *buf, size_t size)
  1397. {
  1398. bpf__strerror_head(err, buf, size);
  1399. case BPF_LOADER_ERRNO__PROGCONF_TERM: {
  1400. scnprintf(buf, size, "%s (add -v to see detail)", emsg);
  1401. break;
  1402. }
  1403. bpf__strerror_entry(EEXIST, "Probe point exist. Try 'perf probe -d \"*\"' and set 'force=yes'");
  1404. bpf__strerror_entry(EACCES, "You need to be root");
  1405. bpf__strerror_entry(EPERM, "You need to be root, and /proc/sys/kernel/kptr_restrict should be 0");
  1406. bpf__strerror_entry(ENOENT, "You need to check probing points in BPF file");
  1407. bpf__strerror_end(buf, size);
  1408. return 0;
  1409. }
  1410. int bpf__strerror_load(struct bpf_object *obj,
  1411. int err, char *buf, size_t size)
  1412. {
  1413. bpf__strerror_head(err, buf, size);
  1414. case LIBBPF_ERRNO__KVER: {
  1415. unsigned int obj_kver = bpf_object__get_kversion(obj);
  1416. unsigned int real_kver;
  1417. if (fetch_kernel_version(&real_kver, NULL, 0)) {
  1418. scnprintf(buf, size, "Unable to fetch kernel version");
  1419. break;
  1420. }
  1421. if (obj_kver != real_kver) {
  1422. scnprintf(buf, size,
  1423. "'version' ("KVER_FMT") doesn't match running kernel ("KVER_FMT")",
  1424. KVER_PARAM(obj_kver),
  1425. KVER_PARAM(real_kver));
  1426. break;
  1427. }
  1428. scnprintf(buf, size, "Failed to load program for unknown reason");
  1429. break;
  1430. }
  1431. bpf__strerror_end(buf, size);
  1432. return 0;
  1433. }
  1434. int bpf__strerror_config_obj(struct bpf_object *obj __maybe_unused,
  1435. struct parse_events_term *term __maybe_unused,
  1436. struct perf_evlist *evlist __maybe_unused,
  1437. int *error_pos __maybe_unused, int err,
  1438. char *buf, size_t size)
  1439. {
  1440. bpf__strerror_head(err, buf, size);
  1441. bpf__strerror_entry(BPF_LOADER_ERRNO__OBJCONF_MAP_TYPE,
  1442. "Can't use this config term with this map type");
  1443. bpf__strerror_end(buf, size);
  1444. return 0;
  1445. }
  1446. int bpf__strerror_apply_obj_config(int err, char *buf, size_t size)
  1447. {
  1448. bpf__strerror_head(err, buf, size);
  1449. bpf__strerror_entry(BPF_LOADER_ERRNO__OBJCONF_MAP_EVTDIM,
  1450. "Cannot set event to BPF map in multi-thread tracing");
  1451. bpf__strerror_entry(BPF_LOADER_ERRNO__OBJCONF_MAP_EVTINH,
  1452. "%s (Hint: use -i to turn off inherit)", emsg);
  1453. bpf__strerror_entry(BPF_LOADER_ERRNO__OBJCONF_MAP_EVTTYPE,
  1454. "Can only put raw, hardware and BPF output event into a BPF map");
  1455. bpf__strerror_end(buf, size);
  1456. return 0;
  1457. }
  1458. int bpf__strerror_setup_stdout(struct perf_evlist *evlist __maybe_unused,
  1459. int err, char *buf, size_t size)
  1460. {
  1461. bpf__strerror_head(err, buf, size);
  1462. bpf__strerror_end(buf, size);
  1463. return 0;
  1464. }