link.c 32 KB

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  1. // SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
  2. /* Copyright (C) 2020 Facebook */
  3. #include <errno.h>
  4. #include <linux/err.h>
  5. #include <linux/netfilter.h>
  6. #include <linux/netfilter_arp.h>
  7. #include <linux/perf_event.h>
  8. #include <net/if.h>
  9. #include <stdio.h>
  10. #include <unistd.h>
  11. #include <bpf/bpf.h>
  12. #include <bpf/hashmap.h>
  13. #include "json_writer.h"
  14. #include "main.h"
  15. #include "xlated_dumper.h"
  16. #define PERF_HW_CACHE_LEN 128
  17. static struct hashmap *link_table;
  18. static struct dump_data dd;
  19. static const char *perf_type_name[PERF_TYPE_MAX] = {
  20. [PERF_TYPE_HARDWARE] = "hardware",
  21. [PERF_TYPE_SOFTWARE] = "software",
  22. [PERF_TYPE_TRACEPOINT] = "tracepoint",
  23. [PERF_TYPE_HW_CACHE] = "hw-cache",
  24. [PERF_TYPE_RAW] = "raw",
  25. [PERF_TYPE_BREAKPOINT] = "breakpoint",
  26. };
  27. const char *event_symbols_hw[PERF_COUNT_HW_MAX] = {
  28. [PERF_COUNT_HW_CPU_CYCLES] = "cpu-cycles",
  29. [PERF_COUNT_HW_INSTRUCTIONS] = "instructions",
  30. [PERF_COUNT_HW_CACHE_REFERENCES] = "cache-references",
  31. [PERF_COUNT_HW_CACHE_MISSES] = "cache-misses",
  32. [PERF_COUNT_HW_BRANCH_INSTRUCTIONS] = "branch-instructions",
  33. [PERF_COUNT_HW_BRANCH_MISSES] = "branch-misses",
  34. [PERF_COUNT_HW_BUS_CYCLES] = "bus-cycles",
  35. [PERF_COUNT_HW_STALLED_CYCLES_FRONTEND] = "stalled-cycles-frontend",
  36. [PERF_COUNT_HW_STALLED_CYCLES_BACKEND] = "stalled-cycles-backend",
  37. [PERF_COUNT_HW_REF_CPU_CYCLES] = "ref-cycles",
  38. };
  39. const char *event_symbols_sw[PERF_COUNT_SW_MAX] = {
  40. [PERF_COUNT_SW_CPU_CLOCK] = "cpu-clock",
  41. [PERF_COUNT_SW_TASK_CLOCK] = "task-clock",
  42. [PERF_COUNT_SW_PAGE_FAULTS] = "page-faults",
  43. [PERF_COUNT_SW_CONTEXT_SWITCHES] = "context-switches",
  44. [PERF_COUNT_SW_CPU_MIGRATIONS] = "cpu-migrations",
  45. [PERF_COUNT_SW_PAGE_FAULTS_MIN] = "minor-faults",
  46. [PERF_COUNT_SW_PAGE_FAULTS_MAJ] = "major-faults",
  47. [PERF_COUNT_SW_ALIGNMENT_FAULTS] = "alignment-faults",
  48. [PERF_COUNT_SW_EMULATION_FAULTS] = "emulation-faults",
  49. [PERF_COUNT_SW_DUMMY] = "dummy",
  50. [PERF_COUNT_SW_BPF_OUTPUT] = "bpf-output",
  51. [PERF_COUNT_SW_CGROUP_SWITCHES] = "cgroup-switches",
  52. };
  53. const char *evsel__hw_cache[PERF_COUNT_HW_CACHE_MAX] = {
  54. [PERF_COUNT_HW_CACHE_L1D] = "L1-dcache",
  55. [PERF_COUNT_HW_CACHE_L1I] = "L1-icache",
  56. [PERF_COUNT_HW_CACHE_LL] = "LLC",
  57. [PERF_COUNT_HW_CACHE_DTLB] = "dTLB",
  58. [PERF_COUNT_HW_CACHE_ITLB] = "iTLB",
  59. [PERF_COUNT_HW_CACHE_BPU] = "branch",
  60. [PERF_COUNT_HW_CACHE_NODE] = "node",
  61. };
  62. const char *evsel__hw_cache_op[PERF_COUNT_HW_CACHE_OP_MAX] = {
  63. [PERF_COUNT_HW_CACHE_OP_READ] = "load",
  64. [PERF_COUNT_HW_CACHE_OP_WRITE] = "store",
  65. [PERF_COUNT_HW_CACHE_OP_PREFETCH] = "prefetch",
  66. };
  67. const char *evsel__hw_cache_result[PERF_COUNT_HW_CACHE_RESULT_MAX] = {
  68. [PERF_COUNT_HW_CACHE_RESULT_ACCESS] = "refs",
  69. [PERF_COUNT_HW_CACHE_RESULT_MISS] = "misses",
  70. };
  71. #define perf_event_name(array, id) ({ \
  72. const char *event_str = NULL; \
  73. \
  74. if ((id) < ARRAY_SIZE(array)) \
  75. event_str = array[id]; \
  76. event_str; \
  77. })
  78. static int link_parse_fd(int *argc, char ***argv)
  79. {
  80. int fd;
  81. if (is_prefix(**argv, "id")) {
  82. unsigned int id;
  83. char *endptr;
  84. NEXT_ARGP();
  85. id = strtoul(**argv, &endptr, 0);
  86. if (*endptr) {
  87. p_err("can't parse %s as ID", **argv);
  88. return -1;
  89. }
  90. NEXT_ARGP();
  91. fd = bpf_link_get_fd_by_id(id);
  92. if (fd < 0)
  93. p_err("failed to get link with ID %d: %s", id, strerror(errno));
  94. return fd;
  95. } else if (is_prefix(**argv, "pinned")) {
  96. char *path;
  97. NEXT_ARGP();
  98. path = **argv;
  99. NEXT_ARGP();
  100. return open_obj_pinned_any(path, BPF_OBJ_LINK);
  101. }
  102. p_err("expected 'id' or 'pinned', got: '%s'?", **argv);
  103. return -1;
  104. }
  105. static void
  106. show_link_header_json(struct bpf_link_info *info, json_writer_t *wtr)
  107. {
  108. const char *link_type_str;
  109. jsonw_uint_field(wtr, "id", info->id);
  110. link_type_str = libbpf_bpf_link_type_str(info->type);
  111. if (link_type_str)
  112. jsonw_string_field(wtr, "type", link_type_str);
  113. else
  114. jsonw_uint_field(wtr, "type", info->type);
  115. jsonw_uint_field(json_wtr, "prog_id", info->prog_id);
  116. }
  117. static void show_link_attach_type_json(__u32 attach_type, json_writer_t *wtr)
  118. {
  119. const char *attach_type_str;
  120. attach_type_str = libbpf_bpf_attach_type_str(attach_type);
  121. if (attach_type_str)
  122. jsonw_string_field(wtr, "attach_type", attach_type_str);
  123. else
  124. jsonw_uint_field(wtr, "attach_type", attach_type);
  125. }
  126. static void show_link_ifindex_json(__u32 ifindex, json_writer_t *wtr)
  127. {
  128. char devname[IF_NAMESIZE] = "(unknown)";
  129. if (ifindex)
  130. if_indextoname(ifindex, devname);
  131. else
  132. snprintf(devname, sizeof(devname), "(detached)");
  133. jsonw_string_field(wtr, "devname", devname);
  134. jsonw_uint_field(wtr, "ifindex", ifindex);
  135. }
  136. static bool is_iter_map_target(const char *target_name)
  137. {
  138. return strcmp(target_name, "bpf_map_elem") == 0 ||
  139. strcmp(target_name, "bpf_sk_storage_map") == 0;
  140. }
  141. static bool is_iter_cgroup_target(const char *target_name)
  142. {
  143. return strcmp(target_name, "cgroup") == 0;
  144. }
  145. static const char *cgroup_order_string(__u32 order)
  146. {
  147. switch (order) {
  148. case BPF_CGROUP_ITER_ORDER_UNSPEC:
  149. return "order_unspec";
  150. case BPF_CGROUP_ITER_SELF_ONLY:
  151. return "self_only";
  152. case BPF_CGROUP_ITER_DESCENDANTS_PRE:
  153. return "descendants_pre";
  154. case BPF_CGROUP_ITER_DESCENDANTS_POST:
  155. return "descendants_post";
  156. case BPF_CGROUP_ITER_ANCESTORS_UP:
  157. return "ancestors_up";
  158. default: /* won't happen */
  159. return "unknown";
  160. }
  161. }
  162. static bool is_iter_task_target(const char *target_name)
  163. {
  164. return strcmp(target_name, "task") == 0 ||
  165. strcmp(target_name, "task_file") == 0 ||
  166. strcmp(target_name, "task_vma") == 0;
  167. }
  168. static void show_iter_json(struct bpf_link_info *info, json_writer_t *wtr)
  169. {
  170. const char *target_name = u64_to_ptr(info->iter.target_name);
  171. jsonw_string_field(wtr, "target_name", target_name);
  172. if (is_iter_map_target(target_name))
  173. jsonw_uint_field(wtr, "map_id", info->iter.map.map_id);
  174. else if (is_iter_task_target(target_name)) {
  175. if (info->iter.task.tid)
  176. jsonw_uint_field(wtr, "tid", info->iter.task.tid);
  177. else if (info->iter.task.pid)
  178. jsonw_uint_field(wtr, "pid", info->iter.task.pid);
  179. }
  180. if (is_iter_cgroup_target(target_name)) {
  181. jsonw_lluint_field(wtr, "cgroup_id", info->iter.cgroup.cgroup_id);
  182. jsonw_string_field(wtr, "order",
  183. cgroup_order_string(info->iter.cgroup.order));
  184. }
  185. }
  186. void netfilter_dump_json(const struct bpf_link_info *info, json_writer_t *wtr)
  187. {
  188. jsonw_uint_field(json_wtr, "pf",
  189. info->netfilter.pf);
  190. jsonw_uint_field(json_wtr, "hook",
  191. info->netfilter.hooknum);
  192. jsonw_int_field(json_wtr, "prio",
  193. info->netfilter.priority);
  194. jsonw_uint_field(json_wtr, "flags",
  195. info->netfilter.flags);
  196. }
  197. static int get_prog_info(int prog_id, struct bpf_prog_info *info)
  198. {
  199. __u32 len = sizeof(*info);
  200. int err, prog_fd;
  201. prog_fd = bpf_prog_get_fd_by_id(prog_id);
  202. if (prog_fd < 0)
  203. return prog_fd;
  204. memset(info, 0, sizeof(*info));
  205. err = bpf_prog_get_info_by_fd(prog_fd, info, &len);
  206. if (err)
  207. p_err("can't get prog info: %s", strerror(errno));
  208. close(prog_fd);
  209. return err;
  210. }
  211. struct addr_cookie {
  212. __u64 addr;
  213. __u64 cookie;
  214. };
  215. static int cmp_addr_cookie(const void *A, const void *B)
  216. {
  217. const struct addr_cookie *a = A, *b = B;
  218. if (a->addr == b->addr)
  219. return 0;
  220. return a->addr < b->addr ? -1 : 1;
  221. }
  222. static struct addr_cookie *
  223. get_addr_cookie_array(__u64 *addrs, __u64 *cookies, __u32 count)
  224. {
  225. struct addr_cookie *data;
  226. __u32 i;
  227. data = calloc(count, sizeof(data[0]));
  228. if (!data) {
  229. p_err("mem alloc failed");
  230. return NULL;
  231. }
  232. for (i = 0; i < count; i++) {
  233. data[i].addr = addrs[i];
  234. data[i].cookie = cookies[i];
  235. }
  236. qsort(data, count, sizeof(data[0]), cmp_addr_cookie);
  237. return data;
  238. }
  239. static void
  240. show_kprobe_multi_json(struct bpf_link_info *info, json_writer_t *wtr)
  241. {
  242. struct addr_cookie *data;
  243. __u32 i, j = 0;
  244. jsonw_bool_field(json_wtr, "retprobe",
  245. info->kprobe_multi.flags & BPF_F_KPROBE_MULTI_RETURN);
  246. jsonw_uint_field(json_wtr, "func_cnt", info->kprobe_multi.count);
  247. jsonw_uint_field(json_wtr, "missed", info->kprobe_multi.missed);
  248. jsonw_name(json_wtr, "funcs");
  249. jsonw_start_array(json_wtr);
  250. data = get_addr_cookie_array(u64_to_ptr(info->kprobe_multi.addrs),
  251. u64_to_ptr(info->kprobe_multi.cookies),
  252. info->kprobe_multi.count);
  253. if (!data)
  254. return;
  255. /* Load it once for all. */
  256. if (!dd.sym_count)
  257. kernel_syms_load(&dd);
  258. if (!dd.sym_count)
  259. goto error;
  260. for (i = 0; i < dd.sym_count; i++) {
  261. if (dd.sym_mapping[i].address != data[j].addr)
  262. continue;
  263. jsonw_start_object(json_wtr);
  264. jsonw_uint_field(json_wtr, "addr", dd.sym_mapping[i].address);
  265. jsonw_string_field(json_wtr, "func", dd.sym_mapping[i].name);
  266. /* Print null if it is vmlinux */
  267. if (dd.sym_mapping[i].module[0] == '\0') {
  268. jsonw_name(json_wtr, "module");
  269. jsonw_null(json_wtr);
  270. } else {
  271. jsonw_string_field(json_wtr, "module", dd.sym_mapping[i].module);
  272. }
  273. jsonw_uint_field(json_wtr, "cookie", data[j].cookie);
  274. jsonw_end_object(json_wtr);
  275. if (j++ == info->kprobe_multi.count)
  276. break;
  277. }
  278. jsonw_end_array(json_wtr);
  279. error:
  280. free(data);
  281. }
  282. static __u64 *u64_to_arr(__u64 val)
  283. {
  284. return (__u64 *) u64_to_ptr(val);
  285. }
  286. static void
  287. show_uprobe_multi_json(struct bpf_link_info *info, json_writer_t *wtr)
  288. {
  289. __u32 i;
  290. jsonw_bool_field(json_wtr, "retprobe",
  291. info->uprobe_multi.flags & BPF_F_UPROBE_MULTI_RETURN);
  292. jsonw_string_field(json_wtr, "path", (char *) u64_to_ptr(info->uprobe_multi.path));
  293. jsonw_uint_field(json_wtr, "func_cnt", info->uprobe_multi.count);
  294. jsonw_int_field(json_wtr, "pid", (int) info->uprobe_multi.pid);
  295. jsonw_name(json_wtr, "funcs");
  296. jsonw_start_array(json_wtr);
  297. for (i = 0; i < info->uprobe_multi.count; i++) {
  298. jsonw_start_object(json_wtr);
  299. jsonw_uint_field(json_wtr, "offset",
  300. u64_to_arr(info->uprobe_multi.offsets)[i]);
  301. jsonw_uint_field(json_wtr, "ref_ctr_offset",
  302. u64_to_arr(info->uprobe_multi.ref_ctr_offsets)[i]);
  303. jsonw_uint_field(json_wtr, "cookie",
  304. u64_to_arr(info->uprobe_multi.cookies)[i]);
  305. jsonw_end_object(json_wtr);
  306. }
  307. jsonw_end_array(json_wtr);
  308. }
  309. static void
  310. show_perf_event_kprobe_json(struct bpf_link_info *info, json_writer_t *wtr)
  311. {
  312. jsonw_bool_field(wtr, "retprobe", info->perf_event.type == BPF_PERF_EVENT_KRETPROBE);
  313. jsonw_uint_field(wtr, "addr", info->perf_event.kprobe.addr);
  314. jsonw_string_field(wtr, "func",
  315. u64_to_ptr(info->perf_event.kprobe.func_name));
  316. jsonw_uint_field(wtr, "offset", info->perf_event.kprobe.offset);
  317. jsonw_uint_field(wtr, "missed", info->perf_event.kprobe.missed);
  318. jsonw_uint_field(wtr, "cookie", info->perf_event.kprobe.cookie);
  319. }
  320. static void
  321. show_perf_event_uprobe_json(struct bpf_link_info *info, json_writer_t *wtr)
  322. {
  323. jsonw_bool_field(wtr, "retprobe", info->perf_event.type == BPF_PERF_EVENT_URETPROBE);
  324. jsonw_string_field(wtr, "file",
  325. u64_to_ptr(info->perf_event.uprobe.file_name));
  326. jsonw_uint_field(wtr, "offset", info->perf_event.uprobe.offset);
  327. jsonw_uint_field(wtr, "cookie", info->perf_event.uprobe.cookie);
  328. }
  329. static void
  330. show_perf_event_tracepoint_json(struct bpf_link_info *info, json_writer_t *wtr)
  331. {
  332. jsonw_string_field(wtr, "tracepoint",
  333. u64_to_ptr(info->perf_event.tracepoint.tp_name));
  334. jsonw_uint_field(wtr, "cookie", info->perf_event.tracepoint.cookie);
  335. }
  336. static char *perf_config_hw_cache_str(__u64 config)
  337. {
  338. const char *hw_cache, *result, *op;
  339. char *str = malloc(PERF_HW_CACHE_LEN);
  340. if (!str) {
  341. p_err("mem alloc failed");
  342. return NULL;
  343. }
  344. hw_cache = perf_event_name(evsel__hw_cache, config & 0xff);
  345. if (hw_cache)
  346. snprintf(str, PERF_HW_CACHE_LEN, "%s-", hw_cache);
  347. else
  348. snprintf(str, PERF_HW_CACHE_LEN, "%lld-", config & 0xff);
  349. op = perf_event_name(evsel__hw_cache_op, (config >> 8) & 0xff);
  350. if (op)
  351. snprintf(str + strlen(str), PERF_HW_CACHE_LEN - strlen(str),
  352. "%s-", op);
  353. else
  354. snprintf(str + strlen(str), PERF_HW_CACHE_LEN - strlen(str),
  355. "%lld-", (config >> 8) & 0xff);
  356. result = perf_event_name(evsel__hw_cache_result, config >> 16);
  357. if (result)
  358. snprintf(str + strlen(str), PERF_HW_CACHE_LEN - strlen(str),
  359. "%s", result);
  360. else
  361. snprintf(str + strlen(str), PERF_HW_CACHE_LEN - strlen(str),
  362. "%lld", config >> 16);
  363. return str;
  364. }
  365. static const char *perf_config_str(__u32 type, __u64 config)
  366. {
  367. const char *perf_config;
  368. switch (type) {
  369. case PERF_TYPE_HARDWARE:
  370. perf_config = perf_event_name(event_symbols_hw, config);
  371. break;
  372. case PERF_TYPE_SOFTWARE:
  373. perf_config = perf_event_name(event_symbols_sw, config);
  374. break;
  375. case PERF_TYPE_HW_CACHE:
  376. perf_config = perf_config_hw_cache_str(config);
  377. break;
  378. default:
  379. perf_config = NULL;
  380. break;
  381. }
  382. return perf_config;
  383. }
  384. static void
  385. show_perf_event_event_json(struct bpf_link_info *info, json_writer_t *wtr)
  386. {
  387. __u64 config = info->perf_event.event.config;
  388. __u32 type = info->perf_event.event.type;
  389. const char *perf_type, *perf_config;
  390. perf_type = perf_event_name(perf_type_name, type);
  391. if (perf_type)
  392. jsonw_string_field(wtr, "event_type", perf_type);
  393. else
  394. jsonw_uint_field(wtr, "event_type", type);
  395. perf_config = perf_config_str(type, config);
  396. if (perf_config)
  397. jsonw_string_field(wtr, "event_config", perf_config);
  398. else
  399. jsonw_uint_field(wtr, "event_config", config);
  400. jsonw_uint_field(wtr, "cookie", info->perf_event.event.cookie);
  401. if (type == PERF_TYPE_HW_CACHE && perf_config)
  402. free((void *)perf_config);
  403. }
  404. static int show_link_close_json(int fd, struct bpf_link_info *info)
  405. {
  406. struct bpf_prog_info prog_info;
  407. const char *prog_type_str;
  408. int err;
  409. jsonw_start_object(json_wtr);
  410. show_link_header_json(info, json_wtr);
  411. switch (info->type) {
  412. case BPF_LINK_TYPE_RAW_TRACEPOINT:
  413. jsonw_string_field(json_wtr, "tp_name",
  414. u64_to_ptr(info->raw_tracepoint.tp_name));
  415. break;
  416. case BPF_LINK_TYPE_TRACING:
  417. err = get_prog_info(info->prog_id, &prog_info);
  418. if (err)
  419. return err;
  420. prog_type_str = libbpf_bpf_prog_type_str(prog_info.type);
  421. /* libbpf will return NULL for variants unknown to it. */
  422. if (prog_type_str)
  423. jsonw_string_field(json_wtr, "prog_type", prog_type_str);
  424. else
  425. jsonw_uint_field(json_wtr, "prog_type", prog_info.type);
  426. show_link_attach_type_json(info->tracing.attach_type,
  427. json_wtr);
  428. jsonw_uint_field(json_wtr, "target_obj_id", info->tracing.target_obj_id);
  429. jsonw_uint_field(json_wtr, "target_btf_id", info->tracing.target_btf_id);
  430. break;
  431. case BPF_LINK_TYPE_CGROUP:
  432. jsonw_lluint_field(json_wtr, "cgroup_id",
  433. info->cgroup.cgroup_id);
  434. show_link_attach_type_json(info->cgroup.attach_type, json_wtr);
  435. break;
  436. case BPF_LINK_TYPE_ITER:
  437. show_iter_json(info, json_wtr);
  438. break;
  439. case BPF_LINK_TYPE_NETNS:
  440. jsonw_uint_field(json_wtr, "netns_ino",
  441. info->netns.netns_ino);
  442. show_link_attach_type_json(info->netns.attach_type, json_wtr);
  443. break;
  444. case BPF_LINK_TYPE_NETFILTER:
  445. netfilter_dump_json(info, json_wtr);
  446. break;
  447. case BPF_LINK_TYPE_TCX:
  448. show_link_ifindex_json(info->tcx.ifindex, json_wtr);
  449. show_link_attach_type_json(info->tcx.attach_type, json_wtr);
  450. break;
  451. case BPF_LINK_TYPE_NETKIT:
  452. show_link_ifindex_json(info->netkit.ifindex, json_wtr);
  453. show_link_attach_type_json(info->netkit.attach_type, json_wtr);
  454. break;
  455. case BPF_LINK_TYPE_SOCKMAP:
  456. jsonw_uint_field(json_wtr, "map_id", info->sockmap.map_id);
  457. show_link_attach_type_json(info->sockmap.attach_type, json_wtr);
  458. break;
  459. case BPF_LINK_TYPE_XDP:
  460. show_link_ifindex_json(info->xdp.ifindex, json_wtr);
  461. break;
  462. case BPF_LINK_TYPE_STRUCT_OPS:
  463. jsonw_uint_field(json_wtr, "map_id",
  464. info->struct_ops.map_id);
  465. break;
  466. case BPF_LINK_TYPE_KPROBE_MULTI:
  467. show_kprobe_multi_json(info, json_wtr);
  468. break;
  469. case BPF_LINK_TYPE_UPROBE_MULTI:
  470. show_uprobe_multi_json(info, json_wtr);
  471. break;
  472. case BPF_LINK_TYPE_PERF_EVENT:
  473. switch (info->perf_event.type) {
  474. case BPF_PERF_EVENT_EVENT:
  475. show_perf_event_event_json(info, json_wtr);
  476. break;
  477. case BPF_PERF_EVENT_TRACEPOINT:
  478. show_perf_event_tracepoint_json(info, json_wtr);
  479. break;
  480. case BPF_PERF_EVENT_KPROBE:
  481. case BPF_PERF_EVENT_KRETPROBE:
  482. show_perf_event_kprobe_json(info, json_wtr);
  483. break;
  484. case BPF_PERF_EVENT_UPROBE:
  485. case BPF_PERF_EVENT_URETPROBE:
  486. show_perf_event_uprobe_json(info, json_wtr);
  487. break;
  488. default:
  489. break;
  490. }
  491. break;
  492. default:
  493. break;
  494. }
  495. if (!hashmap__empty(link_table)) {
  496. struct hashmap_entry *entry;
  497. jsonw_name(json_wtr, "pinned");
  498. jsonw_start_array(json_wtr);
  499. hashmap__for_each_key_entry(link_table, entry, info->id)
  500. jsonw_string(json_wtr, entry->pvalue);
  501. jsonw_end_array(json_wtr);
  502. }
  503. emit_obj_refs_json(refs_table, info->id, json_wtr);
  504. jsonw_end_object(json_wtr);
  505. return 0;
  506. }
  507. static void show_link_header_plain(struct bpf_link_info *info)
  508. {
  509. const char *link_type_str;
  510. printf("%u: ", info->id);
  511. link_type_str = libbpf_bpf_link_type_str(info->type);
  512. if (link_type_str)
  513. printf("%s ", link_type_str);
  514. else
  515. printf("type %u ", info->type);
  516. if (info->type == BPF_LINK_TYPE_STRUCT_OPS)
  517. printf("map %u ", info->struct_ops.map_id);
  518. else
  519. printf("prog %u ", info->prog_id);
  520. }
  521. static void show_link_attach_type_plain(__u32 attach_type)
  522. {
  523. const char *attach_type_str;
  524. attach_type_str = libbpf_bpf_attach_type_str(attach_type);
  525. if (attach_type_str)
  526. printf("attach_type %s ", attach_type_str);
  527. else
  528. printf("attach_type %u ", attach_type);
  529. }
  530. static void show_link_ifindex_plain(__u32 ifindex)
  531. {
  532. char devname[IF_NAMESIZE * 2] = "(unknown)";
  533. char tmpname[IF_NAMESIZE];
  534. char *ret = NULL;
  535. if (ifindex)
  536. ret = if_indextoname(ifindex, tmpname);
  537. else
  538. snprintf(devname, sizeof(devname), "(detached)");
  539. if (ret)
  540. snprintf(devname, sizeof(devname), "%s(%d)",
  541. tmpname, ifindex);
  542. printf("ifindex %s ", devname);
  543. }
  544. static void show_iter_plain(struct bpf_link_info *info)
  545. {
  546. const char *target_name = u64_to_ptr(info->iter.target_name);
  547. printf("target_name %s ", target_name);
  548. if (is_iter_map_target(target_name))
  549. printf("map_id %u ", info->iter.map.map_id);
  550. else if (is_iter_task_target(target_name)) {
  551. if (info->iter.task.tid)
  552. printf("tid %u ", info->iter.task.tid);
  553. else if (info->iter.task.pid)
  554. printf("pid %u ", info->iter.task.pid);
  555. }
  556. if (is_iter_cgroup_target(target_name)) {
  557. printf("cgroup_id %llu ", info->iter.cgroup.cgroup_id);
  558. printf("order %s ",
  559. cgroup_order_string(info->iter.cgroup.order));
  560. }
  561. }
  562. static const char * const pf2name[] = {
  563. [NFPROTO_INET] = "inet",
  564. [NFPROTO_IPV4] = "ip",
  565. [NFPROTO_ARP] = "arp",
  566. [NFPROTO_NETDEV] = "netdev",
  567. [NFPROTO_BRIDGE] = "bridge",
  568. [NFPROTO_IPV6] = "ip6",
  569. };
  570. static const char * const inethook2name[] = {
  571. [NF_INET_PRE_ROUTING] = "prerouting",
  572. [NF_INET_LOCAL_IN] = "input",
  573. [NF_INET_FORWARD] = "forward",
  574. [NF_INET_LOCAL_OUT] = "output",
  575. [NF_INET_POST_ROUTING] = "postrouting",
  576. };
  577. static const char * const arphook2name[] = {
  578. [NF_ARP_IN] = "input",
  579. [NF_ARP_OUT] = "output",
  580. };
  581. void netfilter_dump_plain(const struct bpf_link_info *info)
  582. {
  583. const char *hookname = NULL, *pfname = NULL;
  584. unsigned int hook = info->netfilter.hooknum;
  585. unsigned int pf = info->netfilter.pf;
  586. if (pf < ARRAY_SIZE(pf2name))
  587. pfname = pf2name[pf];
  588. switch (pf) {
  589. case NFPROTO_BRIDGE: /* bridge shares numbers with enum nf_inet_hooks */
  590. case NFPROTO_IPV4:
  591. case NFPROTO_IPV6:
  592. case NFPROTO_INET:
  593. if (hook < ARRAY_SIZE(inethook2name))
  594. hookname = inethook2name[hook];
  595. break;
  596. case NFPROTO_ARP:
  597. if (hook < ARRAY_SIZE(arphook2name))
  598. hookname = arphook2name[hook];
  599. default:
  600. break;
  601. }
  602. if (pfname)
  603. printf("\n\t%s", pfname);
  604. else
  605. printf("\n\tpf: %d", pf);
  606. if (hookname)
  607. printf(" %s", hookname);
  608. else
  609. printf(", hook %u,", hook);
  610. printf(" prio %d", info->netfilter.priority);
  611. if (info->netfilter.flags)
  612. printf(" flags 0x%x", info->netfilter.flags);
  613. }
  614. static void show_kprobe_multi_plain(struct bpf_link_info *info)
  615. {
  616. struct addr_cookie *data;
  617. __u32 i, j = 0;
  618. if (!info->kprobe_multi.count)
  619. return;
  620. if (info->kprobe_multi.flags & BPF_F_KPROBE_MULTI_RETURN)
  621. printf("\n\tkretprobe.multi ");
  622. else
  623. printf("\n\tkprobe.multi ");
  624. printf("func_cnt %u ", info->kprobe_multi.count);
  625. if (info->kprobe_multi.missed)
  626. printf("missed %llu ", info->kprobe_multi.missed);
  627. data = get_addr_cookie_array(u64_to_ptr(info->kprobe_multi.addrs),
  628. u64_to_ptr(info->kprobe_multi.cookies),
  629. info->kprobe_multi.count);
  630. if (!data)
  631. return;
  632. /* Load it once for all. */
  633. if (!dd.sym_count)
  634. kernel_syms_load(&dd);
  635. if (!dd.sym_count)
  636. goto error;
  637. printf("\n\t%-16s %-16s %s", "addr", "cookie", "func [module]");
  638. for (i = 0; i < dd.sym_count; i++) {
  639. if (dd.sym_mapping[i].address != data[j].addr)
  640. continue;
  641. printf("\n\t%016lx %-16llx %s",
  642. dd.sym_mapping[i].address, data[j].cookie, dd.sym_mapping[i].name);
  643. if (dd.sym_mapping[i].module[0] != '\0')
  644. printf(" [%s] ", dd.sym_mapping[i].module);
  645. else
  646. printf(" ");
  647. if (j++ == info->kprobe_multi.count)
  648. break;
  649. }
  650. error:
  651. free(data);
  652. }
  653. static void show_uprobe_multi_plain(struct bpf_link_info *info)
  654. {
  655. __u32 i;
  656. if (!info->uprobe_multi.count)
  657. return;
  658. if (info->uprobe_multi.flags & BPF_F_UPROBE_MULTI_RETURN)
  659. printf("\n\turetprobe.multi ");
  660. else
  661. printf("\n\tuprobe.multi ");
  662. printf("path %s ", (char *) u64_to_ptr(info->uprobe_multi.path));
  663. printf("func_cnt %u ", info->uprobe_multi.count);
  664. if (info->uprobe_multi.pid)
  665. printf("pid %d ", info->uprobe_multi.pid);
  666. printf("\n\t%-16s %-16s %-16s", "offset", "ref_ctr_offset", "cookies");
  667. for (i = 0; i < info->uprobe_multi.count; i++) {
  668. printf("\n\t0x%-16llx 0x%-16llx 0x%-16llx",
  669. u64_to_arr(info->uprobe_multi.offsets)[i],
  670. u64_to_arr(info->uprobe_multi.ref_ctr_offsets)[i],
  671. u64_to_arr(info->uprobe_multi.cookies)[i]);
  672. }
  673. }
  674. static void show_perf_event_kprobe_plain(struct bpf_link_info *info)
  675. {
  676. const char *buf;
  677. buf = u64_to_ptr(info->perf_event.kprobe.func_name);
  678. if (buf[0] == '\0' && !info->perf_event.kprobe.addr)
  679. return;
  680. if (info->perf_event.type == BPF_PERF_EVENT_KRETPROBE)
  681. printf("\n\tkretprobe ");
  682. else
  683. printf("\n\tkprobe ");
  684. if (info->perf_event.kprobe.addr)
  685. printf("%llx ", info->perf_event.kprobe.addr);
  686. printf("%s", buf);
  687. if (info->perf_event.kprobe.offset)
  688. printf("+%#x", info->perf_event.kprobe.offset);
  689. if (info->perf_event.kprobe.missed)
  690. printf(" missed %llu", info->perf_event.kprobe.missed);
  691. if (info->perf_event.kprobe.cookie)
  692. printf(" cookie %llu", info->perf_event.kprobe.cookie);
  693. printf(" ");
  694. }
  695. static void show_perf_event_uprobe_plain(struct bpf_link_info *info)
  696. {
  697. const char *buf;
  698. buf = u64_to_ptr(info->perf_event.uprobe.file_name);
  699. if (buf[0] == '\0')
  700. return;
  701. if (info->perf_event.type == BPF_PERF_EVENT_URETPROBE)
  702. printf("\n\turetprobe ");
  703. else
  704. printf("\n\tuprobe ");
  705. printf("%s+%#x ", buf, info->perf_event.uprobe.offset);
  706. if (info->perf_event.uprobe.cookie)
  707. printf("cookie %llu ", info->perf_event.uprobe.cookie);
  708. }
  709. static void show_perf_event_tracepoint_plain(struct bpf_link_info *info)
  710. {
  711. const char *buf;
  712. buf = u64_to_ptr(info->perf_event.tracepoint.tp_name);
  713. if (buf[0] == '\0')
  714. return;
  715. printf("\n\ttracepoint %s ", buf);
  716. if (info->perf_event.tracepoint.cookie)
  717. printf("cookie %llu ", info->perf_event.tracepoint.cookie);
  718. }
  719. static void show_perf_event_event_plain(struct bpf_link_info *info)
  720. {
  721. __u64 config = info->perf_event.event.config;
  722. __u32 type = info->perf_event.event.type;
  723. const char *perf_type, *perf_config;
  724. printf("\n\tevent ");
  725. perf_type = perf_event_name(perf_type_name, type);
  726. if (perf_type)
  727. printf("%s:", perf_type);
  728. else
  729. printf("%u :", type);
  730. perf_config = perf_config_str(type, config);
  731. if (perf_config)
  732. printf("%s ", perf_config);
  733. else
  734. printf("%llu ", config);
  735. if (info->perf_event.event.cookie)
  736. printf("cookie %llu ", info->perf_event.event.cookie);
  737. if (type == PERF_TYPE_HW_CACHE && perf_config)
  738. free((void *)perf_config);
  739. }
  740. static int show_link_close_plain(int fd, struct bpf_link_info *info)
  741. {
  742. struct bpf_prog_info prog_info;
  743. const char *prog_type_str;
  744. int err;
  745. show_link_header_plain(info);
  746. switch (info->type) {
  747. case BPF_LINK_TYPE_RAW_TRACEPOINT:
  748. printf("\n\ttp '%s' ",
  749. (const char *)u64_to_ptr(info->raw_tracepoint.tp_name));
  750. break;
  751. case BPF_LINK_TYPE_TRACING:
  752. err = get_prog_info(info->prog_id, &prog_info);
  753. if (err)
  754. return err;
  755. prog_type_str = libbpf_bpf_prog_type_str(prog_info.type);
  756. /* libbpf will return NULL for variants unknown to it. */
  757. if (prog_type_str)
  758. printf("\n\tprog_type %s ", prog_type_str);
  759. else
  760. printf("\n\tprog_type %u ", prog_info.type);
  761. show_link_attach_type_plain(info->tracing.attach_type);
  762. if (info->tracing.target_obj_id || info->tracing.target_btf_id)
  763. printf("\n\ttarget_obj_id %u target_btf_id %u ",
  764. info->tracing.target_obj_id,
  765. info->tracing.target_btf_id);
  766. break;
  767. case BPF_LINK_TYPE_CGROUP:
  768. printf("\n\tcgroup_id %zu ", (size_t)info->cgroup.cgroup_id);
  769. show_link_attach_type_plain(info->cgroup.attach_type);
  770. break;
  771. case BPF_LINK_TYPE_ITER:
  772. show_iter_plain(info);
  773. break;
  774. case BPF_LINK_TYPE_NETNS:
  775. printf("\n\tnetns_ino %u ", info->netns.netns_ino);
  776. show_link_attach_type_plain(info->netns.attach_type);
  777. break;
  778. case BPF_LINK_TYPE_NETFILTER:
  779. netfilter_dump_plain(info);
  780. break;
  781. case BPF_LINK_TYPE_TCX:
  782. printf("\n\t");
  783. show_link_ifindex_plain(info->tcx.ifindex);
  784. show_link_attach_type_plain(info->tcx.attach_type);
  785. break;
  786. case BPF_LINK_TYPE_NETKIT:
  787. printf("\n\t");
  788. show_link_ifindex_plain(info->netkit.ifindex);
  789. show_link_attach_type_plain(info->netkit.attach_type);
  790. break;
  791. case BPF_LINK_TYPE_SOCKMAP:
  792. printf("\n\t");
  793. printf("map_id %u ", info->sockmap.map_id);
  794. show_link_attach_type_plain(info->sockmap.attach_type);
  795. break;
  796. case BPF_LINK_TYPE_XDP:
  797. printf("\n\t");
  798. show_link_ifindex_plain(info->xdp.ifindex);
  799. break;
  800. case BPF_LINK_TYPE_KPROBE_MULTI:
  801. show_kprobe_multi_plain(info);
  802. break;
  803. case BPF_LINK_TYPE_UPROBE_MULTI:
  804. show_uprobe_multi_plain(info);
  805. break;
  806. case BPF_LINK_TYPE_PERF_EVENT:
  807. switch (info->perf_event.type) {
  808. case BPF_PERF_EVENT_EVENT:
  809. show_perf_event_event_plain(info);
  810. break;
  811. case BPF_PERF_EVENT_TRACEPOINT:
  812. show_perf_event_tracepoint_plain(info);
  813. break;
  814. case BPF_PERF_EVENT_KPROBE:
  815. case BPF_PERF_EVENT_KRETPROBE:
  816. show_perf_event_kprobe_plain(info);
  817. break;
  818. case BPF_PERF_EVENT_UPROBE:
  819. case BPF_PERF_EVENT_URETPROBE:
  820. show_perf_event_uprobe_plain(info);
  821. break;
  822. default:
  823. break;
  824. }
  825. break;
  826. default:
  827. break;
  828. }
  829. if (!hashmap__empty(link_table)) {
  830. struct hashmap_entry *entry;
  831. hashmap__for_each_key_entry(link_table, entry, info->id)
  832. printf("\n\tpinned %s", (char *)entry->pvalue);
  833. }
  834. emit_obj_refs_plain(refs_table, info->id, "\n\tpids ");
  835. printf("\n");
  836. return 0;
  837. }
  838. static int do_show_link(int fd)
  839. {
  840. __u64 *ref_ctr_offsets = NULL, *offsets = NULL, *cookies = NULL;
  841. struct bpf_link_info info;
  842. __u32 len = sizeof(info);
  843. char path_buf[PATH_MAX];
  844. __u64 *addrs = NULL;
  845. char buf[PATH_MAX];
  846. int count;
  847. int err;
  848. memset(&info, 0, sizeof(info));
  849. buf[0] = '\0';
  850. again:
  851. err = bpf_link_get_info_by_fd(fd, &info, &len);
  852. if (err) {
  853. p_err("can't get link info: %s",
  854. strerror(errno));
  855. close(fd);
  856. return err;
  857. }
  858. if (info.type == BPF_LINK_TYPE_RAW_TRACEPOINT &&
  859. !info.raw_tracepoint.tp_name) {
  860. info.raw_tracepoint.tp_name = ptr_to_u64(&buf);
  861. info.raw_tracepoint.tp_name_len = sizeof(buf);
  862. goto again;
  863. }
  864. if (info.type == BPF_LINK_TYPE_ITER &&
  865. !info.iter.target_name) {
  866. info.iter.target_name = ptr_to_u64(&buf);
  867. info.iter.target_name_len = sizeof(buf);
  868. goto again;
  869. }
  870. if (info.type == BPF_LINK_TYPE_KPROBE_MULTI &&
  871. !info.kprobe_multi.addrs) {
  872. count = info.kprobe_multi.count;
  873. if (count) {
  874. addrs = calloc(count, sizeof(__u64));
  875. if (!addrs) {
  876. p_err("mem alloc failed");
  877. close(fd);
  878. return -ENOMEM;
  879. }
  880. info.kprobe_multi.addrs = ptr_to_u64(addrs);
  881. cookies = calloc(count, sizeof(__u64));
  882. if (!cookies) {
  883. p_err("mem alloc failed");
  884. free(addrs);
  885. close(fd);
  886. return -ENOMEM;
  887. }
  888. info.kprobe_multi.cookies = ptr_to_u64(cookies);
  889. goto again;
  890. }
  891. }
  892. if (info.type == BPF_LINK_TYPE_UPROBE_MULTI &&
  893. !info.uprobe_multi.offsets) {
  894. count = info.uprobe_multi.count;
  895. if (count) {
  896. offsets = calloc(count, sizeof(__u64));
  897. if (!offsets) {
  898. p_err("mem alloc failed");
  899. close(fd);
  900. return -ENOMEM;
  901. }
  902. info.uprobe_multi.offsets = ptr_to_u64(offsets);
  903. ref_ctr_offsets = calloc(count, sizeof(__u64));
  904. if (!ref_ctr_offsets) {
  905. p_err("mem alloc failed");
  906. free(offsets);
  907. close(fd);
  908. return -ENOMEM;
  909. }
  910. info.uprobe_multi.ref_ctr_offsets = ptr_to_u64(ref_ctr_offsets);
  911. cookies = calloc(count, sizeof(__u64));
  912. if (!cookies) {
  913. p_err("mem alloc failed");
  914. free(ref_ctr_offsets);
  915. free(offsets);
  916. close(fd);
  917. return -ENOMEM;
  918. }
  919. info.uprobe_multi.cookies = ptr_to_u64(cookies);
  920. info.uprobe_multi.path = ptr_to_u64(path_buf);
  921. info.uprobe_multi.path_size = sizeof(path_buf);
  922. goto again;
  923. }
  924. }
  925. if (info.type == BPF_LINK_TYPE_PERF_EVENT) {
  926. switch (info.perf_event.type) {
  927. case BPF_PERF_EVENT_TRACEPOINT:
  928. if (!info.perf_event.tracepoint.tp_name) {
  929. info.perf_event.tracepoint.tp_name = ptr_to_u64(&buf);
  930. info.perf_event.tracepoint.name_len = sizeof(buf);
  931. goto again;
  932. }
  933. break;
  934. case BPF_PERF_EVENT_KPROBE:
  935. case BPF_PERF_EVENT_KRETPROBE:
  936. if (!info.perf_event.kprobe.func_name) {
  937. info.perf_event.kprobe.func_name = ptr_to_u64(&buf);
  938. info.perf_event.kprobe.name_len = sizeof(buf);
  939. goto again;
  940. }
  941. break;
  942. case BPF_PERF_EVENT_UPROBE:
  943. case BPF_PERF_EVENT_URETPROBE:
  944. if (!info.perf_event.uprobe.file_name) {
  945. info.perf_event.uprobe.file_name = ptr_to_u64(&buf);
  946. info.perf_event.uprobe.name_len = sizeof(buf);
  947. goto again;
  948. }
  949. break;
  950. default:
  951. break;
  952. }
  953. }
  954. if (json_output)
  955. show_link_close_json(fd, &info);
  956. else
  957. show_link_close_plain(fd, &info);
  958. free(ref_ctr_offsets);
  959. free(cookies);
  960. free(offsets);
  961. free(addrs);
  962. close(fd);
  963. return 0;
  964. }
  965. static int do_show(int argc, char **argv)
  966. {
  967. __u32 id = 0;
  968. int err, fd;
  969. if (show_pinned) {
  970. link_table = hashmap__new(hash_fn_for_key_as_id,
  971. equal_fn_for_key_as_id, NULL);
  972. if (IS_ERR(link_table)) {
  973. p_err("failed to create hashmap for pinned paths");
  974. return -1;
  975. }
  976. build_pinned_obj_table(link_table, BPF_OBJ_LINK);
  977. }
  978. build_obj_refs_table(&refs_table, BPF_OBJ_LINK);
  979. if (argc == 2) {
  980. fd = link_parse_fd(&argc, &argv);
  981. if (fd < 0)
  982. return fd;
  983. do_show_link(fd);
  984. goto out;
  985. }
  986. if (argc)
  987. return BAD_ARG();
  988. if (json_output)
  989. jsonw_start_array(json_wtr);
  990. while (true) {
  991. err = bpf_link_get_next_id(id, &id);
  992. if (err) {
  993. if (errno == ENOENT)
  994. break;
  995. p_err("can't get next link: %s%s", strerror(errno),
  996. errno == EINVAL ? " -- kernel too old?" : "");
  997. break;
  998. }
  999. fd = bpf_link_get_fd_by_id(id);
  1000. if (fd < 0) {
  1001. if (errno == ENOENT)
  1002. continue;
  1003. p_err("can't get link by id (%u): %s",
  1004. id, strerror(errno));
  1005. break;
  1006. }
  1007. err = do_show_link(fd);
  1008. if (err)
  1009. break;
  1010. }
  1011. if (json_output)
  1012. jsonw_end_array(json_wtr);
  1013. delete_obj_refs_table(refs_table);
  1014. if (show_pinned)
  1015. delete_pinned_obj_table(link_table);
  1016. out:
  1017. if (dd.sym_count)
  1018. kernel_syms_destroy(&dd);
  1019. return errno == ENOENT ? 0 : -1;
  1020. }
  1021. static int do_pin(int argc, char **argv)
  1022. {
  1023. int err;
  1024. err = do_pin_any(argc, argv, link_parse_fd);
  1025. if (!err && json_output)
  1026. jsonw_null(json_wtr);
  1027. return err;
  1028. }
  1029. static int do_detach(int argc, char **argv)
  1030. {
  1031. int err, fd;
  1032. if (argc != 2) {
  1033. p_err("link specifier is invalid or missing\n");
  1034. return 1;
  1035. }
  1036. fd = link_parse_fd(&argc, &argv);
  1037. if (fd < 0)
  1038. return 1;
  1039. err = bpf_link_detach(fd);
  1040. if (err)
  1041. err = -errno;
  1042. close(fd);
  1043. if (err) {
  1044. p_err("failed link detach: %s", strerror(-err));
  1045. return 1;
  1046. }
  1047. if (json_output)
  1048. jsonw_null(json_wtr);
  1049. return 0;
  1050. }
  1051. static int do_help(int argc, char **argv)
  1052. {
  1053. if (json_output) {
  1054. jsonw_null(json_wtr);
  1055. return 0;
  1056. }
  1057. fprintf(stderr,
  1058. "Usage: %1$s %2$s { show | list } [LINK]\n"
  1059. " %1$s %2$s pin LINK FILE\n"
  1060. " %1$s %2$s detach LINK\n"
  1061. " %1$s %2$s help\n"
  1062. "\n"
  1063. " " HELP_SPEC_LINK "\n"
  1064. " " HELP_SPEC_OPTIONS " |\n"
  1065. " {-f|--bpffs} | {-n|--nomount} }\n"
  1066. "",
  1067. bin_name, argv[-2]);
  1068. return 0;
  1069. }
  1070. static const struct cmd cmds[] = {
  1071. { "show", do_show },
  1072. { "list", do_show },
  1073. { "help", do_help },
  1074. { "pin", do_pin },
  1075. { "detach", do_detach },
  1076. { 0 }
  1077. };
  1078. int do_link(int argc, char **argv)
  1079. {
  1080. return cmd_select(cmds, argc, argv, do_help);
  1081. }