prog.c 16 KB

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  1. /*
  2. * Copyright (C) 2017 Netronome Systems, Inc.
  3. *
  4. * This software is dual licensed under the GNU General License Version 2,
  5. * June 1991 as shown in the file COPYING in the top-level directory of this
  6. * source tree or the BSD 2-Clause License provided below. You have the
  7. * option to license this software under the complete terms of either license.
  8. *
  9. * The BSD 2-Clause License:
  10. *
  11. * Redistribution and use in source and binary forms, with or
  12. * without modification, are permitted provided that the following
  13. * conditions are met:
  14. *
  15. * 1. Redistributions of source code must retain the above
  16. * copyright notice, this list of conditions and the following
  17. * disclaimer.
  18. *
  19. * 2. Redistributions in binary form must reproduce the above
  20. * copyright notice, this list of conditions and the following
  21. * disclaimer in the documentation and/or other materials
  22. * provided with the distribution.
  23. *
  24. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  25. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  26. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  27. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
  28. * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
  29. * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  30. * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  31. * SOFTWARE.
  32. */
  33. /* Author: Jakub Kicinski <kubakici@wp.pl> */
  34. #include <errno.h>
  35. #include <fcntl.h>
  36. #include <stdarg.h>
  37. #include <stdio.h>
  38. #include <stdlib.h>
  39. #include <string.h>
  40. #include <time.h>
  41. #include <unistd.h>
  42. #include <sys/types.h>
  43. #include <sys/stat.h>
  44. #include <bpf.h>
  45. #include <libbpf.h>
  46. #include "cfg.h"
  47. #include "main.h"
  48. #include "xlated_dumper.h"
  49. static const char * const prog_type_name[] = {
  50. [BPF_PROG_TYPE_UNSPEC] = "unspec",
  51. [BPF_PROG_TYPE_SOCKET_FILTER] = "socket_filter",
  52. [BPF_PROG_TYPE_KPROBE] = "kprobe",
  53. [BPF_PROG_TYPE_SCHED_CLS] = "sched_cls",
  54. [BPF_PROG_TYPE_SCHED_ACT] = "sched_act",
  55. [BPF_PROG_TYPE_TRACEPOINT] = "tracepoint",
  56. [BPF_PROG_TYPE_XDP] = "xdp",
  57. [BPF_PROG_TYPE_PERF_EVENT] = "perf_event",
  58. [BPF_PROG_TYPE_CGROUP_SKB] = "cgroup_skb",
  59. [BPF_PROG_TYPE_CGROUP_SOCK] = "cgroup_sock",
  60. [BPF_PROG_TYPE_LWT_IN] = "lwt_in",
  61. [BPF_PROG_TYPE_LWT_OUT] = "lwt_out",
  62. [BPF_PROG_TYPE_LWT_XMIT] = "lwt_xmit",
  63. [BPF_PROG_TYPE_SOCK_OPS] = "sock_ops",
  64. [BPF_PROG_TYPE_SK_SKB] = "sk_skb",
  65. [BPF_PROG_TYPE_CGROUP_DEVICE] = "cgroup_device",
  66. [BPF_PROG_TYPE_SK_MSG] = "sk_msg",
  67. [BPF_PROG_TYPE_RAW_TRACEPOINT] = "raw_tracepoint",
  68. [BPF_PROG_TYPE_CGROUP_SOCK_ADDR] = "cgroup_sock_addr",
  69. [BPF_PROG_TYPE_LIRC_MODE2] = "lirc_mode2",
  70. };
  71. static void print_boot_time(__u64 nsecs, char *buf, unsigned int size)
  72. {
  73. struct timespec real_time_ts, boot_time_ts;
  74. time_t wallclock_secs;
  75. struct tm load_tm;
  76. buf[--size] = '\0';
  77. if (clock_gettime(CLOCK_REALTIME, &real_time_ts) ||
  78. clock_gettime(CLOCK_BOOTTIME, &boot_time_ts)) {
  79. perror("Can't read clocks");
  80. snprintf(buf, size, "%llu", nsecs / 1000000000);
  81. return;
  82. }
  83. wallclock_secs = (real_time_ts.tv_sec - boot_time_ts.tv_sec) +
  84. (real_time_ts.tv_nsec - boot_time_ts.tv_nsec + nsecs) /
  85. 1000000000;
  86. if (!localtime_r(&wallclock_secs, &load_tm)) {
  87. snprintf(buf, size, "%llu", nsecs / 1000000000);
  88. return;
  89. }
  90. if (json_output)
  91. strftime(buf, size, "%s", &load_tm);
  92. else
  93. strftime(buf, size, "%FT%T%z", &load_tm);
  94. }
  95. static int prog_fd_by_tag(unsigned char *tag)
  96. {
  97. struct bpf_prog_info info = {};
  98. __u32 len = sizeof(info);
  99. unsigned int id = 0;
  100. int err;
  101. int fd;
  102. while (true) {
  103. err = bpf_prog_get_next_id(id, &id);
  104. if (err) {
  105. p_err("%s", strerror(errno));
  106. return -1;
  107. }
  108. fd = bpf_prog_get_fd_by_id(id);
  109. if (fd < 0) {
  110. p_err("can't get prog by id (%u): %s",
  111. id, strerror(errno));
  112. return -1;
  113. }
  114. err = bpf_obj_get_info_by_fd(fd, &info, &len);
  115. if (err) {
  116. p_err("can't get prog info (%u): %s",
  117. id, strerror(errno));
  118. close(fd);
  119. return -1;
  120. }
  121. if (!memcmp(tag, info.tag, BPF_TAG_SIZE))
  122. return fd;
  123. close(fd);
  124. }
  125. }
  126. int prog_parse_fd(int *argc, char ***argv)
  127. {
  128. int fd;
  129. if (is_prefix(**argv, "id")) {
  130. unsigned int id;
  131. char *endptr;
  132. NEXT_ARGP();
  133. id = strtoul(**argv, &endptr, 0);
  134. if (*endptr) {
  135. p_err("can't parse %s as ID", **argv);
  136. return -1;
  137. }
  138. NEXT_ARGP();
  139. fd = bpf_prog_get_fd_by_id(id);
  140. if (fd < 0)
  141. p_err("get by id (%u): %s", id, strerror(errno));
  142. return fd;
  143. } else if (is_prefix(**argv, "tag")) {
  144. unsigned char tag[BPF_TAG_SIZE];
  145. NEXT_ARGP();
  146. if (sscanf(**argv, BPF_TAG_FMT, tag, tag + 1, tag + 2,
  147. tag + 3, tag + 4, tag + 5, tag + 6, tag + 7)
  148. != BPF_TAG_SIZE) {
  149. p_err("can't parse tag");
  150. return -1;
  151. }
  152. NEXT_ARGP();
  153. return prog_fd_by_tag(tag);
  154. } else if (is_prefix(**argv, "pinned")) {
  155. char *path;
  156. NEXT_ARGP();
  157. path = **argv;
  158. NEXT_ARGP();
  159. return open_obj_pinned_any(path, BPF_OBJ_PROG);
  160. }
  161. p_err("expected 'id', 'tag' or 'pinned', got: '%s'?", **argv);
  162. return -1;
  163. }
  164. static void show_prog_maps(int fd, u32 num_maps)
  165. {
  166. struct bpf_prog_info info = {};
  167. __u32 len = sizeof(info);
  168. __u32 map_ids[num_maps];
  169. unsigned int i;
  170. int err;
  171. info.nr_map_ids = num_maps;
  172. info.map_ids = ptr_to_u64(map_ids);
  173. err = bpf_obj_get_info_by_fd(fd, &info, &len);
  174. if (err || !info.nr_map_ids)
  175. return;
  176. if (json_output) {
  177. jsonw_name(json_wtr, "map_ids");
  178. jsonw_start_array(json_wtr);
  179. for (i = 0; i < info.nr_map_ids; i++)
  180. jsonw_uint(json_wtr, map_ids[i]);
  181. jsonw_end_array(json_wtr);
  182. } else {
  183. printf(" map_ids ");
  184. for (i = 0; i < info.nr_map_ids; i++)
  185. printf("%u%s", map_ids[i],
  186. i == info.nr_map_ids - 1 ? "" : ",");
  187. }
  188. }
  189. static void print_prog_json(struct bpf_prog_info *info, int fd)
  190. {
  191. char *memlock;
  192. jsonw_start_object(json_wtr);
  193. jsonw_uint_field(json_wtr, "id", info->id);
  194. if (info->type < ARRAY_SIZE(prog_type_name))
  195. jsonw_string_field(json_wtr, "type",
  196. prog_type_name[info->type]);
  197. else
  198. jsonw_uint_field(json_wtr, "type", info->type);
  199. if (*info->name)
  200. jsonw_string_field(json_wtr, "name", info->name);
  201. jsonw_name(json_wtr, "tag");
  202. jsonw_printf(json_wtr, "\"" BPF_TAG_FMT "\"",
  203. info->tag[0], info->tag[1], info->tag[2], info->tag[3],
  204. info->tag[4], info->tag[5], info->tag[6], info->tag[7]);
  205. jsonw_bool_field(json_wtr, "gpl_compatible", info->gpl_compatible);
  206. print_dev_json(info->ifindex, info->netns_dev, info->netns_ino);
  207. if (info->load_time) {
  208. char buf[32];
  209. print_boot_time(info->load_time, buf, sizeof(buf));
  210. /* Piggy back on load_time, since 0 uid is a valid one */
  211. jsonw_name(json_wtr, "loaded_at");
  212. jsonw_printf(json_wtr, "%s", buf);
  213. jsonw_uint_field(json_wtr, "uid", info->created_by_uid);
  214. }
  215. jsonw_uint_field(json_wtr, "bytes_xlated", info->xlated_prog_len);
  216. if (info->jited_prog_len) {
  217. jsonw_bool_field(json_wtr, "jited", true);
  218. jsonw_uint_field(json_wtr, "bytes_jited", info->jited_prog_len);
  219. } else {
  220. jsonw_bool_field(json_wtr, "jited", false);
  221. }
  222. memlock = get_fdinfo(fd, "memlock");
  223. if (memlock)
  224. jsonw_int_field(json_wtr, "bytes_memlock", atoi(memlock));
  225. free(memlock);
  226. if (info->nr_map_ids)
  227. show_prog_maps(fd, info->nr_map_ids);
  228. if (!hash_empty(prog_table.table)) {
  229. struct pinned_obj *obj;
  230. jsonw_name(json_wtr, "pinned");
  231. jsonw_start_array(json_wtr);
  232. hash_for_each_possible(prog_table.table, obj, hash, info->id) {
  233. if (obj->id == info->id)
  234. jsonw_string(json_wtr, obj->path);
  235. }
  236. jsonw_end_array(json_wtr);
  237. }
  238. jsonw_end_object(json_wtr);
  239. }
  240. static void print_prog_plain(struct bpf_prog_info *info, int fd)
  241. {
  242. char *memlock;
  243. printf("%u: ", info->id);
  244. if (info->type < ARRAY_SIZE(prog_type_name))
  245. printf("%s ", prog_type_name[info->type]);
  246. else
  247. printf("type %u ", info->type);
  248. if (*info->name)
  249. printf("name %s ", info->name);
  250. printf("tag ");
  251. fprint_hex(stdout, info->tag, BPF_TAG_SIZE, "");
  252. print_dev_plain(info->ifindex, info->netns_dev, info->netns_ino);
  253. printf("%s", info->gpl_compatible ? " gpl" : "");
  254. printf("\n");
  255. if (info->load_time) {
  256. char buf[32];
  257. print_boot_time(info->load_time, buf, sizeof(buf));
  258. /* Piggy back on load_time, since 0 uid is a valid one */
  259. printf("\tloaded_at %s uid %u\n", buf, info->created_by_uid);
  260. }
  261. printf("\txlated %uB", info->xlated_prog_len);
  262. if (info->jited_prog_len)
  263. printf(" jited %uB", info->jited_prog_len);
  264. else
  265. printf(" not jited");
  266. memlock = get_fdinfo(fd, "memlock");
  267. if (memlock)
  268. printf(" memlock %sB", memlock);
  269. free(memlock);
  270. if (info->nr_map_ids)
  271. show_prog_maps(fd, info->nr_map_ids);
  272. if (!hash_empty(prog_table.table)) {
  273. struct pinned_obj *obj;
  274. printf("\n");
  275. hash_for_each_possible(prog_table.table, obj, hash, info->id) {
  276. if (obj->id == info->id)
  277. printf("\tpinned %s\n", obj->path);
  278. }
  279. }
  280. printf("\n");
  281. }
  282. static int show_prog(int fd)
  283. {
  284. struct bpf_prog_info info = {};
  285. __u32 len = sizeof(info);
  286. int err;
  287. err = bpf_obj_get_info_by_fd(fd, &info, &len);
  288. if (err) {
  289. p_err("can't get prog info: %s", strerror(errno));
  290. return -1;
  291. }
  292. if (json_output)
  293. print_prog_json(&info, fd);
  294. else
  295. print_prog_plain(&info, fd);
  296. return 0;
  297. }
  298. static int do_show(int argc, char **argv)
  299. {
  300. __u32 id = 0;
  301. int err;
  302. int fd;
  303. if (show_pinned)
  304. build_pinned_obj_table(&prog_table, BPF_OBJ_PROG);
  305. if (argc == 2) {
  306. fd = prog_parse_fd(&argc, &argv);
  307. if (fd < 0)
  308. return -1;
  309. return show_prog(fd);
  310. }
  311. if (argc)
  312. return BAD_ARG();
  313. if (json_output)
  314. jsonw_start_array(json_wtr);
  315. while (true) {
  316. err = bpf_prog_get_next_id(id, &id);
  317. if (err) {
  318. if (errno == ENOENT) {
  319. err = 0;
  320. break;
  321. }
  322. p_err("can't get next program: %s%s", strerror(errno),
  323. errno == EINVAL ? " -- kernel too old?" : "");
  324. err = -1;
  325. break;
  326. }
  327. fd = bpf_prog_get_fd_by_id(id);
  328. if (fd < 0) {
  329. if (errno == ENOENT)
  330. continue;
  331. p_err("can't get prog by id (%u): %s",
  332. id, strerror(errno));
  333. err = -1;
  334. break;
  335. }
  336. err = show_prog(fd);
  337. close(fd);
  338. if (err)
  339. break;
  340. }
  341. if (json_output)
  342. jsonw_end_array(json_wtr);
  343. return err;
  344. }
  345. static int do_dump(int argc, char **argv)
  346. {
  347. unsigned long *func_ksyms = NULL;
  348. struct bpf_prog_info info = {};
  349. unsigned int *func_lens = NULL;
  350. unsigned int nr_func_ksyms;
  351. unsigned int nr_func_lens;
  352. struct dump_data dd = {};
  353. __u32 len = sizeof(info);
  354. unsigned int buf_size;
  355. char *filepath = NULL;
  356. bool opcodes = false;
  357. bool visual = false;
  358. unsigned char *buf;
  359. __u32 *member_len;
  360. __u64 *member_ptr;
  361. ssize_t n;
  362. int err;
  363. int fd;
  364. if (is_prefix(*argv, "jited")) {
  365. member_len = &info.jited_prog_len;
  366. member_ptr = &info.jited_prog_insns;
  367. } else if (is_prefix(*argv, "xlated")) {
  368. member_len = &info.xlated_prog_len;
  369. member_ptr = &info.xlated_prog_insns;
  370. } else {
  371. p_err("expected 'xlated' or 'jited', got: %s", *argv);
  372. return -1;
  373. }
  374. NEXT_ARG();
  375. if (argc < 2)
  376. usage();
  377. fd = prog_parse_fd(&argc, &argv);
  378. if (fd < 0)
  379. return -1;
  380. if (is_prefix(*argv, "file")) {
  381. NEXT_ARG();
  382. if (!argc) {
  383. p_err("expected file path");
  384. return -1;
  385. }
  386. filepath = *argv;
  387. NEXT_ARG();
  388. } else if (is_prefix(*argv, "opcodes")) {
  389. opcodes = true;
  390. NEXT_ARG();
  391. } else if (is_prefix(*argv, "visual")) {
  392. visual = true;
  393. NEXT_ARG();
  394. }
  395. if (argc) {
  396. usage();
  397. return -1;
  398. }
  399. err = bpf_obj_get_info_by_fd(fd, &info, &len);
  400. if (err) {
  401. p_err("can't get prog info: %s", strerror(errno));
  402. return -1;
  403. }
  404. if (!*member_len) {
  405. p_info("no instructions returned");
  406. close(fd);
  407. return 0;
  408. }
  409. buf_size = *member_len;
  410. buf = malloc(buf_size);
  411. if (!buf) {
  412. p_err("mem alloc failed");
  413. close(fd);
  414. return -1;
  415. }
  416. nr_func_ksyms = info.nr_jited_ksyms;
  417. if (nr_func_ksyms) {
  418. func_ksyms = malloc(nr_func_ksyms * sizeof(__u64));
  419. if (!func_ksyms) {
  420. p_err("mem alloc failed");
  421. close(fd);
  422. goto err_free;
  423. }
  424. }
  425. nr_func_lens = info.nr_jited_func_lens;
  426. if (nr_func_lens) {
  427. func_lens = malloc(nr_func_lens * sizeof(__u32));
  428. if (!func_lens) {
  429. p_err("mem alloc failed");
  430. close(fd);
  431. goto err_free;
  432. }
  433. }
  434. memset(&info, 0, sizeof(info));
  435. *member_ptr = ptr_to_u64(buf);
  436. *member_len = buf_size;
  437. info.jited_ksyms = ptr_to_u64(func_ksyms);
  438. info.nr_jited_ksyms = nr_func_ksyms;
  439. info.jited_func_lens = ptr_to_u64(func_lens);
  440. info.nr_jited_func_lens = nr_func_lens;
  441. err = bpf_obj_get_info_by_fd(fd, &info, &len);
  442. close(fd);
  443. if (err) {
  444. p_err("can't get prog info: %s", strerror(errno));
  445. goto err_free;
  446. }
  447. if (*member_len > buf_size) {
  448. p_err("too many instructions returned");
  449. goto err_free;
  450. }
  451. if (info.nr_jited_ksyms > nr_func_ksyms) {
  452. p_err("too many addresses returned");
  453. goto err_free;
  454. }
  455. if (info.nr_jited_func_lens > nr_func_lens) {
  456. p_err("too many values returned");
  457. goto err_free;
  458. }
  459. if ((member_len == &info.jited_prog_len &&
  460. info.jited_prog_insns == 0) ||
  461. (member_len == &info.xlated_prog_len &&
  462. info.xlated_prog_insns == 0)) {
  463. p_err("error retrieving insn dump: kernel.kptr_restrict set?");
  464. goto err_free;
  465. }
  466. if (filepath) {
  467. fd = open(filepath, O_WRONLY | O_CREAT | O_TRUNC, 0600);
  468. if (fd < 0) {
  469. p_err("can't open file %s: %s", filepath,
  470. strerror(errno));
  471. goto err_free;
  472. }
  473. n = write(fd, buf, *member_len);
  474. close(fd);
  475. if (n != *member_len) {
  476. p_err("error writing output file: %s",
  477. n < 0 ? strerror(errno) : "short write");
  478. goto err_free;
  479. }
  480. if (json_output)
  481. jsonw_null(json_wtr);
  482. } else if (member_len == &info.jited_prog_len) {
  483. const char *name = NULL;
  484. if (info.ifindex) {
  485. name = ifindex_to_bfd_name_ns(info.ifindex,
  486. info.netns_dev,
  487. info.netns_ino);
  488. if (!name)
  489. goto err_free;
  490. }
  491. if (info.nr_jited_func_lens && info.jited_func_lens) {
  492. struct kernel_sym *sym = NULL;
  493. char sym_name[SYM_MAX_NAME];
  494. unsigned char *img = buf;
  495. __u64 *ksyms = NULL;
  496. __u32 *lens;
  497. __u32 i;
  498. if (info.nr_jited_ksyms) {
  499. kernel_syms_load(&dd);
  500. ksyms = (__u64 *) info.jited_ksyms;
  501. }
  502. if (json_output)
  503. jsonw_start_array(json_wtr);
  504. lens = (__u32 *) info.jited_func_lens;
  505. for (i = 0; i < info.nr_jited_func_lens; i++) {
  506. if (ksyms) {
  507. sym = kernel_syms_search(&dd, ksyms[i]);
  508. if (sym)
  509. sprintf(sym_name, "%s", sym->name);
  510. else
  511. sprintf(sym_name, "0x%016llx", ksyms[i]);
  512. } else {
  513. strcpy(sym_name, "unknown");
  514. }
  515. if (json_output) {
  516. jsonw_start_object(json_wtr);
  517. jsonw_name(json_wtr, "name");
  518. jsonw_string(json_wtr, sym_name);
  519. jsonw_name(json_wtr, "insns");
  520. } else {
  521. printf("%s:\n", sym_name);
  522. }
  523. disasm_print_insn(img, lens[i], opcodes, name);
  524. img += lens[i];
  525. if (json_output)
  526. jsonw_end_object(json_wtr);
  527. else
  528. printf("\n");
  529. }
  530. if (json_output)
  531. jsonw_end_array(json_wtr);
  532. } else {
  533. disasm_print_insn(buf, *member_len, opcodes, name);
  534. }
  535. } else if (visual) {
  536. if (json_output)
  537. jsonw_null(json_wtr);
  538. else
  539. dump_xlated_cfg(buf, *member_len);
  540. } else {
  541. kernel_syms_load(&dd);
  542. dd.nr_jited_ksyms = info.nr_jited_ksyms;
  543. dd.jited_ksyms = (__u64 *) info.jited_ksyms;
  544. if (json_output)
  545. dump_xlated_json(&dd, buf, *member_len, opcodes);
  546. else
  547. dump_xlated_plain(&dd, buf, *member_len, opcodes);
  548. kernel_syms_destroy(&dd);
  549. }
  550. free(buf);
  551. free(func_ksyms);
  552. free(func_lens);
  553. return 0;
  554. err_free:
  555. free(buf);
  556. free(func_ksyms);
  557. free(func_lens);
  558. return -1;
  559. }
  560. static int do_pin(int argc, char **argv)
  561. {
  562. int err;
  563. err = do_pin_any(argc, argv, bpf_prog_get_fd_by_id);
  564. if (!err && json_output)
  565. jsonw_null(json_wtr);
  566. return err;
  567. }
  568. static int do_load(int argc, char **argv)
  569. {
  570. struct bpf_object *obj;
  571. int prog_fd;
  572. if (argc != 2)
  573. usage();
  574. if (bpf_prog_load(argv[0], BPF_PROG_TYPE_UNSPEC, &obj, &prog_fd)) {
  575. p_err("failed to load program");
  576. return -1;
  577. }
  578. if (do_pin_fd(prog_fd, argv[1])) {
  579. p_err("failed to pin program");
  580. return -1;
  581. }
  582. if (json_output)
  583. jsonw_null(json_wtr);
  584. return 0;
  585. }
  586. static int do_help(int argc, char **argv)
  587. {
  588. if (json_output) {
  589. jsonw_null(json_wtr);
  590. return 0;
  591. }
  592. fprintf(stderr,
  593. "Usage: %s %s { show | list } [PROG]\n"
  594. " %s %s dump xlated PROG [{ file FILE | opcodes | visual }]\n"
  595. " %s %s dump jited PROG [{ file FILE | opcodes }]\n"
  596. " %s %s pin PROG FILE\n"
  597. " %s %s load OBJ FILE\n"
  598. " %s %s help\n"
  599. "\n"
  600. " " HELP_SPEC_PROGRAM "\n"
  601. " " HELP_SPEC_OPTIONS "\n"
  602. "",
  603. bin_name, argv[-2], bin_name, argv[-2], bin_name, argv[-2],
  604. bin_name, argv[-2], bin_name, argv[-2], bin_name, argv[-2]);
  605. return 0;
  606. }
  607. static const struct cmd cmds[] = {
  608. { "show", do_show },
  609. { "list", do_show },
  610. { "help", do_help },
  611. { "dump", do_dump },
  612. { "pin", do_pin },
  613. { "load", do_load },
  614. { 0 }
  615. };
  616. int do_prog(int argc, char **argv)
  617. {
  618. return cmd_select(cmds, argc, argv, do_help);
  619. }