ioam6_parser.c 14 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. /*
  3. * Author: Justin Iurman ([email protected])
  4. *
  5. * IOAM tester for IPv6, see ioam6.sh for details on each test case.
  6. */
  7. #include <arpa/inet.h>
  8. #include <errno.h>
  9. #include <limits.h>
  10. #include <linux/const.h>
  11. #include <linux/if_ether.h>
  12. #include <linux/ioam6.h>
  13. #include <linux/ipv6.h>
  14. #include <stdlib.h>
  15. #include <string.h>
  16. #include <unistd.h>
  17. struct ioam_config {
  18. __u32 id;
  19. __u64 wide;
  20. __u16 ingr_id;
  21. __u16 egr_id;
  22. __u32 ingr_wide;
  23. __u32 egr_wide;
  24. __u32 ns_data;
  25. __u64 ns_wide;
  26. __u32 sc_id;
  27. __u8 hlim;
  28. char *sc_data;
  29. };
  30. /*
  31. * Be careful if you modify structs below - everything MUST be kept synchronized
  32. * with configurations inside ioam6.sh and always reflect the same.
  33. */
  34. static struct ioam_config node1 = {
  35. .id = 1,
  36. .wide = 11111111,
  37. .ingr_id = 0xffff, /* default value */
  38. .egr_id = 101,
  39. .ingr_wide = 0xffffffff, /* default value */
  40. .egr_wide = 101101,
  41. .ns_data = 0xdeadbee0,
  42. .ns_wide = 0xcafec0caf00dc0de,
  43. .sc_id = 777,
  44. .sc_data = "something that will be 4n-aligned",
  45. .hlim = 64,
  46. };
  47. static struct ioam_config node2 = {
  48. .id = 2,
  49. .wide = 22222222,
  50. .ingr_id = 201,
  51. .egr_id = 202,
  52. .ingr_wide = 201201,
  53. .egr_wide = 202202,
  54. .ns_data = 0xdeadbee1,
  55. .ns_wide = 0xcafec0caf11dc0de,
  56. .sc_id = 666,
  57. .sc_data = "Hello there -Obi",
  58. .hlim = 63,
  59. };
  60. static struct ioam_config node3 = {
  61. .id = 3,
  62. .wide = 33333333,
  63. .ingr_id = 301,
  64. .egr_id = 0xffff, /* default value */
  65. .ingr_wide = 301301,
  66. .egr_wide = 0xffffffff, /* default value */
  67. .ns_data = 0xdeadbee2,
  68. .ns_wide = 0xcafec0caf22dc0de,
  69. .sc_id = 0xffffff, /* default value */
  70. .sc_data = NULL,
  71. .hlim = 62,
  72. };
  73. enum {
  74. /**********
  75. * OUTPUT *
  76. **********/
  77. TEST_OUT_UNDEF_NS,
  78. TEST_OUT_NO_ROOM,
  79. TEST_OUT_BIT0,
  80. TEST_OUT_BIT1,
  81. TEST_OUT_BIT2,
  82. TEST_OUT_BIT3,
  83. TEST_OUT_BIT4,
  84. TEST_OUT_BIT5,
  85. TEST_OUT_BIT6,
  86. TEST_OUT_BIT7,
  87. TEST_OUT_BIT8,
  88. TEST_OUT_BIT9,
  89. TEST_OUT_BIT10,
  90. TEST_OUT_BIT11,
  91. TEST_OUT_BIT22,
  92. TEST_OUT_FULL_SUPP_TRACE,
  93. /*********
  94. * INPUT *
  95. *********/
  96. TEST_IN_UNDEF_NS,
  97. TEST_IN_NO_ROOM,
  98. TEST_IN_OFLAG,
  99. TEST_IN_BIT0,
  100. TEST_IN_BIT1,
  101. TEST_IN_BIT2,
  102. TEST_IN_BIT3,
  103. TEST_IN_BIT4,
  104. TEST_IN_BIT5,
  105. TEST_IN_BIT6,
  106. TEST_IN_BIT7,
  107. TEST_IN_BIT8,
  108. TEST_IN_BIT9,
  109. TEST_IN_BIT10,
  110. TEST_IN_BIT11,
  111. TEST_IN_BIT22,
  112. TEST_IN_FULL_SUPP_TRACE,
  113. /**********
  114. * GLOBAL *
  115. **********/
  116. TEST_FWD_FULL_SUPP_TRACE,
  117. __TEST_MAX,
  118. };
  119. static int check_ioam_header(int tid, struct ioam6_trace_hdr *ioam6h,
  120. __u32 trace_type, __u16 ioam_ns)
  121. {
  122. if (__be16_to_cpu(ioam6h->namespace_id) != ioam_ns ||
  123. __be32_to_cpu(ioam6h->type_be32) != (trace_type << 8))
  124. return 1;
  125. switch (tid) {
  126. case TEST_OUT_UNDEF_NS:
  127. case TEST_IN_UNDEF_NS:
  128. return ioam6h->overflow ||
  129. ioam6h->nodelen != 1 ||
  130. ioam6h->remlen != 1;
  131. case TEST_OUT_NO_ROOM:
  132. case TEST_IN_NO_ROOM:
  133. case TEST_IN_OFLAG:
  134. return !ioam6h->overflow ||
  135. ioam6h->nodelen != 2 ||
  136. ioam6h->remlen != 1;
  137. case TEST_OUT_BIT0:
  138. case TEST_IN_BIT0:
  139. case TEST_OUT_BIT1:
  140. case TEST_IN_BIT1:
  141. case TEST_OUT_BIT2:
  142. case TEST_IN_BIT2:
  143. case TEST_OUT_BIT3:
  144. case TEST_IN_BIT3:
  145. case TEST_OUT_BIT4:
  146. case TEST_IN_BIT4:
  147. case TEST_OUT_BIT5:
  148. case TEST_IN_BIT5:
  149. case TEST_OUT_BIT6:
  150. case TEST_IN_BIT6:
  151. case TEST_OUT_BIT7:
  152. case TEST_IN_BIT7:
  153. case TEST_OUT_BIT11:
  154. case TEST_IN_BIT11:
  155. return ioam6h->overflow ||
  156. ioam6h->nodelen != 1 ||
  157. ioam6h->remlen;
  158. case TEST_OUT_BIT8:
  159. case TEST_IN_BIT8:
  160. case TEST_OUT_BIT9:
  161. case TEST_IN_BIT9:
  162. case TEST_OUT_BIT10:
  163. case TEST_IN_BIT10:
  164. return ioam6h->overflow ||
  165. ioam6h->nodelen != 2 ||
  166. ioam6h->remlen;
  167. case TEST_OUT_BIT22:
  168. case TEST_IN_BIT22:
  169. return ioam6h->overflow ||
  170. ioam6h->nodelen ||
  171. ioam6h->remlen;
  172. case TEST_OUT_FULL_SUPP_TRACE:
  173. case TEST_IN_FULL_SUPP_TRACE:
  174. case TEST_FWD_FULL_SUPP_TRACE:
  175. return ioam6h->overflow ||
  176. ioam6h->nodelen != 15 ||
  177. ioam6h->remlen;
  178. default:
  179. break;
  180. }
  181. return 1;
  182. }
  183. static int check_ioam6_data(__u8 **p, struct ioam6_trace_hdr *ioam6h,
  184. const struct ioam_config cnf)
  185. {
  186. unsigned int len;
  187. __u8 aligned;
  188. __u64 raw64;
  189. __u32 raw32;
  190. if (ioam6h->type.bit0) {
  191. raw32 = __be32_to_cpu(*((__u32 *)*p));
  192. if (cnf.hlim != (raw32 >> 24) || cnf.id != (raw32 & 0xffffff))
  193. return 1;
  194. *p += sizeof(__u32);
  195. }
  196. if (ioam6h->type.bit1) {
  197. raw32 = __be32_to_cpu(*((__u32 *)*p));
  198. if (cnf.ingr_id != (raw32 >> 16) ||
  199. cnf.egr_id != (raw32 & 0xffff))
  200. return 1;
  201. *p += sizeof(__u32);
  202. }
  203. if (ioam6h->type.bit2)
  204. *p += sizeof(__u32);
  205. if (ioam6h->type.bit3)
  206. *p += sizeof(__u32);
  207. if (ioam6h->type.bit4) {
  208. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  209. return 1;
  210. *p += sizeof(__u32);
  211. }
  212. if (ioam6h->type.bit5) {
  213. if (__be32_to_cpu(*((__u32 *)*p)) != cnf.ns_data)
  214. return 1;
  215. *p += sizeof(__u32);
  216. }
  217. if (ioam6h->type.bit6)
  218. *p += sizeof(__u32);
  219. if (ioam6h->type.bit7) {
  220. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  221. return 1;
  222. *p += sizeof(__u32);
  223. }
  224. if (ioam6h->type.bit8) {
  225. raw64 = __be64_to_cpu(*((__u64 *)*p));
  226. if (cnf.hlim != (raw64 >> 56) ||
  227. cnf.wide != (raw64 & 0xffffffffffffff))
  228. return 1;
  229. *p += sizeof(__u64);
  230. }
  231. if (ioam6h->type.bit9) {
  232. if (__be32_to_cpu(*((__u32 *)*p)) != cnf.ingr_wide)
  233. return 1;
  234. *p += sizeof(__u32);
  235. if (__be32_to_cpu(*((__u32 *)*p)) != cnf.egr_wide)
  236. return 1;
  237. *p += sizeof(__u32);
  238. }
  239. if (ioam6h->type.bit10) {
  240. if (__be64_to_cpu(*((__u64 *)*p)) != cnf.ns_wide)
  241. return 1;
  242. *p += sizeof(__u64);
  243. }
  244. if (ioam6h->type.bit11) {
  245. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  246. return 1;
  247. *p += sizeof(__u32);
  248. }
  249. if (ioam6h->type.bit12) {
  250. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  251. return 1;
  252. *p += sizeof(__u32);
  253. }
  254. if (ioam6h->type.bit13) {
  255. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  256. return 1;
  257. *p += sizeof(__u32);
  258. }
  259. if (ioam6h->type.bit14) {
  260. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  261. return 1;
  262. *p += sizeof(__u32);
  263. }
  264. if (ioam6h->type.bit15) {
  265. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  266. return 1;
  267. *p += sizeof(__u32);
  268. }
  269. if (ioam6h->type.bit16) {
  270. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  271. return 1;
  272. *p += sizeof(__u32);
  273. }
  274. if (ioam6h->type.bit17) {
  275. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  276. return 1;
  277. *p += sizeof(__u32);
  278. }
  279. if (ioam6h->type.bit18) {
  280. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  281. return 1;
  282. *p += sizeof(__u32);
  283. }
  284. if (ioam6h->type.bit19) {
  285. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  286. return 1;
  287. *p += sizeof(__u32);
  288. }
  289. if (ioam6h->type.bit20) {
  290. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  291. return 1;
  292. *p += sizeof(__u32);
  293. }
  294. if (ioam6h->type.bit21) {
  295. if (__be32_to_cpu(*((__u32 *)*p)) != 0xffffffff)
  296. return 1;
  297. *p += sizeof(__u32);
  298. }
  299. if (ioam6h->type.bit22) {
  300. len = cnf.sc_data ? strlen(cnf.sc_data) : 0;
  301. aligned = cnf.sc_data ? __ALIGN_KERNEL(len, 4) : 0;
  302. raw32 = __be32_to_cpu(*((__u32 *)*p));
  303. if (aligned != (raw32 >> 24) * 4 ||
  304. cnf.sc_id != (raw32 & 0xffffff))
  305. return 1;
  306. *p += sizeof(__u32);
  307. if (cnf.sc_data) {
  308. if (strncmp((char *)*p, cnf.sc_data, len))
  309. return 1;
  310. *p += len;
  311. aligned -= len;
  312. while (aligned--) {
  313. if (**p != '\0')
  314. return 1;
  315. *p += sizeof(__u8);
  316. }
  317. }
  318. }
  319. return 0;
  320. }
  321. static int check_ioam_header_and_data(int tid, struct ioam6_trace_hdr *ioam6h,
  322. __u32 trace_type, __u16 ioam_ns)
  323. {
  324. __u8 *p;
  325. if (check_ioam_header(tid, ioam6h, trace_type, ioam_ns))
  326. return 1;
  327. p = ioam6h->data + ioam6h->remlen * 4;
  328. switch (tid) {
  329. case TEST_OUT_BIT0:
  330. case TEST_OUT_BIT1:
  331. case TEST_OUT_BIT2:
  332. case TEST_OUT_BIT3:
  333. case TEST_OUT_BIT4:
  334. case TEST_OUT_BIT5:
  335. case TEST_OUT_BIT6:
  336. case TEST_OUT_BIT7:
  337. case TEST_OUT_BIT8:
  338. case TEST_OUT_BIT9:
  339. case TEST_OUT_BIT10:
  340. case TEST_OUT_BIT11:
  341. case TEST_OUT_BIT22:
  342. case TEST_OUT_FULL_SUPP_TRACE:
  343. return check_ioam6_data(&p, ioam6h, node1);
  344. case TEST_IN_BIT0:
  345. case TEST_IN_BIT1:
  346. case TEST_IN_BIT2:
  347. case TEST_IN_BIT3:
  348. case TEST_IN_BIT4:
  349. case TEST_IN_BIT5:
  350. case TEST_IN_BIT6:
  351. case TEST_IN_BIT7:
  352. case TEST_IN_BIT8:
  353. case TEST_IN_BIT9:
  354. case TEST_IN_BIT10:
  355. case TEST_IN_BIT11:
  356. case TEST_IN_BIT22:
  357. case TEST_IN_FULL_SUPP_TRACE:
  358. {
  359. __u32 tmp32 = node2.egr_wide;
  360. __u16 tmp16 = node2.egr_id;
  361. int res;
  362. node2.egr_id = 0xffff;
  363. node2.egr_wide = 0xffffffff;
  364. res = check_ioam6_data(&p, ioam6h, node2);
  365. node2.egr_id = tmp16;
  366. node2.egr_wide = tmp32;
  367. return res;
  368. }
  369. case TEST_FWD_FULL_SUPP_TRACE:
  370. if (check_ioam6_data(&p, ioam6h, node3))
  371. return 1;
  372. if (check_ioam6_data(&p, ioam6h, node2))
  373. return 1;
  374. return check_ioam6_data(&p, ioam6h, node1);
  375. default:
  376. break;
  377. }
  378. return 1;
  379. }
  380. static int str2id(const char *tname)
  381. {
  382. if (!strcmp("out_undef_ns", tname))
  383. return TEST_OUT_UNDEF_NS;
  384. if (!strcmp("out_no_room", tname))
  385. return TEST_OUT_NO_ROOM;
  386. if (!strcmp("out_bit0", tname))
  387. return TEST_OUT_BIT0;
  388. if (!strcmp("out_bit1", tname))
  389. return TEST_OUT_BIT1;
  390. if (!strcmp("out_bit2", tname))
  391. return TEST_OUT_BIT2;
  392. if (!strcmp("out_bit3", tname))
  393. return TEST_OUT_BIT3;
  394. if (!strcmp("out_bit4", tname))
  395. return TEST_OUT_BIT4;
  396. if (!strcmp("out_bit5", tname))
  397. return TEST_OUT_BIT5;
  398. if (!strcmp("out_bit6", tname))
  399. return TEST_OUT_BIT6;
  400. if (!strcmp("out_bit7", tname))
  401. return TEST_OUT_BIT7;
  402. if (!strcmp("out_bit8", tname))
  403. return TEST_OUT_BIT8;
  404. if (!strcmp("out_bit9", tname))
  405. return TEST_OUT_BIT9;
  406. if (!strcmp("out_bit10", tname))
  407. return TEST_OUT_BIT10;
  408. if (!strcmp("out_bit11", tname))
  409. return TEST_OUT_BIT11;
  410. if (!strcmp("out_bit22", tname))
  411. return TEST_OUT_BIT22;
  412. if (!strcmp("out_full_supp_trace", tname))
  413. return TEST_OUT_FULL_SUPP_TRACE;
  414. if (!strcmp("in_undef_ns", tname))
  415. return TEST_IN_UNDEF_NS;
  416. if (!strcmp("in_no_room", tname))
  417. return TEST_IN_NO_ROOM;
  418. if (!strcmp("in_oflag", tname))
  419. return TEST_IN_OFLAG;
  420. if (!strcmp("in_bit0", tname))
  421. return TEST_IN_BIT0;
  422. if (!strcmp("in_bit1", tname))
  423. return TEST_IN_BIT1;
  424. if (!strcmp("in_bit2", tname))
  425. return TEST_IN_BIT2;
  426. if (!strcmp("in_bit3", tname))
  427. return TEST_IN_BIT3;
  428. if (!strcmp("in_bit4", tname))
  429. return TEST_IN_BIT4;
  430. if (!strcmp("in_bit5", tname))
  431. return TEST_IN_BIT5;
  432. if (!strcmp("in_bit6", tname))
  433. return TEST_IN_BIT6;
  434. if (!strcmp("in_bit7", tname))
  435. return TEST_IN_BIT7;
  436. if (!strcmp("in_bit8", tname))
  437. return TEST_IN_BIT8;
  438. if (!strcmp("in_bit9", tname))
  439. return TEST_IN_BIT9;
  440. if (!strcmp("in_bit10", tname))
  441. return TEST_IN_BIT10;
  442. if (!strcmp("in_bit11", tname))
  443. return TEST_IN_BIT11;
  444. if (!strcmp("in_bit22", tname))
  445. return TEST_IN_BIT22;
  446. if (!strcmp("in_full_supp_trace", tname))
  447. return TEST_IN_FULL_SUPP_TRACE;
  448. if (!strcmp("fwd_full_supp_trace", tname))
  449. return TEST_FWD_FULL_SUPP_TRACE;
  450. return -1;
  451. }
  452. static int ipv6_addr_equal(const struct in6_addr *a1, const struct in6_addr *a2)
  453. {
  454. return ((a1->s6_addr32[0] ^ a2->s6_addr32[0]) |
  455. (a1->s6_addr32[1] ^ a2->s6_addr32[1]) |
  456. (a1->s6_addr32[2] ^ a2->s6_addr32[2]) |
  457. (a1->s6_addr32[3] ^ a2->s6_addr32[3])) == 0;
  458. }
  459. static int get_u32(__u32 *val, const char *arg, int base)
  460. {
  461. unsigned long res;
  462. char *ptr;
  463. if (!arg || !*arg)
  464. return -1;
  465. res = strtoul(arg, &ptr, base);
  466. if (!ptr || ptr == arg || *ptr)
  467. return -1;
  468. if (res == ULONG_MAX && errno == ERANGE)
  469. return -1;
  470. if (res > 0xFFFFFFFFUL)
  471. return -1;
  472. *val = res;
  473. return 0;
  474. }
  475. static int get_u16(__u16 *val, const char *arg, int base)
  476. {
  477. unsigned long res;
  478. char *ptr;
  479. if (!arg || !*arg)
  480. return -1;
  481. res = strtoul(arg, &ptr, base);
  482. if (!ptr || ptr == arg || *ptr)
  483. return -1;
  484. if (res == ULONG_MAX && errno == ERANGE)
  485. return -1;
  486. if (res > 0xFFFFUL)
  487. return -1;
  488. *val = res;
  489. return 0;
  490. }
  491. static int (*func[__TEST_MAX])(int, struct ioam6_trace_hdr *, __u32, __u16) = {
  492. [TEST_OUT_UNDEF_NS] = check_ioam_header,
  493. [TEST_OUT_NO_ROOM] = check_ioam_header,
  494. [TEST_OUT_BIT0] = check_ioam_header_and_data,
  495. [TEST_OUT_BIT1] = check_ioam_header_and_data,
  496. [TEST_OUT_BIT2] = check_ioam_header_and_data,
  497. [TEST_OUT_BIT3] = check_ioam_header_and_data,
  498. [TEST_OUT_BIT4] = check_ioam_header_and_data,
  499. [TEST_OUT_BIT5] = check_ioam_header_and_data,
  500. [TEST_OUT_BIT6] = check_ioam_header_and_data,
  501. [TEST_OUT_BIT7] = check_ioam_header_and_data,
  502. [TEST_OUT_BIT8] = check_ioam_header_and_data,
  503. [TEST_OUT_BIT9] = check_ioam_header_and_data,
  504. [TEST_OUT_BIT10] = check_ioam_header_and_data,
  505. [TEST_OUT_BIT11] = check_ioam_header_and_data,
  506. [TEST_OUT_BIT22] = check_ioam_header_and_data,
  507. [TEST_OUT_FULL_SUPP_TRACE] = check_ioam_header_and_data,
  508. [TEST_IN_UNDEF_NS] = check_ioam_header,
  509. [TEST_IN_NO_ROOM] = check_ioam_header,
  510. [TEST_IN_OFLAG] = check_ioam_header,
  511. [TEST_IN_BIT0] = check_ioam_header_and_data,
  512. [TEST_IN_BIT1] = check_ioam_header_and_data,
  513. [TEST_IN_BIT2] = check_ioam_header_and_data,
  514. [TEST_IN_BIT3] = check_ioam_header_and_data,
  515. [TEST_IN_BIT4] = check_ioam_header_and_data,
  516. [TEST_IN_BIT5] = check_ioam_header_and_data,
  517. [TEST_IN_BIT6] = check_ioam_header_and_data,
  518. [TEST_IN_BIT7] = check_ioam_header_and_data,
  519. [TEST_IN_BIT8] = check_ioam_header_and_data,
  520. [TEST_IN_BIT9] = check_ioam_header_and_data,
  521. [TEST_IN_BIT10] = check_ioam_header_and_data,
  522. [TEST_IN_BIT11] = check_ioam_header_and_data,
  523. [TEST_IN_BIT22] = check_ioam_header_and_data,
  524. [TEST_IN_FULL_SUPP_TRACE] = check_ioam_header_and_data,
  525. [TEST_FWD_FULL_SUPP_TRACE] = check_ioam_header_and_data,
  526. };
  527. int main(int argc, char **argv)
  528. {
  529. int fd, size, hoplen, tid, ret = 1;
  530. struct in6_addr src, dst;
  531. struct ioam6_hdr *opt;
  532. struct ipv6hdr *ip6h;
  533. __u8 buffer[400], *p;
  534. __u16 ioam_ns;
  535. __u32 tr_type;
  536. if (argc != 7)
  537. goto out;
  538. tid = str2id(argv[2]);
  539. if (tid < 0 || !func[tid])
  540. goto out;
  541. if (inet_pton(AF_INET6, argv[3], &src) != 1 ||
  542. inet_pton(AF_INET6, argv[4], &dst) != 1)
  543. goto out;
  544. if (get_u32(&tr_type, argv[5], 16) ||
  545. get_u16(&ioam_ns, argv[6], 0))
  546. goto out;
  547. fd = socket(AF_PACKET, SOCK_DGRAM, __cpu_to_be16(ETH_P_IPV6));
  548. if (!fd)
  549. goto out;
  550. if (setsockopt(fd, SOL_SOCKET, SO_BINDTODEVICE,
  551. argv[1], strlen(argv[1])))
  552. goto close;
  553. recv:
  554. size = recv(fd, buffer, sizeof(buffer), 0);
  555. if (size <= 0)
  556. goto close;
  557. ip6h = (struct ipv6hdr *)buffer;
  558. if (!ipv6_addr_equal(&ip6h->saddr, &src) ||
  559. !ipv6_addr_equal(&ip6h->daddr, &dst))
  560. goto recv;
  561. if (ip6h->nexthdr != IPPROTO_HOPOPTS)
  562. goto close;
  563. p = buffer + sizeof(*ip6h);
  564. hoplen = (p[1] + 1) << 3;
  565. p += sizeof(struct ipv6_hopopt_hdr);
  566. while (hoplen > 0) {
  567. opt = (struct ioam6_hdr *)p;
  568. if (opt->opt_type == IPV6_TLV_IOAM &&
  569. opt->type == IOAM6_TYPE_PREALLOC) {
  570. p += sizeof(*opt);
  571. ret = func[tid](tid, (struct ioam6_trace_hdr *)p,
  572. tr_type, ioam_ns);
  573. break;
  574. }
  575. p += opt->opt_len + 2;
  576. hoplen -= opt->opt_len + 2;
  577. }
  578. close:
  579. close(fd);
  580. out:
  581. return ret;
  582. }