sm_make_chunk.c 103 KB

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  1. /* SCTP kernel implementation
  2. * (C) Copyright IBM Corp. 2001, 2004
  3. * Copyright (c) 1999-2000 Cisco, Inc.
  4. * Copyright (c) 1999-2001 Motorola, Inc.
  5. * Copyright (c) 2001-2002 Intel Corp.
  6. *
  7. * This file is part of the SCTP kernel implementation
  8. *
  9. * These functions work with the state functions in sctp_sm_statefuns.c
  10. * to implement the state operations. These functions implement the
  11. * steps which require modifying existing data structures.
  12. *
  13. * This SCTP implementation is free software;
  14. * you can redistribute it and/or modify it under the terms of
  15. * the GNU General Public License as published by
  16. * the Free Software Foundation; either version 2, or (at your option)
  17. * any later version.
  18. *
  19. * This SCTP implementation is distributed in the hope that it
  20. * will be useful, but WITHOUT ANY WARRANTY; without even the implied
  21. * ************************
  22. * warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  23. * See the GNU General Public License for more details.
  24. *
  25. * You should have received a copy of the GNU General Public License
  26. * along with GNU CC; see the file COPYING. If not, see
  27. * <http://www.gnu.org/licenses/>.
  28. *
  29. * Please send any bug reports or fixes you make to the
  30. * email address(es):
  31. * lksctp developers <linux-sctp@vger.kernel.org>
  32. *
  33. * Written or modified by:
  34. * La Monte H.P. Yarroll <piggy@acm.org>
  35. * Karl Knutson <karl@athena.chicago.il.us>
  36. * C. Robin <chris@hundredacre.ac.uk>
  37. * Jon Grimm <jgrimm@us.ibm.com>
  38. * Xingang Guo <xingang.guo@intel.com>
  39. * Dajiang Zhang <dajiang.zhang@nokia.com>
  40. * Sridhar Samudrala <sri@us.ibm.com>
  41. * Daisy Chang <daisyc@us.ibm.com>
  42. * Ardelle Fan <ardelle.fan@intel.com>
  43. * Kevin Gao <kevin.gao@intel.com>
  44. */
  45. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  46. #include <crypto/hash.h>
  47. #include <linux/types.h>
  48. #include <linux/kernel.h>
  49. #include <linux/ip.h>
  50. #include <linux/ipv6.h>
  51. #include <linux/net.h>
  52. #include <linux/inet.h>
  53. #include <linux/scatterlist.h>
  54. #include <linux/slab.h>
  55. #include <net/sock.h>
  56. #include <linux/skbuff.h>
  57. #include <linux/random.h> /* for get_random_bytes */
  58. #include <net/sctp/sctp.h>
  59. #include <net/sctp/sm.h>
  60. static struct sctp_chunk *sctp_make_control(const struct sctp_association *asoc,
  61. __u8 type, __u8 flags, int paylen,
  62. gfp_t gfp);
  63. static struct sctp_chunk *sctp_make_data(const struct sctp_association *asoc,
  64. __u8 flags, int paylen, gfp_t gfp);
  65. static struct sctp_chunk *_sctp_make_chunk(const struct sctp_association *asoc,
  66. __u8 type, __u8 flags, int paylen,
  67. gfp_t gfp);
  68. static sctp_cookie_param_t *sctp_pack_cookie(const struct sctp_endpoint *ep,
  69. const struct sctp_association *asoc,
  70. const struct sctp_chunk *init_chunk,
  71. int *cookie_len,
  72. const __u8 *raw_addrs, int addrs_len);
  73. static int sctp_process_param(struct sctp_association *asoc,
  74. union sctp_params param,
  75. const union sctp_addr *peer_addr,
  76. gfp_t gfp);
  77. static void *sctp_addto_param(struct sctp_chunk *chunk, int len,
  78. const void *data);
  79. static void *sctp_addto_chunk_fixed(struct sctp_chunk *, int len,
  80. const void *data);
  81. /* Control chunk destructor */
  82. static void sctp_control_release_owner(struct sk_buff *skb)
  83. {
  84. /*TODO: do memory release */
  85. }
  86. static void sctp_control_set_owner_w(struct sctp_chunk *chunk)
  87. {
  88. struct sctp_association *asoc = chunk->asoc;
  89. struct sk_buff *skb = chunk->skb;
  90. /* TODO: properly account for control chunks.
  91. * To do it right we'll need:
  92. * 1) endpoint if association isn't known.
  93. * 2) proper memory accounting.
  94. *
  95. * For now don't do anything for now.
  96. */
  97. skb->sk = asoc ? asoc->base.sk : NULL;
  98. skb->destructor = sctp_control_release_owner;
  99. }
  100. /* What was the inbound interface for this chunk? */
  101. int sctp_chunk_iif(const struct sctp_chunk *chunk)
  102. {
  103. struct sk_buff *skb = chunk->skb;
  104. return SCTP_INPUT_CB(skb)->af->skb_iif(skb);
  105. }
  106. /* RFC 2960 3.3.2 Initiation (INIT) (1)
  107. *
  108. * Note 2: The ECN capable field is reserved for future use of
  109. * Explicit Congestion Notification.
  110. */
  111. static const struct sctp_paramhdr ecap_param = {
  112. SCTP_PARAM_ECN_CAPABLE,
  113. cpu_to_be16(sizeof(struct sctp_paramhdr)),
  114. };
  115. static const struct sctp_paramhdr prsctp_param = {
  116. SCTP_PARAM_FWD_TSN_SUPPORT,
  117. cpu_to_be16(sizeof(struct sctp_paramhdr)),
  118. };
  119. /* A helper to initialize an op error inside a
  120. * provided chunk, as most cause codes will be embedded inside an
  121. * abort chunk.
  122. */
  123. void sctp_init_cause(struct sctp_chunk *chunk, __be16 cause_code,
  124. size_t paylen)
  125. {
  126. sctp_errhdr_t err;
  127. __u16 len;
  128. /* Cause code constants are now defined in network order. */
  129. err.cause = cause_code;
  130. len = sizeof(sctp_errhdr_t) + paylen;
  131. err.length = htons(len);
  132. chunk->subh.err_hdr = sctp_addto_chunk(chunk, sizeof(sctp_errhdr_t), &err);
  133. }
  134. /* A helper to initialize an op error inside a
  135. * provided chunk, as most cause codes will be embedded inside an
  136. * abort chunk. Differs from sctp_init_cause in that it won't oops
  137. * if there isn't enough space in the op error chunk
  138. */
  139. static int sctp_init_cause_fixed(struct sctp_chunk *chunk, __be16 cause_code,
  140. size_t paylen)
  141. {
  142. sctp_errhdr_t err;
  143. __u16 len;
  144. /* Cause code constants are now defined in network order. */
  145. err.cause = cause_code;
  146. len = sizeof(sctp_errhdr_t) + paylen;
  147. err.length = htons(len);
  148. if (skb_tailroom(chunk->skb) < len)
  149. return -ENOSPC;
  150. chunk->subh.err_hdr = sctp_addto_chunk_fixed(chunk,
  151. sizeof(sctp_errhdr_t),
  152. &err);
  153. return 0;
  154. }
  155. /* 3.3.2 Initiation (INIT) (1)
  156. *
  157. * This chunk is used to initiate a SCTP association between two
  158. * endpoints. The format of the INIT chunk is shown below:
  159. *
  160. * 0 1 2 3
  161. * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  162. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  163. * | Type = 1 | Chunk Flags | Chunk Length |
  164. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  165. * | Initiate Tag |
  166. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  167. * | Advertised Receiver Window Credit (a_rwnd) |
  168. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  169. * | Number of Outbound Streams | Number of Inbound Streams |
  170. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  171. * | Initial TSN |
  172. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  173. * \ \
  174. * / Optional/Variable-Length Parameters /
  175. * \ \
  176. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  177. *
  178. *
  179. * The INIT chunk contains the following parameters. Unless otherwise
  180. * noted, each parameter MUST only be included once in the INIT chunk.
  181. *
  182. * Fixed Parameters Status
  183. * ----------------------------------------------
  184. * Initiate Tag Mandatory
  185. * Advertised Receiver Window Credit Mandatory
  186. * Number of Outbound Streams Mandatory
  187. * Number of Inbound Streams Mandatory
  188. * Initial TSN Mandatory
  189. *
  190. * Variable Parameters Status Type Value
  191. * -------------------------------------------------------------
  192. * IPv4 Address (Note 1) Optional 5
  193. * IPv6 Address (Note 1) Optional 6
  194. * Cookie Preservative Optional 9
  195. * Reserved for ECN Capable (Note 2) Optional 32768 (0x8000)
  196. * Host Name Address (Note 3) Optional 11
  197. * Supported Address Types (Note 4) Optional 12
  198. */
  199. struct sctp_chunk *sctp_make_init(const struct sctp_association *asoc,
  200. const struct sctp_bind_addr *bp,
  201. gfp_t gfp, int vparam_len)
  202. {
  203. struct net *net = sock_net(asoc->base.sk);
  204. struct sctp_endpoint *ep = asoc->ep;
  205. sctp_inithdr_t init;
  206. union sctp_params addrs;
  207. size_t chunksize;
  208. struct sctp_chunk *retval = NULL;
  209. int num_types, addrs_len = 0;
  210. struct sctp_sock *sp;
  211. sctp_supported_addrs_param_t sat;
  212. __be16 types[2];
  213. sctp_adaptation_ind_param_t aiparam;
  214. sctp_supported_ext_param_t ext_param;
  215. int num_ext = 0;
  216. __u8 extensions[3];
  217. sctp_paramhdr_t *auth_chunks = NULL,
  218. *auth_hmacs = NULL;
  219. /* RFC 2960 3.3.2 Initiation (INIT) (1)
  220. *
  221. * Note 1: The INIT chunks can contain multiple addresses that
  222. * can be IPv4 and/or IPv6 in any combination.
  223. */
  224. retval = NULL;
  225. /* Convert the provided bind address list to raw format. */
  226. addrs = sctp_bind_addrs_to_raw(bp, &addrs_len, gfp);
  227. init.init_tag = htonl(asoc->c.my_vtag);
  228. init.a_rwnd = htonl(asoc->rwnd);
  229. init.num_outbound_streams = htons(asoc->c.sinit_num_ostreams);
  230. init.num_inbound_streams = htons(asoc->c.sinit_max_instreams);
  231. init.initial_tsn = htonl(asoc->c.initial_tsn);
  232. /* How many address types are needed? */
  233. sp = sctp_sk(asoc->base.sk);
  234. num_types = sp->pf->supported_addrs(sp, types);
  235. chunksize = sizeof(init) + addrs_len;
  236. chunksize += SCTP_PAD4(SCTP_SAT_LEN(num_types));
  237. chunksize += sizeof(ecap_param);
  238. if (asoc->prsctp_enable)
  239. chunksize += sizeof(prsctp_param);
  240. /* ADDIP: Section 4.2.7:
  241. * An implementation supporting this extension [ADDIP] MUST list
  242. * the ASCONF,the ASCONF-ACK, and the AUTH chunks in its INIT and
  243. * INIT-ACK parameters.
  244. */
  245. if (net->sctp.addip_enable) {
  246. extensions[num_ext] = SCTP_CID_ASCONF;
  247. extensions[num_ext+1] = SCTP_CID_ASCONF_ACK;
  248. num_ext += 2;
  249. }
  250. if (sp->adaptation_ind)
  251. chunksize += sizeof(aiparam);
  252. chunksize += vparam_len;
  253. /* Account for AUTH related parameters */
  254. if (ep->auth_enable) {
  255. /* Add random parameter length*/
  256. chunksize += sizeof(asoc->c.auth_random);
  257. /* Add HMACS parameter length if any were defined */
  258. auth_hmacs = (sctp_paramhdr_t *)asoc->c.auth_hmacs;
  259. if (auth_hmacs->length)
  260. chunksize += SCTP_PAD4(ntohs(auth_hmacs->length));
  261. else
  262. auth_hmacs = NULL;
  263. /* Add CHUNKS parameter length */
  264. auth_chunks = (sctp_paramhdr_t *)asoc->c.auth_chunks;
  265. if (auth_chunks->length)
  266. chunksize += SCTP_PAD4(ntohs(auth_chunks->length));
  267. else
  268. auth_chunks = NULL;
  269. extensions[num_ext] = SCTP_CID_AUTH;
  270. num_ext += 1;
  271. }
  272. /* If we have any extensions to report, account for that */
  273. if (num_ext)
  274. chunksize += SCTP_PAD4(sizeof(sctp_supported_ext_param_t) +
  275. num_ext);
  276. /* RFC 2960 3.3.2 Initiation (INIT) (1)
  277. *
  278. * Note 3: An INIT chunk MUST NOT contain more than one Host
  279. * Name address parameter. Moreover, the sender of the INIT
  280. * MUST NOT combine any other address types with the Host Name
  281. * address in the INIT. The receiver of INIT MUST ignore any
  282. * other address types if the Host Name address parameter is
  283. * present in the received INIT chunk.
  284. *
  285. * PLEASE DO NOT FIXME [This version does not support Host Name.]
  286. */
  287. retval = sctp_make_control(asoc, SCTP_CID_INIT, 0, chunksize, gfp);
  288. if (!retval)
  289. goto nodata;
  290. retval->subh.init_hdr =
  291. sctp_addto_chunk(retval, sizeof(init), &init);
  292. retval->param_hdr.v =
  293. sctp_addto_chunk(retval, addrs_len, addrs.v);
  294. /* RFC 2960 3.3.2 Initiation (INIT) (1)
  295. *
  296. * Note 4: This parameter, when present, specifies all the
  297. * address types the sending endpoint can support. The absence
  298. * of this parameter indicates that the sending endpoint can
  299. * support any address type.
  300. */
  301. sat.param_hdr.type = SCTP_PARAM_SUPPORTED_ADDRESS_TYPES;
  302. sat.param_hdr.length = htons(SCTP_SAT_LEN(num_types));
  303. sctp_addto_chunk(retval, sizeof(sat), &sat);
  304. sctp_addto_chunk(retval, num_types * sizeof(__u16), &types);
  305. sctp_addto_chunk(retval, sizeof(ecap_param), &ecap_param);
  306. /* Add the supported extensions parameter. Be nice and add this
  307. * fist before addiding the parameters for the extensions themselves
  308. */
  309. if (num_ext) {
  310. ext_param.param_hdr.type = SCTP_PARAM_SUPPORTED_EXT;
  311. ext_param.param_hdr.length =
  312. htons(sizeof(sctp_supported_ext_param_t) + num_ext);
  313. sctp_addto_chunk(retval, sizeof(sctp_supported_ext_param_t),
  314. &ext_param);
  315. sctp_addto_param(retval, num_ext, extensions);
  316. }
  317. if (asoc->prsctp_enable)
  318. sctp_addto_chunk(retval, sizeof(prsctp_param), &prsctp_param);
  319. if (sp->adaptation_ind) {
  320. aiparam.param_hdr.type = SCTP_PARAM_ADAPTATION_LAYER_IND;
  321. aiparam.param_hdr.length = htons(sizeof(aiparam));
  322. aiparam.adaptation_ind = htonl(sp->adaptation_ind);
  323. sctp_addto_chunk(retval, sizeof(aiparam), &aiparam);
  324. }
  325. /* Add SCTP-AUTH chunks to the parameter list */
  326. if (ep->auth_enable) {
  327. sctp_addto_chunk(retval, sizeof(asoc->c.auth_random),
  328. asoc->c.auth_random);
  329. if (auth_hmacs)
  330. sctp_addto_chunk(retval, ntohs(auth_hmacs->length),
  331. auth_hmacs);
  332. if (auth_chunks)
  333. sctp_addto_chunk(retval, ntohs(auth_chunks->length),
  334. auth_chunks);
  335. }
  336. nodata:
  337. kfree(addrs.v);
  338. return retval;
  339. }
  340. struct sctp_chunk *sctp_make_init_ack(const struct sctp_association *asoc,
  341. const struct sctp_chunk *chunk,
  342. gfp_t gfp, int unkparam_len)
  343. {
  344. sctp_inithdr_t initack;
  345. struct sctp_chunk *retval;
  346. union sctp_params addrs;
  347. struct sctp_sock *sp;
  348. int addrs_len;
  349. sctp_cookie_param_t *cookie;
  350. int cookie_len;
  351. size_t chunksize;
  352. sctp_adaptation_ind_param_t aiparam;
  353. sctp_supported_ext_param_t ext_param;
  354. int num_ext = 0;
  355. __u8 extensions[3];
  356. sctp_paramhdr_t *auth_chunks = NULL,
  357. *auth_hmacs = NULL,
  358. *auth_random = NULL;
  359. retval = NULL;
  360. /* Note: there may be no addresses to embed. */
  361. addrs = sctp_bind_addrs_to_raw(&asoc->base.bind_addr, &addrs_len, gfp);
  362. initack.init_tag = htonl(asoc->c.my_vtag);
  363. initack.a_rwnd = htonl(asoc->rwnd);
  364. initack.num_outbound_streams = htons(asoc->c.sinit_num_ostreams);
  365. initack.num_inbound_streams = htons(asoc->c.sinit_max_instreams);
  366. initack.initial_tsn = htonl(asoc->c.initial_tsn);
  367. /* FIXME: We really ought to build the cookie right
  368. * into the packet instead of allocating more fresh memory.
  369. */
  370. cookie = sctp_pack_cookie(asoc->ep, asoc, chunk, &cookie_len,
  371. addrs.v, addrs_len);
  372. if (!cookie)
  373. goto nomem_cookie;
  374. /* Calculate the total size of allocation, include the reserved
  375. * space for reporting unknown parameters if it is specified.
  376. */
  377. sp = sctp_sk(asoc->base.sk);
  378. chunksize = sizeof(initack) + addrs_len + cookie_len + unkparam_len;
  379. /* Tell peer that we'll do ECN only if peer advertised such cap. */
  380. if (asoc->peer.ecn_capable)
  381. chunksize += sizeof(ecap_param);
  382. if (asoc->peer.prsctp_capable)
  383. chunksize += sizeof(prsctp_param);
  384. if (asoc->peer.asconf_capable) {
  385. extensions[num_ext] = SCTP_CID_ASCONF;
  386. extensions[num_ext+1] = SCTP_CID_ASCONF_ACK;
  387. num_ext += 2;
  388. }
  389. if (sp->adaptation_ind)
  390. chunksize += sizeof(aiparam);
  391. if (asoc->peer.auth_capable) {
  392. auth_random = (sctp_paramhdr_t *)asoc->c.auth_random;
  393. chunksize += ntohs(auth_random->length);
  394. auth_hmacs = (sctp_paramhdr_t *)asoc->c.auth_hmacs;
  395. if (auth_hmacs->length)
  396. chunksize += SCTP_PAD4(ntohs(auth_hmacs->length));
  397. else
  398. auth_hmacs = NULL;
  399. auth_chunks = (sctp_paramhdr_t *)asoc->c.auth_chunks;
  400. if (auth_chunks->length)
  401. chunksize += SCTP_PAD4(ntohs(auth_chunks->length));
  402. else
  403. auth_chunks = NULL;
  404. extensions[num_ext] = SCTP_CID_AUTH;
  405. num_ext += 1;
  406. }
  407. if (num_ext)
  408. chunksize += SCTP_PAD4(sizeof(sctp_supported_ext_param_t) +
  409. num_ext);
  410. /* Now allocate and fill out the chunk. */
  411. retval = sctp_make_control(asoc, SCTP_CID_INIT_ACK, 0, chunksize, gfp);
  412. if (!retval)
  413. goto nomem_chunk;
  414. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  415. *
  416. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  417. * HEARTBEAT ACK, * etc.) to the same destination transport
  418. * address from which it received the DATA or control chunk
  419. * to which it is replying.
  420. *
  421. * [INIT ACK back to where the INIT came from.]
  422. */
  423. retval->transport = chunk->transport;
  424. retval->subh.init_hdr =
  425. sctp_addto_chunk(retval, sizeof(initack), &initack);
  426. retval->param_hdr.v = sctp_addto_chunk(retval, addrs_len, addrs.v);
  427. sctp_addto_chunk(retval, cookie_len, cookie);
  428. if (asoc->peer.ecn_capable)
  429. sctp_addto_chunk(retval, sizeof(ecap_param), &ecap_param);
  430. if (num_ext) {
  431. ext_param.param_hdr.type = SCTP_PARAM_SUPPORTED_EXT;
  432. ext_param.param_hdr.length =
  433. htons(sizeof(sctp_supported_ext_param_t) + num_ext);
  434. sctp_addto_chunk(retval, sizeof(sctp_supported_ext_param_t),
  435. &ext_param);
  436. sctp_addto_param(retval, num_ext, extensions);
  437. }
  438. if (asoc->peer.prsctp_capable)
  439. sctp_addto_chunk(retval, sizeof(prsctp_param), &prsctp_param);
  440. if (sp->adaptation_ind) {
  441. aiparam.param_hdr.type = SCTP_PARAM_ADAPTATION_LAYER_IND;
  442. aiparam.param_hdr.length = htons(sizeof(aiparam));
  443. aiparam.adaptation_ind = htonl(sp->adaptation_ind);
  444. sctp_addto_chunk(retval, sizeof(aiparam), &aiparam);
  445. }
  446. if (asoc->peer.auth_capable) {
  447. sctp_addto_chunk(retval, ntohs(auth_random->length),
  448. auth_random);
  449. if (auth_hmacs)
  450. sctp_addto_chunk(retval, ntohs(auth_hmacs->length),
  451. auth_hmacs);
  452. if (auth_chunks)
  453. sctp_addto_chunk(retval, ntohs(auth_chunks->length),
  454. auth_chunks);
  455. }
  456. /* We need to remove the const qualifier at this point. */
  457. retval->asoc = (struct sctp_association *) asoc;
  458. nomem_chunk:
  459. kfree(cookie);
  460. nomem_cookie:
  461. kfree(addrs.v);
  462. return retval;
  463. }
  464. /* 3.3.11 Cookie Echo (COOKIE ECHO) (10):
  465. *
  466. * This chunk is used only during the initialization of an association.
  467. * It is sent by the initiator of an association to its peer to complete
  468. * the initialization process. This chunk MUST precede any DATA chunk
  469. * sent within the association, but MAY be bundled with one or more DATA
  470. * chunks in the same packet.
  471. *
  472. * 0 1 2 3
  473. * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  474. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  475. * | Type = 10 |Chunk Flags | Length |
  476. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  477. * / Cookie /
  478. * \ \
  479. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  480. *
  481. * Chunk Flags: 8 bit
  482. *
  483. * Set to zero on transmit and ignored on receipt.
  484. *
  485. * Length: 16 bits (unsigned integer)
  486. *
  487. * Set to the size of the chunk in bytes, including the 4 bytes of
  488. * the chunk header and the size of the Cookie.
  489. *
  490. * Cookie: variable size
  491. *
  492. * This field must contain the exact cookie received in the
  493. * State Cookie parameter from the previous INIT ACK.
  494. *
  495. * An implementation SHOULD make the cookie as small as possible
  496. * to insure interoperability.
  497. */
  498. struct sctp_chunk *sctp_make_cookie_echo(const struct sctp_association *asoc,
  499. const struct sctp_chunk *chunk)
  500. {
  501. struct sctp_chunk *retval;
  502. void *cookie;
  503. int cookie_len;
  504. cookie = asoc->peer.cookie;
  505. cookie_len = asoc->peer.cookie_len;
  506. /* Build a cookie echo chunk. */
  507. retval = sctp_make_control(asoc, SCTP_CID_COOKIE_ECHO, 0,
  508. cookie_len, GFP_ATOMIC);
  509. if (!retval)
  510. goto nodata;
  511. retval->subh.cookie_hdr =
  512. sctp_addto_chunk(retval, cookie_len, cookie);
  513. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  514. *
  515. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  516. * HEARTBEAT ACK, * etc.) to the same destination transport
  517. * address from which it * received the DATA or control chunk
  518. * to which it is replying.
  519. *
  520. * [COOKIE ECHO back to where the INIT ACK came from.]
  521. */
  522. if (chunk)
  523. retval->transport = chunk->transport;
  524. nodata:
  525. return retval;
  526. }
  527. /* 3.3.12 Cookie Acknowledgement (COOKIE ACK) (11):
  528. *
  529. * This chunk is used only during the initialization of an
  530. * association. It is used to acknowledge the receipt of a COOKIE
  531. * ECHO chunk. This chunk MUST precede any DATA or SACK chunk sent
  532. * within the association, but MAY be bundled with one or more DATA
  533. * chunks or SACK chunk in the same SCTP packet.
  534. *
  535. * 0 1 2 3
  536. * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  537. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  538. * | Type = 11 |Chunk Flags | Length = 4 |
  539. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  540. *
  541. * Chunk Flags: 8 bits
  542. *
  543. * Set to zero on transmit and ignored on receipt.
  544. */
  545. struct sctp_chunk *sctp_make_cookie_ack(const struct sctp_association *asoc,
  546. const struct sctp_chunk *chunk)
  547. {
  548. struct sctp_chunk *retval;
  549. retval = sctp_make_control(asoc, SCTP_CID_COOKIE_ACK, 0, 0, GFP_ATOMIC);
  550. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  551. *
  552. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  553. * HEARTBEAT ACK, * etc.) to the same destination transport
  554. * address from which it * received the DATA or control chunk
  555. * to which it is replying.
  556. *
  557. * [COOKIE ACK back to where the COOKIE ECHO came from.]
  558. */
  559. if (retval && chunk)
  560. retval->transport = chunk->transport;
  561. return retval;
  562. }
  563. /*
  564. * Appendix A: Explicit Congestion Notification:
  565. * CWR:
  566. *
  567. * RFC 2481 details a specific bit for a sender to send in the header of
  568. * its next outbound TCP segment to indicate to its peer that it has
  569. * reduced its congestion window. This is termed the CWR bit. For
  570. * SCTP the same indication is made by including the CWR chunk.
  571. * This chunk contains one data element, i.e. the TSN number that
  572. * was sent in the ECNE chunk. This element represents the lowest
  573. * TSN number in the datagram that was originally marked with the
  574. * CE bit.
  575. *
  576. * 0 1 2 3
  577. * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  578. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  579. * | Chunk Type=13 | Flags=00000000| Chunk Length = 8 |
  580. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  581. * | Lowest TSN Number |
  582. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  583. *
  584. * Note: The CWR is considered a Control chunk.
  585. */
  586. struct sctp_chunk *sctp_make_cwr(const struct sctp_association *asoc,
  587. const __u32 lowest_tsn,
  588. const struct sctp_chunk *chunk)
  589. {
  590. struct sctp_chunk *retval;
  591. sctp_cwrhdr_t cwr;
  592. cwr.lowest_tsn = htonl(lowest_tsn);
  593. retval = sctp_make_control(asoc, SCTP_CID_ECN_CWR, 0,
  594. sizeof(sctp_cwrhdr_t), GFP_ATOMIC);
  595. if (!retval)
  596. goto nodata;
  597. retval->subh.ecn_cwr_hdr =
  598. sctp_addto_chunk(retval, sizeof(cwr), &cwr);
  599. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  600. *
  601. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  602. * HEARTBEAT ACK, * etc.) to the same destination transport
  603. * address from which it * received the DATA or control chunk
  604. * to which it is replying.
  605. *
  606. * [Report a reduced congestion window back to where the ECNE
  607. * came from.]
  608. */
  609. if (chunk)
  610. retval->transport = chunk->transport;
  611. nodata:
  612. return retval;
  613. }
  614. /* Make an ECNE chunk. This is a congestion experienced report. */
  615. struct sctp_chunk *sctp_make_ecne(const struct sctp_association *asoc,
  616. const __u32 lowest_tsn)
  617. {
  618. struct sctp_chunk *retval;
  619. sctp_ecnehdr_t ecne;
  620. ecne.lowest_tsn = htonl(lowest_tsn);
  621. retval = sctp_make_control(asoc, SCTP_CID_ECN_ECNE, 0,
  622. sizeof(sctp_ecnehdr_t), GFP_ATOMIC);
  623. if (!retval)
  624. goto nodata;
  625. retval->subh.ecne_hdr =
  626. sctp_addto_chunk(retval, sizeof(ecne), &ecne);
  627. nodata:
  628. return retval;
  629. }
  630. /* Make a DATA chunk for the given association from the provided
  631. * parameters. However, do not populate the data payload.
  632. */
  633. struct sctp_chunk *sctp_make_datafrag_empty(struct sctp_association *asoc,
  634. const struct sctp_sndrcvinfo *sinfo,
  635. int data_len, __u8 flags, __u16 ssn,
  636. gfp_t gfp)
  637. {
  638. struct sctp_chunk *retval;
  639. struct sctp_datahdr dp;
  640. int chunk_len;
  641. /* We assign the TSN as LATE as possible, not here when
  642. * creating the chunk.
  643. */
  644. dp.tsn = 0;
  645. dp.stream = htons(sinfo->sinfo_stream);
  646. dp.ppid = sinfo->sinfo_ppid;
  647. /* Set the flags for an unordered send. */
  648. if (sinfo->sinfo_flags & SCTP_UNORDERED) {
  649. flags |= SCTP_DATA_UNORDERED;
  650. dp.ssn = 0;
  651. } else
  652. dp.ssn = htons(ssn);
  653. chunk_len = sizeof(dp) + data_len;
  654. retval = sctp_make_data(asoc, flags, chunk_len, gfp);
  655. if (!retval)
  656. goto nodata;
  657. retval->subh.data_hdr = sctp_addto_chunk(retval, sizeof(dp), &dp);
  658. memcpy(&retval->sinfo, sinfo, sizeof(struct sctp_sndrcvinfo));
  659. nodata:
  660. return retval;
  661. }
  662. /* Create a selective ackowledgement (SACK) for the given
  663. * association. This reports on which TSN's we've seen to date,
  664. * including duplicates and gaps.
  665. */
  666. struct sctp_chunk *sctp_make_sack(const struct sctp_association *asoc)
  667. {
  668. struct sctp_chunk *retval;
  669. struct sctp_sackhdr sack;
  670. int len;
  671. __u32 ctsn;
  672. __u16 num_gabs, num_dup_tsns;
  673. struct sctp_association *aptr = (struct sctp_association *)asoc;
  674. struct sctp_tsnmap *map = (struct sctp_tsnmap *)&asoc->peer.tsn_map;
  675. struct sctp_gap_ack_block gabs[SCTP_MAX_GABS];
  676. struct sctp_transport *trans;
  677. memset(gabs, 0, sizeof(gabs));
  678. ctsn = sctp_tsnmap_get_ctsn(map);
  679. pr_debug("%s: sackCTSNAck sent:0x%x\n", __func__, ctsn);
  680. /* How much room is needed in the chunk? */
  681. num_gabs = sctp_tsnmap_num_gabs(map, gabs);
  682. num_dup_tsns = sctp_tsnmap_num_dups(map);
  683. /* Initialize the SACK header. */
  684. sack.cum_tsn_ack = htonl(ctsn);
  685. sack.a_rwnd = htonl(asoc->a_rwnd);
  686. sack.num_gap_ack_blocks = htons(num_gabs);
  687. sack.num_dup_tsns = htons(num_dup_tsns);
  688. len = sizeof(sack)
  689. + sizeof(struct sctp_gap_ack_block) * num_gabs
  690. + sizeof(__u32) * num_dup_tsns;
  691. /* Create the chunk. */
  692. retval = sctp_make_control(asoc, SCTP_CID_SACK, 0, len, GFP_ATOMIC);
  693. if (!retval)
  694. goto nodata;
  695. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  696. *
  697. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  698. * HEARTBEAT ACK, etc.) to the same destination transport
  699. * address from which it received the DATA or control chunk to
  700. * which it is replying. This rule should also be followed if
  701. * the endpoint is bundling DATA chunks together with the
  702. * reply chunk.
  703. *
  704. * However, when acknowledging multiple DATA chunks received
  705. * in packets from different source addresses in a single
  706. * SACK, the SACK chunk may be transmitted to one of the
  707. * destination transport addresses from which the DATA or
  708. * control chunks being acknowledged were received.
  709. *
  710. * [BUG: We do not implement the following paragraph.
  711. * Perhaps we should remember the last transport we used for a
  712. * SACK and avoid that (if possible) if we have seen any
  713. * duplicates. --piggy]
  714. *
  715. * When a receiver of a duplicate DATA chunk sends a SACK to a
  716. * multi- homed endpoint it MAY be beneficial to vary the
  717. * destination address and not use the source address of the
  718. * DATA chunk. The reason being that receiving a duplicate
  719. * from a multi-homed endpoint might indicate that the return
  720. * path (as specified in the source address of the DATA chunk)
  721. * for the SACK is broken.
  722. *
  723. * [Send to the address from which we last received a DATA chunk.]
  724. */
  725. retval->transport = asoc->peer.last_data_from;
  726. retval->subh.sack_hdr =
  727. sctp_addto_chunk(retval, sizeof(sack), &sack);
  728. /* Add the gap ack block information. */
  729. if (num_gabs)
  730. sctp_addto_chunk(retval, sizeof(__u32) * num_gabs,
  731. gabs);
  732. /* Add the duplicate TSN information. */
  733. if (num_dup_tsns) {
  734. aptr->stats.idupchunks += num_dup_tsns;
  735. sctp_addto_chunk(retval, sizeof(__u32) * num_dup_tsns,
  736. sctp_tsnmap_get_dups(map));
  737. }
  738. /* Once we have a sack generated, check to see what our sack
  739. * generation is, if its 0, reset the transports to 0, and reset
  740. * the association generation to 1
  741. *
  742. * The idea is that zero is never used as a valid generation for the
  743. * association so no transport will match after a wrap event like this,
  744. * Until the next sack
  745. */
  746. if (++aptr->peer.sack_generation == 0) {
  747. list_for_each_entry(trans, &asoc->peer.transport_addr_list,
  748. transports)
  749. trans->sack_generation = 0;
  750. aptr->peer.sack_generation = 1;
  751. }
  752. nodata:
  753. return retval;
  754. }
  755. /* Make a SHUTDOWN chunk. */
  756. struct sctp_chunk *sctp_make_shutdown(const struct sctp_association *asoc,
  757. const struct sctp_chunk *chunk)
  758. {
  759. struct sctp_chunk *retval;
  760. sctp_shutdownhdr_t shut;
  761. __u32 ctsn;
  762. ctsn = sctp_tsnmap_get_ctsn(&asoc->peer.tsn_map);
  763. shut.cum_tsn_ack = htonl(ctsn);
  764. retval = sctp_make_control(asoc, SCTP_CID_SHUTDOWN, 0,
  765. sizeof(sctp_shutdownhdr_t), GFP_ATOMIC);
  766. if (!retval)
  767. goto nodata;
  768. retval->subh.shutdown_hdr =
  769. sctp_addto_chunk(retval, sizeof(shut), &shut);
  770. if (chunk)
  771. retval->transport = chunk->transport;
  772. nodata:
  773. return retval;
  774. }
  775. struct sctp_chunk *sctp_make_shutdown_ack(const struct sctp_association *asoc,
  776. const struct sctp_chunk *chunk)
  777. {
  778. struct sctp_chunk *retval;
  779. retval = sctp_make_control(asoc, SCTP_CID_SHUTDOWN_ACK, 0, 0,
  780. GFP_ATOMIC);
  781. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  782. *
  783. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  784. * HEARTBEAT ACK, * etc.) to the same destination transport
  785. * address from which it * received the DATA or control chunk
  786. * to which it is replying.
  787. *
  788. * [ACK back to where the SHUTDOWN came from.]
  789. */
  790. if (retval && chunk)
  791. retval->transport = chunk->transport;
  792. return retval;
  793. }
  794. struct sctp_chunk *sctp_make_shutdown_complete(
  795. const struct sctp_association *asoc,
  796. const struct sctp_chunk *chunk)
  797. {
  798. struct sctp_chunk *retval;
  799. __u8 flags = 0;
  800. /* Set the T-bit if we have no association (vtag will be
  801. * reflected)
  802. */
  803. flags |= asoc ? 0 : SCTP_CHUNK_FLAG_T;
  804. retval = sctp_make_control(asoc, SCTP_CID_SHUTDOWN_COMPLETE, flags,
  805. 0, GFP_ATOMIC);
  806. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  807. *
  808. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  809. * HEARTBEAT ACK, * etc.) to the same destination transport
  810. * address from which it * received the DATA or control chunk
  811. * to which it is replying.
  812. *
  813. * [Report SHUTDOWN COMPLETE back to where the SHUTDOWN ACK
  814. * came from.]
  815. */
  816. if (retval && chunk)
  817. retval->transport = chunk->transport;
  818. return retval;
  819. }
  820. /* Create an ABORT. Note that we set the T bit if we have no
  821. * association, except when responding to an INIT (sctpimpguide 2.41).
  822. */
  823. struct sctp_chunk *sctp_make_abort(const struct sctp_association *asoc,
  824. const struct sctp_chunk *chunk,
  825. const size_t hint)
  826. {
  827. struct sctp_chunk *retval;
  828. __u8 flags = 0;
  829. /* Set the T-bit if we have no association and 'chunk' is not
  830. * an INIT (vtag will be reflected).
  831. */
  832. if (!asoc) {
  833. if (chunk && chunk->chunk_hdr &&
  834. chunk->chunk_hdr->type == SCTP_CID_INIT)
  835. flags = 0;
  836. else
  837. flags = SCTP_CHUNK_FLAG_T;
  838. }
  839. retval = sctp_make_control(asoc, SCTP_CID_ABORT, flags, hint,
  840. GFP_ATOMIC);
  841. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  842. *
  843. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  844. * HEARTBEAT ACK, * etc.) to the same destination transport
  845. * address from which it * received the DATA or control chunk
  846. * to which it is replying.
  847. *
  848. * [ABORT back to where the offender came from.]
  849. */
  850. if (retval && chunk)
  851. retval->transport = chunk->transport;
  852. return retval;
  853. }
  854. /* Helper to create ABORT with a NO_USER_DATA error. */
  855. struct sctp_chunk *sctp_make_abort_no_data(
  856. const struct sctp_association *asoc,
  857. const struct sctp_chunk *chunk, __u32 tsn)
  858. {
  859. struct sctp_chunk *retval;
  860. __be32 payload;
  861. retval = sctp_make_abort(asoc, chunk, sizeof(sctp_errhdr_t)
  862. + sizeof(tsn));
  863. if (!retval)
  864. goto no_mem;
  865. /* Put the tsn back into network byte order. */
  866. payload = htonl(tsn);
  867. sctp_init_cause(retval, SCTP_ERROR_NO_DATA, sizeof(payload));
  868. sctp_addto_chunk(retval, sizeof(payload), (const void *)&payload);
  869. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  870. *
  871. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  872. * HEARTBEAT ACK, * etc.) to the same destination transport
  873. * address from which it * received the DATA or control chunk
  874. * to which it is replying.
  875. *
  876. * [ABORT back to where the offender came from.]
  877. */
  878. if (chunk)
  879. retval->transport = chunk->transport;
  880. no_mem:
  881. return retval;
  882. }
  883. /* Helper to create ABORT with a SCTP_ERROR_USER_ABORT error. */
  884. struct sctp_chunk *sctp_make_abort_user(const struct sctp_association *asoc,
  885. struct msghdr *msg,
  886. size_t paylen)
  887. {
  888. struct sctp_chunk *retval;
  889. void *payload = NULL;
  890. int err;
  891. retval = sctp_make_abort(asoc, NULL, sizeof(sctp_errhdr_t) + paylen);
  892. if (!retval)
  893. goto err_chunk;
  894. if (paylen) {
  895. /* Put the msg_iov together into payload. */
  896. payload = kmalloc(paylen, GFP_KERNEL);
  897. if (!payload)
  898. goto err_payload;
  899. err = memcpy_from_msg(payload, msg, paylen);
  900. if (err < 0)
  901. goto err_copy;
  902. }
  903. sctp_init_cause(retval, SCTP_ERROR_USER_ABORT, paylen);
  904. sctp_addto_chunk(retval, paylen, payload);
  905. if (paylen)
  906. kfree(payload);
  907. return retval;
  908. err_copy:
  909. kfree(payload);
  910. err_payload:
  911. sctp_chunk_free(retval);
  912. retval = NULL;
  913. err_chunk:
  914. return retval;
  915. }
  916. /* Append bytes to the end of a parameter. Will panic if chunk is not big
  917. * enough.
  918. */
  919. static void *sctp_addto_param(struct sctp_chunk *chunk, int len,
  920. const void *data)
  921. {
  922. void *target;
  923. int chunklen = ntohs(chunk->chunk_hdr->length);
  924. target = skb_put(chunk->skb, len);
  925. if (data)
  926. memcpy(target, data, len);
  927. else
  928. memset(target, 0, len);
  929. /* Adjust the chunk length field. */
  930. chunk->chunk_hdr->length = htons(chunklen + len);
  931. chunk->chunk_end = skb_tail_pointer(chunk->skb);
  932. return target;
  933. }
  934. /* Make an ABORT chunk with a PROTOCOL VIOLATION cause code. */
  935. struct sctp_chunk *sctp_make_abort_violation(
  936. const struct sctp_association *asoc,
  937. const struct sctp_chunk *chunk,
  938. const __u8 *payload,
  939. const size_t paylen)
  940. {
  941. struct sctp_chunk *retval;
  942. struct sctp_paramhdr phdr;
  943. retval = sctp_make_abort(asoc, chunk, sizeof(sctp_errhdr_t) + paylen
  944. + sizeof(sctp_paramhdr_t));
  945. if (!retval)
  946. goto end;
  947. sctp_init_cause(retval, SCTP_ERROR_PROTO_VIOLATION, paylen
  948. + sizeof(sctp_paramhdr_t));
  949. phdr.type = htons(chunk->chunk_hdr->type);
  950. phdr.length = chunk->chunk_hdr->length;
  951. sctp_addto_chunk(retval, paylen, payload);
  952. sctp_addto_param(retval, sizeof(sctp_paramhdr_t), &phdr);
  953. end:
  954. return retval;
  955. }
  956. struct sctp_chunk *sctp_make_violation_paramlen(
  957. const struct sctp_association *asoc,
  958. const struct sctp_chunk *chunk,
  959. struct sctp_paramhdr *param)
  960. {
  961. struct sctp_chunk *retval;
  962. static const char error[] = "The following parameter had invalid length:";
  963. size_t payload_len = sizeof(error) + sizeof(sctp_errhdr_t) +
  964. sizeof(sctp_paramhdr_t);
  965. retval = sctp_make_abort(asoc, chunk, payload_len);
  966. if (!retval)
  967. goto nodata;
  968. sctp_init_cause(retval, SCTP_ERROR_PROTO_VIOLATION,
  969. sizeof(error) + sizeof(sctp_paramhdr_t));
  970. sctp_addto_chunk(retval, sizeof(error), error);
  971. sctp_addto_param(retval, sizeof(sctp_paramhdr_t), param);
  972. nodata:
  973. return retval;
  974. }
  975. struct sctp_chunk *sctp_make_violation_max_retrans(
  976. const struct sctp_association *asoc,
  977. const struct sctp_chunk *chunk)
  978. {
  979. struct sctp_chunk *retval;
  980. static const char error[] = "Association exceeded its max_retans count";
  981. size_t payload_len = sizeof(error) + sizeof(sctp_errhdr_t);
  982. retval = sctp_make_abort(asoc, chunk, payload_len);
  983. if (!retval)
  984. goto nodata;
  985. sctp_init_cause(retval, SCTP_ERROR_PROTO_VIOLATION, sizeof(error));
  986. sctp_addto_chunk(retval, sizeof(error), error);
  987. nodata:
  988. return retval;
  989. }
  990. /* Make a HEARTBEAT chunk. */
  991. struct sctp_chunk *sctp_make_heartbeat(const struct sctp_association *asoc,
  992. const struct sctp_transport *transport)
  993. {
  994. struct sctp_chunk *retval;
  995. sctp_sender_hb_info_t hbinfo;
  996. retval = sctp_make_control(asoc, SCTP_CID_HEARTBEAT, 0,
  997. sizeof(hbinfo), GFP_ATOMIC);
  998. if (!retval)
  999. goto nodata;
  1000. hbinfo.param_hdr.type = SCTP_PARAM_HEARTBEAT_INFO;
  1001. hbinfo.param_hdr.length = htons(sizeof(sctp_sender_hb_info_t));
  1002. hbinfo.daddr = transport->ipaddr;
  1003. hbinfo.sent_at = jiffies;
  1004. hbinfo.hb_nonce = transport->hb_nonce;
  1005. /* Cast away the 'const', as this is just telling the chunk
  1006. * what transport it belongs to.
  1007. */
  1008. retval->transport = (struct sctp_transport *) transport;
  1009. retval->subh.hbs_hdr = sctp_addto_chunk(retval, sizeof(hbinfo),
  1010. &hbinfo);
  1011. nodata:
  1012. return retval;
  1013. }
  1014. struct sctp_chunk *sctp_make_heartbeat_ack(const struct sctp_association *asoc,
  1015. const struct sctp_chunk *chunk,
  1016. const void *payload, const size_t paylen)
  1017. {
  1018. struct sctp_chunk *retval;
  1019. retval = sctp_make_control(asoc, SCTP_CID_HEARTBEAT_ACK, 0, paylen,
  1020. GFP_ATOMIC);
  1021. if (!retval)
  1022. goto nodata;
  1023. retval->subh.hbs_hdr = sctp_addto_chunk(retval, paylen, payload);
  1024. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  1025. *
  1026. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  1027. * HEARTBEAT ACK, * etc.) to the same destination transport
  1028. * address from which it * received the DATA or control chunk
  1029. * to which it is replying.
  1030. *
  1031. * [HBACK back to where the HEARTBEAT came from.]
  1032. */
  1033. if (chunk)
  1034. retval->transport = chunk->transport;
  1035. nodata:
  1036. return retval;
  1037. }
  1038. /* Create an Operation Error chunk with the specified space reserved.
  1039. * This routine can be used for containing multiple causes in the chunk.
  1040. */
  1041. static struct sctp_chunk *sctp_make_op_error_space(
  1042. const struct sctp_association *asoc,
  1043. const struct sctp_chunk *chunk,
  1044. size_t size)
  1045. {
  1046. struct sctp_chunk *retval;
  1047. retval = sctp_make_control(asoc, SCTP_CID_ERROR, 0,
  1048. sizeof(sctp_errhdr_t) + size, GFP_ATOMIC);
  1049. if (!retval)
  1050. goto nodata;
  1051. /* RFC 2960 6.4 Multi-homed SCTP Endpoints
  1052. *
  1053. * An endpoint SHOULD transmit reply chunks (e.g., SACK,
  1054. * HEARTBEAT ACK, etc.) to the same destination transport
  1055. * address from which it received the DATA or control chunk
  1056. * to which it is replying.
  1057. *
  1058. */
  1059. if (chunk)
  1060. retval->transport = chunk->transport;
  1061. nodata:
  1062. return retval;
  1063. }
  1064. /* Create an Operation Error chunk of a fixed size,
  1065. * specifically, max(asoc->pathmtu, SCTP_DEFAULT_MAXSEGMENT)
  1066. * This is a helper function to allocate an error chunk for
  1067. * for those invalid parameter codes in which we may not want
  1068. * to report all the errors, if the incoming chunk is large
  1069. */
  1070. static inline struct sctp_chunk *sctp_make_op_error_fixed(
  1071. const struct sctp_association *asoc,
  1072. const struct sctp_chunk *chunk)
  1073. {
  1074. size_t size = asoc ? asoc->pathmtu : 0;
  1075. if (!size)
  1076. size = SCTP_DEFAULT_MAXSEGMENT;
  1077. return sctp_make_op_error_space(asoc, chunk, size);
  1078. }
  1079. /* Create an Operation Error chunk. */
  1080. struct sctp_chunk *sctp_make_op_error(const struct sctp_association *asoc,
  1081. const struct sctp_chunk *chunk,
  1082. __be16 cause_code, const void *payload,
  1083. size_t paylen, size_t reserve_tail)
  1084. {
  1085. struct sctp_chunk *retval;
  1086. retval = sctp_make_op_error_space(asoc, chunk, paylen + reserve_tail);
  1087. if (!retval)
  1088. goto nodata;
  1089. sctp_init_cause(retval, cause_code, paylen + reserve_tail);
  1090. sctp_addto_chunk(retval, paylen, payload);
  1091. if (reserve_tail)
  1092. sctp_addto_param(retval, reserve_tail, NULL);
  1093. nodata:
  1094. return retval;
  1095. }
  1096. struct sctp_chunk *sctp_make_auth(const struct sctp_association *asoc)
  1097. {
  1098. struct sctp_chunk *retval;
  1099. struct sctp_hmac *hmac_desc;
  1100. struct sctp_authhdr auth_hdr;
  1101. __u8 *hmac;
  1102. /* Get the first hmac that the peer told us to use */
  1103. hmac_desc = sctp_auth_asoc_get_hmac(asoc);
  1104. if (unlikely(!hmac_desc))
  1105. return NULL;
  1106. retval = sctp_make_control(asoc, SCTP_CID_AUTH, 0,
  1107. hmac_desc->hmac_len + sizeof(sctp_authhdr_t),
  1108. GFP_ATOMIC);
  1109. if (!retval)
  1110. return NULL;
  1111. auth_hdr.hmac_id = htons(hmac_desc->hmac_id);
  1112. auth_hdr.shkey_id = htons(asoc->active_key_id);
  1113. retval->subh.auth_hdr = sctp_addto_chunk(retval, sizeof(sctp_authhdr_t),
  1114. &auth_hdr);
  1115. hmac = skb_put(retval->skb, hmac_desc->hmac_len);
  1116. memset(hmac, 0, hmac_desc->hmac_len);
  1117. /* Adjust the chunk header to include the empty MAC */
  1118. retval->chunk_hdr->length =
  1119. htons(ntohs(retval->chunk_hdr->length) + hmac_desc->hmac_len);
  1120. retval->chunk_end = skb_tail_pointer(retval->skb);
  1121. return retval;
  1122. }
  1123. /********************************************************************
  1124. * 2nd Level Abstractions
  1125. ********************************************************************/
  1126. /* Turn an skb into a chunk.
  1127. * FIXME: Eventually move the structure directly inside the skb->cb[].
  1128. *
  1129. * sctpimpguide-05.txt Section 2.8.2
  1130. * M1) Each time a new DATA chunk is transmitted
  1131. * set the 'TSN.Missing.Report' count for that TSN to 0. The
  1132. * 'TSN.Missing.Report' count will be used to determine missing chunks
  1133. * and when to fast retransmit.
  1134. *
  1135. */
  1136. struct sctp_chunk *sctp_chunkify(struct sk_buff *skb,
  1137. const struct sctp_association *asoc,
  1138. struct sock *sk, gfp_t gfp)
  1139. {
  1140. struct sctp_chunk *retval;
  1141. retval = kmem_cache_zalloc(sctp_chunk_cachep, gfp);
  1142. if (!retval)
  1143. goto nodata;
  1144. if (!sk)
  1145. pr_debug("%s: chunkifying skb:%p w/o an sk\n", __func__, skb);
  1146. INIT_LIST_HEAD(&retval->list);
  1147. retval->skb = skb;
  1148. retval->asoc = (struct sctp_association *)asoc;
  1149. retval->singleton = 1;
  1150. retval->fast_retransmit = SCTP_CAN_FRTX;
  1151. /* Polish the bead hole. */
  1152. INIT_LIST_HEAD(&retval->transmitted_list);
  1153. INIT_LIST_HEAD(&retval->frag_list);
  1154. SCTP_DBG_OBJCNT_INC(chunk);
  1155. atomic_set(&retval->refcnt, 1);
  1156. nodata:
  1157. return retval;
  1158. }
  1159. /* Set chunk->source and dest based on the IP header in chunk->skb. */
  1160. void sctp_init_addrs(struct sctp_chunk *chunk, union sctp_addr *src,
  1161. union sctp_addr *dest)
  1162. {
  1163. memcpy(&chunk->source, src, sizeof(union sctp_addr));
  1164. memcpy(&chunk->dest, dest, sizeof(union sctp_addr));
  1165. }
  1166. /* Extract the source address from a chunk. */
  1167. const union sctp_addr *sctp_source(const struct sctp_chunk *chunk)
  1168. {
  1169. /* If we have a known transport, use that. */
  1170. if (chunk->transport) {
  1171. return &chunk->transport->ipaddr;
  1172. } else {
  1173. /* Otherwise, extract it from the IP header. */
  1174. return &chunk->source;
  1175. }
  1176. }
  1177. /* Create a new chunk, setting the type and flags headers from the
  1178. * arguments, reserving enough space for a 'paylen' byte payload.
  1179. */
  1180. static struct sctp_chunk *_sctp_make_chunk(const struct sctp_association *asoc,
  1181. __u8 type, __u8 flags, int paylen,
  1182. gfp_t gfp)
  1183. {
  1184. struct sctp_chunk *retval;
  1185. sctp_chunkhdr_t *chunk_hdr;
  1186. struct sk_buff *skb;
  1187. struct sock *sk;
  1188. int chunklen;
  1189. chunklen = SCTP_PAD4(sizeof(*chunk_hdr) + paylen);
  1190. if (chunklen > SCTP_MAX_CHUNK_LEN)
  1191. goto nodata;
  1192. /* No need to allocate LL here, as this is only a chunk. */
  1193. skb = alloc_skb(chunklen, gfp);
  1194. if (!skb)
  1195. goto nodata;
  1196. /* Make room for the chunk header. */
  1197. chunk_hdr = (sctp_chunkhdr_t *)skb_put(skb, sizeof(sctp_chunkhdr_t));
  1198. chunk_hdr->type = type;
  1199. chunk_hdr->flags = flags;
  1200. chunk_hdr->length = htons(sizeof(sctp_chunkhdr_t));
  1201. sk = asoc ? asoc->base.sk : NULL;
  1202. retval = sctp_chunkify(skb, asoc, sk, gfp);
  1203. if (!retval) {
  1204. kfree_skb(skb);
  1205. goto nodata;
  1206. }
  1207. retval->chunk_hdr = chunk_hdr;
  1208. retval->chunk_end = ((__u8 *)chunk_hdr) + sizeof(struct sctp_chunkhdr);
  1209. /* Determine if the chunk needs to be authenticated */
  1210. if (sctp_auth_send_cid(type, asoc))
  1211. retval->auth = 1;
  1212. return retval;
  1213. nodata:
  1214. return NULL;
  1215. }
  1216. static struct sctp_chunk *sctp_make_data(const struct sctp_association *asoc,
  1217. __u8 flags, int paylen, gfp_t gfp)
  1218. {
  1219. return _sctp_make_chunk(asoc, SCTP_CID_DATA, flags, paylen, gfp);
  1220. }
  1221. static struct sctp_chunk *sctp_make_control(const struct sctp_association *asoc,
  1222. __u8 type, __u8 flags, int paylen,
  1223. gfp_t gfp)
  1224. {
  1225. struct sctp_chunk *chunk;
  1226. chunk = _sctp_make_chunk(asoc, type, flags, paylen, gfp);
  1227. if (chunk)
  1228. sctp_control_set_owner_w(chunk);
  1229. return chunk;
  1230. }
  1231. /* Release the memory occupied by a chunk. */
  1232. static void sctp_chunk_destroy(struct sctp_chunk *chunk)
  1233. {
  1234. BUG_ON(!list_empty(&chunk->list));
  1235. list_del_init(&chunk->transmitted_list);
  1236. consume_skb(chunk->skb);
  1237. consume_skb(chunk->auth_chunk);
  1238. SCTP_DBG_OBJCNT_DEC(chunk);
  1239. kmem_cache_free(sctp_chunk_cachep, chunk);
  1240. }
  1241. /* Possibly, free the chunk. */
  1242. void sctp_chunk_free(struct sctp_chunk *chunk)
  1243. {
  1244. /* Release our reference on the message tracker. */
  1245. if (chunk->msg)
  1246. sctp_datamsg_put(chunk->msg);
  1247. sctp_chunk_put(chunk);
  1248. }
  1249. /* Grab a reference to the chunk. */
  1250. void sctp_chunk_hold(struct sctp_chunk *ch)
  1251. {
  1252. atomic_inc(&ch->refcnt);
  1253. }
  1254. /* Release a reference to the chunk. */
  1255. void sctp_chunk_put(struct sctp_chunk *ch)
  1256. {
  1257. if (atomic_dec_and_test(&ch->refcnt))
  1258. sctp_chunk_destroy(ch);
  1259. }
  1260. /* Append bytes to the end of a chunk. Will panic if chunk is not big
  1261. * enough.
  1262. */
  1263. void *sctp_addto_chunk(struct sctp_chunk *chunk, int len, const void *data)
  1264. {
  1265. void *target;
  1266. void *padding;
  1267. int chunklen = ntohs(chunk->chunk_hdr->length);
  1268. int padlen = SCTP_PAD4(chunklen) - chunklen;
  1269. padding = skb_put(chunk->skb, padlen);
  1270. target = skb_put(chunk->skb, len);
  1271. memset(padding, 0, padlen);
  1272. memcpy(target, data, len);
  1273. /* Adjust the chunk length field. */
  1274. chunk->chunk_hdr->length = htons(chunklen + padlen + len);
  1275. chunk->chunk_end = skb_tail_pointer(chunk->skb);
  1276. return target;
  1277. }
  1278. /* Append bytes to the end of a chunk. Returns NULL if there isn't sufficient
  1279. * space in the chunk
  1280. */
  1281. static void *sctp_addto_chunk_fixed(struct sctp_chunk *chunk,
  1282. int len, const void *data)
  1283. {
  1284. if (skb_tailroom(chunk->skb) >= len)
  1285. return sctp_addto_chunk(chunk, len, data);
  1286. else
  1287. return NULL;
  1288. }
  1289. /* Append bytes from user space to the end of a chunk. Will panic if
  1290. * chunk is not big enough.
  1291. * Returns a kernel err value.
  1292. */
  1293. int sctp_user_addto_chunk(struct sctp_chunk *chunk, int len,
  1294. struct iov_iter *from)
  1295. {
  1296. void *target;
  1297. ssize_t copied;
  1298. /* Make room in chunk for data. */
  1299. target = skb_put(chunk->skb, len);
  1300. /* Copy data (whole iovec) into chunk */
  1301. copied = copy_from_iter(target, len, from);
  1302. if (copied != len)
  1303. return -EFAULT;
  1304. /* Adjust the chunk length field. */
  1305. chunk->chunk_hdr->length =
  1306. htons(ntohs(chunk->chunk_hdr->length) + len);
  1307. chunk->chunk_end = skb_tail_pointer(chunk->skb);
  1308. return 0;
  1309. }
  1310. /* Helper function to assign a TSN if needed. This assumes that both
  1311. * the data_hdr and association have already been assigned.
  1312. */
  1313. void sctp_chunk_assign_ssn(struct sctp_chunk *chunk)
  1314. {
  1315. struct sctp_datamsg *msg;
  1316. struct sctp_chunk *lchunk;
  1317. struct sctp_stream *stream;
  1318. __u16 ssn;
  1319. __u16 sid;
  1320. if (chunk->has_ssn)
  1321. return;
  1322. /* All fragments will be on the same stream */
  1323. sid = ntohs(chunk->subh.data_hdr->stream);
  1324. stream = &chunk->asoc->ssnmap->out;
  1325. /* Now assign the sequence number to the entire message.
  1326. * All fragments must have the same stream sequence number.
  1327. */
  1328. msg = chunk->msg;
  1329. list_for_each_entry(lchunk, &msg->chunks, frag_list) {
  1330. if (lchunk->chunk_hdr->flags & SCTP_DATA_UNORDERED) {
  1331. ssn = 0;
  1332. } else {
  1333. if (lchunk->chunk_hdr->flags & SCTP_DATA_LAST_FRAG)
  1334. ssn = sctp_ssn_next(stream, sid);
  1335. else
  1336. ssn = sctp_ssn_peek(stream, sid);
  1337. }
  1338. lchunk->subh.data_hdr->ssn = htons(ssn);
  1339. lchunk->has_ssn = 1;
  1340. }
  1341. }
  1342. /* Helper function to assign a TSN if needed. This assumes that both
  1343. * the data_hdr and association have already been assigned.
  1344. */
  1345. void sctp_chunk_assign_tsn(struct sctp_chunk *chunk)
  1346. {
  1347. if (!chunk->has_tsn) {
  1348. /* This is the last possible instant to
  1349. * assign a TSN.
  1350. */
  1351. chunk->subh.data_hdr->tsn =
  1352. htonl(sctp_association_get_next_tsn(chunk->asoc));
  1353. chunk->has_tsn = 1;
  1354. }
  1355. }
  1356. /* Create a CLOSED association to use with an incoming packet. */
  1357. struct sctp_association *sctp_make_temp_asoc(const struct sctp_endpoint *ep,
  1358. struct sctp_chunk *chunk,
  1359. gfp_t gfp)
  1360. {
  1361. struct sctp_association *asoc;
  1362. struct sk_buff *skb;
  1363. sctp_scope_t scope;
  1364. /* Create the bare association. */
  1365. scope = sctp_scope(sctp_source(chunk));
  1366. asoc = sctp_association_new(ep, ep->base.sk, scope, gfp);
  1367. if (!asoc)
  1368. goto nodata;
  1369. asoc->temp = 1;
  1370. skb = chunk->skb;
  1371. /* Create an entry for the source address of the packet. */
  1372. SCTP_INPUT_CB(skb)->af->from_skb(&asoc->c.peer_addr, skb, 1);
  1373. nodata:
  1374. return asoc;
  1375. }
  1376. /* Build a cookie representing asoc.
  1377. * This INCLUDES the param header needed to put the cookie in the INIT ACK.
  1378. */
  1379. static sctp_cookie_param_t *sctp_pack_cookie(const struct sctp_endpoint *ep,
  1380. const struct sctp_association *asoc,
  1381. const struct sctp_chunk *init_chunk,
  1382. int *cookie_len,
  1383. const __u8 *raw_addrs, int addrs_len)
  1384. {
  1385. sctp_cookie_param_t *retval;
  1386. struct sctp_signed_cookie *cookie;
  1387. int headersize, bodysize;
  1388. /* Header size is static data prior to the actual cookie, including
  1389. * any padding.
  1390. */
  1391. headersize = sizeof(sctp_paramhdr_t) +
  1392. (sizeof(struct sctp_signed_cookie) -
  1393. sizeof(struct sctp_cookie));
  1394. bodysize = sizeof(struct sctp_cookie)
  1395. + ntohs(init_chunk->chunk_hdr->length) + addrs_len;
  1396. /* Pad out the cookie to a multiple to make the signature
  1397. * functions simpler to write.
  1398. */
  1399. if (bodysize % SCTP_COOKIE_MULTIPLE)
  1400. bodysize += SCTP_COOKIE_MULTIPLE
  1401. - (bodysize % SCTP_COOKIE_MULTIPLE);
  1402. *cookie_len = headersize + bodysize;
  1403. /* Clear this memory since we are sending this data structure
  1404. * out on the network.
  1405. */
  1406. retval = kzalloc(*cookie_len, GFP_ATOMIC);
  1407. if (!retval)
  1408. goto nodata;
  1409. cookie = (struct sctp_signed_cookie *) retval->body;
  1410. /* Set up the parameter header. */
  1411. retval->p.type = SCTP_PARAM_STATE_COOKIE;
  1412. retval->p.length = htons(*cookie_len);
  1413. /* Copy the cookie part of the association itself. */
  1414. cookie->c = asoc->c;
  1415. /* Save the raw address list length in the cookie. */
  1416. cookie->c.raw_addr_list_len = addrs_len;
  1417. /* Remember PR-SCTP capability. */
  1418. cookie->c.prsctp_capable = asoc->peer.prsctp_capable;
  1419. /* Save adaptation indication in the cookie. */
  1420. cookie->c.adaptation_ind = asoc->peer.adaptation_ind;
  1421. /* Set an expiration time for the cookie. */
  1422. cookie->c.expiration = ktime_add(asoc->cookie_life,
  1423. ktime_get_real());
  1424. /* Copy the peer's init packet. */
  1425. memcpy(&cookie->c.peer_init[0], init_chunk->chunk_hdr,
  1426. ntohs(init_chunk->chunk_hdr->length));
  1427. /* Copy the raw local address list of the association. */
  1428. memcpy((__u8 *)&cookie->c.peer_init[0] +
  1429. ntohs(init_chunk->chunk_hdr->length), raw_addrs, addrs_len);
  1430. if (sctp_sk(ep->base.sk)->hmac) {
  1431. SHASH_DESC_ON_STACK(desc, sctp_sk(ep->base.sk)->hmac);
  1432. int err;
  1433. /* Sign the message. */
  1434. desc->tfm = sctp_sk(ep->base.sk)->hmac;
  1435. desc->flags = 0;
  1436. err = crypto_shash_setkey(desc->tfm, ep->secret_key,
  1437. sizeof(ep->secret_key)) ?:
  1438. crypto_shash_digest(desc, (u8 *)&cookie->c, bodysize,
  1439. cookie->signature);
  1440. shash_desc_zero(desc);
  1441. if (err)
  1442. goto free_cookie;
  1443. }
  1444. return retval;
  1445. free_cookie:
  1446. kfree(retval);
  1447. nodata:
  1448. *cookie_len = 0;
  1449. return NULL;
  1450. }
  1451. /* Unpack the cookie from COOKIE ECHO chunk, recreating the association. */
  1452. struct sctp_association *sctp_unpack_cookie(
  1453. const struct sctp_endpoint *ep,
  1454. const struct sctp_association *asoc,
  1455. struct sctp_chunk *chunk, gfp_t gfp,
  1456. int *error, struct sctp_chunk **errp)
  1457. {
  1458. struct sctp_association *retval = NULL;
  1459. struct sctp_signed_cookie *cookie;
  1460. struct sctp_cookie *bear_cookie;
  1461. int headersize, bodysize, fixed_size;
  1462. __u8 *digest = ep->digest;
  1463. unsigned int len;
  1464. sctp_scope_t scope;
  1465. struct sk_buff *skb = chunk->skb;
  1466. ktime_t kt;
  1467. /* Header size is static data prior to the actual cookie, including
  1468. * any padding.
  1469. */
  1470. headersize = sizeof(sctp_chunkhdr_t) +
  1471. (sizeof(struct sctp_signed_cookie) -
  1472. sizeof(struct sctp_cookie));
  1473. bodysize = ntohs(chunk->chunk_hdr->length) - headersize;
  1474. fixed_size = headersize + sizeof(struct sctp_cookie);
  1475. /* Verify that the chunk looks like it even has a cookie.
  1476. * There must be enough room for our cookie and our peer's
  1477. * INIT chunk.
  1478. */
  1479. len = ntohs(chunk->chunk_hdr->length);
  1480. if (len < fixed_size + sizeof(struct sctp_chunkhdr))
  1481. goto malformed;
  1482. /* Verify that the cookie has been padded out. */
  1483. if (bodysize % SCTP_COOKIE_MULTIPLE)
  1484. goto malformed;
  1485. /* Process the cookie. */
  1486. cookie = chunk->subh.cookie_hdr;
  1487. bear_cookie = &cookie->c;
  1488. if (!sctp_sk(ep->base.sk)->hmac)
  1489. goto no_hmac;
  1490. /* Check the signature. */
  1491. {
  1492. SHASH_DESC_ON_STACK(desc, sctp_sk(ep->base.sk)->hmac);
  1493. int err;
  1494. desc->tfm = sctp_sk(ep->base.sk)->hmac;
  1495. desc->flags = 0;
  1496. err = crypto_shash_setkey(desc->tfm, ep->secret_key,
  1497. sizeof(ep->secret_key)) ?:
  1498. crypto_shash_digest(desc, (u8 *)bear_cookie, bodysize,
  1499. digest);
  1500. shash_desc_zero(desc);
  1501. if (err) {
  1502. *error = -SCTP_IERROR_NOMEM;
  1503. goto fail;
  1504. }
  1505. }
  1506. if (memcmp(digest, cookie->signature, SCTP_SIGNATURE_SIZE)) {
  1507. *error = -SCTP_IERROR_BAD_SIG;
  1508. goto fail;
  1509. }
  1510. no_hmac:
  1511. /* IG Section 2.35.2:
  1512. * 3) Compare the port numbers and the verification tag contained
  1513. * within the COOKIE ECHO chunk to the actual port numbers and the
  1514. * verification tag within the SCTP common header of the received
  1515. * packet. If these values do not match the packet MUST be silently
  1516. * discarded,
  1517. */
  1518. if (ntohl(chunk->sctp_hdr->vtag) != bear_cookie->my_vtag) {
  1519. *error = -SCTP_IERROR_BAD_TAG;
  1520. goto fail;
  1521. }
  1522. if (chunk->sctp_hdr->source != bear_cookie->peer_addr.v4.sin_port ||
  1523. ntohs(chunk->sctp_hdr->dest) != bear_cookie->my_port) {
  1524. *error = -SCTP_IERROR_BAD_PORTS;
  1525. goto fail;
  1526. }
  1527. /* Check to see if the cookie is stale. If there is already
  1528. * an association, there is no need to check cookie's expiration
  1529. * for init collision case of lost COOKIE ACK.
  1530. * If skb has been timestamped, then use the stamp, otherwise
  1531. * use current time. This introduces a small possibility that
  1532. * that a cookie may be considered expired, but his would only slow
  1533. * down the new association establishment instead of every packet.
  1534. */
  1535. if (sock_flag(ep->base.sk, SOCK_TIMESTAMP))
  1536. kt = skb_get_ktime(skb);
  1537. else
  1538. kt = ktime_get_real();
  1539. if (!asoc && ktime_before(bear_cookie->expiration, kt)) {
  1540. /*
  1541. * Section 3.3.10.3 Stale Cookie Error (3)
  1542. *
  1543. * Cause of error
  1544. * ---------------
  1545. * Stale Cookie Error: Indicates the receipt of a valid State
  1546. * Cookie that has expired.
  1547. */
  1548. len = ntohs(chunk->chunk_hdr->length);
  1549. *errp = sctp_make_op_error_space(asoc, chunk, len);
  1550. if (*errp) {
  1551. suseconds_t usecs = ktime_to_us(ktime_sub(kt, bear_cookie->expiration));
  1552. __be32 n = htonl(usecs);
  1553. sctp_init_cause(*errp, SCTP_ERROR_STALE_COOKIE,
  1554. sizeof(n));
  1555. sctp_addto_chunk(*errp, sizeof(n), &n);
  1556. *error = -SCTP_IERROR_STALE_COOKIE;
  1557. } else
  1558. *error = -SCTP_IERROR_NOMEM;
  1559. goto fail;
  1560. }
  1561. /* Make a new base association. */
  1562. scope = sctp_scope(sctp_source(chunk));
  1563. retval = sctp_association_new(ep, ep->base.sk, scope, gfp);
  1564. if (!retval) {
  1565. *error = -SCTP_IERROR_NOMEM;
  1566. goto fail;
  1567. }
  1568. /* Set up our peer's port number. */
  1569. retval->peer.port = ntohs(chunk->sctp_hdr->source);
  1570. /* Populate the association from the cookie. */
  1571. memcpy(&retval->c, bear_cookie, sizeof(*bear_cookie));
  1572. if (sctp_assoc_set_bind_addr_from_cookie(retval, bear_cookie,
  1573. GFP_ATOMIC) < 0) {
  1574. *error = -SCTP_IERROR_NOMEM;
  1575. goto fail;
  1576. }
  1577. /* Also, add the destination address. */
  1578. if (list_empty(&retval->base.bind_addr.address_list)) {
  1579. sctp_add_bind_addr(&retval->base.bind_addr, &chunk->dest,
  1580. sizeof(chunk->dest), SCTP_ADDR_SRC,
  1581. GFP_ATOMIC);
  1582. }
  1583. retval->next_tsn = retval->c.initial_tsn;
  1584. retval->ctsn_ack_point = retval->next_tsn - 1;
  1585. retval->addip_serial = retval->c.initial_tsn;
  1586. retval->adv_peer_ack_point = retval->ctsn_ack_point;
  1587. retval->peer.prsctp_capable = retval->c.prsctp_capable;
  1588. retval->peer.adaptation_ind = retval->c.adaptation_ind;
  1589. /* The INIT stuff will be done by the side effects. */
  1590. return retval;
  1591. fail:
  1592. if (retval)
  1593. sctp_association_free(retval);
  1594. return NULL;
  1595. malformed:
  1596. /* Yikes! The packet is either corrupt or deliberately
  1597. * malformed.
  1598. */
  1599. *error = -SCTP_IERROR_MALFORMED;
  1600. goto fail;
  1601. }
  1602. /********************************************************************
  1603. * 3rd Level Abstractions
  1604. ********************************************************************/
  1605. struct __sctp_missing {
  1606. __be32 num_missing;
  1607. __be16 type;
  1608. } __packed;
  1609. /*
  1610. * Report a missing mandatory parameter.
  1611. */
  1612. static int sctp_process_missing_param(const struct sctp_association *asoc,
  1613. sctp_param_t paramtype,
  1614. struct sctp_chunk *chunk,
  1615. struct sctp_chunk **errp)
  1616. {
  1617. struct __sctp_missing report;
  1618. __u16 len;
  1619. len = SCTP_PAD4(sizeof(report));
  1620. /* Make an ERROR chunk, preparing enough room for
  1621. * returning multiple unknown parameters.
  1622. */
  1623. if (!*errp)
  1624. *errp = sctp_make_op_error_space(asoc, chunk, len);
  1625. if (*errp) {
  1626. report.num_missing = htonl(1);
  1627. report.type = paramtype;
  1628. sctp_init_cause(*errp, SCTP_ERROR_MISS_PARAM,
  1629. sizeof(report));
  1630. sctp_addto_chunk(*errp, sizeof(report), &report);
  1631. }
  1632. /* Stop processing this chunk. */
  1633. return 0;
  1634. }
  1635. /* Report an Invalid Mandatory Parameter. */
  1636. static int sctp_process_inv_mandatory(const struct sctp_association *asoc,
  1637. struct sctp_chunk *chunk,
  1638. struct sctp_chunk **errp)
  1639. {
  1640. /* Invalid Mandatory Parameter Error has no payload. */
  1641. if (!*errp)
  1642. *errp = sctp_make_op_error_space(asoc, chunk, 0);
  1643. if (*errp)
  1644. sctp_init_cause(*errp, SCTP_ERROR_INV_PARAM, 0);
  1645. /* Stop processing this chunk. */
  1646. return 0;
  1647. }
  1648. static int sctp_process_inv_paramlength(const struct sctp_association *asoc,
  1649. struct sctp_paramhdr *param,
  1650. const struct sctp_chunk *chunk,
  1651. struct sctp_chunk **errp)
  1652. {
  1653. /* This is a fatal error. Any accumulated non-fatal errors are
  1654. * not reported.
  1655. */
  1656. if (*errp)
  1657. sctp_chunk_free(*errp);
  1658. /* Create an error chunk and fill it in with our payload. */
  1659. *errp = sctp_make_violation_paramlen(asoc, chunk, param);
  1660. return 0;
  1661. }
  1662. /* Do not attempt to handle the HOST_NAME parm. However, do
  1663. * send back an indicator to the peer.
  1664. */
  1665. static int sctp_process_hn_param(const struct sctp_association *asoc,
  1666. union sctp_params param,
  1667. struct sctp_chunk *chunk,
  1668. struct sctp_chunk **errp)
  1669. {
  1670. __u16 len = ntohs(param.p->length);
  1671. /* Processing of the HOST_NAME parameter will generate an
  1672. * ABORT. If we've accumulated any non-fatal errors, they
  1673. * would be unrecognized parameters and we should not include
  1674. * them in the ABORT.
  1675. */
  1676. if (*errp)
  1677. sctp_chunk_free(*errp);
  1678. *errp = sctp_make_op_error_space(asoc, chunk, len);
  1679. if (*errp) {
  1680. sctp_init_cause(*errp, SCTP_ERROR_DNS_FAILED, len);
  1681. sctp_addto_chunk(*errp, len, param.v);
  1682. }
  1683. /* Stop processing this chunk. */
  1684. return 0;
  1685. }
  1686. static int sctp_verify_ext_param(struct net *net, union sctp_params param)
  1687. {
  1688. __u16 num_ext = ntohs(param.p->length) - sizeof(sctp_paramhdr_t);
  1689. int have_auth = 0;
  1690. int have_asconf = 0;
  1691. int i;
  1692. for (i = 0; i < num_ext; i++) {
  1693. switch (param.ext->chunks[i]) {
  1694. case SCTP_CID_AUTH:
  1695. have_auth = 1;
  1696. break;
  1697. case SCTP_CID_ASCONF:
  1698. case SCTP_CID_ASCONF_ACK:
  1699. have_asconf = 1;
  1700. break;
  1701. }
  1702. }
  1703. /* ADD-IP Security: The draft requires us to ABORT or ignore the
  1704. * INIT/INIT-ACK if ADD-IP is listed, but AUTH is not. Do this
  1705. * only if ADD-IP is turned on and we are not backward-compatible
  1706. * mode.
  1707. */
  1708. if (net->sctp.addip_noauth)
  1709. return 1;
  1710. if (net->sctp.addip_enable && !have_auth && have_asconf)
  1711. return 0;
  1712. return 1;
  1713. }
  1714. static void sctp_process_ext_param(struct sctp_association *asoc,
  1715. union sctp_params param)
  1716. {
  1717. struct net *net = sock_net(asoc->base.sk);
  1718. __u16 num_ext = ntohs(param.p->length) - sizeof(sctp_paramhdr_t);
  1719. int i;
  1720. for (i = 0; i < num_ext; i++) {
  1721. switch (param.ext->chunks[i]) {
  1722. case SCTP_CID_FWD_TSN:
  1723. if (asoc->prsctp_enable && !asoc->peer.prsctp_capable)
  1724. asoc->peer.prsctp_capable = 1;
  1725. break;
  1726. case SCTP_CID_AUTH:
  1727. /* if the peer reports AUTH, assume that he
  1728. * supports AUTH.
  1729. */
  1730. if (asoc->ep->auth_enable)
  1731. asoc->peer.auth_capable = 1;
  1732. break;
  1733. case SCTP_CID_ASCONF:
  1734. case SCTP_CID_ASCONF_ACK:
  1735. if (net->sctp.addip_enable)
  1736. asoc->peer.asconf_capable = 1;
  1737. break;
  1738. default:
  1739. break;
  1740. }
  1741. }
  1742. }
  1743. /* RFC 3.2.1 & the Implementers Guide 2.2.
  1744. *
  1745. * The Parameter Types are encoded such that the
  1746. * highest-order two bits specify the action that must be
  1747. * taken if the processing endpoint does not recognize the
  1748. * Parameter Type.
  1749. *
  1750. * 00 - Stop processing this parameter; do not process any further
  1751. * parameters within this chunk
  1752. *
  1753. * 01 - Stop processing this parameter, do not process any further
  1754. * parameters within this chunk, and report the unrecognized
  1755. * parameter in an 'Unrecognized Parameter' ERROR chunk.
  1756. *
  1757. * 10 - Skip this parameter and continue processing.
  1758. *
  1759. * 11 - Skip this parameter and continue processing but
  1760. * report the unrecognized parameter in an
  1761. * 'Unrecognized Parameter' ERROR chunk.
  1762. *
  1763. * Return value:
  1764. * SCTP_IERROR_NO_ERROR - continue with the chunk
  1765. * SCTP_IERROR_ERROR - stop and report an error.
  1766. * SCTP_IERROR_NOMEME - out of memory.
  1767. */
  1768. static sctp_ierror_t sctp_process_unk_param(const struct sctp_association *asoc,
  1769. union sctp_params param,
  1770. struct sctp_chunk *chunk,
  1771. struct sctp_chunk **errp)
  1772. {
  1773. int retval = SCTP_IERROR_NO_ERROR;
  1774. switch (param.p->type & SCTP_PARAM_ACTION_MASK) {
  1775. case SCTP_PARAM_ACTION_DISCARD:
  1776. retval = SCTP_IERROR_ERROR;
  1777. break;
  1778. case SCTP_PARAM_ACTION_SKIP:
  1779. break;
  1780. case SCTP_PARAM_ACTION_DISCARD_ERR:
  1781. retval = SCTP_IERROR_ERROR;
  1782. /* Fall through */
  1783. case SCTP_PARAM_ACTION_SKIP_ERR:
  1784. /* Make an ERROR chunk, preparing enough room for
  1785. * returning multiple unknown parameters.
  1786. */
  1787. if (NULL == *errp)
  1788. *errp = sctp_make_op_error_fixed(asoc, chunk);
  1789. if (*errp) {
  1790. if (!sctp_init_cause_fixed(*errp, SCTP_ERROR_UNKNOWN_PARAM,
  1791. SCTP_PAD4(ntohs(param.p->length))))
  1792. sctp_addto_chunk_fixed(*errp,
  1793. SCTP_PAD4(ntohs(param.p->length)),
  1794. param.v);
  1795. } else {
  1796. /* If there is no memory for generating the ERROR
  1797. * report as specified, an ABORT will be triggered
  1798. * to the peer and the association won't be
  1799. * established.
  1800. */
  1801. retval = SCTP_IERROR_NOMEM;
  1802. }
  1803. break;
  1804. default:
  1805. break;
  1806. }
  1807. return retval;
  1808. }
  1809. /* Verify variable length parameters
  1810. * Return values:
  1811. * SCTP_IERROR_ABORT - trigger an ABORT
  1812. * SCTP_IERROR_NOMEM - out of memory (abort)
  1813. * SCTP_IERROR_ERROR - stop processing, trigger an ERROR
  1814. * SCTP_IERROR_NO_ERROR - continue with the chunk
  1815. */
  1816. static sctp_ierror_t sctp_verify_param(struct net *net,
  1817. const struct sctp_endpoint *ep,
  1818. const struct sctp_association *asoc,
  1819. union sctp_params param,
  1820. sctp_cid_t cid,
  1821. struct sctp_chunk *chunk,
  1822. struct sctp_chunk **err_chunk)
  1823. {
  1824. struct sctp_hmac_algo_param *hmacs;
  1825. int retval = SCTP_IERROR_NO_ERROR;
  1826. __u16 n_elt, id = 0;
  1827. int i;
  1828. /* FIXME - This routine is not looking at each parameter per the
  1829. * chunk type, i.e., unrecognized parameters should be further
  1830. * identified based on the chunk id.
  1831. */
  1832. switch (param.p->type) {
  1833. case SCTP_PARAM_IPV4_ADDRESS:
  1834. case SCTP_PARAM_IPV6_ADDRESS:
  1835. case SCTP_PARAM_COOKIE_PRESERVATIVE:
  1836. case SCTP_PARAM_SUPPORTED_ADDRESS_TYPES:
  1837. case SCTP_PARAM_STATE_COOKIE:
  1838. case SCTP_PARAM_HEARTBEAT_INFO:
  1839. case SCTP_PARAM_UNRECOGNIZED_PARAMETERS:
  1840. case SCTP_PARAM_ECN_CAPABLE:
  1841. case SCTP_PARAM_ADAPTATION_LAYER_IND:
  1842. break;
  1843. case SCTP_PARAM_SUPPORTED_EXT:
  1844. if (!sctp_verify_ext_param(net, param))
  1845. return SCTP_IERROR_ABORT;
  1846. break;
  1847. case SCTP_PARAM_SET_PRIMARY:
  1848. if (net->sctp.addip_enable)
  1849. break;
  1850. goto fallthrough;
  1851. case SCTP_PARAM_HOST_NAME_ADDRESS:
  1852. /* Tell the peer, we won't support this param. */
  1853. sctp_process_hn_param(asoc, param, chunk, err_chunk);
  1854. retval = SCTP_IERROR_ABORT;
  1855. break;
  1856. case SCTP_PARAM_FWD_TSN_SUPPORT:
  1857. if (ep->prsctp_enable)
  1858. break;
  1859. goto fallthrough;
  1860. case SCTP_PARAM_RANDOM:
  1861. if (!ep->auth_enable)
  1862. goto fallthrough;
  1863. /* SCTP-AUTH: Secion 6.1
  1864. * If the random number is not 32 byte long the association
  1865. * MUST be aborted. The ABORT chunk SHOULD contain the error
  1866. * cause 'Protocol Violation'.
  1867. */
  1868. if (SCTP_AUTH_RANDOM_LENGTH !=
  1869. ntohs(param.p->length) - sizeof(sctp_paramhdr_t)) {
  1870. sctp_process_inv_paramlength(asoc, param.p,
  1871. chunk, err_chunk);
  1872. retval = SCTP_IERROR_ABORT;
  1873. }
  1874. break;
  1875. case SCTP_PARAM_CHUNKS:
  1876. if (!ep->auth_enable)
  1877. goto fallthrough;
  1878. /* SCTP-AUTH: Section 3.2
  1879. * The CHUNKS parameter MUST be included once in the INIT or
  1880. * INIT-ACK chunk if the sender wants to receive authenticated
  1881. * chunks. Its maximum length is 260 bytes.
  1882. */
  1883. if (260 < ntohs(param.p->length)) {
  1884. sctp_process_inv_paramlength(asoc, param.p,
  1885. chunk, err_chunk);
  1886. retval = SCTP_IERROR_ABORT;
  1887. }
  1888. break;
  1889. case SCTP_PARAM_HMAC_ALGO:
  1890. if (!ep->auth_enable)
  1891. goto fallthrough;
  1892. hmacs = (struct sctp_hmac_algo_param *)param.p;
  1893. n_elt = (ntohs(param.p->length) - sizeof(sctp_paramhdr_t)) >> 1;
  1894. /* SCTP-AUTH: Section 6.1
  1895. * The HMAC algorithm based on SHA-1 MUST be supported and
  1896. * included in the HMAC-ALGO parameter.
  1897. */
  1898. for (i = 0; i < n_elt; i++) {
  1899. id = ntohs(hmacs->hmac_ids[i]);
  1900. if (id == SCTP_AUTH_HMAC_ID_SHA1)
  1901. break;
  1902. }
  1903. if (id != SCTP_AUTH_HMAC_ID_SHA1) {
  1904. sctp_process_inv_paramlength(asoc, param.p, chunk,
  1905. err_chunk);
  1906. retval = SCTP_IERROR_ABORT;
  1907. }
  1908. break;
  1909. fallthrough:
  1910. default:
  1911. pr_debug("%s: unrecognized param:%d for chunk:%d\n",
  1912. __func__, ntohs(param.p->type), cid);
  1913. retval = sctp_process_unk_param(asoc, param, chunk, err_chunk);
  1914. break;
  1915. }
  1916. return retval;
  1917. }
  1918. /* Verify the INIT packet before we process it. */
  1919. int sctp_verify_init(struct net *net, const struct sctp_endpoint *ep,
  1920. const struct sctp_association *asoc, sctp_cid_t cid,
  1921. sctp_init_chunk_t *peer_init, struct sctp_chunk *chunk,
  1922. struct sctp_chunk **errp)
  1923. {
  1924. union sctp_params param;
  1925. bool has_cookie = false;
  1926. int result;
  1927. /* Check for missing mandatory parameters. Note: Initial TSN is
  1928. * also mandatory, but is not checked here since the valid range
  1929. * is 0..2**32-1. RFC4960, section 3.3.3.
  1930. */
  1931. if (peer_init->init_hdr.num_outbound_streams == 0 ||
  1932. peer_init->init_hdr.num_inbound_streams == 0 ||
  1933. peer_init->init_hdr.init_tag == 0 ||
  1934. ntohl(peer_init->init_hdr.a_rwnd) < SCTP_DEFAULT_MINWINDOW)
  1935. return sctp_process_inv_mandatory(asoc, chunk, errp);
  1936. sctp_walk_params(param, peer_init, init_hdr.params) {
  1937. if (param.p->type == SCTP_PARAM_STATE_COOKIE)
  1938. has_cookie = true;
  1939. }
  1940. /* There is a possibility that a parameter length was bad and
  1941. * in that case we would have stoped walking the parameters.
  1942. * The current param.p would point at the bad one.
  1943. * Current consensus on the mailing list is to generate a PROTOCOL
  1944. * VIOLATION error. We build the ERROR chunk here and let the normal
  1945. * error handling code build and send the packet.
  1946. */
  1947. if (param.v != (void *)chunk->chunk_end)
  1948. return sctp_process_inv_paramlength(asoc, param.p, chunk, errp);
  1949. /* The only missing mandatory param possible today is
  1950. * the state cookie for an INIT-ACK chunk.
  1951. */
  1952. if ((SCTP_CID_INIT_ACK == cid) && !has_cookie)
  1953. return sctp_process_missing_param(asoc, SCTP_PARAM_STATE_COOKIE,
  1954. chunk, errp);
  1955. /* Verify all the variable length parameters */
  1956. sctp_walk_params(param, peer_init, init_hdr.params) {
  1957. result = sctp_verify_param(net, ep, asoc, param, cid,
  1958. chunk, errp);
  1959. switch (result) {
  1960. case SCTP_IERROR_ABORT:
  1961. case SCTP_IERROR_NOMEM:
  1962. return 0;
  1963. case SCTP_IERROR_ERROR:
  1964. return 1;
  1965. case SCTP_IERROR_NO_ERROR:
  1966. default:
  1967. break;
  1968. }
  1969. } /* for (loop through all parameters) */
  1970. return 1;
  1971. }
  1972. /* Unpack the parameters in an INIT packet into an association.
  1973. * Returns 0 on failure, else success.
  1974. * FIXME: This is an association method.
  1975. */
  1976. int sctp_process_init(struct sctp_association *asoc, struct sctp_chunk *chunk,
  1977. const union sctp_addr *peer_addr,
  1978. sctp_init_chunk_t *peer_init, gfp_t gfp)
  1979. {
  1980. struct net *net = sock_net(asoc->base.sk);
  1981. union sctp_params param;
  1982. struct sctp_transport *transport;
  1983. struct list_head *pos, *temp;
  1984. struct sctp_af *af;
  1985. union sctp_addr addr;
  1986. char *cookie;
  1987. int src_match = 0;
  1988. /* We must include the address that the INIT packet came from.
  1989. * This is the only address that matters for an INIT packet.
  1990. * When processing a COOKIE ECHO, we retrieve the from address
  1991. * of the INIT from the cookie.
  1992. */
  1993. /* This implementation defaults to making the first transport
  1994. * added as the primary transport. The source address seems to
  1995. * be a a better choice than any of the embedded addresses.
  1996. */
  1997. if (!sctp_assoc_add_peer(asoc, peer_addr, gfp, SCTP_ACTIVE))
  1998. goto nomem;
  1999. if (sctp_cmp_addr_exact(sctp_source(chunk), peer_addr))
  2000. src_match = 1;
  2001. /* Process the initialization parameters. */
  2002. sctp_walk_params(param, peer_init, init_hdr.params) {
  2003. if (!src_match && (param.p->type == SCTP_PARAM_IPV4_ADDRESS ||
  2004. param.p->type == SCTP_PARAM_IPV6_ADDRESS)) {
  2005. af = sctp_get_af_specific(param_type2af(param.p->type));
  2006. af->from_addr_param(&addr, param.addr,
  2007. chunk->sctp_hdr->source, 0);
  2008. if (sctp_cmp_addr_exact(sctp_source(chunk), &addr))
  2009. src_match = 1;
  2010. }
  2011. if (!sctp_process_param(asoc, param, peer_addr, gfp))
  2012. goto clean_up;
  2013. }
  2014. /* source address of chunk may not match any valid address */
  2015. if (!src_match)
  2016. goto clean_up;
  2017. /* AUTH: After processing the parameters, make sure that we
  2018. * have all the required info to potentially do authentications.
  2019. */
  2020. if (asoc->peer.auth_capable && (!asoc->peer.peer_random ||
  2021. !asoc->peer.peer_hmacs))
  2022. asoc->peer.auth_capable = 0;
  2023. /* In a non-backward compatible mode, if the peer claims
  2024. * support for ADD-IP but not AUTH, the ADD-IP spec states
  2025. * that we MUST ABORT the association. Section 6. The section
  2026. * also give us an option to silently ignore the packet, which
  2027. * is what we'll do here.
  2028. */
  2029. if (!net->sctp.addip_noauth &&
  2030. (asoc->peer.asconf_capable && !asoc->peer.auth_capable)) {
  2031. asoc->peer.addip_disabled_mask |= (SCTP_PARAM_ADD_IP |
  2032. SCTP_PARAM_DEL_IP |
  2033. SCTP_PARAM_SET_PRIMARY);
  2034. asoc->peer.asconf_capable = 0;
  2035. goto clean_up;
  2036. }
  2037. /* Walk list of transports, removing transports in the UNKNOWN state. */
  2038. list_for_each_safe(pos, temp, &asoc->peer.transport_addr_list) {
  2039. transport = list_entry(pos, struct sctp_transport, transports);
  2040. if (transport->state == SCTP_UNKNOWN) {
  2041. sctp_assoc_rm_peer(asoc, transport);
  2042. }
  2043. }
  2044. /* The fixed INIT headers are always in network byte
  2045. * order.
  2046. */
  2047. asoc->peer.i.init_tag =
  2048. ntohl(peer_init->init_hdr.init_tag);
  2049. asoc->peer.i.a_rwnd =
  2050. ntohl(peer_init->init_hdr.a_rwnd);
  2051. asoc->peer.i.num_outbound_streams =
  2052. ntohs(peer_init->init_hdr.num_outbound_streams);
  2053. asoc->peer.i.num_inbound_streams =
  2054. ntohs(peer_init->init_hdr.num_inbound_streams);
  2055. asoc->peer.i.initial_tsn =
  2056. ntohl(peer_init->init_hdr.initial_tsn);
  2057. /* Apply the upper bounds for output streams based on peer's
  2058. * number of inbound streams.
  2059. */
  2060. if (asoc->c.sinit_num_ostreams >
  2061. ntohs(peer_init->init_hdr.num_inbound_streams)) {
  2062. asoc->c.sinit_num_ostreams =
  2063. ntohs(peer_init->init_hdr.num_inbound_streams);
  2064. }
  2065. if (asoc->c.sinit_max_instreams >
  2066. ntohs(peer_init->init_hdr.num_outbound_streams)) {
  2067. asoc->c.sinit_max_instreams =
  2068. ntohs(peer_init->init_hdr.num_outbound_streams);
  2069. }
  2070. /* Copy Initiation tag from INIT to VT_peer in cookie. */
  2071. asoc->c.peer_vtag = asoc->peer.i.init_tag;
  2072. /* Peer Rwnd : Current calculated value of the peer's rwnd. */
  2073. asoc->peer.rwnd = asoc->peer.i.a_rwnd;
  2074. /* Copy cookie in case we need to resend COOKIE-ECHO. */
  2075. cookie = asoc->peer.cookie;
  2076. if (cookie) {
  2077. asoc->peer.cookie = kmemdup(cookie, asoc->peer.cookie_len, gfp);
  2078. if (!asoc->peer.cookie)
  2079. goto clean_up;
  2080. }
  2081. /* RFC 2960 7.2.1 The initial value of ssthresh MAY be arbitrarily
  2082. * high (for example, implementations MAY use the size of the receiver
  2083. * advertised window).
  2084. */
  2085. list_for_each_entry(transport, &asoc->peer.transport_addr_list,
  2086. transports) {
  2087. transport->ssthresh = asoc->peer.i.a_rwnd;
  2088. }
  2089. /* Set up the TSN tracking pieces. */
  2090. if (!sctp_tsnmap_init(&asoc->peer.tsn_map, SCTP_TSN_MAP_INITIAL,
  2091. asoc->peer.i.initial_tsn, gfp))
  2092. goto clean_up;
  2093. /* RFC 2960 6.5 Stream Identifier and Stream Sequence Number
  2094. *
  2095. * The stream sequence number in all the streams shall start
  2096. * from 0 when the association is established. Also, when the
  2097. * stream sequence number reaches the value 65535 the next
  2098. * stream sequence number shall be set to 0.
  2099. */
  2100. /* Allocate storage for the negotiated streams if it is not a temporary
  2101. * association.
  2102. */
  2103. if (!asoc->temp) {
  2104. int error;
  2105. asoc->ssnmap = sctp_ssnmap_new(asoc->c.sinit_max_instreams,
  2106. asoc->c.sinit_num_ostreams, gfp);
  2107. if (!asoc->ssnmap)
  2108. goto clean_up;
  2109. error = sctp_assoc_set_id(asoc, gfp);
  2110. if (error)
  2111. goto clean_up;
  2112. }
  2113. /* ADDIP Section 4.1 ASCONF Chunk Procedures
  2114. *
  2115. * When an endpoint has an ASCONF signaled change to be sent to the
  2116. * remote endpoint it should do the following:
  2117. * ...
  2118. * A2) A serial number should be assigned to the Chunk. The serial
  2119. * number should be a monotonically increasing number. All serial
  2120. * numbers are defined to be initialized at the start of the
  2121. * association to the same value as the Initial TSN.
  2122. */
  2123. asoc->peer.addip_serial = asoc->peer.i.initial_tsn - 1;
  2124. return 1;
  2125. clean_up:
  2126. /* Release the transport structures. */
  2127. list_for_each_safe(pos, temp, &asoc->peer.transport_addr_list) {
  2128. transport = list_entry(pos, struct sctp_transport, transports);
  2129. if (transport->state != SCTP_ACTIVE)
  2130. sctp_assoc_rm_peer(asoc, transport);
  2131. }
  2132. nomem:
  2133. return 0;
  2134. }
  2135. /* Update asoc with the option described in param.
  2136. *
  2137. * RFC2960 3.3.2.1 Optional/Variable Length Parameters in INIT
  2138. *
  2139. * asoc is the association to update.
  2140. * param is the variable length parameter to use for update.
  2141. * cid tells us if this is an INIT, INIT ACK or COOKIE ECHO.
  2142. * If the current packet is an INIT we want to minimize the amount of
  2143. * work we do. In particular, we should not build transport
  2144. * structures for the addresses.
  2145. */
  2146. static int sctp_process_param(struct sctp_association *asoc,
  2147. union sctp_params param,
  2148. const union sctp_addr *peer_addr,
  2149. gfp_t gfp)
  2150. {
  2151. struct net *net = sock_net(asoc->base.sk);
  2152. union sctp_addr addr;
  2153. int i;
  2154. __u16 sat;
  2155. int retval = 1;
  2156. sctp_scope_t scope;
  2157. u32 stale;
  2158. struct sctp_af *af;
  2159. union sctp_addr_param *addr_param;
  2160. struct sctp_transport *t;
  2161. struct sctp_endpoint *ep = asoc->ep;
  2162. /* We maintain all INIT parameters in network byte order all the
  2163. * time. This allows us to not worry about whether the parameters
  2164. * came from a fresh INIT, and INIT ACK, or were stored in a cookie.
  2165. */
  2166. switch (param.p->type) {
  2167. case SCTP_PARAM_IPV6_ADDRESS:
  2168. if (PF_INET6 != asoc->base.sk->sk_family)
  2169. break;
  2170. goto do_addr_param;
  2171. case SCTP_PARAM_IPV4_ADDRESS:
  2172. /* v4 addresses are not allowed on v6-only socket */
  2173. if (ipv6_only_sock(asoc->base.sk))
  2174. break;
  2175. do_addr_param:
  2176. af = sctp_get_af_specific(param_type2af(param.p->type));
  2177. af->from_addr_param(&addr, param.addr, htons(asoc->peer.port), 0);
  2178. scope = sctp_scope(peer_addr);
  2179. if (sctp_in_scope(net, &addr, scope))
  2180. if (!sctp_assoc_add_peer(asoc, &addr, gfp, SCTP_UNCONFIRMED))
  2181. return 0;
  2182. break;
  2183. case SCTP_PARAM_COOKIE_PRESERVATIVE:
  2184. if (!net->sctp.cookie_preserve_enable)
  2185. break;
  2186. stale = ntohl(param.life->lifespan_increment);
  2187. /* Suggested Cookie Life span increment's unit is msec,
  2188. * (1/1000sec).
  2189. */
  2190. asoc->cookie_life = ktime_add_ms(asoc->cookie_life, stale);
  2191. break;
  2192. case SCTP_PARAM_HOST_NAME_ADDRESS:
  2193. pr_debug("%s: unimplemented SCTP_HOST_NAME_ADDRESS\n", __func__);
  2194. break;
  2195. case SCTP_PARAM_SUPPORTED_ADDRESS_TYPES:
  2196. /* Turn off the default values first so we'll know which
  2197. * ones are really set by the peer.
  2198. */
  2199. asoc->peer.ipv4_address = 0;
  2200. asoc->peer.ipv6_address = 0;
  2201. /* Assume that peer supports the address family
  2202. * by which it sends a packet.
  2203. */
  2204. if (peer_addr->sa.sa_family == AF_INET6)
  2205. asoc->peer.ipv6_address = 1;
  2206. else if (peer_addr->sa.sa_family == AF_INET)
  2207. asoc->peer.ipv4_address = 1;
  2208. /* Cycle through address types; avoid divide by 0. */
  2209. sat = ntohs(param.p->length) - sizeof(sctp_paramhdr_t);
  2210. if (sat)
  2211. sat /= sizeof(__u16);
  2212. for (i = 0; i < sat; ++i) {
  2213. switch (param.sat->types[i]) {
  2214. case SCTP_PARAM_IPV4_ADDRESS:
  2215. asoc->peer.ipv4_address = 1;
  2216. break;
  2217. case SCTP_PARAM_IPV6_ADDRESS:
  2218. if (PF_INET6 == asoc->base.sk->sk_family)
  2219. asoc->peer.ipv6_address = 1;
  2220. break;
  2221. case SCTP_PARAM_HOST_NAME_ADDRESS:
  2222. asoc->peer.hostname_address = 1;
  2223. break;
  2224. default: /* Just ignore anything else. */
  2225. break;
  2226. }
  2227. }
  2228. break;
  2229. case SCTP_PARAM_STATE_COOKIE:
  2230. asoc->peer.cookie_len =
  2231. ntohs(param.p->length) - sizeof(sctp_paramhdr_t);
  2232. asoc->peer.cookie = param.cookie->body;
  2233. break;
  2234. case SCTP_PARAM_HEARTBEAT_INFO:
  2235. /* Would be odd to receive, but it causes no problems. */
  2236. break;
  2237. case SCTP_PARAM_UNRECOGNIZED_PARAMETERS:
  2238. /* Rejected during verify stage. */
  2239. break;
  2240. case SCTP_PARAM_ECN_CAPABLE:
  2241. asoc->peer.ecn_capable = 1;
  2242. break;
  2243. case SCTP_PARAM_ADAPTATION_LAYER_IND:
  2244. asoc->peer.adaptation_ind = ntohl(param.aind->adaptation_ind);
  2245. break;
  2246. case SCTP_PARAM_SET_PRIMARY:
  2247. if (!net->sctp.addip_enable)
  2248. goto fall_through;
  2249. addr_param = param.v + sizeof(sctp_addip_param_t);
  2250. af = sctp_get_af_specific(param_type2af(addr_param->p.type));
  2251. if (af == NULL)
  2252. break;
  2253. af->from_addr_param(&addr, addr_param,
  2254. htons(asoc->peer.port), 0);
  2255. /* if the address is invalid, we can't process it.
  2256. * XXX: see spec for what to do.
  2257. */
  2258. if (!af->addr_valid(&addr, NULL, NULL))
  2259. break;
  2260. t = sctp_assoc_lookup_paddr(asoc, &addr);
  2261. if (!t)
  2262. break;
  2263. sctp_assoc_set_primary(asoc, t);
  2264. break;
  2265. case SCTP_PARAM_SUPPORTED_EXT:
  2266. sctp_process_ext_param(asoc, param);
  2267. break;
  2268. case SCTP_PARAM_FWD_TSN_SUPPORT:
  2269. if (asoc->prsctp_enable) {
  2270. asoc->peer.prsctp_capable = 1;
  2271. break;
  2272. }
  2273. /* Fall Through */
  2274. goto fall_through;
  2275. case SCTP_PARAM_RANDOM:
  2276. if (!ep->auth_enable)
  2277. goto fall_through;
  2278. /* Save peer's random parameter */
  2279. asoc->peer.peer_random = kmemdup(param.p,
  2280. ntohs(param.p->length), gfp);
  2281. if (!asoc->peer.peer_random) {
  2282. retval = 0;
  2283. break;
  2284. }
  2285. break;
  2286. case SCTP_PARAM_HMAC_ALGO:
  2287. if (!ep->auth_enable)
  2288. goto fall_through;
  2289. /* Save peer's HMAC list */
  2290. asoc->peer.peer_hmacs = kmemdup(param.p,
  2291. ntohs(param.p->length), gfp);
  2292. if (!asoc->peer.peer_hmacs) {
  2293. retval = 0;
  2294. break;
  2295. }
  2296. /* Set the default HMAC the peer requested*/
  2297. sctp_auth_asoc_set_default_hmac(asoc, param.hmac_algo);
  2298. break;
  2299. case SCTP_PARAM_CHUNKS:
  2300. if (!ep->auth_enable)
  2301. goto fall_through;
  2302. asoc->peer.peer_chunks = kmemdup(param.p,
  2303. ntohs(param.p->length), gfp);
  2304. if (!asoc->peer.peer_chunks)
  2305. retval = 0;
  2306. break;
  2307. fall_through:
  2308. default:
  2309. /* Any unrecognized parameters should have been caught
  2310. * and handled by sctp_verify_param() which should be
  2311. * called prior to this routine. Simply log the error
  2312. * here.
  2313. */
  2314. pr_debug("%s: ignoring param:%d for association:%p.\n",
  2315. __func__, ntohs(param.p->type), asoc);
  2316. break;
  2317. }
  2318. return retval;
  2319. }
  2320. /* Select a new verification tag. */
  2321. __u32 sctp_generate_tag(const struct sctp_endpoint *ep)
  2322. {
  2323. /* I believe that this random number generator complies with RFC1750.
  2324. * A tag of 0 is reserved for special cases (e.g. INIT).
  2325. */
  2326. __u32 x;
  2327. do {
  2328. get_random_bytes(&x, sizeof(__u32));
  2329. } while (x == 0);
  2330. return x;
  2331. }
  2332. /* Select an initial TSN to send during startup. */
  2333. __u32 sctp_generate_tsn(const struct sctp_endpoint *ep)
  2334. {
  2335. __u32 retval;
  2336. get_random_bytes(&retval, sizeof(__u32));
  2337. return retval;
  2338. }
  2339. /*
  2340. * ADDIP 3.1.1 Address Configuration Change Chunk (ASCONF)
  2341. * 0 1 2 3
  2342. * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  2343. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2344. * | Type = 0xC1 | Chunk Flags | Chunk Length |
  2345. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2346. * | Serial Number |
  2347. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2348. * | Address Parameter |
  2349. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2350. * | ASCONF Parameter #1 |
  2351. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2352. * \ \
  2353. * / .... /
  2354. * \ \
  2355. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2356. * | ASCONF Parameter #N |
  2357. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2358. *
  2359. * Address Parameter and other parameter will not be wrapped in this function
  2360. */
  2361. static struct sctp_chunk *sctp_make_asconf(struct sctp_association *asoc,
  2362. union sctp_addr *addr,
  2363. int vparam_len)
  2364. {
  2365. sctp_addiphdr_t asconf;
  2366. struct sctp_chunk *retval;
  2367. int length = sizeof(asconf) + vparam_len;
  2368. union sctp_addr_param addrparam;
  2369. int addrlen;
  2370. struct sctp_af *af = sctp_get_af_specific(addr->v4.sin_family);
  2371. addrlen = af->to_addr_param(addr, &addrparam);
  2372. if (!addrlen)
  2373. return NULL;
  2374. length += addrlen;
  2375. /* Create the chunk. */
  2376. retval = sctp_make_control(asoc, SCTP_CID_ASCONF, 0, length,
  2377. GFP_ATOMIC);
  2378. if (!retval)
  2379. return NULL;
  2380. asconf.serial = htonl(asoc->addip_serial++);
  2381. retval->subh.addip_hdr =
  2382. sctp_addto_chunk(retval, sizeof(asconf), &asconf);
  2383. retval->param_hdr.v =
  2384. sctp_addto_chunk(retval, addrlen, &addrparam);
  2385. return retval;
  2386. }
  2387. /* ADDIP
  2388. * 3.2.1 Add IP Address
  2389. * 0 1 2 3
  2390. * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  2391. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2392. * | Type = 0xC001 | Length = Variable |
  2393. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2394. * | ASCONF-Request Correlation ID |
  2395. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2396. * | Address Parameter |
  2397. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2398. *
  2399. * 3.2.2 Delete IP Address
  2400. * 0 1 2 3
  2401. * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  2402. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2403. * | Type = 0xC002 | Length = Variable |
  2404. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2405. * | ASCONF-Request Correlation ID |
  2406. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2407. * | Address Parameter |
  2408. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2409. *
  2410. */
  2411. struct sctp_chunk *sctp_make_asconf_update_ip(struct sctp_association *asoc,
  2412. union sctp_addr *laddr,
  2413. struct sockaddr *addrs,
  2414. int addrcnt,
  2415. __be16 flags)
  2416. {
  2417. sctp_addip_param_t param;
  2418. struct sctp_chunk *retval;
  2419. union sctp_addr_param addr_param;
  2420. union sctp_addr *addr;
  2421. void *addr_buf;
  2422. struct sctp_af *af;
  2423. int paramlen = sizeof(param);
  2424. int addr_param_len = 0;
  2425. int totallen = 0;
  2426. int i;
  2427. int del_pickup = 0;
  2428. /* Get total length of all the address parameters. */
  2429. addr_buf = addrs;
  2430. for (i = 0; i < addrcnt; i++) {
  2431. addr = addr_buf;
  2432. af = sctp_get_af_specific(addr->v4.sin_family);
  2433. addr_param_len = af->to_addr_param(addr, &addr_param);
  2434. totallen += paramlen;
  2435. totallen += addr_param_len;
  2436. addr_buf += af->sockaddr_len;
  2437. if (asoc->asconf_addr_del_pending && !del_pickup) {
  2438. /* reuse the parameter length from the same scope one */
  2439. totallen += paramlen;
  2440. totallen += addr_param_len;
  2441. del_pickup = 1;
  2442. pr_debug("%s: picked same-scope del_pending addr, "
  2443. "totallen for all addresses is %d\n",
  2444. __func__, totallen);
  2445. }
  2446. }
  2447. /* Create an asconf chunk with the required length. */
  2448. retval = sctp_make_asconf(asoc, laddr, totallen);
  2449. if (!retval)
  2450. return NULL;
  2451. /* Add the address parameters to the asconf chunk. */
  2452. addr_buf = addrs;
  2453. for (i = 0; i < addrcnt; i++) {
  2454. addr = addr_buf;
  2455. af = sctp_get_af_specific(addr->v4.sin_family);
  2456. addr_param_len = af->to_addr_param(addr, &addr_param);
  2457. param.param_hdr.type = flags;
  2458. param.param_hdr.length = htons(paramlen + addr_param_len);
  2459. param.crr_id = i;
  2460. sctp_addto_chunk(retval, paramlen, &param);
  2461. sctp_addto_chunk(retval, addr_param_len, &addr_param);
  2462. addr_buf += af->sockaddr_len;
  2463. }
  2464. if (flags == SCTP_PARAM_ADD_IP && del_pickup) {
  2465. addr = asoc->asconf_addr_del_pending;
  2466. af = sctp_get_af_specific(addr->v4.sin_family);
  2467. addr_param_len = af->to_addr_param(addr, &addr_param);
  2468. param.param_hdr.type = SCTP_PARAM_DEL_IP;
  2469. param.param_hdr.length = htons(paramlen + addr_param_len);
  2470. param.crr_id = i;
  2471. sctp_addto_chunk(retval, paramlen, &param);
  2472. sctp_addto_chunk(retval, addr_param_len, &addr_param);
  2473. }
  2474. return retval;
  2475. }
  2476. /* ADDIP
  2477. * 3.2.4 Set Primary IP Address
  2478. * 0 1 2 3
  2479. * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  2480. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2481. * | Type =0xC004 | Length = Variable |
  2482. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2483. * | ASCONF-Request Correlation ID |
  2484. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2485. * | Address Parameter |
  2486. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2487. *
  2488. * Create an ASCONF chunk with Set Primary IP address parameter.
  2489. */
  2490. struct sctp_chunk *sctp_make_asconf_set_prim(struct sctp_association *asoc,
  2491. union sctp_addr *addr)
  2492. {
  2493. sctp_addip_param_t param;
  2494. struct sctp_chunk *retval;
  2495. int len = sizeof(param);
  2496. union sctp_addr_param addrparam;
  2497. int addrlen;
  2498. struct sctp_af *af = sctp_get_af_specific(addr->v4.sin_family);
  2499. addrlen = af->to_addr_param(addr, &addrparam);
  2500. if (!addrlen)
  2501. return NULL;
  2502. len += addrlen;
  2503. /* Create the chunk and make asconf header. */
  2504. retval = sctp_make_asconf(asoc, addr, len);
  2505. if (!retval)
  2506. return NULL;
  2507. param.param_hdr.type = SCTP_PARAM_SET_PRIMARY;
  2508. param.param_hdr.length = htons(len);
  2509. param.crr_id = 0;
  2510. sctp_addto_chunk(retval, sizeof(param), &param);
  2511. sctp_addto_chunk(retval, addrlen, &addrparam);
  2512. return retval;
  2513. }
  2514. /* ADDIP 3.1.2 Address Configuration Acknowledgement Chunk (ASCONF-ACK)
  2515. * 0 1 2 3
  2516. * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
  2517. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2518. * | Type = 0x80 | Chunk Flags | Chunk Length |
  2519. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2520. * | Serial Number |
  2521. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2522. * | ASCONF Parameter Response#1 |
  2523. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2524. * \ \
  2525. * / .... /
  2526. * \ \
  2527. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2528. * | ASCONF Parameter Response#N |
  2529. * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
  2530. *
  2531. * Create an ASCONF_ACK chunk with enough space for the parameter responses.
  2532. */
  2533. static struct sctp_chunk *sctp_make_asconf_ack(const struct sctp_association *asoc,
  2534. __u32 serial, int vparam_len)
  2535. {
  2536. sctp_addiphdr_t asconf;
  2537. struct sctp_chunk *retval;
  2538. int length = sizeof(asconf) + vparam_len;
  2539. /* Create the chunk. */
  2540. retval = sctp_make_control(asoc, SCTP_CID_ASCONF_ACK, 0, length,
  2541. GFP_ATOMIC);
  2542. if (!retval)
  2543. return NULL;
  2544. asconf.serial = htonl(serial);
  2545. retval->subh.addip_hdr =
  2546. sctp_addto_chunk(retval, sizeof(asconf), &asconf);
  2547. return retval;
  2548. }
  2549. /* Add response parameters to an ASCONF_ACK chunk. */
  2550. static void sctp_add_asconf_response(struct sctp_chunk *chunk, __be32 crr_id,
  2551. __be16 err_code, sctp_addip_param_t *asconf_param)
  2552. {
  2553. sctp_addip_param_t ack_param;
  2554. sctp_errhdr_t err_param;
  2555. int asconf_param_len = 0;
  2556. int err_param_len = 0;
  2557. __be16 response_type;
  2558. if (SCTP_ERROR_NO_ERROR == err_code) {
  2559. response_type = SCTP_PARAM_SUCCESS_REPORT;
  2560. } else {
  2561. response_type = SCTP_PARAM_ERR_CAUSE;
  2562. err_param_len = sizeof(err_param);
  2563. if (asconf_param)
  2564. asconf_param_len =
  2565. ntohs(asconf_param->param_hdr.length);
  2566. }
  2567. /* Add Success Indication or Error Cause Indication parameter. */
  2568. ack_param.param_hdr.type = response_type;
  2569. ack_param.param_hdr.length = htons(sizeof(ack_param) +
  2570. err_param_len +
  2571. asconf_param_len);
  2572. ack_param.crr_id = crr_id;
  2573. sctp_addto_chunk(chunk, sizeof(ack_param), &ack_param);
  2574. if (SCTP_ERROR_NO_ERROR == err_code)
  2575. return;
  2576. /* Add Error Cause parameter. */
  2577. err_param.cause = err_code;
  2578. err_param.length = htons(err_param_len + asconf_param_len);
  2579. sctp_addto_chunk(chunk, err_param_len, &err_param);
  2580. /* Add the failed TLV copied from ASCONF chunk. */
  2581. if (asconf_param)
  2582. sctp_addto_chunk(chunk, asconf_param_len, asconf_param);
  2583. }
  2584. /* Process a asconf parameter. */
  2585. static __be16 sctp_process_asconf_param(struct sctp_association *asoc,
  2586. struct sctp_chunk *asconf,
  2587. sctp_addip_param_t *asconf_param)
  2588. {
  2589. struct sctp_transport *peer;
  2590. struct sctp_af *af;
  2591. union sctp_addr addr;
  2592. union sctp_addr_param *addr_param;
  2593. addr_param = (void *)asconf_param + sizeof(sctp_addip_param_t);
  2594. if (asconf_param->param_hdr.type != SCTP_PARAM_ADD_IP &&
  2595. asconf_param->param_hdr.type != SCTP_PARAM_DEL_IP &&
  2596. asconf_param->param_hdr.type != SCTP_PARAM_SET_PRIMARY)
  2597. return SCTP_ERROR_UNKNOWN_PARAM;
  2598. switch (addr_param->p.type) {
  2599. case SCTP_PARAM_IPV6_ADDRESS:
  2600. if (!asoc->peer.ipv6_address)
  2601. return SCTP_ERROR_DNS_FAILED;
  2602. break;
  2603. case SCTP_PARAM_IPV4_ADDRESS:
  2604. if (!asoc->peer.ipv4_address)
  2605. return SCTP_ERROR_DNS_FAILED;
  2606. break;
  2607. default:
  2608. return SCTP_ERROR_DNS_FAILED;
  2609. }
  2610. af = sctp_get_af_specific(param_type2af(addr_param->p.type));
  2611. if (unlikely(!af))
  2612. return SCTP_ERROR_DNS_FAILED;
  2613. af->from_addr_param(&addr, addr_param, htons(asoc->peer.port), 0);
  2614. /* ADDIP 4.2.1 This parameter MUST NOT contain a broadcast
  2615. * or multicast address.
  2616. * (note: wildcard is permitted and requires special handling so
  2617. * make sure we check for that)
  2618. */
  2619. if (!af->is_any(&addr) && !af->addr_valid(&addr, NULL, asconf->skb))
  2620. return SCTP_ERROR_DNS_FAILED;
  2621. switch (asconf_param->param_hdr.type) {
  2622. case SCTP_PARAM_ADD_IP:
  2623. /* Section 4.2.1:
  2624. * If the address 0.0.0.0 or ::0 is provided, the source
  2625. * address of the packet MUST be added.
  2626. */
  2627. if (af->is_any(&addr))
  2628. memcpy(&addr, &asconf->source, sizeof(addr));
  2629. /* ADDIP 4.3 D9) If an endpoint receives an ADD IP address
  2630. * request and does not have the local resources to add this
  2631. * new address to the association, it MUST return an Error
  2632. * Cause TLV set to the new error code 'Operation Refused
  2633. * Due to Resource Shortage'.
  2634. */
  2635. peer = sctp_assoc_add_peer(asoc, &addr, GFP_ATOMIC, SCTP_UNCONFIRMED);
  2636. if (!peer)
  2637. return SCTP_ERROR_RSRC_LOW;
  2638. /* Start the heartbeat timer. */
  2639. sctp_transport_reset_hb_timer(peer);
  2640. asoc->new_transport = peer;
  2641. break;
  2642. case SCTP_PARAM_DEL_IP:
  2643. /* ADDIP 4.3 D7) If a request is received to delete the
  2644. * last remaining IP address of a peer endpoint, the receiver
  2645. * MUST send an Error Cause TLV with the error cause set to the
  2646. * new error code 'Request to Delete Last Remaining IP Address'.
  2647. */
  2648. if (asoc->peer.transport_count == 1)
  2649. return SCTP_ERROR_DEL_LAST_IP;
  2650. /* ADDIP 4.3 D8) If a request is received to delete an IP
  2651. * address which is also the source address of the IP packet
  2652. * which contained the ASCONF chunk, the receiver MUST reject
  2653. * this request. To reject the request the receiver MUST send
  2654. * an Error Cause TLV set to the new error code 'Request to
  2655. * Delete Source IP Address'
  2656. */
  2657. if (sctp_cmp_addr_exact(&asconf->source, &addr))
  2658. return SCTP_ERROR_DEL_SRC_IP;
  2659. /* Section 4.2.2
  2660. * If the address 0.0.0.0 or ::0 is provided, all
  2661. * addresses of the peer except the source address of the
  2662. * packet MUST be deleted.
  2663. */
  2664. if (af->is_any(&addr)) {
  2665. sctp_assoc_set_primary(asoc, asconf->transport);
  2666. sctp_assoc_del_nonprimary_peers(asoc,
  2667. asconf->transport);
  2668. return SCTP_ERROR_NO_ERROR;
  2669. }
  2670. /* If the address is not part of the association, the
  2671. * ASCONF-ACK with Error Cause Indication Parameter
  2672. * which including cause of Unresolvable Address should
  2673. * be sent.
  2674. */
  2675. peer = sctp_assoc_lookup_paddr(asoc, &addr);
  2676. if (!peer)
  2677. return SCTP_ERROR_DNS_FAILED;
  2678. sctp_assoc_rm_peer(asoc, peer);
  2679. break;
  2680. case SCTP_PARAM_SET_PRIMARY:
  2681. /* ADDIP Section 4.2.4
  2682. * If the address 0.0.0.0 or ::0 is provided, the receiver
  2683. * MAY mark the source address of the packet as its
  2684. * primary.
  2685. */
  2686. if (af->is_any(&addr))
  2687. memcpy(&addr.v4, sctp_source(asconf), sizeof(addr));
  2688. peer = sctp_assoc_lookup_paddr(asoc, &addr);
  2689. if (!peer)
  2690. return SCTP_ERROR_DNS_FAILED;
  2691. sctp_assoc_set_primary(asoc, peer);
  2692. break;
  2693. }
  2694. return SCTP_ERROR_NO_ERROR;
  2695. }
  2696. /* Verify the ASCONF packet before we process it. */
  2697. bool sctp_verify_asconf(const struct sctp_association *asoc,
  2698. struct sctp_chunk *chunk, bool addr_param_needed,
  2699. struct sctp_paramhdr **errp)
  2700. {
  2701. sctp_addip_chunk_t *addip = (sctp_addip_chunk_t *) chunk->chunk_hdr;
  2702. union sctp_params param;
  2703. bool addr_param_seen = false;
  2704. sctp_walk_params(param, addip, addip_hdr.params) {
  2705. size_t length = ntohs(param.p->length);
  2706. *errp = param.p;
  2707. switch (param.p->type) {
  2708. case SCTP_PARAM_ERR_CAUSE:
  2709. break;
  2710. case SCTP_PARAM_IPV4_ADDRESS:
  2711. if (length != sizeof(sctp_ipv4addr_param_t))
  2712. return false;
  2713. /* ensure there is only one addr param and it's in the
  2714. * beginning of addip_hdr params, or we reject it.
  2715. */
  2716. if (param.v != addip->addip_hdr.params)
  2717. return false;
  2718. addr_param_seen = true;
  2719. break;
  2720. case SCTP_PARAM_IPV6_ADDRESS:
  2721. if (length != sizeof(sctp_ipv6addr_param_t))
  2722. return false;
  2723. if (param.v != addip->addip_hdr.params)
  2724. return false;
  2725. addr_param_seen = true;
  2726. break;
  2727. case SCTP_PARAM_ADD_IP:
  2728. case SCTP_PARAM_DEL_IP:
  2729. case SCTP_PARAM_SET_PRIMARY:
  2730. /* In ASCONF chunks, these need to be first. */
  2731. if (addr_param_needed && !addr_param_seen)
  2732. return false;
  2733. length = ntohs(param.addip->param_hdr.length);
  2734. if (length < sizeof(sctp_addip_param_t) +
  2735. sizeof(sctp_paramhdr_t))
  2736. return false;
  2737. break;
  2738. case SCTP_PARAM_SUCCESS_REPORT:
  2739. case SCTP_PARAM_ADAPTATION_LAYER_IND:
  2740. if (length != sizeof(sctp_addip_param_t))
  2741. return false;
  2742. break;
  2743. default:
  2744. /* This is unkown to us, reject! */
  2745. return false;
  2746. }
  2747. }
  2748. /* Remaining sanity checks. */
  2749. if (addr_param_needed && !addr_param_seen)
  2750. return false;
  2751. if (!addr_param_needed && addr_param_seen)
  2752. return false;
  2753. if (param.v != chunk->chunk_end)
  2754. return false;
  2755. return true;
  2756. }
  2757. /* Process an incoming ASCONF chunk with the next expected serial no. and
  2758. * return an ASCONF_ACK chunk to be sent in response.
  2759. */
  2760. struct sctp_chunk *sctp_process_asconf(struct sctp_association *asoc,
  2761. struct sctp_chunk *asconf)
  2762. {
  2763. sctp_addip_chunk_t *addip = (sctp_addip_chunk_t *) asconf->chunk_hdr;
  2764. bool all_param_pass = true;
  2765. union sctp_params param;
  2766. sctp_addiphdr_t *hdr;
  2767. union sctp_addr_param *addr_param;
  2768. sctp_addip_param_t *asconf_param;
  2769. struct sctp_chunk *asconf_ack;
  2770. __be16 err_code;
  2771. int length = 0;
  2772. int chunk_len;
  2773. __u32 serial;
  2774. chunk_len = ntohs(asconf->chunk_hdr->length) - sizeof(sctp_chunkhdr_t);
  2775. hdr = (sctp_addiphdr_t *)asconf->skb->data;
  2776. serial = ntohl(hdr->serial);
  2777. /* Skip the addiphdr and store a pointer to address parameter. */
  2778. length = sizeof(sctp_addiphdr_t);
  2779. addr_param = (union sctp_addr_param *)(asconf->skb->data + length);
  2780. chunk_len -= length;
  2781. /* Skip the address parameter and store a pointer to the first
  2782. * asconf parameter.
  2783. */
  2784. length = ntohs(addr_param->p.length);
  2785. asconf_param = (void *)addr_param + length;
  2786. chunk_len -= length;
  2787. /* create an ASCONF_ACK chunk.
  2788. * Based on the definitions of parameters, we know that the size of
  2789. * ASCONF_ACK parameters are less than or equal to the fourfold of ASCONF
  2790. * parameters.
  2791. */
  2792. asconf_ack = sctp_make_asconf_ack(asoc, serial, chunk_len * 4);
  2793. if (!asconf_ack)
  2794. goto done;
  2795. /* Process the TLVs contained within the ASCONF chunk. */
  2796. sctp_walk_params(param, addip, addip_hdr.params) {
  2797. /* Skip preceeding address parameters. */
  2798. if (param.p->type == SCTP_PARAM_IPV4_ADDRESS ||
  2799. param.p->type == SCTP_PARAM_IPV6_ADDRESS)
  2800. continue;
  2801. err_code = sctp_process_asconf_param(asoc, asconf,
  2802. param.addip);
  2803. /* ADDIP 4.1 A7)
  2804. * If an error response is received for a TLV parameter,
  2805. * all TLVs with no response before the failed TLV are
  2806. * considered successful if not reported. All TLVs after
  2807. * the failed response are considered unsuccessful unless
  2808. * a specific success indication is present for the parameter.
  2809. */
  2810. if (err_code != SCTP_ERROR_NO_ERROR)
  2811. all_param_pass = false;
  2812. if (!all_param_pass)
  2813. sctp_add_asconf_response(asconf_ack, param.addip->crr_id,
  2814. err_code, param.addip);
  2815. /* ADDIP 4.3 D11) When an endpoint receiving an ASCONF to add
  2816. * an IP address sends an 'Out of Resource' in its response, it
  2817. * MUST also fail any subsequent add or delete requests bundled
  2818. * in the ASCONF.
  2819. */
  2820. if (err_code == SCTP_ERROR_RSRC_LOW)
  2821. goto done;
  2822. }
  2823. done:
  2824. asoc->peer.addip_serial++;
  2825. /* If we are sending a new ASCONF_ACK hold a reference to it in assoc
  2826. * after freeing the reference to old asconf ack if any.
  2827. */
  2828. if (asconf_ack) {
  2829. sctp_chunk_hold(asconf_ack);
  2830. list_add_tail(&asconf_ack->transmitted_list,
  2831. &asoc->asconf_ack_list);
  2832. }
  2833. return asconf_ack;
  2834. }
  2835. /* Process a asconf parameter that is successfully acked. */
  2836. static void sctp_asconf_param_success(struct sctp_association *asoc,
  2837. sctp_addip_param_t *asconf_param)
  2838. {
  2839. struct sctp_af *af;
  2840. union sctp_addr addr;
  2841. struct sctp_bind_addr *bp = &asoc->base.bind_addr;
  2842. union sctp_addr_param *addr_param;
  2843. struct sctp_transport *transport;
  2844. struct sctp_sockaddr_entry *saddr;
  2845. addr_param = (void *)asconf_param + sizeof(sctp_addip_param_t);
  2846. /* We have checked the packet before, so we do not check again. */
  2847. af = sctp_get_af_specific(param_type2af(addr_param->p.type));
  2848. af->from_addr_param(&addr, addr_param, htons(bp->port), 0);
  2849. switch (asconf_param->param_hdr.type) {
  2850. case SCTP_PARAM_ADD_IP:
  2851. /* This is always done in BH context with a socket lock
  2852. * held, so the list can not change.
  2853. */
  2854. local_bh_disable();
  2855. list_for_each_entry(saddr, &bp->address_list, list) {
  2856. if (sctp_cmp_addr_exact(&saddr->a, &addr))
  2857. saddr->state = SCTP_ADDR_SRC;
  2858. }
  2859. local_bh_enable();
  2860. list_for_each_entry(transport, &asoc->peer.transport_addr_list,
  2861. transports) {
  2862. dst_release(transport->dst);
  2863. transport->dst = NULL;
  2864. }
  2865. break;
  2866. case SCTP_PARAM_DEL_IP:
  2867. local_bh_disable();
  2868. sctp_del_bind_addr(bp, &addr);
  2869. if (asoc->asconf_addr_del_pending != NULL &&
  2870. sctp_cmp_addr_exact(asoc->asconf_addr_del_pending, &addr)) {
  2871. kfree(asoc->asconf_addr_del_pending);
  2872. asoc->asconf_addr_del_pending = NULL;
  2873. }
  2874. local_bh_enable();
  2875. list_for_each_entry(transport, &asoc->peer.transport_addr_list,
  2876. transports) {
  2877. dst_release(transport->dst);
  2878. transport->dst = NULL;
  2879. }
  2880. break;
  2881. default:
  2882. break;
  2883. }
  2884. }
  2885. /* Get the corresponding ASCONF response error code from the ASCONF_ACK chunk
  2886. * for the given asconf parameter. If there is no response for this parameter,
  2887. * return the error code based on the third argument 'no_err'.
  2888. * ADDIP 4.1
  2889. * A7) If an error response is received for a TLV parameter, all TLVs with no
  2890. * response before the failed TLV are considered successful if not reported.
  2891. * All TLVs after the failed response are considered unsuccessful unless a
  2892. * specific success indication is present for the parameter.
  2893. */
  2894. static __be16 sctp_get_asconf_response(struct sctp_chunk *asconf_ack,
  2895. sctp_addip_param_t *asconf_param,
  2896. int no_err)
  2897. {
  2898. sctp_addip_param_t *asconf_ack_param;
  2899. sctp_errhdr_t *err_param;
  2900. int length;
  2901. int asconf_ack_len;
  2902. __be16 err_code;
  2903. if (no_err)
  2904. err_code = SCTP_ERROR_NO_ERROR;
  2905. else
  2906. err_code = SCTP_ERROR_REQ_REFUSED;
  2907. asconf_ack_len = ntohs(asconf_ack->chunk_hdr->length) -
  2908. sizeof(sctp_chunkhdr_t);
  2909. /* Skip the addiphdr from the asconf_ack chunk and store a pointer to
  2910. * the first asconf_ack parameter.
  2911. */
  2912. length = sizeof(sctp_addiphdr_t);
  2913. asconf_ack_param = (sctp_addip_param_t *)(asconf_ack->skb->data +
  2914. length);
  2915. asconf_ack_len -= length;
  2916. while (asconf_ack_len > 0) {
  2917. if (asconf_ack_param->crr_id == asconf_param->crr_id) {
  2918. switch (asconf_ack_param->param_hdr.type) {
  2919. case SCTP_PARAM_SUCCESS_REPORT:
  2920. return SCTP_ERROR_NO_ERROR;
  2921. case SCTP_PARAM_ERR_CAUSE:
  2922. length = sizeof(sctp_addip_param_t);
  2923. err_param = (void *)asconf_ack_param + length;
  2924. asconf_ack_len -= length;
  2925. if (asconf_ack_len > 0)
  2926. return err_param->cause;
  2927. else
  2928. return SCTP_ERROR_INV_PARAM;
  2929. break;
  2930. default:
  2931. return SCTP_ERROR_INV_PARAM;
  2932. }
  2933. }
  2934. length = ntohs(asconf_ack_param->param_hdr.length);
  2935. asconf_ack_param = (void *)asconf_ack_param + length;
  2936. asconf_ack_len -= length;
  2937. }
  2938. return err_code;
  2939. }
  2940. /* Process an incoming ASCONF_ACK chunk against the cached last ASCONF chunk. */
  2941. int sctp_process_asconf_ack(struct sctp_association *asoc,
  2942. struct sctp_chunk *asconf_ack)
  2943. {
  2944. struct sctp_chunk *asconf = asoc->addip_last_asconf;
  2945. union sctp_addr_param *addr_param;
  2946. sctp_addip_param_t *asconf_param;
  2947. int length = 0;
  2948. int asconf_len = asconf->skb->len;
  2949. int all_param_pass = 0;
  2950. int no_err = 1;
  2951. int retval = 0;
  2952. __be16 err_code = SCTP_ERROR_NO_ERROR;
  2953. /* Skip the chunkhdr and addiphdr from the last asconf sent and store
  2954. * a pointer to address parameter.
  2955. */
  2956. length = sizeof(sctp_addip_chunk_t);
  2957. addr_param = (union sctp_addr_param *)(asconf->skb->data + length);
  2958. asconf_len -= length;
  2959. /* Skip the address parameter in the last asconf sent and store a
  2960. * pointer to the first asconf parameter.
  2961. */
  2962. length = ntohs(addr_param->p.length);
  2963. asconf_param = (void *)addr_param + length;
  2964. asconf_len -= length;
  2965. /* ADDIP 4.1
  2966. * A8) If there is no response(s) to specific TLV parameter(s), and no
  2967. * failures are indicated, then all request(s) are considered
  2968. * successful.
  2969. */
  2970. if (asconf_ack->skb->len == sizeof(sctp_addiphdr_t))
  2971. all_param_pass = 1;
  2972. /* Process the TLVs contained in the last sent ASCONF chunk. */
  2973. while (asconf_len > 0) {
  2974. if (all_param_pass)
  2975. err_code = SCTP_ERROR_NO_ERROR;
  2976. else {
  2977. err_code = sctp_get_asconf_response(asconf_ack,
  2978. asconf_param,
  2979. no_err);
  2980. if (no_err && (SCTP_ERROR_NO_ERROR != err_code))
  2981. no_err = 0;
  2982. }
  2983. switch (err_code) {
  2984. case SCTP_ERROR_NO_ERROR:
  2985. sctp_asconf_param_success(asoc, asconf_param);
  2986. break;
  2987. case SCTP_ERROR_RSRC_LOW:
  2988. retval = 1;
  2989. break;
  2990. case SCTP_ERROR_UNKNOWN_PARAM:
  2991. /* Disable sending this type of asconf parameter in
  2992. * future.
  2993. */
  2994. asoc->peer.addip_disabled_mask |=
  2995. asconf_param->param_hdr.type;
  2996. break;
  2997. case SCTP_ERROR_REQ_REFUSED:
  2998. case SCTP_ERROR_DEL_LAST_IP:
  2999. case SCTP_ERROR_DEL_SRC_IP:
  3000. default:
  3001. break;
  3002. }
  3003. /* Skip the processed asconf parameter and move to the next
  3004. * one.
  3005. */
  3006. length = ntohs(asconf_param->param_hdr.length);
  3007. asconf_param = (void *)asconf_param + length;
  3008. asconf_len -= length;
  3009. }
  3010. if (no_err && asoc->src_out_of_asoc_ok) {
  3011. asoc->src_out_of_asoc_ok = 0;
  3012. sctp_transport_immediate_rtx(asoc->peer.primary_path);
  3013. }
  3014. /* Free the cached last sent asconf chunk. */
  3015. list_del_init(&asconf->transmitted_list);
  3016. sctp_chunk_free(asconf);
  3017. asoc->addip_last_asconf = NULL;
  3018. return retval;
  3019. }
  3020. /* Make a FWD TSN chunk. */
  3021. struct sctp_chunk *sctp_make_fwdtsn(const struct sctp_association *asoc,
  3022. __u32 new_cum_tsn, size_t nstreams,
  3023. struct sctp_fwdtsn_skip *skiplist)
  3024. {
  3025. struct sctp_chunk *retval = NULL;
  3026. struct sctp_fwdtsn_hdr ftsn_hdr;
  3027. struct sctp_fwdtsn_skip skip;
  3028. size_t hint;
  3029. int i;
  3030. hint = (nstreams + 1) * sizeof(__u32);
  3031. retval = sctp_make_control(asoc, SCTP_CID_FWD_TSN, 0, hint, GFP_ATOMIC);
  3032. if (!retval)
  3033. return NULL;
  3034. ftsn_hdr.new_cum_tsn = htonl(new_cum_tsn);
  3035. retval->subh.fwdtsn_hdr =
  3036. sctp_addto_chunk(retval, sizeof(ftsn_hdr), &ftsn_hdr);
  3037. for (i = 0; i < nstreams; i++) {
  3038. skip.stream = skiplist[i].stream;
  3039. skip.ssn = skiplist[i].ssn;
  3040. sctp_addto_chunk(retval, sizeof(skip), &skip);
  3041. }
  3042. return retval;
  3043. }