1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* SCTP kernel implementation
3 * (C) Copyright IBM Corp. 2001, 2004
4 * Copyright (c) 1999-2000 Cisco, Inc.
5 * Copyright (c) 1999-2001 Motorola, Inc.
6 * Copyright (c) 2001-2002 Intel Corp.
7 *
8 * This file is part of the SCTP kernel implementation
9 *
10 * These functions work with the state functions in sctp_sm_statefuns.c
11 * to implement the state operations. These functions implement the
12 * steps which require modifying existing data structures.
13 *
14 * Please send any bug reports or fixes you make to the
15 * email address(es):
16 * lksctp developers <linux-sctp@vger.kernel.org>
17 *
18 * Written or modified by:
19 * La Monte H.P. Yarroll <piggy@acm.org>
20 * Karl Knutson <karl@athena.chicago.il.us>
21 * C. Robin <chris@hundredacre.ac.uk>
22 * Jon Grimm <jgrimm@us.ibm.com>
23 * Xingang Guo <xingang.guo@intel.com>
24 * Dajiang Zhang <dajiang.zhang@nokia.com>
25 * Sridhar Samudrala <sri@us.ibm.com>
26 * Daisy Chang <daisyc@us.ibm.com>
27 * Ardelle Fan <ardelle.fan@intel.com>
28 * Kevin Gao <kevin.gao@intel.com>
29 */
30
31 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
32
33 #include <crypto/hash.h>
34 #include <linux/types.h>
35 #include <linux/kernel.h>
36 #include <linux/ip.h>
37 #include <linux/ipv6.h>
38 #include <linux/net.h>
39 #include <linux/inet.h>
40 #include <linux/scatterlist.h>
41 #include <linux/slab.h>
42 #include <net/sock.h>
43
44 #include <linux/skbuff.h>
45 #include <linux/random.h> /* for get_random_bytes */
46 #include <net/sctp/sctp.h>
47 #include <net/sctp/sm.h>
48
49 static struct sctp_chunk *sctp_make_control(const struct sctp_association *asoc,
50 __u8 type, __u8 flags, int paylen,
51 gfp_t gfp);
52 static struct sctp_chunk *sctp_make_data(const struct sctp_association *asoc,
53 __u8 flags, int paylen, gfp_t gfp);
54 static struct sctp_chunk *_sctp_make_chunk(const struct sctp_association *asoc,
55 __u8 type, __u8 flags, int paylen,
56 gfp_t gfp);
57 static struct sctp_cookie_param *sctp_pack_cookie(
58 const struct sctp_endpoint *ep,
59 const struct sctp_association *asoc,
60 const struct sctp_chunk *init_chunk,
61 int *cookie_len,
62 const __u8 *raw_addrs, int addrs_len);
63 static int sctp_process_param(struct sctp_association *asoc,
64 union sctp_params param,
65 const union sctp_addr *peer_addr,
66 gfp_t gfp);
67 static void *sctp_addto_param(struct sctp_chunk *chunk, int len,
68 const void *data);
69
70 /* Control chunk destructor */
sctp_control_release_owner(struct sk_buff * skb)71 static void sctp_control_release_owner(struct sk_buff *skb)
72 {
73 struct sctp_chunk *chunk = skb_shinfo(skb)->destructor_arg;
74
75 if (chunk->shkey) {
76 struct sctp_shared_key *shkey = chunk->shkey;
77 struct sctp_association *asoc = chunk->asoc;
78
79 /* refcnt == 2 and !list_empty mean after this release, it's
80 * not being used anywhere, and it's time to notify userland
81 * that this shkey can be freed if it's been deactivated.
82 */
83 if (shkey->deactivated && !list_empty(&shkey->key_list) &&
84 refcount_read(&shkey->refcnt) == 2) {
85 struct sctp_ulpevent *ev;
86
87 ev = sctp_ulpevent_make_authkey(asoc, shkey->key_id,
88 SCTP_AUTH_FREE_KEY,
89 GFP_KERNEL);
90 if (ev)
91 asoc->stream.si->enqueue_event(&asoc->ulpq, ev);
92 }
93 sctp_auth_shkey_release(chunk->shkey);
94 }
95 }
96
sctp_control_set_owner_w(struct sctp_chunk * chunk)97 static void sctp_control_set_owner_w(struct sctp_chunk *chunk)
98 {
99 struct sctp_association *asoc = chunk->asoc;
100 struct sk_buff *skb = chunk->skb;
101
102 /* TODO: properly account for control chunks.
103 * To do it right we'll need:
104 * 1) endpoint if association isn't known.
105 * 2) proper memory accounting.
106 *
107 * For now don't do anything for now.
108 */
109 if (chunk->auth) {
110 chunk->shkey = asoc->shkey;
111 sctp_auth_shkey_hold(chunk->shkey);
112 }
113 skb->sk = asoc ? asoc->base.sk : NULL;
114 skb_shinfo(skb)->destructor_arg = chunk;
115 skb->destructor = sctp_control_release_owner;
116 }
117
118 /* RFC 2960 3.3.2 Initiation (INIT) (1)
119 *
120 * Note 2: The ECN capable field is reserved for future use of
121 * Explicit Congestion Notification.
122 */
123 static const struct sctp_paramhdr ecap_param = {
124 SCTP_PARAM_ECN_CAPABLE,
125 cpu_to_be16(sizeof(struct sctp_paramhdr)),
126 };
127 static const struct sctp_paramhdr prsctp_param = {
128 SCTP_PARAM_FWD_TSN_SUPPORT,
129 cpu_to_be16(sizeof(struct sctp_paramhdr)),
130 };
131
132 /* A helper to initialize an op error inside a provided chunk, as most
133 * cause codes will be embedded inside an abort chunk.
134 */
sctp_init_cause(struct sctp_chunk * chunk,__be16 cause_code,size_t paylen)135 int sctp_init_cause(struct sctp_chunk *chunk, __be16 cause_code,
136 size_t paylen)
137 {
138 struct sctp_errhdr err;
139 __u16 len;
140
141 /* Cause code constants are now defined in network order. */
142 err.cause = cause_code;
143 len = sizeof(err) + paylen;
144 err.length = htons(len);
145
146 if (skb_tailroom(chunk->skb) < len)
147 return -ENOSPC;
148
149 chunk->subh.err_hdr = sctp_addto_chunk(chunk, sizeof(err), &err);
150
151 return 0;
152 }
153
154 /* 3.3.2 Initiation (INIT) (1)
155 *
156 * This chunk is used to initiate a SCTP association between two
157 * endpoints. The format of the INIT chunk is shown below:
158 *
159 * 0 1 2 3
160 * 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
161 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
162 * | Type = 1 | Chunk Flags | Chunk Length |
163 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
164 * | Initiate Tag |
165 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
166 * | Advertised Receiver Window Credit (a_rwnd) |
167 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
168 * | Number of Outbound Streams | Number of Inbound Streams |
169 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
170 * | Initial TSN |
171 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
172 * \ \
173 * / Optional/Variable-Length Parameters /
174 * \ \
175 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
176 *
177 *
178 * The INIT chunk contains the following parameters. Unless otherwise
179 * noted, each parameter MUST only be included once in the INIT chunk.
180 *
181 * Fixed Parameters Status
182 * ----------------------------------------------
183 * Initiate Tag Mandatory
184 * Advertised Receiver Window Credit Mandatory
185 * Number of Outbound Streams Mandatory
186 * Number of Inbound Streams Mandatory
187 * Initial TSN Mandatory
188 *
189 * Variable Parameters Status Type Value
190 * -------------------------------------------------------------
191 * IPv4 Address (Note 1) Optional 5
192 * IPv6 Address (Note 1) Optional 6
193 * Cookie Preservative Optional 9
194 * Reserved for ECN Capable (Note 2) Optional 32768 (0x8000)
195 * Host Name Address (Note 3) Optional 11
196 * Supported Address Types (Note 4) Optional 12
197 */
sctp_make_init(const struct sctp_association * asoc,const struct sctp_bind_addr * bp,gfp_t gfp,int vparam_len)198 struct sctp_chunk *sctp_make_init(const struct sctp_association *asoc,
199 const struct sctp_bind_addr *bp,
200 gfp_t gfp, int vparam_len)
201 {
202 struct sctp_supported_ext_param ext_param;
203 struct sctp_adaptation_ind_param aiparam;
204 struct sctp_paramhdr *auth_chunks = NULL;
205 struct sctp_paramhdr *auth_hmacs = NULL;
206 struct sctp_supported_addrs_param sat;
207 struct sctp_endpoint *ep = asoc->ep;
208 struct sctp_chunk *retval = NULL;
209 int num_types, addrs_len = 0;
210 struct sctp_inithdr init;
211 union sctp_params addrs;
212 struct sctp_sock *sp;
213 __u8 extensions[5];
214 size_t chunksize;
215 __be16 types[2];
216 int num_ext = 0;
217
218 /* RFC 2960 3.3.2 Initiation (INIT) (1)
219 *
220 * Note 1: The INIT chunks can contain multiple addresses that
221 * can be IPv4 and/or IPv6 in any combination.
222 */
223
224 /* Convert the provided bind address list to raw format. */
225 addrs = sctp_bind_addrs_to_raw(bp, &addrs_len, gfp);
226
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
233 /* How many address types are needed? */
234 sp = sctp_sk(asoc->base.sk);
235 num_types = sp->pf->supported_addrs(sp, types);
236
237 chunksize = sizeof(init) + addrs_len;
238 chunksize += SCTP_PAD4(SCTP_SAT_LEN(num_types));
239
240 if (asoc->ep->ecn_enable)
241 chunksize += sizeof(ecap_param);
242
243 if (asoc->ep->prsctp_enable)
244 chunksize += sizeof(prsctp_param);
245
246 /* ADDIP: Section 4.2.7:
247 * An implementation supporting this extension [ADDIP] MUST list
248 * the ASCONF,the ASCONF-ACK, and the AUTH chunks in its INIT and
249 * INIT-ACK parameters.
250 */
251 if (asoc->ep->asconf_enable) {
252 extensions[num_ext] = SCTP_CID_ASCONF;
253 extensions[num_ext+1] = SCTP_CID_ASCONF_ACK;
254 num_ext += 2;
255 }
256
257 if (asoc->ep->reconf_enable) {
258 extensions[num_ext] = SCTP_CID_RECONF;
259 num_ext += 1;
260 }
261
262 if (sp->adaptation_ind)
263 chunksize += sizeof(aiparam);
264
265 if (asoc->ep->intl_enable) {
266 extensions[num_ext] = SCTP_CID_I_DATA;
267 num_ext += 1;
268 }
269
270 chunksize += vparam_len;
271
272 /* Account for AUTH related parameters */
273 if (ep->auth_enable) {
274 /* Add random parameter length*/
275 chunksize += sizeof(asoc->c.auth_random);
276
277 /* Add HMACS parameter length if any were defined */
278 auth_hmacs = (struct sctp_paramhdr *)asoc->c.auth_hmacs;
279 if (auth_hmacs->length)
280 chunksize += SCTP_PAD4(ntohs(auth_hmacs->length));
281 else
282 auth_hmacs = NULL;
283
284 /* Add CHUNKS parameter length */
285 auth_chunks = (struct sctp_paramhdr *)asoc->c.auth_chunks;
286 if (auth_chunks->length)
287 chunksize += SCTP_PAD4(ntohs(auth_chunks->length));
288 else
289 auth_chunks = NULL;
290
291 extensions[num_ext] = SCTP_CID_AUTH;
292 num_ext += 1;
293 }
294
295 /* If we have any extensions to report, account for that */
296 if (num_ext)
297 chunksize += SCTP_PAD4(sizeof(ext_param) + num_ext);
298
299 /* RFC 2960 3.3.2 Initiation (INIT) (1)
300 *
301 * Note 3: An INIT chunk MUST NOT contain more than one Host
302 * Name address parameter. Moreover, the sender of the INIT
303 * MUST NOT combine any other address types with the Host Name
304 * address in the INIT. The receiver of INIT MUST ignore any
305 * other address types if the Host Name address parameter is
306 * present in the received INIT chunk.
307 *
308 * PLEASE DO NOT FIXME [This version does not support Host Name.]
309 */
310
311 retval = sctp_make_control(asoc, SCTP_CID_INIT, 0, chunksize, gfp);
312 if (!retval)
313 goto nodata;
314
315 retval->subh.init_hdr =
316 sctp_addto_chunk(retval, sizeof(init), &init);
317 retval->param_hdr.v =
318 sctp_addto_chunk(retval, addrs_len, addrs.v);
319
320 /* RFC 2960 3.3.2 Initiation (INIT) (1)
321 *
322 * Note 4: This parameter, when present, specifies all the
323 * address types the sending endpoint can support. The absence
324 * of this parameter indicates that the sending endpoint can
325 * support any address type.
326 */
327 sat.param_hdr.type = SCTP_PARAM_SUPPORTED_ADDRESS_TYPES;
328 sat.param_hdr.length = htons(SCTP_SAT_LEN(num_types));
329 sctp_addto_chunk(retval, sizeof(sat), &sat);
330 sctp_addto_chunk(retval, num_types * sizeof(__u16), &types);
331
332 if (asoc->ep->ecn_enable)
333 sctp_addto_chunk(retval, sizeof(ecap_param), &ecap_param);
334
335 /* Add the supported extensions parameter. Be nice and add this
336 * fist before addiding the parameters for the extensions themselves
337 */
338 if (num_ext) {
339 ext_param.param_hdr.type = SCTP_PARAM_SUPPORTED_EXT;
340 ext_param.param_hdr.length = htons(sizeof(ext_param) + num_ext);
341 sctp_addto_chunk(retval, sizeof(ext_param), &ext_param);
342 sctp_addto_param(retval, num_ext, extensions);
343 }
344
345 if (asoc->ep->prsctp_enable)
346 sctp_addto_chunk(retval, sizeof(prsctp_param), &prsctp_param);
347
348 if (sp->adaptation_ind) {
349 aiparam.param_hdr.type = SCTP_PARAM_ADAPTATION_LAYER_IND;
350 aiparam.param_hdr.length = htons(sizeof(aiparam));
351 aiparam.adaptation_ind = htonl(sp->adaptation_ind);
352 sctp_addto_chunk(retval, sizeof(aiparam), &aiparam);
353 }
354
355 /* Add SCTP-AUTH chunks to the parameter list */
356 if (ep->auth_enable) {
357 sctp_addto_chunk(retval, sizeof(asoc->c.auth_random),
358 asoc->c.auth_random);
359 if (auth_hmacs)
360 sctp_addto_chunk(retval, ntohs(auth_hmacs->length),
361 auth_hmacs);
362 if (auth_chunks)
363 sctp_addto_chunk(retval, ntohs(auth_chunks->length),
364 auth_chunks);
365 }
366 nodata:
367 kfree(addrs.v);
368 return retval;
369 }
370
sctp_make_init_ack(const struct sctp_association * asoc,const struct sctp_chunk * chunk,gfp_t gfp,int unkparam_len)371 struct sctp_chunk *sctp_make_init_ack(const struct sctp_association *asoc,
372 const struct sctp_chunk *chunk,
373 gfp_t gfp, int unkparam_len)
374 {
375 struct sctp_supported_ext_param ext_param;
376 struct sctp_adaptation_ind_param aiparam;
377 struct sctp_paramhdr *auth_chunks = NULL;
378 struct sctp_paramhdr *auth_random = NULL;
379 struct sctp_paramhdr *auth_hmacs = NULL;
380 struct sctp_chunk *retval = NULL;
381 struct sctp_cookie_param *cookie;
382 struct sctp_inithdr initack;
383 union sctp_params addrs;
384 struct sctp_sock *sp;
385 __u8 extensions[5];
386 size_t chunksize;
387 int num_ext = 0;
388 int cookie_len;
389 int addrs_len;
390
391 /* Note: there may be no addresses to embed. */
392 addrs = sctp_bind_addrs_to_raw(&asoc->base.bind_addr, &addrs_len, gfp);
393
394 initack.init_tag = htonl(asoc->c.my_vtag);
395 initack.a_rwnd = htonl(asoc->rwnd);
396 initack.num_outbound_streams = htons(asoc->c.sinit_num_ostreams);
397 initack.num_inbound_streams = htons(asoc->c.sinit_max_instreams);
398 initack.initial_tsn = htonl(asoc->c.initial_tsn);
399
400 /* FIXME: We really ought to build the cookie right
401 * into the packet instead of allocating more fresh memory.
402 */
403 cookie = sctp_pack_cookie(asoc->ep, asoc, chunk, &cookie_len,
404 addrs.v, addrs_len);
405 if (!cookie)
406 goto nomem_cookie;
407
408 /* Calculate the total size of allocation, include the reserved
409 * space for reporting unknown parameters if it is specified.
410 */
411 sp = sctp_sk(asoc->base.sk);
412 chunksize = sizeof(initack) + addrs_len + cookie_len + unkparam_len;
413
414 /* Tell peer that we'll do ECN only if peer advertised such cap. */
415 if (asoc->peer.ecn_capable)
416 chunksize += sizeof(ecap_param);
417
418 if (asoc->peer.prsctp_capable)
419 chunksize += sizeof(prsctp_param);
420
421 if (asoc->peer.asconf_capable) {
422 extensions[num_ext] = SCTP_CID_ASCONF;
423 extensions[num_ext+1] = SCTP_CID_ASCONF_ACK;
424 num_ext += 2;
425 }
426
427 if (asoc->peer.reconf_capable) {
428 extensions[num_ext] = SCTP_CID_RECONF;
429 num_ext += 1;
430 }
431
432 if (sp->adaptation_ind)
433 chunksize += sizeof(aiparam);
434
435 if (asoc->peer.intl_capable) {
436 extensions[num_ext] = SCTP_CID_I_DATA;
437 num_ext += 1;
438 }
439
440 if (asoc->peer.auth_capable) {
441 auth_random = (struct sctp_paramhdr *)asoc->c.auth_random;
442 chunksize += ntohs(auth_random->length);
443
444 auth_hmacs = (struct sctp_paramhdr *)asoc->c.auth_hmacs;
445 if (auth_hmacs->length)
446 chunksize += SCTP_PAD4(ntohs(auth_hmacs->length));
447 else
448 auth_hmacs = NULL;
449
450 auth_chunks = (struct sctp_paramhdr *)asoc->c.auth_chunks;
451 if (auth_chunks->length)
452 chunksize += SCTP_PAD4(ntohs(auth_chunks->length));
453 else
454 auth_chunks = NULL;
455
456 extensions[num_ext] = SCTP_CID_AUTH;
457 num_ext += 1;
458 }
459
460 if (num_ext)
461 chunksize += SCTP_PAD4(sizeof(ext_param) + num_ext);
462
463 /* Now allocate and fill out the chunk. */
464 retval = sctp_make_control(asoc, SCTP_CID_INIT_ACK, 0, chunksize, gfp);
465 if (!retval)
466 goto nomem_chunk;
467
468 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
469 *
470 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
471 * HEARTBEAT ACK, * etc.) to the same destination transport
472 * address from which it received the DATA or control chunk
473 * to which it is replying.
474 *
475 * [INIT ACK back to where the INIT came from.]
476 */
477 if (chunk->transport)
478 retval->transport =
479 sctp_assoc_lookup_paddr(asoc,
480 &chunk->transport->ipaddr);
481
482 retval->subh.init_hdr =
483 sctp_addto_chunk(retval, sizeof(initack), &initack);
484 retval->param_hdr.v = sctp_addto_chunk(retval, addrs_len, addrs.v);
485 sctp_addto_chunk(retval, cookie_len, cookie);
486 if (asoc->peer.ecn_capable)
487 sctp_addto_chunk(retval, sizeof(ecap_param), &ecap_param);
488 if (num_ext) {
489 ext_param.param_hdr.type = SCTP_PARAM_SUPPORTED_EXT;
490 ext_param.param_hdr.length = htons(sizeof(ext_param) + num_ext);
491 sctp_addto_chunk(retval, sizeof(ext_param), &ext_param);
492 sctp_addto_param(retval, num_ext, extensions);
493 }
494 if (asoc->peer.prsctp_capable)
495 sctp_addto_chunk(retval, sizeof(prsctp_param), &prsctp_param);
496
497 if (sp->adaptation_ind) {
498 aiparam.param_hdr.type = SCTP_PARAM_ADAPTATION_LAYER_IND;
499 aiparam.param_hdr.length = htons(sizeof(aiparam));
500 aiparam.adaptation_ind = htonl(sp->adaptation_ind);
501 sctp_addto_chunk(retval, sizeof(aiparam), &aiparam);
502 }
503
504 if (asoc->peer.auth_capable) {
505 sctp_addto_chunk(retval, ntohs(auth_random->length),
506 auth_random);
507 if (auth_hmacs)
508 sctp_addto_chunk(retval, ntohs(auth_hmacs->length),
509 auth_hmacs);
510 if (auth_chunks)
511 sctp_addto_chunk(retval, ntohs(auth_chunks->length),
512 auth_chunks);
513 }
514
515 /* We need to remove the const qualifier at this point. */
516 retval->asoc = (struct sctp_association *) asoc;
517
518 nomem_chunk:
519 kfree(cookie);
520 nomem_cookie:
521 kfree(addrs.v);
522 return retval;
523 }
524
525 /* 3.3.11 Cookie Echo (COOKIE ECHO) (10):
526 *
527 * This chunk is used only during the initialization of an association.
528 * It is sent by the initiator of an association to its peer to complete
529 * the initialization process. This chunk MUST precede any DATA chunk
530 * sent within the association, but MAY be bundled with one or more DATA
531 * chunks in the same packet.
532 *
533 * 0 1 2 3
534 * 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
535 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
536 * | Type = 10 |Chunk Flags | Length |
537 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
538 * / Cookie /
539 * \ \
540 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
541 *
542 * Chunk Flags: 8 bit
543 *
544 * Set to zero on transmit and ignored on receipt.
545 *
546 * Length: 16 bits (unsigned integer)
547 *
548 * Set to the size of the chunk in bytes, including the 4 bytes of
549 * the chunk header and the size of the Cookie.
550 *
551 * Cookie: variable size
552 *
553 * This field must contain the exact cookie received in the
554 * State Cookie parameter from the previous INIT ACK.
555 *
556 * An implementation SHOULD make the cookie as small as possible
557 * to insure interoperability.
558 */
sctp_make_cookie_echo(const struct sctp_association * asoc,const struct sctp_chunk * chunk)559 struct sctp_chunk *sctp_make_cookie_echo(const struct sctp_association *asoc,
560 const struct sctp_chunk *chunk)
561 {
562 struct sctp_chunk *retval;
563 int cookie_len;
564 void *cookie;
565
566 cookie = asoc->peer.cookie;
567 cookie_len = asoc->peer.cookie_len;
568
569 /* Build a cookie echo chunk. */
570 retval = sctp_make_control(asoc, SCTP_CID_COOKIE_ECHO, 0,
571 cookie_len, GFP_ATOMIC);
572 if (!retval)
573 goto nodata;
574 retval->subh.cookie_hdr =
575 sctp_addto_chunk(retval, cookie_len, cookie);
576
577 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
578 *
579 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
580 * HEARTBEAT ACK, * etc.) to the same destination transport
581 * address from which it * received the DATA or control chunk
582 * to which it is replying.
583 *
584 * [COOKIE ECHO back to where the INIT ACK came from.]
585 */
586 if (chunk)
587 retval->transport = chunk->transport;
588
589 nodata:
590 return retval;
591 }
592
593 /* 3.3.12 Cookie Acknowledgement (COOKIE ACK) (11):
594 *
595 * This chunk is used only during the initialization of an
596 * association. It is used to acknowledge the receipt of a COOKIE
597 * ECHO chunk. This chunk MUST precede any DATA or SACK chunk sent
598 * within the association, but MAY be bundled with one or more DATA
599 * chunks or SACK chunk in the same SCTP packet.
600 *
601 * 0 1 2 3
602 * 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
603 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
604 * | Type = 11 |Chunk Flags | Length = 4 |
605 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
606 *
607 * Chunk Flags: 8 bits
608 *
609 * Set to zero on transmit and ignored on receipt.
610 */
sctp_make_cookie_ack(const struct sctp_association * asoc,const struct sctp_chunk * chunk)611 struct sctp_chunk *sctp_make_cookie_ack(const struct sctp_association *asoc,
612 const struct sctp_chunk *chunk)
613 {
614 struct sctp_chunk *retval;
615
616 retval = sctp_make_control(asoc, SCTP_CID_COOKIE_ACK, 0, 0, GFP_ATOMIC);
617
618 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
619 *
620 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
621 * HEARTBEAT ACK, * etc.) to the same destination transport
622 * address from which it * received the DATA or control chunk
623 * to which it is replying.
624 *
625 * [COOKIE ACK back to where the COOKIE ECHO came from.]
626 */
627 if (retval && chunk && chunk->transport)
628 retval->transport =
629 sctp_assoc_lookup_paddr(asoc,
630 &chunk->transport->ipaddr);
631
632 return retval;
633 }
634
635 /*
636 * Appendix A: Explicit Congestion Notification:
637 * CWR:
638 *
639 * RFC 2481 details a specific bit for a sender to send in the header of
640 * its next outbound TCP segment to indicate to its peer that it has
641 * reduced its congestion window. This is termed the CWR bit. For
642 * SCTP the same indication is made by including the CWR chunk.
643 * This chunk contains one data element, i.e. the TSN number that
644 * was sent in the ECNE chunk. This element represents the lowest
645 * TSN number in the datagram that was originally marked with the
646 * CE bit.
647 *
648 * 0 1 2 3
649 * 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
650 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
651 * | Chunk Type=13 | Flags=00000000| Chunk Length = 8 |
652 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
653 * | Lowest TSN Number |
654 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
655 *
656 * Note: The CWR is considered a Control chunk.
657 */
sctp_make_cwr(const struct sctp_association * asoc,const __u32 lowest_tsn,const struct sctp_chunk * chunk)658 struct sctp_chunk *sctp_make_cwr(const struct sctp_association *asoc,
659 const __u32 lowest_tsn,
660 const struct sctp_chunk *chunk)
661 {
662 struct sctp_chunk *retval;
663 struct sctp_cwrhdr cwr;
664
665 cwr.lowest_tsn = htonl(lowest_tsn);
666 retval = sctp_make_control(asoc, SCTP_CID_ECN_CWR, 0,
667 sizeof(cwr), GFP_ATOMIC);
668
669 if (!retval)
670 goto nodata;
671
672 retval->subh.ecn_cwr_hdr =
673 sctp_addto_chunk(retval, sizeof(cwr), &cwr);
674
675 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
676 *
677 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
678 * HEARTBEAT ACK, * etc.) to the same destination transport
679 * address from which it * received the DATA or control chunk
680 * to which it is replying.
681 *
682 * [Report a reduced congestion window back to where the ECNE
683 * came from.]
684 */
685 if (chunk)
686 retval->transport = chunk->transport;
687
688 nodata:
689 return retval;
690 }
691
692 /* Make an ECNE chunk. This is a congestion experienced report. */
sctp_make_ecne(const struct sctp_association * asoc,const __u32 lowest_tsn)693 struct sctp_chunk *sctp_make_ecne(const struct sctp_association *asoc,
694 const __u32 lowest_tsn)
695 {
696 struct sctp_chunk *retval;
697 struct sctp_ecnehdr ecne;
698
699 ecne.lowest_tsn = htonl(lowest_tsn);
700 retval = sctp_make_control(asoc, SCTP_CID_ECN_ECNE, 0,
701 sizeof(ecne), GFP_ATOMIC);
702 if (!retval)
703 goto nodata;
704 retval->subh.ecne_hdr =
705 sctp_addto_chunk(retval, sizeof(ecne), &ecne);
706
707 nodata:
708 return retval;
709 }
710
711 /* Make a DATA chunk for the given association from the provided
712 * parameters. However, do not populate the data payload.
713 */
sctp_make_datafrag_empty(const struct sctp_association * asoc,const struct sctp_sndrcvinfo * sinfo,int len,__u8 flags,gfp_t gfp)714 struct sctp_chunk *sctp_make_datafrag_empty(const struct sctp_association *asoc,
715 const struct sctp_sndrcvinfo *sinfo,
716 int len, __u8 flags, gfp_t gfp)
717 {
718 struct sctp_chunk *retval;
719 struct sctp_datahdr dp;
720
721 /* We assign the TSN as LATE as possible, not here when
722 * creating the chunk.
723 */
724 memset(&dp, 0, sizeof(dp));
725 dp.ppid = sinfo->sinfo_ppid;
726 dp.stream = htons(sinfo->sinfo_stream);
727
728 /* Set the flags for an unordered send. */
729 if (sinfo->sinfo_flags & SCTP_UNORDERED)
730 flags |= SCTP_DATA_UNORDERED;
731
732 retval = sctp_make_data(asoc, flags, sizeof(dp) + len, gfp);
733 if (!retval)
734 return NULL;
735
736 retval->subh.data_hdr = sctp_addto_chunk(retval, sizeof(dp), &dp);
737 memcpy(&retval->sinfo, sinfo, sizeof(struct sctp_sndrcvinfo));
738
739 return retval;
740 }
741
742 /* Create a selective ackowledgement (SACK) for the given
743 * association. This reports on which TSN's we've seen to date,
744 * including duplicates and gaps.
745 */
sctp_make_sack(struct sctp_association * asoc)746 struct sctp_chunk *sctp_make_sack(struct sctp_association *asoc)
747 {
748 struct sctp_tsnmap *map = (struct sctp_tsnmap *)&asoc->peer.tsn_map;
749 struct sctp_gap_ack_block gabs[SCTP_MAX_GABS];
750 __u16 num_gabs, num_dup_tsns;
751 struct sctp_transport *trans;
752 struct sctp_chunk *retval;
753 struct sctp_sackhdr sack;
754 __u32 ctsn;
755 int len;
756
757 memset(gabs, 0, sizeof(gabs));
758 ctsn = sctp_tsnmap_get_ctsn(map);
759
760 pr_debug("%s: sackCTSNAck sent:0x%x\n", __func__, ctsn);
761
762 /* How much room is needed in the chunk? */
763 num_gabs = sctp_tsnmap_num_gabs(map, gabs);
764 num_dup_tsns = sctp_tsnmap_num_dups(map);
765
766 /* Initialize the SACK header. */
767 sack.cum_tsn_ack = htonl(ctsn);
768 sack.a_rwnd = htonl(asoc->a_rwnd);
769 sack.num_gap_ack_blocks = htons(num_gabs);
770 sack.num_dup_tsns = htons(num_dup_tsns);
771
772 len = sizeof(sack)
773 + sizeof(struct sctp_gap_ack_block) * num_gabs
774 + sizeof(__u32) * num_dup_tsns;
775
776 /* Create the chunk. */
777 retval = sctp_make_control(asoc, SCTP_CID_SACK, 0, len, GFP_ATOMIC);
778 if (!retval)
779 goto nodata;
780
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 to
786 * which it is replying. This rule should also be followed if
787 * the endpoint is bundling DATA chunks together with the
788 * reply chunk.
789 *
790 * However, when acknowledging multiple DATA chunks received
791 * in packets from different source addresses in a single
792 * SACK, the SACK chunk may be transmitted to one of the
793 * destination transport addresses from which the DATA or
794 * control chunks being acknowledged were received.
795 *
796 * [BUG: We do not implement the following paragraph.
797 * Perhaps we should remember the last transport we used for a
798 * SACK and avoid that (if possible) if we have seen any
799 * duplicates. --piggy]
800 *
801 * When a receiver of a duplicate DATA chunk sends a SACK to a
802 * multi- homed endpoint it MAY be beneficial to vary the
803 * destination address and not use the source address of the
804 * DATA chunk. The reason being that receiving a duplicate
805 * from a multi-homed endpoint might indicate that the return
806 * path (as specified in the source address of the DATA chunk)
807 * for the SACK is broken.
808 *
809 * [Send to the address from which we last received a DATA chunk.]
810 */
811 retval->transport = asoc->peer.last_data_from;
812
813 retval->subh.sack_hdr =
814 sctp_addto_chunk(retval, sizeof(sack), &sack);
815
816 /* Add the gap ack block information. */
817 if (num_gabs)
818 sctp_addto_chunk(retval, sizeof(__u32) * num_gabs,
819 gabs);
820
821 /* Add the duplicate TSN information. */
822 if (num_dup_tsns) {
823 asoc->stats.idupchunks += num_dup_tsns;
824 sctp_addto_chunk(retval, sizeof(__u32) * num_dup_tsns,
825 sctp_tsnmap_get_dups(map));
826 }
827 /* Once we have a sack generated, check to see what our sack
828 * generation is, if its 0, reset the transports to 0, and reset
829 * the association generation to 1
830 *
831 * The idea is that zero is never used as a valid generation for the
832 * association so no transport will match after a wrap event like this,
833 * Until the next sack
834 */
835 if (++asoc->peer.sack_generation == 0) {
836 list_for_each_entry(trans, &asoc->peer.transport_addr_list,
837 transports)
838 trans->sack_generation = 0;
839 asoc->peer.sack_generation = 1;
840 }
841 nodata:
842 return retval;
843 }
844
845 /* Make a SHUTDOWN chunk. */
sctp_make_shutdown(const struct sctp_association * asoc,const struct sctp_chunk * chunk)846 struct sctp_chunk *sctp_make_shutdown(const struct sctp_association *asoc,
847 const struct sctp_chunk *chunk)
848 {
849 struct sctp_shutdownhdr shut;
850 struct sctp_chunk *retval;
851 __u32 ctsn;
852
853 ctsn = sctp_tsnmap_get_ctsn(&asoc->peer.tsn_map);
854 shut.cum_tsn_ack = htonl(ctsn);
855
856 retval = sctp_make_control(asoc, SCTP_CID_SHUTDOWN, 0,
857 sizeof(shut), GFP_ATOMIC);
858 if (!retval)
859 goto nodata;
860
861 retval->subh.shutdown_hdr =
862 sctp_addto_chunk(retval, sizeof(shut), &shut);
863
864 if (chunk)
865 retval->transport = chunk->transport;
866 nodata:
867 return retval;
868 }
869
sctp_make_shutdown_ack(const struct sctp_association * asoc,const struct sctp_chunk * chunk)870 struct sctp_chunk *sctp_make_shutdown_ack(const struct sctp_association *asoc,
871 const struct sctp_chunk *chunk)
872 {
873 struct sctp_chunk *retval;
874
875 retval = sctp_make_control(asoc, SCTP_CID_SHUTDOWN_ACK, 0, 0,
876 GFP_ATOMIC);
877
878 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
879 *
880 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
881 * HEARTBEAT ACK, * etc.) to the same destination transport
882 * address from which it * received the DATA or control chunk
883 * to which it is replying.
884 *
885 * [ACK back to where the SHUTDOWN came from.]
886 */
887 if (retval && chunk)
888 retval->transport = chunk->transport;
889
890 return retval;
891 }
892
sctp_make_shutdown_complete(const struct sctp_association * asoc,const struct sctp_chunk * chunk)893 struct sctp_chunk *sctp_make_shutdown_complete(
894 const struct sctp_association *asoc,
895 const struct sctp_chunk *chunk)
896 {
897 struct sctp_chunk *retval;
898 __u8 flags = 0;
899
900 /* Set the T-bit if we have no association (vtag will be
901 * reflected)
902 */
903 flags |= asoc ? 0 : SCTP_CHUNK_FLAG_T;
904
905 retval = sctp_make_control(asoc, SCTP_CID_SHUTDOWN_COMPLETE, flags,
906 0, GFP_ATOMIC);
907
908 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
909 *
910 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
911 * HEARTBEAT ACK, * etc.) to the same destination transport
912 * address from which it * received the DATA or control chunk
913 * to which it is replying.
914 *
915 * [Report SHUTDOWN COMPLETE back to where the SHUTDOWN ACK
916 * came from.]
917 */
918 if (retval && chunk)
919 retval->transport = chunk->transport;
920
921 return retval;
922 }
923
924 /* Create an ABORT. Note that we set the T bit if we have no
925 * association, except when responding to an INIT (sctpimpguide 2.41).
926 */
sctp_make_abort(const struct sctp_association * asoc,const struct sctp_chunk * chunk,const size_t hint)927 struct sctp_chunk *sctp_make_abort(const struct sctp_association *asoc,
928 const struct sctp_chunk *chunk,
929 const size_t hint)
930 {
931 struct sctp_chunk *retval;
932 __u8 flags = 0;
933
934 /* Set the T-bit if we have no association and 'chunk' is not
935 * an INIT (vtag will be reflected).
936 */
937 if (!asoc) {
938 if (chunk && chunk->chunk_hdr &&
939 chunk->chunk_hdr->type == SCTP_CID_INIT)
940 flags = 0;
941 else
942 flags = SCTP_CHUNK_FLAG_T;
943 }
944
945 retval = sctp_make_control(asoc, SCTP_CID_ABORT, flags, hint,
946 GFP_ATOMIC);
947
948 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
949 *
950 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
951 * HEARTBEAT ACK, * etc.) to the same destination transport
952 * address from which it * received the DATA or control chunk
953 * to which it is replying.
954 *
955 * [ABORT back to where the offender came from.]
956 */
957 if (retval && chunk)
958 retval->transport = chunk->transport;
959
960 return retval;
961 }
962
963 /* Helper to create ABORT with a NO_USER_DATA error. */
sctp_make_abort_no_data(const struct sctp_association * asoc,const struct sctp_chunk * chunk,__u32 tsn)964 struct sctp_chunk *sctp_make_abort_no_data(
965 const struct sctp_association *asoc,
966 const struct sctp_chunk *chunk,
967 __u32 tsn)
968 {
969 struct sctp_chunk *retval;
970 __be32 payload;
971
972 retval = sctp_make_abort(asoc, chunk,
973 sizeof(struct sctp_errhdr) + sizeof(tsn));
974
975 if (!retval)
976 goto no_mem;
977
978 /* Put the tsn back into network byte order. */
979 payload = htonl(tsn);
980 sctp_init_cause(retval, SCTP_ERROR_NO_DATA, sizeof(payload));
981 sctp_addto_chunk(retval, sizeof(payload), (const void *)&payload);
982
983 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
984 *
985 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
986 * HEARTBEAT ACK, * etc.) to the same destination transport
987 * address from which it * received the DATA or control chunk
988 * to which it is replying.
989 *
990 * [ABORT back to where the offender came from.]
991 */
992 if (chunk)
993 retval->transport = chunk->transport;
994
995 no_mem:
996 return retval;
997 }
998
999 /* Helper to create ABORT with a SCTP_ERROR_USER_ABORT error. */
sctp_make_abort_user(const struct sctp_association * asoc,struct msghdr * msg,size_t paylen)1000 struct sctp_chunk *sctp_make_abort_user(const struct sctp_association *asoc,
1001 struct msghdr *msg,
1002 size_t paylen)
1003 {
1004 struct sctp_chunk *retval;
1005 void *payload = NULL;
1006 int err;
1007
1008 retval = sctp_make_abort(asoc, NULL,
1009 sizeof(struct sctp_errhdr) + paylen);
1010 if (!retval)
1011 goto err_chunk;
1012
1013 if (paylen) {
1014 /* Put the msg_iov together into payload. */
1015 payload = kmalloc(paylen, GFP_KERNEL);
1016 if (!payload)
1017 goto err_payload;
1018
1019 err = memcpy_from_msg(payload, msg, paylen);
1020 if (err < 0)
1021 goto err_copy;
1022 }
1023
1024 sctp_init_cause(retval, SCTP_ERROR_USER_ABORT, paylen);
1025 sctp_addto_chunk(retval, paylen, payload);
1026
1027 if (paylen)
1028 kfree(payload);
1029
1030 return retval;
1031
1032 err_copy:
1033 kfree(payload);
1034 err_payload:
1035 sctp_chunk_free(retval);
1036 retval = NULL;
1037 err_chunk:
1038 return retval;
1039 }
1040
1041 /* Append bytes to the end of a parameter. Will panic if chunk is not big
1042 * enough.
1043 */
sctp_addto_param(struct sctp_chunk * chunk,int len,const void * data)1044 static void *sctp_addto_param(struct sctp_chunk *chunk, int len,
1045 const void *data)
1046 {
1047 int chunklen = ntohs(chunk->chunk_hdr->length);
1048 void *target;
1049
1050 target = skb_put(chunk->skb, len);
1051
1052 if (data)
1053 memcpy(target, data, len);
1054 else
1055 memset(target, 0, len);
1056
1057 /* Adjust the chunk length field. */
1058 chunk->chunk_hdr->length = htons(chunklen + len);
1059 chunk->chunk_end = skb_tail_pointer(chunk->skb);
1060
1061 return target;
1062 }
1063
1064 /* Make an ABORT chunk with a PROTOCOL VIOLATION cause code. */
sctp_make_abort_violation(const struct sctp_association * asoc,const struct sctp_chunk * chunk,const __u8 * payload,const size_t paylen)1065 struct sctp_chunk *sctp_make_abort_violation(
1066 const struct sctp_association *asoc,
1067 const struct sctp_chunk *chunk,
1068 const __u8 *payload,
1069 const size_t paylen)
1070 {
1071 struct sctp_chunk *retval;
1072 struct sctp_paramhdr phdr;
1073
1074 retval = sctp_make_abort(asoc, chunk, sizeof(struct sctp_errhdr) +
1075 paylen + sizeof(phdr));
1076 if (!retval)
1077 goto end;
1078
1079 sctp_init_cause(retval, SCTP_ERROR_PROTO_VIOLATION, paylen +
1080 sizeof(phdr));
1081
1082 phdr.type = htons(chunk->chunk_hdr->type);
1083 phdr.length = chunk->chunk_hdr->length;
1084 sctp_addto_chunk(retval, paylen, payload);
1085 sctp_addto_param(retval, sizeof(phdr), &phdr);
1086
1087 end:
1088 return retval;
1089 }
1090
sctp_make_violation_paramlen(const struct sctp_association * asoc,const struct sctp_chunk * chunk,struct sctp_paramhdr * param)1091 struct sctp_chunk *sctp_make_violation_paramlen(
1092 const struct sctp_association *asoc,
1093 const struct sctp_chunk *chunk,
1094 struct sctp_paramhdr *param)
1095 {
1096 static const char error[] = "The following parameter had invalid length:";
1097 size_t payload_len = sizeof(error) + sizeof(struct sctp_errhdr) +
1098 sizeof(*param);
1099 struct sctp_chunk *retval;
1100
1101 retval = sctp_make_abort(asoc, chunk, payload_len);
1102 if (!retval)
1103 goto nodata;
1104
1105 sctp_init_cause(retval, SCTP_ERROR_PROTO_VIOLATION,
1106 sizeof(error) + sizeof(*param));
1107 sctp_addto_chunk(retval, sizeof(error), error);
1108 sctp_addto_param(retval, sizeof(*param), param);
1109
1110 nodata:
1111 return retval;
1112 }
1113
sctp_make_violation_max_retrans(const struct sctp_association * asoc,const struct sctp_chunk * chunk)1114 struct sctp_chunk *sctp_make_violation_max_retrans(
1115 const struct sctp_association *asoc,
1116 const struct sctp_chunk *chunk)
1117 {
1118 static const char error[] = "Association exceeded its max_retrans count";
1119 size_t payload_len = sizeof(error) + sizeof(struct sctp_errhdr);
1120 struct sctp_chunk *retval;
1121
1122 retval = sctp_make_abort(asoc, chunk, payload_len);
1123 if (!retval)
1124 goto nodata;
1125
1126 sctp_init_cause(retval, SCTP_ERROR_PROTO_VIOLATION, sizeof(error));
1127 sctp_addto_chunk(retval, sizeof(error), error);
1128
1129 nodata:
1130 return retval;
1131 }
1132
sctp_make_new_encap_port(const struct sctp_association * asoc,const struct sctp_chunk * chunk)1133 struct sctp_chunk *sctp_make_new_encap_port(const struct sctp_association *asoc,
1134 const struct sctp_chunk *chunk)
1135 {
1136 struct sctp_new_encap_port_hdr nep;
1137 struct sctp_chunk *retval;
1138
1139 retval = sctp_make_abort(asoc, chunk,
1140 sizeof(struct sctp_errhdr) + sizeof(nep));
1141 if (!retval)
1142 goto nodata;
1143
1144 sctp_init_cause(retval, SCTP_ERROR_NEW_ENCAP_PORT, sizeof(nep));
1145 nep.cur_port = SCTP_INPUT_CB(chunk->skb)->encap_port;
1146 nep.new_port = chunk->transport->encap_port;
1147 sctp_addto_chunk(retval, sizeof(nep), &nep);
1148
1149 nodata:
1150 return retval;
1151 }
1152
1153 /* Make a HEARTBEAT chunk. */
sctp_make_heartbeat(const struct sctp_association * asoc,const struct sctp_transport * transport,__u32 probe_size)1154 struct sctp_chunk *sctp_make_heartbeat(const struct sctp_association *asoc,
1155 const struct sctp_transport *transport,
1156 __u32 probe_size)
1157 {
1158 struct sctp_sender_hb_info hbinfo = {};
1159 struct sctp_chunk *retval;
1160
1161 retval = sctp_make_control(asoc, SCTP_CID_HEARTBEAT, 0,
1162 sizeof(hbinfo), GFP_ATOMIC);
1163
1164 if (!retval)
1165 goto nodata;
1166
1167 hbinfo.param_hdr.type = SCTP_PARAM_HEARTBEAT_INFO;
1168 hbinfo.param_hdr.length = htons(sizeof(hbinfo));
1169 hbinfo.daddr = transport->ipaddr;
1170 hbinfo.sent_at = jiffies;
1171 hbinfo.hb_nonce = transport->hb_nonce;
1172 hbinfo.probe_size = probe_size;
1173
1174 /* Cast away the 'const', as this is just telling the chunk
1175 * what transport it belongs to.
1176 */
1177 retval->transport = (struct sctp_transport *) transport;
1178 retval->subh.hbs_hdr = sctp_addto_chunk(retval, sizeof(hbinfo),
1179 &hbinfo);
1180 retval->pmtu_probe = !!probe_size;
1181
1182 nodata:
1183 return retval;
1184 }
1185
sctp_make_heartbeat_ack(const struct sctp_association * asoc,const struct sctp_chunk * chunk,const void * payload,const size_t paylen)1186 struct sctp_chunk *sctp_make_heartbeat_ack(const struct sctp_association *asoc,
1187 const struct sctp_chunk *chunk,
1188 const void *payload,
1189 const size_t paylen)
1190 {
1191 struct sctp_chunk *retval;
1192
1193 retval = sctp_make_control(asoc, SCTP_CID_HEARTBEAT_ACK, 0, paylen,
1194 GFP_ATOMIC);
1195 if (!retval)
1196 goto nodata;
1197
1198 retval->subh.hbs_hdr = sctp_addto_chunk(retval, paylen, payload);
1199
1200 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
1201 *
1202 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
1203 * HEARTBEAT ACK, * etc.) to the same destination transport
1204 * address from which it * received the DATA or control chunk
1205 * to which it is replying.
1206 *
1207 * [HBACK back to where the HEARTBEAT came from.]
1208 */
1209 if (chunk)
1210 retval->transport = chunk->transport;
1211
1212 nodata:
1213 return retval;
1214 }
1215
1216 /* RFC4820 3. Padding Chunk (PAD)
1217 * 0 1 2 3
1218 * 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
1219 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
1220 * | Type = 0x84 | Flags=0 | Length |
1221 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
1222 * | |
1223 * \ Padding Data /
1224 * / \
1225 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
1226 */
sctp_make_pad(const struct sctp_association * asoc,int len)1227 struct sctp_chunk *sctp_make_pad(const struct sctp_association *asoc, int len)
1228 {
1229 struct sctp_chunk *retval;
1230
1231 retval = sctp_make_control(asoc, SCTP_CID_PAD, 0, len, GFP_ATOMIC);
1232 if (!retval)
1233 return NULL;
1234
1235 skb_put_zero(retval->skb, len);
1236 retval->chunk_hdr->length = htons(ntohs(retval->chunk_hdr->length) + len);
1237 retval->chunk_end = skb_tail_pointer(retval->skb);
1238
1239 return retval;
1240 }
1241
1242 /* Create an Operation Error chunk with the specified space reserved.
1243 * This routine can be used for containing multiple causes in the chunk.
1244 */
sctp_make_op_error_space(const struct sctp_association * asoc,const struct sctp_chunk * chunk,size_t size)1245 static struct sctp_chunk *sctp_make_op_error_space(
1246 const struct sctp_association *asoc,
1247 const struct sctp_chunk *chunk,
1248 size_t size)
1249 {
1250 struct sctp_chunk *retval;
1251
1252 retval = sctp_make_control(asoc, SCTP_CID_ERROR, 0,
1253 sizeof(struct sctp_errhdr) + size,
1254 GFP_ATOMIC);
1255 if (!retval)
1256 goto nodata;
1257
1258 /* RFC 2960 6.4 Multi-homed SCTP Endpoints
1259 *
1260 * An endpoint SHOULD transmit reply chunks (e.g., SACK,
1261 * HEARTBEAT ACK, etc.) to the same destination transport
1262 * address from which it received the DATA or control chunk
1263 * to which it is replying.
1264 *
1265 */
1266 if (chunk)
1267 retval->transport = chunk->transport;
1268
1269 nodata:
1270 return retval;
1271 }
1272
1273 /* Create an Operation Error chunk of a fixed size, specifically,
1274 * min(asoc->pathmtu, SCTP_DEFAULT_MAXSEGMENT) - overheads.
1275 * This is a helper function to allocate an error chunk for those
1276 * invalid parameter codes in which we may not want to report all the
1277 * errors, if the incoming chunk is large. If it can't fit in a single
1278 * packet, we ignore it.
1279 */
sctp_make_op_error_limited(const struct sctp_association * asoc,const struct sctp_chunk * chunk)1280 static inline struct sctp_chunk *sctp_make_op_error_limited(
1281 const struct sctp_association *asoc,
1282 const struct sctp_chunk *chunk)
1283 {
1284 size_t size = SCTP_DEFAULT_MAXSEGMENT;
1285 struct sctp_sock *sp = NULL;
1286
1287 if (asoc) {
1288 size = min_t(size_t, size, asoc->pathmtu);
1289 sp = sctp_sk(asoc->base.sk);
1290 }
1291
1292 size = sctp_mtu_payload(sp, size, sizeof(struct sctp_errhdr));
1293
1294 return sctp_make_op_error_space(asoc, chunk, size);
1295 }
1296
1297 /* Create an Operation Error chunk. */
sctp_make_op_error(const struct sctp_association * asoc,const struct sctp_chunk * chunk,__be16 cause_code,const void * payload,size_t paylen,size_t reserve_tail)1298 struct sctp_chunk *sctp_make_op_error(const struct sctp_association *asoc,
1299 const struct sctp_chunk *chunk,
1300 __be16 cause_code, const void *payload,
1301 size_t paylen, size_t reserve_tail)
1302 {
1303 struct sctp_chunk *retval;
1304
1305 retval = sctp_make_op_error_space(asoc, chunk, paylen + reserve_tail);
1306 if (!retval)
1307 goto nodata;
1308
1309 sctp_init_cause(retval, cause_code, paylen + reserve_tail);
1310 sctp_addto_chunk(retval, paylen, payload);
1311 if (reserve_tail)
1312 sctp_addto_param(retval, reserve_tail, NULL);
1313
1314 nodata:
1315 return retval;
1316 }
1317
sctp_make_auth(const struct sctp_association * asoc,__u16 key_id)1318 struct sctp_chunk *sctp_make_auth(const struct sctp_association *asoc,
1319 __u16 key_id)
1320 {
1321 struct sctp_authhdr auth_hdr;
1322 struct sctp_hmac *hmac_desc;
1323 struct sctp_chunk *retval;
1324
1325 /* Get the first hmac that the peer told us to use */
1326 hmac_desc = sctp_auth_asoc_get_hmac(asoc);
1327 if (unlikely(!hmac_desc))
1328 return NULL;
1329
1330 retval = sctp_make_control(asoc, SCTP_CID_AUTH, 0,
1331 hmac_desc->hmac_len + sizeof(auth_hdr),
1332 GFP_ATOMIC);
1333 if (!retval)
1334 return NULL;
1335
1336 auth_hdr.hmac_id = htons(hmac_desc->hmac_id);
1337 auth_hdr.shkey_id = htons(key_id);
1338
1339 retval->subh.auth_hdr = sctp_addto_chunk(retval, sizeof(auth_hdr),
1340 &auth_hdr);
1341
1342 skb_put_zero(retval->skb, hmac_desc->hmac_len);
1343
1344 /* Adjust the chunk header to include the empty MAC */
1345 retval->chunk_hdr->length =
1346 htons(ntohs(retval->chunk_hdr->length) + hmac_desc->hmac_len);
1347 retval->chunk_end = skb_tail_pointer(retval->skb);
1348
1349 return retval;
1350 }
1351
1352
1353 /********************************************************************
1354 * 2nd Level Abstractions
1355 ********************************************************************/
1356
1357 /* Turn an skb into a chunk.
1358 * FIXME: Eventually move the structure directly inside the skb->cb[].
1359 *
1360 * sctpimpguide-05.txt Section 2.8.2
1361 * M1) Each time a new DATA chunk is transmitted
1362 * set the 'TSN.Missing.Report' count for that TSN to 0. The
1363 * 'TSN.Missing.Report' count will be used to determine missing chunks
1364 * and when to fast retransmit.
1365 *
1366 */
sctp_chunkify(struct sk_buff * skb,const struct sctp_association * asoc,struct sock * sk,gfp_t gfp)1367 struct sctp_chunk *sctp_chunkify(struct sk_buff *skb,
1368 const struct sctp_association *asoc,
1369 struct sock *sk, gfp_t gfp)
1370 {
1371 struct sctp_chunk *retval;
1372
1373 retval = kmem_cache_zalloc(sctp_chunk_cachep, gfp);
1374
1375 if (!retval)
1376 goto nodata;
1377 if (!sk)
1378 pr_debug("%s: chunkifying skb:%p w/o an sk\n", __func__, skb);
1379
1380 INIT_LIST_HEAD(&retval->list);
1381 retval->skb = skb;
1382 retval->asoc = (struct sctp_association *)asoc;
1383 retval->singleton = 1;
1384
1385 retval->fast_retransmit = SCTP_CAN_FRTX;
1386
1387 /* Polish the bead hole. */
1388 INIT_LIST_HEAD(&retval->transmitted_list);
1389 INIT_LIST_HEAD(&retval->frag_list);
1390 SCTP_DBG_OBJCNT_INC(chunk);
1391 refcount_set(&retval->refcnt, 1);
1392
1393 nodata:
1394 return retval;
1395 }
1396
1397 /* Set chunk->source and dest based on the IP header in chunk->skb. */
sctp_init_addrs(struct sctp_chunk * chunk,union sctp_addr * src,union sctp_addr * dest)1398 void sctp_init_addrs(struct sctp_chunk *chunk, union sctp_addr *src,
1399 union sctp_addr *dest)
1400 {
1401 memcpy(&chunk->source, src, sizeof(union sctp_addr));
1402 memcpy(&chunk->dest, dest, sizeof(union sctp_addr));
1403 }
1404
1405 /* Extract the source address from a chunk. */
sctp_source(const struct sctp_chunk * chunk)1406 const union sctp_addr *sctp_source(const struct sctp_chunk *chunk)
1407 {
1408 /* If we have a known transport, use that. */
1409 if (chunk->transport) {
1410 return &chunk->transport->ipaddr;
1411 } else {
1412 /* Otherwise, extract it from the IP header. */
1413 return &chunk->source;
1414 }
1415 }
1416
1417 /* Create a new chunk, setting the type and flags headers from the
1418 * arguments, reserving enough space for a 'paylen' byte payload.
1419 */
_sctp_make_chunk(const struct sctp_association * asoc,__u8 type,__u8 flags,int paylen,gfp_t gfp)1420 static struct sctp_chunk *_sctp_make_chunk(const struct sctp_association *asoc,
1421 __u8 type, __u8 flags, int paylen,
1422 gfp_t gfp)
1423 {
1424 struct sctp_chunkhdr *chunk_hdr;
1425 struct sctp_chunk *retval;
1426 struct sk_buff *skb;
1427 struct sock *sk;
1428 int chunklen;
1429
1430 chunklen = SCTP_PAD4(sizeof(*chunk_hdr) + paylen);
1431 if (chunklen > SCTP_MAX_CHUNK_LEN)
1432 goto nodata;
1433
1434 /* No need to allocate LL here, as this is only a chunk. */
1435 skb = alloc_skb(chunklen, gfp);
1436 if (!skb)
1437 goto nodata;
1438
1439 /* Make room for the chunk header. */
1440 chunk_hdr = (struct sctp_chunkhdr *)skb_put(skb, sizeof(*chunk_hdr));
1441 chunk_hdr->type = type;
1442 chunk_hdr->flags = flags;
1443 chunk_hdr->length = htons(sizeof(*chunk_hdr));
1444
1445 sk = asoc ? asoc->base.sk : NULL;
1446 retval = sctp_chunkify(skb, asoc, sk, gfp);
1447 if (!retval) {
1448 kfree_skb(skb);
1449 goto nodata;
1450 }
1451
1452 retval->chunk_hdr = chunk_hdr;
1453 retval->chunk_end = ((__u8 *)chunk_hdr) + sizeof(*chunk_hdr);
1454
1455 /* Determine if the chunk needs to be authenticated */
1456 if (sctp_auth_send_cid(type, asoc))
1457 retval->auth = 1;
1458
1459 return retval;
1460 nodata:
1461 return NULL;
1462 }
1463
sctp_make_data(const struct sctp_association * asoc,__u8 flags,int paylen,gfp_t gfp)1464 static struct sctp_chunk *sctp_make_data(const struct sctp_association *asoc,
1465 __u8 flags, int paylen, gfp_t gfp)
1466 {
1467 return _sctp_make_chunk(asoc, SCTP_CID_DATA, flags, paylen, gfp);
1468 }
1469
sctp_make_idata(const struct sctp_association * asoc,__u8 flags,int paylen,gfp_t gfp)1470 struct sctp_chunk *sctp_make_idata(const struct sctp_association *asoc,
1471 __u8 flags, int paylen, gfp_t gfp)
1472 {
1473 return _sctp_make_chunk(asoc, SCTP_CID_I_DATA, flags, paylen, gfp);
1474 }
1475
sctp_make_control(const struct sctp_association * asoc,__u8 type,__u8 flags,int paylen,gfp_t gfp)1476 static struct sctp_chunk *sctp_make_control(const struct sctp_association *asoc,
1477 __u8 type, __u8 flags, int paylen,
1478 gfp_t gfp)
1479 {
1480 struct sctp_chunk *chunk;
1481
1482 chunk = _sctp_make_chunk(asoc, type, flags, paylen, gfp);
1483 if (chunk)
1484 sctp_control_set_owner_w(chunk);
1485
1486 return chunk;
1487 }
1488
1489 /* Release the memory occupied by a chunk. */
sctp_chunk_destroy(struct sctp_chunk * chunk)1490 static void sctp_chunk_destroy(struct sctp_chunk *chunk)
1491 {
1492 BUG_ON(!list_empty(&chunk->list));
1493 list_del_init(&chunk->transmitted_list);
1494
1495 consume_skb(chunk->skb);
1496 consume_skb(chunk->auth_chunk);
1497
1498 SCTP_DBG_OBJCNT_DEC(chunk);
1499 kmem_cache_free(sctp_chunk_cachep, chunk);
1500 }
1501
1502 /* Possibly, free the chunk. */
sctp_chunk_free(struct sctp_chunk * chunk)1503 void sctp_chunk_free(struct sctp_chunk *chunk)
1504 {
1505 /* Release our reference on the message tracker. */
1506 if (chunk->msg)
1507 sctp_datamsg_put(chunk->msg);
1508
1509 sctp_chunk_put(chunk);
1510 }
1511
1512 /* Grab a reference to the chunk. */
sctp_chunk_hold(struct sctp_chunk * ch)1513 void sctp_chunk_hold(struct sctp_chunk *ch)
1514 {
1515 refcount_inc(&ch->refcnt);
1516 }
1517
1518 /* Release a reference to the chunk. */
sctp_chunk_put(struct sctp_chunk * ch)1519 void sctp_chunk_put(struct sctp_chunk *ch)
1520 {
1521 if (refcount_dec_and_test(&ch->refcnt))
1522 sctp_chunk_destroy(ch);
1523 }
1524
1525 /* Append bytes to the end of a chunk. Will panic if chunk is not big
1526 * enough.
1527 */
sctp_addto_chunk(struct sctp_chunk * chunk,int len,const void * data)1528 void *sctp_addto_chunk(struct sctp_chunk *chunk, int len, const void *data)
1529 {
1530 int chunklen = ntohs(chunk->chunk_hdr->length);
1531 int padlen = SCTP_PAD4(chunklen) - chunklen;
1532 void *target;
1533
1534 skb_put_zero(chunk->skb, padlen);
1535 target = skb_put_data(chunk->skb, data, len);
1536
1537 /* Adjust the chunk length field. */
1538 chunk->chunk_hdr->length = htons(chunklen + padlen + len);
1539 chunk->chunk_end = skb_tail_pointer(chunk->skb);
1540
1541 return target;
1542 }
1543
1544 /* Append bytes from user space to the end of a chunk. Will panic if
1545 * chunk is not big enough.
1546 * Returns a kernel err value.
1547 */
sctp_user_addto_chunk(struct sctp_chunk * chunk,int len,struct iov_iter * from)1548 int sctp_user_addto_chunk(struct sctp_chunk *chunk, int len,
1549 struct iov_iter *from)
1550 {
1551 void *target;
1552
1553 /* Make room in chunk for data. */
1554 target = skb_put(chunk->skb, len);
1555
1556 /* Copy data (whole iovec) into chunk */
1557 if (!copy_from_iter_full(target, len, from))
1558 return -EFAULT;
1559
1560 /* Adjust the chunk length field. */
1561 chunk->chunk_hdr->length =
1562 htons(ntohs(chunk->chunk_hdr->length) + len);
1563 chunk->chunk_end = skb_tail_pointer(chunk->skb);
1564
1565 return 0;
1566 }
1567
1568 /* Helper function to assign a TSN if needed. This assumes that both
1569 * the data_hdr and association have already been assigned.
1570 */
sctp_chunk_assign_ssn(struct sctp_chunk * chunk)1571 void sctp_chunk_assign_ssn(struct sctp_chunk *chunk)
1572 {
1573 struct sctp_stream *stream;
1574 struct sctp_chunk *lchunk;
1575 struct sctp_datamsg *msg;
1576 __u16 ssn, sid;
1577
1578 if (chunk->has_ssn)
1579 return;
1580
1581 /* All fragments will be on the same stream */
1582 sid = ntohs(chunk->subh.data_hdr->stream);
1583 stream = &chunk->asoc->stream;
1584
1585 /* Now assign the sequence number to the entire message.
1586 * All fragments must have the same stream sequence number.
1587 */
1588 msg = chunk->msg;
1589 list_for_each_entry(lchunk, &msg->chunks, frag_list) {
1590 if (lchunk->chunk_hdr->flags & SCTP_DATA_UNORDERED) {
1591 ssn = 0;
1592 } else {
1593 if (lchunk->chunk_hdr->flags & SCTP_DATA_LAST_FRAG)
1594 ssn = sctp_ssn_next(stream, out, sid);
1595 else
1596 ssn = sctp_ssn_peek(stream, out, sid);
1597 }
1598
1599 lchunk->subh.data_hdr->ssn = htons(ssn);
1600 lchunk->has_ssn = 1;
1601 }
1602 }
1603
1604 /* Helper function to assign a TSN if needed. This assumes that both
1605 * the data_hdr and association have already been assigned.
1606 */
sctp_chunk_assign_tsn(struct sctp_chunk * chunk)1607 void sctp_chunk_assign_tsn(struct sctp_chunk *chunk)
1608 {
1609 if (!chunk->has_tsn) {
1610 /* This is the last possible instant to
1611 * assign a TSN.
1612 */
1613 chunk->subh.data_hdr->tsn =
1614 htonl(sctp_association_get_next_tsn(chunk->asoc));
1615 chunk->has_tsn = 1;
1616 }
1617 }
1618
1619 /* Create a CLOSED association to use with an incoming packet. */
sctp_make_temp_asoc(const struct sctp_endpoint * ep,struct sctp_chunk * chunk,gfp_t gfp)1620 struct sctp_association *sctp_make_temp_asoc(const struct sctp_endpoint *ep,
1621 struct sctp_chunk *chunk,
1622 gfp_t gfp)
1623 {
1624 struct sctp_association *asoc;
1625 enum sctp_scope scope;
1626 struct sk_buff *skb;
1627
1628 /* Create the bare association. */
1629 scope = sctp_scope(sctp_source(chunk));
1630 asoc = sctp_association_new(ep, ep->base.sk, scope, gfp);
1631 if (!asoc)
1632 goto nodata;
1633 asoc->temp = 1;
1634 skb = chunk->skb;
1635 /* Create an entry for the source address of the packet. */
1636 SCTP_INPUT_CB(skb)->af->from_skb(&asoc->c.peer_addr, skb, 1);
1637
1638 nodata:
1639 return asoc;
1640 }
1641
1642 /* Build a cookie representing asoc.
1643 * This INCLUDES the param header needed to put the cookie in the INIT ACK.
1644 */
sctp_pack_cookie(const struct sctp_endpoint * ep,const struct sctp_association * asoc,const struct sctp_chunk * init_chunk,int * cookie_len,const __u8 * raw_addrs,int addrs_len)1645 static struct sctp_cookie_param *sctp_pack_cookie(
1646 const struct sctp_endpoint *ep,
1647 const struct sctp_association *asoc,
1648 const struct sctp_chunk *init_chunk,
1649 int *cookie_len, const __u8 *raw_addrs,
1650 int addrs_len)
1651 {
1652 struct sctp_signed_cookie *cookie;
1653 struct sctp_cookie_param *retval;
1654 int headersize, bodysize;
1655
1656 /* Header size is static data prior to the actual cookie, including
1657 * any padding.
1658 */
1659 headersize = sizeof(struct sctp_paramhdr) +
1660 (sizeof(struct sctp_signed_cookie) -
1661 sizeof(struct sctp_cookie));
1662 bodysize = sizeof(struct sctp_cookie)
1663 + ntohs(init_chunk->chunk_hdr->length) + addrs_len;
1664
1665 /* Pad out the cookie to a multiple to make the signature
1666 * functions simpler to write.
1667 */
1668 if (bodysize % SCTP_COOKIE_MULTIPLE)
1669 bodysize += SCTP_COOKIE_MULTIPLE
1670 - (bodysize % SCTP_COOKIE_MULTIPLE);
1671 *cookie_len = headersize + bodysize;
1672
1673 /* Clear this memory since we are sending this data structure
1674 * out on the network.
1675 */
1676 retval = kzalloc(*cookie_len, GFP_ATOMIC);
1677 if (!retval)
1678 goto nodata;
1679
1680 cookie = (struct sctp_signed_cookie *) retval->body;
1681
1682 /* Set up the parameter header. */
1683 retval->p.type = SCTP_PARAM_STATE_COOKIE;
1684 retval->p.length = htons(*cookie_len);
1685
1686 /* Copy the cookie part of the association itself. */
1687 cookie->c = asoc->c;
1688 /* Save the raw address list length in the cookie. */
1689 cookie->c.raw_addr_list_len = addrs_len;
1690
1691 /* Remember PR-SCTP capability. */
1692 cookie->c.prsctp_capable = asoc->peer.prsctp_capable;
1693
1694 /* Save adaptation indication in the cookie. */
1695 cookie->c.adaptation_ind = asoc->peer.adaptation_ind;
1696
1697 /* Set an expiration time for the cookie. */
1698 cookie->c.expiration = ktime_add(asoc->cookie_life,
1699 ktime_get_real());
1700
1701 /* Copy the peer's init packet. */
1702 memcpy(cookie + 1, init_chunk->chunk_hdr,
1703 ntohs(init_chunk->chunk_hdr->length));
1704
1705 /* Copy the raw local address list of the association. */
1706 memcpy((__u8 *)(cookie + 1) +
1707 ntohs(init_chunk->chunk_hdr->length), raw_addrs, addrs_len);
1708
1709 if (sctp_sk(ep->base.sk)->hmac) {
1710 struct crypto_shash *tfm = sctp_sk(ep->base.sk)->hmac;
1711 int err;
1712
1713 /* Sign the message. */
1714 err = crypto_shash_setkey(tfm, ep->secret_key,
1715 sizeof(ep->secret_key)) ?:
1716 crypto_shash_tfm_digest(tfm, (u8 *)&cookie->c, bodysize,
1717 cookie->signature);
1718 if (err)
1719 goto free_cookie;
1720 }
1721
1722 return retval;
1723
1724 free_cookie:
1725 kfree(retval);
1726 nodata:
1727 *cookie_len = 0;
1728 return NULL;
1729 }
1730
1731 /* Unpack the cookie from COOKIE ECHO chunk, recreating the association. */
sctp_unpack_cookie(const struct sctp_endpoint * ep,const struct sctp_association * asoc,struct sctp_chunk * chunk,gfp_t gfp,int * error,struct sctp_chunk ** errp)1732 struct sctp_association *sctp_unpack_cookie(
1733 const struct sctp_endpoint *ep,
1734 const struct sctp_association *asoc,
1735 struct sctp_chunk *chunk, gfp_t gfp,
1736 int *error, struct sctp_chunk **errp)
1737 {
1738 struct sctp_association *retval = NULL;
1739 int headersize, bodysize, fixed_size;
1740 struct sctp_signed_cookie *cookie;
1741 struct sk_buff *skb = chunk->skb;
1742 struct sctp_cookie *bear_cookie;
1743 __u8 *digest = ep->digest;
1744 enum sctp_scope scope;
1745 unsigned int len;
1746 ktime_t kt;
1747
1748 /* Header size is static data prior to the actual cookie, including
1749 * any padding.
1750 */
1751 headersize = sizeof(struct sctp_chunkhdr) +
1752 (sizeof(struct sctp_signed_cookie) -
1753 sizeof(struct sctp_cookie));
1754 bodysize = ntohs(chunk->chunk_hdr->length) - headersize;
1755 fixed_size = headersize + sizeof(struct sctp_cookie);
1756
1757 /* Verify that the chunk looks like it even has a cookie.
1758 * There must be enough room for our cookie and our peer's
1759 * INIT chunk.
1760 */
1761 len = ntohs(chunk->chunk_hdr->length);
1762 if (len < fixed_size + sizeof(struct sctp_chunkhdr))
1763 goto malformed;
1764
1765 /* Verify that the cookie has been padded out. */
1766 if (bodysize % SCTP_COOKIE_MULTIPLE)
1767 goto malformed;
1768
1769 /* Process the cookie. */
1770 cookie = chunk->subh.cookie_hdr;
1771 bear_cookie = &cookie->c;
1772
1773 if (!sctp_sk(ep->base.sk)->hmac)
1774 goto no_hmac;
1775
1776 /* Check the signature. */
1777 {
1778 struct crypto_shash *tfm = sctp_sk(ep->base.sk)->hmac;
1779 int err;
1780
1781 err = crypto_shash_setkey(tfm, ep->secret_key,
1782 sizeof(ep->secret_key)) ?:
1783 crypto_shash_tfm_digest(tfm, (u8 *)bear_cookie, bodysize,
1784 digest);
1785 if (err) {
1786 *error = -SCTP_IERROR_NOMEM;
1787 goto fail;
1788 }
1789 }
1790
1791 if (memcmp(digest, cookie->signature, SCTP_SIGNATURE_SIZE)) {
1792 *error = -SCTP_IERROR_BAD_SIG;
1793 goto fail;
1794 }
1795
1796 no_hmac:
1797 /* IG Section 2.35.2:
1798 * 3) Compare the port numbers and the verification tag contained
1799 * within the COOKIE ECHO chunk to the actual port numbers and the
1800 * verification tag within the SCTP common header of the received
1801 * packet. If these values do not match the packet MUST be silently
1802 * discarded,
1803 */
1804 if (ntohl(chunk->sctp_hdr->vtag) != bear_cookie->my_vtag) {
1805 *error = -SCTP_IERROR_BAD_TAG;
1806 goto fail;
1807 }
1808
1809 if (chunk->sctp_hdr->source != bear_cookie->peer_addr.v4.sin_port ||
1810 ntohs(chunk->sctp_hdr->dest) != bear_cookie->my_port) {
1811 *error = -SCTP_IERROR_BAD_PORTS;
1812 goto fail;
1813 }
1814
1815 /* Check to see if the cookie is stale. If there is already
1816 * an association, there is no need to check cookie's expiration
1817 * for init collision case of lost COOKIE ACK.
1818 * If skb has been timestamped, then use the stamp, otherwise
1819 * use current time. This introduces a small possibility that
1820 * a cookie may be considered expired, but this would only slow
1821 * down the new association establishment instead of every packet.
1822 */
1823 if (sock_flag(ep->base.sk, SOCK_TIMESTAMP))
1824 kt = skb_get_ktime(skb);
1825 else
1826 kt = ktime_get_real();
1827
1828 if (!asoc && ktime_before(bear_cookie->expiration, kt)) {
1829 suseconds_t usecs = ktime_to_us(ktime_sub(kt, bear_cookie->expiration));
1830 __be32 n = htonl(usecs);
1831
1832 /*
1833 * Section 3.3.10.3 Stale Cookie Error (3)
1834 *
1835 * Cause of error
1836 * ---------------
1837 * Stale Cookie Error: Indicates the receipt of a valid State
1838 * Cookie that has expired.
1839 */
1840 *errp = sctp_make_op_error(asoc, chunk,
1841 SCTP_ERROR_STALE_COOKIE, &n,
1842 sizeof(n), 0);
1843 if (*errp)
1844 *error = -SCTP_IERROR_STALE_COOKIE;
1845 else
1846 *error = -SCTP_IERROR_NOMEM;
1847
1848 goto fail;
1849 }
1850
1851 /* Make a new base association. */
1852 scope = sctp_scope(sctp_source(chunk));
1853 retval = sctp_association_new(ep, ep->base.sk, scope, gfp);
1854 if (!retval) {
1855 *error = -SCTP_IERROR_NOMEM;
1856 goto fail;
1857 }
1858
1859 /* Set up our peer's port number. */
1860 retval->peer.port = ntohs(chunk->sctp_hdr->source);
1861
1862 /* Populate the association from the cookie. */
1863 memcpy(&retval->c, bear_cookie, sizeof(*bear_cookie));
1864
1865 if (sctp_assoc_set_bind_addr_from_cookie(retval, bear_cookie,
1866 GFP_ATOMIC) < 0) {
1867 *error = -SCTP_IERROR_NOMEM;
1868 goto fail;
1869 }
1870
1871 /* Also, add the destination address. */
1872 if (list_empty(&retval->base.bind_addr.address_list)) {
1873 sctp_add_bind_addr(&retval->base.bind_addr, &chunk->dest,
1874 sizeof(chunk->dest), SCTP_ADDR_SRC,
1875 GFP_ATOMIC);
1876 }
1877
1878 retval->next_tsn = retval->c.initial_tsn;
1879 retval->ctsn_ack_point = retval->next_tsn - 1;
1880 retval->addip_serial = retval->c.initial_tsn;
1881 retval->strreset_outseq = retval->c.initial_tsn;
1882 retval->adv_peer_ack_point = retval->ctsn_ack_point;
1883 retval->peer.prsctp_capable = retval->c.prsctp_capable;
1884 retval->peer.adaptation_ind = retval->c.adaptation_ind;
1885
1886 /* The INIT stuff will be done by the side effects. */
1887 return retval;
1888
1889 fail:
1890 if (retval)
1891 sctp_association_free(retval);
1892
1893 return NULL;
1894
1895 malformed:
1896 /* Yikes! The packet is either corrupt or deliberately
1897 * malformed.
1898 */
1899 *error = -SCTP_IERROR_MALFORMED;
1900 goto fail;
1901 }
1902
1903 /********************************************************************
1904 * 3rd Level Abstractions
1905 ********************************************************************/
1906
1907 struct __sctp_missing {
1908 __be32 num_missing;
1909 __be16 type;
1910 } __packed;
1911
1912 /*
1913 * Report a missing mandatory parameter.
1914 */
sctp_process_missing_param(const struct sctp_association * asoc,enum sctp_param paramtype,struct sctp_chunk * chunk,struct sctp_chunk ** errp)1915 static int sctp_process_missing_param(const struct sctp_association *asoc,
1916 enum sctp_param paramtype,
1917 struct sctp_chunk *chunk,
1918 struct sctp_chunk **errp)
1919 {
1920 struct __sctp_missing report;
1921 __u16 len;
1922
1923 len = SCTP_PAD4(sizeof(report));
1924
1925 /* Make an ERROR chunk, preparing enough room for
1926 * returning multiple unknown parameters.
1927 */
1928 if (!*errp)
1929 *errp = sctp_make_op_error_space(asoc, chunk, len);
1930
1931 if (*errp) {
1932 report.num_missing = htonl(1);
1933 report.type = paramtype;
1934 sctp_init_cause(*errp, SCTP_ERROR_MISS_PARAM,
1935 sizeof(report));
1936 sctp_addto_chunk(*errp, sizeof(report), &report);
1937 }
1938
1939 /* Stop processing this chunk. */
1940 return 0;
1941 }
1942
1943 /* Report an Invalid Mandatory Parameter. */
sctp_process_inv_mandatory(const struct sctp_association * asoc,struct sctp_chunk * chunk,struct sctp_chunk ** errp)1944 static int sctp_process_inv_mandatory(const struct sctp_association *asoc,
1945 struct sctp_chunk *chunk,
1946 struct sctp_chunk **errp)
1947 {
1948 /* Invalid Mandatory Parameter Error has no payload. */
1949
1950 if (!*errp)
1951 *errp = sctp_make_op_error_space(asoc, chunk, 0);
1952
1953 if (*errp)
1954 sctp_init_cause(*errp, SCTP_ERROR_INV_PARAM, 0);
1955
1956 /* Stop processing this chunk. */
1957 return 0;
1958 }
1959
sctp_process_inv_paramlength(const struct sctp_association * asoc,struct sctp_paramhdr * param,const struct sctp_chunk * chunk,struct sctp_chunk ** errp)1960 static int sctp_process_inv_paramlength(const struct sctp_association *asoc,
1961 struct sctp_paramhdr *param,
1962 const struct sctp_chunk *chunk,
1963 struct sctp_chunk **errp)
1964 {
1965 /* This is a fatal error. Any accumulated non-fatal errors are
1966 * not reported.
1967 */
1968 if (*errp)
1969 sctp_chunk_free(*errp);
1970
1971 /* Create an error chunk and fill it in with our payload. */
1972 *errp = sctp_make_violation_paramlen(asoc, chunk, param);
1973
1974 return 0;
1975 }
1976
1977
1978 /* Do not attempt to handle the HOST_NAME parm. However, do
1979 * send back an indicator to the peer.
1980 */
sctp_process_hn_param(const struct sctp_association * asoc,union sctp_params param,struct sctp_chunk * chunk,struct sctp_chunk ** errp)1981 static int sctp_process_hn_param(const struct sctp_association *asoc,
1982 union sctp_params param,
1983 struct sctp_chunk *chunk,
1984 struct sctp_chunk **errp)
1985 {
1986 __u16 len = ntohs(param.p->length);
1987
1988 /* Processing of the HOST_NAME parameter will generate an
1989 * ABORT. If we've accumulated any non-fatal errors, they
1990 * would be unrecognized parameters and we should not include
1991 * them in the ABORT.
1992 */
1993 if (*errp)
1994 sctp_chunk_free(*errp);
1995
1996 *errp = sctp_make_op_error(asoc, chunk, SCTP_ERROR_DNS_FAILED,
1997 param.v, len, 0);
1998
1999 /* Stop processing this chunk. */
2000 return 0;
2001 }
2002
sctp_verify_ext_param(struct net * net,const struct sctp_endpoint * ep,union sctp_params param)2003 static int sctp_verify_ext_param(struct net *net,
2004 const struct sctp_endpoint *ep,
2005 union sctp_params param)
2006 {
2007 __u16 num_ext = ntohs(param.p->length) - sizeof(struct sctp_paramhdr);
2008 int have_asconf = 0;
2009 int have_auth = 0;
2010 int i;
2011
2012 for (i = 0; i < num_ext; i++) {
2013 switch (param.ext->chunks[i]) {
2014 case SCTP_CID_AUTH:
2015 have_auth = 1;
2016 break;
2017 case SCTP_CID_ASCONF:
2018 case SCTP_CID_ASCONF_ACK:
2019 have_asconf = 1;
2020 break;
2021 }
2022 }
2023
2024 /* ADD-IP Security: The draft requires us to ABORT or ignore the
2025 * INIT/INIT-ACK if ADD-IP is listed, but AUTH is not. Do this
2026 * only if ADD-IP is turned on and we are not backward-compatible
2027 * mode.
2028 */
2029 if (net->sctp.addip_noauth)
2030 return 1;
2031
2032 if (ep->asconf_enable && !have_auth && have_asconf)
2033 return 0;
2034
2035 return 1;
2036 }
2037
sctp_process_ext_param(struct sctp_association * asoc,union sctp_params param)2038 static void sctp_process_ext_param(struct sctp_association *asoc,
2039 union sctp_params param)
2040 {
2041 __u16 num_ext = ntohs(param.p->length) - sizeof(struct sctp_paramhdr);
2042 int i;
2043
2044 for (i = 0; i < num_ext; i++) {
2045 switch (param.ext->chunks[i]) {
2046 case SCTP_CID_RECONF:
2047 if (asoc->ep->reconf_enable)
2048 asoc->peer.reconf_capable = 1;
2049 break;
2050 case SCTP_CID_FWD_TSN:
2051 if (asoc->ep->prsctp_enable)
2052 asoc->peer.prsctp_capable = 1;
2053 break;
2054 case SCTP_CID_AUTH:
2055 /* if the peer reports AUTH, assume that he
2056 * supports AUTH.
2057 */
2058 if (asoc->ep->auth_enable)
2059 asoc->peer.auth_capable = 1;
2060 break;
2061 case SCTP_CID_ASCONF:
2062 case SCTP_CID_ASCONF_ACK:
2063 if (asoc->ep->asconf_enable)
2064 asoc->peer.asconf_capable = 1;
2065 break;
2066 case SCTP_CID_I_DATA:
2067 if (asoc->ep->intl_enable)
2068 asoc->peer.intl_capable = 1;
2069 break;
2070 default:
2071 break;
2072 }
2073 }
2074 }
2075
2076 /* RFC 3.2.1 & the Implementers Guide 2.2.
2077 *
2078 * The Parameter Types are encoded such that the
2079 * highest-order two bits specify the action that must be
2080 * taken if the processing endpoint does not recognize the
2081 * Parameter Type.
2082 *
2083 * 00 - Stop processing this parameter; do not process any further
2084 * parameters within this chunk
2085 *
2086 * 01 - Stop processing this parameter, do not process any further
2087 * parameters within this chunk, and report the unrecognized
2088 * parameter in an 'Unrecognized Parameter' ERROR chunk.
2089 *
2090 * 10 - Skip this parameter and continue processing.
2091 *
2092 * 11 - Skip this parameter and continue processing but
2093 * report the unrecognized parameter in an
2094 * 'Unrecognized Parameter' ERROR chunk.
2095 *
2096 * Return value:
2097 * SCTP_IERROR_NO_ERROR - continue with the chunk
2098 * SCTP_IERROR_ERROR - stop and report an error.
2099 * SCTP_IERROR_NOMEME - out of memory.
2100 */
sctp_process_unk_param(const struct sctp_association * asoc,union sctp_params param,struct sctp_chunk * chunk,struct sctp_chunk ** errp)2101 static enum sctp_ierror sctp_process_unk_param(
2102 const struct sctp_association *asoc,
2103 union sctp_params param,
2104 struct sctp_chunk *chunk,
2105 struct sctp_chunk **errp)
2106 {
2107 int retval = SCTP_IERROR_NO_ERROR;
2108
2109 switch (param.p->type & SCTP_PARAM_ACTION_MASK) {
2110 case SCTP_PARAM_ACTION_DISCARD:
2111 retval = SCTP_IERROR_ERROR;
2112 break;
2113 case SCTP_PARAM_ACTION_SKIP:
2114 break;
2115 case SCTP_PARAM_ACTION_DISCARD_ERR:
2116 retval = SCTP_IERROR_ERROR;
2117 fallthrough;
2118 case SCTP_PARAM_ACTION_SKIP_ERR:
2119 /* Make an ERROR chunk, preparing enough room for
2120 * returning multiple unknown parameters.
2121 */
2122 if (!*errp) {
2123 *errp = sctp_make_op_error_limited(asoc, chunk);
2124 if (!*errp) {
2125 /* If there is no memory for generating the
2126 * ERROR report as specified, an ABORT will be
2127 * triggered to the peer and the association
2128 * won't be established.
2129 */
2130 retval = SCTP_IERROR_NOMEM;
2131 break;
2132 }
2133 }
2134
2135 if (!sctp_init_cause(*errp, SCTP_ERROR_UNKNOWN_PARAM,
2136 ntohs(param.p->length)))
2137 sctp_addto_chunk(*errp, ntohs(param.p->length),
2138 param.v);
2139 break;
2140 default:
2141 break;
2142 }
2143
2144 return retval;
2145 }
2146
2147 /* Verify variable length parameters
2148 * Return values:
2149 * SCTP_IERROR_ABORT - trigger an ABORT
2150 * SCTP_IERROR_NOMEM - out of memory (abort)
2151 * SCTP_IERROR_ERROR - stop processing, trigger an ERROR
2152 * SCTP_IERROR_NO_ERROR - continue with the chunk
2153 */
sctp_verify_param(struct net * net,const struct sctp_endpoint * ep,const struct sctp_association * asoc,union sctp_params param,enum sctp_cid cid,struct sctp_chunk * chunk,struct sctp_chunk ** err_chunk)2154 static enum sctp_ierror sctp_verify_param(struct net *net,
2155 const struct sctp_endpoint *ep,
2156 const struct sctp_association *asoc,
2157 union sctp_params param,
2158 enum sctp_cid cid,
2159 struct sctp_chunk *chunk,
2160 struct sctp_chunk **err_chunk)
2161 {
2162 struct sctp_hmac_algo_param *hmacs;
2163 int retval = SCTP_IERROR_NO_ERROR;
2164 __u16 n_elt, id = 0;
2165 int i;
2166
2167 /* FIXME - This routine is not looking at each parameter per the
2168 * chunk type, i.e., unrecognized parameters should be further
2169 * identified based on the chunk id.
2170 */
2171
2172 switch (param.p->type) {
2173 case SCTP_PARAM_IPV4_ADDRESS:
2174 case SCTP_PARAM_IPV6_ADDRESS:
2175 case SCTP_PARAM_COOKIE_PRESERVATIVE:
2176 case SCTP_PARAM_SUPPORTED_ADDRESS_TYPES:
2177 case SCTP_PARAM_STATE_COOKIE:
2178 case SCTP_PARAM_HEARTBEAT_INFO:
2179 case SCTP_PARAM_UNRECOGNIZED_PARAMETERS:
2180 case SCTP_PARAM_ECN_CAPABLE:
2181 case SCTP_PARAM_ADAPTATION_LAYER_IND:
2182 break;
2183
2184 case SCTP_PARAM_SUPPORTED_EXT:
2185 if (!sctp_verify_ext_param(net, ep, param))
2186 return SCTP_IERROR_ABORT;
2187 break;
2188
2189 case SCTP_PARAM_SET_PRIMARY:
2190 if (!ep->asconf_enable)
2191 goto unhandled;
2192
2193 if (ntohs(param.p->length) < sizeof(struct sctp_addip_param) +
2194 sizeof(struct sctp_paramhdr)) {
2195 sctp_process_inv_paramlength(asoc, param.p,
2196 chunk, err_chunk);
2197 retval = SCTP_IERROR_ABORT;
2198 }
2199 break;
2200
2201 case SCTP_PARAM_HOST_NAME_ADDRESS:
2202 /* This param has been Deprecated, send ABORT. */
2203 sctp_process_hn_param(asoc, param, chunk, err_chunk);
2204 retval = SCTP_IERROR_ABORT;
2205 break;
2206
2207 case SCTP_PARAM_FWD_TSN_SUPPORT:
2208 if (ep->prsctp_enable)
2209 break;
2210 goto unhandled;
2211
2212 case SCTP_PARAM_RANDOM:
2213 if (!ep->auth_enable)
2214 goto unhandled;
2215
2216 /* SCTP-AUTH: Secion 6.1
2217 * If the random number is not 32 byte long the association
2218 * MUST be aborted. The ABORT chunk SHOULD contain the error
2219 * cause 'Protocol Violation'.
2220 */
2221 if (SCTP_AUTH_RANDOM_LENGTH != ntohs(param.p->length) -
2222 sizeof(struct sctp_paramhdr)) {
2223 sctp_process_inv_paramlength(asoc, param.p,
2224 chunk, err_chunk);
2225 retval = SCTP_IERROR_ABORT;
2226 }
2227 break;
2228
2229 case SCTP_PARAM_CHUNKS:
2230 if (!ep->auth_enable)
2231 goto unhandled;
2232
2233 /* SCTP-AUTH: Section 3.2
2234 * The CHUNKS parameter MUST be included once in the INIT or
2235 * INIT-ACK chunk if the sender wants to receive authenticated
2236 * chunks. Its maximum length is 260 bytes.
2237 */
2238 if (260 < ntohs(param.p->length)) {
2239 sctp_process_inv_paramlength(asoc, param.p,
2240 chunk, err_chunk);
2241 retval = SCTP_IERROR_ABORT;
2242 }
2243 break;
2244
2245 case SCTP_PARAM_HMAC_ALGO:
2246 if (!ep->auth_enable)
2247 goto unhandled;
2248
2249 hmacs = (struct sctp_hmac_algo_param *)param.p;
2250 n_elt = (ntohs(param.p->length) -
2251 sizeof(struct sctp_paramhdr)) >> 1;
2252
2253 /* SCTP-AUTH: Section 6.1
2254 * The HMAC algorithm based on SHA-1 MUST be supported and
2255 * included in the HMAC-ALGO parameter.
2256 */
2257 for (i = 0; i < n_elt; i++) {
2258 id = ntohs(hmacs->hmac_ids[i]);
2259
2260 if (id == SCTP_AUTH_HMAC_ID_SHA1)
2261 break;
2262 }
2263
2264 if (id != SCTP_AUTH_HMAC_ID_SHA1) {
2265 sctp_process_inv_paramlength(asoc, param.p, chunk,
2266 err_chunk);
2267 retval = SCTP_IERROR_ABORT;
2268 }
2269 break;
2270 unhandled:
2271 default:
2272 pr_debug("%s: unrecognized param:%d for chunk:%d\n",
2273 __func__, ntohs(param.p->type), cid);
2274
2275 retval = sctp_process_unk_param(asoc, param, chunk, err_chunk);
2276 break;
2277 }
2278 return retval;
2279 }
2280
2281 /* Verify the INIT packet before we process it. */
sctp_verify_init(struct net * net,const struct sctp_endpoint * ep,const struct sctp_association * asoc,enum sctp_cid cid,struct sctp_init_chunk * peer_init,struct sctp_chunk * chunk,struct sctp_chunk ** errp)2282 int sctp_verify_init(struct net *net, const struct sctp_endpoint *ep,
2283 const struct sctp_association *asoc, enum sctp_cid cid,
2284 struct sctp_init_chunk *peer_init,
2285 struct sctp_chunk *chunk, struct sctp_chunk **errp)
2286 {
2287 union sctp_params param;
2288 bool has_cookie = false;
2289 int result;
2290
2291 /* Check for missing mandatory parameters. Note: Initial TSN is
2292 * also mandatory, but is not checked here since the valid range
2293 * is 0..2**32-1. RFC4960, section 3.3.3.
2294 */
2295 if (peer_init->init_hdr.num_outbound_streams == 0 ||
2296 peer_init->init_hdr.num_inbound_streams == 0 ||
2297 peer_init->init_hdr.init_tag == 0 ||
2298 ntohl(peer_init->init_hdr.a_rwnd) < SCTP_DEFAULT_MINWINDOW)
2299 return sctp_process_inv_mandatory(asoc, chunk, errp);
2300
2301 sctp_walk_params(param, peer_init) {
2302 if (param.p->type == SCTP_PARAM_STATE_COOKIE)
2303 has_cookie = true;
2304 }
2305
2306 /* There is a possibility that a parameter length was bad and
2307 * in that case we would have stoped walking the parameters.
2308 * The current param.p would point at the bad one.
2309 * Current consensus on the mailing list is to generate a PROTOCOL
2310 * VIOLATION error. We build the ERROR chunk here and let the normal
2311 * error handling code build and send the packet.
2312 */
2313 if (param.v != (void *)chunk->chunk_end)
2314 return sctp_process_inv_paramlength(asoc, param.p, chunk, errp);
2315
2316 /* The only missing mandatory param possible today is
2317 * the state cookie for an INIT-ACK chunk.
2318 */
2319 if ((SCTP_CID_INIT_ACK == cid) && !has_cookie)
2320 return sctp_process_missing_param(asoc, SCTP_PARAM_STATE_COOKIE,
2321 chunk, errp);
2322
2323 /* Verify all the variable length parameters */
2324 sctp_walk_params(param, peer_init) {
2325 result = sctp_verify_param(net, ep, asoc, param, cid,
2326 chunk, errp);
2327 switch (result) {
2328 case SCTP_IERROR_ABORT:
2329 case SCTP_IERROR_NOMEM:
2330 return 0;
2331 case SCTP_IERROR_ERROR:
2332 return 1;
2333 case SCTP_IERROR_NO_ERROR:
2334 default:
2335 break;
2336 }
2337
2338 } /* for (loop through all parameters) */
2339
2340 return 1;
2341 }
2342
2343 /* Unpack the parameters in an INIT packet into an association.
2344 * Returns 0 on failure, else success.
2345 * FIXME: This is an association method.
2346 */
sctp_process_init(struct sctp_association * asoc,struct sctp_chunk * chunk,const union sctp_addr * peer_addr,struct sctp_init_chunk * peer_init,gfp_t gfp)2347 int sctp_process_init(struct sctp_association *asoc, struct sctp_chunk *chunk,
2348 const union sctp_addr *peer_addr,
2349 struct sctp_init_chunk *peer_init, gfp_t gfp)
2350 {
2351 struct sctp_transport *transport;
2352 struct list_head *pos, *temp;
2353 union sctp_params param;
2354 union sctp_addr addr;
2355 struct sctp_af *af;
2356 int src_match = 0;
2357
2358 /* We must include the address that the INIT packet came from.
2359 * This is the only address that matters for an INIT packet.
2360 * When processing a COOKIE ECHO, we retrieve the from address
2361 * of the INIT from the cookie.
2362 */
2363
2364 /* This implementation defaults to making the first transport
2365 * added as the primary transport. The source address seems to
2366 * be a better choice than any of the embedded addresses.
2367 */
2368 asoc->encap_port = SCTP_INPUT_CB(chunk->skb)->encap_port;
2369 if (!sctp_assoc_add_peer(asoc, peer_addr, gfp, SCTP_ACTIVE))
2370 goto nomem;
2371
2372 if (sctp_cmp_addr_exact(sctp_source(chunk), peer_addr))
2373 src_match = 1;
2374
2375 /* Process the initialization parameters. */
2376 sctp_walk_params(param, peer_init) {
2377 if (!src_match &&
2378 (param.p->type == SCTP_PARAM_IPV4_ADDRESS ||
2379 param.p->type == SCTP_PARAM_IPV6_ADDRESS)) {
2380 af = sctp_get_af_specific(param_type2af(param.p->type));
2381 if (!af->from_addr_param(&addr, param.addr,
2382 chunk->sctp_hdr->source, 0))
2383 continue;
2384 if (sctp_cmp_addr_exact(sctp_source(chunk), &addr))
2385 src_match = 1;
2386 }
2387
2388 if (!sctp_process_param(asoc, param, peer_addr, gfp))
2389 goto clean_up;
2390 }
2391
2392 /* source address of chunk may not match any valid address */
2393 if (!src_match)
2394 goto clean_up;
2395
2396 /* AUTH: After processing the parameters, make sure that we
2397 * have all the required info to potentially do authentications.
2398 */
2399 if (asoc->peer.auth_capable && (!asoc->peer.peer_random ||
2400 !asoc->peer.peer_hmacs))
2401 asoc->peer.auth_capable = 0;
2402
2403 /* In a non-backward compatible mode, if the peer claims
2404 * support for ADD-IP but not AUTH, the ADD-IP spec states
2405 * that we MUST ABORT the association. Section 6. The section
2406 * also give us an option to silently ignore the packet, which
2407 * is what we'll do here.
2408 */
2409 if (!asoc->base.net->sctp.addip_noauth &&
2410 (asoc->peer.asconf_capable && !asoc->peer.auth_capable)) {
2411 asoc->peer.addip_disabled_mask |= (SCTP_PARAM_ADD_IP |
2412 SCTP_PARAM_DEL_IP |
2413 SCTP_PARAM_SET_PRIMARY);
2414 asoc->peer.asconf_capable = 0;
2415 goto clean_up;
2416 }
2417
2418 /* Walk list of transports, removing transports in the UNKNOWN state. */
2419 list_for_each_safe(pos, temp, &asoc->peer.transport_addr_list) {
2420 transport = list_entry(pos, struct sctp_transport, transports);
2421 if (transport->state == SCTP_UNKNOWN) {
2422 sctp_assoc_rm_peer(asoc, transport);
2423 }
2424 }
2425
2426 /* The fixed INIT headers are always in network byte
2427 * order.
2428 */
2429 asoc->peer.i.init_tag =
2430 ntohl(peer_init->init_hdr.init_tag);
2431 asoc->peer.i.a_rwnd =
2432 ntohl(peer_init->init_hdr.a_rwnd);
2433 asoc->peer.i.num_outbound_streams =
2434 ntohs(peer_init->init_hdr.num_outbound_streams);
2435 asoc->peer.i.num_inbound_streams =
2436 ntohs(peer_init->init_hdr.num_inbound_streams);
2437 asoc->peer.i.initial_tsn =
2438 ntohl(peer_init->init_hdr.initial_tsn);
2439
2440 asoc->strreset_inseq = asoc->peer.i.initial_tsn;
2441
2442 /* Apply the upper bounds for output streams based on peer's
2443 * number of inbound streams.
2444 */
2445 if (asoc->c.sinit_num_ostreams >
2446 ntohs(peer_init->init_hdr.num_inbound_streams)) {
2447 asoc->c.sinit_num_ostreams =
2448 ntohs(peer_init->init_hdr.num_inbound_streams);
2449 }
2450
2451 if (asoc->c.sinit_max_instreams >
2452 ntohs(peer_init->init_hdr.num_outbound_streams)) {
2453 asoc->c.sinit_max_instreams =
2454 ntohs(peer_init->init_hdr.num_outbound_streams);
2455 }
2456
2457 /* Copy Initiation tag from INIT to VT_peer in cookie. */
2458 asoc->c.peer_vtag = asoc->peer.i.init_tag;
2459
2460 /* Peer Rwnd : Current calculated value of the peer's rwnd. */
2461 asoc->peer.rwnd = asoc->peer.i.a_rwnd;
2462
2463 /* RFC 2960 7.2.1 The initial value of ssthresh MAY be arbitrarily
2464 * high (for example, implementations MAY use the size of the receiver
2465 * advertised window).
2466 */
2467 list_for_each_entry(transport, &asoc->peer.transport_addr_list,
2468 transports) {
2469 transport->ssthresh = asoc->peer.i.a_rwnd;
2470 }
2471
2472 /* Set up the TSN tracking pieces. */
2473 if (!sctp_tsnmap_init(&asoc->peer.tsn_map, SCTP_TSN_MAP_INITIAL,
2474 asoc->peer.i.initial_tsn, gfp))
2475 goto clean_up;
2476
2477 /* RFC 2960 6.5 Stream Identifier and Stream Sequence Number
2478 *
2479 * The stream sequence number in all the streams shall start
2480 * from 0 when the association is established. Also, when the
2481 * stream sequence number reaches the value 65535 the next
2482 * stream sequence number shall be set to 0.
2483 */
2484
2485 if (sctp_stream_init(&asoc->stream, asoc->c.sinit_num_ostreams,
2486 asoc->c.sinit_max_instreams, gfp))
2487 goto clean_up;
2488
2489 /* Update frag_point when stream_interleave may get changed. */
2490 sctp_assoc_update_frag_point(asoc);
2491
2492 if (!asoc->temp && sctp_assoc_set_id(asoc, gfp))
2493 goto clean_up;
2494
2495 /* ADDIP Section 4.1 ASCONF Chunk Procedures
2496 *
2497 * When an endpoint has an ASCONF signaled change to be sent to the
2498 * remote endpoint it should do the following:
2499 * ...
2500 * A2) A serial number should be assigned to the Chunk. The serial
2501 * number should be a monotonically increasing number. All serial
2502 * numbers are defined to be initialized at the start of the
2503 * association to the same value as the Initial TSN.
2504 */
2505 asoc->peer.addip_serial = asoc->peer.i.initial_tsn - 1;
2506 return 1;
2507
2508 clean_up:
2509 /* Release the transport structures. */
2510 list_for_each_safe(pos, temp, &asoc->peer.transport_addr_list) {
2511 transport = list_entry(pos, struct sctp_transport, transports);
2512 if (transport->state != SCTP_ACTIVE)
2513 sctp_assoc_rm_peer(asoc, transport);
2514 }
2515
2516 nomem:
2517 return 0;
2518 }
2519
2520
2521 /* Update asoc with the option described in param.
2522 *
2523 * RFC2960 3.3.2.1 Optional/Variable Length Parameters in INIT
2524 *
2525 * asoc is the association to update.
2526 * param is the variable length parameter to use for update.
2527 * cid tells us if this is an INIT, INIT ACK or COOKIE ECHO.
2528 * If the current packet is an INIT we want to minimize the amount of
2529 * work we do. In particular, we should not build transport
2530 * structures for the addresses.
2531 */
sctp_process_param(struct sctp_association * asoc,union sctp_params param,const union sctp_addr * peer_addr,gfp_t gfp)2532 static int sctp_process_param(struct sctp_association *asoc,
2533 union sctp_params param,
2534 const union sctp_addr *peer_addr,
2535 gfp_t gfp)
2536 {
2537 struct sctp_endpoint *ep = asoc->ep;
2538 union sctp_addr_param *addr_param;
2539 struct net *net = asoc->base.net;
2540 struct sctp_transport *t;
2541 enum sctp_scope scope;
2542 union sctp_addr addr;
2543 struct sctp_af *af;
2544 int retval = 1, i;
2545 u32 stale;
2546 __u16 sat;
2547
2548 /* We maintain all INIT parameters in network byte order all the
2549 * time. This allows us to not worry about whether the parameters
2550 * came from a fresh INIT, and INIT ACK, or were stored in a cookie.
2551 */
2552 switch (param.p->type) {
2553 case SCTP_PARAM_IPV6_ADDRESS:
2554 if (PF_INET6 != asoc->base.sk->sk_family)
2555 break;
2556 goto do_addr_param;
2557
2558 case SCTP_PARAM_IPV4_ADDRESS:
2559 /* v4 addresses are not allowed on v6-only socket */
2560 if (ipv6_only_sock(asoc->base.sk))
2561 break;
2562 do_addr_param:
2563 af = sctp_get_af_specific(param_type2af(param.p->type));
2564 if (!af->from_addr_param(&addr, param.addr, htons(asoc->peer.port), 0))
2565 break;
2566 scope = sctp_scope(peer_addr);
2567 if (sctp_in_scope(net, &addr, scope))
2568 if (!sctp_assoc_add_peer(asoc, &addr, gfp, SCTP_UNCONFIRMED))
2569 return 0;
2570 break;
2571
2572 case SCTP_PARAM_COOKIE_PRESERVATIVE:
2573 if (!net->sctp.cookie_preserve_enable)
2574 break;
2575
2576 stale = ntohl(param.life->lifespan_increment);
2577
2578 /* Suggested Cookie Life span increment's unit is msec,
2579 * (1/1000sec).
2580 */
2581 asoc->cookie_life = ktime_add_ms(asoc->cookie_life, stale);
2582 break;
2583
2584 case SCTP_PARAM_SUPPORTED_ADDRESS_TYPES:
2585 /* Turn off the default values first so we'll know which
2586 * ones are really set by the peer.
2587 */
2588 asoc->peer.ipv4_address = 0;
2589 asoc->peer.ipv6_address = 0;
2590
2591 /* Assume that peer supports the address family
2592 * by which it sends a packet.
2593 */
2594 if (peer_addr->sa.sa_family == AF_INET6)
2595 asoc->peer.ipv6_address = 1;
2596 else if (peer_addr->sa.sa_family == AF_INET)
2597 asoc->peer.ipv4_address = 1;
2598
2599 /* Cycle through address types; avoid divide by 0. */
2600 sat = ntohs(param.p->length) - sizeof(struct sctp_paramhdr);
2601 if (sat)
2602 sat /= sizeof(__u16);
2603
2604 for (i = 0; i < sat; ++i) {
2605 switch (param.sat->types[i]) {
2606 case SCTP_PARAM_IPV4_ADDRESS:
2607 asoc->peer.ipv4_address = 1;
2608 break;
2609
2610 case SCTP_PARAM_IPV6_ADDRESS:
2611 if (PF_INET6 == asoc->base.sk->sk_family)
2612 asoc->peer.ipv6_address = 1;
2613 break;
2614
2615 default: /* Just ignore anything else. */
2616 break;
2617 }
2618 }
2619 break;
2620
2621 case SCTP_PARAM_STATE_COOKIE:
2622 asoc->peer.cookie_len =
2623 ntohs(param.p->length) - sizeof(struct sctp_paramhdr);
2624 kfree(asoc->peer.cookie);
2625 asoc->peer.cookie = kmemdup(param.cookie->body, asoc->peer.cookie_len, gfp);
2626 if (!asoc->peer.cookie)
2627 retval = 0;
2628 break;
2629
2630 case SCTP_PARAM_HEARTBEAT_INFO:
2631 /* Would be odd to receive, but it causes no problems. */
2632 break;
2633
2634 case SCTP_PARAM_UNRECOGNIZED_PARAMETERS:
2635 /* Rejected during verify stage. */
2636 break;
2637
2638 case SCTP_PARAM_ECN_CAPABLE:
2639 if (asoc->ep->ecn_enable) {
2640 asoc->peer.ecn_capable = 1;
2641 break;
2642 }
2643 /* Fall Through */
2644 goto fall_through;
2645
2646
2647 case SCTP_PARAM_ADAPTATION_LAYER_IND:
2648 asoc->peer.adaptation_ind = ntohl(param.aind->adaptation_ind);
2649 break;
2650
2651 case SCTP_PARAM_SET_PRIMARY:
2652 if (!ep->asconf_enable)
2653 goto fall_through;
2654
2655 addr_param = param.v + sizeof(struct sctp_addip_param);
2656
2657 af = sctp_get_af_specific(param_type2af(addr_param->p.type));
2658 if (!af)
2659 break;
2660
2661 if (!af->from_addr_param(&addr, addr_param,
2662 htons(asoc->peer.port), 0))
2663 break;
2664
2665 if (!af->addr_valid(&addr, NULL, NULL))
2666 break;
2667
2668 t = sctp_assoc_lookup_paddr(asoc, &addr);
2669 if (!t)
2670 break;
2671
2672 sctp_assoc_set_primary(asoc, t);
2673 break;
2674
2675 case SCTP_PARAM_SUPPORTED_EXT:
2676 sctp_process_ext_param(asoc, param);
2677 break;
2678
2679 case SCTP_PARAM_FWD_TSN_SUPPORT:
2680 if (asoc->ep->prsctp_enable) {
2681 asoc->peer.prsctp_capable = 1;
2682 break;
2683 }
2684 /* Fall Through */
2685 goto fall_through;
2686
2687 case SCTP_PARAM_RANDOM:
2688 if (!ep->auth_enable)
2689 goto fall_through;
2690
2691 /* Save peer's random parameter */
2692 kfree(asoc->peer.peer_random);
2693 asoc->peer.peer_random = kmemdup(param.p,
2694 ntohs(param.p->length), gfp);
2695 if (!asoc->peer.peer_random) {
2696 retval = 0;
2697 break;
2698 }
2699 break;
2700
2701 case SCTP_PARAM_HMAC_ALGO:
2702 if (!ep->auth_enable)
2703 goto fall_through;
2704
2705 /* Save peer's HMAC list */
2706 kfree(asoc->peer.peer_hmacs);
2707 asoc->peer.peer_hmacs = kmemdup(param.p,
2708 ntohs(param.p->length), gfp);
2709 if (!asoc->peer.peer_hmacs) {
2710 retval = 0;
2711 break;
2712 }
2713
2714 /* Set the default HMAC the peer requested*/
2715 sctp_auth_asoc_set_default_hmac(asoc, param.hmac_algo);
2716 break;
2717
2718 case SCTP_PARAM_CHUNKS:
2719 if (!ep->auth_enable)
2720 goto fall_through;
2721
2722 kfree(asoc->peer.peer_chunks);
2723 asoc->peer.peer_chunks = kmemdup(param.p,
2724 ntohs(param.p->length), gfp);
2725 if (!asoc->peer.peer_chunks)
2726 retval = 0;
2727 break;
2728 fall_through:
2729 default:
2730 /* Any unrecognized parameters should have been caught
2731 * and handled by sctp_verify_param() which should be
2732 * called prior to this routine. Simply log the error
2733 * here.
2734 */
2735 pr_debug("%s: ignoring param:%d for association:%p.\n",
2736 __func__, ntohs(param.p->type), asoc);
2737 break;
2738 }
2739
2740 return retval;
2741 }
2742
2743 /* Select a new verification tag. */
sctp_generate_tag(const struct sctp_endpoint * ep)2744 __u32 sctp_generate_tag(const struct sctp_endpoint *ep)
2745 {
2746 /* I believe that this random number generator complies with RFC1750.
2747 * A tag of 0 is reserved for special cases (e.g. INIT).
2748 */
2749 __u32 x;
2750
2751 do {
2752 get_random_bytes(&x, sizeof(__u32));
2753 } while (x == 0);
2754
2755 return x;
2756 }
2757
2758 /* Select an initial TSN to send during startup. */
sctp_generate_tsn(const struct sctp_endpoint * ep)2759 __u32 sctp_generate_tsn(const struct sctp_endpoint *ep)
2760 {
2761 __u32 retval;
2762
2763 get_random_bytes(&retval, sizeof(__u32));
2764 return retval;
2765 }
2766
2767 /*
2768 * ADDIP 3.1.1 Address Configuration Change Chunk (ASCONF)
2769 * 0 1 2 3
2770 * 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
2771 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2772 * | Type = 0xC1 | Chunk Flags | Chunk Length |
2773 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2774 * | Serial Number |
2775 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2776 * | Address Parameter |
2777 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2778 * | ASCONF Parameter #1 |
2779 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2780 * \ \
2781 * / .... /
2782 * \ \
2783 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2784 * | ASCONF Parameter #N |
2785 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2786 *
2787 * Address Parameter and other parameter will not be wrapped in this function
2788 */
sctp_make_asconf(struct sctp_association * asoc,union sctp_addr * addr,int vparam_len)2789 static struct sctp_chunk *sctp_make_asconf(struct sctp_association *asoc,
2790 union sctp_addr *addr,
2791 int vparam_len)
2792 {
2793 struct sctp_addiphdr asconf;
2794 struct sctp_chunk *retval;
2795 int length = sizeof(asconf) + vparam_len;
2796 union sctp_addr_param addrparam;
2797 int addrlen;
2798 struct sctp_af *af = sctp_get_af_specific(addr->v4.sin_family);
2799
2800 addrlen = af->to_addr_param(addr, &addrparam);
2801 if (!addrlen)
2802 return NULL;
2803 length += addrlen;
2804
2805 /* Create the chunk. */
2806 retval = sctp_make_control(asoc, SCTP_CID_ASCONF, 0, length,
2807 GFP_ATOMIC);
2808 if (!retval)
2809 return NULL;
2810
2811 asconf.serial = htonl(asoc->addip_serial++);
2812
2813 retval->subh.addip_hdr =
2814 sctp_addto_chunk(retval, sizeof(asconf), &asconf);
2815 retval->param_hdr.v =
2816 sctp_addto_chunk(retval, addrlen, &addrparam);
2817
2818 return retval;
2819 }
2820
2821 /* ADDIP
2822 * 3.2.1 Add IP Address
2823 * 0 1 2 3
2824 * 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
2825 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2826 * | Type = 0xC001 | Length = Variable |
2827 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2828 * | ASCONF-Request Correlation ID |
2829 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2830 * | Address Parameter |
2831 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2832 *
2833 * 3.2.2 Delete IP Address
2834 * 0 1 2 3
2835 * 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
2836 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2837 * | Type = 0xC002 | Length = Variable |
2838 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2839 * | ASCONF-Request Correlation ID |
2840 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2841 * | Address Parameter |
2842 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2843 *
2844 */
sctp_make_asconf_update_ip(struct sctp_association * asoc,union sctp_addr * laddr,struct sockaddr * addrs,int addrcnt,__be16 flags)2845 struct sctp_chunk *sctp_make_asconf_update_ip(struct sctp_association *asoc,
2846 union sctp_addr *laddr,
2847 struct sockaddr *addrs,
2848 int addrcnt, __be16 flags)
2849 {
2850 union sctp_addr_param addr_param;
2851 struct sctp_addip_param param;
2852 int paramlen = sizeof(param);
2853 struct sctp_chunk *retval;
2854 int addr_param_len = 0;
2855 union sctp_addr *addr;
2856 int totallen = 0, i;
2857 int del_pickup = 0;
2858 struct sctp_af *af;
2859 void *addr_buf;
2860
2861 /* Get total length of all the address parameters. */
2862 addr_buf = addrs;
2863 for (i = 0; i < addrcnt; i++) {
2864 addr = addr_buf;
2865 af = sctp_get_af_specific(addr->v4.sin_family);
2866 addr_param_len = af->to_addr_param(addr, &addr_param);
2867
2868 totallen += paramlen;
2869 totallen += addr_param_len;
2870
2871 addr_buf += af->sockaddr_len;
2872 if (asoc->asconf_addr_del_pending && !del_pickup) {
2873 /* reuse the parameter length from the same scope one */
2874 totallen += paramlen;
2875 totallen += addr_param_len;
2876 del_pickup = 1;
2877
2878 pr_debug("%s: picked same-scope del_pending addr, "
2879 "totallen for all addresses is %d\n",
2880 __func__, totallen);
2881 }
2882 }
2883
2884 /* Create an asconf chunk with the required length. */
2885 retval = sctp_make_asconf(asoc, laddr, totallen);
2886 if (!retval)
2887 return NULL;
2888
2889 /* Add the address parameters to the asconf chunk. */
2890 addr_buf = addrs;
2891 for (i = 0; i < addrcnt; i++) {
2892 addr = addr_buf;
2893 af = sctp_get_af_specific(addr->v4.sin_family);
2894 addr_param_len = af->to_addr_param(addr, &addr_param);
2895 param.param_hdr.type = flags;
2896 param.param_hdr.length = htons(paramlen + addr_param_len);
2897 param.crr_id = htonl(i);
2898
2899 sctp_addto_chunk(retval, paramlen, ¶m);
2900 sctp_addto_chunk(retval, addr_param_len, &addr_param);
2901
2902 addr_buf += af->sockaddr_len;
2903 }
2904 if (flags == SCTP_PARAM_ADD_IP && del_pickup) {
2905 addr = asoc->asconf_addr_del_pending;
2906 af = sctp_get_af_specific(addr->v4.sin_family);
2907 addr_param_len = af->to_addr_param(addr, &addr_param);
2908 param.param_hdr.type = SCTP_PARAM_DEL_IP;
2909 param.param_hdr.length = htons(paramlen + addr_param_len);
2910 param.crr_id = htonl(i);
2911
2912 sctp_addto_chunk(retval, paramlen, ¶m);
2913 sctp_addto_chunk(retval, addr_param_len, &addr_param);
2914 }
2915 return retval;
2916 }
2917
2918 /* ADDIP
2919 * 3.2.4 Set Primary IP Address
2920 * 0 1 2 3
2921 * 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
2922 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2923 * | Type =0xC004 | Length = Variable |
2924 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2925 * | ASCONF-Request Correlation ID |
2926 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2927 * | Address Parameter |
2928 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2929 *
2930 * Create an ASCONF chunk with Set Primary IP address parameter.
2931 */
sctp_make_asconf_set_prim(struct sctp_association * asoc,union sctp_addr * addr)2932 struct sctp_chunk *sctp_make_asconf_set_prim(struct sctp_association *asoc,
2933 union sctp_addr *addr)
2934 {
2935 struct sctp_af *af = sctp_get_af_specific(addr->v4.sin_family);
2936 union sctp_addr_param addrparam;
2937 struct sctp_addip_param param;
2938 struct sctp_chunk *retval;
2939 int len = sizeof(param);
2940 int addrlen;
2941
2942 addrlen = af->to_addr_param(addr, &addrparam);
2943 if (!addrlen)
2944 return NULL;
2945 len += addrlen;
2946
2947 /* Create the chunk and make asconf header. */
2948 retval = sctp_make_asconf(asoc, addr, len);
2949 if (!retval)
2950 return NULL;
2951
2952 param.param_hdr.type = SCTP_PARAM_SET_PRIMARY;
2953 param.param_hdr.length = htons(len);
2954 param.crr_id = 0;
2955
2956 sctp_addto_chunk(retval, sizeof(param), ¶m);
2957 sctp_addto_chunk(retval, addrlen, &addrparam);
2958
2959 return retval;
2960 }
2961
2962 /* ADDIP 3.1.2 Address Configuration Acknowledgement Chunk (ASCONF-ACK)
2963 * 0 1 2 3
2964 * 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
2965 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2966 * | Type = 0x80 | Chunk Flags | Chunk Length |
2967 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2968 * | Serial Number |
2969 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2970 * | ASCONF Parameter Response#1 |
2971 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2972 * \ \
2973 * / .... /
2974 * \ \
2975 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2976 * | ASCONF Parameter Response#N |
2977 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
2978 *
2979 * Create an ASCONF_ACK chunk with enough space for the parameter responses.
2980 */
sctp_make_asconf_ack(const struct sctp_association * asoc,__u32 serial,int vparam_len)2981 static struct sctp_chunk *sctp_make_asconf_ack(const struct sctp_association *asoc,
2982 __u32 serial, int vparam_len)
2983 {
2984 struct sctp_addiphdr asconf;
2985 struct sctp_chunk *retval;
2986 int length = sizeof(asconf) + vparam_len;
2987
2988 /* Create the chunk. */
2989 retval = sctp_make_control(asoc, SCTP_CID_ASCONF_ACK, 0, length,
2990 GFP_ATOMIC);
2991 if (!retval)
2992 return NULL;
2993
2994 asconf.serial = htonl(serial);
2995
2996 retval->subh.addip_hdr =
2997 sctp_addto_chunk(retval, sizeof(asconf), &asconf);
2998
2999 return retval;
3000 }
3001
3002 /* Add response parameters to an ASCONF_ACK chunk. */
sctp_add_asconf_response(struct sctp_chunk * chunk,__be32 crr_id,__be16 err_code,struct sctp_addip_param * asconf_param)3003 static void sctp_add_asconf_response(struct sctp_chunk *chunk, __be32 crr_id,
3004 __be16 err_code,
3005 struct sctp_addip_param *asconf_param)
3006 {
3007 struct sctp_addip_param ack_param;
3008 struct sctp_errhdr err_param;
3009 int asconf_param_len = 0;
3010 int err_param_len = 0;
3011 __be16 response_type;
3012
3013 if (SCTP_ERROR_NO_ERROR == err_code) {
3014 response_type = SCTP_PARAM_SUCCESS_REPORT;
3015 } else {
3016 response_type = SCTP_PARAM_ERR_CAUSE;
3017 err_param_len = sizeof(err_param);
3018 if (asconf_param)
3019 asconf_param_len =
3020 ntohs(asconf_param->param_hdr.length);
3021 }
3022
3023 /* Add Success Indication or Error Cause Indication parameter. */
3024 ack_param.param_hdr.type = response_type;
3025 ack_param.param_hdr.length = htons(sizeof(ack_param) +
3026 err_param_len +
3027 asconf_param_len);
3028 ack_param.crr_id = crr_id;
3029 sctp_addto_chunk(chunk, sizeof(ack_param), &ack_param);
3030
3031 if (SCTP_ERROR_NO_ERROR == err_code)
3032 return;
3033
3034 /* Add Error Cause parameter. */
3035 err_param.cause = err_code;
3036 err_param.length = htons(err_param_len + asconf_param_len);
3037 sctp_addto_chunk(chunk, err_param_len, &err_param);
3038
3039 /* Add the failed TLV copied from ASCONF chunk. */
3040 if (asconf_param)
3041 sctp_addto_chunk(chunk, asconf_param_len, asconf_param);
3042 }
3043
3044 /* Process a asconf parameter. */
sctp_process_asconf_param(struct sctp_association * asoc,struct sctp_chunk * asconf,struct sctp_addip_param * asconf_param)3045 static __be16 sctp_process_asconf_param(struct sctp_association *asoc,
3046 struct sctp_chunk *asconf,
3047 struct sctp_addip_param *asconf_param)
3048 {
3049 union sctp_addr_param *addr_param;
3050 struct sctp_transport *peer;
3051 union sctp_addr addr;
3052 struct sctp_af *af;
3053
3054 addr_param = (void *)asconf_param + sizeof(*asconf_param);
3055
3056 if (asconf_param->param_hdr.type != SCTP_PARAM_ADD_IP &&
3057 asconf_param->param_hdr.type != SCTP_PARAM_DEL_IP &&
3058 asconf_param->param_hdr.type != SCTP_PARAM_SET_PRIMARY)
3059 return SCTP_ERROR_UNKNOWN_PARAM;
3060
3061 switch (addr_param->p.type) {
3062 case SCTP_PARAM_IPV6_ADDRESS:
3063 if (!asoc->peer.ipv6_address)
3064 return SCTP_ERROR_DNS_FAILED;
3065 break;
3066 case SCTP_PARAM_IPV4_ADDRESS:
3067 if (!asoc->peer.ipv4_address)
3068 return SCTP_ERROR_DNS_FAILED;
3069 break;
3070 default:
3071 return SCTP_ERROR_DNS_FAILED;
3072 }
3073
3074 af = sctp_get_af_specific(param_type2af(addr_param->p.type));
3075 if (unlikely(!af))
3076 return SCTP_ERROR_DNS_FAILED;
3077
3078 if (!af->from_addr_param(&addr, addr_param, htons(asoc->peer.port), 0))
3079 return SCTP_ERROR_DNS_FAILED;
3080
3081 /* ADDIP 4.2.1 This parameter MUST NOT contain a broadcast
3082 * or multicast address.
3083 * (note: wildcard is permitted and requires special handling so
3084 * make sure we check for that)
3085 */
3086 if (!af->is_any(&addr) && !af->addr_valid(&addr, NULL, asconf->skb))
3087 return SCTP_ERROR_DNS_FAILED;
3088
3089 switch (asconf_param->param_hdr.type) {
3090 case SCTP_PARAM_ADD_IP:
3091 /* Section 4.2.1:
3092 * If the address 0.0.0.0 or ::0 is provided, the source
3093 * address of the packet MUST be added.
3094 */
3095 if (af->is_any(&addr))
3096 memcpy(&addr, &asconf->source, sizeof(addr));
3097
3098 if (security_sctp_bind_connect(asoc->ep->base.sk,
3099 SCTP_PARAM_ADD_IP,
3100 (struct sockaddr *)&addr,
3101 af->sockaddr_len))
3102 return SCTP_ERROR_REQ_REFUSED;
3103
3104 /* ADDIP 4.3 D9) If an endpoint receives an ADD IP address
3105 * request and does not have the local resources to add this
3106 * new address to the association, it MUST return an Error
3107 * Cause TLV set to the new error code 'Operation Refused
3108 * Due to Resource Shortage'.
3109 */
3110
3111 peer = sctp_assoc_add_peer(asoc, &addr, GFP_ATOMIC, SCTP_UNCONFIRMED);
3112 if (!peer)
3113 return SCTP_ERROR_RSRC_LOW;
3114
3115 /* Start the heartbeat timer. */
3116 sctp_transport_reset_hb_timer(peer);
3117 asoc->new_transport = peer;
3118 break;
3119 case SCTP_PARAM_DEL_IP:
3120 /* ADDIP 4.3 D7) If a request is received to delete the
3121 * last remaining IP address of a peer endpoint, the receiver
3122 * MUST send an Error Cause TLV with the error cause set to the
3123 * new error code 'Request to Delete Last Remaining IP Address'.
3124 */
3125 if (asoc->peer.transport_count == 1)
3126 return SCTP_ERROR_DEL_LAST_IP;
3127
3128 /* ADDIP 4.3 D8) If a request is received to delete an IP
3129 * address which is also the source address of the IP packet
3130 * which contained the ASCONF chunk, the receiver MUST reject
3131 * this request. To reject the request the receiver MUST send
3132 * an Error Cause TLV set to the new error code 'Request to
3133 * Delete Source IP Address'
3134 */
3135 if (sctp_cmp_addr_exact(&asconf->source, &addr))
3136 return SCTP_ERROR_DEL_SRC_IP;
3137
3138 /* Section 4.2.2
3139 * If the address 0.0.0.0 or ::0 is provided, all
3140 * addresses of the peer except the source address of the
3141 * packet MUST be deleted.
3142 */
3143 if (af->is_any(&addr)) {
3144 sctp_assoc_set_primary(asoc, asconf->transport);
3145 sctp_assoc_del_nonprimary_peers(asoc,
3146 asconf->transport);
3147 return SCTP_ERROR_NO_ERROR;
3148 }
3149
3150 /* If the address is not part of the association, the
3151 * ASCONF-ACK with Error Cause Indication Parameter
3152 * which including cause of Unresolvable Address should
3153 * be sent.
3154 */
3155 peer = sctp_assoc_lookup_paddr(asoc, &addr);
3156 if (!peer)
3157 return SCTP_ERROR_DNS_FAILED;
3158
3159 sctp_assoc_rm_peer(asoc, peer);
3160 break;
3161 case SCTP_PARAM_SET_PRIMARY:
3162 /* ADDIP Section 4.2.4
3163 * If the address 0.0.0.0 or ::0 is provided, the receiver
3164 * MAY mark the source address of the packet as its
3165 * primary.
3166 */
3167 if (af->is_any(&addr))
3168 memcpy(&addr, sctp_source(asconf), sizeof(addr));
3169
3170 if (security_sctp_bind_connect(asoc->ep->base.sk,
3171 SCTP_PARAM_SET_PRIMARY,
3172 (struct sockaddr *)&addr,
3173 af->sockaddr_len))
3174 return SCTP_ERROR_REQ_REFUSED;
3175
3176 peer = sctp_assoc_lookup_paddr(asoc, &addr);
3177 if (!peer)
3178 return SCTP_ERROR_DNS_FAILED;
3179
3180 sctp_assoc_set_primary(asoc, peer);
3181 break;
3182 }
3183
3184 return SCTP_ERROR_NO_ERROR;
3185 }
3186
3187 /* Verify the ASCONF packet before we process it. */
sctp_verify_asconf(const struct sctp_association * asoc,struct sctp_chunk * chunk,bool addr_param_needed,struct sctp_paramhdr ** errp)3188 bool sctp_verify_asconf(const struct sctp_association *asoc,
3189 struct sctp_chunk *chunk, bool addr_param_needed,
3190 struct sctp_paramhdr **errp)
3191 {
3192 struct sctp_addip_chunk *addip;
3193 bool addr_param_seen = false;
3194 union sctp_params param;
3195
3196 addip = (struct sctp_addip_chunk *)chunk->chunk_hdr;
3197 sctp_walk_params(param, addip) {
3198 size_t length = ntohs(param.p->length);
3199
3200 *errp = param.p;
3201 switch (param.p->type) {
3202 case SCTP_PARAM_ERR_CAUSE:
3203 break;
3204 case SCTP_PARAM_IPV4_ADDRESS:
3205 if (length != sizeof(struct sctp_ipv4addr_param))
3206 return false;
3207 /* ensure there is only one addr param and it's in the
3208 * beginning of addip_hdr params, or we reject it.
3209 */
3210 if (param.v != (addip + 1))
3211 return false;
3212 addr_param_seen = true;
3213 break;
3214 case SCTP_PARAM_IPV6_ADDRESS:
3215 if (length != sizeof(struct sctp_ipv6addr_param))
3216 return false;
3217 if (param.v != (addip + 1))
3218 return false;
3219 addr_param_seen = true;
3220 break;
3221 case SCTP_PARAM_ADD_IP:
3222 case SCTP_PARAM_DEL_IP:
3223 case SCTP_PARAM_SET_PRIMARY:
3224 /* In ASCONF chunks, these need to be first. */
3225 if (addr_param_needed && !addr_param_seen)
3226 return false;
3227 length = ntohs(param.addip->param_hdr.length);
3228 if (length < sizeof(struct sctp_addip_param) +
3229 sizeof(**errp))
3230 return false;
3231 break;
3232 case SCTP_PARAM_SUCCESS_REPORT:
3233 case SCTP_PARAM_ADAPTATION_LAYER_IND:
3234 if (length != sizeof(struct sctp_addip_param))
3235 return false;
3236 break;
3237 default:
3238 /* This is unknown to us, reject! */
3239 return false;
3240 }
3241 }
3242
3243 /* Remaining sanity checks. */
3244 if (addr_param_needed && !addr_param_seen)
3245 return false;
3246 if (!addr_param_needed && addr_param_seen)
3247 return false;
3248 if (param.v != chunk->chunk_end)
3249 return false;
3250
3251 return true;
3252 }
3253
3254 /* Process an incoming ASCONF chunk with the next expected serial no. and
3255 * return an ASCONF_ACK chunk to be sent in response.
3256 */
sctp_process_asconf(struct sctp_association * asoc,struct sctp_chunk * asconf)3257 struct sctp_chunk *sctp_process_asconf(struct sctp_association *asoc,
3258 struct sctp_chunk *asconf)
3259 {
3260 union sctp_addr_param *addr_param;
3261 struct sctp_addip_chunk *addip;
3262 struct sctp_chunk *asconf_ack;
3263 bool all_param_pass = true;
3264 struct sctp_addiphdr *hdr;
3265 int length = 0, chunk_len;
3266 union sctp_params param;
3267 __be16 err_code;
3268 __u32 serial;
3269
3270 addip = (struct sctp_addip_chunk *)asconf->chunk_hdr;
3271 chunk_len = ntohs(asconf->chunk_hdr->length) -
3272 sizeof(struct sctp_chunkhdr);
3273 hdr = (struct sctp_addiphdr *)asconf->skb->data;
3274 serial = ntohl(hdr->serial);
3275
3276 /* Skip the addiphdr and store a pointer to address parameter. */
3277 length = sizeof(*hdr);
3278 addr_param = (union sctp_addr_param *)(asconf->skb->data + length);
3279 chunk_len -= length;
3280
3281 /* Skip the address parameter and store a pointer to the first
3282 * asconf parameter.
3283 */
3284 length = ntohs(addr_param->p.length);
3285 chunk_len -= length;
3286
3287 /* create an ASCONF_ACK chunk.
3288 * Based on the definitions of parameters, we know that the size of
3289 * ASCONF_ACK parameters are less than or equal to the fourfold of ASCONF
3290 * parameters.
3291 */
3292 asconf_ack = sctp_make_asconf_ack(asoc, serial, chunk_len * 4);
3293 if (!asconf_ack)
3294 goto done;
3295
3296 /* Process the TLVs contained within the ASCONF chunk. */
3297 sctp_walk_params(param, addip) {
3298 /* Skip preceding address parameters. */
3299 if (param.p->type == SCTP_PARAM_IPV4_ADDRESS ||
3300 param.p->type == SCTP_PARAM_IPV6_ADDRESS)
3301 continue;
3302
3303 err_code = sctp_process_asconf_param(asoc, asconf,
3304 param.addip);
3305 /* ADDIP 4.1 A7)
3306 * If an error response is received for a TLV parameter,
3307 * all TLVs with no response before the failed TLV are
3308 * considered successful if not reported. All TLVs after
3309 * the failed response are considered unsuccessful unless
3310 * a specific success indication is present for the parameter.
3311 */
3312 if (err_code != SCTP_ERROR_NO_ERROR)
3313 all_param_pass = false;
3314 if (!all_param_pass)
3315 sctp_add_asconf_response(asconf_ack, param.addip->crr_id,
3316 err_code, param.addip);
3317
3318 /* ADDIP 4.3 D11) When an endpoint receiving an ASCONF to add
3319 * an IP address sends an 'Out of Resource' in its response, it
3320 * MUST also fail any subsequent add or delete requests bundled
3321 * in the ASCONF.
3322 */
3323 if (err_code == SCTP_ERROR_RSRC_LOW)
3324 goto done;
3325 }
3326 done:
3327 asoc->peer.addip_serial++;
3328
3329 /* If we are sending a new ASCONF_ACK hold a reference to it in assoc
3330 * after freeing the reference to old asconf ack if any.
3331 */
3332 if (asconf_ack) {
3333 sctp_chunk_hold(asconf_ack);
3334 list_add_tail(&asconf_ack->transmitted_list,
3335 &asoc->asconf_ack_list);
3336 }
3337
3338 return asconf_ack;
3339 }
3340
3341 /* Process a asconf parameter that is successfully acked. */
sctp_asconf_param_success(struct sctp_association * asoc,struct sctp_addip_param * asconf_param)3342 static void sctp_asconf_param_success(struct sctp_association *asoc,
3343 struct sctp_addip_param *asconf_param)
3344 {
3345 struct sctp_bind_addr *bp = &asoc->base.bind_addr;
3346 union sctp_addr_param *addr_param;
3347 struct sctp_sockaddr_entry *saddr;
3348 struct sctp_transport *transport;
3349 union sctp_addr addr;
3350 struct sctp_af *af;
3351
3352 addr_param = (void *)asconf_param + sizeof(*asconf_param);
3353
3354 /* We have checked the packet before, so we do not check again. */
3355 af = sctp_get_af_specific(param_type2af(addr_param->p.type));
3356 if (!af->from_addr_param(&addr, addr_param, htons(bp->port), 0))
3357 return;
3358
3359 switch (asconf_param->param_hdr.type) {
3360 case SCTP_PARAM_ADD_IP:
3361 /* This is always done in BH context with a socket lock
3362 * held, so the list can not change.
3363 */
3364 local_bh_disable();
3365 list_for_each_entry(saddr, &bp->address_list, list) {
3366 if (sctp_cmp_addr_exact(&saddr->a, &addr))
3367 saddr->state = SCTP_ADDR_SRC;
3368 }
3369 local_bh_enable();
3370 list_for_each_entry(transport, &asoc->peer.transport_addr_list,
3371 transports) {
3372 sctp_transport_dst_release(transport);
3373 }
3374 break;
3375 case SCTP_PARAM_DEL_IP:
3376 local_bh_disable();
3377 sctp_del_bind_addr(bp, &addr);
3378 if (asoc->asconf_addr_del_pending != NULL &&
3379 sctp_cmp_addr_exact(asoc->asconf_addr_del_pending, &addr)) {
3380 kfree(asoc->asconf_addr_del_pending);
3381 asoc->asconf_addr_del_pending = NULL;
3382 }
3383 local_bh_enable();
3384 list_for_each_entry(transport, &asoc->peer.transport_addr_list,
3385 transports) {
3386 sctp_transport_dst_release(transport);
3387 }
3388 break;
3389 default:
3390 break;
3391 }
3392 }
3393
3394 /* Get the corresponding ASCONF response error code from the ASCONF_ACK chunk
3395 * for the given asconf parameter. If there is no response for this parameter,
3396 * return the error code based on the third argument 'no_err'.
3397 * ADDIP 4.1
3398 * A7) If an error response is received for a TLV parameter, all TLVs with no
3399 * response before the failed TLV are considered successful if not reported.
3400 * All TLVs after the failed response are considered unsuccessful unless a
3401 * specific success indication is present for the parameter.
3402 */
sctp_get_asconf_response(struct sctp_chunk * asconf_ack,struct sctp_addip_param * asconf_param,int no_err)3403 static __be16 sctp_get_asconf_response(struct sctp_chunk *asconf_ack,
3404 struct sctp_addip_param *asconf_param,
3405 int no_err)
3406 {
3407 struct sctp_addip_param *asconf_ack_param;
3408 struct sctp_errhdr *err_param;
3409 int asconf_ack_len;
3410 __be16 err_code;
3411 int length;
3412
3413 if (no_err)
3414 err_code = SCTP_ERROR_NO_ERROR;
3415 else
3416 err_code = SCTP_ERROR_REQ_REFUSED;
3417
3418 asconf_ack_len = ntohs(asconf_ack->chunk_hdr->length) -
3419 sizeof(struct sctp_chunkhdr);
3420
3421 /* Skip the addiphdr from the asconf_ack chunk and store a pointer to
3422 * the first asconf_ack parameter.
3423 */
3424 length = sizeof(struct sctp_addiphdr);
3425 asconf_ack_param = (struct sctp_addip_param *)(asconf_ack->skb->data +
3426 length);
3427 asconf_ack_len -= length;
3428
3429 while (asconf_ack_len > 0) {
3430 if (asconf_ack_param->crr_id == asconf_param->crr_id) {
3431 switch (asconf_ack_param->param_hdr.type) {
3432 case SCTP_PARAM_SUCCESS_REPORT:
3433 return SCTP_ERROR_NO_ERROR;
3434 case SCTP_PARAM_ERR_CAUSE:
3435 length = sizeof(*asconf_ack_param);
3436 err_param = (void *)asconf_ack_param + length;
3437 asconf_ack_len -= length;
3438 if (asconf_ack_len > 0)
3439 return err_param->cause;
3440 else
3441 return SCTP_ERROR_INV_PARAM;
3442 break;
3443 default:
3444 return SCTP_ERROR_INV_PARAM;
3445 }
3446 }
3447
3448 length = ntohs(asconf_ack_param->param_hdr.length);
3449 asconf_ack_param = (void *)asconf_ack_param + length;
3450 asconf_ack_len -= length;
3451 }
3452
3453 return err_code;
3454 }
3455
3456 /* Process an incoming ASCONF_ACK chunk against the cached last ASCONF chunk. */
sctp_process_asconf_ack(struct sctp_association * asoc,struct sctp_chunk * asconf_ack)3457 int sctp_process_asconf_ack(struct sctp_association *asoc,
3458 struct sctp_chunk *asconf_ack)
3459 {
3460 struct sctp_chunk *asconf = asoc->addip_last_asconf;
3461 struct sctp_addip_param *asconf_param;
3462 __be16 err_code = SCTP_ERROR_NO_ERROR;
3463 union sctp_addr_param *addr_param;
3464 int asconf_len = asconf->skb->len;
3465 int all_param_pass = 0;
3466 int length = 0;
3467 int no_err = 1;
3468 int retval = 0;
3469
3470 /* Skip the chunkhdr and addiphdr from the last asconf sent and store
3471 * a pointer to address parameter.
3472 */
3473 length = sizeof(struct sctp_addip_chunk);
3474 addr_param = (union sctp_addr_param *)(asconf->skb->data + length);
3475 asconf_len -= length;
3476
3477 /* Skip the address parameter in the last asconf sent and store a
3478 * pointer to the first asconf parameter.
3479 */
3480 length = ntohs(addr_param->p.length);
3481 asconf_param = (void *)addr_param + length;
3482 asconf_len -= length;
3483
3484 /* ADDIP 4.1
3485 * A8) If there is no response(s) to specific TLV parameter(s), and no
3486 * failures are indicated, then all request(s) are considered
3487 * successful.
3488 */
3489 if (asconf_ack->skb->len == sizeof(struct sctp_addiphdr))
3490 all_param_pass = 1;
3491
3492 /* Process the TLVs contained in the last sent ASCONF chunk. */
3493 while (asconf_len > 0) {
3494 if (all_param_pass)
3495 err_code = SCTP_ERROR_NO_ERROR;
3496 else {
3497 err_code = sctp_get_asconf_response(asconf_ack,
3498 asconf_param,
3499 no_err);
3500 if (no_err && (SCTP_ERROR_NO_ERROR != err_code))
3501 no_err = 0;
3502 }
3503
3504 switch (err_code) {
3505 case SCTP_ERROR_NO_ERROR:
3506 sctp_asconf_param_success(asoc, asconf_param);
3507 break;
3508
3509 case SCTP_ERROR_RSRC_LOW:
3510 retval = 1;
3511 break;
3512
3513 case SCTP_ERROR_UNKNOWN_PARAM:
3514 /* Disable sending this type of asconf parameter in
3515 * future.
3516 */
3517 asoc->peer.addip_disabled_mask |=
3518 asconf_param->param_hdr.type;
3519 break;
3520
3521 case SCTP_ERROR_REQ_REFUSED:
3522 case SCTP_ERROR_DEL_LAST_IP:
3523 case SCTP_ERROR_DEL_SRC_IP:
3524 default:
3525 break;
3526 }
3527
3528 /* Skip the processed asconf parameter and move to the next
3529 * one.
3530 */
3531 length = ntohs(asconf_param->param_hdr.length);
3532 asconf_param = (void *)asconf_param + length;
3533 asconf_len -= length;
3534 }
3535
3536 if (no_err && asoc->src_out_of_asoc_ok) {
3537 asoc->src_out_of_asoc_ok = 0;
3538 sctp_transport_immediate_rtx(asoc->peer.primary_path);
3539 }
3540
3541 /* Free the cached last sent asconf chunk. */
3542 list_del_init(&asconf->transmitted_list);
3543 sctp_chunk_free(asconf);
3544 asoc->addip_last_asconf = NULL;
3545
3546 return retval;
3547 }
3548
3549 /* Make a FWD TSN chunk. */
sctp_make_fwdtsn(const struct sctp_association * asoc,__u32 new_cum_tsn,size_t nstreams,struct sctp_fwdtsn_skip * skiplist)3550 struct sctp_chunk *sctp_make_fwdtsn(const struct sctp_association *asoc,
3551 __u32 new_cum_tsn, size_t nstreams,
3552 struct sctp_fwdtsn_skip *skiplist)
3553 {
3554 struct sctp_chunk *retval = NULL;
3555 struct sctp_fwdtsn_hdr ftsn_hdr;
3556 struct sctp_fwdtsn_skip skip;
3557 size_t hint;
3558 int i;
3559
3560 hint = (nstreams + 1) * sizeof(__u32);
3561
3562 retval = sctp_make_control(asoc, SCTP_CID_FWD_TSN, 0, hint, GFP_ATOMIC);
3563
3564 if (!retval)
3565 return NULL;
3566
3567 ftsn_hdr.new_cum_tsn = htonl(new_cum_tsn);
3568 retval->subh.fwdtsn_hdr =
3569 sctp_addto_chunk(retval, sizeof(ftsn_hdr), &ftsn_hdr);
3570
3571 for (i = 0; i < nstreams; i++) {
3572 skip.stream = skiplist[i].stream;
3573 skip.ssn = skiplist[i].ssn;
3574 sctp_addto_chunk(retval, sizeof(skip), &skip);
3575 }
3576
3577 return retval;
3578 }
3579
sctp_make_ifwdtsn(const struct sctp_association * asoc,__u32 new_cum_tsn,size_t nstreams,struct sctp_ifwdtsn_skip * skiplist)3580 struct sctp_chunk *sctp_make_ifwdtsn(const struct sctp_association *asoc,
3581 __u32 new_cum_tsn, size_t nstreams,
3582 struct sctp_ifwdtsn_skip *skiplist)
3583 {
3584 struct sctp_chunk *retval = NULL;
3585 struct sctp_ifwdtsn_hdr ftsn_hdr;
3586 size_t hint;
3587
3588 hint = (nstreams + 1) * sizeof(__u32);
3589
3590 retval = sctp_make_control(asoc, SCTP_CID_I_FWD_TSN, 0, hint,
3591 GFP_ATOMIC);
3592 if (!retval)
3593 return NULL;
3594
3595 ftsn_hdr.new_cum_tsn = htonl(new_cum_tsn);
3596 retval->subh.ifwdtsn_hdr =
3597 sctp_addto_chunk(retval, sizeof(ftsn_hdr), &ftsn_hdr);
3598
3599 sctp_addto_chunk(retval, nstreams * sizeof(skiplist[0]), skiplist);
3600
3601 return retval;
3602 }
3603
3604 /* RE-CONFIG 3.1 (RE-CONFIG chunk)
3605 * 0 1 2 3
3606 * 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
3607 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3608 * | Type = 130 | Chunk Flags | Chunk Length |
3609 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3610 * \ \
3611 * / Re-configuration Parameter /
3612 * \ \
3613 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3614 * \ \
3615 * / Re-configuration Parameter (optional) /
3616 * \ \
3617 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3618 */
sctp_make_reconf(const struct sctp_association * asoc,int length)3619 static struct sctp_chunk *sctp_make_reconf(const struct sctp_association *asoc,
3620 int length)
3621 {
3622 struct sctp_reconf_chunk *reconf;
3623 struct sctp_chunk *retval;
3624
3625 retval = sctp_make_control(asoc, SCTP_CID_RECONF, 0, length,
3626 GFP_ATOMIC);
3627 if (!retval)
3628 return NULL;
3629
3630 reconf = (struct sctp_reconf_chunk *)retval->chunk_hdr;
3631 retval->param_hdr.v = (u8 *)(reconf + 1);
3632
3633 return retval;
3634 }
3635
3636 /* RE-CONFIG 4.1 (STREAM OUT RESET)
3637 * 0 1 2 3
3638 * 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
3639 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3640 * | Parameter Type = 13 | Parameter Length = 16 + 2 * N |
3641 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3642 * | Re-configuration Request Sequence Number |
3643 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3644 * | Re-configuration Response Sequence Number |
3645 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3646 * | Sender's Last Assigned TSN |
3647 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3648 * | Stream Number 1 (optional) | Stream Number 2 (optional) |
3649 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3650 * / ...... /
3651 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3652 * | Stream Number N-1 (optional) | Stream Number N (optional) |
3653 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3654 *
3655 * RE-CONFIG 4.2 (STREAM IN RESET)
3656 * 0 1 2 3
3657 * 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
3658 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3659 * | Parameter Type = 14 | Parameter Length = 8 + 2 * N |
3660 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3661 * | Re-configuration Request Sequence Number |
3662 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3663 * | Stream Number 1 (optional) | Stream Number 2 (optional) |
3664 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3665 * / ...... /
3666 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3667 * | Stream Number N-1 (optional) | Stream Number N (optional) |
3668 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3669 */
sctp_make_strreset_req(const struct sctp_association * asoc,__u16 stream_num,__be16 * stream_list,bool out,bool in)3670 struct sctp_chunk *sctp_make_strreset_req(
3671 const struct sctp_association *asoc,
3672 __u16 stream_num, __be16 *stream_list,
3673 bool out, bool in)
3674 {
3675 __u16 stream_len = stream_num * sizeof(__u16);
3676 struct sctp_strreset_outreq outreq;
3677 struct sctp_strreset_inreq inreq;
3678 struct sctp_chunk *retval;
3679 __u16 outlen, inlen;
3680
3681 outlen = (sizeof(outreq) + stream_len) * out;
3682 inlen = (sizeof(inreq) + stream_len) * in;
3683
3684 retval = sctp_make_reconf(asoc, SCTP_PAD4(outlen) + SCTP_PAD4(inlen));
3685 if (!retval)
3686 return NULL;
3687
3688 if (outlen) {
3689 outreq.param_hdr.type = SCTP_PARAM_RESET_OUT_REQUEST;
3690 outreq.param_hdr.length = htons(outlen);
3691 outreq.request_seq = htonl(asoc->strreset_outseq);
3692 outreq.response_seq = htonl(asoc->strreset_inseq - 1);
3693 outreq.send_reset_at_tsn = htonl(asoc->next_tsn - 1);
3694
3695 sctp_addto_chunk(retval, sizeof(outreq), &outreq);
3696
3697 if (stream_len)
3698 sctp_addto_chunk(retval, stream_len, stream_list);
3699 }
3700
3701 if (inlen) {
3702 inreq.param_hdr.type = SCTP_PARAM_RESET_IN_REQUEST;
3703 inreq.param_hdr.length = htons(inlen);
3704 inreq.request_seq = htonl(asoc->strreset_outseq + out);
3705
3706 sctp_addto_chunk(retval, sizeof(inreq), &inreq);
3707
3708 if (stream_len)
3709 sctp_addto_chunk(retval, stream_len, stream_list);
3710 }
3711
3712 return retval;
3713 }
3714
3715 /* RE-CONFIG 4.3 (SSN/TSN RESET ALL)
3716 * 0 1 2 3
3717 * 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
3718 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3719 * | Parameter Type = 15 | Parameter Length = 8 |
3720 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3721 * | Re-configuration Request Sequence Number |
3722 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3723 */
sctp_make_strreset_tsnreq(const struct sctp_association * asoc)3724 struct sctp_chunk *sctp_make_strreset_tsnreq(
3725 const struct sctp_association *asoc)
3726 {
3727 struct sctp_strreset_tsnreq tsnreq;
3728 __u16 length = sizeof(tsnreq);
3729 struct sctp_chunk *retval;
3730
3731 retval = sctp_make_reconf(asoc, length);
3732 if (!retval)
3733 return NULL;
3734
3735 tsnreq.param_hdr.type = SCTP_PARAM_RESET_TSN_REQUEST;
3736 tsnreq.param_hdr.length = htons(length);
3737 tsnreq.request_seq = htonl(asoc->strreset_outseq);
3738
3739 sctp_addto_chunk(retval, sizeof(tsnreq), &tsnreq);
3740
3741 return retval;
3742 }
3743
3744 /* RE-CONFIG 4.5/4.6 (ADD STREAM)
3745 * 0 1 2 3
3746 * 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
3747 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3748 * | Parameter Type = 17 | Parameter Length = 12 |
3749 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3750 * | Re-configuration Request Sequence Number |
3751 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3752 * | Number of new streams | Reserved |
3753 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3754 */
sctp_make_strreset_addstrm(const struct sctp_association * asoc,__u16 out,__u16 in)3755 struct sctp_chunk *sctp_make_strreset_addstrm(
3756 const struct sctp_association *asoc,
3757 __u16 out, __u16 in)
3758 {
3759 struct sctp_strreset_addstrm addstrm;
3760 __u16 size = sizeof(addstrm);
3761 struct sctp_chunk *retval;
3762
3763 retval = sctp_make_reconf(asoc, (!!out + !!in) * size);
3764 if (!retval)
3765 return NULL;
3766
3767 if (out) {
3768 addstrm.param_hdr.type = SCTP_PARAM_RESET_ADD_OUT_STREAMS;
3769 addstrm.param_hdr.length = htons(size);
3770 addstrm.number_of_streams = htons(out);
3771 addstrm.request_seq = htonl(asoc->strreset_outseq);
3772 addstrm.reserved = 0;
3773
3774 sctp_addto_chunk(retval, size, &addstrm);
3775 }
3776
3777 if (in) {
3778 addstrm.param_hdr.type = SCTP_PARAM_RESET_ADD_IN_STREAMS;
3779 addstrm.param_hdr.length = htons(size);
3780 addstrm.number_of_streams = htons(in);
3781 addstrm.request_seq = htonl(asoc->strreset_outseq + !!out);
3782 addstrm.reserved = 0;
3783
3784 sctp_addto_chunk(retval, size, &addstrm);
3785 }
3786
3787 return retval;
3788 }
3789
3790 /* RE-CONFIG 4.4 (RESP)
3791 * 0 1 2 3
3792 * 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
3793 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3794 * | Parameter Type = 16 | Parameter Length |
3795 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3796 * | Re-configuration Response Sequence Number |
3797 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3798 * | Result |
3799 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3800 */
sctp_make_strreset_resp(const struct sctp_association * asoc,__u32 result,__u32 sn)3801 struct sctp_chunk *sctp_make_strreset_resp(const struct sctp_association *asoc,
3802 __u32 result, __u32 sn)
3803 {
3804 struct sctp_strreset_resp resp;
3805 __u16 length = sizeof(resp);
3806 struct sctp_chunk *retval;
3807
3808 retval = sctp_make_reconf(asoc, length);
3809 if (!retval)
3810 return NULL;
3811
3812 resp.param_hdr.type = SCTP_PARAM_RESET_RESPONSE;
3813 resp.param_hdr.length = htons(length);
3814 resp.response_seq = htonl(sn);
3815 resp.result = htonl(result);
3816
3817 sctp_addto_chunk(retval, sizeof(resp), &resp);
3818
3819 return retval;
3820 }
3821
3822 /* RE-CONFIG 4.4 OPTIONAL (TSNRESP)
3823 * 0 1 2 3
3824 * 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
3825 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3826 * | Parameter Type = 16 | Parameter Length |
3827 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3828 * | Re-configuration Response Sequence Number |
3829 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3830 * | Result |
3831 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3832 * | Sender's Next TSN (optional) |
3833 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3834 * | Receiver's Next TSN (optional) |
3835 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
3836 */
sctp_make_strreset_tsnresp(struct sctp_association * asoc,__u32 result,__u32 sn,__u32 sender_tsn,__u32 receiver_tsn)3837 struct sctp_chunk *sctp_make_strreset_tsnresp(struct sctp_association *asoc,
3838 __u32 result, __u32 sn,
3839 __u32 sender_tsn,
3840 __u32 receiver_tsn)
3841 {
3842 struct sctp_strreset_resptsn tsnresp;
3843 __u16 length = sizeof(tsnresp);
3844 struct sctp_chunk *retval;
3845
3846 retval = sctp_make_reconf(asoc, length);
3847 if (!retval)
3848 return NULL;
3849
3850 tsnresp.param_hdr.type = SCTP_PARAM_RESET_RESPONSE;
3851 tsnresp.param_hdr.length = htons(length);
3852
3853 tsnresp.response_seq = htonl(sn);
3854 tsnresp.result = htonl(result);
3855 tsnresp.senders_next_tsn = htonl(sender_tsn);
3856 tsnresp.receivers_next_tsn = htonl(receiver_tsn);
3857
3858 sctp_addto_chunk(retval, sizeof(tsnresp), &tsnresp);
3859
3860 return retval;
3861 }
3862
sctp_verify_reconf(const struct sctp_association * asoc,struct sctp_chunk * chunk,struct sctp_paramhdr ** errp)3863 bool sctp_verify_reconf(const struct sctp_association *asoc,
3864 struct sctp_chunk *chunk,
3865 struct sctp_paramhdr **errp)
3866 {
3867 struct sctp_reconf_chunk *hdr;
3868 union sctp_params param;
3869 __be16 last = 0;
3870 __u16 cnt = 0;
3871
3872 hdr = (struct sctp_reconf_chunk *)chunk->chunk_hdr;
3873 sctp_walk_params(param, hdr) {
3874 __u16 length = ntohs(param.p->length);
3875
3876 *errp = param.p;
3877 if (cnt++ > 2)
3878 return false;
3879 switch (param.p->type) {
3880 case SCTP_PARAM_RESET_OUT_REQUEST:
3881 if (length < sizeof(struct sctp_strreset_outreq) ||
3882 (last && last != SCTP_PARAM_RESET_RESPONSE &&
3883 last != SCTP_PARAM_RESET_IN_REQUEST))
3884 return false;
3885 break;
3886 case SCTP_PARAM_RESET_IN_REQUEST:
3887 if (length < sizeof(struct sctp_strreset_inreq) ||
3888 (last && last != SCTP_PARAM_RESET_OUT_REQUEST))
3889 return false;
3890 break;
3891 case SCTP_PARAM_RESET_RESPONSE:
3892 if ((length != sizeof(struct sctp_strreset_resp) &&
3893 length != sizeof(struct sctp_strreset_resptsn)) ||
3894 (last && last != SCTP_PARAM_RESET_RESPONSE &&
3895 last != SCTP_PARAM_RESET_OUT_REQUEST))
3896 return false;
3897 break;
3898 case SCTP_PARAM_RESET_TSN_REQUEST:
3899 if (length !=
3900 sizeof(struct sctp_strreset_tsnreq) || last)
3901 return false;
3902 break;
3903 case SCTP_PARAM_RESET_ADD_IN_STREAMS:
3904 if (length != sizeof(struct sctp_strreset_addstrm) ||
3905 (last && last != SCTP_PARAM_RESET_ADD_OUT_STREAMS))
3906 return false;
3907 break;
3908 case SCTP_PARAM_RESET_ADD_OUT_STREAMS:
3909 if (length != sizeof(struct sctp_strreset_addstrm) ||
3910 (last && last != SCTP_PARAM_RESET_ADD_IN_STREAMS))
3911 return false;
3912 break;
3913 default:
3914 return false;
3915 }
3916
3917 last = param.p->type;
3918 }
3919
3920 return true;
3921 }
3922