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60c778b2 1/* SCTP kernel implementation
1da177e4
LT
2 * (C) Copyright IBM Corp. 2001, 2004
3 * Copyright (c) 1999-2000 Cisco, Inc.
4 * Copyright (c) 1999-2001 Motorola, Inc.
5 * Copyright (c) 2001 Intel Corp.
6 *
60c778b2 7 * This file is part of the SCTP kernel implementation
1da177e4 8 *
60c778b2 9 * This SCTP implementation is free software;
1da177e4
LT
10 * you can redistribute it and/or modify it under the terms of
11 * the GNU General Public License as published by
12 * the Free Software Foundation; either version 2, or (at your option)
13 * any later version.
14 *
60c778b2 15 * This SCTP implementation is distributed in the hope that it
1da177e4
LT
16 * will be useful, but WITHOUT ANY WARRANTY; without even the implied
17 * ************************
18 * warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
19 * See the GNU General Public License for more details.
20 *
21 * You should have received a copy of the GNU General Public License
22 * along with GNU CC; see the file COPYING. If not, write to
23 * the Free Software Foundation, 59 Temple Place - Suite 330,
24 * Boston, MA 02111-1307, USA.
25 *
26 * Please send any bug reports or fixes you make to the
27 * email addresses:
28 * lksctp developers <lksctp-developers@lists.sourceforge.net>
29 *
30 * Or submit a bug report through the following website:
31 * http://www.sf.net/projects/lksctp
32 *
33 * Written or modified by:
34 * Randall Stewart <randall@sctp.chicago.il.us>
35 * Ken Morneau <kmorneau@cisco.com>
36 * Qiaobing Xie <qxie1@email.mot.com>
37 * La Monte H.P. Yarroll <piggy@acm.org>
38 * Karl Knutson <karl@athena.chicago.il.us>
39 * Jon Grimm <jgrimm@us.ibm.com>
40 * Xingang Guo <xingang.guo@intel.com>
41 * Hui Huang <hui.huang@nokia.com>
42 * Sridhar Samudrala <sri@us.ibm.com>
43 * Daisy Chang <daisyc@us.ibm.com>
44 * Dajiang Zhang <dajiang.zhang@nokia.com>
45 * Ardelle Fan <ardelle.fan@intel.com>
46 * Ryan Layer <rmlayer@us.ibm.com>
47 * Anup Pemmaiah <pemmaiah@cc.usu.edu>
48 * Kevin Gao <kevin.gao@intel.com>
49 *
50 * Any bugs reported given to us we will try to fix... any fixes shared will
51 * be incorporated into the next SCTP release.
52 */
53
54#ifndef __sctp_structs_h__
55#define __sctp_structs_h__
56
57#include <linux/time.h> /* We get struct timespec. */
58#include <linux/socket.h> /* linux/in.h needs this!! */
59#include <linux/in.h> /* We get struct sockaddr_in. */
60#include <linux/in6.h> /* We get struct in6_addr */
61#include <linux/ipv6.h>
62#include <asm/param.h> /* We get MAXHOSTNAMELEN. */
60063497 63#include <linux/atomic.h> /* This gets us atomic counters. */
1da177e4
LT
64#include <linux/skbuff.h> /* We need sk_buff_head. */
65#include <linux/workqueue.h> /* We need tq_struct. */
66#include <linux/sctp.h> /* We need sctp* header structs. */
1f485649 67#include <net/sctp/auth.h> /* We need auth specific structs */
1da177e4
LT
68
69/* A convenience structure for handling sockaddr structures.
70 * We should wean ourselves off this.
71 */
72union sctp_addr {
73 struct sockaddr_in v4;
74 struct sockaddr_in6 v6;
75 struct sockaddr sa;
76};
77
78/* Forward declarations for data structures. */
79struct sctp_globals;
80struct sctp_endpoint;
81struct sctp_association;
82struct sctp_transport;
83struct sctp_packet;
84struct sctp_chunk;
85struct sctp_inq;
86struct sctp_outq;
87struct sctp_bind_addr;
88struct sctp_ulpq;
89struct sctp_ep_common;
90struct sctp_ssnmap;
1b489e11 91struct crypto_hash;
1da177e4
LT
92
93
94#include <net/sctp/tsnmap.h>
95#include <net/sctp/ulpevent.h>
96#include <net/sctp/ulpqueue.h>
97
98/* Structures useful for managing bind/connect. */
99
100struct sctp_bind_bucket {
101 unsigned short port;
102 unsigned short fastreuse;
d970dbf8 103 struct hlist_node node;
1da177e4 104 struct hlist_head owner;
f1f43763 105 struct net *net;
1da177e4
LT
106};
107
108struct sctp_bind_hashbucket {
109 spinlock_t lock;
d970dbf8 110 struct hlist_head chain;
1da177e4
LT
111};
112
113/* Used for hashing all associations. */
114struct sctp_hashbucket {
115 rwlock_t lock;
d970dbf8 116 struct hlist_head chain;
1da177e4
LT
117} __attribute__((__aligned__(8)));
118
119
120/* The SCTP globals structure. */
121extern struct sctp_globals {
1da177e4
LT
122 /* The following variables are implementation specific. */
123
124 /* Default initialization values to be applied to new associations. */
125 __u16 max_instreams;
126 __u16 max_outstreams;
127
128 /* This is a list of groups of functions for each address
129 * family that we support.
130 */
131 struct list_head address_families;
132
133 /* This is the hash of all endpoints. */
134 int ep_hashsize;
135 struct sctp_hashbucket *ep_hashtable;
136
137 /* This is the hash of all associations. */
138 int assoc_hashsize;
139 struct sctp_hashbucket *assoc_hashtable;
140
141 /* This is the sctp port control hash. */
142 int port_hashsize;
1da177e4
LT
143 struct sctp_bind_hashbucket *port_hashtable;
144
06e86806
LN
145 /* Flag to indicate whether computing and verifying checksum
146 * is disabled. */
eb939922 147 bool checksum_disable;
1da177e4
LT
148} sctp_globals;
149
1da177e4
LT
150#define sctp_max_instreams (sctp_globals.max_instreams)
151#define sctp_max_outstreams (sctp_globals.max_outstreams)
152#define sctp_address_families (sctp_globals.address_families)
153#define sctp_ep_hashsize (sctp_globals.ep_hashsize)
154#define sctp_ep_hashtable (sctp_globals.ep_hashtable)
155#define sctp_assoc_hashsize (sctp_globals.assoc_hashsize)
156#define sctp_assoc_hashtable (sctp_globals.assoc_hashtable)
157#define sctp_port_hashsize (sctp_globals.port_hashsize)
1da177e4 158#define sctp_port_hashtable (sctp_globals.port_hashtable)
06e86806 159#define sctp_checksum_disable (sctp_globals.checksum_disable)
1da177e4
LT
160
161/* SCTP Socket type: UDP or TCP style. */
162typedef enum {
163 SCTP_SOCKET_UDP = 0,
164 SCTP_SOCKET_UDP_HIGH_BANDWIDTH,
165 SCTP_SOCKET_TCP
166} sctp_socket_type_t;
167
168/* Per socket SCTP information. */
169struct sctp_sock {
170 /* inet_sock has to be the first member of sctp_sock */
171 struct inet_sock inet;
172 /* What kind of a socket is this? */
173 sctp_socket_type_t type;
174
175 /* PF_ family specific functions. */
176 struct sctp_pf *pf;
177
178 /* Access to HMAC transform. */
1b489e11 179 struct crypto_hash *hmac;
3c68198e 180 char *sctp_hmac_alg;
1da177e4
LT
181
182 /* What is our base endpointer? */
183 struct sctp_endpoint *ep;
184
185 struct sctp_bind_bucket *bind_hash;
186 /* Various Socket Options. */
187 __u16 default_stream;
188 __u32 default_ppid;
189 __u16 default_flags;
190 __u32 default_context;
191 __u32 default_timetolive;
6ab792f5 192 __u32 default_rcv_context;
70331571 193 int max_burst;
1da177e4 194
52ccb8e9
FF
195 /* Heartbeat interval: The endpoint sends out a Heartbeat chunk to
196 * the destination address every heartbeat interval. This value
197 * will be inherited by all new associations.
198 */
199 __u32 hbinterval;
200
201 /* This is the max_retrans value for new associations. */
202 __u16 pathmaxrxt;
203
204 /* The initial Path MTU to use for new associations. */
205 __u32 pathmtu;
206
207 /* The default SACK delay timeout for new associations. */
208 __u32 sackdelay;
d364d927 209 __u32 sackfreq;
52ccb8e9 210
f4ab2f72 211 /* Flags controlling Heartbeat, SACK delay, and Path MTU Discovery. */
52ccb8e9
FF
212 __u32 param_flags;
213
1da177e4
LT
214 struct sctp_initmsg initmsg;
215 struct sctp_rtoinfo rtoinfo;
216 struct sctp_paddrparams paddrparam;
217 struct sctp_event_subscribe subscribe;
218 struct sctp_assocparams assocparams;
219 int user_frag;
220 __u32 autoclose;
221 __u8 nodelay;
222 __u8 disable_fragments;
1da177e4 223 __u8 v4mapped;
b6e1331f 224 __u8 frag_interleave;
0f3fffd8 225 __u32 adaptation_ind;
d49d91d7 226 __u32 pd_point;
1da177e4 227
b6e1331f 228 atomic_t pd_mode;
1da177e4
LT
229 /* Receive to here while partial delivery is in effect. */
230 struct sk_buff_head pd_lobby;
9f7d653b
MH
231 struct list_head auto_asconf_list;
232 int do_auto_asconf;
1da177e4
LT
233};
234
235static inline struct sctp_sock *sctp_sk(const struct sock *sk)
236{
237 return (struct sctp_sock *)sk;
238}
239
240static inline struct sock *sctp_opt2sk(const struct sctp_sock *sp)
241{
242 return (struct sock *)sp;
243}
244
dfd56b8b 245#if IS_ENABLED(CONFIG_IPV6)
1da177e4
LT
246struct sctp6_sock {
247 struct sctp_sock sctp;
248 struct ipv6_pinfo inet6;
249};
250#endif /* CONFIG_IPV6 */
251
252
253/* This is our APPLICATION-SPECIFIC state cookie.
254 * THIS IS NOT DICTATED BY THE SPECIFICATION.
255 */
256/* These are the parts of an association which we send in the cookie.
257 * Most of these are straight out of:
258 * RFC2960 12.2 Parameters necessary per association (i.e. the TCB)
259 *
260 */
261
262struct sctp_cookie {
263
264 /* My : Tag expected in every inbound packet and sent
265 * Verification: in the INIT or INIT ACK chunk.
266 * Tag :
267 */
268 __u32 my_vtag;
269
270 /* Peer's : Tag expected in every outbound packet except
271 * Verification: in the INIT chunk.
272 * Tag :
273 */
274 __u32 peer_vtag;
275
276 /* The rest of these are not from the spec, but really need to
277 * be in the cookie.
278 */
279
280 /* My Tie Tag : Assist in discovering a restarting association. */
281 __u32 my_ttag;
282
283 /* Peer's Tie Tag: Assist in discovering a restarting association. */
284 __u32 peer_ttag;
285
286 /* When does this cookie expire? */
287 struct timeval expiration;
288
289 /* Number of inbound/outbound streams which are set
290 * and negotiated during the INIT process.
291 */
292 __u16 sinit_num_ostreams;
293 __u16 sinit_max_instreams;
294
295 /* This is the first sequence number I used. */
296 __u32 initial_tsn;
297
298 /* This holds the originating address of the INIT packet. */
299 union sctp_addr peer_addr;
300
301 /* IG Section 2.35.3
302 * Include the source port of the INIT-ACK
303 */
304 __u16 my_port;
305
306 __u8 prsctp_capable;
307
308 /* Padding for future use */
309 __u8 padding;
310
0f3fffd8 311 __u32 adaptation_ind;
1da177e4 312
1f485649 313 __u8 auth_random[sizeof(sctp_paramhdr_t) + SCTP_AUTH_RANDOM_LENGTH];
028dba0a 314 __u8 auth_hmacs[SCTP_AUTH_NUM_HMACS * sizeof(__u16) + 2];
1f485649 315 __u8 auth_chunks[sizeof(sctp_paramhdr_t) + SCTP_AUTH_MAX_CHUNKS];
1da177e4
LT
316
317 /* This is a shim for my peer's INIT packet, followed by
318 * a copy of the raw address list of the association.
319 * The length of the raw address list is saved in the
320 * raw_addr_list_len field, which will be used at the time when
321 * the association TCB is re-constructed from the cookie.
322 */
323 __u32 raw_addr_list_len;
324 struct sctp_init_chunk peer_init[0];
325};
326
327
328/* The format of our cookie that we send to our peer. */
329struct sctp_signed_cookie {
330 __u8 signature[SCTP_SECRET_SIZE];
9834a2bb 331 __u32 __pad; /* force sctp_cookie alignment to 64 bits */
1da177e4 332 struct sctp_cookie c;
bc10502d 333} __packed;
1da177e4
LT
334
335/* This is another convenience type to allocate memory for address
336 * params for the maximum size and pass such structures around
337 * internally.
338 */
339union sctp_addr_param {
6f4c618d 340 struct sctp_paramhdr p;
1da177e4
LT
341 struct sctp_ipv4addr_param v4;
342 struct sctp_ipv6addr_param v6;
343};
344
345/* A convenience type to allow walking through the various
346 * parameters and avoid casting all over the place.
347 */
348union sctp_params {
349 void *v;
350 struct sctp_paramhdr *p;
351 struct sctp_cookie_preserve_param *life;
352 struct sctp_hostname_param *dns;
353 struct sctp_cookie_param *cookie;
354 struct sctp_supported_addrs_param *sat;
355 struct sctp_ipv4addr_param *v4;
356 struct sctp_ipv6addr_param *v6;
357 union sctp_addr_param *addr;
0f3fffd8 358 struct sctp_adaptation_ind_param *aind;
131a47e3 359 struct sctp_supported_ext_param *ext;
1f485649
VY
360 struct sctp_random_param *random;
361 struct sctp_chunks_param *chunks;
362 struct sctp_hmac_algo_param *hmac_algo;
d6de3097 363 struct sctp_addip_param *addip;
1da177e4
LT
364};
365
366/* RFC 2960. Section 3.3.5 Heartbeat.
367 * Heartbeat Information: variable length
368 * The Sender-specific Heartbeat Info field should normally include
369 * information about the sender's current time when this HEARTBEAT
370 * chunk is sent and the destination transport address to which this
371 * HEARTBEAT is sent (see Section 8.3).
372 */
373typedef struct sctp_sender_hb_info {
374 struct sctp_paramhdr param_hdr;
375 union sctp_addr daddr;
376 unsigned long sent_at;
ad8fec17 377 __u64 hb_nonce;
bc10502d 378} __packed sctp_sender_hb_info_t;
1da177e4
LT
379
380/*
381 * RFC 2960 1.3.2 Sequenced Delivery within Streams
382 *
383 * The term "stream" is used in SCTP to refer to a sequence of user
384 * messages that are to be delivered to the upper-layer protocol in
385 * order with respect to other messages within the same stream. This is
386 * in contrast to its usage in TCP, where it refers to a sequence of
387 * bytes (in this document a byte is assumed to be eight bits).
388 * ...
389 *
390 * This is the structure we use to track both our outbound and inbound
391 * SSN, or Stream Sequence Numbers.
392 */
393
394struct sctp_stream {
395 __u16 *ssn;
396 unsigned int len;
397};
398
399struct sctp_ssnmap {
400 struct sctp_stream in;
401 struct sctp_stream out;
1da177e4
LT
402};
403
3182cd84 404struct sctp_ssnmap *sctp_ssnmap_new(__u16 in, __u16 out,
dd0fc66f 405 gfp_t gfp);
1da177e4
LT
406void sctp_ssnmap_free(struct sctp_ssnmap *map);
407void sctp_ssnmap_clear(struct sctp_ssnmap *map);
408
409/* What is the current SSN number for this stream? */
410static inline __u16 sctp_ssn_peek(struct sctp_stream *stream, __u16 id)
411{
412 return stream->ssn[id];
413}
414
415/* Return the next SSN number for this stream. */
416static inline __u16 sctp_ssn_next(struct sctp_stream *stream, __u16 id)
417{
418 return stream->ssn[id]++;
419}
420
421/* Skip over this ssn and all below. */
422static inline void sctp_ssn_skip(struct sctp_stream *stream, __u16 id,
423 __u16 ssn)
424{
425 stream->ssn[id] = ssn+1;
426}
427
428/*
429 * Pointers to address related SCTP functions.
430 * (i.e. things that depend on the address family.)
431 */
432struct sctp_af {
433 int (*sctp_xmit) (struct sk_buff *skb,
f880374c 434 struct sctp_transport *);
1da177e4
LT
435 int (*setsockopt) (struct sock *sk,
436 int level,
437 int optname,
438 char __user *optval,
b7058842 439 unsigned int optlen);
1da177e4
LT
440 int (*getsockopt) (struct sock *sk,
441 int level,
442 int optname,
443 char __user *optval,
444 int __user *optlen);
3fdadf7d
DM
445 int (*compat_setsockopt) (struct sock *sk,
446 int level,
447 int optname,
448 char __user *optval,
b7058842 449 unsigned int optlen);
3fdadf7d
DM
450 int (*compat_getsockopt) (struct sock *sk,
451 int level,
452 int optname,
453 char __user *optval,
454 int __user *optlen);
da0420be 455 void (*get_dst) (struct sctp_transport *t,
9914ae3c
VY
456 union sctp_addr *saddr,
457 struct flowi *fl,
458 struct sock *sk);
e5117101 459 void (*get_saddr) (struct sctp_sock *sk,
9914ae3c 460 struct sctp_transport *t,
9914ae3c 461 struct flowi *fl);
1da177e4
LT
462 void (*copy_addrlist) (struct list_head *,
463 struct net_device *);
1da177e4
LT
464 int (*cmp_addr) (const union sctp_addr *addr1,
465 const union sctp_addr *addr2);
466 void (*addr_copy) (union sctp_addr *dst,
467 union sctp_addr *src);
468 void (*from_skb) (union sctp_addr *,
469 struct sk_buff *skb,
470 int saddr);
471 void (*from_sk) (union sctp_addr *,
472 struct sock *sk);
473 void (*to_sk_saddr) (union sctp_addr *,
474 struct sock *sk);
475 void (*to_sk_daddr) (union sctp_addr *,
476 struct sock *sk);
477 void (*from_addr_param) (union sctp_addr *,
478 union sctp_addr_param *,
dd86d136 479 __be16 port, int iif);
1da177e4
LT
480 int (*to_addr_param) (const union sctp_addr *,
481 union sctp_addr_param *);
482 int (*addr_valid) (union sctp_addr *,
5636bef7
VY
483 struct sctp_sock *,
484 const struct sk_buff *);
1da177e4 485 sctp_scope_t (*scope) (union sctp_addr *);
6fbfa9f9 486 void (*inaddr_any) (union sctp_addr *, __be16);
1da177e4
LT
487 int (*is_any) (const union sctp_addr *);
488 int (*available) (union sctp_addr *,
489 struct sctp_sock *);
490 int (*skb_iif) (const struct sk_buff *sk);
491 int (*is_ce) (const struct sk_buff *sk);
492 void (*seq_dump_addr)(struct seq_file *seq,
493 union sctp_addr *addr);
b9031d9d 494 void (*ecn_capable)(struct sock *sk);
1da177e4
LT
495 __u16 net_header_len;
496 int sockaddr_len;
497 sa_family_t sa_family;
498 struct list_head list;
499};
500
501struct sctp_af *sctp_get_af_specific(sa_family_t);
502int sctp_register_af(struct sctp_af *);
503
504/* Protocol family functions. */
505struct sctp_pf {
506 void (*event_msgname)(struct sctp_ulpevent *, char *, int *);
507 void (*skb_msgname) (struct sk_buff *, char *, int *);
508 int (*af_supported) (sa_family_t, struct sctp_sock *);
509 int (*cmp_addr) (const union sctp_addr *,
510 const union sctp_addr *,
511 struct sctp_sock *);
512 int (*bind_verify) (struct sctp_sock *, union sctp_addr *);
513 int (*send_verify) (struct sctp_sock *, union sctp_addr *);
3dbe8656 514 int (*supported_addrs)(const struct sctp_sock *, __be16 *);
1da177e4
LT
515 struct sock *(*create_accept_sk) (struct sock *sk,
516 struct sctp_association *asoc);
517 void (*addr_v4map) (struct sctp_sock *, union sctp_addr *);
518 struct sctp_af *af;
519};
520
521
522/* Structure to track chunk fragments that have been acked, but peer
523 * fragments of the same message have not.
524 */
525struct sctp_datamsg {
526 /* Chunks waiting to be submitted to lower layer. */
527 struct list_head chunks;
1da177e4
LT
528 /* Reference counting. */
529 atomic_t refcnt;
530 /* When is this message no longer interesting to the peer? */
531 unsigned long expires_at;
532 /* Did the messenge fail to send? */
533 int send_error;
0e3aef8d
VY
534 u8 send_failed:1,
535 can_abandon:1, /* can chunks from this message can be abandoned. */
536 can_delay; /* should this message be Nagle delayed */
1da177e4
LT
537};
538
539struct sctp_datamsg *sctp_datamsg_from_user(struct sctp_association *,
540 struct sctp_sndrcvinfo *,
541 struct msghdr *, int len);
9c5c62be 542void sctp_datamsg_free(struct sctp_datamsg *);
1da177e4 543void sctp_datamsg_put(struct sctp_datamsg *);
1da177e4
LT
544void sctp_chunk_fail(struct sctp_chunk *, int error);
545int sctp_chunk_abandoned(struct sctp_chunk *);
546
1da177e4
LT
547/* RFC2960 1.4 Key Terms
548 *
549 * o Chunk: A unit of information within an SCTP packet, consisting of
550 * a chunk header and chunk-specific content.
551 *
552 * As a matter of convenience, we remember the SCTP common header for
553 * each chunk as well as a few other header pointers...
554 */
555struct sctp_chunk {
79af02c2
DM
556 struct list_head list;
557
1da177e4
LT
558 atomic_t refcnt;
559
560 /* This is our link to the per-transport transmitted list. */
561 struct list_head transmitted_list;
562
563 /* This field is used by chunks that hold fragmented data.
564 * For the first fragment this is the list that holds the rest of
565 * fragments. For the remaining fragments, this is the link to the
566 * frag_list maintained in the first fragment.
567 */
568 struct list_head frag_list;
569
570 /* This points to the sk_buff containing the actual data. */
571 struct sk_buff *skb;
572
573 /* These are the SCTP headers by reverse order in a packet.
574 * Note that some of these may happen more than once. In that
575 * case, we point at the "current" one, whatever that means
576 * for that level of header.
577 */
578
579 /* We point this at the FIRST TLV parameter to chunk_hdr. */
580 union sctp_params param_hdr;
581 union {
582 __u8 *v;
583 struct sctp_datahdr *data_hdr;
584 struct sctp_inithdr *init_hdr;
585 struct sctp_sackhdr *sack_hdr;
586 struct sctp_heartbeathdr *hb_hdr;
587 struct sctp_sender_hb_info *hbs_hdr;
588 struct sctp_shutdownhdr *shutdown_hdr;
589 struct sctp_signed_cookie *cookie_hdr;
590 struct sctp_ecnehdr *ecne_hdr;
591 struct sctp_cwrhdr *ecn_cwr_hdr;
592 struct sctp_errhdr *err_hdr;
593 struct sctp_addiphdr *addip_hdr;
594 struct sctp_fwdtsn_hdr *fwdtsn_hdr;
1f485649 595 struct sctp_authhdr *auth_hdr;
1da177e4
LT
596 } subh;
597
598 __u8 *chunk_end;
599
600 struct sctp_chunkhdr *chunk_hdr;
601 struct sctphdr *sctp_hdr;
602
603 /* This needs to be recoverable for SCTP_SEND_FAILED events. */
604 struct sctp_sndrcvinfo sinfo;
605
606 /* Which association does this belong to? */
607 struct sctp_association *asoc;
608
609 /* What endpoint received this chunk? */
610 struct sctp_ep_common *rcvr;
611
612 /* We fill this in if we are calculating RTT. */
613 unsigned long sent_at;
614
615 /* What is the origin IP address for this chunk? */
616 union sctp_addr source;
617 /* Destination address for this chunk. */
618 union sctp_addr dest;
619
620 /* For outbound message, track all fragments for SEND_FAILED. */
621 struct sctp_datamsg *msg;
622
623 /* For an inbound chunk, this tells us where it came from.
624 * For an outbound chunk, it tells us where we'd like it to
625 * go. It is NULL if we have no preference.
626 */
627 struct sctp_transport *transport;
628
bbd0d598
VY
629 /* SCTP-AUTH: For the special case inbound processing of COOKIE-ECHO
630 * we need save a pointer to the AUTH chunk, since the SCTP-AUTH
631 * spec violates the principle premis that all chunks are processed
632 * in order.
633 */
634 struct sk_buff *auth_chunk;
635
c226ef9b
NH
636#define SCTP_CAN_FRTX 0x0
637#define SCTP_NEED_FRTX 0x1
638#define SCTP_DONT_FRTX 0x2
639 __u16 rtt_in_progress:1, /* This chunk used for RTT calc? */
c226ef9b
NH
640 has_tsn:1, /* Does this chunk have a TSN yet? */
641 has_ssn:1, /* Does this chunk have a SSN yet? */
642 singleton:1, /* Only chunk in the packet? */
643 end_of_packet:1, /* Last chunk in the packet? */
644 ecn_ce_done:1, /* Have we processed the ECN CE bit? */
645 pdiscard:1, /* Discard the whole packet now? */
646 tsn_gap_acked:1, /* Is this chunk acked by a GAP ACK? */
647 data_accepted:1, /* At least 1 chunk accepted */
648 auth:1, /* IN: was auth'ed | OUT: needs auth */
649 has_asconf:1, /* IN: have seen an asconf before */
650 tsn_missing_report:2, /* Data chunk missing counter. */
651 fast_retransmit:2; /* Is this chunk fast retransmitted? */
1da177e4
LT
652};
653
654void sctp_chunk_hold(struct sctp_chunk *);
655void sctp_chunk_put(struct sctp_chunk *);
656int sctp_user_addto_chunk(struct sctp_chunk *chunk, int off, int len,
657 struct iovec *data);
658void sctp_chunk_free(struct sctp_chunk *);
659void *sctp_addto_chunk(struct sctp_chunk *, int len, const void *data);
5fa782c2 660void *sctp_addto_chunk_fixed(struct sctp_chunk *, int len, const void *data);
1da177e4
LT
661struct sctp_chunk *sctp_chunkify(struct sk_buff *,
662 const struct sctp_association *,
663 struct sock *);
664void sctp_init_addrs(struct sctp_chunk *, union sctp_addr *,
665 union sctp_addr *);
666const union sctp_addr *sctp_source(const struct sctp_chunk *chunk);
667
f57d96b2
VY
668enum {
669 SCTP_ADDR_NEW, /* new address added to assoc/ep */
670 SCTP_ADDR_SRC, /* address can be used as source */
671 SCTP_ADDR_DEL, /* address about to be deleted */
672};
673
1da177e4 674/* This is a structure for holding either an IPv6 or an IPv4 address. */
1da177e4
LT
675struct sctp_sockaddr_entry {
676 struct list_head list;
29303547 677 struct rcu_head rcu;
1da177e4 678 union sctp_addr a;
f57d96b2 679 __u8 state;
29303547 680 __u8 valid;
1da177e4
LT
681};
682
9f7d653b
MH
683#define SCTP_ADDRESS_TICK_DELAY 500
684
1da177e4
LT
685typedef struct sctp_chunk *(sctp_packet_phandler_t)(struct sctp_association *);
686
687/* This structure holds lists of chunks as we are assembling for
688 * transmission.
689 */
690struct sctp_packet {
691 /* These are the SCTP header values (host order) for the packet. */
692 __u16 source_port;
693 __u16 destination_port;
694 __u32 vtag;
695
696 /* This contains the payload chunks. */
79af02c2 697 struct list_head chunk_list;
1da177e4
LT
698
699 /* This is the overhead of the sctp and ip headers. */
700 size_t overhead;
701 /* This is the total size of all chunks INCLUDING padding. */
702 size_t size;
703
704 /* The packet is destined for this transport address.
705 * The function we finally use to pass down to the next lower
706 * layer lives in the transport structure.
707 */
708 struct sctp_transport *transport;
709
1f485649
VY
710 /* pointer to the auth chunk for this packet */
711 struct sctp_chunk *auth;
712
a803c942
VY
713 u8 has_cookie_echo:1, /* This packet contains a COOKIE-ECHO chunk. */
714 has_sack:1, /* This packet contains a SACK chunk. */
715 has_auth:1, /* This packet contains an AUTH chunk */
716 has_data:1, /* This packet contains at least 1 DATA chunk */
717 ipfragok:1, /* So let ip fragment this packet */
718 malloced:1; /* Is it malloced? */
1da177e4
LT
719};
720
721struct sctp_packet *sctp_packet_init(struct sctp_packet *,
722 struct sctp_transport *,
723 __u16 sport, __u16 dport);
724struct sctp_packet *sctp_packet_config(struct sctp_packet *, __u32 vtag, int);
725sctp_xmit_t sctp_packet_transmit_chunk(struct sctp_packet *,
2e3216cd 726 struct sctp_chunk *, int);
1da177e4
LT
727sctp_xmit_t sctp_packet_append_chunk(struct sctp_packet *,
728 struct sctp_chunk *);
729int sctp_packet_transmit(struct sctp_packet *);
730void sctp_packet_free(struct sctp_packet *);
731
732static inline int sctp_packet_empty(struct sctp_packet *packet)
733{
a02cec21 734 return packet->size == packet->overhead;
1da177e4
LT
735}
736
737/* This represents a remote transport address.
738 * For local transport addresses, we just use union sctp_addr.
739 *
740 * RFC2960 Section 1.4 Key Terms
741 *
742 * o Transport address: A Transport Address is traditionally defined
743 * by Network Layer address, Transport Layer protocol and Transport
744 * Layer port number. In the case of SCTP running over IP, a
745 * transport address is defined by the combination of an IP address
746 * and an SCTP port number (where SCTP is the Transport protocol).
747 *
748 * RFC2960 Section 7.1 SCTP Differences from TCP Congestion control
749 *
750 * o The sender keeps a separate congestion control parameter set for
751 * each of the destination addresses it can send to (not each
752 * source-destination pair but for each destination). The parameters
753 * should decay if the address is not used for a long enough time
754 * period.
755 *
756 */
757struct sctp_transport {
758 /* A list of transports. */
759 struct list_head transports;
760
761 /* Reference counting. */
762 atomic_t refcnt;
ff937938 763 __u32 dead:1,
c0058a35
VY
764 /* RTO-Pending : A flag used to track if one of the DATA
765 * chunks sent to this address is currently being
766 * used to compute a RTT. If this flag is 0,
767 * the next DATA chunk sent to this destination
768 * should be used to compute a RTT and this flag
769 * should be set. Every time the RTT
770 * calculation completes (i.e. the DATA chunk
771 * is SACK'd) clear this flag.
772 */
773 rto_pending:1,
774
775 /*
776 * hb_sent : a flag that signals that we have a pending
777 * heartbeat.
778 */
779 hb_sent:1,
780
c0058a35
VY
781 /* Is the Path MTU update pending on this tranport */
782 pmtu_pending:1,
783
784 /* Is this structure kfree()able? */
785 malloced:1;
786
4244854d
NH
787 /* Has this transport moved the ctsn since we last sacked */
788 __u32 sack_generation;
789
8663c938 790 struct flowi fl;
1da177e4
LT
791
792 /* This is the peer's IP address and port. */
793 union sctp_addr ipaddr;
794
795 /* These are the functions we call to handle LLP stuff. */
796 struct sctp_af *af_specific;
797
798 /* Which association do we belong to? */
799 struct sctp_association *asoc;
800
801 /* RFC2960
802 *
803 * 12.3 Per Transport Address Data
804 *
805 * For each destination transport address in the peer's
806 * address list derived from the INIT or INIT ACK chunk, a
807 * number of data elements needs to be maintained including:
808 */
1da177e4 809 /* RTO : The current retransmission timeout value. */
8116ffad 810 unsigned long rto;
b6157d8e
VY
811
812 __u32 rtt; /* This is the most recent RTT. */
1da177e4
LT
813
814 /* RTTVAR : The current RTT variation. */
815 __u32 rttvar;
816
817 /* SRTT : The current smoothed round trip time. */
818 __u32 srtt;
819
1da177e4
LT
820 /*
821 * These are the congestion stats.
822 */
823 /* cwnd : The current congestion window. */
824 __u32 cwnd; /* This is the actual cwnd. */
825
826 /* ssthresh : The current slow start threshold value. */
827 __u32 ssthresh;
828
829 /* partial : The tracking method for increase of cwnd when in
830 * bytes acked : congestion avoidance mode (see Section 6.2.2)
831 */
832 __u32 partial_bytes_acked;
833
834 /* Data that has been sent, but not acknowledged. */
835 __u32 flight_size;
836
46d5a808
VY
837 __u32 burst_limited; /* Holds old cwnd when max.burst is applied */
838
1da177e4
LT
839 /* Destination */
840 struct dst_entry *dst;
841 /* Source address. */
842 union sctp_addr saddr;
843
1da177e4
LT
844 /* Heartbeat interval: The endpoint sends out a Heartbeat chunk to
845 * the destination address every heartbeat interval.
846 */
8116ffad 847 unsigned long hbinterval;
52ccb8e9
FF
848
849 /* SACK delay timeout */
8116ffad 850 unsigned long sackdelay;
d364d927 851 __u32 sackfreq;
1da177e4
LT
852
853 /* When was the last time (in jiffies) that we heard from this
854 * transport? We use this to pick new active and retran paths.
855 */
856 unsigned long last_time_heard;
857
858 /* Last time(in jiffies) when cwnd is reduced due to the congestion
859 * indication based on ECNE chunk.
860 */
861 unsigned long last_time_ecne_reduced;
862
8116ffad
VY
863 /* This is the max_retrans value for the transport and will
864 * be initialized from the assocs value. This can be changed
5aa93bcf 865 * using the SCTP_SET_PEER_ADDR_PARAMS socket option.
8116ffad
VY
866 */
867 __u16 pathmaxrxt;
868
5aa93bcf
NH
869 /* This is the partially failed retrans value for the transport
870 * and will be initialized from the assocs value. This can be changed
871 * using the SCTP_PEER_ADDR_THLDS socket option
872 */
873 int pf_retrans;
8116ffad
VY
874 /* PMTU : The current known path MTU. */
875 __u32 pathmtu;
876
f4ab2f72 877 /* Flags controlling Heartbeat, SACK delay, and Path MTU Discovery. */
8116ffad
VY
878 __u32 param_flags;
879
3f7a87d2
FF
880 /* The number of times INIT has been sent on this transport. */
881 int init_sent_count;
882
883 /* state : The current state of this destination,
af901ca1 884 * : i.e. SCTP_ACTIVE, SCTP_INACTIVE, SCTP_UNKNOWN.
1da177e4 885 */
3f7a87d2 886 int state;
1da177e4 887
1da177e4
LT
888 /* These are the error stats for this destination. */
889
890 /* Error count : The current error count for this destination. */
891 unsigned short error_count;
892
1da177e4
LT
893 /* Per : A timer used by each destination.
894 * Destination :
895 * Timer :
896 *
897 * [Everywhere else in the text this is called T3-rtx. -ed]
898 */
899 struct timer_list T3_rtx_timer;
900
901 /* Heartbeat timer is per destination. */
902 struct timer_list hb_timer;
903
50b5d6ad
VY
904 /* Timer to handle ICMP proto unreachable envets */
905 struct timer_list proto_unreach_timer;
906
1da177e4
LT
907 /* Since we're using per-destination retransmission timers
908 * (see above), we're also using per-destination "transmitted"
909 * queues. This probably ought to be a private struct
910 * accessible only within the outqueue, but it's not, yet.
911 */
912 struct list_head transmitted;
913
914 /* We build bundle-able packets for this transport here. */
915 struct sctp_packet packet;
916
917 /* This is the list of transports that have chunks to send. */
918 struct list_head send_ready;
919
1da177e4
LT
920 /* State information saved for SFR_CACC algorithm. The key
921 * idea in SFR_CACC is to maintain state at the sender on a
922 * per-destination basis when a changeover happens.
923 * char changeover_active;
924 * char cycling_changeover;
925 * __u32 next_tsn_at_change;
926 * char cacc_saw_newack;
927 */
928 struct {
929 /* An unsigned integer, which stores the next TSN to be
930 * used by the sender, at the moment of changeover.
931 */
932 __u32 next_tsn_at_change;
933
934 /* A flag which indicates the occurrence of a changeover */
935 char changeover_active;
936
937 /* A flag which indicates whether the change of primary is
938 * the first switch to this destination address during an
939 * active switch.
940 */
941 char cycling_changeover;
942
943 /* A temporary flag, which is used during the processing of
944 * a SACK to estimate the causative TSN(s)'s group.
945 */
946 char cacc_saw_newack;
947 } cacc;
ad8fec17
SS
948
949 /* 64-bit random number sent with heartbeat. */
950 __u64 hb_nonce;
45122ca2
TG
951
952 struct rcu_head rcu;
1da177e4
LT
953};
954
89bf3450 955struct sctp_transport *sctp_transport_new(struct net *, const union sctp_addr *,
dd0fc66f 956 gfp_t);
1da177e4
LT
957void sctp_transport_set_owner(struct sctp_transport *,
958 struct sctp_association *);
959void sctp_transport_route(struct sctp_transport *, union sctp_addr *,
960 struct sctp_sock *);
9914ae3c 961void sctp_transport_pmtu(struct sctp_transport *, struct sock *sk);
1da177e4 962void sctp_transport_free(struct sctp_transport *);
ae19c548 963void sctp_transport_reset_timers(struct sctp_transport *);
1da177e4
LT
964void sctp_transport_hold(struct sctp_transport *);
965void sctp_transport_put(struct sctp_transport *);
966void sctp_transport_update_rto(struct sctp_transport *, __u32);
967void sctp_transport_raise_cwnd(struct sctp_transport *, __u32, __u32);
968void sctp_transport_lower_cwnd(struct sctp_transport *, sctp_lower_cwnd_t);
46d5a808
VY
969void sctp_transport_burst_limited(struct sctp_transport *);
970void sctp_transport_burst_reset(struct sctp_transport *);
1da177e4 971unsigned long sctp_transport_timeout(struct sctp_transport *);
749bf921 972void sctp_transport_reset(struct sctp_transport *);
02f3d4ce 973void sctp_transport_update_pmtu(struct sock *, struct sctp_transport *, u32);
ddc4bbee 974void sctp_transport_immediate_rtx(struct sctp_transport *);
1da177e4
LT
975
976
977/* This is the structure we use to queue packets as they come into
978 * SCTP. We write packets to it and read chunks from it.
979 */
980struct sctp_inq {
981 /* This is actually a queue of sctp_chunk each
982 * containing a partially decoded packet.
983 */
79af02c2 984 struct list_head in_chunk_list;
1da177e4
LT
985 /* This is the packet which is currently off the in queue and is
986 * being worked on through the inbound chunk processing.
987 */
988 struct sctp_chunk *in_progress;
989
990 /* This is the delayed task to finish delivering inbound
991 * messages.
992 */
993 struct work_struct immediate;
1da177e4
LT
994};
995
996void sctp_inq_init(struct sctp_inq *);
997void sctp_inq_free(struct sctp_inq *);
998void sctp_inq_push(struct sctp_inq *, struct sctp_chunk *packet);
999struct sctp_chunk *sctp_inq_pop(struct sctp_inq *);
bbd0d598 1000struct sctp_chunkhdr *sctp_inq_peek(struct sctp_inq *);
c4028958 1001void sctp_inq_set_th_handler(struct sctp_inq *, work_func_t);
1da177e4
LT
1002
1003/* This is the structure we use to hold outbound chunks. You push
1004 * chunks in and they automatically pop out the other end as bundled
1005 * packets (it calls (*output_handler)()).
1006 *
1007 * This structure covers sections 6.3, 6.4, 6.7, 6.8, 6.10, 7., 8.1,
1008 * and 8.2 of the v13 draft.
1009 *
1010 * It handles retransmissions. The connection to the timeout portion
1011 * of the state machine is through sctp_..._timeout() and timeout_handler.
1012 *
1013 * If you feed it SACKs, it will eat them.
1014 *
1015 * If you give it big chunks, it will fragment them.
1016 *
1017 * It assigns TSN's to data chunks. This happens at the last possible
1018 * instant before transmission.
1019 *
1020 * When free()'d, it empties itself out via output_handler().
1021 */
1022struct sctp_outq {
1023 struct sctp_association *asoc;
1024
1025 /* Data pending that has never been transmitted. */
79af02c2 1026 struct list_head out_chunk_list;
1da177e4 1027
95c96174 1028 unsigned int out_qlen; /* Total length of queued data chunks. */
1da177e4
LT
1029
1030 /* Error of send failed, may used in SCTP_SEND_FAILED event. */
95c96174 1031 unsigned int error;
1da177e4
LT
1032
1033 /* These are control chunks we want to send. */
79af02c2 1034 struct list_head control_chunk_list;
1da177e4
LT
1035
1036 /* These are chunks that have been sacked but are above the
1037 * CTSN, or cumulative tsn ack point.
1038 */
1039 struct list_head sacked;
1040
1041 /* Put chunks on this list to schedule them for
1042 * retransmission.
1043 */
1044 struct list_head retransmit;
1045
1046 /* Put chunks on this list to save them for FWD TSN processing as
1047 * they were abandoned.
1048 */
1049 struct list_head abandoned;
1050
1051 /* How many unackd bytes do we have in-flight? */
1052 __u32 outstanding_bytes;
1053
62aeaff5
VY
1054 /* Are we doing fast-rtx on this queue */
1055 char fast_rtx;
1056
1da177e4
LT
1057 /* Corked? */
1058 char cork;
1059
1060 /* Is this structure empty? */
1061 char empty;
1da177e4
LT
1062};
1063
1064void sctp_outq_init(struct sctp_association *, struct sctp_outq *);
1065void sctp_outq_teardown(struct sctp_outq *);
1066void sctp_outq_free(struct sctp_outq*);
1067int sctp_outq_tail(struct sctp_outq *, struct sctp_chunk *chunk);
edfee033 1068int sctp_outq_sack(struct sctp_outq *, struct sctp_chunk *);
1da177e4
LT
1069int sctp_outq_is_empty(const struct sctp_outq *);
1070void sctp_outq_restart(struct sctp_outq *);
1071
1072void sctp_retransmit(struct sctp_outq *, struct sctp_transport *,
1073 sctp_retransmit_reason_t);
1074void sctp_retransmit_mark(struct sctp_outq *, struct sctp_transport *, __u8);
1075int sctp_outq_uncork(struct sctp_outq *);
1076/* Uncork and flush an outqueue. */
1077static inline void sctp_outq_cork(struct sctp_outq *q)
1078{
1079 q->cork = 1;
1080}
1081
1082/* These bind address data fields common between endpoints and associations */
1083struct sctp_bind_addr {
1084
1085 /* RFC 2960 12.1 Parameters necessary for the SCTP instance
1086 *
1087 * SCTP Port: The local SCTP port number the endpoint is
1088 * bound to.
1089 */
1090 __u16 port;
1091
1092 /* RFC 2960 12.1 Parameters necessary for the SCTP instance
1093 *
1094 * Address List: The list of IP addresses that this instance
1095 * has bound. This information is passed to one's
1096 * peer(s) in INIT and INIT ACK chunks.
1097 */
1098 struct list_head address_list;
1099
1100 int malloced; /* Are we kfree()able? */
1101};
1102
1103void sctp_bind_addr_init(struct sctp_bind_addr *, __u16 port);
1104void sctp_bind_addr_free(struct sctp_bind_addr *);
4db67e80 1105int sctp_bind_addr_copy(struct net *net, struct sctp_bind_addr *dest,
1da177e4 1106 const struct sctp_bind_addr *src,
dd0fc66f 1107 sctp_scope_t scope, gfp_t gfp,
3182cd84 1108 int flags);
8e71a11c
VY
1109int sctp_bind_addr_dup(struct sctp_bind_addr *dest,
1110 const struct sctp_bind_addr *src,
1111 gfp_t gfp);
1da177e4 1112int sctp_add_bind_addr(struct sctp_bind_addr *, union sctp_addr *,
f57d96b2 1113 __u8 addr_state, gfp_t gfp);
0ed90fb0 1114int sctp_del_bind_addr(struct sctp_bind_addr *, union sctp_addr *);
1da177e4
LT
1115int sctp_bind_addr_match(struct sctp_bind_addr *, const union sctp_addr *,
1116 struct sctp_sock *);
7dab83de
VY
1117int sctp_bind_addr_conflict(struct sctp_bind_addr *, const union sctp_addr *,
1118 struct sctp_sock *, struct sctp_sock *);
75205f47
VY
1119int sctp_bind_addr_state(const struct sctp_bind_addr *bp,
1120 const union sctp_addr *addr);
1da177e4
LT
1121union sctp_addr *sctp_find_unmatch_addr(struct sctp_bind_addr *bp,
1122 const union sctp_addr *addrs,
1123 int addrcnt,
1124 struct sctp_sock *opt);
1125union sctp_params sctp_bind_addrs_to_raw(const struct sctp_bind_addr *bp,
3182cd84 1126 int *addrs_len,
dd0fc66f 1127 gfp_t gfp);
1da177e4 1128int sctp_raw_to_bind_addrs(struct sctp_bind_addr *bp, __u8 *raw, int len,
dd0fc66f 1129 __u16 port, gfp_t gfp);
1da177e4
LT
1130
1131sctp_scope_t sctp_scope(const union sctp_addr *);
e7ff4a70 1132int sctp_in_scope(struct net *net, const union sctp_addr *addr, const sctp_scope_t scope);
52cae8f0 1133int sctp_is_any(struct sock *sk, const union sctp_addr *addr);
1da177e4 1134int sctp_addr_is_valid(const union sctp_addr *addr);
9f7d653b 1135int sctp_is_ep_boundall(struct sock *sk);
1da177e4
LT
1136
1137
1138/* What type of endpoint? */
1139typedef enum {
1140 SCTP_EP_TYPE_SOCKET,
1141 SCTP_EP_TYPE_ASSOCIATION,
1142} sctp_endpoint_type_t;
1143
1144/*
1145 * A common base class to bridge the implmentation view of a
1146 * socket (usually listening) endpoint versus an association's
1147 * local endpoint.
1148 * This common structure is useful for several purposes:
1149 * 1) Common interface for lookup routines.
1150 * a) Subfunctions work for either endpoint or association
1151 * b) Single interface to lookup allows hiding the lookup lock rather
1152 * than acquiring it externally.
1153 * 2) Common interface for the inbound chunk handling/state machine.
1154 * 3) Common object handling routines for reference counting, etc.
1155 * 4) Disentangle association lookup from endpoint lookup, where we
1156 * do not have to find our endpoint to find our association.
1157 *
1158 */
1159
1160struct sctp_ep_common {
1161 /* Fields to help us manage our entries in the hash tables. */
d970dbf8 1162 struct hlist_node node;
1da177e4
LT
1163 int hashent;
1164
1165 /* Runtime type information. What kind of endpoint is this? */
1166 sctp_endpoint_type_t type;
1167
1168 /* Some fields to help us manage this object.
1169 * refcnt - Reference count access to this object.
1170 * dead - Do not attempt to use this object.
1da177e4
LT
1171 */
1172 atomic_t refcnt;
0022d2dd 1173 bool dead;
1da177e4
LT
1174
1175 /* What socket does this endpoint belong to? */
1176 struct sock *sk;
1177
1178 /* This is where we receive inbound chunks. */
1179 struct sctp_inq inqueue;
1180
1181 /* This substructure includes the defining parameters of the
1182 * endpoint:
1183 * bind_addr.port is our shared port number.
1184 * bind_addr.address_list is our set of local IP addresses.
1185 */
1186 struct sctp_bind_addr bind_addr;
1da177e4
LT
1187};
1188
1189
1190/* RFC Section 1.4 Key Terms
1191 *
1192 * o SCTP endpoint: The logical sender/receiver of SCTP packets. On a
1193 * multi-homed host, an SCTP endpoint is represented to its peers as a
1194 * combination of a set of eligible destination transport addresses to
1195 * which SCTP packets can be sent and a set of eligible source
1196 * transport addresses from which SCTP packets can be received.
1197 * All transport addresses used by an SCTP endpoint must use the
1198 * same port number, but can use multiple IP addresses. A transport
1199 * address used by an SCTP endpoint must not be used by another
1200 * SCTP endpoint. In other words, a transport address is unique
1201 * to an SCTP endpoint.
1202 *
1203 * From an implementation perspective, each socket has one of these.
1204 * A TCP-style socket will have exactly one association on one of
1205 * these. An UDP-style socket will have multiple associations hanging
1206 * off one of these.
1207 */
1208
1209struct sctp_endpoint {
1210 /* Common substructure for endpoint and association. */
1211 struct sctp_ep_common base;
1212
1213 /* Associations: A list of current associations and mappings
1214 * to the data consumers for each association. This
1215 * may be in the form of a hash table or other
1216 * implementation dependent structure. The data
1217 * consumers may be process identification
1218 * information such as file descriptors, named pipe
1219 * pointer, or table pointers dependent on how SCTP
1220 * is implemented.
1221 */
1222 /* This is really a list of struct sctp_association entries. */
1223 struct list_head asocs;
1224
1225 /* Secret Key: A secret key used by this endpoint to compute
1226 * the MAC. This SHOULD be a cryptographic quality
1227 * random number with a sufficient length.
1228 * Discussion in [RFC1750] can be helpful in
1229 * selection of the key.
1230 */
570617e7 1231 __u8 secret_key[SCTP_SECRET_SIZE];
1da177e4 1232
313e7b4d
VY
1233 /* digest: This is a digest of the sctp cookie. This field is
1234 * only used on the receive path when we try to validate
1235 * that the cookie has not been tampered with. We put
1236 * this here so we pre-allocate this once and can re-use
1237 * on every receive.
1238 */
b68dbcab 1239 __u8 *digest;
313e7b4d 1240
4eb701df
NH
1241 /* sendbuf acct. policy. */
1242 __u32 sndbuf_policy;
049b3ff5
NH
1243
1244 /* rcvbuf acct. policy. */
1245 __u32 rcvbuf_policy;
1f485649
VY
1246
1247 /* SCTP AUTH: array of the HMACs that will be allocated
1248 * we need this per association so that we don't serialize
1249 */
1250 struct crypto_hash **auth_hmacs;
1251
1252 /* SCTP-AUTH: hmacs for the endpoint encoded into parameter */
1253 struct sctp_hmac_algo_param *auth_hmacs_list;
1254
1255 /* SCTP-AUTH: chunks to authenticate encoded into parameter */
1256 struct sctp_chunks_param *auth_chunk_list;
1257
1258 /* SCTP-AUTH: endpoint shared keys */
1259 struct list_head endpoint_shared_keys;
1260 __u16 active_key_id;
1da177e4
LT
1261};
1262
1263/* Recover the outter endpoint structure. */
1264static inline struct sctp_endpoint *sctp_ep(struct sctp_ep_common *base)
1265{
1266 struct sctp_endpoint *ep;
1267
1268 ep = container_of(base, struct sctp_endpoint, base);
1269 return ep;
1270}
1271
1272/* These are function signatures for manipulating endpoints. */
dd0fc66f 1273struct sctp_endpoint *sctp_endpoint_new(struct sock *, gfp_t);
1da177e4
LT
1274void sctp_endpoint_free(struct sctp_endpoint *);
1275void sctp_endpoint_put(struct sctp_endpoint *);
1276void sctp_endpoint_hold(struct sctp_endpoint *);
1277void sctp_endpoint_add_asoc(struct sctp_endpoint *, struct sctp_association *);
1278struct sctp_association *sctp_endpoint_lookup_assoc(
1279 const struct sctp_endpoint *ep,
1280 const union sctp_addr *paddr,
1281 struct sctp_transport **);
1282int sctp_endpoint_is_peeled_off(struct sctp_endpoint *,
1283 const union sctp_addr *);
1284struct sctp_endpoint *sctp_endpoint_is_match(struct sctp_endpoint *,
4cdadcbc 1285 struct net *, const union sctp_addr *);
4110cc25 1286int sctp_has_association(struct net *net, const union sctp_addr *laddr,
1da177e4
LT
1287 const union sctp_addr *paddr);
1288
f53b5b09
EB
1289int sctp_verify_init(struct net *net, const struct sctp_association *asoc,
1290 sctp_cid_t, sctp_init_chunk_t *peer_init,
1291 struct sctp_chunk *chunk, struct sctp_chunk **err_chunk);
de6becdc 1292int sctp_process_init(struct sctp_association *, struct sctp_chunk *chunk,
1da177e4 1293 const union sctp_addr *peer,
dd0fc66f 1294 sctp_init_chunk_t *init, gfp_t gfp);
1da177e4
LT
1295__u32 sctp_generate_tag(const struct sctp_endpoint *);
1296__u32 sctp_generate_tsn(const struct sctp_endpoint *);
1297
e1857ea2
AV
1298struct sctp_inithdr_host {
1299 __u32 init_tag;
1300 __u32 a_rwnd;
1301 __u16 num_outbound_streams;
1302 __u16 num_inbound_streams;
1303 __u32 initial_tsn;
1304};
1da177e4 1305
196d6759
MB
1306/* SCTP_GET_ASSOC_STATS counters */
1307struct sctp_priv_assoc_stats {
1308 /* Maximum observed rto in the association during subsequent
1309 * observations. Value is set to 0 if no RTO measurement took place
1310 * The transport where the max_rto was observed is returned in
1311 * obs_rto_ipaddr
1312 */
1313 struct sockaddr_storage obs_rto_ipaddr;
1314 __u64 max_obs_rto;
1315 /* Total In and Out SACKs received and sent */
1316 __u64 isacks;
1317 __u64 osacks;
1318 /* Total In and Out packets received and sent */
1319 __u64 opackets;
1320 __u64 ipackets;
1321 /* Total retransmitted chunks */
1322 __u64 rtxchunks;
1323 /* TSN received > next expected */
1324 __u64 outofseqtsns;
1325 /* Duplicate Chunks received */
1326 __u64 idupchunks;
1327 /* Gap Ack Blocks received */
1328 __u64 gapcnt;
1329 /* Unordered data chunks sent and received */
1330 __u64 ouodchunks;
1331 __u64 iuodchunks;
1332 /* Ordered data chunks sent and received */
1333 __u64 oodchunks;
1334 __u64 iodchunks;
1335 /* Control chunks sent and received */
1336 __u64 octrlchunks;
1337 __u64 ictrlchunks;
1338};
1339
1da177e4
LT
1340/* RFC2960
1341 *
1342 * 12. Recommended Transmission Control Block (TCB) Parameters
1343 *
1344 * This section details a recommended set of parameters that should
1345 * be contained within the TCB for an implementation. This section is
1346 * for illustrative purposes and should not be deemed as requirements
1347 * on an implementation or as an exhaustive list of all parameters
1348 * inside an SCTP TCB. Each implementation may need its own additional
1349 * parameters for optimization.
1350 */
1351
1352
1353/* Here we have information about each individual association. */
1354struct sctp_association {
1355
1356 /* A base structure common to endpoint and association.
1357 * In this context, it represents the associations's view
1358 * of the local endpoint of the association.
1359 */
1360 struct sctp_ep_common base;
1361
1362 /* Associations on the same socket. */
1363 struct list_head asocs;
1364
1365 /* association id. */
1366 sctp_assoc_t assoc_id;
1367
1368 /* This is our parent endpoint. */
1369 struct sctp_endpoint *ep;
1370
1371 /* These are those association elements needed in the cookie. */
1372 struct sctp_cookie c;
1373
1374 /* This is all information about our peer. */
1375 struct {
1376 /* rwnd
1377 *
1378 * Peer Rwnd : Current calculated value of the peer's rwnd.
1379 */
1380 __u32 rwnd;
1381
1382 /* transport_addr_list
1383 *
1384 * Peer : A list of SCTP transport addresses that the
1385 * Transport : peer is bound to. This information is derived
1386 * Address : from the INIT or INIT ACK and is used to
1387 * List : associate an inbound packet with a given
1388 * : association. Normally this information is
1389 * : hashed or keyed for quick lookup and access
1390 * : of the TCB.
3f7a87d2
FF
1391 * : The list is also initialized with the list
1392 * : of addresses passed with the sctp_connectx()
1393 * : call.
1da177e4
LT
1394 *
1395 * It is a list of SCTP_transport's.
1396 */
1397 struct list_head transport_addr_list;
1398
3f7a87d2
FF
1399 /* transport_count
1400 *
1401 * Peer : A count of the number of peer addresses
1402 * Transport : in the Peer Transport Address List.
1403 * Address :
1404 * Count :
1405 */
1406 __u16 transport_count;
1407
1da177e4
LT
1408 /* port
1409 * The transport layer port number.
1410 */
1411 __u16 port;
1412
1413 /* primary_path
1414 *
1415 * Primary : This is the current primary destination
1416 * Path : transport address of the peer endpoint. It
1417 * : may also specify a source transport address
1418 * : on this endpoint.
1419 *
1420 * All of these paths live on transport_addr_list.
1421 *
1422 * At the bakeoffs, we discovered that the intent of
1423 * primaryPath is that it only changes when the ULP
1424 * asks to have it changed. We add the activePath to
1425 * designate the connection we are currently using to
1426 * transmit new data and most control chunks.
1427 */
1428 struct sctp_transport *primary_path;
1429
1430 /* Cache the primary path address here, when we
1431 * need a an address for msg_name.
1432 */
1433 union sctp_addr primary_addr;
1434
1435 /* active_path
1436 * The path that we are currently using to
1437 * transmit new data and most control chunks.
1438 */
1439 struct sctp_transport *active_path;
1440
1441 /* retran_path
1442 *
1443 * RFC2960 6.4 Multi-homed SCTP Endpoints
1444 * ...
1445 * Furthermore, when its peer is multi-homed, an
1446 * endpoint SHOULD try to retransmit a chunk to an
1447 * active destination transport address that is
1448 * different from the last destination address to
1449 * which the DATA chunk was sent.
1450 */
1451 struct sctp_transport *retran_path;
1452
1453 /* Pointer to last transport I have sent on. */
1454 struct sctp_transport *last_sent_to;
1455
1456 /* This is the last transport I have received DATA on. */
1457 struct sctp_transport *last_data_from;
1458
1459 /*
1460 * Mapping An array of bits or bytes indicating which out of
1461 * Array order TSN's have been received (relative to the
1462 * Last Rcvd TSN). If no gaps exist, i.e. no out of
1463 * order packets have been received, this array
1464 * will be set to all zero. This structure may be
1465 * in the form of a circular buffer or bit array.
1466 *
1467 * Last Rcvd : This is the last TSN received in
1468 * TSN : sequence. This value is set initially by
1469 * : taking the peer's Initial TSN, received in
1470 * : the INIT or INIT ACK chunk, and subtracting
1471 * : one from it.
1472 *
1473 * Throughout most of the specification this is called the
1474 * "Cumulative TSN ACK Point". In this case, we
1475 * ignore the advice in 12.2 in favour of the term
1476 * used in the bulk of the text. This value is hidden
1477 * in tsn_map--we get it by calling sctp_tsnmap_get_ctsn().
1478 */
1479 struct sctp_tsnmap tsn_map;
1da177e4
LT
1480
1481 /* Ack State : This flag indicates if the next received
1482 * : packet is to be responded to with a
1483 * : SACK. This is initializedto 0. When a packet
1484 * : is received it is incremented. If this value
1485 * : reaches 2 or more, a SACK is sent and the
1486 * : value is reset to 0. Note: This is used only
1487 * : when no DATA chunks are received out of
1488 * : order. When DATA chunks are out of order,
1489 * : SACK's are not delayed (see Section 6).
1490 */
1491 __u8 sack_needed; /* Do we need to sack the peer? */
d364d927 1492 __u32 sack_cnt;
4244854d 1493 __u32 sack_generation;
1da177e4
LT
1494
1495 /* These are capabilities which our peer advertised. */
9237ccbc
WY
1496 __u8 ecn_capable:1, /* Can peer do ECN? */
1497 ipv4_address:1, /* Peer understands IPv4 addresses? */
1498 ipv6_address:1, /* Peer understands IPv6 addresses? */
1499 hostname_address:1, /* Peer understands DNS addresses? */
1500 asconf_capable:1, /* Does peer support ADDIP? */
1501 prsctp_capable:1, /* Can peer do PR-SCTP? */
1502 auth_capable:1; /* Is peer doing SCTP-AUTH? */
1da177e4 1503
0f3fffd8 1504 __u32 adaptation_ind; /* Adaptation Code point. */
1da177e4
LT
1505
1506 /* This mask is used to disable sending the ASCONF chunk
1507 * with specified parameter to peer.
1508 */
dbc16db1 1509 __be16 addip_disabled_mask;
1da177e4 1510
e1857ea2 1511 struct sctp_inithdr_host i;
1da177e4
LT
1512 int cookie_len;
1513 void *cookie;
1514
1515 /* ADDIP Section 4.2 Upon reception of an ASCONF Chunk.
1516 * C1) ... "Peer-Serial-Number'. This value MUST be initialized to the
1517 * Initial TSN Value minus 1
1518 */
1519 __u32 addip_serial;
1f485649
VY
1520
1521 /* SCTP-AUTH: We need to know pears random number, hmac list
1522 * and authenticated chunk list. All that is part of the
1523 * cookie and these are just pointers to those locations
1524 */
1525 sctp_random_param_t *peer_random;
1526 sctp_chunks_param_t *peer_chunks;
1527 sctp_hmac_algo_param_t *peer_hmacs;
1da177e4
LT
1528 } peer;
1529
1530 /* State : A state variable indicating what state the
1531 * : association is in, i.e. COOKIE-WAIT,
1532 * : COOKIE-ECHOED, ESTABLISHED, SHUTDOWN-PENDING,
1533 * : SHUTDOWN-SENT, SHUTDOWN-RECEIVED, SHUTDOWN-ACK-SENT.
1534 *
1535 * Note: No "CLOSED" state is illustrated since if a
1536 * association is "CLOSED" its TCB SHOULD be removed.
1537 *
1538 * In this implementation we DO have a CLOSED
1539 * state which is used during initiation and shutdown.
1540 *
1541 * State takes values from SCTP_STATE_*.
1542 */
1543 sctp_state_t state;
1544
1545 /* The cookie life I award for any cookie. */
1546 struct timeval cookie_life;
1547
1548 /* Overall : The overall association error count.
1549 * Error Count : [Clear this any time I get something.]
1550 */
1551 int overall_error_count;
1552
1553 /* These are the association's initial, max, and min RTO values.
1554 * These values will be initialized by system defaults, but can
1555 * be modified via the SCTP_RTOINFO socket option.
1556 */
8116ffad
VY
1557 unsigned long rto_initial;
1558 unsigned long rto_max;
1559 unsigned long rto_min;
1da177e4
LT
1560
1561 /* Maximum number of new data packets that can be sent in a burst. */
1562 int max_burst;
1563
1564 /* This is the max_retrans value for the association. This value will
1565 * be initialized initialized from system defaults, but can be
1566 * modified by the SCTP_ASSOCINFO socket option.
1567 */
1568 int max_retrans;
1569
5aa93bcf
NH
1570 /* This is the partially failed retrans value for the transport
1571 * and will be initialized from the assocs value. This can be
1572 * changed using the SCTP_PEER_ADDR_THLDS socket option
1573 */
1574 int pf_retrans;
1575
1da177e4
LT
1576 /* Maximum number of times the endpoint will retransmit INIT */
1577 __u16 max_init_attempts;
1578
1579 /* How many times have we resent an INIT? */
1580 __u16 init_retries;
1581
1582 /* The largest timeout or RTO value to use in attempting an INIT */
8116ffad 1583 unsigned long max_init_timeo;
1da177e4 1584
52ccb8e9
FF
1585 /* Heartbeat interval: The endpoint sends out a Heartbeat chunk to
1586 * the destination address every heartbeat interval. This value
1587 * will be inherited by all new transports.
1588 */
8116ffad 1589 unsigned long hbinterval;
52ccb8e9
FF
1590
1591 /* This is the max_retrans value for new transports in the
1592 * association.
1593 */
1594 __u16 pathmaxrxt;
1595
8a479491
VY
1596 /* Flag that path mtu update is pending */
1597 __u8 pmtu_pending;
1598
52ccb8e9
FF
1599 /* Association : The smallest PMTU discovered for all of the
1600 * PMTU : peer's transport addresses.
1601 */
1602 __u32 pathmtu;
1603
f4ab2f72 1604 /* Flags controlling Heartbeat, SACK delay, and Path MTU Discovery. */
52ccb8e9
FF
1605 __u32 param_flags;
1606
8116ffad
VY
1607 /* SACK delay timeout */
1608 unsigned long sackdelay;
d364d927 1609 __u32 sackfreq;
8116ffad
VY
1610
1611
1612 unsigned long timeouts[SCTP_NUM_TIMEOUT_TYPES];
1da177e4
LT
1613 struct timer_list timers[SCTP_NUM_TIMEOUT_TYPES];
1614
1615 /* Transport to which SHUTDOWN chunk was last sent. */
1616 struct sctp_transport *shutdown_last_sent_to;
1617
58fbbed4
NH
1618 /* How many times have we resent a SHUTDOWN */
1619 int shutdown_retries;
1620
3f7a87d2
FF
1621 /* Transport to which INIT chunk was last sent. */
1622 struct sctp_transport *init_last_sent_to;
1623
1da177e4
LT
1624 /* Next TSN : The next TSN number to be assigned to a new
1625 * : DATA chunk. This is sent in the INIT or INIT
1626 * : ACK chunk to the peer and incremented each
1627 * : time a DATA chunk is assigned a TSN
1628 * : (normally just prior to transmit or during
1629 * : fragmentation).
1630 */
1631 __u32 next_tsn;
1632
1633 /*
1634 * Last Rcvd : This is the last TSN received in sequence. This value
1635 * TSN : is set initially by taking the peer's Initial TSN,
1636 * : received in the INIT or INIT ACK chunk, and
1637 * : subtracting one from it.
1638 *
1639 * Most of RFC 2960 refers to this as the Cumulative TSN Ack Point.
1640 */
1641
1642 __u32 ctsn_ack_point;
1643
1644 /* PR-SCTP Advanced.Peer.Ack.Point */
1645 __u32 adv_peer_ack_point;
1646
1647 /* Highest TSN that is acknowledged by incoming SACKs. */
1648 __u32 highest_sacked;
1649
cf9b4812
VY
1650 /* TSN marking the fast recovery exit point */
1651 __u32 fast_recovery_exit;
1652
1653 /* Flag to track the current fast recovery state */
1654 __u8 fast_recovery;
1655
1da177e4
LT
1656 /* The number of unacknowledged data chunks. Reported through
1657 * the SCTP_STATUS sockopt.
1658 */
1659 __u16 unack_data;
1660
58fbbed4
NH
1661 /* The total number of data chunks that we've had to retransmit
1662 * as the result of a T3 timer expiration
1663 */
1664 __u32 rtx_data_chunks;
1665
1da177e4
LT
1666 /* This is the association's receive buffer space. This value is used
1667 * to set a_rwnd field in an INIT or a SACK chunk.
1668 */
1669 __u32 rwnd;
1670
1671 /* This is the last advertised value of rwnd over a SACK chunk. */
1672 __u32 a_rwnd;
1673
1674 /* Number of bytes by which the rwnd has slopped. The rwnd is allowed
1675 * to slop over a maximum of the association's frag_point.
1676 */
1677 __u32 rwnd_over;
1678
4d3c46e6
VY
1679 /* Keeps treack of rwnd pressure. This happens when we have
1680 * a window, but not recevie buffer (i.e small packets). This one
1681 * is releases slowly (1 PMTU at a time ).
1682 */
1683 __u32 rwnd_press;
1684
1da177e4
LT
1685 /* This is the sndbuf size in use for the association.
1686 * This corresponds to the sndbuf size for the association,
1687 * as specified in the sk->sndbuf.
1688 */
1689 int sndbuf_used;
1690
049b3ff5
NH
1691 /* This is the amount of memory that this association has allocated
1692 * in the receive path at any given time.
1693 */
1694 atomic_t rmem_alloc;
1695
1da177e4
LT
1696 /* This is the wait queue head for send requests waiting on
1697 * the association sndbuf space.
1698 */
1699 wait_queue_head_t wait;
1700
1da177e4
LT
1701 /* The message size at which SCTP fragmentation will occur. */
1702 __u32 frag_point;
f68b2e05 1703 __u32 user_frag;
1da177e4 1704
3f7a87d2
FF
1705 /* Counter used to count INIT errors. */
1706 int init_err_counter;
1707
1708 /* Count the number of INIT cycles (for doubling timeout). */
1709 int init_cycle;
1da177e4
LT
1710
1711 /* Default send parameters. */
1712 __u16 default_stream;
1713 __u16 default_flags;
1714 __u32 default_ppid;
1715 __u32 default_context;
1716 __u32 default_timetolive;
1717
6ab792f5
ISJ
1718 /* Default receive parameters */
1719 __u32 default_rcv_context;
1720
1da177e4
LT
1721 /* This tracks outbound ssn for a given stream. */
1722 struct sctp_ssnmap *ssnmap;
1723
1724 /* All outbound chunks go through this structure. */
1725 struct sctp_outq outqueue;
1726
1727 /* A smart pipe that will handle reordering and fragmentation,
1728 * as well as handle passing events up to the ULP.
1729 */
1730 struct sctp_ulpq ulpq;
1731
1732 /* Last TSN that caused an ECNE Chunk to be sent. */
1733 __u32 last_ecne_tsn;
1734
1735 /* Last TSN that caused a CWR Chunk to be sent. */
1736 __u32 last_cwr_tsn;
1737
1738 /* How many duplicated TSNs have we seen? */
1739 int numduptsns;
1740
8116ffad
VY
1741 /* Number of seconds of idle time before an association is closed.
1742 * In the association context, this is really used as a boolean
1743 * since the real timeout is stored in the timeouts array
1744 */
1da177e4
LT
1745 __u32 autoclose;
1746
1747 /* These are to support
1748 * "SCTP Extensions for Dynamic Reconfiguration of IP Addresses
1749 * and Enforcement of Flow and Message Limits"
1750 * <draft-ietf-tsvwg-addip-sctp-02.txt>
1751 * or "ADDIP" for short.
1752 */
1753
1754
1755
1756 /* ADDIP Section 4.1.1 Congestion Control of ASCONF Chunks
1757 *
1758 * R1) One and only one ASCONF Chunk MAY be in transit and
1759 * unacknowledged at any one time. If a sender, after sending
1760 * an ASCONF chunk, decides it needs to transfer another
1761 * ASCONF Chunk, it MUST wait until the ASCONF-ACK Chunk
1762 * returns from the previous ASCONF Chunk before sending a
1763 * subsequent ASCONF. Note this restriction binds each side,
1764 * so at any time two ASCONF may be in-transit on any given
1765 * association (one sent from each endpoint).
1766 *
1767 * [This is our one-and-only-one ASCONF in flight. If we do
1768 * not have an ASCONF in flight, this is NULL.]
1769 */
1770 struct sctp_chunk *addip_last_asconf;
1771
a08de64d 1772 /* ADDIP Section 5.2 Upon reception of an ASCONF Chunk.
1da177e4 1773 *
a08de64d
VY
1774 * This is needed to implement itmes E1 - E4 of the updated
1775 * spec. Here is the justification:
1da177e4 1776 *
a08de64d
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1777 * Since the peer may bundle multiple ASCONF chunks toward us,
1778 * we now need the ability to cache multiple ACKs. The section
1779 * describes in detail how they are cached and cleaned up.
1da177e4 1780 */
a08de64d 1781 struct list_head asconf_ack_list;
1da177e4
LT
1782
1783 /* These ASCONF chunks are waiting to be sent.
1784 *
1785 * These chunaks can't be pushed to outqueue until receiving
1786 * ASCONF_ACK for the previous ASCONF indicated by
1787 * addip_last_asconf, so as to guarantee that only one ASCONF
1788 * is in flight at any time.
1789 *
1790 * ADDIP Section 4.1.1 Congestion Control of ASCONF Chunks
1791 *
1792 * In defining the ASCONF Chunk transfer procedures, it is
1793 * essential that these transfers MUST NOT cause congestion
1794 * within the network. To achieve this, we place these
1795 * restrictions on the transfer of ASCONF Chunks:
1796 *
1797 * R1) One and only one ASCONF Chunk MAY be in transit and
1798 * unacknowledged at any one time. If a sender, after sending
1799 * an ASCONF chunk, decides it needs to transfer another
1800 * ASCONF Chunk, it MUST wait until the ASCONF-ACK Chunk
1801 * returns from the previous ASCONF Chunk before sending a
1802 * subsequent ASCONF. Note this restriction binds each side,
1803 * so at any time two ASCONF may be in-transit on any given
1804 * association (one sent from each endpoint).
1805 *
1806 *
1807 * [I really think this is EXACTLY the sort of intelligence
1808 * which already resides in sctp_outq. Please move this
1809 * queue and its supporting logic down there. --piggy]
1810 */
79af02c2 1811 struct list_head addip_chunk_list;
1da177e4
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1812
1813 /* ADDIP Section 4.1 ASCONF Chunk Procedures
1814 *
1815 * A2) A serial number should be assigned to the Chunk. The
1816 * serial number SHOULD be a monotonically increasing
1817 * number. The serial number SHOULD be initialized at
1818 * the start of the association to the same value as the
1819 * Initial TSN and every time a new ASCONF chunk is created
1820 * it is incremented by one after assigning the serial number
1821 * to the newly created chunk.
1822 *
1823 * ADDIP
1824 * 3.1.1 Address/Stream Configuration Change Chunk (ASCONF)
1825 *
1826 * Serial Number : 32 bits (unsigned integer)
1827 *
1828 * This value represents a Serial Number for the ASCONF
1829 * Chunk. The valid range of Serial Number is from 0 to
1830 * 4294967295 (2^32 - 1). Serial Numbers wrap back to 0
1831 * after reaching 4294967295.
1832 */
1833 __u32 addip_serial;
8a07eb0a
MH
1834 union sctp_addr *asconf_addr_del_pending;
1835 int src_out_of_asoc_ok;
6af29ccc 1836 struct sctp_transport *new_transport;
1da177e4 1837
1f485649
VY
1838 /* SCTP AUTH: list of the endpoint shared keys. These
1839 * keys are provided out of band by the user applicaton
1840 * and can't change during the lifetime of the association
1841 */
1842 struct list_head endpoint_shared_keys;
1843
1844 /* SCTP AUTH:
1845 * The current generated assocaition shared key (secret)
1846 */
1847 struct sctp_auth_bytes *asoc_shared_key;
1848
1849 /* SCTP AUTH: hmac id of the first peer requested algorithm
1850 * that we support.
1851 */
1852 __u16 default_hmac_id;
1853
1854 __u16 active_key_id;
1855
9237ccbc
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1856 __u8 need_ecne:1, /* Need to send an ECNE Chunk? */
1857 temp:1; /* Is it a temporary association? */
196d6759
MB
1858
1859 struct sctp_priv_assoc_stats stats;
1da177e4
LT
1860};
1861
1862
1863/* An eyecatcher for determining if we are really looking at an
1864 * association data structure.
1865 */
1866enum {
1867 SCTP_ASSOC_EYECATCHER = 0xa550c123,
1868};
1869
1870/* Recover the outter association structure. */
1871static inline struct sctp_association *sctp_assoc(struct sctp_ep_common *base)
1872{
1873 struct sctp_association *asoc;
1874
1875 asoc = container_of(base, struct sctp_association, base);
1876 return asoc;
1877}
1878
1879/* These are function signatures for manipulating associations. */
1880
1881
1882struct sctp_association *
1883sctp_association_new(const struct sctp_endpoint *, const struct sock *,
dd0fc66f 1884 sctp_scope_t scope, gfp_t gfp);
1da177e4
LT
1885void sctp_association_free(struct sctp_association *);
1886void sctp_association_put(struct sctp_association *);
1887void sctp_association_hold(struct sctp_association *);
1888
9919b455
WY
1889struct sctp_transport *sctp_assoc_choose_alter_transport(
1890 struct sctp_association *, struct sctp_transport *);
1da177e4
LT
1891void sctp_assoc_update_retran_path(struct sctp_association *);
1892struct sctp_transport *sctp_assoc_lookup_paddr(const struct sctp_association *,
1893 const union sctp_addr *);
1894int sctp_assoc_lookup_laddr(struct sctp_association *asoc,
1895 const union sctp_addr *laddr);
1896struct sctp_transport *sctp_assoc_add_peer(struct sctp_association *,
1897 const union sctp_addr *address,
dd0fc66f 1898 const gfp_t gfp,
3f7a87d2 1899 const int peer_state);
1da177e4
LT
1900void sctp_assoc_del_peer(struct sctp_association *asoc,
1901 const union sctp_addr *addr);
3f7a87d2
FF
1902void sctp_assoc_rm_peer(struct sctp_association *asoc,
1903 struct sctp_transport *peer);
1da177e4
LT
1904void sctp_assoc_control_transport(struct sctp_association *,
1905 struct sctp_transport *,
1906 sctp_transport_cmd_t, sctp_sn_error_t);
1907struct sctp_transport *sctp_assoc_lookup_tsn(struct sctp_association *, __u32);
1908struct sctp_transport *sctp_assoc_is_match(struct sctp_association *,
4110cc25 1909 struct net *,
1da177e4
LT
1910 const union sctp_addr *,
1911 const union sctp_addr *);
1912void sctp_assoc_migrate(struct sctp_association *, struct sock *);
1913void sctp_assoc_update(struct sctp_association *old,
1914 struct sctp_association *new);
1915
1916__u32 sctp_association_get_next_tsn(struct sctp_association *);
1917
02f3d4ce 1918void sctp_assoc_sync_pmtu(struct sock *, struct sctp_association *);
95c96174
ED
1919void sctp_assoc_rwnd_increase(struct sctp_association *, unsigned int);
1920void sctp_assoc_rwnd_decrease(struct sctp_association *, unsigned int);
1da177e4
LT
1921void sctp_assoc_set_primary(struct sctp_association *,
1922 struct sctp_transport *);
42e30bf3
VY
1923void sctp_assoc_del_nonprimary_peers(struct sctp_association *,
1924 struct sctp_transport *);
3182cd84 1925int sctp_assoc_set_bind_addr_from_ep(struct sctp_association *,
409b95af 1926 sctp_scope_t, gfp_t);
1da177e4 1927int sctp_assoc_set_bind_addr_from_cookie(struct sctp_association *,
3182cd84 1928 struct sctp_cookie*,
dd0fc66f 1929 gfp_t gfp);
07d93967 1930int sctp_assoc_set_id(struct sctp_association *, gfp_t);
a08de64d
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1931void sctp_assoc_clean_asconf_ack_cache(const struct sctp_association *asoc);
1932struct sctp_chunk *sctp_assoc_lookup_asconf_ack(
1933 const struct sctp_association *asoc,
1934 __be32 serial);
a000c01e 1935void sctp_asconf_queue_teardown(struct sctp_association *asoc);
1da177e4
LT
1936
1937int sctp_cmp_addr_exact(const union sctp_addr *ss1,
1938 const union sctp_addr *ss2);
1939struct sctp_chunk *sctp_get_ecne_prepend(struct sctp_association *asoc);
1940
1941/* A convenience structure to parse out SCTP specific CMSGs. */
1942typedef struct sctp_cmsgs {
1943 struct sctp_initmsg *init;
1944 struct sctp_sndrcvinfo *info;
1945} sctp_cmsgs_t;
1946
1947/* Structure for tracking memory objects */
1948typedef struct {
1949 char *label;
1950 atomic_t *counter;
1951} sctp_dbg_objcnt_entry_t;
1952
1953#endif /* __sctp_structs_h__ */