sctp: add the probe timer in transport for PLPMTUD
[linux-block.git] / net / sctp / outqueue.c
CommitLineData
47505b8b 1// SPDX-License-Identifier: GPL-2.0-or-later
60c778b2 2/* SCTP kernel implementation
1da177e4
LT
3 * (C) Copyright IBM Corp. 2001, 2004
4 * Copyright (c) 1999-2000 Cisco, Inc.
5 * Copyright (c) 1999-2001 Motorola, Inc.
6 * Copyright (c) 2001-2003 Intel Corp.
7 *
60c778b2 8 * This file is part of the SCTP kernel implementation
1da177e4
LT
9 *
10 * These functions implement the sctp_outq class. The outqueue handles
11 * bundling and queueing of outgoing SCTP chunks.
12 *
1da177e4
LT
13 * Please send any bug reports or fixes you make to the
14 * email address(es):
91705c61 15 * lksctp developers <linux-sctp@vger.kernel.org>
1da177e4 16 *
1da177e4
LT
17 * Written or modified by:
18 * La Monte H.P. Yarroll <piggy@acm.org>
19 * Karl Knutson <karl@athena.chicago.il.us>
20 * Perry Melange <pmelange@null.cc.uic.edu>
21 * Xingang Guo <xingang.guo@intel.com>
22 * Hui Huang <hui.huang@nokia.com>
23 * Sridhar Samudrala <sri@us.ibm.com>
24 * Jon Grimm <jgrimm@us.ibm.com>
1da177e4
LT
25 */
26
145ce502
JP
27#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
28
1da177e4
LT
29#include <linux/types.h>
30#include <linux/list.h> /* For struct list_head */
31#include <linux/socket.h>
32#include <linux/ip.h>
5a0e3ad6 33#include <linux/slab.h>
1da177e4
LT
34#include <net/sock.h> /* For skb_set_owner_w */
35
36#include <net/sctp/sctp.h>
37#include <net/sctp/sm.h>
5bbbbe32 38#include <net/sctp/stream_sched.h>
f643ee29 39#include <trace/events/sctp.h>
1da177e4
LT
40
41/* Declare internal functions here. */
42static int sctp_acked(struct sctp_sackhdr *sack, __u32 tsn);
43static void sctp_check_transmitted(struct sctp_outq *q,
44 struct list_head *transmitted_queue,
45 struct sctp_transport *transport,
edfee033 46 union sctp_addr *saddr,
1da177e4 47 struct sctp_sackhdr *sack,
bfa0d984 48 __u32 *highest_new_tsn);
1da177e4
LT
49
50static void sctp_mark_missing(struct sctp_outq *q,
51 struct list_head *transmitted_queue,
52 struct sctp_transport *transport,
53 __u32 highest_new_tsn,
54 int count_of_newacks);
55
83dbc3d4 56static void sctp_outq_flush(struct sctp_outq *q, int rtx_timeout, gfp_t gfp);
abd0b198 57
1da177e4
LT
58/* Add data to the front of the queue. */
59static inline void sctp_outq_head_data(struct sctp_outq *q,
5bbbbe32 60 struct sctp_chunk *ch)
1da177e4 61{
5bbbbe32
MRL
62 struct sctp_stream_out_ext *oute;
63 __u16 stream;
64
79af02c2 65 list_add(&ch->list, &q->out_chunk_list);
1da177e4 66 q->out_qlen += ch->skb->len;
5bbbbe32
MRL
67
68 stream = sctp_chunk_stream_no(ch);
05364ca0 69 oute = SCTP_SO(&q->asoc->stream, stream)->ext;
5bbbbe32 70 list_add(&ch->stream_list, &oute->outq);
1da177e4
LT
71}
72
73/* Take data from the front of the queue. */
74static inline struct sctp_chunk *sctp_outq_dequeue_data(struct sctp_outq *q)
75{
5bbbbe32 76 return q->sched->dequeue(q);
1da177e4 77}
5bbbbe32 78
1da177e4
LT
79/* Add data chunk to the end of the queue. */
80static inline void sctp_outq_tail_data(struct sctp_outq *q,
81 struct sctp_chunk *ch)
82{
5bbbbe32
MRL
83 struct sctp_stream_out_ext *oute;
84 __u16 stream;
85
79af02c2 86 list_add_tail(&ch->list, &q->out_chunk_list);
1da177e4 87 q->out_qlen += ch->skb->len;
5bbbbe32
MRL
88
89 stream = sctp_chunk_stream_no(ch);
05364ca0 90 oute = SCTP_SO(&q->asoc->stream, stream)->ext;
5bbbbe32 91 list_add_tail(&ch->stream_list, &oute->outq);
1da177e4
LT
92}
93
94/*
95 * SFR-CACC algorithm:
96 * D) If count_of_newacks is greater than or equal to 2
97 * and t was not sent to the current primary then the
98 * sender MUST NOT increment missing report count for t.
99 */
100static inline int sctp_cacc_skip_3_1_d(struct sctp_transport *primary,
101 struct sctp_transport *transport,
102 int count_of_newacks)
103{
cb3f837b 104 if (count_of_newacks >= 2 && transport != primary)
1da177e4
LT
105 return 1;
106 return 0;
107}
108
109/*
110 * SFR-CACC algorithm:
111 * F) If count_of_newacks is less than 2, let d be the
112 * destination to which t was sent. If cacc_saw_newack
113 * is 0 for destination d, then the sender MUST NOT
114 * increment missing report count for t.
115 */
116static inline int sctp_cacc_skip_3_1_f(struct sctp_transport *transport,
117 int count_of_newacks)
118{
f246a7b7
VY
119 if (count_of_newacks < 2 &&
120 (transport && !transport->cacc.cacc_saw_newack))
1da177e4
LT
121 return 1;
122 return 0;
123}
124
125/*
126 * SFR-CACC algorithm:
127 * 3.1) If CYCLING_CHANGEOVER is 0, the sender SHOULD
128 * execute steps C, D, F.
129 *
130 * C has been implemented in sctp_outq_sack
131 */
132static inline int sctp_cacc_skip_3_1(struct sctp_transport *primary,
133 struct sctp_transport *transport,
134 int count_of_newacks)
135{
136 if (!primary->cacc.cycling_changeover) {
137 if (sctp_cacc_skip_3_1_d(primary, transport, count_of_newacks))
138 return 1;
139 if (sctp_cacc_skip_3_1_f(transport, count_of_newacks))
140 return 1;
141 return 0;
142 }
143 return 0;
144}
145
146/*
147 * SFR-CACC algorithm:
148 * 3.2) Else if CYCLING_CHANGEOVER is 1, and t is less
149 * than next_tsn_at_change of the current primary, then
150 * the sender MUST NOT increment missing report count
151 * for t.
152 */
153static inline int sctp_cacc_skip_3_2(struct sctp_transport *primary, __u32 tsn)
154{
155 if (primary->cacc.cycling_changeover &&
156 TSN_lt(tsn, primary->cacc.next_tsn_at_change))
157 return 1;
158 return 0;
159}
160
161/*
162 * SFR-CACC algorithm:
163 * 3) If the missing report count for TSN t is to be
164 * incremented according to [RFC2960] and
165 * [SCTP_STEWART-2002], and CHANGEOVER_ACTIVE is set,
25985edc 166 * then the sender MUST further execute steps 3.1 and
1da177e4
LT
167 * 3.2 to determine if the missing report count for
168 * TSN t SHOULD NOT be incremented.
169 *
170 * 3.3) If 3.1 and 3.2 do not dictate that the missing
171 * report count for t should not be incremented, then
25985edc 172 * the sender SHOULD increment missing report count for
1da177e4
LT
173 * t (according to [RFC2960] and [SCTP_STEWART_2002]).
174 */
175static inline int sctp_cacc_skip(struct sctp_transport *primary,
176 struct sctp_transport *transport,
177 int count_of_newacks,
178 __u32 tsn)
179{
180 if (primary->cacc.changeover_active &&
f64f9e71
JP
181 (sctp_cacc_skip_3_1(primary, transport, count_of_newacks) ||
182 sctp_cacc_skip_3_2(primary, tsn)))
1da177e4
LT
183 return 1;
184 return 0;
185}
186
187/* Initialize an existing sctp_outq. This does the boring stuff.
188 * You still need to define handlers if you really want to DO
189 * something with this structure...
190 */
191void sctp_outq_init(struct sctp_association *asoc, struct sctp_outq *q)
192{
c5c7774d
NH
193 memset(q, 0, sizeof(struct sctp_outq));
194
1da177e4 195 q->asoc = asoc;
79af02c2
DM
196 INIT_LIST_HEAD(&q->out_chunk_list);
197 INIT_LIST_HEAD(&q->control_chunk_list);
1da177e4
LT
198 INIT_LIST_HEAD(&q->retransmit);
199 INIT_LIST_HEAD(&q->sacked);
200 INIT_LIST_HEAD(&q->abandoned);
7efba10d 201 sctp_sched_set_sched(asoc, sctp_sk(asoc->base.sk)->default_ss);
1da177e4
LT
202}
203
204/* Free the outqueue structure and any related pending chunks.
205 */
2f94aabd 206static void __sctp_outq_teardown(struct sctp_outq *q)
1da177e4
LT
207{
208 struct sctp_transport *transport;
9dbc15f0 209 struct list_head *lchunk, *temp;
79af02c2 210 struct sctp_chunk *chunk, *tmp;
1da177e4
LT
211
212 /* Throw away unacknowledged chunks. */
9dbc15f0
RD
213 list_for_each_entry(transport, &q->asoc->peer.transport_addr_list,
214 transports) {
1da177e4
LT
215 while ((lchunk = sctp_list_dequeue(&transport->transmitted)) != NULL) {
216 chunk = list_entry(lchunk, struct sctp_chunk,
217 transmitted_list);
218 /* Mark as part of a failed message. */
219 sctp_chunk_fail(chunk, q->error);
220 sctp_chunk_free(chunk);
221 }
222 }
223
224 /* Throw away chunks that have been gap ACKed. */
225 list_for_each_safe(lchunk, temp, &q->sacked) {
226 list_del_init(lchunk);
227 chunk = list_entry(lchunk, struct sctp_chunk,
228 transmitted_list);
229 sctp_chunk_fail(chunk, q->error);
230 sctp_chunk_free(chunk);
231 }
232
233 /* Throw away any chunks in the retransmit queue. */
234 list_for_each_safe(lchunk, temp, &q->retransmit) {
235 list_del_init(lchunk);
236 chunk = list_entry(lchunk, struct sctp_chunk,
237 transmitted_list);
238 sctp_chunk_fail(chunk, q->error);
239 sctp_chunk_free(chunk);
240 }
241
242 /* Throw away any chunks that are in the abandoned queue. */
243 list_for_each_safe(lchunk, temp, &q->abandoned) {
244 list_del_init(lchunk);
245 chunk = list_entry(lchunk, struct sctp_chunk,
246 transmitted_list);
247 sctp_chunk_fail(chunk, q->error);
248 sctp_chunk_free(chunk);
249 }
250
251 /* Throw away any leftover data chunks. */
252 while ((chunk = sctp_outq_dequeue_data(q)) != NULL) {
5bbbbe32 253 sctp_sched_dequeue_done(q, chunk);
1da177e4
LT
254
255 /* Mark as send failure. */
256 sctp_chunk_fail(chunk, q->error);
257 sctp_chunk_free(chunk);
258 }
259
1da177e4 260 /* Throw away any leftover control chunks. */
79af02c2
DM
261 list_for_each_entry_safe(chunk, tmp, &q->control_chunk_list, list) {
262 list_del_init(&chunk->list);
1da177e4 263 sctp_chunk_free(chunk);
79af02c2 264 }
1da177e4
LT
265}
266
2f94aabd
NH
267void sctp_outq_teardown(struct sctp_outq *q)
268{
269 __sctp_outq_teardown(q);
270 sctp_outq_init(q->asoc, q);
271}
272
1da177e4
LT
273/* Free the outqueue structure and any related pending chunks. */
274void sctp_outq_free(struct sctp_outq *q)
275{
276 /* Throw away leftover chunks. */
2f94aabd 277 __sctp_outq_teardown(q);
1da177e4
LT
278}
279
280/* Put a new chunk in an sctp_outq. */
83dbc3d4 281void sctp_outq_tail(struct sctp_outq *q, struct sctp_chunk *chunk, gfp_t gfp)
1da177e4 282{
4e7696d9 283 struct net *net = q->asoc->base.net;
1da177e4 284
bb33381d
DB
285 pr_debug("%s: outq:%p, chunk:%p[%s]\n", __func__, q, chunk,
286 chunk && chunk->chunk_hdr ?
287 sctp_cname(SCTP_ST_CHUNK(chunk->chunk_hdr->type)) :
288 "illegal chunk");
1da177e4
LT
289
290 /* If it is data, queue it up, otherwise, send it
291 * immediately.
292 */
ec7b9519 293 if (sctp_chunk_is_data(chunk)) {
2c89791e
XL
294 pr_debug("%s: outqueueing: outq:%p, chunk:%p[%s])\n",
295 __func__, q, chunk, chunk && chunk->chunk_hdr ?
296 sctp_cname(SCTP_ST_CHUNK(chunk->chunk_hdr->type)) :
297 "illegal chunk");
298
2c89791e 299 sctp_outq_tail_data(q, chunk);
b50afd20 300 if (chunk->asoc->peer.prsctp_capable &&
2c89791e
XL
301 SCTP_PR_PRIO_ENABLED(chunk->sinfo.sinfo_flags))
302 chunk->asoc->sent_cnt_removable++;
303 if (chunk->chunk_hdr->flags & SCTP_DATA_UNORDERED)
304 SCTP_INC_STATS(net, SCTP_MIB_OUTUNORDERCHUNKS);
305 else
306 SCTP_INC_STATS(net, SCTP_MIB_OUTORDERCHUNKS);
1da177e4 307 } else {
79af02c2 308 list_add_tail(&chunk->list, &q->control_chunk_list);
b01a2407 309 SCTP_INC_STATS(net, SCTP_MIB_OUTCTRLCHUNKS);
1da177e4
LT
310 }
311
1da177e4 312 if (!q->cork)
83dbc3d4 313 sctp_outq_flush(q, 0, gfp);
1da177e4
LT
314}
315
316/* Insert a chunk into the sorted list based on the TSNs. The retransmit list
317 * and the abandoned list are in ascending order.
318 */
319static void sctp_insert_list(struct list_head *head, struct list_head *new)
320{
321 struct list_head *pos;
322 struct sctp_chunk *nchunk, *lchunk;
323 __u32 ntsn, ltsn;
324 int done = 0;
325
326 nchunk = list_entry(new, struct sctp_chunk, transmitted_list);
327 ntsn = ntohl(nchunk->subh.data_hdr->tsn);
328
329 list_for_each(pos, head) {
330 lchunk = list_entry(pos, struct sctp_chunk, transmitted_list);
331 ltsn = ntohl(lchunk->subh.data_hdr->tsn);
332 if (TSN_lt(ntsn, ltsn)) {
333 list_add(new, pos->prev);
334 done = 1;
335 break;
336 }
337 }
338 if (!done)
d808ad9a 339 list_add_tail(new, head);
1da177e4
LT
340}
341
8dbdf1f5
XL
342static int sctp_prsctp_prune_sent(struct sctp_association *asoc,
343 struct sctp_sndrcvinfo *sinfo,
344 struct list_head *queue, int msg_len)
345{
346 struct sctp_chunk *chk, *temp;
347
348 list_for_each_entry_safe(chk, temp, queue, transmitted_list) {
d229d48d
XL
349 struct sctp_stream_out *streamout;
350
e5f61296
XL
351 if (!chk->msg->abandoned &&
352 (!SCTP_PR_PRIO_ENABLED(chk->sinfo.sinfo_flags) ||
353 chk->sinfo.sinfo_timetolive <= sinfo->sinfo_timetolive))
8dbdf1f5
XL
354 continue;
355
e5f61296 356 chk->msg->abandoned = 1;
8dbdf1f5
XL
357 list_del_init(&chk->transmitted_list);
358 sctp_insert_list(&asoc->outqueue.abandoned,
359 &chk->transmitted_list);
360
05364ca0 361 streamout = SCTP_SO(&asoc->stream, chk->sinfo.sinfo_stream);
8dbdf1f5
XL
362 asoc->sent_cnt_removable--;
363 asoc->abandoned_sent[SCTP_PR_INDEX(PRIO)]++;
f952be79 364 streamout->ext->abandoned_sent[SCTP_PR_INDEX(PRIO)]++;
8dbdf1f5 365
d30fc512
XL
366 if (queue != &asoc->outqueue.retransmit &&
367 !chk->tsn_gap_acked) {
8dbdf1f5
XL
368 if (chk->transport)
369 chk->transport->flight_size -=
370 sctp_data_size(chk);
371 asoc->outqueue.outstanding_bytes -= sctp_data_size(chk);
372 }
373
605c0ac1 374 msg_len -= chk->skb->truesize + sizeof(struct sctp_chunk);
8dbdf1f5
XL
375 if (msg_len <= 0)
376 break;
377 }
378
379 return msg_len;
380}
381
382static int sctp_prsctp_prune_unsent(struct sctp_association *asoc,
23bb09cf 383 struct sctp_sndrcvinfo *sinfo, int msg_len)
8dbdf1f5 384{
23bb09cf 385 struct sctp_outq *q = &asoc->outqueue;
8dbdf1f5
XL
386 struct sctp_chunk *chk, *temp;
387
5bbbbe32
MRL
388 q->sched->unsched_all(&asoc->stream);
389
23bb09cf 390 list_for_each_entry_safe(chk, temp, &q->out_chunk_list, list) {
e5f61296 391 if (!chk->msg->abandoned &&
779edd73
XL
392 (!(chk->chunk_hdr->flags & SCTP_DATA_FIRST_FRAG) ||
393 !SCTP_PR_PRIO_ENABLED(chk->sinfo.sinfo_flags) ||
e5f61296 394 chk->sinfo.sinfo_timetolive <= sinfo->sinfo_timetolive))
8dbdf1f5
XL
395 continue;
396
e5f61296 397 chk->msg->abandoned = 1;
5bbbbe32 398 sctp_sched_dequeue_common(q, chk);
8dbdf1f5
XL
399 asoc->sent_cnt_removable--;
400 asoc->abandoned_unsent[SCTP_PR_INDEX(PRIO)]++;
cee360ab 401 if (chk->sinfo.sinfo_stream < asoc->stream.outcnt) {
d229d48d 402 struct sctp_stream_out *streamout =
05364ca0 403 SCTP_SO(&asoc->stream, chk->sinfo.sinfo_stream);
d229d48d 404
f952be79 405 streamout->ext->abandoned_unsent[SCTP_PR_INDEX(PRIO)]++;
d229d48d 406 }
8dbdf1f5 407
605c0ac1 408 msg_len -= chk->skb->truesize + sizeof(struct sctp_chunk);
8dbdf1f5
XL
409 sctp_chunk_free(chk);
410 if (msg_len <= 0)
411 break;
412 }
413
5bbbbe32
MRL
414 q->sched->sched_all(&asoc->stream);
415
8dbdf1f5
XL
416 return msg_len;
417}
418
419/* Abandon the chunks according their priorities */
420void sctp_prsctp_prune(struct sctp_association *asoc,
421 struct sctp_sndrcvinfo *sinfo, int msg_len)
422{
423 struct sctp_transport *transport;
424
be4947bf 425 if (!asoc->peer.prsctp_capable || !asoc->sent_cnt_removable)
8dbdf1f5
XL
426 return;
427
428 msg_len = sctp_prsctp_prune_sent(asoc, sinfo,
429 &asoc->outqueue.retransmit,
430 msg_len);
431 if (msg_len <= 0)
432 return;
433
434 list_for_each_entry(transport, &asoc->peer.transport_addr_list,
435 transports) {
436 msg_len = sctp_prsctp_prune_sent(asoc, sinfo,
437 &transport->transmitted,
438 msg_len);
439 if (msg_len <= 0)
440 return;
441 }
442
23bb09cf 443 sctp_prsctp_prune_unsent(asoc, sinfo, msg_len);
8dbdf1f5
XL
444}
445
1da177e4
LT
446/* Mark all the eligible packets on a transport for retransmission. */
447void sctp_retransmit_mark(struct sctp_outq *q,
448 struct sctp_transport *transport,
b6157d8e 449 __u8 reason)
1da177e4
LT
450{
451 struct list_head *lchunk, *ltemp;
452 struct sctp_chunk *chunk;
453
454 /* Walk through the specified transmitted queue. */
455 list_for_each_safe(lchunk, ltemp, &transport->transmitted) {
456 chunk = list_entry(lchunk, struct sctp_chunk,
457 transmitted_list);
458
459 /* If the chunk is abandoned, move it to abandoned list. */
460 if (sctp_chunk_abandoned(chunk)) {
461 list_del_init(lchunk);
462 sctp_insert_list(&q->abandoned, lchunk);
8c4a2d41
VY
463
464 /* If this chunk has not been previousely acked,
465 * stop considering it 'outstanding'. Our peer
466 * will most likely never see it since it will
467 * not be retransmitted
468 */
469 if (!chunk->tsn_gap_acked) {
31b02e15
VY
470 if (chunk->transport)
471 chunk->transport->flight_size -=
472 sctp_data_size(chunk);
8c4a2d41 473 q->outstanding_bytes -= sctp_data_size(chunk);
a76c0adf 474 q->asoc->peer.rwnd += sctp_data_size(chunk);
8c4a2d41 475 }
1da177e4
LT
476 continue;
477 }
478
b6157d8e
VY
479 /* If we are doing retransmission due to a timeout or pmtu
480 * discovery, only the chunks that are not yet acked should
481 * be added to the retransmit queue.
1da177e4 482 */
b6157d8e 483 if ((reason == SCTP_RTXR_FAST_RTX &&
c226ef9b 484 (chunk->fast_retransmit == SCTP_NEED_FRTX)) ||
b6157d8e 485 (reason != SCTP_RTXR_FAST_RTX && !chunk->tsn_gap_acked)) {
1da177e4
LT
486 /* RFC 2960 6.2.1 Processing a Received SACK
487 *
488 * C) Any time a DATA chunk is marked for
489 * retransmission (via either T3-rtx timer expiration
490 * (Section 6.3.3) or via fast retransmit
491 * (Section 7.2.4)), add the data size of those
492 * chunks to the rwnd.
493 */
a76c0adf 494 q->asoc->peer.rwnd += sctp_data_size(chunk);
1da177e4 495 q->outstanding_bytes -= sctp_data_size(chunk);
31b02e15
VY
496 if (chunk->transport)
497 transport->flight_size -= sctp_data_size(chunk);
1da177e4
LT
498
499 /* sctpimpguide-05 Section 2.8.2
500 * M5) If a T3-rtx timer expires, the
501 * 'TSN.Missing.Report' of all affected TSNs is set
502 * to 0.
503 */
504 chunk->tsn_missing_report = 0;
505
506 /* If a chunk that is being used for RTT measurement
507 * has to be retransmitted, we cannot use this chunk
508 * anymore for RTT measurements. Reset rto_pending so
509 * that a new RTT measurement is started when a new
510 * data chunk is sent.
511 */
512 if (chunk->rtt_in_progress) {
513 chunk->rtt_in_progress = 0;
514 transport->rto_pending = 0;
515 }
516
517 /* Move the chunk to the retransmit queue. The chunks
518 * on the retransmit queue are always kept in order.
519 */
520 list_del_init(lchunk);
521 sctp_insert_list(&q->retransmit, lchunk);
522 }
523 }
524
bb33381d
DB
525 pr_debug("%s: transport:%p, reason:%d, cwnd:%d, ssthresh:%d, "
526 "flight_size:%d, pba:%d\n", __func__, transport, reason,
527 transport->cwnd, transport->ssthresh, transport->flight_size,
528 transport->partial_bytes_acked);
1da177e4
LT
529}
530
531/* Mark all the eligible packets on a transport for retransmission and force
532 * one packet out.
533 */
534void sctp_retransmit(struct sctp_outq *q, struct sctp_transport *transport,
125c2982 535 enum sctp_retransmit_reason reason)
1da177e4 536{
4e7696d9 537 struct net *net = q->asoc->base.net;
1da177e4 538
cb3f837b 539 switch (reason) {
1da177e4 540 case SCTP_RTXR_T3_RTX:
b01a2407 541 SCTP_INC_STATS(net, SCTP_MIB_T3_RETRANSMITS);
1da177e4
LT
542 sctp_transport_lower_cwnd(transport, SCTP_LOWER_CWND_T3_RTX);
543 /* Update the retran path if the T3-rtx timer has expired for
544 * the current retran path.
545 */
546 if (transport == transport->asoc->peer.retran_path)
547 sctp_assoc_update_retran_path(transport->asoc);
58fbbed4
NH
548 transport->asoc->rtx_data_chunks +=
549 transport->asoc->unack_data;
1da177e4
LT
550 break;
551 case SCTP_RTXR_FAST_RTX:
b01a2407 552 SCTP_INC_STATS(net, SCTP_MIB_FAST_RETRANSMITS);
1da177e4 553 sctp_transport_lower_cwnd(transport, SCTP_LOWER_CWND_FAST_RTX);
62aeaff5 554 q->fast_rtx = 1;
1da177e4
LT
555 break;
556 case SCTP_RTXR_PMTUD:
b01a2407 557 SCTP_INC_STATS(net, SCTP_MIB_PMTUD_RETRANSMITS);
1da177e4 558 break;
b6157d8e 559 case SCTP_RTXR_T1_RTX:
b01a2407 560 SCTP_INC_STATS(net, SCTP_MIB_T1_RETRANSMITS);
58fbbed4 561 transport->asoc->init_retries++;
b6157d8e 562 break;
ac0b0462
SS
563 default:
564 BUG();
1da177e4
LT
565 }
566
b6157d8e 567 sctp_retransmit_mark(q, transport, reason);
1da177e4
LT
568
569 /* PR-SCTP A5) Any time the T3-rtx timer expires, on any destination,
570 * the sender SHOULD try to advance the "Advanced.Peer.Ack.Point" by
571 * following the procedures outlined in C1 - C5.
572 */
8b750ce5 573 if (reason == SCTP_RTXR_T3_RTX)
8e0c3b73 574 q->asoc->stream.si->generate_ftsn(q, q->asoc->ctsn_ack_point);
1da177e4 575
8b750ce5
VY
576 /* Flush the queues only on timeout, since fast_rtx is only
577 * triggered during sack processing and the queue
578 * will be flushed at the end.
579 */
580 if (reason != SCTP_RTXR_FAST_RTX)
64519440 581 sctp_outq_flush(q, /* rtx_timeout */ 1, GFP_ATOMIC);
1da177e4
LT
582}
583
584/*
585 * Transmit DATA chunks on the retransmit queue. Upon return from
96e0418e 586 * __sctp_outq_flush_rtx() the packet 'pkt' may contain chunks which
1da177e4
LT
587 * need to be transmitted by the caller.
588 * We assume that pkt->transport has already been set.
589 *
590 * The return value is a normal kernel error return value.
591 */
96e0418e 592static int __sctp_outq_flush_rtx(struct sctp_outq *q, struct sctp_packet *pkt,
6605f694 593 int rtx_timeout, int *start_timer, gfp_t gfp)
1da177e4 594{
1da177e4 595 struct sctp_transport *transport = pkt->transport;
1da177e4 596 struct sctp_chunk *chunk, *chunk1;
86b36f2a
XL
597 struct list_head *lqueue;
598 enum sctp_xmit status;
1da177e4 599 int error = 0;
62aeaff5 600 int timer = 0;
8b750ce5 601 int done = 0;
86b36f2a 602 int fast_rtx;
1da177e4 603
1da177e4 604 lqueue = &q->retransmit;
62aeaff5 605 fast_rtx = q->fast_rtx;
1da177e4 606
8b750ce5
VY
607 /* This loop handles time-out retransmissions, fast retransmissions,
608 * and retransmissions due to opening of whindow.
609 *
610 * RFC 2960 6.3.3 Handle T3-rtx Expiration
1da177e4
LT
611 *
612 * E3) Determine how many of the earliest (i.e., lowest TSN)
613 * outstanding DATA chunks for the address for which the
614 * T3-rtx has expired will fit into a single packet, subject
615 * to the MTU constraint for the path corresponding to the
616 * destination transport address to which the retransmission
617 * is being sent (this may be different from the address for
618 * which the timer expires [see Section 6.4]). Call this value
619 * K. Bundle and retransmit those K DATA chunks in a single
620 * packet to the destination endpoint.
621 *
622 * [Just to be painfully clear, if we are retransmitting
623 * because a timeout just happened, we should send only ONE
624 * packet of retransmitted data.]
8b750ce5
VY
625 *
626 * For fast retransmissions we also send only ONE packet. However,
627 * if we are just flushing the queue due to open window, we'll
628 * try to send as much as possible.
1da177e4 629 */
8b750ce5 630 list_for_each_entry_safe(chunk, chunk1, lqueue, transmitted_list) {
4c6a6f42
WY
631 /* If the chunk is abandoned, move it to abandoned list. */
632 if (sctp_chunk_abandoned(chunk)) {
633 list_del_init(&chunk->transmitted_list);
634 sctp_insert_list(&q->abandoned,
635 &chunk->transmitted_list);
636 continue;
637 }
1da177e4
LT
638
639 /* Make sure that Gap Acked TSNs are not retransmitted. A
640 * simple approach is just to move such TSNs out of the
641 * way and into a 'transmitted' queue and skip to the
642 * next chunk.
643 */
644 if (chunk->tsn_gap_acked) {
54a27924
WY
645 list_move_tail(&chunk->transmitted_list,
646 &transport->transmitted);
1da177e4
LT
647 continue;
648 }
649
8b750ce5
VY
650 /* If we are doing fast retransmit, ignore non-fast_rtransmit
651 * chunks
652 */
653 if (fast_rtx && !chunk->fast_retransmit)
654 continue;
655
bc4f841a 656redo:
1da177e4
LT
657 /* Attempt to append this chunk to the packet. */
658 status = sctp_packet_append_chunk(pkt, chunk);
659
660 switch (status) {
661 case SCTP_XMIT_PMTU_FULL:
bc4f841a
WY
662 if (!pkt->has_data && !pkt->has_cookie_echo) {
663 /* If this packet did not contain DATA then
664 * retransmission did not happen, so do it
665 * again. We'll ignore the error here since
666 * control chunks are already freed so there
667 * is nothing we can do.
668 */
6605f694 669 sctp_packet_transmit(pkt, gfp);
bc4f841a
WY
670 goto redo;
671 }
672
1da177e4 673 /* Send this packet. */
6605f694 674 error = sctp_packet_transmit(pkt, gfp);
1da177e4
LT
675
676 /* If we are retransmitting, we should only
677 * send a single packet.
f246a7b7 678 * Otherwise, try appending this chunk again.
1da177e4 679 */
8b750ce5
VY
680 if (rtx_timeout || fast_rtx)
681 done = 1;
f246a7b7
VY
682 else
683 goto redo;
1da177e4 684
8b750ce5 685 /* Bundle next chunk in the next round. */
1da177e4
LT
686 break;
687
688 case SCTP_XMIT_RWND_FULL:
d808ad9a 689 /* Send this packet. */
6605f694 690 error = sctp_packet_transmit(pkt, gfp);
1da177e4
LT
691
692 /* Stop sending DATA as there is no more room
693 * at the receiver.
694 */
8b750ce5 695 done = 1;
1da177e4
LT
696 break;
697
526cbef7 698 case SCTP_XMIT_DELAY:
d808ad9a 699 /* Send this packet. */
6605f694 700 error = sctp_packet_transmit(pkt, gfp);
1da177e4
LT
701
702 /* Stop sending DATA because of nagle delay. */
8b750ce5 703 done = 1;
1da177e4
LT
704 break;
705
706 default:
707 /* The append was successful, so add this chunk to
708 * the transmitted list.
709 */
54a27924
WY
710 list_move_tail(&chunk->transmitted_list,
711 &transport->transmitted);
1da177e4 712
d808ad9a 713 /* Mark the chunk as ineligible for fast retransmit
1da177e4
LT
714 * after it is retransmitted.
715 */
c226ef9b
NH
716 if (chunk->fast_retransmit == SCTP_NEED_FRTX)
717 chunk->fast_retransmit = SCTP_DONT_FRTX;
1da177e4 718
196d6759 719 q->asoc->stats.rtxchunks++;
1da177e4 720 break;
3ff50b79 721 }
1da177e4 722
62aeaff5
VY
723 /* Set the timer if there were no errors */
724 if (!error && !timer)
725 timer = 1;
726
8b750ce5
VY
727 if (done)
728 break;
729 }
730
731 /* If we are here due to a retransmit timeout or a fast
732 * retransmit and if there are any chunks left in the retransmit
733 * queue that could not fit in the PMTU sized packet, they need
734 * to be marked as ineligible for a subsequent fast retransmit.
735 */
736 if (rtx_timeout || fast_rtx) {
737 list_for_each_entry(chunk1, lqueue, transmitted_list) {
c226ef9b
NH
738 if (chunk1->fast_retransmit == SCTP_NEED_FRTX)
739 chunk1->fast_retransmit = SCTP_DONT_FRTX;
1da177e4
LT
740 }
741 }
742
62aeaff5
VY
743 *start_timer = timer;
744
745 /* Clear fast retransmit hint */
746 if (fast_rtx)
747 q->fast_rtx = 0;
748
1da177e4
LT
749 return error;
750}
751
752/* Cork the outqueue so queued chunks are really queued. */
83dbc3d4 753void sctp_outq_uncork(struct sctp_outq *q, gfp_t gfp)
1da177e4 754{
7d54dc68 755 if (q->cork)
1da177e4 756 q->cork = 0;
dacda32e 757
83dbc3d4 758 sctp_outq_flush(q, 0, gfp);
1da177e4
LT
759}
760
b9fd6839
MRL
761static int sctp_packet_singleton(struct sctp_transport *transport,
762 struct sctp_chunk *chunk, gfp_t gfp)
763{
764 const struct sctp_association *asoc = transport->asoc;
765 const __u16 sport = asoc->base.bind_addr.port;
766 const __u16 dport = asoc->peer.port;
767 const __u32 vtag = asoc->peer.i.init_tag;
768 struct sctp_packet singleton;
769
770 sctp_packet_init(&singleton, transport, sport, dport);
771 sctp_packet_config(&singleton, vtag, 0);
772 sctp_packet_append_chunk(&singleton, chunk);
773 return sctp_packet_transmit(&singleton, gfp);
774}
2e3216cd 775
bb543847
MRL
776/* Struct to hold the context during sctp outq flush */
777struct sctp_flush_ctx {
778 struct sctp_outq *q;
779 /* Current transport being used. It's NOT the same as curr active one */
780 struct sctp_transport *transport;
781 /* These transports have chunks to send. */
782 struct list_head transport_list;
e136e965
MRL
783 struct sctp_association *asoc;
784 /* Packet on the current transport above */
785 struct sctp_packet *packet;
bb543847
MRL
786 gfp_t gfp;
787};
788
789/* transport: current transport */
e136e965 790static void sctp_outq_select_transport(struct sctp_flush_ctx *ctx,
bb543847 791 struct sctp_chunk *chunk)
0d634b0c
MRL
792{
793 struct sctp_transport *new_transport = chunk->transport;
0d634b0c
MRL
794
795 if (!new_transport) {
796 if (!sctp_chunk_is_data(chunk)) {
5884f35f 797 /* If we have a prior transport pointer, see if
0d634b0c
MRL
798 * the destination address of the chunk
799 * matches the destination address of the
800 * current transport. If not a match, then
801 * try to look up the transport with a given
802 * destination address. We do this because
803 * after processing ASCONFs, we may have new
804 * transports created.
805 */
bb543847
MRL
806 if (ctx->transport && sctp_cmp_addr_exact(&chunk->dest,
807 &ctx->transport->ipaddr))
808 new_transport = ctx->transport;
0d634b0c 809 else
e136e965 810 new_transport = sctp_assoc_lookup_paddr(ctx->asoc,
0d634b0c
MRL
811 &chunk->dest);
812 }
813
814 /* if we still don't have a new transport, then
815 * use the current active path.
816 */
817 if (!new_transport)
e136e965 818 new_transport = ctx->asoc->peer.active_path;
0d634b0c
MRL
819 } else {
820 __u8 type;
821
822 switch (new_transport->state) {
823 case SCTP_INACTIVE:
824 case SCTP_UNCONFIRMED:
825 case SCTP_PF:
826 /* If the chunk is Heartbeat or Heartbeat Ack,
827 * send it to chunk->transport, even if it's
828 * inactive.
829 *
830 * 3.3.6 Heartbeat Acknowledgement:
831 * ...
832 * A HEARTBEAT ACK is always sent to the source IP
833 * address of the IP datagram containing the
834 * HEARTBEAT chunk to which this ack is responding.
835 * ...
836 *
837 * ASCONF_ACKs also must be sent to the source.
838 */
839 type = chunk->chunk_hdr->type;
840 if (type != SCTP_CID_HEARTBEAT &&
841 type != SCTP_CID_HEARTBEAT_ACK &&
842 type != SCTP_CID_ASCONF_ACK)
e136e965 843 new_transport = ctx->asoc->peer.active_path;
0d634b0c
MRL
844 break;
845 default:
846 break;
847 }
848 }
849
850 /* Are we switching transports? Take care of transport locks. */
bb543847 851 if (new_transport != ctx->transport) {
bb543847 852 ctx->transport = new_transport;
e136e965
MRL
853 ctx->packet = &ctx->transport->packet;
854
bb543847
MRL
855 if (list_empty(&ctx->transport->send_ready))
856 list_add_tail(&ctx->transport->send_ready,
857 &ctx->transport_list);
0d634b0c 858
e136e965
MRL
859 sctp_packet_config(ctx->packet,
860 ctx->asoc->peer.i.init_tag,
861 ctx->asoc->peer.ecn_capable);
0d634b0c
MRL
862 /* We've switched transports, so apply the
863 * Burst limit to the new transport.
864 */
bb543847 865 sctp_transport_burst_limited(ctx->transport);
0d634b0c 866 }
0d634b0c
MRL
867}
868
bb543847 869static void sctp_outq_flush_ctrl(struct sctp_flush_ctx *ctx)
1da177e4 870{
79af02c2 871 struct sctp_chunk *chunk, *tmp;
86b36f2a 872 enum sctp_xmit status;
7a0b9df6 873 int one_packet, error;
1da177e4 874
bb543847 875 list_for_each_entry_safe(chunk, tmp, &ctx->q->control_chunk_list, list) {
7a0b9df6
MRL
876 one_packet = 0;
877
8a07eb0a
MH
878 /* RFC 5061, 5.3
879 * F1) This means that until such time as the ASCONF
880 * containing the add is acknowledged, the sender MUST
881 * NOT use the new IP address as a source for ANY SCTP
882 * packet except on carrying an ASCONF Chunk.
883 */
e136e965 884 if (ctx->asoc->src_out_of_asoc_ok &&
8a07eb0a
MH
885 chunk->chunk_hdr->type != SCTP_CID_ASCONF)
886 continue;
887
79af02c2
DM
888 list_del_init(&chunk->list);
889
0d634b0c
MRL
890 /* Pick the right transport to use. Should always be true for
891 * the first chunk as we don't have a transport by then.
1da177e4 892 */
e136e965 893 sctp_outq_select_transport(ctx, chunk);
1da177e4
LT
894
895 switch (chunk->chunk_hdr->type) {
5884f35f 896 /* 6.10 Bundling
1da177e4
LT
897 * ...
898 * An endpoint MUST NOT bundle INIT, INIT ACK or SHUTDOWN
899 * COMPLETE with any other chunks. [Send them immediately.]
900 */
901 case SCTP_CID_INIT:
902 case SCTP_CID_INIT_ACK:
903 case SCTP_CID_SHUTDOWN_COMPLETE:
bb543847
MRL
904 error = sctp_packet_singleton(ctx->transport, chunk,
905 ctx->gfp);
64519440 906 if (error < 0) {
e136e965 907 ctx->asoc->base.sk->sk_err = -error;
83dbc3d4 908 return;
64519440 909 }
1da177e4
LT
910 break;
911
912 case SCTP_CID_ABORT:
37f47bc9 913 if (sctp_test_T_bit(chunk))
e136e965 914 ctx->packet->vtag = ctx->asoc->c.my_vtag;
df561f66 915 fallthrough;
7a0b9df6 916
2e3216cd
VY
917 /* The following chunks are "response" chunks, i.e.
918 * they are generated in response to something we
919 * received. If we are sending these, then we can
920 * send only 1 packet containing these chunks.
921 */
1da177e4 922 case SCTP_CID_HEARTBEAT_ACK:
1da177e4 923 case SCTP_CID_SHUTDOWN_ACK:
1da177e4 924 case SCTP_CID_COOKIE_ACK:
2e3216cd
VY
925 case SCTP_CID_COOKIE_ECHO:
926 case SCTP_CID_ERROR:
1da177e4 927 case SCTP_CID_ECN_CWR:
1da177e4 928 case SCTP_CID_ASCONF_ACK:
2e3216cd 929 one_packet = 1;
df561f66 930 fallthrough;
2e3216cd
VY
931
932 case SCTP_CID_SACK:
933 case SCTP_CID_HEARTBEAT:
934 case SCTP_CID_SHUTDOWN:
935 case SCTP_CID_ECN_ECNE:
936 case SCTP_CID_ASCONF:
1da177e4 937 case SCTP_CID_FWD_TSN:
8e0c3b73 938 case SCTP_CID_I_FWD_TSN:
7f9d68ac 939 case SCTP_CID_RECONF:
e136e965 940 status = sctp_packet_transmit_chunk(ctx->packet, chunk,
bb543847 941 one_packet, ctx->gfp);
7a0b9df6 942 if (status != SCTP_XMIT_OK) {
2e3216cd 943 /* put the chunk back */
bb543847 944 list_add(&chunk->list, &ctx->q->control_chunk_list);
7f9d68ac
XL
945 break;
946 }
947
e136e965 948 ctx->asoc->stats.octrlchunks++;
7f9d68ac
XL
949 /* PR-SCTP C5) If a FORWARD TSN is sent, the
950 * sender MUST assure that at least one T3-rtx
951 * timer is running.
952 */
8e0c3b73
XL
953 if (chunk->chunk_hdr->type == SCTP_CID_FWD_TSN ||
954 chunk->chunk_hdr->type == SCTP_CID_I_FWD_TSN) {
bb543847
MRL
955 sctp_transport_reset_t3_rtx(ctx->transport);
956 ctx->transport->last_time_sent = jiffies;
2e3216cd 957 }
7f9d68ac 958
e136e965 959 if (chunk == ctx->asoc->strreset_chunk)
bb543847 960 sctp_transport_reset_reconf_timer(ctx->transport);
7f9d68ac 961
1da177e4
LT
962 break;
963
964 default:
965 /* We built a chunk with an illegal type! */
966 BUG();
3ff50b79 967 }
1da177e4 968 }
7a0b9df6
MRL
969}
970
96e0418e 971/* Returns false if new data shouldn't be sent */
bb543847
MRL
972static bool sctp_outq_flush_rtx(struct sctp_flush_ctx *ctx,
973 int rtx_timeout)
96e0418e 974{
96e0418e
MRL
975 int error, start_timer = 0;
976
e136e965 977 if (ctx->asoc->peer.retran_path->state == SCTP_UNCONFIRMED)
96e0418e
MRL
978 return false;
979
e136e965 980 if (ctx->transport != ctx->asoc->peer.retran_path) {
96e0418e 981 /* Switch transports & prepare the packet. */
e136e965
MRL
982 ctx->transport = ctx->asoc->peer.retran_path;
983 ctx->packet = &ctx->transport->packet;
96e0418e 984
bb543847
MRL
985 if (list_empty(&ctx->transport->send_ready))
986 list_add_tail(&ctx->transport->send_ready,
987 &ctx->transport_list);
96e0418e 988
e136e965
MRL
989 sctp_packet_config(ctx->packet, ctx->asoc->peer.i.init_tag,
990 ctx->asoc->peer.ecn_capable);
96e0418e
MRL
991 }
992
e136e965
MRL
993 error = __sctp_outq_flush_rtx(ctx->q, ctx->packet, rtx_timeout,
994 &start_timer, ctx->gfp);
96e0418e 995 if (error < 0)
e136e965 996 ctx->asoc->base.sk->sk_err = -error;
96e0418e
MRL
997
998 if (start_timer) {
bb543847
MRL
999 sctp_transport_reset_t3_rtx(ctx->transport);
1000 ctx->transport->last_time_sent = jiffies;
96e0418e
MRL
1001 }
1002
1003 /* This can happen on COOKIE-ECHO resend. Only
1004 * one chunk can get bundled with a COOKIE-ECHO.
1005 */
e136e965 1006 if (ctx->packet->has_cookie_echo)
96e0418e
MRL
1007 return false;
1008
1009 /* Don't send new data if there is still data
1010 * waiting to retransmit.
1011 */
bb543847 1012 if (!list_empty(&ctx->q->retransmit))
96e0418e
MRL
1013 return false;
1014
1015 return true;
1016}
cb93cc5d 1017
bb543847
MRL
1018static void sctp_outq_flush_data(struct sctp_flush_ctx *ctx,
1019 int rtx_timeout)
7a0b9df6 1020{
7a0b9df6
MRL
1021 struct sctp_chunk *chunk;
1022 enum sctp_xmit status;
8a07eb0a 1023
1da177e4 1024 /* Is it OK to send data chunks? */
e136e965 1025 switch (ctx->asoc->state) {
1da177e4
LT
1026 case SCTP_STATE_COOKIE_ECHOED:
1027 /* Only allow bundling when this packet has a COOKIE-ECHO
1028 * chunk.
1029 */
e136e965 1030 if (!ctx->packet || !ctx->packet->has_cookie_echo)
4fdbb0ef 1031 return;
1da177e4 1032
df561f66 1033 fallthrough;
1da177e4
LT
1034 case SCTP_STATE_ESTABLISHED:
1035 case SCTP_STATE_SHUTDOWN_PENDING:
1036 case SCTP_STATE_SHUTDOWN_RECEIVED:
4fdbb0ef 1037 break;
1da177e4 1038
4fdbb0ef
MRL
1039 default:
1040 /* Do nothing. */
1041 return;
1042 }
1da177e4 1043
5884f35f 1044 /* RFC 2960 6.1 Transmission of DATA Chunks
4fdbb0ef
MRL
1045 *
1046 * C) When the time comes for the sender to transmit,
1047 * before sending new DATA chunks, the sender MUST
1048 * first transmit any outstanding DATA chunks which
1049 * are marked for retransmission (limited by the
1050 * current cwnd).
1051 */
e136e965
MRL
1052 if (!list_empty(&ctx->q->retransmit) &&
1053 !sctp_outq_flush_rtx(ctx, rtx_timeout))
1054 return;
7f9d68ac 1055
4fdbb0ef
MRL
1056 /* Apply Max.Burst limitation to the current transport in
1057 * case it will be used for new data. We are going to
1058 * rest it before we return, but we want to apply the limit
1059 * to the currently queued data.
1060 */
bb543847
MRL
1061 if (ctx->transport)
1062 sctp_transport_burst_limited(ctx->transport);
1da177e4 1063
4fdbb0ef 1064 /* Finally, transmit new packets. */
bb543847 1065 while ((chunk = sctp_outq_dequeue_data(ctx->q)) != NULL) {
4fdbb0ef 1066 __u32 sid = ntohs(chunk->subh.data_hdr->stream);
05364ca0 1067 __u8 stream_state = SCTP_SO(&ctx->asoc->stream, sid)->state;
cb93cc5d 1068
4fdbb0ef
MRL
1069 /* Has this chunk expired? */
1070 if (sctp_chunk_abandoned(chunk)) {
bb543847 1071 sctp_sched_dequeue_done(ctx->q, chunk);
4fdbb0ef
MRL
1072 sctp_chunk_fail(chunk, 0);
1073 sctp_chunk_free(chunk);
1074 continue;
1075 }
bb33381d 1076
05364ca0 1077 if (stream_state == SCTP_STREAM_CLOSED) {
bb543847 1078 sctp_outq_head_data(ctx->q, chunk);
4fdbb0ef
MRL
1079 break;
1080 }
1da177e4 1081
e136e965 1082 sctp_outq_select_transport(ctx, chunk);
cb93cc5d 1083
5884f35f 1084 pr_debug("%s: outq:%p, chunk:%p[%s], tx-tsn:0x%x skb->head:%p skb->users:%d\n",
bb543847 1085 __func__, ctx->q, chunk, chunk && chunk->chunk_hdr ?
4fdbb0ef
MRL
1086 sctp_cname(SCTP_ST_CHUNK(chunk->chunk_hdr->type)) :
1087 "illegal chunk", ntohl(chunk->subh.data_hdr->tsn),
1088 chunk->skb ? chunk->skb->head : NULL, chunk->skb ?
1089 refcount_read(&chunk->skb->users) : -1);
1090
1091 /* Add the chunk to the packet. */
e136e965
MRL
1092 status = sctp_packet_transmit_chunk(ctx->packet, chunk, 0,
1093 ctx->gfp);
4fdbb0ef
MRL
1094 if (status != SCTP_XMIT_OK) {
1095 /* We could not append this chunk, so put
1096 * the chunk back on the output queue.
cb93cc5d 1097 */
4fdbb0ef
MRL
1098 pr_debug("%s: could not transmit tsn:0x%x, status:%d\n",
1099 __func__, ntohl(chunk->subh.data_hdr->tsn),
1100 status);
1101
bb543847 1102 sctp_outq_head_data(ctx->q, chunk);
4fdbb0ef
MRL
1103 break;
1104 }
cb93cc5d 1105
4fdbb0ef
MRL
1106 /* The sender is in the SHUTDOWN-PENDING state,
1107 * The sender MAY set the I-bit in the DATA
1108 * chunk header.
1109 */
e136e965 1110 if (ctx->asoc->state == SCTP_STATE_SHUTDOWN_PENDING)
4fdbb0ef
MRL
1111 chunk->chunk_hdr->flags |= SCTP_DATA_SACK_IMM;
1112 if (chunk->chunk_hdr->flags & SCTP_DATA_UNORDERED)
e136e965 1113 ctx->asoc->stats.ouodchunks++;
4fdbb0ef 1114 else
e136e965 1115 ctx->asoc->stats.oodchunks++;
1da177e4 1116
4fdbb0ef
MRL
1117 /* Only now it's safe to consider this
1118 * chunk as sent, sched-wise.
1119 */
bb543847 1120 sctp_sched_dequeue_done(ctx->q, chunk);
1da177e4 1121
4fdbb0ef 1122 list_add_tail(&chunk->transmitted_list,
bb543847 1123 &ctx->transport->transmitted);
1da177e4 1124
bb543847
MRL
1125 sctp_transport_reset_t3_rtx(ctx->transport);
1126 ctx->transport->last_time_sent = jiffies;
4fdbb0ef
MRL
1127
1128 /* Only let one DATA chunk get bundled with a
1129 * COOKIE-ECHO chunk.
1130 */
e136e965 1131 if (ctx->packet->has_cookie_echo)
4fdbb0ef 1132 break;
1da177e4 1133 }
cb93cc5d
MRL
1134}
1135
bb543847 1136static void sctp_outq_flush_transports(struct sctp_flush_ctx *ctx)
4bf21b61 1137{
8ff0b1f0 1138 struct sock *sk = ctx->asoc->base.sk;
4bf21b61
MRL
1139 struct list_head *ltransport;
1140 struct sctp_packet *packet;
1141 struct sctp_transport *t;
1142 int error = 0;
1143
bb543847 1144 while ((ltransport = sctp_list_dequeue(&ctx->transport_list)) != NULL) {
4bf21b61
MRL
1145 t = list_entry(ltransport, struct sctp_transport, send_ready);
1146 packet = &t->packet;
1147 if (!sctp_packet_empty(packet)) {
8ff0b1f0
XL
1148 rcu_read_lock();
1149 if (t->dst && __sk_dst_get(sk) != t->dst) {
1150 dst_hold(t->dst);
1151 sk_setup_caps(sk, t->dst);
1152 }
1153 rcu_read_unlock();
bb543847 1154 error = sctp_packet_transmit(packet, ctx->gfp);
4bf21b61 1155 if (error < 0)
bb543847 1156 ctx->q->asoc->base.sk->sk_err = -error;
4bf21b61
MRL
1157 }
1158
1159 /* Clear the burst limited state, if any */
1160 sctp_transport_burst_reset(t);
1161 }
1162}
1163
5884f35f 1164/* Try to flush an outqueue.
cb93cc5d
MRL
1165 *
1166 * Description: Send everything in q which we legally can, subject to
1167 * congestion limitations.
1168 * * Note: This function can be called from multiple contexts so appropriate
1169 * locking concerns must be made. Today we use the sock lock to protect
1170 * this function.
1171 */
bb543847 1172
cb93cc5d
MRL
1173static void sctp_outq_flush(struct sctp_outq *q, int rtx_timeout, gfp_t gfp)
1174{
bb543847
MRL
1175 struct sctp_flush_ctx ctx = {
1176 .q = q,
1177 .transport = NULL,
1178 .transport_list = LIST_HEAD_INIT(ctx.transport_list),
e136e965
MRL
1179 .asoc = q->asoc,
1180 .packet = NULL,
bb543847
MRL
1181 .gfp = gfp,
1182 };
cb93cc5d 1183
5884f35f 1184 /* 6.10 Bundling
cb93cc5d
MRL
1185 * ...
1186 * When bundling control chunks with DATA chunks, an
1187 * endpoint MUST place control chunks first in the outbound
1188 * SCTP packet. The transmitter MUST transmit DATA chunks
1189 * within a SCTP packet in increasing order of TSN.
1190 * ...
1191 */
1192
bb543847 1193 sctp_outq_flush_ctrl(&ctx);
cb93cc5d
MRL
1194
1195 if (q->asoc->src_out_of_asoc_ok)
1196 goto sctp_flush_out;
1197
bb543847 1198 sctp_outq_flush_data(&ctx, rtx_timeout);
1da177e4
LT
1199
1200sctp_flush_out:
1201
bb543847 1202 sctp_outq_flush_transports(&ctx);
1da177e4
LT
1203}
1204
1205/* Update unack_data based on the incoming SACK chunk */
1206static void sctp_sack_update_unack_data(struct sctp_association *assoc,
1207 struct sctp_sackhdr *sack)
1208{
afd93b7b 1209 union sctp_sack_variable *frags;
1da177e4
LT
1210 __u16 unack_data;
1211 int i;
1212
1213 unack_data = assoc->next_tsn - assoc->ctsn_ack_point - 1;
1214
1215 frags = sack->variable;
1216 for (i = 0; i < ntohs(sack->num_gap_ack_blocks); i++) {
1217 unack_data -= ((ntohs(frags[i].gab.end) -
1218 ntohs(frags[i].gab.start) + 1));
1219 }
1220
1221 assoc->unack_data = unack_data;
1222}
1223
1da177e4
LT
1224/* This is where we REALLY process a SACK.
1225 *
1226 * Process the SACK against the outqueue. Mostly, this just frees
1227 * things off the transmitted queue.
1228 */
edfee033 1229int sctp_outq_sack(struct sctp_outq *q, struct sctp_chunk *chunk)
1da177e4
LT
1230{
1231 struct sctp_association *asoc = q->asoc;
edfee033 1232 struct sctp_sackhdr *sack = chunk->subh.sack_hdr;
1da177e4
LT
1233 struct sctp_transport *transport;
1234 struct sctp_chunk *tchunk = NULL;
9dbc15f0 1235 struct list_head *lchunk, *transport_list, *temp;
afd93b7b 1236 union sctp_sack_variable *frags = sack->variable;
1da177e4
LT
1237 __u32 sack_ctsn, ctsn, tsn;
1238 __u32 highest_tsn, highest_new_tsn;
1239 __u32 sack_a_rwnd;
95c96174 1240 unsigned int outstanding;
1da177e4
LT
1241 struct sctp_transport *primary = asoc->peer.primary_path;
1242 int count_of_newacks = 0;
2cd9b822 1243 int gap_ack_blocks;
ea862c8d 1244 u8 accum_moved = 0;
1da177e4
LT
1245
1246 /* Grab the association's destination address list. */
1247 transport_list = &asoc->peer.transport_addr_list;
1248
f643ee29 1249 /* SCTP path tracepoint for congestion control debugging. */
f398efc1
KK
1250 if (trace_sctp_probe_path_enabled()) {
1251 list_for_each_entry(transport, transport_list, transports)
1252 trace_sctp_probe_path(transport, asoc);
f643ee29
KK
1253 }
1254
1da177e4 1255 sack_ctsn = ntohl(sack->cum_tsn_ack);
2cd9b822 1256 gap_ack_blocks = ntohs(sack->num_gap_ack_blocks);
196d6759 1257 asoc->stats.gapcnt += gap_ack_blocks;
1da177e4
LT
1258 /*
1259 * SFR-CACC algorithm:
1260 * On receipt of a SACK the sender SHOULD execute the
1261 * following statements.
1262 *
1263 * 1) If the cumulative ack in the SACK passes next tsn_at_change
1264 * on the current primary, the CHANGEOVER_ACTIVE flag SHOULD be
1265 * cleared. The CYCLING_CHANGEOVER flag SHOULD also be cleared for
1266 * all destinations.
1da177e4
LT
1267 * 2) If the SACK contains gap acks and the flag CHANGEOVER_ACTIVE
1268 * is set the receiver of the SACK MUST take the following actions:
1269 *
1270 * A) Initialize the cacc_saw_newack to 0 for all destination
1271 * addresses.
ab5216a5
VY
1272 *
1273 * Only bother if changeover_active is set. Otherwise, this is
1274 * totally suboptimal to do on every SACK.
1da177e4 1275 */
ab5216a5
VY
1276 if (primary->cacc.changeover_active) {
1277 u8 clear_cycling = 0;
1278
1279 if (TSN_lte(primary->cacc.next_tsn_at_change, sack_ctsn)) {
1280 primary->cacc.changeover_active = 0;
1281 clear_cycling = 1;
1282 }
1283
1284 if (clear_cycling || gap_ack_blocks) {
1285 list_for_each_entry(transport, transport_list,
1286 transports) {
1287 if (clear_cycling)
1288 transport->cacc.cycling_changeover = 0;
1289 if (gap_ack_blocks)
1290 transport->cacc.cacc_saw_newack = 0;
1291 }
1da177e4
LT
1292 }
1293 }
1294
1295 /* Get the highest TSN in the sack. */
1296 highest_tsn = sack_ctsn;
2cd9b822
VY
1297 if (gap_ack_blocks)
1298 highest_tsn += ntohs(frags[gap_ack_blocks - 1].gab.end);
1da177e4 1299
bfa0d984 1300 if (TSN_lt(asoc->highest_sacked, highest_tsn))
1da177e4 1301 asoc->highest_sacked = highest_tsn;
1da177e4 1302
bfa0d984 1303 highest_new_tsn = sack_ctsn;
2cd9b822 1304
1da177e4
LT
1305 /* Run through the retransmit queue. Credit bytes received
1306 * and free those chunks that we can.
1307 */
edfee033 1308 sctp_check_transmitted(q, &q->retransmit, NULL, NULL, sack, &highest_new_tsn);
1da177e4
LT
1309
1310 /* Run through the transmitted queue.
1311 * Credit bytes received and free those chunks which we can.
1312 *
1313 * This is a MASSIVE candidate for optimization.
1314 */
9dbc15f0 1315 list_for_each_entry(transport, transport_list, transports) {
1da177e4 1316 sctp_check_transmitted(q, &transport->transmitted,
edfee033
ND
1317 transport, &chunk->source, sack,
1318 &highest_new_tsn);
1da177e4
LT
1319 /*
1320 * SFR-CACC algorithm:
1321 * C) Let count_of_newacks be the number of
1322 * destinations for which cacc_saw_newack is set.
1323 */
1324 if (transport->cacc.cacc_saw_newack)
cb3f837b 1325 count_of_newacks++;
1da177e4
LT
1326 }
1327
ea862c8d
VY
1328 /* Move the Cumulative TSN Ack Point if appropriate. */
1329 if (TSN_lt(asoc->ctsn_ack_point, sack_ctsn)) {
1330 asoc->ctsn_ack_point = sack_ctsn;
1331 accum_moved = 1;
1332 }
1333
2cd9b822 1334 if (gap_ack_blocks) {
ea862c8d
VY
1335
1336 if (asoc->fast_recovery && accum_moved)
1337 highest_new_tsn = highest_tsn;
1338
2cd9b822
VY
1339 list_for_each_entry(transport, transport_list, transports)
1340 sctp_mark_missing(q, &transport->transmitted, transport,
1341 highest_new_tsn, count_of_newacks);
1da177e4
LT
1342 }
1343
1da177e4
LT
1344 /* Update unack_data field in the assoc. */
1345 sctp_sack_update_unack_data(asoc, sack);
1346
1347 ctsn = asoc->ctsn_ack_point;
1348
1349 /* Throw away stuff rotting on the sack queue. */
1350 list_for_each_safe(lchunk, temp, &q->sacked) {
1351 tchunk = list_entry(lchunk, struct sctp_chunk,
1352 transmitted_list);
1353 tsn = ntohl(tchunk->subh.data_hdr->tsn);
5f9646c3
VY
1354 if (TSN_lte(tsn, ctsn)) {
1355 list_del_init(&tchunk->transmitted_list);
be4947bf 1356 if (asoc->peer.prsctp_capable &&
8dbdf1f5
XL
1357 SCTP_PR_PRIO_ENABLED(chunk->sinfo.sinfo_flags))
1358 asoc->sent_cnt_removable--;
1da177e4 1359 sctp_chunk_free(tchunk);
5f9646c3 1360 }
1da177e4
LT
1361 }
1362
1363 /* ii) Set rwnd equal to the newly received a_rwnd minus the
1364 * number of bytes still outstanding after processing the
1365 * Cumulative TSN Ack and the Gap Ack Blocks.
1366 */
1367
1368 sack_a_rwnd = ntohl(sack->a_rwnd);
8a0d19c5 1369 asoc->peer.zero_window_announced = !sack_a_rwnd;
1da177e4
LT
1370 outstanding = q->outstanding_bytes;
1371
1372 if (outstanding < sack_a_rwnd)
1373 sack_a_rwnd -= outstanding;
1374 else
1375 sack_a_rwnd = 0;
1376
1377 asoc->peer.rwnd = sack_a_rwnd;
1378
8e0c3b73 1379 asoc->stream.si->generate_ftsn(q, sack_ctsn);
1da177e4 1380
bb33381d
DB
1381 pr_debug("%s: sack cumulative tsn ack:0x%x\n", __func__, sack_ctsn);
1382 pr_debug("%s: cumulative tsn ack of assoc:%p is 0x%x, "
1383 "advertised peer ack point:0x%x\n", __func__, asoc, ctsn,
1384 asoc->adv_peer_ack_point);
1da177e4 1385
619a60ee 1386 return sctp_outq_is_empty(q);
1da177e4
LT
1387}
1388
619a60ee
VY
1389/* Is the outqueue empty?
1390 * The queue is empty when we have not pending data, no in-flight data
1391 * and nothing pending retransmissions.
1392 */
1da177e4
LT
1393int sctp_outq_is_empty(const struct sctp_outq *q)
1394{
619a60ee
VY
1395 return q->out_qlen == 0 && q->outstanding_bytes == 0 &&
1396 list_empty(&q->retransmit);
1da177e4
LT
1397}
1398
1399/********************************************************************
1400 * 2nd Level Abstractions
1401 ********************************************************************/
1402
1403/* Go through a transport's transmitted list or the association's retransmit
1404 * list and move chunks that are acked by the Cumulative TSN Ack to q->sacked.
1405 * The retransmit list will not have an associated transport.
1406 *
1407 * I added coherent debug information output. --xguo
1408 *
1409 * Instead of printing 'sacked' or 'kept' for each TSN on the
1410 * transmitted_queue, we print a range: SACKED: TSN1-TSN2, TSN3, TSN4-TSN5.
1411 * KEPT TSN6-TSN7, etc.
1412 */
1413static void sctp_check_transmitted(struct sctp_outq *q,
1414 struct list_head *transmitted_queue,
1415 struct sctp_transport *transport,
edfee033 1416 union sctp_addr *saddr,
1da177e4 1417 struct sctp_sackhdr *sack,
bfa0d984 1418 __u32 *highest_new_tsn_in_sack)
1da177e4
LT
1419{
1420 struct list_head *lchunk;
1421 struct sctp_chunk *tchunk;
1422 struct list_head tlist;
1423 __u32 tsn;
1424 __u32 sack_ctsn;
1425 __u32 rtt;
1426 __u8 restart_timer = 0;
1427 int bytes_acked = 0;
31b02e15 1428 int migrate_bytes = 0;
8c2f414a 1429 bool forward_progress = false;
1da177e4 1430
1da177e4
LT
1431 sack_ctsn = ntohl(sack->cum_tsn_ack);
1432
1433 INIT_LIST_HEAD(&tlist);
1434
1435 /* The while loop will skip empty transmitted queues. */
1436 while (NULL != (lchunk = sctp_list_dequeue(transmitted_queue))) {
1437 tchunk = list_entry(lchunk, struct sctp_chunk,
1438 transmitted_list);
1439
1440 if (sctp_chunk_abandoned(tchunk)) {
1441 /* Move the chunk to abandoned list. */
1442 sctp_insert_list(&q->abandoned, lchunk);
8c4a2d41
VY
1443
1444 /* If this chunk has not been acked, stop
1445 * considering it as 'outstanding'.
1446 */
d30fc512
XL
1447 if (transmitted_queue != &q->retransmit &&
1448 !tchunk->tsn_gap_acked) {
31b02e15
VY
1449 if (tchunk->transport)
1450 tchunk->transport->flight_size -=
1451 sctp_data_size(tchunk);
8c4a2d41
VY
1452 q->outstanding_bytes -= sctp_data_size(tchunk);
1453 }
1da177e4
LT
1454 continue;
1455 }
1456
1457 tsn = ntohl(tchunk->subh.data_hdr->tsn);
1458 if (sctp_acked(sack, tsn)) {
1459 /* If this queue is the retransmit queue, the
1460 * retransmit timer has already reclaimed
1461 * the outstanding bytes for this chunk, so only
1462 * count bytes associated with a transport.
1463 */
51446780 1464 if (transport && !tchunk->tsn_gap_acked) {
1da177e4
LT
1465 /* If this chunk is being used for RTT
1466 * measurement, calculate the RTT and update
1467 * the RTO using this value.
1468 *
1469 * 6.3.1 C5) Karn's algorithm: RTT measurements
1470 * MUST NOT be made using packets that were
1471 * retransmitted (and thus for which it is
1472 * ambiguous whether the reply was for the
1473 * first instance of the packet or a later
1474 * instance).
1475 */
51446780 1476 if (!sctp_chunk_retransmitted(tchunk) &&
1da177e4 1477 tchunk->rtt_in_progress) {
4c9f5d53 1478 tchunk->rtt_in_progress = 0;
1da177e4
LT
1479 rtt = jiffies - tchunk->sent_at;
1480 sctp_transport_update_rto(transport,
1481 rtt);
1482 }
51446780
MRL
1483
1484 if (TSN_lte(tsn, sack_ctsn)) {
1485 /*
1486 * SFR-CACC algorithm:
1487 * 2) If the SACK contains gap acks
1488 * and the flag CHANGEOVER_ACTIVE is
1489 * set the receiver of the SACK MUST
1490 * take the following action:
1491 *
1492 * B) For each TSN t being acked that
1493 * has not been acked in any SACK so
1494 * far, set cacc_saw_newack to 1 for
1495 * the destination that the TSN was
1496 * sent to.
1497 */
1498 if (sack->num_gap_ack_blocks &&
1499 q->asoc->peer.primary_path->cacc.
1500 changeover_active)
1501 transport->cacc.cacc_saw_newack
1502 = 1;
1503 }
1da177e4 1504 }
31b02e15
VY
1505
1506 /* If the chunk hasn't been marked as ACKED,
1507 * mark it and account bytes_acked if the
1508 * chunk had a valid transport (it will not
1509 * have a transport if ASCONF had deleted it
1510 * while DATA was outstanding).
1511 */
1512 if (!tchunk->tsn_gap_acked) {
1513 tchunk->tsn_gap_acked = 1;
d6c41614
CX
1514 if (TSN_lt(*highest_new_tsn_in_sack, tsn))
1515 *highest_new_tsn_in_sack = tsn;
31b02e15
VY
1516 bytes_acked += sctp_data_size(tchunk);
1517 if (!tchunk->transport)
1518 migrate_bytes += sctp_data_size(tchunk);
8c2f414a 1519 forward_progress = true;
31b02e15
VY
1520 }
1521
d808ad9a 1522 if (TSN_lte(tsn, sack_ctsn)) {
1da177e4
LT
1523 /* RFC 2960 6.3.2 Retransmission Timer Rules
1524 *
1525 * R3) Whenever a SACK is received
1526 * that acknowledges the DATA chunk
1527 * with the earliest outstanding TSN
1528 * for that address, restart T3-rtx
1529 * timer for that address with its
1530 * current RTO.
1531 */
1532 restart_timer = 1;
8c2f414a 1533 forward_progress = true;
1da177e4 1534
1da177e4
LT
1535 list_add_tail(&tchunk->transmitted_list,
1536 &q->sacked);
1537 } else {
1538 /* RFC2960 7.2.4, sctpimpguide-05 2.8.2
1539 * M2) Each time a SACK arrives reporting
1540 * 'Stray DATA chunk(s)' record the highest TSN
1541 * reported as newly acknowledged, call this
1542 * value 'HighestTSNinSack'. A newly
1543 * acknowledged DATA chunk is one not
1544 * previously acknowledged in a SACK.
1545 *
1546 * When the SCTP sender of data receives a SACK
1547 * chunk that acknowledges, for the first time,
1548 * the receipt of a DATA chunk, all the still
1549 * unacknowledged DATA chunks whose TSN is
1550 * older than that newly acknowledged DATA
1551 * chunk, are qualified as 'Stray DATA chunks'.
1552 */
1da177e4
LT
1553 list_add_tail(lchunk, &tlist);
1554 }
1da177e4
LT
1555 } else {
1556 if (tchunk->tsn_gap_acked) {
bb33381d
DB
1557 pr_debug("%s: receiver reneged on data TSN:0x%x\n",
1558 __func__, tsn);
1559
1da177e4
LT
1560 tchunk->tsn_gap_acked = 0;
1561
31b02e15
VY
1562 if (tchunk->transport)
1563 bytes_acked -= sctp_data_size(tchunk);
1da177e4
LT
1564
1565 /* RFC 2960 6.3.2 Retransmission Timer Rules
1566 *
1567 * R4) Whenever a SACK is received missing a
1568 * TSN that was previously acknowledged via a
1569 * Gap Ack Block, start T3-rtx for the
1570 * destination address to which the DATA
1571 * chunk was originally
1572 * transmitted if it is not already running.
1573 */
1574 restart_timer = 1;
1575 }
1576
1577 list_add_tail(lchunk, &tlist);
1da177e4
LT
1578 }
1579 }
1580
1da177e4
LT
1581 if (transport) {
1582 if (bytes_acked) {
f8d96052
TG
1583 struct sctp_association *asoc = transport->asoc;
1584
31b02e15
VY
1585 /* We may have counted DATA that was migrated
1586 * to this transport due to DEL-IP operation.
1587 * Subtract those bytes, since the were never
1588 * send on this transport and shouldn't be
1589 * credited to this transport.
1590 */
1591 bytes_acked -= migrate_bytes;
1592
1da177e4
LT
1593 /* 8.2. When an outstanding TSN is acknowledged,
1594 * the endpoint shall clear the error counter of
1595 * the destination transport address to which the
1596 * DATA chunk was last sent.
1597 * The association's overall error counter is
1598 * also cleared.
1599 */
1600 transport->error_count = 0;
1601 transport->asoc->overall_error_count = 0;
8c2f414a 1602 forward_progress = true;
1da177e4 1603
f8d96052
TG
1604 /*
1605 * While in SHUTDOWN PENDING, we may have started
1606 * the T5 shutdown guard timer after reaching the
1607 * retransmission limit. Stop that timer as soon
1608 * as the receiver acknowledged any data.
1609 */
1610 if (asoc->state == SCTP_STATE_SHUTDOWN_PENDING &&
1611 del_timer(&asoc->timers
1612 [SCTP_EVENT_TIMEOUT_T5_SHUTDOWN_GUARD]))
1613 sctp_association_put(asoc);
1614
1da177e4
LT
1615 /* Mark the destination transport address as
1616 * active if it is not so marked.
1617 */
edfee033
ND
1618 if ((transport->state == SCTP_INACTIVE ||
1619 transport->state == SCTP_UNCONFIRMED) &&
1620 sctp_cmp_addr_exact(&transport->ipaddr, saddr)) {
1da177e4
LT
1621 sctp_assoc_control_transport(
1622 transport->asoc,
1623 transport,
1624 SCTP_TRANSPORT_UP,
1625 SCTP_RECEIVED_SACK);
1626 }
1627
1628 sctp_transport_raise_cwnd(transport, sack_ctsn,
1629 bytes_acked);
1630
1631 transport->flight_size -= bytes_acked;
8b73a07c
GJ
1632 if (transport->flight_size == 0)
1633 transport->partial_bytes_acked = 0;
31b02e15 1634 q->outstanding_bytes -= bytes_acked + migrate_bytes;
1da177e4
LT
1635 } else {
1636 /* RFC 2960 6.1, sctpimpguide-06 2.15.2
1637 * When a sender is doing zero window probing, it
1638 * should not timeout the association if it continues
1639 * to receive new packets from the receiver. The
1640 * reason is that the receiver MAY keep its window
1641 * closed for an indefinite time.
1642 * A sender is doing zero window probing when the
1643 * receiver's advertised window is zero, and there is
1644 * only one data chunk in flight to the receiver.
f8d96052
TG
1645 *
1646 * Allow the association to timeout while in SHUTDOWN
1647 * PENDING or SHUTDOWN RECEIVED in case the receiver
1648 * stays in zero window mode forever.
1da177e4
LT
1649 */
1650 if (!q->asoc->peer.rwnd &&
1651 !list_empty(&tlist) &&
f8d96052
TG
1652 (sack_ctsn+2 == q->asoc->next_tsn) &&
1653 q->asoc->state < SCTP_STATE_SHUTDOWN_PENDING) {
bb33381d
DB
1654 pr_debug("%s: sack received for zero window "
1655 "probe:%u\n", __func__, sack_ctsn);
1656
1da177e4
LT
1657 q->asoc->overall_error_count = 0;
1658 transport->error_count = 0;
1659 }
1660 }
1661
1662 /* RFC 2960 6.3.2 Retransmission Timer Rules
1663 *
1664 * R2) Whenever all outstanding data sent to an address have
1665 * been acknowledged, turn off the T3-rtx timer of that
1666 * address.
1667 */
1668 if (!transport->flight_size) {
25cc4ae9 1669 if (del_timer(&transport->T3_rtx_timer))
1da177e4 1670 sctp_transport_put(transport);
1da177e4
LT
1671 } else if (restart_timer) {
1672 if (!mod_timer(&transport->T3_rtx_timer,
1673 jiffies + transport->rto))
1674 sctp_transport_hold(transport);
1675 }
8c2f414a
DB
1676
1677 if (forward_progress) {
1678 if (transport->dst)
c86a773c 1679 sctp_transport_dst_confirm(transport);
8c2f414a 1680 }
1da177e4
LT
1681 }
1682
1683 list_splice(&tlist, transmitted_queue);
1684}
1685
1686/* Mark chunks as missing and consequently may get retransmitted. */
1687static void sctp_mark_missing(struct sctp_outq *q,
1688 struct list_head *transmitted_queue,
1689 struct sctp_transport *transport,
1690 __u32 highest_new_tsn_in_sack,
1691 int count_of_newacks)
1692{
1693 struct sctp_chunk *chunk;
1da177e4
LT
1694 __u32 tsn;
1695 char do_fast_retransmit = 0;
ea862c8d
VY
1696 struct sctp_association *asoc = q->asoc;
1697 struct sctp_transport *primary = asoc->peer.primary_path;
1da177e4 1698
9dbc15f0 1699 list_for_each_entry(chunk, transmitted_queue, transmitted_list) {
1da177e4 1700
1da177e4
LT
1701 tsn = ntohl(chunk->subh.data_hdr->tsn);
1702
1703 /* RFC 2960 7.2.4, sctpimpguide-05 2.8.2 M3) Examine all
1704 * 'Unacknowledged TSN's', if the TSN number of an
1705 * 'Unacknowledged TSN' is smaller than the 'HighestTSNinSack'
1706 * value, increment the 'TSN.Missing.Report' count on that
1707 * chunk if it has NOT been fast retransmitted or marked for
1708 * fast retransmit already.
1709 */
c226ef9b 1710 if (chunk->fast_retransmit == SCTP_CAN_FRTX &&
1da177e4
LT
1711 !chunk->tsn_gap_acked &&
1712 TSN_lt(tsn, highest_new_tsn_in_sack)) {
1713
1714 /* SFR-CACC may require us to skip marking
1715 * this chunk as missing.
1716 */
f246a7b7
VY
1717 if (!transport || !sctp_cacc_skip(primary,
1718 chunk->transport,
1719 count_of_newacks, tsn)) {
1da177e4
LT
1720 chunk->tsn_missing_report++;
1721
bb33381d
DB
1722 pr_debug("%s: tsn:0x%x missing counter:%d\n",
1723 __func__, tsn, chunk->tsn_missing_report);
1da177e4
LT
1724 }
1725 }
1726 /*
1727 * M4) If any DATA chunk is found to have a
1728 * 'TSN.Missing.Report'
27852c26 1729 * value larger than or equal to 3, mark that chunk for
1da177e4
LT
1730 * retransmission and start the fast retransmit procedure.
1731 */
1732
27852c26 1733 if (chunk->tsn_missing_report >= 3) {
c226ef9b 1734 chunk->fast_retransmit = SCTP_NEED_FRTX;
1da177e4
LT
1735 do_fast_retransmit = 1;
1736 }
1737 }
1738
1739 if (transport) {
1740 if (do_fast_retransmit)
1741 sctp_retransmit(q, transport, SCTP_RTXR_FAST_RTX);
1742
bb33381d
DB
1743 pr_debug("%s: transport:%p, cwnd:%d, ssthresh:%d, "
1744 "flight_size:%d, pba:%d\n", __func__, transport,
1745 transport->cwnd, transport->ssthresh,
1746 transport->flight_size, transport->partial_bytes_acked);
1da177e4
LT
1747 }
1748}
1749
1750/* Is the given TSN acked by this packet? */
1751static int sctp_acked(struct sctp_sackhdr *sack, __u32 tsn)
1752{
1da177e4 1753 __u32 ctsn = ntohl(sack->cum_tsn_ack);
afd93b7b
XL
1754 union sctp_sack_variable *frags;
1755 __u16 tsn_offset, blocks;
1756 int i;
1da177e4 1757
d808ad9a 1758 if (TSN_lte(tsn, ctsn))
1da177e4
LT
1759 goto pass;
1760
5884f35f 1761 /* 3.3.4 Selective Acknowledgment (SACK) (3):
1da177e4
LT
1762 *
1763 * Gap Ack Blocks:
1764 * These fields contain the Gap Ack Blocks. They are repeated
1765 * for each Gap Ack Block up to the number of Gap Ack Blocks
1766 * defined in the Number of Gap Ack Blocks field. All DATA
1767 * chunks with TSNs greater than or equal to (Cumulative TSN
1768 * Ack + Gap Ack Block Start) and less than or equal to
1769 * (Cumulative TSN Ack + Gap Ack Block End) of each Gap Ack
1770 * Block are assumed to have been received correctly.
1771 */
1772
1773 frags = sack->variable;
a3007446
MRL
1774 blocks = ntohs(sack->num_gap_ack_blocks);
1775 tsn_offset = tsn - ctsn;
1776 for (i = 0; i < blocks; ++i) {
1777 if (tsn_offset >= ntohs(frags[i].gab.start) &&
1778 tsn_offset <= ntohs(frags[i].gab.end))
1da177e4
LT
1779 goto pass;
1780 }
1781
1782 return 0;
1783pass:
1784 return 1;
1785}
1786
1787static inline int sctp_get_skip_pos(struct sctp_fwdtsn_skip *skiplist,
9f81bcd9 1788 int nskips, __be16 stream)
1da177e4
LT
1789{
1790 int i;
1791
1792 for (i = 0; i < nskips; i++) {
1793 if (skiplist[i].stream == stream)
1794 return i;
1795 }
1796 return i;
1797}
1798
1799/* Create and add a fwdtsn chunk to the outq's control queue if needed. */
8e0c3b73 1800void sctp_generate_fwdtsn(struct sctp_outq *q, __u32 ctsn)
1da177e4
LT
1801{
1802 struct sctp_association *asoc = q->asoc;
1803 struct sctp_chunk *ftsn_chunk = NULL;
1804 struct sctp_fwdtsn_skip ftsn_skip_arr[10];
1805 int nskips = 0;
1806 int skip_pos = 0;
1807 __u32 tsn;
1808 struct sctp_chunk *chunk;
1809 struct list_head *lchunk, *temp;
1810
76595024
WY
1811 if (!asoc->peer.prsctp_capable)
1812 return;
1813
1da177e4
LT
1814 /* PR-SCTP C1) Let SackCumAck be the Cumulative TSN ACK carried in the
1815 * received SACK.
d808ad9a 1816 *
1da177e4
LT
1817 * If (Advanced.Peer.Ack.Point < SackCumAck), then update
1818 * Advanced.Peer.Ack.Point to be equal to SackCumAck.
1819 */
1820 if (TSN_lt(asoc->adv_peer_ack_point, ctsn))
1821 asoc->adv_peer_ack_point = ctsn;
1822
1823 /* PR-SCTP C2) Try to further advance the "Advanced.Peer.Ack.Point"
1824 * locally, that is, to move "Advanced.Peer.Ack.Point" up as long as
1825 * the chunk next in the out-queue space is marked as "abandoned" as
1826 * shown in the following example:
1827 *
1828 * Assuming that a SACK arrived with the Cumulative TSN ACK 102
1829 * and the Advanced.Peer.Ack.Point is updated to this value:
d808ad9a 1830 *
1da177e4
LT
1831 * out-queue at the end of ==> out-queue after Adv.Ack.Point
1832 * normal SACK processing local advancement
1833 * ... ...
1834 * Adv.Ack.Pt-> 102 acked 102 acked
1835 * 103 abandoned 103 abandoned
1836 * 104 abandoned Adv.Ack.P-> 104 abandoned
1837 * 105 105
1838 * 106 acked 106 acked
1839 * ... ...
1840 *
1841 * In this example, the data sender successfully advanced the
1842 * "Advanced.Peer.Ack.Point" from 102 to 104 locally.
1843 */
1844 list_for_each_safe(lchunk, temp, &q->abandoned) {
1845 chunk = list_entry(lchunk, struct sctp_chunk,
1846 transmitted_list);
1847 tsn = ntohl(chunk->subh.data_hdr->tsn);
1848
1849 /* Remove any chunks in the abandoned queue that are acked by
1850 * the ctsn.
d808ad9a 1851 */
1da177e4
LT
1852 if (TSN_lte(tsn, ctsn)) {
1853 list_del_init(lchunk);
1da177e4
LT
1854 sctp_chunk_free(chunk);
1855 } else {
1856 if (TSN_lte(tsn, asoc->adv_peer_ack_point+1)) {
1857 asoc->adv_peer_ack_point = tsn;
1858 if (chunk->chunk_hdr->flags &
1859 SCTP_DATA_UNORDERED)
1860 continue;
1861 skip_pos = sctp_get_skip_pos(&ftsn_skip_arr[0],
1862 nskips,
1863 chunk->subh.data_hdr->stream);
1864 ftsn_skip_arr[skip_pos].stream =
1865 chunk->subh.data_hdr->stream;
1866 ftsn_skip_arr[skip_pos].ssn =
1867 chunk->subh.data_hdr->ssn;
1868 if (skip_pos == nskips)
1869 nskips++;
1870 if (nskips == 10)
1871 break;
1872 } else
1873 break;
1874 }
1875 }
1876
1877 /* PR-SCTP C3) If, after step C1 and C2, the "Advanced.Peer.Ack.Point"
1878 * is greater than the Cumulative TSN ACK carried in the received
1879 * SACK, the data sender MUST send the data receiver a FORWARD TSN
1880 * chunk containing the latest value of the
1881 * "Advanced.Peer.Ack.Point".
1882 *
1883 * C4) For each "abandoned" TSN the sender of the FORWARD TSN SHOULD
1884 * list each stream and sequence number in the forwarded TSN. This
1885 * information will enable the receiver to easily find any
1886 * stranded TSN's waiting on stream reorder queues. Each stream
1887 * SHOULD only be reported once; this means that if multiple
1888 * abandoned messages occur in the same stream then only the
1889 * highest abandoned stream sequence number is reported. If the
1890 * total size of the FORWARD TSN does NOT fit in a single MTU then
1891 * the sender of the FORWARD TSN SHOULD lower the
1892 * Advanced.Peer.Ack.Point to the last TSN that will fit in a
1893 * single MTU.
1894 */
1895 if (asoc->adv_peer_ack_point > ctsn)
1896 ftsn_chunk = sctp_make_fwdtsn(asoc, asoc->adv_peer_ack_point,
d808ad9a 1897 nskips, &ftsn_skip_arr[0]);
1da177e4
LT
1898
1899 if (ftsn_chunk) {
79af02c2 1900 list_add_tail(&ftsn_chunk->list, &q->control_chunk_list);
4e7696d9 1901 SCTP_INC_STATS(asoc->base.net, SCTP_MIB_OUTCTRLCHUNKS);
1da177e4
LT
1902 }
1903}