1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* SCTP kernel implementation
3 * (C) Copyright Red Hat Inc. 2017
5 * This file is part of the SCTP kernel implementation
7 * These functions implement sctp stream message interleaving, mostly
8 * including I-DATA and I-FORWARD-TSN chunks process.
10 * Please send any bug reports or fixes you make to the
11 * email addresched(es):
12 * lksctp developers <linux-sctp@vger.kernel.org>
14 * Written or modified by:
15 * Xin Long <lucien.xin@gmail.com>
18 #include <net/busy_poll.h>
19 #include <net/sctp/sctp.h>
20 #include <net/sctp/sm.h>
21 #include <net/sctp/ulpevent.h>
22 #include <linux/sctp.h>
24 static struct sctp_chunk
*sctp_make_idatafrag_empty(
25 const struct sctp_association
*asoc
,
26 const struct sctp_sndrcvinfo
*sinfo
,
27 int len
, __u8 flags
, gfp_t gfp
)
29 struct sctp_chunk
*retval
;
30 struct sctp_idatahdr dp
;
32 memset(&dp
, 0, sizeof(dp
));
33 dp
.stream
= htons(sinfo
->sinfo_stream
);
35 if (sinfo
->sinfo_flags
& SCTP_UNORDERED
)
36 flags
|= SCTP_DATA_UNORDERED
;
38 retval
= sctp_make_idata(asoc
, flags
, sizeof(dp
) + len
, gfp
);
42 retval
->subh
.idata_hdr
= sctp_addto_chunk(retval
, sizeof(dp
), &dp
);
43 memcpy(&retval
->sinfo
, sinfo
, sizeof(struct sctp_sndrcvinfo
));
48 static void sctp_chunk_assign_mid(struct sctp_chunk
*chunk
)
50 struct sctp_stream
*stream
;
51 struct sctp_chunk
*lchunk
;
58 sid
= sctp_chunk_stream_no(chunk
);
59 stream
= &chunk
->asoc
->stream
;
61 list_for_each_entry(lchunk
, &chunk
->msg
->chunks
, frag_list
) {
62 struct sctp_idatahdr
*hdr
;
67 hdr
= lchunk
->subh
.idata_hdr
;
69 if (lchunk
->chunk_hdr
->flags
& SCTP_DATA_FIRST_FRAG
)
70 hdr
->ppid
= lchunk
->sinfo
.sinfo_ppid
;
72 hdr
->fsn
= htonl(cfsn
++);
74 if (lchunk
->chunk_hdr
->flags
& SCTP_DATA_UNORDERED
) {
75 mid
= lchunk
->chunk_hdr
->flags
& SCTP_DATA_LAST_FRAG
?
76 sctp_mid_uo_next(stream
, out
, sid
) :
77 sctp_mid_uo_peek(stream
, out
, sid
);
79 mid
= lchunk
->chunk_hdr
->flags
& SCTP_DATA_LAST_FRAG
?
80 sctp_mid_next(stream
, out
, sid
) :
81 sctp_mid_peek(stream
, out
, sid
);
83 hdr
->mid
= htonl(mid
);
87 static bool sctp_validate_data(struct sctp_chunk
*chunk
)
89 struct sctp_stream
*stream
;
92 if (chunk
->chunk_hdr
->type
!= SCTP_CID_DATA
)
95 if (chunk
->chunk_hdr
->flags
& SCTP_DATA_UNORDERED
)
98 stream
= &chunk
->asoc
->stream
;
99 sid
= sctp_chunk_stream_no(chunk
);
100 ssn
= ntohs(chunk
->subh
.data_hdr
->ssn
);
102 return !SSN_lt(ssn
, sctp_ssn_peek(stream
, in
, sid
));
105 static bool sctp_validate_idata(struct sctp_chunk
*chunk
)
107 struct sctp_stream
*stream
;
111 if (chunk
->chunk_hdr
->type
!= SCTP_CID_I_DATA
)
114 if (chunk
->chunk_hdr
->flags
& SCTP_DATA_UNORDERED
)
117 stream
= &chunk
->asoc
->stream
;
118 sid
= sctp_chunk_stream_no(chunk
);
119 mid
= ntohl(chunk
->subh
.idata_hdr
->mid
);
121 return !MID_lt(mid
, sctp_mid_peek(stream
, in
, sid
));
124 static void sctp_intl_store_reasm(struct sctp_ulpq
*ulpq
,
125 struct sctp_ulpevent
*event
)
127 struct sctp_ulpevent
*cevent
;
128 struct sk_buff
*pos
, *loc
;
130 pos
= skb_peek_tail(&ulpq
->reasm
);
132 __skb_queue_tail(&ulpq
->reasm
, sctp_event2skb(event
));
136 cevent
= sctp_skb2event(pos
);
138 if (event
->stream
== cevent
->stream
&&
139 event
->mid
== cevent
->mid
&&
140 (cevent
->msg_flags
& SCTP_DATA_FIRST_FRAG
||
141 (!(event
->msg_flags
& SCTP_DATA_FIRST_FRAG
) &&
142 event
->fsn
> cevent
->fsn
))) {
143 __skb_queue_tail(&ulpq
->reasm
, sctp_event2skb(event
));
147 if ((event
->stream
== cevent
->stream
&&
148 MID_lt(cevent
->mid
, event
->mid
)) ||
149 event
->stream
> cevent
->stream
) {
150 __skb_queue_tail(&ulpq
->reasm
, sctp_event2skb(event
));
155 skb_queue_walk(&ulpq
->reasm
, pos
) {
156 cevent
= sctp_skb2event(pos
);
158 if (event
->stream
< cevent
->stream
||
159 (event
->stream
== cevent
->stream
&&
160 MID_lt(event
->mid
, cevent
->mid
))) {
164 if (event
->stream
== cevent
->stream
&&
165 event
->mid
== cevent
->mid
&&
166 !(cevent
->msg_flags
& SCTP_DATA_FIRST_FRAG
) &&
167 (event
->msg_flags
& SCTP_DATA_FIRST_FRAG
||
168 event
->fsn
< cevent
->fsn
)) {
175 __skb_queue_tail(&ulpq
->reasm
, sctp_event2skb(event
));
177 __skb_queue_before(&ulpq
->reasm
, loc
, sctp_event2skb(event
));
180 static struct sctp_ulpevent
*sctp_intl_retrieve_partial(
181 struct sctp_ulpq
*ulpq
,
182 struct sctp_ulpevent
*event
)
184 struct sk_buff
*first_frag
= NULL
;
185 struct sk_buff
*last_frag
= NULL
;
186 struct sctp_ulpevent
*retval
;
187 struct sctp_stream_in
*sin
;
192 sin
= sctp_stream_in(&ulpq
->asoc
->stream
, event
->stream
);
194 skb_queue_walk(&ulpq
->reasm
, pos
) {
195 struct sctp_ulpevent
*cevent
= sctp_skb2event(pos
);
197 if (cevent
->stream
< event
->stream
)
200 if (cevent
->stream
> event
->stream
||
201 cevent
->mid
!= sin
->mid
)
204 switch (cevent
->msg_flags
& SCTP_DATA_FRAG_MASK
) {
205 case SCTP_DATA_FIRST_FRAG
:
207 case SCTP_DATA_MIDDLE_FRAG
:
209 if (cevent
->fsn
== sin
->fsn
) {
212 next_fsn
= cevent
->fsn
+ 1;
214 } else if (cevent
->fsn
== next_fsn
) {
221 case SCTP_DATA_LAST_FRAG
:
223 if (cevent
->fsn
== sin
->fsn
) {
229 } else if (cevent
->fsn
== next_fsn
) {
244 retval
= sctp_make_reassembled_event(ulpq
->asoc
->base
.net
, &ulpq
->reasm
,
245 first_frag
, last_frag
);
249 retval
->msg_flags
|= MSG_EOR
;
257 static struct sctp_ulpevent
*sctp_intl_retrieve_reassembled(
258 struct sctp_ulpq
*ulpq
,
259 struct sctp_ulpevent
*event
)
261 struct sctp_association
*asoc
= ulpq
->asoc
;
262 struct sk_buff
*pos
, *first_frag
= NULL
;
263 struct sctp_ulpevent
*retval
= NULL
;
264 struct sk_buff
*pd_first
= NULL
;
265 struct sk_buff
*pd_last
= NULL
;
266 struct sctp_stream_in
*sin
;
272 sin
= sctp_stream_in(&ulpq
->asoc
->stream
, event
->stream
);
274 skb_queue_walk(&ulpq
->reasm
, pos
) {
275 struct sctp_ulpevent
*cevent
= sctp_skb2event(pos
);
277 if (cevent
->stream
< event
->stream
)
279 if (cevent
->stream
> event
->stream
)
282 if (MID_lt(cevent
->mid
, event
->mid
))
284 if (MID_lt(event
->mid
, cevent
->mid
))
287 switch (cevent
->msg_flags
& SCTP_DATA_FRAG_MASK
) {
288 case SCTP_DATA_FIRST_FRAG
:
289 if (cevent
->mid
== sin
->mid
) {
300 case SCTP_DATA_MIDDLE_FRAG
:
301 if (first_frag
&& cevent
->mid
== mid
&&
302 cevent
->fsn
== next_fsn
) {
313 case SCTP_DATA_LAST_FRAG
:
314 if (first_frag
&& cevent
->mid
== mid
&&
315 cevent
->fsn
== next_fsn
)
326 pd_point
= sctp_sk(asoc
->base
.sk
)->pd_point
;
327 if (pd_point
&& pd_point
<= pd_len
) {
328 retval
= sctp_make_reassembled_event(asoc
->base
.net
,
339 retval
= sctp_make_reassembled_event(asoc
->base
.net
, &ulpq
->reasm
,
342 retval
->msg_flags
|= MSG_EOR
;
348 static struct sctp_ulpevent
*sctp_intl_reasm(struct sctp_ulpq
*ulpq
,
349 struct sctp_ulpevent
*event
)
351 struct sctp_ulpevent
*retval
= NULL
;
352 struct sctp_stream_in
*sin
;
354 if (SCTP_DATA_NOT_FRAG
== (event
->msg_flags
& SCTP_DATA_FRAG_MASK
)) {
355 event
->msg_flags
|= MSG_EOR
;
359 sctp_intl_store_reasm(ulpq
, event
);
361 sin
= sctp_stream_in(&ulpq
->asoc
->stream
, event
->stream
);
362 if (sin
->pd_mode
&& event
->mid
== sin
->mid
&&
363 event
->fsn
== sin
->fsn
)
364 retval
= sctp_intl_retrieve_partial(ulpq
, event
);
367 retval
= sctp_intl_retrieve_reassembled(ulpq
, event
);
372 static void sctp_intl_store_ordered(struct sctp_ulpq
*ulpq
,
373 struct sctp_ulpevent
*event
)
375 struct sctp_ulpevent
*cevent
;
376 struct sk_buff
*pos
, *loc
;
378 pos
= skb_peek_tail(&ulpq
->lobby
);
380 __skb_queue_tail(&ulpq
->lobby
, sctp_event2skb(event
));
384 cevent
= (struct sctp_ulpevent
*)pos
->cb
;
385 if (event
->stream
== cevent
->stream
&&
386 MID_lt(cevent
->mid
, event
->mid
)) {
387 __skb_queue_tail(&ulpq
->lobby
, sctp_event2skb(event
));
391 if (event
->stream
> cevent
->stream
) {
392 __skb_queue_tail(&ulpq
->lobby
, sctp_event2skb(event
));
397 skb_queue_walk(&ulpq
->lobby
, pos
) {
398 cevent
= (struct sctp_ulpevent
*)pos
->cb
;
400 if (cevent
->stream
> event
->stream
) {
404 if (cevent
->stream
== event
->stream
&&
405 MID_lt(event
->mid
, cevent
->mid
)) {
412 __skb_queue_tail(&ulpq
->lobby
, sctp_event2skb(event
));
414 __skb_queue_before(&ulpq
->lobby
, loc
, sctp_event2skb(event
));
417 static void sctp_intl_retrieve_ordered(struct sctp_ulpq
*ulpq
,
418 struct sctp_ulpevent
*event
)
420 struct sk_buff_head
*event_list
;
421 struct sctp_stream
*stream
;
422 struct sk_buff
*pos
, *tmp
;
423 __u16 sid
= event
->stream
;
425 stream
= &ulpq
->asoc
->stream
;
426 event_list
= (struct sk_buff_head
*)sctp_event2skb(event
)->prev
;
428 sctp_skb_for_each(pos
, &ulpq
->lobby
, tmp
) {
429 struct sctp_ulpevent
*cevent
= (struct sctp_ulpevent
*)pos
->cb
;
431 if (cevent
->stream
> sid
)
434 if (cevent
->stream
< sid
)
437 if (cevent
->mid
!= sctp_mid_peek(stream
, in
, sid
))
440 sctp_mid_next(stream
, in
, sid
);
442 __skb_unlink(pos
, &ulpq
->lobby
);
444 __skb_queue_tail(event_list
, pos
);
448 static struct sctp_ulpevent
*sctp_intl_order(struct sctp_ulpq
*ulpq
,
449 struct sctp_ulpevent
*event
)
451 struct sctp_stream
*stream
;
454 stream
= &ulpq
->asoc
->stream
;
457 if (event
->mid
!= sctp_mid_peek(stream
, in
, sid
)) {
458 sctp_intl_store_ordered(ulpq
, event
);
462 sctp_mid_next(stream
, in
, sid
);
464 sctp_intl_retrieve_ordered(ulpq
, event
);
469 static int sctp_enqueue_event(struct sctp_ulpq
*ulpq
,
470 struct sk_buff_head
*skb_list
)
472 struct sock
*sk
= ulpq
->asoc
->base
.sk
;
473 struct sctp_sock
*sp
= sctp_sk(sk
);
474 struct sctp_ulpevent
*event
;
477 skb
= __skb_peek(skb_list
);
478 event
= sctp_skb2event(skb
);
480 if (sk
->sk_shutdown
& RCV_SHUTDOWN
&&
481 (sk
->sk_shutdown
& SEND_SHUTDOWN
||
482 !sctp_ulpevent_is_notification(event
)))
485 if (!sctp_ulpevent_is_notification(event
)) {
486 sk_mark_napi_id(sk
, skb
);
487 sk_incoming_cpu_update(sk
);
490 if (!sctp_ulpevent_is_enabled(event
, ulpq
->asoc
->subscribe
))
494 skb_queue_splice_tail_init(skb_list
,
495 &sk
->sk_receive_queue
);
497 __skb_queue_tail(&sk
->sk_receive_queue
, skb
);
499 if (!sp
->data_ready_signalled
) {
500 sp
->data_ready_signalled
= 1;
501 sk
->sk_data_ready(sk
);
508 sctp_queue_purge_ulpevents(skb_list
);
510 sctp_ulpevent_free(event
);
515 static void sctp_intl_store_reasm_uo(struct sctp_ulpq
*ulpq
,
516 struct sctp_ulpevent
*event
)
518 struct sctp_ulpevent
*cevent
;
521 pos
= skb_peek_tail(&ulpq
->reasm_uo
);
523 __skb_queue_tail(&ulpq
->reasm_uo
, sctp_event2skb(event
));
527 cevent
= sctp_skb2event(pos
);
529 if (event
->stream
== cevent
->stream
&&
530 event
->mid
== cevent
->mid
&&
531 (cevent
->msg_flags
& SCTP_DATA_FIRST_FRAG
||
532 (!(event
->msg_flags
& SCTP_DATA_FIRST_FRAG
) &&
533 event
->fsn
> cevent
->fsn
))) {
534 __skb_queue_tail(&ulpq
->reasm_uo
, sctp_event2skb(event
));
538 if ((event
->stream
== cevent
->stream
&&
539 MID_lt(cevent
->mid
, event
->mid
)) ||
540 event
->stream
> cevent
->stream
) {
541 __skb_queue_tail(&ulpq
->reasm_uo
, sctp_event2skb(event
));
545 skb_queue_walk(&ulpq
->reasm_uo
, pos
) {
546 cevent
= sctp_skb2event(pos
);
548 if (event
->stream
< cevent
->stream
||
549 (event
->stream
== cevent
->stream
&&
550 MID_lt(event
->mid
, cevent
->mid
)))
553 if (event
->stream
== cevent
->stream
&&
554 event
->mid
== cevent
->mid
&&
555 !(cevent
->msg_flags
& SCTP_DATA_FIRST_FRAG
) &&
556 (event
->msg_flags
& SCTP_DATA_FIRST_FRAG
||
557 event
->fsn
< cevent
->fsn
))
561 __skb_queue_before(&ulpq
->reasm_uo
, pos
, sctp_event2skb(event
));
564 static struct sctp_ulpevent
*sctp_intl_retrieve_partial_uo(
565 struct sctp_ulpq
*ulpq
,
566 struct sctp_ulpevent
*event
)
568 struct sk_buff
*first_frag
= NULL
;
569 struct sk_buff
*last_frag
= NULL
;
570 struct sctp_ulpevent
*retval
;
571 struct sctp_stream_in
*sin
;
576 sin
= sctp_stream_in(&ulpq
->asoc
->stream
, event
->stream
);
578 skb_queue_walk(&ulpq
->reasm_uo
, pos
) {
579 struct sctp_ulpevent
*cevent
= sctp_skb2event(pos
);
581 if (cevent
->stream
< event
->stream
)
583 if (cevent
->stream
> event
->stream
)
586 if (MID_lt(cevent
->mid
, sin
->mid_uo
))
588 if (MID_lt(sin
->mid_uo
, cevent
->mid
))
591 switch (cevent
->msg_flags
& SCTP_DATA_FRAG_MASK
) {
592 case SCTP_DATA_FIRST_FRAG
:
594 case SCTP_DATA_MIDDLE_FRAG
:
596 if (cevent
->fsn
== sin
->fsn_uo
) {
599 next_fsn
= cevent
->fsn
+ 1;
601 } else if (cevent
->fsn
== next_fsn
) {
608 case SCTP_DATA_LAST_FRAG
:
610 if (cevent
->fsn
== sin
->fsn_uo
) {
616 } else if (cevent
->fsn
== next_fsn
) {
631 retval
= sctp_make_reassembled_event(ulpq
->asoc
->base
.net
,
632 &ulpq
->reasm_uo
, first_frag
,
635 sin
->fsn_uo
= next_fsn
;
637 retval
->msg_flags
|= MSG_EOR
;
645 static struct sctp_ulpevent
*sctp_intl_retrieve_reassembled_uo(
646 struct sctp_ulpq
*ulpq
,
647 struct sctp_ulpevent
*event
)
649 struct sctp_association
*asoc
= ulpq
->asoc
;
650 struct sk_buff
*pos
, *first_frag
= NULL
;
651 struct sctp_ulpevent
*retval
= NULL
;
652 struct sk_buff
*pd_first
= NULL
;
653 struct sk_buff
*pd_last
= NULL
;
654 struct sctp_stream_in
*sin
;
660 sin
= sctp_stream_in(&ulpq
->asoc
->stream
, event
->stream
);
662 skb_queue_walk(&ulpq
->reasm_uo
, pos
) {
663 struct sctp_ulpevent
*cevent
= sctp_skb2event(pos
);
665 if (cevent
->stream
< event
->stream
)
667 if (cevent
->stream
> event
->stream
)
670 if (MID_lt(cevent
->mid
, event
->mid
))
672 if (MID_lt(event
->mid
, cevent
->mid
))
675 switch (cevent
->msg_flags
& SCTP_DATA_FRAG_MASK
) {
676 case SCTP_DATA_FIRST_FRAG
:
677 if (!sin
->pd_mode_uo
) {
678 sin
->mid_uo
= cevent
->mid
;
689 case SCTP_DATA_MIDDLE_FRAG
:
690 if (first_frag
&& cevent
->mid
== mid
&&
691 cevent
->fsn
== next_fsn
) {
702 case SCTP_DATA_LAST_FRAG
:
703 if (first_frag
&& cevent
->mid
== mid
&&
704 cevent
->fsn
== next_fsn
)
715 pd_point
= sctp_sk(asoc
->base
.sk
)->pd_point
;
716 if (pd_point
&& pd_point
<= pd_len
) {
717 retval
= sctp_make_reassembled_event(asoc
->base
.net
,
721 sin
->fsn_uo
= next_fsn
;
728 retval
= sctp_make_reassembled_event(asoc
->base
.net
, &ulpq
->reasm_uo
,
731 retval
->msg_flags
|= MSG_EOR
;
737 static struct sctp_ulpevent
*sctp_intl_reasm_uo(struct sctp_ulpq
*ulpq
,
738 struct sctp_ulpevent
*event
)
740 struct sctp_ulpevent
*retval
= NULL
;
741 struct sctp_stream_in
*sin
;
743 if (SCTP_DATA_NOT_FRAG
== (event
->msg_flags
& SCTP_DATA_FRAG_MASK
)) {
744 event
->msg_flags
|= MSG_EOR
;
748 sctp_intl_store_reasm_uo(ulpq
, event
);
750 sin
= sctp_stream_in(&ulpq
->asoc
->stream
, event
->stream
);
751 if (sin
->pd_mode_uo
&& event
->mid
== sin
->mid_uo
&&
752 event
->fsn
== sin
->fsn_uo
)
753 retval
= sctp_intl_retrieve_partial_uo(ulpq
, event
);
756 retval
= sctp_intl_retrieve_reassembled_uo(ulpq
, event
);
761 static struct sctp_ulpevent
*sctp_intl_retrieve_first_uo(struct sctp_ulpq
*ulpq
)
763 struct sctp_stream_in
*csin
, *sin
= NULL
;
764 struct sk_buff
*first_frag
= NULL
;
765 struct sk_buff
*last_frag
= NULL
;
766 struct sctp_ulpevent
*retval
;
771 skb_queue_walk(&ulpq
->reasm_uo
, pos
) {
772 struct sctp_ulpevent
*cevent
= sctp_skb2event(pos
);
774 csin
= sctp_stream_in(&ulpq
->asoc
->stream
, cevent
->stream
);
775 if (csin
->pd_mode_uo
)
778 switch (cevent
->msg_flags
& SCTP_DATA_FRAG_MASK
) {
779 case SCTP_DATA_FIRST_FRAG
:
786 sid
= cevent
->stream
;
787 sin
->mid_uo
= cevent
->mid
;
789 case SCTP_DATA_MIDDLE_FRAG
:
792 if (cevent
->stream
== sid
&&
793 cevent
->mid
== sin
->mid_uo
&&
794 cevent
->fsn
== next_fsn
) {
801 case SCTP_DATA_LAST_FRAG
:
814 retval
= sctp_make_reassembled_event(ulpq
->asoc
->base
.net
,
815 &ulpq
->reasm_uo
, first_frag
,
818 sin
->fsn_uo
= next_fsn
;
825 static int sctp_ulpevent_idata(struct sctp_ulpq
*ulpq
,
826 struct sctp_chunk
*chunk
, gfp_t gfp
)
828 struct sctp_ulpevent
*event
;
829 struct sk_buff_head temp
;
832 event
= sctp_ulpevent_make_rcvmsg(chunk
->asoc
, chunk
, gfp
);
836 event
->mid
= ntohl(chunk
->subh
.idata_hdr
->mid
);
837 if (event
->msg_flags
& SCTP_DATA_FIRST_FRAG
)
838 event
->ppid
= chunk
->subh
.idata_hdr
->ppid
;
840 event
->fsn
= ntohl(chunk
->subh
.idata_hdr
->fsn
);
842 if (!(event
->msg_flags
& SCTP_DATA_UNORDERED
)) {
843 event
= sctp_intl_reasm(ulpq
, event
);
845 skb_queue_head_init(&temp
);
846 __skb_queue_tail(&temp
, sctp_event2skb(event
));
848 if (event
->msg_flags
& MSG_EOR
)
849 event
= sctp_intl_order(ulpq
, event
);
852 event
= sctp_intl_reasm_uo(ulpq
, event
);
854 skb_queue_head_init(&temp
);
855 __skb_queue_tail(&temp
, sctp_event2skb(event
));
860 event_eor
= (event
->msg_flags
& MSG_EOR
) ? 1 : 0;
861 sctp_enqueue_event(ulpq
, &temp
);
867 static struct sctp_ulpevent
*sctp_intl_retrieve_first(struct sctp_ulpq
*ulpq
)
869 struct sctp_stream_in
*csin
, *sin
= NULL
;
870 struct sk_buff
*first_frag
= NULL
;
871 struct sk_buff
*last_frag
= NULL
;
872 struct sctp_ulpevent
*retval
;
877 skb_queue_walk(&ulpq
->reasm
, pos
) {
878 struct sctp_ulpevent
*cevent
= sctp_skb2event(pos
);
880 csin
= sctp_stream_in(&ulpq
->asoc
->stream
, cevent
->stream
);
884 switch (cevent
->msg_flags
& SCTP_DATA_FRAG_MASK
) {
885 case SCTP_DATA_FIRST_FRAG
:
888 if (cevent
->mid
== csin
->mid
) {
893 sid
= cevent
->stream
;
896 case SCTP_DATA_MIDDLE_FRAG
:
899 if (cevent
->stream
== sid
&&
900 cevent
->mid
== sin
->mid
&&
901 cevent
->fsn
== next_fsn
) {
908 case SCTP_DATA_LAST_FRAG
:
921 retval
= sctp_make_reassembled_event(ulpq
->asoc
->base
.net
,
922 &ulpq
->reasm
, first_frag
,
932 static void sctp_intl_start_pd(struct sctp_ulpq
*ulpq
, gfp_t gfp
)
934 struct sctp_ulpevent
*event
;
935 struct sk_buff_head temp
;
937 if (!skb_queue_empty(&ulpq
->reasm
)) {
939 event
= sctp_intl_retrieve_first(ulpq
);
941 skb_queue_head_init(&temp
);
942 __skb_queue_tail(&temp
, sctp_event2skb(event
));
943 sctp_enqueue_event(ulpq
, &temp
);
948 if (!skb_queue_empty(&ulpq
->reasm_uo
)) {
950 event
= sctp_intl_retrieve_first_uo(ulpq
);
952 skb_queue_head_init(&temp
);
953 __skb_queue_tail(&temp
, sctp_event2skb(event
));
954 sctp_enqueue_event(ulpq
, &temp
);
960 static void sctp_renege_events(struct sctp_ulpq
*ulpq
, struct sctp_chunk
*chunk
,
963 struct sctp_association
*asoc
= ulpq
->asoc
;
967 needed
= ntohs(chunk
->chunk_hdr
->length
) -
968 sizeof(struct sctp_idata_chunk
);
970 if (skb_queue_empty(&asoc
->base
.sk
->sk_receive_queue
)) {
971 freed
= sctp_ulpq_renege_list(ulpq
, &ulpq
->lobby
, needed
);
973 freed
+= sctp_ulpq_renege_list(ulpq
, &ulpq
->reasm
,
976 freed
+= sctp_ulpq_renege_list(ulpq
, &ulpq
->reasm_uo
,
980 if (freed
>= needed
&& sctp_ulpevent_idata(ulpq
, chunk
, gfp
) <= 0)
981 sctp_intl_start_pd(ulpq
, gfp
);
983 sk_mem_reclaim(asoc
->base
.sk
);
986 static void sctp_intl_stream_abort_pd(struct sctp_ulpq
*ulpq
, __u16 sid
,
987 __u32 mid
, __u16 flags
, gfp_t gfp
)
989 struct sock
*sk
= ulpq
->asoc
->base
.sk
;
990 struct sctp_ulpevent
*ev
= NULL
;
992 if (!sctp_ulpevent_type_enabled(ulpq
->asoc
->subscribe
,
993 SCTP_PARTIAL_DELIVERY_EVENT
))
996 ev
= sctp_ulpevent_make_pdapi(ulpq
->asoc
, SCTP_PARTIAL_DELIVERY_ABORTED
,
997 sid
, mid
, flags
, gfp
);
999 struct sctp_sock
*sp
= sctp_sk(sk
);
1001 __skb_queue_tail(&sk
->sk_receive_queue
, sctp_event2skb(ev
));
1003 if (!sp
->data_ready_signalled
) {
1004 sp
->data_ready_signalled
= 1;
1005 sk
->sk_data_ready(sk
);
1010 static void sctp_intl_reap_ordered(struct sctp_ulpq
*ulpq
, __u16 sid
)
1012 struct sctp_stream
*stream
= &ulpq
->asoc
->stream
;
1013 struct sctp_ulpevent
*cevent
, *event
= NULL
;
1014 struct sk_buff_head
*lobby
= &ulpq
->lobby
;
1015 struct sk_buff
*pos
, *tmp
;
1016 struct sk_buff_head temp
;
1020 skb_queue_head_init(&temp
);
1021 sctp_skb_for_each(pos
, lobby
, tmp
) {
1022 cevent
= (struct sctp_ulpevent
*)pos
->cb
;
1023 csid
= cevent
->stream
;
1032 if (!MID_lt(cmid
, sctp_mid_peek(stream
, in
, csid
)))
1035 __skb_unlink(pos
, lobby
);
1037 event
= sctp_skb2event(pos
);
1039 __skb_queue_tail(&temp
, pos
);
1042 if (!event
&& pos
!= (struct sk_buff
*)lobby
) {
1043 cevent
= (struct sctp_ulpevent
*)pos
->cb
;
1044 csid
= cevent
->stream
;
1047 if (csid
== sid
&& cmid
== sctp_mid_peek(stream
, in
, csid
)) {
1048 sctp_mid_next(stream
, in
, csid
);
1049 __skb_unlink(pos
, lobby
);
1050 __skb_queue_tail(&temp
, pos
);
1051 event
= sctp_skb2event(pos
);
1056 sctp_intl_retrieve_ordered(ulpq
, event
);
1057 sctp_enqueue_event(ulpq
, &temp
);
1061 static void sctp_intl_abort_pd(struct sctp_ulpq
*ulpq
, gfp_t gfp
)
1063 struct sctp_stream
*stream
= &ulpq
->asoc
->stream
;
1066 for (sid
= 0; sid
< stream
->incnt
; sid
++) {
1067 struct sctp_stream_in
*sin
= SCTP_SI(stream
, sid
);
1070 if (sin
->pd_mode_uo
) {
1071 sin
->pd_mode_uo
= 0;
1074 sctp_intl_stream_abort_pd(ulpq
, sid
, mid
, 0x1, gfp
);
1081 sctp_intl_stream_abort_pd(ulpq
, sid
, mid
, 0, gfp
);
1082 sctp_mid_skip(stream
, in
, sid
, mid
);
1084 sctp_intl_reap_ordered(ulpq
, sid
);
1088 /* intl abort pd happens only when all data needs to be cleaned */
1089 sctp_ulpq_flush(ulpq
);
1092 static inline int sctp_get_skip_pos(struct sctp_ifwdtsn_skip
*skiplist
,
1093 int nskips
, __be16 stream
, __u8 flags
)
1097 for (i
= 0; i
< nskips
; i
++)
1098 if (skiplist
[i
].stream
== stream
&&
1099 skiplist
[i
].flags
== flags
)
1105 #define SCTP_FTSN_U_BIT 0x1
1106 static void sctp_generate_iftsn(struct sctp_outq
*q
, __u32 ctsn
)
1108 struct sctp_ifwdtsn_skip ftsn_skip_arr
[10];
1109 struct sctp_association
*asoc
= q
->asoc
;
1110 struct sctp_chunk
*ftsn_chunk
= NULL
;
1111 struct list_head
*lchunk
, *temp
;
1112 int nskips
= 0, skip_pos
;
1113 struct sctp_chunk
*chunk
;
1116 if (!asoc
->peer
.prsctp_capable
)
1119 if (TSN_lt(asoc
->adv_peer_ack_point
, ctsn
))
1120 asoc
->adv_peer_ack_point
= ctsn
;
1122 list_for_each_safe(lchunk
, temp
, &q
->abandoned
) {
1123 chunk
= list_entry(lchunk
, struct sctp_chunk
, transmitted_list
);
1124 tsn
= ntohl(chunk
->subh
.data_hdr
->tsn
);
1126 if (TSN_lte(tsn
, ctsn
)) {
1127 list_del_init(lchunk
);
1128 sctp_chunk_free(chunk
);
1129 } else if (TSN_lte(tsn
, asoc
->adv_peer_ack_point
+ 1)) {
1130 __be16 sid
= chunk
->subh
.idata_hdr
->stream
;
1131 __be32 mid
= chunk
->subh
.idata_hdr
->mid
;
1134 if (chunk
->chunk_hdr
->flags
& SCTP_DATA_UNORDERED
)
1135 flags
|= SCTP_FTSN_U_BIT
;
1137 asoc
->adv_peer_ack_point
= tsn
;
1138 skip_pos
= sctp_get_skip_pos(&ftsn_skip_arr
[0], nskips
,
1140 ftsn_skip_arr
[skip_pos
].stream
= sid
;
1141 ftsn_skip_arr
[skip_pos
].reserved
= 0;
1142 ftsn_skip_arr
[skip_pos
].flags
= flags
;
1143 ftsn_skip_arr
[skip_pos
].mid
= mid
;
1144 if (skip_pos
== nskips
)
1153 if (asoc
->adv_peer_ack_point
> ctsn
)
1154 ftsn_chunk
= sctp_make_ifwdtsn(asoc
, asoc
->adv_peer_ack_point
,
1155 nskips
, &ftsn_skip_arr
[0]);
1158 list_add_tail(&ftsn_chunk
->list
, &q
->control_chunk_list
);
1159 SCTP_INC_STATS(asoc
->base
.net
, SCTP_MIB_OUTCTRLCHUNKS
);
1163 #define _sctp_walk_ifwdtsn(pos, chunk, end) \
1164 for (pos = chunk->subh.ifwdtsn_hdr->skip; \
1165 (void *)pos < (void *)chunk->subh.ifwdtsn_hdr->skip + (end); pos++)
1167 #define sctp_walk_ifwdtsn(pos, ch) \
1168 _sctp_walk_ifwdtsn((pos), (ch), ntohs((ch)->chunk_hdr->length) - \
1169 sizeof(struct sctp_ifwdtsn_chunk))
1171 static bool sctp_validate_fwdtsn(struct sctp_chunk
*chunk
)
1173 struct sctp_fwdtsn_skip
*skip
;
1176 if (chunk
->chunk_hdr
->type
!= SCTP_CID_FWD_TSN
)
1179 incnt
= chunk
->asoc
->stream
.incnt
;
1180 sctp_walk_fwdtsn(skip
, chunk
)
1181 if (ntohs(skip
->stream
) >= incnt
)
1187 static bool sctp_validate_iftsn(struct sctp_chunk
*chunk
)
1189 struct sctp_ifwdtsn_skip
*skip
;
1192 if (chunk
->chunk_hdr
->type
!= SCTP_CID_I_FWD_TSN
)
1195 incnt
= chunk
->asoc
->stream
.incnt
;
1196 sctp_walk_ifwdtsn(skip
, chunk
)
1197 if (ntohs(skip
->stream
) >= incnt
)
1203 static void sctp_report_fwdtsn(struct sctp_ulpq
*ulpq
, __u32 ftsn
)
1205 /* Move the Cumulattive TSN Ack ahead. */
1206 sctp_tsnmap_skip(&ulpq
->asoc
->peer
.tsn_map
, ftsn
);
1207 /* purge the fragmentation queue */
1208 sctp_ulpq_reasm_flushtsn(ulpq
, ftsn
);
1209 /* Abort any in progress partial delivery. */
1210 sctp_ulpq_abort_pd(ulpq
, GFP_ATOMIC
);
1213 static void sctp_intl_reasm_flushtsn(struct sctp_ulpq
*ulpq
, __u32 ftsn
)
1215 struct sk_buff
*pos
, *tmp
;
1217 skb_queue_walk_safe(&ulpq
->reasm
, pos
, tmp
) {
1218 struct sctp_ulpevent
*event
= sctp_skb2event(pos
);
1219 __u32 tsn
= event
->tsn
;
1221 if (TSN_lte(tsn
, ftsn
)) {
1222 __skb_unlink(pos
, &ulpq
->reasm
);
1223 sctp_ulpevent_free(event
);
1227 skb_queue_walk_safe(&ulpq
->reasm_uo
, pos
, tmp
) {
1228 struct sctp_ulpevent
*event
= sctp_skb2event(pos
);
1229 __u32 tsn
= event
->tsn
;
1231 if (TSN_lte(tsn
, ftsn
)) {
1232 __skb_unlink(pos
, &ulpq
->reasm_uo
);
1233 sctp_ulpevent_free(event
);
1238 static void sctp_report_iftsn(struct sctp_ulpq
*ulpq
, __u32 ftsn
)
1240 /* Move the Cumulattive TSN Ack ahead. */
1241 sctp_tsnmap_skip(&ulpq
->asoc
->peer
.tsn_map
, ftsn
);
1242 /* purge the fragmentation queue */
1243 sctp_intl_reasm_flushtsn(ulpq
, ftsn
);
1244 /* abort only when it's for all data */
1245 if (ftsn
== sctp_tsnmap_get_max_tsn_seen(&ulpq
->asoc
->peer
.tsn_map
))
1246 sctp_intl_abort_pd(ulpq
, GFP_ATOMIC
);
1249 static void sctp_handle_fwdtsn(struct sctp_ulpq
*ulpq
, struct sctp_chunk
*chunk
)
1251 struct sctp_fwdtsn_skip
*skip
;
1253 /* Walk through all the skipped SSNs */
1254 sctp_walk_fwdtsn(skip
, chunk
)
1255 sctp_ulpq_skip(ulpq
, ntohs(skip
->stream
), ntohs(skip
->ssn
));
1258 static void sctp_intl_skip(struct sctp_ulpq
*ulpq
, __u16 sid
, __u32 mid
,
1261 struct sctp_stream_in
*sin
= sctp_stream_in(&ulpq
->asoc
->stream
, sid
);
1262 struct sctp_stream
*stream
= &ulpq
->asoc
->stream
;
1264 if (flags
& SCTP_FTSN_U_BIT
) {
1265 if (sin
->pd_mode_uo
&& MID_lt(sin
->mid_uo
, mid
)) {
1266 sin
->pd_mode_uo
= 0;
1267 sctp_intl_stream_abort_pd(ulpq
, sid
, mid
, 0x1,
1273 if (MID_lt(mid
, sctp_mid_peek(stream
, in
, sid
)))
1278 sctp_intl_stream_abort_pd(ulpq
, sid
, mid
, 0x0, GFP_ATOMIC
);
1281 sctp_mid_skip(stream
, in
, sid
, mid
);
1283 sctp_intl_reap_ordered(ulpq
, sid
);
1286 static void sctp_handle_iftsn(struct sctp_ulpq
*ulpq
, struct sctp_chunk
*chunk
)
1288 struct sctp_ifwdtsn_skip
*skip
;
1290 /* Walk through all the skipped MIDs and abort stream pd if possible */
1291 sctp_walk_ifwdtsn(skip
, chunk
)
1292 sctp_intl_skip(ulpq
, ntohs(skip
->stream
),
1293 ntohl(skip
->mid
), skip
->flags
);
1296 static int do_ulpq_tail_event(struct sctp_ulpq
*ulpq
, struct sctp_ulpevent
*event
)
1298 struct sk_buff_head temp
;
1300 skb_queue_head_init(&temp
);
1301 __skb_queue_tail(&temp
, sctp_event2skb(event
));
1302 return sctp_ulpq_tail_event(ulpq
, &temp
);
1305 static struct sctp_stream_interleave sctp_stream_interleave_0
= {
1306 .data_chunk_len
= sizeof(struct sctp_data_chunk
),
1307 .ftsn_chunk_len
= sizeof(struct sctp_fwdtsn_chunk
),
1308 /* DATA process functions */
1309 .make_datafrag
= sctp_make_datafrag_empty
,
1310 .assign_number
= sctp_chunk_assign_ssn
,
1311 .validate_data
= sctp_validate_data
,
1312 .ulpevent_data
= sctp_ulpq_tail_data
,
1313 .enqueue_event
= do_ulpq_tail_event
,
1314 .renege_events
= sctp_ulpq_renege
,
1315 .start_pd
= sctp_ulpq_partial_delivery
,
1316 .abort_pd
= sctp_ulpq_abort_pd
,
1317 /* FORWARD-TSN process functions */
1318 .generate_ftsn
= sctp_generate_fwdtsn
,
1319 .validate_ftsn
= sctp_validate_fwdtsn
,
1320 .report_ftsn
= sctp_report_fwdtsn
,
1321 .handle_ftsn
= sctp_handle_fwdtsn
,
1324 static int do_sctp_enqueue_event(struct sctp_ulpq
*ulpq
,
1325 struct sctp_ulpevent
*event
)
1327 struct sk_buff_head temp
;
1329 skb_queue_head_init(&temp
);
1330 __skb_queue_tail(&temp
, sctp_event2skb(event
));
1331 return sctp_enqueue_event(ulpq
, &temp
);
1334 static struct sctp_stream_interleave sctp_stream_interleave_1
= {
1335 .data_chunk_len
= sizeof(struct sctp_idata_chunk
),
1336 .ftsn_chunk_len
= sizeof(struct sctp_ifwdtsn_chunk
),
1337 /* I-DATA process functions */
1338 .make_datafrag
= sctp_make_idatafrag_empty
,
1339 .assign_number
= sctp_chunk_assign_mid
,
1340 .validate_data
= sctp_validate_idata
,
1341 .ulpevent_data
= sctp_ulpevent_idata
,
1342 .enqueue_event
= do_sctp_enqueue_event
,
1343 .renege_events
= sctp_renege_events
,
1344 .start_pd
= sctp_intl_start_pd
,
1345 .abort_pd
= sctp_intl_abort_pd
,
1346 /* I-FORWARD-TSN process functions */
1347 .generate_ftsn
= sctp_generate_iftsn
,
1348 .validate_ftsn
= sctp_validate_iftsn
,
1349 .report_ftsn
= sctp_report_iftsn
,
1350 .handle_ftsn
= sctp_handle_iftsn
,
1353 void sctp_stream_interleave_init(struct sctp_stream
*stream
)
1355 struct sctp_association
*asoc
;
1357 asoc
= container_of(stream
, struct sctp_association
, stream
);
1358 stream
->si
= asoc
->peer
.intl_capable
? &sctp_stream_interleave_1
1359 : &sctp_stream_interleave_0
;