1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* SCTP kernel implementation
3 * (C) Copyright IBM Corp. 2001, 2004
4 * Copyright (c) 1999-2000 Cisco, Inc.
5 * Copyright (c) 1999-2001 Motorola, Inc.
7 * This file is part of the SCTP kernel implementation
9 * These functions handle output processing.
11 * Please send any bug reports or fixes you make to the
13 * lksctp developers <linux-sctp@vger.kernel.org>
15 * Written or modified by:
16 * La Monte H.P. Yarroll <piggy@acm.org>
17 * Karl Knutson <karl@athena.chicago.il.us>
18 * Jon Grimm <jgrimm@austin.ibm.com>
19 * Sridhar Samudrala <sri@us.ibm.com>
22 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
24 #include <linux/types.h>
25 #include <linux/kernel.h>
26 #include <linux/wait.h>
27 #include <linux/time.h>
29 #include <linux/ipv6.h>
30 #include <linux/init.h>
31 #include <linux/slab.h>
32 #include <net/inet_ecn.h>
35 #include <net/net_namespace.h>
37 #include <linux/socket.h> /* for sa_family_t */
40 #include <net/sctp/sctp.h>
41 #include <net/sctp/sm.h>
42 #include <net/sctp/checksum.h>
44 /* Forward declarations for private helpers. */
45 static enum sctp_xmit
__sctp_packet_append_chunk(struct sctp_packet
*packet
,
46 struct sctp_chunk
*chunk
);
47 static enum sctp_xmit
sctp_packet_can_append_data(struct sctp_packet
*packet
,
48 struct sctp_chunk
*chunk
);
49 static void sctp_packet_append_data(struct sctp_packet
*packet
,
50 struct sctp_chunk
*chunk
);
51 static enum sctp_xmit
sctp_packet_will_fit(struct sctp_packet
*packet
,
52 struct sctp_chunk
*chunk
,
55 static void sctp_packet_reset(struct sctp_packet
*packet
)
57 /* sctp_packet_transmit() relies on this to reset size to the
58 * current overhead after sending packets.
60 packet
->size
= packet
->overhead
;
62 packet
->has_cookie_echo
= 0;
71 * This appears to be a followup set of initializations.
73 void sctp_packet_config(struct sctp_packet
*packet
, __u32 vtag
,
76 struct sctp_transport
*tp
= packet
->transport
;
77 struct sctp_association
*asoc
= tp
->asoc
;
78 struct sctp_sock
*sp
= NULL
;
81 pr_debug("%s: packet:%p vtag:0x%x\n", __func__
, packet
, vtag
);
84 /* do the following jobs only once for a flush schedule */
85 if (!sctp_packet_empty(packet
))
88 /* set packet max_size with pathmtu, then calculate overhead */
89 packet
->max_size
= tp
->pathmtu
;
95 packet
->overhead
= sctp_mtu_payload(sp
, 0, 0);
96 packet
->size
= packet
->overhead
;
101 /* update dst or transport pathmtu if in need */
102 if (!sctp_transport_dst_check(tp
)) {
103 sctp_transport_route(tp
, NULL
, sp
);
104 if (asoc
->param_flags
& SPP_PMTUD_ENABLE
)
105 sctp_assoc_sync_pmtu(asoc
);
106 } else if (!sctp_transport_pmtu_check(tp
)) {
107 if (asoc
->param_flags
& SPP_PMTUD_ENABLE
)
108 sctp_assoc_sync_pmtu(asoc
);
111 if (asoc
->pmtu_pending
) {
112 if (asoc
->param_flags
& SPP_PMTUD_ENABLE
)
113 sctp_assoc_sync_pmtu(asoc
);
114 asoc
->pmtu_pending
= 0;
117 /* If there a is a prepend chunk stick it on the list before
118 * any other chunks get appended.
121 struct sctp_chunk
*chunk
= sctp_get_ecne_prepend(asoc
);
124 sctp_packet_append_chunk(packet
, chunk
);
130 /* set packet max_size with gso_max_size if gso is enabled*/
132 if (__sk_dst_get(sk
) != tp
->dst
) {
134 sk_setup_caps(sk
, tp
->dst
);
136 packet
->max_size
= sk_can_gso(sk
) ? tp
->dst
->dev
->gso_max_size
141 /* Initialize the packet structure. */
142 void sctp_packet_init(struct sctp_packet
*packet
,
143 struct sctp_transport
*transport
,
144 __u16 sport
, __u16 dport
)
146 pr_debug("%s: packet:%p transport:%p\n", __func__
, packet
, transport
);
148 packet
->transport
= transport
;
149 packet
->source_port
= sport
;
150 packet
->destination_port
= dport
;
151 INIT_LIST_HEAD(&packet
->chunk_list
);
152 /* The overhead will be calculated by sctp_packet_config() */
153 packet
->overhead
= 0;
154 sctp_packet_reset(packet
);
159 void sctp_packet_free(struct sctp_packet
*packet
)
161 struct sctp_chunk
*chunk
, *tmp
;
163 pr_debug("%s: packet:%p\n", __func__
, packet
);
165 list_for_each_entry_safe(chunk
, tmp
, &packet
->chunk_list
, list
) {
166 list_del_init(&chunk
->list
);
167 sctp_chunk_free(chunk
);
171 /* This routine tries to append the chunk to the offered packet. If adding
172 * the chunk causes the packet to exceed the path MTU and COOKIE_ECHO chunk
173 * is not present in the packet, it transmits the input packet.
174 * Data can be bundled with a packet containing a COOKIE_ECHO chunk as long
175 * as it can fit in the packet, but any more data that does not fit in this
176 * packet can be sent only after receiving the COOKIE_ACK.
178 enum sctp_xmit
sctp_packet_transmit_chunk(struct sctp_packet
*packet
,
179 struct sctp_chunk
*chunk
,
180 int one_packet
, gfp_t gfp
)
182 enum sctp_xmit retval
;
184 pr_debug("%s: packet:%p size:%zu chunk:%p size:%d\n", __func__
,
185 packet
, packet
->size
, chunk
, chunk
->skb
? chunk
->skb
->len
: -1);
187 switch ((retval
= (sctp_packet_append_chunk(packet
, chunk
)))) {
188 case SCTP_XMIT_PMTU_FULL
:
189 if (!packet
->has_cookie_echo
) {
192 error
= sctp_packet_transmit(packet
, gfp
);
194 chunk
->skb
->sk
->sk_err
= -error
;
196 /* If we have an empty packet, then we can NOT ever
200 retval
= sctp_packet_append_chunk(packet
,
205 case SCTP_XMIT_RWND_FULL
:
207 case SCTP_XMIT_DELAY
:
214 /* Try to bundle an auth chunk into the packet. */
215 static enum sctp_xmit
sctp_packet_bundle_auth(struct sctp_packet
*pkt
,
216 struct sctp_chunk
*chunk
)
218 struct sctp_association
*asoc
= pkt
->transport
->asoc
;
219 enum sctp_xmit retval
= SCTP_XMIT_OK
;
220 struct sctp_chunk
*auth
;
222 /* if we don't have an association, we can't do authentication */
226 /* See if this is an auth chunk we are bundling or if
227 * auth is already bundled.
229 if (chunk
->chunk_hdr
->type
== SCTP_CID_AUTH
|| pkt
->has_auth
)
232 /* if the peer did not request this chunk to be authenticated,
238 auth
= sctp_make_auth(asoc
, chunk
->shkey
->key_id
);
242 auth
->shkey
= chunk
->shkey
;
243 sctp_auth_shkey_hold(auth
->shkey
);
245 retval
= __sctp_packet_append_chunk(pkt
, auth
);
247 if (retval
!= SCTP_XMIT_OK
)
248 sctp_chunk_free(auth
);
253 /* Try to bundle a SACK with the packet. */
254 static enum sctp_xmit
sctp_packet_bundle_sack(struct sctp_packet
*pkt
,
255 struct sctp_chunk
*chunk
)
257 enum sctp_xmit retval
= SCTP_XMIT_OK
;
259 /* If sending DATA and haven't aleady bundled a SACK, try to
260 * bundle one in to the packet.
262 if (sctp_chunk_is_data(chunk
) && !pkt
->has_sack
&&
263 !pkt
->has_cookie_echo
) {
264 struct sctp_association
*asoc
;
265 struct timer_list
*timer
;
266 asoc
= pkt
->transport
->asoc
;
267 timer
= &asoc
->timers
[SCTP_EVENT_TIMEOUT_SACK
];
269 /* If the SACK timer is running, we have a pending SACK */
270 if (timer_pending(timer
)) {
271 struct sctp_chunk
*sack
;
273 if (pkt
->transport
->sack_generation
!=
274 pkt
->transport
->asoc
->peer
.sack_generation
)
277 asoc
->a_rwnd
= asoc
->rwnd
;
278 sack
= sctp_make_sack(asoc
);
280 retval
= __sctp_packet_append_chunk(pkt
, sack
);
281 if (retval
!= SCTP_XMIT_OK
) {
282 sctp_chunk_free(sack
);
285 SCTP_INC_STATS(asoc
->base
.net
,
286 SCTP_MIB_OUTCTRLCHUNKS
);
287 asoc
->stats
.octrlchunks
++;
288 asoc
->peer
.sack_needed
= 0;
289 if (del_timer(timer
))
290 sctp_association_put(asoc
);
299 /* Append a chunk to the offered packet reporting back any inability to do
302 static enum sctp_xmit
__sctp_packet_append_chunk(struct sctp_packet
*packet
,
303 struct sctp_chunk
*chunk
)
305 __u16 chunk_len
= SCTP_PAD4(ntohs(chunk
->chunk_hdr
->length
));
306 enum sctp_xmit retval
= SCTP_XMIT_OK
;
308 /* Check to see if this chunk will fit into the packet */
309 retval
= sctp_packet_will_fit(packet
, chunk
, chunk_len
);
310 if (retval
!= SCTP_XMIT_OK
)
313 /* We believe that this chunk is OK to add to the packet */
314 switch (chunk
->chunk_hdr
->type
) {
316 case SCTP_CID_I_DATA
:
317 /* Account for the data being in the packet */
318 sctp_packet_append_data(packet
, chunk
);
319 /* Disallow SACK bundling after DATA. */
320 packet
->has_sack
= 1;
321 /* Disallow AUTH bundling after DATA */
322 packet
->has_auth
= 1;
323 /* Let it be knows that packet has DATA in it */
324 packet
->has_data
= 1;
325 /* timestamp the chunk for rtx purposes */
326 chunk
->sent_at
= jiffies
;
327 /* Mainly used for prsctp RTX policy */
330 case SCTP_CID_COOKIE_ECHO
:
331 packet
->has_cookie_echo
= 1;
335 packet
->has_sack
= 1;
337 chunk
->asoc
->stats
.osacks
++;
341 packet
->has_auth
= 1;
342 packet
->auth
= chunk
;
346 /* It is OK to send this chunk. */
347 list_add_tail(&chunk
->list
, &packet
->chunk_list
);
348 packet
->size
+= chunk_len
;
349 chunk
->transport
= packet
->transport
;
354 /* Append a chunk to the offered packet reporting back any inability to do
357 enum sctp_xmit
sctp_packet_append_chunk(struct sctp_packet
*packet
,
358 struct sctp_chunk
*chunk
)
360 enum sctp_xmit retval
= SCTP_XMIT_OK
;
362 pr_debug("%s: packet:%p chunk:%p\n", __func__
, packet
, chunk
);
364 /* Data chunks are special. Before seeing what else we can
365 * bundle into this packet, check to see if we are allowed to
368 if (sctp_chunk_is_data(chunk
)) {
369 retval
= sctp_packet_can_append_data(packet
, chunk
);
370 if (retval
!= SCTP_XMIT_OK
)
374 /* Try to bundle AUTH chunk */
375 retval
= sctp_packet_bundle_auth(packet
, chunk
);
376 if (retval
!= SCTP_XMIT_OK
)
379 /* Try to bundle SACK chunk */
380 retval
= sctp_packet_bundle_sack(packet
, chunk
);
381 if (retval
!= SCTP_XMIT_OK
)
384 retval
= __sctp_packet_append_chunk(packet
, chunk
);
390 static void sctp_packet_gso_append(struct sk_buff
*head
, struct sk_buff
*skb
)
392 if (SCTP_OUTPUT_CB(head
)->last
== head
)
393 skb_shinfo(head
)->frag_list
= skb
;
395 SCTP_OUTPUT_CB(head
)->last
->next
= skb
;
396 SCTP_OUTPUT_CB(head
)->last
= skb
;
398 head
->truesize
+= skb
->truesize
;
399 head
->data_len
+= skb
->len
;
400 head
->len
+= skb
->len
;
401 refcount_add(skb
->truesize
, &head
->sk
->sk_wmem_alloc
);
403 __skb_header_release(skb
);
406 static int sctp_packet_pack(struct sctp_packet
*packet
,
407 struct sk_buff
*head
, int gso
, gfp_t gfp
)
409 struct sctp_transport
*tp
= packet
->transport
;
410 struct sctp_auth_chunk
*auth
= NULL
;
411 struct sctp_chunk
*chunk
, *tmp
;
412 int pkt_count
= 0, pkt_size
;
413 struct sock
*sk
= head
->sk
;
414 struct sk_buff
*nskb
;
418 skb_shinfo(head
)->gso_type
= sk
->sk_gso_type
;
419 SCTP_OUTPUT_CB(head
)->last
= head
;
422 pkt_size
= packet
->size
;
427 /* calculate the pkt_size and alloc nskb */
428 pkt_size
= packet
->overhead
;
429 list_for_each_entry_safe(chunk
, tmp
, &packet
->chunk_list
,
431 int padded
= SCTP_PAD4(chunk
->skb
->len
);
433 if (chunk
== packet
->auth
)
435 else if (auth_len
+ padded
+ packet
->overhead
>
438 else if (pkt_size
+ padded
> tp
->pathmtu
)
442 nskb
= alloc_skb(pkt_size
+ MAX_HEADER
, gfp
);
445 skb_reserve(nskb
, packet
->overhead
+ MAX_HEADER
);
448 /* merge chunks into nskb and append nskb into head list */
449 pkt_size
-= packet
->overhead
;
450 list_for_each_entry_safe(chunk
, tmp
, &packet
->chunk_list
, list
) {
453 list_del_init(&chunk
->list
);
454 if (sctp_chunk_is_data(chunk
)) {
455 if (!sctp_chunk_retransmitted(chunk
) &&
457 chunk
->rtt_in_progress
= 1;
462 padding
= SCTP_PAD4(chunk
->skb
->len
) - chunk
->skb
->len
;
464 skb_put_zero(chunk
->skb
, padding
);
466 if (chunk
== packet
->auth
)
467 auth
= (struct sctp_auth_chunk
*)
468 skb_tail_pointer(nskb
);
470 skb_put_data(nskb
, chunk
->skb
->data
, chunk
->skb
->len
);
472 pr_debug("*** Chunk:%p[%s] %s 0x%x, length:%d, chunk->skb->len:%d, rtt_in_progress:%d\n",
474 sctp_cname(SCTP_ST_CHUNK(chunk
->chunk_hdr
->type
)),
475 chunk
->has_tsn
? "TSN" : "No TSN",
476 chunk
->has_tsn
? ntohl(chunk
->subh
.data_hdr
->tsn
) : 0,
477 ntohs(chunk
->chunk_hdr
->length
), chunk
->skb
->len
,
478 chunk
->rtt_in_progress
);
480 pkt_size
-= SCTP_PAD4(chunk
->skb
->len
);
482 if (!sctp_chunk_is_data(chunk
) && chunk
!= packet
->auth
)
483 sctp_chunk_free(chunk
);
490 sctp_auth_calculate_hmac(tp
->asoc
, nskb
, auth
,
491 packet
->auth
->shkey
, gfp
);
492 /* free auth if no more chunks, or add it back */
493 if (list_empty(&packet
->chunk_list
))
494 sctp_chunk_free(packet
->auth
);
496 list_add(&packet
->auth
->list
,
497 &packet
->chunk_list
);
501 sctp_packet_gso_append(head
, nskb
);
504 } while (!list_empty(&packet
->chunk_list
));
507 memset(head
->cb
, 0, max(sizeof(struct inet_skb_parm
),
508 sizeof(struct inet6_skb_parm
)));
509 skb_shinfo(head
)->gso_segs
= pkt_count
;
510 skb_shinfo(head
)->gso_size
= GSO_BY_FRAGS
;
514 if (sctp_checksum_disable
)
517 if (!(tp
->dst
->dev
->features
& NETIF_F_SCTP_CRC
) ||
518 dst_xfrm(tp
->dst
) || packet
->ipfragok
|| tp
->encap_port
) {
520 (struct sctphdr
*)skb_transport_header(head
);
522 sh
->checksum
= sctp_compute_cksum(head
, 0);
525 head
->ip_summed
= CHECKSUM_PARTIAL
;
526 head
->csum_not_inet
= 1;
527 head
->csum_start
= skb_transport_header(head
) - head
->head
;
528 head
->csum_offset
= offsetof(struct sctphdr
, checksum
);
534 /* All packets are sent to the network through this function from
537 * The return value is always 0 for now.
539 int sctp_packet_transmit(struct sctp_packet
*packet
, gfp_t gfp
)
541 struct sctp_transport
*tp
= packet
->transport
;
542 struct sctp_association
*asoc
= tp
->asoc
;
543 struct sctp_chunk
*chunk
, *tmp
;
544 int pkt_count
, gso
= 0;
545 struct sk_buff
*head
;
549 pr_debug("%s: packet:%p\n", __func__
, packet
);
550 if (list_empty(&packet
->chunk_list
))
552 chunk
= list_entry(packet
->chunk_list
.next
, struct sctp_chunk
, list
);
556 if (packet
->size
> tp
->pathmtu
&& !packet
->ipfragok
) {
557 if (!sk_can_gso(sk
)) {
558 pr_err_once("Trying to GSO but underlying device doesn't support it.");
565 head
= alloc_skb((gso
? packet
->overhead
: packet
->size
) +
569 skb_reserve(head
, packet
->overhead
+ MAX_HEADER
);
570 skb_set_owner_w(head
, sk
);
572 /* set sctp header */
573 sh
= skb_push(head
, sizeof(struct sctphdr
));
574 skb_reset_transport_header(head
);
575 sh
->source
= htons(packet
->source_port
);
576 sh
->dest
= htons(packet
->destination_port
);
577 sh
->vtag
= htonl(packet
->vtag
);
580 /* drop packet if no dst */
582 IP_INC_STATS(sock_net(sk
), IPSTATS_MIB_OUTNOROUTES
);
588 if (__sk_dst_get(sk
) != tp
->dst
) {
590 sk_setup_caps(sk
, tp
->dst
);
595 pkt_count
= sctp_packet_pack(packet
, head
, gso
, gfp
);
600 pr_debug("***sctp_transmit_packet*** skb->len:%d\n", head
->len
);
602 /* start autoclose timer */
603 if (packet
->has_data
&& sctp_state(asoc
, ESTABLISHED
) &&
604 asoc
->timeouts
[SCTP_EVENT_TIMEOUT_AUTOCLOSE
]) {
605 struct timer_list
*timer
=
606 &asoc
->timers
[SCTP_EVENT_TIMEOUT_AUTOCLOSE
];
607 unsigned long timeout
=
608 asoc
->timeouts
[SCTP_EVENT_TIMEOUT_AUTOCLOSE
];
610 if (!mod_timer(timer
, jiffies
+ timeout
))
611 sctp_association_hold(asoc
);
615 tp
->af_specific
->ecn_capable(sk
);
617 asoc
->stats
.opackets
+= pkt_count
;
618 if (asoc
->peer
.last_sent_to
!= tp
)
619 asoc
->peer
.last_sent_to
= tp
;
621 head
->ignore_df
= packet
->ipfragok
;
622 if (tp
->dst_pending_confirm
)
623 skb_set_dst_pending_confirm(head
, 1);
624 /* neighbour should be confirmed on successful transmission or
627 if (tp
->af_specific
->sctp_xmit(head
, tp
) >= 0 &&
628 tp
->dst_pending_confirm
)
629 tp
->dst_pending_confirm
= 0;
632 list_for_each_entry_safe(chunk
, tmp
, &packet
->chunk_list
, list
) {
633 list_del_init(&chunk
->list
);
634 if (!sctp_chunk_is_data(chunk
))
635 sctp_chunk_free(chunk
);
637 sctp_packet_reset(packet
);
641 /********************************************************************
642 * 2nd Level Abstractions
643 ********************************************************************/
645 /* This private function check to see if a chunk can be added */
646 static enum sctp_xmit
sctp_packet_can_append_data(struct sctp_packet
*packet
,
647 struct sctp_chunk
*chunk
)
649 size_t datasize
, rwnd
, inflight
, flight_size
;
650 struct sctp_transport
*transport
= packet
->transport
;
651 struct sctp_association
*asoc
= transport
->asoc
;
652 struct sctp_outq
*q
= &asoc
->outqueue
;
654 /* RFC 2960 6.1 Transmission of DATA Chunks
656 * A) At any given time, the data sender MUST NOT transmit new data to
657 * any destination transport address if its peer's rwnd indicates
658 * that the peer has no buffer space (i.e. rwnd is 0, see Section
659 * 6.2.1). However, regardless of the value of rwnd (including if it
660 * is 0), the data sender can always have one DATA chunk in flight to
661 * the receiver if allowed by cwnd (see rule B below). This rule
662 * allows the sender to probe for a change in rwnd that the sender
663 * missed due to the SACK having been lost in transit from the data
664 * receiver to the data sender.
667 rwnd
= asoc
->peer
.rwnd
;
668 inflight
= q
->outstanding_bytes
;
669 flight_size
= transport
->flight_size
;
671 datasize
= sctp_data_size(chunk
);
673 if (datasize
> rwnd
&& inflight
> 0)
674 /* We have (at least) one data chunk in flight,
675 * so we can't fall back to rule 6.1 B).
677 return SCTP_XMIT_RWND_FULL
;
679 /* RFC 2960 6.1 Transmission of DATA Chunks
681 * B) At any given time, the sender MUST NOT transmit new data
682 * to a given transport address if it has cwnd or more bytes
683 * of data outstanding to that transport address.
685 /* RFC 7.2.4 & the Implementers Guide 2.8.
688 * When a Fast Retransmit is being performed the sender SHOULD
689 * ignore the value of cwnd and SHOULD NOT delay retransmission.
691 if (chunk
->fast_retransmit
!= SCTP_NEED_FRTX
&&
692 flight_size
>= transport
->cwnd
)
693 return SCTP_XMIT_RWND_FULL
;
695 /* Nagle's algorithm to solve small-packet problem:
696 * Inhibit the sending of new chunks when new outgoing data arrives
697 * if any previously transmitted data on the connection remains
701 if ((sctp_sk(asoc
->base
.sk
)->nodelay
|| inflight
== 0) &&
703 /* Nothing unacked */
706 if (!sctp_packet_empty(packet
))
707 /* Append to packet */
710 if (!sctp_state(asoc
, ESTABLISHED
))
713 /* Check whether this chunk and all the rest of pending data will fit
714 * or delay in hopes of bundling a full sized packet.
716 if (chunk
->skb
->len
+ q
->out_qlen
> transport
->pathmtu
-
717 packet
->overhead
- sctp_datachk_len(&chunk
->asoc
->stream
) - 4)
718 /* Enough data queued to fill a packet */
721 /* Don't delay large message writes that may have been fragmented */
722 if (!chunk
->msg
->can_delay
)
725 /* Defer until all data acked or packet full */
726 return SCTP_XMIT_DELAY
;
729 /* This private function does management things when adding DATA chunk */
730 static void sctp_packet_append_data(struct sctp_packet
*packet
,
731 struct sctp_chunk
*chunk
)
733 struct sctp_transport
*transport
= packet
->transport
;
734 size_t datasize
= sctp_data_size(chunk
);
735 struct sctp_association
*asoc
= transport
->asoc
;
736 u32 rwnd
= asoc
->peer
.rwnd
;
738 /* Keep track of how many bytes are in flight over this transport. */
739 transport
->flight_size
+= datasize
;
741 /* Keep track of how many bytes are in flight to the receiver. */
742 asoc
->outqueue
.outstanding_bytes
+= datasize
;
744 /* Update our view of the receiver's rwnd. */
750 asoc
->peer
.rwnd
= rwnd
;
751 sctp_chunk_assign_tsn(chunk
);
752 asoc
->stream
.si
->assign_number(chunk
);
755 static enum sctp_xmit
sctp_packet_will_fit(struct sctp_packet
*packet
,
756 struct sctp_chunk
*chunk
,
759 enum sctp_xmit retval
= SCTP_XMIT_OK
;
760 size_t psize
, pmtu
, maxsize
;
762 /* Don't bundle in this packet if this chunk's auth key doesn't
763 * match other chunks already enqueued on this packet. Also,
764 * don't bundle the chunk with auth key if other chunks in this
765 * packet don't have auth key.
767 if ((packet
->auth
&& chunk
->shkey
!= packet
->auth
->shkey
) ||
768 (!packet
->auth
&& chunk
->shkey
&&
769 chunk
->chunk_hdr
->type
!= SCTP_CID_AUTH
))
770 return SCTP_XMIT_PMTU_FULL
;
772 psize
= packet
->size
;
773 if (packet
->transport
->asoc
)
774 pmtu
= packet
->transport
->asoc
->pathmtu
;
776 pmtu
= packet
->transport
->pathmtu
;
778 /* Decide if we need to fragment or resubmit later. */
779 if (psize
+ chunk_len
> pmtu
) {
780 /* It's OK to fragment at IP level if any one of the following
782 * 1. The packet is empty (meaning this chunk is greater
784 * 2. The packet doesn't have any data in it yet and data
785 * requires authentication.
787 if (sctp_packet_empty(packet
) ||
788 (!packet
->has_data
&& chunk
->auth
)) {
789 /* We no longer do re-fragmentation.
790 * Just fragment at the IP layer, if we
791 * actually hit this condition
793 packet
->ipfragok
= 1;
797 /* Similarly, if this chunk was built before a PMTU
798 * reduction, we have to fragment it at IP level now. So
799 * if the packet already contains something, we need to
802 maxsize
= pmtu
- packet
->overhead
;
804 maxsize
-= SCTP_PAD4(packet
->auth
->skb
->len
);
805 if (chunk_len
> maxsize
)
806 retval
= SCTP_XMIT_PMTU_FULL
;
808 /* It is also okay to fragment if the chunk we are
809 * adding is a control chunk, but only if current packet
810 * is not a GSO one otherwise it causes fragmentation of
811 * a large frame. So in this case we allow the
812 * fragmentation by forcing it to be in a new packet.
814 if (!sctp_chunk_is_data(chunk
) && packet
->has_data
)
815 retval
= SCTP_XMIT_PMTU_FULL
;
817 if (psize
+ chunk_len
> packet
->max_size
)
818 /* Hit GSO/PMTU limit, gotta flush */
819 retval
= SCTP_XMIT_PMTU_FULL
;
821 if (!packet
->transport
->burst_limited
&&
822 psize
+ chunk_len
> (packet
->transport
->cwnd
>> 1))
823 /* Do not allow a single GSO packet to use more
826 retval
= SCTP_XMIT_PMTU_FULL
;
828 if (packet
->transport
->burst_limited
&&
829 psize
+ chunk_len
> (packet
->transport
->burst_limited
>> 1))
830 /* Do not allow a single GSO packet to use more
831 * than half of original cwnd.
833 retval
= SCTP_XMIT_PMTU_FULL
;
834 /* Otherwise it will fit in the GSO packet */