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Peter Oskolkovgregkh
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ip: process in-order fragments efficiently
This patch changes the runtime behavior of IP defrag queue: incoming in-order fragments are added to the end of the current list/"run" of in-order fragments at the tail. On some workloads, UDP stream performance is substantially improved: RX: ./udp_stream -F 10 -T 2 -l 60 TX: ./udp_stream -c -H <host> -F 10 -T 5 -l 60 with this patchset applied on a 10Gbps receiver: throughput=9524.18 throughput_units=Mbit/s upstream (net-next): throughput=4608.93 throughput_units=Mbit/s Reported-by: Willem de Bruijn <[email protected]> Signed-off-by: Peter Oskolkov <[email protected]> Cc: Eric Dumazet <[email protected]> Cc: Florian Westphal <[email protected]> Signed-off-by: David S. Miller <[email protected]> (cherry picked from commit a4fd284) Signed-off-by: Greg Kroah-Hartman <[email protected]>
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2 files changed

+70
-42
lines changed

2 files changed

+70
-42
lines changed

net/ipv4/inet_fragment.c

Lines changed: 1 addition & 1 deletion
Original file line numberDiff line numberDiff line change
@@ -145,7 +145,7 @@ void inet_frag_destroy(struct inet_frag_queue *q)
145145
fp = xp;
146146
} while (fp);
147147
} else {
148-
sum_truesize = skb_rbtree_purge(&q->rb_fragments);
148+
sum_truesize = inet_frag_rbtree_purge(&q->rb_fragments);
149149
}
150150
sum = sum_truesize + f->qsize;
151151

net/ipv4/ip_fragment.c

Lines changed: 69 additions & 41 deletions
Original file line numberDiff line numberDiff line change
@@ -126,8 +126,8 @@ static u8 ip4_frag_ecn(u8 tos)
126126

127127
static struct inet_frags ip4_frags;
128128

129-
static int ip_frag_reasm(struct ipq *qp, struct sk_buff *prev,
130-
struct net_device *dev);
129+
static int ip_frag_reasm(struct ipq *qp, struct sk_buff *skb,
130+
struct sk_buff *prev_tail, struct net_device *dev);
131131

132132

133133
static void ip4_frag_init(struct inet_frag_queue *q, const void *a)
@@ -219,7 +219,12 @@ static void ip_expire(struct timer_list *t)
219219
head = skb_rb_first(&qp->q.rb_fragments);
220220
if (!head)
221221
goto out;
222-
rb_erase(&head->rbnode, &qp->q.rb_fragments);
222+
if (FRAG_CB(head)->next_frag)
223+
rb_replace_node(&head->rbnode,
224+
&FRAG_CB(head)->next_frag->rbnode,
225+
&qp->q.rb_fragments);
226+
else
227+
rb_erase(&head->rbnode, &qp->q.rb_fragments);
223228
memset(&head->rbnode, 0, sizeof(head->rbnode));
224229
barrier();
225230
}
@@ -320,7 +325,7 @@ static int ip_frag_reinit(struct ipq *qp)
320325
return -ETIMEDOUT;
321326
}
322327

323-
sum_truesize = skb_rbtree_purge(&qp->q.rb_fragments);
328+
sum_truesize = inet_frag_rbtree_purge(&qp->q.rb_fragments);
324329
sub_frag_mem_limit(qp->q.net, sum_truesize);
325330

326331
qp->q.flags = 0;
@@ -329,6 +334,7 @@ static int ip_frag_reinit(struct ipq *qp)
329334
qp->q.fragments = NULL;
330335
qp->q.rb_fragments = RB_ROOT;
331336
qp->q.fragments_tail = NULL;
337+
qp->q.last_run_head = NULL;
332338
qp->iif = 0;
333339
qp->ecn = 0;
334340

@@ -340,7 +346,7 @@ static int ip_frag_queue(struct ipq *qp, struct sk_buff *skb)
340346
{
341347
struct net *net = container_of(qp->q.net, struct net, ipv4.frags);
342348
struct rb_node **rbn, *parent;
343-
struct sk_buff *skb1;
349+
struct sk_buff *skb1, *prev_tail;
344350
struct net_device *dev;
345351
unsigned int fragsize;
346352
int flags, offset;
@@ -418,38 +424,41 @@ static int ip_frag_queue(struct ipq *qp, struct sk_buff *skb)
418424
*/
419425

420426
/* Find out where to put this fragment. */
421-
skb1 = qp->q.fragments_tail;
422-
if (!skb1) {
423-
/* This is the first fragment we've received. */
424-
rb_link_node(&skb->rbnode, NULL, &qp->q.rb_fragments.rb_node);
425-
qp->q.fragments_tail = skb;
426-
} else if ((skb1->ip_defrag_offset + skb1->len) < end) {
427-
/* This is the common/special case: skb goes to the end. */
427+
prev_tail = qp->q.fragments_tail;
428+
if (!prev_tail)
429+
ip4_frag_create_run(&qp->q, skb); /* First fragment. */
430+
else if (prev_tail->ip_defrag_offset + prev_tail->len < end) {
431+
/* This is the common case: skb goes to the end. */
428432
/* Detect and discard overlaps. */
429-
if (offset < (skb1->ip_defrag_offset + skb1->len))
433+
if (offset < prev_tail->ip_defrag_offset + prev_tail->len)
430434
goto discard_qp;
431-
/* Insert after skb1. */
432-
rb_link_node(&skb->rbnode, &skb1->rbnode, &skb1->rbnode.rb_right);
433-
qp->q.fragments_tail = skb;
435+
if (offset == prev_tail->ip_defrag_offset + prev_tail->len)
436+
ip4_frag_append_to_last_run(&qp->q, skb);
437+
else
438+
ip4_frag_create_run(&qp->q, skb);
434439
} else {
435-
/* Binary search. Note that skb can become the first fragment, but
436-
* not the last (covered above). */
440+
/* Binary search. Note that skb can become the first fragment,
441+
* but not the last (covered above).
442+
*/
437443
rbn = &qp->q.rb_fragments.rb_node;
438444
do {
439445
parent = *rbn;
440446
skb1 = rb_to_skb(parent);
441447
if (end <= skb1->ip_defrag_offset)
442448
rbn = &parent->rb_left;
443-
else if (offset >= skb1->ip_defrag_offset + skb1->len)
449+
else if (offset >= skb1->ip_defrag_offset +
450+
FRAG_CB(skb1)->frag_run_len)
444451
rbn = &parent->rb_right;
445452
else /* Found an overlap with skb1. */
446453
goto discard_qp;
447454
} while (*rbn);
448455
/* Here we have parent properly set, and rbn pointing to
449-
* one of its NULL left/right children. Insert skb. */
456+
* one of its NULL left/right children. Insert skb.
457+
*/
458+
ip4_frag_init_run(skb);
450459
rb_link_node(&skb->rbnode, parent, rbn);
460+
rb_insert_color(&skb->rbnode, &qp->q.rb_fragments);
451461
}
452-
rb_insert_color(&skb->rbnode, &qp->q.rb_fragments);
453462

454463
if (dev)
455464
qp->iif = dev->ifindex;
@@ -476,7 +485,7 @@ static int ip_frag_queue(struct ipq *qp, struct sk_buff *skb)
476485
unsigned long orefdst = skb->_skb_refdst;
477486

478487
skb->_skb_refdst = 0UL;
479-
err = ip_frag_reasm(qp, skb, dev);
488+
err = ip_frag_reasm(qp, skb, prev_tail, dev);
480489
skb->_skb_refdst = orefdst;
481490
return err;
482491
}
@@ -495,7 +504,7 @@ static int ip_frag_queue(struct ipq *qp, struct sk_buff *skb)
495504

496505
/* Build a new IP datagram from all its fragments. */
497506
static int ip_frag_reasm(struct ipq *qp, struct sk_buff *skb,
498-
struct net_device *dev)
507+
struct sk_buff *prev_tail, struct net_device *dev)
499508
{
500509
struct net *net = container_of(qp->q.net, struct net, ipv4.frags);
501510
struct iphdr *iph;
@@ -519,10 +528,16 @@ static int ip_frag_reasm(struct ipq *qp, struct sk_buff *skb,
519528
fp = skb_clone(skb, GFP_ATOMIC);
520529
if (!fp)
521530
goto out_nomem;
522-
rb_replace_node(&skb->rbnode, &fp->rbnode, &qp->q.rb_fragments);
531+
FRAG_CB(fp)->next_frag = FRAG_CB(skb)->next_frag;
532+
if (RB_EMPTY_NODE(&skb->rbnode))
533+
FRAG_CB(prev_tail)->next_frag = fp;
534+
else
535+
rb_replace_node(&skb->rbnode, &fp->rbnode,
536+
&qp->q.rb_fragments);
523537
if (qp->q.fragments_tail == skb)
524538
qp->q.fragments_tail = fp;
525539
skb_morph(skb, head);
540+
FRAG_CB(skb)->next_frag = FRAG_CB(head)->next_frag;
526541
rb_replace_node(&head->rbnode, &skb->rbnode,
527542
&qp->q.rb_fragments);
528543
consume_skb(head);
@@ -558,7 +573,7 @@ static int ip_frag_reasm(struct ipq *qp, struct sk_buff *skb,
558573
for (i = 0; i < skb_shinfo(head)->nr_frags; i++)
559574
plen += skb_frag_size(&skb_shinfo(head)->frags[i]);
560575
clone->len = clone->data_len = head->data_len - plen;
561-
skb->truesize += clone->truesize;
576+
head->truesize += clone->truesize;
562577
clone->csum = 0;
563578
clone->ip_summed = head->ip_summed;
564579
add_frag_mem_limit(qp->q.net, clone->truesize);
@@ -571,24 +586,36 @@ static int ip_frag_reasm(struct ipq *qp, struct sk_buff *skb,
571586
skb_push(head, head->data - skb_network_header(head));
572587

573588
/* Traverse the tree in order, to build frag_list. */
589+
fp = FRAG_CB(head)->next_frag;
574590
rbn = rb_next(&head->rbnode);
575591
rb_erase(&head->rbnode, &qp->q.rb_fragments);
576-
while (rbn) {
577-
struct rb_node *rbnext = rb_next(rbn);
578-
fp = rb_to_skb(rbn);
579-
rb_erase(rbn, &qp->q.rb_fragments);
580-
rbn = rbnext;
581-
*nextp = fp;
582-
nextp = &fp->next;
583-
fp->prev = NULL;
584-
memset(&fp->rbnode, 0, sizeof(fp->rbnode));
585-
head->data_len += fp->len;
586-
head->len += fp->len;
587-
if (head->ip_summed != fp->ip_summed)
588-
head->ip_summed = CHECKSUM_NONE;
589-
else if (head->ip_summed == CHECKSUM_COMPLETE)
590-
head->csum = csum_add(head->csum, fp->csum);
591-
head->truesize += fp->truesize;
592+
while (rbn || fp) {
593+
/* fp points to the next sk_buff in the current run;
594+
* rbn points to the next run.
595+
*/
596+
/* Go through the current run. */
597+
while (fp) {
598+
*nextp = fp;
599+
nextp = &fp->next;
600+
fp->prev = NULL;
601+
memset(&fp->rbnode, 0, sizeof(fp->rbnode));
602+
head->data_len += fp->len;
603+
head->len += fp->len;
604+
if (head->ip_summed != fp->ip_summed)
605+
head->ip_summed = CHECKSUM_NONE;
606+
else if (head->ip_summed == CHECKSUM_COMPLETE)
607+
head->csum = csum_add(head->csum, fp->csum);
608+
head->truesize += fp->truesize;
609+
fp = FRAG_CB(fp)->next_frag;
610+
}
611+
/* Move to the next run. */
612+
if (rbn) {
613+
struct rb_node *rbnext = rb_next(rbn);
614+
615+
fp = rb_to_skb(rbn);
616+
rb_erase(rbn, &qp->q.rb_fragments);
617+
rbn = rbnext;
618+
}
592619
}
593620
sub_frag_mem_limit(qp->q.net, head->truesize);
594621

@@ -624,6 +651,7 @@ static int ip_frag_reasm(struct ipq *qp, struct sk_buff *skb,
624651
qp->q.fragments = NULL;
625652
qp->q.rb_fragments = RB_ROOT;
626653
qp->q.fragments_tail = NULL;
654+
qp->q.last_run_head = NULL;
627655
return 0;
628656

629657
out_nomem:

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