
Type: improvement Signed-off-by: Florin Coras <fcoras@cisco.com> Change-Id: I1abff943f3fe3ff0219126b5b8beded4ad859758
653 lines
17 KiB
C
653 lines
17 KiB
C
/*
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* Copyright (c) 2020 Cisco and/or its affiliates.
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <vnet/tcp/tcp_sack.h>
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static void
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scoreboard_remove_hole (sack_scoreboard_t * sb, sack_scoreboard_hole_t * hole)
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{
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sack_scoreboard_hole_t *next, *prev;
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if (hole->next != TCP_INVALID_SACK_HOLE_INDEX)
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{
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next = pool_elt_at_index (sb->holes, hole->next);
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next->prev = hole->prev;
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}
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else
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{
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sb->tail = hole->prev;
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}
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if (hole->prev != TCP_INVALID_SACK_HOLE_INDEX)
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{
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prev = pool_elt_at_index (sb->holes, hole->prev);
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prev->next = hole->next;
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}
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else
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{
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sb->head = hole->next;
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}
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if (scoreboard_hole_index (sb, hole) == sb->cur_rxt_hole)
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sb->cur_rxt_hole = TCP_INVALID_SACK_HOLE_INDEX;
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/* Poison the entry */
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if (CLIB_DEBUG > 0)
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clib_memset (hole, 0xfe, sizeof (*hole));
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pool_put (sb->holes, hole);
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}
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static sack_scoreboard_hole_t *
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scoreboard_insert_hole (sack_scoreboard_t * sb, u32 prev_index,
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u32 start, u32 end)
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{
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sack_scoreboard_hole_t *hole, *next, *prev;
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u32 hole_index;
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pool_get (sb->holes, hole);
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clib_memset (hole, 0, sizeof (*hole));
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hole->start = start;
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hole->end = end;
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hole_index = scoreboard_hole_index (sb, hole);
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prev = scoreboard_get_hole (sb, prev_index);
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if (prev)
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{
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hole->prev = prev_index;
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hole->next = prev->next;
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if ((next = scoreboard_next_hole (sb, hole)))
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next->prev = hole_index;
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else
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sb->tail = hole_index;
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prev->next = hole_index;
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}
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else
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{
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sb->head = hole_index;
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hole->prev = TCP_INVALID_SACK_HOLE_INDEX;
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hole->next = TCP_INVALID_SACK_HOLE_INDEX;
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}
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return hole;
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}
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always_inline void
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scoreboard_update_sacked (sack_scoreboard_t * sb, u32 start, u32 end,
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u8 has_rxt, u16 snd_mss)
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{
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if (!has_rxt)
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{
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/* Sequence was not retransmitted but it was sacked. Estimate reorder
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* only if not in congestion recovery */
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if (seq_lt (start, sb->high_sacked))
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{
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u32 reord = (sb->high_sacked - start + snd_mss - 1) / snd_mss;
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reord = clib_min (reord, TCP_MAX_SACK_REORDER);
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sb->reorder = clib_max (sb->reorder, reord);
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}
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return;
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}
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if (seq_geq (start, sb->high_rxt))
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return;
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sb->rxt_sacked +=
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seq_lt (end, sb->high_rxt) ? (end - start) : (sb->high_rxt - start);
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}
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always_inline void
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scoreboard_update_bytes (sack_scoreboard_t * sb, u32 ack, u32 snd_mss)
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{
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sack_scoreboard_hole_t *left, *right;
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u32 sacked = 0, blks = 0, old_sacked;
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old_sacked = sb->sacked_bytes;
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sb->last_lost_bytes = 0;
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sb->lost_bytes = 0;
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sb->sacked_bytes = 0;
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right = scoreboard_last_hole (sb);
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if (!right)
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{
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sb->sacked_bytes = sb->high_sacked - ack;
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sb->last_sacked_bytes = sb->sacked_bytes
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- (old_sacked - sb->last_bytes_delivered);
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return;
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}
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if (seq_gt (sb->high_sacked, right->end))
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{
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sacked = sb->high_sacked - right->end;
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blks = 1;
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}
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/* As per RFC 6675 a sequence number is lost if:
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* DupThresh discontiguous SACKed sequences have arrived above
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* 'SeqNum' or more than (DupThresh - 1) * SMSS bytes with sequence
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* numbers greater than 'SeqNum' have been SACKed.
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* To avoid spurious retransmits, use reordering estimate instead of
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* DupThresh to detect loss.
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*/
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while (sacked <= (sb->reorder - 1) * snd_mss && blks < sb->reorder)
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{
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if (right->is_lost)
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sb->lost_bytes += scoreboard_hole_bytes (right);
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left = scoreboard_prev_hole (sb, right);
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if (!left)
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{
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ASSERT (right->start == ack || sb->is_reneging);
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sacked += right->start - ack;
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right = 0;
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break;
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}
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sacked += right->start - left->end;
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blks++;
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right = left;
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}
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/* right is first lost */
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while (right)
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{
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sb->lost_bytes += scoreboard_hole_bytes (right);
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sb->last_lost_bytes += right->is_lost ? 0 : (right->end - right->start);
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right->is_lost = 1;
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left = scoreboard_prev_hole (sb, right);
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if (!left)
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{
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ASSERT (right->start == ack || sb->is_reneging);
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sacked += right->start - ack;
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break;
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}
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sacked += right->start - left->end;
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right = left;
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}
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sb->sacked_bytes = sacked;
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sb->last_sacked_bytes = sacked - (old_sacked - sb->last_bytes_delivered);
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}
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/**
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* Figure out the next hole to retransmit
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*
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* Follows logic proposed in RFC6675 Sec. 4, NextSeg()
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*/
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sack_scoreboard_hole_t *
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scoreboard_next_rxt_hole (sack_scoreboard_t * sb,
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sack_scoreboard_hole_t * start,
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u8 have_unsent, u8 * can_rescue, u8 * snd_limited)
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{
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sack_scoreboard_hole_t *hole = 0;
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hole = start ? start : scoreboard_first_hole (sb);
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while (hole && seq_leq (hole->end, sb->high_rxt) && hole->is_lost)
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hole = scoreboard_next_hole (sb, hole);
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/* Nothing, return */
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if (!hole)
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{
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sb->cur_rxt_hole = TCP_INVALID_SACK_HOLE_INDEX;
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return 0;
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}
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/* Rule (1): if higher than rxt, less than high_sacked and lost */
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if (hole->is_lost && seq_lt (hole->start, sb->high_sacked))
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{
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sb->cur_rxt_hole = scoreboard_hole_index (sb, hole);
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}
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else
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{
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/* Rule (2): available unsent data */
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if (have_unsent)
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{
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sb->cur_rxt_hole = TCP_INVALID_SACK_HOLE_INDEX;
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return 0;
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}
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/* Rule (3): if hole not lost */
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else if (seq_lt (hole->start, sb->high_sacked))
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{
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/* And we didn't already retransmit it */
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if (seq_leq (hole->end, sb->high_rxt))
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{
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sb->cur_rxt_hole = TCP_INVALID_SACK_HOLE_INDEX;
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return 0;
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}
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*snd_limited = 0;
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sb->cur_rxt_hole = scoreboard_hole_index (sb, hole);
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}
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/* Rule (4): if hole beyond high_sacked */
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else
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{
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ASSERT (seq_geq (hole->start, sb->high_sacked));
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*snd_limited = 1;
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*can_rescue = 1;
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/* HighRxt MUST NOT be updated */
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return 0;
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}
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}
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if (hole && seq_lt (sb->high_rxt, hole->start))
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sb->high_rxt = hole->start;
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return hole;
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}
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void
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scoreboard_init_rxt (sack_scoreboard_t * sb, u32 snd_una)
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{
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sack_scoreboard_hole_t *hole;
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hole = scoreboard_first_hole (sb);
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if (hole)
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{
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snd_una = seq_gt (snd_una, hole->start) ? snd_una : hole->start;
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sb->cur_rxt_hole = sb->head;
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}
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sb->high_rxt = snd_una;
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sb->rescue_rxt = snd_una - 1;
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}
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void
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scoreboard_rxt_mark_lost (sack_scoreboard_t *sb, u32 snd_una, u32 snd_nxt)
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{
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sack_scoreboard_hole_t *hole;
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hole = scoreboard_first_hole (sb);
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if (!hole)
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{
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hole = scoreboard_insert_hole (sb, TCP_INVALID_SACK_HOLE_INDEX, snd_una,
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snd_nxt);
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sb->tail = scoreboard_hole_index (sb, hole);
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sb->high_sacked = snd_una;
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}
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if (hole->is_lost)
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return;
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hole->is_lost = 1;
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sb->lost_bytes += scoreboard_hole_bytes (hole);
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}
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void
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scoreboard_init (sack_scoreboard_t * sb)
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{
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sb->head = TCP_INVALID_SACK_HOLE_INDEX;
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sb->tail = TCP_INVALID_SACK_HOLE_INDEX;
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sb->cur_rxt_hole = TCP_INVALID_SACK_HOLE_INDEX;
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sb->reorder = TCP_DUPACK_THRESHOLD;
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}
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void
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scoreboard_clear (sack_scoreboard_t * sb)
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{
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sack_scoreboard_hole_t *hole;
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while ((hole = scoreboard_first_hole (sb)))
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{
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scoreboard_remove_hole (sb, hole);
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}
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ASSERT (sb->head == sb->tail && sb->head == TCP_INVALID_SACK_HOLE_INDEX);
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ASSERT (pool_elts (sb->holes) == 0);
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sb->sacked_bytes = 0;
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sb->last_sacked_bytes = 0;
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sb->last_bytes_delivered = 0;
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sb->lost_bytes = 0;
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sb->last_lost_bytes = 0;
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sb->cur_rxt_hole = TCP_INVALID_SACK_HOLE_INDEX;
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sb->is_reneging = 0;
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sb->reorder = TCP_DUPACK_THRESHOLD;
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}
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void
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scoreboard_clear_reneging (sack_scoreboard_t * sb, u32 start, u32 end)
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{
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sack_scoreboard_hole_t *last_hole;
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scoreboard_clear (sb);
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last_hole = scoreboard_insert_hole (sb, TCP_INVALID_SACK_HOLE_INDEX,
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start, end);
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last_hole->is_lost = 1;
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sb->tail = scoreboard_hole_index (sb, last_hole);
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sb->high_sacked = start;
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scoreboard_init_rxt (sb, start);
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}
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/**
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* Test that scoreboard is sane after recovery
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*
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* Returns 1 if scoreboard is empty or if first hole beyond
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* snd_una.
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*/
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u8
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tcp_scoreboard_is_sane_post_recovery (tcp_connection_t * tc)
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{
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sack_scoreboard_hole_t *hole;
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hole = scoreboard_first_hole (&tc->sack_sb);
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return (!hole || (seq_geq (hole->start, tc->snd_una)
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&& seq_lt (hole->end, tc->snd_nxt)));
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}
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void
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tcp_rcv_sacks (tcp_connection_t * tc, u32 ack)
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{
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sack_scoreboard_hole_t *hole, *next_hole;
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sack_scoreboard_t *sb = &tc->sack_sb;
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sack_block_t *blk, *rcv_sacks;
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u32 blk_index = 0, i, j, high_sacked;
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u8 has_rxt;
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sb->last_sacked_bytes = 0;
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sb->last_bytes_delivered = 0;
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sb->rxt_sacked = 0;
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if (!tcp_opts_sack (&tc->rcv_opts) && !sb->sacked_bytes
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&& sb->head == TCP_INVALID_SACK_HOLE_INDEX)
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return;
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has_rxt = tcp_in_cong_recovery (tc);
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/* Remove invalid blocks */
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blk = tc->rcv_opts.sacks;
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while (blk < vec_end (tc->rcv_opts.sacks))
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{
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if (seq_lt (blk->start, blk->end)
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&& seq_gt (blk->start, tc->snd_una)
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&& seq_gt (blk->start, ack)
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&& seq_lt (blk->start, tc->snd_nxt)
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&& seq_leq (blk->end, tc->snd_nxt))
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{
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blk++;
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continue;
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}
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vec_del1 (tc->rcv_opts.sacks, blk - tc->rcv_opts.sacks);
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}
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/* Add block for cumulative ack */
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if (seq_gt (ack, tc->snd_una))
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{
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vec_add2 (tc->rcv_opts.sacks, blk, 1);
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blk->start = tc->snd_una;
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blk->end = ack;
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}
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if (vec_len (tc->rcv_opts.sacks) == 0)
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return;
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tcp_scoreboard_trace_add (tc, ack);
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/* Make sure blocks are ordered */
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rcv_sacks = tc->rcv_opts.sacks;
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for (i = 0; i < vec_len (rcv_sacks); i++)
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for (j = i + 1; j < vec_len (rcv_sacks); j++)
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if (seq_lt (rcv_sacks[j].start, rcv_sacks[i].start))
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{
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sack_block_t tmp = rcv_sacks[i];
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rcv_sacks[i] = rcv_sacks[j];
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rcv_sacks[j] = tmp;
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}
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if (sb->head == TCP_INVALID_SACK_HOLE_INDEX)
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{
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/* Handle reneging as a special case */
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if (PREDICT_FALSE (sb->is_reneging))
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{
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/* No holes, only sacked bytes */
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if (seq_leq (tc->snd_nxt, sb->high_sacked))
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{
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/* No progress made so return */
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if (seq_leq (ack, tc->snd_una))
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return;
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/* Update sacked bytes delivered and return */
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sb->last_bytes_delivered = ack - tc->snd_una;
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sb->sacked_bytes -= sb->last_bytes_delivered;
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sb->is_reneging = seq_lt (ack, sb->high_sacked);
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return;
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}
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/* New hole above high sacked. Add it and process normally */
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hole = scoreboard_insert_hole (sb, TCP_INVALID_SACK_HOLE_INDEX,
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sb->high_sacked, tc->snd_nxt);
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sb->tail = scoreboard_hole_index (sb, hole);
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}
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/* Not reneging and no holes. Insert the first that covers all
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* outstanding bytes */
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else
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{
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hole = scoreboard_insert_hole (sb, TCP_INVALID_SACK_HOLE_INDEX,
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tc->snd_una, tc->snd_nxt);
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sb->tail = scoreboard_hole_index (sb, hole);
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sb->high_sacked = tc->snd_una;
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}
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high_sacked = rcv_sacks[vec_len (rcv_sacks) - 1].end;
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}
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else
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{
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/* If we have holes but snd_nxt is beyond the last hole, update
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* last hole end or add new hole after high sacked */
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hole = scoreboard_last_hole (sb);
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if (seq_gt (tc->snd_nxt, hole->end))
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{
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if (seq_geq (hole->start, sb->high_sacked))
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{
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hole->end = tc->snd_nxt;
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}
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/* New hole after high sacked block */
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else if (seq_lt (sb->high_sacked, tc->snd_nxt))
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{
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scoreboard_insert_hole (sb, sb->tail, sb->high_sacked,
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tc->snd_nxt);
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}
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}
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/* Keep track of max byte sacked for when the last hole
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* is acked */
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high_sacked = seq_max (rcv_sacks[vec_len (rcv_sacks) - 1].end,
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sb->high_sacked);
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}
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/* Walk the holes with the SACK blocks */
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hole = pool_elt_at_index (sb->holes, sb->head);
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if (PREDICT_FALSE (sb->is_reneging))
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{
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sb->last_bytes_delivered += clib_min (hole->start - tc->snd_una,
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ack - tc->snd_una);
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sb->is_reneging = seq_lt (ack, hole->start);
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}
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while (hole && blk_index < vec_len (rcv_sacks))
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{
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blk = &rcv_sacks[blk_index];
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if (seq_leq (blk->start, hole->start))
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{
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/* Block covers hole. Remove hole */
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if (seq_geq (blk->end, hole->end))
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{
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next_hole = scoreboard_next_hole (sb, hole);
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/* If covered by ack, compute delivered bytes */
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if (blk->end == ack)
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{
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u32 sacked = next_hole ? next_hole->start :
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seq_max (sb->high_sacked, hole->end);
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if (PREDICT_FALSE (seq_lt (ack, sacked)))
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{
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sb->last_bytes_delivered += ack - hole->end;
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sb->is_reneging = 1;
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}
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else
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{
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sb->last_bytes_delivered += sacked - hole->end;
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sb->is_reneging = 0;
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}
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}
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scoreboard_update_sacked (sb, hole->start, hole->end,
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has_rxt, tc->snd_mss);
|
|
scoreboard_remove_hole (sb, hole);
|
|
hole = next_hole;
|
|
}
|
|
/* Partial 'head' overlap */
|
|
else
|
|
{
|
|
if (seq_gt (blk->end, hole->start))
|
|
{
|
|
scoreboard_update_sacked (sb, hole->start, blk->end,
|
|
has_rxt, tc->snd_mss);
|
|
hole->start = blk->end;
|
|
}
|
|
blk_index++;
|
|
}
|
|
}
|
|
else
|
|
{
|
|
/* Hole must be split */
|
|
if (seq_lt (blk->end, hole->end))
|
|
{
|
|
u32 hole_index = scoreboard_hole_index (sb, hole);
|
|
next_hole = scoreboard_insert_hole (sb, hole_index, blk->end,
|
|
hole->end);
|
|
/* Pool might've moved */
|
|
hole = scoreboard_get_hole (sb, hole_index);
|
|
hole->end = blk->start;
|
|
next_hole->is_lost = hole->is_lost;
|
|
|
|
scoreboard_update_sacked (sb, blk->start, blk->end,
|
|
has_rxt, tc->snd_mss);
|
|
|
|
blk_index++;
|
|
ASSERT (hole->next == scoreboard_hole_index (sb, next_hole));
|
|
}
|
|
else if (seq_lt (blk->start, hole->end))
|
|
{
|
|
scoreboard_update_sacked (sb, blk->start, hole->end,
|
|
has_rxt, tc->snd_mss);
|
|
hole->end = blk->start;
|
|
}
|
|
hole = scoreboard_next_hole (sb, hole);
|
|
}
|
|
}
|
|
|
|
sb->high_sacked = high_sacked;
|
|
scoreboard_update_bytes (sb, ack, tc->snd_mss);
|
|
|
|
ASSERT (sb->last_sacked_bytes <= sb->sacked_bytes || tcp_in_recovery (tc));
|
|
ASSERT (sb->sacked_bytes == 0 || tcp_in_recovery (tc)
|
|
|| sb->sacked_bytes <= tc->snd_nxt - seq_max (tc->snd_una, ack));
|
|
ASSERT (sb->last_sacked_bytes + sb->lost_bytes <= tc->snd_nxt
|
|
- seq_max (tc->snd_una, ack) || tcp_in_recovery (tc));
|
|
ASSERT (sb->head == TCP_INVALID_SACK_HOLE_INDEX || tcp_in_recovery (tc)
|
|
|| sb->is_reneging || sb->holes[sb->head].start == ack);
|
|
ASSERT (sb->last_lost_bytes <= sb->lost_bytes);
|
|
ASSERT ((ack - tc->snd_una) + sb->last_sacked_bytes
|
|
- sb->last_bytes_delivered >= sb->rxt_sacked);
|
|
ASSERT ((ack - tc->snd_una) >= tc->sack_sb.last_bytes_delivered
|
|
|| (tc->flags & TCP_CONN_FINSNT));
|
|
|
|
TCP_EVT (TCP_EVT_CC_SCOREBOARD, tc);
|
|
}
|
|
|
|
static u8
|
|
tcp_sack_vector_is_sane (sack_block_t * sacks)
|
|
{
|
|
int i;
|
|
for (i = 1; i < vec_len (sacks); i++)
|
|
{
|
|
if (sacks[i - 1].end == sacks[i].start)
|
|
return 0;
|
|
}
|
|
return 1;
|
|
}
|
|
|
|
/**
|
|
* Build SACK list as per RFC2018.
|
|
*
|
|
* Makes sure the first block contains the segment that generated the current
|
|
* ACK and the following ones are the ones most recently reported in SACK
|
|
* blocks.
|
|
*
|
|
* @param tc TCP connection for which the SACK list is updated
|
|
* @param start Start sequence number of the newest SACK block
|
|
* @param end End sequence of the newest SACK block
|
|
*/
|
|
void
|
|
tcp_update_sack_list (tcp_connection_t * tc, u32 start, u32 end)
|
|
{
|
|
sack_block_t *new_list = tc->snd_sacks_fl, *block = 0;
|
|
int i;
|
|
|
|
/* If the first segment is ooo add it to the list. Last write might've moved
|
|
* rcv_nxt over the first segment. */
|
|
if (seq_lt (tc->rcv_nxt, start))
|
|
{
|
|
vec_add2 (new_list, block, 1);
|
|
block->start = start;
|
|
block->end = end;
|
|
}
|
|
|
|
/* Find the blocks still worth keeping. */
|
|
for (i = 0; i < vec_len (tc->snd_sacks); i++)
|
|
{
|
|
/* Discard if rcv_nxt advanced beyond current block */
|
|
if (seq_leq (tc->snd_sacks[i].start, tc->rcv_nxt))
|
|
continue;
|
|
|
|
/* Merge or drop if segment overlapped by the new segment */
|
|
if (block && (seq_geq (tc->snd_sacks[i].end, new_list[0].start)
|
|
&& seq_leq (tc->snd_sacks[i].start, new_list[0].end)))
|
|
{
|
|
if (seq_lt (tc->snd_sacks[i].start, new_list[0].start))
|
|
new_list[0].start = tc->snd_sacks[i].start;
|
|
if (seq_lt (new_list[0].end, tc->snd_sacks[i].end))
|
|
new_list[0].end = tc->snd_sacks[i].end;
|
|
continue;
|
|
}
|
|
|
|
/* Save to new SACK list if we have space. */
|
|
if (vec_len (new_list) < TCP_MAX_SACK_BLOCKS)
|
|
vec_add1 (new_list, tc->snd_sacks[i]);
|
|
}
|
|
|
|
ASSERT (vec_len (new_list) <= TCP_MAX_SACK_BLOCKS);
|
|
|
|
/* Replace old vector with new one */
|
|
vec_reset_length (tc->snd_sacks);
|
|
tc->snd_sacks_fl = tc->snd_sacks;
|
|
tc->snd_sacks = new_list;
|
|
|
|
/* Segments should not 'touch' */
|
|
ASSERT (tcp_sack_vector_is_sane (tc->snd_sacks));
|
|
}
|
|
|
|
u32
|
|
tcp_sack_list_bytes (tcp_connection_t * tc)
|
|
{
|
|
u32 bytes = 0, i;
|
|
for (i = 0; i < vec_len (tc->snd_sacks); i++)
|
|
bytes += tc->snd_sacks[i].end - tc->snd_sacks[i].start;
|
|
return bytes;
|
|
}
|
|
|
|
/*
|
|
* fd.io coding-style-patch-verification: ON
|
|
*
|
|
* Local Variables:
|
|
* eval: (c-set-style "gnu")
|
|
* End:
|
|
*/
|