Merge branch 'tcp_sack_rttm'
Kenneth Klette Jonassen says: ==================== tcp: SACK RTTM changes for congestion control This patch series improves SACK RTT measurements for congestion control: o Picks the latest sequence SACKed for RTT, i.e. most accurate delay signal. o Calls the congestion control's pkts_acked hook with SACK RTTMs even when not sequentially ACKing new data. V2: amend misleading comment ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
This commit is contained in:
commit
a89f96c927
1 changed files with 43 additions and 43 deletions
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@ -1130,7 +1130,12 @@ static bool tcp_check_dsack(struct sock *sk, const struct sk_buff *ack_skb,
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struct tcp_sacktag_state {
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int reord;
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int fack_count;
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long rtt_us; /* RTT measured by SACKing never-retransmitted data */
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/* Timestamps for earliest and latest never-retransmitted segment
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* that was SACKed. RTO needs the earliest RTT to stay conservative,
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* but congestion control should still get an accurate delay signal.
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*/
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struct skb_mstamp first_sackt;
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struct skb_mstamp last_sackt;
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int flag;
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};
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@ -1233,14 +1238,9 @@ static u8 tcp_sacktag_one(struct sock *sk,
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state->reord);
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if (!after(end_seq, tp->high_seq))
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state->flag |= FLAG_ORIG_SACK_ACKED;
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/* Pick the earliest sequence sacked for RTT */
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if (state->rtt_us < 0) {
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struct skb_mstamp now;
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skb_mstamp_get(&now);
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state->rtt_us = skb_mstamp_us_delta(&now,
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xmit_time);
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}
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if (state->first_sackt.v64 == 0)
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state->first_sackt = *xmit_time;
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state->last_sackt = *xmit_time;
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}
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if (sacked & TCPCB_LOST) {
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@ -1634,7 +1634,7 @@ static int tcp_sack_cache_ok(const struct tcp_sock *tp, const struct tcp_sack_bl
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static int
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tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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u32 prior_snd_una, long *sack_rtt_us)
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u32 prior_snd_una, struct tcp_sacktag_state *state)
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{
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struct tcp_sock *tp = tcp_sk(sk);
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const unsigned char *ptr = (skb_transport_header(ack_skb) +
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@ -1642,7 +1642,6 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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struct tcp_sack_block_wire *sp_wire = (struct tcp_sack_block_wire *)(ptr+2);
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struct tcp_sack_block sp[TCP_NUM_SACKS];
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struct tcp_sack_block *cache;
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struct tcp_sacktag_state state;
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struct sk_buff *skb;
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int num_sacks = min(TCP_NUM_SACKS, (ptr[1] - TCPOLEN_SACK_BASE) >> 3);
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int used_sacks;
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@ -1650,9 +1649,8 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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int i, j;
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int first_sack_index;
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state.flag = 0;
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state.reord = tp->packets_out;
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state.rtt_us = -1L;
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state->flag = 0;
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state->reord = tp->packets_out;
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if (!tp->sacked_out) {
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if (WARN_ON(tp->fackets_out))
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@ -1663,7 +1661,7 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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found_dup_sack = tcp_check_dsack(sk, ack_skb, sp_wire,
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num_sacks, prior_snd_una);
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if (found_dup_sack)
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state.flag |= FLAG_DSACKING_ACK;
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state->flag |= FLAG_DSACKING_ACK;
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/* Eliminate too old ACKs, but take into
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* account more or less fresh ones, they can
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@ -1728,7 +1726,7 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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}
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skb = tcp_write_queue_head(sk);
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state.fack_count = 0;
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state->fack_count = 0;
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i = 0;
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if (!tp->sacked_out) {
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@ -1762,10 +1760,10 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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/* Head todo? */
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if (before(start_seq, cache->start_seq)) {
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skb = tcp_sacktag_skip(skb, sk, &state,
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skb = tcp_sacktag_skip(skb, sk, state,
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start_seq);
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skb = tcp_sacktag_walk(skb, sk, next_dup,
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&state,
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state,
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start_seq,
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cache->start_seq,
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dup_sack);
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@ -1776,7 +1774,7 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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goto advance_sp;
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skb = tcp_maybe_skipping_dsack(skb, sk, next_dup,
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&state,
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state,
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cache->end_seq);
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/* ...tail remains todo... */
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@ -1785,12 +1783,12 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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skb = tcp_highest_sack(sk);
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if (!skb)
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break;
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state.fack_count = tp->fackets_out;
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state->fack_count = tp->fackets_out;
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cache++;
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goto walk;
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}
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skb = tcp_sacktag_skip(skb, sk, &state, cache->end_seq);
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skb = tcp_sacktag_skip(skb, sk, state, cache->end_seq);
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/* Check overlap against next cached too (past this one already) */
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cache++;
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continue;
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@ -1800,12 +1798,12 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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skb = tcp_highest_sack(sk);
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if (!skb)
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break;
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state.fack_count = tp->fackets_out;
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state->fack_count = tp->fackets_out;
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}
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skb = tcp_sacktag_skip(skb, sk, &state, start_seq);
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skb = tcp_sacktag_skip(skb, sk, state, start_seq);
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walk:
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skb = tcp_sacktag_walk(skb, sk, next_dup, &state,
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skb = tcp_sacktag_walk(skb, sk, next_dup, state,
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start_seq, end_seq, dup_sack);
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advance_sp:
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@ -1820,9 +1818,9 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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for (j = 0; j < used_sacks; j++)
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tp->recv_sack_cache[i++] = sp[j];
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if ((state.reord < tp->fackets_out) &&
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if ((state->reord < tp->fackets_out) &&
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((inet_csk(sk)->icsk_ca_state != TCP_CA_Loss) || tp->undo_marker))
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tcp_update_reordering(sk, tp->fackets_out - state.reord, 0);
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tcp_update_reordering(sk, tp->fackets_out - state->reord, 0);
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tcp_mark_lost_retrans(sk);
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tcp_verify_left_out(tp);
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@ -1834,8 +1832,7 @@ tcp_sacktag_write_queue(struct sock *sk, const struct sk_buff *ack_skb,
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WARN_ON((int)tp->retrans_out < 0);
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WARN_ON((int)tcp_packets_in_flight(tp) < 0);
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#endif
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*sack_rtt_us = state.rtt_us;
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return state.flag;
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return state->flag;
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}
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/* Limits sacked_out so that sum with lost_out isn't ever larger than
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@ -3052,7 +3049,8 @@ static void tcp_ack_tstamp(struct sock *sk, struct sk_buff *skb,
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* arrived at the other end.
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*/
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static int tcp_clean_rtx_queue(struct sock *sk, int prior_fackets,
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u32 prior_snd_una, long sack_rtt_us)
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u32 prior_snd_una,
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struct tcp_sacktag_state *sack)
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{
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const struct inet_connection_sock *icsk = inet_csk(sk);
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struct skb_mstamp first_ackt, last_ackt, now;
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@ -3060,8 +3058,9 @@ static int tcp_clean_rtx_queue(struct sock *sk, int prior_fackets,
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u32 prior_sacked = tp->sacked_out;
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u32 reord = tp->packets_out;
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bool fully_acked = true;
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long ca_seq_rtt_us = -1L;
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long sack_rtt_us = -1L;
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long seq_rtt_us = -1L;
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long ca_rtt_us = -1L;
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struct sk_buff *skb;
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u32 pkts_acked = 0;
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bool rtt_update;
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@ -3150,15 +3149,16 @@ static int tcp_clean_rtx_queue(struct sock *sk, int prior_fackets,
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skb_mstamp_get(&now);
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if (likely(first_ackt.v64)) {
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seq_rtt_us = skb_mstamp_us_delta(&now, &first_ackt);
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ca_seq_rtt_us = skb_mstamp_us_delta(&now, &last_ackt);
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ca_rtt_us = skb_mstamp_us_delta(&now, &last_ackt);
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}
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if (sack->first_sackt.v64) {
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sack_rtt_us = skb_mstamp_us_delta(&now, &sack->first_sackt);
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ca_rtt_us = skb_mstamp_us_delta(&now, &sack->last_sackt);
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}
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rtt_update = tcp_ack_update_rtt(sk, flag, seq_rtt_us, sack_rtt_us);
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if (flag & FLAG_ACKED) {
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const struct tcp_congestion_ops *ca_ops
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= inet_csk(sk)->icsk_ca_ops;
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tcp_rearm_rto(sk);
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if (unlikely(icsk->icsk_mtup.probe_size &&
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!after(tp->mtu_probe.probe_seq_end, tp->snd_una))) {
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tp->fackets_out -= min(pkts_acked, tp->fackets_out);
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if (ca_ops->pkts_acked) {
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long rtt_us = min_t(ulong, ca_seq_rtt_us, sack_rtt_us);
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ca_ops->pkts_acked(sk, pkts_acked, rtt_us);
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}
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} else if (skb && rtt_update && sack_rtt_us >= 0 &&
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sack_rtt_us > skb_mstamp_us_delta(&now, &skb->skb_mstamp)) {
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/* Do not re-arm RTO if the sack RTT is measured from data sent
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@ -3195,6 +3190,9 @@ static int tcp_clean_rtx_queue(struct sock *sk, int prior_fackets,
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tcp_rearm_rto(sk);
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}
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if (icsk->icsk_ca_ops->pkts_acked)
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icsk->icsk_ca_ops->pkts_acked(sk, pkts_acked, ca_rtt_us);
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#if FASTRETRANS_DEBUG > 0
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WARN_ON((int)tp->sacked_out < 0);
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WARN_ON((int)tp->lost_out < 0);
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@ -3459,6 +3457,7 @@ static int tcp_ack(struct sock *sk, const struct sk_buff *skb, int flag)
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{
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struct inet_connection_sock *icsk = inet_csk(sk);
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struct tcp_sock *tp = tcp_sk(sk);
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struct tcp_sacktag_state sack_state;
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u32 prior_snd_una = tp->snd_una;
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u32 ack_seq = TCP_SKB_CB(skb)->seq;
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u32 ack = TCP_SKB_CB(skb)->ack_seq;
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@ -3467,7 +3466,8 @@ static int tcp_ack(struct sock *sk, const struct sk_buff *skb, int flag)
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int prior_packets = tp->packets_out;
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const int prior_unsacked = tp->packets_out - tp->sacked_out;
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int acked = 0; /* Number of packets newly acked */
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long sack_rtt_us = -1L;
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sack_state.first_sackt.v64 = 0;
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/* We very likely will need to access write queue head. */
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prefetchw(sk->sk_write_queue.next);
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@ -3531,7 +3531,7 @@ static int tcp_ack(struct sock *sk, const struct sk_buff *skb, int flag)
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if (TCP_SKB_CB(skb)->sacked)
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flag |= tcp_sacktag_write_queue(sk, skb, prior_snd_una,
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&sack_rtt_us);
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&sack_state);
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if (tcp_ecn_rcv_ecn_echo(tp, tcp_hdr(skb))) {
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flag |= FLAG_ECE;
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@ -3556,7 +3556,7 @@ static int tcp_ack(struct sock *sk, const struct sk_buff *skb, int flag)
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/* See if we can take anything off of the retransmit queue. */
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acked = tp->packets_out;
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flag |= tcp_clean_rtx_queue(sk, prior_fackets, prior_snd_una,
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sack_rtt_us);
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&sack_state);
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acked -= tp->packets_out;
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/* Advance cwnd if state allows */
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@ -3608,7 +3608,7 @@ static int tcp_ack(struct sock *sk, const struct sk_buff *skb, int flag)
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*/
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if (TCP_SKB_CB(skb)->sacked) {
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flag |= tcp_sacktag_write_queue(sk, skb, prior_snd_una,
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&sack_rtt_us);
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&sack_state);
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tcp_fastretrans_alert(sk, acked, prior_unsacked,
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is_dupack, flag);
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}
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