tcp: early retransmit
This patch implements RFC 5827 early retransmit (ER) for TCP. It reduces DUPACK threshold (dupthresh) if outstanding packets are less than 4 to recover losses by fast recovery instead of timeout. While the algorithm is simple, small but frequent network reordering makes this feature dangerous: the connection repeatedly enter false recovery and degrade performance. Therefore we implement a mitigation suggested in the appendix of the RFC that delays entering fast recovery by a small interval, i.e., RTT/4. Currently ER is conservative and is disabled for the rest of the connection after the first reordering event. A large scale web server experiment on the performance impact of ER is summarized in section 6 of the paper "Proportional Rate Reduction for TCP”, IMC 2011. http://conferences.sigcomm.org/imc/2011/docs/p155.pdf Note that Linux has a similar feature called THIN_DUPACK. The differences are THIN_DUPACK do not mitigate reorderings and is only used after slow start. Currently ER is disabled if THIN_DUPACK is enabled. I would be happy to merge THIN_DUPACK feature with ER if people think it's a good idea. ER is enabled by sysctl_tcp_early_retrans: 0: Disables ER 1: Reduce dupthresh to packets_out - 1 when outstanding packets < 4. 2: (Default) reduce dupthresh like mode 1. In addition, delay entering fast recovery by RTT/4. Note: mode 2 is implemented in the third part of this patch series. Signed-off-by: Yuchung Cheng <ycheng@google.com> Acked-by: Neal Cardwell <ncardwell@google.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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@ -190,6 +190,20 @@ tcp_cookie_size - INTEGER
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tcp_dsack - BOOLEAN
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Allows TCP to send "duplicate" SACKs.
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tcp_early_retrans - INTEGER
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Enable Early Retransmit (ER), per RFC 5827. ER lowers the threshold
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for triggering fast retransmit when the amount of outstanding data is
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small and when no previously unsent data can be transmitted (such
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that limited transmit could be used).
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Possible values:
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0 disables ER
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1 enables ER
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2 enables ER but delays fast recovery and fast retransmit
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by a fourth of RTT. This mitigates connection falsely
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recovers when network has a small degree of reordering
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(less than 3 packets).
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Default: 2
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tcp_ecn - INTEGER
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Enable Explicit Congestion Notification (ECN) in TCP. ECN is only
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used when both ends of the TCP flow support it. It is useful to
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@ -372,6 +372,7 @@ struct tcp_sock {
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repair : 1,
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unused : 1;
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u8 repair_queue;
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u8 do_early_retrans:1;/* Enable RFC5827 early-retransmit */
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/* RTT measurement */
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u32 srtt; /* smoothed round trip time << 3 */
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@ -252,6 +252,7 @@ extern int sysctl_tcp_max_ssthresh;
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extern int sysctl_tcp_cookie_size;
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extern int sysctl_tcp_thin_linear_timeouts;
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extern int sysctl_tcp_thin_dupack;
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extern int sysctl_tcp_early_retrans;
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extern atomic_long_t tcp_memory_allocated;
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extern struct percpu_counter tcp_sockets_allocated;
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@ -797,6 +798,20 @@ static inline void tcp_enable_fack(struct tcp_sock *tp)
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tp->rx_opt.sack_ok |= TCP_FACK_ENABLED;
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}
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/* TCP early-retransmit (ER) is similar to but more conservative than
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* the thin-dupack feature. Enable ER only if thin-dupack is disabled.
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*/
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static inline void tcp_enable_early_retrans(struct tcp_sock *tp)
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{
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tp->do_early_retrans = sysctl_tcp_early_retrans &&
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!sysctl_tcp_thin_dupack && sysctl_tcp_reordering == 3;
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}
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static inline void tcp_disable_early_retrans(struct tcp_sock *tp)
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{
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tp->do_early_retrans = 0;
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}
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static inline unsigned int tcp_left_out(const struct tcp_sock *tp)
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{
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return tp->sacked_out + tp->lost_out;
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@ -27,6 +27,7 @@
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#include <net/tcp_memcontrol.h>
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static int zero;
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static int two = 2;
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static int tcp_retr1_max = 255;
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static int ip_local_port_range_min[] = { 1, 1 };
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static int ip_local_port_range_max[] = { 65535, 65535 };
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@ -676,6 +677,15 @@ static struct ctl_table ipv4_table[] = {
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.mode = 0644,
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.proc_handler = proc_dointvec
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},
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{
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.procname = "tcp_early_retrans",
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.data = &sysctl_tcp_early_retrans,
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.maxlen = sizeof(int),
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.mode = 0644,
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.proc_handler = proc_dointvec_minmax,
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.extra1 = &zero,
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.extra2 = &two,
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},
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{
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.procname = "udp_mem",
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.data = &sysctl_udp_mem,
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@ -395,6 +395,7 @@ void tcp_init_sock(struct sock *sk)
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tp->mss_cache = TCP_MSS_DEFAULT;
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tp->reordering = sysctl_tcp_reordering;
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tcp_enable_early_retrans(tp);
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icsk->icsk_ca_ops = &tcp_init_congestion_ops;
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sk->sk_state = TCP_CLOSE;
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@ -2495,6 +2496,8 @@ static int do_tcp_setsockopt(struct sock *sk, int level,
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err = -EINVAL;
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else
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tp->thin_dupack = val;
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if (tp->thin_dupack)
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tcp_disable_early_retrans(tp);
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break;
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case TCP_REPAIR:
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@ -99,6 +99,7 @@ int sysctl_tcp_thin_dupack __read_mostly;
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int sysctl_tcp_moderate_rcvbuf __read_mostly = 1;
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int sysctl_tcp_abc __read_mostly;
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int sysctl_tcp_early_retrans __read_mostly = 2;
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#define FLAG_DATA 0x01 /* Incoming frame contained data. */
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#define FLAG_WIN_UPDATE 0x02 /* Incoming ACK was a window update. */
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@ -906,6 +907,7 @@ static void tcp_init_metrics(struct sock *sk)
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if (dst_metric(dst, RTAX_REORDERING) &&
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tp->reordering != dst_metric(dst, RTAX_REORDERING)) {
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tcp_disable_fack(tp);
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tcp_disable_early_retrans(tp);
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tp->reordering = dst_metric(dst, RTAX_REORDERING);
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}
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@ -988,6 +990,9 @@ static void tcp_update_reordering(struct sock *sk, const int metric,
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#endif
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tcp_disable_fack(tp);
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}
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if (metric > 0)
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tcp_disable_early_retrans(tp);
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}
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/* This must be called before lost_out is incremented */
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@ -2492,6 +2497,16 @@ static int tcp_time_to_recover(struct sock *sk)
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tcp_is_sack(tp) && !tcp_send_head(sk))
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return 1;
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/* Trick#6: TCP early retransmit, per RFC5827. To avoid spurious
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* retransmissions due to small network reorderings, we implement
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* Mitigation A.3 in the RFC and delay the retransmission for a short
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* interval if appropriate.
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*/
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if (tp->do_early_retrans && !tp->retrans_out && tp->sacked_out &&
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(tp->packets_out == (tp->sacked_out + 1) && tp->packets_out < 4) &&
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!tcp_may_send_now(sk))
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return 1;
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return 0;
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}
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@ -482,6 +482,7 @@ struct sock *tcp_create_openreq_child(struct sock *sk, struct request_sock *req,
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newtp->sacked_out = 0;
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newtp->fackets_out = 0;
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newtp->snd_ssthresh = TCP_INFINITE_SSTHRESH;
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tcp_enable_early_retrans(newtp);
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/* So many TCP implementations out there (incorrectly) count the
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* initial SYN frame in their delayed-ACK and congestion control
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