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193 lines
5.7 KiB
193 lines
5.7 KiB
/*
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* include/proto/quic_loss.h
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* This file provides interface definition for QUIC loss detection.
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*
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* Copyright 2019 HAProxy Technologies, Frédéric Lécaille <flecaille@haproxy.com>
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation, version 2.1
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* exclusively.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#ifndef _PROTO_QUIC_LOSS_H
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#define _PROTO_QUIC_LOSS_H
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#ifdef USE_QUIC
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#ifndef USE_OPENSSL
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#error "Must define USE_OPENSSL"
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#endif
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#include <haproxy/ticks.h>
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#include <haproxy/time.h>
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#include <haproxy/xprt_quic-t.h>
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#include <haproxy/trace.h>
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#define TRACE_SOURCE &trace_quic
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static inline void quic_loss_init(struct quic_loss *ql)
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{
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ql->srtt = QUIC_LOSS_INITIAL_RTT << 4;
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ql->rtt_var = (QUIC_LOSS_INITIAL_RTT >> 1) << 2;
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ql->rtt_min = 0;
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ql->pto_count = 0;
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}
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/* Update <ql> QUIC loss information with new <rtt> measurement and <ack_delay>
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* on ACK frame receipt which MUST be min(ack->ack_delay, max_ack_delay) for
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* non handshake packets.
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*/
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static inline void quic_loss_srtt_update(struct quic_loss *ql,
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unsigned int rtt, unsigned int ack_delay,
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struct quic_conn *conn)
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{
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TRACE_PROTO("Loss info update", QUIC_EV_CONN_RTTUPDT, conn->conn, &rtt, &ack_delay, ql);
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ql->latest_rtt = rtt;
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if (!ql->rtt_min) {
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/* No previous measurement. */
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ql->srtt = rtt << 3;
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/* rttval <- rtt / 2 or 4*rttval <- 2*rtt. */
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ql->rtt_var = rtt << 1;
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ql->rtt_min = rtt;
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}
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else {
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int diff;
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ql->rtt_min = QUIC_MIN(rtt, ql->rtt_min);
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/* Specific to QUIC (RTT adjustment). */
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if (ack_delay && rtt > ql->rtt_min + ack_delay)
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rtt -= ack_delay;
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diff = ql->srtt - rtt;
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if (diff < 0)
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diff = -diff;
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/* 4*rttvar = 3*rttvar + |diff| */
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ql->rtt_var += diff - (ql->rtt_var >> 2);
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/* 8*srtt = 7*srtt + rtt */
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ql->srtt += rtt - (ql->srtt >> 3);
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}
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TRACE_PROTO("Loss info update", QUIC_EV_CONN_RTTUPDT, conn->conn,,, ql);
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}
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/* Return 1 if a persitent congestion is observed for a list of
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* lost packets sent during <period> period depending on <ql> loss information,
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* <now_us> the current time and <max_ack_delay_us> the maximum ACK delay of the connection
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* experiencing a packet loss. Return 0 on the contrary.
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*/
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static inline int quic_loss_persistent_congestion(struct quic_loss *ql,
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unsigned int period,
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unsigned int now_us,
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unsigned int max_ack_delay)
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{
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unsigned int congestion_period;
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if (!period)
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return 0;
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congestion_period = (ql->srtt >> 3) +
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QUIC_MAX(ql->rtt_var, QUIC_TIMER_GRANULARITY) + max_ack_delay;
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congestion_period *= QUIC_LOSS_PACKET_THRESHOLD;
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return period >= congestion_period;
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}
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/* Returns for <qc> QUIC connection the first packet number space which
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* experienced packet loss, if any or a packet number space with
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* TICK_ETERNITY as packet loss time if not.
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*/
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static inline struct quic_pktns *quic_loss_pktns(struct quic_conn *qc)
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{
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enum quic_tls_pktns i;
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struct quic_pktns *pktns;
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pktns = &qc->pktns[QUIC_TLS_PKTNS_INITIAL];
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TRACE_PROTO("pktns", QUIC_EV_CONN_SPTO, qc->conn, pktns);
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for (i = QUIC_TLS_PKTNS_01RTT; i < QUIC_TLS_PKTNS_MAX; i++) {
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TRACE_PROTO("pktns", QUIC_EV_CONN_SPTO, qc->conn, &qc->pktns[i]);
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if (qc->pktns[i].tx.loss_time < pktns->tx.loss_time)
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pktns = &qc->pktns[i];
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}
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return pktns;
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}
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/* Returns for <qc> QUIC connection the first packet number space to
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* arm the PTO for if any or a packet number space with TICK_ETERNITY
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* as PTO value if not.
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*/
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static inline struct quic_pktns *quic_pto_pktns(struct quic_conn *qc,
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int handshake_completed,
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unsigned int *pto)
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{
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int i;
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unsigned int duration, lpto, time_of_last_eliciting;
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struct quic_loss *ql = &qc->path->loss;
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struct quic_pktns *pktns;
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TRACE_ENTER(QUIC_EV_CONN_SPTO, qc->conn);
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duration =
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(ql->srtt >> 3) +
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(QUIC_MAX(ql->rtt_var, QUIC_TIMER_GRANULARITY) << ql->pto_count);
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if (!qc->path->in_flight) {
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struct quic_enc_level *hel;
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hel = &qc->els[QUIC_TLS_ENC_LEVEL_HANDSHAKE];
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if (hel->tls_ctx.tx.flags & QUIC_FL_TLS_SECRETS_SET) {
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pktns = &qc->pktns[QUIC_TLS_PKTNS_HANDSHAKE];
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}
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else {
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pktns = &qc->pktns[QUIC_TLS_PKTNS_INITIAL];
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}
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lpto = tick_add(now_ms, duration);
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goto out;
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}
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lpto = TICK_ETERNITY;
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pktns = &qc->pktns[QUIC_TLS_PKTNS_INITIAL];
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for (i = QUIC_TLS_PKTNS_INITIAL; i < QUIC_TLS_PKTNS_MAX; i++) {
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unsigned int tmp_pto;
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struct quic_pktns *p;
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p = &qc->pktns[i];
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if (!p->tx.in_flight)
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continue;
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if (i == QUIC_TLS_PKTNS_01RTT) {
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if (!handshake_completed) {
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pktns = p;
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goto out;
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}
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duration += qc->max_ack_delay << ql->pto_count;
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}
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time_of_last_eliciting = p->tx.time_of_last_eliciting;
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tmp_pto =
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tick_first(lpto, tick_add(time_of_last_eliciting, duration));
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if (!tick_isset(lpto) || tmp_pto < lpto) {
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lpto = tmp_pto;
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pktns = p;
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}
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TRACE_PROTO("pktns", QUIC_EV_CONN_SPTO, qc->conn, p);
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}
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out:
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if (pto)
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*pto = lpto;
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TRACE_LEAVE(QUIC_EV_CONN_SPTO, qc->conn, pktns, &duration);
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return pktns;
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}
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#endif /* USE_QUIC */
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#endif /* _PROTO_QUIC_LOSS_H */
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