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This an attempt to fix the data transfer stall reported by Geliang and Gang more carefully enforcing memory constraints at the MPTCP level. This iteration introduces a few more fixes for pre-existing issues, and keep the same trade-off as before: avoiding entirely the collapse attempt on memory pressure. Collapsing allow faster transfer (to be more accurate: less slow) under some extreme conditions, but makes transfer slower and much more CPU intensive for less unlikely conditions. As a consequences `multi_chunk_sendfile` and `multiproc*` test cases in mptcp_data *may* require longer timeout than default[1]. Patch 1 - 4 are actually fixes for pre-existing issues targeting net, included here just for my convenience. Patch 5 and 6 make the admission check much more strict for incoming packets exceeding the memory limits, with some exception for fallback sockets. Patch 7 implements OoO queue pruning for MPTCP and patch 5 addresses an edge scenario that could still lead to transfer stall under memory pressure. Finally patch 8 and 9 improve the MPTCP-level retransmission schema to make recovery from memory pressure/after MPTCP-level drop significantly faster. [1] In my testing on v8 mptcp_data survived a few hundred iterations with the default timeout. Some independent testing would be appreciated. --- v7 -> v8: - added patch 3 & 4 - some change for patch 5 avoiding dumb optimizations that added complexity. this also allowed removing patch "mptcp: track prune recovery status" - address some of sashiko feedback Paolo Abeni (9): mptcp: fix missing wakeups in edge scenarios mptcp: fix retransmission loop when csum is enabled mptcp: close TOCTOU race while computing rcv_wnd mptcp: allow subflow rcv wnd to shrink mptcp: explicitly drop over memory limits mptcp: enforce hard limit on backlog flushing mptcp: implemented OoO queue pruning mptcp: move the retrans loop to a separate helper mptcp: let the retrans scheduler do its job. net/mptcp/mib.c | 3 + net/mptcp/mib.h | 3 + net/mptcp/options.c | 71 +++++++++---- net/mptcp/protocol.c | 245 ++++++++++++++++++++++++++++++++----------- 4 files changed, 237 insertions(+), 85 deletions(-) -- 2.54.0
The mptcp_recvmsg() can fill MPTCP socket receive queue via mptcp_move_skbs(), but currently does not try to wakeup any listener, because the same process is going to check the receive queue soon. When multiple threads are reading from the same fd, the above can cause stall. Add the missing wakeup. Fixes: 6771bfd9ee24 ("mptcp: update mptcp ack sequence from work queue") Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- v6 -> v7 - use mptcp_epollin_ready() Notes: - sashiko may raise concerns about thundering herd problems. If application uses multiple threads to read on the same socket, that could/will happen. Application should not use multiple threads to read from the same socket if they want good performances. --- net/mptcp/protocol.c | 2 ++ 1 file changed, 2 insertions(+) diff --git a/net/mptcp/protocol.c b/net/mptcp/protocol.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/protocol.c +++ b/net/mptcp/protocol.c @@ -XXX,XX +XXX,XX @@ static bool mptcp_move_skbs(struct sock *sk) mptcp_backlog_spooled(sk, moved, &skbs); } mptcp_data_unlock(sk); + if (enqueued && mptcp_epollin_ready(sk)) + sk->sk_data_ready(sk); return enqueued; } -- 2.54.0
Sashiko noted that retransmission with csum enabled can actually transmit new data, but currently the relevant code does not update accordingly snd_nxt. The may cause incoming ack drop and an endless retransmission loop. Address the issue incrementing snd_nxt as needed. Fixes: 4e14867d5e91 ("mptcp: tune re-injections for csum enabled mode") Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- net/mptcp/protocol.c | 4 ++++ 1 file changed, 4 insertions(+) diff --git a/net/mptcp/protocol.c b/net/mptcp/protocol.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/protocol.c +++ b/net/mptcp/protocol.c @@ -XXX,XX +XXX,XX @@ static void __mptcp_retrans(struct sock *sk) msk->bytes_retrans += len; dfrag->already_sent = max(dfrag->already_sent, len); + /* With csum enabled retransmission can send new data. */ + if (after64(dfrag->already_sent + dfrag->data_seq, msk->snd_nxt)) + msk->snd_nxt = dfrag->already_sent + dfrag->data_seq; + reset_timer: mptcp_check_and_set_pending(sk); -- 2.54.0
The MPTCP output path access locklessly the MPTCP-level ack_seq in multiple times, using possibly different values for the data_ack in the DSS option and to compute the announced rcv wnd for the same packet. Refactor the cote to avoid inconsistencies which may confuse the peer. Also ensure that the MPTCP level rcv wnd is updated only when the egress packet actually contains a DSS ack. Fixes: fa3fe2b15031 ("mptcp: track window announced to peer") Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- net/mptcp/options.c | 36 ++++++++++++++++++------------------ 1 file changed, 18 insertions(+), 18 deletions(-) diff --git a/net/mptcp/options.c b/net/mptcp/options.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/options.c +++ b/net/mptcp/options.c @@ -XXX,XX +XXX,XX @@ static bool mptcp_established_options_dss(struct sock *sk, struct sk_buff *skb, struct mptcp_ext *mpext; unsigned int ack_size; bool ret = false; - u64 ack_seq; opts->csum_reqd = READ_ONCE(msk->csum_enabled); mpext = skb ? mptcp_get_ext(skb) : NULL; @@ -XXX,XX +XXX,XX @@ static bool mptcp_established_options_dss(struct sock *sk, struct sk_buff *skb, return ret; } - ack_seq = READ_ONCE(msk->ack_seq); if (READ_ONCE(msk->use_64bit_ack)) { ack_size = TCPOLEN_MPTCP_DSS_ACK64; - opts->ext_copy.data_ack = ack_seq; opts->ext_copy.ack64 = 1; } else { ack_size = TCPOLEN_MPTCP_DSS_ACK32; - opts->ext_copy.data_ack32 = (uint32_t)ack_seq; opts->ext_copy.ack64 = 0; } opts->ext_copy.use_ack = 1; @@ -XXX,XX +XXX,XX @@ bool mptcp_incoming_options(struct sock *sk, struct sk_buff *skb) return true; } -static void mptcp_set_rwin(struct tcp_sock *tp, struct tcphdr *th) +static u64 mptcp_set_rwin(struct mptcp_sock *msk, struct tcp_sock *tp, + struct tcphdr *th, u64 ack_seq) { const struct sock *ssk = (const struct sock *)tp; - struct mptcp_subflow_context *subflow; - u64 ack_seq, rcv_wnd_old, rcv_wnd_new; - struct mptcp_sock *msk; + u64 rcv_wnd_old, rcv_wnd_new; u32 new_win; u64 win; - subflow = mptcp_subflow_ctx(ssk); - msk = mptcp_sk(subflow->conn); - - ack_seq = READ_ONCE(msk->ack_seq); rcv_wnd_new = ack_seq + tp->rcv_wnd; rcv_wnd_old = atomic64_read(&msk->rcv_wnd_sent); @@ -XXX,XX +XXX,XX @@ static void mptcp_set_rwin(struct tcp_sock *tp, struct tcphdr *th) update_wspace: WRITE_ONCE(msk->old_wspace, tp->rcv_wnd); - subflow->rcv_wnd_sent = rcv_wnd_new; + return rcv_wnd_new; } static void mptcp_track_rwin(struct tcp_sock *tp) @@ -XXX,XX +XXX,XX @@ void mptcp_write_options(struct tcphdr *th, __be32 *ptr, struct tcp_sock *tp, *ptr++ = mptcp_option(MPTCPOPT_DSS, len, 0, flags); if (mpext->use_ack) { + struct mptcp_sock *msk; + u64 ack_seq; + + /* DSS option is set only by mptcp_established_option, + * the caller is __tcp_transmit_skb() and ssk is always + * not NULL. + */ + subflow = mptcp_subflow_ctx(ssk); + msk = mptcp_sk(subflow->conn); + ack_seq = READ_ONCE(msk->ack_seq); if (mpext->ack64) { - put_unaligned_be64(mpext->data_ack, ptr); + put_unaligned_be64(ack_seq, ptr); ptr += 2; } else { - put_unaligned_be32(mpext->data_ack32, ptr); + put_unaligned_be32(ack_seq, ptr); ptr += 1; } + subflow->rcv_wnd_sent = mptcp_set_rwin(msk, tp, th, + ack_seq); } if (mpext->use_map) { @@ -XXX,XX +XXX,XX @@ void mptcp_write_options(struct tcphdr *th, __be32 *ptr, struct tcp_sock *tp, i += 4; } } - - if (tp) - mptcp_set_rwin(tp, th); } __be32 mptcp_get_reset_option(const struct sk_buff *skb) -- 2.54.0
In MPTCP connection, the `window` field in the TCP header refers to the MPTCP-level rcv_nxt and it's right edge should not move backward. Such constraint is enforced at DSS option generation time. At the same time, the TCP stack ensures independently that the TCP-level rcv wnd right's edge does not move backward. That in turn causes artificial inflating of the MPTCP rcv window when the incoming data is acked at the TCP level and is OoO in the MPTCP sequence space (or lands in the backlog). As a consequence, the incoming traffic can exceed the receiver rcvbuf size even when the sender is not misbehaving. Prevent such scenario forcibly allowing the TCP subflow to shrink the TCP-level rcv wnd regardless of the current netns setting. Fixes: f3589be0c420 ("mptcp: never shrink offered window") Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- net/mptcp/options.c | 7 +++++++ 1 file changed, 7 insertions(+) diff --git a/net/mptcp/options.c b/net/mptcp/options.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/options.c +++ b/net/mptcp/options.c @@ -XXX,XX +XXX,XX @@ static bool mptcp_established_options_dss(struct sock *sk, struct sk_buff *skb, { struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk); struct mptcp_sock *msk = mptcp_sk(subflow->conn); + struct tcp_sock *tp = tcp_sk(sk); unsigned int dss_size = 0; struct mptcp_ext *mpext; unsigned int ack_size; @@ -XXX,XX +XXX,XX @@ static bool mptcp_established_options_dss(struct sock *sk, struct sk_buff *skb, if (dss_size == 0) ack_size += TCPOLEN_MPTCP_DSS_BASE; + /* The caller is __tcp_transmit_skb(), and will compute the new rcv + * wnd soon: ensure that the window can shrink. + */ + if (skb) + tp->rcv_wnd = tp->rcv_nxt - tp->rcv_wup; + dss_size += ack_size; *size = ALIGN(dss_size, 4); -- 2.54.0
Currently the enforcement of the rcvbuf constraint is implemented when moving the skbs into the msk receive or OoO queue, keeping the incoming skbs in the subflow queue when over limit. Under significant memory pressure the above can cause permanent data transfer stalls, as the skb needed to make forward progress can be stuck in a subflow queue. Over memory limits, drop the incoming skb, relaying on MPTCP-level retransmissions. Note that fallback socket must perform the limit before the skb reaches the subflow-level queue, as dropping an in-sequence already acked skb would break the stream. This is not a complete fix for the stall issue, as the drop strategy needs refinements that will come in the next patches. Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- v7 -> v8: - removed non fallback check in mptcp_incoming_option(): that is an tput optimization (avoid rejections) for a slowpath case (sender is misbehaving) and needs too much additional complexity. - move here from later patches mibs definition v6 -> v7: - fix sign extension issues v4 -> v5: - fix possible u32 overflow in mptcp_over_limit v3 -> v4: - schedule TCP ack on drop - enforce limits in __mptcp_move_skb() and __mptcp_add_backlog(), too but only if not fallback. v1 -> v2: - deal correctly with tcp fin and zero win probe RFC -> v1: - limit vs actual buffer size - use CB info instead of skb->len Note that: - this needs the follow-up patches to really fix the stall - sashiko can assume ZWP carries unacked data and may be silently dropped. AFAIK that is false. - sashiko apparently can't graps mptcp subflow never hit the tcp rx fastpath, and the mptcp_incoming_options in tcp_rcv_state_process is hit, the peer can't transmit any more data. - the memory comparison is intentionally very rough, as the msk socket lock is not currently held where the condition is now enforced. This should require some refinement, shared as-is to avoid more latency on my side --- net/mptcp/mib.c | 2 ++ net/mptcp/mib.h | 2 ++ net/mptcp/options.c | 28 +++++++++++++++++++++++++--- net/mptcp/protocol.c | 31 +++++++++++++++++++++++-------- 4 files changed, 52 insertions(+), 11 deletions(-) diff --git a/net/mptcp/mib.c b/net/mptcp/mib.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/mib.c +++ b/net/mptcp/mib.c @@ -XXX,XX +XXX,XX @@ static const struct snmp_mib mptcp_snmp_list[] = { SNMP_MIB_ITEM("SimultConnectFallback", MPTCP_MIB_SIMULTCONNFALLBACK), SNMP_MIB_ITEM("FallbackFailed", MPTCP_MIB_FALLBACKFAILED), SNMP_MIB_ITEM("WinProbe", MPTCP_MIB_WINPROBE), + SNMP_MIB_ITEM("BacklogDrop", MPTCP_MIB_BACKLOGDROP), + SNMP_MIB_ITEM("RcvPruned", MPTCP_MIB_RCVPRUNED), }; /* mptcp_mib_alloc - allocate percpu mib counters diff --git a/net/mptcp/mib.h b/net/mptcp/mib.h index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/mib.h +++ b/net/mptcp/mib.h @@ -XXX,XX +XXX,XX @@ enum linux_mptcp_mib_field { MPTCP_MIB_SIMULTCONNFALLBACK, /* Simultaneous connect */ MPTCP_MIB_FALLBACKFAILED, /* Can't fallback due to msk status */ MPTCP_MIB_WINPROBE, /* MPTCP-level zero window probe */ + MPTCP_MIB_BACKLOGDROP, /* Backlog over memory limit */ + MPTCP_MIB_RCVPRUNED, /* Dropped due to memory constrains */ __MPTCP_MIB_MAX }; diff --git a/net/mptcp/options.c b/net/mptcp/options.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/options.c +++ b/net/mptcp/options.c @@ -XXX,XX +XXX,XX @@ static bool add_addr_hmac_valid(struct mptcp_sock *msk, return hmac == mp_opt->ahmac; } -/* Return false in case of error (or subflow has been reset), - * else return true. +static bool mptcp_over_limit(struct sock *sk, struct sock *ssk, + const struct sk_buff *skb) +{ + struct mptcp_sock *msk = mptcp_sk(sk); + u64 mem = sk_rmem_alloc_get(sk); + + mem += READ_ONCE(msk->backlog_len); + if (likely(mem <= READ_ONCE(sk->sk_rcvbuf))) + return false; + + /* Avoid silently dropping pure acks, fin or zero win probes. */ + if (TCP_SKB_CB(skb)->seq == TCP_SKB_CB(skb)->end_seq || + TCP_SKB_CB(skb)->tcp_flags & TCPHDR_FIN || + !after(TCP_SKB_CB(skb)->end_seq, tcp_sk(ssk)->rcv_nxt)) + return false; + + /* Dropped due to memory constraints, schedule an ack. */ + inet_csk(ssk)->icsk_ack.pending |= ICSK_ACK_NOMEM | ICSK_ACK_NOW; + inet_csk_schedule_ack(ssk); + return true; +} + +/* Return false when the caller must drop the packet, i.e. in case of error, + * subflow has been reset, or over memory limits. */ bool mptcp_incoming_options(struct sock *sk, struct sk_buff *skb) { @@ -XXX,XX +XXX,XX @@ bool mptcp_incoming_options(struct sock *sk, struct sk_buff *skb) __mptcp_data_acked(subflow->conn); mptcp_data_unlock(subflow->conn); - return true; + return !mptcp_over_limit(subflow->conn, sk, skb); } mptcp_get_options(skb, &mp_opt); diff --git a/net/mptcp/protocol.c b/net/mptcp/protocol.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/protocol.c +++ b/net/mptcp/protocol.c @@ -XXX,XX +XXX,XX @@ static bool __mptcp_move_skb(struct sock *sk, struct sk_buff *skb) mptcp_borrow_fwdmem(sk, skb); + /* Can't drop packets for fallback socket this late, or the stream + * will break. + */ + if (unlikely(sk_rmem_alloc_get(sk) > READ_ONCE(sk->sk_rcvbuf)) && + !__mptcp_check_fallback(msk)) { + MPTCP_INC_STATS(sock_net(sk), MPTCP_MIB_RCVPRUNED); + mptcp_drop(sk, skb); + return false; + } + if (MPTCP_SKB_CB(skb)->map_seq == msk->ack_seq) { /* in sequence */ msk->bytes_received += copy_len; @@ -XXX,XX +XXX,XX @@ static void __mptcp_add_backlog(struct sock *sk, struct sk_buff *tail = NULL; struct sock *ssk = skb->sk; bool fragstolen; + u64 limit; int delta; if (unlikely(sk->sk_state == TCP_CLOSE)) { @@ -XXX,XX +XXX,XX @@ static void __mptcp_add_backlog(struct sock *sk, return; } + /* Similar additional allowance as plain TCP. */ + limit = READ_ONCE(sk->sk_rcvbuf); + limit += (limit >> 1) + 64 * 1024; + limit = min_t(u64, limit, UINT_MAX); + if (msk->backlog_len > limit && !__mptcp_check_fallback(msk)) { + __MPTCP_INC_STATS(sock_net(sk), MPTCP_MIB_BACKLOGDROP); + kfree_skb_reason(skb, SKB_DROP_REASON_SOCKET_BACKLOG); + return; + } + /* Try to coalesce with the last skb in our backlog */ if (!list_empty(&msk->backlog_list)) tail = list_last_entry(&msk->backlog_list, struct sk_buff, list); @@ -XXX,XX +XXX,XX @@ static bool __mptcp_move_skbs_from_subflow(struct mptcp_sock *msk, mptcp_init_skb(ssk, skb, offset, len); - if (own_msk && sk_rmem_alloc_get(sk) < sk->sk_rcvbuf) { + if (own_msk) { mptcp_subflow_lend_fwdmem(subflow, skb); ret |= __mptcp_move_skb(sk, skb); } else { @@ -XXX,XX +XXX,XX @@ static bool __mptcp_move_skbs(struct sock *sk, struct list_head *skbs, u32 *delt *delta = 0; while (1) { - /* If the msk recvbuf is full stop, don't drop */ - if (sk_rmem_alloc_get(sk) > sk->sk_rcvbuf) - break; - prefetch(skb->next); list_del(&skb->list); *delta += skb->truesize; @@ -XXX,XX +XXX,XX @@ static bool mptcp_can_spool_backlog(struct sock *sk, struct list_head *skbs) DEBUG_NET_WARN_ON_ONCE(msk->backlog_unaccounted && sk->sk_socket && mem_cgroup_from_sk(sk)); - /* Don't spool the backlog if the rcvbuf is full. */ - if (list_empty(&msk->backlog_list) || - sk_rmem_alloc_get(sk) > sk->sk_rcvbuf) + if (list_empty(&msk->backlog_list)) return false; INIT_LIST_HEAD(skbs); -- 2.54.0
Currently a wild producer could keep the backlog flushing operation spinning for an unbound time. Since the previous patch the amount of data present in the backlog is hard-limited. Move the backlog len update at the end of the flush loop to prevent it spinning forever. Also, no need to splice back the remaining skbs list into the backlog, as such list is always empty after each backlog processing loop. Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- net/mptcp/protocol.c | 21 ++++++--------------- 1 file changed, 6 insertions(+), 15 deletions(-) diff --git a/net/mptcp/protocol.c b/net/mptcp/protocol.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/protocol.c +++ b/net/mptcp/protocol.c @@ -XXX,XX +XXX,XX @@ static bool __mptcp_move_skbs(struct sock *sk, struct list_head *skbs, u32 *delt struct mptcp_sock *msk = mptcp_sk(sk); bool moved = false; - *delta = 0; while (1) { prefetch(skb->next); list_del(&skb->list); @@ -XXX,XX +XXX,XX @@ static bool mptcp_can_spool_backlog(struct sock *sk, struct list_head *skbs) return true; } -static void mptcp_backlog_spooled(struct sock *sk, u32 moved, - struct list_head *skbs) -{ - struct mptcp_sock *msk = mptcp_sk(sk); - - WRITE_ONCE(msk->backlog_len, msk->backlog_len - moved); - list_splice(skbs, &msk->backlog_list); -} - static bool mptcp_move_skbs(struct sock *sk) { + struct mptcp_sock *msk = mptcp_sk(sk); struct list_head skbs; bool enqueued = false; - u32 moved; + u32 moved = 0; mptcp_data_lock(sk); while (mptcp_can_spool_backlog(sk, &skbs)) { @@ -XXX,XX +XXX,XX @@ static bool mptcp_move_skbs(struct sock *sk) enqueued |= __mptcp_move_skbs(sk, &skbs, &moved); mptcp_data_lock(sk); - mptcp_backlog_spooled(sk, moved, &skbs); } + WRITE_ONCE(msk->backlog_len, msk->backlog_len - moved); mptcp_data_unlock(sk); if (enqueued && mptcp_epollin_ready(sk)) sk->sk_data_ready(sk); @@ -XXX,XX +XXX,XX @@ static void mptcp_release_cb(struct sock *sk) __must_hold(&sk->sk_lock.slock) { struct mptcp_sock *msk = mptcp_sk(sk); + u32 moved = 0; for (;;) { unsigned long flags = (msk->cb_flags & MPTCP_FLAGS_PROCESS_CTX_NEED); struct list_head join_list, skbs; bool spool_bl; - u32 moved; spool_bl = mptcp_can_spool_backlog(sk, &skbs); if (!flags && !spool_bl) @@ -XXX,XX +XXX,XX @@ static void mptcp_release_cb(struct sock *sk) cond_resched(); spin_lock_bh(&sk->sk_lock.slock); - if (spool_bl) - mptcp_backlog_spooled(sk, moved, &skbs); } + if (moved) + WRITE_ONCE(msk->backlog_len, msk->backlog_len - moved); if (__test_and_clear_bit(MPTCP_CLEAN_UNA, &msk->cb_flags)) __mptcp_clean_una_wakeup(sk); -- 2.54.0
Leverage the hybrid helpers to implement the receive queue and OoO queue collapsing at ingress time when reaching memory bounds. If the msk is owned by the user-space at incoming skb time, perform the pruning in the release_cb. The prune check is additionally performed when the skb reaches the msk-level queues. Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- v6 -> v7: - fix u64 -> u32 truncation v2 -> v3: - deal with unsynced TFO skb at prune time - only possible when pruning in mptcp_over_limit() v1 -> v2: - collapse rcv queue, too - deal with MPC map, too - drop left-over sentence in the commit message RFC -> v1: - use data_seq only when available - avoid ack_seq lockless access - drop limit on fallback - collapse rcvqueue, too - drop only when pruning is not possible and over rcvbuf * 2 Note: - sashiko can be confused about fwd memory lifecycle (I can understand that :). Any exceeding amount of fwd allocated memory is always released by the next sk_mem_uncharge() - i.e. fwd memory is not tied to the current skb. - AFAICS KASAN handles bitmap variables in a sane way, and sashiko doesn't know about that --- net/mptcp/mib.c | 1 + net/mptcp/mib.h | 1 + net/mptcp/protocol.c | 46 +++++++++++++++++++++++++++++++++++++++++--- 3 files changed, 45 insertions(+), 3 deletions(-) diff --git a/net/mptcp/mib.c b/net/mptcp/mib.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/mib.c +++ b/net/mptcp/mib.c @@ -XXX,XX +XXX,XX @@ static const struct snmp_mib mptcp_snmp_list[] = { SNMP_MIB_ITEM("WinProbe", MPTCP_MIB_WINPROBE), SNMP_MIB_ITEM("BacklogDrop", MPTCP_MIB_BACKLOGDROP), SNMP_MIB_ITEM("RcvPruned", MPTCP_MIB_RCVPRUNED), + SNMP_MIB_ITEM("OfoPruned", MPTCP_MIB_OFO_PRUNED), }; /* mptcp_mib_alloc - allocate percpu mib counters diff --git a/net/mptcp/mib.h b/net/mptcp/mib.h index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/mib.h +++ b/net/mptcp/mib.h @@ -XXX,XX +XXX,XX @@ enum linux_mptcp_mib_field { MPTCP_MIB_WINPROBE, /* MPTCP-level zero window probe */ MPTCP_MIB_BACKLOGDROP, /* Backlog over memory limit */ MPTCP_MIB_RCVPRUNED, /* Dropped due to memory constrains */ + MPTCP_MIB_OFO_PRUNED, /* MPTCP-level OoO queue pruned */ __MPTCP_MIB_MAX }; diff --git a/net/mptcp/protocol.c b/net/mptcp/protocol.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/protocol.c +++ b/net/mptcp/protocol.c @@ -XXX,XX +XXX,XX @@ static void mptcp_init_skb(struct sock *ssk, struct sk_buff *skb, int offset, skb_dst_drop(skb); } +/* "Inspired" from the TCP version */ +static void mptcp_prune_ofo_queue(struct sock *sk, u64 seq) +{ + struct mptcp_sock *msk = mptcp_sk(sk); + struct rb_node *node, *prev; + bool pruned = false; + u64 mem; + + if (RB_EMPTY_ROOT(&msk->out_of_order_queue)) + return; + + node = &msk->ooo_last_skb->rbnode; + + do { + struct sk_buff *skb = rb_to_skb(node); + + /* Stop pruning if the incoming skb would land in OoO tail. */ + if (after64(seq, MPTCP_SKB_CB(skb)->map_seq)) + break; + + pruned = true; + prev = rb_prev(node); + rb_erase(node, &msk->out_of_order_queue); + mptcp_drop(sk, skb); + msk->ooo_last_skb = rb_to_skb(prev); + + mem = (unsigned int)atomic_read(&sk->sk_rmem_alloc); + if (mem < sk->sk_rcvbuf) + break; + + node = prev; + } while (node); + + if (pruned) + MPTCP_INC_STATS(sock_net(sk), MPTCP_MIB_OFO_PRUNED); +} + static bool __mptcp_move_skb(struct sock *sk, struct sk_buff *skb) { u64 copy_len = MPTCP_SKB_CB(skb)->end_seq - MPTCP_SKB_CB(skb)->map_seq; @@ -XXX,XX +XXX,XX @@ static bool __mptcp_move_skb(struct sock *sk, struct sk_buff *skb) */ if (unlikely(sk_rmem_alloc_get(sk) > READ_ONCE(sk->sk_rcvbuf)) && !__mptcp_check_fallback(msk)) { - MPTCP_INC_STATS(sock_net(sk), MPTCP_MIB_RCVPRUNED); - mptcp_drop(sk, skb); - return false; + mptcp_prune_ofo_queue(sk, MPTCP_SKB_CB(skb)->map_seq); + if (sk_rmem_alloc_get(sk) > READ_ONCE(sk->sk_rcvbuf)) { + MPTCP_INC_STATS(sock_net(sk), MPTCP_MIB_RCVPRUNED); + mptcp_drop(sk, skb); + return false; + } } if (MPTCP_SKB_CB(skb)->map_seq == msk->ack_seq) { -- 2.54.0
This is a cleanup in order to make the next patch simpler. No functional change intended. Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- net/mptcp/protocol.c | 74 +++++++++++++++++++++++++------------------- 1 file changed, 43 insertions(+), 31 deletions(-) diff --git a/net/mptcp/protocol.c b/net/mptcp/protocol.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/protocol.c +++ b/net/mptcp/protocol.c @@ -XXX,XX +XXX,XX @@ static void mptcp_check_fastclose(struct mptcp_sock *msk) sk_error_report(sk); } -static void __mptcp_retrans(struct sock *sk) +/* Retransmit the specified data fragment on all the selected subflows. */ +static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag) { struct mptcp_sendmsg_info info = { .data_lock_held = true, }; struct mptcp_sock *msk = mptcp_sk(sk); struct mptcp_subflow_context *subflow; - struct mptcp_data_frag *dfrag; struct sock *ssk; - int ret, err; - u16 len = 0; - - mptcp_clean_una_wakeup(sk); - - /* first check ssk: need to kick "stale" logic */ - err = mptcp_sched_get_retrans(msk); - dfrag = mptcp_rtx_head(sk); - if (!dfrag) { - if (mptcp_data_fin_enabled(msk)) { - struct inet_connection_sock *icsk = inet_csk(sk); - - WRITE_ONCE(icsk->icsk_retransmits, - icsk->icsk_retransmits + 1); - mptcp_set_datafin_timeout(sk); - mptcp_send_ack(msk); - - goto reset_timer; - } - - if (!mptcp_send_head(sk)) - goto clear_scheduled; - - goto reset_timer; - } - - if (err) - goto reset_timer; + int ret, len = 0; mptcp_for_each_subflow(msk, subflow) { if (READ_ONCE(subflow->scheduled)) { @@ -XXX,XX +XXX,XX @@ static void __mptcp_retrans(struct sock *sk) !msk->allow_subflows) { spin_unlock_bh(&msk->fallback_lock); release_sock(ssk); - goto clear_scheduled; + return -1; } while (info.sent < info.limit) { @@ -XXX,XX +XXX,XX @@ static void __mptcp_retrans(struct sock *sk) release_sock(ssk); } } + return len; +} + +static void __mptcp_retrans(struct sock *sk) +{ + struct mptcp_sock *msk = mptcp_sk(sk); + struct mptcp_subflow_context *subflow; + struct mptcp_data_frag *dfrag; + int err, len; + + mptcp_clean_una_wakeup(sk); + + /* first check ssk: need to kick "stale" logic */ + err = mptcp_sched_get_retrans(msk); + dfrag = mptcp_rtx_head(sk); + if (!dfrag) { + if (mptcp_data_fin_enabled(msk)) { + struct inet_connection_sock *icsk = inet_csk(sk); + + WRITE_ONCE(icsk->icsk_retransmits, + icsk->icsk_retransmits + 1); + mptcp_set_datafin_timeout(sk); + mptcp_send_ack(msk); + + goto reset_timer; + } + + if (!mptcp_send_head(sk)) + goto clear_scheduled; + + goto reset_timer; + } + + if (err) + goto reset_timer; + + len = __mptcp_push_retrans(sk, dfrag); + if (len < 0) + goto clear_scheduled; msk->bytes_retrans += len; dfrag->already_sent = max(dfrag->already_sent, len); -- 2.54.0
Currently the MPTCP core enforces that when MPTCP-level retrans timer fires, at most a single dfrag is retransmitted. If some corner-cases it may be necessary retransmit multiple dfrags, and the MPTCP socket will need to wait multiple retrans timeout to accomplish that. Remove the mentioned constraint, allowing to transmit multiple dfrags per retrans period, as long as the scheduler keeps selecting subflows for retransmissions and pending data is available in the rtx queue. The default scheduler will transmit a dfrag per available subflow. Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- v7 -> v8 - fix corner-case retrans_seq update v4 -> v5: - fixed already_sent update v3 -> v4: - avoid quadratic behavior, fix retrans_seq update - fix rtx timer re-schedule miss v2 -> v3: - fix infinite loop issue (should address tls tests failures) v1 -> v2: - fix retrans sequence update (sashiko) Note: - sashiko see issues when dfrag = mptcp_rtx_head(sk) != NULL and dfrag->already_sent == 0. That condition should not possible: if mptcp_rtx_head() is not NULL there should be some data already sent. --- net/mptcp/protocol.c | 117 +++++++++++++++++++++++++++++++------------ 1 file changed, 85 insertions(+), 32 deletions(-) diff --git a/net/mptcp/protocol.c b/net/mptcp/protocol.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/protocol.c +++ b/net/mptcp/protocol.c @@ -XXX,XX +XXX,XX @@ static void __mptcp_clean_una_wakeup(struct sock *sk) mptcp_write_space(sk); } -static void mptcp_clean_una_wakeup(struct sock *sk) -{ - mptcp_data_lock(sk); - __mptcp_clean_una_wakeup(sk); - mptcp_data_unlock(sk); -} - static void mptcp_enter_memory_pressure(struct sock *sk) { struct mptcp_subflow_context *subflow; @@ -XXX,XX +XXX,XX @@ static void mptcp_check_fastclose(struct mptcp_sock *msk) sk_error_report(sk); } -/* Retransmit the specified data fragment on all the selected subflows. */ -static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag) +/* + * Retransmit the specified data fragment on all the selected subflows, + * starting from the specified sequence + */ +static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag, + u64 sent_seq) { struct mptcp_sendmsg_info info = { .data_lock_held = true, }; struct mptcp_sock *msk = mptcp_sk(sk); @@ -XXX,XX +XXX,XX @@ static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag) mptcp_for_each_subflow(msk, subflow) { if (READ_ONCE(subflow->scheduled)) { + u16 offset = sent_seq - dfrag->data_seq; u16 copied = 0; mptcp_subflow_set_scheduled(subflow, false); @@ -XXX,XX +XXX,XX @@ static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag) lock_sock(ssk); /* limit retransmission to the bytes already sent on some subflows */ - info.sent = 0; + info.sent = offset; info.limit = READ_ONCE(msk->csum_enabled) ? dfrag->data_len : dfrag->already_sent; + DEBUG_NET_WARN_ON_ONCE(!before64(sent_seq, + dfrag->data_seq + + info.limit)); /* * make the whole retrans decision, xmit, disallow @@ -XXX,XX +XXX,XX @@ static void __mptcp_retrans(struct sock *sk) struct mptcp_sock *msk = mptcp_sk(sk); struct mptcp_subflow_context *subflow; struct mptcp_data_frag *dfrag; + bool retransmitted = false; + u64 retrans_seq; int err, len; - mptcp_clean_una_wakeup(sk); - - /* first check ssk: need to kick "stale" logic */ - err = mptcp_sched_get_retrans(msk); + mptcp_data_lock(sk); + __mptcp_clean_una_wakeup(sk); + retrans_seq = msk->snd_una; dfrag = mptcp_rtx_head(sk); + mptcp_data_unlock(sk); + if (!dfrag) + goto check_data_fin; + + for (;;) { + bool already_retrans; + u64 sent_seq; + + /* The scheduler may clean the RTX queue. */ + get_page(dfrag->page); + + /* The default scheduler will kick "stale" logic. */ + err = mptcp_sched_get_retrans(msk); + if (err) { + put_page(dfrag->page); + break; + } + + /* Incoming acks can have moved retrans sequence after + * the current dfrag, if so try to start again from RTX head. + */ + mptcp_data_lock(sk); + already_retrans = !dfrag->already_sent || + !before64(msk->snd_una, dfrag->data_seq + + dfrag->already_sent); + put_page(dfrag->page); + if (already_retrans) { + __mptcp_clean_una_wakeup(sk); + retrans_seq = msk->snd_una; + dfrag = mptcp_rtx_head(sk); + } else if (after64(msk->snd_una, retrans_seq)) { + retrans_seq = msk->snd_una; + } + mptcp_data_unlock(sk); + if (!dfrag) + break; + + len = __mptcp_push_retrans(sk, dfrag, retrans_seq); + if (len < 0) + goto clear_scheduled; + + retransmitted = true; + retrans_seq += len; + msk->bytes_retrans += len; + dfrag->already_sent = max_t(u16, dfrag->already_sent, + retrans_seq - dfrag->data_seq); + + /* With csum enabled retransmission can send new data. */ + sent_seq = dfrag->already_sent + dfrag->data_seq; + if (after64(sent_seq, msk->snd_nxt)) + msk->snd_nxt = sent_seq; + + /* Attempt the next fragment only if the current one is + * completely retransmitted. + */ + if (before64(retrans_seq, dfrag->data_seq + dfrag->data_len)) + break; + + dfrag = list_is_last(&dfrag->list, &msk->rtx_queue) ? + NULL : list_next_entry(dfrag, list); + if (!dfrag || !dfrag->already_sent) + break; + } + + /* Data fin retransmission needed only if no data retransmission took + * place, and RTX queue is empty. + */ +check_data_fin: if (!dfrag) { - if (mptcp_data_fin_enabled(msk)) { + if (!retransmitted && mptcp_data_fin_enabled(msk)) { struct inet_connection_sock *icsk = inet_csk(sk); WRITE_ONCE(icsk->icsk_retransmits, icsk->icsk_retransmits + 1); mptcp_set_datafin_timeout(sk); mptcp_send_ack(msk); - goto reset_timer; } if (!mptcp_send_head(sk)) goto clear_scheduled; - - goto reset_timer; } - if (err) - goto reset_timer; - - len = __mptcp_push_retrans(sk, dfrag); - if (len < 0) - goto clear_scheduled; - - msk->bytes_retrans += len; - dfrag->already_sent = max(dfrag->already_sent, len); - - /* With csum enabled retransmission can send new data. */ - if (after64(dfrag->already_sent + dfrag->data_seq, msk->snd_nxt)) - msk->snd_nxt = dfrag->already_sent + dfrag->data_seq; - reset_timer: mptcp_check_and_set_pending(sk); -- 2.54.0
This brings (hopefully) the final bits required to address the data transfer stall reported by Geliang and Gang This series improves mptcp retranmission to make them reliable: pruning can require some of them. The only change over the previous iteration is in patch 2, addressing sashiko feedback over the previous iteration (possible infinite rtx loop). Paolo Abeni (2): mptcp: move the retrans loop to a separate helper mptcp: let the retrans scheduler do its job. net/mptcp/protocol.c | 155 +++++++++++++++++++++++++++++++------------ 1 file changed, 111 insertions(+), 44 deletions(-) -- 2.54.0
This is a cleanup in order to make the next patch simpler. No functional change intended. Tested-by: Gang Yan <yangang@kylinos.cn> Tested-by: Geliang Tang <geliang@kernel.org> Acked-by: Geliang Tang <geliang@kernel.org> Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- net/mptcp/protocol.c | 74 +++++++++++++++++++++++++------------------- 1 file changed, 43 insertions(+), 31 deletions(-) diff --git a/net/mptcp/protocol.c b/net/mptcp/protocol.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/protocol.c +++ b/net/mptcp/protocol.c @@ -XXX,XX +XXX,XX @@ static void mptcp_check_fastclose(struct mptcp_sock *msk) sk_error_report(sk); } -static void __mptcp_retrans(struct sock *sk) +/* Retransmit the specified data fragment on all the selected subflows. */ +static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag) { struct mptcp_sendmsg_info info = { .data_lock_held = true, }; struct mptcp_sock *msk = mptcp_sk(sk); struct mptcp_subflow_context *subflow; - struct mptcp_data_frag *dfrag; struct sock *ssk; - int ret, err; - u16 len = 0; - - mptcp_clean_una_wakeup(sk); - - /* first check ssk: need to kick "stale" logic */ - err = mptcp_sched_get_retrans(msk); - dfrag = mptcp_rtx_head(sk); - if (!dfrag) { - if (mptcp_data_fin_enabled(msk)) { - struct inet_connection_sock *icsk = inet_csk(sk); - - WRITE_ONCE(icsk->icsk_retransmits, - icsk->icsk_retransmits + 1); - mptcp_set_datafin_timeout(sk); - mptcp_send_ack(msk); - - goto reset_timer; - } - - if (!mptcp_send_head(sk)) - goto clear_scheduled; - - goto reset_timer; - } - - if (err) - goto reset_timer; + int ret, len = 0; mptcp_for_each_subflow(msk, subflow) { if (READ_ONCE(subflow->scheduled)) { @@ -XXX,XX +XXX,XX @@ static void __mptcp_retrans(struct sock *sk) !msk->allow_subflows) { spin_unlock_bh(&msk->fallback_lock); release_sock(ssk); - goto clear_scheduled; + return -1; } while (info.sent < info.limit) { @@ -XXX,XX +XXX,XX @@ static void __mptcp_retrans(struct sock *sk) release_sock(ssk); } } + return len; +} + +static void __mptcp_retrans(struct sock *sk) +{ + struct mptcp_sock *msk = mptcp_sk(sk); + struct mptcp_subflow_context *subflow; + struct mptcp_data_frag *dfrag; + int err, len; + + mptcp_clean_una_wakeup(sk); + + /* first check ssk: need to kick "stale" logic */ + err = mptcp_sched_get_retrans(msk); + dfrag = mptcp_rtx_head(sk); + if (!dfrag) { + if (mptcp_data_fin_enabled(msk)) { + struct inet_connection_sock *icsk = inet_csk(sk); + + WRITE_ONCE(icsk->icsk_retransmits, + icsk->icsk_retransmits + 1); + mptcp_set_datafin_timeout(sk); + mptcp_send_ack(msk); + + goto reset_timer; + } + + if (!mptcp_send_head(sk)) + goto clear_scheduled; + + goto reset_timer; + } + + if (err) + goto reset_timer; + + len = __mptcp_push_retrans(sk, dfrag); + if (len < 0) + goto clear_scheduled; msk->bytes_retrans += len; dfrag->already_sent = max(dfrag->already_sent, len); -- 2.54.0
Currently the MPTCP core enforces that when MPTCP-level retrans timer fires, at most a single dfrag is retransmitted. If some corner-cases it may be necessary retransmit multiple dfrags, and the MPTCP socket will need to wait multiple retrans timeout to accomplish that. Remove the mentioned constraint, allowing to transmit multiple dfrags per retrans period, as long as the scheduler keeps selecting subflows for retransmissions and pending data is available in the rtx queue. The default scheduler will transmit a dfrag per available subflow. Tested-by: Gang Yan <yangang@kylinos.cn> Tested-by: Geliang Tang <geliang@kernel.org> Acked-by: Geliang Tang <geliang@kernel.org> Signed-off-by: Paolo Abeni <pabeni@redhat.com> --- v11 -> v12: - avoid infinite loop (sashiko) v10 -> v11: - avoid WARNING when retransmitting dfrag with 0 already_sent, as such status can happend, as reported by Geliang. Instead explicitly check for the bad condition and skip. v9 -> v10: - simpler handling for data-fin rtx v7 -> v8 - fix corner-case retrans_seq update v4 -> v5: - fixed already_sent update v3 -> v4: - avoid quadratic behavior, fix retrans_seq update - fix rtx timer re-schedule miss v2 -> v3: - fix infinite loop issue (should address tls tests failures) v1 -> v2: - fix retrans sequence update (sashiko) Note: - sashiko may see missing data-fin rtx when the initial `dfrag` is not NULL. data-fin RTX is NOT needed in such scenario. --- net/mptcp/protocol.c | 119 +++++++++++++++++++++++++++++++------------ 1 file changed, 87 insertions(+), 32 deletions(-) diff --git a/net/mptcp/protocol.c b/net/mptcp/protocol.c index XXXXXXX..XXXXXXX 100644 --- a/net/mptcp/protocol.c +++ b/net/mptcp/protocol.c @@ -XXX,XX +XXX,XX @@ static void __mptcp_clean_una_wakeup(struct sock *sk) mptcp_write_space(sk); } -static void mptcp_clean_una_wakeup(struct sock *sk) -{ - mptcp_data_lock(sk); - __mptcp_clean_una_wakeup(sk); - mptcp_data_unlock(sk); -} - static void mptcp_enter_memory_pressure(struct sock *sk) { struct mptcp_subflow_context *subflow; @@ -XXX,XX +XXX,XX @@ static void mptcp_check_fastclose(struct mptcp_sock *msk) sk_error_report(sk); } -/* Retransmit the specified data fragment on all the selected subflows. */ -static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag) +/* + * Retransmit the specified data fragment on all the selected subflows, + * starting from the specified sequence + */ +static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag, + u64 sent_seq) { struct mptcp_sendmsg_info info = { .data_lock_held = true, }; struct mptcp_sock *msk = mptcp_sk(sk); @@ -XXX,XX +XXX,XX @@ static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag) mptcp_for_each_subflow(msk, subflow) { if (READ_ONCE(subflow->scheduled)) { + u16 offset = sent_seq - dfrag->data_seq; u16 copied = 0; mptcp_subflow_set_scheduled(subflow, false); @@ -XXX,XX +XXX,XX @@ static int __mptcp_push_retrans(struct sock *sk, struct mptcp_data_frag *dfrag) lock_sock(ssk); /* limit retransmission to the bytes already sent on some subflows */ - info.sent = 0; + info.sent = offset; info.limit = READ_ONCE(msk->csum_enabled) ? dfrag->data_len : dfrag->already_sent; @@ -XXX,XX +XXX,XX @@ static void __mptcp_retrans(struct sock *sk) struct mptcp_sock *msk = mptcp_sk(sk); struct mptcp_subflow_context *subflow; struct mptcp_data_frag *dfrag; + bool need_retrans; + u64 retrans_seq; int err, len; - mptcp_clean_una_wakeup(sk); - - /* first check ssk: need to kick "stale" logic */ - err = mptcp_sched_get_retrans(msk); + mptcp_data_lock(sk); + __mptcp_clean_una_wakeup(sk); + retrans_seq = msk->snd_una; dfrag = mptcp_rtx_head(sk); - if (!dfrag) { + need_retrans = !!dfrag; + mptcp_data_unlock(sk); + if (!dfrag) + goto check_data_fin; + + for (;;) { + bool already_retrans; + u64 sent_seq; + + /* The default scheduler will kick "stale" logic, that in + * turn can process incoming acks and clean the RTX queue; + * ensure that the current dfrag will still be around + * afterwards. + */ + get_page(dfrag->page); + err = mptcp_sched_get_retrans(msk); + if (err) { + put_page(dfrag->page); + break; + } + + /* Incoming acks can have moved retrans sequence after + * the current dfrag, if so try to start again from RTX head. + */ + mptcp_data_lock(sk); + already_retrans = !before64(msk->snd_una, dfrag->data_seq + + dfrag->already_sent); + put_page(dfrag->page); + if (already_retrans) { + __mptcp_clean_una_wakeup(sk); + retrans_seq = msk->snd_una; + dfrag = mptcp_rtx_head(sk); + need_retrans = !!dfrag; + } else if (after64(msk->snd_una, retrans_seq)) { + retrans_seq = msk->snd_una; + } + mptcp_data_unlock(sk); + + /* `already_sent` can be 0 for `dfrag` belonging to the RTX + * queue due to __mptcp_retransmit_pending_data(). + */ + if (!dfrag || !dfrag->already_sent) + break; + + /* Can fail only in case of fallback. */ + len = __mptcp_push_retrans(sk, dfrag, retrans_seq); + if (len < 0) + goto clear_scheduled; + + retrans_seq += len; + msk->bytes_retrans += len; + dfrag->already_sent = max_t(u16, dfrag->already_sent, + retrans_seq - dfrag->data_seq); + + /* With csum enabled retransmission can send new data. */ + sent_seq = dfrag->already_sent + dfrag->data_seq; + if (after64(sent_seq, msk->snd_nxt)) + WRITE_ONCE(msk->snd_nxt, sent_seq); + + /* Attempt the next fragment only if the current one is + * completely retransmitted. + */ + if (before64(retrans_seq, dfrag->data_seq + dfrag->data_len)) + break; + + dfrag = list_is_last(&dfrag->list, &msk->rtx_queue) ? + NULL : list_next_entry(dfrag, list); + if (!dfrag) + break; + } + + /* Attempt data-fin retransmission only when the RTX queue is empty. */ + if (!need_retrans) { +check_data_fin: if (mptcp_data_fin_enabled(msk)) { struct inet_connection_sock *icsk = inet_csk(sk); @@ -XXX,XX +XXX,XX @@ static void __mptcp_retrans(struct sock *sk) icsk->icsk_retransmits + 1); mptcp_set_datafin_timeout(sk); mptcp_send_ack(msk); - goto reset_timer; } if (!mptcp_send_head(sk)) goto clear_scheduled; - - goto reset_timer; } - if (err) - goto reset_timer; - - len = __mptcp_push_retrans(sk, dfrag); - if (len < 0) - goto clear_scheduled; - - msk->bytes_retrans += len; - dfrag->already_sent = max(dfrag->already_sent, len); - - /* With csum enabled retransmission can send new data. */ - if (after64(dfrag->already_sent + dfrag->data_seq, msk->snd_nxt)) - WRITE_ONCE(msk->snd_nxt, dfrag->already_sent + dfrag->data_seq); - reset_timer: mptcp_check_and_set_pending(sk); -- 2.54.0