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mptcp: do not block subflows creation on errors
If the MPTCP configuration allows for multiple subflows creation, and the first additional subflows never reach the fully established status - e.g. due to packets drop or reset - the in kernel path manager do not move to the next subflow. This patch introduces a new PM helper to cope with MPJ subflow creation failure and delay and hook it where appropriate. Such helper triggers additional subflow creation, as needed and updates the PM subflow counter, if the current one is closing. Additionally start all the needed additional subflows as soon as the MPTCP socket is fully established, so we don't have to cope with slow MPJ handshake blocking the next subflow creation. Signed-off-by: Paolo Abeni <pabeni@redhat.com> Signed-off-by: Mat Martineau <mathew.j.martineau@linux.intel.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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@ -172,9 +172,28 @@ void mptcp_pm_subflow_established(struct mptcp_sock *msk)
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spin_unlock_bh(&pm->lock);
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}
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void mptcp_pm_subflow_closed(struct mptcp_sock *msk, u8 id)
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void mptcp_pm_subflow_check_next(struct mptcp_sock *msk, const struct sock *ssk,
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const struct mptcp_subflow_context *subflow)
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{
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pr_debug("msk=%p", msk);
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struct mptcp_pm_data *pm = &msk->pm;
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bool update_subflows;
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update_subflows = (ssk->sk_state == TCP_CLOSE) &&
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(subflow->request_join || subflow->mp_join);
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if (!READ_ONCE(pm->work_pending) && !update_subflows)
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return;
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spin_lock_bh(&pm->lock);
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if (update_subflows)
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pm->subflows--;
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/* Even if this subflow is not really established, tell the PM to try
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* to pick the next ones, if possible.
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*/
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if (mptcp_pm_nl_check_work_pending(msk))
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mptcp_pm_schedule_work(msk, MPTCP_PM_SUBFLOW_ESTABLISHED);
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spin_unlock_bh(&pm->lock);
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}
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void mptcp_pm_add_addr_received(struct mptcp_sock *msk,
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@ -251,14 +251,17 @@ unsigned int mptcp_pm_get_local_addr_max(struct mptcp_sock *msk)
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}
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EXPORT_SYMBOL_GPL(mptcp_pm_get_local_addr_max);
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static void check_work_pending(struct mptcp_sock *msk)
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bool mptcp_pm_nl_check_work_pending(struct mptcp_sock *msk)
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{
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struct pm_nl_pernet *pernet = net_generic(sock_net((struct sock *)msk), pm_nl_pernet_id);
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if (msk->pm.subflows == mptcp_pm_get_subflows_max(msk) ||
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(find_next_and_bit(pernet->id_bitmap, msk->pm.id_avail_bitmap,
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MPTCP_PM_MAX_ADDR_ID + 1, 0) == MPTCP_PM_MAX_ADDR_ID + 1))
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MPTCP_PM_MAX_ADDR_ID + 1, 0) == MPTCP_PM_MAX_ADDR_ID + 1)) {
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WRITE_ONCE(msk->pm.work_pending, false);
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return false;
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}
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return true;
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}
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struct mptcp_pm_add_entry *
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@ -427,6 +430,7 @@ static bool lookup_address_in_vec(struct mptcp_addr_info *addrs, unsigned int nr
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static unsigned int fill_remote_addresses_vec(struct mptcp_sock *msk, bool fullmesh,
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struct mptcp_addr_info *addrs)
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{
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bool deny_id0 = READ_ONCE(msk->pm.remote_deny_join_id0);
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struct sock *sk = (struct sock *)msk, *ssk;
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struct mptcp_subflow_context *subflow;
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struct mptcp_addr_info remote = { 0 };
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@ -434,22 +438,28 @@ static unsigned int fill_remote_addresses_vec(struct mptcp_sock *msk, bool fullm
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int i = 0;
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subflows_max = mptcp_pm_get_subflows_max(msk);
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remote_address((struct sock_common *)sk, &remote);
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/* Non-fullmesh endpoint, fill in the single entry
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* corresponding to the primary MPC subflow remote address
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*/
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if (!fullmesh) {
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remote_address((struct sock_common *)sk, &remote);
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if (deny_id0)
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return 0;
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msk->pm.subflows++;
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addrs[i++] = remote;
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} else {
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mptcp_for_each_subflow(msk, subflow) {
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ssk = mptcp_subflow_tcp_sock(subflow);
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remote_address((struct sock_common *)ssk, &remote);
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if (!lookup_address_in_vec(addrs, i, &remote) &&
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remote_address((struct sock_common *)ssk, &addrs[i]);
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if (deny_id0 && addresses_equal(&addrs[i], &remote, false))
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continue;
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if (!lookup_address_in_vec(addrs, i, &addrs[i]) &&
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msk->pm.subflows < subflows_max) {
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msk->pm.subflows++;
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addrs[i++] = remote;
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i++;
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}
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}
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}
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@ -503,12 +513,12 @@ static void mptcp_pm_create_subflow_or_signal_addr(struct mptcp_sock *msk)
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/* do lazy endpoint usage accounting for the MPC subflows */
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if (unlikely(!(msk->pm.status & BIT(MPTCP_PM_MPC_ENDPOINT_ACCOUNTED))) && msk->first) {
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struct mptcp_addr_info local;
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struct mptcp_addr_info mpc_addr;
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int mpc_id;
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local_address((struct sock_common *)msk->first, &local);
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mpc_id = lookup_id_by_addr(pernet, &local);
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if (mpc_id < 0)
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local_address((struct sock_common *)msk->first, &mpc_addr);
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mpc_id = lookup_id_by_addr(pernet, &mpc_addr);
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if (mpc_id >= 0)
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__clear_bit(mpc_id, msk->pm.id_avail_bitmap);
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msk->pm.status |= BIT(MPTCP_PM_MPC_ENDPOINT_ACCOUNTED);
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@ -534,26 +544,28 @@ static void mptcp_pm_create_subflow_or_signal_addr(struct mptcp_sock *msk)
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}
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/* check if should create a new subflow */
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if (msk->pm.local_addr_used < local_addr_max &&
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msk->pm.subflows < subflows_max &&
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!READ_ONCE(msk->pm.remote_deny_join_id0)) {
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local = select_local_address(pernet, msk);
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if (local) {
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bool fullmesh = !!(local->flags & MPTCP_PM_ADDR_FLAG_FULLMESH);
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struct mptcp_addr_info addrs[MPTCP_PM_ADDR_MAX];
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int i, nr;
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while (msk->pm.local_addr_used < local_addr_max &&
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msk->pm.subflows < subflows_max) {
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struct mptcp_addr_info addrs[MPTCP_PM_ADDR_MAX];
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bool fullmesh;
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int i, nr;
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msk->pm.local_addr_used++;
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nr = fill_remote_addresses_vec(msk, fullmesh, addrs);
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if (nr)
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__clear_bit(local->addr.id, msk->pm.id_avail_bitmap);
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spin_unlock_bh(&msk->pm.lock);
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for (i = 0; i < nr; i++)
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__mptcp_subflow_connect(sk, &local->addr, &addrs[i]);
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spin_lock_bh(&msk->pm.lock);
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}
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local = select_local_address(pernet, msk);
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if (!local)
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break;
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fullmesh = !!(local->flags & MPTCP_PM_ADDR_FLAG_FULLMESH);
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msk->pm.local_addr_used++;
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nr = fill_remote_addresses_vec(msk, fullmesh, addrs);
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if (nr)
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__clear_bit(local->addr.id, msk->pm.id_avail_bitmap);
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spin_unlock_bh(&msk->pm.lock);
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for (i = 0; i < nr; i++)
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__mptcp_subflow_connect(sk, &local->addr, &addrs[i]);
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spin_lock_bh(&msk->pm.lock);
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}
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check_work_pending(msk);
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mptcp_pm_nl_check_work_pending(msk);
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}
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static void mptcp_pm_nl_fully_established(struct mptcp_sock *msk)
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@ -760,11 +772,12 @@ static void mptcp_pm_nl_rm_addr_or_subflow(struct mptcp_sock *msk,
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i, rm_list->ids[i], subflow->local_id, subflow->remote_id);
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spin_unlock_bh(&msk->pm.lock);
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mptcp_subflow_shutdown(sk, ssk, how);
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/* the following takes care of updating the subflows counter */
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mptcp_close_ssk(sk, ssk, subflow);
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spin_lock_bh(&msk->pm.lock);
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removed = true;
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msk->pm.subflows--;
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__MPTCP_INC_STATS(sock_net(sk), rm_type);
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}
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__set_bit(rm_list->ids[1], msk->pm.id_avail_bitmap);
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@ -2332,6 +2332,12 @@ void mptcp_close_ssk(struct sock *sk, struct sock *ssk,
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{
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if (sk->sk_state == TCP_ESTABLISHED)
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mptcp_event(MPTCP_EVENT_SUB_CLOSED, mptcp_sk(sk), ssk, GFP_KERNEL);
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/* subflow aborted before reaching the fully_established status
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* attempt the creation of the next subflow
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*/
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mptcp_pm_subflow_check_next(mptcp_sk(sk), ssk, subflow);
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__mptcp_close_ssk(sk, ssk, subflow, MPTCP_CF_PUSH);
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}
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@ -743,7 +743,9 @@ void mptcp_pm_fully_established(struct mptcp_sock *msk, const struct sock *ssk,
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bool mptcp_pm_allow_new_subflow(struct mptcp_sock *msk);
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void mptcp_pm_connection_closed(struct mptcp_sock *msk);
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void mptcp_pm_subflow_established(struct mptcp_sock *msk);
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void mptcp_pm_subflow_closed(struct mptcp_sock *msk, u8 id);
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bool mptcp_pm_nl_check_work_pending(struct mptcp_sock *msk);
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void mptcp_pm_subflow_check_next(struct mptcp_sock *msk, const struct sock *ssk,
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const struct mptcp_subflow_context *subflow);
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void mptcp_pm_add_addr_received(struct mptcp_sock *msk,
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const struct mptcp_addr_info *addr);
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void mptcp_pm_add_addr_echoed(struct mptcp_sock *msk,
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