1 // SPDX-License-Identifier: GPL-2.0
4 * Copyright (c) 2017 - 2019, Intel Corporation.
7 #define pr_fmt(fmt) "MPTCP: " fmt
9 #include <linux/kernel.h>
10 #include <linux/module.h>
11 #include <linux/netdevice.h>
12 #include <crypto/algapi.h>
13 #include <crypto/sha2.h>
15 #include <net/inet_common.h>
16 #include <net/inet_hashtables.h>
17 #include <net/protocol.h>
19 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
20 #include <net/ip6_route.h>
21 #include <net/transp_v6.h>
23 #include <net/mptcp.h>
24 #include <uapi/linux/mptcp.h>
28 #include <trace/events/mptcp.h>
29 #include <trace/events/sock.h>
31 static void mptcp_subflow_ops_undo_override(struct sock *ssk);
33 static void SUBFLOW_REQ_INC_STATS(struct request_sock *req,
34 enum linux_mptcp_mib_field field)
36 MPTCP_INC_STATS(sock_net(req_to_sk(req)), field);
39 static void subflow_req_destructor(struct request_sock *req)
41 struct mptcp_subflow_request_sock *subflow_req = mptcp_subflow_rsk(req);
43 pr_debug("subflow_req=%p", subflow_req);
46 sock_put((struct sock *)subflow_req->msk);
48 mptcp_token_destroy_request(req);
51 static void subflow_generate_hmac(u64 key1, u64 key2, u32 nonce1, u32 nonce2,
56 put_unaligned_be32(nonce1, &msg[0]);
57 put_unaligned_be32(nonce2, &msg[4]);
59 mptcp_crypto_hmac_sha(key1, key2, msg, 8, hmac);
62 static bool mptcp_can_accept_new_subflow(const struct mptcp_sock *msk)
64 return mptcp_is_fully_established((void *)msk) &&
65 ((mptcp_pm_is_userspace(msk) &&
66 mptcp_userspace_pm_active(msk)) ||
67 READ_ONCE(msk->pm.accept_subflow));
70 /* validate received token and create truncated hmac and nonce for SYN-ACK */
71 static void subflow_req_create_thmac(struct mptcp_subflow_request_sock *subflow_req)
73 struct mptcp_sock *msk = subflow_req->msk;
74 u8 hmac[SHA256_DIGEST_SIZE];
76 get_random_bytes(&subflow_req->local_nonce, sizeof(u32));
78 subflow_generate_hmac(msk->local_key, msk->remote_key,
79 subflow_req->local_nonce,
80 subflow_req->remote_nonce, hmac);
82 subflow_req->thmac = get_unaligned_be64(hmac);
85 static struct mptcp_sock *subflow_token_join_request(struct request_sock *req)
87 struct mptcp_subflow_request_sock *subflow_req = mptcp_subflow_rsk(req);
88 struct mptcp_sock *msk;
91 msk = mptcp_token_get_sock(sock_net(req_to_sk(req)), subflow_req->token);
93 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_JOINNOTOKEN);
97 local_id = mptcp_pm_get_local_id(msk, (struct sock_common *)req);
99 sock_put((struct sock *)msk);
102 subflow_req->local_id = local_id;
107 static void subflow_init_req(struct request_sock *req, const struct sock *sk_listener)
109 struct mptcp_subflow_request_sock *subflow_req = mptcp_subflow_rsk(req);
111 subflow_req->mp_capable = 0;
112 subflow_req->mp_join = 0;
113 subflow_req->csum_reqd = mptcp_is_checksum_enabled(sock_net(sk_listener));
114 subflow_req->allow_join_id0 = mptcp_allow_join_id0(sock_net(sk_listener));
115 subflow_req->msk = NULL;
116 mptcp_token_init_request(req);
119 static bool subflow_use_different_sport(struct mptcp_sock *msk, const struct sock *sk)
121 return inet_sk(sk)->inet_sport != inet_sk((struct sock *)msk)->inet_sport;
124 static void subflow_add_reset_reason(struct sk_buff *skb, u8 reason)
126 struct mptcp_ext *mpext = skb_ext_add(skb, SKB_EXT_MPTCP);
129 memset(mpext, 0, sizeof(*mpext));
130 mpext->reset_reason = reason;
134 /* Init mptcp request socket.
136 * Returns an error code if a JOIN has failed and a TCP reset
139 static int subflow_check_req(struct request_sock *req,
140 const struct sock *sk_listener,
143 struct mptcp_subflow_context *listener = mptcp_subflow_ctx(sk_listener);
144 struct mptcp_subflow_request_sock *subflow_req = mptcp_subflow_rsk(req);
145 struct mptcp_options_received mp_opt;
146 bool opt_mp_capable, opt_mp_join;
148 pr_debug("subflow_req=%p, listener=%p", subflow_req, listener);
150 #ifdef CONFIG_TCP_MD5SIG
151 /* no MPTCP if MD5SIG is enabled on this socket or we may run out of
154 if (rcu_access_pointer(tcp_sk(sk_listener)->md5sig_info))
158 mptcp_get_options(skb, &mp_opt);
160 opt_mp_capable = !!(mp_opt.suboptions & OPTIONS_MPTCP_MPC);
161 opt_mp_join = !!(mp_opt.suboptions & OPTIONS_MPTCP_MPJ);
162 if (opt_mp_capable) {
163 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_MPCAPABLEPASSIVE);
167 } else if (opt_mp_join) {
168 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_JOINSYNRX);
171 if (opt_mp_capable && listener->request_mptcp) {
172 int err, retries = MPTCP_TOKEN_MAX_RETRIES;
174 subflow_req->ssn_offset = TCP_SKB_CB(skb)->seq;
177 get_random_bytes(&subflow_req->local_key, sizeof(subflow_req->local_key));
178 } while (subflow_req->local_key == 0);
180 if (unlikely(req->syncookie)) {
181 mptcp_crypto_key_sha(subflow_req->local_key,
184 if (mptcp_token_exists(subflow_req->token)) {
187 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_TOKENFALLBACKINIT);
189 subflow_req->mp_capable = 1;
194 err = mptcp_token_new_request(req);
196 subflow_req->mp_capable = 1;
197 else if (retries-- > 0)
200 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_TOKENFALLBACKINIT);
202 } else if (opt_mp_join && listener->request_mptcp) {
203 subflow_req->ssn_offset = TCP_SKB_CB(skb)->seq;
204 subflow_req->mp_join = 1;
205 subflow_req->backup = mp_opt.backup;
206 subflow_req->remote_id = mp_opt.join_id;
207 subflow_req->token = mp_opt.token;
208 subflow_req->remote_nonce = mp_opt.nonce;
209 subflow_req->msk = subflow_token_join_request(req);
211 /* Can't fall back to TCP in this case. */
212 if (!subflow_req->msk) {
213 subflow_add_reset_reason(skb, MPTCP_RST_EMPTCP);
217 if (subflow_use_different_sport(subflow_req->msk, sk_listener)) {
218 pr_debug("syn inet_sport=%d %d",
219 ntohs(inet_sk(sk_listener)->inet_sport),
220 ntohs(inet_sk((struct sock *)subflow_req->msk)->inet_sport));
221 if (!mptcp_pm_sport_in_anno_list(subflow_req->msk, sk_listener)) {
222 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_MISMATCHPORTSYNRX);
225 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_JOINPORTSYNRX);
228 subflow_req_create_thmac(subflow_req);
230 if (unlikely(req->syncookie)) {
231 if (mptcp_can_accept_new_subflow(subflow_req->msk))
232 subflow_init_req_cookie_join_save(subflow_req, skb);
237 pr_debug("token=%u, remote_nonce=%u msk=%p", subflow_req->token,
238 subflow_req->remote_nonce, subflow_req->msk);
244 int mptcp_subflow_init_cookie_req(struct request_sock *req,
245 const struct sock *sk_listener,
248 struct mptcp_subflow_context *listener = mptcp_subflow_ctx(sk_listener);
249 struct mptcp_subflow_request_sock *subflow_req = mptcp_subflow_rsk(req);
250 struct mptcp_options_received mp_opt;
251 bool opt_mp_capable, opt_mp_join;
254 subflow_init_req(req, sk_listener);
255 mptcp_get_options(skb, &mp_opt);
257 opt_mp_capable = !!(mp_opt.suboptions & OPTIONS_MPTCP_MPC);
258 opt_mp_join = !!(mp_opt.suboptions & OPTIONS_MPTCP_MPJ);
259 if (opt_mp_capable && opt_mp_join)
262 if (opt_mp_capable && listener->request_mptcp) {
263 if (mp_opt.sndr_key == 0)
266 subflow_req->local_key = mp_opt.rcvr_key;
267 err = mptcp_token_new_request(req);
271 subflow_req->mp_capable = 1;
272 subflow_req->ssn_offset = TCP_SKB_CB(skb)->seq - 1;
273 } else if (opt_mp_join && listener->request_mptcp) {
274 if (!mptcp_token_join_cookie_init_state(subflow_req, skb))
277 subflow_req->mp_join = 1;
278 subflow_req->ssn_offset = TCP_SKB_CB(skb)->seq - 1;
283 EXPORT_SYMBOL_GPL(mptcp_subflow_init_cookie_req);
285 static struct dst_entry *subflow_v4_route_req(const struct sock *sk,
288 struct request_sock *req)
290 struct dst_entry *dst;
293 tcp_rsk(req)->is_mptcp = 1;
294 subflow_init_req(req, sk);
296 dst = tcp_request_sock_ipv4_ops.route_req(sk, skb, fl, req);
300 err = subflow_check_req(req, sk, skb);
306 tcp_request_sock_ops.send_reset(sk, skb);
310 static void subflow_prep_synack(const struct sock *sk, struct request_sock *req,
311 struct tcp_fastopen_cookie *foc,
312 enum tcp_synack_type synack_type)
314 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk);
315 struct inet_request_sock *ireq = inet_rsk(req);
317 /* clear tstamp_ok, as needed depending on cookie */
318 if (foc && foc->len > -1)
321 if (synack_type == TCP_SYNACK_FASTOPEN)
322 mptcp_fastopen_subflow_synack_set_params(subflow, req);
325 static int subflow_v4_send_synack(const struct sock *sk, struct dst_entry *dst,
327 struct request_sock *req,
328 struct tcp_fastopen_cookie *foc,
329 enum tcp_synack_type synack_type,
330 struct sk_buff *syn_skb)
332 subflow_prep_synack(sk, req, foc, synack_type);
334 return tcp_request_sock_ipv4_ops.send_synack(sk, dst, fl, req, foc,
335 synack_type, syn_skb);
338 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
339 static int subflow_v6_send_synack(const struct sock *sk, struct dst_entry *dst,
341 struct request_sock *req,
342 struct tcp_fastopen_cookie *foc,
343 enum tcp_synack_type synack_type,
344 struct sk_buff *syn_skb)
346 subflow_prep_synack(sk, req, foc, synack_type);
348 return tcp_request_sock_ipv6_ops.send_synack(sk, dst, fl, req, foc,
349 synack_type, syn_skb);
352 static struct dst_entry *subflow_v6_route_req(const struct sock *sk,
355 struct request_sock *req)
357 struct dst_entry *dst;
360 tcp_rsk(req)->is_mptcp = 1;
361 subflow_init_req(req, sk);
363 dst = tcp_request_sock_ipv6_ops.route_req(sk, skb, fl, req);
367 err = subflow_check_req(req, sk, skb);
373 tcp6_request_sock_ops.send_reset(sk, skb);
378 /* validate received truncated hmac and create hmac for third ACK */
379 static bool subflow_thmac_valid(struct mptcp_subflow_context *subflow)
381 u8 hmac[SHA256_DIGEST_SIZE];
384 subflow_generate_hmac(subflow->remote_key, subflow->local_key,
385 subflow->remote_nonce, subflow->local_nonce,
388 thmac = get_unaligned_be64(hmac);
389 pr_debug("subflow=%p, token=%u, thmac=%llu, subflow->thmac=%llu\n",
390 subflow, subflow->token, thmac, subflow->thmac);
392 return thmac == subflow->thmac;
395 void mptcp_subflow_reset(struct sock *ssk)
397 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
398 struct sock *sk = subflow->conn;
400 /* mptcp_mp_fail_no_response() can reach here on an already closed
403 if (ssk->sk_state == TCP_CLOSE)
406 /* must hold: tcp_done() could drop last reference on parent */
409 tcp_send_active_reset(ssk, GFP_ATOMIC);
411 if (!test_and_set_bit(MPTCP_WORK_CLOSE_SUBFLOW, &mptcp_sk(sk)->flags))
412 mptcp_schedule_work(sk);
417 static bool subflow_use_different_dport(struct mptcp_sock *msk, const struct sock *sk)
419 return inet_sk(sk)->inet_dport != inet_sk((struct sock *)msk)->inet_dport;
422 void __mptcp_set_connected(struct sock *sk)
424 if (sk->sk_state == TCP_SYN_SENT) {
425 inet_sk_state_store(sk, TCP_ESTABLISHED);
426 sk->sk_state_change(sk);
430 static void mptcp_set_connected(struct sock *sk)
433 if (!sock_owned_by_user(sk))
434 __mptcp_set_connected(sk);
436 __set_bit(MPTCP_CONNECTED, &mptcp_sk(sk)->cb_flags);
437 mptcp_data_unlock(sk);
440 static void subflow_set_remote_key(struct mptcp_sock *msk,
441 struct mptcp_subflow_context *subflow,
442 const struct mptcp_options_received *mp_opt)
444 /* active MPC subflow will reach here multiple times:
445 * at subflow_finish_connect() time and at 4th ack time
447 if (subflow->remote_key_valid)
450 subflow->remote_key_valid = 1;
451 subflow->remote_key = mp_opt->sndr_key;
452 mptcp_crypto_key_sha(subflow->remote_key, NULL, &subflow->iasn);
455 WRITE_ONCE(msk->remote_key, subflow->remote_key);
456 WRITE_ONCE(msk->ack_seq, subflow->iasn);
457 WRITE_ONCE(msk->can_ack, true);
458 atomic64_set(&msk->rcv_wnd_sent, subflow->iasn);
461 static void subflow_finish_connect(struct sock *sk, const struct sk_buff *skb)
463 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk);
464 struct mptcp_options_received mp_opt;
465 struct sock *parent = subflow->conn;
466 struct mptcp_sock *msk;
468 subflow->icsk_af_ops->sk_rx_dst_set(sk, skb);
470 /* be sure no special action on any packet other than syn-ack */
471 if (subflow->conn_finished)
474 msk = mptcp_sk(parent);
475 mptcp_propagate_sndbuf(parent, sk);
476 subflow->rel_write_seq = 1;
477 subflow->conn_finished = 1;
478 subflow->ssn_offset = TCP_SKB_CB(skb)->seq;
479 pr_debug("subflow=%p synack seq=%x", subflow, subflow->ssn_offset);
481 mptcp_get_options(skb, &mp_opt);
482 if (subflow->request_mptcp) {
483 if (!(mp_opt.suboptions & OPTIONS_MPTCP_MPC)) {
484 MPTCP_INC_STATS(sock_net(sk),
485 MPTCP_MIB_MPCAPABLEACTIVEFALLBACK);
486 mptcp_do_fallback(sk);
491 if (mp_opt.suboptions & OPTION_MPTCP_CSUMREQD)
492 WRITE_ONCE(msk->csum_enabled, true);
493 if (mp_opt.deny_join_id0)
494 WRITE_ONCE(msk->pm.remote_deny_join_id0, true);
495 subflow->mp_capable = 1;
496 subflow_set_remote_key(msk, subflow, &mp_opt);
497 MPTCP_INC_STATS(sock_net(sk), MPTCP_MIB_MPCAPABLEACTIVEACK);
498 mptcp_finish_connect(sk);
499 mptcp_set_connected(parent);
500 } else if (subflow->request_join) {
501 u8 hmac[SHA256_DIGEST_SIZE];
503 if (!(mp_opt.suboptions & OPTIONS_MPTCP_MPJ)) {
504 subflow->reset_reason = MPTCP_RST_EMPTCP;
508 subflow->backup = mp_opt.backup;
509 subflow->thmac = mp_opt.thmac;
510 subflow->remote_nonce = mp_opt.nonce;
511 subflow->remote_id = mp_opt.join_id;
512 pr_debug("subflow=%p, thmac=%llu, remote_nonce=%u backup=%d",
513 subflow, subflow->thmac, subflow->remote_nonce,
516 if (!subflow_thmac_valid(subflow)) {
517 MPTCP_INC_STATS(sock_net(sk), MPTCP_MIB_JOINACKMAC);
518 subflow->reset_reason = MPTCP_RST_EMPTCP;
522 if (!mptcp_finish_join(sk))
525 subflow_generate_hmac(subflow->local_key, subflow->remote_key,
526 subflow->local_nonce,
527 subflow->remote_nonce,
529 memcpy(subflow->hmac, hmac, MPTCPOPT_HMAC_LEN);
531 subflow->mp_join = 1;
532 MPTCP_INC_STATS(sock_net(sk), MPTCP_MIB_JOINSYNACKRX);
534 if (subflow_use_different_dport(msk, sk)) {
535 pr_debug("synack inet_dport=%d %d",
536 ntohs(inet_sk(sk)->inet_dport),
537 ntohs(inet_sk(parent)->inet_dport));
538 MPTCP_INC_STATS(sock_net(sk), MPTCP_MIB_JOINPORTSYNACKRX);
540 } else if (mptcp_check_fallback(sk)) {
542 mptcp_rcv_space_init(msk, sk);
543 mptcp_set_connected(parent);
548 subflow->reset_transient = 0;
549 mptcp_subflow_reset(sk);
552 static void subflow_set_local_id(struct mptcp_subflow_context *subflow, int local_id)
554 subflow->local_id = local_id;
555 subflow->local_id_valid = 1;
558 static int subflow_chk_local_id(struct sock *sk)
560 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk);
561 struct mptcp_sock *msk = mptcp_sk(subflow->conn);
564 if (likely(subflow->local_id_valid))
567 err = mptcp_pm_get_local_id(msk, (struct sock_common *)sk);
571 subflow_set_local_id(subflow, err);
575 static int subflow_rebuild_header(struct sock *sk)
577 int err = subflow_chk_local_id(sk);
579 if (unlikely(err < 0))
582 return inet_sk_rebuild_header(sk);
585 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
586 static int subflow_v6_rebuild_header(struct sock *sk)
588 int err = subflow_chk_local_id(sk);
590 if (unlikely(err < 0))
593 return inet6_sk_rebuild_header(sk);
597 static struct request_sock_ops mptcp_subflow_v4_request_sock_ops __ro_after_init;
598 static struct tcp_request_sock_ops subflow_request_sock_ipv4_ops __ro_after_init;
600 static int subflow_v4_conn_request(struct sock *sk, struct sk_buff *skb)
602 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk);
604 pr_debug("subflow=%p", subflow);
606 /* Never answer to SYNs sent to broadcast or multicast */
607 if (skb_rtable(skb)->rt_flags & (RTCF_BROADCAST | RTCF_MULTICAST))
610 return tcp_conn_request(&mptcp_subflow_v4_request_sock_ops,
611 &subflow_request_sock_ipv4_ops,
618 static void subflow_v4_req_destructor(struct request_sock *req)
620 subflow_req_destructor(req);
621 tcp_request_sock_ops.destructor(req);
624 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
625 static struct request_sock_ops mptcp_subflow_v6_request_sock_ops __ro_after_init;
626 static struct tcp_request_sock_ops subflow_request_sock_ipv6_ops __ro_after_init;
627 static struct inet_connection_sock_af_ops subflow_v6_specific __ro_after_init;
628 static struct inet_connection_sock_af_ops subflow_v6m_specific __ro_after_init;
629 static struct proto tcpv6_prot_override __ro_after_init;
631 static int subflow_v6_conn_request(struct sock *sk, struct sk_buff *skb)
633 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk);
635 pr_debug("subflow=%p", subflow);
637 if (skb->protocol == htons(ETH_P_IP))
638 return subflow_v4_conn_request(sk, skb);
640 if (!ipv6_unicast_destination(skb))
643 if (ipv6_addr_v4mapped(&ipv6_hdr(skb)->saddr)) {
644 __IP6_INC_STATS(sock_net(sk), NULL, IPSTATS_MIB_INHDRERRORS);
648 return tcp_conn_request(&mptcp_subflow_v6_request_sock_ops,
649 &subflow_request_sock_ipv6_ops, sk, skb);
653 return 0; /* don't send reset */
656 static void subflow_v6_req_destructor(struct request_sock *req)
658 subflow_req_destructor(req);
659 tcp6_request_sock_ops.destructor(req);
663 struct request_sock *mptcp_subflow_reqsk_alloc(const struct request_sock_ops *ops,
664 struct sock *sk_listener,
665 bool attach_listener)
667 if (ops->family == AF_INET)
668 ops = &mptcp_subflow_v4_request_sock_ops;
669 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
670 else if (ops->family == AF_INET6)
671 ops = &mptcp_subflow_v6_request_sock_ops;
674 return inet_reqsk_alloc(ops, sk_listener, attach_listener);
676 EXPORT_SYMBOL(mptcp_subflow_reqsk_alloc);
678 /* validate hmac received in third ACK */
679 static bool subflow_hmac_valid(const struct request_sock *req,
680 const struct mptcp_options_received *mp_opt)
682 const struct mptcp_subflow_request_sock *subflow_req;
683 u8 hmac[SHA256_DIGEST_SIZE];
684 struct mptcp_sock *msk;
686 subflow_req = mptcp_subflow_rsk(req);
687 msk = subflow_req->msk;
691 subflow_generate_hmac(msk->remote_key, msk->local_key,
692 subflow_req->remote_nonce,
693 subflow_req->local_nonce, hmac);
695 return !crypto_memneq(hmac, mp_opt->hmac, MPTCPOPT_HMAC_LEN);
698 static void subflow_ulp_fallback(struct sock *sk,
699 struct mptcp_subflow_context *old_ctx)
701 struct inet_connection_sock *icsk = inet_csk(sk);
703 mptcp_subflow_tcp_fallback(sk, old_ctx);
704 icsk->icsk_ulp_ops = NULL;
705 rcu_assign_pointer(icsk->icsk_ulp_data, NULL);
706 tcp_sk(sk)->is_mptcp = 0;
708 mptcp_subflow_ops_undo_override(sk);
711 void mptcp_subflow_drop_ctx(struct sock *ssk)
713 struct mptcp_subflow_context *ctx = mptcp_subflow_ctx(ssk);
718 list_del(&mptcp_subflow_ctx(ssk)->node);
719 if (inet_csk(ssk)->icsk_ulp_ops) {
720 subflow_ulp_fallback(ssk, ctx);
728 void mptcp_subflow_fully_established(struct mptcp_subflow_context *subflow,
729 const struct mptcp_options_received *mp_opt)
731 struct mptcp_sock *msk = mptcp_sk(subflow->conn);
733 subflow_set_remote_key(msk, subflow, mp_opt);
734 subflow->fully_established = 1;
735 WRITE_ONCE(msk->fully_established, true);
737 if (subflow->is_mptfo)
738 mptcp_fastopen_gen_msk_ackseq(msk, subflow, mp_opt);
741 static struct sock *subflow_syn_recv_sock(const struct sock *sk,
743 struct request_sock *req,
744 struct dst_entry *dst,
745 struct request_sock *req_unhash,
748 struct mptcp_subflow_context *listener = mptcp_subflow_ctx(sk);
749 struct mptcp_subflow_request_sock *subflow_req;
750 struct mptcp_options_received mp_opt;
751 bool fallback, fallback_is_fatal;
752 struct mptcp_sock *owner;
755 pr_debug("listener=%p, req=%p, conn=%p", listener, req, listener->conn);
757 /* After child creation we must look for MPC even when options
760 mp_opt.suboptions = 0;
762 /* hopefully temporary handling for MP_JOIN+syncookie */
763 subflow_req = mptcp_subflow_rsk(req);
764 fallback_is_fatal = tcp_rsk(req)->is_mptcp && subflow_req->mp_join;
765 fallback = !tcp_rsk(req)->is_mptcp;
769 /* if the sk is MP_CAPABLE, we try to fetch the client key */
770 if (subflow_req->mp_capable) {
771 /* we can receive and accept an in-window, out-of-order pkt,
772 * which may not carry the MP_CAPABLE opt even on mptcp enabled
773 * paths: always try to extract the peer key, and fallback
774 * for packets missing it.
775 * Even OoO DSS packets coming legitly after dropped or
776 * reordered MPC will cause fallback, but we don't have other
779 mptcp_get_options(skb, &mp_opt);
780 if (!(mp_opt.suboptions & OPTIONS_MPTCP_MPC))
783 } else if (subflow_req->mp_join) {
784 mptcp_get_options(skb, &mp_opt);
785 if (!(mp_opt.suboptions & OPTIONS_MPTCP_MPJ) ||
786 !subflow_hmac_valid(req, &mp_opt) ||
787 !mptcp_can_accept_new_subflow(subflow_req->msk)) {
788 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_JOINACKMAC);
794 child = listener->icsk_af_ops->syn_recv_sock(sk, skb, req, dst,
795 req_unhash, own_req);
797 if (child && *own_req) {
798 struct mptcp_subflow_context *ctx = mptcp_subflow_ctx(child);
800 tcp_rsk(req)->drop_req = false;
802 /* we need to fallback on ctx allocation failure and on pre-reqs
803 * checking above. In the latter scenario we additionally need
804 * to reset the context to non MPTCP status.
806 if (!ctx || fallback) {
807 if (fallback_is_fatal) {
808 subflow_add_reset_reason(skb, MPTCP_RST_EMPTCP);
814 /* ssk inherits options of listener sk */
815 ctx->setsockopt_seq = listener->setsockopt_seq;
817 if (ctx->mp_capable) {
818 ctx->conn = mptcp_sk_clone_init(listener->conn, &mp_opt, child, req);
822 owner = mptcp_sk(ctx->conn);
823 mptcp_pm_new_connection(owner, child, 1);
825 /* with OoO packets we can reach here without ingress
828 if (mp_opt.suboptions & OPTION_MPTCP_MPC_ACK) {
829 mptcp_subflow_fully_established(ctx, &mp_opt);
830 mptcp_pm_fully_established(owner, child);
831 ctx->pm_notified = 1;
833 } else if (ctx->mp_join) {
834 owner = subflow_req->msk;
836 subflow_add_reset_reason(skb, MPTCP_RST_EPROHIBIT);
840 /* move the msk reference ownership to the subflow */
841 subflow_req->msk = NULL;
842 ctx->conn = (struct sock *)owner;
844 if (subflow_use_different_sport(owner, sk)) {
845 pr_debug("ack inet_sport=%d %d",
846 ntohs(inet_sk(sk)->inet_sport),
847 ntohs(inet_sk((struct sock *)owner)->inet_sport));
848 if (!mptcp_pm_sport_in_anno_list(owner, sk)) {
849 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_MISMATCHPORTACKRX);
852 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_JOINPORTACKRX);
855 if (!mptcp_finish_join(child))
858 SUBFLOW_REQ_INC_STATS(req, MPTCP_MIB_JOINACKRX);
859 tcp_rsk(req)->drop_req = true;
863 /* check for expected invariant - should never trigger, just help
864 * catching eariler subtle bugs
866 WARN_ON_ONCE(child && *own_req && tcp_sk(child)->is_mptcp &&
867 (!mptcp_subflow_ctx(child) ||
868 !mptcp_subflow_ctx(child)->conn));
872 mptcp_subflow_drop_ctx(child);
873 tcp_rsk(req)->drop_req = true;
874 inet_csk_prepare_for_destroy_sock(child);
876 req->rsk_ops->send_reset(sk, skb);
878 /* The last child reference will be released by the caller */
882 mptcp_subflow_drop_ctx(child);
886 static struct inet_connection_sock_af_ops subflow_specific __ro_after_init;
887 static struct proto tcp_prot_override __ro_after_init;
889 enum mapping_status {
898 static void dbg_bad_map(struct mptcp_subflow_context *subflow, u32 ssn)
900 pr_debug("Bad mapping: ssn=%d map_seq=%d map_data_len=%d",
901 ssn, subflow->map_subflow_seq, subflow->map_data_len);
904 static bool skb_is_fully_mapped(struct sock *ssk, struct sk_buff *skb)
906 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
907 unsigned int skb_consumed;
909 skb_consumed = tcp_sk(ssk)->copied_seq - TCP_SKB_CB(skb)->seq;
910 if (WARN_ON_ONCE(skb_consumed >= skb->len))
913 return skb->len - skb_consumed <= subflow->map_data_len -
914 mptcp_subflow_get_map_offset(subflow);
917 static bool validate_mapping(struct sock *ssk, struct sk_buff *skb)
919 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
920 u32 ssn = tcp_sk(ssk)->copied_seq - subflow->ssn_offset;
922 if (unlikely(before(ssn, subflow->map_subflow_seq))) {
923 /* Mapping covers data later in the subflow stream,
924 * currently unsupported.
926 dbg_bad_map(subflow, ssn);
929 if (unlikely(!before(ssn, subflow->map_subflow_seq +
930 subflow->map_data_len))) {
931 /* Mapping does covers past subflow data, invalid */
932 dbg_bad_map(subflow, ssn);
938 static enum mapping_status validate_data_csum(struct sock *ssk, struct sk_buff *skb,
941 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
942 u32 offset, seq, delta;
949 /* mapping already validated on previous traversal */
950 if (subflow->map_csum_len == subflow->map_data_len)
953 /* traverse the receive queue, ensuring it contains a full
954 * DSS mapping and accumulating the related csum.
955 * Preserve the accoumlate csum across multiple calls, to compute
958 delta = subflow->map_data_len - subflow->map_csum_len;
960 seq = tcp_sk(ssk)->copied_seq + subflow->map_csum_len;
961 offset = seq - TCP_SKB_CB(skb)->seq;
963 /* if the current skb has not been accounted yet, csum its contents
964 * up to the amount covered by the current DSS
966 if (offset < skb->len) {
969 len = min(skb->len - offset, delta);
970 csum = skb_checksum(skb, offset, len, 0);
971 subflow->map_data_csum = csum_block_add(subflow->map_data_csum, csum,
972 subflow->map_csum_len);
975 subflow->map_csum_len += len;
980 if (skb_queue_is_last(&ssk->sk_receive_queue, skb)) {
981 /* if this subflow is closed, the partial mapping
982 * will be never completed; flush the pending skbs, so
983 * that subflow_sched_work_if_closed() can kick in
985 if (unlikely(ssk->sk_state == TCP_CLOSE))
986 while ((skb = skb_peek(&ssk->sk_receive_queue)))
987 sk_eat_skb(ssk, skb);
989 /* not enough data to validate the csum */
990 return MAPPING_EMPTY;
993 /* the DSS mapping for next skbs will be validated later,
994 * when a get_mapping_status call will process such skb
999 /* note that 'map_data_len' accounts only for the carried data, does
1000 * not include the eventual seq increment due to the data fin,
1001 * while the pseudo header requires the original DSS data len,
1004 csum = __mptcp_make_csum(subflow->map_seq,
1005 subflow->map_subflow_seq,
1006 subflow->map_data_len + subflow->map_data_fin,
1007 subflow->map_data_csum);
1008 if (unlikely(csum)) {
1009 MPTCP_INC_STATS(sock_net(ssk), MPTCP_MIB_DATACSUMERR);
1010 return MAPPING_BAD_CSUM;
1013 subflow->valid_csum_seen = 1;
1017 static enum mapping_status get_mapping_status(struct sock *ssk,
1018 struct mptcp_sock *msk)
1020 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
1021 bool csum_reqd = READ_ONCE(msk->csum_enabled);
1022 struct mptcp_ext *mpext;
1023 struct sk_buff *skb;
1027 skb = skb_peek(&ssk->sk_receive_queue);
1029 return MAPPING_EMPTY;
1031 if (mptcp_check_fallback(ssk))
1032 return MAPPING_DUMMY;
1034 mpext = mptcp_get_ext(skb);
1035 if (!mpext || !mpext->use_map) {
1036 if (!subflow->map_valid && !skb->len) {
1037 /* the TCP stack deliver 0 len FIN pkt to the receive
1038 * queue, that is the only 0len pkts ever expected here,
1039 * and we can admit no mapping only for 0 len pkts
1041 if (!(TCP_SKB_CB(skb)->tcp_flags & TCPHDR_FIN))
1042 WARN_ONCE(1, "0len seq %d:%d flags %x",
1043 TCP_SKB_CB(skb)->seq,
1044 TCP_SKB_CB(skb)->end_seq,
1045 TCP_SKB_CB(skb)->tcp_flags);
1046 sk_eat_skb(ssk, skb);
1047 return MAPPING_EMPTY;
1050 if (!subflow->map_valid)
1051 return MAPPING_INVALID;
1056 trace_get_mapping_status(mpext);
1058 data_len = mpext->data_len;
1059 if (data_len == 0) {
1060 pr_debug("infinite mapping received");
1061 MPTCP_INC_STATS(sock_net(ssk), MPTCP_MIB_INFINITEMAPRX);
1062 subflow->map_data_len = 0;
1063 return MAPPING_INVALID;
1066 if (mpext->data_fin == 1) {
1067 if (data_len == 1) {
1068 bool updated = mptcp_update_rcv_data_fin(msk, mpext->data_seq,
1070 pr_debug("DATA_FIN with no payload seq=%llu", mpext->data_seq);
1071 if (subflow->map_valid) {
1072 /* A DATA_FIN might arrive in a DSS
1073 * option before the previous mapping
1074 * has been fully consumed. Continue
1075 * handling the existing mapping.
1077 skb_ext_del(skb, SKB_EXT_MPTCP);
1081 mptcp_schedule_work((struct sock *)msk);
1083 return MAPPING_DATA_FIN;
1086 u64 data_fin_seq = mpext->data_seq + data_len - 1;
1088 /* If mpext->data_seq is a 32-bit value, data_fin_seq
1089 * must also be limited to 32 bits.
1092 data_fin_seq &= GENMASK_ULL(31, 0);
1094 mptcp_update_rcv_data_fin(msk, data_fin_seq, mpext->dsn64);
1095 pr_debug("DATA_FIN with mapping seq=%llu dsn64=%d",
1096 data_fin_seq, mpext->dsn64);
1099 /* Adjust for DATA_FIN using 1 byte of sequence space */
1103 map_seq = mptcp_expand_seq(READ_ONCE(msk->ack_seq), mpext->data_seq, mpext->dsn64);
1104 WRITE_ONCE(mptcp_sk(subflow->conn)->use_64bit_ack, !!mpext->dsn64);
1106 if (subflow->map_valid) {
1107 /* Allow replacing only with an identical map */
1108 if (subflow->map_seq == map_seq &&
1109 subflow->map_subflow_seq == mpext->subflow_seq &&
1110 subflow->map_data_len == data_len &&
1111 subflow->map_csum_reqd == mpext->csum_reqd) {
1112 skb_ext_del(skb, SKB_EXT_MPTCP);
1116 /* If this skb data are fully covered by the current mapping,
1117 * the new map would need caching, which is not supported
1119 if (skb_is_fully_mapped(ssk, skb)) {
1120 MPTCP_INC_STATS(sock_net(ssk), MPTCP_MIB_DSSNOMATCH);
1121 return MAPPING_INVALID;
1124 /* will validate the next map after consuming the current one */
1128 subflow->map_seq = map_seq;
1129 subflow->map_subflow_seq = mpext->subflow_seq;
1130 subflow->map_data_len = data_len;
1131 subflow->map_valid = 1;
1132 subflow->map_data_fin = mpext->data_fin;
1133 subflow->mpc_map = mpext->mpc_map;
1134 subflow->map_csum_reqd = mpext->csum_reqd;
1135 subflow->map_csum_len = 0;
1136 subflow->map_data_csum = csum_unfold(mpext->csum);
1138 /* Cfr RFC 8684 Section 3.3.0 */
1139 if (unlikely(subflow->map_csum_reqd != csum_reqd))
1140 return MAPPING_INVALID;
1142 pr_debug("new map seq=%llu subflow_seq=%u data_len=%u csum=%d:%u",
1143 subflow->map_seq, subflow->map_subflow_seq,
1144 subflow->map_data_len, subflow->map_csum_reqd,
1145 subflow->map_data_csum);
1148 /* we revalidate valid mapping on new skb, because we must ensure
1149 * the current skb is completely covered by the available mapping
1151 if (!validate_mapping(ssk, skb)) {
1152 MPTCP_INC_STATS(sock_net(ssk), MPTCP_MIB_DSSTCPMISMATCH);
1153 return MAPPING_INVALID;
1156 skb_ext_del(skb, SKB_EXT_MPTCP);
1159 return validate_data_csum(ssk, skb, csum_reqd);
1162 static void mptcp_subflow_discard_data(struct sock *ssk, struct sk_buff *skb,
1165 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
1166 bool fin = TCP_SKB_CB(skb)->tcp_flags & TCPHDR_FIN;
1169 incr = limit >= skb->len ? skb->len + fin : limit;
1171 pr_debug("discarding=%d len=%d seq=%d", incr, skb->len,
1172 subflow->map_subflow_seq);
1173 MPTCP_INC_STATS(sock_net(ssk), MPTCP_MIB_DUPDATA);
1174 tcp_sk(ssk)->copied_seq += incr;
1175 if (!before(tcp_sk(ssk)->copied_seq, TCP_SKB_CB(skb)->end_seq))
1176 sk_eat_skb(ssk, skb);
1177 if (mptcp_subflow_get_map_offset(subflow) >= subflow->map_data_len)
1178 subflow->map_valid = 0;
1181 /* sched mptcp worker to remove the subflow if no more data is pending */
1182 static void subflow_sched_work_if_closed(struct mptcp_sock *msk, struct sock *ssk)
1184 if (likely(ssk->sk_state != TCP_CLOSE))
1187 if (skb_queue_empty(&ssk->sk_receive_queue) &&
1188 !test_and_set_bit(MPTCP_WORK_CLOSE_SUBFLOW, &msk->flags))
1189 mptcp_schedule_work((struct sock *)msk);
1192 static bool subflow_can_fallback(struct mptcp_subflow_context *subflow)
1194 struct mptcp_sock *msk = mptcp_sk(subflow->conn);
1196 if (subflow->mp_join)
1198 else if (READ_ONCE(msk->csum_enabled))
1199 return !subflow->valid_csum_seen;
1201 return !subflow->fully_established;
1204 static void mptcp_subflow_fail(struct mptcp_sock *msk, struct sock *ssk)
1206 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
1207 unsigned long fail_tout;
1209 /* greceful failure can happen only on the MPC subflow */
1210 if (WARN_ON_ONCE(ssk != READ_ONCE(msk->first)))
1213 /* since the close timeout take precedence on the fail one,
1214 * no need to start the latter when the first is already set
1216 if (sock_flag((struct sock *)msk, SOCK_DEAD))
1219 /* we don't need extreme accuracy here, use a zero fail_tout as special
1220 * value meaning no fail timeout at all;
1222 fail_tout = jiffies + TCP_RTO_MAX;
1225 WRITE_ONCE(subflow->fail_tout, fail_tout);
1228 mptcp_reset_timeout(msk, subflow->fail_tout);
1231 static bool subflow_check_data_avail(struct sock *ssk)
1233 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
1234 enum mapping_status status;
1235 struct mptcp_sock *msk;
1236 struct sk_buff *skb;
1238 if (!skb_peek(&ssk->sk_receive_queue))
1239 WRITE_ONCE(subflow->data_avail, MPTCP_SUBFLOW_NODATA);
1240 if (subflow->data_avail)
1243 msk = mptcp_sk(subflow->conn);
1248 status = get_mapping_status(ssk, msk);
1249 trace_subflow_check_data_avail(status, skb_peek(&ssk->sk_receive_queue));
1250 if (unlikely(status == MAPPING_INVALID || status == MAPPING_DUMMY ||
1251 status == MAPPING_BAD_CSUM))
1254 if (status != MAPPING_OK)
1257 skb = skb_peek(&ssk->sk_receive_queue);
1258 if (WARN_ON_ONCE(!skb))
1261 if (unlikely(!READ_ONCE(msk->can_ack)))
1264 old_ack = READ_ONCE(msk->ack_seq);
1265 ack_seq = mptcp_subflow_get_mapped_dsn(subflow);
1266 pr_debug("msk ack_seq=%llx subflow ack_seq=%llx", old_ack,
1268 if (unlikely(before64(ack_seq, old_ack))) {
1269 mptcp_subflow_discard_data(ssk, skb, old_ack - ack_seq);
1273 WRITE_ONCE(subflow->data_avail, MPTCP_SUBFLOW_DATA_AVAIL);
1279 subflow_sched_work_if_closed(msk, ssk);
1283 if (!__mptcp_check_fallback(msk)) {
1284 /* RFC 8684 section 3.7. */
1285 if (status == MAPPING_BAD_CSUM &&
1286 (subflow->mp_join || subflow->valid_csum_seen)) {
1287 subflow->send_mp_fail = 1;
1289 if (!READ_ONCE(msk->allow_infinite_fallback)) {
1290 subflow->reset_transient = 0;
1291 subflow->reset_reason = MPTCP_RST_EMIDDLEBOX;
1294 mptcp_subflow_fail(msk, ssk);
1295 WRITE_ONCE(subflow->data_avail, MPTCP_SUBFLOW_DATA_AVAIL);
1299 if (!subflow_can_fallback(subflow) && subflow->map_data_len) {
1300 /* fatal protocol error, close the socket.
1301 * subflow_error_report() will introduce the appropriate barriers
1303 subflow->reset_transient = 0;
1304 subflow->reset_reason = MPTCP_RST_EMPTCP;
1307 WRITE_ONCE(ssk->sk_err, EBADMSG);
1308 tcp_set_state(ssk, TCP_CLOSE);
1309 while ((skb = skb_peek(&ssk->sk_receive_queue)))
1310 sk_eat_skb(ssk, skb);
1311 tcp_send_active_reset(ssk, GFP_ATOMIC);
1312 WRITE_ONCE(subflow->data_avail, MPTCP_SUBFLOW_NODATA);
1316 mptcp_do_fallback(ssk);
1319 skb = skb_peek(&ssk->sk_receive_queue);
1320 subflow->map_valid = 1;
1321 subflow->map_seq = READ_ONCE(msk->ack_seq);
1322 subflow->map_data_len = skb->len;
1323 subflow->map_subflow_seq = tcp_sk(ssk)->copied_seq - subflow->ssn_offset;
1324 WRITE_ONCE(subflow->data_avail, MPTCP_SUBFLOW_DATA_AVAIL);
1328 bool mptcp_subflow_data_available(struct sock *sk)
1330 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk);
1332 /* check if current mapping is still valid */
1333 if (subflow->map_valid &&
1334 mptcp_subflow_get_map_offset(subflow) >= subflow->map_data_len) {
1335 subflow->map_valid = 0;
1336 WRITE_ONCE(subflow->data_avail, MPTCP_SUBFLOW_NODATA);
1338 pr_debug("Done with mapping: seq=%u data_len=%u",
1339 subflow->map_subflow_seq,
1340 subflow->map_data_len);
1343 return subflow_check_data_avail(sk);
1346 /* If ssk has an mptcp parent socket, use the mptcp rcvbuf occupancy,
1349 * In mptcp, rwin is about the mptcp-level connection data.
1351 * Data that is still on the ssk rx queue can thus be ignored,
1352 * as far as mptcp peer is concerned that data is still inflight.
1353 * DSS ACK is updated when skb is moved to the mptcp rx queue.
1355 void mptcp_space(const struct sock *ssk, int *space, int *full_space)
1357 const struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
1358 const struct sock *sk = subflow->conn;
1360 *space = __mptcp_space(sk);
1361 *full_space = tcp_full_space(sk);
1364 void __mptcp_error_report(struct sock *sk)
1366 struct mptcp_subflow_context *subflow;
1367 struct mptcp_sock *msk = mptcp_sk(sk);
1369 mptcp_for_each_subflow(msk, subflow) {
1370 struct sock *ssk = mptcp_subflow_tcp_sock(subflow);
1371 int err = sock_error(ssk);
1377 /* only propagate errors on fallen-back sockets or
1380 if (sk->sk_state != TCP_SYN_SENT && !__mptcp_check_fallback(msk))
1383 /* We need to propagate only transition to CLOSE state.
1384 * Orphaned socket will see such state change via
1385 * subflow_sched_work_if_closed() and that path will properly
1386 * destroy the msk as needed.
1388 ssk_state = inet_sk_state_load(ssk);
1389 if (ssk_state == TCP_CLOSE && !sock_flag(sk, SOCK_DEAD))
1390 inet_sk_state_store(sk, ssk_state);
1391 WRITE_ONCE(sk->sk_err, -err);
1393 /* This barrier is coupled with smp_rmb() in mptcp_poll() */
1395 sk_error_report(sk);
1400 static void subflow_error_report(struct sock *ssk)
1402 struct sock *sk = mptcp_subflow_ctx(ssk)->conn;
1404 /* bail early if this is a no-op, so that we avoid introducing a
1405 * problematic lockdep dependency between TCP accept queue lock
1406 * and msk socket spinlock
1411 mptcp_data_lock(sk);
1412 if (!sock_owned_by_user(sk))
1413 __mptcp_error_report(sk);
1415 __set_bit(MPTCP_ERROR_REPORT, &mptcp_sk(sk)->cb_flags);
1416 mptcp_data_unlock(sk);
1419 static void subflow_data_ready(struct sock *sk)
1421 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk);
1422 u16 state = 1 << inet_sk_state_load(sk);
1423 struct sock *parent = subflow->conn;
1424 struct mptcp_sock *msk;
1426 trace_sk_data_ready(sk);
1428 msk = mptcp_sk(parent);
1429 if (state & TCPF_LISTEN) {
1430 /* MPJ subflow are removed from accept queue before reaching here,
1431 * avoid stray wakeups
1433 if (reqsk_queue_empty(&inet_csk(sk)->icsk_accept_queue))
1436 parent->sk_data_ready(parent);
1440 WARN_ON_ONCE(!__mptcp_check_fallback(msk) && !subflow->mp_capable &&
1441 !subflow->mp_join && !(state & TCPF_CLOSE));
1443 if (mptcp_subflow_data_available(sk))
1444 mptcp_data_ready(parent, sk);
1445 else if (unlikely(sk->sk_err))
1446 subflow_error_report(sk);
1449 static void subflow_write_space(struct sock *ssk)
1451 struct sock *sk = mptcp_subflow_ctx(ssk)->conn;
1453 mptcp_propagate_sndbuf(sk, ssk);
1454 mptcp_write_space(sk);
1457 static const struct inet_connection_sock_af_ops *
1458 subflow_default_af_ops(struct sock *sk)
1460 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
1461 if (sk->sk_family == AF_INET6)
1462 return &subflow_v6_specific;
1464 return &subflow_specific;
1467 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
1468 void mptcpv6_handle_mapped(struct sock *sk, bool mapped)
1470 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk);
1471 struct inet_connection_sock *icsk = inet_csk(sk);
1472 const struct inet_connection_sock_af_ops *target;
1474 target = mapped ? &subflow_v6m_specific : subflow_default_af_ops(sk);
1476 pr_debug("subflow=%p family=%d ops=%p target=%p mapped=%d",
1477 subflow, sk->sk_family, icsk->icsk_af_ops, target, mapped);
1479 if (likely(icsk->icsk_af_ops == target))
1482 subflow->icsk_af_ops = icsk->icsk_af_ops;
1483 icsk->icsk_af_ops = target;
1487 void mptcp_info2sockaddr(const struct mptcp_addr_info *info,
1488 struct sockaddr_storage *addr,
1489 unsigned short family)
1491 memset(addr, 0, sizeof(*addr));
1492 addr->ss_family = family;
1493 if (addr->ss_family == AF_INET) {
1494 struct sockaddr_in *in_addr = (struct sockaddr_in *)addr;
1496 if (info->family == AF_INET)
1497 in_addr->sin_addr = info->addr;
1498 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
1499 else if (ipv6_addr_v4mapped(&info->addr6))
1500 in_addr->sin_addr.s_addr = info->addr6.s6_addr32[3];
1502 in_addr->sin_port = info->port;
1504 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
1505 else if (addr->ss_family == AF_INET6) {
1506 struct sockaddr_in6 *in6_addr = (struct sockaddr_in6 *)addr;
1508 if (info->family == AF_INET)
1509 ipv6_addr_set_v4mapped(info->addr.s_addr,
1510 &in6_addr->sin6_addr);
1512 in6_addr->sin6_addr = info->addr6;
1513 in6_addr->sin6_port = info->port;
1518 int __mptcp_subflow_connect(struct sock *sk, const struct mptcp_addr_info *loc,
1519 const struct mptcp_addr_info *remote)
1521 struct mptcp_sock *msk = mptcp_sk(sk);
1522 struct mptcp_subflow_context *subflow;
1523 struct sockaddr_storage addr;
1524 int remote_id = remote->id;
1525 int local_id = loc->id;
1526 int err = -ENOTCONN;
1534 if (!mptcp_is_fully_established(sk))
1537 err = mptcp_subflow_create_socket(sk, loc->family, &sf);
1542 subflow = mptcp_subflow_ctx(ssk);
1544 get_random_bytes(&subflow->local_nonce, sizeof(u32));
1545 } while (!subflow->local_nonce);
1548 subflow_set_local_id(subflow, local_id);
1550 mptcp_pm_get_flags_and_ifindex_by_id(msk, local_id,
1552 subflow->remote_key_valid = 1;
1553 subflow->remote_key = msk->remote_key;
1554 subflow->local_key = msk->local_key;
1555 subflow->token = msk->token;
1556 mptcp_info2sockaddr(loc, &addr, ssk->sk_family);
1558 addrlen = sizeof(struct sockaddr_in);
1559 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
1560 if (addr.ss_family == AF_INET6)
1561 addrlen = sizeof(struct sockaddr_in6);
1563 mptcp_sockopt_sync(msk, ssk);
1565 ssk->sk_bound_dev_if = ifindex;
1566 err = kernel_bind(sf, (struct sockaddr *)&addr, addrlen);
1570 mptcp_crypto_key_sha(subflow->remote_key, &remote_token, NULL);
1571 pr_debug("msk=%p remote_token=%u local_id=%d remote_id=%d", msk,
1572 remote_token, local_id, remote_id);
1573 subflow->remote_token = remote_token;
1574 subflow->remote_id = remote_id;
1575 subflow->request_join = 1;
1576 subflow->request_bkup = !!(flags & MPTCP_PM_ADDR_FLAG_BACKUP);
1577 mptcp_info2sockaddr(remote, &addr, ssk->sk_family);
1580 list_add_tail(&subflow->node, &msk->conn_list);
1581 err = kernel_connect(sf, (struct sockaddr *)&addr, addrlen, O_NONBLOCK);
1582 if (err && err != -EINPROGRESS)
1585 /* discard the subflow socket */
1586 mptcp_sock_graft(ssk, sk->sk_socket);
1587 iput(SOCK_INODE(sf));
1588 WRITE_ONCE(msk->allow_infinite_fallback, false);
1592 list_del(&subflow->node);
1593 sock_put(mptcp_subflow_tcp_sock(subflow));
1596 subflow->disposable = 1;
1600 /* we account subflows before the creation, and this failures will not
1601 * be caught by sk_state_change()
1603 mptcp_pm_close_subflow(msk);
1607 static void mptcp_attach_cgroup(struct sock *parent, struct sock *child)
1609 #ifdef CONFIG_SOCK_CGROUP_DATA
1610 struct sock_cgroup_data *parent_skcd = &parent->sk_cgrp_data,
1611 *child_skcd = &child->sk_cgrp_data;
1613 /* only the additional subflows created by kworkers have to be modified */
1614 if (cgroup_id(sock_cgroup_ptr(parent_skcd)) !=
1615 cgroup_id(sock_cgroup_ptr(child_skcd))) {
1617 struct mem_cgroup *memcg = parent->sk_memcg;
1619 mem_cgroup_sk_free(child);
1620 if (memcg && css_tryget(&memcg->css))
1621 child->sk_memcg = memcg;
1622 #endif /* CONFIG_MEMCG */
1624 cgroup_sk_free(child_skcd);
1625 *child_skcd = *parent_skcd;
1626 cgroup_sk_clone(child_skcd);
1628 #endif /* CONFIG_SOCK_CGROUP_DATA */
1631 static void mptcp_subflow_ops_override(struct sock *ssk)
1633 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
1634 if (ssk->sk_prot == &tcpv6_prot)
1635 ssk->sk_prot = &tcpv6_prot_override;
1638 ssk->sk_prot = &tcp_prot_override;
1641 static void mptcp_subflow_ops_undo_override(struct sock *ssk)
1643 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
1644 if (ssk->sk_prot == &tcpv6_prot_override)
1645 ssk->sk_prot = &tcpv6_prot;
1648 ssk->sk_prot = &tcp_prot;
1651 int mptcp_subflow_create_socket(struct sock *sk, unsigned short family,
1652 struct socket **new_sock)
1654 struct mptcp_subflow_context *subflow;
1655 struct net *net = sock_net(sk);
1659 /* un-accepted server sockets can reach here - on bad configuration
1660 * bail early to avoid greater trouble later
1662 if (unlikely(!sk->sk_socket))
1665 err = sock_create_kern(net, family, SOCK_STREAM, IPPROTO_TCP, &sf);
1669 lock_sock_nested(sf->sk, SINGLE_DEPTH_NESTING);
1671 /* the newly created socket has to be in the same cgroup as its parent */
1672 mptcp_attach_cgroup(sk, sf->sk);
1674 /* kernel sockets do not by default acquire net ref, but TCP timer
1676 * Update ns_tracker to current stack trace and refcounted tracker.
1678 __netns_tracker_free(net, &sf->sk->ns_tracker, false);
1679 sf->sk->sk_net_refcnt = 1;
1680 get_net_track(net, &sf->sk->ns_tracker, GFP_KERNEL);
1681 sock_inuse_add(net, 1);
1682 err = tcp_set_ulp(sf->sk, "mptcp");
1683 release_sock(sf->sk);
1690 /* the newly created socket really belongs to the owning MPTCP master
1691 * socket, even if for additional subflows the allocation is performed
1692 * by a kernel workqueue. Adjust inode references, so that the
1693 * procfs/diag interfaces really show this one belonging to the correct
1696 SOCK_INODE(sf)->i_ino = SOCK_INODE(sk->sk_socket)->i_ino;
1697 SOCK_INODE(sf)->i_uid = SOCK_INODE(sk->sk_socket)->i_uid;
1698 SOCK_INODE(sf)->i_gid = SOCK_INODE(sk->sk_socket)->i_gid;
1700 subflow = mptcp_subflow_ctx(sf->sk);
1701 pr_debug("subflow=%p", subflow);
1706 mptcp_subflow_ops_override(sf->sk);
1711 static struct mptcp_subflow_context *subflow_create_ctx(struct sock *sk,
1714 struct inet_connection_sock *icsk = inet_csk(sk);
1715 struct mptcp_subflow_context *ctx;
1717 ctx = kzalloc(sizeof(*ctx), priority);
1721 rcu_assign_pointer(icsk->icsk_ulp_data, ctx);
1722 INIT_LIST_HEAD(&ctx->node);
1723 INIT_LIST_HEAD(&ctx->delegated_node);
1725 pr_debug("subflow=%p", ctx);
1732 static void __subflow_state_change(struct sock *sk)
1734 struct socket_wq *wq;
1737 wq = rcu_dereference(sk->sk_wq);
1738 if (skwq_has_sleeper(wq))
1739 wake_up_interruptible_all(&wq->wait);
1743 static bool subflow_is_done(const struct sock *sk)
1745 return sk->sk_shutdown & RCV_SHUTDOWN || sk->sk_state == TCP_CLOSE;
1748 static void subflow_state_change(struct sock *sk)
1750 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(sk);
1751 struct sock *parent = subflow->conn;
1753 __subflow_state_change(sk);
1755 if (subflow_simultaneous_connect(sk)) {
1756 mptcp_propagate_sndbuf(parent, sk);
1757 mptcp_do_fallback(sk);
1758 mptcp_rcv_space_init(mptcp_sk(parent), sk);
1759 pr_fallback(mptcp_sk(parent));
1760 subflow->conn_finished = 1;
1761 mptcp_set_connected(parent);
1764 /* as recvmsg() does not acquire the subflow socket for ssk selection
1765 * a fin packet carrying a DSS can be unnoticed if we don't trigger
1766 * the data available machinery here.
1768 if (mptcp_subflow_data_available(sk))
1769 mptcp_data_ready(parent, sk);
1770 else if (unlikely(sk->sk_err))
1771 subflow_error_report(sk);
1773 subflow_sched_work_if_closed(mptcp_sk(parent), sk);
1775 if (__mptcp_check_fallback(mptcp_sk(parent)) &&
1776 !subflow->rx_eof && subflow_is_done(sk)) {
1777 subflow->rx_eof = 1;
1778 mptcp_subflow_eof(parent);
1782 void mptcp_subflow_queue_clean(struct sock *listener_sk, struct sock *listener_ssk)
1784 struct request_sock_queue *queue = &inet_csk(listener_ssk)->icsk_accept_queue;
1785 struct mptcp_sock *msk, *next, *head = NULL;
1786 struct request_sock *req;
1789 /* build a list of all unaccepted mptcp sockets */
1790 spin_lock_bh(&queue->rskq_lock);
1791 for (req = queue->rskq_accept_head; req; req = req->dl_next) {
1792 struct mptcp_subflow_context *subflow;
1793 struct sock *ssk = req->sk;
1795 if (!sk_is_mptcp(ssk))
1798 subflow = mptcp_subflow_ctx(ssk);
1799 if (!subflow || !subflow->conn)
1802 /* skip if already in list */
1805 if (msk->dl_next || msk == head)
1809 msk->dl_next = head;
1812 spin_unlock_bh(&queue->rskq_lock);
1816 /* can't acquire the msk socket lock under the subflow one,
1817 * or will cause ABBA deadlock
1819 release_sock(listener_ssk);
1821 for (msk = head; msk; msk = next) {
1822 sk = (struct sock *)msk;
1824 lock_sock_nested(sk, SINGLE_DEPTH_NESTING);
1825 next = msk->dl_next;
1826 msk->dl_next = NULL;
1828 __mptcp_unaccepted_force_close(sk);
1831 /* lockdep will report a false positive ABBA deadlock
1832 * between cancel_work_sync and the listener socket.
1833 * The involved locks belong to different sockets WRT
1834 * the existing AB chain.
1835 * Using a per socket key is problematic as key
1836 * deregistration requires process context and must be
1837 * performed at socket disposal time, in atomic
1839 * Just tell lockdep to consider the listener socket
1842 mutex_release(&listener_sk->sk_lock.dep_map, _RET_IP_);
1843 mptcp_cancel_work(sk);
1844 mutex_acquire(&listener_sk->sk_lock.dep_map, 0, 0, _RET_IP_);
1849 /* we are still under the listener msk socket lock */
1850 lock_sock_nested(listener_ssk, SINGLE_DEPTH_NESTING);
1853 static int subflow_ulp_init(struct sock *sk)
1855 struct inet_connection_sock *icsk = inet_csk(sk);
1856 struct mptcp_subflow_context *ctx;
1857 struct tcp_sock *tp = tcp_sk(sk);
1860 /* disallow attaching ULP to a socket unless it has been
1861 * created with sock_create_kern()
1863 if (!sk->sk_kern_sock) {
1868 ctx = subflow_create_ctx(sk, GFP_KERNEL);
1874 pr_debug("subflow=%p, family=%d", ctx, sk->sk_family);
1877 ctx->icsk_af_ops = icsk->icsk_af_ops;
1878 icsk->icsk_af_ops = subflow_default_af_ops(sk);
1879 ctx->tcp_state_change = sk->sk_state_change;
1880 ctx->tcp_error_report = sk->sk_error_report;
1882 WARN_ON_ONCE(sk->sk_data_ready != sock_def_readable);
1883 WARN_ON_ONCE(sk->sk_write_space != sk_stream_write_space);
1885 sk->sk_data_ready = subflow_data_ready;
1886 sk->sk_write_space = subflow_write_space;
1887 sk->sk_state_change = subflow_state_change;
1888 sk->sk_error_report = subflow_error_report;
1893 static void subflow_ulp_release(struct sock *ssk)
1895 struct mptcp_subflow_context *ctx = mptcp_subflow_ctx(ssk);
1896 bool release = true;
1904 /* if the msk has been orphaned, keep the ctx
1905 * alive, will be freed by __mptcp_close_ssk(),
1906 * when the subflow is still unaccepted
1908 release = ctx->disposable || list_empty(&ctx->node);
1910 /* inet_child_forget() does not call sk_state_change(),
1911 * explicitly trigger the socket close machinery
1913 if (!release && !test_and_set_bit(MPTCP_WORK_CLOSE_SUBFLOW,
1914 &mptcp_sk(sk)->flags))
1915 mptcp_schedule_work(sk);
1919 mptcp_subflow_ops_undo_override(ssk);
1921 kfree_rcu(ctx, rcu);
1924 static void subflow_ulp_clone(const struct request_sock *req,
1926 const gfp_t priority)
1928 struct mptcp_subflow_request_sock *subflow_req = mptcp_subflow_rsk(req);
1929 struct mptcp_subflow_context *old_ctx = mptcp_subflow_ctx(newsk);
1930 struct mptcp_subflow_context *new_ctx;
1932 if (!tcp_rsk(req)->is_mptcp ||
1933 (!subflow_req->mp_capable && !subflow_req->mp_join)) {
1934 subflow_ulp_fallback(newsk, old_ctx);
1938 new_ctx = subflow_create_ctx(newsk, priority);
1940 subflow_ulp_fallback(newsk, old_ctx);
1944 new_ctx->conn_finished = 1;
1945 new_ctx->icsk_af_ops = old_ctx->icsk_af_ops;
1946 new_ctx->tcp_state_change = old_ctx->tcp_state_change;
1947 new_ctx->tcp_error_report = old_ctx->tcp_error_report;
1948 new_ctx->rel_write_seq = 1;
1949 new_ctx->tcp_sock = newsk;
1951 if (subflow_req->mp_capable) {
1952 /* see comments in subflow_syn_recv_sock(), MPTCP connection
1953 * is fully established only after we receive the remote key
1955 new_ctx->mp_capable = 1;
1956 new_ctx->local_key = subflow_req->local_key;
1957 new_ctx->token = subflow_req->token;
1958 new_ctx->ssn_offset = subflow_req->ssn_offset;
1959 new_ctx->idsn = subflow_req->idsn;
1961 /* this is the first subflow, id is always 0 */
1962 new_ctx->local_id_valid = 1;
1963 } else if (subflow_req->mp_join) {
1964 new_ctx->ssn_offset = subflow_req->ssn_offset;
1965 new_ctx->mp_join = 1;
1966 new_ctx->fully_established = 1;
1967 new_ctx->remote_key_valid = 1;
1968 new_ctx->backup = subflow_req->backup;
1969 new_ctx->remote_id = subflow_req->remote_id;
1970 new_ctx->token = subflow_req->token;
1971 new_ctx->thmac = subflow_req->thmac;
1973 /* the subflow req id is valid, fetched via subflow_check_req()
1974 * and subflow_token_join_request()
1976 subflow_set_local_id(new_ctx, subflow_req->local_id);
1980 static void tcp_release_cb_override(struct sock *ssk)
1982 struct mptcp_subflow_context *subflow = mptcp_subflow_ctx(ssk);
1984 if (mptcp_subflow_has_delegated_action(subflow))
1985 mptcp_subflow_process_delegated(ssk);
1987 tcp_release_cb(ssk);
1990 static struct tcp_ulp_ops subflow_ulp_ops __read_mostly = {
1992 .owner = THIS_MODULE,
1993 .init = subflow_ulp_init,
1994 .release = subflow_ulp_release,
1995 .clone = subflow_ulp_clone,
1998 static int subflow_ops_init(struct request_sock_ops *subflow_ops)
2000 subflow_ops->obj_size = sizeof(struct mptcp_subflow_request_sock);
2002 subflow_ops->slab = kmem_cache_create(subflow_ops->slab_name,
2003 subflow_ops->obj_size, 0,
2005 SLAB_TYPESAFE_BY_RCU,
2007 if (!subflow_ops->slab)
2013 void __init mptcp_subflow_init(void)
2015 mptcp_subflow_v4_request_sock_ops = tcp_request_sock_ops;
2016 mptcp_subflow_v4_request_sock_ops.slab_name = "request_sock_subflow_v4";
2017 mptcp_subflow_v4_request_sock_ops.destructor = subflow_v4_req_destructor;
2019 if (subflow_ops_init(&mptcp_subflow_v4_request_sock_ops) != 0)
2020 panic("MPTCP: failed to init subflow v4 request sock ops\n");
2022 subflow_request_sock_ipv4_ops = tcp_request_sock_ipv4_ops;
2023 subflow_request_sock_ipv4_ops.route_req = subflow_v4_route_req;
2024 subflow_request_sock_ipv4_ops.send_synack = subflow_v4_send_synack;
2026 subflow_specific = ipv4_specific;
2027 subflow_specific.conn_request = subflow_v4_conn_request;
2028 subflow_specific.syn_recv_sock = subflow_syn_recv_sock;
2029 subflow_specific.sk_rx_dst_set = subflow_finish_connect;
2030 subflow_specific.rebuild_header = subflow_rebuild_header;
2032 tcp_prot_override = tcp_prot;
2033 tcp_prot_override.release_cb = tcp_release_cb_override;
2035 #if IS_ENABLED(CONFIG_MPTCP_IPV6)
2036 /* In struct mptcp_subflow_request_sock, we assume the TCP request sock
2037 * structures for v4 and v6 have the same size. It should not changed in
2038 * the future but better to make sure to be warned if it is no longer
2041 BUILD_BUG_ON(sizeof(struct tcp_request_sock) != sizeof(struct tcp6_request_sock));
2043 mptcp_subflow_v6_request_sock_ops = tcp6_request_sock_ops;
2044 mptcp_subflow_v6_request_sock_ops.slab_name = "request_sock_subflow_v6";
2045 mptcp_subflow_v6_request_sock_ops.destructor = subflow_v6_req_destructor;
2047 if (subflow_ops_init(&mptcp_subflow_v6_request_sock_ops) != 0)
2048 panic("MPTCP: failed to init subflow v6 request sock ops\n");
2050 subflow_request_sock_ipv6_ops = tcp_request_sock_ipv6_ops;
2051 subflow_request_sock_ipv6_ops.route_req = subflow_v6_route_req;
2052 subflow_request_sock_ipv6_ops.send_synack = subflow_v6_send_synack;
2054 subflow_v6_specific = ipv6_specific;
2055 subflow_v6_specific.conn_request = subflow_v6_conn_request;
2056 subflow_v6_specific.syn_recv_sock = subflow_syn_recv_sock;
2057 subflow_v6_specific.sk_rx_dst_set = subflow_finish_connect;
2058 subflow_v6_specific.rebuild_header = subflow_v6_rebuild_header;
2060 subflow_v6m_specific = subflow_v6_specific;
2061 subflow_v6m_specific.queue_xmit = ipv4_specific.queue_xmit;
2062 subflow_v6m_specific.send_check = ipv4_specific.send_check;
2063 subflow_v6m_specific.net_header_len = ipv4_specific.net_header_len;
2064 subflow_v6m_specific.mtu_reduced = ipv4_specific.mtu_reduced;
2065 subflow_v6m_specific.net_frag_header_len = 0;
2066 subflow_v6m_specific.rebuild_header = subflow_rebuild_header;
2068 tcpv6_prot_override = tcpv6_prot;
2069 tcpv6_prot_override.release_cb = tcp_release_cb_override;
2072 mptcp_diag_subflow_init(&subflow_ulp_ops);
2074 if (tcp_register_ulp(&subflow_ulp_ops) != 0)
2075 panic("MPTCP: failed to register subflows to ULP\n");