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CommitLineData
1da177e4
LT
1/*
2 * INET An implementation of the TCP/IP protocol suite for the LINUX
3 * operating system. INET is implemented using the BSD Socket
4 * interface as the means of communication with the user level.
5 *
6 * Definitions for the TCP module.
7 *
8 * Version: @(#)tcp.h 1.0.5 05/23/93
9 *
02c30a84 10 * Authors: Ross Biro
1da177e4
LT
11 * Fred N. van Kempen, <waltje@uWalt.NL.Mugnet.ORG>
12 *
13 * This program is free software; you can redistribute it and/or
14 * modify it under the terms of the GNU General Public License
15 * as published by the Free Software Foundation; either version
16 * 2 of the License, or (at your option) any later version.
17 */
18#ifndef _TCP_H
19#define _TCP_H
20
1da177e4
LT
21#define FASTRETRANS_DEBUG 1
22
1da177e4
LT
23#include <linux/list.h>
24#include <linux/tcp.h>
187f1882 25#include <linux/bug.h>
1da177e4
LT
26#include <linux/slab.h>
27#include <linux/cache.h>
28#include <linux/percpu.h>
fb286bb2 29#include <linux/skbuff.h>
c6aefafb 30#include <linux/cryptohash.h>
435cf559 31#include <linux/kref.h>
740b0f18 32#include <linux/ktime.h>
3f421baa
ACM
33
34#include <net/inet_connection_sock.h>
295ff7ed 35#include <net/inet_timewait_sock.h>
77d8bf9c 36#include <net/inet_hashtables.h>
1da177e4 37#include <net/checksum.h>
2e6599cb 38#include <net/request_sock.h>
1da177e4
LT
39#include <net/sock.h>
40#include <net/snmp.h>
41#include <net/ip.h>
c752f073 42#include <net/tcp_states.h>
bdf1ee5d 43#include <net/inet_ecn.h>
0c266898 44#include <net/dst.h>
c752f073 45
1da177e4 46#include <linux/seq_file.h>
180d8cd9 47#include <linux/memcontrol.h>
40304b2a
LB
48#include <linux/bpf-cgroup.h>
49
6e04e021 50extern struct inet_hashinfo tcp_hashinfo;
1da177e4 51
dd24c001 52extern struct percpu_counter tcp_orphan_count;
5c9f3023 53void tcp_time_wait(struct sock *sk, int state, int timeo);
1da177e4 54
1da177e4 55#define MAX_TCP_HEADER (128 + MAX_HEADER)
33ad798c 56#define MAX_TCP_OPTION_SPACE 40
196379e6
ED
57#define TCP_MIN_SND_MSS 48
58#define TCP_MIN_GSO_SIZE (TCP_MIN_SND_MSS - MAX_TCP_OPTION_SPACE)
1da177e4 59
105970f6 60/*
1da177e4 61 * Never offer a window over 32767 without using window scaling. Some
105970f6 62 * poor stacks do signed 16bit maths!
1da177e4
LT
63 */
64#define MAX_TCP_WINDOW 32767U
65
66/* Minimal accepted MSS. It is (60+60+8) - (20+20). */
67#define TCP_MIN_MSS 88U
68
5d424d5a 69/* The least MTU to use for probing */
dcd8fb85 70#define TCP_BASE_MSS 1024
5d424d5a 71
05cbc0db
FD
72/* probing interval, default to 10 minutes as per RFC4821 */
73#define TCP_PROBE_INTERVAL 600
74
6b58e0a5
FD
75/* Specify interval when tcp mtu probing will stop */
76#define TCP_PROBE_THRESHOLD 8
77
1da177e4
LT
78/* After receiving this amount of duplicate ACKs fast retransmit starts. */
79#define TCP_FASTRETRANS_THRESH 3
80
1da177e4
LT
81/* Maximal number of ACKs sent quickly to accelerate slow-start. */
82#define TCP_MAX_QUICKACKS 16U
83
589c49cb
GF
84/* Maximal number of window scale according to RFC1323 */
85#define TCP_MAX_WSCALE 14U
86
1da177e4
LT
87/* urg_data states */
88#define TCP_URG_VALID 0x0100
89#define TCP_URG_NOTYET 0x0200
90#define TCP_URG_READ 0x0400
91
92#define TCP_RETR1 3 /*
93 * This is how many retries it does before it
94 * tries to figure out if the gateway is
95 * down. Minimal RFC value is 3; it corresponds
96 * to ~3sec-8min depending on RTO.
97 */
98
99#define TCP_RETR2 15 /*
100 * This should take at least
101 * 90 minutes to time out.
102 * RFC1122 says that the limit is 100 sec.
103 * 15 is ~13-30min depending on RTO.
104 */
105
6c9ff979
AB
106#define TCP_SYN_RETRIES 6 /* This is how many retries are done
107 * when active opening a connection.
108 * RFC1122 says the minimum retry MUST
109 * be at least 180secs. Nevertheless
110 * this value is corresponding to
111 * 63secs of retransmission with the
112 * current initial RTO.
113 */
1da177e4 114
6c9ff979
AB
115#define TCP_SYNACK_RETRIES 5 /* This is how may retries are done
116 * when passive opening a connection.
117 * This is corresponding to 31secs of
118 * retransmission with the current
119 * initial RTO.
120 */
1da177e4 121
1da177e4
LT
122#define TCP_TIMEWAIT_LEN (60*HZ) /* how long to wait to destroy TIME-WAIT
123 * state, about 60 seconds */
124#define TCP_FIN_TIMEOUT TCP_TIMEWAIT_LEN
125 /* BSD style FIN_WAIT2 deadlock breaker.
126 * It used to be 3min, new value is 60sec,
127 * to combine FIN-WAIT-2 timeout with
128 * TIME-WAIT timer.
129 */
130
131#define TCP_DELACK_MAX ((unsigned)(HZ/5)) /* maximal time to delay before sending an ACK */
132#if HZ >= 100
133#define TCP_DELACK_MIN ((unsigned)(HZ/25)) /* minimal time to delay before sending an ACK */
134#define TCP_ATO_MIN ((unsigned)(HZ/25))
135#else
136#define TCP_DELACK_MIN 4U
137#define TCP_ATO_MIN 4U
138#endif
139#define TCP_RTO_MAX ((unsigned)(120*HZ))
140#define TCP_RTO_MIN ((unsigned)(HZ/5))
bb4d991a 141#define TCP_TIMEOUT_MIN (2U) /* Min timeout for TCP timers in jiffies */
fd4f2cea 142#define TCP_TIMEOUT_INIT ((unsigned)(1*HZ)) /* RFC6298 2.1 initial RTO value */
9ad7c049
JC
143#define TCP_TIMEOUT_FALLBACK ((unsigned)(3*HZ)) /* RFC 1122 initial RTO value, now
144 * used as a fallback RTO for the
145 * initial data transmission if no
146 * valid RTT sample has been acquired,
147 * most likely due to retrans in 3WHS.
148 */
1da177e4
LT
149
150#define TCP_RESOURCE_PROBE_INTERVAL ((unsigned)(HZ/2U)) /* Maximal interval between probes
151 * for local resources.
152 */
1da177e4
LT
153#define TCP_KEEPALIVE_TIME (120*60*HZ) /* two hours */
154#define TCP_KEEPALIVE_PROBES 9 /* Max of 9 keepalive probes */
155#define TCP_KEEPALIVE_INTVL (75*HZ)
156
157#define MAX_TCP_KEEPIDLE 32767
158#define MAX_TCP_KEEPINTVL 32767
159#define MAX_TCP_KEEPCNT 127
160#define MAX_TCP_SYNCNT 127
161
162#define TCP_SYNQ_INTERVAL (HZ/5) /* Period of SYNACK timer */
1da177e4
LT
163
164#define TCP_PAWS_24DAYS (60 * 60 * 24 * 24)
165#define TCP_PAWS_MSL 60 /* Per-host timestamps are invalidated
166 * after this time. It should be equal
167 * (or greater than) TCP_TIMEWAIT_LEN
168 * to provide reliability equal to one
169 * provided by timewait state.
170 */
171#define TCP_PAWS_WINDOW 1 /* Replay window for per-host
172 * timestamps. It must be less than
173 * minimal timewait lifetime.
174 */
1da177e4
LT
175/*
176 * TCP option
177 */
105970f6 178
1da177e4
LT
179#define TCPOPT_NOP 1 /* Padding */
180#define TCPOPT_EOL 0 /* End of options */
181#define TCPOPT_MSS 2 /* Segment size negotiating */
182#define TCPOPT_WINDOW 3 /* Window scaling */
183#define TCPOPT_SACK_PERM 4 /* SACK Permitted */
184#define TCPOPT_SACK 5 /* SACK Block */
185#define TCPOPT_TIMESTAMP 8 /* Better RTT estimations/PAWS */
cfb6eeb4 186#define TCPOPT_MD5SIG 19 /* MD5 Signature (RFC2385) */
7f9b838b 187#define TCPOPT_FASTOPEN 34 /* Fast open (RFC7413) */
2100c8d2
YC
188#define TCPOPT_EXP 254 /* Experimental */
189/* Magic number to be after the option value for sharing TCP
190 * experimental options. See draft-ietf-tcpm-experimental-options-00.txt
191 */
192#define TCPOPT_FASTOPEN_MAGIC 0xF989
60e2a778 193#define TCPOPT_SMC_MAGIC 0xE2D4C3D9
1da177e4
LT
194
195/*
196 * TCP option lengths
197 */
198
199#define TCPOLEN_MSS 4
200#define TCPOLEN_WINDOW 3
201#define TCPOLEN_SACK_PERM 2
202#define TCPOLEN_TIMESTAMP 10
cfb6eeb4 203#define TCPOLEN_MD5SIG 18
7f9b838b 204#define TCPOLEN_FASTOPEN_BASE 2
2100c8d2 205#define TCPOLEN_EXP_FASTOPEN_BASE 4
60e2a778 206#define TCPOLEN_EXP_SMC_BASE 6
1da177e4
LT
207
208/* But this is what stacks really send out. */
209#define TCPOLEN_TSTAMP_ALIGNED 12
210#define TCPOLEN_WSCALE_ALIGNED 4
211#define TCPOLEN_SACKPERM_ALIGNED 4
212#define TCPOLEN_SACK_BASE 2
213#define TCPOLEN_SACK_BASE_ALIGNED 4
214#define TCPOLEN_SACK_PERBLOCK 8
cfb6eeb4 215#define TCPOLEN_MD5SIG_ALIGNED 20
33ad798c 216#define TCPOLEN_MSS_ALIGNED 4
60e2a778 217#define TCPOLEN_EXP_SMC_BASE_ALIGNED 8
1da177e4 218
1da177e4
LT
219/* Flags in tp->nonagle */
220#define TCP_NAGLE_OFF 1 /* Nagle's algo is disabled */
221#define TCP_NAGLE_CORK 2 /* Socket is corked */
caa20d9a 222#define TCP_NAGLE_PUSH 4 /* Cork is overridden for already queued data */
1da177e4 223
36e31b0a
AP
224/* TCP thin-stream limits */
225#define TCP_THIN_LINEAR_RETRIES 6 /* After 6 linear retries, do exp. backoff */
226
21603fc4 227/* TCP initial congestion window as per rfc6928 */
442b9635
DM
228#define TCP_INIT_CWND 10
229
cf60af03
YC
230/* Bit Flags for sysctl_tcp_fastopen */
231#define TFO_CLIENT_ENABLE 1
10467163 232#define TFO_SERVER_ENABLE 2
67da22d2 233#define TFO_CLIENT_NO_COOKIE 4 /* Data in SYN w/o cookie option */
cf60af03 234
10467163
JC
235/* Accept SYN data w/o any cookie option */
236#define TFO_SERVER_COOKIE_NOT_REQD 0x200
237
238/* Force enable TFO on all listeners, i.e., not requiring the
cebc5cba 239 * TCP_FASTOPEN socket option.
10467163
JC
240 */
241#define TFO_SERVER_WO_SOCKOPT1 0x400
10467163 242
295ff7ed 243
1da177e4 244/* sysctl variables for tcp */
1da177e4 245extern int sysctl_tcp_max_orphans;
a4fe34bf 246extern long sysctl_tcp_mem[3];
e20223f1 247
a0370b3f 248#define TCP_RACK_LOSS_DETECTION 0x1 /* Use RACK to detect losses */
1f255691 249#define TCP_RACK_STATIC_REO_WND 0x2 /* Use static RACK reo wnd */
a0370b3f 250
8d987e5c 251extern atomic_long_t tcp_memory_allocated;
1748376b 252extern struct percpu_counter tcp_sockets_allocated;
06044751 253extern unsigned long tcp_memory_pressure;
1da177e4 254
b8da51eb
ED
255/* optimized version of sk_under_memory_pressure() for TCP sockets */
256static inline bool tcp_under_memory_pressure(const struct sock *sk)
257{
baac50bb
JW
258 if (mem_cgroup_sockets_enabled && sk->sk_memcg &&
259 mem_cgroup_under_socket_pressure(sk->sk_memcg))
e805605c 260 return true;
b8da51eb
ED
261
262 return tcp_memory_pressure;
263}
1da177e4
LT
264/*
265 * The next routines deal with comparing 32 bit unsigned ints
266 * and worry about wraparound (automatic with unsigned arithmetic).
267 */
268
a2a385d6 269static inline bool before(__u32 seq1, __u32 seq2)
1da177e4 270{
0d630cc0 271 return (__s32)(seq1-seq2) < 0;
1da177e4 272}
9a036b9c 273#define after(seq2, seq1) before(seq1, seq2)
1da177e4
LT
274
275/* is s2<=s1<=s3 ? */
a2a385d6 276static inline bool between(__u32 seq1, __u32 seq2, __u32 seq3)
1da177e4
LT
277{
278 return seq3 - seq2 >= seq1 - seq2;
279}
280
efcdbf24
AS
281static inline bool tcp_out_of_memory(struct sock *sk)
282{
283 if (sk->sk_wmem_queued > SOCK_MIN_SNDBUF &&
284 sk_memory_allocated(sk) > sk_prot_mem_limits(sk, 2))
285 return true;
286 return false;
287}
288
a6c5ea4c
ED
289void sk_forced_mem_schedule(struct sock *sk, int size);
290
ad1af0fe 291static inline bool tcp_too_many_orphans(struct sock *sk, int shift)
e4fd5da3 292{
ad1af0fe
DM
293 struct percpu_counter *ocp = sk->sk_prot->orphan_count;
294 int orphans = percpu_counter_read_positive(ocp);
295
296 if (orphans << shift > sysctl_tcp_max_orphans) {
297 orphans = percpu_counter_sum_positive(ocp);
298 if (orphans << shift > sysctl_tcp_max_orphans)
299 return true;
300 }
ad1af0fe 301 return false;
e4fd5da3 302}
1da177e4 303
5c9f3023 304bool tcp_check_oom(struct sock *sk, int shift);
efcdbf24 305
a0f82f64 306
1da177e4
LT
307extern struct proto tcp_prot;
308
57ef42d5 309#define TCP_INC_STATS(net, field) SNMP_INC_STATS((net)->mib.tcp_statistics, field)
13415e46 310#define __TCP_INC_STATS(net, field) __SNMP_INC_STATS((net)->mib.tcp_statistics, field)
57ef42d5 311#define TCP_DEC_STATS(net, field) SNMP_DEC_STATS((net)->mib.tcp_statistics, field)
aa2ea058 312#define TCP_ADD_STATS(net, field, val) SNMP_ADD_STATS((net)->mib.tcp_statistics, field, val)
1da177e4 313
5c9f3023
JP
314void tcp_tasklet_init(void);
315
316void tcp_v4_err(struct sk_buff *skb, u32);
317
318void tcp_shutdown(struct sock *sk, int how);
319
7487449c 320int tcp_v4_early_demux(struct sk_buff *skb);
5c9f3023
JP
321int tcp_v4_rcv(struct sk_buff *skb);
322
323int tcp_v4_tw_remember_stamp(struct inet_timewait_sock *tw);
1b784140 324int tcp_sendmsg(struct sock *sk, struct msghdr *msg, size_t size);
306b13eb 325int tcp_sendmsg_locked(struct sock *sk, struct msghdr *msg, size_t size);
5c9f3023
JP
326int tcp_sendpage(struct sock *sk, struct page *page, int offset, size_t size,
327 int flags);
306b13eb
TH
328int tcp_sendpage_locked(struct sock *sk, struct page *page, int offset,
329 size_t size, int flags);
e3b5616a
DW
330ssize_t do_tcp_sendpages(struct sock *sk, struct page *page, int offset,
331 size_t size, int flags);
5c9f3023
JP
332void tcp_release_cb(struct sock *sk);
333void tcp_wfree(struct sk_buff *skb);
334void tcp_write_timer_handler(struct sock *sk);
335void tcp_delack_timer_handler(struct sock *sk);
336int tcp_ioctl(struct sock *sk, int cmd, unsigned long arg);
72ab4a86 337int tcp_rcv_state_process(struct sock *sk, struct sk_buff *skb);
5c9f3023 338void tcp_rcv_established(struct sock *sk, struct sk_buff *skb,
e42e24c3 339 const struct tcphdr *th);
5c9f3023 340void tcp_rcv_space_adjust(struct sock *sk);
5c9f3023
JP
341int tcp_twsk_unique(struct sock *sk, struct sock *sktw, void *twp);
342void tcp_twsk_destructor(struct sock *sk);
343ssize_t tcp_splice_read(struct socket *sk, loff_t *ppos,
344 struct pipe_inode_info *pipe, size_t len,
345 unsigned int flags);
9c55e01c 346
caf34993 347void tcp_enter_quickack_mode(struct sock *sk, unsigned int max_quickacks);
463c84b9
ACM
348static inline void tcp_dec_quickack_mode(struct sock *sk,
349 const unsigned int pkts)
1da177e4 350{
463c84b9 351 struct inet_connection_sock *icsk = inet_csk(sk);
fc6415bc 352
463c84b9
ACM
353 if (icsk->icsk_ack.quick) {
354 if (pkts >= icsk->icsk_ack.quick) {
355 icsk->icsk_ack.quick = 0;
fc6415bc 356 /* Leaving quickack mode we deflate ATO. */
463c84b9 357 icsk->icsk_ack.ato = TCP_ATO_MIN;
fc6415bc 358 } else
463c84b9 359 icsk->icsk_ack.quick -= pkts;
1da177e4
LT
360 }
361}
362
bdf1ee5d
IJ
363#define TCP_ECN_OK 1
364#define TCP_ECN_QUEUE_CWR 2
365#define TCP_ECN_DEMAND_CWR 4
7a269ffa 366#define TCP_ECN_SEEN 8
bdf1ee5d 367
fd2c3ef7 368enum tcp_tw_status {
1da177e4
LT
369 TCP_TW_SUCCESS = 0,
370 TCP_TW_RST = 1,
371 TCP_TW_ACK = 2,
372 TCP_TW_SYN = 3
373};
374
375
5c9f3023
JP
376enum tcp_tw_status tcp_timewait_state_process(struct inet_timewait_sock *tw,
377 struct sk_buff *skb,
378 const struct tcphdr *th);
379struct sock *tcp_check_req(struct sock *sk, struct sk_buff *skb,
52452c54 380 struct request_sock *req, bool fastopen);
5c9f3023
JP
381int tcp_child_process(struct sock *parent, struct sock *child,
382 struct sk_buff *skb);
5ae344c9 383void tcp_enter_loss(struct sock *sk);
57dde7f7 384void tcp_cwnd_reduction(struct sock *sk, int newly_acked_sacked, int flag);
5c9f3023
JP
385void tcp_clear_retrans(struct tcp_sock *tp);
386void tcp_update_metrics(struct sock *sk);
387void tcp_init_metrics(struct sock *sk);
388void tcp_metrics_init(void);
d82bae12 389bool tcp_peer_is_proven(struct request_sock *req, struct dst_entry *dst);
5c9f3023
JP
390void tcp_close(struct sock *sk, long timeout);
391void tcp_init_sock(struct sock *sk);
27204aaa 392void tcp_init_transfer(struct sock *sk, int bpf_op);
5c9f3023
JP
393unsigned int tcp_poll(struct file *file, struct socket *sock,
394 struct poll_table_struct *wait);
395int tcp_getsockopt(struct sock *sk, int level, int optname,
396 char __user *optval, int __user *optlen);
397int tcp_setsockopt(struct sock *sk, int level, int optname,
398 char __user *optval, unsigned int optlen);
399int compat_tcp_getsockopt(struct sock *sk, int level, int optname,
53d3176b 400 char __user *optval, int __user *optlen);
5c9f3023 401int compat_tcp_setsockopt(struct sock *sk, int level, int optname,
53d3176b 402 char __user *optval, unsigned int optlen);
5c9f3023 403void tcp_set_keepalive(struct sock *sk, int val);
42cb80a2 404void tcp_syn_ack_timeout(const struct request_sock *req);
1b784140
YX
405int tcp_recvmsg(struct sock *sk, struct msghdr *msg, size_t len, int nonblock,
406 int flags, int *addr_len);
eed29f17 407void tcp_parse_options(const struct net *net, const struct sk_buff *skb,
5c9f3023
JP
408 struct tcp_options_received *opt_rx,
409 int estab, struct tcp_fastopen_cookie *foc);
410const u8 *tcp_parse_md5sig_option(const struct tcphdr *th);
7d5d5525 411
1da177e4
LT
412/*
413 * TCP v4 functions exported for the inet6 API
414 */
415
5c9f3023 416void tcp_v4_send_check(struct sock *sk, struct sk_buff *skb);
4fab9071 417void tcp_v4_mtu_reduced(struct sock *sk);
9cf74903 418void tcp_req_err(struct sock *sk, u32 seq, bool abort);
5c9f3023 419int tcp_v4_conn_request(struct sock *sk, struct sk_buff *skb);
c28c6f04 420struct sock *tcp_create_openreq_child(const struct sock *sk,
5c9f3023
JP
421 struct request_sock *req,
422 struct sk_buff *skb);
81164413 423void tcp_ca_openreq_child(struct sock *sk, const struct dst_entry *dst);
0c27171e 424struct sock *tcp_v4_syn_recv_sock(const struct sock *sk, struct sk_buff *skb,
5c9f3023 425 struct request_sock *req,
5e0724d0
ED
426 struct dst_entry *dst,
427 struct request_sock *req_unhash,
428 bool *own_req);
5c9f3023
JP
429int tcp_v4_do_rcv(struct sock *sk, struct sk_buff *skb);
430int tcp_v4_connect(struct sock *sk, struct sockaddr *uaddr, int addr_len);
431int tcp_connect(struct sock *sk);
b3d05147
ED
432enum tcp_synack_type {
433 TCP_SYNACK_NORMAL,
434 TCP_SYNACK_FASTOPEN,
435 TCP_SYNACK_COOKIE,
436};
5d062de7 437struct sk_buff *tcp_make_synack(const struct sock *sk, struct dst_entry *dst,
5c9f3023 438 struct request_sock *req,
ca6fb065 439 struct tcp_fastopen_cookie *foc,
b3d05147 440 enum tcp_synack_type synack_type);
5c9f3023 441int tcp_disconnect(struct sock *sk, int flags);
1da177e4 442
370816ae 443void tcp_finish_connect(struct sock *sk, struct sk_buff *skb);
292e8d8c 444int tcp_send_rcvq(struct sock *sk, struct msghdr *msg, size_t size);
63d02d15 445void inet_sk_rx_dst_set(struct sock *sk, const struct sk_buff *skb);
1da177e4 446
1da177e4 447/* From syncookies.c */
b80c0e78
ED
448struct sock *tcp_get_cookie_sock(struct sock *sk, struct sk_buff *skb,
449 struct request_sock *req,
84b114b9 450 struct dst_entry *dst, u32 tsoff);
5c9f3023
JP
451int __cookie_v4_check(const struct iphdr *iph, const struct tcphdr *th,
452 u32 cookie);
461b74c3 453struct sock *cookie_v4_check(struct sock *sk, struct sk_buff *skb);
e05c82d3 454#ifdef CONFIG_SYN_COOKIES
8c27bd75 455
63262315 456/* Syncookies use a monotonic timer which increments every 60 seconds.
8c27bd75
FW
457 * This counter is used both as a hash input and partially encoded into
458 * the cookie value. A cookie is only validated further if the delta
459 * between the current counter value and the encoded one is less than this,
63262315 460 * i.e. a sent cookie is valid only at most for 2*60 seconds (or less if
8c27bd75
FW
461 * the counter advances immediately after a cookie is generated).
462 */
264ea103
ED
463#define MAX_SYNCOOKIE_AGE 2
464#define TCP_SYNCOOKIE_PERIOD (60 * HZ)
465#define TCP_SYNCOOKIE_VALID (MAX_SYNCOOKIE_AGE * TCP_SYNCOOKIE_PERIOD)
466
467/* syncookies: remember time of last synqueue overflow
468 * But do not dirty this field too often (once per second is enough)
3f684b4b 469 * It is racy as we do not hold a lock, but race is very minor.
264ea103 470 */
3f684b4b 471static inline void tcp_synq_overflow(const struct sock *sk)
264ea103
ED
472{
473 unsigned long last_overflow = tcp_sk(sk)->rx_opt.ts_recent_stamp;
474 unsigned long now = jiffies;
475
476 if (time_after(now, last_overflow + HZ))
477 tcp_sk(sk)->rx_opt.ts_recent_stamp = now;
478}
479
480/* syncookies: no recent synqueue overflow on this listening socket? */
481static inline bool tcp_synq_no_recent_overflow(const struct sock *sk)
482{
483 unsigned long last_overflow = tcp_sk(sk)->rx_opt.ts_recent_stamp;
484
485 return time_after(jiffies, last_overflow + TCP_SYNCOOKIE_VALID);
486}
8c27bd75
FW
487
488static inline u32 tcp_cookie_time(void)
489{
63262315
ED
490 u64 val = get_jiffies_64();
491
264ea103 492 do_div(val, TCP_SYNCOOKIE_PERIOD);
63262315 493 return val;
8c27bd75
FW
494}
495
5c9f3023
JP
496u32 __cookie_v4_init_sequence(const struct iphdr *iph, const struct tcphdr *th,
497 u16 *mssp);
3f684b4b 498__u32 cookie_v4_init_sequence(const struct sk_buff *skb, __u16 *mss);
9a568de4 499u64 cookie_init_timestamp(struct request_sock *req);
f9301034
ED
500bool cookie_timestamp_decode(const struct net *net,
501 struct tcp_options_received *opt);
f1673381 502bool cookie_ecn_ok(const struct tcp_options_received *opt,
f7b3bec6 503 const struct net *net, const struct dst_entry *dst);
4dfc2817 504
c6aefafb 505/* From net/ipv6/syncookies.c */
5c9f3023
JP
506int __cookie_v6_check(const struct ipv6hdr *iph, const struct tcphdr *th,
507 u32 cookie);
508struct sock *cookie_v6_check(struct sock *sk, struct sk_buff *skb);
f1673381 509
5c9f3023
JP
510u32 __cookie_v6_init_sequence(const struct ipv6hdr *iph,
511 const struct tcphdr *th, u16 *mssp);
3f684b4b 512__u32 cookie_v6_init_sequence(const struct sk_buff *skb, __u16 *mss);
e05c82d3 513#endif
1da177e4
LT
514/* tcp_output.c */
515
1b3878ca
NC
516u32 tcp_tso_autosize(const struct sock *sk, unsigned int mss_now,
517 int min_tso_segs);
5c9f3023
JP
518void __tcp_push_pending_frames(struct sock *sk, unsigned int cur_mss,
519 int nonagle);
10d3be56
ED
520int __tcp_retransmit_skb(struct sock *sk, struct sk_buff *skb, int segs);
521int tcp_retransmit_skb(struct sock *sk, struct sk_buff *skb, int segs);
5c9f3023
JP
522void tcp_retransmit_timer(struct sock *sk);
523void tcp_xmit_retransmit_queue(struct sock *);
524void tcp_simple_retransmit(struct sock *);
57dde7f7 525void tcp_enter_recovery(struct sock *sk, bool ece_ack);
5c9f3023 526int tcp_trim_head(struct sock *, struct sk_buff *, u32);
75c119af
ED
527enum tcp_queue {
528 TCP_FRAG_IN_WRITE_QUEUE,
529 TCP_FRAG_IN_RTX_QUEUE,
530};
531int tcp_fragment(struct sock *sk, enum tcp_queue tcp_queue,
532 struct sk_buff *skb, u32 len,
533 unsigned int mss_now, gfp_t gfp);
5c9f3023
JP
534
535void tcp_send_probe0(struct sock *);
536void tcp_send_partial(struct sock *);
e520af48 537int tcp_write_wakeup(struct sock *, int mib);
5c9f3023
JP
538void tcp_send_fin(struct sock *sk);
539void tcp_send_active_reset(struct sock *sk, gfp_t priority);
540int tcp_send_synack(struct sock *);
5c9f3023 541void tcp_push_one(struct sock *, unsigned int mss_now);
deb42350 542void __tcp_send_ack(struct sock *sk, u32 rcv_nxt);
5c9f3023
JP
543void tcp_send_ack(struct sock *sk);
544void tcp_send_delayed_ack(struct sock *sk);
545void tcp_send_loss_probe(struct sock *sk);
ed66dfaf 546bool tcp_schedule_loss_probe(struct sock *sk, bool advancing_rto);
cfea5a68
MKL
547void tcp_skb_collapse_tstamp(struct sk_buff *skb,
548 const struct sk_buff *next_skb);
1da177e4 549
a762a980 550/* tcp_input.c */
5c9f3023 551void tcp_rearm_rto(struct sock *sk);
0f1c28ae 552void tcp_synack_rtt_meas(struct sock *sk, struct request_sock *req);
5c9f3023 553void tcp_reset(struct sock *sk);
4f41b1c5 554void tcp_skb_mark_lost_uncond_verify(struct tcp_sock *tp, struct sk_buff *skb);
e3e17b77 555void tcp_fin(struct sock *sk);
a762a980 556
1da177e4 557/* tcp_timer.c */
5c9f3023 558void tcp_init_xmit_timers(struct sock *);
463c84b9
ACM
559static inline void tcp_clear_xmit_timers(struct sock *sk)
560{
218af599 561 hrtimer_cancel(&tcp_sk(sk)->pacing_timer);
463c84b9
ACM
562 inet_csk_clear_xmit_timers(sk);
563}
1da177e4 564
5c9f3023
JP
565unsigned int tcp_sync_mss(struct sock *sk, u32 pmtu);
566unsigned int tcp_current_mss(struct sock *sk);
0c54b85f
IJ
567
568/* Bound MSS / TSO packet size with the half of the window */
569static inline int tcp_bound_to_half_wnd(struct tcp_sock *tp, int pktsize)
570{
01f83d69
AK
571 int cutoff;
572
573 /* When peer uses tiny windows, there is no use in packetizing
574 * to sub-MSS pieces for the sake of SWS or making sure there
575 * are enough packets in the pipe for fast recovery.
576 *
577 * On the other hand, for extremely large MSS devices, handling
578 * smaller than MSS windows in this way does make sense.
579 */
2631b79f 580 if (tp->max_window > TCP_MSS_DEFAULT)
01f83d69
AK
581 cutoff = (tp->max_window >> 1);
582 else
583 cutoff = tp->max_window;
584
585 if (cutoff && pktsize > cutoff)
586 return max_t(int, cutoff, 68U - tp->tcp_header_len);
0c54b85f
IJ
587 else
588 return pktsize;
589}
1da177e4 590
17b085ea 591/* tcp.c */
0df48c26 592void tcp_get_info(struct sock *, struct tcp_info *);
1da177e4
LT
593
594/* Read 'sendfile()'-style from a TCP socket */
5c9f3023
JP
595int tcp_read_sock(struct sock *sk, read_descriptor_t *desc,
596 sk_read_actor_t recv_actor);
1da177e4 597
5c9f3023 598void tcp_initialize_rcv_mss(struct sock *sk);
1da177e4 599
5c9f3023
JP
600int tcp_mtu_to_mss(struct sock *sk, int pmtu);
601int tcp_mss_to_mtu(struct sock *sk, int mss);
602void tcp_mtup_init(struct sock *sk);
603void tcp_init_buffer_space(struct sock *sk);
5d424d5a 604
f1ecd5d9
DL
605static inline void tcp_bound_rto(const struct sock *sk)
606{
607 if (inet_csk(sk)->icsk_rto > TCP_RTO_MAX)
608 inet_csk(sk)->icsk_rto = TCP_RTO_MAX;
609}
610
611static inline u32 __tcp_set_rto(const struct tcp_sock *tp)
612{
740b0f18 613 return usecs_to_jiffies((tp->srtt_us >> 3) + tp->rttvar_us);
f1ecd5d9
DL
614}
615
31770e34
FW
616static inline void __tcp_fast_path_on(struct tcp_sock *tp, u32 snd_wnd)
617{
618 tp->pred_flags = htonl((tp->tcp_header_len << 26) |
619 ntohl(TCP_FLAG_ACK) |
620 snd_wnd);
621}
622
623static inline void tcp_fast_path_on(struct tcp_sock *tp)
624{
625 __tcp_fast_path_on(tp, tp->snd_wnd >> tp->rx_opt.snd_wscale);
626}
627
628static inline void tcp_fast_path_check(struct sock *sk)
629{
630 struct tcp_sock *tp = tcp_sk(sk);
631
632 if (RB_EMPTY_ROOT(&tp->out_of_order_queue) &&
633 tp->rcv_wnd &&
634 atomic_read(&sk->sk_rmem_alloc) < sk->sk_rcvbuf &&
635 !tp->urg_data)
636 tcp_fast_path_on(tp);
637}
638
0c266898
SS
639/* Compute the actual rto_min value */
640static inline u32 tcp_rto_min(struct sock *sk)
641{
cf533ea5 642 const struct dst_entry *dst = __sk_dst_get(sk);
0c266898
SS
643 u32 rto_min = TCP_RTO_MIN;
644
645 if (dst && dst_metric_locked(dst, RTAX_RTO_MIN))
646 rto_min = dst_metric_rtt(dst, RTAX_RTO_MIN);
647 return rto_min;
648}
649
740b0f18
ED
650static inline u32 tcp_rto_min_us(struct sock *sk)
651{
652 return jiffies_to_usecs(tcp_rto_min(sk));
653}
654
81164413
DB
655static inline bool tcp_ca_dst_locked(const struct dst_entry *dst)
656{
657 return dst_metric_locked(dst, RTAX_CC_ALGO);
658}
659
f6722583
YC
660/* Minimum RTT in usec. ~0 means not available. */
661static inline u32 tcp_min_rtt(const struct tcp_sock *tp)
662{
64033892 663 return minmax_get(&tp->rtt_min);
f6722583
YC
664}
665
1da177e4
LT
666/* Compute the actual receive window we are currently advertising.
667 * Rcv_nxt can be after the window if our peer push more data
668 * than the offered window.
669 */
40efc6fa 670static inline u32 tcp_receive_window(const struct tcp_sock *tp)
1da177e4
LT
671{
672 s32 win = tp->rcv_wup + tp->rcv_wnd - tp->rcv_nxt;
673
674 if (win < 0)
675 win = 0;
676 return (u32) win;
677}
678
679/* Choose a new window, without checks for shrinking, and without
680 * scaling applied to the result. The caller does these things
681 * if necessary. This is a "raw" window selection.
682 */
5c9f3023 683u32 __tcp_select_window(struct sock *sk);
1da177e4 684
ee995283
PE
685void tcp_send_window_probe(struct sock *sk);
686
ec66eda8
ED
687/* TCP uses 32bit jiffies to save some space.
688 * Note that this is different from tcp_time_stamp, which
689 * historically has been the same until linux-4.13.
690 */
691#define tcp_jiffies32 ((u32)jiffies)
692
9a568de4
ED
693/*
694 * Deliver a 32bit value for TCP timestamp option (RFC 7323)
695 * It is no longer tied to jiffies, but to 1 ms clock.
696 * Note: double check if you want to use tcp_jiffies32 instead of this.
697 */
698#define TCP_TS_HZ 1000
699
700static inline u64 tcp_clock_ns(void)
701{
702 return local_clock();
703}
704
705static inline u64 tcp_clock_us(void)
706{
707 return div_u64(tcp_clock_ns(), NSEC_PER_USEC);
708}
709
710/* This should only be used in contexts where tp->tcp_mstamp is up to date */
711static inline u32 tcp_time_stamp(const struct tcp_sock *tp)
712{
713 return div_u64(tp->tcp_mstamp, USEC_PER_SEC / TCP_TS_HZ);
714}
715
716/* Could use tcp_clock_us() / 1000, but this version uses a single divide */
717static inline u32 tcp_time_stamp_raw(void)
718{
719 return div_u64(tcp_clock_ns(), NSEC_PER_SEC / TCP_TS_HZ);
720}
721
722
723/* Refresh 1us clock of a TCP socket,
724 * ensuring monotically increasing values.
1da177e4 725 */
9a568de4
ED
726static inline void tcp_mstamp_refresh(struct tcp_sock *tp)
727{
728 u64 val = tcp_clock_us();
729
730 if (val > tp->tcp_mstamp)
731 tp->tcp_mstamp = val;
732}
733
734static inline u32 tcp_stamp_us_delta(u64 t1, u64 t0)
735{
736 return max_t(s64, t1 - t0, 0);
737}
1da177e4 738
7faee5c0
ED
739static inline u32 tcp_skb_timestamp(const struct sk_buff *skb)
740{
9a568de4 741 return div_u64(skb->skb_mstamp, USEC_PER_SEC / TCP_TS_HZ);
7faee5c0
ED
742}
743
744
a3433f35
CG
745#define tcp_flag_byte(th) (((u_int8_t *)th)[13])
746
747#define TCPHDR_FIN 0x01
748#define TCPHDR_SYN 0x02
749#define TCPHDR_RST 0x04
750#define TCPHDR_PSH 0x08
751#define TCPHDR_ACK 0x10
752#define TCPHDR_URG 0x20
753#define TCPHDR_ECE 0x40
754#define TCPHDR_CWR 0x80
755
49213555
DB
756#define TCPHDR_SYN_ECN (TCPHDR_SYN | TCPHDR_ECE | TCPHDR_CWR)
757
caa20d9a 758/* This is what the send packet queuing engine uses to pass
f86586fa
ED
759 * TCP per-packet control information to the transmission code.
760 * We also store the host-order sequence numbers in here too.
761 * This is 44 bytes if IPV6 is enabled.
762 * If this grows please adjust skbuff.h:skbuff->cb[xxx] size appropriately.
1da177e4
LT
763 */
764struct tcp_skb_cb {
1da177e4
LT
765 __u32 seq; /* Starting sequence number */
766 __u32 end_seq; /* SEQ + FIN + SYN + datalen */
cd7d8498
ED
767 union {
768 /* Note : tcp_tw_isn is used in input path only
769 * (isn chosen by tcp_timewait_state_process())
770 *
f69ad292
ED
771 * tcp_gso_segs/size are used in write queue only,
772 * cf tcp_skb_pcount()/tcp_skb_mss()
cd7d8498
ED
773 */
774 __u32 tcp_tw_isn;
f69ad292
ED
775 struct {
776 u16 tcp_gso_segs;
777 u16 tcp_gso_size;
778 };
cd7d8498 779 };
4de075e0 780 __u8 tcp_flags; /* TCP header flags. (tcp[13]) */
f4f9f6e7 781
713bafea 782 __u8 sacked; /* State flags for SACK. */
1da177e4
LT
783#define TCPCB_SACKED_ACKED 0x01 /* SKB ACK'd by a SACK block */
784#define TCPCB_SACKED_RETRANS 0x02 /* SKB retransmitted */
785#define TCPCB_LOST 0x04 /* SKB is lost */
786#define TCPCB_TAGBITS 0x07 /* All tag bits */
9d186cac 787#define TCPCB_REPAIRED 0x10 /* SKB repaired (no skb_mstamp) */
1da177e4 788#define TCPCB_EVER_RETRANS 0x80 /* Ever retransmitted frame */
9d186cac
AV
789#define TCPCB_RETRANS (TCPCB_SACKED_RETRANS|TCPCB_EVER_RETRANS| \
790 TCPCB_REPAIRED)
1da177e4 791
f4f9f6e7 792 __u8 ip_dsfield; /* IPv4 tos or IPv6 dsfield */
6b084928 793 __u8 txstamp_ack:1, /* Record TX timestamp for ack? */
c134ecb8 794 eor:1, /* Is skb MSG_EOR marked? */
98aaa913
MM
795 has_rxtstamp:1, /* SKB has a RX timestamp */
796 unused:5;
1da177e4 797 __u32 ack_seq; /* Sequence number ACK'd */
971f10ec 798 union {
b75803d5 799 struct {
b9f64820 800 /* There is space for up to 24 bytes */
d7722e85
SHY
801 __u32 in_flight:30,/* Bytes in flight at transmit */
802 is_app_limited:1, /* cwnd not fully used? */
803 unused:1;
b9f64820
YC
804 /* pkts S/ACKed so far upon tx of skb, incl retrans: */
805 __u32 delivered;
806 /* start of send pipeline phase */
9a568de4 807 u64 first_tx_mstamp;
b9f64820 808 /* when we reached the "delivered" count */
9a568de4 809 u64 delivered_mstamp;
b75803d5
LB
810 } tx; /* only used for outgoing skbs */
811 union {
812 struct inet_skb_parm h4;
971f10ec 813#if IS_ENABLED(CONFIG_IPV6)
b75803d5 814 struct inet6_skb_parm h6;
971f10ec 815#endif
b75803d5 816 } header; /* For incoming skbs */
34f79502
JF
817 struct {
818 __u32 key;
819 __u32 flags;
820 struct bpf_map *map;
8108a775 821 void *data_end;
34f79502 822 } bpf;
b75803d5 823 };
1da177e4
LT
824};
825
826#define TCP_SKB_CB(__skb) ((struct tcp_skb_cb *)&((__skb)->cb[0]))
827
870c3151 828
815afe17 829#if IS_ENABLED(CONFIG_IPV6)
870c3151
ED
830/* This is the variant of inet6_iif() that must be used by TCP,
831 * as TCP moves IP6CB into a different location in skb->cb[]
832 */
833static inline int tcp_v6_iif(const struct sk_buff *skb)
2beb8c20
DA
834{
835 return TCP_SKB_CB(skb)->header.h6.iif;
836}
837
838static inline int tcp_v6_iif_l3_slave(const struct sk_buff *skb)
870c3151 839{
a04a480d 840 bool l3_slave = ipv6_l3mdev_skb(TCP_SKB_CB(skb)->header.h6.flags);
74b20582
DA
841
842 return l3_slave ? skb->skb_iif : TCP_SKB_CB(skb)->header.h6.iif;
870c3151 843}
4297a0ef
DA
844
845/* TCP_SKB_CB reference means this can not be used from early demux */
846static inline int tcp_v6_sdif(const struct sk_buff *skb)
847{
848#if IS_ENABLED(CONFIG_NET_L3_MASTER_DEV)
849 if (skb && ipv6_l3mdev_skb(TCP_SKB_CB(skb)->header.h6.flags))
850 return TCP_SKB_CB(skb)->header.h6.iif;
851#endif
852 return 0;
853}
815afe17 854#endif
870c3151 855
a04a480d
DA
856static inline bool inet_exact_dif_match(struct net *net, struct sk_buff *skb)
857{
858#if IS_ENABLED(CONFIG_NET_L3_MASTER_DEV)
859 if (!net->ipv4.sysctl_tcp_l3mdev_accept &&
b4d1605a 860 skb && ipv4_l3mdev_skb(IPCB(skb)->flags))
a04a480d
DA
861 return true;
862#endif
863 return false;
864}
865
3fa6f616
DA
866/* TCP_SKB_CB reference means this can not be used from early demux */
867static inline int tcp_v4_sdif(struct sk_buff *skb)
868{
869#if IS_ENABLED(CONFIG_NET_L3_MASTER_DEV)
870 if (skb && ipv4_l3mdev_skb(TCP_SKB_CB(skb)->header.h4.flags))
871 return TCP_SKB_CB(skb)->header.h4.iif;
872#endif
873 return 0;
874}
875
1da177e4
LT
876/* Due to TSO, an SKB can be composed of multiple actual
877 * packets. To keep these tracked properly, we use this.
bd14b1b2 878 */
1da177e4 879static inline int tcp_skb_pcount(const struct sk_buff *skb)
bd14b1b2 880{
cd7d8498
ED
881 return TCP_SKB_CB(skb)->tcp_gso_segs;
882}
bd14b1b2 883
cd7d8498
ED
884static inline void tcp_skb_pcount_set(struct sk_buff *skb, int segs)
885{
886 TCP_SKB_CB(skb)->tcp_gso_segs = segs;
bd14b1b2
ED
887}
888
cd7d8498 889static inline void tcp_skb_pcount_add(struct sk_buff *skb, int segs)
1da177e4 890{
cd7d8498 891 TCP_SKB_CB(skb)->tcp_gso_segs += segs;
1da177e4
LT
892}
893
f69ad292 894/* This is valid iff skb is in write queue and tcp_skb_pcount() > 1. */
1da177e4
LT
895static inline int tcp_skb_mss(const struct sk_buff *skb)
896{
f69ad292 897 return TCP_SKB_CB(skb)->tcp_gso_size;
1da177e4
LT
898}
899
c134ecb8
MKL
900static inline bool tcp_skb_can_collapse_to(const struct sk_buff *skb)
901{
902 return likely(!TCP_SKB_CB(skb)->eor);
903}
904
317a76f9
SH
905/* Events passed to congestion control interface */
906enum tcp_ca_event {
907 CA_EVENT_TX_START, /* first transmit when no packets in flight */
908 CA_EVENT_CWND_RESTART, /* congestion window restart */
909 CA_EVENT_COMPLETE_CWR, /* end of congestion recovery */
317a76f9 910 CA_EVENT_LOSS, /* loss timeout */
9890092e
FW
911 CA_EVENT_ECN_NO_CE, /* ECT set, but not CE marked */
912 CA_EVENT_ECN_IS_CE, /* received CE marked IP packet */
7354c8c3
FW
913};
914
9890092e 915/* Information about inbound ACK, passed to cong_ops->in_ack_event() */
7354c8c3 916enum tcp_ca_ack_event_flags {
c1d2b4c3
FW
917 CA_ACK_SLOWPATH = (1 << 0), /* In slow path processing */
918 CA_ACK_WIN_UPDATE = (1 << 1), /* ACK updated window */
919 CA_ACK_ECE = (1 << 2), /* ECE bit is set on ack */
317a76f9
SH
920};
921
922/*
923 * Interface for adding new TCP congestion control handlers
924 */
925#define TCP_CA_NAME_MAX 16
3ff825b2
SH
926#define TCP_CA_MAX 128
927#define TCP_CA_BUF_MAX (TCP_CA_NAME_MAX*TCP_CA_MAX)
928
c5c6a8ab
DB
929#define TCP_CA_UNSPEC 0
930
30e502a3 931/* Algorithm can be set on socket without CAP_NET_ADMIN privileges */
164891aa 932#define TCP_CONG_NON_RESTRICTED 0x1
30e502a3
DB
933/* Requires ECN/ECT set on all packets */
934#define TCP_CONG_NEEDS_ECN 0x2
164891aa 935
64f40ff5
ED
936union tcp_cc_info;
937
756ee172
LB
938struct ack_sample {
939 u32 pkts_acked;
940 s32 rtt_us;
6f094b9e 941 u32 in_flight;
756ee172
LB
942};
943
b9f64820
YC
944/* A rate sample measures the number of (original/retransmitted) data
945 * packets delivered "delivered" over an interval of time "interval_us".
946 * The tcp_rate.c code fills in the rate sample, and congestion
947 * control modules that define a cong_control function to run at the end
948 * of ACK processing can optionally chose to consult this sample when
949 * setting cwnd and pacing rate.
950 * A sample is invalid if "delivered" or "interval_us" is negative.
951 */
952struct rate_sample {
9a568de4 953 u64 prior_mstamp; /* starting timestamp for interval */
b9f64820
YC
954 u32 prior_delivered; /* tp->delivered at "prior_mstamp" */
955 s32 delivered; /* number of packets delivered over interval */
956 long interval_us; /* time for tp->delivered to incr "delivered" */
957 long rtt_us; /* RTT of last (S)ACKed packet (or -1) */
958 int losses; /* number of packets marked lost upon ACK */
959 u32 acked_sacked; /* number of packets newly (S)ACKed upon ACK */
960 u32 prior_in_flight; /* in flight before this ACK */
d7722e85 961 bool is_app_limited; /* is sample from packet with bubble in pipe? */
b9f64820
YC
962 bool is_retrans; /* is sample from retransmission? */
963};
964
317a76f9
SH
965struct tcp_congestion_ops {
966 struct list_head list;
c5c6a8ab
DB
967 u32 key;
968 u32 flags;
317a76f9
SH
969
970 /* initialize private data (optional) */
6687e988 971 void (*init)(struct sock *sk);
317a76f9 972 /* cleanup private data (optional) */
6687e988 973 void (*release)(struct sock *sk);
317a76f9
SH
974
975 /* return slow start threshold (required) */
6687e988 976 u32 (*ssthresh)(struct sock *sk);
317a76f9 977 /* do new cwnd calculation (required) */
24901551 978 void (*cong_avoid)(struct sock *sk, u32 ack, u32 acked);
317a76f9 979 /* call before changing ca_state (optional) */
6687e988 980 void (*set_state)(struct sock *sk, u8 new_state);
317a76f9 981 /* call when cwnd event occurs (optional) */
6687e988 982 void (*cwnd_event)(struct sock *sk, enum tcp_ca_event ev);
7354c8c3
FW
983 /* call when ack arrives (optional) */
984 void (*in_ack_event)(struct sock *sk, u32 flags);
1e0ce2a1 985 /* new value of cwnd after loss (required) */
6687e988 986 u32 (*undo_cwnd)(struct sock *sk);
317a76f9 987 /* hook for packet ack accounting (optional) */
756ee172 988 void (*pkts_acked)(struct sock *sk, const struct ack_sample *sample);
ed6e7268
NC
989 /* suggest number of segments for each skb to transmit (optional) */
990 u32 (*tso_segs_goal)(struct sock *sk);
77bfc174
YC
991 /* returns the multiplier used in tcp_sndbuf_expand (optional) */
992 u32 (*sndbuf_expand)(struct sock *sk);
c0402760
YC
993 /* call when packets are delivered to update cwnd and pacing rate,
994 * after all the ca_state processing. (optional)
995 */
996 void (*cong_control)(struct sock *sk, const struct rate_sample *rs);
73c1f4a0 997 /* get info for inet_diag (optional) */
64f40ff5
ED
998 size_t (*get_info)(struct sock *sk, u32 ext, int *attr,
999 union tcp_cc_info *info);
317a76f9
SH
1000
1001 char name[TCP_CA_NAME_MAX];
1002 struct module *owner;
1003};
1004
5c9f3023
JP
1005int tcp_register_congestion_control(struct tcp_congestion_ops *type);
1006void tcp_unregister_congestion_control(struct tcp_congestion_ops *type);
317a76f9 1007
55d8694f 1008void tcp_assign_congestion_control(struct sock *sk);
5c9f3023
JP
1009void tcp_init_congestion_control(struct sock *sk);
1010void tcp_cleanup_congestion_control(struct sock *sk);
6670e152
SH
1011int tcp_set_default_congestion_control(struct net *net, const char *name);
1012void tcp_get_default_congestion_control(struct net *net, char *name);
5c9f3023
JP
1013void tcp_get_available_congestion_control(char *buf, size_t len);
1014void tcp_get_allowed_congestion_control(char *buf, size_t len);
1015int tcp_set_allowed_congestion_control(char *allowed);
dc3aab78
ED
1016int tcp_set_congestion_control(struct sock *sk, const char *name, bool load,
1017 bool reinit, bool cap_net_admin);
e73ebb08
NC
1018u32 tcp_slow_start(struct tcp_sock *tp, u32 acked);
1019void tcp_cong_avoid_ai(struct tcp_sock *tp, u32 w, u32 acked);
317a76f9 1020
5c9f3023 1021u32 tcp_reno_ssthresh(struct sock *sk);
e9799183 1022u32 tcp_reno_undo_cwnd(struct sock *sk);
24901551 1023void tcp_reno_cong_avoid(struct sock *sk, u32 ack, u32 acked);
a8acfbac 1024extern struct tcp_congestion_ops tcp_reno;
317a76f9 1025
c5c6a8ab 1026struct tcp_congestion_ops *tcp_ca_find_key(u32 key);
6670e152 1027u32 tcp_ca_get_key_by_name(struct net *net, const char *name, bool *ecn_ca);
ea697639 1028#ifdef CONFIG_INET
c5c6a8ab 1029char *tcp_ca_get_name_by_key(u32 key, char *buffer);
ea697639
DB
1030#else
1031static inline char *tcp_ca_get_name_by_key(u32 key, char *buffer)
1032{
1033 return NULL;
1034}
1035#endif
c5c6a8ab 1036
30e502a3
DB
1037static inline bool tcp_ca_needs_ecn(const struct sock *sk)
1038{
1039 const struct inet_connection_sock *icsk = inet_csk(sk);
1040
1041 return icsk->icsk_ca_ops->flags & TCP_CONG_NEEDS_ECN;
1042}
1043
6687e988 1044static inline void tcp_set_ca_state(struct sock *sk, const u8 ca_state)
317a76f9 1045{
6687e988
ACM
1046 struct inet_connection_sock *icsk = inet_csk(sk);
1047
1048 if (icsk->icsk_ca_ops->set_state)
1049 icsk->icsk_ca_ops->set_state(sk, ca_state);
1050 icsk->icsk_ca_state = ca_state;
317a76f9
SH
1051}
1052
6687e988 1053static inline void tcp_ca_event(struct sock *sk, const enum tcp_ca_event event)
317a76f9 1054{
6687e988
ACM
1055 const struct inet_connection_sock *icsk = inet_csk(sk);
1056
1057 if (icsk->icsk_ca_ops->cwnd_event)
1058 icsk->icsk_ca_ops->cwnd_event(sk, event);
317a76f9
SH
1059}
1060
b9f64820
YC
1061/* From tcp_rate.c */
1062void tcp_rate_skb_sent(struct sock *sk, struct sk_buff *skb);
1063void tcp_rate_skb_delivered(struct sock *sk, struct sk_buff *skb,
1064 struct rate_sample *rs);
1065void tcp_rate_gen(struct sock *sk, u32 delivered, u32 lost,
d4761754 1066 bool is_sack_reneg, struct rate_sample *rs);
d7722e85 1067void tcp_rate_check_app_limited(struct sock *sk);
b9f64820 1068
e60402d0
IJ
1069/* These functions determine how the current flow behaves in respect of SACK
1070 * handling. SACK is negotiated with the peer, and therefore it can vary
1071 * between different flows.
1072 *
1073 * tcp_is_sack - SACK enabled
1074 * tcp_is_reno - No SACK
e60402d0
IJ
1075 */
1076static inline int tcp_is_sack(const struct tcp_sock *tp)
1077{
1078 return tp->rx_opt.sack_ok;
1079}
1080
a2a385d6 1081static inline bool tcp_is_reno(const struct tcp_sock *tp)
e60402d0
IJ
1082{
1083 return !tcp_is_sack(tp);
1084}
1085
83ae4088
IJ
1086static inline unsigned int tcp_left_out(const struct tcp_sock *tp)
1087{
1088 return tp->sacked_out + tp->lost_out;
1089}
1090
1da177e4
LT
1091/* This determines how many packets are "in the network" to the best
1092 * of our knowledge. In many cases it is conservative, but where
1093 * detailed information is available from the receiver (via SACK
1094 * blocks etc.) we can make more aggressive calculations.
1095 *
1096 * Use this for decisions involving congestion control, use just
1097 * tp->packets_out to determine if the send queue is empty or not.
1098 *
1099 * Read this equation as:
1100 *
1101 * "Packets sent once on transmission queue" MINUS
1102 * "Packets left network, but not honestly ACKed yet" PLUS
1103 * "Packets fast retransmitted"
1104 */
40efc6fa 1105static inline unsigned int tcp_packets_in_flight(const struct tcp_sock *tp)
1da177e4 1106{
83ae4088 1107 return tp->packets_out - tcp_left_out(tp) + tp->retrans_out;
1da177e4
LT
1108}
1109
0b6a05c1
IJ
1110#define TCP_INFINITE_SSTHRESH 0x7fffffff
1111
071d5080
YC
1112static inline bool tcp_in_slow_start(const struct tcp_sock *tp)
1113{
76174004 1114 return tp->snd_cwnd < tp->snd_ssthresh;
071d5080
YC
1115}
1116
0b6a05c1
IJ
1117static inline bool tcp_in_initial_slowstart(const struct tcp_sock *tp)
1118{
1119 return tp->snd_ssthresh >= TCP_INFINITE_SSTHRESH;
1120}
1121
684bad11
YC
1122static inline bool tcp_in_cwnd_reduction(const struct sock *sk)
1123{
1124 return (TCPF_CA_CWR | TCPF_CA_Recovery) &
1125 (1 << inet_csk(sk)->icsk_ca_state);
1126}
1127
1da177e4 1128/* If cwnd > ssthresh, we may raise ssthresh to be half-way to cwnd.
684bad11 1129 * The exception is cwnd reduction phase, when cwnd is decreasing towards
1da177e4
LT
1130 * ssthresh.
1131 */
6687e988 1132static inline __u32 tcp_current_ssthresh(const struct sock *sk)
1da177e4 1133{
6687e988 1134 const struct tcp_sock *tp = tcp_sk(sk);
cf533ea5 1135
684bad11 1136 if (tcp_in_cwnd_reduction(sk))
1da177e4
LT
1137 return tp->snd_ssthresh;
1138 else
1139 return max(tp->snd_ssthresh,
1140 ((tp->snd_cwnd >> 1) +
1141 (tp->snd_cwnd >> 2)));
1142}
1143
b9c4595b
IJ
1144/* Use define here intentionally to get WARN_ON location shown at the caller */
1145#define tcp_verify_left_out(tp) WARN_ON(tcp_left_out(tp) > tp->packets_out)
1da177e4 1146
5ee2c941 1147void tcp_enter_cwr(struct sock *sk);
5c9f3023 1148__u32 tcp_init_cwnd(const struct tcp_sock *tp, const struct dst_entry *dst);
1da177e4 1149
6b5a5c0d
NC
1150/* The maximum number of MSS of available cwnd for which TSO defers
1151 * sending if not using sysctl_tcp_tso_win_divisor.
1152 */
1153static inline __u32 tcp_max_tso_deferred_mss(const struct tcp_sock *tp)
1154{
1155 return 3;
1156}
1157
90840def
IJ
1158/* Returns end sequence number of the receiver's advertised window */
1159static inline u32 tcp_wnd_end(const struct tcp_sock *tp)
1160{
1161 return tp->snd_una + tp->snd_wnd;
1162}
e114a710
ED
1163
1164/* We follow the spirit of RFC2861 to validate cwnd but implement a more
1165 * flexible approach. The RFC suggests cwnd should not be raised unless
ca8a2263
NC
1166 * it was fully used previously. And that's exactly what we do in
1167 * congestion avoidance mode. But in slow start we allow cwnd to grow
1168 * as long as the application has used half the cwnd.
e114a710
ED
1169 * Example :
1170 * cwnd is 10 (IW10), but application sends 9 frames.
1171 * We allow cwnd to reach 18 when all frames are ACKed.
1172 * This check is safe because it's as aggressive as slow start which already
1173 * risks 100% overshoot. The advantage is that we discourage application to
1174 * either send more filler packets or data to artificially blow up the cwnd
1175 * usage, and allow application-limited process to probe bw more aggressively.
e114a710 1176 */
24901551 1177static inline bool tcp_is_cwnd_limited(const struct sock *sk)
e114a710
ED
1178{
1179 const struct tcp_sock *tp = tcp_sk(sk);
1180
ca8a2263 1181 /* If in slow start, ensure cwnd grows to twice what was ACKed. */
071d5080 1182 if (tcp_in_slow_start(tp))
ca8a2263
NC
1183 return tp->snd_cwnd < 2 * tp->max_packets_out;
1184
1185 return tp->is_cwnd_limited;
e114a710 1186}
f4805ede 1187
21c8fe99
ED
1188/* Something is really bad, we could not queue an additional packet,
1189 * because qdisc is full or receiver sent a 0 window.
1190 * We do not want to add fuel to the fire, or abort too early,
1191 * so make sure the timer we arm now is at least 200ms in the future,
1192 * regardless of current icsk_rto value (as it could be ~2ms)
1193 */
1194static inline unsigned long tcp_probe0_base(const struct sock *sk)
1da177e4 1195{
21c8fe99
ED
1196 return max_t(unsigned long, inet_csk(sk)->icsk_rto, TCP_RTO_MIN);
1197}
9e412ba7 1198
21c8fe99
ED
1199/* Variant of inet_csk_rto_backoff() used for zero window probes */
1200static inline unsigned long tcp_probe0_when(const struct sock *sk,
1201 unsigned long max_when)
1202{
1203 u64 when = (u64)tcp_probe0_base(sk) << inet_csk(sk)->icsk_backoff;
1204
1205 return (unsigned long)min_t(u64, when, max_when);
1206}
1207
1208static inline void tcp_check_probe_timer(struct sock *sk)
1209{
1210 if (!tcp_sk(sk)->packets_out && !inet_csk(sk)->icsk_pending)
3f421baa 1211 inet_csk_reset_xmit_timer(sk, ICSK_TIME_PROBE0,
21c8fe99 1212 tcp_probe0_base(sk), TCP_RTO_MAX);
1da177e4
LT
1213}
1214
ee7537b6 1215static inline void tcp_init_wl(struct tcp_sock *tp, u32 seq)
1da177e4
LT
1216{
1217 tp->snd_wl1 = seq;
1218}
1219
ee7537b6 1220static inline void tcp_update_wl(struct tcp_sock *tp, u32 seq)
1da177e4
LT
1221{
1222 tp->snd_wl1 = seq;
1223}
1224
1da177e4
LT
1225/*
1226 * Calculate(/check) TCP checksum
1227 */
ba7808ea
FD
1228static inline __sum16 tcp_v4_check(int len, __be32 saddr,
1229 __be32 daddr, __wsum base)
1da177e4
LT
1230{
1231 return csum_tcpudp_magic(saddr,daddr,len,IPPROTO_TCP,base);
1232}
1233
b51655b9 1234static inline __sum16 __tcp_checksum_complete(struct sk_buff *skb)
1da177e4 1235{
fb286bb2 1236 return __skb_checksum_complete(skb);
1da177e4
LT
1237}
1238
a2a385d6 1239static inline bool tcp_checksum_complete(struct sk_buff *skb)
1da177e4 1240{
60476372 1241 return !skb_csum_unnecessary(skb) &&
1da177e4
LT
1242 __tcp_checksum_complete(skb);
1243}
1244
c9c33212 1245bool tcp_add_backlog(struct sock *sk, struct sk_buff *skb);
ac6e7800 1246int tcp_filter(struct sock *sk, struct sk_buff *skb);
1da177e4
LT
1247
1248#undef STATE_TRACE
1249
1250#ifdef STATE_TRACE
1251static const char *statename[]={
1252 "Unused","Established","Syn Sent","Syn Recv",
1253 "Fin Wait 1","Fin Wait 2","Time Wait", "Close",
1254 "Close Wait","Last ACK","Listen","Closing"
1255};
1256#endif
5c9f3023 1257void tcp_set_state(struct sock *sk, int state);
1da177e4 1258
5c9f3023 1259void tcp_done(struct sock *sk);
1da177e4 1260
c1e64e29
LC
1261int tcp_abort(struct sock *sk, int err);
1262
40efc6fa 1263static inline void tcp_sack_reset(struct tcp_options_received *rx_opt)
1da177e4
LT
1264{
1265 rx_opt->dsack = 0;
1da177e4
LT
1266 rx_opt->num_sacks = 0;
1267}
1268
5c9f3023 1269u32 tcp_default_init_rwnd(u32 mss);
6f021c62
ED
1270void tcp_cwnd_restart(struct sock *sk, s32 delta);
1271
1272static inline void tcp_slow_start_after_idle_check(struct sock *sk)
1273{
1b1fc3fd 1274 const struct tcp_congestion_ops *ca_ops = inet_csk(sk)->icsk_ca_ops;
6f021c62
ED
1275 struct tcp_sock *tp = tcp_sk(sk);
1276 s32 delta;
1277
b510f0d2 1278 if (!sock_net(sk)->ipv4.sysctl_tcp_slow_start_after_idle || tp->packets_out ||
1b1fc3fd 1279 ca_ops->cong_control)
6f021c62 1280 return;
d635fbe2 1281 delta = tcp_jiffies32 - tp->lsndtime;
6f021c62
ED
1282 if (delta > inet_csk(sk)->icsk_rto)
1283 tcp_cwnd_restart(sk, delta);
1284}
85f16525 1285
1da177e4 1286/* Determine a window scaling and initial window to offer. */
ceef9ab6
ED
1287void tcp_select_initial_window(const struct sock *sk, int __space,
1288 __u32 mss, __u32 *rcv_wnd,
5c9f3023
JP
1289 __u32 *window_clamp, int wscale_ok,
1290 __u8 *rcv_wscale, __u32 init_rcv_wnd);
1da177e4 1291
94f0893e 1292static inline int tcp_win_from_space(const struct sock *sk, int space)
1da177e4 1293{
94f0893e 1294 int tcp_adv_win_scale = sock_net(sk)->ipv4.sysctl_tcp_adv_win_scale;
c4836742
GF
1295
1296 return tcp_adv_win_scale <= 0 ?
1297 (space>>(-tcp_adv_win_scale)) :
1298 space - (space>>tcp_adv_win_scale);
1da177e4
LT
1299}
1300
105970f6 1301/* Note: caller must be prepared to deal with negative returns */
1da177e4
LT
1302static inline int tcp_space(const struct sock *sk)
1303{
94f0893e 1304 return tcp_win_from_space(sk, sk->sk_rcvbuf -
1da177e4 1305 atomic_read(&sk->sk_rmem_alloc));
105970f6 1306}
1da177e4
LT
1307
1308static inline int tcp_full_space(const struct sock *sk)
1309{
94f0893e 1310 return tcp_win_from_space(sk, sk->sk_rcvbuf);
1da177e4
LT
1311}
1312
843f4a55 1313extern void tcp_openreq_init_rwin(struct request_sock *req,
b1964b5f
ED
1314 const struct sock *sk_listener,
1315 const struct dst_entry *dst);
843f4a55 1316
5c9f3023 1317void tcp_enter_memory_pressure(struct sock *sk);
06044751 1318void tcp_leave_memory_pressure(struct sock *sk);
1da177e4 1319
1da177e4
LT
1320static inline int keepalive_intvl_when(const struct tcp_sock *tp)
1321{
b840d15d
NB
1322 struct net *net = sock_net((struct sock *)tp);
1323
1324 return tp->keepalive_intvl ? : net->ipv4.sysctl_tcp_keepalive_intvl;
1da177e4
LT
1325}
1326
1327static inline int keepalive_time_when(const struct tcp_sock *tp)
1328{
13b287e8
NB
1329 struct net *net = sock_net((struct sock *)tp);
1330
1331 return tp->keepalive_time ? : net->ipv4.sysctl_tcp_keepalive_time;
1da177e4
LT
1332}
1333
df19a626
ED
1334static inline int keepalive_probes(const struct tcp_sock *tp)
1335{
9bd6861b
NB
1336 struct net *net = sock_net((struct sock *)tp);
1337
1338 return tp->keepalive_probes ? : net->ipv4.sysctl_tcp_keepalive_probes;
df19a626
ED
1339}
1340
6c37e5de
FL
1341static inline u32 keepalive_time_elapsed(const struct tcp_sock *tp)
1342{
1343 const struct inet_connection_sock *icsk = &tp->inet_conn;
1344
70eabf0e
ED
1345 return min_t(u32, tcp_jiffies32 - icsk->icsk_ack.lrcvtime,
1346 tcp_jiffies32 - tp->rcv_tstamp);
6c37e5de
FL
1347}
1348
463c84b9 1349static inline int tcp_fin_time(const struct sock *sk)
1da177e4 1350{
1e579caa 1351 int fin_timeout = tcp_sk(sk)->linger2 ? : sock_net(sk)->ipv4.sysctl_tcp_fin_timeout;
463c84b9 1352 const int rto = inet_csk(sk)->icsk_rto;
1da177e4 1353
463c84b9
ACM
1354 if (fin_timeout < (rto << 2) - (rto >> 1))
1355 fin_timeout = (rto << 2) - (rto >> 1);
1da177e4
LT
1356
1357 return fin_timeout;
1358}
1359
a2a385d6
ED
1360static inline bool tcp_paws_check(const struct tcp_options_received *rx_opt,
1361 int paws_win)
1da177e4 1362{
c887e6d2 1363 if ((s32)(rx_opt->ts_recent - rx_opt->rcv_tsval) <= paws_win)
a2a385d6 1364 return true;
c887e6d2 1365 if (unlikely(get_seconds() >= rx_opt->ts_recent_stamp + TCP_PAWS_24DAYS))
a2a385d6 1366 return true;
bc2ce894
ED
1367 /*
1368 * Some OSes send SYN and SYNACK messages with tsval=0 tsecr=0,
1369 * then following tcp messages have valid values. Ignore 0 value,
1370 * or else 'negative' tsval might forbid us to accept their packets.
1371 */
1372 if (!rx_opt->ts_recent)
a2a385d6
ED
1373 return true;
1374 return false;
c887e6d2
IJ
1375}
1376
a2a385d6
ED
1377static inline bool tcp_paws_reject(const struct tcp_options_received *rx_opt,
1378 int rst)
c887e6d2
IJ
1379{
1380 if (tcp_paws_check(rx_opt, 0))
a2a385d6 1381 return false;
1da177e4
LT
1382
1383 /* RST segments are not recommended to carry timestamp,
1384 and, if they do, it is recommended to ignore PAWS because
1385 "their cleanup function should take precedence over timestamps."
1386 Certainly, it is mistake. It is necessary to understand the reasons
1387 of this constraint to relax it: if peer reboots, clock may go
1388 out-of-sync and half-open connections will not be reset.
1389 Actually, the problem would be not existing if all
1390 the implementations followed draft about maintaining clock
1391 via reboots. Linux-2.2 DOES NOT!
1392
1393 However, we can relax time bounds for RST segments to MSL.
1394 */
9d729f72 1395 if (rst && get_seconds() >= rx_opt->ts_recent_stamp + TCP_PAWS_MSL)
a2a385d6
ED
1396 return false;
1397 return true;
1da177e4
LT
1398}
1399
7970ddc8
ED
1400bool tcp_oow_rate_limited(struct net *net, const struct sk_buff *skb,
1401 int mib_idx, u32 *last_oow_ack_time);
032ee423 1402
a9c19329 1403static inline void tcp_mib_init(struct net *net)
1da177e4
LT
1404{
1405 /* See RFC 2012 */
6aef70a8
ED
1406 TCP_ADD_STATS(net, TCP_MIB_RTOALGORITHM, 1);
1407 TCP_ADD_STATS(net, TCP_MIB_RTOMIN, TCP_RTO_MIN*1000/HZ);
1408 TCP_ADD_STATS(net, TCP_MIB_RTOMAX, TCP_RTO_MAX*1000/HZ);
1409 TCP_ADD_STATS(net, TCP_MIB_MAXCONN, -1);
1da177e4
LT
1410}
1411
5af4ec23 1412/* from STCP */
ef9da47c 1413static inline void tcp_clear_retrans_hints_partial(struct tcp_sock *tp)
0800f170 1414{
6a438bbe 1415 tp->lost_skb_hint = NULL;
ef9da47c
IJ
1416}
1417
1418static inline void tcp_clear_all_retrans_hints(struct tcp_sock *tp)
1419{
1420 tcp_clear_retrans_hints_partial(tp);
6a438bbe 1421 tp->retransmit_skb_hint = NULL;
b7689205
IJ
1422}
1423
a915da9b
ED
1424union tcp_md5_addr {
1425 struct in_addr a4;
1426#if IS_ENABLED(CONFIG_IPV6)
1427 struct in6_addr a6;
1428#endif
1429};
1430
cfb6eeb4
YH
1431/* - key database */
1432struct tcp_md5sig_key {
a915da9b 1433 struct hlist_node node;
cfb6eeb4 1434 u8 keylen;
a915da9b
ED
1435 u8 family; /* AF_INET or AF_INET6 */
1436 union tcp_md5_addr addr;
6797318e 1437 u8 prefixlen;
a915da9b
ED
1438 u8 key[TCP_MD5SIG_MAXKEYLEN];
1439 struct rcu_head rcu;
cfb6eeb4
YH
1440};
1441
1442/* - sock block */
1443struct tcp_md5sig_info {
a915da9b 1444 struct hlist_head head;
a8afca03 1445 struct rcu_head rcu;
cfb6eeb4
YH
1446};
1447
1448/* - pseudo header */
1449struct tcp4_pseudohdr {
1450 __be32 saddr;
1451 __be32 daddr;
1452 __u8 pad;
1453 __u8 protocol;
1454 __be16 len;
1455};
1456
1457struct tcp6_pseudohdr {
1458 struct in6_addr saddr;
1459 struct in6_addr daddr;
1460 __be32 len;
1461 __be32 protocol; /* including padding */
1462};
1463
1464union tcp_md5sum_block {
1465 struct tcp4_pseudohdr ip4;
dfd56b8b 1466#if IS_ENABLED(CONFIG_IPV6)
cfb6eeb4
YH
1467 struct tcp6_pseudohdr ip6;
1468#endif
1469};
1470
1471/* - pool: digest algorithm, hash description and scratch buffer */
1472struct tcp_md5sig_pool {
cf80e0e4 1473 struct ahash_request *md5_req;
19689e38 1474 void *scratch;
cfb6eeb4
YH
1475};
1476
cfb6eeb4 1477/* - functions */
39f8e58e
ED
1478int tcp_v4_md5_hash_skb(char *md5_hash, const struct tcp_md5sig_key *key,
1479 const struct sock *sk, const struct sk_buff *skb);
5c9f3023 1480int tcp_md5_do_add(struct sock *sk, const union tcp_md5_addr *addr,
6797318e
ID
1481 int family, u8 prefixlen, const u8 *newkey, u8 newkeylen,
1482 gfp_t gfp);
5c9f3023 1483int tcp_md5_do_del(struct sock *sk, const union tcp_md5_addr *addr,
6797318e 1484 int family, u8 prefixlen);
b83e3deb 1485struct tcp_md5sig_key *tcp_v4_md5_lookup(const struct sock *sk,
fd3a154a 1486 const struct sock *addr_sk);
cfb6eeb4 1487
9501f972 1488#ifdef CONFIG_TCP_MD5SIG
b83e3deb 1489struct tcp_md5sig_key *tcp_md5_do_lookup(const struct sock *sk,
5c9f3023
JP
1490 const union tcp_md5_addr *addr,
1491 int family);
a915da9b 1492#define tcp_twsk_md5_key(twsk) ((twsk)->tw_md5_key)
9501f972 1493#else
b83e3deb 1494static inline struct tcp_md5sig_key *tcp_md5_do_lookup(const struct sock *sk,
a915da9b
ED
1495 const union tcp_md5_addr *addr,
1496 int family)
1497{
1498 return NULL;
1499}
9501f972
YH
1500#define tcp_twsk_md5_key(twsk) NULL
1501#endif
1502
5c9f3023 1503bool tcp_alloc_md5sig_pool(void);
cfb6eeb4 1504
5c9f3023 1505struct tcp_md5sig_pool *tcp_get_md5sig_pool(void);
71cea17e
ED
1506static inline void tcp_put_md5sig_pool(void)
1507{
1508 local_bh_enable();
1509}
35790c04 1510
5c9f3023
JP
1511int tcp_md5_hash_skb_data(struct tcp_md5sig_pool *, const struct sk_buff *,
1512 unsigned int header_len);
1513int tcp_md5_hash_key(struct tcp_md5sig_pool *hp,
1514 const struct tcp_md5sig_key *key);
cfb6eeb4 1515
10467163 1516/* From tcp_fastopen.c */
5c9f3023
JP
1517void tcp_fastopen_cache_get(struct sock *sk, u16 *mss,
1518 struct tcp_fastopen_cookie *cookie, int *syn_loss,
1519 unsigned long *last_syn_loss);
1520void tcp_fastopen_cache_set(struct sock *sk, u16 mss,
2646c831
DL
1521 struct tcp_fastopen_cookie *cookie, bool syn_lost,
1522 u16 try_exp);
783237e8
YC
1523struct tcp_fastopen_request {
1524 /* Fast Open cookie. Size 0 means a cookie request */
1525 struct tcp_fastopen_cookie cookie;
1526 struct msghdr *data; /* data in MSG_FASTOPEN */
f5ddcbbb
ED
1527 size_t size;
1528 int copied; /* queued in tcp_connect() */
783237e8 1529};
783237e8 1530void tcp_free_fastopen_req(struct tcp_sock *tp);
1fba70e5 1531void tcp_fastopen_destroy_cipher(struct sock *sk);
43713848 1532void tcp_fastopen_ctx_destroy(struct net *net);
1fba70e5
YC
1533int tcp_fastopen_reset_cipher(struct net *net, struct sock *sk,
1534 void *key, unsigned int len);
61d2bcae 1535void tcp_fastopen_add_skb(struct sock *sk, struct sk_buff *skb);
7c85af88
ED
1536struct sock *tcp_try_fastopen(struct sock *sk, struct sk_buff *skb,
1537 struct request_sock *req,
71c02379
CP
1538 struct tcp_fastopen_cookie *foc,
1539 const struct dst_entry *dst);
43713848 1540void tcp_fastopen_init_key_once(struct net *net);
065263f4
WW
1541bool tcp_fastopen_cookie_check(struct sock *sk, u16 *mss,
1542 struct tcp_fastopen_cookie *cookie);
19f6d3f3 1543bool tcp_fastopen_defer_connect(struct sock *sk, int *err);
10467163
JC
1544#define TCP_FASTOPEN_KEY_LENGTH 16
1545
1546/* Fastopen key context */
1547struct tcp_fastopen_context {
7ae8639c
ED
1548 struct crypto_cipher *tfm;
1549 __u8 key[TCP_FASTOPEN_KEY_LENGTH];
1550 struct rcu_head rcu;
10467163
JC
1551};
1552
cf1ef3f0 1553extern unsigned int sysctl_tcp_fastopen_blackhole_timeout;
46c2fa39 1554void tcp_fastopen_active_disable(struct sock *sk);
cf1ef3f0
WW
1555bool tcp_fastopen_active_should_disable(struct sock *sk);
1556void tcp_fastopen_active_disable_ofo_check(struct sock *sk);
1557void tcp_fastopen_active_timeout_reset(void);
1558
05b055e8
FY
1559/* Latencies incurred by various limits for a sender. They are
1560 * chronograph-like stats that are mutually exclusive.
1561 */
1562enum tcp_chrono {
1563 TCP_CHRONO_UNSPEC,
1564 TCP_CHRONO_BUSY, /* Actively sending data (non-empty write queue) */
1565 TCP_CHRONO_RWND_LIMITED, /* Stalled by insufficient receive window */
1566 TCP_CHRONO_SNDBUF_LIMITED, /* Stalled by insufficient send buffer */
1567 __TCP_CHRONO_MAX,
1568};
1569
1570void tcp_chrono_start(struct sock *sk, const enum tcp_chrono type);
1571void tcp_chrono_stop(struct sock *sk, const enum tcp_chrono type);
1572
e2080072
ED
1573/* This helper is needed, because skb->tcp_tsorted_anchor uses
1574 * the same memory storage than skb->destructor/_skb_refdst
1575 */
1576static inline void tcp_skb_tsorted_anchor_cleanup(struct sk_buff *skb)
1577{
1578 skb->destructor = NULL;
1579 skb->_skb_refdst = 0UL;
1580}
1581
1582#define tcp_skb_tsorted_save(skb) { \
1583 unsigned long _save = skb->_skb_refdst; \
1584 skb->_skb_refdst = 0UL;
1585
1586#define tcp_skb_tsorted_restore(skb) \
1587 skb->_skb_refdst = _save; \
1588}
1589
ac3f09ba 1590void tcp_write_queue_purge(struct sock *sk);
fe067e8a 1591
75c119af
ED
1592static inline struct sk_buff *tcp_rtx_queue_head(const struct sock *sk)
1593{
1594 return skb_rb_first(&sk->tcp_rtx_queue);
1595}
1596
f5667634
ED
1597static inline struct sk_buff *tcp_rtx_queue_tail(const struct sock *sk)
1598{
1599 return skb_rb_last(&sk->tcp_rtx_queue);
1600}
1601
cf533ea5 1602static inline struct sk_buff *tcp_write_queue_head(const struct sock *sk)
fe067e8a 1603{
cd07a8ea 1604 return skb_peek(&sk->sk_write_queue);
fe067e8a
DM
1605}
1606
cf533ea5 1607static inline struct sk_buff *tcp_write_queue_tail(const struct sock *sk)
fe067e8a 1608{
cd07a8ea 1609 return skb_peek_tail(&sk->sk_write_queue);
fe067e8a
DM
1610}
1611
234b6860 1612#define tcp_for_write_queue_from_safe(skb, tmp, sk) \
cd07a8ea 1613 skb_queue_walk_from_safe(&(sk)->sk_write_queue, skb, tmp)
234b6860 1614
cf533ea5 1615static inline struct sk_buff *tcp_send_head(const struct sock *sk)
fe067e8a 1616{
75c119af 1617 return skb_peek(&sk->sk_write_queue);
fe067e8a
DM
1618}
1619
cd07a8ea
DM
1620static inline bool tcp_skb_is_last(const struct sock *sk,
1621 const struct sk_buff *skb)
1622{
1623 return skb_queue_is_last(&sk->sk_write_queue, skb);
1624}
1625
75c119af 1626static inline bool tcp_write_queue_empty(const struct sock *sk)
fe067e8a 1627{
75c119af
ED
1628 return skb_queue_empty(&sk->sk_write_queue);
1629}
1630
1631static inline bool tcp_rtx_queue_empty(const struct sock *sk)
1632{
1633 return RB_EMPTY_ROOT(&sk->tcp_rtx_queue);
1634}
1635
1636static inline bool tcp_rtx_and_write_queues_empty(const struct sock *sk)
1637{
1638 return tcp_rtx_queue_empty(sk) && tcp_write_queue_empty(sk);
fe067e8a
DM
1639}
1640
1641static inline void tcp_check_send_head(struct sock *sk, struct sk_buff *skb_unlinked)
1642{
75c119af 1643 if (tcp_write_queue_empty(sk))
0f87230d 1644 tcp_chrono_stop(sk, TCP_CHRONO_BUSY);
fe067e8a
DM
1645}
1646
fe067e8a
DM
1647static inline void __tcp_add_write_queue_tail(struct sock *sk, struct sk_buff *skb)
1648{
1649 __skb_queue_tail(&sk->sk_write_queue, skb);
1650}
1651
1652static inline void tcp_add_write_queue_tail(struct sock *sk, struct sk_buff *skb)
1653{
1654 __tcp_add_write_queue_tail(sk, skb);
1655
1656 /* Queue it, remembering where we must start sending. */
50895b9d 1657 if (sk->sk_write_queue.next == skb)
0f87230d 1658 tcp_chrono_start(sk, TCP_CHRONO_BUSY);
fe067e8a
DM
1659}
1660
43f59c89 1661/* Insert new before skb on the write queue of sk. */
fe067e8a
DM
1662static inline void tcp_insert_write_queue_before(struct sk_buff *new,
1663 struct sk_buff *skb,
1664 struct sock *sk)
1665{
43f59c89 1666 __skb_queue_before(&sk->sk_write_queue, skb, new);
fe067e8a
DM
1667}
1668
1669static inline void tcp_unlink_write_queue(struct sk_buff *skb, struct sock *sk)
1670{
4a269818 1671 tcp_skb_tsorted_anchor_cleanup(skb);
fe067e8a
DM
1672 __skb_unlink(skb, &sk->sk_write_queue);
1673}
1674
75c119af
ED
1675void tcp_rbtree_insert(struct rb_root *root, struct sk_buff *skb);
1676
1677static inline void tcp_rtx_queue_unlink(struct sk_buff *skb, struct sock *sk)
fe067e8a 1678{
75c119af
ED
1679 tcp_skb_tsorted_anchor_cleanup(skb);
1680 rb_erase(&skb->rbnode, &sk->tcp_rtx_queue);
1681}
1682
1683static inline void tcp_rtx_queue_unlink_and_free(struct sk_buff *skb, struct sock *sk)
1684{
1685 list_del(&skb->tcp_tsorted_anchor);
1686 tcp_rtx_queue_unlink(skb, sk);
1687 sk_wmem_free_skb(sk, skb);
fe067e8a
DM
1688}
1689
12d50c46
KK
1690static inline void tcp_push_pending_frames(struct sock *sk)
1691{
1692 if (tcp_send_head(sk)) {
1693 struct tcp_sock *tp = tcp_sk(sk);
1694
1695 __tcp_push_pending_frames(sk, tcp_current_mss(sk), tp->nonagle);
1696 }
1697}
1698
ecb97192
NC
1699/* Start sequence of the skb just after the highest skb with SACKed
1700 * bit, valid only if sacked_out > 0 or when the caller has ensured
1701 * validity by itself.
a47e5a98
IJ
1702 */
1703static inline u32 tcp_highest_sack_seq(struct tcp_sock *tp)
1704{
1705 if (!tp->sacked_out)
1706 return tp->snd_una;
6859d494
IJ
1707
1708 if (tp->highest_sack == NULL)
1709 return tp->snd_nxt;
1710
a47e5a98
IJ
1711 return TCP_SKB_CB(tp->highest_sack)->seq;
1712}
1713
6859d494
IJ
1714static inline void tcp_advance_highest_sack(struct sock *sk, struct sk_buff *skb)
1715{
50895b9d 1716 tcp_sk(sk)->highest_sack = skb_rb_next(skb);
6859d494
IJ
1717}
1718
1719static inline struct sk_buff *tcp_highest_sack(struct sock *sk)
1720{
1721 return tcp_sk(sk)->highest_sack;
1722}
1723
1724static inline void tcp_highest_sack_reset(struct sock *sk)
1725{
50895b9d 1726 tcp_sk(sk)->highest_sack = tcp_rtx_queue_head(sk);
6859d494
IJ
1727}
1728
2b7cda9c
ED
1729/* Called when old skb is about to be deleted and replaced by new skb */
1730static inline void tcp_highest_sack_replace(struct sock *sk,
6859d494
IJ
1731 struct sk_buff *old,
1732 struct sk_buff *new)
1733{
2b7cda9c 1734 if (old == tcp_highest_sack(sk))
6859d494
IJ
1735 tcp_sk(sk)->highest_sack = new;
1736}
1737
b1f0a0e9
FW
1738/* This helper checks if socket has IP_TRANSPARENT set */
1739static inline bool inet_sk_transparent(const struct sock *sk)
1740{
1741 switch (sk->sk_state) {
1742 case TCP_TIME_WAIT:
1743 return inet_twsk(sk)->tw_transparent;
1744 case TCP_NEW_SYN_RECV:
1745 return inet_rsk(inet_reqsk(sk))->no_srccheck;
1746 }
1747 return inet_sk(sk)->transparent;
1748}
1749
5aa4b32f
AP
1750/* Determines whether this is a thin stream (which may suffer from
1751 * increased latency). Used to trigger latency-reducing mechanisms.
1752 */
a2a385d6 1753static inline bool tcp_stream_is_thin(struct tcp_sock *tp)
5aa4b32f
AP
1754{
1755 return tp->packets_out < 4 && !tcp_in_initial_slowstart(tp);
1756}
1757
1da177e4
LT
1758/* /proc */
1759enum tcp_seq_states {
1760 TCP_SEQ_STATE_LISTENING,
1da177e4 1761 TCP_SEQ_STATE_ESTABLISHED,
1da177e4
LT
1762};
1763
73cb88ec
AV
1764int tcp_seq_open(struct inode *inode, struct file *file);
1765
1da177e4 1766struct tcp_seq_afinfo {
73cb88ec
AV
1767 char *name;
1768 sa_family_t family;
1769 const struct file_operations *seq_fops;
1770 struct seq_operations seq_ops;
1da177e4
LT
1771};
1772
1773struct tcp_iter_state {
a4146b1b 1774 struct seq_net_private p;
1da177e4
LT
1775 sa_family_t family;
1776 enum tcp_seq_states state;
1777 struct sock *syn_wait_sk;
a7cb5a49 1778 int bucket, offset, sbucket, num;
a8b690f9 1779 loff_t last_pos;
1da177e4
LT
1780};
1781
5c9f3023
JP
1782int tcp_proc_register(struct net *net, struct tcp_seq_afinfo *afinfo);
1783void tcp_proc_unregister(struct net *net, struct tcp_seq_afinfo *afinfo);
1da177e4 1784
20380731 1785extern struct request_sock_ops tcp_request_sock_ops;
c6aefafb 1786extern struct request_sock_ops tcp6_request_sock_ops;
20380731 1787
5c9f3023 1788void tcp_v4_destroy_sock(struct sock *sk);
20380731 1789
28be6e07 1790struct sk_buff *tcp_gso_segment(struct sk_buff *skb,
5c9f3023
JP
1791 netdev_features_t features);
1792struct sk_buff **tcp_gro_receive(struct sk_buff **head, struct sk_buff *skb);
1793int tcp_gro_complete(struct sk_buff *skb);
28850dc7 1794
5c9f3023 1795void __tcp_v4_send_check(struct sk_buff *skb, __be32 saddr, __be32 daddr);
f4c50d99 1796
c9bee3b7
ED
1797static inline u32 tcp_notsent_lowat(const struct tcp_sock *tp)
1798{
4979f2d9
NB
1799 struct net *net = sock_net((struct sock *)tp);
1800 return tp->notsent_lowat ?: net->ipv4.sysctl_tcp_notsent_lowat;
c9bee3b7
ED
1801}
1802
1803static inline bool tcp_stream_memory_free(const struct sock *sk)
1804{
1805 const struct tcp_sock *tp = tcp_sk(sk);
1806 u32 notsent_bytes = tp->write_seq - tp->snd_nxt;
1807
1808 return notsent_bytes < tcp_notsent_lowat(tp);
1809}
1810
20380731 1811#ifdef CONFIG_PROC_FS
5c9f3023
JP
1812int tcp4_proc_init(void);
1813void tcp4_proc_exit(void);
20380731
ACM
1814#endif
1815
ea3bea3a 1816int tcp_rtx_synack(const struct sock *sk, struct request_sock *req);
1fb6f159
OP
1817int tcp_conn_request(struct request_sock_ops *rsk_ops,
1818 const struct tcp_request_sock_ops *af_ops,
1819 struct sock *sk, struct sk_buff *skb);
5db92c99 1820
cfb6eeb4
YH
1821/* TCP af-specific functions */
1822struct tcp_sock_af_ops {
1823#ifdef CONFIG_TCP_MD5SIG
b83e3deb 1824 struct tcp_md5sig_key *(*md5_lookup) (const struct sock *sk,
fd3a154a 1825 const struct sock *addr_sk);
39f8e58e
ED
1826 int (*calc_md5_hash)(char *location,
1827 const struct tcp_md5sig_key *md5,
1828 const struct sock *sk,
1829 const struct sk_buff *skb);
1830 int (*md5_parse)(struct sock *sk,
8917a777 1831 int optname,
39f8e58e
ED
1832 char __user *optval,
1833 int optlen);
cfb6eeb4
YH
1834#endif
1835};
1836
1837struct tcp_request_sock_ops {
2aec4a29 1838 u16 mss_clamp;
cfb6eeb4 1839#ifdef CONFIG_TCP_MD5SIG
b83e3deb 1840 struct tcp_md5sig_key *(*req_md5_lookup)(const struct sock *sk,
fd3a154a 1841 const struct sock *addr_sk);
39f8e58e
ED
1842 int (*calc_md5_hash) (char *location,
1843 const struct tcp_md5sig_key *md5,
1844 const struct sock *sk,
1845 const struct sk_buff *skb);
cfb6eeb4 1846#endif
b40cf18e
ED
1847 void (*init_req)(struct request_sock *req,
1848 const struct sock *sk_listener,
16bea70a 1849 struct sk_buff *skb);
fb7b37a7 1850#ifdef CONFIG_SYN_COOKIES
3f684b4b 1851 __u32 (*cookie_init_seq)(const struct sk_buff *skb,
fb7b37a7
OP
1852 __u16 *mss);
1853#endif
f964629e 1854 struct dst_entry *(*route_req)(const struct sock *sk, struct flowi *fl,
4396e461 1855 const struct request_sock *req);
84b114b9 1856 u32 (*init_seq)(const struct sk_buff *skb);
5d2ed052 1857 u32 (*init_ts_off)(const struct net *net, const struct sk_buff *skb);
0f935dbe 1858 int (*send_synack)(const struct sock *sk, struct dst_entry *dst,
d6274bd8 1859 struct flowi *fl, struct request_sock *req,
dc6ef6be 1860 struct tcp_fastopen_cookie *foc,
b3d05147 1861 enum tcp_synack_type synack_type);
cfb6eeb4
YH
1862};
1863
fb7b37a7
OP
1864#ifdef CONFIG_SYN_COOKIES
1865static inline __u32 cookie_init_sequence(const struct tcp_request_sock_ops *ops,
3f684b4b 1866 const struct sock *sk, struct sk_buff *skb,
fb7b37a7
OP
1867 __u16 *mss)
1868{
3f684b4b 1869 tcp_synq_overflow(sk);
02a1d6e7 1870 __NET_INC_STATS(sock_net(sk), LINUX_MIB_SYNCOOKIESSENT);
3f684b4b 1871 return ops->cookie_init_seq(skb, mss);
fb7b37a7
OP
1872}
1873#else
1874static inline __u32 cookie_init_sequence(const struct tcp_request_sock_ops *ops,
3f684b4b 1875 const struct sock *sk, struct sk_buff *skb,
fb7b37a7
OP
1876 __u16 *mss)
1877{
1878 return 0;
1879}
1880#endif
1881
5c9f3023 1882int tcpv4_offload_init(void);
28850dc7 1883
5c9f3023
JP
1884void tcp_v4_init(void);
1885void tcp_init(void);
20380731 1886
659a8ad5 1887/* tcp_recovery.c */
128eda86 1888extern void tcp_rack_mark_lost(struct sock *sk);
1d0833df 1889extern void tcp_rack_advance(struct tcp_sock *tp, u8 sacked, u32 end_seq,
9a568de4 1890 u64 xmit_time);
57dde7f7 1891extern void tcp_rack_reo_timeout(struct sock *sk);
1f255691 1892extern void tcp_rack_update_reo_wnd(struct sock *sk, struct rate_sample *rs);
659a8ad5 1893
e1a10ef7
NC
1894/* At how many usecs into the future should the RTO fire? */
1895static inline s64 tcp_rto_delta_us(const struct sock *sk)
1896{
75c119af 1897 const struct sk_buff *skb = tcp_rtx_queue_head(sk);
e1a10ef7
NC
1898 u32 rto = inet_csk(sk)->icsk_rto;
1899 u64 rto_time_stamp_us = skb->skb_mstamp + jiffies_to_usecs(rto);
1900
1901 return rto_time_stamp_us - tcp_sk(sk)->tcp_mstamp;
1902}
1903
e25f866f
CW
1904/*
1905 * Save and compile IPv4 options, return a pointer to it
1906 */
91ed1e66
PA
1907static inline struct ip_options_rcu *tcp_v4_save_options(struct net *net,
1908 struct sk_buff *skb)
e25f866f
CW
1909{
1910 const struct ip_options *opt = &TCP_SKB_CB(skb)->header.h4.opt;
1911 struct ip_options_rcu *dopt = NULL;
1912
461b74c3 1913 if (opt->optlen) {
e25f866f
CW
1914 int opt_size = sizeof(*dopt) + opt->optlen;
1915
1916 dopt = kmalloc(opt_size, GFP_ATOMIC);
91ed1e66 1917 if (dopt && __ip_options_echo(net, &dopt->opt, skb, opt)) {
e25f866f
CW
1918 kfree(dopt);
1919 dopt = NULL;
1920 }
1921 }
1922 return dopt;
1923}
1924
98781965
ED
1925/* locally generated TCP pure ACKs have skb->truesize == 2
1926 * (check tcp_send_ack() in net/ipv4/tcp_output.c )
1927 * This is much faster than dissecting the packet to find out.
1928 * (Think of GRE encapsulations, IPv4, IPv6, ...)
1929 */
1930static inline bool skb_is_tcp_pure_ack(const struct sk_buff *skb)
1931{
1932 return skb->truesize == 2;
1933}
1934
1935static inline void skb_set_tcp_pure_ack(struct sk_buff *skb)
1936{
1937 skb->truesize = 2;
1938}
1939
473bd239
TH
1940static inline int tcp_inq(struct sock *sk)
1941{
1942 struct tcp_sock *tp = tcp_sk(sk);
1943 int answ;
1944
1945 if ((1 << sk->sk_state) & (TCPF_SYN_SENT | TCPF_SYN_RECV)) {
1946 answ = 0;
1947 } else if (sock_flag(sk, SOCK_URGINLINE) ||
1948 !tp->urg_data ||
1949 before(tp->urg_seq, tp->copied_seq) ||
1950 !before(tp->urg_seq, tp->rcv_nxt)) {
1951
1952 answ = tp->rcv_nxt - tp->copied_seq;
1953
1954 /* Subtract 1, if FIN was received */
1955 if (answ && sock_flag(sk, SOCK_DONE))
1956 answ--;
1957 } else {
1958 answ = tp->urg_seq - tp->copied_seq;
1959 }
1960
1961 return answ;
1962}
1963
32035585
TH
1964int tcp_peek_len(struct socket *sock);
1965
a44d6eac
MKL
1966static inline void tcp_segs_in(struct tcp_sock *tp, const struct sk_buff *skb)
1967{
1968 u16 segs_in;
1969
1970 segs_in = max_t(u16, 1, skb_shinfo(skb)->gso_segs);
1971 tp->segs_in += segs_in;
1972 if (skb->len > tcp_hdrlen(skb))
1973 tp->data_segs_in += segs_in;
1974}
1975
9caad864
ED
1976/*
1977 * TCP listen path runs lockless.
1978 * We forced "struct sock" to be const qualified to make sure
1979 * we don't modify one of its field by mistake.
1980 * Here, we increment sk_drops which is an atomic_t, so we can safely
1981 * make sock writable again.
1982 */
1983static inline void tcp_listendrop(const struct sock *sk)
1984{
1985 atomic_inc(&((struct sock *)sk)->sk_drops);
02a1d6e7 1986 __NET_INC_STATS(sock_net(sk), LINUX_MIB_LISTENDROPS);
9caad864
ED
1987}
1988
218af599
ED
1989enum hrtimer_restart tcp_pace_kick(struct hrtimer *timer);
1990
734942cc
DW
1991/*
1992 * Interface for adding Upper Level Protocols over TCP
1993 */
1994
1995#define TCP_ULP_NAME_MAX 16
1996#define TCP_ULP_MAX 128
1997#define TCP_ULP_BUF_MAX (TCP_ULP_NAME_MAX*TCP_ULP_MAX)
1998
1999struct tcp_ulp_ops {
2000 struct list_head list;
2001
2002 /* initialize ulp */
2003 int (*init)(struct sock *sk);
2004 /* cleanup ulp */
2005 void (*release)(struct sock *sk);
2006
2007 char name[TCP_ULP_NAME_MAX];
2008 struct module *owner;
2009};
2010int tcp_register_ulp(struct tcp_ulp_ops *type);
2011void tcp_unregister_ulp(struct tcp_ulp_ops *type);
2012int tcp_set_ulp(struct sock *sk, const char *name);
2013void tcp_get_available_ulp(char *buf, size_t len);
2014void tcp_cleanup_ulp(struct sock *sk);
2015
a9b71cc1
DB
2016#define MODULE_ALIAS_TCP_ULP(name) \
2017 __MODULE_INFO(alias, alias_userspace, name); \
2018 __MODULE_INFO(alias, alias_tcp_ulp, "tcp-ulp-" name)
2019
40304b2a
LB
2020/* Call BPF_SOCK_OPS program that returns an int. If the return value
2021 * is < 0, then the BPF op failed (for example if the loaded BPF
2022 * program does not support the chosen operation or there is no BPF
2023 * program loaded).
2024 */
2025#ifdef CONFIG_BPF
2026static inline int tcp_call_bpf(struct sock *sk, int op)
2027{
2028 struct bpf_sock_ops_kern sock_ops;
2029 int ret;
2030
2031 if (sk_fullsock(sk))
2032 sock_owned_by_me(sk);
2033
2034 memset(&sock_ops, 0, sizeof(sock_ops));
2035 sock_ops.sk = sk;
2036 sock_ops.op = op;
2037
2038 ret = BPF_CGROUP_RUN_PROG_SOCK_OPS(&sock_ops);
2039 if (ret == 0)
2040 ret = sock_ops.reply;
2041 else
2042 ret = -1;
2043 return ret;
2044}
2045#else
2046static inline int tcp_call_bpf(struct sock *sk, int op)
2047{
2048 return -EPERM;
2049}
2050#endif
2051
8550f328
LB
2052static inline u32 tcp_timeout_init(struct sock *sk)
2053{
2054 int timeout;
2055
2056 timeout = tcp_call_bpf(sk, BPF_SOCK_OPS_TIMEOUT_INIT);
2057
2058 if (timeout <= 0)
2059 timeout = TCP_TIMEOUT_INIT;
2060 return timeout;
2061}
2062
13d3b1eb
LB
2063static inline u32 tcp_rwnd_init_bpf(struct sock *sk)
2064{
2065 int rwnd;
2066
2067 rwnd = tcp_call_bpf(sk, BPF_SOCK_OPS_RWND_INIT);
2068
2069 if (rwnd < 0)
2070 rwnd = 0;
2071 return rwnd;
2072}
91b5b21c
LB
2073
2074static inline bool tcp_bpf_ca_needs_ecn(struct sock *sk)
2075{
2076 return (tcp_call_bpf(sk, BPF_SOCK_OPS_NEEDS_ECN) == 1);
2077}
60e2a778
UB
2078
2079#if IS_ENABLED(CONFIG_SMC)
2080extern struct static_key_false tcp_have_smc;
2081#endif
1da177e4 2082#endif /* _TCP_H */