tcp: fix cwnd limited checking to improve congestion control
[linux-2.6-block.git] / include / net / tcp.h
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>
97fc2f08 30#include <linux/dmaengine.h>
cfb6eeb4 31#include <linux/crypto.h>
c6aefafb 32#include <linux/cryptohash.h>
435cf559 33#include <linux/kref.h>
740b0f18 34#include <linux/ktime.h>
3f421baa
ACM
35
36#include <net/inet_connection_sock.h>
295ff7ed 37#include <net/inet_timewait_sock.h>
77d8bf9c 38#include <net/inet_hashtables.h>
1da177e4 39#include <net/checksum.h>
2e6599cb 40#include <net/request_sock.h>
1da177e4
LT
41#include <net/sock.h>
42#include <net/snmp.h>
43#include <net/ip.h>
c752f073 44#include <net/tcp_states.h>
bdf1ee5d 45#include <net/inet_ecn.h>
0c266898 46#include <net/dst.h>
c752f073 47
1da177e4 48#include <linux/seq_file.h>
180d8cd9 49#include <linux/memcontrol.h>
1da177e4 50
6e04e021 51extern struct inet_hashinfo tcp_hashinfo;
1da177e4 52
dd24c001 53extern struct percpu_counter tcp_orphan_count;
5c9f3023 54void tcp_time_wait(struct sock *sk, int state, int timeo);
1da177e4 55
1da177e4 56#define MAX_TCP_HEADER (128 + MAX_HEADER)
33ad798c 57#define MAX_TCP_OPTION_SPACE 40
1da177e4
LT
58
59/*
60 * Never offer a window over 32767 without using window scaling. Some
61 * poor stacks do signed 16bit maths!
62 */
63#define MAX_TCP_WINDOW 32767U
64
65/* Minimal accepted MSS. It is (60+60+8) - (20+20). */
66#define TCP_MIN_MSS 88U
67
5d424d5a
JH
68/* The least MTU to use for probing */
69#define TCP_BASE_MSS 512
70
1da177e4
LT
71/* After receiving this amount of duplicate ACKs fast retransmit starts. */
72#define TCP_FASTRETRANS_THRESH 3
73
74/* Maximal reordering. */
75#define TCP_MAX_REORDERING 127
76
77/* Maximal number of ACKs sent quickly to accelerate slow-start. */
78#define TCP_MAX_QUICKACKS 16U
79
80/* urg_data states */
81#define TCP_URG_VALID 0x0100
82#define TCP_URG_NOTYET 0x0200
83#define TCP_URG_READ 0x0400
84
85#define TCP_RETR1 3 /*
86 * This is how many retries it does before it
87 * tries to figure out if the gateway is
88 * down. Minimal RFC value is 3; it corresponds
89 * to ~3sec-8min depending on RTO.
90 */
91
92#define TCP_RETR2 15 /*
93 * This should take at least
94 * 90 minutes to time out.
95 * RFC1122 says that the limit is 100 sec.
96 * 15 is ~13-30min depending on RTO.
97 */
98
6c9ff979
AB
99#define TCP_SYN_RETRIES 6 /* This is how many retries are done
100 * when active opening a connection.
101 * RFC1122 says the minimum retry MUST
102 * be at least 180secs. Nevertheless
103 * this value is corresponding to
104 * 63secs of retransmission with the
105 * current initial RTO.
106 */
1da177e4 107
6c9ff979
AB
108#define TCP_SYNACK_RETRIES 5 /* This is how may retries are done
109 * when passive opening a connection.
110 * This is corresponding to 31secs of
111 * retransmission with the current
112 * initial RTO.
113 */
1da177e4 114
1da177e4
LT
115#define TCP_TIMEWAIT_LEN (60*HZ) /* how long to wait to destroy TIME-WAIT
116 * state, about 60 seconds */
117#define TCP_FIN_TIMEOUT TCP_TIMEWAIT_LEN
118 /* BSD style FIN_WAIT2 deadlock breaker.
119 * It used to be 3min, new value is 60sec,
120 * to combine FIN-WAIT-2 timeout with
121 * TIME-WAIT timer.
122 */
123
124#define TCP_DELACK_MAX ((unsigned)(HZ/5)) /* maximal time to delay before sending an ACK */
125#if HZ >= 100
126#define TCP_DELACK_MIN ((unsigned)(HZ/25)) /* minimal time to delay before sending an ACK */
127#define TCP_ATO_MIN ((unsigned)(HZ/25))
128#else
129#define TCP_DELACK_MIN 4U
130#define TCP_ATO_MIN 4U
131#endif
132#define TCP_RTO_MAX ((unsigned)(120*HZ))
133#define TCP_RTO_MIN ((unsigned)(HZ/5))
fd4f2cea 134#define TCP_TIMEOUT_INIT ((unsigned)(1*HZ)) /* RFC6298 2.1 initial RTO value */
9ad7c049
JC
135#define TCP_TIMEOUT_FALLBACK ((unsigned)(3*HZ)) /* RFC 1122 initial RTO value, now
136 * used as a fallback RTO for the
137 * initial data transmission if no
138 * valid RTT sample has been acquired,
139 * most likely due to retrans in 3WHS.
140 */
1da177e4
LT
141
142#define TCP_RESOURCE_PROBE_INTERVAL ((unsigned)(HZ/2U)) /* Maximal interval between probes
143 * for local resources.
144 */
145
146#define TCP_KEEPALIVE_TIME (120*60*HZ) /* two hours */
147#define TCP_KEEPALIVE_PROBES 9 /* Max of 9 keepalive probes */
148#define TCP_KEEPALIVE_INTVL (75*HZ)
149
150#define MAX_TCP_KEEPIDLE 32767
151#define MAX_TCP_KEEPINTVL 32767
152#define MAX_TCP_KEEPCNT 127
153#define MAX_TCP_SYNCNT 127
154
155#define TCP_SYNQ_INTERVAL (HZ/5) /* Period of SYNACK timer */
1da177e4
LT
156
157#define TCP_PAWS_24DAYS (60 * 60 * 24 * 24)
158#define TCP_PAWS_MSL 60 /* Per-host timestamps are invalidated
159 * after this time. It should be equal
160 * (or greater than) TCP_TIMEWAIT_LEN
161 * to provide reliability equal to one
162 * provided by timewait state.
163 */
164#define TCP_PAWS_WINDOW 1 /* Replay window for per-host
165 * timestamps. It must be less than
166 * minimal timewait lifetime.
167 */
1da177e4
LT
168/*
169 * TCP option
170 */
171
172#define TCPOPT_NOP 1 /* Padding */
173#define TCPOPT_EOL 0 /* End of options */
174#define TCPOPT_MSS 2 /* Segment size negotiating */
175#define TCPOPT_WINDOW 3 /* Window scaling */
176#define TCPOPT_SACK_PERM 4 /* SACK Permitted */
177#define TCPOPT_SACK 5 /* SACK Block */
178#define TCPOPT_TIMESTAMP 8 /* Better RTT estimations/PAWS */
cfb6eeb4 179#define TCPOPT_MD5SIG 19 /* MD5 Signature (RFC2385) */
2100c8d2
YC
180#define TCPOPT_EXP 254 /* Experimental */
181/* Magic number to be after the option value for sharing TCP
182 * experimental options. See draft-ietf-tcpm-experimental-options-00.txt
183 */
184#define TCPOPT_FASTOPEN_MAGIC 0xF989
1da177e4
LT
185
186/*
187 * TCP option lengths
188 */
189
190#define TCPOLEN_MSS 4
191#define TCPOLEN_WINDOW 3
192#define TCPOLEN_SACK_PERM 2
193#define TCPOLEN_TIMESTAMP 10
cfb6eeb4 194#define TCPOLEN_MD5SIG 18
2100c8d2 195#define TCPOLEN_EXP_FASTOPEN_BASE 4
1da177e4
LT
196
197/* But this is what stacks really send out. */
198#define TCPOLEN_TSTAMP_ALIGNED 12
199#define TCPOLEN_WSCALE_ALIGNED 4
200#define TCPOLEN_SACKPERM_ALIGNED 4
201#define TCPOLEN_SACK_BASE 2
202#define TCPOLEN_SACK_BASE_ALIGNED 4
203#define TCPOLEN_SACK_PERBLOCK 8
cfb6eeb4 204#define TCPOLEN_MD5SIG_ALIGNED 20
33ad798c 205#define TCPOLEN_MSS_ALIGNED 4
1da177e4 206
1da177e4
LT
207/* Flags in tp->nonagle */
208#define TCP_NAGLE_OFF 1 /* Nagle's algo is disabled */
209#define TCP_NAGLE_CORK 2 /* Socket is corked */
caa20d9a 210#define TCP_NAGLE_PUSH 4 /* Cork is overridden for already queued data */
1da177e4 211
36e31b0a
AP
212/* TCP thin-stream limits */
213#define TCP_THIN_LINEAR_RETRIES 6 /* After 6 linear retries, do exp. backoff */
214
7eb38527 215/* TCP initial congestion window as per draft-hkchu-tcpm-initcwnd-01 */
442b9635
DM
216#define TCP_INIT_CWND 10
217
cf60af03
YC
218/* Bit Flags for sysctl_tcp_fastopen */
219#define TFO_CLIENT_ENABLE 1
10467163 220#define TFO_SERVER_ENABLE 2
67da22d2 221#define TFO_CLIENT_NO_COOKIE 4 /* Data in SYN w/o cookie option */
cf60af03 222
10467163
JC
223/* Process SYN data but skip cookie validation */
224#define TFO_SERVER_COOKIE_NOT_CHKED 0x100
225/* Accept SYN data w/o any cookie option */
226#define TFO_SERVER_COOKIE_NOT_REQD 0x200
227
228/* Force enable TFO on all listeners, i.e., not requiring the
229 * TCP_FASTOPEN socket option. SOCKOPT1/2 determine how to set max_qlen.
230 */
231#define TFO_SERVER_WO_SOCKOPT1 0x400
232#define TFO_SERVER_WO_SOCKOPT2 0x800
233/* Always create TFO child sockets on a TFO listener even when
234 * cookie/data not present. (For testing purpose!)
235 */
236#define TFO_SERVER_ALWAYS 0x1000
237
295ff7ed
ACM
238extern struct inet_timewait_death_row tcp_death_row;
239
1da177e4 240/* sysctl variables for tcp */
1da177e4
LT
241extern int sysctl_tcp_timestamps;
242extern int sysctl_tcp_window_scaling;
243extern int sysctl_tcp_sack;
244extern int sysctl_tcp_fin_timeout;
1da177e4
LT
245extern int sysctl_tcp_keepalive_time;
246extern int sysctl_tcp_keepalive_probes;
247extern int sysctl_tcp_keepalive_intvl;
248extern int sysctl_tcp_syn_retries;
249extern int sysctl_tcp_synack_retries;
250extern int sysctl_tcp_retries1;
251extern int sysctl_tcp_retries2;
252extern int sysctl_tcp_orphan_retries;
253extern int sysctl_tcp_syncookies;
2100c8d2 254extern int sysctl_tcp_fastopen;
1da177e4
LT
255extern int sysctl_tcp_retrans_collapse;
256extern int sysctl_tcp_stdurg;
257extern int sysctl_tcp_rfc1337;
258extern int sysctl_tcp_abort_on_overflow;
259extern int sysctl_tcp_max_orphans;
1da177e4
LT
260extern int sysctl_tcp_fack;
261extern int sysctl_tcp_reordering;
1da177e4 262extern int sysctl_tcp_dsack;
a4fe34bf 263extern long sysctl_tcp_mem[3];
1da177e4
LT
264extern int sysctl_tcp_wmem[3];
265extern int sysctl_tcp_rmem[3];
266extern int sysctl_tcp_app_win;
267extern int sysctl_tcp_adv_win_scale;
268extern int sysctl_tcp_tw_reuse;
269extern int sysctl_tcp_frto;
270extern int sysctl_tcp_low_latency;
95937825 271extern int sysctl_tcp_dma_copybreak;
1da177e4 272extern int sysctl_tcp_nometrics_save;
1da177e4
LT
273extern int sysctl_tcp_moderate_rcvbuf;
274extern int sysctl_tcp_tso_win_divisor;
5d424d5a
JH
275extern int sysctl_tcp_mtu_probing;
276extern int sysctl_tcp_base_mss;
15d99e02 277extern int sysctl_tcp_workaround_signed_windows;
35089bb2 278extern int sysctl_tcp_slow_start_after_idle;
36e31b0a 279extern int sysctl_tcp_thin_linear_timeouts;
7e380175 280extern int sysctl_tcp_thin_dupack;
eed530b6 281extern int sysctl_tcp_early_retrans;
46d3ceab 282extern int sysctl_tcp_limit_output_bytes;
282f23c6 283extern int sysctl_tcp_challenge_ack_limit;
c9bee3b7 284extern unsigned int sysctl_tcp_notsent_lowat;
95bd09eb 285extern int sysctl_tcp_min_tso_segs;
f54b3111 286extern int sysctl_tcp_autocorking;
1da177e4 287
8d987e5c 288extern atomic_long_t tcp_memory_allocated;
1748376b 289extern struct percpu_counter tcp_sockets_allocated;
1da177e4
LT
290extern int tcp_memory_pressure;
291
1da177e4
LT
292/*
293 * The next routines deal with comparing 32 bit unsigned ints
294 * and worry about wraparound (automatic with unsigned arithmetic).
295 */
296
a2a385d6 297static inline bool before(__u32 seq1, __u32 seq2)
1da177e4 298{
0d630cc0 299 return (__s32)(seq1-seq2) < 0;
1da177e4 300}
9a036b9c 301#define after(seq2, seq1) before(seq1, seq2)
1da177e4
LT
302
303/* is s2<=s1<=s3 ? */
a2a385d6 304static inline bool between(__u32 seq1, __u32 seq2, __u32 seq3)
1da177e4
LT
305{
306 return seq3 - seq2 >= seq1 - seq2;
307}
308
efcdbf24
AS
309static inline bool tcp_out_of_memory(struct sock *sk)
310{
311 if (sk->sk_wmem_queued > SOCK_MIN_SNDBUF &&
312 sk_memory_allocated(sk) > sk_prot_mem_limits(sk, 2))
313 return true;
314 return false;
315}
316
ad1af0fe 317static inline bool tcp_too_many_orphans(struct sock *sk, int shift)
e4fd5da3 318{
ad1af0fe
DM
319 struct percpu_counter *ocp = sk->sk_prot->orphan_count;
320 int orphans = percpu_counter_read_positive(ocp);
321
322 if (orphans << shift > sysctl_tcp_max_orphans) {
323 orphans = percpu_counter_sum_positive(ocp);
324 if (orphans << shift > sysctl_tcp_max_orphans)
325 return true;
326 }
ad1af0fe 327 return false;
e4fd5da3 328}
1da177e4 329
5c9f3023 330bool tcp_check_oom(struct sock *sk, int shift);
efcdbf24 331
a0f82f64
FW
332/* syncookies: remember time of last synqueue overflow */
333static inline void tcp_synq_overflow(struct sock *sk)
334{
335 tcp_sk(sk)->rx_opt.ts_recent_stamp = jiffies;
336}
337
338/* syncookies: no recent synqueue overflow on this listening socket? */
a2a385d6 339static inline bool tcp_synq_no_recent_overflow(const struct sock *sk)
a0f82f64
FW
340{
341 unsigned long last_overflow = tcp_sk(sk)->rx_opt.ts_recent_stamp;
9ad7c049 342 return time_after(jiffies, last_overflow + TCP_TIMEOUT_FALLBACK);
a0f82f64
FW
343}
344
1da177e4
LT
345extern struct proto tcp_prot;
346
57ef42d5
PE
347#define TCP_INC_STATS(net, field) SNMP_INC_STATS((net)->mib.tcp_statistics, field)
348#define TCP_INC_STATS_BH(net, field) SNMP_INC_STATS_BH((net)->mib.tcp_statistics, field)
349#define TCP_DEC_STATS(net, field) SNMP_DEC_STATS((net)->mib.tcp_statistics, field)
350#define TCP_ADD_STATS_USER(net, field, val) SNMP_ADD_STATS_USER((net)->mib.tcp_statistics, field, val)
aa2ea058 351#define TCP_ADD_STATS(net, field, val) SNMP_ADD_STATS((net)->mib.tcp_statistics, field, val)
1da177e4 352
5c9f3023
JP
353void tcp_tasklet_init(void);
354
355void tcp_v4_err(struct sk_buff *skb, u32);
356
357void tcp_shutdown(struct sock *sk, int how);
358
359void tcp_v4_early_demux(struct sk_buff *skb);
360int tcp_v4_rcv(struct sk_buff *skb);
361
362int tcp_v4_tw_remember_stamp(struct inet_timewait_sock *tw);
363int tcp_sendmsg(struct kiocb *iocb, struct sock *sk, struct msghdr *msg,
364 size_t size);
365int tcp_sendpage(struct sock *sk, struct page *page, int offset, size_t size,
366 int flags);
367void tcp_release_cb(struct sock *sk);
368void tcp_wfree(struct sk_buff *skb);
369void tcp_write_timer_handler(struct sock *sk);
370void tcp_delack_timer_handler(struct sock *sk);
371int tcp_ioctl(struct sock *sk, int cmd, unsigned long arg);
372int tcp_rcv_state_process(struct sock *sk, struct sk_buff *skb,
373 const struct tcphdr *th, unsigned int len);
374void tcp_rcv_established(struct sock *sk, struct sk_buff *skb,
375 const struct tcphdr *th, unsigned int len);
376void tcp_rcv_space_adjust(struct sock *sk);
377void tcp_cleanup_rbuf(struct sock *sk, int copied);
378int tcp_twsk_unique(struct sock *sk, struct sock *sktw, void *twp);
379void tcp_twsk_destructor(struct sock *sk);
380ssize_t tcp_splice_read(struct socket *sk, loff_t *ppos,
381 struct pipe_inode_info *pipe, size_t len,
382 unsigned int flags);
9c55e01c 383
463c84b9
ACM
384static inline void tcp_dec_quickack_mode(struct sock *sk,
385 const unsigned int pkts)
1da177e4 386{
463c84b9 387 struct inet_connection_sock *icsk = inet_csk(sk);
fc6415bc 388
463c84b9
ACM
389 if (icsk->icsk_ack.quick) {
390 if (pkts >= icsk->icsk_ack.quick) {
391 icsk->icsk_ack.quick = 0;
fc6415bc 392 /* Leaving quickack mode we deflate ATO. */
463c84b9 393 icsk->icsk_ack.ato = TCP_ATO_MIN;
fc6415bc 394 } else
463c84b9 395 icsk->icsk_ack.quick -= pkts;
1da177e4
LT
396 }
397}
398
bdf1ee5d
IJ
399#define TCP_ECN_OK 1
400#define TCP_ECN_QUEUE_CWR 2
401#define TCP_ECN_DEMAND_CWR 4
7a269ffa 402#define TCP_ECN_SEEN 8
bdf1ee5d 403
fd2c3ef7 404enum tcp_tw_status {
1da177e4
LT
405 TCP_TW_SUCCESS = 0,
406 TCP_TW_RST = 1,
407 TCP_TW_ACK = 2,
408 TCP_TW_SYN = 3
409};
410
411
5c9f3023
JP
412enum tcp_tw_status tcp_timewait_state_process(struct inet_timewait_sock *tw,
413 struct sk_buff *skb,
414 const struct tcphdr *th);
415struct sock *tcp_check_req(struct sock *sk, struct sk_buff *skb,
416 struct request_sock *req, struct request_sock **prev,
417 bool fastopen);
418int tcp_child_process(struct sock *parent, struct sock *child,
419 struct sk_buff *skb);
420void tcp_enter_loss(struct sock *sk, int how);
421void tcp_clear_retrans(struct tcp_sock *tp);
422void tcp_update_metrics(struct sock *sk);
423void tcp_init_metrics(struct sock *sk);
424void tcp_metrics_init(void);
425bool tcp_peer_is_proven(struct request_sock *req, struct dst_entry *dst,
426 bool paws_check);
427bool tcp_remember_stamp(struct sock *sk);
428bool tcp_tw_remember_stamp(struct inet_timewait_sock *tw);
429void tcp_fetch_timewait_stamp(struct sock *sk, struct dst_entry *dst);
430void tcp_disable_fack(struct tcp_sock *tp);
431void tcp_close(struct sock *sk, long timeout);
432void tcp_init_sock(struct sock *sk);
433unsigned int tcp_poll(struct file *file, struct socket *sock,
434 struct poll_table_struct *wait);
435int tcp_getsockopt(struct sock *sk, int level, int optname,
436 char __user *optval, int __user *optlen);
437int tcp_setsockopt(struct sock *sk, int level, int optname,
438 char __user *optval, unsigned int optlen);
439int compat_tcp_getsockopt(struct sock *sk, int level, int optname,
53d3176b 440 char __user *optval, int __user *optlen);
5c9f3023 441int compat_tcp_setsockopt(struct sock *sk, int level, int optname,
53d3176b 442 char __user *optval, unsigned int optlen);
5c9f3023
JP
443void tcp_set_keepalive(struct sock *sk, int val);
444void tcp_syn_ack_timeout(struct sock *sk, struct request_sock *req);
445int tcp_recvmsg(struct kiocb *iocb, struct sock *sk, struct msghdr *msg,
446 size_t len, int nonblock, int flags, int *addr_len);
447void tcp_parse_options(const struct sk_buff *skb,
448 struct tcp_options_received *opt_rx,
449 int estab, struct tcp_fastopen_cookie *foc);
450const u8 *tcp_parse_md5sig_option(const struct tcphdr *th);
7d5d5525 451
1da177e4
LT
452/*
453 * TCP v4 functions exported for the inet6 API
454 */
455
5c9f3023
JP
456void tcp_v4_send_check(struct sock *sk, struct sk_buff *skb);
457int tcp_v4_conn_request(struct sock *sk, struct sk_buff *skb);
458struct sock *tcp_create_openreq_child(struct sock *sk,
459 struct request_sock *req,
460 struct sk_buff *skb);
461struct sock *tcp_v4_syn_recv_sock(struct sock *sk, struct sk_buff *skb,
462 struct request_sock *req,
463 struct dst_entry *dst);
464int tcp_v4_do_rcv(struct sock *sk, struct sk_buff *skb);
465int tcp_v4_connect(struct sock *sk, struct sockaddr *uaddr, int addr_len);
466int tcp_connect(struct sock *sk);
467struct sk_buff *tcp_make_synack(struct sock *sk, struct dst_entry *dst,
468 struct request_sock *req,
469 struct tcp_fastopen_cookie *foc);
470int tcp_disconnect(struct sock *sk, int flags);
1da177e4 471
370816ae 472void tcp_finish_connect(struct sock *sk, struct sk_buff *skb);
292e8d8c 473int tcp_send_rcvq(struct sock *sk, struct msghdr *msg, size_t size);
63d02d15 474void inet_sk_rx_dst_set(struct sock *sk, const struct sk_buff *skb);
1da177e4 475
1da177e4 476/* From syncookies.c */
5c9f3023
JP
477int __cookie_v4_check(const struct iphdr *iph, const struct tcphdr *th,
478 u32 cookie);
479struct sock *cookie_v4_check(struct sock *sk, struct sk_buff *skb,
480 struct ip_options *opt);
e05c82d3 481#ifdef CONFIG_SYN_COOKIES
8c27bd75 482
63262315 483/* Syncookies use a monotonic timer which increments every 60 seconds.
8c27bd75
FW
484 * This counter is used both as a hash input and partially encoded into
485 * the cookie value. A cookie is only validated further if the delta
486 * between the current counter value and the encoded one is less than this,
63262315 487 * i.e. a sent cookie is valid only at most for 2*60 seconds (or less if
8c27bd75
FW
488 * the counter advances immediately after a cookie is generated).
489 */
490#define MAX_SYNCOOKIE_AGE 2
491
492static inline u32 tcp_cookie_time(void)
493{
63262315
ED
494 u64 val = get_jiffies_64();
495
496 do_div(val, 60 * HZ);
497 return val;
8c27bd75
FW
498}
499
5c9f3023
JP
500u32 __cookie_v4_init_sequence(const struct iphdr *iph, const struct tcphdr *th,
501 u16 *mssp);
502__u32 cookie_v4_init_sequence(struct sock *sk, struct sk_buff *skb, __u16 *mss);
e05c82d3
ED
503#else
504static inline __u32 cookie_v4_init_sequence(struct sock *sk,
505 struct sk_buff *skb,
506 __u16 *mss)
507{
508 return 0;
509}
510#endif
1da177e4 511
5c9f3023
JP
512__u32 cookie_init_timestamp(struct request_sock *req);
513bool cookie_check_timestamp(struct tcp_options_received *opt, struct net *net,
514 bool *ecn_ok);
4dfc2817 515
c6aefafb 516/* From net/ipv6/syncookies.c */
5c9f3023
JP
517int __cookie_v6_check(const struct ipv6hdr *iph, const struct tcphdr *th,
518 u32 cookie);
519struct sock *cookie_v6_check(struct sock *sk, struct sk_buff *skb);
e05c82d3 520#ifdef CONFIG_SYN_COOKIES
5c9f3023
JP
521u32 __cookie_v6_init_sequence(const struct ipv6hdr *iph,
522 const struct tcphdr *th, u16 *mssp);
523__u32 cookie_v6_init_sequence(struct sock *sk, const struct sk_buff *skb,
524 __u16 *mss);
e05c82d3
ED
525#else
526static inline __u32 cookie_v6_init_sequence(struct sock *sk,
527 struct sk_buff *skb,
528 __u16 *mss)
529{
530 return 0;
531}
532#endif
1da177e4
LT
533/* tcp_output.c */
534
5c9f3023
JP
535void __tcp_push_pending_frames(struct sock *sk, unsigned int cur_mss,
536 int nonagle);
537bool tcp_may_send_now(struct sock *sk);
538int __tcp_retransmit_skb(struct sock *, struct sk_buff *);
539int tcp_retransmit_skb(struct sock *, struct sk_buff *);
540void tcp_retransmit_timer(struct sock *sk);
541void tcp_xmit_retransmit_queue(struct sock *);
542void tcp_simple_retransmit(struct sock *);
543int tcp_trim_head(struct sock *, struct sk_buff *, u32);
544int tcp_fragment(struct sock *, struct sk_buff *, u32, unsigned int);
545
546void tcp_send_probe0(struct sock *);
547void tcp_send_partial(struct sock *);
548int tcp_write_wakeup(struct sock *);
549void tcp_send_fin(struct sock *sk);
550void tcp_send_active_reset(struct sock *sk, gfp_t priority);
551int tcp_send_synack(struct sock *);
552bool tcp_syn_flood_action(struct sock *sk, const struct sk_buff *skb,
553 const char *proto);
554void tcp_push_one(struct sock *, unsigned int mss_now);
555void tcp_send_ack(struct sock *sk);
556void tcp_send_delayed_ack(struct sock *sk);
557void tcp_send_loss_probe(struct sock *sk);
558bool tcp_schedule_loss_probe(struct sock *sk);
1da177e4 559
a762a980 560/* tcp_input.c */
5c9f3023
JP
561void tcp_resume_early_retransmit(struct sock *sk);
562void tcp_rearm_rto(struct sock *sk);
563void tcp_reset(struct sock *sk);
a762a980 564
1da177e4 565/* tcp_timer.c */
5c9f3023 566void tcp_init_xmit_timers(struct sock *);
463c84b9
ACM
567static inline void tcp_clear_xmit_timers(struct sock *sk)
568{
569 inet_csk_clear_xmit_timers(sk);
570}
1da177e4 571
5c9f3023
JP
572unsigned int tcp_sync_mss(struct sock *sk, u32 pmtu);
573unsigned int tcp_current_mss(struct sock *sk);
0c54b85f
IJ
574
575/* Bound MSS / TSO packet size with the half of the window */
576static inline int tcp_bound_to_half_wnd(struct tcp_sock *tp, int pktsize)
577{
01f83d69
AK
578 int cutoff;
579
580 /* When peer uses tiny windows, there is no use in packetizing
581 * to sub-MSS pieces for the sake of SWS or making sure there
582 * are enough packets in the pipe for fast recovery.
583 *
584 * On the other hand, for extremely large MSS devices, handling
585 * smaller than MSS windows in this way does make sense.
586 */
587 if (tp->max_window >= 512)
588 cutoff = (tp->max_window >> 1);
589 else
590 cutoff = tp->max_window;
591
592 if (cutoff && pktsize > cutoff)
593 return max_t(int, cutoff, 68U - tp->tcp_header_len);
0c54b85f
IJ
594 else
595 return pktsize;
596}
1da177e4 597
17b085ea 598/* tcp.c */
5c9f3023 599void tcp_get_info(const struct sock *, struct tcp_info *);
1da177e4
LT
600
601/* Read 'sendfile()'-style from a TCP socket */
602typedef int (*sk_read_actor_t)(read_descriptor_t *, struct sk_buff *,
603 unsigned int, size_t);
5c9f3023
JP
604int tcp_read_sock(struct sock *sk, read_descriptor_t *desc,
605 sk_read_actor_t recv_actor);
1da177e4 606
5c9f3023 607void tcp_initialize_rcv_mss(struct sock *sk);
1da177e4 608
5c9f3023
JP
609int tcp_mtu_to_mss(struct sock *sk, int pmtu);
610int tcp_mss_to_mtu(struct sock *sk, int mss);
611void tcp_mtup_init(struct sock *sk);
612void tcp_init_buffer_space(struct sock *sk);
5d424d5a 613
f1ecd5d9
DL
614static inline void tcp_bound_rto(const struct sock *sk)
615{
616 if (inet_csk(sk)->icsk_rto > TCP_RTO_MAX)
617 inet_csk(sk)->icsk_rto = TCP_RTO_MAX;
618}
619
620static inline u32 __tcp_set_rto(const struct tcp_sock *tp)
621{
740b0f18 622 return usecs_to_jiffies((tp->srtt_us >> 3) + tp->rttvar_us);
f1ecd5d9
DL
623}
624
40efc6fa 625static inline void __tcp_fast_path_on(struct tcp_sock *tp, u32 snd_wnd)
1da177e4
LT
626{
627 tp->pred_flags = htonl((tp->tcp_header_len << 26) |
628 ntohl(TCP_FLAG_ACK) |
629 snd_wnd);
630}
631
40efc6fa 632static inline void tcp_fast_path_on(struct tcp_sock *tp)
1da177e4
LT
633{
634 __tcp_fast_path_on(tp, tp->snd_wnd >> tp->rx_opt.snd_wscale);
635}
636
9e412ba7 637static inline void tcp_fast_path_check(struct sock *sk)
1da177e4 638{
9e412ba7
IJ
639 struct tcp_sock *tp = tcp_sk(sk);
640
b03efcfb 641 if (skb_queue_empty(&tp->out_of_order_queue) &&
1da177e4
LT
642 tp->rcv_wnd &&
643 atomic_read(&sk->sk_rmem_alloc) < sk->sk_rcvbuf &&
644 !tp->urg_data)
645 tcp_fast_path_on(tp);
646}
647
0c266898
SS
648/* Compute the actual rto_min value */
649static inline u32 tcp_rto_min(struct sock *sk)
650{
cf533ea5 651 const struct dst_entry *dst = __sk_dst_get(sk);
0c266898
SS
652 u32 rto_min = TCP_RTO_MIN;
653
654 if (dst && dst_metric_locked(dst, RTAX_RTO_MIN))
655 rto_min = dst_metric_rtt(dst, RTAX_RTO_MIN);
656 return rto_min;
657}
658
740b0f18
ED
659static inline u32 tcp_rto_min_us(struct sock *sk)
660{
661 return jiffies_to_usecs(tcp_rto_min(sk));
662}
663
1da177e4
LT
664/* Compute the actual receive window we are currently advertising.
665 * Rcv_nxt can be after the window if our peer push more data
666 * than the offered window.
667 */
40efc6fa 668static inline u32 tcp_receive_window(const struct tcp_sock *tp)
1da177e4
LT
669{
670 s32 win = tp->rcv_wup + tp->rcv_wnd - tp->rcv_nxt;
671
672 if (win < 0)
673 win = 0;
674 return (u32) win;
675}
676
677/* Choose a new window, without checks for shrinking, and without
678 * scaling applied to the result. The caller does these things
679 * if necessary. This is a "raw" window selection.
680 */
5c9f3023 681u32 __tcp_select_window(struct sock *sk);
1da177e4 682
ee995283
PE
683void tcp_send_window_probe(struct sock *sk);
684
1da177e4
LT
685/* TCP timestamps are only 32-bits, this causes a slight
686 * complication on 64-bit systems since we store a snapshot
31f34269
SH
687 * of jiffies in the buffer control blocks below. We decided
688 * to use only the low 32-bits of jiffies and hide the ugly
1da177e4
LT
689 * casts with the following macro.
690 */
691#define tcp_time_stamp ((__u32)(jiffies))
692
a3433f35
CG
693#define tcp_flag_byte(th) (((u_int8_t *)th)[13])
694
695#define TCPHDR_FIN 0x01
696#define TCPHDR_SYN 0x02
697#define TCPHDR_RST 0x04
698#define TCPHDR_PSH 0x08
699#define TCPHDR_ACK 0x10
700#define TCPHDR_URG 0x20
701#define TCPHDR_ECE 0x40
702#define TCPHDR_CWR 0x80
703
caa20d9a 704/* This is what the send packet queuing engine uses to pass
f86586fa
ED
705 * TCP per-packet control information to the transmission code.
706 * We also store the host-order sequence numbers in here too.
707 * This is 44 bytes if IPV6 is enabled.
708 * If this grows please adjust skbuff.h:skbuff->cb[xxx] size appropriately.
1da177e4
LT
709 */
710struct tcp_skb_cb {
711 union {
712 struct inet_skb_parm h4;
dfd56b8b 713#if IS_ENABLED(CONFIG_IPV6)
1da177e4
LT
714 struct inet6_skb_parm h6;
715#endif
716 } header; /* For incoming frames */
717 __u32 seq; /* Starting sequence number */
718 __u32 end_seq; /* SEQ + FIN + SYN + datalen */
719 __u32 when; /* used to compute rtt's */
4de075e0 720 __u8 tcp_flags; /* TCP header flags. (tcp[13]) */
f4f9f6e7 721
1da177e4
LT
722 __u8 sacked; /* State flags for SACK/FACK. */
723#define TCPCB_SACKED_ACKED 0x01 /* SKB ACK'd by a SACK block */
724#define TCPCB_SACKED_RETRANS 0x02 /* SKB retransmitted */
725#define TCPCB_LOST 0x04 /* SKB is lost */
726#define TCPCB_TAGBITS 0x07 /* All tag bits */
1da177e4
LT
727#define TCPCB_EVER_RETRANS 0x80 /* Ever retransmitted frame */
728#define TCPCB_RETRANS (TCPCB_SACKED_RETRANS|TCPCB_EVER_RETRANS)
729
f4f9f6e7
NC
730 __u8 ip_dsfield; /* IPv4 tos or IPv6 dsfield */
731 /* 1 byte hole */
1da177e4
LT
732 __u32 ack_seq; /* Sequence number ACK'd */
733};
734
735#define TCP_SKB_CB(__skb) ((struct tcp_skb_cb *)&((__skb)->cb[0]))
736
bd14b1b2
ED
737/* RFC3168 : 6.1.1 SYN packets must not have ECT/ECN bits set
738 *
739 * If we receive a SYN packet with these bits set, it means a network is
740 * playing bad games with TOS bits. In order to avoid possible false congestion
741 * notifications, we disable TCP ECN negociation.
742 */
743static inline void
5d134f1c
HFS
744TCP_ECN_create_request(struct request_sock *req, const struct sk_buff *skb,
745 struct net *net)
bd14b1b2
ED
746{
747 const struct tcphdr *th = tcp_hdr(skb);
748
5d134f1c 749 if (net->ipv4.sysctl_tcp_ecn && th->ece && th->cwr &&
bd14b1b2
ED
750 INET_ECN_is_not_ect(TCP_SKB_CB(skb)->ip_dsfield))
751 inet_rsk(req)->ecn_ok = 1;
752}
753
1da177e4
LT
754/* Due to TSO, an SKB can be composed of multiple actual
755 * packets. To keep these tracked properly, we use this.
756 */
757static inline int tcp_skb_pcount(const struct sk_buff *skb)
758{
7967168c 759 return skb_shinfo(skb)->gso_segs;
1da177e4
LT
760}
761
762/* This is valid iff tcp_skb_pcount() > 1. */
763static inline int tcp_skb_mss(const struct sk_buff *skb)
764{
7967168c 765 return skb_shinfo(skb)->gso_size;
1da177e4
LT
766}
767
317a76f9
SH
768/* Events passed to congestion control interface */
769enum tcp_ca_event {
770 CA_EVENT_TX_START, /* first transmit when no packets in flight */
771 CA_EVENT_CWND_RESTART, /* congestion window restart */
772 CA_EVENT_COMPLETE_CWR, /* end of congestion recovery */
317a76f9
SH
773 CA_EVENT_LOSS, /* loss timeout */
774 CA_EVENT_FAST_ACK, /* in sequence ack */
775 CA_EVENT_SLOW_ACK, /* other ack */
776};
777
778/*
779 * Interface for adding new TCP congestion control handlers
780 */
781#define TCP_CA_NAME_MAX 16
3ff825b2
SH
782#define TCP_CA_MAX 128
783#define TCP_CA_BUF_MAX (TCP_CA_NAME_MAX*TCP_CA_MAX)
784
164891aa 785#define TCP_CONG_NON_RESTRICTED 0x1
164891aa 786
317a76f9
SH
787struct tcp_congestion_ops {
788 struct list_head list;
164891aa 789 unsigned long flags;
317a76f9
SH
790
791 /* initialize private data (optional) */
6687e988 792 void (*init)(struct sock *sk);
317a76f9 793 /* cleanup private data (optional) */
6687e988 794 void (*release)(struct sock *sk);
317a76f9
SH
795
796 /* return slow start threshold (required) */
6687e988 797 u32 (*ssthresh)(struct sock *sk);
317a76f9 798 /* do new cwnd calculation (required) */
9f9843a7 799 void (*cong_avoid)(struct sock *sk, u32 ack, u32 acked, u32 in_flight);
317a76f9 800 /* call before changing ca_state (optional) */
6687e988 801 void (*set_state)(struct sock *sk, u8 new_state);
317a76f9 802 /* call when cwnd event occurs (optional) */
6687e988 803 void (*cwnd_event)(struct sock *sk, enum tcp_ca_event ev);
317a76f9 804 /* new value of cwnd after loss (optional) */
6687e988 805 u32 (*undo_cwnd)(struct sock *sk);
317a76f9 806 /* hook for packet ack accounting (optional) */
30cfd0ba 807 void (*pkts_acked)(struct sock *sk, u32 num_acked, s32 rtt_us);
73c1f4a0 808 /* get info for inet_diag (optional) */
6687e988 809 void (*get_info)(struct sock *sk, u32 ext, struct sk_buff *skb);
317a76f9
SH
810
811 char name[TCP_CA_NAME_MAX];
812 struct module *owner;
813};
814
5c9f3023
JP
815int tcp_register_congestion_control(struct tcp_congestion_ops *type);
816void tcp_unregister_congestion_control(struct tcp_congestion_ops *type);
317a76f9 817
5c9f3023
JP
818void tcp_init_congestion_control(struct sock *sk);
819void tcp_cleanup_congestion_control(struct sock *sk);
820int tcp_set_default_congestion_control(const char *name);
821void tcp_get_default_congestion_control(char *name);
822void tcp_get_available_congestion_control(char *buf, size_t len);
823void tcp_get_allowed_congestion_control(char *buf, size_t len);
824int tcp_set_allowed_congestion_control(char *allowed);
825int tcp_set_congestion_control(struct sock *sk, const char *name);
9f9843a7 826int tcp_slow_start(struct tcp_sock *tp, u32 acked);
5c9f3023 827void tcp_cong_avoid_ai(struct tcp_sock *tp, u32 w);
317a76f9 828
5f8ef48d 829extern struct tcp_congestion_ops tcp_init_congestion_ops;
5c9f3023 830u32 tcp_reno_ssthresh(struct sock *sk);
9f9843a7 831void tcp_reno_cong_avoid(struct sock *sk, u32 ack, u32 acked, u32 in_flight);
a8acfbac 832extern struct tcp_congestion_ops tcp_reno;
317a76f9 833
6687e988 834static inline void tcp_set_ca_state(struct sock *sk, const u8 ca_state)
317a76f9 835{
6687e988
ACM
836 struct inet_connection_sock *icsk = inet_csk(sk);
837
838 if (icsk->icsk_ca_ops->set_state)
839 icsk->icsk_ca_ops->set_state(sk, ca_state);
840 icsk->icsk_ca_state = ca_state;
317a76f9
SH
841}
842
6687e988 843static inline void tcp_ca_event(struct sock *sk, const enum tcp_ca_event event)
317a76f9 844{
6687e988
ACM
845 const struct inet_connection_sock *icsk = inet_csk(sk);
846
847 if (icsk->icsk_ca_ops->cwnd_event)
848 icsk->icsk_ca_ops->cwnd_event(sk, event);
317a76f9
SH
849}
850
e60402d0
IJ
851/* These functions determine how the current flow behaves in respect of SACK
852 * handling. SACK is negotiated with the peer, and therefore it can vary
853 * between different flows.
854 *
855 * tcp_is_sack - SACK enabled
856 * tcp_is_reno - No SACK
857 * tcp_is_fack - FACK enabled, implies SACK enabled
858 */
859static inline int tcp_is_sack(const struct tcp_sock *tp)
860{
861 return tp->rx_opt.sack_ok;
862}
863
a2a385d6 864static inline bool tcp_is_reno(const struct tcp_sock *tp)
e60402d0
IJ
865{
866 return !tcp_is_sack(tp);
867}
868
a2a385d6 869static inline bool tcp_is_fack(const struct tcp_sock *tp)
e60402d0 870{
ab56222a 871 return tp->rx_opt.sack_ok & TCP_FACK_ENABLED;
e60402d0
IJ
872}
873
874static inline void tcp_enable_fack(struct tcp_sock *tp)
875{
ab56222a 876 tp->rx_opt.sack_ok |= TCP_FACK_ENABLED;
e60402d0
IJ
877}
878
eed530b6
YC
879/* TCP early-retransmit (ER) is similar to but more conservative than
880 * the thin-dupack feature. Enable ER only if thin-dupack is disabled.
881 */
882static inline void tcp_enable_early_retrans(struct tcp_sock *tp)
883{
884 tp->do_early_retrans = sysctl_tcp_early_retrans &&
6ba8a3b1
ND
885 sysctl_tcp_early_retrans < 4 && !sysctl_tcp_thin_dupack &&
886 sysctl_tcp_reordering == 3;
eed530b6
YC
887}
888
889static inline void tcp_disable_early_retrans(struct tcp_sock *tp)
890{
891 tp->do_early_retrans = 0;
892}
893
83ae4088
IJ
894static inline unsigned int tcp_left_out(const struct tcp_sock *tp)
895{
896 return tp->sacked_out + tp->lost_out;
897}
898
1da177e4
LT
899/* This determines how many packets are "in the network" to the best
900 * of our knowledge. In many cases it is conservative, but where
901 * detailed information is available from the receiver (via SACK
902 * blocks etc.) we can make more aggressive calculations.
903 *
904 * Use this for decisions involving congestion control, use just
905 * tp->packets_out to determine if the send queue is empty or not.
906 *
907 * Read this equation as:
908 *
909 * "Packets sent once on transmission queue" MINUS
910 * "Packets left network, but not honestly ACKed yet" PLUS
911 * "Packets fast retransmitted"
912 */
40efc6fa 913static inline unsigned int tcp_packets_in_flight(const struct tcp_sock *tp)
1da177e4 914{
83ae4088 915 return tp->packets_out - tcp_left_out(tp) + tp->retrans_out;
1da177e4
LT
916}
917
0b6a05c1
IJ
918#define TCP_INFINITE_SSTHRESH 0x7fffffff
919
920static inline bool tcp_in_initial_slowstart(const struct tcp_sock *tp)
921{
922 return tp->snd_ssthresh >= TCP_INFINITE_SSTHRESH;
923}
924
684bad11
YC
925static inline bool tcp_in_cwnd_reduction(const struct sock *sk)
926{
927 return (TCPF_CA_CWR | TCPF_CA_Recovery) &
928 (1 << inet_csk(sk)->icsk_ca_state);
929}
930
1da177e4 931/* If cwnd > ssthresh, we may raise ssthresh to be half-way to cwnd.
684bad11 932 * The exception is cwnd reduction phase, when cwnd is decreasing towards
1da177e4
LT
933 * ssthresh.
934 */
6687e988 935static inline __u32 tcp_current_ssthresh(const struct sock *sk)
1da177e4 936{
6687e988 937 const struct tcp_sock *tp = tcp_sk(sk);
cf533ea5 938
684bad11 939 if (tcp_in_cwnd_reduction(sk))
1da177e4
LT
940 return tp->snd_ssthresh;
941 else
942 return max(tp->snd_ssthresh,
943 ((tp->snd_cwnd >> 1) +
944 (tp->snd_cwnd >> 2)));
945}
946
b9c4595b
IJ
947/* Use define here intentionally to get WARN_ON location shown at the caller */
948#define tcp_verify_left_out(tp) WARN_ON(tcp_left_out(tp) > tp->packets_out)
1da177e4 949
5c9f3023
JP
950void tcp_enter_cwr(struct sock *sk, const int set_ssthresh);
951__u32 tcp_init_cwnd(const struct tcp_sock *tp, const struct dst_entry *dst);
1da177e4 952
6b5a5c0d
NC
953/* The maximum number of MSS of available cwnd for which TSO defers
954 * sending if not using sysctl_tcp_tso_win_divisor.
955 */
956static inline __u32 tcp_max_tso_deferred_mss(const struct tcp_sock *tp)
957{
958 return 3;
959}
960
1da177e4 961/* Slow start with delack produces 3 packets of burst, so that
dd9e0dda
JH
962 * it is safe "de facto". This will be the default - same as
963 * the default reordering threshold - but if reordering increases,
964 * we must be able to allow cwnd to burst at least this much in order
965 * to not pull it back when holes are filled.
1da177e4
LT
966 */
967static __inline__ __u32 tcp_max_burst(const struct tcp_sock *tp)
968{
dd9e0dda 969 return tp->reordering;
1da177e4
LT
970}
971
90840def
IJ
972/* Returns end sequence number of the receiver's advertised window */
973static inline u32 tcp_wnd_end(const struct tcp_sock *tp)
974{
975 return tp->snd_una + tp->snd_wnd;
976}
e114a710
ED
977
978/* We follow the spirit of RFC2861 to validate cwnd but implement a more
979 * flexible approach. The RFC suggests cwnd should not be raised unless
980 * it was fully used previously. But we allow cwnd to grow as long as the
981 * application has used half the cwnd.
982 * Example :
983 * cwnd is 10 (IW10), but application sends 9 frames.
984 * We allow cwnd to reach 18 when all frames are ACKed.
985 * This check is safe because it's as aggressive as slow start which already
986 * risks 100% overshoot. The advantage is that we discourage application to
987 * either send more filler packets or data to artificially blow up the cwnd
988 * usage, and allow application-limited process to probe bw more aggressively.
989 *
990 * TODO: remove in_flight once we can fix all callers, and their callers...
991 */
992static inline bool tcp_is_cwnd_limited(const struct sock *sk, u32 in_flight)
993{
994 const struct tcp_sock *tp = tcp_sk(sk);
995
996 return tp->snd_cwnd < 2 * tp->lsnd_pending;
997}
f4805ede 998
9e412ba7 999static inline void tcp_check_probe_timer(struct sock *sk)
1da177e4 1000{
cf533ea5 1001 const struct tcp_sock *tp = tcp_sk(sk);
463c84b9 1002 const struct inet_connection_sock *icsk = inet_csk(sk);
9e412ba7 1003
463c84b9 1004 if (!tp->packets_out && !icsk->icsk_pending)
3f421baa
ACM
1005 inet_csk_reset_xmit_timer(sk, ICSK_TIME_PROBE0,
1006 icsk->icsk_rto, TCP_RTO_MAX);
1da177e4
LT
1007}
1008
ee7537b6 1009static inline void tcp_init_wl(struct tcp_sock *tp, u32 seq)
1da177e4
LT
1010{
1011 tp->snd_wl1 = seq;
1012}
1013
ee7537b6 1014static inline void tcp_update_wl(struct tcp_sock *tp, u32 seq)
1da177e4
LT
1015{
1016 tp->snd_wl1 = seq;
1017}
1018
1da177e4
LT
1019/*
1020 * Calculate(/check) TCP checksum
1021 */
ba7808ea
FD
1022static inline __sum16 tcp_v4_check(int len, __be32 saddr,
1023 __be32 daddr, __wsum base)
1da177e4
LT
1024{
1025 return csum_tcpudp_magic(saddr,daddr,len,IPPROTO_TCP,base);
1026}
1027
b51655b9 1028static inline __sum16 __tcp_checksum_complete(struct sk_buff *skb)
1da177e4 1029{
fb286bb2 1030 return __skb_checksum_complete(skb);
1da177e4
LT
1031}
1032
a2a385d6 1033static inline bool tcp_checksum_complete(struct sk_buff *skb)
1da177e4 1034{
60476372 1035 return !skb_csum_unnecessary(skb) &&
1da177e4
LT
1036 __tcp_checksum_complete(skb);
1037}
1038
1039/* Prequeue for VJ style copy to user, combined with checksumming. */
1040
40efc6fa 1041static inline void tcp_prequeue_init(struct tcp_sock *tp)
1da177e4
LT
1042{
1043 tp->ucopy.task = NULL;
1044 tp->ucopy.len = 0;
1045 tp->ucopy.memory = 0;
1046 skb_queue_head_init(&tp->ucopy.prequeue);
97fc2f08
CL
1047#ifdef CONFIG_NET_DMA
1048 tp->ucopy.dma_chan = NULL;
1049 tp->ucopy.wakeup = 0;
1050 tp->ucopy.pinned_list = NULL;
1051 tp->ucopy.dma_cookie = 0;
1052#endif
1da177e4
LT
1053}
1054
5c9f3023 1055bool tcp_prequeue(struct sock *sk, struct sk_buff *skb);
1da177e4
LT
1056
1057#undef STATE_TRACE
1058
1059#ifdef STATE_TRACE
1060static const char *statename[]={
1061 "Unused","Established","Syn Sent","Syn Recv",
1062 "Fin Wait 1","Fin Wait 2","Time Wait", "Close",
1063 "Close Wait","Last ACK","Listen","Closing"
1064};
1065#endif
5c9f3023 1066void tcp_set_state(struct sock *sk, int state);
1da177e4 1067
5c9f3023 1068void tcp_done(struct sock *sk);
1da177e4 1069
40efc6fa 1070static inline void tcp_sack_reset(struct tcp_options_received *rx_opt)
1da177e4
LT
1071{
1072 rx_opt->dsack = 0;
1da177e4
LT
1073 rx_opt->num_sacks = 0;
1074}
1075
5c9f3023 1076u32 tcp_default_init_rwnd(u32 mss);
85f16525 1077
1da177e4 1078/* Determine a window scaling and initial window to offer. */
5c9f3023
JP
1079void tcp_select_initial_window(int __space, __u32 mss, __u32 *rcv_wnd,
1080 __u32 *window_clamp, int wscale_ok,
1081 __u8 *rcv_wscale, __u32 init_rcv_wnd);
1da177e4
LT
1082
1083static inline int tcp_win_from_space(int space)
1084{
1085 return sysctl_tcp_adv_win_scale<=0 ?
1086 (space>>(-sysctl_tcp_adv_win_scale)) :
1087 space - (space>>sysctl_tcp_adv_win_scale);
1088}
1089
1090/* Note: caller must be prepared to deal with negative returns */
1091static inline int tcp_space(const struct sock *sk)
1092{
1093 return tcp_win_from_space(sk->sk_rcvbuf -
1094 atomic_read(&sk->sk_rmem_alloc));
1095}
1096
1097static inline int tcp_full_space(const struct sock *sk)
1098{
1099 return tcp_win_from_space(sk->sk_rcvbuf);
1100}
1101
40efc6fa
SH
1102static inline void tcp_openreq_init(struct request_sock *req,
1103 struct tcp_options_received *rx_opt,
1104 struct sk_buff *skb)
1da177e4 1105{
2e6599cb
ACM
1106 struct inet_request_sock *ireq = inet_rsk(req);
1107
1da177e4 1108 req->rcv_wnd = 0; /* So that tcp_send_synack() knows! */
4dfc2817 1109 req->cookie_ts = 0;
2e6599cb 1110 tcp_rsk(req)->rcv_isn = TCP_SKB_CB(skb)->seq;
10467163 1111 tcp_rsk(req)->rcv_nxt = TCP_SKB_CB(skb)->seq + 1;
016818d0 1112 tcp_rsk(req)->snt_synack = 0;
1da177e4
LT
1113 req->mss = rx_opt->mss_clamp;
1114 req->ts_recent = rx_opt->saw_tstamp ? rx_opt->rcv_tsval : 0;
2e6599cb
ACM
1115 ireq->tstamp_ok = rx_opt->tstamp_ok;
1116 ireq->sack_ok = rx_opt->sack_ok;
1117 ireq->snd_wscale = rx_opt->snd_wscale;
1118 ireq->wscale_ok = rx_opt->wscale_ok;
1119 ireq->acked = 0;
1120 ireq->ecn_ok = 0;
634fb979 1121 ireq->ir_rmt_port = tcp_hdr(skb)->source;
b44084c2 1122 ireq->ir_num = ntohs(tcp_hdr(skb)->dest);
1da177e4
LT
1123}
1124
5c9f3023 1125void tcp_enter_memory_pressure(struct sock *sk);
1da177e4 1126
1da177e4
LT
1127static inline int keepalive_intvl_when(const struct tcp_sock *tp)
1128{
1129 return tp->keepalive_intvl ? : sysctl_tcp_keepalive_intvl;
1130}
1131
1132static inline int keepalive_time_when(const struct tcp_sock *tp)
1133{
1134 return tp->keepalive_time ? : sysctl_tcp_keepalive_time;
1135}
1136
df19a626
ED
1137static inline int keepalive_probes(const struct tcp_sock *tp)
1138{
1139 return tp->keepalive_probes ? : sysctl_tcp_keepalive_probes;
1140}
1141
6c37e5de
FL
1142static inline u32 keepalive_time_elapsed(const struct tcp_sock *tp)
1143{
1144 const struct inet_connection_sock *icsk = &tp->inet_conn;
1145
1146 return min_t(u32, tcp_time_stamp - icsk->icsk_ack.lrcvtime,
1147 tcp_time_stamp - tp->rcv_tstamp);
1148}
1149
463c84b9 1150static inline int tcp_fin_time(const struct sock *sk)
1da177e4 1151{
463c84b9
ACM
1152 int fin_timeout = tcp_sk(sk)->linger2 ? : sysctl_tcp_fin_timeout;
1153 const int rto = inet_csk(sk)->icsk_rto;
1da177e4 1154
463c84b9
ACM
1155 if (fin_timeout < (rto << 2) - (rto >> 1))
1156 fin_timeout = (rto << 2) - (rto >> 1);
1da177e4
LT
1157
1158 return fin_timeout;
1159}
1160
a2a385d6
ED
1161static inline bool tcp_paws_check(const struct tcp_options_received *rx_opt,
1162 int paws_win)
1da177e4 1163{
c887e6d2 1164 if ((s32)(rx_opt->ts_recent - rx_opt->rcv_tsval) <= paws_win)
a2a385d6 1165 return true;
c887e6d2 1166 if (unlikely(get_seconds() >= rx_opt->ts_recent_stamp + TCP_PAWS_24DAYS))
a2a385d6 1167 return true;
bc2ce894
ED
1168 /*
1169 * Some OSes send SYN and SYNACK messages with tsval=0 tsecr=0,
1170 * then following tcp messages have valid values. Ignore 0 value,
1171 * or else 'negative' tsval might forbid us to accept their packets.
1172 */
1173 if (!rx_opt->ts_recent)
a2a385d6
ED
1174 return true;
1175 return false;
c887e6d2
IJ
1176}
1177
a2a385d6
ED
1178static inline bool tcp_paws_reject(const struct tcp_options_received *rx_opt,
1179 int rst)
c887e6d2
IJ
1180{
1181 if (tcp_paws_check(rx_opt, 0))
a2a385d6 1182 return false;
1da177e4
LT
1183
1184 /* RST segments are not recommended to carry timestamp,
1185 and, if they do, it is recommended to ignore PAWS because
1186 "their cleanup function should take precedence over timestamps."
1187 Certainly, it is mistake. It is necessary to understand the reasons
1188 of this constraint to relax it: if peer reboots, clock may go
1189 out-of-sync and half-open connections will not be reset.
1190 Actually, the problem would be not existing if all
1191 the implementations followed draft about maintaining clock
1192 via reboots. Linux-2.2 DOES NOT!
1193
1194 However, we can relax time bounds for RST segments to MSL.
1195 */
9d729f72 1196 if (rst && get_seconds() >= rx_opt->ts_recent_stamp + TCP_PAWS_MSL)
a2a385d6
ED
1197 return false;
1198 return true;
1da177e4
LT
1199}
1200
a9c19329 1201static inline void tcp_mib_init(struct net *net)
1da177e4
LT
1202{
1203 /* See RFC 2012 */
cf1100a7
PE
1204 TCP_ADD_STATS_USER(net, TCP_MIB_RTOALGORITHM, 1);
1205 TCP_ADD_STATS_USER(net, TCP_MIB_RTOMIN, TCP_RTO_MIN*1000/HZ);
1206 TCP_ADD_STATS_USER(net, TCP_MIB_RTOMAX, TCP_RTO_MAX*1000/HZ);
1207 TCP_ADD_STATS_USER(net, TCP_MIB_MAXCONN, -1);
1da177e4
LT
1208}
1209
5af4ec23 1210/* from STCP */
ef9da47c 1211static inline void tcp_clear_retrans_hints_partial(struct tcp_sock *tp)
0800f170 1212{
6a438bbe 1213 tp->lost_skb_hint = NULL;
ef9da47c
IJ
1214}
1215
1216static inline void tcp_clear_all_retrans_hints(struct tcp_sock *tp)
1217{
1218 tcp_clear_retrans_hints_partial(tp);
6a438bbe 1219 tp->retransmit_skb_hint = NULL;
b7689205
IJ
1220}
1221
cfb6eeb4
YH
1222/* MD5 Signature */
1223struct crypto_hash;
1224
a915da9b
ED
1225union tcp_md5_addr {
1226 struct in_addr a4;
1227#if IS_ENABLED(CONFIG_IPV6)
1228 struct in6_addr a6;
1229#endif
1230};
1231
cfb6eeb4
YH
1232/* - key database */
1233struct tcp_md5sig_key {
a915da9b 1234 struct hlist_node node;
cfb6eeb4 1235 u8 keylen;
a915da9b
ED
1236 u8 family; /* AF_INET or AF_INET6 */
1237 union tcp_md5_addr addr;
1238 u8 key[TCP_MD5SIG_MAXKEYLEN];
1239 struct rcu_head rcu;
cfb6eeb4
YH
1240};
1241
1242/* - sock block */
1243struct tcp_md5sig_info {
a915da9b 1244 struct hlist_head head;
a8afca03 1245 struct rcu_head rcu;
cfb6eeb4
YH
1246};
1247
1248/* - pseudo header */
1249struct tcp4_pseudohdr {
1250 __be32 saddr;
1251 __be32 daddr;
1252 __u8 pad;
1253 __u8 protocol;
1254 __be16 len;
1255};
1256
1257struct tcp6_pseudohdr {
1258 struct in6_addr saddr;
1259 struct in6_addr daddr;
1260 __be32 len;
1261 __be32 protocol; /* including padding */
1262};
1263
1264union tcp_md5sum_block {
1265 struct tcp4_pseudohdr ip4;
dfd56b8b 1266#if IS_ENABLED(CONFIG_IPV6)
cfb6eeb4
YH
1267 struct tcp6_pseudohdr ip6;
1268#endif
1269};
1270
1271/* - pool: digest algorithm, hash description and scratch buffer */
1272struct tcp_md5sig_pool {
1273 struct hash_desc md5_desc;
1274 union tcp_md5sum_block md5_blk;
1275};
1276
cfb6eeb4 1277/* - functions */
5c9f3023
JP
1278int tcp_v4_md5_hash_skb(char *md5_hash, struct tcp_md5sig_key *key,
1279 const struct sock *sk, const struct request_sock *req,
1280 const struct sk_buff *skb);
1281int tcp_md5_do_add(struct sock *sk, const union tcp_md5_addr *addr,
1282 int family, const u8 *newkey, u8 newkeylen, gfp_t gfp);
1283int tcp_md5_do_del(struct sock *sk, const union tcp_md5_addr *addr,
1284 int family);
1285struct tcp_md5sig_key *tcp_v4_md5_lookup(struct sock *sk,
a915da9b 1286 struct sock *addr_sk);
cfb6eeb4 1287
9501f972 1288#ifdef CONFIG_TCP_MD5SIG
5c9f3023
JP
1289struct tcp_md5sig_key *tcp_md5_do_lookup(struct sock *sk,
1290 const union tcp_md5_addr *addr,
1291 int family);
a915da9b 1292#define tcp_twsk_md5_key(twsk) ((twsk)->tw_md5_key)
9501f972 1293#else
a915da9b
ED
1294static inline struct tcp_md5sig_key *tcp_md5_do_lookup(struct sock *sk,
1295 const union tcp_md5_addr *addr,
1296 int family)
1297{
1298 return NULL;
1299}
9501f972
YH
1300#define tcp_twsk_md5_key(twsk) NULL
1301#endif
1302
5c9f3023 1303bool tcp_alloc_md5sig_pool(void);
cfb6eeb4 1304
5c9f3023 1305struct tcp_md5sig_pool *tcp_get_md5sig_pool(void);
71cea17e
ED
1306static inline void tcp_put_md5sig_pool(void)
1307{
1308 local_bh_enable();
1309}
35790c04 1310
5c9f3023
JP
1311int tcp_md5_hash_header(struct tcp_md5sig_pool *, const struct tcphdr *);
1312int tcp_md5_hash_skb_data(struct tcp_md5sig_pool *, const struct sk_buff *,
1313 unsigned int header_len);
1314int tcp_md5_hash_key(struct tcp_md5sig_pool *hp,
1315 const struct tcp_md5sig_key *key);
cfb6eeb4 1316
10467163 1317/* From tcp_fastopen.c */
5c9f3023
JP
1318void tcp_fastopen_cache_get(struct sock *sk, u16 *mss,
1319 struct tcp_fastopen_cookie *cookie, int *syn_loss,
1320 unsigned long *last_syn_loss);
1321void tcp_fastopen_cache_set(struct sock *sk, u16 mss,
1322 struct tcp_fastopen_cookie *cookie, bool syn_lost);
783237e8
YC
1323struct tcp_fastopen_request {
1324 /* Fast Open cookie. Size 0 means a cookie request */
1325 struct tcp_fastopen_cookie cookie;
1326 struct msghdr *data; /* data in MSG_FASTOPEN */
f5ddcbbb
ED
1327 size_t size;
1328 int copied; /* queued in tcp_connect() */
783237e8 1329};
783237e8
YC
1330void tcp_free_fastopen_req(struct tcp_sock *tp);
1331
10467163
JC
1332extern struct tcp_fastopen_context __rcu *tcp_fastopen_ctx;
1333int tcp_fastopen_reset_cipher(void *key, unsigned int len);
5c9f3023
JP
1334void tcp_fastopen_cookie_gen(__be32 src, __be32 dst,
1335 struct tcp_fastopen_cookie *foc);
222e83d2 1336void tcp_fastopen_init_key_once(bool publish);
10467163
JC
1337#define TCP_FASTOPEN_KEY_LENGTH 16
1338
1339/* Fastopen key context */
1340struct tcp_fastopen_context {
7ae8639c
ED
1341 struct crypto_cipher *tfm;
1342 __u8 key[TCP_FASTOPEN_KEY_LENGTH];
1343 struct rcu_head rcu;
10467163
JC
1344};
1345
fe067e8a
DM
1346/* write queue abstraction */
1347static inline void tcp_write_queue_purge(struct sock *sk)
1348{
1349 struct sk_buff *skb;
1350
1351 while ((skb = __skb_dequeue(&sk->sk_write_queue)) != NULL)
3ab224be
HA
1352 sk_wmem_free_skb(sk, skb);
1353 sk_mem_reclaim(sk);
8818a9d8 1354 tcp_clear_all_retrans_hints(tcp_sk(sk));
fe067e8a
DM
1355}
1356
cf533ea5 1357static inline struct sk_buff *tcp_write_queue_head(const struct sock *sk)
fe067e8a 1358{
cd07a8ea 1359 return skb_peek(&sk->sk_write_queue);
fe067e8a
DM
1360}
1361
cf533ea5 1362static inline struct sk_buff *tcp_write_queue_tail(const struct sock *sk)
fe067e8a 1363{
cd07a8ea 1364 return skb_peek_tail(&sk->sk_write_queue);
fe067e8a
DM
1365}
1366
cf533ea5
ED
1367static inline struct sk_buff *tcp_write_queue_next(const struct sock *sk,
1368 const struct sk_buff *skb)
fe067e8a 1369{
cd07a8ea 1370 return skb_queue_next(&sk->sk_write_queue, skb);
fe067e8a
DM
1371}
1372
cf533ea5
ED
1373static inline struct sk_buff *tcp_write_queue_prev(const struct sock *sk,
1374 const struct sk_buff *skb)
832d11c5
IJ
1375{
1376 return skb_queue_prev(&sk->sk_write_queue, skb);
1377}
1378
fe067e8a 1379#define tcp_for_write_queue(skb, sk) \
cd07a8ea 1380 skb_queue_walk(&(sk)->sk_write_queue, skb)
fe067e8a
DM
1381
1382#define tcp_for_write_queue_from(skb, sk) \
cd07a8ea 1383 skb_queue_walk_from(&(sk)->sk_write_queue, skb)
fe067e8a 1384
234b6860 1385#define tcp_for_write_queue_from_safe(skb, tmp, sk) \
cd07a8ea 1386 skb_queue_walk_from_safe(&(sk)->sk_write_queue, skb, tmp)
234b6860 1387
cf533ea5 1388static inline struct sk_buff *tcp_send_head(const struct sock *sk)
fe067e8a
DM
1389{
1390 return sk->sk_send_head;
1391}
1392
cd07a8ea
DM
1393static inline bool tcp_skb_is_last(const struct sock *sk,
1394 const struct sk_buff *skb)
1395{
1396 return skb_queue_is_last(&sk->sk_write_queue, skb);
1397}
1398
cf533ea5 1399static inline void tcp_advance_send_head(struct sock *sk, const struct sk_buff *skb)
fe067e8a 1400{
cd07a8ea 1401 if (tcp_skb_is_last(sk, skb))
fe067e8a 1402 sk->sk_send_head = NULL;
cd07a8ea
DM
1403 else
1404 sk->sk_send_head = tcp_write_queue_next(sk, skb);
fe067e8a
DM
1405}
1406
1407static inline void tcp_check_send_head(struct sock *sk, struct sk_buff *skb_unlinked)
1408{
1409 if (sk->sk_send_head == skb_unlinked)
1410 sk->sk_send_head = NULL;
1411}
1412
1413static inline void tcp_init_send_head(struct sock *sk)
1414{
1415 sk->sk_send_head = NULL;
1416}
1417
1418static inline void __tcp_add_write_queue_tail(struct sock *sk, struct sk_buff *skb)
1419{
1420 __skb_queue_tail(&sk->sk_write_queue, skb);
1421}
1422
1423static inline void tcp_add_write_queue_tail(struct sock *sk, struct sk_buff *skb)
1424{
1425 __tcp_add_write_queue_tail(sk, skb);
1426
1427 /* Queue it, remembering where we must start sending. */
6859d494 1428 if (sk->sk_send_head == NULL) {
fe067e8a 1429 sk->sk_send_head = skb;
6859d494
IJ
1430
1431 if (tcp_sk(sk)->highest_sack == NULL)
1432 tcp_sk(sk)->highest_sack = skb;
1433 }
fe067e8a
DM
1434}
1435
1436static inline void __tcp_add_write_queue_head(struct sock *sk, struct sk_buff *skb)
1437{
1438 __skb_queue_head(&sk->sk_write_queue, skb);
1439}
1440
1441/* Insert buff after skb on the write queue of sk. */
1442static inline void tcp_insert_write_queue_after(struct sk_buff *skb,
1443 struct sk_buff *buff,
1444 struct sock *sk)
1445{
7de6c033 1446 __skb_queue_after(&sk->sk_write_queue, skb, buff);
fe067e8a
DM
1447}
1448
43f59c89 1449/* Insert new before skb on the write queue of sk. */
fe067e8a
DM
1450static inline void tcp_insert_write_queue_before(struct sk_buff *new,
1451 struct sk_buff *skb,
1452 struct sock *sk)
1453{
43f59c89 1454 __skb_queue_before(&sk->sk_write_queue, skb, new);