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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 * Implementation of the Transmission Control Protocol(TCP).
7 *
02c30a84 8 * Authors: Ross Biro
1da177e4
LT
9 * Fred N. van Kempen, <waltje@uWalt.NL.Mugnet.ORG>
10 * Mark Evans, <evansmp@uhura.aston.ac.uk>
11 * Corey Minyard <wf-rch!minyard@relay.EU.net>
12 * Florian La Roche, <flla@stud.uni-sb.de>
13 * Charles Hedrick, <hedrick@klinzhai.rutgers.edu>
14 * Linus Torvalds, <torvalds@cs.helsinki.fi>
15 * Alan Cox, <gw4pts@gw4pts.ampr.org>
16 * Matthew Dillon, <dillon@apollo.west.oic.com>
17 * Arnt Gulbrandsen, <agulbra@nvg.unit.no>
18 * Jorge Cwik, <jorge@laser.satlink.net>
19 *
20 * Fixes:
21 * Alan Cox : Numerous verify_area() calls
22 * Alan Cox : Set the ACK bit on a reset
23 * Alan Cox : Stopped it crashing if it closed while
24 * sk->inuse=1 and was trying to connect
25 * (tcp_err()).
26 * Alan Cox : All icmp error handling was broken
27 * pointers passed where wrong and the
28 * socket was looked up backwards. Nobody
29 * tested any icmp error code obviously.
30 * Alan Cox : tcp_err() now handled properly. It
31 * wakes people on errors. poll
32 * behaves and the icmp error race
33 * has gone by moving it into sock.c
34 * Alan Cox : tcp_send_reset() fixed to work for
35 * everything not just packets for
36 * unknown sockets.
37 * Alan Cox : tcp option processing.
38 * Alan Cox : Reset tweaked (still not 100%) [Had
39 * syn rule wrong]
40 * Herp Rosmanith : More reset fixes
41 * Alan Cox : No longer acks invalid rst frames.
42 * Acking any kind of RST is right out.
43 * Alan Cox : Sets an ignore me flag on an rst
44 * receive otherwise odd bits of prattle
45 * escape still
46 * Alan Cox : Fixed another acking RST frame bug.
47 * Should stop LAN workplace lockups.
48 * Alan Cox : Some tidyups using the new skb list
49 * facilities
50 * Alan Cox : sk->keepopen now seems to work
51 * Alan Cox : Pulls options out correctly on accepts
52 * Alan Cox : Fixed assorted sk->rqueue->next errors
53 * Alan Cox : PSH doesn't end a TCP read. Switched a
54 * bit to skb ops.
55 * Alan Cox : Tidied tcp_data to avoid a potential
56 * nasty.
57 * Alan Cox : Added some better commenting, as the
58 * tcp is hard to follow
59 * Alan Cox : Removed incorrect check for 20 * psh
60 * Michael O'Reilly : ack < copied bug fix.
61 * Johannes Stille : Misc tcp fixes (not all in yet).
62 * Alan Cox : FIN with no memory -> CRASH
63 * Alan Cox : Added socket option proto entries.
64 * Also added awareness of them to accept.
65 * Alan Cox : Added TCP options (SOL_TCP)
66 * Alan Cox : Switched wakeup calls to callbacks,
67 * so the kernel can layer network
68 * sockets.
69 * Alan Cox : Use ip_tos/ip_ttl settings.
70 * Alan Cox : Handle FIN (more) properly (we hope).
71 * Alan Cox : RST frames sent on unsynchronised
72 * state ack error.
73 * Alan Cox : Put in missing check for SYN bit.
74 * Alan Cox : Added tcp_select_window() aka NET2E
75 * window non shrink trick.
76 * Alan Cox : Added a couple of small NET2E timer
77 * fixes
78 * Charles Hedrick : TCP fixes
79 * Toomas Tamm : TCP window fixes
80 * Alan Cox : Small URG fix to rlogin ^C ack fight
81 * Charles Hedrick : Rewrote most of it to actually work
82 * Linus : Rewrote tcp_read() and URG handling
83 * completely
84 * Gerhard Koerting: Fixed some missing timer handling
85 * Matthew Dillon : Reworked TCP machine states as per RFC
86 * Gerhard Koerting: PC/TCP workarounds
87 * Adam Caldwell : Assorted timer/timing errors
88 * Matthew Dillon : Fixed another RST bug
89 * Alan Cox : Move to kernel side addressing changes.
90 * Alan Cox : Beginning work on TCP fastpathing
91 * (not yet usable)
92 * Arnt Gulbrandsen: Turbocharged tcp_check() routine.
93 * Alan Cox : TCP fast path debugging
94 * Alan Cox : Window clamping
95 * Michael Riepe : Bug in tcp_check()
96 * Matt Dillon : More TCP improvements and RST bug fixes
97 * Matt Dillon : Yet more small nasties remove from the
98 * TCP code (Be very nice to this man if
99 * tcp finally works 100%) 8)
100 * Alan Cox : BSD accept semantics.
101 * Alan Cox : Reset on closedown bug.
102 * Peter De Schrijver : ENOTCONN check missing in tcp_sendto().
103 * Michael Pall : Handle poll() after URG properly in
104 * all cases.
105 * Michael Pall : Undo the last fix in tcp_read_urg()
106 * (multi URG PUSH broke rlogin).
107 * Michael Pall : Fix the multi URG PUSH problem in
108 * tcp_readable(), poll() after URG
109 * works now.
110 * Michael Pall : recv(...,MSG_OOB) never blocks in the
111 * BSD api.
112 * Alan Cox : Changed the semantics of sk->socket to
113 * fix a race and a signal problem with
114 * accept() and async I/O.
115 * Alan Cox : Relaxed the rules on tcp_sendto().
116 * Yury Shevchuk : Really fixed accept() blocking problem.
117 * Craig I. Hagan : Allow for BSD compatible TIME_WAIT for
118 * clients/servers which listen in on
119 * fixed ports.
120 * Alan Cox : Cleaned the above up and shrank it to
121 * a sensible code size.
122 * Alan Cox : Self connect lockup fix.
123 * Alan Cox : No connect to multicast.
124 * Ross Biro : Close unaccepted children on master
125 * socket close.
126 * Alan Cox : Reset tracing code.
127 * Alan Cox : Spurious resets on shutdown.
128 * Alan Cox : Giant 15 minute/60 second timer error
129 * Alan Cox : Small whoops in polling before an
130 * accept.
131 * Alan Cox : Kept the state trace facility since
132 * it's handy for debugging.
133 * Alan Cox : More reset handler fixes.
134 * Alan Cox : Started rewriting the code based on
135 * the RFC's for other useful protocol
136 * references see: Comer, KA9Q NOS, and
137 * for a reference on the difference
138 * between specifications and how BSD
139 * works see the 4.4lite source.
140 * A.N.Kuznetsov : Don't time wait on completion of tidy
141 * close.
142 * Linus Torvalds : Fin/Shutdown & copied_seq changes.
143 * Linus Torvalds : Fixed BSD port reuse to work first syn
144 * Alan Cox : Reimplemented timers as per the RFC
145 * and using multiple timers for sanity.
146 * Alan Cox : Small bug fixes, and a lot of new
147 * comments.
148 * Alan Cox : Fixed dual reader crash by locking
149 * the buffers (much like datagram.c)
150 * Alan Cox : Fixed stuck sockets in probe. A probe
151 * now gets fed up of retrying without
152 * (even a no space) answer.
153 * Alan Cox : Extracted closing code better
154 * Alan Cox : Fixed the closing state machine to
155 * resemble the RFC.
156 * Alan Cox : More 'per spec' fixes.
157 * Jorge Cwik : Even faster checksumming.
158 * Alan Cox : tcp_data() doesn't ack illegal PSH
159 * only frames. At least one pc tcp stack
160 * generates them.
161 * Alan Cox : Cache last socket.
162 * Alan Cox : Per route irtt.
163 * Matt Day : poll()->select() match BSD precisely on error
164 * Alan Cox : New buffers
165 * Marc Tamsky : Various sk->prot->retransmits and
166 * sk->retransmits misupdating fixed.
167 * Fixed tcp_write_timeout: stuck close,
168 * and TCP syn retries gets used now.
169 * Mark Yarvis : In tcp_read_wakeup(), don't send an
170 * ack if state is TCP_CLOSED.
171 * Alan Cox : Look up device on a retransmit - routes may
172 * change. Doesn't yet cope with MSS shrink right
173 * but it's a start!
174 * Marc Tamsky : Closing in closing fixes.
175 * Mike Shaver : RFC1122 verifications.
176 * Alan Cox : rcv_saddr errors.
177 * Alan Cox : Block double connect().
178 * Alan Cox : Small hooks for enSKIP.
179 * Alexey Kuznetsov: Path MTU discovery.
180 * Alan Cox : Support soft errors.
181 * Alan Cox : Fix MTU discovery pathological case
182 * when the remote claims no mtu!
183 * Marc Tamsky : TCP_CLOSE fix.
184 * Colin (G3TNE) : Send a reset on syn ack replies in
185 * window but wrong (fixes NT lpd problems)
186 * Pedro Roque : Better TCP window handling, delayed ack.
187 * Joerg Reuter : No modification of locked buffers in
188 * tcp_do_retransmit()
189 * Eric Schenk : Changed receiver side silly window
190 * avoidance algorithm to BSD style
191 * algorithm. This doubles throughput
192 * against machines running Solaris,
193 * and seems to result in general
194 * improvement.
195 * Stefan Magdalinski : adjusted tcp_readable() to fix FIONREAD
196 * Willy Konynenberg : Transparent proxying support.
197 * Mike McLagan : Routing by source
198 * Keith Owens : Do proper merging with partial SKB's in
199 * tcp_do_sendmsg to avoid burstiness.
200 * Eric Schenk : Fix fast close down bug with
201 * shutdown() followed by close().
202 * Andi Kleen : Make poll agree with SIGIO
203 * Salvatore Sanfilippo : Support SO_LINGER with linger == 1 and
204 * lingertime == 0 (RFC 793 ABORT Call)
205 * Hirokazu Takahashi : Use copy_from_user() instead of
206 * csum_and_copy_from_user() if possible.
207 *
208 * This program is free software; you can redistribute it and/or
209 * modify it under the terms of the GNU General Public License
210 * as published by the Free Software Foundation; either version
211 * 2 of the License, or(at your option) any later version.
212 *
213 * Description of States:
214 *
215 * TCP_SYN_SENT sent a connection request, waiting for ack
216 *
217 * TCP_SYN_RECV received a connection request, sent ack,
218 * waiting for final ack in three-way handshake.
219 *
220 * TCP_ESTABLISHED connection established
221 *
222 * TCP_FIN_WAIT1 our side has shutdown, waiting to complete
223 * transmission of remaining buffered data
224 *
225 * TCP_FIN_WAIT2 all buffered data sent, waiting for remote
226 * to shutdown
227 *
228 * TCP_CLOSING both sides have shutdown but we still have
229 * data we have to finish sending
230 *
231 * TCP_TIME_WAIT timeout to catch resent junk before entering
232 * closed, can only be entered from FIN_WAIT2
233 * or CLOSING. Required because the other end
234 * may not have gotten our last ACK causing it
235 * to retransmit the data packet (which we ignore)
236 *
237 * TCP_CLOSE_WAIT remote side has shutdown and is waiting for
238 * us to finish writing our data and to shutdown
239 * (we have to close() to move on to LAST_ACK)
240 *
241 * TCP_LAST_ACK out side has shutdown after remote has
242 * shutdown. There may still be data in our
243 * buffer that we have to finish sending
244 *
245 * TCP_CLOSE socket is finished
246 */
247
afd46503
JP
248#define pr_fmt(fmt) "TCP: " fmt
249
172589cc 250#include <linux/kernel.h>
1da177e4
LT
251#include <linux/module.h>
252#include <linux/types.h>
253#include <linux/fcntl.h>
254#include <linux/poll.h>
6e9250f5 255#include <linux/inet_diag.h>
1da177e4 256#include <linux/init.h>
1da177e4 257#include <linux/fs.h>
9c55e01c 258#include <linux/skbuff.h>
81b23b4a 259#include <linux/scatterlist.h>
9c55e01c
JA
260#include <linux/splice.h>
261#include <linux/net.h>
262#include <linux/socket.h>
1da177e4
LT
263#include <linux/random.h>
264#include <linux/bootmem.h>
57413ebc
MS
265#include <linux/highmem.h>
266#include <linux/swap.h>
b8059ead 267#include <linux/cache.h>
f4c50d99 268#include <linux/err.h>
cfb6eeb4 269#include <linux/crypto.h>
da5c78c8 270#include <linux/time.h>
5a0e3ad6 271#include <linux/slab.h>
1da177e4
LT
272
273#include <net/icmp.h>
cf60af03 274#include <net/inet_common.h>
1da177e4
LT
275#include <net/tcp.h>
276#include <net/xfrm.h>
277#include <net/ip.h>
9c55e01c 278#include <net/sock.h>
1da177e4
LT
279
280#include <asm/uaccess.h>
281#include <asm/ioctls.h>
076bb0c8 282#include <net/busy_poll.h>
1da177e4 283
ab32ea5d 284int sysctl_tcp_fin_timeout __read_mostly = TCP_FIN_TIMEOUT;
1da177e4 285
95bd09eb
ED
286int sysctl_tcp_min_tso_segs __read_mostly = 2;
287
f54b3111
ED
288int sysctl_tcp_autocorking __read_mostly = 1;
289
dd24c001 290struct percpu_counter tcp_orphan_count;
0a5578cf
ACM
291EXPORT_SYMBOL_GPL(tcp_orphan_count);
292
a4fe34bf 293long sysctl_tcp_mem[3] __read_mostly;
b8059ead
DM
294int sysctl_tcp_wmem[3] __read_mostly;
295int sysctl_tcp_rmem[3] __read_mostly;
1da177e4 296
a4fe34bf 297EXPORT_SYMBOL(sysctl_tcp_mem);
1da177e4
LT
298EXPORT_SYMBOL(sysctl_tcp_rmem);
299EXPORT_SYMBOL(sysctl_tcp_wmem);
300
8d987e5c 301atomic_long_t tcp_memory_allocated; /* Current allocated memory. */
1da177e4 302EXPORT_SYMBOL(tcp_memory_allocated);
1748376b
ED
303
304/*
305 * Current number of TCP sockets.
306 */
307struct percpu_counter tcp_sockets_allocated;
1da177e4
LT
308EXPORT_SYMBOL(tcp_sockets_allocated);
309
9c55e01c
JA
310/*
311 * TCP splice context
312 */
313struct tcp_splice_state {
314 struct pipe_inode_info *pipe;
315 size_t len;
316 unsigned int flags;
317};
318
1da177e4
LT
319/*
320 * Pressure flag: try to collapse.
321 * Technical note: it is used by multiple contexts non atomically.
3ab224be 322 * All the __sk_mem_schedule() is of this nature: accounting
1da177e4
LT
323 * is strict, actions are advisory and have some latency.
324 */
4103f8cd 325int tcp_memory_pressure __read_mostly;
1da177e4
LT
326EXPORT_SYMBOL(tcp_memory_pressure);
327
5c52ba17 328void tcp_enter_memory_pressure(struct sock *sk)
1da177e4
LT
329{
330 if (!tcp_memory_pressure) {
4e673444 331 NET_INC_STATS(sock_net(sk), LINUX_MIB_TCPMEMORYPRESSURES);
1da177e4
LT
332 tcp_memory_pressure = 1;
333 }
334}
1da177e4
LT
335EXPORT_SYMBOL(tcp_enter_memory_pressure);
336
b103cf34
JA
337/* Convert seconds to retransmits based on initial and max timeout */
338static u8 secs_to_retrans(int seconds, int timeout, int rto_max)
339{
340 u8 res = 0;
341
342 if (seconds > 0) {
343 int period = timeout;
344
345 res = 1;
346 while (seconds > period && res < 255) {
347 res++;
348 timeout <<= 1;
349 if (timeout > rto_max)
350 timeout = rto_max;
351 period += timeout;
352 }
353 }
354 return res;
355}
356
357/* Convert retransmits to seconds based on initial and max timeout */
358static int retrans_to_secs(u8 retrans, int timeout, int rto_max)
359{
360 int period = 0;
361
362 if (retrans > 0) {
363 period = timeout;
364 while (--retrans) {
365 timeout <<= 1;
366 if (timeout > rto_max)
367 timeout = rto_max;
368 period += timeout;
369 }
370 }
371 return period;
372}
373
900f65d3
NC
374/* Address-family independent initialization for a tcp_sock.
375 *
376 * NOTE: A lot of things set to zero explicitly by call to
377 * sk_alloc() so need not be done here.
378 */
379void tcp_init_sock(struct sock *sk)
380{
381 struct inet_connection_sock *icsk = inet_csk(sk);
382 struct tcp_sock *tp = tcp_sk(sk);
383
996b175e 384 __skb_queue_head_init(&tp->out_of_order_queue);
900f65d3
NC
385 tcp_init_xmit_timers(sk);
386 tcp_prequeue_init(tp);
46d3ceab 387 INIT_LIST_HEAD(&tp->tsq_node);
900f65d3
NC
388
389 icsk->icsk_rto = TCP_TIMEOUT_INIT;
740b0f18 390 tp->mdev_us = jiffies_to_usecs(TCP_TIMEOUT_INIT);
900f65d3
NC
391
392 /* So many TCP implementations out there (incorrectly) count the
393 * initial SYN frame in their delayed-ACK and congestion control
394 * algorithms that we must have the following bandaid to talk
395 * efficiently to them. -DaveM
396 */
397 tp->snd_cwnd = TCP_INIT_CWND;
398
399 /* See draft-stevens-tcpca-spec-01 for discussion of the
400 * initialization of these values.
401 */
402 tp->snd_ssthresh = TCP_INFINITE_SSTHRESH;
403 tp->snd_cwnd_clamp = ~0;
404 tp->mss_cache = TCP_MSS_DEFAULT;
405
406 tp->reordering = sysctl_tcp_reordering;
eed530b6 407 tcp_enable_early_retrans(tp);
55d8694f 408 tcp_assign_congestion_control(sk);
900f65d3 409
ceaa1fef
AV
410 tp->tsoffset = 0;
411
900f65d3
NC
412 sk->sk_state = TCP_CLOSE;
413
414 sk->sk_write_space = sk_stream_write_space;
415 sock_set_flag(sk, SOCK_USE_WRITE_QUEUE);
416
417 icsk->icsk_sync_mss = tcp_sync_mss;
418
900f65d3
NC
419 sk->sk_sndbuf = sysctl_tcp_wmem[1];
420 sk->sk_rcvbuf = sysctl_tcp_rmem[1];
421
422 local_bh_disable();
423 sock_update_memcg(sk);
424 sk_sockets_allocated_inc(sk);
425 local_bh_enable();
426}
427EXPORT_SYMBOL(tcp_init_sock);
428
f066e2b0 429static void tcp_tx_timestamp(struct sock *sk, struct sk_buff *skb)
4ed2d765 430{
f066e2b0
WB
431 if (sk->sk_tsflags) {
432 struct skb_shared_info *shinfo = skb_shinfo(skb);
4ed2d765 433
f066e2b0
WB
434 sock_tx_timestamp(sk, &shinfo->tx_flags);
435 if (shinfo->tx_flags & SKBTX_ANY_TSTAMP)
436 shinfo->tskey = TCP_SKB_CB(skb)->seq + skb->len - 1;
437 }
4ed2d765
WB
438}
439
1da177e4
LT
440/*
441 * Wait for a TCP event.
442 *
443 * Note that we don't need to lock the socket, as the upper poll layers
444 * take care of normal races (between the test and the event) and we don't
445 * go look at any of the socket buffers directly.
446 */
447unsigned int tcp_poll(struct file *file, struct socket *sock, poll_table *wait)
448{
449 unsigned int mask;
450 struct sock *sk = sock->sk;
cf533ea5 451 const struct tcp_sock *tp = tcp_sk(sk);
1da177e4 452
c3f1dbaf
DM
453 sock_rps_record_flow(sk);
454
aa395145 455 sock_poll_wait(file, sk_sleep(sk), wait);
1da177e4 456 if (sk->sk_state == TCP_LISTEN)
dc40c7bc 457 return inet_csk_listen_poll(sk);
1da177e4
LT
458
459 /* Socket is not locked. We are protected from async events
70efce27
WN
460 * by poll logic and correct handling of state changes
461 * made by other threads is impossible in any case.
1da177e4
LT
462 */
463
464 mask = 0;
1da177e4
LT
465
466 /*
467 * POLLHUP is certainly not done right. But poll() doesn't
468 * have a notion of HUP in just one direction, and for a
469 * socket the read side is more interesting.
470 *
471 * Some poll() documentation says that POLLHUP is incompatible
472 * with the POLLOUT/POLLWR flags, so somebody should check this
473 * all. But careful, it tends to be safer to return too many
474 * bits than too few, and you can easily break real applications
475 * if you don't tell them that something has hung up!
476 *
477 * Check-me.
478 *
479 * Check number 1. POLLHUP is _UNMASKABLE_ event (see UNIX98 and
480 * our fs/select.c). It means that after we received EOF,
481 * poll always returns immediately, making impossible poll() on write()
482 * in state CLOSE_WAIT. One solution is evident --- to set POLLHUP
483 * if and only if shutdown has been made in both directions.
484 * Actually, it is interesting to look how Solaris and DUX
70efce27 485 * solve this dilemma. I would prefer, if POLLHUP were maskable,
1da177e4
LT
486 * then we could set it on SND_SHUTDOWN. BTW examples given
487 * in Stevens' books assume exactly this behaviour, it explains
70efce27 488 * why POLLHUP is incompatible with POLLOUT. --ANK
1da177e4
LT
489 *
490 * NOTE. Check for TCP_CLOSE is added. The goal is to prevent
491 * blocking on fresh not-connected or disconnected socket. --ANK
492 */
493 if (sk->sk_shutdown == SHUTDOWN_MASK || sk->sk_state == TCP_CLOSE)
494 mask |= POLLHUP;
495 if (sk->sk_shutdown & RCV_SHUTDOWN)
f348d70a 496 mask |= POLLIN | POLLRDNORM | POLLRDHUP;
1da177e4 497
8336886f
JC
498 /* Connected or passive Fast Open socket? */
499 if (sk->sk_state != TCP_SYN_SENT &&
00db4124 500 (sk->sk_state != TCP_SYN_RECV || tp->fastopen_rsk)) {
c7004482
DM
501 int target = sock_rcvlowat(sk, 0, INT_MAX);
502
503 if (tp->urg_seq == tp->copied_seq &&
504 !sock_flag(sk, SOCK_URGINLINE) &&
505 tp->urg_data)
b634f875 506 target++;
c7004482 507
1da177e4
LT
508 /* Potential race condition. If read of tp below will
509 * escape above sk->sk_state, we can be illegally awaken
510 * in SYN_* states. */
c7004482 511 if (tp->rcv_nxt - tp->copied_seq >= target)
1da177e4
LT
512 mask |= POLLIN | POLLRDNORM;
513
514 if (!(sk->sk_shutdown & SEND_SHUTDOWN)) {
64dc6130 515 if (sk_stream_is_writeable(sk)) {
1da177e4
LT
516 mask |= POLLOUT | POLLWRNORM;
517 } else { /* send SIGIO later */
518 set_bit(SOCK_ASYNC_NOSPACE,
519 &sk->sk_socket->flags);
520 set_bit(SOCK_NOSPACE, &sk->sk_socket->flags);
521
522 /* Race breaker. If space is freed after
523 * wspace test but before the flags are set,
3c715127 524 * IO signal will be lost. Memory barrier
525 * pairs with the input side.
1da177e4 526 */
3c715127 527 smp_mb__after_atomic();
64dc6130 528 if (sk_stream_is_writeable(sk))
1da177e4
LT
529 mask |= POLLOUT | POLLWRNORM;
530 }
d84ba638
KM
531 } else
532 mask |= POLLOUT | POLLWRNORM;
1da177e4
LT
533
534 if (tp->urg_data & TCP_URG_VALID)
535 mask |= POLLPRI;
536 }
a4d25803
TM
537 /* This barrier is coupled with smp_wmb() in tcp_reset() */
538 smp_rmb();
4ed2d765 539 if (sk->sk_err || !skb_queue_empty(&sk->sk_error_queue))
a4d25803
TM
540 mask |= POLLERR;
541
1da177e4
LT
542 return mask;
543}
4bc2f18b 544EXPORT_SYMBOL(tcp_poll);
1da177e4
LT
545
546int tcp_ioctl(struct sock *sk, int cmd, unsigned long arg)
547{
548 struct tcp_sock *tp = tcp_sk(sk);
549 int answ;
0e71c55c 550 bool slow;
1da177e4
LT
551
552 switch (cmd) {
553 case SIOCINQ:
554 if (sk->sk_state == TCP_LISTEN)
555 return -EINVAL;
556
0e71c55c 557 slow = lock_sock_fast(sk);
1da177e4
LT
558 if ((1 << sk->sk_state) & (TCPF_SYN_SENT | TCPF_SYN_RECV))
559 answ = 0;
560 else if (sock_flag(sk, SOCK_URGINLINE) ||
561 !tp->urg_data ||
562 before(tp->urg_seq, tp->copied_seq) ||
563 !before(tp->urg_seq, tp->rcv_nxt)) {
91521944 564
1da177e4
LT
565 answ = tp->rcv_nxt - tp->copied_seq;
566
a3374c42
ED
567 /* Subtract 1, if FIN was received */
568 if (answ && sock_flag(sk, SOCK_DONE))
569 answ--;
1da177e4
LT
570 } else
571 answ = tp->urg_seq - tp->copied_seq;
0e71c55c 572 unlock_sock_fast(sk, slow);
1da177e4
LT
573 break;
574 case SIOCATMARK:
575 answ = tp->urg_data && tp->urg_seq == tp->copied_seq;
576 break;
577 case SIOCOUTQ:
578 if (sk->sk_state == TCP_LISTEN)
579 return -EINVAL;
580
581 if ((1 << sk->sk_state) & (TCPF_SYN_SENT | TCPF_SYN_RECV))
582 answ = 0;
583 else
584 answ = tp->write_seq - tp->snd_una;
585 break;
2f4e1b39
MS
586 case SIOCOUTQNSD:
587 if (sk->sk_state == TCP_LISTEN)
588 return -EINVAL;
589
590 if ((1 << sk->sk_state) & (TCPF_SYN_SENT | TCPF_SYN_RECV))
591 answ = 0;
592 else
593 answ = tp->write_seq - tp->snd_nxt;
594 break;
1da177e4
LT
595 default:
596 return -ENOIOCTLCMD;
3ff50b79 597 }
1da177e4
LT
598
599 return put_user(answ, (int __user *)arg);
600}
4bc2f18b 601EXPORT_SYMBOL(tcp_ioctl);
1da177e4 602
1da177e4
LT
603static inline void tcp_mark_push(struct tcp_sock *tp, struct sk_buff *skb)
604{
4de075e0 605 TCP_SKB_CB(skb)->tcp_flags |= TCPHDR_PSH;
1da177e4
LT
606 tp->pushed_seq = tp->write_seq;
607}
608
a2a385d6 609static inline bool forced_push(const struct tcp_sock *tp)
1da177e4
LT
610{
611 return after(tp->write_seq, tp->pushed_seq + (tp->max_window >> 1));
612}
613
f4a775d1 614static void skb_entail(struct sock *sk, struct sk_buff *skb)
1da177e4 615{
9e412ba7 616 struct tcp_sock *tp = tcp_sk(sk);
352d4800
ACM
617 struct tcp_skb_cb *tcb = TCP_SKB_CB(skb);
618
619 skb->csum = 0;
620 tcb->seq = tcb->end_seq = tp->write_seq;
4de075e0 621 tcb->tcp_flags = TCPHDR_ACK;
352d4800 622 tcb->sacked = 0;
f4a775d1 623 __skb_header_release(skb);
fe067e8a 624 tcp_add_write_queue_tail(sk, skb);
3ab224be
HA
625 sk->sk_wmem_queued += skb->truesize;
626 sk_mem_charge(sk, skb->truesize);
89ebd197 627 if (tp->nonagle & TCP_NAGLE_PUSH)
e905a9ed 628 tp->nonagle &= ~TCP_NAGLE_PUSH;
1da177e4
LT
629}
630
afeca340 631static inline void tcp_mark_urg(struct tcp_sock *tp, int flags)
1da177e4 632{
33f5f57e 633 if (flags & MSG_OOB)
1da177e4 634 tp->snd_up = tp->write_seq;
1da177e4
LT
635}
636
f54b3111 637/* If a not yet filled skb is pushed, do not send it if
a181ceb5 638 * we have data packets in Qdisc or NIC queues :
f54b3111
ED
639 * Because TX completion will happen shortly, it gives a chance
640 * to coalesce future sendmsg() payload into this skb, without
641 * need for a timer, and with no latency trade off.
642 * As packets containing data payload have a bigger truesize
a181ceb5
ED
643 * than pure acks (dataless) packets, the last checks prevent
644 * autocorking if we only have an ACK in Qdisc/NIC queues,
645 * or if TX completion was delayed after we processed ACK packet.
f54b3111
ED
646 */
647static bool tcp_should_autocork(struct sock *sk, struct sk_buff *skb,
648 int size_goal)
1da177e4 649{
f54b3111
ED
650 return skb->len < size_goal &&
651 sysctl_tcp_autocorking &&
a181ceb5 652 skb != tcp_write_queue_head(sk) &&
f54b3111
ED
653 atomic_read(&sk->sk_wmem_alloc) > skb->truesize;
654}
655
656static void tcp_push(struct sock *sk, int flags, int mss_now,
657 int nonagle, int size_goal)
658{
659 struct tcp_sock *tp = tcp_sk(sk);
660 struct sk_buff *skb;
afeca340 661
f54b3111
ED
662 if (!tcp_send_head(sk))
663 return;
afeca340 664
f54b3111
ED
665 skb = tcp_write_queue_tail(sk);
666 if (!(flags & MSG_MORE) || forced_push(tp))
667 tcp_mark_push(tp, skb);
668
669 tcp_mark_urg(tp, flags);
670
671 if (tcp_should_autocork(sk, skb, size_goal)) {
672
673 /* avoid atomic op if TSQ_THROTTLED bit is already set */
674 if (!test_bit(TSQ_THROTTLED, &tp->tsq_flags)) {
675 NET_INC_STATS(sock_net(sk), LINUX_MIB_TCPAUTOCORKING);
676 set_bit(TSQ_THROTTLED, &tp->tsq_flags);
677 }
a181ceb5
ED
678 /* It is possible TX completion already happened
679 * before we set TSQ_THROTTLED.
680 */
681 if (atomic_read(&sk->sk_wmem_alloc) > skb->truesize)
682 return;
1da177e4 683 }
f54b3111
ED
684
685 if (flags & MSG_MORE)
686 nonagle = TCP_NAGLE_CORK;
687
688 __tcp_push_pending_frames(sk, mss_now, nonagle);
1da177e4
LT
689}
690
6ff7751d
AB
691static int tcp_splice_data_recv(read_descriptor_t *rd_desc, struct sk_buff *skb,
692 unsigned int offset, size_t len)
9c55e01c
JA
693{
694 struct tcp_splice_state *tss = rd_desc->arg.data;
33966dd0 695 int ret;
9c55e01c 696
9fa5fdf2
DM
697 ret = skb_splice_bits(skb, offset, tss->pipe, min(rd_desc->count, len),
698 tss->flags);
33966dd0
WT
699 if (ret > 0)
700 rd_desc->count -= ret;
701 return ret;
9c55e01c
JA
702}
703
704static int __tcp_splice_read(struct sock *sk, struct tcp_splice_state *tss)
705{
706 /* Store TCP splice context information in read_descriptor_t. */
707 read_descriptor_t rd_desc = {
708 .arg.data = tss,
33966dd0 709 .count = tss->len,
9c55e01c
JA
710 };
711
712 return tcp_read_sock(sk, &rd_desc, tcp_splice_data_recv);
713}
714
715/**
716 * tcp_splice_read - splice data from TCP socket to a pipe
717 * @sock: socket to splice from
718 * @ppos: position (not valid)
719 * @pipe: pipe to splice to
720 * @len: number of bytes to splice
721 * @flags: splice modifier flags
722 *
723 * Description:
724 * Will read pages from given socket and fill them into a pipe.
725 *
726 **/
727ssize_t tcp_splice_read(struct socket *sock, loff_t *ppos,
728 struct pipe_inode_info *pipe, size_t len,
729 unsigned int flags)
730{
731 struct sock *sk = sock->sk;
732 struct tcp_splice_state tss = {
733 .pipe = pipe,
734 .len = len,
735 .flags = flags,
736 };
737 long timeo;
738 ssize_t spliced;
739 int ret;
740
3a047bf8 741 sock_rps_record_flow(sk);
9c55e01c
JA
742 /*
743 * We can't seek on a socket input
744 */
745 if (unlikely(*ppos))
746 return -ESPIPE;
747
748 ret = spliced = 0;
749
750 lock_sock(sk);
751
42324c62 752 timeo = sock_rcvtimeo(sk, sock->file->f_flags & O_NONBLOCK);
9c55e01c
JA
753 while (tss.len) {
754 ret = __tcp_splice_read(sk, &tss);
755 if (ret < 0)
756 break;
757 else if (!ret) {
758 if (spliced)
759 break;
9c55e01c
JA
760 if (sock_flag(sk, SOCK_DONE))
761 break;
762 if (sk->sk_err) {
763 ret = sock_error(sk);
764 break;
765 }
766 if (sk->sk_shutdown & RCV_SHUTDOWN)
767 break;
768 if (sk->sk_state == TCP_CLOSE) {
769 /*
770 * This occurs when user tries to read
771 * from never connected socket.
772 */
773 if (!sock_flag(sk, SOCK_DONE))
774 ret = -ENOTCONN;
775 break;
776 }
777 if (!timeo) {
778 ret = -EAGAIN;
779 break;
780 }
781 sk_wait_data(sk, &timeo);
782 if (signal_pending(current)) {
783 ret = sock_intr_errno(timeo);
784 break;
785 }
786 continue;
787 }
788 tss.len -= ret;
789 spliced += ret;
790
33966dd0
WT
791 if (!timeo)
792 break;
9c55e01c
JA
793 release_sock(sk);
794 lock_sock(sk);
795
796 if (sk->sk_err || sk->sk_state == TCP_CLOSE ||
33966dd0 797 (sk->sk_shutdown & RCV_SHUTDOWN) ||
9c55e01c
JA
798 signal_pending(current))
799 break;
800 }
801
802 release_sock(sk);
803
804 if (spliced)
805 return spliced;
806
807 return ret;
808}
4bc2f18b 809EXPORT_SYMBOL(tcp_splice_read);
9c55e01c 810
df97c708 811struct sk_buff *sk_stream_alloc_skb(struct sock *sk, int size, gfp_t gfp)
f561d0f2
PE
812{
813 struct sk_buff *skb;
814
815 /* The TCP header must be at least 32-bit aligned. */
816 size = ALIGN(size, 4);
817
8e4d980a
ED
818 if (unlikely(tcp_under_memory_pressure(sk)))
819 sk_mem_reclaim_partial(sk);
820
f561d0f2 821 skb = alloc_skb_fclone(size + sk->sk_prot->max_header, gfp);
8e4d980a
ED
822 if (likely(skb)) {
823 bool mem_schedule;
824
825 if (skb_queue_len(&sk->sk_write_queue) == 0) {
826 mem_schedule = true;
827 sk_forced_mem_schedule(sk, skb->truesize);
828 } else {
829 mem_schedule = sk_wmem_schedule(sk, skb->truesize);
830 }
831 if (likely(mem_schedule)) {
a21d4572 832 skb_reserve(skb, sk->sk_prot->max_header);
f561d0f2
PE
833 /*
834 * Make sure that we have exactly size bytes
835 * available to the caller, no more, no less.
836 */
16fad69c 837 skb->reserved_tailroom = skb->end - skb->tail - size;
f561d0f2
PE
838 return skb;
839 }
840 __kfree_skb(skb);
841 } else {
5c52ba17 842 sk->sk_prot->enter_memory_pressure(sk);
f561d0f2
PE
843 sk_stream_moderate_sndbuf(sk);
844 }
845 return NULL;
846}
847
0c54b85f
IJ
848static unsigned int tcp_xmit_size_goal(struct sock *sk, u32 mss_now,
849 int large_allowed)
850{
851 struct tcp_sock *tp = tcp_sk(sk);
6c09fa09 852 u32 new_size_goal, size_goal;
605ad7f1
ED
853
854 if (!large_allowed || !sk_can_gso(sk))
855 return mss_now;
856
6c09fa09
ED
857 /* Note : tcp_tso_autosize() will eventually split this later */
858 new_size_goal = sk->sk_gso_max_size - 1 - MAX_TCP_HEADER;
605ad7f1
ED
859 new_size_goal = tcp_bound_to_half_wnd(tp, new_size_goal);
860
861 /* We try hard to avoid divides here */
862 size_goal = tp->gso_segs * mss_now;
863 if (unlikely(new_size_goal < size_goal ||
864 new_size_goal >= size_goal + mss_now)) {
865 tp->gso_segs = min_t(u16, new_size_goal / mss_now,
866 sk->sk_gso_max_segs);
867 size_goal = tp->gso_segs * mss_now;
0c54b85f
IJ
868 }
869
605ad7f1 870 return max(size_goal, mss_now);
0c54b85f
IJ
871}
872
873static int tcp_send_mss(struct sock *sk, int *size_goal, int flags)
874{
875 int mss_now;
876
877 mss_now = tcp_current_mss(sk);
878 *size_goal = tcp_xmit_size_goal(sk, mss_now, !(flags & MSG_OOB));
879
880 return mss_now;
881}
882
64022d0b
ED
883static ssize_t do_tcp_sendpages(struct sock *sk, struct page *page, int offset,
884 size_t size, int flags)
1da177e4
LT
885{
886 struct tcp_sock *tp = tcp_sk(sk);
c1b4a7e6 887 int mss_now, size_goal;
1da177e4
LT
888 int err;
889 ssize_t copied;
890 long timeo = sock_sndtimeo(sk, flags & MSG_DONTWAIT);
891
8336886f
JC
892 /* Wait for a connection to finish. One exception is TCP Fast Open
893 * (passive side) where data is allowed to be sent before a connection
894 * is fully established.
895 */
896 if (((1 << sk->sk_state) & ~(TCPF_ESTABLISHED | TCPF_CLOSE_WAIT)) &&
897 !tcp_passive_fastopen(sk)) {
1da177e4
LT
898 if ((err = sk_stream_wait_connect(sk, &timeo)) != 0)
899 goto out_err;
8336886f 900 }
1da177e4
LT
901
902 clear_bit(SOCK_ASYNC_NOSPACE, &sk->sk_socket->flags);
903
0c54b85f 904 mss_now = tcp_send_mss(sk, &size_goal, flags);
1da177e4
LT
905 copied = 0;
906
907 err = -EPIPE;
908 if (sk->sk_err || (sk->sk_shutdown & SEND_SHUTDOWN))
0d6a775e 909 goto out_err;
1da177e4 910
64022d0b 911 while (size > 0) {
fe067e8a 912 struct sk_buff *skb = tcp_write_queue_tail(sk);
38ba0a65 913 int copy, i;
38ba0a65 914 bool can_coalesce;
1da177e4 915
fe067e8a 916 if (!tcp_send_head(sk) || (copy = size_goal - skb->len) <= 0) {
1da177e4
LT
917new_segment:
918 if (!sk_stream_memory_free(sk))
919 goto wait_for_sndbuf;
920
df97c708 921 skb = sk_stream_alloc_skb(sk, 0, sk->sk_allocation);
1da177e4
LT
922 if (!skb)
923 goto wait_for_memory;
924
9e412ba7 925 skb_entail(sk, skb);
c1b4a7e6 926 copy = size_goal;
1da177e4
LT
927 }
928
929 if (copy > size)
930 copy = size;
931
932 i = skb_shinfo(skb)->nr_frags;
933 can_coalesce = skb_can_coalesce(skb, i, page, offset);
934 if (!can_coalesce && i >= MAX_SKB_FRAGS) {
935 tcp_mark_push(tp, skb);
936 goto new_segment;
937 }
3ab224be 938 if (!sk_wmem_schedule(sk, copy))
1da177e4 939 goto wait_for_memory;
e905a9ed 940
1da177e4 941 if (can_coalesce) {
9e903e08 942 skb_frag_size_add(&skb_shinfo(skb)->frags[i - 1], copy);
1da177e4
LT
943 } else {
944 get_page(page);
945 skb_fill_page_desc(skb, i, page, offset, copy);
946 }
c9af6db4 947 skb_shinfo(skb)->tx_flags |= SKBTX_SHARED_FRAG;
cef401de 948
1da177e4
LT
949 skb->len += copy;
950 skb->data_len += copy;
951 skb->truesize += copy;
952 sk->sk_wmem_queued += copy;
3ab224be 953 sk_mem_charge(sk, copy);
84fa7933 954 skb->ip_summed = CHECKSUM_PARTIAL;
1da177e4
LT
955 tp->write_seq += copy;
956 TCP_SKB_CB(skb)->end_seq += copy;
cd7d8498 957 tcp_skb_pcount_set(skb, 0);
1da177e4
LT
958
959 if (!copied)
4de075e0 960 TCP_SKB_CB(skb)->tcp_flags &= ~TCPHDR_PSH;
1da177e4
LT
961
962 copied += copy;
64022d0b 963 offset += copy;
4ed2d765
WB
964 if (!(size -= copy)) {
965 tcp_tx_timestamp(sk, skb);
1da177e4 966 goto out;
4ed2d765 967 }
1da177e4 968
69d15067 969 if (skb->len < size_goal || (flags & MSG_OOB))
1da177e4
LT
970 continue;
971
972 if (forced_push(tp)) {
973 tcp_mark_push(tp, skb);
9e412ba7 974 __tcp_push_pending_frames(sk, mss_now, TCP_NAGLE_PUSH);
fe067e8a 975 } else if (skb == tcp_send_head(sk))
1da177e4
LT
976 tcp_push_one(sk, mss_now);
977 continue;
978
979wait_for_sndbuf:
980 set_bit(SOCK_NOSPACE, &sk->sk_socket->flags);
981wait_for_memory:
f54b3111
ED
982 tcp_push(sk, flags & ~MSG_MORE, mss_now,
983 TCP_NAGLE_PUSH, size_goal);
1da177e4
LT
984
985 if ((err = sk_stream_wait_memory(sk, &timeo)) != 0)
986 goto do_error;
987
0c54b85f 988 mss_now = tcp_send_mss(sk, &size_goal, flags);
1da177e4
LT
989 }
990
991out:
35f9c09f 992 if (copied && !(flags & MSG_SENDPAGE_NOTLAST))
f54b3111 993 tcp_push(sk, flags, mss_now, tp->nonagle, size_goal);
1da177e4
LT
994 return copied;
995
996do_error:
997 if (copied)
998 goto out;
999out_err:
1000 return sk_stream_error(sk, flags, err);
1001}
1002
7ba42910
CG
1003int tcp_sendpage(struct sock *sk, struct page *page, int offset,
1004 size_t size, int flags)
1da177e4
LT
1005{
1006 ssize_t res;
1da177e4 1007
1da177e4 1008 if (!(sk->sk_route_caps & NETIF_F_SG) ||
8648b305 1009 !(sk->sk_route_caps & NETIF_F_ALL_CSUM))
7ba42910
CG
1010 return sock_no_sendpage(sk->sk_socket, page, offset, size,
1011 flags);
1da177e4 1012
1da177e4 1013 lock_sock(sk);
64022d0b 1014 res = do_tcp_sendpages(sk, page, offset, size, flags);
1da177e4
LT
1015 release_sock(sk);
1016 return res;
1017}
4bc2f18b 1018EXPORT_SYMBOL(tcp_sendpage);
1da177e4 1019
690e99c4 1020static inline int select_size(const struct sock *sk, bool sg)
1da177e4 1021{
cf533ea5 1022 const struct tcp_sock *tp = tcp_sk(sk);
c1b4a7e6 1023 int tmp = tp->mss_cache;
1da177e4 1024
def87cf4 1025 if (sg) {
f07d960d
ED
1026 if (sk_can_gso(sk)) {
1027 /* Small frames wont use a full page:
1028 * Payload will immediately follow tcp header.
1029 */
1030 tmp = SKB_WITH_OVERHEAD(2048 - MAX_TCP_HEADER);
1031 } else {
b4e26f5e
DM
1032 int pgbreak = SKB_MAX_HEAD(MAX_TCP_HEADER);
1033
1034 if (tmp >= pgbreak &&
1035 tmp <= pgbreak + (MAX_SKB_FRAGS - 1) * PAGE_SIZE)
1036 tmp = pgbreak;
1037 }
1038 }
1da177e4 1039
1da177e4
LT
1040 return tmp;
1041}
1042
cf60af03
YC
1043void tcp_free_fastopen_req(struct tcp_sock *tp)
1044{
00db4124 1045 if (tp->fastopen_req) {
cf60af03
YC
1046 kfree(tp->fastopen_req);
1047 tp->fastopen_req = NULL;
1048 }
1049}
1050
f5ddcbbb
ED
1051static int tcp_sendmsg_fastopen(struct sock *sk, struct msghdr *msg,
1052 int *copied, size_t size)
cf60af03
YC
1053{
1054 struct tcp_sock *tp = tcp_sk(sk);
1055 int err, flags;
1056
1057 if (!(sysctl_tcp_fastopen & TFO_CLIENT_ENABLE))
1058 return -EOPNOTSUPP;
00db4124 1059 if (tp->fastopen_req)
cf60af03
YC
1060 return -EALREADY; /* Another Fast Open is in progress */
1061
1062 tp->fastopen_req = kzalloc(sizeof(struct tcp_fastopen_request),
1063 sk->sk_allocation);
51456b29 1064 if (unlikely(!tp->fastopen_req))
cf60af03
YC
1065 return -ENOBUFS;
1066 tp->fastopen_req->data = msg;
f5ddcbbb 1067 tp->fastopen_req->size = size;
cf60af03
YC
1068
1069 flags = (msg->msg_flags & MSG_DONTWAIT) ? O_NONBLOCK : 0;
1070 err = __inet_stream_connect(sk->sk_socket, msg->msg_name,
1071 msg->msg_namelen, flags);
f5ddcbbb 1072 *copied = tp->fastopen_req->copied;
cf60af03
YC
1073 tcp_free_fastopen_req(tp);
1074 return err;
1075}
1076
1b784140 1077int tcp_sendmsg(struct sock *sk, struct msghdr *msg, size_t size)
1da177e4 1078{
1da177e4
LT
1079 struct tcp_sock *tp = tcp_sk(sk);
1080 struct sk_buff *skb;
57be5bda
AV
1081 int flags, err, copied = 0;
1082 int mss_now = 0, size_goal, copied_syn = 0;
690e99c4 1083 bool sg;
1da177e4
LT
1084 long timeo;
1085
1086 lock_sock(sk);
1da177e4
LT
1087
1088 flags = msg->msg_flags;
cf60af03 1089 if (flags & MSG_FASTOPEN) {
f5ddcbbb 1090 err = tcp_sendmsg_fastopen(sk, msg, &copied_syn, size);
cf60af03
YC
1091 if (err == -EINPROGRESS && copied_syn > 0)
1092 goto out;
1093 else if (err)
1094 goto out_err;
cf60af03
YC
1095 }
1096
1da177e4
LT
1097 timeo = sock_sndtimeo(sk, flags & MSG_DONTWAIT);
1098
8336886f
JC
1099 /* Wait for a connection to finish. One exception is TCP Fast Open
1100 * (passive side) where data is allowed to be sent before a connection
1101 * is fully established.
1102 */
1103 if (((1 << sk->sk_state) & ~(TCPF_ESTABLISHED | TCPF_CLOSE_WAIT)) &&
1104 !tcp_passive_fastopen(sk)) {
1da177e4 1105 if ((err = sk_stream_wait_connect(sk, &timeo)) != 0)
cf60af03 1106 goto do_error;
8336886f 1107 }
1da177e4 1108
c0e88ff0
PE
1109 if (unlikely(tp->repair)) {
1110 if (tp->repair_queue == TCP_RECV_QUEUE) {
1111 copied = tcp_send_rcvq(sk, msg, size);
5924f17a 1112 goto out_nopush;
c0e88ff0
PE
1113 }
1114
1115 err = -EINVAL;
1116 if (tp->repair_queue == TCP_NO_QUEUE)
1117 goto out_err;
1118
1119 /* 'common' sending to sendq */
1120 }
1121
1da177e4
LT
1122 /* This should be in poll */
1123 clear_bit(SOCK_ASYNC_NOSPACE, &sk->sk_socket->flags);
1124
0c54b85f 1125 mss_now = tcp_send_mss(sk, &size_goal, flags);
1da177e4
LT
1126
1127 /* Ok commence sending. */
1da177e4
LT
1128 copied = 0;
1129
1130 err = -EPIPE;
1131 if (sk->sk_err || (sk->sk_shutdown & SEND_SHUTDOWN))
0d6a775e 1132 goto out_err;
1da177e4 1133
690e99c4 1134 sg = !!(sk->sk_route_caps & NETIF_F_SG);
def87cf4 1135
01e97e65 1136 while (msg_data_left(msg)) {
57be5bda
AV
1137 int copy = 0;
1138 int max = size_goal;
1da177e4 1139
57be5bda
AV
1140 skb = tcp_write_queue_tail(sk);
1141 if (tcp_send_head(sk)) {
1142 if (skb->ip_summed == CHECKSUM_NONE)
1143 max = mss_now;
1144 copy = max - skb->len;
cf60af03 1145 }
1da177e4 1146
57be5bda 1147 if (copy <= 0) {
1da177e4 1148new_segment:
57be5bda
AV
1149 /* Allocate new segment. If the interface is SG,
1150 * allocate skb fitting to single page.
1151 */
1152 if (!sk_stream_memory_free(sk))
1153 goto wait_for_sndbuf;
1da177e4 1154
57be5bda
AV
1155 skb = sk_stream_alloc_skb(sk,
1156 select_size(sk, sg),
1157 sk->sk_allocation);
1158 if (!skb)
1159 goto wait_for_memory;
1da177e4 1160
57be5bda
AV
1161 /*
1162 * Check whether we can use HW checksum.
1163 */
1164 if (sk->sk_route_caps & NETIF_F_ALL_CSUM)
1165 skb->ip_summed = CHECKSUM_PARTIAL;
1da177e4 1166
57be5bda
AV
1167 skb_entail(sk, skb);
1168 copy = size_goal;
1169 max = size_goal;
9d186cac 1170
57be5bda
AV
1171 /* All packets are restored as if they have
1172 * already been sent. skb_mstamp isn't set to
1173 * avoid wrong rtt estimation.
1174 */
1175 if (tp->repair)
1176 TCP_SKB_CB(skb)->sacked |= TCPCB_REPAIRED;
1177 }
1da177e4 1178
57be5bda 1179 /* Try to append data to the end of skb. */
01e97e65
AV
1180 if (copy > msg_data_left(msg))
1181 copy = msg_data_left(msg);
57be5bda
AV
1182
1183 /* Where to copy to? */
1184 if (skb_availroom(skb) > 0) {
1185 /* We have some space in skb head. Superb! */
1186 copy = min_t(int, copy, skb_availroom(skb));
1187 err = skb_add_data_nocache(sk, skb, &msg->msg_iter, copy);
1188 if (err)
1189 goto do_fault;
1190 } else {
1191 bool merge = true;
1192 int i = skb_shinfo(skb)->nr_frags;
1193 struct page_frag *pfrag = sk_page_frag(sk);
1194
1195 if (!sk_page_frag_refill(sk, pfrag))
1196 goto wait_for_memory;
ef015786 1197
57be5bda
AV
1198 if (!skb_can_coalesce(skb, i, pfrag->page,
1199 pfrag->offset)) {
1200 if (i == MAX_SKB_FRAGS || !sg) {
1201 tcp_mark_push(tp, skb);
1202 goto new_segment;
1da177e4 1203 }
57be5bda 1204 merge = false;
1da177e4
LT
1205 }
1206
57be5bda
AV
1207 copy = min_t(int, copy, pfrag->size - pfrag->offset);
1208
1209 if (!sk_wmem_schedule(sk, copy))
1210 goto wait_for_memory;
1da177e4 1211
57be5bda
AV
1212 err = skb_copy_to_page_nocache(sk, &msg->msg_iter, skb,
1213 pfrag->page,
1214 pfrag->offset,
1215 copy);
1216 if (err)
1217 goto do_error;
1da177e4 1218
57be5bda
AV
1219 /* Update the skb. */
1220 if (merge) {
1221 skb_frag_size_add(&skb_shinfo(skb)->frags[i - 1], copy);
1222 } else {
1223 skb_fill_page_desc(skb, i, pfrag->page,
1224 pfrag->offset, copy);
1225 get_page(pfrag->page);
4ed2d765 1226 }
57be5bda
AV
1227 pfrag->offset += copy;
1228 }
1229
1230 if (!copied)
1231 TCP_SKB_CB(skb)->tcp_flags &= ~TCPHDR_PSH;
1232
1233 tp->write_seq += copy;
1234 TCP_SKB_CB(skb)->end_seq += copy;
1235 tcp_skb_pcount_set(skb, 0);
1da177e4 1236
57be5bda 1237 copied += copy;
01e97e65 1238 if (!msg_data_left(msg)) {
57be5bda
AV
1239 tcp_tx_timestamp(sk, skb);
1240 goto out;
1241 }
1da177e4 1242
57be5bda 1243 if (skb->len < max || (flags & MSG_OOB) || unlikely(tp->repair))
1da177e4
LT
1244 continue;
1245
57be5bda
AV
1246 if (forced_push(tp)) {
1247 tcp_mark_push(tp, skb);
1248 __tcp_push_pending_frames(sk, mss_now, TCP_NAGLE_PUSH);
1249 } else if (skb == tcp_send_head(sk))
1250 tcp_push_one(sk, mss_now);
1251 continue;
1252
1da177e4 1253wait_for_sndbuf:
57be5bda 1254 set_bit(SOCK_NOSPACE, &sk->sk_socket->flags);
1da177e4 1255wait_for_memory:
57be5bda
AV
1256 if (copied)
1257 tcp_push(sk, flags & ~MSG_MORE, mss_now,
1258 TCP_NAGLE_PUSH, size_goal);
1da177e4 1259
57be5bda
AV
1260 if ((err = sk_stream_wait_memory(sk, &timeo)) != 0)
1261 goto do_error;
1da177e4 1262
57be5bda 1263 mss_now = tcp_send_mss(sk, &size_goal, flags);
1da177e4
LT
1264 }
1265
1266out:
ec342325 1267 if (copied)
f54b3111 1268 tcp_push(sk, flags, mss_now, tp->nonagle, size_goal);
5924f17a 1269out_nopush:
1da177e4 1270 release_sock(sk);
cf60af03 1271 return copied + copied_syn;
1da177e4
LT
1272
1273do_fault:
1274 if (!skb->len) {
fe067e8a
DM
1275 tcp_unlink_write_queue(skb, sk);
1276 /* It is the one place in all of TCP, except connection
1277 * reset, where we can be unlinking the send_head.
1278 */
1279 tcp_check_send_head(sk, skb);
3ab224be 1280 sk_wmem_free_skb(sk, skb);
1da177e4
LT
1281 }
1282
1283do_error:
cf60af03 1284 if (copied + copied_syn)
1da177e4
LT
1285 goto out;
1286out_err:
1287 err = sk_stream_error(sk, flags, err);
1da177e4
LT
1288 release_sock(sk);
1289 return err;
1290}
4bc2f18b 1291EXPORT_SYMBOL(tcp_sendmsg);
1da177e4
LT
1292
1293/*
1294 * Handle reading urgent data. BSD has very simple semantics for
1295 * this, no blocking and very strange errors 8)
1296 */
1297
377f0a08 1298static int tcp_recv_urg(struct sock *sk, struct msghdr *msg, int len, int flags)
1da177e4
LT
1299{
1300 struct tcp_sock *tp = tcp_sk(sk);
1301
1302 /* No URG data to read. */
1303 if (sock_flag(sk, SOCK_URGINLINE) || !tp->urg_data ||
1304 tp->urg_data == TCP_URG_READ)
1305 return -EINVAL; /* Yes this is right ! */
1306
1307 if (sk->sk_state == TCP_CLOSE && !sock_flag(sk, SOCK_DONE))
1308 return -ENOTCONN;
1309
1310 if (tp->urg_data & TCP_URG_VALID) {
1311 int err = 0;
1312 char c = tp->urg_data;
1313
1314 if (!(flags & MSG_PEEK))
1315 tp->urg_data = TCP_URG_READ;
1316
1317 /* Read urgent data. */
1318 msg->msg_flags |= MSG_OOB;
1319
1320 if (len > 0) {
1321 if (!(flags & MSG_TRUNC))
7eab8d9e 1322 err = memcpy_to_msg(msg, &c, 1);
1da177e4
LT
1323 len = 1;
1324 } else
1325 msg->msg_flags |= MSG_TRUNC;
1326
1327 return err ? -EFAULT : len;
1328 }
1329
1330 if (sk->sk_state == TCP_CLOSE || (sk->sk_shutdown & RCV_SHUTDOWN))
1331 return 0;
1332
1333 /* Fixed the recv(..., MSG_OOB) behaviour. BSD docs and
1334 * the available implementations agree in this case:
1335 * this call should never block, independent of the
1336 * blocking state of the socket.
1337 * Mike <pall@rz.uni-karlsruhe.de>
1338 */
1339 return -EAGAIN;
1340}
1341
c0e88ff0
PE
1342static int tcp_peek_sndq(struct sock *sk, struct msghdr *msg, int len)
1343{
1344 struct sk_buff *skb;
1345 int copied = 0, err = 0;
1346
1347 /* XXX -- need to support SO_PEEK_OFF */
1348
1349 skb_queue_walk(&sk->sk_write_queue, skb) {
51f3d02b 1350 err = skb_copy_datagram_msg(skb, 0, msg, skb->len);
c0e88ff0
PE
1351 if (err)
1352 break;
1353
1354 copied += skb->len;
1355 }
1356
1357 return err ?: copied;
1358}
1359
1da177e4
LT
1360/* Clean up the receive buffer for full frames taken by the user,
1361 * then send an ACK if necessary. COPIED is the number of bytes
1362 * tcp_recvmsg has given to the user so far, it speeds up the
1363 * calculation of whether or not we must ACK for the sake of
1364 * a window update.
1365 */
3f334078 1366static void tcp_cleanup_rbuf(struct sock *sk, int copied)
1da177e4
LT
1367{
1368 struct tcp_sock *tp = tcp_sk(sk);
a2a385d6 1369 bool time_to_ack = false;
1da177e4 1370
1da177e4
LT
1371 struct sk_buff *skb = skb_peek(&sk->sk_receive_queue);
1372
d792c100 1373 WARN(skb && !before(tp->copied_seq, TCP_SKB_CB(skb)->end_seq),
2af6fd8b 1374 "cleanup rbuf bug: copied %X seq %X rcvnxt %X\n",
d792c100 1375 tp->copied_seq, TCP_SKB_CB(skb)->end_seq, tp->rcv_nxt);
1da177e4 1376
463c84b9
ACM
1377 if (inet_csk_ack_scheduled(sk)) {
1378 const struct inet_connection_sock *icsk = inet_csk(sk);
1da177e4
LT
1379 /* Delayed ACKs frequently hit locked sockets during bulk
1380 * receive. */
463c84b9 1381 if (icsk->icsk_ack.blocked ||
1da177e4 1382 /* Once-per-two-segments ACK was not sent by tcp_input.c */
463c84b9 1383 tp->rcv_nxt - tp->rcv_wup > icsk->icsk_ack.rcv_mss ||
1da177e4
LT
1384 /*
1385 * If this read emptied read buffer, we send ACK, if
1386 * connection is not bidirectional, user drained
1387 * receive buffer and there was a small segment
1388 * in queue.
1389 */
1ef9696c
AK
1390 (copied > 0 &&
1391 ((icsk->icsk_ack.pending & ICSK_ACK_PUSHED2) ||
1392 ((icsk->icsk_ack.pending & ICSK_ACK_PUSHED) &&
1393 !icsk->icsk_ack.pingpong)) &&
1394 !atomic_read(&sk->sk_rmem_alloc)))
a2a385d6 1395 time_to_ack = true;
1da177e4
LT
1396 }
1397
1398 /* We send an ACK if we can now advertise a non-zero window
1399 * which has been raised "significantly".
1400 *
1401 * Even if window raised up to infinity, do not send window open ACK
1402 * in states, where we will not receive more. It is useless.
1403 */
1404 if (copied > 0 && !time_to_ack && !(sk->sk_shutdown & RCV_SHUTDOWN)) {
1405 __u32 rcv_window_now = tcp_receive_window(tp);
1406
1407 /* Optimize, __tcp_select_window() is not cheap. */
1408 if (2*rcv_window_now <= tp->window_clamp) {
1409 __u32 new_window = __tcp_select_window(sk);
1410
1411 /* Send ACK now, if this read freed lots of space
1412 * in our buffer. Certainly, new_window is new window.
1413 * We can advertise it now, if it is not less than current one.
1414 * "Lots" means "at least twice" here.
1415 */
1416 if (new_window && new_window >= 2 * rcv_window_now)
a2a385d6 1417 time_to_ack = true;
1da177e4
LT
1418 }
1419 }
1420 if (time_to_ack)
1421 tcp_send_ack(sk);
1422}
1423
1424static void tcp_prequeue_process(struct sock *sk)
1425{
1426 struct sk_buff *skb;
1427 struct tcp_sock *tp = tcp_sk(sk);
1428
6f67c817 1429 NET_INC_STATS_USER(sock_net(sk), LINUX_MIB_TCPPREQUEUED);
1da177e4
LT
1430
1431 /* RX process wants to run with disabled BHs, though it is not
1432 * necessary */
1433 local_bh_disable();
1434 while ((skb = __skb_dequeue(&tp->ucopy.prequeue)) != NULL)
c57943a1 1435 sk_backlog_rcv(sk, skb);
1da177e4
LT
1436 local_bh_enable();
1437
1438 /* Clear memory counter. */
1439 tp->ucopy.memory = 0;
1440}
1441
f26845b4 1442static struct sk_buff *tcp_recv_skb(struct sock *sk, u32 seq, u32 *off)
1da177e4
LT
1443{
1444 struct sk_buff *skb;
1445 u32 offset;
1446
f26845b4 1447 while ((skb = skb_peek(&sk->sk_receive_queue)) != NULL) {
1da177e4 1448 offset = seq - TCP_SKB_CB(skb)->seq;
e11ecddf 1449 if (TCP_SKB_CB(skb)->tcp_flags & TCPHDR_SYN)
1da177e4 1450 offset--;
e11ecddf 1451 if (offset < skb->len || (TCP_SKB_CB(skb)->tcp_flags & TCPHDR_FIN)) {
1da177e4
LT
1452 *off = offset;
1453 return skb;
1454 }
f26845b4
ED
1455 /* This looks weird, but this can happen if TCP collapsing
1456 * splitted a fat GRO packet, while we released socket lock
1457 * in skb_splice_bits()
1458 */
7bced397 1459 sk_eat_skb(sk, skb);
1da177e4
LT
1460 }
1461 return NULL;
1462}
1463
1464/*
1465 * This routine provides an alternative to tcp_recvmsg() for routines
1466 * that would like to handle copying from skbuffs directly in 'sendfile'
1467 * fashion.
1468 * Note:
1469 * - It is assumed that the socket was locked by the caller.
1470 * - The routine does not block.
1471 * - At present, there is no support for reading OOB data
1472 * or for 'peeking' the socket using this routine
1473 * (although both would be easy to implement).
1474 */
1475int tcp_read_sock(struct sock *sk, read_descriptor_t *desc,
1476 sk_read_actor_t recv_actor)
1477{
1478 struct sk_buff *skb;
1479 struct tcp_sock *tp = tcp_sk(sk);
1480 u32 seq = tp->copied_seq;
1481 u32 offset;
1482 int copied = 0;
1483
1484 if (sk->sk_state == TCP_LISTEN)
1485 return -ENOTCONN;
1486 while ((skb = tcp_recv_skb(sk, seq, &offset)) != NULL) {
1487 if (offset < skb->len) {
374e7b59
OP
1488 int used;
1489 size_t len;
1da177e4
LT
1490
1491 len = skb->len - offset;
1492 /* Stop reading if we hit a patch of urgent data */
1493 if (tp->urg_data) {
1494 u32 urg_offset = tp->urg_seq - seq;
1495 if (urg_offset < len)
1496 len = urg_offset;
1497 if (!len)
1498 break;
1499 }
1500 used = recv_actor(desc, skb, offset, len);
ff905b1e 1501 if (used <= 0) {
ddb61a57
JA
1502 if (!copied)
1503 copied = used;
1504 break;
1505 } else if (used <= len) {
1da177e4
LT
1506 seq += used;
1507 copied += used;
1508 offset += used;
1509 }
02275a2e 1510 /* If recv_actor drops the lock (e.g. TCP splice
293ad604
OP
1511 * receive) the skb pointer might be invalid when
1512 * getting here: tcp_collapse might have deleted it
1513 * while aggregating skbs from the socket queue.
1514 */
02275a2e
WT
1515 skb = tcp_recv_skb(sk, seq - 1, &offset);
1516 if (!skb)
1da177e4 1517 break;
02275a2e
WT
1518 /* TCP coalescing might have appended data to the skb.
1519 * Try to splice more frags
1520 */
1521 if (offset + 1 != skb->len)
1522 continue;
1da177e4 1523 }
e11ecddf 1524 if (TCP_SKB_CB(skb)->tcp_flags & TCPHDR_FIN) {
7bced397 1525 sk_eat_skb(sk, skb);
1da177e4
LT
1526 ++seq;
1527 break;
1528 }
7bced397 1529 sk_eat_skb(sk, skb);
1da177e4
LT
1530 if (!desc->count)
1531 break;
baff42ab 1532 tp->copied_seq = seq;
1da177e4
LT
1533 }
1534 tp->copied_seq = seq;
1535
1536 tcp_rcv_space_adjust(sk);
1537
1538 /* Clean up data we have read: This will do ACK frames. */
f26845b4
ED
1539 if (copied > 0) {
1540 tcp_recv_skb(sk, seq, &offset);
0e4b4992 1541 tcp_cleanup_rbuf(sk, copied);
f26845b4 1542 }
1da177e4
LT
1543 return copied;
1544}
4bc2f18b 1545EXPORT_SYMBOL(tcp_read_sock);
1da177e4
LT
1546
1547/*
1548 * This routine copies from a sock struct into the user buffer.
1549 *
1550 * Technical note: in 2.3 we work on _locked_ socket, so that
1551 * tricks with *seq access order and skb->users are not required.
1552 * Probably, code can be easily improved even more.
1553 */
1554
1b784140
YX
1555int tcp_recvmsg(struct sock *sk, struct msghdr *msg, size_t len, int nonblock,
1556 int flags, int *addr_len)
1da177e4
LT
1557{
1558 struct tcp_sock *tp = tcp_sk(sk);
1559 int copied = 0;
1560 u32 peek_seq;
1561 u32 *seq;
1562 unsigned long used;
1563 int err;
1564 int target; /* Read at least this many bytes */
1565 long timeo;
1566 struct task_struct *user_recv = NULL;
2b1244a4 1567 struct sk_buff *skb;
77527313 1568 u32 urg_hole = 0;
1da177e4 1569
4ed2d765 1570 if (unlikely(flags & MSG_ERRQUEUE))
f4713a3d 1571 return inet_recv_error(sk, msg, len, addr_len);
4ed2d765 1572
cbf55001
ET
1573 if (sk_can_busy_loop(sk) && skb_queue_empty(&sk->sk_receive_queue) &&
1574 (sk->sk_state == TCP_ESTABLISHED))
1575 sk_busy_loop(sk, nonblock);
d30e383b 1576
1da177e4
LT
1577 lock_sock(sk);
1578
1da177e4
LT
1579 err = -ENOTCONN;
1580 if (sk->sk_state == TCP_LISTEN)
1581 goto out;
1582
1583 timeo = sock_rcvtimeo(sk, nonblock);
1584
1585 /* Urgent data needs to be handled specially. */
1586 if (flags & MSG_OOB)
1587 goto recv_urg;
1588
c0e88ff0
PE
1589 if (unlikely(tp->repair)) {
1590 err = -EPERM;
1591 if (!(flags & MSG_PEEK))
1592 goto out;
1593
1594 if (tp->repair_queue == TCP_SEND_QUEUE)
1595 goto recv_sndq;
1596
1597 err = -EINVAL;
1598 if (tp->repair_queue == TCP_NO_QUEUE)
1599 goto out;
1600
1601 /* 'common' recv queue MSG_PEEK-ing */
1602 }
1603
1da177e4
LT
1604 seq = &tp->copied_seq;
1605 if (flags & MSG_PEEK) {
1606 peek_seq = tp->copied_seq;
1607 seq = &peek_seq;
1608 }
1609
1610 target = sock_rcvlowat(sk, flags & MSG_WAITALL, len);
1611
1612 do {
1da177e4
LT
1613 u32 offset;
1614
1615 /* Are we at urgent data? Stop if we have read anything or have SIGURG pending. */
1616 if (tp->urg_data && tp->urg_seq == *seq) {
1617 if (copied)
1618 break;
1619 if (signal_pending(current)) {
1620 copied = timeo ? sock_intr_errno(timeo) : -EAGAIN;
1621 break;
1622 }
1623 }
1624
1625 /* Next get a buffer. */
1626
91521944 1627 skb_queue_walk(&sk->sk_receive_queue, skb) {
1da177e4
LT
1628 /* Now that we have two receive queues this
1629 * shouldn't happen.
1630 */
d792c100 1631 if (WARN(before(*seq, TCP_SKB_CB(skb)->seq),
2af6fd8b
JP
1632 "recvmsg bug: copied %X seq %X rcvnxt %X fl %X\n",
1633 *seq, TCP_SKB_CB(skb)->seq, tp->rcv_nxt,
1634 flags))
1da177e4 1635 break;
d792c100 1636
1da177e4 1637 offset = *seq - TCP_SKB_CB(skb)->seq;
e11ecddf 1638 if (TCP_SKB_CB(skb)->tcp_flags & TCPHDR_SYN)
1da177e4
LT
1639 offset--;
1640 if (offset < skb->len)
1641 goto found_ok_skb;
e11ecddf 1642 if (TCP_SKB_CB(skb)->tcp_flags & TCPHDR_FIN)
1da177e4 1643 goto found_fin_ok;
2af6fd8b
JP
1644 WARN(!(flags & MSG_PEEK),
1645 "recvmsg bug 2: copied %X seq %X rcvnxt %X fl %X\n",
1646 *seq, TCP_SKB_CB(skb)->seq, tp->rcv_nxt, flags);
91521944 1647 }
1da177e4
LT
1648
1649 /* Well, if we have backlog, try to process it now yet. */
1650
1651 if (copied >= target && !sk->sk_backlog.tail)
1652 break;
1653
1654 if (copied) {
1655 if (sk->sk_err ||
1656 sk->sk_state == TCP_CLOSE ||
1657 (sk->sk_shutdown & RCV_SHUTDOWN) ||
1658 !timeo ||
518a09ef 1659 signal_pending(current))
1da177e4
LT
1660 break;
1661 } else {
1662 if (sock_flag(sk, SOCK_DONE))
1663 break;
1664
1665 if (sk->sk_err) {
1666 copied = sock_error(sk);
1667 break;
1668 }
1669
1670 if (sk->sk_shutdown & RCV_SHUTDOWN)
1671 break;
1672
1673 if (sk->sk_state == TCP_CLOSE) {
1674 if (!sock_flag(sk, SOCK_DONE)) {
1675 /* This occurs when user tries to read
1676 * from never connected socket.
1677 */
1678 copied = -ENOTCONN;
1679 break;
1680 }
1681 break;
1682 }
1683
1684 if (!timeo) {
1685 copied = -EAGAIN;
1686 break;
1687 }
1688
1689 if (signal_pending(current)) {
1690 copied = sock_intr_errno(timeo);
1691 break;
1692 }
1693 }
1694
0e4b4992 1695 tcp_cleanup_rbuf(sk, copied);
1da177e4 1696
7df55125 1697 if (!sysctl_tcp_low_latency && tp->ucopy.task == user_recv) {
1da177e4
LT
1698 /* Install new reader */
1699 if (!user_recv && !(flags & (MSG_TRUNC | MSG_PEEK))) {
1700 user_recv = current;
1701 tp->ucopy.task = user_recv;
f4362a2c 1702 tp->ucopy.msg = msg;
1da177e4
LT
1703 }
1704
1705 tp->ucopy.len = len;
1706
547b792c
IJ
1707 WARN_ON(tp->copied_seq != tp->rcv_nxt &&
1708 !(flags & (MSG_PEEK | MSG_TRUNC)));
1da177e4
LT
1709
1710 /* Ugly... If prequeue is not empty, we have to
1711 * process it before releasing socket, otherwise
1712 * order will be broken at second iteration.
1713 * More elegant solution is required!!!
1714 *
1715 * Look: we have the following (pseudo)queues:
1716 *
1717 * 1. packets in flight
1718 * 2. backlog
1719 * 3. prequeue
1720 * 4. receive_queue
1721 *
1722 * Each queue can be processed only if the next ones
1723 * are empty. At this point we have empty receive_queue.
1724 * But prequeue _can_ be not empty after 2nd iteration,
1725 * when we jumped to start of loop because backlog
1726 * processing added something to receive_queue.
1727 * We cannot release_sock(), because backlog contains
1728 * packets arrived _after_ prequeued ones.
1729 *
1730 * Shortly, algorithm is clear --- to process all
1731 * the queues in order. We could make it more directly,
1732 * requeueing packets from backlog to prequeue, if
1733 * is not empty. It is more elegant, but eats cycles,
1734 * unfortunately.
1735 */
b03efcfb 1736 if (!skb_queue_empty(&tp->ucopy.prequeue))
1da177e4
LT
1737 goto do_prequeue;
1738
1739 /* __ Set realtime policy in scheduler __ */
1740 }
1741
1742 if (copied >= target) {
1743 /* Do not sleep, just process backlog. */
1744 release_sock(sk);
1745 lock_sock(sk);
1746 } else
1747 sk_wait_data(sk, &timeo);
1748
1749 if (user_recv) {
1750 int chunk;
1751
1752 /* __ Restore normal policy in scheduler __ */
1753
1754 if ((chunk = len - tp->ucopy.len) != 0) {
ed88098e 1755 NET_ADD_STATS_USER(sock_net(sk), LINUX_MIB_TCPDIRECTCOPYFROMBACKLOG, chunk);
1da177e4
LT
1756 len -= chunk;
1757 copied += chunk;
1758 }
1759
1760 if (tp->rcv_nxt == tp->copied_seq &&
b03efcfb 1761 !skb_queue_empty(&tp->ucopy.prequeue)) {
1da177e4
LT
1762do_prequeue:
1763 tcp_prequeue_process(sk);
1764
1765 if ((chunk = len - tp->ucopy.len) != 0) {
ed88098e 1766 NET_ADD_STATS_USER(sock_net(sk), LINUX_MIB_TCPDIRECTCOPYFROMPREQUEUE, chunk);
1da177e4
LT
1767 len -= chunk;
1768 copied += chunk;
1769 }
1770 }
1771 }
77527313
IJ
1772 if ((flags & MSG_PEEK) &&
1773 (peek_seq - copied - urg_hole != tp->copied_seq)) {
e87cc472
JP
1774 net_dbg_ratelimited("TCP(%s:%d): Application bug, race in MSG_PEEK\n",
1775 current->comm,
1776 task_pid_nr(current));
1da177e4
LT
1777 peek_seq = tp->copied_seq;
1778 }
1779 continue;
1780
1781 found_ok_skb:
1782 /* Ok so how much can we use? */
1783 used = skb->len - offset;
1784 if (len < used)
1785 used = len;
1786
1787 /* Do we have urgent data here? */
1788 if (tp->urg_data) {
1789 u32 urg_offset = tp->urg_seq - *seq;
1790 if (urg_offset < used) {
1791 if (!urg_offset) {
1792 if (!sock_flag(sk, SOCK_URGINLINE)) {
1793 ++*seq;
77527313 1794 urg_hole++;
1da177e4
LT
1795 offset++;
1796 used--;
1797 if (!used)
1798 goto skip_copy;
1799 }
1800 } else
1801 used = urg_offset;
1802 }
1803 }
1804
1805 if (!(flags & MSG_TRUNC)) {
51f3d02b 1806 err = skb_copy_datagram_msg(skb, offset, msg, used);
7bced397
DW
1807 if (err) {
1808 /* Exception. Bailout! */
1809 if (!copied)
1810 copied = -EFAULT;
1811 break;
1da177e4
LT
1812 }
1813 }
1814
1815 *seq += used;
1816 copied += used;
1817 len -= used;
1818
1819 tcp_rcv_space_adjust(sk);
1820
1821skip_copy:
1822 if (tp->urg_data && after(tp->copied_seq, tp->urg_seq)) {
1823 tp->urg_data = 0;
9e412ba7 1824 tcp_fast_path_check(sk);
1da177e4
LT
1825 }
1826 if (used + offset < skb->len)
1827 continue;
1828
e11ecddf 1829 if (TCP_SKB_CB(skb)->tcp_flags & TCPHDR_FIN)
1da177e4 1830 goto found_fin_ok;
7bced397
DW
1831 if (!(flags & MSG_PEEK))
1832 sk_eat_skb(sk, skb);
1da177e4
LT
1833 continue;
1834
1835 found_fin_ok:
1836 /* Process the FIN. */
1837 ++*seq;
7bced397
DW
1838 if (!(flags & MSG_PEEK))
1839 sk_eat_skb(sk, skb);
1da177e4
LT
1840 break;
1841 } while (len > 0);
1842
1843 if (user_recv) {
b03efcfb 1844 if (!skb_queue_empty(&tp->ucopy.prequeue)) {
1da177e4
LT
1845 int chunk;
1846
1847 tp->ucopy.len = copied > 0 ? len : 0;
1848
1849 tcp_prequeue_process(sk);
1850
1851 if (copied > 0 && (chunk = len - tp->ucopy.len) != 0) {
ed88098e 1852 NET_ADD_STATS_USER(sock_net(sk), LINUX_MIB_TCPDIRECTCOPYFROMPREQUEUE, chunk);
1da177e4
LT
1853 len -= chunk;
1854 copied += chunk;
1855 }
1856 }
1857
1858 tp->ucopy.task = NULL;
1859 tp->ucopy.len = 0;
1860 }
1861
1862 /* According to UNIX98, msg_name/msg_namelen are ignored
1863 * on connected socket. I was just happy when found this 8) --ANK
1864 */
1865
1866 /* Clean up data we have read: This will do ACK frames. */
0e4b4992 1867 tcp_cleanup_rbuf(sk, copied);
1da177e4 1868
1da177e4
LT
1869 release_sock(sk);
1870 return copied;
1871
1872out:
1da177e4
LT
1873 release_sock(sk);
1874 return err;
1875
1876recv_urg:
377f0a08 1877 err = tcp_recv_urg(sk, msg, len, flags);
1da177e4 1878 goto out;
c0e88ff0
PE
1879
1880recv_sndq:
1881 err = tcp_peek_sndq(sk, msg, len);
1882 goto out;
1da177e4 1883}
4bc2f18b 1884EXPORT_SYMBOL(tcp_recvmsg);
1da177e4 1885
490d5046
IJ
1886void tcp_set_state(struct sock *sk, int state)
1887{
1888 int oldstate = sk->sk_state;
1889
1890 switch (state) {
1891 case TCP_ESTABLISHED:
1892 if (oldstate != TCP_ESTABLISHED)
81cc8a75 1893 TCP_INC_STATS(sock_net(sk), TCP_MIB_CURRESTAB);
490d5046
IJ
1894 break;
1895
1896 case TCP_CLOSE:
1897 if (oldstate == TCP_CLOSE_WAIT || oldstate == TCP_ESTABLISHED)
81cc8a75 1898 TCP_INC_STATS(sock_net(sk), TCP_MIB_ESTABRESETS);
490d5046
IJ
1899
1900 sk->sk_prot->unhash(sk);
1901 if (inet_csk(sk)->icsk_bind_hash &&
1902 !(sk->sk_userlocks & SOCK_BINDPORT_LOCK))
ab1e0a13 1903 inet_put_port(sk);
490d5046
IJ
1904 /* fall through */
1905 default:
5a5f3a8d 1906 if (oldstate == TCP_ESTABLISHED)
74688e48 1907 TCP_DEC_STATS(sock_net(sk), TCP_MIB_CURRESTAB);
490d5046
IJ
1908 }
1909
1910 /* Change state AFTER socket is unhashed to avoid closed
1911 * socket sitting in hash tables.
1912 */
1913 sk->sk_state = state;
1914
1915#ifdef STATE_TRACE
5a5f3a8d 1916 SOCK_DEBUG(sk, "TCP sk=%p, State %s -> %s\n", sk, statename[oldstate], statename[state]);
490d5046
IJ
1917#endif
1918}
1919EXPORT_SYMBOL_GPL(tcp_set_state);
1920
1da177e4
LT
1921/*
1922 * State processing on a close. This implements the state shift for
1923 * sending our FIN frame. Note that we only send a FIN for some
1924 * states. A shutdown() may have already sent the FIN, or we may be
1925 * closed.
1926 */
1927
9b5b5cff 1928static const unsigned char new_state[16] = {
1da177e4 1929 /* current state: new state: action: */
0980c1e3
ED
1930 [0 /* (Invalid) */] = TCP_CLOSE,
1931 [TCP_ESTABLISHED] = TCP_FIN_WAIT1 | TCP_ACTION_FIN,
1932 [TCP_SYN_SENT] = TCP_CLOSE,
1933 [TCP_SYN_RECV] = TCP_FIN_WAIT1 | TCP_ACTION_FIN,
1934 [TCP_FIN_WAIT1] = TCP_FIN_WAIT1,
1935 [TCP_FIN_WAIT2] = TCP_FIN_WAIT2,
1936 [TCP_TIME_WAIT] = TCP_CLOSE,
1937 [TCP_CLOSE] = TCP_CLOSE,
1938 [TCP_CLOSE_WAIT] = TCP_LAST_ACK | TCP_ACTION_FIN,
1939 [TCP_LAST_ACK] = TCP_LAST_ACK,
1940 [TCP_LISTEN] = TCP_CLOSE,
1941 [TCP_CLOSING] = TCP_CLOSING,
1942 [TCP_NEW_SYN_RECV] = TCP_CLOSE, /* should not happen ! */
1da177e4
LT
1943};
1944
1945static int tcp_close_state(struct sock *sk)
1946{
1947 int next = (int)new_state[sk->sk_state];
1948 int ns = next & TCP_STATE_MASK;
1949
1950 tcp_set_state(sk, ns);
1951
1952 return next & TCP_ACTION_FIN;
1953}
1954
1955/*
1956 * Shutdown the sending side of a connection. Much like close except
1f29b058 1957 * that we don't receive shut down or sock_set_flag(sk, SOCK_DEAD).
1da177e4
LT
1958 */
1959
1960void tcp_shutdown(struct sock *sk, int how)
1961{
1962 /* We need to grab some memory, and put together a FIN,
1963 * and then put it into the queue to be sent.
1964 * Tim MacKenzie(tym@dibbler.cs.monash.edu.au) 4 Dec '92.
1965 */
1966 if (!(how & SEND_SHUTDOWN))
1967 return;
1968
1969 /* If we've already sent a FIN, or it's a closed state, skip this. */
1970 if ((1 << sk->sk_state) &
1971 (TCPF_ESTABLISHED | TCPF_SYN_SENT |
1972 TCPF_SYN_RECV | TCPF_CLOSE_WAIT)) {
1973 /* Clear out any half completed packets. FIN if needed. */
1974 if (tcp_close_state(sk))
1975 tcp_send_fin(sk);
1976 }
1977}
4bc2f18b 1978EXPORT_SYMBOL(tcp_shutdown);
1da177e4 1979
efcdbf24
AS
1980bool tcp_check_oom(struct sock *sk, int shift)
1981{
1982 bool too_many_orphans, out_of_socket_memory;
1983
1984 too_many_orphans = tcp_too_many_orphans(sk, shift);
1985 out_of_socket_memory = tcp_out_of_memory(sk);
1986
e87cc472
JP
1987 if (too_many_orphans)
1988 net_info_ratelimited("too many orphaned sockets\n");
1989 if (out_of_socket_memory)
1990 net_info_ratelimited("out of memory -- consider tuning tcp_mem\n");
efcdbf24
AS
1991 return too_many_orphans || out_of_socket_memory;
1992}
1993
1da177e4
LT
1994void tcp_close(struct sock *sk, long timeout)
1995{
1996 struct sk_buff *skb;
1997 int data_was_unread = 0;
75c2d907 1998 int state;
1da177e4
LT
1999
2000 lock_sock(sk);
2001 sk->sk_shutdown = SHUTDOWN_MASK;
2002
2003 if (sk->sk_state == TCP_LISTEN) {
2004 tcp_set_state(sk, TCP_CLOSE);
2005
2006 /* Special case. */
0a5578cf 2007 inet_csk_listen_stop(sk);
1da177e4
LT
2008
2009 goto adjudge_to_death;
2010 }
2011
2012 /* We need to flush the recv. buffs. We do this only on the
2013 * descriptor close, not protocol-sourced closes, because the
2014 * reader process may not have drained the data yet!
2015 */
2016 while ((skb = __skb_dequeue(&sk->sk_receive_queue)) != NULL) {
e11ecddf
ED
2017 u32 len = TCP_SKB_CB(skb)->end_seq - TCP_SKB_CB(skb)->seq;
2018
2019 if (TCP_SKB_CB(skb)->tcp_flags & TCPHDR_FIN)
2020 len--;
1da177e4
LT
2021 data_was_unread += len;
2022 __kfree_skb(skb);
2023 }
2024
3ab224be 2025 sk_mem_reclaim(sk);
1da177e4 2026
565b7b2d
KK
2027 /* If socket has been already reset (e.g. in tcp_reset()) - kill it. */
2028 if (sk->sk_state == TCP_CLOSE)
2029 goto adjudge_to_death;
2030
65bb723c
GR
2031 /* As outlined in RFC 2525, section 2.17, we send a RST here because
2032 * data was lost. To witness the awful effects of the old behavior of
2033 * always doing a FIN, run an older 2.1.x kernel or 2.0.x, start a bulk
2034 * GET in an FTP client, suspend the process, wait for the client to
2035 * advertise a zero window, then kill -9 the FTP client, wheee...
2036 * Note: timeout is always zero in such a case.
1da177e4 2037 */
ee995283
PE
2038 if (unlikely(tcp_sk(sk)->repair)) {
2039 sk->sk_prot->disconnect(sk, 0);
2040 } else if (data_was_unread) {
1da177e4 2041 /* Unread data was tossed, zap the connection. */
6f67c817 2042 NET_INC_STATS_USER(sock_net(sk), LINUX_MIB_TCPABORTONCLOSE);
1da177e4 2043 tcp_set_state(sk, TCP_CLOSE);
aa133076 2044 tcp_send_active_reset(sk, sk->sk_allocation);
1da177e4
LT
2045 } else if (sock_flag(sk, SOCK_LINGER) && !sk->sk_lingertime) {
2046 /* Check zero linger _after_ checking for unread data. */
2047 sk->sk_prot->disconnect(sk, 0);
6f67c817 2048 NET_INC_STATS_USER(sock_net(sk), LINUX_MIB_TCPABORTONDATA);
1da177e4
LT
2049 } else if (tcp_close_state(sk)) {
2050 /* We FIN if the application ate all the data before
2051 * zapping the connection.
2052 */
2053
2054 /* RED-PEN. Formally speaking, we have broken TCP state
2055 * machine. State transitions:
2056 *
2057 * TCP_ESTABLISHED -> TCP_FIN_WAIT1
2058 * TCP_SYN_RECV -> TCP_FIN_WAIT1 (forget it, it's impossible)
2059 * TCP_CLOSE_WAIT -> TCP_LAST_ACK
2060 *
2061 * are legal only when FIN has been sent (i.e. in window),
2062 * rather than queued out of window. Purists blame.
2063 *
2064 * F.e. "RFC state" is ESTABLISHED,
2065 * if Linux state is FIN-WAIT-1, but FIN is still not sent.
2066 *
2067 * The visible declinations are that sometimes
2068 * we enter time-wait state, when it is not required really
2069 * (harmless), do not send active resets, when they are
2070 * required by specs (TCP_ESTABLISHED, TCP_CLOSE_WAIT, when
2071 * they look as CLOSING or LAST_ACK for Linux)
2072 * Probably, I missed some more holelets.
2073 * --ANK
8336886f
JC
2074 * XXX (TFO) - To start off we don't support SYN+ACK+FIN
2075 * in a single packet! (May consider it later but will
2076 * probably need API support or TCP_CORK SYN-ACK until
2077 * data is written and socket is closed.)
1da177e4
LT
2078 */
2079 tcp_send_fin(sk);
2080 }
2081
2082 sk_stream_wait_close(sk, timeout);
2083
2084adjudge_to_death:
75c2d907
HX
2085 state = sk->sk_state;
2086 sock_hold(sk);
2087 sock_orphan(sk);
75c2d907 2088
1da177e4
LT
2089 /* It is the last release_sock in its life. It will remove backlog. */
2090 release_sock(sk);
2091
2092
2093 /* Now socket is owned by kernel and we acquire BH lock
2094 to finish close. No need to check for user refs.
2095 */
2096 local_bh_disable();
2097 bh_lock_sock(sk);
547b792c 2098 WARN_ON(sock_owned_by_user(sk));
1da177e4 2099
eb4dea58
HX
2100 percpu_counter_inc(sk->sk_prot->orphan_count);
2101
75c2d907
HX
2102 /* Have we already been destroyed by a softirq or backlog? */
2103 if (state != TCP_CLOSE && sk->sk_state == TCP_CLOSE)
2104 goto out;
1da177e4
LT
2105
2106 /* This is a (useful) BSD violating of the RFC. There is a
2107 * problem with TCP as specified in that the other end could
2108 * keep a socket open forever with no application left this end.
b10bd54c 2109 * We use a 1 minute timeout (about the same as BSD) then kill
1da177e4
LT
2110 * our end. If they send after that then tough - BUT: long enough
2111 * that we won't make the old 4*rto = almost no time - whoops
2112 * reset mistake.
2113 *
2114 * Nope, it was not mistake. It is really desired behaviour
2115 * f.e. on http servers, when such sockets are useless, but
2116 * consume significant resources. Let's do it with special
2117 * linger2 option. --ANK
2118 */
2119
2120 if (sk->sk_state == TCP_FIN_WAIT2) {
2121 struct tcp_sock *tp = tcp_sk(sk);
2122 if (tp->linger2 < 0) {
2123 tcp_set_state(sk, TCP_CLOSE);
2124 tcp_send_active_reset(sk, GFP_ATOMIC);
de0744af
PE
2125 NET_INC_STATS_BH(sock_net(sk),
2126 LINUX_MIB_TCPABORTONLINGER);
1da177e4 2127 } else {
463c84b9 2128 const int tmo = tcp_fin_time(sk);
1da177e4
LT
2129
2130 if (tmo > TCP_TIMEWAIT_LEN) {
52499afe
DM
2131 inet_csk_reset_keepalive_timer(sk,
2132 tmo - TCP_TIMEWAIT_LEN);
1da177e4 2133 } else {
1da177e4
LT
2134 tcp_time_wait(sk, TCP_FIN_WAIT2, tmo);
2135 goto out;
2136 }
2137 }
2138 }
2139 if (sk->sk_state != TCP_CLOSE) {
3ab224be 2140 sk_mem_reclaim(sk);
efcdbf24 2141 if (tcp_check_oom(sk, 0)) {
1da177e4
LT
2142 tcp_set_state(sk, TCP_CLOSE);
2143 tcp_send_active_reset(sk, GFP_ATOMIC);
de0744af
PE
2144 NET_INC_STATS_BH(sock_net(sk),
2145 LINUX_MIB_TCPABORTONMEMORY);
1da177e4
LT
2146 }
2147 }
1da177e4 2148
8336886f
JC
2149 if (sk->sk_state == TCP_CLOSE) {
2150 struct request_sock *req = tcp_sk(sk)->fastopen_rsk;
2151 /* We could get here with a non-NULL req if the socket is
2152 * aborted (e.g., closed with unread data) before 3WHS
2153 * finishes.
2154 */
00db4124 2155 if (req)
8336886f 2156 reqsk_fastopen_remove(sk, req, false);
0a5578cf 2157 inet_csk_destroy_sock(sk);
8336886f 2158 }
1da177e4
LT
2159 /* Otherwise, socket is reprieved until protocol close. */
2160
2161out:
2162 bh_unlock_sock(sk);
2163 local_bh_enable();
2164 sock_put(sk);
2165}
4bc2f18b 2166EXPORT_SYMBOL(tcp_close);
1da177e4
LT
2167
2168/* These states need RST on ABORT according to RFC793 */
2169
a2a385d6 2170static inline bool tcp_need_reset(int state)
1da177e4
LT
2171{
2172 return (1 << state) &
2173 (TCPF_ESTABLISHED | TCPF_CLOSE_WAIT | TCPF_FIN_WAIT1 |
2174 TCPF_FIN_WAIT2 | TCPF_SYN_RECV);
2175}
2176
2177int tcp_disconnect(struct sock *sk, int flags)
2178{
2179 struct inet_sock *inet = inet_sk(sk);
463c84b9 2180 struct inet_connection_sock *icsk = inet_csk(sk);
1da177e4
LT
2181 struct tcp_sock *tp = tcp_sk(sk);
2182 int err = 0;
2183 int old_state = sk->sk_state;
2184
2185 if (old_state != TCP_CLOSE)
2186 tcp_set_state(sk, TCP_CLOSE);
2187
2188 /* ABORT function of RFC793 */
2189 if (old_state == TCP_LISTEN) {
0a5578cf 2190 inet_csk_listen_stop(sk);
ee995283
PE
2191 } else if (unlikely(tp->repair)) {
2192 sk->sk_err = ECONNABORTED;
1da177e4
LT
2193 } else if (tcp_need_reset(old_state) ||
2194 (tp->snd_nxt != tp->write_seq &&
2195 (1 << old_state) & (TCPF_CLOSING | TCPF_LAST_ACK))) {
caa20d9a 2196 /* The last check adjusts for discrepancy of Linux wrt. RFC
1da177e4
LT
2197 * states
2198 */
2199 tcp_send_active_reset(sk, gfp_any());
2200 sk->sk_err = ECONNRESET;
2201 } else if (old_state == TCP_SYN_SENT)
2202 sk->sk_err = ECONNRESET;
2203
2204 tcp_clear_xmit_timers(sk);
2205 __skb_queue_purge(&sk->sk_receive_queue);
fe067e8a 2206 tcp_write_queue_purge(sk);
1da177e4
LT
2207 __skb_queue_purge(&tp->out_of_order_queue);
2208
c720c7e8 2209 inet->inet_dport = 0;
1da177e4
LT
2210
2211 if (!(sk->sk_userlocks & SOCK_BINDADDR_LOCK))
2212 inet_reset_saddr(sk);
2213
2214 sk->sk_shutdown = 0;
2215 sock_reset_flag(sk, SOCK_DONE);
740b0f18 2216 tp->srtt_us = 0;
1da177e4
LT
2217 if ((tp->write_seq += tp->max_window + 2) == 0)
2218 tp->write_seq = 1;
463c84b9 2219 icsk->icsk_backoff = 0;
1da177e4 2220 tp->snd_cwnd = 2;
6687e988 2221 icsk->icsk_probes_out = 0;
1da177e4 2222 tp->packets_out = 0;
0b6a05c1 2223 tp->snd_ssthresh = TCP_INFINITE_SSTHRESH;
1da177e4 2224 tp->snd_cwnd_cnt = 0;
1fdf475a 2225 tp->window_clamp = 0;
6687e988 2226 tcp_set_ca_state(sk, TCP_CA_Open);
1da177e4 2227 tcp_clear_retrans(tp);
463c84b9 2228 inet_csk_delack_init(sk);
fe067e8a 2229 tcp_init_send_head(sk);
b40b4f79 2230 memset(&tp->rx_opt, 0, sizeof(tp->rx_opt));
1da177e4
LT
2231 __sk_dst_reset(sk);
2232
c720c7e8 2233 WARN_ON(inet->inet_num && !icsk->icsk_bind_hash);
1da177e4
LT
2234
2235 sk->sk_error_report(sk);
2236 return err;
2237}
4bc2f18b 2238EXPORT_SYMBOL(tcp_disconnect);
1da177e4 2239
bb68b647
CP
2240void tcp_sock_destruct(struct sock *sk)
2241{
2242 inet_sock_destruct(sk);
2243
2244 kfree(inet_csk(sk)->icsk_accept_queue.fastopenq);
2245}
2246
a2a385d6 2247static inline bool tcp_can_repair_sock(const struct sock *sk)
ee995283 2248{
52e804c6 2249 return ns_capable(sock_net(sk)->user_ns, CAP_NET_ADMIN) &&
ee995283
PE
2250 ((1 << sk->sk_state) & (TCPF_CLOSE | TCPF_ESTABLISHED));
2251}
2252
de248a75
PE
2253static int tcp_repair_options_est(struct tcp_sock *tp,
2254 struct tcp_repair_opt __user *optbuf, unsigned int len)
b139ba4e 2255{
de248a75 2256 struct tcp_repair_opt opt;
b139ba4e 2257
de248a75
PE
2258 while (len >= sizeof(opt)) {
2259 if (copy_from_user(&opt, optbuf, sizeof(opt)))
b139ba4e
PE
2260 return -EFAULT;
2261
2262 optbuf++;
de248a75 2263 len -= sizeof(opt);
b139ba4e 2264
de248a75
PE
2265 switch (opt.opt_code) {
2266 case TCPOPT_MSS:
2267 tp->rx_opt.mss_clamp = opt.opt_val;
b139ba4e 2268 break;
de248a75 2269 case TCPOPT_WINDOW:
bc26ccd8
AV
2270 {
2271 u16 snd_wscale = opt.opt_val & 0xFFFF;
2272 u16 rcv_wscale = opt.opt_val >> 16;
2273
2274 if (snd_wscale > 14 || rcv_wscale > 14)
2275 return -EFBIG;
b139ba4e 2276
bc26ccd8
AV
2277 tp->rx_opt.snd_wscale = snd_wscale;
2278 tp->rx_opt.rcv_wscale = rcv_wscale;
2279 tp->rx_opt.wscale_ok = 1;
2280 }
b139ba4e 2281 break;
b139ba4e 2282 case TCPOPT_SACK_PERM:
de248a75
PE
2283 if (opt.opt_val != 0)
2284 return -EINVAL;
2285
b139ba4e
PE
2286 tp->rx_opt.sack_ok |= TCP_SACK_SEEN;
2287 if (sysctl_tcp_fack)
2288 tcp_enable_fack(tp);
2289 break;
2290 case TCPOPT_TIMESTAMP:
de248a75
PE
2291 if (opt.opt_val != 0)
2292 return -EINVAL;
2293
b139ba4e
PE
2294 tp->rx_opt.tstamp_ok = 1;
2295 break;
2296 }
2297 }
2298
2299 return 0;
2300}
2301
1da177e4
LT
2302/*
2303 * Socket option code for TCP.
2304 */
3fdadf7d 2305static int do_tcp_setsockopt(struct sock *sk, int level,
b7058842 2306 int optname, char __user *optval, unsigned int optlen)
1da177e4
LT
2307{
2308 struct tcp_sock *tp = tcp_sk(sk);
463c84b9 2309 struct inet_connection_sock *icsk = inet_csk(sk);
1da177e4
LT
2310 int val;
2311 int err = 0;
2312
e56fb50f
WAS
2313 /* These are data/string values, all the others are ints */
2314 switch (optname) {
2315 case TCP_CONGESTION: {
5f8ef48d
SH
2316 char name[TCP_CA_NAME_MAX];
2317
2318 if (optlen < 1)
2319 return -EINVAL;
2320
2321 val = strncpy_from_user(name, optval,
4fdb78d3 2322 min_t(long, TCP_CA_NAME_MAX-1, optlen));
5f8ef48d
SH
2323 if (val < 0)
2324 return -EFAULT;
2325 name[val] = 0;
2326
2327 lock_sock(sk);
6687e988 2328 err = tcp_set_congestion_control(sk, name);
5f8ef48d
SH
2329 release_sock(sk);
2330 return err;
2331 }
e56fb50f
WAS
2332 default:
2333 /* fallthru */
2334 break;
ccbd6a5a 2335 }
5f8ef48d 2336
1da177e4
LT
2337 if (optlen < sizeof(int))
2338 return -EINVAL;
2339
2340 if (get_user(val, (int __user *)optval))
2341 return -EFAULT;
2342
2343 lock_sock(sk);
2344
2345 switch (optname) {
2346 case TCP_MAXSEG:
2347 /* Values greater than interface MTU won't take effect. However
2348 * at the point when this call is done we typically don't yet
2349 * know which interface is going to be used */
c39508d6 2350 if (val < TCP_MIN_MSS || val > MAX_TCP_WINDOW) {
1da177e4
LT
2351 err = -EINVAL;
2352 break;
2353 }
2354 tp->rx_opt.user_mss = val;
2355 break;
2356
2357 case TCP_NODELAY:
2358 if (val) {
2359 /* TCP_NODELAY is weaker than TCP_CORK, so that
2360 * this option on corked socket is remembered, but
2361 * it is not activated until cork is cleared.
2362 *
2363 * However, when TCP_NODELAY is set we make
2364 * an explicit push, which overrides even TCP_CORK
2365 * for currently queued segments.
2366 */
2367 tp->nonagle |= TCP_NAGLE_OFF|TCP_NAGLE_PUSH;
9e412ba7 2368 tcp_push_pending_frames(sk);
1da177e4
LT
2369 } else {
2370 tp->nonagle &= ~TCP_NAGLE_OFF;
2371 }
2372 break;
2373
36e31b0a
AP
2374 case TCP_THIN_LINEAR_TIMEOUTS:
2375 if (val < 0 || val > 1)
2376 err = -EINVAL;
2377 else
2378 tp->thin_lto = val;
2379 break;
2380
7e380175
AP
2381 case TCP_THIN_DUPACK:
2382 if (val < 0 || val > 1)
2383 err = -EINVAL;
e2e5c4c0 2384 else {
7e380175 2385 tp->thin_dupack = val;
eed530b6
YC
2386 if (tp->thin_dupack)
2387 tcp_disable_early_retrans(tp);
e2e5c4c0 2388 }
7e380175
AP
2389 break;
2390
ee995283
PE
2391 case TCP_REPAIR:
2392 if (!tcp_can_repair_sock(sk))
2393 err = -EPERM;
2394 else if (val == 1) {
2395 tp->repair = 1;
2396 sk->sk_reuse = SK_FORCE_REUSE;
2397 tp->repair_queue = TCP_NO_QUEUE;
2398 } else if (val == 0) {
2399 tp->repair = 0;
2400 sk->sk_reuse = SK_NO_REUSE;
2401 tcp_send_window_probe(sk);
2402 } else
2403 err = -EINVAL;
2404
2405 break;
2406
2407 case TCP_REPAIR_QUEUE:
2408 if (!tp->repair)
2409 err = -EPERM;
2410 else if (val < TCP_QUEUES_NR)
2411 tp->repair_queue = val;
2412 else
2413 err = -EINVAL;
2414 break;
2415
2416 case TCP_QUEUE_SEQ:
2417 if (sk->sk_state != TCP_CLOSE)
2418 err = -EPERM;
2419 else if (tp->repair_queue == TCP_SEND_QUEUE)
2420 tp->write_seq = val;
2421 else if (tp->repair_queue == TCP_RECV_QUEUE)
2422 tp->rcv_nxt = val;
2423 else
2424 err = -EINVAL;
2425 break;
2426
b139ba4e
PE
2427 case TCP_REPAIR_OPTIONS:
2428 if (!tp->repair)
2429 err = -EINVAL;
2430 else if (sk->sk_state == TCP_ESTABLISHED)
de248a75
PE
2431 err = tcp_repair_options_est(tp,
2432 (struct tcp_repair_opt __user *)optval,
2433 optlen);
b139ba4e
PE
2434 else
2435 err = -EPERM;
2436 break;
2437
1da177e4
LT
2438 case TCP_CORK:
2439 /* When set indicates to always queue non-full frames.
2440 * Later the user clears this option and we transmit
2441 * any pending partial frames in the queue. This is
2442 * meant to be used alongside sendfile() to get properly
2443 * filled frames when the user (for example) must write
2444 * out headers with a write() call first and then use
2445 * sendfile to send out the data parts.
2446 *
2447 * TCP_CORK can be set together with TCP_NODELAY and it is
2448 * stronger than TCP_NODELAY.
2449 */
2450 if (val) {
2451 tp->nonagle |= TCP_NAGLE_CORK;
2452 } else {
2453 tp->nonagle &= ~TCP_NAGLE_CORK;
2454 if (tp->nonagle&TCP_NAGLE_OFF)
2455 tp->nonagle |= TCP_NAGLE_PUSH;
9e412ba7 2456 tcp_push_pending_frames(sk);
1da177e4
LT
2457 }
2458 break;
2459
2460 case TCP_KEEPIDLE:
2461 if (val < 1 || val > MAX_TCP_KEEPIDLE)
2462 err = -EINVAL;
2463 else {
2464 tp->keepalive_time = val * HZ;
2465 if (sock_flag(sk, SOCK_KEEPOPEN) &&
2466 !((1 << sk->sk_state) &
2467 (TCPF_CLOSE | TCPF_LISTEN))) {
6c37e5de 2468 u32 elapsed = keepalive_time_elapsed(tp);
1da177e4
LT
2469 if (tp->keepalive_time > elapsed)
2470 elapsed = tp->keepalive_time - elapsed;
2471 else
2472 elapsed = 0;
463c84b9 2473 inet_csk_reset_keepalive_timer(sk, elapsed);
1da177e4
LT
2474 }
2475 }
2476 break;
2477 case TCP_KEEPINTVL:
2478 if (val < 1 || val > MAX_TCP_KEEPINTVL)
2479 err = -EINVAL;
2480 else
2481 tp->keepalive_intvl = val * HZ;
2482 break;
2483 case TCP_KEEPCNT:
2484 if (val < 1 || val > MAX_TCP_KEEPCNT)
2485 err = -EINVAL;
2486 else
2487 tp->keepalive_probes = val;
2488 break;
2489 case TCP_SYNCNT:
2490 if (val < 1 || val > MAX_TCP_SYNCNT)
2491 err = -EINVAL;
2492 else
463c84b9 2493 icsk->icsk_syn_retries = val;
1da177e4
LT
2494 break;
2495
cd8ae852
ED
2496 case TCP_SAVE_SYN:
2497 if (val < 0 || val > 1)
2498 err = -EINVAL;
2499 else
2500 tp->save_syn = val;
2501 break;
2502
1da177e4
LT
2503 case TCP_LINGER2:
2504 if (val < 0)
2505 tp->linger2 = -1;
2506 else if (val > sysctl_tcp_fin_timeout / HZ)
2507 tp->linger2 = 0;
2508 else
2509 tp->linger2 = val * HZ;
2510 break;
2511
2512 case TCP_DEFER_ACCEPT:
b103cf34
JA
2513 /* Translate value in seconds to number of retransmits */
2514 icsk->icsk_accept_queue.rskq_defer_accept =
2515 secs_to_retrans(val, TCP_TIMEOUT_INIT / HZ,
2516 TCP_RTO_MAX / HZ);
1da177e4
LT
2517 break;
2518
2519 case TCP_WINDOW_CLAMP:
2520 if (!val) {
2521 if (sk->sk_state != TCP_CLOSE) {
2522 err = -EINVAL;
2523 break;
2524 }
2525 tp->window_clamp = 0;
2526 } else
2527 tp->window_clamp = val < SOCK_MIN_RCVBUF / 2 ?
2528 SOCK_MIN_RCVBUF / 2 : val;
2529 break;
2530
2531 case TCP_QUICKACK:
2532 if (!val) {
463c84b9 2533 icsk->icsk_ack.pingpong = 1;
1da177e4 2534 } else {
463c84b9 2535 icsk->icsk_ack.pingpong = 0;
1da177e4
LT
2536 if ((1 << sk->sk_state) &
2537 (TCPF_ESTABLISHED | TCPF_CLOSE_WAIT) &&
463c84b9
ACM
2538 inet_csk_ack_scheduled(sk)) {
2539 icsk->icsk_ack.pending |= ICSK_ACK_PUSHED;
0e4b4992 2540 tcp_cleanup_rbuf(sk, 1);
1da177e4 2541 if (!(val & 1))
463c84b9 2542 icsk->icsk_ack.pingpong = 1;
1da177e4
LT
2543 }
2544 }
2545 break;
2546
cfb6eeb4
YH
2547#ifdef CONFIG_TCP_MD5SIG
2548 case TCP_MD5SIG:
2549 /* Read the IP->Key mappings from userspace */
2550 err = tp->af_specific->md5_parse(sk, optval, optlen);
2551 break;
2552#endif
dca43c75 2553 case TCP_USER_TIMEOUT:
b248230c 2554 /* Cap the max time in ms TCP will retry or probe the window
dca43c75
JC
2555 * before giving up and aborting (ETIMEDOUT) a connection.
2556 */
42493570
HL
2557 if (val < 0)
2558 err = -EINVAL;
2559 else
2560 icsk->icsk_user_timeout = msecs_to_jiffies(val);
dca43c75 2561 break;
8336886f
JC
2562
2563 case TCP_FASTOPEN:
2564 if (val >= 0 && ((1 << sk->sk_state) & (TCPF_CLOSE |
2565 TCPF_LISTEN)))
2566 err = fastopen_init_queue(sk, val);
2567 else
2568 err = -EINVAL;
2569 break;
93be6ce0
AV
2570 case TCP_TIMESTAMP:
2571 if (!tp->repair)
2572 err = -EPERM;
2573 else
2574 tp->tsoffset = val - tcp_time_stamp;
2575 break;
c9bee3b7
ED
2576 case TCP_NOTSENT_LOWAT:
2577 tp->notsent_lowat = val;
2578 sk->sk_write_space(sk);
2579 break;
1da177e4
LT
2580 default:
2581 err = -ENOPROTOOPT;
2582 break;
3ff50b79
SH
2583 }
2584
1da177e4
LT
2585 release_sock(sk);
2586 return err;
2587}
2588
3fdadf7d 2589int tcp_setsockopt(struct sock *sk, int level, int optname, char __user *optval,
b7058842 2590 unsigned int optlen)
3fdadf7d 2591{
cf533ea5 2592 const struct inet_connection_sock *icsk = inet_csk(sk);
3fdadf7d
DM
2593
2594 if (level != SOL_TCP)
2595 return icsk->icsk_af_ops->setsockopt(sk, level, optname,
2596 optval, optlen);
2597 return do_tcp_setsockopt(sk, level, optname, optval, optlen);
2598}
4bc2f18b 2599EXPORT_SYMBOL(tcp_setsockopt);
3fdadf7d
DM
2600
2601#ifdef CONFIG_COMPAT
543d9cfe 2602int compat_tcp_setsockopt(struct sock *sk, int level, int optname,
b7058842 2603 char __user *optval, unsigned int optlen)
3fdadf7d 2604{
dec73ff0
ACM
2605 if (level != SOL_TCP)
2606 return inet_csk_compat_setsockopt(sk, level, optname,
2607 optval, optlen);
3fdadf7d
DM
2608 return do_tcp_setsockopt(sk, level, optname, optval, optlen);
2609}
543d9cfe 2610EXPORT_SYMBOL(compat_tcp_setsockopt);
3fdadf7d
DM
2611#endif
2612
1da177e4 2613/* Return information about state of tcp endpoint in API format. */
0df48c26 2614void tcp_get_info(struct sock *sk, struct tcp_info *info)
1da177e4 2615{
cf533ea5 2616 const struct tcp_sock *tp = tcp_sk(sk);
463c84b9 2617 const struct inet_connection_sock *icsk = inet_csk(sk);
1da177e4 2618 u32 now = tcp_time_stamp;
fad9dfef 2619 u32 rate;
1da177e4
LT
2620
2621 memset(info, 0, sizeof(*info));
2622
2623 info->tcpi_state = sk->sk_state;
6687e988 2624 info->tcpi_ca_state = icsk->icsk_ca_state;
463c84b9 2625 info->tcpi_retransmits = icsk->icsk_retransmits;
6687e988 2626 info->tcpi_probes = icsk->icsk_probes_out;
463c84b9 2627 info->tcpi_backoff = icsk->icsk_backoff;
1da177e4
LT
2628
2629 if (tp->rx_opt.tstamp_ok)
2630 info->tcpi_options |= TCPI_OPT_TIMESTAMPS;
e60402d0 2631 if (tcp_is_sack(tp))
1da177e4
LT
2632 info->tcpi_options |= TCPI_OPT_SACK;
2633 if (tp->rx_opt.wscale_ok) {
2634 info->tcpi_options |= TCPI_OPT_WSCALE;
2635 info->tcpi_snd_wscale = tp->rx_opt.snd_wscale;
2636 info->tcpi_rcv_wscale = tp->rx_opt.rcv_wscale;
e905a9ed 2637 }
1da177e4 2638
b5c5693b 2639 if (tp->ecn_flags & TCP_ECN_OK)
1da177e4 2640 info->tcpi_options |= TCPI_OPT_ECN;
b5c5693b
ED
2641 if (tp->ecn_flags & TCP_ECN_SEEN)
2642 info->tcpi_options |= TCPI_OPT_ECN_SEEN;
6f73601e
YC
2643 if (tp->syn_data_acked)
2644 info->tcpi_options |= TCPI_OPT_SYN_DATA;
1da177e4 2645
463c84b9
ACM
2646 info->tcpi_rto = jiffies_to_usecs(icsk->icsk_rto);
2647 info->tcpi_ato = jiffies_to_usecs(icsk->icsk_ack.ato);
c1b4a7e6 2648 info->tcpi_snd_mss = tp->mss_cache;
463c84b9 2649 info->tcpi_rcv_mss = icsk->icsk_ack.rcv_mss;
1da177e4 2650
5ee3afba
RJ
2651 if (sk->sk_state == TCP_LISTEN) {
2652 info->tcpi_unacked = sk->sk_ack_backlog;
2653 info->tcpi_sacked = sk->sk_max_ack_backlog;
2654 } else {
2655 info->tcpi_unacked = tp->packets_out;
2656 info->tcpi_sacked = tp->sacked_out;
2657 }
1da177e4
LT
2658 info->tcpi_lost = tp->lost_out;
2659 info->tcpi_retrans = tp->retrans_out;
2660 info->tcpi_fackets = tp->fackets_out;
2661
2662 info->tcpi_last_data_sent = jiffies_to_msecs(now - tp->lsndtime);
463c84b9 2663 info->tcpi_last_data_recv = jiffies_to_msecs(now - icsk->icsk_ack.lrcvtime);
1da177e4
LT
2664 info->tcpi_last_ack_recv = jiffies_to_msecs(now - tp->rcv_tstamp);
2665
d83d8461 2666 info->tcpi_pmtu = icsk->icsk_pmtu_cookie;
1da177e4 2667 info->tcpi_rcv_ssthresh = tp->rcv_ssthresh;
740b0f18
ED
2668 info->tcpi_rtt = tp->srtt_us >> 3;
2669 info->tcpi_rttvar = tp->mdev_us >> 2;
1da177e4
LT
2670 info->tcpi_snd_ssthresh = tp->snd_ssthresh;
2671 info->tcpi_snd_cwnd = tp->snd_cwnd;
2672 info->tcpi_advmss = tp->advmss;
2673 info->tcpi_reordering = tp->reordering;
2674
2675 info->tcpi_rcv_rtt = jiffies_to_usecs(tp->rcv_rtt_est.rtt)>>3;
2676 info->tcpi_rcv_space = tp->rcvq_space.space;
2677
2678 info->tcpi_total_retrans = tp->total_retrans;
977cb0ec 2679
fad9dfef
ED
2680 rate = READ_ONCE(sk->sk_pacing_rate);
2681 info->tcpi_pacing_rate = rate != ~0U ? rate : ~0ULL;
2682
2683 rate = READ_ONCE(sk->sk_max_pacing_rate);
2684 info->tcpi_max_pacing_rate = rate != ~0U ? rate : ~0ULL;
0df48c26
ED
2685
2686 spin_lock_bh(&sk->sk_lock.slock);
2687 info->tcpi_bytes_acked = tp->bytes_acked;
bdd1f9ed 2688 info->tcpi_bytes_received = tp->bytes_received;
0df48c26 2689 spin_unlock_bh(&sk->sk_lock.slock);
1da177e4 2690}
1da177e4
LT
2691EXPORT_SYMBOL_GPL(tcp_get_info);
2692
3fdadf7d
DM
2693static int do_tcp_getsockopt(struct sock *sk, int level,
2694 int optname, char __user *optval, int __user *optlen)
1da177e4 2695{
295f7324 2696 struct inet_connection_sock *icsk = inet_csk(sk);
1da177e4
LT
2697 struct tcp_sock *tp = tcp_sk(sk);
2698 int val, len;
2699
1da177e4
LT
2700 if (get_user(len, optlen))
2701 return -EFAULT;
2702
2703 len = min_t(unsigned int, len, sizeof(int));
2704
2705 if (len < 0)
2706 return -EINVAL;
2707
2708 switch (optname) {
2709 case TCP_MAXSEG:
c1b4a7e6 2710 val = tp->mss_cache;
1da177e4
LT
2711 if (!val && ((1 << sk->sk_state) & (TCPF_CLOSE | TCPF_LISTEN)))
2712 val = tp->rx_opt.user_mss;
5e6a3ce6
PE
2713 if (tp->repair)
2714 val = tp->rx_opt.mss_clamp;
1da177e4
LT
2715 break;
2716 case TCP_NODELAY:
2717 val = !!(tp->nonagle&TCP_NAGLE_OFF);
2718 break;
2719 case TCP_CORK:
2720 val = !!(tp->nonagle&TCP_NAGLE_CORK);
2721 break;
2722 case TCP_KEEPIDLE:
df19a626 2723 val = keepalive_time_when(tp) / HZ;
1da177e4
LT
2724 break;
2725 case TCP_KEEPINTVL:
df19a626 2726 val = keepalive_intvl_when(tp) / HZ;
1da177e4
LT
2727 break;
2728 case TCP_KEEPCNT:
df19a626 2729 val = keepalive_probes(tp);
1da177e4
LT
2730 break;
2731 case TCP_SYNCNT:
295f7324 2732 val = icsk->icsk_syn_retries ? : sysctl_tcp_syn_retries;
1da177e4
LT
2733 break;
2734 case TCP_LINGER2:
2735 val = tp->linger2;
2736 if (val >= 0)
2737 val = (val ? : sysctl_tcp_fin_timeout) / HZ;
2738 break;
2739 case TCP_DEFER_ACCEPT:
b103cf34
JA
2740 val = retrans_to_secs(icsk->icsk_accept_queue.rskq_defer_accept,
2741 TCP_TIMEOUT_INIT / HZ, TCP_RTO_MAX / HZ);
1da177e4
LT
2742 break;
2743 case TCP_WINDOW_CLAMP:
2744 val = tp->window_clamp;
2745 break;
2746 case TCP_INFO: {
2747 struct tcp_info info;
2748
2749 if (get_user(len, optlen))
2750 return -EFAULT;
2751
2752 tcp_get_info(sk, &info);
2753
2754 len = min_t(unsigned int, len, sizeof(info));
2755 if (put_user(len, optlen))
2756 return -EFAULT;
2757 if (copy_to_user(optval, &info, len))
2758 return -EFAULT;
2759 return 0;
2760 }
6e9250f5
ED
2761 case TCP_CC_INFO: {
2762 const struct tcp_congestion_ops *ca_ops;
2763 union tcp_cc_info info;
2764 size_t sz = 0;
2765 int attr;
2766
2767 if (get_user(len, optlen))
2768 return -EFAULT;
2769
2770 ca_ops = icsk->icsk_ca_ops;
2771 if (ca_ops && ca_ops->get_info)
2772 sz = ca_ops->get_info(sk, ~0U, &attr, &info);
2773
2774 len = min_t(unsigned int, len, sz);
2775 if (put_user(len, optlen))
2776 return -EFAULT;
2777 if (copy_to_user(optval, &info, len))
2778 return -EFAULT;
2779 return 0;
2780 }
1da177e4 2781 case TCP_QUICKACK:
295f7324 2782 val = !icsk->icsk_ack.pingpong;
1da177e4 2783 break;
5f8ef48d
SH
2784
2785 case TCP_CONGESTION:
2786 if (get_user(len, optlen))
2787 return -EFAULT;
2788 len = min_t(unsigned int, len, TCP_CA_NAME_MAX);
2789 if (put_user(len, optlen))
2790 return -EFAULT;
6687e988 2791 if (copy_to_user(optval, icsk->icsk_ca_ops->name, len))
5f8ef48d
SH
2792 return -EFAULT;
2793 return 0;
e56fb50f 2794
3c0fef0b
JH
2795 case TCP_THIN_LINEAR_TIMEOUTS:
2796 val = tp->thin_lto;
2797 break;
2798 case TCP_THIN_DUPACK:
2799 val = tp->thin_dupack;
2800 break;
dca43c75 2801
ee995283
PE
2802 case TCP_REPAIR:
2803 val = tp->repair;
2804 break;
2805
2806 case TCP_REPAIR_QUEUE:
2807 if (tp->repair)
2808 val = tp->repair_queue;
2809 else
2810 return -EINVAL;
2811 break;
2812
2813 case TCP_QUEUE_SEQ:
2814 if (tp->repair_queue == TCP_SEND_QUEUE)
2815 val = tp->write_seq;
2816 else if (tp->repair_queue == TCP_RECV_QUEUE)
2817 val = tp->rcv_nxt;
2818 else
2819 return -EINVAL;
2820 break;
2821
dca43c75
JC
2822 case TCP_USER_TIMEOUT:
2823 val = jiffies_to_msecs(icsk->icsk_user_timeout);
2824 break;
1536e285
KN
2825
2826 case TCP_FASTOPEN:
00db4124 2827 if (icsk->icsk_accept_queue.fastopenq)
1536e285
KN
2828 val = icsk->icsk_accept_queue.fastopenq->max_qlen;
2829 else
2830 val = 0;
2831 break;
2832
93be6ce0
AV
2833 case TCP_TIMESTAMP:
2834 val = tcp_time_stamp + tp->tsoffset;
2835 break;
c9bee3b7
ED
2836 case TCP_NOTSENT_LOWAT:
2837 val = tp->notsent_lowat;
2838 break;
cd8ae852
ED
2839 case TCP_SAVE_SYN:
2840 val = tp->save_syn;
2841 break;
2842 case TCP_SAVED_SYN: {
2843 if (get_user(len, optlen))
2844 return -EFAULT;
2845
2846 lock_sock(sk);
2847 if (tp->saved_syn) {
2848 len = min_t(unsigned int, tp->saved_syn[0], len);
2849 if (put_user(len, optlen)) {
2850 release_sock(sk);
2851 return -EFAULT;
2852 }
2853 if (copy_to_user(optval, tp->saved_syn + 1, len)) {
2854 release_sock(sk);
2855 return -EFAULT;
2856 }
2857 tcp_saved_syn_free(tp);
2858 release_sock(sk);
2859 } else {
2860 release_sock(sk);
2861 len = 0;
2862 if (put_user(len, optlen))
2863 return -EFAULT;
2864 }
2865 return 0;
2866 }
1da177e4
LT
2867 default:
2868 return -ENOPROTOOPT;
3ff50b79 2869 }
1da177e4
LT
2870
2871 if (put_user(len, optlen))
2872 return -EFAULT;
2873 if (copy_to_user(optval, &val, len))
2874 return -EFAULT;
2875 return 0;
2876}
2877
3fdadf7d
DM
2878int tcp_getsockopt(struct sock *sk, int level, int optname, char __user *optval,
2879 int __user *optlen)
2880{
2881 struct inet_connection_sock *icsk = inet_csk(sk);
2882
2883 if (level != SOL_TCP)
2884 return icsk->icsk_af_ops->getsockopt(sk, level, optname,
2885 optval, optlen);
2886 return do_tcp_getsockopt(sk, level, optname, optval, optlen);
2887}
4bc2f18b 2888EXPORT_SYMBOL(tcp_getsockopt);
3fdadf7d
DM
2889
2890#ifdef CONFIG_COMPAT
543d9cfe
ACM
2891int compat_tcp_getsockopt(struct sock *sk, int level, int optname,
2892 char __user *optval, int __user *optlen)
3fdadf7d 2893{
dec73ff0
ACM
2894 if (level != SOL_TCP)
2895 return inet_csk_compat_getsockopt(sk, level, optname,
2896 optval, optlen);
3fdadf7d
DM
2897 return do_tcp_getsockopt(sk, level, optname, optval, optlen);
2898}
543d9cfe 2899EXPORT_SYMBOL(compat_tcp_getsockopt);
3fdadf7d 2900#endif
1da177e4 2901
cfb6eeb4 2902#ifdef CONFIG_TCP_MD5SIG
349ce993 2903static DEFINE_PER_CPU(struct tcp_md5sig_pool, tcp_md5sig_pool);
71cea17e 2904static DEFINE_MUTEX(tcp_md5sig_mutex);
349ce993 2905static bool tcp_md5sig_pool_populated = false;
cfb6eeb4 2906
71cea17e 2907static void __tcp_alloc_md5sig_pool(void)
cfb6eeb4
YH
2908{
2909 int cpu;
cfb6eeb4
YH
2910
2911 for_each_possible_cpu(cpu) {
349ce993
ED
2912 if (!per_cpu(tcp_md5sig_pool, cpu).md5_desc.tfm) {
2913 struct crypto_hash *hash;
cfb6eeb4 2914
349ce993
ED
2915 hash = crypto_alloc_hash("md5", 0, CRYPTO_ALG_ASYNC);
2916 if (IS_ERR_OR_NULL(hash))
2917 return;
2918 per_cpu(tcp_md5sig_pool, cpu).md5_desc.tfm = hash;
2919 }
cfb6eeb4 2920 }
349ce993
ED
2921 /* before setting tcp_md5sig_pool_populated, we must commit all writes
2922 * to memory. See smp_rmb() in tcp_get_md5sig_pool()
71cea17e
ED
2923 */
2924 smp_wmb();
349ce993 2925 tcp_md5sig_pool_populated = true;
cfb6eeb4
YH
2926}
2927
71cea17e 2928bool tcp_alloc_md5sig_pool(void)
cfb6eeb4 2929{
349ce993 2930 if (unlikely(!tcp_md5sig_pool_populated)) {
71cea17e
ED
2931 mutex_lock(&tcp_md5sig_mutex);
2932
349ce993 2933 if (!tcp_md5sig_pool_populated)
71cea17e
ED
2934 __tcp_alloc_md5sig_pool();
2935
2936 mutex_unlock(&tcp_md5sig_mutex);
cfb6eeb4 2937 }
349ce993 2938 return tcp_md5sig_pool_populated;
cfb6eeb4 2939}
cfb6eeb4
YH
2940EXPORT_SYMBOL(tcp_alloc_md5sig_pool);
2941
35790c04
ED
2942
2943/**
2944 * tcp_get_md5sig_pool - get md5sig_pool for this user
2945 *
2946 * We use percpu structure, so if we succeed, we exit with preemption
2947 * and BH disabled, to make sure another thread or softirq handling
2948 * wont try to get same context.
2949 */
2950struct tcp_md5sig_pool *tcp_get_md5sig_pool(void)
cfb6eeb4 2951{
35790c04 2952 local_bh_disable();
cfb6eeb4 2953
349ce993
ED
2954 if (tcp_md5sig_pool_populated) {
2955 /* coupled with smp_wmb() in __tcp_alloc_md5sig_pool() */
2956 smp_rmb();
2957 return this_cpu_ptr(&tcp_md5sig_pool);
2958 }
35790c04
ED
2959 local_bh_enable();
2960 return NULL;
2961}
2962EXPORT_SYMBOL(tcp_get_md5sig_pool);
cfb6eeb4 2963
49a72dfb 2964int tcp_md5_hash_header(struct tcp_md5sig_pool *hp,
ca35a0ef 2965 const struct tcphdr *th)
49a72dfb
AL
2966{
2967 struct scatterlist sg;
ca35a0ef 2968 struct tcphdr hdr;
49a72dfb
AL
2969 int err;
2970
ca35a0ef
ED
2971 /* We are not allowed to change tcphdr, make a local copy */
2972 memcpy(&hdr, th, sizeof(hdr));
2973 hdr.check = 0;
2974
49a72dfb 2975 /* options aren't included in the hash */
ca35a0ef
ED
2976 sg_init_one(&sg, &hdr, sizeof(hdr));
2977 err = crypto_hash_update(&hp->md5_desc, &sg, sizeof(hdr));
49a72dfb
AL
2978 return err;
2979}
49a72dfb
AL
2980EXPORT_SYMBOL(tcp_md5_hash_header);
2981
2982int tcp_md5_hash_skb_data(struct tcp_md5sig_pool *hp,
cf533ea5 2983 const struct sk_buff *skb, unsigned int header_len)
49a72dfb
AL
2984{
2985 struct scatterlist sg;
2986 const struct tcphdr *tp = tcp_hdr(skb);
2987 struct hash_desc *desc = &hp->md5_desc;
95c96174
ED
2988 unsigned int i;
2989 const unsigned int head_data_len = skb_headlen(skb) > header_len ?
2990 skb_headlen(skb) - header_len : 0;
49a72dfb 2991 const struct skb_shared_info *shi = skb_shinfo(skb);
d7fd1b57 2992 struct sk_buff *frag_iter;
49a72dfb
AL
2993
2994 sg_init_table(&sg, 1);
2995
2996 sg_set_buf(&sg, ((u8 *) tp) + header_len, head_data_len);
2997 if (crypto_hash_update(desc, &sg, head_data_len))
2998 return 1;
2999
3000 for (i = 0; i < shi->nr_frags; ++i) {
3001 const struct skb_frag_struct *f = &shi->frags[i];
54d27fcb
ED
3002 unsigned int offset = f->page_offset;
3003 struct page *page = skb_frag_page(f) + (offset >> PAGE_SHIFT);
3004
3005 sg_set_page(&sg, page, skb_frag_size(f),
3006 offset_in_page(offset));
9e903e08 3007 if (crypto_hash_update(desc, &sg, skb_frag_size(f)))
49a72dfb
AL
3008 return 1;
3009 }
3010
d7fd1b57
ED
3011 skb_walk_frags(skb, frag_iter)
3012 if (tcp_md5_hash_skb_data(hp, frag_iter, 0))
3013 return 1;
3014
49a72dfb
AL
3015 return 0;
3016}
49a72dfb
AL
3017EXPORT_SYMBOL(tcp_md5_hash_skb_data);
3018
cf533ea5 3019int tcp_md5_hash_key(struct tcp_md5sig_pool *hp, const struct tcp_md5sig_key *key)
49a72dfb
AL
3020{
3021 struct scatterlist sg;
3022
3023 sg_init_one(&sg, key->key, key->keylen);
3024 return crypto_hash_update(&hp->md5_desc, &sg, key->keylen);
3025}
49a72dfb
AL
3026EXPORT_SYMBOL(tcp_md5_hash_key);
3027
cfb6eeb4
YH
3028#endif
3029
4ac02bab
AK
3030void tcp_done(struct sock *sk)
3031{
8336886f
JC
3032 struct request_sock *req = tcp_sk(sk)->fastopen_rsk;
3033
5a5f3a8d 3034 if (sk->sk_state == TCP_SYN_SENT || sk->sk_state == TCP_SYN_RECV)
63231bdd 3035 TCP_INC_STATS_BH(sock_net(sk), TCP_MIB_ATTEMPTFAILS);
4ac02bab
AK
3036
3037 tcp_set_state(sk, TCP_CLOSE);
3038 tcp_clear_xmit_timers(sk);
00db4124 3039 if (req)
8336886f 3040 reqsk_fastopen_remove(sk, req, false);
4ac02bab
AK
3041
3042 sk->sk_shutdown = SHUTDOWN_MASK;
3043
3044 if (!sock_flag(sk, SOCK_DEAD))
3045 sk->sk_state_change(sk);
3046 else
3047 inet_csk_destroy_sock(sk);
3048}
3049EXPORT_SYMBOL_GPL(tcp_done);
3050
5f8ef48d 3051extern struct tcp_congestion_ops tcp_reno;
1da177e4
LT
3052
3053static __initdata unsigned long thash_entries;
3054static int __init set_thash_entries(char *str)
3055{
413c27d8
EZ
3056 ssize_t ret;
3057
1da177e4
LT
3058 if (!str)
3059 return 0;
413c27d8
EZ
3060
3061 ret = kstrtoul(str, 0, &thash_entries);
3062 if (ret)
3063 return 0;
3064
1da177e4
LT
3065 return 1;
3066}
3067__setup("thash_entries=", set_thash_entries);
3068
47d7a88c 3069static void __init tcp_init_mem(void)
4acb4190 3070{
b66e91cc
ED
3071 unsigned long limit = nr_free_buffer_pages() / 16;
3072
4acb4190 3073 limit = max(limit, 128UL);
b66e91cc
ED
3074 sysctl_tcp_mem[0] = limit / 4 * 3; /* 4.68 % */
3075 sysctl_tcp_mem[1] = limit; /* 6.25 % */
3076 sysctl_tcp_mem[2] = sysctl_tcp_mem[0] * 2; /* 9.37 % */
4acb4190
GC
3077}
3078
1da177e4
LT
3079void __init tcp_init(void)
3080{
f03d78db 3081 unsigned long limit;
b49960a0 3082 int max_rshare, max_wshare, cnt;
074b8517 3083 unsigned int i;
1da177e4 3084
b4772ef8 3085 sock_skb_cb_check_size(sizeof(struct tcp_skb_cb));
1da177e4 3086
908c7f19
TH
3087 percpu_counter_init(&tcp_sockets_allocated, 0, GFP_KERNEL);
3088 percpu_counter_init(&tcp_orphan_count, 0, GFP_KERNEL);
6e04e021
ACM
3089 tcp_hashinfo.bind_bucket_cachep =
3090 kmem_cache_create("tcp_bind_bucket",
3091 sizeof(struct inet_bind_bucket), 0,
20c2df83 3092 SLAB_HWCACHE_ALIGN|SLAB_PANIC, NULL);
1da177e4 3093
1da177e4
LT
3094 /* Size and allocate the main established and bind bucket
3095 * hash tables.
3096 *
3097 * The methodology is similar to that of the buffer cache.
3098 */
6e04e021 3099 tcp_hashinfo.ehash =
1da177e4 3100 alloc_large_system_hash("TCP established",
0f7ff927 3101 sizeof(struct inet_ehash_bucket),
1da177e4 3102 thash_entries,
fd90b29d 3103 17, /* one slot per 128 KB of memory */
9e950efa 3104 0,
1da177e4 3105 NULL,
f373b53b 3106 &tcp_hashinfo.ehash_mask,
31fe62b9 3107 0,
0ccfe618 3108 thash_entries ? 0 : 512 * 1024);
05dbc7b5 3109 for (i = 0; i <= tcp_hashinfo.ehash_mask; i++)
3ab5aee7 3110 INIT_HLIST_NULLS_HEAD(&tcp_hashinfo.ehash[i].chain, i);
05dbc7b5 3111
230140cf
ED
3112 if (inet_ehash_locks_alloc(&tcp_hashinfo))
3113 panic("TCP: failed to alloc ehash_locks");
6e04e021 3114 tcp_hashinfo.bhash =
1da177e4 3115 alloc_large_system_hash("TCP bind",
0f7ff927 3116 sizeof(struct inet_bind_hashbucket),
f373b53b 3117 tcp_hashinfo.ehash_mask + 1,
fd90b29d 3118 17, /* one slot per 128 KB of memory */
9e950efa 3119 0,
6e04e021 3120 &tcp_hashinfo.bhash_size,
1da177e4 3121 NULL,
31fe62b9 3122 0,
1da177e4 3123 64 * 1024);
074b8517 3124 tcp_hashinfo.bhash_size = 1U << tcp_hashinfo.bhash_size;
6e04e021
ACM
3125 for (i = 0; i < tcp_hashinfo.bhash_size; i++) {
3126 spin_lock_init(&tcp_hashinfo.bhash[i].lock);
3127 INIT_HLIST_HEAD(&tcp_hashinfo.bhash[i].chain);
1da177e4
LT
3128 }
3129
c5ed63d6
ED
3130
3131 cnt = tcp_hashinfo.ehash_mask + 1;
3132
3133 tcp_death_row.sysctl_max_tw_buckets = cnt / 2;
3134 sysctl_tcp_max_orphans = cnt / 2;
3135 sysctl_max_syn_backlog = max(128, cnt / 256);
1da177e4 3136
a4fe34bf 3137 tcp_init_mem();
c43b874d 3138 /* Set per-socket limits to no more than 1/128 the pressure threshold */
5fb84b14 3139 limit = nr_free_buffer_pages() << (PAGE_SHIFT - 7);
b49960a0
ED
3140 max_wshare = min(4UL*1024*1024, limit);
3141 max_rshare = min(6UL*1024*1024, limit);
7b4f4b5e 3142
3ab224be 3143 sysctl_tcp_wmem[0] = SK_MEM_QUANTUM;
7b4f4b5e 3144 sysctl_tcp_wmem[1] = 16*1024;
b49960a0 3145 sysctl_tcp_wmem[2] = max(64*1024, max_wshare);
7b4f4b5e 3146
3ab224be 3147 sysctl_tcp_rmem[0] = SK_MEM_QUANTUM;
7b4f4b5e 3148 sysctl_tcp_rmem[1] = 87380;
b49960a0 3149 sysctl_tcp_rmem[2] = max(87380, max_rshare);
1da177e4 3150
afd46503 3151 pr_info("Hash tables configured (established %u bind %u)\n",
058bd4d2 3152 tcp_hashinfo.ehash_mask + 1, tcp_hashinfo.bhash_size);
317a76f9 3153
51c5d0c4 3154 tcp_metrics_init();
55d8694f 3155 BUG_ON(tcp_register_congestion_control(&tcp_reno) != 0);
46d3ceab 3156 tcp_tasklet_init();
1da177e4 3157}