tcp_input.c revision 1.418 1 1.418 christos /* $NetBSD: tcp_input.c,v 1.418 2020/07/06 18:49:12 christos Exp $ */
2 1.83 itojun
3 1.83 itojun /*
4 1.83 itojun * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
5 1.83 itojun * All rights reserved.
6 1.143 itojun *
7 1.83 itojun * Redistribution and use in source and binary forms, with or without
8 1.83 itojun * modification, are permitted provided that the following conditions
9 1.83 itojun * are met:
10 1.83 itojun * 1. Redistributions of source code must retain the above copyright
11 1.83 itojun * notice, this list of conditions and the following disclaimer.
12 1.83 itojun * 2. Redistributions in binary form must reproduce the above copyright
13 1.83 itojun * notice, this list of conditions and the following disclaimer in the
14 1.83 itojun * documentation and/or other materials provided with the distribution.
15 1.83 itojun * 3. Neither the name of the project nor the names of its contributors
16 1.83 itojun * may be used to endorse or promote products derived from this software
17 1.83 itojun * without specific prior written permission.
18 1.143 itojun *
19 1.83 itojun * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
20 1.83 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.83 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.83 itojun * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
23 1.83 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.83 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.83 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.83 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.83 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.83 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.83 itojun * SUCH DAMAGE.
30 1.83 itojun */
31 1.44 thorpej
32 1.134 itojun /*
33 1.134 itojun * @(#)COPYRIGHT 1.1 (NRL) 17 January 1995
34 1.143 itojun *
35 1.134 itojun * NRL grants permission for redistribution and use in source and binary
36 1.134 itojun * forms, with or without modification, of the software and documentation
37 1.134 itojun * created at NRL provided that the following conditions are met:
38 1.143 itojun *
39 1.134 itojun * 1. Redistributions of source code must retain the above copyright
40 1.134 itojun * notice, this list of conditions and the following disclaimer.
41 1.134 itojun * 2. Redistributions in binary form must reproduce the above copyright
42 1.134 itojun * notice, this list of conditions and the following disclaimer in the
43 1.134 itojun * documentation and/or other materials provided with the distribution.
44 1.134 itojun * 3. All advertising materials mentioning features or use of this software
45 1.134 itojun * must display the following acknowledgements:
46 1.134 itojun * This product includes software developed by the University of
47 1.134 itojun * California, Berkeley and its contributors.
48 1.134 itojun * This product includes software developed at the Information
49 1.134 itojun * Technology Division, US Naval Research Laboratory.
50 1.134 itojun * 4. Neither the name of the NRL nor the names of its contributors
51 1.134 itojun * may be used to endorse or promote products derived from this software
52 1.134 itojun * without specific prior written permission.
53 1.143 itojun *
54 1.134 itojun * THE SOFTWARE PROVIDED BY NRL IS PROVIDED BY NRL AND CONTRIBUTORS ``AS
55 1.134 itojun * IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
56 1.134 itojun * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
57 1.134 itojun * PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL NRL OR
58 1.134 itojun * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
59 1.134 itojun * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
60 1.134 itojun * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
61 1.134 itojun * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
62 1.134 itojun * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
63 1.134 itojun * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
64 1.134 itojun * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
65 1.143 itojun *
66 1.134 itojun * The views and conclusions contained in the software and documentation
67 1.134 itojun * are those of the authors and should not be interpreted as representing
68 1.134 itojun * official policies, either expressed or implied, of the US Naval
69 1.134 itojun * Research Laboratory (NRL).
70 1.134 itojun */
71 1.134 itojun
72 1.44 thorpej /*-
73 1.312 dyoung * Copyright (c) 1997, 1998, 1999, 2001, 2005, 2006,
74 1.312 dyoung * 2011 The NetBSD Foundation, Inc.
75 1.44 thorpej * All rights reserved.
76 1.44 thorpej *
77 1.44 thorpej * This code is derived from software contributed to The NetBSD Foundation
78 1.312 dyoung * by Coyote Point Systems, Inc.
79 1.312 dyoung * This code is derived from software contributed to The NetBSD Foundation
80 1.44 thorpej * by Jason R. Thorpe and Kevin M. Lahey of the Numerical Aerospace Simulation
81 1.44 thorpej * Facility, NASA Ames Research Center.
82 1.223 mycroft * This code is derived from software contributed to The NetBSD Foundation
83 1.223 mycroft * by Charles M. Hannum.
84 1.244 rpaulo * This code is derived from software contributed to The NetBSD Foundation
85 1.244 rpaulo * by Rui Paulo.
86 1.44 thorpej *
87 1.44 thorpej * Redistribution and use in source and binary forms, with or without
88 1.44 thorpej * modification, are permitted provided that the following conditions
89 1.44 thorpej * are met:
90 1.44 thorpej * 1. Redistributions of source code must retain the above copyright
91 1.44 thorpej * notice, this list of conditions and the following disclaimer.
92 1.44 thorpej * 2. Redistributions in binary form must reproduce the above copyright
93 1.44 thorpej * notice, this list of conditions and the following disclaimer in the
94 1.44 thorpej * documentation and/or other materials provided with the distribution.
95 1.44 thorpej *
96 1.44 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
97 1.44 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
98 1.44 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
99 1.44 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
100 1.44 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
101 1.44 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
102 1.44 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
103 1.44 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
104 1.44 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
105 1.44 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
106 1.44 thorpej * POSSIBILITY OF SUCH DAMAGE.
107 1.44 thorpej */
108 1.10 cgd
109 1.1 cgd /*
110 1.39 thorpej * Copyright (c) 1982, 1986, 1988, 1990, 1993, 1994, 1995
111 1.9 mycroft * The Regents of the University of California. All rights reserved.
112 1.1 cgd *
113 1.1 cgd * Redistribution and use in source and binary forms, with or without
114 1.1 cgd * modification, are permitted provided that the following conditions
115 1.1 cgd * are met:
116 1.1 cgd * 1. Redistributions of source code must retain the above copyright
117 1.1 cgd * notice, this list of conditions and the following disclaimer.
118 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
119 1.1 cgd * notice, this list of conditions and the following disclaimer in the
120 1.1 cgd * documentation and/or other materials provided with the distribution.
121 1.174 agc * 3. Neither the name of the University nor the names of its contributors
122 1.1 cgd * may be used to endorse or promote products derived from this software
123 1.1 cgd * without specific prior written permission.
124 1.1 cgd *
125 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
126 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
127 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
128 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
129 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
130 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
131 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
132 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
133 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
134 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
135 1.1 cgd * SUCH DAMAGE.
136 1.1 cgd *
137 1.39 thorpej * @(#)tcp_input.c 8.12 (Berkeley) 5/24/95
138 1.1 cgd */
139 1.1 cgd
140 1.29 thorpej /*
141 1.29 thorpej * TODO list for SYN cache stuff:
142 1.29 thorpej *
143 1.48 thorpej * Find room for a "state" field, which is needed to keep a
144 1.48 thorpej * compressed state for TIME_WAIT TCBs. It's been noted already
145 1.48 thorpej * that this is fairly important for very high-volume web and
146 1.48 thorpej * mail servers, which use a large number of short-lived
147 1.48 thorpej * connections.
148 1.29 thorpej */
149 1.133 lukem
150 1.133 lukem #include <sys/cdefs.h>
151 1.418 christos __KERNEL_RCSID(0, "$NetBSD: tcp_input.c,v 1.418 2020/07/06 18:49:12 christos Exp $");
152 1.29 thorpej
153 1.344 pooka #ifdef _KERNEL_OPT
154 1.83 itojun #include "opt_inet.h"
155 1.85 thorpej #include "opt_ipsec.h"
156 1.125 thorpej #include "opt_inet_csum.h"
157 1.127 abs #include "opt_tcp_debug.h"
158 1.344 pooka #endif
159 1.83 itojun
160 1.3 mycroft #include <sys/param.h>
161 1.3 mycroft #include <sys/systm.h>
162 1.3 mycroft #include <sys/malloc.h>
163 1.3 mycroft #include <sys/mbuf.h>
164 1.3 mycroft #include <sys/protosw.h>
165 1.3 mycroft #include <sys/socket.h>
166 1.3 mycroft #include <sys/socketvar.h>
167 1.3 mycroft #include <sys/errno.h>
168 1.52 thorpej #include <sys/syslog.h>
169 1.63 thorpej #include <sys/pool.h>
170 1.83 itojun #include <sys/domain.h>
171 1.129 thorpej #include <sys/kernel.h>
172 1.206 itojun #ifdef TCP_SIGNATURE
173 1.206 itojun #include <sys/md5.h>
174 1.206 itojun #endif
175 1.273 elad #include <sys/lwp.h> /* for lwp0 */
176 1.318 tls #include <sys/cprng.h>
177 1.1 cgd
178 1.3 mycroft #include <net/if.h>
179 1.87 itojun #include <net/if_types.h>
180 1.1 cgd
181 1.3 mycroft #include <netinet/in.h>
182 1.3 mycroft #include <netinet/in_systm.h>
183 1.3 mycroft #include <netinet/ip.h>
184 1.3 mycroft #include <netinet/in_pcb.h>
185 1.169 matt #include <netinet/in_var.h>
186 1.3 mycroft #include <netinet/ip_var.h>
187 1.233 yamt #include <netinet/in_offload.h>
188 1.83 itojun
189 1.83 itojun #ifdef INET6
190 1.83 itojun #include <netinet/ip6.h>
191 1.112 itojun #include <netinet6/ip6_var.h>
192 1.83 itojun #include <netinet6/in6_pcb.h>
193 1.83 itojun #include <netinet6/ip6_var.h>
194 1.83 itojun #include <netinet6/in6_var.h>
195 1.83 itojun #include <netinet/icmp6.h>
196 1.98 itojun #include <netinet6/nd6.h>
197 1.238 riz #ifdef TCP_SIGNATURE
198 1.238 riz #include <netinet6/scope6_var.h>
199 1.238 riz #endif
200 1.83 itojun #endif
201 1.83 itojun
202 1.99 itojun #ifndef INET6
203 1.99 itojun #include <netinet/ip6.h>
204 1.99 itojun #endif
205 1.99 itojun
206 1.3 mycroft #include <netinet/tcp.h>
207 1.3 mycroft #include <netinet/tcp_fsm.h>
208 1.3 mycroft #include <netinet/tcp_seq.h>
209 1.3 mycroft #include <netinet/tcp_timer.h>
210 1.3 mycroft #include <netinet/tcp_var.h>
211 1.284 thorpej #include <netinet/tcp_private.h>
212 1.246 rpaulo #include <netinet/tcp_congctl.h>
213 1.3 mycroft #include <netinet/tcp_debug.h>
214 1.1 cgd
215 1.88 itojun #ifdef INET6
216 1.87 itojun #include "faith.h"
217 1.124 itojun #if defined(NFAITH) && NFAITH > 0
218 1.124 itojun #include <net/if_faith.h>
219 1.124 itojun #endif
220 1.388 maxv #endif
221 1.175 jonathan
222 1.326 christos #ifdef IPSEC
223 1.175 jonathan #include <netipsec/ipsec.h>
224 1.175 jonathan #include <netipsec/key.h>
225 1.187 jonathan #ifdef INET6
226 1.187 jonathan #include <netipsec/ipsec6.h>
227 1.187 jonathan #endif
228 1.326 christos #endif /* IPSEC*/
229 1.175 jonathan
230 1.312 dyoung #include <netinet/tcp_vtw.h>
231 1.312 dyoung
232 1.1 cgd int tcprexmtthresh = 3;
233 1.82 ad int tcp_log_refused;
234 1.9 mycroft
235 1.300 pooka int tcp_do_autorcvbuf = 1;
236 1.269 rmind int tcp_autorcvbuf_inc = 16 * 1024;
237 1.269 rmind int tcp_autorcvbuf_max = 256 * 1024;
238 1.299 darran int tcp_msl = (TCPTV_MSL / PR_SLOWHZ);
239 1.269 rmind
240 1.116 itojun static int tcp_rst_ppslim_count = 0;
241 1.116 itojun static struct timeval tcp_rst_ppslim_last;
242 1.194 itojun static int tcp_ackdrop_ppslim_count = 0;
243 1.194 itojun static struct timeval tcp_ackdrop_ppslim_last;
244 1.104 thorpej
245 1.362 ozaki static void syn_cache_timer(void *);
246 1.362 ozaki
247 1.216 mycroft #define TCP_PAWS_IDLE (24U * 24 * 60 * 60 * PR_SLOWHZ)
248 1.9 mycroft
249 1.9 mycroft /* for modulo comparisons of timestamps */
250 1.9 mycroft #define TSTMP_LT(a,b) ((int)((a)-(b)) < 0)
251 1.9 mycroft #define TSTMP_GEQ(a,b) ((int)((a)-(b)) >= 0)
252 1.9 mycroft
253 1.1 cgd /*
254 1.98 itojun * Neighbor Discovery, Neighbor Unreachability Detection Upper layer hint.
255 1.98 itojun */
256 1.98 itojun #ifdef INET6
257 1.274 dyoung static inline void
258 1.274 dyoung nd6_hint(struct tcpcb *tp)
259 1.274 dyoung {
260 1.350 ozaki struct rtentry *rt = NULL;
261 1.274 dyoung
262 1.274 dyoung if (tp != NULL && tp->t_in6pcb != NULL && tp->t_family == AF_INET6 &&
263 1.417 maxv (rt = rtcache_validate(&tp->t_in6pcb->in6p_route)) != NULL) {
264 1.342 ozaki nd6_nud_hint(rt);
265 1.417 maxv rtcache_unref(rt, &tp->t_in6pcb->in6p_route);
266 1.417 maxv }
267 1.274 dyoung }
268 1.98 itojun #else
269 1.274 dyoung static inline void
270 1.274 dyoung nd6_hint(struct tcpcb *tp)
271 1.274 dyoung {
272 1.274 dyoung }
273 1.98 itojun #endif
274 1.98 itojun
275 1.98 itojun /*
276 1.280 yamt * Compute ACK transmission behavior. Delay the ACK unless
277 1.47 thorpej * we have already delayed an ACK (must send an ACK every two segments).
278 1.55 thorpej * We also ACK immediately if we received a PUSH and the ACK-on-PUSH
279 1.55 thorpej * option is enabled.
280 1.37 thorpej */
281 1.280 yamt static void
282 1.280 yamt tcp_setup_ack(struct tcpcb *tp, const struct tcphdr *th)
283 1.280 yamt {
284 1.280 yamt
285 1.280 yamt if (tp->t_flags & TF_DELACK ||
286 1.280 yamt (tcp_ack_on_push && th->th_flags & TH_PUSH))
287 1.280 yamt tp->t_flags |= TF_ACKNOW;
288 1.280 yamt else
289 1.280 yamt TCP_SET_DELACK(tp);
290 1.280 yamt }
291 1.280 yamt
292 1.280 yamt static void
293 1.280 yamt icmp_check(struct tcpcb *tp, const struct tcphdr *th, int acked)
294 1.280 yamt {
295 1.280 yamt
296 1.280 yamt /*
297 1.280 yamt * If we had a pending ICMP message that refers to data that have
298 1.280 yamt * just been acknowledged, disregard the recorded ICMP message.
299 1.280 yamt */
300 1.280 yamt if ((tp->t_flags & TF_PMTUD_PEND) &&
301 1.280 yamt SEQ_GT(th->th_ack, tp->t_pmtud_th_seq))
302 1.280 yamt tp->t_flags &= ~TF_PMTUD_PEND;
303 1.37 thorpej
304 1.280 yamt /*
305 1.280 yamt * Keep track of the largest chunk of data
306 1.280 yamt * acknowledged since last PMTU update
307 1.280 yamt */
308 1.280 yamt if (tp->t_pmtud_mss_acked < acked)
309 1.280 yamt tp->t_pmtud_mss_acked = acked;
310 1.280 yamt }
311 1.231 christos
312 1.103 thorpej /*
313 1.103 thorpej * Convert TCP protocol fields to host order for easier processing.
314 1.103 thorpej */
315 1.280 yamt static void
316 1.280 yamt tcp_fields_to_host(struct tcphdr *th)
317 1.280 yamt {
318 1.280 yamt
319 1.280 yamt NTOHL(th->th_seq);
320 1.280 yamt NTOHL(th->th_ack);
321 1.280 yamt NTOHS(th->th_win);
322 1.280 yamt NTOHS(th->th_urp);
323 1.280 yamt }
324 1.103 thorpej
325 1.153 thorpej /*
326 1.153 thorpej * ... and reverse the above.
327 1.153 thorpej */
328 1.280 yamt static void
329 1.280 yamt tcp_fields_to_net(struct tcphdr *th)
330 1.280 yamt {
331 1.280 yamt
332 1.280 yamt HTONL(th->th_seq);
333 1.280 yamt HTONL(th->th_ack);
334 1.280 yamt HTONS(th->th_win);
335 1.280 yamt HTONS(th->th_urp);
336 1.280 yamt }
337 1.153 thorpej
338 1.390 maxv static void
339 1.390 maxv tcp_urp_drop(struct tcphdr *th, int todrop, int *tiflags)
340 1.390 maxv {
341 1.401 rmind if (th->th_urp > todrop) {
342 1.390 maxv th->th_urp -= todrop;
343 1.390 maxv } else {
344 1.390 maxv *tiflags &= ~TH_URG;
345 1.390 maxv th->th_urp = 0;
346 1.390 maxv }
347 1.390 maxv }
348 1.390 maxv
349 1.125 thorpej #ifdef TCP_CSUM_COUNTERS
350 1.125 thorpej #include <sys/device.h>
351 1.125 thorpej
352 1.125 thorpej extern struct evcnt tcp_hwcsum_ok;
353 1.125 thorpej extern struct evcnt tcp_hwcsum_bad;
354 1.125 thorpej extern struct evcnt tcp_hwcsum_data;
355 1.125 thorpej extern struct evcnt tcp_swcsum;
356 1.232 yamt #if defined(INET6)
357 1.232 yamt extern struct evcnt tcp6_hwcsum_ok;
358 1.232 yamt extern struct evcnt tcp6_hwcsum_bad;
359 1.232 yamt extern struct evcnt tcp6_hwcsum_data;
360 1.232 yamt extern struct evcnt tcp6_swcsum;
361 1.232 yamt #endif /* defined(INET6) */
362 1.125 thorpej
363 1.125 thorpej #define TCP_CSUM_COUNTER_INCR(ev) (ev)->ev_count++
364 1.125 thorpej
365 1.125 thorpej #else
366 1.125 thorpej
367 1.125 thorpej #define TCP_CSUM_COUNTER_INCR(ev) /* nothing */
368 1.125 thorpej
369 1.125 thorpej #endif /* TCP_CSUM_COUNTERS */
370 1.125 thorpej
371 1.141 matt #ifdef TCP_REASS_COUNTERS
372 1.141 matt #include <sys/device.h>
373 1.141 matt
374 1.141 matt extern struct evcnt tcp_reass_;
375 1.141 matt extern struct evcnt tcp_reass_empty;
376 1.141 matt extern struct evcnt tcp_reass_iteration[8];
377 1.141 matt extern struct evcnt tcp_reass_prependfirst;
378 1.141 matt extern struct evcnt tcp_reass_prepend;
379 1.141 matt extern struct evcnt tcp_reass_insert;
380 1.141 matt extern struct evcnt tcp_reass_inserttail;
381 1.141 matt extern struct evcnt tcp_reass_append;
382 1.141 matt extern struct evcnt tcp_reass_appendtail;
383 1.141 matt extern struct evcnt tcp_reass_overlaptail;
384 1.141 matt extern struct evcnt tcp_reass_overlapfront;
385 1.141 matt extern struct evcnt tcp_reass_segdup;
386 1.141 matt extern struct evcnt tcp_reass_fragdup;
387 1.141 matt
388 1.141 matt #define TCP_REASS_COUNTER_INCR(ev) (ev)->ev_count++
389 1.141 matt
390 1.141 matt #else
391 1.141 matt
392 1.141 matt #define TCP_REASS_COUNTER_INCR(ev) /* nothing */
393 1.141 matt
394 1.141 matt #endif /* TCP_REASS_COUNTERS */
395 1.141 matt
396 1.256 yamt static int tcp_reass(struct tcpcb *, const struct tcphdr *, struct mbuf *,
397 1.386 maxv int);
398 1.254 yamt static int tcp_dooptions(struct tcpcb *, const u_char *, int,
399 1.265 riz struct tcphdr *, struct mbuf *, int, struct tcp_opt_info *);
400 1.254 yamt
401 1.219 perry static void tcp4_log_refused(const struct ip *, const struct tcphdr *);
402 1.145 yamt #ifdef INET6
403 1.219 perry static void tcp6_log_refused(const struct ip6_hdr *, const struct tcphdr *);
404 1.145 yamt #endif
405 1.145 yamt
406 1.257 yamt #if defined(MBUFTRACE)
407 1.257 yamt struct mowner tcp_reass_mowner = MOWNER_INIT("tcp", "reass");
408 1.257 yamt #endif /* defined(MBUFTRACE) */
409 1.257 yamt
410 1.292 pooka static struct pool tcpipqent_pool;
411 1.292 pooka
412 1.292 pooka void
413 1.293 cegger tcpipqent_init(void)
414 1.292 pooka {
415 1.292 pooka
416 1.292 pooka pool_init(&tcpipqent_pool, sizeof(struct ipqent), 0, 0, 0, "tcpipqepl",
417 1.292 pooka NULL, IPL_VM);
418 1.292 pooka }
419 1.209 yamt
420 1.225 yamt struct ipqent *
421 1.281 matt tcpipqent_alloc(void)
422 1.225 yamt {
423 1.225 yamt struct ipqent *ipqe;
424 1.225 yamt int s;
425 1.225 yamt
426 1.225 yamt s = splvm();
427 1.225 yamt ipqe = pool_get(&tcpipqent_pool, PR_NOWAIT);
428 1.225 yamt splx(s);
429 1.225 yamt
430 1.225 yamt return ipqe;
431 1.225 yamt }
432 1.225 yamt
433 1.225 yamt void
434 1.225 yamt tcpipqent_free(struct ipqent *ipqe)
435 1.225 yamt {
436 1.225 yamt int s;
437 1.225 yamt
438 1.225 yamt s = splvm();
439 1.225 yamt pool_put(&tcpipqent_pool, ipqe);
440 1.225 yamt splx(s);
441 1.225 yamt }
442 1.225 yamt
443 1.399 maxv /*
444 1.399 maxv * Insert segment ti into reassembly queue of tcp with
445 1.399 maxv * control block tp. Return TH_FIN if reassembly now includes
446 1.399 maxv * a segment with FIN.
447 1.399 maxv */
448 1.256 yamt static int
449 1.386 maxv tcp_reass(struct tcpcb *tp, const struct tcphdr *th, struct mbuf *m, int tlen)
450 1.1 cgd {
451 1.106 augustss struct ipqent *p, *q, *nq, *tiqe = NULL;
452 1.83 itojun struct socket *so = NULL;
453 1.54 matt int pkt_flags;
454 1.54 matt tcp_seq pkt_seq;
455 1.54 matt unsigned pkt_len;
456 1.54 matt u_long rcvpartdupbyte = 0;
457 1.54 matt u_long rcvoobyte;
458 1.141 matt #ifdef TCP_REASS_COUNTERS
459 1.141 matt u_int count = 0;
460 1.141 matt #endif
461 1.284 thorpej uint64_t *tcps;
462 1.1 cgd
463 1.83 itojun if (tp->t_inpcb)
464 1.83 itojun so = tp->t_inpcb->inp_socket;
465 1.83 itojun #ifdef INET6
466 1.83 itojun else if (tp->t_in6pcb)
467 1.83 itojun so = tp->t_in6pcb->in6p_socket;
468 1.83 itojun #endif
469 1.83 itojun
470 1.72 thorpej TCP_REASS_LOCK_CHECK(tp);
471 1.72 thorpej
472 1.1 cgd /*
473 1.389 maxv * Call with th==NULL after become established to
474 1.1 cgd * force pre-ESTABLISHED data up to user socket.
475 1.1 cgd */
476 1.389 maxv if (th == NULL)
477 1.1 cgd goto present;
478 1.1 cgd
479 1.257 yamt m_claimm(m, &tcp_reass_mowner);
480 1.257 yamt
481 1.386 maxv rcvoobyte = tlen;
482 1.1 cgd /*
483 1.399 maxv * Copy these to local variables because the TCP header gets munged
484 1.399 maxv * while we are collapsing mbufs.
485 1.20 cgd */
486 1.83 itojun pkt_seq = th->th_seq;
487 1.386 maxv pkt_len = tlen;
488 1.83 itojun pkt_flags = th->th_flags;
489 1.141 matt
490 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_);
491 1.141 matt
492 1.141 matt if ((p = TAILQ_LAST(&tp->segq, ipqehead)) != NULL) {
493 1.141 matt /*
494 1.141 matt * When we miss a packet, the vast majority of time we get
495 1.141 matt * packets that follow it in order. So optimize for that.
496 1.141 matt */
497 1.141 matt if (pkt_seq == p->ipqe_seq + p->ipqe_len) {
498 1.141 matt p->ipqe_len += pkt_len;
499 1.141 matt p->ipqe_flags |= pkt_flags;
500 1.405 maxv m_cat(p->ipqe_m, m);
501 1.189 itojun m = NULL;
502 1.141 matt tiqe = p;
503 1.141 matt TAILQ_REMOVE(&tp->timeq, p, ipqe_timeq);
504 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_appendtail);
505 1.141 matt goto skip_replacement;
506 1.141 matt }
507 1.141 matt /*
508 1.141 matt * While we're here, if the pkt is completely beyond
509 1.141 matt * anything we have, just insert it at the tail.
510 1.141 matt */
511 1.141 matt if (SEQ_GT(pkt_seq, p->ipqe_seq + p->ipqe_len)) {
512 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_inserttail);
513 1.141 matt goto insert_it;
514 1.141 matt }
515 1.141 matt }
516 1.141 matt
517 1.141 matt q = TAILQ_FIRST(&tp->segq);
518 1.141 matt
519 1.141 matt if (q != NULL) {
520 1.141 matt /*
521 1.141 matt * If this segment immediately precedes the first out-of-order
522 1.141 matt * block, simply slap the segment in front of it and (mostly)
523 1.141 matt * skip the complicated logic.
524 1.141 matt */
525 1.141 matt if (pkt_seq + pkt_len == q->ipqe_seq) {
526 1.141 matt q->ipqe_seq = pkt_seq;
527 1.141 matt q->ipqe_len += pkt_len;
528 1.141 matt q->ipqe_flags |= pkt_flags;
529 1.141 matt m_cat(m, q->ipqe_m);
530 1.141 matt q->ipqe_m = m;
531 1.141 matt tiqe = q;
532 1.141 matt TAILQ_REMOVE(&tp->timeq, q, ipqe_timeq);
533 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_prependfirst);
534 1.141 matt goto skip_replacement;
535 1.141 matt }
536 1.141 matt } else {
537 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_empty);
538 1.141 matt }
539 1.141 matt
540 1.20 cgd /*
541 1.1 cgd * Find a segment which begins after this one does.
542 1.1 cgd */
543 1.141 matt for (p = NULL; q != NULL; q = nq) {
544 1.141 matt nq = TAILQ_NEXT(q, ipqe_q);
545 1.141 matt #ifdef TCP_REASS_COUNTERS
546 1.141 matt count++;
547 1.141 matt #endif
548 1.399 maxv
549 1.54 matt /*
550 1.54 matt * If the received segment is just right after this
551 1.54 matt * fragment, merge the two together and then check
552 1.54 matt * for further overlaps.
553 1.54 matt */
554 1.54 matt if (q->ipqe_seq + q->ipqe_len == pkt_seq) {
555 1.54 matt pkt_len += q->ipqe_len;
556 1.54 matt pkt_flags |= q->ipqe_flags;
557 1.54 matt pkt_seq = q->ipqe_seq;
558 1.405 maxv m_cat(q->ipqe_m, m);
559 1.54 matt m = q->ipqe_m;
560 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_append);
561 1.54 matt goto free_ipqe;
562 1.54 matt }
563 1.399 maxv
564 1.54 matt /*
565 1.54 matt * If the received segment is completely past this
566 1.399 maxv * fragment, we need to go to the next fragment.
567 1.54 matt */
568 1.54 matt if (SEQ_LT(q->ipqe_seq + q->ipqe_len, pkt_seq)) {
569 1.54 matt p = q;
570 1.54 matt continue;
571 1.54 matt }
572 1.399 maxv
573 1.54 matt /*
574 1.143 itojun * If the fragment is past the received segment,
575 1.54 matt * it (or any following) can't be concatenated.
576 1.54 matt */
577 1.141 matt if (SEQ_GT(q->ipqe_seq, pkt_seq + pkt_len)) {
578 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_insert);
579 1.1 cgd break;
580 1.141 matt }
581 1.141 matt
582 1.54 matt /*
583 1.54 matt * We've received all the data in this segment before.
584 1.399 maxv * Mark it as a duplicate and return.
585 1.54 matt */
586 1.54 matt if (SEQ_LEQ(q->ipqe_seq, pkt_seq) &&
587 1.54 matt SEQ_GEQ(q->ipqe_seq + q->ipqe_len, pkt_seq + pkt_len)) {
588 1.284 thorpej tcps = TCP_STAT_GETREF();
589 1.284 thorpej tcps[TCP_STAT_RCVDUPPACK]++;
590 1.284 thorpej tcps[TCP_STAT_RCVDUPBYTE] += pkt_len;
591 1.284 thorpej TCP_STAT_PUTREF();
592 1.222 jonathan tcp_new_dsack(tp, pkt_seq, pkt_len);
593 1.54 matt m_freem(m);
594 1.225 yamt if (tiqe != NULL) {
595 1.225 yamt tcpipqent_free(tiqe);
596 1.225 yamt }
597 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_segdup);
598 1.312 dyoung goto out;
599 1.54 matt }
600 1.399 maxv
601 1.54 matt /*
602 1.54 matt * Received segment completely overlaps this fragment
603 1.54 matt * so we drop the fragment (this keeps the temporal
604 1.54 matt * ordering of segments correct).
605 1.54 matt */
606 1.54 matt if (SEQ_GEQ(q->ipqe_seq, pkt_seq) &&
607 1.54 matt SEQ_LEQ(q->ipqe_seq + q->ipqe_len, pkt_seq + pkt_len)) {
608 1.54 matt rcvpartdupbyte += q->ipqe_len;
609 1.54 matt m_freem(q->ipqe_m);
610 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_fragdup);
611 1.54 matt goto free_ipqe;
612 1.54 matt }
613 1.399 maxv
614 1.54 matt /*
615 1.399 maxv * Received segment extends past the end of the fragment.
616 1.399 maxv * Drop the overlapping bytes, merge the fragment and
617 1.399 maxv * segment, and treat as a longer received packet.
618 1.54 matt */
619 1.189 itojun if (SEQ_LT(q->ipqe_seq, pkt_seq) &&
620 1.189 itojun SEQ_GT(q->ipqe_seq + q->ipqe_len, pkt_seq)) {
621 1.54 matt int overlap = q->ipqe_seq + q->ipqe_len - pkt_seq;
622 1.54 matt m_adj(m, overlap);
623 1.54 matt rcvpartdupbyte += overlap;
624 1.405 maxv m_cat(q->ipqe_m, m);
625 1.54 matt m = q->ipqe_m;
626 1.54 matt pkt_seq = q->ipqe_seq;
627 1.54 matt pkt_len += q->ipqe_len - overlap;
628 1.54 matt rcvoobyte -= overlap;
629 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_overlaptail);
630 1.54 matt goto free_ipqe;
631 1.54 matt }
632 1.399 maxv
633 1.54 matt /*
634 1.399 maxv * Received segment extends past the front of the fragment.
635 1.399 maxv * Drop the overlapping bytes on the received packet. The
636 1.399 maxv * packet will then be concatenated with this fragment a
637 1.399 maxv * bit later.
638 1.54 matt */
639 1.189 itojun if (SEQ_GT(q->ipqe_seq, pkt_seq) &&
640 1.189 itojun SEQ_LT(q->ipqe_seq, pkt_seq + pkt_len)) {
641 1.54 matt int overlap = pkt_seq + pkt_len - q->ipqe_seq;
642 1.54 matt m_adj(m, -overlap);
643 1.54 matt pkt_len -= overlap;
644 1.54 matt rcvpartdupbyte += overlap;
645 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_overlapfront);
646 1.54 matt rcvoobyte -= overlap;
647 1.54 matt }
648 1.399 maxv
649 1.54 matt /*
650 1.399 maxv * If the received segment immediately precedes this
651 1.54 matt * fragment then tack the fragment onto this segment
652 1.54 matt * and reinsert the data.
653 1.54 matt */
654 1.54 matt if (q->ipqe_seq == pkt_seq + pkt_len) {
655 1.54 matt pkt_len += q->ipqe_len;
656 1.54 matt pkt_flags |= q->ipqe_flags;
657 1.54 matt m_cat(m, q->ipqe_m);
658 1.141 matt TAILQ_REMOVE(&tp->segq, q, ipqe_q);
659 1.141 matt TAILQ_REMOVE(&tp->timeq, q, ipqe_timeq);
660 1.224 yamt tp->t_segqlen--;
661 1.224 yamt KASSERT(tp->t_segqlen >= 0);
662 1.224 yamt KASSERT(tp->t_segqlen != 0 ||
663 1.224 yamt (TAILQ_EMPTY(&tp->segq) &&
664 1.224 yamt TAILQ_EMPTY(&tp->timeq)));
665 1.225 yamt if (tiqe == NULL) {
666 1.189 itojun tiqe = q;
667 1.225 yamt } else {
668 1.225 yamt tcpipqent_free(q);
669 1.225 yamt }
670 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_prepend);
671 1.54 matt break;
672 1.54 matt }
673 1.399 maxv
674 1.54 matt /*
675 1.54 matt * If the fragment is before the segment, remember it.
676 1.54 matt * When this loop is terminated, p will contain the
677 1.399 maxv * pointer to the fragment that is right before the
678 1.399 maxv * received segment.
679 1.54 matt */
680 1.54 matt if (SEQ_LEQ(q->ipqe_seq, pkt_seq))
681 1.54 matt p = q;
682 1.54 matt
683 1.54 matt continue;
684 1.54 matt
685 1.54 matt /*
686 1.54 matt * This is a common operation. It also will allow
687 1.54 matt * to save doing a malloc/free in most instances.
688 1.54 matt */
689 1.54 matt free_ipqe:
690 1.141 matt TAILQ_REMOVE(&tp->segq, q, ipqe_q);
691 1.141 matt TAILQ_REMOVE(&tp->timeq, q, ipqe_timeq);
692 1.224 yamt tp->t_segqlen--;
693 1.224 yamt KASSERT(tp->t_segqlen >= 0);
694 1.224 yamt KASSERT(tp->t_segqlen != 0 ||
695 1.224 yamt (TAILQ_EMPTY(&tp->segq) && TAILQ_EMPTY(&tp->timeq)));
696 1.225 yamt if (tiqe == NULL) {
697 1.189 itojun tiqe = q;
698 1.225 yamt } else {
699 1.225 yamt tcpipqent_free(q);
700 1.225 yamt }
701 1.1 cgd }
702 1.1 cgd
703 1.141 matt #ifdef TCP_REASS_COUNTERS
704 1.141 matt if (count > 7)
705 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_iteration[0]);
706 1.141 matt else if (count > 0)
707 1.141 matt TCP_REASS_COUNTER_INCR(&tcp_reass_iteration[count]);
708 1.141 matt #endif
709 1.141 matt
710 1.399 maxv insert_it:
711 1.1 cgd /*
712 1.399 maxv * Allocate a new queue entry (block) since the received segment
713 1.399 maxv * did not collapse onto any other out-of-order block. If it had
714 1.399 maxv * collapsed, tiqe would not be NULL and we would be reusing it.
715 1.399 maxv *
716 1.399 maxv * If the allocation fails, drop the packet.
717 1.1 cgd */
718 1.54 matt if (tiqe == NULL) {
719 1.225 yamt tiqe = tcpipqent_alloc();
720 1.54 matt if (tiqe == NULL) {
721 1.284 thorpej TCP_STATINC(TCP_STAT_RCVMEMDROP);
722 1.54 matt m_freem(m);
723 1.312 dyoung goto out;
724 1.54 matt }
725 1.54 matt }
726 1.20 cgd
727 1.54 matt /*
728 1.54 matt * Update the counters.
729 1.54 matt */
730 1.336 he tp->t_rcvoopack++;
731 1.284 thorpej tcps = TCP_STAT_GETREF();
732 1.284 thorpej tcps[TCP_STAT_RCVOOPACK]++;
733 1.284 thorpej tcps[TCP_STAT_RCVOOBYTE] += rcvoobyte;
734 1.54 matt if (rcvpartdupbyte) {
735 1.284 thorpej tcps[TCP_STAT_RCVPARTDUPPACK]++;
736 1.284 thorpej tcps[TCP_STAT_RCVPARTDUPBYTE] += rcvpartdupbyte;
737 1.1 cgd }
738 1.284 thorpej TCP_STAT_PUTREF();
739 1.1 cgd
740 1.54 matt /*
741 1.54 matt * Insert the new fragment queue entry into both queues.
742 1.54 matt */
743 1.20 cgd tiqe->ipqe_m = m;
744 1.54 matt tiqe->ipqe_seq = pkt_seq;
745 1.54 matt tiqe->ipqe_len = pkt_len;
746 1.54 matt tiqe->ipqe_flags = pkt_flags;
747 1.20 cgd if (p == NULL) {
748 1.141 matt TAILQ_INSERT_HEAD(&tp->segq, tiqe, ipqe_q);
749 1.20 cgd } else {
750 1.141 matt TAILQ_INSERT_AFTER(&tp->segq, p, tiqe, ipqe_q);
751 1.20 cgd }
752 1.224 yamt tp->t_segqlen++;
753 1.1 cgd
754 1.141 matt skip_replacement:
755 1.141 matt TAILQ_INSERT_HEAD(&tp->timeq, tiqe, ipqe_timeq);
756 1.54 matt
757 1.1 cgd present:
758 1.1 cgd /*
759 1.1 cgd * Present data to user, advancing rcv_nxt through
760 1.1 cgd * completed sequence space.
761 1.1 cgd */
762 1.11 mycroft if (TCPS_HAVEESTABLISHED(tp->t_state) == 0)
763 1.312 dyoung goto out;
764 1.141 matt q = TAILQ_FIRST(&tp->segq);
765 1.54 matt if (q == NULL || q->ipqe_seq != tp->rcv_nxt)
766 1.312 dyoung goto out;
767 1.54 matt if (tp->t_state == TCPS_SYN_RECEIVED && q->ipqe_len)
768 1.312 dyoung goto out;
769 1.20 cgd
770 1.54 matt tp->rcv_nxt += q->ipqe_len;
771 1.54 matt pkt_flags = q->ipqe_flags & TH_FIN;
772 1.274 dyoung nd6_hint(tp);
773 1.54 matt
774 1.141 matt TAILQ_REMOVE(&tp->segq, q, ipqe_q);
775 1.141 matt TAILQ_REMOVE(&tp->timeq, q, ipqe_timeq);
776 1.224 yamt tp->t_segqlen--;
777 1.224 yamt KASSERT(tp->t_segqlen >= 0);
778 1.224 yamt KASSERT(tp->t_segqlen != 0 ||
779 1.224 yamt (TAILQ_EMPTY(&tp->segq) && TAILQ_EMPTY(&tp->timeq)));
780 1.54 matt if (so->so_state & SS_CANTRCVMORE)
781 1.54 matt m_freem(q->ipqe_m);
782 1.54 matt else
783 1.148 thorpej sbappendstream(&so->so_rcv, q->ipqe_m);
784 1.225 yamt tcpipqent_free(q);
785 1.312 dyoung TCP_REASS_UNLOCK(tp);
786 1.1 cgd sorwakeup(so);
787 1.399 maxv return pkt_flags;
788 1.399 maxv
789 1.312 dyoung out:
790 1.312 dyoung TCP_REASS_UNLOCK(tp);
791 1.399 maxv return 0;
792 1.1 cgd }
793 1.1 cgd
794 1.120 itojun #ifdef INET6
795 1.83 itojun int
796 1.220 perry tcp6_input(struct mbuf **mp, int *offp, int proto)
797 1.83 itojun {
798 1.83 itojun struct mbuf *m = *mp;
799 1.83 itojun
800 1.83 itojun /*
801 1.83 itojun * draft-itojun-ipv6-tcp-to-anycast
802 1.83 itojun * better place to put this in?
803 1.83 itojun */
804 1.83 itojun if (m->m_flags & M_ANYCAST6) {
805 1.98 itojun struct ip6_hdr *ip6;
806 1.98 itojun if (m->m_len < sizeof(struct ip6_hdr)) {
807 1.98 itojun if ((m = m_pullup(m, sizeof(struct ip6_hdr))) == NULL) {
808 1.284 thorpej TCP_STATINC(TCP_STAT_RCVSHORT);
809 1.98 itojun return IPPROTO_DONE;
810 1.98 itojun }
811 1.98 itojun }
812 1.98 itojun ip6 = mtod(m, struct ip6_hdr *);
813 1.124 itojun icmp6_error(m, ICMP6_DST_UNREACH, ICMP6_DST_UNREACH_ADDR,
814 1.262 christos (char *)&ip6->ip6_dst - (char *)ip6);
815 1.83 itojun return IPPROTO_DONE;
816 1.83 itojun }
817 1.83 itojun
818 1.83 itojun tcp_input(m, *offp, proto);
819 1.83 itojun return IPPROTO_DONE;
820 1.83 itojun }
821 1.83 itojun #endif
822 1.83 itojun
823 1.145 yamt static void
824 1.220 perry tcp4_log_refused(const struct ip *ip, const struct tcphdr *th)
825 1.145 yamt {
826 1.335 christos char src[INET_ADDRSTRLEN];
827 1.335 christos char dst[INET_ADDRSTRLEN];
828 1.145 yamt
829 1.145 yamt if (ip) {
830 1.335 christos in_print(src, sizeof(src), &ip->ip_src);
831 1.335 christos in_print(dst, sizeof(dst), &ip->ip_dst);
832 1.389 maxv } else {
833 1.165 itojun strlcpy(src, "(unknown)", sizeof(src));
834 1.165 itojun strlcpy(dst, "(unknown)", sizeof(dst));
835 1.145 yamt }
836 1.145 yamt log(LOG_INFO,
837 1.145 yamt "Connection attempt to TCP %s:%d from %s:%d\n",
838 1.145 yamt dst, ntohs(th->th_dport),
839 1.145 yamt src, ntohs(th->th_sport));
840 1.145 yamt }
841 1.145 yamt
842 1.145 yamt #ifdef INET6
843 1.145 yamt static void
844 1.220 perry tcp6_log_refused(const struct ip6_hdr *ip6, const struct tcphdr *th)
845 1.145 yamt {
846 1.145 yamt char src[INET6_ADDRSTRLEN];
847 1.145 yamt char dst[INET6_ADDRSTRLEN];
848 1.145 yamt
849 1.145 yamt if (ip6) {
850 1.335 christos in6_print(src, sizeof(src), &ip6->ip6_src);
851 1.335 christos in6_print(dst, sizeof(dst), &ip6->ip6_dst);
852 1.389 maxv } else {
853 1.165 itojun strlcpy(src, "(unknown v6)", sizeof(src));
854 1.165 itojun strlcpy(dst, "(unknown v6)", sizeof(dst));
855 1.145 yamt }
856 1.145 yamt log(LOG_INFO,
857 1.145 yamt "Connection attempt to TCP [%s]:%d from [%s]:%d\n",
858 1.145 yamt dst, ntohs(th->th_dport),
859 1.145 yamt src, ntohs(th->th_sport));
860 1.145 yamt }
861 1.145 yamt #endif
862 1.145 yamt
863 1.1 cgd /*
864 1.212 yamt * Checksum extended TCP header and data.
865 1.212 yamt */
866 1.212 yamt int
867 1.255 christos tcp_input_checksum(int af, struct mbuf *m, const struct tcphdr *th,
868 1.249 christos int toff, int off, int tlen)
869 1.212 yamt {
870 1.347 ozaki struct ifnet *rcvif;
871 1.347 ozaki int s;
872 1.212 yamt
873 1.212 yamt /*
874 1.212 yamt * XXX it's better to record and check if this mbuf is
875 1.212 yamt * already checked.
876 1.212 yamt */
877 1.212 yamt
878 1.347 ozaki rcvif = m_get_rcvif(m, &s);
879 1.354 ozaki if (__predict_false(rcvif == NULL))
880 1.354 ozaki goto badcsum; /* XXX */
881 1.347 ozaki
882 1.212 yamt switch (af) {
883 1.212 yamt case AF_INET:
884 1.212 yamt switch (m->m_pkthdr.csum_flags &
885 1.347 ozaki ((rcvif->if_csum_flags_rx & M_CSUM_TCPv4) |
886 1.212 yamt M_CSUM_TCP_UDP_BAD | M_CSUM_DATA)) {
887 1.212 yamt case M_CSUM_TCPv4|M_CSUM_TCP_UDP_BAD:
888 1.212 yamt TCP_CSUM_COUNTER_INCR(&tcp_hwcsum_bad);
889 1.212 yamt goto badcsum;
890 1.212 yamt
891 1.212 yamt case M_CSUM_TCPv4|M_CSUM_DATA: {
892 1.212 yamt u_int32_t hw_csum = m->m_pkthdr.csum_data;
893 1.212 yamt
894 1.212 yamt TCP_CSUM_COUNTER_INCR(&tcp_hwcsum_data);
895 1.212 yamt if (m->m_pkthdr.csum_flags & M_CSUM_NO_PSEUDOHDR) {
896 1.212 yamt const struct ip *ip =
897 1.212 yamt mtod(m, const struct ip *);
898 1.212 yamt
899 1.212 yamt hw_csum = in_cksum_phdr(ip->ip_src.s_addr,
900 1.212 yamt ip->ip_dst.s_addr,
901 1.212 yamt htons(hw_csum + tlen + off + IPPROTO_TCP));
902 1.212 yamt }
903 1.212 yamt if ((hw_csum ^ 0xffff) != 0)
904 1.212 yamt goto badcsum;
905 1.212 yamt break;
906 1.212 yamt }
907 1.212 yamt
908 1.212 yamt case M_CSUM_TCPv4:
909 1.212 yamt /* Checksum was okay. */
910 1.212 yamt TCP_CSUM_COUNTER_INCR(&tcp_hwcsum_ok);
911 1.212 yamt break;
912 1.212 yamt
913 1.212 yamt default:
914 1.212 yamt /*
915 1.212 yamt * Must compute it ourselves. Maybe skip checksum
916 1.212 yamt * on loopback interfaces.
917 1.212 yamt */
918 1.347 ozaki if (__predict_true(!(rcvif->if_flags & IFF_LOOPBACK) ||
919 1.212 yamt tcp_do_loopback_cksum)) {
920 1.212 yamt TCP_CSUM_COUNTER_INCR(&tcp_swcsum);
921 1.212 yamt if (in4_cksum(m, IPPROTO_TCP, toff,
922 1.212 yamt tlen + off) != 0)
923 1.212 yamt goto badcsum;
924 1.212 yamt }
925 1.212 yamt break;
926 1.212 yamt }
927 1.212 yamt break;
928 1.212 yamt
929 1.212 yamt #ifdef INET6
930 1.212 yamt case AF_INET6:
931 1.232 yamt switch (m->m_pkthdr.csum_flags &
932 1.347 ozaki ((rcvif->if_csum_flags_rx & M_CSUM_TCPv6) |
933 1.232 yamt M_CSUM_TCP_UDP_BAD | M_CSUM_DATA)) {
934 1.232 yamt case M_CSUM_TCPv6|M_CSUM_TCP_UDP_BAD:
935 1.232 yamt TCP_CSUM_COUNTER_INCR(&tcp6_hwcsum_bad);
936 1.232 yamt goto badcsum;
937 1.232 yamt
938 1.232 yamt #if 0 /* notyet */
939 1.232 yamt case M_CSUM_TCPv6|M_CSUM_DATA:
940 1.232 yamt #endif
941 1.232 yamt
942 1.232 yamt case M_CSUM_TCPv6:
943 1.232 yamt /* Checksum was okay. */
944 1.232 yamt TCP_CSUM_COUNTER_INCR(&tcp6_hwcsum_ok);
945 1.232 yamt break;
946 1.232 yamt
947 1.232 yamt default:
948 1.232 yamt /*
949 1.232 yamt * Must compute it ourselves. Maybe skip checksum
950 1.232 yamt * on loopback interfaces.
951 1.232 yamt */
952 1.232 yamt if (__predict_true((m->m_flags & M_LOOP) == 0 ||
953 1.232 yamt tcp_do_loopback_cksum)) {
954 1.232 yamt TCP_CSUM_COUNTER_INCR(&tcp6_swcsum);
955 1.232 yamt if (in6_cksum(m, IPPROTO_TCP, toff,
956 1.232 yamt tlen + off) != 0)
957 1.232 yamt goto badcsum;
958 1.232 yamt }
959 1.212 yamt }
960 1.212 yamt break;
961 1.212 yamt #endif /* INET6 */
962 1.212 yamt }
963 1.347 ozaki m_put_rcvif(rcvif, &s);
964 1.212 yamt
965 1.212 yamt return 0;
966 1.212 yamt
967 1.212 yamt badcsum:
968 1.347 ozaki m_put_rcvif(rcvif, &s);
969 1.284 thorpej TCP_STATINC(TCP_STAT_RCVBADSUM);
970 1.212 yamt return -1;
971 1.212 yamt }
972 1.212 yamt
973 1.389 maxv /*
974 1.389 maxv * When a packet arrives addressed to a vestigial tcpbp, we
975 1.312 dyoung * nevertheless have to respond to it per the spec.
976 1.389 maxv *
977 1.389 maxv * This code is duplicated from the one in tcp_input().
978 1.312 dyoung */
979 1.312 dyoung static void tcp_vtw_input(struct tcphdr *th, vestigial_inpcb_t *vp,
980 1.372 maxv struct mbuf *m, int tlen)
981 1.312 dyoung {
982 1.389 maxv int tiflags;
983 1.389 maxv int todrop;
984 1.389 maxv uint32_t t_flags = 0;
985 1.389 maxv uint64_t *tcps;
986 1.312 dyoung
987 1.312 dyoung tiflags = th->th_flags;
988 1.312 dyoung todrop = vp->rcv_nxt - th->th_seq;
989 1.312 dyoung
990 1.312 dyoung if (todrop > 0) {
991 1.312 dyoung if (tiflags & TH_SYN) {
992 1.312 dyoung tiflags &= ~TH_SYN;
993 1.390 maxv th->th_seq++;
994 1.390 maxv tcp_urp_drop(th, 1, &tiflags);
995 1.390 maxv todrop--;
996 1.312 dyoung }
997 1.312 dyoung if (todrop > tlen ||
998 1.312 dyoung (todrop == tlen && (tiflags & TH_FIN) == 0)) {
999 1.312 dyoung /*
1000 1.312 dyoung * Any valid FIN or RST must be to the left of the
1001 1.312 dyoung * window. At this point the FIN or RST must be a
1002 1.312 dyoung * duplicate or out of sequence; drop it.
1003 1.312 dyoung */
1004 1.312 dyoung if (tiflags & TH_RST)
1005 1.312 dyoung goto drop;
1006 1.312 dyoung tiflags &= ~(TH_FIN|TH_RST);
1007 1.389 maxv
1008 1.312 dyoung /*
1009 1.312 dyoung * Send an ACK to resynchronize and drop any data.
1010 1.312 dyoung * But keep on processing for RST or ACK.
1011 1.312 dyoung */
1012 1.312 dyoung t_flags |= TF_ACKNOW;
1013 1.312 dyoung todrop = tlen;
1014 1.312 dyoung tcps = TCP_STAT_GETREF();
1015 1.312 dyoung tcps[TCP_STAT_RCVDUPPACK] += 1;
1016 1.312 dyoung tcps[TCP_STAT_RCVDUPBYTE] += todrop;
1017 1.312 dyoung TCP_STAT_PUTREF();
1018 1.389 maxv } else if ((tiflags & TH_RST) &&
1019 1.389 maxv th->th_seq != vp->rcv_nxt) {
1020 1.312 dyoung /*
1021 1.312 dyoung * Test for reset before adjusting the sequence
1022 1.312 dyoung * number for overlapping data.
1023 1.312 dyoung */
1024 1.312 dyoung goto dropafterack_ratelim;
1025 1.312 dyoung } else {
1026 1.312 dyoung tcps = TCP_STAT_GETREF();
1027 1.312 dyoung tcps[TCP_STAT_RCVPARTDUPPACK] += 1;
1028 1.312 dyoung tcps[TCP_STAT_RCVPARTDUPBYTE] += todrop;
1029 1.312 dyoung TCP_STAT_PUTREF();
1030 1.312 dyoung }
1031 1.312 dyoung
1032 1.312 dyoung // tcp_new_dsack(tp, th->th_seq, todrop);
1033 1.312 dyoung // hdroptlen += todrop; /*drop from head afterwards*/
1034 1.312 dyoung
1035 1.312 dyoung th->th_seq += todrop;
1036 1.312 dyoung tlen -= todrop;
1037 1.390 maxv tcp_urp_drop(th, todrop, &tiflags);
1038 1.312 dyoung }
1039 1.312 dyoung
1040 1.312 dyoung /*
1041 1.312 dyoung * If new data are received on a connection after the
1042 1.312 dyoung * user processes are gone, then RST the other end.
1043 1.312 dyoung */
1044 1.312 dyoung if (tlen) {
1045 1.312 dyoung TCP_STATINC(TCP_STAT_RCVAFTERCLOSE);
1046 1.312 dyoung goto dropwithreset;
1047 1.312 dyoung }
1048 1.312 dyoung
1049 1.312 dyoung /*
1050 1.312 dyoung * If segment ends after window, drop trailing data
1051 1.312 dyoung * (and PUSH and FIN); if nothing left, just ACK.
1052 1.312 dyoung */
1053 1.389 maxv todrop = (th->th_seq + tlen) - (vp->rcv_nxt + vp->rcv_wnd);
1054 1.312 dyoung
1055 1.312 dyoung if (todrop > 0) {
1056 1.312 dyoung TCP_STATINC(TCP_STAT_RCVPACKAFTERWIN);
1057 1.312 dyoung if (todrop >= tlen) {
1058 1.312 dyoung /*
1059 1.312 dyoung * The segment actually starts after the window.
1060 1.312 dyoung * th->th_seq + tlen - vp->rcv_nxt - vp->rcv_wnd >= tlen
1061 1.312 dyoung * th->th_seq - vp->rcv_nxt - vp->rcv_wnd >= 0
1062 1.312 dyoung * th->th_seq >= vp->rcv_nxt + vp->rcv_wnd
1063 1.312 dyoung */
1064 1.312 dyoung TCP_STATADD(TCP_STAT_RCVBYTEAFTERWIN, tlen);
1065 1.389 maxv
1066 1.312 dyoung /*
1067 1.312 dyoung * If a new connection request is received
1068 1.312 dyoung * while in TIME_WAIT, drop the old connection
1069 1.312 dyoung * and start over if the sequence numbers
1070 1.312 dyoung * are above the previous ones.
1071 1.312 dyoung */
1072 1.389 maxv if ((tiflags & TH_SYN) &&
1073 1.389 maxv SEQ_GT(th->th_seq, vp->rcv_nxt)) {
1074 1.389 maxv /*
1075 1.389 maxv * We only support this in the !NOFDREF case, which
1076 1.312 dyoung * is to say: not here.
1077 1.312 dyoung */
1078 1.331 maxv goto dropwithreset;
1079 1.312 dyoung }
1080 1.389 maxv
1081 1.312 dyoung /*
1082 1.312 dyoung * If window is closed can only take segments at
1083 1.312 dyoung * window edge, and have to drop data and PUSH from
1084 1.312 dyoung * incoming segments. Continue processing, but
1085 1.312 dyoung * remember to ack. Otherwise, drop segment
1086 1.312 dyoung * and (if not RST) ack.
1087 1.312 dyoung */
1088 1.312 dyoung if (vp->rcv_wnd == 0 && th->th_seq == vp->rcv_nxt) {
1089 1.312 dyoung t_flags |= TF_ACKNOW;
1090 1.312 dyoung TCP_STATINC(TCP_STAT_RCVWINPROBE);
1091 1.389 maxv } else {
1092 1.312 dyoung goto dropafterack;
1093 1.389 maxv }
1094 1.389 maxv } else {
1095 1.312 dyoung TCP_STATADD(TCP_STAT_RCVBYTEAFTERWIN, todrop);
1096 1.389 maxv }
1097 1.312 dyoung m_adj(m, -todrop);
1098 1.312 dyoung tlen -= todrop;
1099 1.312 dyoung tiflags &= ~(TH_PUSH|TH_FIN);
1100 1.312 dyoung }
1101 1.312 dyoung
1102 1.312 dyoung if (tiflags & TH_RST) {
1103 1.312 dyoung if (th->th_seq != vp->rcv_nxt)
1104 1.312 dyoung goto dropafterack_ratelim;
1105 1.312 dyoung
1106 1.312 dyoung vtw_del(vp->ctl, vp->vtw);
1107 1.312 dyoung goto drop;
1108 1.312 dyoung }
1109 1.312 dyoung
1110 1.312 dyoung /*
1111 1.312 dyoung * If the ACK bit is off we drop the segment and return.
1112 1.312 dyoung */
1113 1.312 dyoung if ((tiflags & TH_ACK) == 0) {
1114 1.312 dyoung if (t_flags & TF_ACKNOW)
1115 1.312 dyoung goto dropafterack;
1116 1.398 maxv goto drop;
1117 1.312 dyoung }
1118 1.312 dyoung
1119 1.312 dyoung /*
1120 1.312 dyoung * In TIME_WAIT state the only thing that should arrive
1121 1.312 dyoung * is a retransmission of the remote FIN. Acknowledge
1122 1.312 dyoung * it and restart the finack timer.
1123 1.312 dyoung */
1124 1.312 dyoung vtw_restart(vp);
1125 1.312 dyoung goto dropafterack;
1126 1.312 dyoung
1127 1.312 dyoung dropafterack:
1128 1.312 dyoung /*
1129 1.312 dyoung * Generate an ACK dropping incoming segment if it occupies
1130 1.312 dyoung * sequence space, where the ACK reflects our state.
1131 1.312 dyoung */
1132 1.312 dyoung if (tiflags & TH_RST)
1133 1.312 dyoung goto drop;
1134 1.312 dyoung goto dropafterack2;
1135 1.312 dyoung
1136 1.312 dyoung dropafterack_ratelim:
1137 1.312 dyoung /*
1138 1.312 dyoung * We may want to rate-limit ACKs against SYN/RST attack.
1139 1.312 dyoung */
1140 1.312 dyoung if (ppsratecheck(&tcp_ackdrop_ppslim_last, &tcp_ackdrop_ppslim_count,
1141 1.389 maxv tcp_ackdrop_ppslim) == 0) {
1142 1.312 dyoung /* XXX stat */
1143 1.312 dyoung goto drop;
1144 1.312 dyoung }
1145 1.312 dyoung /* ...fall into dropafterack2... */
1146 1.312 dyoung
1147 1.312 dyoung dropafterack2:
1148 1.389 maxv (void)tcp_respond(0, m, m, th, th->th_seq + tlen, th->th_ack, TH_ACK);
1149 1.312 dyoung return;
1150 1.312 dyoung
1151 1.312 dyoung dropwithreset:
1152 1.312 dyoung /*
1153 1.312 dyoung * Generate a RST, dropping incoming segment.
1154 1.312 dyoung * Make ACK acceptable to originator of segment.
1155 1.312 dyoung */
1156 1.312 dyoung if (tiflags & TH_RST)
1157 1.312 dyoung goto drop;
1158 1.312 dyoung
1159 1.389 maxv if (tiflags & TH_ACK) {
1160 1.312 dyoung tcp_respond(0, m, m, th, (tcp_seq)0, th->th_ack, TH_RST);
1161 1.389 maxv } else {
1162 1.312 dyoung if (tiflags & TH_SYN)
1163 1.312 dyoung ++tlen;
1164 1.312 dyoung (void)tcp_respond(0, m, m, th, th->th_seq + tlen, (tcp_seq)0,
1165 1.389 maxv TH_RST|TH_ACK);
1166 1.312 dyoung }
1167 1.312 dyoung return;
1168 1.312 dyoung drop:
1169 1.312 dyoung m_freem(m);
1170 1.312 dyoung }
1171 1.312 dyoung
1172 1.212 yamt /*
1173 1.235 hubertf * TCP input routine, follows pages 65-76 of RFC 793 very closely.
1174 1.1 cgd */
1175 1.5 mycroft void
1176 1.412 maxv tcp_input(struct mbuf *m, int off, int proto)
1177 1.1 cgd {
1178 1.106 augustss struct tcphdr *th;
1179 1.83 itojun struct ip *ip;
1180 1.106 augustss struct inpcb *inp;
1181 1.83 itojun #ifdef INET6
1182 1.83 itojun struct ip6_hdr *ip6;
1183 1.106 augustss struct in6pcb *in6p;
1184 1.83 itojun #endif
1185 1.155 itojun u_int8_t *optp = NULL;
1186 1.23 christos int optlen = 0;
1187 1.412 maxv int len, tlen, hdroptlen = 0;
1188 1.368 maxv struct tcpcb *tp = NULL;
1189 1.106 augustss int tiflags;
1190 1.23 christos struct socket *so = NULL;
1191 1.311 yamt int todrop, acked, ourfinisacked, needoutput = 0;
1192 1.311 yamt bool dupseg;
1193 1.157 simonb #ifdef TCP_DEBUG
1194 1.23 christos short ostate = 0;
1195 1.157 simonb #endif
1196 1.12 cgd u_long tiwin;
1197 1.29 thorpej struct tcp_opt_info opti;
1198 1.410 maxv int thlen, iphlen;
1199 1.83 itojun int af; /* af on the wire */
1200 1.83 itojun struct mbuf *tcp_saveti = NULL;
1201 1.229 yamt uint32_t ts_rtt;
1202 1.244 rpaulo uint8_t iptos;
1203 1.284 thorpej uint64_t *tcps;
1204 1.312 dyoung vestigial_inpcb_t vestige;
1205 1.312 dyoung
1206 1.312 dyoung vestige.valid = 0;
1207 1.23 christos
1208 1.162 matt MCLAIM(m, &tcp_rx_mowner);
1209 1.1 cgd
1210 1.284 thorpej TCP_STATINC(TCP_STAT_RCVTOTAL);
1211 1.29 thorpej
1212 1.295 cegger memset(&opti, 0, sizeof(opti));
1213 1.29 thorpej opti.ts_present = 0;
1214 1.29 thorpej opti.maxseg = 0;
1215 1.29 thorpej
1216 1.1 cgd /*
1217 1.103 thorpej * RFC1122 4.2.3.10, p. 104: discard bcast/mcast SYN.
1218 1.103 thorpej *
1219 1.103 thorpej * TCP is, by definition, unicast, so we reject all
1220 1.103 thorpej * multicast outright.
1221 1.103 thorpej *
1222 1.103 thorpej * Note, there are additional src/dst address checks in
1223 1.103 thorpej * the AF-specific code below.
1224 1.103 thorpej */
1225 1.103 thorpej if (m->m_flags & (M_BCAST|M_MCAST)) {
1226 1.103 thorpej /* XXX stat */
1227 1.103 thorpej goto drop;
1228 1.103 thorpej }
1229 1.103 thorpej #ifdef INET6
1230 1.103 thorpej if (m->m_flags & M_ANYCAST6) {
1231 1.103 thorpej /* XXX stat */
1232 1.103 thorpej goto drop;
1233 1.103 thorpej }
1234 1.103 thorpej #endif
1235 1.103 thorpej
1236 1.411 maxv M_REGION_GET(th, struct tcphdr *, m, off, sizeof(struct tcphdr));
1237 1.370 maxv if (th == NULL) {
1238 1.370 maxv TCP_STATINC(TCP_STAT_RCVSHORT);
1239 1.370 maxv return;
1240 1.370 maxv }
1241 1.370 maxv
1242 1.103 thorpej /*
1243 1.418 christos * Enforce alignment requirements that are violated in
1244 1.418 christos * some cases, see kern/50766 for details.
1245 1.418 christos */
1246 1.418 christos if (TCP_HDR_ALIGNED_P(th) == 0) {
1247 1.418 christos m = m_copyup(m, off + sizeof(struct tcphdr), 0);
1248 1.418 christos if (m == NULL) {
1249 1.418 christos TCP_STATINC(TCP_STAT_RCVSHORT);
1250 1.418 christos return;
1251 1.418 christos }
1252 1.418 christos th = (struct tcphdr *)(mtod(m, char *) + off);
1253 1.418 christos }
1254 1.418 christos KASSERT(TCP_HDR_ALIGNED_P(th));
1255 1.418 christos
1256 1.418 christos /*
1257 1.197 itojun * Get IP and TCP header.
1258 1.1 cgd * Note: IP leaves IP header in first mbuf.
1259 1.1 cgd */
1260 1.83 itojun ip = mtod(m, struct ip *);
1261 1.418 christos #ifdef INET6
1262 1.418 christos ip6 = mtod(m, struct ip6_hdr *);
1263 1.418 christos #endif
1264 1.83 itojun switch (ip->ip_v) {
1265 1.83 itojun case 4:
1266 1.83 itojun af = AF_INET;
1267 1.83 itojun iphlen = sizeof(struct ip);
1268 1.370 maxv
1269 1.373 maxv if (IN_MULTICAST(ip->ip_dst.s_addr) ||
1270 1.373 maxv in_broadcast(ip->ip_dst, m_get_rcvif_NOMPSAFE(m)))
1271 1.373 maxv goto drop;
1272 1.373 maxv
1273 1.103 thorpej /* We do the checksum after PCB lookup... */
1274 1.150 itojun len = ntohs(ip->ip_len);
1275 1.411 maxv tlen = len - off;
1276 1.244 rpaulo iptos = ip->ip_tos;
1277 1.83 itojun break;
1278 1.83 itojun #ifdef INET6
1279 1.83 itojun case 6:
1280 1.83 itojun iphlen = sizeof(struct ip6_hdr);
1281 1.83 itojun af = AF_INET6;
1282 1.101 itojun
1283 1.115 itojun /*
1284 1.115 itojun * Be proactive about unspecified IPv6 address in source.
1285 1.115 itojun * As we use all-zero to indicate unbounded/unconnected pcb,
1286 1.115 itojun * unspecified IPv6 address can be used to confuse us.
1287 1.115 itojun *
1288 1.115 itojun * Note that packets with unspecified IPv6 destination is
1289 1.115 itojun * already dropped in ip6_input.
1290 1.115 itojun */
1291 1.115 itojun if (IN6_IS_ADDR_UNSPECIFIED(&ip6->ip6_src)) {
1292 1.101 itojun /* XXX stat */
1293 1.101 itojun goto drop;
1294 1.101 itojun }
1295 1.1 cgd
1296 1.83 itojun /*
1297 1.103 thorpej * Make sure destination address is not multicast.
1298 1.103 thorpej * Source address checked in ip6_input().
1299 1.83 itojun */
1300 1.103 thorpej if (IN6_IS_ADDR_MULTICAST(&ip6->ip6_dst)) {
1301 1.103 thorpej /* XXX stat */
1302 1.103 thorpej goto drop;
1303 1.103 thorpej }
1304 1.103 thorpej
1305 1.103 thorpej /* We do the checksum after PCB lookup... */
1306 1.83 itojun len = m->m_pkthdr.len;
1307 1.411 maxv tlen = len - off;
1308 1.244 rpaulo iptos = (ntohl(ip6->ip6_flow) >> 20) & 0xff;
1309 1.83 itojun break;
1310 1.83 itojun #endif
1311 1.83 itojun default:
1312 1.83 itojun m_freem(m);
1313 1.83 itojun return;
1314 1.1 cgd }
1315 1.368 maxv
1316 1.146 thorpej
1317 1.1 cgd /*
1318 1.368 maxv * Check that TCP offset makes sense, pull out TCP options and
1319 1.368 maxv * adjust length.
1320 1.1 cgd */
1321 1.410 maxv thlen = th->th_off << 2;
1322 1.410 maxv if (thlen < sizeof(struct tcphdr) || thlen > tlen) {
1323 1.284 thorpej TCP_STATINC(TCP_STAT_RCVBADOFF);
1324 1.1 cgd goto drop;
1325 1.1 cgd }
1326 1.410 maxv tlen -= thlen;
1327 1.83 itojun
1328 1.410 maxv if (thlen > sizeof(struct tcphdr)) {
1329 1.411 maxv M_REGION_GET(th, struct tcphdr *, m, off, thlen);
1330 1.99 itojun if (th == NULL) {
1331 1.284 thorpej TCP_STATINC(TCP_STAT_RCVSHORT);
1332 1.99 itojun return;
1333 1.99 itojun }
1334 1.146 thorpej KASSERT(TCP_HDR_ALIGNED_P(th));
1335 1.410 maxv optlen = thlen - sizeof(struct tcphdr);
1336 1.155 itojun optp = ((u_int8_t *)th) + sizeof(struct tcphdr);
1337 1.387 maxv
1338 1.143 itojun /*
1339 1.387 maxv * Do quick retrieval of timestamp options.
1340 1.387 maxv *
1341 1.387 maxv * If timestamp is the only option and it's formatted as
1342 1.387 maxv * recommended in RFC 1323 appendix A, we quickly get the
1343 1.387 maxv * values now and don't bother calling tcp_dooptions(),
1344 1.387 maxv * etc.
1345 1.9 mycroft */
1346 1.9 mycroft if ((optlen == TCPOLEN_TSTAMP_APPA ||
1347 1.9 mycroft (optlen > TCPOLEN_TSTAMP_APPA &&
1348 1.387 maxv optp[TCPOLEN_TSTAMP_APPA] == TCPOPT_EOL)) &&
1349 1.414 kamil be32dec(optp) == TCPOPT_TSTAMP_HDR &&
1350 1.387 maxv (th->th_flags & TH_SYN) == 0) {
1351 1.29 thorpej opti.ts_present = 1;
1352 1.414 kamil opti.ts_val = be32dec(optp + 4);
1353 1.414 kamil opti.ts_ecr = be32dec(optp + 8);
1354 1.9 mycroft optp = NULL; /* we've parsed the options */
1355 1.1 cgd }
1356 1.1 cgd }
1357 1.83 itojun tiflags = th->th_flags;
1358 1.1 cgd
1359 1.1 cgd /*
1360 1.340 kefren * Checksum extended TCP header and data
1361 1.340 kefren */
1362 1.411 maxv if (tcp_input_checksum(af, m, th, off, thlen, tlen))
1363 1.340 kefren goto badcsum;
1364 1.340 kefren
1365 1.340 kefren /*
1366 1.1 cgd * Locate pcb for segment.
1367 1.1 cgd */
1368 1.1 cgd findpcb:
1369 1.83 itojun inp = NULL;
1370 1.83 itojun #ifdef INET6
1371 1.83 itojun in6p = NULL;
1372 1.83 itojun #endif
1373 1.83 itojun switch (af) {
1374 1.83 itojun case AF_INET:
1375 1.83 itojun inp = in_pcblookup_connect(&tcbtable, ip->ip_src, th->th_sport,
1376 1.368 maxv ip->ip_dst, th->th_dport, &vestige);
1377 1.374 maxv if (inp == NULL && !vestige.valid) {
1378 1.284 thorpej TCP_STATINC(TCP_STAT_PCBHASHMISS);
1379 1.368 maxv inp = in_pcblookup_bind(&tcbtable, ip->ip_dst,
1380 1.368 maxv th->th_dport);
1381 1.83 itojun }
1382 1.120 itojun #ifdef INET6
1383 1.374 maxv if (inp == NULL && !vestige.valid) {
1384 1.83 itojun struct in6_addr s, d;
1385 1.83 itojun
1386 1.83 itojun /* mapped addr case */
1387 1.345 rtr in6_in_2_v4mapin6(&ip->ip_src, &s);
1388 1.345 rtr in6_in_2_v4mapin6(&ip->ip_dst, &d);
1389 1.181 itojun in6p = in6_pcblookup_connect(&tcbtable, &s,
1390 1.368 maxv th->th_sport, &d, th->th_dport, 0, &vestige);
1391 1.312 dyoung if (in6p == 0 && !vestige.valid) {
1392 1.284 thorpej TCP_STATINC(TCP_STAT_PCBHASHMISS);
1393 1.181 itojun in6p = in6_pcblookup_bind(&tcbtable, &d,
1394 1.181 itojun th->th_dport, 0);
1395 1.83 itojun }
1396 1.83 itojun }
1397 1.83 itojun #endif
1398 1.83 itojun #ifndef INET6
1399 1.374 maxv if (inp == NULL && !vestige.valid)
1400 1.83 itojun #else
1401 1.374 maxv if (inp == NULL && in6p == NULL && !vestige.valid)
1402 1.83 itojun #endif
1403 1.83 itojun {
1404 1.284 thorpej TCP_STATINC(TCP_STAT_NOPORT);
1405 1.156 itojun if (tcp_log_refused &&
1406 1.156 itojun (tiflags & (TH_RST|TH_ACK|TH_SYN)) == TH_SYN) {
1407 1.145 yamt tcp4_log_refused(ip, th);
1408 1.82 ad }
1409 1.280 yamt tcp_fields_to_host(th);
1410 1.104 thorpej goto dropwithreset_ratelim;
1411 1.21 mycroft }
1412 1.326 christos #if defined(IPSEC)
1413 1.332 christos if (ipsec_used) {
1414 1.383 maxv if (inp && ipsec_in_reject(m, inp)) {
1415 1.332 christos goto drop;
1416 1.332 christos }
1417 1.83 itojun #ifdef INET6
1418 1.383 maxv else if (in6p && ipsec_in_reject(m, in6p)) {
1419 1.332 christos goto drop;
1420 1.332 christos }
1421 1.332 christos #endif
1422 1.83 itojun }
1423 1.83 itojun #endif /*IPSEC*/
1424 1.83 itojun break;
1425 1.120 itojun #ifdef INET6
1426 1.83 itojun case AF_INET6:
1427 1.87 itojun {
1428 1.87 itojun int faith;
1429 1.87 itojun
1430 1.87 itojun #if defined(NFAITH) && NFAITH > 0
1431 1.124 itojun faith = faithprefix(&ip6->ip6_dst);
1432 1.87 itojun #else
1433 1.87 itojun faith = 0;
1434 1.87 itojun #endif
1435 1.181 itojun in6p = in6_pcblookup_connect(&tcbtable, &ip6->ip6_src,
1436 1.368 maxv th->th_sport, &ip6->ip6_dst, th->th_dport, faith, &vestige);
1437 1.312 dyoung if (!in6p && !vestige.valid) {
1438 1.284 thorpej TCP_STATINC(TCP_STAT_PCBHASHMISS);
1439 1.181 itojun in6p = in6_pcblookup_bind(&tcbtable, &ip6->ip6_dst,
1440 1.368 maxv th->th_dport, faith);
1441 1.83 itojun }
1442 1.312 dyoung if (!in6p && !vestige.valid) {
1443 1.284 thorpej TCP_STATINC(TCP_STAT_NOPORT);
1444 1.156 itojun if (tcp_log_refused &&
1445 1.156 itojun (tiflags & (TH_RST|TH_ACK|TH_SYN)) == TH_SYN) {
1446 1.145 yamt tcp6_log_refused(ip6, th);
1447 1.136 itojun }
1448 1.280 yamt tcp_fields_to_host(th);
1449 1.104 thorpej goto dropwithreset_ratelim;
1450 1.83 itojun }
1451 1.326 christos #if defined(IPSEC)
1452 1.383 maxv if (ipsec_used && in6p && ipsec_in_reject(m, in6p)) {
1453 1.83 itojun goto drop;
1454 1.83 itojun }
1455 1.385 maxv #endif
1456 1.83 itojun break;
1457 1.87 itojun }
1458 1.83 itojun #endif
1459 1.1 cgd }
1460 1.1 cgd
1461 1.384 maxv tcp_fields_to_host(th);
1462 1.384 maxv
1463 1.24 mycroft /*
1464 1.24 mycroft * If the state is CLOSED (i.e., TCB does not exist) then
1465 1.24 mycroft * all data in the incoming segment is discarded.
1466 1.24 mycroft * If the TCB exists but is in CLOSED state, it is embryonic,
1467 1.24 mycroft * but should either do a listen or a connect soon.
1468 1.24 mycroft */
1469 1.83 itojun tp = NULL;
1470 1.83 itojun so = NULL;
1471 1.83 itojun if (inp) {
1472 1.298 minskim /* Check the minimum TTL for socket. */
1473 1.298 minskim if (ip->ip_ttl < inp->inp_ip_minttl)
1474 1.298 minskim goto drop;
1475 1.298 minskim
1476 1.83 itojun tp = intotcpcb(inp);
1477 1.83 itojun so = inp->inp_socket;
1478 1.83 itojun }
1479 1.83 itojun #ifdef INET6
1480 1.83 itojun else if (in6p) {
1481 1.83 itojun tp = in6totcpcb(in6p);
1482 1.83 itojun so = in6p->in6p_socket;
1483 1.83 itojun }
1484 1.83 itojun #endif
1485 1.312 dyoung else if (vestige.valid) {
1486 1.368 maxv /* We do not support the resurrection of vtw tcpcps. */
1487 1.372 maxv tcp_vtw_input(th, &vestige, m, tlen);
1488 1.368 maxv m = NULL;
1489 1.312 dyoung goto drop;
1490 1.312 dyoung }
1491 1.312 dyoung
1492 1.384 maxv if (tp == NULL)
1493 1.104 thorpej goto dropwithreset_ratelim;
1494 1.1 cgd if (tp->t_state == TCPS_CLOSED)
1495 1.1 cgd goto drop;
1496 1.103 thorpej
1497 1.289 ad KASSERT(so->so_lock == softnet_lock);
1498 1.289 ad KASSERT(solocked(so));
1499 1.289 ad
1500 1.9 mycroft /* Unscale the window into a 32-bit value. */
1501 1.9 mycroft if ((tiflags & TH_SYN) == 0)
1502 1.83 itojun tiwin = th->th_win << tp->snd_scale;
1503 1.9 mycroft else
1504 1.83 itojun tiwin = th->th_win;
1505 1.83 itojun
1506 1.83 itojun #ifdef INET6
1507 1.83 itojun /* save packet options if user wanted */
1508 1.83 itojun if (in6p && (in6p->in6p_flags & IN6P_CONTROLOPTS)) {
1509 1.83 itojun if (in6p->in6p_options) {
1510 1.83 itojun m_freem(in6p->in6p_options);
1511 1.374 maxv in6p->in6p_options = NULL;
1512 1.83 itojun }
1513 1.83 itojun ip6_savecontrol(in6p, &in6p->in6p_options, ip6, m);
1514 1.83 itojun }
1515 1.83 itojun #endif
1516 1.9 mycroft
1517 1.365 maxv if (so->so_options & SO_DEBUG) {
1518 1.365 maxv #ifdef TCP_DEBUG
1519 1.365 maxv ostate = tp->t_state;
1520 1.365 maxv #endif
1521 1.365 maxv
1522 1.365 maxv tcp_saveti = NULL;
1523 1.365 maxv if (iphlen + sizeof(struct tcphdr) > MHLEN)
1524 1.365 maxv goto nosave;
1525 1.365 maxv
1526 1.365 maxv if (m->m_len > iphlen && (m->m_flags & M_EXT) == 0) {
1527 1.365 maxv tcp_saveti = m_copym(m, 0, iphlen, M_DONTWAIT);
1528 1.374 maxv if (tcp_saveti == NULL)
1529 1.365 maxv goto nosave;
1530 1.365 maxv } else {
1531 1.365 maxv MGETHDR(tcp_saveti, M_DONTWAIT, MT_HEADER);
1532 1.374 maxv if (tcp_saveti == NULL)
1533 1.365 maxv goto nosave;
1534 1.365 maxv MCLAIM(m, &tcp_mowner);
1535 1.365 maxv tcp_saveti->m_len = iphlen;
1536 1.365 maxv m_copydata(m, 0, iphlen,
1537 1.365 maxv mtod(tcp_saveti, void *));
1538 1.365 maxv }
1539 1.365 maxv
1540 1.365 maxv if (M_TRAILINGSPACE(tcp_saveti) < sizeof(struct tcphdr)) {
1541 1.365 maxv m_freem(tcp_saveti);
1542 1.365 maxv tcp_saveti = NULL;
1543 1.365 maxv } else {
1544 1.365 maxv tcp_saveti->m_len += sizeof(struct tcphdr);
1545 1.365 maxv memcpy(mtod(tcp_saveti, char *) + iphlen, th,
1546 1.365 maxv sizeof(struct tcphdr));
1547 1.365 maxv }
1548 1.365 maxv nosave:;
1549 1.365 maxv }
1550 1.365 maxv
1551 1.365 maxv if (so->so_options & SO_ACCEPTCONN) {
1552 1.83 itojun union syn_cache_sa src;
1553 1.83 itojun union syn_cache_sa dst;
1554 1.83 itojun
1555 1.378 maxv KASSERT(tp->t_state == TCPS_LISTEN);
1556 1.378 maxv
1557 1.295 cegger memset(&src, 0, sizeof(src));
1558 1.295 cegger memset(&dst, 0, sizeof(dst));
1559 1.83 itojun switch (af) {
1560 1.83 itojun case AF_INET:
1561 1.83 itojun src.sin.sin_len = sizeof(struct sockaddr_in);
1562 1.83 itojun src.sin.sin_family = AF_INET;
1563 1.83 itojun src.sin.sin_addr = ip->ip_src;
1564 1.83 itojun src.sin.sin_port = th->th_sport;
1565 1.83 itojun
1566 1.83 itojun dst.sin.sin_len = sizeof(struct sockaddr_in);
1567 1.83 itojun dst.sin.sin_family = AF_INET;
1568 1.83 itojun dst.sin.sin_addr = ip->ip_dst;
1569 1.83 itojun dst.sin.sin_port = th->th_dport;
1570 1.83 itojun break;
1571 1.83 itojun #ifdef INET6
1572 1.83 itojun case AF_INET6:
1573 1.83 itojun src.sin6.sin6_len = sizeof(struct sockaddr_in6);
1574 1.83 itojun src.sin6.sin6_family = AF_INET6;
1575 1.83 itojun src.sin6.sin6_addr = ip6->ip6_src;
1576 1.83 itojun src.sin6.sin6_port = th->th_sport;
1577 1.83 itojun
1578 1.83 itojun dst.sin6.sin6_len = sizeof(struct sockaddr_in6);
1579 1.83 itojun dst.sin6.sin6_family = AF_INET6;
1580 1.83 itojun dst.sin6.sin6_addr = ip6->ip6_dst;
1581 1.83 itojun dst.sin6.sin6_port = th->th_dport;
1582 1.83 itojun break;
1583 1.385 maxv #endif
1584 1.83 itojun }
1585 1.83 itojun
1586 1.366 maxv if ((tiflags & (TH_RST|TH_ACK|TH_SYN)) != TH_SYN) {
1587 1.366 maxv if (tiflags & TH_RST) {
1588 1.366 maxv syn_cache_reset(&src.sa, &dst.sa, th);
1589 1.366 maxv } else if ((tiflags & (TH_ACK|TH_SYN)) ==
1590 1.366 maxv (TH_ACK|TH_SYN)) {
1591 1.366 maxv /*
1592 1.374 maxv * Received a SYN,ACK. This should never
1593 1.374 maxv * happen while we are in LISTEN. Send an RST.
1594 1.366 maxv */
1595 1.366 maxv goto badsyn;
1596 1.366 maxv } else if (tiflags & TH_ACK) {
1597 1.391 maxv so = syn_cache_get(&src.sa, &dst.sa, th, so, m);
1598 1.366 maxv if (so == NULL) {
1599 1.35 thorpej /*
1600 1.368 maxv * We don't have a SYN for this ACK;
1601 1.368 maxv * send an RST.
1602 1.35 thorpej */
1603 1.35 thorpej goto badsyn;
1604 1.368 maxv } else if (so == (struct socket *)(-1)) {
1605 1.366 maxv /*
1606 1.368 maxv * We were unable to create the
1607 1.368 maxv * connection. If the 3-way handshake
1608 1.368 maxv * was completed, and RST has been
1609 1.368 maxv * sent to the peer. Since the mbuf
1610 1.368 maxv * might be in use for the reply, do
1611 1.368 maxv * not free it.
1612 1.366 maxv */
1613 1.366 maxv m = NULL;
1614 1.366 maxv } else {
1615 1.366 maxv /*
1616 1.368 maxv * We have created a full-blown
1617 1.368 maxv * connection.
1618 1.366 maxv */
1619 1.366 maxv tp = NULL;
1620 1.366 maxv inp = NULL;
1621 1.83 itojun #ifdef INET6
1622 1.366 maxv in6p = NULL;
1623 1.83 itojun #endif
1624 1.366 maxv switch (so->so_proto->pr_domain->dom_family) {
1625 1.366 maxv case AF_INET:
1626 1.366 maxv inp = sotoinpcb(so);
1627 1.366 maxv tp = intotcpcb(inp);
1628 1.366 maxv break;
1629 1.366 maxv #ifdef INET6
1630 1.366 maxv case AF_INET6:
1631 1.366 maxv in6p = sotoin6pcb(so);
1632 1.366 maxv tp = in6totcpcb(in6p);
1633 1.366 maxv break;
1634 1.366 maxv #endif
1635 1.29 thorpej }
1636 1.366 maxv if (tp == NULL)
1637 1.366 maxv goto badsyn; /*XXX*/
1638 1.366 maxv tiwin <<= tp->snd_scale;
1639 1.366 maxv goto after_listen;
1640 1.66 mycroft }
1641 1.143 itojun } else {
1642 1.29 thorpej /*
1643 1.366 maxv * None of RST, SYN or ACK was set.
1644 1.366 maxv * This is an invalid packet for a
1645 1.366 maxv * TCB in LISTEN state. Send a RST.
1646 1.35 thorpej */
1647 1.366 maxv goto badsyn;
1648 1.366 maxv }
1649 1.366 maxv } else {
1650 1.366 maxv /*
1651 1.366 maxv * Received a SYN.
1652 1.366 maxv */
1653 1.250 rpaulo
1654 1.83 itojun #ifdef INET6
1655 1.366 maxv /*
1656 1.366 maxv * If deprecated address is forbidden, we do
1657 1.366 maxv * not accept SYN to deprecated interface
1658 1.366 maxv * address to prevent any new inbound
1659 1.366 maxv * connection from getting established.
1660 1.366 maxv * When we do not accept SYN, we send a TCP
1661 1.366 maxv * RST, with deprecated source address (instead
1662 1.366 maxv * of dropping it). We compromise it as it is
1663 1.366 maxv * much better for peer to send a RST, and
1664 1.366 maxv * RST will be the final packet for the
1665 1.366 maxv * exchange.
1666 1.366 maxv *
1667 1.366 maxv * If we do not forbid deprecated addresses, we
1668 1.366 maxv * accept the SYN packet. RFC2462 does not
1669 1.366 maxv * suggest dropping SYN in this case.
1670 1.366 maxv * If we decipher RFC2462 5.5.4, it says like
1671 1.366 maxv * this:
1672 1.366 maxv * 1. use of deprecated addr with existing
1673 1.366 maxv * communication is okay - "SHOULD continue
1674 1.366 maxv * to be used"
1675 1.366 maxv * 2. use of it with new communication:
1676 1.366 maxv * (2a) "SHOULD NOT be used if alternate
1677 1.366 maxv * address with sufficient scope is
1678 1.366 maxv * available"
1679 1.366 maxv * (2b) nothing mentioned otherwise.
1680 1.366 maxv * Here we fall into (2b) case as we have no
1681 1.366 maxv * choice in our source address selection - we
1682 1.366 maxv * must obey the peer.
1683 1.366 maxv *
1684 1.366 maxv * The wording in RFC2462 is confusing, and
1685 1.366 maxv * there are multiple description text for
1686 1.366 maxv * deprecated address handling - worse, they
1687 1.366 maxv * are not exactly the same. I believe 5.5.4
1688 1.366 maxv * is the best one, so we follow 5.5.4.
1689 1.366 maxv */
1690 1.366 maxv if (af == AF_INET6 && !ip6_use_deprecated) {
1691 1.366 maxv struct in6_ifaddr *ia6;
1692 1.366 maxv int s;
1693 1.366 maxv struct ifnet *rcvif = m_get_rcvif(m, &s);
1694 1.366 maxv if (rcvif == NULL)
1695 1.366 maxv goto dropwithreset; /* XXX */
1696 1.366 maxv if ((ia6 = in6ifa_ifpwithaddr(rcvif,
1697 1.366 maxv &ip6->ip6_dst)) &&
1698 1.366 maxv (ia6->ia6_flags & IN6_IFF_DEPRECATED)) {
1699 1.366 maxv tp = NULL;
1700 1.347 ozaki m_put_rcvif(rcvif, &s);
1701 1.366 maxv goto dropwithreset;
1702 1.152 itojun }
1703 1.366 maxv m_put_rcvif(rcvif, &s);
1704 1.366 maxv }
1705 1.152 itojun #endif
1706 1.183 itojun
1707 1.366 maxv /*
1708 1.368 maxv * LISTEN socket received a SYN from itself? This
1709 1.368 maxv * can't possibly be valid; drop the packet.
1710 1.366 maxv */
1711 1.366 maxv if (th->th_sport == th->th_dport) {
1712 1.374 maxv int eq = 0;
1713 1.152 itojun
1714 1.366 maxv switch (af) {
1715 1.366 maxv case AF_INET:
1716 1.374 maxv eq = in_hosteq(ip->ip_src, ip->ip_dst);
1717 1.366 maxv break;
1718 1.152 itojun #ifdef INET6
1719 1.366 maxv case AF_INET6:
1720 1.374 maxv eq = IN6_ARE_ADDR_EQUAL(&ip6->ip6_src,
1721 1.368 maxv &ip6->ip6_dst);
1722 1.366 maxv break;
1723 1.152 itojun #endif
1724 1.366 maxv }
1725 1.374 maxv if (eq) {
1726 1.366 maxv TCP_STATINC(TCP_STAT_BADSYN);
1727 1.366 maxv goto drop;
1728 1.35 thorpej }
1729 1.366 maxv }
1730 1.83 itojun
1731 1.366 maxv /*
1732 1.366 maxv * SYN looks ok; create compressed TCP
1733 1.366 maxv * state for it.
1734 1.366 maxv */
1735 1.366 maxv if (so->so_qlen <= so->so_qlimit &&
1736 1.411 maxv syn_cache_add(&src.sa, &dst.sa, th, off,
1737 1.368 maxv so, m, optp, optlen, &opti))
1738 1.366 maxv m = NULL;
1739 1.1 cgd }
1740 1.366 maxv
1741 1.366 maxv goto drop;
1742 1.1 cgd }
1743 1.1 cgd
1744 1.29 thorpej after_listen:
1745 1.29 thorpej /*
1746 1.385 maxv * From here on, we're dealing with !LISTEN.
1747 1.29 thorpej */
1748 1.368 maxv KASSERT(tp->t_state != TCPS_LISTEN);
1749 1.29 thorpej
1750 1.1 cgd /*
1751 1.1 cgd * Segment received on connection.
1752 1.1 cgd * Reset idle time and keep-alive timer.
1753 1.1 cgd */
1754 1.128 thorpej tp->t_rcvtime = tcp_now;
1755 1.25 mycroft if (TCPS_HAVEESTABLISHED(tp->t_state))
1756 1.267 christos TCP_TIMER_ARM(tp, TCPT_KEEP, tp->t_keepidle);
1757 1.1 cgd
1758 1.1 cgd /*
1759 1.29 thorpej * Process options.
1760 1.1 cgd */
1761 1.206 itojun #ifdef TCP_SIGNATURE
1762 1.206 itojun if (optp || (tp->t_flags & TF_SIGNATURE))
1763 1.206 itojun #else
1764 1.29 thorpej if (optp)
1765 1.206 itojun #endif
1766 1.411 maxv if (tcp_dooptions(tp, optp, optlen, th, m, off, &opti) < 0)
1767 1.206 itojun goto drop;
1768 1.9 mycroft
1769 1.222 jonathan if (TCP_SACK_ENABLED(tp)) {
1770 1.222 jonathan tcp_del_sackholes(tp, th);
1771 1.222 jonathan }
1772 1.222 jonathan
1773 1.244 rpaulo if (TCP_ECN_ALLOWED(tp)) {
1774 1.303 rmind if (tiflags & TH_CWR) {
1775 1.303 rmind tp->t_flags &= ~TF_ECN_SND_ECE;
1776 1.303 rmind }
1777 1.244 rpaulo switch (iptos & IPTOS_ECN_MASK) {
1778 1.244 rpaulo case IPTOS_ECN_CE:
1779 1.244 rpaulo tp->t_flags |= TF_ECN_SND_ECE;
1780 1.284 thorpej TCP_STATINC(TCP_STAT_ECN_CE);
1781 1.244 rpaulo break;
1782 1.244 rpaulo case IPTOS_ECN_ECT0:
1783 1.284 thorpej TCP_STATINC(TCP_STAT_ECN_ECT);
1784 1.244 rpaulo break;
1785 1.244 rpaulo case IPTOS_ECN_ECT1:
1786 1.244 rpaulo /* XXX: ignore for now -- rpaulo */
1787 1.244 rpaulo break;
1788 1.244 rpaulo }
1789 1.244 rpaulo /*
1790 1.244 rpaulo * Congestion experienced.
1791 1.244 rpaulo * Ignore if we are already trying to recover.
1792 1.244 rpaulo */
1793 1.244 rpaulo if ((tiflags & TH_ECE) && SEQ_GEQ(tp->snd_una, tp->snd_recover))
1794 1.251 rpaulo tp->t_congctl->cong_exp(tp);
1795 1.244 rpaulo }
1796 1.244 rpaulo
1797 1.213 mycroft if (opti.ts_present && opti.ts_ecr) {
1798 1.213 mycroft /*
1799 1.213 mycroft * Calculate the RTT from the returned time stamp and the
1800 1.213 mycroft * connection's time base. If the time stamp is later than
1801 1.215 mycroft * the current time, or is extremely old, fall back to non-1323
1802 1.308 yamt * RTT calculation. Since ts_rtt is unsigned, we can test both
1803 1.215 mycroft * at the same time.
1804 1.309 gdt *
1805 1.309 gdt * Note that ts_rtt is in units of slow ticks (500
1806 1.309 gdt * ms). Since most earthbound RTTs are < 500 ms,
1807 1.309 gdt * observed values will have large quantization noise.
1808 1.309 gdt * Our smoothed RTT is then the fraction of observed
1809 1.309 gdt * samples that are 1 tick instead of 0 (times 500
1810 1.309 gdt * ms).
1811 1.309 gdt *
1812 1.309 gdt * ts_rtt is increased by 1 to denote a valid sample,
1813 1.309 gdt * with 0 indicating an invalid measurement. This
1814 1.309 gdt * extra 1 must be removed when ts_rtt is used, or
1815 1.413 msaitoh * else an erroneous extra 500 ms will result.
1816 1.213 mycroft */
1817 1.229 yamt ts_rtt = TCP_TIMESTAMP(tp) - opti.ts_ecr + 1;
1818 1.229 yamt if (ts_rtt > TCP_PAWS_IDLE)
1819 1.229 yamt ts_rtt = 0;
1820 1.229 yamt } else {
1821 1.229 yamt ts_rtt = 0;
1822 1.213 mycroft }
1823 1.213 mycroft
1824 1.143 itojun /*
1825 1.389 maxv * Fast path: check for the two common cases of a uni-directional
1826 1.389 maxv * data transfer. If:
1827 1.389 maxv * o We are in the ESTABLISHED state, and
1828 1.389 maxv * o The packet has no control flags, and
1829 1.389 maxv * o The packet is in-sequence, and
1830 1.389 maxv * o The window didn't change, and
1831 1.389 maxv * o We are not retransmitting
1832 1.389 maxv * It's a candidate.
1833 1.389 maxv *
1834 1.389 maxv * If the length (tlen) is zero and the ack moved forward, we're
1835 1.389 maxv * the sender side of the transfer. Just free the data acked and
1836 1.389 maxv * wake any higher level process that was blocked waiting for
1837 1.389 maxv * space.
1838 1.389 maxv *
1839 1.389 maxv * If the length is non-zero and the ack didn't move, we're the
1840 1.389 maxv * receiver side. If we're getting packets in-order (the reassembly
1841 1.389 maxv * queue is empty), add the data to the socket buffer and note
1842 1.389 maxv * that we need a delayed ack.
1843 1.1 cgd */
1844 1.1 cgd if (tp->t_state == TCPS_ESTABLISHED &&
1845 1.244 rpaulo (tiflags & (TH_SYN|TH_FIN|TH_RST|TH_URG|TH_ECE|TH_CWR|TH_ACK))
1846 1.244 rpaulo == TH_ACK &&
1847 1.29 thorpej (!opti.ts_present || TSTMP_GEQ(opti.ts_val, tp->ts_recent)) &&
1848 1.83 itojun th->th_seq == tp->rcv_nxt &&
1849 1.9 mycroft tiwin && tiwin == tp->snd_wnd &&
1850 1.1 cgd tp->snd_nxt == tp->snd_max) {
1851 1.9 mycroft
1852 1.143 itojun /*
1853 1.9 mycroft * If last ACK falls within this segment's sequence numbers,
1854 1.278 yamt * record the timestamp.
1855 1.278 yamt * NOTE that the test is modified according to the latest
1856 1.278 yamt * proposal of the tcplw (at) cray.com list (Braden 1993/04/26).
1857 1.278 yamt *
1858 1.278 yamt * note that we already know
1859 1.278 yamt * TSTMP_GEQ(opti.ts_val, tp->ts_recent)
1860 1.9 mycroft */
1861 1.389 maxv if (opti.ts_present && SEQ_LEQ(th->th_seq, tp->last_ack_sent)) {
1862 1.217 mycroft tp->ts_recent_age = tcp_now;
1863 1.29 thorpej tp->ts_recent = opti.ts_val;
1864 1.9 mycroft }
1865 1.9 mycroft
1866 1.83 itojun if (tlen == 0) {
1867 1.213 mycroft /* Ack prediction. */
1868 1.83 itojun if (SEQ_GT(th->th_ack, tp->snd_una) &&
1869 1.83 itojun SEQ_LEQ(th->th_ack, tp->snd_max) &&
1870 1.15 mycroft tp->snd_cwnd >= tp->snd_wnd &&
1871 1.214 mycroft tp->t_partialacks < 0) {
1872 1.1 cgd /*
1873 1.1 cgd * this is a pure ack for outstanding data.
1874 1.1 cgd */
1875 1.229 yamt if (ts_rtt)
1876 1.314 gdt tcp_xmit_timer(tp, ts_rtt - 1);
1877 1.128 thorpej else if (tp->t_rtttime &&
1878 1.83 itojun SEQ_GT(th->th_ack, tp->t_rtseq))
1879 1.128 thorpej tcp_xmit_timer(tp,
1880 1.198 itojun tcp_now - tp->t_rtttime);
1881 1.83 itojun acked = th->th_ack - tp->snd_una;
1882 1.284 thorpej tcps = TCP_STAT_GETREF();
1883 1.284 thorpej tcps[TCP_STAT_PREDACK]++;
1884 1.284 thorpej tcps[TCP_STAT_RCVACKPACK]++;
1885 1.284 thorpej tcps[TCP_STAT_RCVACKBYTE] += acked;
1886 1.284 thorpej TCP_STAT_PUTREF();
1887 1.274 dyoung nd6_hint(tp);
1888 1.172 ragge
1889 1.186 ragge if (acked > (tp->t_lastoff - tp->t_inoff))
1890 1.186 ragge tp->t_lastm = NULL;
1891 1.1 cgd sbdrop(&so->so_snd, acked);
1892 1.186 ragge tp->t_lastoff -= acked;
1893 1.170 ragge
1894 1.280 yamt icmp_check(tp, th, acked);
1895 1.231 christos
1896 1.213 mycroft tp->snd_una = th->th_ack;
1897 1.222 jonathan tp->snd_fack = tp->snd_una;
1898 1.213 mycroft if (SEQ_LT(tp->snd_high, tp->snd_una))
1899 1.213 mycroft tp->snd_high = tp->snd_una;
1900 1.1 cgd m_freem(m);
1901 1.1 cgd
1902 1.1 cgd /*
1903 1.1 cgd * If all outstanding data are acked, stop
1904 1.1 cgd * retransmit timer, otherwise restart timer
1905 1.1 cgd * using current (possibly backed-off) value.
1906 1.1 cgd * If process is waiting for space,
1907 1.282 rmind * wakeup/selnotify/signal. If data
1908 1.1 cgd * are ready to send, let tcp_output
1909 1.1 cgd * decide between more output or persist.
1910 1.1 cgd */
1911 1.1 cgd if (tp->snd_una == tp->snd_max)
1912 1.58 thorpej TCP_TIMER_DISARM(tp, TCPT_REXMT);
1913 1.58 thorpej else if (TCP_TIMER_ISARMED(tp,
1914 1.58 thorpej TCPT_PERSIST) == 0)
1915 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_REXMT,
1916 1.58 thorpej tp->t_rxtcur);
1917 1.1 cgd
1918 1.54 matt sowwakeup(so);
1919 1.302 tls if (so->so_snd.sb_cc) {
1920 1.301 tls KERNEL_LOCK(1, NULL);
1921 1.389 maxv (void)tcp_output(tp);
1922 1.301 tls KERNEL_UNLOCK_ONE(NULL);
1923 1.302 tls }
1924 1.89 itojun if (tcp_saveti)
1925 1.89 itojun m_freem(tcp_saveti);
1926 1.1 cgd return;
1927 1.1 cgd }
1928 1.83 itojun } else if (th->th_ack == tp->snd_una &&
1929 1.141 matt TAILQ_FIRST(&tp->segq) == NULL &&
1930 1.83 itojun tlen <= sbspace(&so->so_rcv)) {
1931 1.389 maxv int newsize = 0;
1932 1.269 rmind
1933 1.1 cgd /*
1934 1.1 cgd * this is a pure, in-sequence data packet
1935 1.1 cgd * with nothing on the reassembly queue and
1936 1.1 cgd * we have enough buffer space to take it.
1937 1.1 cgd */
1938 1.83 itojun tp->rcv_nxt += tlen;
1939 1.284 thorpej tcps = TCP_STAT_GETREF();
1940 1.284 thorpej tcps[TCP_STAT_PREDDAT]++;
1941 1.284 thorpej tcps[TCP_STAT_RCVPACK]++;
1942 1.284 thorpej tcps[TCP_STAT_RCVBYTE] += tlen;
1943 1.284 thorpej TCP_STAT_PUTREF();
1944 1.274 dyoung nd6_hint(tp);
1945 1.269 rmind
1946 1.269 rmind /*
1947 1.269 rmind * Automatic sizing enables the performance of large buffers
1948 1.269 rmind * and most of the efficiency of small ones by only allocating
1949 1.269 rmind * space when it is needed.
1950 1.269 rmind *
1951 1.269 rmind * On the receive side the socket buffer memory is only rarely
1952 1.269 rmind * used to any significant extent. This allows us to be much
1953 1.269 rmind * more aggressive in scaling the receive socket buffer. For
1954 1.269 rmind * the case that the buffer space is actually used to a large
1955 1.269 rmind * extent and we run out of kernel memory we can simply drop
1956 1.269 rmind * the new segments; TCP on the sender will just retransmit it
1957 1.269 rmind * later. Setting the buffer size too big may only consume too
1958 1.269 rmind * much kernel memory if the application doesn't read() from
1959 1.269 rmind * the socket or packet loss or reordering makes use of the
1960 1.269 rmind * reassembly queue.
1961 1.269 rmind *
1962 1.269 rmind * The criteria to step up the receive buffer one notch are:
1963 1.269 rmind * 1. the number of bytes received during the time it takes
1964 1.269 rmind * one timestamp to be reflected back to us (the RTT);
1965 1.269 rmind * 2. received bytes per RTT is within seven eighth of the
1966 1.269 rmind * current socket buffer size;
1967 1.269 rmind * 3. receive buffer size has not hit maximal automatic size;
1968 1.269 rmind *
1969 1.269 rmind * This algorithm does one step per RTT at most and only if
1970 1.269 rmind * we receive a bulk stream w/o packet losses or reorderings.
1971 1.269 rmind * Shrinking the buffer during idle times is not necessary as
1972 1.269 rmind * it doesn't consume any memory when idle.
1973 1.269 rmind *
1974 1.269 rmind * TODO: Only step up if the application is actually serving
1975 1.269 rmind * the buffer to better manage the socket buffer resources.
1976 1.269 rmind */
1977 1.269 rmind if (tcp_do_autorcvbuf &&
1978 1.269 rmind opti.ts_ecr &&
1979 1.269 rmind (so->so_rcv.sb_flags & SB_AUTOSIZE)) {
1980 1.269 rmind if (opti.ts_ecr > tp->rfbuf_ts &&
1981 1.270 yamt opti.ts_ecr - tp->rfbuf_ts < PR_SLOWHZ) {
1982 1.269 rmind if (tp->rfbuf_cnt >
1983 1.269 rmind (so->so_rcv.sb_hiwat / 8 * 7) &&
1984 1.269 rmind so->so_rcv.sb_hiwat <
1985 1.269 rmind tcp_autorcvbuf_max) {
1986 1.269 rmind newsize =
1987 1.409 riastrad uimin(so->so_rcv.sb_hiwat +
1988 1.269 rmind tcp_autorcvbuf_inc,
1989 1.269 rmind tcp_autorcvbuf_max);
1990 1.269 rmind }
1991 1.269 rmind /* Start over with next RTT. */
1992 1.269 rmind tp->rfbuf_ts = 0;
1993 1.269 rmind tp->rfbuf_cnt = 0;
1994 1.269 rmind } else
1995 1.269 rmind tp->rfbuf_cnt += tlen; /* add up */
1996 1.269 rmind }
1997 1.269 rmind
1998 1.1 cgd /*
1999 1.9 mycroft * Drop TCP, IP headers and TCP options then add data
2000 1.9 mycroft * to socket buffer.
2001 1.1 cgd */
2002 1.389 maxv if (so->so_state & SS_CANTRCVMORE) {
2003 1.154 itojun m_freem(m);
2004 1.389 maxv } else {
2005 1.269 rmind /*
2006 1.269 rmind * Set new socket buffer size.
2007 1.269 rmind * Give up when limit is reached.
2008 1.269 rmind */
2009 1.269 rmind if (newsize)
2010 1.269 rmind if (!sbreserve(&so->so_rcv,
2011 1.269 rmind newsize, so))
2012 1.269 rmind so->so_rcv.sb_flags &= ~SB_AUTOSIZE;
2013 1.411 maxv m_adj(m, off + thlen);
2014 1.154 itojun sbappendstream(&so->so_rcv, m);
2015 1.154 itojun }
2016 1.1 cgd sorwakeup(so);
2017 1.280 yamt tcp_setup_ack(tp, th);
2018 1.302 tls if (tp->t_flags & TF_ACKNOW) {
2019 1.301 tls KERNEL_LOCK(1, NULL);
2020 1.389 maxv (void)tcp_output(tp);
2021 1.301 tls KERNEL_UNLOCK_ONE(NULL);
2022 1.302 tls }
2023 1.89 itojun if (tcp_saveti)
2024 1.89 itojun m_freem(tcp_saveti);
2025 1.1 cgd return;
2026 1.1 cgd }
2027 1.1 cgd }
2028 1.1 cgd
2029 1.1 cgd /*
2030 1.97 itojun * Compute mbuf offset to TCP data segment.
2031 1.1 cgd */
2032 1.411 maxv hdroptlen = off + thlen;
2033 1.1 cgd
2034 1.1 cgd /*
2035 1.385 maxv * Calculate amount of space in receive window. Receive window is
2036 1.385 maxv * amount of space in rcv queue, but not less than advertised
2037 1.385 maxv * window.
2038 1.1 cgd */
2039 1.385 maxv {
2040 1.385 maxv int win;
2041 1.385 maxv win = sbspace(&so->so_rcv);
2042 1.385 maxv if (win < 0)
2043 1.385 maxv win = 0;
2044 1.385 maxv tp->rcv_wnd = imax(win, (int)(tp->rcv_adv - tp->rcv_nxt));
2045 1.1 cgd }
2046 1.1 cgd
2047 1.269 rmind /* Reset receive buffer auto scaling when not in bulk receive mode. */
2048 1.269 rmind tp->rfbuf_ts = 0;
2049 1.269 rmind tp->rfbuf_cnt = 0;
2050 1.269 rmind
2051 1.1 cgd switch (tp->t_state) {
2052 1.1 cgd /*
2053 1.1 cgd * If the state is SYN_SENT:
2054 1.1 cgd * if seg contains an ACK, but not for our SYN, drop the input.
2055 1.1 cgd * if seg contains a RST, then drop the connection.
2056 1.1 cgd * if seg does not contain SYN, then drop it.
2057 1.1 cgd * Otherwise this is an acceptable SYN segment
2058 1.1 cgd * initialize tp->rcv_nxt and tp->irs
2059 1.1 cgd * if seg contains ack then advance tp->snd_una
2060 1.244 rpaulo * if seg contains a ECE and ECN support is enabled, the stream
2061 1.244 rpaulo * is ECN capable.
2062 1.1 cgd * if SYN has been acked change to ESTABLISHED else SYN_RCVD state
2063 1.1 cgd * arrange for segment to be acked (eventually)
2064 1.1 cgd * continue processing rest of data/controls, beginning with URG
2065 1.1 cgd */
2066 1.1 cgd case TCPS_SYN_SENT:
2067 1.1 cgd if ((tiflags & TH_ACK) &&
2068 1.83 itojun (SEQ_LEQ(th->th_ack, tp->iss) ||
2069 1.83 itojun SEQ_GT(th->th_ack, tp->snd_max)))
2070 1.1 cgd goto dropwithreset;
2071 1.1 cgd if (tiflags & TH_RST) {
2072 1.1 cgd if (tiflags & TH_ACK)
2073 1.1 cgd tp = tcp_drop(tp, ECONNREFUSED);
2074 1.1 cgd goto drop;
2075 1.1 cgd }
2076 1.1 cgd if ((tiflags & TH_SYN) == 0)
2077 1.1 cgd goto drop;
2078 1.1 cgd if (tiflags & TH_ACK) {
2079 1.213 mycroft tp->snd_una = th->th_ack;
2080 1.1 cgd if (SEQ_LT(tp->snd_nxt, tp->snd_una))
2081 1.1 cgd tp->snd_nxt = tp->snd_una;
2082 1.213 mycroft if (SEQ_LT(tp->snd_high, tp->snd_una))
2083 1.213 mycroft tp->snd_high = tp->snd_una;
2084 1.107 matt TCP_TIMER_DISARM(tp, TCPT_REXMT);
2085 1.244 rpaulo
2086 1.244 rpaulo if ((tiflags & TH_ECE) && tcp_do_ecn) {
2087 1.244 rpaulo tp->t_flags |= TF_ECN_PERMIT;
2088 1.284 thorpej TCP_STATINC(TCP_STAT_ECN_SHS);
2089 1.244 rpaulo }
2090 1.1 cgd }
2091 1.83 itojun tp->irs = th->th_seq;
2092 1.1 cgd tcp_rcvseqinit(tp);
2093 1.1 cgd tp->t_flags |= TF_ACKNOW;
2094 1.32 thorpej tcp_mss_from_peer(tp, opti.maxseg);
2095 1.46 thorpej
2096 1.46 thorpej /*
2097 1.46 thorpej * Initialize the initial congestion window. If we
2098 1.46 thorpej * had to retransmit the SYN, we must initialize cwnd
2099 1.62 thorpej * to 1 segment (i.e. the Loss Window).
2100 1.46 thorpej */
2101 1.62 thorpej if (tp->t_flags & TF_SYN_REXMT)
2102 1.62 thorpej tp->snd_cwnd = tp->t_peermss;
2103 1.163 thorpej else {
2104 1.163 thorpej int ss = tcp_init_win;
2105 1.163 thorpej if (inp != NULL && in_localaddr(inp->inp_faddr))
2106 1.163 thorpej ss = tcp_init_win_local;
2107 1.163 thorpej #ifdef INET6
2108 1.163 thorpej if (in6p != NULL && in6_localaddr(&in6p->in6p_faddr))
2109 1.163 thorpej ss = tcp_init_win_local;
2110 1.163 thorpej #endif
2111 1.163 thorpej tp->snd_cwnd = TCP_INITIAL_WINDOW(ss, tp->t_peermss);
2112 1.163 thorpej }
2113 1.46 thorpej
2114 1.32 thorpej tcp_rmx_rtt(tp);
2115 1.108 matt if (tiflags & TH_ACK) {
2116 1.284 thorpej TCP_STATINC(TCP_STAT_CONNECTS);
2117 1.312 dyoung /*
2118 1.312 dyoung * move tcp_established before soisconnected
2119 1.313 dholland * because upcall handler can drive tcp_output
2120 1.312 dyoung * functionality.
2121 1.312 dyoung * XXX we might call soisconnected at the end of
2122 1.312 dyoung * all processing
2123 1.312 dyoung */
2124 1.312 dyoung tcp_established(tp);
2125 1.1 cgd soisconnected(so);
2126 1.9 mycroft /* Do window scaling on this connection? */
2127 1.9 mycroft if ((tp->t_flags & (TF_RCVD_SCALE|TF_REQ_SCALE)) ==
2128 1.158 thorpej (TF_RCVD_SCALE|TF_REQ_SCALE)) {
2129 1.9 mycroft tp->snd_scale = tp->requested_s_scale;
2130 1.9 mycroft tp->rcv_scale = tp->request_r_scale;
2131 1.9 mycroft }
2132 1.72 thorpej TCP_REASS_LOCK(tp);
2133 1.386 maxv (void)tcp_reass(tp, NULL, NULL, tlen);
2134 1.1 cgd /*
2135 1.1 cgd * if we didn't have to retransmit the SYN,
2136 1.1 cgd * use its rtt as our initial srtt & rtt var.
2137 1.1 cgd */
2138 1.128 thorpej if (tp->t_rtttime)
2139 1.128 thorpej tcp_xmit_timer(tp, tcp_now - tp->t_rtttime);
2140 1.389 maxv } else {
2141 1.1 cgd tp->t_state = TCPS_SYN_RECEIVED;
2142 1.389 maxv }
2143 1.1 cgd
2144 1.1 cgd /*
2145 1.83 itojun * Advance th->th_seq to correspond to first data byte.
2146 1.1 cgd * If data, trim to stay within window,
2147 1.1 cgd * dropping FIN if necessary.
2148 1.1 cgd */
2149 1.83 itojun th->th_seq++;
2150 1.83 itojun if (tlen > tp->rcv_wnd) {
2151 1.83 itojun todrop = tlen - tp->rcv_wnd;
2152 1.1 cgd m_adj(m, -todrop);
2153 1.83 itojun tlen = tp->rcv_wnd;
2154 1.1 cgd tiflags &= ~TH_FIN;
2155 1.284 thorpej tcps = TCP_STAT_GETREF();
2156 1.284 thorpej tcps[TCP_STAT_RCVPACKAFTERWIN]++;
2157 1.284 thorpej tcps[TCP_STAT_RCVBYTEAFTERWIN] += todrop;
2158 1.284 thorpej TCP_STAT_PUTREF();
2159 1.1 cgd }
2160 1.83 itojun tp->snd_wl1 = th->th_seq - 1;
2161 1.83 itojun tp->rcv_up = th->th_seq;
2162 1.1 cgd goto step6;
2163 1.29 thorpej
2164 1.29 thorpej /*
2165 1.29 thorpej * If the state is SYN_RECEIVED:
2166 1.29 thorpej * If seg contains an ACK, but not for our SYN, drop the input
2167 1.29 thorpej * and generate an RST. See page 36, rfc793
2168 1.29 thorpej */
2169 1.29 thorpej case TCPS_SYN_RECEIVED:
2170 1.29 thorpej if ((tiflags & TH_ACK) &&
2171 1.83 itojun (SEQ_LEQ(th->th_ack, tp->iss) ||
2172 1.83 itojun SEQ_GT(th->th_ack, tp->snd_max)))
2173 1.29 thorpej goto dropwithreset;
2174 1.29 thorpej break;
2175 1.1 cgd }
2176 1.1 cgd
2177 1.1 cgd /*
2178 1.385 maxv * From here on, we're dealing with !LISTEN and !SYN_SENT.
2179 1.385 maxv */
2180 1.385 maxv KASSERT(tp->t_state != TCPS_LISTEN &&
2181 1.385 maxv tp->t_state != TCPS_SYN_SENT);
2182 1.385 maxv
2183 1.385 maxv /*
2184 1.389 maxv * RFC1323 PAWS: if we have a timestamp reply on this segment and
2185 1.389 maxv * it's less than ts_recent, drop it.
2186 1.1 cgd */
2187 1.29 thorpej if (opti.ts_present && (tiflags & TH_RST) == 0 && tp->ts_recent &&
2188 1.29 thorpej TSTMP_LT(opti.ts_val, tp->ts_recent)) {
2189 1.9 mycroft /* Check to see if ts_recent is over 24 days old. */
2190 1.217 mycroft if (tcp_now - tp->ts_recent_age > TCP_PAWS_IDLE) {
2191 1.9 mycroft /*
2192 1.9 mycroft * Invalidate ts_recent. If this segment updates
2193 1.9 mycroft * ts_recent, the age will be reset later and ts_recent
2194 1.9 mycroft * will get a valid value. If it does not, setting
2195 1.9 mycroft * ts_recent to zero will at least satisfy the
2196 1.9 mycroft * requirement that zero be placed in the timestamp
2197 1.9 mycroft * echo reply when ts_recent isn't valid. The
2198 1.9 mycroft * age isn't reset until we get a valid ts_recent
2199 1.9 mycroft * because we don't want out-of-order segments to be
2200 1.9 mycroft * dropped when ts_recent is old.
2201 1.9 mycroft */
2202 1.9 mycroft tp->ts_recent = 0;
2203 1.9 mycroft } else {
2204 1.284 thorpej tcps = TCP_STAT_GETREF();
2205 1.284 thorpej tcps[TCP_STAT_RCVDUPPACK]++;
2206 1.284 thorpej tcps[TCP_STAT_RCVDUPBYTE] += tlen;
2207 1.284 thorpej tcps[TCP_STAT_PAWSDROP]++;
2208 1.284 thorpej TCP_STAT_PUTREF();
2209 1.222 jonathan tcp_new_dsack(tp, th->th_seq, tlen);
2210 1.9 mycroft goto dropafterack;
2211 1.9 mycroft }
2212 1.9 mycroft }
2213 1.9 mycroft
2214 1.389 maxv /*
2215 1.389 maxv * Check that at least some bytes of the segment are within the
2216 1.389 maxv * receive window. If segment begins before rcv_nxt, drop leading
2217 1.389 maxv * data (and SYN); if nothing left, just ack.
2218 1.389 maxv */
2219 1.83 itojun todrop = tp->rcv_nxt - th->th_seq;
2220 1.261 thorpej dupseg = false;
2221 1.1 cgd if (todrop > 0) {
2222 1.1 cgd if (tiflags & TH_SYN) {
2223 1.1 cgd tiflags &= ~TH_SYN;
2224 1.83 itojun th->th_seq++;
2225 1.390 maxv tcp_urp_drop(th, 1, &tiflags);
2226 1.1 cgd todrop--;
2227 1.1 cgd }
2228 1.83 itojun if (todrop > tlen ||
2229 1.83 itojun (todrop == tlen && (tiflags & TH_FIN) == 0)) {
2230 1.1 cgd /*
2231 1.193 matt * Any valid FIN or RST must be to the left of the
2232 1.193 matt * window. At this point the FIN or RST must be a
2233 1.193 matt * duplicate or out of sequence; drop it.
2234 1.7 mycroft */
2235 1.193 matt if (tiflags & TH_RST)
2236 1.193 matt goto drop;
2237 1.193 matt tiflags &= ~(TH_FIN|TH_RST);
2238 1.389 maxv
2239 1.7 mycroft /*
2240 1.42 mycroft * Send an ACK to resynchronize and drop any data.
2241 1.42 mycroft * But keep on processing for RST or ACK.
2242 1.1 cgd */
2243 1.7 mycroft tp->t_flags |= TF_ACKNOW;
2244 1.83 itojun todrop = tlen;
2245 1.261 thorpej dupseg = true;
2246 1.284 thorpej tcps = TCP_STAT_GETREF();
2247 1.284 thorpej tcps[TCP_STAT_RCVDUPPACK]++;
2248 1.284 thorpej tcps[TCP_STAT_RCVDUPBYTE] += todrop;
2249 1.284 thorpej TCP_STAT_PUTREF();
2250 1.389 maxv } else if ((tiflags & TH_RST) && th->th_seq != tp->rcv_nxt) {
2251 1.204 matt /*
2252 1.204 matt * Test for reset before adjusting the sequence
2253 1.204 matt * number for overlapping data.
2254 1.204 matt */
2255 1.204 matt goto dropafterack_ratelim;
2256 1.1 cgd } else {
2257 1.284 thorpej tcps = TCP_STAT_GETREF();
2258 1.284 thorpej tcps[TCP_STAT_RCVPARTDUPPACK]++;
2259 1.284 thorpej tcps[TCP_STAT_RCVPARTDUPBYTE] += todrop;
2260 1.284 thorpej TCP_STAT_PUTREF();
2261 1.1 cgd }
2262 1.222 jonathan tcp_new_dsack(tp, th->th_seq, todrop);
2263 1.399 maxv hdroptlen += todrop; /* drop from head afterwards (m_adj) */
2264 1.83 itojun th->th_seq += todrop;
2265 1.83 itojun tlen -= todrop;
2266 1.390 maxv tcp_urp_drop(th, todrop, &tiflags);
2267 1.1 cgd }
2268 1.1 cgd
2269 1.1 cgd /*
2270 1.389 maxv * If new data is received on a connection after the user processes
2271 1.389 maxv * are gone, then RST the other end.
2272 1.1 cgd */
2273 1.1 cgd if ((so->so_state & SS_NOFDREF) &&
2274 1.83 itojun tp->t_state > TCPS_CLOSE_WAIT && tlen) {
2275 1.1 cgd tp = tcp_close(tp);
2276 1.284 thorpej TCP_STATINC(TCP_STAT_RCVAFTERCLOSE);
2277 1.1 cgd goto dropwithreset;
2278 1.1 cgd }
2279 1.1 cgd
2280 1.1 cgd /*
2281 1.389 maxv * If the segment ends after the window, drop trailing data (and
2282 1.389 maxv * PUSH and FIN); if nothing left, just ACK.
2283 1.1 cgd */
2284 1.387 maxv todrop = (th->th_seq + tlen) - (tp->rcv_nxt + tp->rcv_wnd);
2285 1.1 cgd if (todrop > 0) {
2286 1.284 thorpej TCP_STATINC(TCP_STAT_RCVPACKAFTERWIN);
2287 1.83 itojun if (todrop >= tlen) {
2288 1.193 matt /*
2289 1.193 matt * The segment actually starts after the window.
2290 1.193 matt * th->th_seq + tlen - tp->rcv_nxt - tp->rcv_wnd >= tlen
2291 1.193 matt * th->th_seq - tp->rcv_nxt - tp->rcv_wnd >= 0
2292 1.193 matt * th->th_seq >= tp->rcv_nxt + tp->rcv_wnd
2293 1.193 matt */
2294 1.284 thorpej TCP_STATADD(TCP_STAT_RCVBYTEAFTERWIN, tlen);
2295 1.387 maxv
2296 1.1 cgd /*
2297 1.387 maxv * If a new connection request is received while in
2298 1.387 maxv * TIME_WAIT, drop the old connection and start over
2299 1.387 maxv * if the sequence numbers are above the previous
2300 1.387 maxv * ones.
2301 1.387 maxv *
2302 1.387 maxv * NOTE: We need to put the header fields back into
2303 1.387 maxv * network order.
2304 1.1 cgd */
2305 1.387 maxv if ((tiflags & TH_SYN) &&
2306 1.1 cgd tp->t_state == TCPS_TIME_WAIT &&
2307 1.83 itojun SEQ_GT(th->th_seq, tp->rcv_nxt)) {
2308 1.1 cgd tp = tcp_close(tp);
2309 1.280 yamt tcp_fields_to_net(th);
2310 1.397 maxv m_freem(tcp_saveti);
2311 1.397 maxv tcp_saveti = NULL;
2312 1.1 cgd goto findpcb;
2313 1.1 cgd }
2314 1.387 maxv
2315 1.1 cgd /*
2316 1.1 cgd * If window is closed can only take segments at
2317 1.1 cgd * window edge, and have to drop data and PUSH from
2318 1.1 cgd * incoming segments. Continue processing, but
2319 1.1 cgd * remember to ack. Otherwise, drop segment
2320 1.193 matt * and (if not RST) ack.
2321 1.1 cgd */
2322 1.83 itojun if (tp->rcv_wnd == 0 && th->th_seq == tp->rcv_nxt) {
2323 1.395 maxv KASSERT(todrop == tlen);
2324 1.1 cgd tp->t_flags |= TF_ACKNOW;
2325 1.284 thorpej TCP_STATINC(TCP_STAT_RCVWINPROBE);
2326 1.387 maxv } else {
2327 1.1 cgd goto dropafterack;
2328 1.387 maxv }
2329 1.387 maxv } else {
2330 1.284 thorpej TCP_STATADD(TCP_STAT_RCVBYTEAFTERWIN, todrop);
2331 1.387 maxv }
2332 1.1 cgd m_adj(m, -todrop);
2333 1.83 itojun tlen -= todrop;
2334 1.1 cgd tiflags &= ~(TH_PUSH|TH_FIN);
2335 1.1 cgd }
2336 1.1 cgd
2337 1.1 cgd /*
2338 1.9 mycroft * If last ACK falls within this segment's sequence numbers,
2339 1.278 yamt * record the timestamp.
2340 1.278 yamt * NOTE:
2341 1.278 yamt * 1) That the test incorporates suggestions from the latest
2342 1.278 yamt * proposal of the tcplw (at) cray.com list (Braden 1993/04/26).
2343 1.278 yamt * 2) That updating only on newer timestamps interferes with
2344 1.278 yamt * our earlier PAWS tests, so this check should be solely
2345 1.278 yamt * predicated on the sequence space of this segment.
2346 1.278 yamt * 3) That we modify the segment boundary check to be
2347 1.278 yamt * Last.ACK.Sent <= SEG.SEQ + SEG.Len
2348 1.278 yamt * instead of RFC1323's
2349 1.278 yamt * Last.ACK.Sent < SEG.SEQ + SEG.Len,
2350 1.278 yamt * This modified check allows us to overcome RFC1323's
2351 1.278 yamt * limitations as described in Stevens TCP/IP Illustrated
2352 1.278 yamt * Vol. 2 p.869. In such cases, we can still calculate the
2353 1.278 yamt * RTT correctly when RCV.NXT == Last.ACK.Sent.
2354 1.9 mycroft */
2355 1.278 yamt if (opti.ts_present &&
2356 1.83 itojun SEQ_LEQ(th->th_seq, tp->last_ack_sent) &&
2357 1.278 yamt SEQ_LEQ(tp->last_ack_sent, th->th_seq + tlen +
2358 1.389 maxv ((tiflags & (TH_SYN|TH_FIN)) != 0))) {
2359 1.217 mycroft tp->ts_recent_age = tcp_now;
2360 1.29 thorpej tp->ts_recent = opti.ts_val;
2361 1.9 mycroft }
2362 1.9 mycroft
2363 1.9 mycroft /*
2364 1.1 cgd * If the RST bit is set examine the state:
2365 1.385 maxv * RECEIVED state:
2366 1.385 maxv * If passive open, return to LISTEN state.
2367 1.385 maxv * If active open, inform user that connection was refused.
2368 1.385 maxv * ESTABLISHED, FIN_WAIT_1, FIN_WAIT2, CLOSE_WAIT states:
2369 1.385 maxv * Inform user that connection was reset, and close tcb.
2370 1.385 maxv * CLOSING, LAST_ACK, TIME_WAIT states:
2371 1.385 maxv * Close the tcb.
2372 1.1 cgd */
2373 1.194 itojun if (tiflags & TH_RST) {
2374 1.296 christos if (th->th_seq != tp->rcv_nxt)
2375 1.194 itojun goto dropafterack_ratelim;
2376 1.1 cgd
2377 1.194 itojun switch (tp->t_state) {
2378 1.194 itojun case TCPS_SYN_RECEIVED:
2379 1.194 itojun so->so_error = ECONNREFUSED;
2380 1.194 itojun goto close;
2381 1.1 cgd
2382 1.194 itojun case TCPS_ESTABLISHED:
2383 1.194 itojun case TCPS_FIN_WAIT_1:
2384 1.194 itojun case TCPS_FIN_WAIT_2:
2385 1.194 itojun case TCPS_CLOSE_WAIT:
2386 1.194 itojun so->so_error = ECONNRESET;
2387 1.194 itojun close:
2388 1.194 itojun tp->t_state = TCPS_CLOSED;
2389 1.284 thorpej TCP_STATINC(TCP_STAT_DROPS);
2390 1.194 itojun tp = tcp_close(tp);
2391 1.194 itojun goto drop;
2392 1.1 cgd
2393 1.194 itojun case TCPS_CLOSING:
2394 1.194 itojun case TCPS_LAST_ACK:
2395 1.194 itojun case TCPS_TIME_WAIT:
2396 1.194 itojun tp = tcp_close(tp);
2397 1.194 itojun goto drop;
2398 1.194 itojun }
2399 1.1 cgd }
2400 1.1 cgd
2401 1.1 cgd /*
2402 1.193 matt * Since we've covered the SYN-SENT and SYN-RECEIVED states above
2403 1.416 jnemeth * we must be in a synchronized state. RFC793 states (under Reset
2404 1.416 jnemeth * Generation) that any unacceptable segment (an out-of-order SYN
2405 1.193 matt * qualifies) received in a synchronized state must elicit only an
2406 1.193 matt * empty acknowledgment segment ... and the connection remains in
2407 1.193 matt * the same state.
2408 1.1 cgd */
2409 1.195 itojun if (tiflags & TH_SYN) {
2410 1.195 itojun if (tp->rcv_nxt == th->th_seq) {
2411 1.195 itojun tcp_respond(tp, m, m, th, (tcp_seq)0, th->th_ack - 1,
2412 1.195 itojun TH_ACK);
2413 1.195 itojun if (tcp_saveti)
2414 1.195 itojun m_freem(tcp_saveti);
2415 1.195 itojun return;
2416 1.195 itojun }
2417 1.221 perry
2418 1.194 itojun goto dropafterack_ratelim;
2419 1.195 itojun }
2420 1.1 cgd
2421 1.1 cgd /*
2422 1.1 cgd * If the ACK bit is off we drop the segment and return.
2423 1.1 cgd */
2424 1.78 kml if ((tiflags & TH_ACK) == 0) {
2425 1.78 kml if (tp->t_flags & TF_ACKNOW)
2426 1.78 kml goto dropafterack;
2427 1.396 maxv goto drop;
2428 1.78 kml }
2429 1.143 itojun
2430 1.1 cgd /*
2431 1.389 maxv * From here on, we're doing ACK processing.
2432 1.1 cgd */
2433 1.389 maxv
2434 1.1 cgd switch (tp->t_state) {
2435 1.1 cgd /*
2436 1.1 cgd * In SYN_RECEIVED state if the ack ACKs our SYN then enter
2437 1.1 cgd * ESTABLISHED state and continue processing, otherwise
2438 1.1 cgd * send an RST.
2439 1.1 cgd */
2440 1.1 cgd case TCPS_SYN_RECEIVED:
2441 1.83 itojun if (SEQ_GT(tp->snd_una, th->th_ack) ||
2442 1.83 itojun SEQ_GT(th->th_ack, tp->snd_max))
2443 1.1 cgd goto dropwithreset;
2444 1.284 thorpej TCP_STATINC(TCP_STAT_CONNECTS);
2445 1.1 cgd soisconnected(so);
2446 1.32 thorpej tcp_established(tp);
2447 1.9 mycroft /* Do window scaling? */
2448 1.9 mycroft if ((tp->t_flags & (TF_RCVD_SCALE|TF_REQ_SCALE)) ==
2449 1.158 thorpej (TF_RCVD_SCALE|TF_REQ_SCALE)) {
2450 1.9 mycroft tp->snd_scale = tp->requested_s_scale;
2451 1.9 mycroft tp->rcv_scale = tp->request_r_scale;
2452 1.9 mycroft }
2453 1.72 thorpej TCP_REASS_LOCK(tp);
2454 1.386 maxv (void)tcp_reass(tp, NULL, NULL, tlen);
2455 1.83 itojun tp->snd_wl1 = th->th_seq - 1;
2456 1.389 maxv /* FALLTHROUGH */
2457 1.1 cgd
2458 1.1 cgd /*
2459 1.1 cgd * In ESTABLISHED state: drop duplicate ACKs; ACK out of range
2460 1.1 cgd * ACKs. If the ack is in the range
2461 1.83 itojun * tp->snd_una < th->th_ack <= tp->snd_max
2462 1.83 itojun * then advance tp->snd_una to th->th_ack and drop
2463 1.1 cgd * data from the retransmission queue. If this ACK reflects
2464 1.1 cgd * more up to date window information we update our window information.
2465 1.1 cgd */
2466 1.1 cgd case TCPS_ESTABLISHED:
2467 1.1 cgd case TCPS_FIN_WAIT_1:
2468 1.1 cgd case TCPS_FIN_WAIT_2:
2469 1.1 cgd case TCPS_CLOSE_WAIT:
2470 1.1 cgd case TCPS_CLOSING:
2471 1.1 cgd case TCPS_LAST_ACK:
2472 1.1 cgd case TCPS_TIME_WAIT:
2473 1.83 itojun if (SEQ_LEQ(th->th_ack, tp->snd_una)) {
2474 1.218 mycroft if (tlen == 0 && !dupseg && tiwin == tp->snd_wnd) {
2475 1.307 yamt TCP_STATINC(TCP_STAT_RCVDUPACK);
2476 1.1 cgd /*
2477 1.1 cgd * If we have outstanding data (other than
2478 1.1 cgd * a window probe), this is a completely
2479 1.1 cgd * duplicate ack (ie, window info didn't
2480 1.1 cgd * change), the ack is the biggest we've
2481 1.1 cgd * seen and we've seen exactly our rexmt
2482 1.1 cgd * threshhold of them, assume a packet
2483 1.1 cgd * has been dropped and retransmit it.
2484 1.1 cgd * Kludge snd_nxt & the congestion
2485 1.1 cgd * window so we send only this one
2486 1.1 cgd * packet.
2487 1.1 cgd */
2488 1.58 thorpej if (TCP_TIMER_ISARMED(tp, TCPT_REXMT) == 0 ||
2489 1.83 itojun th->th_ack != tp->snd_una)
2490 1.1 cgd tp->t_dupacks = 0;
2491 1.222 jonathan else if (tp->t_partialacks < 0 &&
2492 1.389 maxv (++tp->t_dupacks == tcprexmtthresh ||
2493 1.389 maxv TCP_FACK_FASTRECOV(tp))) {
2494 1.246 rpaulo /*
2495 1.246 rpaulo * Do the fast retransmit, and adjust
2496 1.246 rpaulo * congestion control paramenters.
2497 1.246 rpaulo */
2498 1.246 rpaulo if (tp->t_congctl->fast_retransmit(tp, th)) {
2499 1.246 rpaulo /* False fast retransmit */
2500 1.213 mycroft break;
2501 1.398 maxv }
2502 1.398 maxv goto drop;
2503 1.1 cgd } else if (tp->t_dupacks > tcprexmtthresh) {
2504 1.34 kml tp->snd_cwnd += tp->t_segsz;
2505 1.301 tls KERNEL_LOCK(1, NULL);
2506 1.389 maxv (void)tcp_output(tp);
2507 1.301 tls KERNEL_UNLOCK_ONE(NULL);
2508 1.1 cgd goto drop;
2509 1.1 cgd }
2510 1.218 mycroft } else {
2511 1.218 mycroft /*
2512 1.218 mycroft * If the ack appears to be very old, only
2513 1.218 mycroft * allow data that is in-sequence. This
2514 1.218 mycroft * makes it somewhat more difficult to insert
2515 1.218 mycroft * forged data by guessing sequence numbers.
2516 1.218 mycroft * Sent an ack to try to update the send
2517 1.218 mycroft * sequence number on the other side.
2518 1.218 mycroft */
2519 1.218 mycroft if (tlen && th->th_seq != tp->rcv_nxt &&
2520 1.194 itojun SEQ_LT(th->th_ack,
2521 1.218 mycroft tp->snd_una - tp->max_sndwnd))
2522 1.218 mycroft goto dropafterack;
2523 1.218 mycroft }
2524 1.1 cgd break;
2525 1.1 cgd }
2526 1.1 cgd /*
2527 1.1 cgd * If the congestion window was inflated to account
2528 1.1 cgd * for the other side's cached packets, retract it.
2529 1.1 cgd */
2530 1.330 kefren tp->t_congctl->fast_retransmit_newack(tp, th);
2531 1.330 kefren
2532 1.83 itojun if (SEQ_GT(th->th_ack, tp->snd_max)) {
2533 1.284 thorpej TCP_STATINC(TCP_STAT_RCVACKTOOMUCH);
2534 1.1 cgd goto dropafterack;
2535 1.1 cgd }
2536 1.83 itojun acked = th->th_ack - tp->snd_una;
2537 1.284 thorpej tcps = TCP_STAT_GETREF();
2538 1.284 thorpej tcps[TCP_STAT_RCVACKPACK]++;
2539 1.284 thorpej tcps[TCP_STAT_RCVACKBYTE] += acked;
2540 1.284 thorpej TCP_STAT_PUTREF();
2541 1.1 cgd
2542 1.1 cgd /*
2543 1.9 mycroft * If we have a timestamp reply, update smoothed
2544 1.9 mycroft * round trip time. If no timestamp is present but
2545 1.9 mycroft * transmit timer is running and timed sequence
2546 1.1 cgd * number was acked, update smoothed round trip time.
2547 1.1 cgd * Since we now have an rtt measurement, cancel the
2548 1.1 cgd * timer backoff (cf., Phil Karn's retransmit alg.).
2549 1.1 cgd * Recompute the initial retransmit timer.
2550 1.1 cgd */
2551 1.229 yamt if (ts_rtt)
2552 1.314 gdt tcp_xmit_timer(tp, ts_rtt - 1);
2553 1.128 thorpej else if (tp->t_rtttime && SEQ_GT(th->th_ack, tp->t_rtseq))
2554 1.128 thorpej tcp_xmit_timer(tp, tcp_now - tp->t_rtttime);
2555 1.1 cgd
2556 1.1 cgd /*
2557 1.1 cgd * If all outstanding data is acked, stop retransmit
2558 1.1 cgd * timer and remember to restart (more output or persist).
2559 1.1 cgd * If there is more data to be acked, restart retransmit
2560 1.1 cgd * timer, using current (possibly backed-off) value.
2561 1.1 cgd */
2562 1.83 itojun if (th->th_ack == tp->snd_max) {
2563 1.58 thorpej TCP_TIMER_DISARM(tp, TCPT_REXMT);
2564 1.1 cgd needoutput = 1;
2565 1.58 thorpej } else if (TCP_TIMER_ISARMED(tp, TCPT_PERSIST) == 0)
2566 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_REXMT, tp->t_rxtcur);
2567 1.246 rpaulo
2568 1.1 cgd /*
2569 1.246 rpaulo * New data has been acked, adjust the congestion window.
2570 1.246 rpaulo */
2571 1.248 rpaulo tp->t_congctl->newack(tp, th);
2572 1.246 rpaulo
2573 1.274 dyoung nd6_hint(tp);
2574 1.1 cgd if (acked > so->so_snd.sb_cc) {
2575 1.1 cgd tp->snd_wnd -= so->so_snd.sb_cc;
2576 1.1 cgd sbdrop(&so->so_snd, (int)so->so_snd.sb_cc);
2577 1.1 cgd ourfinisacked = 1;
2578 1.1 cgd } else {
2579 1.186 ragge if (acked > (tp->t_lastoff - tp->t_inoff))
2580 1.186 ragge tp->t_lastm = NULL;
2581 1.1 cgd sbdrop(&so->so_snd, acked);
2582 1.186 ragge tp->t_lastoff -= acked;
2583 1.343 matt if (tp->snd_wnd > acked)
2584 1.343 matt tp->snd_wnd -= acked;
2585 1.343 matt else
2586 1.343 matt tp->snd_wnd = 0;
2587 1.1 cgd ourfinisacked = 0;
2588 1.1 cgd }
2589 1.54 matt sowwakeup(so);
2590 1.231 christos
2591 1.280 yamt icmp_check(tp, th, acked);
2592 1.231 christos
2593 1.213 mycroft tp->snd_una = th->th_ack;
2594 1.222 jonathan if (SEQ_GT(tp->snd_una, tp->snd_fack))
2595 1.222 jonathan tp->snd_fack = tp->snd_una;
2596 1.1 cgd if (SEQ_LT(tp->snd_nxt, tp->snd_una))
2597 1.1 cgd tp->snd_nxt = tp->snd_una;
2598 1.213 mycroft if (SEQ_LT(tp->snd_high, tp->snd_una))
2599 1.213 mycroft tp->snd_high = tp->snd_una;
2600 1.1 cgd
2601 1.1 cgd switch (tp->t_state) {
2602 1.1 cgd
2603 1.1 cgd /*
2604 1.1 cgd * In FIN_WAIT_1 STATE in addition to the processing
2605 1.1 cgd * for the ESTABLISHED state if our FIN is now acknowledged
2606 1.1 cgd * then enter FIN_WAIT_2.
2607 1.1 cgd */
2608 1.1 cgd case TCPS_FIN_WAIT_1:
2609 1.1 cgd if (ourfinisacked) {
2610 1.1 cgd /*
2611 1.1 cgd * If we can't receive any more
2612 1.1 cgd * data, then closing user can proceed.
2613 1.1 cgd * Starting the timer is contrary to the
2614 1.1 cgd * specification, but if we don't get a FIN
2615 1.1 cgd * we'll hang forever.
2616 1.1 cgd */
2617 1.1 cgd if (so->so_state & SS_CANTRCVMORE) {
2618 1.1 cgd soisdisconnected(so);
2619 1.267 christos if (tp->t_maxidle > 0)
2620 1.65 mouse TCP_TIMER_ARM(tp, TCPT_2MSL,
2621 1.267 christos tp->t_maxidle);
2622 1.1 cgd }
2623 1.1 cgd tp->t_state = TCPS_FIN_WAIT_2;
2624 1.1 cgd }
2625 1.1 cgd break;
2626 1.1 cgd
2627 1.1 cgd /*
2628 1.1 cgd * In CLOSING STATE in addition to the processing for
2629 1.1 cgd * the ESTABLISHED state if the ACK acknowledges our FIN
2630 1.1 cgd * then enter the TIME-WAIT state, otherwise ignore
2631 1.1 cgd * the segment.
2632 1.1 cgd */
2633 1.1 cgd case TCPS_CLOSING:
2634 1.1 cgd if (ourfinisacked) {
2635 1.1 cgd tp->t_state = TCPS_TIME_WAIT;
2636 1.1 cgd tcp_canceltimers(tp);
2637 1.312 dyoung TCP_TIMER_ARM(tp, TCPT_2MSL, 2 * tp->t_msl);
2638 1.1 cgd soisdisconnected(so);
2639 1.1 cgd }
2640 1.1 cgd break;
2641 1.1 cgd
2642 1.1 cgd /*
2643 1.1 cgd * In LAST_ACK, we may still be waiting for data to drain
2644 1.1 cgd * and/or to be acked, as well as for the ack of our FIN.
2645 1.1 cgd * If our FIN is now acknowledged, delete the TCB,
2646 1.1 cgd * enter the closed state and return.
2647 1.1 cgd */
2648 1.1 cgd case TCPS_LAST_ACK:
2649 1.1 cgd if (ourfinisacked) {
2650 1.1 cgd tp = tcp_close(tp);
2651 1.1 cgd goto drop;
2652 1.1 cgd }
2653 1.1 cgd break;
2654 1.1 cgd
2655 1.1 cgd /*
2656 1.1 cgd * In TIME_WAIT state the only thing that should arrive
2657 1.1 cgd * is a retransmission of the remote FIN. Acknowledge
2658 1.1 cgd * it and restart the finack timer.
2659 1.1 cgd */
2660 1.1 cgd case TCPS_TIME_WAIT:
2661 1.312 dyoung TCP_TIMER_ARM(tp, TCPT_2MSL, 2 * tp->t_msl);
2662 1.1 cgd goto dropafterack;
2663 1.1 cgd }
2664 1.1 cgd }
2665 1.1 cgd
2666 1.1 cgd step6:
2667 1.1 cgd /*
2668 1.1 cgd * Update window information.
2669 1.1 cgd * Don't look at window if no ACK: TAC's send garbage on first SYN.
2670 1.1 cgd */
2671 1.83 itojun if ((tiflags & TH_ACK) && (SEQ_LT(tp->snd_wl1, th->th_seq) ||
2672 1.239 rpaulo (tp->snd_wl1 == th->th_seq && (SEQ_LT(tp->snd_wl2, th->th_ack) ||
2673 1.239 rpaulo (tp->snd_wl2 == th->th_ack && tiwin > tp->snd_wnd))))) {
2674 1.1 cgd /* keep track of pure window updates */
2675 1.83 itojun if (tlen == 0 &&
2676 1.83 itojun tp->snd_wl2 == th->th_ack && tiwin > tp->snd_wnd)
2677 1.284 thorpej TCP_STATINC(TCP_STAT_RCVWINUPD);
2678 1.9 mycroft tp->snd_wnd = tiwin;
2679 1.83 itojun tp->snd_wl1 = th->th_seq;
2680 1.83 itojun tp->snd_wl2 = th->th_ack;
2681 1.1 cgd if (tp->snd_wnd > tp->max_sndwnd)
2682 1.1 cgd tp->max_sndwnd = tp->snd_wnd;
2683 1.1 cgd needoutput = 1;
2684 1.1 cgd }
2685 1.1 cgd
2686 1.1 cgd /*
2687 1.1 cgd * Process segments with URG.
2688 1.1 cgd */
2689 1.83 itojun if ((tiflags & TH_URG) && th->th_urp &&
2690 1.1 cgd TCPS_HAVERCVDFIN(tp->t_state) == 0) {
2691 1.1 cgd /*
2692 1.1 cgd * This is a kludge, but if we receive and accept
2693 1.1 cgd * random urgent pointers, we'll crash in
2694 1.1 cgd * soreceive. It's hard to imagine someone
2695 1.1 cgd * actually wanting to send this much urgent data.
2696 1.1 cgd */
2697 1.83 itojun if (th->th_urp + so->so_rcv.sb_cc > sb_max) {
2698 1.83 itojun th->th_urp = 0; /* XXX */
2699 1.1 cgd tiflags &= ~TH_URG; /* XXX */
2700 1.1 cgd goto dodata; /* XXX */
2701 1.1 cgd }
2702 1.389 maxv
2703 1.1 cgd /*
2704 1.1 cgd * If this segment advances the known urgent pointer,
2705 1.1 cgd * then mark the data stream. This should not happen
2706 1.1 cgd * in CLOSE_WAIT, CLOSING, LAST_ACK or TIME_WAIT STATES since
2707 1.143 itojun * a FIN has been received from the remote side.
2708 1.1 cgd * In these states we ignore the URG.
2709 1.1 cgd *
2710 1.1 cgd * According to RFC961 (Assigned Protocols),
2711 1.1 cgd * the urgent pointer points to the last octet
2712 1.1 cgd * of urgent data. We continue, however,
2713 1.1 cgd * to consider it to indicate the first octet
2714 1.143 itojun * of data past the urgent section as the original
2715 1.1 cgd * spec states (in one of two places).
2716 1.1 cgd */
2717 1.83 itojun if (SEQ_GT(th->th_seq+th->th_urp, tp->rcv_up)) {
2718 1.83 itojun tp->rcv_up = th->th_seq + th->th_urp;
2719 1.1 cgd so->so_oobmark = so->so_rcv.sb_cc +
2720 1.1 cgd (tp->rcv_up - tp->rcv_nxt) - 1;
2721 1.1 cgd if (so->so_oobmark == 0)
2722 1.1 cgd so->so_state |= SS_RCVATMARK;
2723 1.1 cgd sohasoutofband(so);
2724 1.1 cgd tp->t_oobflags &= ~(TCPOOB_HAVEDATA | TCPOOB_HADDATA);
2725 1.1 cgd }
2726 1.389 maxv
2727 1.1 cgd /*
2728 1.1 cgd * Remove out of band data so doesn't get presented to user.
2729 1.1 cgd * This can happen independent of advancing the URG pointer,
2730 1.1 cgd * but if two URG's are pending at once, some out-of-band
2731 1.1 cgd * data may creep in... ick.
2732 1.1 cgd */
2733 1.385 maxv if (th->th_urp <= (u_int16_t)tlen &&
2734 1.385 maxv (so->so_options & SO_OOBINLINE) == 0)
2735 1.97 itojun tcp_pulloutofband(so, th, m, hdroptlen);
2736 1.389 maxv } else {
2737 1.1 cgd /*
2738 1.1 cgd * If no out of band data is expected,
2739 1.1 cgd * pull receive urgent pointer along
2740 1.1 cgd * with the receive window.
2741 1.1 cgd */
2742 1.1 cgd if (SEQ_GT(tp->rcv_nxt, tp->rcv_up))
2743 1.1 cgd tp->rcv_up = tp->rcv_nxt;
2744 1.389 maxv }
2745 1.389 maxv dodata:
2746 1.1 cgd
2747 1.1 cgd /*
2748 1.1 cgd * Process the segment text, merging it into the TCP sequencing queue,
2749 1.95 simonb * and arranging for acknowledgement of receipt if necessary.
2750 1.1 cgd * This process logically involves adjusting tp->rcv_wnd as data
2751 1.1 cgd * is presented to the user (this happens in tcp_usrreq.c,
2752 1.334 rtr * tcp_rcvd()). If a FIN has already been received on this
2753 1.1 cgd * connection then we just ignore the text.
2754 1.1 cgd */
2755 1.83 itojun if ((tlen || (tiflags & TH_FIN)) &&
2756 1.1 cgd TCPS_HAVERCVDFIN(tp->t_state) == 0) {
2757 1.83 itojun /*
2758 1.399 maxv * Handle the common case:
2759 1.399 maxv * o Segment is the next to be received, and
2760 1.399 maxv * o The queue is empty, and
2761 1.399 maxv * o The connection is established
2762 1.399 maxv * In this case, we avoid calling tcp_reass.
2763 1.399 maxv *
2764 1.399 maxv * tcp_setup_ack: set DELACK for segments received in order,
2765 1.399 maxv * but ack immediately when segments are out of order (so that
2766 1.399 maxv * fast retransmit can work).
2767 1.83 itojun */
2768 1.83 itojun TCP_REASS_LOCK(tp);
2769 1.83 itojun if (th->th_seq == tp->rcv_nxt &&
2770 1.141 matt TAILQ_FIRST(&tp->segq) == NULL &&
2771 1.83 itojun tp->t_state == TCPS_ESTABLISHED) {
2772 1.280 yamt tcp_setup_ack(tp, th);
2773 1.83 itojun tp->rcv_nxt += tlen;
2774 1.83 itojun tiflags = th->th_flags & TH_FIN;
2775 1.284 thorpej tcps = TCP_STAT_GETREF();
2776 1.284 thorpej tcps[TCP_STAT_RCVPACK]++;
2777 1.284 thorpej tcps[TCP_STAT_RCVBYTE] += tlen;
2778 1.284 thorpej TCP_STAT_PUTREF();
2779 1.274 dyoung nd6_hint(tp);
2780 1.389 maxv if (so->so_state & SS_CANTRCVMORE) {
2781 1.154 itojun m_freem(m);
2782 1.389 maxv } else {
2783 1.154 itojun m_adj(m, hdroptlen);
2784 1.154 itojun sbappendstream(&(so)->so_rcv, m);
2785 1.154 itojun }
2786 1.291 tls TCP_REASS_UNLOCK(tp);
2787 1.83 itojun sorwakeup(so);
2788 1.83 itojun } else {
2789 1.97 itojun m_adj(m, hdroptlen);
2790 1.386 maxv tiflags = tcp_reass(tp, th, m, tlen);
2791 1.83 itojun tp->t_flags |= TF_ACKNOW;
2792 1.83 itojun }
2793 1.83 itojun
2794 1.1 cgd /*
2795 1.1 cgd * Note the amount of data that peer has sent into
2796 1.1 cgd * our window, in order to estimate the sender's
2797 1.1 cgd * buffer size.
2798 1.1 cgd */
2799 1.1 cgd len = so->so_rcv.sb_hiwat - (tp->rcv_adv - tp->rcv_nxt);
2800 1.1 cgd } else {
2801 1.1 cgd m_freem(m);
2802 1.83 itojun m = NULL;
2803 1.1 cgd tiflags &= ~TH_FIN;
2804 1.1 cgd }
2805 1.1 cgd
2806 1.1 cgd /*
2807 1.1 cgd * If FIN is received ACK the FIN and let the user know
2808 1.22 mycroft * that the connection is closing. Ignore a FIN received before
2809 1.22 mycroft * the connection is fully established.
2810 1.1 cgd */
2811 1.22 mycroft if ((tiflags & TH_FIN) && TCPS_HAVEESTABLISHED(tp->t_state)) {
2812 1.1 cgd if (TCPS_HAVERCVDFIN(tp->t_state) == 0) {
2813 1.1 cgd socantrcvmore(so);
2814 1.1 cgd tp->t_flags |= TF_ACKNOW;
2815 1.1 cgd tp->rcv_nxt++;
2816 1.1 cgd }
2817 1.1 cgd switch (tp->t_state) {
2818 1.1 cgd
2819 1.1 cgd /*
2820 1.22 mycroft * In ESTABLISHED STATE enter the CLOSE_WAIT state.
2821 1.1 cgd */
2822 1.1 cgd case TCPS_ESTABLISHED:
2823 1.1 cgd tp->t_state = TCPS_CLOSE_WAIT;
2824 1.1 cgd break;
2825 1.1 cgd
2826 1.1 cgd /*
2827 1.1 cgd * If still in FIN_WAIT_1 STATE FIN has not been acked so
2828 1.1 cgd * enter the CLOSING state.
2829 1.1 cgd */
2830 1.1 cgd case TCPS_FIN_WAIT_1:
2831 1.1 cgd tp->t_state = TCPS_CLOSING;
2832 1.1 cgd break;
2833 1.1 cgd
2834 1.1 cgd /*
2835 1.1 cgd * In FIN_WAIT_2 state enter the TIME_WAIT state,
2836 1.143 itojun * starting the time-wait timer, turning off the other
2837 1.1 cgd * standard timers.
2838 1.1 cgd */
2839 1.1 cgd case TCPS_FIN_WAIT_2:
2840 1.1 cgd tp->t_state = TCPS_TIME_WAIT;
2841 1.1 cgd tcp_canceltimers(tp);
2842 1.312 dyoung TCP_TIMER_ARM(tp, TCPT_2MSL, 2 * tp->t_msl);
2843 1.1 cgd soisdisconnected(so);
2844 1.1 cgd break;
2845 1.1 cgd
2846 1.1 cgd /*
2847 1.1 cgd * In TIME_WAIT state restart the 2 MSL time_wait timer.
2848 1.1 cgd */
2849 1.1 cgd case TCPS_TIME_WAIT:
2850 1.312 dyoung TCP_TIMER_ARM(tp, TCPT_2MSL, 2 * tp->t_msl);
2851 1.1 cgd break;
2852 1.1 cgd }
2853 1.1 cgd }
2854 1.127 abs #ifdef TCP_DEBUG
2855 1.127 abs if (so->so_options & SO_DEBUG)
2856 1.83 itojun tcp_trace(TA_INPUT, ostate, tp, tcp_saveti, 0);
2857 1.127 abs #endif
2858 1.1 cgd
2859 1.1 cgd /*
2860 1.1 cgd * Return any desired output.
2861 1.1 cgd */
2862 1.222 jonathan if (needoutput || (tp->t_flags & TF_ACKNOW)) {
2863 1.301 tls KERNEL_LOCK(1, NULL);
2864 1.389 maxv (void)tcp_output(tp);
2865 1.301 tls KERNEL_UNLOCK_ONE(NULL);
2866 1.222 jonathan }
2867 1.89 itojun if (tcp_saveti)
2868 1.89 itojun m_freem(tcp_saveti);
2869 1.312 dyoung
2870 1.312 dyoung if (tp->t_state == TCPS_TIME_WAIT
2871 1.312 dyoung && (so->so_state & SS_NOFDREF)
2872 1.312 dyoung && (tp->t_inpcb || af != AF_INET)
2873 1.312 dyoung && (tp->t_in6pcb || af != AF_INET6)
2874 1.312 dyoung && ((af == AF_INET ? tcp4_vtw_enable : tcp6_vtw_enable) & 1) != 0
2875 1.312 dyoung && TAILQ_EMPTY(&tp->segq)
2876 1.312 dyoung && vtw_add(af, tp)) {
2877 1.312 dyoung ;
2878 1.312 dyoung }
2879 1.1 cgd return;
2880 1.35 thorpej
2881 1.35 thorpej badsyn:
2882 1.35 thorpej /*
2883 1.35 thorpej * Received a bad SYN. Increment counters and dropwithreset.
2884 1.35 thorpej */
2885 1.284 thorpej TCP_STATINC(TCP_STAT_BADSYN);
2886 1.35 thorpej tp = NULL;
2887 1.35 thorpej goto dropwithreset;
2888 1.1 cgd
2889 1.1 cgd dropafterack:
2890 1.1 cgd /*
2891 1.1 cgd * Generate an ACK dropping incoming segment if it occupies
2892 1.1 cgd * sequence space, where the ACK reflects our state.
2893 1.1 cgd */
2894 1.1 cgd if (tiflags & TH_RST)
2895 1.1 cgd goto drop;
2896 1.194 itojun goto dropafterack2;
2897 1.194 itojun
2898 1.194 itojun dropafterack_ratelim:
2899 1.194 itojun /*
2900 1.194 itojun * We may want to rate-limit ACKs against SYN/RST attack.
2901 1.194 itojun */
2902 1.194 itojun if (ppsratecheck(&tcp_ackdrop_ppslim_last, &tcp_ackdrop_ppslim_count,
2903 1.194 itojun tcp_ackdrop_ppslim) == 0) {
2904 1.194 itojun /* XXX stat */
2905 1.194 itojun goto drop;
2906 1.194 itojun }
2907 1.194 itojun
2908 1.194 itojun dropafterack2:
2909 1.1 cgd m_freem(m);
2910 1.1 cgd tp->t_flags |= TF_ACKNOW;
2911 1.301 tls KERNEL_LOCK(1, NULL);
2912 1.389 maxv (void)tcp_output(tp);
2913 1.301 tls KERNEL_UNLOCK_ONE(NULL);
2914 1.89 itojun if (tcp_saveti)
2915 1.89 itojun m_freem(tcp_saveti);
2916 1.1 cgd return;
2917 1.1 cgd
2918 1.104 thorpej dropwithreset_ratelim:
2919 1.104 thorpej /*
2920 1.104 thorpej * We may want to rate-limit RSTs in certain situations,
2921 1.104 thorpej * particularly if we are sending an RST in response to
2922 1.104 thorpej * an attempt to connect to or otherwise communicate with
2923 1.104 thorpej * a port for which we have no socket.
2924 1.104 thorpej */
2925 1.116 itojun if (ppsratecheck(&tcp_rst_ppslim_last, &tcp_rst_ppslim_count,
2926 1.116 itojun tcp_rst_ppslim) == 0) {
2927 1.104 thorpej /* XXX stat */
2928 1.104 thorpej goto drop;
2929 1.104 thorpej }
2930 1.104 thorpej
2931 1.1 cgd dropwithreset:
2932 1.1 cgd /*
2933 1.1 cgd * Generate a RST, dropping incoming segment.
2934 1.1 cgd * Make ACK acceptable to originator of segment.
2935 1.1 cgd */
2936 1.103 thorpej if (tiflags & TH_RST)
2937 1.137 christos goto drop;
2938 1.376 maxv if (tiflags & TH_ACK) {
2939 1.86 itojun (void)tcp_respond(tp, m, m, th, (tcp_seq)0, th->th_ack, TH_RST);
2940 1.376 maxv } else {
2941 1.1 cgd if (tiflags & TH_SYN)
2942 1.83 itojun tlen++;
2943 1.86 itojun (void)tcp_respond(tp, m, m, th, th->th_seq + tlen, (tcp_seq)0,
2944 1.1 cgd TH_RST|TH_ACK);
2945 1.1 cgd }
2946 1.89 itojun if (tcp_saveti)
2947 1.89 itojun m_freem(tcp_saveti);
2948 1.1 cgd return;
2949 1.1 cgd
2950 1.125 thorpej badcsum:
2951 1.1 cgd drop:
2952 1.1 cgd /*
2953 1.1 cgd * Drop space held by incoming segment and return.
2954 1.1 cgd */
2955 1.83 itojun if (tp) {
2956 1.83 itojun if (tp->t_inpcb)
2957 1.83 itojun so = tp->t_inpcb->inp_socket;
2958 1.83 itojun #ifdef INET6
2959 1.83 itojun else if (tp->t_in6pcb)
2960 1.83 itojun so = tp->t_in6pcb->in6p_socket;
2961 1.83 itojun #endif
2962 1.83 itojun else
2963 1.83 itojun so = NULL;
2964 1.127 abs #ifdef TCP_DEBUG
2965 1.89 itojun if (so && (so->so_options & SO_DEBUG) != 0)
2966 1.83 itojun tcp_trace(TA_DROP, ostate, tp, tcp_saveti, 0);
2967 1.127 abs #endif
2968 1.83 itojun }
2969 1.89 itojun if (tcp_saveti)
2970 1.89 itojun m_freem(tcp_saveti);
2971 1.1 cgd m_freem(m);
2972 1.1 cgd return;
2973 1.1 cgd }
2974 1.1 cgd
2975 1.206 itojun #ifdef TCP_SIGNATURE
2976 1.206 itojun int
2977 1.262 christos tcp_signature_apply(void *fstate, void *data, u_int len)
2978 1.206 itojun {
2979 1.206 itojun
2980 1.206 itojun MD5Update(fstate, (u_char *)data, len);
2981 1.206 itojun return (0);
2982 1.206 itojun }
2983 1.206 itojun
2984 1.206 itojun struct secasvar *
2985 1.379 maxv tcp_signature_getsav(struct mbuf *m)
2986 1.206 itojun {
2987 1.206 itojun struct ip *ip;
2988 1.206 itojun struct ip6_hdr *ip6;
2989 1.206 itojun
2990 1.206 itojun ip = mtod(m, struct ip *);
2991 1.206 itojun switch (ip->ip_v) {
2992 1.206 itojun case 4:
2993 1.206 itojun ip = mtod(m, struct ip *);
2994 1.206 itojun ip6 = NULL;
2995 1.206 itojun break;
2996 1.206 itojun case 6:
2997 1.206 itojun ip = NULL;
2998 1.206 itojun ip6 = mtod(m, struct ip6_hdr *);
2999 1.206 itojun break;
3000 1.206 itojun default:
3001 1.206 itojun return (NULL);
3002 1.206 itojun }
3003 1.206 itojun
3004 1.326 christos #ifdef IPSEC
3005 1.351 christos union sockaddr_union dst;
3006 1.332 christos
3007 1.351 christos /* Extract the destination from the IP header in the mbuf. */
3008 1.351 christos memset(&dst, 0, sizeof(union sockaddr_union));
3009 1.351 christos if (ip != NULL) {
3010 1.351 christos dst.sa.sa_len = sizeof(struct sockaddr_in);
3011 1.351 christos dst.sa.sa_family = AF_INET;
3012 1.351 christos dst.sin.sin_addr = ip->ip_dst;
3013 1.351 christos } else {
3014 1.351 christos dst.sa.sa_len = sizeof(struct sockaddr_in6);
3015 1.351 christos dst.sa.sa_family = AF_INET6;
3016 1.351 christos dst.sin6.sin6_addr = ip6->ip6_dst;
3017 1.260 degroote }
3018 1.351 christos
3019 1.351 christos /*
3020 1.351 christos * Look up an SADB entry which matches the address of the peer.
3021 1.351 christos */
3022 1.359 ozaki return KEY_LOOKUP_SA(&dst, IPPROTO_TCP, htonl(TCP_SIG_SPI), 0, 0);
3023 1.351 christos #else
3024 1.333 rmind return NULL;
3025 1.206 itojun #endif
3026 1.206 itojun }
3027 1.206 itojun
3028 1.206 itojun int
3029 1.206 itojun tcp_signature(struct mbuf *m, struct tcphdr *th, int thoff,
3030 1.206 itojun struct secasvar *sav, char *sig)
3031 1.206 itojun {
3032 1.206 itojun MD5_CTX ctx;
3033 1.206 itojun struct ip *ip;
3034 1.206 itojun struct ipovly *ipovly;
3035 1.337 rtr #ifdef INET6
3036 1.206 itojun struct ip6_hdr *ip6;
3037 1.337 rtr struct ip6_hdr_pseudo ip6pseudo;
3038 1.388 maxv #endif
3039 1.206 itojun struct ippseudo ippseudo;
3040 1.206 itojun struct tcphdr th0;
3041 1.208 itojun int l, tcphdrlen;
3042 1.206 itojun
3043 1.206 itojun if (sav == NULL)
3044 1.206 itojun return (-1);
3045 1.206 itojun
3046 1.208 itojun tcphdrlen = th->th_off * 4;
3047 1.208 itojun
3048 1.206 itojun switch (mtod(m, struct ip *)->ip_v) {
3049 1.206 itojun case 4:
3050 1.337 rtr MD5Init(&ctx);
3051 1.206 itojun ip = mtod(m, struct ip *);
3052 1.206 itojun memset(&ippseudo, 0, sizeof(ippseudo));
3053 1.206 itojun ipovly = (struct ipovly *)ip;
3054 1.206 itojun ippseudo.ippseudo_src = ipovly->ih_src;
3055 1.206 itojun ippseudo.ippseudo_dst = ipovly->ih_dst;
3056 1.206 itojun ippseudo.ippseudo_pad = 0;
3057 1.206 itojun ippseudo.ippseudo_p = IPPROTO_TCP;
3058 1.206 itojun ippseudo.ippseudo_len = htons(m->m_pkthdr.len - thoff);
3059 1.206 itojun MD5Update(&ctx, (char *)&ippseudo, sizeof(ippseudo));
3060 1.337 rtr break;
3061 1.337 rtr #if INET6
3062 1.337 rtr case 6:
3063 1.337 rtr MD5Init(&ctx);
3064 1.337 rtr ip6 = mtod(m, struct ip6_hdr *);
3065 1.206 itojun memset(&ip6pseudo, 0, sizeof(ip6pseudo));
3066 1.206 itojun ip6pseudo.ip6ph_src = ip6->ip6_src;
3067 1.206 itojun in6_clearscope(&ip6pseudo.ip6ph_src);
3068 1.206 itojun ip6pseudo.ip6ph_dst = ip6->ip6_dst;
3069 1.206 itojun in6_clearscope(&ip6pseudo.ip6ph_dst);
3070 1.206 itojun ip6pseudo.ip6ph_len = htons(m->m_pkthdr.len - thoff);
3071 1.206 itojun ip6pseudo.ip6ph_nxt = IPPROTO_TCP;
3072 1.206 itojun MD5Update(&ctx, (char *)&ip6pseudo, sizeof(ip6pseudo));
3073 1.337 rtr break;
3074 1.388 maxv #endif
3075 1.337 rtr default:
3076 1.337 rtr return (-1);
3077 1.206 itojun }
3078 1.206 itojun
3079 1.206 itojun th0 = *th;
3080 1.206 itojun th0.th_sum = 0;
3081 1.206 itojun MD5Update(&ctx, (char *)&th0, sizeof(th0));
3082 1.206 itojun
3083 1.208 itojun l = m->m_pkthdr.len - thoff - tcphdrlen;
3084 1.206 itojun if (l > 0)
3085 1.208 itojun m_apply(m, thoff + tcphdrlen,
3086 1.208 itojun m->m_pkthdr.len - thoff - tcphdrlen,
3087 1.206 itojun tcp_signature_apply, &ctx);
3088 1.206 itojun
3089 1.206 itojun MD5Update(&ctx, _KEYBUF(sav->key_auth), _KEYLEN(sav->key_auth));
3090 1.206 itojun MD5Final(sig, &ctx);
3091 1.206 itojun
3092 1.206 itojun return (0);
3093 1.206 itojun }
3094 1.206 itojun #endif
3095 1.206 itojun
3096 1.308 yamt /*
3097 1.389 maxv * Parse and process tcp options.
3098 1.308 yamt *
3099 1.389 maxv * Returns -1 if this segment should be dropped. (eg. wrong signature)
3100 1.389 maxv * Otherwise returns 0.
3101 1.308 yamt */
3102 1.254 yamt static int
3103 1.375 maxv tcp_dooptions(struct tcpcb *tp, const u_char *cp, int cnt, struct tcphdr *th,
3104 1.255 christos struct mbuf *m, int toff, struct tcp_opt_info *oi)
3105 1.1 cgd {
3106 1.12 cgd u_int16_t mss;
3107 1.206 itojun int opt, optlen = 0;
3108 1.206 itojun #ifdef TCP_SIGNATURE
3109 1.262 christos void *sigp = NULL;
3110 1.206 itojun char sigbuf[TCP_SIGLEN];
3111 1.206 itojun struct secasvar *sav = NULL;
3112 1.206 itojun #endif
3113 1.1 cgd
3114 1.206 itojun for (; cp && cnt > 0; cnt -= optlen, cp += optlen) {
3115 1.1 cgd opt = cp[0];
3116 1.1 cgd if (opt == TCPOPT_EOL)
3117 1.1 cgd break;
3118 1.1 cgd if (opt == TCPOPT_NOP)
3119 1.1 cgd optlen = 1;
3120 1.1 cgd else {
3121 1.113 itojun if (cnt < 2)
3122 1.113 itojun break;
3123 1.1 cgd optlen = cp[1];
3124 1.113 itojun if (optlen < 2 || optlen > cnt)
3125 1.1 cgd break;
3126 1.1 cgd }
3127 1.1 cgd switch (opt) {
3128 1.1 cgd
3129 1.1 cgd default:
3130 1.1 cgd continue;
3131 1.1 cgd
3132 1.1 cgd case TCPOPT_MAXSEG:
3133 1.9 mycroft if (optlen != TCPOLEN_MAXSEG)
3134 1.1 cgd continue;
3135 1.83 itojun if (!(th->th_flags & TH_SYN))
3136 1.1 cgd continue;
3137 1.234 christos if (TCPS_HAVERCVDSYN(tp->t_state))
3138 1.234 christos continue;
3139 1.387 maxv memcpy(&mss, cp + 2, sizeof(mss));
3140 1.29 thorpej oi->maxseg = ntohs(mss);
3141 1.1 cgd break;
3142 1.9 mycroft
3143 1.9 mycroft case TCPOPT_WINDOW:
3144 1.9 mycroft if (optlen != TCPOLEN_WINDOW)
3145 1.9 mycroft continue;
3146 1.83 itojun if (!(th->th_flags & TH_SYN))
3147 1.9 mycroft continue;
3148 1.234 christos if (TCPS_HAVERCVDSYN(tp->t_state))
3149 1.234 christos continue;
3150 1.9 mycroft tp->t_flags |= TF_RCVD_SCALE;
3151 1.52 thorpej tp->requested_s_scale = cp[2];
3152 1.52 thorpej if (tp->requested_s_scale > TCP_MAX_WINSHIFT) {
3153 1.335 christos char buf[INET6_ADDRSTRLEN];
3154 1.335 christos struct ip *ip = mtod(m, struct ip *);
3155 1.335 christos #ifdef INET6
3156 1.335 christos struct ip6_hdr *ip6 = mtod(m, struct ip6_hdr *);
3157 1.335 christos #endif
3158 1.403 maxv
3159 1.403 maxv switch (ip->ip_v) {
3160 1.403 maxv case 4:
3161 1.335 christos in_print(buf, sizeof(buf),
3162 1.335 christos &ip->ip_src);
3163 1.403 maxv break;
3164 1.83 itojun #ifdef INET6
3165 1.403 maxv case 6:
3166 1.335 christos in6_print(buf, sizeof(buf),
3167 1.335 christos &ip6->ip6_src);
3168 1.403 maxv break;
3169 1.83 itojun #endif
3170 1.403 maxv default:
3171 1.335 christos strlcpy(buf, "(unknown)", sizeof(buf));
3172 1.403 maxv break;
3173 1.403 maxv }
3174 1.403 maxv
3175 1.83 itojun log(LOG_ERR, "TCP: invalid wscale %d from %s, "
3176 1.83 itojun "assuming %d\n",
3177 1.335 christos tp->requested_s_scale, buf,
3178 1.83 itojun TCP_MAX_WINSHIFT);
3179 1.52 thorpej tp->requested_s_scale = TCP_MAX_WINSHIFT;
3180 1.52 thorpej }
3181 1.9 mycroft break;
3182 1.9 mycroft
3183 1.9 mycroft case TCPOPT_TIMESTAMP:
3184 1.9 mycroft if (optlen != TCPOLEN_TIMESTAMP)
3185 1.9 mycroft continue;
3186 1.32 thorpej oi->ts_present = 1;
3187 1.387 maxv memcpy(&oi->ts_val, cp + 2, sizeof(oi->ts_val));
3188 1.29 thorpej NTOHL(oi->ts_val);
3189 1.387 maxv memcpy(&oi->ts_ecr, cp + 6, sizeof(oi->ts_ecr));
3190 1.29 thorpej NTOHL(oi->ts_ecr);
3191 1.9 mycroft
3192 1.234 christos if (!(th->th_flags & TH_SYN))
3193 1.234 christos continue;
3194 1.234 christos if (TCPS_HAVERCVDSYN(tp->t_state))
3195 1.234 christos continue;
3196 1.143 itojun /*
3197 1.9 mycroft * A timestamp received in a SYN makes
3198 1.9 mycroft * it ok to send timestamp requests and replies.
3199 1.9 mycroft */
3200 1.234 christos tp->t_flags |= TF_RCVD_TSTMP;
3201 1.234 christos tp->ts_recent = oi->ts_val;
3202 1.234 christos tp->ts_recent_age = tcp_now;
3203 1.230 christos break;
3204 1.230 christos
3205 1.54 matt case TCPOPT_SACK_PERMITTED:
3206 1.54 matt if (optlen != TCPOLEN_SACK_PERMITTED)
3207 1.54 matt continue;
3208 1.83 itojun if (!(th->th_flags & TH_SYN))
3209 1.54 matt continue;
3210 1.234 christos if (TCPS_HAVERCVDSYN(tp->t_state))
3211 1.234 christos continue;
3212 1.222 jonathan if (tcp_do_sack) {
3213 1.222 jonathan tp->t_flags |= TF_SACK_PERMIT;
3214 1.222 jonathan tp->t_flags |= TF_WILL_SACK;
3215 1.222 jonathan }
3216 1.54 matt break;
3217 1.54 matt
3218 1.54 matt case TCPOPT_SACK:
3219 1.222 jonathan tcp_sack_option(tp, th, cp, optlen);
3220 1.9 mycroft break;
3221 1.201 jonathan #ifdef TCP_SIGNATURE
3222 1.201 jonathan case TCPOPT_SIGNATURE:
3223 1.201 jonathan if (optlen != TCPOLEN_SIGNATURE)
3224 1.201 jonathan continue;
3225 1.402 maxv if (sigp &&
3226 1.402 maxv !consttime_memequal(sigp, cp + 2, TCP_SIGLEN))
3227 1.206 itojun return (-1);
3228 1.206 itojun
3229 1.206 itojun sigp = sigbuf;
3230 1.206 itojun memcpy(sigbuf, cp + 2, TCP_SIGLEN);
3231 1.206 itojun tp->t_flags |= TF_SIGNATURE;
3232 1.201 jonathan break;
3233 1.201 jonathan #endif
3234 1.1 cgd }
3235 1.1 cgd }
3236 1.206 itojun
3237 1.327 christos #ifndef TCP_SIGNATURE
3238 1.327 christos return 0;
3239 1.327 christos #else
3240 1.206 itojun if (tp->t_flags & TF_SIGNATURE) {
3241 1.379 maxv sav = tcp_signature_getsav(m);
3242 1.206 itojun if (sav == NULL && tp->t_state == TCPS_LISTEN)
3243 1.206 itojun return (-1);
3244 1.206 itojun }
3245 1.206 itojun
3246 1.327 christos if ((sigp ? TF_SIGNATURE : 0) ^ (tp->t_flags & TF_SIGNATURE))
3247 1.327 christos goto out;
3248 1.206 itojun
3249 1.206 itojun if (sigp) {
3250 1.206 itojun char sig[TCP_SIGLEN];
3251 1.206 itojun
3252 1.280 yamt tcp_fields_to_net(th);
3253 1.206 itojun if (tcp_signature(m, th, toff, sav, sig) < 0) {
3254 1.280 yamt tcp_fields_to_host(th);
3255 1.327 christos goto out;
3256 1.206 itojun }
3257 1.280 yamt tcp_fields_to_host(th);
3258 1.206 itojun
3259 1.402 maxv if (!consttime_memequal(sig, sigp, TCP_SIGLEN)) {
3260 1.284 thorpej TCP_STATINC(TCP_STAT_BADSIG);
3261 1.327 christos goto out;
3262 1.206 itojun } else
3263 1.284 thorpej TCP_STATINC(TCP_STAT_GOODSIG);
3264 1.206 itojun
3265 1.206 itojun key_sa_recordxfer(sav, m);
3266 1.360 ozaki KEY_SA_UNREF(&sav);
3267 1.206 itojun }
3268 1.327 christos return 0;
3269 1.327 christos out:
3270 1.327 christos if (sav != NULL)
3271 1.360 ozaki KEY_SA_UNREF(&sav);
3272 1.327 christos return -1;
3273 1.206 itojun #endif
3274 1.1 cgd }
3275 1.1 cgd
3276 1.1 cgd /*
3277 1.1 cgd * Pull out of band byte out of a segment so
3278 1.1 cgd * it doesn't appear in the user's data queue.
3279 1.1 cgd * It is still reflected in the segment length for
3280 1.1 cgd * sequencing purposes.
3281 1.1 cgd */
3282 1.5 mycroft void
3283 1.220 perry tcp_pulloutofband(struct socket *so, struct tcphdr *th,
3284 1.220 perry struct mbuf *m, int off)
3285 1.1 cgd {
3286 1.97 itojun int cnt = off + th->th_urp - 1;
3287 1.143 itojun
3288 1.1 cgd while (cnt >= 0) {
3289 1.1 cgd if (m->m_len > cnt) {
3290 1.262 christos char *cp = mtod(m, char *) + cnt;
3291 1.1 cgd struct tcpcb *tp = sototcpcb(so);
3292 1.1 cgd
3293 1.1 cgd tp->t_iobc = *cp;
3294 1.1 cgd tp->t_oobflags |= TCPOOB_HAVEDATA;
3295 1.387 maxv memmove(cp, cp + 1, (unsigned)(m->m_len - cnt - 1));
3296 1.1 cgd m->m_len--;
3297 1.1 cgd return;
3298 1.1 cgd }
3299 1.1 cgd cnt -= m->m_len;
3300 1.1 cgd m = m->m_next;
3301 1.387 maxv if (m == NULL)
3302 1.1 cgd break;
3303 1.1 cgd }
3304 1.1 cgd panic("tcp_pulloutofband");
3305 1.1 cgd }
3306 1.1 cgd
3307 1.1 cgd /*
3308 1.1 cgd * Collect new round-trip time estimate
3309 1.1 cgd * and update averages and current timeout.
3310 1.309 gdt *
3311 1.309 gdt * rtt is in units of slow ticks (typically 500 ms) -- essentially the
3312 1.309 gdt * difference of two timestamps.
3313 1.1 cgd */
3314 1.5 mycroft void
3315 1.220 perry tcp_xmit_timer(struct tcpcb *tp, uint32_t rtt)
3316 1.1 cgd {
3317 1.128 thorpej int32_t delta;
3318 1.1 cgd
3319 1.284 thorpej TCP_STATINC(TCP_STAT_RTTUPDATED);
3320 1.1 cgd if (tp->t_srtt != 0) {
3321 1.1 cgd /*
3322 1.309 gdt * Compute the amount to add to srtt for smoothing,
3323 1.309 gdt * *alpha, or 2^(-TCP_RTT_SHIFT). Because
3324 1.309 gdt * srtt is stored in 1/32 slow ticks, we conceptually
3325 1.309 gdt * shift left 5 bits, subtract srtt to get the
3326 1.309 gdt * diference, and then shift right by TCP_RTT_SHIFT
3327 1.309 gdt * (3) to obtain 1/8 of the difference.
3328 1.1 cgd */
3329 1.16 mycroft delta = (rtt << 2) - (tp->t_srtt >> TCP_RTT_SHIFT);
3330 1.309 gdt /*
3331 1.309 gdt * This can never happen, because delta's lowest
3332 1.309 gdt * possible value is 1/8 of t_srtt. But if it does,
3333 1.309 gdt * set srtt to some reasonable value, here chosen
3334 1.309 gdt * as 1/8 tick.
3335 1.309 gdt */
3336 1.1 cgd if ((tp->t_srtt += delta) <= 0)
3337 1.27 mycroft tp->t_srtt = 1 << 2;
3338 1.1 cgd /*
3339 1.309 gdt * RFC2988 requires that rttvar be updated first.
3340 1.309 gdt * This code is compliant because "delta" is the old
3341 1.309 gdt * srtt minus the new observation (scaled).
3342 1.309 gdt *
3343 1.309 gdt * RFC2988 says:
3344 1.309 gdt * rttvar = (1-beta) * rttvar + beta * |srtt-observed|
3345 1.309 gdt *
3346 1.309 gdt * delta is in units of 1/32 ticks, and has then been
3347 1.309 gdt * divided by 8. This is equivalent to being in 1/16s
3348 1.309 gdt * units and divided by 4. Subtract from it 1/4 of
3349 1.309 gdt * the existing rttvar to form the (signed) amount to
3350 1.309 gdt * adjust.
3351 1.1 cgd */
3352 1.1 cgd if (delta < 0)
3353 1.1 cgd delta = -delta;
3354 1.1 cgd delta -= (tp->t_rttvar >> TCP_RTTVAR_SHIFT);
3355 1.309 gdt /*
3356 1.309 gdt * As with srtt, this should never happen. There is
3357 1.309 gdt * no support in RFC2988 for this operation. But 1/4s
3358 1.310 wiz * as rttvar when faced with something arguably wrong
3359 1.309 gdt * is ok.
3360 1.309 gdt */
3361 1.1 cgd if ((tp->t_rttvar += delta) <= 0)
3362 1.27 mycroft tp->t_rttvar = 1 << 2;
3363 1.312 dyoung
3364 1.312 dyoung /*
3365 1.312 dyoung * If srtt exceeds .01 second, ensure we use the 'remote' MSL
3366 1.312 dyoung * Problem is: it doesn't work. Disabled by defaulting
3367 1.312 dyoung * tcp_rttlocal to 0; see corresponding code in
3368 1.312 dyoung * tcp_subr that selects local vs remote in a different way.
3369 1.312 dyoung *
3370 1.312 dyoung * The static branch prediction hint here should be removed
3371 1.312 dyoung * when the rtt estimator is fixed and the rtt_enable code
3372 1.312 dyoung * is turned back on.
3373 1.312 dyoung */
3374 1.312 dyoung if (__predict_false(tcp_rttlocal) && tcp_msl_enable
3375 1.312 dyoung && tp->t_srtt > tcp_msl_remote_threshold
3376 1.312 dyoung && tp->t_msl < tcp_msl_remote) {
3377 1.415 riastrad tp->t_msl = MIN(tcp_msl_remote, TCP_MAXMSL);
3378 1.312 dyoung }
3379 1.1 cgd } else {
3380 1.143 itojun /*
3381 1.309 gdt * This is the first measurement. Per RFC2988, 2.2,
3382 1.309 gdt * set rtt=R and srtt=R/2.
3383 1.309 gdt * For srtt, storage representation is 1/32 ticks,
3384 1.309 gdt * so shift left by 5.
3385 1.310 wiz * For rttvar, storage representation is 1/16 ticks,
3386 1.309 gdt * So shift left by 4, but then right by 1 to halve.
3387 1.1 cgd */
3388 1.16 mycroft tp->t_srtt = rtt << (TCP_RTT_SHIFT + 2);
3389 1.16 mycroft tp->t_rttvar = rtt << (TCP_RTTVAR_SHIFT + 2 - 1);
3390 1.1 cgd }
3391 1.128 thorpej tp->t_rtttime = 0;
3392 1.1 cgd tp->t_rxtshift = 0;
3393 1.1 cgd
3394 1.1 cgd /*
3395 1.1 cgd * the retransmit should happen at rtt + 4 * rttvar.
3396 1.1 cgd * Because of the way we do the smoothing, srtt and rttvar
3397 1.1 cgd * will each average +1/2 tick of bias. When we compute
3398 1.1 cgd * the retransmit timer, we want 1/2 tick of rounding and
3399 1.1 cgd * 1 extra tick because of +-1/2 tick uncertainty in the
3400 1.1 cgd * firing of the timer. The bias will give us exactly the
3401 1.1 cgd * 1.5 tick we need. But, because the bias is
3402 1.1 cgd * statistical, we have to test that we don't drop below
3403 1.1 cgd * the minimum feasible timer (which is 2 ticks).
3404 1.1 cgd */
3405 1.128 thorpej TCPT_RANGESET(tp->t_rxtcur, TCP_REXMTVAL(tp),
3406 1.409 riastrad uimax(tp->t_rttmin, rtt + 2), TCPTV_REXMTMAX);
3407 1.143 itojun
3408 1.1 cgd /*
3409 1.1 cgd * We received an ack for a packet that wasn't retransmitted;
3410 1.1 cgd * it is probably safe to discard any error indications we've
3411 1.1 cgd * received recently. This isn't quite right, but close enough
3412 1.1 cgd * for now (a route might have failed after we sent a segment,
3413 1.1 cgd * and the return path might not be symmetrical).
3414 1.1 cgd */
3415 1.1 cgd tp->t_softerror = 0;
3416 1.1 cgd }
3417 1.68 matt
3418 1.1 cgd
3419 1.1 cgd /*
3420 1.29 thorpej * TCP compressed state engine. Currently used to hold compressed
3421 1.29 thorpej * state for SYN_RECEIVED.
3422 1.29 thorpej */
3423 1.29 thorpej
3424 1.29 thorpej u_long syn_cache_count;
3425 1.29 thorpej u_int32_t syn_hash1, syn_hash2;
3426 1.29 thorpej
3427 1.29 thorpej #define SYN_HASH(sa, sp, dp) \
3428 1.29 thorpej ((((sa)->s_addr^syn_hash1)*(((((u_int32_t)(dp))<<16) + \
3429 1.49 thorpej ((u_int32_t)(sp)))^syn_hash2)))
3430 1.83 itojun #ifndef INET6
3431 1.83 itojun #define SYN_HASHALL(hash, src, dst) \
3432 1.83 itojun do { \
3433 1.228 christos hash = SYN_HASH(&((const struct sockaddr_in *)(src))->sin_addr, \
3434 1.228 christos ((const struct sockaddr_in *)(src))->sin_port, \
3435 1.228 christos ((const struct sockaddr_in *)(dst))->sin_port); \
3436 1.159 perry } while (/*CONSTCOND*/ 0)
3437 1.83 itojun #else
3438 1.83 itojun #define SYN_HASH6(sa, sp, dp) \
3439 1.83 itojun ((((sa)->s6_addr32[0] ^ (sa)->s6_addr32[3] ^ syn_hash1) * \
3440 1.83 itojun (((((u_int32_t)(dp))<<16) + ((u_int32_t)(sp)))^syn_hash2)) \
3441 1.83 itojun & 0x7fffffff)
3442 1.83 itojun
3443 1.83 itojun #define SYN_HASHALL(hash, src, dst) \
3444 1.83 itojun do { \
3445 1.83 itojun switch ((src)->sa_family) { \
3446 1.83 itojun case AF_INET: \
3447 1.228 christos hash = SYN_HASH(&((const struct sockaddr_in *)(src))->sin_addr, \
3448 1.228 christos ((const struct sockaddr_in *)(src))->sin_port, \
3449 1.228 christos ((const struct sockaddr_in *)(dst))->sin_port); \
3450 1.83 itojun break; \
3451 1.83 itojun case AF_INET6: \
3452 1.228 christos hash = SYN_HASH6(&((const struct sockaddr_in6 *)(src))->sin6_addr, \
3453 1.228 christos ((const struct sockaddr_in6 *)(src))->sin6_port, \
3454 1.228 christos ((const struct sockaddr_in6 *)(dst))->sin6_port); \
3455 1.83 itojun break; \
3456 1.83 itojun default: \
3457 1.83 itojun hash = 0; \
3458 1.83 itojun } \
3459 1.130 thorpej } while (/*CONSTCOND*/0)
3460 1.83 itojun #endif /* INET6 */
3461 1.29 thorpej
3462 1.292 pooka static struct pool syn_cache_pool;
3463 1.63 thorpej
3464 1.80 thorpej /*
3465 1.80 thorpej * We don't estimate RTT with SYNs, so each packet starts with the default
3466 1.130 thorpej * RTT and each timer step has a fixed timeout value.
3467 1.80 thorpej */
3468 1.363 ozaki static inline void
3469 1.363 ozaki syn_cache_timer_arm(struct syn_cache *sc)
3470 1.363 ozaki {
3471 1.363 ozaki
3472 1.363 ozaki TCPT_RANGESET(sc->sc_rxtcur,
3473 1.363 ozaki TCPTV_SRTTDFLT * tcp_backoff[sc->sc_rxtshift], TCPTV_MIN,
3474 1.363 ozaki TCPTV_REXMTMAX);
3475 1.363 ozaki callout_reset(&sc->sc_timer,
3476 1.363 ozaki sc->sc_rxtcur * (hz / PR_SLOWHZ), syn_cache_timer, sc);
3477 1.363 ozaki }
3478 1.80 thorpej
3479 1.123 thorpej #define SYN_CACHE_TIMESTAMP(sc) (tcp_now - (sc)->sc_timebase)
3480 1.123 thorpej
3481 1.272 dyoung static inline void
3482 1.272 dyoung syn_cache_rm(struct syn_cache *sc)
3483 1.272 dyoung {
3484 1.272 dyoung TAILQ_REMOVE(&tcp_syn_cache[sc->sc_bucketidx].sch_bucket,
3485 1.272 dyoung sc, sc_bucketq);
3486 1.272 dyoung sc->sc_tp = NULL;
3487 1.272 dyoung LIST_REMOVE(sc, sc_tpq);
3488 1.272 dyoung tcp_syn_cache[sc->sc_bucketidx].sch_length--;
3489 1.272 dyoung callout_stop(&sc->sc_timer);
3490 1.272 dyoung syn_cache_count--;
3491 1.272 dyoung }
3492 1.272 dyoung
3493 1.272 dyoung static inline void
3494 1.272 dyoung syn_cache_put(struct syn_cache *sc)
3495 1.272 dyoung {
3496 1.272 dyoung if (sc->sc_ipopts)
3497 1.272 dyoung (void) m_free(sc->sc_ipopts);
3498 1.272 dyoung rtcache_free(&sc->sc_route);
3499 1.304 bouyer sc->sc_flags |= SCF_DEAD;
3500 1.304 bouyer if (!callout_invoking(&sc->sc_timer))
3501 1.304 bouyer callout_schedule(&(sc)->sc_timer, 1);
3502 1.272 dyoung }
3503 1.272 dyoung
3504 1.59 thorpej void
3505 1.220 perry syn_cache_init(void)
3506 1.59 thorpej {
3507 1.59 thorpej int i;
3508 1.59 thorpej
3509 1.292 pooka pool_init(&syn_cache_pool, sizeof(struct syn_cache), 0, 0, 0,
3510 1.292 pooka "synpl", NULL, IPL_SOFTNET);
3511 1.292 pooka
3512 1.80 thorpej /* Initialize the hash buckets. */
3513 1.59 thorpej for (i = 0; i < tcp_syn_cache_size; i++)
3514 1.130 thorpej TAILQ_INIT(&tcp_syn_cache[i].sch_bucket);
3515 1.29 thorpej }
3516 1.29 thorpej
3517 1.29 thorpej void
3518 1.220 perry syn_cache_insert(struct syn_cache *sc, struct tcpcb *tp)
3519 1.29 thorpej {
3520 1.80 thorpej struct syn_cache_head *scp;
3521 1.29 thorpej struct syn_cache *sc2;
3522 1.130 thorpej int s;
3523 1.29 thorpej
3524 1.59 thorpej /*
3525 1.59 thorpej * If there are no entries in the hash table, reinitialize
3526 1.59 thorpej * the hash secrets.
3527 1.59 thorpej */
3528 1.29 thorpej if (syn_cache_count == 0) {
3529 1.318 tls syn_hash1 = cprng_fast32();
3530 1.318 tls syn_hash2 = cprng_fast32();
3531 1.29 thorpej }
3532 1.29 thorpej
3533 1.83 itojun SYN_HASHALL(sc->sc_hash, &sc->sc_src.sa, &sc->sc_dst.sa);
3534 1.80 thorpej sc->sc_bucketidx = sc->sc_hash % tcp_syn_cache_size;
3535 1.80 thorpej scp = &tcp_syn_cache[sc->sc_bucketidx];
3536 1.29 thorpej
3537 1.29 thorpej /*
3538 1.29 thorpej * Make sure that we don't overflow the per-bucket
3539 1.29 thorpej * limit or the total cache size limit.
3540 1.29 thorpej */
3541 1.29 thorpej s = splsoftnet();
3542 1.29 thorpej if (scp->sch_length >= tcp_syn_bucket_limit) {
3543 1.284 thorpej TCP_STATINC(TCP_STAT_SC_BUCKETOVERFLOW);
3544 1.59 thorpej /*
3545 1.80 thorpej * The bucket is full. Toss the oldest element in the
3546 1.130 thorpej * bucket. This will be the first entry in the bucket.
3547 1.130 thorpej */
3548 1.130 thorpej sc2 = TAILQ_FIRST(&scp->sch_bucket);
3549 1.80 thorpej #ifdef DIAGNOSTIC
3550 1.80 thorpej /*
3551 1.80 thorpej * This should never happen; we should always find an
3552 1.80 thorpej * entry in our bucket.
3553 1.59 thorpej */
3554 1.130 thorpej if (sc2 == NULL)
3555 1.130 thorpej panic("syn_cache_insert: bucketoverflow: impossible");
3556 1.80 thorpej #endif
3557 1.272 dyoung syn_cache_rm(sc2);
3558 1.272 dyoung syn_cache_put(sc2); /* calls pool_put but see spl above */
3559 1.29 thorpej } else if (syn_cache_count >= tcp_syn_cache_limit) {
3560 1.130 thorpej struct syn_cache_head *scp2, *sce;
3561 1.130 thorpej
3562 1.284 thorpej TCP_STATINC(TCP_STAT_SC_OVERFLOWED);
3563 1.29 thorpej /*
3564 1.80 thorpej * The cache is full. Toss the oldest entry in the
3565 1.130 thorpej * first non-empty bucket we can find.
3566 1.130 thorpej *
3567 1.130 thorpej * XXX We would really like to toss the oldest
3568 1.130 thorpej * entry in the cache, but we hope that this
3569 1.130 thorpej * condition doesn't happen very often.
3570 1.130 thorpej */
3571 1.130 thorpej scp2 = scp;
3572 1.130 thorpej if (TAILQ_EMPTY(&scp2->sch_bucket)) {
3573 1.130 thorpej sce = &tcp_syn_cache[tcp_syn_cache_size];
3574 1.130 thorpej for (++scp2; scp2 != scp; scp2++) {
3575 1.130 thorpej if (scp2 >= sce)
3576 1.130 thorpej scp2 = &tcp_syn_cache[0];
3577 1.130 thorpej if (! TAILQ_EMPTY(&scp2->sch_bucket))
3578 1.130 thorpej break;
3579 1.130 thorpej }
3580 1.80 thorpej #ifdef DIAGNOSTIC
3581 1.130 thorpej /*
3582 1.130 thorpej * This should never happen; we should always find a
3583 1.130 thorpej * non-empty bucket.
3584 1.130 thorpej */
3585 1.130 thorpej if (scp2 == scp)
3586 1.130 thorpej panic("syn_cache_insert: cacheoverflow: "
3587 1.130 thorpej "impossible");
3588 1.80 thorpej #endif
3589 1.130 thorpej }
3590 1.130 thorpej sc2 = TAILQ_FIRST(&scp2->sch_bucket);
3591 1.272 dyoung syn_cache_rm(sc2);
3592 1.272 dyoung syn_cache_put(sc2); /* calls pool_put but see spl above */
3593 1.29 thorpej }
3594 1.29 thorpej
3595 1.80 thorpej /*
3596 1.80 thorpej * Initialize the entry's timer.
3597 1.80 thorpej */
3598 1.80 thorpej sc->sc_rxttot = 0;
3599 1.80 thorpej sc->sc_rxtshift = 0;
3600 1.363 ozaki syn_cache_timer_arm(sc);
3601 1.59 thorpej
3602 1.93 itojun /* Link it from tcpcb entry */
3603 1.93 itojun LIST_INSERT_HEAD(&tp->t_sc, sc, sc_tpq);
3604 1.93 itojun
3605 1.59 thorpej /* Put it into the bucket. */
3606 1.130 thorpej TAILQ_INSERT_TAIL(&scp->sch_bucket, sc, sc_bucketq);
3607 1.80 thorpej scp->sch_length++;
3608 1.59 thorpej syn_cache_count++;
3609 1.29 thorpej
3610 1.284 thorpej TCP_STATINC(TCP_STAT_SC_ADDED);
3611 1.29 thorpej splx(s);
3612 1.29 thorpej }
3613 1.29 thorpej
3614 1.29 thorpej /*
3615 1.80 thorpej * Walk the timer queues, looking for SYN,ACKs that need to be retransmitted.
3616 1.80 thorpej * If we have retransmitted an entry the maximum number of times, expire
3617 1.80 thorpej * that entry.
3618 1.29 thorpej */
3619 1.362 ozaki static void
3620 1.130 thorpej syn_cache_timer(void *arg)
3621 1.29 thorpej {
3622 1.130 thorpej struct syn_cache *sc = arg;
3623 1.29 thorpej
3624 1.286 ad mutex_enter(softnet_lock);
3625 1.286 ad KERNEL_LOCK(1, NULL);
3626 1.361 ozaki
3627 1.173 he callout_ack(&sc->sc_timer);
3628 1.173 he
3629 1.173 he if (__predict_false(sc->sc_flags & SCF_DEAD)) {
3630 1.284 thorpej TCP_STATINC(TCP_STAT_SC_DELAYED_FREE);
3631 1.361 ozaki goto free;
3632 1.173 he }
3633 1.80 thorpej
3634 1.130 thorpej if (__predict_false(sc->sc_rxtshift == TCP_MAXRXTSHIFT)) {
3635 1.130 thorpej /* Drop it -- too many retransmissions. */
3636 1.130 thorpej goto dropit;
3637 1.130 thorpej }
3638 1.130 thorpej
3639 1.80 thorpej /*
3640 1.130 thorpej * Compute the total amount of time this entry has
3641 1.130 thorpej * been on a queue. If this entry has been on longer
3642 1.130 thorpej * than the keep alive timer would allow, expire it.
3643 1.80 thorpej */
3644 1.130 thorpej sc->sc_rxttot += sc->sc_rxtcur;
3645 1.415 riastrad if (sc->sc_rxttot >= MIN(tcp_keepinit, TCP_TIMER_MAXTICKS))
3646 1.130 thorpej goto dropit;
3647 1.80 thorpej
3648 1.284 thorpej TCP_STATINC(TCP_STAT_SC_RETRANSMITTED);
3649 1.377 maxv (void)syn_cache_respond(sc);
3650 1.80 thorpej
3651 1.130 thorpej /* Advance the timer back-off. */
3652 1.130 thorpej sc->sc_rxtshift++;
3653 1.363 ozaki syn_cache_timer_arm(sc);
3654 1.80 thorpej
3655 1.361 ozaki goto out;
3656 1.80 thorpej
3657 1.130 thorpej dropit:
3658 1.284 thorpej TCP_STATINC(TCP_STAT_SC_TIMED_OUT);
3659 1.272 dyoung syn_cache_rm(sc);
3660 1.304 bouyer if (sc->sc_ipopts)
3661 1.304 bouyer (void) m_free(sc->sc_ipopts);
3662 1.304 bouyer rtcache_free(&sc->sc_route);
3663 1.361 ozaki
3664 1.361 ozaki free:
3665 1.304 bouyer callout_destroy(&sc->sc_timer);
3666 1.304 bouyer pool_put(&syn_cache_pool, sc);
3667 1.361 ozaki
3668 1.361 ozaki out:
3669 1.286 ad KERNEL_UNLOCK_ONE(NULL);
3670 1.286 ad mutex_exit(softnet_lock);
3671 1.29 thorpej }
3672 1.29 thorpej
3673 1.29 thorpej /*
3674 1.93 itojun * Remove syn cache created by the specified tcb entry,
3675 1.93 itojun * because this does not make sense to keep them
3676 1.93 itojun * (if there's no tcb entry, syn cache entry will never be used)
3677 1.93 itojun */
3678 1.93 itojun void
3679 1.220 perry syn_cache_cleanup(struct tcpcb *tp)
3680 1.93 itojun {
3681 1.93 itojun struct syn_cache *sc, *nsc;
3682 1.93 itojun int s;
3683 1.93 itojun
3684 1.93 itojun s = splsoftnet();
3685 1.93 itojun
3686 1.93 itojun for (sc = LIST_FIRST(&tp->t_sc); sc != NULL; sc = nsc) {
3687 1.93 itojun nsc = LIST_NEXT(sc, sc_tpq);
3688 1.93 itojun
3689 1.93 itojun #ifdef DIAGNOSTIC
3690 1.93 itojun if (sc->sc_tp != tp)
3691 1.93 itojun panic("invalid sc_tp in syn_cache_cleanup");
3692 1.93 itojun #endif
3693 1.272 dyoung syn_cache_rm(sc);
3694 1.272 dyoung syn_cache_put(sc); /* calls pool_put but see spl above */
3695 1.93 itojun }
3696 1.93 itojun /* just for safety */
3697 1.93 itojun LIST_INIT(&tp->t_sc);
3698 1.93 itojun
3699 1.93 itojun splx(s);
3700 1.93 itojun }
3701 1.93 itojun
3702 1.93 itojun /*
3703 1.29 thorpej * Find an entry in the syn cache.
3704 1.29 thorpej */
3705 1.29 thorpej struct syn_cache *
3706 1.228 christos syn_cache_lookup(const struct sockaddr *src, const struct sockaddr *dst,
3707 1.220 perry struct syn_cache_head **headp)
3708 1.29 thorpej {
3709 1.59 thorpej struct syn_cache *sc;
3710 1.59 thorpej struct syn_cache_head *scp;
3711 1.29 thorpej u_int32_t hash;
3712 1.29 thorpej int s;
3713 1.29 thorpej
3714 1.83 itojun SYN_HASHALL(hash, src, dst);
3715 1.29 thorpej
3716 1.59 thorpej scp = &tcp_syn_cache[hash % tcp_syn_cache_size];
3717 1.59 thorpej *headp = scp;
3718 1.29 thorpej s = splsoftnet();
3719 1.130 thorpej for (sc = TAILQ_FIRST(&scp->sch_bucket); sc != NULL;
3720 1.130 thorpej sc = TAILQ_NEXT(sc, sc_bucketq)) {
3721 1.29 thorpej if (sc->sc_hash != hash)
3722 1.29 thorpej continue;
3723 1.294 cegger if (!memcmp(&sc->sc_src, src, src->sa_len) &&
3724 1.294 cegger !memcmp(&sc->sc_dst, dst, dst->sa_len)) {
3725 1.29 thorpej splx(s);
3726 1.29 thorpej return (sc);
3727 1.29 thorpej }
3728 1.29 thorpej }
3729 1.29 thorpej splx(s);
3730 1.29 thorpej return (NULL);
3731 1.29 thorpej }
3732 1.29 thorpej
3733 1.29 thorpej /*
3734 1.389 maxv * This function gets called when we receive an ACK for a socket in the
3735 1.389 maxv * LISTEN state. We look up the connection in the syn cache, and if it's
3736 1.389 maxv * there, we pull it out of the cache and turn it into a full-blown
3737 1.389 maxv * connection in the SYN-RECEIVED state.
3738 1.29 thorpej *
3739 1.29 thorpej * The return values may not be immediately obvious, and their effects
3740 1.29 thorpej * can be subtle, so here they are:
3741 1.29 thorpej *
3742 1.29 thorpej * NULL SYN was not found in cache; caller should drop the
3743 1.29 thorpej * packet and send an RST.
3744 1.29 thorpej *
3745 1.29 thorpej * -1 We were unable to create the new connection, and are
3746 1.29 thorpej * aborting it. An ACK,RST is being sent to the peer
3747 1.389 maxv * (unless we got screwey sequence numbers; see below),
3748 1.29 thorpej * because the 3-way handshake has been completed. Caller
3749 1.29 thorpej * should not free the mbuf, since we may be using it. If
3750 1.29 thorpej * we are not, we will free it.
3751 1.29 thorpej *
3752 1.29 thorpej * Otherwise, the return value is a pointer to the new socket
3753 1.29 thorpej * associated with the connection.
3754 1.29 thorpej */
3755 1.29 thorpej struct socket *
3756 1.220 perry syn_cache_get(struct sockaddr *src, struct sockaddr *dst,
3757 1.391 maxv struct tcphdr *th, struct socket *so, struct mbuf *m)
3758 1.29 thorpej {
3759 1.59 thorpej struct syn_cache *sc;
3760 1.59 thorpej struct syn_cache_head *scp;
3761 1.106 augustss struct inpcb *inp = NULL;
3762 1.83 itojun #ifdef INET6
3763 1.106 augustss struct in6pcb *in6p = NULL;
3764 1.83 itojun #endif
3765 1.389 maxv struct tcpcb *tp;
3766 1.29 thorpej int s;
3767 1.83 itojun struct socket *oso;
3768 1.29 thorpej
3769 1.29 thorpej s = splsoftnet();
3770 1.83 itojun if ((sc = syn_cache_lookup(src, dst, &scp)) == NULL) {
3771 1.29 thorpej splx(s);
3772 1.389 maxv return NULL;
3773 1.29 thorpej }
3774 1.29 thorpej
3775 1.29 thorpej /*
3776 1.75 thorpej * Verify the sequence and ack numbers. Try getting the correct
3777 1.75 thorpej * response again.
3778 1.29 thorpej */
3779 1.83 itojun if ((th->th_ack != sc->sc_iss + 1) ||
3780 1.83 itojun SEQ_LEQ(th->th_seq, sc->sc_irs) ||
3781 1.83 itojun SEQ_GT(th->th_seq, sc->sc_irs + 1 + sc->sc_win)) {
3782 1.377 maxv m_freem(m);
3783 1.377 maxv (void)syn_cache_respond(sc);
3784 1.29 thorpej splx(s);
3785 1.29 thorpej return ((struct socket *)(-1));
3786 1.29 thorpej }
3787 1.29 thorpej
3788 1.29 thorpej /* Remove this cache entry */
3789 1.272 dyoung syn_cache_rm(sc);
3790 1.29 thorpej splx(s);
3791 1.29 thorpej
3792 1.29 thorpej /*
3793 1.29 thorpej * Ok, create the full blown connection, and set things up
3794 1.29 thorpej * as they would have been set up if we had created the
3795 1.29 thorpej * connection when the SYN arrived. If we can't create
3796 1.29 thorpej * the connection, abort it.
3797 1.29 thorpej */
3798 1.83 itojun /*
3799 1.83 itojun * inp still has the OLD in_pcb stuff, set the
3800 1.83 itojun * v6-related flags on the new guy, too. This is
3801 1.83 itojun * done particularly for the case where an AF_INET6
3802 1.83 itojun * socket is bound only to a port, and a v4 connection
3803 1.83 itojun * comes in on that port.
3804 1.143 itojun * we also copy the flowinfo from the original pcb
3805 1.83 itojun * to the new one.
3806 1.83 itojun */
3807 1.83 itojun oso = so;
3808 1.328 rmind so = sonewconn(so, true);
3809 1.29 thorpej if (so == NULL)
3810 1.29 thorpej goto resetandabort;
3811 1.29 thorpej
3812 1.83 itojun switch (so->so_proto->pr_domain->dom_family) {
3813 1.83 itojun case AF_INET:
3814 1.83 itojun inp = sotoinpcb(so);
3815 1.83 itojun break;
3816 1.83 itojun #ifdef INET6
3817 1.83 itojun case AF_INET6:
3818 1.83 itojun in6p = sotoin6pcb(so);
3819 1.83 itojun break;
3820 1.83 itojun #endif
3821 1.83 itojun }
3822 1.389 maxv
3823 1.83 itojun switch (src->sa_family) {
3824 1.83 itojun case AF_INET:
3825 1.83 itojun if (inp) {
3826 1.83 itojun inp->inp_laddr = ((struct sockaddr_in *)dst)->sin_addr;
3827 1.83 itojun inp->inp_lport = ((struct sockaddr_in *)dst)->sin_port;
3828 1.356 ozaki inp->inp_options = ip_srcroute(m);
3829 1.83 itojun in_pcbstate(inp, INP_BOUND);
3830 1.83 itojun if (inp->inp_options == NULL) {
3831 1.83 itojun inp->inp_options = sc->sc_ipopts;
3832 1.83 itojun sc->sc_ipopts = NULL;
3833 1.83 itojun }
3834 1.83 itojun }
3835 1.83 itojun #ifdef INET6
3836 1.83 itojun else if (in6p) {
3837 1.83 itojun /* IPv4 packet to AF_INET6 socket */
3838 1.295 cegger memset(&in6p->in6p_laddr, 0, sizeof(in6p->in6p_laddr));
3839 1.83 itojun in6p->in6p_laddr.s6_addr16[5] = htons(0xffff);
3840 1.83 itojun bcopy(&((struct sockaddr_in *)dst)->sin_addr,
3841 1.83 itojun &in6p->in6p_laddr.s6_addr32[3],
3842 1.83 itojun sizeof(((struct sockaddr_in *)dst)->sin_addr));
3843 1.83 itojun in6p->in6p_lport = ((struct sockaddr_in *)dst)->sin_port;
3844 1.83 itojun in6totcpcb(in6p)->t_family = AF_INET;
3845 1.168 itojun if (sotoin6pcb(oso)->in6p_flags & IN6P_IPV6_V6ONLY)
3846 1.168 itojun in6p->in6p_flags |= IN6P_IPV6_V6ONLY;
3847 1.168 itojun else
3848 1.168 itojun in6p->in6p_flags &= ~IN6P_IPV6_V6ONLY;
3849 1.181 itojun in6_pcbstate(in6p, IN6P_BOUND);
3850 1.83 itojun }
3851 1.83 itojun #endif
3852 1.83 itojun break;
3853 1.83 itojun #ifdef INET6
3854 1.83 itojun case AF_INET6:
3855 1.83 itojun if (in6p) {
3856 1.83 itojun in6p->in6p_laddr = ((struct sockaddr_in6 *)dst)->sin6_addr;
3857 1.83 itojun in6p->in6p_lport = ((struct sockaddr_in6 *)dst)->sin6_port;
3858 1.181 itojun in6_pcbstate(in6p, IN6P_BOUND);
3859 1.83 itojun }
3860 1.83 itojun break;
3861 1.83 itojun #endif
3862 1.83 itojun }
3863 1.389 maxv
3864 1.83 itojun #ifdef INET6
3865 1.83 itojun if (in6p && in6totcpcb(in6p)->t_family == AF_INET6 && sotoinpcb(oso)) {
3866 1.83 itojun struct in6pcb *oin6p = sotoin6pcb(oso);
3867 1.83 itojun /* inherit socket options from the listening socket */
3868 1.83 itojun in6p->in6p_flags |= (oin6p->in6p_flags & IN6P_CONTROLOPTS);
3869 1.83 itojun if (in6p->in6p_flags & IN6P_CONTROLOPTS) {
3870 1.83 itojun m_freem(in6p->in6p_options);
3871 1.389 maxv in6p->in6p_options = NULL;
3872 1.83 itojun }
3873 1.83 itojun ip6_savecontrol(in6p, &in6p->in6p_options,
3874 1.389 maxv mtod(m, struct ip6_hdr *), m);
3875 1.83 itojun }
3876 1.83 itojun #endif
3877 1.83 itojun
3878 1.75 thorpej /*
3879 1.75 thorpej * Give the new socket our cached route reference.
3880 1.75 thorpej */
3881 1.258 dyoung if (inp) {
3882 1.264 dyoung rtcache_copy(&inp->inp_route, &sc->sc_route);
3883 1.264 dyoung rtcache_free(&sc->sc_route);
3884 1.258 dyoung }
3885 1.83 itojun #ifdef INET6
3886 1.258 dyoung else {
3887 1.264 dyoung rtcache_copy(&in6p->in6p_route, &sc->sc_route);
3888 1.264 dyoung rtcache_free(&sc->sc_route);
3889 1.258 dyoung }
3890 1.83 itojun #endif
3891 1.75 thorpej
3892 1.83 itojun if (inp) {
3893 1.341 rtr struct sockaddr_in sin;
3894 1.341 rtr memcpy(&sin, src, src->sa_len);
3895 1.341 rtr if (in_pcbconnect(inp, &sin, &lwp0)) {
3896 1.83 itojun goto resetandabort;
3897 1.83 itojun }
3898 1.83 itojun }
3899 1.83 itojun #ifdef INET6
3900 1.83 itojun else if (in6p) {
3901 1.341 rtr struct sockaddr_in6 sin6;
3902 1.341 rtr memcpy(&sin6, src, src->sa_len);
3903 1.83 itojun if (src->sa_family == AF_INET) {
3904 1.83 itojun /* IPv4 packet to AF_INET6 socket */
3905 1.345 rtr in6_sin_2_v4mapsin6((struct sockaddr_in *)src, &sin6);
3906 1.83 itojun }
3907 1.341 rtr if (in6_pcbconnect(in6p, &sin6, NULL)) {
3908 1.83 itojun goto resetandabort;
3909 1.83 itojun }
3910 1.83 itojun }
3911 1.83 itojun #endif
3912 1.83 itojun else {
3913 1.29 thorpej goto resetandabort;
3914 1.29 thorpej }
3915 1.29 thorpej
3916 1.83 itojun if (inp)
3917 1.83 itojun tp = intotcpcb(inp);
3918 1.83 itojun #ifdef INET6
3919 1.83 itojun else if (in6p)
3920 1.83 itojun tp = in6totcpcb(in6p);
3921 1.83 itojun #endif
3922 1.83 itojun else
3923 1.83 itojun tp = NULL;
3924 1.389 maxv
3925 1.149 wrstuden tp->t_flags = sototcpcb(oso)->t_flags & TF_NODELAY;
3926 1.29 thorpej if (sc->sc_request_r_scale != 15) {
3927 1.29 thorpej tp->requested_s_scale = sc->sc_requested_s_scale;
3928 1.29 thorpej tp->request_r_scale = sc->sc_request_r_scale;
3929 1.29 thorpej tp->snd_scale = sc->sc_requested_s_scale;
3930 1.29 thorpej tp->rcv_scale = sc->sc_request_r_scale;
3931 1.158 thorpej tp->t_flags |= TF_REQ_SCALE|TF_RCVD_SCALE;
3932 1.29 thorpej }
3933 1.49 thorpej if (sc->sc_flags & SCF_TIMESTAMP)
3934 1.158 thorpej tp->t_flags |= TF_REQ_TSTMP|TF_RCVD_TSTMP;
3935 1.123 thorpej tp->ts_timebase = sc->sc_timebase;
3936 1.29 thorpej
3937 1.29 thorpej tp->t_template = tcp_template(tp);
3938 1.29 thorpej if (tp->t_template == 0) {
3939 1.29 thorpej tp = tcp_drop(tp, ENOBUFS); /* destroys socket */
3940 1.29 thorpej so = NULL;
3941 1.29 thorpej m_freem(m);
3942 1.29 thorpej goto abort;
3943 1.29 thorpej }
3944 1.29 thorpej
3945 1.29 thorpej tp->iss = sc->sc_iss;
3946 1.29 thorpej tp->irs = sc->sc_irs;
3947 1.29 thorpej tcp_sendseqinit(tp);
3948 1.29 thorpej tcp_rcvseqinit(tp);
3949 1.29 thorpej tp->t_state = TCPS_SYN_RECEIVED;
3950 1.267 christos TCP_TIMER_ARM(tp, TCPT_KEEP, tp->t_keepinit);
3951 1.284 thorpej TCP_STATINC(TCP_STAT_ACCEPTS);
3952 1.29 thorpej
3953 1.222 jonathan if ((sc->sc_flags & SCF_SACK_PERMIT) && tcp_do_sack)
3954 1.222 jonathan tp->t_flags |= TF_WILL_SACK;
3955 1.222 jonathan
3956 1.244 rpaulo if ((sc->sc_flags & SCF_ECN_PERMIT) && tcp_do_ecn)
3957 1.244 rpaulo tp->t_flags |= TF_ECN_PERMIT;
3958 1.244 rpaulo
3959 1.201 jonathan #ifdef TCP_SIGNATURE
3960 1.201 jonathan if (sc->sc_flags & SCF_SIGNATURE)
3961 1.201 jonathan tp->t_flags |= TF_SIGNATURE;
3962 1.201 jonathan #endif
3963 1.201 jonathan
3964 1.32 thorpej /* Initialize tp->t_ourmss before we deal with the peer's! */
3965 1.32 thorpej tp->t_ourmss = sc->sc_ourmaxseg;
3966 1.32 thorpej tcp_mss_from_peer(tp, sc->sc_peermaxseg);
3967 1.46 thorpej
3968 1.46 thorpej /*
3969 1.46 thorpej * Initialize the initial congestion window. If we
3970 1.46 thorpej * had to retransmit the SYN,ACK, we must initialize cwnd
3971 1.62 thorpej * to 1 segment (i.e. the Loss Window).
3972 1.46 thorpej */
3973 1.80 thorpej if (sc->sc_rxtshift)
3974 1.62 thorpej tp->snd_cwnd = tp->t_peermss;
3975 1.163 thorpej else {
3976 1.163 thorpej int ss = tcp_init_win;
3977 1.163 thorpej if (inp != NULL && in_localaddr(inp->inp_faddr))
3978 1.163 thorpej ss = tcp_init_win_local;
3979 1.163 thorpej #ifdef INET6
3980 1.163 thorpej if (in6p != NULL && in6_localaddr(&in6p->in6p_faddr))
3981 1.163 thorpej ss = tcp_init_win_local;
3982 1.163 thorpej #endif
3983 1.163 thorpej tp->snd_cwnd = TCP_INITIAL_WINDOW(ss, tp->t_peermss);
3984 1.163 thorpej }
3985 1.46 thorpej
3986 1.32 thorpej tcp_rmx_rtt(tp);
3987 1.29 thorpej tp->snd_wl1 = sc->sc_irs;
3988 1.29 thorpej tp->rcv_up = sc->sc_irs + 1;
3989 1.29 thorpej
3990 1.29 thorpej /*
3991 1.160 wiz * This is what whould have happened in tcp_output() when
3992 1.29 thorpej * the SYN,ACK was sent.
3993 1.29 thorpej */
3994 1.29 thorpej tp->snd_up = tp->snd_una;
3995 1.29 thorpej tp->snd_max = tp->snd_nxt = tp->iss+1;
3996 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_REXMT, tp->t_rxtcur);
3997 1.80 thorpej if (sc->sc_win > 0 && SEQ_GT(tp->rcv_nxt + sc->sc_win, tp->rcv_adv))
3998 1.80 thorpej tp->rcv_adv = tp->rcv_nxt + sc->sc_win;
3999 1.29 thorpej tp->last_ack_sent = tp->rcv_nxt;
4000 1.214 mycroft tp->t_partialacks = -1;
4001 1.214 mycroft tp->t_dupacks = 0;
4002 1.29 thorpej
4003 1.284 thorpej TCP_STATINC(TCP_STAT_SC_COMPLETED);
4004 1.245 tls s = splsoftnet();
4005 1.272 dyoung syn_cache_put(sc);
4006 1.245 tls splx(s);
4007 1.389 maxv return so;
4008 1.29 thorpej
4009 1.29 thorpej resetandabort:
4010 1.199 itojun (void)tcp_respond(NULL, m, m, th, (tcp_seq)0, th->th_ack, TH_RST);
4011 1.29 thorpej abort:
4012 1.288 ad if (so != NULL) {
4013 1.288 ad (void) soqremque(so, 1);
4014 1.29 thorpej (void) soabort(so);
4015 1.290 matt mutex_enter(softnet_lock);
4016 1.288 ad }
4017 1.245 tls s = splsoftnet();
4018 1.272 dyoung syn_cache_put(sc);
4019 1.245 tls splx(s);
4020 1.284 thorpej TCP_STATINC(TCP_STAT_SC_ABORTED);
4021 1.29 thorpej return ((struct socket *)(-1));
4022 1.29 thorpej }
4023 1.29 thorpej
4024 1.29 thorpej /*
4025 1.29 thorpej * This function is called when we get a RST for a
4026 1.126 wiz * non-existent connection, so that we can see if the
4027 1.29 thorpej * connection is in the syn cache. If it is, zap it.
4028 1.29 thorpej */
4029 1.29 thorpej
4030 1.29 thorpej void
4031 1.220 perry syn_cache_reset(struct sockaddr *src, struct sockaddr *dst, struct tcphdr *th)
4032 1.29 thorpej {
4033 1.59 thorpej struct syn_cache *sc;
4034 1.59 thorpej struct syn_cache_head *scp;
4035 1.29 thorpej int s = splsoftnet();
4036 1.29 thorpej
4037 1.83 itojun if ((sc = syn_cache_lookup(src, dst, &scp)) == NULL) {
4038 1.29 thorpej splx(s);
4039 1.29 thorpej return;
4040 1.29 thorpej }
4041 1.83 itojun if (SEQ_LT(th->th_seq, sc->sc_irs) ||
4042 1.83 itojun SEQ_GT(th->th_seq, sc->sc_irs+1)) {
4043 1.29 thorpej splx(s);
4044 1.29 thorpej return;
4045 1.29 thorpej }
4046 1.272 dyoung syn_cache_rm(sc);
4047 1.284 thorpej TCP_STATINC(TCP_STAT_SC_RESET);
4048 1.272 dyoung syn_cache_put(sc); /* calls pool_put but see spl above */
4049 1.29 thorpej splx(s);
4050 1.29 thorpej }
4051 1.29 thorpej
4052 1.29 thorpej void
4053 1.228 christos syn_cache_unreach(const struct sockaddr *src, const struct sockaddr *dst,
4054 1.220 perry struct tcphdr *th)
4055 1.29 thorpej {
4056 1.59 thorpej struct syn_cache *sc;
4057 1.59 thorpej struct syn_cache_head *scp;
4058 1.29 thorpej int s;
4059 1.29 thorpej
4060 1.29 thorpej s = splsoftnet();
4061 1.83 itojun if ((sc = syn_cache_lookup(src, dst, &scp)) == NULL) {
4062 1.29 thorpej splx(s);
4063 1.29 thorpej return;
4064 1.29 thorpej }
4065 1.29 thorpej /* If the sequence number != sc_iss, then it's a bogus ICMP msg */
4066 1.389 maxv if (ntohl(th->th_seq) != sc->sc_iss) {
4067 1.29 thorpej splx(s);
4068 1.29 thorpej return;
4069 1.29 thorpej }
4070 1.64 thorpej
4071 1.64 thorpej /*
4072 1.188 itojun * If we've retransmitted 3 times and this is our second error,
4073 1.64 thorpej * we remove the entry. Otherwise, we allow it to continue on.
4074 1.64 thorpej * This prevents us from incorrectly nuking an entry during a
4075 1.64 thorpej * spurious network outage.
4076 1.64 thorpej *
4077 1.64 thorpej * See tcp_notify().
4078 1.64 thorpej */
4079 1.80 thorpej if ((sc->sc_flags & SCF_UNREACH) == 0 || sc->sc_rxtshift < 3) {
4080 1.64 thorpej sc->sc_flags |= SCF_UNREACH;
4081 1.64 thorpej splx(s);
4082 1.64 thorpej return;
4083 1.64 thorpej }
4084 1.64 thorpej
4085 1.272 dyoung syn_cache_rm(sc);
4086 1.284 thorpej TCP_STATINC(TCP_STAT_SC_UNREACH);
4087 1.272 dyoung syn_cache_put(sc); /* calls pool_put but see spl above */
4088 1.29 thorpej splx(s);
4089 1.29 thorpej }
4090 1.29 thorpej
4091 1.29 thorpej /*
4092 1.389 maxv * Given a LISTEN socket and an inbound SYN request, add this to the syn
4093 1.389 maxv * cache, and send back a segment:
4094 1.29 thorpej * <SEQ=ISS><ACK=RCV_NXT><CTL=SYN,ACK>
4095 1.29 thorpej * to the source.
4096 1.32 thorpej *
4097 1.61 thorpej * IMPORTANT NOTE: We do _NOT_ ACK data that might accompany the SYN.
4098 1.61 thorpej * Doing so would require that we hold onto the data and deliver it
4099 1.61 thorpej * to the application. However, if we are the target of a SYN-flood
4100 1.61 thorpej * DoS attack, an attacker could send data which would eventually
4101 1.61 thorpej * consume all available buffer space if it were ACKed. By not ACKing
4102 1.61 thorpej * the data, we avoid this DoS scenario.
4103 1.29 thorpej */
4104 1.29 thorpej int
4105 1.220 perry syn_cache_add(struct sockaddr *src, struct sockaddr *dst, struct tcphdr *th,
4106 1.394 maxv unsigned int toff, struct socket *so, struct mbuf *m, u_char *optp,
4107 1.220 perry int optlen, struct tcp_opt_info *oi)
4108 1.29 thorpej {
4109 1.32 thorpej struct tcpcb tb, *tp;
4110 1.29 thorpej long win;
4111 1.59 thorpej struct syn_cache *sc;
4112 1.29 thorpej struct syn_cache_head *scp;
4113 1.50 thorpej struct mbuf *ipopts;
4114 1.245 tls int s;
4115 1.29 thorpej
4116 1.32 thorpej tp = sototcpcb(so);
4117 1.29 thorpej
4118 1.29 thorpej /*
4119 1.29 thorpej * Initialize some local state.
4120 1.29 thorpej */
4121 1.29 thorpej win = sbspace(&so->so_rcv);
4122 1.29 thorpej if (win > TCP_MAXWIN)
4123 1.29 thorpej win = TCP_MAXWIN;
4124 1.29 thorpej
4125 1.206 itojun #ifdef TCP_SIGNATURE
4126 1.206 itojun if (optp || (tp->t_flags & TF_SIGNATURE))
4127 1.206 itojun #else
4128 1.206 itojun if (optp)
4129 1.206 itojun #endif
4130 1.206 itojun {
4131 1.208 itojun tb.t_flags = tcp_do_rfc1323 ? (TF_REQ_SCALE|TF_REQ_TSTMP) : 0;
4132 1.208 itojun #ifdef TCP_SIGNATURE
4133 1.208 itojun tb.t_flags |= (tp->t_flags & TF_SIGNATURE);
4134 1.208 itojun #endif
4135 1.236 christos tb.t_state = TCPS_LISTEN;
4136 1.394 maxv if (tcp_dooptions(&tb, optp, optlen, th, m, toff, oi) < 0)
4137 1.375 maxv return 0;
4138 1.29 thorpej } else
4139 1.29 thorpej tb.t_flags = 0;
4140 1.29 thorpej
4141 1.375 maxv switch (src->sa_family) {
4142 1.375 maxv case AF_INET:
4143 1.387 maxv /* Remember the IP options, if any. */
4144 1.375 maxv ipopts = ip_srcroute(m);
4145 1.375 maxv break;
4146 1.375 maxv default:
4147 1.375 maxv ipopts = NULL;
4148 1.375 maxv }
4149 1.375 maxv
4150 1.29 thorpej /*
4151 1.29 thorpej * See if we already have an entry for this connection.
4152 1.80 thorpej * If we do, resend the SYN,ACK. We do not count this
4153 1.80 thorpej * as a retransmission (XXX though maybe we should).
4154 1.29 thorpej */
4155 1.83 itojun if ((sc = syn_cache_lookup(src, dst, &scp)) != NULL) {
4156 1.284 thorpej TCP_STATINC(TCP_STAT_SC_DUPESYN);
4157 1.50 thorpej if (ipopts) {
4158 1.50 thorpej /*
4159 1.50 thorpej * If we were remembering a previous source route,
4160 1.50 thorpej * forget it and use the new one we've been given.
4161 1.50 thorpej */
4162 1.50 thorpej if (sc->sc_ipopts)
4163 1.375 maxv (void)m_free(sc->sc_ipopts);
4164 1.50 thorpej sc->sc_ipopts = ipopts;
4165 1.50 thorpej }
4166 1.80 thorpej sc->sc_timestamp = tb.ts_recent;
4167 1.377 maxv m_freem(m);
4168 1.377 maxv if (syn_cache_respond(sc) == 0) {
4169 1.284 thorpej uint64_t *tcps = TCP_STAT_GETREF();
4170 1.284 thorpej tcps[TCP_STAT_SNDACKS]++;
4171 1.284 thorpej tcps[TCP_STAT_SNDTOTAL]++;
4172 1.284 thorpej TCP_STAT_PUTREF();
4173 1.29 thorpej }
4174 1.375 maxv return 1;
4175 1.29 thorpej }
4176 1.29 thorpej
4177 1.245 tls s = splsoftnet();
4178 1.63 thorpej sc = pool_get(&syn_cache_pool, PR_NOWAIT);
4179 1.245 tls splx(s);
4180 1.143 itojun if (sc == NULL) {
4181 1.50 thorpej if (ipopts)
4182 1.375 maxv (void)m_free(ipopts);
4183 1.375 maxv return 0;
4184 1.50 thorpej }
4185 1.50 thorpej
4186 1.29 thorpej /*
4187 1.50 thorpej * Fill in the cache, and put the necessary IP and TCP
4188 1.29 thorpej * options into the reply.
4189 1.29 thorpej */
4190 1.295 cegger memset(sc, 0, sizeof(struct syn_cache));
4191 1.286 ad callout_init(&sc->sc_timer, CALLOUT_MPSAFE);
4192 1.387 maxv memcpy(&sc->sc_src, src, src->sa_len);
4193 1.387 maxv memcpy(&sc->sc_dst, dst, dst->sa_len);
4194 1.46 thorpej sc->sc_flags = 0;
4195 1.50 thorpej sc->sc_ipopts = ipopts;
4196 1.83 itojun sc->sc_irs = th->th_seq;
4197 1.123 thorpej switch (src->sa_family) {
4198 1.123 thorpej case AF_INET:
4199 1.123 thorpej {
4200 1.375 maxv struct sockaddr_in *srcin = (void *)src;
4201 1.375 maxv struct sockaddr_in *dstin = (void *)dst;
4202 1.123 thorpej
4203 1.123 thorpej sc->sc_iss = tcp_new_iss1(&dstin->sin_addr,
4204 1.123 thorpej &srcin->sin_addr, dstin->sin_port,
4205 1.123 thorpej srcin->sin_port, sizeof(dstin->sin_addr), 0);
4206 1.123 thorpej break;
4207 1.123 thorpej }
4208 1.123 thorpej #ifdef INET6
4209 1.123 thorpej case AF_INET6:
4210 1.123 thorpej {
4211 1.375 maxv struct sockaddr_in6 *srcin6 = (void *)src;
4212 1.375 maxv struct sockaddr_in6 *dstin6 = (void *)dst;
4213 1.123 thorpej
4214 1.123 thorpej sc->sc_iss = tcp_new_iss1(&dstin6->sin6_addr,
4215 1.123 thorpej &srcin6->sin6_addr, dstin6->sin6_port,
4216 1.123 thorpej srcin6->sin6_port, sizeof(dstin6->sin6_addr), 0);
4217 1.123 thorpej break;
4218 1.123 thorpej }
4219 1.388 maxv #endif
4220 1.123 thorpej }
4221 1.29 thorpej sc->sc_peermaxseg = oi->maxseg;
4222 1.51 kml sc->sc_ourmaxseg = tcp_mss_to_advertise(m->m_flags & M_PKTHDR ?
4223 1.375 maxv m_get_rcvif_NOMPSAFE(m) : NULL, sc->sc_src.sa.sa_family);
4224 1.80 thorpej sc->sc_win = win;
4225 1.279 yamt sc->sc_timebase = tcp_now - 1; /* see tcp_newtcpcb() */
4226 1.80 thorpej sc->sc_timestamp = tb.ts_recent;
4227 1.158 thorpej if ((tb.t_flags & (TF_REQ_TSTMP|TF_RCVD_TSTMP)) ==
4228 1.158 thorpej (TF_REQ_TSTMP|TF_RCVD_TSTMP))
4229 1.49 thorpej sc->sc_flags |= SCF_TIMESTAMP;
4230 1.29 thorpej if ((tb.t_flags & (TF_RCVD_SCALE|TF_REQ_SCALE)) ==
4231 1.29 thorpej (TF_RCVD_SCALE|TF_REQ_SCALE)) {
4232 1.29 thorpej sc->sc_requested_s_scale = tb.requested_s_scale;
4233 1.29 thorpej sc->sc_request_r_scale = 0;
4234 1.269 rmind /*
4235 1.271 rmind * Pick the smallest possible scaling factor that
4236 1.271 rmind * will still allow us to scale up to sb_max.
4237 1.271 rmind *
4238 1.271 rmind * We do this because there are broken firewalls that
4239 1.271 rmind * will corrupt the window scale option, leading to
4240 1.271 rmind * the other endpoint believing that our advertised
4241 1.271 rmind * window is unscaled. At scale factors larger than
4242 1.271 rmind * 5 the unscaled window will drop below 1500 bytes,
4243 1.271 rmind * leading to serious problems when traversing these
4244 1.271 rmind * broken firewalls.
4245 1.271 rmind *
4246 1.271 rmind * With the default sbmax of 256K, a scale factor
4247 1.271 rmind * of 3 will be chosen by this algorithm. Those who
4248 1.271 rmind * choose a larger sbmax should watch out
4249 1.271 rmind * for the compatiblity problems mentioned above.
4250 1.269 rmind *
4251 1.269 rmind * RFC1323: The Window field in a SYN (i.e., a <SYN>
4252 1.269 rmind * or <SYN,ACK>) segment itself is never scaled.
4253 1.269 rmind */
4254 1.29 thorpej while (sc->sc_request_r_scale < TCP_MAX_WINSHIFT &&
4255 1.271 rmind (TCP_MAXWIN << sc->sc_request_r_scale) < sb_max)
4256 1.29 thorpej sc->sc_request_r_scale++;
4257 1.29 thorpej } else {
4258 1.29 thorpej sc->sc_requested_s_scale = 15;
4259 1.29 thorpej sc->sc_request_r_scale = 15;
4260 1.29 thorpej }
4261 1.222 jonathan if ((tb.t_flags & TF_SACK_PERMIT) && tcp_do_sack)
4262 1.222 jonathan sc->sc_flags |= SCF_SACK_PERMIT;
4263 1.244 rpaulo
4264 1.244 rpaulo /*
4265 1.364 dholland * ECN setup packet received.
4266 1.244 rpaulo */
4267 1.244 rpaulo if ((th->th_flags & (TH_ECE|TH_CWR)) && tcp_do_ecn)
4268 1.244 rpaulo sc->sc_flags |= SCF_ECN_PERMIT;
4269 1.244 rpaulo
4270 1.201 jonathan #ifdef TCP_SIGNATURE
4271 1.206 itojun if (tb.t_flags & TF_SIGNATURE)
4272 1.206 itojun sc->sc_flags |= SCF_SIGNATURE;
4273 1.201 jonathan #endif
4274 1.93 itojun sc->sc_tp = tp;
4275 1.377 maxv m_freem(m);
4276 1.377 maxv if (syn_cache_respond(sc) == 0) {
4277 1.284 thorpej uint64_t *tcps = TCP_STAT_GETREF();
4278 1.284 thorpej tcps[TCP_STAT_SNDACKS]++;
4279 1.284 thorpej tcps[TCP_STAT_SNDTOTAL]++;
4280 1.284 thorpej TCP_STAT_PUTREF();
4281 1.93 itojun syn_cache_insert(sc, tp);
4282 1.29 thorpej } else {
4283 1.245 tls s = splsoftnet();
4284 1.305 bouyer /*
4285 1.305 bouyer * syn_cache_put() will try to schedule the timer, so
4286 1.305 bouyer * we need to initialize it
4287 1.305 bouyer */
4288 1.363 ozaki syn_cache_timer_arm(sc);
4289 1.272 dyoung syn_cache_put(sc);
4290 1.245 tls splx(s);
4291 1.284 thorpej TCP_STATINC(TCP_STAT_SC_DROPPED);
4292 1.29 thorpej }
4293 1.375 maxv return 1;
4294 1.29 thorpej }
4295 1.29 thorpej
4296 1.323 yamt /*
4297 1.323 yamt * syn_cache_respond: (re)send SYN+ACK.
4298 1.323 yamt *
4299 1.389 maxv * Returns 0 on success.
4300 1.323 yamt */
4301 1.323 yamt
4302 1.29 thorpej int
4303 1.377 maxv syn_cache_respond(struct syn_cache *sc)
4304 1.29 thorpej {
4305 1.275 martin #ifdef INET6
4306 1.350 ozaki struct rtentry *rt = NULL;
4307 1.275 martin #endif
4308 1.97 itojun struct route *ro;
4309 1.29 thorpej u_int8_t *optp;
4310 1.75 thorpej int optlen, error;
4311 1.75 thorpej u_int16_t tlen;
4312 1.83 itojun struct ip *ip = NULL;
4313 1.83 itojun #ifdef INET6
4314 1.83 itojun struct ip6_hdr *ip6 = NULL;
4315 1.83 itojun #endif
4316 1.393 maxv struct tcpcb *tp;
4317 1.83 itojun struct tcphdr *th;
4318 1.377 maxv struct mbuf *m;
4319 1.83 itojun u_int hlen;
4320 1.352 christos #ifdef TCP_SIGNATURE
4321 1.352 christos struct secasvar *sav = NULL;
4322 1.352 christos u_int8_t *sigp = NULL;
4323 1.352 christos #endif
4324 1.83 itojun
4325 1.264 dyoung ro = &sc->sc_route;
4326 1.83 itojun switch (sc->sc_src.sa.sa_family) {
4327 1.83 itojun case AF_INET:
4328 1.83 itojun hlen = sizeof(struct ip);
4329 1.83 itojun break;
4330 1.83 itojun #ifdef INET6
4331 1.83 itojun case AF_INET6:
4332 1.83 itojun hlen = sizeof(struct ip6_hdr);
4333 1.83 itojun break;
4334 1.83 itojun #endif
4335 1.83 itojun default:
4336 1.389 maxv return EAFNOSUPPORT;
4337 1.83 itojun }
4338 1.75 thorpej
4339 1.393 maxv /* Worst case scanario, since we don't know the option size yet. */
4340 1.352 christos tlen = hlen + sizeof(struct tcphdr) + MAX_TCPOPTLEN;
4341 1.393 maxv KASSERT(max_linkhdr + tlen <= MCLBYTES);
4342 1.29 thorpej
4343 1.29 thorpej /*
4344 1.109 itojun * Create the IP+TCP header from scratch.
4345 1.29 thorpej */
4346 1.109 itojun MGETHDR(m, M_DONTWAIT, MT_DATA);
4347 1.306 plunky if (m && (max_linkhdr + tlen) > MHLEN) {
4348 1.109 itojun MCLGET(m, M_DONTWAIT);
4349 1.111 thorpej if ((m->m_flags & M_EXT) == 0) {
4350 1.109 itojun m_freem(m);
4351 1.109 itojun m = NULL;
4352 1.109 itojun }
4353 1.29 thorpej }
4354 1.109 itojun if (m == NULL)
4355 1.352 christos return ENOBUFS;
4356 1.162 matt MCLAIM(m, &tcp_tx_mowner);
4357 1.29 thorpej
4358 1.393 maxv tp = sc->sc_tp;
4359 1.393 maxv
4360 1.75 thorpej /* Fixup the mbuf. */
4361 1.75 thorpej m->m_data += max_linkhdr;
4362 1.346 ozaki m_reset_rcvif(m);
4363 1.393 maxv memset(mtod(m, void *), 0, tlen);
4364 1.75 thorpej
4365 1.83 itojun switch (sc->sc_src.sa.sa_family) {
4366 1.83 itojun case AF_INET:
4367 1.83 itojun ip = mtod(m, struct ip *);
4368 1.206 itojun ip->ip_v = 4;
4369 1.83 itojun ip->ip_dst = sc->sc_src.sin.sin_addr;
4370 1.83 itojun ip->ip_src = sc->sc_dst.sin.sin_addr;
4371 1.83 itojun ip->ip_p = IPPROTO_TCP;
4372 1.83 itojun th = (struct tcphdr *)(ip + 1);
4373 1.83 itojun th->th_dport = sc->sc_src.sin.sin_port;
4374 1.83 itojun th->th_sport = sc->sc_dst.sin.sin_port;
4375 1.83 itojun break;
4376 1.83 itojun #ifdef INET6
4377 1.83 itojun case AF_INET6:
4378 1.83 itojun ip6 = mtod(m, struct ip6_hdr *);
4379 1.206 itojun ip6->ip6_vfc = IPV6_VERSION;
4380 1.83 itojun ip6->ip6_dst = sc->sc_src.sin6.sin6_addr;
4381 1.83 itojun ip6->ip6_src = sc->sc_dst.sin6.sin6_addr;
4382 1.83 itojun ip6->ip6_nxt = IPPROTO_TCP;
4383 1.83 itojun /* ip6_plen will be updated in ip6_output() */
4384 1.83 itojun th = (struct tcphdr *)(ip6 + 1);
4385 1.83 itojun th->th_dport = sc->sc_src.sin6.sin6_port;
4386 1.83 itojun th->th_sport = sc->sc_dst.sin6.sin6_port;
4387 1.83 itojun break;
4388 1.83 itojun #endif
4389 1.84 itojun default:
4390 1.393 maxv panic("%s: impossible (1)", __func__);
4391 1.83 itojun }
4392 1.75 thorpej
4393 1.83 itojun th->th_seq = htonl(sc->sc_iss);
4394 1.83 itojun th->th_ack = htonl(sc->sc_irs + 1);
4395 1.83 itojun th->th_flags = TH_SYN|TH_ACK;
4396 1.83 itojun th->th_win = htons(sc->sc_win);
4397 1.352 christos /* th_x2, th_sum, th_urp already 0 from memset */
4398 1.75 thorpej
4399 1.75 thorpej /* Tack on the TCP options. */
4400 1.83 itojun optp = (u_int8_t *)(th + 1);
4401 1.352 christos optlen = 0;
4402 1.75 thorpej *optp++ = TCPOPT_MAXSEG;
4403 1.352 christos *optp++ = TCPOLEN_MAXSEG;
4404 1.75 thorpej *optp++ = (sc->sc_ourmaxseg >> 8) & 0xff;
4405 1.75 thorpej *optp++ = sc->sc_ourmaxseg & 0xff;
4406 1.352 christos optlen += TCPOLEN_MAXSEG;
4407 1.29 thorpej
4408 1.29 thorpej if (sc->sc_request_r_scale != 15) {
4409 1.75 thorpej *((u_int32_t *)optp) = htonl(TCPOPT_NOP << 24 |
4410 1.29 thorpej TCPOPT_WINDOW << 16 | TCPOLEN_WINDOW << 8 |
4411 1.29 thorpej sc->sc_request_r_scale);
4412 1.352 christos optp += TCPOLEN_WINDOW + TCPOLEN_NOP;
4413 1.352 christos optlen += TCPOLEN_WINDOW + TCPOLEN_NOP;
4414 1.352 christos }
4415 1.352 christos
4416 1.352 christos if (sc->sc_flags & SCF_SACK_PERMIT) {
4417 1.352 christos /* Let the peer know that we will SACK. */
4418 1.352 christos *optp++ = TCPOPT_SACK_PERMITTED;
4419 1.352 christos *optp++ = TCPOLEN_SACK_PERMITTED;
4420 1.352 christos optlen += TCPOLEN_SACK_PERMITTED;
4421 1.29 thorpej }
4422 1.29 thorpej
4423 1.49 thorpej if (sc->sc_flags & SCF_TIMESTAMP) {
4424 1.389 maxv while (optlen % 4 != 2) {
4425 1.389 maxv optlen += TCPOLEN_NOP;
4426 1.389 maxv *optp++ = TCPOPT_NOP;
4427 1.389 maxv }
4428 1.352 christos *optp++ = TCPOPT_TIMESTAMP;
4429 1.352 christos *optp++ = TCPOLEN_TIMESTAMP;
4430 1.75 thorpej u_int32_t *lp = (u_int32_t *)(optp);
4431 1.29 thorpej /* Form timestamp option as shown in appendix A of RFC 1323. */
4432 1.123 thorpej *lp++ = htonl(SYN_CACHE_TIMESTAMP(sc));
4433 1.80 thorpej *lp = htonl(sc->sc_timestamp);
4434 1.352 christos optp += TCPOLEN_TIMESTAMP - 2;
4435 1.352 christos optlen += TCPOLEN_TIMESTAMP;
4436 1.352 christos }
4437 1.352 christos
4438 1.352 christos #ifdef TCP_SIGNATURE
4439 1.352 christos if (sc->sc_flags & SCF_SIGNATURE) {
4440 1.379 maxv sav = tcp_signature_getsav(m);
4441 1.352 christos if (sav == NULL) {
4442 1.389 maxv m_freem(m);
4443 1.389 maxv return EPERM;
4444 1.352 christos }
4445 1.352 christos
4446 1.352 christos *optp++ = TCPOPT_SIGNATURE;
4447 1.352 christos *optp++ = TCPOLEN_SIGNATURE;
4448 1.352 christos sigp = optp;
4449 1.352 christos memset(optp, 0, TCP_SIGLEN);
4450 1.352 christos optp += TCP_SIGLEN;
4451 1.352 christos optlen += TCPOLEN_SIGNATURE;
4452 1.352 christos }
4453 1.352 christos #endif
4454 1.389 maxv
4455 1.389 maxv /*
4456 1.389 maxv * Terminate and pad TCP options to a 4 byte boundary.
4457 1.389 maxv *
4458 1.389 maxv * According to RFC793: "The content of the header beyond the
4459 1.389 maxv * End-of-Option option must be header padding (i.e., zero)."
4460 1.389 maxv * And later: "The padding is composed of zeros."
4461 1.389 maxv */
4462 1.352 christos if (optlen % 4) {
4463 1.352 christos optlen += TCPOLEN_EOL;
4464 1.352 christos *optp++ = TCPOPT_EOL;
4465 1.352 christos }
4466 1.352 christos while (optlen % 4) {
4467 1.352 christos optlen += TCPOLEN_PAD;
4468 1.352 christos *optp++ = TCPOPT_PAD;
4469 1.29 thorpej }
4470 1.29 thorpej
4471 1.389 maxv /* Compute the actual values now that we've added the options. */
4472 1.352 christos tlen = hlen + sizeof(struct tcphdr) + optlen;
4473 1.352 christos m->m_len = m->m_pkthdr.len = tlen;
4474 1.352 christos th->th_off = (sizeof(struct tcphdr) + optlen) >> 2;
4475 1.222 jonathan
4476 1.352 christos #ifdef TCP_SIGNATURE
4477 1.352 christos if (sav) {
4478 1.352 christos (void)tcp_signature(m, th, hlen, sav, sigp);
4479 1.352 christos key_sa_recordxfer(sav, m);
4480 1.360 ozaki KEY_SA_UNREF(&sav);
4481 1.222 jonathan }
4482 1.352 christos #endif
4483 1.222 jonathan
4484 1.244 rpaulo /*
4485 1.244 rpaulo * Send ECN SYN-ACK setup packet.
4486 1.244 rpaulo * Routes can be asymetric, so, even if we receive a packet
4487 1.244 rpaulo * with ECE and CWR set, we must not assume no one will block
4488 1.244 rpaulo * the ECE packet we are about to send.
4489 1.244 rpaulo */
4490 1.244 rpaulo if ((sc->sc_flags & SCF_ECN_PERMIT) && tp &&
4491 1.244 rpaulo SEQ_GEQ(tp->snd_nxt, tp->snd_max)) {
4492 1.244 rpaulo th->th_flags |= TH_ECE;
4493 1.284 thorpej TCP_STATINC(TCP_STAT_ECN_SHS);
4494 1.244 rpaulo
4495 1.244 rpaulo /*
4496 1.244 rpaulo * draft-ietf-tcpm-ecnsyn-00.txt
4497 1.244 rpaulo *
4498 1.244 rpaulo * "[...] a TCP node MAY respond to an ECN-setup
4499 1.244 rpaulo * SYN packet by setting ECT in the responding
4500 1.244 rpaulo * ECN-setup SYN/ACK packet, indicating to routers
4501 1.244 rpaulo * that the SYN/ACK packet is ECN-Capable.
4502 1.244 rpaulo * This allows a congested router along the path
4503 1.244 rpaulo * to mark the packet instead of dropping the
4504 1.244 rpaulo * packet as an indication of congestion."
4505 1.244 rpaulo *
4506 1.244 rpaulo * "[...] There can be a great benefit in setting
4507 1.244 rpaulo * an ECN-capable codepoint in SYN/ACK packets [...]
4508 1.244 rpaulo * Congestion is most likely to occur in
4509 1.244 rpaulo * the server-to-client direction. As a result,
4510 1.244 rpaulo * setting an ECN-capable codepoint in SYN/ACK
4511 1.244 rpaulo * packets can reduce the occurence of three-second
4512 1.244 rpaulo * retransmit timeouts resulting from the drop
4513 1.244 rpaulo * of SYN/ACK packets."
4514 1.244 rpaulo *
4515 1.244 rpaulo * Page 4 and 6, January 2006.
4516 1.244 rpaulo */
4517 1.244 rpaulo
4518 1.244 rpaulo switch (sc->sc_src.sa.sa_family) {
4519 1.244 rpaulo case AF_INET:
4520 1.244 rpaulo ip->ip_tos |= IPTOS_ECN_ECT0;
4521 1.244 rpaulo break;
4522 1.244 rpaulo #ifdef INET6
4523 1.244 rpaulo case AF_INET6:
4524 1.244 rpaulo ip6->ip6_flow |= htonl(IPTOS_ECN_ECT0 << 20);
4525 1.244 rpaulo break;
4526 1.244 rpaulo #endif
4527 1.244 rpaulo }
4528 1.284 thorpej TCP_STATINC(TCP_STAT_ECN_ECT);
4529 1.244 rpaulo }
4530 1.244 rpaulo
4531 1.201 jonathan
4532 1.29 thorpej /*
4533 1.393 maxv * Compute the packet's checksum.
4534 1.393 maxv *
4535 1.75 thorpej * Fill in some straggling IP bits. Note the stack expects
4536 1.75 thorpej * ip_len to be in host order, for convenience.
4537 1.29 thorpej */
4538 1.83 itojun switch (sc->sc_src.sa.sa_family) {
4539 1.83 itojun case AF_INET:
4540 1.393 maxv ip->ip_len = htons(tlen - hlen);
4541 1.393 maxv th->th_sum = 0;
4542 1.393 maxv th->th_sum = in4_cksum(m, IPPROTO_TCP, hlen, tlen - hlen);
4543 1.150 itojun ip->ip_len = htons(tlen);
4544 1.83 itojun ip->ip_ttl = ip_defttl;
4545 1.83 itojun /* XXX tos? */
4546 1.83 itojun break;
4547 1.83 itojun #ifdef INET6
4548 1.83 itojun case AF_INET6:
4549 1.393 maxv ip6->ip6_plen = htons(tlen - hlen);
4550 1.393 maxv th->th_sum = 0;
4551 1.393 maxv th->th_sum = in6_cksum(m, IPPROTO_TCP, hlen, tlen - hlen);
4552 1.100 itojun ip6->ip6_vfc &= ~IPV6_VERSION_MASK;
4553 1.100 itojun ip6->ip6_vfc |= IPV6_VERSION;
4554 1.83 itojun ip6->ip6_plen = htons(tlen - hlen);
4555 1.99 itojun /* ip6_hlim will be initialized afterwards */
4556 1.83 itojun /* XXX flowlabel? */
4557 1.83 itojun break;
4558 1.83 itojun #endif
4559 1.83 itojun }
4560 1.29 thorpej
4561 1.177 jonathan /* XXX use IPsec policy on listening socket, on SYN ACK */
4562 1.177 jonathan tp = sc->sc_tp;
4563 1.177 jonathan
4564 1.83 itojun switch (sc->sc_src.sa.sa_family) {
4565 1.83 itojun case AF_INET:
4566 1.118 thorpej error = ip_output(m, sc->sc_ipopts, ro,
4567 1.221 perry (ip_mtudisc ? IP_MTUDISC : 0),
4568 1.355 ozaki NULL, tp ? tp->t_inpcb : NULL);
4569 1.83 itojun break;
4570 1.83 itojun #ifdef INET6
4571 1.83 itojun case AF_INET6:
4572 1.99 itojun ip6->ip6_hlim = in6_selecthlim(NULL,
4573 1.338 ozaki (rt = rtcache_validate(ro)) != NULL ? rt->rt_ifp : NULL);
4574 1.350 ozaki rtcache_unref(rt, ro);
4575 1.99 itojun
4576 1.355 ozaki error = ip6_output(m, NULL /*XXX*/, ro, 0, NULL,
4577 1.355 ozaki tp ? tp->t_in6pcb : NULL, NULL);
4578 1.83 itojun break;
4579 1.83 itojun #endif
4580 1.84 itojun default:
4581 1.393 maxv panic("%s: impossible (2)", __func__);
4582 1.83 itojun }
4583 1.389 maxv
4584 1.389 maxv return error;
4585 1.1 cgd }
4586