tcp_subr.c revision 1.152 1 1.152 itojun /* $NetBSD: tcp_subr.c,v 1.152 2003/09/06 03:36:31 itojun Exp $ */
2 1.67 itojun
3 1.67 itojun /*
4 1.67 itojun * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
5 1.67 itojun * All rights reserved.
6 1.131 itojun *
7 1.67 itojun * Redistribution and use in source and binary forms, with or without
8 1.67 itojun * modification, are permitted provided that the following conditions
9 1.67 itojun * are met:
10 1.67 itojun * 1. Redistributions of source code must retain the above copyright
11 1.67 itojun * notice, this list of conditions and the following disclaimer.
12 1.67 itojun * 2. Redistributions in binary form must reproduce the above copyright
13 1.67 itojun * notice, this list of conditions and the following disclaimer in the
14 1.67 itojun * documentation and/or other materials provided with the distribution.
15 1.67 itojun * 3. Neither the name of the project nor the names of its contributors
16 1.67 itojun * may be used to endorse or promote products derived from this software
17 1.67 itojun * without specific prior written permission.
18 1.131 itojun *
19 1.67 itojun * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
20 1.67 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.67 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.67 itojun * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
23 1.67 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.67 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.67 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.67 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.67 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.67 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.67 itojun * SUCH DAMAGE.
30 1.67 itojun */
31 1.41 thorpej
32 1.41 thorpej /*-
33 1.108 thorpej * Copyright (c) 1997, 1998, 2000, 2001 The NetBSD Foundation, Inc.
34 1.41 thorpej * All rights reserved.
35 1.41 thorpej *
36 1.41 thorpej * This code is derived from software contributed to The NetBSD Foundation
37 1.41 thorpej * by Jason R. Thorpe and Kevin M. Lahey of the Numerical Aerospace Simulation
38 1.41 thorpej * Facility, NASA Ames Research Center.
39 1.41 thorpej *
40 1.41 thorpej * Redistribution and use in source and binary forms, with or without
41 1.41 thorpej * modification, are permitted provided that the following conditions
42 1.41 thorpej * are met:
43 1.41 thorpej * 1. Redistributions of source code must retain the above copyright
44 1.41 thorpej * notice, this list of conditions and the following disclaimer.
45 1.41 thorpej * 2. Redistributions in binary form must reproduce the above copyright
46 1.41 thorpej * notice, this list of conditions and the following disclaimer in the
47 1.41 thorpej * documentation and/or other materials provided with the distribution.
48 1.41 thorpej * 3. All advertising materials mentioning features or use of this software
49 1.41 thorpej * must display the following acknowledgement:
50 1.41 thorpej * This product includes software developed by the NetBSD
51 1.41 thorpej * Foundation, Inc. and its contributors.
52 1.41 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
53 1.41 thorpej * contributors may be used to endorse or promote products derived
54 1.41 thorpej * from this software without specific prior written permission.
55 1.41 thorpej *
56 1.41 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
57 1.41 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
58 1.41 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
59 1.41 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
60 1.41 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
61 1.41 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
62 1.41 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
63 1.41 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
64 1.41 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
65 1.41 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
66 1.41 thorpej * POSSIBILITY OF SUCH DAMAGE.
67 1.41 thorpej */
68 1.11 cgd
69 1.1 cgd /*
70 1.38 thorpej * Copyright (c) 1982, 1986, 1988, 1990, 1993, 1995
71 1.10 mycroft * The Regents of the University of California. All rights reserved.
72 1.1 cgd *
73 1.1 cgd * Redistribution and use in source and binary forms, with or without
74 1.1 cgd * modification, are permitted provided that the following conditions
75 1.1 cgd * are met:
76 1.1 cgd * 1. Redistributions of source code must retain the above copyright
77 1.1 cgd * notice, this list of conditions and the following disclaimer.
78 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
79 1.1 cgd * notice, this list of conditions and the following disclaimer in the
80 1.1 cgd * documentation and/or other materials provided with the distribution.
81 1.145 agc * 3. Neither the name of the University nor the names of its contributors
82 1.1 cgd * may be used to endorse or promote products derived from this software
83 1.1 cgd * without specific prior written permission.
84 1.1 cgd *
85 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
86 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
87 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
88 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
89 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
90 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
91 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
92 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
93 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
94 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
95 1.1 cgd * SUCH DAMAGE.
96 1.1 cgd *
97 1.38 thorpej * @(#)tcp_subr.c 8.2 (Berkeley) 5/24/95
98 1.1 cgd */
99 1.122 lukem
100 1.122 lukem #include <sys/cdefs.h>
101 1.152 itojun __KERNEL_RCSID(0, "$NetBSD: tcp_subr.c,v 1.152 2003/09/06 03:36:31 itojun Exp $");
102 1.1 cgd
103 1.67 itojun #include "opt_inet.h"
104 1.70 thorpej #include "opt_ipsec.h"
105 1.39 scottr #include "opt_tcp_compat_42.h"
106 1.111 thorpej #include "opt_inet_csum.h"
107 1.140 martin #include "opt_mbuftrace.h"
108 1.30 explorer #include "rnd.h"
109 1.30 explorer
110 1.5 mycroft #include <sys/param.h>
111 1.10 mycroft #include <sys/proc.h>
112 1.5 mycroft #include <sys/systm.h>
113 1.5 mycroft #include <sys/malloc.h>
114 1.5 mycroft #include <sys/mbuf.h>
115 1.5 mycroft #include <sys/socket.h>
116 1.5 mycroft #include <sys/socketvar.h>
117 1.5 mycroft #include <sys/protosw.h>
118 1.5 mycroft #include <sys/errno.h>
119 1.27 thorpej #include <sys/kernel.h>
120 1.57 thorpej #include <sys/pool.h>
121 1.30 explorer #if NRND > 0
122 1.108 thorpej #include <sys/md5.h>
123 1.29 explorer #include <sys/rnd.h>
124 1.30 explorer #endif
125 1.1 cgd
126 1.5 mycroft #include <net/route.h>
127 1.5 mycroft #include <net/if.h>
128 1.1 cgd
129 1.5 mycroft #include <netinet/in.h>
130 1.5 mycroft #include <netinet/in_systm.h>
131 1.5 mycroft #include <netinet/ip.h>
132 1.5 mycroft #include <netinet/in_pcb.h>
133 1.5 mycroft #include <netinet/ip_var.h>
134 1.5 mycroft #include <netinet/ip_icmp.h>
135 1.67 itojun
136 1.67 itojun #ifdef INET6
137 1.67 itojun #ifndef INET
138 1.67 itojun #include <netinet/in.h>
139 1.67 itojun #endif
140 1.67 itojun #include <netinet/ip6.h>
141 1.67 itojun #include <netinet6/in6_pcb.h>
142 1.67 itojun #include <netinet6/ip6_var.h>
143 1.73 itojun #include <netinet6/in6_var.h>
144 1.82 itojun #include <netinet6/ip6protosw.h>
145 1.99 itojun #include <netinet/icmp6.h>
146 1.130 itojun #include <netinet6/nd6.h>
147 1.67 itojun #endif
148 1.67 itojun
149 1.5 mycroft #include <netinet/tcp.h>
150 1.5 mycroft #include <netinet/tcp_fsm.h>
151 1.5 mycroft #include <netinet/tcp_seq.h>
152 1.5 mycroft #include <netinet/tcp_timer.h>
153 1.5 mycroft #include <netinet/tcp_var.h>
154 1.5 mycroft #include <netinet/tcpip.h>
155 1.1 cgd
156 1.67 itojun #ifdef IPSEC
157 1.67 itojun #include <netinet6/ipsec.h>
158 1.67 itojun #endif /*IPSEC*/
159 1.67 itojun
160 1.146 jonathan #ifdef FAST_IPSEC
161 1.146 jonathan #include <netipsec/ipsec.h>
162 1.146 jonathan #ifdef INET6
163 1.146 jonathan #include <netipsec/ipsec6.h>
164 1.146 jonathan #endif
165 1.146 jonathan #endif /* FAST_IPSEC*/
166 1.146 jonathan
167 1.146 jonathan
168 1.127 matt struct inpcbtable tcbtable; /* head of queue of active tcpcb's */
169 1.127 matt struct tcpstat tcpstat; /* tcp statistics */
170 1.127 matt u_int32_t tcp_now; /* for RFC 1323 timestamps */
171 1.67 itojun
172 1.1 cgd /* patchable/settable parameters for tcp */
173 1.1 cgd int tcp_mssdflt = TCP_MSS;
174 1.1 cgd int tcp_rttdflt = TCPTV_SRTTDFLT / PR_SLOWHZ;
175 1.49 matt int tcp_do_rfc1323 = 1; /* window scaling / timestamps (obsolete) */
176 1.108 thorpej #if NRND > 0
177 1.108 thorpej int tcp_do_rfc1948 = 0; /* ISS by cryptographic hash */
178 1.108 thorpej #endif
179 1.49 matt int tcp_do_sack = 1; /* selective acknowledgement */
180 1.49 matt int tcp_do_win_scale = 1; /* RFC1323 window scaling */
181 1.49 matt int tcp_do_timestamps = 1; /* RFC1323 timestamps */
182 1.60 matt int tcp_do_newreno = 0; /* Use the New Reno algorithms */
183 1.50 thorpej int tcp_ack_on_push = 0; /* set to enable immediate ACK-on-PUSH */
184 1.143 ragge #ifndef TCP_INIT_WIN
185 1.143 ragge #define TCP_INIT_WIN 1 /* initial slow start window */
186 1.143 ragge #endif
187 1.143 ragge #ifndef TCP_INIT_WIN_LOCAL
188 1.143 ragge #define TCP_INIT_WIN_LOCAL 4 /* initial slow start window for local nets */
189 1.143 ragge #endif
190 1.143 ragge int tcp_init_win = TCP_INIT_WIN;
191 1.143 ragge int tcp_init_win_local = TCP_INIT_WIN_LOCAL;
192 1.47 kml int tcp_mss_ifmtu = 0;
193 1.48 thorpej #ifdef TCP_COMPAT_42
194 1.48 thorpej int tcp_compat_42 = 1;
195 1.48 thorpej #else
196 1.48 thorpej int tcp_compat_42 = 0;
197 1.48 thorpej #endif
198 1.97 itojun int tcp_rst_ppslim = 100; /* 100pps */
199 1.1 cgd
200 1.97 itojun /* tcb hash */
201 1.21 mycroft #ifndef TCBHASHSIZE
202 1.21 mycroft #define TCBHASHSIZE 128
203 1.21 mycroft #endif
204 1.21 mycroft int tcbhashsize = TCBHASHSIZE;
205 1.97 itojun
206 1.97 itojun /* syn hash parameters */
207 1.97 itojun #define TCP_SYN_HASH_SIZE 293
208 1.97 itojun #define TCP_SYN_BUCKET_SIZE 35
209 1.97 itojun int tcp_syn_cache_size = TCP_SYN_HASH_SIZE;
210 1.97 itojun int tcp_syn_cache_limit = TCP_SYN_HASH_SIZE*TCP_SYN_BUCKET_SIZE;
211 1.97 itojun int tcp_syn_bucket_limit = 3*TCP_SYN_BUCKET_SIZE;
212 1.97 itojun struct syn_cache_head tcp_syn_cache[TCP_SYN_HASH_SIZE];
213 1.1 cgd
214 1.35 thorpej int tcp_freeq __P((struct tcpcb *));
215 1.35 thorpej
216 1.99 itojun #ifdef INET
217 1.98 thorpej void tcp_mtudisc_callback __P((struct in_addr));
218 1.99 itojun #endif
219 1.99 itojun #ifdef INET6
220 1.99 itojun void tcp6_mtudisc_callback __P((struct in6_addr *));
221 1.99 itojun #endif
222 1.98 thorpej
223 1.98 thorpej void tcp_mtudisc __P((struct inpcb *, int));
224 1.101 itojun #ifdef INET6
225 1.98 thorpej void tcp6_mtudisc __P((struct in6pcb *, int));
226 1.98 thorpej #endif
227 1.98 thorpej
228 1.57 thorpej struct pool tcpcb_pool;
229 1.57 thorpej
230 1.111 thorpej #ifdef TCP_CSUM_COUNTERS
231 1.111 thorpej #include <sys/device.h>
232 1.111 thorpej
233 1.111 thorpej struct evcnt tcp_hwcsum_bad = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
234 1.111 thorpej NULL, "tcp", "hwcsum bad");
235 1.111 thorpej struct evcnt tcp_hwcsum_ok = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
236 1.111 thorpej NULL, "tcp", "hwcsum ok");
237 1.111 thorpej struct evcnt tcp_hwcsum_data = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
238 1.111 thorpej NULL, "tcp", "hwcsum data");
239 1.111 thorpej struct evcnt tcp_swcsum = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
240 1.111 thorpej NULL, "tcp", "swcsum");
241 1.111 thorpej #endif /* TCP_CSUM_COUNTERS */
242 1.111 thorpej
243 1.125 thorpej #ifdef TCP_OUTPUT_COUNTERS
244 1.125 thorpej #include <sys/device.h>
245 1.125 thorpej
246 1.125 thorpej struct evcnt tcp_output_bigheader = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
247 1.125 thorpej NULL, "tcp", "output big header");
248 1.125 thorpej struct evcnt tcp_output_copysmall = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
249 1.125 thorpej NULL, "tcp", "output copy small");
250 1.125 thorpej struct evcnt tcp_output_copybig = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
251 1.125 thorpej NULL, "tcp", "output copy big");
252 1.125 thorpej struct evcnt tcp_output_refbig = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
253 1.125 thorpej NULL, "tcp", "output reference big");
254 1.125 thorpej #endif /* TCP_OUTPUT_COUNTERS */
255 1.125 thorpej
256 1.126 matt #ifdef TCP_REASS_COUNTERS
257 1.126 matt #include <sys/device.h>
258 1.126 matt
259 1.126 matt struct evcnt tcp_reass_ = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
260 1.126 matt NULL, "tcp_reass", "calls");
261 1.126 matt struct evcnt tcp_reass_empty = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
262 1.126 matt &tcp_reass_, "tcp_reass", "insert into empty queue");
263 1.126 matt struct evcnt tcp_reass_iteration[8] = {
264 1.126 matt EVCNT_INITIALIZER(EVCNT_TYPE_MISC, &tcp_reass_, "tcp_reass", ">7 iterations"),
265 1.126 matt EVCNT_INITIALIZER(EVCNT_TYPE_MISC, &tcp_reass_, "tcp_reass", "1 iteration"),
266 1.126 matt EVCNT_INITIALIZER(EVCNT_TYPE_MISC, &tcp_reass_, "tcp_reass", "2 iterations"),
267 1.126 matt EVCNT_INITIALIZER(EVCNT_TYPE_MISC, &tcp_reass_, "tcp_reass", "3 iterations"),
268 1.126 matt EVCNT_INITIALIZER(EVCNT_TYPE_MISC, &tcp_reass_, "tcp_reass", "4 iterations"),
269 1.126 matt EVCNT_INITIALIZER(EVCNT_TYPE_MISC, &tcp_reass_, "tcp_reass", "5 iterations"),
270 1.126 matt EVCNT_INITIALIZER(EVCNT_TYPE_MISC, &tcp_reass_, "tcp_reass", "6 iterations"),
271 1.126 matt EVCNT_INITIALIZER(EVCNT_TYPE_MISC, &tcp_reass_, "tcp_reass", "7 iterations"),
272 1.126 matt };
273 1.126 matt struct evcnt tcp_reass_prependfirst = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
274 1.126 matt &tcp_reass_, "tcp_reass", "prepend to first");
275 1.126 matt struct evcnt tcp_reass_prepend = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
276 1.126 matt &tcp_reass_, "tcp_reass", "prepend");
277 1.126 matt struct evcnt tcp_reass_insert = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
278 1.126 matt &tcp_reass_, "tcp_reass", "insert");
279 1.126 matt struct evcnt tcp_reass_inserttail = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
280 1.126 matt &tcp_reass_, "tcp_reass", "insert at tail");
281 1.126 matt struct evcnt tcp_reass_append = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
282 1.126 matt &tcp_reass_, "tcp_reass", "append");
283 1.126 matt struct evcnt tcp_reass_appendtail = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
284 1.126 matt &tcp_reass_, "tcp_reass", "append to tail fragment");
285 1.126 matt struct evcnt tcp_reass_overlaptail = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
286 1.126 matt &tcp_reass_, "tcp_reass", "overlap at end");
287 1.126 matt struct evcnt tcp_reass_overlapfront = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
288 1.126 matt &tcp_reass_, "tcp_reass", "overlap at start");
289 1.126 matt struct evcnt tcp_reass_segdup = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
290 1.126 matt &tcp_reass_, "tcp_reass", "duplicate segment");
291 1.126 matt struct evcnt tcp_reass_fragdup = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
292 1.126 matt &tcp_reass_, "tcp_reass", "duplicate fragment");
293 1.126 matt
294 1.126 matt #endif /* TCP_REASS_COUNTERS */
295 1.126 matt
296 1.138 matt #ifdef MBUFTRACE
297 1.138 matt struct mowner tcp_mowner = { "tcp" };
298 1.138 matt struct mowner tcp_rx_mowner = { "tcp", "rx" };
299 1.138 matt struct mowner tcp_tx_mowner = { "tcp", "tx" };
300 1.138 matt #endif
301 1.138 matt
302 1.1 cgd /*
303 1.1 cgd * Tcp initialization
304 1.1 cgd */
305 1.7 mycroft void
306 1.1 cgd tcp_init()
307 1.1 cgd {
308 1.67 itojun int hlen;
309 1.1 cgd
310 1.57 thorpej pool_init(&tcpcb_pool, sizeof(struct tcpcb), 0, 0, 0, "tcpcbpl",
311 1.123 thorpej NULL);
312 1.24 mycroft in_pcbinit(&tcbtable, tcbhashsize, tcbhashsize);
313 1.115 thorpej
314 1.67 itojun hlen = sizeof(struct ip) + sizeof(struct tcphdr);
315 1.67 itojun #ifdef INET6
316 1.67 itojun if (sizeof(struct ip) < sizeof(struct ip6_hdr))
317 1.67 itojun hlen = sizeof(struct ip6_hdr) + sizeof(struct tcphdr);
318 1.67 itojun #endif
319 1.67 itojun if (max_protohdr < hlen)
320 1.67 itojun max_protohdr = hlen;
321 1.67 itojun if (max_linkhdr + hlen > MHLEN)
322 1.1 cgd panic("tcp_init");
323 1.98 thorpej
324 1.99 itojun #ifdef INET
325 1.98 thorpej icmp_mtudisc_callback_register(tcp_mtudisc_callback);
326 1.99 itojun #endif
327 1.99 itojun #ifdef INET6
328 1.99 itojun icmp6_mtudisc_callback_register(tcp6_mtudisc_callback);
329 1.99 itojun #endif
330 1.117 thorpej
331 1.117 thorpej /* Initialize timer state. */
332 1.117 thorpej tcp_timer_init();
333 1.98 thorpej
334 1.52 thorpej /* Initialize the compressed state engine. */
335 1.52 thorpej syn_cache_init();
336 1.111 thorpej
337 1.111 thorpej #ifdef TCP_CSUM_COUNTERS
338 1.111 thorpej evcnt_attach_static(&tcp_hwcsum_bad);
339 1.111 thorpej evcnt_attach_static(&tcp_hwcsum_ok);
340 1.111 thorpej evcnt_attach_static(&tcp_hwcsum_data);
341 1.111 thorpej evcnt_attach_static(&tcp_swcsum);
342 1.111 thorpej #endif /* TCP_CSUM_COUNTERS */
343 1.125 thorpej
344 1.125 thorpej #ifdef TCP_OUTPUT_COUNTERS
345 1.125 thorpej evcnt_attach_static(&tcp_output_bigheader);
346 1.125 thorpej evcnt_attach_static(&tcp_output_copysmall);
347 1.125 thorpej evcnt_attach_static(&tcp_output_copybig);
348 1.125 thorpej evcnt_attach_static(&tcp_output_refbig);
349 1.125 thorpej #endif /* TCP_OUTPUT_COUNTERS */
350 1.126 matt
351 1.126 matt #ifdef TCP_REASS_COUNTERS
352 1.126 matt evcnt_attach_static(&tcp_reass_);
353 1.126 matt evcnt_attach_static(&tcp_reass_empty);
354 1.126 matt evcnt_attach_static(&tcp_reass_iteration[0]);
355 1.126 matt evcnt_attach_static(&tcp_reass_iteration[1]);
356 1.126 matt evcnt_attach_static(&tcp_reass_iteration[2]);
357 1.126 matt evcnt_attach_static(&tcp_reass_iteration[3]);
358 1.126 matt evcnt_attach_static(&tcp_reass_iteration[4]);
359 1.126 matt evcnt_attach_static(&tcp_reass_iteration[5]);
360 1.126 matt evcnt_attach_static(&tcp_reass_iteration[6]);
361 1.126 matt evcnt_attach_static(&tcp_reass_iteration[7]);
362 1.126 matt evcnt_attach_static(&tcp_reass_prependfirst);
363 1.126 matt evcnt_attach_static(&tcp_reass_prepend);
364 1.126 matt evcnt_attach_static(&tcp_reass_insert);
365 1.126 matt evcnt_attach_static(&tcp_reass_inserttail);
366 1.126 matt evcnt_attach_static(&tcp_reass_append);
367 1.126 matt evcnt_attach_static(&tcp_reass_appendtail);
368 1.126 matt evcnt_attach_static(&tcp_reass_overlaptail);
369 1.126 matt evcnt_attach_static(&tcp_reass_overlapfront);
370 1.126 matt evcnt_attach_static(&tcp_reass_segdup);
371 1.126 matt evcnt_attach_static(&tcp_reass_fragdup);
372 1.126 matt #endif /* TCP_REASS_COUNTERS */
373 1.138 matt
374 1.138 matt MOWNER_ATTACH(&tcp_tx_mowner);
375 1.138 matt MOWNER_ATTACH(&tcp_rx_mowner);
376 1.138 matt MOWNER_ATTACH(&tcp_mowner);
377 1.1 cgd }
378 1.1 cgd
379 1.1 cgd /*
380 1.1 cgd * Create template to be used to send tcp packets on a connection.
381 1.1 cgd * Call after host entry created, allocates an mbuf and fills
382 1.1 cgd * in a skeletal tcp/ip header, minimizing the amount of work
383 1.1 cgd * necessary when the connection is used.
384 1.1 cgd */
385 1.67 itojun struct mbuf *
386 1.1 cgd tcp_template(tp)
387 1.1 cgd struct tcpcb *tp;
388 1.1 cgd {
389 1.91 augustss struct inpcb *inp = tp->t_inpcb;
390 1.67 itojun #ifdef INET6
391 1.91 augustss struct in6pcb *in6p = tp->t_in6pcb;
392 1.67 itojun #endif
393 1.91 augustss struct tcphdr *n;
394 1.91 augustss struct mbuf *m;
395 1.67 itojun int hlen;
396 1.1 cgd
397 1.67 itojun switch (tp->t_family) {
398 1.67 itojun case AF_INET:
399 1.67 itojun hlen = sizeof(struct ip);
400 1.67 itojun if (inp)
401 1.67 itojun break;
402 1.67 itojun #ifdef INET6
403 1.67 itojun if (in6p) {
404 1.67 itojun /* mapped addr case */
405 1.67 itojun if (IN6_IS_ADDR_V4MAPPED(&in6p->in6p_laddr)
406 1.67 itojun && IN6_IS_ADDR_V4MAPPED(&in6p->in6p_faddr))
407 1.67 itojun break;
408 1.67 itojun }
409 1.67 itojun #endif
410 1.67 itojun return NULL; /*EINVAL*/
411 1.67 itojun #ifdef INET6
412 1.67 itojun case AF_INET6:
413 1.67 itojun hlen = sizeof(struct ip6_hdr);
414 1.67 itojun if (in6p) {
415 1.67 itojun /* more sainty check? */
416 1.67 itojun break;
417 1.67 itojun }
418 1.67 itojun return NULL; /*EINVAL*/
419 1.67 itojun #endif
420 1.67 itojun default:
421 1.68 itojun hlen = 0; /*pacify gcc*/
422 1.67 itojun return NULL; /*EAFNOSUPPORT*/
423 1.67 itojun }
424 1.93 itojun #ifdef DIAGNOSTIC
425 1.93 itojun if (hlen + sizeof(struct tcphdr) > MCLBYTES)
426 1.93 itojun panic("mclbytes too small for t_template");
427 1.93 itojun #endif
428 1.93 itojun m = tp->t_template;
429 1.93 itojun if (m && m->m_len == hlen + sizeof(struct tcphdr))
430 1.93 itojun ;
431 1.93 itojun else {
432 1.93 itojun if (m)
433 1.93 itojun m_freem(m);
434 1.93 itojun m = tp->t_template = NULL;
435 1.67 itojun MGETHDR(m, M_DONTWAIT, MT_HEADER);
436 1.93 itojun if (m && hlen + sizeof(struct tcphdr) > MHLEN) {
437 1.67 itojun MCLGET(m, M_DONTWAIT);
438 1.67 itojun if ((m->m_flags & M_EXT) == 0) {
439 1.67 itojun m_free(m);
440 1.67 itojun m = NULL;
441 1.67 itojun }
442 1.67 itojun }
443 1.67 itojun if (m == NULL)
444 1.67 itojun return NULL;
445 1.138 matt MCLAIM(m, &tcp_mowner);
446 1.79 itojun m->m_pkthdr.len = m->m_len = hlen + sizeof(struct tcphdr);
447 1.67 itojun }
448 1.111 thorpej
449 1.67 itojun bzero(mtod(m, caddr_t), m->m_len);
450 1.111 thorpej
451 1.111 thorpej n = (struct tcphdr *)(mtod(m, caddr_t) + hlen);
452 1.111 thorpej
453 1.67 itojun switch (tp->t_family) {
454 1.67 itojun case AF_INET:
455 1.67 itojun {
456 1.67 itojun struct ipovly *ipov;
457 1.67 itojun mtod(m, struct ip *)->ip_v = 4;
458 1.67 itojun ipov = mtod(m, struct ipovly *);
459 1.67 itojun ipov->ih_pr = IPPROTO_TCP;
460 1.67 itojun ipov->ih_len = htons(sizeof(struct tcphdr));
461 1.67 itojun if (inp) {
462 1.67 itojun ipov->ih_src = inp->inp_laddr;
463 1.67 itojun ipov->ih_dst = inp->inp_faddr;
464 1.67 itojun }
465 1.67 itojun #ifdef INET6
466 1.67 itojun else if (in6p) {
467 1.67 itojun /* mapped addr case */
468 1.67 itojun bcopy(&in6p->in6p_laddr.s6_addr32[3], &ipov->ih_src,
469 1.67 itojun sizeof(ipov->ih_src));
470 1.67 itojun bcopy(&in6p->in6p_faddr.s6_addr32[3], &ipov->ih_dst,
471 1.67 itojun sizeof(ipov->ih_dst));
472 1.67 itojun }
473 1.67 itojun #endif
474 1.111 thorpej /*
475 1.111 thorpej * Compute the pseudo-header portion of the checksum
476 1.111 thorpej * now. We incrementally add in the TCP option and
477 1.111 thorpej * payload lengths later, and then compute the TCP
478 1.111 thorpej * checksum right before the packet is sent off onto
479 1.111 thorpej * the wire.
480 1.111 thorpej */
481 1.111 thorpej n->th_sum = in_cksum_phdr(ipov->ih_src.s_addr,
482 1.111 thorpej ipov->ih_dst.s_addr,
483 1.111 thorpej htons(sizeof(struct tcphdr) + IPPROTO_TCP));
484 1.67 itojun break;
485 1.67 itojun }
486 1.67 itojun #ifdef INET6
487 1.67 itojun case AF_INET6:
488 1.67 itojun {
489 1.67 itojun struct ip6_hdr *ip6;
490 1.67 itojun mtod(m, struct ip *)->ip_v = 6;
491 1.67 itojun ip6 = mtod(m, struct ip6_hdr *);
492 1.67 itojun ip6->ip6_nxt = IPPROTO_TCP;
493 1.67 itojun ip6->ip6_plen = htons(sizeof(struct tcphdr));
494 1.67 itojun ip6->ip6_src = in6p->in6p_laddr;
495 1.67 itojun ip6->ip6_dst = in6p->in6p_faddr;
496 1.67 itojun ip6->ip6_flow = in6p->in6p_flowinfo & IPV6_FLOWINFO_MASK;
497 1.67 itojun if (ip6_auto_flowlabel) {
498 1.67 itojun ip6->ip6_flow &= ~IPV6_FLOWLABEL_MASK;
499 1.131 itojun ip6->ip6_flow |=
500 1.152 itojun (htonl(ip6_randomflowlabel()) & IPV6_FLOWLABEL_MASK);
501 1.67 itojun }
502 1.85 itojun ip6->ip6_vfc &= ~IPV6_VERSION_MASK;
503 1.85 itojun ip6->ip6_vfc |= IPV6_VERSION;
504 1.111 thorpej
505 1.111 thorpej /*
506 1.111 thorpej * Compute the pseudo-header portion of the checksum
507 1.111 thorpej * now. We incrementally add in the TCP option and
508 1.111 thorpej * payload lengths later, and then compute the TCP
509 1.111 thorpej * checksum right before the packet is sent off onto
510 1.111 thorpej * the wire.
511 1.111 thorpej */
512 1.111 thorpej n->th_sum = in6_cksum_phdr(&in6p->in6p_laddr,
513 1.111 thorpej &in6p->in6p_faddr, htonl(sizeof(struct tcphdr)),
514 1.111 thorpej htonl(IPPROTO_TCP));
515 1.67 itojun break;
516 1.67 itojun }
517 1.67 itojun #endif
518 1.67 itojun }
519 1.67 itojun if (inp) {
520 1.67 itojun n->th_sport = inp->inp_lport;
521 1.67 itojun n->th_dport = inp->inp_fport;
522 1.67 itojun }
523 1.67 itojun #ifdef INET6
524 1.67 itojun else if (in6p) {
525 1.67 itojun n->th_sport = in6p->in6p_lport;
526 1.67 itojun n->th_dport = in6p->in6p_fport;
527 1.67 itojun }
528 1.67 itojun #endif
529 1.67 itojun n->th_seq = 0;
530 1.67 itojun n->th_ack = 0;
531 1.67 itojun n->th_x2 = 0;
532 1.67 itojun n->th_off = 5;
533 1.67 itojun n->th_flags = 0;
534 1.67 itojun n->th_win = 0;
535 1.67 itojun n->th_urp = 0;
536 1.67 itojun return (m);
537 1.1 cgd }
538 1.1 cgd
539 1.1 cgd /*
540 1.1 cgd * Send a single message to the TCP at address specified by
541 1.1 cgd * the given TCP/IP header. If m == 0, then we make a copy
542 1.1 cgd * of the tcpiphdr at ti and send directly to the addressed host.
543 1.1 cgd * This is used to force keep alive messages out using the TCP
544 1.1 cgd * template for a connection tp->t_template. If flags are given
545 1.1 cgd * then we send a message back to the TCP which originated the
546 1.1 cgd * segment ti, and discard the mbuf containing it and any other
547 1.1 cgd * attached mbufs.
548 1.1 cgd *
549 1.1 cgd * In any case the ack and sequence number of the transmitted
550 1.1 cgd * segment are as specified by the parameters.
551 1.1 cgd */
552 1.27 thorpej int
553 1.72 itojun tcp_respond(tp, template, m, th0, ack, seq, flags)
554 1.1 cgd struct tcpcb *tp;
555 1.72 itojun struct mbuf *template;
556 1.91 augustss struct mbuf *m;
557 1.72 itojun struct tcphdr *th0;
558 1.1 cgd tcp_seq ack, seq;
559 1.1 cgd int flags;
560 1.1 cgd {
561 1.67 itojun struct route *ro;
562 1.64 thorpej int error, tlen, win = 0;
563 1.67 itojun int hlen;
564 1.67 itojun struct ip *ip;
565 1.67 itojun #ifdef INET6
566 1.67 itojun struct ip6_hdr *ip6;
567 1.67 itojun #endif
568 1.67 itojun int family; /* family on packet, not inpcb/in6pcb! */
569 1.67 itojun struct tcphdr *th;
570 1.148 itojun struct socket *so;
571 1.1 cgd
572 1.67 itojun if (tp != NULL && (flags & TH_RST) == 0) {
573 1.96 itojun #ifdef DIAGNOSTIC
574 1.96 itojun if (tp->t_inpcb && tp->t_in6pcb)
575 1.96 itojun panic("tcp_respond: both t_inpcb and t_in6pcb are set");
576 1.96 itojun #endif
577 1.96 itojun #ifdef INET
578 1.67 itojun if (tp->t_inpcb)
579 1.67 itojun win = sbspace(&tp->t_inpcb->inp_socket->so_rcv);
580 1.96 itojun #endif
581 1.67 itojun #ifdef INET6
582 1.96 itojun if (tp->t_in6pcb)
583 1.67 itojun win = sbspace(&tp->t_in6pcb->in6p_socket->so_rcv);
584 1.67 itojun #endif
585 1.67 itojun }
586 1.65 thorpej
587 1.137 scw th = NULL; /* Quell uninitialized warning */
588 1.67 itojun ip = NULL;
589 1.67 itojun #ifdef INET6
590 1.67 itojun ip6 = NULL;
591 1.67 itojun #endif
592 1.1 cgd if (m == 0) {
593 1.73 itojun if (!template)
594 1.73 itojun return EINVAL;
595 1.73 itojun
596 1.67 itojun /* get family information from template */
597 1.67 itojun switch (mtod(template, struct ip *)->ip_v) {
598 1.67 itojun case 4:
599 1.67 itojun family = AF_INET;
600 1.67 itojun hlen = sizeof(struct ip);
601 1.67 itojun break;
602 1.67 itojun #ifdef INET6
603 1.67 itojun case 6:
604 1.67 itojun family = AF_INET6;
605 1.67 itojun hlen = sizeof(struct ip6_hdr);
606 1.67 itojun break;
607 1.67 itojun #endif
608 1.67 itojun default:
609 1.67 itojun return EAFNOSUPPORT;
610 1.67 itojun }
611 1.67 itojun
612 1.67 itojun MGETHDR(m, M_DONTWAIT, MT_HEADER);
613 1.67 itojun if (m) {
614 1.138 matt MCLAIM(m, &tcp_tx_mowner);
615 1.67 itojun MCLGET(m, M_DONTWAIT);
616 1.73 itojun if ((m->m_flags & M_EXT) == 0) {
617 1.67 itojun m_free(m);
618 1.67 itojun m = NULL;
619 1.67 itojun }
620 1.67 itojun }
621 1.1 cgd if (m == NULL)
622 1.27 thorpej return (ENOBUFS);
623 1.48 thorpej
624 1.48 thorpej if (tcp_compat_42)
625 1.48 thorpej tlen = 1;
626 1.48 thorpej else
627 1.48 thorpej tlen = 0;
628 1.48 thorpej
629 1.1 cgd m->m_data += max_linkhdr;
630 1.67 itojun bcopy(mtod(template, caddr_t), mtod(m, caddr_t),
631 1.67 itojun template->m_len);
632 1.67 itojun switch (family) {
633 1.67 itojun case AF_INET:
634 1.67 itojun ip = mtod(m, struct ip *);
635 1.67 itojun th = (struct tcphdr *)(ip + 1);
636 1.67 itojun break;
637 1.67 itojun #ifdef INET6
638 1.67 itojun case AF_INET6:
639 1.67 itojun ip6 = mtod(m, struct ip6_hdr *);
640 1.67 itojun th = (struct tcphdr *)(ip6 + 1);
641 1.67 itojun break;
642 1.67 itojun #endif
643 1.84 itojun #if 0
644 1.84 itojun default:
645 1.84 itojun /* noone will visit here */
646 1.84 itojun m_freem(m);
647 1.84 itojun return EAFNOSUPPORT;
648 1.69 fvdl #endif
649 1.67 itojun }
650 1.1 cgd flags = TH_ACK;
651 1.1 cgd } else {
652 1.92 itojun
653 1.92 itojun if ((m->m_flags & M_PKTHDR) == 0) {
654 1.92 itojun #if 0
655 1.92 itojun printf("non PKTHDR to tcp_respond\n");
656 1.92 itojun #endif
657 1.92 itojun m_freem(m);
658 1.92 itojun return EINVAL;
659 1.92 itojun }
660 1.92 itojun #ifdef DIAGNOSTIC
661 1.92 itojun if (!th0)
662 1.92 itojun panic("th0 == NULL in tcp_respond");
663 1.92 itojun #endif
664 1.92 itojun
665 1.67 itojun /* get family information from m */
666 1.67 itojun switch (mtod(m, struct ip *)->ip_v) {
667 1.67 itojun case 4:
668 1.67 itojun family = AF_INET;
669 1.67 itojun hlen = sizeof(struct ip);
670 1.92 itojun ip = mtod(m, struct ip *);
671 1.67 itojun break;
672 1.67 itojun #ifdef INET6
673 1.67 itojun case 6:
674 1.67 itojun family = AF_INET6;
675 1.67 itojun hlen = sizeof(struct ip6_hdr);
676 1.92 itojun ip6 = mtod(m, struct ip6_hdr *);
677 1.67 itojun break;
678 1.67 itojun #endif
679 1.67 itojun default:
680 1.84 itojun m_freem(m);
681 1.67 itojun return EAFNOSUPPORT;
682 1.67 itojun }
683 1.92 itojun if ((flags & TH_SYN) == 0 || sizeof(*th0) > (th0->th_off << 2))
684 1.92 itojun tlen = sizeof(*th0);
685 1.92 itojun else
686 1.92 itojun tlen = th0->th_off << 2;
687 1.92 itojun
688 1.92 itojun if (m->m_len > hlen + tlen && (m->m_flags & M_EXT) == 0 &&
689 1.92 itojun mtod(m, caddr_t) + hlen == (caddr_t)th0) {
690 1.92 itojun m->m_len = hlen + tlen;
691 1.92 itojun m_freem(m->m_next);
692 1.92 itojun m->m_next = NULL;
693 1.92 itojun } else {
694 1.92 itojun struct mbuf *n;
695 1.92 itojun
696 1.92 itojun #ifdef DIAGNOSTIC
697 1.92 itojun if (max_linkhdr + hlen + tlen > MCLBYTES) {
698 1.92 itojun m_freem(m);
699 1.92 itojun return EMSGSIZE;
700 1.92 itojun }
701 1.92 itojun #endif
702 1.92 itojun MGETHDR(n, M_DONTWAIT, MT_HEADER);
703 1.92 itojun if (n && max_linkhdr + hlen + tlen > MHLEN) {
704 1.92 itojun MCLGET(n, M_DONTWAIT);
705 1.92 itojun if ((n->m_flags & M_EXT) == 0) {
706 1.92 itojun m_freem(n);
707 1.92 itojun n = NULL;
708 1.92 itojun }
709 1.92 itojun }
710 1.92 itojun if (!n) {
711 1.92 itojun m_freem(m);
712 1.92 itojun return ENOBUFS;
713 1.92 itojun }
714 1.92 itojun
715 1.138 matt MCLAIM(n, &tcp_tx_mowner);
716 1.92 itojun n->m_data += max_linkhdr;
717 1.92 itojun n->m_len = hlen + tlen;
718 1.92 itojun m_copyback(n, 0, hlen, mtod(m, caddr_t));
719 1.92 itojun m_copyback(n, hlen, tlen, (caddr_t)th0);
720 1.67 itojun
721 1.67 itojun m_freem(m);
722 1.92 itojun m = n;
723 1.92 itojun n = NULL;
724 1.67 itojun }
725 1.67 itojun
726 1.10 mycroft #define xchg(a,b,type) { type t; t=a; a=b; b=t; }
727 1.67 itojun switch (family) {
728 1.67 itojun case AF_INET:
729 1.67 itojun ip = mtod(m, struct ip *);
730 1.67 itojun th = (struct tcphdr *)(ip + 1);
731 1.92 itojun ip->ip_p = IPPROTO_TCP;
732 1.67 itojun xchg(ip->ip_dst, ip->ip_src, struct in_addr);
733 1.72 itojun ip->ip_p = IPPROTO_TCP;
734 1.67 itojun break;
735 1.67 itojun #ifdef INET6
736 1.67 itojun case AF_INET6:
737 1.67 itojun ip6 = mtod(m, struct ip6_hdr *);
738 1.67 itojun th = (struct tcphdr *)(ip6 + 1);
739 1.92 itojun ip6->ip6_nxt = IPPROTO_TCP;
740 1.67 itojun xchg(ip6->ip6_dst, ip6->ip6_src, struct in6_addr);
741 1.72 itojun ip6->ip6_nxt = IPPROTO_TCP;
742 1.67 itojun break;
743 1.67 itojun #endif
744 1.92 itojun #if 0
745 1.92 itojun default:
746 1.92 itojun /* noone will visit here */
747 1.92 itojun m_freem(m);
748 1.92 itojun return EAFNOSUPPORT;
749 1.92 itojun #endif
750 1.67 itojun }
751 1.67 itojun xchg(th->th_dport, th->th_sport, u_int16_t);
752 1.1 cgd #undef xchg
753 1.92 itojun tlen = 0; /*be friendly with the following code*/
754 1.1 cgd }
755 1.67 itojun th->th_seq = htonl(seq);
756 1.67 itojun th->th_ack = htonl(ack);
757 1.67 itojun th->th_x2 = 0;
758 1.27 thorpej if ((flags & TH_SYN) == 0) {
759 1.27 thorpej if (tp)
760 1.88 itojun win >>= tp->rcv_scale;
761 1.88 itojun if (win > TCP_MAXWIN)
762 1.88 itojun win = TCP_MAXWIN;
763 1.88 itojun th->th_win = htons((u_int16_t)win);
764 1.67 itojun th->th_off = sizeof (struct tcphdr) >> 2;
765 1.92 itojun tlen += sizeof(*th);
766 1.27 thorpej } else
767 1.67 itojun tlen += th->th_off << 2;
768 1.67 itojun m->m_len = hlen + tlen;
769 1.67 itojun m->m_pkthdr.len = hlen + tlen;
770 1.27 thorpej m->m_pkthdr.rcvif = (struct ifnet *) 0;
771 1.67 itojun th->th_flags = flags;
772 1.67 itojun th->th_urp = 0;
773 1.67 itojun
774 1.67 itojun switch (family) {
775 1.96 itojun #ifdef INET
776 1.67 itojun case AF_INET:
777 1.67 itojun {
778 1.67 itojun struct ipovly *ipov = (struct ipovly *)ip;
779 1.67 itojun bzero(ipov->ih_x1, sizeof ipov->ih_x1);
780 1.67 itojun ipov->ih_len = htons((u_int16_t)tlen);
781 1.67 itojun
782 1.67 itojun th->th_sum = 0;
783 1.67 itojun th->th_sum = in_cksum(m, hlen + tlen);
784 1.133 itojun ip->ip_len = htons(hlen + tlen);
785 1.67 itojun ip->ip_ttl = ip_defttl;
786 1.67 itojun break;
787 1.67 itojun }
788 1.96 itojun #endif
789 1.67 itojun #ifdef INET6
790 1.67 itojun case AF_INET6:
791 1.67 itojun {
792 1.67 itojun th->th_sum = 0;
793 1.67 itojun th->th_sum = in6_cksum(m, IPPROTO_TCP, sizeof(struct ip6_hdr),
794 1.67 itojun tlen);
795 1.67 itojun ip6->ip6_plen = ntohs(tlen);
796 1.84 itojun if (tp && tp->t_in6pcb) {
797 1.84 itojun struct ifnet *oifp;
798 1.84 itojun ro = (struct route *)&tp->t_in6pcb->in6p_route;
799 1.84 itojun oifp = ro->ro_rt ? ro->ro_rt->rt_ifp : NULL;
800 1.84 itojun ip6->ip6_hlim = in6_selecthlim(tp->t_in6pcb, oifp);
801 1.84 itojun } else
802 1.84 itojun ip6->ip6_hlim = ip6_defhlim;
803 1.67 itojun ip6->ip6_flow &= ~IPV6_FLOWINFO_MASK;
804 1.67 itojun if (ip6_auto_flowlabel) {
805 1.131 itojun ip6->ip6_flow |=
806 1.152 itojun (htonl(ip6_randomflowlabel()) & IPV6_FLOWLABEL_MASK);
807 1.67 itojun }
808 1.67 itojun break;
809 1.67 itojun }
810 1.67 itojun #endif
811 1.67 itojun }
812 1.67 itojun
813 1.150 itojun if (tp && tp->t_inpcb)
814 1.148 itojun so = tp->t_inpcb->inp_socket;
815 1.148 itojun #ifdef INET6
816 1.150 itojun else if (tp && tp->t_in6pcb)
817 1.148 itojun so = tp->t_in6pcb->in6p_socket;
818 1.148 itojun #endif
819 1.148 itojun else
820 1.148 itojun so = NULL;
821 1.64 thorpej
822 1.67 itojun if (tp != NULL && tp->t_inpcb != NULL) {
823 1.65 thorpej ro = &tp->t_inpcb->inp_route;
824 1.65 thorpej #ifdef DIAGNOSTIC
825 1.67 itojun if (family != AF_INET)
826 1.67 itojun panic("tcp_respond: address family mismatch");
827 1.67 itojun if (!in_hosteq(ip->ip_dst, tp->t_inpcb->inp_faddr)) {
828 1.67 itojun panic("tcp_respond: ip_dst %x != inp_faddr %x",
829 1.67 itojun ntohl(ip->ip_dst.s_addr),
830 1.65 thorpej ntohl(tp->t_inpcb->inp_faddr.s_addr));
831 1.67 itojun }
832 1.67 itojun #endif
833 1.67 itojun }
834 1.67 itojun #ifdef INET6
835 1.67 itojun else if (tp != NULL && tp->t_in6pcb != NULL) {
836 1.67 itojun ro = (struct route *)&tp->t_in6pcb->in6p_route;
837 1.67 itojun #ifdef DIAGNOSTIC
838 1.67 itojun if (family == AF_INET) {
839 1.67 itojun if (!IN6_IS_ADDR_V4MAPPED(&tp->t_in6pcb->in6p_faddr))
840 1.67 itojun panic("tcp_respond: not mapped addr");
841 1.67 itojun if (bcmp(&ip->ip_dst,
842 1.134 itojun &tp->t_in6pcb->in6p_faddr.s6_addr32[3],
843 1.134 itojun sizeof(ip->ip_dst)) != 0) {
844 1.67 itojun panic("tcp_respond: ip_dst != in6p_faddr");
845 1.67 itojun }
846 1.67 itojun } else if (family == AF_INET6) {
847 1.134 itojun if (!IN6_ARE_ADDR_EQUAL(&ip6->ip6_dst,
848 1.134 itojun &tp->t_in6pcb->in6p_faddr))
849 1.67 itojun panic("tcp_respond: ip6_dst != in6p_faddr");
850 1.67 itojun } else
851 1.67 itojun panic("tcp_respond: address family mismatch");
852 1.67 itojun #endif
853 1.67 itojun }
854 1.67 itojun #endif
855 1.95 thorpej else
856 1.95 thorpej ro = NULL;
857 1.95 thorpej
858 1.67 itojun switch (family) {
859 1.96 itojun #ifdef INET
860 1.67 itojun case AF_INET:
861 1.95 thorpej error = ip_output(m, NULL, ro,
862 1.128 itojun (tp && tp->t_mtudisc ? IP_MTUDISC : 0),
863 1.148 itojun (struct ip_moptions *)0, so);
864 1.67 itojun break;
865 1.96 itojun #endif
866 1.67 itojun #ifdef INET6
867 1.67 itojun case AF_INET6:
868 1.147 jonathan error = ip6_output(m, NULL, (struct route_in6 *)ro, 0,
869 1.148 itojun (struct ip6_moptions *)0, so, NULL);
870 1.67 itojun break;
871 1.67 itojun #endif
872 1.68 itojun default:
873 1.68 itojun error = EAFNOSUPPORT;
874 1.68 itojun break;
875 1.64 thorpej }
876 1.64 thorpej
877 1.64 thorpej return (error);
878 1.1 cgd }
879 1.1 cgd
880 1.1 cgd /*
881 1.1 cgd * Create a new TCP control block, making an
882 1.1 cgd * empty reassembly queue and hooking it to the argument
883 1.1 cgd * protocol control block.
884 1.1 cgd */
885 1.1 cgd struct tcpcb *
886 1.67 itojun tcp_newtcpcb(family, aux)
887 1.67 itojun int family; /* selects inpcb, or in6pcb */
888 1.67 itojun void *aux;
889 1.1 cgd {
890 1.91 augustss struct tcpcb *tp;
891 1.116 thorpej int i;
892 1.1 cgd
893 1.67 itojun switch (family) {
894 1.67 itojun case PF_INET:
895 1.67 itojun break;
896 1.67 itojun #ifdef INET6
897 1.67 itojun case PF_INET6:
898 1.67 itojun break;
899 1.67 itojun #endif
900 1.67 itojun default:
901 1.67 itojun return NULL;
902 1.67 itojun }
903 1.67 itojun
904 1.57 thorpej tp = pool_get(&tcpcb_pool, PR_NOWAIT);
905 1.10 mycroft if (tp == NULL)
906 1.57 thorpej return (NULL);
907 1.23 mycroft bzero((caddr_t)tp, sizeof(struct tcpcb));
908 1.126 matt TAILQ_INIT(&tp->segq);
909 1.126 matt TAILQ_INIT(&tp->timeq);
910 1.67 itojun tp->t_family = family; /* may be overridden later on */
911 1.33 kml tp->t_peermss = tcp_mssdflt;
912 1.28 thorpej tp->t_ourmss = tcp_mssdflt;
913 1.33 kml tp->t_segsz = tcp_mssdflt;
914 1.78 itojun LIST_INIT(&tp->t_sc);
915 1.141 ragge
916 1.141 ragge tp->t_lastm = NULL;
917 1.141 ragge tp->t_lastoff = 0;
918 1.115 thorpej
919 1.115 thorpej callout_init(&tp->t_delack_ch);
920 1.116 thorpej for (i = 0; i < TCPT_NTIMERS; i++)
921 1.116 thorpej TCP_TIMER_INIT(tp, i);
922 1.1 cgd
923 1.49 matt tp->t_flags = 0;
924 1.49 matt if (tcp_do_rfc1323 && tcp_do_win_scale)
925 1.49 matt tp->t_flags |= TF_REQ_SCALE;
926 1.49 matt if (tcp_do_rfc1323 && tcp_do_timestamps)
927 1.49 matt tp->t_flags |= TF_REQ_TSTMP;
928 1.49 matt if (tcp_do_sack == 2)
929 1.49 matt tp->t_flags |= TF_WILL_SACK;
930 1.49 matt else if (tcp_do_sack == 1)
931 1.49 matt tp->t_flags |= TF_WILL_SACK|TF_IGNR_RXSACK;
932 1.49 matt tp->t_flags |= TF_CANT_TXSACK;
933 1.67 itojun switch (family) {
934 1.67 itojun case PF_INET:
935 1.67 itojun tp->t_inpcb = (struct inpcb *)aux;
936 1.128 itojun tp->t_mtudisc = ip_mtudisc;
937 1.67 itojun break;
938 1.67 itojun #ifdef INET6
939 1.67 itojun case PF_INET6:
940 1.67 itojun tp->t_in6pcb = (struct in6pcb *)aux;
941 1.128 itojun /* for IPv6, always try to run path MTU discovery */
942 1.128 itojun tp->t_mtudisc = 1;
943 1.67 itojun break;
944 1.67 itojun #endif
945 1.67 itojun }
946 1.1 cgd /*
947 1.1 cgd * Init srtt to TCPTV_SRTTBASE (0), so we can tell that we have no
948 1.1 cgd * rtt estimate. Set rttvar so that srtt + 2 * rttvar gives
949 1.1 cgd * reasonable initial retransmit time.
950 1.1 cgd */
951 1.1 cgd tp->t_srtt = TCPTV_SRTTBASE;
952 1.15 mycroft tp->t_rttvar = tcp_rttdflt * PR_SLOWHZ << (TCP_RTTVAR_SHIFT + 2 - 1);
953 1.1 cgd tp->t_rttmin = TCPTV_MIN;
954 1.15 mycroft TCPT_RANGESET(tp->t_rxtcur, TCP_REXMTVAL(tp),
955 1.1 cgd TCPTV_MIN, TCPTV_REXMTMAX);
956 1.10 mycroft tp->snd_cwnd = TCP_MAXWIN << TCP_MAX_WINSHIFT;
957 1.10 mycroft tp->snd_ssthresh = TCP_MAXWIN << TCP_MAX_WINSHIFT;
958 1.67 itojun if (family == AF_INET) {
959 1.67 itojun struct inpcb *inp = (struct inpcb *)aux;
960 1.67 itojun inp->inp_ip.ip_ttl = ip_defttl;
961 1.67 itojun inp->inp_ppcb = (caddr_t)tp;
962 1.67 itojun }
963 1.67 itojun #ifdef INET6
964 1.67 itojun else if (family == AF_INET6) {
965 1.67 itojun struct in6pcb *in6p = (struct in6pcb *)aux;
966 1.84 itojun in6p->in6p_ip6.ip6_hlim = in6_selecthlim(in6p,
967 1.84 itojun in6p->in6p_route.ro_rt ? in6p->in6p_route.ro_rt->rt_ifp
968 1.84 itojun : NULL);
969 1.67 itojun in6p->in6p_ppcb = (caddr_t)tp;
970 1.67 itojun }
971 1.67 itojun #endif
972 1.108 thorpej
973 1.108 thorpej /*
974 1.108 thorpej * Initialize our timebase. When we send timestamps, we take
975 1.108 thorpej * the delta from tcp_now -- this means each connection always
976 1.108 thorpej * gets a timebase of 0, which makes it, among other things,
977 1.108 thorpej * more difficult to determine how long a system has been up,
978 1.108 thorpej * and thus how many TCP sequence increments have occurred.
979 1.108 thorpej */
980 1.108 thorpej tp->ts_timebase = tcp_now;
981 1.108 thorpej
982 1.1 cgd return (tp);
983 1.1 cgd }
984 1.1 cgd
985 1.1 cgd /*
986 1.1 cgd * Drop a TCP connection, reporting
987 1.1 cgd * the specified error. If connection is synchronized,
988 1.1 cgd * then send a RST to peer.
989 1.1 cgd */
990 1.1 cgd struct tcpcb *
991 1.1 cgd tcp_drop(tp, errno)
992 1.91 augustss struct tcpcb *tp;
993 1.1 cgd int errno;
994 1.1 cgd {
995 1.103 itojun struct socket *so = NULL;
996 1.67 itojun
997 1.96 itojun #ifdef DIAGNOSTIC
998 1.96 itojun if (tp->t_inpcb && tp->t_in6pcb)
999 1.96 itojun panic("tcp_drop: both t_inpcb and t_in6pcb are set");
1000 1.96 itojun #endif
1001 1.96 itojun #ifdef INET
1002 1.67 itojun if (tp->t_inpcb)
1003 1.67 itojun so = tp->t_inpcb->inp_socket;
1004 1.96 itojun #endif
1005 1.67 itojun #ifdef INET6
1006 1.96 itojun if (tp->t_in6pcb)
1007 1.67 itojun so = tp->t_in6pcb->in6p_socket;
1008 1.67 itojun #endif
1009 1.103 itojun if (!so)
1010 1.103 itojun return NULL;
1011 1.1 cgd
1012 1.1 cgd if (TCPS_HAVERCVDSYN(tp->t_state)) {
1013 1.1 cgd tp->t_state = TCPS_CLOSED;
1014 1.1 cgd (void) tcp_output(tp);
1015 1.1 cgd tcpstat.tcps_drops++;
1016 1.1 cgd } else
1017 1.1 cgd tcpstat.tcps_conndrops++;
1018 1.1 cgd if (errno == ETIMEDOUT && tp->t_softerror)
1019 1.1 cgd errno = tp->t_softerror;
1020 1.1 cgd so->so_error = errno;
1021 1.1 cgd return (tcp_close(tp));
1022 1.1 cgd }
1023 1.1 cgd
1024 1.1 cgd /*
1025 1.144 he * Return whether this tcpcb is marked as dead, indicating
1026 1.144 he * to the calling timer function that no further action should
1027 1.144 he * be taken, as we are about to release this tcpcb. The release
1028 1.144 he * of the storage will be done if this is the last timer running.
1029 1.144 he *
1030 1.144 he * This is typically called from the callout handler function before
1031 1.144 he * callout_ack() is done, therefore we need to test the number of
1032 1.144 he * running timer functions against 1 below, not 0.
1033 1.144 he */
1034 1.144 he int
1035 1.144 he tcp_isdead(tp)
1036 1.144 he struct tcpcb *tp;
1037 1.144 he {
1038 1.144 he int dead = (tp->t_flags & TF_DEAD);
1039 1.144 he
1040 1.144 he if (__predict_false(dead)) {
1041 1.144 he if (tcp_timers_invoking(tp) > 1)
1042 1.144 he /* not quite there yet -- count separately? */
1043 1.144 he return dead;
1044 1.144 he tcpstat.tcps_delayed_free++;
1045 1.144 he pool_put(&tcpcb_pool, tp);
1046 1.144 he }
1047 1.144 he return dead;
1048 1.144 he }
1049 1.144 he
1050 1.144 he /*
1051 1.1 cgd * Close a TCP control block:
1052 1.1 cgd * discard all space held by the tcp
1053 1.1 cgd * discard internet protocol block
1054 1.1 cgd * wake up any sleepers
1055 1.1 cgd */
1056 1.1 cgd struct tcpcb *
1057 1.1 cgd tcp_close(tp)
1058 1.91 augustss struct tcpcb *tp;
1059 1.1 cgd {
1060 1.67 itojun struct inpcb *inp;
1061 1.67 itojun #ifdef INET6
1062 1.67 itojun struct in6pcb *in6p;
1063 1.67 itojun #endif
1064 1.67 itojun struct socket *so;
1065 1.1 cgd #ifdef RTV_RTT
1066 1.91 augustss struct rtentry *rt;
1067 1.67 itojun #endif
1068 1.67 itojun struct route *ro;
1069 1.1 cgd
1070 1.67 itojun inp = tp->t_inpcb;
1071 1.67 itojun #ifdef INET6
1072 1.67 itojun in6p = tp->t_in6pcb;
1073 1.67 itojun #endif
1074 1.67 itojun so = NULL;
1075 1.67 itojun ro = NULL;
1076 1.67 itojun if (inp) {
1077 1.67 itojun so = inp->inp_socket;
1078 1.67 itojun ro = &inp->inp_route;
1079 1.67 itojun }
1080 1.67 itojun #ifdef INET6
1081 1.67 itojun else if (in6p) {
1082 1.67 itojun so = in6p->in6p_socket;
1083 1.67 itojun ro = (struct route *)&in6p->in6p_route;
1084 1.67 itojun }
1085 1.67 itojun #endif
1086 1.67 itojun
1087 1.67 itojun #ifdef RTV_RTT
1088 1.1 cgd /*
1089 1.1 cgd * If we sent enough data to get some meaningful characteristics,
1090 1.131 itojun * save them in the routing entry. 'Enough' is arbitrarily
1091 1.1 cgd * defined as the sendpipesize (default 4K) * 16. This would
1092 1.1 cgd * give us 16 rtt samples assuming we only get one sample per
1093 1.1 cgd * window (the usual case on a long haul net). 16 samples is
1094 1.1 cgd * enough for the srtt filter to converge to within 5% of the correct
1095 1.1 cgd * value; fewer samples and we could save a very bogus rtt.
1096 1.1 cgd *
1097 1.1 cgd * Don't update the default route's characteristics and don't
1098 1.1 cgd * update anything that the user "locked".
1099 1.1 cgd */
1100 1.1 cgd if (SEQ_LT(tp->iss + so->so_snd.sb_hiwat * 16, tp->snd_max) &&
1101 1.67 itojun ro && (rt = ro->ro_rt) &&
1102 1.23 mycroft !in_nullhost(satosin(rt_key(rt))->sin_addr)) {
1103 1.91 augustss u_long i = 0;
1104 1.1 cgd
1105 1.1 cgd if ((rt->rt_rmx.rmx_locks & RTV_RTT) == 0) {
1106 1.1 cgd i = tp->t_srtt *
1107 1.25 mycroft ((RTM_RTTUNIT / PR_SLOWHZ) >> (TCP_RTT_SHIFT + 2));
1108 1.1 cgd if (rt->rt_rmx.rmx_rtt && i)
1109 1.1 cgd /*
1110 1.1 cgd * filter this update to half the old & half
1111 1.1 cgd * the new values, converting scale.
1112 1.1 cgd * See route.h and tcp_var.h for a
1113 1.1 cgd * description of the scaling constants.
1114 1.1 cgd */
1115 1.1 cgd rt->rt_rmx.rmx_rtt =
1116 1.1 cgd (rt->rt_rmx.rmx_rtt + i) / 2;
1117 1.1 cgd else
1118 1.1 cgd rt->rt_rmx.rmx_rtt = i;
1119 1.1 cgd }
1120 1.1 cgd if ((rt->rt_rmx.rmx_locks & RTV_RTTVAR) == 0) {
1121 1.1 cgd i = tp->t_rttvar *
1122 1.25 mycroft ((RTM_RTTUNIT / PR_SLOWHZ) >> (TCP_RTTVAR_SHIFT + 2));
1123 1.1 cgd if (rt->rt_rmx.rmx_rttvar && i)
1124 1.1 cgd rt->rt_rmx.rmx_rttvar =
1125 1.1 cgd (rt->rt_rmx.rmx_rttvar + i) / 2;
1126 1.1 cgd else
1127 1.1 cgd rt->rt_rmx.rmx_rttvar = i;
1128 1.1 cgd }
1129 1.1 cgd /*
1130 1.1 cgd * update the pipelimit (ssthresh) if it has been updated
1131 1.1 cgd * already or if a pipesize was specified & the threshhold
1132 1.1 cgd * got below half the pipesize. I.e., wait for bad news
1133 1.1 cgd * before we start updating, then update on both good
1134 1.1 cgd * and bad news.
1135 1.1 cgd */
1136 1.22 christos if (((rt->rt_rmx.rmx_locks & RTV_SSTHRESH) == 0 &&
1137 1.22 christos (i = tp->snd_ssthresh) && rt->rt_rmx.rmx_ssthresh) ||
1138 1.1 cgd i < (rt->rt_rmx.rmx_sendpipe / 2)) {
1139 1.1 cgd /*
1140 1.1 cgd * convert the limit from user data bytes to
1141 1.1 cgd * packets then to packet data bytes.
1142 1.1 cgd */
1143 1.33 kml i = (i + tp->t_segsz / 2) / tp->t_segsz;
1144 1.1 cgd if (i < 2)
1145 1.1 cgd i = 2;
1146 1.33 kml i *= (u_long)(tp->t_segsz + sizeof (struct tcpiphdr));
1147 1.1 cgd if (rt->rt_rmx.rmx_ssthresh)
1148 1.1 cgd rt->rt_rmx.rmx_ssthresh =
1149 1.1 cgd (rt->rt_rmx.rmx_ssthresh + i) / 2;
1150 1.1 cgd else
1151 1.1 cgd rt->rt_rmx.rmx_ssthresh = i;
1152 1.1 cgd }
1153 1.1 cgd }
1154 1.9 mycroft #endif /* RTV_RTT */
1155 1.1 cgd /* free the reassembly queue, if any */
1156 1.63 thorpej TCP_REASS_LOCK(tp);
1157 1.35 thorpej (void) tcp_freeq(tp);
1158 1.63 thorpej TCP_REASS_UNLOCK(tp);
1159 1.63 thorpej
1160 1.118 thorpej tcp_canceltimers(tp);
1161 1.40 mellon TCP_CLEAR_DELACK(tp);
1162 1.78 itojun syn_cache_cleanup(tp);
1163 1.35 thorpej
1164 1.67 itojun if (tp->t_template) {
1165 1.67 itojun m_free(tp->t_template);
1166 1.67 itojun tp->t_template = NULL;
1167 1.67 itojun }
1168 1.144 he if (tcp_timers_invoking(tp))
1169 1.144 he tp->t_flags |= TF_DEAD;
1170 1.144 he else
1171 1.144 he pool_put(&tcpcb_pool, tp);
1172 1.144 he
1173 1.67 itojun if (inp) {
1174 1.67 itojun inp->inp_ppcb = 0;
1175 1.67 itojun soisdisconnected(so);
1176 1.67 itojun in_pcbdetach(inp);
1177 1.67 itojun }
1178 1.67 itojun #ifdef INET6
1179 1.67 itojun else if (in6p) {
1180 1.67 itojun in6p->in6p_ppcb = 0;
1181 1.67 itojun soisdisconnected(so);
1182 1.67 itojun in6_pcbdetach(in6p);
1183 1.67 itojun }
1184 1.67 itojun #endif
1185 1.1 cgd tcpstat.tcps_closed++;
1186 1.1 cgd return ((struct tcpcb *)0);
1187 1.1 cgd }
1188 1.1 cgd
1189 1.35 thorpej int
1190 1.35 thorpej tcp_freeq(tp)
1191 1.35 thorpej struct tcpcb *tp;
1192 1.35 thorpej {
1193 1.91 augustss struct ipqent *qe;
1194 1.35 thorpej int rv = 0;
1195 1.49 matt #ifdef TCPREASS_DEBUG
1196 1.49 matt int i = 0;
1197 1.49 matt #endif
1198 1.35 thorpej
1199 1.63 thorpej TCP_REASS_LOCK_CHECK(tp);
1200 1.63 thorpej
1201 1.126 matt while ((qe = TAILQ_FIRST(&tp->segq)) != NULL) {
1202 1.49 matt #ifdef TCPREASS_DEBUG
1203 1.49 matt printf("tcp_freeq[%p,%d]: %u:%u(%u) 0x%02x\n",
1204 1.49 matt tp, i++, qe->ipqe_seq, qe->ipqe_seq + qe->ipqe_len,
1205 1.49 matt qe->ipqe_len, qe->ipqe_flags & (TH_SYN|TH_FIN|TH_RST));
1206 1.49 matt #endif
1207 1.126 matt TAILQ_REMOVE(&tp->segq, qe, ipqe_q);
1208 1.126 matt TAILQ_REMOVE(&tp->timeq, qe, ipqe_timeq);
1209 1.35 thorpej m_freem(qe->ipqe_m);
1210 1.62 thorpej pool_put(&ipqent_pool, qe);
1211 1.35 thorpej rv = 1;
1212 1.35 thorpej }
1213 1.35 thorpej return (rv);
1214 1.35 thorpej }
1215 1.35 thorpej
1216 1.35 thorpej /*
1217 1.35 thorpej * Protocol drain routine. Called when memory is in short supply.
1218 1.35 thorpej */
1219 1.7 mycroft void
1220 1.1 cgd tcp_drain()
1221 1.1 cgd {
1222 1.151 itojun struct inpcb_hdr *inph;
1223 1.91 augustss struct inpcb *inp;
1224 1.91 augustss struct tcpcb *tp;
1225 1.1 cgd
1226 1.35 thorpej /*
1227 1.35 thorpej * Free the sequence queue of all TCP connections.
1228 1.35 thorpej */
1229 1.151 itojun inph = CIRCLEQ_FIRST(&tcbtable.inpt_queue);
1230 1.35 thorpej if (inp) /* XXX */
1231 1.151 itojun CIRCLEQ_FOREACH(inph, &tcbtable.inpt_queue, inph_queue) {
1232 1.151 itojun switch (inph->inph_af) {
1233 1.151 itojun case AF_INET:
1234 1.151 itojun tp = intotcpcb((struct inpcb *)inph);
1235 1.151 itojun break;
1236 1.151 itojun #ifdef INET6
1237 1.151 itojun case AF_INET6:
1238 1.151 itojun tp = in6totcpcb((struct in6pcb *)inph);
1239 1.151 itojun break;
1240 1.151 itojun #endif
1241 1.151 itojun default:
1242 1.151 itojun tp = NULL;
1243 1.151 itojun break;
1244 1.35 thorpej }
1245 1.151 itojun if (tp != NULL) {
1246 1.124 itojun /*
1247 1.124 itojun * We may be called from a device's interrupt
1248 1.124 itojun * context. If the tcpcb is already busy,
1249 1.124 itojun * just bail out now.
1250 1.124 itojun */
1251 1.124 itojun if (tcp_reass_lock_try(tp) == 0)
1252 1.124 itojun continue;
1253 1.124 itojun if (tcp_freeq(tp))
1254 1.124 itojun tcpstat.tcps_connsdrained++;
1255 1.124 itojun TCP_REASS_UNLOCK(tp);
1256 1.124 itojun }
1257 1.124 itojun }
1258 1.124 itojun }
1259 1.1 cgd
1260 1.1 cgd /*
1261 1.1 cgd * Notify a tcp user of an asynchronous error;
1262 1.1 cgd * store error as soft error, but wake up user
1263 1.1 cgd * (for now, won't do anything until can select for soft error).
1264 1.1 cgd */
1265 1.7 mycroft void
1266 1.1 cgd tcp_notify(inp, error)
1267 1.10 mycroft struct inpcb *inp;
1268 1.1 cgd int error;
1269 1.1 cgd {
1270 1.91 augustss struct tcpcb *tp = (struct tcpcb *)inp->inp_ppcb;
1271 1.91 augustss struct socket *so = inp->inp_socket;
1272 1.1 cgd
1273 1.10 mycroft /*
1274 1.10 mycroft * Ignore some errors if we are hooked up.
1275 1.10 mycroft * If connection hasn't completed, has retransmitted several times,
1276 1.10 mycroft * and receives a second error, give up now. This is better
1277 1.10 mycroft * than waiting a long time to establish a connection that
1278 1.10 mycroft * can never complete.
1279 1.10 mycroft */
1280 1.10 mycroft if (tp->t_state == TCPS_ESTABLISHED &&
1281 1.10 mycroft (error == EHOSTUNREACH || error == ENETUNREACH ||
1282 1.10 mycroft error == EHOSTDOWN)) {
1283 1.10 mycroft return;
1284 1.12 mycroft } else if (TCPS_HAVEESTABLISHED(tp->t_state) == 0 &&
1285 1.12 mycroft tp->t_rxtshift > 3 && tp->t_softerror)
1286 1.10 mycroft so->so_error = error;
1287 1.131 itojun else
1288 1.10 mycroft tp->t_softerror = error;
1289 1.10 mycroft wakeup((caddr_t) &so->so_timeo);
1290 1.10 mycroft sorwakeup(so);
1291 1.10 mycroft sowwakeup(so);
1292 1.1 cgd }
1293 1.1 cgd
1294 1.101 itojun #ifdef INET6
1295 1.67 itojun void
1296 1.73 itojun tcp6_notify(in6p, error)
1297 1.73 itojun struct in6pcb *in6p;
1298 1.73 itojun int error;
1299 1.73 itojun {
1300 1.91 augustss struct tcpcb *tp = (struct tcpcb *)in6p->in6p_ppcb;
1301 1.91 augustss struct socket *so = in6p->in6p_socket;
1302 1.73 itojun
1303 1.73 itojun /*
1304 1.73 itojun * Ignore some errors if we are hooked up.
1305 1.73 itojun * If connection hasn't completed, has retransmitted several times,
1306 1.73 itojun * and receives a second error, give up now. This is better
1307 1.73 itojun * than waiting a long time to establish a connection that
1308 1.73 itojun * can never complete.
1309 1.73 itojun */
1310 1.73 itojun if (tp->t_state == TCPS_ESTABLISHED &&
1311 1.73 itojun (error == EHOSTUNREACH || error == ENETUNREACH ||
1312 1.73 itojun error == EHOSTDOWN)) {
1313 1.73 itojun return;
1314 1.73 itojun } else if (TCPS_HAVEESTABLISHED(tp->t_state) == 0 &&
1315 1.73 itojun tp->t_rxtshift > 3 && tp->t_softerror)
1316 1.73 itojun so->so_error = error;
1317 1.131 itojun else
1318 1.73 itojun tp->t_softerror = error;
1319 1.73 itojun wakeup((caddr_t) &so->so_timeo);
1320 1.73 itojun sorwakeup(so);
1321 1.73 itojun sowwakeup(so);
1322 1.73 itojun }
1323 1.73 itojun #endif
1324 1.73 itojun
1325 1.101 itojun #ifdef INET6
1326 1.73 itojun void
1327 1.84 itojun tcp6_ctlinput(cmd, sa, d)
1328 1.67 itojun int cmd;
1329 1.67 itojun struct sockaddr *sa;
1330 1.84 itojun void *d;
1331 1.67 itojun {
1332 1.73 itojun struct tcphdr th;
1333 1.73 itojun void (*notify) __P((struct in6pcb *, int)) = tcp6_notify;
1334 1.73 itojun int nmatch;
1335 1.91 augustss struct ip6_hdr *ip6;
1336 1.107 itojun const struct sockaddr_in6 *sa6_src = NULL;
1337 1.107 itojun struct sockaddr_in6 *sa6 = (struct sockaddr_in6 *)sa;
1338 1.84 itojun struct mbuf *m;
1339 1.84 itojun int off;
1340 1.73 itojun
1341 1.76 itojun if (sa->sa_family != AF_INET6 ||
1342 1.76 itojun sa->sa_len != sizeof(struct sockaddr_in6))
1343 1.76 itojun return;
1344 1.84 itojun if ((unsigned)cmd >= PRC_NCMDS)
1345 1.84 itojun return;
1346 1.84 itojun else if (cmd == PRC_QUENCH) {
1347 1.84 itojun /* XXX there's no PRC_QUENCH in IPv6 */
1348 1.73 itojun notify = tcp6_quench;
1349 1.84 itojun } else if (PRC_IS_REDIRECT(cmd))
1350 1.84 itojun notify = in6_rtchange, d = NULL;
1351 1.73 itojun else if (cmd == PRC_MSGSIZE)
1352 1.99 itojun ; /* special code is present, see below */
1353 1.84 itojun else if (cmd == PRC_HOSTDEAD)
1354 1.84 itojun d = NULL;
1355 1.84 itojun else if (inet6ctlerrmap[cmd] == 0)
1356 1.73 itojun return;
1357 1.75 itojun
1358 1.84 itojun /* if the parameter is from icmp6, decode it. */
1359 1.84 itojun if (d != NULL) {
1360 1.84 itojun struct ip6ctlparam *ip6cp = (struct ip6ctlparam *)d;
1361 1.84 itojun m = ip6cp->ip6c_m;
1362 1.84 itojun ip6 = ip6cp->ip6c_ip6;
1363 1.84 itojun off = ip6cp->ip6c_off;
1364 1.107 itojun sa6_src = ip6cp->ip6c_src;
1365 1.84 itojun } else {
1366 1.84 itojun m = NULL;
1367 1.84 itojun ip6 = NULL;
1368 1.107 itojun sa6_src = &sa6_any;
1369 1.84 itojun }
1370 1.87 itojun
1371 1.73 itojun if (ip6) {
1372 1.73 itojun /*
1373 1.73 itojun * XXX: We assume that when ip6 is non NULL,
1374 1.73 itojun * M and OFF are valid.
1375 1.73 itojun */
1376 1.94 itojun
1377 1.94 itojun /* check if we can safely examine src and dst ports */
1378 1.110 itojun if (m->m_pkthdr.len < off + sizeof(th)) {
1379 1.110 itojun if (cmd == PRC_MSGSIZE)
1380 1.110 itojun icmp6_mtudisc_update((struct ip6ctlparam *)d, 0);
1381 1.94 itojun return;
1382 1.110 itojun }
1383 1.73 itojun
1384 1.107 itojun bzero(&th, sizeof(th));
1385 1.107 itojun m_copydata(m, off, sizeof(th), (caddr_t)&th);
1386 1.99 itojun
1387 1.99 itojun if (cmd == PRC_MSGSIZE) {
1388 1.104 itojun int valid = 0;
1389 1.104 itojun
1390 1.99 itojun /*
1391 1.99 itojun * Check to see if we have a valid TCP connection
1392 1.99 itojun * corresponding to the address in the ICMPv6 message
1393 1.99 itojun * payload.
1394 1.99 itojun */
1395 1.151 itojun if (in6_pcblookup_connect(&tcbtable, &sa6->sin6_addr,
1396 1.107 itojun th.th_dport, (struct in6_addr *)&sa6_src->sin6_addr,
1397 1.107 itojun th.th_sport, 0))
1398 1.104 itojun valid++;
1399 1.99 itojun
1400 1.99 itojun /*
1401 1.107 itojun * Depending on the value of "valid" and routing table
1402 1.107 itojun * size (mtudisc_{hi,lo}wat), we will:
1403 1.107 itojun * - recalcurate the new MTU and create the
1404 1.107 itojun * corresponding routing entry, or
1405 1.107 itojun * - ignore the MTU change notification.
1406 1.99 itojun */
1407 1.104 itojun icmp6_mtudisc_update((struct ip6ctlparam *)d, valid);
1408 1.99 itojun
1409 1.107 itojun /*
1410 1.107 itojun * no need to call in6_pcbnotify, it should have been
1411 1.107 itojun * called via callback if necessary
1412 1.107 itojun */
1413 1.99 itojun return;
1414 1.99 itojun }
1415 1.99 itojun
1416 1.151 itojun nmatch = in6_pcbnotify(&tcbtable, sa, th.th_dport,
1417 1.107 itojun (struct sockaddr *)sa6_src, th.th_sport, cmd, NULL, notify);
1418 1.73 itojun if (nmatch == 0 && syn_cache_count &&
1419 1.73 itojun (inet6ctlerrmap[cmd] == EHOSTUNREACH ||
1420 1.73 itojun inet6ctlerrmap[cmd] == ENETUNREACH ||
1421 1.107 itojun inet6ctlerrmap[cmd] == EHOSTDOWN))
1422 1.107 itojun syn_cache_unreach((struct sockaddr *)sa6_src,
1423 1.107 itojun sa, &th);
1424 1.73 itojun } else {
1425 1.151 itojun (void) in6_pcbnotify(&tcbtable, sa, 0,
1426 1.151 itojun (struct sockaddr *)sa6_src, 0, cmd, NULL, notify);
1427 1.73 itojun }
1428 1.67 itojun }
1429 1.67 itojun #endif
1430 1.67 itojun
1431 1.96 itojun #ifdef INET
1432 1.67 itojun /* assumes that ip header and tcp header are contiguous on mbuf */
1433 1.22 christos void *
1434 1.22 christos tcp_ctlinput(cmd, sa, v)
1435 1.1 cgd int cmd;
1436 1.1 cgd struct sockaddr *sa;
1437 1.91 augustss void *v;
1438 1.1 cgd {
1439 1.91 augustss struct ip *ip = v;
1440 1.91 augustss struct tcphdr *th;
1441 1.98 thorpej struct icmp *icp;
1442 1.120 matt extern const int inetctlerrmap[];
1443 1.7 mycroft void (*notify) __P((struct inpcb *, int)) = tcp_notify;
1444 1.19 mycroft int errno;
1445 1.27 thorpej int nmatch;
1446 1.132 itojun #ifdef INET6
1447 1.132 itojun struct in6_addr src6, dst6;
1448 1.132 itojun #endif
1449 1.1 cgd
1450 1.76 itojun if (sa->sa_family != AF_INET ||
1451 1.76 itojun sa->sa_len != sizeof(struct sockaddr_in))
1452 1.76 itojun return NULL;
1453 1.18 mycroft if ((unsigned)cmd >= PRC_NCMDS)
1454 1.22 christos return NULL;
1455 1.18 mycroft errno = inetctlerrmap[cmd];
1456 1.17 mycroft if (cmd == PRC_QUENCH)
1457 1.17 mycroft notify = tcp_quench;
1458 1.17 mycroft else if (PRC_IS_REDIRECT(cmd))
1459 1.17 mycroft notify = in_rtchange, ip = 0;
1460 1.128 itojun else if (cmd == PRC_MSGSIZE && ip && ip->ip_v == 4) {
1461 1.98 thorpej /*
1462 1.98 thorpej * Check to see if we have a valid TCP connection
1463 1.98 thorpej * corresponding to the address in the ICMP message
1464 1.98 thorpej * payload.
1465 1.110 itojun *
1466 1.110 itojun * Boundary check is made in icmp_input(), with ICMP_ADVLENMIN.
1467 1.98 thorpej */
1468 1.98 thorpej th = (struct tcphdr *)((caddr_t)ip + (ip->ip_hl << 2));
1469 1.132 itojun #ifdef INET6
1470 1.132 itojun memset(&src6, 0, sizeof(src6));
1471 1.132 itojun memset(&dst6, 0, sizeof(dst6));
1472 1.132 itojun src6.s6_addr16[5] = dst6.s6_addr16[5] = 0xffff;
1473 1.132 itojun memcpy(&src6.s6_addr32[3], &ip->ip_src, sizeof(struct in_addr));
1474 1.132 itojun memcpy(&dst6.s6_addr32[3], &ip->ip_dst, sizeof(struct in_addr));
1475 1.132 itojun #endif
1476 1.132 itojun if (in_pcblookup_connect(&tcbtable, ip->ip_dst, th->th_dport,
1477 1.132 itojun ip->ip_src, th->th_sport) != NULL)
1478 1.132 itojun ;
1479 1.132 itojun #ifdef INET6
1480 1.151 itojun else if (in6_pcblookup_connect(&tcbtable, &dst6,
1481 1.132 itojun th->th_dport, &src6, th->th_sport, 0) != NULL)
1482 1.132 itojun ;
1483 1.132 itojun #endif
1484 1.132 itojun else
1485 1.98 thorpej return NULL;
1486 1.98 thorpej
1487 1.98 thorpej /*
1488 1.98 thorpej * Now that we've validated that we are actually communicating
1489 1.98 thorpej * with the host indicated in the ICMP message, locate the
1490 1.98 thorpej * ICMP header, recalculate the new MTU, and create the
1491 1.98 thorpej * corresponding routing entry.
1492 1.98 thorpej */
1493 1.98 thorpej icp = (struct icmp *)((caddr_t)ip -
1494 1.98 thorpej offsetof(struct icmp, icmp_ip));
1495 1.98 thorpej icmp_mtudisc(icp, ip->ip_dst);
1496 1.98 thorpej
1497 1.98 thorpej return NULL;
1498 1.98 thorpej } else if (cmd == PRC_HOSTDEAD)
1499 1.17 mycroft ip = 0;
1500 1.18 mycroft else if (errno == 0)
1501 1.22 christos return NULL;
1502 1.67 itojun if (ip && ip->ip_v == 4 && sa->sa_family == AF_INET) {
1503 1.1 cgd th = (struct tcphdr *)((caddr_t)ip + (ip->ip_hl << 2));
1504 1.27 thorpej nmatch = in_pcbnotify(&tcbtable, satosin(sa)->sin_addr,
1505 1.27 thorpej th->th_dport, ip->ip_src, th->th_sport, errno, notify);
1506 1.27 thorpej if (nmatch == 0 && syn_cache_count &&
1507 1.27 thorpej (inetctlerrmap[cmd] == EHOSTUNREACH ||
1508 1.27 thorpej inetctlerrmap[cmd] == ENETUNREACH ||
1509 1.67 itojun inetctlerrmap[cmd] == EHOSTDOWN)) {
1510 1.67 itojun struct sockaddr_in sin;
1511 1.67 itojun bzero(&sin, sizeof(sin));
1512 1.67 itojun sin.sin_len = sizeof(sin);
1513 1.67 itojun sin.sin_family = AF_INET;
1514 1.67 itojun sin.sin_port = th->th_sport;
1515 1.67 itojun sin.sin_addr = ip->ip_src;
1516 1.67 itojun syn_cache_unreach((struct sockaddr *)&sin, sa, th);
1517 1.67 itojun }
1518 1.67 itojun
1519 1.67 itojun /* XXX mapped address case */
1520 1.98 thorpej } else
1521 1.98 thorpej in_pcbnotifyall(&tcbtable, satosin(sa)->sin_addr, errno,
1522 1.23 mycroft notify);
1523 1.22 christos return NULL;
1524 1.1 cgd }
1525 1.1 cgd
1526 1.1 cgd /*
1527 1.55 thorpej * When a source quence is received, we are being notifed of congestion.
1528 1.55 thorpej * Close the congestion window down to the Loss Window (one segment).
1529 1.55 thorpej * We will gradually open it again as we proceed.
1530 1.1 cgd */
1531 1.7 mycroft void
1532 1.7 mycroft tcp_quench(inp, errno)
1533 1.1 cgd struct inpcb *inp;
1534 1.7 mycroft int errno;
1535 1.1 cgd {
1536 1.1 cgd struct tcpcb *tp = intotcpcb(inp);
1537 1.1 cgd
1538 1.1 cgd if (tp)
1539 1.55 thorpej tp->snd_cwnd = tp->t_segsz;
1540 1.28 thorpej }
1541 1.96 itojun #endif
1542 1.31 kml
1543 1.101 itojun #ifdef INET6
1544 1.73 itojun void
1545 1.73 itojun tcp6_quench(in6p, errno)
1546 1.73 itojun struct in6pcb *in6p;
1547 1.73 itojun int errno;
1548 1.73 itojun {
1549 1.73 itojun struct tcpcb *tp = in6totcpcb(in6p);
1550 1.73 itojun
1551 1.73 itojun if (tp)
1552 1.73 itojun tp->snd_cwnd = tp->t_segsz;
1553 1.73 itojun }
1554 1.73 itojun #endif
1555 1.73 itojun
1556 1.99 itojun #ifdef INET
1557 1.31 kml /*
1558 1.98 thorpej * Path MTU Discovery handlers.
1559 1.98 thorpej */
1560 1.98 thorpej void
1561 1.98 thorpej tcp_mtudisc_callback(faddr)
1562 1.98 thorpej struct in_addr faddr;
1563 1.98 thorpej {
1564 1.132 itojun #ifdef INET6
1565 1.132 itojun struct in6_addr in6;
1566 1.132 itojun #endif
1567 1.98 thorpej
1568 1.98 thorpej in_pcbnotifyall(&tcbtable, faddr, EMSGSIZE, tcp_mtudisc);
1569 1.132 itojun #ifdef INET6
1570 1.132 itojun memset(&in6, 0, sizeof(in6));
1571 1.132 itojun in6.s6_addr16[5] = 0xffff;
1572 1.132 itojun memcpy(&in6.s6_addr32[3], &faddr, sizeof(struct in_addr));
1573 1.132 itojun tcp6_mtudisc_callback(&in6);
1574 1.132 itojun #endif
1575 1.98 thorpej }
1576 1.98 thorpej
1577 1.98 thorpej /*
1578 1.31 kml * On receipt of path MTU corrections, flush old route and replace it
1579 1.31 kml * with the new one. Retransmit all unacknowledged packets, to ensure
1580 1.31 kml * that all packets will be received.
1581 1.31 kml */
1582 1.31 kml void
1583 1.31 kml tcp_mtudisc(inp, errno)
1584 1.31 kml struct inpcb *inp;
1585 1.31 kml int errno;
1586 1.31 kml {
1587 1.31 kml struct tcpcb *tp = intotcpcb(inp);
1588 1.31 kml struct rtentry *rt = in_pcbrtentry(inp);
1589 1.31 kml
1590 1.31 kml if (tp != 0) {
1591 1.31 kml if (rt != 0) {
1592 1.36 thorpej /*
1593 1.36 thorpej * If this was not a host route, remove and realloc.
1594 1.36 thorpej */
1595 1.31 kml if ((rt->rt_flags & RTF_HOST) == 0) {
1596 1.31 kml in_rtchange(inp, errno);
1597 1.31 kml if ((rt = in_pcbrtentry(inp)) == 0)
1598 1.31 kml return;
1599 1.31 kml }
1600 1.36 thorpej
1601 1.36 thorpej /*
1602 1.36 thorpej * Slow start out of the error condition. We
1603 1.36 thorpej * use the MTU because we know it's smaller
1604 1.36 thorpej * than the previously transmitted segment.
1605 1.56 thorpej *
1606 1.56 thorpej * Note: This is more conservative than the
1607 1.56 thorpej * suggestion in draft-floyd-incr-init-win-03.
1608 1.36 thorpej */
1609 1.33 kml if (rt->rt_rmx.rmx_mtu != 0)
1610 1.36 thorpej tp->snd_cwnd =
1611 1.46 thorpej TCP_INITIAL_WINDOW(tcp_init_win,
1612 1.46 thorpej rt->rt_rmx.rmx_mtu);
1613 1.31 kml }
1614 1.131 itojun
1615 1.36 thorpej /*
1616 1.36 thorpej * Resend unacknowledged packets.
1617 1.36 thorpej */
1618 1.31 kml tp->snd_nxt = tp->snd_una;
1619 1.31 kml tcp_output(tp);
1620 1.31 kml }
1621 1.31 kml }
1622 1.99 itojun #endif
1623 1.31 kml
1624 1.101 itojun #ifdef INET6
1625 1.99 itojun /*
1626 1.99 itojun * Path MTU Discovery handlers.
1627 1.99 itojun */
1628 1.99 itojun void
1629 1.99 itojun tcp6_mtudisc_callback(faddr)
1630 1.99 itojun struct in6_addr *faddr;
1631 1.99 itojun {
1632 1.99 itojun struct sockaddr_in6 sin6;
1633 1.99 itojun
1634 1.99 itojun bzero(&sin6, sizeof(sin6));
1635 1.99 itojun sin6.sin6_family = AF_INET6;
1636 1.99 itojun sin6.sin6_len = sizeof(struct sockaddr_in6);
1637 1.99 itojun sin6.sin6_addr = *faddr;
1638 1.151 itojun (void) in6_pcbnotify(&tcbtable, (struct sockaddr *)&sin6, 0,
1639 1.107 itojun (struct sockaddr *)&sa6_any, 0, PRC_MSGSIZE, NULL, tcp6_mtudisc);
1640 1.99 itojun }
1641 1.99 itojun
1642 1.73 itojun void
1643 1.73 itojun tcp6_mtudisc(in6p, errno)
1644 1.73 itojun struct in6pcb *in6p;
1645 1.73 itojun int errno;
1646 1.73 itojun {
1647 1.73 itojun struct tcpcb *tp = in6totcpcb(in6p);
1648 1.73 itojun struct rtentry *rt = in6_pcbrtentry(in6p);
1649 1.73 itojun
1650 1.73 itojun if (tp != 0) {
1651 1.73 itojun if (rt != 0) {
1652 1.73 itojun /*
1653 1.73 itojun * If this was not a host route, remove and realloc.
1654 1.73 itojun */
1655 1.73 itojun if ((rt->rt_flags & RTF_HOST) == 0) {
1656 1.73 itojun in6_rtchange(in6p, errno);
1657 1.73 itojun if ((rt = in6_pcbrtentry(in6p)) == 0)
1658 1.73 itojun return;
1659 1.73 itojun }
1660 1.73 itojun
1661 1.73 itojun /*
1662 1.73 itojun * Slow start out of the error condition. We
1663 1.73 itojun * use the MTU because we know it's smaller
1664 1.73 itojun * than the previously transmitted segment.
1665 1.73 itojun *
1666 1.73 itojun * Note: This is more conservative than the
1667 1.73 itojun * suggestion in draft-floyd-incr-init-win-03.
1668 1.73 itojun */
1669 1.73 itojun if (rt->rt_rmx.rmx_mtu != 0)
1670 1.73 itojun tp->snd_cwnd =
1671 1.73 itojun TCP_INITIAL_WINDOW(tcp_init_win,
1672 1.73 itojun rt->rt_rmx.rmx_mtu);
1673 1.73 itojun }
1674 1.73 itojun
1675 1.73 itojun /*
1676 1.73 itojun * Resend unacknowledged packets.
1677 1.73 itojun */
1678 1.73 itojun tp->snd_nxt = tp->snd_una;
1679 1.73 itojun tcp_output(tp);
1680 1.73 itojun }
1681 1.73 itojun }
1682 1.101 itojun #endif /* INET6 */
1683 1.28 thorpej
1684 1.28 thorpej /*
1685 1.28 thorpej * Compute the MSS to advertise to the peer. Called only during
1686 1.28 thorpej * the 3-way handshake. If we are the server (peer initiated
1687 1.53 kml * connection), we are called with a pointer to the interface
1688 1.131 itojun * on which the SYN packet arrived. If we are the client (we
1689 1.53 kml * initiated connection), we are called with a pointer to the
1690 1.53 kml * interface out which this connection should go.
1691 1.80 itojun *
1692 1.80 itojun * NOTE: Do not subtract IP option/extension header size nor IPsec
1693 1.80 itojun * header size from MSS advertisement. MSS option must hold the maximum
1694 1.80 itojun * segment size we can accept, so it must always be:
1695 1.80 itojun * max(if mtu) - ip header - tcp header
1696 1.28 thorpej */
1697 1.47 kml u_long
1698 1.80 itojun tcp_mss_to_advertise(ifp, af)
1699 1.47 kml const struct ifnet *ifp;
1700 1.80 itojun int af;
1701 1.28 thorpej {
1702 1.28 thorpej extern u_long in_maxmtu;
1703 1.47 kml u_long mss = 0;
1704 1.80 itojun u_long hdrsiz;
1705 1.28 thorpej
1706 1.28 thorpej /*
1707 1.28 thorpej * In order to avoid defeating path MTU discovery on the peer,
1708 1.28 thorpej * we advertise the max MTU of all attached networks as our MSS,
1709 1.28 thorpej * per RFC 1191, section 3.1.
1710 1.47 kml *
1711 1.47 kml * We provide the option to advertise just the MTU of
1712 1.47 kml * the interface on which we hope this connection will
1713 1.47 kml * be receiving. If we are responding to a SYN, we
1714 1.47 kml * will have a pretty good idea about this, but when
1715 1.47 kml * initiating a connection there is a bit more doubt.
1716 1.47 kml *
1717 1.47 kml * We also need to ensure that loopback has a large enough
1718 1.47 kml * MSS, as the loopback MTU is never included in in_maxmtu.
1719 1.28 thorpej */
1720 1.28 thorpej
1721 1.47 kml if (ifp != NULL)
1722 1.130 itojun switch (af) {
1723 1.130 itojun case AF_INET:
1724 1.130 itojun mss = ifp->if_mtu;
1725 1.130 itojun break;
1726 1.130 itojun #ifdef INET6
1727 1.130 itojun case AF_INET6:
1728 1.130 itojun mss = IN6_LINKMTU(ifp);
1729 1.130 itojun break;
1730 1.130 itojun #endif
1731 1.130 itojun }
1732 1.47 kml
1733 1.47 kml if (tcp_mss_ifmtu == 0)
1734 1.113 itojun switch (af) {
1735 1.113 itojun case AF_INET:
1736 1.113 itojun mss = max(in_maxmtu, mss);
1737 1.113 itojun break;
1738 1.114 itojun #ifdef INET6
1739 1.113 itojun case AF_INET6:
1740 1.113 itojun mss = max(in6_maxmtu, mss);
1741 1.113 itojun break;
1742 1.114 itojun #endif
1743 1.113 itojun }
1744 1.47 kml
1745 1.80 itojun switch (af) {
1746 1.80 itojun case AF_INET:
1747 1.80 itojun hdrsiz = sizeof(struct ip);
1748 1.80 itojun break;
1749 1.81 enami #ifdef INET6
1750 1.80 itojun case AF_INET6:
1751 1.80 itojun hdrsiz = sizeof(struct ip6_hdr);
1752 1.80 itojun break;
1753 1.81 enami #endif
1754 1.80 itojun default:
1755 1.80 itojun hdrsiz = 0;
1756 1.80 itojun break;
1757 1.80 itojun }
1758 1.80 itojun hdrsiz += sizeof(struct tcphdr);
1759 1.80 itojun if (mss > hdrsiz)
1760 1.80 itojun mss -= hdrsiz;
1761 1.47 kml
1762 1.47 kml mss = max(tcp_mssdflt, mss);
1763 1.28 thorpej return (mss);
1764 1.28 thorpej }
1765 1.28 thorpej
1766 1.28 thorpej /*
1767 1.28 thorpej * Set connection variables based on the peer's advertised MSS.
1768 1.28 thorpej * We are passed the TCPCB for the actual connection. If we
1769 1.28 thorpej * are the server, we are called by the compressed state engine
1770 1.28 thorpej * when the 3-way handshake is complete. If we are the client,
1771 1.112 wiz * we are called when we receive the SYN,ACK from the server.
1772 1.28 thorpej *
1773 1.28 thorpej * NOTE: Our advertised MSS value must be initialized in the TCPCB
1774 1.28 thorpej * before this routine is called!
1775 1.28 thorpej */
1776 1.28 thorpej void
1777 1.28 thorpej tcp_mss_from_peer(tp, offer)
1778 1.28 thorpej struct tcpcb *tp;
1779 1.28 thorpej int offer;
1780 1.28 thorpej {
1781 1.67 itojun struct socket *so;
1782 1.28 thorpej #if defined(RTV_SPIPE) || defined(RTV_SSTHRESH)
1783 1.67 itojun struct rtentry *rt;
1784 1.28 thorpej #endif
1785 1.28 thorpej u_long bufsize;
1786 1.28 thorpej int mss;
1787 1.28 thorpej
1788 1.96 itojun #ifdef DIAGNOSTIC
1789 1.96 itojun if (tp->t_inpcb && tp->t_in6pcb)
1790 1.96 itojun panic("tcp_mss_from_peer: both t_inpcb and t_in6pcb are set");
1791 1.96 itojun #endif
1792 1.67 itojun so = NULL;
1793 1.67 itojun rt = NULL;
1794 1.96 itojun #ifdef INET
1795 1.67 itojun if (tp->t_inpcb) {
1796 1.67 itojun so = tp->t_inpcb->inp_socket;
1797 1.67 itojun #if defined(RTV_SPIPE) || defined(RTV_SSTHRESH)
1798 1.67 itojun rt = in_pcbrtentry(tp->t_inpcb);
1799 1.67 itojun #endif
1800 1.67 itojun }
1801 1.96 itojun #endif
1802 1.67 itojun #ifdef INET6
1803 1.96 itojun if (tp->t_in6pcb) {
1804 1.67 itojun so = tp->t_in6pcb->in6p_socket;
1805 1.67 itojun #if defined(RTV_SPIPE) || defined(RTV_SSTHRESH)
1806 1.67 itojun rt = in6_pcbrtentry(tp->t_in6pcb);
1807 1.67 itojun #endif
1808 1.67 itojun }
1809 1.67 itojun #endif
1810 1.67 itojun
1811 1.28 thorpej /*
1812 1.131 itojun * As per RFC1122, use the default MSS value, unless they
1813 1.42 kml * sent us an offer. Do not accept offers less than 32 bytes.
1814 1.28 thorpej */
1815 1.42 kml mss = tcp_mssdflt;
1816 1.28 thorpej if (offer)
1817 1.28 thorpej mss = offer;
1818 1.28 thorpej mss = max(mss, 32); /* sanity */
1819 1.54 kml tp->t_peermss = mss;
1820 1.67 itojun mss -= tcp_optlen(tp);
1821 1.96 itojun #ifdef INET
1822 1.67 itojun if (tp->t_inpcb)
1823 1.67 itojun mss -= ip_optlen(tp->t_inpcb);
1824 1.96 itojun #endif
1825 1.67 itojun #ifdef INET6
1826 1.96 itojun if (tp->t_in6pcb)
1827 1.67 itojun mss -= ip6_optlen(tp->t_in6pcb);
1828 1.67 itojun #endif
1829 1.28 thorpej
1830 1.28 thorpej /*
1831 1.28 thorpej * If there's a pipesize, change the socket buffer to that size.
1832 1.28 thorpej * Make the socket buffer an integral number of MSS units. If
1833 1.28 thorpej * the MSS is larger than the socket buffer, artificially decrease
1834 1.28 thorpej * the MSS.
1835 1.28 thorpej */
1836 1.28 thorpej #ifdef RTV_SPIPE
1837 1.28 thorpej if (rt != NULL && rt->rt_rmx.rmx_sendpipe != 0)
1838 1.28 thorpej bufsize = rt->rt_rmx.rmx_sendpipe;
1839 1.28 thorpej else
1840 1.28 thorpej #endif
1841 1.28 thorpej bufsize = so->so_snd.sb_hiwat;
1842 1.28 thorpej if (bufsize < mss)
1843 1.28 thorpej mss = bufsize;
1844 1.28 thorpej else {
1845 1.28 thorpej bufsize = roundup(bufsize, mss);
1846 1.28 thorpej if (bufsize > sb_max)
1847 1.28 thorpej bufsize = sb_max;
1848 1.28 thorpej (void) sbreserve(&so->so_snd, bufsize);
1849 1.28 thorpej }
1850 1.33 kml tp->t_segsz = mss;
1851 1.28 thorpej
1852 1.28 thorpej #ifdef RTV_SSTHRESH
1853 1.28 thorpej if (rt != NULL && rt->rt_rmx.rmx_ssthresh) {
1854 1.28 thorpej /*
1855 1.28 thorpej * There's some sort of gateway or interface buffer
1856 1.28 thorpej * limit on the path. Use this to set the slow
1857 1.28 thorpej * start threshold, but set the threshold to no less
1858 1.28 thorpej * than 2 * MSS.
1859 1.28 thorpej */
1860 1.28 thorpej tp->snd_ssthresh = max(2 * mss, rt->rt_rmx.rmx_ssthresh);
1861 1.28 thorpej }
1862 1.28 thorpej #endif
1863 1.28 thorpej }
1864 1.28 thorpej
1865 1.28 thorpej /*
1866 1.28 thorpej * Processing necessary when a TCP connection is established.
1867 1.28 thorpej */
1868 1.28 thorpej void
1869 1.28 thorpej tcp_established(tp)
1870 1.28 thorpej struct tcpcb *tp;
1871 1.28 thorpej {
1872 1.67 itojun struct socket *so;
1873 1.28 thorpej #ifdef RTV_RPIPE
1874 1.67 itojun struct rtentry *rt;
1875 1.28 thorpej #endif
1876 1.28 thorpej u_long bufsize;
1877 1.28 thorpej
1878 1.96 itojun #ifdef DIAGNOSTIC
1879 1.96 itojun if (tp->t_inpcb && tp->t_in6pcb)
1880 1.96 itojun panic("tcp_established: both t_inpcb and t_in6pcb are set");
1881 1.96 itojun #endif
1882 1.67 itojun so = NULL;
1883 1.67 itojun rt = NULL;
1884 1.96 itojun #ifdef INET
1885 1.67 itojun if (tp->t_inpcb) {
1886 1.67 itojun so = tp->t_inpcb->inp_socket;
1887 1.67 itojun #if defined(RTV_RPIPE)
1888 1.67 itojun rt = in_pcbrtentry(tp->t_inpcb);
1889 1.67 itojun #endif
1890 1.67 itojun }
1891 1.96 itojun #endif
1892 1.67 itojun #ifdef INET6
1893 1.96 itojun if (tp->t_in6pcb) {
1894 1.67 itojun so = tp->t_in6pcb->in6p_socket;
1895 1.67 itojun #if defined(RTV_RPIPE)
1896 1.67 itojun rt = in6_pcbrtentry(tp->t_in6pcb);
1897 1.67 itojun #endif
1898 1.67 itojun }
1899 1.67 itojun #endif
1900 1.67 itojun
1901 1.28 thorpej tp->t_state = TCPS_ESTABLISHED;
1902 1.51 thorpej TCP_TIMER_ARM(tp, TCPT_KEEP, tcp_keepidle);
1903 1.28 thorpej
1904 1.28 thorpej #ifdef RTV_RPIPE
1905 1.28 thorpej if (rt != NULL && rt->rt_rmx.rmx_recvpipe != 0)
1906 1.28 thorpej bufsize = rt->rt_rmx.rmx_recvpipe;
1907 1.28 thorpej else
1908 1.28 thorpej #endif
1909 1.28 thorpej bufsize = so->so_rcv.sb_hiwat;
1910 1.28 thorpej if (bufsize > tp->t_ourmss) {
1911 1.28 thorpej bufsize = roundup(bufsize, tp->t_ourmss);
1912 1.28 thorpej if (bufsize > sb_max)
1913 1.28 thorpej bufsize = sb_max;
1914 1.28 thorpej (void) sbreserve(&so->so_rcv, bufsize);
1915 1.28 thorpej }
1916 1.28 thorpej }
1917 1.28 thorpej
1918 1.28 thorpej /*
1919 1.28 thorpej * Check if there's an initial rtt or rttvar. Convert from the
1920 1.28 thorpej * route-table units to scaled multiples of the slow timeout timer.
1921 1.28 thorpej * Called only during the 3-way handshake.
1922 1.28 thorpej */
1923 1.28 thorpej void
1924 1.28 thorpej tcp_rmx_rtt(tp)
1925 1.28 thorpej struct tcpcb *tp;
1926 1.28 thorpej {
1927 1.28 thorpej #ifdef RTV_RTT
1928 1.67 itojun struct rtentry *rt = NULL;
1929 1.28 thorpej int rtt;
1930 1.28 thorpej
1931 1.96 itojun #ifdef DIAGNOSTIC
1932 1.96 itojun if (tp->t_inpcb && tp->t_in6pcb)
1933 1.96 itojun panic("tcp_rmx_rtt: both t_inpcb and t_in6pcb are set");
1934 1.96 itojun #endif
1935 1.96 itojun #ifdef INET
1936 1.67 itojun if (tp->t_inpcb)
1937 1.67 itojun rt = in_pcbrtentry(tp->t_inpcb);
1938 1.96 itojun #endif
1939 1.67 itojun #ifdef INET6
1940 1.101 itojun if (tp->t_in6pcb)
1941 1.67 itojun rt = in6_pcbrtentry(tp->t_in6pcb);
1942 1.67 itojun #endif
1943 1.67 itojun if (rt == NULL)
1944 1.28 thorpej return;
1945 1.28 thorpej
1946 1.28 thorpej if (tp->t_srtt == 0 && (rtt = rt->rt_rmx.rmx_rtt)) {
1947 1.28 thorpej /*
1948 1.28 thorpej * XXX The lock bit for MTU indicates that the value
1949 1.28 thorpej * is also a minimum value; this is subject to time.
1950 1.28 thorpej */
1951 1.28 thorpej if (rt->rt_rmx.rmx_locks & RTV_RTT)
1952 1.43 kml TCPT_RANGESET(tp->t_rttmin,
1953 1.43 kml rtt / (RTM_RTTUNIT / PR_SLOWHZ),
1954 1.43 kml TCPTV_MIN, TCPTV_REXMTMAX);
1955 1.28 thorpej tp->t_srtt = rtt /
1956 1.28 thorpej ((RTM_RTTUNIT / PR_SLOWHZ) >> (TCP_RTT_SHIFT + 2));
1957 1.28 thorpej if (rt->rt_rmx.rmx_rttvar) {
1958 1.28 thorpej tp->t_rttvar = rt->rt_rmx.rmx_rttvar /
1959 1.28 thorpej ((RTM_RTTUNIT / PR_SLOWHZ) >>
1960 1.28 thorpej (TCP_RTTVAR_SHIFT + 2));
1961 1.28 thorpej } else {
1962 1.28 thorpej /* Default variation is +- 1 rtt */
1963 1.28 thorpej tp->t_rttvar =
1964 1.28 thorpej tp->t_srtt >> (TCP_RTT_SHIFT - TCP_RTTVAR_SHIFT);
1965 1.28 thorpej }
1966 1.28 thorpej TCPT_RANGESET(tp->t_rxtcur,
1967 1.28 thorpej ((tp->t_srtt >> 2) + tp->t_rttvar) >> (1 + 2),
1968 1.28 thorpej tp->t_rttmin, TCPTV_REXMTMAX);
1969 1.28 thorpej }
1970 1.28 thorpej #endif
1971 1.29 explorer }
1972 1.29 explorer
1973 1.30 explorer tcp_seq tcp_iss_seq = 0; /* tcp initial seq # */
1974 1.108 thorpej #if NRND > 0
1975 1.108 thorpej u_int8_t tcp_iss_secret[16]; /* 128 bits; should be plenty */
1976 1.108 thorpej #endif
1977 1.30 explorer
1978 1.29 explorer /*
1979 1.29 explorer * Get a new sequence value given a tcp control block
1980 1.29 explorer */
1981 1.29 explorer tcp_seq
1982 1.108 thorpej tcp_new_iss(struct tcpcb *tp, tcp_seq addin)
1983 1.108 thorpej {
1984 1.108 thorpej
1985 1.108 thorpej #ifdef INET
1986 1.108 thorpej if (tp->t_inpcb != NULL) {
1987 1.108 thorpej return (tcp_new_iss1(&tp->t_inpcb->inp_laddr,
1988 1.108 thorpej &tp->t_inpcb->inp_faddr, tp->t_inpcb->inp_lport,
1989 1.108 thorpej tp->t_inpcb->inp_fport, sizeof(tp->t_inpcb->inp_laddr),
1990 1.108 thorpej addin));
1991 1.108 thorpej }
1992 1.108 thorpej #endif
1993 1.108 thorpej #ifdef INET6
1994 1.108 thorpej if (tp->t_in6pcb != NULL) {
1995 1.108 thorpej return (tcp_new_iss1(&tp->t_in6pcb->in6p_laddr,
1996 1.108 thorpej &tp->t_in6pcb->in6p_faddr, tp->t_in6pcb->in6p_lport,
1997 1.108 thorpej tp->t_in6pcb->in6p_fport, sizeof(tp->t_in6pcb->in6p_laddr),
1998 1.108 thorpej addin));
1999 1.108 thorpej }
2000 1.108 thorpej #endif
2001 1.108 thorpej /* Not possible. */
2002 1.108 thorpej panic("tcp_new_iss");
2003 1.108 thorpej }
2004 1.108 thorpej
2005 1.108 thorpej /*
2006 1.108 thorpej * This routine actually generates a new TCP initial sequence number.
2007 1.108 thorpej */
2008 1.108 thorpej tcp_seq
2009 1.108 thorpej tcp_new_iss1(void *laddr, void *faddr, u_int16_t lport, u_int16_t fport,
2010 1.108 thorpej size_t addrsz, tcp_seq addin)
2011 1.29 explorer {
2012 1.108 thorpej tcp_seq tcp_iss;
2013 1.29 explorer
2014 1.108 thorpej #if NRND > 0
2015 1.109 chs static int beenhere;
2016 1.109 chs
2017 1.29 explorer /*
2018 1.108 thorpej * If we haven't been here before, initialize our cryptographic
2019 1.108 thorpej * hash secret.
2020 1.29 explorer */
2021 1.108 thorpej if (beenhere == 0) {
2022 1.108 thorpej rnd_extract_data(tcp_iss_secret, sizeof(tcp_iss_secret),
2023 1.108 thorpej RND_EXTRACT_ANY);
2024 1.108 thorpej beenhere = 1;
2025 1.108 thorpej }
2026 1.108 thorpej
2027 1.108 thorpej if (tcp_do_rfc1948) {
2028 1.108 thorpej MD5_CTX ctx;
2029 1.108 thorpej u_int8_t hash[16]; /* XXX MD5 knowledge */
2030 1.108 thorpej
2031 1.108 thorpej /*
2032 1.108 thorpej * Compute the base value of the ISS. It is a hash
2033 1.108 thorpej * of (saddr, sport, daddr, dport, secret).
2034 1.108 thorpej */
2035 1.108 thorpej MD5Init(&ctx);
2036 1.108 thorpej
2037 1.108 thorpej MD5Update(&ctx, (u_char *) laddr, addrsz);
2038 1.108 thorpej MD5Update(&ctx, (u_char *) &lport, sizeof(lport));
2039 1.108 thorpej
2040 1.108 thorpej MD5Update(&ctx, (u_char *) faddr, addrsz);
2041 1.108 thorpej MD5Update(&ctx, (u_char *) &fport, sizeof(fport));
2042 1.108 thorpej
2043 1.108 thorpej MD5Update(&ctx, tcp_iss_secret, sizeof(tcp_iss_secret));
2044 1.108 thorpej
2045 1.108 thorpej MD5Final(hash, &ctx);
2046 1.108 thorpej
2047 1.108 thorpej memcpy(&tcp_iss, hash, sizeof(tcp_iss));
2048 1.108 thorpej
2049 1.108 thorpej /*
2050 1.108 thorpej * Now increment our "timer", and add it in to
2051 1.108 thorpej * the computed value.
2052 1.108 thorpej *
2053 1.108 thorpej * XXX Use `addin'?
2054 1.108 thorpej * XXX TCP_ISSINCR too large to use?
2055 1.108 thorpej */
2056 1.108 thorpej tcp_iss_seq += TCP_ISSINCR;
2057 1.108 thorpej #ifdef TCPISS_DEBUG
2058 1.108 thorpej printf("ISS hash 0x%08x, ", tcp_iss);
2059 1.108 thorpej #endif
2060 1.108 thorpej tcp_iss += tcp_iss_seq + addin;
2061 1.108 thorpej #ifdef TCPISS_DEBUG
2062 1.108 thorpej printf("new ISS 0x%08x\n", tcp_iss);
2063 1.108 thorpej #endif
2064 1.108 thorpej } else
2065 1.108 thorpej #endif /* NRND > 0 */
2066 1.108 thorpej {
2067 1.108 thorpej /*
2068 1.108 thorpej * Randomize.
2069 1.108 thorpej */
2070 1.30 explorer #if NRND > 0
2071 1.108 thorpej rnd_extract_data(&tcp_iss, sizeof(tcp_iss), RND_EXTRACT_ANY);
2072 1.30 explorer #else
2073 1.129 itojun tcp_iss = arc4random();
2074 1.30 explorer #endif
2075 1.29 explorer
2076 1.108 thorpej /*
2077 1.108 thorpej * If we were asked to add some amount to a known value,
2078 1.108 thorpej * we will take a random value obtained above, mask off
2079 1.108 thorpej * the upper bits, and add in the known value. We also
2080 1.108 thorpej * add in a constant to ensure that we are at least a
2081 1.108 thorpej * certain distance from the original value.
2082 1.108 thorpej *
2083 1.108 thorpej * This is used when an old connection is in timed wait
2084 1.108 thorpej * and we have a new one coming in, for instance.
2085 1.108 thorpej */
2086 1.108 thorpej if (addin != 0) {
2087 1.29 explorer #ifdef TCPISS_DEBUG
2088 1.108 thorpej printf("Random %08x, ", tcp_iss);
2089 1.29 explorer #endif
2090 1.108 thorpej tcp_iss &= TCP_ISS_RANDOM_MASK;
2091 1.108 thorpej tcp_iss += addin + TCP_ISSINCR;
2092 1.29 explorer #ifdef TCPISS_DEBUG
2093 1.108 thorpej printf("Old ISS %08x, ISS %08x\n", addin, tcp_iss);
2094 1.29 explorer #endif
2095 1.108 thorpej } else {
2096 1.108 thorpej tcp_iss &= TCP_ISS_RANDOM_MASK;
2097 1.108 thorpej tcp_iss += tcp_iss_seq;
2098 1.108 thorpej tcp_iss_seq += TCP_ISSINCR;
2099 1.29 explorer #ifdef TCPISS_DEBUG
2100 1.108 thorpej printf("ISS %08x\n", tcp_iss);
2101 1.29 explorer #endif
2102 1.108 thorpej }
2103 1.29 explorer }
2104 1.29 explorer
2105 1.48 thorpej if (tcp_compat_42) {
2106 1.48 thorpej /*
2107 1.48 thorpej * Limit it to the positive range for really old TCP
2108 1.48 thorpej * implementations.
2109 1.136 lukem * Just AND off the top bit instead of checking if
2110 1.135 simonb * is set first - saves a branch 50% of the time.
2111 1.48 thorpej */
2112 1.135 simonb tcp_iss &= 0x7fffffff; /* XXX */
2113 1.48 thorpej }
2114 1.29 explorer
2115 1.108 thorpej return (tcp_iss);
2116 1.1 cgd }
2117 1.42 kml
2118 1.146 jonathan #if defined(IPSEC) || defined(FAST_IPSEC)
2119 1.67 itojun /* compute ESP/AH header size for TCP, including outer IP header. */
2120 1.67 itojun size_t
2121 1.67 itojun ipsec4_hdrsiz_tcp(tp)
2122 1.67 itojun struct tcpcb *tp;
2123 1.67 itojun {
2124 1.67 itojun struct inpcb *inp;
2125 1.67 itojun size_t hdrsiz;
2126 1.67 itojun
2127 1.67 itojun /* XXX mapped addr case (tp->t_in6pcb) */
2128 1.67 itojun if (!tp || !tp->t_template || !(inp = tp->t_inpcb))
2129 1.67 itojun return 0;
2130 1.67 itojun switch (tp->t_family) {
2131 1.67 itojun case AF_INET:
2132 1.86 itojun /* XXX: should use currect direction. */
2133 1.86 itojun hdrsiz = ipsec4_hdrsiz(tp->t_template, IPSEC_DIR_OUTBOUND, inp);
2134 1.67 itojun break;
2135 1.67 itojun default:
2136 1.67 itojun hdrsiz = 0;
2137 1.67 itojun break;
2138 1.67 itojun }
2139 1.67 itojun
2140 1.67 itojun return hdrsiz;
2141 1.67 itojun }
2142 1.67 itojun
2143 1.101 itojun #ifdef INET6
2144 1.67 itojun size_t
2145 1.67 itojun ipsec6_hdrsiz_tcp(tp)
2146 1.67 itojun struct tcpcb *tp;
2147 1.67 itojun {
2148 1.67 itojun struct in6pcb *in6p;
2149 1.67 itojun size_t hdrsiz;
2150 1.67 itojun
2151 1.67 itojun if (!tp || !tp->t_template || !(in6p = tp->t_in6pcb))
2152 1.67 itojun return 0;
2153 1.67 itojun switch (tp->t_family) {
2154 1.67 itojun case AF_INET6:
2155 1.86 itojun /* XXX: should use currect direction. */
2156 1.86 itojun hdrsiz = ipsec6_hdrsiz(tp->t_template, IPSEC_DIR_OUTBOUND, in6p);
2157 1.67 itojun break;
2158 1.67 itojun case AF_INET:
2159 1.67 itojun /* mapped address case - tricky */
2160 1.67 itojun default:
2161 1.67 itojun hdrsiz = 0;
2162 1.67 itojun break;
2163 1.67 itojun }
2164 1.67 itojun
2165 1.67 itojun return hdrsiz;
2166 1.67 itojun }
2167 1.67 itojun #endif
2168 1.67 itojun #endif /*IPSEC*/
2169 1.42 kml
2170 1.42 kml /*
2171 1.42 kml * Determine the length of the TCP options for this connection.
2172 1.131 itojun *
2173 1.42 kml * XXX: What do we do for SACK, when we add that? Just reserve
2174 1.42 kml * all of the space? Otherwise we can't exactly be incrementing
2175 1.42 kml * cwnd by an amount that varies depending on the amount we last
2176 1.42 kml * had to SACK!
2177 1.42 kml */
2178 1.42 kml
2179 1.42 kml u_int
2180 1.42 kml tcp_optlen(tp)
2181 1.42 kml struct tcpcb *tp;
2182 1.42 kml {
2183 1.131 itojun if ((tp->t_flags & (TF_REQ_TSTMP|TF_RCVD_TSTMP|TF_NOOPT)) ==
2184 1.42 kml (TF_REQ_TSTMP | TF_RCVD_TSTMP))
2185 1.42 kml return TCPOLEN_TSTAMP_APPA;
2186 1.42 kml else
2187 1.42 kml return 0;
2188 1.42 kml }
2189