tcp_input.c revision 1.80 1 1.80 thorpej /* $NetBSD: tcp_input.c,v 1.80 1999/04/29 03:54:22 thorpej Exp $ */
2 1.44 thorpej
3 1.44 thorpej /*-
4 1.75 thorpej * Copyright (c) 1997, 1998, 1999 The NetBSD Foundation, Inc.
5 1.44 thorpej * All rights reserved.
6 1.44 thorpej *
7 1.44 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.44 thorpej * by Jason R. Thorpe and Kevin M. Lahey of the Numerical Aerospace Simulation
9 1.44 thorpej * Facility, NASA Ames Research Center.
10 1.44 thorpej *
11 1.44 thorpej * Redistribution and use in source and binary forms, with or without
12 1.44 thorpej * modification, are permitted provided that the following conditions
13 1.44 thorpej * are met:
14 1.44 thorpej * 1. Redistributions of source code must retain the above copyright
15 1.44 thorpej * notice, this list of conditions and the following disclaimer.
16 1.44 thorpej * 2. Redistributions in binary form must reproduce the above copyright
17 1.44 thorpej * notice, this list of conditions and the following disclaimer in the
18 1.44 thorpej * documentation and/or other materials provided with the distribution.
19 1.44 thorpej * 3. All advertising materials mentioning features or use of this software
20 1.44 thorpej * must display the following acknowledgement:
21 1.44 thorpej * This product includes software developed by the NetBSD
22 1.44 thorpej * Foundation, Inc. and its contributors.
23 1.44 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.44 thorpej * contributors may be used to endorse or promote products derived
25 1.44 thorpej * from this software without specific prior written permission.
26 1.44 thorpej *
27 1.44 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.44 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.44 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.44 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.44 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.44 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.44 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.44 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.44 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.44 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.44 thorpej * POSSIBILITY OF SUCH DAMAGE.
38 1.44 thorpej */
39 1.10 cgd
40 1.1 cgd /*
41 1.39 thorpej * Copyright (c) 1982, 1986, 1988, 1990, 1993, 1994, 1995
42 1.9 mycroft * The Regents of the University of California. All rights reserved.
43 1.1 cgd *
44 1.1 cgd * Redistribution and use in source and binary forms, with or without
45 1.1 cgd * modification, are permitted provided that the following conditions
46 1.1 cgd * are met:
47 1.1 cgd * 1. Redistributions of source code must retain the above copyright
48 1.1 cgd * notice, this list of conditions and the following disclaimer.
49 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
50 1.1 cgd * notice, this list of conditions and the following disclaimer in the
51 1.1 cgd * documentation and/or other materials provided with the distribution.
52 1.1 cgd * 3. All advertising materials mentioning features or use of this software
53 1.1 cgd * must display the following acknowledgement:
54 1.1 cgd * This product includes software developed by the University of
55 1.1 cgd * California, Berkeley and its contributors.
56 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
57 1.1 cgd * may be used to endorse or promote products derived from this software
58 1.1 cgd * without specific prior written permission.
59 1.1 cgd *
60 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
61 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
62 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
63 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
64 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
65 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
66 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
67 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
68 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
69 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
70 1.1 cgd * SUCH DAMAGE.
71 1.1 cgd *
72 1.39 thorpej * @(#)tcp_input.c 8.12 (Berkeley) 5/24/95
73 1.1 cgd */
74 1.1 cgd
75 1.29 thorpej /*
76 1.29 thorpej * TODO list for SYN cache stuff:
77 1.29 thorpej *
78 1.48 thorpej * Find room for a "state" field, which is needed to keep a
79 1.48 thorpej * compressed state for TIME_WAIT TCBs. It's been noted already
80 1.48 thorpej * that this is fairly important for very high-volume web and
81 1.48 thorpej * mail servers, which use a large number of short-lived
82 1.48 thorpej * connections.
83 1.29 thorpej */
84 1.29 thorpej
85 1.3 mycroft #include <sys/param.h>
86 1.3 mycroft #include <sys/systm.h>
87 1.3 mycroft #include <sys/malloc.h>
88 1.3 mycroft #include <sys/mbuf.h>
89 1.3 mycroft #include <sys/protosw.h>
90 1.3 mycroft #include <sys/socket.h>
91 1.3 mycroft #include <sys/socketvar.h>
92 1.3 mycroft #include <sys/errno.h>
93 1.52 thorpej #include <sys/syslog.h>
94 1.63 thorpej #include <sys/pool.h>
95 1.1 cgd
96 1.3 mycroft #include <net/if.h>
97 1.3 mycroft #include <net/route.h>
98 1.1 cgd
99 1.3 mycroft #include <netinet/in.h>
100 1.3 mycroft #include <netinet/in_systm.h>
101 1.3 mycroft #include <netinet/ip.h>
102 1.3 mycroft #include <netinet/in_pcb.h>
103 1.3 mycroft #include <netinet/ip_var.h>
104 1.3 mycroft #include <netinet/tcp.h>
105 1.3 mycroft #include <netinet/tcp_fsm.h>
106 1.3 mycroft #include <netinet/tcp_seq.h>
107 1.3 mycroft #include <netinet/tcp_timer.h>
108 1.3 mycroft #include <netinet/tcp_var.h>
109 1.3 mycroft #include <netinet/tcpip.h>
110 1.3 mycroft #include <netinet/tcp_debug.h>
111 1.1 cgd
112 1.23 christos #include <machine/stdarg.h>
113 1.23 christos
114 1.1 cgd int tcprexmtthresh = 3;
115 1.1 cgd struct tcpiphdr tcp_saveti;
116 1.9 mycroft
117 1.9 mycroft #define TCP_PAWS_IDLE (24 * 24 * 60 * 60 * PR_SLOWHZ)
118 1.9 mycroft
119 1.9 mycroft /* for modulo comparisons of timestamps */
120 1.9 mycroft #define TSTMP_LT(a,b) ((int)((a)-(b)) < 0)
121 1.9 mycroft #define TSTMP_GEQ(a,b) ((int)((a)-(b)) >= 0)
122 1.9 mycroft
123 1.1 cgd /*
124 1.37 thorpej * Macro to compute ACK transmission behavior. Delay the ACK unless
125 1.47 thorpej * we have already delayed an ACK (must send an ACK every two segments).
126 1.55 thorpej * We also ACK immediately if we received a PUSH and the ACK-on-PUSH
127 1.55 thorpej * option is enabled.
128 1.37 thorpej */
129 1.37 thorpej #define TCP_SETUP_ACK(tp, ti) \
130 1.37 thorpej do { \
131 1.55 thorpej if ((tp)->t_flags & TF_DELACK || \
132 1.55 thorpej (tcp_ack_on_push && (ti)->ti_flags & TH_PUSH)) \
133 1.37 thorpej tp->t_flags |= TF_ACKNOW; \
134 1.37 thorpej else \
135 1.38 thorpej TCP_SET_DELACK(tp); \
136 1.37 thorpej } while (0)
137 1.37 thorpej
138 1.37 thorpej /*
139 1.1 cgd * Insert segment ti into reassembly queue of tcp with
140 1.1 cgd * control block tp. Return TH_FIN if reassembly now includes
141 1.1 cgd * a segment with FIN. The macro form does the common case inline
142 1.1 cgd * (segment is the next to be received on an established connection,
143 1.1 cgd * and the queue is empty), avoiding linkage into and removal
144 1.1 cgd * from the queue and repetition of various conversions.
145 1.1 cgd * Set DELACK for segments received in order, but ack immediately
146 1.1 cgd * when segments are out of order (so fast retransmit can work).
147 1.1 cgd */
148 1.1 cgd #define TCP_REASS(tp, ti, m, so, flags) { \
149 1.72 thorpej TCP_REASS_LOCK((tp)); \
150 1.1 cgd if ((ti)->ti_seq == (tp)->rcv_nxt && \
151 1.20 cgd (tp)->segq.lh_first == NULL && \
152 1.1 cgd (tp)->t_state == TCPS_ESTABLISHED) { \
153 1.37 thorpej TCP_SETUP_ACK(tp, ti); \
154 1.1 cgd (tp)->rcv_nxt += (ti)->ti_len; \
155 1.1 cgd flags = (ti)->ti_flags & TH_FIN; \
156 1.1 cgd tcpstat.tcps_rcvpack++;\
157 1.1 cgd tcpstat.tcps_rcvbyte += (ti)->ti_len;\
158 1.1 cgd sbappend(&(so)->so_rcv, (m)); \
159 1.1 cgd sorwakeup(so); \
160 1.1 cgd } else { \
161 1.1 cgd (flags) = tcp_reass((tp), (ti), (m)); \
162 1.1 cgd tp->t_flags |= TF_ACKNOW; \
163 1.1 cgd } \
164 1.72 thorpej TCP_REASS_UNLOCK((tp)); \
165 1.1 cgd }
166 1.1 cgd
167 1.5 mycroft int
168 1.1 cgd tcp_reass(tp, ti, m)
169 1.1 cgd register struct tcpcb *tp;
170 1.1 cgd register struct tcpiphdr *ti;
171 1.1 cgd struct mbuf *m;
172 1.1 cgd {
173 1.54 matt register struct ipqent *p, *q, *nq, *tiqe = NULL;
174 1.1 cgd struct socket *so = tp->t_inpcb->inp_socket;
175 1.54 matt int pkt_flags;
176 1.54 matt tcp_seq pkt_seq;
177 1.54 matt unsigned pkt_len;
178 1.54 matt u_long rcvpartdupbyte = 0;
179 1.54 matt u_long rcvoobyte;
180 1.1 cgd
181 1.72 thorpej TCP_REASS_LOCK_CHECK(tp);
182 1.72 thorpej
183 1.1 cgd /*
184 1.1 cgd * Call with ti==0 after become established to
185 1.1 cgd * force pre-ESTABLISHED data up to user socket.
186 1.1 cgd */
187 1.1 cgd if (ti == 0)
188 1.1 cgd goto present;
189 1.1 cgd
190 1.54 matt rcvoobyte = ti->ti_len;
191 1.1 cgd /*
192 1.54 matt * Copy these to local variables because the tcpiphdr
193 1.54 matt * gets munged while we are collapsing mbufs.
194 1.20 cgd */
195 1.54 matt pkt_seq = ti->ti_seq;
196 1.54 matt pkt_len = ti->ti_len;
197 1.54 matt pkt_flags = ti->ti_flags;
198 1.20 cgd /*
199 1.1 cgd * Find a segment which begins after this one does.
200 1.1 cgd */
201 1.54 matt for (p = NULL, q = tp->segq.lh_first; q != NULL; q = nq) {
202 1.54 matt nq = q->ipqe_q.le_next;
203 1.54 matt /*
204 1.54 matt * If the received segment is just right after this
205 1.54 matt * fragment, merge the two together and then check
206 1.54 matt * for further overlaps.
207 1.54 matt */
208 1.54 matt if (q->ipqe_seq + q->ipqe_len == pkt_seq) {
209 1.54 matt #ifdef TCPREASS_DEBUG
210 1.54 matt printf("tcp_reass[%p]: concat %u:%u(%u) to %u:%u(%u)\n",
211 1.54 matt tp, pkt_seq, pkt_seq + pkt_len, pkt_len,
212 1.54 matt q->ipqe_seq, q->ipqe_seq + q->ipqe_len, q->ipqe_len);
213 1.54 matt #endif
214 1.54 matt pkt_len += q->ipqe_len;
215 1.54 matt pkt_flags |= q->ipqe_flags;
216 1.54 matt pkt_seq = q->ipqe_seq;
217 1.54 matt m_cat(q->ipqe_m, m);
218 1.54 matt m = q->ipqe_m;
219 1.54 matt goto free_ipqe;
220 1.54 matt }
221 1.54 matt /*
222 1.54 matt * If the received segment is completely past this
223 1.54 matt * fragment, we need to go the next fragment.
224 1.54 matt */
225 1.54 matt if (SEQ_LT(q->ipqe_seq + q->ipqe_len, pkt_seq)) {
226 1.54 matt p = q;
227 1.54 matt continue;
228 1.54 matt }
229 1.54 matt /*
230 1.54 matt * If the fragment is past the received segment,
231 1.54 matt * it (or any following) can't be concatenated.
232 1.54 matt */
233 1.54 matt if (SEQ_GT(q->ipqe_seq, pkt_seq + pkt_len))
234 1.1 cgd break;
235 1.54 matt /*
236 1.54 matt * We've received all the data in this segment before.
237 1.54 matt * mark it as a duplicate and return.
238 1.54 matt */
239 1.54 matt if (SEQ_LEQ(q->ipqe_seq, pkt_seq) &&
240 1.54 matt SEQ_GEQ(q->ipqe_seq + q->ipqe_len, pkt_seq + pkt_len)) {
241 1.54 matt tcpstat.tcps_rcvduppack++;
242 1.54 matt tcpstat.tcps_rcvdupbyte += pkt_len;
243 1.54 matt m_freem(m);
244 1.54 matt if (tiqe != NULL)
245 1.71 thorpej pool_put(&ipqent_pool, tiqe);
246 1.54 matt return (0);
247 1.54 matt }
248 1.54 matt /*
249 1.54 matt * Received segment completely overlaps this fragment
250 1.54 matt * so we drop the fragment (this keeps the temporal
251 1.54 matt * ordering of segments correct).
252 1.54 matt */
253 1.54 matt if (SEQ_GEQ(q->ipqe_seq, pkt_seq) &&
254 1.54 matt SEQ_LEQ(q->ipqe_seq + q->ipqe_len, pkt_seq + pkt_len)) {
255 1.54 matt rcvpartdupbyte += q->ipqe_len;
256 1.54 matt m_freem(q->ipqe_m);
257 1.54 matt goto free_ipqe;
258 1.54 matt }
259 1.54 matt /*
260 1.54 matt * RX'ed segment extends past the end of the
261 1.54 matt * fragment. Drop the overlapping bytes. Then
262 1.54 matt * merge the fragment and segment then treat as
263 1.54 matt * a longer received packet.
264 1.54 matt */
265 1.54 matt if (SEQ_LT(q->ipqe_seq, pkt_seq)
266 1.54 matt && SEQ_GT(q->ipqe_seq + q->ipqe_len, pkt_seq)) {
267 1.54 matt int overlap = q->ipqe_seq + q->ipqe_len - pkt_seq;
268 1.54 matt #ifdef TCPREASS_DEBUG
269 1.54 matt printf("tcp_reass[%p]: trim starting %d bytes of %u:%u(%u)\n",
270 1.54 matt tp, overlap,
271 1.54 matt pkt_seq, pkt_seq + pkt_len, pkt_len);
272 1.54 matt #endif
273 1.54 matt m_adj(m, overlap);
274 1.54 matt rcvpartdupbyte += overlap;
275 1.54 matt m_cat(q->ipqe_m, m);
276 1.54 matt m = q->ipqe_m;
277 1.54 matt pkt_seq = q->ipqe_seq;
278 1.54 matt pkt_len += q->ipqe_len - overlap;
279 1.54 matt rcvoobyte -= overlap;
280 1.54 matt goto free_ipqe;
281 1.54 matt }
282 1.54 matt /*
283 1.54 matt * RX'ed segment extends past the front of the
284 1.54 matt * fragment. Drop the overlapping bytes on the
285 1.54 matt * received packet. The packet will then be
286 1.54 matt * contatentated with this fragment a bit later.
287 1.54 matt */
288 1.54 matt if (SEQ_GT(q->ipqe_seq, pkt_seq)
289 1.54 matt && SEQ_LT(q->ipqe_seq, pkt_seq + pkt_len)) {
290 1.54 matt int overlap = pkt_seq + pkt_len - q->ipqe_seq;
291 1.54 matt #ifdef TCPREASS_DEBUG
292 1.54 matt printf("tcp_reass[%p]: trim trailing %d bytes of %u:%u(%u)\n",
293 1.54 matt tp, overlap,
294 1.54 matt pkt_seq, pkt_seq + pkt_len, pkt_len);
295 1.54 matt #endif
296 1.54 matt m_adj(m, -overlap);
297 1.54 matt pkt_len -= overlap;
298 1.54 matt rcvpartdupbyte += overlap;
299 1.54 matt rcvoobyte -= overlap;
300 1.54 matt }
301 1.54 matt /*
302 1.54 matt * If the received segment immediates precedes this
303 1.54 matt * fragment then tack the fragment onto this segment
304 1.54 matt * and reinsert the data.
305 1.54 matt */
306 1.54 matt if (q->ipqe_seq == pkt_seq + pkt_len) {
307 1.54 matt #ifdef TCPREASS_DEBUG
308 1.54 matt printf("tcp_reass[%p]: append %u:%u(%u) to %u:%u(%u)\n",
309 1.54 matt tp, q->ipqe_seq, q->ipqe_seq + q->ipqe_len, q->ipqe_len,
310 1.54 matt pkt_seq, pkt_seq + pkt_len, pkt_len);
311 1.54 matt #endif
312 1.54 matt pkt_len += q->ipqe_len;
313 1.54 matt pkt_flags |= q->ipqe_flags;
314 1.54 matt m_cat(m, q->ipqe_m);
315 1.54 matt LIST_REMOVE(q, ipqe_q);
316 1.54 matt LIST_REMOVE(q, ipqe_timeq);
317 1.54 matt if (tiqe == NULL) {
318 1.54 matt tiqe = q;
319 1.54 matt } else {
320 1.71 thorpej pool_put(&ipqent_pool, q);
321 1.1 cgd }
322 1.54 matt break;
323 1.54 matt }
324 1.54 matt /*
325 1.54 matt * If the fragment is before the segment, remember it.
326 1.54 matt * When this loop is terminated, p will contain the
327 1.54 matt * pointer to fragment that is right before the received
328 1.54 matt * segment.
329 1.54 matt */
330 1.54 matt if (SEQ_LEQ(q->ipqe_seq, pkt_seq))
331 1.54 matt p = q;
332 1.54 matt
333 1.54 matt continue;
334 1.54 matt
335 1.54 matt /*
336 1.54 matt * This is a common operation. It also will allow
337 1.54 matt * to save doing a malloc/free in most instances.
338 1.54 matt */
339 1.54 matt free_ipqe:
340 1.54 matt LIST_REMOVE(q, ipqe_q);
341 1.54 matt LIST_REMOVE(q, ipqe_timeq);
342 1.54 matt if (tiqe == NULL) {
343 1.54 matt tiqe = q;
344 1.54 matt } else {
345 1.71 thorpej pool_put(&ipqent_pool, q);
346 1.1 cgd }
347 1.1 cgd }
348 1.1 cgd
349 1.1 cgd /*
350 1.54 matt * Allocate a new queue entry since the received segment did not
351 1.54 matt * collapse onto any other out-of-order block; thus we are allocating
352 1.54 matt * a new block. If it had collapsed, tiqe would not be NULL and
353 1.54 matt * we would be reusing it.
354 1.54 matt * XXX If we can't, just drop the packet. XXX
355 1.1 cgd */
356 1.54 matt if (tiqe == NULL) {
357 1.71 thorpej tiqe = pool_get(&ipqent_pool, PR_NOWAIT);
358 1.54 matt if (tiqe == NULL) {
359 1.54 matt tcpstat.tcps_rcvmemdrop++;
360 1.54 matt m_freem(m);
361 1.54 matt return (0);
362 1.54 matt }
363 1.54 matt }
364 1.20 cgd
365 1.54 matt /*
366 1.54 matt * Update the counters.
367 1.54 matt */
368 1.54 matt tcpstat.tcps_rcvoopack++;
369 1.54 matt tcpstat.tcps_rcvoobyte += rcvoobyte;
370 1.54 matt if (rcvpartdupbyte) {
371 1.54 matt tcpstat.tcps_rcvpartduppack++;
372 1.54 matt tcpstat.tcps_rcvpartdupbyte += rcvpartdupbyte;
373 1.1 cgd }
374 1.1 cgd
375 1.54 matt /*
376 1.54 matt * Insert the new fragment queue entry into both queues.
377 1.54 matt */
378 1.20 cgd tiqe->ipqe_m = m;
379 1.54 matt tiqe->ipqe_seq = pkt_seq;
380 1.54 matt tiqe->ipqe_len = pkt_len;
381 1.54 matt tiqe->ipqe_flags = pkt_flags;
382 1.20 cgd if (p == NULL) {
383 1.20 cgd LIST_INSERT_HEAD(&tp->segq, tiqe, ipqe_q);
384 1.54 matt #ifdef TCPREASS_DEBUG
385 1.54 matt if (tiqe->ipqe_seq != tp->rcv_nxt)
386 1.54 matt printf("tcp_reass[%p]: insert %u:%u(%u) at front\n",
387 1.54 matt tp, pkt_seq, pkt_seq + pkt_len, pkt_len);
388 1.54 matt #endif
389 1.20 cgd } else {
390 1.20 cgd LIST_INSERT_AFTER(p, tiqe, ipqe_q);
391 1.54 matt #ifdef TCPREASS_DEBUG
392 1.54 matt printf("tcp_reass[%p]: insert %u:%u(%u) after %u:%u(%u)\n",
393 1.54 matt tp, pkt_seq, pkt_seq + pkt_len, pkt_len,
394 1.54 matt p->ipqe_seq, p->ipqe_seq + p->ipqe_len, p->ipqe_len);
395 1.54 matt #endif
396 1.20 cgd }
397 1.1 cgd
398 1.54 matt LIST_INSERT_HEAD(&tp->timeq, tiqe, ipqe_timeq);
399 1.54 matt
400 1.1 cgd present:
401 1.1 cgd /*
402 1.1 cgd * Present data to user, advancing rcv_nxt through
403 1.1 cgd * completed sequence space.
404 1.1 cgd */
405 1.11 mycroft if (TCPS_HAVEESTABLISHED(tp->t_state) == 0)
406 1.1 cgd return (0);
407 1.20 cgd q = tp->segq.lh_first;
408 1.54 matt if (q == NULL || q->ipqe_seq != tp->rcv_nxt)
409 1.1 cgd return (0);
410 1.54 matt if (tp->t_state == TCPS_SYN_RECEIVED && q->ipqe_len)
411 1.1 cgd return (0);
412 1.20 cgd
413 1.54 matt tp->rcv_nxt += q->ipqe_len;
414 1.54 matt pkt_flags = q->ipqe_flags & TH_FIN;
415 1.54 matt
416 1.54 matt LIST_REMOVE(q, ipqe_q);
417 1.54 matt LIST_REMOVE(q, ipqe_timeq);
418 1.54 matt if (so->so_state & SS_CANTRCVMORE)
419 1.54 matt m_freem(q->ipqe_m);
420 1.54 matt else
421 1.54 matt sbappend(&so->so_rcv, q->ipqe_m);
422 1.71 thorpej pool_put(&ipqent_pool, q);
423 1.1 cgd sorwakeup(so);
424 1.54 matt return (pkt_flags);
425 1.1 cgd }
426 1.1 cgd
427 1.1 cgd /*
428 1.1 cgd * TCP input routine, follows pages 65-76 of the
429 1.1 cgd * protocol specification dated September, 1981 very closely.
430 1.1 cgd */
431 1.5 mycroft void
432 1.23 christos #if __STDC__
433 1.23 christos tcp_input(struct mbuf *m, ...)
434 1.23 christos #else
435 1.23 christos tcp_input(m, va_alist)
436 1.1 cgd register struct mbuf *m;
437 1.23 christos #endif
438 1.1 cgd {
439 1.1 cgd register struct tcpiphdr *ti;
440 1.1 cgd register struct inpcb *inp;
441 1.9 mycroft caddr_t optp = NULL;
442 1.23 christos int optlen = 0;
443 1.30 thorpej int len, tlen, off, hdroptlen;
444 1.1 cgd register struct tcpcb *tp = 0;
445 1.1 cgd register int tiflags;
446 1.23 christos struct socket *so = NULL;
447 1.1 cgd int todrop, acked, ourfinisacked, needoutput = 0;
448 1.23 christos short ostate = 0;
449 1.1 cgd int iss = 0;
450 1.12 cgd u_long tiwin;
451 1.29 thorpej struct tcp_opt_info opti;
452 1.23 christos int iphlen;
453 1.23 christos va_list ap;
454 1.23 christos
455 1.23 christos va_start(ap, m);
456 1.23 christos iphlen = va_arg(ap, int);
457 1.23 christos va_end(ap);
458 1.1 cgd
459 1.1 cgd tcpstat.tcps_rcvtotal++;
460 1.29 thorpej
461 1.29 thorpej opti.ts_present = 0;
462 1.29 thorpej opti.maxseg = 0;
463 1.29 thorpej
464 1.1 cgd /*
465 1.1 cgd * Get IP and TCP header together in first mbuf.
466 1.1 cgd * Note: IP leaves IP header in first mbuf.
467 1.1 cgd */
468 1.1 cgd ti = mtod(m, struct tcpiphdr *);
469 1.1 cgd if (iphlen > sizeof (struct ip))
470 1.1 cgd ip_stripoptions(m, (struct mbuf *)0);
471 1.1 cgd if (m->m_len < sizeof (struct tcpiphdr)) {
472 1.1 cgd if ((m = m_pullup(m, sizeof (struct tcpiphdr))) == 0) {
473 1.1 cgd tcpstat.tcps_rcvshort++;
474 1.1 cgd return;
475 1.1 cgd }
476 1.1 cgd ti = mtod(m, struct tcpiphdr *);
477 1.1 cgd }
478 1.1 cgd
479 1.1 cgd /*
480 1.1 cgd * Checksum extended TCP header and data.
481 1.1 cgd */
482 1.74 mycroft len = ((struct ip *)ti)->ip_len;
483 1.74 mycroft tlen = len - sizeof (struct ip);
484 1.20 cgd bzero(ti->ti_x1, sizeof ti->ti_x1);
485 1.12 cgd ti->ti_len = (u_int16_t)tlen;
486 1.1 cgd HTONS(ti->ti_len);
487 1.73 mycroft if (in_cksum(m, len) != 0) {
488 1.1 cgd tcpstat.tcps_rcvbadsum++;
489 1.1 cgd goto drop;
490 1.1 cgd }
491 1.1 cgd
492 1.1 cgd /*
493 1.1 cgd * Check that TCP offset makes sense,
494 1.1 cgd * pull out TCP options and adjust length. XXX
495 1.1 cgd */
496 1.1 cgd off = ti->ti_off << 2;
497 1.1 cgd if (off < sizeof (struct tcphdr) || off > tlen) {
498 1.1 cgd tcpstat.tcps_rcvbadoff++;
499 1.1 cgd goto drop;
500 1.1 cgd }
501 1.1 cgd tlen -= off;
502 1.1 cgd ti->ti_len = tlen;
503 1.1 cgd if (off > sizeof (struct tcphdr)) {
504 1.1 cgd if (m->m_len < sizeof(struct ip) + off) {
505 1.1 cgd if ((m = m_pullup(m, sizeof (struct ip) + off)) == 0) {
506 1.1 cgd tcpstat.tcps_rcvshort++;
507 1.1 cgd return;
508 1.1 cgd }
509 1.1 cgd ti = mtod(m, struct tcpiphdr *);
510 1.1 cgd }
511 1.9 mycroft optlen = off - sizeof (struct tcphdr);
512 1.9 mycroft optp = mtod(m, caddr_t) + sizeof (struct tcpiphdr);
513 1.9 mycroft /*
514 1.9 mycroft * Do quick retrieval of timestamp options ("options
515 1.9 mycroft * prediction?"). If timestamp is the only option and it's
516 1.9 mycroft * formatted as recommended in RFC 1323 appendix A, we
517 1.9 mycroft * quickly get the values now and not bother calling
518 1.9 mycroft * tcp_dooptions(), etc.
519 1.9 mycroft */
520 1.9 mycroft if ((optlen == TCPOLEN_TSTAMP_APPA ||
521 1.9 mycroft (optlen > TCPOLEN_TSTAMP_APPA &&
522 1.9 mycroft optp[TCPOLEN_TSTAMP_APPA] == TCPOPT_EOL)) &&
523 1.12 cgd *(u_int32_t *)optp == htonl(TCPOPT_TSTAMP_HDR) &&
524 1.9 mycroft (ti->ti_flags & TH_SYN) == 0) {
525 1.29 thorpej opti.ts_present = 1;
526 1.29 thorpej opti.ts_val = ntohl(*(u_int32_t *)(optp + 4));
527 1.29 thorpej opti.ts_ecr = ntohl(*(u_int32_t *)(optp + 8));
528 1.9 mycroft optp = NULL; /* we've parsed the options */
529 1.1 cgd }
530 1.1 cgd }
531 1.1 cgd tiflags = ti->ti_flags;
532 1.1 cgd
533 1.1 cgd /*
534 1.1 cgd * Convert TCP protocol specific fields to host format.
535 1.1 cgd */
536 1.1 cgd NTOHL(ti->ti_seq);
537 1.1 cgd NTOHL(ti->ti_ack);
538 1.1 cgd NTOHS(ti->ti_win);
539 1.1 cgd NTOHS(ti->ti_urp);
540 1.1 cgd
541 1.1 cgd /*
542 1.1 cgd * Locate pcb for segment.
543 1.1 cgd */
544 1.1 cgd findpcb:
545 1.26 mycroft inp = in_pcblookup_connect(&tcbtable, ti->ti_src, ti->ti_sport,
546 1.21 mycroft ti->ti_dst, ti->ti_dport);
547 1.21 mycroft if (inp == 0) {
548 1.21 mycroft ++tcpstat.tcps_pcbhashmiss;
549 1.26 mycroft inp = in_pcblookup_bind(&tcbtable, ti->ti_dst, ti->ti_dport);
550 1.21 mycroft if (inp == 0) {
551 1.21 mycroft ++tcpstat.tcps_noport;
552 1.18 mycroft goto dropwithreset;
553 1.21 mycroft }
554 1.1 cgd }
555 1.1 cgd
556 1.24 mycroft /*
557 1.24 mycroft * If the state is CLOSED (i.e., TCB does not exist) then
558 1.24 mycroft * all data in the incoming segment is discarded.
559 1.24 mycroft * If the TCB exists but is in CLOSED state, it is embryonic,
560 1.24 mycroft * but should either do a listen or a connect soon.
561 1.24 mycroft */
562 1.1 cgd tp = intotcpcb(inp);
563 1.1 cgd if (tp == 0)
564 1.1 cgd goto dropwithreset;
565 1.1 cgd if (tp->t_state == TCPS_CLOSED)
566 1.1 cgd goto drop;
567 1.9 mycroft
568 1.9 mycroft /* Unscale the window into a 32-bit value. */
569 1.9 mycroft if ((tiflags & TH_SYN) == 0)
570 1.9 mycroft tiwin = ti->ti_win << tp->snd_scale;
571 1.9 mycroft else
572 1.9 mycroft tiwin = ti->ti_win;
573 1.9 mycroft
574 1.1 cgd so = inp->inp_socket;
575 1.1 cgd if (so->so_options & (SO_DEBUG|SO_ACCEPTCONN)) {
576 1.1 cgd if (so->so_options & SO_DEBUG) {
577 1.1 cgd ostate = tp->t_state;
578 1.1 cgd tcp_saveti = *ti;
579 1.1 cgd }
580 1.1 cgd if (so->so_options & SO_ACCEPTCONN) {
581 1.29 thorpej if ((tiflags & (TH_RST|TH_ACK|TH_SYN)) != TH_SYN) {
582 1.35 thorpej if (tiflags & TH_RST) {
583 1.29 thorpej syn_cache_reset(ti);
584 1.35 thorpej } else if ((tiflags & (TH_ACK|TH_SYN)) ==
585 1.35 thorpej (TH_ACK|TH_SYN)) {
586 1.35 thorpej /*
587 1.35 thorpej * Received a SYN,ACK. This should
588 1.35 thorpej * never happen while we are in
589 1.35 thorpej * LISTEN. Send an RST.
590 1.35 thorpej */
591 1.35 thorpej goto badsyn;
592 1.35 thorpej } else if (tiflags & TH_ACK) {
593 1.29 thorpej so = syn_cache_get(so, m);
594 1.29 thorpej if (so == NULL) {
595 1.29 thorpej /*
596 1.29 thorpej * We don't have a SYN for
597 1.29 thorpej * this ACK; send an RST.
598 1.29 thorpej */
599 1.35 thorpej goto badsyn;
600 1.29 thorpej } else if (so ==
601 1.29 thorpej (struct socket *)(-1)) {
602 1.29 thorpej /*
603 1.29 thorpej * We were unable to create
604 1.29 thorpej * the connection. If the
605 1.29 thorpej * 3-way handshake was
606 1.67 mycroft * completed, and RST has
607 1.29 thorpej * been sent to the peer.
608 1.29 thorpej * Since the mbuf might be
609 1.29 thorpej * in use for the reply,
610 1.29 thorpej * do not free it.
611 1.29 thorpej */
612 1.29 thorpej m = NULL;
613 1.29 thorpej } else {
614 1.29 thorpej /*
615 1.29 thorpej * We have created a
616 1.29 thorpej * full-blown connection.
617 1.29 thorpej */
618 1.29 thorpej inp = sotoinpcb(so);
619 1.29 thorpej tp = intotcpcb(inp);
620 1.29 thorpej tiwin <<= tp->snd_scale;
621 1.29 thorpej goto after_listen;
622 1.29 thorpej }
623 1.66 mycroft } else {
624 1.66 mycroft /*
625 1.66 mycroft * None of RST, SYN or ACK was set.
626 1.66 mycroft * This is an invalid packet for a
627 1.66 mycroft * TCB in LISTEN state. Send a RST.
628 1.66 mycroft */
629 1.66 mycroft goto badsyn;
630 1.66 mycroft }
631 1.29 thorpej } else {
632 1.29 thorpej /*
633 1.35 thorpej * Received a SYN.
634 1.35 thorpej */
635 1.35 thorpej if (in_hosteq(ti->ti_src, ti->ti_dst) &&
636 1.35 thorpej ti->ti_sport == ti->ti_dport) {
637 1.35 thorpej /*
638 1.35 thorpej * LISTEN socket received a SYN
639 1.35 thorpej * from itself? This can't possibly
640 1.36 thorpej * be valid; drop the packet.
641 1.35 thorpej */
642 1.36 thorpej tcpstat.tcps_badsyn++;
643 1.36 thorpej goto drop;
644 1.35 thorpej }
645 1.35 thorpej /*
646 1.35 thorpej * SYN looks ok; create compressed TCP
647 1.35 thorpej * state for it.
648 1.29 thorpej */
649 1.29 thorpej if (so->so_qlen <= so->so_qlimit &&
650 1.29 thorpej syn_cache_add(so, m, optp, optlen, &opti))
651 1.29 thorpej m = NULL;
652 1.29 thorpej }
653 1.29 thorpej goto drop;
654 1.1 cgd }
655 1.1 cgd }
656 1.1 cgd
657 1.29 thorpej after_listen:
658 1.29 thorpej #ifdef DIAGNOSTIC
659 1.29 thorpej /*
660 1.29 thorpej * Should not happen now that all embryonic connections
661 1.29 thorpej * are handled with compressed state.
662 1.29 thorpej */
663 1.29 thorpej if (tp->t_state == TCPS_LISTEN)
664 1.29 thorpej panic("tcp_input: TCPS_LISTEN");
665 1.29 thorpej #endif
666 1.29 thorpej
667 1.1 cgd /*
668 1.1 cgd * Segment received on connection.
669 1.1 cgd * Reset idle time and keep-alive timer.
670 1.1 cgd */
671 1.1 cgd tp->t_idle = 0;
672 1.25 mycroft if (TCPS_HAVEESTABLISHED(tp->t_state))
673 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_KEEP, tcp_keepidle);
674 1.1 cgd
675 1.1 cgd /*
676 1.29 thorpej * Process options.
677 1.1 cgd */
678 1.29 thorpej if (optp)
679 1.29 thorpej tcp_dooptions(tp, optp, optlen, ti, &opti);
680 1.9 mycroft
681 1.9 mycroft /*
682 1.1 cgd * Header prediction: check for the two common cases
683 1.1 cgd * of a uni-directional data xfer. If the packet has
684 1.1 cgd * no control flags, is in-sequence, the window didn't
685 1.1 cgd * change and we're not retransmitting, it's a
686 1.1 cgd * candidate. If the length is zero and the ack moved
687 1.1 cgd * forward, we're the sender side of the xfer. Just
688 1.1 cgd * free the data acked & wake any higher level process
689 1.1 cgd * that was blocked waiting for space. If the length
690 1.1 cgd * is non-zero and the ack didn't move, we're the
691 1.1 cgd * receiver side. If we're getting packets in-order
692 1.1 cgd * (the reassembly queue is empty), add the data to
693 1.1 cgd * the socket buffer and note that we need a delayed ack.
694 1.1 cgd */
695 1.1 cgd if (tp->t_state == TCPS_ESTABLISHED &&
696 1.1 cgd (tiflags & (TH_SYN|TH_FIN|TH_RST|TH_URG|TH_ACK)) == TH_ACK &&
697 1.29 thorpej (!opti.ts_present || TSTMP_GEQ(opti.ts_val, tp->ts_recent)) &&
698 1.1 cgd ti->ti_seq == tp->rcv_nxt &&
699 1.9 mycroft tiwin && tiwin == tp->snd_wnd &&
700 1.1 cgd tp->snd_nxt == tp->snd_max) {
701 1.9 mycroft
702 1.9 mycroft /*
703 1.9 mycroft * If last ACK falls within this segment's sequence numbers,
704 1.9 mycroft * record the timestamp.
705 1.9 mycroft */
706 1.29 thorpej if (opti.ts_present &&
707 1.29 thorpej SEQ_LEQ(ti->ti_seq, tp->last_ack_sent) &&
708 1.29 thorpej SEQ_LT(tp->last_ack_sent, ti->ti_seq + ti->ti_len)) {
709 1.9 mycroft tp->ts_recent_age = tcp_now;
710 1.29 thorpej tp->ts_recent = opti.ts_val;
711 1.9 mycroft }
712 1.9 mycroft
713 1.1 cgd if (ti->ti_len == 0) {
714 1.1 cgd if (SEQ_GT(ti->ti_ack, tp->snd_una) &&
715 1.1 cgd SEQ_LEQ(ti->ti_ack, tp->snd_max) &&
716 1.15 mycroft tp->snd_cwnd >= tp->snd_wnd &&
717 1.15 mycroft tp->t_dupacks < tcprexmtthresh) {
718 1.1 cgd /*
719 1.1 cgd * this is a pure ack for outstanding data.
720 1.1 cgd */
721 1.9 mycroft ++tcpstat.tcps_predack;
722 1.29 thorpej if (opti.ts_present)
723 1.29 thorpej tcp_xmit_timer(tp,
724 1.29 thorpej tcp_now-opti.ts_ecr+1);
725 1.9 mycroft else if (tp->t_rtt &&
726 1.29 thorpej SEQ_GT(ti->ti_ack, tp->t_rtseq))
727 1.9 mycroft tcp_xmit_timer(tp, tp->t_rtt);
728 1.1 cgd acked = ti->ti_ack - tp->snd_una;
729 1.1 cgd tcpstat.tcps_rcvackpack++;
730 1.1 cgd tcpstat.tcps_rcvackbyte += acked;
731 1.1 cgd sbdrop(&so->so_snd, acked);
732 1.1 cgd tp->snd_una = ti->ti_ack;
733 1.1 cgd m_freem(m);
734 1.1 cgd
735 1.1 cgd /*
736 1.1 cgd * If all outstanding data are acked, stop
737 1.1 cgd * retransmit timer, otherwise restart timer
738 1.1 cgd * using current (possibly backed-off) value.
739 1.1 cgd * If process is waiting for space,
740 1.1 cgd * wakeup/selwakeup/signal. If data
741 1.1 cgd * are ready to send, let tcp_output
742 1.1 cgd * decide between more output or persist.
743 1.1 cgd */
744 1.1 cgd if (tp->snd_una == tp->snd_max)
745 1.58 thorpej TCP_TIMER_DISARM(tp, TCPT_REXMT);
746 1.58 thorpej else if (TCP_TIMER_ISARMED(tp,
747 1.58 thorpej TCPT_PERSIST) == 0)
748 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_REXMT,
749 1.58 thorpej tp->t_rxtcur);
750 1.1 cgd
751 1.54 matt sowwakeup(so);
752 1.1 cgd if (so->so_snd.sb_cc)
753 1.1 cgd (void) tcp_output(tp);
754 1.1 cgd return;
755 1.1 cgd }
756 1.1 cgd } else if (ti->ti_ack == tp->snd_una &&
757 1.20 cgd tp->segq.lh_first == NULL &&
758 1.1 cgd ti->ti_len <= sbspace(&so->so_rcv)) {
759 1.1 cgd /*
760 1.1 cgd * this is a pure, in-sequence data packet
761 1.1 cgd * with nothing on the reassembly queue and
762 1.1 cgd * we have enough buffer space to take it.
763 1.1 cgd */
764 1.9 mycroft ++tcpstat.tcps_preddat;
765 1.1 cgd tp->rcv_nxt += ti->ti_len;
766 1.1 cgd tcpstat.tcps_rcvpack++;
767 1.1 cgd tcpstat.tcps_rcvbyte += ti->ti_len;
768 1.1 cgd /*
769 1.9 mycroft * Drop TCP, IP headers and TCP options then add data
770 1.9 mycroft * to socket buffer.
771 1.1 cgd */
772 1.9 mycroft m->m_data += sizeof(struct tcpiphdr)+off-sizeof(struct tcphdr);
773 1.9 mycroft m->m_len -= sizeof(struct tcpiphdr)+off-sizeof(struct tcphdr);
774 1.1 cgd sbappend(&so->so_rcv, m);
775 1.1 cgd sorwakeup(so);
776 1.37 thorpej TCP_SETUP_ACK(tp, ti);
777 1.37 thorpej if (tp->t_flags & TF_ACKNOW)
778 1.37 thorpej (void) tcp_output(tp);
779 1.1 cgd return;
780 1.1 cgd }
781 1.1 cgd }
782 1.1 cgd
783 1.1 cgd /*
784 1.9 mycroft * Drop TCP, IP headers and TCP options.
785 1.1 cgd */
786 1.30 thorpej hdroptlen = sizeof(struct tcpiphdr) + off - sizeof(struct tcphdr);
787 1.30 thorpej m->m_data += hdroptlen;
788 1.30 thorpej m->m_len -= hdroptlen;
789 1.1 cgd
790 1.1 cgd /*
791 1.1 cgd * Calculate amount of space in receive window,
792 1.1 cgd * and then do TCP input processing.
793 1.1 cgd * Receive window is amount of space in rcv queue,
794 1.1 cgd * but not less than advertised window.
795 1.1 cgd */
796 1.1 cgd { int win;
797 1.1 cgd
798 1.1 cgd win = sbspace(&so->so_rcv);
799 1.1 cgd if (win < 0)
800 1.1 cgd win = 0;
801 1.28 thorpej tp->rcv_wnd = imax(win, (int)(tp->rcv_adv - tp->rcv_nxt));
802 1.1 cgd }
803 1.1 cgd
804 1.1 cgd switch (tp->t_state) {
805 1.1 cgd
806 1.1 cgd /*
807 1.1 cgd * If the state is SYN_SENT:
808 1.1 cgd * if seg contains an ACK, but not for our SYN, drop the input.
809 1.1 cgd * if seg contains a RST, then drop the connection.
810 1.1 cgd * if seg does not contain SYN, then drop it.
811 1.1 cgd * Otherwise this is an acceptable SYN segment
812 1.1 cgd * initialize tp->rcv_nxt and tp->irs
813 1.1 cgd * if seg contains ack then advance tp->snd_una
814 1.1 cgd * if SYN has been acked change to ESTABLISHED else SYN_RCVD state
815 1.1 cgd * arrange for segment to be acked (eventually)
816 1.1 cgd * continue processing rest of data/controls, beginning with URG
817 1.1 cgd */
818 1.1 cgd case TCPS_SYN_SENT:
819 1.1 cgd if ((tiflags & TH_ACK) &&
820 1.1 cgd (SEQ_LEQ(ti->ti_ack, tp->iss) ||
821 1.1 cgd SEQ_GT(ti->ti_ack, tp->snd_max)))
822 1.1 cgd goto dropwithreset;
823 1.1 cgd if (tiflags & TH_RST) {
824 1.1 cgd if (tiflags & TH_ACK)
825 1.1 cgd tp = tcp_drop(tp, ECONNREFUSED);
826 1.1 cgd goto drop;
827 1.1 cgd }
828 1.1 cgd if ((tiflags & TH_SYN) == 0)
829 1.1 cgd goto drop;
830 1.1 cgd if (tiflags & TH_ACK) {
831 1.1 cgd tp->snd_una = ti->ti_ack;
832 1.1 cgd if (SEQ_LT(tp->snd_nxt, tp->snd_una))
833 1.1 cgd tp->snd_nxt = tp->snd_una;
834 1.1 cgd }
835 1.58 thorpej TCP_TIMER_DISARM(tp, TCPT_REXMT);
836 1.1 cgd tp->irs = ti->ti_seq;
837 1.1 cgd tcp_rcvseqinit(tp);
838 1.1 cgd tp->t_flags |= TF_ACKNOW;
839 1.32 thorpej tcp_mss_from_peer(tp, opti.maxseg);
840 1.46 thorpej
841 1.46 thorpej /*
842 1.46 thorpej * Initialize the initial congestion window. If we
843 1.46 thorpej * had to retransmit the SYN, we must initialize cwnd
844 1.62 thorpej * to 1 segment (i.e. the Loss Window).
845 1.46 thorpej */
846 1.62 thorpej if (tp->t_flags & TF_SYN_REXMT)
847 1.62 thorpej tp->snd_cwnd = tp->t_peermss;
848 1.62 thorpej else
849 1.62 thorpej tp->snd_cwnd = TCP_INITIAL_WINDOW(tcp_init_win,
850 1.62 thorpej tp->t_peermss);
851 1.46 thorpej
852 1.32 thorpej tcp_rmx_rtt(tp);
853 1.1 cgd if (tiflags & TH_ACK && SEQ_GT(tp->snd_una, tp->iss)) {
854 1.1 cgd tcpstat.tcps_connects++;
855 1.1 cgd soisconnected(so);
856 1.32 thorpej tcp_established(tp);
857 1.9 mycroft /* Do window scaling on this connection? */
858 1.9 mycroft if ((tp->t_flags & (TF_RCVD_SCALE|TF_REQ_SCALE)) ==
859 1.9 mycroft (TF_RCVD_SCALE|TF_REQ_SCALE)) {
860 1.9 mycroft tp->snd_scale = tp->requested_s_scale;
861 1.9 mycroft tp->rcv_scale = tp->request_r_scale;
862 1.9 mycroft }
863 1.72 thorpej TCP_REASS_LOCK(tp);
864 1.1 cgd (void) tcp_reass(tp, (struct tcpiphdr *)0,
865 1.1 cgd (struct mbuf *)0);
866 1.72 thorpej TCP_REASS_UNLOCK(tp);
867 1.1 cgd /*
868 1.1 cgd * if we didn't have to retransmit the SYN,
869 1.1 cgd * use its rtt as our initial srtt & rtt var.
870 1.1 cgd */
871 1.1 cgd if (tp->t_rtt)
872 1.9 mycroft tcp_xmit_timer(tp, tp->t_rtt);
873 1.1 cgd } else
874 1.1 cgd tp->t_state = TCPS_SYN_RECEIVED;
875 1.1 cgd
876 1.1 cgd /*
877 1.1 cgd * Advance ti->ti_seq to correspond to first data byte.
878 1.1 cgd * If data, trim to stay within window,
879 1.1 cgd * dropping FIN if necessary.
880 1.1 cgd */
881 1.1 cgd ti->ti_seq++;
882 1.1 cgd if (ti->ti_len > tp->rcv_wnd) {
883 1.1 cgd todrop = ti->ti_len - tp->rcv_wnd;
884 1.1 cgd m_adj(m, -todrop);
885 1.1 cgd ti->ti_len = tp->rcv_wnd;
886 1.1 cgd tiflags &= ~TH_FIN;
887 1.1 cgd tcpstat.tcps_rcvpackafterwin++;
888 1.1 cgd tcpstat.tcps_rcvbyteafterwin += todrop;
889 1.1 cgd }
890 1.1 cgd tp->snd_wl1 = ti->ti_seq - 1;
891 1.1 cgd tp->rcv_up = ti->ti_seq;
892 1.1 cgd goto step6;
893 1.29 thorpej
894 1.29 thorpej /*
895 1.29 thorpej * If the state is SYN_RECEIVED:
896 1.29 thorpej * If seg contains an ACK, but not for our SYN, drop the input
897 1.29 thorpej * and generate an RST. See page 36, rfc793
898 1.29 thorpej */
899 1.29 thorpej case TCPS_SYN_RECEIVED:
900 1.29 thorpej if ((tiflags & TH_ACK) &&
901 1.29 thorpej (SEQ_LEQ(ti->ti_ack, tp->iss) ||
902 1.29 thorpej SEQ_GT(ti->ti_ack, tp->snd_max)))
903 1.29 thorpej goto dropwithreset;
904 1.29 thorpej break;
905 1.1 cgd }
906 1.1 cgd
907 1.1 cgd /*
908 1.1 cgd * States other than LISTEN or SYN_SENT.
909 1.9 mycroft * First check timestamp, if present.
910 1.9 mycroft * Then check that at least some bytes of segment are within
911 1.1 cgd * receive window. If segment begins before rcv_nxt,
912 1.1 cgd * drop leading data (and SYN); if nothing left, just ack.
913 1.9 mycroft *
914 1.9 mycroft * RFC 1323 PAWS: If we have a timestamp reply on this segment
915 1.9 mycroft * and it's less than ts_recent, drop it.
916 1.1 cgd */
917 1.29 thorpej if (opti.ts_present && (tiflags & TH_RST) == 0 && tp->ts_recent &&
918 1.29 thorpej TSTMP_LT(opti.ts_val, tp->ts_recent)) {
919 1.9 mycroft
920 1.9 mycroft /* Check to see if ts_recent is over 24 days old. */
921 1.9 mycroft if ((int)(tcp_now - tp->ts_recent_age) > TCP_PAWS_IDLE) {
922 1.9 mycroft /*
923 1.9 mycroft * Invalidate ts_recent. If this segment updates
924 1.9 mycroft * ts_recent, the age will be reset later and ts_recent
925 1.9 mycroft * will get a valid value. If it does not, setting
926 1.9 mycroft * ts_recent to zero will at least satisfy the
927 1.9 mycroft * requirement that zero be placed in the timestamp
928 1.9 mycroft * echo reply when ts_recent isn't valid. The
929 1.9 mycroft * age isn't reset until we get a valid ts_recent
930 1.9 mycroft * because we don't want out-of-order segments to be
931 1.9 mycroft * dropped when ts_recent is old.
932 1.9 mycroft */
933 1.9 mycroft tp->ts_recent = 0;
934 1.9 mycroft } else {
935 1.9 mycroft tcpstat.tcps_rcvduppack++;
936 1.9 mycroft tcpstat.tcps_rcvdupbyte += ti->ti_len;
937 1.9 mycroft tcpstat.tcps_pawsdrop++;
938 1.9 mycroft goto dropafterack;
939 1.9 mycroft }
940 1.9 mycroft }
941 1.9 mycroft
942 1.1 cgd todrop = tp->rcv_nxt - ti->ti_seq;
943 1.1 cgd if (todrop > 0) {
944 1.1 cgd if (tiflags & TH_SYN) {
945 1.1 cgd tiflags &= ~TH_SYN;
946 1.1 cgd ti->ti_seq++;
947 1.9 mycroft if (ti->ti_urp > 1)
948 1.1 cgd ti->ti_urp--;
949 1.24 mycroft else {
950 1.1 cgd tiflags &= ~TH_URG;
951 1.24 mycroft ti->ti_urp = 0;
952 1.24 mycroft }
953 1.1 cgd todrop--;
954 1.1 cgd }
955 1.42 mycroft if (todrop > ti->ti_len ||
956 1.42 mycroft (todrop == ti->ti_len && (tiflags & TH_FIN) == 0)) {
957 1.1 cgd /*
958 1.42 mycroft * Any valid FIN must be to the left of the window.
959 1.42 mycroft * At this point the FIN must be a duplicate or
960 1.42 mycroft * out of sequence; drop it.
961 1.7 mycroft */
962 1.7 mycroft tiflags &= ~TH_FIN;
963 1.7 mycroft /*
964 1.42 mycroft * Send an ACK to resynchronize and drop any data.
965 1.42 mycroft * But keep on processing for RST or ACK.
966 1.1 cgd */
967 1.7 mycroft tp->t_flags |= TF_ACKNOW;
968 1.42 mycroft todrop = ti->ti_len;
969 1.42 mycroft tcpstat.tcps_rcvdupbyte += todrop;
970 1.7 mycroft tcpstat.tcps_rcvduppack++;
971 1.1 cgd } else {
972 1.1 cgd tcpstat.tcps_rcvpartduppack++;
973 1.1 cgd tcpstat.tcps_rcvpartdupbyte += todrop;
974 1.1 cgd }
975 1.1 cgd m_adj(m, todrop);
976 1.1 cgd ti->ti_seq += todrop;
977 1.1 cgd ti->ti_len -= todrop;
978 1.1 cgd if (ti->ti_urp > todrop)
979 1.1 cgd ti->ti_urp -= todrop;
980 1.1 cgd else {
981 1.1 cgd tiflags &= ~TH_URG;
982 1.1 cgd ti->ti_urp = 0;
983 1.1 cgd }
984 1.1 cgd }
985 1.1 cgd
986 1.1 cgd /*
987 1.1 cgd * If new data are received on a connection after the
988 1.1 cgd * user processes are gone, then RST the other end.
989 1.1 cgd */
990 1.1 cgd if ((so->so_state & SS_NOFDREF) &&
991 1.1 cgd tp->t_state > TCPS_CLOSE_WAIT && ti->ti_len) {
992 1.1 cgd tp = tcp_close(tp);
993 1.1 cgd tcpstat.tcps_rcvafterclose++;
994 1.1 cgd goto dropwithreset;
995 1.1 cgd }
996 1.1 cgd
997 1.1 cgd /*
998 1.1 cgd * If segment ends after window, drop trailing data
999 1.1 cgd * (and PUSH and FIN); if nothing left, just ACK.
1000 1.1 cgd */
1001 1.1 cgd todrop = (ti->ti_seq+ti->ti_len) - (tp->rcv_nxt+tp->rcv_wnd);
1002 1.1 cgd if (todrop > 0) {
1003 1.1 cgd tcpstat.tcps_rcvpackafterwin++;
1004 1.1 cgd if (todrop >= ti->ti_len) {
1005 1.1 cgd tcpstat.tcps_rcvbyteafterwin += ti->ti_len;
1006 1.1 cgd /*
1007 1.1 cgd * If a new connection request is received
1008 1.1 cgd * while in TIME_WAIT, drop the old connection
1009 1.1 cgd * and start over if the sequence numbers
1010 1.1 cgd * are above the previous ones.
1011 1.1 cgd */
1012 1.1 cgd if (tiflags & TH_SYN &&
1013 1.1 cgd tp->t_state == TCPS_TIME_WAIT &&
1014 1.1 cgd SEQ_GT(ti->ti_seq, tp->rcv_nxt)) {
1015 1.33 explorer iss = tcp_new_iss(tp, sizeof(struct tcpcb),
1016 1.77 matt tp->snd_nxt);
1017 1.1 cgd tp = tcp_close(tp);
1018 1.30 thorpej /*
1019 1.30 thorpej * We have already advanced the mbuf
1020 1.30 thorpej * pointers past the IP+TCP headers and
1021 1.30 thorpej * options. Restore those pointers before
1022 1.30 thorpej * attempting to use the TCP header again.
1023 1.30 thorpej */
1024 1.30 thorpej m->m_data -= hdroptlen;
1025 1.30 thorpej m->m_len += hdroptlen;
1026 1.1 cgd goto findpcb;
1027 1.1 cgd }
1028 1.1 cgd /*
1029 1.1 cgd * If window is closed can only take segments at
1030 1.1 cgd * window edge, and have to drop data and PUSH from
1031 1.1 cgd * incoming segments. Continue processing, but
1032 1.1 cgd * remember to ack. Otherwise, drop segment
1033 1.1 cgd * and ack.
1034 1.1 cgd */
1035 1.1 cgd if (tp->rcv_wnd == 0 && ti->ti_seq == tp->rcv_nxt) {
1036 1.1 cgd tp->t_flags |= TF_ACKNOW;
1037 1.1 cgd tcpstat.tcps_rcvwinprobe++;
1038 1.1 cgd } else
1039 1.1 cgd goto dropafterack;
1040 1.1 cgd } else
1041 1.1 cgd tcpstat.tcps_rcvbyteafterwin += todrop;
1042 1.1 cgd m_adj(m, -todrop);
1043 1.1 cgd ti->ti_len -= todrop;
1044 1.1 cgd tiflags &= ~(TH_PUSH|TH_FIN);
1045 1.1 cgd }
1046 1.1 cgd
1047 1.1 cgd /*
1048 1.9 mycroft * If last ACK falls within this segment's sequence numbers,
1049 1.53 thorpej * and the timestamp is newer, record it.
1050 1.9 mycroft */
1051 1.53 thorpej if (opti.ts_present && TSTMP_GEQ(opti.ts_val, tp->ts_recent) &&
1052 1.53 thorpej SEQ_LEQ(ti->ti_seq, tp->last_ack_sent) &&
1053 1.9 mycroft SEQ_LT(tp->last_ack_sent, ti->ti_seq + ti->ti_len +
1054 1.9 mycroft ((tiflags & (TH_SYN|TH_FIN)) != 0))) {
1055 1.9 mycroft tp->ts_recent_age = tcp_now;
1056 1.29 thorpej tp->ts_recent = opti.ts_val;
1057 1.9 mycroft }
1058 1.9 mycroft
1059 1.9 mycroft /*
1060 1.1 cgd * If the RST bit is set examine the state:
1061 1.1 cgd * SYN_RECEIVED STATE:
1062 1.1 cgd * If passive open, return to LISTEN state.
1063 1.1 cgd * If active open, inform user that connection was refused.
1064 1.1 cgd * ESTABLISHED, FIN_WAIT_1, FIN_WAIT2, CLOSE_WAIT STATES:
1065 1.1 cgd * Inform user that connection was reset, and close tcb.
1066 1.1 cgd * CLOSING, LAST_ACK, TIME_WAIT STATES
1067 1.1 cgd * Close the tcb.
1068 1.1 cgd */
1069 1.1 cgd if (tiflags&TH_RST) switch (tp->t_state) {
1070 1.1 cgd
1071 1.1 cgd case TCPS_SYN_RECEIVED:
1072 1.1 cgd so->so_error = ECONNREFUSED;
1073 1.1 cgd goto close;
1074 1.1 cgd
1075 1.1 cgd case TCPS_ESTABLISHED:
1076 1.1 cgd case TCPS_FIN_WAIT_1:
1077 1.1 cgd case TCPS_FIN_WAIT_2:
1078 1.1 cgd case TCPS_CLOSE_WAIT:
1079 1.1 cgd so->so_error = ECONNRESET;
1080 1.1 cgd close:
1081 1.1 cgd tp->t_state = TCPS_CLOSED;
1082 1.1 cgd tcpstat.tcps_drops++;
1083 1.1 cgd tp = tcp_close(tp);
1084 1.1 cgd goto drop;
1085 1.1 cgd
1086 1.1 cgd case TCPS_CLOSING:
1087 1.1 cgd case TCPS_LAST_ACK:
1088 1.1 cgd case TCPS_TIME_WAIT:
1089 1.1 cgd tp = tcp_close(tp);
1090 1.1 cgd goto drop;
1091 1.1 cgd }
1092 1.1 cgd
1093 1.1 cgd /*
1094 1.1 cgd * If a SYN is in the window, then this is an
1095 1.1 cgd * error and we send an RST and drop the connection.
1096 1.1 cgd */
1097 1.1 cgd if (tiflags & TH_SYN) {
1098 1.1 cgd tp = tcp_drop(tp, ECONNRESET);
1099 1.1 cgd goto dropwithreset;
1100 1.1 cgd }
1101 1.1 cgd
1102 1.1 cgd /*
1103 1.1 cgd * If the ACK bit is off we drop the segment and return.
1104 1.1 cgd */
1105 1.78 kml if ((tiflags & TH_ACK) == 0) {
1106 1.78 kml if (tp->t_flags & TF_ACKNOW)
1107 1.78 kml goto dropafterack;
1108 1.78 kml else
1109 1.78 kml goto drop;
1110 1.78 kml }
1111 1.9 mycroft
1112 1.1 cgd /*
1113 1.1 cgd * Ack processing.
1114 1.1 cgd */
1115 1.1 cgd switch (tp->t_state) {
1116 1.1 cgd
1117 1.1 cgd /*
1118 1.1 cgd * In SYN_RECEIVED state if the ack ACKs our SYN then enter
1119 1.1 cgd * ESTABLISHED state and continue processing, otherwise
1120 1.1 cgd * send an RST.
1121 1.1 cgd */
1122 1.1 cgd case TCPS_SYN_RECEIVED:
1123 1.1 cgd if (SEQ_GT(tp->snd_una, ti->ti_ack) ||
1124 1.1 cgd SEQ_GT(ti->ti_ack, tp->snd_max))
1125 1.1 cgd goto dropwithreset;
1126 1.1 cgd tcpstat.tcps_connects++;
1127 1.1 cgd soisconnected(so);
1128 1.32 thorpej tcp_established(tp);
1129 1.9 mycroft /* Do window scaling? */
1130 1.9 mycroft if ((tp->t_flags & (TF_RCVD_SCALE|TF_REQ_SCALE)) ==
1131 1.9 mycroft (TF_RCVD_SCALE|TF_REQ_SCALE)) {
1132 1.9 mycroft tp->snd_scale = tp->requested_s_scale;
1133 1.9 mycroft tp->rcv_scale = tp->request_r_scale;
1134 1.9 mycroft }
1135 1.72 thorpej TCP_REASS_LOCK(tp);
1136 1.1 cgd (void) tcp_reass(tp, (struct tcpiphdr *)0, (struct mbuf *)0);
1137 1.72 thorpej TCP_REASS_UNLOCK(tp);
1138 1.1 cgd tp->snd_wl1 = ti->ti_seq - 1;
1139 1.1 cgd /* fall into ... */
1140 1.1 cgd
1141 1.1 cgd /*
1142 1.1 cgd * In ESTABLISHED state: drop duplicate ACKs; ACK out of range
1143 1.1 cgd * ACKs. If the ack is in the range
1144 1.1 cgd * tp->snd_una < ti->ti_ack <= tp->snd_max
1145 1.1 cgd * then advance tp->snd_una to ti->ti_ack and drop
1146 1.1 cgd * data from the retransmission queue. If this ACK reflects
1147 1.1 cgd * more up to date window information we update our window information.
1148 1.1 cgd */
1149 1.1 cgd case TCPS_ESTABLISHED:
1150 1.1 cgd case TCPS_FIN_WAIT_1:
1151 1.1 cgd case TCPS_FIN_WAIT_2:
1152 1.1 cgd case TCPS_CLOSE_WAIT:
1153 1.1 cgd case TCPS_CLOSING:
1154 1.1 cgd case TCPS_LAST_ACK:
1155 1.1 cgd case TCPS_TIME_WAIT:
1156 1.1 cgd
1157 1.1 cgd if (SEQ_LEQ(ti->ti_ack, tp->snd_una)) {
1158 1.9 mycroft if (ti->ti_len == 0 && tiwin == tp->snd_wnd) {
1159 1.1 cgd tcpstat.tcps_rcvdupack++;
1160 1.1 cgd /*
1161 1.1 cgd * If we have outstanding data (other than
1162 1.1 cgd * a window probe), this is a completely
1163 1.1 cgd * duplicate ack (ie, window info didn't
1164 1.1 cgd * change), the ack is the biggest we've
1165 1.1 cgd * seen and we've seen exactly our rexmt
1166 1.1 cgd * threshhold of them, assume a packet
1167 1.1 cgd * has been dropped and retransmit it.
1168 1.1 cgd * Kludge snd_nxt & the congestion
1169 1.1 cgd * window so we send only this one
1170 1.1 cgd * packet.
1171 1.1 cgd *
1172 1.1 cgd * We know we're losing at the current
1173 1.1 cgd * window size so do congestion avoidance
1174 1.1 cgd * (set ssthresh to half the current window
1175 1.1 cgd * and pull our congestion window back to
1176 1.1 cgd * the new ssthresh).
1177 1.1 cgd *
1178 1.1 cgd * Dup acks mean that packets have left the
1179 1.9 mycroft * network (they're now cached at the receiver)
1180 1.1 cgd * so bump cwnd by the amount in the receiver
1181 1.1 cgd * to keep a constant cwnd packets in the
1182 1.1 cgd * network.
1183 1.1 cgd */
1184 1.58 thorpej if (TCP_TIMER_ISARMED(tp, TCPT_REXMT) == 0 ||
1185 1.1 cgd ti->ti_ack != tp->snd_una)
1186 1.1 cgd tp->t_dupacks = 0;
1187 1.1 cgd else if (++tp->t_dupacks == tcprexmtthresh) {
1188 1.1 cgd tcp_seq onxt = tp->snd_nxt;
1189 1.1 cgd u_int win =
1190 1.34 kml min(tp->snd_wnd, tp->snd_cwnd) /
1191 1.34 kml 2 / tp->t_segsz;
1192 1.68 matt if (SEQ_LT(ti->ti_ack, tp->snd_recover)) {
1193 1.68 matt /*
1194 1.68 matt * False fast retransmit after
1195 1.68 matt * timeout. Do not cut window.
1196 1.68 matt */
1197 1.68 matt tp->snd_cwnd += tp->t_segsz;
1198 1.68 matt tp->t_dupacks = 0;
1199 1.68 matt (void) tcp_output(tp);
1200 1.68 matt goto drop;
1201 1.68 matt }
1202 1.1 cgd
1203 1.1 cgd if (win < 2)
1204 1.1 cgd win = 2;
1205 1.34 kml tp->snd_ssthresh = win * tp->t_segsz;
1206 1.68 matt tp->snd_recover = tp->snd_max;
1207 1.58 thorpej TCP_TIMER_DISARM(tp, TCPT_REXMT);
1208 1.1 cgd tp->t_rtt = 0;
1209 1.1 cgd tp->snd_nxt = ti->ti_ack;
1210 1.34 kml tp->snd_cwnd = tp->t_segsz;
1211 1.1 cgd (void) tcp_output(tp);
1212 1.1 cgd tp->snd_cwnd = tp->snd_ssthresh +
1213 1.34 kml tp->t_segsz * tp->t_dupacks;
1214 1.1 cgd if (SEQ_GT(onxt, tp->snd_nxt))
1215 1.1 cgd tp->snd_nxt = onxt;
1216 1.1 cgd goto drop;
1217 1.1 cgd } else if (tp->t_dupacks > tcprexmtthresh) {
1218 1.34 kml tp->snd_cwnd += tp->t_segsz;
1219 1.1 cgd (void) tcp_output(tp);
1220 1.1 cgd goto drop;
1221 1.1 cgd }
1222 1.1 cgd } else
1223 1.1 cgd tp->t_dupacks = 0;
1224 1.1 cgd break;
1225 1.1 cgd }
1226 1.1 cgd /*
1227 1.1 cgd * If the congestion window was inflated to account
1228 1.1 cgd * for the other side's cached packets, retract it.
1229 1.1 cgd */
1230 1.70 matt if (!tcp_do_newreno) {
1231 1.69 matt if (tp->t_dupacks >= tcprexmtthresh &&
1232 1.69 matt tp->snd_cwnd > tp->snd_ssthresh)
1233 1.69 matt tp->snd_cwnd = tp->snd_ssthresh;
1234 1.69 matt tp->t_dupacks = 0;
1235 1.69 matt } else if (tp->t_dupacks >= tcprexmtthresh
1236 1.69 matt && !tcp_newreno(tp, ti)) {
1237 1.1 cgd tp->snd_cwnd = tp->snd_ssthresh;
1238 1.68 matt /*
1239 1.68 matt * Window inflation should have left us with approx.
1240 1.68 matt * snd_ssthresh outstanding data. But in case we
1241 1.68 matt * would be inclined to send a burst, better to do
1242 1.68 matt * it via the slow start mechanism.
1243 1.68 matt */
1244 1.68 matt if (SEQ_SUB(tp->snd_max, ti->ti_ack) < tp->snd_ssthresh)
1245 1.68 matt tp->snd_cwnd = SEQ_SUB(tp->snd_max, ti->ti_ack)
1246 1.68 matt + tp->t_segsz;
1247 1.68 matt tp->t_dupacks = 0;
1248 1.68 matt }
1249 1.1 cgd if (SEQ_GT(ti->ti_ack, tp->snd_max)) {
1250 1.1 cgd tcpstat.tcps_rcvacktoomuch++;
1251 1.1 cgd goto dropafterack;
1252 1.1 cgd }
1253 1.1 cgd acked = ti->ti_ack - tp->snd_una;
1254 1.1 cgd tcpstat.tcps_rcvackpack++;
1255 1.1 cgd tcpstat.tcps_rcvackbyte += acked;
1256 1.1 cgd
1257 1.1 cgd /*
1258 1.9 mycroft * If we have a timestamp reply, update smoothed
1259 1.9 mycroft * round trip time. If no timestamp is present but
1260 1.9 mycroft * transmit timer is running and timed sequence
1261 1.1 cgd * number was acked, update smoothed round trip time.
1262 1.1 cgd * Since we now have an rtt measurement, cancel the
1263 1.1 cgd * timer backoff (cf., Phil Karn's retransmit alg.).
1264 1.1 cgd * Recompute the initial retransmit timer.
1265 1.1 cgd */
1266 1.29 thorpej if (opti.ts_present)
1267 1.29 thorpej tcp_xmit_timer(tp, tcp_now - opti.ts_ecr + 1);
1268 1.9 mycroft else if (tp->t_rtt && SEQ_GT(ti->ti_ack, tp->t_rtseq))
1269 1.9 mycroft tcp_xmit_timer(tp,tp->t_rtt);
1270 1.1 cgd
1271 1.1 cgd /*
1272 1.1 cgd * If all outstanding data is acked, stop retransmit
1273 1.1 cgd * timer and remember to restart (more output or persist).
1274 1.1 cgd * If there is more data to be acked, restart retransmit
1275 1.1 cgd * timer, using current (possibly backed-off) value.
1276 1.1 cgd */
1277 1.1 cgd if (ti->ti_ack == tp->snd_max) {
1278 1.58 thorpej TCP_TIMER_DISARM(tp, TCPT_REXMT);
1279 1.1 cgd needoutput = 1;
1280 1.58 thorpej } else if (TCP_TIMER_ISARMED(tp, TCPT_PERSIST) == 0)
1281 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_REXMT, tp->t_rxtcur);
1282 1.1 cgd /*
1283 1.1 cgd * When new data is acked, open the congestion window.
1284 1.1 cgd * If the window gives us less than ssthresh packets
1285 1.34 kml * in flight, open exponentially (segsz per packet).
1286 1.34 kml * Otherwise open linearly: segsz per window
1287 1.34 kml * (segsz^2 / cwnd per packet), plus a constant
1288 1.34 kml * fraction of a packet (segsz/8) to help larger windows
1289 1.1 cgd * open quickly enough.
1290 1.1 cgd */
1291 1.1 cgd {
1292 1.1 cgd register u_int cw = tp->snd_cwnd;
1293 1.34 kml register u_int incr = tp->t_segsz;
1294 1.1 cgd
1295 1.1 cgd if (cw > tp->snd_ssthresh)
1296 1.16 mycroft incr = incr * incr / cw;
1297 1.69 matt if (!tcp_do_newreno || SEQ_GEQ(ti->ti_ack, tp->snd_recover))
1298 1.68 matt tp->snd_cwnd = min(cw + incr,TCP_MAXWIN<<tp->snd_scale);
1299 1.1 cgd }
1300 1.1 cgd if (acked > so->so_snd.sb_cc) {
1301 1.1 cgd tp->snd_wnd -= so->so_snd.sb_cc;
1302 1.1 cgd sbdrop(&so->so_snd, (int)so->so_snd.sb_cc);
1303 1.1 cgd ourfinisacked = 1;
1304 1.1 cgd } else {
1305 1.1 cgd sbdrop(&so->so_snd, acked);
1306 1.1 cgd tp->snd_wnd -= acked;
1307 1.1 cgd ourfinisacked = 0;
1308 1.1 cgd }
1309 1.54 matt sowwakeup(so);
1310 1.1 cgd tp->snd_una = ti->ti_ack;
1311 1.1 cgd if (SEQ_LT(tp->snd_nxt, tp->snd_una))
1312 1.1 cgd tp->snd_nxt = tp->snd_una;
1313 1.1 cgd
1314 1.1 cgd switch (tp->t_state) {
1315 1.1 cgd
1316 1.1 cgd /*
1317 1.1 cgd * In FIN_WAIT_1 STATE in addition to the processing
1318 1.1 cgd * for the ESTABLISHED state if our FIN is now acknowledged
1319 1.1 cgd * then enter FIN_WAIT_2.
1320 1.1 cgd */
1321 1.1 cgd case TCPS_FIN_WAIT_1:
1322 1.1 cgd if (ourfinisacked) {
1323 1.1 cgd /*
1324 1.1 cgd * If we can't receive any more
1325 1.1 cgd * data, then closing user can proceed.
1326 1.1 cgd * Starting the timer is contrary to the
1327 1.1 cgd * specification, but if we don't get a FIN
1328 1.1 cgd * we'll hang forever.
1329 1.1 cgd */
1330 1.1 cgd if (so->so_state & SS_CANTRCVMORE) {
1331 1.1 cgd soisdisconnected(so);
1332 1.65 mouse if (tcp_maxidle > 0)
1333 1.65 mouse TCP_TIMER_ARM(tp, TCPT_2MSL,
1334 1.65 mouse tcp_maxidle);
1335 1.1 cgd }
1336 1.1 cgd tp->t_state = TCPS_FIN_WAIT_2;
1337 1.1 cgd }
1338 1.1 cgd break;
1339 1.1 cgd
1340 1.1 cgd /*
1341 1.1 cgd * In CLOSING STATE in addition to the processing for
1342 1.1 cgd * the ESTABLISHED state if the ACK acknowledges our FIN
1343 1.1 cgd * then enter the TIME-WAIT state, otherwise ignore
1344 1.1 cgd * the segment.
1345 1.1 cgd */
1346 1.1 cgd case TCPS_CLOSING:
1347 1.1 cgd if (ourfinisacked) {
1348 1.1 cgd tp->t_state = TCPS_TIME_WAIT;
1349 1.1 cgd tcp_canceltimers(tp);
1350 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_2MSL, 2 * TCPTV_MSL);
1351 1.1 cgd soisdisconnected(so);
1352 1.1 cgd }
1353 1.1 cgd break;
1354 1.1 cgd
1355 1.1 cgd /*
1356 1.1 cgd * In LAST_ACK, we may still be waiting for data to drain
1357 1.1 cgd * and/or to be acked, as well as for the ack of our FIN.
1358 1.1 cgd * If our FIN is now acknowledged, delete the TCB,
1359 1.1 cgd * enter the closed state and return.
1360 1.1 cgd */
1361 1.1 cgd case TCPS_LAST_ACK:
1362 1.1 cgd if (ourfinisacked) {
1363 1.1 cgd tp = tcp_close(tp);
1364 1.1 cgd goto drop;
1365 1.1 cgd }
1366 1.1 cgd break;
1367 1.1 cgd
1368 1.1 cgd /*
1369 1.1 cgd * In TIME_WAIT state the only thing that should arrive
1370 1.1 cgd * is a retransmission of the remote FIN. Acknowledge
1371 1.1 cgd * it and restart the finack timer.
1372 1.1 cgd */
1373 1.1 cgd case TCPS_TIME_WAIT:
1374 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_2MSL, 2 * TCPTV_MSL);
1375 1.1 cgd goto dropafterack;
1376 1.1 cgd }
1377 1.1 cgd }
1378 1.1 cgd
1379 1.1 cgd step6:
1380 1.1 cgd /*
1381 1.1 cgd * Update window information.
1382 1.1 cgd * Don't look at window if no ACK: TAC's send garbage on first SYN.
1383 1.1 cgd */
1384 1.76 explorer if ((tiflags & TH_ACK) && (SEQ_LT(tp->snd_wl1, ti->ti_seq) ||
1385 1.23 christos (tp->snd_wl1 == ti->ti_seq && SEQ_LT(tp->snd_wl2, ti->ti_ack)) ||
1386 1.76 explorer (tp->snd_wl2 == ti->ti_ack && tiwin > tp->snd_wnd))) {
1387 1.1 cgd /* keep track of pure window updates */
1388 1.1 cgd if (ti->ti_len == 0 &&
1389 1.9 mycroft tp->snd_wl2 == ti->ti_ack && tiwin > tp->snd_wnd)
1390 1.1 cgd tcpstat.tcps_rcvwinupd++;
1391 1.9 mycroft tp->snd_wnd = tiwin;
1392 1.1 cgd tp->snd_wl1 = ti->ti_seq;
1393 1.1 cgd tp->snd_wl2 = ti->ti_ack;
1394 1.1 cgd if (tp->snd_wnd > tp->max_sndwnd)
1395 1.1 cgd tp->max_sndwnd = tp->snd_wnd;
1396 1.1 cgd needoutput = 1;
1397 1.1 cgd }
1398 1.1 cgd
1399 1.1 cgd /*
1400 1.1 cgd * Process segments with URG.
1401 1.1 cgd */
1402 1.1 cgd if ((tiflags & TH_URG) && ti->ti_urp &&
1403 1.1 cgd TCPS_HAVERCVDFIN(tp->t_state) == 0) {
1404 1.1 cgd /*
1405 1.1 cgd * This is a kludge, but if we receive and accept
1406 1.1 cgd * random urgent pointers, we'll crash in
1407 1.1 cgd * soreceive. It's hard to imagine someone
1408 1.1 cgd * actually wanting to send this much urgent data.
1409 1.1 cgd */
1410 1.9 mycroft if (ti->ti_urp + so->so_rcv.sb_cc > sb_max) {
1411 1.1 cgd ti->ti_urp = 0; /* XXX */
1412 1.1 cgd tiflags &= ~TH_URG; /* XXX */
1413 1.1 cgd goto dodata; /* XXX */
1414 1.1 cgd }
1415 1.1 cgd /*
1416 1.1 cgd * If this segment advances the known urgent pointer,
1417 1.1 cgd * then mark the data stream. This should not happen
1418 1.1 cgd * in CLOSE_WAIT, CLOSING, LAST_ACK or TIME_WAIT STATES since
1419 1.9 mycroft * a FIN has been received from the remote side.
1420 1.1 cgd * In these states we ignore the URG.
1421 1.1 cgd *
1422 1.1 cgd * According to RFC961 (Assigned Protocols),
1423 1.1 cgd * the urgent pointer points to the last octet
1424 1.1 cgd * of urgent data. We continue, however,
1425 1.1 cgd * to consider it to indicate the first octet
1426 1.9 mycroft * of data past the urgent section as the original
1427 1.1 cgd * spec states (in one of two places).
1428 1.1 cgd */
1429 1.1 cgd if (SEQ_GT(ti->ti_seq+ti->ti_urp, tp->rcv_up)) {
1430 1.1 cgd tp->rcv_up = ti->ti_seq + ti->ti_urp;
1431 1.1 cgd so->so_oobmark = so->so_rcv.sb_cc +
1432 1.1 cgd (tp->rcv_up - tp->rcv_nxt) - 1;
1433 1.1 cgd if (so->so_oobmark == 0)
1434 1.1 cgd so->so_state |= SS_RCVATMARK;
1435 1.1 cgd sohasoutofband(so);
1436 1.1 cgd tp->t_oobflags &= ~(TCPOOB_HAVEDATA | TCPOOB_HADDATA);
1437 1.1 cgd }
1438 1.1 cgd /*
1439 1.1 cgd * Remove out of band data so doesn't get presented to user.
1440 1.1 cgd * This can happen independent of advancing the URG pointer,
1441 1.1 cgd * but if two URG's are pending at once, some out-of-band
1442 1.1 cgd * data may creep in... ick.
1443 1.1 cgd */
1444 1.23 christos if (ti->ti_urp <= (u_int16_t) ti->ti_len
1445 1.1 cgd #ifdef SO_OOBINLINE
1446 1.1 cgd && (so->so_options & SO_OOBINLINE) == 0
1447 1.1 cgd #endif
1448 1.1 cgd )
1449 1.1 cgd tcp_pulloutofband(so, ti, m);
1450 1.1 cgd } else
1451 1.1 cgd /*
1452 1.1 cgd * If no out of band data is expected,
1453 1.1 cgd * pull receive urgent pointer along
1454 1.1 cgd * with the receive window.
1455 1.1 cgd */
1456 1.1 cgd if (SEQ_GT(tp->rcv_nxt, tp->rcv_up))
1457 1.1 cgd tp->rcv_up = tp->rcv_nxt;
1458 1.1 cgd dodata: /* XXX */
1459 1.1 cgd
1460 1.1 cgd /*
1461 1.1 cgd * Process the segment text, merging it into the TCP sequencing queue,
1462 1.1 cgd * and arranging for acknowledgment of receipt if necessary.
1463 1.1 cgd * This process logically involves adjusting tp->rcv_wnd as data
1464 1.1 cgd * is presented to the user (this happens in tcp_usrreq.c,
1465 1.1 cgd * case PRU_RCVD). If a FIN has already been received on this
1466 1.1 cgd * connection then we just ignore the text.
1467 1.1 cgd */
1468 1.22 mycroft if ((ti->ti_len || (tiflags & TH_FIN)) &&
1469 1.1 cgd TCPS_HAVERCVDFIN(tp->t_state) == 0) {
1470 1.1 cgd TCP_REASS(tp, ti, m, so, tiflags);
1471 1.1 cgd /*
1472 1.1 cgd * Note the amount of data that peer has sent into
1473 1.1 cgd * our window, in order to estimate the sender's
1474 1.1 cgd * buffer size.
1475 1.1 cgd */
1476 1.1 cgd len = so->so_rcv.sb_hiwat - (tp->rcv_adv - tp->rcv_nxt);
1477 1.1 cgd } else {
1478 1.1 cgd m_freem(m);
1479 1.1 cgd tiflags &= ~TH_FIN;
1480 1.1 cgd }
1481 1.1 cgd
1482 1.1 cgd /*
1483 1.1 cgd * If FIN is received ACK the FIN and let the user know
1484 1.22 mycroft * that the connection is closing. Ignore a FIN received before
1485 1.22 mycroft * the connection is fully established.
1486 1.1 cgd */
1487 1.22 mycroft if ((tiflags & TH_FIN) && TCPS_HAVEESTABLISHED(tp->t_state)) {
1488 1.1 cgd if (TCPS_HAVERCVDFIN(tp->t_state) == 0) {
1489 1.1 cgd socantrcvmore(so);
1490 1.1 cgd tp->t_flags |= TF_ACKNOW;
1491 1.1 cgd tp->rcv_nxt++;
1492 1.1 cgd }
1493 1.1 cgd switch (tp->t_state) {
1494 1.1 cgd
1495 1.1 cgd /*
1496 1.22 mycroft * In ESTABLISHED STATE enter the CLOSE_WAIT state.
1497 1.1 cgd */
1498 1.1 cgd case TCPS_ESTABLISHED:
1499 1.1 cgd tp->t_state = TCPS_CLOSE_WAIT;
1500 1.1 cgd break;
1501 1.1 cgd
1502 1.1 cgd /*
1503 1.1 cgd * If still in FIN_WAIT_1 STATE FIN has not been acked so
1504 1.1 cgd * enter the CLOSING state.
1505 1.1 cgd */
1506 1.1 cgd case TCPS_FIN_WAIT_1:
1507 1.1 cgd tp->t_state = TCPS_CLOSING;
1508 1.1 cgd break;
1509 1.1 cgd
1510 1.1 cgd /*
1511 1.1 cgd * In FIN_WAIT_2 state enter the TIME_WAIT state,
1512 1.9 mycroft * starting the time-wait timer, turning off the other
1513 1.1 cgd * standard timers.
1514 1.1 cgd */
1515 1.1 cgd case TCPS_FIN_WAIT_2:
1516 1.1 cgd tp->t_state = TCPS_TIME_WAIT;
1517 1.1 cgd tcp_canceltimers(tp);
1518 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_2MSL, 2 * TCPTV_MSL);
1519 1.1 cgd soisdisconnected(so);
1520 1.1 cgd break;
1521 1.1 cgd
1522 1.1 cgd /*
1523 1.1 cgd * In TIME_WAIT state restart the 2 MSL time_wait timer.
1524 1.1 cgd */
1525 1.1 cgd case TCPS_TIME_WAIT:
1526 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_2MSL, 2 * TCPTV_MSL);
1527 1.1 cgd break;
1528 1.1 cgd }
1529 1.1 cgd }
1530 1.1 cgd if (so->so_options & SO_DEBUG)
1531 1.1 cgd tcp_trace(TA_INPUT, ostate, tp, &tcp_saveti, 0);
1532 1.1 cgd
1533 1.1 cgd /*
1534 1.1 cgd * Return any desired output.
1535 1.1 cgd */
1536 1.1 cgd if (needoutput || (tp->t_flags & TF_ACKNOW))
1537 1.1 cgd (void) tcp_output(tp);
1538 1.1 cgd return;
1539 1.35 thorpej
1540 1.35 thorpej badsyn:
1541 1.35 thorpej /*
1542 1.35 thorpej * Received a bad SYN. Increment counters and dropwithreset.
1543 1.35 thorpej */
1544 1.35 thorpej tcpstat.tcps_badsyn++;
1545 1.35 thorpej tp = NULL;
1546 1.35 thorpej goto dropwithreset;
1547 1.1 cgd
1548 1.1 cgd dropafterack:
1549 1.1 cgd /*
1550 1.1 cgd * Generate an ACK dropping incoming segment if it occupies
1551 1.1 cgd * sequence space, where the ACK reflects our state.
1552 1.1 cgd */
1553 1.1 cgd if (tiflags & TH_RST)
1554 1.1 cgd goto drop;
1555 1.1 cgd m_freem(m);
1556 1.1 cgd tp->t_flags |= TF_ACKNOW;
1557 1.1 cgd (void) tcp_output(tp);
1558 1.1 cgd return;
1559 1.1 cgd
1560 1.1 cgd dropwithreset:
1561 1.1 cgd /*
1562 1.1 cgd * Generate a RST, dropping incoming segment.
1563 1.1 cgd * Make ACK acceptable to originator of segment.
1564 1.9 mycroft * Don't bother to respond if destination was broadcast/multicast.
1565 1.1 cgd */
1566 1.9 mycroft if ((tiflags & TH_RST) || m->m_flags & (M_BCAST|M_MCAST) ||
1567 1.13 mycroft IN_MULTICAST(ti->ti_dst.s_addr))
1568 1.1 cgd goto drop;
1569 1.1 cgd if (tiflags & TH_ACK)
1570 1.29 thorpej (void)tcp_respond(tp, ti, m, (tcp_seq)0, ti->ti_ack, TH_RST);
1571 1.1 cgd else {
1572 1.1 cgd if (tiflags & TH_SYN)
1573 1.1 cgd ti->ti_len++;
1574 1.29 thorpej (void)tcp_respond(tp, ti, m, ti->ti_seq+ti->ti_len, (tcp_seq)0,
1575 1.1 cgd TH_RST|TH_ACK);
1576 1.1 cgd }
1577 1.1 cgd return;
1578 1.1 cgd
1579 1.1 cgd drop:
1580 1.1 cgd /*
1581 1.1 cgd * Drop space held by incoming segment and return.
1582 1.1 cgd */
1583 1.1 cgd if (tp && (tp->t_inpcb->inp_socket->so_options & SO_DEBUG))
1584 1.1 cgd tcp_trace(TA_DROP, ostate, tp, &tcp_saveti, 0);
1585 1.1 cgd m_freem(m);
1586 1.1 cgd return;
1587 1.1 cgd }
1588 1.1 cgd
1589 1.5 mycroft void
1590 1.29 thorpej tcp_dooptions(tp, cp, cnt, ti, oi)
1591 1.1 cgd struct tcpcb *tp;
1592 1.9 mycroft u_char *cp;
1593 1.9 mycroft int cnt;
1594 1.1 cgd struct tcpiphdr *ti;
1595 1.29 thorpej struct tcp_opt_info *oi;
1596 1.1 cgd {
1597 1.12 cgd u_int16_t mss;
1598 1.9 mycroft int opt, optlen;
1599 1.1 cgd
1600 1.1 cgd for (; cnt > 0; cnt -= optlen, cp += optlen) {
1601 1.1 cgd opt = cp[0];
1602 1.1 cgd if (opt == TCPOPT_EOL)
1603 1.1 cgd break;
1604 1.1 cgd if (opt == TCPOPT_NOP)
1605 1.1 cgd optlen = 1;
1606 1.1 cgd else {
1607 1.1 cgd optlen = cp[1];
1608 1.1 cgd if (optlen <= 0)
1609 1.1 cgd break;
1610 1.1 cgd }
1611 1.1 cgd switch (opt) {
1612 1.1 cgd
1613 1.1 cgd default:
1614 1.1 cgd continue;
1615 1.1 cgd
1616 1.1 cgd case TCPOPT_MAXSEG:
1617 1.9 mycroft if (optlen != TCPOLEN_MAXSEG)
1618 1.1 cgd continue;
1619 1.1 cgd if (!(ti->ti_flags & TH_SYN))
1620 1.1 cgd continue;
1621 1.29 thorpej bcopy(cp + 2, &mss, sizeof(mss));
1622 1.29 thorpej oi->maxseg = ntohs(mss);
1623 1.1 cgd break;
1624 1.9 mycroft
1625 1.9 mycroft case TCPOPT_WINDOW:
1626 1.9 mycroft if (optlen != TCPOLEN_WINDOW)
1627 1.9 mycroft continue;
1628 1.9 mycroft if (!(ti->ti_flags & TH_SYN))
1629 1.9 mycroft continue;
1630 1.9 mycroft tp->t_flags |= TF_RCVD_SCALE;
1631 1.52 thorpej tp->requested_s_scale = cp[2];
1632 1.52 thorpej if (tp->requested_s_scale > TCP_MAX_WINSHIFT) {
1633 1.52 thorpej log(LOG_ERR, "TCP: invalid wscale %d from "
1634 1.52 thorpej "0x%08x, assuming %d\n",
1635 1.52 thorpej tp->requested_s_scale,
1636 1.52 thorpej ntohl(ti->ti_src.s_addr),
1637 1.52 thorpej TCP_MAX_WINSHIFT);
1638 1.52 thorpej tp->requested_s_scale = TCP_MAX_WINSHIFT;
1639 1.52 thorpej }
1640 1.9 mycroft break;
1641 1.9 mycroft
1642 1.9 mycroft case TCPOPT_TIMESTAMP:
1643 1.9 mycroft if (optlen != TCPOLEN_TIMESTAMP)
1644 1.9 mycroft continue;
1645 1.32 thorpej oi->ts_present = 1;
1646 1.29 thorpej bcopy(cp + 2, &oi->ts_val, sizeof(oi->ts_val));
1647 1.29 thorpej NTOHL(oi->ts_val);
1648 1.29 thorpej bcopy(cp + 6, &oi->ts_ecr, sizeof(oi->ts_ecr));
1649 1.29 thorpej NTOHL(oi->ts_ecr);
1650 1.9 mycroft
1651 1.9 mycroft /*
1652 1.9 mycroft * A timestamp received in a SYN makes
1653 1.9 mycroft * it ok to send timestamp requests and replies.
1654 1.9 mycroft */
1655 1.9 mycroft if (ti->ti_flags & TH_SYN) {
1656 1.9 mycroft tp->t_flags |= TF_RCVD_TSTMP;
1657 1.29 thorpej tp->ts_recent = oi->ts_val;
1658 1.9 mycroft tp->ts_recent_age = tcp_now;
1659 1.54 matt }
1660 1.54 matt break;
1661 1.54 matt case TCPOPT_SACK_PERMITTED:
1662 1.54 matt if (optlen != TCPOLEN_SACK_PERMITTED)
1663 1.54 matt continue;
1664 1.54 matt if (!(ti->ti_flags & TH_SYN))
1665 1.54 matt continue;
1666 1.54 matt tp->t_flags &= ~TF_CANT_TXSACK;
1667 1.54 matt break;
1668 1.54 matt
1669 1.54 matt case TCPOPT_SACK:
1670 1.54 matt if (tp->t_flags & TF_IGNR_RXSACK)
1671 1.54 matt continue;
1672 1.54 matt if (optlen % 8 != 2 || optlen < 10)
1673 1.54 matt continue;
1674 1.54 matt cp += 2;
1675 1.54 matt optlen -= 2;
1676 1.54 matt for (; optlen > 0; cp -= 8, optlen -= 8) {
1677 1.54 matt tcp_seq lwe, rwe;
1678 1.54 matt bcopy((char *)cp, (char *) &lwe, sizeof(lwe));
1679 1.54 matt NTOHL(lwe);
1680 1.54 matt bcopy((char *)cp, (char *) &rwe, sizeof(rwe));
1681 1.54 matt NTOHL(rwe);
1682 1.54 matt /* tcp_mark_sacked(tp, lwe, rwe); */
1683 1.9 mycroft }
1684 1.9 mycroft break;
1685 1.1 cgd }
1686 1.1 cgd }
1687 1.1 cgd }
1688 1.1 cgd
1689 1.1 cgd /*
1690 1.1 cgd * Pull out of band byte out of a segment so
1691 1.1 cgd * it doesn't appear in the user's data queue.
1692 1.1 cgd * It is still reflected in the segment length for
1693 1.1 cgd * sequencing purposes.
1694 1.1 cgd */
1695 1.5 mycroft void
1696 1.1 cgd tcp_pulloutofband(so, ti, m)
1697 1.1 cgd struct socket *so;
1698 1.1 cgd struct tcpiphdr *ti;
1699 1.1 cgd register struct mbuf *m;
1700 1.1 cgd {
1701 1.1 cgd int cnt = ti->ti_urp - 1;
1702 1.9 mycroft
1703 1.1 cgd while (cnt >= 0) {
1704 1.1 cgd if (m->m_len > cnt) {
1705 1.1 cgd char *cp = mtod(m, caddr_t) + cnt;
1706 1.1 cgd struct tcpcb *tp = sototcpcb(so);
1707 1.1 cgd
1708 1.1 cgd tp->t_iobc = *cp;
1709 1.1 cgd tp->t_oobflags |= TCPOOB_HAVEDATA;
1710 1.1 cgd bcopy(cp+1, cp, (unsigned)(m->m_len - cnt - 1));
1711 1.1 cgd m->m_len--;
1712 1.1 cgd return;
1713 1.1 cgd }
1714 1.1 cgd cnt -= m->m_len;
1715 1.1 cgd m = m->m_next;
1716 1.1 cgd if (m == 0)
1717 1.1 cgd break;
1718 1.1 cgd }
1719 1.1 cgd panic("tcp_pulloutofband");
1720 1.1 cgd }
1721 1.1 cgd
1722 1.1 cgd /*
1723 1.1 cgd * Collect new round-trip time estimate
1724 1.1 cgd * and update averages and current timeout.
1725 1.1 cgd */
1726 1.5 mycroft void
1727 1.9 mycroft tcp_xmit_timer(tp, rtt)
1728 1.1 cgd register struct tcpcb *tp;
1729 1.9 mycroft short rtt;
1730 1.1 cgd {
1731 1.1 cgd register short delta;
1732 1.45 kml short rttmin;
1733 1.1 cgd
1734 1.1 cgd tcpstat.tcps_rttupdated++;
1735 1.17 mycroft --rtt;
1736 1.1 cgd if (tp->t_srtt != 0) {
1737 1.1 cgd /*
1738 1.1 cgd * srtt is stored as fixed point with 3 bits after the
1739 1.1 cgd * binary point (i.e., scaled by 8). The following magic
1740 1.1 cgd * is equivalent to the smoothing algorithm in rfc793 with
1741 1.1 cgd * an alpha of .875 (srtt = rtt/8 + srtt*7/8 in fixed
1742 1.9 mycroft * point). Adjust rtt to origin 0.
1743 1.1 cgd */
1744 1.16 mycroft delta = (rtt << 2) - (tp->t_srtt >> TCP_RTT_SHIFT);
1745 1.1 cgd if ((tp->t_srtt += delta) <= 0)
1746 1.27 mycroft tp->t_srtt = 1 << 2;
1747 1.1 cgd /*
1748 1.1 cgd * We accumulate a smoothed rtt variance (actually, a
1749 1.1 cgd * smoothed mean difference), then set the retransmit
1750 1.1 cgd * timer to smoothed rtt + 4 times the smoothed variance.
1751 1.1 cgd * rttvar is stored as fixed point with 2 bits after the
1752 1.1 cgd * binary point (scaled by 4). The following is
1753 1.1 cgd * equivalent to rfc793 smoothing with an alpha of .75
1754 1.1 cgd * (rttvar = rttvar*3/4 + |delta| / 4). This replaces
1755 1.1 cgd * rfc793's wired-in beta.
1756 1.1 cgd */
1757 1.1 cgd if (delta < 0)
1758 1.1 cgd delta = -delta;
1759 1.1 cgd delta -= (tp->t_rttvar >> TCP_RTTVAR_SHIFT);
1760 1.1 cgd if ((tp->t_rttvar += delta) <= 0)
1761 1.27 mycroft tp->t_rttvar = 1 << 2;
1762 1.1 cgd } else {
1763 1.9 mycroft /*
1764 1.1 cgd * No rtt measurement yet - use the unsmoothed rtt.
1765 1.1 cgd * Set the variance to half the rtt (so our first
1766 1.9 mycroft * retransmit happens at 3*rtt).
1767 1.1 cgd */
1768 1.16 mycroft tp->t_srtt = rtt << (TCP_RTT_SHIFT + 2);
1769 1.16 mycroft tp->t_rttvar = rtt << (TCP_RTTVAR_SHIFT + 2 - 1);
1770 1.1 cgd }
1771 1.1 cgd tp->t_rtt = 0;
1772 1.1 cgd tp->t_rxtshift = 0;
1773 1.1 cgd
1774 1.1 cgd /*
1775 1.1 cgd * the retransmit should happen at rtt + 4 * rttvar.
1776 1.1 cgd * Because of the way we do the smoothing, srtt and rttvar
1777 1.1 cgd * will each average +1/2 tick of bias. When we compute
1778 1.1 cgd * the retransmit timer, we want 1/2 tick of rounding and
1779 1.1 cgd * 1 extra tick because of +-1/2 tick uncertainty in the
1780 1.1 cgd * firing of the timer. The bias will give us exactly the
1781 1.1 cgd * 1.5 tick we need. But, because the bias is
1782 1.1 cgd * statistical, we have to test that we don't drop below
1783 1.1 cgd * the minimum feasible timer (which is 2 ticks).
1784 1.1 cgd */
1785 1.45 kml if (tp->t_rttmin > rtt + 2)
1786 1.45 kml rttmin = tp->t_rttmin;
1787 1.45 kml else
1788 1.45 kml rttmin = rtt + 2;
1789 1.45 kml TCPT_RANGESET(tp->t_rxtcur, TCP_REXMTVAL(tp), rttmin, TCPTV_REXMTMAX);
1790 1.9 mycroft
1791 1.1 cgd /*
1792 1.1 cgd * We received an ack for a packet that wasn't retransmitted;
1793 1.1 cgd * it is probably safe to discard any error indications we've
1794 1.1 cgd * received recently. This isn't quite right, but close enough
1795 1.1 cgd * for now (a route might have failed after we sent a segment,
1796 1.1 cgd * and the return path might not be symmetrical).
1797 1.1 cgd */
1798 1.1 cgd tp->t_softerror = 0;
1799 1.1 cgd }
1800 1.68 matt
1801 1.68 matt /*
1802 1.68 matt * Checks for partial ack. If partial ack arrives, force the retransmission
1803 1.68 matt * of the next unacknowledged segment, do not clear tp->t_dupacks, and return
1804 1.68 matt * 1. By setting snd_nxt to ti_ack, this forces retransmission timer to
1805 1.68 matt * be started again. If the ack advances at least to tp->snd_recover, return 0.
1806 1.68 matt */
1807 1.68 matt int
1808 1.68 matt tcp_newreno(tp, ti)
1809 1.68 matt struct tcpcb *tp;
1810 1.68 matt struct tcpiphdr *ti;
1811 1.68 matt {
1812 1.68 matt if (SEQ_LT(ti->ti_ack, tp->snd_recover)) {
1813 1.68 matt tcp_seq onxt = tp->snd_nxt;
1814 1.68 matt tcp_seq ouna = tp->snd_una; /* Haven't updated snd_una yet*/
1815 1.68 matt u_long ocwnd = tp->snd_cwnd;
1816 1.68 matt TCP_TIMER_DISARM(tp, TCPT_REXMT);
1817 1.68 matt tp->t_rtt = 0;
1818 1.68 matt tp->snd_nxt = ti->ti_ack;
1819 1.68 matt tp->snd_cwnd = tp->t_segsz;
1820 1.68 matt tp->snd_una = ti->ti_ack;
1821 1.68 matt (void) tcp_output(tp);
1822 1.68 matt tp->snd_cwnd = ocwnd;
1823 1.68 matt tp->snd_una = ouna;
1824 1.68 matt if (SEQ_GT(onxt, tp->snd_nxt))
1825 1.68 matt tp->snd_nxt = onxt;
1826 1.68 matt /*
1827 1.68 matt * Partial window deflation. Relies on fact that tp->snd_una
1828 1.68 matt * not updated yet.
1829 1.68 matt */
1830 1.68 matt tp->snd_cwnd -= (ti->ti_ack - tp->snd_una - tp->t_segsz);
1831 1.68 matt return 1;
1832 1.68 matt }
1833 1.68 matt return 0;
1834 1.68 matt }
1835 1.68 matt
1836 1.1 cgd
1837 1.1 cgd /*
1838 1.29 thorpej * TCP compressed state engine. Currently used to hold compressed
1839 1.29 thorpej * state for SYN_RECEIVED.
1840 1.29 thorpej */
1841 1.29 thorpej
1842 1.29 thorpej u_long syn_cache_count;
1843 1.29 thorpej u_int32_t syn_hash1, syn_hash2;
1844 1.29 thorpej
1845 1.29 thorpej #define SYN_HASH(sa, sp, dp) \
1846 1.29 thorpej ((((sa)->s_addr^syn_hash1)*(((((u_int32_t)(dp))<<16) + \
1847 1.49 thorpej ((u_int32_t)(sp)))^syn_hash2)))
1848 1.29 thorpej
1849 1.80 thorpej #define SYN_CACHE_RM(sc) \
1850 1.59 thorpej do { \
1851 1.80 thorpej LIST_REMOVE((sc), sc_bucketq); \
1852 1.80 thorpej tcp_syn_cache[(sc)->sc_bucketidx].sch_length--; \
1853 1.80 thorpej TAILQ_REMOVE(&tcp_syn_cache_timeq[(sc)->sc_rxtshift], (sc), sc_timeq); \
1854 1.29 thorpej syn_cache_count--; \
1855 1.59 thorpej } while (0)
1856 1.59 thorpej
1857 1.75 thorpej #define SYN_CACHE_PUT(sc) \
1858 1.75 thorpej do { \
1859 1.75 thorpej if ((sc)->sc_ipopts) \
1860 1.75 thorpej (void) m_free((sc)->sc_ipopts); \
1861 1.75 thorpej if ((sc)->sc_route.ro_rt != NULL) \
1862 1.75 thorpej RTFREE((sc)->sc_route.ro_rt); \
1863 1.75 thorpej pool_put(&syn_cache_pool, (sc)); \
1864 1.75 thorpej } while (0)
1865 1.75 thorpej
1866 1.63 thorpej struct pool syn_cache_pool;
1867 1.63 thorpej
1868 1.80 thorpej /*
1869 1.80 thorpej * We don't estimate RTT with SYNs, so each packet starts with the default
1870 1.80 thorpej * RTT and each timer queue has a fixed timeout value. This allows us to
1871 1.80 thorpej * optimize the timer queues somewhat.
1872 1.80 thorpej */
1873 1.80 thorpej #define SYN_CACHE_TIMER_ARM(sc) \
1874 1.80 thorpej do { \
1875 1.80 thorpej TCPT_RANGESET((sc)->sc_rxtcur, \
1876 1.80 thorpej TCPTV_SRTTDFLT * tcp_backoff[(sc)->sc_rxtshift], TCPTV_MIN, \
1877 1.80 thorpej TCPTV_REXMTMAX); \
1878 1.80 thorpej PRT_SLOW_ARM((sc)->sc_rexmt, (sc)->sc_rxtcur); \
1879 1.80 thorpej } while (0)
1880 1.80 thorpej
1881 1.80 thorpej TAILQ_HEAD(, syn_cache) tcp_syn_cache_timeq[TCP_MAXRXTSHIFT + 1];
1882 1.80 thorpej
1883 1.59 thorpej void
1884 1.59 thorpej syn_cache_init()
1885 1.59 thorpej {
1886 1.59 thorpej int i;
1887 1.59 thorpej
1888 1.80 thorpej /* Initialize the hash buckets. */
1889 1.59 thorpej for (i = 0; i < tcp_syn_cache_size; i++)
1890 1.80 thorpej LIST_INIT(&tcp_syn_cache[i].sch_bucket);
1891 1.59 thorpej
1892 1.80 thorpej /* Initialize the timer queues. */
1893 1.80 thorpej for (i = 0; i <= TCP_MAXRXTSHIFT; i++)
1894 1.80 thorpej TAILQ_INIT(&tcp_syn_cache_timeq[i]);
1895 1.63 thorpej
1896 1.63 thorpej /* Initialize the syn cache pool. */
1897 1.63 thorpej pool_init(&syn_cache_pool, sizeof(struct syn_cache), 0, 0, 0,
1898 1.63 thorpej "synpl", 0, NULL, NULL, M_PCB);
1899 1.29 thorpej }
1900 1.29 thorpej
1901 1.29 thorpej void
1902 1.59 thorpej syn_cache_insert(sc)
1903 1.29 thorpej struct syn_cache *sc;
1904 1.29 thorpej {
1905 1.80 thorpej struct syn_cache_head *scp;
1906 1.29 thorpej struct syn_cache *sc2;
1907 1.80 thorpej int s, i;
1908 1.29 thorpej
1909 1.59 thorpej /*
1910 1.59 thorpej * If there are no entries in the hash table, reinitialize
1911 1.59 thorpej * the hash secrets.
1912 1.59 thorpej */
1913 1.29 thorpej if (syn_cache_count == 0) {
1914 1.29 thorpej struct timeval tv;
1915 1.29 thorpej microtime(&tv);
1916 1.29 thorpej syn_hash1 = random() ^ (u_long)≻
1917 1.29 thorpej syn_hash2 = random() ^ tv.tv_usec;
1918 1.29 thorpej }
1919 1.29 thorpej
1920 1.29 thorpej sc->sc_hash = SYN_HASH(&sc->sc_src, sc->sc_sport, sc->sc_dport);
1921 1.80 thorpej sc->sc_bucketidx = sc->sc_hash % tcp_syn_cache_size;
1922 1.80 thorpej scp = &tcp_syn_cache[sc->sc_bucketidx];
1923 1.29 thorpej
1924 1.29 thorpej /*
1925 1.29 thorpej * Make sure that we don't overflow the per-bucket
1926 1.29 thorpej * limit or the total cache size limit.
1927 1.29 thorpej */
1928 1.29 thorpej s = splsoftnet();
1929 1.29 thorpej if (scp->sch_length >= tcp_syn_bucket_limit) {
1930 1.29 thorpej tcpstat.tcps_sc_bucketoverflow++;
1931 1.59 thorpej /*
1932 1.80 thorpej * The bucket is full. Toss the oldest element in the
1933 1.80 thorpej * bucket. This will be the entry with our bucket
1934 1.80 thorpej * index closest to the front of the timer queue with
1935 1.80 thorpej * the largest timeout value.
1936 1.80 thorpej *
1937 1.80 thorpej * Note: This timer queue traversal may be expensive, so
1938 1.80 thorpej * we hope that this doesn't happen very often. It is
1939 1.80 thorpej * much more likely that we'll overflow the entire
1940 1.80 thorpej * cache, which is much easier to handle; see below.
1941 1.80 thorpej */
1942 1.80 thorpej for (i = TCP_MAXRXTSHIFT; i >= 0; i--) {
1943 1.80 thorpej for (sc2 = TAILQ_FIRST(&tcp_syn_cache_timeq[i]);
1944 1.80 thorpej sc2 != NULL;
1945 1.80 thorpej sc2 = TAILQ_NEXT(sc2, sc_timeq)) {
1946 1.80 thorpej if (sc2->sc_bucketidx == sc->sc_bucketidx) {
1947 1.80 thorpej SYN_CACHE_RM(sc2);
1948 1.80 thorpej SYN_CACHE_PUT(sc2);
1949 1.80 thorpej goto insert; /* 2 level break */
1950 1.80 thorpej }
1951 1.80 thorpej }
1952 1.80 thorpej }
1953 1.80 thorpej #ifdef DIAGNOSTIC
1954 1.80 thorpej /*
1955 1.80 thorpej * This should never happen; we should always find an
1956 1.80 thorpej * entry in our bucket.
1957 1.59 thorpej */
1958 1.80 thorpej panic("syn_cache_insert: bucketoverflow: impossible");
1959 1.80 thorpej #endif
1960 1.29 thorpej } else if (syn_cache_count >= tcp_syn_cache_limit) {
1961 1.29 thorpej tcpstat.tcps_sc_overflowed++;
1962 1.29 thorpej /*
1963 1.80 thorpej * The cache is full. Toss the oldest entry in the
1964 1.80 thorpej * entire cache. This is the front entry in the
1965 1.80 thorpej * first non-empty timer queue with the largest
1966 1.80 thorpej * timeout value.
1967 1.80 thorpej */
1968 1.80 thorpej for (i = TCP_MAXRXTSHIFT; i >= 0; i--) {
1969 1.80 thorpej sc2 = TAILQ_FIRST(&tcp_syn_cache_timeq[i]);
1970 1.80 thorpej if (sc2 == NULL)
1971 1.80 thorpej continue;
1972 1.80 thorpej SYN_CACHE_RM(sc2);
1973 1.80 thorpej SYN_CACHE_PUT(sc2);
1974 1.80 thorpej goto insert; /* symmetry with above */
1975 1.80 thorpej }
1976 1.80 thorpej #ifdef DIAGNOSTIC
1977 1.80 thorpej /*
1978 1.80 thorpej * This should never happen; we should always find an
1979 1.80 thorpej * entry in the cache.
1980 1.29 thorpej */
1981 1.80 thorpej panic("syn_cache_insert: cache overflow: impossible");
1982 1.80 thorpej #endif
1983 1.29 thorpej }
1984 1.29 thorpej
1985 1.80 thorpej insert:
1986 1.80 thorpej /*
1987 1.80 thorpej * Initialize the entry's timer.
1988 1.80 thorpej */
1989 1.80 thorpej sc->sc_rxttot = 0;
1990 1.80 thorpej sc->sc_rxtshift = 0;
1991 1.80 thorpej SYN_CACHE_TIMER_ARM(sc);
1992 1.80 thorpej TAILQ_INSERT_TAIL(&tcp_syn_cache_timeq[sc->sc_rxtshift], sc, sc_timeq);
1993 1.59 thorpej
1994 1.59 thorpej /* Put it into the bucket. */
1995 1.80 thorpej LIST_INSERT_HEAD(&scp->sch_bucket, sc, sc_bucketq);
1996 1.80 thorpej scp->sch_length++;
1997 1.59 thorpej syn_cache_count++;
1998 1.29 thorpej
1999 1.59 thorpej tcpstat.tcps_sc_added++;
2000 1.29 thorpej splx(s);
2001 1.29 thorpej }
2002 1.29 thorpej
2003 1.29 thorpej /*
2004 1.80 thorpej * Walk the timer queues, looking for SYN,ACKs that need to be retransmitted.
2005 1.80 thorpej * If we have retransmitted an entry the maximum number of times, expire
2006 1.80 thorpej * that entry.
2007 1.29 thorpej */
2008 1.29 thorpej void
2009 1.59 thorpej syn_cache_timer()
2010 1.29 thorpej {
2011 1.59 thorpej struct syn_cache *sc, *nsc;
2012 1.80 thorpej int i, s;
2013 1.29 thorpej
2014 1.29 thorpej s = splsoftnet();
2015 1.80 thorpej
2016 1.80 thorpej /*
2017 1.80 thorpej * First, get all the entries that need to be retransmitted, or
2018 1.80 thorpej * must be expired due to exceeding the initial keepalive time.
2019 1.80 thorpej */
2020 1.80 thorpej for (i = 0; i < TCP_MAXRXTSHIFT; i++) {
2021 1.80 thorpej for (sc = TAILQ_FIRST(&tcp_syn_cache_timeq[i]);
2022 1.80 thorpej sc != NULL && PRT_SLOW_ISEXPIRED(sc->sc_rexmt);
2023 1.59 thorpej sc = nsc) {
2024 1.80 thorpej nsc = TAILQ_NEXT(sc, sc_timeq);
2025 1.80 thorpej
2026 1.80 thorpej /*
2027 1.80 thorpej * Compute the total amount of time this entry has
2028 1.80 thorpej * been on a queue. If this entry has been on longer
2029 1.80 thorpej * than the keep alive timer would allow, expire it.
2030 1.80 thorpej */
2031 1.80 thorpej sc->sc_rxttot += sc->sc_rxtcur;
2032 1.80 thorpej if (sc->sc_rxttot >= TCPTV_KEEP_INIT) {
2033 1.80 thorpej tcpstat.tcps_sc_timed_out++;
2034 1.80 thorpej SYN_CACHE_RM(sc);
2035 1.80 thorpej SYN_CACHE_PUT(sc);
2036 1.80 thorpej continue;
2037 1.80 thorpej }
2038 1.80 thorpej
2039 1.80 thorpej tcpstat.tcps_sc_retransmitted++;
2040 1.80 thorpej (void) syn_cache_respond(sc, NULL);
2041 1.80 thorpej
2042 1.80 thorpej /* Advance this entry onto the next timer queue. */
2043 1.80 thorpej TAILQ_REMOVE(&tcp_syn_cache_timeq[i], sc, sc_timeq);
2044 1.80 thorpej sc->sc_rxtshift = i + 1;
2045 1.80 thorpej SYN_CACHE_TIMER_ARM(sc);
2046 1.80 thorpej TAILQ_INSERT_TAIL(&tcp_syn_cache_timeq[sc->sc_rxtshift],
2047 1.80 thorpej sc, sc_timeq);
2048 1.29 thorpej }
2049 1.29 thorpej }
2050 1.80 thorpej
2051 1.80 thorpej /*
2052 1.80 thorpej * Now get all the entries that are expired due to too many
2053 1.80 thorpej * retransmissions.
2054 1.80 thorpej */
2055 1.80 thorpej for (sc = TAILQ_FIRST(&tcp_syn_cache_timeq[TCP_MAXRXTSHIFT]);
2056 1.80 thorpej sc != NULL && PRT_SLOW_ISEXPIRED(sc->sc_rexmt);
2057 1.80 thorpej sc = nsc) {
2058 1.80 thorpej tcpstat.tcps_sc_timed_out++;
2059 1.80 thorpej SYN_CACHE_RM(sc);
2060 1.80 thorpej SYN_CACHE_PUT(sc);
2061 1.80 thorpej }
2062 1.29 thorpej splx(s);
2063 1.29 thorpej }
2064 1.29 thorpej
2065 1.29 thorpej /*
2066 1.29 thorpej * Find an entry in the syn cache.
2067 1.29 thorpej */
2068 1.29 thorpej struct syn_cache *
2069 1.59 thorpej syn_cache_lookup(ti, headp)
2070 1.29 thorpej struct tcpiphdr *ti;
2071 1.29 thorpej struct syn_cache_head **headp;
2072 1.29 thorpej {
2073 1.59 thorpej struct syn_cache *sc;
2074 1.59 thorpej struct syn_cache_head *scp;
2075 1.29 thorpej u_int32_t hash;
2076 1.29 thorpej int s;
2077 1.29 thorpej
2078 1.29 thorpej hash = SYN_HASH(&ti->ti_src, ti->ti_sport, ti->ti_dport);
2079 1.29 thorpej
2080 1.59 thorpej scp = &tcp_syn_cache[hash % tcp_syn_cache_size];
2081 1.59 thorpej *headp = scp;
2082 1.29 thorpej s = splsoftnet();
2083 1.80 thorpej for (sc = LIST_FIRST(&scp->sch_bucket); sc != NULL;
2084 1.80 thorpej sc = LIST_NEXT(sc, sc_bucketq)) {
2085 1.29 thorpej if (sc->sc_hash != hash)
2086 1.29 thorpej continue;
2087 1.29 thorpej if (sc->sc_src.s_addr == ti->ti_src.s_addr &&
2088 1.29 thorpej sc->sc_sport == ti->ti_sport &&
2089 1.29 thorpej sc->sc_dport == ti->ti_dport &&
2090 1.29 thorpej sc->sc_dst.s_addr == ti->ti_dst.s_addr) {
2091 1.29 thorpej splx(s);
2092 1.29 thorpej return (sc);
2093 1.29 thorpej }
2094 1.29 thorpej }
2095 1.29 thorpej splx(s);
2096 1.29 thorpej return (NULL);
2097 1.29 thorpej }
2098 1.29 thorpej
2099 1.29 thorpej /*
2100 1.29 thorpej * This function gets called when we receive an ACK for a
2101 1.29 thorpej * socket in the LISTEN state. We look up the connection
2102 1.29 thorpej * in the syn cache, and if its there, we pull it out of
2103 1.29 thorpej * the cache and turn it into a full-blown connection in
2104 1.29 thorpej * the SYN-RECEIVED state.
2105 1.29 thorpej *
2106 1.29 thorpej * The return values may not be immediately obvious, and their effects
2107 1.29 thorpej * can be subtle, so here they are:
2108 1.29 thorpej *
2109 1.29 thorpej * NULL SYN was not found in cache; caller should drop the
2110 1.29 thorpej * packet and send an RST.
2111 1.29 thorpej *
2112 1.29 thorpej * -1 We were unable to create the new connection, and are
2113 1.29 thorpej * aborting it. An ACK,RST is being sent to the peer
2114 1.29 thorpej * (unless we got screwey sequence numbners; see below),
2115 1.29 thorpej * because the 3-way handshake has been completed. Caller
2116 1.29 thorpej * should not free the mbuf, since we may be using it. If
2117 1.29 thorpej * we are not, we will free it.
2118 1.29 thorpej *
2119 1.29 thorpej * Otherwise, the return value is a pointer to the new socket
2120 1.29 thorpej * associated with the connection.
2121 1.29 thorpej */
2122 1.29 thorpej struct socket *
2123 1.29 thorpej syn_cache_get(so, m)
2124 1.29 thorpej struct socket *so;
2125 1.29 thorpej struct mbuf *m;
2126 1.29 thorpej {
2127 1.59 thorpej struct syn_cache *sc;
2128 1.59 thorpej struct syn_cache_head *scp;
2129 1.29 thorpej register struct inpcb *inp;
2130 1.29 thorpej register struct tcpcb *tp = 0;
2131 1.29 thorpej register struct tcpiphdr *ti;
2132 1.29 thorpej struct sockaddr_in *sin;
2133 1.29 thorpej struct mbuf *am;
2134 1.29 thorpej int s;
2135 1.29 thorpej
2136 1.29 thorpej ti = mtod(m, struct tcpiphdr *);
2137 1.29 thorpej s = splsoftnet();
2138 1.59 thorpej if ((sc = syn_cache_lookup(ti, &scp)) == NULL) {
2139 1.29 thorpej splx(s);
2140 1.29 thorpej return (NULL);
2141 1.29 thorpej }
2142 1.29 thorpej
2143 1.29 thorpej /*
2144 1.75 thorpej * Verify the sequence and ack numbers. Try getting the correct
2145 1.75 thorpej * response again.
2146 1.29 thorpej */
2147 1.29 thorpej if ((ti->ti_ack != sc->sc_iss + 1) ||
2148 1.29 thorpej SEQ_LEQ(ti->ti_seq, sc->sc_irs) ||
2149 1.80 thorpej SEQ_GT(ti->ti_seq, sc->sc_irs + 1 + sc->sc_win)) {
2150 1.80 thorpej (void) syn_cache_respond(sc, m);
2151 1.29 thorpej splx(s);
2152 1.29 thorpej return ((struct socket *)(-1));
2153 1.29 thorpej }
2154 1.29 thorpej
2155 1.29 thorpej /* Remove this cache entry */
2156 1.80 thorpej SYN_CACHE_RM(sc);
2157 1.29 thorpej splx(s);
2158 1.29 thorpej
2159 1.29 thorpej /*
2160 1.29 thorpej * Ok, create the full blown connection, and set things up
2161 1.29 thorpej * as they would have been set up if we had created the
2162 1.29 thorpej * connection when the SYN arrived. If we can't create
2163 1.29 thorpej * the connection, abort it.
2164 1.29 thorpej */
2165 1.29 thorpej so = sonewconn(so, SS_ISCONNECTED);
2166 1.29 thorpej if (so == NULL)
2167 1.29 thorpej goto resetandabort;
2168 1.29 thorpej
2169 1.29 thorpej inp = sotoinpcb(so);
2170 1.29 thorpej inp->inp_laddr = sc->sc_dst;
2171 1.29 thorpej inp->inp_lport = sc->sc_dport;
2172 1.29 thorpej in_pcbstate(inp, INP_BOUND);
2173 1.29 thorpej inp->inp_options = ip_srcroute();
2174 1.50 thorpej if (inp->inp_options == NULL) {
2175 1.50 thorpej inp->inp_options = sc->sc_ipopts;
2176 1.50 thorpej sc->sc_ipopts = NULL;
2177 1.50 thorpej }
2178 1.29 thorpej
2179 1.75 thorpej /*
2180 1.75 thorpej * Give the new socket our cached route reference.
2181 1.75 thorpej */
2182 1.75 thorpej inp->inp_route = sc->sc_route; /* struct assignment */
2183 1.75 thorpej sc->sc_route.ro_rt = NULL;
2184 1.75 thorpej
2185 1.29 thorpej am = m_get(M_DONTWAIT, MT_SONAME); /* XXX */
2186 1.40 mellon if (am == NULL)
2187 1.29 thorpej goto resetandabort;
2188 1.29 thorpej am->m_len = sizeof(struct sockaddr_in);
2189 1.29 thorpej sin = mtod(am, struct sockaddr_in *);
2190 1.29 thorpej sin->sin_family = AF_INET;
2191 1.29 thorpej sin->sin_len = sizeof(*sin);
2192 1.29 thorpej sin->sin_addr = sc->sc_src;
2193 1.29 thorpej sin->sin_port = sc->sc_sport;
2194 1.29 thorpej bzero((caddr_t)sin->sin_zero, sizeof(sin->sin_zero));
2195 1.29 thorpej if (in_pcbconnect(inp, am)) {
2196 1.29 thorpej (void) m_free(am);
2197 1.29 thorpej goto resetandabort;
2198 1.29 thorpej }
2199 1.29 thorpej (void) m_free(am);
2200 1.29 thorpej
2201 1.29 thorpej tp = intotcpcb(inp);
2202 1.29 thorpej if (sc->sc_request_r_scale != 15) {
2203 1.29 thorpej tp->requested_s_scale = sc->sc_requested_s_scale;
2204 1.29 thorpej tp->request_r_scale = sc->sc_request_r_scale;
2205 1.29 thorpej tp->snd_scale = sc->sc_requested_s_scale;
2206 1.29 thorpej tp->rcv_scale = sc->sc_request_r_scale;
2207 1.29 thorpej tp->t_flags |= TF_RCVD_SCALE;
2208 1.29 thorpej }
2209 1.49 thorpej if (sc->sc_flags & SCF_TIMESTAMP)
2210 1.29 thorpej tp->t_flags |= TF_RCVD_TSTMP;
2211 1.29 thorpej
2212 1.29 thorpej tp->t_template = tcp_template(tp);
2213 1.29 thorpej if (tp->t_template == 0) {
2214 1.29 thorpej tp = tcp_drop(tp, ENOBUFS); /* destroys socket */
2215 1.29 thorpej so = NULL;
2216 1.29 thorpej m_freem(m);
2217 1.29 thorpej goto abort;
2218 1.29 thorpej }
2219 1.29 thorpej
2220 1.29 thorpej tp->iss = sc->sc_iss;
2221 1.29 thorpej tp->irs = sc->sc_irs;
2222 1.29 thorpej tcp_sendseqinit(tp);
2223 1.29 thorpej tcp_rcvseqinit(tp);
2224 1.29 thorpej tp->t_state = TCPS_SYN_RECEIVED;
2225 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_KEEP, TCPTV_KEEP_INIT);
2226 1.29 thorpej tcpstat.tcps_accepts++;
2227 1.29 thorpej
2228 1.32 thorpej /* Initialize tp->t_ourmss before we deal with the peer's! */
2229 1.32 thorpej tp->t_ourmss = sc->sc_ourmaxseg;
2230 1.32 thorpej tcp_mss_from_peer(tp, sc->sc_peermaxseg);
2231 1.46 thorpej
2232 1.46 thorpej /*
2233 1.46 thorpej * Initialize the initial congestion window. If we
2234 1.46 thorpej * had to retransmit the SYN,ACK, we must initialize cwnd
2235 1.62 thorpej * to 1 segment (i.e. the Loss Window).
2236 1.46 thorpej */
2237 1.80 thorpej if (sc->sc_rxtshift)
2238 1.62 thorpej tp->snd_cwnd = tp->t_peermss;
2239 1.62 thorpej else
2240 1.62 thorpej tp->snd_cwnd = TCP_INITIAL_WINDOW(tcp_init_win, tp->t_peermss);
2241 1.46 thorpej
2242 1.32 thorpej tcp_rmx_rtt(tp);
2243 1.29 thorpej tp->snd_wl1 = sc->sc_irs;
2244 1.29 thorpej tp->rcv_up = sc->sc_irs + 1;
2245 1.29 thorpej
2246 1.29 thorpej /*
2247 1.29 thorpej * This is what whould have happened in tcp_ouput() when
2248 1.29 thorpej * the SYN,ACK was sent.
2249 1.29 thorpej */
2250 1.29 thorpej tp->snd_up = tp->snd_una;
2251 1.29 thorpej tp->snd_max = tp->snd_nxt = tp->iss+1;
2252 1.58 thorpej TCP_TIMER_ARM(tp, TCPT_REXMT, tp->t_rxtcur);
2253 1.80 thorpej if (sc->sc_win > 0 && SEQ_GT(tp->rcv_nxt + sc->sc_win, tp->rcv_adv))
2254 1.80 thorpej tp->rcv_adv = tp->rcv_nxt + sc->sc_win;
2255 1.29 thorpej tp->last_ack_sent = tp->rcv_nxt;
2256 1.29 thorpej
2257 1.29 thorpej tcpstat.tcps_sc_completed++;
2258 1.75 thorpej SYN_CACHE_PUT(sc);
2259 1.29 thorpej return (so);
2260 1.29 thorpej
2261 1.29 thorpej resetandabort:
2262 1.29 thorpej (void) tcp_respond(NULL, ti, m, ti->ti_seq+ti->ti_len,
2263 1.29 thorpej (tcp_seq)0, TH_RST|TH_ACK);
2264 1.29 thorpej abort:
2265 1.29 thorpej if (so != NULL)
2266 1.29 thorpej (void) soabort(so);
2267 1.75 thorpej SYN_CACHE_PUT(sc);
2268 1.29 thorpej tcpstat.tcps_sc_aborted++;
2269 1.29 thorpej return ((struct socket *)(-1));
2270 1.29 thorpej }
2271 1.29 thorpej
2272 1.29 thorpej /*
2273 1.29 thorpej * This function is called when we get a RST for a
2274 1.29 thorpej * non-existant connection, so that we can see if the
2275 1.29 thorpej * connection is in the syn cache. If it is, zap it.
2276 1.29 thorpej */
2277 1.29 thorpej
2278 1.29 thorpej void
2279 1.29 thorpej syn_cache_reset(ti)
2280 1.29 thorpej register struct tcpiphdr *ti;
2281 1.29 thorpej {
2282 1.59 thorpej struct syn_cache *sc;
2283 1.59 thorpej struct syn_cache_head *scp;
2284 1.29 thorpej int s = splsoftnet();
2285 1.29 thorpej
2286 1.59 thorpej if ((sc = syn_cache_lookup(ti, &scp)) == NULL) {
2287 1.29 thorpej splx(s);
2288 1.29 thorpej return;
2289 1.29 thorpej }
2290 1.29 thorpej if (SEQ_LT(ti->ti_seq,sc->sc_irs) ||
2291 1.29 thorpej SEQ_GT(ti->ti_seq, sc->sc_irs+1)) {
2292 1.29 thorpej splx(s);
2293 1.29 thorpej return;
2294 1.29 thorpej }
2295 1.80 thorpej SYN_CACHE_RM(sc);
2296 1.29 thorpej splx(s);
2297 1.29 thorpej tcpstat.tcps_sc_reset++;
2298 1.75 thorpej SYN_CACHE_PUT(sc);
2299 1.29 thorpej }
2300 1.29 thorpej
2301 1.29 thorpej void
2302 1.29 thorpej syn_cache_unreach(ip, th)
2303 1.29 thorpej struct ip *ip;
2304 1.29 thorpej struct tcphdr *th;
2305 1.29 thorpej {
2306 1.59 thorpej struct syn_cache *sc;
2307 1.59 thorpej struct syn_cache_head *scp;
2308 1.29 thorpej struct tcpiphdr ti2;
2309 1.29 thorpej int s;
2310 1.29 thorpej
2311 1.29 thorpej ti2.ti_src.s_addr = ip->ip_dst.s_addr;
2312 1.29 thorpej ti2.ti_dst.s_addr = ip->ip_src.s_addr;
2313 1.29 thorpej ti2.ti_sport = th->th_dport;
2314 1.29 thorpej ti2.ti_dport = th->th_sport;
2315 1.29 thorpej
2316 1.29 thorpej s = splsoftnet();
2317 1.59 thorpej if ((sc = syn_cache_lookup(&ti2, &scp)) == NULL) {
2318 1.29 thorpej splx(s);
2319 1.29 thorpej return;
2320 1.29 thorpej }
2321 1.29 thorpej /* If the sequence number != sc_iss, then it's a bogus ICMP msg */
2322 1.29 thorpej if (ntohl (th->th_seq) != sc->sc_iss) {
2323 1.29 thorpej splx(s);
2324 1.29 thorpej return;
2325 1.29 thorpej }
2326 1.64 thorpej
2327 1.64 thorpej /*
2328 1.64 thorpej * If we've rertransmitted 3 times and this is our second error,
2329 1.64 thorpej * we remove the entry. Otherwise, we allow it to continue on.
2330 1.64 thorpej * This prevents us from incorrectly nuking an entry during a
2331 1.64 thorpej * spurious network outage.
2332 1.64 thorpej *
2333 1.64 thorpej * See tcp_notify().
2334 1.64 thorpej */
2335 1.80 thorpej if ((sc->sc_flags & SCF_UNREACH) == 0 || sc->sc_rxtshift < 3) {
2336 1.64 thorpej sc->sc_flags |= SCF_UNREACH;
2337 1.64 thorpej splx(s);
2338 1.64 thorpej return;
2339 1.64 thorpej }
2340 1.64 thorpej
2341 1.80 thorpej SYN_CACHE_RM(sc);
2342 1.29 thorpej splx(s);
2343 1.29 thorpej tcpstat.tcps_sc_unreach++;
2344 1.75 thorpej SYN_CACHE_PUT(sc);
2345 1.29 thorpej }
2346 1.29 thorpej
2347 1.29 thorpej /*
2348 1.29 thorpej * Given a LISTEN socket and an inbound SYN request, add
2349 1.29 thorpej * this to the syn cache, and send back a segment:
2350 1.29 thorpej * <SEQ=ISS><ACK=RCV_NXT><CTL=SYN,ACK>
2351 1.29 thorpej * to the source.
2352 1.32 thorpej *
2353 1.61 thorpej * IMPORTANT NOTE: We do _NOT_ ACK data that might accompany the SYN.
2354 1.61 thorpej * Doing so would require that we hold onto the data and deliver it
2355 1.61 thorpej * to the application. However, if we are the target of a SYN-flood
2356 1.61 thorpej * DoS attack, an attacker could send data which would eventually
2357 1.61 thorpej * consume all available buffer space if it were ACKed. By not ACKing
2358 1.61 thorpej * the data, we avoid this DoS scenario.
2359 1.29 thorpej */
2360 1.29 thorpej
2361 1.29 thorpej int
2362 1.29 thorpej syn_cache_add(so, m, optp, optlen, oi)
2363 1.29 thorpej struct socket *so;
2364 1.29 thorpej struct mbuf *m;
2365 1.29 thorpej u_char *optp;
2366 1.29 thorpej int optlen;
2367 1.29 thorpej struct tcp_opt_info *oi;
2368 1.29 thorpej {
2369 1.29 thorpej register struct tcpiphdr *ti;
2370 1.32 thorpej struct tcpcb tb, *tp;
2371 1.29 thorpej long win;
2372 1.59 thorpej struct syn_cache *sc;
2373 1.29 thorpej struct syn_cache_head *scp;
2374 1.50 thorpej struct mbuf *ipopts;
2375 1.29 thorpej
2376 1.32 thorpej tp = sototcpcb(so);
2377 1.29 thorpej ti = mtod(m, struct tcpiphdr *);
2378 1.29 thorpej
2379 1.29 thorpej /*
2380 1.29 thorpej * RFC1122 4.2.3.10, p. 104: discard bcast/mcast SYN
2381 1.29 thorpej * in_broadcast() should never return true on a received
2382 1.29 thorpej * packet with M_BCAST not set.
2383 1.29 thorpej */
2384 1.29 thorpej if (m->m_flags & (M_BCAST|M_MCAST) ||
2385 1.29 thorpej IN_MULTICAST(ti->ti_src.s_addr) ||
2386 1.29 thorpej IN_MULTICAST(ti->ti_dst.s_addr))
2387 1.29 thorpej return (0);
2388 1.29 thorpej
2389 1.29 thorpej /*
2390 1.29 thorpej * Initialize some local state.
2391 1.29 thorpej */
2392 1.29 thorpej win = sbspace(&so->so_rcv);
2393 1.29 thorpej if (win > TCP_MAXWIN)
2394 1.29 thorpej win = TCP_MAXWIN;
2395 1.29 thorpej
2396 1.50 thorpej /*
2397 1.50 thorpej * Remember the IP options, if any.
2398 1.50 thorpej */
2399 1.50 thorpej ipopts = ip_srcroute();
2400 1.50 thorpej
2401 1.29 thorpej if (optp) {
2402 1.29 thorpej tb.t_flags = tcp_do_rfc1323 ? (TF_REQ_SCALE|TF_REQ_TSTMP) : 0;
2403 1.29 thorpej tcp_dooptions(&tb, optp, optlen, ti, oi);
2404 1.29 thorpej } else
2405 1.29 thorpej tb.t_flags = 0;
2406 1.29 thorpej
2407 1.29 thorpej /*
2408 1.29 thorpej * See if we already have an entry for this connection.
2409 1.80 thorpej * If we do, resend the SYN,ACK. We do not count this
2410 1.80 thorpej * as a retransmission (XXX though maybe we should).
2411 1.29 thorpej */
2412 1.59 thorpej if ((sc = syn_cache_lookup(ti, &scp)) != NULL) {
2413 1.29 thorpej tcpstat.tcps_sc_dupesyn++;
2414 1.50 thorpej if (ipopts) {
2415 1.50 thorpej /*
2416 1.50 thorpej * If we were remembering a previous source route,
2417 1.50 thorpej * forget it and use the new one we've been given.
2418 1.50 thorpej */
2419 1.50 thorpej if (sc->sc_ipopts)
2420 1.50 thorpej (void) m_free(sc->sc_ipopts);
2421 1.50 thorpej sc->sc_ipopts = ipopts;
2422 1.50 thorpej }
2423 1.80 thorpej sc->sc_timestamp = tb.ts_recent;
2424 1.80 thorpej if (syn_cache_respond(sc, m) == 0) {
2425 1.29 thorpej tcpstat.tcps_sndacks++;
2426 1.29 thorpej tcpstat.tcps_sndtotal++;
2427 1.29 thorpej }
2428 1.29 thorpej return (1);
2429 1.29 thorpej }
2430 1.29 thorpej
2431 1.63 thorpej sc = pool_get(&syn_cache_pool, PR_NOWAIT);
2432 1.50 thorpej if (sc == NULL) {
2433 1.50 thorpej if (ipopts)
2434 1.50 thorpej (void) m_free(ipopts);
2435 1.29 thorpej return (0);
2436 1.50 thorpej }
2437 1.50 thorpej
2438 1.29 thorpej /*
2439 1.50 thorpej * Fill in the cache, and put the necessary IP and TCP
2440 1.29 thorpej * options into the reply.
2441 1.29 thorpej */
2442 1.75 thorpej memset(&sc->sc_route, 0, sizeof(sc->sc_route));
2443 1.29 thorpej sc->sc_src.s_addr = ti->ti_src.s_addr;
2444 1.29 thorpej sc->sc_dst.s_addr = ti->ti_dst.s_addr;
2445 1.29 thorpej sc->sc_sport = ti->ti_sport;
2446 1.29 thorpej sc->sc_dport = ti->ti_dport;
2447 1.46 thorpej sc->sc_flags = 0;
2448 1.50 thorpej sc->sc_ipopts = ipopts;
2449 1.29 thorpej sc->sc_irs = ti->ti_seq;
2450 1.33 explorer sc->sc_iss = tcp_new_iss(sc, sizeof(struct syn_cache), 0);
2451 1.29 thorpej sc->sc_peermaxseg = oi->maxseg;
2452 1.51 kml sc->sc_ourmaxseg = tcp_mss_to_advertise(m->m_flags & M_PKTHDR ?
2453 1.51 kml m->m_pkthdr.rcvif : NULL);
2454 1.80 thorpej sc->sc_win = win;
2455 1.80 thorpej sc->sc_timestamp = tb.ts_recent;
2456 1.49 thorpej if (tcp_do_rfc1323 && (tb.t_flags & TF_RCVD_TSTMP))
2457 1.49 thorpej sc->sc_flags |= SCF_TIMESTAMP;
2458 1.29 thorpej if ((tb.t_flags & (TF_RCVD_SCALE|TF_REQ_SCALE)) ==
2459 1.29 thorpej (TF_RCVD_SCALE|TF_REQ_SCALE)) {
2460 1.29 thorpej sc->sc_requested_s_scale = tb.requested_s_scale;
2461 1.29 thorpej sc->sc_request_r_scale = 0;
2462 1.29 thorpej while (sc->sc_request_r_scale < TCP_MAX_WINSHIFT &&
2463 1.29 thorpej TCP_MAXWIN << sc->sc_request_r_scale <
2464 1.29 thorpej so->so_rcv.sb_hiwat)
2465 1.29 thorpej sc->sc_request_r_scale++;
2466 1.29 thorpej } else {
2467 1.29 thorpej sc->sc_requested_s_scale = 15;
2468 1.29 thorpej sc->sc_request_r_scale = 15;
2469 1.29 thorpej }
2470 1.80 thorpej if (syn_cache_respond(sc, m) == 0) {
2471 1.59 thorpej syn_cache_insert(sc);
2472 1.29 thorpej tcpstat.tcps_sndacks++;
2473 1.29 thorpej tcpstat.tcps_sndtotal++;
2474 1.29 thorpej } else {
2475 1.75 thorpej SYN_CACHE_PUT(sc);
2476 1.29 thorpej tcpstat.tcps_sc_dropped++;
2477 1.29 thorpej }
2478 1.29 thorpej return (1);
2479 1.29 thorpej }
2480 1.29 thorpej
2481 1.29 thorpej int
2482 1.80 thorpej syn_cache_respond(sc, m)
2483 1.29 thorpej struct syn_cache *sc;
2484 1.29 thorpej struct mbuf *m;
2485 1.29 thorpej {
2486 1.75 thorpej struct route *ro = &sc->sc_route;
2487 1.75 thorpej struct rtentry *rt;
2488 1.75 thorpej struct sockaddr_in *dst;
2489 1.75 thorpej struct tcpiphdr *ti;
2490 1.29 thorpej u_int8_t *optp;
2491 1.75 thorpej int optlen, error;
2492 1.75 thorpej u_int16_t tlen;
2493 1.75 thorpej
2494 1.75 thorpej /* Compute the size of the TCP options. */
2495 1.75 thorpej optlen = 4 + (sc->sc_request_r_scale != 15 ? 4 : 0) +
2496 1.75 thorpej ((sc->sc_flags & SCF_TIMESTAMP) ? TCPOLEN_TSTAMP_APPA : 0);
2497 1.75 thorpej
2498 1.75 thorpej tlen = sizeof(struct tcpiphdr) + optlen;
2499 1.29 thorpej
2500 1.29 thorpej /*
2501 1.75 thorpej * Create the IP+TCP header from scratch. Reuse the received mbuf
2502 1.75 thorpej * if possible.
2503 1.29 thorpej */
2504 1.75 thorpej if (m != NULL) {
2505 1.75 thorpej m_freem(m->m_next);
2506 1.75 thorpej m->m_next = NULL;
2507 1.75 thorpej MRESETDATA(m);
2508 1.75 thorpej } else {
2509 1.75 thorpej MGETHDR(m, M_DONTWAIT, MT_DATA);
2510 1.75 thorpej if (m == NULL)
2511 1.75 thorpej return (ENOBUFS);
2512 1.29 thorpej }
2513 1.29 thorpej
2514 1.75 thorpej /* Fixup the mbuf. */
2515 1.75 thorpej m->m_data += max_linkhdr;
2516 1.75 thorpej m->m_len = m->m_pkthdr.len = tlen;
2517 1.75 thorpej m->m_pkthdr.rcvif = NULL;
2518 1.75 thorpej
2519 1.75 thorpej ti = mtod(m, struct tcpiphdr *);
2520 1.75 thorpej memset(ti, 0, tlen);
2521 1.75 thorpej
2522 1.75 thorpej ti->ti_dst = sc->sc_src;
2523 1.75 thorpej ti->ti_src = sc->sc_dst;
2524 1.75 thorpej ti->ti_sport = sc->sc_dport;
2525 1.75 thorpej ti->ti_dport = sc->sc_sport;
2526 1.75 thorpej ti->ti_pr = IPPROTO_TCP;
2527 1.75 thorpej ti->ti_len = htons(tlen - sizeof(struct ip));
2528 1.75 thorpej /* ti_x1 already 0'd */
2529 1.75 thorpej ti->ti_seq = htonl(sc->sc_iss);
2530 1.75 thorpej ti->ti_ack = htonl(sc->sc_irs + 1);
2531 1.75 thorpej /* ti_x2 already 0 */
2532 1.75 thorpej ti->ti_off = (sizeof(struct tcphdr) + optlen) >> 2;
2533 1.75 thorpej ti->ti_flags = TH_SYN|TH_ACK;
2534 1.80 thorpej ti->ti_win = htons(sc->sc_win);
2535 1.75 thorpej /* ti_sum already 0 */
2536 1.75 thorpej /* ti_urp already 0 */
2537 1.75 thorpej
2538 1.75 thorpej /* Tack on the TCP options. */
2539 1.29 thorpej optp = (u_int8_t *)(ti + 1);
2540 1.75 thorpej *optp++ = TCPOPT_MAXSEG;
2541 1.75 thorpej *optp++ = 4;
2542 1.75 thorpej *optp++ = (sc->sc_ourmaxseg >> 8) & 0xff;
2543 1.75 thorpej *optp++ = sc->sc_ourmaxseg & 0xff;
2544 1.29 thorpej
2545 1.29 thorpej if (sc->sc_request_r_scale != 15) {
2546 1.75 thorpej *((u_int32_t *)optp) = htonl(TCPOPT_NOP << 24 |
2547 1.29 thorpej TCPOPT_WINDOW << 16 | TCPOLEN_WINDOW << 8 |
2548 1.29 thorpej sc->sc_request_r_scale);
2549 1.75 thorpej optp += 4;
2550 1.29 thorpej }
2551 1.29 thorpej
2552 1.49 thorpej if (sc->sc_flags & SCF_TIMESTAMP) {
2553 1.75 thorpej u_int32_t *lp = (u_int32_t *)(optp);
2554 1.29 thorpej /* Form timestamp option as shown in appendix A of RFC 1323. */
2555 1.29 thorpej *lp++ = htonl(TCPOPT_TSTAMP_HDR);
2556 1.29 thorpej *lp++ = htonl(tcp_now);
2557 1.80 thorpej *lp = htonl(sc->sc_timestamp);
2558 1.75 thorpej optp += TCPOLEN_TSTAMP_APPA;
2559 1.29 thorpej }
2560 1.29 thorpej
2561 1.75 thorpej /* Compute the packet's checksum. */
2562 1.75 thorpej ti->ti_sum = in_cksum(m, tlen);
2563 1.75 thorpej
2564 1.29 thorpej /*
2565 1.75 thorpej * Fill in some straggling IP bits. Note the stack expects
2566 1.75 thorpej * ip_len to be in host order, for convenience.
2567 1.29 thorpej */
2568 1.75 thorpej ((struct ip *)ti)->ip_len = tlen;
2569 1.75 thorpej ((struct ip *)ti)->ip_ttl = ip_defttl;
2570 1.75 thorpej /* XXX tos? */
2571 1.29 thorpej
2572 1.29 thorpej /*
2573 1.75 thorpej * If we're doing Path MTU discovery, we need to set DF unless
2574 1.75 thorpej * the route's MTU is locked. If we don't yet know the route,
2575 1.75 thorpej * look it up now. We will copy this reference to the inpcb
2576 1.75 thorpej * when we finish creating the connection.
2577 1.29 thorpej */
2578 1.75 thorpej if ((rt = ro->ro_rt) == NULL || (rt->rt_flags & RTF_UP) == 0) {
2579 1.75 thorpej if (ro->ro_rt != NULL) {
2580 1.75 thorpej RTFREE(ro->ro_rt);
2581 1.75 thorpej ro->ro_rt = NULL;
2582 1.75 thorpej }
2583 1.75 thorpej dst = satosin(&ro->ro_dst);
2584 1.75 thorpej dst->sin_family = AF_INET;
2585 1.75 thorpej dst->sin_len = sizeof(*dst);
2586 1.75 thorpej dst->sin_addr = ti->ti_dst;
2587 1.75 thorpej rtalloc(ro);
2588 1.75 thorpej if ((rt = ro->ro_rt) == NULL) {
2589 1.75 thorpej m_freem(m);
2590 1.75 thorpej ipstat.ips_noroute++;
2591 1.75 thorpej return (EHOSTUNREACH);
2592 1.75 thorpej }
2593 1.75 thorpej }
2594 1.75 thorpej if (ip_mtudisc != 0 && (rt->rt_rmx.rmx_locks & RTV_MTU) == 0)
2595 1.75 thorpej ((struct ip *)ti)->ip_off |= IP_DF;
2596 1.75 thorpej
2597 1.75 thorpej /* ...and send it off! */
2598 1.75 thorpej error = ip_output(m, sc->sc_ipopts, ro, 0, NULL);
2599 1.75 thorpej
2600 1.75 thorpej return (error);
2601 1.1 cgd }
2602