tcp_usrreq.c revision 190948
1/*-
2 * Copyright (c) 1982, 1986, 1988, 1993
3 *	The Regents of the University of California.
4 * Copyright (c) 2006-2007 Robert N. M. Watson
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 *    notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 *    notice, this list of conditions and the following disclaimer in the
14 *    documentation and/or other materials provided with the distribution.
15 * 4. Neither the name of the University nor the names of its contributors
16 *    may be used to endorse or promote products derived from this software
17 *    without specific prior written permission.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 * SUCH DAMAGE.
30 *
31 *	From: @(#)tcp_usrreq.c	8.2 (Berkeley) 1/3/94
32 */
33
34#include <sys/cdefs.h>
35__FBSDID("$FreeBSD: head/sys/netinet/tcp_usrreq.c 190948 2009-04-11 22:07:19Z rwatson $");
36
37#include "opt_ddb.h"
38#include "opt_inet.h"
39#include "opt_inet6.h"
40#include "opt_tcpdebug.h"
41
42#include <sys/param.h>
43#include <sys/systm.h>
44#include <sys/malloc.h>
45#include <sys/kernel.h>
46#include <sys/sysctl.h>
47#include <sys/mbuf.h>
48#ifdef INET6
49#include <sys/domain.h>
50#endif /* INET6 */
51#include <sys/socket.h>
52#include <sys/socketvar.h>
53#include <sys/protosw.h>
54#include <sys/proc.h>
55#include <sys/jail.h>
56#include <sys/vimage.h>
57
58#ifdef DDB
59#include <ddb/ddb.h>
60#endif
61
62#include <net/if.h>
63#include <net/route.h>
64
65#include <netinet/in.h>
66#include <netinet/in_systm.h>
67#ifdef INET6
68#include <netinet/ip6.h>
69#endif
70#include <netinet/in_pcb.h>
71#ifdef INET6
72#include <netinet6/in6_pcb.h>
73#endif
74#include <netinet/in_var.h>
75#include <netinet/ip_var.h>
76#ifdef INET6
77#include <netinet6/ip6_var.h>
78#include <netinet6/scope6_var.h>
79#endif
80#include <netinet/tcp.h>
81#include <netinet/tcp_fsm.h>
82#include <netinet/tcp_seq.h>
83#include <netinet/tcp_timer.h>
84#include <netinet/tcp_var.h>
85#include <netinet/tcpip.h>
86#ifdef TCPDEBUG
87#include <netinet/tcp_debug.h>
88#endif
89#include <netinet/tcp_offload.h>
90#include <netinet/vinet.h>
91
92/*
93 * TCP protocol interface to socket abstraction.
94 */
95static int	tcp_attach(struct socket *);
96static int	tcp_connect(struct tcpcb *, struct sockaddr *,
97		    struct thread *td);
98#ifdef INET6
99static int	tcp6_connect(struct tcpcb *, struct sockaddr *,
100		    struct thread *td);
101#endif /* INET6 */
102static void	tcp_disconnect(struct tcpcb *);
103static void	tcp_usrclosed(struct tcpcb *);
104static void	tcp_fill_info(struct tcpcb *, struct tcp_info *);
105
106#ifdef TCPDEBUG
107#define	TCPDEBUG0	int ostate = 0
108#define	TCPDEBUG1()	ostate = tp ? tp->t_state : 0
109#define	TCPDEBUG2(req)	if (tp && (so->so_options & SO_DEBUG)) \
110				tcp_trace(TA_USER, ostate, tp, 0, 0, req)
111#else
112#define	TCPDEBUG0
113#define	TCPDEBUG1()
114#define	TCPDEBUG2(req)
115#endif
116
117/*
118 * TCP attaches to socket via pru_attach(), reserving space,
119 * and an internet control block.
120 */
121static int
122tcp_usr_attach(struct socket *so, int proto, struct thread *td)
123{
124	struct inpcb *inp;
125	struct tcpcb *tp = NULL;
126	int error;
127	TCPDEBUG0;
128
129	inp = sotoinpcb(so);
130	KASSERT(inp == NULL, ("tcp_usr_attach: inp != NULL"));
131	TCPDEBUG1();
132
133	error = tcp_attach(so);
134	if (error)
135		goto out;
136
137	if ((so->so_options & SO_LINGER) && so->so_linger == 0)
138		so->so_linger = TCP_LINGERTIME;
139
140	inp = sotoinpcb(so);
141	tp = intotcpcb(inp);
142out:
143	TCPDEBUG2(PRU_ATTACH);
144	return error;
145}
146
147/*
148 * tcp_detach is called when the socket layer loses its final reference
149 * to the socket, be it a file descriptor reference, a reference from TCP,
150 * etc.  At this point, there is only one case in which we will keep around
151 * inpcb state: time wait.
152 *
153 * This function can probably be re-absorbed back into tcp_usr_detach() now
154 * that there is a single detach path.
155 */
156static void
157tcp_detach(struct socket *so, struct inpcb *inp)
158{
159	struct tcpcb *tp;
160#ifdef INVARIANTS
161	INIT_VNET_INET(so->so_vnet);
162#endif
163
164	INP_INFO_WLOCK_ASSERT(&V_tcbinfo);
165	INP_WLOCK_ASSERT(inp);
166
167	KASSERT(so->so_pcb == inp, ("tcp_detach: so_pcb != inp"));
168	KASSERT(inp->inp_socket == so, ("tcp_detach: inp_socket != so"));
169
170	tp = intotcpcb(inp);
171
172	if (inp->inp_flags & INP_TIMEWAIT) {
173		/*
174		 * There are two cases to handle: one in which the time wait
175		 * state is being discarded (INP_DROPPED), and one in which
176		 * this connection will remain in timewait.  In the former,
177		 * it is time to discard all state (except tcptw, which has
178		 * already been discarded by the timewait close code, which
179		 * should be further up the call stack somewhere).  In the
180		 * latter case, we detach from the socket, but leave the pcb
181		 * present until timewait ends.
182		 *
183		 * XXXRW: Would it be cleaner to free the tcptw here?
184		 */
185		if (inp->inp_flags & INP_DROPPED) {
186			KASSERT(tp == NULL, ("tcp_detach: INP_TIMEWAIT && "
187			    "INP_DROPPED && tp != NULL"));
188			in_pcbdetach(inp);
189			in_pcbfree(inp);
190		} else {
191			in_pcbdetach(inp);
192			INP_WUNLOCK(inp);
193		}
194	} else {
195		/*
196		 * If the connection is not in timewait, we consider two
197		 * two conditions: one in which no further processing is
198		 * necessary (dropped || embryonic), and one in which TCP is
199		 * not yet done, but no longer requires the socket, so the
200		 * pcb will persist for the time being.
201		 *
202		 * XXXRW: Does the second case still occur?
203		 */
204		if (inp->inp_flags & INP_DROPPED ||
205		    tp->t_state < TCPS_SYN_SENT) {
206			tcp_discardcb(tp);
207			in_pcbdetach(inp);
208			in_pcbfree(inp);
209		} else
210			in_pcbdetach(inp);
211	}
212}
213
214/*
215 * pru_detach() detaches the TCP protocol from the socket.
216 * If the protocol state is non-embryonic, then can't
217 * do this directly: have to initiate a pru_disconnect(),
218 * which may finish later; embryonic TCB's can just
219 * be discarded here.
220 */
221static void
222tcp_usr_detach(struct socket *so)
223{
224	INIT_VNET_INET(so->so_vnet);
225	struct inpcb *inp;
226
227	inp = sotoinpcb(so);
228	KASSERT(inp != NULL, ("tcp_usr_detach: inp == NULL"));
229	INP_INFO_WLOCK(&V_tcbinfo);
230	INP_WLOCK(inp);
231	KASSERT(inp->inp_socket != NULL,
232	    ("tcp_usr_detach: inp_socket == NULL"));
233	tcp_detach(so, inp);
234	INP_INFO_WUNLOCK(&V_tcbinfo);
235}
236
237/*
238 * Give the socket an address.
239 */
240static int
241tcp_usr_bind(struct socket *so, struct sockaddr *nam, struct thread *td)
242{
243	INIT_VNET_INET(so->so_vnet);
244	int error = 0;
245	struct inpcb *inp;
246	struct tcpcb *tp = NULL;
247	struct sockaddr_in *sinp;
248
249	sinp = (struct sockaddr_in *)nam;
250	if (nam->sa_len != sizeof (*sinp))
251		return (EINVAL);
252	/*
253	 * Must check for multicast addresses and disallow binding
254	 * to them.
255	 */
256	if (sinp->sin_family == AF_INET &&
257	    IN_MULTICAST(ntohl(sinp->sin_addr.s_addr)))
258		return (EAFNOSUPPORT);
259
260	TCPDEBUG0;
261	INP_INFO_WLOCK(&V_tcbinfo);
262	inp = sotoinpcb(so);
263	KASSERT(inp != NULL, ("tcp_usr_bind: inp == NULL"));
264	INP_WLOCK(inp);
265	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
266		error = EINVAL;
267		goto out;
268	}
269	tp = intotcpcb(inp);
270	TCPDEBUG1();
271	error = in_pcbbind(inp, nam, td->td_ucred);
272out:
273	TCPDEBUG2(PRU_BIND);
274	INP_WUNLOCK(inp);
275	INP_INFO_WUNLOCK(&V_tcbinfo);
276
277	return (error);
278}
279
280#ifdef INET6
281static int
282tcp6_usr_bind(struct socket *so, struct sockaddr *nam, struct thread *td)
283{
284	INIT_VNET_INET(so->so_vnet);
285	int error = 0;
286	struct inpcb *inp;
287	struct tcpcb *tp = NULL;
288	struct sockaddr_in6 *sin6p;
289
290	sin6p = (struct sockaddr_in6 *)nam;
291	if (nam->sa_len != sizeof (*sin6p))
292		return (EINVAL);
293	/*
294	 * Must check for multicast addresses and disallow binding
295	 * to them.
296	 */
297	if (sin6p->sin6_family == AF_INET6 &&
298	    IN6_IS_ADDR_MULTICAST(&sin6p->sin6_addr))
299		return (EAFNOSUPPORT);
300
301	TCPDEBUG0;
302	INP_INFO_WLOCK(&V_tcbinfo);
303	inp = sotoinpcb(so);
304	KASSERT(inp != NULL, ("tcp6_usr_bind: inp == NULL"));
305	INP_WLOCK(inp);
306	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
307		error = EINVAL;
308		goto out;
309	}
310	tp = intotcpcb(inp);
311	TCPDEBUG1();
312	inp->inp_vflag &= ~INP_IPV4;
313	inp->inp_vflag |= INP_IPV6;
314	if ((inp->inp_flags & IN6P_IPV6_V6ONLY) == 0) {
315		if (IN6_IS_ADDR_UNSPECIFIED(&sin6p->sin6_addr))
316			inp->inp_vflag |= INP_IPV4;
317		else if (IN6_IS_ADDR_V4MAPPED(&sin6p->sin6_addr)) {
318			struct sockaddr_in sin;
319
320			in6_sin6_2_sin(&sin, sin6p);
321			inp->inp_vflag |= INP_IPV4;
322			inp->inp_vflag &= ~INP_IPV6;
323			error = in_pcbbind(inp, (struct sockaddr *)&sin,
324			    td->td_ucred);
325			goto out;
326		}
327	}
328	error = in6_pcbbind(inp, nam, td->td_ucred);
329out:
330	TCPDEBUG2(PRU_BIND);
331	INP_WUNLOCK(inp);
332	INP_INFO_WUNLOCK(&V_tcbinfo);
333	return (error);
334}
335#endif /* INET6 */
336
337/*
338 * Prepare to accept connections.
339 */
340static int
341tcp_usr_listen(struct socket *so, int backlog, struct thread *td)
342{
343	INIT_VNET_INET(so->so_vnet);
344	int error = 0;
345	struct inpcb *inp;
346	struct tcpcb *tp = NULL;
347
348	TCPDEBUG0;
349	INP_INFO_WLOCK(&V_tcbinfo);
350	inp = sotoinpcb(so);
351	KASSERT(inp != NULL, ("tcp_usr_listen: inp == NULL"));
352	INP_WLOCK(inp);
353	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
354		error = EINVAL;
355		goto out;
356	}
357	tp = intotcpcb(inp);
358	TCPDEBUG1();
359	SOCK_LOCK(so);
360	error = solisten_proto_check(so);
361	if (error == 0 && inp->inp_lport == 0)
362		error = in_pcbbind(inp, (struct sockaddr *)0, td->td_ucred);
363	if (error == 0) {
364		tp->t_state = TCPS_LISTEN;
365		solisten_proto(so, backlog);
366		tcp_offload_listen_open(tp);
367	}
368	SOCK_UNLOCK(so);
369
370out:
371	TCPDEBUG2(PRU_LISTEN);
372	INP_WUNLOCK(inp);
373	INP_INFO_WUNLOCK(&V_tcbinfo);
374	return (error);
375}
376
377#ifdef INET6
378static int
379tcp6_usr_listen(struct socket *so, int backlog, struct thread *td)
380{
381	INIT_VNET_INET(so->so_vnet);
382	int error = 0;
383	struct inpcb *inp;
384	struct tcpcb *tp = NULL;
385
386	TCPDEBUG0;
387	INP_INFO_WLOCK(&V_tcbinfo);
388	inp = sotoinpcb(so);
389	KASSERT(inp != NULL, ("tcp6_usr_listen: inp == NULL"));
390	INP_WLOCK(inp);
391	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
392		error = EINVAL;
393		goto out;
394	}
395	tp = intotcpcb(inp);
396	TCPDEBUG1();
397	SOCK_LOCK(so);
398	error = solisten_proto_check(so);
399	if (error == 0 && inp->inp_lport == 0) {
400		inp->inp_vflag &= ~INP_IPV4;
401		if ((inp->inp_flags & IN6P_IPV6_V6ONLY) == 0)
402			inp->inp_vflag |= INP_IPV4;
403		error = in6_pcbbind(inp, (struct sockaddr *)0, td->td_ucred);
404	}
405	if (error == 0) {
406		tp->t_state = TCPS_LISTEN;
407		solisten_proto(so, backlog);
408	}
409	SOCK_UNLOCK(so);
410
411out:
412	TCPDEBUG2(PRU_LISTEN);
413	INP_WUNLOCK(inp);
414	INP_INFO_WUNLOCK(&V_tcbinfo);
415	return (error);
416}
417#endif /* INET6 */
418
419/*
420 * Initiate connection to peer.
421 * Create a template for use in transmissions on this connection.
422 * Enter SYN_SENT state, and mark socket as connecting.
423 * Start keep-alive timer, and seed output sequence space.
424 * Send initial segment on connection.
425 */
426static int
427tcp_usr_connect(struct socket *so, struct sockaddr *nam, struct thread *td)
428{
429	INIT_VNET_INET(so->so_vnet);
430	int error = 0;
431	struct inpcb *inp;
432	struct tcpcb *tp = NULL;
433	struct sockaddr_in *sinp;
434
435	sinp = (struct sockaddr_in *)nam;
436	if (nam->sa_len != sizeof (*sinp))
437		return (EINVAL);
438	/*
439	 * Must disallow TCP ``connections'' to multicast addresses.
440	 */
441	if (sinp->sin_family == AF_INET
442	    && IN_MULTICAST(ntohl(sinp->sin_addr.s_addr)))
443		return (EAFNOSUPPORT);
444	if ((error = prison_remote_ip4(td->td_ucred, &sinp->sin_addr)) != 0)
445		return (error);
446
447	TCPDEBUG0;
448	INP_INFO_WLOCK(&V_tcbinfo);
449	inp = sotoinpcb(so);
450	KASSERT(inp != NULL, ("tcp_usr_connect: inp == NULL"));
451	INP_WLOCK(inp);
452	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
453		error = EINVAL;
454		goto out;
455	}
456	tp = intotcpcb(inp);
457	TCPDEBUG1();
458	if ((error = tcp_connect(tp, nam, td)) != 0)
459		goto out;
460	error = tcp_output_connect(so, nam);
461out:
462	TCPDEBUG2(PRU_CONNECT);
463	INP_WUNLOCK(inp);
464	INP_INFO_WUNLOCK(&V_tcbinfo);
465	return (error);
466}
467
468#ifdef INET6
469static int
470tcp6_usr_connect(struct socket *so, struct sockaddr *nam, struct thread *td)
471{
472	INIT_VNET_INET(so->so_vnet);
473	int error = 0;
474	struct inpcb *inp;
475	struct tcpcb *tp = NULL;
476	struct sockaddr_in6 *sin6p;
477
478	TCPDEBUG0;
479
480	sin6p = (struct sockaddr_in6 *)nam;
481	if (nam->sa_len != sizeof (*sin6p))
482		return (EINVAL);
483	/*
484	 * Must disallow TCP ``connections'' to multicast addresses.
485	 */
486	if (sin6p->sin6_family == AF_INET6
487	    && IN6_IS_ADDR_MULTICAST(&sin6p->sin6_addr))
488		return (EAFNOSUPPORT);
489
490	INP_INFO_WLOCK(&V_tcbinfo);
491	inp = sotoinpcb(so);
492	KASSERT(inp != NULL, ("tcp6_usr_connect: inp == NULL"));
493	INP_WLOCK(inp);
494	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
495		error = EINVAL;
496		goto out;
497	}
498	tp = intotcpcb(inp);
499	TCPDEBUG1();
500	if (IN6_IS_ADDR_V4MAPPED(&sin6p->sin6_addr)) {
501		struct sockaddr_in sin;
502
503		if ((inp->inp_flags & IN6P_IPV6_V6ONLY) != 0) {
504			error = EINVAL;
505			goto out;
506		}
507
508		in6_sin6_2_sin(&sin, sin6p);
509		inp->inp_vflag |= INP_IPV4;
510		inp->inp_vflag &= ~INP_IPV6;
511		if ((error = prison_remote_ip4(td->td_ucred,
512		    &sin.sin_addr)) != 0)
513			goto out;
514		if ((error = tcp_connect(tp, (struct sockaddr *)&sin, td)) != 0)
515			goto out;
516		error = tcp_output_connect(so, nam);
517		goto out;
518	}
519	inp->inp_vflag &= ~INP_IPV4;
520	inp->inp_vflag |= INP_IPV6;
521	inp->inp_inc.inc_flags |= INC_ISIPV6;
522	if ((error = prison_remote_ip6(td->td_ucred, &sin6p->sin6_addr)) != 0)
523		goto out;
524	if ((error = tcp6_connect(tp, nam, td)) != 0)
525		goto out;
526	error = tcp_output_connect(so, nam);
527
528out:
529	TCPDEBUG2(PRU_CONNECT);
530	INP_WUNLOCK(inp);
531	INP_INFO_WUNLOCK(&V_tcbinfo);
532	return (error);
533}
534#endif /* INET6 */
535
536/*
537 * Initiate disconnect from peer.
538 * If connection never passed embryonic stage, just drop;
539 * else if don't need to let data drain, then can just drop anyways,
540 * else have to begin TCP shutdown process: mark socket disconnecting,
541 * drain unread data, state switch to reflect user close, and
542 * send segment (e.g. FIN) to peer.  Socket will be really disconnected
543 * when peer sends FIN and acks ours.
544 *
545 * SHOULD IMPLEMENT LATER PRU_CONNECT VIA REALLOC TCPCB.
546 */
547static int
548tcp_usr_disconnect(struct socket *so)
549{
550	INIT_VNET_INET(so->so_vnet);
551	struct inpcb *inp;
552	struct tcpcb *tp = NULL;
553	int error = 0;
554
555	TCPDEBUG0;
556	INP_INFO_WLOCK(&V_tcbinfo);
557	inp = sotoinpcb(so);
558	KASSERT(inp != NULL, ("tcp_usr_disconnect: inp == NULL"));
559	INP_WLOCK(inp);
560	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
561		error = ECONNRESET;
562		goto out;
563	}
564	tp = intotcpcb(inp);
565	TCPDEBUG1();
566	tcp_disconnect(tp);
567out:
568	TCPDEBUG2(PRU_DISCONNECT);
569	INP_WUNLOCK(inp);
570	INP_INFO_WUNLOCK(&V_tcbinfo);
571	return (error);
572}
573
574/*
575 * Accept a connection.  Essentially all the work is
576 * done at higher levels; just return the address
577 * of the peer, storing through addr.
578 */
579static int
580tcp_usr_accept(struct socket *so, struct sockaddr **nam)
581{
582	INIT_VNET_INET(so->so_vnet);
583	int error = 0;
584	struct inpcb *inp = NULL;
585	struct tcpcb *tp = NULL;
586	struct in_addr addr;
587	in_port_t port = 0;
588	TCPDEBUG0;
589
590	if (so->so_state & SS_ISDISCONNECTED)
591		return (ECONNABORTED);
592
593	inp = sotoinpcb(so);
594	KASSERT(inp != NULL, ("tcp_usr_accept: inp == NULL"));
595	INP_INFO_RLOCK(&V_tcbinfo);
596	INP_WLOCK(inp);
597	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
598		error = ECONNABORTED;
599		goto out;
600	}
601	tp = intotcpcb(inp);
602	TCPDEBUG1();
603
604	/*
605	 * We inline in_getpeeraddr and COMMON_END here, so that we can
606	 * copy the data of interest and defer the malloc until after we
607	 * release the lock.
608	 */
609	port = inp->inp_fport;
610	addr = inp->inp_faddr;
611
612out:
613	TCPDEBUG2(PRU_ACCEPT);
614	INP_WUNLOCK(inp);
615	INP_INFO_RUNLOCK(&V_tcbinfo);
616	if (error == 0)
617		*nam = in_sockaddr(port, &addr);
618	return error;
619}
620
621#ifdef INET6
622static int
623tcp6_usr_accept(struct socket *so, struct sockaddr **nam)
624{
625	struct inpcb *inp = NULL;
626	int error = 0;
627	struct tcpcb *tp = NULL;
628	struct in_addr addr;
629	struct in6_addr addr6;
630	in_port_t port = 0;
631	int v4 = 0;
632	TCPDEBUG0;
633
634	if (so->so_state & SS_ISDISCONNECTED)
635		return (ECONNABORTED);
636
637	inp = sotoinpcb(so);
638	KASSERT(inp != NULL, ("tcp6_usr_accept: inp == NULL"));
639	INP_WLOCK(inp);
640	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
641		error = ECONNABORTED;
642		goto out;
643	}
644	tp = intotcpcb(inp);
645	TCPDEBUG1();
646
647	/*
648	 * We inline in6_mapped_peeraddr and COMMON_END here, so that we can
649	 * copy the data of interest and defer the malloc until after we
650	 * release the lock.
651	 */
652	if (inp->inp_vflag & INP_IPV4) {
653		v4 = 1;
654		port = inp->inp_fport;
655		addr = inp->inp_faddr;
656	} else {
657		port = inp->inp_fport;
658		addr6 = inp->in6p_faddr;
659	}
660
661out:
662	TCPDEBUG2(PRU_ACCEPT);
663	INP_WUNLOCK(inp);
664	if (error == 0) {
665		if (v4)
666			*nam = in6_v4mapsin6_sockaddr(port, &addr);
667		else
668			*nam = in6_sockaddr(port, &addr6);
669	}
670	return error;
671}
672#endif /* INET6 */
673
674/*
675 * Mark the connection as being incapable of further output.
676 */
677static int
678tcp_usr_shutdown(struct socket *so)
679{
680	INIT_VNET_INET(so->so_vnet);
681	int error = 0;
682	struct inpcb *inp;
683	struct tcpcb *tp = NULL;
684
685	TCPDEBUG0;
686	INP_INFO_WLOCK(&V_tcbinfo);
687	inp = sotoinpcb(so);
688	KASSERT(inp != NULL, ("inp == NULL"));
689	INP_WLOCK(inp);
690	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
691		error = ECONNRESET;
692		goto out;
693	}
694	tp = intotcpcb(inp);
695	TCPDEBUG1();
696	socantsendmore(so);
697	tcp_usrclosed(tp);
698	if (!(inp->inp_flags & INP_DROPPED))
699		error = tcp_output_disconnect(tp);
700
701out:
702	TCPDEBUG2(PRU_SHUTDOWN);
703	INP_WUNLOCK(inp);
704	INP_INFO_WUNLOCK(&V_tcbinfo);
705
706	return (error);
707}
708
709/*
710 * After a receive, possibly send window update to peer.
711 */
712static int
713tcp_usr_rcvd(struct socket *so, int flags)
714{
715	struct inpcb *inp;
716	struct tcpcb *tp = NULL;
717	int error = 0;
718
719	TCPDEBUG0;
720	inp = sotoinpcb(so);
721	KASSERT(inp != NULL, ("tcp_usr_rcvd: inp == NULL"));
722	INP_WLOCK(inp);
723	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
724		error = ECONNRESET;
725		goto out;
726	}
727	tp = intotcpcb(inp);
728	TCPDEBUG1();
729	tcp_output_rcvd(tp);
730
731out:
732	TCPDEBUG2(PRU_RCVD);
733	INP_WUNLOCK(inp);
734	return (error);
735}
736
737/*
738 * Do a send by putting data in output queue and updating urgent
739 * marker if URG set.  Possibly send more data.  Unlike the other
740 * pru_*() routines, the mbuf chains are our responsibility.  We
741 * must either enqueue them or free them.  The other pru_* routines
742 * generally are caller-frees.
743 */
744static int
745tcp_usr_send(struct socket *so, int flags, struct mbuf *m,
746    struct sockaddr *nam, struct mbuf *control, struct thread *td)
747{
748	INIT_VNET_INET(so->so_vnet);
749	int error = 0;
750	struct inpcb *inp;
751	struct tcpcb *tp = NULL;
752	int headlocked = 0;
753#ifdef INET6
754	int isipv6;
755#endif
756	TCPDEBUG0;
757
758	/*
759	 * We require the pcbinfo lock in two cases:
760	 *
761	 * (1) An implied connect is taking place, which can result in
762	 *     binding IPs and ports and hence modification of the pcb hash
763	 *     chains.
764	 *
765	 * (2) PRUS_EOF is set, resulting in explicit close on the send.
766	 */
767	if ((nam != NULL) || (flags & PRUS_EOF)) {
768		INP_INFO_WLOCK(&V_tcbinfo);
769		headlocked = 1;
770	}
771	inp = sotoinpcb(so);
772	KASSERT(inp != NULL, ("tcp_usr_send: inp == NULL"));
773	INP_WLOCK(inp);
774	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
775		if (control)
776			m_freem(control);
777		if (m)
778			m_freem(m);
779		error = ECONNRESET;
780		goto out;
781	}
782#ifdef INET6
783	isipv6 = nam && nam->sa_family == AF_INET6;
784#endif /* INET6 */
785	tp = intotcpcb(inp);
786	TCPDEBUG1();
787	if (control) {
788		/* TCP doesn't do control messages (rights, creds, etc) */
789		if (control->m_len) {
790			m_freem(control);
791			if (m)
792				m_freem(m);
793			error = EINVAL;
794			goto out;
795		}
796		m_freem(control);	/* empty control, just free it */
797	}
798	if (!(flags & PRUS_OOB)) {
799		sbappendstream(&so->so_snd, m);
800		if (nam && tp->t_state < TCPS_SYN_SENT) {
801			/*
802			 * Do implied connect if not yet connected,
803			 * initialize window to default value, and
804			 * initialize maxseg/maxopd using peer's cached
805			 * MSS.
806			 */
807			INP_INFO_WLOCK_ASSERT(&V_tcbinfo);
808#ifdef INET6
809			if (isipv6)
810				error = tcp6_connect(tp, nam, td);
811			else
812#endif /* INET6 */
813			error = tcp_connect(tp, nam, td);
814			if (error)
815				goto out;
816			tp->snd_wnd = TTCP_CLIENT_SND_WND;
817			tcp_mss(tp, -1);
818		}
819		if (flags & PRUS_EOF) {
820			/*
821			 * Close the send side of the connection after
822			 * the data is sent.
823			 */
824			INP_INFO_WLOCK_ASSERT(&V_tcbinfo);
825			socantsendmore(so);
826			tcp_usrclosed(tp);
827		}
828		if (headlocked) {
829			INP_INFO_WUNLOCK(&V_tcbinfo);
830			headlocked = 0;
831		}
832		if (!(inp->inp_flags & INP_DROPPED)) {
833			if (flags & PRUS_MORETOCOME)
834				tp->t_flags |= TF_MORETOCOME;
835			error = tcp_output_send(tp);
836			if (flags & PRUS_MORETOCOME)
837				tp->t_flags &= ~TF_MORETOCOME;
838		}
839	} else {
840		/*
841		 * XXXRW: PRUS_EOF not implemented with PRUS_OOB?
842		 */
843		SOCKBUF_LOCK(&so->so_snd);
844		if (sbspace(&so->so_snd) < -512) {
845			SOCKBUF_UNLOCK(&so->so_snd);
846			m_freem(m);
847			error = ENOBUFS;
848			goto out;
849		}
850		/*
851		 * According to RFC961 (Assigned Protocols),
852		 * the urgent pointer points to the last octet
853		 * of urgent data.  We continue, however,
854		 * to consider it to indicate the first octet
855		 * of data past the urgent section.
856		 * Otherwise, snd_up should be one lower.
857		 */
858		sbappendstream_locked(&so->so_snd, m);
859		SOCKBUF_UNLOCK(&so->so_snd);
860		if (nam && tp->t_state < TCPS_SYN_SENT) {
861			/*
862			 * Do implied connect if not yet connected,
863			 * initialize window to default value, and
864			 * initialize maxseg/maxopd using peer's cached
865			 * MSS.
866			 */
867			INP_INFO_WLOCK_ASSERT(&V_tcbinfo);
868#ifdef INET6
869			if (isipv6)
870				error = tcp6_connect(tp, nam, td);
871			else
872#endif /* INET6 */
873			error = tcp_connect(tp, nam, td);
874			if (error)
875				goto out;
876			tp->snd_wnd = TTCP_CLIENT_SND_WND;
877			tcp_mss(tp, -1);
878			INP_INFO_WUNLOCK(&V_tcbinfo);
879			headlocked = 0;
880		} else if (nam) {
881			INP_INFO_WUNLOCK(&V_tcbinfo);
882			headlocked = 0;
883		}
884		tp->snd_up = tp->snd_una + so->so_snd.sb_cc;
885		tp->t_flags |= TF_FORCEDATA;
886		error = tcp_output_send(tp);
887		tp->t_flags &= ~TF_FORCEDATA;
888	}
889out:
890	TCPDEBUG2((flags & PRUS_OOB) ? PRU_SENDOOB :
891		  ((flags & PRUS_EOF) ? PRU_SEND_EOF : PRU_SEND));
892	INP_WUNLOCK(inp);
893	if (headlocked)
894		INP_INFO_WUNLOCK(&V_tcbinfo);
895	return (error);
896}
897
898/*
899 * Abort the TCP.  Drop the connection abruptly.
900 */
901static void
902tcp_usr_abort(struct socket *so)
903{
904	INIT_VNET_INET(so->so_vnet);
905	struct inpcb *inp;
906	struct tcpcb *tp = NULL;
907	TCPDEBUG0;
908
909	inp = sotoinpcb(so);
910	KASSERT(inp != NULL, ("tcp_usr_abort: inp == NULL"));
911
912	INP_INFO_WLOCK(&V_tcbinfo);
913	INP_WLOCK(inp);
914	KASSERT(inp->inp_socket != NULL,
915	    ("tcp_usr_abort: inp_socket == NULL"));
916
917	/*
918	 * If we still have full TCP state, and we're not dropped, drop.
919	 */
920	if (!(inp->inp_flags & INP_TIMEWAIT) &&
921	    !(inp->inp_flags & INP_DROPPED)) {
922		tp = intotcpcb(inp);
923		TCPDEBUG1();
924		tcp_drop(tp, ECONNABORTED);
925		TCPDEBUG2(PRU_ABORT);
926	}
927	if (!(inp->inp_flags & INP_DROPPED)) {
928		SOCK_LOCK(so);
929		so->so_state |= SS_PROTOREF;
930		SOCK_UNLOCK(so);
931		inp->inp_flags |= INP_SOCKREF;
932	}
933	INP_WUNLOCK(inp);
934	INP_INFO_WUNLOCK(&V_tcbinfo);
935}
936
937/*
938 * TCP socket is closed.  Start friendly disconnect.
939 */
940static void
941tcp_usr_close(struct socket *so)
942{
943	INIT_VNET_INET(so->so_vnet);
944	struct inpcb *inp;
945	struct tcpcb *tp = NULL;
946	TCPDEBUG0;
947
948	inp = sotoinpcb(so);
949	KASSERT(inp != NULL, ("tcp_usr_close: inp == NULL"));
950
951	INP_INFO_WLOCK(&V_tcbinfo);
952	INP_WLOCK(inp);
953	KASSERT(inp->inp_socket != NULL,
954	    ("tcp_usr_close: inp_socket == NULL"));
955
956	/*
957	 * If we still have full TCP state, and we're not dropped, initiate
958	 * a disconnect.
959	 */
960	if (!(inp->inp_flags & INP_TIMEWAIT) &&
961	    !(inp->inp_flags & INP_DROPPED)) {
962		tp = intotcpcb(inp);
963		TCPDEBUG1();
964		tcp_disconnect(tp);
965		TCPDEBUG2(PRU_CLOSE);
966	}
967	if (!(inp->inp_flags & INP_DROPPED)) {
968		SOCK_LOCK(so);
969		so->so_state |= SS_PROTOREF;
970		SOCK_UNLOCK(so);
971		inp->inp_flags |= INP_SOCKREF;
972	}
973	INP_WUNLOCK(inp);
974	INP_INFO_WUNLOCK(&V_tcbinfo);
975}
976
977/*
978 * Receive out-of-band data.
979 */
980static int
981tcp_usr_rcvoob(struct socket *so, struct mbuf *m, int flags)
982{
983	int error = 0;
984	struct inpcb *inp;
985	struct tcpcb *tp = NULL;
986
987	TCPDEBUG0;
988	inp = sotoinpcb(so);
989	KASSERT(inp != NULL, ("tcp_usr_rcvoob: inp == NULL"));
990	INP_WLOCK(inp);
991	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
992		error = ECONNRESET;
993		goto out;
994	}
995	tp = intotcpcb(inp);
996	TCPDEBUG1();
997	if ((so->so_oobmark == 0 &&
998	     (so->so_rcv.sb_state & SBS_RCVATMARK) == 0) ||
999	    so->so_options & SO_OOBINLINE ||
1000	    tp->t_oobflags & TCPOOB_HADDATA) {
1001		error = EINVAL;
1002		goto out;
1003	}
1004	if ((tp->t_oobflags & TCPOOB_HAVEDATA) == 0) {
1005		error = EWOULDBLOCK;
1006		goto out;
1007	}
1008	m->m_len = 1;
1009	*mtod(m, caddr_t) = tp->t_iobc;
1010	if ((flags & MSG_PEEK) == 0)
1011		tp->t_oobflags ^= (TCPOOB_HAVEDATA | TCPOOB_HADDATA);
1012
1013out:
1014	TCPDEBUG2(PRU_RCVOOB);
1015	INP_WUNLOCK(inp);
1016	return (error);
1017}
1018
1019struct pr_usrreqs tcp_usrreqs = {
1020	.pru_abort =		tcp_usr_abort,
1021	.pru_accept =		tcp_usr_accept,
1022	.pru_attach =		tcp_usr_attach,
1023	.pru_bind =		tcp_usr_bind,
1024	.pru_connect =		tcp_usr_connect,
1025	.pru_control =		in_control,
1026	.pru_detach =		tcp_usr_detach,
1027	.pru_disconnect =	tcp_usr_disconnect,
1028	.pru_listen =		tcp_usr_listen,
1029	.pru_peeraddr =		in_getpeeraddr,
1030	.pru_rcvd =		tcp_usr_rcvd,
1031	.pru_rcvoob =		tcp_usr_rcvoob,
1032	.pru_send =		tcp_usr_send,
1033	.pru_shutdown =		tcp_usr_shutdown,
1034	.pru_sockaddr =		in_getsockaddr,
1035	.pru_sosetlabel =	in_pcbsosetlabel,
1036	.pru_close =		tcp_usr_close,
1037};
1038
1039#ifdef INET6
1040struct pr_usrreqs tcp6_usrreqs = {
1041	.pru_abort =		tcp_usr_abort,
1042	.pru_accept =		tcp6_usr_accept,
1043	.pru_attach =		tcp_usr_attach,
1044	.pru_bind =		tcp6_usr_bind,
1045	.pru_connect =		tcp6_usr_connect,
1046	.pru_control =		in6_control,
1047	.pru_detach =		tcp_usr_detach,
1048	.pru_disconnect =	tcp_usr_disconnect,
1049	.pru_listen =		tcp6_usr_listen,
1050	.pru_peeraddr =		in6_mapped_peeraddr,
1051	.pru_rcvd =		tcp_usr_rcvd,
1052	.pru_rcvoob =		tcp_usr_rcvoob,
1053	.pru_send =		tcp_usr_send,
1054	.pru_shutdown =		tcp_usr_shutdown,
1055	.pru_sockaddr =		in6_mapped_sockaddr,
1056 	.pru_sosetlabel =	in_pcbsosetlabel,
1057	.pru_close =		tcp_usr_close,
1058};
1059#endif /* INET6 */
1060
1061/*
1062 * Common subroutine to open a TCP connection to remote host specified
1063 * by struct sockaddr_in in mbuf *nam.  Call in_pcbbind to assign a local
1064 * port number if needed.  Call in_pcbconnect_setup to do the routing and
1065 * to choose a local host address (interface).  If there is an existing
1066 * incarnation of the same connection in TIME-WAIT state and if the remote
1067 * host was sending CC options and if the connection duration was < MSL, then
1068 * truncate the previous TIME-WAIT state and proceed.
1069 * Initialize connection parameters and enter SYN-SENT state.
1070 */
1071static int
1072tcp_connect(struct tcpcb *tp, struct sockaddr *nam, struct thread *td)
1073{
1074	struct inpcb *inp = tp->t_inpcb, *oinp;
1075	struct socket *so = inp->inp_socket;
1076	INIT_VNET_INET(so->so_vnet);
1077	struct in_addr laddr;
1078	u_short lport;
1079	int error;
1080
1081	INP_INFO_WLOCK_ASSERT(&V_tcbinfo);
1082	INP_WLOCK_ASSERT(inp);
1083
1084	if (inp->inp_lport == 0) {
1085		error = in_pcbbind(inp, (struct sockaddr *)0, td->td_ucred);
1086		if (error)
1087			return error;
1088	}
1089
1090	/*
1091	 * Cannot simply call in_pcbconnect, because there might be an
1092	 * earlier incarnation of this same connection still in
1093	 * TIME_WAIT state, creating an ADDRINUSE error.
1094	 */
1095	laddr = inp->inp_laddr;
1096	lport = inp->inp_lport;
1097	error = in_pcbconnect_setup(inp, nam, &laddr.s_addr, &lport,
1098	    &inp->inp_faddr.s_addr, &inp->inp_fport, &oinp, td->td_ucred);
1099	if (error && oinp == NULL)
1100		return error;
1101	if (oinp)
1102		return EADDRINUSE;
1103	inp->inp_laddr = laddr;
1104	in_pcbrehash(inp);
1105
1106	/*
1107	 * Compute window scaling to request:
1108	 * Scale to fit into sweet spot.  See tcp_syncache.c.
1109	 * XXX: This should move to tcp_output().
1110	 */
1111	while (tp->request_r_scale < TCP_MAX_WINSHIFT &&
1112	    (TCP_MAXWIN << tp->request_r_scale) < sb_max)
1113		tp->request_r_scale++;
1114
1115	soisconnecting(so);
1116	TCPSTAT_INC(tcps_connattempt);
1117	tp->t_state = TCPS_SYN_SENT;
1118	tcp_timer_activate(tp, TT_KEEP, tcp_keepinit);
1119	tp->iss = tcp_new_isn(tp);
1120	tp->t_bw_rtseq = tp->iss;
1121	tcp_sendseqinit(tp);
1122
1123	return 0;
1124}
1125
1126#ifdef INET6
1127static int
1128tcp6_connect(struct tcpcb *tp, struct sockaddr *nam, struct thread *td)
1129{
1130	struct inpcb *inp = tp->t_inpcb, *oinp;
1131	struct socket *so = inp->inp_socket;
1132	INIT_VNET_INET(so->so_vnet);
1133	struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)nam;
1134	struct in6_addr *addr6;
1135	int error;
1136
1137	INP_INFO_WLOCK_ASSERT(&V_tcbinfo);
1138	INP_WLOCK_ASSERT(inp);
1139
1140	if (inp->inp_lport == 0) {
1141		error = in6_pcbbind(inp, (struct sockaddr *)0, td->td_ucred);
1142		if (error)
1143			return error;
1144	}
1145
1146	/*
1147	 * Cannot simply call in_pcbconnect, because there might be an
1148	 * earlier incarnation of this same connection still in
1149	 * TIME_WAIT state, creating an ADDRINUSE error.
1150	 * in6_pcbladdr() also handles scope zone IDs.
1151	 */
1152	error = in6_pcbladdr(inp, nam, &addr6);
1153	if (error)
1154		return error;
1155	oinp = in6_pcblookup_hash(inp->inp_pcbinfo,
1156				  &sin6->sin6_addr, sin6->sin6_port,
1157				  IN6_IS_ADDR_UNSPECIFIED(&inp->in6p_laddr)
1158				  ? addr6
1159				  : &inp->in6p_laddr,
1160				  inp->inp_lport,  0, NULL);
1161	if (oinp)
1162		return EADDRINUSE;
1163	if (IN6_IS_ADDR_UNSPECIFIED(&inp->in6p_laddr))
1164		inp->in6p_laddr = *addr6;
1165	inp->in6p_faddr = sin6->sin6_addr;
1166	inp->inp_fport = sin6->sin6_port;
1167	/* update flowinfo - draft-itojun-ipv6-flowlabel-api-00 */
1168	inp->inp_flow &= ~IPV6_FLOWLABEL_MASK;
1169	if (inp->inp_flags & IN6P_AUTOFLOWLABEL)
1170		inp->inp_flow |=
1171		    (htonl(ip6_randomflowlabel()) & IPV6_FLOWLABEL_MASK);
1172	in_pcbrehash(inp);
1173
1174	/* Compute window scaling to request.  */
1175	while (tp->request_r_scale < TCP_MAX_WINSHIFT &&
1176	    (TCP_MAXWIN << tp->request_r_scale) < sb_max)
1177		tp->request_r_scale++;
1178
1179	soisconnecting(so);
1180	TCPSTAT_INC(tcps_connattempt);
1181	tp->t_state = TCPS_SYN_SENT;
1182	tcp_timer_activate(tp, TT_KEEP, tcp_keepinit);
1183	tp->iss = tcp_new_isn(tp);
1184	tp->t_bw_rtseq = tp->iss;
1185	tcp_sendseqinit(tp);
1186
1187	return 0;
1188}
1189#endif /* INET6 */
1190
1191/*
1192 * Export TCP internal state information via a struct tcp_info, based on the
1193 * Linux 2.6 API.  Not ABI compatible as our constants are mapped differently
1194 * (TCP state machine, etc).  We export all information using FreeBSD-native
1195 * constants -- for example, the numeric values for tcpi_state will differ
1196 * from Linux.
1197 */
1198static void
1199tcp_fill_info(struct tcpcb *tp, struct tcp_info *ti)
1200{
1201
1202	INP_WLOCK_ASSERT(tp->t_inpcb);
1203	bzero(ti, sizeof(*ti));
1204
1205	ti->tcpi_state = tp->t_state;
1206	if ((tp->t_flags & TF_REQ_TSTMP) && (tp->t_flags & TF_RCVD_TSTMP))
1207		ti->tcpi_options |= TCPI_OPT_TIMESTAMPS;
1208	if (tp->t_flags & TF_SACK_PERMIT)
1209		ti->tcpi_options |= TCPI_OPT_SACK;
1210	if ((tp->t_flags & TF_REQ_SCALE) && (tp->t_flags & TF_RCVD_SCALE)) {
1211		ti->tcpi_options |= TCPI_OPT_WSCALE;
1212		ti->tcpi_snd_wscale = tp->snd_scale;
1213		ti->tcpi_rcv_wscale = tp->rcv_scale;
1214	}
1215
1216	ti->tcpi_rtt = ((u_int64_t)tp->t_srtt * tick) >> TCP_RTT_SHIFT;
1217	ti->tcpi_rttvar = ((u_int64_t)tp->t_rttvar * tick) >> TCP_RTTVAR_SHIFT;
1218
1219	ti->tcpi_snd_ssthresh = tp->snd_ssthresh;
1220	ti->tcpi_snd_cwnd = tp->snd_cwnd;
1221
1222	/*
1223	 * FreeBSD-specific extension fields for tcp_info.
1224	 */
1225	ti->tcpi_rcv_space = tp->rcv_wnd;
1226	ti->tcpi_rcv_nxt = tp->rcv_nxt;
1227	ti->tcpi_snd_wnd = tp->snd_wnd;
1228	ti->tcpi_snd_bwnd = tp->snd_bwnd;
1229	ti->tcpi_snd_nxt = tp->snd_nxt;
1230	ti->__tcpi_snd_mss = tp->t_maxseg;
1231	ti->__tcpi_rcv_mss = tp->t_maxseg;
1232	if (tp->t_flags & TF_TOE)
1233		ti->tcpi_options |= TCPI_OPT_TOE;
1234}
1235
1236/*
1237 * tcp_ctloutput() must drop the inpcb lock before performing copyin on
1238 * socket option arguments.  When it re-acquires the lock after the copy, it
1239 * has to revalidate that the connection is still valid for the socket
1240 * option.
1241 */
1242#define INP_WLOCK_RECHECK(inp) do {					\
1243	INP_WLOCK(inp);							\
1244	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {		\
1245		INP_WUNLOCK(inp);					\
1246		return (ECONNRESET);					\
1247	}								\
1248	tp = intotcpcb(inp);						\
1249} while(0)
1250
1251int
1252tcp_ctloutput(struct socket *so, struct sockopt *sopt)
1253{
1254	INIT_VNET_INET(so->so_vnet);
1255	int	error, opt, optval;
1256	struct	inpcb *inp;
1257	struct	tcpcb *tp;
1258	struct	tcp_info ti;
1259
1260	error = 0;
1261	inp = sotoinpcb(so);
1262	KASSERT(inp != NULL, ("tcp_ctloutput: inp == NULL"));
1263	INP_WLOCK(inp);
1264	if (sopt->sopt_level != IPPROTO_TCP) {
1265#ifdef INET6
1266		if (inp->inp_vflag & INP_IPV6PROTO) {
1267			INP_WUNLOCK(inp);
1268			error = ip6_ctloutput(so, sopt);
1269		} else {
1270#endif /* INET6 */
1271			INP_WUNLOCK(inp);
1272			error = ip_ctloutput(so, sopt);
1273#ifdef INET6
1274		}
1275#endif
1276		return (error);
1277	}
1278	if (inp->inp_flags & (INP_TIMEWAIT | INP_DROPPED)) {
1279		INP_WUNLOCK(inp);
1280		return (ECONNRESET);
1281	}
1282
1283	switch (sopt->sopt_dir) {
1284	case SOPT_SET:
1285		switch (sopt->sopt_name) {
1286#ifdef TCP_SIGNATURE
1287		case TCP_MD5SIG:
1288			INP_WUNLOCK(inp);
1289			error = sooptcopyin(sopt, &optval, sizeof optval,
1290			    sizeof optval);
1291			if (error)
1292				return (error);
1293
1294			INP_WLOCK_RECHECK(inp);
1295			if (optval > 0)
1296				tp->t_flags |= TF_SIGNATURE;
1297			else
1298				tp->t_flags &= ~TF_SIGNATURE;
1299			INP_WUNLOCK(inp);
1300			break;
1301#endif /* TCP_SIGNATURE */
1302		case TCP_NODELAY:
1303		case TCP_NOOPT:
1304			INP_WUNLOCK(inp);
1305			error = sooptcopyin(sopt, &optval, sizeof optval,
1306			    sizeof optval);
1307			if (error)
1308				return (error);
1309
1310			INP_WLOCK_RECHECK(inp);
1311			switch (sopt->sopt_name) {
1312			case TCP_NODELAY:
1313				opt = TF_NODELAY;
1314				break;
1315			case TCP_NOOPT:
1316				opt = TF_NOOPT;
1317				break;
1318			default:
1319				opt = 0; /* dead code to fool gcc */
1320				break;
1321			}
1322
1323			if (optval)
1324				tp->t_flags |= opt;
1325			else
1326				tp->t_flags &= ~opt;
1327			INP_WUNLOCK(inp);
1328			break;
1329
1330		case TCP_NOPUSH:
1331			INP_WUNLOCK(inp);
1332			error = sooptcopyin(sopt, &optval, sizeof optval,
1333			    sizeof optval);
1334			if (error)
1335				return (error);
1336
1337			INP_WLOCK_RECHECK(inp);
1338			if (optval)
1339				tp->t_flags |= TF_NOPUSH;
1340			else {
1341				tp->t_flags &= ~TF_NOPUSH;
1342				error = tcp_output(tp);
1343			}
1344			INP_WUNLOCK(inp);
1345			break;
1346
1347		case TCP_MAXSEG:
1348			INP_WUNLOCK(inp);
1349			error = sooptcopyin(sopt, &optval, sizeof optval,
1350			    sizeof optval);
1351			if (error)
1352				return (error);
1353
1354			INP_WLOCK_RECHECK(inp);
1355			if (optval > 0 && optval <= tp->t_maxseg &&
1356			    optval + 40 >= V_tcp_minmss)
1357				tp->t_maxseg = optval;
1358			else
1359				error = EINVAL;
1360			INP_WUNLOCK(inp);
1361			break;
1362
1363		case TCP_INFO:
1364			INP_WUNLOCK(inp);
1365			error = EINVAL;
1366			break;
1367
1368		default:
1369			INP_WUNLOCK(inp);
1370			error = ENOPROTOOPT;
1371			break;
1372		}
1373		break;
1374
1375	case SOPT_GET:
1376		tp = intotcpcb(inp);
1377		switch (sopt->sopt_name) {
1378#ifdef TCP_SIGNATURE
1379		case TCP_MD5SIG:
1380			optval = (tp->t_flags & TF_SIGNATURE) ? 1 : 0;
1381			INP_WUNLOCK(inp);
1382			error = sooptcopyout(sopt, &optval, sizeof optval);
1383			break;
1384#endif
1385
1386		case TCP_NODELAY:
1387			optval = tp->t_flags & TF_NODELAY;
1388			INP_WUNLOCK(inp);
1389			error = sooptcopyout(sopt, &optval, sizeof optval);
1390			break;
1391		case TCP_MAXSEG:
1392			optval = tp->t_maxseg;
1393			INP_WUNLOCK(inp);
1394			error = sooptcopyout(sopt, &optval, sizeof optval);
1395			break;
1396		case TCP_NOOPT:
1397			optval = tp->t_flags & TF_NOOPT;
1398			INP_WUNLOCK(inp);
1399			error = sooptcopyout(sopt, &optval, sizeof optval);
1400			break;
1401		case TCP_NOPUSH:
1402			optval = tp->t_flags & TF_NOPUSH;
1403			INP_WUNLOCK(inp);
1404			error = sooptcopyout(sopt, &optval, sizeof optval);
1405			break;
1406		case TCP_INFO:
1407			tcp_fill_info(tp, &ti);
1408			INP_WUNLOCK(inp);
1409			error = sooptcopyout(sopt, &ti, sizeof ti);
1410			break;
1411		default:
1412			INP_WUNLOCK(inp);
1413			error = ENOPROTOOPT;
1414			break;
1415		}
1416		break;
1417	}
1418	return (error);
1419}
1420#undef INP_WLOCK_RECHECK
1421
1422/*
1423 * tcp_sendspace and tcp_recvspace are the default send and receive window
1424 * sizes, respectively.  These are obsolescent (this information should
1425 * be set by the route).
1426 */
1427u_long	tcp_sendspace = 1024*32;
1428SYSCTL_ULONG(_net_inet_tcp, TCPCTL_SENDSPACE, sendspace, CTLFLAG_RW,
1429    &tcp_sendspace , 0, "Maximum outgoing TCP datagram size");
1430u_long	tcp_recvspace = 1024*64;
1431SYSCTL_ULONG(_net_inet_tcp, TCPCTL_RECVSPACE, recvspace, CTLFLAG_RW,
1432    &tcp_recvspace , 0, "Maximum incoming TCP datagram size");
1433
1434/*
1435 * Attach TCP protocol to socket, allocating
1436 * internet protocol control block, tcp control block,
1437 * bufer space, and entering LISTEN state if to accept connections.
1438 */
1439static int
1440tcp_attach(struct socket *so)
1441{
1442	INIT_VNET_INET(so->so_vnet);
1443	struct tcpcb *tp;
1444	struct inpcb *inp;
1445	int error;
1446
1447	if (so->so_snd.sb_hiwat == 0 || so->so_rcv.sb_hiwat == 0) {
1448		error = soreserve(so, tcp_sendspace, tcp_recvspace);
1449		if (error)
1450			return (error);
1451	}
1452	so->so_rcv.sb_flags |= SB_AUTOSIZE;
1453	so->so_snd.sb_flags |= SB_AUTOSIZE;
1454	INP_INFO_WLOCK(&V_tcbinfo);
1455	error = in_pcballoc(so, &V_tcbinfo);
1456	if (error) {
1457		INP_INFO_WUNLOCK(&V_tcbinfo);
1458		return (error);
1459	}
1460	inp = sotoinpcb(so);
1461#ifdef INET6
1462	if (inp->inp_vflag & INP_IPV6PROTO) {
1463		inp->inp_vflag |= INP_IPV6;
1464		inp->in6p_hops = -1;	/* use kernel default */
1465	}
1466	else
1467#endif
1468	inp->inp_vflag |= INP_IPV4;
1469	tp = tcp_newtcpcb(inp);
1470	if (tp == NULL) {
1471		in_pcbdetach(inp);
1472		in_pcbfree(inp);
1473		INP_INFO_WUNLOCK(&V_tcbinfo);
1474		return (ENOBUFS);
1475	}
1476	tp->t_state = TCPS_CLOSED;
1477	INP_WUNLOCK(inp);
1478	INP_INFO_WUNLOCK(&V_tcbinfo);
1479	return (0);
1480}
1481
1482/*
1483 * Initiate (or continue) disconnect.
1484 * If embryonic state, just send reset (once).
1485 * If in ``let data drain'' option and linger null, just drop.
1486 * Otherwise (hard), mark socket disconnecting and drop
1487 * current input data; switch states based on user close, and
1488 * send segment to peer (with FIN).
1489 */
1490static void
1491tcp_disconnect(struct tcpcb *tp)
1492{
1493	struct inpcb *inp = tp->t_inpcb;
1494	struct socket *so = inp->inp_socket;
1495#ifdef INVARIANTS
1496	INIT_VNET_INET(so->so_vnet);
1497#endif
1498
1499	INP_INFO_WLOCK_ASSERT(&V_tcbinfo);
1500	INP_WLOCK_ASSERT(inp);
1501
1502	/*
1503	 * Neither tcp_close() nor tcp_drop() should return NULL, as the
1504	 * socket is still open.
1505	 */
1506	if (tp->t_state < TCPS_ESTABLISHED) {
1507		tp = tcp_close(tp);
1508		KASSERT(tp != NULL,
1509		    ("tcp_disconnect: tcp_close() returned NULL"));
1510	} else if ((so->so_options & SO_LINGER) && so->so_linger == 0) {
1511		tp = tcp_drop(tp, 0);
1512		KASSERT(tp != NULL,
1513		    ("tcp_disconnect: tcp_drop() returned NULL"));
1514	} else {
1515		soisdisconnecting(so);
1516		sbflush(&so->so_rcv);
1517		tcp_usrclosed(tp);
1518		if (!(inp->inp_flags & INP_DROPPED))
1519			tcp_output_disconnect(tp);
1520	}
1521}
1522
1523/*
1524 * User issued close, and wish to trail through shutdown states:
1525 * if never received SYN, just forget it.  If got a SYN from peer,
1526 * but haven't sent FIN, then go to FIN_WAIT_1 state to send peer a FIN.
1527 * If already got a FIN from peer, then almost done; go to LAST_ACK
1528 * state.  In all other cases, have already sent FIN to peer (e.g.
1529 * after PRU_SHUTDOWN), and just have to play tedious game waiting
1530 * for peer to send FIN or not respond to keep-alives, etc.
1531 * We can let the user exit from the close as soon as the FIN is acked.
1532 */
1533static void
1534tcp_usrclosed(struct tcpcb *tp)
1535{
1536#ifdef INVARIANTS
1537	INIT_VNET_INET(tp->t_inpcb->inp_vnet);
1538#endif
1539
1540	INP_INFO_WLOCK_ASSERT(&V_tcbinfo);
1541	INP_WLOCK_ASSERT(tp->t_inpcb);
1542
1543	switch (tp->t_state) {
1544	case TCPS_LISTEN:
1545		tcp_offload_listen_close(tp);
1546		/* FALLTHROUGH */
1547	case TCPS_CLOSED:
1548		tp->t_state = TCPS_CLOSED;
1549		tp = tcp_close(tp);
1550		/*
1551		 * tcp_close() should never return NULL here as the socket is
1552		 * still open.
1553		 */
1554		KASSERT(tp != NULL,
1555		    ("tcp_usrclosed: tcp_close() returned NULL"));
1556		break;
1557
1558	case TCPS_SYN_SENT:
1559	case TCPS_SYN_RECEIVED:
1560		tp->t_flags |= TF_NEEDFIN;
1561		break;
1562
1563	case TCPS_ESTABLISHED:
1564		tp->t_state = TCPS_FIN_WAIT_1;
1565		break;
1566
1567	case TCPS_CLOSE_WAIT:
1568		tp->t_state = TCPS_LAST_ACK;
1569		break;
1570	}
1571	if (tp->t_state >= TCPS_FIN_WAIT_2) {
1572		soisdisconnected(tp->t_inpcb->inp_socket);
1573		/* Prevent the connection hanging in FIN_WAIT_2 forever. */
1574		if (tp->t_state == TCPS_FIN_WAIT_2) {
1575			int timeout;
1576
1577			timeout = (tcp_fast_finwait2_recycle) ?
1578			    tcp_finwait2_timeout : tcp_maxidle;
1579			tcp_timer_activate(tp, TT_2MSL, timeout);
1580		}
1581	}
1582}
1583
1584#ifdef DDB
1585static void
1586db_print_indent(int indent)
1587{
1588	int i;
1589
1590	for (i = 0; i < indent; i++)
1591		db_printf(" ");
1592}
1593
1594static void
1595db_print_tstate(int t_state)
1596{
1597
1598	switch (t_state) {
1599	case TCPS_CLOSED:
1600		db_printf("TCPS_CLOSED");
1601		return;
1602
1603	case TCPS_LISTEN:
1604		db_printf("TCPS_LISTEN");
1605		return;
1606
1607	case TCPS_SYN_SENT:
1608		db_printf("TCPS_SYN_SENT");
1609		return;
1610
1611	case TCPS_SYN_RECEIVED:
1612		db_printf("TCPS_SYN_RECEIVED");
1613		return;
1614
1615	case TCPS_ESTABLISHED:
1616		db_printf("TCPS_ESTABLISHED");
1617		return;
1618
1619	case TCPS_CLOSE_WAIT:
1620		db_printf("TCPS_CLOSE_WAIT");
1621		return;
1622
1623	case TCPS_FIN_WAIT_1:
1624		db_printf("TCPS_FIN_WAIT_1");
1625		return;
1626
1627	case TCPS_CLOSING:
1628		db_printf("TCPS_CLOSING");
1629		return;
1630
1631	case TCPS_LAST_ACK:
1632		db_printf("TCPS_LAST_ACK");
1633		return;
1634
1635	case TCPS_FIN_WAIT_2:
1636		db_printf("TCPS_FIN_WAIT_2");
1637		return;
1638
1639	case TCPS_TIME_WAIT:
1640		db_printf("TCPS_TIME_WAIT");
1641		return;
1642
1643	default:
1644		db_printf("unknown");
1645		return;
1646	}
1647}
1648
1649static void
1650db_print_tflags(u_int t_flags)
1651{
1652	int comma;
1653
1654	comma = 0;
1655	if (t_flags & TF_ACKNOW) {
1656		db_printf("%sTF_ACKNOW", comma ? ", " : "");
1657		comma = 1;
1658	}
1659	if (t_flags & TF_DELACK) {
1660		db_printf("%sTF_DELACK", comma ? ", " : "");
1661		comma = 1;
1662	}
1663	if (t_flags & TF_NODELAY) {
1664		db_printf("%sTF_NODELAY", comma ? ", " : "");
1665		comma = 1;
1666	}
1667	if (t_flags & TF_NOOPT) {
1668		db_printf("%sTF_NOOPT", comma ? ", " : "");
1669		comma = 1;
1670	}
1671	if (t_flags & TF_SENTFIN) {
1672		db_printf("%sTF_SENTFIN", comma ? ", " : "");
1673		comma = 1;
1674	}
1675	if (t_flags & TF_REQ_SCALE) {
1676		db_printf("%sTF_REQ_SCALE", comma ? ", " : "");
1677		comma = 1;
1678	}
1679	if (t_flags & TF_RCVD_SCALE) {
1680		db_printf("%sTF_RECVD_SCALE", comma ? ", " : "");
1681		comma = 1;
1682	}
1683	if (t_flags & TF_REQ_TSTMP) {
1684		db_printf("%sTF_REQ_TSTMP", comma ? ", " : "");
1685		comma = 1;
1686	}
1687	if (t_flags & TF_RCVD_TSTMP) {
1688		db_printf("%sTF_RCVD_TSTMP", comma ? ", " : "");
1689		comma = 1;
1690	}
1691	if (t_flags & TF_SACK_PERMIT) {
1692		db_printf("%sTF_SACK_PERMIT", comma ? ", " : "");
1693		comma = 1;
1694	}
1695	if (t_flags & TF_NEEDSYN) {
1696		db_printf("%sTF_NEEDSYN", comma ? ", " : "");
1697		comma = 1;
1698	}
1699	if (t_flags & TF_NEEDFIN) {
1700		db_printf("%sTF_NEEDFIN", comma ? ", " : "");
1701		comma = 1;
1702	}
1703	if (t_flags & TF_NOPUSH) {
1704		db_printf("%sTF_NOPUSH", comma ? ", " : "");
1705		comma = 1;
1706	}
1707	if (t_flags & TF_NOPUSH) {
1708		db_printf("%sTF_NOPUSH", comma ? ", " : "");
1709		comma = 1;
1710	}
1711	if (t_flags & TF_MORETOCOME) {
1712		db_printf("%sTF_MORETOCOME", comma ? ", " : "");
1713		comma = 1;
1714	}
1715	if (t_flags & TF_LQ_OVERFLOW) {
1716		db_printf("%sTF_LQ_OVERFLOW", comma ? ", " : "");
1717		comma = 1;
1718	}
1719	if (t_flags & TF_LASTIDLE) {
1720		db_printf("%sTF_LASTIDLE", comma ? ", " : "");
1721		comma = 1;
1722	}
1723	if (t_flags & TF_RXWIN0SENT) {
1724		db_printf("%sTF_RXWIN0SENT", comma ? ", " : "");
1725		comma = 1;
1726	}
1727	if (t_flags & TF_FASTRECOVERY) {
1728		db_printf("%sTF_FASTRECOVERY", comma ? ", " : "");
1729		comma = 1;
1730	}
1731	if (t_flags & TF_WASFRECOVERY) {
1732		db_printf("%sTF_WASFRECOVERY", comma ? ", " : "");
1733		comma = 1;
1734	}
1735	if (t_flags & TF_SIGNATURE) {
1736		db_printf("%sTF_SIGNATURE", comma ? ", " : "");
1737		comma = 1;
1738	}
1739	if (t_flags & TF_FORCEDATA) {
1740		db_printf("%sTF_FORCEDATA", comma ? ", " : "");
1741		comma = 1;
1742	}
1743	if (t_flags & TF_TSO) {
1744		db_printf("%sTF_TSO", comma ? ", " : "");
1745		comma = 1;
1746	}
1747	if (t_flags & TF_ECN_PERMIT) {
1748		db_printf("%sTF_ECN_PERMIT", comma ? ", " : "");
1749		comma = 1;
1750	}
1751}
1752
1753static void
1754db_print_toobflags(char t_oobflags)
1755{
1756	int comma;
1757
1758	comma = 0;
1759	if (t_oobflags & TCPOOB_HAVEDATA) {
1760		db_printf("%sTCPOOB_HAVEDATA", comma ? ", " : "");
1761		comma = 1;
1762	}
1763	if (t_oobflags & TCPOOB_HADDATA) {
1764		db_printf("%sTCPOOB_HADDATA", comma ? ", " : "");
1765		comma = 1;
1766	}
1767}
1768
1769static void
1770db_print_tcpcb(struct tcpcb *tp, const char *name, int indent)
1771{
1772
1773	db_print_indent(indent);
1774	db_printf("%s at %p\n", name, tp);
1775
1776	indent += 2;
1777
1778	db_print_indent(indent);
1779	db_printf("t_segq first: %p   t_segqlen: %d   t_dupacks: %d\n",
1780	   LIST_FIRST(&tp->t_segq), tp->t_segqlen, tp->t_dupacks);
1781
1782	db_print_indent(indent);
1783	db_printf("tt_rexmt: %p   tt_persist: %p   tt_keep: %p\n",
1784	    &tp->t_timers->tt_rexmt, &tp->t_timers->tt_persist, &tp->t_timers->tt_keep);
1785
1786	db_print_indent(indent);
1787	db_printf("tt_2msl: %p   tt_delack: %p   t_inpcb: %p\n", &tp->t_timers->tt_2msl,
1788	    &tp->t_timers->tt_delack, tp->t_inpcb);
1789
1790	db_print_indent(indent);
1791	db_printf("t_state: %d (", tp->t_state);
1792	db_print_tstate(tp->t_state);
1793	db_printf(")\n");
1794
1795	db_print_indent(indent);
1796	db_printf("t_flags: 0x%x (", tp->t_flags);
1797	db_print_tflags(tp->t_flags);
1798	db_printf(")\n");
1799
1800	db_print_indent(indent);
1801	db_printf("snd_una: 0x%08x   snd_max: 0x%08x   snd_nxt: x0%08x\n",
1802	    tp->snd_una, tp->snd_max, tp->snd_nxt);
1803
1804	db_print_indent(indent);
1805	db_printf("snd_up: 0x%08x   snd_wl1: 0x%08x   snd_wl2: 0x%08x\n",
1806	   tp->snd_up, tp->snd_wl1, tp->snd_wl2);
1807
1808	db_print_indent(indent);
1809	db_printf("iss: 0x%08x   irs: 0x%08x   rcv_nxt: 0x%08x\n",
1810	    tp->iss, tp->irs, tp->rcv_nxt);
1811
1812	db_print_indent(indent);
1813	db_printf("rcv_adv: 0x%08x   rcv_wnd: %lu   rcv_up: 0x%08x\n",
1814	    tp->rcv_adv, tp->rcv_wnd, tp->rcv_up);
1815
1816	db_print_indent(indent);
1817	db_printf("snd_wnd: %lu   snd_cwnd: %lu   snd_bwnd: %lu\n",
1818	   tp->snd_wnd, tp->snd_cwnd, tp->snd_bwnd);
1819
1820	db_print_indent(indent);
1821	db_printf("snd_ssthresh: %lu   snd_bandwidth: %lu   snd_recover: "
1822	    "0x%08x\n", tp->snd_ssthresh, tp->snd_bandwidth,
1823	    tp->snd_recover);
1824
1825	db_print_indent(indent);
1826	db_printf("t_maxopd: %u   t_rcvtime: %lu   t_startime: %lu\n",
1827	    tp->t_maxopd, tp->t_rcvtime, tp->t_starttime);
1828
1829	db_print_indent(indent);
1830	db_printf("t_rttime: %d   t_rtsq: 0x%08x   t_bw_rtttime: %d\n",
1831	    tp->t_rtttime, tp->t_rtseq, tp->t_bw_rtttime);
1832
1833	db_print_indent(indent);
1834	db_printf("t_bw_rtseq: 0x%08x   t_rxtcur: %d   t_maxseg: %u   "
1835	    "t_srtt: %d\n", tp->t_bw_rtseq, tp->t_rxtcur, tp->t_maxseg,
1836	    tp->t_srtt);
1837
1838	db_print_indent(indent);
1839	db_printf("t_rttvar: %d   t_rxtshift: %d   t_rttmin: %u   "
1840	    "t_rttbest: %u\n", tp->t_rttvar, tp->t_rxtshift, tp->t_rttmin,
1841	    tp->t_rttbest);
1842
1843	db_print_indent(indent);
1844	db_printf("t_rttupdated: %lu   max_sndwnd: %lu   t_softerror: %d\n",
1845	    tp->t_rttupdated, tp->max_sndwnd, tp->t_softerror);
1846
1847	db_print_indent(indent);
1848	db_printf("t_oobflags: 0x%x (", tp->t_oobflags);
1849	db_print_toobflags(tp->t_oobflags);
1850	db_printf(")   t_iobc: 0x%02x\n", tp->t_iobc);
1851
1852	db_print_indent(indent);
1853	db_printf("snd_scale: %u   rcv_scale: %u   request_r_scale: %u\n",
1854	    tp->snd_scale, tp->rcv_scale, tp->request_r_scale);
1855
1856	db_print_indent(indent);
1857	db_printf("ts_recent: %u   ts_recent_age: %lu\n",
1858	    tp->ts_recent, tp->ts_recent_age);
1859
1860	db_print_indent(indent);
1861	db_printf("ts_offset: %u   last_ack_sent: 0x%08x   snd_cwnd_prev: "
1862	    "%lu\n", tp->ts_offset, tp->last_ack_sent, tp->snd_cwnd_prev);
1863
1864	db_print_indent(indent);
1865	db_printf("snd_ssthresh_prev: %lu   snd_recover_prev: 0x%08x   "
1866	    "t_badrxtwin: %lu\n", tp->snd_ssthresh_prev,
1867	    tp->snd_recover_prev, tp->t_badrxtwin);
1868
1869	db_print_indent(indent);
1870	db_printf("snd_numholes: %d  snd_holes first: %p\n",
1871	    tp->snd_numholes, TAILQ_FIRST(&tp->snd_holes));
1872
1873	db_print_indent(indent);
1874	db_printf("snd_fack: 0x%08x   rcv_numsacks: %d   sack_newdata: "
1875	    "0x%08x\n", tp->snd_fack, tp->rcv_numsacks, tp->sack_newdata);
1876
1877	/* Skip sackblks, sackhint. */
1878
1879	db_print_indent(indent);
1880	db_printf("t_rttlow: %d   rfbuf_ts: %u   rfbuf_cnt: %d\n",
1881	    tp->t_rttlow, tp->rfbuf_ts, tp->rfbuf_cnt);
1882}
1883
1884DB_SHOW_COMMAND(tcpcb, db_show_tcpcb)
1885{
1886	struct tcpcb *tp;
1887
1888	if (!have_addr) {
1889		db_printf("usage: show tcpcb <addr>\n");
1890		return;
1891	}
1892	tp = (struct tcpcb *)addr;
1893
1894	db_print_tcpcb(tp, "tcpcb", 0);
1895}
1896#endif
1897