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uipc_usrreq.c revision 1.93
      1  1.93  christos /*	$NetBSD: uipc_usrreq.c,v 1.93 2006/09/03 21:15:29 christos Exp $	*/
      2  1.30   thorpej 
      3  1.30   thorpej /*-
      4  1.77      matt  * Copyright (c) 1998, 2000, 2004 The NetBSD Foundation, Inc.
      5  1.30   thorpej  * All rights reserved.
      6  1.30   thorpej  *
      7  1.30   thorpej  * This code is derived from software contributed to The NetBSD Foundation
      8  1.30   thorpej  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9  1.30   thorpej  * NASA Ames Research Center.
     10  1.30   thorpej  *
     11  1.30   thorpej  * Redistribution and use in source and binary forms, with or without
     12  1.30   thorpej  * modification, are permitted provided that the following conditions
     13  1.30   thorpej  * are met:
     14  1.30   thorpej  * 1. Redistributions of source code must retain the above copyright
     15  1.30   thorpej  *    notice, this list of conditions and the following disclaimer.
     16  1.30   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     17  1.30   thorpej  *    notice, this list of conditions and the following disclaimer in the
     18  1.30   thorpej  *    documentation and/or other materials provided with the distribution.
     19  1.30   thorpej  * 3. All advertising materials mentioning features or use of this software
     20  1.30   thorpej  *    must display the following acknowledgement:
     21  1.30   thorpej  *	This product includes software developed by the NetBSD
     22  1.30   thorpej  *	Foundation, Inc. and its contributors.
     23  1.30   thorpej  * 4. Neither the name of The NetBSD Foundation nor the names of its
     24  1.30   thorpej  *    contributors may be used to endorse or promote products derived
     25  1.30   thorpej  *    from this software without specific prior written permission.
     26  1.30   thorpej  *
     27  1.30   thorpej  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     28  1.30   thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     29  1.30   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     30  1.30   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     31  1.30   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     32  1.30   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     33  1.30   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     34  1.30   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     35  1.30   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     36  1.30   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     37  1.30   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     38  1.30   thorpej  */
     39  1.10       cgd 
     40   1.1       cgd /*
     41   1.8   mycroft  * Copyright (c) 1982, 1986, 1989, 1991, 1993
     42   1.8   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  1.67       agc  * 3. Neither the name of the University nor the names of its contributors
     53  1.67       agc  *    may be used to endorse or promote products derived from this software
     54  1.67       agc  *    without specific prior written permission.
     55  1.67       agc  *
     56  1.67       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     57  1.67       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     58  1.67       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     59  1.67       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     60  1.67       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     61  1.67       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     62  1.67       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     63  1.67       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     64  1.67       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     65  1.67       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     66  1.67       agc  * SUCH DAMAGE.
     67  1.67       agc  *
     68  1.67       agc  *	@(#)uipc_usrreq.c	8.9 (Berkeley) 5/14/95
     69  1.67       agc  */
     70  1.67       agc 
     71  1.67       agc /*
     72  1.67       agc  * Copyright (c) 1997 Christopher G. Demetriou.  All rights reserved.
     73  1.67       agc  *
     74  1.67       agc  * Redistribution and use in source and binary forms, with or without
     75  1.67       agc  * modification, are permitted provided that the following conditions
     76  1.67       agc  * are met:
     77  1.67       agc  * 1. Redistributions of source code must retain the above copyright
     78  1.67       agc  *    notice, this list of conditions and the following disclaimer.
     79  1.67       agc  * 2. Redistributions in binary form must reproduce the above copyright
     80  1.67       agc  *    notice, this list of conditions and the following disclaimer in the
     81  1.67       agc  *    documentation and/or other materials provided with the distribution.
     82   1.1       cgd  * 3. All advertising materials mentioning features or use of this software
     83   1.1       cgd  *    must display the following acknowledgement:
     84   1.1       cgd  *	This product includes software developed by the University of
     85   1.1       cgd  *	California, Berkeley and its contributors.
     86   1.1       cgd  * 4. Neither the name of the University nor the names of its contributors
     87   1.1       cgd  *    may be used to endorse or promote products derived from this software
     88   1.1       cgd  *    without specific prior written permission.
     89   1.1       cgd  *
     90   1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     91   1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     92   1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     93   1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     94   1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     95   1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     96   1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     97   1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     98   1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     99   1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
    100   1.1       cgd  * SUCH DAMAGE.
    101   1.1       cgd  *
    102  1.31      fvdl  *	@(#)uipc_usrreq.c	8.9 (Berkeley) 5/14/95
    103   1.1       cgd  */
    104  1.53     lukem 
    105  1.53     lukem #include <sys/cdefs.h>
    106  1.93  christos __KERNEL_RCSID(0, "$NetBSD: uipc_usrreq.c,v 1.93 2006/09/03 21:15:29 christos Exp $");
    107   1.1       cgd 
    108   1.7   mycroft #include <sys/param.h>
    109   1.8   mycroft #include <sys/systm.h>
    110   1.7   mycroft #include <sys/proc.h>
    111   1.7   mycroft #include <sys/filedesc.h>
    112   1.7   mycroft #include <sys/domain.h>
    113   1.7   mycroft #include <sys/protosw.h>
    114   1.7   mycroft #include <sys/socket.h>
    115   1.7   mycroft #include <sys/socketvar.h>
    116   1.7   mycroft #include <sys/unpcb.h>
    117   1.7   mycroft #include <sys/un.h>
    118   1.7   mycroft #include <sys/namei.h>
    119   1.7   mycroft #include <sys/vnode.h>
    120   1.7   mycroft #include <sys/file.h>
    121   1.7   mycroft #include <sys/stat.h>
    122   1.7   mycroft #include <sys/mbuf.h>
    123  1.91      elad #include <sys/kauth.h>
    124   1.1       cgd 
    125   1.1       cgd /*
    126   1.1       cgd  * Unix communications domain.
    127   1.1       cgd  *
    128   1.1       cgd  * TODO:
    129   1.1       cgd  *	SEQPACKET, RDM
    130   1.1       cgd  *	rethink name space problems
    131   1.1       cgd  *	need a proper out-of-band
    132   1.1       cgd  */
    133  1.93  christos const struct sockaddr_un sun_noname = {
    134  1.93  christos 	.sun_len = sizeof(sun_noname),
    135  1.93  christos 	.sun_family = AF_LOCAL,
    136  1.93  christos };
    137   1.1       cgd ino_t	unp_ino;			/* prototype for fake inode numbers */
    138   1.1       cgd 
    139  1.92        ad struct mbuf *unp_addsockcred(struct lwp *, struct mbuf *);
    140  1.30   thorpej 
    141  1.20   mycroft int
    142  1.76      matt unp_output(struct mbuf *m, struct mbuf *control, struct unpcb *unp,
    143  1.92        ad 	struct lwp *l)
    144  1.20   mycroft {
    145  1.20   mycroft 	struct socket *so2;
    146  1.77      matt 	const struct sockaddr_un *sun;
    147  1.20   mycroft 
    148  1.20   mycroft 	so2 = unp->unp_conn->unp_socket;
    149  1.20   mycroft 	if (unp->unp_addr)
    150  1.20   mycroft 		sun = unp->unp_addr;
    151  1.20   mycroft 	else
    152  1.20   mycroft 		sun = &sun_noname;
    153  1.30   thorpej 	if (unp->unp_conn->unp_flags & UNP_WANTCRED)
    154  1.92        ad 		control = unp_addsockcred(l, control);
    155  1.82  christos 	if (sbappendaddr(&so2->so_rcv, (const struct sockaddr *)sun, m,
    156  1.20   mycroft 	    control) == 0) {
    157  1.20   mycroft 		m_freem(control);
    158  1.20   mycroft 		m_freem(m);
    159  1.79   darrenr 		so2->so_rcv.sb_overflowed++;
    160  1.60  christos 		return (ENOBUFS);
    161  1.20   mycroft 	} else {
    162  1.20   mycroft 		sorwakeup(so2);
    163  1.20   mycroft 		return (0);
    164  1.20   mycroft 	}
    165  1.20   mycroft }
    166  1.20   mycroft 
    167  1.20   mycroft void
    168  1.76      matt unp_setsockaddr(struct unpcb *unp, struct mbuf *nam)
    169  1.20   mycroft {
    170  1.77      matt 	const struct sockaddr_un *sun;
    171  1.20   mycroft 
    172  1.20   mycroft 	if (unp->unp_addr)
    173  1.20   mycroft 		sun = unp->unp_addr;
    174  1.20   mycroft 	else
    175  1.20   mycroft 		sun = &sun_noname;
    176  1.20   mycroft 	nam->m_len = sun->sun_len;
    177  1.56    itojun 	if (nam->m_len > MLEN)
    178  1.27   thorpej 		MEXTMALLOC(nam, nam->m_len, M_WAITOK);
    179  1.36     perry 	memcpy(mtod(nam, caddr_t), sun, (size_t)nam->m_len);
    180  1.20   mycroft }
    181  1.20   mycroft 
    182  1.20   mycroft void
    183  1.76      matt unp_setpeeraddr(struct unpcb *unp, struct mbuf *nam)
    184  1.20   mycroft {
    185  1.77      matt 	const struct sockaddr_un *sun;
    186  1.20   mycroft 
    187  1.20   mycroft 	if (unp->unp_conn && unp->unp_conn->unp_addr)
    188  1.20   mycroft 		sun = unp->unp_conn->unp_addr;
    189  1.20   mycroft 	else
    190  1.20   mycroft 		sun = &sun_noname;
    191  1.20   mycroft 	nam->m_len = sun->sun_len;
    192  1.56    itojun 	if (nam->m_len > MLEN)
    193  1.27   thorpej 		MEXTMALLOC(nam, nam->m_len, M_WAITOK);
    194  1.36     perry 	memcpy(mtod(nam, caddr_t), sun, (size_t)nam->m_len);
    195  1.20   mycroft }
    196  1.20   mycroft 
    197   1.1       cgd /*ARGSUSED*/
    198   1.5    andrew int
    199  1.76      matt uipc_usrreq(struct socket *so, int req, struct mbuf *m, struct mbuf *nam,
    200  1.86  christos 	struct mbuf *control, struct lwp *l)
    201   1.1       cgd {
    202   1.1       cgd 	struct unpcb *unp = sotounpcb(so);
    203  1.46  augustss 	struct socket *so2;
    204  1.86  christos 	struct proc *p;
    205  1.75  christos 	u_int newhiwat;
    206  1.46  augustss 	int error = 0;
    207   1.1       cgd 
    208   1.1       cgd 	if (req == PRU_CONTROL)
    209   1.1       cgd 		return (EOPNOTSUPP);
    210  1.20   mycroft 
    211  1.22   mycroft #ifdef DIAGNOSTIC
    212  1.22   mycroft 	if (req != PRU_SEND && req != PRU_SENDOOB && control)
    213  1.22   mycroft 		panic("uipc_usrreq: unexpected control mbuf");
    214  1.22   mycroft #endif
    215  1.86  christos 	p = l ? l->l_proc : NULL;
    216   1.1       cgd 	if (unp == 0 && req != PRU_ATTACH) {
    217   1.1       cgd 		error = EINVAL;
    218   1.1       cgd 		goto release;
    219   1.1       cgd 	}
    220  1.20   mycroft 
    221   1.1       cgd 	switch (req) {
    222   1.1       cgd 
    223   1.1       cgd 	case PRU_ATTACH:
    224  1.20   mycroft 		if (unp != 0) {
    225   1.1       cgd 			error = EISCONN;
    226   1.1       cgd 			break;
    227   1.1       cgd 		}
    228   1.1       cgd 		error = unp_attach(so);
    229   1.1       cgd 		break;
    230   1.1       cgd 
    231   1.1       cgd 	case PRU_DETACH:
    232   1.1       cgd 		unp_detach(unp);
    233   1.1       cgd 		break;
    234   1.1       cgd 
    235   1.1       cgd 	case PRU_BIND:
    236  1.90  christos 		KASSERT(l != NULL);
    237  1.86  christos 		error = unp_bind(unp, nam, l);
    238   1.1       cgd 		break;
    239   1.1       cgd 
    240   1.1       cgd 	case PRU_LISTEN:
    241   1.1       cgd 		if (unp->unp_vnode == 0)
    242   1.1       cgd 			error = EINVAL;
    243   1.1       cgd 		break;
    244   1.1       cgd 
    245   1.1       cgd 	case PRU_CONNECT:
    246  1.90  christos 		KASSERT(l != NULL);
    247  1.86  christos 		error = unp_connect(so, nam, l);
    248   1.1       cgd 		break;
    249   1.1       cgd 
    250   1.1       cgd 	case PRU_CONNECT2:
    251  1.72      matt 		error = unp_connect2(so, (struct socket *)nam, PRU_CONNECT2);
    252   1.1       cgd 		break;
    253   1.1       cgd 
    254   1.1       cgd 	case PRU_DISCONNECT:
    255   1.1       cgd 		unp_disconnect(unp);
    256   1.1       cgd 		break;
    257   1.1       cgd 
    258   1.1       cgd 	case PRU_ACCEPT:
    259  1.20   mycroft 		unp_setpeeraddr(unp, nam);
    260  1.72      matt 		/*
    261  1.72      matt 		 * Mark the initiating STREAM socket as connected *ONLY*
    262  1.72      matt 		 * after it's been accepted.  This prevents a client from
    263  1.72      matt 		 * overrunning a server and receiving ECONNREFUSED.
    264  1.72      matt 		 */
    265  1.72      matt 		if (unp->unp_conn != NULL &&
    266  1.72      matt 		    (unp->unp_conn->unp_socket->so_state & SS_ISCONNECTING))
    267  1.72      matt 			soisconnected(unp->unp_conn->unp_socket);
    268   1.1       cgd 		break;
    269   1.1       cgd 
    270   1.1       cgd 	case PRU_SHUTDOWN:
    271   1.1       cgd 		socantsendmore(so);
    272   1.1       cgd 		unp_shutdown(unp);
    273   1.1       cgd 		break;
    274   1.1       cgd 
    275   1.1       cgd 	case PRU_RCVD:
    276   1.1       cgd 		switch (so->so_type) {
    277   1.1       cgd 
    278   1.1       cgd 		case SOCK_DGRAM:
    279   1.1       cgd 			panic("uipc 1");
    280   1.1       cgd 			/*NOTREACHED*/
    281   1.1       cgd 
    282   1.1       cgd 		case SOCK_STREAM:
    283   1.1       cgd #define	rcv (&so->so_rcv)
    284   1.1       cgd #define snd (&so2->so_snd)
    285   1.1       cgd 			if (unp->unp_conn == 0)
    286   1.1       cgd 				break;
    287   1.1       cgd 			so2 = unp->unp_conn->unp_socket;
    288   1.1       cgd 			/*
    289   1.1       cgd 			 * Adjust backpressure on sender
    290   1.1       cgd 			 * and wakeup any waiting to write.
    291   1.1       cgd 			 */
    292   1.1       cgd 			snd->sb_mbmax += unp->unp_mbcnt - rcv->sb_mbcnt;
    293   1.1       cgd 			unp->unp_mbcnt = rcv->sb_mbcnt;
    294  1.75  christos 			newhiwat = snd->sb_hiwat + unp->unp_cc - rcv->sb_cc;
    295  1.81  christos 			(void)chgsbsize(so2->so_uidinfo,
    296  1.75  christos 			    &snd->sb_hiwat, newhiwat, RLIM_INFINITY);
    297   1.1       cgd 			unp->unp_cc = rcv->sb_cc;
    298   1.1       cgd 			sowwakeup(so2);
    299   1.1       cgd #undef snd
    300   1.1       cgd #undef rcv
    301   1.1       cgd 			break;
    302   1.1       cgd 
    303   1.1       cgd 		default:
    304   1.1       cgd 			panic("uipc 2");
    305   1.1       cgd 		}
    306   1.1       cgd 		break;
    307   1.1       cgd 
    308   1.1       cgd 	case PRU_SEND:
    309  1.30   thorpej 		/*
    310  1.30   thorpej 		 * Note: unp_internalize() rejects any control message
    311  1.30   thorpej 		 * other than SCM_RIGHTS, and only allows one.  This
    312  1.30   thorpej 		 * has the side-effect of preventing a caller from
    313  1.30   thorpej 		 * forging SCM_CREDS.
    314  1.30   thorpej 		 */
    315  1.90  christos 		if (control) {
    316  1.90  christos 			KASSERT(l != NULL);
    317  1.90  christos 			if ((error = unp_internalize(control, l)) != 0)
    318  1.90  christos 				goto die;
    319  1.83      yamt 		}
    320   1.1       cgd 		switch (so->so_type) {
    321   1.1       cgd 
    322   1.1       cgd 		case SOCK_DGRAM: {
    323   1.1       cgd 			if (nam) {
    324  1.20   mycroft 				if ((so->so_state & SS_ISCONNECTED) != 0) {
    325   1.1       cgd 					error = EISCONN;
    326  1.21   mycroft 					goto die;
    327   1.1       cgd 				}
    328  1.90  christos 				KASSERT(l != NULL);
    329  1.86  christos 				error = unp_connect(so, nam, l);
    330  1.20   mycroft 				if (error) {
    331  1.23   mycroft 				die:
    332  1.21   mycroft 					m_freem(control);
    333  1.20   mycroft 					m_freem(m);
    334   1.1       cgd 					break;
    335  1.20   mycroft 				}
    336   1.1       cgd 			} else {
    337  1.20   mycroft 				if ((so->so_state & SS_ISCONNECTED) == 0) {
    338   1.1       cgd 					error = ENOTCONN;
    339  1.21   mycroft 					goto die;
    340   1.1       cgd 				}
    341   1.1       cgd 			}
    342  1.89  christos 			KASSERT(p != NULL);
    343  1.92        ad 			error = unp_output(m, control, unp, l);
    344   1.1       cgd 			if (nam)
    345   1.1       cgd 				unp_disconnect(unp);
    346   1.1       cgd 			break;
    347   1.1       cgd 		}
    348   1.1       cgd 
    349   1.1       cgd 		case SOCK_STREAM:
    350   1.1       cgd #define	rcv (&so2->so_rcv)
    351   1.1       cgd #define	snd (&so->so_snd)
    352  1.87  christos 			if (unp->unp_conn == NULL) {
    353  1.87  christos 				error = ENOTCONN;
    354  1.87  christos 				break;
    355  1.87  christos 			}
    356   1.1       cgd 			so2 = unp->unp_conn->unp_socket;
    357  1.30   thorpej 			if (unp->unp_conn->unp_flags & UNP_WANTCRED) {
    358  1.30   thorpej 				/*
    359  1.30   thorpej 				 * Credentials are passed only once on
    360  1.30   thorpej 				 * SOCK_STREAM.
    361  1.30   thorpej 				 */
    362  1.30   thorpej 				unp->unp_conn->unp_flags &= ~UNP_WANTCRED;
    363  1.92        ad 				control = unp_addsockcred(l, control);
    364  1.30   thorpej 			}
    365   1.1       cgd 			/*
    366   1.1       cgd 			 * Send to paired receive port, and then reduce
    367   1.1       cgd 			 * send buffer hiwater marks to maintain backpressure.
    368   1.1       cgd 			 * Wake up readers.
    369   1.1       cgd 			 */
    370   1.1       cgd 			if (control) {
    371  1.21   mycroft 				if (sbappendcontrol(rcv, m, control) == 0)
    372  1.21   mycroft 					m_freem(control);
    373   1.1       cgd 			} else
    374   1.1       cgd 				sbappend(rcv, m);
    375   1.1       cgd 			snd->sb_mbmax -=
    376   1.1       cgd 			    rcv->sb_mbcnt - unp->unp_conn->unp_mbcnt;
    377   1.1       cgd 			unp->unp_conn->unp_mbcnt = rcv->sb_mbcnt;
    378  1.75  christos 			newhiwat = snd->sb_hiwat -
    379  1.75  christos 			    (rcv->sb_cc - unp->unp_conn->unp_cc);
    380  1.81  christos 			(void)chgsbsize(so->so_uidinfo,
    381  1.75  christos 			    &snd->sb_hiwat, newhiwat, RLIM_INFINITY);
    382   1.1       cgd 			unp->unp_conn->unp_cc = rcv->sb_cc;
    383   1.1       cgd 			sorwakeup(so2);
    384   1.1       cgd #undef snd
    385   1.1       cgd #undef rcv
    386   1.1       cgd 			break;
    387   1.1       cgd 
    388   1.1       cgd 		default:
    389   1.1       cgd 			panic("uipc 4");
    390   1.1       cgd 		}
    391   1.1       cgd 		break;
    392   1.1       cgd 
    393   1.1       cgd 	case PRU_ABORT:
    394   1.1       cgd 		unp_drop(unp, ECONNABORTED);
    395  1.39  sommerfe 
    396  1.88      matt 		KASSERT(so->so_head == NULL);
    397  1.39  sommerfe #ifdef DIAGNOSTIC
    398  1.39  sommerfe 		if (so->so_pcb == 0)
    399  1.39  sommerfe 			panic("uipc 5: drop killed pcb");
    400  1.39  sommerfe #endif
    401  1.39  sommerfe 		unp_detach(unp);
    402   1.1       cgd 		break;
    403   1.1       cgd 
    404   1.1       cgd 	case PRU_SENSE:
    405   1.1       cgd 		((struct stat *) m)->st_blksize = so->so_snd.sb_hiwat;
    406   1.1       cgd 		if (so->so_type == SOCK_STREAM && unp->unp_conn != 0) {
    407   1.1       cgd 			so2 = unp->unp_conn->unp_socket;
    408   1.1       cgd 			((struct stat *) m)->st_blksize += so2->so_rcv.sb_cc;
    409   1.1       cgd 		}
    410   1.1       cgd 		((struct stat *) m)->st_dev = NODEV;
    411   1.1       cgd 		if (unp->unp_ino == 0)
    412   1.1       cgd 			unp->unp_ino = unp_ino++;
    413  1.25    kleink 		((struct stat *) m)->st_atimespec =
    414  1.25    kleink 		    ((struct stat *) m)->st_mtimespec =
    415  1.25    kleink 		    ((struct stat *) m)->st_ctimespec = unp->unp_ctime;
    416   1.1       cgd 		((struct stat *) m)->st_ino = unp->unp_ino;
    417   1.1       cgd 		return (0);
    418   1.1       cgd 
    419   1.1       cgd 	case PRU_RCVOOB:
    420  1.20   mycroft 		error = EOPNOTSUPP;
    421  1.20   mycroft 		break;
    422   1.1       cgd 
    423   1.1       cgd 	case PRU_SENDOOB:
    424  1.22   mycroft 		m_freem(control);
    425  1.20   mycroft 		m_freem(m);
    426   1.1       cgd 		error = EOPNOTSUPP;
    427   1.1       cgd 		break;
    428   1.1       cgd 
    429   1.1       cgd 	case PRU_SOCKADDR:
    430  1.20   mycroft 		unp_setsockaddr(unp, nam);
    431   1.1       cgd 		break;
    432   1.1       cgd 
    433   1.1       cgd 	case PRU_PEERADDR:
    434  1.20   mycroft 		unp_setpeeraddr(unp, nam);
    435   1.1       cgd 		break;
    436   1.1       cgd 
    437   1.1       cgd 	default:
    438   1.1       cgd 		panic("piusrreq");
    439   1.1       cgd 	}
    440  1.20   mycroft 
    441   1.1       cgd release:
    442   1.1       cgd 	return (error);
    443   1.1       cgd }
    444   1.1       cgd 
    445   1.1       cgd /*
    446  1.30   thorpej  * Unix domain socket option processing.
    447  1.30   thorpej  */
    448  1.30   thorpej int
    449  1.76      matt uipc_ctloutput(int op, struct socket *so, int level, int optname,
    450  1.76      matt 	struct mbuf **mp)
    451  1.30   thorpej {
    452  1.30   thorpej 	struct unpcb *unp = sotounpcb(so);
    453  1.30   thorpej 	struct mbuf *m = *mp;
    454  1.30   thorpej 	int optval = 0, error = 0;
    455  1.30   thorpej 
    456  1.30   thorpej 	if (level != 0) {
    457  1.30   thorpej 		error = EINVAL;
    458  1.30   thorpej 		if (op == PRCO_SETOPT && m)
    459  1.30   thorpej 			(void) m_free(m);
    460  1.30   thorpej 	} else switch (op) {
    461  1.30   thorpej 
    462  1.30   thorpej 	case PRCO_SETOPT:
    463  1.30   thorpej 		switch (optname) {
    464  1.30   thorpej 		case LOCAL_CREDS:
    465  1.72      matt 		case LOCAL_CONNWAIT:
    466  1.30   thorpej 			if (m == NULL || m->m_len != sizeof(int))
    467  1.30   thorpej 				error = EINVAL;
    468  1.30   thorpej 			else {
    469  1.30   thorpej 				optval = *mtod(m, int *);
    470  1.30   thorpej 				switch (optname) {
    471  1.30   thorpej #define	OPTSET(bit) \
    472  1.30   thorpej 	if (optval) \
    473  1.30   thorpej 		unp->unp_flags |= (bit); \
    474  1.30   thorpej 	else \
    475  1.30   thorpej 		unp->unp_flags &= ~(bit);
    476  1.30   thorpej 
    477  1.30   thorpej 				case LOCAL_CREDS:
    478  1.30   thorpej 					OPTSET(UNP_WANTCRED);
    479  1.30   thorpej 					break;
    480  1.72      matt 				case LOCAL_CONNWAIT:
    481  1.72      matt 					OPTSET(UNP_CONNWAIT);
    482  1.72      matt 					break;
    483  1.30   thorpej 				}
    484  1.30   thorpej 			}
    485  1.30   thorpej 			break;
    486  1.30   thorpej #undef OPTSET
    487  1.30   thorpej 
    488  1.30   thorpej 		default:
    489  1.30   thorpej 			error = ENOPROTOOPT;
    490  1.30   thorpej 			break;
    491  1.30   thorpej 		}
    492  1.30   thorpej 		if (m)
    493  1.30   thorpej 			(void) m_free(m);
    494  1.30   thorpej 		break;
    495  1.30   thorpej 
    496  1.30   thorpej 	case PRCO_GETOPT:
    497  1.30   thorpej 		switch (optname) {
    498  1.30   thorpej 		case LOCAL_CREDS:
    499  1.30   thorpej 			*mp = m = m_get(M_WAIT, MT_SOOPTS);
    500  1.30   thorpej 			m->m_len = sizeof(int);
    501  1.30   thorpej 			switch (optname) {
    502  1.30   thorpej 
    503  1.30   thorpej #define	OPTBIT(bit)	(unp->unp_flags & (bit) ? 1 : 0)
    504  1.30   thorpej 
    505  1.30   thorpej 			case LOCAL_CREDS:
    506  1.30   thorpej 				optval = OPTBIT(UNP_WANTCRED);
    507  1.30   thorpej 				break;
    508  1.30   thorpej 			}
    509  1.30   thorpej 			*mtod(m, int *) = optval;
    510  1.30   thorpej 			break;
    511  1.30   thorpej #undef OPTBIT
    512  1.30   thorpej 
    513  1.30   thorpej 		default:
    514  1.30   thorpej 			error = ENOPROTOOPT;
    515  1.30   thorpej 			break;
    516  1.30   thorpej 		}
    517  1.30   thorpej 		break;
    518  1.30   thorpej 	}
    519  1.30   thorpej 	return (error);
    520  1.30   thorpej }
    521  1.30   thorpej 
    522  1.30   thorpej /*
    523   1.1       cgd  * Both send and receive buffers are allocated PIPSIZ bytes of buffering
    524   1.1       cgd  * for stream sockets, although the total for sender and receiver is
    525   1.1       cgd  * actually only PIPSIZ.
    526   1.1       cgd  * Datagram sockets really use the sendspace as the maximum datagram size,
    527   1.1       cgd  * and don't really want to reserve the sendspace.  Their recvspace should
    528   1.1       cgd  * be large enough for at least one max-size datagram plus address.
    529   1.1       cgd  */
    530   1.1       cgd #define	PIPSIZ	4096
    531   1.1       cgd u_long	unpst_sendspace = PIPSIZ;
    532   1.1       cgd u_long	unpst_recvspace = PIPSIZ;
    533   1.1       cgd u_long	unpdg_sendspace = 2*1024;	/* really max datagram size */
    534   1.1       cgd u_long	unpdg_recvspace = 4*1024;
    535   1.1       cgd 
    536   1.1       cgd int	unp_rights;			/* file descriptors in flight */
    537   1.1       cgd 
    538   1.5    andrew int
    539  1.76      matt unp_attach(struct socket *so)
    540   1.1       cgd {
    541  1.46  augustss 	struct unpcb *unp;
    542   1.1       cgd 	int error;
    543  1.80     perry 
    544   1.1       cgd 	if (so->so_snd.sb_hiwat == 0 || so->so_rcv.sb_hiwat == 0) {
    545   1.1       cgd 		switch (so->so_type) {
    546   1.1       cgd 
    547   1.1       cgd 		case SOCK_STREAM:
    548   1.1       cgd 			error = soreserve(so, unpst_sendspace, unpst_recvspace);
    549   1.1       cgd 			break;
    550   1.1       cgd 
    551   1.1       cgd 		case SOCK_DGRAM:
    552   1.1       cgd 			error = soreserve(so, unpdg_sendspace, unpdg_recvspace);
    553   1.1       cgd 			break;
    554   1.8   mycroft 
    555   1.8   mycroft 		default:
    556   1.8   mycroft 			panic("unp_attach");
    557   1.1       cgd 		}
    558   1.1       cgd 		if (error)
    559   1.1       cgd 			return (error);
    560   1.1       cgd 	}
    561  1.14   mycroft 	unp = malloc(sizeof(*unp), M_PCB, M_NOWAIT);
    562  1.14   mycroft 	if (unp == NULL)
    563   1.1       cgd 		return (ENOBUFS);
    564  1.36     perry 	memset((caddr_t)unp, 0, sizeof(*unp));
    565  1.14   mycroft 	unp->unp_socket = so;
    566  1.15   mycroft 	so->so_pcb = unp;
    567  1.85    simonb 	nanotime(&unp->unp_ctime);
    568   1.1       cgd 	return (0);
    569   1.1       cgd }
    570   1.1       cgd 
    571  1.17        pk void
    572  1.76      matt unp_detach(struct unpcb *unp)
    573   1.1       cgd {
    574  1.80     perry 
    575   1.1       cgd 	if (unp->unp_vnode) {
    576   1.1       cgd 		unp->unp_vnode->v_socket = 0;
    577   1.1       cgd 		vrele(unp->unp_vnode);
    578   1.1       cgd 		unp->unp_vnode = 0;
    579   1.1       cgd 	}
    580   1.1       cgd 	if (unp->unp_conn)
    581   1.1       cgd 		unp_disconnect(unp);
    582   1.1       cgd 	while (unp->unp_refs)
    583   1.1       cgd 		unp_drop(unp->unp_refs, ECONNRESET);
    584   1.1       cgd 	soisdisconnected(unp->unp_socket);
    585   1.1       cgd 	unp->unp_socket->so_pcb = 0;
    586  1.20   mycroft 	if (unp->unp_addr)
    587  1.26   thorpej 		free(unp->unp_addr, M_SONAME);
    588   1.8   mycroft 	if (unp_rights) {
    589   1.8   mycroft 		/*
    590   1.8   mycroft 		 * Normally the receive buffer is flushed later,
    591   1.8   mycroft 		 * in sofree, but if our receive buffer holds references
    592   1.8   mycroft 		 * to descriptors that are now garbage, we will dispose
    593   1.8   mycroft 		 * of those descriptor references after the garbage collector
    594   1.8   mycroft 		 * gets them (resulting in a "panic: closef: count < 0").
    595   1.8   mycroft 		 */
    596   1.8   mycroft 		sorflush(unp->unp_socket);
    597  1.14   mycroft 		free(unp, M_PCB);
    598   1.1       cgd 		unp_gc();
    599  1.14   mycroft 	} else
    600  1.14   mycroft 		free(unp, M_PCB);
    601   1.1       cgd }
    602   1.1       cgd 
    603   1.5    andrew int
    604  1.86  christos unp_bind(struct unpcb *unp, struct mbuf *nam, struct lwp *l)
    605   1.1       cgd {
    606  1.27   thorpej 	struct sockaddr_un *sun;
    607  1.46  augustss 	struct vnode *vp;
    608  1.70   hannken 	struct mount *mp;
    609   1.1       cgd 	struct vattr vattr;
    610  1.27   thorpej 	size_t addrlen;
    611  1.86  christos 	struct proc *p;
    612   1.1       cgd 	int error;
    613   1.1       cgd 	struct nameidata nd;
    614   1.1       cgd 
    615  1.20   mycroft 	if (unp->unp_vnode != 0)
    616  1.20   mycroft 		return (EINVAL);
    617  1.27   thorpej 
    618  1.86  christos 	p = l->l_proc;
    619  1.27   thorpej 	/*
    620  1.27   thorpej 	 * Allocate the new sockaddr.  We have to allocate one
    621  1.27   thorpej 	 * extra byte so that we can ensure that the pathname
    622  1.27   thorpej 	 * is nul-terminated.
    623  1.27   thorpej 	 */
    624  1.27   thorpej 	addrlen = nam->m_len + 1;
    625  1.27   thorpej 	sun = malloc(addrlen, M_SONAME, M_WAITOK);
    626  1.27   thorpej 	m_copydata(nam, 0, nam->m_len, (caddr_t)sun);
    627  1.27   thorpej 	*(((char *)sun) + nam->m_len) = '\0';
    628  1.27   thorpej 
    629  1.70   hannken restart:
    630   1.9   mycroft 	NDINIT(&nd, CREATE, FOLLOW | LOCKPARENT, UIO_SYSSPACE,
    631  1.86  christos 	    sun->sun_path, l);
    632  1.27   thorpej 
    633   1.1       cgd /* SHOULD BE ABLE TO ADOPT EXISTING AND wakeup() ALA FIFO's */
    634  1.16  christos 	if ((error = namei(&nd)) != 0)
    635  1.27   thorpej 		goto bad;
    636   1.9   mycroft 	vp = nd.ni_vp;
    637  1.70   hannken 	if (vp != NULL || vn_start_write(nd.ni_dvp, &mp, V_NOWAIT) != 0) {
    638   1.9   mycroft 		VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
    639   1.9   mycroft 		if (nd.ni_dvp == vp)
    640   1.9   mycroft 			vrele(nd.ni_dvp);
    641   1.1       cgd 		else
    642   1.9   mycroft 			vput(nd.ni_dvp);
    643   1.1       cgd 		vrele(vp);
    644  1.70   hannken 		if (vp != NULL) {
    645  1.70   hannken 			error = EADDRINUSE;
    646  1.70   hannken 			goto bad;
    647  1.70   hannken 		}
    648  1.70   hannken 		error = vn_start_write(NULL, &mp,
    649  1.70   hannken 		    V_WAIT | V_SLEEPONLY | V_PCATCH);
    650  1.70   hannken 		if (error)
    651  1.70   hannken 			goto bad;
    652  1.70   hannken 		goto restart;
    653   1.1       cgd 	}
    654   1.1       cgd 	VATTR_NULL(&vattr);
    655   1.1       cgd 	vattr.va_type = VSOCK;
    656  1.84      jmmv 	vattr.va_mode = ACCESSPERMS & ~(p->p_cwdi->cwdi_cmask);
    657  1.92        ad 	VOP_LEASE(nd.ni_dvp, l, l->l_cred, LEASE_WRITE);
    658  1.16  christos 	error = VOP_CREATE(nd.ni_dvp, &nd.ni_vp, &nd.ni_cnd, &vattr);
    659  1.70   hannken 	vn_finished_write(mp, 0);
    660  1.16  christos 	if (error)
    661  1.27   thorpej 		goto bad;
    662   1.9   mycroft 	vp = nd.ni_vp;
    663   1.1       cgd 	vp->v_socket = unp->unp_socket;
    664   1.1       cgd 	unp->unp_vnode = vp;
    665  1.27   thorpej 	unp->unp_addrlen = addrlen;
    666  1.27   thorpej 	unp->unp_addr = sun;
    667  1.31      fvdl 	VOP_UNLOCK(vp, 0);
    668   1.1       cgd 	return (0);
    669  1.27   thorpej 
    670  1.27   thorpej  bad:
    671  1.27   thorpej 	free(sun, M_SONAME);
    672  1.27   thorpej 	return (error);
    673   1.1       cgd }
    674   1.1       cgd 
    675   1.5    andrew int
    676  1.86  christos unp_connect(struct socket *so, struct mbuf *nam, struct lwp *l)
    677   1.1       cgd {
    678  1.46  augustss 	struct sockaddr_un *sun;
    679  1.46  augustss 	struct vnode *vp;
    680  1.46  augustss 	struct socket *so2, *so3;
    681   1.1       cgd 	struct unpcb *unp2, *unp3;
    682  1.27   thorpej 	size_t addrlen;
    683   1.1       cgd 	int error;
    684   1.1       cgd 	struct nameidata nd;
    685   1.1       cgd 
    686  1.27   thorpej 	/*
    687  1.27   thorpej 	 * Allocate a temporary sockaddr.  We have to allocate one extra
    688  1.27   thorpej 	 * byte so that we can ensure that the pathname is nul-terminated.
    689  1.27   thorpej 	 * When we establish the connection, we copy the other PCB's
    690  1.27   thorpej 	 * sockaddr to our own.
    691  1.27   thorpej 	 */
    692  1.27   thorpej 	addrlen = nam->m_len + 1;
    693  1.27   thorpej 	sun = malloc(addrlen, M_SONAME, M_WAITOK);
    694  1.27   thorpej 	m_copydata(nam, 0, nam->m_len, (caddr_t)sun);
    695  1.27   thorpej 	*(((char *)sun) + nam->m_len) = '\0';
    696  1.27   thorpej 
    697  1.86  christos 	NDINIT(&nd, LOOKUP, FOLLOW | LOCKLEAF, UIO_SYSSPACE, sun->sun_path, l);
    698  1.27   thorpej 
    699  1.16  christos 	if ((error = namei(&nd)) != 0)
    700  1.27   thorpej 		goto bad2;
    701   1.9   mycroft 	vp = nd.ni_vp;
    702   1.1       cgd 	if (vp->v_type != VSOCK) {
    703   1.1       cgd 		error = ENOTSOCK;
    704   1.1       cgd 		goto bad;
    705   1.1       cgd 	}
    706  1.92        ad 	if ((error = VOP_ACCESS(vp, VWRITE, l->l_cred, l)) != 0)
    707   1.1       cgd 		goto bad;
    708   1.1       cgd 	so2 = vp->v_socket;
    709   1.1       cgd 	if (so2 == 0) {
    710   1.1       cgd 		error = ECONNREFUSED;
    711   1.1       cgd 		goto bad;
    712   1.1       cgd 	}
    713   1.1       cgd 	if (so->so_type != so2->so_type) {
    714   1.1       cgd 		error = EPROTOTYPE;
    715   1.1       cgd 		goto bad;
    716   1.1       cgd 	}
    717   1.1       cgd 	if (so->so_proto->pr_flags & PR_CONNREQUIRED) {
    718   1.1       cgd 		if ((so2->so_options & SO_ACCEPTCONN) == 0 ||
    719   1.1       cgd 		    (so3 = sonewconn(so2, 0)) == 0) {
    720   1.1       cgd 			error = ECONNREFUSED;
    721   1.1       cgd 			goto bad;
    722   1.1       cgd 		}
    723   1.1       cgd 		unp2 = sotounpcb(so2);
    724   1.1       cgd 		unp3 = sotounpcb(so3);
    725  1.26   thorpej 		if (unp2->unp_addr) {
    726  1.26   thorpej 			unp3->unp_addr = malloc(unp2->unp_addrlen,
    727  1.26   thorpej 			    M_SONAME, M_WAITOK);
    728  1.36     perry 			memcpy(unp3->unp_addr, unp2->unp_addr,
    729  1.26   thorpej 			    unp2->unp_addrlen);
    730  1.26   thorpej 			unp3->unp_addrlen = unp2->unp_addrlen;
    731  1.26   thorpej 		}
    732  1.30   thorpej 		unp3->unp_flags = unp2->unp_flags;
    733  1.33   thorpej 		so2 = so3;
    734  1.33   thorpej 	}
    735  1.72      matt 	error = unp_connect2(so, so2, PRU_CONNECT);
    736  1.27   thorpej  bad:
    737   1.1       cgd 	vput(vp);
    738  1.27   thorpej  bad2:
    739  1.27   thorpej 	free(sun, M_SONAME);
    740   1.1       cgd 	return (error);
    741   1.1       cgd }
    742   1.1       cgd 
    743   1.5    andrew int
    744  1.76      matt unp_connect2(struct socket *so, struct socket *so2, int req)
    745   1.1       cgd {
    746  1.46  augustss 	struct unpcb *unp = sotounpcb(so);
    747  1.46  augustss 	struct unpcb *unp2;
    748   1.1       cgd 
    749   1.1       cgd 	if (so2->so_type != so->so_type)
    750   1.1       cgd 		return (EPROTOTYPE);
    751   1.1       cgd 	unp2 = sotounpcb(so2);
    752   1.1       cgd 	unp->unp_conn = unp2;
    753   1.1       cgd 	switch (so->so_type) {
    754   1.1       cgd 
    755   1.1       cgd 	case SOCK_DGRAM:
    756   1.1       cgd 		unp->unp_nextref = unp2->unp_refs;
    757   1.1       cgd 		unp2->unp_refs = unp;
    758   1.1       cgd 		soisconnected(so);
    759   1.1       cgd 		break;
    760   1.1       cgd 
    761   1.1       cgd 	case SOCK_STREAM:
    762   1.1       cgd 		unp2->unp_conn = unp;
    763  1.72      matt 		if (req == PRU_CONNECT &&
    764  1.72      matt 		    ((unp->unp_flags | unp2->unp_flags) & UNP_CONNWAIT))
    765  1.72      matt 			soisconnecting(so);
    766  1.72      matt 		else
    767  1.72      matt 			soisconnected(so);
    768   1.1       cgd 		soisconnected(so2);
    769   1.1       cgd 		break;
    770   1.1       cgd 
    771   1.1       cgd 	default:
    772   1.1       cgd 		panic("unp_connect2");
    773   1.1       cgd 	}
    774   1.1       cgd 	return (0);
    775   1.1       cgd }
    776   1.1       cgd 
    777   1.5    andrew void
    778  1.76      matt unp_disconnect(struct unpcb *unp)
    779   1.1       cgd {
    780  1.46  augustss 	struct unpcb *unp2 = unp->unp_conn;
    781   1.1       cgd 
    782   1.1       cgd 	if (unp2 == 0)
    783   1.1       cgd 		return;
    784   1.1       cgd 	unp->unp_conn = 0;
    785   1.1       cgd 	switch (unp->unp_socket->so_type) {
    786   1.1       cgd 
    787   1.1       cgd 	case SOCK_DGRAM:
    788   1.1       cgd 		if (unp2->unp_refs == unp)
    789   1.1       cgd 			unp2->unp_refs = unp->unp_nextref;
    790   1.1       cgd 		else {
    791   1.1       cgd 			unp2 = unp2->unp_refs;
    792   1.1       cgd 			for (;;) {
    793   1.1       cgd 				if (unp2 == 0)
    794   1.1       cgd 					panic("unp_disconnect");
    795   1.1       cgd 				if (unp2->unp_nextref == unp)
    796   1.1       cgd 					break;
    797   1.1       cgd 				unp2 = unp2->unp_nextref;
    798   1.1       cgd 			}
    799   1.1       cgd 			unp2->unp_nextref = unp->unp_nextref;
    800   1.1       cgd 		}
    801   1.1       cgd 		unp->unp_nextref = 0;
    802   1.1       cgd 		unp->unp_socket->so_state &= ~SS_ISCONNECTED;
    803   1.1       cgd 		break;
    804   1.1       cgd 
    805   1.1       cgd 	case SOCK_STREAM:
    806   1.1       cgd 		soisdisconnected(unp->unp_socket);
    807   1.1       cgd 		unp2->unp_conn = 0;
    808   1.1       cgd 		soisdisconnected(unp2->unp_socket);
    809   1.1       cgd 		break;
    810   1.1       cgd 	}
    811   1.1       cgd }
    812   1.1       cgd 
    813   1.1       cgd #ifdef notdef
    814  1.76      matt unp_abort(struct unpcb *unp)
    815   1.1       cgd {
    816   1.1       cgd 	unp_detach(unp);
    817   1.1       cgd }
    818   1.1       cgd #endif
    819   1.1       cgd 
    820   1.5    andrew void
    821  1.76      matt unp_shutdown(struct unpcb *unp)
    822   1.1       cgd {
    823   1.1       cgd 	struct socket *so;
    824   1.1       cgd 
    825   1.1       cgd 	if (unp->unp_socket->so_type == SOCK_STREAM && unp->unp_conn &&
    826   1.1       cgd 	    (so = unp->unp_conn->unp_socket))
    827   1.1       cgd 		socantrcvmore(so);
    828   1.1       cgd }
    829   1.1       cgd 
    830   1.5    andrew void
    831  1.76      matt unp_drop(struct unpcb *unp, int errno)
    832   1.1       cgd {
    833   1.1       cgd 	struct socket *so = unp->unp_socket;
    834   1.1       cgd 
    835   1.1       cgd 	so->so_error = errno;
    836   1.1       cgd 	unp_disconnect(unp);
    837   1.1       cgd 	if (so->so_head) {
    838  1.15   mycroft 		so->so_pcb = 0;
    839  1.14   mycroft 		sofree(so);
    840  1.20   mycroft 		if (unp->unp_addr)
    841  1.26   thorpej 			free(unp->unp_addr, M_SONAME);
    842  1.14   mycroft 		free(unp, M_PCB);
    843   1.1       cgd 	}
    844   1.1       cgd }
    845   1.1       cgd 
    846   1.1       cgd #ifdef notdef
    847  1.76      matt unp_drain(void)
    848   1.1       cgd {
    849   1.1       cgd 
    850   1.1       cgd }
    851   1.1       cgd #endif
    852   1.1       cgd 
    853   1.5    andrew int
    854  1.86  christos unp_externalize(struct mbuf *rights, struct lwp *l)
    855   1.1       cgd {
    856  1.46  augustss 	struct cmsghdr *cm = mtod(rights, struct cmsghdr *);
    857  1.86  christos 	struct proc *p = l->l_proc;
    858  1.47   thorpej 	int i, *fdp;
    859  1.46  augustss 	struct file **rp;
    860  1.46  augustss 	struct file *fp;
    861  1.50   thorpej 	int nfds, error = 0;
    862  1.47   thorpej 
    863  1.47   thorpej 	nfds = (cm->cmsg_len - CMSG_ALIGN(sizeof(*cm))) /
    864  1.47   thorpej 	    sizeof(struct file *);
    865  1.47   thorpej 	rp = (struct file **)CMSG_DATA(cm);
    866   1.1       cgd 
    867  1.50   thorpej 	fdp = malloc(nfds * sizeof(int), M_TEMP, M_WAITOK);
    868  1.50   thorpej 
    869  1.39  sommerfe 	/* Make sure the recipient should be able to see the descriptors.. */
    870  1.42   thorpej 	if (p->p_cwdi->cwdi_rdir != NULL) {
    871  1.48   thorpej 		rp = (struct file **)CMSG_DATA(cm);
    872  1.39  sommerfe 		for (i = 0; i < nfds; i++) {
    873  1.39  sommerfe 			fp = *rp++;
    874  1.39  sommerfe 			/*
    875  1.39  sommerfe 			 * If we are in a chroot'ed directory, and
    876  1.39  sommerfe 			 * someone wants to pass us a directory, make
    877  1.39  sommerfe 			 * sure it's inside the subtree we're allowed
    878  1.39  sommerfe 			 * to access.
    879  1.39  sommerfe 			 */
    880  1.39  sommerfe 			if (fp->f_type == DTYPE_VNODE) {
    881  1.39  sommerfe 				struct vnode *vp = (struct vnode *)fp->f_data;
    882  1.39  sommerfe 				if ((vp->v_type == VDIR) &&
    883  1.86  christos 				    !vn_isunder(vp, p->p_cwdi->cwdi_rdir, l)) {
    884  1.39  sommerfe 					error = EPERM;
    885  1.39  sommerfe 					break;
    886  1.39  sommerfe 				}
    887  1.39  sommerfe 			}
    888  1.39  sommerfe 		}
    889  1.39  sommerfe 	}
    890  1.50   thorpej 
    891  1.50   thorpej  restart:
    892  1.47   thorpej 	rp = (struct file **)CMSG_DATA(cm);
    893  1.50   thorpej 	if (error != 0) {
    894  1.24       cgd 		for (i = 0; i < nfds; i++) {
    895   1.1       cgd 			fp = *rp;
    896  1.39  sommerfe 			/*
    897  1.39  sommerfe 			 * zero the pointer before calling unp_discard,
    898  1.39  sommerfe 			 * since it may end up in unp_gc()..
    899  1.39  sommerfe 			 */
    900  1.39  sommerfe 			*rp++ = 0;
    901   1.1       cgd 			unp_discard(fp);
    902   1.1       cgd 		}
    903  1.50   thorpej 		goto out;
    904   1.1       cgd 	}
    905  1.50   thorpej 
    906  1.24       cgd 	/*
    907  1.50   thorpej 	 * First loop -- allocate file descriptor table slots for the
    908  1.50   thorpej 	 * new descriptors.
    909  1.24       cgd 	 */
    910  1.24       cgd 	for (i = 0; i < nfds; i++) {
    911  1.39  sommerfe 		fp = *rp++;
    912  1.50   thorpej 		if ((error = fdalloc(p, 0, &fdp[i])) != 0) {
    913  1.49   thorpej 			/*
    914  1.50   thorpej 			 * Back out what we've done so far.
    915  1.49   thorpej 			 */
    916  1.50   thorpej 			for (--i; i >= 0; i--)
    917  1.50   thorpej 				fdremove(p->p_fd, fdp[i]);
    918  1.50   thorpej 
    919  1.50   thorpej 			if (error == ENOSPC) {
    920  1.50   thorpej 				fdexpand(p);
    921  1.50   thorpej 				error = 0;
    922  1.50   thorpej 			} else {
    923  1.50   thorpej 				/*
    924  1.50   thorpej 				 * This is the error that has historically
    925  1.50   thorpej 				 * been returned, and some callers may
    926  1.50   thorpej 				 * expect it.
    927  1.50   thorpej 				 */
    928  1.50   thorpej 				error = EMSGSIZE;
    929  1.50   thorpej 			}
    930  1.50   thorpej 			goto restart;
    931  1.49   thorpej 		}
    932  1.50   thorpej 
    933  1.50   thorpej 		/*
    934  1.50   thorpej 		 * Make the slot reference the descriptor so that
    935  1.50   thorpej 		 * fdalloc() works properly.. We finalize it all
    936  1.50   thorpej 		 * in the loop below.
    937  1.50   thorpej 		 */
    938  1.50   thorpej 		p->p_fd->fd_ofiles[fdp[i]] = fp;
    939   1.1       cgd 	}
    940  1.24       cgd 
    941  1.24       cgd 	/*
    942  1.50   thorpej 	 * Now that adding them has succeeded, update all of the
    943  1.50   thorpej 	 * descriptor passing state.
    944  1.24       cgd 	 */
    945  1.50   thorpej 	rp = (struct file **)CMSG_DATA(cm);
    946  1.50   thorpej 	for (i = 0; i < nfds; i++) {
    947  1.50   thorpej 		fp = *rp++;
    948  1.50   thorpej 		fp->f_msgcount--;
    949  1.50   thorpej 		unp_rights--;
    950  1.50   thorpej 	}
    951  1.50   thorpej 
    952  1.50   thorpej 	/*
    953  1.50   thorpej 	 * Copy temporary array to message and adjust length, in case of
    954  1.50   thorpej 	 * transition from large struct file pointers to ints.
    955  1.50   thorpej 	 */
    956  1.50   thorpej 	memcpy(CMSG_DATA(cm), fdp, nfds * sizeof(int));
    957  1.47   thorpej 	cm->cmsg_len = CMSG_LEN(nfds * sizeof(int));
    958  1.47   thorpej 	rights->m_len = CMSG_SPACE(nfds * sizeof(int));
    959  1.50   thorpej  out:
    960  1.50   thorpej 	free(fdp, M_TEMP);
    961  1.50   thorpej 	return (error);
    962   1.1       cgd }
    963   1.1       cgd 
    964   1.5    andrew int
    965  1.86  christos unp_internalize(struct mbuf *control, struct lwp *l)
    966   1.1       cgd {
    967  1.86  christos 	struct proc *p = l->l_proc;
    968  1.24       cgd 	struct filedesc *fdescp = p->p_fd;
    969  1.73    martin 	struct cmsghdr *newcm, *cm = mtod(control, struct cmsghdr *);
    970  1.73    martin 	struct file **rp, **files;
    971  1.46  augustss 	struct file *fp;
    972  1.46  augustss 	int i, fd, *fdp;
    973  1.24       cgd 	int nfds;
    974  1.24       cgd 	u_int neededspace;
    975  1.38   thorpej 
    976  1.24       cgd 	/* Sanity check the control message header */
    977  1.66  jdolecek 	if (cm->cmsg_type != SCM_RIGHTS || cm->cmsg_level != SOL_SOCKET ||
    978   1.1       cgd 	    cm->cmsg_len != control->m_len)
    979   1.1       cgd 		return (EINVAL);
    980  1.24       cgd 
    981  1.24       cgd 	/* Verify that the file descriptors are valid */
    982  1.47   thorpej 	nfds = (cm->cmsg_len - CMSG_ALIGN(sizeof(*cm))) / sizeof(int);
    983  1.47   thorpej 	fdp = (int *)CMSG_DATA(cm);
    984  1.24       cgd 	for (i = 0; i < nfds; i++) {
    985  1.24       cgd 		fd = *fdp++;
    986  1.58        pk 		if ((fp = fd_getfile(fdescp, fd)) == NULL)
    987   1.1       cgd 			return (EBADF);
    988  1.58        pk 		simple_unlock(&fp->f_slock);
    989   1.1       cgd 	}
    990  1.24       cgd 
    991  1.24       cgd 	/* Make sure we have room for the struct file pointers */
    992  1.47   thorpej 	neededspace = CMSG_SPACE(nfds * sizeof(struct file *)) -
    993  1.47   thorpej 	    control->m_len;
    994  1.24       cgd 	if (neededspace > M_TRAILINGSPACE(control)) {
    995  1.24       cgd 
    996  1.73    martin 		/* allocate new space and copy header into it */
    997  1.73    martin 		newcm = malloc(
    998  1.73    martin 		    CMSG_SPACE(nfds * sizeof(struct file *)),
    999  1.73    martin 		    M_MBUF, M_WAITOK);
   1000  1.73    martin 		if (newcm == NULL)
   1001  1.24       cgd 			return (E2BIG);
   1002  1.73    martin 		memcpy(newcm, cm, sizeof(struct cmsghdr));
   1003  1.80     perry 		files = (struct file **)CMSG_DATA(newcm);
   1004  1.73    martin 	} else {
   1005  1.73    martin 		/* we can convert in-place */
   1006  1.73    martin 		newcm = NULL;
   1007  1.73    martin 		files = (struct file **)CMSG_DATA(cm);
   1008  1.24       cgd 	}
   1009  1.24       cgd 
   1010  1.24       cgd 	/*
   1011  1.24       cgd 	 * Transform the file descriptors into struct file pointers, in
   1012  1.24       cgd 	 * reverse order so that if pointers are bigger than ints, the
   1013  1.24       cgd 	 * int won't get until we're done.
   1014  1.24       cgd 	 */
   1015  1.73    martin 	fdp = (int *)CMSG_DATA(cm) + nfds - 1;
   1016  1.73    martin 	rp = files + nfds - 1;
   1017  1.24       cgd 	for (i = 0; i < nfds; i++) {
   1018  1.28  christos 		fp = fdescp->fd_ofiles[*fdp--];
   1019  1.57        pk 		simple_lock(&fp->f_slock);
   1020  1.57        pk #ifdef DIAGNOSTIC
   1021  1.57        pk 		if (fp->f_iflags & FIF_WANTCLOSE)
   1022  1.57        pk 			panic("unp_internalize: file already closed");
   1023  1.57        pk #endif
   1024  1.24       cgd 		*rp-- = fp;
   1025   1.1       cgd 		fp->f_count++;
   1026   1.1       cgd 		fp->f_msgcount++;
   1027  1.57        pk 		simple_unlock(&fp->f_slock);
   1028   1.1       cgd 		unp_rights++;
   1029   1.1       cgd 	}
   1030  1.73    martin 
   1031  1.73    martin 	if (newcm) {
   1032  1.73    martin 		if (control->m_flags & M_EXT)
   1033  1.73    martin 			MEXTREMOVE(control);
   1034  1.73    martin 		MEXTADD(control, newcm,
   1035  1.73    martin 		    CMSG_SPACE(nfds * sizeof(struct file *)),
   1036  1.73    martin 		    M_MBUF, NULL, NULL);
   1037  1.73    martin 		cm = newcm;
   1038  1.73    martin 	}
   1039  1.73    martin 
   1040  1.73    martin 	/* adjust message & mbuf to note amount of space actually used. */
   1041  1.73    martin 	cm->cmsg_len = CMSG_LEN(nfds * sizeof(struct file *));
   1042  1.73    martin 	control->m_len = CMSG_SPACE(nfds * sizeof(struct file *));
   1043  1.73    martin 
   1044   1.1       cgd 	return (0);
   1045  1.30   thorpej }
   1046  1.30   thorpej 
   1047  1.30   thorpej struct mbuf *
   1048  1.92        ad unp_addsockcred(struct lwp *l, struct mbuf *control)
   1049  1.30   thorpej {
   1050  1.30   thorpej 	struct cmsghdr *cmp;
   1051  1.30   thorpej 	struct sockcred *sc;
   1052  1.30   thorpej 	struct mbuf *m, *n;
   1053  1.47   thorpej 	int len, space, i;
   1054  1.30   thorpej 
   1055  1.92        ad 	len = CMSG_LEN(SOCKCREDSIZE(kauth_cred_ngroups(l->l_cred)));
   1056  1.92        ad 	space = CMSG_SPACE(SOCKCREDSIZE(kauth_cred_ngroups(l->l_cred)));
   1057  1.30   thorpej 
   1058  1.30   thorpej 	m = m_get(M_WAIT, MT_CONTROL);
   1059  1.47   thorpej 	if (space > MLEN) {
   1060  1.47   thorpej 		if (space > MCLBYTES)
   1061  1.47   thorpej 			MEXTMALLOC(m, space, M_WAITOK);
   1062  1.30   thorpej 		else
   1063  1.59      matt 			m_clget(m, M_WAIT);
   1064  1.30   thorpej 		if ((m->m_flags & M_EXT) == 0) {
   1065  1.30   thorpej 			m_free(m);
   1066  1.30   thorpej 			return (control);
   1067  1.30   thorpej 		}
   1068  1.30   thorpej 	}
   1069  1.30   thorpej 
   1070  1.47   thorpej 	m->m_len = space;
   1071  1.30   thorpej 	m->m_next = NULL;
   1072  1.30   thorpej 	cmp = mtod(m, struct cmsghdr *);
   1073  1.30   thorpej 	sc = (struct sockcred *)CMSG_DATA(cmp);
   1074  1.30   thorpej 	cmp->cmsg_len = len;
   1075  1.30   thorpej 	cmp->cmsg_level = SOL_SOCKET;
   1076  1.30   thorpej 	cmp->cmsg_type = SCM_CREDS;
   1077  1.92        ad 	sc->sc_uid = kauth_cred_getuid(l->l_cred);
   1078  1.92        ad 	sc->sc_euid = kauth_cred_geteuid(l->l_cred);
   1079  1.92        ad 	sc->sc_gid = kauth_cred_getgid(l->l_cred);
   1080  1.92        ad 	sc->sc_egid = kauth_cred_getegid(l->l_cred);
   1081  1.92        ad 	sc->sc_ngroups = kauth_cred_ngroups(l->l_cred);
   1082  1.30   thorpej 	for (i = 0; i < sc->sc_ngroups; i++)
   1083  1.92        ad 		sc->sc_groups[i] = kauth_cred_group(l->l_cred, i);
   1084  1.30   thorpej 
   1085  1.30   thorpej 	/*
   1086  1.30   thorpej 	 * If a control message already exists, append us to the end.
   1087  1.30   thorpej 	 */
   1088  1.30   thorpej 	if (control != NULL) {
   1089  1.30   thorpej 		for (n = control; n->m_next != NULL; n = n->m_next)
   1090  1.30   thorpej 			;
   1091  1.30   thorpej 		n->m_next = m;
   1092  1.30   thorpej 	} else
   1093  1.30   thorpej 		control = m;
   1094  1.30   thorpej 
   1095  1.30   thorpej 	return (control);
   1096   1.1       cgd }
   1097   1.1       cgd 
   1098   1.1       cgd int	unp_defer, unp_gcing;
   1099   1.1       cgd extern	struct domain unixdomain;
   1100   1.1       cgd 
   1101  1.39  sommerfe /*
   1102  1.39  sommerfe  * Comment added long after the fact explaining what's going on here.
   1103  1.39  sommerfe  * Do a mark-sweep GC of file descriptors on the system, to free up
   1104  1.39  sommerfe  * any which are caught in flight to an about-to-be-closed socket.
   1105  1.39  sommerfe  *
   1106  1.39  sommerfe  * Traditional mark-sweep gc's start at the "root", and mark
   1107  1.39  sommerfe  * everything reachable from the root (which, in our case would be the
   1108  1.39  sommerfe  * process table).  The mark bits are cleared during the sweep.
   1109  1.39  sommerfe  *
   1110  1.39  sommerfe  * XXX For some inexplicable reason (perhaps because the file
   1111  1.39  sommerfe  * descriptor tables used to live in the u area which could be swapped
   1112  1.39  sommerfe  * out and thus hard to reach), we do multiple scans over the set of
   1113  1.39  sommerfe  * descriptors, using use *two* mark bits per object (DEFER and MARK).
   1114  1.39  sommerfe  * Whenever we find a descriptor which references other descriptors,
   1115  1.39  sommerfe  * the ones it references are marked with both bits, and we iterate
   1116  1.39  sommerfe  * over the whole file table until there are no more DEFER bits set.
   1117  1.39  sommerfe  * We also make an extra pass *before* the GC to clear the mark bits,
   1118  1.39  sommerfe  * which could have been cleared at almost no cost during the previous
   1119  1.39  sommerfe  * sweep.
   1120  1.39  sommerfe  *
   1121  1.39  sommerfe  * XXX MP: this needs to run with locks such that no other thread of
   1122  1.39  sommerfe  * control can create or destroy references to file descriptors. it
   1123  1.39  sommerfe  * may be necessary to defer the GC until later (when the locking
   1124  1.39  sommerfe  * situation is more hospitable); it may be necessary to push this
   1125  1.39  sommerfe  * into a separate thread.
   1126  1.39  sommerfe  */
   1127   1.5    andrew void
   1128  1.76      matt unp_gc(void)
   1129   1.1       cgd {
   1130  1.46  augustss 	struct file *fp, *nextfp;
   1131  1.46  augustss 	struct socket *so, *so1;
   1132   1.8   mycroft 	struct file **extra_ref, **fpp;
   1133   1.8   mycroft 	int nunref, i;
   1134   1.1       cgd 
   1135   1.1       cgd 	if (unp_gcing)
   1136   1.1       cgd 		return;
   1137   1.1       cgd 	unp_gcing = 1;
   1138   1.1       cgd 	unp_defer = 0;
   1139  1.39  sommerfe 
   1140  1.39  sommerfe 	/* Clear mark bits */
   1141  1.54      matt 	LIST_FOREACH(fp, &filehead, f_list)
   1142   1.1       cgd 		fp->f_flag &= ~(FMARK|FDEFER);
   1143  1.39  sommerfe 
   1144  1.39  sommerfe 	/*
   1145  1.39  sommerfe 	 * Iterate over the set of descriptors, marking ones believed
   1146  1.39  sommerfe 	 * (based on refcount) to be referenced from a process, and
   1147  1.39  sommerfe 	 * marking for rescan descriptors which are queued on a socket.
   1148  1.39  sommerfe 	 */
   1149   1.1       cgd 	do {
   1150  1.54      matt 		LIST_FOREACH(fp, &filehead, f_list) {
   1151   1.1       cgd 			if (fp->f_flag & FDEFER) {
   1152   1.1       cgd 				fp->f_flag &= ~FDEFER;
   1153   1.1       cgd 				unp_defer--;
   1154  1.39  sommerfe #ifdef DIAGNOSTIC
   1155  1.39  sommerfe 				if (fp->f_count == 0)
   1156  1.39  sommerfe 					panic("unp_gc: deferred unreferenced socket");
   1157  1.39  sommerfe #endif
   1158   1.1       cgd 			} else {
   1159  1.39  sommerfe 				if (fp->f_count == 0)
   1160  1.39  sommerfe 					continue;
   1161   1.1       cgd 				if (fp->f_flag & FMARK)
   1162   1.1       cgd 					continue;
   1163   1.1       cgd 				if (fp->f_count == fp->f_msgcount)
   1164   1.1       cgd 					continue;
   1165   1.1       cgd 			}
   1166  1.39  sommerfe 			fp->f_flag |= FMARK;
   1167  1.39  sommerfe 
   1168   1.1       cgd 			if (fp->f_type != DTYPE_SOCKET ||
   1169   1.1       cgd 			    (so = (struct socket *)fp->f_data) == 0)
   1170   1.1       cgd 				continue;
   1171   1.1       cgd 			if (so->so_proto->pr_domain != &unixdomain ||
   1172   1.1       cgd 			    (so->so_proto->pr_flags&PR_RIGHTS) == 0)
   1173   1.1       cgd 				continue;
   1174   1.1       cgd #ifdef notdef
   1175   1.1       cgd 			if (so->so_rcv.sb_flags & SB_LOCK) {
   1176   1.1       cgd 				/*
   1177   1.1       cgd 				 * This is problematical; it's not clear
   1178   1.1       cgd 				 * we need to wait for the sockbuf to be
   1179   1.1       cgd 				 * unlocked (on a uniprocessor, at least),
   1180   1.1       cgd 				 * and it's also not clear what to do
   1181   1.1       cgd 				 * if sbwait returns an error due to receipt
   1182   1.1       cgd 				 * of a signal.  If sbwait does return
   1183   1.1       cgd 				 * an error, we'll go into an infinite
   1184   1.1       cgd 				 * loop.  Delete all of this for now.
   1185   1.1       cgd 				 */
   1186   1.1       cgd 				(void) sbwait(&so->so_rcv);
   1187   1.1       cgd 				goto restart;
   1188   1.1       cgd 			}
   1189   1.1       cgd #endif
   1190  1.39  sommerfe 			unp_scan(so->so_rcv.sb_mb, unp_mark, 0);
   1191  1.39  sommerfe 			/*
   1192  1.39  sommerfe 			 * mark descriptors referenced from sockets queued on the accept queue as well.
   1193  1.39  sommerfe 			 */
   1194  1.39  sommerfe 			if (so->so_options & SO_ACCEPTCONN) {
   1195  1.54      matt 				TAILQ_FOREACH(so1, &so->so_q0, so_qe) {
   1196  1.39  sommerfe 					unp_scan(so1->so_rcv.sb_mb, unp_mark, 0);
   1197  1.39  sommerfe 				}
   1198  1.54      matt 				TAILQ_FOREACH(so1, &so->so_q, so_qe) {
   1199  1.39  sommerfe 					unp_scan(so1->so_rcv.sb_mb, unp_mark, 0);
   1200  1.39  sommerfe 				}
   1201  1.39  sommerfe 			}
   1202  1.80     perry 
   1203   1.1       cgd 		}
   1204   1.1       cgd 	} while (unp_defer);
   1205   1.8   mycroft 	/*
   1206  1.39  sommerfe 	 * Sweep pass.  Find unmarked descriptors, and free them.
   1207  1.39  sommerfe 	 *
   1208   1.8   mycroft 	 * We grab an extra reference to each of the file table entries
   1209   1.8   mycroft 	 * that are not otherwise accessible and then free the rights
   1210   1.8   mycroft 	 * that are stored in messages on them.
   1211   1.8   mycroft 	 *
   1212  1.57        pk 	 * The bug in the original code is a little tricky, so I'll describe
   1213   1.8   mycroft 	 * what's wrong with it here.
   1214   1.8   mycroft 	 *
   1215   1.8   mycroft 	 * It is incorrect to simply unp_discard each entry for f_msgcount
   1216   1.8   mycroft 	 * times -- consider the case of sockets A and B that contain
   1217   1.8   mycroft 	 * references to each other.  On a last close of some other socket,
   1218   1.8   mycroft 	 * we trigger a gc since the number of outstanding rights (unp_rights)
   1219   1.8   mycroft 	 * is non-zero.  If during the sweep phase the gc code un_discards,
   1220   1.8   mycroft 	 * we end up doing a (full) closef on the descriptor.  A closef on A
   1221   1.8   mycroft 	 * results in the following chain.  Closef calls soo_close, which
   1222   1.8   mycroft 	 * calls soclose.   Soclose calls first (through the switch
   1223   1.8   mycroft 	 * uipc_usrreq) unp_detach, which re-invokes unp_gc.  Unp_gc simply
   1224   1.8   mycroft 	 * returns because the previous instance had set unp_gcing, and
   1225   1.8   mycroft 	 * we return all the way back to soclose, which marks the socket
   1226   1.8   mycroft 	 * with SS_NOFDREF, and then calls sofree.  Sofree calls sorflush
   1227   1.8   mycroft 	 * to free up the rights that are queued in messages on the socket A,
   1228   1.8   mycroft 	 * i.e., the reference on B.  The sorflush calls via the dom_dispose
   1229   1.8   mycroft 	 * switch unp_dispose, which unp_scans with unp_discard.  This second
   1230   1.8   mycroft 	 * instance of unp_discard just calls closef on B.
   1231   1.8   mycroft 	 *
   1232   1.8   mycroft 	 * Well, a similar chain occurs on B, resulting in a sorflush on B,
   1233   1.8   mycroft 	 * which results in another closef on A.  Unfortunately, A is already
   1234   1.8   mycroft 	 * being closed, and the descriptor has already been marked with
   1235   1.8   mycroft 	 * SS_NOFDREF, and soclose panics at this point.
   1236   1.8   mycroft 	 *
   1237   1.8   mycroft 	 * Here, we first take an extra reference to each inaccessible
   1238  1.39  sommerfe 	 * descriptor.  Then, if the inaccessible descriptor is a
   1239  1.39  sommerfe 	 * socket, we call sorflush in case it is a Unix domain
   1240  1.39  sommerfe 	 * socket.  After we destroy all the rights carried in
   1241  1.39  sommerfe 	 * messages, we do a last closef to get rid of our extra
   1242  1.39  sommerfe 	 * reference.  This is the last close, and the unp_detach etc
   1243  1.39  sommerfe 	 * will shut down the socket.
   1244   1.8   mycroft 	 *
   1245   1.8   mycroft 	 * 91/09/19, bsy (at) cs.cmu.edu
   1246   1.8   mycroft 	 */
   1247   1.8   mycroft 	extra_ref = malloc(nfiles * sizeof(struct file *), M_FILE, M_WAITOK);
   1248  1.54      matt 	for (nunref = 0, fp = LIST_FIRST(&filehead), fpp = extra_ref; fp != 0;
   1249  1.11   mycroft 	    fp = nextfp) {
   1250  1.54      matt 		nextfp = LIST_NEXT(fp, f_list);
   1251  1.57        pk 		simple_lock(&fp->f_slock);
   1252  1.57        pk 		if (fp->f_count != 0 &&
   1253  1.57        pk 		    fp->f_count == fp->f_msgcount && !(fp->f_flag & FMARK)) {
   1254   1.8   mycroft 			*fpp++ = fp;
   1255   1.8   mycroft 			nunref++;
   1256   1.8   mycroft 			fp->f_count++;
   1257   1.8   mycroft 		}
   1258  1.57        pk 		simple_unlock(&fp->f_slock);
   1259   1.1       cgd 	}
   1260  1.39  sommerfe 	for (i = nunref, fpp = extra_ref; --i >= 0; ++fpp) {
   1261  1.45   thorpej 		fp = *fpp;
   1262  1.57        pk 		simple_lock(&fp->f_slock);
   1263  1.44   thorpej 		FILE_USE(fp);
   1264  1.39  sommerfe 		if (fp->f_type == DTYPE_SOCKET)
   1265  1.39  sommerfe 			sorflush((struct socket *)fp->f_data);
   1266  1.44   thorpej 		FILE_UNUSE(fp, NULL);
   1267  1.39  sommerfe 	}
   1268  1.44   thorpej 	for (i = nunref, fpp = extra_ref; --i >= 0; ++fpp) {
   1269  1.45   thorpej 		fp = *fpp;
   1270  1.57        pk 		simple_lock(&fp->f_slock);
   1271  1.44   thorpej 		FILE_USE(fp);
   1272  1.86  christos 		(void) closef(fp, (struct lwp *)0);
   1273  1.44   thorpej 	}
   1274   1.8   mycroft 	free((caddr_t)extra_ref, M_FILE);
   1275   1.1       cgd 	unp_gcing = 0;
   1276   1.1       cgd }
   1277   1.1       cgd 
   1278   1.5    andrew void
   1279  1.76      matt unp_dispose(struct mbuf *m)
   1280   1.1       cgd {
   1281   1.8   mycroft 
   1282   1.1       cgd 	if (m)
   1283  1.39  sommerfe 		unp_scan(m, unp_discard, 1);
   1284   1.1       cgd }
   1285   1.1       cgd 
   1286   1.5    andrew void
   1287  1.76      matt unp_scan(struct mbuf *m0, void (*op)(struct file *), int discard)
   1288   1.1       cgd {
   1289  1.46  augustss 	struct mbuf *m;
   1290  1.46  augustss 	struct file **rp;
   1291  1.46  augustss 	struct cmsghdr *cm;
   1292  1.46  augustss 	int i;
   1293   1.1       cgd 	int qfds;
   1294   1.1       cgd 
   1295   1.1       cgd 	while (m0) {
   1296  1.48   thorpej 		for (m = m0; m; m = m->m_next) {
   1297   1.1       cgd 			if (m->m_type == MT_CONTROL &&
   1298   1.1       cgd 			    m->m_len >= sizeof(*cm)) {
   1299   1.1       cgd 				cm = mtod(m, struct cmsghdr *);
   1300   1.1       cgd 				if (cm->cmsg_level != SOL_SOCKET ||
   1301   1.1       cgd 				    cm->cmsg_type != SCM_RIGHTS)
   1302   1.1       cgd 					continue;
   1303  1.48   thorpej 				qfds = (cm->cmsg_len - CMSG_ALIGN(sizeof(*cm)))
   1304  1.48   thorpej 				    / sizeof(struct file *);
   1305  1.48   thorpej 				rp = (struct file **)CMSG_DATA(cm);
   1306  1.39  sommerfe 				for (i = 0; i < qfds; i++) {
   1307  1.39  sommerfe 					struct file *fp = *rp;
   1308  1.39  sommerfe 					if (discard)
   1309  1.39  sommerfe 						*rp = 0;
   1310  1.39  sommerfe 					(*op)(fp);
   1311  1.39  sommerfe 					rp++;
   1312  1.39  sommerfe 				}
   1313   1.1       cgd 				break;		/* XXX, but saves time */
   1314   1.1       cgd 			}
   1315  1.48   thorpej 		}
   1316  1.52   thorpej 		m0 = m0->m_nextpkt;
   1317   1.1       cgd 	}
   1318   1.1       cgd }
   1319   1.1       cgd 
   1320   1.5    andrew void
   1321  1.76      matt unp_mark(struct file *fp)
   1322   1.1       cgd {
   1323  1.39  sommerfe 	if (fp == NULL)
   1324  1.39  sommerfe 		return;
   1325  1.80     perry 
   1326  1.39  sommerfe 	if (fp->f_flag & FMARK)
   1327  1.39  sommerfe 		return;
   1328   1.1       cgd 
   1329  1.39  sommerfe 	/* If we're already deferred, don't screw up the defer count */
   1330  1.39  sommerfe 	if (fp->f_flag & FDEFER)
   1331   1.1       cgd 		return;
   1332  1.39  sommerfe 
   1333  1.39  sommerfe 	/*
   1334  1.39  sommerfe 	 * Minimize the number of deferrals...  Sockets are the only
   1335  1.39  sommerfe 	 * type of descriptor which can hold references to another
   1336  1.39  sommerfe 	 * descriptor, so just mark other descriptors, and defer
   1337  1.39  sommerfe 	 * unmarked sockets for the next pass.
   1338  1.39  sommerfe 	 */
   1339  1.39  sommerfe 	if (fp->f_type == DTYPE_SOCKET) {
   1340  1.39  sommerfe 		unp_defer++;
   1341  1.39  sommerfe 		if (fp->f_count == 0)
   1342  1.39  sommerfe 			panic("unp_mark: queued unref");
   1343  1.39  sommerfe 		fp->f_flag |= FDEFER;
   1344  1.39  sommerfe 	} else {
   1345  1.39  sommerfe 		fp->f_flag |= FMARK;
   1346  1.39  sommerfe 	}
   1347  1.39  sommerfe 	return;
   1348   1.1       cgd }
   1349   1.1       cgd 
   1350   1.5    andrew void
   1351  1.76      matt unp_discard(struct file *fp)
   1352   1.1       cgd {
   1353  1.39  sommerfe 	if (fp == NULL)
   1354  1.39  sommerfe 		return;
   1355  1.57        pk 	simple_lock(&fp->f_slock);
   1356  1.57        pk 	fp->f_usecount++;	/* i.e. FILE_USE(fp) sans locking */
   1357   1.1       cgd 	fp->f_msgcount--;
   1358  1.57        pk 	simple_unlock(&fp->f_slock);
   1359   1.1       cgd 	unp_rights--;
   1360  1.86  christos 	(void) closef(fp, (struct lwp *)0);
   1361   1.1       cgd }
   1362