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uipc_socket.c revision 1.177.4.2.2.1.2.1
      1  1.177.4.2.2.1.2.1      matt /*	$NetBSD: uipc_socket.c,v 1.177.4.2.2.1.2.1 2010/04/21 00:28:18 matt Exp $	*/
      2               1.64   thorpej 
      3               1.64   thorpej /*-
      4          1.177.4.2       snj  * Copyright (c) 2002, 2007, 2008, 2009 The NetBSD Foundation, Inc.
      5               1.64   thorpej  * All rights reserved.
      6               1.64   thorpej  *
      7               1.64   thorpej  * This code is derived from software contributed to The NetBSD Foundation
      8          1.177.4.2       snj  * by Jason R. Thorpe of Wasabi Systems, Inc, and by Andrew Doran.
      9               1.64   thorpej  *
     10               1.64   thorpej  * Redistribution and use in source and binary forms, with or without
     11               1.64   thorpej  * modification, are permitted provided that the following conditions
     12               1.64   thorpej  * are met:
     13               1.64   thorpej  * 1. Redistributions of source code must retain the above copyright
     14               1.64   thorpej  *    notice, this list of conditions and the following disclaimer.
     15               1.64   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     16               1.64   thorpej  *    notice, this list of conditions and the following disclaimer in the
     17               1.64   thorpej  *    documentation and/or other materials provided with the distribution.
     18               1.64   thorpej  *
     19               1.64   thorpej  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20               1.64   thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21               1.64   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22               1.64   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23               1.64   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24               1.64   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25               1.64   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26               1.64   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27               1.64   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28               1.64   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29               1.64   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     30               1.64   thorpej  */
     31               1.16       cgd 
     32                1.1       cgd /*
     33              1.159        ad  * Copyright (c) 2004 The FreeBSD Foundation
     34              1.159        ad  * Copyright (c) 2004 Robert Watson
     35               1.15   mycroft  * Copyright (c) 1982, 1986, 1988, 1990, 1993
     36               1.15   mycroft  *	The Regents of the University of California.  All rights reserved.
     37                1.1       cgd  *
     38                1.1       cgd  * Redistribution and use in source and binary forms, with or without
     39                1.1       cgd  * modification, are permitted provided that the following conditions
     40                1.1       cgd  * are met:
     41                1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     42                1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     43                1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     44                1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     45                1.1       cgd  *    documentation and/or other materials provided with the distribution.
     46               1.85       agc  * 3. Neither the name of the University nor the names of its contributors
     47                1.1       cgd  *    may be used to endorse or promote products derived from this software
     48                1.1       cgd  *    without specific prior written permission.
     49                1.1       cgd  *
     50                1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     51                1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     52                1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     53                1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     54                1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     55                1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     56                1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     57                1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     58                1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     59                1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     60                1.1       cgd  * SUCH DAMAGE.
     61                1.1       cgd  *
     62               1.32      fvdl  *	@(#)uipc_socket.c	8.6 (Berkeley) 5/2/95
     63                1.1       cgd  */
     64               1.59     lukem 
     65               1.59     lukem #include <sys/cdefs.h>
     66  1.177.4.2.2.1.2.1      matt __KERNEL_RCSID(0, "$NetBSD: uipc_socket.c,v 1.177.4.2.2.1.2.1 2010/04/21 00:28:18 matt Exp $");
     67               1.64   thorpej 
     68               1.64   thorpej #include "opt_sock_counters.h"
     69               1.64   thorpej #include "opt_sosend_loan.h"
     70               1.81    martin #include "opt_mbuftrace.h"
     71               1.84     ragge #include "opt_somaxkva.h"
     72              1.167        ad #include "opt_multiprocessor.h"	/* XXX */
     73                1.1       cgd 
     74                1.9   mycroft #include <sys/param.h>
     75                1.9   mycroft #include <sys/systm.h>
     76                1.9   mycroft #include <sys/proc.h>
     77                1.9   mycroft #include <sys/file.h>
     78              1.142    dyoung #include <sys/filedesc.h>
     79              1.173    plunky #include <sys/kmem.h>
     80                1.9   mycroft #include <sys/mbuf.h>
     81                1.9   mycroft #include <sys/domain.h>
     82                1.9   mycroft #include <sys/kernel.h>
     83                1.9   mycroft #include <sys/protosw.h>
     84                1.9   mycroft #include <sys/socket.h>
     85                1.9   mycroft #include <sys/socketvar.h>
     86               1.21  christos #include <sys/signalvar.h>
     87                1.9   mycroft #include <sys/resourcevar.h>
     88              1.174     pooka #include <sys/uidinfo.h>
     89               1.72  jdolecek #include <sys/event.h>
     90               1.89  christos #include <sys/poll.h>
     91              1.118      elad #include <sys/kauth.h>
     92              1.136        ad #include <sys/mutex.h>
     93              1.136        ad #include <sys/condvar.h>
     94               1.37   thorpej 
     95               1.64   thorpej #include <uvm/uvm.h>
     96               1.64   thorpej 
     97               1.77   thorpej MALLOC_DEFINE(M_SOOPTS, "soopts", "socket options");
     98               1.77   thorpej MALLOC_DEFINE(M_SONAME, "soname", "socket name");
     99               1.37   thorpej 
    100              1.142    dyoung extern const struct fileops socketops;
    101              1.142    dyoung 
    102               1.54     lukem extern int	somaxconn;			/* patchable (XXX sysctl) */
    103               1.54     lukem int		somaxconn = SOMAXCONN;
    104              1.160        ad kmutex_t	*softnet_lock;
    105               1.49  jonathan 
    106               1.64   thorpej #ifdef SOSEND_COUNTERS
    107               1.64   thorpej #include <sys/device.h>
    108               1.64   thorpej 
    109              1.113   thorpej static struct evcnt sosend_loan_big = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
    110               1.64   thorpej     NULL, "sosend", "loan big");
    111              1.113   thorpej static struct evcnt sosend_copy_big = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
    112               1.64   thorpej     NULL, "sosend", "copy big");
    113              1.113   thorpej static struct evcnt sosend_copy_small = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
    114               1.64   thorpej     NULL, "sosend", "copy small");
    115              1.113   thorpej static struct evcnt sosend_kvalimit = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
    116               1.64   thorpej     NULL, "sosend", "kva limit");
    117               1.64   thorpej 
    118               1.64   thorpej #define	SOSEND_COUNTER_INCR(ev)		(ev)->ev_count++
    119               1.64   thorpej 
    120              1.101      matt EVCNT_ATTACH_STATIC(sosend_loan_big);
    121              1.101      matt EVCNT_ATTACH_STATIC(sosend_copy_big);
    122              1.101      matt EVCNT_ATTACH_STATIC(sosend_copy_small);
    123              1.101      matt EVCNT_ATTACH_STATIC(sosend_kvalimit);
    124               1.64   thorpej #else
    125               1.64   thorpej 
    126               1.64   thorpej #define	SOSEND_COUNTER_INCR(ev)		/* nothing */
    127               1.64   thorpej 
    128               1.64   thorpej #endif /* SOSEND_COUNTERS */
    129               1.64   thorpej 
    130              1.119      yamt static struct callback_entry sokva_reclaimerentry;
    131                1.1       cgd 
    132              1.167        ad #if defined(SOSEND_NO_LOAN) || defined(MULTIPROCESSOR)
    133              1.121      yamt int sock_loan_thresh = -1;
    134               1.71   thorpej #else
    135              1.121      yamt int sock_loan_thresh = 4096;
    136               1.65   thorpej #endif
    137               1.64   thorpej 
    138              1.136        ad static kmutex_t so_pendfree_lock;
    139              1.113   thorpej static struct mbuf *so_pendfree;
    140               1.64   thorpej 
    141               1.84     ragge #ifndef SOMAXKVA
    142               1.84     ragge #define	SOMAXKVA (16 * 1024 * 1024)
    143               1.84     ragge #endif
    144               1.84     ragge int somaxkva = SOMAXKVA;
    145              1.113   thorpej static int socurkva;
    146              1.136        ad static kcondvar_t socurkva_cv;
    147               1.64   thorpej 
    148               1.64   thorpej #define	SOCK_LOAN_CHUNK		65536
    149               1.64   thorpej 
    150              1.117      yamt static size_t sodopendfree(void);
    151              1.117      yamt static size_t sodopendfreel(void);
    152               1.93      yamt 
    153              1.113   thorpej static vsize_t
    154              1.129      yamt sokvareserve(struct socket *so, vsize_t len)
    155               1.80      yamt {
    156               1.98  christos 	int error;
    157               1.80      yamt 
    158              1.136        ad 	mutex_enter(&so_pendfree_lock);
    159               1.80      yamt 	while (socurkva + len > somaxkva) {
    160               1.93      yamt 		size_t freed;
    161               1.93      yamt 
    162               1.93      yamt 		/*
    163               1.93      yamt 		 * try to do pendfree.
    164               1.93      yamt 		 */
    165               1.93      yamt 
    166              1.117      yamt 		freed = sodopendfreel();
    167               1.93      yamt 
    168               1.93      yamt 		/*
    169               1.93      yamt 		 * if some kva was freed, try again.
    170               1.93      yamt 		 */
    171               1.93      yamt 
    172               1.93      yamt 		if (freed)
    173               1.80      yamt 			continue;
    174               1.93      yamt 
    175               1.80      yamt 		SOSEND_COUNTER_INCR(&sosend_kvalimit);
    176              1.136        ad 		error = cv_wait_sig(&socurkva_cv, &so_pendfree_lock);
    177               1.98  christos 		if (error) {
    178               1.98  christos 			len = 0;
    179               1.98  christos 			break;
    180               1.98  christos 		}
    181               1.80      yamt 	}
    182               1.93      yamt 	socurkva += len;
    183              1.136        ad 	mutex_exit(&so_pendfree_lock);
    184               1.98  christos 	return len;
    185               1.95      yamt }
    186               1.95      yamt 
    187              1.113   thorpej static void
    188               1.95      yamt sokvaunreserve(vsize_t len)
    189               1.95      yamt {
    190               1.95      yamt 
    191              1.136        ad 	mutex_enter(&so_pendfree_lock);
    192               1.95      yamt 	socurkva -= len;
    193              1.136        ad 	cv_broadcast(&socurkva_cv);
    194              1.136        ad 	mutex_exit(&so_pendfree_lock);
    195               1.95      yamt }
    196               1.95      yamt 
    197               1.95      yamt /*
    198               1.95      yamt  * sokvaalloc: allocate kva for loan.
    199               1.95      yamt  */
    200               1.95      yamt 
    201               1.95      yamt vaddr_t
    202               1.95      yamt sokvaalloc(vsize_t len, struct socket *so)
    203               1.95      yamt {
    204               1.95      yamt 	vaddr_t lva;
    205               1.95      yamt 
    206               1.95      yamt 	/*
    207               1.95      yamt 	 * reserve kva.
    208               1.95      yamt 	 */
    209               1.95      yamt 
    210               1.98  christos 	if (sokvareserve(so, len) == 0)
    211               1.98  christos 		return 0;
    212               1.93      yamt 
    213               1.93      yamt 	/*
    214               1.93      yamt 	 * allocate kva.
    215               1.93      yamt 	 */
    216               1.80      yamt 
    217              1.109      yamt 	lva = uvm_km_alloc(kernel_map, len, 0, UVM_KMF_VAONLY | UVM_KMF_WAITVA);
    218               1.95      yamt 	if (lva == 0) {
    219               1.95      yamt 		sokvaunreserve(len);
    220               1.80      yamt 		return (0);
    221               1.95      yamt 	}
    222               1.80      yamt 
    223               1.80      yamt 	return lva;
    224               1.80      yamt }
    225               1.80      yamt 
    226               1.93      yamt /*
    227               1.93      yamt  * sokvafree: free kva for loan.
    228               1.93      yamt  */
    229               1.93      yamt 
    230               1.80      yamt void
    231               1.80      yamt sokvafree(vaddr_t sva, vsize_t len)
    232               1.80      yamt {
    233               1.93      yamt 
    234               1.93      yamt 	/*
    235               1.93      yamt 	 * free kva.
    236               1.93      yamt 	 */
    237               1.80      yamt 
    238              1.109      yamt 	uvm_km_free(kernel_map, sva, len, UVM_KMF_VAONLY);
    239               1.93      yamt 
    240               1.93      yamt 	/*
    241               1.93      yamt 	 * unreserve kva.
    242               1.93      yamt 	 */
    243               1.93      yamt 
    244               1.95      yamt 	sokvaunreserve(len);
    245               1.80      yamt }
    246               1.80      yamt 
    247               1.64   thorpej static void
    248              1.134  christos sodoloanfree(struct vm_page **pgs, void *buf, size_t size)
    249               1.64   thorpej {
    250              1.156      yamt 	vaddr_t sva, eva;
    251               1.64   thorpej 	vsize_t len;
    252              1.156      yamt 	int npgs;
    253              1.156      yamt 
    254              1.156      yamt 	KASSERT(pgs != NULL);
    255               1.64   thorpej 
    256               1.64   thorpej 	eva = round_page((vaddr_t) buf + size);
    257               1.64   thorpej 	sva = trunc_page((vaddr_t) buf);
    258               1.64   thorpej 	len = eva - sva;
    259               1.64   thorpej 	npgs = len >> PAGE_SHIFT;
    260               1.64   thorpej 
    261               1.64   thorpej 	pmap_kremove(sva, len);
    262               1.64   thorpej 	pmap_update(pmap_kernel());
    263               1.64   thorpej 	uvm_unloan(pgs, npgs, UVM_LOAN_TOPAGE);
    264               1.80      yamt 	sokvafree(sva, len);
    265               1.64   thorpej }
    266               1.64   thorpej 
    267               1.64   thorpej static size_t
    268              1.152      matt sodopendfree(void)
    269               1.64   thorpej {
    270               1.93      yamt 	size_t rv;
    271               1.64   thorpej 
    272              1.160        ad 	if (__predict_true(so_pendfree == NULL))
    273              1.160        ad 		return 0;
    274              1.160        ad 
    275              1.136        ad 	mutex_enter(&so_pendfree_lock);
    276              1.117      yamt 	rv = sodopendfreel();
    277              1.136        ad 	mutex_exit(&so_pendfree_lock);
    278               1.93      yamt 
    279               1.93      yamt 	return rv;
    280               1.93      yamt }
    281               1.93      yamt 
    282               1.93      yamt /*
    283               1.93      yamt  * sodopendfreel: free mbufs on "pendfree" list.
    284              1.136        ad  * unlock and relock so_pendfree_lock when freeing mbufs.
    285               1.93      yamt  *
    286              1.136        ad  * => called with so_pendfree_lock held.
    287               1.93      yamt  */
    288               1.93      yamt 
    289               1.93      yamt static size_t
    290              1.152      matt sodopendfreel(void)
    291               1.93      yamt {
    292              1.137        ad 	struct mbuf *m, *next;
    293               1.93      yamt 	size_t rv = 0;
    294               1.93      yamt 
    295              1.136        ad 	KASSERT(mutex_owned(&so_pendfree_lock));
    296               1.64   thorpej 
    297              1.137        ad 	while (so_pendfree != NULL) {
    298               1.64   thorpej 		m = so_pendfree;
    299               1.93      yamt 		so_pendfree = NULL;
    300              1.136        ad 		mutex_exit(&so_pendfree_lock);
    301               1.93      yamt 
    302               1.93      yamt 		for (; m != NULL; m = next) {
    303               1.93      yamt 			next = m->m_next;
    304              1.156      yamt 			KASSERT((~m->m_flags & (M_EXT|M_EXT_PAGES)) == 0);
    305              1.156      yamt 			KASSERT(m->m_ext.ext_refcnt == 0);
    306               1.93      yamt 
    307               1.93      yamt 			rv += m->m_ext.ext_size;
    308              1.156      yamt 			sodoloanfree(m->m_ext.ext_pgs, m->m_ext.ext_buf,
    309               1.93      yamt 			    m->m_ext.ext_size);
    310              1.145        ad 			pool_cache_put(mb_cache, m);
    311               1.93      yamt 		}
    312               1.64   thorpej 
    313              1.136        ad 		mutex_enter(&so_pendfree_lock);
    314               1.64   thorpej 	}
    315               1.64   thorpej 
    316               1.64   thorpej 	return (rv);
    317               1.64   thorpej }
    318               1.64   thorpej 
    319               1.80      yamt void
    320              1.134  christos soloanfree(struct mbuf *m, void *buf, size_t size, void *arg)
    321               1.64   thorpej {
    322               1.64   thorpej 
    323              1.156      yamt 	KASSERT(m != NULL);
    324               1.64   thorpej 
    325               1.93      yamt 	/*
    326               1.93      yamt 	 * postpone freeing mbuf.
    327               1.93      yamt 	 *
    328               1.93      yamt 	 * we can't do it in interrupt context
    329               1.93      yamt 	 * because we need to put kva back to kernel_map.
    330               1.93      yamt 	 */
    331               1.93      yamt 
    332              1.136        ad 	mutex_enter(&so_pendfree_lock);
    333               1.92      yamt 	m->m_next = so_pendfree;
    334               1.92      yamt 	so_pendfree = m;
    335              1.136        ad 	cv_broadcast(&socurkva_cv);
    336              1.136        ad 	mutex_exit(&so_pendfree_lock);
    337               1.64   thorpej }
    338               1.64   thorpej 
    339               1.64   thorpej static long
    340               1.64   thorpej sosend_loan(struct socket *so, struct uio *uio, struct mbuf *m, long space)
    341               1.64   thorpej {
    342               1.64   thorpej 	struct iovec *iov = uio->uio_iov;
    343               1.64   thorpej 	vaddr_t sva, eva;
    344               1.64   thorpej 	vsize_t len;
    345              1.156      yamt 	vaddr_t lva;
    346              1.156      yamt 	int npgs, error;
    347              1.156      yamt 	vaddr_t va;
    348              1.156      yamt 	int i;
    349               1.64   thorpej 
    350              1.116      yamt 	if (VMSPACE_IS_KERNEL_P(uio->uio_vmspace))
    351               1.64   thorpej 		return (0);
    352               1.64   thorpej 
    353               1.64   thorpej 	if (iov->iov_len < (size_t) space)
    354               1.64   thorpej 		space = iov->iov_len;
    355               1.64   thorpej 	if (space > SOCK_LOAN_CHUNK)
    356               1.64   thorpej 		space = SOCK_LOAN_CHUNK;
    357               1.64   thorpej 
    358               1.64   thorpej 	eva = round_page((vaddr_t) iov->iov_base + space);
    359               1.64   thorpej 	sva = trunc_page((vaddr_t) iov->iov_base);
    360               1.64   thorpej 	len = eva - sva;
    361               1.64   thorpej 	npgs = len >> PAGE_SHIFT;
    362               1.64   thorpej 
    363               1.79   thorpej 	KASSERT(npgs <= M_EXT_MAXPAGES);
    364               1.79   thorpej 
    365               1.80      yamt 	lva = sokvaalloc(len, so);
    366               1.64   thorpej 	if (lva == 0)
    367               1.80      yamt 		return 0;
    368               1.64   thorpej 
    369              1.116      yamt 	error = uvm_loan(&uio->uio_vmspace->vm_map, sva, len,
    370               1.79   thorpej 	    m->m_ext.ext_pgs, UVM_LOAN_TOPAGE);
    371               1.64   thorpej 	if (error) {
    372               1.80      yamt 		sokvafree(lva, len);
    373               1.64   thorpej 		return (0);
    374               1.64   thorpej 	}
    375               1.64   thorpej 
    376               1.64   thorpej 	for (i = 0, va = lva; i < npgs; i++, va += PAGE_SIZE)
    377               1.79   thorpej 		pmap_kenter_pa(va, VM_PAGE_TO_PHYS(m->m_ext.ext_pgs[i]),
    378               1.79   thorpej 		    VM_PROT_READ);
    379               1.64   thorpej 	pmap_update(pmap_kernel());
    380               1.64   thorpej 
    381               1.64   thorpej 	lva += (vaddr_t) iov->iov_base & PAGE_MASK;
    382               1.64   thorpej 
    383              1.134  christos 	MEXTADD(m, (void *) lva, space, M_MBUF, soloanfree, so);
    384               1.79   thorpej 	m->m_flags |= M_EXT_PAGES | M_EXT_ROMAP;
    385               1.64   thorpej 
    386               1.64   thorpej 	uio->uio_resid -= space;
    387               1.64   thorpej 	/* uio_offset not updated, not set/used for write(2) */
    388              1.134  christos 	uio->uio_iov->iov_base = (char *)uio->uio_iov->iov_base + space;
    389               1.64   thorpej 	uio->uio_iov->iov_len -= space;
    390               1.64   thorpej 	if (uio->uio_iov->iov_len == 0) {
    391               1.64   thorpej 		uio->uio_iov++;
    392               1.64   thorpej 		uio->uio_iovcnt--;
    393               1.64   thorpej 	}
    394               1.64   thorpej 
    395               1.64   thorpej 	return (space);
    396               1.64   thorpej }
    397               1.64   thorpej 
    398              1.119      yamt static int
    399              1.129      yamt sokva_reclaim_callback(struct callback_entry *ce, void *obj, void *arg)
    400              1.119      yamt {
    401              1.119      yamt 
    402              1.119      yamt 	KASSERT(ce == &sokva_reclaimerentry);
    403              1.119      yamt 	KASSERT(obj == NULL);
    404              1.119      yamt 
    405              1.119      yamt 	sodopendfree();
    406              1.119      yamt 	if (!vm_map_starved_p(kernel_map)) {
    407              1.119      yamt 		return CALLBACK_CHAIN_ABORT;
    408              1.119      yamt 	}
    409              1.119      yamt 	return CALLBACK_CHAIN_CONTINUE;
    410              1.119      yamt }
    411              1.119      yamt 
    412              1.142    dyoung struct mbuf *
    413              1.147    dyoung getsombuf(struct socket *so, int type)
    414              1.142    dyoung {
    415              1.142    dyoung 	struct mbuf *m;
    416              1.142    dyoung 
    417              1.147    dyoung 	m = m_get(M_WAIT, type);
    418              1.142    dyoung 	MCLAIM(m, so->so_mowner);
    419              1.142    dyoung 	return m;
    420              1.142    dyoung }
    421              1.142    dyoung 
    422              1.119      yamt void
    423              1.119      yamt soinit(void)
    424              1.119      yamt {
    425              1.119      yamt 
    426              1.148        ad 	mutex_init(&so_pendfree_lock, MUTEX_DEFAULT, IPL_VM);
    427              1.160        ad 	softnet_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
    428              1.136        ad 	cv_init(&socurkva_cv, "sokva");
    429              1.166        ad 	soinit2();
    430              1.136        ad 
    431              1.119      yamt 	/* Set the initial adjusted socket buffer size. */
    432              1.119      yamt 	if (sb_max_set(sb_max))
    433              1.119      yamt 		panic("bad initial sb_max value: %lu", sb_max);
    434              1.119      yamt 
    435              1.119      yamt 	callback_register(&vm_map_to_kernel(kernel_map)->vmk_reclaim_callback,
    436              1.119      yamt 	    &sokva_reclaimerentry, NULL, sokva_reclaim_callback);
    437              1.119      yamt }
    438              1.119      yamt 
    439                1.1       cgd /*
    440                1.1       cgd  * Socket operation routines.
    441                1.1       cgd  * These routines are called by the routines in
    442                1.1       cgd  * sys_socket.c or from a system process, and
    443                1.1       cgd  * implement the semantics of socket operations by
    444                1.1       cgd  * switching out to the protocol specific routines.
    445                1.1       cgd  */
    446                1.1       cgd /*ARGSUSED*/
    447                1.3    andrew int
    448              1.160        ad socreate(int dom, struct socket **aso, int type, int proto, struct lwp *l,
    449              1.160        ad 	 struct socket *lockso)
    450                1.1       cgd {
    451               1.99      matt 	const struct protosw	*prp;
    452               1.54     lukem 	struct socket	*so;
    453              1.115      yamt 	uid_t		uid;
    454              1.160        ad 	int		error;
    455              1.160        ad 	kmutex_t	*lock;
    456                1.1       cgd 
    457              1.132      elad 	error = kauth_authorize_network(l->l_cred, KAUTH_NETWORK_SOCKET,
    458              1.132      elad 	    KAUTH_REQ_NETWORK_SOCKET_OPEN, KAUTH_ARG(dom), KAUTH_ARG(type),
    459              1.132      elad 	    KAUTH_ARG(proto));
    460              1.140    dyoung 	if (error != 0)
    461              1.140    dyoung 		return error;
    462              1.127      elad 
    463                1.1       cgd 	if (proto)
    464                1.1       cgd 		prp = pffindproto(dom, proto, type);
    465                1.1       cgd 	else
    466                1.1       cgd 		prp = pffindtype(dom, type);
    467              1.140    dyoung 	if (prp == NULL) {
    468              1.120  ginsbach 		/* no support for domain */
    469              1.120  ginsbach 		if (pffinddomain(dom) == 0)
    470              1.140    dyoung 			return EAFNOSUPPORT;
    471              1.120  ginsbach 		/* no support for socket type */
    472              1.120  ginsbach 		if (proto == 0 && type != 0)
    473              1.140    dyoung 			return EPROTOTYPE;
    474              1.140    dyoung 		return EPROTONOSUPPORT;
    475              1.120  ginsbach 	}
    476              1.140    dyoung 	if (prp->pr_usrreq == NULL)
    477              1.140    dyoung 		return EPROTONOSUPPORT;
    478                1.1       cgd 	if (prp->pr_type != type)
    479              1.140    dyoung 		return EPROTOTYPE;
    480              1.160        ad 
    481              1.160        ad 	so = soget(true);
    482                1.1       cgd 	so->so_type = type;
    483                1.1       cgd 	so->so_proto = prp;
    484               1.33      matt 	so->so_send = sosend;
    485               1.33      matt 	so->so_receive = soreceive;
    486               1.78      matt #ifdef MBUFTRACE
    487               1.78      matt 	so->so_rcv.sb_mowner = &prp->pr_domain->dom_mowner;
    488               1.78      matt 	so->so_snd.sb_mowner = &prp->pr_domain->dom_mowner;
    489               1.78      matt 	so->so_mowner = &prp->pr_domain->dom_mowner;
    490               1.78      matt #endif
    491              1.138     rmind 	uid = kauth_cred_geteuid(l->l_cred);
    492              1.115      yamt 	so->so_uidinfo = uid_find(uid);
    493              1.168      yamt 	so->so_egid = kauth_cred_getegid(l->l_cred);
    494              1.168      yamt 	so->so_cpid = l->l_proc->p_pid;
    495              1.160        ad 	if (lockso != NULL) {
    496              1.160        ad 		/* Caller wants us to share a lock. */
    497              1.160        ad 		lock = lockso->so_lock;
    498              1.160        ad 		so->so_lock = lock;
    499              1.160        ad 		mutex_obj_hold(lock);
    500              1.160        ad 		mutex_enter(lock);
    501              1.160        ad 	} else {
    502              1.160        ad 		/* Lock assigned and taken during PRU_ATTACH. */
    503              1.160        ad 	}
    504              1.140    dyoung 	error = (*prp->pr_usrreq)(so, PRU_ATTACH, NULL,
    505              1.140    dyoung 	    (struct mbuf *)(long)proto, NULL, l);
    506              1.160        ad 	KASSERT(solocked(so));
    507              1.140    dyoung 	if (error != 0) {
    508                1.1       cgd 		so->so_state |= SS_NOFDREF;
    509                1.1       cgd 		sofree(so);
    510              1.140    dyoung 		return error;
    511                1.1       cgd 	}
    512              1.160        ad 	sounlock(so);
    513                1.1       cgd 	*aso = so;
    514              1.140    dyoung 	return 0;
    515                1.1       cgd }
    516                1.1       cgd 
    517              1.142    dyoung /* On success, write file descriptor to fdout and return zero.  On
    518              1.142    dyoung  * failure, return non-zero; *fdout will be undefined.
    519              1.142    dyoung  */
    520              1.142    dyoung int
    521              1.142    dyoung fsocreate(int domain, struct socket **sop, int type, int protocol,
    522              1.142    dyoung     struct lwp *l, int *fdout)
    523              1.142    dyoung {
    524              1.142    dyoung 	struct socket	*so;
    525              1.142    dyoung 	struct file	*fp;
    526              1.142    dyoung 	int		fd, error;
    527              1.142    dyoung 
    528              1.155        ad 	if ((error = fd_allocfile(&fp, &fd)) != 0)
    529              1.142    dyoung 		return (error);
    530              1.142    dyoung 	fp->f_flag = FREAD|FWRITE;
    531              1.142    dyoung 	fp->f_type = DTYPE_SOCKET;
    532              1.142    dyoung 	fp->f_ops = &socketops;
    533              1.160        ad 	error = socreate(domain, &so, type, protocol, l, NULL);
    534              1.142    dyoung 	if (error != 0) {
    535              1.155        ad 		fd_abort(curproc, fp, fd);
    536              1.142    dyoung 	} else {
    537              1.142    dyoung 		if (sop != NULL)
    538              1.142    dyoung 			*sop = so;
    539              1.142    dyoung 		fp->f_data = so;
    540              1.155        ad 		fd_affix(curproc, fp, fd);
    541              1.142    dyoung 		*fdout = fd;
    542              1.142    dyoung 	}
    543              1.142    dyoung 	return error;
    544              1.142    dyoung }
    545              1.142    dyoung 
    546                1.3    andrew int
    547              1.114  christos sobind(struct socket *so, struct mbuf *nam, struct lwp *l)
    548                1.1       cgd {
    549              1.160        ad 	int	error;
    550                1.1       cgd 
    551              1.160        ad 	solock(so);
    552              1.140    dyoung 	error = (*so->so_proto->pr_usrreq)(so, PRU_BIND, NULL, nam, NULL, l);
    553              1.160        ad 	sounlock(so);
    554              1.140    dyoung 	return error;
    555                1.1       cgd }
    556                1.1       cgd 
    557                1.3    andrew int
    558              1.150      elad solisten(struct socket *so, int backlog, struct lwp *l)
    559                1.1       cgd {
    560              1.160        ad 	int	error;
    561                1.1       cgd 
    562              1.160        ad 	solock(so);
    563              1.158        ad 	if ((so->so_state & (SS_ISCONNECTED | SS_ISCONNECTING |
    564              1.163        ad 	    SS_ISDISCONNECTING)) != 0) {
    565              1.163        ad 	    	sounlock(so);
    566              1.158        ad 		return (EOPNOTSUPP);
    567              1.163        ad 	}
    568              1.140    dyoung 	error = (*so->so_proto->pr_usrreq)(so, PRU_LISTEN, NULL,
    569              1.150      elad 	    NULL, NULL, l);
    570              1.140    dyoung 	if (error != 0) {
    571              1.160        ad 		sounlock(so);
    572              1.140    dyoung 		return error;
    573                1.1       cgd 	}
    574               1.63      matt 	if (TAILQ_EMPTY(&so->so_q))
    575                1.1       cgd 		so->so_options |= SO_ACCEPTCONN;
    576                1.1       cgd 	if (backlog < 0)
    577                1.1       cgd 		backlog = 0;
    578               1.49  jonathan 	so->so_qlimit = min(backlog, somaxconn);
    579              1.160        ad 	sounlock(so);
    580              1.140    dyoung 	return 0;
    581                1.1       cgd }
    582                1.1       cgd 
    583               1.21  christos void
    584               1.54     lukem sofree(struct socket *so)
    585                1.1       cgd {
    586              1.161        ad 	u_int refs;
    587                1.1       cgd 
    588              1.160        ad 	KASSERT(solocked(so));
    589              1.160        ad 
    590              1.160        ad 	if (so->so_pcb || (so->so_state & SS_NOFDREF) == 0) {
    591              1.160        ad 		sounlock(so);
    592                1.1       cgd 		return;
    593              1.160        ad 	}
    594               1.43   mycroft 	if (so->so_head) {
    595               1.43   mycroft 		/*
    596               1.43   mycroft 		 * We must not decommission a socket that's on the accept(2)
    597               1.43   mycroft 		 * queue.  If we do, then accept(2) may hang after select(2)
    598               1.43   mycroft 		 * indicated that the listening socket was ready.
    599               1.43   mycroft 		 */
    600              1.160        ad 		if (!soqremque(so, 0)) {
    601              1.160        ad 			sounlock(so);
    602               1.43   mycroft 			return;
    603              1.160        ad 		}
    604               1.43   mycroft 	}
    605               1.98  christos 	if (so->so_rcv.sb_hiwat)
    606              1.110  christos 		(void)chgsbsize(so->so_uidinfo, &so->so_rcv.sb_hiwat, 0,
    607               1.98  christos 		    RLIM_INFINITY);
    608               1.98  christos 	if (so->so_snd.sb_hiwat)
    609              1.110  christos 		(void)chgsbsize(so->so_uidinfo, &so->so_snd.sb_hiwat, 0,
    610               1.98  christos 		    RLIM_INFINITY);
    611               1.98  christos 	sbrelease(&so->so_snd, so);
    612              1.160        ad 	KASSERT(!cv_has_waiters(&so->so_cv));
    613              1.160        ad 	KASSERT(!cv_has_waiters(&so->so_rcv.sb_cv));
    614              1.160        ad 	KASSERT(!cv_has_waiters(&so->so_snd.sb_cv));
    615                1.1       cgd 	sorflush(so);
    616              1.161        ad 	refs = so->so_aborting;	/* XXX */
    617              1.177        ad 	/* Remove acccept filter if one is present. */
    618              1.170       tls 	if (so->so_accf != NULL)
    619              1.177        ad 		(void)accept_filt_clear(so);
    620              1.160        ad 	sounlock(so);
    621              1.161        ad 	if (refs == 0)		/* XXX */
    622              1.161        ad 		soput(so);
    623                1.1       cgd }
    624                1.1       cgd 
    625                1.1       cgd /*
    626                1.1       cgd  * Close a socket on last file table reference removal.
    627                1.1       cgd  * Initiate disconnect if connected.
    628                1.1       cgd  * Free socket when disconnect complete.
    629                1.1       cgd  */
    630                1.3    andrew int
    631               1.54     lukem soclose(struct socket *so)
    632                1.1       cgd {
    633               1.54     lukem 	struct socket	*so2;
    634              1.160        ad 	int		error;
    635              1.160        ad 	int		error2;
    636                1.1       cgd 
    637               1.54     lukem 	error = 0;
    638              1.160        ad 	solock(so);
    639                1.1       cgd 	if (so->so_options & SO_ACCEPTCONN) {
    640              1.172        ad 		for (;;) {
    641              1.172        ad 			if ((so2 = TAILQ_FIRST(&so->so_q0)) != 0) {
    642              1.160        ad 				KASSERT(solocked2(so, so2));
    643              1.160        ad 				(void) soqremque(so2, 0);
    644              1.160        ad 				/* soabort drops the lock. */
    645              1.160        ad 				(void) soabort(so2);
    646              1.160        ad 				solock(so);
    647              1.172        ad 				continue;
    648              1.160        ad 			}
    649              1.172        ad 			if ((so2 = TAILQ_FIRST(&so->so_q)) != 0) {
    650              1.160        ad 				KASSERT(solocked2(so, so2));
    651              1.160        ad 				(void) soqremque(so2, 1);
    652              1.160        ad 				/* soabort drops the lock. */
    653              1.160        ad 				(void) soabort(so2);
    654              1.160        ad 				solock(so);
    655              1.172        ad 				continue;
    656              1.160        ad 			}
    657              1.172        ad 			break;
    658              1.172        ad 		}
    659                1.1       cgd 	}
    660                1.1       cgd 	if (so->so_pcb == 0)
    661                1.1       cgd 		goto discard;
    662                1.1       cgd 	if (so->so_state & SS_ISCONNECTED) {
    663                1.1       cgd 		if ((so->so_state & SS_ISDISCONNECTING) == 0) {
    664                1.1       cgd 			error = sodisconnect(so);
    665                1.1       cgd 			if (error)
    666                1.1       cgd 				goto drop;
    667                1.1       cgd 		}
    668                1.1       cgd 		if (so->so_options & SO_LINGER) {
    669              1.151        ad 			if ((so->so_state & SS_ISDISCONNECTING) && so->so_nbio)
    670                1.1       cgd 				goto drop;
    671               1.21  christos 			while (so->so_state & SS_ISCONNECTED) {
    672          1.177.4.1       snj 				error = sowait(so, true, so->so_linger * hz);
    673               1.21  christos 				if (error)
    674                1.1       cgd 					break;
    675               1.21  christos 			}
    676                1.1       cgd 		}
    677                1.1       cgd 	}
    678               1.54     lukem  drop:
    679                1.1       cgd 	if (so->so_pcb) {
    680              1.160        ad 		error2 = (*so->so_proto->pr_usrreq)(so, PRU_DETACH,
    681              1.140    dyoung 		    NULL, NULL, NULL, NULL);
    682                1.1       cgd 		if (error == 0)
    683                1.1       cgd 			error = error2;
    684                1.1       cgd 	}
    685               1.54     lukem  discard:
    686                1.1       cgd 	if (so->so_state & SS_NOFDREF)
    687                1.1       cgd 		panic("soclose: NOFDREF");
    688                1.1       cgd 	so->so_state |= SS_NOFDREF;
    689                1.1       cgd 	sofree(so);
    690                1.1       cgd 	return (error);
    691                1.1       cgd }
    692                1.1       cgd 
    693                1.1       cgd /*
    694              1.160        ad  * Must be called with the socket locked..  Will return with it unlocked.
    695                1.1       cgd  */
    696                1.3    andrew int
    697               1.54     lukem soabort(struct socket *so)
    698                1.1       cgd {
    699              1.161        ad 	u_int refs;
    700              1.139      yamt 	int error;
    701              1.160        ad 
    702              1.160        ad 	KASSERT(solocked(so));
    703              1.160        ad 	KASSERT(so->so_head == NULL);
    704                1.1       cgd 
    705              1.161        ad 	so->so_aborting++;		/* XXX */
    706              1.140    dyoung 	error = (*so->so_proto->pr_usrreq)(so, PRU_ABORT, NULL,
    707              1.140    dyoung 	    NULL, NULL, NULL);
    708              1.161        ad 	refs = --so->so_aborting;	/* XXX */
    709              1.164  drochner 	if (error || (refs == 0)) {
    710              1.139      yamt 		sofree(so);
    711              1.160        ad 	} else {
    712              1.160        ad 		sounlock(so);
    713              1.139      yamt 	}
    714              1.139      yamt 	return error;
    715                1.1       cgd }
    716                1.1       cgd 
    717                1.3    andrew int
    718               1.54     lukem soaccept(struct socket *so, struct mbuf *nam)
    719                1.1       cgd {
    720              1.160        ad 	int	error;
    721              1.160        ad 
    722              1.160        ad 	KASSERT(solocked(so));
    723                1.1       cgd 
    724               1.54     lukem 	error = 0;
    725                1.1       cgd 	if ((so->so_state & SS_NOFDREF) == 0)
    726                1.1       cgd 		panic("soaccept: !NOFDREF");
    727                1.1       cgd 	so->so_state &= ~SS_NOFDREF;
    728               1.55   thorpej 	if ((so->so_state & SS_ISDISCONNECTED) == 0 ||
    729               1.55   thorpej 	    (so->so_proto->pr_flags & PR_ABRTACPTDIS) == 0)
    730               1.41   mycroft 		error = (*so->so_proto->pr_usrreq)(so, PRU_ACCEPT,
    731              1.140    dyoung 		    NULL, nam, NULL, NULL);
    732               1.41   mycroft 	else
    733               1.53    itojun 		error = ECONNABORTED;
    734               1.52    itojun 
    735                1.1       cgd 	return (error);
    736                1.1       cgd }
    737                1.1       cgd 
    738                1.3    andrew int
    739              1.114  christos soconnect(struct socket *so, struct mbuf *nam, struct lwp *l)
    740                1.1       cgd {
    741              1.160        ad 	int		error;
    742              1.160        ad 
    743              1.160        ad 	KASSERT(solocked(so));
    744                1.1       cgd 
    745                1.1       cgd 	if (so->so_options & SO_ACCEPTCONN)
    746                1.1       cgd 		return (EOPNOTSUPP);
    747                1.1       cgd 	/*
    748                1.1       cgd 	 * If protocol is connection-based, can only connect once.
    749                1.1       cgd 	 * Otherwise, if connected, try to disconnect first.
    750                1.1       cgd 	 * This allows user to disconnect by connecting to, e.g.,
    751                1.1       cgd 	 * a null address.
    752                1.1       cgd 	 */
    753                1.1       cgd 	if (so->so_state & (SS_ISCONNECTED|SS_ISCONNECTING) &&
    754                1.1       cgd 	    ((so->so_proto->pr_flags & PR_CONNREQUIRED) ||
    755                1.1       cgd 	    (error = sodisconnect(so))))
    756                1.1       cgd 		error = EISCONN;
    757                1.1       cgd 	else
    758                1.1       cgd 		error = (*so->so_proto->pr_usrreq)(so, PRU_CONNECT,
    759              1.140    dyoung 		    NULL, nam, NULL, l);
    760                1.1       cgd 	return (error);
    761                1.1       cgd }
    762                1.1       cgd 
    763                1.3    andrew int
    764               1.54     lukem soconnect2(struct socket *so1, struct socket *so2)
    765                1.1       cgd {
    766              1.160        ad 	int	error;
    767              1.160        ad 
    768              1.160        ad 	KASSERT(solocked2(so1, so2));
    769                1.1       cgd 
    770               1.22   mycroft 	error = (*so1->so_proto->pr_usrreq)(so1, PRU_CONNECT2,
    771              1.140    dyoung 	    NULL, (struct mbuf *)so2, NULL, NULL);
    772                1.1       cgd 	return (error);
    773                1.1       cgd }
    774                1.1       cgd 
    775                1.3    andrew int
    776               1.54     lukem sodisconnect(struct socket *so)
    777                1.1       cgd {
    778              1.160        ad 	int	error;
    779              1.160        ad 
    780              1.160        ad 	KASSERT(solocked(so));
    781                1.1       cgd 
    782                1.1       cgd 	if ((so->so_state & SS_ISCONNECTED) == 0) {
    783                1.1       cgd 		error = ENOTCONN;
    784              1.160        ad 	} else if (so->so_state & SS_ISDISCONNECTING) {
    785                1.1       cgd 		error = EALREADY;
    786              1.160        ad 	} else {
    787              1.160        ad 		error = (*so->so_proto->pr_usrreq)(so, PRU_DISCONNECT,
    788              1.160        ad 		    NULL, NULL, NULL, NULL);
    789                1.1       cgd 	}
    790              1.117      yamt 	sodopendfree();
    791                1.1       cgd 	return (error);
    792                1.1       cgd }
    793                1.1       cgd 
    794               1.15   mycroft #define	SBLOCKWAIT(f)	(((f) & MSG_DONTWAIT) ? M_NOWAIT : M_WAITOK)
    795                1.1       cgd /*
    796                1.1       cgd  * Send on a socket.
    797                1.1       cgd  * If send must go all at once and message is larger than
    798                1.1       cgd  * send buffering, then hard error.
    799                1.1       cgd  * Lock against other senders.
    800                1.1       cgd  * If must go all at once and not enough room now, then
    801                1.1       cgd  * inform user that this would block and do nothing.
    802                1.1       cgd  * Otherwise, if nonblocking, send as much as possible.
    803                1.1       cgd  * The data to be sent is described by "uio" if nonzero,
    804                1.1       cgd  * otherwise by the mbuf chain "top" (which must be null
    805                1.1       cgd  * if uio is not).  Data provided in mbuf chain must be small
    806                1.1       cgd  * enough to send all at once.
    807                1.1       cgd  *
    808                1.1       cgd  * Returns nonzero on error, timeout or signal; callers
    809                1.1       cgd  * must check for short counts if EINTR/ERESTART are returned.
    810                1.1       cgd  * Data and control buffers are freed on return.
    811                1.1       cgd  */
    812                1.3    andrew int
    813               1.54     lukem sosend(struct socket *so, struct mbuf *addr, struct uio *uio, struct mbuf *top,
    814              1.114  christos 	struct mbuf *control, int flags, struct lwp *l)
    815                1.1       cgd {
    816               1.54     lukem 	struct mbuf	**mp, *m;
    817              1.114  christos 	struct proc	*p;
    818               1.58  jdolecek 	long		space, len, resid, clen, mlen;
    819               1.58  jdolecek 	int		error, s, dontroute, atomic;
    820               1.54     lukem 
    821              1.114  christos 	p = l->l_proc;
    822              1.117      yamt 	sodopendfree();
    823              1.160        ad 	clen = 0;
    824               1.64   thorpej 
    825              1.160        ad 	/*
    826              1.160        ad 	 * solock() provides atomicity of access.  splsoftnet() prevents
    827              1.160        ad 	 * protocol processing soft interrupts from interrupting us and
    828              1.160        ad 	 * blocking (expensive).
    829              1.160        ad 	 */
    830              1.160        ad 	s = splsoftnet();
    831              1.160        ad 	solock(so);
    832               1.54     lukem 	atomic = sosendallatonce(so) || top;
    833                1.1       cgd 	if (uio)
    834                1.1       cgd 		resid = uio->uio_resid;
    835                1.1       cgd 	else
    836                1.1       cgd 		resid = top->m_pkthdr.len;
    837                1.7       cgd 	/*
    838                1.7       cgd 	 * In theory resid should be unsigned.
    839                1.7       cgd 	 * However, space must be signed, as it might be less than 0
    840                1.7       cgd 	 * if we over-committed, and we must use a signed comparison
    841                1.7       cgd 	 * of space and resid.  On the other hand, a negative resid
    842                1.7       cgd 	 * causes us to loop sending 0-length segments to the protocol.
    843                1.7       cgd 	 */
    844               1.29   mycroft 	if (resid < 0) {
    845               1.29   mycroft 		error = EINVAL;
    846               1.29   mycroft 		goto out;
    847               1.29   mycroft 	}
    848                1.1       cgd 	dontroute =
    849                1.1       cgd 	    (flags & MSG_DONTROUTE) && (so->so_options & SO_DONTROUTE) == 0 &&
    850                1.1       cgd 	    (so->so_proto->pr_flags & PR_ATOMIC);
    851              1.165  christos 	l->l_ru.ru_msgsnd++;
    852                1.1       cgd 	if (control)
    853                1.1       cgd 		clen = control->m_len;
    854               1.54     lukem  restart:
    855               1.21  christos 	if ((error = sblock(&so->so_snd, SBLOCKWAIT(flags))) != 0)
    856                1.1       cgd 		goto out;
    857                1.1       cgd 	do {
    858              1.160        ad 		if (so->so_state & SS_CANTSENDMORE) {
    859              1.160        ad 			error = EPIPE;
    860              1.160        ad 			goto release;
    861              1.160        ad 		}
    862               1.48   thorpej 		if (so->so_error) {
    863               1.48   thorpej 			error = so->so_error;
    864               1.48   thorpej 			so->so_error = 0;
    865               1.48   thorpej 			goto release;
    866               1.48   thorpej 		}
    867                1.1       cgd 		if ((so->so_state & SS_ISCONNECTED) == 0) {
    868                1.1       cgd 			if (so->so_proto->pr_flags & PR_CONNREQUIRED) {
    869                1.1       cgd 				if ((so->so_state & SS_ISCONFIRMING) == 0 &&
    870              1.160        ad 				    !(resid == 0 && clen != 0)) {
    871              1.160        ad 					error = ENOTCONN;
    872              1.160        ad 					goto release;
    873              1.160        ad 				}
    874              1.160        ad 			} else if (addr == 0) {
    875              1.160        ad 				error = EDESTADDRREQ;
    876              1.160        ad 				goto release;
    877              1.160        ad 			}
    878                1.1       cgd 		}
    879                1.1       cgd 		space = sbspace(&so->so_snd);
    880                1.1       cgd 		if (flags & MSG_OOB)
    881                1.1       cgd 			space += 1024;
    882               1.21  christos 		if ((atomic && resid > so->so_snd.sb_hiwat) ||
    883              1.160        ad 		    clen > so->so_snd.sb_hiwat) {
    884              1.160        ad 			error = EMSGSIZE;
    885              1.160        ad 			goto release;
    886              1.160        ad 		}
    887               1.96   mycroft 		if (space < resid + clen &&
    888                1.1       cgd 		    (atomic || space < so->so_snd.sb_lowat || space < clen)) {
    889              1.160        ad 			if (so->so_nbio) {
    890              1.160        ad 				error = EWOULDBLOCK;
    891              1.160        ad 				goto release;
    892              1.160        ad 			}
    893                1.1       cgd 			sbunlock(&so->so_snd);
    894                1.1       cgd 			error = sbwait(&so->so_snd);
    895                1.1       cgd 			if (error)
    896                1.1       cgd 				goto out;
    897                1.1       cgd 			goto restart;
    898                1.1       cgd 		}
    899                1.1       cgd 		mp = &top;
    900                1.1       cgd 		space -= clen;
    901                1.1       cgd 		do {
    902               1.45        tv 			if (uio == NULL) {
    903               1.45        tv 				/*
    904               1.45        tv 				 * Data is prepackaged in "top".
    905               1.45        tv 				 */
    906               1.45        tv 				resid = 0;
    907               1.45        tv 				if (flags & MSG_EOR)
    908               1.45        tv 					top->m_flags |= M_EOR;
    909               1.45        tv 			} else do {
    910              1.160        ad 				sounlock(so);
    911              1.160        ad 				splx(s);
    912              1.144    dyoung 				if (top == NULL) {
    913               1.78      matt 					m = m_gethdr(M_WAIT, MT_DATA);
    914               1.45        tv 					mlen = MHLEN;
    915               1.45        tv 					m->m_pkthdr.len = 0;
    916              1.140    dyoung 					m->m_pkthdr.rcvif = NULL;
    917               1.45        tv 				} else {
    918               1.78      matt 					m = m_get(M_WAIT, MT_DATA);
    919               1.45        tv 					mlen = MLEN;
    920               1.45        tv 				}
    921               1.78      matt 				MCLAIM(m, so->so_snd.sb_mowner);
    922              1.121      yamt 				if (sock_loan_thresh >= 0 &&
    923              1.121      yamt 				    uio->uio_iov->iov_len >= sock_loan_thresh &&
    924              1.121      yamt 				    space >= sock_loan_thresh &&
    925               1.64   thorpej 				    (len = sosend_loan(so, uio, m,
    926               1.64   thorpej 						       space)) != 0) {
    927               1.64   thorpej 					SOSEND_COUNTER_INCR(&sosend_loan_big);
    928               1.64   thorpej 					space -= len;
    929               1.64   thorpej 					goto have_data;
    930               1.64   thorpej 				}
    931               1.45        tv 				if (resid >= MINCLSIZE && space >= MCLBYTES) {
    932               1.64   thorpej 					SOSEND_COUNTER_INCR(&sosend_copy_big);
    933               1.78      matt 					m_clget(m, M_WAIT);
    934               1.45        tv 					if ((m->m_flags & M_EXT) == 0)
    935               1.45        tv 						goto nopages;
    936               1.45        tv 					mlen = MCLBYTES;
    937               1.45        tv 					if (atomic && top == 0) {
    938               1.58  jdolecek 						len = lmin(MCLBYTES - max_hdr,
    939               1.54     lukem 						    resid);
    940               1.45        tv 						m->m_data += max_hdr;
    941               1.45        tv 					} else
    942               1.58  jdolecek 						len = lmin(MCLBYTES, resid);
    943               1.45        tv 					space -= len;
    944               1.45        tv 				} else {
    945               1.64   thorpej  nopages:
    946               1.64   thorpej 					SOSEND_COUNTER_INCR(&sosend_copy_small);
    947               1.58  jdolecek 					len = lmin(lmin(mlen, resid), space);
    948               1.45        tv 					space -= len;
    949               1.45        tv 					/*
    950               1.45        tv 					 * For datagram protocols, leave room
    951               1.45        tv 					 * for protocol headers in first mbuf.
    952               1.45        tv 					 */
    953               1.45        tv 					if (atomic && top == 0 && len < mlen)
    954               1.45        tv 						MH_ALIGN(m, len);
    955               1.45        tv 				}
    956              1.144    dyoung 				error = uiomove(mtod(m, void *), (int)len, uio);
    957               1.64   thorpej  have_data:
    958               1.45        tv 				resid = uio->uio_resid;
    959               1.45        tv 				m->m_len = len;
    960               1.45        tv 				*mp = m;
    961               1.45        tv 				top->m_pkthdr.len += len;
    962              1.160        ad 				s = splsoftnet();
    963              1.160        ad 				solock(so);
    964              1.144    dyoung 				if (error != 0)
    965               1.45        tv 					goto release;
    966               1.45        tv 				mp = &m->m_next;
    967               1.45        tv 				if (resid <= 0) {
    968               1.45        tv 					if (flags & MSG_EOR)
    969               1.45        tv 						top->m_flags |= M_EOR;
    970               1.45        tv 					break;
    971               1.45        tv 				}
    972               1.45        tv 			} while (space > 0 && atomic);
    973              1.108     perry 
    974              1.160        ad 			if (so->so_state & SS_CANTSENDMORE) {
    975              1.160        ad 				error = EPIPE;
    976              1.160        ad 				goto release;
    977              1.160        ad 			}
    978               1.45        tv 			if (dontroute)
    979               1.45        tv 				so->so_options |= SO_DONTROUTE;
    980               1.45        tv 			if (resid > 0)
    981               1.45        tv 				so->so_state |= SS_MORETOCOME;
    982               1.46  sommerfe 			error = (*so->so_proto->pr_usrreq)(so,
    983               1.46  sommerfe 			    (flags & MSG_OOB) ? PRU_SENDOOB : PRU_SEND,
    984              1.160        ad 			    top, addr, control, curlwp);
    985               1.45        tv 			if (dontroute)
    986               1.45        tv 				so->so_options &= ~SO_DONTROUTE;
    987               1.45        tv 			if (resid > 0)
    988               1.45        tv 				so->so_state &= ~SS_MORETOCOME;
    989               1.45        tv 			clen = 0;
    990              1.144    dyoung 			control = NULL;
    991              1.144    dyoung 			top = NULL;
    992               1.45        tv 			mp = &top;
    993              1.144    dyoung 			if (error != 0)
    994                1.1       cgd 				goto release;
    995                1.1       cgd 		} while (resid && space > 0);
    996                1.1       cgd 	} while (resid);
    997                1.1       cgd 
    998               1.54     lukem  release:
    999                1.1       cgd 	sbunlock(&so->so_snd);
   1000               1.54     lukem  out:
   1001              1.160        ad 	sounlock(so);
   1002              1.160        ad 	splx(s);
   1003                1.1       cgd 	if (top)
   1004                1.1       cgd 		m_freem(top);
   1005                1.1       cgd 	if (control)
   1006                1.1       cgd 		m_freem(control);
   1007                1.1       cgd 	return (error);
   1008                1.1       cgd }
   1009                1.1       cgd 
   1010                1.1       cgd /*
   1011              1.159        ad  * Following replacement or removal of the first mbuf on the first
   1012              1.159        ad  * mbuf chain of a socket buffer, push necessary state changes back
   1013              1.159        ad  * into the socket buffer so that other consumers see the values
   1014              1.159        ad  * consistently.  'nextrecord' is the callers locally stored value of
   1015              1.159        ad  * the original value of sb->sb_mb->m_nextpkt which must be restored
   1016              1.159        ad  * when the lead mbuf changes.  NOTE: 'nextrecord' may be NULL.
   1017              1.159        ad  */
   1018              1.159        ad static void
   1019              1.159        ad sbsync(struct sockbuf *sb, struct mbuf *nextrecord)
   1020              1.159        ad {
   1021              1.159        ad 
   1022              1.160        ad 	KASSERT(solocked(sb->sb_so));
   1023              1.160        ad 
   1024              1.159        ad 	/*
   1025              1.159        ad 	 * First, update for the new value of nextrecord.  If necessary,
   1026              1.159        ad 	 * make it the first record.
   1027              1.159        ad 	 */
   1028              1.159        ad 	if (sb->sb_mb != NULL)
   1029              1.159        ad 		sb->sb_mb->m_nextpkt = nextrecord;
   1030              1.159        ad 	else
   1031              1.159        ad 		sb->sb_mb = nextrecord;
   1032              1.159        ad 
   1033              1.159        ad         /*
   1034              1.159        ad          * Now update any dependent socket buffer fields to reflect
   1035              1.159        ad          * the new state.  This is an inline of SB_EMPTY_FIXUP, with
   1036              1.159        ad          * the addition of a second clause that takes care of the
   1037              1.159        ad          * case where sb_mb has been updated, but remains the last
   1038              1.159        ad          * record.
   1039              1.159        ad          */
   1040              1.159        ad         if (sb->sb_mb == NULL) {
   1041              1.159        ad                 sb->sb_mbtail = NULL;
   1042              1.159        ad                 sb->sb_lastrecord = NULL;
   1043              1.159        ad         } else if (sb->sb_mb->m_nextpkt == NULL)
   1044              1.159        ad                 sb->sb_lastrecord = sb->sb_mb;
   1045              1.159        ad }
   1046              1.159        ad 
   1047              1.159        ad /*
   1048                1.1       cgd  * Implement receive operations on a socket.
   1049                1.1       cgd  * We depend on the way that records are added to the sockbuf
   1050                1.1       cgd  * by sbappend*.  In particular, each record (mbufs linked through m_next)
   1051                1.1       cgd  * must begin with an address if the protocol so specifies,
   1052                1.1       cgd  * followed by an optional mbuf or mbufs containing ancillary data,
   1053                1.1       cgd  * and then zero or more mbufs of data.
   1054                1.1       cgd  * In order to avoid blocking network interrupts for the entire time here,
   1055                1.1       cgd  * we splx() while doing the actual copy to user space.
   1056                1.1       cgd  * Although the sockbuf is locked, new data may still be appended,
   1057                1.1       cgd  * and thus we must maintain consistency of the sockbuf during that time.
   1058                1.1       cgd  *
   1059                1.1       cgd  * The caller may receive the data as a single mbuf chain by supplying
   1060                1.1       cgd  * an mbuf **mp0 for use in returning the chain.  The uio is then used
   1061                1.1       cgd  * only for the count in uio_resid.
   1062                1.1       cgd  */
   1063                1.3    andrew int
   1064               1.54     lukem soreceive(struct socket *so, struct mbuf **paddr, struct uio *uio,
   1065               1.54     lukem 	struct mbuf **mp0, struct mbuf **controlp, int *flagsp)
   1066                1.1       cgd {
   1067              1.116      yamt 	struct lwp *l = curlwp;
   1068              1.160        ad 	struct mbuf	*m, **mp, *mt;
   1069              1.146    dyoung 	int atomic, flags, len, error, s, offset, moff, type, orig_resid;
   1070               1.99      matt 	const struct protosw	*pr;
   1071               1.54     lukem 	struct mbuf	*nextrecord;
   1072               1.67        he 	int		mbuf_removed = 0;
   1073              1.146    dyoung 	const struct domain *dom;
   1074               1.64   thorpej 
   1075               1.54     lukem 	pr = so->so_proto;
   1076              1.146    dyoung 	atomic = pr->pr_flags & PR_ATOMIC;
   1077              1.146    dyoung 	dom = pr->pr_domain;
   1078                1.1       cgd 	mp = mp0;
   1079               1.54     lukem 	type = 0;
   1080               1.54     lukem 	orig_resid = uio->uio_resid;
   1081              1.102  jonathan 
   1082              1.144    dyoung 	if (paddr != NULL)
   1083              1.144    dyoung 		*paddr = NULL;
   1084              1.144    dyoung 	if (controlp != NULL)
   1085              1.144    dyoung 		*controlp = NULL;
   1086              1.144    dyoung 	if (flagsp != NULL)
   1087                1.1       cgd 		flags = *flagsp &~ MSG_EOR;
   1088                1.1       cgd 	else
   1089                1.1       cgd 		flags = 0;
   1090               1.66     enami 
   1091               1.66     enami 	if ((flags & MSG_DONTWAIT) == 0)
   1092              1.117      yamt 		sodopendfree();
   1093               1.66     enami 
   1094                1.1       cgd 	if (flags & MSG_OOB) {
   1095                1.1       cgd 		m = m_get(M_WAIT, MT_DATA);
   1096              1.160        ad 		solock(so);
   1097               1.17       cgd 		error = (*pr->pr_usrreq)(so, PRU_RCVOOB, m,
   1098              1.140    dyoung 		    (struct mbuf *)(long)(flags & MSG_PEEK), NULL, l);
   1099              1.160        ad 		sounlock(so);
   1100                1.1       cgd 		if (error)
   1101                1.1       cgd 			goto bad;
   1102                1.1       cgd 		do {
   1103              1.134  christos 			error = uiomove(mtod(m, void *),
   1104                1.1       cgd 			    (int) min(uio->uio_resid, m->m_len), uio);
   1105                1.1       cgd 			m = m_free(m);
   1106              1.144    dyoung 		} while (uio->uio_resid > 0 && error == 0 && m);
   1107               1.54     lukem  bad:
   1108              1.144    dyoung 		if (m != NULL)
   1109                1.1       cgd 			m_freem(m);
   1110              1.144    dyoung 		return error;
   1111                1.1       cgd 	}
   1112              1.144    dyoung 	if (mp != NULL)
   1113              1.140    dyoung 		*mp = NULL;
   1114              1.160        ad 
   1115              1.160        ad 	/*
   1116              1.160        ad 	 * solock() provides atomicity of access.  splsoftnet() prevents
   1117              1.160        ad 	 * protocol processing soft interrupts from interrupting us and
   1118              1.160        ad 	 * blocking (expensive).
   1119              1.160        ad 	 */
   1120              1.160        ad 	s = splsoftnet();
   1121              1.160        ad 	solock(so);
   1122                1.1       cgd 	if (so->so_state & SS_ISCONFIRMING && uio->uio_resid)
   1123              1.140    dyoung 		(*pr->pr_usrreq)(so, PRU_RCVD, NULL, NULL, NULL, l);
   1124                1.1       cgd 
   1125               1.54     lukem  restart:
   1126              1.160        ad 	if ((error = sblock(&so->so_rcv, SBLOCKWAIT(flags))) != 0) {
   1127              1.160        ad 		sounlock(so);
   1128              1.160        ad 		splx(s);
   1129              1.144    dyoung 		return error;
   1130              1.160        ad 	}
   1131                1.1       cgd 
   1132                1.1       cgd 	m = so->so_rcv.sb_mb;
   1133                1.1       cgd 	/*
   1134                1.1       cgd 	 * If we have less data than requested, block awaiting more
   1135                1.1       cgd 	 * (subject to any timeout) if:
   1136               1.15   mycroft 	 *   1. the current count is less than the low water mark,
   1137                1.1       cgd 	 *   2. MSG_WAITALL is set, and it is possible to do the entire
   1138               1.15   mycroft 	 *	receive operation at once if we block (resid <= hiwat), or
   1139               1.15   mycroft 	 *   3. MSG_DONTWAIT is not set.
   1140                1.1       cgd 	 * If MSG_WAITALL is set but resid is larger than the receive buffer,
   1141                1.1       cgd 	 * we have to do the receive in sections, and thus risk returning
   1142                1.1       cgd 	 * a short count if a timeout or signal occurs after we start.
   1143                1.1       cgd 	 */
   1144              1.144    dyoung 	if (m == NULL ||
   1145              1.144    dyoung 	    ((flags & MSG_DONTWAIT) == 0 &&
   1146              1.144    dyoung 	     so->so_rcv.sb_cc < uio->uio_resid &&
   1147              1.144    dyoung 	     (so->so_rcv.sb_cc < so->so_rcv.sb_lowat ||
   1148              1.144    dyoung 	      ((flags & MSG_WAITALL) &&
   1149              1.144    dyoung 	       uio->uio_resid <= so->so_rcv.sb_hiwat)) &&
   1150              1.146    dyoung 	     m->m_nextpkt == NULL && !atomic)) {
   1151                1.1       cgd #ifdef DIAGNOSTIC
   1152              1.144    dyoung 		if (m == NULL && so->so_rcv.sb_cc)
   1153                1.1       cgd 			panic("receive 1");
   1154                1.1       cgd #endif
   1155                1.1       cgd 		if (so->so_error) {
   1156              1.144    dyoung 			if (m != NULL)
   1157               1.15   mycroft 				goto dontblock;
   1158                1.1       cgd 			error = so->so_error;
   1159                1.1       cgd 			if ((flags & MSG_PEEK) == 0)
   1160                1.1       cgd 				so->so_error = 0;
   1161                1.1       cgd 			goto release;
   1162                1.1       cgd 		}
   1163                1.1       cgd 		if (so->so_state & SS_CANTRCVMORE) {
   1164              1.144    dyoung 			if (m != NULL)
   1165               1.15   mycroft 				goto dontblock;
   1166                1.1       cgd 			else
   1167                1.1       cgd 				goto release;
   1168                1.1       cgd 		}
   1169              1.144    dyoung 		for (; m != NULL; m = m->m_next)
   1170                1.1       cgd 			if (m->m_type == MT_OOBDATA  || (m->m_flags & M_EOR)) {
   1171                1.1       cgd 				m = so->so_rcv.sb_mb;
   1172                1.1       cgd 				goto dontblock;
   1173                1.1       cgd 			}
   1174                1.1       cgd 		if ((so->so_state & (SS_ISCONNECTED|SS_ISCONNECTING)) == 0 &&
   1175                1.1       cgd 		    (so->so_proto->pr_flags & PR_CONNREQUIRED)) {
   1176                1.1       cgd 			error = ENOTCONN;
   1177                1.1       cgd 			goto release;
   1178                1.1       cgd 		}
   1179                1.1       cgd 		if (uio->uio_resid == 0)
   1180                1.1       cgd 			goto release;
   1181              1.151        ad 		if (so->so_nbio || (flags & MSG_DONTWAIT)) {
   1182                1.1       cgd 			error = EWOULDBLOCK;
   1183                1.1       cgd 			goto release;
   1184                1.1       cgd 		}
   1185               1.69   thorpej 		SBLASTRECORDCHK(&so->so_rcv, "soreceive sbwait 1");
   1186               1.69   thorpej 		SBLASTMBUFCHK(&so->so_rcv, "soreceive sbwait 1");
   1187                1.1       cgd 		sbunlock(&so->so_rcv);
   1188                1.1       cgd 		error = sbwait(&so->so_rcv);
   1189              1.160        ad 		if (error != 0) {
   1190              1.160        ad 			sounlock(so);
   1191              1.160        ad 			splx(s);
   1192              1.144    dyoung 			return error;
   1193              1.160        ad 		}
   1194                1.1       cgd 		goto restart;
   1195                1.1       cgd 	}
   1196               1.54     lukem  dontblock:
   1197               1.69   thorpej 	/*
   1198               1.69   thorpej 	 * On entry here, m points to the first record of the socket buffer.
   1199              1.159        ad 	 * From this point onward, we maintain 'nextrecord' as a cache of the
   1200              1.159        ad 	 * pointer to the next record in the socket buffer.  We must keep the
   1201              1.159        ad 	 * various socket buffer pointers and local stack versions of the
   1202              1.159        ad 	 * pointers in sync, pushing out modifications before dropping the
   1203              1.160        ad 	 * socket lock, and re-reading them when picking it up.
   1204              1.159        ad 	 *
   1205              1.159        ad 	 * Otherwise, we will race with the network stack appending new data
   1206              1.159        ad 	 * or records onto the socket buffer by using inconsistent/stale
   1207              1.159        ad 	 * versions of the field, possibly resulting in socket buffer
   1208              1.159        ad 	 * corruption.
   1209              1.159        ad 	 *
   1210              1.159        ad 	 * By holding the high-level sblock(), we prevent simultaneous
   1211              1.159        ad 	 * readers from pulling off the front of the socket buffer.
   1212               1.69   thorpej 	 */
   1213              1.144    dyoung 	if (l != NULL)
   1214              1.157        ad 		l->l_ru.ru_msgrcv++;
   1215               1.69   thorpej 	KASSERT(m == so->so_rcv.sb_mb);
   1216               1.69   thorpej 	SBLASTRECORDCHK(&so->so_rcv, "soreceive 1");
   1217               1.69   thorpej 	SBLASTMBUFCHK(&so->so_rcv, "soreceive 1");
   1218                1.1       cgd 	nextrecord = m->m_nextpkt;
   1219                1.1       cgd 	if (pr->pr_flags & PR_ADDR) {
   1220                1.1       cgd #ifdef DIAGNOSTIC
   1221                1.1       cgd 		if (m->m_type != MT_SONAME)
   1222                1.1       cgd 			panic("receive 1a");
   1223                1.1       cgd #endif
   1224                1.3    andrew 		orig_resid = 0;
   1225                1.1       cgd 		if (flags & MSG_PEEK) {
   1226                1.1       cgd 			if (paddr)
   1227                1.1       cgd 				*paddr = m_copy(m, 0, m->m_len);
   1228                1.1       cgd 			m = m->m_next;
   1229                1.1       cgd 		} else {
   1230                1.1       cgd 			sbfree(&so->so_rcv, m);
   1231               1.67        he 			mbuf_removed = 1;
   1232              1.144    dyoung 			if (paddr != NULL) {
   1233                1.1       cgd 				*paddr = m;
   1234                1.1       cgd 				so->so_rcv.sb_mb = m->m_next;
   1235              1.144    dyoung 				m->m_next = NULL;
   1236                1.1       cgd 				m = so->so_rcv.sb_mb;
   1237                1.1       cgd 			} else {
   1238                1.1       cgd 				MFREE(m, so->so_rcv.sb_mb);
   1239                1.1       cgd 				m = so->so_rcv.sb_mb;
   1240                1.1       cgd 			}
   1241              1.159        ad 			sbsync(&so->so_rcv, nextrecord);
   1242                1.1       cgd 		}
   1243                1.1       cgd 	}
   1244              1.159        ad 
   1245              1.159        ad 	/*
   1246              1.159        ad 	 * Process one or more MT_CONTROL mbufs present before any data mbufs
   1247              1.159        ad 	 * in the first mbuf chain on the socket buffer.  If MSG_PEEK, we
   1248              1.159        ad 	 * just copy the data; if !MSG_PEEK, we call into the protocol to
   1249              1.159        ad 	 * perform externalization (or freeing if controlp == NULL).
   1250              1.159        ad 	 */
   1251              1.159        ad 	if (__predict_false(m != NULL && m->m_type == MT_CONTROL)) {
   1252              1.159        ad 		struct mbuf *cm = NULL, *cmn;
   1253              1.159        ad 		struct mbuf **cme = &cm;
   1254              1.159        ad 
   1255              1.159        ad 		do {
   1256              1.159        ad 			if (flags & MSG_PEEK) {
   1257              1.159        ad 				if (controlp != NULL) {
   1258              1.159        ad 					*controlp = m_copy(m, 0, m->m_len);
   1259              1.159        ad 					controlp = &(*controlp)->m_next;
   1260              1.159        ad 				}
   1261              1.159        ad 				m = m->m_next;
   1262              1.159        ad 			} else {
   1263              1.159        ad 				sbfree(&so->so_rcv, m);
   1264                1.1       cgd 				so->so_rcv.sb_mb = m->m_next;
   1265              1.144    dyoung 				m->m_next = NULL;
   1266              1.159        ad 				*cme = m;
   1267              1.159        ad 				cme = &(*cme)->m_next;
   1268                1.1       cgd 				m = so->so_rcv.sb_mb;
   1269              1.159        ad 			}
   1270              1.159        ad 		} while (m != NULL && m->m_type == MT_CONTROL);
   1271              1.159        ad 		if ((flags & MSG_PEEK) == 0)
   1272              1.159        ad 			sbsync(&so->so_rcv, nextrecord);
   1273              1.159        ad 		for (; cm != NULL; cm = cmn) {
   1274              1.159        ad 			cmn = cm->m_next;
   1275              1.159        ad 			cm->m_next = NULL;
   1276              1.159        ad 			type = mtod(cm, struct cmsghdr *)->cmsg_type;
   1277              1.159        ad 			if (controlp != NULL) {
   1278              1.159        ad 				if (dom->dom_externalize != NULL &&
   1279              1.159        ad 				    type == SCM_RIGHTS) {
   1280              1.160        ad 					sounlock(so);
   1281              1.159        ad 					splx(s);
   1282              1.159        ad 					error = (*dom->dom_externalize)(cm, l);
   1283              1.159        ad 					s = splsoftnet();
   1284              1.160        ad 					solock(so);
   1285              1.159        ad 				}
   1286              1.159        ad 				*controlp = cm;
   1287              1.159        ad 				while (*controlp != NULL)
   1288              1.159        ad 					controlp = &(*controlp)->m_next;
   1289                1.1       cgd 			} else {
   1290              1.106    itojun 				/*
   1291              1.106    itojun 				 * Dispose of any SCM_RIGHTS message that went
   1292              1.106    itojun 				 * through the read path rather than recv.
   1293              1.106    itojun 				 */
   1294              1.159        ad 				if (dom->dom_dispose != NULL &&
   1295              1.159        ad 				    type == SCM_RIGHTS) {
   1296              1.160        ad 				    	sounlock(so);
   1297              1.159        ad 					(*dom->dom_dispose)(cm);
   1298              1.160        ad 					solock(so);
   1299              1.159        ad 				}
   1300              1.159        ad 				m_freem(cm);
   1301                1.1       cgd 			}
   1302                1.1       cgd 		}
   1303              1.159        ad 		if (m != NULL)
   1304              1.159        ad 			nextrecord = so->so_rcv.sb_mb->m_nextpkt;
   1305              1.159        ad 		else
   1306              1.159        ad 			nextrecord = so->so_rcv.sb_mb;
   1307              1.159        ad 		orig_resid = 0;
   1308                1.1       cgd 	}
   1309               1.69   thorpej 
   1310              1.159        ad 	/* If m is non-NULL, we have some data to read. */
   1311              1.159        ad 	if (__predict_true(m != NULL)) {
   1312                1.1       cgd 		type = m->m_type;
   1313                1.1       cgd 		if (type == MT_OOBDATA)
   1314                1.1       cgd 			flags |= MSG_OOB;
   1315                1.1       cgd 	}
   1316               1.69   thorpej 	SBLASTRECORDCHK(&so->so_rcv, "soreceive 2");
   1317               1.69   thorpej 	SBLASTMBUFCHK(&so->so_rcv, "soreceive 2");
   1318               1.69   thorpej 
   1319                1.1       cgd 	moff = 0;
   1320                1.1       cgd 	offset = 0;
   1321              1.144    dyoung 	while (m != NULL && uio->uio_resid > 0 && error == 0) {
   1322                1.1       cgd 		if (m->m_type == MT_OOBDATA) {
   1323                1.1       cgd 			if (type != MT_OOBDATA)
   1324                1.1       cgd 				break;
   1325                1.1       cgd 		} else if (type == MT_OOBDATA)
   1326                1.1       cgd 			break;
   1327                1.1       cgd #ifdef DIAGNOSTIC
   1328                1.1       cgd 		else if (m->m_type != MT_DATA && m->m_type != MT_HEADER)
   1329                1.1       cgd 			panic("receive 3");
   1330                1.1       cgd #endif
   1331                1.1       cgd 		so->so_state &= ~SS_RCVATMARK;
   1332                1.1       cgd 		len = uio->uio_resid;
   1333                1.1       cgd 		if (so->so_oobmark && len > so->so_oobmark - offset)
   1334                1.1       cgd 			len = so->so_oobmark - offset;
   1335                1.1       cgd 		if (len > m->m_len - moff)
   1336                1.1       cgd 			len = m->m_len - moff;
   1337                1.1       cgd 		/*
   1338                1.1       cgd 		 * If mp is set, just pass back the mbufs.
   1339                1.1       cgd 		 * Otherwise copy them out via the uio, then free.
   1340                1.1       cgd 		 * Sockbuf must be consistent here (points to current mbuf,
   1341                1.1       cgd 		 * it points to next record) when we drop priority;
   1342                1.1       cgd 		 * we must note any additions to the sockbuf when we
   1343                1.1       cgd 		 * block interrupts again.
   1344                1.1       cgd 		 */
   1345              1.144    dyoung 		if (mp == NULL) {
   1346               1.69   thorpej 			SBLASTRECORDCHK(&so->so_rcv, "soreceive uiomove");
   1347               1.69   thorpej 			SBLASTMBUFCHK(&so->so_rcv, "soreceive uiomove");
   1348              1.160        ad 			sounlock(so);
   1349                1.1       cgd 			splx(s);
   1350              1.134  christos 			error = uiomove(mtod(m, char *) + moff, (int)len, uio);
   1351               1.20   mycroft 			s = splsoftnet();
   1352              1.160        ad 			solock(so);
   1353              1.144    dyoung 			if (error != 0) {
   1354               1.67        he 				/*
   1355               1.67        he 				 * If any part of the record has been removed
   1356               1.67        he 				 * (such as the MT_SONAME mbuf, which will
   1357               1.67        he 				 * happen when PR_ADDR, and thus also
   1358               1.67        he 				 * PR_ATOMIC, is set), then drop the entire
   1359               1.67        he 				 * record to maintain the atomicity of the
   1360               1.67        he 				 * receive operation.
   1361               1.67        he 				 *
   1362               1.67        he 				 * This avoids a later panic("receive 1a")
   1363               1.67        he 				 * when compiled with DIAGNOSTIC.
   1364               1.67        he 				 */
   1365              1.146    dyoung 				if (m && mbuf_removed && atomic)
   1366               1.67        he 					(void) sbdroprecord(&so->so_rcv);
   1367               1.67        he 
   1368               1.57  jdolecek 				goto release;
   1369               1.67        he 			}
   1370                1.1       cgd 		} else
   1371                1.1       cgd 			uio->uio_resid -= len;
   1372                1.1       cgd 		if (len == m->m_len - moff) {
   1373                1.1       cgd 			if (m->m_flags & M_EOR)
   1374                1.1       cgd 				flags |= MSG_EOR;
   1375                1.1       cgd 			if (flags & MSG_PEEK) {
   1376                1.1       cgd 				m = m->m_next;
   1377                1.1       cgd 				moff = 0;
   1378                1.1       cgd 			} else {
   1379                1.1       cgd 				nextrecord = m->m_nextpkt;
   1380                1.1       cgd 				sbfree(&so->so_rcv, m);
   1381                1.1       cgd 				if (mp) {
   1382                1.1       cgd 					*mp = m;
   1383                1.1       cgd 					mp = &m->m_next;
   1384                1.1       cgd 					so->so_rcv.sb_mb = m = m->m_next;
   1385              1.140    dyoung 					*mp = NULL;
   1386                1.1       cgd 				} else {
   1387                1.1       cgd 					MFREE(m, so->so_rcv.sb_mb);
   1388                1.1       cgd 					m = so->so_rcv.sb_mb;
   1389                1.1       cgd 				}
   1390               1.69   thorpej 				/*
   1391               1.69   thorpej 				 * If m != NULL, we also know that
   1392               1.69   thorpej 				 * so->so_rcv.sb_mb != NULL.
   1393               1.69   thorpej 				 */
   1394               1.69   thorpej 				KASSERT(so->so_rcv.sb_mb == m);
   1395               1.69   thorpej 				if (m) {
   1396                1.1       cgd 					m->m_nextpkt = nextrecord;
   1397               1.69   thorpej 					if (nextrecord == NULL)
   1398               1.69   thorpej 						so->so_rcv.sb_lastrecord = m;
   1399               1.69   thorpej 				} else {
   1400               1.69   thorpej 					so->so_rcv.sb_mb = nextrecord;
   1401               1.70   thorpej 					SB_EMPTY_FIXUP(&so->so_rcv);
   1402               1.69   thorpej 				}
   1403               1.69   thorpej 				SBLASTRECORDCHK(&so->so_rcv, "soreceive 3");
   1404               1.69   thorpej 				SBLASTMBUFCHK(&so->so_rcv, "soreceive 3");
   1405                1.1       cgd 			}
   1406              1.144    dyoung 		} else if (flags & MSG_PEEK)
   1407              1.144    dyoung 			moff += len;
   1408              1.144    dyoung 		else {
   1409              1.160        ad 			if (mp != NULL) {
   1410              1.160        ad 				mt = m_copym(m, 0, len, M_NOWAIT);
   1411              1.160        ad 				if (__predict_false(mt == NULL)) {
   1412              1.160        ad 					sounlock(so);
   1413              1.160        ad 					mt = m_copym(m, 0, len, M_WAIT);
   1414              1.160        ad 					solock(so);
   1415              1.160        ad 				}
   1416              1.160        ad 				*mp = mt;
   1417              1.160        ad 			}
   1418              1.144    dyoung 			m->m_data += len;
   1419              1.144    dyoung 			m->m_len -= len;
   1420              1.144    dyoung 			so->so_rcv.sb_cc -= len;
   1421                1.1       cgd 		}
   1422                1.1       cgd 		if (so->so_oobmark) {
   1423                1.1       cgd 			if ((flags & MSG_PEEK) == 0) {
   1424                1.1       cgd 				so->so_oobmark -= len;
   1425                1.1       cgd 				if (so->so_oobmark == 0) {
   1426                1.1       cgd 					so->so_state |= SS_RCVATMARK;
   1427                1.1       cgd 					break;
   1428                1.1       cgd 				}
   1429                1.7       cgd 			} else {
   1430                1.1       cgd 				offset += len;
   1431                1.7       cgd 				if (offset == so->so_oobmark)
   1432                1.7       cgd 					break;
   1433                1.7       cgd 			}
   1434                1.1       cgd 		}
   1435                1.1       cgd 		if (flags & MSG_EOR)
   1436                1.1       cgd 			break;
   1437                1.1       cgd 		/*
   1438                1.1       cgd 		 * If the MSG_WAITALL flag is set (for non-atomic socket),
   1439                1.1       cgd 		 * we must not quit until "uio->uio_resid == 0" or an error
   1440                1.1       cgd 		 * termination.  If a signal/timeout occurs, return
   1441                1.1       cgd 		 * with a short count but without error.
   1442                1.1       cgd 		 * Keep sockbuf locked against other readers.
   1443                1.1       cgd 		 */
   1444              1.144    dyoung 		while (flags & MSG_WAITALL && m == NULL && uio->uio_resid > 0 &&
   1445                1.3    andrew 		    !sosendallatonce(so) && !nextrecord) {
   1446                1.1       cgd 			if (so->so_error || so->so_state & SS_CANTRCVMORE)
   1447                1.1       cgd 				break;
   1448               1.68      matt 			/*
   1449               1.68      matt 			 * If we are peeking and the socket receive buffer is
   1450               1.68      matt 			 * full, stop since we can't get more data to peek at.
   1451               1.68      matt 			 */
   1452               1.68      matt 			if ((flags & MSG_PEEK) && sbspace(&so->so_rcv) <= 0)
   1453               1.68      matt 				break;
   1454               1.68      matt 			/*
   1455               1.68      matt 			 * If we've drained the socket buffer, tell the
   1456               1.68      matt 			 * protocol in case it needs to do something to
   1457               1.68      matt 			 * get it filled again.
   1458               1.68      matt 			 */
   1459               1.68      matt 			if ((pr->pr_flags & PR_WANTRCVD) && so->so_pcb)
   1460               1.68      matt 				(*pr->pr_usrreq)(so, PRU_RCVD,
   1461              1.140    dyoung 				    NULL, (struct mbuf *)(long)flags, NULL, l);
   1462               1.69   thorpej 			SBLASTRECORDCHK(&so->so_rcv, "soreceive sbwait 2");
   1463               1.69   thorpej 			SBLASTMBUFCHK(&so->so_rcv, "soreceive sbwait 2");
   1464                1.1       cgd 			error = sbwait(&so->so_rcv);
   1465              1.144    dyoung 			if (error != 0) {
   1466                1.1       cgd 				sbunlock(&so->so_rcv);
   1467              1.160        ad 				sounlock(so);
   1468                1.1       cgd 				splx(s);
   1469              1.144    dyoung 				return 0;
   1470                1.1       cgd 			}
   1471               1.21  christos 			if ((m = so->so_rcv.sb_mb) != NULL)
   1472                1.1       cgd 				nextrecord = m->m_nextpkt;
   1473                1.1       cgd 		}
   1474                1.1       cgd 	}
   1475                1.3    andrew 
   1476              1.146    dyoung 	if (m && atomic) {
   1477                1.3    andrew 		flags |= MSG_TRUNC;
   1478                1.3    andrew 		if ((flags & MSG_PEEK) == 0)
   1479                1.3    andrew 			(void) sbdroprecord(&so->so_rcv);
   1480                1.3    andrew 	}
   1481                1.1       cgd 	if ((flags & MSG_PEEK) == 0) {
   1482              1.144    dyoung 		if (m == NULL) {
   1483               1.69   thorpej 			/*
   1484               1.70   thorpej 			 * First part is an inline SB_EMPTY_FIXUP().  Second
   1485               1.69   thorpej 			 * part makes sure sb_lastrecord is up-to-date if
   1486               1.69   thorpej 			 * there is still data in the socket buffer.
   1487               1.69   thorpej 			 */
   1488                1.1       cgd 			so->so_rcv.sb_mb = nextrecord;
   1489               1.69   thorpej 			if (so->so_rcv.sb_mb == NULL) {
   1490               1.69   thorpej 				so->so_rcv.sb_mbtail = NULL;
   1491               1.69   thorpej 				so->so_rcv.sb_lastrecord = NULL;
   1492               1.69   thorpej 			} else if (nextrecord->m_nextpkt == NULL)
   1493               1.69   thorpej 				so->so_rcv.sb_lastrecord = nextrecord;
   1494               1.69   thorpej 		}
   1495               1.69   thorpej 		SBLASTRECORDCHK(&so->so_rcv, "soreceive 4");
   1496               1.69   thorpej 		SBLASTMBUFCHK(&so->so_rcv, "soreceive 4");
   1497                1.1       cgd 		if (pr->pr_flags & PR_WANTRCVD && so->so_pcb)
   1498              1.140    dyoung 			(*pr->pr_usrreq)(so, PRU_RCVD, NULL,
   1499              1.140    dyoung 			    (struct mbuf *)(long)flags, NULL, l);
   1500                1.1       cgd 	}
   1501                1.3    andrew 	if (orig_resid == uio->uio_resid && orig_resid &&
   1502                1.3    andrew 	    (flags & MSG_EOR) == 0 && (so->so_state & SS_CANTRCVMORE) == 0) {
   1503                1.3    andrew 		sbunlock(&so->so_rcv);
   1504                1.3    andrew 		goto restart;
   1505                1.3    andrew 	}
   1506              1.108     perry 
   1507              1.144    dyoung 	if (flagsp != NULL)
   1508                1.1       cgd 		*flagsp |= flags;
   1509               1.54     lukem  release:
   1510                1.1       cgd 	sbunlock(&so->so_rcv);
   1511              1.160        ad 	sounlock(so);
   1512                1.1       cgd 	splx(s);
   1513              1.144    dyoung 	return error;
   1514                1.1       cgd }
   1515                1.1       cgd 
   1516               1.14   mycroft int
   1517               1.54     lukem soshutdown(struct socket *so, int how)
   1518                1.1       cgd {
   1519               1.99      matt 	const struct protosw	*pr;
   1520              1.160        ad 	int	error;
   1521              1.160        ad 
   1522              1.160        ad 	KASSERT(solocked(so));
   1523               1.34    kleink 
   1524               1.54     lukem 	pr = so->so_proto;
   1525               1.34    kleink 	if (!(how == SHUT_RD || how == SHUT_WR || how == SHUT_RDWR))
   1526               1.34    kleink 		return (EINVAL);
   1527                1.1       cgd 
   1528              1.160        ad 	if (how == SHUT_RD || how == SHUT_RDWR) {
   1529                1.1       cgd 		sorflush(so);
   1530              1.160        ad 		error = 0;
   1531              1.160        ad 	}
   1532               1.34    kleink 	if (how == SHUT_WR || how == SHUT_RDWR)
   1533              1.160        ad 		error = (*pr->pr_usrreq)(so, PRU_SHUTDOWN, NULL,
   1534              1.140    dyoung 		    NULL, NULL, NULL);
   1535              1.160        ad 
   1536              1.160        ad 	return error;
   1537                1.1       cgd }
   1538                1.1       cgd 
   1539          1.177.4.2       snj int
   1540          1.177.4.2       snj sodrain(struct socket *so)
   1541          1.177.4.2       snj {
   1542          1.177.4.2       snj 	int error;
   1543          1.177.4.2       snj 
   1544          1.177.4.2       snj 	solock(so);
   1545          1.177.4.2       snj 	so->so_state |= SS_ISDRAINING;
   1546          1.177.4.2       snj 	cv_broadcast(&so->so_cv);
   1547          1.177.4.2       snj 	error = soshutdown(so, SHUT_RDWR);
   1548          1.177.4.2       snj 	sounlock(so);
   1549          1.177.4.2       snj 
   1550          1.177.4.2       snj 	return error;
   1551          1.177.4.2       snj }
   1552          1.177.4.2       snj 
   1553               1.14   mycroft void
   1554               1.54     lukem sorflush(struct socket *so)
   1555                1.1       cgd {
   1556               1.54     lukem 	struct sockbuf	*sb, asb;
   1557               1.99      matt 	const struct protosw	*pr;
   1558              1.160        ad 
   1559              1.160        ad 	KASSERT(solocked(so));
   1560                1.1       cgd 
   1561               1.54     lukem 	sb = &so->so_rcv;
   1562               1.54     lukem 	pr = so->so_proto;
   1563              1.160        ad 	socantrcvmore(so);
   1564                1.1       cgd 	sb->sb_flags |= SB_NOINTR;
   1565              1.160        ad 	(void )sblock(sb, M_WAITOK);
   1566                1.1       cgd 	sbunlock(sb);
   1567                1.1       cgd 	asb = *sb;
   1568               1.86  wrstuden 	/*
   1569               1.86  wrstuden 	 * Clear most of the sockbuf structure, but leave some of the
   1570               1.86  wrstuden 	 * fields valid.
   1571               1.86  wrstuden 	 */
   1572               1.86  wrstuden 	memset(&sb->sb_startzero, 0,
   1573               1.86  wrstuden 	    sizeof(*sb) - offsetof(struct sockbuf, sb_startzero));
   1574              1.160        ad 	if (pr->pr_flags & PR_RIGHTS && pr->pr_domain->dom_dispose) {
   1575              1.160        ad 		sounlock(so);
   1576                1.1       cgd 		(*pr->pr_domain->dom_dispose)(asb.sb_mb);
   1577              1.160        ad 		solock(so);
   1578              1.160        ad 	}
   1579               1.98  christos 	sbrelease(&asb, so);
   1580                1.1       cgd }
   1581                1.1       cgd 
   1582              1.171    plunky /*
   1583              1.171    plunky  * internal set SOL_SOCKET options
   1584              1.171    plunky  */
   1585              1.142    dyoung static int
   1586              1.171    plunky sosetopt1(struct socket *so, const struct sockopt *sopt)
   1587                1.1       cgd {
   1588              1.171    plunky 	int error, optval;
   1589              1.171    plunky 	struct linger l;
   1590              1.171    plunky 	struct timeval tv;
   1591              1.142    dyoung 
   1592              1.171    plunky 	switch (sopt->sopt_name) {
   1593              1.142    dyoung 
   1594              1.170       tls 	case SO_ACCEPTFILTER:
   1595              1.177        ad 		error = accept_filt_setopt(so, sopt);
   1596              1.177        ad 		KASSERT(solocked(so));
   1597              1.170       tls 		break;
   1598              1.170       tls 
   1599              1.171    plunky   	case SO_LINGER:
   1600              1.171    plunky  		error = sockopt_get(sopt, &l, sizeof(l));
   1601              1.177        ad 		solock(so);
   1602              1.171    plunky  		if (error)
   1603              1.177        ad  			break;
   1604              1.171    plunky  		if (l.l_linger < 0 || l.l_linger > USHRT_MAX ||
   1605              1.177        ad  		    l.l_linger > (INT_MAX / hz)) {
   1606              1.177        ad 			error = EDOM;
   1607              1.177        ad 			break;
   1608              1.177        ad 		}
   1609              1.171    plunky  		so->so_linger = l.l_linger;
   1610              1.171    plunky  		if (l.l_onoff)
   1611              1.171    plunky  			so->so_options |= SO_LINGER;
   1612              1.171    plunky  		else
   1613              1.171    plunky  			so->so_options &= ~SO_LINGER;
   1614              1.177        ad    		break;
   1615                1.1       cgd 
   1616              1.142    dyoung 	case SO_DEBUG:
   1617              1.142    dyoung 	case SO_KEEPALIVE:
   1618              1.142    dyoung 	case SO_DONTROUTE:
   1619              1.142    dyoung 	case SO_USELOOPBACK:
   1620              1.142    dyoung 	case SO_BROADCAST:
   1621              1.142    dyoung 	case SO_REUSEADDR:
   1622              1.142    dyoung 	case SO_REUSEPORT:
   1623              1.142    dyoung 	case SO_OOBINLINE:
   1624              1.142    dyoung 	case SO_TIMESTAMP:
   1625              1.171    plunky 		error = sockopt_getint(sopt, &optval);
   1626              1.177        ad 		solock(so);
   1627              1.171    plunky 		if (error)
   1628              1.177        ad 			break;
   1629              1.171    plunky 		if (optval)
   1630              1.171    plunky 			so->so_options |= sopt->sopt_name;
   1631              1.142    dyoung 		else
   1632              1.171    plunky 			so->so_options &= ~sopt->sopt_name;
   1633              1.142    dyoung 		break;
   1634              1.142    dyoung 
   1635              1.142    dyoung 	case SO_SNDBUF:
   1636              1.142    dyoung 	case SO_RCVBUF:
   1637              1.142    dyoung 	case SO_SNDLOWAT:
   1638              1.142    dyoung 	case SO_RCVLOWAT:
   1639              1.171    plunky 		error = sockopt_getint(sopt, &optval);
   1640              1.177        ad 		solock(so);
   1641              1.171    plunky 		if (error)
   1642              1.177        ad 			break;
   1643                1.1       cgd 
   1644              1.142    dyoung 		/*
   1645              1.142    dyoung 		 * Values < 1 make no sense for any of these
   1646              1.142    dyoung 		 * options, so disallow them.
   1647              1.142    dyoung 		 */
   1648              1.177        ad 		if (optval < 1) {
   1649              1.177        ad 			error = EINVAL;
   1650              1.177        ad 			break;
   1651              1.177        ad 		}
   1652                1.1       cgd 
   1653              1.171    plunky 		switch (sopt->sopt_name) {
   1654              1.171    plunky 		case SO_SNDBUF:
   1655              1.177        ad 			if (sbreserve(&so->so_snd, (u_long)optval, so) == 0) {
   1656              1.177        ad 				error = ENOBUFS;
   1657              1.177        ad 				break;
   1658              1.177        ad 			}
   1659              1.171    plunky 			so->so_snd.sb_flags &= ~SB_AUTOSIZE;
   1660              1.171    plunky 			break;
   1661                1.1       cgd 
   1662                1.1       cgd 		case SO_RCVBUF:
   1663              1.177        ad 			if (sbreserve(&so->so_rcv, (u_long)optval, so) == 0) {
   1664              1.177        ad 				error = ENOBUFS;
   1665              1.177        ad 				break;
   1666              1.177        ad 			}
   1667              1.171    plunky 			so->so_rcv.sb_flags &= ~SB_AUTOSIZE;
   1668              1.142    dyoung 			break;
   1669              1.142    dyoung 
   1670              1.142    dyoung 		/*
   1671              1.142    dyoung 		 * Make sure the low-water is never greater than
   1672              1.142    dyoung 		 * the high-water.
   1673              1.142    dyoung 		 */
   1674                1.1       cgd 		case SO_SNDLOWAT:
   1675              1.171    plunky 			if (optval > so->so_snd.sb_hiwat)
   1676              1.171    plunky 				optval = so->so_snd.sb_hiwat;
   1677              1.171    plunky 
   1678              1.171    plunky 			so->so_snd.sb_lowat = optval;
   1679              1.142    dyoung 			break;
   1680              1.171    plunky 
   1681                1.1       cgd 		case SO_RCVLOWAT:
   1682              1.171    plunky 			if (optval > so->so_rcv.sb_hiwat)
   1683              1.171    plunky 				optval = so->so_rcv.sb_hiwat;
   1684              1.171    plunky 
   1685              1.171    plunky 			so->so_rcv.sb_lowat = optval;
   1686              1.142    dyoung 			break;
   1687              1.142    dyoung 		}
   1688              1.142    dyoung 		break;
   1689               1.28   thorpej 
   1690              1.142    dyoung 	case SO_SNDTIMEO:
   1691              1.142    dyoung 	case SO_RCVTIMEO:
   1692              1.171    plunky 		error = sockopt_get(sopt, &tv, sizeof(tv));
   1693              1.177        ad 		solock(so);
   1694              1.171    plunky 		if (error)
   1695              1.177        ad 			break;
   1696              1.171    plunky 
   1697              1.177        ad 		if (tv.tv_sec > (INT_MAX - tv.tv_usec / tick) / hz) {
   1698              1.177        ad 			error = EDOM;
   1699              1.177        ad 			break;
   1700              1.177        ad 		}
   1701               1.28   thorpej 
   1702              1.171    plunky 		optval = tv.tv_sec * hz + tv.tv_usec / tick;
   1703              1.171    plunky 		if (optval == 0 && tv.tv_usec != 0)
   1704              1.171    plunky 			optval = 1;
   1705               1.28   thorpej 
   1706              1.171    plunky 		switch (sopt->sopt_name) {
   1707              1.142    dyoung 		case SO_SNDTIMEO:
   1708              1.171    plunky 			so->so_snd.sb_timeo = optval;
   1709                1.1       cgd 			break;
   1710                1.1       cgd 		case SO_RCVTIMEO:
   1711              1.171    plunky 			so->so_rcv.sb_timeo = optval;
   1712              1.142    dyoung 			break;
   1713              1.142    dyoung 		}
   1714              1.142    dyoung 		break;
   1715                1.1       cgd 
   1716              1.142    dyoung 	default:
   1717              1.177        ad 		solock(so);
   1718              1.177        ad 		error = ENOPROTOOPT;
   1719              1.177        ad 		break;
   1720              1.142    dyoung 	}
   1721              1.177        ad 	KASSERT(solocked(so));
   1722              1.177        ad 	return error;
   1723              1.142    dyoung }
   1724                1.1       cgd 
   1725              1.142    dyoung int
   1726              1.171    plunky sosetopt(struct socket *so, struct sockopt *sopt)
   1727              1.142    dyoung {
   1728              1.142    dyoung 	int error, prerr;
   1729                1.1       cgd 
   1730              1.177        ad 	if (sopt->sopt_level == SOL_SOCKET) {
   1731              1.171    plunky 		error = sosetopt1(so, sopt);
   1732              1.177        ad 		KASSERT(solocked(so));
   1733              1.177        ad 	} else {
   1734              1.142    dyoung 		error = ENOPROTOOPT;
   1735              1.177        ad 		solock(so);
   1736              1.177        ad 	}
   1737                1.1       cgd 
   1738              1.142    dyoung 	if ((error == 0 || error == ENOPROTOOPT) &&
   1739              1.142    dyoung 	    so->so_proto != NULL && so->so_proto->pr_ctloutput != NULL) {
   1740              1.142    dyoung 		/* give the protocol stack a shot */
   1741              1.171    plunky 		prerr = (*so->so_proto->pr_ctloutput)(PRCO_SETOPT, so, sopt);
   1742              1.142    dyoung 		if (prerr == 0)
   1743              1.142    dyoung 			error = 0;
   1744              1.142    dyoung 		else if (prerr != ENOPROTOOPT)
   1745              1.142    dyoung 			error = prerr;
   1746              1.171    plunky 	}
   1747              1.160        ad 	sounlock(so);
   1748              1.142    dyoung 	return error;
   1749                1.1       cgd }
   1750                1.1       cgd 
   1751              1.171    plunky /*
   1752              1.171    plunky  * so_setsockopt() is a wrapper providing a sockopt structure for sosetopt()
   1753              1.171    plunky  */
   1754              1.171    plunky int
   1755              1.171    plunky so_setsockopt(struct lwp *l, struct socket *so, int level, int name,
   1756              1.171    plunky     const void *val, size_t valsize)
   1757              1.171    plunky {
   1758              1.171    plunky 	struct sockopt sopt;
   1759              1.171    plunky 	int error;
   1760              1.171    plunky 
   1761              1.171    plunky 	KASSERT(valsize == 0 || val != NULL);
   1762              1.171    plunky 
   1763              1.171    plunky 	sockopt_init(&sopt, level, name, valsize);
   1764              1.171    plunky 	sockopt_set(&sopt, val, valsize);
   1765              1.171    plunky 
   1766              1.171    plunky 	error = sosetopt(so, &sopt);
   1767              1.171    plunky 
   1768              1.171    plunky 	sockopt_destroy(&sopt);
   1769              1.171    plunky 
   1770              1.171    plunky 	return error;
   1771              1.171    plunky }
   1772              1.171    plunky 
   1773              1.171    plunky /*
   1774              1.171    plunky  * internal get SOL_SOCKET options
   1775              1.171    plunky  */
   1776              1.171    plunky static int
   1777              1.171    plunky sogetopt1(struct socket *so, struct sockopt *sopt)
   1778              1.171    plunky {
   1779              1.171    plunky 	int error, optval;
   1780              1.171    plunky 	struct linger l;
   1781              1.171    plunky 	struct timeval tv;
   1782              1.171    plunky 
   1783              1.171    plunky 	switch (sopt->sopt_name) {
   1784              1.171    plunky 
   1785              1.171    plunky 	case SO_ACCEPTFILTER:
   1786              1.177        ad 		error = accept_filt_getopt(so, sopt);
   1787              1.171    plunky 		break;
   1788              1.171    plunky 
   1789              1.171    plunky 	case SO_LINGER:
   1790              1.171    plunky 		l.l_onoff = (so->so_options & SO_LINGER) ? 1 : 0;
   1791              1.171    plunky 		l.l_linger = so->so_linger;
   1792              1.171    plunky 
   1793              1.171    plunky 		error = sockopt_set(sopt, &l, sizeof(l));
   1794              1.171    plunky 		break;
   1795              1.171    plunky 
   1796              1.171    plunky 	case SO_USELOOPBACK:
   1797              1.171    plunky 	case SO_DONTROUTE:
   1798              1.171    plunky 	case SO_DEBUG:
   1799              1.171    plunky 	case SO_KEEPALIVE:
   1800              1.171    plunky 	case SO_REUSEADDR:
   1801              1.171    plunky 	case SO_REUSEPORT:
   1802              1.171    plunky 	case SO_BROADCAST:
   1803              1.171    plunky 	case SO_OOBINLINE:
   1804              1.171    plunky 	case SO_TIMESTAMP:
   1805              1.171    plunky 		error = sockopt_setint(sopt,
   1806              1.171    plunky 		    (so->so_options & sopt->sopt_name) ? 1 : 0);
   1807              1.171    plunky 		break;
   1808              1.171    plunky 
   1809              1.171    plunky 	case SO_TYPE:
   1810              1.171    plunky 		error = sockopt_setint(sopt, so->so_type);
   1811              1.171    plunky 		break;
   1812              1.171    plunky 
   1813              1.171    plunky 	case SO_ERROR:
   1814              1.171    plunky 		error = sockopt_setint(sopt, so->so_error);
   1815              1.171    plunky 		so->so_error = 0;
   1816              1.171    plunky 		break;
   1817              1.171    plunky 
   1818              1.171    plunky 	case SO_SNDBUF:
   1819              1.171    plunky 		error = sockopt_setint(sopt, so->so_snd.sb_hiwat);
   1820              1.171    plunky 		break;
   1821              1.171    plunky 
   1822              1.171    plunky 	case SO_RCVBUF:
   1823              1.171    plunky 		error = sockopt_setint(sopt, so->so_rcv.sb_hiwat);
   1824              1.171    plunky 		break;
   1825              1.171    plunky 
   1826              1.171    plunky 	case SO_SNDLOWAT:
   1827              1.171    plunky 		error = sockopt_setint(sopt, so->so_snd.sb_lowat);
   1828              1.171    plunky 		break;
   1829              1.171    plunky 
   1830              1.171    plunky 	case SO_RCVLOWAT:
   1831              1.171    plunky 		error = sockopt_setint(sopt, so->so_rcv.sb_lowat);
   1832              1.171    plunky 		break;
   1833              1.171    plunky 
   1834              1.171    plunky 	case SO_SNDTIMEO:
   1835              1.171    plunky 	case SO_RCVTIMEO:
   1836              1.171    plunky 		optval = (sopt->sopt_name == SO_SNDTIMEO ?
   1837              1.171    plunky 		     so->so_snd.sb_timeo : so->so_rcv.sb_timeo);
   1838              1.171    plunky 
   1839              1.171    plunky 		tv.tv_sec = optval / hz;
   1840              1.171    plunky 		tv.tv_usec = (optval % hz) * tick;
   1841              1.171    plunky 
   1842              1.171    plunky 		error = sockopt_set(sopt, &tv, sizeof(tv));
   1843              1.171    plunky 		break;
   1844              1.171    plunky 
   1845              1.171    plunky 	case SO_OVERFLOWED:
   1846              1.171    plunky 		error = sockopt_setint(sopt, so->so_rcv.sb_overflowed);
   1847              1.171    plunky 		break;
   1848              1.171    plunky 
   1849              1.171    plunky 	default:
   1850              1.171    plunky 		error = ENOPROTOOPT;
   1851              1.171    plunky 		break;
   1852              1.171    plunky 	}
   1853              1.171    plunky 
   1854              1.171    plunky 	return (error);
   1855              1.171    plunky }
   1856              1.171    plunky 
   1857               1.14   mycroft int
   1858              1.171    plunky sogetopt(struct socket *so, struct sockopt *sopt)
   1859                1.1       cgd {
   1860              1.160        ad 	int		error;
   1861                1.1       cgd 
   1862              1.160        ad 	solock(so);
   1863              1.171    plunky 	if (sopt->sopt_level != SOL_SOCKET) {
   1864                1.1       cgd 		if (so->so_proto && so->so_proto->pr_ctloutput) {
   1865              1.160        ad 			error = ((*so->so_proto->pr_ctloutput)
   1866              1.171    plunky 			    (PRCO_GETOPT, so, sopt));
   1867                1.1       cgd 		} else
   1868              1.160        ad 			error = (ENOPROTOOPT);
   1869                1.1       cgd 	} else {
   1870              1.171    plunky 		error = sogetopt1(so, sopt);
   1871              1.171    plunky 	}
   1872              1.171    plunky 	sounlock(so);
   1873              1.171    plunky 	return (error);
   1874              1.171    plunky }
   1875              1.171    plunky 
   1876              1.171    plunky /*
   1877              1.171    plunky  * alloc sockopt data buffer buffer
   1878              1.171    plunky  *	- will be released at destroy
   1879              1.171    plunky  */
   1880              1.176    plunky static int
   1881              1.176    plunky sockopt_alloc(struct sockopt *sopt, size_t len, km_flag_t kmflag)
   1882              1.171    plunky {
   1883              1.171    plunky 
   1884              1.171    plunky 	KASSERT(sopt->sopt_size == 0);
   1885              1.171    plunky 
   1886              1.176    plunky 	if (len > sizeof(sopt->sopt_buf)) {
   1887              1.176    plunky 		sopt->sopt_data = kmem_zalloc(len, kmflag);
   1888              1.176    plunky 		if (sopt->sopt_data == NULL)
   1889              1.176    plunky 			return ENOMEM;
   1890              1.176    plunky 	} else
   1891              1.171    plunky 		sopt->sopt_data = sopt->sopt_buf;
   1892              1.171    plunky 
   1893              1.171    plunky 	sopt->sopt_size = len;
   1894              1.176    plunky 	return 0;
   1895              1.171    plunky }
   1896              1.171    plunky 
   1897              1.171    plunky /*
   1898              1.171    plunky  * initialise sockopt storage
   1899              1.176    plunky  *	- MAY sleep during allocation
   1900              1.171    plunky  */
   1901              1.171    plunky void
   1902              1.171    plunky sockopt_init(struct sockopt *sopt, int level, int name, size_t size)
   1903              1.171    plunky {
   1904                1.1       cgd 
   1905              1.171    plunky 	memset(sopt, 0, sizeof(*sopt));
   1906                1.1       cgd 
   1907              1.171    plunky 	sopt->sopt_level = level;
   1908              1.171    plunky 	sopt->sopt_name = name;
   1909              1.176    plunky 	(void)sockopt_alloc(sopt, size, KM_SLEEP);
   1910              1.171    plunky }
   1911              1.171    plunky 
   1912              1.171    plunky /*
   1913              1.171    plunky  * destroy sockopt storage
   1914              1.171    plunky  *	- will release any held memory references
   1915              1.171    plunky  */
   1916              1.171    plunky void
   1917              1.171    plunky sockopt_destroy(struct sockopt *sopt)
   1918              1.171    plunky {
   1919              1.171    plunky 
   1920              1.171    plunky 	if (sopt->sopt_data != sopt->sopt_buf)
   1921              1.173    plunky 		kmem_free(sopt->sopt_data, sopt->sopt_size);
   1922              1.171    plunky 
   1923              1.171    plunky 	memset(sopt, 0, sizeof(*sopt));
   1924              1.171    plunky }
   1925              1.171    plunky 
   1926              1.171    plunky /*
   1927              1.171    plunky  * set sockopt value
   1928              1.171    plunky  *	- value is copied into sockopt
   1929              1.176    plunky  * 	- memory is allocated when necessary, will not sleep
   1930              1.171    plunky  */
   1931              1.171    plunky int
   1932              1.171    plunky sockopt_set(struct sockopt *sopt, const void *buf, size_t len)
   1933              1.171    plunky {
   1934              1.176    plunky 	int error;
   1935              1.171    plunky 
   1936              1.176    plunky 	if (sopt->sopt_size == 0) {
   1937              1.176    plunky 		error = sockopt_alloc(sopt, len, KM_NOSLEEP);
   1938              1.176    plunky 		if (error)
   1939              1.176    plunky 			return error;
   1940              1.176    plunky 	}
   1941              1.171    plunky 
   1942              1.171    plunky 	KASSERT(sopt->sopt_size == len);
   1943              1.171    plunky 	memcpy(sopt->sopt_data, buf, len);
   1944              1.171    plunky 	return 0;
   1945              1.171    plunky }
   1946              1.171    plunky 
   1947              1.171    plunky /*
   1948              1.171    plunky  * common case of set sockopt integer value
   1949              1.171    plunky  */
   1950              1.171    plunky int
   1951              1.171    plunky sockopt_setint(struct sockopt *sopt, int val)
   1952              1.171    plunky {
   1953              1.171    plunky 
   1954              1.171    plunky 	return sockopt_set(sopt, &val, sizeof(int));
   1955              1.171    plunky }
   1956              1.171    plunky 
   1957              1.171    plunky /*
   1958              1.171    plunky  * get sockopt value
   1959              1.171    plunky  *	- correct size must be given
   1960              1.171    plunky  */
   1961              1.171    plunky int
   1962              1.171    plunky sockopt_get(const struct sockopt *sopt, void *buf, size_t len)
   1963              1.171    plunky {
   1964              1.170       tls 
   1965              1.171    plunky 	if (sopt->sopt_size != len)
   1966              1.171    plunky 		return EINVAL;
   1967                1.1       cgd 
   1968              1.171    plunky 	memcpy(buf, sopt->sopt_data, len);
   1969              1.171    plunky 	return 0;
   1970              1.171    plunky }
   1971                1.1       cgd 
   1972              1.171    plunky /*
   1973              1.171    plunky  * common case of get sockopt integer value
   1974              1.171    plunky  */
   1975              1.171    plunky int
   1976              1.171    plunky sockopt_getint(const struct sockopt *sopt, int *valp)
   1977              1.171    plunky {
   1978                1.1       cgd 
   1979              1.171    plunky 	return sockopt_get(sopt, valp, sizeof(int));
   1980              1.171    plunky }
   1981                1.1       cgd 
   1982              1.171    plunky /*
   1983              1.171    plunky  * set sockopt value from mbuf
   1984              1.171    plunky  *	- ONLY for legacy code
   1985              1.171    plunky  *	- mbuf is released by sockopt
   1986              1.176    plunky  *	- will not sleep
   1987              1.171    plunky  */
   1988              1.171    plunky int
   1989              1.171    plunky sockopt_setmbuf(struct sockopt *sopt, struct mbuf *m)
   1990              1.171    plunky {
   1991              1.171    plunky 	size_t len;
   1992              1.176    plunky 	int error;
   1993                1.1       cgd 
   1994              1.171    plunky 	len = m_length(m);
   1995                1.1       cgd 
   1996              1.176    plunky 	if (sopt->sopt_size == 0) {
   1997              1.176    plunky 		error = sockopt_alloc(sopt, len, KM_NOSLEEP);
   1998              1.176    plunky 		if (error)
   1999              1.176    plunky 			return error;
   2000              1.176    plunky 	}
   2001                1.1       cgd 
   2002              1.171    plunky 	KASSERT(sopt->sopt_size == len);
   2003              1.171    plunky 	m_copydata(m, 0, len, sopt->sopt_data);
   2004              1.171    plunky 	m_freem(m);
   2005                1.1       cgd 
   2006              1.171    plunky 	return 0;
   2007              1.171    plunky }
   2008                1.1       cgd 
   2009              1.171    plunky /*
   2010              1.171    plunky  * get sockopt value into mbuf
   2011              1.171    plunky  *	- ONLY for legacy code
   2012              1.171    plunky  *	- mbuf to be released by the caller
   2013              1.176    plunky  *	- will not sleep
   2014              1.171    plunky  */
   2015              1.171    plunky struct mbuf *
   2016              1.171    plunky sockopt_getmbuf(const struct sockopt *sopt)
   2017              1.171    plunky {
   2018              1.171    plunky 	struct mbuf *m;
   2019              1.107   darrenr 
   2020              1.176    plunky 	if (sopt->sopt_size > MCLBYTES)
   2021              1.176    plunky 		return NULL;
   2022              1.176    plunky 
   2023              1.176    plunky 	m = m_get(M_DONTWAIT, MT_SOOPTS);
   2024              1.171    plunky 	if (m == NULL)
   2025              1.171    plunky 		return NULL;
   2026              1.171    plunky 
   2027              1.176    plunky 	if (sopt->sopt_size > MLEN) {
   2028              1.176    plunky 		MCLGET(m, M_DONTWAIT);
   2029              1.176    plunky 		if ((m->m_flags & M_EXT) == 0) {
   2030              1.176    plunky 			m_free(m);
   2031              1.176    plunky 			return NULL;
   2032              1.176    plunky 		}
   2033                1.1       cgd 	}
   2034              1.176    plunky 
   2035              1.176    plunky 	memcpy(mtod(m, void *), sopt->sopt_data, sopt->sopt_size);
   2036              1.176    plunky 	m->m_len = sopt->sopt_size;
   2037              1.160        ad 
   2038              1.171    plunky 	return m;
   2039                1.1       cgd }
   2040                1.1       cgd 
   2041               1.14   mycroft void
   2042               1.54     lukem sohasoutofband(struct socket *so)
   2043                1.1       cgd {
   2044              1.153     rmind 
   2045               1.90  christos 	fownsignal(so->so_pgid, SIGURG, POLL_PRI, POLLPRI|POLLRDBAND, so);
   2046      1.177.4.2.2.1    bouyer 	selnotify(&so->so_rcv.sb_sel, POLLPRI | POLLRDBAND, NOTE_SUBMIT);
   2047                1.1       cgd }
   2048               1.72  jdolecek 
   2049               1.72  jdolecek static void
   2050               1.72  jdolecek filt_sordetach(struct knote *kn)
   2051               1.72  jdolecek {
   2052               1.72  jdolecek 	struct socket	*so;
   2053               1.72  jdolecek 
   2054              1.155        ad 	so = ((file_t *)kn->kn_obj)->f_data;
   2055              1.160        ad 	solock(so);
   2056               1.73  christos 	SLIST_REMOVE(&so->so_rcv.sb_sel.sel_klist, kn, knote, kn_selnext);
   2057               1.73  christos 	if (SLIST_EMPTY(&so->so_rcv.sb_sel.sel_klist))
   2058               1.72  jdolecek 		so->so_rcv.sb_flags &= ~SB_KNOTE;
   2059              1.160        ad 	sounlock(so);
   2060               1.72  jdolecek }
   2061               1.72  jdolecek 
   2062               1.72  jdolecek /*ARGSUSED*/
   2063               1.72  jdolecek static int
   2064              1.129      yamt filt_soread(struct knote *kn, long hint)
   2065               1.72  jdolecek {
   2066               1.72  jdolecek 	struct socket	*so;
   2067              1.160        ad 	int rv;
   2068               1.72  jdolecek 
   2069              1.155        ad 	so = ((file_t *)kn->kn_obj)->f_data;
   2070              1.160        ad 	if (hint != NOTE_SUBMIT)
   2071              1.160        ad 		solock(so);
   2072               1.72  jdolecek 	kn->kn_data = so->so_rcv.sb_cc;
   2073               1.72  jdolecek 	if (so->so_state & SS_CANTRCVMORE) {
   2074              1.108     perry 		kn->kn_flags |= EV_EOF;
   2075               1.72  jdolecek 		kn->kn_fflags = so->so_error;
   2076              1.160        ad 		rv = 1;
   2077              1.160        ad 	} else if (so->so_error)	/* temporary udp error */
   2078              1.160        ad 		rv = 1;
   2079              1.160        ad 	else if (kn->kn_sfflags & NOTE_LOWAT)
   2080              1.160        ad 		rv = (kn->kn_data >= kn->kn_sdata);
   2081              1.160        ad 	else
   2082              1.160        ad 		rv = (kn->kn_data >= so->so_rcv.sb_lowat);
   2083              1.160        ad 	if (hint != NOTE_SUBMIT)
   2084              1.160        ad 		sounlock(so);
   2085              1.160        ad 	return rv;
   2086               1.72  jdolecek }
   2087               1.72  jdolecek 
   2088               1.72  jdolecek static void
   2089               1.72  jdolecek filt_sowdetach(struct knote *kn)
   2090               1.72  jdolecek {
   2091               1.72  jdolecek 	struct socket	*so;
   2092               1.72  jdolecek 
   2093              1.155        ad 	so = ((file_t *)kn->kn_obj)->f_data;
   2094              1.160        ad 	solock(so);
   2095               1.73  christos 	SLIST_REMOVE(&so->so_snd.sb_sel.sel_klist, kn, knote, kn_selnext);
   2096               1.73  christos 	if (SLIST_EMPTY(&so->so_snd.sb_sel.sel_klist))
   2097               1.72  jdolecek 		so->so_snd.sb_flags &= ~SB_KNOTE;
   2098              1.160        ad 	sounlock(so);
   2099               1.72  jdolecek }
   2100               1.72  jdolecek 
   2101               1.72  jdolecek /*ARGSUSED*/
   2102               1.72  jdolecek static int
   2103              1.129      yamt filt_sowrite(struct knote *kn, long hint)
   2104               1.72  jdolecek {
   2105               1.72  jdolecek 	struct socket	*so;
   2106              1.160        ad 	int rv;
   2107               1.72  jdolecek 
   2108              1.155        ad 	so = ((file_t *)kn->kn_obj)->f_data;
   2109              1.160        ad 	if (hint != NOTE_SUBMIT)
   2110              1.160        ad 		solock(so);
   2111               1.72  jdolecek 	kn->kn_data = sbspace(&so->so_snd);
   2112               1.72  jdolecek 	if (so->so_state & SS_CANTSENDMORE) {
   2113              1.108     perry 		kn->kn_flags |= EV_EOF;
   2114               1.72  jdolecek 		kn->kn_fflags = so->so_error;
   2115              1.160        ad 		rv = 1;
   2116              1.160        ad 	} else if (so->so_error)	/* temporary udp error */
   2117              1.160        ad 		rv = 1;
   2118              1.160        ad 	else if (((so->so_state & SS_ISCONNECTED) == 0) &&
   2119               1.72  jdolecek 	    (so->so_proto->pr_flags & PR_CONNREQUIRED))
   2120              1.160        ad 		rv = 0;
   2121              1.160        ad 	else if (kn->kn_sfflags & NOTE_LOWAT)
   2122              1.160        ad 		rv = (kn->kn_data >= kn->kn_sdata);
   2123              1.160        ad 	else
   2124              1.160        ad 		rv = (kn->kn_data >= so->so_snd.sb_lowat);
   2125              1.160        ad 	if (hint != NOTE_SUBMIT)
   2126              1.160        ad 		sounlock(so);
   2127              1.160        ad 	return rv;
   2128               1.72  jdolecek }
   2129               1.72  jdolecek 
   2130               1.72  jdolecek /*ARGSUSED*/
   2131               1.72  jdolecek static int
   2132              1.129      yamt filt_solisten(struct knote *kn, long hint)
   2133               1.72  jdolecek {
   2134               1.72  jdolecek 	struct socket	*so;
   2135              1.160        ad 	int rv;
   2136               1.72  jdolecek 
   2137              1.155        ad 	so = ((file_t *)kn->kn_obj)->f_data;
   2138               1.72  jdolecek 
   2139               1.72  jdolecek 	/*
   2140               1.72  jdolecek 	 * Set kn_data to number of incoming connections, not
   2141               1.72  jdolecek 	 * counting partial (incomplete) connections.
   2142              1.108     perry 	 */
   2143              1.160        ad 	if (hint != NOTE_SUBMIT)
   2144              1.160        ad 		solock(so);
   2145               1.72  jdolecek 	kn->kn_data = so->so_qlen;
   2146              1.160        ad 	rv = (kn->kn_data > 0);
   2147              1.160        ad 	if (hint != NOTE_SUBMIT)
   2148              1.160        ad 		sounlock(so);
   2149              1.160        ad 	return rv;
   2150               1.72  jdolecek }
   2151               1.72  jdolecek 
   2152               1.72  jdolecek static const struct filterops solisten_filtops =
   2153               1.72  jdolecek 	{ 1, NULL, filt_sordetach, filt_solisten };
   2154               1.72  jdolecek static const struct filterops soread_filtops =
   2155               1.72  jdolecek 	{ 1, NULL, filt_sordetach, filt_soread };
   2156               1.72  jdolecek static const struct filterops sowrite_filtops =
   2157               1.72  jdolecek 	{ 1, NULL, filt_sowdetach, filt_sowrite };
   2158               1.72  jdolecek 
   2159               1.72  jdolecek int
   2160              1.129      yamt soo_kqfilter(struct file *fp, struct knote *kn)
   2161               1.72  jdolecek {
   2162               1.72  jdolecek 	struct socket	*so;
   2163               1.72  jdolecek 	struct sockbuf	*sb;
   2164               1.72  jdolecek 
   2165              1.155        ad 	so = ((file_t *)kn->kn_obj)->f_data;
   2166              1.160        ad 	solock(so);
   2167               1.72  jdolecek 	switch (kn->kn_filter) {
   2168               1.72  jdolecek 	case EVFILT_READ:
   2169               1.72  jdolecek 		if (so->so_options & SO_ACCEPTCONN)
   2170               1.72  jdolecek 			kn->kn_fop = &solisten_filtops;
   2171               1.72  jdolecek 		else
   2172               1.72  jdolecek 			kn->kn_fop = &soread_filtops;
   2173               1.72  jdolecek 		sb = &so->so_rcv;
   2174               1.72  jdolecek 		break;
   2175               1.72  jdolecek 	case EVFILT_WRITE:
   2176               1.72  jdolecek 		kn->kn_fop = &sowrite_filtops;
   2177               1.72  jdolecek 		sb = &so->so_snd;
   2178               1.72  jdolecek 		break;
   2179               1.72  jdolecek 	default:
   2180              1.160        ad 		sounlock(so);
   2181              1.149     pooka 		return (EINVAL);
   2182               1.72  jdolecek 	}
   2183               1.73  christos 	SLIST_INSERT_HEAD(&sb->sb_sel.sel_klist, kn, kn_selnext);
   2184               1.72  jdolecek 	sb->sb_flags |= SB_KNOTE;
   2185              1.160        ad 	sounlock(so);
   2186               1.72  jdolecek 	return (0);
   2187               1.72  jdolecek }
   2188               1.72  jdolecek 
   2189              1.154        ad static int
   2190              1.154        ad sodopoll(struct socket *so, int events)
   2191              1.154        ad {
   2192              1.154        ad 	int revents;
   2193              1.154        ad 
   2194              1.154        ad 	revents = 0;
   2195              1.154        ad 
   2196              1.154        ad 	if (events & (POLLIN | POLLRDNORM))
   2197              1.154        ad 		if (soreadable(so))
   2198              1.154        ad 			revents |= events & (POLLIN | POLLRDNORM);
   2199              1.154        ad 
   2200              1.154        ad 	if (events & (POLLOUT | POLLWRNORM))
   2201              1.154        ad 		if (sowritable(so))
   2202              1.154        ad 			revents |= events & (POLLOUT | POLLWRNORM);
   2203              1.154        ad 
   2204              1.154        ad 	if (events & (POLLPRI | POLLRDBAND))
   2205              1.154        ad 		if (so->so_oobmark || (so->so_state & SS_RCVATMARK))
   2206              1.154        ad 			revents |= events & (POLLPRI | POLLRDBAND);
   2207              1.154        ad 
   2208              1.154        ad 	return revents;
   2209              1.154        ad }
   2210              1.154        ad 
   2211              1.154        ad int
   2212              1.154        ad sopoll(struct socket *so, int events)
   2213              1.154        ad {
   2214              1.154        ad 	int revents = 0;
   2215              1.154        ad 
   2216              1.160        ad #ifndef DIAGNOSTIC
   2217              1.160        ad 	/*
   2218              1.160        ad 	 * Do a quick, unlocked check in expectation that the socket
   2219              1.160        ad 	 * will be ready for I/O.  Don't do this check if DIAGNOSTIC,
   2220              1.160        ad 	 * as the solocked() assertions will fail.
   2221              1.160        ad 	 */
   2222              1.154        ad 	if ((revents = sodopoll(so, events)) != 0)
   2223              1.154        ad 		return revents;
   2224              1.160        ad #endif
   2225              1.154        ad 
   2226              1.160        ad 	solock(so);
   2227              1.154        ad 	if ((revents = sodopoll(so, events)) == 0) {
   2228              1.154        ad 		if (events & (POLLIN | POLLPRI | POLLRDNORM | POLLRDBAND)) {
   2229              1.154        ad 			selrecord(curlwp, &so->so_rcv.sb_sel);
   2230              1.160        ad 			so->so_rcv.sb_flags |= SB_NOTIFY;
   2231              1.154        ad 		}
   2232              1.154        ad 
   2233              1.154        ad 		if (events & (POLLOUT | POLLWRNORM)) {
   2234              1.154        ad 			selrecord(curlwp, &so->so_snd.sb_sel);
   2235              1.160        ad 			so->so_snd.sb_flags |= SB_NOTIFY;
   2236              1.154        ad 		}
   2237              1.154        ad 	}
   2238              1.160        ad 	sounlock(so);
   2239              1.154        ad 
   2240              1.154        ad 	return revents;
   2241              1.154        ad }
   2242              1.154        ad 
   2243              1.154        ad 
   2244               1.94      yamt #include <sys/sysctl.h>
   2245               1.94      yamt 
   2246               1.94      yamt static int sysctl_kern_somaxkva(SYSCTLFN_PROTO);
   2247               1.94      yamt 
   2248               1.94      yamt /*
   2249               1.94      yamt  * sysctl helper routine for kern.somaxkva.  ensures that the given
   2250               1.94      yamt  * value is not too small.
   2251               1.94      yamt  * (XXX should we maybe make sure it's not too large as well?)
   2252               1.94      yamt  */
   2253               1.94      yamt static int
   2254               1.94      yamt sysctl_kern_somaxkva(SYSCTLFN_ARGS)
   2255               1.94      yamt {
   2256               1.94      yamt 	int error, new_somaxkva;
   2257               1.94      yamt 	struct sysctlnode node;
   2258               1.94      yamt 
   2259               1.94      yamt 	new_somaxkva = somaxkva;
   2260               1.94      yamt 	node = *rnode;
   2261               1.94      yamt 	node.sysctl_data = &new_somaxkva;
   2262               1.94      yamt 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
   2263               1.94      yamt 	if (error || newp == NULL)
   2264               1.94      yamt 		return (error);
   2265               1.94      yamt 
   2266               1.94      yamt 	if (new_somaxkva < (16 * 1024 * 1024)) /* sanity */
   2267               1.94      yamt 		return (EINVAL);
   2268               1.94      yamt 
   2269              1.136        ad 	mutex_enter(&so_pendfree_lock);
   2270               1.94      yamt 	somaxkva = new_somaxkva;
   2271              1.136        ad 	cv_broadcast(&socurkva_cv);
   2272              1.136        ad 	mutex_exit(&so_pendfree_lock);
   2273               1.94      yamt 
   2274               1.94      yamt 	return (error);
   2275               1.94      yamt }
   2276               1.94      yamt 
   2277               1.94      yamt SYSCTL_SETUP(sysctl_kern_somaxkva_setup, "sysctl kern.somaxkva setup")
   2278               1.94      yamt {
   2279               1.94      yamt 
   2280               1.97    atatat 	sysctl_createv(clog, 0, NULL, NULL,
   2281               1.97    atatat 		       CTLFLAG_PERMANENT,
   2282               1.97    atatat 		       CTLTYPE_NODE, "kern", NULL,
   2283               1.97    atatat 		       NULL, 0, NULL, 0,
   2284               1.97    atatat 		       CTL_KERN, CTL_EOL);
   2285               1.97    atatat 
   2286               1.97    atatat 	sysctl_createv(clog, 0, NULL, NULL,
   2287               1.97    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   2288              1.103    atatat 		       CTLTYPE_INT, "somaxkva",
   2289              1.103    atatat 		       SYSCTL_DESCR("Maximum amount of kernel memory to be "
   2290              1.103    atatat 				    "used for socket buffers"),
   2291               1.94      yamt 		       sysctl_kern_somaxkva, 0, NULL, 0,
   2292               1.94      yamt 		       CTL_KERN, KERN_SOMAXKVA, CTL_EOL);
   2293               1.94      yamt }
   2294