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uipc_mbuf.c revision 1.215.2.1
      1  1.215.2.1  christos /*	$NetBSD: uipc_mbuf.c,v 1.215.2.1 2019/06/10 22:09:04 christos Exp $	*/
      2       1.42   thorpej 
      3      1.177      maxv /*
      4  1.215.2.1  christos  * Copyright (c) 1999, 2001, 2018 The NetBSD Foundation, Inc.
      5       1.42   thorpej  * All rights reserved.
      6       1.42   thorpej  *
      7       1.42   thorpej  * This code is derived from software contributed to The NetBSD Foundation
      8       1.42   thorpej  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9  1.215.2.1  christos  * NASA Ames Research Center, and Maxime Villard.
     10       1.42   thorpej  *
     11       1.42   thorpej  * Redistribution and use in source and binary forms, with or without
     12       1.42   thorpej  * modification, are permitted provided that the following conditions
     13       1.42   thorpej  * are met:
     14       1.42   thorpej  * 1. Redistributions of source code must retain the above copyright
     15       1.42   thorpej  *    notice, this list of conditions and the following disclaimer.
     16       1.42   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     17       1.42   thorpej  *    notice, this list of conditions and the following disclaimer in the
     18       1.42   thorpej  *    documentation and/or other materials provided with the distribution.
     19       1.42   thorpej  *
     20       1.42   thorpej  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21       1.42   thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22       1.42   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23       1.42   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24       1.42   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25       1.42   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26       1.42   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27       1.42   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28       1.42   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29       1.42   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30       1.42   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     31       1.42   thorpej  */
     32       1.10       cgd 
     33        1.1       cgd /*
     34        1.9   mycroft  * Copyright (c) 1982, 1986, 1988, 1991, 1993
     35        1.9   mycroft  *	The Regents of the University of California.  All rights reserved.
     36        1.1       cgd  *
     37        1.1       cgd  * Redistribution and use in source and binary forms, with or without
     38        1.1       cgd  * modification, are permitted provided that the following conditions
     39        1.1       cgd  * are met:
     40        1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     41        1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     42        1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     43        1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     44        1.1       cgd  *    documentation and/or other materials provided with the distribution.
     45       1.70       agc  * 3. Neither the name of the University nor the names of its contributors
     46        1.1       cgd  *    may be used to endorse or promote products derived from this software
     47        1.1       cgd  *    without specific prior written permission.
     48        1.1       cgd  *
     49        1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     50        1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     51        1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     52        1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     53        1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     54        1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     55        1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     56        1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     57        1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     58        1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     59        1.1       cgd  * SUCH DAMAGE.
     60        1.1       cgd  *
     61       1.26      fvdl  *	@(#)uipc_mbuf.c	8.4 (Berkeley) 2/14/95
     62        1.1       cgd  */
     63       1.56     lukem 
     64       1.56     lukem #include <sys/cdefs.h>
     65  1.215.2.1  christos __KERNEL_RCSID(0, "$NetBSD: uipc_mbuf.c,v 1.215.2.1 2019/06/10 22:09:04 christos Exp $");
     66       1.69    martin 
     67      1.163     pooka #ifdef _KERNEL_OPT
     68       1.69    martin #include "opt_mbuftrace.h"
     69      1.133     joerg #include "opt_nmbclusters.h"
     70      1.105      yamt #include "opt_ddb.h"
     71  1.215.2.1  christos #include "ether.h"
     72      1.163     pooka #endif
     73       1.24       mrg 
     74        1.6   mycroft #include <sys/param.h>
     75        1.6   mycroft #include <sys/systm.h>
     76      1.125      yamt #include <sys/atomic.h>
     77      1.124      yamt #include <sys/cpu.h>
     78        1.6   mycroft #include <sys/proc.h>
     79        1.6   mycroft #include <sys/mbuf.h>
     80        1.6   mycroft #include <sys/kernel.h>
     81        1.6   mycroft #include <sys/syslog.h>
     82        1.6   mycroft #include <sys/domain.h>
     83        1.6   mycroft #include <sys/protosw.h>
     84      1.124      yamt #include <sys/percpu.h>
     85       1.28   thorpej #include <sys/pool.h>
     86       1.27      matt #include <sys/socket.h>
     87       1.55    simonb #include <sys/sysctl.h>
     88       1.55    simonb 
     89       1.27      matt #include <net/if.h>
     90       1.14  christos 
     91      1.122        ad pool_cache_t mb_cache;	/* mbuf cache */
     92  1.215.2.1  christos static pool_cache_t mcl_cache;	/* mbuf cluster cache */
     93       1.53   thorpej 
     94       1.18   thorpej struct mbstat mbstat;
     95      1.199      maxv int max_linkhdr;
     96      1.199      maxv int max_protohdr;
     97      1.199      maxv int max_hdr;
     98      1.199      maxv int max_datalen;
     99       1.18   thorpej 
    100      1.203      maxv static void mb_drain(void *, int);
    101       1.65   thorpej static int mb_ctor(void *, void *, int);
    102       1.65   thorpej 
    103      1.199      maxv static void sysctl_kern_mbuf_setup(void);
    104      1.129     pooka 
    105      1.129     pooka static struct sysctllog *mbuf_sysctllog;
    106      1.129     pooka 
    107      1.195      maxv static struct mbuf *m_copy_internal(struct mbuf *, int, int, int, bool);
    108      1.195      maxv static struct mbuf *m_split_internal(struct mbuf *, int, int, bool);
    109      1.196      maxv static int m_copyback_internal(struct mbuf **, int, int, const void *,
    110      1.196      maxv     int, int);
    111       1.85      yamt 
    112      1.196      maxv /* Flags for m_copyback_internal. */
    113      1.196      maxv #define	CB_COPYBACK	0x0001	/* copyback from cp */
    114      1.196      maxv #define	CB_PRESERVE	0x0002	/* preserve original data */
    115      1.196      maxv #define	CB_COW		0x0004	/* do copy-on-write */
    116      1.196      maxv #define	CB_EXTEND	0x0008	/* extend chain */
    117       1.28   thorpej 
    118      1.103   thorpej static const char mclpool_warnmsg[] =
    119      1.133     joerg     "WARNING: mclpool limit reached; increase kern.mbuf.nmbclusters";
    120       1.63   thorpej 
    121       1.63   thorpej MALLOC_DEFINE(M_MBUF, "mbuf", "mbuf");
    122       1.42   thorpej 
    123      1.124      yamt static percpu_t *mbstat_percpu;
    124      1.124      yamt 
    125       1.64      matt #ifdef MBUFTRACE
    126       1.64      matt struct mownerhead mowners = LIST_HEAD_INITIALIZER(mowners);
    127       1.64      matt struct mowner unknown_mowners[] = {
    128      1.114    dogcow 	MOWNER_INIT("unknown", "free"),
    129      1.114    dogcow 	MOWNER_INIT("unknown", "data"),
    130      1.114    dogcow 	MOWNER_INIT("unknown", "header"),
    131      1.114    dogcow 	MOWNER_INIT("unknown", "soname"),
    132      1.114    dogcow 	MOWNER_INIT("unknown", "soopts"),
    133      1.114    dogcow 	MOWNER_INIT("unknown", "ftable"),
    134      1.114    dogcow 	MOWNER_INIT("unknown", "control"),
    135      1.114    dogcow 	MOWNER_INIT("unknown", "oobdata"),
    136       1.64      matt };
    137      1.114    dogcow struct mowner revoked_mowner = MOWNER_INIT("revoked", "");
    138       1.64      matt #endif
    139       1.64      matt 
    140      1.125      yamt #define	MEXT_ISEMBEDDED(m) ((m)->m_ext_ref == (m))
    141      1.125      yamt 
    142      1.125      yamt #define	MCLADDREFERENCE(o, n)						\
    143      1.125      yamt do {									\
    144      1.125      yamt 	KASSERT(((o)->m_flags & M_EXT) != 0);				\
    145      1.125      yamt 	KASSERT(((n)->m_flags & M_EXT) == 0);				\
    146      1.125      yamt 	KASSERT((o)->m_ext.ext_refcnt >= 1);				\
    147      1.125      yamt 	(n)->m_flags |= ((o)->m_flags & M_EXTCOPYFLAGS);		\
    148      1.125      yamt 	atomic_inc_uint(&(o)->m_ext.ext_refcnt);			\
    149      1.125      yamt 	(n)->m_ext_ref = (o)->m_ext_ref;				\
    150      1.125      yamt 	mowner_ref((n), (n)->m_flags);					\
    151      1.125      yamt } while (/* CONSTCOND */ 0)
    152      1.125      yamt 
    153      1.133     joerg static int
    154      1.133     joerg nmbclusters_limit(void)
    155      1.133     joerg {
    156      1.136     pooka #if defined(PMAP_MAP_POOLPAGE)
    157      1.147      para 	/* direct mapping, doesn't use space in kmem_arena */
    158      1.133     joerg 	vsize_t max_size = physmem / 4;
    159      1.133     joerg #else
    160      1.145      para 	vsize_t max_size = MIN(physmem / 4, nkmempages / 4);
    161      1.133     joerg #endif
    162      1.133     joerg 
    163      1.133     joerg 	max_size = max_size * PAGE_SIZE / MCLBYTES;
    164      1.133     joerg #ifdef NMBCLUSTERS_MAX
    165      1.133     joerg 	max_size = MIN(max_size, NMBCLUSTERS_MAX);
    166      1.133     joerg #endif
    167      1.133     joerg 
    168      1.133     joerg #ifdef NMBCLUSTERS
    169      1.133     joerg 	return MIN(max_size, NMBCLUSTERS);
    170      1.133     joerg #else
    171      1.133     joerg 	return max_size;
    172      1.133     joerg #endif
    173      1.133     joerg }
    174      1.133     joerg 
    175       1.28   thorpej /*
    176       1.68    simonb  * Initialize the mbuf allocator.
    177       1.28   thorpej  */
    178        1.4       jtc void
    179       1.62   thorpej mbinit(void)
    180        1.1       cgd {
    181       1.65   thorpej 
    182      1.128      matt 	CTASSERT(sizeof(struct _m_ext) <= MHLEN);
    183      1.128      matt 	CTASSERT(sizeof(struct mbuf) == MSIZE);
    184       1.65   thorpej 
    185      1.129     pooka 	sysctl_kern_mbuf_setup();
    186      1.129     pooka 
    187      1.122        ad 	mb_cache = pool_cache_init(msize, 0, 0, 0, "mbpl",
    188      1.122        ad 	    NULL, IPL_VM, mb_ctor, NULL, NULL);
    189      1.122        ad 	KASSERT(mb_cache != NULL);
    190      1.122        ad 
    191      1.135     rmind 	mcl_cache = pool_cache_init(mclbytes, 0, 0, 0, "mclpl", NULL,
    192      1.135     rmind 	    IPL_VM, NULL, NULL, NULL);
    193      1.122        ad 	KASSERT(mcl_cache != NULL);
    194       1.59   thorpej 
    195      1.203      maxv 	pool_cache_set_drain_hook(mb_cache, mb_drain, NULL);
    196      1.203      maxv 	pool_cache_set_drain_hook(mcl_cache, mb_drain, NULL);
    197       1.37   thorpej 
    198       1.37   thorpej 	/*
    199      1.133     joerg 	 * Set an arbitrary default limit on the number of mbuf clusters.
    200      1.133     joerg 	 */
    201      1.133     joerg #ifdef NMBCLUSTERS
    202      1.133     joerg 	nmbclusters = nmbclusters_limit();
    203      1.133     joerg #else
    204      1.133     joerg 	nmbclusters = MAX(1024,
    205      1.133     joerg 	    (vsize_t)physmem * PAGE_SIZE / MCLBYTES / 16);
    206      1.133     joerg 	nmbclusters = MIN(nmbclusters, nmbclusters_limit());
    207      1.133     joerg #endif
    208      1.133     joerg 
    209      1.133     joerg 	/*
    210       1.39   thorpej 	 * Set the hard limit on the mclpool to the number of
    211       1.39   thorpej 	 * mbuf clusters the kernel is to support.  Log the limit
    212       1.39   thorpej 	 * reached message max once a minute.
    213       1.39   thorpej 	 */
    214      1.122        ad 	pool_cache_sethardlimit(mcl_cache, nmbclusters, mclpool_warnmsg, 60);
    215       1.42   thorpej 
    216      1.124      yamt 	mbstat_percpu = percpu_alloc(sizeof(struct mbstat_cpu));
    217      1.124      yamt 
    218       1.39   thorpej 	/*
    219       1.42   thorpej 	 * Set a low water mark for both mbufs and clusters.  This should
    220       1.42   thorpej 	 * help ensure that they can be allocated in a memory starvation
    221       1.42   thorpej 	 * situation.  This is important for e.g. diskless systems which
    222       1.42   thorpej 	 * must allocate mbufs in order for the pagedaemon to clean pages.
    223       1.37   thorpej 	 */
    224      1.122        ad 	pool_cache_setlowat(mb_cache, mblowat);
    225      1.122        ad 	pool_cache_setlowat(mcl_cache, mcllowat);
    226       1.64      matt 
    227       1.64      matt #ifdef MBUFTRACE
    228       1.64      matt 	{
    229       1.64      matt 		/*
    230       1.64      matt 		 * Attach the unknown mowners.
    231       1.64      matt 		 */
    232       1.64      matt 		int i;
    233       1.64      matt 		MOWNER_ATTACH(&revoked_mowner);
    234       1.64      matt 		for (i = sizeof(unknown_mowners)/sizeof(unknown_mowners[0]);
    235       1.64      matt 		     i-- > 0; )
    236       1.64      matt 			MOWNER_ATTACH(&unknown_mowners[i]);
    237       1.64      matt 	}
    238       1.64      matt #endif
    239       1.42   thorpej }
    240       1.42   thorpej 
    241      1.203      maxv static void
    242      1.203      maxv mb_drain(void *arg, int flags)
    243      1.203      maxv {
    244      1.203      maxv 	struct domain *dp;
    245      1.203      maxv 	const struct protosw *pr;
    246      1.203      maxv 	struct ifnet *ifp;
    247      1.203      maxv 	int s;
    248      1.203      maxv 
    249      1.203      maxv 	KERNEL_LOCK(1, NULL);
    250      1.203      maxv 	s = splvm();
    251      1.203      maxv 	DOMAIN_FOREACH(dp) {
    252      1.203      maxv 		for (pr = dp->dom_protosw;
    253      1.203      maxv 		     pr < dp->dom_protoswNPROTOSW; pr++)
    254      1.203      maxv 			if (pr->pr_drain)
    255      1.203      maxv 				(*pr->pr_drain)();
    256      1.203      maxv 	}
    257      1.203      maxv 	/* XXX we cannot use psref in H/W interrupt */
    258      1.203      maxv 	if (!cpu_intr_p()) {
    259      1.203      maxv 		int bound = curlwp_bind();
    260      1.203      maxv 		IFNET_READER_FOREACH(ifp) {
    261      1.203      maxv 			struct psref psref;
    262      1.203      maxv 
    263      1.203      maxv 			if_acquire(ifp, &psref);
    264      1.203      maxv 
    265      1.203      maxv 			if (ifp->if_drain)
    266      1.203      maxv 				(*ifp->if_drain)(ifp);
    267      1.203      maxv 
    268      1.203      maxv 			if_release(ifp, &psref);
    269      1.203      maxv 		}
    270      1.203      maxv 		curlwp_bindx(bound);
    271      1.203      maxv 	}
    272      1.203      maxv 	splx(s);
    273      1.203      maxv 	mbstat.m_drain++;
    274      1.203      maxv 	KERNEL_UNLOCK_ONE(NULL);
    275      1.203      maxv }
    276      1.203      maxv 
    277       1.75    atatat /*
    278      1.133     joerg  * sysctl helper routine for the kern.mbuf subtree.
    279      1.133     joerg  * nmbclusters, mblowat and mcllowat need range
    280       1.75    atatat  * checking and pool tweaking after being reset.
    281       1.75    atatat  */
    282       1.75    atatat static int
    283       1.75    atatat sysctl_kern_mbuf(SYSCTLFN_ARGS)
    284       1.42   thorpej {
    285       1.42   thorpej 	int error, newval;
    286       1.75    atatat 	struct sysctlnode node;
    287       1.42   thorpej 
    288       1.75    atatat 	node = *rnode;
    289       1.75    atatat 	node.sysctl_data = &newval;
    290       1.75    atatat 	switch (rnode->sysctl_num) {
    291       1.42   thorpej 	case MBUF_NMBCLUSTERS:
    292       1.42   thorpej 	case MBUF_MBLOWAT:
    293       1.42   thorpej 	case MBUF_MCLLOWAT:
    294       1.75    atatat 		newval = *(int*)rnode->sysctl_data;
    295       1.75    atatat 		break;
    296       1.75    atatat 	default:
    297      1.199      maxv 		return EOPNOTSUPP;
    298       1.75    atatat 	}
    299       1.75    atatat 
    300       1.75    atatat 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
    301       1.75    atatat 	if (error || newp == NULL)
    302      1.199      maxv 		return error;
    303       1.75    atatat 	if (newval < 0)
    304      1.199      maxv 		return EINVAL;
    305       1.75    atatat 
    306       1.75    atatat 	switch (node.sysctl_num) {
    307       1.75    atatat 	case MBUF_NMBCLUSTERS:
    308       1.75    atatat 		if (newval < nmbclusters)
    309      1.199      maxv 			return EINVAL;
    310      1.133     joerg 		if (newval > nmbclusters_limit())
    311      1.199      maxv 			return EINVAL;
    312       1.75    atatat 		nmbclusters = newval;
    313      1.122        ad 		pool_cache_sethardlimit(mcl_cache, nmbclusters,
    314      1.122        ad 		    mclpool_warnmsg, 60);
    315       1.75    atatat 		break;
    316       1.75    atatat 	case MBUF_MBLOWAT:
    317       1.75    atatat 		mblowat = newval;
    318      1.122        ad 		pool_cache_setlowat(mb_cache, mblowat);
    319       1.75    atatat 		break;
    320       1.75    atatat 	case MBUF_MCLLOWAT:
    321       1.76    atatat 		mcllowat = newval;
    322      1.122        ad 		pool_cache_setlowat(mcl_cache, mcllowat);
    323       1.75    atatat 		break;
    324       1.75    atatat 	}
    325       1.75    atatat 
    326      1.199      maxv 	return 0;
    327       1.75    atatat }
    328       1.75    atatat 
    329       1.64      matt #ifdef MBUFTRACE
    330      1.124      yamt static void
    331  1.215.2.1  christos mowner_convert_to_user_cb(void *v1, void *v2, struct cpu_info *ci)
    332      1.124      yamt {
    333      1.124      yamt 	struct mowner_counter *mc = v1;
    334      1.124      yamt 	struct mowner_user *mo_user = v2;
    335      1.124      yamt 	int i;
    336      1.124      yamt 
    337      1.124      yamt 	for (i = 0; i < MOWNER_COUNTER_NCOUNTERS; i++) {
    338      1.124      yamt 		mo_user->mo_counter[i] += mc->mc_counter[i];
    339      1.124      yamt 	}
    340      1.124      yamt }
    341      1.124      yamt 
    342      1.124      yamt static void
    343      1.124      yamt mowner_convert_to_user(struct mowner *mo, struct mowner_user *mo_user)
    344      1.124      yamt {
    345      1.124      yamt 
    346      1.124      yamt 	memset(mo_user, 0, sizeof(*mo_user));
    347      1.128      matt 	CTASSERT(sizeof(mo_user->mo_name) == sizeof(mo->mo_name));
    348      1.128      matt 	CTASSERT(sizeof(mo_user->mo_descr) == sizeof(mo->mo_descr));
    349      1.124      yamt 	memcpy(mo_user->mo_name, mo->mo_name, sizeof(mo->mo_name));
    350      1.124      yamt 	memcpy(mo_user->mo_descr, mo->mo_descr, sizeof(mo->mo_descr));
    351  1.215.2.1  christos 	percpu_foreach(mo->mo_counters, mowner_convert_to_user_cb, mo_user);
    352      1.124      yamt }
    353      1.124      yamt 
    354       1.75    atatat static int
    355       1.75    atatat sysctl_kern_mbuf_mowners(SYSCTLFN_ARGS)
    356       1.75    atatat {
    357       1.75    atatat 	struct mowner *mo;
    358       1.75    atatat 	size_t len = 0;
    359       1.75    atatat 	int error = 0;
    360       1.75    atatat 
    361       1.75    atatat 	if (namelen != 0)
    362      1.199      maxv 		return EINVAL;
    363       1.75    atatat 	if (newp != NULL)
    364      1.199      maxv 		return EPERM;
    365       1.75    atatat 
    366       1.75    atatat 	LIST_FOREACH(mo, &mowners, mo_link) {
    367      1.124      yamt 		struct mowner_user mo_user;
    368      1.124      yamt 
    369      1.124      yamt 		mowner_convert_to_user(mo, &mo_user);
    370      1.124      yamt 
    371       1.75    atatat 		if (oldp != NULL) {
    372      1.124      yamt 			if (*oldlenp - len < sizeof(mo_user)) {
    373       1.75    atatat 				error = ENOMEM;
    374       1.75    atatat 				break;
    375       1.75    atatat 			}
    376      1.124      yamt 			error = copyout(&mo_user, (char *)oldp + len,
    377      1.124      yamt 			    sizeof(mo_user));
    378       1.75    atatat 			if (error)
    379       1.75    atatat 				break;
    380       1.64      matt 		}
    381      1.124      yamt 		len += sizeof(mo_user);
    382       1.75    atatat 	}
    383       1.75    atatat 
    384       1.75    atatat 	if (error == 0)
    385       1.64      matt 		*oldlenp = len;
    386       1.75    atatat 
    387      1.199      maxv 	return error;
    388       1.75    atatat }
    389       1.75    atatat #endif /* MBUFTRACE */
    390       1.75    atatat 
    391      1.205      maxv void
    392      1.205      maxv mbstat_type_add(int type, int diff)
    393      1.205      maxv {
    394      1.205      maxv 	struct mbstat_cpu *mb;
    395      1.205      maxv 	int s;
    396      1.205      maxv 
    397      1.205      maxv 	s = splvm();
    398      1.205      maxv 	mb = percpu_getref(mbstat_percpu);
    399      1.205      maxv 	mb->m_mtypes[type] += diff;
    400      1.205      maxv 	percpu_putref(mbstat_percpu);
    401      1.205      maxv 	splx(s);
    402      1.205      maxv }
    403      1.205      maxv 
    404      1.124      yamt static void
    405      1.124      yamt mbstat_conver_to_user_cb(void *v1, void *v2, struct cpu_info *ci)
    406      1.124      yamt {
    407      1.124      yamt 	struct mbstat_cpu *mbsc = v1;
    408      1.124      yamt 	struct mbstat *mbs = v2;
    409      1.124      yamt 	int i;
    410      1.124      yamt 
    411      1.124      yamt 	for (i = 0; i < __arraycount(mbs->m_mtypes); i++) {
    412      1.124      yamt 		mbs->m_mtypes[i] += mbsc->m_mtypes[i];
    413      1.124      yamt 	}
    414      1.124      yamt }
    415      1.124      yamt 
    416      1.124      yamt static void
    417      1.124      yamt mbstat_convert_to_user(struct mbstat *mbs)
    418      1.124      yamt {
    419      1.124      yamt 
    420      1.124      yamt 	memset(mbs, 0, sizeof(*mbs));
    421      1.124      yamt 	mbs->m_drain = mbstat.m_drain;
    422      1.124      yamt 	percpu_foreach(mbstat_percpu, mbstat_conver_to_user_cb, mbs);
    423      1.124      yamt }
    424      1.124      yamt 
    425      1.124      yamt static int
    426      1.124      yamt sysctl_kern_mbuf_stats(SYSCTLFN_ARGS)
    427      1.124      yamt {
    428      1.124      yamt 	struct sysctlnode node;
    429      1.124      yamt 	struct mbstat mbs;
    430      1.124      yamt 
    431      1.124      yamt 	mbstat_convert_to_user(&mbs);
    432      1.124      yamt 	node = *rnode;
    433      1.124      yamt 	node.sysctl_data = &mbs;
    434      1.124      yamt 	node.sysctl_size = sizeof(mbs);
    435      1.124      yamt 	return sysctl_lookup(SYSCTLFN_CALL(&node));
    436      1.124      yamt }
    437      1.124      yamt 
    438      1.129     pooka static void
    439      1.131    cegger sysctl_kern_mbuf_setup(void)
    440       1.75    atatat {
    441       1.75    atatat 
    442      1.129     pooka 	KASSERT(mbuf_sysctllog == NULL);
    443      1.129     pooka 	sysctl_createv(&mbuf_sysctllog, 0, NULL, NULL,
    444       1.80    atatat 		       CTLFLAG_PERMANENT,
    445       1.82    atatat 		       CTLTYPE_NODE, "mbuf",
    446       1.82    atatat 		       SYSCTL_DESCR("mbuf control variables"),
    447       1.75    atatat 		       NULL, 0, NULL, 0,
    448       1.75    atatat 		       CTL_KERN, KERN_MBUF, CTL_EOL);
    449       1.75    atatat 
    450      1.129     pooka 	sysctl_createv(&mbuf_sysctllog, 0, NULL, NULL,
    451       1.80    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_IMMEDIATE,
    452       1.82    atatat 		       CTLTYPE_INT, "msize",
    453       1.82    atatat 		       SYSCTL_DESCR("mbuf base size"),
    454       1.75    atatat 		       NULL, msize, NULL, 0,
    455       1.75    atatat 		       CTL_KERN, KERN_MBUF, MBUF_MSIZE, CTL_EOL);
    456      1.129     pooka 	sysctl_createv(&mbuf_sysctllog, 0, NULL, NULL,
    457       1.80    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_IMMEDIATE,
    458       1.82    atatat 		       CTLTYPE_INT, "mclbytes",
    459       1.82    atatat 		       SYSCTL_DESCR("mbuf cluster size"),
    460       1.75    atatat 		       NULL, mclbytes, NULL, 0,
    461       1.75    atatat 		       CTL_KERN, KERN_MBUF, MBUF_MCLBYTES, CTL_EOL);
    462      1.129     pooka 	sysctl_createv(&mbuf_sysctllog, 0, NULL, NULL,
    463       1.80    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
    464       1.82    atatat 		       CTLTYPE_INT, "nmbclusters",
    465       1.82    atatat 		       SYSCTL_DESCR("Limit on the number of mbuf clusters"),
    466       1.75    atatat 		       sysctl_kern_mbuf, 0, &nmbclusters, 0,
    467       1.75    atatat 		       CTL_KERN, KERN_MBUF, MBUF_NMBCLUSTERS, CTL_EOL);
    468      1.129     pooka 	sysctl_createv(&mbuf_sysctllog, 0, NULL, NULL,
    469       1.80    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
    470       1.82    atatat 		       CTLTYPE_INT, "mblowat",
    471       1.82    atatat 		       SYSCTL_DESCR("mbuf low water mark"),
    472       1.75    atatat 		       sysctl_kern_mbuf, 0, &mblowat, 0,
    473       1.75    atatat 		       CTL_KERN, KERN_MBUF, MBUF_MBLOWAT, CTL_EOL);
    474      1.129     pooka 	sysctl_createv(&mbuf_sysctllog, 0, NULL, NULL,
    475       1.80    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
    476       1.82    atatat 		       CTLTYPE_INT, "mcllowat",
    477       1.82    atatat 		       SYSCTL_DESCR("mbuf cluster low water mark"),
    478       1.75    atatat 		       sysctl_kern_mbuf, 0, &mcllowat, 0,
    479       1.75    atatat 		       CTL_KERN, KERN_MBUF, MBUF_MCLLOWAT, CTL_EOL);
    480      1.129     pooka 	sysctl_createv(&mbuf_sysctllog, 0, NULL, NULL,
    481       1.80    atatat 		       CTLFLAG_PERMANENT,
    482       1.82    atatat 		       CTLTYPE_STRUCT, "stats",
    483       1.82    atatat 		       SYSCTL_DESCR("mbuf allocation statistics"),
    484      1.124      yamt 		       sysctl_kern_mbuf_stats, 0, NULL, 0,
    485       1.75    atatat 		       CTL_KERN, KERN_MBUF, MBUF_STATS, CTL_EOL);
    486       1.75    atatat #ifdef MBUFTRACE
    487      1.129     pooka 	sysctl_createv(&mbuf_sysctllog, 0, NULL, NULL,
    488       1.80    atatat 		       CTLFLAG_PERMANENT,
    489       1.82    atatat 		       CTLTYPE_STRUCT, "mowners",
    490       1.82    atatat 		       SYSCTL_DESCR("Information about mbuf owners"),
    491       1.75    atatat 		       sysctl_kern_mbuf_mowners, 0, NULL, 0,
    492       1.75    atatat 		       CTL_KERN, KERN_MBUF, MBUF_MOWNERS, CTL_EOL);
    493      1.199      maxv #endif
    494       1.28   thorpej }
    495       1.28   thorpej 
    496       1.65   thorpej static int
    497      1.116      yamt mb_ctor(void *arg, void *object, int flags)
    498       1.65   thorpej {
    499       1.65   thorpej 	struct mbuf *m = object;
    500       1.65   thorpej 
    501       1.65   thorpej #ifdef POOL_VTOPHYS
    502       1.65   thorpej 	m->m_paddr = POOL_VTOPHYS(m);
    503       1.65   thorpej #else
    504       1.65   thorpej 	m->m_paddr = M_PADDR_INVALID;
    505       1.65   thorpej #endif
    506      1.199      maxv 	return 0;
    507        1.1       cgd }
    508        1.1       cgd 
    509      1.150  christos /*
    510      1.150  christos  * Add mbuf to the end of a chain
    511      1.150  christos  */
    512      1.150  christos struct mbuf *
    513      1.179      maxv m_add(struct mbuf *c, struct mbuf *m)
    514      1.179      maxv {
    515      1.150  christos 	struct mbuf *n;
    516      1.150  christos 
    517      1.150  christos 	if (c == NULL)
    518      1.150  christos 		return m;
    519      1.150  christos 
    520      1.150  christos 	for (n = c; n->m_next != NULL; n = n->m_next)
    521      1.150  christos 		continue;
    522      1.150  christos 	n->m_next = m;
    523      1.150  christos 	return c;
    524      1.150  christos }
    525      1.150  christos 
    526        1.1       cgd struct mbuf *
    527      1.212      maxv m_get(int how, int type)
    528        1.1       cgd {
    529       1.27      matt 	struct mbuf *m;
    530        1.1       cgd 
    531      1.142    dyoung 	KASSERT(type != MT_FREE);
    532      1.142    dyoung 
    533      1.124      yamt 	m = pool_cache_get(mb_cache,
    534      1.212      maxv 	    how == M_WAIT ? PR_WAITOK|PR_LIMITFAIL : PR_NOWAIT);
    535      1.124      yamt 	if (m == NULL)
    536      1.124      yamt 		return NULL;
    537      1.124      yamt 
    538      1.124      yamt 	mbstat_type_add(type, 1);
    539      1.164  knakahar 
    540      1.184      maxv 	mowner_init(m, type);
    541      1.184      maxv 	m->m_ext_ref = m; /* default */
    542      1.184      maxv 	m->m_type = type;
    543      1.184      maxv 	m->m_len = 0;
    544      1.184      maxv 	m->m_next = NULL;
    545      1.184      maxv 	m->m_nextpkt = NULL; /* default */
    546      1.184      maxv 	m->m_data = m->m_dat;
    547      1.184      maxv 	m->m_flags = 0; /* default */
    548      1.124      yamt 
    549      1.124      yamt 	return m;
    550        1.1       cgd }
    551        1.1       cgd 
    552        1.1       cgd struct mbuf *
    553      1.212      maxv m_gethdr(int how, int type)
    554        1.1       cgd {
    555       1.27      matt 	struct mbuf *m;
    556        1.1       cgd 
    557      1.212      maxv 	m = m_get(how, type);
    558      1.124      yamt 	if (m == NULL)
    559      1.124      yamt 		return NULL;
    560      1.124      yamt 
    561      1.184      maxv 	m->m_data = m->m_pktdat;
    562      1.184      maxv 	m->m_flags = M_PKTHDR;
    563      1.184      maxv 
    564      1.184      maxv 	m_reset_rcvif(m);
    565      1.184      maxv 	m->m_pkthdr.len = 0;
    566      1.184      maxv 	m->m_pkthdr.csum_flags = 0;
    567      1.184      maxv 	m->m_pkthdr.csum_data = 0;
    568  1.215.2.1  christos 	m->m_pkthdr.segsz = 0;
    569  1.215.2.1  christos 	m->m_pkthdr.ether_vtag = 0;
    570  1.215.2.1  christos 	m->m_pkthdr.pkthdr_flags = 0;
    571      1.184      maxv 	SLIST_INIT(&m->m_pkthdr.tags);
    572      1.184      maxv 
    573      1.184      maxv 	m->m_pkthdr.pattr_class = NULL;
    574      1.184      maxv 	m->m_pkthdr.pattr_af = AF_UNSPEC;
    575      1.184      maxv 	m->m_pkthdr.pattr_hdr = NULL;
    576      1.124      yamt 
    577      1.124      yamt 	return m;
    578        1.1       cgd }
    579        1.1       cgd 
    580       1.64      matt void
    581      1.212      maxv m_clget(struct mbuf *m, int how)
    582       1.64      matt {
    583      1.206      maxv 	m->m_ext_storage.ext_buf = (char *)pool_cache_get_paddr(mcl_cache,
    584      1.212      maxv 	    how == M_WAIT ? (PR_WAITOK|PR_LIMITFAIL) : PR_NOWAIT,
    585      1.206      maxv 	    &m->m_ext_storage.ext_paddr);
    586       1.71    simonb 
    587      1.206      maxv 	if (m->m_ext_storage.ext_buf == NULL)
    588      1.206      maxv 		return;
    589      1.206      maxv 
    590      1.206      maxv 	MCLINITREFERENCE(m);
    591      1.206      maxv 	m->m_data = m->m_ext.ext_buf;
    592      1.206      maxv 	m->m_flags = (m->m_flags & ~M_EXTCOPYFLAGS) |
    593      1.206      maxv 	    M_EXT|M_EXT_CLUSTER|M_EXT_RW;
    594      1.206      maxv 	m->m_ext.ext_size = MCLBYTES;
    595      1.206      maxv 	m->m_ext.ext_free = NULL;
    596      1.207      maxv 	m->m_ext.ext_arg = NULL;
    597      1.206      maxv 	/* ext_paddr initialized above */
    598      1.206      maxv 
    599      1.206      maxv 	mowner_ref(m, M_EXT|M_EXT_CLUSTER);
    600       1.64      matt }
    601       1.64      matt 
    602  1.215.2.1  christos struct mbuf *
    603  1.215.2.1  christos m_getcl(int how, int type, int flags)
    604  1.215.2.1  christos {
    605  1.215.2.1  christos 	struct mbuf *mp;
    606  1.215.2.1  christos 
    607  1.215.2.1  christos 	if ((flags & M_PKTHDR) != 0)
    608  1.215.2.1  christos 		mp = m_gethdr(how, type);
    609  1.215.2.1  christos 	else
    610  1.215.2.1  christos 		mp = m_get(how, type);
    611  1.215.2.1  christos 
    612  1.215.2.1  christos 	if (mp == NULL)
    613  1.215.2.1  christos 		return NULL;
    614  1.215.2.1  christos 
    615  1.215.2.1  christos 	MCLGET(mp, how);
    616  1.215.2.1  christos 	if ((mp->m_flags & M_EXT) != 0)
    617  1.215.2.1  christos 		return mp;
    618  1.215.2.1  christos 
    619  1.215.2.1  christos 	m_free(mp);
    620  1.215.2.1  christos 	return NULL;
    621  1.215.2.1  christos }
    622  1.215.2.1  christos 
    623        1.1       cgd /*
    624      1.194      maxv  * Utility function for M_PREPEND. Do *NOT* use it directly.
    625        1.1       cgd  */
    626        1.1       cgd struct mbuf *
    627       1.62   thorpej m_prepend(struct mbuf *m, int len, int how)
    628        1.1       cgd {
    629        1.1       cgd 	struct mbuf *mn;
    630        1.1       cgd 
    631      1.180      maxv 	if (__predict_false(len > MHLEN)) {
    632      1.180      maxv 		panic("%s: len > MHLEN", __func__);
    633      1.180      maxv 	}
    634      1.180      maxv 
    635      1.156  christos 	KASSERT(len != M_COPYALL);
    636      1.153  christos 	mn = m_get(how, m->m_type);
    637      1.143    plunky 	if (mn == NULL) {
    638        1.1       cgd 		m_freem(m);
    639      1.179      maxv 		return NULL;
    640        1.1       cgd 	}
    641      1.178      maxv 
    642        1.1       cgd 	if (m->m_flags & M_PKTHDR) {
    643  1.215.2.1  christos 		m_move_pkthdr(mn, m);
    644       1.64      matt 	} else {
    645       1.64      matt 		MCLAIM(mn, m->m_owner);
    646        1.1       cgd 	}
    647        1.1       cgd 	mn->m_next = m;
    648        1.1       cgd 	m = mn;
    649      1.178      maxv 
    650      1.178      maxv 	if (m->m_flags & M_PKTHDR) {
    651      1.178      maxv 		if (len < MHLEN)
    652  1.215.2.1  christos 			m_align(m, len);
    653      1.178      maxv 	} else {
    654      1.178      maxv 		if (len < MLEN)
    655  1.215.2.1  christos 			m_align(m, len);
    656      1.178      maxv 	}
    657      1.178      maxv 
    658        1.1       cgd 	m->m_len = len;
    659      1.179      maxv 	return m;
    660        1.1       cgd }
    661        1.1       cgd 
    662        1.1       cgd struct mbuf *
    663      1.195      maxv m_copym(struct mbuf *m, int off, int len, int wait)
    664        1.1       cgd {
    665      1.195      maxv 	/* Shallow copy on M_EXT. */
    666      1.195      maxv 	return m_copy_internal(m, off, len, wait, false);
    667       1.44    itojun }
    668       1.44    itojun 
    669       1.44    itojun struct mbuf *
    670      1.195      maxv m_dup(struct mbuf *m, int off, int len, int wait)
    671       1.44    itojun {
    672      1.195      maxv 	/* Deep copy. */
    673      1.195      maxv 	return m_copy_internal(m, off, len, wait, true);
    674       1.44    itojun }
    675       1.44    itojun 
    676      1.154  christos static inline int
    677      1.179      maxv m_copylen(int len, int copylen)
    678      1.179      maxv {
    679  1.215.2.1  christos 	return (len == M_COPYALL) ? copylen : uimin(len, copylen);
    680      1.154  christos }
    681      1.154  christos 
    682       1.44    itojun static struct mbuf *
    683      1.195      maxv m_copy_internal(struct mbuf *m, int off0, int len, int wait, bool deep)
    684       1.44    itojun {
    685       1.27      matt 	struct mbuf *n, **np;
    686       1.27      matt 	int off = off0;
    687        1.1       cgd 	struct mbuf *top;
    688        1.1       cgd 	int copyhdr = 0;
    689        1.1       cgd 
    690      1.154  christos 	if (off < 0 || (len != M_COPYALL && len < 0))
    691      1.196      maxv 		panic("%s: off %d, len %d", __func__, off, len);
    692        1.1       cgd 	if (off == 0 && m->m_flags & M_PKTHDR)
    693        1.1       cgd 		copyhdr = 1;
    694        1.1       cgd 	while (off > 0) {
    695      1.179      maxv 		if (m == NULL)
    696      1.199      maxv 			panic("%s: m == NULL, off %d", __func__, off);
    697        1.1       cgd 		if (off < m->m_len)
    698        1.1       cgd 			break;
    699        1.1       cgd 		off -= m->m_len;
    700        1.1       cgd 		m = m->m_next;
    701        1.1       cgd 	}
    702      1.179      maxv 
    703        1.1       cgd 	np = &top;
    704      1.179      maxv 	top = NULL;
    705      1.155     skrll 	while (len == M_COPYALL || len > 0) {
    706      1.179      maxv 		if (m == NULL) {
    707        1.1       cgd 			if (len != M_COPYALL)
    708      1.196      maxv 				panic("%s: m == NULL, len %d [!COPYALL]",
    709      1.196      maxv 				    __func__, len);
    710        1.1       cgd 			break;
    711        1.1       cgd 		}
    712      1.179      maxv 
    713      1.153  christos 		n = m_get(wait, m->m_type);
    714        1.1       cgd 		*np = n;
    715      1.179      maxv 		if (n == NULL)
    716        1.1       cgd 			goto nospace;
    717       1.64      matt 		MCLAIM(n, m->m_owner);
    718      1.179      maxv 
    719        1.1       cgd 		if (copyhdr) {
    720  1.215.2.1  christos 			m_copy_pkthdr(n, m);
    721        1.1       cgd 			if (len == M_COPYALL)
    722        1.1       cgd 				n->m_pkthdr.len -= off0;
    723        1.1       cgd 			else
    724        1.1       cgd 				n->m_pkthdr.len = len;
    725        1.1       cgd 			copyhdr = 0;
    726        1.1       cgd 		}
    727      1.154  christos 		n->m_len = m_copylen(len, m->m_len - off);
    728      1.179      maxv 
    729        1.1       cgd 		if (m->m_flags & M_EXT) {
    730       1.44    itojun 			if (!deep) {
    731       1.44    itojun 				n->m_data = m->m_data + off;
    732       1.44    itojun 				MCLADDREFERENCE(m, n);
    733       1.44    itojun 			} else {
    734       1.48    itojun 				/*
    735      1.181      maxv 				 * We don't care if MCLGET fails. n->m_len is
    736      1.181      maxv 				 * recomputed and handles that.
    737       1.48    itojun 				 */
    738       1.44    itojun 				MCLGET(n, wait);
    739      1.161   mlelstv 				n->m_len = 0;
    740       1.50    itojun 				n->m_len = M_TRAILINGSPACE(n);
    741      1.154  christos 				n->m_len = m_copylen(len, n->m_len);
    742  1.215.2.1  christos 				n->m_len = uimin(n->m_len, m->m_len - off);
    743      1.119  christos 				memcpy(mtod(n, void *), mtod(m, char *) + off,
    744       1.44    itojun 				    (unsigned)n->m_len);
    745       1.44    itojun 			}
    746      1.179      maxv 		} else {
    747      1.119  christos 			memcpy(mtod(n, void *), mtod(m, char *) + off,
    748        1.1       cgd 			    (unsigned)n->m_len);
    749      1.179      maxv 		}
    750      1.179      maxv 
    751        1.1       cgd 		if (len != M_COPYALL)
    752        1.1       cgd 			len -= n->m_len;
    753       1.50    itojun 		off += n->m_len;
    754      1.199      maxv 
    755      1.199      maxv 		KASSERT(off <= m->m_len);
    756      1.199      maxv 
    757       1.50    itojun 		if (off == m->m_len) {
    758       1.50    itojun 			m = m->m_next;
    759       1.50    itojun 			off = 0;
    760       1.50    itojun 		}
    761        1.1       cgd 		np = &n->m_next;
    762        1.1       cgd 	}
    763      1.179      maxv 
    764      1.179      maxv 	return top;
    765      1.179      maxv 
    766        1.1       cgd nospace:
    767        1.1       cgd 	m_freem(top);
    768      1.179      maxv 	return NULL;
    769        1.1       cgd }
    770        1.1       cgd 
    771        1.1       cgd /*
    772       1.18   thorpej  * Copy an entire packet, including header (which must be present).
    773      1.181      maxv  * An optimization of the common case 'm_copym(m, 0, M_COPYALL, how)'.
    774       1.18   thorpej  */
    775       1.18   thorpej struct mbuf *
    776       1.62   thorpej m_copypacket(struct mbuf *m, int how)
    777       1.18   thorpej {
    778       1.18   thorpej 	struct mbuf *top, *n, *o;
    779       1.18   thorpej 
    780      1.198      maxv 	if (__predict_false((m->m_flags & M_PKTHDR) == 0)) {
    781      1.198      maxv 		panic("%s: no header (m = %p)", __func__, m);
    782      1.198      maxv 	}
    783      1.198      maxv 
    784      1.153  christos 	n = m_get(how, m->m_type);
    785       1.18   thorpej 	top = n;
    786       1.18   thorpej 	if (!n)
    787       1.18   thorpej 		goto nospace;
    788       1.18   thorpej 
    789       1.64      matt 	MCLAIM(n, m->m_owner);
    790  1.215.2.1  christos 	m_copy_pkthdr(n, m);
    791       1.18   thorpej 	n->m_len = m->m_len;
    792       1.18   thorpej 	if (m->m_flags & M_EXT) {
    793       1.18   thorpej 		n->m_data = m->m_data;
    794       1.18   thorpej 		MCLADDREFERENCE(m, n);
    795       1.18   thorpej 	} else {
    796       1.30     perry 		memcpy(mtod(n, char *), mtod(m, char *), n->m_len);
    797       1.18   thorpej 	}
    798       1.18   thorpej 
    799       1.18   thorpej 	m = m->m_next;
    800       1.18   thorpej 	while (m) {
    801      1.153  christos 		o = m_get(how, m->m_type);
    802       1.18   thorpej 		if (!o)
    803       1.18   thorpej 			goto nospace;
    804       1.18   thorpej 
    805       1.64      matt 		MCLAIM(o, m->m_owner);
    806       1.18   thorpej 		n->m_next = o;
    807       1.18   thorpej 		n = n->m_next;
    808       1.18   thorpej 
    809       1.18   thorpej 		n->m_len = m->m_len;
    810       1.18   thorpej 		if (m->m_flags & M_EXT) {
    811       1.18   thorpej 			n->m_data = m->m_data;
    812       1.18   thorpej 			MCLADDREFERENCE(m, n);
    813       1.18   thorpej 		} else {
    814       1.30     perry 			memcpy(mtod(n, char *), mtod(m, char *), n->m_len);
    815       1.18   thorpej 		}
    816       1.18   thorpej 
    817       1.18   thorpej 		m = m->m_next;
    818       1.18   thorpej 	}
    819       1.18   thorpej 	return top;
    820      1.181      maxv 
    821       1.18   thorpej nospace:
    822       1.18   thorpej 	m_freem(top);
    823       1.71    simonb 	return NULL;
    824       1.18   thorpej }
    825       1.18   thorpej 
    826       1.14  christos void
    827      1.200      maxv m_copydata(struct mbuf *m, int off, int len, void *cp)
    828        1.1       cgd {
    829      1.200      maxv 	unsigned int count;
    830      1.179      maxv 	struct mbuf *m0 = m;
    831      1.179      maxv 	int len0 = len;
    832      1.179      maxv 	int off0 = off;
    833      1.200      maxv 	void *cp0 = cp;
    834        1.1       cgd 
    835      1.156  christos 	KASSERT(len != M_COPYALL);
    836        1.1       cgd 	if (off < 0 || len < 0)
    837       1.90      matt 		panic("m_copydata: off %d, len %d", off, len);
    838        1.1       cgd 	while (off > 0) {
    839       1.94      tron 		if (m == NULL)
    840      1.151      matt 			panic("m_copydata(%p,%d,%d,%p): m=NULL, off=%d (%d)",
    841      1.200      maxv 			    m0, len0, off0, cp0, off, off0 - off);
    842        1.1       cgd 		if (off < m->m_len)
    843        1.1       cgd 			break;
    844        1.1       cgd 		off -= m->m_len;
    845        1.1       cgd 		m = m->m_next;
    846        1.1       cgd 	}
    847        1.1       cgd 	while (len > 0) {
    848       1.94      tron 		if (m == NULL)
    849      1.151      matt 			panic("m_copydata(%p,%d,%d,%p): "
    850      1.151      matt 			    "m=NULL, off=%d (%d), len=%d (%d)",
    851      1.200      maxv 			    m0, len0, off0, cp0,
    852      1.151      matt 			    off, off0 - off, len, len0 - len);
    853  1.215.2.1  christos 		count = uimin(m->m_len - off, len);
    854      1.119  christos 		memcpy(cp, mtod(m, char *) + off, count);
    855        1.1       cgd 		len -= count;
    856      1.119  christos 		cp = (char *)cp + count;
    857        1.1       cgd 		off = 0;
    858        1.1       cgd 		m = m->m_next;
    859        1.1       cgd 	}
    860        1.1       cgd }
    861        1.1       cgd 
    862        1.1       cgd /*
    863        1.1       cgd  * Concatenate mbuf chain n to m.
    864       1.72    itojun  * n might be copied into m (when n->m_len is small), therefore data portion of
    865       1.72    itojun  * n could be copied into an mbuf of different mbuf type.
    866        1.1       cgd  * Any m_pkthdr is not updated.
    867        1.1       cgd  */
    868       1.14  christos void
    869       1.62   thorpej m_cat(struct mbuf *m, struct mbuf *n)
    870        1.1       cgd {
    871       1.73      yamt 
    872        1.1       cgd 	while (m->m_next)
    873        1.1       cgd 		m = m->m_next;
    874        1.1       cgd 	while (n) {
    875       1.77    itojun 		if (M_READONLY(m) || n->m_len > M_TRAILINGSPACE(m)) {
    876        1.1       cgd 			/* just join the two chains */
    877        1.1       cgd 			m->m_next = n;
    878        1.1       cgd 			return;
    879        1.1       cgd 		}
    880        1.1       cgd 		/* splat the data from one into the other */
    881      1.119  christos 		memcpy(mtod(m, char *) + m->m_len, mtod(n, void *),
    882        1.1       cgd 		    (u_int)n->m_len);
    883        1.1       cgd 		m->m_len += n->m_len;
    884        1.1       cgd 		n = m_free(n);
    885        1.1       cgd 	}
    886        1.1       cgd }
    887        1.1       cgd 
    888       1.11   mycroft void
    889       1.62   thorpej m_adj(struct mbuf *mp, int req_len)
    890        1.1       cgd {
    891       1.27      matt 	int len = req_len;
    892       1.27      matt 	struct mbuf *m;
    893       1.27      matt 	int count;
    894        1.1       cgd 
    895        1.1       cgd 	if ((m = mp) == NULL)
    896        1.1       cgd 		return;
    897        1.1       cgd 	if (len >= 0) {
    898        1.1       cgd 		/*
    899        1.1       cgd 		 * Trim from head.
    900        1.1       cgd 		 */
    901        1.1       cgd 		while (m != NULL && len > 0) {
    902        1.1       cgd 			if (m->m_len <= len) {
    903        1.1       cgd 				len -= m->m_len;
    904        1.1       cgd 				m->m_len = 0;
    905        1.1       cgd 				m = m->m_next;
    906        1.1       cgd 			} else {
    907        1.1       cgd 				m->m_len -= len;
    908        1.1       cgd 				m->m_data += len;
    909        1.1       cgd 				len = 0;
    910        1.1       cgd 			}
    911        1.1       cgd 		}
    912        1.1       cgd 		if (mp->m_flags & M_PKTHDR)
    913      1.181      maxv 			mp->m_pkthdr.len -= (req_len - len);
    914        1.1       cgd 	} else {
    915        1.1       cgd 		/*
    916        1.1       cgd 		 * Trim from tail.  Scan the mbuf chain,
    917        1.1       cgd 		 * calculating its length and finding the last mbuf.
    918        1.1       cgd 		 * If the adjustment only affects this mbuf, then just
    919        1.1       cgd 		 * adjust and return.  Otherwise, rescan and truncate
    920        1.1       cgd 		 * after the remaining size.
    921        1.1       cgd 		 */
    922        1.1       cgd 		len = -len;
    923        1.1       cgd 		count = 0;
    924        1.1       cgd 		for (;;) {
    925        1.1       cgd 			count += m->m_len;
    926      1.181      maxv 			if (m->m_next == NULL)
    927        1.1       cgd 				break;
    928        1.1       cgd 			m = m->m_next;
    929        1.1       cgd 		}
    930        1.1       cgd 		if (m->m_len >= len) {
    931        1.1       cgd 			m->m_len -= len;
    932        1.8   deraadt 			if (mp->m_flags & M_PKTHDR)
    933        1.8   deraadt 				mp->m_pkthdr.len -= len;
    934        1.1       cgd 			return;
    935        1.1       cgd 		}
    936      1.181      maxv 
    937        1.1       cgd 		count -= len;
    938        1.1       cgd 		if (count < 0)
    939        1.1       cgd 			count = 0;
    940      1.181      maxv 
    941        1.1       cgd 		/*
    942        1.1       cgd 		 * Correct length for chain is "count".
    943        1.1       cgd 		 * Find the mbuf with last data, adjust its length,
    944        1.1       cgd 		 * and toss data from remaining mbufs on chain.
    945        1.1       cgd 		 */
    946        1.1       cgd 		m = mp;
    947        1.1       cgd 		if (m->m_flags & M_PKTHDR)
    948        1.1       cgd 			m->m_pkthdr.len = count;
    949        1.1       cgd 		for (; m; m = m->m_next) {
    950        1.1       cgd 			if (m->m_len >= count) {
    951        1.1       cgd 				m->m_len = count;
    952        1.1       cgd 				break;
    953        1.1       cgd 			}
    954        1.1       cgd 			count -= m->m_len;
    955        1.1       cgd 		}
    956      1.181      maxv 		if (m) {
    957      1.110  christos 			while (m->m_next)
    958      1.110  christos 				(m = m->m_next)->m_len = 0;
    959      1.181      maxv 		}
    960        1.1       cgd 	}
    961        1.1       cgd }
    962        1.1       cgd 
    963        1.1       cgd /*
    964      1.148     rmind  * m_ensure_contig: rearrange an mbuf chain that given length of bytes
    965      1.148     rmind  * would be contiguous and in the data area of an mbuf (therefore, mtod()
    966      1.148     rmind  * would work for a structure of given length).
    967      1.148     rmind  *
    968      1.148     rmind  * => On success, returns true and the resulting mbuf chain; false otherwise.
    969      1.148     rmind  * => The mbuf chain may change, but is always preserved valid.
    970        1.1       cgd  */
    971      1.148     rmind bool
    972      1.148     rmind m_ensure_contig(struct mbuf **m0, int len)
    973        1.1       cgd {
    974      1.148     rmind 	struct mbuf *n = *m0, *m;
    975      1.148     rmind 	size_t count, space;
    976        1.1       cgd 
    977      1.156  christos 	KASSERT(len != M_COPYALL);
    978        1.1       cgd 	/*
    979        1.1       cgd 	 * If first mbuf has no cluster, and has room for len bytes
    980        1.1       cgd 	 * without shifting current data, pullup into it,
    981        1.1       cgd 	 * otherwise allocate a new mbuf to prepend to the chain.
    982        1.1       cgd 	 */
    983        1.1       cgd 	if ((n->m_flags & M_EXT) == 0 &&
    984        1.1       cgd 	    n->m_data + len < &n->m_dat[MLEN] && n->m_next) {
    985      1.148     rmind 		if (n->m_len >= len) {
    986      1.148     rmind 			return true;
    987      1.148     rmind 		}
    988        1.1       cgd 		m = n;
    989        1.1       cgd 		n = n->m_next;
    990        1.1       cgd 		len -= m->m_len;
    991        1.1       cgd 	} else {
    992      1.148     rmind 		if (len > MHLEN) {
    993      1.148     rmind 			return false;
    994      1.148     rmind 		}
    995      1.153  christos 		m = m_get(M_DONTWAIT, n->m_type);
    996      1.148     rmind 		if (m == NULL) {
    997      1.148     rmind 			return false;
    998      1.148     rmind 		}
    999       1.64      matt 		MCLAIM(m, n->m_owner);
   1000        1.1       cgd 		if (n->m_flags & M_PKTHDR) {
   1001  1.215.2.1  christos 			m_move_pkthdr(m, n);
   1002        1.1       cgd 		}
   1003        1.1       cgd 	}
   1004        1.1       cgd 	space = &m->m_dat[MLEN] - (m->m_data + m->m_len);
   1005        1.1       cgd 	do {
   1006      1.148     rmind 		count = MIN(MIN(MAX(len, max_protohdr), space), n->m_len);
   1007      1.119  christos 		memcpy(mtod(m, char *) + m->m_len, mtod(n, void *),
   1008        1.1       cgd 		  (unsigned)count);
   1009        1.1       cgd 		len -= count;
   1010        1.1       cgd 		m->m_len += count;
   1011        1.1       cgd 		n->m_len -= count;
   1012        1.1       cgd 		space -= count;
   1013        1.1       cgd 		if (n->m_len)
   1014        1.1       cgd 			n->m_data += count;
   1015        1.1       cgd 		else
   1016        1.1       cgd 			n = m_free(n);
   1017        1.1       cgd 	} while (len > 0 && n);
   1018      1.148     rmind 
   1019      1.148     rmind 	m->m_next = n;
   1020      1.148     rmind 	*m0 = m;
   1021      1.148     rmind 
   1022      1.148     rmind 	return len <= 0;
   1023      1.148     rmind }
   1024      1.148     rmind 
   1025      1.148     rmind /*
   1026      1.148     rmind  * m_pullup: same as m_ensure_contig(), but destroys mbuf chain on error.
   1027      1.148     rmind  */
   1028      1.148     rmind struct mbuf *
   1029      1.148     rmind m_pullup(struct mbuf *n, int len)
   1030      1.148     rmind {
   1031      1.148     rmind 	struct mbuf *m = n;
   1032      1.148     rmind 
   1033      1.156  christos 	KASSERT(len != M_COPYALL);
   1034      1.148     rmind 	if (!m_ensure_contig(&m, len)) {
   1035      1.148     rmind 		KASSERT(m != NULL);
   1036      1.148     rmind 		m_freem(m);
   1037      1.148     rmind 		m = NULL;
   1038        1.1       cgd 	}
   1039      1.148     rmind 	return m;
   1040       1.60   thorpej }
   1041       1.60   thorpej 
   1042       1.60   thorpej /*
   1043  1.215.2.1  christos  * ensure that [off, off + len) is contiguous on the mbuf chain "m".
   1044  1.215.2.1  christos  * packet chain before "off" is kept untouched.
   1045  1.215.2.1  christos  * if offp == NULL, the target will start at <retval, 0> on resulting chain.
   1046  1.215.2.1  christos  * if offp != NULL, the target will start at <retval, *offp> on resulting chain.
   1047  1.215.2.1  christos  *
   1048  1.215.2.1  christos  * on error return (NULL return value), original "m" will be freed.
   1049  1.215.2.1  christos  *
   1050  1.215.2.1  christos  * XXX M_TRAILINGSPACE/M_LEADINGSPACE on shared cluster (sharedcluster)
   1051  1.215.2.1  christos  */
   1052  1.215.2.1  christos struct mbuf *
   1053  1.215.2.1  christos m_pulldown(struct mbuf *m, int off, int len, int *offp)
   1054  1.215.2.1  christos {
   1055  1.215.2.1  christos 	struct mbuf *n, *o;
   1056  1.215.2.1  christos 	int hlen, tlen, olen;
   1057  1.215.2.1  christos 	int sharedcluster;
   1058  1.215.2.1  christos 
   1059  1.215.2.1  christos 	/* Check invalid arguments. */
   1060  1.215.2.1  christos 	if (m == NULL)
   1061  1.215.2.1  christos 		panic("%s: m == NULL", __func__);
   1062  1.215.2.1  christos 	if (len > MCLBYTES) {
   1063  1.215.2.1  christos 		m_freem(m);
   1064  1.215.2.1  christos 		return NULL;
   1065  1.215.2.1  christos 	}
   1066  1.215.2.1  christos 
   1067  1.215.2.1  christos 	n = m;
   1068  1.215.2.1  christos 	while (n != NULL && off > 0) {
   1069  1.215.2.1  christos 		if (n->m_len > off)
   1070  1.215.2.1  christos 			break;
   1071  1.215.2.1  christos 		off -= n->m_len;
   1072  1.215.2.1  christos 		n = n->m_next;
   1073  1.215.2.1  christos 	}
   1074  1.215.2.1  christos 	/* Be sure to point non-empty mbuf. */
   1075  1.215.2.1  christos 	while (n != NULL && n->m_len == 0)
   1076  1.215.2.1  christos 		n = n->m_next;
   1077  1.215.2.1  christos 	if (!n) {
   1078  1.215.2.1  christos 		m_freem(m);
   1079  1.215.2.1  christos 		return NULL;	/* mbuf chain too short */
   1080  1.215.2.1  christos 	}
   1081  1.215.2.1  christos 
   1082  1.215.2.1  christos 	sharedcluster = M_READONLY(n);
   1083  1.215.2.1  christos 
   1084  1.215.2.1  christos 	/*
   1085  1.215.2.1  christos 	 * The target data is on <n, off>. If we got enough data on the mbuf
   1086  1.215.2.1  christos 	 * "n", we're done.
   1087  1.215.2.1  christos 	 */
   1088  1.215.2.1  christos #ifdef __NO_STRICT_ALIGNMENT
   1089  1.215.2.1  christos 	if ((off == 0 || offp) && len <= n->m_len - off && !sharedcluster)
   1090  1.215.2.1  christos #else
   1091  1.215.2.1  christos 	if ((off == 0 || offp) && len <= n->m_len - off && !sharedcluster &&
   1092  1.215.2.1  christos 	    ALIGNED_POINTER((mtod(n, char *) + off), uint32_t))
   1093  1.215.2.1  christos #endif
   1094  1.215.2.1  christos 		goto ok;
   1095  1.215.2.1  christos 
   1096  1.215.2.1  christos 	/*
   1097  1.215.2.1  christos 	 * When (len <= n->m_len - off) and (off != 0), it is a special case.
   1098  1.215.2.1  christos 	 * Len bytes from <n, off> sit in single mbuf, but the caller does
   1099  1.215.2.1  christos 	 * not like the starting position (off).
   1100  1.215.2.1  christos 	 *
   1101  1.215.2.1  christos 	 * Chop the current mbuf into two pieces, set off to 0.
   1102  1.215.2.1  christos 	 */
   1103  1.215.2.1  christos 	if (len <= n->m_len - off) {
   1104  1.215.2.1  christos 		struct mbuf *mlast;
   1105  1.215.2.1  christos 
   1106  1.215.2.1  christos 		o = m_dup(n, off, n->m_len - off, M_DONTWAIT);
   1107  1.215.2.1  christos 		if (o == NULL) {
   1108  1.215.2.1  christos 			m_freem(m);
   1109  1.215.2.1  christos 			return NULL;	/* ENOBUFS */
   1110  1.215.2.1  christos 		}
   1111  1.215.2.1  christos 		KASSERT(o->m_len >= len);
   1112  1.215.2.1  christos 		for (mlast = o; mlast->m_next != NULL; mlast = mlast->m_next)
   1113  1.215.2.1  christos 			;
   1114  1.215.2.1  christos 		n->m_len = off;
   1115  1.215.2.1  christos 		mlast->m_next = n->m_next;
   1116  1.215.2.1  christos 		n->m_next = o;
   1117  1.215.2.1  christos 		n = o;
   1118  1.215.2.1  christos 		off = 0;
   1119  1.215.2.1  christos 		goto ok;
   1120  1.215.2.1  christos 	}
   1121  1.215.2.1  christos 
   1122  1.215.2.1  christos 	/*
   1123  1.215.2.1  christos 	 * We need to take hlen from <n, off> and tlen from <n->m_next, 0>,
   1124  1.215.2.1  christos 	 * and construct contiguous mbuf with m_len == len.
   1125  1.215.2.1  christos 	 *
   1126  1.215.2.1  christos 	 * Note that hlen + tlen == len, and tlen > 0.
   1127  1.215.2.1  christos 	 */
   1128  1.215.2.1  christos 	hlen = n->m_len - off;
   1129  1.215.2.1  christos 	tlen = len - hlen;
   1130  1.215.2.1  christos 
   1131  1.215.2.1  christos 	/*
   1132  1.215.2.1  christos 	 * Ensure that we have enough trailing data on mbuf chain. If not,
   1133  1.215.2.1  christos 	 * we can do nothing about the chain.
   1134  1.215.2.1  christos 	 */
   1135  1.215.2.1  christos 	olen = 0;
   1136  1.215.2.1  christos 	for (o = n->m_next; o != NULL; o = o->m_next)
   1137  1.215.2.1  christos 		olen += o->m_len;
   1138  1.215.2.1  christos 	if (hlen + olen < len) {
   1139  1.215.2.1  christos 		m_freem(m);
   1140  1.215.2.1  christos 		return NULL;	/* mbuf chain too short */
   1141  1.215.2.1  christos 	}
   1142  1.215.2.1  christos 
   1143  1.215.2.1  christos 	/*
   1144  1.215.2.1  christos 	 * Easy cases first. We need to use m_copydata() to get data from
   1145  1.215.2.1  christos 	 * <n->m_next, 0>.
   1146  1.215.2.1  christos 	 */
   1147  1.215.2.1  christos 	if ((off == 0 || offp) && M_TRAILINGSPACE(n) >= tlen &&
   1148  1.215.2.1  christos 	    !sharedcluster) {
   1149  1.215.2.1  christos 		m_copydata(n->m_next, 0, tlen, mtod(n, char *) + n->m_len);
   1150  1.215.2.1  christos 		n->m_len += tlen;
   1151  1.215.2.1  christos 		m_adj(n->m_next, tlen);
   1152  1.215.2.1  christos 		goto ok;
   1153  1.215.2.1  christos 	}
   1154  1.215.2.1  christos 	if ((off == 0 || offp) && M_LEADINGSPACE(n->m_next) >= hlen &&
   1155  1.215.2.1  christos #ifndef __NO_STRICT_ALIGNMENT
   1156  1.215.2.1  christos 	    ALIGNED_POINTER((n->m_next->m_data - hlen), uint32_t) &&
   1157  1.215.2.1  christos #endif
   1158  1.215.2.1  christos 	    !sharedcluster && n->m_next->m_len >= tlen) {
   1159  1.215.2.1  christos 		n->m_next->m_data -= hlen;
   1160  1.215.2.1  christos 		n->m_next->m_len += hlen;
   1161  1.215.2.1  christos 		memcpy(mtod(n->m_next, void *), mtod(n, char *) + off, hlen);
   1162  1.215.2.1  christos 		n->m_len -= hlen;
   1163  1.215.2.1  christos 		n = n->m_next;
   1164  1.215.2.1  christos 		off = 0;
   1165  1.215.2.1  christos 		goto ok;
   1166  1.215.2.1  christos 	}
   1167  1.215.2.1  christos 
   1168  1.215.2.1  christos 	/*
   1169  1.215.2.1  christos 	 * Now, we need to do the hard way. Don't copy as there's no room
   1170  1.215.2.1  christos 	 * on both ends.
   1171  1.215.2.1  christos 	 */
   1172  1.215.2.1  christos 	o = m_get(M_DONTWAIT, m->m_type);
   1173  1.215.2.1  christos 	if (o && len > MLEN) {
   1174  1.215.2.1  christos 		MCLGET(o, M_DONTWAIT);
   1175  1.215.2.1  christos 		if ((o->m_flags & M_EXT) == 0) {
   1176  1.215.2.1  christos 			m_free(o);
   1177  1.215.2.1  christos 			o = NULL;
   1178  1.215.2.1  christos 		}
   1179  1.215.2.1  christos 	}
   1180  1.215.2.1  christos 	if (!o) {
   1181  1.215.2.1  christos 		m_freem(m);
   1182  1.215.2.1  christos 		return NULL;	/* ENOBUFS */
   1183  1.215.2.1  christos 	}
   1184  1.215.2.1  christos 	/* get hlen from <n, off> into <o, 0> */
   1185  1.215.2.1  christos 	o->m_len = hlen;
   1186  1.215.2.1  christos 	memcpy(mtod(o, void *), mtod(n, char *) + off, hlen);
   1187  1.215.2.1  christos 	n->m_len -= hlen;
   1188  1.215.2.1  christos 	/* get tlen from <n->m_next, 0> into <o, hlen> */
   1189  1.215.2.1  christos 	m_copydata(n->m_next, 0, tlen, mtod(o, char *) + o->m_len);
   1190  1.215.2.1  christos 	o->m_len += tlen;
   1191  1.215.2.1  christos 	m_adj(n->m_next, tlen);
   1192  1.215.2.1  christos 	o->m_next = n->m_next;
   1193  1.215.2.1  christos 	n->m_next = o;
   1194  1.215.2.1  christos 	n = o;
   1195  1.215.2.1  christos 	off = 0;
   1196  1.215.2.1  christos 
   1197  1.215.2.1  christos ok:
   1198  1.215.2.1  christos 	if (offp)
   1199  1.215.2.1  christos 		*offp = off;
   1200  1.215.2.1  christos 	return n;
   1201  1.215.2.1  christos }
   1202  1.215.2.1  christos 
   1203  1.215.2.1  christos /*
   1204       1.60   thorpej  * Like m_pullup(), except a new mbuf is always allocated, and we allow
   1205       1.60   thorpej  * the amount of empty space before the data in the new mbuf to be specified
   1206       1.60   thorpej  * (in the event that the caller expects to prepend later).
   1207       1.60   thorpej  */
   1208       1.60   thorpej struct mbuf *
   1209       1.60   thorpej m_copyup(struct mbuf *n, int len, int dstoff)
   1210       1.60   thorpej {
   1211       1.60   thorpej 	struct mbuf *m;
   1212       1.60   thorpej 	int count, space;
   1213       1.60   thorpej 
   1214      1.156  christos 	KASSERT(len != M_COPYALL);
   1215      1.193      maxv 	if (len > ((int)MHLEN - dstoff))
   1216       1.60   thorpej 		goto bad;
   1217      1.153  christos 	m = m_get(M_DONTWAIT, n->m_type);
   1218       1.60   thorpej 	if (m == NULL)
   1219       1.60   thorpej 		goto bad;
   1220       1.64      matt 	MCLAIM(m, n->m_owner);
   1221       1.60   thorpej 	if (n->m_flags & M_PKTHDR) {
   1222  1.215.2.1  christos 		m_move_pkthdr(m, n);
   1223       1.60   thorpej 	}
   1224       1.60   thorpej 	m->m_data += dstoff;
   1225       1.60   thorpej 	space = &m->m_dat[MLEN] - (m->m_data + m->m_len);
   1226       1.60   thorpej 	do {
   1227  1.215.2.1  christos 		count = uimin(uimin(uimax(len, max_protohdr), space), n->m_len);
   1228      1.119  christos 		memcpy(mtod(m, char *) + m->m_len, mtod(n, void *),
   1229       1.60   thorpej 		    (unsigned)count);
   1230       1.60   thorpej 		len -= count;
   1231       1.60   thorpej 		m->m_len += count;
   1232       1.60   thorpej 		n->m_len -= count;
   1233       1.60   thorpej 		space -= count;
   1234       1.60   thorpej 		if (n->m_len)
   1235       1.60   thorpej 			n->m_data += count;
   1236       1.60   thorpej 		else
   1237       1.60   thorpej 			n = m_free(n);
   1238       1.60   thorpej 	} while (len > 0 && n);
   1239       1.60   thorpej 	if (len > 0) {
   1240       1.60   thorpej 		(void) m_free(m);
   1241       1.60   thorpej 		goto bad;
   1242       1.60   thorpej 	}
   1243       1.60   thorpej 	m->m_next = n;
   1244      1.199      maxv 	return m;
   1245       1.60   thorpej  bad:
   1246       1.60   thorpej 	m_freem(n);
   1247      1.199      maxv 	return NULL;
   1248        1.9   mycroft }
   1249        1.9   mycroft 
   1250        1.9   mycroft struct mbuf *
   1251      1.195      maxv m_split(struct mbuf *m0, int len, int wait)
   1252        1.9   mycroft {
   1253      1.195      maxv 	return m_split_internal(m0, len, wait, true);
   1254       1.85      yamt }
   1255       1.85      yamt 
   1256       1.85      yamt static struct mbuf *
   1257      1.195      maxv m_split_internal(struct mbuf *m0, int len0, int wait, bool copyhdr)
   1258       1.85      yamt {
   1259       1.27      matt 	struct mbuf *m, *n;
   1260       1.22   thorpej 	unsigned len = len0, remain, len_save;
   1261        1.9   mycroft 
   1262      1.156  christos 	KASSERT(len0 != M_COPYALL);
   1263        1.9   mycroft 	for (m = m0; m && len > m->m_len; m = m->m_next)
   1264        1.9   mycroft 		len -= m->m_len;
   1265      1.181      maxv 	if (m == NULL)
   1266      1.181      maxv 		return NULL;
   1267      1.181      maxv 
   1268        1.9   mycroft 	remain = m->m_len - len;
   1269       1.85      yamt 	if (copyhdr && (m0->m_flags & M_PKTHDR)) {
   1270      1.153  christos 		n = m_gethdr(wait, m0->m_type);
   1271      1.153  christos 		if (n == NULL)
   1272      1.153  christos 			return NULL;
   1273      1.181      maxv 
   1274      1.112     pavel 		MCLAIM(n, m0->m_owner);
   1275      1.167     ozaki 		m_copy_rcvif(n, m0);
   1276        1.9   mycroft 		n->m_pkthdr.len = m0->m_pkthdr.len - len0;
   1277       1.22   thorpej 		len_save = m0->m_pkthdr.len;
   1278        1.9   mycroft 		m0->m_pkthdr.len = len0;
   1279      1.181      maxv 
   1280        1.9   mycroft 		if (m->m_flags & M_EXT)
   1281        1.9   mycroft 			goto extpacket;
   1282      1.181      maxv 
   1283        1.9   mycroft 		if (remain > MHLEN) {
   1284        1.9   mycroft 			/* m can't be the lead packet */
   1285  1.215.2.1  christos 			m_align(n, 0);
   1286      1.132    bouyer 			n->m_len = 0;
   1287        1.9   mycroft 			n->m_next = m_split(m, len, wait);
   1288      1.181      maxv 			if (n->m_next == NULL) {
   1289      1.181      maxv 				(void)m_free(n);
   1290       1.22   thorpej 				m0->m_pkthdr.len = len_save;
   1291      1.181      maxv 				return NULL;
   1292      1.181      maxv 			}
   1293      1.181      maxv 			return n;
   1294      1.181      maxv 		} else {
   1295  1.215.2.1  christos 			m_align(n, remain);
   1296      1.181      maxv 		}
   1297        1.9   mycroft 	} else if (remain == 0) {
   1298        1.9   mycroft 		n = m->m_next;
   1299      1.181      maxv 		m->m_next = NULL;
   1300      1.181      maxv 		return n;
   1301        1.9   mycroft 	} else {
   1302      1.153  christos 		n = m_get(wait, m->m_type);
   1303      1.181      maxv 		if (n == NULL)
   1304      1.181      maxv 			return NULL;
   1305       1.64      matt 		MCLAIM(n, m->m_owner);
   1306  1.215.2.1  christos 		m_align(n, remain);
   1307        1.9   mycroft 	}
   1308      1.181      maxv 
   1309        1.9   mycroft extpacket:
   1310        1.9   mycroft 	if (m->m_flags & M_EXT) {
   1311      1.125      yamt 		n->m_data = m->m_data + len;
   1312       1.18   thorpej 		MCLADDREFERENCE(m, n);
   1313        1.9   mycroft 	} else {
   1314      1.119  christos 		memcpy(mtod(n, void *), mtod(m, char *) + len, remain);
   1315        1.9   mycroft 	}
   1316      1.181      maxv 
   1317        1.9   mycroft 	n->m_len = remain;
   1318        1.9   mycroft 	m->m_len = len;
   1319        1.9   mycroft 	n->m_next = m->m_next;
   1320      1.181      maxv 	m->m_next = NULL;
   1321      1.181      maxv 	return n;
   1322        1.9   mycroft }
   1323      1.181      maxv 
   1324        1.9   mycroft /*
   1325        1.9   mycroft  * Routine to copy from device local memory into mbufs.
   1326        1.9   mycroft  */
   1327        1.9   mycroft struct mbuf *
   1328  1.215.2.1  christos m_devget(char *buf, int totlen, int off, struct ifnet *ifp)
   1329        1.9   mycroft {
   1330       1.27      matt 	struct mbuf *m;
   1331      1.181      maxv 	struct mbuf *top = NULL, **mp = &top;
   1332      1.181      maxv 	char *cp, *epkt;
   1333  1.215.2.1  christos 	int len;
   1334        1.9   mycroft 
   1335        1.9   mycroft 	cp = buf;
   1336        1.9   mycroft 	epkt = cp + totlen;
   1337        1.9   mycroft 	if (off) {
   1338       1.13       cgd 		/*
   1339       1.13       cgd 		 * If 'off' is non-zero, packet is trailer-encapsulated,
   1340       1.13       cgd 		 * so we have to skip the type and length fields.
   1341       1.13       cgd 		 */
   1342      1.104     perry 		cp += off + 2 * sizeof(uint16_t);
   1343      1.104     perry 		totlen -= 2 * sizeof(uint16_t);
   1344        1.9   mycroft 	}
   1345      1.181      maxv 
   1346      1.153  christos 	m = m_gethdr(M_DONTWAIT, MT_DATA);
   1347      1.153  christos 	if (m == NULL)
   1348      1.153  christos 		return NULL;
   1349      1.166     ozaki 	m_set_rcvif(m, ifp);
   1350        1.9   mycroft 	m->m_pkthdr.len = totlen;
   1351        1.9   mycroft 	m->m_len = MHLEN;
   1352        1.9   mycroft 
   1353        1.9   mycroft 	while (totlen > 0) {
   1354        1.9   mycroft 		if (top) {
   1355      1.153  christos 			m = m_get(M_DONTWAIT, MT_DATA);
   1356      1.181      maxv 			if (m == NULL) {
   1357        1.9   mycroft 				m_freem(top);
   1358      1.181      maxv 				return NULL;
   1359        1.9   mycroft 			}
   1360        1.9   mycroft 			m->m_len = MLEN;
   1361        1.9   mycroft 		}
   1362      1.181      maxv 
   1363  1.215.2.1  christos 		len = uimin(totlen, epkt - cp);
   1364      1.181      maxv 
   1365        1.9   mycroft 		if (len >= MINCLSIZE) {
   1366        1.9   mycroft 			MCLGET(m, M_DONTWAIT);
   1367       1.19   mycroft 			if ((m->m_flags & M_EXT) == 0) {
   1368       1.20   mycroft 				m_free(m);
   1369       1.19   mycroft 				m_freem(top);
   1370      1.181      maxv 				return NULL;
   1371       1.19   mycroft 			}
   1372  1.215.2.1  christos 			m->m_len = len = uimin(len, MCLBYTES);
   1373        1.9   mycroft 		} else {
   1374        1.9   mycroft 			/*
   1375        1.9   mycroft 			 * Place initial small packet/header at end of mbuf.
   1376        1.9   mycroft 			 */
   1377        1.9   mycroft 			if (len < m->m_len) {
   1378        1.9   mycroft 				if (top == 0 && len + max_linkhdr <= m->m_len)
   1379        1.9   mycroft 					m->m_data += max_linkhdr;
   1380        1.9   mycroft 				m->m_len = len;
   1381        1.9   mycroft 			} else
   1382        1.9   mycroft 				len = m->m_len;
   1383        1.9   mycroft 		}
   1384      1.181      maxv 
   1385  1.215.2.1  christos 		memcpy(mtod(m, void *), cp, (size_t)len);
   1386      1.181      maxv 
   1387        1.9   mycroft 		cp += len;
   1388        1.9   mycroft 		*mp = m;
   1389        1.9   mycroft 		mp = &m->m_next;
   1390        1.9   mycroft 		totlen -= len;
   1391        1.9   mycroft 		if (cp == epkt)
   1392        1.9   mycroft 			cp = buf;
   1393        1.9   mycroft 	}
   1394      1.181      maxv 
   1395      1.181      maxv 	return top;
   1396       1.18   thorpej }
   1397       1.18   thorpej 
   1398       1.18   thorpej /*
   1399       1.18   thorpej  * Copy data from a buffer back into the indicated mbuf chain,
   1400       1.18   thorpej  * starting "off" bytes from the beginning, extending the mbuf
   1401       1.18   thorpej  * chain if necessary.
   1402       1.18   thorpej  */
   1403       1.18   thorpej void
   1404       1.86      yamt m_copyback(struct mbuf *m0, int off, int len, const void *cp)
   1405       1.18   thorpej {
   1406       1.85      yamt #if defined(DEBUG)
   1407       1.85      yamt 	struct mbuf *origm = m0;
   1408       1.85      yamt 	int error;
   1409      1.181      maxv #endif
   1410       1.85      yamt 
   1411       1.85      yamt 	if (m0 == NULL)
   1412       1.85      yamt 		return;
   1413       1.85      yamt 
   1414       1.85      yamt #if defined(DEBUG)
   1415       1.85      yamt 	error =
   1416      1.181      maxv #endif
   1417      1.196      maxv 	m_copyback_internal(&m0, off, len, cp, CB_COPYBACK|CB_EXTEND,
   1418      1.196      maxv 	    M_DONTWAIT);
   1419       1.85      yamt 
   1420       1.85      yamt #if defined(DEBUG)
   1421       1.85      yamt 	if (error != 0 || (m0 != NULL && origm != m0))
   1422       1.85      yamt 		panic("m_copyback");
   1423      1.181      maxv #endif
   1424       1.85      yamt }
   1425       1.85      yamt 
   1426       1.85      yamt struct mbuf *
   1427       1.86      yamt m_copyback_cow(struct mbuf *m0, int off, int len, const void *cp, int how)
   1428       1.85      yamt {
   1429       1.85      yamt 	int error;
   1430       1.85      yamt 
   1431       1.85      yamt 	/* don't support chain expansion */
   1432      1.156  christos 	KASSERT(len != M_COPYALL);
   1433       1.85      yamt 	KDASSERT(off + len <= m_length(m0));
   1434       1.85      yamt 
   1435      1.196      maxv 	error = m_copyback_internal(&m0, off, len, cp, CB_COPYBACK|CB_COW,
   1436      1.196      maxv 	    how);
   1437       1.85      yamt 	if (error) {
   1438       1.85      yamt 		/*
   1439       1.85      yamt 		 * no way to recover from partial success.
   1440       1.85      yamt 		 * just free the chain.
   1441       1.85      yamt 		 */
   1442       1.85      yamt 		m_freem(m0);
   1443       1.85      yamt 		return NULL;
   1444       1.85      yamt 	}
   1445       1.85      yamt 	return m0;
   1446       1.85      yamt }
   1447       1.85      yamt 
   1448       1.85      yamt int
   1449       1.85      yamt m_makewritable(struct mbuf **mp, int off, int len, int how)
   1450       1.85      yamt {
   1451       1.85      yamt 	int error;
   1452       1.85      yamt #if defined(DEBUG)
   1453      1.156  christos 	int origlen = m_length(*mp);
   1454      1.181      maxv #endif
   1455       1.85      yamt 
   1456      1.196      maxv 	error = m_copyback_internal(mp, off, len, NULL, CB_PRESERVE|CB_COW,
   1457      1.196      maxv 	    how);
   1458      1.170  christos 	if (error)
   1459      1.170  christos 		return error;
   1460      1.170  christos 
   1461       1.85      yamt #if defined(DEBUG)
   1462      1.156  christos 	int reslen = 0;
   1463      1.156  christos 	for (struct mbuf *n = *mp; n; n = n->m_next)
   1464       1.85      yamt 		reslen += n->m_len;
   1465       1.85      yamt 	if (origlen != reslen)
   1466       1.85      yamt 		panic("m_makewritable: length changed");
   1467       1.85      yamt 	if (((*mp)->m_flags & M_PKTHDR) != 0 && reslen != (*mp)->m_pkthdr.len)
   1468       1.85      yamt 		panic("m_makewritable: inconsist");
   1469      1.181      maxv #endif
   1470       1.85      yamt 
   1471      1.170  christos 	return 0;
   1472       1.85      yamt }
   1473       1.85      yamt 
   1474      1.196      maxv static int
   1475      1.196      maxv m_copyback_internal(struct mbuf **mp0, int off, int len, const void *vp,
   1476      1.196      maxv     int flags, int how)
   1477       1.85      yamt {
   1478       1.27      matt 	int mlen;
   1479       1.85      yamt 	struct mbuf *m, *n;
   1480       1.85      yamt 	struct mbuf **mp;
   1481       1.18   thorpej 	int totlen = 0;
   1482       1.86      yamt 	const char *cp = vp;
   1483       1.18   thorpej 
   1484       1.85      yamt 	KASSERT(mp0 != NULL);
   1485       1.85      yamt 	KASSERT(*mp0 != NULL);
   1486      1.196      maxv 	KASSERT((flags & CB_PRESERVE) == 0 || cp == NULL);
   1487      1.196      maxv 	KASSERT((flags & CB_COPYBACK) == 0 || cp != NULL);
   1488       1.85      yamt 
   1489      1.156  christos 	if (len == M_COPYALL)
   1490      1.156  christos 		len = m_length(*mp0) - off;
   1491      1.156  christos 
   1492      1.106      yamt 	/*
   1493      1.196      maxv 	 * we don't bother to update "totlen" in the case of CB_COW,
   1494      1.196      maxv 	 * assuming that CB_EXTEND and CB_COW are exclusive.
   1495      1.106      yamt 	 */
   1496      1.106      yamt 
   1497      1.196      maxv 	KASSERT((~flags & (CB_EXTEND|CB_COW)) != 0);
   1498      1.106      yamt 
   1499       1.85      yamt 	mp = mp0;
   1500       1.85      yamt 	m = *mp;
   1501       1.18   thorpej 	while (off > (mlen = m->m_len)) {
   1502       1.18   thorpej 		off -= mlen;
   1503       1.18   thorpej 		totlen += mlen;
   1504      1.109      yamt 		if (m->m_next == NULL) {
   1505      1.109      yamt 			int tspace;
   1506      1.109      yamt extend:
   1507      1.196      maxv 			if ((flags & CB_EXTEND) == 0)
   1508       1.85      yamt 				goto out;
   1509      1.109      yamt 
   1510      1.109      yamt 			/*
   1511      1.109      yamt 			 * try to make some space at the end of "m".
   1512      1.109      yamt 			 */
   1513      1.109      yamt 
   1514      1.109      yamt 			mlen = m->m_len;
   1515      1.109      yamt 			if (off + len >= MINCLSIZE &&
   1516      1.109      yamt 			    (m->m_flags & M_EXT) == 0 && m->m_len == 0) {
   1517      1.109      yamt 				MCLGET(m, how);
   1518      1.109      yamt 			}
   1519      1.109      yamt 			tspace = M_TRAILINGSPACE(m);
   1520      1.109      yamt 			if (tspace > 0) {
   1521  1.215.2.1  christos 				tspace = uimin(tspace, off + len);
   1522      1.109      yamt 				KASSERT(tspace > 0);
   1523      1.109      yamt 				memset(mtod(m, char *) + m->m_len, 0,
   1524  1.215.2.1  christos 				    uimin(off, tspace));
   1525      1.109      yamt 				m->m_len += tspace;
   1526      1.109      yamt 				off += mlen;
   1527      1.109      yamt 				totlen -= mlen;
   1528      1.109      yamt 				continue;
   1529      1.109      yamt 			}
   1530      1.109      yamt 
   1531      1.109      yamt 			/*
   1532      1.109      yamt 			 * need to allocate an mbuf.
   1533      1.109      yamt 			 */
   1534      1.109      yamt 
   1535      1.109      yamt 			if (off + len >= MINCLSIZE) {
   1536      1.109      yamt 				n = m_getcl(how, m->m_type, 0);
   1537      1.109      yamt 			} else {
   1538      1.109      yamt 				n = m_get(how, m->m_type);
   1539      1.109      yamt 			}
   1540      1.109      yamt 			if (n == NULL) {
   1541       1.18   thorpej 				goto out;
   1542      1.109      yamt 			}
   1543  1.215.2.1  christos 			n->m_len = uimin(M_TRAILINGSPACE(n), off + len);
   1544  1.215.2.1  christos 			memset(mtod(n, char *), 0, uimin(n->m_len, off));
   1545       1.18   thorpej 			m->m_next = n;
   1546       1.18   thorpej 		}
   1547       1.85      yamt 		mp = &m->m_next;
   1548       1.18   thorpej 		m = m->m_next;
   1549       1.18   thorpej 	}
   1550       1.18   thorpej 	while (len > 0) {
   1551       1.85      yamt 		mlen = m->m_len - off;
   1552       1.85      yamt 		if (mlen != 0 && M_READONLY(m)) {
   1553      1.196      maxv 			/*
   1554      1.196      maxv 			 * This mbuf is read-only. Allocate a new writable
   1555      1.196      maxv 			 * mbuf and try again.
   1556      1.196      maxv 			 */
   1557       1.85      yamt 			char *datap;
   1558       1.85      yamt 			int eatlen;
   1559       1.85      yamt 
   1560      1.196      maxv 			KASSERT((flags & CB_COW) != 0);
   1561       1.85      yamt 
   1562       1.85      yamt 			/*
   1563       1.85      yamt 			 * if we're going to write into the middle of
   1564       1.85      yamt 			 * a mbuf, split it first.
   1565       1.85      yamt 			 */
   1566      1.137     seanb 			if (off > 0) {
   1567      1.195      maxv 				n = m_split_internal(m, off, how, false);
   1568       1.85      yamt 				if (n == NULL)
   1569       1.85      yamt 					goto enobufs;
   1570       1.85      yamt 				m->m_next = n;
   1571       1.85      yamt 				mp = &m->m_next;
   1572       1.85      yamt 				m = n;
   1573       1.85      yamt 				off = 0;
   1574       1.85      yamt 				continue;
   1575       1.85      yamt 			}
   1576       1.85      yamt 
   1577       1.85      yamt 			/*
   1578       1.85      yamt 			 * XXX TODO coalesce into the trailingspace of
   1579       1.85      yamt 			 * the previous mbuf when possible.
   1580       1.85      yamt 			 */
   1581       1.85      yamt 
   1582       1.85      yamt 			/*
   1583       1.85      yamt 			 * allocate a new mbuf.  copy packet header if needed.
   1584       1.85      yamt 			 */
   1585      1.153  christos 			n = m_get(how, m->m_type);
   1586       1.85      yamt 			if (n == NULL)
   1587       1.85      yamt 				goto enobufs;
   1588       1.85      yamt 			MCLAIM(n, m->m_owner);
   1589       1.85      yamt 			if (off == 0 && (m->m_flags & M_PKTHDR) != 0) {
   1590  1.215.2.1  christos 				m_move_pkthdr(n, m);
   1591       1.85      yamt 				n->m_len = MHLEN;
   1592       1.85      yamt 			} else {
   1593       1.85      yamt 				if (len >= MINCLSIZE)
   1594       1.85      yamt 					MCLGET(n, M_DONTWAIT);
   1595       1.85      yamt 				n->m_len =
   1596       1.85      yamt 				    (n->m_flags & M_EXT) ? MCLBYTES : MLEN;
   1597       1.85      yamt 			}
   1598       1.85      yamt 			if (n->m_len > len)
   1599       1.85      yamt 				n->m_len = len;
   1600       1.85      yamt 
   1601       1.85      yamt 			/*
   1602       1.85      yamt 			 * free the region which has been overwritten.
   1603       1.85      yamt 			 * copying data from old mbufs if requested.
   1604       1.85      yamt 			 */
   1605      1.196      maxv 			if (flags & CB_PRESERVE)
   1606       1.85      yamt 				datap = mtod(n, char *);
   1607       1.85      yamt 			else
   1608       1.85      yamt 				datap = NULL;
   1609       1.85      yamt 			eatlen = n->m_len;
   1610       1.85      yamt 			while (m != NULL && M_READONLY(m) &&
   1611       1.85      yamt 			    n->m_type == m->m_type && eatlen > 0) {
   1612  1.215.2.1  christos 				mlen = uimin(eatlen, m->m_len);
   1613       1.85      yamt 				if (datap) {
   1614       1.85      yamt 					m_copydata(m, 0, mlen, datap);
   1615       1.85      yamt 					datap += mlen;
   1616       1.85      yamt 				}
   1617       1.85      yamt 				m->m_data += mlen;
   1618       1.85      yamt 				m->m_len -= mlen;
   1619       1.85      yamt 				eatlen -= mlen;
   1620       1.85      yamt 				if (m->m_len == 0)
   1621       1.85      yamt 					*mp = m = m_free(m);
   1622       1.85      yamt 			}
   1623       1.85      yamt 			if (eatlen > 0)
   1624       1.85      yamt 				n->m_len -= eatlen;
   1625       1.85      yamt 			n->m_next = m;
   1626       1.85      yamt 			*mp = m = n;
   1627       1.85      yamt 			continue;
   1628       1.85      yamt 		}
   1629  1.215.2.1  christos 		mlen = uimin(mlen, len);
   1630      1.196      maxv 		if (flags & CB_COPYBACK) {
   1631      1.119  christos 			memcpy(mtod(m, char *) + off, cp, (unsigned)mlen);
   1632       1.85      yamt 			cp += mlen;
   1633       1.85      yamt 		}
   1634       1.18   thorpej 		len -= mlen;
   1635       1.18   thorpej 		mlen += off;
   1636       1.18   thorpej 		off = 0;
   1637       1.18   thorpej 		totlen += mlen;
   1638       1.18   thorpej 		if (len == 0)
   1639       1.18   thorpej 			break;
   1640      1.109      yamt 		if (m->m_next == NULL) {
   1641      1.109      yamt 			goto extend;
   1642       1.18   thorpej 		}
   1643       1.85      yamt 		mp = &m->m_next;
   1644       1.18   thorpej 		m = m->m_next;
   1645       1.18   thorpej 	}
   1646      1.199      maxv 
   1647      1.199      maxv out:
   1648      1.199      maxv 	if (((m = *mp0)->m_flags & M_PKTHDR) && (m->m_pkthdr.len < totlen)) {
   1649      1.196      maxv 		KASSERT((flags & CB_EXTEND) != 0);
   1650       1.18   thorpej 		m->m_pkthdr.len = totlen;
   1651      1.106      yamt 	}
   1652       1.85      yamt 
   1653       1.85      yamt 	return 0;
   1654       1.85      yamt 
   1655       1.85      yamt enobufs:
   1656       1.85      yamt 	return ENOBUFS;
   1657       1.66   thorpej }
   1658       1.66   thorpej 
   1659      1.205      maxv /*
   1660      1.211      maxv  * Compress the mbuf chain. Return the new mbuf chain on success, NULL on
   1661      1.211      maxv  * failure. The first mbuf is preserved, and on success the pointer returned
   1662      1.211      maxv  * is the same as the one passed.
   1663      1.205      maxv  */
   1664      1.205      maxv struct mbuf *
   1665      1.212      maxv m_defrag(struct mbuf *m, int how)
   1666      1.205      maxv {
   1667      1.205      maxv 	struct mbuf *m0, *mn, *n;
   1668      1.211      maxv 	int sz;
   1669      1.205      maxv 
   1670      1.212      maxv 	KASSERT((m->m_flags & M_PKTHDR) != 0);
   1671      1.205      maxv 
   1672      1.212      maxv 	if (m->m_next == NULL)
   1673      1.212      maxv 		return m;
   1674      1.211      maxv 
   1675      1.212      maxv 	m0 = m_get(how, MT_DATA);
   1676      1.205      maxv 	if (m0 == NULL)
   1677      1.205      maxv 		return NULL;
   1678      1.205      maxv 	mn = m0;
   1679      1.205      maxv 
   1680      1.212      maxv 	sz = m->m_pkthdr.len - m->m_len;
   1681      1.211      maxv 	KASSERT(sz >= 0);
   1682      1.211      maxv 
   1683      1.205      maxv 	do {
   1684      1.211      maxv 		if (sz > MLEN) {
   1685      1.212      maxv 			MCLGET(mn, how);
   1686      1.205      maxv 			if ((mn->m_flags & M_EXT) == 0) {
   1687      1.205      maxv 				m_freem(m0);
   1688      1.205      maxv 				return NULL;
   1689      1.205      maxv 			}
   1690      1.205      maxv 		}
   1691      1.205      maxv 
   1692      1.205      maxv 		mn->m_len = MIN(sz, MCLBYTES);
   1693      1.205      maxv 
   1694      1.212      maxv 		m_copydata(m, m->m_pkthdr.len - sz, mn->m_len,
   1695      1.205      maxv 		     mtod(mn, void *));
   1696      1.205      maxv 
   1697      1.205      maxv 		sz -= mn->m_len;
   1698      1.205      maxv 
   1699      1.205      maxv 		if (sz > 0) {
   1700      1.205      maxv 			/* need more mbufs */
   1701      1.212      maxv 			n = m_get(how, MT_DATA);
   1702      1.205      maxv 			if (n == NULL) {
   1703      1.205      maxv 				m_freem(m0);
   1704      1.205      maxv 				return NULL;
   1705      1.205      maxv 			}
   1706      1.205      maxv 
   1707      1.205      maxv 			mn->m_next = n;
   1708      1.205      maxv 			mn = n;
   1709      1.205      maxv 		}
   1710      1.205      maxv 	} while (sz > 0);
   1711      1.205      maxv 
   1712      1.212      maxv 	m_freem(m->m_next);
   1713      1.212      maxv 	m->m_next = m0;
   1714      1.205      maxv 
   1715      1.212      maxv 	return m;
   1716      1.205      maxv }
   1717      1.205      maxv 
   1718      1.205      maxv void
   1719      1.213      maxv m_remove_pkthdr(struct mbuf *m)
   1720      1.205      maxv {
   1721      1.205      maxv 	KASSERT(m->m_flags & M_PKTHDR);
   1722      1.205      maxv 
   1723  1.215.2.1  christos 	m_tag_delete_chain(m);
   1724      1.205      maxv 	m->m_flags &= ~M_PKTHDR;
   1725      1.205      maxv 	memset(&m->m_pkthdr, 0, sizeof(m->m_pkthdr));
   1726      1.205      maxv }
   1727      1.205      maxv 
   1728      1.101      yamt void
   1729      1.202      maxv m_copy_pkthdr(struct mbuf *to, struct mbuf *from)
   1730      1.202      maxv {
   1731      1.215      maxv 	KASSERT((to->m_flags & M_EXT) == 0);
   1732  1.215.2.1  christos 	KASSERT((to->m_flags & M_PKTHDR) == 0 ||
   1733  1.215.2.1  christos 	    SLIST_FIRST(&to->m_pkthdr.tags) == NULL);
   1734      1.202      maxv 	KASSERT((from->m_flags & M_PKTHDR) != 0);
   1735      1.202      maxv 
   1736      1.202      maxv 	to->m_pkthdr = from->m_pkthdr;
   1737      1.202      maxv 	to->m_flags = from->m_flags & M_COPYFLAGS;
   1738      1.215      maxv 	to->m_data = to->m_pktdat;
   1739      1.215      maxv 
   1740      1.202      maxv 	SLIST_INIT(&to->m_pkthdr.tags);
   1741      1.202      maxv 	m_tag_copy_chain(to, from);
   1742      1.202      maxv }
   1743      1.202      maxv 
   1744      1.202      maxv void
   1745      1.101      yamt m_move_pkthdr(struct mbuf *to, struct mbuf *from)
   1746      1.101      yamt {
   1747      1.101      yamt 	KASSERT((to->m_flags & M_EXT) == 0);
   1748  1.215.2.1  christos 	KASSERT((to->m_flags & M_PKTHDR) == 0 ||
   1749  1.215.2.1  christos 	    SLIST_FIRST(&to->m_pkthdr.tags) == NULL);
   1750      1.101      yamt 	KASSERT((from->m_flags & M_PKTHDR) != 0);
   1751      1.101      yamt 
   1752      1.101      yamt 	to->m_pkthdr = from->m_pkthdr;
   1753      1.101      yamt 	to->m_flags = from->m_flags & M_COPYFLAGS;
   1754      1.101      yamt 	to->m_data = to->m_pktdat;
   1755      1.101      yamt 
   1756      1.101      yamt 	from->m_flags &= ~M_PKTHDR;
   1757      1.101      yamt }
   1758      1.101      yamt 
   1759       1.66   thorpej /*
   1760  1.215.2.1  christos  * Set the m_data pointer of a newly-allocated mbuf to place an object of the
   1761  1.215.2.1  christos  * specified size at the end of the mbuf, longword aligned.
   1762  1.215.2.1  christos  */
   1763  1.215.2.1  christos void
   1764  1.215.2.1  christos m_align(struct mbuf *m, int len)
   1765  1.215.2.1  christos {
   1766  1.215.2.1  christos 	int buflen, adjust;
   1767  1.215.2.1  christos 
   1768  1.215.2.1  christos 	KASSERT(len != M_COPYALL);
   1769  1.215.2.1  christos 	KASSERT(M_LEADINGSPACE(m) == 0);
   1770  1.215.2.1  christos 
   1771  1.215.2.1  christos 	if (m->m_flags & M_EXT)
   1772  1.215.2.1  christos 		buflen = m->m_ext.ext_size;
   1773  1.215.2.1  christos 	else if (m->m_flags & M_PKTHDR)
   1774  1.215.2.1  christos 		buflen = MHLEN;
   1775  1.215.2.1  christos 	else
   1776  1.215.2.1  christos 		buflen = MLEN;
   1777  1.215.2.1  christos 
   1778  1.215.2.1  christos 	KASSERT(len <= buflen);
   1779  1.215.2.1  christos 	adjust = buflen - len;
   1780  1.215.2.1  christos 	m->m_data += adjust &~ (sizeof(long)-1);
   1781  1.215.2.1  christos }
   1782  1.215.2.1  christos 
   1783  1.215.2.1  christos /*
   1784       1.66   thorpej  * Apply function f to the data in an mbuf chain starting "off" bytes from the
   1785       1.66   thorpej  * beginning, continuing for "len" bytes.
   1786       1.66   thorpej  */
   1787       1.66   thorpej int
   1788       1.66   thorpej m_apply(struct mbuf *m, int off, int len,
   1789      1.119  christos     int (*f)(void *, void *, unsigned int), void *arg)
   1790       1.66   thorpej {
   1791       1.66   thorpej 	unsigned int count;
   1792       1.66   thorpej 	int rval;
   1793       1.66   thorpej 
   1794      1.156  christos 	KASSERT(len != M_COPYALL);
   1795       1.66   thorpej 	KASSERT(len >= 0);
   1796       1.66   thorpej 	KASSERT(off >= 0);
   1797       1.66   thorpej 
   1798       1.66   thorpej 	while (off > 0) {
   1799       1.66   thorpej 		KASSERT(m != NULL);
   1800       1.66   thorpej 		if (off < m->m_len)
   1801       1.66   thorpej 			break;
   1802       1.66   thorpej 		off -= m->m_len;
   1803       1.66   thorpej 		m = m->m_next;
   1804       1.66   thorpej 	}
   1805       1.66   thorpej 	while (len > 0) {
   1806       1.66   thorpej 		KASSERT(m != NULL);
   1807  1.215.2.1  christos 		count = uimin(m->m_len - off, len);
   1808       1.66   thorpej 
   1809      1.119  christos 		rval = (*f)(arg, mtod(m, char *) + off, count);
   1810       1.66   thorpej 		if (rval)
   1811      1.181      maxv 			return rval;
   1812       1.66   thorpej 
   1813       1.66   thorpej 		len -= count;
   1814       1.66   thorpej 		off = 0;
   1815       1.66   thorpej 		m = m->m_next;
   1816       1.66   thorpej 	}
   1817       1.66   thorpej 
   1818      1.181      maxv 	return 0;
   1819       1.66   thorpej }
   1820       1.66   thorpej 
   1821       1.66   thorpej /*
   1822       1.66   thorpej  * Return a pointer to mbuf/offset of location in mbuf chain.
   1823       1.66   thorpej  */
   1824       1.66   thorpej struct mbuf *
   1825       1.66   thorpej m_getptr(struct mbuf *m, int loc, int *off)
   1826       1.66   thorpej {
   1827       1.66   thorpej 
   1828       1.66   thorpej 	while (loc >= 0) {
   1829       1.66   thorpej 		/* Normal end of search */
   1830       1.66   thorpej 		if (m->m_len > loc) {
   1831      1.177      maxv 			*off = loc;
   1832      1.181      maxv 			return m;
   1833      1.181      maxv 		}
   1834      1.181      maxv 
   1835      1.181      maxv 		loc -= m->m_len;
   1836      1.181      maxv 
   1837      1.181      maxv 		if (m->m_next == NULL) {
   1838      1.181      maxv 			if (loc == 0) {
   1839      1.181      maxv 				/* Point at the end of valid data */
   1840      1.181      maxv 				*off = m->m_len;
   1841      1.181      maxv 				return m;
   1842      1.181      maxv 			}
   1843      1.181      maxv 			return NULL;
   1844       1.66   thorpej 		} else {
   1845      1.181      maxv 			m = m->m_next;
   1846       1.66   thorpej 		}
   1847      1.177      maxv 	}
   1848       1.66   thorpej 
   1849      1.181      maxv 	return NULL;
   1850        1.1       cgd }
   1851      1.105      yamt 
   1852  1.215.2.1  christos /*
   1853  1.215.2.1  christos  * Release a reference to the mbuf external storage.
   1854  1.215.2.1  christos  *
   1855  1.215.2.1  christos  * => free the mbuf m itself as well.
   1856  1.215.2.1  christos  */
   1857  1.215.2.1  christos static void
   1858  1.215.2.1  christos m_ext_free(struct mbuf *m)
   1859  1.215.2.1  christos {
   1860  1.215.2.1  christos 	const bool embedded = MEXT_ISEMBEDDED(m);
   1861  1.215.2.1  christos 	bool dofree = true;
   1862  1.215.2.1  christos 	u_int refcnt;
   1863  1.215.2.1  christos 
   1864  1.215.2.1  christos 	KASSERT((m->m_flags & M_EXT) != 0);
   1865  1.215.2.1  christos 	KASSERT(MEXT_ISEMBEDDED(m->m_ext_ref));
   1866  1.215.2.1  christos 	KASSERT((m->m_ext_ref->m_flags & M_EXT) != 0);
   1867  1.215.2.1  christos 	KASSERT((m->m_flags & M_EXT_CLUSTER) ==
   1868  1.215.2.1  christos 	    (m->m_ext_ref->m_flags & M_EXT_CLUSTER));
   1869  1.215.2.1  christos 
   1870  1.215.2.1  christos 	if (__predict_false(m->m_type == MT_FREE)) {
   1871  1.215.2.1  christos 		panic("mbuf %p already freed", m);
   1872  1.215.2.1  christos 	}
   1873  1.215.2.1  christos 
   1874  1.215.2.1  christos 	if (__predict_true(m->m_ext.ext_refcnt == 1)) {
   1875  1.215.2.1  christos 		refcnt = m->m_ext.ext_refcnt = 0;
   1876  1.215.2.1  christos 	} else {
   1877  1.215.2.1  christos 		refcnt = atomic_dec_uint_nv(&m->m_ext.ext_refcnt);
   1878  1.215.2.1  christos 	}
   1879  1.215.2.1  christos 
   1880  1.215.2.1  christos 	if (refcnt > 0) {
   1881  1.215.2.1  christos 		if (embedded) {
   1882  1.215.2.1  christos 			/*
   1883  1.215.2.1  christos 			 * other mbuf's m_ext_ref still points to us.
   1884  1.215.2.1  christos 			 */
   1885  1.215.2.1  christos 			dofree = false;
   1886  1.215.2.1  christos 		} else {
   1887  1.215.2.1  christos 			m->m_ext_ref = m;
   1888  1.215.2.1  christos 		}
   1889  1.215.2.1  christos 	} else {
   1890  1.215.2.1  christos 		/*
   1891  1.215.2.1  christos 		 * dropping the last reference
   1892  1.215.2.1  christos 		 */
   1893  1.215.2.1  christos 		if (!embedded) {
   1894  1.215.2.1  christos 			m->m_ext.ext_refcnt++; /* XXX */
   1895  1.215.2.1  christos 			m_ext_free(m->m_ext_ref);
   1896  1.215.2.1  christos 			m->m_ext_ref = m;
   1897  1.215.2.1  christos 		} else if ((m->m_flags & M_EXT_CLUSTER) != 0) {
   1898  1.215.2.1  christos 			pool_cache_put_paddr(mcl_cache,
   1899  1.215.2.1  christos 			    m->m_ext.ext_buf, m->m_ext.ext_paddr);
   1900  1.215.2.1  christos 		} else if (m->m_ext.ext_free) {
   1901  1.215.2.1  christos 			(*m->m_ext.ext_free)(m,
   1902  1.215.2.1  christos 			    m->m_ext.ext_buf, m->m_ext.ext_size,
   1903  1.215.2.1  christos 			    m->m_ext.ext_arg);
   1904  1.215.2.1  christos 			/*
   1905  1.215.2.1  christos 			 * 'm' is already freed by the ext_free callback.
   1906  1.215.2.1  christos 			 */
   1907  1.215.2.1  christos 			dofree = false;
   1908  1.215.2.1  christos 		} else {
   1909  1.215.2.1  christos 			free(m->m_ext.ext_buf, 0);
   1910  1.215.2.1  christos 		}
   1911  1.215.2.1  christos 	}
   1912  1.215.2.1  christos 
   1913  1.215.2.1  christos 	if (dofree) {
   1914  1.215.2.1  christos 		m->m_type = MT_FREE;
   1915  1.215.2.1  christos 		m->m_data = NULL;
   1916  1.215.2.1  christos 		pool_cache_put(mb_cache, m);
   1917  1.215.2.1  christos 	}
   1918  1.215.2.1  christos }
   1919  1.215.2.1  christos 
   1920  1.215.2.1  christos /*
   1921  1.215.2.1  christos  * Free a single mbuf and associated external storage. Return the
   1922  1.215.2.1  christos  * successor, if any.
   1923  1.215.2.1  christos  */
   1924  1.215.2.1  christos struct mbuf *
   1925  1.215.2.1  christos m_free(struct mbuf *m)
   1926  1.215.2.1  christos {
   1927  1.215.2.1  christos 	struct mbuf *n;
   1928  1.215.2.1  christos 
   1929  1.215.2.1  christos 	mowner_revoke(m, 1, m->m_flags);
   1930  1.215.2.1  christos 	mbstat_type_add(m->m_type, -1);
   1931  1.215.2.1  christos 
   1932  1.215.2.1  christos 	if (m->m_flags & M_PKTHDR)
   1933  1.215.2.1  christos 		m_tag_delete_chain(m);
   1934  1.215.2.1  christos 
   1935  1.215.2.1  christos 	n = m->m_next;
   1936  1.215.2.1  christos 
   1937  1.215.2.1  christos 	if (m->m_flags & M_EXT) {
   1938  1.215.2.1  christos 		m_ext_free(m);
   1939  1.215.2.1  christos 	} else {
   1940  1.215.2.1  christos 		if (__predict_false(m->m_type == MT_FREE)) {
   1941  1.215.2.1  christos 			panic("mbuf %p already freed", m);
   1942  1.215.2.1  christos 		}
   1943  1.215.2.1  christos 		m->m_type = MT_FREE;
   1944  1.215.2.1  christos 		m->m_data = NULL;
   1945  1.215.2.1  christos 		pool_cache_put(mb_cache, m);
   1946  1.215.2.1  christos 	}
   1947  1.215.2.1  christos 
   1948  1.215.2.1  christos 	return n;
   1949  1.215.2.1  christos }
   1950  1.215.2.1  christos 
   1951  1.215.2.1  christos void
   1952  1.215.2.1  christos m_freem(struct mbuf *m)
   1953  1.215.2.1  christos {
   1954  1.215.2.1  christos 	if (m == NULL)
   1955  1.215.2.1  christos 		return;
   1956  1.215.2.1  christos 	do {
   1957  1.215.2.1  christos 		m = m_free(m);
   1958  1.215.2.1  christos 	} while (m);
   1959  1.215.2.1  christos }
   1960  1.215.2.1  christos 
   1961      1.105      yamt #if defined(DDB)
   1962      1.105      yamt void
   1963      1.105      yamt m_print(const struct mbuf *m, const char *modif, void (*pr)(const char *, ...))
   1964      1.105      yamt {
   1965      1.105      yamt 	char ch;
   1966      1.118   thorpej 	bool opt_c = false;
   1967  1.215.2.1  christos 	bool opt_d = false;
   1968  1.215.2.1  christos #if NETHER > 0
   1969  1.215.2.1  christos 	bool opt_v = false;
   1970  1.215.2.1  christos 	const struct mbuf *m0 = NULL;
   1971  1.215.2.1  christos #endif
   1972  1.215.2.1  christos 	int no = 0;
   1973      1.105      yamt 	char buf[512];
   1974      1.105      yamt 
   1975      1.105      yamt 	while ((ch = *(modif++)) != '\0') {
   1976      1.105      yamt 		switch (ch) {
   1977      1.105      yamt 		case 'c':
   1978      1.118   thorpej 			opt_c = true;
   1979      1.105      yamt 			break;
   1980  1.215.2.1  christos 		case 'd':
   1981  1.215.2.1  christos 			opt_d = true;
   1982  1.215.2.1  christos 			break;
   1983  1.215.2.1  christos #if NETHER > 0
   1984  1.215.2.1  christos 		case 'v':
   1985  1.215.2.1  christos 			opt_v = true;
   1986  1.215.2.1  christos 			m0 = m;
   1987  1.215.2.1  christos 			break;
   1988  1.215.2.1  christos #endif
   1989  1.215.2.1  christos 		default:
   1990  1.215.2.1  christos 			break;
   1991      1.105      yamt 		}
   1992      1.105      yamt 	}
   1993      1.105      yamt 
   1994      1.105      yamt nextchain:
   1995  1.215.2.1  christos 	(*pr)("MBUF(%d) %p\n", no, m);
   1996      1.130  christos 	snprintb(buf, sizeof(buf), M_FLAGS_BITS, (u_int)m->m_flags);
   1997      1.138    cegger 	(*pr)("  data=%p, len=%d, type=%d, flags=%s\n",
   1998      1.105      yamt 	    m->m_data, m->m_len, m->m_type, buf);
   1999  1.215.2.1  christos 	if (opt_d) {
   2000  1.215.2.1  christos 		int i;
   2001  1.215.2.1  christos 		unsigned char *p = m->m_data;
   2002  1.215.2.1  christos 
   2003  1.215.2.1  christos 		(*pr)("  data:");
   2004  1.215.2.1  christos 
   2005  1.215.2.1  christos 		for (i = 0; i < m->m_len; i++) {
   2006  1.215.2.1  christos 			if (i % 16 == 0)
   2007  1.215.2.1  christos 				(*pr)("\n");
   2008  1.215.2.1  christos 			(*pr)(" %02x", p[i]);
   2009  1.215.2.1  christos 		}
   2010  1.215.2.1  christos 
   2011  1.215.2.1  christos 		(*pr)("\n");
   2012  1.215.2.1  christos 	}
   2013      1.105      yamt 	(*pr)("  owner=%p, next=%p, nextpkt=%p\n", m->m_owner, m->m_next,
   2014      1.105      yamt 	    m->m_nextpkt);
   2015      1.105      yamt 	(*pr)("  leadingspace=%u, trailingspace=%u, readonly=%u\n",
   2016      1.105      yamt 	    (int)M_LEADINGSPACE(m), (int)M_TRAILINGSPACE(m),
   2017      1.105      yamt 	    (int)M_READONLY(m));
   2018      1.105      yamt 	if ((m->m_flags & M_PKTHDR) != 0) {
   2019      1.130  christos 		snprintb(buf, sizeof(buf), M_CSUM_BITS, m->m_pkthdr.csum_flags);
   2020      1.172   msaitoh 		(*pr)("  pktlen=%d, rcvif=%p, csum_flags=%s, csum_data=0x%"
   2021      1.105      yamt 		    PRIx32 ", segsz=%u\n",
   2022      1.167     ozaki 		    m->m_pkthdr.len, m_get_rcvif_NOMPSAFE(m),
   2023      1.105      yamt 		    buf, m->m_pkthdr.csum_data, m->m_pkthdr.segsz);
   2024      1.105      yamt 	}
   2025      1.105      yamt 	if ((m->m_flags & M_EXT)) {
   2026      1.125      yamt 		(*pr)("  ext_refcnt=%u, ext_buf=%p, ext_size=%zd, "
   2027      1.105      yamt 		    "ext_free=%p, ext_arg=%p\n",
   2028      1.125      yamt 		    m->m_ext.ext_refcnt,
   2029      1.105      yamt 		    m->m_ext.ext_buf, m->m_ext.ext_size,
   2030      1.105      yamt 		    m->m_ext.ext_free, m->m_ext.ext_arg);
   2031      1.105      yamt 	}
   2032      1.105      yamt 	if ((~m->m_flags & (M_EXT|M_EXT_PAGES)) == 0) {
   2033      1.108      yamt 		vaddr_t sva = (vaddr_t)m->m_ext.ext_buf;
   2034      1.108      yamt 		vaddr_t eva = sva + m->m_ext.ext_size;
   2035      1.108      yamt 		int n = (round_page(eva) - trunc_page(sva)) >> PAGE_SHIFT;
   2036      1.108      yamt 		int i;
   2037      1.105      yamt 
   2038      1.105      yamt 		(*pr)("  pages:");
   2039      1.108      yamt 		for (i = 0; i < n; i ++) {
   2040      1.108      yamt 			(*pr)(" %p", m->m_ext.ext_pgs[i]);
   2041      1.105      yamt 		}
   2042      1.105      yamt 		(*pr)("\n");
   2043      1.105      yamt 	}
   2044      1.105      yamt 
   2045      1.105      yamt 	if (opt_c) {
   2046      1.105      yamt 		m = m->m_next;
   2047      1.105      yamt 		if (m != NULL) {
   2048  1.215.2.1  christos 			no++;
   2049      1.105      yamt 			goto nextchain;
   2050      1.105      yamt 		}
   2051      1.105      yamt 	}
   2052  1.215.2.1  christos 
   2053  1.215.2.1  christos #if NETHER > 0
   2054  1.215.2.1  christos 	if (opt_v && m0)
   2055  1.215.2.1  christos 		m_examine(m0, AF_ETHER, modif, pr);
   2056  1.215.2.1  christos #endif
   2057      1.105      yamt }
   2058      1.105      yamt #endif /* defined(DDB) */
   2059      1.124      yamt 
   2060      1.124      yamt #if defined(MBUFTRACE)
   2061      1.124      yamt void
   2062      1.124      yamt mowner_attach(struct mowner *mo)
   2063      1.124      yamt {
   2064      1.124      yamt 
   2065      1.124      yamt 	KASSERT(mo->mo_counters == NULL);
   2066      1.124      yamt 	mo->mo_counters = percpu_alloc(sizeof(struct mowner_counter));
   2067      1.124      yamt 
   2068      1.124      yamt 	/* XXX lock */
   2069      1.124      yamt 	LIST_INSERT_HEAD(&mowners, mo, mo_link);
   2070      1.124      yamt }
   2071      1.124      yamt 
   2072      1.124      yamt void
   2073      1.124      yamt mowner_detach(struct mowner *mo)
   2074      1.124      yamt {
   2075      1.124      yamt 
   2076      1.124      yamt 	KASSERT(mo->mo_counters != NULL);
   2077      1.124      yamt 
   2078      1.124      yamt 	/* XXX lock */
   2079      1.124      yamt 	LIST_REMOVE(mo, mo_link);
   2080      1.124      yamt 
   2081      1.124      yamt 	percpu_free(mo->mo_counters, sizeof(struct mowner_counter));
   2082      1.124      yamt 	mo->mo_counters = NULL;
   2083      1.124      yamt }
   2084      1.124      yamt 
   2085      1.124      yamt void
   2086      1.124      yamt mowner_init(struct mbuf *m, int type)
   2087      1.124      yamt {
   2088      1.124      yamt 	struct mowner_counter *mc;
   2089      1.124      yamt 	struct mowner *mo;
   2090      1.124      yamt 	int s;
   2091      1.124      yamt 
   2092      1.124      yamt 	m->m_owner = mo = &unknown_mowners[type];
   2093      1.124      yamt 	s = splvm();
   2094      1.126   thorpej 	mc = percpu_getref(mo->mo_counters);
   2095      1.124      yamt 	mc->mc_counter[MOWNER_COUNTER_CLAIMS]++;
   2096      1.126   thorpej 	percpu_putref(mo->mo_counters);
   2097      1.124      yamt 	splx(s);
   2098      1.124      yamt }
   2099      1.124      yamt 
   2100      1.124      yamt void
   2101      1.124      yamt mowner_ref(struct mbuf *m, int flags)
   2102      1.124      yamt {
   2103      1.124      yamt 	struct mowner *mo = m->m_owner;
   2104      1.124      yamt 	struct mowner_counter *mc;
   2105      1.124      yamt 	int s;
   2106      1.124      yamt 
   2107      1.124      yamt 	s = splvm();
   2108      1.126   thorpej 	mc = percpu_getref(mo->mo_counters);
   2109      1.124      yamt 	if ((flags & M_EXT) != 0)
   2110      1.124      yamt 		mc->mc_counter[MOWNER_COUNTER_EXT_CLAIMS]++;
   2111      1.204      maxv 	if ((flags & M_EXT_CLUSTER) != 0)
   2112      1.124      yamt 		mc->mc_counter[MOWNER_COUNTER_CLUSTER_CLAIMS]++;
   2113      1.126   thorpej 	percpu_putref(mo->mo_counters);
   2114      1.124      yamt 	splx(s);
   2115      1.124      yamt }
   2116      1.124      yamt 
   2117      1.124      yamt void
   2118      1.124      yamt mowner_revoke(struct mbuf *m, bool all, int flags)
   2119      1.124      yamt {
   2120      1.124      yamt 	struct mowner *mo = m->m_owner;
   2121      1.124      yamt 	struct mowner_counter *mc;
   2122      1.124      yamt 	int s;
   2123      1.124      yamt 
   2124      1.124      yamt 	s = splvm();
   2125      1.126   thorpej 	mc = percpu_getref(mo->mo_counters);
   2126      1.124      yamt 	if ((flags & M_EXT) != 0)
   2127      1.124      yamt 		mc->mc_counter[MOWNER_COUNTER_EXT_RELEASES]++;
   2128      1.204      maxv 	if ((flags & M_EXT_CLUSTER) != 0)
   2129      1.124      yamt 		mc->mc_counter[MOWNER_COUNTER_CLUSTER_RELEASES]++;
   2130      1.124      yamt 	if (all)
   2131      1.124      yamt 		mc->mc_counter[MOWNER_COUNTER_RELEASES]++;
   2132      1.126   thorpej 	percpu_putref(mo->mo_counters);
   2133      1.124      yamt 	splx(s);
   2134      1.124      yamt 	if (all)
   2135      1.124      yamt 		m->m_owner = &revoked_mowner;
   2136      1.124      yamt }
   2137      1.124      yamt 
   2138      1.124      yamt static void
   2139      1.124      yamt mowner_claim(struct mbuf *m, struct mowner *mo)
   2140      1.124      yamt {
   2141      1.124      yamt 	struct mowner_counter *mc;
   2142      1.124      yamt 	int flags = m->m_flags;
   2143      1.124      yamt 	int s;
   2144      1.124      yamt 
   2145      1.124      yamt 	s = splvm();
   2146      1.126   thorpej 	mc = percpu_getref(mo->mo_counters);
   2147      1.124      yamt 	mc->mc_counter[MOWNER_COUNTER_CLAIMS]++;
   2148      1.124      yamt 	if ((flags & M_EXT) != 0)
   2149      1.124      yamt 		mc->mc_counter[MOWNER_COUNTER_EXT_CLAIMS]++;
   2150      1.204      maxv 	if ((flags & M_EXT_CLUSTER) != 0)
   2151      1.124      yamt 		mc->mc_counter[MOWNER_COUNTER_CLUSTER_CLAIMS]++;
   2152      1.126   thorpej 	percpu_putref(mo->mo_counters);
   2153      1.124      yamt 	splx(s);
   2154      1.124      yamt 	m->m_owner = mo;
   2155      1.124      yamt }
   2156      1.124      yamt 
   2157      1.124      yamt void
   2158      1.124      yamt m_claim(struct mbuf *m, struct mowner *mo)
   2159      1.124      yamt {
   2160      1.124      yamt 
   2161      1.124      yamt 	if (m->m_owner == mo || mo == NULL)
   2162      1.124      yamt 		return;
   2163      1.124      yamt 
   2164      1.124      yamt 	mowner_revoke(m, true, m->m_flags);
   2165      1.124      yamt 	mowner_claim(m, mo);
   2166      1.124      yamt }
   2167      1.205      maxv 
   2168      1.205      maxv void
   2169      1.205      maxv m_claimm(struct mbuf *m, struct mowner *mo)
   2170      1.205      maxv {
   2171      1.205      maxv 
   2172      1.205      maxv 	for (; m != NULL; m = m->m_next)
   2173      1.205      maxv 		m_claim(m, mo);
   2174      1.205      maxv }
   2175      1.124      yamt #endif /* defined(MBUFTRACE) */
   2176      1.169  christos 
   2177      1.188      maxv #ifdef DIAGNOSTIC
   2178      1.188      maxv /*
   2179      1.188      maxv  * Verify that the mbuf chain is not malformed. Used only for diagnostic.
   2180      1.188      maxv  * Panics on error.
   2181      1.188      maxv  */
   2182      1.188      maxv void
   2183      1.188      maxv m_verify_packet(struct mbuf *m)
   2184      1.188      maxv {
   2185      1.188      maxv 	struct mbuf *n = m;
   2186      1.188      maxv 	char *low, *high, *dat;
   2187      1.188      maxv 	int totlen = 0, len;
   2188      1.188      maxv 
   2189      1.188      maxv 	if (__predict_false((m->m_flags & M_PKTHDR) == 0)) {
   2190      1.188      maxv 		panic("%s: mbuf doesn't have M_PKTHDR", __func__);
   2191      1.188      maxv 	}
   2192      1.188      maxv 
   2193      1.188      maxv 	while (n != NULL) {
   2194      1.188      maxv 		if (__predict_false(n->m_type == MT_FREE)) {
   2195      1.188      maxv 			panic("%s: mbuf already freed (n = %p)", __func__, n);
   2196      1.188      maxv 		}
   2197      1.191      maxv #if 0
   2198      1.191      maxv 		/*
   2199      1.191      maxv 		 * This ought to be a rule of the mbuf API. Unfortunately,
   2200      1.191      maxv 		 * many places don't respect that rule.
   2201      1.191      maxv 		 */
   2202      1.188      maxv 		if (__predict_false((n != m) && (n->m_flags & M_PKTHDR) != 0)) {
   2203      1.188      maxv 			panic("%s: M_PKTHDR set on secondary mbuf", __func__);
   2204      1.188      maxv 		}
   2205      1.189      maxv #endif
   2206      1.188      maxv 		if (__predict_false(n->m_nextpkt != NULL)) {
   2207      1.188      maxv 			panic("%s: m_nextpkt not null (m_nextpkt = %p)",
   2208      1.188      maxv 			    __func__, n->m_nextpkt);
   2209      1.188      maxv 		}
   2210      1.188      maxv 
   2211      1.188      maxv 		dat = n->m_data;
   2212      1.188      maxv 		len = n->m_len;
   2213      1.188      maxv 
   2214      1.188      maxv 		if (n->m_flags & M_EXT) {
   2215      1.188      maxv 			low = n->m_ext.ext_buf;
   2216      1.188      maxv 			high = low + n->m_ext.ext_size;
   2217      1.188      maxv 		} else if (n->m_flags & M_PKTHDR) {
   2218      1.188      maxv 			low = n->m_pktdat;
   2219      1.188      maxv 			high = low + MHLEN;
   2220      1.188      maxv 		} else {
   2221      1.188      maxv 			low = n->m_dat;
   2222      1.188      maxv 			high = low + MLEN;
   2223      1.188      maxv 		}
   2224      1.192      maxv 		if (__predict_false(dat + len < dat)) {
   2225      1.188      maxv 			panic("%s: incorrect length (len = %d)", __func__, len);
   2226      1.188      maxv 		}
   2227      1.188      maxv 		if (__predict_false((dat < low) || (dat + len > high))) {
   2228      1.188      maxv 			panic("%s: m_data not in packet"
   2229      1.188      maxv 			    "(dat = %p, len = %d, low = %p, high = %p)",
   2230      1.188      maxv 			    __func__, dat, len, low, high);
   2231      1.188      maxv 		}
   2232      1.188      maxv 
   2233      1.188      maxv 		totlen += len;
   2234      1.188      maxv 		n = n->m_next;
   2235      1.188      maxv 	}
   2236      1.188      maxv 
   2237      1.188      maxv 	if (__predict_false(totlen != m->m_pkthdr.len)) {
   2238      1.188      maxv 		panic("%s: inconsistent mbuf length (%d != %d)", __func__,
   2239      1.188      maxv 		    totlen, m->m_pkthdr.len);
   2240      1.188      maxv 	}
   2241      1.188      maxv }
   2242      1.188      maxv #endif
   2243      1.188      maxv 
   2244  1.215.2.1  christos struct m_tag *
   2245  1.215.2.1  christos m_tag_get(int type, int len, int wait)
   2246      1.186      maxv {
   2247  1.215.2.1  christos 	struct m_tag *t;
   2248      1.186      maxv 
   2249  1.215.2.1  christos 	if (len < 0)
   2250  1.215.2.1  christos 		return NULL;
   2251  1.215.2.1  christos 	t = malloc(len + sizeof(struct m_tag), M_PACKET_TAGS, wait);
   2252  1.215.2.1  christos 	if (t == NULL)
   2253  1.215.2.1  christos 		return NULL;
   2254  1.215.2.1  christos 	t->m_tag_id = type;
   2255  1.215.2.1  christos 	t->m_tag_len = len;
   2256  1.215.2.1  christos 	return t;
   2257  1.215.2.1  christos }
   2258      1.186      maxv 
   2259  1.215.2.1  christos void
   2260  1.215.2.1  christos m_tag_free(struct m_tag *t)
   2261  1.215.2.1  christos {
   2262  1.215.2.1  christos 	free(t, M_PACKET_TAGS);
   2263  1.215.2.1  christos }
   2264      1.186      maxv 
   2265  1.215.2.1  christos void
   2266  1.215.2.1  christos m_tag_prepend(struct mbuf *m, struct m_tag *t)
   2267  1.215.2.1  christos {
   2268  1.215.2.1  christos 	KASSERT((m->m_flags & M_PKTHDR) != 0);
   2269  1.215.2.1  christos 	SLIST_INSERT_HEAD(&m->m_pkthdr.tags, t, m_tag_link);
   2270  1.215.2.1  christos }
   2271      1.186      maxv 
   2272  1.215.2.1  christos void
   2273  1.215.2.1  christos m_tag_unlink(struct mbuf *m, struct m_tag *t)
   2274  1.215.2.1  christos {
   2275  1.215.2.1  christos 	KASSERT((m->m_flags & M_PKTHDR) != 0);
   2276  1.215.2.1  christos 	SLIST_REMOVE(&m->m_pkthdr.tags, t, m_tag, m_tag_link);
   2277  1.215.2.1  christos }
   2278      1.186      maxv 
   2279  1.215.2.1  christos void
   2280  1.215.2.1  christos m_tag_delete(struct mbuf *m, struct m_tag *t)
   2281  1.215.2.1  christos {
   2282  1.215.2.1  christos 	m_tag_unlink(m, t);
   2283  1.215.2.1  christos 	m_tag_free(t);
   2284      1.186      maxv }
   2285      1.186      maxv 
   2286  1.215.2.1  christos void
   2287  1.215.2.1  christos m_tag_delete_chain(struct mbuf *m)
   2288      1.169  christos {
   2289  1.215.2.1  christos 	struct m_tag *p, *q;
   2290      1.169  christos 
   2291  1.215.2.1  christos 	KASSERT((m->m_flags & M_PKTHDR) != 0);
   2292      1.175      maxv 
   2293  1.215.2.1  christos 	p = SLIST_FIRST(&m->m_pkthdr.tags);
   2294  1.215.2.1  christos 	if (p == NULL)
   2295  1.215.2.1  christos 		return;
   2296  1.215.2.1  christos 	while ((q = SLIST_NEXT(p, m_tag_link)) != NULL)
   2297  1.215.2.1  christos 		m_tag_delete(m, q);
   2298  1.215.2.1  christos 	m_tag_delete(m, p);
   2299  1.215.2.1  christos }
   2300      1.175      maxv 
   2301  1.215.2.1  christos struct m_tag *
   2302  1.215.2.1  christos m_tag_find(const struct mbuf *m, int type)
   2303  1.215.2.1  christos {
   2304  1.215.2.1  christos 	struct m_tag *p;
   2305      1.175      maxv 
   2306  1.215.2.1  christos 	KASSERT((m->m_flags & M_PKTHDR) != 0);
   2307  1.215.2.1  christos 
   2308  1.215.2.1  christos 	p = SLIST_FIRST(&m->m_pkthdr.tags);
   2309  1.215.2.1  christos 	while (p != NULL) {
   2310  1.215.2.1  christos 		if (p->m_tag_id == type)
   2311  1.215.2.1  christos 			return p;
   2312  1.215.2.1  christos 		p = SLIST_NEXT(p, m_tag_link);
   2313      1.175      maxv 	}
   2314  1.215.2.1  christos 	return NULL;
   2315  1.215.2.1  christos }
   2316      1.175      maxv 
   2317  1.215.2.1  christos struct m_tag *
   2318  1.215.2.1  christos m_tag_copy(struct m_tag *t)
   2319  1.215.2.1  christos {
   2320  1.215.2.1  christos 	struct m_tag *p;
   2321  1.215.2.1  christos 
   2322  1.215.2.1  christos 	p = m_tag_get(t->m_tag_id, t->m_tag_len, M_NOWAIT);
   2323  1.215.2.1  christos 	if (p == NULL)
   2324  1.215.2.1  christos 		return NULL;
   2325  1.215.2.1  christos 	memcpy(p + 1, t + 1, t->m_tag_len);
   2326  1.215.2.1  christos 	return p;
   2327      1.169  christos }
   2328      1.169  christos 
   2329  1.215.2.1  christos /*
   2330  1.215.2.1  christos  * Copy two tag chains. The destination mbuf (to) loses any attached
   2331  1.215.2.1  christos  * tags even if the operation fails. This should not be a problem, as
   2332  1.215.2.1  christos  * m_tag_copy_chain() is typically called with a newly-allocated
   2333  1.215.2.1  christos  * destination mbuf.
   2334  1.215.2.1  christos  */
   2335  1.215.2.1  christos int
   2336  1.215.2.1  christos m_tag_copy_chain(struct mbuf *to, struct mbuf *from)
   2337      1.169  christos {
   2338  1.215.2.1  christos 	struct m_tag *p, *t, *tprev = NULL;
   2339  1.215.2.1  christos 
   2340  1.215.2.1  christos 	KASSERT((from->m_flags & M_PKTHDR) != 0);
   2341  1.215.2.1  christos 
   2342  1.215.2.1  christos 	m_tag_delete_chain(to);
   2343  1.215.2.1  christos 	SLIST_FOREACH(p, &from->m_pkthdr.tags, m_tag_link) {
   2344  1.215.2.1  christos 		t = m_tag_copy(p);
   2345  1.215.2.1  christos 		if (t == NULL) {
   2346  1.215.2.1  christos 			m_tag_delete_chain(to);
   2347  1.215.2.1  christos 			return 0;
   2348  1.215.2.1  christos 		}
   2349  1.215.2.1  christos 		if (tprev == NULL)
   2350  1.215.2.1  christos 			SLIST_INSERT_HEAD(&to->m_pkthdr.tags, t, m_tag_link);
   2351  1.215.2.1  christos 		else
   2352  1.215.2.1  christos 			SLIST_INSERT_AFTER(tprev, t, m_tag_link);
   2353  1.215.2.1  christos 		tprev = t;
   2354  1.215.2.1  christos 	}
   2355  1.215.2.1  christos 	return 1;
   2356      1.169  christos }
   2357