2011-04-26 02:07:57 +04:00
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/* $NetBSD: in6_offload.c,v 1.6 2011/04/25 22:07:57 yamt Exp $ */
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2006-11-25 21:41:36 +03:00
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/*-
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* Copyright (c)2006 YAMAMOTO Takashi,
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*/
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#include <sys/cdefs.h>
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2011-04-26 02:07:57 +04:00
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__KERNEL_RCSID(0, "$NetBSD: in6_offload.c,v 1.6 2011/04/25 22:07:57 yamt Exp $");
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2006-11-25 21:41:36 +03:00
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#include <sys/param.h>
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#include <sys/mbuf.h>
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#include <net/if.h>
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#include <netinet/in.h>
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#include <netinet/in_systm.h>
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#include <netinet/ip6.h>
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#include <netinet/tcp.h>
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#include <netinet6/in6_var.h>
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#include <netinet6/nd6.h>
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#include <netinet6/in6_offload.h>
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struct ip6_tso_output_args {
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struct ifnet *ifp;
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struct ifnet *origifp;
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Eliminate address family-specific route caches (struct route, struct
route_in6, struct route_iso), replacing all caches with a struct
route.
The principle benefit of this change is that all of the protocol
families can benefit from route cache-invalidation, which is
necessary for correct routing. Route-cache invalidation fixes an
ancient PR, kern/3508, at long last; it fixes various other PRs,
also.
Discussions with and ideas from Joerg Sonnenberger influenced this
work tremendously. Of course, all design oversights and bugs are
mine.
DETAILS
1 I added to each address family a pool of sockaddrs. I have
introduced routines for allocating, copying, and duplicating,
and freeing sockaddrs:
struct sockaddr *sockaddr_alloc(sa_family_t af, int flags);
struct sockaddr *sockaddr_copy(struct sockaddr *dst,
const struct sockaddr *src);
struct sockaddr *sockaddr_dup(const struct sockaddr *src, int flags);
void sockaddr_free(struct sockaddr *sa);
sockaddr_alloc() returns either a sockaddr from the pool belonging
to the specified family, or NULL if the pool is exhausted. The
returned sockaddr has the right size for that family; sa_family
and sa_len fields are initialized to the family and sockaddr
length---e.g., sa_family = AF_INET and sa_len = sizeof(struct
sockaddr_in). sockaddr_free() puts the given sockaddr back into
its family's pool.
sockaddr_dup() and sockaddr_copy() work analogously to strdup()
and strcpy(), respectively. sockaddr_copy() KASSERTs that the
family of the destination and source sockaddrs are alike.
The 'flags' argumet for sockaddr_alloc() and sockaddr_dup() is
passed directly to pool_get(9).
2 I added routines for initializing sockaddrs in each address
family, sockaddr_in_init(), sockaddr_in6_init(), sockaddr_iso_init(),
etc. They are fairly self-explanatory.
3 structs route_in6 and route_iso are no more. All protocol families
use struct route. I have changed the route cache, 'struct route',
so that it does not contain storage space for a sockaddr. Instead,
struct route points to a sockaddr coming from the pool the sockaddr
belongs to. I added a new method to struct route, rtcache_setdst(),
for setting the cache destination:
int rtcache_setdst(struct route *, const struct sockaddr *);
rtcache_setdst() returns 0 on success, or ENOMEM if no memory is
available to create the sockaddr storage.
It is now possible for rtcache_getdst() to return NULL if, say,
rtcache_setdst() failed. I check the return value for NULL
everywhere in the kernel.
4 Each routing domain (struct domain) has a list of live route
caches, dom_rtcache. rtflushall(sa_family_t af) looks up the
domain indicated by 'af', walks the domain's list of route caches
and invalidates each one.
2007-05-03 00:40:22 +04:00
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const struct sockaddr_in6 *dst;
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2006-11-25 21:41:36 +03:00
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struct rtentry *rt;
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};
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static int ip6_tso_output_callback(void *, struct mbuf *);
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static int
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ip6_tso_output_callback(void *vp, struct mbuf *m)
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{
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struct ip6_tso_output_args *args = vp;
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return nd6_output(args->ifp, args->origifp, m, args->dst, args->rt);
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}
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int
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ip6_tso_output(struct ifnet *ifp, struct ifnet *origifp, struct mbuf *m,
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Eliminate address family-specific route caches (struct route, struct
route_in6, struct route_iso), replacing all caches with a struct
route.
The principle benefit of this change is that all of the protocol
families can benefit from route cache-invalidation, which is
necessary for correct routing. Route-cache invalidation fixes an
ancient PR, kern/3508, at long last; it fixes various other PRs,
also.
Discussions with and ideas from Joerg Sonnenberger influenced this
work tremendously. Of course, all design oversights and bugs are
mine.
DETAILS
1 I added to each address family a pool of sockaddrs. I have
introduced routines for allocating, copying, and duplicating,
and freeing sockaddrs:
struct sockaddr *sockaddr_alloc(sa_family_t af, int flags);
struct sockaddr *sockaddr_copy(struct sockaddr *dst,
const struct sockaddr *src);
struct sockaddr *sockaddr_dup(const struct sockaddr *src, int flags);
void sockaddr_free(struct sockaddr *sa);
sockaddr_alloc() returns either a sockaddr from the pool belonging
to the specified family, or NULL if the pool is exhausted. The
returned sockaddr has the right size for that family; sa_family
and sa_len fields are initialized to the family and sockaddr
length---e.g., sa_family = AF_INET and sa_len = sizeof(struct
sockaddr_in). sockaddr_free() puts the given sockaddr back into
its family's pool.
sockaddr_dup() and sockaddr_copy() work analogously to strdup()
and strcpy(), respectively. sockaddr_copy() KASSERTs that the
family of the destination and source sockaddrs are alike.
The 'flags' argumet for sockaddr_alloc() and sockaddr_dup() is
passed directly to pool_get(9).
2 I added routines for initializing sockaddrs in each address
family, sockaddr_in_init(), sockaddr_in6_init(), sockaddr_iso_init(),
etc. They are fairly self-explanatory.
3 structs route_in6 and route_iso are no more. All protocol families
use struct route. I have changed the route cache, 'struct route',
so that it does not contain storage space for a sockaddr. Instead,
struct route points to a sockaddr coming from the pool the sockaddr
belongs to. I added a new method to struct route, rtcache_setdst(),
for setting the cache destination:
int rtcache_setdst(struct route *, const struct sockaddr *);
rtcache_setdst() returns 0 on success, or ENOMEM if no memory is
available to create the sockaddr storage.
It is now possible for rtcache_getdst() to return NULL if, say,
rtcache_setdst() failed. I check the return value for NULL
everywhere in the kernel.
4 Each routing domain (struct domain) has a list of live route
caches, dom_rtcache. rtflushall(sa_family_t af) looks up the
domain indicated by 'af', walks the domain's list of route caches
and invalidates each one.
2007-05-03 00:40:22 +04:00
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const struct sockaddr_in6 *dst, struct rtentry *rt)
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2006-11-25 21:41:36 +03:00
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{
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struct ip6_tso_output_args args;
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args.ifp = ifp;
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args.origifp = origifp;
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args.dst = dst;
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args.rt = rt;
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return tcp6_segment(m, ip6_tso_output_callback, &args);
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}
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/*
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* tcp6_segment: handle M_CSUM_TSOv6 by software.
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*
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* => always consume m.
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* => call output_func with output_arg for each segments.
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*/
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int
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tcp6_segment(struct mbuf *m, int (*output_func)(void *, struct mbuf *),
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void *output_arg)
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{
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int mss;
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int iphlen;
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int thlen;
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int hlen;
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int len;
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struct ip6_hdr *iph;
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struct tcphdr *th;
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uint32_t tcpseq;
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struct mbuf *hdr = NULL;
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struct mbuf *t;
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int error = 0;
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KASSERT((m->m_flags & M_PKTHDR) != 0);
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KASSERT((m->m_pkthdr.csum_flags & M_CSUM_TSOv6) != 0);
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m->m_pkthdr.csum_flags = 0;
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len = m->m_pkthdr.len;
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KASSERT(len >= sizeof(*iph) + sizeof(*th));
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if (m->m_len < sizeof(*iph)) {
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m = m_pullup(m, sizeof(*iph));
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if (m == NULL) {
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error = ENOMEM;
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goto quit;
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}
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}
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iph = mtod(m, struct ip6_hdr *);
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iphlen = sizeof(*iph);
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KASSERT((iph->ip6_vfc & IPV6_VERSION_MASK) == IPV6_VERSION);
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KASSERT(iph->ip6_nxt == IPPROTO_TCP);
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hlen = iphlen + sizeof(*th);
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if (m->m_len < hlen) {
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m = m_pullup(m, hlen);
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if (m == NULL) {
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error = ENOMEM;
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goto quit;
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}
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}
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th = (void *)(mtod(m, char *) + iphlen);
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tcpseq = ntohl(th->th_seq);
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thlen = th->th_off * 4;
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hlen = iphlen + thlen;
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mss = m->m_pkthdr.segsz;
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KASSERT(mss != 0);
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KASSERT(len > hlen);
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t = m_split(m, hlen, M_NOWAIT);
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if (t == NULL) {
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error = ENOMEM;
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goto quit;
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}
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hdr = m;
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m = t;
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len -= hlen;
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KASSERT(len % mss == 0);
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while (len > 0) {
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struct mbuf *n;
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n = m_dup(hdr, 0, hlen, M_NOWAIT);
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if (n == NULL) {
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error = ENOMEM;
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goto quit;
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}
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KASSERT(n->m_len == hlen); /* XXX */
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t = m_split(m, mss, M_NOWAIT);
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if (t == NULL) {
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m_freem(n);
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error = ENOMEM;
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goto quit;
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}
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m_cat(n, m);
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m = t;
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KASSERT(n->m_len >= hlen); /* XXX */
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n->m_pkthdr.len = hlen + mss;
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iph = mtod(n, struct ip6_hdr *);
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KASSERT((iph->ip6_vfc & IPV6_VERSION_MASK) == IPV6_VERSION);
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iph->ip6_plen = htons(thlen + mss);
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th = (void *)(mtod(n, char *) + iphlen);
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th->th_seq = htonl(tcpseq);
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th->th_sum = 0;
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th->th_sum = in6_cksum(n, IPPROTO_TCP, iphlen, thlen + mss);
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error = (*output_func)(output_arg, n);
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if (error) {
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goto quit;
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}
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tcpseq += mss;
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len -= mss;
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}
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quit:
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if (hdr != NULL) {
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m_freem(hdr);
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}
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if (m != NULL) {
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m_freem(m);
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}
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return error;
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}
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2010-12-12 01:37:46 +03:00
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void
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ip6_undefer_csum(struct mbuf *m, size_t hdrlen, int csum_flags)
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{
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2011-04-26 02:07:57 +04:00
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const size_t ip6_plen_offset =
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hdrlen + offsetof(struct ip6_hdr, ip6_plen);
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size_t l4hdroff;
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size_t l4offset;
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uint16_t plen;
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uint16_t csum;
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2010-12-12 01:37:46 +03:00
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KASSERT(m->m_flags & M_PKTHDR);
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KASSERT((m->m_pkthdr.csum_flags & csum_flags) == csum_flags);
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KASSERT(csum_flags == M_CSUM_UDPv6 || csum_flags == M_CSUM_TCPv6);
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if (__predict_true(hdrlen + sizeof(struct ip6_hdr) <= m->m_len)) {
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plen = *(uint16_t *)(mtod(m, char *) + ip6_plen_offset);
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} else {
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m_copydata(m, ip6_plen_offset, sizeof(plen), &plen);
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}
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2011-04-26 02:07:57 +04:00
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plen = ntohs(plen);
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2010-12-12 01:37:46 +03:00
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2011-04-26 02:07:57 +04:00
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l4hdroff = M_CSUM_DATA_IPv6_HL(m->m_pkthdr.csum_data);
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l4offset = hdrlen + l4hdroff;
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csum = in6_cksum(m, 0, l4offset, plen - l4hdroff);
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2010-12-12 01:37:46 +03:00
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if (csum == 0 && (csum_flags & M_CSUM_UDPv6) != 0)
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csum = 0xffff;
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l4offset += M_CSUM_DATA_IPv6_OFFSET(m->m_pkthdr.csum_data);
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if (__predict_true((l4offset + sizeof(uint16_t)) <= m->m_len)) {
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*(uint16_t *)(mtod(m, char *) + l4offset) = csum;
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} else {
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m_copyback(m, l4offset, sizeof(csum), (void *) &csum);
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}
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m->m_pkthdr.csum_flags ^= csum_flags;
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}
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