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ipsec.c revision 1.136
      1  1.136      maxv /* $NetBSD: ipsec.c,v 1.136 2018/02/26 06:48:01 maxv Exp $ */
      2  1.129      maxv /* $FreeBSD: src/sys/netipsec/ipsec.c,v 1.2.2.2 2003/07/01 01:38:13 sam Exp $ */
      3  1.129      maxv /* $KAME: ipsec.c,v 1.103 2001/05/24 07:14:18 sakane Exp $ */
      4    1.1  jonathan 
      5    1.1  jonathan /*
      6    1.1  jonathan  * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
      7    1.1  jonathan  * All rights reserved.
      8    1.1  jonathan  *
      9    1.1  jonathan  * Redistribution and use in source and binary forms, with or without
     10    1.1  jonathan  * modification, are permitted provided that the following conditions
     11    1.1  jonathan  * are met:
     12    1.1  jonathan  * 1. Redistributions of source code must retain the above copyright
     13   1.26  degroote  *	notice, this list of conditions and the following disclaimer.
     14    1.1  jonathan  * 2. Redistributions in binary form must reproduce the above copyright
     15   1.26  degroote  *	notice, this list of conditions and the following disclaimer in the
     16   1.26  degroote  *	documentation and/or other materials provided with the distribution.
     17    1.1  jonathan  * 3. Neither the name of the project nor the names of its contributors
     18   1.26  degroote  *	may be used to endorse or promote products derived from this software
     19   1.26  degroote  *	without specific prior written permission.
     20    1.1  jonathan  *
     21    1.1  jonathan  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
     22    1.1  jonathan  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     23    1.1  jonathan  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     24    1.1  jonathan  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
     25    1.1  jonathan  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     26    1.1  jonathan  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     27    1.1  jonathan  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     28    1.1  jonathan  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     29    1.1  jonathan  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     30    1.1  jonathan  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     31    1.1  jonathan  * SUCH DAMAGE.
     32    1.1  jonathan  */
     33    1.1  jonathan 
     34    1.1  jonathan #include <sys/cdefs.h>
     35  1.136      maxv __KERNEL_RCSID(0, "$NetBSD: ipsec.c,v 1.136 2018/02/26 06:48:01 maxv Exp $");
     36    1.1  jonathan 
     37    1.1  jonathan /*
     38    1.1  jonathan  * IPsec controller part.
     39    1.1  jonathan  */
     40    1.1  jonathan 
     41   1.71     ozaki #if defined(_KERNEL_OPT)
     42    1.1  jonathan #include "opt_inet.h"
     43    1.1  jonathan #include "opt_ipsec.h"
     44   1.71     ozaki #endif
     45    1.1  jonathan 
     46    1.1  jonathan #include <sys/param.h>
     47    1.1  jonathan #include <sys/systm.h>
     48    1.1  jonathan #include <sys/mbuf.h>
     49    1.1  jonathan #include <sys/domain.h>
     50    1.1  jonathan #include <sys/protosw.h>
     51    1.1  jonathan #include <sys/socket.h>
     52    1.1  jonathan #include <sys/socketvar.h>
     53    1.1  jonathan #include <sys/errno.h>
     54    1.1  jonathan #include <sys/time.h>
     55    1.1  jonathan #include <sys/kernel.h>
     56    1.1  jonathan #include <sys/syslog.h>
     57    1.1  jonathan #include <sys/sysctl.h>
     58    1.1  jonathan #include <sys/proc.h>
     59   1.44      elad #include <sys/kauth.h>
     60   1.90     ozaki #include <sys/cpu.h>
     61   1.90     ozaki #include <sys/kmem.h>
     62  1.113     ozaki #include <sys/pserialize.h>
     63    1.1  jonathan 
     64    1.1  jonathan #include <net/if.h>
     65    1.1  jonathan #include <net/route.h>
     66    1.1  jonathan 
     67    1.1  jonathan #include <netinet/in.h>
     68    1.1  jonathan #include <netinet/in_systm.h>
     69    1.1  jonathan #include <netinet/ip.h>
     70    1.1  jonathan #include <netinet/ip_var.h>
     71    1.1  jonathan #include <netinet/in_var.h>
     72    1.1  jonathan #include <netinet/udp.h>
     73    1.1  jonathan #include <netinet/udp_var.h>
     74    1.1  jonathan #include <netinet/tcp.h>
     75    1.1  jonathan #include <netinet/udp.h>
     76   1.38   mlelstv #include <netinet/ip_icmp.h>
     77   1.60     rmind #include <netinet/ip_private.h>
     78    1.1  jonathan 
     79    1.1  jonathan #include <netinet/ip6.h>
     80    1.1  jonathan #ifdef INET6
     81    1.1  jonathan #include <netinet6/ip6_var.h>
     82    1.1  jonathan #endif
     83    1.1  jonathan #include <netinet/in_pcb.h>
     84    1.1  jonathan #ifdef INET6
     85    1.5  jonathan #include <netinet6/in6_pcb.h>
     86    1.1  jonathan #include <netinet/icmp6.h>
     87    1.1  jonathan #endif
     88    1.1  jonathan 
     89    1.1  jonathan #include <netipsec/ipsec.h>
     90   1.13  jonathan #include <netipsec/ipsec_var.h>
     91   1.37   thorpej #include <netipsec/ipsec_private.h>
     92    1.1  jonathan #ifdef INET6
     93    1.1  jonathan #include <netipsec/ipsec6.h>
     94    1.1  jonathan #endif
     95    1.1  jonathan #include <netipsec/ah_var.h>
     96    1.1  jonathan #include <netipsec/esp_var.h>
     97    1.1  jonathan #include <netipsec/ipcomp.h>		/*XXX*/
     98    1.1  jonathan #include <netipsec/ipcomp_var.h>
     99    1.1  jonathan 
    100    1.4       tls #include <netipsec/key.h>
    101    1.4       tls #include <netipsec/keydb.h>
    102    1.4       tls #include <netipsec/key_debug.h>
    103    1.1  jonathan 
    104    1.1  jonathan #include <netipsec/xform.h>
    105    1.1  jonathan 
    106   1.63  christos int ipsec_used = 0;
    107   1.63  christos int ipsec_enabled = 1;
    108   1.63  christos 
    109    1.1  jonathan #ifdef IPSEC_DEBUG
    110    1.1  jonathan int ipsec_debug = 1;
    111   1.21    rpaulo 
    112  1.129      maxv /*
    113   1.21    rpaulo  * When set to 1, IPsec will send packets with the same sequence number.
    114   1.21    rpaulo  * This allows to verify if the other side has proper replay attacks detection.
    115   1.21    rpaulo  */
    116   1.21    rpaulo int ipsec_replay = 0;
    117   1.21    rpaulo 
    118  1.129      maxv /*
    119   1.21    rpaulo  * When set 1, IPsec will send packets with corrupted HMAC.
    120   1.21    rpaulo  * This allows to verify if the other side properly detects modified packets.
    121   1.21    rpaulo  */
    122   1.21    rpaulo int ipsec_integrity = 0;
    123    1.1  jonathan #else
    124    1.1  jonathan int ipsec_debug = 0;
    125    1.1  jonathan #endif
    126    1.1  jonathan 
    127   1.37   thorpej percpu_t *ipsecstat_percpu;
    128  1.129      maxv 
    129    1.1  jonathan int ip4_ah_offsetmask = 0;	/* maybe IP_DF? */
    130   1.18  christos int ip4_ipsec_dfbit = 2;	/* DF bit on encap. 0: clear 1: set 2: copy */
    131    1.1  jonathan int ip4_esp_trans_deflev = IPSEC_LEVEL_USE;
    132    1.1  jonathan int ip4_esp_net_deflev = IPSEC_LEVEL_USE;
    133    1.1  jonathan int ip4_ah_trans_deflev = IPSEC_LEVEL_USE;
    134    1.1  jonathan int ip4_ah_net_deflev = IPSEC_LEVEL_USE;
    135    1.1  jonathan struct secpolicy ip4_def_policy;
    136    1.1  jonathan int ip4_ipsec_ecn = 0;		/* ECN ignore(-1)/forbidden(0)/allowed(1) */
    137    1.9   thorpej 
    138    1.9   thorpej u_int ipsec_spdgen = 1;		/* SPD generation # */
    139    1.9   thorpej 
    140  1.119     ozaki static struct secpolicy ipsec_dummy_sp __read_mostly = {
    141  1.119     ozaki 	.state		= IPSEC_SPSTATE_ALIVE,
    142  1.119     ozaki 	/* If ENTRUST, the dummy SP never be used. See ipsec_getpolicybysock. */
    143  1.119     ozaki 	.policy		= IPSEC_POLICY_ENTRUST,
    144  1.119     ozaki };
    145  1.119     ozaki 
    146  1.129      maxv static struct secpolicy *ipsec_checkpcbcache(struct mbuf *,
    147  1.129      maxv     struct inpcbpolicy *, int);
    148  1.129      maxv static int ipsec_fillpcbcache(struct inpcbpolicy *, struct mbuf *,
    149  1.129      maxv     struct secpolicy *, int);
    150  1.129      maxv static int ipsec_invalpcbcache(struct inpcbpolicy *, int);
    151    1.9   thorpej 
    152    1.1  jonathan /*
    153    1.1  jonathan  * Crypto support requirements:
    154    1.1  jonathan  *
    155    1.1  jonathan  *  1	require hardware support
    156    1.1  jonathan  * -1	require software support
    157    1.1  jonathan  *  0	take anything
    158    1.1  jonathan  */
    159  1.129      maxv int crypto_support = 0;
    160    1.1  jonathan 
    161    1.5  jonathan static struct secpolicy *ipsec_getpolicybysock(struct mbuf *, u_int,
    162   1.75     ozaki     struct inpcb_hdr *, int *);
    163    1.5  jonathan 
    164    1.1  jonathan #ifdef INET6
    165    1.1  jonathan int ip6_esp_trans_deflev = IPSEC_LEVEL_USE;
    166    1.1  jonathan int ip6_esp_net_deflev = IPSEC_LEVEL_USE;
    167    1.1  jonathan int ip6_ah_trans_deflev = IPSEC_LEVEL_USE;
    168    1.1  jonathan int ip6_ah_net_deflev = IPSEC_LEVEL_USE;
    169    1.5  jonathan struct secpolicy ip6_def_policy;
    170    1.1  jonathan int ip6_ipsec_ecn = 0;		/* ECN ignore(-1)/forbidden(0)/allowed(1) */
    171  1.129      maxv #endif
    172    1.1  jonathan 
    173  1.129      maxv static int ipsec4_setspidx_inpcb(struct mbuf *, struct inpcb *);
    174    1.1  jonathan #ifdef INET6
    175  1.129      maxv static int ipsec6_setspidx_in6pcb(struct mbuf *, struct in6pcb *);
    176    1.1  jonathan #endif
    177  1.129      maxv static int ipsec_setspidx(struct mbuf *, struct secpolicyindex *, int);
    178  1.129      maxv static void ipsec4_get_ulp(struct mbuf *m, struct secpolicyindex *, int);
    179  1.129      maxv static int ipsec4_setspidx_ipaddr(struct mbuf *, struct secpolicyindex *);
    180    1.1  jonathan #ifdef INET6
    181  1.129      maxv static void ipsec6_get_ulp(struct mbuf *m, struct secpolicyindex *, int);
    182  1.129      maxv static int ipsec6_setspidx_ipaddr(struct mbuf *, struct secpolicyindex *);
    183    1.1  jonathan #endif
    184  1.129      maxv static void ipsec_delpcbpolicy(struct inpcbpolicy *);
    185  1.115     ozaki #if 0 /* unused */
    186  1.129      maxv static struct secpolicy *ipsec_deepcopy_policy(const struct secpolicy *);
    187  1.115     ozaki #endif
    188  1.129      maxv static int ipsec_set_policy(struct secpolicy **, int, const void *, size_t,
    189   1.55  drochner     kauth_cred_t);
    190  1.129      maxv static int ipsec_get_policy(struct secpolicy *, struct mbuf **);
    191  1.113     ozaki static void ipsec_destroy_policy(struct secpolicy *);
    192  1.132      maxv static int ipsec_sp_reject(const struct secpolicy *, const struct mbuf *);
    193  1.129      maxv static void vshiftl(unsigned char *, int, int);
    194  1.132      maxv static size_t ipsec_sp_hdrsiz(const struct secpolicy *, const struct mbuf *);
    195    1.1  jonathan 
    196    1.9   thorpej /*
    197    1.9   thorpej  * Try to validate and use cached policy on a PCB.
    198    1.9   thorpej  */
    199    1.9   thorpej static struct secpolicy *
    200    1.9   thorpej ipsec_checkpcbcache(struct mbuf *m, struct inpcbpolicy *pcbsp, int dir)
    201    1.9   thorpej {
    202    1.9   thorpej 	struct secpolicyindex spidx;
    203  1.113     ozaki 	struct secpolicy *sp = NULL;
    204  1.113     ozaki 	int s;
    205    1.9   thorpej 
    206   1.81     ozaki 	KASSERT(IPSEC_DIR_IS_VALID(dir));
    207   1.76     ozaki 	KASSERT(pcbsp != NULL);
    208   1.94     ozaki 	KASSERT(dir < __arraycount(pcbsp->sp_cache));
    209   1.84     ozaki 	KASSERT(inph_locked(pcbsp->sp_inph));
    210   1.76     ozaki 
    211  1.113     ozaki 	/*
    212  1.113     ozaki 	 * Checking the generation and sp->state and taking a reference to an SP
    213  1.113     ozaki 	 * must be in a critical section of pserialize. See key_unlink_sp.
    214  1.113     ozaki 	 */
    215  1.113     ozaki 	s = pserialize_read_enter();
    216    1.9   thorpej 	/* SPD table change invalidate all the caches. */
    217    1.9   thorpej 	if (ipsec_spdgen != pcbsp->sp_cache[dir].cachegen) {
    218    1.9   thorpej 		ipsec_invalpcbcache(pcbsp, dir);
    219  1.113     ozaki 		goto out;
    220    1.9   thorpej 	}
    221  1.113     ozaki 	sp = pcbsp->sp_cache[dir].cachesp;
    222  1.113     ozaki 	if (sp == NULL)
    223  1.113     ozaki 		goto out;
    224  1.113     ozaki 	if (sp->state != IPSEC_SPSTATE_ALIVE) {
    225  1.113     ozaki 		sp = NULL;
    226    1.9   thorpej 		ipsec_invalpcbcache(pcbsp, dir);
    227  1.113     ozaki 		goto out;
    228    1.9   thorpej 	}
    229    1.9   thorpej 	if ((pcbsp->sp_cacheflags & IPSEC_PCBSP_CONNECTED) == 0) {
    230  1.113     ozaki 		/* NB: assume ipsec_setspidx never sleep */
    231  1.113     ozaki 		if (ipsec_setspidx(m, &spidx, 1) != 0) {
    232  1.113     ozaki 			sp = NULL;
    233  1.113     ozaki 			goto out;
    234  1.113     ozaki 		}
    235   1.29  degroote 
    236   1.29  degroote 		/*
    237   1.29  degroote 		 * We have to make an exact match here since the cached rule
    238   1.29  degroote 		 * might have lower priority than a rule that would otherwise
    239  1.129      maxv 		 * have matched the packet.
    240   1.29  degroote 		 */
    241  1.113     ozaki 		if (memcmp(&pcbsp->sp_cache[dir].cacheidx, &spidx,
    242  1.113     ozaki 		    sizeof(spidx))) {
    243  1.113     ozaki 			sp = NULL;
    244  1.113     ozaki 			goto out;
    245  1.113     ozaki 		}
    246    1.9   thorpej 	} else {
    247    1.9   thorpej 		/*
    248    1.9   thorpej 		 * The pcb is connected, and the L4 code is sure that:
    249    1.9   thorpej 		 * - outgoing side uses inp_[lf]addr
    250    1.9   thorpej 		 * - incoming side looks up policy after inpcb lookup
    251    1.9   thorpej 		 * and address pair is know to be stable.  We do not need
    252    1.9   thorpej 		 * to generate spidx again, nor check the address match again.
    253    1.9   thorpej 		 *
    254    1.9   thorpej 		 * For IPv4/v6 SOCK_STREAM sockets, this assumptions holds
    255    1.9   thorpej 		 * and there are calls to ipsec_pcbconn() from in_pcbconnect().
    256    1.9   thorpej 		 */
    257    1.9   thorpej 	}
    258    1.9   thorpej 
    259  1.113     ozaki 	sp->lastused = time_second;
    260  1.113     ozaki 	KEY_SP_REF(sp);
    261   1.77     ozaki 	KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_STAMP,
    262   1.77     ozaki 	    "DP cause refcnt++:%d SP:%p\n",
    263  1.113     ozaki 	    key_sp_refcnt(sp), pcbsp->sp_cache[dir].cachesp);
    264  1.113     ozaki out:
    265  1.113     ozaki 	pserialize_read_exit(s);
    266  1.113     ozaki 	return sp;
    267    1.9   thorpej }
    268    1.9   thorpej 
    269    1.9   thorpej static int
    270    1.9   thorpej ipsec_fillpcbcache(struct inpcbpolicy *pcbsp, struct mbuf *m,
    271  1.129      maxv     struct secpolicy *sp, int dir)
    272    1.9   thorpej {
    273    1.9   thorpej 
    274   1.81     ozaki 	KASSERT(IPSEC_DIR_IS_INOROUT(dir));
    275   1.94     ozaki 	KASSERT(dir < __arraycount(pcbsp->sp_cache));
    276   1.84     ozaki 	KASSERT(inph_locked(pcbsp->sp_inph));
    277    1.9   thorpej 
    278    1.9   thorpej 	pcbsp->sp_cache[dir].cachesp = NULL;
    279   1.98     ozaki 	pcbsp->sp_cache[dir].cachehint = IPSEC_PCBHINT_UNKNOWN;
    280    1.9   thorpej 	if (ipsec_setspidx(m, &pcbsp->sp_cache[dir].cacheidx, 1) != 0) {
    281    1.9   thorpej 		return EINVAL;
    282    1.9   thorpej 	}
    283    1.9   thorpej 	pcbsp->sp_cache[dir].cachesp = sp;
    284    1.9   thorpej 	if (pcbsp->sp_cache[dir].cachesp) {
    285    1.9   thorpej 		/*
    286    1.9   thorpej 		 * If the PCB is connected, we can remember a hint to
    287    1.9   thorpej 		 * possibly short-circuit IPsec processing in other places.
    288    1.9   thorpej 		 */
    289    1.9   thorpej 		if (pcbsp->sp_cacheflags & IPSEC_PCBSP_CONNECTED) {
    290    1.9   thorpej 			switch (pcbsp->sp_cache[dir].cachesp->policy) {
    291    1.9   thorpej 			case IPSEC_POLICY_NONE:
    292    1.9   thorpej 			case IPSEC_POLICY_BYPASS:
    293    1.9   thorpej 				pcbsp->sp_cache[dir].cachehint =
    294  1.100     ozaki 				    IPSEC_PCBHINT_NO;
    295    1.9   thorpej 				break;
    296    1.9   thorpej 			default:
    297    1.9   thorpej 				pcbsp->sp_cache[dir].cachehint =
    298  1.100     ozaki 				    IPSEC_PCBHINT_YES;
    299    1.9   thorpej 			}
    300    1.9   thorpej 		}
    301    1.9   thorpej 	}
    302    1.9   thorpej 	pcbsp->sp_cache[dir].cachegen = ipsec_spdgen;
    303    1.9   thorpej 
    304    1.9   thorpej 	return 0;
    305    1.9   thorpej }
    306    1.9   thorpej 
    307    1.9   thorpej static int
    308    1.9   thorpej ipsec_invalpcbcache(struct inpcbpolicy *pcbsp, int dir)
    309    1.9   thorpej {
    310    1.9   thorpej 	int i;
    311    1.9   thorpej 
    312   1.84     ozaki 	KASSERT(inph_locked(pcbsp->sp_inph));
    313   1.84     ozaki 
    314    1.9   thorpej 	for (i = IPSEC_DIR_INBOUND; i <= IPSEC_DIR_OUTBOUND; i++) {
    315    1.9   thorpej 		if (dir != IPSEC_DIR_ANY && i != dir)
    316    1.9   thorpej 			continue;
    317    1.9   thorpej 		pcbsp->sp_cache[i].cachesp = NULL;
    318   1.98     ozaki 		pcbsp->sp_cache[i].cachehint = IPSEC_PCBHINT_UNKNOWN;
    319    1.9   thorpej 		pcbsp->sp_cache[i].cachegen = 0;
    320   1.41    cegger 		memset(&pcbsp->sp_cache[i].cacheidx, 0,
    321  1.100     ozaki 		    sizeof(pcbsp->sp_cache[i].cacheidx));
    322    1.9   thorpej 	}
    323    1.9   thorpej 	return 0;
    324    1.9   thorpej }
    325    1.9   thorpej 
    326    1.9   thorpej void
    327    1.9   thorpej ipsec_pcbconn(struct inpcbpolicy *pcbsp)
    328    1.9   thorpej {
    329    1.9   thorpej 
    330   1.84     ozaki 	KASSERT(inph_locked(pcbsp->sp_inph));
    331   1.84     ozaki 
    332    1.9   thorpej 	pcbsp->sp_cacheflags |= IPSEC_PCBSP_CONNECTED;
    333    1.9   thorpej 	ipsec_invalpcbcache(pcbsp, IPSEC_DIR_ANY);
    334    1.9   thorpej }
    335    1.9   thorpej 
    336    1.9   thorpej void
    337    1.9   thorpej ipsec_pcbdisconn(struct inpcbpolicy *pcbsp)
    338    1.9   thorpej {
    339    1.9   thorpej 
    340   1.84     ozaki 	KASSERT(inph_locked(pcbsp->sp_inph));
    341   1.84     ozaki 
    342    1.9   thorpej 	pcbsp->sp_cacheflags &= ~IPSEC_PCBSP_CONNECTED;
    343    1.9   thorpej 	ipsec_invalpcbcache(pcbsp, IPSEC_DIR_ANY);
    344    1.9   thorpej }
    345    1.9   thorpej 
    346    1.9   thorpej void
    347    1.9   thorpej ipsec_invalpcbcacheall(void)
    348    1.9   thorpej {
    349    1.9   thorpej 
    350    1.9   thorpej 	if (ipsec_spdgen == UINT_MAX)
    351    1.9   thorpej 		ipsec_spdgen = 1;
    352    1.9   thorpej 	else
    353    1.9   thorpej 		ipsec_spdgen++;
    354    1.9   thorpej }
    355    1.9   thorpej 
    356    1.1  jonathan /*
    357    1.1  jonathan  * Return a held reference to the default SP.
    358    1.1  jonathan  */
    359    1.1  jonathan static struct secpolicy *
    360  1.101     ozaki key_get_default_sp(int af, const char *where, int tag)
    361    1.1  jonathan {
    362    1.1  jonathan 	struct secpolicy *sp;
    363    1.1  jonathan 
    364   1.77     ozaki 	KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_STAMP, "DP from %s:%u\n", where, tag);
    365    1.1  jonathan 
    366   1.78     ozaki 	switch(af) {
    367   1.78     ozaki 	case AF_INET:
    368   1.78     ozaki 		sp = &ip4_def_policy;
    369   1.78     ozaki 		break;
    370   1.31  degroote #ifdef INET6
    371   1.78     ozaki 	case AF_INET6:
    372   1.78     ozaki 		sp = &ip6_def_policy;
    373   1.78     ozaki 		break;
    374   1.31  degroote #endif
    375   1.78     ozaki 	default:
    376   1.77     ozaki 		KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_STAMP,
    377   1.77     ozaki 		    "unexpected protocol family %u\n", af);
    378   1.78     ozaki 		return NULL;
    379   1.78     ozaki 	}
    380   1.31  degroote 
    381    1.1  jonathan 	if (sp->policy != IPSEC_POLICY_DISCARD &&
    382  1.132      maxv 	    sp->policy != IPSEC_POLICY_NONE) {
    383   1.92     ozaki 		IPSECLOG(LOG_INFO, "fixed system default policy: %d->%d\n",
    384   1.92     ozaki 		    sp->policy, IPSEC_POLICY_NONE);
    385    1.1  jonathan 		sp->policy = IPSEC_POLICY_NONE;
    386    1.1  jonathan 	}
    387   1.95     ozaki 	KEY_SP_REF(sp);
    388    1.1  jonathan 
    389   1.77     ozaki 	KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_STAMP, "DP returns SP:%p (%u)\n",
    390  1.111     ozaki 	    sp, key_sp_refcnt(sp));
    391    1.1  jonathan 	return sp;
    392    1.1  jonathan }
    393  1.129      maxv 
    394  1.101     ozaki #define	KEY_GET_DEFAULT_SP(af) \
    395  1.101     ozaki 	key_get_default_sp((af), __func__, __LINE__)
    396    1.1  jonathan 
    397    1.1  jonathan /*
    398    1.1  jonathan  * For OUTBOUND packet having a socket. Searching SPD for packet,
    399    1.1  jonathan  * and return a pointer to SP.
    400    1.1  jonathan  * OUT:	NULL:	no apropreate SP found, the following value is set to error.
    401    1.1  jonathan  *		0	: bypass
    402    1.1  jonathan  *		EACCES	: discard packet.
    403    1.1  jonathan  *		ENOENT	: ipsec_acquire() in progress, maybe.
    404    1.7       wiz  *		others	: error occurred.
    405    1.1  jonathan  *	others:	a pointer to SP
    406    1.1  jonathan  *
    407   1.20       wiz  * NOTE: IPv6 mapped address concern is implemented here.
    408    1.1  jonathan  */
    409    1.5  jonathan static struct secpolicy *
    410   1.83     ozaki ipsec_getpolicybysock(struct mbuf *m, u_int dir, struct inpcb_hdr *inph,
    411   1.75     ozaki     int *error)
    412    1.1  jonathan {
    413    1.1  jonathan 	struct inpcbpolicy *pcbsp = NULL;
    414    1.1  jonathan 	struct secpolicy *currsp = NULL;	/* policy on socket */
    415    1.1  jonathan 	struct secpolicy *sp;
    416    1.1  jonathan 	int af;
    417    1.1  jonathan 
    418   1.73     ozaki 	KASSERT(m != NULL);
    419   1.83     ozaki 	KASSERT(inph != NULL);
    420   1.73     ozaki 	KASSERT(error != NULL);
    421   1.81     ozaki 	KASSERTMSG(IPSEC_DIR_IS_INOROUT(dir), "invalid direction %u", dir);
    422    1.1  jonathan 
    423   1.83     ozaki 	KASSERT(inph->inph_socket != NULL);
    424   1.84     ozaki 	KASSERT(inph_locked(inph));
    425    1.5  jonathan 
    426    1.5  jonathan 	/* XXX FIXME inpcb/in6pcb  vs socket*/
    427   1.83     ozaki 	af = inph->inph_af;
    428   1.73     ozaki 	KASSERTMSG(af == AF_INET || af == AF_INET6,
    429   1.73     ozaki 	    "unexpected protocol family %u", af);
    430    1.1  jonathan 
    431   1.83     ozaki 	KASSERT(inph->inph_sp != NULL);
    432    1.9   thorpej 	/* If we have a cached entry, and if it is still valid, use it. */
    433   1.37   thorpej 	IPSEC_STATINC(IPSEC_STAT_SPDCACHELOOKUP);
    434   1.83     ozaki 	currsp = ipsec_checkpcbcache(m, inph->inph_sp, dir);
    435    1.9   thorpej 	if (currsp) {
    436    1.9   thorpej 		*error = 0;
    437    1.9   thorpej 		return currsp;
    438    1.9   thorpej 	}
    439   1.37   thorpej 	IPSEC_STATINC(IPSEC_STAT_SPDCACHEMISS);
    440    1.9   thorpej 
    441    1.1  jonathan 	switch (af) {
    442    1.5  jonathan 	case AF_INET: {
    443   1.83     ozaki 		struct inpcb *in4p = (struct inpcb *)inph;
    444    1.1  jonathan 		/* set spidx in pcb */
    445    1.5  jonathan 		*error = ipsec4_setspidx_inpcb(m, in4p);
    446    1.5  jonathan 		pcbsp = in4p->inp_sp;
    447    1.1  jonathan 		break;
    448    1.5  jonathan 		}
    449    1.5  jonathan #if defined(INET6)
    450    1.5  jonathan 	case AF_INET6: {
    451   1.83     ozaki 		struct in6pcb *in6p = (struct in6pcb *)inph;
    452    1.1  jonathan 		/* set spidx in pcb */
    453    1.5  jonathan 		*error = ipsec6_setspidx_in6pcb(m, in6p);
    454    1.5  jonathan 		pcbsp = in6p->in6p_sp;
    455    1.1  jonathan 		break;
    456    1.5  jonathan 		}
    457    1.1  jonathan #endif
    458    1.1  jonathan 	default:
    459    1.1  jonathan 		*error = EPFNOSUPPORT;
    460    1.1  jonathan 		break;
    461    1.1  jonathan 	}
    462    1.1  jonathan 	if (*error)
    463    1.1  jonathan 		return NULL;
    464    1.1  jonathan 
    465   1.73     ozaki 	KASSERT(pcbsp != NULL);
    466    1.1  jonathan 	switch (dir) {
    467    1.1  jonathan 	case IPSEC_DIR_INBOUND:
    468    1.1  jonathan 		currsp = pcbsp->sp_in;
    469    1.1  jonathan 		break;
    470    1.1  jonathan 	case IPSEC_DIR_OUTBOUND:
    471    1.1  jonathan 		currsp = pcbsp->sp_out;
    472    1.1  jonathan 		break;
    473    1.1  jonathan 	}
    474   1.73     ozaki 	KASSERT(currsp != NULL);
    475    1.1  jonathan 
    476    1.1  jonathan 	if (pcbsp->priv) {			/* when privilieged socket */
    477    1.1  jonathan 		switch (currsp->policy) {
    478    1.1  jonathan 		case IPSEC_POLICY_BYPASS:
    479    1.1  jonathan 		case IPSEC_POLICY_IPSEC:
    480   1.95     ozaki 			KEY_SP_REF(currsp);
    481    1.1  jonathan 			sp = currsp;
    482    1.1  jonathan 			break;
    483    1.1  jonathan 
    484    1.1  jonathan 		case IPSEC_POLICY_ENTRUST:
    485    1.1  jonathan 			/* look for a policy in SPD */
    486  1.101     ozaki 			sp = KEY_LOOKUP_SP_BYSPIDX(&currsp->spidx, dir);
    487    1.1  jonathan 			if (sp == NULL)		/* no SP found */
    488  1.101     ozaki 				sp = KEY_GET_DEFAULT_SP(af);
    489    1.1  jonathan 			break;
    490    1.1  jonathan 
    491    1.1  jonathan 		default:
    492   1.92     ozaki 			IPSECLOG(LOG_ERR, "Invalid policy for PCB %d\n",
    493   1.92     ozaki 			    currsp->policy);
    494    1.1  jonathan 			*error = EINVAL;
    495    1.1  jonathan 			return NULL;
    496    1.1  jonathan 		}
    497    1.1  jonathan 	} else {				/* unpriv, SPD has policy */
    498  1.101     ozaki 		sp = KEY_LOOKUP_SP_BYSPIDX(&currsp->spidx, dir);
    499    1.1  jonathan 		if (sp == NULL) {		/* no SP found */
    500    1.1  jonathan 			switch (currsp->policy) {
    501    1.1  jonathan 			case IPSEC_POLICY_BYPASS:
    502   1.92     ozaki 				IPSECLOG(LOG_ERR, "Illegal policy for "
    503   1.92     ozaki 				    "non-priviliged defined %d\n",
    504   1.92     ozaki 				    currsp->policy);
    505    1.1  jonathan 				*error = EINVAL;
    506    1.1  jonathan 				return NULL;
    507    1.1  jonathan 
    508    1.1  jonathan 			case IPSEC_POLICY_ENTRUST:
    509  1.101     ozaki 				sp = KEY_GET_DEFAULT_SP(af);
    510    1.1  jonathan 				break;
    511    1.1  jonathan 
    512    1.1  jonathan 			case IPSEC_POLICY_IPSEC:
    513   1.95     ozaki 				KEY_SP_REF(currsp);
    514    1.1  jonathan 				sp = currsp;
    515    1.1  jonathan 				break;
    516    1.1  jonathan 
    517    1.1  jonathan 			default:
    518   1.92     ozaki 				IPSECLOG(LOG_ERR, "Invalid policy for "
    519   1.92     ozaki 				    "PCB %d\n", currsp->policy);
    520    1.1  jonathan 				*error = EINVAL;
    521    1.1  jonathan 				return NULL;
    522    1.1  jonathan 			}
    523    1.1  jonathan 		}
    524    1.1  jonathan 	}
    525   1.73     ozaki 	KASSERTMSG(sp != NULL, "null SP (priv %u policy %u", pcbsp->priv,
    526   1.73     ozaki 	    currsp->policy);
    527   1.77     ozaki 	KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_STAMP,
    528   1.77     ozaki 	    "DP (priv %u policy %u) allocates SP:%p (refcnt %u)\n",
    529  1.111     ozaki 	    pcbsp->priv, currsp->policy, sp, key_sp_refcnt(sp));
    530    1.9   thorpej 	ipsec_fillpcbcache(pcbsp, m, sp, dir);
    531    1.1  jonathan 	return sp;
    532    1.1  jonathan }
    533    1.1  jonathan 
    534    1.1  jonathan /*
    535  1.132      maxv  * For FORWARDING packet or OUTBOUND without a socket. Searching SPD for packet,
    536    1.1  jonathan  * and return a pointer to SP.
    537    1.1  jonathan  * OUT:	positive: a pointer to the entry for security policy leaf matched.
    538    1.1  jonathan  *	NULL:	no apropreate SP found, the following value is set to error.
    539    1.1  jonathan  *		0	: bypass
    540    1.1  jonathan  *		EACCES	: discard packet.
    541    1.1  jonathan  *		ENOENT	: ipsec_acquire() in progress, maybe.
    542    1.7       wiz  *		others	: error occurred.
    543    1.1  jonathan  */
    544  1.131      maxv static struct secpolicy *
    545   1.33  degroote ipsec_getpolicybyaddr(struct mbuf *m, u_int dir, int flag, int *error)
    546    1.1  jonathan {
    547    1.1  jonathan 	struct secpolicyindex spidx;
    548    1.1  jonathan 	struct secpolicy *sp;
    549    1.1  jonathan 
    550   1.73     ozaki 	KASSERT(m != NULL);
    551   1.73     ozaki 	KASSERT(error != NULL);
    552   1.81     ozaki 	KASSERTMSG(IPSEC_DIR_IS_INOROUT(dir), "invalid direction %u", dir);
    553    1.1  jonathan 
    554    1.1  jonathan 	sp = NULL;
    555   1.32  degroote 
    556   1.32  degroote 	/* Make an index to look for a policy. */
    557   1.32  degroote 	*error = ipsec_setspidx(m, &spidx, (flag & IP_FORWARDING) ? 0 : 1);
    558   1.32  degroote 	if (*error != 0) {
    559   1.92     ozaki 		IPSECLOG(LOG_DEBUG, "setpidx failed, dir %u flag %u\n", dir, flag);
    560  1.129      maxv 		memset(&spidx, 0, sizeof(spidx));
    561   1.32  degroote 		return NULL;
    562   1.32  degroote 	}
    563   1.32  degroote 
    564   1.32  degroote 	spidx.dir = dir;
    565   1.32  degroote 
    566    1.1  jonathan 	if (key_havesp(dir)) {
    567  1.101     ozaki 		sp = KEY_LOOKUP_SP_BYSPIDX(&spidx, dir);
    568    1.1  jonathan 	}
    569   1.32  degroote 
    570    1.1  jonathan 	if (sp == NULL)			/* no SP found, use system default */
    571  1.101     ozaki 		sp = KEY_GET_DEFAULT_SP(spidx.dst.sa.sa_family);
    572   1.73     ozaki 	KASSERT(sp != NULL);
    573    1.1  jonathan 	return sp;
    574    1.1  jonathan }
    575    1.1  jonathan 
    576  1.131      maxv static struct secpolicy *
    577   1.33  degroote ipsec4_checkpolicy(struct mbuf *m, u_int dir, u_int flag, int *error,
    578  1.129      maxv     struct inpcb *inp)
    579    1.1  jonathan {
    580    1.1  jonathan 	struct secpolicy *sp;
    581    1.1  jonathan 
    582    1.1  jonathan 	*error = 0;
    583    1.5  jonathan 
    584   1.82     ozaki 	if (inp == NULL) {
    585    1.1  jonathan 		sp = ipsec_getpolicybyaddr(m, dir, flag, error);
    586   1.82     ozaki 	} else {
    587  1.133      maxv 		struct inpcb_hdr *inph = (struct inpcb_hdr *)inp;
    588  1.133      maxv 		KASSERT(inph->inph_socket != NULL);
    589  1.133      maxv 		sp = ipsec_getpolicybysock(m, dir, inph, error);
    590   1.82     ozaki 	}
    591    1.1  jonathan 	if (sp == NULL) {
    592   1.73     ozaki 		KASSERTMSG(*error != 0, "getpolicy failed w/o error");
    593   1.37   thorpej 		IPSEC_STATINC(IPSEC_STAT_OUT_INVAL);
    594    1.1  jonathan 		return NULL;
    595    1.1  jonathan 	}
    596   1.73     ozaki 	KASSERTMSG(*error == 0, "sp w/ error set to %u", *error);
    597  1.135      maxv 
    598    1.1  jonathan 	switch (sp->policy) {
    599    1.1  jonathan 	case IPSEC_POLICY_ENTRUST:
    600    1.1  jonathan 	default:
    601   1.62  christos 		printf("%s: invalid policy %u\n", __func__, sp->policy);
    602    1.1  jonathan 		/* fall thru... */
    603    1.1  jonathan 	case IPSEC_POLICY_DISCARD:
    604   1.37   thorpej 		IPSEC_STATINC(IPSEC_STAT_OUT_POLVIO);
    605    1.1  jonathan 		*error = -EINVAL;	/* packet is discarded by caller */
    606    1.1  jonathan 		break;
    607    1.1  jonathan 	case IPSEC_POLICY_BYPASS:
    608    1.1  jonathan 	case IPSEC_POLICY_NONE:
    609  1.113     ozaki 		KEY_SP_UNREF(&sp);
    610    1.1  jonathan 		sp = NULL;		/* NB: force NULL result */
    611    1.1  jonathan 		break;
    612    1.1  jonathan 	case IPSEC_POLICY_IPSEC:
    613   1.93     ozaki 		KASSERT(sp->req != NULL);
    614    1.1  jonathan 		break;
    615    1.1  jonathan 	}
    616  1.135      maxv 
    617    1.1  jonathan 	if (*error != 0) {
    618  1.113     ozaki 		KEY_SP_UNREF(&sp);
    619    1.1  jonathan 		sp = NULL;
    620   1.92     ozaki 		IPSECLOG(LOG_DEBUG, "done, error %d\n", *error);
    621    1.1  jonathan 	}
    622  1.135      maxv 
    623    1.1  jonathan 	return sp;
    624    1.1  jonathan }
    625    1.1  jonathan 
    626   1.59     rmind int
    627   1.70     ozaki ipsec4_output(struct mbuf *m, struct inpcb *inp, int flags,
    628   1.87     ozaki     u_long *mtu, bool *natt_frag, bool *done)
    629   1.59     rmind {
    630   1.59     rmind 	struct secpolicy *sp = NULL;
    631   1.59     rmind 	int error, s;
    632   1.59     rmind 
    633   1.59     rmind 	/*
    634   1.59     rmind 	 * Check the security policy (SP) for the packet and, if required,
    635   1.59     rmind 	 * do IPsec-related processing.  There are two cases here; the first
    636   1.59     rmind 	 * time a packet is sent through it will be untagged and handled by
    637   1.59     rmind 	 * ipsec4_checkpolicy().  If the packet is resubmitted to ip_output
    638   1.59     rmind 	 * (e.g. after AH, ESP, etc. processing), there will be a tag to
    639   1.59     rmind 	 * bypass the lookup and related policy checking.
    640   1.59     rmind 	 */
    641   1.59     rmind 	if (ipsec_outdone(m)) {
    642   1.59     rmind 		return 0;
    643   1.59     rmind 	}
    644   1.59     rmind 	s = splsoftnet();
    645   1.99     ozaki 	if (inp && ipsec_pcb_skip_ipsec(inp->inp_sp, IPSEC_DIR_OUTBOUND)) {
    646   1.59     rmind 		splx(s);
    647   1.59     rmind 		return 0;
    648   1.59     rmind 	}
    649   1.59     rmind 	sp = ipsec4_checkpolicy(m, IPSEC_DIR_OUTBOUND, flags, &error, inp);
    650   1.59     rmind 
    651   1.59     rmind 	/*
    652   1.59     rmind 	 * There are four return cases:
    653   1.59     rmind 	 *	sp != NULL			apply IPsec policy
    654   1.59     rmind 	 *	sp == NULL, error == 0		no IPsec handling needed
    655   1.59     rmind 	 *	sp == NULL, error == -EINVAL	discard packet w/o error
    656   1.59     rmind 	 *	sp == NULL, error != 0		discard packet, report error
    657   1.59     rmind 	 */
    658   1.59     rmind 	if (sp == NULL) {
    659   1.59     rmind 		splx(s);
    660   1.59     rmind 		if (error) {
    661   1.59     rmind 			/*
    662   1.59     rmind 			 * Hack: -EINVAL is used to signal that a packet
    663   1.59     rmind 			 * should be silently discarded.  This is typically
    664   1.59     rmind 			 * because we asked key management for an SA and
    665   1.59     rmind 			 * it was delayed (e.g. kicked up to IKE).
    666   1.59     rmind 			 */
    667   1.59     rmind 			if (error == -EINVAL)
    668   1.59     rmind 				error = 0;
    669   1.59     rmind 			m_freem(m);
    670   1.59     rmind 			*done = true;
    671   1.59     rmind 			return error;
    672   1.59     rmind 		}
    673   1.59     rmind 		/* No IPsec processing for this packet. */
    674   1.59     rmind 		return 0;
    675   1.59     rmind 	}
    676   1.59     rmind 
    677   1.59     rmind 	/*
    678   1.59     rmind 	 * Do delayed checksums now because we send before
    679   1.59     rmind 	 * this is done in the normal processing path.
    680   1.59     rmind 	 */
    681   1.59     rmind 	if (m->m_pkthdr.csum_flags & (M_CSUM_TCPv4|M_CSUM_UDPv4)) {
    682   1.59     rmind 		in_delayed_cksum(m);
    683   1.59     rmind 		m->m_pkthdr.csum_flags &= ~(M_CSUM_TCPv4|M_CSUM_UDPv4);
    684   1.59     rmind 	}
    685   1.59     rmind 
    686  1.108     ozaki     {
    687  1.108     ozaki 	u_long _mtu = 0;
    688  1.108     ozaki 
    689  1.108     ozaki 	error = ipsec4_process_packet(m, sp->req, &_mtu);
    690  1.108     ozaki 
    691  1.108     ozaki 	if (error == 0 && _mtu != 0) {
    692  1.108     ozaki 		/*
    693  1.108     ozaki 		 * NAT-T ESP fragmentation: do not do IPSec processing
    694  1.108     ozaki 		 * now, we will do it on each fragmented packet.
    695  1.108     ozaki 		 */
    696  1.108     ozaki 		*mtu = _mtu;
    697  1.108     ozaki 		*natt_frag = true;
    698  1.113     ozaki 		KEY_SP_UNREF(&sp);
    699  1.108     ozaki 		splx(s);
    700  1.108     ozaki 		return 0;
    701  1.112     ozaki 	}
    702  1.108     ozaki     }
    703  1.135      maxv 
    704   1.59     rmind 	/*
    705   1.59     rmind 	 * Preserve KAME behaviour: ENOENT can be returned
    706   1.59     rmind 	 * when an SA acquire is in progress.  Don't propagate
    707   1.59     rmind 	 * this to user-level; it confuses applications.
    708   1.59     rmind 	 *
    709   1.59     rmind 	 * XXX this will go away when the SADB is redone.
    710   1.59     rmind 	 */
    711   1.59     rmind 	if (error == ENOENT)
    712   1.59     rmind 		error = 0;
    713  1.113     ozaki 	KEY_SP_UNREF(&sp);
    714   1.59     rmind 	splx(s);
    715   1.59     rmind 	*done = true;
    716   1.59     rmind 	return error;
    717   1.59     rmind }
    718   1.59     rmind 
    719   1.60     rmind int
    720   1.60     rmind ipsec4_input(struct mbuf *m, int flags)
    721   1.60     rmind {
    722   1.60     rmind 	struct secpolicy *sp;
    723   1.60     rmind 	int error, s;
    724   1.60     rmind 
    725   1.60     rmind 	s = splsoftnet();
    726  1.109     ozaki 	sp = ipsec_getpolicybyaddr(m, IPSEC_DIR_INBOUND, IP_FORWARDING, &error);
    727   1.60     rmind 	if (sp == NULL) {
    728   1.60     rmind 		splx(s);
    729   1.60     rmind 		return EINVAL;
    730   1.60     rmind 	}
    731   1.60     rmind 
    732   1.60     rmind 	/*
    733   1.60     rmind 	 * Check security policy against packet attributes.
    734   1.60     rmind 	 */
    735  1.132      maxv 	error = ipsec_sp_reject(sp, m);
    736  1.113     ozaki 	KEY_SP_UNREF(&sp);
    737   1.60     rmind 	splx(s);
    738   1.60     rmind 	if (error) {
    739   1.60     rmind 		return error;
    740   1.60     rmind 	}
    741   1.60     rmind 
    742   1.60     rmind 	if (flags == 0) {
    743   1.60     rmind 		/* We are done. */
    744   1.60     rmind 		return 0;
    745   1.60     rmind 	}
    746   1.60     rmind 
    747  1.104     ozaki 	/*
    748  1.104     ozaki 	 * Peek at the outbound SP for this packet to determine if
    749  1.104     ozaki 	 * it is a Fast Forward candidate.
    750  1.104     ozaki 	 */
    751   1.60     rmind 	s = splsoftnet();
    752   1.60     rmind 	sp = ipsec4_checkpolicy(m, IPSEC_DIR_OUTBOUND, flags, &error, NULL);
    753   1.60     rmind 	if (sp != NULL) {
    754   1.60     rmind 		m->m_flags &= ~M_CANFASTFWD;
    755  1.113     ozaki 		KEY_SP_UNREF(&sp);
    756   1.60     rmind 	}
    757   1.60     rmind 	splx(s);
    758   1.60     rmind 	return 0;
    759   1.60     rmind }
    760   1.60     rmind 
    761   1.60     rmind int
    762   1.60     rmind ipsec4_forward(struct mbuf *m, int *destmtu)
    763   1.60     rmind {
    764   1.60     rmind 	/*
    765   1.60     rmind 	 * If the packet is routed over IPsec tunnel, tell the
    766   1.60     rmind 	 * originator the tunnel MTU.
    767   1.60     rmind 	 *	tunnel MTU = if MTU - sizeof(IP) - ESP/AH hdrsiz
    768   1.60     rmind 	 * XXX quickhack!!!
    769   1.60     rmind 	 */
    770   1.60     rmind 	struct secpolicy *sp;
    771   1.60     rmind 	size_t ipsechdr;
    772   1.60     rmind 	int error;
    773   1.60     rmind 
    774  1.135      maxv 	sp = ipsec_getpolicybyaddr(m, IPSEC_DIR_OUTBOUND, IP_FORWARDING,
    775  1.135      maxv 	    &error);
    776   1.60     rmind 	if (sp == NULL) {
    777   1.60     rmind 		return EINVAL;
    778   1.60     rmind 	}
    779   1.60     rmind 
    780   1.60     rmind 	/* Count IPsec header size. */
    781   1.60     rmind 	ipsechdr = ipsec4_hdrsiz(m, IPSEC_DIR_OUTBOUND, NULL);
    782   1.60     rmind 
    783   1.60     rmind 	/*
    784   1.60     rmind 	 * Find the correct route for outer IPv4 header, compute tunnel MTU.
    785   1.60     rmind 	 */
    786  1.106     ozaki 	if (sp->req) {
    787  1.121     ozaki 		struct secasvar *sav;
    788   1.60     rmind 
    789  1.121     ozaki 		sav = ipsec_lookup_sa(sp->req, m);
    790  1.121     ozaki 		if (sav != NULL) {
    791  1.121     ozaki 			struct route *ro;
    792  1.121     ozaki 			struct rtentry *rt;
    793  1.121     ozaki 
    794  1.121     ozaki 			ro = &sav->sah->sa_route;
    795  1.121     ozaki 			rt = rtcache_validate(ro);
    796  1.121     ozaki 			if (rt && rt->rt_ifp) {
    797  1.121     ozaki 				*destmtu = rt->rt_rmx.rmx_mtu ?
    798  1.121     ozaki 				    rt->rt_rmx.rmx_mtu : rt->rt_ifp->if_mtu;
    799  1.121     ozaki 				*destmtu -= ipsechdr;
    800  1.121     ozaki 			}
    801  1.121     ozaki 			rtcache_unref(rt, ro);
    802  1.121     ozaki 			KEY_SA_UNREF(&sav);
    803   1.60     rmind 		}
    804   1.60     rmind 	}
    805  1.113     ozaki 	KEY_SP_UNREF(&sp);
    806   1.60     rmind 	return 0;
    807   1.60     rmind }
    808   1.60     rmind 
    809   1.26  degroote #ifdef INET6
    810   1.26  degroote struct secpolicy *
    811   1.33  degroote ipsec6_checkpolicy(struct mbuf *m, u_int dir, u_int flag, int *error,
    812  1.129      maxv     struct in6pcb *in6p)
    813   1.26  degroote {
    814   1.26  degroote 	struct secpolicy *sp;
    815   1.26  degroote 
    816   1.26  degroote 	*error = 0;
    817   1.26  degroote 
    818   1.82     ozaki 	if (in6p == NULL) {
    819   1.26  degroote 		sp = ipsec_getpolicybyaddr(m, dir, flag, error);
    820   1.82     ozaki 	} else {
    821  1.133      maxv 		struct inpcb_hdr *inph = (struct inpcb_hdr *)in6p;
    822  1.133      maxv 		KASSERT(inph->inph_socket != NULL);
    823  1.133      maxv 		sp = ipsec_getpolicybysock(m, dir, inph, error);
    824   1.82     ozaki 	}
    825   1.26  degroote 	if (sp == NULL) {
    826   1.73     ozaki 		KASSERTMSG(*error != 0, "getpolicy failed w/o error");
    827   1.37   thorpej 		IPSEC_STATINC(IPSEC_STAT_OUT_INVAL);
    828   1.26  degroote 		return NULL;
    829   1.26  degroote 	}
    830   1.73     ozaki 	KASSERTMSG(*error == 0, "sp w/ error set to %u", *error);
    831   1.26  degroote 	switch (sp->policy) {
    832   1.26  degroote 	case IPSEC_POLICY_ENTRUST:
    833   1.26  degroote 	default:
    834   1.62  christos 		printf("%s: invalid policy %u\n", __func__, sp->policy);
    835   1.26  degroote 		/* fall thru... */
    836   1.26  degroote 	case IPSEC_POLICY_DISCARD:
    837   1.37   thorpej 		IPSEC_STATINC(IPSEC_STAT_OUT_POLVIO);
    838   1.26  degroote 		*error = -EINVAL;   /* packet is discarded by caller */
    839   1.26  degroote 		break;
    840   1.26  degroote 	case IPSEC_POLICY_BYPASS:
    841   1.26  degroote 	case IPSEC_POLICY_NONE:
    842  1.113     ozaki 		KEY_SP_UNREF(&sp);
    843  1.133      maxv 		sp = NULL;		/* NB: force NULL result */
    844   1.26  degroote 		break;
    845   1.26  degroote 	case IPSEC_POLICY_IPSEC:
    846   1.93     ozaki 		KASSERT(sp->req != NULL);
    847   1.26  degroote 		break;
    848   1.26  degroote 	}
    849   1.26  degroote 	if (*error != 0) {
    850  1.113     ozaki 		KEY_SP_UNREF(&sp);
    851   1.26  degroote 		sp = NULL;
    852   1.92     ozaki 		IPSECLOG(LOG_DEBUG, "done, error %d\n", *error);
    853   1.26  degroote 	}
    854   1.26  degroote 	return sp;
    855   1.26  degroote }
    856   1.26  degroote #endif /* INET6 */
    857   1.26  degroote 
    858    1.1  jonathan static int
    859   1.55  drochner ipsec4_setspidx_inpcb(struct mbuf *m, struct inpcb *pcb)
    860    1.1  jonathan {
    861    1.1  jonathan 	int error;
    862    1.1  jonathan 
    863   1.73     ozaki 	KASSERT(pcb != NULL);
    864   1.73     ozaki 	KASSERT(pcb->inp_sp != NULL);
    865   1.73     ozaki 	KASSERT(pcb->inp_sp->sp_out != NULL);
    866   1.73     ozaki 	KASSERT(pcb->inp_sp->sp_in != NULL);
    867    1.1  jonathan 
    868    1.1  jonathan 	error = ipsec_setspidx(m, &pcb->inp_sp->sp_in->spidx, 1);
    869    1.1  jonathan 	if (error == 0) {
    870    1.1  jonathan 		pcb->inp_sp->sp_in->spidx.dir = IPSEC_DIR_INBOUND;
    871    1.1  jonathan 		pcb->inp_sp->sp_out->spidx = pcb->inp_sp->sp_in->spidx;
    872    1.1  jonathan 		pcb->inp_sp->sp_out->spidx.dir = IPSEC_DIR_OUTBOUND;
    873    1.1  jonathan 	} else {
    874   1.41    cegger 		memset(&pcb->inp_sp->sp_in->spidx, 0,
    875  1.100     ozaki 		    sizeof(pcb->inp_sp->sp_in->spidx));
    876   1.41    cegger 		memset(&pcb->inp_sp->sp_out->spidx, 0,
    877  1.100     ozaki 		    sizeof(pcb->inp_sp->sp_in->spidx));
    878    1.1  jonathan 	}
    879    1.1  jonathan 	return error;
    880    1.1  jonathan }
    881    1.1  jonathan 
    882    1.1  jonathan #ifdef INET6
    883    1.1  jonathan static int
    884   1.33  degroote ipsec6_setspidx_in6pcb(struct mbuf *m, struct in6pcb *pcb)
    885    1.1  jonathan {
    886    1.1  jonathan 	struct secpolicyindex *spidx;
    887    1.1  jonathan 	int error;
    888    1.1  jonathan 
    889   1.73     ozaki 	KASSERT(pcb != NULL);
    890   1.73     ozaki 	KASSERT(pcb->in6p_sp != NULL);
    891   1.73     ozaki 	KASSERT(pcb->in6p_sp->sp_out != NULL);
    892   1.73     ozaki 	KASSERT(pcb->in6p_sp->sp_in != NULL);
    893    1.1  jonathan 
    894   1.41    cegger 	memset(&pcb->in6p_sp->sp_in->spidx, 0, sizeof(*spidx));
    895   1.41    cegger 	memset(&pcb->in6p_sp->sp_out->spidx, 0, sizeof(*spidx));
    896    1.1  jonathan 
    897    1.1  jonathan 	spidx = &pcb->in6p_sp->sp_in->spidx;
    898    1.1  jonathan 	error = ipsec_setspidx(m, spidx, 1);
    899    1.1  jonathan 	if (error)
    900    1.1  jonathan 		goto bad;
    901    1.1  jonathan 	spidx->dir = IPSEC_DIR_INBOUND;
    902    1.1  jonathan 
    903    1.1  jonathan 	spidx = &pcb->in6p_sp->sp_out->spidx;
    904    1.1  jonathan 	error = ipsec_setspidx(m, spidx, 1);
    905    1.1  jonathan 	if (error)
    906    1.1  jonathan 		goto bad;
    907    1.1  jonathan 	spidx->dir = IPSEC_DIR_OUTBOUND;
    908    1.1  jonathan 
    909    1.1  jonathan 	return 0;
    910    1.1  jonathan 
    911    1.1  jonathan bad:
    912   1.41    cegger 	memset(&pcb->in6p_sp->sp_in->spidx, 0, sizeof(*spidx));
    913   1.41    cegger 	memset(&pcb->in6p_sp->sp_out->spidx, 0, sizeof(*spidx));
    914    1.1  jonathan 	return error;
    915    1.1  jonathan }
    916    1.1  jonathan #endif
    917    1.1  jonathan 
    918    1.1  jonathan /*
    919    1.1  jonathan  * configure security policy index (src/dst/proto/sport/dport)
    920    1.1  jonathan  * by looking at the content of mbuf.
    921    1.1  jonathan  * the caller is responsible for error recovery (like clearing up spidx).
    922    1.1  jonathan  */
    923    1.1  jonathan static int
    924   1.33  degroote ipsec_setspidx(struct mbuf *m, struct secpolicyindex *spidx, int needport)
    925    1.1  jonathan {
    926    1.1  jonathan 	struct ip *ip = NULL;
    927    1.1  jonathan 	struct ip ipbuf;
    928    1.1  jonathan 	u_int v;
    929    1.1  jonathan 	struct mbuf *n;
    930    1.1  jonathan 	int len;
    931    1.1  jonathan 	int error;
    932    1.1  jonathan 
    933   1.73     ozaki 	KASSERT(m != NULL);
    934    1.1  jonathan 
    935    1.1  jonathan 	/*
    936    1.1  jonathan 	 * validate m->m_pkthdr.len.  we see incorrect length if we
    937    1.1  jonathan 	 * mistakenly call this function with inconsistent mbuf chain
    938    1.1  jonathan 	 * (like 4.4BSD tcp/udp processing).  XXX should we panic here?
    939    1.1  jonathan 	 */
    940    1.1  jonathan 	len = 0;
    941    1.1  jonathan 	for (n = m; n; n = n->m_next)
    942    1.1  jonathan 		len += n->m_len;
    943    1.1  jonathan 	if (m->m_pkthdr.len != len) {
    944   1.77     ozaki 		KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_DUMP,
    945   1.77     ozaki 		    "total of m_len(%d) != pkthdr.len(%d), ignored.\n",
    946   1.77     ozaki 		    len, m->m_pkthdr.len);
    947  1.135      maxv 		KASSERTMSG(0, "impossible");
    948    1.1  jonathan 		return EINVAL;
    949    1.1  jonathan 	}
    950    1.1  jonathan 
    951    1.1  jonathan 	if (m->m_pkthdr.len < sizeof(struct ip)) {
    952   1.77     ozaki 		KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_DUMP,
    953   1.77     ozaki 		    "pkthdr.len(%d) < sizeof(struct ip), ignored.\n",
    954   1.77     ozaki 		    m->m_pkthdr.len);
    955    1.1  jonathan 		return EINVAL;
    956    1.1  jonathan 	}
    957    1.1  jonathan 
    958  1.129      maxv 	if (m->m_len >= sizeof(*ip)) {
    959    1.1  jonathan 		ip = mtod(m, struct ip *);
    960  1.129      maxv 	} else {
    961   1.28  degroote 		m_copydata(m, 0, sizeof(ipbuf), &ipbuf);
    962    1.1  jonathan 		ip = &ipbuf;
    963    1.1  jonathan 	}
    964    1.1  jonathan 	v = ip->ip_v;
    965    1.1  jonathan 	switch (v) {
    966    1.1  jonathan 	case 4:
    967    1.1  jonathan 		error = ipsec4_setspidx_ipaddr(m, spidx);
    968    1.1  jonathan 		if (error)
    969    1.1  jonathan 			return error;
    970    1.1  jonathan 		ipsec4_get_ulp(m, spidx, needport);
    971    1.1  jonathan 		return 0;
    972    1.1  jonathan #ifdef INET6
    973    1.1  jonathan 	case 6:
    974    1.1  jonathan 		if (m->m_pkthdr.len < sizeof(struct ip6_hdr)) {
    975   1.77     ozaki 			KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_DUMP,
    976   1.62  christos 			    "pkthdr.len(%d) < sizeof(struct ip6_hdr), "
    977   1.77     ozaki 			    "ignored.\n", m->m_pkthdr.len);
    978    1.1  jonathan 			return EINVAL;
    979    1.1  jonathan 		}
    980    1.1  jonathan 		error = ipsec6_setspidx_ipaddr(m, spidx);
    981    1.1  jonathan 		if (error)
    982    1.1  jonathan 			return error;
    983    1.1  jonathan 		ipsec6_get_ulp(m, spidx, needport);
    984    1.1  jonathan 		return 0;
    985    1.1  jonathan #endif
    986    1.1  jonathan 	default:
    987   1.77     ozaki 		KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_DUMP,
    988   1.77     ozaki 		    "unknown IP version %u, ignored.\n", v);
    989    1.1  jonathan 		return EINVAL;
    990    1.1  jonathan 	}
    991    1.1  jonathan }
    992    1.1  jonathan 
    993    1.1  jonathan static void
    994    1.1  jonathan ipsec4_get_ulp(struct mbuf *m, struct secpolicyindex *spidx, int needport)
    995    1.1  jonathan {
    996    1.1  jonathan 	u_int8_t nxt;
    997    1.1  jonathan 	int off;
    998    1.1  jonathan 
    999   1.73     ozaki 	KASSERT(m != NULL);
   1000   1.73     ozaki 	KASSERTMSG(m->m_pkthdr.len >= sizeof(struct ip), "packet too short");
   1001    1.1  jonathan 
   1002    1.1  jonathan 	/* NB: ip_input() flips it into host endian XXX need more checking */
   1003    1.8   thorpej 	if (m->m_len >= sizeof(struct ip)) {
   1004    1.1  jonathan 		struct ip *ip = mtod(m, struct ip *);
   1005   1.75     ozaki 		if (ip->ip_off & htons(IP_MF | IP_OFFMASK))
   1006    1.1  jonathan 			goto done;
   1007    1.1  jonathan 		off = ip->ip_hl << 2;
   1008    1.1  jonathan 		nxt = ip->ip_p;
   1009    1.1  jonathan 	} else {
   1010    1.1  jonathan 		struct ip ih;
   1011    1.1  jonathan 
   1012  1.129      maxv 		m_copydata(m, 0, sizeof(struct ip), &ih);
   1013   1.75     ozaki 		if (ih.ip_off & htons(IP_MF | IP_OFFMASK))
   1014    1.1  jonathan 			goto done;
   1015    1.1  jonathan 		off = ih.ip_hl << 2;
   1016    1.1  jonathan 		nxt = ih.ip_p;
   1017    1.1  jonathan 	}
   1018    1.1  jonathan 
   1019    1.1  jonathan 	while (off < m->m_pkthdr.len) {
   1020    1.1  jonathan 		struct ip6_ext ip6e;
   1021    1.1  jonathan 		struct tcphdr th;
   1022    1.1  jonathan 		struct udphdr uh;
   1023   1.38   mlelstv 		struct icmp icmph;
   1024    1.1  jonathan 
   1025    1.1  jonathan 		switch (nxt) {
   1026    1.1  jonathan 		case IPPROTO_TCP:
   1027    1.1  jonathan 			spidx->ul_proto = nxt;
   1028    1.1  jonathan 			if (!needport)
   1029    1.1  jonathan 				goto done_proto;
   1030    1.1  jonathan 			if (off + sizeof(struct tcphdr) > m->m_pkthdr.len)
   1031    1.1  jonathan 				goto done;
   1032  1.129      maxv 			m_copydata(m, off, sizeof(th), &th);
   1033    1.1  jonathan 			spidx->src.sin.sin_port = th.th_sport;
   1034    1.1  jonathan 			spidx->dst.sin.sin_port = th.th_dport;
   1035    1.1  jonathan 			return;
   1036    1.1  jonathan 		case IPPROTO_UDP:
   1037    1.1  jonathan 			spidx->ul_proto = nxt;
   1038    1.1  jonathan 			if (!needport)
   1039    1.1  jonathan 				goto done_proto;
   1040    1.1  jonathan 			if (off + sizeof(struct udphdr) > m->m_pkthdr.len)
   1041    1.1  jonathan 				goto done;
   1042  1.129      maxv 			m_copydata(m, off, sizeof(uh), &uh);
   1043    1.1  jonathan 			spidx->src.sin.sin_port = uh.uh_sport;
   1044    1.1  jonathan 			spidx->dst.sin.sin_port = uh.uh_dport;
   1045    1.1  jonathan 			return;
   1046    1.1  jonathan 		case IPPROTO_AH:
   1047  1.130      maxv 			if (off + sizeof(ip6e) > m->m_pkthdr.len)
   1048    1.1  jonathan 				goto done;
   1049    1.1  jonathan 			/* XXX sigh, this works but is totally bogus */
   1050   1.28  degroote 			m_copydata(m, off, sizeof(ip6e), &ip6e);
   1051    1.1  jonathan 			off += (ip6e.ip6e_len + 2) << 2;
   1052    1.1  jonathan 			nxt = ip6e.ip6e_nxt;
   1053    1.1  jonathan 			break;
   1054    1.1  jonathan 		case IPPROTO_ICMP:
   1055   1.38   mlelstv 			spidx->ul_proto = nxt;
   1056   1.38   mlelstv 			if (off + sizeof(struct icmp) > m->m_pkthdr.len)
   1057  1.134      maxv 				goto done;
   1058   1.39  degroote 			m_copydata(m, off, sizeof(icmph), &icmph);
   1059   1.38   mlelstv 			((struct sockaddr_in *)&spidx->src)->sin_port =
   1060   1.38   mlelstv 			    htons((uint16_t)icmph.icmp_type);
   1061   1.38   mlelstv 			((struct sockaddr_in *)&spidx->dst)->sin_port =
   1062   1.38   mlelstv 			    htons((uint16_t)icmph.icmp_code);
   1063   1.38   mlelstv 			return;
   1064    1.1  jonathan 		default:
   1065    1.1  jonathan 			/* XXX intermediate headers??? */
   1066    1.1  jonathan 			spidx->ul_proto = nxt;
   1067    1.1  jonathan 			goto done_proto;
   1068    1.1  jonathan 		}
   1069    1.1  jonathan 	}
   1070    1.1  jonathan done:
   1071    1.1  jonathan 	spidx->ul_proto = IPSEC_ULPROTO_ANY;
   1072    1.1  jonathan done_proto:
   1073    1.1  jonathan 	spidx->src.sin.sin_port = IPSEC_PORT_ANY;
   1074    1.1  jonathan 	spidx->dst.sin.sin_port = IPSEC_PORT_ANY;
   1075    1.1  jonathan }
   1076    1.1  jonathan 
   1077    1.1  jonathan static int
   1078    1.1  jonathan ipsec4_setspidx_ipaddr(struct mbuf *m, struct secpolicyindex *spidx)
   1079    1.1  jonathan {
   1080    1.1  jonathan 	static const struct sockaddr_in template = {
   1081  1.129      maxv 		sizeof(struct sockaddr_in),
   1082    1.1  jonathan 		AF_INET,
   1083    1.1  jonathan 		0, { 0 }, { 0, 0, 0, 0, 0, 0, 0, 0 }
   1084    1.1  jonathan 	};
   1085    1.1  jonathan 
   1086    1.1  jonathan 	spidx->src.sin = template;
   1087    1.1  jonathan 	spidx->dst.sin = template;
   1088    1.1  jonathan 
   1089  1.129      maxv 	if (m->m_len < sizeof(struct ip)) {
   1090    1.1  jonathan 		m_copydata(m, offsetof(struct ip, ip_src),
   1091  1.100     ozaki 		    sizeof(struct in_addr), &spidx->src.sin.sin_addr);
   1092    1.1  jonathan 		m_copydata(m, offsetof(struct ip, ip_dst),
   1093  1.100     ozaki 		    sizeof(struct in_addr), &spidx->dst.sin.sin_addr);
   1094    1.1  jonathan 	} else {
   1095    1.1  jonathan 		struct ip *ip = mtod(m, struct ip *);
   1096    1.1  jonathan 		spidx->src.sin.sin_addr = ip->ip_src;
   1097    1.1  jonathan 		spidx->dst.sin.sin_addr = ip->ip_dst;
   1098    1.1  jonathan 	}
   1099    1.1  jonathan 
   1100    1.1  jonathan 	spidx->prefs = sizeof(struct in_addr) << 3;
   1101    1.1  jonathan 	spidx->prefd = sizeof(struct in_addr) << 3;
   1102    1.1  jonathan 
   1103    1.1  jonathan 	return 0;
   1104    1.1  jonathan }
   1105    1.1  jonathan 
   1106    1.1  jonathan #ifdef INET6
   1107    1.1  jonathan static void
   1108  1.129      maxv ipsec6_get_ulp(struct mbuf *m, struct secpolicyindex *spidx, int needport)
   1109    1.1  jonathan {
   1110    1.1  jonathan 	int off, nxt;
   1111    1.1  jonathan 	struct tcphdr th;
   1112    1.1  jonathan 	struct udphdr uh;
   1113   1.38   mlelstv 	struct icmp6_hdr icmph;
   1114    1.1  jonathan 
   1115   1.80     ozaki 	KASSERT(m != NULL);
   1116    1.1  jonathan 
   1117   1.77     ozaki 	if (KEYDEBUG_ON(KEYDEBUG_IPSEC_DUMP)) {
   1118  1.120  christos 		kdebug_mbuf(__func__, m);
   1119   1.77     ozaki 	}
   1120    1.1  jonathan 
   1121    1.1  jonathan 	/* set default */
   1122    1.1  jonathan 	spidx->ul_proto = IPSEC_ULPROTO_ANY;
   1123    1.1  jonathan 	((struct sockaddr_in6 *)&spidx->src)->sin6_port = IPSEC_PORT_ANY;
   1124    1.1  jonathan 	((struct sockaddr_in6 *)&spidx->dst)->sin6_port = IPSEC_PORT_ANY;
   1125    1.1  jonathan 
   1126    1.1  jonathan 	nxt = -1;
   1127    1.1  jonathan 	off = ip6_lasthdr(m, 0, IPPROTO_IPV6, &nxt);
   1128    1.1  jonathan 	if (off < 0 || m->m_pkthdr.len < off)
   1129    1.1  jonathan 		return;
   1130    1.1  jonathan 
   1131    1.1  jonathan 	switch (nxt) {
   1132    1.1  jonathan 	case IPPROTO_TCP:
   1133    1.1  jonathan 		spidx->ul_proto = nxt;
   1134    1.1  jonathan 		if (!needport)
   1135    1.1  jonathan 			break;
   1136    1.1  jonathan 		if (off + sizeof(struct tcphdr) > m->m_pkthdr.len)
   1137    1.1  jonathan 			break;
   1138   1.28  degroote 		m_copydata(m, off, sizeof(th), &th);
   1139    1.1  jonathan 		((struct sockaddr_in6 *)&spidx->src)->sin6_port = th.th_sport;
   1140    1.1  jonathan 		((struct sockaddr_in6 *)&spidx->dst)->sin6_port = th.th_dport;
   1141    1.1  jonathan 		break;
   1142    1.1  jonathan 	case IPPROTO_UDP:
   1143    1.1  jonathan 		spidx->ul_proto = nxt;
   1144    1.1  jonathan 		if (!needport)
   1145    1.1  jonathan 			break;
   1146    1.1  jonathan 		if (off + sizeof(struct udphdr) > m->m_pkthdr.len)
   1147    1.1  jonathan 			break;
   1148   1.28  degroote 		m_copydata(m, off, sizeof(uh), &uh);
   1149    1.1  jonathan 		((struct sockaddr_in6 *)&spidx->src)->sin6_port = uh.uh_sport;
   1150    1.1  jonathan 		((struct sockaddr_in6 *)&spidx->dst)->sin6_port = uh.uh_dport;
   1151    1.1  jonathan 		break;
   1152    1.1  jonathan 	case IPPROTO_ICMPV6:
   1153   1.38   mlelstv 		spidx->ul_proto = nxt;
   1154   1.38   mlelstv 		if (off + sizeof(struct icmp6_hdr) > m->m_pkthdr.len)
   1155   1.38   mlelstv 			break;
   1156   1.39  degroote 		m_copydata(m, off, sizeof(icmph), &icmph);
   1157   1.38   mlelstv 		((struct sockaddr_in6 *)&spidx->src)->sin6_port =
   1158   1.38   mlelstv 		    htons((uint16_t)icmph.icmp6_type);
   1159   1.38   mlelstv 		((struct sockaddr_in6 *)&spidx->dst)->sin6_port =
   1160   1.38   mlelstv 		    htons((uint16_t)icmph.icmp6_code);
   1161   1.38   mlelstv 		break;
   1162    1.1  jonathan 	default:
   1163    1.1  jonathan 		/* XXX intermediate headers??? */
   1164    1.1  jonathan 		spidx->ul_proto = nxt;
   1165    1.1  jonathan 		break;
   1166    1.1  jonathan 	}
   1167    1.1  jonathan }
   1168    1.1  jonathan 
   1169    1.1  jonathan static int
   1170   1.33  degroote ipsec6_setspidx_ipaddr(struct mbuf *m, struct secpolicyindex *spidx)
   1171    1.1  jonathan {
   1172    1.1  jonathan 	struct ip6_hdr *ip6 = NULL;
   1173    1.1  jonathan 	struct ip6_hdr ip6buf;
   1174    1.1  jonathan 	struct sockaddr_in6 *sin6;
   1175    1.1  jonathan 
   1176    1.1  jonathan 	if (m->m_len >= sizeof(*ip6))
   1177    1.1  jonathan 		ip6 = mtod(m, struct ip6_hdr *);
   1178    1.1  jonathan 	else {
   1179   1.28  degroote 		m_copydata(m, 0, sizeof(ip6buf), &ip6buf);
   1180    1.1  jonathan 		ip6 = &ip6buf;
   1181    1.1  jonathan 	}
   1182    1.1  jonathan 
   1183    1.1  jonathan 	sin6 = (struct sockaddr_in6 *)&spidx->src;
   1184   1.41    cegger 	memset(sin6, 0, sizeof(*sin6));
   1185    1.1  jonathan 	sin6->sin6_family = AF_INET6;
   1186    1.1  jonathan 	sin6->sin6_len = sizeof(struct sockaddr_in6);
   1187   1.43   tsutsui 	memcpy(&sin6->sin6_addr, &ip6->ip6_src, sizeof(ip6->ip6_src));
   1188    1.1  jonathan 	if (IN6_IS_SCOPE_LINKLOCAL(&ip6->ip6_src)) {
   1189    1.1  jonathan 		sin6->sin6_addr.s6_addr16[1] = 0;
   1190    1.1  jonathan 		sin6->sin6_scope_id = ntohs(ip6->ip6_src.s6_addr16[1]);
   1191    1.1  jonathan 	}
   1192    1.1  jonathan 	spidx->prefs = sizeof(struct in6_addr) << 3;
   1193    1.1  jonathan 
   1194    1.1  jonathan 	sin6 = (struct sockaddr_in6 *)&spidx->dst;
   1195   1.41    cegger 	memset(sin6, 0, sizeof(*sin6));
   1196    1.1  jonathan 	sin6->sin6_family = AF_INET6;
   1197    1.1  jonathan 	sin6->sin6_len = sizeof(struct sockaddr_in6);
   1198   1.43   tsutsui 	memcpy(&sin6->sin6_addr, &ip6->ip6_dst, sizeof(ip6->ip6_dst));
   1199    1.1  jonathan 	if (IN6_IS_SCOPE_LINKLOCAL(&ip6->ip6_dst)) {
   1200    1.1  jonathan 		sin6->sin6_addr.s6_addr16[1] = 0;
   1201    1.1  jonathan 		sin6->sin6_scope_id = ntohs(ip6->ip6_dst.s6_addr16[1]);
   1202    1.1  jonathan 	}
   1203    1.1  jonathan 	spidx->prefd = sizeof(struct in6_addr) << 3;
   1204    1.1  jonathan 
   1205    1.1  jonathan 	return 0;
   1206    1.1  jonathan }
   1207    1.1  jonathan #endif
   1208    1.1  jonathan 
   1209    1.1  jonathan static void
   1210   1.33  degroote ipsec_delpcbpolicy(struct inpcbpolicy *p)
   1211    1.1  jonathan {
   1212   1.90     ozaki 
   1213   1.91     ozaki 	kmem_intr_free(p, sizeof(*p));
   1214    1.1  jonathan }
   1215    1.1  jonathan 
   1216    1.1  jonathan /* initialize policy in PCB */
   1217    1.1  jonathan int
   1218   1.57  christos ipsec_init_policy(struct socket *so, struct inpcbpolicy **policy)
   1219    1.1  jonathan {
   1220    1.1  jonathan 	struct inpcbpolicy *new;
   1221    1.1  jonathan 
   1222   1.80     ozaki 	KASSERT(so != NULL);
   1223   1.80     ozaki 	KASSERT(policy != NULL);
   1224    1.1  jonathan 
   1225   1.91     ozaki 	new = kmem_intr_zalloc(sizeof(*new), KM_NOSLEEP);
   1226   1.91     ozaki 	if (new == NULL) {
   1227   1.92     ozaki 		IPSECLOG(LOG_DEBUG, "No more memory.\n");
   1228   1.91     ozaki 		return ENOBUFS;
   1229   1.91     ozaki 	}
   1230    1.1  jonathan 
   1231    1.1  jonathan 	if (IPSEC_PRIVILEGED_SO(so))
   1232    1.1  jonathan 		new->priv = 1;
   1233    1.1  jonathan 	else
   1234    1.1  jonathan 		new->priv = 0;
   1235    1.1  jonathan 
   1236  1.113     ozaki 	/*
   1237  1.119     ozaki 	 * Set dummy SPs. Actual SPs will be allocated later if needed.
   1238  1.113     ozaki 	 */
   1239  1.119     ozaki 	new->sp_in = &ipsec_dummy_sp;
   1240  1.119     ozaki 	new->sp_out = &ipsec_dummy_sp;
   1241    1.1  jonathan 
   1242   1.57  christos 	*policy = new;
   1243    1.1  jonathan 
   1244    1.1  jonathan 	return 0;
   1245    1.1  jonathan }
   1246    1.1  jonathan 
   1247  1.115     ozaki #if 0 /* unused */
   1248    1.1  jonathan /* copy old ipsec policy into new */
   1249    1.1  jonathan int
   1250   1.52  christos ipsec_copy_policy(const struct inpcbpolicy *old, struct inpcbpolicy *new)
   1251    1.1  jonathan {
   1252    1.1  jonathan 	struct secpolicy *sp;
   1253    1.1  jonathan 
   1254    1.1  jonathan 	sp = ipsec_deepcopy_policy(old->sp_in);
   1255    1.1  jonathan 	if (sp) {
   1256  1.113     ozaki 		KEY_SP_UNREF(&new->sp_in);
   1257    1.1  jonathan 		new->sp_in = sp;
   1258    1.1  jonathan 	} else
   1259    1.1  jonathan 		return ENOBUFS;
   1260    1.1  jonathan 
   1261    1.1  jonathan 	sp = ipsec_deepcopy_policy(old->sp_out);
   1262    1.1  jonathan 	if (sp) {
   1263  1.113     ozaki 		KEY_SP_UNREF(&new->sp_out);
   1264    1.1  jonathan 		new->sp_out = sp;
   1265    1.1  jonathan 	} else
   1266    1.1  jonathan 		return ENOBUFS;
   1267    1.1  jonathan 
   1268    1.1  jonathan 	new->priv = old->priv;
   1269    1.1  jonathan 
   1270    1.1  jonathan 	return 0;
   1271    1.1  jonathan }
   1272    1.1  jonathan 
   1273    1.1  jonathan /* deep-copy a policy in PCB */
   1274    1.1  jonathan static struct secpolicy *
   1275   1.52  christos ipsec_deepcopy_policy(const struct secpolicy *src)
   1276    1.1  jonathan {
   1277    1.1  jonathan 	struct ipsecrequest *newchain = NULL;
   1278   1.55  drochner 	const struct ipsecrequest *p;
   1279    1.1  jonathan 	struct ipsecrequest **q;
   1280    1.1  jonathan 	struct secpolicy *dst;
   1281    1.1  jonathan 
   1282    1.1  jonathan 	if (src == NULL)
   1283    1.1  jonathan 		return NULL;
   1284    1.1  jonathan 	dst = KEY_NEWSP();
   1285    1.1  jonathan 	if (dst == NULL)
   1286    1.1  jonathan 		return NULL;
   1287    1.1  jonathan 
   1288    1.1  jonathan 	/*
   1289    1.1  jonathan 	 * deep-copy IPsec request chain.  This is required since struct
   1290    1.1  jonathan 	 * ipsecrequest is not reference counted.
   1291    1.1  jonathan 	 */
   1292    1.1  jonathan 	q = &newchain;
   1293    1.1  jonathan 	for (p = src->req; p; p = p->next) {
   1294   1.90     ozaki 		*q = kmem_zalloc(sizeof(**q), KM_SLEEP);
   1295    1.1  jonathan 		(*q)->next = NULL;
   1296    1.1  jonathan 
   1297    1.1  jonathan 		(*q)->saidx.proto = p->saidx.proto;
   1298    1.1  jonathan 		(*q)->saidx.mode = p->saidx.mode;
   1299    1.1  jonathan 		(*q)->level = p->level;
   1300    1.1  jonathan 		(*q)->saidx.reqid = p->saidx.reqid;
   1301    1.1  jonathan 
   1302   1.43   tsutsui 		memcpy(&(*q)->saidx.src, &p->saidx.src, sizeof((*q)->saidx.src));
   1303   1.43   tsutsui 		memcpy(&(*q)->saidx.dst, &p->saidx.dst, sizeof((*q)->saidx.dst));
   1304    1.1  jonathan 
   1305    1.1  jonathan 		(*q)->sp = dst;
   1306    1.1  jonathan 
   1307    1.1  jonathan 		q = &((*q)->next);
   1308    1.1  jonathan 	}
   1309    1.1  jonathan 
   1310    1.1  jonathan 	dst->req = newchain;
   1311    1.1  jonathan 	dst->state = src->state;
   1312    1.1  jonathan 	dst->policy = src->policy;
   1313    1.1  jonathan 	/* do not touch the refcnt fields */
   1314    1.1  jonathan 
   1315    1.1  jonathan 	return dst;
   1316    1.1  jonathan }
   1317  1.115     ozaki #endif
   1318    1.1  jonathan 
   1319  1.113     ozaki static void
   1320  1.113     ozaki ipsec_destroy_policy(struct secpolicy *sp)
   1321  1.113     ozaki {
   1322  1.113     ozaki 
   1323  1.119     ozaki 	if (sp == &ipsec_dummy_sp)
   1324  1.119     ozaki 		; /* It's dummy. No need to free it. */
   1325  1.113     ozaki 	else {
   1326  1.113     ozaki 		/*
   1327  1.113     ozaki 		 * We cannot destroy here because it can be called in
   1328  1.113     ozaki 		 * softint. So mark the SP as DEAD and let the timer
   1329  1.113     ozaki 		 * destroy it. See key_timehandler_spd.
   1330  1.113     ozaki 		 */
   1331  1.113     ozaki 		sp->state = IPSEC_SPSTATE_DEAD;
   1332  1.113     ozaki 	}
   1333  1.113     ozaki }
   1334  1.113     ozaki 
   1335    1.1  jonathan /* set policy and ipsec request if present. */
   1336    1.1  jonathan static int
   1337  1.129      maxv ipsec_set_policy(struct secpolicy **policy, int optname, const void *request,
   1338  1.129      maxv     size_t len, kauth_cred_t cred)
   1339    1.1  jonathan {
   1340   1.55  drochner 	const struct sadb_x_policy *xpl;
   1341  1.113     ozaki 	struct secpolicy *newsp = NULL, *oldsp;
   1342    1.1  jonathan 	int error;
   1343    1.1  jonathan 
   1344   1.90     ozaki 	KASSERT(!cpu_softintr_p());
   1345   1.90     ozaki 
   1346    1.1  jonathan 	/* sanity check. */
   1347   1.57  christos 	if (policy == NULL || *policy == NULL || request == NULL)
   1348    1.1  jonathan 		return EINVAL;
   1349    1.1  jonathan 	if (len < sizeof(*xpl))
   1350    1.1  jonathan 		return EINVAL;
   1351   1.55  drochner 	xpl = (const struct sadb_x_policy *)request;
   1352    1.1  jonathan 
   1353   1.77     ozaki 	if (KEYDEBUG_ON(KEYDEBUG_IPSEC_DUMP)) {
   1354  1.120  christos 		kdebug_sadb_xpolicy("set passed policy", request);
   1355   1.77     ozaki 	}
   1356    1.1  jonathan 
   1357    1.1  jonathan 	/* check policy type */
   1358    1.1  jonathan 	/* ipsec_set_policy() accepts IPSEC, ENTRUST and BYPASS. */
   1359  1.129      maxv 	if (xpl->sadb_x_policy_type == IPSEC_POLICY_DISCARD ||
   1360  1.129      maxv 	    xpl->sadb_x_policy_type == IPSEC_POLICY_NONE)
   1361    1.1  jonathan 		return EINVAL;
   1362    1.1  jonathan 
   1363    1.1  jonathan 	/* check privileged socket */
   1364   1.44      elad 	if (xpl->sadb_x_policy_type == IPSEC_POLICY_BYPASS) {
   1365   1.56      elad 		error = kauth_authorize_network(cred, KAUTH_NETWORK_IPSEC,
   1366   1.56      elad 		    KAUTH_REQ_NETWORK_IPSEC_BYPASS, NULL, NULL, NULL);
   1367   1.44      elad 		if (error)
   1368  1.129      maxv 			return error;
   1369   1.44      elad 	}
   1370    1.1  jonathan 
   1371    1.1  jonathan 	/* allocation new SP entry */
   1372    1.1  jonathan 	if ((newsp = key_msg2sp(xpl, len, &error)) == NULL)
   1373    1.1  jonathan 		return error;
   1374    1.1  jonathan 
   1375  1.113     ozaki 	key_init_sp(newsp);
   1376  1.113     ozaki 	newsp->created = time_uptime;
   1377  1.113     ozaki 	/* Insert the global list for SPs for sockets */
   1378  1.113     ozaki 	key_socksplist_add(newsp);
   1379    1.1  jonathan 
   1380    1.1  jonathan 	/* clear old SP and set new SP */
   1381  1.113     ozaki 	oldsp = *policy;
   1382   1.57  christos 	*policy = newsp;
   1383  1.113     ozaki 	ipsec_destroy_policy(oldsp);
   1384  1.113     ozaki 
   1385   1.77     ozaki 	if (KEYDEBUG_ON(KEYDEBUG_IPSEC_DUMP)) {
   1386   1.77     ozaki 		printf("%s: new policy\n", __func__);
   1387   1.77     ozaki 		kdebug_secpolicy(newsp);
   1388   1.77     ozaki 	}
   1389    1.1  jonathan 
   1390    1.1  jonathan 	return 0;
   1391    1.1  jonathan }
   1392    1.1  jonathan 
   1393    1.1  jonathan static int
   1394   1.57  christos ipsec_get_policy(struct secpolicy *policy, struct mbuf **mp)
   1395    1.1  jonathan {
   1396    1.1  jonathan 
   1397    1.1  jonathan 	/* sanity check. */
   1398   1.57  christos 	if (policy == NULL || mp == NULL)
   1399    1.1  jonathan 		return EINVAL;
   1400    1.1  jonathan 
   1401  1.123     ozaki 	*mp = key_sp2msg(policy, M_NOWAIT);
   1402    1.1  jonathan 	if (!*mp) {
   1403   1.92     ozaki 		IPSECLOG(LOG_DEBUG, "No more memory.\n");
   1404    1.1  jonathan 		return ENOBUFS;
   1405    1.1  jonathan 	}
   1406    1.1  jonathan 
   1407    1.1  jonathan 	(*mp)->m_type = MT_DATA;
   1408   1.77     ozaki 	if (KEYDEBUG_ON(KEYDEBUG_IPSEC_DUMP)) {
   1409  1.120  christos 		kdebug_mbuf(__func__, *mp);
   1410   1.77     ozaki 	}
   1411    1.1  jonathan 
   1412    1.1  jonathan 	return 0;
   1413    1.1  jonathan }
   1414    1.1  jonathan 
   1415    1.1  jonathan int
   1416   1.55  drochner ipsec4_set_policy(struct inpcb *inp, int optname, const void *request,
   1417  1.129      maxv     size_t len, kauth_cred_t cred)
   1418    1.1  jonathan {
   1419   1.55  drochner 	const struct sadb_x_policy *xpl;
   1420   1.57  christos 	struct secpolicy **policy;
   1421    1.1  jonathan 
   1422   1.90     ozaki 	KASSERT(!cpu_softintr_p());
   1423  1.124     ozaki 	KASSERT(inp != NULL);
   1424  1.113     ozaki 	KASSERT(inp_locked(inp));
   1425  1.124     ozaki 	KASSERT(request != NULL);
   1426   1.90     ozaki 
   1427    1.1  jonathan 	if (len < sizeof(*xpl))
   1428    1.1  jonathan 		return EINVAL;
   1429   1.55  drochner 	xpl = (const struct sadb_x_policy *)request;
   1430    1.1  jonathan 
   1431   1.73     ozaki 	KASSERT(inp->inp_sp != NULL);
   1432    1.1  jonathan 
   1433    1.1  jonathan 	/* select direction */
   1434    1.1  jonathan 	switch (xpl->sadb_x_policy_dir) {
   1435    1.1  jonathan 	case IPSEC_DIR_INBOUND:
   1436   1.57  christos 		policy = &inp->inp_sp->sp_in;
   1437    1.1  jonathan 		break;
   1438    1.1  jonathan 	case IPSEC_DIR_OUTBOUND:
   1439   1.57  christos 		policy = &inp->inp_sp->sp_out;
   1440    1.1  jonathan 		break;
   1441    1.1  jonathan 	default:
   1442   1.92     ozaki 		IPSECLOG(LOG_ERR, "invalid direction=%u\n",
   1443   1.92     ozaki 		    xpl->sadb_x_policy_dir);
   1444    1.1  jonathan 		return EINVAL;
   1445    1.1  jonathan 	}
   1446    1.1  jonathan 
   1447   1.57  christos 	return ipsec_set_policy(policy, optname, request, len, cred);
   1448    1.1  jonathan }
   1449    1.1  jonathan 
   1450    1.1  jonathan int
   1451  1.129      maxv ipsec4_get_policy(struct inpcb *inp, const void *request, size_t len,
   1452  1.129      maxv     struct mbuf **mp)
   1453    1.1  jonathan {
   1454   1.55  drochner 	const struct sadb_x_policy *xpl;
   1455   1.57  christos 	struct secpolicy *policy;
   1456    1.1  jonathan 
   1457    1.1  jonathan 	/* sanity check. */
   1458    1.1  jonathan 	if (inp == NULL || request == NULL || mp == NULL)
   1459    1.1  jonathan 		return EINVAL;
   1460   1.73     ozaki 	KASSERT(inp->inp_sp != NULL);
   1461    1.1  jonathan 	if (len < sizeof(*xpl))
   1462    1.1  jonathan 		return EINVAL;
   1463   1.55  drochner 	xpl = (const struct sadb_x_policy *)request;
   1464    1.1  jonathan 
   1465    1.1  jonathan 	/* select direction */
   1466    1.1  jonathan 	switch (xpl->sadb_x_policy_dir) {
   1467    1.1  jonathan 	case IPSEC_DIR_INBOUND:
   1468   1.57  christos 		policy = inp->inp_sp->sp_in;
   1469    1.1  jonathan 		break;
   1470    1.1  jonathan 	case IPSEC_DIR_OUTBOUND:
   1471   1.57  christos 		policy = inp->inp_sp->sp_out;
   1472    1.1  jonathan 		break;
   1473    1.1  jonathan 	default:
   1474   1.92     ozaki 		IPSECLOG(LOG_ERR, "invalid direction=%u\n",
   1475   1.92     ozaki 		    xpl->sadb_x_policy_dir);
   1476    1.1  jonathan 		return EINVAL;
   1477    1.1  jonathan 	}
   1478    1.1  jonathan 
   1479   1.57  christos 	return ipsec_get_policy(policy, mp);
   1480    1.1  jonathan }
   1481    1.1  jonathan 
   1482    1.1  jonathan int
   1483   1.33  degroote ipsec4_delete_pcbpolicy(struct inpcb *inp)
   1484    1.1  jonathan {
   1485   1.73     ozaki 
   1486   1.73     ozaki 	KASSERT(inp != NULL);
   1487    1.1  jonathan 
   1488    1.1  jonathan 	if (inp->inp_sp == NULL)
   1489    1.1  jonathan 		return 0;
   1490    1.1  jonathan 
   1491    1.1  jonathan 	if (inp->inp_sp->sp_in != NULL)
   1492  1.113     ozaki 		ipsec_destroy_policy(inp->inp_sp->sp_in);
   1493    1.1  jonathan 
   1494    1.1  jonathan 	if (inp->inp_sp->sp_out != NULL)
   1495  1.113     ozaki 		ipsec_destroy_policy(inp->inp_sp->sp_out);
   1496    1.1  jonathan 
   1497   1.49  drochner 	ipsec_invalpcbcache(inp->inp_sp, IPSEC_DIR_ANY);
   1498   1.49  drochner 
   1499    1.1  jonathan 	ipsec_delpcbpolicy(inp->inp_sp);
   1500    1.1  jonathan 	inp->inp_sp = NULL;
   1501    1.1  jonathan 
   1502    1.1  jonathan 	return 0;
   1503    1.1  jonathan }
   1504    1.1  jonathan 
   1505    1.1  jonathan #ifdef INET6
   1506    1.1  jonathan int
   1507   1.55  drochner ipsec6_set_policy(struct in6pcb *in6p, int optname, const void *request,
   1508  1.129      maxv     size_t len, kauth_cred_t cred)
   1509    1.1  jonathan {
   1510   1.55  drochner 	const struct sadb_x_policy *xpl;
   1511   1.57  christos 	struct secpolicy **policy;
   1512    1.1  jonathan 
   1513   1.90     ozaki 	KASSERT(!cpu_softintr_p());
   1514  1.136      maxv 	KASSERT(in6p != NULL);
   1515  1.113     ozaki 	KASSERT(in6p_locked(in6p));
   1516  1.136      maxv 	KASSERT(request != NULL);
   1517   1.90     ozaki 
   1518    1.1  jonathan 	if (len < sizeof(*xpl))
   1519    1.1  jonathan 		return EINVAL;
   1520   1.55  drochner 	xpl = (const struct sadb_x_policy *)request;
   1521    1.1  jonathan 
   1522    1.1  jonathan 	/* select direction */
   1523    1.1  jonathan 	switch (xpl->sadb_x_policy_dir) {
   1524    1.1  jonathan 	case IPSEC_DIR_INBOUND:
   1525   1.57  christos 		policy = &in6p->in6p_sp->sp_in;
   1526    1.1  jonathan 		break;
   1527    1.1  jonathan 	case IPSEC_DIR_OUTBOUND:
   1528   1.57  christos 		policy = &in6p->in6p_sp->sp_out;
   1529    1.1  jonathan 		break;
   1530    1.1  jonathan 	default:
   1531   1.92     ozaki 		IPSECLOG(LOG_ERR, "invalid direction=%u\n",
   1532   1.92     ozaki 		    xpl->sadb_x_policy_dir);
   1533    1.1  jonathan 		return EINVAL;
   1534    1.1  jonathan 	}
   1535    1.1  jonathan 
   1536   1.57  christos 	return ipsec_set_policy(policy, optname, request, len, cred);
   1537    1.1  jonathan }
   1538    1.1  jonathan 
   1539    1.1  jonathan int
   1540   1.55  drochner ipsec6_get_policy(struct in6pcb *in6p, const void *request, size_t len,
   1541  1.129      maxv     struct mbuf **mp)
   1542    1.1  jonathan {
   1543   1.55  drochner 	const struct sadb_x_policy *xpl;
   1544   1.57  christos 	struct secpolicy *policy;
   1545    1.1  jonathan 
   1546    1.1  jonathan 	/* sanity check. */
   1547    1.1  jonathan 	if (in6p == NULL || request == NULL || mp == NULL)
   1548    1.1  jonathan 		return EINVAL;
   1549   1.73     ozaki 	KASSERT(in6p->in6p_sp != NULL);
   1550    1.1  jonathan 	if (len < sizeof(*xpl))
   1551    1.1  jonathan 		return EINVAL;
   1552   1.55  drochner 	xpl = (const struct sadb_x_policy *)request;
   1553    1.1  jonathan 
   1554    1.1  jonathan 	/* select direction */
   1555    1.1  jonathan 	switch (xpl->sadb_x_policy_dir) {
   1556    1.1  jonathan 	case IPSEC_DIR_INBOUND:
   1557   1.57  christos 		policy = in6p->in6p_sp->sp_in;
   1558    1.1  jonathan 		break;
   1559    1.1  jonathan 	case IPSEC_DIR_OUTBOUND:
   1560   1.57  christos 		policy = in6p->in6p_sp->sp_out;
   1561    1.1  jonathan 		break;
   1562    1.1  jonathan 	default:
   1563   1.92     ozaki 		IPSECLOG(LOG_ERR, "invalid direction=%u\n",
   1564   1.92     ozaki 		    xpl->sadb_x_policy_dir);
   1565    1.1  jonathan 		return EINVAL;
   1566    1.1  jonathan 	}
   1567    1.1  jonathan 
   1568   1.57  christos 	return ipsec_get_policy(policy, mp);
   1569    1.1  jonathan }
   1570    1.1  jonathan 
   1571    1.1  jonathan int
   1572   1.33  degroote ipsec6_delete_pcbpolicy(struct in6pcb *in6p)
   1573    1.1  jonathan {
   1574   1.73     ozaki 
   1575   1.73     ozaki 	KASSERT(in6p != NULL);
   1576    1.1  jonathan 
   1577    1.1  jonathan 	if (in6p->in6p_sp == NULL)
   1578    1.1  jonathan 		return 0;
   1579    1.1  jonathan 
   1580    1.1  jonathan 	if (in6p->in6p_sp->sp_in != NULL)
   1581  1.113     ozaki 		ipsec_destroy_policy(in6p->in6p_sp->sp_in);
   1582    1.1  jonathan 
   1583    1.1  jonathan 	if (in6p->in6p_sp->sp_out != NULL)
   1584  1.113     ozaki 		ipsec_destroy_policy(in6p->in6p_sp->sp_out);
   1585    1.1  jonathan 
   1586   1.49  drochner 	ipsec_invalpcbcache(in6p->in6p_sp, IPSEC_DIR_ANY);
   1587   1.49  drochner 
   1588    1.1  jonathan 	ipsec_delpcbpolicy(in6p->in6p_sp);
   1589    1.1  jonathan 	in6p->in6p_sp = NULL;
   1590    1.1  jonathan 
   1591    1.1  jonathan 	return 0;
   1592    1.1  jonathan }
   1593    1.1  jonathan #endif
   1594    1.1  jonathan 
   1595    1.1  jonathan /*
   1596  1.135      maxv  * Return the current level (either IPSEC_LEVEL_USE or IPSEC_LEVEL_REQUIRE).
   1597    1.1  jonathan  */
   1598    1.1  jonathan u_int
   1599   1.52  christos ipsec_get_reqlevel(const struct ipsecrequest *isr)
   1600    1.1  jonathan {
   1601    1.1  jonathan 	u_int level = 0;
   1602    1.1  jonathan 	u_int esp_trans_deflev, esp_net_deflev;
   1603    1.1  jonathan 	u_int ah_trans_deflev, ah_net_deflev;
   1604    1.1  jonathan 
   1605   1.73     ozaki 	KASSERT(isr != NULL);
   1606   1.73     ozaki 	KASSERT(isr->sp != NULL);
   1607   1.73     ozaki 	KASSERTMSG(
   1608   1.73     ozaki 	    isr->sp->spidx.src.sa.sa_family == isr->sp->spidx.dst.sa.sa_family,
   1609   1.73     ozaki 	    "af family mismatch, src %u, dst %u",
   1610   1.73     ozaki 	    isr->sp->spidx.src.sa.sa_family, isr->sp->spidx.dst.sa.sa_family);
   1611    1.1  jonathan 
   1612    1.1  jonathan /* XXX note that we have ipseclog() expanded here - code sync issue */
   1613  1.135      maxv #define IPSEC_CHECK_DEFAULT(lev)					\
   1614   1.62  christos     (((lev) != IPSEC_LEVEL_USE && (lev) != IPSEC_LEVEL_REQUIRE		\
   1615   1.62  christos     && (lev) != IPSEC_LEVEL_UNIQUE) ?					\
   1616   1.62  christos 	(ipsec_debug ? log(LOG_INFO, "fixed system default level " #lev \
   1617   1.64    plunky 	":%d->%d\n", (lev), IPSEC_LEVEL_REQUIRE) : (void)0),		\
   1618   1.62  christos 	(lev) = IPSEC_LEVEL_REQUIRE, (lev)				\
   1619   1.62  christos     : (lev))
   1620    1.1  jonathan 
   1621    1.1  jonathan 	/* set default level */
   1622    1.1  jonathan 	switch (((struct sockaddr *)&isr->sp->spidx.src)->sa_family) {
   1623    1.1  jonathan #ifdef INET
   1624    1.1  jonathan 	case AF_INET:
   1625    1.1  jonathan 		esp_trans_deflev = IPSEC_CHECK_DEFAULT(ip4_esp_trans_deflev);
   1626    1.1  jonathan 		esp_net_deflev = IPSEC_CHECK_DEFAULT(ip4_esp_net_deflev);
   1627    1.1  jonathan 		ah_trans_deflev = IPSEC_CHECK_DEFAULT(ip4_ah_trans_deflev);
   1628    1.1  jonathan 		ah_net_deflev = IPSEC_CHECK_DEFAULT(ip4_ah_net_deflev);
   1629    1.1  jonathan 		break;
   1630    1.1  jonathan #endif
   1631    1.1  jonathan #ifdef INET6
   1632    1.1  jonathan 	case AF_INET6:
   1633    1.1  jonathan 		esp_trans_deflev = IPSEC_CHECK_DEFAULT(ip6_esp_trans_deflev);
   1634    1.1  jonathan 		esp_net_deflev = IPSEC_CHECK_DEFAULT(ip6_esp_net_deflev);
   1635    1.1  jonathan 		ah_trans_deflev = IPSEC_CHECK_DEFAULT(ip6_ah_trans_deflev);
   1636    1.1  jonathan 		ah_net_deflev = IPSEC_CHECK_DEFAULT(ip6_ah_net_deflev);
   1637    1.1  jonathan 		break;
   1638    1.1  jonathan #endif /* INET6 */
   1639    1.1  jonathan 	default:
   1640   1.62  christos 		panic("%s: unknown af %u", __func__,
   1641   1.62  christos 		    isr->sp->spidx.src.sa.sa_family);
   1642    1.1  jonathan 	}
   1643    1.1  jonathan 
   1644    1.1  jonathan #undef IPSEC_CHECK_DEFAULT
   1645    1.1  jonathan 
   1646    1.1  jonathan 	/* set level */
   1647    1.1  jonathan 	switch (isr->level) {
   1648    1.1  jonathan 	case IPSEC_LEVEL_DEFAULT:
   1649    1.1  jonathan 		switch (isr->saidx.proto) {
   1650    1.1  jonathan 		case IPPROTO_ESP:
   1651    1.1  jonathan 			if (isr->saidx.mode == IPSEC_MODE_TUNNEL)
   1652    1.1  jonathan 				level = esp_net_deflev;
   1653    1.1  jonathan 			else
   1654    1.1  jonathan 				level = esp_trans_deflev;
   1655    1.1  jonathan 			break;
   1656    1.1  jonathan 		case IPPROTO_AH:
   1657    1.1  jonathan 			if (isr->saidx.mode == IPSEC_MODE_TUNNEL)
   1658    1.1  jonathan 				level = ah_net_deflev;
   1659    1.1  jonathan 			else
   1660    1.1  jonathan 				level = ah_trans_deflev;
   1661   1.14  jonathan 			break;
   1662    1.1  jonathan 		case IPPROTO_IPCOMP:
   1663    1.1  jonathan 			/*
   1664    1.1  jonathan 			 * we don't really care, as IPcomp document says that
   1665    1.1  jonathan 			 * we shouldn't compress small packets
   1666    1.1  jonathan 			 */
   1667    1.1  jonathan 			level = IPSEC_LEVEL_USE;
   1668    1.1  jonathan 			break;
   1669    1.1  jonathan 		default:
   1670   1.62  christos 			panic("%s: Illegal protocol defined %u", __func__,
   1671   1.62  christos 			    isr->saidx.proto);
   1672    1.1  jonathan 		}
   1673    1.1  jonathan 		break;
   1674    1.1  jonathan 
   1675    1.1  jonathan 	case IPSEC_LEVEL_USE:
   1676    1.1  jonathan 	case IPSEC_LEVEL_REQUIRE:
   1677    1.1  jonathan 		level = isr->level;
   1678    1.1  jonathan 		break;
   1679    1.1  jonathan 	case IPSEC_LEVEL_UNIQUE:
   1680    1.1  jonathan 		level = IPSEC_LEVEL_REQUIRE;
   1681    1.1  jonathan 		break;
   1682    1.1  jonathan 
   1683    1.1  jonathan 	default:
   1684   1.62  christos 		panic("%s: Illegal IPsec level %u", __func__, isr->level);
   1685    1.1  jonathan 	}
   1686    1.1  jonathan 
   1687    1.1  jonathan 	return level;
   1688    1.1  jonathan }
   1689    1.1  jonathan 
   1690    1.1  jonathan /*
   1691  1.131      maxv  * Check security policy requirements against the actual packet contents.
   1692    1.1  jonathan  *
   1693  1.131      maxv  * If the SP requires an IPsec packet, and the packet was neither AH nor ESP,
   1694  1.131      maxv  * then kick it.
   1695    1.1  jonathan  */
   1696    1.1  jonathan int
   1697  1.132      maxv ipsec_sp_reject(const struct secpolicy *sp, const struct mbuf *m)
   1698    1.1  jonathan {
   1699    1.1  jonathan 	struct ipsecrequest *isr;
   1700    1.1  jonathan 
   1701   1.77     ozaki 	if (KEYDEBUG_ON(KEYDEBUG_IPSEC_DATA)) {
   1702   1.77     ozaki 		printf("%s: using SP\n", __func__);
   1703   1.77     ozaki 		kdebug_secpolicy(sp);
   1704   1.77     ozaki 	}
   1705    1.1  jonathan 
   1706    1.1  jonathan 	/* check policy */
   1707    1.1  jonathan 	switch (sp->policy) {
   1708    1.1  jonathan 	case IPSEC_POLICY_DISCARD:
   1709    1.1  jonathan 		return 1;
   1710    1.1  jonathan 	case IPSEC_POLICY_BYPASS:
   1711    1.1  jonathan 	case IPSEC_POLICY_NONE:
   1712    1.1  jonathan 		return 0;
   1713    1.1  jonathan 	}
   1714    1.1  jonathan 
   1715   1.73     ozaki 	KASSERTMSG(sp->policy == IPSEC_POLICY_IPSEC,
   1716   1.73     ozaki 	    "invalid policy %u", sp->policy);
   1717    1.1  jonathan 
   1718    1.1  jonathan 	/* XXX should compare policy against ipsec header history */
   1719    1.1  jonathan 
   1720    1.1  jonathan 	for (isr = sp->req; isr != NULL; isr = isr->next) {
   1721    1.1  jonathan 		if (ipsec_get_reqlevel(isr) != IPSEC_LEVEL_REQUIRE)
   1722    1.1  jonathan 			continue;
   1723    1.1  jonathan 		switch (isr->saidx.proto) {
   1724    1.1  jonathan 		case IPPROTO_ESP:
   1725    1.1  jonathan 			if ((m->m_flags & M_DECRYPTED) == 0) {
   1726   1.77     ozaki 				KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_DUMP,
   1727   1.77     ozaki 				    "ESP m_flags:%x\n", m->m_flags);
   1728    1.1  jonathan 				return 1;
   1729    1.1  jonathan 			}
   1730    1.1  jonathan 			break;
   1731    1.1  jonathan 		case IPPROTO_AH:
   1732    1.1  jonathan 			if ((m->m_flags & M_AUTHIPHDR) == 0) {
   1733   1.77     ozaki 				KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_DUMP,
   1734   1.77     ozaki 				    "AH m_flags:%x\n", m->m_flags);
   1735    1.1  jonathan 				return 1;
   1736    1.1  jonathan 			}
   1737    1.1  jonathan 			break;
   1738    1.1  jonathan 		case IPPROTO_IPCOMP:
   1739    1.1  jonathan 			/*
   1740  1.131      maxv 			 * We don't really care, as IPcomp document
   1741    1.1  jonathan 			 * says that we shouldn't compress small
   1742    1.1  jonathan 			 * packets, IPComp policy should always be
   1743    1.1  jonathan 			 * treated as being in "use" level.
   1744    1.1  jonathan 			 */
   1745    1.1  jonathan 			break;
   1746    1.1  jonathan 		}
   1747    1.1  jonathan 	}
   1748  1.132      maxv 
   1749  1.132      maxv 	return 0;
   1750    1.1  jonathan }
   1751    1.1  jonathan 
   1752    1.1  jonathan /*
   1753    1.1  jonathan  * Check AH/ESP integrity.
   1754    1.1  jonathan  * This function is called from tcp_input(), udp_input(),
   1755    1.1  jonathan  * and {ah,esp}4_input for tunnel mode
   1756    1.1  jonathan  */
   1757    1.1  jonathan int
   1758   1.33  degroote ipsec4_in_reject(struct mbuf *m, struct inpcb *inp)
   1759    1.1  jonathan {
   1760  1.133      maxv 	struct inpcb_hdr *inph = (struct inpcb_hdr *)inp;
   1761    1.1  jonathan 	struct secpolicy *sp;
   1762    1.1  jonathan 	int error;
   1763    1.1  jonathan 	int result;
   1764    1.1  jonathan 
   1765   1.73     ozaki 	KASSERT(m != NULL);
   1766    1.1  jonathan 
   1767  1.133      maxv 	if (inph == NULL)
   1768  1.131      maxv 		sp = ipsec_getpolicybyaddr(m, IPSEC_DIR_INBOUND,
   1769  1.131      maxv 		    IP_FORWARDING, &error);
   1770    1.1  jonathan 	else
   1771    1.5  jonathan 		sp = ipsec_getpolicybysock(m, IPSEC_DIR_INBOUND,
   1772  1.133      maxv 		    inph, &error);
   1773    1.1  jonathan 
   1774    1.1  jonathan 	if (sp != NULL) {
   1775  1.132      maxv 		result = ipsec_sp_reject(sp, m);
   1776    1.1  jonathan 		if (result)
   1777   1.37   thorpej 			IPSEC_STATINC(IPSEC_STAT_IN_POLVIO);
   1778  1.113     ozaki 		KEY_SP_UNREF(&sp);
   1779    1.1  jonathan 	} else {
   1780  1.131      maxv 		result = 0;
   1781    1.1  jonathan 	}
   1782    1.1  jonathan 	return result;
   1783    1.1  jonathan }
   1784    1.1  jonathan 
   1785    1.1  jonathan #ifdef INET6
   1786    1.1  jonathan /*
   1787    1.1  jonathan  * Check AH/ESP integrity.
   1788    1.1  jonathan  * This function is called from tcp6_input(), udp6_input(),
   1789    1.1  jonathan  * and {ah,esp}6_input for tunnel mode
   1790    1.1  jonathan  */
   1791    1.1  jonathan int
   1792   1.33  degroote ipsec6_in_reject(struct mbuf *m, struct in6pcb *in6p)
   1793    1.1  jonathan {
   1794  1.133      maxv 	struct inpcb_hdr *inph = (struct inpcb_hdr *)in6p;
   1795  1.131      maxv 	struct secpolicy *sp;
   1796    1.1  jonathan 	int error;
   1797    1.1  jonathan 	int result;
   1798    1.1  jonathan 
   1799   1.80     ozaki 	KASSERT(m != NULL);
   1800    1.1  jonathan 
   1801  1.133      maxv 	if (inph == NULL)
   1802  1.131      maxv 		sp = ipsec_getpolicybyaddr(m, IPSEC_DIR_INBOUND,
   1803  1.131      maxv 		    IP_FORWARDING, &error);
   1804    1.1  jonathan 	else
   1805    1.5  jonathan 		sp = ipsec_getpolicybysock(m, IPSEC_DIR_INBOUND,
   1806  1.133      maxv 		    inph, &error);
   1807    1.1  jonathan 
   1808    1.1  jonathan 	if (sp != NULL) {
   1809  1.132      maxv 		result = ipsec_sp_reject(sp, m);
   1810    1.1  jonathan 		if (result)
   1811   1.37   thorpej 			IPSEC_STATINC(IPSEC_STAT_IN_POLVIO);
   1812  1.113     ozaki 		KEY_SP_UNREF(&sp);
   1813    1.1  jonathan 	} else {
   1814    1.1  jonathan 		result = 0;
   1815    1.1  jonathan 	}
   1816    1.1  jonathan 	return result;
   1817    1.1  jonathan }
   1818    1.1  jonathan #endif
   1819    1.1  jonathan 
   1820    1.1  jonathan /*
   1821  1.132      maxv  * Compute the byte size to be occupied by the IPsec header. If it is
   1822  1.132      maxv  * tunneled, it includes the size of outer IP header.
   1823    1.1  jonathan  */
   1824    1.1  jonathan static size_t
   1825  1.132      maxv ipsec_sp_hdrsiz(const struct secpolicy *sp, const struct mbuf *m)
   1826    1.1  jonathan {
   1827  1.107     ozaki 	struct ipsecrequest *isr;
   1828    1.1  jonathan 	size_t siz;
   1829    1.1  jonathan 
   1830   1.77     ozaki 	if (KEYDEBUG_ON(KEYDEBUG_IPSEC_DATA)) {
   1831   1.77     ozaki 		printf("%s: using SP\n", __func__);
   1832   1.77     ozaki 		kdebug_secpolicy(sp);
   1833   1.77     ozaki 	}
   1834    1.1  jonathan 
   1835    1.1  jonathan 	switch (sp->policy) {
   1836    1.1  jonathan 	case IPSEC_POLICY_DISCARD:
   1837    1.1  jonathan 	case IPSEC_POLICY_BYPASS:
   1838    1.1  jonathan 	case IPSEC_POLICY_NONE:
   1839    1.1  jonathan 		return 0;
   1840    1.1  jonathan 	}
   1841    1.1  jonathan 
   1842   1.73     ozaki 	KASSERTMSG(sp->policy == IPSEC_POLICY_IPSEC,
   1843   1.73     ozaki 	    "invalid policy %u", sp->policy);
   1844    1.1  jonathan 
   1845    1.1  jonathan 	siz = 0;
   1846    1.1  jonathan 	for (isr = sp->req; isr != NULL; isr = isr->next) {
   1847    1.1  jonathan 		size_t clen = 0;
   1848  1.121     ozaki 		struct secasvar *sav;
   1849    1.1  jonathan 
   1850    1.1  jonathan 		switch (isr->saidx.proto) {
   1851    1.1  jonathan 		case IPPROTO_ESP:
   1852  1.121     ozaki 			sav = ipsec_lookup_sa(isr, m);
   1853  1.121     ozaki 			if (sav != NULL) {
   1854  1.107     ozaki 				clen = esp_hdrsiz(sav);
   1855  1.116     ozaki 				KEY_SA_UNREF(&sav);
   1856  1.107     ozaki 			} else
   1857  1.107     ozaki 				clen = esp_hdrsiz(NULL);
   1858    1.1  jonathan 			break;
   1859    1.1  jonathan 		case IPPROTO_AH:
   1860  1.121     ozaki 			sav = ipsec_lookup_sa(isr, m);
   1861  1.121     ozaki 			if (sav != NULL) {
   1862  1.107     ozaki 				clen = ah_hdrsiz(sav);
   1863  1.116     ozaki 				KEY_SA_UNREF(&sav);
   1864  1.107     ozaki 			} else
   1865  1.107     ozaki 				clen = ah_hdrsiz(NULL);
   1866    1.1  jonathan 			break;
   1867    1.1  jonathan 		case IPPROTO_IPCOMP:
   1868    1.1  jonathan 			clen = sizeof(struct ipcomp);
   1869    1.1  jonathan 			break;
   1870    1.1  jonathan 		}
   1871    1.1  jonathan 
   1872    1.1  jonathan 		if (isr->saidx.mode == IPSEC_MODE_TUNNEL) {
   1873    1.1  jonathan 			switch (isr->saidx.dst.sa.sa_family) {
   1874    1.1  jonathan 			case AF_INET:
   1875    1.1  jonathan 				clen += sizeof(struct ip);
   1876    1.1  jonathan 				break;
   1877    1.1  jonathan #ifdef INET6
   1878    1.1  jonathan 			case AF_INET6:
   1879    1.1  jonathan 				clen += sizeof(struct ip6_hdr);
   1880    1.1  jonathan 				break;
   1881    1.1  jonathan #endif
   1882    1.1  jonathan 			default:
   1883   1.92     ozaki 				IPSECLOG(LOG_ERR, "unknown AF %d in "
   1884   1.92     ozaki 				    "IPsec tunnel SA\n",
   1885   1.62  christos 				    ((const struct sockaddr *)&isr->saidx.dst)
   1886   1.92     ozaki 				    ->sa_family);
   1887    1.1  jonathan 				break;
   1888    1.1  jonathan 			}
   1889    1.1  jonathan 		}
   1890    1.1  jonathan 		siz += clen;
   1891    1.1  jonathan 	}
   1892    1.1  jonathan 
   1893    1.1  jonathan 	return siz;
   1894    1.1  jonathan }
   1895    1.1  jonathan 
   1896    1.1  jonathan size_t
   1897   1.33  degroote ipsec4_hdrsiz(struct mbuf *m, u_int dir, struct inpcb *inp)
   1898    1.1  jonathan {
   1899  1.133      maxv 	struct inpcb_hdr *inph = (struct inpcb_hdr *)inp;
   1900    1.1  jonathan 	struct secpolicy *sp;
   1901    1.1  jonathan 	int error;
   1902    1.1  jonathan 	size_t size;
   1903    1.1  jonathan 
   1904   1.73     ozaki 	KASSERT(m != NULL);
   1905  1.133      maxv 	KASSERTMSG(inph == NULL || inph->inph_socket != NULL,
   1906  1.133      maxv 	    "socket w/o inpcb");
   1907    1.1  jonathan 
   1908  1.133      maxv 	if (inph == NULL)
   1909    1.1  jonathan 		sp = ipsec_getpolicybyaddr(m, dir, IP_FORWARDING, &error);
   1910    1.1  jonathan 	else
   1911  1.133      maxv 		sp = ipsec_getpolicybysock(m, dir, inph, &error);
   1912    1.1  jonathan 
   1913    1.1  jonathan 	if (sp != NULL) {
   1914  1.132      maxv 		size = ipsec_sp_hdrsiz(sp, m);
   1915  1.131      maxv 		KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_DATA, "size:%zu.\n", size);
   1916  1.113     ozaki 		KEY_SP_UNREF(&sp);
   1917    1.1  jonathan 	} else {
   1918  1.133      maxv 		size = 0;
   1919    1.1  jonathan 	}
   1920  1.131      maxv 
   1921    1.1  jonathan 	return size;
   1922    1.1  jonathan }
   1923    1.1  jonathan 
   1924    1.1  jonathan #ifdef INET6
   1925    1.1  jonathan size_t
   1926   1.33  degroote ipsec6_hdrsiz(struct mbuf *m, u_int dir, struct in6pcb *in6p)
   1927    1.1  jonathan {
   1928  1.133      maxv 	struct inpcb_hdr *inph = (struct inpcb_hdr *)in6p;
   1929    1.1  jonathan 	struct secpolicy *sp;
   1930    1.1  jonathan 	int error;
   1931    1.1  jonathan 	size_t size;
   1932    1.1  jonathan 
   1933   1.73     ozaki 	KASSERT(m != NULL);
   1934  1.133      maxv 	KASSERTMSG(inph == NULL || inph->inph_socket != NULL,
   1935   1.73     ozaki 	    "socket w/o inpcb");
   1936    1.1  jonathan 
   1937  1.133      maxv 	if (inph == NULL)
   1938    1.1  jonathan 		sp = ipsec_getpolicybyaddr(m, dir, IP_FORWARDING, &error);
   1939    1.1  jonathan 	else
   1940  1.133      maxv 		sp = ipsec_getpolicybysock(m, dir, inph, &error);
   1941    1.1  jonathan 
   1942  1.131      maxv 	if (sp != NULL) {
   1943  1.132      maxv 		size = ipsec_sp_hdrsiz(sp, m);
   1944  1.131      maxv 		KEYDEBUG_PRINTF(KEYDEBUG_IPSEC_DATA, "size:%zu.\n", size);
   1945  1.131      maxv 		KEY_SP_UNREF(&sp);
   1946  1.131      maxv 	} else {
   1947  1.131      maxv 		size = 0;
   1948  1.131      maxv 	}
   1949    1.1  jonathan 
   1950    1.1  jonathan 	return size;
   1951    1.1  jonathan }
   1952  1.131      maxv #endif
   1953    1.1  jonathan 
   1954    1.1  jonathan /*
   1955    1.1  jonathan  * Check the variable replay window.
   1956    1.1  jonathan  * ipsec_chkreplay() performs replay check before ICV verification.
   1957    1.1  jonathan  * ipsec_updatereplay() updates replay bitmap.  This must be called after
   1958    1.1  jonathan  * ICV verification (it also performs replay check, which is usually done
   1959    1.1  jonathan  * beforehand).
   1960    1.1  jonathan  * 0 (zero) is returned if packet disallowed, 1 if packet permitted.
   1961    1.1  jonathan  *
   1962    1.1  jonathan  * based on RFC 2401.
   1963    1.1  jonathan  */
   1964    1.1  jonathan int
   1965   1.50  drochner ipsec_chkreplay(u_int32_t seq, const struct secasvar *sav)
   1966    1.1  jonathan {
   1967    1.1  jonathan 	const struct secreplay *replay;
   1968    1.1  jonathan 	u_int32_t diff;
   1969    1.1  jonathan 	int fr;
   1970    1.1  jonathan 	u_int32_t wsizeb;	/* constant: bits of window size */
   1971    1.1  jonathan 	int frlast;		/* constant: last frame */
   1972    1.1  jonathan 
   1973   1.62  christos 	IPSEC_SPLASSERT_SOFTNET(__func__);
   1974    1.1  jonathan 
   1975   1.73     ozaki 	KASSERT(sav != NULL);
   1976   1.73     ozaki 	KASSERT(sav->replay != NULL);
   1977    1.1  jonathan 
   1978    1.1  jonathan 	replay = sav->replay;
   1979    1.1  jonathan 
   1980    1.1  jonathan 	if (replay->wsize == 0)
   1981    1.1  jonathan 		return 1;	/* no need to check replay. */
   1982    1.1  jonathan 
   1983    1.1  jonathan 	/* constant */
   1984    1.1  jonathan 	frlast = replay->wsize - 1;
   1985    1.1  jonathan 	wsizeb = replay->wsize << 3;
   1986    1.1  jonathan 
   1987    1.1  jonathan 	/* sequence number of 0 is invalid */
   1988    1.1  jonathan 	if (seq == 0)
   1989    1.1  jonathan 		return 0;
   1990    1.1  jonathan 
   1991    1.1  jonathan 	/* first time is always okay */
   1992    1.1  jonathan 	if (replay->count == 0)
   1993    1.1  jonathan 		return 1;
   1994    1.1  jonathan 
   1995    1.1  jonathan 	if (seq > replay->lastseq) {
   1996    1.1  jonathan 		/* larger sequences are okay */
   1997    1.1  jonathan 		return 1;
   1998    1.1  jonathan 	} else {
   1999    1.1  jonathan 		/* seq is equal or less than lastseq. */
   2000    1.1  jonathan 		diff = replay->lastseq - seq;
   2001    1.1  jonathan 
   2002    1.1  jonathan 		/* over range to check, i.e. too old or wrapped */
   2003    1.1  jonathan 		if (diff >= wsizeb)
   2004    1.1  jonathan 			return 0;
   2005    1.1  jonathan 
   2006    1.1  jonathan 		fr = frlast - diff / 8;
   2007    1.1  jonathan 
   2008    1.1  jonathan 		/* this packet already seen ? */
   2009    1.1  jonathan 		if ((replay->bitmap)[fr] & (1 << (diff % 8)))
   2010    1.1  jonathan 			return 0;
   2011    1.1  jonathan 
   2012    1.1  jonathan 		/* out of order but good */
   2013    1.1  jonathan 		return 1;
   2014    1.1  jonathan 	}
   2015    1.1  jonathan }
   2016    1.1  jonathan 
   2017    1.1  jonathan /*
   2018    1.1  jonathan  * check replay counter whether to update or not.
   2019    1.1  jonathan  * OUT:	0:	OK
   2020    1.1  jonathan  *	1:	NG
   2021    1.1  jonathan  */
   2022    1.1  jonathan int
   2023   1.50  drochner ipsec_updatereplay(u_int32_t seq, const struct secasvar *sav)
   2024    1.1  jonathan {
   2025    1.1  jonathan 	struct secreplay *replay;
   2026    1.1  jonathan 	u_int32_t diff;
   2027    1.1  jonathan 	int fr;
   2028    1.1  jonathan 	u_int32_t wsizeb;	/* constant: bits of window size */
   2029    1.1  jonathan 	int frlast;		/* constant: last frame */
   2030    1.1  jonathan 
   2031   1.62  christos 	IPSEC_SPLASSERT_SOFTNET(__func__);
   2032    1.1  jonathan 
   2033   1.73     ozaki 	KASSERT(sav != NULL);
   2034   1.73     ozaki 	KASSERT(sav->replay != NULL);
   2035    1.1  jonathan 
   2036    1.1  jonathan 	replay = sav->replay;
   2037    1.1  jonathan 
   2038    1.1  jonathan 	if (replay->wsize == 0)
   2039    1.1  jonathan 		goto ok;	/* no need to check replay. */
   2040    1.1  jonathan 
   2041    1.1  jonathan 	/* constant */
   2042    1.1  jonathan 	frlast = replay->wsize - 1;
   2043    1.1  jonathan 	wsizeb = replay->wsize << 3;
   2044    1.1  jonathan 
   2045    1.1  jonathan 	/* sequence number of 0 is invalid */
   2046    1.1  jonathan 	if (seq == 0)
   2047    1.1  jonathan 		return 1;
   2048    1.1  jonathan 
   2049    1.1  jonathan 	/* first time */
   2050    1.1  jonathan 	if (replay->count == 0) {
   2051    1.1  jonathan 		replay->lastseq = seq;
   2052   1.41    cegger 		memset(replay->bitmap, 0, replay->wsize);
   2053    1.1  jonathan 		(replay->bitmap)[frlast] = 1;
   2054    1.1  jonathan 		goto ok;
   2055    1.1  jonathan 	}
   2056    1.1  jonathan 
   2057    1.1  jonathan 	if (seq > replay->lastseq) {
   2058    1.1  jonathan 		/* seq is larger than lastseq. */
   2059    1.1  jonathan 		diff = seq - replay->lastseq;
   2060    1.1  jonathan 
   2061    1.1  jonathan 		/* new larger sequence number */
   2062    1.1  jonathan 		if (diff < wsizeb) {
   2063    1.1  jonathan 			/* In window */
   2064    1.1  jonathan 			/* set bit for this packet */
   2065    1.1  jonathan 			vshiftl(replay->bitmap, diff, replay->wsize);
   2066    1.1  jonathan 			(replay->bitmap)[frlast] |= 1;
   2067    1.1  jonathan 		} else {
   2068    1.1  jonathan 			/* this packet has a "way larger" */
   2069   1.41    cegger 			memset(replay->bitmap, 0, replay->wsize);
   2070    1.1  jonathan 			(replay->bitmap)[frlast] = 1;
   2071    1.1  jonathan 		}
   2072    1.1  jonathan 		replay->lastseq = seq;
   2073    1.1  jonathan 
   2074    1.1  jonathan 		/* larger is good */
   2075    1.1  jonathan 	} else {
   2076    1.1  jonathan 		/* seq is equal or less than lastseq. */
   2077    1.1  jonathan 		diff = replay->lastseq - seq;
   2078    1.1  jonathan 
   2079    1.1  jonathan 		/* over range to check, i.e. too old or wrapped */
   2080    1.1  jonathan 		if (diff >= wsizeb)
   2081    1.1  jonathan 			return 1;
   2082    1.1  jonathan 
   2083    1.1  jonathan 		fr = frlast - diff / 8;
   2084    1.1  jonathan 
   2085    1.1  jonathan 		/* this packet already seen ? */
   2086    1.1  jonathan 		if ((replay->bitmap)[fr] & (1 << (diff % 8)))
   2087    1.1  jonathan 			return 1;
   2088    1.1  jonathan 
   2089    1.1  jonathan 		/* mark as seen */
   2090    1.1  jonathan 		(replay->bitmap)[fr] |= (1 << (diff % 8));
   2091    1.1  jonathan 
   2092    1.1  jonathan 		/* out of order but good */
   2093    1.1  jonathan 	}
   2094    1.1  jonathan 
   2095    1.1  jonathan ok:
   2096    1.1  jonathan 	if (replay->count == ~0) {
   2097  1.122     ozaki 		char buf[IPSEC_LOGSASTRLEN];
   2098    1.1  jonathan 
   2099    1.1  jonathan 		/* set overflow flag */
   2100    1.1  jonathan 		replay->overflow++;
   2101    1.1  jonathan 
   2102    1.1  jonathan 		/* don't increment, no more packets accepted */
   2103    1.1  jonathan 		if ((sav->flags & SADB_X_EXT_CYCSEQ) == 0)
   2104    1.1  jonathan 			return 1;
   2105    1.1  jonathan 
   2106   1.92     ozaki 		IPSECLOG(LOG_WARNING, "replay counter made %d cycle. %s\n",
   2107   1.92     ozaki 		    replay->overflow, ipsec_logsastr(sav, buf, sizeof(buf)));
   2108    1.1  jonathan 	}
   2109    1.1  jonathan 
   2110    1.1  jonathan 	replay->count++;
   2111    1.1  jonathan 
   2112    1.1  jonathan 	return 0;
   2113    1.1  jonathan }
   2114    1.1  jonathan 
   2115    1.1  jonathan /*
   2116  1.132      maxv  * shift variable length buffer to left.
   2117    1.1  jonathan  * IN:	bitmap: pointer to the buffer
   2118  1.129      maxv  *	nbit:	the number of to shift.
   2119    1.1  jonathan  *	wsize:	buffer size (bytes).
   2120    1.1  jonathan  */
   2121    1.1  jonathan static void
   2122   1.33  degroote vshiftl(unsigned char *bitmap, int nbit, int wsize)
   2123    1.1  jonathan {
   2124    1.1  jonathan 	int s, j, i;
   2125    1.1  jonathan 	unsigned char over;
   2126    1.1  jonathan 
   2127    1.1  jonathan 	for (j = 0; j < nbit; j += 8) {
   2128    1.1  jonathan 		s = (nbit - j < 8) ? (nbit - j): 8;
   2129    1.1  jonathan 		bitmap[0] <<= s;
   2130    1.1  jonathan 		for (i = 1; i < wsize; i++) {
   2131    1.1  jonathan 			over = (bitmap[i] >> (8 - s));
   2132    1.1  jonathan 			bitmap[i] <<= s;
   2133    1.1  jonathan 			bitmap[i-1] |= over;
   2134    1.1  jonathan 		}
   2135    1.1  jonathan 	}
   2136    1.1  jonathan 
   2137    1.1  jonathan 	return;
   2138    1.1  jonathan }
   2139    1.1  jonathan 
   2140    1.1  jonathan /* Return a printable string for the address. */
   2141   1.17  christos const char *
   2142   1.88       ryo ipsec_address(const union sockaddr_union *sa, char *buf, size_t size)
   2143    1.1  jonathan {
   2144    1.1  jonathan 	switch (sa->sa.sa_family) {
   2145    1.1  jonathan #if INET
   2146    1.1  jonathan 	case AF_INET:
   2147   1.88       ryo 		in_print(buf, size, &sa->sin.sin_addr);
   2148   1.88       ryo 		return buf;
   2149  1.129      maxv #endif
   2150    1.1  jonathan #if INET6
   2151    1.1  jonathan 	case AF_INET6:
   2152   1.88       ryo 		in6_print(buf, size, &sa->sin6.sin6_addr);
   2153   1.88       ryo 		return buf;
   2154  1.129      maxv #endif
   2155    1.1  jonathan 	default:
   2156    1.1  jonathan 		return "(unknown address family)";
   2157    1.1  jonathan 	}
   2158    1.1  jonathan }
   2159    1.1  jonathan 
   2160    1.1  jonathan const char *
   2161   1.88       ryo ipsec_logsastr(const struct secasvar *sav, char *buf, size_t size)
   2162    1.1  jonathan {
   2163   1.50  drochner 	const struct secasindex *saidx = &sav->sah->saidx;
   2164   1.88       ryo 	char sbuf[IPSEC_ADDRSTRLEN], dbuf[IPSEC_ADDRSTRLEN];
   2165    1.1  jonathan 
   2166   1.74     ozaki 	KASSERTMSG(saidx->src.sa.sa_family == saidx->dst.sa.sa_family,
   2167   1.74     ozaki 	    "af family mismatch, src %u, dst %u",
   2168   1.74     ozaki 	    saidx->src.sa.sa_family, saidx->dst.sa.sa_family);
   2169    1.1  jonathan 
   2170   1.88       ryo 	snprintf(buf, size, "SA(SPI=%u src=%s dst=%s)",
   2171   1.88       ryo 	    (u_int32_t)ntohl(sav->spi),
   2172   1.88       ryo 	    ipsec_address(&saidx->src, sbuf, sizeof(sbuf)),
   2173   1.88       ryo 	    ipsec_address(&saidx->dst, dbuf, sizeof(dbuf)));
   2174    1.1  jonathan 
   2175    1.1  jonathan 	return buf;
   2176    1.1  jonathan }
   2177    1.1  jonathan 
   2178    1.1  jonathan void
   2179   1.33  degroote ipsec_dumpmbuf(struct mbuf *m)
   2180    1.1  jonathan {
   2181    1.1  jonathan 	int totlen;
   2182    1.1  jonathan 	int i;
   2183    1.1  jonathan 	u_char *p;
   2184    1.1  jonathan 
   2185    1.1  jonathan 	totlen = 0;
   2186    1.1  jonathan 	printf("---\n");
   2187    1.1  jonathan 	while (m) {
   2188    1.1  jonathan 		p = mtod(m, u_char *);
   2189    1.1  jonathan 		for (i = 0; i < m->m_len; i++) {
   2190    1.1  jonathan 			printf("%02x ", p[i]);
   2191    1.1  jonathan 			totlen++;
   2192    1.1  jonathan 			if (totlen % 16 == 0)
   2193    1.1  jonathan 				printf("\n");
   2194    1.1  jonathan 		}
   2195    1.1  jonathan 		m = m->m_next;
   2196    1.1  jonathan 	}
   2197    1.1  jonathan 	if (totlen % 16 != 0)
   2198    1.1  jonathan 		printf("\n");
   2199    1.1  jonathan 	printf("---\n");
   2200    1.1  jonathan }
   2201    1.1  jonathan 
   2202   1.26  degroote #ifdef INET6
   2203  1.129      maxv struct secpolicy *
   2204  1.129      maxv ipsec6_check_policy(struct mbuf *m, struct in6pcb *in6p, int flags,
   2205  1.129      maxv     int *needipsecp, int *errorp)
   2206   1.26  degroote {
   2207   1.26  degroote 	struct secpolicy *sp = NULL;
   2208   1.26  degroote 	int s;
   2209   1.26  degroote 	int error = 0;
   2210   1.26  degroote 	int needipsec = 0;
   2211   1.26  degroote 
   2212   1.36  degroote 	if (!ipsec_outdone(m)) {
   2213   1.36  degroote 		s = splsoftnet();
   2214   1.26  degroote 		if (in6p != NULL &&
   2215   1.99     ozaki 		    ipsec_pcb_skip_ipsec(in6p->in6p_sp, IPSEC_DIR_OUTBOUND)) {
   2216   1.46  jakllsch 			splx(s);
   2217   1.26  degroote 			goto skippolicycheck;
   2218   1.46  jakllsch 		}
   2219  1.135      maxv 		sp = ipsec6_checkpolicy(m, IPSEC_DIR_OUTBOUND, flags, &error,
   2220  1.135      maxv 		    in6p);
   2221   1.26  degroote 
   2222   1.36  degroote 		/*
   2223   1.36  degroote 		 * There are four return cases:
   2224   1.36  degroote 		 *	sp != NULL			apply IPsec policy
   2225   1.36  degroote 		 *	sp == NULL, error == 0		no IPsec handling needed
   2226   1.36  degroote 		 *	sp == NULL, error == -EINVAL  discard packet w/o error
   2227   1.36  degroote 		 *	sp == NULL, error != 0		discard packet, report error
   2228   1.36  degroote 		 */
   2229   1.36  degroote 
   2230   1.26  degroote 		splx(s);
   2231   1.36  degroote 		if (sp == NULL) {
   2232  1.129      maxv 			/*
   2233   1.36  degroote 			 * Caller must check the error return to see if it needs to discard
   2234   1.36  degroote 			 * the packet.
   2235   1.36  degroote 			 */
   2236   1.26  degroote 			needipsec = 0;
   2237   1.26  degroote 		} else {
   2238   1.36  degroote 			needipsec = 1;
   2239   1.26  degroote 		}
   2240   1.26  degroote 	}
   2241   1.26  degroote skippolicycheck:;
   2242   1.26  degroote 
   2243   1.26  degroote 	*errorp = error;
   2244   1.26  degroote 	*needipsecp = needipsec;
   2245   1.26  degroote 	return sp;
   2246   1.26  degroote }
   2247   1.66     ozaki 
   2248   1.66     ozaki int
   2249   1.66     ozaki ipsec6_input(struct mbuf *m)
   2250   1.66     ozaki {
   2251   1.66     ozaki 	struct secpolicy *sp;
   2252   1.66     ozaki 	int s, error;
   2253   1.66     ozaki 
   2254   1.66     ozaki 	s = splsoftnet();
   2255  1.109     ozaki 	sp = ipsec_getpolicybyaddr(m, IPSEC_DIR_INBOUND, IP_FORWARDING, &error);
   2256   1.66     ozaki 	if (sp != NULL) {
   2257   1.66     ozaki 		/*
   2258   1.66     ozaki 		 * Check security policy against packet
   2259   1.66     ozaki 		 * attributes.
   2260   1.66     ozaki 		 */
   2261  1.132      maxv 		error = ipsec_sp_reject(sp, m);
   2262  1.113     ozaki 		KEY_SP_UNREF(&sp);
   2263   1.66     ozaki 	} else {
   2264   1.66     ozaki 		/* XXX error stat??? */
   2265   1.66     ozaki 		error = EINVAL;
   2266   1.92     ozaki 		IPSECLOG(LOG_DEBUG, "no SP, packet discarded\n");/*XXX*/
   2267   1.66     ozaki 	}
   2268   1.66     ozaki 	splx(s);
   2269   1.66     ozaki 
   2270   1.66     ozaki 	return error;
   2271   1.66     ozaki }
   2272   1.66     ozaki #endif /* INET6 */
   2273   1.26  degroote 
   2274  1.135      maxv /*
   2275  1.135      maxv  * -----------------------------------------------------------------------------
   2276  1.135      maxv  */
   2277   1.26  degroote 
   2278    1.1  jonathan /* XXX this stuff doesn't belong here... */
   2279    1.1  jonathan 
   2280  1.135      maxv static struct xformsw *xforms = NULL;
   2281    1.1  jonathan 
   2282    1.1  jonathan /*
   2283    1.1  jonathan  * Register a transform; typically at system startup.
   2284    1.1  jonathan  */
   2285    1.1  jonathan void
   2286   1.51  drochner xform_register(struct xformsw *xsp)
   2287    1.1  jonathan {
   2288    1.1  jonathan 	xsp->xf_next = xforms;
   2289    1.1  jonathan 	xforms = xsp;
   2290    1.1  jonathan }
   2291    1.1  jonathan 
   2292    1.1  jonathan /*
   2293    1.1  jonathan  * Initialize transform support in an sav.
   2294    1.1  jonathan  */
   2295    1.1  jonathan int
   2296    1.1  jonathan xform_init(struct secasvar *sav, int xftype)
   2297    1.1  jonathan {
   2298    1.1  jonathan 	struct xformsw *xsp;
   2299    1.1  jonathan 
   2300    1.1  jonathan 	if (sav->tdb_xform != NULL)	/* previously initialized */
   2301    1.1  jonathan 		return 0;
   2302    1.1  jonathan 	for (xsp = xforms; xsp; xsp = xsp->xf_next)
   2303    1.1  jonathan 		if (xsp->xf_type == xftype)
   2304    1.1  jonathan 			return (*xsp->xf_init)(sav, xsp);
   2305    1.1  jonathan 
   2306   1.92     ozaki 	IPSECLOG(LOG_DEBUG, "no match for xform type %d\n", xftype);
   2307    1.1  jonathan 	return EINVAL;
   2308    1.1  jonathan }
   2309    1.1  jonathan 
   2310   1.58  christos void
   2311  1.129      maxv nat_t_ports_get(struct mbuf *m, u_int16_t *dport, u_int16_t *sport)
   2312  1.129      maxv {
   2313   1.58  christos 	struct m_tag *tag;
   2314   1.58  christos 
   2315   1.58  christos 	if ((tag = m_tag_find(m, PACKET_TAG_IPSEC_NAT_T_PORTS, NULL))) {
   2316   1.58  christos 		*sport = ((u_int16_t *)(tag + 1))[0];
   2317   1.58  christos 		*dport = ((u_int16_t *)(tag + 1))[1];
   2318   1.58  christos 	} else
   2319   1.58  christos 		*sport = *dport = 0;
   2320   1.58  christos }
   2321   1.58  christos 
   2322   1.37   thorpej /*
   2323   1.37   thorpej  * XXXJRT This should be done as a protosw init call.
   2324   1.37   thorpej  */
   2325    1.1  jonathan void
   2326    1.1  jonathan ipsec_attach(void)
   2327    1.1  jonathan {
   2328   1.37   thorpej 
   2329  1.118     ozaki 	ipsec_output_init();
   2330  1.118     ozaki 
   2331   1.37   thorpej 	ipsecstat_percpu = percpu_alloc(sizeof(uint64_t) * IPSEC_NSTATS);
   2332   1.37   thorpej 
   2333   1.71     ozaki 	sysctl_net_inet_ipsec_setup(NULL);
   2334   1.71     ozaki #ifdef INET6
   2335   1.71     ozaki 	sysctl_net_inet6_ipsec6_setup(NULL);
   2336   1.71     ozaki #endif
   2337   1.71     ozaki 
   2338    1.1  jonathan 	ah_attach();
   2339    1.1  jonathan 	esp_attach();
   2340    1.1  jonathan 	ipcomp_attach();
   2341    1.1  jonathan 	ipe4_attach();
   2342   1.12  jonathan #ifdef TCP_SIGNATURE
   2343   1.12  jonathan 	tcpsignature_attach();
   2344   1.12  jonathan #endif
   2345    1.1  jonathan }
   2346