xref: /onnv-gate/usr/src/uts/common/inet/ip/tnet.c (revision 6596:1429defd8f51)
11676Sjpk /*
21676Sjpk  * CDDL HEADER START
31676Sjpk  *
41676Sjpk  * The contents of this file are subject to the terms of the
51676Sjpk  * Common Development and Distribution License (the "License").
61676Sjpk  * You may not use this file except in compliance with the License.
71676Sjpk  *
81676Sjpk  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
91676Sjpk  * or http://www.opensolaris.org/os/licensing.
101676Sjpk  * See the License for the specific language governing permissions
111676Sjpk  * and limitations under the License.
121676Sjpk  *
131676Sjpk  * When distributing Covered Code, include this CDDL HEADER in each
141676Sjpk  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
151676Sjpk  * If applicable, add the following below this CDDL HEADER, with the
161676Sjpk  * fields enclosed by brackets "[]" replaced with your own identifying
171676Sjpk  * information: Portions Copyright [yyyy] [name of copyright owner]
181676Sjpk  *
191676Sjpk  * CDDL HEADER END
201676Sjpk  */
211676Sjpk /*
22*6596Skp158701  * Copyright 2008 Sun Microsystems, Inc.  All rights reserved.
231676Sjpk  * Use is subject to license terms.
241676Sjpk  */
251676Sjpk 
261676Sjpk #pragma ident	"%Z%%M%	%I%	%E% SMI"
271676Sjpk 
281676Sjpk #include <sys/types.h>
291676Sjpk #include <sys/stream.h>
301676Sjpk #include <sys/strsubr.h>
311676Sjpk #include <sys/stropts.h>
321676Sjpk #include <sys/sunddi.h>
331676Sjpk #include <sys/cred.h>
341676Sjpk #include <sys/debug.h>
351676Sjpk #include <sys/kmem.h>
361676Sjpk #include <sys/errno.h>
371676Sjpk #include <sys/disp.h>
381676Sjpk #include <netinet/in.h>
391676Sjpk #include <netinet/in_systm.h>
401676Sjpk #include <netinet/ip.h>
411676Sjpk #include <netinet/ip_icmp.h>
421676Sjpk #include <netinet/tcp.h>
431676Sjpk #include <inet/common.h>
441676Sjpk #include <inet/ipclassifier.h>
451676Sjpk #include <inet/ip.h>
461676Sjpk #include <inet/mib2.h>
471676Sjpk #include <inet/nd.h>
481676Sjpk #include <inet/tcp.h>
491676Sjpk #include <inet/ip_rts.h>
501676Sjpk #include <inet/ip_ire.h>
511676Sjpk #include <inet/ip_if.h>
521676Sjpk #include <sys/modhash.h>
531676Sjpk 
541676Sjpk #include <sys/tsol/label.h>
551676Sjpk #include <sys/tsol/label_macro.h>
561676Sjpk #include <sys/tsol/tnet.h>
571676Sjpk #include <sys/tsol/tndb.h>
581676Sjpk #include <sys/strsun.h>
591676Sjpk 
601676Sjpk /* tunable for strict error-reply behavior (TCP RST and ICMP Unreachable) */
611676Sjpk int tsol_strict_error;
621676Sjpk 
631676Sjpk /*
641676Sjpk  * Some notes on the Trusted Solaris IRE gateway security attributes:
651676Sjpk  *
661676Sjpk  * When running in Trusted mode, the routing subsystem determines whether or
671676Sjpk  * not a packet can be delivered to an off-link host (not directly reachable
681676Sjpk  * through an interface) based on the accreditation checks of the packet's
691676Sjpk  * security attributes against those associated with the next-hop gateway.
701676Sjpk  *
711676Sjpk  * The next-hop gateway's security attributes can be derived from two sources
721676Sjpk  * (in order of preference): route-related and the host database.  A Trusted
731676Sjpk  * system must be configured with at least the host database containing an
741676Sjpk  * entry for the next-hop gateway, or otherwise no accreditation checks can
751676Sjpk  * be performed, which may result in the inability to send packets to any
761676Sjpk  * off-link destination host.
771676Sjpk  *
781676Sjpk  * The major differences between the two sources are the number and type of
791676Sjpk  * security attributes used for accreditation checks.  A host database entry
801676Sjpk  * can contain at most one set of security attributes, specific only to the
811676Sjpk  * next-hop gateway.  On contrast, route-related security attributes are made
821676Sjpk  * up of a collection of security attributes for the distant networks, and
831676Sjpk  * are grouped together per next-hop gateway used to reach those networks.
841676Sjpk  * This is the preferred method, and the routing subsystem will fallback to
851676Sjpk  * the host database entry only if there are no route-related attributes
861676Sjpk  * associated with the next-hop gateway.
871676Sjpk  *
881676Sjpk  * In Trusted mode, all of the IRE entries (except LOCAL/LOOPBACK/BROADCAST/
891676Sjpk  * INTERFACE type) are initialized to contain a placeholder to store this
901676Sjpk  * information.  The ire_gw_secattr structure gets allocated, initialized
911676Sjpk  * and associated with the IRE during the time of the IRE creation.  The
921676Sjpk  * initialization process also includes resolving the host database entry
931676Sjpk  * of the next-hop gateway for fallback purposes.  It does not include any
941676Sjpk  * route-related attribute setup, as that process comes separately as part
951676Sjpk  * of the route requests (add/change) made to the routing subsystem.
961676Sjpk  *
971676Sjpk  * The underlying logic which involves associating IREs with the gateway
981676Sjpk  * security attributes are represented by the following data structures:
991676Sjpk  *
1001676Sjpk  * tsol_gcdb_t, or "gcdb"
1011676Sjpk  *
1021676Sjpk  *	- This is a system-wide collection of records containing the
1031676Sjpk  *	  currently used route-related security attributes, which are fed
1041676Sjpk  *	  through the routing socket interface, e.g. "route add/change".
1051676Sjpk  *
1061676Sjpk  * tsol_gc_t, or "gc"
1071676Sjpk  *
1081676Sjpk  *	- This is the gateway credential structure, and it provides for the
1091676Sjpk  *	  only mechanism to access the contents of gcdb.  More than one gc
1101676Sjpk  *	  entries may refer to the same gcdb record.  gc's in the system are
1111676Sjpk  *	  grouped according to the next-hop gateway address.
1121676Sjpk  *
1131676Sjpk  * tsol_gcgrp_t, or "gcgrp"
1141676Sjpk  *
1151676Sjpk  *	- Group of gateway credentials, and is unique per next-hop gateway
1161676Sjpk  *	  address.  When the group is not empty, i.e. when gcgrp_count is
1171676Sjpk  *	  greater than zero, it contains one or more gc's, each pointing to
1181676Sjpk  *	  a gcdb record which indicates the gateway security attributes
1191676Sjpk  *	  associated with the next-hop gateway.
1201676Sjpk  *
1211676Sjpk  * The fields of the tsol_ire_gw_secattr_t used from within the IRE are:
1221676Sjpk  *
1231676Sjpk  * igsa_lock
1241676Sjpk  *
1251676Sjpk  *	- Lock that protects all fields within tsol_ire_gw_secattr_t.
1261676Sjpk  *
1271676Sjpk  * igsa_rhc
1281676Sjpk  *
1291676Sjpk  *	- Remote host cache database entry of next-hop gateway.  This is
1301676Sjpk  *	  used in the case when there are no route-related attributes
1311676Sjpk  *	  configured for the IRE.
1321676Sjpk  *
1331676Sjpk  * igsa_gc
1341676Sjpk  *
1351676Sjpk  *	- A set of route-related attributes that only get set for prefix
1361676Sjpk  *	  IREs.  If this is non-NULL, the prefix IRE has been associated
1371676Sjpk  *	  with a set of gateway security attributes by way of route add/
1381676Sjpk  *	  change functionality.  This field stays NULL for IRE_CACHEs.
1391676Sjpk  *
1401676Sjpk  * igsa_gcgrp
1411676Sjpk  *
1421676Sjpk  *	- Group of gc's which only gets set for IRE_CACHEs.  Each of the gc
1431676Sjpk  *	  points to a gcdb record that contains the security attributes
1441676Sjpk  *	  used to perform the credential checks of the packet which uses
1451676Sjpk  *	  the IRE.  If the group is not empty, the list of gc's can be
1461676Sjpk  *	  traversed starting at gcgrp_head.  This field stays NULL for
1471676Sjpk  *	  prefix IREs.
1481676Sjpk  */
1491676Sjpk 
1501676Sjpk static kmem_cache_t *ire_gw_secattr_cache;
1511676Sjpk 
1521676Sjpk #define	GCDB_HASH_SIZE	101
1531676Sjpk #define	GCGRP_HASH_SIZE	101
1541676Sjpk 
1551676Sjpk #define	GCDB_REFRELE(p) {		\
1561676Sjpk 	mutex_enter(&gcdb_lock);	\
1571676Sjpk 	ASSERT((p)->gcdb_refcnt > 0);	\
1581676Sjpk 	if (--((p)->gcdb_refcnt) == 0)	\
1591676Sjpk 		gcdb_inactive(p);	\
1601676Sjpk 	ASSERT(MUTEX_HELD(&gcdb_lock));	\
1611676Sjpk 	mutex_exit(&gcdb_lock);		\
1621676Sjpk }
1631676Sjpk 
1641676Sjpk static int gcdb_hash_size = GCDB_HASH_SIZE;
1651676Sjpk static int gcgrp_hash_size = GCGRP_HASH_SIZE;
1661676Sjpk static mod_hash_t *gcdb_hash;
1671676Sjpk static mod_hash_t *gcgrp4_hash;
1681676Sjpk static mod_hash_t *gcgrp6_hash;
1691676Sjpk 
1701676Sjpk static kmutex_t gcdb_lock;
1711676Sjpk kmutex_t gcgrp_lock;
1721676Sjpk 
1731676Sjpk static uint_t gcdb_hash_by_secattr(void *, mod_hash_key_t);
1741676Sjpk static int gcdb_hash_cmp(mod_hash_key_t, mod_hash_key_t);
1751676Sjpk static tsol_gcdb_t *gcdb_lookup(struct rtsa_s *, boolean_t);
1761676Sjpk static void gcdb_inactive(tsol_gcdb_t *);
1771676Sjpk 
1781676Sjpk static uint_t gcgrp_hash_by_addr(void *, mod_hash_key_t);
1791676Sjpk static int gcgrp_hash_cmp(mod_hash_key_t, mod_hash_key_t);
1801676Sjpk 
1811676Sjpk static int ire_gw_secattr_constructor(void *, void *, int);
1821676Sjpk static void ire_gw_secattr_destructor(void *, void *);
1831676Sjpk 
1841676Sjpk void
1851676Sjpk tnet_init(void)
1861676Sjpk {
1871676Sjpk 	ire_gw_secattr_cache = kmem_cache_create("ire_gw_secattr_cache",
1881676Sjpk 	    sizeof (tsol_ire_gw_secattr_t), 64, ire_gw_secattr_constructor,
1891676Sjpk 	    ire_gw_secattr_destructor, NULL, NULL, NULL, 0);
1901676Sjpk 
1911676Sjpk 	gcdb_hash = mod_hash_create_extended("gcdb_hash",
1921676Sjpk 	    gcdb_hash_size, mod_hash_null_keydtor, mod_hash_null_valdtor,
1931676Sjpk 	    gcdb_hash_by_secattr, NULL, gcdb_hash_cmp, KM_SLEEP);
1941676Sjpk 
1951676Sjpk 	gcgrp4_hash = mod_hash_create_extended("gcgrp4_hash",
1961676Sjpk 	    gcgrp_hash_size, mod_hash_null_keydtor, mod_hash_null_valdtor,
1971676Sjpk 	    gcgrp_hash_by_addr, NULL, gcgrp_hash_cmp, KM_SLEEP);
1981676Sjpk 
1991676Sjpk 	gcgrp6_hash = mod_hash_create_extended("gcgrp6_hash",
2001676Sjpk 	    gcgrp_hash_size, mod_hash_null_keydtor, mod_hash_null_valdtor,
2011676Sjpk 	    gcgrp_hash_by_addr, NULL, gcgrp_hash_cmp, KM_SLEEP);
2021676Sjpk 
2031676Sjpk 	mutex_init(&gcdb_lock, NULL, MUTEX_DEFAULT, NULL);
2041676Sjpk 	mutex_init(&gcgrp_lock, NULL, MUTEX_DEFAULT, NULL);
2051676Sjpk }
2061676Sjpk 
2071676Sjpk void
2081676Sjpk tnet_fini(void)
2091676Sjpk {
2101676Sjpk 	kmem_cache_destroy(ire_gw_secattr_cache);
2111676Sjpk 	mod_hash_destroy_hash(gcdb_hash);
2121676Sjpk 	mod_hash_destroy_hash(gcgrp4_hash);
2131676Sjpk 	mod_hash_destroy_hash(gcgrp6_hash);
2141676Sjpk 	mutex_destroy(&gcdb_lock);
2151676Sjpk 	mutex_destroy(&gcgrp_lock);
2161676Sjpk }
2171676Sjpk 
2181676Sjpk /* ARGSUSED */
2191676Sjpk static int
2201676Sjpk ire_gw_secattr_constructor(void *buf, void *cdrarg, int kmflags)
2211676Sjpk {
2221676Sjpk 	tsol_ire_gw_secattr_t *attrp = buf;
2231676Sjpk 
2241676Sjpk 	mutex_init(&attrp->igsa_lock, NULL, MUTEX_DEFAULT, NULL);
2251676Sjpk 
2261676Sjpk 	attrp->igsa_rhc = NULL;
2271676Sjpk 	attrp->igsa_gc = NULL;
2281676Sjpk 	attrp->igsa_gcgrp = NULL;
2291676Sjpk 
2301676Sjpk 	return (0);
2311676Sjpk }
2321676Sjpk 
2331676Sjpk /* ARGSUSED */
2341676Sjpk static void
2351676Sjpk ire_gw_secattr_destructor(void *buf, void *cdrarg)
2361676Sjpk {
2371676Sjpk 	tsol_ire_gw_secattr_t *attrp = (tsol_ire_gw_secattr_t *)buf;
2381676Sjpk 
2391676Sjpk 	mutex_destroy(&attrp->igsa_lock);
2401676Sjpk }
2411676Sjpk 
2421676Sjpk tsol_ire_gw_secattr_t *
2431676Sjpk ire_gw_secattr_alloc(int kmflags)
2441676Sjpk {
2451676Sjpk 	return (kmem_cache_alloc(ire_gw_secattr_cache, kmflags));
2461676Sjpk }
2471676Sjpk 
2481676Sjpk void
2491676Sjpk ire_gw_secattr_free(tsol_ire_gw_secattr_t *attrp)
2501676Sjpk {
2511676Sjpk 	ASSERT(MUTEX_NOT_HELD(&attrp->igsa_lock));
2521676Sjpk 
2531676Sjpk 	if (attrp->igsa_rhc != NULL) {
2541676Sjpk 		TNRHC_RELE(attrp->igsa_rhc);
2551676Sjpk 		attrp->igsa_rhc = NULL;
2561676Sjpk 	}
2571676Sjpk 
2581676Sjpk 	if (attrp->igsa_gc != NULL) {
2591676Sjpk 		GC_REFRELE(attrp->igsa_gc);
2601676Sjpk 		attrp->igsa_gc = NULL;
2611676Sjpk 	}
2621676Sjpk 	if (attrp->igsa_gcgrp != NULL) {
2631676Sjpk 		GCGRP_REFRELE(attrp->igsa_gcgrp);
2641676Sjpk 		attrp->igsa_gcgrp = NULL;
2651676Sjpk 	}
2661676Sjpk 
2671676Sjpk 	ASSERT(attrp->igsa_rhc == NULL);
2681676Sjpk 	ASSERT(attrp->igsa_gc == NULL);
2691676Sjpk 	ASSERT(attrp->igsa_gcgrp == NULL);
2701676Sjpk 
2711676Sjpk 	kmem_cache_free(ire_gw_secattr_cache, attrp);
2721676Sjpk }
2731676Sjpk 
2741676Sjpk /* ARGSUSED */
2751676Sjpk static uint_t
2761676Sjpk gcdb_hash_by_secattr(void *hash_data, mod_hash_key_t key)
2771676Sjpk {
2781676Sjpk 	const struct rtsa_s *rp = (struct rtsa_s *)key;
2791676Sjpk 	const uint32_t *up, *ue;
2801676Sjpk 	uint_t hash;
2811676Sjpk 	int i;
2821676Sjpk 
2831676Sjpk 	ASSERT(rp != NULL);
2841676Sjpk 
2851676Sjpk 	/* See comments in hash_bylabel in zone.c for details */
2861676Sjpk 	hash = rp->rtsa_doi + (rp->rtsa_doi << 1);
2871676Sjpk 	up = (const uint32_t *)&rp->rtsa_slrange;
2881676Sjpk 	ue = up + sizeof (rp->rtsa_slrange) / sizeof (*up);
2891676Sjpk 	i = 1;
2901676Sjpk 	while (up < ue) {
2911676Sjpk 		/* using 2^n + 1, 1 <= n <= 16 as source of many primes */
2921676Sjpk 		hash += *up + (*up << ((i % 16) + 1));
2931676Sjpk 		up++;
2941676Sjpk 		i++;
2951676Sjpk 	}
2961676Sjpk 	return (hash);
2971676Sjpk }
2981676Sjpk 
2991676Sjpk static int
3001676Sjpk gcdb_hash_cmp(mod_hash_key_t key1, mod_hash_key_t key2)
3011676Sjpk {
3021676Sjpk 	struct rtsa_s *rp1 = (struct rtsa_s *)key1;
3031676Sjpk 	struct rtsa_s *rp2 = (struct rtsa_s *)key2;
3041676Sjpk 
3051676Sjpk 	ASSERT(rp1 != NULL && rp2 != NULL);
3061676Sjpk 
3071676Sjpk 	if (blequal(&rp1->rtsa_slrange.lower_bound,
3081676Sjpk 	    &rp2->rtsa_slrange.lower_bound) &&
3091676Sjpk 	    blequal(&rp1->rtsa_slrange.upper_bound,
3101676Sjpk 	    &rp2->rtsa_slrange.upper_bound) &&
3111676Sjpk 	    rp1->rtsa_doi == rp2->rtsa_doi)
3121676Sjpk 		return (0);
3131676Sjpk 
3141676Sjpk 	/* No match; not found */
3151676Sjpk 	return (-1);
3161676Sjpk }
3171676Sjpk 
3181676Sjpk /* ARGSUSED */
3191676Sjpk static uint_t
3201676Sjpk gcgrp_hash_by_addr(void *hash_data, mod_hash_key_t key)
3211676Sjpk {
3221676Sjpk 	tsol_gcgrp_addr_t *ga = (tsol_gcgrp_addr_t *)key;
3231676Sjpk 	uint_t		idx = 0;
3241676Sjpk 	uint32_t	*ap;
3251676Sjpk 
3261676Sjpk 	ASSERT(ga != NULL);
3271676Sjpk 	ASSERT(ga->ga_af == AF_INET || ga->ga_af == AF_INET6);
3281676Sjpk 
3291676Sjpk 	ap = (uint32_t *)&ga->ga_addr.s6_addr32[0];
3301676Sjpk 	idx ^= *ap++;
3311676Sjpk 	idx ^= *ap++;
3321676Sjpk 	idx ^= *ap++;
3331676Sjpk 	idx ^= *ap;
3341676Sjpk 
3351676Sjpk 	return (idx);
3361676Sjpk }
3371676Sjpk 
3381676Sjpk static int
3391676Sjpk gcgrp_hash_cmp(mod_hash_key_t key1, mod_hash_key_t key2)
3401676Sjpk {
3411676Sjpk 	tsol_gcgrp_addr_t *ga1 = (tsol_gcgrp_addr_t *)key1;
3421676Sjpk 	tsol_gcgrp_addr_t *ga2 = (tsol_gcgrp_addr_t *)key2;
3431676Sjpk 
3441676Sjpk 	ASSERT(ga1 != NULL && ga2 != NULL);
3451676Sjpk 
3461676Sjpk 	/* Address family must match */
3471676Sjpk 	if (ga1->ga_af != ga2->ga_af)
3481676Sjpk 		return (-1);
3491676Sjpk 
3501676Sjpk 	if (ga1->ga_addr.s6_addr32[0] == ga2->ga_addr.s6_addr32[0] &&
3511676Sjpk 	    ga1->ga_addr.s6_addr32[1] == ga2->ga_addr.s6_addr32[1] &&
3521676Sjpk 	    ga1->ga_addr.s6_addr32[2] == ga2->ga_addr.s6_addr32[2] &&
3531676Sjpk 	    ga1->ga_addr.s6_addr32[3] == ga2->ga_addr.s6_addr32[3])
3541676Sjpk 		return (0);
3551676Sjpk 
3561676Sjpk 	/* No match; not found */
3571676Sjpk 	return (-1);
3581676Sjpk }
3591676Sjpk 
3601676Sjpk #define	RTSAFLAGS	"\20\11cipso\3doi\2max_sl\1min_sl"
3611676Sjpk 
3621676Sjpk int
3631676Sjpk rtsa_validate(const struct rtsa_s *rp)
3641676Sjpk {
3651676Sjpk 	uint32_t mask = rp->rtsa_mask;
3661676Sjpk 
3671676Sjpk 	/* RTSA_CIPSO must be set, and DOI must not be zero */
3681676Sjpk 	if ((mask & RTSA_CIPSO) == 0 || rp->rtsa_doi == 0) {
3691676Sjpk 		DTRACE_PROBE2(tx__gcdb__log__error__rtsa__validate, char *,
3701676Sjpk 		    "rtsa(1) lacks flag or has 0 doi.",
3711676Sjpk 		    rtsa_s *, rp);
3721676Sjpk 		return (EINVAL);
3731676Sjpk 	}
3741676Sjpk 	/*
3751676Sjpk 	 * SL range must be specified, and it must have its
3761676Sjpk 	 * upper bound dominating its lower bound.
3771676Sjpk 	 */
3781676Sjpk 	if ((mask & RTSA_SLRANGE) != RTSA_SLRANGE ||
3791676Sjpk 	    !bldominates(&rp->rtsa_slrange.upper_bound,
3801676Sjpk 	    &rp->rtsa_slrange.lower_bound)) {
3811676Sjpk 		DTRACE_PROBE2(tx__gcdb__log__error__rtsa__validate, char *,
3821676Sjpk 		    "rtsa(1) min_sl and max_sl not set or max_sl is "
3831676Sjpk 		    "not dominating.", rtsa_s *, rp);
3841676Sjpk 		return (EINVAL);
3851676Sjpk 	}
3861676Sjpk 	return (0);
3871676Sjpk }
3881676Sjpk 
3891676Sjpk /*
3901676Sjpk  * A brief explanation of the reference counting scheme:
3911676Sjpk  *
3921676Sjpk  * Prefix IREs have a non-NULL igsa_gc and a NULL igsa_gcgrp;
3931676Sjpk  * IRE_CACHEs have it vice-versa.
3941676Sjpk  *
3951676Sjpk  * Apart from dynamic references due to to reference holds done
3961676Sjpk  * actively by threads, we have the following references:
3971676Sjpk  *
3981676Sjpk  * gcdb_refcnt:
3991676Sjpk  *	- Every tsol_gc_t pointing to a tsol_gcdb_t contributes a reference
4001676Sjpk  *	  to the gcdb_refcnt.
4011676Sjpk  *
4021676Sjpk  * gc_refcnt:
4031676Sjpk  *	- A prefix IRE that points to an igsa_gc contributes a reference
4041676Sjpk  *	  to the gc_refcnt.
4051676Sjpk  *
4061676Sjpk  * gcgrp_refcnt:
4071676Sjpk  *	- An IRE_CACHE that points to an igsa_gcgrp contributes a reference
4081676Sjpk  *	  to the gcgrp_refcnt of the associated tsol_gcgrp_t.
4091676Sjpk  *	- Every tsol_gc_t in the chain headed by tsol_gcgrp_t contributes
4101676Sjpk  *	  a reference to the gcgrp_refcnt.
4111676Sjpk  */
4121676Sjpk static tsol_gcdb_t *
4131676Sjpk gcdb_lookup(struct rtsa_s *rp, boolean_t alloc)
4141676Sjpk {
4151676Sjpk 	tsol_gcdb_t *gcdb = NULL;
4161676Sjpk 
4171676Sjpk 	if (rtsa_validate(rp) != 0)
4181676Sjpk 		return (NULL);
4191676Sjpk 
4201676Sjpk 	mutex_enter(&gcdb_lock);
4211676Sjpk 	/* Find a copy in the cache; otherwise, create one and cache it */
4221676Sjpk 	if (mod_hash_find(gcdb_hash, (mod_hash_key_t)rp,
4231676Sjpk 	    (mod_hash_val_t *)&gcdb) == 0) {
4241676Sjpk 		gcdb->gcdb_refcnt++;
4251676Sjpk 		ASSERT(gcdb->gcdb_refcnt != 0);
4261676Sjpk 
4271676Sjpk 		DTRACE_PROBE2(tx__gcdb__log__info__gcdb__lookup, char *,
4281676Sjpk 		    "gcdb(1) is in gcdb_hash(global)", tsol_gcdb_t *, gcdb);
4291676Sjpk 	} else if (alloc) {
4301676Sjpk 		gcdb = kmem_zalloc(sizeof (*gcdb), KM_NOSLEEP);
4311676Sjpk 		if (gcdb != NULL) {
4321676Sjpk 			gcdb->gcdb_refcnt = 1;
4331676Sjpk 			gcdb->gcdb_mask = rp->rtsa_mask;
4341676Sjpk 			gcdb->gcdb_doi = rp->rtsa_doi;
4351676Sjpk 			gcdb->gcdb_slrange = rp->rtsa_slrange;
4361676Sjpk 
4371676Sjpk 			if (mod_hash_insert(gcdb_hash,
4381676Sjpk 			    (mod_hash_key_t)&gcdb->gcdb_attr,
4391676Sjpk 			    (mod_hash_val_t)gcdb) != 0) {
4401676Sjpk 				mutex_exit(&gcdb_lock);
4411676Sjpk 				kmem_free(gcdb, sizeof (*gcdb));
4421676Sjpk 				return (NULL);
4431676Sjpk 			}
4441676Sjpk 
4451676Sjpk 			DTRACE_PROBE2(tx__gcdb__log__info__gcdb__insert, char *,
4461676Sjpk 			    "gcdb(1) inserted in gcdb_hash(global)",
4471676Sjpk 			    tsol_gcdb_t *, gcdb);
4481676Sjpk 		}
4491676Sjpk 	}
4501676Sjpk 	mutex_exit(&gcdb_lock);
4511676Sjpk 	return (gcdb);
4521676Sjpk }
4531676Sjpk 
4541676Sjpk static void
4551676Sjpk gcdb_inactive(tsol_gcdb_t *gcdb)
4561676Sjpk {
4571676Sjpk 	ASSERT(MUTEX_HELD(&gcdb_lock));
4581676Sjpk 	ASSERT(gcdb != NULL && gcdb->gcdb_refcnt == 0);
4591676Sjpk 
4601676Sjpk 	(void) mod_hash_remove(gcdb_hash, (mod_hash_key_t)&gcdb->gcdb_attr,
4611676Sjpk 	    (mod_hash_val_t *)&gcdb);
4621676Sjpk 
4631676Sjpk 	DTRACE_PROBE2(tx__gcdb__log__info__gcdb__remove, char *,
4641676Sjpk 	    "gcdb(1) removed from gcdb_hash(global)",
4651676Sjpk 	    tsol_gcdb_t *, gcdb);
4661676Sjpk 	kmem_free(gcdb, sizeof (*gcdb));
4671676Sjpk }
4681676Sjpk 
4691676Sjpk tsol_gc_t *
4701676Sjpk gc_create(struct rtsa_s *rp, tsol_gcgrp_t *gcgrp, boolean_t *gcgrp_xtrarefp)
4711676Sjpk {
4721676Sjpk 	tsol_gc_t *gc;
4731676Sjpk 	tsol_gcdb_t *gcdb;
4741676Sjpk 
4751676Sjpk 	*gcgrp_xtrarefp = B_TRUE;
4761676Sjpk 
4771676Sjpk 	rw_enter(&gcgrp->gcgrp_rwlock, RW_WRITER);
4781676Sjpk 	if ((gcdb = gcdb_lookup(rp, B_TRUE)) == NULL) {
4791676Sjpk 		rw_exit(&gcgrp->gcgrp_rwlock);
4801676Sjpk 		return (NULL);
4811676Sjpk 	}
4821676Sjpk 
4831676Sjpk 	for (gc = gcgrp->gcgrp_head; gc != NULL; gc = gc->gc_next) {
4841676Sjpk 		if (gc->gc_db == gcdb) {
4851676Sjpk 			ASSERT(gc->gc_grp == gcgrp);
4861676Sjpk 
4871676Sjpk 			gc->gc_refcnt++;
4881676Sjpk 			ASSERT(gc->gc_refcnt != 0);
4891676Sjpk 
4901676Sjpk 			GCDB_REFRELE(gcdb);
4911676Sjpk 
4921676Sjpk 			DTRACE_PROBE3(tx__gcdb__log__info__gc__create,
4931676Sjpk 			    char *, "found gc(1) in gcgrp(2)",
4941676Sjpk 			    tsol_gc_t *, gc, tsol_gcgrp_t *, gcgrp);
4951676Sjpk 			rw_exit(&gcgrp->gcgrp_rwlock);
4961676Sjpk 			return (gc);
4971676Sjpk 		}
4981676Sjpk 	}
4991676Sjpk 
5001676Sjpk 	gc = kmem_zalloc(sizeof (*gc), KM_NOSLEEP);
5011676Sjpk 	if (gc != NULL) {
5021676Sjpk 		if (gcgrp->gcgrp_head == NULL) {
5031676Sjpk 			gcgrp->gcgrp_head = gcgrp->gcgrp_tail = gc;
5041676Sjpk 		} else {
5051676Sjpk 			gcgrp->gcgrp_tail->gc_next = gc;
5061676Sjpk 			gc->gc_prev = gcgrp->gcgrp_tail;
5071676Sjpk 			gcgrp->gcgrp_tail = gc;
5081676Sjpk 		}
5091676Sjpk 		gcgrp->gcgrp_count++;
5101676Sjpk 		ASSERT(gcgrp->gcgrp_count != 0);
5111676Sjpk 
5121676Sjpk 		/* caller has incremented gcgrp reference for us */
5131676Sjpk 		gc->gc_grp = gcgrp;
5141676Sjpk 
5151676Sjpk 		gc->gc_db = gcdb;
5161676Sjpk 		gc->gc_refcnt = 1;
5171676Sjpk 
5181676Sjpk 		DTRACE_PROBE3(tx__gcdb__log__info__gc__create, char *,
5191676Sjpk 		    "added gc(1) to gcgrp(2)", tsol_gc_t *, gc,
5201676Sjpk 		    tsol_gcgrp_t *, gcgrp);
5211676Sjpk 
5221676Sjpk 		*gcgrp_xtrarefp = B_FALSE;
5231676Sjpk 	}
5241676Sjpk 	rw_exit(&gcgrp->gcgrp_rwlock);
5251676Sjpk 
5261676Sjpk 	return (gc);
5271676Sjpk }
5281676Sjpk 
5291676Sjpk void
5301676Sjpk gc_inactive(tsol_gc_t *gc)
5311676Sjpk {
5321676Sjpk 	tsol_gcgrp_t *gcgrp = gc->gc_grp;
5331676Sjpk 
5341676Sjpk 	ASSERT(gcgrp != NULL);
5351676Sjpk 	ASSERT(RW_WRITE_HELD(&gcgrp->gcgrp_rwlock));
5361676Sjpk 	ASSERT(gc->gc_refcnt == 0);
5371676Sjpk 
5381676Sjpk 	if (gc->gc_prev != NULL)
5391676Sjpk 		gc->gc_prev->gc_next = gc->gc_next;
5401676Sjpk 	else
5411676Sjpk 		gcgrp->gcgrp_head = gc->gc_next;
5421676Sjpk 	if (gc->gc_next != NULL)
5431676Sjpk 		gc->gc_next->gc_prev = gc->gc_prev;
5441676Sjpk 	else
5451676Sjpk 		gcgrp->gcgrp_tail = gc->gc_prev;
5461676Sjpk 	ASSERT(gcgrp->gcgrp_count > 0);
5471676Sjpk 	gcgrp->gcgrp_count--;
5481676Sjpk 
5491676Sjpk 	/* drop lock before it's destroyed */
5501676Sjpk 	rw_exit(&gcgrp->gcgrp_rwlock);
5511676Sjpk 
5521676Sjpk 	DTRACE_PROBE3(tx__gcdb__log__info__gc__remove, char *,
5531676Sjpk 	    "removed inactive gc(1) from gcgrp(2)",
5541676Sjpk 	    tsol_gc_t *, gc, tsol_gcgrp_t *, gcgrp);
5551676Sjpk 
5561676Sjpk 	GCGRP_REFRELE(gcgrp);
5571676Sjpk 
5581676Sjpk 	gc->gc_grp = NULL;
5591676Sjpk 	gc->gc_prev = gc->gc_next = NULL;
5601676Sjpk 
5611676Sjpk 	if (gc->gc_db != NULL)
5621676Sjpk 		GCDB_REFRELE(gc->gc_db);
5631676Sjpk 
5641676Sjpk 	kmem_free(gc, sizeof (*gc));
5651676Sjpk }
5661676Sjpk 
5671676Sjpk tsol_gcgrp_t *
5681676Sjpk gcgrp_lookup(tsol_gcgrp_addr_t *ga, boolean_t alloc)
5691676Sjpk {
5701676Sjpk 	tsol_gcgrp_t *gcgrp = NULL;
5711676Sjpk 	mod_hash_t *hashp;
5721676Sjpk 
5731676Sjpk 	ASSERT(ga->ga_af == AF_INET || ga->ga_af == AF_INET6);
5741676Sjpk 
5751676Sjpk 	hashp = (ga->ga_af == AF_INET) ? gcgrp4_hash : gcgrp6_hash;
5761676Sjpk 
5771676Sjpk 	mutex_enter(&gcgrp_lock);
5781676Sjpk 	if (mod_hash_find(hashp, (mod_hash_key_t)ga,
5791676Sjpk 	    (mod_hash_val_t *)&gcgrp) == 0) {
5801676Sjpk 		gcgrp->gcgrp_refcnt++;
5811676Sjpk 		ASSERT(gcgrp->gcgrp_refcnt != 0);
5821676Sjpk 
5831676Sjpk 		DTRACE_PROBE3(tx__gcdb__log__info__gcgrp__lookup, char *,
5841676Sjpk 		    "found gcgrp(1) in hash(2)", tsol_gcgrp_t *, gcgrp,
5851676Sjpk 		    mod_hash_t *, hashp);
5861676Sjpk 
5871676Sjpk 	} else if (alloc) {
5881676Sjpk 		gcgrp = kmem_zalloc(sizeof (*gcgrp), KM_NOSLEEP);
5891676Sjpk 		if (gcgrp != NULL) {
5901676Sjpk 			gcgrp->gcgrp_refcnt = 1;
5911676Sjpk 			rw_init(&gcgrp->gcgrp_rwlock, NULL, RW_DEFAULT, NULL);
5921676Sjpk 			bcopy(ga, &gcgrp->gcgrp_addr, sizeof (*ga));
5931676Sjpk 
5941676Sjpk 			if (mod_hash_insert(hashp,
5951676Sjpk 			    (mod_hash_key_t)&gcgrp->gcgrp_addr,
5961676Sjpk 			    (mod_hash_val_t)gcgrp) != 0) {
5971676Sjpk 				mutex_exit(&gcgrp_lock);
5981676Sjpk 				kmem_free(gcgrp, sizeof (*gcgrp));
5991676Sjpk 				return (NULL);
6001676Sjpk 			}
6011676Sjpk 
6021676Sjpk 			DTRACE_PROBE3(tx__gcdb__log__info__gcgrp__insert,
6031676Sjpk 			    char *, "inserted gcgrp(1) in hash(2)",
6041676Sjpk 			    tsol_gcgrp_t *, gcgrp, mod_hash_t *, hashp);
6051676Sjpk 		}
6061676Sjpk 	}
6071676Sjpk 	mutex_exit(&gcgrp_lock);
6081676Sjpk 	return (gcgrp);
6091676Sjpk }
6101676Sjpk 
6111676Sjpk void
6121676Sjpk gcgrp_inactive(tsol_gcgrp_t *gcgrp)
6131676Sjpk {
6141676Sjpk 	tsol_gcgrp_addr_t *ga;
6151676Sjpk 	mod_hash_t *hashp;
6161676Sjpk 
6171676Sjpk 	ASSERT(MUTEX_HELD(&gcgrp_lock));
6181676Sjpk 	ASSERT(!RW_LOCK_HELD(&gcgrp->gcgrp_rwlock));
6191676Sjpk 	ASSERT(gcgrp != NULL && gcgrp->gcgrp_refcnt == 0);
6201676Sjpk 	ASSERT(gcgrp->gcgrp_head == NULL && gcgrp->gcgrp_count == 0);
6211676Sjpk 
6221676Sjpk 	ga = &gcgrp->gcgrp_addr;
6231676Sjpk 	ASSERT(ga->ga_af == AF_INET || ga->ga_af == AF_INET6);
6241676Sjpk 
6251676Sjpk 	hashp = (ga->ga_af == AF_INET) ? gcgrp4_hash : gcgrp6_hash;
6261676Sjpk 	(void) mod_hash_remove(hashp, (mod_hash_key_t)ga,
6271676Sjpk 	    (mod_hash_val_t *)&gcgrp);
6281676Sjpk 	rw_destroy(&gcgrp->gcgrp_rwlock);
6291676Sjpk 
6301676Sjpk 	DTRACE_PROBE3(tx__gcdb__log__info__gcgrp__remove, char *,
6311676Sjpk 	    "removed inactive gcgrp(1) from hash(2)",
6321676Sjpk 	    tsol_gcgrp_t *, gcgrp, mod_hash_t *, hashp);
6331676Sjpk 
6341676Sjpk 	kmem_free(gcgrp, sizeof (*gcgrp));
6351676Sjpk }
6361676Sjpk 
6371676Sjpk /*
6381676Sjpk  * Converts CIPSO option to sensitivity label.
6391676Sjpk  * Validity checks based on restrictions defined in
6401676Sjpk  * COMMERCIAL IP SECURITY OPTION (CIPSO 2.2) (draft-ietf-cipso-ipsecurity)
6411676Sjpk  */
6421676Sjpk static boolean_t
6431676Sjpk cipso_to_sl(const uchar_t *option, bslabel_t *sl)
6441676Sjpk {
6451676Sjpk 	const struct cipso_option *co = (const struct cipso_option *)option;
6461676Sjpk 	const struct cipso_tag_type_1 *tt1;
6471676Sjpk 
6481676Sjpk 	tt1 = (struct cipso_tag_type_1 *)&co->cipso_tag_type[0];
6491676Sjpk 	if (tt1->tag_type != 1 ||
6501676Sjpk 	    tt1->tag_length < TSOL_TT1_MIN_LENGTH ||
6511676Sjpk 	    tt1->tag_length > TSOL_TT1_MAX_LENGTH ||
6521676Sjpk 	    tt1->tag_length + TSOL_CIPSO_TAG_OFFSET > co->cipso_length)
6531676Sjpk 		return (B_FALSE);
6541676Sjpk 
6551676Sjpk 	bsllow(sl);	/* assumed: sets compartments to all zeroes */
6561676Sjpk 	LCLASS_SET((_bslabel_impl_t *)sl, tt1->tag_sl);
6571676Sjpk 	bcopy(tt1->tag_cat, &((_bslabel_impl_t *)sl)->compartments,
6581676Sjpk 	    tt1->tag_length - TSOL_TT1_MIN_LENGTH);
6591676Sjpk 	return (B_TRUE);
6601676Sjpk }
6611676Sjpk 
6621676Sjpk /*
6631676Sjpk  * Parse the CIPSO label in the incoming packet and construct a ts_label_t
6641676Sjpk  * that reflects the CIPSO label and attach it to the dblk cred. Later as
6651676Sjpk  * the mblk flows up through the stack any code that needs to examine the
6661676Sjpk  * packet label can inspect the label from the dblk cred. This function is
6671676Sjpk  * called right in ip_rput for all packets, i.e. locally destined and
6681676Sjpk  * to be forwarded packets. The forwarding path needs to examine the label
6691676Sjpk  * to determine how to forward the packet.
6701676Sjpk  *
6711676Sjpk  * For IPv4, IP header options have been pulled up, but other headers might not
6721676Sjpk  * have been.  For IPv6, any hop-by-hop options have been pulled up, but any
6731676Sjpk  * other headers might not be present.
6741676Sjpk  */
6751676Sjpk boolean_t
6761676Sjpk tsol_get_pkt_label(mblk_t *mp, int version)
6771676Sjpk {
6781676Sjpk 	tsol_tpc_t	*src_rhtp;
6791676Sjpk 	uchar_t		*opt_ptr = NULL;
6801676Sjpk 	const ipha_t	*ipha;
6811676Sjpk 	bslabel_t	sl;
6821676Sjpk 	uint32_t	doi;
6831676Sjpk 	tsol_ip_label_t	label_type;
6841676Sjpk 	const cipso_option_t *co;
6851676Sjpk 	const void	*src;
6861676Sjpk 	const ip6_t	*ip6h;
6871676Sjpk 
6881676Sjpk 	ASSERT(DB_TYPE(mp) == M_DATA);
6891676Sjpk 
6901676Sjpk 	if (version == IPV4_VERSION) {
6911676Sjpk 		ipha = (const ipha_t *)mp->b_rptr;
6921676Sjpk 		src = &ipha->ipha_src;
6931676Sjpk 		label_type = tsol_get_option(mp, &opt_ptr);
6941676Sjpk 	} else {
6951676Sjpk 		uchar_t		*after_secopt;
6961676Sjpk 		boolean_t	hbh_needed;
6971676Sjpk 		const uchar_t	*ip6hbh;
6981676Sjpk 		size_t		optlen;
6991676Sjpk 
7001676Sjpk 		label_type = OPT_NONE;
7011676Sjpk 		ip6h = (const ip6_t *)mp->b_rptr;
7021676Sjpk 		src = &ip6h->ip6_src;
7031676Sjpk 		if (ip6h->ip6_nxt == IPPROTO_HOPOPTS) {
7041676Sjpk 			ip6hbh = (const uchar_t *)&ip6h[1];
7051676Sjpk 			optlen = (ip6hbh[1] + 1) << 3;
7061676Sjpk 			ASSERT(ip6hbh + optlen <= mp->b_wptr);
7071676Sjpk 			opt_ptr = tsol_find_secopt_v6(ip6hbh, optlen,
7081676Sjpk 			    &after_secopt, &hbh_needed);
7091676Sjpk 			/* tsol_find_secopt_v6 guarantees some sanity */
7101676Sjpk 			if (opt_ptr != NULL &&
7111676Sjpk 			    (optlen = opt_ptr[1]) >= 8) {
7121676Sjpk 				opt_ptr += 2;
7131676Sjpk 				bcopy(opt_ptr, &doi, sizeof (doi));
7141676Sjpk 				doi = ntohl(doi);
7151676Sjpk 				if (doi == IP6LS_DOI_V4 &&
7161676Sjpk 				    opt_ptr[4] == IP6LS_TT_V4 &&
7171676Sjpk 				    opt_ptr[5] <= optlen - 4 &&
7181676Sjpk 				    opt_ptr[7] <= optlen - 6) {
7191676Sjpk 					opt_ptr += sizeof (doi) + 2;
7201676Sjpk 					label_type = OPT_CIPSO;
7211676Sjpk 				}
7221676Sjpk 			}
7231676Sjpk 		}
7241676Sjpk 	}
7251676Sjpk 
7261676Sjpk 	switch (label_type) {
7271676Sjpk 	case OPT_CIPSO:
7281676Sjpk 		/*
7291676Sjpk 		 * Convert the CIPSO label to the internal format
7301676Sjpk 		 * and attach it to the dblk cred.
7311676Sjpk 		 * Validity checks based on restrictions defined in
7321676Sjpk 		 * COMMERCIAL IP SECURITY OPTION (CIPSO 2.2)
7331676Sjpk 		 * (draft-ietf-cipso-ipsecurity)
7341676Sjpk 		 */
7351676Sjpk 		if (version == IPV6_VERSION && ip6opt_ls == 0)
7361676Sjpk 			return (B_FALSE);
7371676Sjpk 		co = (const struct cipso_option *)opt_ptr;
7381676Sjpk 		if ((co->cipso_length <
7391676Sjpk 		    TSOL_CIPSO_TAG_OFFSET + TSOL_TT1_MIN_LENGTH) ||
7401676Sjpk 		    (co->cipso_length > IP_MAX_OPT_LENGTH))
7411676Sjpk 			return (B_FALSE);
7421676Sjpk 		bcopy(co->cipso_doi, &doi, sizeof (doi));
7431676Sjpk 		doi = ntohl(doi);
7441676Sjpk 		if (!cipso_to_sl(opt_ptr, &sl))
7451676Sjpk 			return (B_FALSE);
7461676Sjpk 		setbltype(&sl, SUN_SL_ID);
7471676Sjpk 		break;
7481676Sjpk 
7491676Sjpk 	case OPT_NONE:
7501676Sjpk 		/*
7511676Sjpk 		 * Handle special cases that are not currently labeled, even
7521676Sjpk 		 * though the sending system may otherwise be configured as
7531676Sjpk 		 * labeled.
7541676Sjpk 		 *	- IGMP
7551676Sjpk 		 *	- IPv4 ICMP Router Discovery
7561676Sjpk 		 *	- IPv6 Neighbor Discovery
7571676Sjpk 		 */
7581676Sjpk 		if (version == IPV4_VERSION) {
7591676Sjpk 			if (ipha->ipha_protocol == IPPROTO_IGMP)
7601676Sjpk 				return (B_TRUE);
7611676Sjpk 			if (ipha->ipha_protocol == IPPROTO_ICMP) {
7621676Sjpk 				const struct icmp *icmp = (const struct icmp *)
7631676Sjpk 				    (mp->b_rptr + IPH_HDR_LENGTH(ipha));
7641676Sjpk 
7651676Sjpk 				if ((uchar_t *)icmp > mp->b_wptr) {
7661676Sjpk 					if (!pullupmsg(mp,
7671676Sjpk 					    (uchar_t *)icmp - mp->b_rptr + 1))
7681676Sjpk 						return (B_FALSE);
7691676Sjpk 					icmp = (const struct icmp *)
7701676Sjpk 					    (mp->b_rptr +
7711676Sjpk 					    IPH_HDR_LENGTH(ipha));
7721676Sjpk 				}
7731676Sjpk 				if (icmp->icmp_type == ICMP_ROUTERADVERT ||
7741676Sjpk 				    icmp->icmp_type == ICMP_ROUTERSOLICIT)
7751676Sjpk 					return (B_TRUE);
7761676Sjpk 			}
7771676Sjpk 			src = &ipha->ipha_src;
7781676Sjpk 		} else {
7791676Sjpk 			if (ip6h->ip6_nxt == IPPROTO_ICMPV6) {
7801676Sjpk 				const icmp6_t *icmp6 = (const icmp6_t *)
7811676Sjpk 				    (mp->b_rptr + IPV6_HDR_LEN);
7821676Sjpk 
7831676Sjpk 				if ((uchar_t *)icmp6 + ICMP6_MINLEN >
7841676Sjpk 				    mp->b_wptr) {
7851676Sjpk 					if (!pullupmsg(mp,
7861676Sjpk 					    (uchar_t *)icmp6 - mp->b_rptr +
7871676Sjpk 					    ICMP6_MINLEN))
7881676Sjpk 						return (B_FALSE);
7891676Sjpk 					icmp6 = (const icmp6_t *)
7901676Sjpk 					    (mp->b_rptr + IPV6_HDR_LEN);
7911676Sjpk 				}
7921676Sjpk 				if (icmp6->icmp6_type >= MLD_LISTENER_QUERY &&
7931676Sjpk 				    icmp6->icmp6_type <= ICMP6_MAX_INFO_TYPE)
7941676Sjpk 					return (B_TRUE);
7951676Sjpk 			}
7961676Sjpk 			src = &ip6h->ip6_src;
7971676Sjpk 		}
7981676Sjpk 
7991676Sjpk 		/*
8001676Sjpk 		 * Look up the tnrhtp database and get the implicit label
8011676Sjpk 		 * that is associated with this unlabeled host and attach
8021676Sjpk 		 * it to the packet.
8031676Sjpk 		 */
8041676Sjpk 		if ((src_rhtp = find_tpc(src, version, B_FALSE)) == NULL)
8051676Sjpk 			return (B_FALSE);
8061676Sjpk 
8071676Sjpk 		/* If the sender is labeled, drop the unlabeled packet. */
8081676Sjpk 		if (src_rhtp->tpc_tp.host_type != UNLABELED) {
8091676Sjpk 			TPC_RELE(src_rhtp);
8101676Sjpk 			pr_addr_dbg("unlabeled packet forged from %s\n",
8111676Sjpk 			    version == IPV4_VERSION ? AF_INET : AF_INET6, src);
8121676Sjpk 			return (B_FALSE);
8131676Sjpk 		}
8141676Sjpk 
8151676Sjpk 		sl = src_rhtp->tpc_tp.tp_def_label;
8161676Sjpk 		setbltype(&sl, SUN_SL_ID);
8171676Sjpk 		doi = src_rhtp->tpc_tp.tp_doi;
8181676Sjpk 		TPC_RELE(src_rhtp);
8191676Sjpk 		break;
8201676Sjpk 
8211676Sjpk 	default:
8221676Sjpk 		return (B_FALSE);
8231676Sjpk 	}
8241676Sjpk 
8251676Sjpk 	/* Make sure no other thread is messing with this mblk */
8261676Sjpk 	ASSERT(DB_REF(mp) == 1);
8271676Sjpk 	if (DB_CRED(mp) == NULL) {
8281676Sjpk 		DB_CRED(mp) = newcred_from_bslabel(&sl, doi, KM_NOSLEEP);
8291676Sjpk 		if (DB_CRED(mp) == NULL)
8301676Sjpk 			return (B_FALSE);
8311676Sjpk 	} else {
8321676Sjpk 		cred_t	*newcr;
8331676Sjpk 
8341676Sjpk 		newcr = copycred_from_bslabel(DB_CRED(mp), &sl, doi,
8351676Sjpk 		    KM_NOSLEEP);
8361676Sjpk 		if (newcr == NULL)
8371676Sjpk 			return (B_FALSE);
8381676Sjpk 		crfree(DB_CRED(mp));
8391676Sjpk 		DB_CRED(mp) = newcr;
8401676Sjpk 	}
8411676Sjpk 
8421676Sjpk 	/*
8431676Sjpk 	 * If the source was unlabeled, then flag as such,
8441676Sjpk 	 * while remembering that CIPSO routers add headers.
8451676Sjpk 	 */
8461676Sjpk 	if (label_type == OPT_NONE)
8471676Sjpk 		crgetlabel(DB_CRED(mp))->tsl_flags |= TSLF_UNLABELED;
8481676Sjpk 	else if (label_type == OPT_CIPSO) {
8491676Sjpk 		if ((src_rhtp = find_tpc(src, version, B_FALSE)) == NULL)
8501676Sjpk 			return (B_FALSE);
8511676Sjpk 		if (src_rhtp->tpc_tp.host_type == UNLABELED)
852*6596Skp158701 			crgetlabel(DB_CRED(mp))->tsl_flags |=
853*6596Skp158701 			    TSLF_UNLABELED;
8541676Sjpk 		TPC_RELE(src_rhtp);
8551676Sjpk 	}
8561676Sjpk 
8571676Sjpk 	return (B_TRUE);
8581676Sjpk }
8591676Sjpk 
8601676Sjpk /*
8611676Sjpk  * This routine determines whether the given packet should be accepted locally.
8621676Sjpk  * It does a range/set check on the packet's label by looking up the given
8631676Sjpk  * address in the remote host database.
8641676Sjpk  */
8651676Sjpk boolean_t
8661676Sjpk tsol_receive_local(const mblk_t *mp, const void *addr, uchar_t version,
8671676Sjpk     boolean_t shared_addr, const conn_t *connp)
8681676Sjpk {
8691676Sjpk 	const cred_t *credp;
8701676Sjpk 	ts_label_t *plabel, *conn_plabel;
8711676Sjpk 	tsol_tpc_t *tp;
8721676Sjpk 	boolean_t retv;
8731676Sjpk 	const bslabel_t *label, *conn_label;
8741676Sjpk 
8751676Sjpk 	/*
8761676Sjpk 	 * The cases in which this can happen are:
8771676Sjpk 	 *	- IPv6 Router Alert, where ip_rput_data_v6 deliberately skips
8781676Sjpk 	 *	  over the label attachment process.
8791676Sjpk 	 *	- MLD output looped-back to ourselves.
8801676Sjpk 	 *	- IPv4 Router Discovery, where tsol_get_pkt_label intentionally
8811676Sjpk 	 *	  avoids the labeling process.
8821676Sjpk 	 * We trust that all valid paths in the code set the cred pointer when
8831676Sjpk 	 * needed.
8841676Sjpk 	 */
8851676Sjpk 	if ((credp = DB_CRED(mp)) == NULL)
8861676Sjpk 		return (B_TRUE);
8871676Sjpk 
8881676Sjpk 	/*
8891676Sjpk 	 * If this packet is from the inside (not a remote host) and has the
8901676Sjpk 	 * same zoneid as the selected destination, then no checks are
8911676Sjpk 	 * necessary.  Membership in the zone is enough proof.  This is
8921676Sjpk 	 * intended to be a hot path through this function.
8931676Sjpk 	 */
8941676Sjpk 	if (!crisremote(credp) &&
8951676Sjpk 	    crgetzone(credp) == crgetzone(connp->conn_cred))
8961676Sjpk 		return (B_TRUE);
8971676Sjpk 
8981676Sjpk 	plabel = crgetlabel(credp);
8991676Sjpk 	conn_plabel = crgetlabel(connp->conn_cred);
9001676Sjpk 	ASSERT(plabel != NULL && conn_plabel != NULL);
9011676Sjpk 
9021676Sjpk 	label = label2bslabel(plabel);
9031676Sjpk 	conn_label = label2bslabel(crgetlabel(connp->conn_cred));
9041676Sjpk 
9051676Sjpk 	/*
9061676Sjpk 	 * MLPs are always validated using the range and set of the local
9071676Sjpk 	 * address, even when the remote host is unlabeled.
9081676Sjpk 	 */
9091676Sjpk 	if (connp->conn_mlp_type == mlptBoth ||
9101676Sjpk 	/* LINTED: no consequent */
9111676Sjpk 	    connp->conn_mlp_type == (shared_addr ? mlptShared : mlptPrivate)) {
9121676Sjpk 		;
9131676Sjpk 
9141676Sjpk 	/*
9151676Sjpk 	 * If this is a packet from an unlabeled sender, then we must apply
9161676Sjpk 	 * different rules.  If the label is equal to the zone's label, then
9171676Sjpk 	 * it's allowed.  If it's not equal, but the zone is either the global
9181676Sjpk 	 * zone or the label is dominated by the zone's label, then allow it
9191676Sjpk 	 * as long as it's in the range configured for the destination.
9201676Sjpk 	 */
9211676Sjpk 	} else if (plabel->tsl_flags & TSLF_UNLABELED) {
9221676Sjpk 		if (plabel->tsl_doi == conn_plabel->tsl_doi &&
9231676Sjpk 		    blequal(label, conn_label))
9241676Sjpk 			return (B_TRUE);
9251676Sjpk 
9263448Sdh155122 		/*
9273448Sdh155122 		 * conn_zoneid is global for an exclusive stack, thus we use
9283448Sdh155122 		 * conn_cred to get the zoneid
9293448Sdh155122 		 */
9301676Sjpk 		if (!connp->conn_mac_exempt ||
9313448Sdh155122 		    (crgetzoneid(connp->conn_cred) != GLOBAL_ZONEID &&
9321676Sjpk 		    (plabel->tsl_doi != conn_plabel->tsl_doi ||
9331676Sjpk 		    !bldominates(conn_label, label)))) {
9341676Sjpk 			DTRACE_PROBE3(
9351676Sjpk 			    tx__ip__log__drop__receivelocal__mac_unl,
9361676Sjpk 			    char *,
9371676Sjpk 			    "unlabeled packet mp(1) fails mac for conn(2)",
9381676Sjpk 			    mblk_t *, mp, conn_t *, connp);
9391676Sjpk 			return (B_FALSE);
9401676Sjpk 		}
9411676Sjpk 
9421676Sjpk 	/*
9434448Skp158701 	 * If this is a packet from a labeled sender, verify the
9444448Skp158701 	 * label on the packet matches the connection label.
9451676Sjpk 	 */
9464448Skp158701 	} else {
9474448Skp158701 		if (plabel->tsl_doi != conn_plabel->tsl_doi ||
9484448Skp158701 		    !blequal(label, conn_label)) {
9494448Skp158701 			DTRACE_PROBE3(tx__ip__log__drop__receivelocal__mac__slp,
9504448Skp158701 			    char *,
9514448Skp158701 			    "packet mp(1) failed label match to SLP conn(2)",
9524448Skp158701 			    mblk_t *, mp, conn_t *, connp);
9534448Skp158701 			return (B_FALSE);
9544448Skp158701 		}
9551676Sjpk 		/*
9564448Skp158701 		 * No further checks will be needed if this is a zone-
9574448Skp158701 		 * specific address because (1) The process for bringing up
9584448Skp158701 		 * the interface ensures the zone's label is within the zone-
9594448Skp158701 		 * specific address's valid label range; (2) For cases where
9604448Skp158701 		 * the conn is bound to the unspecified addresses, ip fanout
9614448Skp158701 		 * logic ensures conn's zoneid equals the dest addr's zoneid;
9624448Skp158701 		 * (3) Mac-exempt and mlp logic above already handle all
9634448Skp158701 		 * cases where the zone label may not be the same as the
9644448Skp158701 		 * conn label.
9651676Sjpk 		 */
9664448Skp158701 		if (!shared_addr)
9671676Sjpk 			return (B_TRUE);
9681676Sjpk 	}
9691676Sjpk 
9701676Sjpk 	tp = find_tpc(addr, version, B_FALSE);
9711676Sjpk 	if (tp == NULL) {
9721676Sjpk 		DTRACE_PROBE3(tx__ip__log__drop__receivelocal__no__tnr,
9731676Sjpk 		    char *, "dropping mp(1), host(2) lacks entry",
9741676Sjpk 		    mblk_t *, mp, void *, addr);
9751676Sjpk 		return (B_FALSE);
9761676Sjpk 	}
9771676Sjpk 
9781676Sjpk 	/*
9791676Sjpk 	 * The local host address should not be unlabeled at this point.  The
9801676Sjpk 	 * only way this can happen is that the destination isn't unicast.  We
9811676Sjpk 	 * assume that the packet should not have had a label, and thus should
9821676Sjpk 	 * have been handled by the TSLF_UNLABELED logic above.
9831676Sjpk 	 */
9841676Sjpk 	if (tp->tpc_tp.host_type == UNLABELED) {
9851676Sjpk 		retv = B_FALSE;
9861676Sjpk 		DTRACE_PROBE3(tx__ip__log__drop__receivelocal__flag, char *,
9871676Sjpk 		    "mp(1) unlabeled source, but tp is not unlabeled.",
9881676Sjpk 		    mblk_t *, mp, tsol_tpc_t *, tp);
9891676Sjpk 
9901676Sjpk 	} else if (tp->tpc_tp.host_type != SUN_CIPSO) {
9911676Sjpk 		retv = B_FALSE;
9921676Sjpk 		DTRACE_PROBE3(tx__ip__log__drop__receivelocal__tptype, char *,
9931676Sjpk 		    "delivering mp(1), found unrecognized tpc(2) type.",
9941676Sjpk 		    mblk_t *, mp, tsol_tpc_t *, tp);
9951676Sjpk 
9961676Sjpk 	} else if (plabel->tsl_doi != tp->tpc_tp.tp_doi) {
9971676Sjpk 		retv = B_FALSE;
9981676Sjpk 		DTRACE_PROBE3(tx__ip__log__drop__receivelocal__mac, char *,
9991676Sjpk 		    "mp(1) could not be delievered to tp(2), doi mismatch",
10001676Sjpk 		    mblk_t *, mp, tsol_tpc_t *, tp);
10011676Sjpk 
10021676Sjpk 	} else if (!_blinrange(label, &tp->tpc_tp.tp_sl_range_cipso) &&
10031676Sjpk 	    !blinlset(label, tp->tpc_tp.tp_sl_set_cipso)) {
10041676Sjpk 		retv = B_FALSE;
10051676Sjpk 		DTRACE_PROBE3(tx__ip__log__drop__receivelocal__mac, char *,
10061676Sjpk 		    "mp(1) could not be delievered to tp(2), bad mac",
10071676Sjpk 		    mblk_t *, mp, tsol_tpc_t *, tp);
10081676Sjpk 	} else {
10091676Sjpk 		retv = B_TRUE;
10101676Sjpk 	}
10111676Sjpk 
10121676Sjpk 	TPC_RELE(tp);
10131676Sjpk 
10141676Sjpk 	return (retv);
10151676Sjpk }
10161676Sjpk 
10171676Sjpk boolean_t
10181676Sjpk tsol_can_accept_raw(mblk_t *mp, boolean_t check_host)
10191676Sjpk {
10201676Sjpk 	ts_label_t	*plabel = NULL;
10211676Sjpk 	tsol_tpc_t	*src_rhtp, *dst_rhtp;
10221676Sjpk 	boolean_t	retv;
10231676Sjpk 
10241676Sjpk 	if (DB_CRED(mp) != NULL)
10251676Sjpk 		plabel = crgetlabel(DB_CRED(mp));
10261676Sjpk 
10271676Sjpk 	/* We are bootstrapping or the internal template was never deleted */
10281676Sjpk 	if (plabel == NULL)
10291676Sjpk 		return (B_TRUE);
10301676Sjpk 
10311676Sjpk 	if (IPH_HDR_VERSION(mp->b_rptr) == IPV4_VERSION) {
10321676Sjpk 		ipha_t *ipha = (ipha_t *)mp->b_rptr;
10331676Sjpk 
10341676Sjpk 		src_rhtp = find_tpc(&ipha->ipha_src, IPV4_VERSION,
10351676Sjpk 		    B_FALSE);
10361676Sjpk 		if (src_rhtp == NULL)
10371676Sjpk 			return (B_FALSE);
10381676Sjpk 		dst_rhtp = find_tpc(&ipha->ipha_dst, IPV4_VERSION,
10391676Sjpk 		    B_FALSE);
10401676Sjpk 	} else {
10411676Sjpk 		ip6_t *ip6h = (ip6_t *)mp->b_rptr;
10421676Sjpk 
10431676Sjpk 		src_rhtp = find_tpc(&ip6h->ip6_src, IPV6_VERSION,
10441676Sjpk 		    B_FALSE);
10451676Sjpk 		if (src_rhtp == NULL)
10461676Sjpk 			return (B_FALSE);
10471676Sjpk 		dst_rhtp = find_tpc(&ip6h->ip6_dst, IPV6_VERSION,
10481676Sjpk 		    B_FALSE);
10491676Sjpk 	}
10501676Sjpk 	if (dst_rhtp == NULL) {
10511676Sjpk 		TPC_RELE(src_rhtp);
10521676Sjpk 		return (B_FALSE);
10531676Sjpk 	}
10541676Sjpk 
10551676Sjpk 	if (label2doi(plabel) != src_rhtp->tpc_tp.tp_doi) {
10561676Sjpk 		retv = B_FALSE;
10571676Sjpk 
10581676Sjpk 	/*
10591676Sjpk 	 * Check that the packet's label is in the correct range for labeled
10601676Sjpk 	 * sender, or is equal to the default label for unlabeled sender.
10611676Sjpk 	 */
10621676Sjpk 	} else if ((src_rhtp->tpc_tp.host_type != UNLABELED &&
10631676Sjpk 	    !_blinrange(label2bslabel(plabel),
10641676Sjpk 	    &src_rhtp->tpc_tp.tp_sl_range_cipso) &&
10651676Sjpk 	    !blinlset(label2bslabel(plabel),
10661676Sjpk 	    src_rhtp->tpc_tp.tp_sl_set_cipso)) ||
10671676Sjpk 	    (src_rhtp->tpc_tp.host_type == UNLABELED &&
10681676Sjpk 	    !blequal(&plabel->tsl_label, &src_rhtp->tpc_tp.tp_def_label))) {
10691676Sjpk 		retv = B_FALSE;
10701676Sjpk 
10711676Sjpk 	} else if (check_host) {
10721676Sjpk 		retv = B_TRUE;
10731676Sjpk 
10741676Sjpk 	/*
10751676Sjpk 	 * Until we have SL range in the Zone structure, pass it
10761676Sjpk 	 * when our own address lookup returned an internal entry.
10771676Sjpk 	 */
10781676Sjpk 	} else switch (dst_rhtp->tpc_tp.host_type) {
10791676Sjpk 	case UNLABELED:
10801676Sjpk 		retv = B_TRUE;
10811676Sjpk 		break;
10821676Sjpk 
10831676Sjpk 	case SUN_CIPSO:
10841676Sjpk 		retv = _blinrange(label2bslabel(plabel),
10851676Sjpk 		    &dst_rhtp->tpc_tp.tp_sl_range_cipso) ||
10861676Sjpk 		    blinlset(label2bslabel(plabel),
10871676Sjpk 		    dst_rhtp->tpc_tp.tp_sl_set_cipso);
10881676Sjpk 		break;
10891676Sjpk 
10901676Sjpk 	default:
10911676Sjpk 		retv = B_FALSE;
10921676Sjpk 	}
10931676Sjpk 	TPC_RELE(src_rhtp);
10941676Sjpk 	TPC_RELE(dst_rhtp);
10951676Sjpk 	return (retv);
10961676Sjpk }
10971676Sjpk 
10981676Sjpk /*
10991676Sjpk  * This routine determines whether a response to a failed packet delivery or
11001676Sjpk  * connection should be sent back.  By default, the policy is to allow such
11011676Sjpk  * messages to be sent at all times, as these messages reveal little useful
11021676Sjpk  * information and are healthy parts of TCP/IP networking.
11031676Sjpk  *
11041676Sjpk  * If tsol_strict_error is set, then we do strict tests: if the packet label is
11051676Sjpk  * within the label range/set of this host/zone, return B_TRUE; otherwise
11061676Sjpk  * return B_FALSE, which causes the packet to be dropped silently.
11071676Sjpk  *
11081676Sjpk  * Note that tsol_get_pkt_label will cause the packet to drop if the sender is
11091676Sjpk  * marked as labeled in the remote host database, but the packet lacks a label.
11101676Sjpk  * This means that we don't need to do a lookup on the source; the
11111676Sjpk  * TSLF_UNLABELED flag is sufficient.
11121676Sjpk  */
11131676Sjpk boolean_t
11141676Sjpk tsol_can_reply_error(const mblk_t *mp)
11151676Sjpk {
11161676Sjpk 	ts_label_t	*plabel = NULL;
11171676Sjpk 	tsol_tpc_t	*rhtp;
11181676Sjpk 	const ipha_t	*ipha;
11191676Sjpk 	const ip6_t	*ip6h;
11201676Sjpk 	boolean_t	retv;
11211676Sjpk 	bslabel_t	*pktbs;
11221676Sjpk 
11231676Sjpk 	/* Caller must pull up at least the IP header */
11241676Sjpk 	ASSERT(MBLKL(mp) >= (IPH_HDR_VERSION(mp->b_rptr) == IPV4_VERSION ?
11251676Sjpk 	    sizeof (*ipha) : sizeof (*ip6h)));
11261676Sjpk 
11271676Sjpk 	if (!tsol_strict_error)
11281676Sjpk 		return (B_TRUE);
11291676Sjpk 
11301676Sjpk 	if (DB_CRED(mp) != NULL)
11311676Sjpk 		plabel = crgetlabel(DB_CRED(mp));
11321676Sjpk 
11331676Sjpk 	/* We are bootstrapping or the internal template was never deleted */
11341676Sjpk 	if (plabel == NULL)
11351676Sjpk 		return (B_TRUE);
11361676Sjpk 
11371676Sjpk 	if (IPH_HDR_VERSION(mp->b_rptr) == IPV4_VERSION) {
11381676Sjpk 		ipha = (const ipha_t *)mp->b_rptr;
11391676Sjpk 		rhtp = find_tpc(&ipha->ipha_dst, IPV4_VERSION, B_FALSE);
11401676Sjpk 	} else {
11411676Sjpk 		ip6h = (const ip6_t *)mp->b_rptr;
11421676Sjpk 		rhtp = find_tpc(&ip6h->ip6_dst, IPV6_VERSION, B_FALSE);
11431676Sjpk 	}
11441676Sjpk 
11451676Sjpk 	if (rhtp == NULL || label2doi(plabel) != rhtp->tpc_tp.tp_doi) {
11461676Sjpk 		retv = B_FALSE;
11471676Sjpk 	} else {
11481676Sjpk 		/*
11491676Sjpk 		 * If we're in the midst of forwarding, then the destination
11501676Sjpk 		 * address might not be labeled.  In that case, allow unlabeled
11511676Sjpk 		 * packets through only if the default label is the same, and
11521676Sjpk 		 * labeled ones if they dominate.
11531676Sjpk 		 */
11541676Sjpk 		pktbs = label2bslabel(plabel);
11551676Sjpk 		switch (rhtp->tpc_tp.host_type) {
11561676Sjpk 		case UNLABELED:
11571676Sjpk 			if (plabel->tsl_flags & TSLF_UNLABELED) {
11581676Sjpk 				retv = blequal(pktbs,
11591676Sjpk 				    &rhtp->tpc_tp.tp_def_label);
11601676Sjpk 			} else {
11611676Sjpk 				retv = bldominates(pktbs,
11621676Sjpk 				    &rhtp->tpc_tp.tp_def_label);
11631676Sjpk 			}
11641676Sjpk 			break;
11651676Sjpk 
11661676Sjpk 		case SUN_CIPSO:
11671676Sjpk 			retv = _blinrange(pktbs,
11681676Sjpk 			    &rhtp->tpc_tp.tp_sl_range_cipso) ||
11691676Sjpk 			    blinlset(pktbs, rhtp->tpc_tp.tp_sl_set_cipso);
11701676Sjpk 			break;
11711676Sjpk 
11721676Sjpk 		default:
11731676Sjpk 			retv = B_FALSE;
11741676Sjpk 			break;
11751676Sjpk 		}
11761676Sjpk 	}
11771676Sjpk 
11781676Sjpk 	if (rhtp != NULL)
11791676Sjpk 		TPC_RELE(rhtp);
11801676Sjpk 
11811676Sjpk 	return (retv);
11821676Sjpk }
11831676Sjpk 
11841676Sjpk /*
11851676Sjpk  * Finds the zone associated with the given packet.  Returns GLOBAL_ZONEID if
11861676Sjpk  * the zone cannot be located.
11871676Sjpk  *
11881676Sjpk  * This is used by the classifier when the packet matches an ALL_ZONES IRE, and
11891676Sjpk  * there's no MLP defined.
11903448Sdh155122  *
11913448Sdh155122  * Note that we assume that this is only invoked in the ALL_ZONES case.
11923448Sdh155122  * Handling other cases would require handle exclusive stack zones where either
11933448Sdh155122  * this routine or the callers would have to map from
11943448Sdh155122  * the zoneid (zone->zone_id) to what IP uses in conn_zoneid etc.
11951676Sjpk  */
11961676Sjpk zoneid_t
11971676Sjpk tsol_packet_to_zoneid(const mblk_t *mp)
11981676Sjpk {
11991676Sjpk 	cred_t *cr = DB_CRED(mp);
12001676Sjpk 	zone_t *zone;
12011676Sjpk 	ts_label_t *label;
12021676Sjpk 
12031676Sjpk 	if (cr != NULL) {
12041676Sjpk 		if ((label = crgetlabel(cr)) != NULL) {
12051676Sjpk 			zone = zone_find_by_label(label);
12061676Sjpk 			if (zone != NULL) {
12071676Sjpk 				zoneid_t zoneid = zone->zone_id;
12081676Sjpk 
12091676Sjpk 				zone_rele(zone);
12101676Sjpk 				return (zoneid);
12111676Sjpk 			}
12121676Sjpk 		}
12131676Sjpk 	}
12141676Sjpk 	return (GLOBAL_ZONEID);
12151676Sjpk }
12161676Sjpk 
12171676Sjpk int
12181676Sjpk tsol_ire_match_gwattr(ire_t *ire, const ts_label_t *tsl)
12191676Sjpk {
12201676Sjpk 	int		error = 0;
12211676Sjpk 	tsol_ire_gw_secattr_t *attrp = NULL;
12221676Sjpk 	tsol_tnrhc_t	*gw_rhc = NULL;
12231676Sjpk 	tsol_gcgrp_t	*gcgrp = NULL;
12241676Sjpk 	tsol_gc_t	*gc = NULL;
12251676Sjpk 	in_addr_t	ga_addr4;
12261676Sjpk 	void		*paddr = NULL;
12271676Sjpk 
12281676Sjpk 	/* Not in Trusted mode or IRE is local/loopback/broadcast/interface */
12291676Sjpk 	if (!is_system_labeled() ||
12301676Sjpk 	    (ire->ire_type & (IRE_LOCAL | IRE_LOOPBACK | IRE_BROADCAST |
12311676Sjpk 	    IRE_INTERFACE)))
12321676Sjpk 		goto done;
12331676Sjpk 
12341676Sjpk 	/*
12351676Sjpk 	 * If we don't have a label to compare with, or the IRE does not
12361676Sjpk 	 * contain any gateway security attributes, there's not much that
12371676Sjpk 	 * we can do.  We let the former case pass, and the latter fail,
12381676Sjpk 	 * since the IRE doesn't qualify for a match due to the lack of
12391676Sjpk 	 * security attributes.
12401676Sjpk 	 */
12411676Sjpk 	if (tsl == NULL || ire->ire_gw_secattr == NULL) {
12421676Sjpk 		if (tsl != NULL) {
1243*6596Skp158701 			DTRACE_PROBE3(tx__ip__log__drop__irematch__nogwsec,
1244*6596Skp158701 			    char *,
1245*6596Skp158701 			    "ire(1) lacks ire_gw_secattr matching label(2)",
1246*6596Skp158701 			    ire_t *, ire, ts_label_t *, tsl);
12471676Sjpk 			error = EACCES;
12481676Sjpk 		}
12491676Sjpk 		goto done;
12501676Sjpk 	}
12511676Sjpk 
12521676Sjpk 	attrp = ire->ire_gw_secattr;
12531676Sjpk 
12541676Sjpk 	/*
12551676Sjpk 	 * The possible lock order scenarios related to the tsol gateway
12561676Sjpk 	 * attribute locks are documented at the beginning of ip.c in the
12571676Sjpk 	 * lock order scenario section.
12581676Sjpk 	 */
12591676Sjpk 	mutex_enter(&attrp->igsa_lock);
12601676Sjpk 
12611676Sjpk 	/*
12621676Sjpk 	 * Depending on the IRE type (prefix vs. cache), we seek the group
12631676Sjpk 	 * structure which contains all security credentials of the gateway.
12641676Sjpk 	 * A prefix IRE is associated with at most one gateway credential,
12651676Sjpk 	 * while a cache IRE is associated with every credentials that the
12661676Sjpk 	 * gateway has.
12671676Sjpk 	 */
12681676Sjpk 	if ((gc = attrp->igsa_gc) != NULL) {			/* prefix */
12691676Sjpk 		gcgrp = gc->gc_grp;
12701676Sjpk 		ASSERT(gcgrp != NULL);
12711676Sjpk 		rw_enter(&gcgrp->gcgrp_rwlock, RW_READER);
12721676Sjpk 	} else if ((gcgrp = attrp->igsa_gcgrp) != NULL) {	/* cache */
12731676Sjpk 		rw_enter(&gcgrp->gcgrp_rwlock, RW_READER);
12741676Sjpk 		gc = gcgrp->gcgrp_head;
12751676Sjpk 		if (gc == NULL) {
12761676Sjpk 			/* gc group is empty, so the drop lock now */
12771676Sjpk 			ASSERT(gcgrp->gcgrp_count == 0);
12781676Sjpk 			rw_exit(&gcgrp->gcgrp_rwlock);
12791676Sjpk 			gcgrp = NULL;
12801676Sjpk 		}
12811676Sjpk 	}
12821676Sjpk 
12831676Sjpk 	if (gcgrp != NULL)
12841676Sjpk 		GCGRP_REFHOLD(gcgrp);
12851676Sjpk 
12861676Sjpk 	if ((gw_rhc = attrp->igsa_rhc) != NULL) {
12871676Sjpk 		/*
12881676Sjpk 		 * If our cached entry has grown stale, then discard it so we
12891676Sjpk 		 * can get a new one.
12901676Sjpk 		 */
12911676Sjpk 		if (gw_rhc->rhc_invalid || gw_rhc->rhc_tpc->tpc_invalid) {
12921676Sjpk 			TNRHC_RELE(gw_rhc);
12931676Sjpk 			attrp->igsa_rhc = gw_rhc = NULL;
12941676Sjpk 		} else {
12951676Sjpk 			TNRHC_HOLD(gw_rhc)
12961676Sjpk 		}
12971676Sjpk 	}
12981676Sjpk 
12991676Sjpk 	/* Last attempt at loading the template had failed; try again */
13001676Sjpk 	if (gw_rhc == NULL) {
13011676Sjpk 		if (gcgrp != NULL) {
13021676Sjpk 			tsol_gcgrp_addr_t *ga = &gcgrp->gcgrp_addr;
13031676Sjpk 
13041676Sjpk 			if (ire->ire_ipversion == IPV4_VERSION) {
13051676Sjpk 				ASSERT(ga->ga_af == AF_INET);
13061676Sjpk 				IN6_V4MAPPED_TO_IPADDR(&ga->ga_addr, ga_addr4);
13071676Sjpk 				paddr = &ga_addr4;
13081676Sjpk 			} else {
13091676Sjpk 				ASSERT(ga->ga_af == AF_INET6);
13101676Sjpk 				paddr = &ga->ga_addr;
13111676Sjpk 			}
13121676Sjpk 		} else if (ire->ire_ipversion == IPV6_VERSION &&
13131676Sjpk 		    !IN6_IS_ADDR_UNSPECIFIED(&ire->ire_gateway_addr_v6)) {
13141676Sjpk 			paddr = &ire->ire_gateway_addr_v6;
13151676Sjpk 		} else if (ire->ire_ipversion == IPV4_VERSION &&
13161676Sjpk 		    ire->ire_gateway_addr != INADDR_ANY) {
13171676Sjpk 			paddr = &ire->ire_gateway_addr;
13181676Sjpk 		}
13191676Sjpk 
13201676Sjpk 		/* We've found a gateway address to do the template lookup */
13211676Sjpk 		if (paddr != NULL) {
13221676Sjpk 			ASSERT(gw_rhc == NULL);
13233292Skp158701 			gw_rhc = find_rhc(paddr, ire->ire_ipversion, B_FALSE);
13241676Sjpk 			if (gw_rhc != NULL) {
13251676Sjpk 				/*
13261676Sjpk 				 * Note that if the lookup above returned an
13271676Sjpk 				 * internal template, we'll use it for the
13281676Sjpk 				 * time being, and do another lookup next
13291676Sjpk 				 * time around.
13301676Sjpk 				 */
13311676Sjpk 				/* Another thread has loaded the template? */
13321676Sjpk 				if (attrp->igsa_rhc != NULL) {
13331676Sjpk 					TNRHC_RELE(gw_rhc)
13341676Sjpk 					/* reload, it could be different */
13351676Sjpk 					gw_rhc = attrp->igsa_rhc;
13361676Sjpk 				} else {
13371676Sjpk 					attrp->igsa_rhc = gw_rhc;
13381676Sjpk 				}
13391676Sjpk 				/*
13401676Sjpk 				 * Hold an extra reference just like we did
13411676Sjpk 				 * above prior to dropping the igsa_lock.
13421676Sjpk 				 */
13431676Sjpk 				TNRHC_HOLD(gw_rhc)
13441676Sjpk 			}
13451676Sjpk 		}
13461676Sjpk 	}
13471676Sjpk 
13481676Sjpk 	mutex_exit(&attrp->igsa_lock);
13491676Sjpk 	/* Gateway template not found */
13501676Sjpk 	if (gw_rhc == NULL) {
13511676Sjpk 		/*
13521676Sjpk 		 * If destination address is directly reachable through an
13531676Sjpk 		 * interface rather than through a learned route, pass it.
13541676Sjpk 		 */
13551676Sjpk 		if (paddr != NULL) {
13561676Sjpk 			DTRACE_PROBE3(
13571676Sjpk 			    tx__ip__log__drop__irematch__nogwtmpl, char *,
13581676Sjpk 			    "ire(1), label(2) off-link with no gw_rhc",
13591676Sjpk 			    ire_t *, ire, ts_label_t *, tsl);
13601676Sjpk 			error = EINVAL;
13611676Sjpk 		}
13621676Sjpk 		goto done;
13631676Sjpk 	}
13641676Sjpk 
13651676Sjpk 	if (gc != NULL) {
13661676Sjpk 		tsol_gcdb_t *gcdb;
13671676Sjpk 		/*
13681676Sjpk 		 * In the case of IRE_CACHE we've got one or more gateway
13691676Sjpk 		 * security credentials to compare against the passed in label.
13701676Sjpk 		 * Perform label range comparison against each security
13711676Sjpk 		 * credential of the gateway. In the case of a prefix ire
13721676Sjpk 		 * we need to match against the security attributes of
13731676Sjpk 		 * just the route itself, so the loop is executed only once.
13741676Sjpk 		 */
13751676Sjpk 		ASSERT(gcgrp != NULL);
13761676Sjpk 		do {
13771676Sjpk 			gcdb = gc->gc_db;
13781676Sjpk 			if (tsl->tsl_doi == gcdb->gcdb_doi &&
13791676Sjpk 			    _blinrange(&tsl->tsl_label, &gcdb->gcdb_slrange))
13801676Sjpk 				break;
13811676Sjpk 			if (ire->ire_type == IRE_CACHE)
13821676Sjpk 				gc = gc->gc_next;
13831676Sjpk 			else
13841676Sjpk 				gc = NULL;
13851676Sjpk 		} while (gc != NULL);
13861676Sjpk 
13871676Sjpk 		if (gc == NULL) {
13881676Sjpk 			DTRACE_PROBE3(
13891676Sjpk 			    tx__ip__log__drop__irematch__nogcmatched,
13901676Sjpk 			    char *, "ire(1), tsl(2): all gc failed match",
13911676Sjpk 			    ire_t *, ire, ts_label_t *, tsl);
13921676Sjpk 			error = EACCES;
13931676Sjpk 		}
13941676Sjpk 	} else {
13951676Sjpk 		/*
13961676Sjpk 		 * We didn't find any gateway credentials in the IRE
13971676Sjpk 		 * attributes; fall back to the gateway's template for
13981676Sjpk 		 * label range checks, if we are required to do so.
13991676Sjpk 		 */
14001676Sjpk 		ASSERT(gw_rhc != NULL);
14011676Sjpk 		switch (gw_rhc->rhc_tpc->tpc_tp.host_type) {
14021676Sjpk 		case SUN_CIPSO:
1403*6596Skp158701 			if (tsl->tsl_doi != gw_rhc->rhc_tpc->tpc_tp.tp_doi ||
14041676Sjpk 			    (!_blinrange(&tsl->tsl_label,
1405*6596Skp158701 			    &gw_rhc->rhc_tpc->tpc_tp.tp_sl_range_cipso) &&
14061676Sjpk 			    !blinlset(&tsl->tsl_label,
14071676Sjpk 			    gw_rhc->rhc_tpc->tpc_tp.tp_sl_set_cipso))) {
14081676Sjpk 				error = EACCES;
14091676Sjpk 				DTRACE_PROBE4(
14101676Sjpk 				    tx__ip__log__drop__irematch__deftmpl,
14111676Sjpk 				    char *, "ire(1), tsl(2), gw_rhc(3) "
14121676Sjpk 				    "failed match (cipso gw)",
14131676Sjpk 				    ire_t *, ire, ts_label_t *, tsl,
14141676Sjpk 				    tsol_tnrhc_t *, gw_rhc);
14151676Sjpk 			}
14161676Sjpk 			break;
14171676Sjpk 
14181676Sjpk 		case UNLABELED:
1419*6596Skp158701 			if (tsl->tsl_doi != gw_rhc->rhc_tpc->tpc_tp.tp_doi ||
14201676Sjpk 			    (!_blinrange(&tsl->tsl_label,
14211676Sjpk 			    &gw_rhc->rhc_tpc->tpc_tp.tp_gw_sl_range) &&
14221676Sjpk 			    !blinlset(&tsl->tsl_label,
14231676Sjpk 			    gw_rhc->rhc_tpc->tpc_tp.tp_gw_sl_set))) {
14241676Sjpk 				error = EACCES;
14251676Sjpk 				DTRACE_PROBE4(
14261676Sjpk 				    tx__ip__log__drop__irematch__deftmpl,
14271676Sjpk 				    char *, "ire(1), tsl(2), gw_rhc(3) "
14281676Sjpk 				    "failed match (unlabeled gw)",
14291676Sjpk 				    ire_t *, ire, ts_label_t *, tsl,
14301676Sjpk 				    tsol_tnrhc_t *, gw_rhc);
14311676Sjpk 			}
14321676Sjpk 			break;
14331676Sjpk 		}
14341676Sjpk 	}
14351676Sjpk 
14361676Sjpk done:
14371676Sjpk 
14381676Sjpk 	if (gcgrp != NULL) {
14391676Sjpk 		rw_exit(&gcgrp->gcgrp_rwlock);
14401676Sjpk 		GCGRP_REFRELE(gcgrp);
14411676Sjpk 	}
14421676Sjpk 
14431676Sjpk 	if (gw_rhc != NULL)
14441676Sjpk 		TNRHC_RELE(gw_rhc)
14451676Sjpk 
14461676Sjpk 	return (error);
14471676Sjpk }
14481676Sjpk 
14491676Sjpk /*
14501676Sjpk  * Performs label accreditation checks for packet forwarding.
14511676Sjpk  *
14521676Sjpk  * Returns a pointer to the modified mblk if allowed for forwarding,
14531676Sjpk  * or NULL if the packet must be dropped.
14541676Sjpk  */
14551676Sjpk mblk_t *
14561676Sjpk tsol_ip_forward(ire_t *ire, mblk_t *mp)
14571676Sjpk {
14581676Sjpk 	tsol_ire_gw_secattr_t *attrp = NULL;
14591676Sjpk 	ipha_t		*ipha;
14601676Sjpk 	ip6_t		*ip6h;
14611676Sjpk 	const void	*pdst;
14621676Sjpk 	const void	*psrc;
14631676Sjpk 	boolean_t	off_link;
14641676Sjpk 	tsol_tpc_t	*dst_rhtp, *gw_rhtp;
14651676Sjpk 	tsol_ip_label_t label_type;
14661676Sjpk 	uchar_t		*opt_ptr = NULL;
14671676Sjpk 	ts_label_t	*tsl;
14681676Sjpk 	uint8_t		proto;
14691676Sjpk 	int		af, adjust;
14701676Sjpk 	uint16_t	iplen;
14712535Ssangeeta 	boolean_t	need_tpc_rele = B_FALSE;
14722535Ssangeeta 	ipaddr_t	*gw;
14733448Sdh155122 	ip_stack_t	*ipst = ire->ire_ipst;
14741676Sjpk 
14751676Sjpk 	ASSERT(ire != NULL && mp != NULL);
14761676Sjpk 	ASSERT(ire->ire_stq != NULL);
14771676Sjpk 
14781676Sjpk 	af = (ire->ire_ipversion == IPV4_VERSION) ? AF_INET : AF_INET6;
14791676Sjpk 
14801676Sjpk 	if (IPH_HDR_VERSION(mp->b_rptr) == IPV4_VERSION) {
14811676Sjpk 		ASSERT(ire->ire_ipversion == IPV4_VERSION);
14821676Sjpk 		ipha = (ipha_t *)mp->b_rptr;
14831676Sjpk 		psrc = &ipha->ipha_src;
14841676Sjpk 		pdst = &ipha->ipha_dst;
14851676Sjpk 		proto = ipha->ipha_protocol;
14861676Sjpk 
14872535Ssangeeta 		/*
14882535Ssangeeta 		 * off_link is TRUE if destination not directly reachable.
14892535Ssangeeta 		 * Surya note: we avoid creation of per-dst IRE_CACHE entries
14902535Ssangeeta 		 * for forwarded packets, so we set off_link to be TRUE
14912535Ssangeeta 		 * if the packet dst is different from the ire_addr of
14922535Ssangeeta 		 * the ire for the nexthop.
14932535Ssangeeta 		 */
14942535Ssangeeta 		off_link = ((ipha->ipha_dst != ire->ire_addr) ||
14952535Ssangeeta 		    (ire->ire_gateway_addr != INADDR_ANY));
14961676Sjpk 	} else {
14971676Sjpk 		ASSERT(ire->ire_ipversion == IPV6_VERSION);
14981676Sjpk 		ip6h = (ip6_t *)mp->b_rptr;
14991676Sjpk 		psrc = &ip6h->ip6_src;
15001676Sjpk 		pdst = &ip6h->ip6_dst;
15011676Sjpk 		proto = ip6h->ip6_nxt;
15021676Sjpk 
15031676Sjpk 		if (proto != IPPROTO_TCP && proto != IPPROTO_UDP &&
15041676Sjpk 		    proto != IPPROTO_ICMPV6) {
15051676Sjpk 			uint8_t *nexthdrp;
15061676Sjpk 			uint16_t hdr_len;
15071676Sjpk 
15081676Sjpk 			if (!ip_hdr_length_nexthdr_v6(mp, ip6h, &hdr_len,
15091676Sjpk 			    &nexthdrp)) {
15101676Sjpk 				/* malformed packet; drop it */
15111676Sjpk 				return (NULL);
15121676Sjpk 			}
15131676Sjpk 			proto = *nexthdrp;
15141676Sjpk 		}
15151676Sjpk 
15161676Sjpk 		/* destination not directly reachable? */
15171676Sjpk 		off_link = !IN6_IS_ADDR_UNSPECIFIED(&ire->ire_gateway_addr_v6);
15181676Sjpk 	}
15191676Sjpk 
15201676Sjpk 	if ((tsl = MBLK_GETLABEL(mp)) == NULL)
15211676Sjpk 		return (mp);
15221676Sjpk 
15231676Sjpk 	label_type = tsol_get_option(mp, &opt_ptr);
15241676Sjpk 
15251676Sjpk 	ASSERT(psrc != NULL && pdst != NULL);
15261676Sjpk 	dst_rhtp = find_tpc(pdst, ire->ire_ipversion, B_FALSE);
15271676Sjpk 
15281676Sjpk 	if (dst_rhtp == NULL) {
15291676Sjpk 		/*
15301676Sjpk 		 * Without a template we do not know if forwarding
15311676Sjpk 		 * violates MAC
15321676Sjpk 		 */
15331676Sjpk 		DTRACE_PROBE3(tx__ip__log__drop__forward__nodst, char *,
15341676Sjpk 		    "mp(1) dropped, no template for destination ip4|6(2)",
15351676Sjpk 		    mblk_t *, mp, void *, pdst);
15361676Sjpk 		return (NULL);
15371676Sjpk 	}
15381676Sjpk 
15391676Sjpk 	/*
15401676Sjpk 	 * Gateway template must have existed for off-link destinations,
15411676Sjpk 	 * since tsol_ire_match_gwattr has ensured such condition.
15421676Sjpk 	 */
15432535Ssangeeta 	if (ire->ire_ipversion == IPV4_VERSION && off_link) {
15442535Ssangeeta 		/*
15452535Ssangeeta 		 * Surya note: first check if we can get the gw_rhtp from
15462535Ssangeeta 		 * the ire_gw_secattr->igsa_rhc; if this is null, then
15472535Ssangeeta 		 * do a lookup based on the ire_addr (address of gw)
15482535Ssangeeta 		 */
15492535Ssangeeta 		if (ire->ire_gw_secattr != NULL &&
15502535Ssangeeta 		    ire->ire_gw_secattr->igsa_rhc != NULL) {
15512535Ssangeeta 			attrp = ire->ire_gw_secattr;
15522535Ssangeeta 			gw_rhtp = attrp->igsa_rhc->rhc_tpc;
15532535Ssangeeta 		} else  {
15542535Ssangeeta 			/*
15552535Ssangeeta 			 * use the ire_addr if this is the IRE_CACHE of nexthop
15562535Ssangeeta 			 */
15572535Ssangeeta 			gw = (ire->ire_gateway_addr == NULL? &ire->ire_addr :
15582535Ssangeeta 			    &ire->ire_gateway_addr);
15592535Ssangeeta 			gw_rhtp = find_tpc(gw, ire->ire_ipversion, B_FALSE);
15602535Ssangeeta 			need_tpc_rele = B_TRUE;
15612535Ssangeeta 		}
15622535Ssangeeta 		if (gw_rhtp == NULL) {
15632535Ssangeeta 			DTRACE_PROBE3(tx__ip__log__drop__forward__nogw, char *,
15642535Ssangeeta 			    "mp(1) dropped, no gateway in ire attributes(2)",
15652535Ssangeeta 			    mblk_t *, mp, tsol_ire_gw_secattr_t *, attrp);
15662535Ssangeeta 			mp = NULL;
15672535Ssangeeta 			goto keep_label;
15682535Ssangeeta 		}
15692535Ssangeeta 	}
15702535Ssangeeta 	if (ire->ire_ipversion == IPV6_VERSION &&
15712535Ssangeeta 	    ((attrp = ire->ire_gw_secattr) == NULL || attrp->igsa_rhc == NULL ||
15721676Sjpk 	    (gw_rhtp = attrp->igsa_rhc->rhc_tpc) == NULL) && off_link) {
15731676Sjpk 		DTRACE_PROBE3(tx__ip__log__drop__forward__nogw, char *,
15741676Sjpk 		    "mp(1) dropped, no gateway in ire attributes(2)",
15751676Sjpk 		    mblk_t *, mp, tsol_ire_gw_secattr_t *, attrp);
15761676Sjpk 		mp = NULL;
15771676Sjpk 		goto keep_label;
15781676Sjpk 	}
15791676Sjpk 
15801676Sjpk 	/*
15811676Sjpk 	 * Check that the label for the packet is acceptable
15821676Sjpk 	 * by destination host; otherwise, drop it.
15831676Sjpk 	 */
15841676Sjpk 	switch (dst_rhtp->tpc_tp.host_type) {
15851676Sjpk 	case SUN_CIPSO:
15861676Sjpk 		if (tsl->tsl_doi != dst_rhtp->tpc_tp.tp_doi ||
15871676Sjpk 		    (!_blinrange(&tsl->tsl_label,
15881676Sjpk 		    &dst_rhtp->tpc_tp.tp_sl_range_cipso) &&
15891676Sjpk 		    !blinlset(&tsl->tsl_label,
15901676Sjpk 		    dst_rhtp->tpc_tp.tp_sl_set_cipso))) {
15911676Sjpk 			DTRACE_PROBE4(tx__ip__log__drop__forward__mac, char *,
15921676Sjpk 			    "labeled packet mp(1) dropped, label(2) fails "
15931676Sjpk 			    "destination(3) accredation check",
15941676Sjpk 			    mblk_t *, mp, ts_label_t *, tsl,
15951676Sjpk 			    tsol_tpc_t *, dst_rhtp);
15961676Sjpk 			mp = NULL;
15971676Sjpk 			goto keep_label;
15981676Sjpk 		}
15991676Sjpk 		break;
16001676Sjpk 
16011676Sjpk 
16021676Sjpk 	case UNLABELED:
16031676Sjpk 		if (tsl->tsl_doi != dst_rhtp->tpc_tp.tp_doi ||
16041676Sjpk 		    !blequal(&dst_rhtp->tpc_tp.tp_def_label,
16051676Sjpk 		    &tsl->tsl_label)) {
16061676Sjpk 			DTRACE_PROBE4(tx__ip__log__drop__forward__mac, char *,
16071676Sjpk 			    "unlabeled packet mp(1) dropped, label(2) fails "
16081676Sjpk 			    "destination(3) accredation check",
16091676Sjpk 			    mblk_t *, mp, ts_label_t *, tsl,
16101676Sjpk 			    tsol_tpc_t *, dst_rhtp);
16111676Sjpk 			mp = NULL;
16121676Sjpk 			goto keep_label;
16131676Sjpk 		}
16141676Sjpk 		break;
16151676Sjpk 	}
16161676Sjpk 	if (label_type == OPT_CIPSO) {
16171676Sjpk 		/*
16181676Sjpk 		 * We keep the label on any of the following cases:
16191676Sjpk 		 *
16201676Sjpk 		 *   1. The destination is labeled (on/off-link).
16211676Sjpk 		 *   2. The unlabeled destination is off-link,
16221676Sjpk 		 *	and the next hop gateway is labeled.
16231676Sjpk 		 */
16241676Sjpk 		if (dst_rhtp->tpc_tp.host_type != UNLABELED ||
16251676Sjpk 		    (off_link &&
16261676Sjpk 		    gw_rhtp->tpc_tp.host_type != UNLABELED))
16271676Sjpk 			goto keep_label;
16281676Sjpk 
16291676Sjpk 		/*
16301676Sjpk 		 * Strip off the CIPSO option from the packet because: the
16311676Sjpk 		 * unlabeled destination host is directly reachable through
16321676Sjpk 		 * an interface (on-link); or, the unlabeled destination host
16331676Sjpk 		 * is not directly reachable (off-link), and the next hop
16341676Sjpk 		 * gateway is unlabeled.
16351676Sjpk 		 */
16361676Sjpk 		adjust = (af == AF_INET) ? tsol_remove_secopt(ipha, MBLKL(mp)) :
16371676Sjpk 		    tsol_remove_secopt_v6(ip6h, MBLKL(mp));
16381676Sjpk 
16391676Sjpk 		ASSERT(adjust <= 0);
16401676Sjpk 		if (adjust != 0) {
16411676Sjpk 
16421676Sjpk 			/* adjust is negative */
16431676Sjpk 			ASSERT((mp->b_wptr + adjust) >= mp->b_rptr);
16441676Sjpk 			mp->b_wptr += adjust;
16451676Sjpk 
16461676Sjpk 			if (af == AF_INET) {
16471676Sjpk 				ipha = (ipha_t *)mp->b_rptr;
16481676Sjpk 				iplen = ntohs(ipha->ipha_length) + adjust;
16491676Sjpk 				ipha->ipha_length = htons(iplen);
16501676Sjpk 				ipha->ipha_hdr_checksum = 0;
16511676Sjpk 				ipha->ipha_hdr_checksum = ip_csum_hdr(ipha);
16521676Sjpk 			}
16531676Sjpk 			DTRACE_PROBE3(tx__ip__log__info__forward__adjust,
16541676Sjpk 			    char *,
16551676Sjpk 			    "mp(1) adjusted(2) for CIPSO option removal",
16561676Sjpk 			    mblk_t *, mp, int, adjust);
16571676Sjpk 		}
16581676Sjpk 		goto keep_label;
16591676Sjpk 	}
16601676Sjpk 
16611676Sjpk 	ASSERT(label_type == OPT_NONE);
16621676Sjpk 	ASSERT(dst_rhtp != NULL);
16631676Sjpk 
16641676Sjpk 	/*
16651676Sjpk 	 * We need to add CIPSO option if the destination or the next hop
16661676Sjpk 	 * gateway is labeled.  Otherwise, pass the packet as is.
16671676Sjpk 	 */
16681676Sjpk 	if (dst_rhtp->tpc_tp.host_type == UNLABELED &&
16691676Sjpk 	    (!off_link || gw_rhtp->tpc_tp.host_type == UNLABELED))
16701676Sjpk 		goto keep_label;
16711676Sjpk 
16721676Sjpk 	if ((af == AF_INET &&
1673*6596Skp158701 	    tsol_check_label(DB_CRED(mp), &mp, B_FALSE, ipst) != 0) ||
16741676Sjpk 	    (af == AF_INET6 &&
1675*6596Skp158701 	    tsol_check_label_v6(DB_CRED(mp), &mp, B_FALSE, ipst) != 0)) {
16761676Sjpk 		mp = NULL;
16771676Sjpk 		goto keep_label;
16781676Sjpk 	}
16791676Sjpk 
1680*6596Skp158701 	if (af == AF_INET) {
1681*6596Skp158701 		ipha = (ipha_t *)mp->b_rptr;
1682*6596Skp158701 		ipha->ipha_hdr_checksum = 0;
1683*6596Skp158701 		ipha->ipha_hdr_checksum = ip_csum_hdr(ipha);
16841676Sjpk 	}
16851676Sjpk 
16861676Sjpk keep_label:
16871676Sjpk 	TPC_RELE(dst_rhtp);
16882535Ssangeeta 	if (need_tpc_rele && gw_rhtp != NULL)
16892535Ssangeeta 		TPC_RELE(gw_rhtp);
16901676Sjpk 	return (mp);
16911676Sjpk }
16921676Sjpk 
16931676Sjpk /*
16944564Swy83408  * Name:	tsol_pmtu_adjust()
16954564Swy83408  *
16964564Swy83408  * Returns the adjusted mtu after removing security option.
16974564Swy83408  * Removes/subtracts the option if the packet's cred indicates an unlabeled
16984564Swy83408  * sender or if pkt_diff indicates this system enlarged the packet.
16994564Swy83408  */
17004564Swy83408 uint32_t
17014564Swy83408 tsol_pmtu_adjust(mblk_t *mp, uint32_t mtu, int pkt_diff, int af)
17024564Swy83408 {
17034564Swy83408 	int		label_adj = 0;
17044564Swy83408 	uint32_t	min_mtu = IP_MIN_MTU;
17054564Swy83408 	tsol_tpc_t	*src_rhtp;
17064564Swy83408 	void		*src;
17074564Swy83408 
17084564Swy83408 	/*
17094564Swy83408 	 * Note: label_adj is non-positive, indicating the number of
17104564Swy83408 	 * bytes removed by removing the security option from the
17114564Swy83408 	 * header.
17124564Swy83408 	 */
17134564Swy83408 	if (af == AF_INET6) {
17144564Swy83408 		ip6_t	*ip6h;
17154564Swy83408 
17164564Swy83408 		min_mtu = IPV6_MIN_MTU;
17174564Swy83408 		ip6h = (ip6_t *)mp->b_rptr;
17184564Swy83408 		src = &ip6h->ip6_src;
17194564Swy83408 		if ((src_rhtp = find_tpc(src, IPV6_VERSION, B_FALSE)) == NULL)
17204564Swy83408 			return (mtu);
17214564Swy83408 		if (pkt_diff > 0 || src_rhtp->tpc_tp.host_type == UNLABELED) {
17224564Swy83408 			label_adj = tsol_remove_secopt_v6(
17234564Swy83408 			    (ip6_t *)mp->b_rptr, MBLKL(mp));
17244564Swy83408 		}
17254564Swy83408 	} else {
17264564Swy83408 		ipha_t    *ipha;
17274564Swy83408 
17284564Swy83408 		ASSERT(af == AF_INET);
17294564Swy83408 		ipha = (ipha_t *)mp->b_rptr;
17304564Swy83408 		src = &ipha->ipha_src;
17314564Swy83408 		if ((src_rhtp = find_tpc(src, IPV4_VERSION, B_FALSE)) == NULL)
17324564Swy83408 			return (mtu);
17334564Swy83408 		if (pkt_diff > 0 || src_rhtp->tpc_tp.host_type == UNLABELED)
17344564Swy83408 			label_adj = tsol_remove_secopt(
17354564Swy83408 			    (ipha_t *)mp->b_rptr, MBLKL(mp));
17364564Swy83408 	}
17374564Swy83408 	/*
17384564Swy83408 	 * Make pkt_diff non-negative and the larger of the bytes
17394564Swy83408 	 * previously added (if any) or just removed, since label
17404564Swy83408 	 * addition + subtraction may not be completely idempotent.
17414564Swy83408 	 */
17424564Swy83408 	if (pkt_diff < -label_adj)
17434564Swy83408 		pkt_diff = -label_adj;
17444564Swy83408 	if (pkt_diff > 0 && pkt_diff < mtu)
17454564Swy83408 		mtu -= pkt_diff;
17464564Swy83408 
17474564Swy83408 	TPC_RELE(src_rhtp);
17484564Swy83408 	return (MAX(mtu, min_mtu));
17494564Swy83408 }
17504564Swy83408 
17514564Swy83408 /*
17521676Sjpk  * Name:	tsol_rtsa_init()
17531676Sjpk  *
17541676Sjpk  * Normal:	Sanity checks on the route security attributes provided by
17551676Sjpk  *		user.  Convert it into a route security parameter list to
17561676Sjpk  *		be returned to caller.
17571676Sjpk  *
17581676Sjpk  * Output:	EINVAL if bad security attributes in the routing message
17591676Sjpk  *		ENOMEM if unable to allocate data structures
17601676Sjpk  *		0 otherwise.
17611676Sjpk  *
17621676Sjpk  * Note:	On input, cp must point to the end of any addresses in
17631676Sjpk  *		the rt_msghdr_t structure.
17641676Sjpk  */
17651676Sjpk int
17661676Sjpk tsol_rtsa_init(rt_msghdr_t *rtm, tsol_rtsecattr_t *sp, caddr_t cp)
17671676Sjpk {
17681676Sjpk 	uint_t	sacnt;
17691676Sjpk 	int	err;
17701676Sjpk 	caddr_t	lim;
17711676Sjpk 	tsol_rtsecattr_t *tp;
17721676Sjpk 
17731676Sjpk 	ASSERT((cp >= (caddr_t)&rtm[1]) && sp != NULL);
17741676Sjpk 
17751676Sjpk 	/*
17761676Sjpk 	 * In theory, we could accept as many security attributes configured
17771676Sjpk 	 * per route destination.  However, the current design is limited
17781676Sjpk 	 * such that at most only one set security attributes is allowed to
17791676Sjpk 	 * be associated with a prefix IRE.  We therefore assert for now.
17801676Sjpk 	 */
17811676Sjpk 	/* LINTED */
17821676Sjpk 	ASSERT(TSOL_RTSA_REQUEST_MAX == 1);
17831676Sjpk 
17841676Sjpk 	sp->rtsa_cnt = 0;
17851676Sjpk 	lim = (caddr_t)rtm + rtm->rtm_msglen;
17861676Sjpk 	ASSERT(cp <= lim);
17871676Sjpk 
17881676Sjpk 	if ((lim - cp) < sizeof (rtm_ext_t) ||
17891676Sjpk 	    ((rtm_ext_t *)cp)->rtmex_type != RTMEX_GATEWAY_SECATTR)
17901676Sjpk 		return (0);
17911676Sjpk 
17921676Sjpk 	if (((rtm_ext_t *)cp)->rtmex_len < sizeof (tsol_rtsecattr_t))
17931676Sjpk 		return (EINVAL);
17941676Sjpk 
17951676Sjpk 	cp += sizeof (rtm_ext_t);
17961676Sjpk 
17971676Sjpk 	if ((lim - cp) < sizeof (*tp) ||
17981676Sjpk 	    (tp = (tsol_rtsecattr_t *)cp, (sacnt = tp->rtsa_cnt) == 0) ||
17991676Sjpk 	    (lim - cp) < TSOL_RTSECATTR_SIZE(sacnt))
18001676Sjpk 		return (EINVAL);
18011676Sjpk 
18021676Sjpk 	/*
18031676Sjpk 	 * Trying to add route security attributes when system
18041676Sjpk 	 * labeling service is not available, or when user supllies
18051676Sjpk 	 * more than the maximum number of security attributes
18061676Sjpk 	 * allowed per request.
18071676Sjpk 	 */
18081676Sjpk 	if ((sacnt > 0 && !is_system_labeled()) ||
18091676Sjpk 	    sacnt > TSOL_RTSA_REQUEST_MAX)
18101676Sjpk 		return (EINVAL);
18111676Sjpk 
18121676Sjpk 	/* Ensure valid credentials */
18131676Sjpk 	if ((err = rtsa_validate(&((tsol_rtsecattr_t *)cp)->
18141676Sjpk 	    rtsa_attr[0])) != 0) {
18151676Sjpk 		cp += sizeof (*sp);
18161676Sjpk 		return (err);
18171676Sjpk 	}
18181676Sjpk 
18191676Sjpk 	bcopy(cp, sp, sizeof (*sp));
18201676Sjpk 	cp += sizeof (*sp);
18211676Sjpk 	return (0);
18221676Sjpk }
18231676Sjpk 
18241676Sjpk int
18251676Sjpk tsol_ire_init_gwattr(ire_t *ire, uchar_t ipversion, tsol_gc_t *gc,
18261676Sjpk     tsol_gcgrp_t *gcgrp)
18271676Sjpk {
18281676Sjpk 	tsol_ire_gw_secattr_t *attrp;
18291676Sjpk 	boolean_t exists = B_FALSE;
18301676Sjpk 	in_addr_t ga_addr4;
18311676Sjpk 	void *paddr = NULL;
18321676Sjpk 
18331676Sjpk 	ASSERT(ire != NULL);
18341676Sjpk 
18351676Sjpk 	/*
18361676Sjpk 	 * The only time that attrp can be NULL is when this routine is
18371676Sjpk 	 * called for the first time during the creation/initialization
18381676Sjpk 	 * of the corresponding IRE.  It will only get cleared when the
18391676Sjpk 	 * IRE is deleted.
18401676Sjpk 	 */
18411676Sjpk 	if ((attrp = ire->ire_gw_secattr) == NULL) {
18421676Sjpk 		attrp = ire_gw_secattr_alloc(KM_NOSLEEP);
18431676Sjpk 		if (attrp == NULL)
18441676Sjpk 			return (ENOMEM);
18451676Sjpk 		ire->ire_gw_secattr = attrp;
18461676Sjpk 	} else {
18471676Sjpk 		exists = B_TRUE;
18481676Sjpk 		mutex_enter(&attrp->igsa_lock);
18491676Sjpk 
18501676Sjpk 		if (attrp->igsa_rhc != NULL) {
18511676Sjpk 			TNRHC_RELE(attrp->igsa_rhc);
18521676Sjpk 			attrp->igsa_rhc = NULL;
18531676Sjpk 		}
18541676Sjpk 
18551676Sjpk 		if (attrp->igsa_gc != NULL)
18561676Sjpk 			GC_REFRELE(attrp->igsa_gc);
18571676Sjpk 		if (attrp->igsa_gcgrp != NULL)
18581676Sjpk 			GCGRP_REFRELE(attrp->igsa_gcgrp);
18591676Sjpk 	}
18601676Sjpk 	ASSERT(!exists || MUTEX_HELD(&attrp->igsa_lock));
18611676Sjpk 
18621676Sjpk 	/*
18631676Sjpk 	 * References already held by caller and we keep them;
18641676Sjpk 	 * note that both gc and gcgrp may be set to NULL to
18651676Sjpk 	 * clear out igsa_gc and igsa_gcgrp, respectively.
18661676Sjpk 	 */
18671676Sjpk 	attrp->igsa_gc = gc;
18681676Sjpk 	attrp->igsa_gcgrp = gcgrp;
18691676Sjpk 
18701676Sjpk 	if (gcgrp == NULL && gc != NULL) {
18711676Sjpk 		gcgrp = gc->gc_grp;
18721676Sjpk 		ASSERT(gcgrp != NULL);
18731676Sjpk 	}
18741676Sjpk 
18751676Sjpk 	/*
18761676Sjpk 	 * Intialize the template for gateway; we use the gateway's
18771676Sjpk 	 * address found in either the passed in gateway credential
18781676Sjpk 	 * or group pointer, or the ire_gateway_addr{_v6} field.
18791676Sjpk 	 */
18801676Sjpk 	if (gcgrp != NULL) {
18811676Sjpk 		tsol_gcgrp_addr_t *ga = &gcgrp->gcgrp_addr;
18821676Sjpk 
18831676Sjpk 		/*
18841676Sjpk 		 * Caller is holding a reference, and that we don't
18851676Sjpk 		 * need to hold any lock to access the address.
18861676Sjpk 		 */
18871676Sjpk 		if (ipversion == IPV4_VERSION) {
18881676Sjpk 			ASSERT(ga->ga_af == AF_INET);
18891676Sjpk 			IN6_V4MAPPED_TO_IPADDR(&ga->ga_addr, ga_addr4);
18901676Sjpk 			paddr = &ga_addr4;
18911676Sjpk 		} else {
18921676Sjpk 			ASSERT(ga->ga_af == AF_INET6);
18931676Sjpk 			paddr = &ga->ga_addr;
18941676Sjpk 		}
18951676Sjpk 	} else if (ipversion == IPV6_VERSION &&
18961676Sjpk 	    !IN6_IS_ADDR_UNSPECIFIED(&ire->ire_gateway_addr_v6)) {
18971676Sjpk 		paddr = &ire->ire_gateway_addr_v6;
18981676Sjpk 	} else if (ipversion == IPV4_VERSION &&
18991676Sjpk 	    ire->ire_gateway_addr != INADDR_ANY) {
19001676Sjpk 		paddr = &ire->ire_gateway_addr;
19011676Sjpk 	}
19021676Sjpk 
19031676Sjpk 	/*
19041676Sjpk 	 * Lookup the gateway template; note that we could get an internal
19051676Sjpk 	 * template here, which we cache anyway.  During IRE matching, we'll
19061676Sjpk 	 * try to update this gateway template cache and hopefully get a
19071676Sjpk 	 * real one.
19081676Sjpk 	 */
19091676Sjpk 	if (paddr != NULL) {
19103292Skp158701 		attrp->igsa_rhc = find_rhc(paddr, ipversion, B_FALSE);
19111676Sjpk 	}
19121676Sjpk 
19131676Sjpk 	if (exists)
19141676Sjpk 		mutex_exit(&attrp->igsa_lock);
19151676Sjpk 
19161676Sjpk 	return (0);
19171676Sjpk }
19181676Sjpk 
19191676Sjpk /*
19201676Sjpk  * This function figures the type of MLP that we'll be using based on the
19211676Sjpk  * address that the user is binding and the zone.  If the address is
19221676Sjpk  * unspecified, then we're looking at both private and shared.  If it's one
19231676Sjpk  * of the zone's private addresses, then it's private only.  If it's one
19241676Sjpk  * of the global addresses, then it's shared only.
19251676Sjpk  *
19261676Sjpk  * If we can't figure out what it is, then return mlptSingle.  That's actually
19271676Sjpk  * an error case.
19283448Sdh155122  *
19293448Sdh155122  * The callers are assume to pass in zone->zone_id and not the zoneid that
19303448Sdh155122  * is stored in a conn_t (since the latter will be GLOBAL_ZONEID in an
19313448Sdh155122  * exclusive stack zone).
19321676Sjpk  */
19331676Sjpk mlp_type_t
19343448Sdh155122 tsol_mlp_addr_type(zoneid_t zoneid, uchar_t version, const void *addr,
19353448Sdh155122     ip_stack_t *ipst)
19361676Sjpk {
19371676Sjpk 	in_addr_t in4;
19381676Sjpk 	ire_t *ire;
19391676Sjpk 	ipif_t *ipif;
19401676Sjpk 	zoneid_t addrzone;
19413448Sdh155122 	zoneid_t ip_zoneid;
19421676Sjpk 
19431676Sjpk 	ASSERT(addr != NULL);
19441676Sjpk 
19453448Sdh155122 	/*
19463448Sdh155122 	 * For exclusive stacks we set the zoneid to zero
19473448Sdh155122 	 * to operate as if in the global zone for IRE and conn_t comparisons.
19483448Sdh155122 	 */
19493448Sdh155122 	if (ipst->ips_netstack->netstack_stackid != GLOBAL_NETSTACKID)
19503448Sdh155122 		ip_zoneid = GLOBAL_ZONEID;
19513448Sdh155122 	else
19523448Sdh155122 		ip_zoneid = zoneid;
19533448Sdh155122 
19541676Sjpk 	if (version == IPV6_VERSION &&
19551676Sjpk 	    IN6_IS_ADDR_V4MAPPED((const in6_addr_t *)addr)) {
19561676Sjpk 		IN6_V4MAPPED_TO_IPADDR((const in6_addr_t *)addr, in4);
19571676Sjpk 		addr = &in4;
19581676Sjpk 		version = IPV4_VERSION;
19591676Sjpk 	}
19601676Sjpk 
19611676Sjpk 	if (version == IPV4_VERSION) {
19621676Sjpk 		in4 = *(const in_addr_t *)addr;
19633448Sdh155122 		if (in4 == INADDR_ANY) {
19641676Sjpk 			return (mlptBoth);
19653448Sdh155122 		}
19663448Sdh155122 		ire = ire_cache_lookup(in4, ip_zoneid, NULL, ipst);
19671676Sjpk 	} else {
19683448Sdh155122 		if (IN6_IS_ADDR_UNSPECIFIED((const in6_addr_t *)addr)) {
19691676Sjpk 			return (mlptBoth);
19703448Sdh155122 		}
19713448Sdh155122 		ire = ire_cache_lookup_v6(addr, ip_zoneid, NULL, ipst);
19721676Sjpk 	}
19731676Sjpk 	/*
19741676Sjpk 	 * If we can't find the IRE, then we have to behave exactly like
19751676Sjpk 	 * ip_bind_laddr{,_v6}.  That means looking up the IPIF so that users
19761676Sjpk 	 * can bind to addresses on "down" interfaces.
19771676Sjpk 	 *
19781676Sjpk 	 * If we can't find that either, then the bind is going to fail, so
19791676Sjpk 	 * just give up.  Note that there's a miniscule chance that the address
19801676Sjpk 	 * is in transition, but we don't bother handling that.
19811676Sjpk 	 */
19821676Sjpk 	if (ire == NULL) {
19831676Sjpk 		if (version == IPV4_VERSION)
19841676Sjpk 			ipif = ipif_lookup_addr(*(const in_addr_t *)addr, NULL,
19853448Sdh155122 			    ip_zoneid, NULL, NULL, NULL, NULL, ipst);
19861676Sjpk 		else
19871676Sjpk 			ipif = ipif_lookup_addr_v6((const in6_addr_t *)addr,
19883448Sdh155122 			    NULL, ip_zoneid, NULL, NULL, NULL, NULL, ipst);
19893448Sdh155122 		if (ipif == NULL) {
19901676Sjpk 			return (mlptSingle);
19913448Sdh155122 		}
19921676Sjpk 		addrzone = ipif->ipif_zoneid;
19931676Sjpk 		ipif_refrele(ipif);
19941676Sjpk 	} else {
19951676Sjpk 		addrzone = ire->ire_zoneid;
19961676Sjpk 		ire_refrele(ire);
19971676Sjpk 	}
19981676Sjpk 	return (addrzone == ALL_ZONES ? mlptShared : mlptPrivate);
19991676Sjpk }
20001676Sjpk 
20011676Sjpk /*
20021676Sjpk  * Since we are configuring local interfaces, and we know trusted
20031676Sjpk  * extension CDE requires local interfaces to be cipso host type in
20041676Sjpk  * order to function correctly, we'll associate a cipso template
20051676Sjpk  * to each local interface and let the interface come up.  Configuring
20061676Sjpk  * a local interface to be "unlabeled" host type is a configuration error.
20071676Sjpk  * We'll override that error and make the interface host type to be cipso
20081676Sjpk  * here.
20091676Sjpk  *
20101676Sjpk  * The code is optimized for the usual "success" case and unwinds things on
20111676Sjpk  * error.  We don't want to go to the trouble and expense of formatting the
20121676Sjpk  * interface name for the usual case where everything is configured correctly.
20131676Sjpk  */
20141676Sjpk boolean_t
20151676Sjpk tsol_check_interface_address(const ipif_t *ipif)
20161676Sjpk {
20171676Sjpk 	tsol_tpc_t *tp;
20181676Sjpk 	char addrbuf[INET6_ADDRSTRLEN];
20191676Sjpk 	int af;
20201676Sjpk 	const void *addr;
20211676Sjpk 	zone_t *zone;
20221676Sjpk 	ts_label_t *plabel;
20231676Sjpk 	const bslabel_t *label;
20241676Sjpk 	char ifbuf[LIFNAMSIZ + 10];
20251676Sjpk 	const char *ifname;
20261676Sjpk 	boolean_t retval;
20271676Sjpk 	tsol_rhent_t rhent;
20283448Sdh155122 	netstack_t *ns = ipif->ipif_ill->ill_ipst->ips_netstack;
20291676Sjpk 
20301676Sjpk 	if (IN6_IS_ADDR_V4MAPPED(&ipif->ipif_v6lcl_addr)) {
20311676Sjpk 		af = AF_INET;
20321676Sjpk 		addr = &V4_PART_OF_V6(ipif->ipif_v6lcl_addr);
20331676Sjpk 	} else {
20341676Sjpk 		af = AF_INET6;
20351676Sjpk 		addr = &ipif->ipif_v6lcl_addr;
20361676Sjpk 	}
20371676Sjpk 
20381676Sjpk 	tp = find_tpc(&ipif->ipif_v6lcl_addr, IPV6_VERSION, B_FALSE);
20393448Sdh155122 
20403448Sdh155122 	/* assumes that ALL_ZONES implies that there is no exclusive stack */
20413448Sdh155122 	if (ipif->ipif_zoneid == ALL_ZONES) {
20423448Sdh155122 		zone = NULL;
20433448Sdh155122 	} else if (ns->netstack_stackid == GLOBAL_NETSTACKID) {
20443448Sdh155122 		/* Shared stack case */
20453448Sdh155122 		zone = zone_find_by_id(ipif->ipif_zoneid);
20463448Sdh155122 	} else {
20473448Sdh155122 		/* Exclusive stack case */
20483448Sdh155122 		zone = zone_find_by_id(crgetzoneid(ipif->ipif_ill->ill_credp));
20493448Sdh155122 	}
20501676Sjpk 	if (zone != NULL) {
20511676Sjpk 		plabel = zone->zone_slabel;
20521676Sjpk 		ASSERT(plabel != NULL);
20531676Sjpk 		label = label2bslabel(plabel);
20541676Sjpk 	}
20551676Sjpk 
20561676Sjpk 	/*
20571676Sjpk 	 * If it's CIPSO and an all-zones address, then we're done.
20581676Sjpk 	 * If it's a CIPSO zone specific address, the zone's label
20591676Sjpk 	 * must be in the range or set specified in the template.
20601676Sjpk 	 * When the remote host entry is missing or the template
20611676Sjpk 	 * type is incorrect for this interface, we create a
20621676Sjpk 	 * CIPSO host entry in kernel and allow the interface to be
20631676Sjpk 	 * brought up as CIPSO type.
20641676Sjpk 	 */
20651676Sjpk 	if (tp != NULL && (
20661676Sjpk 	    /* The all-zones case */
20671676Sjpk 	    (tp->tpc_tp.host_type == SUN_CIPSO &&
20681676Sjpk 	    tp->tpc_tp.tp_doi == default_doi &&
20691676Sjpk 	    ipif->ipif_zoneid == ALL_ZONES) ||
20701676Sjpk 	    /* The local-zone case */
20711676Sjpk 	    (zone != NULL && plabel->tsl_doi == tp->tpc_tp.tp_doi &&
20721676Sjpk 	    ((tp->tpc_tp.host_type == SUN_CIPSO &&
20731676Sjpk 	    (_blinrange(label, &tp->tpc_tp.tp_sl_range_cipso) ||
20741676Sjpk 	    blinlset(label, tp->tpc_tp.tp_sl_set_cipso))))))) {
20751676Sjpk 		if (zone != NULL)
20761676Sjpk 			zone_rele(zone);
20771676Sjpk 		TPC_RELE(tp);
20781676Sjpk 		return (B_TRUE);
20791676Sjpk 	}
20801676Sjpk 
20811676Sjpk 	ifname = ipif->ipif_ill->ill_name;
20821676Sjpk 	if (ipif->ipif_id != 0) {
20831676Sjpk 		(void) snprintf(ifbuf, sizeof (ifbuf), "%s:%u", ifname,
20841676Sjpk 		    ipif->ipif_id);
20851676Sjpk 		ifname = ifbuf;
20861676Sjpk 	}
20871676Sjpk 	(void) inet_ntop(af, addr, addrbuf, sizeof (addrbuf));
20881676Sjpk 
20891676Sjpk 	if (tp == NULL) {
20901676Sjpk 		cmn_err(CE_NOTE, "template entry for %s missing. Default to "
20911676Sjpk 		    "CIPSO type for %s", ifname, addrbuf);
20921676Sjpk 		retval = B_TRUE;
20931676Sjpk 	} else if (tp->tpc_tp.host_type == UNLABELED) {
20941676Sjpk 		cmn_err(CE_NOTE, "template type for %s incorrectly configured. "
20951676Sjpk 		    "Change to CIPSO type for %s", ifname, addrbuf);
20961676Sjpk 		retval = B_TRUE;
20971676Sjpk 	} else if (ipif->ipif_zoneid == ALL_ZONES) {
20981676Sjpk 		if (tp->tpc_tp.host_type != SUN_CIPSO) {
20991676Sjpk 			cmn_err(CE_NOTE, "%s failed: %s isn't set to CIPSO for "
21001676Sjpk 			    "all-zones. Converted to CIPSO.", ifname, addrbuf);
21011676Sjpk 			retval = B_TRUE;
21021676Sjpk 		} else {
21031676Sjpk 			cmn_err(CE_NOTE, "%s failed: %s has wrong DOI %d "
21041676Sjpk 			    "instead of %d", ifname, addrbuf,
21051676Sjpk 			    tp->tpc_tp.tp_doi, default_doi);
21061676Sjpk 			retval = B_FALSE;
21071676Sjpk 		}
21081676Sjpk 	} else if (zone == NULL) {
21091676Sjpk 		cmn_err(CE_NOTE, "%s failed: zoneid %d unknown",
21101676Sjpk 		    ifname, ipif->ipif_zoneid);
21111676Sjpk 		retval = B_FALSE;
21121676Sjpk 	} else if (plabel->tsl_doi != tp->tpc_tp.tp_doi) {
21131676Sjpk 		cmn_err(CE_NOTE, "%s failed: zone %s has DOI %d but %s has "
21141676Sjpk 		    "DOI %d", ifname, zone->zone_name, plabel->tsl_doi,
21151676Sjpk 		    addrbuf, tp->tpc_tp.tp_doi);
21161676Sjpk 		retval = B_FALSE;
21171676Sjpk 	} else {
21181676Sjpk 		cmn_err(CE_NOTE, "%s failed: zone %s label incompatible with "
21191676Sjpk 		    "%s", ifname, zone->zone_name, addrbuf);
21201676Sjpk 		tsol_print_label(label, "zone label");
21211676Sjpk 		retval = B_FALSE;
21221676Sjpk 	}
21231676Sjpk 
21241676Sjpk 	if (zone != NULL)
21251676Sjpk 		zone_rele(zone);
21261676Sjpk 	if (tp != NULL)
21271676Sjpk 		TPC_RELE(tp);
21281676Sjpk 	if (retval) {
21291676Sjpk 		/*
21301676Sjpk 		 * we've corrected a config error and let the interface
21311676Sjpk 		 * come up as cipso. Need to insert an rhent.
21321676Sjpk 		 */
21331676Sjpk 		if ((rhent.rh_address.ta_family = af) == AF_INET) {
21341676Sjpk 			rhent.rh_prefix = 32;
21351676Sjpk 			rhent.rh_address.ta_addr_v4 = *(struct in_addr *)addr;
21361676Sjpk 		} else {
21371676Sjpk 			rhent.rh_prefix = 128;
21381676Sjpk 			rhent.rh_address.ta_addr_v6 = *(in6_addr_t *)addr;
21391676Sjpk 		}
21401676Sjpk 		(void) strcpy(rhent.rh_template, "cipso");
21411676Sjpk 		if (tnrh_load(&rhent) != 0) {
21421676Sjpk 			cmn_err(CE_NOTE, "%s failed: Cannot insert CIPSO "
21431676Sjpk 			    "template for local addr %s", ifname, addrbuf);
21441676Sjpk 			retval = B_FALSE;
21451676Sjpk 		}
21461676Sjpk 	}
21471676Sjpk 	return (retval);
21481676Sjpk }
2149