xref: /onnv-gate/usr/src/uts/common/fs/zfs/zfs_acl.c (revision 5824:1d2d522d19b5)
1789Sahrens /*
2789Sahrens  * CDDL HEADER START
3789Sahrens  *
4789Sahrens  * The contents of this file are subject to the terms of the
51544Seschrock  * Common Development and Distribution License (the "License").
61544Seschrock  * You may not use this file except in compliance with the License.
7789Sahrens  *
8789Sahrens  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9789Sahrens  * or http://www.opensolaris.org/os/licensing.
10789Sahrens  * See the License for the specific language governing permissions
11789Sahrens  * and limitations under the License.
12789Sahrens  *
13789Sahrens  * When distributing Covered Code, include this CDDL HEADER in each
14789Sahrens  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15789Sahrens  * If applicable, add the following below this CDDL HEADER, with the
16789Sahrens  * fields enclosed by brackets "[]" replaced with your own identifying
17789Sahrens  * information: Portions Copyright [yyyy] [name of copyright owner]
18789Sahrens  *
19789Sahrens  * CDDL HEADER END
20789Sahrens  */
21789Sahrens /*
225762Smarks  * Copyright 2008 Sun Microsystems, Inc.  All rights reserved.
23789Sahrens  * Use is subject to license terms.
24789Sahrens  */
25789Sahrens 
26789Sahrens #pragma ident	"%Z%%M%	%I%	%E% SMI"
27789Sahrens 
28789Sahrens #include <sys/types.h>
29789Sahrens #include <sys/param.h>
30789Sahrens #include <sys/time.h>
31789Sahrens #include <sys/systm.h>
32789Sahrens #include <sys/sysmacros.h>
33789Sahrens #include <sys/resource.h>
34789Sahrens #include <sys/vfs.h>
35789Sahrens #include <sys/vnode.h>
365331Samw #include <sys/sid.h>
37789Sahrens #include <sys/file.h>
38789Sahrens #include <sys/stat.h>
39789Sahrens #include <sys/kmem.h>
40789Sahrens #include <sys/cmn_err.h>
41789Sahrens #include <sys/errno.h>
42789Sahrens #include <sys/unistd.h>
431576Smarks #include <sys/sdt.h>
44789Sahrens #include <sys/fs/zfs.h>
45789Sahrens #include <sys/mode.h>
46789Sahrens #include <sys/policy.h>
47789Sahrens #include <sys/zfs_znode.h>
485331Samw #include <sys/zfs_fuid.h>
49789Sahrens #include <sys/zfs_acl.h>
50789Sahrens #include <sys/zfs_dir.h>
51789Sahrens #include <sys/zfs_vfsops.h>
52789Sahrens #include <sys/dmu.h>
535331Samw #include <sys/dnode.h>
54789Sahrens #include <sys/zap.h>
55789Sahrens #include "fs/fs_subr.h"
56789Sahrens #include <acl/acl_common.h>
57789Sahrens 
58789Sahrens #define	ALLOW	ACE_ACCESS_ALLOWED_ACE_TYPE
59789Sahrens #define	DENY	ACE_ACCESS_DENIED_ACE_TYPE
605331Samw #define	MAX_ACE_TYPE	ACE_SYSTEM_ALARM_CALLBACK_OBJECT_ACE_TYPE
61789Sahrens 
62789Sahrens #define	OWNING_GROUP		(ACE_GROUP|ACE_IDENTIFIER_GROUP)
63789Sahrens #define	EVERYONE_ALLOW_MASK (ACE_READ_ACL|ACE_READ_ATTRIBUTES | \
64789Sahrens     ACE_READ_NAMED_ATTRS|ACE_SYNCHRONIZE)
65789Sahrens #define	EVERYONE_DENY_MASK (ACE_WRITE_ACL|ACE_WRITE_OWNER | \
66789Sahrens     ACE_WRITE_ATTRIBUTES|ACE_WRITE_NAMED_ATTRS)
67789Sahrens #define	OWNER_ALLOW_MASK (ACE_WRITE_ACL | ACE_WRITE_OWNER | \
68789Sahrens     ACE_WRITE_ATTRIBUTES|ACE_WRITE_NAMED_ATTRS)
695331Samw #define	WRITE_MASK_DATA (ACE_WRITE_DATA|ACE_APPEND_DATA|ACE_WRITE_NAMED_ATTRS)
705331Samw 
715331Samw #define	ZFS_CHECKED_MASKS (ACE_READ_ACL|ACE_READ_ATTRIBUTES|ACE_READ_DATA| \
725331Samw     ACE_READ_NAMED_ATTRS|ACE_WRITE_DATA|ACE_WRITE_ATTRIBUTES| \
735331Samw     ACE_WRITE_NAMED_ATTRS|ACE_APPEND_DATA|ACE_EXECUTE|ACE_WRITE_OWNER| \
745331Samw     ACE_WRITE_ACL|ACE_DELETE|ACE_DELETE_CHILD|ACE_SYNCHRONIZE)
755331Samw 
765331Samw #define	WRITE_MASK (WRITE_MASK_DATA|ACE_WRITE_ATTRIBUTES|ACE_WRITE_ACL|\
775331Samw     ACE_WRITE_OWNER)
78789Sahrens 
79789Sahrens #define	OGE_CLEAR	(ACE_READ_DATA|ACE_LIST_DIRECTORY|ACE_WRITE_DATA| \
80789Sahrens     ACE_ADD_FILE|ACE_APPEND_DATA|ACE_ADD_SUBDIRECTORY|ACE_EXECUTE)
81789Sahrens 
82789Sahrens #define	OKAY_MASK_BITS (ACE_READ_DATA|ACE_LIST_DIRECTORY|ACE_WRITE_DATA| \
83789Sahrens     ACE_ADD_FILE|ACE_APPEND_DATA|ACE_ADD_SUBDIRECTORY|ACE_EXECUTE)
84789Sahrens 
85789Sahrens #define	ALL_INHERIT	(ACE_FILE_INHERIT_ACE|ACE_DIRECTORY_INHERIT_ACE | \
865331Samw     ACE_NO_PROPAGATE_INHERIT_ACE|ACE_INHERIT_ONLY_ACE|ACE_INHERITED_ACE)
87789Sahrens 
881576Smarks #define	SECURE_CLEAR	(ACE_WRITE_ACL|ACE_WRITE_OWNER)
89789Sahrens 
905331Samw #define	V4_ACL_WIDE_FLAGS (ZFS_ACL_AUTO_INHERIT|ZFS_ACL_DEFAULTED|\
915331Samw     ZFS_ACL_PROTECTED)
925331Samw 
935331Samw #define	ZFS_ACL_WIDE_FLAGS (V4_ACL_WIDE_FLAGS|ZFS_ACL_TRIVIAL|ZFS_INHERIT_ACE|\
945331Samw     ZFS_ACL_OBJ_ACE)
955331Samw 
965331Samw static uint16_t
975331Samw zfs_ace_v0_get_type(void *acep)
985331Samw {
995331Samw 	return (((zfs_oldace_t *)acep)->z_type);
1005331Samw }
1015331Samw 
1025331Samw static uint16_t
1035331Samw zfs_ace_v0_get_flags(void *acep)
1045331Samw {
1055331Samw 	return (((zfs_oldace_t *)acep)->z_flags);
1065331Samw }
1075331Samw 
1085331Samw static uint32_t
1095331Samw zfs_ace_v0_get_mask(void *acep)
1105331Samw {
1115331Samw 	return (((zfs_oldace_t *)acep)->z_access_mask);
1125331Samw }
1135331Samw 
1145331Samw static uint64_t
1155331Samw zfs_ace_v0_get_who(void *acep)
1165331Samw {
1175331Samw 	return (((zfs_oldace_t *)acep)->z_fuid);
1185331Samw }
1195331Samw 
1205331Samw static void
1215331Samw zfs_ace_v0_set_type(void *acep, uint16_t type)
1225331Samw {
1235331Samw 	((zfs_oldace_t *)acep)->z_type = type;
1245331Samw }
1255331Samw 
1265331Samw static void
1275331Samw zfs_ace_v0_set_flags(void *acep, uint16_t flags)
1285331Samw {
1295331Samw 	((zfs_oldace_t *)acep)->z_flags = flags;
1305331Samw }
1315331Samw 
1325331Samw static void
1335331Samw zfs_ace_v0_set_mask(void *acep, uint32_t mask)
1345331Samw {
1355331Samw 	((zfs_oldace_t *)acep)->z_access_mask = mask;
1365331Samw }
1375331Samw 
1385331Samw static void
1395331Samw zfs_ace_v0_set_who(void *acep, uint64_t who)
1405331Samw {
1415331Samw 	((zfs_oldace_t *)acep)->z_fuid = who;
1425331Samw }
1435331Samw 
1445331Samw /*ARGSUSED*/
1455331Samw static size_t
1465331Samw zfs_ace_v0_size(void *acep)
1475331Samw {
1485331Samw 	return (sizeof (zfs_oldace_t));
1495331Samw }
1505331Samw 
1515331Samw static size_t
1525331Samw zfs_ace_v0_abstract_size(void)
1535331Samw {
1545331Samw 	return (sizeof (zfs_oldace_t));
1555331Samw }
1565331Samw 
1575331Samw static int
1585331Samw zfs_ace_v0_mask_off(void)
1595331Samw {
1605331Samw 	return (offsetof(zfs_oldace_t, z_access_mask));
1615331Samw }
1625331Samw 
1635331Samw /*ARGSUSED*/
1645331Samw static int
1655331Samw zfs_ace_v0_data(void *acep, void **datap)
1665331Samw {
1675331Samw 	*datap = NULL;
1685331Samw 	return (0);
1695331Samw }
1705331Samw 
1715331Samw static acl_ops_t zfs_acl_v0_ops = {
1725331Samw 	zfs_ace_v0_get_mask,
1735331Samw 	zfs_ace_v0_set_mask,
1745331Samw 	zfs_ace_v0_get_flags,
1755331Samw 	zfs_ace_v0_set_flags,
1765331Samw 	zfs_ace_v0_get_type,
1775331Samw 	zfs_ace_v0_set_type,
1785331Samw 	zfs_ace_v0_get_who,
1795331Samw 	zfs_ace_v0_set_who,
1805331Samw 	zfs_ace_v0_size,
1815331Samw 	zfs_ace_v0_abstract_size,
1825331Samw 	zfs_ace_v0_mask_off,
1835331Samw 	zfs_ace_v0_data
1845331Samw };
1855331Samw 
1865331Samw static uint16_t
1875331Samw zfs_ace_fuid_get_type(void *acep)
1885331Samw {
1895331Samw 	return (((zfs_ace_hdr_t *)acep)->z_type);
1905331Samw }
1915331Samw 
1925331Samw static uint16_t
1935331Samw zfs_ace_fuid_get_flags(void *acep)
1945331Samw {
1955331Samw 	return (((zfs_ace_hdr_t *)acep)->z_flags);
1965331Samw }
1975331Samw 
1985331Samw static uint32_t
1995331Samw zfs_ace_fuid_get_mask(void *acep)
2005331Samw {
2015331Samw 	return (((zfs_ace_hdr_t *)acep)->z_access_mask);
2025331Samw }
2035331Samw 
2045331Samw static uint64_t
2055331Samw zfs_ace_fuid_get_who(void *args)
2065331Samw {
2075331Samw 	uint16_t entry_type;
2085331Samw 	zfs_ace_t *acep = args;
2095331Samw 
2105331Samw 	entry_type = acep->z_hdr.z_flags & ACE_TYPE_FLAGS;
211789Sahrens 
2125331Samw 	if (entry_type == ACE_OWNER || entry_type == OWNING_GROUP ||
2135331Samw 	    entry_type == ACE_EVERYONE)
2145331Samw 		return (-1);
2155331Samw 	return (((zfs_ace_t *)acep)->z_fuid);
2165331Samw }
2175331Samw 
2185331Samw static void
2195331Samw zfs_ace_fuid_set_type(void *acep, uint16_t type)
2205331Samw {
2215331Samw 	((zfs_ace_hdr_t *)acep)->z_type = type;
2225331Samw }
2235331Samw 
2245331Samw static void
2255331Samw zfs_ace_fuid_set_flags(void *acep, uint16_t flags)
2265331Samw {
2275331Samw 	((zfs_ace_hdr_t *)acep)->z_flags = flags;
2285331Samw }
2295331Samw 
2305331Samw static void
2315331Samw zfs_ace_fuid_set_mask(void *acep, uint32_t mask)
2325331Samw {
2335331Samw 	((zfs_ace_hdr_t *)acep)->z_access_mask = mask;
2345331Samw }
2355331Samw 
2365331Samw static void
2375331Samw zfs_ace_fuid_set_who(void *arg, uint64_t who)
2385331Samw {
2395331Samw 	zfs_ace_t *acep = arg;
2405331Samw 
2415331Samw 	uint16_t entry_type = acep->z_hdr.z_flags & ACE_TYPE_FLAGS;
2425331Samw 
2435331Samw 	if (entry_type == ACE_OWNER || entry_type == OWNING_GROUP ||
2445331Samw 	    entry_type == ACE_EVERYONE)
2455331Samw 		return;
2465331Samw 	acep->z_fuid = who;
2475331Samw }
2485331Samw 
2495331Samw static size_t
2505331Samw zfs_ace_fuid_size(void *acep)
2515331Samw {
2525331Samw 	zfs_ace_hdr_t *zacep = acep;
2535331Samw 	uint16_t entry_type;
2545331Samw 
2555331Samw 	switch (zacep->z_type) {
2565331Samw 	case ACE_ACCESS_ALLOWED_OBJECT_ACE_TYPE:
2575331Samw 	case ACE_ACCESS_DENIED_OBJECT_ACE_TYPE:
2585331Samw 	case ACE_SYSTEM_AUDIT_OBJECT_ACE_TYPE:
2595331Samw 	case ACE_SYSTEM_ALARM_OBJECT_ACE_TYPE:
2605331Samw 		return (sizeof (zfs_object_ace_t));
2615331Samw 	case ALLOW:
2625331Samw 	case DENY:
2635331Samw 		entry_type =
2645331Samw 		    (((zfs_ace_hdr_t *)acep)->z_flags & ACE_TYPE_FLAGS);
2655331Samw 		if (entry_type == ACE_OWNER ||
2665331Samw 		    entry_type == (ACE_GROUP | ACE_IDENTIFIER_GROUP) ||
2675331Samw 		    entry_type == ACE_EVERYONE)
2685331Samw 			return (sizeof (zfs_ace_hdr_t));
2695331Samw 		/*FALLTHROUGH*/
2705331Samw 	default:
2715331Samw 		return (sizeof (zfs_ace_t));
2725331Samw 	}
2735331Samw }
2745331Samw 
2755331Samw static size_t
2765331Samw zfs_ace_fuid_abstract_size(void)
2775331Samw {
2785331Samw 	return (sizeof (zfs_ace_hdr_t));
2795331Samw }
2805331Samw 
2815331Samw static int
2825331Samw zfs_ace_fuid_mask_off(void)
2835331Samw {
2845331Samw 	return (offsetof(zfs_ace_hdr_t, z_access_mask));
2855331Samw }
2865331Samw 
2875331Samw static int
2885331Samw zfs_ace_fuid_data(void *acep, void **datap)
2895331Samw {
2905331Samw 	zfs_ace_t *zacep = acep;
2915331Samw 	zfs_object_ace_t *zobjp;
2925331Samw 
2935331Samw 	switch (zacep->z_hdr.z_type) {
2945331Samw 	case ACE_ACCESS_ALLOWED_OBJECT_ACE_TYPE:
2955331Samw 	case ACE_ACCESS_DENIED_OBJECT_ACE_TYPE:
2965331Samw 	case ACE_SYSTEM_AUDIT_OBJECT_ACE_TYPE:
2975331Samw 	case ACE_SYSTEM_ALARM_OBJECT_ACE_TYPE:
2985331Samw 		zobjp = acep;
2995331Samw 		*datap = (caddr_t)zobjp + sizeof (zfs_ace_t);
3005331Samw 		return (sizeof (zfs_object_ace_t) - sizeof (zfs_ace_t));
3015331Samw 	default:
3025331Samw 		*datap = NULL;
3035331Samw 		return (0);
3045331Samw 	}
3055331Samw }
3065331Samw 
3075331Samw static acl_ops_t zfs_acl_fuid_ops = {
3085331Samw 	zfs_ace_fuid_get_mask,
3095331Samw 	zfs_ace_fuid_set_mask,
3105331Samw 	zfs_ace_fuid_get_flags,
3115331Samw 	zfs_ace_fuid_set_flags,
3125331Samw 	zfs_ace_fuid_get_type,
3135331Samw 	zfs_ace_fuid_set_type,
3145331Samw 	zfs_ace_fuid_get_who,
3155331Samw 	zfs_ace_fuid_set_who,
3165331Samw 	zfs_ace_fuid_size,
3175331Samw 	zfs_ace_fuid_abstract_size,
3185331Samw 	zfs_ace_fuid_mask_off,
3195331Samw 	zfs_ace_fuid_data
3205331Samw };
3215331Samw 
3225331Samw static int
3235331Samw zfs_acl_version(int version)
3245331Samw {
3255331Samw 	if (version < ZPL_VERSION_FUID)
3265331Samw 		return (ZFS_ACL_VERSION_INITIAL);
3275331Samw 	else
3285331Samw 		return (ZFS_ACL_VERSION_FUID);
3295331Samw }
3305331Samw 
3315331Samw static int
3325331Samw zfs_acl_version_zp(znode_t *zp)
3335331Samw {
3345331Samw 	return (zfs_acl_version(zp->z_zfsvfs->z_version));
3355331Samw }
336789Sahrens 
337789Sahrens static zfs_acl_t *
3385331Samw zfs_acl_alloc(int vers)
339789Sahrens {
340789Sahrens 	zfs_acl_t *aclp;
341789Sahrens 
342789Sahrens 	aclp = kmem_zalloc(sizeof (zfs_acl_t), KM_SLEEP);
3435331Samw 	list_create(&aclp->z_acl, sizeof (zfs_acl_node_t),
3445331Samw 	    offsetof(zfs_acl_node_t, z_next));
3455331Samw 	aclp->z_version = vers;
3465331Samw 	if (vers == ZFS_ACL_VERSION_FUID)
3475331Samw 		aclp->z_ops = zfs_acl_fuid_ops;
3485331Samw 	else
3495331Samw 		aclp->z_ops = zfs_acl_v0_ops;
3505331Samw 	return (aclp);
3515331Samw }
3525331Samw 
3535331Samw static zfs_acl_node_t *
3545331Samw zfs_acl_node_alloc(size_t bytes)
3555331Samw {
3565331Samw 	zfs_acl_node_t *aclnode;
3575331Samw 
3585331Samw 	aclnode = kmem_zalloc(sizeof (zfs_acl_node_t), KM_SLEEP);
3595331Samw 	if (bytes) {
3605331Samw 		aclnode->z_acldata = kmem_alloc(bytes, KM_SLEEP);
3615331Samw 		aclnode->z_allocdata = aclnode->z_acldata;
3625331Samw 		aclnode->z_allocsize = bytes;
3635331Samw 		aclnode->z_size = bytes;
364789Sahrens 	}
3655331Samw 
3665331Samw 	return (aclnode);
3675331Samw }
3685331Samw 
3695331Samw static void
3705331Samw zfs_acl_node_free(zfs_acl_node_t *aclnode)
3715331Samw {
3725331Samw 	if (aclnode->z_allocsize)
3735331Samw 		kmem_free(aclnode->z_allocdata, aclnode->z_allocsize);
3745331Samw 	kmem_free(aclnode, sizeof (zfs_acl_node_t));
375789Sahrens }
376789Sahrens 
3775489Smarks static void
3785489Smarks zfs_acl_release_nodes(zfs_acl_t *aclp)
379789Sahrens {
3805331Samw 	zfs_acl_node_t *aclnode;
3815331Samw 
3825331Samw 	while (aclnode = list_head(&aclp->z_acl)) {
3835331Samw 		list_remove(&aclp->z_acl, aclnode);
3845331Samw 		zfs_acl_node_free(aclnode);
385789Sahrens 	}
3865489Smarks 	aclp->z_acl_count = 0;
3875489Smarks 	aclp->z_acl_bytes = 0;
3885489Smarks }
3895331Samw 
3905489Smarks void
3915489Smarks zfs_acl_free(zfs_acl_t *aclp)
3925489Smarks {
3935489Smarks 	zfs_acl_release_nodes(aclp);
3945331Samw 	list_destroy(&aclp->z_acl);
395789Sahrens 	kmem_free(aclp, sizeof (zfs_acl_t));
396789Sahrens }
397789Sahrens 
3985331Samw static boolean_t
3995331Samw zfs_ace_valid(vtype_t obj_type, zfs_acl_t *aclp, uint16_t type, uint16_t iflags)
400789Sahrens {
4015331Samw 	/*
4025331Samw 	 * first check type of entry
4035331Samw 	 */
4045331Samw 
4055331Samw 	switch (iflags & ACE_TYPE_FLAGS) {
4065331Samw 	case ACE_OWNER:
4075331Samw 	case (ACE_IDENTIFIER_GROUP | ACE_GROUP):
4085331Samw 	case ACE_IDENTIFIER_GROUP:
4095331Samw 	case ACE_EVERYONE:
4105331Samw 	case 0:	/* User entry */
4115331Samw 		break;
4125331Samw 	default:
4135331Samw 		return (B_FALSE);
4145331Samw 
4155331Samw 	}
4165331Samw 
4175331Samw 	/*
4185331Samw 	 * next check inheritance level flags
4195331Samw 	 */
4205331Samw 
4215331Samw 	if (type != ALLOW && type > MAX_ACE_TYPE) {
4225331Samw 		return (B_FALSE);
4235331Samw 	}
4245331Samw 
4255331Samw 	switch (type) {
4265331Samw 	case ACE_ACCESS_ALLOWED_OBJECT_ACE_TYPE:
4275331Samw 	case ACE_ACCESS_DENIED_OBJECT_ACE_TYPE:
4285331Samw 	case ACE_SYSTEM_AUDIT_OBJECT_ACE_TYPE:
4295331Samw 	case ACE_SYSTEM_ALARM_OBJECT_ACE_TYPE:
4305331Samw 		if (aclp->z_version < ZFS_ACL_VERSION_FUID)
4315331Samw 			return (B_FALSE);
4325331Samw 		aclp->z_hints |= ZFS_ACL_OBJ_ACE;
4335331Samw 	}
434789Sahrens 
4351576Smarks 	/*
4365331Samw 	 * Only directories should have inheritance flags.
4371576Smarks 	 */
4385331Samw 	if (obj_type != VDIR && (iflags &
4395331Samw 	    (ACE_FILE_INHERIT_ACE|ACE_DIRECTORY_INHERIT_ACE|
4405331Samw 	    ACE_INHERIT_ONLY_ACE|ACE_NO_PROPAGATE_INHERIT_ACE))) {
4415331Samw 		return (B_FALSE);
4425331Samw 	}
4435331Samw 
4445331Samw 	if (iflags & (ACE_FILE_INHERIT_ACE|ACE_DIRECTORY_INHERIT_ACE))
4455331Samw 		aclp->z_hints |= ZFS_INHERIT_ACE;
4465331Samw 
4475331Samw 	if (iflags & (ACE_INHERIT_ONLY_ACE|ACE_NO_PROPAGATE_INHERIT_ACE)) {
4485331Samw 		if ((iflags & (ACE_FILE_INHERIT_ACE|
4495331Samw 		    ACE_DIRECTORY_INHERIT_ACE)) == 0) {
4505331Samw 			return (B_FALSE);
4515331Samw 		}
4525331Samw 	}
4535331Samw 
4545331Samw 	return (B_TRUE);
4555331Samw }
4565331Samw 
4575331Samw static void *
4585331Samw zfs_acl_next_ace(zfs_acl_t *aclp, void *start, uint64_t *who,
4595331Samw     uint32_t *access_mask, uint16_t *iflags, uint16_t *type)
4605331Samw {
4615331Samw 	zfs_acl_node_t *aclnode;
4625331Samw 
4635331Samw 	if (start == NULL) {
4645331Samw 		aclnode = list_head(&aclp->z_acl);
4655331Samw 		if (aclnode == NULL)
4665331Samw 			return (NULL);
4675331Samw 
4685331Samw 		aclp->z_next_ace = aclnode->z_acldata;
4695331Samw 		aclp->z_curr_node = aclnode;
4705331Samw 		aclnode->z_ace_idx = 0;
4715331Samw 	}
4725331Samw 
4735331Samw 	aclnode = aclp->z_curr_node;
4745331Samw 
4755331Samw 	if (aclnode == NULL)
4765331Samw 		return (NULL);
4775331Samw 
4785331Samw 	if (aclnode->z_ace_idx >= aclnode->z_ace_count) {
4795331Samw 		aclnode = list_next(&aclp->z_acl, aclnode);
4805331Samw 		if (aclnode == NULL)
4815331Samw 			return (NULL);
4825331Samw 		else {
4835331Samw 			aclp->z_curr_node = aclnode;
4845331Samw 			aclnode->z_ace_idx = 0;
4855331Samw 			aclp->z_next_ace = aclnode->z_acldata;
4865331Samw 		}
4875331Samw 	}
4885331Samw 
4895331Samw 	if (aclnode->z_ace_idx < aclnode->z_ace_count) {
4905331Samw 		void *acep = aclp->z_next_ace;
4915331Samw 		*iflags = aclp->z_ops.ace_flags_get(acep);
4925331Samw 		*type = aclp->z_ops.ace_type_get(acep);
4935331Samw 		*access_mask = aclp->z_ops.ace_mask_get(acep);
4945331Samw 		*who = aclp->z_ops.ace_who_get(acep);
4955331Samw 		aclp->z_next_ace = (caddr_t)aclp->z_next_ace +
4965331Samw 		    aclp->z_ops.ace_size(acep);
4975331Samw 		aclnode->z_ace_idx++;
4985331Samw 		return ((void *)acep);
4995331Samw 	}
5005331Samw 	return (NULL);
5015331Samw }
5025331Samw 
5035331Samw /*ARGSUSED*/
5045331Samw static uint64_t
5055331Samw zfs_ace_walk(void *datap, uint64_t cookie, int aclcnt,
5065331Samw     uint16_t *flags, uint16_t *type, uint32_t *mask)
5075331Samw {
5085331Samw 	zfs_acl_t *aclp = datap;
5095331Samw 	zfs_ace_hdr_t *acep = (zfs_ace_hdr_t *)(uintptr_t)cookie;
5105331Samw 	uint64_t who;
5115331Samw 
5125331Samw 	acep = zfs_acl_next_ace(aclp, acep, &who, mask,
5135331Samw 	    flags, type);
5145331Samw 	return ((uint64_t)(uintptr_t)acep);
5155331Samw }
5165331Samw 
5175331Samw static zfs_acl_node_t *
5185331Samw zfs_acl_curr_node(zfs_acl_t *aclp)
5195331Samw {
5205331Samw 	ASSERT(aclp->z_curr_node);
5215331Samw 	return (aclp->z_curr_node);
5225331Samw }
5235331Samw 
5245331Samw /*
5255331Samw  * Copy ACE to internal ZFS format.
5265331Samw  * While processing the ACL each ACE will be validated for correctness.
5275331Samw  * ACE FUIDs will be created later.
5285331Samw  */
5295331Samw int
5305331Samw zfs_copy_ace_2_fuid(vtype_t obj_type, zfs_acl_t *aclp, void *datap,
5315331Samw     zfs_ace_t *z_acl, int aclcnt, size_t *size)
5325331Samw {
5335331Samw 	int i;
5345331Samw 	uint16_t entry_type;
5355331Samw 	zfs_ace_t *aceptr = z_acl;
5365331Samw 	ace_t *acep = datap;
5375331Samw 	zfs_object_ace_t *zobjacep;
5385331Samw 	ace_object_t *aceobjp;
5395331Samw 
5405331Samw 	for (i = 0; i != aclcnt; i++) {
5415331Samw 		aceptr->z_hdr.z_access_mask = acep->a_access_mask;
5425331Samw 		aceptr->z_hdr.z_flags = acep->a_flags;
5435331Samw 		aceptr->z_hdr.z_type = acep->a_type;
5445331Samw 		entry_type = aceptr->z_hdr.z_flags & ACE_TYPE_FLAGS;
5455331Samw 		if (entry_type != ACE_OWNER && entry_type != OWNING_GROUP &&
546*5824Smarks 		    entry_type != ACE_EVERYONE) {
547*5824Smarks 			if (!aclp->z_has_fuids)
548*5824Smarks 				aclp->z_has_fuids = IS_EPHEMERAL(acep->a_who) ?
549*5824Smarks 				    B_TRUE : B_FALSE;
5505331Samw 			aceptr->z_fuid = (uint64_t)acep->a_who;
551*5824Smarks 		}
552*5824Smarks 
5535331Samw 		/*
5545331Samw 		 * Make sure ACE is valid
5555331Samw 		 */
5565331Samw 		if (zfs_ace_valid(obj_type, aclp, aceptr->z_hdr.z_type,
5575331Samw 		    aceptr->z_hdr.z_flags) != B_TRUE)
5585331Samw 			return (EINVAL);
5595331Samw 
5605331Samw 		switch (acep->a_type) {
5615331Samw 		case ACE_ACCESS_ALLOWED_OBJECT_ACE_TYPE:
5625331Samw 		case ACE_ACCESS_DENIED_OBJECT_ACE_TYPE:
5635331Samw 		case ACE_SYSTEM_AUDIT_OBJECT_ACE_TYPE:
5645331Samw 		case ACE_SYSTEM_ALARM_OBJECT_ACE_TYPE:
5655331Samw 			zobjacep = (zfs_object_ace_t *)aceptr;
5665331Samw 			aceobjp = (ace_object_t *)acep;
5675331Samw 
5685331Samw 			bcopy(aceobjp->a_obj_type, zobjacep->z_object_type,
5695331Samw 			    sizeof (aceobjp->a_obj_type));
5705331Samw 			bcopy(aceobjp->a_inherit_obj_type,
5715331Samw 			    zobjacep->z_inherit_type,
5725331Samw 			    sizeof (aceobjp->a_inherit_obj_type));
5735331Samw 			acep = (ace_t *)((caddr_t)acep + sizeof (ace_object_t));
5745331Samw 			break;
5755331Samw 		default:
5765331Samw 			acep = (ace_t *)((caddr_t)acep + sizeof (ace_t));
5775331Samw 		}
5785331Samw 
5795331Samw 		aceptr = (zfs_ace_t *)((caddr_t)aceptr +
5805331Samw 		    aclp->z_ops.ace_size(aceptr));
5815331Samw 	}
5825331Samw 
5835331Samw 	*size = (caddr_t)aceptr - (caddr_t)z_acl;
584789Sahrens 
5855331Samw 	return (0);
5865331Samw }
5875331Samw 
5885331Samw /*
5895331Samw  * Copy ZFS ACEs to fixed size ace_t layout
5905331Samw  */
5915331Samw static void
5925771Sjp151216 zfs_copy_fuid_2_ace(zfsvfs_t *zfsvfs, zfs_acl_t *aclp, cred_t *cr,
5935771Sjp151216     void *datap, int filter)
5945331Samw {
5955331Samw 	uint64_t who;
5965331Samw 	uint32_t access_mask;
5975331Samw 	uint16_t iflags, type;
5985331Samw 	zfs_ace_hdr_t *zacep = NULL;
5995331Samw 	ace_t *acep = datap;
6005331Samw 	ace_object_t *objacep;
6015331Samw 	zfs_object_ace_t *zobjacep;
6025331Samw 	zfs_fuid_hdl_t hdl = { 0 };
6035331Samw 	size_t ace_size;
6045331Samw 	uint16_t entry_type;
6055331Samw 
6065331Samw 	while (zacep = zfs_acl_next_ace(aclp, zacep,
6075331Samw 	    &who, &access_mask, &iflags, &type)) {
6085331Samw 
6095331Samw 		switch (type) {
6105331Samw 		case ACE_ACCESS_ALLOWED_OBJECT_ACE_TYPE:
6115331Samw 		case ACE_ACCESS_DENIED_OBJECT_ACE_TYPE:
6125331Samw 		case ACE_SYSTEM_AUDIT_OBJECT_ACE_TYPE:
6135331Samw 		case ACE_SYSTEM_ALARM_OBJECT_ACE_TYPE:
6145331Samw 			if (filter) {
6155331Samw 				continue;
6165331Samw 			}
6175331Samw 			zobjacep = (zfs_object_ace_t *)zacep;
6185331Samw 			objacep = (ace_object_t *)acep;
6195331Samw 			bcopy(zobjacep->z_object_type,
6205331Samw 			    objacep->a_obj_type,
6215331Samw 			    sizeof (zobjacep->z_object_type));
6225331Samw 			bcopy(zobjacep->z_inherit_type,
6235331Samw 			    objacep->a_inherit_obj_type,
6245331Samw 			    sizeof (zobjacep->z_inherit_type));
6255331Samw 			ace_size = sizeof (ace_object_t);
6265331Samw 			break;
6275331Samw 		default:
6285331Samw 			ace_size = sizeof (ace_t);
6295331Samw 			break;
6305331Samw 		}
6315331Samw 
6325331Samw 		entry_type = (iflags & ACE_TYPE_FLAGS);
6335331Samw 		if ((entry_type != ACE_OWNER &&
6345331Samw 		    entry_type != (ACE_GROUP | ACE_IDENTIFIER_GROUP) &&
6355331Samw 		    entry_type != ACE_EVERYONE))
6365771Sjp151216 			zfs_fuid_queue_map_id(zfsvfs, &hdl, who, cr,
6375331Samw 			    (entry_type & ACE_IDENTIFIER_GROUP) ?
6385331Samw 			    ZFS_ACE_GROUP : ZFS_ACE_USER, &acep->a_who);
6395331Samw 		else
6405331Samw 			acep->a_who = (uid_t)(int64_t)who;
6415331Samw 		acep->a_access_mask = access_mask;
6425331Samw 		acep->a_flags = iflags;
6435331Samw 		acep->a_type = type;
6445331Samw 		acep = (ace_t *)((caddr_t)acep + ace_size);
6455331Samw 	}
6465331Samw 	zfs_fuid_get_mappings(&hdl);
6475331Samw }
6485331Samw 
6495331Samw static int
6505331Samw zfs_copy_ace_2_oldace(vtype_t obj_type, zfs_acl_t *aclp, ace_t *acep,
6515331Samw     zfs_oldace_t *z_acl, int aclcnt, size_t *size)
6525331Samw {
6535331Samw 	int i;
6545331Samw 	zfs_oldace_t *aceptr = z_acl;
6555331Samw 
6565331Samw 	for (i = 0; i != aclcnt; i++, aceptr++) {
6575331Samw 		aceptr->z_access_mask = acep[i].a_access_mask;
6585331Samw 		aceptr->z_type = acep[i].a_type;
6595331Samw 		aceptr->z_flags = acep[i].a_flags;
6605331Samw 		aceptr->z_fuid = acep[i].a_who;
6615331Samw 		/*
6625331Samw 		 * Make sure ACE is valid
6635331Samw 		 */
6645331Samw 		if (zfs_ace_valid(obj_type, aclp, aceptr->z_type,
6655331Samw 		    aceptr->z_flags) != B_TRUE)
6665331Samw 			return (EINVAL);
6675331Samw 	}
6685331Samw 	*size = (caddr_t)aceptr - (caddr_t)z_acl;
6695331Samw 	return (0);
6705331Samw }
6715331Samw 
6725331Samw /*
6735331Samw  * convert old ACL format to new
6745331Samw  */
6755331Samw void
6765331Samw zfs_acl_xform(znode_t *zp, zfs_acl_t *aclp)
6775331Samw {
6785331Samw 	zfs_oldace_t *oldaclp;
6795331Samw 	int i;
6805331Samw 	uint16_t type, iflags;
6815331Samw 	uint32_t access_mask;
6825331Samw 	uint64_t who;
6835331Samw 	void *cookie = NULL;
6845489Smarks 	zfs_acl_node_t *newaclnode;
6855331Samw 
6865331Samw 	ASSERT(aclp->z_version == ZFS_ACL_VERSION_INITIAL);
6875331Samw 	/*
6885331Samw 	 * First create the ACE in a contiguous piece of memory
6895331Samw 	 * for zfs_copy_ace_2_fuid().
6905331Samw 	 *
6915331Samw 	 * We only convert an ACL once, so this won't happen
6925331Samw 	 * everytime.
6935331Samw 	 */
6945331Samw 	oldaclp = kmem_alloc(sizeof (zfs_oldace_t) * aclp->z_acl_count,
6955331Samw 	    KM_SLEEP);
6965331Samw 	i = 0;
6975331Samw 	while (cookie = zfs_acl_next_ace(aclp, cookie, &who,
6985331Samw 	    &access_mask, &iflags, &type)) {
6995331Samw 		oldaclp[i].z_flags = iflags;
7005331Samw 		oldaclp[i].z_type = type;
7015331Samw 		oldaclp[i].z_fuid = who;
7025331Samw 		oldaclp[i++].z_access_mask = access_mask;
7035331Samw 	}
7045331Samw 
7055331Samw 	newaclnode = zfs_acl_node_alloc(aclp->z_acl_count *
7065331Samw 	    sizeof (zfs_object_ace_t));
7075331Samw 	aclp->z_ops = zfs_acl_fuid_ops;
7085331Samw 	VERIFY(zfs_copy_ace_2_fuid(ZTOV(zp)->v_type, aclp, oldaclp,
7095331Samw 	    newaclnode->z_acldata, aclp->z_acl_count,
7105331Samw 	    &newaclnode->z_size) == 0);
7115331Samw 	newaclnode->z_ace_count = aclp->z_acl_count;
7125331Samw 	aclp->z_version = ZFS_ACL_VERSION;
7135331Samw 	kmem_free(oldaclp, aclp->z_acl_count * sizeof (zfs_oldace_t));
7145331Samw 
7155331Samw 	/*
7165331Samw 	 * Release all previous ACL nodes
7175331Samw 	 */
7185331Samw 
7195489Smarks 	zfs_acl_release_nodes(aclp);
7205489Smarks 
7215331Samw 	list_insert_head(&aclp->z_acl, newaclnode);
7225489Smarks 
7235489Smarks 	aclp->z_acl_bytes = newaclnode->z_size;
7245489Smarks 	aclp->z_acl_count = newaclnode->z_ace_count;
7255489Smarks 
726789Sahrens }
727789Sahrens 
728789Sahrens /*
729789Sahrens  * Convert unix access mask to v4 access mask
730789Sahrens  */
731789Sahrens static uint32_t
732789Sahrens zfs_unix_to_v4(uint32_t access_mask)
733789Sahrens {
734789Sahrens 	uint32_t new_mask = 0;
735789Sahrens 
7365331Samw 	if (access_mask & S_IXOTH)
7375331Samw 		new_mask |= ACE_EXECUTE;
7385331Samw 	if (access_mask & S_IWOTH)
7395331Samw 		new_mask |= ACE_WRITE_DATA;
7405331Samw 	if (access_mask & S_IROTH)
741789Sahrens 		new_mask |= ACE_READ_DATA;
742789Sahrens 	return (new_mask);
743789Sahrens }
744789Sahrens 
745789Sahrens static void
7465331Samw zfs_set_ace(zfs_acl_t *aclp, void *acep, uint32_t access_mask,
7475331Samw     uint16_t access_type, uint64_t fuid, uint16_t entry_type)
748789Sahrens {
7495331Samw 	uint16_t type = entry_type & ACE_TYPE_FLAGS;
7505331Samw 
7515331Samw 	aclp->z_ops.ace_mask_set(acep, access_mask);
7525331Samw 	aclp->z_ops.ace_type_set(acep, access_type);
7535331Samw 	aclp->z_ops.ace_flags_set(acep, entry_type);
7545331Samw 	if ((type != ACE_OWNER && type != (ACE_GROUP | ACE_IDENTIFIER_GROUP) &&
7555331Samw 	    type != ACE_EVERYONE))
7565331Samw 		aclp->z_ops.ace_who_set(acep, fuid);
757789Sahrens }
758789Sahrens 
7595331Samw /*
7605331Samw  * Determine mode of file based on ACL.
7615331Samw  * Also, create FUIDs for any User/Group ACEs
7625331Samw  */
763789Sahrens static uint64_t
7645771Sjp151216 zfs_mode_fuid_compute(znode_t *zp, zfs_acl_t *aclp, cred_t *cr,
7655771Sjp151216     zfs_fuid_info_t **fuidp, dmu_tx_t *tx)
766789Sahrens {
7675331Samw 	int		entry_type;
7685331Samw 	mode_t		mode;
7695331Samw 	mode_t		seen = 0;
7705331Samw 	zfs_ace_hdr_t 	*acep = NULL;
7715331Samw 	uint64_t	who;
7725331Samw 	uint16_t	iflags, type;
7735331Samw 	uint32_t	access_mask;
774789Sahrens 
7755331Samw 	mode = (zp->z_phys->zp_mode & (S_IFMT | S_ISUID | S_ISGID | S_ISVTX));
7765331Samw 
7775331Samw 	while (acep = zfs_acl_next_ace(aclp, acep, &who,
7785331Samw 	    &access_mask, &iflags, &type)) {
7794869Smarks 
7804869Smarks 		/*
7814869Smarks 		 * Skip over inherit only ACEs
7824869Smarks 		 */
7835762Smarks 		if (iflags & ACE_INHERIT_ONLY_ACE)
7844869Smarks 			continue;
7854869Smarks 
7865762Smarks 		entry_type = (iflags & ACE_TYPE_FLAGS);
7875762Smarks 
788789Sahrens 		if (entry_type == ACE_OWNER) {
7895331Samw 			if ((access_mask & ACE_READ_DATA) &&
790789Sahrens 			    (!(seen & S_IRUSR))) {
791789Sahrens 				seen |= S_IRUSR;
7925331Samw 				if (type == ALLOW) {
793789Sahrens 					mode |= S_IRUSR;
794789Sahrens 				}
795789Sahrens 			}
7965331Samw 			if ((access_mask & ACE_WRITE_DATA) &&
797789Sahrens 			    (!(seen & S_IWUSR))) {
798789Sahrens 				seen |= S_IWUSR;
7995331Samw 				if (type == ALLOW) {
800789Sahrens 					mode |= S_IWUSR;
801789Sahrens 				}
802789Sahrens 			}
8035331Samw 			if ((access_mask & ACE_EXECUTE) &&
804789Sahrens 			    (!(seen & S_IXUSR))) {
805789Sahrens 				seen |= S_IXUSR;
8065331Samw 				if (type == ALLOW) {
807789Sahrens 					mode |= S_IXUSR;
808789Sahrens 				}
809789Sahrens 			}
810789Sahrens 		} else if (entry_type == OWNING_GROUP) {
8115331Samw 			if ((access_mask & ACE_READ_DATA) &&
812789Sahrens 			    (!(seen & S_IRGRP))) {
813789Sahrens 				seen |= S_IRGRP;
8145331Samw 				if (type == ALLOW) {
815789Sahrens 					mode |= S_IRGRP;
816789Sahrens 				}
817789Sahrens 			}
8185331Samw 			if ((access_mask & ACE_WRITE_DATA) &&
819789Sahrens 			    (!(seen & S_IWGRP))) {
820789Sahrens 				seen |= S_IWGRP;
8215331Samw 				if (type == ALLOW) {
822789Sahrens 					mode |= S_IWGRP;
823789Sahrens 				}
824789Sahrens 			}
8255331Samw 			if ((access_mask & ACE_EXECUTE) &&
826789Sahrens 			    (!(seen & S_IXGRP))) {
827789Sahrens 				seen |= S_IXGRP;
8285331Samw 				if (type == ALLOW) {
829789Sahrens 					mode |= S_IXGRP;
830789Sahrens 				}
831789Sahrens 			}
832789Sahrens 		} else if (entry_type == ACE_EVERYONE) {
8335331Samw 			if ((access_mask & ACE_READ_DATA)) {
834789Sahrens 				if (!(seen & S_IRUSR)) {
835789Sahrens 					seen |= S_IRUSR;
8365331Samw 					if (type == ALLOW) {
837789Sahrens 						mode |= S_IRUSR;
838789Sahrens 					}
839789Sahrens 				}
840789Sahrens 				if (!(seen & S_IRGRP)) {
841789Sahrens 					seen |= S_IRGRP;
8425331Samw 					if (type == ALLOW) {
843789Sahrens 						mode |= S_IRGRP;
844789Sahrens 					}
845789Sahrens 				}
846789Sahrens 				if (!(seen & S_IROTH)) {
847789Sahrens 					seen |= S_IROTH;
8485331Samw 					if (type == ALLOW) {
849789Sahrens 						mode |= S_IROTH;
850789Sahrens 					}
851789Sahrens 				}
852789Sahrens 			}
8535331Samw 			if ((access_mask & ACE_WRITE_DATA)) {
854789Sahrens 				if (!(seen & S_IWUSR)) {
855789Sahrens 					seen |= S_IWUSR;
8565331Samw 					if (type == ALLOW) {
857789Sahrens 						mode |= S_IWUSR;
858789Sahrens 					}
859789Sahrens 				}
860789Sahrens 				if (!(seen & S_IWGRP)) {
861789Sahrens 					seen |= S_IWGRP;
8625331Samw 					if (type == ALLOW) {
863789Sahrens 						mode |= S_IWGRP;
864789Sahrens 					}
865789Sahrens 				}
866789Sahrens 				if (!(seen & S_IWOTH)) {
867789Sahrens 					seen |= S_IWOTH;
8685331Samw 					if (type == ALLOW) {
869789Sahrens 						mode |= S_IWOTH;
870789Sahrens 					}
871789Sahrens 				}
872789Sahrens 			}
8735331Samw 			if ((access_mask & ACE_EXECUTE)) {
874789Sahrens 				if (!(seen & S_IXUSR)) {
875789Sahrens 					seen |= S_IXUSR;
8765331Samw 					if (type == ALLOW) {
877789Sahrens 						mode |= S_IXUSR;
878789Sahrens 					}
879789Sahrens 				}
880789Sahrens 				if (!(seen & S_IXGRP)) {
881789Sahrens 					seen |= S_IXGRP;
8825331Samw 					if (type == ALLOW) {
883789Sahrens 						mode |= S_IXGRP;
884789Sahrens 					}
885789Sahrens 				}
886789Sahrens 				if (!(seen & S_IXOTH)) {
887789Sahrens 					seen |= S_IXOTH;
8885331Samw 					if (type == ALLOW) {
889789Sahrens 						mode |= S_IXOTH;
890789Sahrens 					}
891789Sahrens 				}
892789Sahrens 			}
893789Sahrens 		}
8945331Samw 		/*
8955331Samw 		 * Now handle FUID create for user/group ACEs
8965331Samw 		 */
8975331Samw 		if (entry_type == 0 || entry_type == ACE_IDENTIFIER_GROUP) {
8985331Samw 			aclp->z_ops.ace_who_set(acep,
8995771Sjp151216 			    zfs_fuid_create(zp->z_zfsvfs, who, cr,
9005331Samw 			    entry_type == 0 ? ZFS_ACE_USER : ZFS_ACE_GROUP, tx,
9015331Samw 			    fuidp));
9025331Samw 		}
903789Sahrens 	}
904789Sahrens 	return (mode);
905789Sahrens }
906789Sahrens 
907789Sahrens static zfs_acl_t *
9085331Samw zfs_acl_node_read_internal(znode_t *zp, boolean_t will_modify)
909789Sahrens {
910789Sahrens 	zfs_acl_t	*aclp;
9115331Samw 	zfs_acl_node_t	*aclnode;
912789Sahrens 
9135331Samw 	aclp = zfs_acl_alloc(zp->z_phys->zp_acl.z_acl_version);
9145331Samw 
9155331Samw 	/*
9165331Samw 	 * Version 0 to 1 znode_acl_phys has the size/count fields swapped.
9175331Samw 	 * Version 0 didn't have a size field, only a count.
9185331Samw 	 */
9195331Samw 	if (zp->z_phys->zp_acl.z_acl_version == ZFS_ACL_VERSION_INITIAL) {
9205331Samw 		aclp->z_acl_count = zp->z_phys->zp_acl.z_acl_size;
9215331Samw 		aclp->z_acl_bytes = ZFS_ACL_SIZE(aclp->z_acl_count);
9225331Samw 	} else {
9235331Samw 		aclp->z_acl_count = zp->z_phys->zp_acl.z_acl_count;
9245331Samw 		aclp->z_acl_bytes = zp->z_phys->zp_acl.z_acl_size;
9255331Samw 	}
9265331Samw 
9275331Samw 	aclnode = zfs_acl_node_alloc(will_modify ? aclp->z_acl_bytes : 0);
9285331Samw 	aclnode->z_ace_count = aclp->z_acl_count;
9295331Samw 	if (will_modify) {
9305331Samw 		bcopy(zp->z_phys->zp_acl.z_ace_data, aclnode->z_acldata,
9315331Samw 		    aclp->z_acl_bytes);
9325331Samw 	} else {
9335331Samw 		aclnode->z_size = aclp->z_acl_bytes;
9345331Samw 		aclnode->z_acldata = &zp->z_phys->zp_acl.z_ace_data[0];
9355331Samw 	}
9365331Samw 
9375331Samw 	list_insert_head(&aclp->z_acl, aclnode);
938789Sahrens 
939789Sahrens 	return (aclp);
940789Sahrens }
941789Sahrens 
942789Sahrens /*
943789Sahrens  * Read an external acl object.
944789Sahrens  */
9451544Seschrock static int
9465331Samw zfs_acl_node_read(znode_t *zp, zfs_acl_t **aclpp, boolean_t will_modify)
947789Sahrens {
948789Sahrens 	uint64_t extacl = zp->z_phys->zp_acl.z_acl_extern_obj;
949789Sahrens 	zfs_acl_t	*aclp;
9505331Samw 	size_t		aclsize;
9515331Samw 	size_t		acl_count;
9525331Samw 	zfs_acl_node_t	*aclnode;
9531544Seschrock 	int error;
954789Sahrens 
955789Sahrens 	ASSERT(MUTEX_HELD(&zp->z_acl_lock));
956789Sahrens 
9571544Seschrock 	if (zp->z_phys->zp_acl.z_acl_extern_obj == 0) {
9585331Samw 		*aclpp = zfs_acl_node_read_internal(zp, will_modify);
9591544Seschrock 		return (0);
9601544Seschrock 	}
961789Sahrens 
9625331Samw 	aclp = zfs_acl_alloc(zp->z_phys->zp_acl.z_acl_version);
9635331Samw 	if (zp->z_phys->zp_acl.z_acl_version == ZFS_ACL_VERSION_INITIAL) {
9645331Samw 		zfs_acl_phys_v0_t *zacl0 =
9655331Samw 		    (zfs_acl_phys_v0_t *)&zp->z_phys->zp_acl;
966789Sahrens 
9675331Samw 		aclsize = ZFS_ACL_SIZE(zacl0->z_acl_count);
9685331Samw 		acl_count = zacl0->z_acl_count;
9695331Samw 	} else {
9705331Samw 		aclsize = zp->z_phys->zp_acl.z_acl_size;
9715331Samw 		acl_count = zp->z_phys->zp_acl.z_acl_count;
9725331Samw 		if (aclsize == 0)
9735331Samw 			aclsize = acl_count * sizeof (zfs_ace_t);
9745331Samw 	}
9755331Samw 	aclnode = zfs_acl_node_alloc(aclsize);
9765331Samw 	list_insert_head(&aclp->z_acl, aclnode);
9771544Seschrock 	error = dmu_read(zp->z_zfsvfs->z_os, extacl, 0,
9785331Samw 	    aclsize, aclnode->z_acldata);
9795331Samw 	aclnode->z_ace_count = acl_count;
9805331Samw 	aclp->z_acl_count = acl_count;
9815331Samw 	aclp->z_acl_bytes = aclsize;
9825331Samw 
9831544Seschrock 	if (error != 0) {
9841544Seschrock 		zfs_acl_free(aclp);
9851544Seschrock 		return (error);
9861544Seschrock 	}
987789Sahrens 
9881544Seschrock 	*aclpp = aclp;
9891544Seschrock 	return (0);
990789Sahrens }
991789Sahrens 
992789Sahrens /*
9935331Samw  * common code for setting ACLs.
994789Sahrens  *
995789Sahrens  * This function is called from zfs_mode_update, zfs_perm_init, and zfs_setacl.
996789Sahrens  * zfs_setacl passes a non-NULL inherit pointer (ihp) to indicate that it's
997789Sahrens  * already checked the acl and knows whether to inherit.
998789Sahrens  */
999789Sahrens int
10005771Sjp151216 zfs_aclset_common(znode_t *zp, zfs_acl_t *aclp, cred_t *cr,
10015771Sjp151216     zfs_fuid_info_t **fuidp, dmu_tx_t *tx)
1002789Sahrens {
1003789Sahrens 	int		error;
1004789Sahrens 	znode_phys_t	*zphys = zp->z_phys;
10055331Samw 	zfs_acl_phys_t	*zacl = &zphys->zp_acl;
1006789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
1007789Sahrens 	uint64_t	aoid = zphys->zp_acl.z_acl_extern_obj;
10085331Samw 	uint64_t	off = 0;
10095331Samw 	dmu_object_type_t otype;
10105331Samw 	zfs_acl_node_t	*aclnode;
1011789Sahrens 
1012789Sahrens 	ASSERT(MUTEX_HELD(&zp->z_lock));
1013789Sahrens 	ASSERT(MUTEX_HELD(&zp->z_acl_lock));
1014789Sahrens 
10155331Samw 	dmu_buf_will_dirty(zp->z_dbuf, tx);
1016789Sahrens 
10175771Sjp151216 	zphys->zp_mode = zfs_mode_fuid_compute(zp, aclp, cr, fuidp, tx);
1018789Sahrens 
1019789Sahrens 	/*
10205331Samw 	 * Decide which opbject type to use.  If we are forced to
10215331Samw 	 * use old ACL format than transform ACL into zfs_oldace_t
10225331Samw 	 * layout.
1023789Sahrens 	 */
10245331Samw 	if (!zfsvfs->z_use_fuids) {
10255331Samw 		otype = DMU_OT_OLDACL;
10265331Samw 	} else {
10275331Samw 		if ((aclp->z_version == ZFS_ACL_VERSION_INITIAL) &&
10285331Samw 		    (zfsvfs->z_version >= ZPL_VERSION_FUID))
10295331Samw 			zfs_acl_xform(zp, aclp);
10305331Samw 		ASSERT(aclp->z_version >= ZFS_ACL_VERSION_FUID);
10315331Samw 		otype = DMU_OT_ACL;
10325331Samw 	}
10335331Samw 
10345331Samw 	if (aclp->z_acl_bytes > ZFS_ACE_SPACE) {
10355331Samw 		/*
10365331Samw 		 * If ACL was previously external and we are now
10375331Samw 		 * converting to new ACL format then release old
10385331Samw 		 * ACL object and create a new one.
10395331Samw 		 */
10405331Samw 		if (aoid && aclp->z_version != zacl->z_acl_version) {
10415331Samw 			error = dmu_object_free(zfsvfs->z_os,
10425331Samw 			    zp->z_phys->zp_acl.z_acl_extern_obj, tx);
10435331Samw 			if (error)
10445331Samw 				return (error);
10455331Samw 			aoid = 0;
10465331Samw 		}
1047789Sahrens 		if (aoid == 0) {
1048789Sahrens 			aoid = dmu_object_alloc(zfsvfs->z_os,
10495331Samw 			    otype, aclp->z_acl_bytes,
10505331Samw 			    otype == DMU_OT_ACL ? DMU_OT_SYSACL : DMU_OT_NONE,
10515331Samw 			    otype == DMU_OT_ACL ? DN_MAX_BONUSLEN : 0, tx);
1052789Sahrens 		} else {
1053789Sahrens 			(void) dmu_object_set_blocksize(zfsvfs->z_os, aoid,
10545331Samw 			    aclp->z_acl_bytes, 0, tx);
1055789Sahrens 		}
1056789Sahrens 		zphys->zp_acl.z_acl_extern_obj = aoid;
10575331Samw 		for (aclnode = list_head(&aclp->z_acl); aclnode;
10585331Samw 		    aclnode = list_next(&aclp->z_acl, aclnode)) {
10595331Samw 			if (aclnode->z_ace_count == 0)
10605331Samw 				continue;
10615331Samw 			dmu_write(zfsvfs->z_os, aoid, off,
10625331Samw 			    aclnode->z_size, aclnode->z_acldata, tx);
10635331Samw 			off += aclnode->z_size;
10645331Samw 		}
1065789Sahrens 	} else {
10665331Samw 		void *start = zacl->z_ace_data;
1067789Sahrens 		/*
1068789Sahrens 		 * Migrating back embedded?
1069789Sahrens 		 */
1070789Sahrens 		if (zphys->zp_acl.z_acl_extern_obj) {
1071789Sahrens 			error = dmu_object_free(zfsvfs->z_os,
10724300Smarks 			    zp->z_phys->zp_acl.z_acl_extern_obj, tx);
1073789Sahrens 			if (error)
1074789Sahrens 				return (error);
1075789Sahrens 			zphys->zp_acl.z_acl_extern_obj = 0;
1076789Sahrens 		}
10775331Samw 
10785331Samw 		for (aclnode = list_head(&aclp->z_acl); aclnode;
10795331Samw 		    aclnode = list_next(&aclp->z_acl, aclnode)) {
10805331Samw 			if (aclnode->z_ace_count == 0)
10815331Samw 				continue;
10825331Samw 			bcopy(aclnode->z_acldata, start, aclnode->z_size);
10835331Samw 			start = (caddr_t)start + aclnode->z_size;
10845331Samw 		}
1085789Sahrens 	}
1086905Smarks 
10875331Samw 	/*
10885331Samw 	 * If Old version then swap count/bytes to match old
10895331Samw 	 * layout of znode_acl_phys_t.
10905331Samw 	 */
10915331Samw 	if (aclp->z_version == ZFS_ACL_VERSION_INITIAL) {
10925331Samw 		zphys->zp_acl.z_acl_size = aclp->z_acl_count;
10935331Samw 		zphys->zp_acl.z_acl_count = aclp->z_acl_bytes;
10945331Samw 	} else {
10955331Samw 		zphys->zp_acl.z_acl_size = aclp->z_acl_bytes;
10965331Samw 		zphys->zp_acl.z_acl_count = aclp->z_acl_count;
1097905Smarks 	}
1098789Sahrens 
10995331Samw 	zphys->zp_acl.z_acl_version = aclp->z_version;
11005331Samw 
11015331Samw 	/*
11025331Samw 	 * Replace ACL wide bits, but first clear them.
11035331Samw 	 */
11045331Samw 	zp->z_phys->zp_flags &= ~ZFS_ACL_WIDE_FLAGS;
11055331Samw 
11065331Samw 	zp->z_phys->zp_flags |= aclp->z_hints;
11075331Samw 
11085331Samw 	if (ace_trivial_common(aclp, 0, zfs_ace_walk) == 0)
11095331Samw 		zp->z_phys->zp_flags |= ZFS_ACL_TRIVIAL;
11105331Samw 
1111789Sahrens 	zfs_time_stamper_locked(zp, STATE_CHANGED, tx);
1112789Sahrens 	return (0);
1113789Sahrens }
1114789Sahrens 
1115789Sahrens /*
1116789Sahrens  * Update access mask for prepended ACE
1117789Sahrens  *
1118789Sahrens  * This applies the "groupmask" value for aclmode property.
1119789Sahrens  */
1120789Sahrens static void
11215331Samw zfs_acl_prepend_fixup(zfs_acl_t *aclp, void  *acep, void  *origacep,
11225331Samw     mode_t mode, uint64_t owner)
1123789Sahrens {
1124789Sahrens 	int	rmask, wmask, xmask;
1125789Sahrens 	int	user_ace;
11265331Samw 	uint16_t aceflags;
11275331Samw 	uint32_t origmask, acepmask;
11285331Samw 	uint64_t fuid;
1129789Sahrens 
11305331Samw 	aceflags = aclp->z_ops.ace_flags_get(acep);
11315331Samw 	fuid = aclp->z_ops.ace_who_get(acep);
11325331Samw 	origmask = aclp->z_ops.ace_mask_get(origacep);
11335331Samw 	acepmask = aclp->z_ops.ace_mask_get(acep);
11345331Samw 
11355331Samw 	user_ace = (!(aceflags &
1136789Sahrens 	    (ACE_OWNER|ACE_GROUP|ACE_IDENTIFIER_GROUP)));
1137789Sahrens 
11385331Samw 	if (user_ace && (fuid == owner)) {
1139789Sahrens 		rmask = S_IRUSR;
1140789Sahrens 		wmask = S_IWUSR;
1141789Sahrens 		xmask = S_IXUSR;
1142789Sahrens 	} else {
1143789Sahrens 		rmask = S_IRGRP;
1144789Sahrens 		wmask = S_IWGRP;
1145789Sahrens 		xmask = S_IXGRP;
1146789Sahrens 	}
1147789Sahrens 
11485331Samw 	if (origmask & ACE_READ_DATA) {
11495331Samw 		if (mode & rmask) {
11505331Samw 			acepmask &= ~ACE_READ_DATA;
11515331Samw 		} else {
11525331Samw 			acepmask |= ACE_READ_DATA;
11535331Samw 		}
1154789Sahrens 	}
1155789Sahrens 
11565331Samw 	if (origmask & ACE_WRITE_DATA) {
11575331Samw 		if (mode & wmask) {
11585331Samw 			acepmask &= ~ACE_WRITE_DATA;
11595331Samw 		} else {
11605331Samw 			acepmask |= ACE_WRITE_DATA;
11615331Samw 		}
1162789Sahrens 	}
1163789Sahrens 
11645331Samw 	if (origmask & ACE_APPEND_DATA) {
11655331Samw 		if (mode & wmask) {
11665331Samw 			acepmask &= ~ACE_APPEND_DATA;
11675331Samw 		} else {
11685331Samw 			acepmask |= ACE_APPEND_DATA;
11695331Samw 		}
1170789Sahrens 	}
1171789Sahrens 
11725331Samw 	if (origmask & ACE_EXECUTE) {
11735331Samw 		if (mode & xmask) {
11745331Samw 			acepmask &= ~ACE_EXECUTE;
11755331Samw 		} else {
11765331Samw 			acepmask |= ACE_EXECUTE;
11775331Samw 		}
1178789Sahrens 	}
11795331Samw 	aclp->z_ops.ace_mask_set(acep, acepmask);
1180789Sahrens }
1181789Sahrens 
1182789Sahrens /*
1183789Sahrens  * Apply mode to canonical six ACEs.
1184789Sahrens  */
1185789Sahrens static void
1186789Sahrens zfs_acl_fixup_canonical_six(zfs_acl_t *aclp, mode_t mode)
1187789Sahrens {
11885331Samw 	zfs_acl_node_t *aclnode = list_tail(&aclp->z_acl);
11895331Samw 	void	*acep;
11905331Samw 	int	maskoff = aclp->z_ops.ace_mask_off();
11915331Samw 	size_t abstract_size = aclp->z_ops.ace_abstract_size();
1192789Sahrens 
11935331Samw 	ASSERT(aclnode != NULL);
11945331Samw 
11955331Samw 	acep = (void *)((caddr_t)aclnode->z_acldata +
11965331Samw 	    aclnode->z_size - (abstract_size * 6));
1197789Sahrens 
1198789Sahrens 	/*
1199789Sahrens 	 * Fixup final ACEs to match the mode
1200789Sahrens 	 */
1201789Sahrens 
12025331Samw 	adjust_ace_pair_common(acep, maskoff, abstract_size,
12035331Samw 	    (mode & 0700) >> 6);	/* owner@ */
12045331Samw 
12055331Samw 	acep = (caddr_t)acep + (abstract_size * 2);
12065331Samw 
12075331Samw 	adjust_ace_pair_common(acep, maskoff, abstract_size,
12085331Samw 	    (mode & 0070) >> 3);	/* group@ */
12095331Samw 
12105331Samw 	acep = (caddr_t)acep + (abstract_size * 2);
12115331Samw 	adjust_ace_pair_common(acep, maskoff,
12125331Samw 	    abstract_size, mode);	/* everyone@ */
1213789Sahrens }
1214789Sahrens 
1215789Sahrens 
1216789Sahrens static int
12175331Samw zfs_acl_ace_match(zfs_acl_t *aclp, void *acep, int allow_deny,
12185331Samw     int entry_type, int accessmask)
1219789Sahrens {
12205331Samw 	uint32_t mask = aclp->z_ops.ace_mask_get(acep);
12215331Samw 	uint16_t type = aclp->z_ops.ace_type_get(acep);
12225331Samw 	uint16_t flags = aclp->z_ops.ace_flags_get(acep);
12235331Samw 
12245331Samw 	return (mask == accessmask && type == allow_deny &&
12255331Samw 	    ((flags & ACE_TYPE_FLAGS) == entry_type));
1226789Sahrens }
1227789Sahrens 
1228789Sahrens /*
1229789Sahrens  * Can prepended ACE be reused?
1230789Sahrens  */
1231789Sahrens static int
12325331Samw zfs_reuse_deny(zfs_acl_t *aclp, void *acep, void *prevacep)
1233789Sahrens {
1234789Sahrens 	int okay_masks;
12355331Samw 	uint16_t prevtype;
12365331Samw 	uint16_t prevflags;
12375331Samw 	uint16_t flags;
12385331Samw 	uint32_t mask, prevmask;
1239789Sahrens 
12405331Samw 	if (prevacep == NULL)
1241789Sahrens 		return (B_FALSE);
1242789Sahrens 
12435331Samw 	prevtype = aclp->z_ops.ace_type_get(prevacep);
12445331Samw 	prevflags = aclp->z_ops.ace_flags_get(prevacep);
12455331Samw 	flags = aclp->z_ops.ace_flags_get(acep);
12465331Samw 	mask = aclp->z_ops.ace_mask_get(acep);
12475331Samw 	prevmask = aclp->z_ops.ace_mask_get(prevacep);
12485331Samw 
12495331Samw 	if (prevtype != DENY)
1250789Sahrens 		return (B_FALSE);
1251789Sahrens 
12525331Samw 	if (prevflags != (flags & ACE_IDENTIFIER_GROUP))
1253789Sahrens 		return (B_FALSE);
1254789Sahrens 
12555331Samw 	okay_masks = (mask & OKAY_MASK_BITS);
1256789Sahrens 
12575331Samw 	if (prevmask & ~okay_masks)
1258789Sahrens 		return (B_FALSE);
1259789Sahrens 
1260789Sahrens 	return (B_TRUE);
1261789Sahrens }
1262789Sahrens 
1263789Sahrens 
12645331Samw /*
12655331Samw  * Insert new ACL node into chain of zfs_acl_node_t's
12665331Samw  *
12675331Samw  * This will result in two possible results.
12685331Samw  * 1. If the ACL is currently just a single zfs_acl_node and
12695331Samw  *    we are prepending the entry then current acl node will have
12705331Samw  *    a new node inserted above it.
12715331Samw  *
12725331Samw  * 2. If we are inserting in the middle of current acl node then
12735331Samw  *    the current node will be split in two and new node will be inserted
12745331Samw  *    in between the two split nodes.
12755331Samw  */
12765331Samw static zfs_acl_node_t *
12775331Samw zfs_acl_ace_insert(zfs_acl_t *aclp, void  *acep)
12785331Samw {
12795331Samw 	zfs_acl_node_t 	*newnode;
12805331Samw 	zfs_acl_node_t 	*trailernode = NULL;
12815331Samw 	zfs_acl_node_t 	*currnode = zfs_acl_curr_node(aclp);
12825331Samw 	int		curr_idx = aclp->z_curr_node->z_ace_idx;
12835331Samw 	int		trailer_count;
12845331Samw 	size_t		oldsize;
1285789Sahrens 
12865331Samw 	newnode = zfs_acl_node_alloc(aclp->z_ops.ace_size(acep));
12875331Samw 	newnode->z_ace_count = 1;
12885331Samw 
12895331Samw 	oldsize = currnode->z_size;
12905331Samw 
12915331Samw 	if (curr_idx != 1) {
12925331Samw 		trailernode = zfs_acl_node_alloc(0);
12935331Samw 		trailernode->z_acldata = acep;
12945331Samw 
12955331Samw 		trailer_count = currnode->z_ace_count - curr_idx + 1;
12965331Samw 		currnode->z_ace_count = curr_idx - 1;
12975331Samw 		currnode->z_size = (caddr_t)acep - (caddr_t)currnode->z_acldata;
12985331Samw 		trailernode->z_size = oldsize - currnode->z_size;
12995331Samw 		trailernode->z_ace_count = trailer_count;
1300789Sahrens 	}
1301789Sahrens 
13025331Samw 	aclp->z_acl_count += 1;
13035331Samw 	aclp->z_acl_bytes += aclp->z_ops.ace_size(acep);
1304789Sahrens 
13055331Samw 	if (curr_idx == 1)
13065331Samw 		list_insert_before(&aclp->z_acl, currnode, newnode);
13075331Samw 	else
13085331Samw 		list_insert_after(&aclp->z_acl, currnode, newnode);
13095331Samw 	if (trailernode) {
13105331Samw 		list_insert_after(&aclp->z_acl, newnode, trailernode);
13115331Samw 		aclp->z_curr_node = trailernode;
13125331Samw 		trailernode->z_ace_idx = 1;
1313789Sahrens 	}
1314789Sahrens 
13155331Samw 	return (newnode);
1316789Sahrens }
1317789Sahrens 
1318789Sahrens /*
1319789Sahrens  * Prepend deny ACE
1320789Sahrens  */
13215331Samw static void *
13225331Samw zfs_acl_prepend_deny(znode_t *zp, zfs_acl_t *aclp, void *acep,
1323789Sahrens     mode_t mode)
1324789Sahrens {
13255331Samw 	zfs_acl_node_t *aclnode;
13265331Samw 	void  *newacep;
13275331Samw 	uint64_t fuid;
13285331Samw 	uint16_t flags;
1329789Sahrens 
13305331Samw 	aclnode = zfs_acl_ace_insert(aclp, acep);
13315331Samw 	newacep = aclnode->z_acldata;
13325331Samw 	fuid = aclp->z_ops.ace_who_get(acep);
13335331Samw 	flags = aclp->z_ops.ace_flags_get(acep);
13345331Samw 	zfs_set_ace(aclp, newacep, 0, DENY, fuid, (flags & ACE_TYPE_FLAGS));
13355331Samw 	zfs_acl_prepend_fixup(aclp, newacep, acep, mode, zp->z_phys->zp_uid);
13365331Samw 
13375331Samw 	return (newacep);
1338789Sahrens }
1339789Sahrens 
1340789Sahrens /*
1341789Sahrens  * Split an inherited ACE into inherit_only ACE
1342789Sahrens  * and original ACE with inheritance flags stripped off.
1343789Sahrens  */
1344789Sahrens static void
13455331Samw zfs_acl_split_ace(zfs_acl_t *aclp, zfs_ace_hdr_t *acep)
1346789Sahrens {
13475331Samw 	zfs_acl_node_t *aclnode;
13485435Smarks 	zfs_acl_node_t *currnode;
13495331Samw 	void  *newacep;
13505331Samw 	uint16_t type, flags;
13515331Samw 	uint32_t mask;
13525331Samw 	uint64_t fuid;
1353789Sahrens 
13545331Samw 	type = aclp->z_ops.ace_type_get(acep);
13555331Samw 	flags = aclp->z_ops.ace_flags_get(acep);
13565331Samw 	mask = aclp->z_ops.ace_mask_get(acep);
13575331Samw 	fuid = aclp->z_ops.ace_who_get(acep);
13585331Samw 
13595331Samw 	aclnode = zfs_acl_ace_insert(aclp, acep);
13605331Samw 	newacep = aclnode->z_acldata;
13615331Samw 
13625331Samw 	aclp->z_ops.ace_type_set(newacep, type);
13635331Samw 	aclp->z_ops.ace_flags_set(newacep, flags | ACE_INHERIT_ONLY_ACE);
13645331Samw 	aclp->z_ops.ace_mask_set(newacep, mask);
13655331Samw 	aclp->z_ops.ace_type_set(newacep, type);
13665331Samw 	aclp->z_ops.ace_who_set(newacep, fuid);
13675331Samw 	aclp->z_next_ace = acep;
13685331Samw 	flags &= ~ALL_INHERIT;
13695331Samw 	aclp->z_ops.ace_flags_set(acep, flags);
13705435Smarks 	currnode = zfs_acl_curr_node(aclp);
13715435Smarks 	ASSERT(currnode->z_ace_idx >= 1);
13725331Samw 	currnode->z_ace_idx -= 1;
1373789Sahrens }
1374789Sahrens 
1375789Sahrens /*
1376789Sahrens  * Are ACES started at index i, the canonical six ACES?
1377789Sahrens  */
1378789Sahrens static int
13795331Samw zfs_have_canonical_six(zfs_acl_t *aclp)
1380789Sahrens {
13815331Samw 	void *acep;
13825331Samw 	zfs_acl_node_t *aclnode = list_tail(&aclp->z_acl);
13835331Samw 	int		i = 0;
13845331Samw 	size_t abstract_size = aclp->z_ops.ace_abstract_size();
13855331Samw 
13865331Samw 	ASSERT(aclnode != NULL);
1387789Sahrens 
13885331Samw 	if (aclnode->z_ace_count < 6)
13895331Samw 		return (0);
13905331Samw 
13915331Samw 	acep = (void *)((caddr_t)aclnode->z_acldata +
13925331Samw 	    aclnode->z_size - (aclp->z_ops.ace_abstract_size() * 6));
13935331Samw 
13945331Samw 	if ((zfs_acl_ace_match(aclp, (caddr_t)acep + (abstract_size * i++),
1395789Sahrens 	    DENY, ACE_OWNER, 0) &&
13965331Samw 	    zfs_acl_ace_match(aclp, (caddr_t)acep + (abstract_size * i++),
13975331Samw 	    ALLOW, ACE_OWNER, OWNER_ALLOW_MASK) &&
13985331Samw 	    zfs_acl_ace_match(aclp, (caddr_t)acep + (abstract_size * i++), DENY,
13995331Samw 	    OWNING_GROUP, 0) && zfs_acl_ace_match(aclp, (caddr_t)acep +
14005331Samw 	    (abstract_size * i++),
14015331Samw 	    ALLOW, OWNING_GROUP, 0) &&
14025331Samw 	    zfs_acl_ace_match(aclp, (caddr_t)acep + (abstract_size * i++),
1403789Sahrens 	    DENY, ACE_EVERYONE, EVERYONE_DENY_MASK) &&
14045331Samw 	    zfs_acl_ace_match(aclp, (caddr_t)acep + (abstract_size * i++),
14055331Samw 	    ALLOW, ACE_EVERYONE, EVERYONE_ALLOW_MASK))) {
1406789Sahrens 		return (1);
1407789Sahrens 	} else {
1408789Sahrens 		return (0);
1409789Sahrens 	}
1410789Sahrens }
1411789Sahrens 
14125331Samw 
1413789Sahrens /*
1414789Sahrens  * Apply step 1g, to group entries
1415789Sahrens  *
1416789Sahrens  * Need to deal with corner case where group may have
1417789Sahrens  * greater permissions than owner.  If so then limit
1418789Sahrens  * group permissions, based on what extra permissions
1419789Sahrens  * group has.
1420789Sahrens  */
1421789Sahrens static void
14225331Samw zfs_fixup_group_entries(zfs_acl_t *aclp, void *acep, void *prevacep,
14235331Samw     mode_t mode)
1424789Sahrens {
14255331Samw 	uint32_t prevmask = aclp->z_ops.ace_mask_get(prevacep);
14265331Samw 	uint32_t mask = aclp->z_ops.ace_mask_get(acep);
14275331Samw 	uint16_t prevflags = aclp->z_ops.ace_flags_get(prevacep);
1428789Sahrens 	mode_t extramode = (mode >> 3) & 07;
1429789Sahrens 	mode_t ownermode = (mode >> 6);
1430789Sahrens 
14315331Samw 	if (prevflags & ACE_IDENTIFIER_GROUP) {
1432789Sahrens 
1433789Sahrens 		extramode &= ~ownermode;
1434789Sahrens 
1435789Sahrens 		if (extramode) {
14365331Samw 			if (extramode & S_IROTH) {
14375331Samw 				prevmask &= ~ACE_READ_DATA;
14385331Samw 				mask &= ~ACE_READ_DATA;
1439789Sahrens 			}
14405331Samw 			if (extramode & S_IWOTH) {
14415331Samw 				prevmask &= ~(ACE_WRITE_DATA|ACE_APPEND_DATA);
14425331Samw 				mask &= ~(ACE_WRITE_DATA|ACE_APPEND_DATA);
1443789Sahrens 			}
14445331Samw 			if (extramode & S_IXOTH) {
14455331Samw 				prevmask  &= ~ACE_EXECUTE;
14465331Samw 				mask &= ~ACE_EXECUTE;
1447789Sahrens 			}
1448789Sahrens 		}
1449789Sahrens 	}
14505331Samw 	aclp->z_ops.ace_mask_set(acep, mask);
14515331Samw 	aclp->z_ops.ace_mask_set(prevacep, prevmask);
1452789Sahrens }
1453789Sahrens 
1454789Sahrens /*
1455789Sahrens  * Apply the chmod algorithm as described
1456789Sahrens  * in PSARC/2002/240
1457789Sahrens  */
1458*5824Smarks static void
1459*5824Smarks zfs_acl_chmod(znode_t *zp, uint64_t mode, zfs_acl_t *aclp)
1460789Sahrens {
1461789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
14625331Samw 	void		*acep = NULL, *prevacep = NULL;
14635331Samw 	uint64_t	who;
1464789Sahrens 	int 		i;
1465789Sahrens 	int 		entry_type;
1466789Sahrens 	int 		reuse_deny;
1467789Sahrens 	int 		need_canonical_six = 1;
14685331Samw 	uint16_t	iflags, type;
14695331Samw 	uint32_t	access_mask;
1470789Sahrens 
1471789Sahrens 	ASSERT(MUTEX_HELD(&zp->z_acl_lock));
1472789Sahrens 	ASSERT(MUTEX_HELD(&zp->z_lock));
1473789Sahrens 
14745331Samw 	aclp->z_hints = (zp->z_phys->zp_flags & V4_ACL_WIDE_FLAGS);
14755489Smarks 
14765489Smarks 	/*
14775489Smarks 	 * If discard then just discard all ACL nodes which
14785489Smarks 	 * represent the ACEs.
14795489Smarks 	 *
14805489Smarks 	 * New owner@/group@/everone@ ACEs will be added
14815489Smarks 	 * later.
14825489Smarks 	 */
14835489Smarks 	if (zfsvfs->z_acl_mode == ZFS_ACL_DISCARD)
14845489Smarks 		zfs_acl_release_nodes(aclp);
14855489Smarks 
14865331Samw 	while (acep = zfs_acl_next_ace(aclp, acep, &who, &access_mask,
14875331Samw 	    &iflags, &type)) {
14885331Samw 
14895331Samw 		entry_type = (iflags & ACE_TYPE_FLAGS);
14905331Samw 		iflags = (iflags & ALL_INHERIT);
1491789Sahrens 
14925331Samw 		if ((type != ALLOW && type != DENY) ||
1493905Smarks 		    (iflags & ACE_INHERIT_ONLY_ACE)) {
1494905Smarks 			if (iflags)
14955331Samw 				aclp->z_hints |= ZFS_INHERIT_ACE;
14965331Samw 			switch (type) {
14975331Samw 			case ACE_ACCESS_ALLOWED_OBJECT_ACE_TYPE:
14985331Samw 			case ACE_ACCESS_DENIED_OBJECT_ACE_TYPE:
14995331Samw 			case ACE_SYSTEM_AUDIT_OBJECT_ACE_TYPE:
15005331Samw 			case ACE_SYSTEM_ALARM_OBJECT_ACE_TYPE:
15015331Samw 				aclp->z_hints |= ZFS_ACL_OBJ_ACE;
15025331Samw 				break;
15035331Samw 			}
15045331Samw 			goto nextace;
1505789Sahrens 		}
1506789Sahrens 
1507789Sahrens 		/*
1508789Sahrens 		 * Need to split ace into two?
1509789Sahrens 		 */
1510905Smarks 		if ((iflags & (ACE_FILE_INHERIT_ACE|
1511789Sahrens 		    ACE_DIRECTORY_INHERIT_ACE)) &&
1512905Smarks 		    (!(iflags & ACE_INHERIT_ONLY_ACE))) {
15135331Samw 			zfs_acl_split_ace(aclp, acep);
15145331Samw 			aclp->z_hints |= ZFS_INHERIT_ACE;
15155331Samw 			goto nextace;
1516789Sahrens 		}
1517789Sahrens 
1518789Sahrens 		if (entry_type == ACE_OWNER || entry_type == ACE_EVERYONE ||
1519789Sahrens 		    (entry_type == OWNING_GROUP)) {
15205331Samw 			access_mask &= ~OGE_CLEAR;
15215331Samw 			aclp->z_ops.ace_mask_set(acep, access_mask);
15225331Samw 			goto nextace;
1523789Sahrens 		} else {
15245331Samw 			reuse_deny = B_TRUE;
15255331Samw 			if (type == ALLOW) {
1526789Sahrens 
1527789Sahrens 				/*
1528789Sahrens 				 * Check preceding ACE if any, to see
1529789Sahrens 				 * if we need to prepend a DENY ACE.
1530789Sahrens 				 * This is only applicable when the acl_mode
1531789Sahrens 				 * property == groupmask.
1532789Sahrens 				 */
15332676Seschrock 				if (zfsvfs->z_acl_mode == ZFS_ACL_GROUPMASK) {
1534789Sahrens 
15355331Samw 					reuse_deny = zfs_reuse_deny(aclp, acep,
15365331Samw 					    prevacep);
1537789Sahrens 
1538789Sahrens 					if (reuse_deny == B_FALSE) {
15395331Samw 						prevacep =
15405331Samw 						    zfs_acl_prepend_deny(zp,
15415331Samw 						    aclp, acep, mode);
1542789Sahrens 					} else {
1543789Sahrens 						zfs_acl_prepend_fixup(
15445331Samw 						    aclp, prevacep,
15455331Samw 						    acep, mode,
1546789Sahrens 						    zp->z_phys->zp_uid);
1547789Sahrens 					}
15485331Samw 					zfs_fixup_group_entries(aclp, acep,
15495331Samw 					    prevacep, mode);
15505331Samw 
1551789Sahrens 				}
1552789Sahrens 			}
1553789Sahrens 		}
15545331Samw nextace:
15555331Samw 		prevacep = acep;
1556789Sahrens 	}
1557789Sahrens 
1558789Sahrens 	/*
1559789Sahrens 	 * Check out last six aces, if we have six.
1560789Sahrens 	 */
1561789Sahrens 
1562789Sahrens 	if (aclp->z_acl_count >= 6) {
15635331Samw 		if (zfs_have_canonical_six(aclp)) {
1564789Sahrens 			need_canonical_six = 0;
1565789Sahrens 		}
1566789Sahrens 	}
1567789Sahrens 
1568789Sahrens 	if (need_canonical_six) {
15695331Samw 		size_t abstract_size = aclp->z_ops.ace_abstract_size();
15705331Samw 		void *zacep;
15715331Samw 		zfs_acl_node_t *aclnode =
15725331Samw 		    zfs_acl_node_alloc(abstract_size * 6);
1573789Sahrens 
15745331Samw 		aclnode->z_size = abstract_size * 6;
15755331Samw 		aclnode->z_ace_count = 6;
15765331Samw 		aclp->z_acl_bytes += aclnode->z_size;
15775331Samw 		list_insert_tail(&aclp->z_acl, aclnode);
15785331Samw 
15795331Samw 		zacep = aclnode->z_acldata;
15805331Samw 
15815331Samw 		i = 0;
15825331Samw 		zfs_set_ace(aclp, (caddr_t)zacep + (abstract_size * i++),
15835331Samw 		    0, DENY, -1, ACE_OWNER);
15845331Samw 		zfs_set_ace(aclp, (caddr_t)zacep + (abstract_size * i++),
15855331Samw 		    OWNER_ALLOW_MASK, ALLOW, -1, ACE_OWNER);
15865331Samw 		zfs_set_ace(aclp, (caddr_t)zacep + (abstract_size * i++), 0,
15875331Samw 		    DENY, -1, OWNING_GROUP);
15885331Samw 		zfs_set_ace(aclp, (caddr_t)zacep + (abstract_size * i++), 0,
15895331Samw 		    ALLOW, -1, OWNING_GROUP);
15905331Samw 		zfs_set_ace(aclp, (caddr_t)zacep + (abstract_size * i++),
15915331Samw 		    EVERYONE_DENY_MASK, DENY, -1, ACE_EVERYONE);
15925331Samw 		zfs_set_ace(aclp, (caddr_t)zacep + (abstract_size * i++),
15935331Samw 		    EVERYONE_ALLOW_MASK, ALLOW, -1, ACE_EVERYONE);
1594789Sahrens 		aclp->z_acl_count += 6;
1595789Sahrens 	}
1596789Sahrens 
1597789Sahrens 	zfs_acl_fixup_canonical_six(aclp, mode);
1598789Sahrens }
1599789Sahrens 
1600789Sahrens int
1601*5824Smarks zfs_acl_chmod_setattr(znode_t *zp, zfs_acl_t **aclp, uint64_t mode)
1602789Sahrens {
1603789Sahrens 	int error;
1604789Sahrens 
1605*5824Smarks 	mutex_enter(&zp->z_lock);
1606789Sahrens 	mutex_enter(&zp->z_acl_lock);
1607*5824Smarks 	*aclp = NULL;
1608*5824Smarks 	error = zfs_acl_node_read(zp, aclp, B_TRUE);
16091544Seschrock 	if (error == 0)
1610*5824Smarks 		zfs_acl_chmod(zp, mode, *aclp);
1611789Sahrens 	mutex_exit(&zp->z_acl_lock);
1612*5824Smarks 	mutex_exit(&zp->z_lock);
1613789Sahrens 	return (error);
1614789Sahrens }
1615789Sahrens 
1616789Sahrens /*
1617789Sahrens  * strip off write_owner and write_acl
1618789Sahrens  */
1619789Sahrens static void
16205331Samw zfs_securemode_update(zfsvfs_t *zfsvfs, zfs_acl_t *aclp, void *acep)
1621789Sahrens {
16225331Samw 	uint32_t mask = aclp->z_ops.ace_mask_get(acep);
16235331Samw 
16242676Seschrock 	if ((zfsvfs->z_acl_inherit == ZFS_ACL_SECURE) &&
16255331Samw 	    (aclp->z_ops.ace_type_get(acep) == ALLOW)) {
16265331Samw 		mask &= ~SECURE_CLEAR;
16275331Samw 		aclp->z_ops.ace_mask_set(acep, mask);
16285331Samw 	}
16295331Samw }
16305331Samw 
16315331Samw /*
16325331Samw  * Should ACE be inherited?
16335331Samw  */
16345331Samw static int
16355331Samw zfs_ace_can_use(znode_t *zp, uint16_t acep_flags)
16365331Samw {
16375331Samw 	int vtype = ZTOV(zp)->v_type;
16385331Samw 	int	iflags = (acep_flags & 0xf);
16395331Samw 
16405331Samw 	if ((vtype == VDIR) && (iflags & ACE_DIRECTORY_INHERIT_ACE))
16415331Samw 		return (1);
16425331Samw 	else if (iflags & ACE_FILE_INHERIT_ACE)
16435331Samw 		return (!((vtype == VDIR) &&
16445331Samw 		    (iflags & ACE_NO_PROPAGATE_INHERIT_ACE)));
16455331Samw 	return (0);
1646789Sahrens }
1647789Sahrens 
1648789Sahrens /*
1649789Sahrens  * inherit inheritable ACEs from parent
1650789Sahrens  */
1651789Sahrens static zfs_acl_t *
1652789Sahrens zfs_acl_inherit(znode_t *zp, zfs_acl_t *paclp)
1653789Sahrens {
1654789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
16555331Samw 	void		*pacep;
16565331Samw 	void		*acep, *acep2;
16575331Samw 	zfs_acl_node_t  *aclnode, *aclnode2;
1658789Sahrens 	zfs_acl_t	*aclp = NULL;
16595331Samw 	uint64_t	who;
16605331Samw 	uint32_t	access_mask;
16615331Samw 	uint16_t	iflags, newflags, type;
16625331Samw 	size_t		ace_size;
16635331Samw 	void		*data1, *data2;
16645331Samw 	size_t		data1sz, data2sz;
1665789Sahrens 
16665331Samw 	pacep = NULL;
16675331Samw 	aclp = zfs_acl_alloc(zfs_acl_version_zp(zp));
16682676Seschrock 	if (zfsvfs->z_acl_inherit != ZFS_ACL_DISCARD) {
16695331Samw 		while (pacep = zfs_acl_next_ace(paclp, pacep, &who,
16705331Samw 		    &access_mask, &iflags, &type)) {
1671789Sahrens 
16722676Seschrock 			if (zfsvfs->z_acl_inherit == ZFS_ACL_NOALLOW &&
16735331Samw 			    type == ALLOW)
1674789Sahrens 				continue;
1675789Sahrens 
16765331Samw 			ace_size = aclp->z_ops.ace_size(pacep);
1677789Sahrens 
16785331Samw 			if (zfs_ace_can_use(zp, iflags)) {
16795331Samw 				aclnode =
16805331Samw 				    zfs_acl_node_alloc(ace_size);
1681789Sahrens 
16825331Samw 				list_insert_tail(&aclp->z_acl, aclnode);
16835331Samw 				acep = aclnode->z_acldata;
16845331Samw 				zfs_set_ace(aclp, acep, access_mask, type,
16855331Samw 				    who, iflags|ACE_INHERITED_ACE);
16861576Smarks 
1687789Sahrens 				/*
16885331Samw 				 * Copy special opaque data if any
1689789Sahrens 				 */
16905331Samw 				if ((data1sz = paclp->z_ops.ace_data(pacep,
16915331Samw 				    &data1)) != 0) {
16925331Samw 					VERIFY((data2sz =
16935331Samw 					    aclp->z_ops.ace_data(acep,
16945331Samw 					    &data2)) == data1sz);
16955331Samw 					bcopy(data1, data2, data2sz);
16965331Samw 				}
16975331Samw 				aclp->z_acl_count++;
16985331Samw 				aclnode->z_ace_count++;
16995331Samw 				aclp->z_acl_bytes += aclnode->z_size;
17005331Samw 				newflags = aclp->z_ops.ace_flags_get(acep);
17015331Samw 				if ((iflags &
17021576Smarks 				    ACE_NO_PROPAGATE_INHERIT_ACE) ||
17031576Smarks 				    (ZTOV(zp)->v_type != VDIR)) {
17045331Samw 					newflags &= ~ALL_INHERIT;
17055331Samw 					aclp->z_ops.ace_flags_set(acep,
17065331Samw 					    newflags|ACE_INHERITED_ACE);
17075331Samw 					zfs_securemode_update(zfsvfs,
17085331Samw 					    aclp, acep);
1709789Sahrens 					continue;
1710789Sahrens 				}
1711789Sahrens 
1712789Sahrens 				ASSERT(ZTOV(zp)->v_type == VDIR);
1713789Sahrens 
17145331Samw 				newflags = aclp->z_ops.ace_flags_get(acep);
17155331Samw 				if ((iflags & (ACE_FILE_INHERIT_ACE |
17161576Smarks 				    ACE_DIRECTORY_INHERIT_ACE)) !=
1717865Smarks 				    ACE_FILE_INHERIT_ACE) {
17185331Samw 					aclnode2 = zfs_acl_node_alloc(ace_size);
17195331Samw 					list_insert_tail(&aclp->z_acl,
17205331Samw 					    aclnode2);
17215331Samw 					acep2 = aclnode2->z_acldata;
17225331Samw 					zfs_set_ace(aclp, acep2,
17235331Samw 					    access_mask, type, who,
17245331Samw 					    iflags|ACE_INHERITED_ACE);
17255331Samw 					newflags |= ACE_INHERIT_ONLY_ACE;
17265331Samw 					aclp->z_ops.ace_flags_set(acep,
17275331Samw 					    newflags);
17285331Samw 					newflags &= ~ALL_INHERIT;
17295331Samw 					aclp->z_ops.ace_flags_set(acep2,
17305331Samw 					    newflags|ACE_INHERITED_ACE);
17315331Samw 
17325331Samw 					/*
17335331Samw 					 * Copy special opaque data if any
17345331Samw 					 */
17355331Samw 					if ((data1sz =
17365331Samw 					    aclp->z_ops.ace_data(acep,
17375331Samw 					    &data1)) != 0) {
17385331Samw 						VERIFY((data2sz =
17395331Samw 						    aclp->z_ops.ace_data(acep2,
17405331Samw 						    &data2)) == data1sz);
17415331Samw 						bcopy(data1, data2, data1sz);
17425331Samw 					}
17435331Samw 					aclp->z_acl_count++;
17445331Samw 					aclnode2->z_ace_count++;
17455331Samw 					aclp->z_acl_bytes += aclnode->z_size;
17465331Samw 					zfs_securemode_update(zfsvfs,
17475331Samw 					    aclp, acep2);
1748865Smarks 				} else {
17495331Samw 					newflags |= ACE_INHERIT_ONLY_ACE;
17505331Samw 					aclp->z_ops.ace_flags_set(acep,
17515331Samw 					    newflags|ACE_INHERITED_ACE);
1752865Smarks 				}
17535331Samw 
1754789Sahrens 			}
1755789Sahrens 		}
1756789Sahrens 	}
1757789Sahrens 	return (aclp);
1758789Sahrens }
1759789Sahrens 
1760789Sahrens /*
1761789Sahrens  * Create file system object initial permissions
1762789Sahrens  * including inheritable ACEs.
1763789Sahrens  */
1764789Sahrens void
1765789Sahrens zfs_perm_init(znode_t *zp, znode_t *parent, int flag,
17665331Samw     vattr_t *vap, dmu_tx_t *tx, cred_t *cr,
17675331Samw     zfs_acl_t *setaclp, zfs_fuid_info_t **fuidp)
1768789Sahrens {
1769789Sahrens 	uint64_t	mode;
17705331Samw 	uint64_t	uid;
17715331Samw 	uint64_t	gid;
1772789Sahrens 	int		error;
1773789Sahrens 	int		pull_down;
17745331Samw 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
17755331Samw 	zfs_acl_t	*aclp = NULL;
17765331Samw 	zfs_acl_t	*paclp;
17775331Samw 	xvattr_t	*xvap = (xvattr_t *)vap;
17785331Samw 
17795331Samw 	if (setaclp)
17805331Samw 		aclp = setaclp;
1781789Sahrens 
1782789Sahrens 	mode = MAKEIMODE(vap->va_type, vap->va_mode);
1783789Sahrens 
1784789Sahrens 	/*
1785789Sahrens 	 * Determine uid and gid.
1786789Sahrens 	 */
1787789Sahrens 	if ((flag & (IS_ROOT_NODE | IS_REPLAY)) ||
1788789Sahrens 	    ((flag & IS_XATTR) && (vap->va_type == VDIR))) {
17895771Sjp151216 		uid = zfs_fuid_create(zfsvfs, vap->va_uid, cr,
17905331Samw 		    ZFS_OWNER, tx, fuidp);
17915771Sjp151216 		gid = zfs_fuid_create(zfsvfs, vap->va_gid, cr,
17925331Samw 		    ZFS_GROUP, tx, fuidp);
1793789Sahrens 	} else {
17945331Samw 		uid = zfs_fuid_create_cred(zfsvfs, crgetuid(cr),
17955331Samw 		    ZFS_OWNER, tx, cr, fuidp);
1796789Sahrens 		if ((vap->va_mask & AT_GID) &&
1797789Sahrens 		    ((vap->va_gid == parent->z_phys->zp_gid) ||
1798789Sahrens 		    groupmember(vap->va_gid, cr) ||
17995331Samw 		    secpolicy_vnode_create_gid(cr) == 0)) {
18005331Samw 			gid = zfs_fuid_create_cred(zfsvfs, vap->va_gid,
18015331Samw 			    ZFS_GROUP, tx, cr, fuidp);
18025331Samw 		} else {
1803789Sahrens 			gid = (parent->z_phys->zp_mode & S_ISGID) ?
1804789Sahrens 			    parent->z_phys->zp_gid : crgetgid(cr);
18055331Samw 			gid = zfs_fuid_create_cred(zfsvfs, gid,
18065331Samw 			    ZFS_GROUP, tx, cr, fuidp);
18075331Samw 		}
1808789Sahrens 	}
1809789Sahrens 
1810789Sahrens 	/*
1811789Sahrens 	 * If we're creating a directory, and the parent directory has the
1812789Sahrens 	 * set-GID bit set, set in on the new directory.
1813789Sahrens 	 * Otherwise, if the user is neither privileged nor a member of the
1814789Sahrens 	 * file's new group, clear the file's set-GID bit.
1815789Sahrens 	 */
1816789Sahrens 
1817789Sahrens 	if ((parent->z_phys->zp_mode & S_ISGID) && (vap->va_type == VDIR))
1818789Sahrens 		mode |= S_ISGID;
1819789Sahrens 	else {
1820789Sahrens 		if ((mode & S_ISGID) &&
1821789Sahrens 		    secpolicy_vnode_setids_setgids(cr, gid) != 0)
1822789Sahrens 			mode &= ~S_ISGID;
1823789Sahrens 	}
1824789Sahrens 
1825789Sahrens 	zp->z_phys->zp_uid = uid;
1826789Sahrens 	zp->z_phys->zp_gid = gid;
1827789Sahrens 	zp->z_phys->zp_mode = mode;
1828789Sahrens 
18295331Samw 	if (aclp == NULL) {
18305331Samw 		mutex_enter(&parent->z_lock);
18315331Samw 		pull_down = (parent->z_phys->zp_flags & ZFS_INHERIT_ACE);
18325331Samw 		if (pull_down) {
18335331Samw 			mutex_enter(&parent->z_acl_lock);
18345331Samw 			VERIFY(0 == zfs_acl_node_read(parent, &paclp, B_FALSE));
18355331Samw 			mutex_exit(&parent->z_acl_lock);
18365331Samw 			aclp = zfs_acl_inherit(zp, paclp);
18375331Samw 			zfs_acl_free(paclp);
18385331Samw 		} else {
18395331Samw 			aclp = zfs_acl_alloc(zfs_acl_version_zp(zp));
18405331Samw 		}
18415331Samw 		mutex_exit(&parent->z_lock);
18425331Samw 		mutex_enter(&zp->z_lock);
18435331Samw 		mutex_enter(&zp->z_acl_lock);
1844*5824Smarks 		zfs_acl_chmod(zp, mode, aclp);
1845789Sahrens 	} else {
18465331Samw 		mutex_enter(&zp->z_lock);
18475331Samw 		mutex_enter(&zp->z_acl_lock);
1848789Sahrens 	}
18495331Samw 
18505331Samw 	/* Force auto_inherit on all new directory objects */
18515331Samw 	if (vap->va_type == VDIR)
18525331Samw 		aclp->z_hints |= ZFS_ACL_AUTO_INHERIT;
18535331Samw 
18545771Sjp151216 	error = zfs_aclset_common(zp, aclp, cr, fuidp, tx);
18555331Samw 
18565331Samw 	/* Set optional attributes if any */
18575331Samw 	if (vap->va_mask & AT_XVATTR)
18585331Samw 		zfs_xvattr_set(zp, xvap);
18595331Samw 
1860789Sahrens 	mutex_exit(&zp->z_lock);
1861789Sahrens 	mutex_exit(&zp->z_acl_lock);
1862789Sahrens 	ASSERT3U(error, ==, 0);
1863789Sahrens 
18645331Samw 	if (aclp != setaclp) {
18655331Samw 		zfs_acl_free(aclp);
18665331Samw 	}
1867789Sahrens }
1868789Sahrens 
1869789Sahrens /*
1870789Sahrens  * Retrieve a files ACL
1871789Sahrens  */
1872789Sahrens int
18735331Samw zfs_getacl(znode_t *zp, vsecattr_t *vsecp, boolean_t skipaclchk, cred_t *cr)
1874789Sahrens {
1875789Sahrens 	zfs_acl_t	*aclp;
18765331Samw 	ulong_t		mask;
1877789Sahrens 	int		error;
18785331Samw 	int 		count = 0;
18795331Samw 	int		largeace = 0;
1880789Sahrens 
18815331Samw 	mask = vsecp->vsa_mask & (VSA_ACE | VSA_ACECNT |
18825331Samw 	    VSA_ACE_ACLFLAGS | VSA_ACE_ALLTYPES);
18835331Samw 
18845331Samw 	if (error = zfs_zaccess(zp, ACE_READ_ACL, 0, skipaclchk, cr))
18855331Samw 		return (error);
1886789Sahrens 
1887789Sahrens 	if (mask == 0)
1888789Sahrens 		return (ENOSYS);
1889789Sahrens 
1890789Sahrens 	mutex_enter(&zp->z_acl_lock);
1891789Sahrens 
18925331Samw 	error = zfs_acl_node_read(zp, &aclp, B_FALSE);
18931544Seschrock 	if (error != 0) {
18941544Seschrock 		mutex_exit(&zp->z_acl_lock);
18951544Seschrock 		return (error);
18961544Seschrock 	}
18971544Seschrock 
18985331Samw 	/*
18995331Samw 	 * Scan ACL to determine number of ACEs
19005331Samw 	 */
19015331Samw 	if ((zp->z_phys->zp_flags & ZFS_ACL_OBJ_ACE) &&
19025331Samw 	    !(mask & VSA_ACE_ALLTYPES)) {
19035331Samw 		void *zacep = NULL;
19045331Samw 		uint64_t who;
19055331Samw 		uint32_t access_mask;
19065331Samw 		uint16_t type, iflags;
19075331Samw 
19085331Samw 		while (zacep = zfs_acl_next_ace(aclp, zacep,
19095331Samw 		    &who, &access_mask, &iflags, &type)) {
19105331Samw 			switch (type) {
19115331Samw 			case ACE_ACCESS_ALLOWED_OBJECT_ACE_TYPE:
19125331Samw 			case ACE_ACCESS_DENIED_OBJECT_ACE_TYPE:
19135331Samw 			case ACE_SYSTEM_AUDIT_OBJECT_ACE_TYPE:
19145331Samw 			case ACE_SYSTEM_ALARM_OBJECT_ACE_TYPE:
19155331Samw 				largeace++;
19165331Samw 				continue;
19175331Samw 			default:
19185331Samw 				count++;
19195331Samw 			}
19205331Samw 		}
19215331Samw 		vsecp->vsa_aclcnt = count;
19225331Samw 	} else
19235331Samw 		count = aclp->z_acl_count;
1924789Sahrens 
1925789Sahrens 	if (mask & VSA_ACECNT) {
19265331Samw 		vsecp->vsa_aclcnt = count;
1927789Sahrens 	}
1928789Sahrens 
1929789Sahrens 	if (mask & VSA_ACE) {
19305331Samw 		size_t aclsz;
19315331Samw 
19325331Samw 		zfs_acl_node_t *aclnode = list_head(&aclp->z_acl);
19335331Samw 
19345331Samw 		aclsz = count * sizeof (ace_t) +
19355331Samw 		    sizeof (ace_object_t) * largeace;
19365331Samw 
19375331Samw 		vsecp->vsa_aclentp = kmem_alloc(aclsz, KM_SLEEP);
19385331Samw 		vsecp->vsa_aclentsz = aclsz;
19395331Samw 
19405331Samw 		if (aclp->z_version == ZFS_ACL_VERSION_FUID)
19415771Sjp151216 			zfs_copy_fuid_2_ace(zp->z_zfsvfs, aclp, cr,
19425331Samw 			    vsecp->vsa_aclentp, !(mask & VSA_ACE_ALLTYPES));
19435331Samw 		else {
19445331Samw 			bcopy(aclnode->z_acldata, vsecp->vsa_aclentp,
19455331Samw 			    count * sizeof (ace_t));
19465331Samw 		}
19475331Samw 	}
19485331Samw 	if (mask & VSA_ACE_ACLFLAGS) {
19495331Samw 		vsecp->vsa_aclflags = 0;
19505331Samw 		if (zp->z_phys->zp_flags & ZFS_ACL_DEFAULTED)
19515331Samw 			vsecp->vsa_aclflags |= ACL_DEFAULTED;
19525331Samw 		if (zp->z_phys->zp_flags & ZFS_ACL_PROTECTED)
19535331Samw 			vsecp->vsa_aclflags |= ACL_PROTECTED;
19545331Samw 		if (zp->z_phys->zp_flags & ZFS_ACL_AUTO_INHERIT)
19555331Samw 			vsecp->vsa_aclflags |= ACL_AUTO_INHERIT;
1956789Sahrens 	}
1957789Sahrens 
1958789Sahrens 	mutex_exit(&zp->z_acl_lock);
1959789Sahrens 
1960789Sahrens 	zfs_acl_free(aclp);
1961789Sahrens 
1962789Sahrens 	return (0);
1963789Sahrens }
1964789Sahrens 
19655331Samw int
19665331Samw zfs_vsec_2_aclp(zfsvfs_t *zfsvfs, vtype_t obj_type,
19675331Samw     vsecattr_t *vsecp, zfs_acl_t **zaclp)
19685331Samw {
19695331Samw 	zfs_acl_t *aclp;
19705331Samw 	zfs_acl_node_t *aclnode;
19715331Samw 	int aclcnt = vsecp->vsa_aclcnt;
19725331Samw 	int error;
19735331Samw 
19745331Samw 	if (vsecp->vsa_aclcnt > MAX_ACL_ENTRIES || vsecp->vsa_aclcnt <= 0)
19755331Samw 		return (EINVAL);
19765331Samw 
19775331Samw 	aclp = zfs_acl_alloc(zfs_acl_version(zfsvfs->z_version));
19785331Samw 
19795331Samw 	aclp->z_hints = 0;
19805331Samw 	aclnode = zfs_acl_node_alloc(aclcnt * sizeof (zfs_object_ace_t));
19815331Samw 	if (aclp->z_version == ZFS_ACL_VERSION_INITIAL) {
19825331Samw 		if ((error = zfs_copy_ace_2_oldace(obj_type, aclp,
19835331Samw 		    (ace_t *)vsecp->vsa_aclentp, aclnode->z_acldata,
19845331Samw 		    aclcnt, &aclnode->z_size)) != 0) {
19855331Samw 			zfs_acl_free(aclp);
19865331Samw 			zfs_acl_node_free(aclnode);
19875331Samw 			return (error);
19885331Samw 		}
19895331Samw 	} else {
19905331Samw 		if ((error = zfs_copy_ace_2_fuid(obj_type, aclp,
19915331Samw 		    vsecp->vsa_aclentp, aclnode->z_acldata, aclcnt,
19925331Samw 		    &aclnode->z_size)) != 0) {
19935331Samw 			zfs_acl_free(aclp);
19945331Samw 			zfs_acl_node_free(aclnode);
19955331Samw 			return (error);
19965331Samw 		}
19975331Samw 	}
19985331Samw 	aclp->z_acl_bytes = aclnode->z_size;
19995331Samw 	aclnode->z_ace_count = aclcnt;
20005331Samw 	aclp->z_acl_count = aclcnt;
20015331Samw 	list_insert_head(&aclp->z_acl, aclnode);
20025331Samw 
20035331Samw 	/*
20045331Samw 	 * If flags are being set then add them to z_hints
20055331Samw 	 */
20065331Samw 	if (vsecp->vsa_mask & VSA_ACE_ACLFLAGS) {
20075331Samw 		if (vsecp->vsa_aclflags & ACL_PROTECTED)
20085331Samw 			aclp->z_hints |= ZFS_ACL_PROTECTED;
20095331Samw 		if (vsecp->vsa_aclflags & ACL_DEFAULTED)
20105331Samw 			aclp->z_hints |= ZFS_ACL_DEFAULTED;
20115331Samw 		if (vsecp->vsa_aclflags & ACL_AUTO_INHERIT)
20125331Samw 			aclp->z_hints |= ZFS_ACL_AUTO_INHERIT;
20135331Samw 	}
20145331Samw 
20155331Samw 	*zaclp = aclp;
20165331Samw 
20175331Samw 	return (0);
20185331Samw }
20195331Samw 
2020789Sahrens /*
2021789Sahrens  * Set a files ACL
2022789Sahrens  */
2023789Sahrens int
20245331Samw zfs_setacl(znode_t *zp, vsecattr_t *vsecp, boolean_t skipaclchk, cred_t *cr)
2025789Sahrens {
2026789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
2027789Sahrens 	zilog_t		*zilog = zfsvfs->z_log;
2028789Sahrens 	ulong_t		mask = vsecp->vsa_mask & (VSA_ACE | VSA_ACECNT);
2029789Sahrens 	dmu_tx_t	*tx;
2030789Sahrens 	int		error;
2031789Sahrens 	zfs_acl_t	*aclp;
20325331Samw 	zfs_fuid_info_t	*fuidp = NULL;
2033789Sahrens 
2034789Sahrens 	if (mask == 0)
20354300Smarks 		return (ENOSYS);
2036789Sahrens 
20375331Samw 	if (zp->z_phys->zp_flags & ZFS_IMMUTABLE)
20385331Samw 		return (EPERM);
20395331Samw 
20405331Samw 	if (error = zfs_zaccess(zp, ACE_WRITE_ACL, 0, skipaclchk, cr))
20415331Samw 		return (error);
20425331Samw 
20435331Samw 	error = zfs_vsec_2_aclp(zfsvfs, ZTOV(zp)->v_type, vsecp, &aclp);
20445331Samw 	if (error)
20455331Samw 		return (error);
20465331Samw 
20475331Samw 	/*
20485331Samw 	 * If ACL wide flags aren't being set then preserve any
20495331Samw 	 * existing flags.
20505331Samw 	 */
20515331Samw 	if (!(vsecp->vsa_mask & VSA_ACE_ACLFLAGS)) {
20525331Samw 		aclp->z_hints |= (zp->z_phys->zp_flags & V4_ACL_WIDE_FLAGS);
20535331Samw 	}
2054789Sahrens top:
20555331Samw 	if (error = zfs_zaccess(zp, ACE_WRITE_ACL, 0, skipaclchk, cr)) {
20565331Samw 		zfs_acl_free(aclp);
20575331Samw 		return (error);
2058789Sahrens 	}
2059789Sahrens 
2060789Sahrens 	mutex_enter(&zp->z_lock);
2061789Sahrens 	mutex_enter(&zp->z_acl_lock);
2062789Sahrens 
2063789Sahrens 	tx = dmu_tx_create(zfsvfs->z_os);
2064789Sahrens 	dmu_tx_hold_bonus(tx, zp->z_id);
2065789Sahrens 
2066789Sahrens 	if (zp->z_phys->zp_acl.z_acl_extern_obj) {
20675331Samw 		/* Are we upgrading ACL? */
20685331Samw 		if (zfsvfs->z_version <= ZPL_VERSION_FUID &&
20695331Samw 		    zp->z_phys->zp_acl.z_acl_version ==
20705331Samw 		    ZFS_ACL_VERSION_INITIAL) {
20715331Samw 			dmu_tx_hold_free(tx,
20725331Samw 			    zp->z_phys->zp_acl.z_acl_extern_obj,
20735331Samw 			    0, DMU_OBJECT_END);
20745331Samw 			dmu_tx_hold_write(tx, DMU_NEW_OBJECT,
2075*5824Smarks 			    0, aclp->z_acl_bytes);
20765331Samw 		} else {
20775331Samw 			dmu_tx_hold_write(tx,
20785331Samw 			    zp->z_phys->zp_acl.z_acl_extern_obj,
20795331Samw 			    0, aclp->z_acl_bytes);
20805331Samw 		}
20815331Samw 	} else if (aclp->z_acl_bytes > ZFS_ACE_SPACE) {
20825331Samw 		dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0, aclp->z_acl_bytes);
20835331Samw 	}
2084*5824Smarks 	if (aclp->z_has_fuids) {
2085*5824Smarks 		if (zfsvfs->z_fuid_obj == 0) {
2086*5824Smarks 			dmu_tx_hold_bonus(tx, DMU_NEW_OBJECT);
20875331Samw 			dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0,
2088*5824Smarks 			    FUID_SIZE_ESTIMATE(zfsvfs));
2089*5824Smarks 			dmu_tx_hold_zap(tx, MASTER_NODE_OBJ, FALSE, NULL);
2090*5824Smarks 		} else {
2091*5824Smarks 			dmu_tx_hold_bonus(tx, zfsvfs->z_fuid_obj);
2092*5824Smarks 			dmu_tx_hold_write(tx, zfsvfs->z_fuid_obj, 0,
2093*5824Smarks 			    FUID_SIZE_ESTIMATE(zfsvfs));
2094*5824Smarks 		}
2095789Sahrens 	}
2096789Sahrens 
2097789Sahrens 	error = dmu_tx_assign(tx, zfsvfs->z_assign);
2098789Sahrens 	if (error) {
2099789Sahrens 		mutex_exit(&zp->z_acl_lock);
2100789Sahrens 		mutex_exit(&zp->z_lock);
2101789Sahrens 
2102789Sahrens 		if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) {
21032113Sahrens 			dmu_tx_wait(tx);
21042113Sahrens 			dmu_tx_abort(tx);
2105789Sahrens 			goto top;
2106789Sahrens 		}
21072113Sahrens 		dmu_tx_abort(tx);
21085331Samw 		zfs_acl_free(aclp);
2109789Sahrens 		return (error);
2110789Sahrens 	}
2111789Sahrens 
21125771Sjp151216 	error = zfs_aclset_common(zp, aclp, cr, &fuidp, tx);
2113789Sahrens 	ASSERT(error == 0);
2114789Sahrens 
21155331Samw 	zfs_log_acl(zilog, tx, zp, vsecp, fuidp);
21165331Samw 
21175331Samw 	if (fuidp)
21185331Samw 		zfs_fuid_info_free(fuidp);
2119789Sahrens 	zfs_acl_free(aclp);
2120789Sahrens 	dmu_tx_commit(tx);
2121789Sahrens done:
2122789Sahrens 	mutex_exit(&zp->z_acl_lock);
2123789Sahrens 	mutex_exit(&zp->z_lock);
2124789Sahrens 
2125789Sahrens 	return (error);
2126789Sahrens }
2127789Sahrens 
21285331Samw /*
21295331Samw  * working_mode returns the permissions that were not granted
21305331Samw  */
2131789Sahrens static int
21325331Samw zfs_zaccess_common(znode_t *zp, uint32_t v4_mode, uint32_t *working_mode,
21335331Samw     boolean_t *check_privs, boolean_t skipaclchk, cred_t *cr)
2134789Sahrens {
2135789Sahrens 	zfs_acl_t	*aclp;
2136789Sahrens 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
21371544Seschrock 	int		error;
2138789Sahrens 	int		access_deny = ACCESS_UNDETERMINED;
2139789Sahrens 	uid_t		uid = crgetuid(cr);
21405331Samw 	uint64_t 	who;
21415331Samw 	uint16_t	type, iflags;
21425331Samw 	uint16_t	entry_type;
21435331Samw 	uint32_t	access_mask;
21445331Samw 	zfs_ace_hdr_t	*acep = NULL;
21455331Samw 	boolean_t	checkit;
21465331Samw 	uid_t		fowner;
21475331Samw 	uid_t		gowner;
21485331Samw 
21495331Samw 	/*
21505331Samw 	 * Short circuit empty requests
21515331Samw 	 */
21525331Samw 	if (v4_mode == 0)
21535331Samw 		return (0);
21545331Samw 
21555331Samw 	*check_privs = B_TRUE;
2156789Sahrens 
21572638Sperrin 	if (zfsvfs->z_assign >= TXG_INITIAL) {		/* ZIL replay */
21582638Sperrin 		*working_mode = 0;
21592638Sperrin 		return (0);
21602638Sperrin 	}
2161789Sahrens 
21622638Sperrin 	*working_mode = v4_mode;
2163789Sahrens 
2164789Sahrens 	if ((v4_mode & WRITE_MASK) &&
2165789Sahrens 	    (zp->z_zfsvfs->z_vfs->vfs_flag & VFS_RDONLY) &&
2166789Sahrens 	    (!IS_DEVVP(ZTOV(zp)))) {
21675331Samw 		*check_privs = B_FALSE;
2168789Sahrens 		return (EROFS);
2169789Sahrens 	}
2170789Sahrens 
21715331Samw 	/*
21725331Samw 	 * Only check for READONLY on non-directories.
21735331Samw 	 */
21745331Samw 	if ((v4_mode & WRITE_MASK_DATA) &&
21755331Samw 	    (((ZTOV(zp)->v_type != VDIR) &&
21765331Samw 	    (zp->z_phys->zp_flags & (ZFS_READONLY | ZFS_IMMUTABLE))) ||
21775331Samw 	    (ZTOV(zp)->v_type == VDIR &&
21785331Samw 	    (zp->z_phys->zp_flags & ZFS_IMMUTABLE)))) {
21795331Samw 		*check_privs = B_FALSE;
21805331Samw 		return (EPERM);
21815331Samw 	}
21825331Samw 
21835331Samw 	if ((v4_mode & (ACE_DELETE | ACE_DELETE_CHILD)) &&
21845331Samw 	    (zp->z_phys->zp_flags & ZFS_NOUNLINK)) {
21855331Samw 		*check_privs = B_FALSE;
21865331Samw 		return (EPERM);
21875331Samw 	}
21885331Samw 
21895331Samw 	if (((v4_mode & (ACE_READ_DATA|ACE_EXECUTE)) &&
21905331Samw 	    (zp->z_phys->zp_flags & ZFS_AV_QUARANTINED))) {
21915331Samw 		*check_privs = B_FALSE;
21925331Samw 		return (EACCES);
21935331Samw 	}
21945331Samw 
21955331Samw 	/*
21965331Samw 	 * The caller requested that the ACL check be skipped.  This
21975331Samw 	 * would only happen if the caller checked VOP_ACCESS() with a
21985331Samw 	 * 32 bit ACE mask and already had the appropriate permissions.
21995331Samw 	 */
22005331Samw 	if (skipaclchk) {
22015331Samw 		*working_mode = 0;
22025331Samw 		return (0);
22035331Samw 	}
22045331Samw 
22055771Sjp151216 	zfs_fuid_map_ids(zp, cr, &fowner, &gowner);
22065331Samw 
2207789Sahrens 	mutex_enter(&zp->z_acl_lock);
2208789Sahrens 
22095331Samw 	error = zfs_acl_node_read(zp, &aclp, B_FALSE);
22101544Seschrock 	if (error != 0) {
22111544Seschrock 		mutex_exit(&zp->z_acl_lock);
22121544Seschrock 		return (error);
22131544Seschrock 	}
22141544Seschrock 
22155331Samw 	while (acep = zfs_acl_next_ace(aclp, acep, &who, &access_mask,
22165331Samw 	    &iflags, &type)) {
2217789Sahrens 
22185331Samw 		if (iflags & ACE_INHERIT_ONLY_ACE)
2219789Sahrens 			continue;
2220789Sahrens 
22215331Samw 		entry_type = (iflags & ACE_TYPE_FLAGS);
22225331Samw 
22235331Samw 		checkit = B_FALSE;
22245331Samw 
2225789Sahrens 		switch (entry_type) {
2226789Sahrens 		case ACE_OWNER:
22275331Samw 			if (uid == fowner)
22285331Samw 				checkit = B_TRUE;
2229789Sahrens 			break;
22305331Samw 		case OWNING_GROUP:
22315331Samw 			who = gowner;
22325331Samw 			/*FALLTHROUGH*/
2233789Sahrens 		case ACE_IDENTIFIER_GROUP:
22345331Samw 			checkit = zfs_groupmember(zfsvfs, who, cr);
2235789Sahrens 			break;
2236789Sahrens 		case ACE_EVERYONE:
22375331Samw 			checkit = B_TRUE;
2238789Sahrens 			break;
2239789Sahrens 
2240789Sahrens 		/* USER Entry */
2241789Sahrens 		default:
2242789Sahrens 			if (entry_type == 0) {
22435331Samw 				uid_t newid;
22445331Samw 
22455771Sjp151216 				zfs_fuid_map_id(zfsvfs, who, cr,
22465331Samw 				    ZFS_ACE_USER, &newid);
22475331Samw 				if (newid != IDMAP_WK_CREATOR_OWNER_UID &&
22485331Samw 				    uid == newid)
22495331Samw 					checkit = B_TRUE;
2250789Sahrens 				break;
22515331Samw 			} else {
22525331Samw 				zfs_acl_free(aclp);
22535331Samw 				mutex_exit(&zp->z_acl_lock);
22545331Samw 				return (EIO);
2255789Sahrens 			}
22565331Samw 		}
22575331Samw 
22585331Samw 		if (checkit) {
22595331Samw 			if (access_mask & *working_mode) {
22605331Samw 				if (type == ALLOW) {
22615331Samw 					*working_mode &=
22625331Samw 					    ~(*working_mode & access_mask);
22635331Samw 					if (*working_mode == 0) {
22645331Samw 						access_deny = 0;
22655331Samw 					}
22665331Samw 				} else if (type == DENY) {
22675331Samw 					access_deny = EACCES;
22685331Samw 				}
22695331Samw 			}
2270789Sahrens 		}
2271789Sahrens 
2272789Sahrens 		if (access_deny != ACCESS_UNDETERMINED)
2273789Sahrens 			break;
2274789Sahrens 	}
2275789Sahrens 
2276789Sahrens 	mutex_exit(&zp->z_acl_lock);
2277789Sahrens 	zfs_acl_free(aclp);
22785331Samw out:
2279789Sahrens 	return (access_deny);
2280789Sahrens }
2281789Sahrens 
22825331Samw static int
22835331Samw zfs_zaccess_append(znode_t *zp, uint32_t *working_mode, boolean_t *check_privs,
22845331Samw     cred_t *cr)
22855331Samw {
22865331Samw 	if (*working_mode != ACE_WRITE_DATA)
22875331Samw 		return (EACCES);
22885331Samw 
22895331Samw 	return (zfs_zaccess_common(zp, ACE_APPEND_DATA, working_mode,
22905331Samw 	    check_privs, B_FALSE, cr));
22915331Samw }
2292789Sahrens 
2293789Sahrens /*
2294789Sahrens  * Determine whether Access should be granted/denied, invoking least
2295789Sahrens  * priv subsytem when a deny is determined.
2296789Sahrens  */
2297789Sahrens int
22985331Samw zfs_zaccess(znode_t *zp, int mode, int flags, boolean_t skipaclchk, cred_t *cr)
2299789Sahrens {
23005331Samw 	uint32_t	working_mode;
23015331Samw 	int		error;
23025331Samw 	int		is_attr;
23035331Samw 	zfsvfs_t	*zfsvfs = zp->z_zfsvfs;
23045331Samw 	boolean_t 	check_privs;
23055331Samw 	znode_t		*xzp;
23065331Samw 	znode_t 	*check_zp = zp;
2307789Sahrens 
2308789Sahrens 	is_attr = ((zp->z_phys->zp_flags & ZFS_XATTR) &&
2309789Sahrens 	    (ZTOV(zp)->v_type == VDIR));
2310789Sahrens 
2311789Sahrens 	/*
2312789Sahrens 	 * If attribute then validate against base file
2313789Sahrens 	 */
2314789Sahrens 	if (is_attr) {
2315789Sahrens 		if ((error = zfs_zget(zp->z_zfsvfs,
2316789Sahrens 		    zp->z_phys->zp_parent, &xzp)) != 0)	{
2317789Sahrens 			return (error);
2318789Sahrens 		}
23195331Samw 
2320789Sahrens 		check_zp = xzp;
23215331Samw 
2322789Sahrens 		/*
2323789Sahrens 		 * fixup mode to map to xattr perms
2324789Sahrens 		 */
2325789Sahrens 
2326789Sahrens 		if (mode & (ACE_WRITE_DATA|ACE_APPEND_DATA)) {
2327789Sahrens 			mode &= ~(ACE_WRITE_DATA|ACE_APPEND_DATA);
2328789Sahrens 			mode |= ACE_WRITE_NAMED_ATTRS;
2329789Sahrens 		}
2330789Sahrens 
2331789Sahrens 		if (mode & (ACE_READ_DATA|ACE_EXECUTE)) {
2332789Sahrens 			mode &= ~(ACE_READ_DATA|ACE_EXECUTE);
2333789Sahrens 			mode |= ACE_READ_NAMED_ATTRS;
2334789Sahrens 		}
2335789Sahrens 	}
2336789Sahrens 
23375331Samw 	if ((error = zfs_zaccess_common(check_zp, mode, &working_mode,
23385331Samw 	    &check_privs, skipaclchk, cr)) == 0) {
23395331Samw 		if (is_attr)
23405331Samw 			VN_RELE(ZTOV(xzp));
23415331Samw 		return (0);
23425331Samw 	}
2343789Sahrens 
23445331Samw 	if (error && check_privs == B_FALSE) {
2345789Sahrens 		if (is_attr)
2346789Sahrens 			VN_RELE(ZTOV(xzp));
2347789Sahrens 		return (error);
2348789Sahrens 	}
2349789Sahrens 
23505331Samw 	if (error && (flags & V_APPEND)) {
23515331Samw 		error = zfs_zaccess_append(zp, &working_mode, &check_privs, cr);
23525331Samw 	}
23535331Samw 
23545331Samw 	if (error && check_privs) {
23555331Samw 		uid_t		owner;
23565331Samw 		mode_t		checkmode = 0;
23575331Samw 
23585771Sjp151216 		zfs_fuid_map_id(zfsvfs, check_zp->z_phys->zp_uid, cr,
23595331Samw 		    ZFS_OWNER, &owner);
23605331Samw 
23615331Samw 		/*
23625331Samw 		 * First check for implicit owner permission on
23635331Samw 		 * read_acl/read_attributes
23645331Samw 		 */
23655331Samw 
23665331Samw 		error = 0;
23675331Samw 		ASSERT(working_mode != 0);
23685331Samw 
23695331Samw 		if ((working_mode & (ACE_READ_ACL|ACE_READ_ATTRIBUTES) &&
23705331Samw 		    owner == crgetuid(cr)))
23715331Samw 			working_mode &= ~(ACE_READ_ACL|ACE_READ_ATTRIBUTES);
23725331Samw 
23735331Samw 		if (working_mode & (ACE_READ_DATA|ACE_READ_NAMED_ATTRS|
23745331Samw 		    ACE_READ_ACL|ACE_READ_ATTRIBUTES))
23755331Samw 			checkmode |= VREAD;
23765331Samw 		if (working_mode & (ACE_WRITE_DATA|ACE_WRITE_NAMED_ATTRS|
23775331Samw 		    ACE_APPEND_DATA|ACE_WRITE_ATTRIBUTES))
23785331Samw 			checkmode |= VWRITE;
23795331Samw 		if (working_mode & ACE_EXECUTE)
23805331Samw 			checkmode |= VEXEC;
23815331Samw 
23825331Samw 		if (checkmode)
23835331Samw 			error = secpolicy_vnode_access(cr, ZTOV(check_zp),
23845331Samw 			    owner, checkmode);
23855331Samw 
23865331Samw 		if (error == 0 && (working_mode & ACE_WRITE_OWNER))
23875331Samw 			error = secpolicy_vnode_create_gid(cr);
23885331Samw 		if (error == 0 && (working_mode & ACE_WRITE_ACL))
23895331Samw 			error = secpolicy_vnode_setdac(cr, owner);
23905331Samw 
23915331Samw 		if (error == 0 && (working_mode &
23925331Samw 		    (ACE_DELETE|ACE_DELETE_CHILD)))
23935331Samw 			error = secpolicy_vnode_remove(cr);
23945331Samw 
23955331Samw 		if (error == 0 && (working_mode & ACE_SYNCHRONIZE))
23965331Samw 			error = secpolicy_vnode_owner(cr, owner);
23975331Samw 
23985331Samw 		if (error == 0) {
23995331Samw 			/*
24005331Samw 			 * See if any bits other than those already checked
24015331Samw 			 * for are still present.  If so then return EACCES
24025331Samw 			 */
24035331Samw 			if (working_mode & ~(ZFS_CHECKED_MASKS)) {
24045331Samw 				error = EACCES;
24055331Samw 			}
24065331Samw 		}
2407789Sahrens 	}
2408789Sahrens 
2409789Sahrens 	if (is_attr)
2410789Sahrens 		VN_RELE(ZTOV(xzp));
2411789Sahrens 
2412789Sahrens 	return (error);
2413789Sahrens }
2414789Sahrens 
2415789Sahrens /*
24165331Samw  * Translate traditional unix VREAD/VWRITE/VEXEC mode into
24175331Samw  * native ACL format and call zfs_zaccess()
2418789Sahrens  */
2419789Sahrens int
24205331Samw zfs_zaccess_rwx(znode_t *zp, mode_t mode, int flags, cred_t *cr)
2421789Sahrens {
24225331Samw 	return (zfs_zaccess(zp, zfs_unix_to_v4(mode >> 6), flags, B_FALSE, cr));
2423789Sahrens }
2424789Sahrens 
2425789Sahrens /*
24265331Samw  * Access function for secpolicy_vnode_setattr
2427789Sahrens  */
2428789Sahrens int
24295331Samw zfs_zaccess_unix(znode_t *zp, mode_t mode, cred_t *cr)
2430789Sahrens {
2431789Sahrens 	int v4_mode = zfs_unix_to_v4(mode >> 6);
2432789Sahrens 
24335331Samw 	return (zfs_zaccess(zp, v4_mode, 0, B_FALSE, cr));
2434789Sahrens }
2435789Sahrens 
24362604Smarks static int
24372604Smarks zfs_delete_final_check(znode_t *zp, znode_t *dzp, cred_t *cr)
24382604Smarks {
24392604Smarks 	int error;
24405331Samw 	uid_t downer;
24415331Samw 	zfsvfs_t *zfsvfs = zp->z_zfsvfs;
24422604Smarks 
24435771Sjp151216 	zfs_fuid_map_id(zfsvfs, dzp->z_phys->zp_uid, cr, ZFS_OWNER, &downer);
24445331Samw 
24455331Samw 	error = secpolicy_vnode_access(cr, ZTOV(zp), downer, S_IWRITE|S_IEXEC);
24462604Smarks 
24472604Smarks 	if (error == 0)
24482604Smarks 		error = zfs_sticky_remove_access(dzp, zp, cr);
24492604Smarks 
24502604Smarks 	return (error);
24512604Smarks }
24522604Smarks 
2453789Sahrens /*
2454789Sahrens  * Determine whether Access should be granted/deny, without
2455789Sahrens  * consulting least priv subsystem.
2456789Sahrens  *
2457789Sahrens  *
2458789Sahrens  * The following chart is the recommended NFSv4 enforcement for
2459789Sahrens  * ability to delete an object.
2460789Sahrens  *
2461789Sahrens  *      -------------------------------------------------------
2462789Sahrens  *      |   Parent Dir  |           Target Object Permissions |
2463789Sahrens  *      |  permissions  |                                     |
2464789Sahrens  *      -------------------------------------------------------
2465789Sahrens  *      |               | ACL Allows | ACL Denies| Delete     |
2466789Sahrens  *      |               |  Delete    |  Delete   | unspecified|
2467789Sahrens  *      -------------------------------------------------------
2468789Sahrens  *      |  ACL Allows   | Permit     | Permit    | Permit     |
2469789Sahrens  *      |  DELETE_CHILD |                                     |
2470789Sahrens  *      -------------------------------------------------------
2471789Sahrens  *      |  ACL Denies   | Permit     | Deny      | Deny       |
2472789Sahrens  *      |  DELETE_CHILD |            |           |            |
2473789Sahrens  *      -------------------------------------------------------
2474789Sahrens  *      | ACL specifies |            |           |            |
2475789Sahrens  *      | only allow    | Permit     | Permit    | Permit     |
2476789Sahrens  *      | write and     |            |           |            |
2477789Sahrens  *      | execute       |            |           |            |
2478789Sahrens  *      -------------------------------------------------------
2479789Sahrens  *      | ACL denies    |            |           |            |
2480789Sahrens  *      | write and     | Permit     | Deny      | Deny       |
2481789Sahrens  *      | execute       |            |           |            |
2482789Sahrens  *      -------------------------------------------------------
2483789Sahrens  *         ^
2484789Sahrens  *         |
2485789Sahrens  *         No search privilege, can't even look up file?
2486789Sahrens  *
2487789Sahrens  */
2488789Sahrens int
2489789Sahrens zfs_zaccess_delete(znode_t *dzp, znode_t *zp, cred_t *cr)
2490789Sahrens {
24915331Samw 	uint32_t dzp_working_mode = 0;
24925331Samw 	uint32_t zp_working_mode = 0;
2493789Sahrens 	int dzp_error, zp_error;
24945331Samw 	boolean_t dzpcheck_privs = B_TRUE;
24955331Samw 	boolean_t zpcheck_privs = B_TRUE;
2496789Sahrens 
2497789Sahrens 	/*
2498789Sahrens 	 * Arghh, this check is going to require a couple of questions
2499789Sahrens 	 * to be asked.  We want specific DELETE permissions to
2500789Sahrens 	 * take precedence over WRITE/EXECUTE.  We don't
2501789Sahrens 	 * want an ACL such as this to mess us up.
25022604Smarks 	 * user:joe:write_data:deny,user:joe:delete:allow
2503789Sahrens 	 *
2504789Sahrens 	 * However, deny permissions may ultimately be overridden
2505789Sahrens 	 * by secpolicy_vnode_access().
2506789Sahrens 	 */
2507789Sahrens 
25085331Samw 	if (zp->z_phys->zp_flags & (ZFS_IMMUTABLE | ZFS_NOUNLINK))
25095331Samw 		return (EPERM);
25105331Samw 
2511789Sahrens 	dzp_error = zfs_zaccess_common(dzp, ACE_DELETE_CHILD,
25125331Samw 	    &dzp_working_mode, &dzpcheck_privs, B_FALSE, cr);
25135331Samw 	zp_error = zfs_zaccess_common(zp, ACE_DELETE, &zp_working_mode,
25145331Samw 	    &zpcheck_privs, B_FALSE, cr);
2515789Sahrens 
25165331Samw 	if ((dzp_error && dzpcheck_privs == B_FALSE) ||
25175331Samw 	    (zp_error && zpcheck_privs == B_FALSE))
2518789Sahrens 		return (dzp_error);
2519789Sahrens 
2520789Sahrens 	/*
25212604Smarks 	 * First check the first row.
25222604Smarks 	 * We only need to see if parent Allows delete_child
2523789Sahrens 	 */
25241576Smarks 	if ((dzp_working_mode & ACE_DELETE_CHILD) == 0)
2525789Sahrens 		return (0);
2526789Sahrens 
2527789Sahrens 	/*
2528789Sahrens 	 * Second row
25292604Smarks 	 * we already have the necessary information in
25302604Smarks 	 * zp_working_mode, zp_error and dzp_error.
2531789Sahrens 	 */
2532789Sahrens 
25331576Smarks 	if ((zp_working_mode & ACE_DELETE) == 0)
2534789Sahrens 		return (0);
2535789Sahrens 
2536789Sahrens 	/*
25372604Smarks 	 * Now zp_error should either be EACCES which indicates
25382604Smarks 	 * a "deny" delete entry or ACCESS_UNDETERMINED if the "delete"
25392604Smarks 	 * entry exists on the target.
25402604Smarks 	 *
25412604Smarks 	 * dzp_error should be either EACCES which indicates a "deny"
25422604Smarks 	 * entry for delete_child or ACCESS_UNDETERMINED if no delete_child
25432604Smarks 	 * entry exists.  If value is EACCES then we are done
25442604Smarks 	 * and zfs_delete_final_check() will make the final decision
25452604Smarks 	 * regarding to allow the delete.
25462604Smarks 	 */
25472604Smarks 
25482604Smarks 	ASSERT(zp_error != 0 && dzp_error != 0);
25492604Smarks 	if (dzp_error == EACCES)
25502604Smarks 		return (zfs_delete_final_check(zp, dzp, cr));
25512604Smarks 
25522604Smarks 	/*
2553789Sahrens 	 * Third Row
25542604Smarks 	 * Only need to check for write/execute on parent
2555789Sahrens 	 */
2556789Sahrens 
2557789Sahrens 	dzp_error = zfs_zaccess_common(dzp, ACE_WRITE_DATA|ACE_EXECUTE,
25585331Samw 	    &dzp_working_mode, &dzpcheck_privs, B_FALSE, cr);
2559789Sahrens 
25605331Samw 	if (dzp_error && dzpcheck_privs == B_FALSE)
2561789Sahrens 		return (dzp_error);
2562789Sahrens 
25631576Smarks 	if ((dzp_working_mode & (ACE_WRITE_DATA|ACE_EXECUTE)) == 0)
25642604Smarks 		return (zfs_sticky_remove_access(dzp, zp, cr));
2565789Sahrens 
2566789Sahrens 	/*
2567789Sahrens 	 * Fourth Row
2568789Sahrens 	 */
2569789Sahrens 
25701576Smarks 	if (((dzp_working_mode & (ACE_WRITE_DATA|ACE_EXECUTE)) != 0) &&
25711576Smarks 	    ((zp_working_mode & ACE_DELETE) == 0))
25722604Smarks 		return (zfs_sticky_remove_access(dzp, zp, cr));
2573789Sahrens 
25742604Smarks 	return (zfs_delete_final_check(zp, dzp, cr));
2575789Sahrens }
2576789Sahrens 
2577789Sahrens int
2578789Sahrens zfs_zaccess_rename(znode_t *sdzp, znode_t *szp, znode_t *tdzp,
2579789Sahrens     znode_t *tzp, cred_t *cr)
2580789Sahrens {
2581789Sahrens 	int add_perm;
2582789Sahrens 	int error;
2583789Sahrens 
25845331Samw 	if (szp->z_phys->zp_flags & ZFS_AV_QUARANTINED)
25855331Samw 		return (EACCES);
25865331Samw 
2587789Sahrens 	add_perm = (ZTOV(szp)->v_type == VDIR) ?
2588789Sahrens 	    ACE_ADD_SUBDIRECTORY : ACE_ADD_FILE;
2589789Sahrens 
2590789Sahrens 	/*
2591789Sahrens 	 * Rename permissions are combination of delete permission +
2592789Sahrens 	 * add file/subdir permission.
2593789Sahrens 	 */
2594789Sahrens 
2595789Sahrens 	/*
2596789Sahrens 	 * first make sure we do the delete portion.
2597789Sahrens 	 *
2598789Sahrens 	 * If that succeeds then check for add_file/add_subdir permissions
2599789Sahrens 	 */
2600789Sahrens 
2601789Sahrens 	if (error = zfs_zaccess_delete(sdzp, szp, cr))
2602789Sahrens 		return (error);
2603789Sahrens 
2604789Sahrens 	/*
2605789Sahrens 	 * If we have a tzp, see if we can delete it?
2606789Sahrens 	 */
2607789Sahrens 	if (tzp) {
2608789Sahrens 		if (error = zfs_zaccess_delete(tdzp, tzp, cr))
2609789Sahrens 			return (error);
2610789Sahrens 	}
2611789Sahrens 
2612789Sahrens 	/*
2613789Sahrens 	 * Now check for add permissions
2614789Sahrens 	 */
26155331Samw 	error = zfs_zaccess(tdzp, add_perm, 0, B_FALSE, cr);
2616789Sahrens 
2617789Sahrens 	return (error);
2618789Sahrens }
2619