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