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nfs_clvnops.c revision 1.2.12.1
      1  1.2.12.1     skrll /*	$NetBSD: nfs_clvnops.c,v 1.2.12.1 2016/12/05 10:55:25 skrll Exp $	*/
      2       1.1  dholland /*-
      3       1.1  dholland  * Copyright (c) 1989, 1993
      4       1.1  dholland  *	The Regents of the University of California.  All rights reserved.
      5       1.1  dholland  *
      6       1.1  dholland  * This code is derived from software contributed to Berkeley by
      7       1.1  dholland  * Rick Macklem at The University of Guelph.
      8       1.1  dholland  *
      9       1.1  dholland  * Redistribution and use in source and binary forms, with or without
     10       1.1  dholland  * modification, are permitted provided that the following conditions
     11       1.1  dholland  * are met:
     12       1.1  dholland  * 1. Redistributions of source code must retain the above copyright
     13       1.1  dholland  *    notice, this list of conditions and the following disclaimer.
     14       1.1  dholland  * 2. Redistributions in binary form must reproduce the above copyright
     15       1.1  dholland  *    notice, this list of conditions and the following disclaimer in the
     16       1.1  dholland  *    documentation and/or other materials provided with the distribution.
     17       1.1  dholland  * 4. Neither the name of the University nor the names of its contributors
     18       1.1  dholland  *    may be used to endorse or promote products derived from this software
     19       1.1  dholland  *    without specific prior written permission.
     20       1.1  dholland  *
     21       1.1  dholland  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     22       1.1  dholland  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     23       1.1  dholland  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     24       1.1  dholland  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     25       1.1  dholland  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     26       1.1  dholland  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     27       1.1  dholland  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     28       1.1  dholland  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     29       1.1  dholland  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     30       1.1  dholland  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     31       1.1  dholland  * SUCH DAMAGE.
     32       1.1  dholland  *
     33       1.1  dholland  *	from nfs_vnops.c	8.16 (Berkeley) 5/27/95
     34       1.1  dholland  */
     35       1.1  dholland 
     36       1.1  dholland #include <sys/cdefs.h>
     37  1.2.12.1     skrll /* __FBSDID("FreeBSD: head/sys/fs/nfsclient/nfs_clvnops.c 304026 2016-08-12 22:44:59Z rmacklem "); */
     38  1.2.12.1     skrll __RCSID("$NetBSD: nfs_clvnops.c,v 1.2.12.1 2016/12/05 10:55:25 skrll Exp $");
     39       1.1  dholland 
     40       1.1  dholland /*
     41       1.1  dholland  * vnode op calls for Sun NFS version 2, 3 and 4
     42       1.1  dholland  */
     43       1.1  dholland 
     44       1.1  dholland #include "opt_inet.h"
     45       1.1  dholland 
     46       1.1  dholland #include <sys/param.h>
     47       1.1  dholland #include <sys/kernel.h>
     48       1.1  dholland #include <sys/systm.h>
     49       1.1  dholland #include <sys/resourcevar.h>
     50       1.1  dholland #include <sys/proc.h>
     51       1.1  dholland #include <sys/mount.h>
     52       1.1  dholland #include <sys/bio.h>
     53       1.1  dholland #include <sys/buf.h>
     54       1.1  dholland #include <sys/jail.h>
     55       1.1  dholland #include <sys/malloc.h>
     56       1.1  dholland #include <sys/mbuf.h>
     57       1.1  dholland #include <sys/namei.h>
     58       1.1  dholland #include <sys/socket.h>
     59       1.1  dholland #include <sys/vnode.h>
     60       1.1  dholland #include <sys/dirent.h>
     61       1.1  dholland #include <sys/fcntl.h>
     62       1.1  dholland #include <sys/lockf.h>
     63       1.1  dholland #include <sys/stat.h>
     64       1.1  dholland #include <sys/sysctl.h>
     65       1.1  dholland #include <sys/signalvar.h>
     66       1.1  dholland 
     67       1.1  dholland #include <vm/vm.h>
     68       1.1  dholland #include <vm/vm_extern.h>
     69       1.1  dholland #include <vm/vm_object.h>
     70       1.1  dholland 
     71       1.1  dholland #include <fs/nfs/nfsport.h>
     72       1.1  dholland #include <fs/nfsclient/nfsnode.h>
     73       1.1  dholland #include <fs/nfsclient/nfsmount.h>
     74       1.1  dholland #include <fs/nfsclient/nfs.h>
     75       1.1  dholland #include <fs/nfsclient/nfs_kdtrace.h>
     76       1.1  dholland 
     77       1.1  dholland #include <net/if.h>
     78       1.1  dholland #include <netinet/in.h>
     79       1.1  dholland #include <netinet/in_var.h>
     80       1.1  dholland 
     81       1.1  dholland #include <nfs/nfs_lock.h>
     82       1.1  dholland 
     83       1.1  dholland #ifdef KDTRACE_HOOKS
     84       1.1  dholland #include <sys/dtrace_bsd.h>
     85       1.1  dholland 
     86       1.1  dholland dtrace_nfsclient_accesscache_flush_probe_func_t
     87       1.1  dholland 		dtrace_nfscl_accesscache_flush_done_probe;
     88       1.1  dholland uint32_t	nfscl_accesscache_flush_done_id;
     89       1.1  dholland 
     90       1.1  dholland dtrace_nfsclient_accesscache_get_probe_func_t
     91       1.1  dholland 		dtrace_nfscl_accesscache_get_hit_probe,
     92       1.1  dholland 		dtrace_nfscl_accesscache_get_miss_probe;
     93       1.1  dholland uint32_t	nfscl_accesscache_get_hit_id;
     94       1.1  dholland uint32_t	nfscl_accesscache_get_miss_id;
     95       1.1  dholland 
     96       1.1  dholland dtrace_nfsclient_accesscache_load_probe_func_t
     97       1.1  dholland 		dtrace_nfscl_accesscache_load_done_probe;
     98       1.1  dholland uint32_t	nfscl_accesscache_load_done_id;
     99       1.1  dholland #endif /* !KDTRACE_HOOKS */
    100       1.1  dholland 
    101       1.1  dholland /* Defs */
    102       1.1  dholland #define	TRUE	1
    103       1.1  dholland #define	FALSE	0
    104       1.1  dholland 
    105  1.2.12.1     skrll extern struct nfsstatsv1 nfsstatsv1;
    106       1.1  dholland extern int nfsrv_useacl;
    107       1.1  dholland extern int nfscl_debuglevel;
    108       1.1  dholland MALLOC_DECLARE(M_NEWNFSREQ);
    109       1.1  dholland 
    110       1.1  dholland /*
    111       1.1  dholland  * Ifdef for FreeBSD-current merged buffer cache. It is unfortunate that these
    112       1.1  dholland  * calls are not in getblk() and brelse() so that they would not be necessary
    113       1.1  dholland  * here.
    114       1.1  dholland  */
    115       1.1  dholland #ifndef B_VMIO
    116       1.1  dholland #define	vfs_busy_pages(bp, f)
    117       1.1  dholland #endif
    118       1.1  dholland 
    119       1.1  dholland static vop_read_t	nfsfifo_read;
    120       1.1  dholland static vop_write_t	nfsfifo_write;
    121       1.1  dholland static vop_close_t	nfsfifo_close;
    122       1.1  dholland static int	nfs_setattrrpc(struct vnode *, struct vattr *, struct ucred *,
    123       1.1  dholland 		    struct thread *);
    124       1.1  dholland static vop_lookup_t	nfs_lookup;
    125       1.1  dholland static vop_create_t	nfs_create;
    126       1.1  dholland static vop_mknod_t	nfs_mknod;
    127       1.1  dholland static vop_open_t	nfs_open;
    128       1.1  dholland static vop_pathconf_t	nfs_pathconf;
    129       1.1  dholland static vop_close_t	nfs_close;
    130       1.1  dholland static vop_access_t	nfs_access;
    131       1.1  dholland static vop_getattr_t	nfs_getattr;
    132       1.1  dholland static vop_setattr_t	nfs_setattr;
    133       1.1  dholland static vop_read_t	nfs_read;
    134       1.1  dholland static vop_fsync_t	nfs_fsync;
    135       1.1  dholland static vop_remove_t	nfs_remove;
    136       1.1  dholland static vop_link_t	nfs_link;
    137       1.1  dholland static vop_rename_t	nfs_rename;
    138       1.1  dholland static vop_mkdir_t	nfs_mkdir;
    139       1.1  dholland static vop_rmdir_t	nfs_rmdir;
    140       1.1  dholland static vop_symlink_t	nfs_symlink;
    141       1.1  dholland static vop_readdir_t	nfs_readdir;
    142       1.1  dholland static vop_strategy_t	nfs_strategy;
    143       1.1  dholland static	int	nfs_lookitup(struct vnode *, char *, int,
    144       1.1  dholland 		    struct ucred *, struct thread *, struct nfsnode **);
    145       1.1  dholland static	int	nfs_sillyrename(struct vnode *, struct vnode *,
    146       1.1  dholland 		    struct componentname *);
    147       1.1  dholland static vop_access_t	nfsspec_access;
    148       1.1  dholland static vop_readlink_t	nfs_readlink;
    149       1.1  dholland static vop_print_t	nfs_print;
    150       1.1  dholland static vop_advlock_t	nfs_advlock;
    151       1.1  dholland static vop_advlockasync_t nfs_advlockasync;
    152       1.1  dholland static vop_getacl_t nfs_getacl;
    153       1.1  dholland static vop_setacl_t nfs_setacl;
    154       1.1  dholland 
    155       1.1  dholland /*
    156       1.1  dholland  * Global vfs data structures for nfs
    157       1.1  dholland  */
    158       1.1  dholland struct vop_vector newnfs_vnodeops = {
    159       1.1  dholland 	.vop_default =		&default_vnodeops,
    160       1.1  dholland 	.vop_access =		nfs_access,
    161       1.1  dholland 	.vop_advlock =		nfs_advlock,
    162       1.1  dholland 	.vop_advlockasync =	nfs_advlockasync,
    163       1.1  dholland 	.vop_close =		nfs_close,
    164       1.1  dholland 	.vop_create =		nfs_create,
    165       1.1  dholland 	.vop_fsync =		nfs_fsync,
    166       1.1  dholland 	.vop_getattr =		nfs_getattr,
    167       1.1  dholland 	.vop_getpages =		ncl_getpages,
    168       1.1  dholland 	.vop_putpages =		ncl_putpages,
    169       1.1  dholland 	.vop_inactive =		ncl_inactive,
    170       1.1  dholland 	.vop_link =		nfs_link,
    171       1.1  dholland 	.vop_lookup =		nfs_lookup,
    172       1.1  dholland 	.vop_mkdir =		nfs_mkdir,
    173       1.1  dholland 	.vop_mknod =		nfs_mknod,
    174       1.1  dholland 	.vop_open =		nfs_open,
    175       1.1  dholland 	.vop_pathconf =		nfs_pathconf,
    176       1.1  dholland 	.vop_print =		nfs_print,
    177       1.1  dholland 	.vop_read =		nfs_read,
    178       1.1  dholland 	.vop_readdir =		nfs_readdir,
    179       1.1  dholland 	.vop_readlink =		nfs_readlink,
    180       1.1  dholland 	.vop_reclaim =		ncl_reclaim,
    181       1.1  dholland 	.vop_remove =		nfs_remove,
    182       1.1  dholland 	.vop_rename =		nfs_rename,
    183       1.1  dholland 	.vop_rmdir =		nfs_rmdir,
    184       1.1  dholland 	.vop_setattr =		nfs_setattr,
    185       1.1  dholland 	.vop_strategy =		nfs_strategy,
    186       1.1  dholland 	.vop_symlink =		nfs_symlink,
    187       1.1  dholland 	.vop_write =		ncl_write,
    188       1.1  dholland 	.vop_getacl =		nfs_getacl,
    189       1.1  dholland 	.vop_setacl =		nfs_setacl,
    190       1.1  dholland };
    191       1.1  dholland 
    192       1.1  dholland struct vop_vector newnfs_fifoops = {
    193       1.1  dholland 	.vop_default =		&fifo_specops,
    194       1.1  dholland 	.vop_access =		nfsspec_access,
    195       1.1  dholland 	.vop_close =		nfsfifo_close,
    196       1.1  dholland 	.vop_fsync =		nfs_fsync,
    197       1.1  dholland 	.vop_getattr =		nfs_getattr,
    198       1.1  dholland 	.vop_inactive =		ncl_inactive,
    199       1.1  dholland 	.vop_print =		nfs_print,
    200       1.1  dholland 	.vop_read =		nfsfifo_read,
    201       1.1  dholland 	.vop_reclaim =		ncl_reclaim,
    202       1.1  dholland 	.vop_setattr =		nfs_setattr,
    203       1.1  dholland 	.vop_write =		nfsfifo_write,
    204       1.1  dholland };
    205       1.1  dholland 
    206       1.1  dholland static int nfs_mknodrpc(struct vnode *dvp, struct vnode **vpp,
    207       1.1  dholland     struct componentname *cnp, struct vattr *vap);
    208       1.1  dholland static int nfs_removerpc(struct vnode *dvp, struct vnode *vp, char *name,
    209       1.1  dholland     int namelen, struct ucred *cred, struct thread *td);
    210       1.1  dholland static int nfs_renamerpc(struct vnode *fdvp, struct vnode *fvp,
    211       1.1  dholland     char *fnameptr, int fnamelen, struct vnode *tdvp, struct vnode *tvp,
    212       1.1  dholland     char *tnameptr, int tnamelen, struct ucred *cred, struct thread *td);
    213       1.1  dholland static int nfs_renameit(struct vnode *sdvp, struct vnode *svp,
    214       1.1  dholland     struct componentname *scnp, struct sillyrename *sp);
    215       1.1  dholland 
    216       1.1  dholland /*
    217       1.1  dholland  * Global variables
    218       1.1  dholland  */
    219       1.1  dholland #define	DIRHDSIZ	(sizeof (struct dirent) - (MAXNAMLEN + 1))
    220       1.1  dholland 
    221       1.1  dholland SYSCTL_DECL(_vfs_nfs);
    222       1.1  dholland 
    223       1.1  dholland static int	nfsaccess_cache_timeout = NFS_MAXATTRTIMO;
    224       1.1  dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, access_cache_timeout, CTLFLAG_RW,
    225       1.1  dholland 	   &nfsaccess_cache_timeout, 0, "NFS ACCESS cache timeout");
    226       1.1  dholland 
    227       1.1  dholland static int	nfs_prime_access_cache = 0;
    228       1.1  dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, prime_access_cache, CTLFLAG_RW,
    229       1.1  dholland 	   &nfs_prime_access_cache, 0,
    230       1.1  dholland 	   "Prime NFS ACCESS cache when fetching attributes");
    231       1.1  dholland 
    232       1.1  dholland static int	newnfs_commit_on_close = 0;
    233       1.1  dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, commit_on_close, CTLFLAG_RW,
    234       1.1  dholland     &newnfs_commit_on_close, 0, "write+commit on close, else only write");
    235       1.1  dholland 
    236       1.1  dholland static int	nfs_clean_pages_on_close = 1;
    237       1.1  dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, clean_pages_on_close, CTLFLAG_RW,
    238       1.1  dholland 	   &nfs_clean_pages_on_close, 0, "NFS clean dirty pages on close");
    239       1.1  dholland 
    240       1.1  dholland int newnfs_directio_enable = 0;
    241       1.1  dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, nfs_directio_enable, CTLFLAG_RW,
    242       1.1  dholland 	   &newnfs_directio_enable, 0, "Enable NFS directio");
    243       1.1  dholland 
    244       1.1  dholland int nfs_keep_dirty_on_error;
    245       1.1  dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, nfs_keep_dirty_on_error, CTLFLAG_RW,
    246       1.1  dholland     &nfs_keep_dirty_on_error, 0, "Retry pageout if error returned");
    247       1.1  dholland 
    248       1.1  dholland /*
    249       1.1  dholland  * This sysctl allows other processes to mmap a file that has been opened
    250       1.1  dholland  * O_DIRECT by a process.  In general, having processes mmap the file while
    251       1.1  dholland  * Direct IO is in progress can lead to Data Inconsistencies.  But, we allow
    252       1.1  dholland  * this by default to prevent DoS attacks - to prevent a malicious user from
    253       1.1  dholland  * opening up files O_DIRECT preventing other users from mmap'ing these
    254       1.1  dholland  * files.  "Protected" environments where stricter consistency guarantees are
    255       1.1  dholland  * required can disable this knob.  The process that opened the file O_DIRECT
    256       1.1  dholland  * cannot mmap() the file, because mmap'ed IO on an O_DIRECT open() is not
    257       1.1  dholland  * meaningful.
    258       1.1  dholland  */
    259       1.1  dholland int newnfs_directio_allow_mmap = 1;
    260       1.1  dholland SYSCTL_INT(_vfs_nfs, OID_AUTO, nfs_directio_allow_mmap, CTLFLAG_RW,
    261       1.1  dholland 	   &newnfs_directio_allow_mmap, 0, "Enable mmaped IO on file with O_DIRECT opens");
    262       1.1  dholland 
    263       1.1  dholland #define	NFSACCESS_ALL (NFSACCESS_READ | NFSACCESS_MODIFY		\
    264       1.1  dholland 			 | NFSACCESS_EXTEND | NFSACCESS_EXECUTE	\
    265       1.1  dholland 			 | NFSACCESS_DELETE | NFSACCESS_LOOKUP)
    266       1.1  dholland 
    267       1.1  dholland /*
    268       1.1  dholland  * SMP Locking Note :
    269       1.1  dholland  * The list of locks after the description of the lock is the ordering
    270       1.1  dholland  * of other locks acquired with the lock held.
    271       1.1  dholland  * np->n_mtx : Protects the fields in the nfsnode.
    272       1.1  dholland        VM Object Lock
    273       1.1  dholland        VI_MTX (acquired indirectly)
    274       1.1  dholland  * nmp->nm_mtx : Protects the fields in the nfsmount.
    275       1.1  dholland        rep->r_mtx
    276       1.1  dholland  * ncl_iod_mutex : Global lock, protects shared nfsiod state.
    277       1.1  dholland  * nfs_reqq_mtx : Global lock, protects the nfs_reqq list.
    278       1.1  dholland        nmp->nm_mtx
    279       1.1  dholland        rep->r_mtx
    280       1.1  dholland  * rep->r_mtx : Protects the fields in an nfsreq.
    281       1.1  dholland  */
    282       1.1  dholland 
    283       1.1  dholland static int
    284       1.1  dholland nfs34_access_otw(struct vnode *vp, int wmode, struct thread *td,
    285       1.1  dholland     struct ucred *cred, u_int32_t *retmode)
    286       1.1  dholland {
    287       1.1  dholland 	int error = 0, attrflag, i, lrupos;
    288       1.1  dholland 	u_int32_t rmode;
    289       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
    290       1.1  dholland 	struct nfsvattr nfsva;
    291       1.1  dholland 
    292       1.1  dholland 	error = nfsrpc_accessrpc(vp, wmode, cred, td, &nfsva, &attrflag,
    293       1.1  dholland 	    &rmode, NULL);
    294       1.1  dholland 	if (attrflag)
    295       1.1  dholland 		(void) nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 0, 1);
    296       1.1  dholland 	if (!error) {
    297       1.1  dholland 		lrupos = 0;
    298       1.1  dholland 		mtx_lock(&np->n_mtx);
    299       1.1  dholland 		for (i = 0; i < NFS_ACCESSCACHESIZE; i++) {
    300       1.1  dholland 			if (np->n_accesscache[i].uid == cred->cr_uid) {
    301       1.1  dholland 				np->n_accesscache[i].mode = rmode;
    302       1.1  dholland 				np->n_accesscache[i].stamp = time_second;
    303       1.1  dholland 				break;
    304       1.1  dholland 			}
    305       1.1  dholland 			if (i > 0 && np->n_accesscache[i].stamp <
    306       1.1  dholland 			    np->n_accesscache[lrupos].stamp)
    307       1.1  dholland 				lrupos = i;
    308       1.1  dholland 		}
    309       1.1  dholland 		if (i == NFS_ACCESSCACHESIZE) {
    310       1.1  dholland 			np->n_accesscache[lrupos].uid = cred->cr_uid;
    311       1.1  dholland 			np->n_accesscache[lrupos].mode = rmode;
    312       1.1  dholland 			np->n_accesscache[lrupos].stamp = time_second;
    313       1.1  dholland 		}
    314       1.1  dholland 		mtx_unlock(&np->n_mtx);
    315       1.1  dholland 		if (retmode != NULL)
    316       1.1  dholland 			*retmode = rmode;
    317       1.1  dholland 		KDTRACE_NFS_ACCESSCACHE_LOAD_DONE(vp, cred->cr_uid, rmode, 0);
    318       1.1  dholland 	} else if (NFS_ISV4(vp)) {
    319       1.1  dholland 		error = nfscl_maperr(td, error, (uid_t)0, (gid_t)0);
    320       1.1  dholland 	}
    321       1.1  dholland #ifdef KDTRACE_HOOKS
    322       1.1  dholland 	if (error != 0)
    323       1.1  dholland 		KDTRACE_NFS_ACCESSCACHE_LOAD_DONE(vp, cred->cr_uid, 0,
    324       1.1  dholland 		    error);
    325       1.1  dholland #endif
    326       1.1  dholland 	return (error);
    327       1.1  dholland }
    328       1.1  dholland 
    329       1.1  dholland /*
    330       1.1  dholland  * nfs access vnode op.
    331       1.1  dholland  * For nfs version 2, just return ok. File accesses may fail later.
    332       1.1  dholland  * For nfs version 3, use the access rpc to check accessibility. If file modes
    333       1.1  dholland  * are changed on the server, accesses might still fail later.
    334       1.1  dholland  */
    335       1.1  dholland static int
    336       1.1  dholland nfs_access(struct vop_access_args *ap)
    337       1.1  dholland {
    338       1.1  dholland 	struct vnode *vp = ap->a_vp;
    339       1.1  dholland 	int error = 0, i, gotahit;
    340       1.1  dholland 	u_int32_t mode, wmode, rmode;
    341       1.1  dholland 	int v34 = NFS_ISV34(vp);
    342       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
    343       1.1  dholland 
    344       1.1  dholland 	/*
    345       1.1  dholland 	 * Disallow write attempts on filesystems mounted read-only;
    346       1.1  dholland 	 * unless the file is a socket, fifo, or a block or character
    347       1.1  dholland 	 * device resident on the filesystem.
    348       1.1  dholland 	 */
    349       1.1  dholland 	if ((ap->a_accmode & (VWRITE | VAPPEND | VWRITE_NAMED_ATTRS |
    350       1.1  dholland 	    VDELETE_CHILD | VWRITE_ATTRIBUTES | VDELETE | VWRITE_ACL |
    351       1.1  dholland 	    VWRITE_OWNER)) != 0 && (vp->v_mount->mnt_flag & MNT_RDONLY) != 0) {
    352       1.1  dholland 		switch (vp->v_type) {
    353       1.1  dholland 		case VREG:
    354       1.1  dholland 		case VDIR:
    355       1.1  dholland 		case VLNK:
    356       1.1  dholland 			return (EROFS);
    357       1.1  dholland 		default:
    358       1.1  dholland 			break;
    359       1.1  dholland 		}
    360       1.1  dholland 	}
    361       1.1  dholland 	/*
    362       1.1  dholland 	 * For nfs v3 or v4, check to see if we have done this recently, and if
    363       1.1  dholland 	 * so return our cached result instead of making an ACCESS call.
    364       1.1  dholland 	 * If not, do an access rpc, otherwise you are stuck emulating
    365       1.1  dholland 	 * ufs_access() locally using the vattr. This may not be correct,
    366       1.1  dholland 	 * since the server may apply other access criteria such as
    367       1.1  dholland 	 * client uid-->server uid mapping that we do not know about.
    368       1.1  dholland 	 */
    369       1.1  dholland 	if (v34) {
    370       1.1  dholland 		if (ap->a_accmode & VREAD)
    371       1.1  dholland 			mode = NFSACCESS_READ;
    372       1.1  dholland 		else
    373       1.1  dholland 			mode = 0;
    374       1.1  dholland 		if (vp->v_type != VDIR) {
    375       1.1  dholland 			if (ap->a_accmode & VWRITE)
    376       1.1  dholland 				mode |= (NFSACCESS_MODIFY | NFSACCESS_EXTEND);
    377       1.1  dholland 			if (ap->a_accmode & VAPPEND)
    378       1.1  dholland 				mode |= NFSACCESS_EXTEND;
    379       1.1  dholland 			if (ap->a_accmode & VEXEC)
    380       1.1  dholland 				mode |= NFSACCESS_EXECUTE;
    381       1.1  dholland 			if (ap->a_accmode & VDELETE)
    382       1.1  dholland 				mode |= NFSACCESS_DELETE;
    383       1.1  dholland 		} else {
    384       1.1  dholland 			if (ap->a_accmode & VWRITE)
    385       1.1  dholland 				mode |= (NFSACCESS_MODIFY | NFSACCESS_EXTEND);
    386       1.1  dholland 			if (ap->a_accmode & VAPPEND)
    387       1.1  dholland 				mode |= NFSACCESS_EXTEND;
    388       1.1  dholland 			if (ap->a_accmode & VEXEC)
    389       1.1  dholland 				mode |= NFSACCESS_LOOKUP;
    390       1.1  dholland 			if (ap->a_accmode & VDELETE)
    391       1.1  dholland 				mode |= NFSACCESS_DELETE;
    392       1.1  dholland 			if (ap->a_accmode & VDELETE_CHILD)
    393       1.1  dholland 				mode |= NFSACCESS_MODIFY;
    394       1.1  dholland 		}
    395       1.1  dholland 		/* XXX safety belt, only make blanket request if caching */
    396       1.1  dholland 		if (nfsaccess_cache_timeout > 0) {
    397       1.1  dholland 			wmode = NFSACCESS_READ | NFSACCESS_MODIFY |
    398       1.1  dholland 				NFSACCESS_EXTEND | NFSACCESS_EXECUTE |
    399       1.1  dholland 				NFSACCESS_DELETE | NFSACCESS_LOOKUP;
    400       1.1  dholland 		} else {
    401       1.1  dholland 			wmode = mode;
    402       1.1  dholland 		}
    403       1.1  dholland 
    404       1.1  dholland 		/*
    405       1.1  dholland 		 * Does our cached result allow us to give a definite yes to
    406       1.1  dholland 		 * this request?
    407       1.1  dholland 		 */
    408       1.1  dholland 		gotahit = 0;
    409       1.1  dholland 		mtx_lock(&np->n_mtx);
    410       1.1  dholland 		for (i = 0; i < NFS_ACCESSCACHESIZE; i++) {
    411       1.1  dholland 			if (ap->a_cred->cr_uid == np->n_accesscache[i].uid) {
    412       1.1  dholland 			    if (time_second < (np->n_accesscache[i].stamp
    413       1.1  dholland 				+ nfsaccess_cache_timeout) &&
    414       1.1  dholland 				(np->n_accesscache[i].mode & mode) == mode) {
    415  1.2.12.1     skrll 				NFSINCRGLOBAL(nfsstatsv1.accesscache_hits);
    416       1.1  dholland 				gotahit = 1;
    417       1.1  dholland 			    }
    418       1.1  dholland 			    break;
    419       1.1  dholland 			}
    420       1.1  dholland 		}
    421       1.1  dholland 		mtx_unlock(&np->n_mtx);
    422       1.1  dholland #ifdef KDTRACE_HOOKS
    423       1.1  dholland 		if (gotahit != 0)
    424       1.1  dholland 			KDTRACE_NFS_ACCESSCACHE_GET_HIT(vp,
    425       1.1  dholland 			    ap->a_cred->cr_uid, mode);
    426       1.1  dholland 		else
    427       1.1  dholland 			KDTRACE_NFS_ACCESSCACHE_GET_MISS(vp,
    428       1.1  dholland 			    ap->a_cred->cr_uid, mode);
    429       1.1  dholland #endif
    430       1.1  dholland 		if (gotahit == 0) {
    431       1.1  dholland 			/*
    432       1.1  dholland 			 * Either a no, or a don't know.  Go to the wire.
    433       1.1  dholland 			 */
    434  1.2.12.1     skrll 			NFSINCRGLOBAL(nfsstatsv1.accesscache_misses);
    435       1.1  dholland 		        error = nfs34_access_otw(vp, wmode, ap->a_td,
    436       1.1  dholland 			    ap->a_cred, &rmode);
    437       1.1  dholland 			if (!error &&
    438       1.1  dholland 			    (rmode & mode) != mode)
    439       1.1  dholland 				error = EACCES;
    440       1.1  dholland 		}
    441       1.1  dholland 		return (error);
    442       1.1  dholland 	} else {
    443       1.1  dholland 		if ((error = nfsspec_access(ap)) != 0) {
    444       1.1  dholland 			return (error);
    445       1.1  dholland 		}
    446       1.1  dholland 		/*
    447       1.1  dholland 		 * Attempt to prevent a mapped root from accessing a file
    448       1.1  dholland 		 * which it shouldn't.  We try to read a byte from the file
    449       1.1  dholland 		 * if the user is root and the file is not zero length.
    450       1.1  dholland 		 * After calling nfsspec_access, we should have the correct
    451       1.1  dholland 		 * file size cached.
    452       1.1  dholland 		 */
    453       1.1  dholland 		mtx_lock(&np->n_mtx);
    454       1.1  dholland 		if (ap->a_cred->cr_uid == 0 && (ap->a_accmode & VREAD)
    455       1.1  dholland 		    && VTONFS(vp)->n_size > 0) {
    456       1.1  dholland 			struct iovec aiov;
    457       1.1  dholland 			struct uio auio;
    458       1.1  dholland 			char buf[1];
    459       1.1  dholland 
    460       1.1  dholland 			mtx_unlock(&np->n_mtx);
    461       1.1  dholland 			aiov.iov_base = buf;
    462       1.1  dholland 			aiov.iov_len = 1;
    463       1.1  dholland 			auio.uio_iov = &aiov;
    464       1.1  dholland 			auio.uio_iovcnt = 1;
    465       1.1  dholland 			auio.uio_offset = 0;
    466       1.1  dholland 			auio.uio_resid = 1;
    467       1.1  dholland 			auio.uio_segflg = UIO_SYSSPACE;
    468       1.1  dholland 			auio.uio_rw = UIO_READ;
    469       1.1  dholland 			auio.uio_td = ap->a_td;
    470       1.1  dholland 
    471       1.1  dholland 			if (vp->v_type == VREG)
    472       1.1  dholland 				error = ncl_readrpc(vp, &auio, ap->a_cred);
    473       1.1  dholland 			else if (vp->v_type == VDIR) {
    474       1.1  dholland 				char* bp;
    475       1.1  dholland 				bp = malloc(NFS_DIRBLKSIZ, M_TEMP, M_WAITOK);
    476       1.1  dholland 				aiov.iov_base = bp;
    477       1.1  dholland 				aiov.iov_len = auio.uio_resid = NFS_DIRBLKSIZ;
    478       1.1  dholland 				error = ncl_readdirrpc(vp, &auio, ap->a_cred,
    479       1.1  dholland 				    ap->a_td);
    480       1.1  dholland 				free(bp, M_TEMP);
    481       1.1  dholland 			} else if (vp->v_type == VLNK)
    482       1.1  dholland 				error = ncl_readlinkrpc(vp, &auio, ap->a_cred);
    483       1.1  dholland 			else
    484       1.1  dholland 				error = EACCES;
    485       1.1  dholland 		} else
    486       1.1  dholland 			mtx_unlock(&np->n_mtx);
    487       1.1  dholland 		return (error);
    488       1.1  dholland 	}
    489       1.1  dholland }
    490       1.1  dholland 
    491       1.1  dholland 
    492       1.1  dholland /*
    493       1.1  dholland  * nfs open vnode op
    494       1.1  dholland  * Check to see if the type is ok
    495       1.1  dholland  * and that deletion is not in progress.
    496       1.1  dholland  * For paged in text files, you will need to flush the page cache
    497       1.1  dholland  * if consistency is lost.
    498       1.1  dholland  */
    499       1.1  dholland /* ARGSUSED */
    500       1.1  dholland static int
    501       1.1  dholland nfs_open(struct vop_open_args *ap)
    502       1.1  dholland {
    503       1.1  dholland 	struct vnode *vp = ap->a_vp;
    504       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
    505       1.1  dholland 	struct vattr vattr;
    506       1.1  dholland 	int error;
    507       1.1  dholland 	int fmode = ap->a_mode;
    508       1.1  dholland 	struct ucred *cred;
    509       1.1  dholland 
    510       1.1  dholland 	if (vp->v_type != VREG && vp->v_type != VDIR && vp->v_type != VLNK)
    511       1.1  dholland 		return (EOPNOTSUPP);
    512       1.1  dholland 
    513       1.1  dholland 	/*
    514       1.1  dholland 	 * For NFSv4, we need to do the Open Op before cache validation,
    515       1.1  dholland 	 * so that we conform to RFC3530 Sec. 9.3.1.
    516       1.1  dholland 	 */
    517       1.1  dholland 	if (NFS_ISV4(vp)) {
    518       1.1  dholland 		error = nfsrpc_open(vp, fmode, ap->a_cred, ap->a_td);
    519       1.1  dholland 		if (error) {
    520       1.1  dholland 			error = nfscl_maperr(ap->a_td, error, (uid_t)0,
    521       1.1  dholland 			    (gid_t)0);
    522       1.1  dholland 			return (error);
    523       1.1  dholland 		}
    524       1.1  dholland 	}
    525       1.1  dholland 
    526       1.1  dholland 	/*
    527       1.1  dholland 	 * Now, if this Open will be doing reading, re-validate/flush the
    528       1.1  dholland 	 * cache, so that Close/Open coherency is maintained.
    529       1.1  dholland 	 */
    530       1.1  dholland 	mtx_lock(&np->n_mtx);
    531       1.1  dholland 	if (np->n_flag & NMODIFIED) {
    532       1.1  dholland 		mtx_unlock(&np->n_mtx);
    533       1.1  dholland 		error = ncl_vinvalbuf(vp, V_SAVE, ap->a_td, 1);
    534       1.1  dholland 		if (error == EINTR || error == EIO) {
    535       1.1  dholland 			if (NFS_ISV4(vp))
    536       1.1  dholland 				(void) nfsrpc_close(vp, 0, ap->a_td);
    537       1.1  dholland 			return (error);
    538       1.1  dholland 		}
    539       1.1  dholland 		mtx_lock(&np->n_mtx);
    540       1.1  dholland 		np->n_attrstamp = 0;
    541       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(vp);
    542       1.1  dholland 		if (vp->v_type == VDIR)
    543       1.1  dholland 			np->n_direofoffset = 0;
    544       1.1  dholland 		mtx_unlock(&np->n_mtx);
    545       1.1  dholland 		error = VOP_GETATTR(vp, &vattr, ap->a_cred);
    546       1.1  dholland 		if (error) {
    547       1.1  dholland 			if (NFS_ISV4(vp))
    548       1.1  dholland 				(void) nfsrpc_close(vp, 0, ap->a_td);
    549       1.1  dholland 			return (error);
    550       1.1  dholland 		}
    551       1.1  dholland 		mtx_lock(&np->n_mtx);
    552       1.1  dholland 		np->n_mtime = vattr.va_mtime;
    553       1.1  dholland 		if (NFS_ISV4(vp))
    554       1.1  dholland 			np->n_change = vattr.va_filerev;
    555       1.1  dholland 	} else {
    556       1.1  dholland 		mtx_unlock(&np->n_mtx);
    557       1.1  dholland 		error = VOP_GETATTR(vp, &vattr, ap->a_cred);
    558       1.1  dholland 		if (error) {
    559       1.1  dholland 			if (NFS_ISV4(vp))
    560       1.1  dholland 				(void) nfsrpc_close(vp, 0, ap->a_td);
    561       1.1  dholland 			return (error);
    562       1.1  dholland 		}
    563       1.1  dholland 		mtx_lock(&np->n_mtx);
    564       1.1  dholland 		if ((NFS_ISV4(vp) && np->n_change != vattr.va_filerev) ||
    565       1.1  dholland 		    NFS_TIMESPEC_COMPARE(&np->n_mtime, &vattr.va_mtime)) {
    566       1.1  dholland 			if (vp->v_type == VDIR)
    567       1.1  dholland 				np->n_direofoffset = 0;
    568       1.1  dholland 			mtx_unlock(&np->n_mtx);
    569       1.1  dholland 			error = ncl_vinvalbuf(vp, V_SAVE, ap->a_td, 1);
    570       1.1  dholland 			if (error == EINTR || error == EIO) {
    571       1.1  dholland 				if (NFS_ISV4(vp))
    572       1.1  dholland 					(void) nfsrpc_close(vp, 0, ap->a_td);
    573       1.1  dholland 				return (error);
    574       1.1  dholland 			}
    575       1.1  dholland 			mtx_lock(&np->n_mtx);
    576       1.1  dholland 			np->n_mtime = vattr.va_mtime;
    577       1.1  dholland 			if (NFS_ISV4(vp))
    578       1.1  dholland 				np->n_change = vattr.va_filerev;
    579       1.1  dholland 		}
    580       1.1  dholland 	}
    581       1.1  dholland 
    582       1.1  dholland 	/*
    583       1.1  dholland 	 * If the object has >= 1 O_DIRECT active opens, we disable caching.
    584       1.1  dholland 	 */
    585       1.1  dholland 	if (newnfs_directio_enable && (fmode & O_DIRECT) &&
    586       1.1  dholland 	    (vp->v_type == VREG)) {
    587       1.1  dholland 		if (np->n_directio_opens == 0) {
    588       1.1  dholland 			mtx_unlock(&np->n_mtx);
    589       1.1  dholland 			error = ncl_vinvalbuf(vp, V_SAVE, ap->a_td, 1);
    590       1.1  dholland 			if (error) {
    591       1.1  dholland 				if (NFS_ISV4(vp))
    592       1.1  dholland 					(void) nfsrpc_close(vp, 0, ap->a_td);
    593       1.1  dholland 				return (error);
    594       1.1  dholland 			}
    595       1.1  dholland 			mtx_lock(&np->n_mtx);
    596       1.1  dholland 			np->n_flag |= NNONCACHE;
    597       1.1  dholland 		}
    598       1.1  dholland 		np->n_directio_opens++;
    599       1.1  dholland 	}
    600       1.1  dholland 
    601       1.1  dholland 	/* If opened for writing via NFSv4.1 or later, mark that for pNFS. */
    602       1.1  dholland 	if (NFSHASPNFS(VFSTONFS(vp->v_mount)) && (fmode & FWRITE) != 0)
    603       1.1  dholland 		np->n_flag |= NWRITEOPENED;
    604       1.1  dholland 
    605       1.1  dholland 	/*
    606       1.1  dholland 	 * If this is an open for writing, capture a reference to the
    607       1.1  dholland 	 * credentials, so they can be used by ncl_putpages(). Using
    608       1.1  dholland 	 * these write credentials is preferable to the credentials of
    609       1.1  dholland 	 * whatever thread happens to be doing the VOP_PUTPAGES() since
    610       1.1  dholland 	 * the write RPCs are less likely to fail with EACCES.
    611       1.1  dholland 	 */
    612       1.1  dholland 	if ((fmode & FWRITE) != 0) {
    613       1.1  dholland 		cred = np->n_writecred;
    614       1.1  dholland 		np->n_writecred = crhold(ap->a_cred);
    615       1.1  dholland 	} else
    616       1.1  dholland 		cred = NULL;
    617       1.1  dholland 	mtx_unlock(&np->n_mtx);
    618       1.1  dholland 
    619       1.1  dholland 	if (cred != NULL)
    620       1.1  dholland 		crfree(cred);
    621       1.1  dholland 	vnode_create_vobject(vp, vattr.va_size, ap->a_td);
    622       1.1  dholland 	return (0);
    623       1.1  dholland }
    624       1.1  dholland 
    625       1.1  dholland /*
    626       1.1  dholland  * nfs close vnode op
    627       1.1  dholland  * What an NFS client should do upon close after writing is a debatable issue.
    628       1.1  dholland  * Most NFS clients push delayed writes to the server upon close, basically for
    629       1.1  dholland  * two reasons:
    630       1.1  dholland  * 1 - So that any write errors may be reported back to the client process
    631       1.1  dholland  *     doing the close system call. By far the two most likely errors are
    632       1.1  dholland  *     NFSERR_NOSPC and NFSERR_DQUOT to indicate space allocation failure.
    633       1.1  dholland  * 2 - To put a worst case upper bound on cache inconsistency between
    634       1.1  dholland  *     multiple clients for the file.
    635       1.1  dholland  * There is also a consistency problem for Version 2 of the protocol w.r.t.
    636       1.1  dholland  * not being able to tell if other clients are writing a file concurrently,
    637       1.1  dholland  * since there is no way of knowing if the changed modify time in the reply
    638       1.1  dholland  * is only due to the write for this client.
    639       1.1  dholland  * (NFS Version 3 provides weak cache consistency data in the reply that
    640       1.1  dholland  *  should be sufficient to detect and handle this case.)
    641       1.1  dholland  *
    642       1.1  dholland  * The current code does the following:
    643       1.1  dholland  * for NFS Version 2 - play it safe and flush/invalidate all dirty buffers
    644       1.1  dholland  * for NFS Version 3 - flush dirty buffers to the server but don't invalidate
    645       1.1  dholland  *                     or commit them (this satisfies 1 and 2 except for the
    646       1.1  dholland  *                     case where the server crashes after this close but
    647       1.1  dholland  *                     before the commit RPC, which is felt to be "good
    648       1.1  dholland  *                     enough". Changing the last argument to ncl_flush() to
    649       1.1  dholland  *                     a 1 would force a commit operation, if it is felt a
    650       1.1  dholland  *                     commit is necessary now.
    651       1.1  dholland  * for NFS Version 4 - flush the dirty buffers and commit them, if
    652       1.1  dholland  *		       nfscl_mustflush() says this is necessary.
    653       1.1  dholland  *                     It is necessary if there is no write delegation held,
    654       1.1  dholland  *                     in order to satisfy open/close coherency.
    655       1.1  dholland  *                     If the file isn't cached on local stable storage,
    656       1.1  dholland  *                     it may be necessary in order to detect "out of space"
    657       1.1  dholland  *                     errors from the server, if the write delegation
    658       1.1  dholland  *                     issued by the server doesn't allow the file to grow.
    659       1.1  dholland  */
    660       1.1  dholland /* ARGSUSED */
    661       1.1  dholland static int
    662       1.1  dholland nfs_close(struct vop_close_args *ap)
    663       1.1  dholland {
    664       1.1  dholland 	struct vnode *vp = ap->a_vp;
    665       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
    666       1.1  dholland 	struct nfsvattr nfsva;
    667       1.1  dholland 	struct ucred *cred;
    668       1.1  dholland 	int error = 0, ret, localcred = 0;
    669       1.1  dholland 	int fmode = ap->a_fflag;
    670       1.1  dholland 
    671       1.1  dholland 	if ((vp->v_mount->mnt_kern_flag & MNTK_UNMOUNTF))
    672       1.1  dholland 		return (0);
    673       1.1  dholland 	/*
    674       1.1  dholland 	 * During shutdown, a_cred isn't valid, so just use root.
    675       1.1  dholland 	 */
    676       1.1  dholland 	if (ap->a_cred == NOCRED) {
    677       1.1  dholland 		cred = newnfs_getcred();
    678       1.1  dholland 		localcred = 1;
    679       1.1  dholland 	} else {
    680       1.1  dholland 		cred = ap->a_cred;
    681       1.1  dholland 	}
    682       1.1  dholland 	if (vp->v_type == VREG) {
    683       1.1  dholland 	    /*
    684       1.1  dholland 	     * Examine and clean dirty pages, regardless of NMODIFIED.
    685       1.1  dholland 	     * This closes a major hole in close-to-open consistency.
    686       1.1  dholland 	     * We want to push out all dirty pages (and buffers) on
    687       1.1  dholland 	     * close, regardless of whether they were dirtied by
    688       1.1  dholland 	     * mmap'ed writes or via write().
    689       1.1  dholland 	     */
    690       1.1  dholland 	    if (nfs_clean_pages_on_close && vp->v_object) {
    691       1.1  dholland 		VM_OBJECT_WLOCK(vp->v_object);
    692       1.1  dholland 		vm_object_page_clean(vp->v_object, 0, 0, 0);
    693       1.1  dholland 		VM_OBJECT_WUNLOCK(vp->v_object);
    694       1.1  dholland 	    }
    695       1.1  dholland 	    mtx_lock(&np->n_mtx);
    696       1.1  dholland 	    if (np->n_flag & NMODIFIED) {
    697       1.1  dholland 		mtx_unlock(&np->n_mtx);
    698       1.1  dholland 		if (NFS_ISV3(vp)) {
    699       1.1  dholland 		    /*
    700       1.1  dholland 		     * Under NFSv3 we have dirty buffers to dispose of.  We
    701       1.1  dholland 		     * must flush them to the NFS server.  We have the option
    702       1.1  dholland 		     * of waiting all the way through the commit rpc or just
    703       1.1  dholland 		     * waiting for the initial write.  The default is to only
    704       1.1  dholland 		     * wait through the initial write so the data is in the
    705       1.1  dholland 		     * server's cache, which is roughly similar to the state
    706       1.1  dholland 		     * a standard disk subsystem leaves the file in on close().
    707       1.1  dholland 		     *
    708       1.1  dholland 		     * We cannot clear the NMODIFIED bit in np->n_flag due to
    709       1.1  dholland 		     * potential races with other processes, and certainly
    710       1.1  dholland 		     * cannot clear it if we don't commit.
    711       1.1  dholland 		     * These races occur when there is no longer the old
    712       1.1  dholland 		     * traditional vnode locking implemented for Vnode Ops.
    713       1.1  dholland 		     */
    714       1.1  dholland 		    int cm = newnfs_commit_on_close ? 1 : 0;
    715       1.1  dholland 		    error = ncl_flush(vp, MNT_WAIT, cred, ap->a_td, cm, 0);
    716       1.1  dholland 		    /* np->n_flag &= ~NMODIFIED; */
    717       1.1  dholland 		} else if (NFS_ISV4(vp)) {
    718       1.1  dholland 			if (nfscl_mustflush(vp) != 0) {
    719       1.1  dholland 				int cm = newnfs_commit_on_close ? 1 : 0;
    720       1.1  dholland 				error = ncl_flush(vp, MNT_WAIT, cred, ap->a_td,
    721       1.1  dholland 				    cm, 0);
    722       1.1  dholland 				/*
    723       1.1  dholland 				 * as above w.r.t races when clearing
    724       1.1  dholland 				 * NMODIFIED.
    725       1.1  dholland 				 * np->n_flag &= ~NMODIFIED;
    726       1.1  dholland 				 */
    727       1.1  dholland 			}
    728       1.1  dholland 		} else
    729       1.1  dholland 		    error = ncl_vinvalbuf(vp, V_SAVE, ap->a_td, 1);
    730       1.1  dholland 		mtx_lock(&np->n_mtx);
    731       1.1  dholland 	    }
    732       1.1  dholland  	    /*
    733       1.1  dholland  	     * Invalidate the attribute cache in all cases.
    734       1.1  dholland  	     * An open is going to fetch fresh attrs any way, other procs
    735       1.1  dholland  	     * on this node that have file open will be forced to do an
    736       1.1  dholland  	     * otw attr fetch, but this is safe.
    737       1.1  dholland 	     * --> A user found that their RPC count dropped by 20% when
    738       1.1  dholland 	     *     this was commented out and I can't see any requirement
    739       1.1  dholland 	     *     for it, so I've disabled it when negative lookups are
    740       1.1  dholland 	     *     enabled. (What does this have to do with negative lookup
    741       1.1  dholland 	     *     caching? Well nothing, except it was reported by the
    742       1.1  dholland 	     *     same user that needed negative lookup caching and I wanted
    743       1.1  dholland 	     *     there to be a way to disable it to see if it
    744       1.1  dholland 	     *     is the cause of some caching/coherency issue that might
    745       1.1  dholland 	     *     crop up.)
    746       1.1  dholland  	     */
    747       1.1  dholland 	    if (VFSTONFS(vp->v_mount)->nm_negnametimeo == 0) {
    748       1.1  dholland 		    np->n_attrstamp = 0;
    749       1.1  dholland 		    KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(vp);
    750       1.1  dholland 	    }
    751       1.1  dholland 	    if (np->n_flag & NWRITEERR) {
    752       1.1  dholland 		np->n_flag &= ~NWRITEERR;
    753       1.1  dholland 		error = np->n_error;
    754       1.1  dholland 	    }
    755       1.1  dholland 	    mtx_unlock(&np->n_mtx);
    756       1.1  dholland 	}
    757       1.1  dholland 
    758       1.1  dholland 	if (NFS_ISV4(vp)) {
    759       1.1  dholland 		/*
    760       1.1  dholland 		 * Get attributes so "change" is up to date.
    761       1.1  dholland 		 */
    762  1.2.12.1     skrll 		if (error == 0 && nfscl_mustflush(vp) != 0 &&
    763  1.2.12.1     skrll 		    vp->v_type == VREG &&
    764  1.2.12.1     skrll 		    (VFSTONFS(vp->v_mount)->nm_flag & NFSMNT_NOCTO) == 0) {
    765       1.1  dholland 			ret = nfsrpc_getattr(vp, cred, ap->a_td, &nfsva,
    766       1.1  dholland 			    NULL);
    767       1.1  dholland 			if (!ret) {
    768       1.1  dholland 				np->n_change = nfsva.na_filerev;
    769       1.1  dholland 				(void) nfscl_loadattrcache(&vp, &nfsva, NULL,
    770       1.1  dholland 				    NULL, 0, 0);
    771       1.1  dholland 			}
    772       1.1  dholland 		}
    773       1.1  dholland 
    774       1.1  dholland 		/*
    775       1.1  dholland 		 * and do the close.
    776       1.1  dholland 		 */
    777       1.1  dholland 		ret = nfsrpc_close(vp, 0, ap->a_td);
    778       1.1  dholland 		if (!error && ret)
    779       1.1  dholland 			error = ret;
    780       1.1  dholland 		if (error)
    781       1.1  dholland 			error = nfscl_maperr(ap->a_td, error, (uid_t)0,
    782       1.1  dholland 			    (gid_t)0);
    783       1.1  dholland 	}
    784       1.1  dholland 	if (newnfs_directio_enable)
    785       1.1  dholland 		KASSERT((np->n_directio_asyncwr == 0),
    786       1.1  dholland 			("nfs_close: dirty unflushed (%d) directio buffers\n",
    787       1.1  dholland 			 np->n_directio_asyncwr));
    788       1.1  dholland 	if (newnfs_directio_enable && (fmode & O_DIRECT) && (vp->v_type == VREG)) {
    789       1.1  dholland 		mtx_lock(&np->n_mtx);
    790       1.1  dholland 		KASSERT((np->n_directio_opens > 0),
    791       1.1  dholland 			("nfs_close: unexpectedly value (0) of n_directio_opens\n"));
    792       1.1  dholland 		np->n_directio_opens--;
    793       1.1  dholland 		if (np->n_directio_opens == 0)
    794       1.1  dholland 			np->n_flag &= ~NNONCACHE;
    795       1.1  dholland 		mtx_unlock(&np->n_mtx);
    796       1.1  dholland 	}
    797       1.1  dholland 	if (localcred)
    798       1.1  dholland 		NFSFREECRED(cred);
    799       1.1  dholland 	return (error);
    800       1.1  dholland }
    801       1.1  dholland 
    802       1.1  dholland /*
    803       1.1  dholland  * nfs getattr call from vfs.
    804       1.1  dholland  */
    805       1.1  dholland static int
    806       1.1  dholland nfs_getattr(struct vop_getattr_args *ap)
    807       1.1  dholland {
    808       1.1  dholland 	struct vnode *vp = ap->a_vp;
    809       1.1  dholland 	struct thread *td = curthread;	/* XXX */
    810       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
    811       1.1  dholland 	int error = 0;
    812       1.1  dholland 	struct nfsvattr nfsva;
    813       1.1  dholland 	struct vattr *vap = ap->a_vap;
    814       1.1  dholland 	struct vattr vattr;
    815       1.1  dholland 
    816       1.1  dholland 	/*
    817       1.1  dholland 	 * Update local times for special files.
    818       1.1  dholland 	 */
    819       1.1  dholland 	mtx_lock(&np->n_mtx);
    820       1.1  dholland 	if (np->n_flag & (NACC | NUPD))
    821       1.1  dholland 		np->n_flag |= NCHG;
    822       1.1  dholland 	mtx_unlock(&np->n_mtx);
    823       1.1  dholland 	/*
    824       1.1  dholland 	 * First look in the cache.
    825       1.1  dholland 	 */
    826       1.1  dholland 	if (ncl_getattrcache(vp, &vattr) == 0) {
    827       1.1  dholland 		vap->va_type = vattr.va_type;
    828       1.1  dholland 		vap->va_mode = vattr.va_mode;
    829       1.1  dholland 		vap->va_nlink = vattr.va_nlink;
    830       1.1  dholland 		vap->va_uid = vattr.va_uid;
    831       1.1  dholland 		vap->va_gid = vattr.va_gid;
    832       1.1  dholland 		vap->va_fsid = vattr.va_fsid;
    833       1.1  dholland 		vap->va_fileid = vattr.va_fileid;
    834       1.1  dholland 		vap->va_size = vattr.va_size;
    835       1.1  dholland 		vap->va_blocksize = vattr.va_blocksize;
    836       1.1  dholland 		vap->va_atime = vattr.va_atime;
    837       1.1  dholland 		vap->va_mtime = vattr.va_mtime;
    838       1.1  dholland 		vap->va_ctime = vattr.va_ctime;
    839       1.1  dholland 		vap->va_gen = vattr.va_gen;
    840       1.1  dholland 		vap->va_flags = vattr.va_flags;
    841       1.1  dholland 		vap->va_rdev = vattr.va_rdev;
    842       1.1  dholland 		vap->va_bytes = vattr.va_bytes;
    843       1.1  dholland 		vap->va_filerev = vattr.va_filerev;
    844       1.1  dholland 		/*
    845       1.1  dholland 		 * Get the local modify time for the case of a write
    846       1.1  dholland 		 * delegation.
    847       1.1  dholland 		 */
    848       1.1  dholland 		nfscl_deleggetmodtime(vp, &vap->va_mtime);
    849       1.1  dholland 		return (0);
    850       1.1  dholland 	}
    851       1.1  dholland 
    852       1.1  dholland 	if (NFS_ISV34(vp) && nfs_prime_access_cache &&
    853       1.1  dholland 	    nfsaccess_cache_timeout > 0) {
    854  1.2.12.1     skrll 		NFSINCRGLOBAL(nfsstatsv1.accesscache_misses);
    855       1.1  dholland 		nfs34_access_otw(vp, NFSACCESS_ALL, td, ap->a_cred, NULL);
    856       1.1  dholland 		if (ncl_getattrcache(vp, ap->a_vap) == 0) {
    857       1.1  dholland 			nfscl_deleggetmodtime(vp, &ap->a_vap->va_mtime);
    858       1.1  dholland 			return (0);
    859       1.1  dholland 		}
    860       1.1  dholland 	}
    861       1.1  dholland 	error = nfsrpc_getattr(vp, ap->a_cred, td, &nfsva, NULL);
    862       1.1  dholland 	if (!error)
    863       1.1  dholland 		error = nfscl_loadattrcache(&vp, &nfsva, vap, NULL, 0, 0);
    864       1.1  dholland 	if (!error) {
    865       1.1  dholland 		/*
    866       1.1  dholland 		 * Get the local modify time for the case of a write
    867       1.1  dholland 		 * delegation.
    868       1.1  dholland 		 */
    869       1.1  dholland 		nfscl_deleggetmodtime(vp, &vap->va_mtime);
    870       1.1  dholland 	} else if (NFS_ISV4(vp)) {
    871       1.1  dholland 		error = nfscl_maperr(td, error, (uid_t)0, (gid_t)0);
    872       1.1  dholland 	}
    873       1.1  dholland 	return (error);
    874       1.1  dholland }
    875       1.1  dholland 
    876       1.1  dholland /*
    877       1.1  dholland  * nfs setattr call.
    878       1.1  dholland  */
    879       1.1  dholland static int
    880       1.1  dholland nfs_setattr(struct vop_setattr_args *ap)
    881       1.1  dholland {
    882       1.1  dholland 	struct vnode *vp = ap->a_vp;
    883       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
    884       1.1  dholland 	struct thread *td = curthread;	/* XXX */
    885       1.1  dholland 	struct vattr *vap = ap->a_vap;
    886       1.1  dholland 	int error = 0;
    887       1.1  dholland 	u_quad_t tsize;
    888       1.1  dholland 
    889       1.1  dholland #ifndef nolint
    890       1.1  dholland 	tsize = (u_quad_t)0;
    891       1.1  dholland #endif
    892       1.1  dholland 
    893       1.1  dholland 	/*
    894       1.1  dholland 	 * Setting of flags and marking of atimes are not supported.
    895       1.1  dholland 	 */
    896       1.1  dholland 	if (vap->va_flags != VNOVAL)
    897       1.1  dholland 		return (EOPNOTSUPP);
    898       1.1  dholland 
    899       1.1  dholland 	/*
    900       1.1  dholland 	 * Disallow write attempts if the filesystem is mounted read-only.
    901       1.1  dholland 	 */
    902       1.1  dholland   	if ((vap->va_flags != VNOVAL || vap->va_uid != (uid_t)VNOVAL ||
    903       1.1  dholland 	    vap->va_gid != (gid_t)VNOVAL || vap->va_atime.tv_sec != VNOVAL ||
    904       1.1  dholland 	    vap->va_mtime.tv_sec != VNOVAL || vap->va_mode != (mode_t)VNOVAL) &&
    905       1.1  dholland 	    (vp->v_mount->mnt_flag & MNT_RDONLY))
    906       1.1  dholland 		return (EROFS);
    907       1.1  dholland 	if (vap->va_size != VNOVAL) {
    908       1.1  dholland  		switch (vp->v_type) {
    909       1.1  dholland  		case VDIR:
    910       1.1  dholland  			return (EISDIR);
    911       1.1  dholland  		case VCHR:
    912       1.1  dholland  		case VBLK:
    913       1.1  dholland  		case VSOCK:
    914       1.1  dholland  		case VFIFO:
    915       1.1  dholland 			if (vap->va_mtime.tv_sec == VNOVAL &&
    916       1.1  dholland 			    vap->va_atime.tv_sec == VNOVAL &&
    917       1.1  dholland 			    vap->va_mode == (mode_t)VNOVAL &&
    918       1.1  dholland 			    vap->va_uid == (uid_t)VNOVAL &&
    919       1.1  dholland 			    vap->va_gid == (gid_t)VNOVAL)
    920       1.1  dholland 				return (0);
    921       1.1  dholland  			vap->va_size = VNOVAL;
    922       1.1  dholland  			break;
    923       1.1  dholland  		default:
    924       1.1  dholland 			/*
    925       1.1  dholland 			 * Disallow write attempts if the filesystem is
    926       1.1  dholland 			 * mounted read-only.
    927       1.1  dholland 			 */
    928       1.1  dholland 			if (vp->v_mount->mnt_flag & MNT_RDONLY)
    929       1.1  dholland 				return (EROFS);
    930       1.1  dholland 			/*
    931       1.1  dholland 			 *  We run vnode_pager_setsize() early (why?),
    932       1.1  dholland 			 * we must set np->n_size now to avoid vinvalbuf
    933       1.1  dholland 			 * V_SAVE races that might setsize a lower
    934       1.1  dholland 			 * value.
    935       1.1  dholland 			 */
    936       1.1  dholland 			mtx_lock(&np->n_mtx);
    937       1.1  dholland 			tsize = np->n_size;
    938       1.1  dholland 			mtx_unlock(&np->n_mtx);
    939       1.1  dholland 			error = ncl_meta_setsize(vp, ap->a_cred, td,
    940       1.1  dholland 			    vap->va_size);
    941       1.1  dholland 			mtx_lock(&np->n_mtx);
    942       1.1  dholland  			if (np->n_flag & NMODIFIED) {
    943       1.1  dholland 			    tsize = np->n_size;
    944       1.1  dholland 			    mtx_unlock(&np->n_mtx);
    945       1.1  dholland  			    if (vap->va_size == 0)
    946       1.1  dholland  				error = ncl_vinvalbuf(vp, 0, td, 1);
    947       1.1  dholland  			    else
    948       1.1  dholland  				error = ncl_vinvalbuf(vp, V_SAVE, td, 1);
    949       1.1  dholland  			    if (error) {
    950       1.1  dholland 				vnode_pager_setsize(vp, tsize);
    951       1.1  dholland 				return (error);
    952       1.1  dholland 			    }
    953       1.1  dholland 			    /*
    954       1.1  dholland 			     * Call nfscl_delegmodtime() to set the modify time
    955       1.1  dholland 			     * locally, as required.
    956       1.1  dholland 			     */
    957       1.1  dholland 			    nfscl_delegmodtime(vp);
    958       1.1  dholland  			} else
    959       1.1  dholland 			    mtx_unlock(&np->n_mtx);
    960       1.1  dholland 			/*
    961       1.1  dholland 			 * np->n_size has already been set to vap->va_size
    962       1.1  dholland 			 * in ncl_meta_setsize(). We must set it again since
    963       1.1  dholland 			 * nfs_loadattrcache() could be called through
    964       1.1  dholland 			 * ncl_meta_setsize() and could modify np->n_size.
    965       1.1  dholland 			 */
    966       1.1  dholland 			mtx_lock(&np->n_mtx);
    967       1.1  dholland  			np->n_vattr.na_size = np->n_size = vap->va_size;
    968       1.1  dholland 			mtx_unlock(&np->n_mtx);
    969  1.2.12.1     skrll   		}
    970       1.1  dholland   	} else {
    971       1.1  dholland 		mtx_lock(&np->n_mtx);
    972       1.1  dholland 		if ((vap->va_mtime.tv_sec != VNOVAL || vap->va_atime.tv_sec != VNOVAL) &&
    973       1.1  dholland 		    (np->n_flag & NMODIFIED) && vp->v_type == VREG) {
    974       1.1  dholland 			mtx_unlock(&np->n_mtx);
    975       1.1  dholland 			if ((error = ncl_vinvalbuf(vp, V_SAVE, td, 1)) != 0 &&
    976       1.1  dholland 			    (error == EINTR || error == EIO))
    977       1.1  dholland 				return (error);
    978       1.1  dholland 		} else
    979       1.1  dholland 			mtx_unlock(&np->n_mtx);
    980       1.1  dholland 	}
    981       1.1  dholland 	error = nfs_setattrrpc(vp, vap, ap->a_cred, td);
    982       1.1  dholland 	if (error && vap->va_size != VNOVAL) {
    983       1.1  dholland 		mtx_lock(&np->n_mtx);
    984       1.1  dholland 		np->n_size = np->n_vattr.na_size = tsize;
    985       1.1  dholland 		vnode_pager_setsize(vp, tsize);
    986       1.1  dholland 		mtx_unlock(&np->n_mtx);
    987       1.1  dholland 	}
    988       1.1  dholland 	return (error);
    989       1.1  dholland }
    990       1.1  dholland 
    991       1.1  dholland /*
    992       1.1  dholland  * Do an nfs setattr rpc.
    993       1.1  dholland  */
    994       1.1  dholland static int
    995       1.1  dholland nfs_setattrrpc(struct vnode *vp, struct vattr *vap, struct ucred *cred,
    996       1.1  dholland     struct thread *td)
    997       1.1  dholland {
    998       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
    999       1.1  dholland 	int error, ret, attrflag, i;
   1000       1.1  dholland 	struct nfsvattr nfsva;
   1001       1.1  dholland 
   1002       1.1  dholland 	if (NFS_ISV34(vp)) {
   1003       1.1  dholland 		mtx_lock(&np->n_mtx);
   1004       1.1  dholland 		for (i = 0; i < NFS_ACCESSCACHESIZE; i++)
   1005       1.1  dholland 			np->n_accesscache[i].stamp = 0;
   1006       1.1  dholland 		np->n_flag |= NDELEGMOD;
   1007       1.1  dholland 		mtx_unlock(&np->n_mtx);
   1008       1.1  dholland 		KDTRACE_NFS_ACCESSCACHE_FLUSH_DONE(vp);
   1009       1.1  dholland 	}
   1010       1.1  dholland 	error = nfsrpc_setattr(vp, vap, NULL, cred, td, &nfsva, &attrflag,
   1011       1.1  dholland 	    NULL);
   1012       1.1  dholland 	if (attrflag) {
   1013       1.1  dholland 		ret = nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 0, 1);
   1014       1.1  dholland 		if (ret && !error)
   1015       1.1  dholland 			error = ret;
   1016       1.1  dholland 	}
   1017       1.1  dholland 	if (error && NFS_ISV4(vp))
   1018       1.1  dholland 		error = nfscl_maperr(td, error, vap->va_uid, vap->va_gid);
   1019       1.1  dholland 	return (error);
   1020       1.1  dholland }
   1021       1.1  dholland 
   1022       1.1  dholland /*
   1023       1.1  dholland  * nfs lookup call, one step at a time...
   1024       1.1  dholland  * First look in cache
   1025       1.1  dholland  * If not found, unlock the directory nfsnode and do the rpc
   1026       1.1  dholland  */
   1027       1.1  dholland static int
   1028       1.1  dholland nfs_lookup(struct vop_lookup_args *ap)
   1029       1.1  dholland {
   1030       1.1  dholland 	struct componentname *cnp = ap->a_cnp;
   1031       1.1  dholland 	struct vnode *dvp = ap->a_dvp;
   1032       1.1  dholland 	struct vnode **vpp = ap->a_vpp;
   1033       1.1  dholland 	struct mount *mp = dvp->v_mount;
   1034       1.1  dholland 	int flags = cnp->cn_flags;
   1035       1.1  dholland 	struct vnode *newvp;
   1036       1.1  dholland 	struct nfsmount *nmp;
   1037       1.1  dholland 	struct nfsnode *np, *newnp;
   1038       1.1  dholland 	int error = 0, attrflag, dattrflag, ltype, ncticks;
   1039       1.1  dholland 	struct thread *td = cnp->cn_thread;
   1040       1.1  dholland 	struct nfsfh *nfhp;
   1041       1.1  dholland 	struct nfsvattr dnfsva, nfsva;
   1042       1.1  dholland 	struct vattr vattr;
   1043       1.1  dholland 	struct timespec nctime;
   1044       1.1  dholland 
   1045       1.1  dholland 	*vpp = NULLVP;
   1046       1.1  dholland 	if ((flags & ISLASTCN) && (mp->mnt_flag & MNT_RDONLY) &&
   1047       1.1  dholland 	    (cnp->cn_nameiop == DELETE || cnp->cn_nameiop == RENAME))
   1048       1.1  dholland 		return (EROFS);
   1049       1.1  dholland 	if (dvp->v_type != VDIR)
   1050       1.1  dholland 		return (ENOTDIR);
   1051       1.1  dholland 	nmp = VFSTONFS(mp);
   1052       1.1  dholland 	np = VTONFS(dvp);
   1053       1.1  dholland 
   1054       1.1  dholland 	/* For NFSv4, wait until any remove is done. */
   1055       1.1  dholland 	mtx_lock(&np->n_mtx);
   1056       1.1  dholland 	while (NFSHASNFSV4(nmp) && (np->n_flag & NREMOVEINPROG)) {
   1057       1.1  dholland 		np->n_flag |= NREMOVEWANT;
   1058       1.1  dholland 		(void) msleep((caddr_t)np, &np->n_mtx, PZERO, "nfslkup", 0);
   1059       1.1  dholland 	}
   1060       1.1  dholland 	mtx_unlock(&np->n_mtx);
   1061       1.1  dholland 
   1062       1.1  dholland 	if ((error = VOP_ACCESS(dvp, VEXEC, cnp->cn_cred, td)) != 0)
   1063       1.1  dholland 		return (error);
   1064       1.1  dholland 	error = cache_lookup(dvp, vpp, cnp, &nctime, &ncticks);
   1065       1.1  dholland 	if (error > 0 && error != ENOENT)
   1066       1.1  dholland 		return (error);
   1067       1.1  dholland 	if (error == -1) {
   1068       1.1  dholland 		/*
   1069       1.1  dholland 		 * Lookups of "." are special and always return the
   1070       1.1  dholland 		 * current directory.  cache_lookup() already handles
   1071       1.1  dholland 		 * associated locking bookkeeping, etc.
   1072       1.1  dholland 		 */
   1073       1.1  dholland 		if (cnp->cn_namelen == 1 && cnp->cn_nameptr[0] == '.') {
   1074       1.1  dholland 			/* XXX: Is this really correct? */
   1075       1.1  dholland 			if (cnp->cn_nameiop != LOOKUP &&
   1076       1.1  dholland 			    (flags & ISLASTCN))
   1077       1.1  dholland 				cnp->cn_flags |= SAVENAME;
   1078       1.1  dholland 			return (0);
   1079       1.1  dholland 		}
   1080       1.1  dholland 
   1081       1.1  dholland 		/*
   1082       1.1  dholland 		 * We only accept a positive hit in the cache if the
   1083       1.1  dholland 		 * change time of the file matches our cached copy.
   1084       1.1  dholland 		 * Otherwise, we discard the cache entry and fallback
   1085       1.1  dholland 		 * to doing a lookup RPC.  We also only trust cache
   1086       1.1  dholland 		 * entries for less than nm_nametimeo seconds.
   1087       1.1  dholland 		 *
   1088       1.1  dholland 		 * To better handle stale file handles and attributes,
   1089       1.1  dholland 		 * clear the attribute cache of this node if it is a
   1090       1.1  dholland 		 * leaf component, part of an open() call, and not
   1091       1.1  dholland 		 * locally modified before fetching the attributes.
   1092       1.1  dholland 		 * This should allow stale file handles to be detected
   1093       1.1  dholland 		 * here where we can fall back to a LOOKUP RPC to
   1094       1.1  dholland 		 * recover rather than having nfs_open() detect the
   1095       1.1  dholland 		 * stale file handle and failing open(2) with ESTALE.
   1096       1.1  dholland 		 */
   1097       1.1  dholland 		newvp = *vpp;
   1098       1.1  dholland 		newnp = VTONFS(newvp);
   1099       1.1  dholland 		if (!(nmp->nm_flag & NFSMNT_NOCTO) &&
   1100       1.1  dholland 		    (flags & (ISLASTCN | ISOPEN)) == (ISLASTCN | ISOPEN) &&
   1101       1.1  dholland 		    !(newnp->n_flag & NMODIFIED)) {
   1102       1.1  dholland 			mtx_lock(&newnp->n_mtx);
   1103       1.1  dholland 			newnp->n_attrstamp = 0;
   1104       1.1  dholland 			KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(newvp);
   1105       1.1  dholland 			mtx_unlock(&newnp->n_mtx);
   1106       1.1  dholland 		}
   1107       1.1  dholland 		if (nfscl_nodeleg(newvp, 0) == 0 ||
   1108       1.1  dholland 		    ((u_int)(ticks - ncticks) < (nmp->nm_nametimeo * hz) &&
   1109       1.1  dholland 		    VOP_GETATTR(newvp, &vattr, cnp->cn_cred) == 0 &&
   1110       1.1  dholland 		    timespeccmp(&vattr.va_ctime, &nctime, ==))) {
   1111  1.2.12.1     skrll 			NFSINCRGLOBAL(nfsstatsv1.lookupcache_hits);
   1112       1.1  dholland 			if (cnp->cn_nameiop != LOOKUP &&
   1113       1.1  dholland 			    (flags & ISLASTCN))
   1114       1.1  dholland 				cnp->cn_flags |= SAVENAME;
   1115       1.1  dholland 			return (0);
   1116       1.1  dholland 		}
   1117       1.1  dholland 		cache_purge(newvp);
   1118       1.1  dholland 		if (dvp != newvp)
   1119       1.1  dholland 			vput(newvp);
   1120       1.1  dholland 		else
   1121       1.1  dholland 			vrele(newvp);
   1122       1.1  dholland 		*vpp = NULLVP;
   1123       1.1  dholland 	} else if (error == ENOENT) {
   1124       1.1  dholland 		if (dvp->v_iflag & VI_DOOMED)
   1125       1.1  dholland 			return (ENOENT);
   1126       1.1  dholland 		/*
   1127       1.1  dholland 		 * We only accept a negative hit in the cache if the
   1128       1.1  dholland 		 * modification time of the parent directory matches
   1129       1.1  dholland 		 * the cached copy in the name cache entry.
   1130       1.1  dholland 		 * Otherwise, we discard all of the negative cache
   1131       1.1  dholland 		 * entries for this directory.  We also only trust
   1132       1.1  dholland 		 * negative cache entries for up to nm_negnametimeo
   1133       1.1  dholland 		 * seconds.
   1134       1.1  dholland 		 */
   1135       1.1  dholland 		if ((u_int)(ticks - ncticks) < (nmp->nm_negnametimeo * hz) &&
   1136       1.1  dholland 		    VOP_GETATTR(dvp, &vattr, cnp->cn_cred) == 0 &&
   1137       1.1  dholland 		    timespeccmp(&vattr.va_mtime, &nctime, ==)) {
   1138  1.2.12.1     skrll 			NFSINCRGLOBAL(nfsstatsv1.lookupcache_hits);
   1139       1.1  dholland 			return (ENOENT);
   1140       1.1  dholland 		}
   1141       1.1  dholland 		cache_purge_negative(dvp);
   1142       1.1  dholland 	}
   1143       1.1  dholland 
   1144       1.1  dholland 	error = 0;
   1145       1.1  dholland 	newvp = NULLVP;
   1146  1.2.12.1     skrll 	NFSINCRGLOBAL(nfsstatsv1.lookupcache_misses);
   1147       1.1  dholland 	error = nfsrpc_lookup(dvp, cnp->cn_nameptr, cnp->cn_namelen,
   1148       1.1  dholland 	    cnp->cn_cred, td, &dnfsva, &nfsva, &nfhp, &attrflag, &dattrflag,
   1149       1.1  dholland 	    NULL);
   1150       1.1  dholland 	if (dattrflag)
   1151       1.1  dholland 		(void) nfscl_loadattrcache(&dvp, &dnfsva, NULL, NULL, 0, 1);
   1152       1.1  dholland 	if (error) {
   1153       1.1  dholland 		if (newvp != NULLVP) {
   1154       1.1  dholland 			vput(newvp);
   1155       1.1  dholland 			*vpp = NULLVP;
   1156       1.1  dholland 		}
   1157       1.1  dholland 
   1158       1.1  dholland 		if (error != ENOENT) {
   1159       1.1  dholland 			if (NFS_ISV4(dvp))
   1160       1.1  dholland 				error = nfscl_maperr(td, error, (uid_t)0,
   1161       1.1  dholland 				    (gid_t)0);
   1162       1.1  dholland 			return (error);
   1163       1.1  dholland 		}
   1164       1.1  dholland 
   1165       1.1  dholland 		/* The requested file was not found. */
   1166       1.1  dholland 		if ((cnp->cn_nameiop == CREATE || cnp->cn_nameiop == RENAME) &&
   1167       1.1  dholland 		    (flags & ISLASTCN)) {
   1168       1.1  dholland 			/*
   1169       1.1  dholland 			 * XXX: UFS does a full VOP_ACCESS(dvp,
   1170       1.1  dholland 			 * VWRITE) here instead of just checking
   1171       1.1  dholland 			 * MNT_RDONLY.
   1172       1.1  dholland 			 */
   1173       1.1  dholland 			if (mp->mnt_flag & MNT_RDONLY)
   1174       1.1  dholland 				return (EROFS);
   1175       1.1  dholland 			cnp->cn_flags |= SAVENAME;
   1176       1.1  dholland 			return (EJUSTRETURN);
   1177       1.1  dholland 		}
   1178       1.1  dholland 
   1179  1.2.12.1     skrll 		if ((cnp->cn_flags & MAKEENTRY) != 0 && dattrflag) {
   1180       1.1  dholland 			/*
   1181       1.1  dholland 			 * Cache the modification time of the parent
   1182       1.1  dholland 			 * directory from the post-op attributes in
   1183       1.1  dholland 			 * the name cache entry.  The negative cache
   1184       1.1  dholland 			 * entry will be ignored once the directory
   1185       1.1  dholland 			 * has changed.  Don't bother adding the entry
   1186       1.1  dholland 			 * if the directory has already changed.
   1187       1.1  dholland 			 */
   1188       1.1  dholland 			mtx_lock(&np->n_mtx);
   1189       1.1  dholland 			if (timespeccmp(&np->n_vattr.na_mtime,
   1190       1.1  dholland 			    &dnfsva.na_mtime, ==)) {
   1191       1.1  dholland 				mtx_unlock(&np->n_mtx);
   1192       1.1  dholland 				cache_enter_time(dvp, NULL, cnp,
   1193       1.1  dholland 				    &dnfsva.na_mtime, NULL);
   1194       1.1  dholland 			} else
   1195       1.1  dholland 				mtx_unlock(&np->n_mtx);
   1196       1.1  dholland 		}
   1197       1.1  dholland 		return (ENOENT);
   1198       1.1  dholland 	}
   1199       1.1  dholland 
   1200       1.1  dholland 	/*
   1201       1.1  dholland 	 * Handle RENAME case...
   1202       1.1  dholland 	 */
   1203       1.1  dholland 	if (cnp->cn_nameiop == RENAME && (flags & ISLASTCN)) {
   1204       1.1  dholland 		if (NFS_CMPFH(np, nfhp->nfh_fh, nfhp->nfh_len)) {
   1205       1.1  dholland 			FREE((caddr_t)nfhp, M_NFSFH);
   1206       1.1  dholland 			return (EISDIR);
   1207       1.1  dholland 		}
   1208       1.1  dholland 		error = nfscl_nget(mp, dvp, nfhp, cnp, td, &np, NULL,
   1209       1.1  dholland 		    LK_EXCLUSIVE);
   1210       1.1  dholland 		if (error)
   1211       1.1  dholland 			return (error);
   1212       1.1  dholland 		newvp = NFSTOV(np);
   1213       1.1  dholland 		if (attrflag)
   1214       1.1  dholland 			(void) nfscl_loadattrcache(&newvp, &nfsva, NULL, NULL,
   1215       1.1  dholland 			    0, 1);
   1216       1.1  dholland 		*vpp = newvp;
   1217       1.1  dholland 		cnp->cn_flags |= SAVENAME;
   1218       1.1  dholland 		return (0);
   1219       1.1  dholland 	}
   1220       1.1  dholland 
   1221       1.1  dholland 	if (flags & ISDOTDOT) {
   1222       1.1  dholland 		ltype = NFSVOPISLOCKED(dvp);
   1223       1.1  dholland 		error = vfs_busy(mp, MBF_NOWAIT);
   1224       1.1  dholland 		if (error != 0) {
   1225       1.1  dholland 			vfs_ref(mp);
   1226       1.1  dholland 			NFSVOPUNLOCK(dvp, 0);
   1227       1.1  dholland 			error = vfs_busy(mp, 0);
   1228       1.1  dholland 			NFSVOPLOCK(dvp, ltype | LK_RETRY);
   1229       1.1  dholland 			vfs_rel(mp);
   1230       1.1  dholland 			if (error == 0 && (dvp->v_iflag & VI_DOOMED)) {
   1231       1.1  dholland 				vfs_unbusy(mp);
   1232       1.1  dholland 				error = ENOENT;
   1233       1.1  dholland 			}
   1234       1.1  dholland 			if (error != 0)
   1235       1.1  dholland 				return (error);
   1236       1.1  dholland 		}
   1237       1.1  dholland 		NFSVOPUNLOCK(dvp, 0);
   1238       1.1  dholland 		error = nfscl_nget(mp, dvp, nfhp, cnp, td, &np, NULL,
   1239       1.1  dholland 		    cnp->cn_lkflags);
   1240       1.1  dholland 		if (error == 0)
   1241       1.1  dholland 			newvp = NFSTOV(np);
   1242       1.1  dholland 		vfs_unbusy(mp);
   1243       1.1  dholland 		if (newvp != dvp)
   1244       1.1  dholland 			NFSVOPLOCK(dvp, ltype | LK_RETRY);
   1245       1.1  dholland 		if (dvp->v_iflag & VI_DOOMED) {
   1246       1.1  dholland 			if (error == 0) {
   1247       1.1  dholland 				if (newvp == dvp)
   1248       1.1  dholland 					vrele(newvp);
   1249       1.1  dholland 				else
   1250       1.1  dholland 					vput(newvp);
   1251       1.1  dholland 			}
   1252       1.1  dholland 			error = ENOENT;
   1253       1.1  dholland 		}
   1254       1.1  dholland 		if (error != 0)
   1255       1.1  dholland 			return (error);
   1256       1.1  dholland 		if (attrflag)
   1257       1.1  dholland 			(void) nfscl_loadattrcache(&newvp, &nfsva, NULL, NULL,
   1258       1.1  dholland 			    0, 1);
   1259       1.1  dholland 	} else if (NFS_CMPFH(np, nfhp->nfh_fh, nfhp->nfh_len)) {
   1260       1.1  dholland 		FREE((caddr_t)nfhp, M_NFSFH);
   1261       1.1  dholland 		VREF(dvp);
   1262       1.1  dholland 		newvp = dvp;
   1263       1.1  dholland 		if (attrflag)
   1264       1.1  dholland 			(void) nfscl_loadattrcache(&newvp, &nfsva, NULL, NULL,
   1265       1.1  dholland 			    0, 1);
   1266       1.1  dholland 	} else {
   1267       1.1  dholland 		error = nfscl_nget(mp, dvp, nfhp, cnp, td, &np, NULL,
   1268       1.1  dholland 		    cnp->cn_lkflags);
   1269       1.1  dholland 		if (error)
   1270       1.1  dholland 			return (error);
   1271       1.1  dholland 		newvp = NFSTOV(np);
   1272       1.1  dholland 		if (attrflag)
   1273       1.1  dholland 			(void) nfscl_loadattrcache(&newvp, &nfsva, NULL, NULL,
   1274       1.1  dholland 			    0, 1);
   1275       1.1  dholland 		else if ((flags & (ISLASTCN | ISOPEN)) == (ISLASTCN | ISOPEN) &&
   1276       1.1  dholland 		    !(np->n_flag & NMODIFIED)) {
   1277       1.1  dholland 			/*
   1278       1.1  dholland 			 * Flush the attribute cache when opening a
   1279       1.1  dholland 			 * leaf node to ensure that fresh attributes
   1280       1.1  dholland 			 * are fetched in nfs_open() since we did not
   1281       1.1  dholland 			 * fetch attributes from the LOOKUP reply.
   1282       1.1  dholland 			 */
   1283       1.1  dholland 			mtx_lock(&np->n_mtx);
   1284       1.1  dholland 			np->n_attrstamp = 0;
   1285       1.1  dholland 			KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(newvp);
   1286       1.1  dholland 			mtx_unlock(&np->n_mtx);
   1287       1.1  dholland 		}
   1288       1.1  dholland 	}
   1289       1.1  dholland 	if (cnp->cn_nameiop != LOOKUP && (flags & ISLASTCN))
   1290       1.1  dholland 		cnp->cn_flags |= SAVENAME;
   1291       1.1  dholland 	if ((cnp->cn_flags & MAKEENTRY) &&
   1292       1.1  dholland 	    (cnp->cn_nameiop != DELETE || !(flags & ISLASTCN)) &&
   1293       1.1  dholland 	    attrflag != 0 && (newvp->v_type != VDIR || dattrflag != 0))
   1294       1.1  dholland 		cache_enter_time(dvp, newvp, cnp, &nfsva.na_ctime,
   1295       1.1  dholland 		    newvp->v_type != VDIR ? NULL : &dnfsva.na_ctime);
   1296       1.1  dholland 	*vpp = newvp;
   1297       1.1  dholland 	return (0);
   1298       1.1  dholland }
   1299       1.1  dholland 
   1300       1.1  dholland /*
   1301       1.1  dholland  * nfs read call.
   1302       1.1  dholland  * Just call ncl_bioread() to do the work.
   1303       1.1  dholland  */
   1304       1.1  dholland static int
   1305       1.1  dholland nfs_read(struct vop_read_args *ap)
   1306       1.1  dholland {
   1307       1.1  dholland 	struct vnode *vp = ap->a_vp;
   1308       1.1  dholland 
   1309       1.1  dholland 	switch (vp->v_type) {
   1310       1.1  dholland 	case VREG:
   1311       1.1  dholland 		return (ncl_bioread(vp, ap->a_uio, ap->a_ioflag, ap->a_cred));
   1312       1.1  dholland 	case VDIR:
   1313       1.1  dholland 		return (EISDIR);
   1314       1.1  dholland 	default:
   1315       1.1  dholland 		return (EOPNOTSUPP);
   1316       1.1  dholland 	}
   1317       1.1  dholland }
   1318       1.1  dholland 
   1319       1.1  dholland /*
   1320       1.1  dholland  * nfs readlink call
   1321       1.1  dholland  */
   1322       1.1  dholland static int
   1323       1.1  dholland nfs_readlink(struct vop_readlink_args *ap)
   1324       1.1  dholland {
   1325       1.1  dholland 	struct vnode *vp = ap->a_vp;
   1326       1.1  dholland 
   1327       1.1  dholland 	if (vp->v_type != VLNK)
   1328       1.1  dholland 		return (EINVAL);
   1329       1.1  dholland 	return (ncl_bioread(vp, ap->a_uio, 0, ap->a_cred));
   1330       1.1  dholland }
   1331       1.1  dholland 
   1332       1.1  dholland /*
   1333       1.1  dholland  * Do a readlink rpc.
   1334       1.1  dholland  * Called by ncl_doio() from below the buffer cache.
   1335       1.1  dholland  */
   1336       1.1  dholland int
   1337       1.1  dholland ncl_readlinkrpc(struct vnode *vp, struct uio *uiop, struct ucred *cred)
   1338       1.1  dholland {
   1339       1.1  dholland 	int error, ret, attrflag;
   1340       1.1  dholland 	struct nfsvattr nfsva;
   1341       1.1  dholland 
   1342       1.1  dholland 	error = nfsrpc_readlink(vp, uiop, cred, uiop->uio_td, &nfsva,
   1343       1.1  dholland 	    &attrflag, NULL);
   1344       1.1  dholland 	if (attrflag) {
   1345       1.1  dholland 		ret = nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 0, 1);
   1346       1.1  dholland 		if (ret && !error)
   1347       1.1  dholland 			error = ret;
   1348       1.1  dholland 	}
   1349       1.1  dholland 	if (error && NFS_ISV4(vp))
   1350       1.1  dholland 		error = nfscl_maperr(uiop->uio_td, error, (uid_t)0, (gid_t)0);
   1351       1.1  dholland 	return (error);
   1352       1.1  dholland }
   1353       1.1  dholland 
   1354       1.1  dholland /*
   1355       1.1  dholland  * nfs read rpc call
   1356       1.1  dholland  * Ditto above
   1357       1.1  dholland  */
   1358       1.1  dholland int
   1359       1.1  dholland ncl_readrpc(struct vnode *vp, struct uio *uiop, struct ucred *cred)
   1360       1.1  dholland {
   1361       1.1  dholland 	int error, ret, attrflag;
   1362       1.1  dholland 	struct nfsvattr nfsva;
   1363       1.1  dholland 	struct nfsmount *nmp;
   1364       1.1  dholland 
   1365       1.1  dholland 	nmp = VFSTONFS(vnode_mount(vp));
   1366       1.1  dholland 	error = EIO;
   1367       1.1  dholland 	attrflag = 0;
   1368       1.1  dholland 	if (NFSHASPNFS(nmp))
   1369       1.1  dholland 		error = nfscl_doiods(vp, uiop, NULL, NULL,
   1370       1.1  dholland 		    NFSV4OPEN_ACCESSREAD, cred, uiop->uio_td);
   1371       1.1  dholland 	NFSCL_DEBUG(4, "readrpc: aft doiods=%d\n", error);
   1372       1.1  dholland 	if (error != 0)
   1373       1.1  dholland 		error = nfsrpc_read(vp, uiop, cred, uiop->uio_td, &nfsva,
   1374       1.1  dholland 		    &attrflag, NULL);
   1375       1.1  dholland 	if (attrflag) {
   1376       1.1  dholland 		ret = nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 0, 1);
   1377       1.1  dholland 		if (ret && !error)
   1378       1.1  dholland 			error = ret;
   1379       1.1  dholland 	}
   1380       1.1  dholland 	if (error && NFS_ISV4(vp))
   1381       1.1  dholland 		error = nfscl_maperr(uiop->uio_td, error, (uid_t)0, (gid_t)0);
   1382       1.1  dholland 	return (error);
   1383       1.1  dholland }
   1384       1.1  dholland 
   1385       1.1  dholland /*
   1386       1.1  dholland  * nfs write call
   1387       1.1  dholland  */
   1388       1.1  dholland int
   1389       1.1  dholland ncl_writerpc(struct vnode *vp, struct uio *uiop, struct ucred *cred,
   1390       1.1  dholland     int *iomode, int *must_commit, int called_from_strategy)
   1391       1.1  dholland {
   1392       1.1  dholland 	struct nfsvattr nfsva;
   1393       1.1  dholland 	int error, attrflag, ret;
   1394       1.1  dholland 	struct nfsmount *nmp;
   1395       1.1  dholland 
   1396       1.1  dholland 	nmp = VFSTONFS(vnode_mount(vp));
   1397       1.1  dholland 	error = EIO;
   1398       1.1  dholland 	attrflag = 0;
   1399       1.1  dholland 	if (NFSHASPNFS(nmp))
   1400       1.1  dholland 		error = nfscl_doiods(vp, uiop, iomode, must_commit,
   1401       1.1  dholland 		    NFSV4OPEN_ACCESSWRITE, cred, uiop->uio_td);
   1402       1.1  dholland 	NFSCL_DEBUG(4, "writerpc: aft doiods=%d\n", error);
   1403       1.1  dholland 	if (error != 0)
   1404       1.1  dholland 		error = nfsrpc_write(vp, uiop, iomode, must_commit, cred,
   1405       1.1  dholland 		    uiop->uio_td, &nfsva, &attrflag, NULL,
   1406       1.1  dholland 		    called_from_strategy);
   1407       1.1  dholland 	if (attrflag) {
   1408       1.1  dholland 		if (VTONFS(vp)->n_flag & ND_NFSV4)
   1409       1.1  dholland 			ret = nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 1,
   1410       1.1  dholland 			    1);
   1411       1.1  dholland 		else
   1412       1.1  dholland 			ret = nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 0,
   1413       1.1  dholland 			    1);
   1414       1.1  dholland 		if (ret && !error)
   1415       1.1  dholland 			error = ret;
   1416       1.1  dholland 	}
   1417       1.1  dholland 	if (DOINGASYNC(vp))
   1418       1.1  dholland 		*iomode = NFSWRITE_FILESYNC;
   1419       1.1  dholland 	if (error && NFS_ISV4(vp))
   1420       1.1  dholland 		error = nfscl_maperr(uiop->uio_td, error, (uid_t)0, (gid_t)0);
   1421       1.1  dholland 	return (error);
   1422       1.1  dholland }
   1423       1.1  dholland 
   1424       1.1  dholland /*
   1425       1.1  dholland  * nfs mknod rpc
   1426       1.1  dholland  * For NFS v2 this is a kludge. Use a create rpc but with the IFMT bits of the
   1427       1.1  dholland  * mode set to specify the file type and the size field for rdev.
   1428       1.1  dholland  */
   1429       1.1  dholland static int
   1430       1.1  dholland nfs_mknodrpc(struct vnode *dvp, struct vnode **vpp, struct componentname *cnp,
   1431       1.1  dholland     struct vattr *vap)
   1432       1.1  dholland {
   1433       1.1  dholland 	struct nfsvattr nfsva, dnfsva;
   1434       1.1  dholland 	struct vnode *newvp = NULL;
   1435       1.1  dholland 	struct nfsnode *np = NULL, *dnp;
   1436       1.1  dholland 	struct nfsfh *nfhp;
   1437       1.1  dholland 	struct vattr vattr;
   1438       1.1  dholland 	int error = 0, attrflag, dattrflag;
   1439       1.1  dholland 	u_int32_t rdev;
   1440       1.1  dholland 
   1441       1.1  dholland 	if (vap->va_type == VCHR || vap->va_type == VBLK)
   1442       1.1  dholland 		rdev = vap->va_rdev;
   1443       1.1  dholland 	else if (vap->va_type == VFIFO || vap->va_type == VSOCK)
   1444       1.1  dholland 		rdev = 0xffffffff;
   1445       1.1  dholland 	else
   1446       1.1  dholland 		return (EOPNOTSUPP);
   1447       1.1  dholland 	if ((error = VOP_GETATTR(dvp, &vattr, cnp->cn_cred)))
   1448       1.1  dholland 		return (error);
   1449       1.1  dholland 	error = nfsrpc_mknod(dvp, cnp->cn_nameptr, cnp->cn_namelen, vap,
   1450       1.1  dholland 	    rdev, vap->va_type, cnp->cn_cred, cnp->cn_thread, &dnfsva,
   1451       1.1  dholland 	    &nfsva, &nfhp, &attrflag, &dattrflag, NULL);
   1452       1.1  dholland 	if (!error) {
   1453       1.1  dholland 		if (!nfhp)
   1454       1.1  dholland 			(void) nfsrpc_lookup(dvp, cnp->cn_nameptr,
   1455       1.1  dholland 			    cnp->cn_namelen, cnp->cn_cred, cnp->cn_thread,
   1456       1.1  dholland 			    &dnfsva, &nfsva, &nfhp, &attrflag, &dattrflag,
   1457       1.1  dholland 			    NULL);
   1458       1.1  dholland 		if (nfhp)
   1459       1.1  dholland 			error = nfscl_nget(dvp->v_mount, dvp, nfhp, cnp,
   1460       1.1  dholland 			    cnp->cn_thread, &np, NULL, LK_EXCLUSIVE);
   1461       1.1  dholland 	}
   1462       1.1  dholland 	if (dattrflag)
   1463       1.1  dholland 		(void) nfscl_loadattrcache(&dvp, &dnfsva, NULL, NULL, 0, 1);
   1464       1.1  dholland 	if (!error) {
   1465       1.1  dholland 		newvp = NFSTOV(np);
   1466       1.1  dholland 		if (attrflag != 0) {
   1467       1.1  dholland 			error = nfscl_loadattrcache(&newvp, &nfsva, NULL, NULL,
   1468       1.1  dholland 			    0, 1);
   1469       1.1  dholland 			if (error != 0)
   1470       1.1  dholland 				vput(newvp);
   1471       1.1  dholland 		}
   1472       1.1  dholland 	}
   1473       1.1  dholland 	if (!error) {
   1474       1.1  dholland 		*vpp = newvp;
   1475       1.1  dholland 	} else if (NFS_ISV4(dvp)) {
   1476       1.1  dholland 		error = nfscl_maperr(cnp->cn_thread, error, vap->va_uid,
   1477       1.1  dholland 		    vap->va_gid);
   1478       1.1  dholland 	}
   1479       1.1  dholland 	dnp = VTONFS(dvp);
   1480       1.1  dholland 	mtx_lock(&dnp->n_mtx);
   1481       1.1  dholland 	dnp->n_flag |= NMODIFIED;
   1482       1.1  dholland 	if (!dattrflag) {
   1483       1.1  dholland 		dnp->n_attrstamp = 0;
   1484       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(dvp);
   1485       1.1  dholland 	}
   1486       1.1  dholland 	mtx_unlock(&dnp->n_mtx);
   1487       1.1  dholland 	return (error);
   1488       1.1  dholland }
   1489       1.1  dholland 
   1490       1.1  dholland /*
   1491       1.1  dholland  * nfs mknod vop
   1492       1.1  dholland  * just call nfs_mknodrpc() to do the work.
   1493       1.1  dholland  */
   1494       1.1  dholland /* ARGSUSED */
   1495       1.1  dholland static int
   1496       1.1  dholland nfs_mknod(struct vop_mknod_args *ap)
   1497       1.1  dholland {
   1498       1.1  dholland 	return (nfs_mknodrpc(ap->a_dvp, ap->a_vpp, ap->a_cnp, ap->a_vap));
   1499       1.1  dholland }
   1500       1.1  dholland 
   1501       1.1  dholland static struct mtx nfs_cverf_mtx;
   1502       1.1  dholland MTX_SYSINIT(nfs_cverf_mtx, &nfs_cverf_mtx, "NFS create verifier mutex",
   1503       1.1  dholland     MTX_DEF);
   1504       1.1  dholland 
   1505       1.1  dholland static nfsquad_t
   1506       1.1  dholland nfs_get_cverf(void)
   1507       1.1  dholland {
   1508       1.1  dholland 	static nfsquad_t cverf;
   1509       1.1  dholland 	nfsquad_t ret;
   1510       1.1  dholland 	static int cverf_initialized = 0;
   1511       1.1  dholland 
   1512       1.1  dholland 	mtx_lock(&nfs_cverf_mtx);
   1513       1.1  dholland 	if (cverf_initialized == 0) {
   1514       1.1  dholland 		cverf.lval[0] = arc4random();
   1515       1.1  dholland 		cverf.lval[1] = arc4random();
   1516       1.1  dholland 		cverf_initialized = 1;
   1517       1.1  dholland 	} else
   1518       1.1  dholland 		cverf.qval++;
   1519       1.1  dholland 	ret = cverf;
   1520       1.1  dholland 	mtx_unlock(&nfs_cverf_mtx);
   1521       1.1  dholland 
   1522       1.1  dholland 	return (ret);
   1523       1.1  dholland }
   1524       1.1  dholland 
   1525       1.1  dholland /*
   1526       1.1  dholland  * nfs file create call
   1527       1.1  dholland  */
   1528       1.1  dholland static int
   1529       1.1  dholland nfs_create(struct vop_create_args *ap)
   1530       1.1  dholland {
   1531       1.1  dholland 	struct vnode *dvp = ap->a_dvp;
   1532       1.1  dholland 	struct vattr *vap = ap->a_vap;
   1533       1.1  dholland 	struct componentname *cnp = ap->a_cnp;
   1534       1.1  dholland 	struct nfsnode *np = NULL, *dnp;
   1535       1.1  dholland 	struct vnode *newvp = NULL;
   1536       1.1  dholland 	struct nfsmount *nmp;
   1537       1.1  dholland 	struct nfsvattr dnfsva, nfsva;
   1538       1.1  dholland 	struct nfsfh *nfhp;
   1539       1.1  dholland 	nfsquad_t cverf;
   1540       1.1  dholland 	int error = 0, attrflag, dattrflag, fmode = 0;
   1541       1.1  dholland 	struct vattr vattr;
   1542       1.1  dholland 
   1543       1.1  dholland 	/*
   1544       1.1  dholland 	 * Oops, not for me..
   1545       1.1  dholland 	 */
   1546       1.1  dholland 	if (vap->va_type == VSOCK)
   1547       1.1  dholland 		return (nfs_mknodrpc(dvp, ap->a_vpp, cnp, vap));
   1548       1.1  dholland 
   1549       1.1  dholland 	if ((error = VOP_GETATTR(dvp, &vattr, cnp->cn_cred)))
   1550       1.1  dholland 		return (error);
   1551       1.1  dholland 	if (vap->va_vaflags & VA_EXCLUSIVE)
   1552       1.1  dholland 		fmode |= O_EXCL;
   1553       1.1  dholland 	dnp = VTONFS(dvp);
   1554       1.1  dholland 	nmp = VFSTONFS(vnode_mount(dvp));
   1555       1.1  dholland again:
   1556       1.1  dholland 	/* For NFSv4, wait until any remove is done. */
   1557       1.1  dholland 	mtx_lock(&dnp->n_mtx);
   1558       1.1  dholland 	while (NFSHASNFSV4(nmp) && (dnp->n_flag & NREMOVEINPROG)) {
   1559       1.1  dholland 		dnp->n_flag |= NREMOVEWANT;
   1560       1.1  dholland 		(void) msleep((caddr_t)dnp, &dnp->n_mtx, PZERO, "nfscrt", 0);
   1561       1.1  dholland 	}
   1562       1.1  dholland 	mtx_unlock(&dnp->n_mtx);
   1563       1.1  dholland 
   1564       1.1  dholland 	cverf = nfs_get_cverf();
   1565       1.1  dholland 	error = nfsrpc_create(dvp, cnp->cn_nameptr, cnp->cn_namelen,
   1566       1.1  dholland 	    vap, cverf, fmode, cnp->cn_cred, cnp->cn_thread, &dnfsva, &nfsva,
   1567       1.1  dholland 	    &nfhp, &attrflag, &dattrflag, NULL);
   1568       1.1  dholland 	if (!error) {
   1569       1.1  dholland 		if (nfhp == NULL)
   1570       1.1  dholland 			(void) nfsrpc_lookup(dvp, cnp->cn_nameptr,
   1571       1.1  dholland 			    cnp->cn_namelen, cnp->cn_cred, cnp->cn_thread,
   1572       1.1  dholland 			    &dnfsva, &nfsva, &nfhp, &attrflag, &dattrflag,
   1573       1.1  dholland 			    NULL);
   1574       1.1  dholland 		if (nfhp != NULL)
   1575       1.1  dholland 			error = nfscl_nget(dvp->v_mount, dvp, nfhp, cnp,
   1576       1.1  dholland 			    cnp->cn_thread, &np, NULL, LK_EXCLUSIVE);
   1577       1.1  dholland 	}
   1578       1.1  dholland 	if (dattrflag)
   1579       1.1  dholland 		(void) nfscl_loadattrcache(&dvp, &dnfsva, NULL, NULL, 0, 1);
   1580       1.1  dholland 	if (!error) {
   1581       1.1  dholland 		newvp = NFSTOV(np);
   1582       1.1  dholland 		if (attrflag == 0)
   1583       1.1  dholland 			error = nfsrpc_getattr(newvp, cnp->cn_cred,
   1584       1.1  dholland 			    cnp->cn_thread, &nfsva, NULL);
   1585       1.1  dholland 		if (error == 0)
   1586       1.1  dholland 			error = nfscl_loadattrcache(&newvp, &nfsva, NULL, NULL,
   1587       1.1  dholland 			    0, 1);
   1588       1.1  dholland 	}
   1589       1.1  dholland 	if (error) {
   1590       1.1  dholland 		if (newvp != NULL) {
   1591       1.1  dholland 			vput(newvp);
   1592       1.1  dholland 			newvp = NULL;
   1593       1.1  dholland 		}
   1594       1.1  dholland 		if (NFS_ISV34(dvp) && (fmode & O_EXCL) &&
   1595       1.1  dholland 		    error == NFSERR_NOTSUPP) {
   1596       1.1  dholland 			fmode &= ~O_EXCL;
   1597       1.1  dholland 			goto again;
   1598       1.1  dholland 		}
   1599       1.1  dholland 	} else if (NFS_ISV34(dvp) && (fmode & O_EXCL)) {
   1600       1.1  dholland 		if (nfscl_checksattr(vap, &nfsva)) {
   1601       1.1  dholland 			error = nfsrpc_setattr(newvp, vap, NULL, cnp->cn_cred,
   1602       1.1  dholland 			    cnp->cn_thread, &nfsva, &attrflag, NULL);
   1603       1.1  dholland 			if (error && (vap->va_uid != (uid_t)VNOVAL ||
   1604       1.1  dholland 			    vap->va_gid != (gid_t)VNOVAL)) {
   1605       1.1  dholland 				/* try again without setting uid/gid */
   1606       1.1  dholland 				vap->va_uid = (uid_t)VNOVAL;
   1607       1.1  dholland 				vap->va_gid = (uid_t)VNOVAL;
   1608       1.1  dholland 				error = nfsrpc_setattr(newvp, vap, NULL,
   1609       1.1  dholland 				    cnp->cn_cred, cnp->cn_thread, &nfsva,
   1610       1.1  dholland 				    &attrflag, NULL);
   1611       1.1  dholland 			}
   1612       1.1  dholland 			if (attrflag)
   1613       1.1  dholland 				(void) nfscl_loadattrcache(&newvp, &nfsva, NULL,
   1614       1.1  dholland 				    NULL, 0, 1);
   1615       1.1  dholland 			if (error != 0)
   1616       1.1  dholland 				vput(newvp);
   1617       1.1  dholland 		}
   1618       1.1  dholland 	}
   1619       1.1  dholland 	if (!error) {
   1620       1.1  dholland 		if ((cnp->cn_flags & MAKEENTRY) && attrflag)
   1621       1.1  dholland 			cache_enter_time(dvp, newvp, cnp, &nfsva.na_ctime,
   1622       1.1  dholland 			    NULL);
   1623       1.1  dholland 		*ap->a_vpp = newvp;
   1624       1.1  dholland 	} else if (NFS_ISV4(dvp)) {
   1625       1.1  dholland 		error = nfscl_maperr(cnp->cn_thread, error, vap->va_uid,
   1626       1.1  dholland 		    vap->va_gid);
   1627       1.1  dholland 	}
   1628       1.1  dholland 	mtx_lock(&dnp->n_mtx);
   1629       1.1  dholland 	dnp->n_flag |= NMODIFIED;
   1630       1.1  dholland 	if (!dattrflag) {
   1631       1.1  dholland 		dnp->n_attrstamp = 0;
   1632       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(dvp);
   1633       1.1  dholland 	}
   1634       1.1  dholland 	mtx_unlock(&dnp->n_mtx);
   1635       1.1  dholland 	return (error);
   1636       1.1  dholland }
   1637       1.1  dholland 
   1638       1.1  dholland /*
   1639       1.1  dholland  * nfs file remove call
   1640       1.1  dholland  * To try and make nfs semantics closer to ufs semantics, a file that has
   1641       1.1  dholland  * other processes using the vnode is renamed instead of removed and then
   1642       1.1  dholland  * removed later on the last close.
   1643       1.1  dholland  * - If v_usecount > 1
   1644       1.1  dholland  *	  If a rename is not already in the works
   1645       1.1  dholland  *	     call nfs_sillyrename() to set it up
   1646       1.1  dholland  *     else
   1647       1.1  dholland  *	  do the remove rpc
   1648       1.1  dholland  */
   1649       1.1  dholland static int
   1650       1.1  dholland nfs_remove(struct vop_remove_args *ap)
   1651       1.1  dholland {
   1652       1.1  dholland 	struct vnode *vp = ap->a_vp;
   1653       1.1  dholland 	struct vnode *dvp = ap->a_dvp;
   1654       1.1  dholland 	struct componentname *cnp = ap->a_cnp;
   1655       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
   1656       1.1  dholland 	int error = 0;
   1657       1.1  dholland 	struct vattr vattr;
   1658       1.1  dholland 
   1659       1.1  dholland 	KASSERT((cnp->cn_flags & HASBUF) != 0, ("nfs_remove: no name"));
   1660       1.1  dholland 	KASSERT(vrefcnt(vp) > 0, ("nfs_remove: bad v_usecount"));
   1661       1.1  dholland 	if (vp->v_type == VDIR)
   1662       1.1  dholland 		error = EPERM;
   1663       1.1  dholland 	else if (vrefcnt(vp) == 1 || (np->n_sillyrename &&
   1664       1.1  dholland 	    VOP_GETATTR(vp, &vattr, cnp->cn_cred) == 0 &&
   1665       1.1  dholland 	    vattr.va_nlink > 1)) {
   1666       1.1  dholland 		/*
   1667       1.1  dholland 		 * Purge the name cache so that the chance of a lookup for
   1668       1.1  dholland 		 * the name succeeding while the remove is in progress is
   1669       1.1  dholland 		 * minimized. Without node locking it can still happen, such
   1670       1.1  dholland 		 * that an I/O op returns ESTALE, but since you get this if
   1671       1.1  dholland 		 * another host removes the file..
   1672       1.1  dholland 		 */
   1673       1.1  dholland 		cache_purge(vp);
   1674       1.1  dholland 		/*
   1675       1.1  dholland 		 * throw away biocache buffers, mainly to avoid
   1676       1.1  dholland 		 * unnecessary delayed writes later.
   1677       1.1  dholland 		 */
   1678       1.1  dholland 		error = ncl_vinvalbuf(vp, 0, cnp->cn_thread, 1);
   1679       1.1  dholland 		/* Do the rpc */
   1680       1.1  dholland 		if (error != EINTR && error != EIO)
   1681       1.1  dholland 			error = nfs_removerpc(dvp, vp, cnp->cn_nameptr,
   1682       1.1  dholland 			    cnp->cn_namelen, cnp->cn_cred, cnp->cn_thread);
   1683       1.1  dholland 		/*
   1684       1.1  dholland 		 * Kludge City: If the first reply to the remove rpc is lost..
   1685       1.1  dholland 		 *   the reply to the retransmitted request will be ENOENT
   1686       1.1  dholland 		 *   since the file was in fact removed
   1687       1.1  dholland 		 *   Therefore, we cheat and return success.
   1688       1.1  dholland 		 */
   1689       1.1  dholland 		if (error == ENOENT)
   1690       1.1  dholland 			error = 0;
   1691       1.1  dholland 	} else if (!np->n_sillyrename)
   1692       1.1  dholland 		error = nfs_sillyrename(dvp, vp, cnp);
   1693       1.1  dholland 	mtx_lock(&np->n_mtx);
   1694       1.1  dholland 	np->n_attrstamp = 0;
   1695       1.1  dholland 	mtx_unlock(&np->n_mtx);
   1696       1.1  dholland 	KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(vp);
   1697       1.1  dholland 	return (error);
   1698       1.1  dholland }
   1699       1.1  dholland 
   1700       1.1  dholland /*
   1701       1.1  dholland  * nfs file remove rpc called from nfs_inactive
   1702       1.1  dholland  */
   1703       1.1  dholland int
   1704       1.1  dholland ncl_removeit(struct sillyrename *sp, struct vnode *vp)
   1705       1.1  dholland {
   1706       1.1  dholland 	/*
   1707       1.1  dholland 	 * Make sure that the directory vnode is still valid.
   1708       1.1  dholland 	 * XXX we should lock sp->s_dvp here.
   1709       1.1  dholland 	 */
   1710       1.1  dholland 	if (sp->s_dvp->v_type == VBAD)
   1711       1.1  dholland 		return (0);
   1712       1.1  dholland 	return (nfs_removerpc(sp->s_dvp, vp, sp->s_name, sp->s_namlen,
   1713       1.1  dholland 	    sp->s_cred, NULL));
   1714       1.1  dholland }
   1715       1.1  dholland 
   1716       1.1  dholland /*
   1717       1.1  dholland  * Nfs remove rpc, called from nfs_remove() and ncl_removeit().
   1718       1.1  dholland  */
   1719       1.1  dholland static int
   1720       1.1  dholland nfs_removerpc(struct vnode *dvp, struct vnode *vp, char *name,
   1721       1.1  dholland     int namelen, struct ucred *cred, struct thread *td)
   1722       1.1  dholland {
   1723       1.1  dholland 	struct nfsvattr dnfsva;
   1724       1.1  dholland 	struct nfsnode *dnp = VTONFS(dvp);
   1725       1.1  dholland 	int error = 0, dattrflag;
   1726       1.1  dholland 
   1727       1.1  dholland 	mtx_lock(&dnp->n_mtx);
   1728       1.1  dholland 	dnp->n_flag |= NREMOVEINPROG;
   1729       1.1  dholland 	mtx_unlock(&dnp->n_mtx);
   1730       1.1  dholland 	error = nfsrpc_remove(dvp, name, namelen, vp, cred, td, &dnfsva,
   1731       1.1  dholland 	    &dattrflag, NULL);
   1732       1.1  dholland 	mtx_lock(&dnp->n_mtx);
   1733       1.1  dholland 	if ((dnp->n_flag & NREMOVEWANT)) {
   1734       1.1  dholland 		dnp->n_flag &= ~(NREMOVEWANT | NREMOVEINPROG);
   1735       1.1  dholland 		mtx_unlock(&dnp->n_mtx);
   1736       1.1  dholland 		wakeup((caddr_t)dnp);
   1737       1.1  dholland 	} else {
   1738       1.1  dholland 		dnp->n_flag &= ~NREMOVEINPROG;
   1739       1.1  dholland 		mtx_unlock(&dnp->n_mtx);
   1740       1.1  dholland 	}
   1741       1.1  dholland 	if (dattrflag)
   1742       1.1  dholland 		(void) nfscl_loadattrcache(&dvp, &dnfsva, NULL, NULL, 0, 1);
   1743       1.1  dholland 	mtx_lock(&dnp->n_mtx);
   1744       1.1  dholland 	dnp->n_flag |= NMODIFIED;
   1745       1.1  dholland 	if (!dattrflag) {
   1746       1.1  dholland 		dnp->n_attrstamp = 0;
   1747       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(dvp);
   1748       1.1  dholland 	}
   1749       1.1  dholland 	mtx_unlock(&dnp->n_mtx);
   1750       1.1  dholland 	if (error && NFS_ISV4(dvp))
   1751       1.1  dholland 		error = nfscl_maperr(td, error, (uid_t)0, (gid_t)0);
   1752       1.1  dholland 	return (error);
   1753       1.1  dholland }
   1754       1.1  dholland 
   1755       1.1  dholland /*
   1756       1.1  dholland  * nfs file rename call
   1757       1.1  dholland  */
   1758       1.1  dholland static int
   1759       1.1  dholland nfs_rename(struct vop_rename_args *ap)
   1760       1.1  dholland {
   1761       1.1  dholland 	struct vnode *fvp = ap->a_fvp;
   1762       1.1  dholland 	struct vnode *tvp = ap->a_tvp;
   1763       1.1  dholland 	struct vnode *fdvp = ap->a_fdvp;
   1764       1.1  dholland 	struct vnode *tdvp = ap->a_tdvp;
   1765       1.1  dholland 	struct componentname *tcnp = ap->a_tcnp;
   1766       1.1  dholland 	struct componentname *fcnp = ap->a_fcnp;
   1767       1.1  dholland 	struct nfsnode *fnp = VTONFS(ap->a_fvp);
   1768       1.1  dholland 	struct nfsnode *tdnp = VTONFS(ap->a_tdvp);
   1769       1.1  dholland 	struct nfsv4node *newv4 = NULL;
   1770       1.1  dholland 	int error;
   1771       1.1  dholland 
   1772       1.1  dholland 	KASSERT((tcnp->cn_flags & HASBUF) != 0 &&
   1773       1.1  dholland 	    (fcnp->cn_flags & HASBUF) != 0, ("nfs_rename: no name"));
   1774       1.1  dholland 	/* Check for cross-device rename */
   1775       1.1  dholland 	if ((fvp->v_mount != tdvp->v_mount) ||
   1776       1.1  dholland 	    (tvp && (fvp->v_mount != tvp->v_mount))) {
   1777       1.1  dholland 		error = EXDEV;
   1778       1.1  dholland 		goto out;
   1779       1.1  dholland 	}
   1780       1.1  dholland 
   1781       1.1  dholland 	if (fvp == tvp) {
   1782  1.2.12.1     skrll 		printf("nfs_rename: fvp == tvp (can't happen)\n");
   1783       1.1  dholland 		error = 0;
   1784       1.1  dholland 		goto out;
   1785       1.1  dholland 	}
   1786       1.1  dholland 	if ((error = NFSVOPLOCK(fvp, LK_EXCLUSIVE)) != 0)
   1787       1.1  dholland 		goto out;
   1788       1.1  dholland 
   1789       1.1  dholland 	/*
   1790       1.1  dholland 	 * We have to flush B_DELWRI data prior to renaming
   1791       1.1  dholland 	 * the file.  If we don't, the delayed-write buffers
   1792       1.1  dholland 	 * can be flushed out later after the file has gone stale
   1793       1.1  dholland 	 * under NFSV3.  NFSV2 does not have this problem because
   1794       1.1  dholland 	 * ( as far as I can tell ) it flushes dirty buffers more
   1795       1.1  dholland 	 * often.
   1796       1.1  dholland 	 *
   1797       1.1  dholland 	 * Skip the rename operation if the fsync fails, this can happen
   1798       1.1  dholland 	 * due to the server's volume being full, when we pushed out data
   1799       1.1  dholland 	 * that was written back to our cache earlier. Not checking for
   1800       1.1  dholland 	 * this condition can result in potential (silent) data loss.
   1801       1.1  dholland 	 */
   1802       1.1  dholland 	error = VOP_FSYNC(fvp, MNT_WAIT, fcnp->cn_thread);
   1803       1.1  dholland 	NFSVOPUNLOCK(fvp, 0);
   1804       1.1  dholland 	if (!error && tvp)
   1805       1.1  dholland 		error = VOP_FSYNC(tvp, MNT_WAIT, tcnp->cn_thread);
   1806       1.1  dholland 	if (error)
   1807       1.1  dholland 		goto out;
   1808       1.1  dholland 
   1809       1.1  dholland 	/*
   1810       1.1  dholland 	 * If the tvp exists and is in use, sillyrename it before doing the
   1811       1.1  dholland 	 * rename of the new file over it.
   1812       1.1  dholland 	 * XXX Can't sillyrename a directory.
   1813       1.1  dholland 	 */
   1814       1.1  dholland 	if (tvp && vrefcnt(tvp) > 1 && !VTONFS(tvp)->n_sillyrename &&
   1815       1.1  dholland 		tvp->v_type != VDIR && !nfs_sillyrename(tdvp, tvp, tcnp)) {
   1816       1.1  dholland 		vput(tvp);
   1817       1.1  dholland 		tvp = NULL;
   1818       1.1  dholland 	}
   1819       1.1  dholland 
   1820       1.1  dholland 	error = nfs_renamerpc(fdvp, fvp, fcnp->cn_nameptr, fcnp->cn_namelen,
   1821       1.1  dholland 	    tdvp, tvp, tcnp->cn_nameptr, tcnp->cn_namelen, tcnp->cn_cred,
   1822       1.1  dholland 	    tcnp->cn_thread);
   1823       1.1  dholland 
   1824       1.1  dholland 	if (error == 0 && NFS_ISV4(tdvp)) {
   1825       1.1  dholland 		/*
   1826       1.1  dholland 		 * For NFSv4, check to see if it is the same name and
   1827       1.1  dholland 		 * replace the name, if it is different.
   1828       1.1  dholland 		 */
   1829       1.1  dholland 		MALLOC(newv4, struct nfsv4node *,
   1830       1.1  dholland 		    sizeof (struct nfsv4node) +
   1831       1.1  dholland 		    tdnp->n_fhp->nfh_len + tcnp->cn_namelen - 1,
   1832       1.1  dholland 		    M_NFSV4NODE, M_WAITOK);
   1833       1.1  dholland 		mtx_lock(&tdnp->n_mtx);
   1834       1.1  dholland 		mtx_lock(&fnp->n_mtx);
   1835       1.1  dholland 		if (fnp->n_v4 != NULL && fvp->v_type == VREG &&
   1836       1.1  dholland 		    (fnp->n_v4->n4_namelen != tcnp->cn_namelen ||
   1837       1.1  dholland 		      NFSBCMP(tcnp->cn_nameptr, NFS4NODENAME(fnp->n_v4),
   1838       1.1  dholland 		      tcnp->cn_namelen) ||
   1839       1.1  dholland 		      tdnp->n_fhp->nfh_len != fnp->n_v4->n4_fhlen ||
   1840       1.1  dholland 		      NFSBCMP(tdnp->n_fhp->nfh_fh, fnp->n_v4->n4_data,
   1841       1.1  dholland 			tdnp->n_fhp->nfh_len))) {
   1842       1.1  dholland #ifdef notdef
   1843       1.1  dholland { char nnn[100]; int nnnl;
   1844       1.1  dholland nnnl = (tcnp->cn_namelen < 100) ? tcnp->cn_namelen : 99;
   1845       1.1  dholland bcopy(tcnp->cn_nameptr, nnn, nnnl);
   1846       1.1  dholland nnn[nnnl] = '\0';
   1847       1.1  dholland printf("ren replace=%s\n",nnn);
   1848       1.1  dholland }
   1849       1.1  dholland #endif
   1850       1.1  dholland 			FREE((caddr_t)fnp->n_v4, M_NFSV4NODE);
   1851       1.1  dholland 			fnp->n_v4 = newv4;
   1852       1.1  dholland 			newv4 = NULL;
   1853       1.1  dholland 			fnp->n_v4->n4_fhlen = tdnp->n_fhp->nfh_len;
   1854       1.1  dholland 			fnp->n_v4->n4_namelen = tcnp->cn_namelen;
   1855       1.1  dholland 			NFSBCOPY(tdnp->n_fhp->nfh_fh, fnp->n_v4->n4_data,
   1856       1.1  dholland 			    tdnp->n_fhp->nfh_len);
   1857       1.1  dholland 			NFSBCOPY(tcnp->cn_nameptr,
   1858       1.1  dholland 			    NFS4NODENAME(fnp->n_v4), tcnp->cn_namelen);
   1859       1.1  dholland 		}
   1860       1.1  dholland 		mtx_unlock(&tdnp->n_mtx);
   1861       1.1  dholland 		mtx_unlock(&fnp->n_mtx);
   1862       1.1  dholland 		if (newv4 != NULL)
   1863       1.1  dholland 			FREE((caddr_t)newv4, M_NFSV4NODE);
   1864       1.1  dholland 	}
   1865       1.1  dholland 
   1866       1.1  dholland 	if (fvp->v_type == VDIR) {
   1867       1.1  dholland 		if (tvp != NULL && tvp->v_type == VDIR)
   1868       1.1  dholland 			cache_purge(tdvp);
   1869       1.1  dholland 		cache_purge(fdvp);
   1870       1.1  dholland 	}
   1871       1.1  dholland 
   1872       1.1  dholland out:
   1873       1.1  dholland 	if (tdvp == tvp)
   1874       1.1  dholland 		vrele(tdvp);
   1875       1.1  dholland 	else
   1876       1.1  dholland 		vput(tdvp);
   1877       1.1  dholland 	if (tvp)
   1878       1.1  dholland 		vput(tvp);
   1879       1.1  dholland 	vrele(fdvp);
   1880       1.1  dholland 	vrele(fvp);
   1881       1.1  dholland 	/*
   1882       1.1  dholland 	 * Kludge: Map ENOENT => 0 assuming that it is a reply to a retry.
   1883       1.1  dholland 	 */
   1884       1.1  dholland 	if (error == ENOENT)
   1885       1.1  dholland 		error = 0;
   1886       1.1  dholland 	return (error);
   1887       1.1  dholland }
   1888       1.1  dholland 
   1889       1.1  dholland /*
   1890       1.1  dholland  * nfs file rename rpc called from nfs_remove() above
   1891       1.1  dholland  */
   1892       1.1  dholland static int
   1893       1.1  dholland nfs_renameit(struct vnode *sdvp, struct vnode *svp, struct componentname *scnp,
   1894       1.1  dholland     struct sillyrename *sp)
   1895       1.1  dholland {
   1896       1.1  dholland 
   1897       1.1  dholland 	return (nfs_renamerpc(sdvp, svp, scnp->cn_nameptr, scnp->cn_namelen,
   1898       1.1  dholland 	    sdvp, NULL, sp->s_name, sp->s_namlen, scnp->cn_cred,
   1899       1.1  dholland 	    scnp->cn_thread));
   1900       1.1  dholland }
   1901       1.1  dholland 
   1902       1.1  dholland /*
   1903       1.1  dholland  * Do an nfs rename rpc. Called from nfs_rename() and nfs_renameit().
   1904       1.1  dholland  */
   1905       1.1  dholland static int
   1906       1.1  dholland nfs_renamerpc(struct vnode *fdvp, struct vnode *fvp, char *fnameptr,
   1907       1.1  dholland     int fnamelen, struct vnode *tdvp, struct vnode *tvp, char *tnameptr,
   1908       1.1  dholland     int tnamelen, struct ucred *cred, struct thread *td)
   1909       1.1  dholland {
   1910       1.1  dholland 	struct nfsvattr fnfsva, tnfsva;
   1911       1.1  dholland 	struct nfsnode *fdnp = VTONFS(fdvp);
   1912       1.1  dholland 	struct nfsnode *tdnp = VTONFS(tdvp);
   1913       1.1  dholland 	int error = 0, fattrflag, tattrflag;
   1914       1.1  dholland 
   1915       1.1  dholland 	error = nfsrpc_rename(fdvp, fvp, fnameptr, fnamelen, tdvp, tvp,
   1916       1.1  dholland 	    tnameptr, tnamelen, cred, td, &fnfsva, &tnfsva, &fattrflag,
   1917       1.1  dholland 	    &tattrflag, NULL, NULL);
   1918       1.1  dholland 	mtx_lock(&fdnp->n_mtx);
   1919       1.1  dholland 	fdnp->n_flag |= NMODIFIED;
   1920       1.1  dholland 	if (fattrflag != 0) {
   1921       1.1  dholland 		mtx_unlock(&fdnp->n_mtx);
   1922       1.1  dholland 		(void) nfscl_loadattrcache(&fdvp, &fnfsva, NULL, NULL, 0, 1);
   1923       1.1  dholland 	} else {
   1924       1.1  dholland 		fdnp->n_attrstamp = 0;
   1925       1.1  dholland 		mtx_unlock(&fdnp->n_mtx);
   1926       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(fdvp);
   1927       1.1  dholland 	}
   1928       1.1  dholland 	mtx_lock(&tdnp->n_mtx);
   1929       1.1  dholland 	tdnp->n_flag |= NMODIFIED;
   1930       1.1  dholland 	if (tattrflag != 0) {
   1931       1.1  dholland 		mtx_unlock(&tdnp->n_mtx);
   1932       1.1  dholland 		(void) nfscl_loadattrcache(&tdvp, &tnfsva, NULL, NULL, 0, 1);
   1933       1.1  dholland 	} else {
   1934       1.1  dholland 		tdnp->n_attrstamp = 0;
   1935       1.1  dholland 		mtx_unlock(&tdnp->n_mtx);
   1936       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(tdvp);
   1937       1.1  dholland 	}
   1938       1.1  dholland 	if (error && NFS_ISV4(fdvp))
   1939       1.1  dholland 		error = nfscl_maperr(td, error, (uid_t)0, (gid_t)0);
   1940       1.1  dholland 	return (error);
   1941       1.1  dholland }
   1942       1.1  dholland 
   1943       1.1  dholland /*
   1944       1.1  dholland  * nfs hard link create call
   1945       1.1  dholland  */
   1946       1.1  dholland static int
   1947       1.1  dholland nfs_link(struct vop_link_args *ap)
   1948       1.1  dholland {
   1949       1.1  dholland 	struct vnode *vp = ap->a_vp;
   1950       1.1  dholland 	struct vnode *tdvp = ap->a_tdvp;
   1951       1.1  dholland 	struct componentname *cnp = ap->a_cnp;
   1952       1.1  dholland 	struct nfsnode *np, *tdnp;
   1953       1.1  dholland 	struct nfsvattr nfsva, dnfsva;
   1954       1.1  dholland 	int error = 0, attrflag, dattrflag;
   1955       1.1  dholland 
   1956       1.1  dholland 	/*
   1957       1.1  dholland 	 * Push all writes to the server, so that the attribute cache
   1958       1.1  dholland 	 * doesn't get "out of sync" with the server.
   1959       1.1  dholland 	 * XXX There should be a better way!
   1960       1.1  dholland 	 */
   1961       1.1  dholland 	VOP_FSYNC(vp, MNT_WAIT, cnp->cn_thread);
   1962       1.1  dholland 
   1963       1.1  dholland 	error = nfsrpc_link(tdvp, vp, cnp->cn_nameptr, cnp->cn_namelen,
   1964       1.1  dholland 	    cnp->cn_cred, cnp->cn_thread, &dnfsva, &nfsva, &attrflag,
   1965       1.1  dholland 	    &dattrflag, NULL);
   1966       1.1  dholland 	tdnp = VTONFS(tdvp);
   1967       1.1  dholland 	mtx_lock(&tdnp->n_mtx);
   1968       1.1  dholland 	tdnp->n_flag |= NMODIFIED;
   1969       1.1  dholland 	if (dattrflag != 0) {
   1970       1.1  dholland 		mtx_unlock(&tdnp->n_mtx);
   1971       1.1  dholland 		(void) nfscl_loadattrcache(&tdvp, &dnfsva, NULL, NULL, 0, 1);
   1972       1.1  dholland 	} else {
   1973       1.1  dholland 		tdnp->n_attrstamp = 0;
   1974       1.1  dholland 		mtx_unlock(&tdnp->n_mtx);
   1975       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(tdvp);
   1976       1.1  dholland 	}
   1977       1.1  dholland 	if (attrflag)
   1978       1.1  dholland 		(void) nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 0, 1);
   1979       1.1  dholland 	else {
   1980       1.1  dholland 		np = VTONFS(vp);
   1981       1.1  dholland 		mtx_lock(&np->n_mtx);
   1982       1.1  dholland 		np->n_attrstamp = 0;
   1983       1.1  dholland 		mtx_unlock(&np->n_mtx);
   1984       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(vp);
   1985       1.1  dholland 	}
   1986       1.1  dholland 	/*
   1987       1.1  dholland 	 * If negative lookup caching is enabled, I might as well
   1988       1.1  dholland 	 * add an entry for this node. Not necessary for correctness,
   1989       1.1  dholland 	 * but if negative caching is enabled, then the system
   1990       1.1  dholland 	 * must care about lookup caching hit rate, so...
   1991       1.1  dholland 	 */
   1992       1.1  dholland 	if (VFSTONFS(vp->v_mount)->nm_negnametimeo != 0 &&
   1993       1.1  dholland 	    (cnp->cn_flags & MAKEENTRY) && attrflag != 0 && error == 0) {
   1994       1.1  dholland 		cache_enter_time(tdvp, vp, cnp, &nfsva.na_ctime, NULL);
   1995       1.1  dholland 	}
   1996       1.1  dholland 	if (error && NFS_ISV4(vp))
   1997       1.1  dholland 		error = nfscl_maperr(cnp->cn_thread, error, (uid_t)0,
   1998       1.1  dholland 		    (gid_t)0);
   1999       1.1  dholland 	return (error);
   2000       1.1  dholland }
   2001       1.1  dholland 
   2002       1.1  dholland /*
   2003       1.1  dholland  * nfs symbolic link create call
   2004       1.1  dholland  */
   2005       1.1  dholland static int
   2006       1.1  dholland nfs_symlink(struct vop_symlink_args *ap)
   2007       1.1  dholland {
   2008       1.1  dholland 	struct vnode *dvp = ap->a_dvp;
   2009       1.1  dholland 	struct vattr *vap = ap->a_vap;
   2010       1.1  dholland 	struct componentname *cnp = ap->a_cnp;
   2011       1.1  dholland 	struct nfsvattr nfsva, dnfsva;
   2012       1.1  dholland 	struct nfsfh *nfhp;
   2013       1.1  dholland 	struct nfsnode *np = NULL, *dnp;
   2014       1.1  dholland 	struct vnode *newvp = NULL;
   2015       1.1  dholland 	int error = 0, attrflag, dattrflag, ret;
   2016       1.1  dholland 
   2017       1.1  dholland 	vap->va_type = VLNK;
   2018       1.1  dholland 	error = nfsrpc_symlink(dvp, cnp->cn_nameptr, cnp->cn_namelen,
   2019       1.1  dholland 	    ap->a_target, vap, cnp->cn_cred, cnp->cn_thread, &dnfsva,
   2020       1.1  dholland 	    &nfsva, &nfhp, &attrflag, &dattrflag, NULL);
   2021       1.1  dholland 	if (nfhp) {
   2022       1.1  dholland 		ret = nfscl_nget(dvp->v_mount, dvp, nfhp, cnp, cnp->cn_thread,
   2023       1.1  dholland 		    &np, NULL, LK_EXCLUSIVE);
   2024       1.1  dholland 		if (!ret)
   2025       1.1  dholland 			newvp = NFSTOV(np);
   2026       1.1  dholland 		else if (!error)
   2027       1.1  dholland 			error = ret;
   2028       1.1  dholland 	}
   2029       1.1  dholland 	if (newvp != NULL) {
   2030       1.1  dholland 		if (attrflag)
   2031       1.1  dholland 			(void) nfscl_loadattrcache(&newvp, &nfsva, NULL, NULL,
   2032       1.1  dholland 			    0, 1);
   2033       1.1  dholland 	} else if (!error) {
   2034       1.1  dholland 		/*
   2035       1.1  dholland 		 * If we do not have an error and we could not extract the
   2036       1.1  dholland 		 * newvp from the response due to the request being NFSv2, we
   2037       1.1  dholland 		 * have to do a lookup in order to obtain a newvp to return.
   2038       1.1  dholland 		 */
   2039       1.1  dholland 		error = nfs_lookitup(dvp, cnp->cn_nameptr, cnp->cn_namelen,
   2040       1.1  dholland 		    cnp->cn_cred, cnp->cn_thread, &np);
   2041       1.1  dholland 		if (!error)
   2042       1.1  dholland 			newvp = NFSTOV(np);
   2043       1.1  dholland 	}
   2044       1.1  dholland 	if (error) {
   2045       1.1  dholland 		if (newvp)
   2046       1.1  dholland 			vput(newvp);
   2047       1.1  dholland 		if (NFS_ISV4(dvp))
   2048       1.1  dholland 			error = nfscl_maperr(cnp->cn_thread, error,
   2049       1.1  dholland 			    vap->va_uid, vap->va_gid);
   2050       1.1  dholland 	} else {
   2051       1.1  dholland 		*ap->a_vpp = newvp;
   2052       1.1  dholland 	}
   2053       1.1  dholland 
   2054       1.1  dholland 	dnp = VTONFS(dvp);
   2055       1.1  dholland 	mtx_lock(&dnp->n_mtx);
   2056       1.1  dholland 	dnp->n_flag |= NMODIFIED;
   2057       1.1  dholland 	if (dattrflag != 0) {
   2058       1.1  dholland 		mtx_unlock(&dnp->n_mtx);
   2059       1.1  dholland 		(void) nfscl_loadattrcache(&dvp, &dnfsva, NULL, NULL, 0, 1);
   2060       1.1  dholland 	} else {
   2061       1.1  dholland 		dnp->n_attrstamp = 0;
   2062       1.1  dholland 		mtx_unlock(&dnp->n_mtx);
   2063       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(dvp);
   2064       1.1  dholland 	}
   2065       1.1  dholland 	/*
   2066       1.1  dholland 	 * If negative lookup caching is enabled, I might as well
   2067       1.1  dholland 	 * add an entry for this node. Not necessary for correctness,
   2068       1.1  dholland 	 * but if negative caching is enabled, then the system
   2069       1.1  dholland 	 * must care about lookup caching hit rate, so...
   2070       1.1  dholland 	 */
   2071       1.1  dholland 	if (VFSTONFS(dvp->v_mount)->nm_negnametimeo != 0 &&
   2072       1.1  dholland 	    (cnp->cn_flags & MAKEENTRY) && attrflag != 0 && error == 0) {
   2073       1.1  dholland 		cache_enter_time(dvp, newvp, cnp, &nfsva.na_ctime, NULL);
   2074       1.1  dholland 	}
   2075       1.1  dholland 	return (error);
   2076       1.1  dholland }
   2077       1.1  dholland 
   2078       1.1  dholland /*
   2079       1.1  dholland  * nfs make dir call
   2080       1.1  dholland  */
   2081       1.1  dholland static int
   2082       1.1  dholland nfs_mkdir(struct vop_mkdir_args *ap)
   2083       1.1  dholland {
   2084       1.1  dholland 	struct vnode *dvp = ap->a_dvp;
   2085       1.1  dholland 	struct vattr *vap = ap->a_vap;
   2086       1.1  dholland 	struct componentname *cnp = ap->a_cnp;
   2087       1.1  dholland 	struct nfsnode *np = NULL, *dnp;
   2088       1.1  dholland 	struct vnode *newvp = NULL;
   2089       1.1  dholland 	struct vattr vattr;
   2090       1.1  dholland 	struct nfsfh *nfhp;
   2091       1.1  dholland 	struct nfsvattr nfsva, dnfsva;
   2092       1.1  dholland 	int error = 0, attrflag, dattrflag, ret;
   2093       1.1  dholland 
   2094       1.1  dholland 	if ((error = VOP_GETATTR(dvp, &vattr, cnp->cn_cred)) != 0)
   2095       1.1  dholland 		return (error);
   2096       1.1  dholland 	vap->va_type = VDIR;
   2097       1.1  dholland 	error = nfsrpc_mkdir(dvp, cnp->cn_nameptr, cnp->cn_namelen,
   2098       1.1  dholland 	    vap, cnp->cn_cred, cnp->cn_thread, &dnfsva, &nfsva, &nfhp,
   2099       1.1  dholland 	    &attrflag, &dattrflag, NULL);
   2100       1.1  dholland 	dnp = VTONFS(dvp);
   2101       1.1  dholland 	mtx_lock(&dnp->n_mtx);
   2102       1.1  dholland 	dnp->n_flag |= NMODIFIED;
   2103       1.1  dholland 	if (dattrflag != 0) {
   2104       1.1  dholland 		mtx_unlock(&dnp->n_mtx);
   2105       1.1  dholland 		(void) nfscl_loadattrcache(&dvp, &dnfsva, NULL, NULL, 0, 1);
   2106       1.1  dholland 	} else {
   2107       1.1  dholland 		dnp->n_attrstamp = 0;
   2108       1.1  dholland 		mtx_unlock(&dnp->n_mtx);
   2109       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(dvp);
   2110       1.1  dholland 	}
   2111       1.1  dholland 	if (nfhp) {
   2112       1.1  dholland 		ret = nfscl_nget(dvp->v_mount, dvp, nfhp, cnp, cnp->cn_thread,
   2113       1.1  dholland 		    &np, NULL, LK_EXCLUSIVE);
   2114       1.1  dholland 		if (!ret) {
   2115       1.1  dholland 			newvp = NFSTOV(np);
   2116       1.1  dholland 			if (attrflag)
   2117       1.1  dholland 			   (void) nfscl_loadattrcache(&newvp, &nfsva, NULL,
   2118       1.1  dholland 				NULL, 0, 1);
   2119       1.1  dholland 		} else if (!error)
   2120       1.1  dholland 			error = ret;
   2121       1.1  dholland 	}
   2122       1.1  dholland 	if (!error && newvp == NULL) {
   2123       1.1  dholland 		error = nfs_lookitup(dvp, cnp->cn_nameptr, cnp->cn_namelen,
   2124       1.1  dholland 		    cnp->cn_cred, cnp->cn_thread, &np);
   2125       1.1  dholland 		if (!error) {
   2126       1.1  dholland 			newvp = NFSTOV(np);
   2127       1.1  dholland 			if (newvp->v_type != VDIR)
   2128       1.1  dholland 				error = EEXIST;
   2129       1.1  dholland 		}
   2130       1.1  dholland 	}
   2131       1.1  dholland 	if (error) {
   2132       1.1  dholland 		if (newvp)
   2133       1.1  dholland 			vput(newvp);
   2134       1.1  dholland 		if (NFS_ISV4(dvp))
   2135       1.1  dholland 			error = nfscl_maperr(cnp->cn_thread, error,
   2136       1.1  dholland 			    vap->va_uid, vap->va_gid);
   2137       1.1  dholland 	} else {
   2138       1.1  dholland 		/*
   2139       1.1  dholland 		 * If negative lookup caching is enabled, I might as well
   2140       1.1  dholland 		 * add an entry for this node. Not necessary for correctness,
   2141       1.1  dholland 		 * but if negative caching is enabled, then the system
   2142       1.1  dholland 		 * must care about lookup caching hit rate, so...
   2143       1.1  dholland 		 */
   2144       1.1  dholland 		if (VFSTONFS(dvp->v_mount)->nm_negnametimeo != 0 &&
   2145       1.1  dholland 		    (cnp->cn_flags & MAKEENTRY) &&
   2146       1.1  dholland 		    attrflag != 0 && dattrflag != 0)
   2147       1.1  dholland 			cache_enter_time(dvp, newvp, cnp, &nfsva.na_ctime,
   2148       1.1  dholland 			    &dnfsva.na_ctime);
   2149       1.1  dholland 		*ap->a_vpp = newvp;
   2150       1.1  dholland 	}
   2151       1.1  dholland 	return (error);
   2152       1.1  dholland }
   2153       1.1  dholland 
   2154       1.1  dholland /*
   2155       1.1  dholland  * nfs remove directory call
   2156       1.1  dholland  */
   2157       1.1  dholland static int
   2158       1.1  dholland nfs_rmdir(struct vop_rmdir_args *ap)
   2159       1.1  dholland {
   2160       1.1  dholland 	struct vnode *vp = ap->a_vp;
   2161       1.1  dholland 	struct vnode *dvp = ap->a_dvp;
   2162       1.1  dholland 	struct componentname *cnp = ap->a_cnp;
   2163       1.1  dholland 	struct nfsnode *dnp;
   2164       1.1  dholland 	struct nfsvattr dnfsva;
   2165       1.1  dholland 	int error, dattrflag;
   2166       1.1  dholland 
   2167       1.1  dholland 	if (dvp == vp)
   2168       1.1  dholland 		return (EINVAL);
   2169       1.1  dholland 	error = nfsrpc_rmdir(dvp, cnp->cn_nameptr, cnp->cn_namelen,
   2170       1.1  dholland 	    cnp->cn_cred, cnp->cn_thread, &dnfsva, &dattrflag, NULL);
   2171       1.1  dholland 	dnp = VTONFS(dvp);
   2172       1.1  dholland 	mtx_lock(&dnp->n_mtx);
   2173       1.1  dholland 	dnp->n_flag |= NMODIFIED;
   2174       1.1  dholland 	if (dattrflag != 0) {
   2175       1.1  dholland 		mtx_unlock(&dnp->n_mtx);
   2176       1.1  dholland 		(void) nfscl_loadattrcache(&dvp, &dnfsva, NULL, NULL, 0, 1);
   2177       1.1  dholland 	} else {
   2178       1.1  dholland 		dnp->n_attrstamp = 0;
   2179       1.1  dholland 		mtx_unlock(&dnp->n_mtx);
   2180       1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(dvp);
   2181       1.1  dholland 	}
   2182       1.1  dholland 
   2183       1.1  dholland 	cache_purge(dvp);
   2184       1.1  dholland 	cache_purge(vp);
   2185       1.1  dholland 	if (error && NFS_ISV4(dvp))
   2186       1.1  dholland 		error = nfscl_maperr(cnp->cn_thread, error, (uid_t)0,
   2187       1.1  dholland 		    (gid_t)0);
   2188       1.1  dholland 	/*
   2189       1.1  dholland 	 * Kludge: Map ENOENT => 0 assuming that you have a reply to a retry.
   2190       1.1  dholland 	 */
   2191       1.1  dholland 	if (error == ENOENT)
   2192       1.1  dholland 		error = 0;
   2193       1.1  dholland 	return (error);
   2194       1.1  dholland }
   2195       1.1  dholland 
   2196       1.1  dholland /*
   2197       1.1  dholland  * nfs readdir call
   2198       1.1  dholland  */
   2199       1.1  dholland static int
   2200       1.1  dholland nfs_readdir(struct vop_readdir_args *ap)
   2201       1.1  dholland {
   2202       1.1  dholland 	struct vnode *vp = ap->a_vp;
   2203       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
   2204       1.1  dholland 	struct uio *uio = ap->a_uio;
   2205  1.2.12.1     skrll 	ssize_t tresid, left;
   2206       1.1  dholland 	int error = 0;
   2207       1.1  dholland 	struct vattr vattr;
   2208       1.1  dholland 
   2209       1.1  dholland 	if (ap->a_eofflag != NULL)
   2210       1.1  dholland 		*ap->a_eofflag = 0;
   2211       1.1  dholland 	if (vp->v_type != VDIR)
   2212       1.1  dholland 		return(EPERM);
   2213       1.1  dholland 
   2214       1.1  dholland 	/*
   2215       1.1  dholland 	 * First, check for hit on the EOF offset cache
   2216       1.1  dholland 	 */
   2217       1.1  dholland 	if (np->n_direofoffset > 0 && uio->uio_offset >= np->n_direofoffset &&
   2218       1.1  dholland 	    (np->n_flag & NMODIFIED) == 0) {
   2219       1.1  dholland 		if (VOP_GETATTR(vp, &vattr, ap->a_cred) == 0) {
   2220       1.1  dholland 			mtx_lock(&np->n_mtx);
   2221       1.1  dholland 			if ((NFS_ISV4(vp) && np->n_change == vattr.va_filerev) ||
   2222       1.1  dholland 			    !NFS_TIMESPEC_COMPARE(&np->n_mtime, &vattr.va_mtime)) {
   2223       1.1  dholland 				mtx_unlock(&np->n_mtx);
   2224  1.2.12.1     skrll 				NFSINCRGLOBAL(nfsstatsv1.direofcache_hits);
   2225       1.1  dholland 				if (ap->a_eofflag != NULL)
   2226       1.1  dholland 					*ap->a_eofflag = 1;
   2227       1.1  dholland 				return (0);
   2228       1.1  dholland 			} else
   2229       1.1  dholland 				mtx_unlock(&np->n_mtx);
   2230       1.1  dholland 		}
   2231       1.1  dholland 	}
   2232       1.1  dholland 
   2233       1.1  dholland 	/*
   2234  1.2.12.1     skrll 	 * NFS always guarantees that directory entries don't straddle
   2235  1.2.12.1     skrll 	 * DIRBLKSIZ boundaries.  As such, we need to limit the size
   2236  1.2.12.1     skrll 	 * to an exact multiple of DIRBLKSIZ, to avoid copying a partial
   2237  1.2.12.1     skrll 	 * directory entry.
   2238  1.2.12.1     skrll 	 */
   2239  1.2.12.1     skrll 	left = uio->uio_resid % DIRBLKSIZ;
   2240  1.2.12.1     skrll 	if (left == uio->uio_resid)
   2241  1.2.12.1     skrll 		return (EINVAL);
   2242  1.2.12.1     skrll 	uio->uio_resid -= left;
   2243  1.2.12.1     skrll 
   2244  1.2.12.1     skrll 	/*
   2245       1.1  dholland 	 * Call ncl_bioread() to do the real work.
   2246       1.1  dholland 	 */
   2247       1.1  dholland 	tresid = uio->uio_resid;
   2248       1.1  dholland 	error = ncl_bioread(vp, uio, 0, ap->a_cred);
   2249       1.1  dholland 
   2250       1.1  dholland 	if (!error && uio->uio_resid == tresid) {
   2251  1.2.12.1     skrll 		NFSINCRGLOBAL(nfsstatsv1.direofcache_misses);
   2252       1.1  dholland 		if (ap->a_eofflag != NULL)
   2253       1.1  dholland 			*ap->a_eofflag = 1;
   2254       1.1  dholland 	}
   2255  1.2.12.1     skrll 
   2256  1.2.12.1     skrll 	/* Add the partial DIRBLKSIZ (left) back in. */
   2257  1.2.12.1     skrll 	uio->uio_resid += left;
   2258       1.1  dholland 	return (error);
   2259       1.1  dholland }
   2260       1.1  dholland 
   2261       1.1  dholland /*
   2262       1.1  dholland  * Readdir rpc call.
   2263       1.1  dholland  * Called from below the buffer cache by ncl_doio().
   2264       1.1  dholland  */
   2265       1.1  dholland int
   2266       1.1  dholland ncl_readdirrpc(struct vnode *vp, struct uio *uiop, struct ucred *cred,
   2267       1.1  dholland     struct thread *td)
   2268       1.1  dholland {
   2269       1.1  dholland 	struct nfsvattr nfsva;
   2270       1.1  dholland 	nfsuint64 *cookiep, cookie;
   2271       1.1  dholland 	struct nfsnode *dnp = VTONFS(vp);
   2272       1.1  dholland 	struct nfsmount *nmp = VFSTONFS(vp->v_mount);
   2273       1.1  dholland 	int error = 0, eof, attrflag;
   2274       1.1  dholland 
   2275       1.1  dholland 	KASSERT(uiop->uio_iovcnt == 1 &&
   2276       1.1  dholland 	    (uiop->uio_offset & (DIRBLKSIZ - 1)) == 0 &&
   2277       1.1  dholland 	    (uiop->uio_resid & (DIRBLKSIZ - 1)) == 0,
   2278       1.1  dholland 	    ("nfs readdirrpc bad uio"));
   2279       1.1  dholland 
   2280       1.1  dholland 	/*
   2281       1.1  dholland 	 * If there is no cookie, assume directory was stale.
   2282       1.1  dholland 	 */
   2283       1.1  dholland 	ncl_dircookie_lock(dnp);
   2284       1.1  dholland 	cookiep = ncl_getcookie(dnp, uiop->uio_offset, 0);
   2285       1.1  dholland 	if (cookiep) {
   2286       1.1  dholland 		cookie = *cookiep;
   2287       1.1  dholland 		ncl_dircookie_unlock(dnp);
   2288       1.1  dholland 	} else {
   2289       1.1  dholland 		ncl_dircookie_unlock(dnp);
   2290       1.1  dholland 		return (NFSERR_BAD_COOKIE);
   2291       1.1  dholland 	}
   2292       1.1  dholland 
   2293       1.1  dholland 	if (NFSHASNFSV3(nmp) && !NFSHASGOTFSINFO(nmp))
   2294       1.1  dholland 		(void)ncl_fsinfo(nmp, vp, cred, td);
   2295       1.1  dholland 
   2296       1.1  dholland 	error = nfsrpc_readdir(vp, uiop, &cookie, cred, td, &nfsva,
   2297       1.1  dholland 	    &attrflag, &eof, NULL);
   2298       1.1  dholland 	if (attrflag)
   2299       1.1  dholland 		(void) nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 0, 1);
   2300       1.1  dholland 
   2301       1.1  dholland 	if (!error) {
   2302       1.1  dholland 		/*
   2303       1.1  dholland 		 * We are now either at the end of the directory or have filled
   2304       1.1  dholland 		 * the block.
   2305       1.1  dholland 		 */
   2306       1.1  dholland 		if (eof)
   2307       1.1  dholland 			dnp->n_direofoffset = uiop->uio_offset;
   2308       1.1  dholland 		else {
   2309       1.1  dholland 			if (uiop->uio_resid > 0)
   2310  1.2.12.1     skrll 				printf("EEK! readdirrpc resid > 0\n");
   2311       1.1  dholland 			ncl_dircookie_lock(dnp);
   2312       1.1  dholland 			cookiep = ncl_getcookie(dnp, uiop->uio_offset, 1);
   2313       1.1  dholland 			*cookiep = cookie;
   2314       1.1  dholland 			ncl_dircookie_unlock(dnp);
   2315       1.1  dholland 		}
   2316       1.1  dholland 	} else if (NFS_ISV4(vp)) {
   2317       1.1  dholland 		error = nfscl_maperr(td, error, (uid_t)0, (gid_t)0);
   2318       1.1  dholland 	}
   2319       1.1  dholland 	return (error);
   2320       1.1  dholland }
   2321       1.1  dholland 
   2322       1.1  dholland /*
   2323       1.1  dholland  * NFS V3 readdir plus RPC. Used in place of ncl_readdirrpc().
   2324       1.1  dholland  */
   2325       1.1  dholland int
   2326       1.1  dholland ncl_readdirplusrpc(struct vnode *vp, struct uio *uiop, struct ucred *cred,
   2327       1.1  dholland     struct thread *td)
   2328       1.1  dholland {
   2329       1.1  dholland 	struct nfsvattr nfsva;
   2330       1.1  dholland 	nfsuint64 *cookiep, cookie;
   2331       1.1  dholland 	struct nfsnode *dnp = VTONFS(vp);
   2332       1.1  dholland 	struct nfsmount *nmp = VFSTONFS(vp->v_mount);
   2333       1.1  dholland 	int error = 0, attrflag, eof;
   2334       1.1  dholland 
   2335       1.1  dholland 	KASSERT(uiop->uio_iovcnt == 1 &&
   2336       1.1  dholland 	    (uiop->uio_offset & (DIRBLKSIZ - 1)) == 0 &&
   2337       1.1  dholland 	    (uiop->uio_resid & (DIRBLKSIZ - 1)) == 0,
   2338       1.1  dholland 	    ("nfs readdirplusrpc bad uio"));
   2339       1.1  dholland 
   2340       1.1  dholland 	/*
   2341       1.1  dholland 	 * If there is no cookie, assume directory was stale.
   2342       1.1  dholland 	 */
   2343       1.1  dholland 	ncl_dircookie_lock(dnp);
   2344       1.1  dholland 	cookiep = ncl_getcookie(dnp, uiop->uio_offset, 0);
   2345       1.1  dholland 	if (cookiep) {
   2346       1.1  dholland 		cookie = *cookiep;
   2347       1.1  dholland 		ncl_dircookie_unlock(dnp);
   2348       1.1  dholland 	} else {
   2349       1.1  dholland 		ncl_dircookie_unlock(dnp);
   2350       1.1  dholland 		return (NFSERR_BAD_COOKIE);
   2351       1.1  dholland 	}
   2352       1.1  dholland 
   2353       1.1  dholland 	if (NFSHASNFSV3(nmp) && !NFSHASGOTFSINFO(nmp))
   2354       1.1  dholland 		(void)ncl_fsinfo(nmp, vp, cred, td);
   2355       1.1  dholland 	error = nfsrpc_readdirplus(vp, uiop, &cookie, cred, td, &nfsva,
   2356       1.1  dholland 	    &attrflag, &eof, NULL);
   2357       1.1  dholland 	if (attrflag)
   2358       1.1  dholland 		(void) nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 0, 1);
   2359       1.1  dholland 
   2360       1.1  dholland 	if (!error) {
   2361       1.1  dholland 		/*
   2362       1.1  dholland 		 * We are now either at end of the directory or have filled the
   2363       1.1  dholland 		 * the block.
   2364       1.1  dholland 		 */
   2365       1.1  dholland 		if (eof)
   2366       1.1  dholland 			dnp->n_direofoffset = uiop->uio_offset;
   2367       1.1  dholland 		else {
   2368       1.1  dholland 			if (uiop->uio_resid > 0)
   2369  1.2.12.1     skrll 				printf("EEK! readdirplusrpc resid > 0\n");
   2370       1.1  dholland 			ncl_dircookie_lock(dnp);
   2371       1.1  dholland 			cookiep = ncl_getcookie(dnp, uiop->uio_offset, 1);
   2372       1.1  dholland 			*cookiep = cookie;
   2373       1.1  dholland 			ncl_dircookie_unlock(dnp);
   2374       1.1  dholland 		}
   2375       1.1  dholland 	} else if (NFS_ISV4(vp)) {
   2376       1.1  dholland 		error = nfscl_maperr(td, error, (uid_t)0, (gid_t)0);
   2377       1.1  dholland 	}
   2378       1.1  dholland 	return (error);
   2379       1.1  dholland }
   2380       1.1  dholland 
   2381       1.1  dholland /*
   2382       1.1  dholland  * Silly rename. To make the NFS filesystem that is stateless look a little
   2383       1.1  dholland  * more like the "ufs" a remove of an active vnode is translated to a rename
   2384       1.1  dholland  * to a funny looking filename that is removed by nfs_inactive on the
   2385       1.1  dholland  * nfsnode. There is the potential for another process on a different client
   2386       1.1  dholland  * to create the same funny name between the nfs_lookitup() fails and the
   2387       1.1  dholland  * nfs_rename() completes, but...
   2388       1.1  dholland  */
   2389       1.1  dholland static int
   2390       1.1  dholland nfs_sillyrename(struct vnode *dvp, struct vnode *vp, struct componentname *cnp)
   2391       1.1  dholland {
   2392       1.1  dholland 	struct sillyrename *sp;
   2393       1.1  dholland 	struct nfsnode *np;
   2394       1.1  dholland 	int error;
   2395       1.1  dholland 	short pid;
   2396       1.1  dholland 	unsigned int lticks;
   2397       1.1  dholland 
   2398       1.1  dholland 	cache_purge(dvp);
   2399       1.1  dholland 	np = VTONFS(vp);
   2400       1.1  dholland 	KASSERT(vp->v_type != VDIR, ("nfs: sillyrename dir"));
   2401       1.1  dholland 	MALLOC(sp, struct sillyrename *, sizeof (struct sillyrename),
   2402       1.1  dholland 	    M_NEWNFSREQ, M_WAITOK);
   2403       1.1  dholland 	sp->s_cred = crhold(cnp->cn_cred);
   2404       1.1  dholland 	sp->s_dvp = dvp;
   2405       1.1  dholland 	VREF(dvp);
   2406       1.1  dholland 
   2407       1.1  dholland 	/*
   2408       1.1  dholland 	 * Fudge together a funny name.
   2409  1.2.12.1     skrll 	 * Changing the format of the funny name to accommodate more
   2410       1.1  dholland 	 * sillynames per directory.
   2411       1.1  dholland 	 * The name is now changed to .nfs.<ticks>.<pid>.4, where ticks is
   2412       1.1  dholland 	 * CPU ticks since boot.
   2413       1.1  dholland 	 */
   2414       1.1  dholland 	pid = cnp->cn_thread->td_proc->p_pid;
   2415       1.1  dholland 	lticks = (unsigned int)ticks;
   2416       1.1  dholland 	for ( ; ; ) {
   2417       1.2  christos 		sp->s_namlen = snprintf(sp->s_name, sizeof(sp->s_name),
   2418       1.1  dholland 				       ".nfs.%08x.%04x4.4", lticks,
   2419       1.1  dholland 				       pid);
   2420       1.1  dholland 		if (nfs_lookitup(dvp, sp->s_name, sp->s_namlen, sp->s_cred,
   2421       1.1  dholland 				 cnp->cn_thread, NULL))
   2422       1.1  dholland 			break;
   2423       1.1  dholland 		lticks++;
   2424       1.1  dholland 	}
   2425       1.1  dholland 	error = nfs_renameit(dvp, vp, cnp, sp);
   2426       1.1  dholland 	if (error)
   2427       1.1  dholland 		goto bad;
   2428       1.1  dholland 	error = nfs_lookitup(dvp, sp->s_name, sp->s_namlen, sp->s_cred,
   2429       1.1  dholland 		cnp->cn_thread, &np);
   2430       1.1  dholland 	np->n_sillyrename = sp;
   2431       1.1  dholland 	return (0);
   2432       1.1  dholland bad:
   2433       1.1  dholland 	vrele(sp->s_dvp);
   2434       1.1  dholland 	crfree(sp->s_cred);
   2435       1.1  dholland 	free((caddr_t)sp, M_NEWNFSREQ);
   2436       1.1  dholland 	return (error);
   2437       1.1  dholland }
   2438       1.1  dholland 
   2439       1.1  dholland /*
   2440       1.1  dholland  * Look up a file name and optionally either update the file handle or
   2441       1.1  dholland  * allocate an nfsnode, depending on the value of npp.
   2442       1.1  dholland  * npp == NULL	--> just do the lookup
   2443       1.1  dholland  * *npp == NULL --> allocate a new nfsnode and make sure attributes are
   2444       1.1  dholland  *			handled too
   2445       1.1  dholland  * *npp != NULL --> update the file handle in the vnode
   2446       1.1  dholland  */
   2447       1.1  dholland static int
   2448       1.1  dholland nfs_lookitup(struct vnode *dvp, char *name, int len, struct ucred *cred,
   2449       1.1  dholland     struct thread *td, struct nfsnode **npp)
   2450       1.1  dholland {
   2451       1.1  dholland 	struct vnode *newvp = NULL, *vp;
   2452       1.1  dholland 	struct nfsnode *np, *dnp = VTONFS(dvp);
   2453       1.1  dholland 	struct nfsfh *nfhp, *onfhp;
   2454       1.1  dholland 	struct nfsvattr nfsva, dnfsva;
   2455       1.1  dholland 	struct componentname cn;
   2456       1.1  dholland 	int error = 0, attrflag, dattrflag;
   2457       1.1  dholland 	u_int hash;
   2458       1.1  dholland 
   2459       1.1  dholland 	error = nfsrpc_lookup(dvp, name, len, cred, td, &dnfsva, &nfsva,
   2460       1.1  dholland 	    &nfhp, &attrflag, &dattrflag, NULL);
   2461       1.1  dholland 	if (dattrflag)
   2462       1.1  dholland 		(void) nfscl_loadattrcache(&dvp, &dnfsva, NULL, NULL, 0, 1);
   2463       1.1  dholland 	if (npp && !error) {
   2464       1.1  dholland 		if (*npp != NULL) {
   2465       1.1  dholland 		    np = *npp;
   2466       1.1  dholland 		    vp = NFSTOV(np);
   2467       1.1  dholland 		    /*
   2468       1.1  dholland 		     * For NFSv4, check to see if it is the same name and
   2469       1.1  dholland 		     * replace the name, if it is different.
   2470       1.1  dholland 		     */
   2471       1.1  dholland 		    if (np->n_v4 != NULL && nfsva.na_type == VREG &&
   2472       1.1  dholland 			(np->n_v4->n4_namelen != len ||
   2473       1.1  dholland 			 NFSBCMP(name, NFS4NODENAME(np->n_v4), len) ||
   2474       1.1  dholland 			 dnp->n_fhp->nfh_len != np->n_v4->n4_fhlen ||
   2475       1.1  dholland 			 NFSBCMP(dnp->n_fhp->nfh_fh, np->n_v4->n4_data,
   2476       1.1  dholland 			 dnp->n_fhp->nfh_len))) {
   2477       1.1  dholland #ifdef notdef
   2478       1.1  dholland { char nnn[100]; int nnnl;
   2479       1.1  dholland nnnl = (len < 100) ? len : 99;
   2480       1.1  dholland bcopy(name, nnn, nnnl);
   2481       1.1  dholland nnn[nnnl] = '\0';
   2482       1.1  dholland printf("replace=%s\n",nnn);
   2483       1.1  dholland }
   2484       1.1  dholland #endif
   2485       1.1  dholland 			    FREE((caddr_t)np->n_v4, M_NFSV4NODE);
   2486       1.1  dholland 			    MALLOC(np->n_v4, struct nfsv4node *,
   2487       1.1  dholland 				sizeof (struct nfsv4node) +
   2488       1.1  dholland 				dnp->n_fhp->nfh_len + len - 1,
   2489       1.1  dholland 				M_NFSV4NODE, M_WAITOK);
   2490       1.1  dholland 			    np->n_v4->n4_fhlen = dnp->n_fhp->nfh_len;
   2491       1.1  dholland 			    np->n_v4->n4_namelen = len;
   2492       1.1  dholland 			    NFSBCOPY(dnp->n_fhp->nfh_fh, np->n_v4->n4_data,
   2493       1.1  dholland 				dnp->n_fhp->nfh_len);
   2494       1.1  dholland 			    NFSBCOPY(name, NFS4NODENAME(np->n_v4), len);
   2495       1.1  dholland 		    }
   2496       1.1  dholland 		    hash = fnv_32_buf(nfhp->nfh_fh, nfhp->nfh_len,
   2497       1.1  dholland 			FNV1_32_INIT);
   2498       1.1  dholland 		    onfhp = np->n_fhp;
   2499       1.1  dholland 		    /*
   2500       1.1  dholland 		     * Rehash node for new file handle.
   2501       1.1  dholland 		     */
   2502       1.1  dholland 		    vfs_hash_rehash(vp, hash);
   2503       1.1  dholland 		    np->n_fhp = nfhp;
   2504       1.1  dholland 		    if (onfhp != NULL)
   2505       1.1  dholland 			FREE((caddr_t)onfhp, M_NFSFH);
   2506       1.1  dholland 		    newvp = NFSTOV(np);
   2507       1.1  dholland 		} else if (NFS_CMPFH(dnp, nfhp->nfh_fh, nfhp->nfh_len)) {
   2508       1.1  dholland 		    FREE((caddr_t)nfhp, M_NFSFH);
   2509       1.1  dholland 		    VREF(dvp);
   2510       1.1  dholland 		    newvp = dvp;
   2511       1.1  dholland 		} else {
   2512       1.1  dholland 		    cn.cn_nameptr = name;
   2513       1.1  dholland 		    cn.cn_namelen = len;
   2514       1.1  dholland 		    error = nfscl_nget(dvp->v_mount, dvp, nfhp, &cn, td,
   2515       1.1  dholland 			&np, NULL, LK_EXCLUSIVE);
   2516       1.1  dholland 		    if (error)
   2517       1.1  dholland 			return (error);
   2518       1.1  dholland 		    newvp = NFSTOV(np);
   2519       1.1  dholland 		}
   2520       1.1  dholland 		if (!attrflag && *npp == NULL) {
   2521       1.1  dholland 			if (newvp == dvp)
   2522       1.1  dholland 				vrele(newvp);
   2523       1.1  dholland 			else
   2524       1.1  dholland 				vput(newvp);
   2525       1.1  dholland 			return (ENOENT);
   2526       1.1  dholland 		}
   2527       1.1  dholland 		if (attrflag)
   2528       1.1  dholland 			(void) nfscl_loadattrcache(&newvp, &nfsva, NULL, NULL,
   2529       1.1  dholland 			    0, 1);
   2530       1.1  dholland 	}
   2531       1.1  dholland 	if (npp && *npp == NULL) {
   2532       1.1  dholland 		if (error) {
   2533       1.1  dholland 			if (newvp) {
   2534       1.1  dholland 				if (newvp == dvp)
   2535       1.1  dholland 					vrele(newvp);
   2536       1.1  dholland 				else
   2537       1.1  dholland 					vput(newvp);
   2538       1.1  dholland 			}
   2539       1.1  dholland 		} else
   2540       1.1  dholland 			*npp = np;
   2541       1.1  dholland 	}
   2542       1.1  dholland 	if (error && NFS_ISV4(dvp))
   2543       1.1  dholland 		error = nfscl_maperr(td, error, (uid_t)0, (gid_t)0);
   2544       1.1  dholland 	return (error);
   2545       1.1  dholland }
   2546       1.1  dholland 
   2547       1.1  dholland /*
   2548       1.1  dholland  * Nfs Version 3 and 4 commit rpc
   2549       1.1  dholland  */
   2550       1.1  dholland int
   2551       1.1  dholland ncl_commit(struct vnode *vp, u_quad_t offset, int cnt, struct ucred *cred,
   2552       1.1  dholland    struct thread *td)
   2553       1.1  dholland {
   2554       1.1  dholland 	struct nfsvattr nfsva;
   2555       1.1  dholland 	struct nfsmount *nmp = VFSTONFS(vp->v_mount);
   2556       1.1  dholland 	int error, attrflag;
   2557       1.1  dholland 
   2558       1.1  dholland 	mtx_lock(&nmp->nm_mtx);
   2559       1.1  dholland 	if ((nmp->nm_state & NFSSTA_HASWRITEVERF) == 0) {
   2560       1.1  dholland 		mtx_unlock(&nmp->nm_mtx);
   2561       1.1  dholland 		return (0);
   2562       1.1  dholland 	}
   2563       1.1  dholland 	mtx_unlock(&nmp->nm_mtx);
   2564       1.1  dholland 	error = nfsrpc_commit(vp, offset, cnt, cred, td, &nfsva,
   2565       1.1  dholland 	    &attrflag, NULL);
   2566       1.1  dholland 	if (attrflag != 0)
   2567       1.1  dholland 		(void) nfscl_loadattrcache(&vp, &nfsva, NULL, NULL,
   2568       1.1  dholland 		    0, 1);
   2569       1.1  dholland 	if (error != 0 && NFS_ISV4(vp))
   2570       1.1  dholland 		error = nfscl_maperr(td, error, (uid_t)0, (gid_t)0);
   2571       1.1  dholland 	return (error);
   2572       1.1  dholland }
   2573       1.1  dholland 
   2574       1.1  dholland /*
   2575       1.1  dholland  * Strategy routine.
   2576       1.1  dholland  * For async requests when nfsiod(s) are running, queue the request by
   2577       1.1  dholland  * calling ncl_asyncio(), otherwise just all ncl_doio() to do the
   2578       1.1  dholland  * request.
   2579       1.1  dholland  */
   2580       1.1  dholland static int
   2581       1.1  dholland nfs_strategy(struct vop_strategy_args *ap)
   2582       1.1  dholland {
   2583       1.1  dholland 	struct buf *bp = ap->a_bp;
   2584       1.1  dholland 	struct ucred *cr;
   2585       1.1  dholland 
   2586       1.1  dholland 	KASSERT(!(bp->b_flags & B_DONE),
   2587       1.1  dholland 	    ("nfs_strategy: buffer %p unexpectedly marked B_DONE", bp));
   2588       1.1  dholland 	BUF_ASSERT_HELD(bp);
   2589       1.1  dholland 
   2590       1.1  dholland 	if (bp->b_iocmd == BIO_READ)
   2591       1.1  dholland 		cr = bp->b_rcred;
   2592       1.1  dholland 	else
   2593       1.1  dholland 		cr = bp->b_wcred;
   2594       1.1  dholland 
   2595       1.1  dholland 	/*
   2596       1.1  dholland 	 * If the op is asynchronous and an i/o daemon is waiting
   2597       1.1  dholland 	 * queue the request, wake it up and wait for completion
   2598       1.1  dholland 	 * otherwise just do it ourselves.
   2599       1.1  dholland 	 */
   2600       1.1  dholland 	if ((bp->b_flags & B_ASYNC) == 0 ||
   2601       1.1  dholland 	    ncl_asyncio(VFSTONFS(ap->a_vp->v_mount), bp, NOCRED, curthread))
   2602       1.1  dholland 		(void) ncl_doio(ap->a_vp, bp, cr, curthread, 1);
   2603       1.1  dholland 	return (0);
   2604       1.1  dholland }
   2605       1.1  dholland 
   2606       1.1  dholland /*
   2607       1.1  dholland  * fsync vnode op. Just call ncl_flush() with commit == 1.
   2608       1.1  dholland  */
   2609       1.1  dholland /* ARGSUSED */
   2610       1.1  dholland static int
   2611       1.1  dholland nfs_fsync(struct vop_fsync_args *ap)
   2612       1.1  dholland {
   2613       1.1  dholland 
   2614       1.1  dholland 	if (ap->a_vp->v_type != VREG) {
   2615       1.1  dholland 		/*
   2616       1.1  dholland 		 * For NFS, metadata is changed synchronously on the server,
   2617       1.1  dholland 		 * so there is nothing to flush. Also, ncl_flush() clears
   2618       1.1  dholland 		 * the NMODIFIED flag and that shouldn't be done here for
   2619       1.1  dholland 		 * directories.
   2620       1.1  dholland 		 */
   2621       1.1  dholland 		return (0);
   2622       1.1  dholland 	}
   2623       1.1  dholland 	return (ncl_flush(ap->a_vp, ap->a_waitfor, NULL, ap->a_td, 1, 0));
   2624       1.1  dholland }
   2625       1.1  dholland 
   2626       1.1  dholland /*
   2627       1.1  dholland  * Flush all the blocks associated with a vnode.
   2628       1.1  dholland  * 	Walk through the buffer pool and push any dirty pages
   2629       1.1  dholland  *	associated with the vnode.
   2630       1.1  dholland  * If the called_from_renewthread argument is TRUE, it has been called
   2631       1.1  dholland  * from the NFSv4 renew thread and, as such, cannot block indefinitely
   2632       1.1  dholland  * waiting for a buffer write to complete.
   2633       1.1  dholland  */
   2634       1.1  dholland int
   2635       1.1  dholland ncl_flush(struct vnode *vp, int waitfor, struct ucred *cred, struct thread *td,
   2636       1.1  dholland     int commit, int called_from_renewthread)
   2637       1.1  dholland {
   2638       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
   2639       1.1  dholland 	struct buf *bp;
   2640       1.1  dholland 	int i;
   2641       1.1  dholland 	struct buf *nbp;
   2642       1.1  dholland 	struct nfsmount *nmp = VFSTONFS(vp->v_mount);
   2643       1.1  dholland 	int error = 0, slptimeo = 0, slpflag = 0, retv, bvecpos;
   2644       1.1  dholland 	int passone = 1, trycnt = 0;
   2645       1.1  dholland 	u_quad_t off, endoff, toff;
   2646       1.1  dholland 	struct ucred* wcred = NULL;
   2647       1.1  dholland 	struct buf **bvec = NULL;
   2648       1.1  dholland 	struct bufobj *bo;
   2649       1.1  dholland #ifndef NFS_COMMITBVECSIZ
   2650       1.1  dholland #define	NFS_COMMITBVECSIZ	20
   2651       1.1  dholland #endif
   2652       1.1  dholland 	struct buf *bvec_on_stack[NFS_COMMITBVECSIZ];
   2653       1.1  dholland 	int bvecsize = 0, bveccount;
   2654       1.1  dholland 
   2655       1.1  dholland 	if (called_from_renewthread != 0)
   2656       1.1  dholland 		slptimeo = hz;
   2657       1.1  dholland 	if (nmp->nm_flag & NFSMNT_INT)
   2658       1.1  dholland 		slpflag = PCATCH;
   2659       1.1  dholland 	if (!commit)
   2660       1.1  dholland 		passone = 0;
   2661       1.1  dholland 	bo = &vp->v_bufobj;
   2662       1.1  dholland 	/*
   2663       1.1  dholland 	 * A b_flags == (B_DELWRI | B_NEEDCOMMIT) block has been written to the
   2664       1.1  dholland 	 * server, but has not been committed to stable storage on the server
   2665       1.1  dholland 	 * yet. On the first pass, the byte range is worked out and the commit
   2666       1.1  dholland 	 * rpc is done. On the second pass, ncl_writebp() is called to do the
   2667       1.1  dholland 	 * job.
   2668       1.1  dholland 	 */
   2669       1.1  dholland again:
   2670       1.1  dholland 	off = (u_quad_t)-1;
   2671       1.1  dholland 	endoff = 0;
   2672       1.1  dholland 	bvecpos = 0;
   2673       1.1  dholland 	if (NFS_ISV34(vp) && commit) {
   2674       1.1  dholland 		if (bvec != NULL && bvec != bvec_on_stack)
   2675       1.1  dholland 			free(bvec, M_TEMP);
   2676       1.1  dholland 		/*
   2677       1.1  dholland 		 * Count up how many buffers waiting for a commit.
   2678       1.1  dholland 		 */
   2679       1.1  dholland 		bveccount = 0;
   2680       1.1  dholland 		BO_LOCK(bo);
   2681       1.1  dholland 		TAILQ_FOREACH_SAFE(bp, &bo->bo_dirty.bv_hd, b_bobufs, nbp) {
   2682       1.1  dholland 			if (!BUF_ISLOCKED(bp) &&
   2683       1.1  dholland 			    (bp->b_flags & (B_DELWRI | B_NEEDCOMMIT))
   2684       1.1  dholland 				== (B_DELWRI | B_NEEDCOMMIT))
   2685       1.1  dholland 				bveccount++;
   2686       1.1  dholland 		}
   2687       1.1  dholland 		/*
   2688       1.1  dholland 		 * Allocate space to remember the list of bufs to commit.  It is
   2689       1.1  dholland 		 * important to use M_NOWAIT here to avoid a race with nfs_write.
   2690       1.1  dholland 		 * If we can't get memory (for whatever reason), we will end up
   2691       1.1  dholland 		 * committing the buffers one-by-one in the loop below.
   2692       1.1  dholland 		 */
   2693       1.1  dholland 		if (bveccount > NFS_COMMITBVECSIZ) {
   2694       1.1  dholland 			/*
   2695       1.1  dholland 			 * Release the vnode interlock to avoid a lock
   2696       1.1  dholland 			 * order reversal.
   2697       1.1  dholland 			 */
   2698       1.1  dholland 			BO_UNLOCK(bo);
   2699       1.1  dholland 			bvec = (struct buf **)
   2700       1.1  dholland 				malloc(bveccount * sizeof(struct buf *),
   2701       1.1  dholland 				       M_TEMP, M_NOWAIT);
   2702       1.1  dholland 			BO_LOCK(bo);
   2703       1.1  dholland 			if (bvec == NULL) {
   2704       1.1  dholland 				bvec = bvec_on_stack;
   2705       1.1  dholland 				bvecsize = NFS_COMMITBVECSIZ;
   2706       1.1  dholland 			} else
   2707       1.1  dholland 				bvecsize = bveccount;
   2708       1.1  dholland 		} else {
   2709       1.1  dholland 			bvec = bvec_on_stack;
   2710       1.1  dholland 			bvecsize = NFS_COMMITBVECSIZ;
   2711       1.1  dholland 		}
   2712       1.1  dholland 		TAILQ_FOREACH_SAFE(bp, &bo->bo_dirty.bv_hd, b_bobufs, nbp) {
   2713       1.1  dholland 			if (bvecpos >= bvecsize)
   2714       1.1  dholland 				break;
   2715       1.1  dholland 			if (BUF_LOCK(bp, LK_EXCLUSIVE | LK_NOWAIT, NULL)) {
   2716       1.1  dholland 				nbp = TAILQ_NEXT(bp, b_bobufs);
   2717       1.1  dholland 				continue;
   2718       1.1  dholland 			}
   2719       1.1  dholland 			if ((bp->b_flags & (B_DELWRI | B_NEEDCOMMIT)) !=
   2720       1.1  dholland 			    (B_DELWRI | B_NEEDCOMMIT)) {
   2721       1.1  dholland 				BUF_UNLOCK(bp);
   2722       1.1  dholland 				nbp = TAILQ_NEXT(bp, b_bobufs);
   2723       1.1  dholland 				continue;
   2724       1.1  dholland 			}
   2725       1.1  dholland 			BO_UNLOCK(bo);
   2726       1.1  dholland 			bremfree(bp);
   2727       1.1  dholland 			/*
   2728       1.1  dholland 			 * Work out if all buffers are using the same cred
   2729       1.1  dholland 			 * so we can deal with them all with one commit.
   2730       1.1  dholland 			 *
   2731       1.1  dholland 			 * NOTE: we are not clearing B_DONE here, so we have
   2732       1.1  dholland 			 * to do it later on in this routine if we intend to
   2733       1.1  dholland 			 * initiate I/O on the bp.
   2734       1.1  dholland 			 *
   2735       1.1  dholland 			 * Note: to avoid loopback deadlocks, we do not
   2736       1.1  dholland 			 * assign b_runningbufspace.
   2737       1.1  dholland 			 */
   2738       1.1  dholland 			if (wcred == NULL)
   2739       1.1  dholland 				wcred = bp->b_wcred;
   2740       1.1  dholland 			else if (wcred != bp->b_wcred)
   2741       1.1  dholland 				wcred = NOCRED;
   2742       1.1  dholland 			vfs_busy_pages(bp, 1);
   2743       1.1  dholland 
   2744       1.1  dholland 			BO_LOCK(bo);
   2745       1.1  dholland 			/*
   2746       1.1  dholland 			 * bp is protected by being locked, but nbp is not
   2747       1.1  dholland 			 * and vfs_busy_pages() may sleep.  We have to
   2748       1.1  dholland 			 * recalculate nbp.
   2749       1.1  dholland 			 */
   2750       1.1  dholland 			nbp = TAILQ_NEXT(bp, b_bobufs);
   2751       1.1  dholland 
   2752       1.1  dholland 			/*
   2753       1.1  dholland 			 * A list of these buffers is kept so that the
   2754       1.1  dholland 			 * second loop knows which buffers have actually
   2755       1.1  dholland 			 * been committed. This is necessary, since there
   2756       1.1  dholland 			 * may be a race between the commit rpc and new
   2757       1.1  dholland 			 * uncommitted writes on the file.
   2758       1.1  dholland 			 */
   2759       1.1  dholland 			bvec[bvecpos++] = bp;
   2760       1.1  dholland 			toff = ((u_quad_t)bp->b_blkno) * DEV_BSIZE +
   2761       1.1  dholland 				bp->b_dirtyoff;
   2762       1.1  dholland 			if (toff < off)
   2763       1.1  dholland 				off = toff;
   2764       1.1  dholland 			toff += (u_quad_t)(bp->b_dirtyend - bp->b_dirtyoff);
   2765       1.1  dholland 			if (toff > endoff)
   2766       1.1  dholland 				endoff = toff;
   2767       1.1  dholland 		}
   2768       1.1  dholland 		BO_UNLOCK(bo);
   2769       1.1  dholland 	}
   2770       1.1  dholland 	if (bvecpos > 0) {
   2771       1.1  dholland 		/*
   2772       1.1  dholland 		 * Commit data on the server, as required.
   2773       1.1  dholland 		 * If all bufs are using the same wcred, then use that with
   2774       1.1  dholland 		 * one call for all of them, otherwise commit each one
   2775       1.1  dholland 		 * separately.
   2776       1.1  dholland 		 */
   2777       1.1  dholland 		if (wcred != NOCRED)
   2778       1.1  dholland 			retv = ncl_commit(vp, off, (int)(endoff - off),
   2779       1.1  dholland 					  wcred, td);
   2780       1.1  dholland 		else {
   2781       1.1  dholland 			retv = 0;
   2782       1.1  dholland 			for (i = 0; i < bvecpos; i++) {
   2783       1.1  dholland 				off_t off, size;
   2784       1.1  dholland 				bp = bvec[i];
   2785       1.1  dholland 				off = ((u_quad_t)bp->b_blkno) * DEV_BSIZE +
   2786       1.1  dholland 					bp->b_dirtyoff;
   2787       1.1  dholland 				size = (u_quad_t)(bp->b_dirtyend
   2788       1.1  dholland 						  - bp->b_dirtyoff);
   2789       1.1  dholland 				retv = ncl_commit(vp, off, (int)size,
   2790       1.1  dholland 						  bp->b_wcred, td);
   2791       1.1  dholland 				if (retv) break;
   2792       1.1  dholland 			}
   2793       1.1  dholland 		}
   2794       1.1  dholland 
   2795       1.1  dholland 		if (retv == NFSERR_STALEWRITEVERF)
   2796       1.1  dholland 			ncl_clearcommit(vp->v_mount);
   2797       1.1  dholland 
   2798       1.1  dholland 		/*
   2799       1.1  dholland 		 * Now, either mark the blocks I/O done or mark the
   2800       1.1  dholland 		 * blocks dirty, depending on whether the commit
   2801       1.1  dholland 		 * succeeded.
   2802       1.1  dholland 		 */
   2803       1.1  dholland 		for (i = 0; i < bvecpos; i++) {
   2804       1.1  dholland 			bp = bvec[i];
   2805       1.1  dholland 			bp->b_flags &= ~(B_NEEDCOMMIT | B_CLUSTEROK);
   2806       1.1  dholland 			if (retv) {
   2807       1.1  dholland 				/*
   2808       1.1  dholland 				 * Error, leave B_DELWRI intact
   2809       1.1  dholland 				 */
   2810       1.1  dholland 				vfs_unbusy_pages(bp);
   2811       1.1  dholland 				brelse(bp);
   2812       1.1  dholland 			} else {
   2813       1.1  dholland 				/*
   2814       1.1  dholland 				 * Success, remove B_DELWRI ( bundirty() ).
   2815       1.1  dholland 				 *
   2816       1.1  dholland 				 * b_dirtyoff/b_dirtyend seem to be NFS
   2817       1.1  dholland 				 * specific.  We should probably move that
   2818       1.1  dholland 				 * into bundirty(). XXX
   2819       1.1  dholland 				 */
   2820       1.1  dholland 				bufobj_wref(bo);
   2821       1.1  dholland 				bp->b_flags |= B_ASYNC;
   2822       1.1  dholland 				bundirty(bp);
   2823       1.1  dholland 				bp->b_flags &= ~B_DONE;
   2824       1.1  dholland 				bp->b_ioflags &= ~BIO_ERROR;
   2825       1.1  dholland 				bp->b_dirtyoff = bp->b_dirtyend = 0;
   2826       1.1  dholland 				bufdone(bp);
   2827       1.1  dholland 			}
   2828       1.1  dholland 		}
   2829       1.1  dholland 	}
   2830       1.1  dholland 
   2831       1.1  dholland 	/*
   2832       1.1  dholland 	 * Start/do any write(s) that are required.
   2833       1.1  dholland 	 */
   2834       1.1  dholland loop:
   2835       1.1  dholland 	BO_LOCK(bo);
   2836       1.1  dholland 	TAILQ_FOREACH_SAFE(bp, &bo->bo_dirty.bv_hd, b_bobufs, nbp) {
   2837       1.1  dholland 		if (BUF_LOCK(bp, LK_EXCLUSIVE | LK_NOWAIT, NULL)) {
   2838       1.1  dholland 			if (waitfor != MNT_WAIT || passone)
   2839       1.1  dholland 				continue;
   2840       1.1  dholland 
   2841       1.1  dholland 			error = BUF_TIMELOCK(bp,
   2842       1.1  dholland 			    LK_EXCLUSIVE | LK_SLEEPFAIL | LK_INTERLOCK,
   2843       1.1  dholland 			    BO_LOCKPTR(bo), "nfsfsync", slpflag, slptimeo);
   2844       1.1  dholland 			if (error == 0) {
   2845       1.1  dholland 				BUF_UNLOCK(bp);
   2846       1.1  dholland 				goto loop;
   2847       1.1  dholland 			}
   2848       1.1  dholland 			if (error == ENOLCK) {
   2849       1.1  dholland 				error = 0;
   2850       1.1  dholland 				goto loop;
   2851       1.1  dholland 			}
   2852       1.1  dholland 			if (called_from_renewthread != 0) {
   2853       1.1  dholland 				/*
   2854       1.1  dholland 				 * Return EIO so the flush will be retried
   2855       1.1  dholland 				 * later.
   2856       1.1  dholland 				 */
   2857       1.1  dholland 				error = EIO;
   2858       1.1  dholland 				goto done;
   2859       1.1  dholland 			}
   2860       1.1  dholland 			if (newnfs_sigintr(nmp, td)) {
   2861       1.1  dholland 				error = EINTR;
   2862       1.1  dholland 				goto done;
   2863       1.1  dholland 			}
   2864       1.1  dholland 			if (slpflag == PCATCH) {
   2865       1.1  dholland 				slpflag = 0;
   2866       1.1  dholland 				slptimeo = 2 * hz;
   2867       1.1  dholland 			}
   2868       1.1  dholland 			goto loop;
   2869       1.1  dholland 		}
   2870       1.1  dholland 		if ((bp->b_flags & B_DELWRI) == 0)
   2871       1.1  dholland 			panic("nfs_fsync: not dirty");
   2872       1.1  dholland 		if ((passone || !commit) && (bp->b_flags & B_NEEDCOMMIT)) {
   2873       1.1  dholland 			BUF_UNLOCK(bp);
   2874       1.1  dholland 			continue;
   2875       1.1  dholland 		}
   2876       1.1  dholland 		BO_UNLOCK(bo);
   2877       1.1  dholland 		bremfree(bp);
   2878       1.1  dholland 		if (passone || !commit)
   2879       1.1  dholland 		    bp->b_flags |= B_ASYNC;
   2880       1.1  dholland 		else
   2881       1.1  dholland 		    bp->b_flags |= B_ASYNC;
   2882       1.1  dholland 		bwrite(bp);
   2883       1.1  dholland 		if (newnfs_sigintr(nmp, td)) {
   2884       1.1  dholland 			error = EINTR;
   2885       1.1  dholland 			goto done;
   2886       1.1  dholland 		}
   2887       1.1  dholland 		goto loop;
   2888       1.1  dholland 	}
   2889       1.1  dholland 	if (passone) {
   2890       1.1  dholland 		passone = 0;
   2891       1.1  dholland 		BO_UNLOCK(bo);
   2892       1.1  dholland 		goto again;
   2893       1.1  dholland 	}
   2894       1.1  dholland 	if (waitfor == MNT_WAIT) {
   2895       1.1  dholland 		while (bo->bo_numoutput) {
   2896       1.1  dholland 			error = bufobj_wwait(bo, slpflag, slptimeo);
   2897       1.1  dholland 			if (error) {
   2898       1.1  dholland 			    BO_UNLOCK(bo);
   2899       1.1  dholland 			    if (called_from_renewthread != 0) {
   2900       1.1  dholland 				/*
   2901       1.1  dholland 				 * Return EIO so that the flush will be
   2902       1.1  dholland 				 * retried later.
   2903       1.1  dholland 				 */
   2904       1.1  dholland 				error = EIO;
   2905       1.1  dholland 				goto done;
   2906       1.1  dholland 			    }
   2907       1.1  dholland 			    error = newnfs_sigintr(nmp, td);
   2908       1.1  dholland 			    if (error)
   2909       1.1  dholland 				goto done;
   2910       1.1  dholland 			    if (slpflag == PCATCH) {
   2911       1.1  dholland 				slpflag = 0;
   2912       1.1  dholland 				slptimeo = 2 * hz;
   2913       1.1  dholland 			    }
   2914       1.1  dholland 			    BO_LOCK(bo);
   2915       1.1  dholland 			}
   2916       1.1  dholland 		}
   2917       1.1  dholland 		if (bo->bo_dirty.bv_cnt != 0 && commit) {
   2918       1.1  dholland 			BO_UNLOCK(bo);
   2919       1.1  dholland 			goto loop;
   2920       1.1  dholland 		}
   2921       1.1  dholland 		/*
   2922       1.1  dholland 		 * Wait for all the async IO requests to drain
   2923       1.1  dholland 		 */
   2924       1.1  dholland 		BO_UNLOCK(bo);
   2925       1.1  dholland 		mtx_lock(&np->n_mtx);
   2926       1.1  dholland 		while (np->n_directio_asyncwr > 0) {
   2927       1.1  dholland 			np->n_flag |= NFSYNCWAIT;
   2928       1.1  dholland 			error = newnfs_msleep(td, &np->n_directio_asyncwr,
   2929       1.1  dholland 			    &np->n_mtx, slpflag | (PRIBIO + 1),
   2930       1.1  dholland 			    "nfsfsync", 0);
   2931       1.1  dholland 			if (error) {
   2932       1.1  dholland 				if (newnfs_sigintr(nmp, td)) {
   2933       1.1  dholland 					mtx_unlock(&np->n_mtx);
   2934       1.1  dholland 					error = EINTR;
   2935       1.1  dholland 					goto done;
   2936       1.1  dholland 				}
   2937       1.1  dholland 			}
   2938       1.1  dholland 		}
   2939       1.1  dholland 		mtx_unlock(&np->n_mtx);
   2940       1.1  dholland 	} else
   2941       1.1  dholland 		BO_UNLOCK(bo);
   2942       1.1  dholland 	if (NFSHASPNFS(nmp)) {
   2943       1.1  dholland 		nfscl_layoutcommit(vp, td);
   2944       1.1  dholland 		/*
   2945       1.1  dholland 		 * Invalidate the attribute cache, since writes to a DS
   2946       1.1  dholland 		 * won't update the size attribute.
   2947       1.1  dholland 		 */
   2948       1.1  dholland 		mtx_lock(&np->n_mtx);
   2949       1.1  dholland 		np->n_attrstamp = 0;
   2950       1.1  dholland 	} else
   2951       1.1  dholland 		mtx_lock(&np->n_mtx);
   2952       1.1  dholland 	if (np->n_flag & NWRITEERR) {
   2953       1.1  dholland 		error = np->n_error;
   2954       1.1  dholland 		np->n_flag &= ~NWRITEERR;
   2955       1.1  dholland 	}
   2956       1.1  dholland   	if (commit && bo->bo_dirty.bv_cnt == 0 &&
   2957       1.1  dholland 	    bo->bo_numoutput == 0 && np->n_directio_asyncwr == 0)
   2958       1.1  dholland   		np->n_flag &= ~NMODIFIED;
   2959       1.1  dholland 	mtx_unlock(&np->n_mtx);
   2960       1.1  dholland done:
   2961       1.1  dholland 	if (bvec != NULL && bvec != bvec_on_stack)
   2962       1.1  dholland 		free(bvec, M_TEMP);
   2963       1.1  dholland 	if (error == 0 && commit != 0 && waitfor == MNT_WAIT &&
   2964       1.1  dholland 	    (bo->bo_dirty.bv_cnt != 0 || bo->bo_numoutput != 0 ||
   2965       1.1  dholland 	     np->n_directio_asyncwr != 0) && trycnt++ < 5) {
   2966       1.1  dholland 		/* try, try again... */
   2967       1.1  dholland 		passone = 1;
   2968       1.1  dholland 		wcred = NULL;
   2969       1.1  dholland 		bvec = NULL;
   2970       1.1  dholland 		bvecsize = 0;
   2971       1.1  dholland printf("try%d\n", trycnt);
   2972       1.1  dholland 		goto again;
   2973       1.1  dholland 	}
   2974       1.1  dholland 	return (error);
   2975       1.1  dholland }
   2976       1.1  dholland 
   2977       1.1  dholland /*
   2978       1.1  dholland  * NFS advisory byte-level locks.
   2979       1.1  dholland  */
   2980       1.1  dholland static int
   2981       1.1  dholland nfs_advlock(struct vop_advlock_args *ap)
   2982       1.1  dholland {
   2983       1.1  dholland 	struct vnode *vp = ap->a_vp;
   2984       1.1  dholland 	struct ucred *cred;
   2985       1.1  dholland 	struct nfsnode *np = VTONFS(ap->a_vp);
   2986       1.1  dholland 	struct proc *p = (struct proc *)ap->a_id;
   2987       1.1  dholland 	struct thread *td = curthread;	/* XXX */
   2988       1.1  dholland 	struct vattr va;
   2989       1.1  dholland 	int ret, error = EOPNOTSUPP;
   2990       1.1  dholland 	u_quad_t size;
   2991       1.1  dholland 
   2992       1.1  dholland 	if (NFS_ISV4(vp) && (ap->a_flags & (F_POSIX | F_FLOCK)) != 0) {
   2993       1.1  dholland 		if (vp->v_type != VREG)
   2994       1.1  dholland 			return (EINVAL);
   2995       1.1  dholland 		if ((ap->a_flags & F_POSIX) != 0)
   2996       1.1  dholland 			cred = p->p_ucred;
   2997       1.1  dholland 		else
   2998       1.1  dholland 			cred = td->td_ucred;
   2999       1.1  dholland 		NFSVOPLOCK(vp, LK_EXCLUSIVE | LK_RETRY);
   3000       1.1  dholland 		if (vp->v_iflag & VI_DOOMED) {
   3001       1.1  dholland 			NFSVOPUNLOCK(vp, 0);
   3002       1.1  dholland 			return (EBADF);
   3003       1.1  dholland 		}
   3004       1.1  dholland 
   3005       1.1  dholland 		/*
   3006       1.1  dholland 		 * If this is unlocking a write locked region, flush and
   3007       1.1  dholland 		 * commit them before unlocking. This is required by
   3008       1.1  dholland 		 * RFC3530 Sec. 9.3.2.
   3009       1.1  dholland 		 */
   3010       1.1  dholland 		if (ap->a_op == F_UNLCK &&
   3011       1.1  dholland 		    nfscl_checkwritelocked(vp, ap->a_fl, cred, td, ap->a_id,
   3012       1.1  dholland 		    ap->a_flags))
   3013       1.1  dholland 			(void) ncl_flush(vp, MNT_WAIT, cred, td, 1, 0);
   3014       1.1  dholland 
   3015       1.1  dholland 		/*
   3016       1.1  dholland 		 * Loop around doing the lock op, while a blocking lock
   3017       1.1  dholland 		 * must wait for the lock op to succeed.
   3018       1.1  dholland 		 */
   3019       1.1  dholland 		do {
   3020       1.1  dholland 			ret = nfsrpc_advlock(vp, np->n_size, ap->a_op,
   3021       1.1  dholland 			    ap->a_fl, 0, cred, td, ap->a_id, ap->a_flags);
   3022       1.1  dholland 			if (ret == NFSERR_DENIED && (ap->a_flags & F_WAIT) &&
   3023       1.1  dholland 			    ap->a_op == F_SETLK) {
   3024       1.1  dholland 				NFSVOPUNLOCK(vp, 0);
   3025       1.1  dholland 				error = nfs_catnap(PZERO | PCATCH, ret,
   3026       1.1  dholland 				    "ncladvl");
   3027       1.1  dholland 				if (error)
   3028       1.1  dholland 					return (EINTR);
   3029       1.1  dholland 				NFSVOPLOCK(vp, LK_EXCLUSIVE | LK_RETRY);
   3030       1.1  dholland 				if (vp->v_iflag & VI_DOOMED) {
   3031       1.1  dholland 					NFSVOPUNLOCK(vp, 0);
   3032       1.1  dholland 					return (EBADF);
   3033       1.1  dholland 				}
   3034       1.1  dholland 			}
   3035       1.1  dholland 		} while (ret == NFSERR_DENIED && (ap->a_flags & F_WAIT) &&
   3036       1.1  dholland 		     ap->a_op == F_SETLK);
   3037       1.1  dholland 		if (ret == NFSERR_DENIED) {
   3038       1.1  dholland 			NFSVOPUNLOCK(vp, 0);
   3039       1.1  dholland 			return (EAGAIN);
   3040       1.1  dholland 		} else if (ret == EINVAL || ret == EBADF || ret == EINTR) {
   3041       1.1  dholland 			NFSVOPUNLOCK(vp, 0);
   3042       1.1  dholland 			return (ret);
   3043       1.1  dholland 		} else if (ret != 0) {
   3044       1.1  dholland 			NFSVOPUNLOCK(vp, 0);
   3045       1.1  dholland 			return (EACCES);
   3046       1.1  dholland 		}
   3047       1.1  dholland 
   3048       1.1  dholland 		/*
   3049       1.1  dholland 		 * Now, if we just got a lock, invalidate data in the buffer
   3050       1.1  dholland 		 * cache, as required, so that the coherency conforms with
   3051       1.1  dholland 		 * RFC3530 Sec. 9.3.2.
   3052       1.1  dholland 		 */
   3053       1.1  dholland 		if (ap->a_op == F_SETLK) {
   3054       1.1  dholland 			if ((np->n_flag & NMODIFIED) == 0) {
   3055       1.1  dholland 				np->n_attrstamp = 0;
   3056       1.1  dholland 				KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(vp);
   3057       1.1  dholland 				ret = VOP_GETATTR(vp, &va, cred);
   3058       1.1  dholland 			}
   3059       1.1  dholland 			if ((np->n_flag & NMODIFIED) || ret ||
   3060       1.1  dholland 			    np->n_change != va.va_filerev) {
   3061       1.1  dholland 				(void) ncl_vinvalbuf(vp, V_SAVE, td, 1);
   3062       1.1  dholland 				np->n_attrstamp = 0;
   3063       1.1  dholland 				KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(vp);
   3064       1.1  dholland 				ret = VOP_GETATTR(vp, &va, cred);
   3065       1.1  dholland 				if (!ret) {
   3066       1.1  dholland 					np->n_mtime = va.va_mtime;
   3067       1.1  dholland 					np->n_change = va.va_filerev;
   3068       1.1  dholland 				}
   3069       1.1  dholland 			}
   3070  1.2.12.1     skrll 			/* Mark that a file lock has been acquired. */
   3071  1.2.12.1     skrll 			mtx_lock(&np->n_mtx);
   3072  1.2.12.1     skrll 			np->n_flag |= NHASBEENLOCKED;
   3073  1.2.12.1     skrll 			mtx_unlock(&np->n_mtx);
   3074       1.1  dholland 		}
   3075       1.1  dholland 		NFSVOPUNLOCK(vp, 0);
   3076       1.1  dholland 		return (0);
   3077       1.1  dholland 	} else if (!NFS_ISV4(vp)) {
   3078       1.1  dholland 		error = NFSVOPLOCK(vp, LK_SHARED);
   3079       1.1  dholland 		if (error)
   3080       1.1  dholland 			return (error);
   3081       1.1  dholland 		if ((VFSTONFS(vp->v_mount)->nm_flag & NFSMNT_NOLOCKD) != 0) {
   3082       1.1  dholland 			size = VTONFS(vp)->n_size;
   3083       1.1  dholland 			NFSVOPUNLOCK(vp, 0);
   3084       1.1  dholland 			error = lf_advlock(ap, &(vp->v_lockf), size);
   3085       1.1  dholland 		} else {
   3086       1.1  dholland 			if (nfs_advlock_p != NULL)
   3087       1.1  dholland 				error = nfs_advlock_p(ap);
   3088       1.1  dholland 			else {
   3089       1.1  dholland 				NFSVOPUNLOCK(vp, 0);
   3090       1.1  dholland 				error = ENOLCK;
   3091       1.1  dholland 			}
   3092       1.1  dholland 		}
   3093  1.2.12.1     skrll 		if (error == 0 && ap->a_op == F_SETLK) {
   3094  1.2.12.1     skrll 			error = NFSVOPLOCK(vp, LK_SHARED);
   3095  1.2.12.1     skrll 			if (error == 0) {
   3096  1.2.12.1     skrll 				/* Mark that a file lock has been acquired. */
   3097  1.2.12.1     skrll 				mtx_lock(&np->n_mtx);
   3098  1.2.12.1     skrll 				np->n_flag |= NHASBEENLOCKED;
   3099  1.2.12.1     skrll 				mtx_unlock(&np->n_mtx);
   3100  1.2.12.1     skrll 				NFSVOPUNLOCK(vp, 0);
   3101  1.2.12.1     skrll 			}
   3102  1.2.12.1     skrll 		}
   3103       1.1  dholland 	}
   3104       1.1  dholland 	return (error);
   3105       1.1  dholland }
   3106       1.1  dholland 
   3107       1.1  dholland /*
   3108       1.1  dholland  * NFS advisory byte-level locks.
   3109       1.1  dholland  */
   3110       1.1  dholland static int
   3111       1.1  dholland nfs_advlockasync(struct vop_advlockasync_args *ap)
   3112       1.1  dholland {
   3113       1.1  dholland 	struct vnode *vp = ap->a_vp;
   3114       1.1  dholland 	u_quad_t size;
   3115       1.1  dholland 	int error;
   3116       1.1  dholland 
   3117       1.1  dholland 	if (NFS_ISV4(vp))
   3118       1.1  dholland 		return (EOPNOTSUPP);
   3119       1.1  dholland 	error = NFSVOPLOCK(vp, LK_SHARED);
   3120       1.1  dholland 	if (error)
   3121       1.1  dholland 		return (error);
   3122       1.1  dholland 	if ((VFSTONFS(vp->v_mount)->nm_flag & NFSMNT_NOLOCKD) != 0) {
   3123       1.1  dholland 		size = VTONFS(vp)->n_size;
   3124       1.1  dholland 		NFSVOPUNLOCK(vp, 0);
   3125       1.1  dholland 		error = lf_advlockasync(ap, &(vp->v_lockf), size);
   3126       1.1  dholland 	} else {
   3127       1.1  dholland 		NFSVOPUNLOCK(vp, 0);
   3128       1.1  dholland 		error = EOPNOTSUPP;
   3129       1.1  dholland 	}
   3130       1.1  dholland 	return (error);
   3131       1.1  dholland }
   3132       1.1  dholland 
   3133       1.1  dholland /*
   3134       1.1  dholland  * Print out the contents of an nfsnode.
   3135       1.1  dholland  */
   3136       1.1  dholland static int
   3137       1.1  dholland nfs_print(struct vop_print_args *ap)
   3138       1.1  dholland {
   3139       1.1  dholland 	struct vnode *vp = ap->a_vp;
   3140       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
   3141       1.1  dholland 
   3142  1.2.12.1     skrll 	printf("\tfileid %ld fsid 0x%x", np->n_vattr.na_fileid,
   3143  1.2.12.1     skrll 	    np->n_vattr.na_fsid);
   3144       1.1  dholland 	if (vp->v_type == VFIFO)
   3145       1.1  dholland 		fifo_printinfo(vp);
   3146       1.1  dholland 	printf("\n");
   3147       1.1  dholland 	return (0);
   3148       1.1  dholland }
   3149       1.1  dholland 
   3150       1.1  dholland /*
   3151       1.1  dholland  * This is the "real" nfs::bwrite(struct buf*).
   3152       1.1  dholland  * We set B_CACHE if this is a VMIO buffer.
   3153       1.1  dholland  */
   3154       1.1  dholland int
   3155       1.1  dholland ncl_writebp(struct buf *bp, int force __unused, struct thread *td)
   3156       1.1  dholland {
   3157       1.1  dholland 	int s;
   3158       1.1  dholland 	int oldflags = bp->b_flags;
   3159       1.1  dholland #if 0
   3160       1.1  dholland 	int retv = 1;
   3161       1.1  dholland 	off_t off;
   3162       1.1  dholland #endif
   3163       1.1  dholland 
   3164       1.1  dholland 	BUF_ASSERT_HELD(bp);
   3165       1.1  dholland 
   3166       1.1  dholland 	if (bp->b_flags & B_INVAL) {
   3167       1.1  dholland 		brelse(bp);
   3168       1.1  dholland 		return(0);
   3169       1.1  dholland 	}
   3170       1.1  dholland 
   3171       1.1  dholland 	bp->b_flags |= B_CACHE;
   3172       1.1  dholland 
   3173       1.1  dholland 	/*
   3174       1.1  dholland 	 * Undirty the bp.  We will redirty it later if the I/O fails.
   3175       1.1  dholland 	 */
   3176       1.1  dholland 
   3177       1.1  dholland 	s = splbio();
   3178       1.1  dholland 	bundirty(bp);
   3179       1.1  dholland 	bp->b_flags &= ~B_DONE;
   3180       1.1  dholland 	bp->b_ioflags &= ~BIO_ERROR;
   3181       1.1  dholland 	bp->b_iocmd = BIO_WRITE;
   3182       1.1  dholland 
   3183       1.1  dholland 	bufobj_wref(bp->b_bufobj);
   3184       1.1  dholland 	curthread->td_ru.ru_oublock++;
   3185       1.1  dholland 	splx(s);
   3186       1.1  dholland 
   3187       1.1  dholland 	/*
   3188       1.1  dholland 	 * Note: to avoid loopback deadlocks, we do not
   3189       1.1  dholland 	 * assign b_runningbufspace.
   3190       1.1  dholland 	 */
   3191       1.1  dholland 	vfs_busy_pages(bp, 1);
   3192       1.1  dholland 
   3193       1.1  dholland 	BUF_KERNPROC(bp);
   3194       1.1  dholland 	bp->b_iooffset = dbtob(bp->b_blkno);
   3195       1.1  dholland 	bstrategy(bp);
   3196       1.1  dholland 
   3197       1.1  dholland 	if( (oldflags & B_ASYNC) == 0) {
   3198       1.1  dholland 		int rtval = bufwait(bp);
   3199       1.1  dholland 
   3200       1.1  dholland 		if (oldflags & B_DELWRI) {
   3201       1.1  dholland 			s = splbio();
   3202       1.1  dholland 			reassignbuf(bp);
   3203       1.1  dholland 			splx(s);
   3204       1.1  dholland 		}
   3205       1.1  dholland 		brelse(bp);
   3206       1.1  dholland 		return (rtval);
   3207       1.1  dholland 	}
   3208       1.1  dholland 
   3209       1.1  dholland 	return (0);
   3210       1.1  dholland }
   3211       1.1  dholland 
   3212       1.1  dholland /*
   3213       1.1  dholland  * nfs special file access vnode op.
   3214       1.1  dholland  * Essentially just get vattr and then imitate iaccess() since the device is
   3215       1.1  dholland  * local to the client.
   3216       1.1  dholland  */
   3217       1.1  dholland static int
   3218       1.1  dholland nfsspec_access(struct vop_access_args *ap)
   3219       1.1  dholland {
   3220       1.1  dholland 	struct vattr *vap;
   3221       1.1  dholland 	struct ucred *cred = ap->a_cred;
   3222       1.1  dholland 	struct vnode *vp = ap->a_vp;
   3223       1.1  dholland 	accmode_t accmode = ap->a_accmode;
   3224       1.1  dholland 	struct vattr vattr;
   3225       1.1  dholland 	int error;
   3226       1.1  dholland 
   3227       1.1  dholland 	/*
   3228       1.1  dholland 	 * Disallow write attempts on filesystems mounted read-only;
   3229       1.1  dholland 	 * unless the file is a socket, fifo, or a block or character
   3230       1.1  dholland 	 * device resident on the filesystem.
   3231       1.1  dholland 	 */
   3232       1.1  dholland 	if ((accmode & VWRITE) && (vp->v_mount->mnt_flag & MNT_RDONLY)) {
   3233       1.1  dholland 		switch (vp->v_type) {
   3234       1.1  dholland 		case VREG:
   3235       1.1  dholland 		case VDIR:
   3236       1.1  dholland 		case VLNK:
   3237       1.1  dholland 			return (EROFS);
   3238       1.1  dholland 		default:
   3239       1.1  dholland 			break;
   3240       1.1  dholland 		}
   3241       1.1  dholland 	}
   3242       1.1  dholland 	vap = &vattr;
   3243       1.1  dholland 	error = VOP_GETATTR(vp, vap, cred);
   3244       1.1  dholland 	if (error)
   3245       1.1  dholland 		goto out;
   3246       1.1  dholland 	error  = vaccess(vp->v_type, vap->va_mode, vap->va_uid, vap->va_gid,
   3247       1.1  dholland 	    accmode, cred, NULL);
   3248       1.1  dholland out:
   3249       1.1  dholland 	return error;
   3250       1.1  dholland }
   3251       1.1  dholland 
   3252       1.1  dholland /*
   3253       1.1  dholland  * Read wrapper for fifos.
   3254       1.1  dholland  */
   3255       1.1  dholland static int
   3256       1.1  dholland nfsfifo_read(struct vop_read_args *ap)
   3257       1.1  dholland {
   3258       1.1  dholland 	struct nfsnode *np = VTONFS(ap->a_vp);
   3259       1.1  dholland 	int error;
   3260       1.1  dholland 
   3261       1.1  dholland 	/*
   3262       1.1  dholland 	 * Set access flag.
   3263       1.1  dholland 	 */
   3264       1.1  dholland 	mtx_lock(&np->n_mtx);
   3265       1.1  dholland 	np->n_flag |= NACC;
   3266       1.1  dholland 	vfs_timestamp(&np->n_atim);
   3267       1.1  dholland 	mtx_unlock(&np->n_mtx);
   3268       1.1  dholland 	error = fifo_specops.vop_read(ap);
   3269       1.1  dholland 	return error;
   3270       1.1  dholland }
   3271       1.1  dholland 
   3272       1.1  dholland /*
   3273       1.1  dholland  * Write wrapper for fifos.
   3274       1.1  dholland  */
   3275       1.1  dholland static int
   3276       1.1  dholland nfsfifo_write(struct vop_write_args *ap)
   3277       1.1  dholland {
   3278       1.1  dholland 	struct nfsnode *np = VTONFS(ap->a_vp);
   3279       1.1  dholland 
   3280       1.1  dholland 	/*
   3281       1.1  dholland 	 * Set update flag.
   3282       1.1  dholland 	 */
   3283       1.1  dholland 	mtx_lock(&np->n_mtx);
   3284       1.1  dholland 	np->n_flag |= NUPD;
   3285       1.1  dholland 	vfs_timestamp(&np->n_mtim);
   3286       1.1  dholland 	mtx_unlock(&np->n_mtx);
   3287       1.1  dholland 	return(fifo_specops.vop_write(ap));
   3288       1.1  dholland }
   3289       1.1  dholland 
   3290       1.1  dholland /*
   3291       1.1  dholland  * Close wrapper for fifos.
   3292       1.1  dholland  *
   3293       1.1  dholland  * Update the times on the nfsnode then do fifo close.
   3294       1.1  dholland  */
   3295       1.1  dholland static int
   3296       1.1  dholland nfsfifo_close(struct vop_close_args *ap)
   3297       1.1  dholland {
   3298       1.1  dholland 	struct vnode *vp = ap->a_vp;
   3299       1.1  dholland 	struct nfsnode *np = VTONFS(vp);
   3300       1.1  dholland 	struct vattr vattr;
   3301       1.1  dholland 	struct timespec ts;
   3302       1.1  dholland 
   3303       1.1  dholland 	mtx_lock(&np->n_mtx);
   3304       1.1  dholland 	if (np->n_flag & (NACC | NUPD)) {
   3305       1.1  dholland 		vfs_timestamp(&ts);
   3306       1.1  dholland 		if (np->n_flag & NACC)
   3307       1.1  dholland 			np->n_atim = ts;
   3308       1.1  dholland 		if (np->n_flag & NUPD)
   3309       1.1  dholland 			np->n_mtim = ts;
   3310       1.1  dholland 		np->n_flag |= NCHG;
   3311       1.1  dholland 		if (vrefcnt(vp) == 1 &&
   3312       1.1  dholland 		    (vp->v_mount->mnt_flag & MNT_RDONLY) == 0) {
   3313       1.1  dholland 			VATTR_NULL(&vattr);
   3314       1.1  dholland 			if (np->n_flag & NACC)
   3315       1.1  dholland 				vattr.va_atime = np->n_atim;
   3316       1.1  dholland 			if (np->n_flag & NUPD)
   3317       1.1  dholland 				vattr.va_mtime = np->n_mtim;
   3318       1.1  dholland 			mtx_unlock(&np->n_mtx);
   3319       1.1  dholland 			(void)VOP_SETATTR(vp, &vattr, ap->a_cred);
   3320       1.1  dholland 			goto out;
   3321       1.1  dholland 		}
   3322       1.1  dholland 	}
   3323       1.1  dholland 	mtx_unlock(&np->n_mtx);
   3324       1.1  dholland out:
   3325       1.1  dholland 	return (fifo_specops.vop_close(ap));
   3326       1.1  dholland }
   3327       1.1  dholland 
   3328       1.1  dholland /*
   3329       1.1  dholland  * Just call ncl_writebp() with the force argument set to 1.
   3330       1.1  dholland  *
   3331       1.1  dholland  * NOTE: B_DONE may or may not be set in a_bp on call.
   3332       1.1  dholland  */
   3333       1.1  dholland static int
   3334       1.1  dholland nfs_bwrite(struct buf *bp)
   3335       1.1  dholland {
   3336       1.1  dholland 
   3337       1.1  dholland 	return (ncl_writebp(bp, 1, curthread));
   3338       1.1  dholland }
   3339       1.1  dholland 
   3340       1.1  dholland struct buf_ops buf_ops_newnfs = {
   3341       1.1  dholland 	.bop_name	=	"buf_ops_nfs",
   3342       1.1  dholland 	.bop_write	=	nfs_bwrite,
   3343       1.1  dholland 	.bop_strategy	=	bufstrategy,
   3344       1.1  dholland 	.bop_sync	=	bufsync,
   3345       1.1  dholland 	.bop_bdflush	=	bufbdflush,
   3346       1.1  dholland };
   3347       1.1  dholland 
   3348       1.1  dholland static int
   3349       1.1  dholland nfs_getacl(struct vop_getacl_args *ap)
   3350       1.1  dholland {
   3351       1.1  dholland 	int error;
   3352       1.1  dholland 
   3353       1.1  dholland 	if (ap->a_type != ACL_TYPE_NFS4)
   3354       1.1  dholland 		return (EOPNOTSUPP);
   3355       1.1  dholland 	error = nfsrpc_getacl(ap->a_vp, ap->a_cred, ap->a_td, ap->a_aclp,
   3356       1.1  dholland 	    NULL);
   3357       1.1  dholland 	if (error > NFSERR_STALE) {
   3358       1.1  dholland 		(void) nfscl_maperr(ap->a_td, error, (uid_t)0, (gid_t)0);
   3359       1.1  dholland 		error = EPERM;
   3360       1.1  dholland 	}
   3361       1.1  dholland 	return (error);
   3362       1.1  dholland }
   3363       1.1  dholland 
   3364       1.1  dholland static int
   3365       1.1  dholland nfs_setacl(struct vop_setacl_args *ap)
   3366       1.1  dholland {
   3367       1.1  dholland 	int error;
   3368       1.1  dholland 
   3369       1.1  dholland 	if (ap->a_type != ACL_TYPE_NFS4)
   3370       1.1  dholland 		return (EOPNOTSUPP);
   3371       1.1  dholland 	error = nfsrpc_setacl(ap->a_vp, ap->a_cred, ap->a_td, ap->a_aclp,
   3372       1.1  dholland 	    NULL);
   3373       1.1  dholland 	if (error > NFSERR_STALE) {
   3374       1.1  dholland 		(void) nfscl_maperr(ap->a_td, error, (uid_t)0, (gid_t)0);
   3375       1.1  dholland 		error = EPERM;
   3376       1.1  dholland 	}
   3377       1.1  dholland 	return (error);
   3378       1.1  dholland }
   3379       1.1  dholland 
   3380       1.1  dholland /*
   3381       1.1  dholland  * Return POSIX pathconf information applicable to nfs filesystems.
   3382       1.1  dholland  */
   3383       1.1  dholland static int
   3384       1.1  dholland nfs_pathconf(struct vop_pathconf_args *ap)
   3385       1.1  dholland {
   3386       1.1  dholland 	struct nfsv3_pathconf pc;
   3387       1.1  dholland 	struct nfsvattr nfsva;
   3388       1.1  dholland 	struct vnode *vp = ap->a_vp;
   3389       1.1  dholland 	struct thread *td = curthread;
   3390       1.1  dholland 	int attrflag, error;
   3391       1.1  dholland 
   3392  1.2.12.1     skrll 	if ((NFS_ISV34(vp) && (ap->a_name == _PC_LINK_MAX ||
   3393       1.1  dholland 	    ap->a_name == _PC_NAME_MAX || ap->a_name == _PC_CHOWN_RESTRICTED ||
   3394  1.2.12.1     skrll 	    ap->a_name == _PC_NO_TRUNC)) ||
   3395  1.2.12.1     skrll 	    (NFS_ISV4(vp) && ap->a_name == _PC_ACL_NFS4)) {
   3396       1.1  dholland 		/*
   3397       1.1  dholland 		 * Since only the above 4 a_names are returned by the NFSv3
   3398       1.1  dholland 		 * Pathconf RPC, there is no point in doing it for others.
   3399  1.2.12.1     skrll 		 * For NFSv4, the Pathconf RPC (actually a Getattr Op.) can
   3400  1.2.12.1     skrll 		 * be used for _PC_NFS4_ACL as well.
   3401       1.1  dholland 		 */
   3402       1.1  dholland 		error = nfsrpc_pathconf(vp, &pc, td->td_ucred, td, &nfsva,
   3403       1.1  dholland 		    &attrflag, NULL);
   3404       1.1  dholland 		if (attrflag != 0)
   3405       1.1  dholland 			(void) nfscl_loadattrcache(&vp, &nfsva, NULL, NULL, 0,
   3406       1.1  dholland 			    1);
   3407       1.1  dholland 		if (error != 0)
   3408       1.1  dholland 			return (error);
   3409       1.1  dholland 	} else {
   3410       1.1  dholland 		/*
   3411       1.1  dholland 		 * For NFSv2 (or NFSv3 when not one of the above 4 a_names),
   3412       1.1  dholland 		 * just fake them.
   3413       1.1  dholland 		 */
   3414       1.1  dholland 		pc.pc_linkmax = LINK_MAX;
   3415       1.1  dholland 		pc.pc_namemax = NFS_MAXNAMLEN;
   3416       1.1  dholland 		pc.pc_notrunc = 1;
   3417       1.1  dholland 		pc.pc_chownrestricted = 1;
   3418       1.1  dholland 		pc.pc_caseinsensitive = 0;
   3419       1.1  dholland 		pc.pc_casepreserving = 1;
   3420       1.1  dholland 		error = 0;
   3421       1.1  dholland 	}
   3422       1.1  dholland 	switch (ap->a_name) {
   3423       1.1  dholland 	case _PC_LINK_MAX:
   3424       1.1  dholland 		*ap->a_retval = pc.pc_linkmax;
   3425       1.1  dholland 		break;
   3426       1.1  dholland 	case _PC_NAME_MAX:
   3427       1.1  dholland 		*ap->a_retval = pc.pc_namemax;
   3428       1.1  dholland 		break;
   3429       1.1  dholland 	case _PC_PATH_MAX:
   3430       1.1  dholland 		*ap->a_retval = PATH_MAX;
   3431       1.1  dholland 		break;
   3432       1.1  dholland 	case _PC_PIPE_BUF:
   3433       1.1  dholland 		*ap->a_retval = PIPE_BUF;
   3434       1.1  dholland 		break;
   3435       1.1  dholland 	case _PC_CHOWN_RESTRICTED:
   3436       1.1  dholland 		*ap->a_retval = pc.pc_chownrestricted;
   3437       1.1  dholland 		break;
   3438       1.1  dholland 	case _PC_NO_TRUNC:
   3439       1.1  dholland 		*ap->a_retval = pc.pc_notrunc;
   3440       1.1  dholland 		break;
   3441       1.1  dholland 	case _PC_ACL_EXTENDED:
   3442       1.1  dholland 		*ap->a_retval = 0;
   3443       1.1  dholland 		break;
   3444       1.1  dholland 	case _PC_ACL_NFS4:
   3445       1.1  dholland 		if (NFS_ISV4(vp) && nfsrv_useacl != 0 && attrflag != 0 &&
   3446       1.1  dholland 		    NFSISSET_ATTRBIT(&nfsva.na_suppattr, NFSATTRBIT_ACL))
   3447       1.1  dholland 			*ap->a_retval = 1;
   3448       1.1  dholland 		else
   3449       1.1  dholland 			*ap->a_retval = 0;
   3450       1.1  dholland 		break;
   3451       1.1  dholland 	case _PC_ACL_PATH_MAX:
   3452       1.1  dholland 		if (NFS_ISV4(vp))
   3453       1.1  dholland 			*ap->a_retval = ACL_MAX_ENTRIES;
   3454       1.1  dholland 		else
   3455       1.1  dholland 			*ap->a_retval = 3;
   3456       1.1  dholland 		break;
   3457       1.1  dholland 	case _PC_MAC_PRESENT:
   3458       1.1  dholland 		*ap->a_retval = 0;
   3459       1.1  dholland 		break;
   3460       1.1  dholland 	case _PC_ASYNC_IO:
   3461       1.1  dholland 		/* _PC_ASYNC_IO should have been handled by upper layers. */
   3462       1.1  dholland 		KASSERT(0, ("_PC_ASYNC_IO should not get here"));
   3463       1.1  dholland 		error = EINVAL;
   3464       1.1  dholland 		break;
   3465       1.1  dholland 	case _PC_PRIO_IO:
   3466       1.1  dholland 		*ap->a_retval = 0;
   3467       1.1  dholland 		break;
   3468       1.1  dholland 	case _PC_SYNC_IO:
   3469       1.1  dholland 		*ap->a_retval = 0;
   3470       1.1  dholland 		break;
   3471       1.1  dholland 	case _PC_ALLOC_SIZE_MIN:
   3472       1.1  dholland 		*ap->a_retval = vp->v_mount->mnt_stat.f_bsize;
   3473       1.1  dholland 		break;
   3474       1.1  dholland 	case _PC_FILESIZEBITS:
   3475       1.1  dholland 		if (NFS_ISV34(vp))
   3476       1.1  dholland 			*ap->a_retval = 64;
   3477       1.1  dholland 		else
   3478       1.1  dholland 			*ap->a_retval = 32;
   3479       1.1  dholland 		break;
   3480       1.1  dholland 	case _PC_REC_INCR_XFER_SIZE:
   3481       1.1  dholland 		*ap->a_retval = vp->v_mount->mnt_stat.f_iosize;
   3482       1.1  dholland 		break;
   3483       1.1  dholland 	case _PC_REC_MAX_XFER_SIZE:
   3484       1.1  dholland 		*ap->a_retval = -1; /* means ``unlimited'' */
   3485       1.1  dholland 		break;
   3486       1.1  dholland 	case _PC_REC_MIN_XFER_SIZE:
   3487       1.1  dholland 		*ap->a_retval = vp->v_mount->mnt_stat.f_iosize;
   3488       1.1  dholland 		break;
   3489       1.1  dholland 	case _PC_REC_XFER_ALIGN:
   3490       1.1  dholland 		*ap->a_retval = PAGE_SIZE;
   3491       1.1  dholland 		break;
   3492       1.1  dholland 	case _PC_SYMLINK_MAX:
   3493       1.1  dholland 		*ap->a_retval = NFS_MAXPATHLEN;
   3494       1.1  dholland 		break;
   3495       1.1  dholland 
   3496       1.1  dholland 	default:
   3497       1.1  dholland 		error = EINVAL;
   3498       1.1  dholland 		break;
   3499       1.1  dholland 	}
   3500       1.1  dholland 	return (error);
   3501       1.1  dholland }
   3502       1.1  dholland 
   3503