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nfs_clport.c revision 1.1.1.1.12.1
      1  1.1.1.1.12.1     skrll /*	$NetBSD: nfs_clport.c,v 1.1.1.1.12.1 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  */
     34           1.1  dholland 
     35           1.1  dholland #include <sys/cdefs.h>
     36  1.1.1.1.12.1     skrll /* __FBSDID("FreeBSD: head/sys/fs/nfsclient/nfs_clport.c 299413 2016-05-11 06:35:46Z kib "); */
     37  1.1.1.1.12.1     skrll __RCSID("$NetBSD: nfs_clport.c,v 1.1.1.1.12.1 2016/12/05 10:55:25 skrll Exp $");
     38           1.1  dholland 
     39  1.1.1.1.12.1     skrll #include "opt_inet.h"
     40           1.1  dholland #include "opt_inet6.h"
     41           1.1  dholland 
     42  1.1.1.1.12.1     skrll #include <sys/capsicum.h>
     43           1.1  dholland 
     44           1.1  dholland /*
     45           1.1  dholland  * generally, I don't like #includes inside .h files, but it seems to
     46           1.1  dholland  * be the easiest way to handle the port.
     47           1.1  dholland  */
     48  1.1.1.1.12.1     skrll #include <sys/fail.h>
     49           1.1  dholland #include <sys/hash.h>
     50  1.1.1.1.12.1     skrll #include <sys/sysctl.h>
     51           1.1  dholland #include <fs/nfs/nfsport.h>
     52  1.1.1.1.12.1     skrll #include <netinet/in_fib.h>
     53           1.1  dholland #include <netinet/if_ether.h>
     54  1.1.1.1.12.1     skrll #include <netinet6/ip6_var.h>
     55           1.1  dholland #include <net/if_types.h>
     56           1.1  dholland 
     57           1.1  dholland #include <fs/nfsclient/nfs_kdtrace.h>
     58           1.1  dholland 
     59           1.1  dholland #ifdef KDTRACE_HOOKS
     60           1.1  dholland dtrace_nfsclient_attrcache_flush_probe_func_t
     61           1.1  dholland 		dtrace_nfscl_attrcache_flush_done_probe;
     62           1.1  dholland uint32_t	nfscl_attrcache_flush_done_id;
     63           1.1  dholland 
     64           1.1  dholland dtrace_nfsclient_attrcache_get_hit_probe_func_t
     65           1.1  dholland 		dtrace_nfscl_attrcache_get_hit_probe;
     66           1.1  dholland uint32_t	nfscl_attrcache_get_hit_id;
     67           1.1  dholland 
     68           1.1  dholland dtrace_nfsclient_attrcache_get_miss_probe_func_t
     69           1.1  dholland 		dtrace_nfscl_attrcache_get_miss_probe;
     70           1.1  dholland uint32_t	nfscl_attrcache_get_miss_id;
     71           1.1  dholland 
     72           1.1  dholland dtrace_nfsclient_attrcache_load_probe_func_t
     73           1.1  dholland 		dtrace_nfscl_attrcache_load_done_probe;
     74           1.1  dholland uint32_t	nfscl_attrcache_load_done_id;
     75           1.1  dholland #endif /* !KDTRACE_HOOKS */
     76           1.1  dholland 
     77           1.1  dholland extern u_int32_t newnfs_true, newnfs_false, newnfs_xdrneg1;
     78           1.1  dholland extern struct vop_vector newnfs_vnodeops;
     79           1.1  dholland extern struct vop_vector newnfs_fifoops;
     80           1.1  dholland extern uma_zone_t newnfsnode_zone;
     81           1.1  dholland extern struct buf_ops buf_ops_newnfs;
     82           1.1  dholland extern int ncl_pbuf_freecnt;
     83           1.1  dholland extern short nfsv4_cbport;
     84           1.1  dholland extern int nfscl_enablecallb;
     85           1.1  dholland extern int nfs_numnfscbd;
     86           1.1  dholland extern int nfscl_inited;
     87           1.1  dholland struct mtx nfs_clstate_mutex;
     88           1.1  dholland struct mtx ncl_iod_mutex;
     89           1.1  dholland NFSDLOCKMUTEX;
     90           1.1  dholland 
     91           1.1  dholland extern void (*ncl_call_invalcaches)(struct vnode *);
     92           1.1  dholland 
     93  1.1.1.1.12.1     skrll SYSCTL_DECL(_vfs_nfs);
     94  1.1.1.1.12.1     skrll static int ncl_fileid_maxwarnings = 10;
     95  1.1.1.1.12.1     skrll SYSCTL_INT(_vfs_nfs, OID_AUTO, fileid_maxwarnings, CTLFLAG_RWTUN,
     96  1.1.1.1.12.1     skrll     &ncl_fileid_maxwarnings, 0,
     97  1.1.1.1.12.1     skrll     "Limit fileid corruption warnings; 0 is off; -1 is unlimited");
     98  1.1.1.1.12.1     skrll static volatile int ncl_fileid_nwarnings;
     99  1.1.1.1.12.1     skrll 
    100  1.1.1.1.12.1     skrll static void nfscl_warn_fileid(struct nfsmount *, struct nfsvattr *,
    101  1.1.1.1.12.1     skrll     struct nfsvattr *);
    102  1.1.1.1.12.1     skrll 
    103           1.1  dholland /*
    104           1.1  dholland  * Comparison function for vfs_hash functions.
    105           1.1  dholland  */
    106           1.1  dholland int
    107           1.1  dholland newnfs_vncmpf(struct vnode *vp, void *arg)
    108           1.1  dholland {
    109           1.1  dholland 	struct nfsfh *nfhp = (struct nfsfh *)arg;
    110           1.1  dholland 	struct nfsnode *np = VTONFS(vp);
    111           1.1  dholland 
    112           1.1  dholland 	if (np->n_fhp->nfh_len != nfhp->nfh_len ||
    113           1.1  dholland 	    NFSBCMP(np->n_fhp->nfh_fh, nfhp->nfh_fh, nfhp->nfh_len))
    114           1.1  dholland 		return (1);
    115           1.1  dholland 	return (0);
    116           1.1  dholland }
    117           1.1  dholland 
    118           1.1  dholland /*
    119           1.1  dholland  * Look up a vnode/nfsnode by file handle.
    120           1.1  dholland  * Callers must check for mount points!!
    121           1.1  dholland  * In all cases, a pointer to a
    122           1.1  dholland  * nfsnode structure is returned.
    123           1.1  dholland  * This variant takes a "struct nfsfh *" as second argument and uses
    124           1.1  dholland  * that structure up, either by hanging off the nfsnode or FREEing it.
    125           1.1  dholland  */
    126           1.1  dholland int
    127           1.1  dholland nfscl_nget(struct mount *mntp, struct vnode *dvp, struct nfsfh *nfhp,
    128           1.1  dholland     struct componentname *cnp, struct thread *td, struct nfsnode **npp,
    129           1.1  dholland     void *stuff, int lkflags)
    130           1.1  dholland {
    131           1.1  dholland 	struct nfsnode *np, *dnp;
    132           1.1  dholland 	struct vnode *vp, *nvp;
    133           1.1  dholland 	struct nfsv4node *newd, *oldd;
    134           1.1  dholland 	int error;
    135           1.1  dholland 	u_int hash;
    136           1.1  dholland 	struct nfsmount *nmp;
    137           1.1  dholland 
    138           1.1  dholland 	nmp = VFSTONFS(mntp);
    139           1.1  dholland 	dnp = VTONFS(dvp);
    140           1.1  dholland 	*npp = NULL;
    141           1.1  dholland 
    142           1.1  dholland 	hash = fnv_32_buf(nfhp->nfh_fh, nfhp->nfh_len, FNV1_32_INIT);
    143           1.1  dholland 
    144           1.1  dholland 	error = vfs_hash_get(mntp, hash, lkflags,
    145           1.1  dholland 	    td, &nvp, newnfs_vncmpf, nfhp);
    146           1.1  dholland 	if (error == 0 && nvp != NULL) {
    147           1.1  dholland 		/*
    148           1.1  dholland 		 * I believe there is a slight chance that vgonel() could
    149           1.1  dholland 		 * get called on this vnode between when NFSVOPLOCK() drops
    150           1.1  dholland 		 * the VI_LOCK() and vget() acquires it again, so that it
    151           1.1  dholland 		 * hasn't yet had v_usecount incremented. If this were to
    152           1.1  dholland 		 * happen, the VI_DOOMED flag would be set, so check for
    153           1.1  dholland 		 * that here. Since we now have the v_usecount incremented,
    154           1.1  dholland 		 * we should be ok until we vrele() it, if the VI_DOOMED
    155           1.1  dholland 		 * flag isn't set now.
    156           1.1  dholland 		 */
    157           1.1  dholland 		VI_LOCK(nvp);
    158           1.1  dholland 		if ((nvp->v_iflag & VI_DOOMED)) {
    159           1.1  dholland 			VI_UNLOCK(nvp);
    160           1.1  dholland 			vrele(nvp);
    161           1.1  dholland 			error = ENOENT;
    162           1.1  dholland 		} else {
    163           1.1  dholland 			VI_UNLOCK(nvp);
    164           1.1  dholland 		}
    165           1.1  dholland 	}
    166           1.1  dholland 	if (error) {
    167           1.1  dholland 		FREE((caddr_t)nfhp, M_NFSFH);
    168           1.1  dholland 		return (error);
    169           1.1  dholland 	}
    170           1.1  dholland 	if (nvp != NULL) {
    171           1.1  dholland 		np = VTONFS(nvp);
    172           1.1  dholland 		/*
    173           1.1  dholland 		 * For NFSv4, check to see if it is the same name and
    174           1.1  dholland 		 * replace the name, if it is different.
    175           1.1  dholland 		 */
    176           1.1  dholland 		oldd = newd = NULL;
    177           1.1  dholland 		if ((nmp->nm_flag & NFSMNT_NFSV4) && np->n_v4 != NULL &&
    178           1.1  dholland 		    nvp->v_type == VREG &&
    179           1.1  dholland 		    (np->n_v4->n4_namelen != cnp->cn_namelen ||
    180           1.1  dholland 		     NFSBCMP(cnp->cn_nameptr, NFS4NODENAME(np->n_v4),
    181           1.1  dholland 		     cnp->cn_namelen) ||
    182           1.1  dholland 		     dnp->n_fhp->nfh_len != np->n_v4->n4_fhlen ||
    183           1.1  dholland 		     NFSBCMP(dnp->n_fhp->nfh_fh, np->n_v4->n4_data,
    184           1.1  dholland 		     dnp->n_fhp->nfh_len))) {
    185           1.1  dholland 		    MALLOC(newd, struct nfsv4node *,
    186           1.1  dholland 			sizeof (struct nfsv4node) + dnp->n_fhp->nfh_len +
    187           1.1  dholland 			+ cnp->cn_namelen - 1, M_NFSV4NODE, M_WAITOK);
    188           1.1  dholland 		    NFSLOCKNODE(np);
    189           1.1  dholland 		    if (newd != NULL && np->n_v4 != NULL && nvp->v_type == VREG
    190           1.1  dholland 			&& (np->n_v4->n4_namelen != cnp->cn_namelen ||
    191           1.1  dholland 			 NFSBCMP(cnp->cn_nameptr, NFS4NODENAME(np->n_v4),
    192           1.1  dholland 			 cnp->cn_namelen) ||
    193           1.1  dholland 			 dnp->n_fhp->nfh_len != np->n_v4->n4_fhlen ||
    194           1.1  dholland 			 NFSBCMP(dnp->n_fhp->nfh_fh, np->n_v4->n4_data,
    195           1.1  dholland 			 dnp->n_fhp->nfh_len))) {
    196           1.1  dholland 			oldd = np->n_v4;
    197           1.1  dholland 			np->n_v4 = newd;
    198           1.1  dholland 			newd = NULL;
    199           1.1  dholland 			np->n_v4->n4_fhlen = dnp->n_fhp->nfh_len;
    200           1.1  dholland 			np->n_v4->n4_namelen = cnp->cn_namelen;
    201           1.1  dholland 			NFSBCOPY(dnp->n_fhp->nfh_fh, np->n_v4->n4_data,
    202           1.1  dholland 			    dnp->n_fhp->nfh_len);
    203           1.1  dholland 			NFSBCOPY(cnp->cn_nameptr, NFS4NODENAME(np->n_v4),
    204           1.1  dholland 			    cnp->cn_namelen);
    205           1.1  dholland 		    }
    206           1.1  dholland 		    NFSUNLOCKNODE(np);
    207           1.1  dholland 		}
    208           1.1  dholland 		if (newd != NULL)
    209           1.1  dholland 			FREE((caddr_t)newd, M_NFSV4NODE);
    210           1.1  dholland 		if (oldd != NULL)
    211           1.1  dholland 			FREE((caddr_t)oldd, M_NFSV4NODE);
    212           1.1  dholland 		*npp = np;
    213           1.1  dholland 		FREE((caddr_t)nfhp, M_NFSFH);
    214           1.1  dholland 		return (0);
    215           1.1  dholland 	}
    216           1.1  dholland 	np = uma_zalloc(newnfsnode_zone, M_WAITOK | M_ZERO);
    217           1.1  dholland 
    218  1.1.1.1.12.1     skrll 	error = getnewvnode(nfs_vnode_tag, mntp, &newnfs_vnodeops, &nvp);
    219           1.1  dholland 	if (error) {
    220           1.1  dholland 		uma_zfree(newnfsnode_zone, np);
    221           1.1  dholland 		FREE((caddr_t)nfhp, M_NFSFH);
    222           1.1  dholland 		return (error);
    223           1.1  dholland 	}
    224           1.1  dholland 	vp = nvp;
    225           1.1  dholland 	KASSERT(vp->v_bufobj.bo_bsize != 0, ("nfscl_nget: bo_bsize == 0"));
    226           1.1  dholland 	vp->v_bufobj.bo_ops = &buf_ops_newnfs;
    227           1.1  dholland 	vp->v_data = np;
    228           1.1  dholland 	np->n_vnode = vp;
    229           1.1  dholland 	/*
    230           1.1  dholland 	 * Initialize the mutex even if the vnode is going to be a loser.
    231           1.1  dholland 	 * This simplifies the logic in reclaim, which can then unconditionally
    232           1.1  dholland 	 * destroy the mutex (in the case of the loser, or if hash_insert
    233           1.1  dholland 	 * happened to return an error no special casing is needed).
    234           1.1  dholland 	 */
    235           1.1  dholland 	mtx_init(&np->n_mtx, "NEWNFSnode lock", NULL, MTX_DEF | MTX_DUPOK);
    236           1.1  dholland 
    237           1.1  dholland 	/*
    238           1.1  dholland 	 * Are we getting the root? If so, make sure the vnode flags
    239           1.1  dholland 	 * are correct
    240           1.1  dholland 	 */
    241           1.1  dholland 	if ((nfhp->nfh_len == nmp->nm_fhsize) &&
    242           1.1  dholland 	    !bcmp(nfhp->nfh_fh, nmp->nm_fh, nfhp->nfh_len)) {
    243           1.1  dholland 		if (vp->v_type == VNON)
    244           1.1  dholland 			vp->v_type = VDIR;
    245           1.1  dholland 		vp->v_vflag |= VV_ROOT;
    246           1.1  dholland 	}
    247           1.1  dholland 
    248           1.1  dholland 	np->n_fhp = nfhp;
    249           1.1  dholland 	/*
    250           1.1  dholland 	 * For NFSv4, we have to attach the directory file handle and
    251           1.1  dholland 	 * file name, so that Open Ops can be done later.
    252           1.1  dholland 	 */
    253           1.1  dholland 	if (nmp->nm_flag & NFSMNT_NFSV4) {
    254           1.1  dholland 		MALLOC(np->n_v4, struct nfsv4node *, sizeof (struct nfsv4node)
    255           1.1  dholland 		    + dnp->n_fhp->nfh_len + cnp->cn_namelen - 1, M_NFSV4NODE,
    256           1.1  dholland 		    M_WAITOK);
    257           1.1  dholland 		np->n_v4->n4_fhlen = dnp->n_fhp->nfh_len;
    258           1.1  dholland 		np->n_v4->n4_namelen = cnp->cn_namelen;
    259           1.1  dholland 		NFSBCOPY(dnp->n_fhp->nfh_fh, np->n_v4->n4_data,
    260           1.1  dholland 		    dnp->n_fhp->nfh_len);
    261           1.1  dholland 		NFSBCOPY(cnp->cn_nameptr, NFS4NODENAME(np->n_v4),
    262           1.1  dholland 		    cnp->cn_namelen);
    263           1.1  dholland 	} else {
    264           1.1  dholland 		np->n_v4 = NULL;
    265           1.1  dholland 	}
    266           1.1  dholland 
    267           1.1  dholland 	/*
    268           1.1  dholland 	 * NFS supports recursive and shared locking.
    269           1.1  dholland 	 */
    270           1.1  dholland 	lockmgr(vp->v_vnlock, LK_EXCLUSIVE | LK_NOWITNESS, NULL);
    271           1.1  dholland 	VN_LOCK_AREC(vp);
    272           1.1  dholland 	VN_LOCK_ASHARE(vp);
    273           1.1  dholland 	error = insmntque(vp, mntp);
    274           1.1  dholland 	if (error != 0) {
    275           1.1  dholland 		*npp = NULL;
    276           1.1  dholland 		mtx_destroy(&np->n_mtx);
    277           1.1  dholland 		FREE((caddr_t)nfhp, M_NFSFH);
    278           1.1  dholland 		if (np->n_v4 != NULL)
    279           1.1  dholland 			FREE((caddr_t)np->n_v4, M_NFSV4NODE);
    280           1.1  dholland 		uma_zfree(newnfsnode_zone, np);
    281           1.1  dholland 		return (error);
    282           1.1  dholland 	}
    283           1.1  dholland 	error = vfs_hash_insert(vp, hash, lkflags,
    284           1.1  dholland 	    td, &nvp, newnfs_vncmpf, nfhp);
    285           1.1  dholland 	if (error)
    286           1.1  dholland 		return (error);
    287           1.1  dholland 	if (nvp != NULL) {
    288           1.1  dholland 		*npp = VTONFS(nvp);
    289           1.1  dholland 		/* vfs_hash_insert() vput()'s the losing vnode */
    290           1.1  dholland 		return (0);
    291           1.1  dholland 	}
    292           1.1  dholland 	*npp = np;
    293           1.1  dholland 
    294           1.1  dholland 	return (0);
    295           1.1  dholland }
    296           1.1  dholland 
    297           1.1  dholland /*
    298  1.1.1.1.12.1     skrll  * Another variant of nfs_nget(). This one is only used by reopen. It
    299           1.1  dholland  * takes almost the same args as nfs_nget(), but only succeeds if an entry
    300           1.1  dholland  * exists in the cache. (Since files should already be "open" with a
    301           1.1  dholland  * vnode ref cnt on the node when reopen calls this, it should always
    302           1.1  dholland  * succeed.)
    303           1.1  dholland  * Also, don't get a vnode lock, since it may already be locked by some
    304           1.1  dholland  * other process that is handling it. This is ok, since all other threads
    305           1.1  dholland  * on the client are blocked by the nfsc_lock being exclusively held by the
    306           1.1  dholland  * caller of this function.
    307           1.1  dholland  */
    308           1.1  dholland int
    309           1.1  dholland nfscl_ngetreopen(struct mount *mntp, u_int8_t *fhp, int fhsize,
    310           1.1  dholland     struct thread *td, struct nfsnode **npp)
    311           1.1  dholland {
    312           1.1  dholland 	struct vnode *nvp;
    313           1.1  dholland 	u_int hash;
    314           1.1  dholland 	struct nfsfh *nfhp;
    315           1.1  dholland 	int error;
    316           1.1  dholland 
    317           1.1  dholland 	*npp = NULL;
    318           1.1  dholland 	/* For forced dismounts, just return error. */
    319           1.1  dholland 	if ((mntp->mnt_kern_flag & MNTK_UNMOUNTF))
    320           1.1  dholland 		return (EINTR);
    321           1.1  dholland 	MALLOC(nfhp, struct nfsfh *, sizeof (struct nfsfh) + fhsize,
    322           1.1  dholland 	    M_NFSFH, M_WAITOK);
    323           1.1  dholland 	bcopy(fhp, &nfhp->nfh_fh[0], fhsize);
    324           1.1  dholland 	nfhp->nfh_len = fhsize;
    325           1.1  dholland 
    326           1.1  dholland 	hash = fnv_32_buf(fhp, fhsize, FNV1_32_INIT);
    327           1.1  dholland 
    328           1.1  dholland 	/*
    329           1.1  dholland 	 * First, try to get the vnode locked, but don't block for the lock.
    330           1.1  dholland 	 */
    331           1.1  dholland 	error = vfs_hash_get(mntp, hash, (LK_EXCLUSIVE | LK_NOWAIT), td, &nvp,
    332           1.1  dholland 	    newnfs_vncmpf, nfhp);
    333           1.1  dholland 	if (error == 0 && nvp != NULL) {
    334           1.1  dholland 		NFSVOPUNLOCK(nvp, 0);
    335           1.1  dholland 	} else if (error == EBUSY) {
    336           1.1  dholland 		/*
    337  1.1.1.1.12.1     skrll 		 * It is safe so long as a vflush() with
    338           1.1  dholland 		 * FORCECLOSE has not been done. Since the Renew thread is
    339           1.1  dholland 		 * stopped and the MNTK_UNMOUNTF flag is set before doing
    340           1.1  dholland 		 * a vflush() with FORCECLOSE, we should be ok here.
    341           1.1  dholland 		 */
    342           1.1  dholland 		if ((mntp->mnt_kern_flag & MNTK_UNMOUNTF))
    343           1.1  dholland 			error = EINTR;
    344  1.1.1.1.12.1     skrll 		else {
    345  1.1.1.1.12.1     skrll 			vfs_hash_ref(mntp, hash, td, &nvp, newnfs_vncmpf, nfhp);
    346  1.1.1.1.12.1     skrll 			if (nvp == NULL) {
    347  1.1.1.1.12.1     skrll 				error = ENOENT;
    348  1.1.1.1.12.1     skrll 			} else if ((nvp->v_iflag & VI_DOOMED) != 0) {
    349  1.1.1.1.12.1     skrll 				error = ENOENT;
    350  1.1.1.1.12.1     skrll 				vrele(nvp);
    351  1.1.1.1.12.1     skrll 			} else {
    352  1.1.1.1.12.1     skrll 				error = 0;
    353  1.1.1.1.12.1     skrll 			}
    354  1.1.1.1.12.1     skrll 		}
    355           1.1  dholland 	}
    356           1.1  dholland 	FREE(nfhp, M_NFSFH);
    357           1.1  dholland 	if (error)
    358           1.1  dholland 		return (error);
    359           1.1  dholland 	if (nvp != NULL) {
    360           1.1  dholland 		*npp = VTONFS(nvp);
    361           1.1  dholland 		return (0);
    362           1.1  dholland 	}
    363           1.1  dholland 	return (EINVAL);
    364           1.1  dholland }
    365           1.1  dholland 
    366  1.1.1.1.12.1     skrll static void
    367  1.1.1.1.12.1     skrll nfscl_warn_fileid(struct nfsmount *nmp, struct nfsvattr *oldnap,
    368  1.1.1.1.12.1     skrll     struct nfsvattr *newnap)
    369  1.1.1.1.12.1     skrll {
    370  1.1.1.1.12.1     skrll 	int off;
    371  1.1.1.1.12.1     skrll 
    372  1.1.1.1.12.1     skrll 	if (ncl_fileid_maxwarnings >= 0 &&
    373  1.1.1.1.12.1     skrll 	    ncl_fileid_nwarnings >= ncl_fileid_maxwarnings)
    374  1.1.1.1.12.1     skrll 		return;
    375  1.1.1.1.12.1     skrll 	off = 0;
    376  1.1.1.1.12.1     skrll 	if (ncl_fileid_maxwarnings >= 0) {
    377  1.1.1.1.12.1     skrll 		if (++ncl_fileid_nwarnings >= ncl_fileid_maxwarnings)
    378  1.1.1.1.12.1     skrll 			off = 1;
    379  1.1.1.1.12.1     skrll 	}
    380  1.1.1.1.12.1     skrll 
    381  1.1.1.1.12.1     skrll 	printf("newnfs: server '%s' error: fileid changed. "
    382  1.1.1.1.12.1     skrll 	    "fsid %jx:%jx: expected fileid %#jx, got %#jx. "
    383  1.1.1.1.12.1     skrll 	    "(BROKEN NFS SERVER OR MIDDLEWARE)\n",
    384  1.1.1.1.12.1     skrll 	    nmp->nm_com.nmcom_hostname,
    385  1.1.1.1.12.1     skrll 	    (uintmax_t)nmp->nm_fsid[0],
    386  1.1.1.1.12.1     skrll 	    (uintmax_t)nmp->nm_fsid[1],
    387  1.1.1.1.12.1     skrll 	    (uintmax_t)oldnap->na_fileid,
    388  1.1.1.1.12.1     skrll 	    (uintmax_t)newnap->na_fileid);
    389  1.1.1.1.12.1     skrll 
    390  1.1.1.1.12.1     skrll 	if (off)
    391  1.1.1.1.12.1     skrll 		printf("newnfs: Logged %d times about fileid corruption; "
    392  1.1.1.1.12.1     skrll 		    "going quiet to avoid spamming logs excessively. (Limit "
    393  1.1.1.1.12.1     skrll 		    "is: %d).\n", ncl_fileid_nwarnings,
    394  1.1.1.1.12.1     skrll 		    ncl_fileid_maxwarnings);
    395  1.1.1.1.12.1     skrll }
    396  1.1.1.1.12.1     skrll 
    397           1.1  dholland /*
    398           1.1  dholland  * Load the attribute cache (that lives in the nfsnode entry) with
    399           1.1  dholland  * the attributes of the second argument and
    400           1.1  dholland  * Iff vaper not NULL
    401           1.1  dholland  *    copy the attributes to *vaper
    402           1.1  dholland  * Similar to nfs_loadattrcache(), except the attributes are passed in
    403           1.1  dholland  * instead of being parsed out of the mbuf list.
    404           1.1  dholland  */
    405           1.1  dholland int
    406           1.1  dholland nfscl_loadattrcache(struct vnode **vpp, struct nfsvattr *nap, void *nvaper,
    407           1.1  dholland     void *stuff, int writeattr, int dontshrink)
    408           1.1  dholland {
    409           1.1  dholland 	struct vnode *vp = *vpp;
    410           1.1  dholland 	struct vattr *vap, *nvap = &nap->na_vattr, *vaper = nvaper;
    411           1.1  dholland 	struct nfsnode *np;
    412           1.1  dholland 	struct nfsmount *nmp;
    413           1.1  dholland 	struct timespec mtime_save;
    414           1.1  dholland 	u_quad_t nsize;
    415  1.1.1.1.12.1     skrll 	int setnsize, error, force_fid_err;
    416  1.1.1.1.12.1     skrll 
    417  1.1.1.1.12.1     skrll 	error = 0;
    418  1.1.1.1.12.1     skrll 	setnsize = 0;
    419  1.1.1.1.12.1     skrll 	nsize = 0;
    420           1.1  dholland 
    421           1.1  dholland 	/*
    422           1.1  dholland 	 * If v_type == VNON it is a new node, so fill in the v_type,
    423           1.1  dholland 	 * n_mtime fields. Check to see if it represents a special
    424           1.1  dholland 	 * device, and if so, check for a possible alias. Once the
    425           1.1  dholland 	 * correct vnode has been obtained, fill in the rest of the
    426           1.1  dholland 	 * information.
    427           1.1  dholland 	 */
    428           1.1  dholland 	np = VTONFS(vp);
    429           1.1  dholland 	NFSLOCKNODE(np);
    430           1.1  dholland 	if (vp->v_type != nvap->va_type) {
    431           1.1  dholland 		vp->v_type = nvap->va_type;
    432           1.1  dholland 		if (vp->v_type == VFIFO)
    433           1.1  dholland 			vp->v_op = &newnfs_fifoops;
    434           1.1  dholland 		np->n_mtime = nvap->va_mtime;
    435           1.1  dholland 	}
    436           1.1  dholland 	nmp = VFSTONFS(vp->v_mount);
    437           1.1  dholland 	vap = &np->n_vattr.na_vattr;
    438           1.1  dholland 	mtime_save = vap->va_mtime;
    439           1.1  dholland 	if (writeattr) {
    440           1.1  dholland 		np->n_vattr.na_filerev = nap->na_filerev;
    441           1.1  dholland 		np->n_vattr.na_size = nap->na_size;
    442           1.1  dholland 		np->n_vattr.na_mtime = nap->na_mtime;
    443           1.1  dholland 		np->n_vattr.na_ctime = nap->na_ctime;
    444           1.1  dholland 		np->n_vattr.na_fsid = nap->na_fsid;
    445           1.1  dholland 		np->n_vattr.na_mode = nap->na_mode;
    446           1.1  dholland 	} else {
    447  1.1.1.1.12.1     skrll 		force_fid_err = 0;
    448  1.1.1.1.12.1     skrll 		KFAIL_POINT_ERROR(DEBUG_FP, nfscl_force_fileid_warning,
    449  1.1.1.1.12.1     skrll 		    force_fid_err);
    450  1.1.1.1.12.1     skrll 		/*
    451  1.1.1.1.12.1     skrll 		 * BROKEN NFS SERVER OR MIDDLEWARE
    452  1.1.1.1.12.1     skrll 		 *
    453  1.1.1.1.12.1     skrll 		 * Certain NFS servers (certain old proprietary filers ca.
    454  1.1.1.1.12.1     skrll 		 * 2006) or broken middleboxes (e.g. WAN accelerator products)
    455  1.1.1.1.12.1     skrll 		 * will respond to GETATTR requests with results for a
    456  1.1.1.1.12.1     skrll 		 * different fileid.
    457  1.1.1.1.12.1     skrll 		 *
    458  1.1.1.1.12.1     skrll 		 * The WAN accelerator we've observed not only serves stale
    459  1.1.1.1.12.1     skrll 		 * cache results for a given file, it also occasionally serves
    460  1.1.1.1.12.1     skrll 		 * results for wholly different files.  This causes surprising
    461  1.1.1.1.12.1     skrll 		 * problems; for example the cached size attribute of a file
    462  1.1.1.1.12.1     skrll 		 * may truncate down and then back up, resulting in zero
    463  1.1.1.1.12.1     skrll 		 * regions in file contents read by applications.  We observed
    464  1.1.1.1.12.1     skrll 		 * this reliably with Clang and .c files during parallel build.
    465  1.1.1.1.12.1     skrll 		 * A pcap revealed packet fragmentation and GETATTR RPC
    466  1.1.1.1.12.1     skrll 		 * responses with wholly wrong fileids.
    467  1.1.1.1.12.1     skrll 		 */
    468  1.1.1.1.12.1     skrll 		if ((np->n_vattr.na_fileid != 0 &&
    469  1.1.1.1.12.1     skrll 		     np->n_vattr.na_fileid != nap->na_fileid) ||
    470  1.1.1.1.12.1     skrll 		    force_fid_err) {
    471  1.1.1.1.12.1     skrll 			nfscl_warn_fileid(nmp, &np->n_vattr, nap);
    472  1.1.1.1.12.1     skrll 			error = EIDRM;
    473  1.1.1.1.12.1     skrll 			goto out;
    474  1.1.1.1.12.1     skrll 		}
    475           1.1  dholland 		NFSBCOPY((caddr_t)nap, (caddr_t)&np->n_vattr,
    476           1.1  dholland 		    sizeof (struct nfsvattr));
    477           1.1  dholland 	}
    478           1.1  dholland 
    479           1.1  dholland 	/*
    480           1.1  dholland 	 * For NFSv4, if the node's fsid is not equal to the mount point's
    481           1.1  dholland 	 * fsid, return the low order 32bits of the node's fsid. This
    482           1.1  dholland 	 * allows getcwd(3) to work. There is a chance that the fsid might
    483           1.1  dholland 	 * be the same as a local fs, but since this is in an NFS mount
    484           1.1  dholland 	 * point, I don't think that will cause any problems?
    485           1.1  dholland 	 */
    486           1.1  dholland 	if (NFSHASNFSV4(nmp) && NFSHASHASSETFSID(nmp) &&
    487           1.1  dholland 	    (nmp->nm_fsid[0] != np->n_vattr.na_filesid[0] ||
    488           1.1  dholland 	     nmp->nm_fsid[1] != np->n_vattr.na_filesid[1])) {
    489           1.1  dholland 		/*
    490           1.1  dholland 		 * va_fsid needs to be set to some value derived from
    491           1.1  dholland 		 * np->n_vattr.na_filesid that is not equal
    492           1.1  dholland 		 * vp->v_mount->mnt_stat.f_fsid[0], so that it changes
    493           1.1  dholland 		 * from the value used for the top level server volume
    494           1.1  dholland 		 * in the mounted subtree.
    495           1.1  dholland 		 */
    496           1.1  dholland 		if (vp->v_mount->mnt_stat.f_fsid.val[0] !=
    497           1.1  dholland 		    (uint32_t)np->n_vattr.na_filesid[0])
    498           1.1  dholland 			vap->va_fsid = (uint32_t)np->n_vattr.na_filesid[0];
    499           1.1  dholland 		else
    500           1.1  dholland 			vap->va_fsid = (uint32_t)hash32_buf(
    501           1.1  dholland 			    np->n_vattr.na_filesid, 2 * sizeof(uint64_t), 0);
    502           1.1  dholland 	} else
    503           1.1  dholland 		vap->va_fsid = vp->v_mount->mnt_stat.f_fsid.val[0];
    504           1.1  dholland 	np->n_attrstamp = time_second;
    505           1.1  dholland 	if (vap->va_size != np->n_size) {
    506           1.1  dholland 		if (vap->va_type == VREG) {
    507           1.1  dholland 			if (dontshrink && vap->va_size < np->n_size) {
    508           1.1  dholland 				/*
    509           1.1  dholland 				 * We've been told not to shrink the file;
    510           1.1  dholland 				 * zero np->n_attrstamp to indicate that
    511           1.1  dholland 				 * the attributes are stale.
    512           1.1  dholland 				 */
    513           1.1  dholland 				vap->va_size = np->n_size;
    514           1.1  dholland 				np->n_attrstamp = 0;
    515           1.1  dholland 				KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(vp);
    516           1.1  dholland 				vnode_pager_setsize(vp, np->n_size);
    517           1.1  dholland 			} else if (np->n_flag & NMODIFIED) {
    518           1.1  dholland 				/*
    519           1.1  dholland 				 * We've modified the file: Use the larger
    520           1.1  dholland 				 * of our size, and the server's size.
    521           1.1  dholland 				 */
    522           1.1  dholland 				if (vap->va_size < np->n_size) {
    523           1.1  dholland 					vap->va_size = np->n_size;
    524           1.1  dholland 				} else {
    525           1.1  dholland 					np->n_size = vap->va_size;
    526           1.1  dholland 					np->n_flag |= NSIZECHANGED;
    527           1.1  dholland 				}
    528           1.1  dholland 				vnode_pager_setsize(vp, np->n_size);
    529           1.1  dholland 			} else if (vap->va_size < np->n_size) {
    530           1.1  dholland 				/*
    531           1.1  dholland 				 * When shrinking the size, the call to
    532           1.1  dholland 				 * vnode_pager_setsize() cannot be done
    533           1.1  dholland 				 * with the mutex held, so delay it until
    534           1.1  dholland 				 * after the mtx_unlock call.
    535           1.1  dholland 				 */
    536           1.1  dholland 				nsize = np->n_size = vap->va_size;
    537           1.1  dholland 				np->n_flag |= NSIZECHANGED;
    538           1.1  dholland 				setnsize = 1;
    539           1.1  dholland 			} else {
    540           1.1  dholland 				np->n_size = vap->va_size;
    541           1.1  dholland 				np->n_flag |= NSIZECHANGED;
    542           1.1  dholland 				vnode_pager_setsize(vp, np->n_size);
    543           1.1  dholland 			}
    544           1.1  dholland 		} else {
    545           1.1  dholland 			np->n_size = vap->va_size;
    546           1.1  dholland 		}
    547           1.1  dholland 	}
    548           1.1  dholland 	/*
    549           1.1  dholland 	 * The following checks are added to prevent a race between (say)
    550           1.1  dholland 	 * a READDIR+ and a WRITE.
    551           1.1  dholland 	 * READDIR+, WRITE requests sent out.
    552           1.1  dholland 	 * READDIR+ resp, WRITE resp received on client.
    553           1.1  dholland 	 * However, the WRITE resp was handled before the READDIR+ resp
    554           1.1  dholland 	 * causing the post op attrs from the write to be loaded first
    555           1.1  dholland 	 * and the attrs from the READDIR+ to be loaded later. If this
    556           1.1  dholland 	 * happens, we have stale attrs loaded into the attrcache.
    557           1.1  dholland 	 * We detect this by for the mtime moving back. We invalidate the
    558           1.1  dholland 	 * attrcache when this happens.
    559           1.1  dholland 	 */
    560           1.1  dholland 	if (timespeccmp(&mtime_save, &vap->va_mtime, >)) {
    561           1.1  dholland 		/* Size changed or mtime went backwards */
    562           1.1  dholland 		np->n_attrstamp = 0;
    563           1.1  dholland 		KDTRACE_NFS_ATTRCACHE_FLUSH_DONE(vp);
    564           1.1  dholland 	}
    565           1.1  dholland 	if (vaper != NULL) {
    566           1.1  dholland 		NFSBCOPY((caddr_t)vap, (caddr_t)vaper, sizeof(*vap));
    567           1.1  dholland 		if (np->n_flag & NCHG) {
    568           1.1  dholland 			if (np->n_flag & NACC)
    569           1.1  dholland 				vaper->va_atime = np->n_atim;
    570           1.1  dholland 			if (np->n_flag & NUPD)
    571           1.1  dholland 				vaper->va_mtime = np->n_mtim;
    572           1.1  dholland 		}
    573           1.1  dholland 	}
    574  1.1.1.1.12.1     skrll 
    575  1.1.1.1.12.1     skrll out:
    576           1.1  dholland #ifdef KDTRACE_HOOKS
    577           1.1  dholland 	if (np->n_attrstamp != 0)
    578  1.1.1.1.12.1     skrll 		KDTRACE_NFS_ATTRCACHE_LOAD_DONE(vp, vap, error);
    579           1.1  dholland #endif
    580           1.1  dholland 	NFSUNLOCKNODE(np);
    581           1.1  dholland 	if (setnsize)
    582           1.1  dholland 		vnode_pager_setsize(vp, nsize);
    583  1.1.1.1.12.1     skrll 	return (error);
    584           1.1  dholland }
    585           1.1  dholland 
    586           1.1  dholland /*
    587           1.1  dholland  * Fill in the client id name. For these bytes:
    588           1.1  dholland  * 1 - they must be unique
    589           1.1  dholland  * 2 - they should be persistent across client reboots
    590           1.1  dholland  * 1 is more critical than 2
    591           1.1  dholland  * Use the mount point's unique id plus either the uuid or, if that
    592           1.1  dholland  * isn't set, random junk.
    593           1.1  dholland  */
    594           1.1  dholland void
    595           1.1  dholland nfscl_fillclid(u_int64_t clval, char *uuid, u_int8_t *cp, u_int16_t idlen)
    596           1.1  dholland {
    597           1.1  dholland 	int uuidlen;
    598           1.1  dholland 
    599           1.1  dholland 	/*
    600           1.1  dholland 	 * First, put in the 64bit mount point identifier.
    601           1.1  dholland 	 */
    602           1.1  dholland 	if (idlen >= sizeof (u_int64_t)) {
    603           1.1  dholland 		NFSBCOPY((caddr_t)&clval, cp, sizeof (u_int64_t));
    604           1.1  dholland 		cp += sizeof (u_int64_t);
    605           1.1  dholland 		idlen -= sizeof (u_int64_t);
    606           1.1  dholland 	}
    607           1.1  dholland 
    608           1.1  dholland 	/*
    609           1.1  dholland 	 * If uuid is non-zero length, use it.
    610           1.1  dholland 	 */
    611           1.1  dholland 	uuidlen = strlen(uuid);
    612           1.1  dholland 	if (uuidlen > 0 && idlen >= uuidlen) {
    613           1.1  dholland 		NFSBCOPY(uuid, cp, uuidlen);
    614           1.1  dholland 		cp += uuidlen;
    615           1.1  dholland 		idlen -= uuidlen;
    616           1.1  dholland 	}
    617           1.1  dholland 
    618           1.1  dholland 	/*
    619           1.1  dholland 	 * This only normally happens if the uuid isn't set.
    620           1.1  dholland 	 */
    621           1.1  dholland 	while (idlen > 0) {
    622           1.1  dholland 		*cp++ = (u_int8_t)(arc4random() % 256);
    623           1.1  dholland 		idlen--;
    624           1.1  dholland 	}
    625           1.1  dholland }
    626           1.1  dholland 
    627           1.1  dholland /*
    628           1.1  dholland  * Fill in a lock owner name. For now, pid + the process's creation time.
    629           1.1  dholland  */
    630           1.1  dholland void
    631           1.1  dholland nfscl_filllockowner(void *id, u_int8_t *cp, int flags)
    632           1.1  dholland {
    633           1.1  dholland 	union {
    634           1.1  dholland 		u_int32_t	lval;
    635           1.1  dholland 		u_int8_t	cval[4];
    636           1.1  dholland 	} tl;
    637           1.1  dholland 	struct proc *p;
    638           1.1  dholland 
    639           1.1  dholland 	if (id == NULL) {
    640           1.1  dholland 		printf("NULL id\n");
    641           1.1  dholland 		bzero(cp, NFSV4CL_LOCKNAMELEN);
    642           1.1  dholland 		return;
    643           1.1  dholland 	}
    644           1.1  dholland 	if ((flags & F_POSIX) != 0) {
    645           1.1  dholland 		p = (struct proc *)id;
    646           1.1  dholland 		tl.lval = p->p_pid;
    647           1.1  dholland 		*cp++ = tl.cval[0];
    648           1.1  dholland 		*cp++ = tl.cval[1];
    649           1.1  dholland 		*cp++ = tl.cval[2];
    650           1.1  dholland 		*cp++ = tl.cval[3];
    651           1.1  dholland 		tl.lval = p->p_stats->p_start.tv_sec;
    652           1.1  dholland 		*cp++ = tl.cval[0];
    653           1.1  dholland 		*cp++ = tl.cval[1];
    654           1.1  dholland 		*cp++ = tl.cval[2];
    655           1.1  dholland 		*cp++ = tl.cval[3];
    656           1.1  dholland 		tl.lval = p->p_stats->p_start.tv_usec;
    657           1.1  dholland 		*cp++ = tl.cval[0];
    658           1.1  dholland 		*cp++ = tl.cval[1];
    659           1.1  dholland 		*cp++ = tl.cval[2];
    660           1.1  dholland 		*cp = tl.cval[3];
    661           1.1  dholland 	} else if ((flags & F_FLOCK) != 0) {
    662           1.1  dholland 		bcopy(&id, cp, sizeof(id));
    663           1.1  dholland 		bzero(&cp[sizeof(id)], NFSV4CL_LOCKNAMELEN - sizeof(id));
    664           1.1  dholland 	} else {
    665           1.1  dholland 		printf("nfscl_filllockowner: not F_POSIX or F_FLOCK\n");
    666           1.1  dholland 		bzero(cp, NFSV4CL_LOCKNAMELEN);
    667           1.1  dholland 	}
    668           1.1  dholland }
    669           1.1  dholland 
    670           1.1  dholland /*
    671           1.1  dholland  * Find the parent process for the thread passed in as an argument.
    672           1.1  dholland  * If none exists, return NULL, otherwise return a thread for the parent.
    673           1.1  dholland  * (Can be any of the threads, since it is only used for td->td_proc.)
    674           1.1  dholland  */
    675           1.1  dholland NFSPROC_T *
    676           1.1  dholland nfscl_getparent(struct thread *td)
    677           1.1  dholland {
    678           1.1  dholland 	struct proc *p;
    679           1.1  dholland 	struct thread *ptd;
    680           1.1  dholland 
    681           1.1  dholland 	if (td == NULL)
    682           1.1  dholland 		return (NULL);
    683           1.1  dholland 	p = td->td_proc;
    684           1.1  dholland 	if (p->p_pid == 0)
    685           1.1  dholland 		return (NULL);
    686           1.1  dholland 	p = p->p_pptr;
    687           1.1  dholland 	if (p == NULL)
    688           1.1  dholland 		return (NULL);
    689           1.1  dholland 	ptd = TAILQ_FIRST(&p->p_threads);
    690           1.1  dholland 	return (ptd);
    691           1.1  dholland }
    692           1.1  dholland 
    693           1.1  dholland /*
    694           1.1  dholland  * Start up the renew kernel thread.
    695           1.1  dholland  */
    696           1.1  dholland static void
    697           1.1  dholland start_nfscl(void *arg)
    698           1.1  dholland {
    699           1.1  dholland 	struct nfsclclient *clp;
    700           1.1  dholland 	struct thread *td;
    701           1.1  dholland 
    702           1.1  dholland 	clp = (struct nfsclclient *)arg;
    703           1.1  dholland 	td = TAILQ_FIRST(&clp->nfsc_renewthread->p_threads);
    704           1.1  dholland 	nfscl_renewthread(clp, td);
    705           1.1  dholland 	kproc_exit(0);
    706           1.1  dholland }
    707           1.1  dholland 
    708           1.1  dholland void
    709           1.1  dholland nfscl_start_renewthread(struct nfsclclient *clp)
    710           1.1  dholland {
    711           1.1  dholland 
    712           1.1  dholland 	kproc_create(start_nfscl, (void *)clp, &clp->nfsc_renewthread, 0, 0,
    713           1.1  dholland 	    "nfscl");
    714           1.1  dholland }
    715           1.1  dholland 
    716           1.1  dholland /*
    717           1.1  dholland  * Handle wcc_data.
    718           1.1  dholland  * For NFSv4, it assumes that nfsv4_wccattr() was used to set up the getattr
    719           1.1  dholland  * as the first Op after PutFH.
    720           1.1  dholland  * (For NFSv4, the postop attributes are after the Op, so they can't be
    721           1.1  dholland  *  parsed here. A separate call to nfscl_postop_attr() is required.)
    722           1.1  dholland  */
    723           1.1  dholland int
    724           1.1  dholland nfscl_wcc_data(struct nfsrv_descript *nd, struct vnode *vp,
    725           1.1  dholland     struct nfsvattr *nap, int *flagp, int *wccflagp, void *stuff)
    726           1.1  dholland {
    727           1.1  dholland 	u_int32_t *tl;
    728           1.1  dholland 	struct nfsnode *np = VTONFS(vp);
    729           1.1  dholland 	struct nfsvattr nfsva;
    730           1.1  dholland 	int error = 0;
    731           1.1  dholland 
    732           1.1  dholland 	if (wccflagp != NULL)
    733           1.1  dholland 		*wccflagp = 0;
    734           1.1  dholland 	if (nd->nd_flag & ND_NFSV3) {
    735           1.1  dholland 		*flagp = 0;
    736           1.1  dholland 		NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
    737           1.1  dholland 		if (*tl == newnfs_true) {
    738           1.1  dholland 			NFSM_DISSECT(tl, u_int32_t *, 6 * NFSX_UNSIGNED);
    739           1.1  dholland 			if (wccflagp != NULL) {
    740           1.1  dholland 				mtx_lock(&np->n_mtx);
    741           1.1  dholland 				*wccflagp = (np->n_mtime.tv_sec ==
    742           1.1  dholland 				    fxdr_unsigned(u_int32_t, *(tl + 2)) &&
    743           1.1  dholland 				    np->n_mtime.tv_nsec ==
    744           1.1  dholland 				    fxdr_unsigned(u_int32_t, *(tl + 3)));
    745           1.1  dholland 				mtx_unlock(&np->n_mtx);
    746           1.1  dholland 			}
    747           1.1  dholland 		}
    748           1.1  dholland 		error = nfscl_postop_attr(nd, nap, flagp, stuff);
    749           1.1  dholland 	} else if ((nd->nd_flag & (ND_NOMOREDATA | ND_NFSV4 | ND_V4WCCATTR))
    750           1.1  dholland 	    == (ND_NFSV4 | ND_V4WCCATTR)) {
    751           1.1  dholland 		error = nfsv4_loadattr(nd, NULL, &nfsva, NULL,
    752           1.1  dholland 		    NULL, 0, NULL, NULL, NULL, NULL, NULL, 0,
    753           1.1  dholland 		    NULL, NULL, NULL, NULL, NULL);
    754           1.1  dholland 		if (error)
    755           1.1  dholland 			return (error);
    756           1.1  dholland 		/*
    757           1.1  dholland 		 * Get rid of Op# and status for next op.
    758           1.1  dholland 		 */
    759           1.1  dholland 		NFSM_DISSECT(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
    760           1.1  dholland 		if (*++tl)
    761           1.1  dholland 			nd->nd_flag |= ND_NOMOREDATA;
    762           1.1  dholland 		if (wccflagp != NULL &&
    763           1.1  dholland 		    nfsva.na_vattr.va_mtime.tv_sec != 0) {
    764           1.1  dholland 			mtx_lock(&np->n_mtx);
    765           1.1  dholland 			*wccflagp = (np->n_mtime.tv_sec ==
    766           1.1  dholland 			    nfsva.na_vattr.va_mtime.tv_sec &&
    767           1.1  dholland 			    np->n_mtime.tv_nsec ==
    768           1.1  dholland 			    nfsva.na_vattr.va_mtime.tv_sec);
    769           1.1  dholland 			mtx_unlock(&np->n_mtx);
    770           1.1  dholland 		}
    771           1.1  dholland 	}
    772           1.1  dholland nfsmout:
    773           1.1  dholland 	return (error);
    774           1.1  dholland }
    775           1.1  dholland 
    776           1.1  dholland /*
    777           1.1  dholland  * Get postop attributes.
    778           1.1  dholland  */
    779           1.1  dholland int
    780           1.1  dholland nfscl_postop_attr(struct nfsrv_descript *nd, struct nfsvattr *nap, int *retp,
    781           1.1  dholland     void *stuff)
    782           1.1  dholland {
    783           1.1  dholland 	u_int32_t *tl;
    784           1.1  dholland 	int error = 0;
    785           1.1  dholland 
    786           1.1  dholland 	*retp = 0;
    787           1.1  dholland 	if (nd->nd_flag & ND_NOMOREDATA)
    788           1.1  dholland 		return (error);
    789           1.1  dholland 	if (nd->nd_flag & ND_NFSV3) {
    790           1.1  dholland 		NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
    791           1.1  dholland 		*retp = fxdr_unsigned(int, *tl);
    792           1.1  dholland 	} else if (nd->nd_flag & ND_NFSV4) {
    793           1.1  dholland 		/*
    794           1.1  dholland 		 * For NFSv4, the postop attr are at the end, so no point
    795           1.1  dholland 		 * in looking if nd_repstat != 0.
    796           1.1  dholland 		 */
    797           1.1  dholland 		if (!nd->nd_repstat) {
    798           1.1  dholland 			NFSM_DISSECT(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
    799           1.1  dholland 			if (*(tl + 1))
    800           1.1  dholland 				/* should never happen since nd_repstat != 0 */
    801           1.1  dholland 				nd->nd_flag |= ND_NOMOREDATA;
    802           1.1  dholland 			else
    803           1.1  dholland 				*retp = 1;
    804           1.1  dholland 		}
    805           1.1  dholland 	} else if (!nd->nd_repstat) {
    806           1.1  dholland 		/* For NFSv2, the attributes are here iff nd_repstat == 0 */
    807           1.1  dholland 		*retp = 1;
    808           1.1  dholland 	}
    809           1.1  dholland 	if (*retp) {
    810           1.1  dholland 		error = nfsm_loadattr(nd, nap);
    811           1.1  dholland 		if (error)
    812           1.1  dholland 			*retp = 0;
    813           1.1  dholland 	}
    814           1.1  dholland nfsmout:
    815           1.1  dholland 	return (error);
    816           1.1  dholland }
    817           1.1  dholland 
    818           1.1  dholland /*
    819           1.1  dholland  * Fill in the setable attributes. The full argument indicates whether
    820           1.1  dholland  * to fill in them all or just mode and time.
    821           1.1  dholland  */
    822           1.1  dholland void
    823           1.1  dholland nfscl_fillsattr(struct nfsrv_descript *nd, struct vattr *vap,
    824           1.1  dholland     struct vnode *vp, int flags, u_int32_t rdev)
    825           1.1  dholland {
    826           1.1  dholland 	u_int32_t *tl;
    827           1.1  dholland 	struct nfsv2_sattr *sp;
    828           1.1  dholland 	nfsattrbit_t attrbits;
    829           1.1  dholland 
    830           1.1  dholland 	switch (nd->nd_flag & (ND_NFSV2 | ND_NFSV3 | ND_NFSV4)) {
    831           1.1  dholland 	case ND_NFSV2:
    832           1.1  dholland 		NFSM_BUILD(sp, struct nfsv2_sattr *, NFSX_V2SATTR);
    833           1.1  dholland 		if (vap->va_mode == (mode_t)VNOVAL)
    834           1.1  dholland 			sp->sa_mode = newnfs_xdrneg1;
    835           1.1  dholland 		else
    836           1.1  dholland 			sp->sa_mode = vtonfsv2_mode(vap->va_type, vap->va_mode);
    837           1.1  dholland 		if (vap->va_uid == (uid_t)VNOVAL)
    838           1.1  dholland 			sp->sa_uid = newnfs_xdrneg1;
    839           1.1  dholland 		else
    840           1.1  dholland 			sp->sa_uid = txdr_unsigned(vap->va_uid);
    841           1.1  dholland 		if (vap->va_gid == (gid_t)VNOVAL)
    842           1.1  dholland 			sp->sa_gid = newnfs_xdrneg1;
    843           1.1  dholland 		else
    844           1.1  dholland 			sp->sa_gid = txdr_unsigned(vap->va_gid);
    845           1.1  dholland 		if (flags & NFSSATTR_SIZE0)
    846           1.1  dholland 			sp->sa_size = 0;
    847           1.1  dholland 		else if (flags & NFSSATTR_SIZENEG1)
    848           1.1  dholland 			sp->sa_size = newnfs_xdrneg1;
    849           1.1  dholland 		else if (flags & NFSSATTR_SIZERDEV)
    850           1.1  dholland 			sp->sa_size = txdr_unsigned(rdev);
    851           1.1  dholland 		else
    852           1.1  dholland 			sp->sa_size = txdr_unsigned(vap->va_size);
    853           1.1  dholland 		txdr_nfsv2time(&vap->va_atime, &sp->sa_atime);
    854           1.1  dholland 		txdr_nfsv2time(&vap->va_mtime, &sp->sa_mtime);
    855           1.1  dholland 		break;
    856           1.1  dholland 	case ND_NFSV3:
    857           1.1  dholland 		if (vap->va_mode != (mode_t)VNOVAL) {
    858           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
    859           1.1  dholland 			*tl++ = newnfs_true;
    860           1.1  dholland 			*tl = txdr_unsigned(vap->va_mode);
    861           1.1  dholland 		} else {
    862           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
    863           1.1  dholland 			*tl = newnfs_false;
    864           1.1  dholland 		}
    865           1.1  dholland 		if ((flags & NFSSATTR_FULL) && vap->va_uid != (uid_t)VNOVAL) {
    866           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
    867           1.1  dholland 			*tl++ = newnfs_true;
    868           1.1  dholland 			*tl = txdr_unsigned(vap->va_uid);
    869           1.1  dholland 		} else {
    870           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
    871           1.1  dholland 			*tl = newnfs_false;
    872           1.1  dholland 		}
    873           1.1  dholland 		if ((flags & NFSSATTR_FULL) && vap->va_gid != (gid_t)VNOVAL) {
    874           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
    875           1.1  dholland 			*tl++ = newnfs_true;
    876           1.1  dholland 			*tl = txdr_unsigned(vap->va_gid);
    877           1.1  dholland 		} else {
    878           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
    879           1.1  dholland 			*tl = newnfs_false;
    880           1.1  dholland 		}
    881           1.1  dholland 		if ((flags & NFSSATTR_FULL) && vap->va_size != VNOVAL) {
    882           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
    883           1.1  dholland 			*tl++ = newnfs_true;
    884           1.1  dholland 			txdr_hyper(vap->va_size, tl);
    885           1.1  dholland 		} else {
    886           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
    887           1.1  dholland 			*tl = newnfs_false;
    888           1.1  dholland 		}
    889           1.1  dholland 		if (vap->va_atime.tv_sec != VNOVAL) {
    890           1.1  dholland 			if ((vap->va_vaflags & VA_UTIMES_NULL) == 0) {
    891           1.1  dholland 				NFSM_BUILD(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
    892           1.1  dholland 				*tl++ = txdr_unsigned(NFSV3SATTRTIME_TOCLIENT);
    893           1.1  dholland 				txdr_nfsv3time(&vap->va_atime, tl);
    894           1.1  dholland 			} else {
    895           1.1  dholland 				NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
    896           1.1  dholland 				*tl = txdr_unsigned(NFSV3SATTRTIME_TOSERVER);
    897           1.1  dholland 			}
    898           1.1  dholland 		} else {
    899           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
    900           1.1  dholland 			*tl = txdr_unsigned(NFSV3SATTRTIME_DONTCHANGE);
    901           1.1  dholland 		}
    902           1.1  dholland 		if (vap->va_mtime.tv_sec != VNOVAL) {
    903           1.1  dholland 			if ((vap->va_vaflags & VA_UTIMES_NULL) == 0) {
    904           1.1  dholland 				NFSM_BUILD(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
    905           1.1  dholland 				*tl++ = txdr_unsigned(NFSV3SATTRTIME_TOCLIENT);
    906           1.1  dholland 				txdr_nfsv3time(&vap->va_mtime, tl);
    907           1.1  dholland 			} else {
    908           1.1  dholland 				NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
    909           1.1  dholland 				*tl = txdr_unsigned(NFSV3SATTRTIME_TOSERVER);
    910           1.1  dholland 			}
    911           1.1  dholland 		} else {
    912           1.1  dholland 			NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
    913           1.1  dholland 			*tl = txdr_unsigned(NFSV3SATTRTIME_DONTCHANGE);
    914           1.1  dholland 		}
    915           1.1  dholland 		break;
    916           1.1  dholland 	case ND_NFSV4:
    917           1.1  dholland 		NFSZERO_ATTRBIT(&attrbits);
    918           1.1  dholland 		if (vap->va_mode != (mode_t)VNOVAL)
    919           1.1  dholland 			NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_MODE);
    920           1.1  dholland 		if ((flags & NFSSATTR_FULL) && vap->va_uid != (uid_t)VNOVAL)
    921           1.1  dholland 			NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_OWNER);
    922           1.1  dholland 		if ((flags & NFSSATTR_FULL) && vap->va_gid != (gid_t)VNOVAL)
    923           1.1  dholland 			NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_OWNERGROUP);
    924           1.1  dholland 		if ((flags & NFSSATTR_FULL) && vap->va_size != VNOVAL)
    925           1.1  dholland 			NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_SIZE);
    926           1.1  dholland 		if (vap->va_atime.tv_sec != VNOVAL)
    927           1.1  dholland 			NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEACCESSSET);
    928           1.1  dholland 		if (vap->va_mtime.tv_sec != VNOVAL)
    929           1.1  dholland 			NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEMODIFYSET);
    930           1.1  dholland 		(void) nfsv4_fillattr(nd, vp->v_mount, vp, NULL, vap, NULL, 0,
    931           1.1  dholland 		    &attrbits, NULL, NULL, 0, 0, 0, 0, (uint64_t)0);
    932           1.1  dholland 		break;
    933  1.1.1.1.12.1     skrll 	}
    934           1.1  dholland }
    935           1.1  dholland 
    936           1.1  dholland /*
    937           1.1  dholland  * nfscl_request() - mostly a wrapper for newnfs_request().
    938           1.1  dholland  */
    939           1.1  dholland int
    940           1.1  dholland nfscl_request(struct nfsrv_descript *nd, struct vnode *vp, NFSPROC_T *p,
    941           1.1  dholland     struct ucred *cred, void *stuff)
    942           1.1  dholland {
    943           1.1  dholland 	int ret, vers;
    944           1.1  dholland 	struct nfsmount *nmp;
    945           1.1  dholland 
    946           1.1  dholland 	nmp = VFSTONFS(vp->v_mount);
    947           1.1  dholland 	if (nd->nd_flag & ND_NFSV4)
    948           1.1  dholland 		vers = NFS_VER4;
    949           1.1  dholland 	else if (nd->nd_flag & ND_NFSV3)
    950           1.1  dholland 		vers = NFS_VER3;
    951           1.1  dholland 	else
    952           1.1  dholland 		vers = NFS_VER2;
    953           1.1  dholland 	ret = newnfs_request(nd, nmp, NULL, &nmp->nm_sockreq, vp, p, cred,
    954           1.1  dholland 		NFS_PROG, vers, NULL, 1, NULL, NULL);
    955           1.1  dholland 	return (ret);
    956           1.1  dholland }
    957           1.1  dholland 
    958           1.1  dholland /*
    959           1.1  dholland  * fill in this bsden's variant of statfs using nfsstatfs.
    960           1.1  dholland  */
    961           1.1  dholland void
    962           1.1  dholland nfscl_loadsbinfo(struct nfsmount *nmp, struct nfsstatfs *sfp, void *statfs)
    963           1.1  dholland {
    964           1.1  dholland 	struct statfs *sbp = (struct statfs *)statfs;
    965           1.1  dholland 
    966           1.1  dholland 	if (nmp->nm_flag & (NFSMNT_NFSV3 | NFSMNT_NFSV4)) {
    967           1.1  dholland 		sbp->f_bsize = NFS_FABLKSIZE;
    968           1.1  dholland 		sbp->f_blocks = sfp->sf_tbytes / NFS_FABLKSIZE;
    969           1.1  dholland 		sbp->f_bfree = sfp->sf_fbytes / NFS_FABLKSIZE;
    970           1.1  dholland 		/*
    971           1.1  dholland 		 * Although sf_abytes is uint64_t and f_bavail is int64_t,
    972           1.1  dholland 		 * the value after dividing by NFS_FABLKSIZE is small
    973           1.1  dholland 		 * enough that it will fit in 63bits, so it is ok to
    974           1.1  dholland 		 * assign it to f_bavail without fear that it will become
    975           1.1  dholland 		 * negative.
    976           1.1  dholland 		 */
    977           1.1  dholland 		sbp->f_bavail = sfp->sf_abytes / NFS_FABLKSIZE;
    978           1.1  dholland 		sbp->f_files = sfp->sf_tfiles;
    979           1.1  dholland 		/* Since f_ffree is int64_t, clip it to 63bits. */
    980           1.1  dholland 		if (sfp->sf_ffiles > INT64_MAX)
    981           1.1  dholland 			sbp->f_ffree = INT64_MAX;
    982           1.1  dholland 		else
    983           1.1  dholland 			sbp->f_ffree = sfp->sf_ffiles;
    984           1.1  dholland 	} else if ((nmp->nm_flag & NFSMNT_NFSV4) == 0) {
    985           1.1  dholland 		/*
    986           1.1  dholland 		 * The type casts to (int32_t) ensure that this code is
    987           1.1  dholland 		 * compatible with the old NFS client, in that it will
    988           1.1  dholland 		 * propagate bit31 to the high order bits. This may or may
    989           1.1  dholland 		 * not be correct for NFSv2, but since it is a legacy
    990           1.1  dholland 		 * environment, I'd rather retain backwards compatibility.
    991           1.1  dholland 		 */
    992           1.1  dholland 		sbp->f_bsize = (int32_t)sfp->sf_bsize;
    993           1.1  dholland 		sbp->f_blocks = (int32_t)sfp->sf_blocks;
    994           1.1  dholland 		sbp->f_bfree = (int32_t)sfp->sf_bfree;
    995           1.1  dholland 		sbp->f_bavail = (int32_t)sfp->sf_bavail;
    996           1.1  dholland 		sbp->f_files = 0;
    997           1.1  dholland 		sbp->f_ffree = 0;
    998           1.1  dholland 	}
    999           1.1  dholland }
   1000           1.1  dholland 
   1001           1.1  dholland /*
   1002           1.1  dholland  * Use the fsinfo stuff to update the mount point.
   1003           1.1  dholland  */
   1004           1.1  dholland void
   1005           1.1  dholland nfscl_loadfsinfo(struct nfsmount *nmp, struct nfsfsinfo *fsp)
   1006           1.1  dholland {
   1007           1.1  dholland 
   1008           1.1  dholland 	if ((nmp->nm_wsize == 0 || fsp->fs_wtpref < nmp->nm_wsize) &&
   1009           1.1  dholland 	    fsp->fs_wtpref >= NFS_FABLKSIZE)
   1010           1.1  dholland 		nmp->nm_wsize = (fsp->fs_wtpref + NFS_FABLKSIZE - 1) &
   1011           1.1  dholland 		    ~(NFS_FABLKSIZE - 1);
   1012           1.1  dholland 	if (fsp->fs_wtmax < nmp->nm_wsize && fsp->fs_wtmax > 0) {
   1013           1.1  dholland 		nmp->nm_wsize = fsp->fs_wtmax & ~(NFS_FABLKSIZE - 1);
   1014           1.1  dholland 		if (nmp->nm_wsize == 0)
   1015           1.1  dholland 			nmp->nm_wsize = fsp->fs_wtmax;
   1016           1.1  dholland 	}
   1017           1.1  dholland 	if (nmp->nm_wsize < NFS_FABLKSIZE)
   1018           1.1  dholland 		nmp->nm_wsize = NFS_FABLKSIZE;
   1019           1.1  dholland 	if ((nmp->nm_rsize == 0 || fsp->fs_rtpref < nmp->nm_rsize) &&
   1020           1.1  dholland 	    fsp->fs_rtpref >= NFS_FABLKSIZE)
   1021           1.1  dholland 		nmp->nm_rsize = (fsp->fs_rtpref + NFS_FABLKSIZE - 1) &
   1022           1.1  dholland 		    ~(NFS_FABLKSIZE - 1);
   1023           1.1  dholland 	if (fsp->fs_rtmax < nmp->nm_rsize && fsp->fs_rtmax > 0) {
   1024           1.1  dholland 		nmp->nm_rsize = fsp->fs_rtmax & ~(NFS_FABLKSIZE - 1);
   1025           1.1  dholland 		if (nmp->nm_rsize == 0)
   1026           1.1  dholland 			nmp->nm_rsize = fsp->fs_rtmax;
   1027           1.1  dholland 	}
   1028           1.1  dholland 	if (nmp->nm_rsize < NFS_FABLKSIZE)
   1029           1.1  dholland 		nmp->nm_rsize = NFS_FABLKSIZE;
   1030           1.1  dholland 	if ((nmp->nm_readdirsize == 0 || fsp->fs_dtpref < nmp->nm_readdirsize)
   1031           1.1  dholland 	    && fsp->fs_dtpref >= NFS_DIRBLKSIZ)
   1032           1.1  dholland 		nmp->nm_readdirsize = (fsp->fs_dtpref + NFS_DIRBLKSIZ - 1) &
   1033           1.1  dholland 		    ~(NFS_DIRBLKSIZ - 1);
   1034           1.1  dholland 	if (fsp->fs_rtmax < nmp->nm_readdirsize && fsp->fs_rtmax > 0) {
   1035           1.1  dholland 		nmp->nm_readdirsize = fsp->fs_rtmax & ~(NFS_DIRBLKSIZ - 1);
   1036           1.1  dholland 		if (nmp->nm_readdirsize == 0)
   1037           1.1  dholland 			nmp->nm_readdirsize = fsp->fs_rtmax;
   1038           1.1  dholland 	}
   1039           1.1  dholland 	if (nmp->nm_readdirsize < NFS_DIRBLKSIZ)
   1040           1.1  dholland 		nmp->nm_readdirsize = NFS_DIRBLKSIZ;
   1041           1.1  dholland 	if (fsp->fs_maxfilesize > 0 &&
   1042           1.1  dholland 	    fsp->fs_maxfilesize < nmp->nm_maxfilesize)
   1043           1.1  dholland 		nmp->nm_maxfilesize = fsp->fs_maxfilesize;
   1044           1.1  dholland 	nmp->nm_mountp->mnt_stat.f_iosize = newnfs_iosize(nmp);
   1045           1.1  dholland 	nmp->nm_state |= NFSSTA_GOTFSINFO;
   1046           1.1  dholland }
   1047           1.1  dholland 
   1048           1.1  dholland /*
   1049  1.1.1.1.12.1     skrll  * Lookups source address which should be used to communicate with
   1050  1.1.1.1.12.1     skrll  * @nmp and stores it inside @pdst.
   1051  1.1.1.1.12.1     skrll  *
   1052  1.1.1.1.12.1     skrll  * Returns 0 on success.
   1053           1.1  dholland  */
   1054           1.1  dholland u_int8_t *
   1055  1.1.1.1.12.1     skrll nfscl_getmyip(struct nfsmount *nmp, struct in6_addr *paddr, int *isinet6p)
   1056           1.1  dholland {
   1057  1.1.1.1.12.1     skrll #if defined(INET6) || defined(INET)
   1058  1.1.1.1.12.1     skrll 	int error, fibnum;
   1059           1.1  dholland 
   1060  1.1.1.1.12.1     skrll 	fibnum = curthread->td_proc->p_fibnum;
   1061  1.1.1.1.12.1     skrll #endif
   1062  1.1.1.1.12.1     skrll #ifdef INET
   1063           1.1  dholland 	if (nmp->nm_nam->sa_family == AF_INET) {
   1064  1.1.1.1.12.1     skrll 		struct sockaddr_in *sin;
   1065  1.1.1.1.12.1     skrll 		struct nhop4_extended nh_ext;
   1066  1.1.1.1.12.1     skrll 
   1067           1.1  dholland 		sin = (struct sockaddr_in *)nmp->nm_nam;
   1068           1.1  dholland 		CURVNET_SET(CRED_TO_VNET(nmp->nm_sockreq.nr_cred));
   1069  1.1.1.1.12.1     skrll 		error = fib4_lookup_nh_ext(fibnum, sin->sin_addr, 0, 0,
   1070  1.1.1.1.12.1     skrll 		    &nh_ext);
   1071           1.1  dholland 		CURVNET_RESTORE();
   1072  1.1.1.1.12.1     skrll 		if (error != 0)
   1073  1.1.1.1.12.1     skrll 			return (NULL);
   1074  1.1.1.1.12.1     skrll 
   1075  1.1.1.1.12.1     skrll 		if ((ntohl(nh_ext.nh_src.s_addr) >> IN_CLASSA_NSHIFT) ==
   1076  1.1.1.1.12.1     skrll 		    IN_LOOPBACKNET) {
   1077  1.1.1.1.12.1     skrll 			/* Ignore loopback addresses */
   1078  1.1.1.1.12.1     skrll 			return (NULL);
   1079  1.1.1.1.12.1     skrll 		}
   1080  1.1.1.1.12.1     skrll 
   1081  1.1.1.1.12.1     skrll 		*isinet6p = 0;
   1082  1.1.1.1.12.1     skrll 		*((struct in_addr *)paddr) = nh_ext.nh_src;
   1083  1.1.1.1.12.1     skrll 
   1084  1.1.1.1.12.1     skrll 		return (u_int8_t *)paddr;
   1085  1.1.1.1.12.1     skrll 	}
   1086  1.1.1.1.12.1     skrll #endif
   1087           1.1  dholland #ifdef INET6
   1088  1.1.1.1.12.1     skrll 	if (nmp->nm_nam->sa_family == AF_INET6) {
   1089  1.1.1.1.12.1     skrll 		struct sockaddr_in6 *sin6;
   1090           1.1  dholland 
   1091           1.1  dholland 		sin6 = (struct sockaddr_in6 *)nmp->nm_nam;
   1092  1.1.1.1.12.1     skrll 
   1093           1.1  dholland 		CURVNET_SET(CRED_TO_VNET(nmp->nm_sockreq.nr_cred));
   1094  1.1.1.1.12.1     skrll 		error = in6_selectsrc_addr(fibnum, &sin6->sin6_addr,
   1095  1.1.1.1.12.1     skrll 		    sin6->sin6_scope_id, NULL, paddr, NULL);
   1096           1.1  dholland 		CURVNET_RESTORE();
   1097  1.1.1.1.12.1     skrll 		if (error != 0)
   1098  1.1.1.1.12.1     skrll 			return (NULL);
   1099  1.1.1.1.12.1     skrll 
   1100  1.1.1.1.12.1     skrll 		if (IN6_IS_ADDR_LOOPBACK(paddr))
   1101  1.1.1.1.12.1     skrll 			return (NULL);
   1102  1.1.1.1.12.1     skrll 
   1103  1.1.1.1.12.1     skrll 		/* Scope is embedded in */
   1104  1.1.1.1.12.1     skrll 		*isinet6p = 1;
   1105  1.1.1.1.12.1     skrll 
   1106  1.1.1.1.12.1     skrll 		return (u_int8_t *)paddr;
   1107           1.1  dholland 	}
   1108  1.1.1.1.12.1     skrll #endif
   1109  1.1.1.1.12.1     skrll 	return (NULL);
   1110           1.1  dholland }
   1111           1.1  dholland 
   1112           1.1  dholland /*
   1113           1.1  dholland  * Copy NFS uid, gids from the cred structure.
   1114           1.1  dholland  */
   1115           1.1  dholland void
   1116           1.1  dholland newnfs_copyincred(struct ucred *cr, struct nfscred *nfscr)
   1117           1.1  dholland {
   1118           1.1  dholland 	int i;
   1119           1.1  dholland 
   1120           1.1  dholland 	KASSERT(cr->cr_ngroups >= 0,
   1121           1.1  dholland 	    ("newnfs_copyincred: negative cr_ngroups"));
   1122           1.1  dholland 	nfscr->nfsc_uid = cr->cr_uid;
   1123           1.1  dholland 	nfscr->nfsc_ngroups = MIN(cr->cr_ngroups, NFS_MAXGRPS + 1);
   1124           1.1  dholland 	for (i = 0; i < nfscr->nfsc_ngroups; i++)
   1125           1.1  dholland 		nfscr->nfsc_groups[i] = cr->cr_groups[i];
   1126           1.1  dholland }
   1127           1.1  dholland 
   1128           1.1  dholland 
   1129           1.1  dholland /*
   1130           1.1  dholland  * Do any client specific initialization.
   1131           1.1  dholland  */
   1132           1.1  dholland void
   1133           1.1  dholland nfscl_init(void)
   1134           1.1  dholland {
   1135           1.1  dholland 	static int inited = 0;
   1136           1.1  dholland 
   1137           1.1  dholland 	if (inited)
   1138           1.1  dholland 		return;
   1139           1.1  dholland 	inited = 1;
   1140           1.1  dholland 	nfscl_inited = 1;
   1141           1.1  dholland 	ncl_pbuf_freecnt = nswbuf / 2 + 1;
   1142           1.1  dholland }
   1143           1.1  dholland 
   1144           1.1  dholland /*
   1145           1.1  dholland  * Check each of the attributes to be set, to ensure they aren't already
   1146           1.1  dholland  * the correct value. Disable setting ones already correct.
   1147           1.1  dholland  */
   1148           1.1  dholland int
   1149           1.1  dholland nfscl_checksattr(struct vattr *vap, struct nfsvattr *nvap)
   1150           1.1  dholland {
   1151           1.1  dholland 
   1152           1.1  dholland 	if (vap->va_mode != (mode_t)VNOVAL) {
   1153           1.1  dholland 		if (vap->va_mode == nvap->na_mode)
   1154           1.1  dholland 			vap->va_mode = (mode_t)VNOVAL;
   1155           1.1  dholland 	}
   1156           1.1  dholland 	if (vap->va_uid != (uid_t)VNOVAL) {
   1157           1.1  dholland 		if (vap->va_uid == nvap->na_uid)
   1158           1.1  dholland 			vap->va_uid = (uid_t)VNOVAL;
   1159           1.1  dholland 	}
   1160           1.1  dholland 	if (vap->va_gid != (gid_t)VNOVAL) {
   1161           1.1  dholland 		if (vap->va_gid == nvap->na_gid)
   1162           1.1  dholland 			vap->va_gid = (gid_t)VNOVAL;
   1163           1.1  dholland 	}
   1164           1.1  dholland 	if (vap->va_size != VNOVAL) {
   1165           1.1  dholland 		if (vap->va_size == nvap->na_size)
   1166           1.1  dholland 			vap->va_size = VNOVAL;
   1167           1.1  dholland 	}
   1168           1.1  dholland 
   1169           1.1  dholland 	/*
   1170           1.1  dholland 	 * We are normally called with only a partially initialized
   1171           1.1  dholland 	 * VAP.  Since the NFSv3 spec says that server may use the
   1172           1.1  dholland 	 * file attributes to store the verifier, the spec requires
   1173           1.1  dholland 	 * us to do a SETATTR RPC. FreeBSD servers store the verifier
   1174           1.1  dholland 	 * in atime, but we can't really assume that all servers will
   1175           1.1  dholland 	 * so we ensure that our SETATTR sets both atime and mtime.
   1176  1.1.1.1.12.1     skrll 	 * Set the VA_UTIMES_NULL flag for this case, so that
   1177  1.1.1.1.12.1     skrll 	 * the server's time will be used.  This is needed to
   1178  1.1.1.1.12.1     skrll 	 * work around a bug in some Solaris servers, where
   1179  1.1.1.1.12.1     skrll 	 * setting the time TOCLIENT causes the Setattr RPC
   1180  1.1.1.1.12.1     skrll 	 * to return NFS_OK, but not set va_mode.
   1181           1.1  dholland 	 */
   1182  1.1.1.1.12.1     skrll 	if (vap->va_mtime.tv_sec == VNOVAL) {
   1183           1.1  dholland 		vfs_timestamp(&vap->va_mtime);
   1184  1.1.1.1.12.1     skrll 		vap->va_vaflags |= VA_UTIMES_NULL;
   1185  1.1.1.1.12.1     skrll 	}
   1186           1.1  dholland 	if (vap->va_atime.tv_sec == VNOVAL)
   1187           1.1  dholland 		vap->va_atime = vap->va_mtime;
   1188           1.1  dholland 	return (1);
   1189           1.1  dholland }
   1190           1.1  dholland 
   1191           1.1  dholland /*
   1192           1.1  dholland  * Map nfsv4 errors to errno.h errors.
   1193           1.1  dholland  * The uid and gid arguments are only used for NFSERR_BADOWNER and that
   1194           1.1  dholland  * error should only be returned for the Open, Create and Setattr Ops.
   1195           1.1  dholland  * As such, most calls can just pass in 0 for those arguments.
   1196           1.1  dholland  */
   1197           1.1  dholland APPLESTATIC int
   1198           1.1  dholland nfscl_maperr(struct thread *td, int error, uid_t uid, gid_t gid)
   1199           1.1  dholland {
   1200           1.1  dholland 	struct proc *p;
   1201           1.1  dholland 
   1202           1.1  dholland 	if (error < 10000)
   1203           1.1  dholland 		return (error);
   1204           1.1  dholland 	if (td != NULL)
   1205           1.1  dholland 		p = td->td_proc;
   1206           1.1  dholland 	else
   1207           1.1  dholland 		p = NULL;
   1208           1.1  dholland 	switch (error) {
   1209           1.1  dholland 	case NFSERR_BADOWNER:
   1210           1.1  dholland 		tprintf(p, LOG_INFO,
   1211           1.1  dholland 		    "No name and/or group mapping for uid,gid:(%d,%d)\n",
   1212           1.1  dholland 		    uid, gid);
   1213           1.1  dholland 		return (EPERM);
   1214           1.1  dholland 	case NFSERR_BADNAME:
   1215           1.1  dholland 	case NFSERR_BADCHAR:
   1216           1.1  dholland 		printf("nfsv4 char/name not handled by server\n");
   1217           1.1  dholland 		return (ENOENT);
   1218           1.1  dholland 	case NFSERR_STALECLIENTID:
   1219           1.1  dholland 	case NFSERR_STALESTATEID:
   1220           1.1  dholland 	case NFSERR_EXPIRED:
   1221           1.1  dholland 	case NFSERR_BADSTATEID:
   1222           1.1  dholland 	case NFSERR_BADSESSION:
   1223           1.1  dholland 		printf("nfsv4 recover err returned %d\n", error);
   1224           1.1  dholland 		return (EIO);
   1225           1.1  dholland 	case NFSERR_BADHANDLE:
   1226           1.1  dholland 	case NFSERR_SERVERFAULT:
   1227           1.1  dholland 	case NFSERR_BADTYPE:
   1228           1.1  dholland 	case NFSERR_FHEXPIRED:
   1229           1.1  dholland 	case NFSERR_RESOURCE:
   1230           1.1  dholland 	case NFSERR_MOVED:
   1231           1.1  dholland 	case NFSERR_NOFILEHANDLE:
   1232           1.1  dholland 	case NFSERR_MINORVERMISMATCH:
   1233           1.1  dholland 	case NFSERR_OLDSTATEID:
   1234           1.1  dholland 	case NFSERR_BADSEQID:
   1235           1.1  dholland 	case NFSERR_LEASEMOVED:
   1236           1.1  dholland 	case NFSERR_RECLAIMBAD:
   1237           1.1  dholland 	case NFSERR_BADXDR:
   1238           1.1  dholland 	case NFSERR_OPILLEGAL:
   1239           1.1  dholland 		printf("nfsv4 client/server protocol prob err=%d\n",
   1240           1.1  dholland 		    error);
   1241           1.1  dholland 		return (EIO);
   1242           1.1  dholland 	default:
   1243           1.1  dholland 		tprintf(p, LOG_INFO, "nfsv4 err=%d\n", error);
   1244           1.1  dholland 		return (EIO);
   1245           1.1  dholland 	};
   1246           1.1  dholland }
   1247           1.1  dholland 
   1248           1.1  dholland /*
   1249           1.1  dholland  * Check to see if the process for this owner exists. Return 1 if it doesn't
   1250           1.1  dholland  * and 0 otherwise.
   1251           1.1  dholland  */
   1252           1.1  dholland int
   1253           1.1  dholland nfscl_procdoesntexist(u_int8_t *own)
   1254           1.1  dholland {
   1255           1.1  dholland 	union {
   1256           1.1  dholland 		u_int32_t	lval;
   1257           1.1  dholland 		u_int8_t	cval[4];
   1258           1.1  dholland 	} tl;
   1259           1.1  dholland 	struct proc *p;
   1260           1.1  dholland 	pid_t pid;
   1261           1.1  dholland 	int ret = 0;
   1262           1.1  dholland 
   1263           1.1  dholland 	tl.cval[0] = *own++;
   1264           1.1  dholland 	tl.cval[1] = *own++;
   1265           1.1  dholland 	tl.cval[2] = *own++;
   1266           1.1  dholland 	tl.cval[3] = *own++;
   1267           1.1  dholland 	pid = tl.lval;
   1268           1.1  dholland 	p = pfind_locked(pid);
   1269           1.1  dholland 	if (p == NULL)
   1270           1.1  dholland 		return (1);
   1271           1.1  dholland 	if (p->p_stats == NULL) {
   1272           1.1  dholland 		PROC_UNLOCK(p);
   1273           1.1  dholland 		return (0);
   1274           1.1  dholland 	}
   1275           1.1  dholland 	tl.cval[0] = *own++;
   1276           1.1  dholland 	tl.cval[1] = *own++;
   1277           1.1  dholland 	tl.cval[2] = *own++;
   1278           1.1  dholland 	tl.cval[3] = *own++;
   1279           1.1  dholland 	if (tl.lval != p->p_stats->p_start.tv_sec) {
   1280           1.1  dholland 		ret = 1;
   1281           1.1  dholland 	} else {
   1282           1.1  dholland 		tl.cval[0] = *own++;
   1283           1.1  dholland 		tl.cval[1] = *own++;
   1284           1.1  dholland 		tl.cval[2] = *own++;
   1285           1.1  dholland 		tl.cval[3] = *own;
   1286           1.1  dholland 		if (tl.lval != p->p_stats->p_start.tv_usec)
   1287           1.1  dholland 			ret = 1;
   1288           1.1  dholland 	}
   1289           1.1  dholland 	PROC_UNLOCK(p);
   1290           1.1  dholland 	return (ret);
   1291           1.1  dholland }
   1292           1.1  dholland 
   1293           1.1  dholland /*
   1294           1.1  dholland  * - nfs pseudo system call for the client
   1295           1.1  dholland  */
   1296           1.1  dholland /*
   1297           1.1  dholland  * MPSAFE
   1298           1.1  dholland  */
   1299           1.1  dholland static int
   1300           1.1  dholland nfssvc_nfscl(struct thread *td, struct nfssvc_args *uap)
   1301           1.1  dholland {
   1302           1.1  dholland 	struct file *fp;
   1303           1.1  dholland 	struct nfscbd_args nfscbdarg;
   1304           1.1  dholland 	struct nfsd_nfscbd_args nfscbdarg2;
   1305           1.1  dholland 	struct nameidata nd;
   1306           1.1  dholland 	struct nfscl_dumpmntopts dumpmntopts;
   1307           1.1  dholland 	cap_rights_t rights;
   1308           1.1  dholland 	char *buf;
   1309           1.1  dholland 	int error;
   1310           1.1  dholland 
   1311           1.1  dholland 	if (uap->flag & NFSSVC_CBADDSOCK) {
   1312           1.1  dholland 		error = copyin(uap->argp, (caddr_t)&nfscbdarg, sizeof(nfscbdarg));
   1313           1.1  dholland 		if (error)
   1314           1.1  dholland 			return (error);
   1315           1.1  dholland 		/*
   1316           1.1  dholland 		 * Since we don't know what rights might be required,
   1317           1.1  dholland 		 * pretend that we need them all. It is better to be too
   1318           1.1  dholland 		 * careful than too reckless.
   1319           1.1  dholland 		 */
   1320           1.1  dholland 		error = fget(td, nfscbdarg.sock,
   1321           1.1  dholland 		    cap_rights_init(&rights, CAP_SOCK_CLIENT), &fp);
   1322           1.1  dholland 		if (error)
   1323           1.1  dholland 			return (error);
   1324           1.1  dholland 		if (fp->f_type != DTYPE_SOCKET) {
   1325           1.1  dholland 			fdrop(fp, td);
   1326           1.1  dholland 			return (EPERM);
   1327           1.1  dholland 		}
   1328           1.1  dholland 		error = nfscbd_addsock(fp);
   1329           1.1  dholland 		fdrop(fp, td);
   1330           1.1  dholland 		if (!error && nfscl_enablecallb == 0) {
   1331           1.1  dholland 			nfsv4_cbport = nfscbdarg.port;
   1332           1.1  dholland 			nfscl_enablecallb = 1;
   1333           1.1  dholland 		}
   1334           1.1  dholland 	} else if (uap->flag & NFSSVC_NFSCBD) {
   1335           1.1  dholland 		if (uap->argp == NULL)
   1336           1.1  dholland 			return (EINVAL);
   1337           1.1  dholland 		error = copyin(uap->argp, (caddr_t)&nfscbdarg2,
   1338           1.1  dholland 		    sizeof(nfscbdarg2));
   1339           1.1  dholland 		if (error)
   1340           1.1  dholland 			return (error);
   1341           1.1  dholland 		error = nfscbd_nfsd(td, &nfscbdarg2);
   1342           1.1  dholland 	} else if (uap->flag & NFSSVC_DUMPMNTOPTS) {
   1343           1.1  dholland 		error = copyin(uap->argp, &dumpmntopts, sizeof(dumpmntopts));
   1344           1.1  dholland 		if (error == 0 && (dumpmntopts.ndmnt_blen < 256 ||
   1345           1.1  dholland 		    dumpmntopts.ndmnt_blen > 1024))
   1346           1.1  dholland 			error = EINVAL;
   1347           1.1  dholland 		if (error == 0)
   1348           1.1  dholland 			error = nfsrv_lookupfilename(&nd,
   1349           1.1  dholland 			    dumpmntopts.ndmnt_fname, td);
   1350           1.1  dholland 		if (error == 0 && strcmp(nd.ni_vp->v_mount->mnt_vfc->vfc_name,
   1351           1.1  dholland 		    "nfs") != 0) {
   1352           1.1  dholland 			vput(nd.ni_vp);
   1353           1.1  dholland 			error = EINVAL;
   1354           1.1  dholland 		}
   1355           1.1  dholland 		if (error == 0) {
   1356           1.1  dholland 			buf = malloc(dumpmntopts.ndmnt_blen, M_TEMP, M_WAITOK);
   1357           1.1  dholland 			nfscl_retopts(VFSTONFS(nd.ni_vp->v_mount), buf,
   1358           1.1  dholland 			    dumpmntopts.ndmnt_blen);
   1359           1.1  dholland 			vput(nd.ni_vp);
   1360           1.1  dholland 			error = copyout(buf, dumpmntopts.ndmnt_buf,
   1361           1.1  dholland 			    dumpmntopts.ndmnt_blen);
   1362           1.1  dholland 			free(buf, M_TEMP);
   1363           1.1  dholland 		}
   1364           1.1  dholland 	} else {
   1365           1.1  dholland 		error = EINVAL;
   1366           1.1  dholland 	}
   1367           1.1  dholland 	return (error);
   1368           1.1  dholland }
   1369           1.1  dholland 
   1370           1.1  dholland extern int (*nfsd_call_nfscl)(struct thread *, struct nfssvc_args *);
   1371           1.1  dholland 
   1372           1.1  dholland /*
   1373           1.1  dholland  * Called once to initialize data structures...
   1374           1.1  dholland  */
   1375           1.1  dholland static int
   1376           1.1  dholland nfscl_modevent(module_t mod, int type, void *data)
   1377           1.1  dholland {
   1378           1.1  dholland 	int error = 0;
   1379           1.1  dholland 	static int loaded = 0;
   1380           1.1  dholland 
   1381           1.1  dholland 	switch (type) {
   1382           1.1  dholland 	case MOD_LOAD:
   1383           1.1  dholland 		if (loaded)
   1384           1.1  dholland 			return (0);
   1385           1.1  dholland 		newnfs_portinit();
   1386           1.1  dholland 		mtx_init(&nfs_clstate_mutex, "nfs_clstate_mutex", NULL,
   1387           1.1  dholland 		    MTX_DEF);
   1388           1.1  dholland 		mtx_init(&ncl_iod_mutex, "ncl_iod_mutex", NULL, MTX_DEF);
   1389           1.1  dholland 		nfscl_init();
   1390           1.1  dholland 		NFSD_LOCK();
   1391           1.1  dholland 		nfsrvd_cbinit(0);
   1392           1.1  dholland 		NFSD_UNLOCK();
   1393           1.1  dholland 		ncl_call_invalcaches = ncl_invalcaches;
   1394           1.1  dholland 		nfsd_call_nfscl = nfssvc_nfscl;
   1395           1.1  dholland 		loaded = 1;
   1396           1.1  dholland 		break;
   1397           1.1  dholland 
   1398           1.1  dholland 	case MOD_UNLOAD:
   1399           1.1  dholland 		if (nfs_numnfscbd != 0) {
   1400           1.1  dholland 			error = EBUSY;
   1401           1.1  dholland 			break;
   1402           1.1  dholland 		}
   1403           1.1  dholland 
   1404           1.1  dholland 		/*
   1405           1.1  dholland 		 * XXX: Unloading of nfscl module is unsupported.
   1406           1.1  dholland 		 */
   1407           1.1  dholland #if 0
   1408           1.1  dholland 		ncl_call_invalcaches = NULL;
   1409           1.1  dholland 		nfsd_call_nfscl = NULL;
   1410           1.1  dholland 		/* and get rid of the mutexes */
   1411           1.1  dholland 		mtx_destroy(&nfs_clstate_mutex);
   1412           1.1  dholland 		mtx_destroy(&ncl_iod_mutex);
   1413           1.1  dholland 		loaded = 0;
   1414           1.1  dholland 		break;
   1415           1.1  dholland #else
   1416           1.1  dholland 		/* FALLTHROUGH */
   1417           1.1  dholland #endif
   1418           1.1  dholland 	default:
   1419           1.1  dholland 		error = EOPNOTSUPP;
   1420           1.1  dholland 		break;
   1421           1.1  dholland 	}
   1422           1.1  dholland 	return error;
   1423           1.1  dholland }
   1424           1.1  dholland static moduledata_t nfscl_mod = {
   1425           1.1  dholland 	"nfscl",
   1426           1.1  dholland 	nfscl_modevent,
   1427           1.1  dholland 	NULL,
   1428           1.1  dholland };
   1429           1.1  dholland DECLARE_MODULE(nfscl, nfscl_mod, SI_SUB_VFS, SI_ORDER_FIRST);
   1430           1.1  dholland 
   1431           1.1  dholland /* So that loader and kldload(2) can find us, wherever we are.. */
   1432           1.1  dholland MODULE_VERSION(nfscl, 1);
   1433           1.1  dholland MODULE_DEPEND(nfscl, nfscommon, 1, 1, 1);
   1434           1.1  dholland MODULE_DEPEND(nfscl, krpc, 1, 1, 1);
   1435           1.1  dholland MODULE_DEPEND(nfscl, nfssvc, 1, 1, 1);
   1436           1.1  dholland MODULE_DEPEND(nfscl, nfslock, 1, 1, 1);
   1437           1.1  dholland 
   1438