xref: /netbsd-src/sys/nfs/nfs_serv.c (revision 1ffa7b76c40339c17a0fb2a09fac93f287cfc046)
1 /*	$NetBSD: nfs_serv.c,v 1.71 2003/04/03 15:19:12 yamt Exp $	*/
2 
3 /*
4  * Copyright (c) 1989, 1993
5  *	The Regents of the University of California.  All rights reserved.
6  *
7  * This code is derived from software contributed to Berkeley by
8  * Rick Macklem at The University of Guelph.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  * 1. Redistributions of source code must retain the above copyright
14  *    notice, this list of conditions and the following disclaimer.
15  * 2. Redistributions in binary form must reproduce the above copyright
16  *    notice, this list of conditions and the following disclaimer in the
17  *    documentation and/or other materials provided with the distribution.
18  * 3. All advertising materials mentioning features or use of this software
19  *    must display the following acknowledgement:
20  *	This product includes software developed by the University of
21  *	California, Berkeley and its contributors.
22  * 4. Neither the name of the University nor the names of its contributors
23  *    may be used to endorse or promote products derived from this software
24  *    without specific prior written permission.
25  *
26  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
27  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
28  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
29  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
30  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
31  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
32  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
33  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
34  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
35  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
36  * SUCH DAMAGE.
37  *
38  *	@(#)nfs_serv.c	8.8 (Berkeley) 7/31/95
39  */
40 
41 /*
42  * nfs version 2 and 3 server calls to vnode ops
43  * - these routines generally have 3 phases
44  *   1 - break down and validate rpc request in mbuf list
45  *   2 - do the vnode ops for the request
46  *       (surprisingly ?? many are very similar to syscalls in vfs_syscalls.c)
47  *   3 - build the rpc reply in an mbuf list
48  *   nb:
49  *	- do not mix the phases, since the nfsm_?? macros can return failures
50  *	  on a bad rpc or similar and do not do any vrele() or vput()'s
51  *
52  *      - the nfsm_reply() macro generates an nfs rpc reply with the nfs
53  *	error number iff error != 0 whereas
54  *	returning an error from the server function implies a fatal error
55  *	such as a badly constructed rpc request that should be dropped without
56  *	a reply.
57  *	For Version 3, nfsm_reply() does not return for the error case, since
58  *	most version 3 rpcs return more than the status for error cases.
59  */
60 
61 #include <sys/cdefs.h>
62 __KERNEL_RCSID(0, "$NetBSD: nfs_serv.c,v 1.71 2003/04/03 15:19:12 yamt Exp $");
63 
64 #include <sys/param.h>
65 #include <sys/systm.h>
66 #include <sys/proc.h>
67 #include <sys/file.h>
68 #include <sys/namei.h>
69 #include <sys/vnode.h>
70 #include <sys/mount.h>
71 #include <sys/socket.h>
72 #include <sys/socketvar.h>
73 #include <sys/mbuf.h>
74 #include <sys/dirent.h>
75 #include <sys/stat.h>
76 #include <sys/kernel.h>
77 #include <ufs/ufs/dir.h>
78 
79 #include <uvm/uvm_extern.h>
80 
81 #include <nfs/nfsproto.h>
82 #include <nfs/rpcv2.h>
83 #include <nfs/nfs.h>
84 #include <nfs/xdr_subs.h>
85 #include <nfs/nfsm_subs.h>
86 #include <nfs/nqnfs.h>
87 #include <nfs/nfs_var.h>
88 
89 /* Global vars */
90 extern u_int32_t nfs_xdrneg1;
91 extern u_int32_t nfs_false, nfs_true;
92 extern enum vtype nv3tov_type[8];
93 extern struct nfsstats nfsstats;
94 extern const nfstype nfsv2_type[9];
95 extern const nfstype nfsv3_type[9];
96 int nfsrvw_procrastinate = NFS_GATHERDELAY * 1000;
97 
98 /*
99  * nfs v3 access service
100  */
101 int
102 nfsrv3_access(nfsd, slp, procp, mrq)
103 	struct nfsrv_descript *nfsd;
104 	struct nfssvc_sock *slp;
105 	struct proc *procp;
106 	struct mbuf **mrq;
107 {
108 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
109 	struct mbuf *nam = nfsd->nd_nam;
110 	caddr_t dpos = nfsd->nd_dpos;
111 	struct ucred *cred = &nfsd->nd_cr;
112 	struct vnode *vp;
113 	nfsfh_t nfh;
114 	fhandle_t *fhp;
115 	u_int32_t *tl;
116 	int32_t t1;
117 	caddr_t bpos;
118 	int error = 0, rdonly, cache = 0, getret;
119 	char *cp2;
120 	struct mbuf *mb, *mreq;
121 	struct vattr va;
122 	u_long inmode, testmode, outmode;
123 	u_quad_t frev;
124 
125 	fhp = &nfh.fh_generic;
126 	nfsm_srvmtofh(fhp);
127 	nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
128 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam, &rdonly,
129 	    (nfsd->nd_flag & ND_KERBAUTH), FALSE);
130 	if (error) {
131 		nfsm_reply(NFSX_UNSIGNED);
132 		nfsm_srvpostop_attr(1, (struct vattr *)0);
133 		return (0);
134 	}
135 	inmode = fxdr_unsigned(u_int32_t, *tl);
136 	outmode = 0;
137 	if ((inmode & NFSV3ACCESS_READ) &&
138 	    nfsrv_access(vp, VREAD, cred, rdonly, procp, 0) == 0)
139 		outmode |= NFSV3ACCESS_READ;
140 	if (vp->v_type != VDIR) {
141 		testmode = inmode & (NFSV3ACCESS_MODIFY | NFSV3ACCESS_EXTEND);
142 		if (testmode &&
143 		    nfsrv_access(vp, VWRITE, cred, rdonly, procp, 0) == 0)
144 			outmode |= testmode;
145 		if ((inmode & NFSV3ACCESS_EXECUTE) &&
146 		    nfsrv_access(vp, VEXEC, cred, rdonly, procp, 0) == 0)
147 			outmode |= NFSV3ACCESS_EXECUTE;
148 	} else {
149 		testmode = inmode & (NFSV3ACCESS_MODIFY | NFSV3ACCESS_EXTEND |
150 		    NFSV3ACCESS_DELETE);
151 		if (testmode &&
152 		    nfsrv_access(vp, VWRITE, cred, rdonly, procp, 0) == 0)
153 			outmode |= testmode;
154 		if ((inmode & NFSV3ACCESS_LOOKUP) &&
155 		    nfsrv_access(vp, VEXEC, cred, rdonly, procp, 0) == 0)
156 			outmode |= NFSV3ACCESS_LOOKUP;
157 	}
158 	getret = VOP_GETATTR(vp, &va, cred, procp);
159 	vput(vp);
160 	nfsm_reply(NFSX_POSTOPATTR(1) + NFSX_UNSIGNED);
161 	nfsm_srvpostop_attr(getret, &va);
162 	nfsm_build(tl, u_int32_t *, NFSX_UNSIGNED);
163 	*tl = txdr_unsigned(outmode);
164 	nfsm_srvdone;
165 }
166 
167 /*
168  * nfs getattr service
169  */
170 int
171 nfsrv_getattr(nfsd, slp, procp, mrq)
172 	struct nfsrv_descript *nfsd;
173 	struct nfssvc_sock *slp;
174 	struct proc *procp;
175 	struct mbuf **mrq;
176 {
177 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
178 	struct mbuf *nam = nfsd->nd_nam;
179 	caddr_t dpos = nfsd->nd_dpos;
180 	struct ucred *cred = &nfsd->nd_cr;
181 	struct nfs_fattr *fp;
182 	struct vattr va;
183 	struct vnode *vp;
184 	nfsfh_t nfh;
185 	fhandle_t *fhp;
186 	u_int32_t *tl;
187 	int32_t t1;
188 	caddr_t bpos;
189 	int error = 0, rdonly, cache;
190 	char *cp2;
191 	struct mbuf *mb, *mreq;
192 	u_quad_t frev;
193 
194 	fhp = &nfh.fh_generic;
195 	nfsm_srvmtofh(fhp);
196 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam, &rdonly,
197 	    (nfsd->nd_flag & ND_KERBAUTH), FALSE);
198 	if (error) {
199 		nfsm_reply(0);
200 		return (0);
201 	}
202 	nqsrv_getl(vp, ND_READ);
203 	error = VOP_GETATTR(vp, &va, cred, procp);
204 	vput(vp);
205 	nfsm_reply(NFSX_FATTR(nfsd->nd_flag & ND_NFSV3));
206 	if (error)
207 		return (0);
208 	nfsm_build(fp, struct nfs_fattr *, NFSX_FATTR(nfsd->nd_flag & ND_NFSV3));
209 	nfsm_srvfillattr(&va, fp);
210 	nfsm_srvdone;
211 }
212 
213 /*
214  * nfs setattr service
215  */
216 int
217 nfsrv_setattr(nfsd, slp, procp, mrq)
218 	struct nfsrv_descript *nfsd;
219 	struct nfssvc_sock *slp;
220 	struct proc *procp;
221 	struct mbuf **mrq;
222 {
223 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
224 	struct mbuf *nam = nfsd->nd_nam;
225 	caddr_t dpos = nfsd->nd_dpos;
226 	struct ucred *cred = &nfsd->nd_cr;
227 	struct vattr va, preat;
228 	struct nfsv2_sattr *sp;
229 	struct nfs_fattr *fp;
230 	struct vnode *vp;
231 	nfsfh_t nfh;
232 	fhandle_t *fhp;
233 	u_int32_t *tl;
234 	int32_t t1;
235 	caddr_t bpos;
236 	int error = 0, rdonly, cache, preat_ret = 1, postat_ret = 1;
237 	int v3 = (nfsd->nd_flag & ND_NFSV3), gcheck = 0;
238 	char *cp2;
239 	struct mbuf *mb, *mreq;
240 	u_quad_t frev;
241 	struct timespec guard;
242 
243 	fhp = &nfh.fh_generic;
244 	nfsm_srvmtofh(fhp);
245 	VATTR_NULL(&va);
246 	if (v3) {
247 		nfsm_srvsattr(&va);
248 		nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
249 		gcheck = fxdr_unsigned(int, *tl);
250 		if (gcheck) {
251 			nfsm_dissect(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
252 			fxdr_nfsv3time(tl, &guard);
253 		}
254 	} else {
255 		nfsm_dissect(sp, struct nfsv2_sattr *, NFSX_V2SATTR);
256 		/*
257 		 * Nah nah nah nah na nah
258 		 * There is a bug in the Sun client that puts 0xffff in the mode
259 		 * field of sattr when it should put in 0xffffffff. The u_short
260 		 * doesn't sign extend.
261 		 * --> check the low order 2 bytes for 0xffff
262 		 */
263 		if ((fxdr_unsigned(int, sp->sa_mode) & 0xffff) != 0xffff)
264 			va.va_mode = nfstov_mode(sp->sa_mode);
265 		if (sp->sa_uid != nfs_xdrneg1)
266 			va.va_uid = fxdr_unsigned(uid_t, sp->sa_uid);
267 		if (sp->sa_gid != nfs_xdrneg1)
268 			va.va_gid = fxdr_unsigned(gid_t, sp->sa_gid);
269 		if (sp->sa_size != nfs_xdrneg1)
270 			va.va_size = fxdr_unsigned(u_quad_t, sp->sa_size);
271 		if (sp->sa_atime.nfsv2_sec != nfs_xdrneg1) {
272 #ifdef notyet
273 			fxdr_nfsv2time(&sp->sa_atime, &va.va_atime);
274 #else
275 			va.va_atime.tv_sec =
276 				fxdr_unsigned(u_int32_t,sp->sa_atime.nfsv2_sec);
277 			va.va_atime.tv_nsec = 0;
278 #endif
279 		}
280 		if (sp->sa_mtime.nfsv2_sec != nfs_xdrneg1)
281 			fxdr_nfsv2time(&sp->sa_mtime, &va.va_mtime);
282 
283 	}
284 
285 	/*
286 	 * Now that we have all the fields, lets do it.
287 	 */
288 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam, &rdonly,
289 	    (nfsd->nd_flag & ND_KERBAUTH), FALSE);
290 	if (error) {
291 		nfsm_reply(2 * NFSX_UNSIGNED);
292 		nfsm_srvwcc_data(preat_ret, &preat, postat_ret, &va);
293 		return (0);
294 	}
295 	nqsrv_getl(vp, ND_WRITE);
296 	if (v3) {
297 		error = preat_ret = VOP_GETATTR(vp, &preat, cred, procp);
298 		if (!error && gcheck &&
299 			(preat.va_ctime.tv_sec != guard.tv_sec ||
300 			 preat.va_ctime.tv_nsec != guard.tv_nsec))
301 			error = NFSERR_NOT_SYNC;
302 		if (error) {
303 			vput(vp);
304 			nfsm_reply(NFSX_WCCDATA(v3));
305 			nfsm_srvwcc_data(preat_ret, &preat, postat_ret, &va);
306 			return (0);
307 		}
308 	}
309 
310 	/*
311 	 * If the size is being changed write acces is required, otherwise
312 	 * just check for a read only file system.
313 	 */
314 	if (va.va_size == ((u_quad_t)((quad_t) -1))) {
315 		if (rdonly || (vp->v_mount->mnt_flag & MNT_RDONLY)) {
316 			error = EROFS;
317 			goto out;
318 		}
319 	} else {
320 		if (vp->v_type == VDIR) {
321 			error = EISDIR;
322 			goto out;
323 		} else if ((error = nfsrv_access(vp, VWRITE, cred, rdonly,
324 			procp, 0)) != 0)
325 			goto out;
326 	}
327 	error = VOP_SETATTR(vp, &va, cred, procp);
328 	postat_ret = VOP_GETATTR(vp, &va, cred, procp);
329 	if (!error)
330 		error = postat_ret;
331 out:
332 	vput(vp);
333 	nfsm_reply(NFSX_WCCORFATTR(v3));
334 	if (v3) {
335 		nfsm_srvwcc_data(preat_ret, &preat, postat_ret, &va);
336 		return (0);
337 	} else {
338 		nfsm_build(fp, struct nfs_fattr *, NFSX_V2FATTR);
339 		nfsm_srvfillattr(&va, fp);
340 	}
341 	nfsm_srvdone;
342 }
343 
344 /*
345  * nfs lookup rpc
346  */
347 int
348 nfsrv_lookup(nfsd, slp, procp, mrq)
349 	struct nfsrv_descript *nfsd;
350 	struct nfssvc_sock *slp;
351 	struct proc *procp;
352 	struct mbuf **mrq;
353 {
354 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
355 	struct mbuf *nam = nfsd->nd_nam;
356 	caddr_t dpos = nfsd->nd_dpos;
357 	struct ucred *cred = &nfsd->nd_cr;
358 	struct nfs_fattr *fp;
359 	struct nameidata nd, ind, *ndp = &nd;
360 	struct vnode *vp, *dirp;
361 	nfsfh_t nfh;
362 	fhandle_t *fhp;
363 	caddr_t cp;
364 	u_int32_t *tl;
365 	int32_t t1;
366 	caddr_t bpos;
367 	int error = 0, cache, dirattr_ret = 1;
368 	uint32_t len;
369 	int v3 = (nfsd->nd_flag & ND_NFSV3), pubflag;
370 	char *cp2;
371 	struct mbuf *mb, *mreq;
372 	struct vattr va, dirattr;
373 	u_quad_t frev;
374 
375 	fhp = &nfh.fh_generic;
376 	nfsm_srvmtofh(fhp);
377 	nfsm_srvnamesiz(len);
378 
379 	pubflag = nfs_ispublicfh(fhp);
380 
381 	nd.ni_cnd.cn_cred = cred;
382 	nd.ni_cnd.cn_nameiop = LOOKUP;
383 	nd.ni_cnd.cn_flags = LOCKLEAF | SAVESTART;
384 	error = nfs_namei(&nd, fhp, len, slp, nam, &md, &dpos,
385 		&dirp, procp, (nfsd->nd_flag & ND_KERBAUTH), pubflag);
386 
387 	if (!error && pubflag) {
388 		if (nd.ni_vp->v_type == VDIR && nfs_pub.np_index != NULL) {
389 			/*
390 			 * Setup call to lookup() to see if we can find
391 			 * the index file. Arguably, this doesn't belong
392 			 * in a kernel.. Ugh.
393 			 */
394 			ind = nd;
395 			VOP_UNLOCK(nd.ni_vp, 0);
396 			ind.ni_pathlen = strlen(nfs_pub.np_index);
397 			ind.ni_cnd.cn_nameptr = ind.ni_cnd.cn_pnbuf =
398 			    nfs_pub.np_index;
399 			ind.ni_startdir = nd.ni_vp;
400 			VREF(ind.ni_startdir);
401 			error = lookup(&ind);
402 			if (!error) {
403 				/*
404 				 * Found an index file. Get rid of
405 				 * the old references.
406 				 */
407 				if (dirp)
408 					vrele(dirp);
409 				dirp = nd.ni_vp;
410 				vrele(nd.ni_startdir);
411 				ndp = &ind;
412 			} else
413 				error = 0;
414 		}
415 		/*
416 		 * If the public filehandle was used, check that this lookup
417 		 * didn't result in a filehandle outside the publicly exported
418 		 * filesystem.
419 		 */
420 
421 		if (!error && ndp->ni_vp->v_mount != nfs_pub.np_mount) {
422 			vput(nd.ni_vp);
423 			error = EPERM;
424 		}
425 	}
426 
427 	if (dirp) {
428 		if (v3)
429 			dirattr_ret = VOP_GETATTR(dirp, &dirattr, cred,
430 				procp);
431 		vrele(dirp);
432 	}
433 
434 	if (error) {
435 		nfsm_reply(NFSX_POSTOPATTR(v3));
436 		nfsm_srvpostop_attr(dirattr_ret, &dirattr);
437 		return (0);
438 	}
439 
440 	nqsrv_getl(ndp->ni_startdir, ND_READ);
441 	vrele(ndp->ni_startdir);
442 	PNBUF_PUT(nd.ni_cnd.cn_pnbuf);
443 	vp = ndp->ni_vp;
444 	memset((caddr_t)fhp, 0, sizeof(nfh));
445 	fhp->fh_fsid = vp->v_mount->mnt_stat.f_fsid;
446 	error = VFS_VPTOFH(vp, &fhp->fh_fid);
447 	if (!error)
448 		error = VOP_GETATTR(vp, &va, cred, procp);
449 	vput(vp);
450 	nfsm_reply(NFSX_SRVFH(v3) + NFSX_POSTOPORFATTR(v3) + NFSX_POSTOPATTR(v3));
451 	if (error) {
452 		nfsm_srvpostop_attr(dirattr_ret, &dirattr);
453 		return (0);
454 	}
455 	nfsm_srvfhtom(fhp, v3);
456 	if (v3) {
457 		nfsm_srvpostop_attr(0, &va);
458 		nfsm_srvpostop_attr(dirattr_ret, &dirattr);
459 	} else {
460 		nfsm_build(fp, struct nfs_fattr *, NFSX_V2FATTR);
461 		nfsm_srvfillattr(&va, fp);
462 	}
463 	nfsm_srvdone;
464 }
465 
466 /*
467  * nfs readlink service
468  */
469 int
470 nfsrv_readlink(nfsd, slp, procp, mrq)
471 	struct nfsrv_descript *nfsd;
472 	struct nfssvc_sock *slp;
473 	struct proc *procp;
474 	struct mbuf **mrq;
475 {
476 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
477 	struct mbuf *nam = nfsd->nd_nam;
478 	caddr_t dpos = nfsd->nd_dpos;
479 	struct ucred *cred = &nfsd->nd_cr;
480 	struct iovec iv[(NFS_MAXPATHLEN+MLEN-1)/MLEN];
481 	struct iovec *ivp = iv;
482 	struct mbuf *mp;
483 	u_int32_t *tl;
484 	int32_t t1;
485 	caddr_t bpos;
486 	int error = 0, rdonly, cache, i, tlen, len, getret;
487 	int v3 = (nfsd->nd_flag & ND_NFSV3);
488 	char *cp2;
489 	struct mbuf *mb, *mp2 = NULL, *mp3 = NULL, *mreq;
490 	struct vnode *vp;
491 	struct vattr attr;
492 	nfsfh_t nfh;
493 	fhandle_t *fhp;
494 	struct uio io, *uiop = &io;
495 	u_quad_t frev;
496 
497 	fhp = &nfh.fh_generic;
498 	nfsm_srvmtofh(fhp);
499 	len = 0;
500 	i = 0;
501 	while (len < NFS_MAXPATHLEN) {
502 		mp = m_get(M_WAIT, MT_DATA);
503 		MCLAIM(mp, &nfs_mowner);
504 		m_clget(mp, M_WAIT);
505 		mp->m_len = NFSMSIZ(mp);
506 		if (len == 0)
507 			mp3 = mp2 = mp;
508 		else {
509 			mp2->m_next = mp;
510 			mp2 = mp;
511 		}
512 		if ((len+mp->m_len) > NFS_MAXPATHLEN) {
513 			mp->m_len = NFS_MAXPATHLEN-len;
514 			len = NFS_MAXPATHLEN;
515 		} else
516 			len += mp->m_len;
517 		ivp->iov_base = mtod(mp, caddr_t);
518 		ivp->iov_len = mp->m_len;
519 		i++;
520 		ivp++;
521 	}
522 	uiop->uio_iov = iv;
523 	uiop->uio_iovcnt = i;
524 	uiop->uio_offset = 0;
525 	uiop->uio_resid = len;
526 	uiop->uio_rw = UIO_READ;
527 	uiop->uio_segflg = UIO_SYSSPACE;
528 	uiop->uio_procp = (struct proc *)0;
529 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam,
530 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
531 	if (error) {
532 		m_freem(mp3);
533 		nfsm_reply(2 * NFSX_UNSIGNED);
534 		nfsm_srvpostop_attr(1, (struct vattr *)0);
535 		return (0);
536 	}
537 	if (vp->v_type != VLNK) {
538 		if (v3)
539 			error = EINVAL;
540 		else
541 			error = ENXIO;
542 		goto out;
543 	}
544 	nqsrv_getl(vp, ND_READ);
545 	error = VOP_READLINK(vp, uiop, cred);
546 out:
547 	getret = VOP_GETATTR(vp, &attr, cred, procp);
548 	vput(vp);
549 	if (error)
550 		m_freem(mp3);
551 	nfsm_reply(NFSX_POSTOPATTR(v3) + NFSX_UNSIGNED);
552 	if (v3) {
553 		nfsm_srvpostop_attr(getret, &attr);
554 		if (error)
555 			return (0);
556 	}
557 	if (uiop->uio_resid > 0) {
558 		len -= uiop->uio_resid;
559 		tlen = nfsm_rndup(len);
560 		nfsm_adj(mp3, NFS_MAXPATHLEN-tlen, tlen-len);
561 	}
562 	nfsm_build(tl, u_int32_t *, NFSX_UNSIGNED);
563 	*tl = txdr_unsigned(len);
564 	mb->m_next = mp3;
565 	nfsm_srvdone;
566 }
567 
568 /*
569  * nfs read service
570  */
571 int
572 nfsrv_read(nfsd, slp, procp, mrq)
573 	struct nfsrv_descript *nfsd;
574 	struct nfssvc_sock *slp;
575 	struct proc *procp;
576 	struct mbuf **mrq;
577 {
578 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
579 	struct mbuf *nam = nfsd->nd_nam;
580 	caddr_t dpos = nfsd->nd_dpos;
581 	struct ucred *cred = &nfsd->nd_cr;
582 	struct iovec *iv;
583 	struct iovec *iv2;
584 	struct mbuf *m;
585 	struct nfs_fattr *fp;
586 	u_int32_t *tl;
587 	int32_t t1;
588 	int i;
589 	caddr_t bpos;
590 	int error = 0, rdonly, cache, cnt, len, left, siz, tlen, getret;
591 	int v3 = (nfsd->nd_flag & ND_NFSV3);
592 	uint32_t reqlen;
593 	char *cp2;
594 	struct mbuf *mb, *mreq;
595 	struct mbuf *m2;
596 	struct vnode *vp;
597 	nfsfh_t nfh;
598 	fhandle_t *fhp;
599 	struct uio io, *uiop = &io;
600 	struct vattr va;
601 	off_t off;
602 	u_quad_t frev;
603 
604 	fhp = &nfh.fh_generic;
605 	nfsm_srvmtofh(fhp);
606 	if (v3) {
607 		nfsm_dissect(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
608 		off = fxdr_hyper(tl);
609 	} else {
610 		nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
611 		off = (off_t)fxdr_unsigned(u_int32_t, *tl);
612 	}
613 	nfsm_dissect(tl, uint32_t *, NFSX_UNSIGNED);
614 	reqlen = fxdr_unsigned(uint32_t, *tl);
615 	reqlen = MIN(reqlen, NFS_SRVMAXDATA(nfsd));
616 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam,
617 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
618 	if (error) {
619 		nfsm_reply(2 * NFSX_UNSIGNED);
620 		nfsm_srvpostop_attr(1, (struct vattr *)0);
621 		return (0);
622 	}
623 	if (vp->v_type != VREG) {
624 		if (v3)
625 			error = EINVAL;
626 		else
627 			error = (vp->v_type == VDIR) ? EISDIR : EACCES;
628 	}
629 	if (!error) {
630 	    nqsrv_getl(vp, ND_READ);
631 	    if ((error = nfsrv_access(vp, VREAD, cred, rdonly, procp, 1)) != 0)
632 		error = nfsrv_access(vp, VEXEC, cred, rdonly, procp, 1);
633 	}
634 	getret = VOP_GETATTR(vp, &va, cred, procp);
635 	if (!error)
636 		error = getret;
637 	if (error) {
638 		vput(vp);
639 		nfsm_reply(NFSX_POSTOPATTR(v3));
640 		nfsm_srvpostop_attr(getret, &va);
641 		return (0);
642 	}
643 	if (off >= va.va_size)
644 		cnt = 0;
645 	else if ((off + reqlen) > va.va_size)
646 		cnt = nfsm_rndup(va.va_size - off);
647 	else
648 		cnt = reqlen;
649 	nfsm_reply(NFSX_POSTOPORFATTR(v3) + 3 * NFSX_UNSIGNED+nfsm_rndup(cnt));
650 	if (v3) {
651 		nfsm_build(tl, u_int32_t *, NFSX_V3FATTR + 4 * NFSX_UNSIGNED);
652 		*tl++ = nfs_true;
653 		fp = (struct nfs_fattr *)tl;
654 		tl += (NFSX_V3FATTR / sizeof (u_int32_t));
655 	} else {
656 		nfsm_build(tl, u_int32_t *, NFSX_V2FATTR + NFSX_UNSIGNED);
657 		fp = (struct nfs_fattr *)tl;
658 		tl += (NFSX_V2FATTR / sizeof (u_int32_t));
659 	}
660 	len = left = cnt;
661 	if (cnt > 0) {
662 		/*
663 		 * Generate the mbuf list with the uio_iov ref. to it.
664 		 */
665 		i = 0;
666 		m = m2 = mb;
667 		while (left > 0) {
668 			siz = min(M_TRAILINGSPACE(m), left);
669 			if (siz > 0) {
670 				left -= siz;
671 				i++;
672 			}
673 			if (left > 0) {
674 				m = m_get(M_WAIT, MT_DATA);
675 				MCLAIM(m, &nfs_mowner);
676 				m_clget(m, M_WAIT);
677 				m->m_len = 0;
678 				m2->m_next = m;
679 				m2 = m;
680 			}
681 		}
682 		iv = malloc(i * sizeof (struct iovec), M_TEMP, M_WAITOK);
683 		uiop->uio_iov = iv2 = iv;
684 		m = mb;
685 		left = cnt;
686 		i = 0;
687 		while (left > 0) {
688 			if (m == NULL)
689 				panic("nfsrv_read iov");
690 			siz = min(M_TRAILINGSPACE(m), left);
691 			if (siz > 0) {
692 				iv->iov_base = mtod(m, caddr_t) + m->m_len;
693 				iv->iov_len = siz;
694 				m->m_len += siz;
695 				left -= siz;
696 				iv++;
697 				i++;
698 			}
699 			m = m->m_next;
700 		}
701 		uiop->uio_iovcnt = i;
702 		uiop->uio_offset = off;
703 		uiop->uio_resid = cnt;
704 		uiop->uio_rw = UIO_READ;
705 		uiop->uio_segflg = UIO_SYSSPACE;
706 		error = VOP_READ(vp, uiop, IO_NODELOCKED, cred);
707 		off = uiop->uio_offset;
708 		free((caddr_t)iv2, M_TEMP);
709 		if (error || (getret = VOP_GETATTR(vp, &va, cred, procp)) != 0){
710 			if (!error)
711 				error = getret;
712 			m_freem(mreq);
713 			vput(vp);
714 			nfsm_reply(NFSX_POSTOPATTR(v3));
715 			nfsm_srvpostop_attr(getret, &va);
716 			return (0);
717 		}
718 	} else
719 		uiop->uio_resid = 0;
720 	vput(vp);
721 	nfsm_srvfillattr(&va, fp);
722 	len -= uiop->uio_resid;
723 	tlen = nfsm_rndup(len);
724 	if (cnt != tlen || tlen != len)
725 		nfsm_adj(mb, cnt - tlen, tlen - len);
726 	if (v3) {
727 		*tl++ = txdr_unsigned(len);
728 		if (len < reqlen)
729 			*tl++ = nfs_true;
730 		else
731 			*tl++ = nfs_false;
732 	}
733 	*tl = txdr_unsigned(len);
734 	nfsm_srvdone;
735 }
736 
737 /*
738  * nfs write service
739  */
740 int
741 nfsrv_write(nfsd, slp, procp, mrq)
742 	struct nfsrv_descript *nfsd;
743 	struct nfssvc_sock *slp;
744 	struct proc *procp;
745 	struct mbuf **mrq;
746 {
747 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
748 	struct mbuf *nam = nfsd->nd_nam;
749 	caddr_t dpos = nfsd->nd_dpos;
750 	struct ucred *cred = &nfsd->nd_cr;
751 	struct iovec *ivp;
752 	int i, cnt;
753 	struct mbuf *mp;
754 	struct nfs_fattr *fp;
755 	struct iovec *iv;
756 	struct vattr va, forat;
757 	u_int32_t *tl;
758 	int32_t t1;
759 	caddr_t bpos;
760 	int error = 0, rdonly, cache, len, forat_ret = 1;
761 	int ioflags, aftat_ret = 1, retlen, zeroing, adjust;
762 	int stable = NFSV3WRITE_FILESYNC;
763 	int v3 = (nfsd->nd_flag & ND_NFSV3);
764 	char *cp2;
765 	struct mbuf *mb, *mreq;
766 	struct vnode *vp;
767 	nfsfh_t nfh;
768 	fhandle_t *fhp;
769 	struct uio io, *uiop = &io;
770 	off_t off;
771 	u_quad_t frev;
772 
773 	if (mrep == NULL) {
774 		*mrq = NULL;
775 		return (0);
776 	}
777 	fhp = &nfh.fh_generic;
778 	nfsm_srvmtofh(fhp);
779 	if (v3) {
780 		nfsm_dissect(tl, u_int32_t *, 5 * NFSX_UNSIGNED);
781 		off = fxdr_hyper(tl);
782 		tl += 3;
783 		stable = fxdr_unsigned(int, *tl++);
784 	} else {
785 		nfsm_dissect(tl, u_int32_t *, 4 * NFSX_UNSIGNED);
786 		off = (off_t)fxdr_unsigned(u_int32_t, *++tl);
787 		tl += 2;
788 	}
789 	retlen = len = fxdr_unsigned(int32_t, *tl);
790 	cnt = i = 0;
791 
792 	/*
793 	 * For NFS Version 2, it is not obvious what a write of zero length
794 	 * should do, but I might as well be consistent with Version 3,
795 	 * which is to return ok so long as there are no permission problems.
796 	 */
797 	if (len > 0) {
798 	    zeroing = 1;
799 	    mp = mrep;
800 	    while (mp) {
801 		if (mp == md) {
802 			zeroing = 0;
803 			adjust = dpos - mtod(mp, caddr_t);
804 			mp->m_len -= adjust;
805 			if (mp->m_len > 0 && adjust > 0)
806 				NFSMADV(mp, adjust);
807 		}
808 		if (zeroing)
809 			mp->m_len = 0;
810 		else if (mp->m_len > 0) {
811 			i += mp->m_len;
812 			if (i > len) {
813 				mp->m_len -= (i - len);
814 				zeroing	= 1;
815 			}
816 			if (mp->m_len > 0)
817 				cnt++;
818 		}
819 		mp = mp->m_next;
820 	    }
821 	}
822 	if (len > NFS_MAXDATA || len < 0 || i < len) {
823 		error = EIO;
824 		nfsm_reply(2 * NFSX_UNSIGNED);
825 		nfsm_srvwcc_data(forat_ret, &forat, aftat_ret, &va);
826 		return (0);
827 	}
828 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam,
829 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
830 	if (error) {
831 		nfsm_reply(2 * NFSX_UNSIGNED);
832 		nfsm_srvwcc_data(forat_ret, &forat, aftat_ret, &va);
833 		return (0);
834 	}
835 	if (v3)
836 		forat_ret = VOP_GETATTR(vp, &forat, cred, procp);
837 	if (vp->v_type != VREG) {
838 		if (v3)
839 			error = EINVAL;
840 		else
841 			error = (vp->v_type == VDIR) ? EISDIR : EACCES;
842 	}
843 	if (!error) {
844 		nqsrv_getl(vp, ND_WRITE);
845 		error = nfsrv_access(vp, VWRITE, cred, rdonly, procp, 1);
846 	}
847 	if (error) {
848 		vput(vp);
849 		nfsm_reply(NFSX_WCCDATA(v3));
850 		nfsm_srvwcc_data(forat_ret, &forat, aftat_ret, &va);
851 		return (0);
852 	}
853 
854 	if (len > 0) {
855 	    ivp = malloc(cnt * sizeof (struct iovec), M_TEMP, M_WAITOK);
856 	    uiop->uio_iov = iv = ivp;
857 	    uiop->uio_iovcnt = cnt;
858 	    mp = mrep;
859 	    while (mp) {
860 		if (mp->m_len > 0) {
861 			ivp->iov_base = mtod(mp, caddr_t);
862 			ivp->iov_len = mp->m_len;
863 			ivp++;
864 		}
865 		mp = mp->m_next;
866 	    }
867 
868 	    /*
869 	     * XXX
870 	     * The IO_METASYNC flag indicates that all metadata (and not just
871 	     * enough to ensure data integrity) mus be written to stable storage
872 	     * synchronously.
873 	     * (IO_METASYNC is not yet implemented in 4.4BSD-Lite.)
874 	     */
875 	    if (stable == NFSV3WRITE_UNSTABLE)
876 		ioflags = IO_NODELOCKED;
877 	    else if (stable == NFSV3WRITE_DATASYNC)
878 		ioflags = (IO_SYNC | IO_NODELOCKED);
879 	    else
880 		ioflags = (IO_METASYNC | IO_SYNC | IO_NODELOCKED);
881 	    uiop->uio_resid = len;
882 	    uiop->uio_rw = UIO_WRITE;
883 	    uiop->uio_segflg = UIO_SYSSPACE;
884 	    uiop->uio_procp = (struct proc *)0;
885 	    uiop->uio_offset = off;
886 	    error = VOP_WRITE(vp, uiop, ioflags, cred);
887 	    nfsstats.srvvop_writes++;
888 	    free((caddr_t)iv, M_TEMP);
889 	}
890 	aftat_ret = VOP_GETATTR(vp, &va, cred, procp);
891 	vput(vp);
892 	if (!error)
893 		error = aftat_ret;
894 	nfsm_reply(NFSX_PREOPATTR(v3) + NFSX_POSTOPORFATTR(v3) +
895 		2 * NFSX_UNSIGNED + NFSX_WRITEVERF(v3));
896 	if (v3) {
897 		nfsm_srvwcc_data(forat_ret, &forat, aftat_ret, &va);
898 		if (error)
899 			return (0);
900 		nfsm_build(tl, u_int32_t *, 4 * NFSX_UNSIGNED);
901 		*tl++ = txdr_unsigned(retlen);
902 		if (stable == NFSV3WRITE_UNSTABLE)
903 			*tl++ = txdr_unsigned(stable);
904 		else
905 			*tl++ = txdr_unsigned(NFSV3WRITE_FILESYNC);
906 		/*
907 		 * Actually, there is no need to txdr these fields,
908 		 * but it may make the values more human readable,
909 		 * for debugging purposes.
910 		 */
911 		*tl++ = txdr_unsigned(boottime.tv_sec);
912 		*tl = txdr_unsigned(boottime.tv_usec);
913 	} else {
914 		nfsm_build(fp, struct nfs_fattr *, NFSX_V2FATTR);
915 		nfsm_srvfillattr(&va, fp);
916 	}
917 	nfsm_srvdone;
918 }
919 
920 /*
921  * NFS write service with write gathering support. Called when
922  * nfsrvw_procrastinate > 0.
923  * See: Chet Juszczak, "Improving the Write Performance of an NFS Server",
924  * in Proc. of the Winter 1994 Usenix Conference, pg. 247-259, San Franscisco,
925  * Jan. 1994.
926  */
927 int
928 nfsrv_writegather(ndp, slp, procp, mrq)
929 	struct nfsrv_descript **ndp;
930 	struct nfssvc_sock *slp;
931 	struct proc *procp;
932 	struct mbuf **mrq;
933 {
934 	struct iovec *ivp;
935 	struct mbuf *mp;
936 	struct nfsrv_descript *wp, *nfsd, *owp, *swp;
937 	struct nfs_fattr *fp;
938 	int i = 0;
939 	struct iovec *iov;
940 	struct nfsrvw_delayhash *wpp;
941 	struct ucred *cred;
942 	struct vattr va, forat;
943 	u_int32_t *tl;
944 	int32_t t1;
945 	caddr_t bpos, dpos;
946 	int error = 0, rdonly, cache, len = 0, forat_ret = 1;
947 	int ioflags, aftat_ret = 1, s, adjust, v3, zeroing;
948 	char *cp2;
949 	struct mbuf *mb, *mreq, *mrep, *md;
950 	struct vnode *vp;
951 	struct uio io, *uiop = &io;
952 	u_quad_t frev, cur_usec;
953 
954 	*mrq = NULL;
955 	if (*ndp) {
956 	    nfsd = *ndp;
957 	    *ndp = NULL;
958 	    mrep = nfsd->nd_mrep;
959 	    md = nfsd->nd_md;
960 	    dpos = nfsd->nd_dpos;
961 	    cred = &nfsd->nd_cr;
962 	    v3 = (nfsd->nd_flag & ND_NFSV3);
963 	    LIST_INIT(&nfsd->nd_coalesce);
964 	    nfsd->nd_mreq = NULL;
965 	    nfsd->nd_stable = NFSV3WRITE_FILESYNC;
966 	    cur_usec = (u_quad_t)time.tv_sec * 1000000 + (u_quad_t)time.tv_usec;
967 	    nfsd->nd_time = cur_usec + nfsrvw_procrastinate;
968 
969 	    /*
970 	     * Now, get the write header..
971 	     */
972 	    nfsm_srvmtofh(&nfsd->nd_fh);
973 	    if (v3) {
974 		nfsm_dissect(tl, u_int32_t *, 5 * NFSX_UNSIGNED);
975 		nfsd->nd_off = fxdr_hyper(tl);
976 		tl += 3;
977 		nfsd->nd_stable = fxdr_unsigned(int, *tl++);
978 	    } else {
979 		nfsm_dissect(tl, u_int32_t *, 4 * NFSX_UNSIGNED);
980 		nfsd->nd_off = (off_t)fxdr_unsigned(u_int32_t, *++tl);
981 		tl += 2;
982 	    }
983 	    len = fxdr_unsigned(int32_t, *tl);
984 	    nfsd->nd_len = len;
985 	    nfsd->nd_eoff = nfsd->nd_off + len;
986 
987 	    /*
988 	     * Trim the header out of the mbuf list and trim off any trailing
989 	     * junk so that the mbuf list has only the write data.
990 	     */
991 	    zeroing = 1;
992 	    i = 0;
993 	    mp = mrep;
994 	    while (mp) {
995 		if (mp == md) {
996 		    zeroing = 0;
997 		    adjust = dpos - mtod(mp, caddr_t);
998 		    mp->m_len -= adjust;
999 		    if (mp->m_len > 0 && adjust > 0)
1000 			NFSMADV(mp, adjust);
1001 		}
1002 		if (zeroing)
1003 		    mp->m_len = 0;
1004 		else {
1005 		    i += mp->m_len;
1006 		    if (i > len) {
1007 			mp->m_len -= (i - len);
1008 			zeroing = 1;
1009 		    }
1010 		}
1011 		mp = mp->m_next;
1012 	    }
1013 	    if (len > NFS_MAXDATA || len < 0  || i < len) {
1014 nfsmout:
1015 		m_freem(mrep);
1016 		error = EIO;
1017 		nfsm_writereply(2 * NFSX_UNSIGNED, v3);
1018 		if (v3)
1019 		    nfsm_srvwcc_data(forat_ret, &forat, aftat_ret, &va);
1020 		nfsd->nd_mreq = mreq;
1021 		nfsd->nd_mrep = NULL;
1022 		nfsd->nd_time = 0;
1023 	    }
1024 
1025 	    /*
1026 	     * Add this entry to the hash and time queues.
1027 	     */
1028 	    s = splsoftclock();
1029 	    owp = NULL;
1030 	    wp = LIST_FIRST(&slp->ns_tq);
1031 	    while (wp && wp->nd_time < nfsd->nd_time) {
1032 		owp = wp;
1033 		wp = LIST_NEXT(wp, nd_tq);
1034 	    }
1035 	    if (owp) {
1036 		LIST_INSERT_AFTER(owp, nfsd, nd_tq);
1037 	    } else {
1038 		LIST_INSERT_HEAD(&slp->ns_tq, nfsd, nd_tq);
1039 	    }
1040 	    if (nfsd->nd_mrep) {
1041 		wpp = NWDELAYHASH(slp, nfsd->nd_fh.fh_fid.fid_data);
1042 		owp = NULL;
1043 		wp = LIST_FIRST(wpp);
1044 		while (wp &&
1045 		    memcmp((caddr_t)&nfsd->nd_fh, (caddr_t)&wp->nd_fh, NFSX_V3FH)) {
1046 		    owp = wp;
1047 		    wp = LIST_NEXT(wp, nd_hash);
1048 		}
1049 		while (wp && wp->nd_off < nfsd->nd_off &&
1050 		    !memcmp((caddr_t)&nfsd->nd_fh, (caddr_t)&wp->nd_fh, NFSX_V3FH)) {
1051 		    owp = wp;
1052 		    wp = LIST_NEXT(wp, nd_hash);
1053 		}
1054 		if (owp) {
1055 		    LIST_INSERT_AFTER(owp, nfsd, nd_hash);
1056 
1057 		    /*
1058 		     * Search the hash list for overlapping entries and
1059 		     * coalesce.
1060 		     */
1061 		    for(; nfsd && NFSW_CONTIG(owp, nfsd); nfsd = wp) {
1062 			wp = LIST_NEXT(nfsd, nd_hash);
1063 			if (NFSW_SAMECRED(owp, nfsd))
1064 			    nfsrvw_coalesce(owp, nfsd);
1065 		    }
1066 		} else {
1067 		    LIST_INSERT_HEAD(wpp, nfsd, nd_hash);
1068 		}
1069 	    }
1070 	    splx(s);
1071 	}
1072 
1073 	/*
1074 	 * Now, do VOP_WRITE()s for any one(s) that need to be done now
1075 	 * and generate the associated reply mbuf list(s).
1076 	 */
1077 loop1:
1078 	cur_usec = (u_quad_t)time.tv_sec * 1000000 + (u_quad_t)time.tv_usec;
1079 	s = splsoftclock();
1080 	for (nfsd = LIST_FIRST(&slp->ns_tq); nfsd; nfsd = owp) {
1081 		owp = LIST_NEXT(nfsd, nd_tq);
1082 		if (nfsd->nd_time > cur_usec)
1083 		    break;
1084 		if (nfsd->nd_mreq)
1085 		    continue;
1086 		LIST_REMOVE(nfsd, nd_tq);
1087 		LIST_REMOVE(nfsd, nd_hash);
1088 		splx(s);
1089 		mrep = nfsd->nd_mrep;
1090 		nfsd->nd_mrep = NULL;
1091 		cred = &nfsd->nd_cr;
1092 		v3 = (nfsd->nd_flag & ND_NFSV3);
1093 		forat_ret = aftat_ret = 1;
1094 		error = nfsrv_fhtovp(&nfsd->nd_fh, 1, &vp, cred, slp,
1095 		    nfsd->nd_nam, &rdonly, (nfsd->nd_flag & ND_KERBAUTH),
1096 		    FALSE);
1097 		if (!error) {
1098 		    if (v3)
1099 			forat_ret = VOP_GETATTR(vp, &forat, cred, procp);
1100 		    if (vp->v_type != VREG) {
1101 			if (v3)
1102 			    error = EINVAL;
1103 			else
1104 			    error = (vp->v_type == VDIR) ? EISDIR : EACCES;
1105 		    }
1106 		} else
1107 		    vp = NULL;
1108 		if (!error) {
1109 		    nqsrv_getl(vp, ND_WRITE);
1110 		    error = nfsrv_access(vp, VWRITE, cred, rdonly, procp, 1);
1111 		}
1112 
1113 		if (nfsd->nd_stable == NFSV3WRITE_UNSTABLE)
1114 		    ioflags = IO_NODELOCKED;
1115 		else if (nfsd->nd_stable == NFSV3WRITE_DATASYNC)
1116 		    ioflags = (IO_SYNC | IO_NODELOCKED);
1117 		else
1118 		    ioflags = (IO_METASYNC | IO_SYNC | IO_NODELOCKED);
1119 		uiop->uio_rw = UIO_WRITE;
1120 		uiop->uio_segflg = UIO_SYSSPACE;
1121 		uiop->uio_procp = (struct proc *)0;
1122 		uiop->uio_offset = nfsd->nd_off;
1123 		uiop->uio_resid = nfsd->nd_eoff - nfsd->nd_off;
1124 		if (uiop->uio_resid > 0) {
1125 		    mp = mrep;
1126 		    i = 0;
1127 		    while (mp) {
1128 			if (mp->m_len > 0)
1129 			    i++;
1130 			mp = mp->m_next;
1131 		    }
1132 		    uiop->uio_iovcnt = i;
1133 		    iov = malloc(i * sizeof (struct iovec), M_TEMP, M_WAITOK);
1134 		    uiop->uio_iov = ivp = iov;
1135 		    mp = mrep;
1136 		    while (mp) {
1137 			if (mp->m_len > 0) {
1138 			    ivp->iov_base = mtod(mp, caddr_t);
1139 			    ivp->iov_len = mp->m_len;
1140 			    ivp++;
1141 			}
1142 			mp = mp->m_next;
1143 		    }
1144 		    if (!error) {
1145 			error = VOP_WRITE(vp, uiop, ioflags, cred);
1146 			nfsstats.srvvop_writes++;
1147 		    }
1148 		    free((caddr_t)iov, M_TEMP);
1149 		}
1150 		m_freem(mrep);
1151 		if (vp) {
1152 		    aftat_ret = VOP_GETATTR(vp, &va, cred, procp);
1153 		    vput(vp);
1154 		}
1155 
1156 		/*
1157 		 * Loop around generating replies for all write rpcs that have
1158 		 * now been completed.
1159 		 */
1160 		swp = nfsd;
1161 		do {
1162 		    if (error) {
1163 			nfsm_writereply(NFSX_WCCDATA(v3), v3);
1164 			if (v3) {
1165 			    nfsm_srvwcc_data(forat_ret, &forat, aftat_ret, &va);
1166 			}
1167 		    } else {
1168 			nfsm_writereply(NFSX_PREOPATTR(v3) +
1169 			    NFSX_POSTOPORFATTR(v3) + 2 * NFSX_UNSIGNED +
1170 			    NFSX_WRITEVERF(v3), v3);
1171 			if (v3) {
1172 			    nfsm_srvwcc_data(forat_ret, &forat, aftat_ret, &va);
1173 			    nfsm_build(tl, u_int32_t *, 4 * NFSX_UNSIGNED);
1174 			    *tl++ = txdr_unsigned(nfsd->nd_len);
1175 			    *tl++ = txdr_unsigned(swp->nd_stable);
1176 			    /*
1177 			     * Actually, there is no need to txdr these fields,
1178 			     * but it may make the values more human readable,
1179 			     * for debugging purposes.
1180 			     */
1181 			    *tl++ = txdr_unsigned(boottime.tv_sec);
1182 			    *tl = txdr_unsigned(boottime.tv_usec);
1183 			} else {
1184 			    nfsm_build(fp, struct nfs_fattr *, NFSX_V2FATTR);
1185 			    nfsm_srvfillattr(&va, fp);
1186 			}
1187 		    }
1188 		    nfsd->nd_mreq = mreq;
1189 		    if (nfsd->nd_mrep)
1190 			panic("nfsrv_write: nd_mrep not free");
1191 
1192 		    /*
1193 		     * Done. Put it at the head of the timer queue so that
1194 		     * the final phase can return the reply.
1195 		     */
1196 		    s = splsoftclock();
1197 		    if (nfsd != swp) {
1198 			nfsd->nd_time = 0;
1199 			LIST_INSERT_HEAD(&slp->ns_tq, nfsd, nd_tq);
1200 		    }
1201 		    nfsd = LIST_FIRST(&swp->nd_coalesce);
1202 		    if (nfsd) {
1203 			LIST_REMOVE(nfsd, nd_tq);
1204 		    }
1205 		    splx(s);
1206 		} while (nfsd);
1207 		s = splsoftclock();
1208 		swp->nd_time = 0;
1209 		LIST_INSERT_HEAD(&slp->ns_tq, swp, nd_tq);
1210 		splx(s);
1211 		goto loop1;
1212 	}
1213 	splx(s);
1214 
1215 	/*
1216 	 * Search for a reply to return.
1217 	 */
1218 	s = splsoftclock();
1219 	LIST_FOREACH(nfsd, &slp->ns_tq, nd_tq) {
1220 		if (nfsd->nd_mreq) {
1221 		    LIST_REMOVE(nfsd, nd_tq);
1222 		    *mrq = nfsd->nd_mreq;
1223 		    *ndp = nfsd;
1224 		    break;
1225 		}
1226 	}
1227 	splx(s);
1228 	return (0);
1229 }
1230 
1231 /*
1232  * Coalesce the write request nfsd into owp. To do this we must:
1233  * - remove nfsd from the queues
1234  * - merge nfsd->nd_mrep into owp->nd_mrep
1235  * - update the nd_eoff and nd_stable for owp
1236  * - put nfsd on owp's nd_coalesce list
1237  * NB: Must be called at splsoftclock().
1238  */
1239 void
1240 nfsrvw_coalesce(owp, nfsd)
1241         struct nfsrv_descript *owp;
1242         struct nfsrv_descript *nfsd;
1243 {
1244         int overlap;
1245         struct mbuf *mp;
1246 	struct nfsrv_descript *m;
1247 
1248         LIST_REMOVE(nfsd, nd_hash);
1249         LIST_REMOVE(nfsd, nd_tq);
1250         if (owp->nd_eoff < nfsd->nd_eoff) {
1251             overlap = owp->nd_eoff - nfsd->nd_off;
1252             if (overlap < 0)
1253                 panic("nfsrv_coalesce: bad off");
1254             if (overlap > 0)
1255                 m_adj(nfsd->nd_mrep, overlap);
1256             mp = owp->nd_mrep;
1257             while (mp->m_next)
1258                 mp = mp->m_next;
1259             mp->m_next = nfsd->nd_mrep;
1260             owp->nd_eoff = nfsd->nd_eoff;
1261         } else
1262             m_freem(nfsd->nd_mrep);
1263         nfsd->nd_mrep = NULL;
1264         if (nfsd->nd_stable == NFSV3WRITE_FILESYNC)
1265             owp->nd_stable = NFSV3WRITE_FILESYNC;
1266         else if (nfsd->nd_stable == NFSV3WRITE_DATASYNC &&
1267             owp->nd_stable == NFSV3WRITE_UNSTABLE)
1268             owp->nd_stable = NFSV3WRITE_DATASYNC;
1269         LIST_INSERT_HEAD(&owp->nd_coalesce, nfsd, nd_tq);
1270  	/*
1271  	 * nfsd might hold coalesce elements! Move them to owp.
1272  	 * Otherwise, requests may be lost and clients will be stuck.
1273  	 */
1274 	while ((m = LIST_FIRST(&nfsd->nd_coalesce)) != NULL) {
1275 		LIST_REMOVE(m, nd_tq);
1276 		LIST_INSERT_HEAD(&owp->nd_coalesce, m, nd_tq);
1277 	}
1278 }
1279 
1280 /*
1281  * nfs create service
1282  * now does a truncate to 0 length via. setattr if it already exists
1283  */
1284 int
1285 nfsrv_create(nfsd, slp, procp, mrq)
1286 	struct nfsrv_descript *nfsd;
1287 	struct nfssvc_sock *slp;
1288 	struct proc *procp;
1289 	struct mbuf **mrq;
1290 {
1291 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
1292 	struct mbuf *nam = nfsd->nd_nam;
1293 	caddr_t dpos = nfsd->nd_dpos;
1294 	struct ucred *cred = &nfsd->nd_cr;
1295 	struct nfs_fattr *fp;
1296 	struct vattr va, dirfor, diraft;
1297 	struct nfsv2_sattr *sp;
1298 	u_int32_t *tl;
1299 	struct nameidata nd;
1300 	caddr_t cp;
1301 	int32_t t1;
1302 	caddr_t bpos;
1303 	int error = 0, cache, len, tsize, dirfor_ret = 1, diraft_ret = 1;
1304 	int rdev = 0;
1305 	int v3 = (nfsd->nd_flag & ND_NFSV3), how, exclusive_flag = 0;
1306 	char *cp2;
1307 	struct mbuf *mb, *mreq;
1308 	struct vnode *vp = NULL, *dirp = NULL;
1309 	nfsfh_t nfh;
1310 	fhandle_t *fhp;
1311 	u_quad_t frev, tempsize;
1312 	u_char cverf[NFSX_V3CREATEVERF];
1313 
1314 	nd.ni_cnd.cn_nameiop = 0;
1315 	fhp = &nfh.fh_generic;
1316 	nfsm_srvmtofh(fhp);
1317 	nfsm_srvnamesiz(len);
1318 	nd.ni_cnd.cn_cred = cred;
1319 	nd.ni_cnd.cn_nameiop = CREATE;
1320 	nd.ni_cnd.cn_flags = LOCKPARENT | LOCKLEAF;
1321 	error = nfs_namei(&nd, fhp, len, slp, nam, &md, &dpos,
1322 		&dirp, procp, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
1323 	if (dirp) {
1324 		if (v3)
1325 			dirfor_ret = VOP_GETATTR(dirp, &dirfor, cred,
1326 				procp);
1327 		else {
1328 			vrele(dirp);
1329 			dirp = (struct vnode *)0;
1330 		}
1331 	}
1332 	if (error) {
1333 		nfsm_reply(NFSX_WCCDATA(v3));
1334 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
1335 		if (dirp)
1336 			vrele(dirp);
1337 		return (0);
1338 	}
1339 	VATTR_NULL(&va);
1340 	if (v3) {
1341 		nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
1342 		how = fxdr_unsigned(int, *tl);
1343 		switch (how) {
1344 		case NFSV3CREATE_GUARDED:
1345 			if (nd.ni_vp) {
1346 				error = EEXIST;
1347 				break;
1348 			}
1349 		case NFSV3CREATE_UNCHECKED:
1350 			nfsm_srvsattr(&va);
1351 			break;
1352 		case NFSV3CREATE_EXCLUSIVE:
1353 			nfsm_dissect(cp, caddr_t, NFSX_V3CREATEVERF);
1354 			memcpy(cverf, cp, NFSX_V3CREATEVERF);
1355 			exclusive_flag = 1;
1356 			if (nd.ni_vp == NULL)
1357 				va.va_mode = 0;
1358 			break;
1359 		};
1360 		va.va_type = VREG;
1361 	} else {
1362 		nfsm_dissect(sp, struct nfsv2_sattr *, NFSX_V2SATTR);
1363 		va.va_type = IFTOVT(fxdr_unsigned(u_int32_t, sp->sa_mode));
1364 		if (va.va_type == VNON)
1365 			va.va_type = VREG;
1366 		va.va_mode = nfstov_mode(sp->sa_mode);
1367 		switch (va.va_type) {
1368 		case VREG:
1369 			tsize = fxdr_unsigned(int32_t, sp->sa_size);
1370 			if (tsize != -1)
1371 				va.va_size = (u_quad_t)tsize;
1372 			break;
1373 		case VCHR:
1374 		case VBLK:
1375 		case VFIFO:
1376 			rdev = fxdr_unsigned(int32_t, sp->sa_size);
1377 			break;
1378 		default:
1379 			break;
1380 		};
1381 	}
1382 
1383 	/*
1384 	 * Iff doesn't exist, create it
1385 	 * otherwise just truncate to 0 length
1386 	 *   should I set the mode too ??
1387 	 */
1388 	if (nd.ni_vp == NULL) {
1389 		if (va.va_type == VREG || va.va_type == VSOCK) {
1390 			nqsrv_getl(nd.ni_dvp, ND_WRITE);
1391 			error = VOP_CREATE(nd.ni_dvp, &nd.ni_vp, &nd.ni_cnd, &va);
1392 			if (!error) {
1393 				if (exclusive_flag) {
1394 					exclusive_flag = 0;
1395 					VATTR_NULL(&va);
1396 					memcpy((caddr_t)&va.va_atime, cverf,
1397 						NFSX_V3CREATEVERF);
1398 					error = VOP_SETATTR(nd.ni_vp, &va, cred,
1399 						procp);
1400 				}
1401 			}
1402 		} else if (va.va_type == VCHR || va.va_type == VBLK ||
1403 			va.va_type == VFIFO) {
1404 			if (va.va_type == VCHR && rdev == 0xffffffff)
1405 				va.va_type = VFIFO;
1406 			if (va.va_type != VFIFO &&
1407 			    (error = suser(cred, (u_short *)0))) {
1408 				VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1409 				vput(nd.ni_dvp);
1410 				nfsm_reply(0);
1411 				return (error);
1412 			} else
1413 				va.va_rdev = (dev_t)rdev;
1414 			nqsrv_getl(nd.ni_dvp, ND_WRITE);
1415 			error = VOP_MKNOD(nd.ni_dvp, &nd.ni_vp, &nd.ni_cnd,
1416 			    &va);
1417 			if (error) {
1418 				nfsm_reply(0);
1419 			}
1420 			if (nd.ni_cnd.cn_flags & ISSYMLINK) {
1421 				vrele(nd.ni_dvp);
1422 				vput(nd.ni_vp);
1423 				VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1424 				error = EINVAL;
1425 				nfsm_reply(0);
1426 			}
1427 		} else {
1428 			VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1429 			vput(nd.ni_dvp);
1430 			error = ENXIO;
1431 		}
1432 		vp = nd.ni_vp;
1433 	} else {
1434 		vp = nd.ni_vp;
1435 		if (nd.ni_dvp == vp)
1436 			vrele(nd.ni_dvp);
1437 		else
1438 			vput(nd.ni_dvp);
1439 		VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1440 		if (!error && va.va_size != -1) {
1441 			error = nfsrv_access(vp, VWRITE, cred,
1442 			    (nd.ni_cnd.cn_flags & RDONLY), procp, 0);
1443 			if (!error) {
1444 				nqsrv_getl(vp, ND_WRITE);
1445 				tempsize = va.va_size;
1446 				VATTR_NULL(&va);
1447 				va.va_size = tempsize;
1448 				error = VOP_SETATTR(vp, &va, cred,
1449 					 procp);
1450 			}
1451 		}
1452 		if (error)
1453 			vput(vp);
1454 	}
1455 	if (!error) {
1456 		memset((caddr_t)fhp, 0, sizeof(nfh));
1457 		fhp->fh_fsid = vp->v_mount->mnt_stat.f_fsid;
1458 		error = VFS_VPTOFH(vp, &fhp->fh_fid);
1459 		if (!error)
1460 			error = VOP_GETATTR(vp, &va, cred, procp);
1461 		vput(vp);
1462 	}
1463 	if (v3) {
1464 		if (exclusive_flag && !error &&
1465 			memcmp(cverf, (caddr_t)&va.va_atime, NFSX_V3CREATEVERF))
1466 			error = EEXIST;
1467 		diraft_ret = VOP_GETATTR(dirp, &diraft, cred, procp);
1468 		vrele(dirp);
1469 	}
1470 	nfsm_reply(NFSX_SRVFH(v3) + NFSX_FATTR(v3) + NFSX_WCCDATA(v3));
1471 	if (v3) {
1472 		if (!error) {
1473 			nfsm_srvpostop_fh(fhp);
1474 			nfsm_srvpostop_attr(0, &va);
1475 		}
1476 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
1477 	} else {
1478 		nfsm_srvfhtom(fhp, v3);
1479 		nfsm_build(fp, struct nfs_fattr *, NFSX_V2FATTR);
1480 		nfsm_srvfillattr(&va, fp);
1481 	}
1482 	return (0);
1483 nfsmout:
1484 	if (dirp)
1485 		vrele(dirp);
1486 	VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1487 	if (nd.ni_dvp == nd.ni_vp)
1488 		vrele(nd.ni_dvp);
1489 	else
1490 		vput(nd.ni_dvp);
1491 	if (nd.ni_vp)
1492 		vput(nd.ni_vp);
1493 	return (error);
1494 }
1495 
1496 /*
1497  * nfs v3 mknod service
1498  */
1499 int
1500 nfsrv_mknod(nfsd, slp, procp, mrq)
1501 	struct nfsrv_descript *nfsd;
1502 	struct nfssvc_sock *slp;
1503 	struct proc *procp;
1504 	struct mbuf **mrq;
1505 {
1506 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
1507 	struct mbuf *nam = nfsd->nd_nam;
1508 	caddr_t dpos = nfsd->nd_dpos;
1509 	struct ucred *cred = &nfsd->nd_cr;
1510 	struct vattr va, dirfor, diraft;
1511 	u_int32_t *tl;
1512 	struct nameidata nd;
1513 	int32_t t1;
1514 	caddr_t bpos;
1515 	int error = 0, cache, len, dirfor_ret = 1, diraft_ret = 1;
1516 	u_int32_t major, minor;
1517 	enum vtype vtyp;
1518 	char *cp2;
1519 	struct mbuf *mb, *mreq;
1520 	struct vnode *vp, *dirp = (struct vnode *)0;
1521 	nfsfh_t nfh;
1522 	fhandle_t *fhp;
1523 	u_quad_t frev;
1524 
1525 	nd.ni_cnd.cn_nameiop = 0;
1526 	fhp = &nfh.fh_generic;
1527 	nfsm_srvmtofh(fhp);
1528 	nfsm_srvnamesiz(len);
1529 	nd.ni_cnd.cn_cred = cred;
1530 	nd.ni_cnd.cn_nameiop = CREATE;
1531 	nd.ni_cnd.cn_flags = LOCKPARENT | LOCKLEAF;
1532 	error = nfs_namei(&nd, fhp, len, slp, nam, &md, &dpos,
1533 		&dirp, procp, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
1534 	if (dirp)
1535 		dirfor_ret = VOP_GETATTR(dirp, &dirfor, cred, procp);
1536 	if (error) {
1537 		nfsm_reply(NFSX_WCCDATA(1));
1538 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
1539 		if (dirp)
1540 			vrele(dirp);
1541 		return (0);
1542 	}
1543 	nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
1544 	vtyp = nfsv3tov_type(*tl);
1545 	if (vtyp != VCHR && vtyp != VBLK && vtyp != VSOCK && vtyp != VFIFO) {
1546 		error = NFSERR_BADTYPE;
1547 		VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1548 		if (nd.ni_dvp == nd.ni_vp)
1549 			vrele(nd.ni_dvp);
1550 		else
1551 			vput(nd.ni_dvp);
1552 		if (nd.ni_vp)
1553 			vput(nd.ni_vp);
1554 		goto out;
1555 	}
1556 	VATTR_NULL(&va);
1557 	nfsm_srvsattr(&va);
1558 	if (vtyp == VCHR || vtyp == VBLK) {
1559 		nfsm_dissect(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
1560 		major = fxdr_unsigned(u_int32_t, *tl++);
1561 		minor = fxdr_unsigned(u_int32_t, *tl);
1562 		va.va_rdev = makedev(major, minor);
1563 	}
1564 
1565 	/*
1566 	 * Iff doesn't exist, create it.
1567 	 */
1568 	if (nd.ni_vp) {
1569 		error = EEXIST;
1570 		VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1571 		if (nd.ni_dvp == nd.ni_vp)
1572 			vrele(nd.ni_dvp);
1573 		else
1574 			vput(nd.ni_dvp);
1575 		vput(nd.ni_vp);
1576 		goto out;
1577 	}
1578 	va.va_type = vtyp;
1579 	if (vtyp == VSOCK) {
1580 		nqsrv_getl(nd.ni_dvp, ND_WRITE);
1581 		error = VOP_CREATE(nd.ni_dvp, &nd.ni_vp, &nd.ni_cnd, &va);
1582 	} else {
1583 		if (va.va_type != VFIFO &&
1584 		    (error = suser(cred, (u_short *)0))) {
1585 			VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1586 			vput(nd.ni_dvp);
1587 			goto out;
1588 		}
1589 		nqsrv_getl(nd.ni_dvp, ND_WRITE);
1590 		error = VOP_MKNOD(nd.ni_dvp, &nd.ni_vp, &nd.ni_cnd, &va);
1591 		if (error) {
1592 			goto out;
1593 		}
1594 		if (error)
1595 			goto out;
1596 		if (nd.ni_cnd.cn_flags & ISSYMLINK) {
1597 			vput(nd.ni_vp);
1598 			VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1599 			error = EINVAL;
1600 		}
1601 	}
1602 out:
1603 	vp = nd.ni_vp;
1604 	if (!error) {
1605 		memset((caddr_t)fhp, 0, sizeof(nfh));
1606 		fhp->fh_fsid = vp->v_mount->mnt_stat.f_fsid;
1607 		error = VFS_VPTOFH(vp, &fhp->fh_fid);
1608 		if (!error)
1609 			error = VOP_GETATTR(vp, &va, cred, procp);
1610 		vput(vp);
1611 	}
1612 	diraft_ret = VOP_GETATTR(dirp, &diraft, cred, procp);
1613 	vrele(dirp);
1614 	nfsm_reply(NFSX_SRVFH(1) + NFSX_POSTOPATTR(1) + NFSX_WCCDATA(1));
1615 	if (!error) {
1616 		nfsm_srvpostop_fh(fhp);
1617 		nfsm_srvpostop_attr(0, &va);
1618 	}
1619 	nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
1620 	return (0);
1621 nfsmout:
1622 	if (dirp)
1623 		vrele(dirp);
1624 	VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1625 	if (nd.ni_dvp == nd.ni_vp)
1626 		vrele(nd.ni_dvp);
1627 	else
1628 		vput(nd.ni_dvp);
1629 	if (nd.ni_vp)
1630 		vput(nd.ni_vp);
1631 	return (error);
1632 }
1633 
1634 /*
1635  * nfs remove service
1636  */
1637 int
1638 nfsrv_remove(nfsd, slp, procp, mrq)
1639 	struct nfsrv_descript *nfsd;
1640 	struct nfssvc_sock *slp;
1641 	struct proc *procp;
1642 	struct mbuf **mrq;
1643 {
1644 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
1645 	struct mbuf *nam = nfsd->nd_nam;
1646 	caddr_t dpos = nfsd->nd_dpos;
1647 	struct ucred *cred = &nfsd->nd_cr;
1648 	struct nameidata nd;
1649 	u_int32_t *tl;
1650 	int32_t t1;
1651 	caddr_t bpos;
1652 	int error = 0, cache, len, dirfor_ret = 1, diraft_ret = 1;
1653 	int v3 = (nfsd->nd_flag & ND_NFSV3);
1654 	char *cp2;
1655 	struct mbuf *mb, *mreq;
1656 	struct vnode *vp, *dirp;
1657 	struct vattr dirfor, diraft;
1658 	nfsfh_t nfh;
1659 	fhandle_t *fhp;
1660 	u_quad_t frev;
1661 
1662 #ifndef nolint
1663 	vp = (struct vnode *)0;
1664 #endif
1665 	fhp = &nfh.fh_generic;
1666 	nfsm_srvmtofh(fhp);
1667 	nfsm_srvnamesiz(len);
1668 	nd.ni_cnd.cn_cred = cred;
1669 	nd.ni_cnd.cn_nameiop = DELETE;
1670 	nd.ni_cnd.cn_flags = LOCKPARENT | LOCKLEAF;
1671 	error = nfs_namei(&nd, fhp, len, slp, nam, &md, &dpos,
1672 		&dirp, procp, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
1673 	if (dirp) {
1674 		if (v3)
1675 			dirfor_ret = VOP_GETATTR(dirp, &dirfor, cred,
1676 				procp);
1677 		else
1678 			vrele(dirp);
1679 	}
1680 	if (!error) {
1681 		vp = nd.ni_vp;
1682 		if (vp->v_type == VDIR &&
1683 		    (error = suser(cred, (u_short *)0)) != 0)
1684 			goto out;
1685 		/*
1686 		 * The root of a mounted filesystem cannot be deleted.
1687 		 */
1688 		if (vp->v_flag & VROOT) {
1689 			error = EBUSY;
1690 			goto out;
1691 		}
1692 out:
1693 		if (!error) {
1694 			nqsrv_getl(nd.ni_dvp, ND_WRITE);
1695 			nqsrv_getl(vp, ND_WRITE);
1696 			error = VOP_REMOVE(nd.ni_dvp, nd.ni_vp, &nd.ni_cnd);
1697 		} else {
1698 			VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
1699 			if (nd.ni_dvp == vp)
1700 				vrele(nd.ni_dvp);
1701 			else
1702 				vput(nd.ni_dvp);
1703 			vput(vp);
1704 		}
1705 	}
1706 	if (dirp && v3) {
1707 		diraft_ret = VOP_GETATTR(dirp, &diraft, cred, procp);
1708 		vrele(dirp);
1709 	}
1710 	nfsm_reply(NFSX_WCCDATA(v3));
1711 	if (v3) {
1712 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
1713 		return (0);
1714 	}
1715 	nfsm_srvdone;
1716 }
1717 
1718 /*
1719  * nfs rename service
1720  */
1721 int
1722 nfsrv_rename(nfsd, slp, procp, mrq)
1723 	struct nfsrv_descript *nfsd;
1724 	struct nfssvc_sock *slp;
1725 	struct proc *procp;
1726 	struct mbuf **mrq;
1727 {
1728 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
1729 	struct mbuf *nam = nfsd->nd_nam;
1730 	caddr_t dpos = nfsd->nd_dpos;
1731 	struct ucred *cred = &nfsd->nd_cr;
1732 	u_int32_t *tl;
1733 	int32_t t1;
1734 	caddr_t bpos;
1735 	int error = 0, cache, fdirfor_ret = 1, fdiraft_ret = 1;
1736 	uint32_t len, len2;
1737 	int tdirfor_ret = 1, tdiraft_ret = 1;
1738 	int v3 = (nfsd->nd_flag & ND_NFSV3);
1739 	char *cp2;
1740 	struct mbuf *mb, *mreq;
1741 	struct nameidata fromnd, tond;
1742 	struct vnode *fvp, *tvp, *tdvp, *fdirp = (struct vnode *)0;
1743 	struct vnode *tdirp = (struct vnode *)0;
1744 	struct vattr fdirfor, fdiraft, tdirfor, tdiraft;
1745 	nfsfh_t fnfh, tnfh;
1746 	fhandle_t *ffhp, *tfhp;
1747 	u_quad_t frev;
1748 	uid_t saved_uid;
1749 
1750 #ifndef nolint
1751 	fvp = (struct vnode *)0;
1752 #endif
1753 	ffhp = &fnfh.fh_generic;
1754 	tfhp = &tnfh.fh_generic;
1755 	fromnd.ni_cnd.cn_nameiop = 0;
1756 	tond.ni_cnd.cn_nameiop = 0;
1757 	nfsm_srvmtofh(ffhp);
1758 	nfsm_srvnamesiz(len);
1759 	/*
1760 	 * Remember our original uid so that we can reset cr_uid before
1761 	 * the second nfs_namei() call, in case it is remapped.
1762 	 */
1763 	saved_uid = cred->cr_uid;
1764 	fromnd.ni_cnd.cn_cred = cred;
1765 	fromnd.ni_cnd.cn_nameiop = DELETE;
1766 	fromnd.ni_cnd.cn_flags = WANTPARENT | SAVESTART;
1767 	error = nfs_namei(&fromnd, ffhp, len, slp, nam, &md,
1768 		&dpos, &fdirp, procp, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
1769 	if (fdirp) {
1770 		if (v3)
1771 			fdirfor_ret = VOP_GETATTR(fdirp, &fdirfor, cred,
1772 				procp);
1773 		else {
1774 			vrele(fdirp);
1775 			fdirp = (struct vnode *)0;
1776 		}
1777 	}
1778 	if (error) {
1779 		nfsm_reply(2 * NFSX_WCCDATA(v3));
1780 		nfsm_srvwcc_data(fdirfor_ret, &fdirfor, fdiraft_ret, &fdiraft);
1781 		nfsm_srvwcc_data(tdirfor_ret, &tdirfor, tdiraft_ret, &tdiraft);
1782 		if (fdirp)
1783 			vrele(fdirp);
1784 		return (0);
1785 	}
1786 	fvp = fromnd.ni_vp;
1787 	nfsm_srvmtofh(tfhp);
1788 	if (v3) {
1789 		nfsm_dissect(tl, uint32_t *, NFSX_UNSIGNED);
1790 		len2 = fxdr_unsigned(uint32_t, *tl);
1791 		/* len2 will be checked by nfs_namei */
1792 	}
1793 	else {
1794 		/* NFSv2 */
1795 		nfsm_strsiz(len2, NFS_MAXNAMLEN);
1796 	}
1797 	cred->cr_uid = saved_uid;
1798 	tond.ni_cnd.cn_cred = cred;
1799 	tond.ni_cnd.cn_nameiop = RENAME;
1800 	tond.ni_cnd.cn_flags = LOCKPARENT | LOCKLEAF | NOCACHE | SAVESTART;
1801 	error = nfs_namei(&tond, tfhp, len2, slp, nam, &md,
1802 		&dpos, &tdirp, procp, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
1803 	if (tdirp) {
1804 		if (v3)
1805 			tdirfor_ret = VOP_GETATTR(tdirp, &tdirfor, cred,
1806 				procp);
1807 		else {
1808 			vrele(tdirp);
1809 			tdirp = (struct vnode *)0;
1810 		}
1811 	}
1812 	if (error) {
1813 		VOP_ABORTOP(fromnd.ni_dvp, &fromnd.ni_cnd);
1814 		vrele(fromnd.ni_dvp);
1815 		vrele(fvp);
1816 		goto out1;
1817 	}
1818 	tdvp = tond.ni_dvp;
1819 	tvp = tond.ni_vp;
1820 	if (tvp != NULL) {
1821 		if (fvp->v_type == VDIR && tvp->v_type != VDIR) {
1822 			if (v3)
1823 				error = EEXIST;
1824 			else
1825 				error = EISDIR;
1826 			goto out;
1827 		} else if (fvp->v_type != VDIR && tvp->v_type == VDIR) {
1828 			if (v3)
1829 				error = EEXIST;
1830 			else
1831 				error = ENOTDIR;
1832 			goto out;
1833 		}
1834 		if (tvp->v_type == VDIR && tvp->v_mountedhere) {
1835 			if (v3)
1836 				error = EXDEV;
1837 			else
1838 				error = ENOTEMPTY;
1839 			goto out;
1840 		}
1841 	}
1842 	if (fvp->v_type == VDIR && fvp->v_mountedhere) {
1843 		if (v3)
1844 			error = EXDEV;
1845 		else
1846 			error = ENOTEMPTY;
1847 		goto out;
1848 	}
1849 	if (fvp->v_mount != tdvp->v_mount) {
1850 		if (v3)
1851 			error = EXDEV;
1852 		else
1853 			error = ENOTEMPTY;
1854 		goto out;
1855 	}
1856 	if (fvp == tdvp) {
1857 		if (v3)
1858 			error = EINVAL;
1859 		else
1860 			error = ENOTEMPTY;
1861 	}
1862 	/*
1863 	 * If source is the same as the destination (that is the
1864 	 * same vnode with the same name in the same directory),
1865 	 * then there is nothing to do.
1866 	 */
1867 	if (fvp == tvp && fromnd.ni_dvp == tdvp &&
1868 	    fromnd.ni_cnd.cn_namelen == tond.ni_cnd.cn_namelen &&
1869 	    !memcmp(fromnd.ni_cnd.cn_nameptr, tond.ni_cnd.cn_nameptr,
1870 	      fromnd.ni_cnd.cn_namelen))
1871 		error = -1;
1872 out:
1873 	if (!error) {
1874 		nqsrv_getl(fromnd.ni_dvp, ND_WRITE);
1875 		nqsrv_getl(tdvp, ND_WRITE);
1876 		if (tvp) {
1877 			nqsrv_getl(tvp, ND_WRITE);
1878 		}
1879 		error = VOP_RENAME(fromnd.ni_dvp, fromnd.ni_vp, &fromnd.ni_cnd,
1880 				   tond.ni_dvp, tond.ni_vp, &tond.ni_cnd);
1881 	} else {
1882 		VOP_ABORTOP(tond.ni_dvp, &tond.ni_cnd);
1883 		if (tdvp == tvp)
1884 			vrele(tdvp);
1885 		else
1886 			vput(tdvp);
1887 		if (tvp)
1888 			vput(tvp);
1889 		VOP_ABORTOP(fromnd.ni_dvp, &fromnd.ni_cnd);
1890 		vrele(fromnd.ni_dvp);
1891 		vrele(fvp);
1892 		if (error == -1)
1893 			error = 0;
1894 	}
1895 	vrele(tond.ni_startdir);
1896 	PNBUF_PUT(tond.ni_cnd.cn_pnbuf);
1897 out1:
1898 	if (fdirp) {
1899 		fdiraft_ret = VOP_GETATTR(fdirp, &fdiraft, cred, procp);
1900 		vrele(fdirp);
1901 	}
1902 	if (tdirp) {
1903 		tdiraft_ret = VOP_GETATTR(tdirp, &tdiraft, cred, procp);
1904 		vrele(tdirp);
1905 	}
1906 	vrele(fromnd.ni_startdir);
1907 	PNBUF_PUT(fromnd.ni_cnd.cn_pnbuf);
1908 	nfsm_reply(2 * NFSX_WCCDATA(v3));
1909 	if (v3) {
1910 		nfsm_srvwcc_data(fdirfor_ret, &fdirfor, fdiraft_ret, &fdiraft);
1911 		nfsm_srvwcc_data(tdirfor_ret, &tdirfor, tdiraft_ret, &tdiraft);
1912 	}
1913 	return (0);
1914 
1915 nfsmout:
1916 	if (fdirp)
1917 		vrele(fdirp);
1918 	if (tdirp)
1919 		vrele(tdirp);
1920 	if (tond.ni_cnd.cn_nameiop) {
1921 		vrele(tond.ni_startdir);
1922 		PNBUF_PUT(tond.ni_cnd.cn_pnbuf);
1923 	}
1924 	if (fromnd.ni_cnd.cn_nameiop) {
1925 		vrele(fromnd.ni_startdir);
1926 		PNBUF_PUT(fromnd.ni_cnd.cn_pnbuf);
1927 		VOP_ABORTOP(fromnd.ni_dvp, &fromnd.ni_cnd);
1928 		vrele(fromnd.ni_dvp);
1929 		vrele(fvp);
1930 	}
1931 	return (error);
1932 }
1933 
1934 /*
1935  * nfs link service
1936  */
1937 int
1938 nfsrv_link(nfsd, slp, procp, mrq)
1939 	struct nfsrv_descript *nfsd;
1940 	struct nfssvc_sock *slp;
1941 	struct proc *procp;
1942 	struct mbuf **mrq;
1943 {
1944 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
1945 	struct mbuf *nam = nfsd->nd_nam;
1946 	caddr_t dpos = nfsd->nd_dpos;
1947 	struct ucred *cred = &nfsd->nd_cr;
1948 	struct nameidata nd;
1949 	u_int32_t *tl;
1950 	int32_t t1;
1951 	caddr_t bpos;
1952 	int error = 0, rdonly, cache, len, dirfor_ret = 1, diraft_ret = 1;
1953 	int getret = 1, v3 = (nfsd->nd_flag & ND_NFSV3);
1954 	char *cp2;
1955 	struct mbuf *mb, *mreq;
1956 	struct vnode *vp, *xp, *dirp = (struct vnode *)0;
1957 	struct vattr dirfor, diraft, at;
1958 	nfsfh_t nfh, dnfh;
1959 	fhandle_t *fhp, *dfhp;
1960 	u_quad_t frev;
1961 
1962 	fhp = &nfh.fh_generic;
1963 	dfhp = &dnfh.fh_generic;
1964 	nfsm_srvmtofh(fhp);
1965 	nfsm_srvmtofh(dfhp);
1966 	nfsm_srvnamesiz(len);
1967 	error = nfsrv_fhtovp(fhp, FALSE, &vp, cred, slp, nam,
1968 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
1969 	if (error) {
1970 		nfsm_reply(NFSX_POSTOPATTR(v3) + NFSX_WCCDATA(v3));
1971 		nfsm_srvpostop_attr(getret, &at);
1972 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
1973 		return (0);
1974 	}
1975 	if (vp->v_type == VDIR && (error = suser(cred, (u_short *)0)) != 0)
1976 		goto out1;
1977 	nd.ni_cnd.cn_cred = cred;
1978 	nd.ni_cnd.cn_nameiop = CREATE;
1979 	nd.ni_cnd.cn_flags = LOCKPARENT;
1980 	error = nfs_namei(&nd, dfhp, len, slp, nam, &md, &dpos,
1981 		&dirp, procp, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
1982 	if (dirp) {
1983 		if (v3)
1984 			dirfor_ret = VOP_GETATTR(dirp, &dirfor, cred,
1985 				procp);
1986 		else {
1987 			vrele(dirp);
1988 			dirp = (struct vnode *)0;
1989 		}
1990 	}
1991 	if (error)
1992 		goto out1;
1993 	xp = nd.ni_vp;
1994 	if (xp != NULL) {
1995 		error = EEXIST;
1996 		goto out;
1997 	}
1998 	xp = nd.ni_dvp;
1999 	if (vp->v_mount != xp->v_mount)
2000 		error = EXDEV;
2001 out:
2002 	if (!error) {
2003 		nqsrv_getl(vp, ND_WRITE);
2004 		nqsrv_getl(xp, ND_WRITE);
2005 		error = VOP_LINK(nd.ni_dvp, vp, &nd.ni_cnd);
2006 	} else {
2007 		VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
2008 		if (nd.ni_dvp == nd.ni_vp)
2009 			vrele(nd.ni_dvp);
2010 		else
2011 			vput(nd.ni_dvp);
2012 		if (nd.ni_vp)
2013 			vrele(nd.ni_vp);
2014 	}
2015 out1:
2016 	if (v3)
2017 		getret = VOP_GETATTR(vp, &at, cred, procp);
2018 	if (dirp) {
2019 		diraft_ret = VOP_GETATTR(dirp, &diraft, cred, procp);
2020 		vrele(dirp);
2021 	}
2022 	vrele(vp);
2023 	nfsm_reply(NFSX_POSTOPATTR(v3) + NFSX_WCCDATA(v3));
2024 	if (v3) {
2025 		nfsm_srvpostop_attr(getret, &at);
2026 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
2027 		return (0);
2028 	}
2029 	nfsm_srvdone;
2030 }
2031 
2032 /*
2033  * nfs symbolic link service
2034  */
2035 int
2036 nfsrv_symlink(nfsd, slp, procp, mrq)
2037 	struct nfsrv_descript *nfsd;
2038 	struct nfssvc_sock *slp;
2039 	struct proc *procp;
2040 	struct mbuf **mrq;
2041 {
2042 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
2043 	struct mbuf *nam = nfsd->nd_nam;
2044 	caddr_t dpos = nfsd->nd_dpos;
2045 	struct ucred *cred = &nfsd->nd_cr;
2046 	struct vattr va, dirfor, diraft;
2047 	struct nameidata nd;
2048 	u_int32_t *tl;
2049 	int32_t t1;
2050 	struct nfsv2_sattr *sp;
2051 	char *bpos, *pathcp = NULL, *cp2;
2052 	struct uio io;
2053 	struct iovec iv;
2054 	int error = 0, cache, dirfor_ret = 1, diraft_ret = 1;
2055 	uint32_t len, len2;
2056 	int v3 = (nfsd->nd_flag & ND_NFSV3);
2057 	struct mbuf *mb, *mreq;
2058 	struct vnode *dirp = (struct vnode *)0;
2059 	nfsfh_t nfh;
2060 	fhandle_t *fhp;
2061 	u_quad_t frev;
2062 
2063 	nd.ni_cnd.cn_nameiop = 0;
2064 	fhp = &nfh.fh_generic;
2065 	nfsm_srvmtofh(fhp);
2066 	nfsm_srvnamesiz(len);
2067 	nd.ni_cnd.cn_cred = cred;
2068 	nd.ni_cnd.cn_nameiop = CREATE;
2069 	nd.ni_cnd.cn_flags = LOCKPARENT;
2070 	error = nfs_namei(&nd, fhp, len, slp, nam, &md, &dpos,
2071 		&dirp, procp, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
2072 	if (dirp) {
2073 		if (v3)
2074 			dirfor_ret = VOP_GETATTR(dirp, &dirfor, cred,
2075 				procp);
2076 		else {
2077 			vrele(dirp);
2078 			dirp = (struct vnode *)0;
2079 		}
2080 	}
2081 	if (error)
2082 		goto out;
2083 	VATTR_NULL(&va);
2084 	if (v3) {
2085 		nfsm_srvsattr(&va);
2086 		nfsm_dissect(tl, uint32_t *, NFSX_UNSIGNED);
2087 		len2 = fxdr_unsigned(uint32_t, *tl);
2088 		if (len2 > PATH_MAX) {
2089 			/* XXX should check _PC_NO_TRUNC */
2090 			error = ENAMETOOLONG;
2091 			goto abortop;
2092 		}
2093 	}
2094 	else {
2095 		/* NFSv2 */
2096 		nfsm_strsiz(len2, NFS_MAXPATHLEN);
2097 	}
2098 	pathcp = malloc(len2 + 1, M_TEMP, M_WAITOK);
2099 	iv.iov_base = pathcp;
2100 	iv.iov_len = len2;
2101 	io.uio_resid = len2;
2102 	io.uio_offset = 0;
2103 	io.uio_iov = &iv;
2104 	io.uio_iovcnt = 1;
2105 	io.uio_segflg = UIO_SYSSPACE;
2106 	io.uio_rw = UIO_READ;
2107 	io.uio_procp = (struct proc *)0;
2108 	nfsm_mtouio(&io, len2);
2109 	if (!v3) {
2110 		nfsm_dissect(sp, struct nfsv2_sattr *, NFSX_V2SATTR);
2111 		va.va_mode = fxdr_unsigned(u_int16_t, sp->sa_mode);
2112 	}
2113 	*(pathcp + len2) = '\0';
2114 	if (nd.ni_vp) {
2115 		error = EEXIST;
2116 abortop:
2117 		VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
2118 		if (nd.ni_dvp == nd.ni_vp)
2119 			vrele(nd.ni_dvp);
2120 		else
2121 			vput(nd.ni_dvp);
2122 		if (nd.ni_vp)
2123 			vrele(nd.ni_vp);
2124 		goto out;
2125 	}
2126 	nqsrv_getl(nd.ni_dvp, ND_WRITE);
2127 	error = VOP_SYMLINK(nd.ni_dvp, &nd.ni_vp, &nd.ni_cnd, &va, pathcp);
2128 	if (!error) {
2129 	    if (v3) {
2130 		memset((caddr_t)fhp, 0, sizeof(nfh));
2131 		fhp->fh_fsid = nd.ni_vp->v_mount->mnt_stat.f_fsid;
2132 		error = VFS_VPTOFH(nd.ni_vp, &fhp->fh_fid);
2133 		if (!error)
2134 		    error = VOP_GETATTR(nd.ni_vp, &va, cred,
2135 					procp);
2136 		vput(nd.ni_vp);
2137 	    } else {
2138 		vput(nd.ni_vp);
2139 	    }
2140 	}
2141 out:
2142 	if (pathcp)
2143 		free(pathcp, M_TEMP);
2144 	if (dirp) {
2145 		diraft_ret = VOP_GETATTR(dirp, &diraft, cred, procp);
2146 		vrele(dirp);
2147 	}
2148 	nfsm_reply(NFSX_SRVFH(v3) + NFSX_POSTOPATTR(v3) + NFSX_WCCDATA(v3));
2149 	if (v3) {
2150 		if (!error) {
2151 			nfsm_srvpostop_fh(fhp);
2152 			nfsm_srvpostop_attr(0, &va);
2153 		}
2154 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
2155 	}
2156 	return (0);
2157 nfsmout:
2158 	if (dirp)
2159 		vrele(dirp);
2160 	VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
2161 	if (nd.ni_dvp == nd.ni_vp)
2162 		vrele(nd.ni_dvp);
2163 	else
2164 		vput(nd.ni_dvp);
2165 	if (nd.ni_vp)
2166 		vrele(nd.ni_vp);
2167 	if (pathcp)
2168 		free(pathcp, M_TEMP);
2169 	return (error);
2170 }
2171 
2172 /*
2173  * nfs mkdir service
2174  */
2175 int
2176 nfsrv_mkdir(nfsd, slp, procp, mrq)
2177 	struct nfsrv_descript *nfsd;
2178 	struct nfssvc_sock *slp;
2179 	struct proc *procp;
2180 	struct mbuf **mrq;
2181 {
2182 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
2183 	struct mbuf *nam = nfsd->nd_nam;
2184 	caddr_t dpos = nfsd->nd_dpos;
2185 	struct ucred *cred = &nfsd->nd_cr;
2186 	struct vattr va, dirfor, diraft;
2187 	struct nfs_fattr *fp;
2188 	struct nameidata nd;
2189 	caddr_t cp;
2190 	u_int32_t *tl;
2191 	int32_t t1;
2192 	caddr_t bpos;
2193 	int error = 0, cache, len, dirfor_ret = 1, diraft_ret = 1;
2194 	int v3 = (nfsd->nd_flag & ND_NFSV3);
2195 	char *cp2;
2196 	struct mbuf *mb, *mreq;
2197 	struct vnode *vp, *dirp = (struct vnode *)0;
2198 	nfsfh_t nfh;
2199 	fhandle_t *fhp;
2200 	u_quad_t frev;
2201 
2202 	fhp = &nfh.fh_generic;
2203 	nfsm_srvmtofh(fhp);
2204 	nfsm_srvnamesiz(len);
2205 	nd.ni_cnd.cn_cred = cred;
2206 	nd.ni_cnd.cn_nameiop = CREATE;
2207 	nd.ni_cnd.cn_flags = LOCKPARENT;
2208 	error = nfs_namei(&nd, fhp, len, slp, nam, &md, &dpos,
2209 		&dirp, procp, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
2210 	if (dirp) {
2211 		if (v3)
2212 			dirfor_ret = VOP_GETATTR(dirp, &dirfor, cred,
2213 				procp);
2214 		else {
2215 			vrele(dirp);
2216 			dirp = (struct vnode *)0;
2217 		}
2218 	}
2219 	if (error) {
2220 		nfsm_reply(NFSX_WCCDATA(v3));
2221 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
2222 		if (dirp)
2223 			vrele(dirp);
2224 		return (0);
2225 	}
2226 	VATTR_NULL(&va);
2227 	if (v3) {
2228 		nfsm_srvsattr(&va);
2229 	} else {
2230 		nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
2231 		va.va_mode = nfstov_mode(*tl++);
2232 	}
2233 	va.va_type = VDIR;
2234 	vp = nd.ni_vp;
2235 	if (vp != NULL) {
2236 		VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
2237 		if (nd.ni_dvp == vp)
2238 			vrele(nd.ni_dvp);
2239 		else
2240 			vput(nd.ni_dvp);
2241 		vrele(vp);
2242 		error = EEXIST;
2243 		goto out;
2244 	}
2245 	nqsrv_getl(nd.ni_dvp, ND_WRITE);
2246 	error = VOP_MKDIR(nd.ni_dvp, &nd.ni_vp, &nd.ni_cnd, &va);
2247 	if (!error) {
2248 		vp = nd.ni_vp;
2249 		memset((caddr_t)fhp, 0, sizeof(nfh));
2250 		fhp->fh_fsid = vp->v_mount->mnt_stat.f_fsid;
2251 		error = VFS_VPTOFH(vp, &fhp->fh_fid);
2252 		if (!error)
2253 			error = VOP_GETATTR(vp, &va, cred, procp);
2254 		vput(vp);
2255 	}
2256 out:
2257 	if (dirp) {
2258 		diraft_ret = VOP_GETATTR(dirp, &diraft, cred, procp);
2259 		vrele(dirp);
2260 	}
2261 	nfsm_reply(NFSX_SRVFH(v3) + NFSX_POSTOPATTR(v3) + NFSX_WCCDATA(v3));
2262 	if (v3) {
2263 		if (!error) {
2264 			nfsm_srvpostop_fh(fhp);
2265 			nfsm_srvpostop_attr(0, &va);
2266 		}
2267 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
2268 	} else {
2269 		nfsm_srvfhtom(fhp, v3);
2270 		nfsm_build(fp, struct nfs_fattr *, NFSX_V2FATTR);
2271 		nfsm_srvfillattr(&va, fp);
2272 	}
2273 	return (0);
2274 nfsmout:
2275 	if (dirp)
2276 		vrele(dirp);
2277 	VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
2278 	if (nd.ni_dvp == nd.ni_vp)
2279 		vrele(nd.ni_dvp);
2280 	else
2281 		vput(nd.ni_dvp);
2282 	if (nd.ni_vp)
2283 		vrele(nd.ni_vp);
2284 	return (error);
2285 }
2286 
2287 /*
2288  * nfs rmdir service
2289  */
2290 int
2291 nfsrv_rmdir(nfsd, slp, procp, mrq)
2292 	struct nfsrv_descript *nfsd;
2293 	struct nfssvc_sock *slp;
2294 	struct proc *procp;
2295 	struct mbuf **mrq;
2296 {
2297 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
2298 	struct mbuf *nam = nfsd->nd_nam;
2299 	caddr_t dpos = nfsd->nd_dpos;
2300 	struct ucred *cred = &nfsd->nd_cr;
2301 	u_int32_t *tl;
2302 	int32_t t1;
2303 	caddr_t bpos;
2304 	int error = 0, cache, len, dirfor_ret = 1, diraft_ret = 1;
2305 	int v3 = (nfsd->nd_flag & ND_NFSV3);
2306 	char *cp2;
2307 	struct mbuf *mb, *mreq;
2308 	struct vnode *vp, *dirp = (struct vnode *)0;
2309 	struct vattr dirfor, diraft;
2310 	nfsfh_t nfh;
2311 	fhandle_t *fhp;
2312 	struct nameidata nd;
2313 	u_quad_t frev;
2314 
2315 	fhp = &nfh.fh_generic;
2316 	nfsm_srvmtofh(fhp);
2317 	nfsm_srvnamesiz(len);
2318 	nd.ni_cnd.cn_cred = cred;
2319 	nd.ni_cnd.cn_nameiop = DELETE;
2320 	nd.ni_cnd.cn_flags = LOCKPARENT | LOCKLEAF;
2321 	error = nfs_namei(&nd, fhp, len, slp, nam, &md, &dpos,
2322 		&dirp, procp, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
2323 	if (dirp) {
2324 		if (v3)
2325 			dirfor_ret = VOP_GETATTR(dirp, &dirfor, cred,
2326 				procp);
2327 		else {
2328 			vrele(dirp);
2329 			dirp = (struct vnode *)0;
2330 		}
2331 	}
2332 	if (error) {
2333 		nfsm_reply(NFSX_WCCDATA(v3));
2334 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
2335 		if (dirp)
2336 			vrele(dirp);
2337 		return (0);
2338 	}
2339 	vp = nd.ni_vp;
2340 	if (vp->v_type != VDIR) {
2341 		error = ENOTDIR;
2342 		goto out;
2343 	}
2344 	/*
2345 	 * No rmdir "." please.
2346 	 */
2347 	if (nd.ni_dvp == vp) {
2348 		error = EINVAL;
2349 		goto out;
2350 	}
2351 	/*
2352 	 * The root of a mounted filesystem cannot be deleted.
2353 	 */
2354 	if (vp->v_flag & VROOT)
2355 		error = EBUSY;
2356 out:
2357 	if (!error) {
2358 		nqsrv_getl(nd.ni_dvp, ND_WRITE);
2359 		nqsrv_getl(vp, ND_WRITE);
2360 		error = VOP_RMDIR(nd.ni_dvp, nd.ni_vp, &nd.ni_cnd);
2361 	} else {
2362 		VOP_ABORTOP(nd.ni_dvp, &nd.ni_cnd);
2363 		if (nd.ni_dvp == nd.ni_vp)
2364 			vrele(nd.ni_dvp);
2365 		else
2366 			vput(nd.ni_dvp);
2367 		vput(vp);
2368 	}
2369 	if (dirp) {
2370 		diraft_ret = VOP_GETATTR(dirp, &diraft, cred, procp);
2371 		vrele(dirp);
2372 	}
2373 	nfsm_reply(NFSX_WCCDATA(v3));
2374 	if (v3) {
2375 		nfsm_srvwcc_data(dirfor_ret, &dirfor, diraft_ret, &diraft);
2376 		return (0);
2377 	}
2378 	nfsm_srvdone;
2379 }
2380 
2381 /*
2382  * nfs readdir service
2383  * - mallocs what it thinks is enough to read
2384  *	count rounded up to a multiple of NFS_DIRBLKSIZ <= NFS_MAXREADDIR
2385  * - calls VOP_READDIR()
2386  * - loops around building the reply
2387  *	if the output generated exceeds count break out of loop
2388  *	The nfsm_clget macro is used here so that the reply will be packed
2389  *	tightly in mbuf clusters.
2390  * - it only knows that it has encountered eof when the VOP_READDIR()
2391  *	reads nothing
2392  * - as such one readdir rpc will return eof false although you are there
2393  *	and then the next will return eof
2394  * - it trims out records with d_fileno == 0
2395  *	this doesn't matter for Unix clients, but they might confuse clients
2396  *	for other os'.
2397  * - it trims out records with d_type == DT_WHT
2398  *	these cannot be seen through NFS (unless we extend the protocol)
2399  * NB: It is tempting to set eof to true if the VOP_READDIR() reads less
2400  *	than requested, but this may not apply to all filesystems. For
2401  *	example, client NFS does not { although it is never remote mounted
2402  *	anyhow }
2403  *     The alternate call nfsrv_readdirplus() does lookups as well.
2404  * PS: The NFS protocol spec. does not clarify what the "count" byte
2405  *	argument is a count of.. just name strings and file id's or the
2406  *	entire reply rpc or ...
2407  *	I tried just file name and id sizes and it confused the Sun client,
2408  *	so I am using the full rpc size now. The "paranoia.." comment refers
2409  *	to including the status longwords that are not a part of the dir.
2410  *	"entry" structures, but are in the rpc.
2411  */
2412 struct flrep {
2413 	nfsuint64 fl_off;
2414 	u_int32_t fl_postopok;
2415 	u_int32_t fl_fattr[NFSX_V3FATTR / sizeof (u_int32_t)];
2416 	u_int32_t fl_fhok;
2417 	u_int32_t fl_fhsize;
2418 	u_int32_t fl_nfh[NFSX_V3FH / sizeof (u_int32_t)];
2419 };
2420 
2421 int
2422 nfsrv_readdir(nfsd, slp, procp, mrq)
2423 	struct nfsrv_descript *nfsd;
2424 	struct nfssvc_sock *slp;
2425 	struct proc *procp;
2426 	struct mbuf **mrq;
2427 {
2428 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
2429 	struct mbuf *nam = nfsd->nd_nam;
2430 	caddr_t dpos = nfsd->nd_dpos;
2431 	struct ucred *cred = &nfsd->nd_cr;
2432 	char *bp, *be;
2433 	struct mbuf *mp;
2434 	struct dirent *dp;
2435 	caddr_t cp;
2436 	u_int32_t *tl;
2437 	int32_t t1;
2438 	caddr_t bpos;
2439 	struct mbuf *mb, *mreq, *mp2;
2440 	char *cpos, *cend, *cp2, *rbuf;
2441 	struct vnode *vp;
2442 	struct vattr at;
2443 	nfsfh_t nfh;
2444 	fhandle_t *fhp;
2445 	struct uio io;
2446 	struct iovec iv;
2447 	int len, nlen, rem, xfer, tsiz, i, error = 0, getret = 1;
2448 	int siz, cnt, fullsiz, eofflag, rdonly, cache, ncookies;
2449 	int v3 = (nfsd->nd_flag & ND_NFSV3);
2450 	u_quad_t frev, off, toff, verf;
2451 	off_t *cookies = NULL, *cookiep;
2452 	nfsuint64 jar;
2453 
2454 	fhp = &nfh.fh_generic;
2455 	nfsm_srvmtofh(fhp);
2456 	if (v3) {
2457 		nfsm_dissect(tl, u_int32_t *, 5 * NFSX_UNSIGNED);
2458 		toff = fxdr_hyper(tl);
2459 		tl += 2;
2460 		verf = fxdr_hyper(tl);
2461 		tl += 2;
2462 	} else {
2463 		nfsm_dissect(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2464 		toff = fxdr_unsigned(u_quad_t, *tl++);
2465 	}
2466 	off = toff;
2467 	cnt = fxdr_unsigned(int, *tl);
2468 	siz = ((cnt + DIRBLKSIZ - 1) & ~(DIRBLKSIZ - 1));
2469 	xfer = NFS_SRVMAXDATA(nfsd);
2470 	if (siz > xfer)
2471 		siz = xfer;
2472 	fullsiz = siz;
2473 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam,
2474 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
2475 	if (!error && vp->v_type != VDIR) {
2476 		error = ENOTDIR;
2477 		vput(vp);
2478 	}
2479 	if (error) {
2480 		nfsm_reply(NFSX_UNSIGNED);
2481 		nfsm_srvpostop_attr(getret, &at);
2482 		return (0);
2483 	}
2484 	nqsrv_getl(vp, ND_READ);
2485 	if (v3) {
2486 		error = getret = VOP_GETATTR(vp, &at, cred, procp);
2487 #ifdef NFS3_STRICTVERF
2488 		/*
2489 		 * XXX This check is too strict for Solaris 2.5 clients.
2490 		 */
2491 		if (!error && toff && verf != at.va_filerev)
2492 			error = NFSERR_BAD_COOKIE;
2493 #endif
2494 	}
2495 	if (!error)
2496 		error = nfsrv_access(vp, VEXEC, cred, rdonly, procp, 0);
2497 	if (error) {
2498 		vput(vp);
2499 		nfsm_reply(NFSX_POSTOPATTR(v3));
2500 		nfsm_srvpostop_attr(getret, &at);
2501 		return (0);
2502 	}
2503 	VOP_UNLOCK(vp, 0);
2504 	rbuf = malloc(siz, M_TEMP, M_WAITOK);
2505 again:
2506 	iv.iov_base = rbuf;
2507 	iv.iov_len = fullsiz;
2508 	io.uio_iov = &iv;
2509 	io.uio_iovcnt = 1;
2510 	io.uio_offset = (off_t)off;
2511 	io.uio_resid = fullsiz;
2512 	io.uio_segflg = UIO_SYSSPACE;
2513 	io.uio_rw = UIO_READ;
2514 	io.uio_procp = (struct proc *)0;
2515 	eofflag = 0;
2516 	vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
2517 
2518 	error = VOP_READDIR(vp, &io, cred, &eofflag, &cookies, &ncookies);
2519 
2520 	off = (off_t)io.uio_offset;
2521 	if (!cookies && !error)
2522 		error = NFSERR_PERM;
2523 	if (v3) {
2524 		getret = VOP_GETATTR(vp, &at, cred, procp);
2525 		if (!error)
2526 			error = getret;
2527 	}
2528 
2529 	VOP_UNLOCK(vp, 0);
2530 	if (error) {
2531 		vrele(vp);
2532 		free((caddr_t)rbuf, M_TEMP);
2533 		if (cookies)
2534 			free((caddr_t)cookies, M_TEMP);
2535 		nfsm_reply(NFSX_POSTOPATTR(v3));
2536 		nfsm_srvpostop_attr(getret, &at);
2537 		return (0);
2538 	}
2539 	if (io.uio_resid) {
2540 		siz -= io.uio_resid;
2541 
2542 		/*
2543 		 * If nothing read, return eof
2544 		 * rpc reply
2545 		 */
2546 		if (siz == 0) {
2547 			vrele(vp);
2548 			nfsm_reply(NFSX_POSTOPATTR(v3) + NFSX_COOKIEVERF(v3) +
2549 				2 * NFSX_UNSIGNED);
2550 			if (v3) {
2551 				nfsm_srvpostop_attr(getret, &at);
2552 				nfsm_build(tl, u_int32_t *, 4 * NFSX_UNSIGNED);
2553 				txdr_hyper(at.va_filerev, tl);
2554 				tl += 2;
2555 			} else
2556 				nfsm_build(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2557 			*tl++ = nfs_false;
2558 			*tl = nfs_true;
2559 			free((caddr_t)rbuf, M_TEMP);
2560 			free((caddr_t)cookies, M_TEMP);
2561 			return (0);
2562 		}
2563 	}
2564 
2565 	/*
2566 	 * Check for degenerate cases of nothing useful read.
2567 	 * If so go try again
2568 	 */
2569 	cpos = rbuf;
2570 	cend = rbuf + siz;
2571 	dp = (struct dirent *)cpos;
2572 	cookiep = cookies;
2573 
2574 	while (cpos < cend && ncookies > 0 &&
2575 		(dp->d_fileno == 0 || dp->d_type == DT_WHT)) {
2576 		cpos += dp->d_reclen;
2577 		dp = (struct dirent *)cpos;
2578 		cookiep++;
2579 		ncookies--;
2580 	}
2581 	if (cpos >= cend || ncookies == 0) {
2582 		toff = off;
2583 		siz = fullsiz;
2584 		goto again;
2585 	}
2586 
2587 	len = 3 * NFSX_UNSIGNED;	/* paranoia, probably can be 0 */
2588 	nfsm_reply(NFSX_POSTOPATTR(v3) + NFSX_COOKIEVERF(v3) + siz);
2589 	if (v3) {
2590 		nfsm_srvpostop_attr(getret, &at);
2591 		nfsm_build(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2592 		txdr_hyper(at.va_filerev, tl);
2593 	}
2594 	mp = mp2 = mb;
2595 	bp = bpos;
2596 	be = bp + M_TRAILINGSPACE(mp);
2597 
2598 	/* Loop through the records and build reply */
2599 	while (cpos < cend && ncookies > 0) {
2600 		if (dp->d_fileno != 0 && dp->d_type != DT_WHT) {
2601 			nlen = dp->d_namlen;
2602 			rem = nfsm_rndup(nlen)-nlen;
2603 			len += (4 * NFSX_UNSIGNED + nlen + rem);
2604 			if (v3)
2605 				len += 2 * NFSX_UNSIGNED;
2606 			if (len > cnt) {
2607 				eofflag = 0;
2608 				break;
2609 			}
2610 			/*
2611 			 * Build the directory record xdr from
2612 			 * the dirent entry.
2613 			 */
2614 			nfsm_clget;
2615 			*tl = nfs_true;
2616 			bp += NFSX_UNSIGNED;
2617 			if (v3) {
2618 				nfsm_clget;
2619 				*tl = 0;
2620 				bp += NFSX_UNSIGNED;
2621 			}
2622 			nfsm_clget;
2623 			*tl = txdr_unsigned(dp->d_fileno);
2624 			bp += NFSX_UNSIGNED;
2625 			nfsm_clget;
2626 			*tl = txdr_unsigned(nlen);
2627 			bp += NFSX_UNSIGNED;
2628 
2629 			/* And loop around copying the name */
2630 			xfer = nlen;
2631 			cp = dp->d_name;
2632 			while (xfer > 0) {
2633 				nfsm_clget;
2634 				if ((bp+xfer) > be)
2635 					tsiz = be-bp;
2636 				else
2637 					tsiz = xfer;
2638 				memcpy(bp, cp, tsiz);
2639 				bp += tsiz;
2640 				xfer -= tsiz;
2641 				if (xfer > 0)
2642 					cp += tsiz;
2643 			}
2644 			/* And null pad to an int32_t boundary */
2645 			for (i = 0; i < rem; i++)
2646 				*bp++ = '\0';
2647 			nfsm_clget;
2648 
2649 			/* Finish off the record */
2650 			txdr_hyper(*cookiep, &jar);
2651 			if (v3) {
2652 				*tl = jar.nfsuquad[0];
2653 				bp += NFSX_UNSIGNED;
2654 				nfsm_clget;
2655 			}
2656 			*tl = jar.nfsuquad[1];
2657 			bp += NFSX_UNSIGNED;
2658 		}
2659 		cpos += dp->d_reclen;
2660 		dp = (struct dirent *)cpos;
2661 		cookiep++;
2662 		ncookies--;
2663 	}
2664 	vrele(vp);
2665 	nfsm_clget;
2666 	*tl = nfs_false;
2667 	bp += NFSX_UNSIGNED;
2668 	nfsm_clget;
2669 	if (eofflag)
2670 		*tl = nfs_true;
2671 	else
2672 		*tl = nfs_false;
2673 	bp += NFSX_UNSIGNED;
2674 	if (mp != mb) {
2675 		if (bp < be)
2676 			mp->m_len = bp - mtod(mp, caddr_t);
2677 	} else
2678 		mp->m_len += bp - bpos;
2679 	free((caddr_t)rbuf, M_TEMP);
2680 	free((caddr_t)cookies, M_TEMP);
2681 	nfsm_srvdone;
2682 }
2683 
2684 int
2685 nfsrv_readdirplus(nfsd, slp, procp, mrq)
2686 	struct nfsrv_descript *nfsd;
2687 	struct nfssvc_sock *slp;
2688 	struct proc *procp;
2689 	struct mbuf **mrq;
2690 {
2691 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
2692 	struct mbuf *nam = nfsd->nd_nam;
2693 	caddr_t dpos = nfsd->nd_dpos;
2694 	struct ucred *cred = &nfsd->nd_cr;
2695 	char *bp, *be;
2696 	struct mbuf *mp;
2697 	struct dirent *dp;
2698 	caddr_t cp;
2699 	u_int32_t *tl;
2700 	int32_t t1;
2701 	caddr_t bpos;
2702 	struct mbuf *mb, *mreq, *mp2;
2703 	char *cpos, *cend, *cp2, *rbuf;
2704 	struct vnode *vp, *nvp;
2705 	struct flrep fl;
2706 	nfsfh_t nfh;
2707 	fhandle_t *fhp, *nfhp = (fhandle_t *)fl.fl_nfh;
2708 	struct uio io;
2709 	struct iovec iv;
2710 	struct vattr va, at, *vap = &va;
2711 	struct nfs_fattr *fp;
2712 	int len, nlen, rem, xfer, tsiz, i, error = 0, getret = 1;
2713 	int siz, cnt, fullsiz, eofflag, rdonly, cache, dirlen, ncookies;
2714 	u_quad_t frev, off, toff, verf;
2715 	off_t *cookies = NULL, *cookiep;
2716 
2717 	fhp = &nfh.fh_generic;
2718 	nfsm_srvmtofh(fhp);
2719 	nfsm_dissect(tl, u_int32_t *, 6 * NFSX_UNSIGNED);
2720 	toff = fxdr_hyper(tl);
2721 	tl += 2;
2722 	verf = fxdr_hyper(tl);
2723 	tl += 2;
2724 	siz = fxdr_unsigned(int, *tl++);
2725 	cnt = fxdr_unsigned(int, *tl);
2726 	off = toff;
2727 	siz = ((siz + DIRBLKSIZ - 1) & ~(DIRBLKSIZ - 1));
2728 	xfer = NFS_SRVMAXDATA(nfsd);
2729 	if (siz > xfer)
2730 		siz = xfer;
2731 	fullsiz = siz;
2732 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam,
2733 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
2734 	if (!error && vp->v_type != VDIR) {
2735 		error = ENOTDIR;
2736 		vput(vp);
2737 	}
2738 	if (error) {
2739 		nfsm_reply(NFSX_UNSIGNED);
2740 		nfsm_srvpostop_attr(getret, &at);
2741 		return (0);
2742 	}
2743 	error = getret = VOP_GETATTR(vp, &at, cred, procp);
2744 #ifdef NFS3_STRICTVERF
2745 	/*
2746 	 * XXX This check is too strict for Solaris 2.5 clients.
2747 	 */
2748 	if (!error && toff && verf != at.va_filerev)
2749 		error = NFSERR_BAD_COOKIE;
2750 #endif
2751 	if (!error) {
2752 		nqsrv_getl(vp, ND_READ);
2753 		error = nfsrv_access(vp, VEXEC, cred, rdonly, procp, 0);
2754 	}
2755 	if (error) {
2756 		vput(vp);
2757 		nfsm_reply(NFSX_V3POSTOPATTR);
2758 		nfsm_srvpostop_attr(getret, &at);
2759 		return (0);
2760 	}
2761 	VOP_UNLOCK(vp, 0);
2762 
2763 	rbuf = malloc(siz, M_TEMP, M_WAITOK);
2764 again:
2765 	iv.iov_base = rbuf;
2766 	iv.iov_len = fullsiz;
2767 	io.uio_iov = &iv;
2768 	io.uio_iovcnt = 1;
2769 	io.uio_offset = (off_t)off;
2770 	io.uio_resid = fullsiz;
2771 	io.uio_segflg = UIO_SYSSPACE;
2772 	io.uio_rw = UIO_READ;
2773 	io.uio_procp = (struct proc *)0;
2774 	eofflag = 0;
2775 
2776 	vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
2777 
2778 	error = VOP_READDIR(vp, &io, cred, &eofflag, &cookies, &ncookies);
2779 
2780 	off = (u_quad_t)io.uio_offset;
2781 	getret = VOP_GETATTR(vp, &at, cred, procp);
2782 
2783 	VOP_UNLOCK(vp, 0);
2784 
2785 	/*
2786 	 * If the VGET operation doesn't work for this filesystem,
2787 	 * we can't support readdirplus. Returning NOTSUPP should
2788 	 * make clients fall back to plain readdir.
2789 	 * There's no need to check for VPTOFH as well, we wouldn't
2790 	 * even be here otherwise.
2791 	 */
2792 	if (!getret) {
2793 		if ((getret = VFS_VGET(vp->v_mount, at.va_fileid, &nvp)))
2794 			getret = (getret == EOPNOTSUPP) ?
2795 				NFSERR_NOTSUPP : NFSERR_IO;
2796 		else
2797 			vput(nvp);
2798 	}
2799 
2800 	if (!cookies && !error)
2801 		error = NFSERR_PERM;
2802 	if (!error)
2803 		error = getret;
2804 	if (error) {
2805 		vrele(vp);
2806 		if (cookies)
2807 			free((caddr_t)cookies, M_TEMP);
2808 		free((caddr_t)rbuf, M_TEMP);
2809 		nfsm_reply(NFSX_V3POSTOPATTR);
2810 		nfsm_srvpostop_attr(getret, &at);
2811 		return (0);
2812 	}
2813 	if (io.uio_resid) {
2814 		siz -= io.uio_resid;
2815 
2816 		/*
2817 		 * If nothing read, return eof
2818 		 * rpc reply
2819 		 */
2820 		if (siz == 0) {
2821 			vrele(vp);
2822 			nfsm_reply(NFSX_V3POSTOPATTR + NFSX_V3COOKIEVERF +
2823 				2 * NFSX_UNSIGNED);
2824 			nfsm_srvpostop_attr(getret, &at);
2825 			nfsm_build(tl, u_int32_t *, 4 * NFSX_UNSIGNED);
2826 			txdr_hyper(at.va_filerev, tl);
2827 			tl += 2;
2828 			*tl++ = nfs_false;
2829 			*tl = nfs_true;
2830 			free((caddr_t)cookies, M_TEMP);
2831 			free((caddr_t)rbuf, M_TEMP);
2832 			return (0);
2833 		}
2834 	}
2835 
2836 	/*
2837 	 * Check for degenerate cases of nothing useful read.
2838 	 * If so go try again
2839 	 */
2840 	cpos = rbuf;
2841 	cend = rbuf + siz;
2842 	dp = (struct dirent *)cpos;
2843 	cookiep = cookies;
2844 
2845 	while (cpos < cend && ncookies > 0 &&
2846 		(dp->d_fileno == 0 || dp->d_type == DT_WHT)) {
2847 		cpos += dp->d_reclen;
2848 		dp = (struct dirent *)cpos;
2849 		cookiep++;
2850 		ncookies--;
2851 	}
2852 	if (cpos >= cend || ncookies == 0) {
2853 		toff = off;
2854 		siz = fullsiz;
2855 		goto again;
2856 	}
2857 
2858 	dirlen = len = NFSX_V3POSTOPATTR + NFSX_V3COOKIEVERF + 2 * NFSX_UNSIGNED;
2859 	nfsm_reply(cnt);
2860 	nfsm_srvpostop_attr(getret, &at);
2861 	nfsm_build(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2862 	txdr_hyper(at.va_filerev, tl);
2863 	mp = mp2 = mb;
2864 	bp = bpos;
2865 	be = bp + M_TRAILINGSPACE(mp);
2866 
2867 	/* Loop through the records and build reply */
2868 	while (cpos < cend && ncookies > 0) {
2869 		if (dp->d_fileno != 0 && dp->d_type != DT_WHT) {
2870 			nlen = dp->d_namlen;
2871 			rem = nfsm_rndup(nlen)-nlen;
2872 
2873 			/*
2874 			 * For readdir_and_lookup get the vnode using
2875 			 * the file number.
2876 			 */
2877 			if (VFS_VGET(vp->v_mount, dp->d_fileno, &nvp))
2878 				goto invalid;
2879 			memset((caddr_t)nfhp, 0, NFSX_V3FH);
2880 			nfhp->fh_fsid =
2881 				nvp->v_mount->mnt_stat.f_fsid;
2882 			if (VFS_VPTOFH(nvp, &nfhp->fh_fid)) {
2883 				vput(nvp);
2884 				goto invalid;
2885 			}
2886 			if (VOP_GETATTR(nvp, vap, cred, procp)) {
2887 				vput(nvp);
2888 				goto invalid;
2889 			}
2890 			vput(nvp);
2891 
2892 			/*
2893 			 * If either the dircount or maxcount will be
2894 			 * exceeded, get out now. Both of these lengths
2895 			 * are calculated conservatively, including all
2896 			 * XDR overheads.
2897 			 */
2898 			len += (8 * NFSX_UNSIGNED + nlen + rem + NFSX_V3FH +
2899 				NFSX_V3POSTOPATTR);
2900 			dirlen += (6 * NFSX_UNSIGNED + nlen + rem);
2901 			if (len > cnt || dirlen > fullsiz) {
2902 				eofflag = 0;
2903 				break;
2904 			}
2905 
2906 			/*
2907 			 * Build the directory record xdr from
2908 			 * the dirent entry.
2909 			 */
2910 			fp = (struct nfs_fattr *)&fl.fl_fattr;
2911 			nfsm_srvfillattr(vap, fp);
2912 			fl.fl_fhsize = txdr_unsigned(NFSX_V3FH);
2913 			fl.fl_fhok = nfs_true;
2914 			fl.fl_postopok = nfs_true;
2915 			txdr_hyper(*cookiep, fl.fl_off.nfsuquad);
2916 
2917 			nfsm_clget;
2918 			*tl = nfs_true;
2919 			bp += NFSX_UNSIGNED;
2920 			nfsm_clget;
2921 			*tl = 0;
2922 			bp += NFSX_UNSIGNED;
2923 			nfsm_clget;
2924 			*tl = txdr_unsigned(dp->d_fileno);
2925 			bp += NFSX_UNSIGNED;
2926 			nfsm_clget;
2927 			*tl = txdr_unsigned(nlen);
2928 			bp += NFSX_UNSIGNED;
2929 
2930 			/* And loop around copying the name */
2931 			xfer = nlen;
2932 			cp = dp->d_name;
2933 			while (xfer > 0) {
2934 				nfsm_clget;
2935 				if ((bp + xfer) > be)
2936 					tsiz = be - bp;
2937 				else
2938 					tsiz = xfer;
2939 				memcpy(bp, cp, tsiz);
2940 				bp += tsiz;
2941 				xfer -= tsiz;
2942 				if (xfer > 0)
2943 					cp += tsiz;
2944 			}
2945 			/* And null pad to an int32_t boundary */
2946 			for (i = 0; i < rem; i++)
2947 				*bp++ = '\0';
2948 
2949 			/*
2950 			 * Now copy the flrep structure out.
2951 			 */
2952 			xfer = sizeof (struct flrep);
2953 			cp = (caddr_t)&fl;
2954 			while (xfer > 0) {
2955 				nfsm_clget;
2956 				if ((bp + xfer) > be)
2957 					tsiz = be - bp;
2958 				else
2959 					tsiz = xfer;
2960 				memcpy(bp, cp, tsiz);
2961 				bp += tsiz;
2962 				xfer -= tsiz;
2963 				if (xfer > 0)
2964 					cp += tsiz;
2965 			}
2966 		}
2967 invalid:
2968 		cpos += dp->d_reclen;
2969 		dp = (struct dirent *)cpos;
2970 		cookiep++;
2971 		ncookies--;
2972 	}
2973 	vrele(vp);
2974 	nfsm_clget;
2975 	*tl = nfs_false;
2976 	bp += NFSX_UNSIGNED;
2977 	nfsm_clget;
2978 	if (eofflag)
2979 		*tl = nfs_true;
2980 	else
2981 		*tl = nfs_false;
2982 	bp += NFSX_UNSIGNED;
2983 	if (mp != mb) {
2984 		if (bp < be)
2985 			mp->m_len = bp - mtod(mp, caddr_t);
2986 	} else
2987 		mp->m_len += bp - bpos;
2988 	free((caddr_t)cookies, M_TEMP);
2989 	free((caddr_t)rbuf, M_TEMP);
2990 	nfsm_srvdone;
2991 }
2992 
2993 /*
2994  * nfs commit service
2995  */
2996 int
2997 nfsrv_commit(nfsd, slp, procp, mrq)
2998 	struct nfsrv_descript *nfsd;
2999 	struct nfssvc_sock *slp;
3000 	struct proc *procp;
3001 	struct mbuf **mrq;
3002 {
3003 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
3004 	struct mbuf *nam = nfsd->nd_nam;
3005 	caddr_t dpos = nfsd->nd_dpos;
3006 	struct ucred *cred = &nfsd->nd_cr;
3007 	struct vattr bfor, aft;
3008 	struct vnode *vp;
3009 	nfsfh_t nfh;
3010 	fhandle_t *fhp;
3011 	u_int32_t *tl;
3012 	int32_t t1;
3013 	caddr_t bpos;
3014 	int error = 0, rdonly, for_ret = 1, aft_ret = 1, cnt, cache;
3015 	char *cp2;
3016 	struct mbuf *mb, *mreq;
3017 	u_quad_t frev, off, end;
3018 
3019 #ifndef nolint
3020 	cache = 0;
3021 #endif
3022 	fhp = &nfh.fh_generic;
3023 	nfsm_srvmtofh(fhp);
3024 	nfsm_dissect(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
3025 
3026 	off = fxdr_hyper(tl);
3027 	tl += 2;
3028 	cnt = fxdr_unsigned(int, *tl);
3029 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam,
3030 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
3031 	if (error) {
3032 		nfsm_reply(2 * NFSX_UNSIGNED);
3033 		nfsm_srvwcc_data(for_ret, &bfor, aft_ret, &aft);
3034 		return (0);
3035 	}
3036 	for_ret = VOP_GETATTR(vp, &bfor, cred, procp);
3037 	end = (cnt > 0) ? off + cnt : vp->v_size;
3038 	if (end < off || end > vp->v_size)
3039 		end = vp->v_size;
3040 	error = VOP_FSYNC(vp, cred, FSYNC_WAIT, off, end, procp);
3041 	aft_ret = VOP_GETATTR(vp, &aft, cred, procp);
3042 	vput(vp);
3043 	nfsm_reply(NFSX_V3WCCDATA + NFSX_V3WRITEVERF);
3044 	nfsm_srvwcc_data(for_ret, &bfor, aft_ret, &aft);
3045 	if (!error) {
3046 		nfsm_build(tl, u_int32_t *, NFSX_V3WRITEVERF);
3047 		*tl++ = txdr_unsigned(boottime.tv_sec);
3048 		*tl = txdr_unsigned(boottime.tv_usec);
3049 	} else
3050 		return (0);
3051 	nfsm_srvdone;
3052 }
3053 
3054 /*
3055  * nfs statfs service
3056  */
3057 int
3058 nfsrv_statfs(nfsd, slp, procp, mrq)
3059 	struct nfsrv_descript *nfsd;
3060 	struct nfssvc_sock *slp;
3061 	struct proc *procp;
3062 	struct mbuf **mrq;
3063 {
3064 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
3065 	struct mbuf *nam = nfsd->nd_nam;
3066 	caddr_t dpos = nfsd->nd_dpos;
3067 	struct ucred *cred = &nfsd->nd_cr;
3068 	struct statfs *sf;
3069 	struct nfs_statfs *sfp;
3070 	u_int32_t *tl;
3071 	int32_t t1;
3072 	caddr_t bpos;
3073 	int error = 0, rdonly, cache, getret = 1;
3074 	int v3 = (nfsd->nd_flag & ND_NFSV3);
3075 	char *cp2;
3076 	struct mbuf *mb, *mreq;
3077 	struct vnode *vp;
3078 	struct vattr at;
3079 	nfsfh_t nfh;
3080 	fhandle_t *fhp;
3081 	struct statfs statfs;
3082 	u_quad_t frev, tval;
3083 
3084 #ifndef nolint
3085 	cache = 0;
3086 #endif
3087 	fhp = &nfh.fh_generic;
3088 	nfsm_srvmtofh(fhp);
3089 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam,
3090 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
3091 	if (error) {
3092 		nfsm_reply(NFSX_UNSIGNED);
3093 		nfsm_srvpostop_attr(getret, &at);
3094 		return (0);
3095 	}
3096 	sf = &statfs;
3097 	error = VFS_STATFS(vp->v_mount, sf, procp);
3098 	getret = VOP_GETATTR(vp, &at, cred, procp);
3099 	vput(vp);
3100 	nfsm_reply(NFSX_POSTOPATTR(v3) + NFSX_STATFS(v3));
3101 	if (v3)
3102 		nfsm_srvpostop_attr(getret, &at);
3103 	if (error)
3104 		return (0);
3105 	nfsm_build(sfp, struct nfs_statfs *, NFSX_STATFS(v3));
3106 	if (v3) {
3107 		tval = (u_quad_t)((quad_t)sf->f_blocks * (quad_t)sf->f_bsize);
3108 		txdr_hyper(tval, &sfp->sf_tbytes);
3109 		tval = (u_quad_t)((quad_t)sf->f_bfree * (quad_t)sf->f_bsize);
3110 		txdr_hyper(tval, &sfp->sf_fbytes);
3111 		tval = (u_quad_t)((quad_t)sf->f_bavail * (quad_t)sf->f_bsize);
3112 		txdr_hyper(tval, &sfp->sf_abytes);
3113 		tval = (u_quad_t)sf->f_files;
3114 		txdr_hyper(tval, &sfp->sf_tfiles);
3115 		tval = (u_quad_t)sf->f_ffree;
3116 		txdr_hyper(tval, &sfp->sf_ffiles);
3117 		txdr_hyper(tval, &sfp->sf_afiles);
3118 		sfp->sf_invarsec = 0;
3119 	} else {
3120 		sfp->sf_tsize = txdr_unsigned(NFS_MAXDGRAMDATA);
3121 		sfp->sf_bsize = txdr_unsigned(sf->f_bsize);
3122 		sfp->sf_blocks = txdr_unsigned(sf->f_blocks);
3123 		sfp->sf_bfree = txdr_unsigned(sf->f_bfree);
3124 		sfp->sf_bavail = txdr_unsigned(sf->f_bavail);
3125 	}
3126 	nfsm_srvdone;
3127 }
3128 
3129 /*
3130  * nfs fsinfo service
3131  */
3132 int
3133 nfsrv_fsinfo(nfsd, slp, procp, mrq)
3134 	struct nfsrv_descript *nfsd;
3135 	struct nfssvc_sock *slp;
3136 	struct proc *procp;
3137 	struct mbuf **mrq;
3138 {
3139 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
3140 	struct mbuf *nam = nfsd->nd_nam;
3141 	caddr_t dpos = nfsd->nd_dpos;
3142 	struct ucred *cred = &nfsd->nd_cr;
3143 	u_int32_t *tl;
3144 	struct nfsv3_fsinfo *sip;
3145 	int32_t t1;
3146 	caddr_t bpos;
3147 	int error = 0, rdonly, cache, getret = 1;
3148 	uint32_t maxdata;
3149 	char *cp2;
3150 	struct mbuf *mb, *mreq;
3151 	struct vnode *vp;
3152 	struct vattr at;
3153 	nfsfh_t nfh;
3154 	fhandle_t *fhp;
3155 	u_quad_t frev, maxfsize;
3156 	struct statfs sb;
3157 
3158 #ifndef nolint
3159 	cache = 0;
3160 #endif
3161 	fhp = &nfh.fh_generic;
3162 	nfsm_srvmtofh(fhp);
3163 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam,
3164 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
3165 	if (error) {
3166 		nfsm_reply(NFSX_UNSIGNED);
3167 		nfsm_srvpostop_attr(getret, &at);
3168 		return (0);
3169 	}
3170 
3171 	/* XXX Try to make a guess on the max file size. */
3172 	VFS_STATFS(vp->v_mount, &sb, (struct proc *)0);
3173 	maxfsize = (u_quad_t)0x80000000 * sb.f_bsize - 1;
3174 
3175 	getret = VOP_GETATTR(vp, &at, cred, procp);
3176 	vput(vp);
3177 	nfsm_reply(NFSX_V3POSTOPATTR + NFSX_V3FSINFO);
3178 	nfsm_srvpostop_attr(getret, &at);
3179 	nfsm_build(sip, struct nfsv3_fsinfo *, NFSX_V3FSINFO);
3180 
3181 	/*
3182 	 * XXX
3183 	 * There should be file system VFS OP(s) to get this information.
3184 	 * For now, assume ufs.
3185 	 */
3186 	if (slp->ns_so->so_type == SOCK_DGRAM)
3187 		maxdata = NFS_MAXDGRAMDATA;
3188 	else
3189 		maxdata = NFS_MAXDATA;
3190 	sip->fs_rtmax = txdr_unsigned(maxdata);
3191 	sip->fs_rtpref = txdr_unsigned(maxdata);
3192 	sip->fs_rtmult = txdr_unsigned(NFS_FABLKSIZE);
3193 	sip->fs_wtmax = txdr_unsigned(maxdata);
3194 	sip->fs_wtpref = txdr_unsigned(maxdata);
3195 	sip->fs_wtmult = txdr_unsigned(NFS_FABLKSIZE);
3196 	sip->fs_dtpref = txdr_unsigned(maxdata);
3197 	txdr_hyper(maxfsize, &sip->fs_maxfilesize);
3198 	sip->fs_timedelta.nfsv3_sec = 0;
3199 	sip->fs_timedelta.nfsv3_nsec = txdr_unsigned(1);
3200 	sip->fs_properties = txdr_unsigned(NFSV3FSINFO_LINK |
3201 		NFSV3FSINFO_SYMLINK | NFSV3FSINFO_HOMOGENEOUS |
3202 		NFSV3FSINFO_CANSETTIME);
3203 	nfsm_srvdone;
3204 }
3205 
3206 /*
3207  * nfs pathconf service
3208  */
3209 int
3210 nfsrv_pathconf(nfsd, slp, procp, mrq)
3211 	struct nfsrv_descript *nfsd;
3212 	struct nfssvc_sock *slp;
3213 	struct proc *procp;
3214 	struct mbuf **mrq;
3215 {
3216 	struct mbuf *mrep = nfsd->nd_mrep, *md = nfsd->nd_md;
3217 	struct mbuf *nam = nfsd->nd_nam;
3218 	caddr_t dpos = nfsd->nd_dpos;
3219 	struct ucred *cred = &nfsd->nd_cr;
3220 	u_int32_t *tl;
3221 	struct nfsv3_pathconf *pc;
3222 	int32_t t1;
3223 	caddr_t bpos;
3224 	int error = 0, rdonly, cache, getret = 1;
3225 	register_t linkmax, namemax, chownres, notrunc;
3226 	char *cp2;
3227 	struct mbuf *mb, *mreq;
3228 	struct vnode *vp;
3229 	struct vattr at;
3230 	nfsfh_t nfh;
3231 	fhandle_t *fhp;
3232 	u_quad_t frev;
3233 
3234 #ifndef nolint
3235 	cache = 0;
3236 #endif
3237 	fhp = &nfh.fh_generic;
3238 	nfsm_srvmtofh(fhp);
3239 	error = nfsrv_fhtovp(fhp, 1, &vp, cred, slp, nam,
3240 		 &rdonly, (nfsd->nd_flag & ND_KERBAUTH), FALSE);
3241 	if (error) {
3242 		nfsm_reply(NFSX_UNSIGNED);
3243 		nfsm_srvpostop_attr(getret, &at);
3244 		return (0);
3245 	}
3246 	error = VOP_PATHCONF(vp, _PC_LINK_MAX, &linkmax);
3247 	if (!error)
3248 		error = VOP_PATHCONF(vp, _PC_NAME_MAX, &namemax);
3249 	if (!error)
3250 		error = VOP_PATHCONF(vp, _PC_CHOWN_RESTRICTED, &chownres);
3251 	if (!error)
3252 		error = VOP_PATHCONF(vp, _PC_NO_TRUNC, &notrunc);
3253 	getret = VOP_GETATTR(vp, &at, cred, procp);
3254 	vput(vp);
3255 	nfsm_reply(NFSX_V3POSTOPATTR + NFSX_V3PATHCONF);
3256 	nfsm_srvpostop_attr(getret, &at);
3257 	if (error)
3258 		return (0);
3259 	nfsm_build(pc, struct nfsv3_pathconf *, NFSX_V3PATHCONF);
3260 
3261 	pc->pc_linkmax = txdr_unsigned(linkmax);
3262 	pc->pc_namemax = txdr_unsigned(namemax);
3263 	pc->pc_notrunc = txdr_unsigned(notrunc);
3264 	pc->pc_chownrestricted = txdr_unsigned(chownres);
3265 
3266 	/*
3267 	 * These should probably be supported by VOP_PATHCONF(), but
3268 	 * until msdosfs is exportable (why would you want to?), the
3269 	 * Unix defaults should be ok.
3270 	 */
3271 	pc->pc_caseinsensitive = nfs_false;
3272 	pc->pc_casepreserving = nfs_true;
3273 	nfsm_srvdone;
3274 }
3275 
3276 /*
3277  * Null operation, used by clients to ping server
3278  */
3279 /* ARGSUSED */
3280 int
3281 nfsrv_null(nfsd, slp, procp, mrq)
3282 	struct nfsrv_descript *nfsd;
3283 	struct nfssvc_sock *slp;
3284 	struct proc *procp;
3285 	struct mbuf **mrq;
3286 {
3287 	struct mbuf *mrep = nfsd->nd_mrep;
3288 	caddr_t bpos;
3289 	int error = NFSERR_RETVOID, cache = 0;
3290 	struct mbuf *mb, *mreq;
3291 	u_quad_t frev;
3292 
3293 	nfsm_reply(0);
3294 	return (0);
3295 }
3296 
3297 /*
3298  * No operation, used for obsolete procedures
3299  */
3300 /* ARGSUSED */
3301 int
3302 nfsrv_noop(nfsd, slp, procp, mrq)
3303 	struct nfsrv_descript *nfsd;
3304 	struct nfssvc_sock *slp;
3305 	struct proc *procp;
3306 	struct mbuf **mrq;
3307 {
3308 	struct mbuf *mrep = nfsd->nd_mrep;
3309 	caddr_t bpos;
3310 	int error, cache = 0;
3311 	struct mbuf *mb, *mreq;
3312 	u_quad_t frev;
3313 
3314 	if (nfsd->nd_repstat)
3315 		error = nfsd->nd_repstat;
3316 	else
3317 		error = EPROCUNAVAIL;
3318 	nfsm_reply(0);
3319 	return (0);
3320 }
3321 
3322 /*
3323  * Perform access checking for vnodes obtained from file handles that would
3324  * refer to files already opened by a Unix client. You cannot just use
3325  * vn_writechk() and VOP_ACCESS() for two reasons.
3326  * 1 - You must check for exported rdonly as well as MNT_RDONLY for the write case
3327  * 2 - The owner is to be given access irrespective of mode bits for some
3328  *     operations, so that processes that chmod after opening a file don't
3329  *     break. I don't like this because it opens a security hole, but since
3330  *     the nfs server opens a security hole the size of a barn door anyhow,
3331  *     what the heck.
3332  *
3333  * The exception to rule 2 is EPERM. If a file is IMMUTABLE, VOP_ACCESS()
3334  * will return EPERM instead of EACCESS. EPERM is always an error.
3335  */
3336 int
3337 nfsrv_access(vp, flags, cred, rdonly, p, override)
3338 	struct vnode *vp;
3339 	int flags;
3340 	struct ucred *cred;
3341 	int rdonly;
3342 	struct proc *p;
3343 {
3344 	struct vattr vattr;
3345 	int error;
3346 	if (flags & VWRITE) {
3347 		/* Just vn_writechk() changed to check rdonly */
3348 		/*
3349 		 * Disallow write attempts on read-only file systems;
3350 		 * unless the file is a socket or a block or character
3351 		 * device resident on the file system.
3352 		 */
3353 		if (rdonly || (vp->v_mount->mnt_flag & MNT_RDONLY)) {
3354 			switch (vp->v_type) {
3355 			case VREG:
3356 			case VDIR:
3357 			case VLNK:
3358 				return (EROFS);
3359 			default:
3360 				break;
3361 			}
3362 		}
3363 
3364 		/*
3365 		 * If the vnode is in use as a process's text,
3366 		 * we can't allow writing.
3367 		 */
3368 		if (vp->v_flag & VTEXT)
3369 			return (ETXTBSY);
3370 	}
3371 	error = VOP_GETATTR(vp, &vattr, cred, p);
3372 	if (error)
3373 		return (error);
3374 	error = VOP_ACCESS(vp, flags, cred, p);
3375 	/*
3376 	 * Allow certain operations for the owner (reads and writes
3377 	 * on files that are already open).
3378 	 */
3379 	if (override && error == EACCES && cred->cr_uid == vattr.va_uid)
3380 		error = 0;
3381 	return error;
3382 }
3383