nfs_vnops.c revision 1.5 1 /*
2 * Copyright (c) 1989 The Regents of the University of California.
3 * All rights reserved.
4 *
5 * This code is derived from software contributed to Berkeley by
6 * Rick Macklem at The University of Guelph.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * 3. All advertising materials mentioning features or use of this software
17 * must display the following acknowledgement:
18 * This product includes software developed by the University of
19 * California, Berkeley and its contributors.
20 * 4. Neither the name of the University nor the names of its contributors
21 * may be used to endorse or promote products derived from this software
22 * without specific prior written permission.
23 *
24 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34 * SUCH DAMAGE.
35 *
36 * from: @(#)nfs_vnops.c 7.60 (Berkeley) 5/24/91
37 * $Id: nfs_vnops.c,v 1.5 1993/05/22 09:00:49 cgd Exp $
38 */
39
40 /*
41 * vnode op calls for sun nfs version 2
42 */
43
44 #include "param.h"
45 #include "proc.h"
46 #include "kernel.h"
47 #include "systm.h"
48 #include "mount.h"
49 #include "buf.h"
50 #include "malloc.h"
51 #include "mbuf.h"
52 #include "conf.h"
53 #include "namei.h"
54 #include "vnode.h"
55 #include "specdev.h"
56 #include "fifo.h"
57
58 #include "../ufs/quota.h"
59 #include "../ufs/inode.h"
60 #include "../ufs/dir.h"
61
62 #include "nfsv2.h"
63 #include "nfs.h"
64 #include "nfsnode.h"
65 #include "nfsmount.h"
66 #include "xdr_subs.h"
67 #include "nfsm_subs.h"
68 #include "nfsiom.h"
69
70 /* Defs */
71 #define TRUE 1
72 #define FALSE 0
73
74 /*
75 * Global vfs data structures for nfs
76 */
77 struct vnodeops nfsv2_vnodeops = {
78 nfs_lookup, /* lookup */
79 nfs_create, /* create */
80 nfs_mknod, /* mknod */
81 nfs_open, /* open */
82 nfs_close, /* close */
83 nfs_access, /* access */
84 nfs_getattr, /* getattr */
85 nfs_setattr, /* setattr */
86 nfs_read, /* read */
87 nfs_write, /* write */
88 nfs_ioctl, /* ioctl */
89 nfs_select, /* select */
90 nfs_mmap, /* mmap */
91 nfs_fsync, /* fsync */
92 nfs_seek, /* seek */
93 nfs_remove, /* remove */
94 nfs_link, /* link */
95 nfs_rename, /* rename */
96 nfs_mkdir, /* mkdir */
97 nfs_rmdir, /* rmdir */
98 nfs_symlink, /* symlink */
99 nfs_readdir, /* readdir */
100 nfs_readlink, /* readlink */
101 nfs_abortop, /* abortop */
102 nfs_inactive, /* inactive */
103 nfs_reclaim, /* reclaim */
104 nfs_lock, /* lock */
105 nfs_unlock, /* unlock */
106 nfs_bmap, /* bmap */
107 nfs_strategy, /* strategy */
108 nfs_print, /* print */
109 nfs_islocked, /* islocked */
110 nfs_advlock, /* advlock */
111 };
112
113 /*
114 * Special device vnode ops
115 */
116 struct vnodeops spec_nfsv2nodeops = {
117 spec_lookup, /* lookup */
118 spec_create, /* create */
119 spec_mknod, /* mknod */
120 spec_open, /* open */
121 spec_close, /* close */
122 nfs_access, /* access */
123 nfs_getattr, /* getattr */
124 nfs_setattr, /* setattr */
125 spec_read, /* read */
126 spec_write, /* write */
127 spec_ioctl, /* ioctl */
128 spec_select, /* select */
129 spec_mmap, /* mmap */
130 spec_fsync, /* fsync */
131 spec_seek, /* seek */
132 spec_remove, /* remove */
133 spec_link, /* link */
134 spec_rename, /* rename */
135 spec_mkdir, /* mkdir */
136 spec_rmdir, /* rmdir */
137 spec_symlink, /* symlink */
138 spec_readdir, /* readdir */
139 spec_readlink, /* readlink */
140 spec_abortop, /* abortop */
141 nfs_inactive, /* inactive */
142 nfs_reclaim, /* reclaim */
143 nfs_lock, /* lock */
144 nfs_unlock, /* unlock */
145 spec_bmap, /* bmap */
146 spec_strategy, /* strategy */
147 nfs_print, /* print */
148 nfs_islocked, /* islocked */
149 spec_advlock, /* advlock */
150 };
151
152 #ifdef FIFO
153 struct vnodeops fifo_nfsv2nodeops = {
154 fifo_lookup, /* lookup */
155 fifo_create, /* create */
156 fifo_mknod, /* mknod */
157 fifo_open, /* open */
158 fifo_close, /* close */
159 nfs_access, /* access */
160 nfs_getattr, /* getattr */
161 nfs_setattr, /* setattr */
162 fifo_read, /* read */
163 fifo_write, /* write */
164 fifo_ioctl, /* ioctl */
165 fifo_select, /* select */
166 fifo_mmap, /* mmap */
167 fifo_fsync, /* fsync */
168 fifo_seek, /* seek */
169 fifo_remove, /* remove */
170 fifo_link, /* link */
171 fifo_rename, /* rename */
172 fifo_mkdir, /* mkdir */
173 fifo_rmdir, /* rmdir */
174 fifo_symlink, /* symlink */
175 fifo_readdir, /* readdir */
176 fifo_readlink, /* readlink */
177 fifo_abortop, /* abortop */
178 nfs_inactive, /* inactive */
179 nfs_reclaim, /* reclaim */
180 nfs_lock, /* lock */
181 nfs_unlock, /* unlock */
182 fifo_bmap, /* bmap */
183 fifo_badop, /* strategy */
184 nfs_print, /* print */
185 nfs_islocked, /* islocked */
186 fifo_advlock, /* advlock */
187 };
188 #endif /* FIFO */
189
190 /*
191 * Global vars
192 */
193 extern u_long nfs_procids[NFS_NPROCS];
194 extern u_long nfs_prog, nfs_vers;
195 extern char nfsiobuf[MAXPHYS+NBPG];
196 struct buf nfs_bqueue; /* Queue head for nfsiod's */
197 struct proc *nfs_iodwant[NFS_MAXASYNCDAEMON];
198 enum vtype ntov_type[7] = { VNON, VREG, VDIR, VBLK, VCHR, VLNK, VNON };
199 int nfs_numasync = 0;
200
201 /*
202 * nfs null call from vfs.
203 */
204 nfs_null(vp, cred, p)
205 struct vnode *vp;
206 struct ucred *cred;
207 struct proc *p;
208 {
209 caddr_t bpos, dpos;
210 u_long xid;
211 int error = 0;
212 struct mbuf *mreq, *mrep, *md, *mb;
213
214 nfsm_reqhead(nfs_procids[NFSPROC_NULL], cred, 0);
215 nfsm_request(vp, NFSPROC_NULL, p, 0);
216 nfsm_reqdone;
217 return (error);
218 }
219
220 /*
221 * nfs access vnode op.
222 * Essentially just get vattr and then imitate iaccess()
223 */
224 nfs_access(vp, mode, cred, p)
225 struct vnode *vp;
226 int mode;
227 register struct ucred *cred;
228 struct proc *p;
229 {
230 register struct vattr *vap;
231 register gid_t *gp;
232 struct vattr vattr;
233 register int i;
234 int error;
235
236 /*
237 * If you're the super-user,
238 * you always get access.
239 */
240 if (cred->cr_uid == 0)
241 return (0);
242 vap = &vattr;
243 if (error = nfs_dogetattr(vp, vap, cred, 0, p))
244 return (error);
245 /*
246 * Access check is based on only one of owner, group, public.
247 * If not owner, then check group. If not a member of the
248 * group, then check public access.
249 */
250 if (cred->cr_uid != vap->va_uid) {
251 mode >>= 3;
252 gp = cred->cr_groups;
253 for (i = 0; i < cred->cr_ngroups; i++, gp++)
254 if (vap->va_gid == *gp)
255 goto found;
256 mode >>= 3;
257 found:
258 ;
259 }
260 if ((vap->va_mode & mode) == mode)
261 return (0);
262 return (EACCES);
263 }
264
265 /*
266 * nfs open vnode op
267 * Just check to see if the type is ok
268 */
269 /* ARGSUSED */
270 nfs_open(vp, mode, cred, p)
271 struct vnode *vp;
272 int mode;
273 struct ucred *cred;
274 struct proc *p;
275 {
276 register enum vtype vtyp;
277
278 vtyp = vp->v_type;
279 if (vtyp == VREG || vtyp == VDIR || vtyp == VLNK)
280 return (0);
281 else
282 return (EACCES);
283 }
284
285 /*
286 * nfs close vnode op
287 * For reg files, invalidate any buffer cache entries.
288 */
289 /* ARGSUSED */
290 nfs_close(vp, fflags, cred, p)
291 register struct vnode *vp;
292 int fflags;
293 struct ucred *cred;
294 struct proc *p;
295 {
296 register struct nfsnode *np = VTONFS(vp);
297 int error = 0;
298
299 if (vp->v_type == VREG && (np->n_flag & NMODIFIED)) {
300 nfs_lock(vp);
301 np->n_flag &= ~NMODIFIED;
302 vinvalbuf(vp, TRUE);
303 np->n_attrstamp = 0;
304 if (np->n_flag & NWRITEERR) {
305 np->n_flag &= ~NWRITEERR;
306 error = np->n_error;
307 }
308 nfs_unlock(vp);
309 }
310 return (error);
311 }
312
313 /*
314 * nfs getattr call from vfs.
315 */
316 nfs_getattr(vp, vap, cred, p)
317 register struct vnode *vp;
318 struct vattr *vap;
319 struct ucred *cred;
320 struct proc *p;
321 {
322 return (nfs_dogetattr(vp, vap, cred, 0, p));
323 }
324
325 nfs_dogetattr(vp, vap, cred, tryhard, p)
326 register struct vnode *vp;
327 struct vattr *vap;
328 struct ucred *cred;
329 int tryhard;
330 struct proc *p;
331 {
332 register caddr_t cp;
333 register long t1;
334 caddr_t bpos, dpos;
335 u_long xid;
336 int error = 0;
337 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
338
339 /* First look in the cache.. */
340 if (nfs_getattrcache(vp, vap) == 0)
341 return (0);
342 nfsstats.rpccnt[NFSPROC_GETATTR]++;
343 nfsm_reqhead(nfs_procids[NFSPROC_GETATTR], cred, NFSX_FH);
344 nfsm_fhtom(vp);
345 nfsm_request(vp, NFSPROC_GETATTR, p, tryhard);
346 nfsm_loadattr(vp, vap);
347 nfsm_reqdone;
348 return (error);
349 }
350
351 /*
352 * nfs setattr call.
353 */
354 nfs_setattr(vp, vap, cred, p)
355 register struct vnode *vp;
356 register struct vattr *vap;
357 struct ucred *cred;
358 struct proc *p;
359 {
360 register struct nfsv2_sattr *sp;
361 register caddr_t cp;
362 register long t1;
363 caddr_t bpos, dpos;
364 u_long xid;
365 int error = 0;
366 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
367 struct nfsnode *np;
368
369 nfsstats.rpccnt[NFSPROC_SETATTR]++;
370 nfsm_reqhead(nfs_procids[NFSPROC_SETATTR], cred, NFSX_FH+NFSX_SATTR);
371 nfsm_fhtom(vp);
372 nfsm_build(sp, struct nfsv2_sattr *, NFSX_SATTR);
373 if (vap->va_mode == 0xffff)
374 sp->sa_mode = VNOVAL;
375 else
376 sp->sa_mode = vtonfs_mode(vp->v_type, vap->va_mode);
377 if (vap->va_uid == 0xffff)
378 sp->sa_uid = VNOVAL;
379 else
380 sp->sa_uid = txdr_unsigned(vap->va_uid);
381 if (vap->va_gid == 0xffff)
382 sp->sa_gid = VNOVAL;
383 else
384 sp->sa_gid = txdr_unsigned(vap->va_gid);
385 sp->sa_size = txdr_unsigned(vap->va_size);
386 sp->sa_atime.tv_sec = txdr_unsigned(vap->va_atime.tv_sec);
387 sp->sa_atime.tv_usec = txdr_unsigned(vap->va_flags);
388 txdr_time(&vap->va_mtime, &sp->sa_mtime);
389 if (vap->va_size != VNOVAL || vap->va_mtime.tv_sec != VNOVAL ||
390 vap->va_atime.tv_sec != VNOVAL) {
391 np = VTONFS(vp);
392 if (np->n_flag & NMODIFIED) {
393 np->n_flag &= ~NMODIFIED;
394 if (vap->va_size == 0)
395 vinvalbuf(vp, FALSE);
396 else
397 vinvalbuf(vp, TRUE);
398 np->n_attrstamp = 0;
399 }
400 }
401 nfsm_request(vp, NFSPROC_SETATTR, p, 1);
402 nfsm_loadattr(vp, (struct vattr *)0);
403 /* should we fill in any vap fields ?? */
404 nfsm_reqdone;
405 return (error);
406 }
407
408 /*
409 * nfs lookup call, one step at a time...
410 * First look in cache
411 * If not found, unlock the directory nfsnode and do the rpc
412 */
413 nfs_lookup(vp, ndp, p)
414 register struct vnode *vp;
415 register struct nameidata *ndp;
416 struct proc *p;
417 {
418 register struct vnode *vdp;
419 register u_long *tl;
420 register caddr_t cp;
421 register long t1, t2;
422 caddr_t bpos, dpos, cp2;
423 u_long xid;
424 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
425 struct vnode *newvp;
426 long len;
427 nfsv2fh_t *fhp;
428 struct nfsnode *np;
429 int lockparent, wantparent, flag, error = 0;
430
431 ndp->ni_dvp = vp;
432 ndp->ni_vp = NULL;
433 if (vp->v_type != VDIR)
434 return (ENOTDIR);
435 lockparent = ndp->ni_nameiop & LOCKPARENT;
436 flag = ndp->ni_nameiop & OPMASK;
437 wantparent = ndp->ni_nameiop & (LOCKPARENT|WANTPARENT);
438 if ((error = cache_lookup(ndp)) && error != ENOENT) {
439 struct vattr vattr;
440 int vpid;
441
442 vdp = ndp->ni_vp;
443 vpid = vdp->v_id;
444 /*
445 * See the comment starting `Step through' in ufs/ufs_lookup.c
446 * for an explanation of the locking protocol
447 */
448 if (vp == vdp) {
449 VREF(vdp);
450 error = 0;
451 } else if (ndp->ni_isdotdot) {
452 nfs_unlock(vp);
453 error = vget(vdp);
454 if (!error && lockparent && *ndp->ni_next == '\0')
455 nfs_lock(vp);
456 } else {
457 error = vget(vdp);
458 if (!lockparent || error || *ndp->ni_next != '\0')
459 nfs_unlock(vp);
460 }
461 if (!error) {
462 if (vpid == vdp->v_id) {
463 if (!nfs_dogetattr(vdp, &vattr, ndp->ni_cred, 0, p)&&
464 vattr.va_ctime.tv_sec == VTONFS(vdp)->n_ctime) {
465 nfsstats.lookupcache_hits++;
466 if (flag != LOOKUP && *ndp->ni_next == 0)
467 ndp->ni_nameiop |= SAVENAME;
468 return (0);
469 }
470 cache_purge(vdp);
471 }
472 nfs_nput(vdp);
473 if (lockparent && vdp != vp && *ndp->ni_next == '\0')
474 nfs_unlock(vp);
475 }
476 ndp->ni_vp = NULLVP;
477 } else
478 nfs_unlock(vp);
479 error = 0;
480 nfsstats.lookupcache_misses++;
481 nfsstats.rpccnt[NFSPROC_LOOKUP]++;
482 len = ndp->ni_namelen;
483 nfsm_reqhead(nfs_procids[NFSPROC_LOOKUP], ndp->ni_cred, NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(len));
484 nfsm_fhtom(vp);
485 nfsm_strtom(ndp->ni_ptr, len, NFS_MAXNAMLEN);
486 nfsm_request(vp, NFSPROC_LOOKUP, p, 0);
487 nfsmout:
488 if (error) {
489 if (lockparent || (flag != CREATE && flag != RENAME) ||
490 *ndp->ni_next != 0)
491 nfs_lock(vp);
492 if (flag != LOOKUP && *ndp->ni_next == 0)
493 ndp->ni_nameiop |= SAVENAME;
494 return (error);
495 }
496 nfsm_disect(fhp,nfsv2fh_t *,NFSX_FH);
497
498 /*
499 * Handle DELETE and RENAME cases...
500 */
501 if (flag == DELETE && *ndp->ni_next == 0) {
502 if (!bcmp(VTONFS(vp)->n_fh.fh_bytes, (caddr_t)fhp, NFSX_FH)) {
503 VREF(vp);
504 newvp = vp;
505 np = VTONFS(vp);
506 } else {
507 if (error = nfs_nget(vp->v_mount, fhp, &np)) {
508 nfs_lock(vp);
509 m_freem(mrep);
510 return (error);
511 }
512 newvp = NFSTOV(np);
513 }
514 if (error =
515 nfs_loadattrcache(&newvp, &md, &dpos, (struct vattr *)0)) {
516 nfs_lock(vp);
517 if (newvp != vp)
518 nfs_nput(newvp);
519 else
520 vrele(vp);
521 m_freem(mrep);
522 return (error);
523 }
524 ndp->ni_vp = newvp;
525 if (lockparent || vp == newvp)
526 nfs_lock(vp);
527 m_freem(mrep);
528 ndp->ni_nameiop |= SAVENAME;
529 return (0);
530 }
531
532 if (flag == RENAME && wantparent && *ndp->ni_next == 0) {
533 if (!bcmp(VTONFS(vp)->n_fh.fh_bytes, (caddr_t)fhp, NFSX_FH)) {
534 nfs_lock(vp);
535 m_freem(mrep);
536 return (EISDIR);
537 }
538 if (error = nfs_nget(vp->v_mount, fhp, &np)) {
539 nfs_lock(vp);
540 m_freem(mrep);
541 return (error);
542 }
543 newvp = NFSTOV(np);
544 if (error =
545 nfs_loadattrcache(&newvp, &md, &dpos, (struct vattr *)0)) {
546 nfs_lock(vp);
547 nfs_nput(newvp);
548 m_freem(mrep);
549 return (error);
550 }
551 ndp->ni_vp = newvp;
552 if (lockparent)
553 nfs_lock(vp);
554 m_freem(mrep);
555 ndp->ni_nameiop |= SAVENAME;
556 return (0);
557 }
558
559 if (!bcmp(VTONFS(vp)->n_fh.fh_bytes, (caddr_t)fhp, NFSX_FH)) {
560 VREF(vp);
561 newvp = vp;
562 np = VTONFS(vp);
563 } else if (ndp->ni_isdotdot) {
564 if (error = nfs_nget(vp->v_mount, fhp, &np)) {
565 nfs_lock(vp);
566 m_freem(mrep);
567 return (error);
568 }
569 newvp = NFSTOV(np);
570 } else {
571 if (error = nfs_nget(vp->v_mount, fhp, &np)) {
572 nfs_lock(vp);
573 m_freem(mrep);
574 return (error);
575 }
576 newvp = NFSTOV(np);
577 }
578 if (error = nfs_loadattrcache(&newvp, &md, &dpos, (struct vattr *)0)) {
579 nfs_lock(vp);
580 if (newvp != vp)
581 nfs_nput(newvp);
582 else
583 vrele(vp);
584 m_freem(mrep);
585 return (error);
586 }
587 m_freem(mrep);
588
589 if (vp == newvp || (lockparent && *ndp->ni_next == '\0'))
590 nfs_lock(vp);
591 ndp->ni_vp = newvp;
592 if (flag != LOOKUP && *ndp->ni_next == 0)
593 ndp->ni_nameiop |= SAVENAME;
594 if (error == 0 && ndp->ni_makeentry) {
595 np->n_ctime = np->n_vattr.va_ctime.tv_sec;
596 cache_enter(ndp);
597 }
598 return (error);
599 }
600
601 /*
602 * nfs read call.
603 * Just call nfs_bioread() to do the work.
604 */
605 nfs_read(vp, uiop, ioflag, cred)
606 register struct vnode *vp;
607 struct uio *uiop;
608 int ioflag;
609 struct ucred *cred;
610 {
611 if (vp->v_type != VREG)
612 return (EPERM);
613 return (nfs_bioread(vp, uiop, ioflag, cred));
614 }
615
616 /*
617 * nfs readlink call
618 */
619 nfs_readlink(vp, uiop, cred)
620 struct vnode *vp;
621 struct uio *uiop;
622 struct ucred *cred;
623 {
624 if (vp->v_type != VLNK)
625 return (EPERM);
626 return (nfs_bioread(vp, uiop, 0, cred));
627 }
628
629 /*
630 * Do a readlink rpc.
631 * Called by nfs_doio() from below the buffer cache.
632 */
633 nfs_readlinkrpc(vp, uiop, cred)
634 register struct vnode *vp;
635 struct uio *uiop;
636 struct ucred *cred;
637 {
638 register u_long *tl;
639 register caddr_t cp;
640 register long t1;
641 caddr_t bpos, dpos, cp2;
642 u_long xid;
643 int error = 0;
644 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
645 long len;
646
647 nfsstats.rpccnt[NFSPROC_READLINK]++;
648 nfsm_reqhead(nfs_procids[NFSPROC_READLINK], cred, NFSX_FH);
649 nfsm_fhtom(vp);
650 nfsm_request(vp, NFSPROC_READLINK, uiop->uio_procp, 0);
651 nfsm_strsiz(len, NFS_MAXPATHLEN);
652 nfsm_mtouio(uiop, len);
653 nfsm_reqdone;
654 return (error);
655 }
656
657 /*
658 * nfs read rpc call
659 * Ditto above
660 */
661 nfs_readrpc(vp, uiop, cred)
662 register struct vnode *vp;
663 struct uio *uiop;
664 struct ucred *cred;
665 {
666 register u_long *tl;
667 register caddr_t cp;
668 register long t1;
669 caddr_t bpos, dpos, cp2;
670 u_long xid;
671 int error = 0;
672 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
673 struct nfsmount *nmp;
674 long len, retlen, tsiz;
675
676 nmp = VFSTONFS(vp->v_mount);
677 tsiz = uiop->uio_resid;
678 while (tsiz > 0) {
679 nfsstats.rpccnt[NFSPROC_READ]++;
680 len = (tsiz > nmp->nm_rsize) ? nmp->nm_rsize : tsiz;
681 nfsm_reqhead(nfs_procids[NFSPROC_READ], cred, NFSX_FH+NFSX_UNSIGNED*3);
682 nfsm_fhtom(vp);
683 nfsm_build(tl, u_long *, NFSX_UNSIGNED*3);
684 *tl++ = txdr_unsigned(uiop->uio_offset);
685 *tl++ = txdr_unsigned(len);
686 *tl = 0;
687 nfsm_request(vp, NFSPROC_READ, uiop->uio_procp, 1);
688 nfsm_loadattr(vp, (struct vattr *)0);
689 nfsm_strsiz(retlen, nmp->nm_rsize);
690 nfsm_mtouio(uiop, retlen);
691 m_freem(mrep);
692 if (retlen < len)
693 tsiz = 0;
694 else
695 tsiz -= len;
696 }
697 nfsmout:
698 return (error);
699 }
700
701 /*
702 * nfs write call
703 */
704 nfs_writerpc(vp, uiop, cred)
705 register struct vnode *vp;
706 struct uio *uiop;
707 struct ucred *cred;
708 {
709 register u_long *tl;
710 register caddr_t cp;
711 register long t1;
712 caddr_t bpos, dpos;
713 u_long xid;
714 int error = 0;
715 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
716 struct nfsmount *nmp;
717 long len, tsiz;
718
719 nmp = VFSTONFS(vp->v_mount);
720 tsiz = uiop->uio_resid;
721 while (tsiz > 0) {
722 nfsstats.rpccnt[NFSPROC_WRITE]++;
723 len = (tsiz > nmp->nm_wsize) ? nmp->nm_wsize : tsiz;
724 nfsm_reqhead(nfs_procids[NFSPROC_WRITE], cred,
725 NFSX_FH+NFSX_UNSIGNED*4);
726 nfsm_fhtom(vp);
727 nfsm_build(tl, u_long *, NFSX_UNSIGNED*4);
728 *(tl+1) = txdr_unsigned(uiop->uio_offset);
729 *(tl+3) = txdr_unsigned(len);
730 nfsm_uiotom(uiop, len);
731 nfsm_request(vp, NFSPROC_WRITE, uiop->uio_procp, 1);
732 nfsm_loadattr(vp, (struct vattr *)0);
733 m_freem(mrep);
734 tsiz -= len;
735 }
736 nfsmout:
737 return (error);
738 }
739
740 /*
741 * nfs mknod call
742 * This is a kludge. Use a create rpc but with the IFMT bits of the mode
743 * set to specify the file type and the size field for rdev.
744 */
745 /* ARGSUSED */
746 nfs_mknod(ndp, vap, cred, p)
747 struct nameidata *ndp;
748 struct ucred *cred;
749 register struct vattr *vap;
750 struct proc *p;
751 {
752 register struct nfsv2_sattr *sp;
753 register u_long *tl;
754 register caddr_t cp;
755 register long t1, t2;
756 caddr_t bpos, dpos;
757 u_long xid;
758 int error = 0;
759 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
760 u_long rdev;
761
762 if (vap->va_type == VCHR || vap->va_type == VBLK)
763 rdev = txdr_unsigned(vap->va_rdev);
764 #ifdef FIFO
765 else if (vap->va_type == VFIFO)
766 rdev = 0xffffffff;
767 #endif /* FIFO */
768 else {
769 VOP_ABORTOP(ndp);
770 vput(ndp->ni_dvp);
771 return (EOPNOTSUPP);
772 }
773 nfsstats.rpccnt[NFSPROC_CREATE]++;
774 nfsm_reqhead(nfs_procids[NFSPROC_CREATE], ndp->ni_cred,
775 NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(ndp->ni_namelen)+NFSX_SATTR);
776 nfsm_fhtom(ndp->ni_dvp);
777 nfsm_strtom(ndp->ni_ptr, ndp->ni_namelen, NFS_MAXNAMLEN);
778 nfsm_build(sp, struct nfsv2_sattr *, NFSX_SATTR);
779 sp->sa_mode = vtonfs_mode(vap->va_type, vap->va_mode);
780 sp->sa_uid = txdr_unsigned(ndp->ni_cred->cr_uid);
781 sp->sa_gid = txdr_unsigned(ndp->ni_cred->cr_gid);
782 sp->sa_size = rdev;
783 /* or should these be VNOVAL ?? */
784 txdr_time(&vap->va_atime, &sp->sa_atime);
785 txdr_time(&vap->va_mtime, &sp->sa_mtime);
786 nfsm_request(ndp->ni_dvp, NFSPROC_CREATE, p, 1);
787 nfsm_reqdone;
788 FREE(ndp->ni_pnbuf, M_NAMEI);
789 VTONFS(ndp->ni_dvp)->n_flag |= NMODIFIED;
790 nfs_nput(ndp->ni_dvp);
791 return (error);
792 }
793
794 /*
795 * nfs file create call
796 */
797 nfs_create(ndp, vap, p)
798 register struct nameidata *ndp;
799 register struct vattr *vap;
800 struct proc *p;
801 {
802 register struct nfsv2_sattr *sp;
803 register u_long *tl;
804 register caddr_t cp;
805 register long t1, t2;
806 caddr_t bpos, dpos, cp2;
807 u_long xid;
808 int error = 0;
809 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
810
811 nfsstats.rpccnt[NFSPROC_CREATE]++;
812 nfsm_reqhead(nfs_procids[NFSPROC_CREATE], ndp->ni_cred,
813 NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(ndp->ni_namelen)+NFSX_SATTR);
814 nfsm_fhtom(ndp->ni_dvp);
815 nfsm_strtom(ndp->ni_ptr, ndp->ni_namelen, NFS_MAXNAMLEN);
816 nfsm_build(sp, struct nfsv2_sattr *, NFSX_SATTR);
817 sp->sa_mode = vtonfs_mode(vap->va_type, vap->va_mode);
818 sp->sa_uid = txdr_unsigned(ndp->ni_cred->cr_uid);
819 sp->sa_gid = txdr_unsigned(ndp->ni_cred->cr_gid);
820 sp->sa_size = txdr_unsigned(0);
821 /* or should these be VNOVAL ?? */
822 txdr_time(&vap->va_atime, &sp->sa_atime);
823 txdr_time(&vap->va_mtime, &sp->sa_mtime);
824 nfsm_request(ndp->ni_dvp, NFSPROC_CREATE, p, 1);
825 nfsm_mtofh(ndp->ni_dvp, ndp->ni_vp);
826 nfsm_reqdone;
827 FREE(ndp->ni_pnbuf, M_NAMEI);
828 VTONFS(ndp->ni_dvp)->n_flag |= NMODIFIED;
829 nfs_nput(ndp->ni_dvp);
830 return (error);
831 }
832
833 /*
834 * nfs file remove call
835 * To try and make nfs semantics closer to ufs semantics, a file that has
836 * other processes using the vnode is renamed instead of removed and then
837 * removed later on the last close.
838 * - If v_usecount > 1
839 * If a rename is not already in the works
840 * call nfs_sillyrename() to set it up
841 * else
842 * do the remove rpc
843 */
844 nfs_remove(ndp, p)
845 register struct nameidata *ndp;
846 struct proc *p;
847 {
848 register struct vnode *vp = ndp->ni_vp;
849 register struct nfsnode *np = VTONFS(ndp->ni_vp);
850 register u_long *tl;
851 register caddr_t cp;
852 register long t1, t2;
853 caddr_t bpos, dpos;
854 u_long xid;
855 int error = 0;
856 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
857
858 if (vp->v_usecount > 1) {
859 if (!np->n_sillyrename)
860 error = nfs_sillyrename(ndp, p);
861 } else {
862 nfsstats.rpccnt[NFSPROC_REMOVE]++;
863 nfsm_reqhead(nfs_procids[NFSPROC_REMOVE], ndp->ni_cred,
864 NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(ndp->ni_namelen));
865 nfsm_fhtom(ndp->ni_dvp);
866 nfsm_strtom(ndp->ni_ptr, ndp->ni_namelen, NFS_MAXNAMLEN);
867 nfsm_request(ndp->ni_dvp, NFSPROC_REMOVE, p, 1);
868 nfsm_reqdone;
869 FREE(ndp->ni_pnbuf, M_NAMEI);
870 VTONFS(ndp->ni_dvp)->n_flag |= NMODIFIED;
871 /*
872 * Kludge City: If the first reply to the remove rpc is lost..
873 * the reply to the retransmitted request will be ENOENT
874 * since the file was in fact removed
875 * Therefore, we cheat and return success.
876 */
877 if (error == ENOENT)
878 error = 0;
879 }
880 np->n_attrstamp = 0;
881 if (ndp->ni_dvp == vp)
882 vrele(vp);
883 else
884 nfs_nput(ndp->ni_dvp);
885 nfs_nput(vp);
886 return (error);
887 }
888
889 /*
890 * nfs file remove rpc called from nfs_inactive
891 */
892 nfs_removeit(sp, p)
893 register struct sillyrename *sp;
894 struct proc *p;
895 {
896 register u_long *tl;
897 register caddr_t cp;
898 register long t1, t2;
899 caddr_t bpos, dpos;
900 u_long xid;
901 int error = 0;
902 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
903
904 nfsstats.rpccnt[NFSPROC_REMOVE]++;
905 nfsm_reqhead(nfs_procids[NFSPROC_REMOVE], sp->s_cred,
906 NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(sp->s_namlen));
907 nfsm_fhtom(sp->s_dvp);
908 nfsm_strtom(sp->s_name, sp->s_namlen, NFS_MAXNAMLEN);
909 nfsm_request(sp->s_dvp, NFSPROC_REMOVE, p, 1);
910 nfsm_reqdone;
911 VTONFS(sp->s_dvp)->n_flag |= NMODIFIED;
912 return (error);
913 }
914
915 /*
916 * nfs file rename call
917 */
918 nfs_rename(sndp, tndp, p)
919 register struct nameidata *sndp, *tndp;
920 struct proc *p;
921 {
922 register u_long *tl;
923 register caddr_t cp;
924 register long t1, t2;
925 caddr_t bpos, dpos;
926 u_long xid;
927 int error = 0;
928 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
929
930 nfsstats.rpccnt[NFSPROC_RENAME]++;
931 nfsm_reqhead(nfs_procids[NFSPROC_RENAME], tndp->ni_cred,
932 (NFSX_FH+NFSX_UNSIGNED)*2+nfsm_rndup(sndp->ni_namelen) +
933 nfsm_rndup(tndp->ni_namelen)); /* or sndp->ni_cred?*/
934 nfsm_fhtom(sndp->ni_dvp);
935 nfsm_strtom(sndp->ni_ptr, sndp->ni_namelen, NFS_MAXNAMLEN);
936 nfsm_fhtom(tndp->ni_dvp);
937 nfsm_strtom(tndp->ni_ptr, tndp->ni_namelen, NFS_MAXNAMLEN);
938 nfsm_request(sndp->ni_dvp, NFSPROC_RENAME, p, 1);
939 nfsm_reqdone;
940 VTONFS(sndp->ni_dvp)->n_flag |= NMODIFIED;
941 VTONFS(tndp->ni_dvp)->n_flag |= NMODIFIED;
942 if (sndp->ni_vp->v_type == VDIR) {
943 if (tndp->ni_vp != NULL && tndp->ni_vp->v_type == VDIR)
944 cache_purge(tndp->ni_dvp);
945 cache_purge(sndp->ni_dvp);
946 }
947 if (tndp->ni_dvp == tndp->ni_vp)
948 vrele(tndp->ni_dvp);
949 else
950 vput(tndp->ni_dvp);
951 if (tndp->ni_vp)
952 vput(tndp->ni_vp);
953 vrele(sndp->ni_dvp);
954 vrele(sndp->ni_vp);
955 /*
956 * Kludge: Map ENOENT => 0 assuming that it is a reply to a retry.
957 */
958 if (error == ENOENT)
959 error = 0;
960 return (error);
961 }
962
963 /*
964 * nfs file rename rpc called from nfs_remove() above
965 */
966 nfs_renameit(sndp, sp, p)
967 register struct nameidata *sndp;
968 register struct sillyrename *sp;
969 struct proc *p;
970 {
971 register u_long *tl;
972 register caddr_t cp;
973 register long t1, t2;
974 caddr_t bpos, dpos;
975 u_long xid;
976 int error = 0;
977 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
978
979 nfsstats.rpccnt[NFSPROC_RENAME]++;
980 nfsm_reqhead(nfs_procids[NFSPROC_RENAME], sp->s_cred,
981 (NFSX_FH+NFSX_UNSIGNED)*2+nfsm_rndup(sndp->ni_namelen) +
982 nfsm_rndup(sp->s_namlen)); /* or sndp->ni_cred?*/
983 nfsm_fhtom(sndp->ni_dvp);
984 nfsm_strtom(sndp->ni_ptr, sndp->ni_namelen, NFS_MAXNAMLEN);
985 nfsm_fhtom(sp->s_dvp);
986 nfsm_strtom(sp->s_name, sp->s_namlen, NFS_MAXNAMLEN);
987 nfsm_request(sndp->ni_dvp, NFSPROC_RENAME, p, 1);
988 nfsm_reqdone;
989 FREE(sndp->ni_pnbuf, M_NAMEI);
990 VTONFS(sndp->ni_dvp)->n_flag |= NMODIFIED;
991 VTONFS(sp->s_dvp)->n_flag |= NMODIFIED;
992 return (error);
993 }
994
995 /*
996 * nfs hard link create call
997 */
998 nfs_link(vp, ndp, p)
999 register struct vnode *vp;
1000 register struct nameidata *ndp;
1001 struct proc *p;
1002 {
1003 register u_long *tl;
1004 register caddr_t cp;
1005 register long t1, t2;
1006 caddr_t bpos, dpos;
1007 u_long xid;
1008 int error = 0;
1009 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
1010
1011 if (ndp->ni_dvp != vp)
1012 nfs_lock(vp);
1013 nfsstats.rpccnt[NFSPROC_LINK]++;
1014 nfsm_reqhead(nfs_procids[NFSPROC_LINK], ndp->ni_cred,
1015 NFSX_FH*2+NFSX_UNSIGNED+nfsm_rndup(ndp->ni_namelen));
1016 nfsm_fhtom(vp);
1017 nfsm_fhtom(ndp->ni_dvp);
1018 nfsm_strtom(ndp->ni_ptr, ndp->ni_namelen, NFS_MAXNAMLEN);
1019 nfsm_request(vp, NFSPROC_LINK, p, 1);
1020 nfsm_reqdone;
1021 FREE(ndp->ni_pnbuf, M_NAMEI);
1022 VTONFS(vp)->n_attrstamp = 0;
1023 VTONFS(ndp->ni_dvp)->n_flag |= NMODIFIED;
1024 if (ndp->ni_dvp != vp)
1025 nfs_unlock(vp);
1026 nfs_nput(ndp->ni_dvp);
1027 /*
1028 * Kludge: Map EEXIST => 0 assuming that it is a reply to a retry.
1029 */
1030 if (error == EEXIST)
1031 error = 0;
1032 return (error);
1033 }
1034
1035 /*
1036 * nfs symbolic link create call
1037 */
1038 nfs_symlink(ndp, vap, nm, p)
1039 struct nameidata *ndp;
1040 struct vattr *vap;
1041 char *nm; /* is this the path ?? */
1042 struct proc *p;
1043 {
1044 register struct nfsv2_sattr *sp;
1045 register u_long *tl;
1046 register caddr_t cp;
1047 register long t1, t2;
1048 caddr_t bpos, dpos;
1049 u_long xid;
1050 int error = 0;
1051 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
1052
1053 nfsstats.rpccnt[NFSPROC_SYMLINK]++;
1054 nfsm_reqhead(nfs_procids[NFSPROC_SYMLINK], ndp->ni_cred,
1055 NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(ndp->ni_namelen)+NFSX_UNSIGNED);
1056 nfsm_fhtom(ndp->ni_dvp);
1057 nfsm_strtom(ndp->ni_ptr, ndp->ni_namelen, NFS_MAXNAMLEN);
1058 nfsm_strtom(nm, strlen(nm), NFS_MAXPATHLEN);
1059 nfsm_build(sp, struct nfsv2_sattr *, NFSX_SATTR);
1060 sp->sa_mode = vtonfs_mode(VLNK, vap->va_mode);
1061 sp->sa_uid = txdr_unsigned(ndp->ni_cred->cr_uid);
1062 sp->sa_gid = txdr_unsigned(ndp->ni_cred->cr_gid);
1063 sp->sa_size = txdr_unsigned(VNOVAL);
1064 txdr_time(&vap->va_atime, &sp->sa_atime); /* or VNOVAL ?? */
1065 txdr_time(&vap->va_mtime, &sp->sa_mtime); /* or VNOVAL ?? */
1066 nfsm_request(ndp->ni_dvp, NFSPROC_SYMLINK, p, 1);
1067 nfsm_reqdone;
1068 FREE(ndp->ni_pnbuf, M_NAMEI);
1069 VTONFS(ndp->ni_dvp)->n_flag |= NMODIFIED;
1070 nfs_nput(ndp->ni_dvp);
1071 /*
1072 * Kludge: Map EEXIST => 0 assuming that it is a reply to a retry.
1073 */
1074 if (error == EEXIST)
1075 error = 0;
1076 return (error);
1077 }
1078
1079 /*
1080 * nfs make dir call
1081 */
1082 nfs_mkdir(ndp, vap, p)
1083 register struct nameidata *ndp;
1084 struct vattr *vap;
1085 struct proc *p;
1086 {
1087 register struct nfsv2_sattr *sp;
1088 register u_long *tl;
1089 register caddr_t cp;
1090 register long t1, t2;
1091 register int len;
1092 caddr_t bpos, dpos, cp2;
1093 u_long xid;
1094 int error = 0, firsttry = 1;
1095 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
1096
1097 len = ndp->ni_namelen;
1098 nfsstats.rpccnt[NFSPROC_MKDIR]++;
1099 nfsm_reqhead(nfs_procids[NFSPROC_MKDIR], ndp->ni_cred,
1100 NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(len)+NFSX_SATTR);
1101 nfsm_fhtom(ndp->ni_dvp);
1102 nfsm_strtom(ndp->ni_ptr, len, NFS_MAXNAMLEN);
1103 nfsm_build(sp, struct nfsv2_sattr *, NFSX_SATTR);
1104 sp->sa_mode = vtonfs_mode(VDIR, vap->va_mode);
1105 sp->sa_uid = txdr_unsigned(ndp->ni_cred->cr_uid);
1106 sp->sa_gid = txdr_unsigned(ndp->ni_cred->cr_gid);
1107 sp->sa_size = txdr_unsigned(VNOVAL);
1108 txdr_time(&vap->va_atime, &sp->sa_atime); /* or VNOVAL ?? */
1109 txdr_time(&vap->va_mtime, &sp->sa_mtime); /* or VNOVAL ?? */
1110 nfsm_request(ndp->ni_dvp, NFSPROC_MKDIR, p, 1);
1111 nfsm_mtofh(ndp->ni_dvp, ndp->ni_vp);
1112 nfsm_reqdone;
1113 VTONFS(ndp->ni_dvp)->n_flag |= NMODIFIED;
1114 /*
1115 * Kludge: Map EEXIST => 0 assuming that you have a reply to a retry
1116 * if we can succeed in looking up the directory.
1117 * "firsttry" is necessary since the macros may "goto nfsmout" which
1118 * is above the if on errors. (Ugh)
1119 */
1120 if (error == EEXIST && firsttry) {
1121 firsttry = 0;
1122 error = 0;
1123 nfsstats.rpccnt[NFSPROC_LOOKUP]++;
1124 ndp->ni_vp = NULL;
1125 nfsm_reqhead(nfs_procids[NFSPROC_LOOKUP], ndp->ni_cred,
1126 NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(len));
1127 nfsm_fhtom(ndp->ni_dvp);
1128 nfsm_strtom(ndp->ni_ptr, len, NFS_MAXNAMLEN);
1129 nfsm_request(ndp->ni_dvp, NFSPROC_LOOKUP, p, 1);
1130 nfsm_mtofh(ndp->ni_dvp, ndp->ni_vp);
1131 if (ndp->ni_vp->v_type != VDIR) {
1132 vput(ndp->ni_vp);
1133 error = EEXIST;
1134 }
1135 m_freem(mrep);
1136 }
1137 FREE(ndp->ni_pnbuf, M_NAMEI);
1138 nfs_nput(ndp->ni_dvp);
1139 return (error);
1140 }
1141
1142 /*
1143 * nfs remove directory call
1144 */
1145 nfs_rmdir(ndp, p)
1146 register struct nameidata *ndp;
1147 struct proc *p;
1148 {
1149 register u_long *tl;
1150 register caddr_t cp;
1151 register long t1, t2;
1152 caddr_t bpos, dpos;
1153 u_long xid;
1154 int error = 0;
1155 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
1156
1157 if (ndp->ni_dvp == ndp->ni_vp) {
1158 vrele(ndp->ni_dvp);
1159 nfs_nput(ndp->ni_dvp);
1160 return (EINVAL);
1161 }
1162 nfsstats.rpccnt[NFSPROC_RMDIR]++;
1163 nfsm_reqhead(nfs_procids[NFSPROC_RMDIR], ndp->ni_cred,
1164 NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(ndp->ni_namelen));
1165 nfsm_fhtom(ndp->ni_dvp);
1166 nfsm_strtom(ndp->ni_ptr, ndp->ni_namelen, NFS_MAXNAMLEN);
1167 nfsm_request(ndp->ni_dvp, NFSPROC_RMDIR, p, 1);
1168 nfsm_reqdone;
1169 FREE(ndp->ni_pnbuf, M_NAMEI);
1170 VTONFS(ndp->ni_dvp)->n_flag |= NMODIFIED;
1171 cache_purge(ndp->ni_dvp);
1172 cache_purge(ndp->ni_vp);
1173 nfs_nput(ndp->ni_vp);
1174 nfs_nput(ndp->ni_dvp);
1175 /*
1176 * Kludge: Map ENOENT => 0 assuming that you have a reply to a retry.
1177 */
1178 if (error == ENOENT)
1179 error = 0;
1180 return (error);
1181 }
1182
1183 /*
1184 * nfs readdir call
1185 * Although cookie is defined as opaque, I translate it to/from net byte
1186 * order so that it looks more sensible. This appears consistent with the
1187 * Ultrix implementation of NFS.
1188 */
1189 nfs_readdir(vp, uiop, cred, eofflagp)
1190 register struct vnode *vp;
1191 struct uio *uiop;
1192 struct ucred *cred;
1193 int *eofflagp;
1194 {
1195 register struct nfsnode *np = VTONFS(vp);
1196 int tresid, error;
1197 struct vattr vattr;
1198
1199 if (vp->v_type != VDIR)
1200 return (EPERM);
1201 /*
1202 * First, check for hit on the EOF offset cache
1203 */
1204 if (uiop->uio_offset != 0 && uiop->uio_offset == np->n_direofoffset &&
1205 (np->n_flag & NMODIFIED) == 0 &&
1206 nfs_dogetattr(vp, &vattr, cred, 0, uiop->uio_procp) == 0 &&
1207 np->n_mtime == vattr.va_mtime.tv_sec) {
1208 *eofflagp = 1;
1209 nfsstats.direofcache_hits++;
1210 return (0);
1211 }
1212
1213 /*
1214 * Call nfs_bioread() to do the real work.
1215 */
1216 tresid = uiop->uio_resid;
1217 error = nfs_bioread(vp, uiop, 0, cred);
1218
1219 if (!error && uiop->uio_resid == tresid) {
1220 *eofflagp = 1;
1221 nfsstats.direofcache_misses++;
1222 } else
1223 *eofflagp = 0;
1224 return (error);
1225 }
1226
1227 /*
1228 * Readdir rpc call.
1229 * Called from below the buffer cache by nfs_doio().
1230 */
1231 nfs_readdirrpc(vp, uiop, cred)
1232 register struct vnode *vp;
1233 struct uio *uiop;
1234 struct ucred *cred;
1235 {
1236 register long len;
1237 register struct direct *dp;
1238 register u_long *tl;
1239 register caddr_t cp;
1240 register long t1;
1241 long tlen, lastlen;
1242 caddr_t bpos, dpos, cp2;
1243 u_long xid;
1244 int error = 0;
1245 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
1246 struct mbuf *md2;
1247 caddr_t dpos2;
1248 int siz;
1249 int more_dirs = 1;
1250 off_t off, savoff;
1251 struct direct *savdp;
1252 struct nfsmount *nmp;
1253 struct nfsnode *np = VTONFS(vp);
1254 long tresid;
1255
1256 nmp = VFSTONFS(vp->v_mount);
1257 tresid = uiop->uio_resid;
1258 /*
1259 * Loop around doing readdir rpc's of size uio_resid or nm_rsize,
1260 * whichever is smaller, truncated to a multiple of NFS_DIRBLKSIZ.
1261 * The stopping criteria is EOF or buffer full.
1262 */
1263 while (more_dirs && uiop->uio_resid >= NFS_DIRBLKSIZ) {
1264 nfsstats.rpccnt[NFSPROC_READDIR]++;
1265 nfsm_reqhead(nfs_procids[NFSPROC_READDIR], cred, xid);
1266 nfsm_fhtom(vp);
1267 nfsm_build(tl, u_long *, 2*NFSX_UNSIGNED);
1268 *tl++ = txdr_unsigned(uiop->uio_offset);
1269 *tl = txdr_unsigned(((uiop->uio_resid > nmp->nm_rsize) ?
1270 nmp->nm_rsize : uiop->uio_resid) & ~(NFS_DIRBLKSIZ-1));
1271 nfsm_request(vp, NFSPROC_READDIR, uiop->uio_procp, 0);
1272 siz = 0;
1273 nfsm_disect(tl, u_long *, NFSX_UNSIGNED);
1274 more_dirs = fxdr_unsigned(int, *tl);
1275
1276 /* Save the position so that we can do nfsm_mtouio() later */
1277 dpos2 = dpos;
1278 md2 = md;
1279
1280 /* loop thru the dir entries, doctoring them to 4bsd form */
1281 off = uiop->uio_offset;
1282 #ifdef lint
1283 dp = (struct direct *)0;
1284 #endif /* lint */
1285 while (more_dirs && siz < uiop->uio_resid) {
1286 savoff = off; /* Hold onto offset and dp */
1287 savdp = dp;
1288 nfsm_disecton(tl, u_long *, 2*NFSX_UNSIGNED);
1289 dp = (struct direct *)tl;
1290 dp->d_ino = fxdr_unsigned(u_long, *tl++);
1291 len = fxdr_unsigned(int, *tl);
1292 if (len <= 0 || len > NFS_MAXNAMLEN) {
1293 error = EBADRPC;
1294 m_freem(mrep);
1295 goto nfsmout;
1296 }
1297 dp->d_namlen = (u_short)len;
1298 nfsm_adv(len); /* Point past name */
1299 tlen = nfsm_rndup(len);
1300 /*
1301 * This should not be necessary, but some servers have
1302 * broken XDR such that these bytes are not null filled.
1303 */
1304 if (tlen != len) {
1305 *dpos = '\0'; /* Null-terminate */
1306 nfsm_adv(tlen - len);
1307 len = tlen;
1308 }
1309 nfsm_disecton(tl, u_long *, 2*NFSX_UNSIGNED);
1310 off = fxdr_unsigned(off_t, *tl);
1311 *tl++ = 0; /* Ensures null termination of name */
1312 more_dirs = fxdr_unsigned(int, *tl);
1313 dp->d_reclen = len+4*NFSX_UNSIGNED;
1314 siz += dp->d_reclen;
1315 }
1316 /*
1317 * If at end of rpc data, get the eof boolean
1318 */
1319 if (!more_dirs) {
1320 nfsm_disecton(tl, u_long *, NFSX_UNSIGNED);
1321 more_dirs = (fxdr_unsigned(int, *tl) == 0);
1322
1323 /*
1324 * If at EOF, cache directory offset
1325 */
1326 if (!more_dirs)
1327 np->n_direofoffset = off;
1328 }
1329 /*
1330 * If there is too much to fit in the data buffer, use savoff and
1331 * savdp to trim off the last record.
1332 * --> we are not at eof
1333 */
1334 if (siz > uiop->uio_resid) {
1335 off = savoff;
1336 siz -= dp->d_reclen;
1337 dp = savdp;
1338 more_dirs = 0; /* Paranoia */
1339 }
1340 if (siz > 0) {
1341 lastlen = dp->d_reclen;
1342 md = md2;
1343 dpos = dpos2;
1344 nfsm_mtouio(uiop, siz);
1345 uiop->uio_offset = off;
1346 } else
1347 more_dirs = 0; /* Ugh, never happens, but in case.. */
1348 m_freem(mrep);
1349 }
1350 /*
1351 * Fill last record, iff any, out to a multiple of NFS_DIRBLKSIZ
1352 * by increasing d_reclen for the last record.
1353 */
1354 if (uiop->uio_resid < tresid) {
1355 len = uiop->uio_resid & (NFS_DIRBLKSIZ - 1);
1356 if (len > 0) {
1357 dp = (struct direct *)
1358 (uiop->uio_iov->iov_base - lastlen);
1359 dp->d_reclen += len;
1360 uiop->uio_iov->iov_base += len;
1361 uiop->uio_iov->iov_len -= len;
1362 uiop->uio_resid -= len;
1363 }
1364 }
1365 nfsmout:
1366 return (error);
1367 }
1368
1369 static char hextoasc[] = "0123456789abcdef";
1370
1371 /*
1372 * Silly rename. To make the NFS filesystem that is stateless look a little
1373 * more like the "ufs" a remove of an active vnode is translated to a rename
1374 * to a funny looking filename that is removed by nfs_inactive on the
1375 * nfsnode. There is the potential for another process on a different client
1376 * to create the same funny name between the nfs_lookitup() fails and the
1377 * nfs_rename() completes, but...
1378 */
1379 nfs_sillyrename(ndp, p)
1380 register struct nameidata *ndp;
1381 struct proc *p;
1382 {
1383 register struct nfsnode *np;
1384 register struct sillyrename *sp;
1385 int error;
1386 short pid;
1387
1388 np = VTONFS(ndp->ni_dvp);
1389 cache_purge(ndp->ni_dvp);
1390 MALLOC(sp, struct sillyrename *, sizeof (struct sillyrename),
1391 M_NFSREQ, M_WAITOK);
1392 bcopy((caddr_t)&np->n_fh, (caddr_t)&sp->s_fh, NFSX_FH);
1393 np = VTONFS(ndp->ni_vp);
1394 sp->s_cred = crdup(ndp->ni_cred);
1395 sp->s_dvp = ndp->ni_dvp;
1396 VREF(sp->s_dvp);
1397
1398 /* Fudge together a funny name */
1399 pid = p->p_pid;
1400 bcopy(".nfsAxxxx4.4", sp->s_name, 13);
1401 sp->s_namlen = 12;
1402 sp->s_name[8] = hextoasc[pid & 0xf];
1403 sp->s_name[7] = hextoasc[(pid >> 4) & 0xf];
1404 sp->s_name[6] = hextoasc[(pid >> 8) & 0xf];
1405 sp->s_name[5] = hextoasc[(pid >> 12) & 0xf];
1406
1407 /* Try lookitups until we get one that isn't there */
1408 while (nfs_lookitup(sp, (nfsv2fh_t *)0, p) == 0) {
1409 sp->s_name[4]++;
1410 if (sp->s_name[4] > 'z') {
1411 error = EINVAL;
1412 goto bad;
1413 }
1414 }
1415 if (error = nfs_renameit(ndp, sp, p))
1416 goto bad;
1417 nfs_lookitup(sp, &np->n_fh, p);
1418 np->n_sillyrename = sp;
1419 return (0);
1420 bad:
1421 vrele(sp->s_dvp);
1422 crfree(sp->s_cred);
1423 free((caddr_t)sp, M_NFSREQ);
1424 return (error);
1425 }
1426
1427 /*
1428 * Look up a file name for silly rename stuff.
1429 * Just like nfs_lookup() except that it doesn't load returned values
1430 * into the nfsnode table.
1431 * If fhp != NULL it copies the returned file handle out
1432 */
1433 nfs_lookitup(sp, fhp, p)
1434 register struct sillyrename *sp;
1435 nfsv2fh_t *fhp;
1436 struct proc *p;
1437 {
1438 register struct vnode *vp = sp->s_dvp;
1439 register u_long *tl;
1440 register caddr_t cp;
1441 register long t1, t2;
1442 caddr_t bpos, dpos, cp2;
1443 u_long xid;
1444 int error = 0;
1445 struct mbuf *mreq, *mrep, *md, *mb, *mb2;
1446 long len;
1447
1448 nfsstats.rpccnt[NFSPROC_LOOKUP]++;
1449 len = sp->s_namlen;
1450 nfsm_reqhead(nfs_procids[NFSPROC_LOOKUP], sp->s_cred, NFSX_FH+NFSX_UNSIGNED+nfsm_rndup(len));
1451 nfsm_fhtom(vp);
1452 nfsm_strtom(sp->s_name, len, NFS_MAXNAMLEN);
1453 nfsm_request(vp, NFSPROC_LOOKUP, p, 1);
1454 if (fhp != NULL) {
1455 nfsm_disect(cp, caddr_t, NFSX_FH);
1456 bcopy(cp, (caddr_t)fhp, NFSX_FH);
1457 }
1458 nfsm_reqdone;
1459 return (error);
1460 }
1461
1462 /*
1463 * Kludge City..
1464 * - make nfs_bmap() essentially a no-op that does no translation
1465 * - do nfs_strategy() by faking physical I/O with nfs_readrpc/nfs_writerpc
1466 * after mapping the physical addresses into Kernel Virtual space in the
1467 * nfsiobuf area.
1468 * (Maybe I could use the process's page mapping, but I was concerned that
1469 * Kernel Write might not be enabled and also figured copyout() would do
1470 * a lot more work than bcopy() and also it currently happens in the
1471 * context of the swapper process (2).
1472 */
1473 nfs_bmap(vp, bn, vpp, bnp)
1474 struct vnode *vp;
1475 daddr_t bn;
1476 struct vnode **vpp;
1477 daddr_t *bnp;
1478 {
1479 if (vpp != NULL)
1480 *vpp = vp;
1481 if (bnp != NULL)
1482 *bnp = bn * btodb(vp->v_mount->mnt_stat.f_bsize);
1483 return (0);
1484 }
1485
1486 /*
1487 * Strategy routine for phys. i/o
1488 * If the biod's are running, queue a request
1489 * otherwise just call nfs_doio() to get it done
1490 */
1491 nfs_strategy(bp)
1492 register struct buf *bp;
1493 {
1494 register struct buf *dp;
1495 register int i;
1496 int error = 0;
1497 int fnd = 0;
1498
1499 /*
1500 * Set b_proc. It seems a bit silly to do it here, but since bread()
1501 * doesn't set it, I will.
1502 * Set b_proc == NULL for asynchronous ops, since these may still
1503 * be hanging about after the process terminates.
1504 */
1505 if ((bp->b_flags & B_PHYS) == 0) {
1506 if (bp->b_flags & B_ASYNC)
1507 bp->b_proc = (struct proc *)0;
1508 else
1509 bp->b_proc = curproc;
1510 }
1511 /*
1512 * If the op is asynchronous and an i/o daemon is waiting
1513 * queue the request, wake it up and wait for completion
1514 * otherwise just do it ourselves.
1515 */
1516 if ((bp->b_flags & B_ASYNC) == 0 || nfs_numasync == 0)
1517 return (nfs_doio(bp));
1518 for (i = 0; i < NFS_MAXASYNCDAEMON; i++) {
1519 if (nfs_iodwant[i]) {
1520 dp = &nfs_bqueue;
1521 if (dp->b_actf == NULL) {
1522 dp->b_actl = bp;
1523 bp->b_actf = dp;
1524 } else {
1525 dp->b_actf->b_actl = bp;
1526 bp->b_actf = dp->b_actf;
1527 }
1528 dp->b_actf = bp;
1529 bp->b_actl = dp;
1530 fnd++;
1531 wakeup((caddr_t)&nfs_iodwant[i]);
1532 break;
1533 }
1534 }
1535 if (!fnd)
1536 error = nfs_doio(bp);
1537 return (error);
1538 }
1539
1540 /*
1541 * Fun and games with i/o
1542 * Essentially play ubasetup() and disk interrupt service routine by
1543 * mapping the data buffer into kernel virtual space and doing the
1544 * nfs read or write rpc's from it.
1545 * If the nfsiod's are not running, this is just called from nfs_strategy(),
1546 * otherwise it is called by the nfsiods to do what would normally be
1547 * partially disk interrupt driven.
1548 */
1549 nfs_doio(bp)
1550 register struct buf *bp;
1551 {
1552 register struct uio *uiop;
1553 register struct vnode *vp;
1554 struct nfsnode *np;
1555 struct ucred *cr;
1556 int error;
1557 struct uio uio;
1558 struct iovec io;
1559 #if !defined(hp300) && !defined(i386)
1560 register struct pte *pte, *ppte;
1561 register caddr_t vaddr;
1562 int npf, npf2;
1563 int reg, o;
1564 caddr_t vbase;
1565 unsigned v;
1566 #endif
1567
1568 vp = bp->b_vp;
1569 np = VTONFS(vp);
1570 uiop = &uio;
1571 uiop->uio_iov = &io;
1572 uiop->uio_iovcnt = 1;
1573 uiop->uio_segflg = UIO_SYSSPACE;
1574 uiop->uio_procp = (struct proc *)0;
1575
1576 /*
1577 * For phys i/o, map the b_addr into kernel virtual space using
1578 * the Nfsiomap pte's
1579 * Also, add a temporary b_rcred for reading using the process's uid
1580 * and a guess at a group
1581 */
1582 if (bp->b_flags & B_PHYS) {
1583 if (bp->b_flags & B_DIRTY)
1584 uiop->uio_procp = pageproc;
1585 cr = crcopy(uiop->uio_procp->p_ucred);
1586 /* mapping was already done by vmapbuf */
1587 io.iov_base = bp->b_un.b_addr;
1588
1589 /*
1590 * And do the i/o rpc
1591 */
1592 io.iov_len = uiop->uio_resid = bp->b_bcount;
1593 uiop->uio_offset = bp->b_blkno * DEV_BSIZE;
1594 if (bp->b_flags & B_READ) {
1595 uiop->uio_rw = UIO_READ;
1596 nfsstats.read_physios++;
1597 bp->b_error = error = nfs_readrpc(vp, uiop, cr);
1598 (void) vnode_pager_uncache(vp);
1599 } else {
1600 uiop->uio_rw = UIO_WRITE;
1601 nfsstats.write_physios++;
1602 bp->b_error = error = nfs_writerpc(vp, uiop, cr);
1603 }
1604
1605 /*
1606 * Finally, release pte's used by physical i/o
1607 */
1608 crfree(cr);
1609 } else {
1610 if (bp->b_flags & B_READ) {
1611 io.iov_len = uiop->uio_resid = bp->b_bcount;
1612 io.iov_base = bp->b_un.b_addr;
1613 uiop->uio_rw = UIO_READ;
1614 switch (vp->v_type) {
1615 case VREG:
1616 uiop->uio_offset = bp->b_blkno * DEV_BSIZE;
1617 nfsstats.read_bios++;
1618 error = nfs_readrpc(vp, uiop, bp->b_rcred);
1619 break;
1620 case VLNK:
1621 uiop->uio_offset = 0;
1622 nfsstats.readlink_bios++;
1623 error = nfs_readlinkrpc(vp, uiop, bp->b_rcred);
1624 break;
1625 case VDIR:
1626 uiop->uio_offset = bp->b_lblkno;
1627 nfsstats.readdir_bios++;
1628 error = nfs_readdirrpc(vp, uiop, bp->b_rcred);
1629 /*
1630 * Save offset cookie in b_blkno.
1631 */
1632 bp->b_blkno = uiop->uio_offset;
1633 break;
1634 };
1635 bp->b_error = error;
1636 } else {
1637 io.iov_len = uiop->uio_resid = bp->b_dirtyend
1638 - bp->b_dirtyoff;
1639 uiop->uio_offset = (bp->b_blkno * DEV_BSIZE)
1640 + bp->b_dirtyoff;
1641 io.iov_base = bp->b_un.b_addr + bp->b_dirtyoff;
1642 uiop->uio_rw = UIO_WRITE;
1643 nfsstats.write_bios++;
1644 bp->b_error = error = nfs_writerpc(vp, uiop,
1645 bp->b_wcred);
1646 if (error) {
1647 np->n_error = error;
1648 np->n_flag |= NWRITEERR;
1649 }
1650 bp->b_dirtyoff = bp->b_dirtyend = 0;
1651 }
1652 }
1653 if (error)
1654 bp->b_flags |= B_ERROR;
1655 bp->b_resid = uiop->uio_resid;
1656 biodone(bp);
1657 return (error);
1658 }
1659
1660 /*
1661 * Mmap a file
1662 *
1663 * NB Currently unsupported.
1664 */
1665 /* ARGSUSED */
1666 nfs_mmap(vp, fflags, cred, p)
1667 struct vnode *vp;
1668 int fflags;
1669 struct ucred *cred;
1670 struct proc *p;
1671 {
1672
1673 return (EINVAL);
1674 }
1675
1676 /*
1677 * Flush all the blocks associated with a vnode.
1678 * Walk through the buffer pool and push any dirty pages
1679 * associated with the vnode.
1680 */
1681 /* ARGSUSED */
1682 nfs_fsync(vp, fflags, cred, waitfor, p)
1683 register struct vnode *vp;
1684 int fflags;
1685 struct ucred *cred;
1686 int waitfor;
1687 struct proc *p;
1688 {
1689 register struct nfsnode *np = VTONFS(vp);
1690 int error = 0;
1691
1692 if (np->n_flag & NMODIFIED) {
1693 np->n_flag &= ~NMODIFIED;
1694 vflushbuf(vp, waitfor == MNT_WAIT ? B_SYNC : 0);
1695 }
1696 if (!error && (np->n_flag & NWRITEERR))
1697 error = np->n_error;
1698 return (error);
1699 }
1700
1701 /*
1702 * NFS advisory byte-level locks.
1703 * Currently unsupported.
1704 */
1705 nfs_advlock(vp, id, op, fl, flags)
1706 struct vnode *vp;
1707 caddr_t id;
1708 int op;
1709 struct flock *fl;
1710 int flags;
1711 {
1712 register struct nfsnode *np = VTONFS(vp);
1713
1714 return (lf_advlock(&(np->n_lockf), np->n_size, id, op, fl, flags));
1715 }
1716
1717 /*
1718 * Print out the contents of an nfsnode.
1719 */
1720 nfs_print(vp)
1721 struct vnode *vp;
1722 {
1723 register struct nfsnode *np = VTONFS(vp);
1724
1725 printf("tag VT_NFS, fileid %d fsid 0x%x",
1726 np->n_vattr.va_fileid, np->n_vattr.va_fsid);
1727 #ifdef FIFO
1728 if (vp->v_type == VFIFO)
1729 fifo_printinfo(vp);
1730 #endif /* FIFO */
1731 printf("%s\n", (np->n_flag & NLOCKED) ? " (LOCKED)" : "");
1732 if (np->n_lockholder == 0)
1733 return;
1734 printf("\towner pid %d", np->n_lockholder);
1735 if (np->n_lockwaiter)
1736 printf(" waiting pid %d", np->n_lockwaiter);
1737 printf("\n");
1738 }
1739
1740
1741 /*
1742 * Attribute cache routines.
1743 * nfs_loadattrcache() - loads or updates the cache contents from attributes
1744 * that are on the mbuf list
1745 * nfs_getattrcache() - returns valid attributes if found in cache, returns
1746 * error otherwise
1747 */
1748
1749 /*
1750 * Load the attribute cache (that lives in the nfsnode entry) with
1751 * the values on the mbuf list and
1752 * Iff vap not NULL
1753 * copy the attributes to *vaper
1754 */
1755 nfs_loadattrcache(vpp, mdp, dposp, vaper)
1756 struct vnode **vpp;
1757 struct mbuf **mdp;
1758 caddr_t *dposp;
1759 struct vattr *vaper;
1760 {
1761 register struct vnode *vp = *vpp;
1762 register struct vattr *vap;
1763 register struct nfsv2_fattr *fp;
1764 extern struct vnodeops spec_nfsv2nodeops;
1765 register struct nfsnode *np;
1766 register long t1;
1767 caddr_t dpos, cp2;
1768 int error = 0;
1769 struct mbuf *md;
1770 enum vtype type;
1771 u_short mode;
1772 long rdev;
1773 struct timeval mtime;
1774 struct vnode *nvp;
1775
1776 md = *mdp;
1777 dpos = *dposp;
1778 t1 = (mtod(md, caddr_t)+md->m_len)-dpos;
1779 if (error = nfsm_disct(&md, &dpos, NFSX_FATTR, t1, TRUE, &cp2))
1780 return (error);
1781 fp = (struct nfsv2_fattr *)cp2;
1782 type = nfstov_type(fp->fa_type);
1783 mode = fxdr_unsigned(u_short, fp->fa_mode);
1784 if (type == VNON)
1785 type = IFTOVT(mode);
1786 rdev = fxdr_unsigned(long, fp->fa_rdev);
1787 fxdr_time(&fp->fa_mtime, &mtime);
1788 /*
1789 * If v_type == VNON it is a new node, so fill in the v_type,
1790 * n_mtime fields. Check to see if it represents a special
1791 * device, and if so, check for a possible alias. Once the
1792 * correct vnode has been obtained, fill in the rest of the
1793 * information.
1794 */
1795 np = VTONFS(vp);
1796 if (vp->v_type == VNON) {
1797 if (type == VCHR && rdev == 0xffffffff)
1798 vp->v_type = type = VFIFO;
1799 else
1800 vp->v_type = type;
1801 if (vp->v_type == VFIFO) {
1802 #ifdef FIFO
1803 extern struct vnodeops fifo_nfsv2nodeops;
1804 vp->v_op = &fifo_nfsv2nodeops;
1805 #else
1806 return (EOPNOTSUPP);
1807 #endif /* FIFO */
1808 }
1809 if (vp->v_type == VCHR || vp->v_type == VBLK) {
1810 vp->v_op = &spec_nfsv2nodeops;
1811 if (nvp = checkalias(vp, (dev_t)rdev, vp->v_mount)) {
1812 /*
1813 * Reinitialize aliased node.
1814 */
1815 np = VTONFS(nvp);
1816 np->n_vnode = nvp;
1817 np->n_flag = 0;
1818 nfs_lock(nvp);
1819 bcopy((caddr_t)&VTONFS(vp)->n_fh,
1820 (caddr_t)&np->n_fh, NFSX_FH);
1821 insque(np, nfs_hash(&np->n_fh));
1822 np->n_attrstamp = 0;
1823 np->n_sillyrename = (struct sillyrename *)0;
1824 /*
1825 * Discard unneeded vnode and update actual one
1826 */
1827 vput(vp);
1828 *vpp = nvp;
1829 }
1830 }
1831 np->n_mtime = mtime.tv_sec;
1832 }
1833 vap = &np->n_vattr;
1834 vap->va_type = type;
1835 vap->va_mode = (mode & 07777);
1836 vap->va_nlink = fxdr_unsigned(u_short, fp->fa_nlink);
1837 vap->va_uid = fxdr_unsigned(uid_t, fp->fa_uid);
1838 vap->va_gid = fxdr_unsigned(gid_t, fp->fa_gid);
1839 vap->va_size = fxdr_unsigned(u_long, fp->fa_size);
1840 if ((np->n_flag & NMODIFIED) == 0 || vap->va_size > np->n_size) {
1841 np->n_size = vap->va_size;
1842 vnode_pager_setsize(vp, np->n_size);
1843 }
1844 vap->va_size_rsv = 0;
1845 vap->va_blocksize = fxdr_unsigned(long, fp->fa_blocksize);
1846 vap->va_rdev = (dev_t)rdev;
1847 vap->va_bytes = fxdr_unsigned(long, fp->fa_blocks) * NFS_FABLKSIZE;
1848 vap->va_bytes_rsv = 0;
1849 vap->va_fsid = vp->v_mount->mnt_stat.f_fsid.val[0];
1850 vap->va_fileid = fxdr_unsigned(long, fp->fa_fileid);
1851 vap->va_atime.tv_sec = fxdr_unsigned(long, fp->fa_atime.tv_sec);
1852 vap->va_atime.tv_usec = 0;
1853 vap->va_flags = fxdr_unsigned(u_long, fp->fa_atime.tv_usec);
1854 vap->va_mtime = mtime;
1855 vap->va_ctime.tv_sec = fxdr_unsigned(long, fp->fa_ctime.tv_sec);
1856 vap->va_ctime.tv_usec = 0;
1857 vap->va_gen = fxdr_unsigned(u_long, fp->fa_ctime.tv_usec);
1858 np->n_attrstamp = time.tv_sec;
1859 *dposp = dpos;
1860 *mdp = md;
1861 if (vaper != NULL) {
1862 bcopy((caddr_t)vap, (caddr_t)vaper, sizeof(*vap));
1863 if ((np->n_flag & NMODIFIED) && (np->n_size > vap->va_size))
1864 vaper->va_size = np->n_size;
1865 }
1866 return (0);
1867 }
1868
1869 /*
1870 * Check the time stamp
1871 * If the cache is valid, copy contents to *vap and return 0
1872 * otherwise return an error
1873 */
1874 nfs_getattrcache(vp, vap)
1875 register struct vnode *vp;
1876 struct vattr *vap;
1877 {
1878 register struct nfsnode *np;
1879
1880 np = VTONFS(vp);
1881 if ((time.tv_sec-np->n_attrstamp) < NFS_ATTRTIMEO) {
1882 nfsstats.attrcache_hits++;
1883 bcopy((caddr_t)&np->n_vattr,(caddr_t)vap,sizeof(struct vattr));
1884 if ((np->n_flag & NMODIFIED) == 0) {
1885 np->n_size = vap->va_size;
1886 vnode_pager_setsize(vp, np->n_size);
1887 } else if (np->n_size > vap->va_size)
1888 vap->va_size = np->n_size;
1889 return (0);
1890 } else {
1891 nfsstats.attrcache_misses++;
1892 return (ENOENT);
1893 }
1894 }
1895