1 /*-
2 * SPDX-License-Identifier: BSD-3-Clause
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. Neither the name of the University nor the names of its contributors
19 * may be used to endorse or promote products derived from this software
20 * without specific prior written permission.
21 *
22 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 * SUCH DAMAGE.
33 *
34 */
35
36 #include <sys/capsicum.h>
37 #include <sys/extattr.h>
38
39 /*
40 * Functions that perform the vfs operations required by the routines in
41 * nfsd_serv.c. It is hoped that this change will make the server more
42 * portable.
43 */
44
45 #include <fs/nfs/nfsport.h>
46 #include <security/mac/mac_framework.h>
47 #include <sys/callout.h>
48 #include <sys/filio.h>
49 #include <sys/hash.h>
50 #include <sys/osd.h>
51 #include <sys/sysctl.h>
52 #include <nlm/nlm_prot.h>
53 #include <nlm/nlm.h>
54 #include <vm/vm_param.h>
55 #include <vm/vnode_pager.h>
56
57 FEATURE(nfsd, "NFSv4 server");
58
59 extern u_int32_t newnfs_true, newnfs_false, newnfs_xdrneg1;
60 extern int nfsrv_useacl;
61 extern int newnfs_numnfsd;
62 extern int nfsrv_sessionhashsize;
63 extern struct nfslayouthash *nfslayouthash;
64 extern int nfsrv_layouthashsize;
65 extern struct mtx nfsrv_dslock_mtx;
66 extern int nfs_pnfsiothreads;
67 extern volatile int nfsrv_devidcnt;
68 extern int nfsrv_maxpnfsmirror;
69 extern uint32_t nfs_srvmaxio;
70 extern int nfs_bufpackets;
71 extern u_long sb_max_adj;
72 extern struct nfsv4lock nfsv4rootfs_lock;
73
74 NFSD_VNET_DECLARE(int, nfsrv_numnfsd);
75 NFSD_VNET_DECLARE(struct nfsrv_stablefirst, nfsrv_stablefirst);
76 NFSD_VNET_DECLARE(SVCPOOL *, nfsrvd_pool);
77 NFSD_VNET_DECLARE(struct nfsclienthashhead *, nfsclienthash);
78 NFSD_VNET_DECLARE(struct nfslockhashhead *, nfslockhash);
79 NFSD_VNET_DECLARE(struct nfssessionhash *, nfssessionhash);
80 NFSD_VNET_DECLARE(struct nfsv4lock, nfsd_suspend_lock);
81 NFSD_VNET_DECLARE(struct nfsstatsv1 *, nfsstatsv1_p);
82
83 NFSDLOCKMUTEX;
84 NFSSTATESPINLOCK;
85 struct mtx nfsrc_udpmtx;
86 struct mtx nfs_v4root_mutex;
87 struct mtx nfsrv_dontlistlock_mtx;
88 struct mtx nfsrv_recalllock_mtx;
89 struct nfsrvfh nfs_pubfh;
90 int nfs_pubfhset = 0;
91 int nfsd_debuglevel = 0;
92 static pid_t nfsd_master_pid = (pid_t)-1;
93 static char nfsd_master_comm[MAXCOMLEN + 1];
94 static struct timeval nfsd_master_start;
95 static uint32_t nfsv4_sysid = 0;
96 static fhandle_t zerofh;
97
98 NFSD_VNET_DEFINE(struct proc *, nfsd_master_proc) = NULL;
99 NFSD_VNET_DEFINE(struct nfsrvhashhead *, nfsrvudphashtbl);
100 NFSD_VNET_DEFINE(struct nfsrchash_bucket *, nfsrchash_table);
101 NFSD_VNET_DEFINE(struct nfsrchash_bucket *, nfsrcahash_table);
102 NFSD_VNET_DEFINE(struct nfsrvfh, nfs_rootfh);
103 NFSD_VNET_DEFINE(int, nfs_rootfhset) = 0;
104 NFSD_VNET_DEFINE(struct callout, nfsd_callout);
105 NFSD_VNET_DEFINE_STATIC(struct mount *, nfsv4root_mnt);
106 NFSD_VNET_DEFINE_STATIC(struct vfsoptlist, nfsv4root_opt);
107 NFSD_VNET_DEFINE_STATIC(struct vfsoptlist, nfsv4root_newopt);
108 NFSD_VNET_DEFINE_STATIC(bool, nfsrv_suspend_nfsd) = false;
109 NFSD_VNET_DEFINE_STATIC(bool, nfsrv_mntinited) = false;
110
111 static int nfssvc_srvcall(struct thread *, struct nfssvc_args *,
112 struct ucred *);
113 static void nfsvno_updateds(struct vnode *, struct ucred *, struct thread *);
114
115 int nfsrv_enable_crossmntpt = 1;
116 static int nfs_commit_blks;
117 static int nfs_commit_miss;
118 extern int nfsrv_issuedelegs;
119 extern int nfsrv_dolocallocks;
120 extern struct nfsdevicehead nfsrv_devidhead;
121
122 /* Map d_type to vnode type. */
123 static uint8_t dtype_to_vnode[DT_WHT + 1] = { VNON, VFIFO, VCHR, VNON, VDIR,
124 VNON, VBLK, VNON, VREG, VNON, VLNK, VNON, VSOCK, VNON, VNON };
125
126 static int nfsrv_createiovec(int, struct mbuf **, struct mbuf **,
127 struct iovec **);
128 static int nfsrv_createiovec_extpgs(int, int, struct mbuf **,
129 struct mbuf **, struct iovec **);
130 static int nfsrv_createiovecw(int, struct mbuf *, char *, struct iovec **,
131 int *);
132 static void nfs_dtypetovtype(struct nfsvattr *, struct vnode *, uint8_t);
133 static void nfsrv_pnfscreate(struct vnode *, struct vattr *, struct ucred *,
134 NFSPROC_T *);
135 static void nfsrv_pnfsremovesetup(struct vnode *, NFSPROC_T *, struct vnode **,
136 int *, char *, fhandle_t *);
137 static void nfsrv_pnfsremove(struct vnode **, int, char *, fhandle_t *,
138 NFSPROC_T *);
139 static int nfsrv_proxyds(struct vnode *, off_t, int, struct ucred *,
140 struct thread *, int, struct mbuf **, char *, struct mbuf **,
141 struct nfsvattr *, struct acl *, off_t *, int, bool *);
142 static int nfsrv_setextattr(struct vnode *, struct nfsvattr *, NFSPROC_T *);
143 static int nfsrv_readdsrpc(fhandle_t *, off_t, int, struct ucred *,
144 NFSPROC_T *, struct nfsmount *, struct mbuf **, struct mbuf **);
145 static int nfsrv_writedsrpc(fhandle_t *, off_t, int, struct ucred *,
146 NFSPROC_T *, struct vnode *, struct nfsmount **, int, struct mbuf **,
147 char *, int *);
148 static int nfsrv_allocatedsrpc(fhandle_t *, off_t, off_t, struct ucred *,
149 NFSPROC_T *, struct vnode *, struct nfsmount **, int, int *);
150 static int nfsrv_deallocatedsrpc(fhandle_t *, off_t, off_t, struct ucred *,
151 NFSPROC_T *, struct vnode *, struct nfsmount **, int, int *);
152 static int nfsrv_setacldsrpc(fhandle_t *, struct ucred *, NFSPROC_T *,
153 struct vnode *, struct nfsmount **, int, struct acl *, int *);
154 static int nfsrv_setattrdsrpc(fhandle_t *, struct ucred *, NFSPROC_T *,
155 struct vnode *, struct nfsmount **, int, struct nfsvattr *, int *);
156 static int nfsrv_getattrdsrpc(fhandle_t *, struct ucred *, NFSPROC_T *,
157 struct vnode *, struct nfsmount *, struct nfsvattr *);
158 static int nfsrv_seekdsrpc(fhandle_t *, off_t *, int, bool *, struct ucred *,
159 NFSPROC_T *, struct nfsmount *);
160 static int nfsrv_putfhname(fhandle_t *, char *);
161 static int nfsrv_pnfslookupds(struct vnode *, struct vnode *,
162 struct pnfsdsfile *, struct vnode **, NFSPROC_T *);
163 static void nfsrv_pnfssetfh(struct vnode *, struct pnfsdsfile *, char *, char *,
164 struct vnode *, NFSPROC_T *);
165 static int nfsrv_dsremove(struct vnode *, char *, struct ucred *, NFSPROC_T *);
166 static int nfsrv_dssetacl(struct vnode *, struct acl *, struct ucred *,
167 NFSPROC_T *);
168 static int nfsrv_pnfsstatfs(struct statfs *, struct mount *);
169
170 int nfs_pnfsio(task_fn_t *, void *);
171
172 SYSCTL_NODE(_vfs, OID_AUTO, nfsd, CTLFLAG_RW | CTLFLAG_MPSAFE, 0,
173 "NFS server");
174 SYSCTL_INT(_vfs_nfsd, OID_AUTO, mirrormnt, CTLFLAG_RW,
175 &nfsrv_enable_crossmntpt, 0, "Enable nfsd to cross mount points");
176 SYSCTL_INT(_vfs_nfsd, OID_AUTO, commit_blks, CTLFLAG_RW, &nfs_commit_blks,
177 0, "");
178 SYSCTL_INT(_vfs_nfsd, OID_AUTO, commit_miss, CTLFLAG_RW, &nfs_commit_miss,
179 0, "");
180 SYSCTL_INT(_vfs_nfsd, OID_AUTO, issue_delegations, CTLFLAG_RW,
181 &nfsrv_issuedelegs, 0, "Enable nfsd to issue delegations");
182 SYSCTL_INT(_vfs_nfsd, OID_AUTO, debuglevel, CTLFLAG_RW, &nfsd_debuglevel,
183 0, "Debug level for NFS server");
184 NFSD_VNET_DECLARE(int, nfsd_enable_stringtouid);
185 SYSCTL_INT(_vfs_nfsd, OID_AUTO, enable_stringtouid,
186 CTLFLAG_NFSD_VNET | CTLFLAG_RW, &NFSD_VNET_NAME(nfsd_enable_stringtouid),
187 0, "Enable nfsd to accept numeric owner_names");
188 static int nfsrv_pnfsgetdsattr = 1;
189 SYSCTL_INT(_vfs_nfsd, OID_AUTO, pnfsgetdsattr, CTLFLAG_RW,
190 &nfsrv_pnfsgetdsattr, 0, "When set getattr gets DS attributes via RPC");
191 static bool nfsrv_recalldeleg = false;
192 SYSCTL_BOOL(_vfs_nfsd, OID_AUTO, recalldeleg, CTLFLAG_RW,
193 &nfsrv_recalldeleg, 0,
194 "When set remove/rename recalls delegations for same client");
195
196 /*
197 * nfsrv_dsdirsize can only be increased and only when the nfsd threads are
198 * not running.
199 * The dsN subdirectories for the increased values must have been created
200 * on all DS servers before this increase is done.
201 */
202 u_int nfsrv_dsdirsize = 20;
203 static int
sysctl_dsdirsize(SYSCTL_HANDLER_ARGS)204 sysctl_dsdirsize(SYSCTL_HANDLER_ARGS)
205 {
206 int error, newdsdirsize;
207
208 newdsdirsize = nfsrv_dsdirsize;
209 error = sysctl_handle_int(oidp, &newdsdirsize, 0, req);
210 if (error != 0 || req->newptr == NULL)
211 return (error);
212 if (newdsdirsize <= nfsrv_dsdirsize || newdsdirsize > 10000 ||
213 newnfs_numnfsd != 0)
214 return (EINVAL);
215 nfsrv_dsdirsize = newdsdirsize;
216 return (0);
217 }
218 SYSCTL_PROC(_vfs_nfsd, OID_AUTO, dsdirsize,
219 CTLTYPE_UINT | CTLFLAG_MPSAFE | CTLFLAG_RW, 0, sizeof(nfsrv_dsdirsize),
220 sysctl_dsdirsize, "IU", "Number of dsN subdirs on the DS servers");
221
222 /*
223 * nfs_srvmaxio can only be increased and only when the nfsd threads are
224 * not running. The setting must be a power of 2, with the current limit of
225 * 1Mbyte.
226 */
227 static int
sysctl_srvmaxio(SYSCTL_HANDLER_ARGS)228 sysctl_srvmaxio(SYSCTL_HANDLER_ARGS)
229 {
230 int error;
231 u_int newsrvmaxio;
232 uint64_t tval;
233
234 newsrvmaxio = nfs_srvmaxio;
235 error = sysctl_handle_int(oidp, &newsrvmaxio, 0, req);
236 if (error != 0 || req->newptr == NULL)
237 return (error);
238 if (newsrvmaxio == nfs_srvmaxio)
239 return (0);
240 if (newsrvmaxio < nfs_srvmaxio) {
241 printf("nfsd: vfs.nfsd.srvmaxio can only be increased\n");
242 return (EINVAL);
243 }
244 if (newsrvmaxio > 1048576) {
245 printf("nfsd: vfs.nfsd.srvmaxio cannot be > 1Mbyte\n");
246 return (EINVAL);
247 }
248 if ((newsrvmaxio & (newsrvmaxio - 1)) != 0) {
249 printf("nfsd: vfs.nfsd.srvmaxio must be a power of 2\n");
250 return (EINVAL);
251 }
252
253 /*
254 * Check that kern.ipc.maxsockbuf is large enough for
255 * newsrviomax, given the setting of vfs.nfs.bufpackets.
256 */
257 if ((newsrvmaxio + NFS_MAXXDR) * nfs_bufpackets >
258 sb_max_adj) {
259 /*
260 * Suggest vfs.nfs.bufpackets * maximum RPC message for
261 * sb_max_adj.
262 */
263 tval = (newsrvmaxio + NFS_MAXXDR) * nfs_bufpackets;
264
265 /*
266 * Convert suggested sb_max_adj value to a suggested
267 * sb_max value, which is what is set via kern.ipc.maxsockbuf.
268 * Perform the inverse calculation of (from uipc_sockbuf.c):
269 * sb_max_adj = (u_quad_t)sb_max * MCLBYTES /
270 * (MSIZE + MCLBYTES);
271 * XXX If the calculation of sb_max_adj from sb_max changes,
272 * this calculation must be changed as well.
273 */
274 tval *= (MSIZE + MCLBYTES); /* Brackets for readability. */
275 tval += MCLBYTES - 1; /* Round up divide. */
276 tval /= MCLBYTES;
277 printf("nfsd: set kern.ipc.maxsockbuf to a minimum of "
278 "%ju to support %ubyte NFS I/O\n", (uintmax_t)tval,
279 newsrvmaxio);
280 return (EINVAL);
281 }
282
283 NFSD_LOCK();
284 if (newnfs_numnfsd != 0) {
285 NFSD_UNLOCK();
286 printf("nfsd: cannot set vfs.nfsd.srvmaxio when nfsd "
287 "threads are running\n");
288 return (EINVAL);
289 }
290
291
292 nfs_srvmaxio = newsrvmaxio;
293 NFSD_UNLOCK();
294 return (0);
295 }
296 SYSCTL_PROC(_vfs_nfsd, OID_AUTO, srvmaxio,
297 CTLTYPE_UINT | CTLFLAG_MPSAFE | CTLFLAG_RW, NULL, 0,
298 sysctl_srvmaxio, "IU", "Maximum I/O size in bytes");
299
300 static int
sysctl_dolocallocks(SYSCTL_HANDLER_ARGS)301 sysctl_dolocallocks(SYSCTL_HANDLER_ARGS)
302 {
303 int error, igotlock, newdolocallocks;
304
305 newdolocallocks = nfsrv_dolocallocks;
306 error = sysctl_handle_int(oidp, &newdolocallocks, 0, req);
307 if (error != 0 || req->newptr == NULL)
308 return (error);
309 if (newdolocallocks == nfsrv_dolocallocks)
310 return (0);
311 if (jailed(curthread->td_ucred))
312 return (EINVAL);
313
314 NFSLOCKV4ROOTMUTEX();
315 do {
316 igotlock = nfsv4_lock(&nfsv4rootfs_lock, 1, NULL,
317 NFSV4ROOTLOCKMUTEXPTR, NULL);
318 } while (!igotlock);
319 NFSUNLOCKV4ROOTMUTEX();
320
321 nfsrv_dolocallocks = newdolocallocks;
322
323 NFSLOCKV4ROOTMUTEX();
324 nfsv4_unlock(&nfsv4rootfs_lock, 0);
325 NFSUNLOCKV4ROOTMUTEX();
326 return (0);
327 }
328 SYSCTL_PROC(_vfs_nfsd, OID_AUTO, enable_locallocks,
329 CTLTYPE_INT | CTLFLAG_MPSAFE | CTLFLAG_RW, NULL, 0,
330 sysctl_dolocallocks, "IU", "Enable nfsd to acquire local locks on files");
331
332 #define MAX_REORDERED_RPC 16
333 #define NUM_HEURISTIC 1031
334 #define NHUSE_INIT 64
335 #define NHUSE_INC 16
336 #define NHUSE_MAX 2048
337
338 static struct nfsheur {
339 struct vnode *nh_vp; /* vp to match (unreferenced pointer) */
340 off_t nh_nextoff; /* next offset for sequential detection */
341 int nh_use; /* use count for selection */
342 int nh_seqcount; /* heuristic */
343 } nfsheur[NUM_HEURISTIC];
344
345 /*
346 * Heuristic to detect sequential operation.
347 */
348 static struct nfsheur *
nfsrv_sequential_heuristic(struct uio * uio,struct vnode * vp)349 nfsrv_sequential_heuristic(struct uio *uio, struct vnode *vp)
350 {
351 struct nfsheur *nh;
352 int hi, try;
353
354 /* Locate best candidate. */
355 try = 32;
356 hi = ((int)(vm_offset_t)vp / sizeof(struct vnode)) % NUM_HEURISTIC;
357 nh = &nfsheur[hi];
358 while (try--) {
359 if (nfsheur[hi].nh_vp == vp) {
360 nh = &nfsheur[hi];
361 break;
362 }
363 if (nfsheur[hi].nh_use > 0)
364 --nfsheur[hi].nh_use;
365 hi = (hi + 1) % NUM_HEURISTIC;
366 if (nfsheur[hi].nh_use < nh->nh_use)
367 nh = &nfsheur[hi];
368 }
369
370 /* Initialize hint if this is a new file. */
371 if (nh->nh_vp != vp) {
372 nh->nh_vp = vp;
373 nh->nh_nextoff = uio->uio_offset;
374 nh->nh_use = NHUSE_INIT;
375 if (uio->uio_offset == 0)
376 nh->nh_seqcount = 4;
377 else
378 nh->nh_seqcount = 1;
379 }
380
381 /* Calculate heuristic. */
382 if ((uio->uio_offset == 0 && nh->nh_seqcount > 0) ||
383 uio->uio_offset == nh->nh_nextoff) {
384 /* See comments in vfs_vnops.c:sequential_heuristic(). */
385 nh->nh_seqcount += howmany(uio->uio_resid, 16384);
386 if (nh->nh_seqcount > IO_SEQMAX)
387 nh->nh_seqcount = IO_SEQMAX;
388 } else if (qabs(uio->uio_offset - nh->nh_nextoff) <= MAX_REORDERED_RPC *
389 imax(vp->v_mount->mnt_stat.f_iosize, uio->uio_resid)) {
390 /* Probably a reordered RPC, leave seqcount alone. */
391 } else if (nh->nh_seqcount > 1) {
392 nh->nh_seqcount /= 2;
393 } else {
394 nh->nh_seqcount = 0;
395 }
396 nh->nh_use += NHUSE_INC;
397 if (nh->nh_use > NHUSE_MAX)
398 nh->nh_use = NHUSE_MAX;
399 return (nh);
400 }
401
402 /*
403 * Get attributes into nfsvattr structure.
404 */
405 int
nfsvno_getattr(struct vnode * vp,struct nfsvattr * nvap,struct nfsrv_descript * nd,struct thread * p,int vpislocked,nfsattrbit_t * attrbitp)406 nfsvno_getattr(struct vnode *vp, struct nfsvattr *nvap,
407 struct nfsrv_descript *nd, struct thread *p, int vpislocked,
408 nfsattrbit_t *attrbitp)
409 {
410 int error, gotattr, lockedit = 0;
411 struct nfsvattr na;
412
413 if (vpislocked == 0) {
414 /*
415 * When vpislocked == 0, the vnode is either exclusively
416 * locked by this thread or not locked by this thread.
417 * As such, shared lock it, if not exclusively locked.
418 */
419 if (NFSVOPISLOCKED(vp) != LK_EXCLUSIVE) {
420 lockedit = 1;
421 NFSVOPLOCK(vp, LK_SHARED | LK_RETRY);
422 }
423 }
424
425 /*
426 * Acquire the Change, Size, TimeAccess, TimeModify and SpaceUsed
427 * attributes, as required.
428 * This needs to be done for regular files if:
429 * - non-NFSv4 RPCs or
430 * - when attrbitp == NULL or
431 * - an NFSv4 RPC with any of the above attributes in attrbitp.
432 * A return of 0 for nfsrv_proxyds() indicates that it has acquired
433 * these attributes. nfsrv_proxyds() will return an error if the
434 * server is not a pNFS one.
435 */
436 gotattr = 0;
437 if (vp->v_type == VREG && nfsrv_devidcnt > 0 && (attrbitp == NULL ||
438 (nd->nd_flag & ND_NFSV4) == 0 ||
439 NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_CHANGE) ||
440 NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_SIZE) ||
441 NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_TIMEACCESS) ||
442 NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_TIMEMODIFY) ||
443 NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_SPACEUSED))) {
444 error = nfsrv_proxyds(vp, 0, 0, nd->nd_cred, p,
445 NFSPROC_GETATTR, NULL, NULL, NULL, &na, NULL, NULL, 0,
446 NULL);
447 if (error == 0)
448 gotattr = 1;
449 }
450
451 nvap->na_bsdflags = 0;
452 nvap->na_flags = 0;
453 error = VOP_GETATTR(vp, &nvap->na_vattr, nd->nd_cred);
454 if (lockedit != 0)
455 NFSVOPUNLOCK(vp);
456
457 /*
458 * If we got the Change, Size and Modify Time from the DS,
459 * replace them.
460 */
461 if (gotattr != 0) {
462 nvap->na_atime = na.na_atime;
463 nvap->na_mtime = na.na_mtime;
464 nvap->na_filerev = na.na_filerev;
465 nvap->na_size = na.na_size;
466 nvap->na_bytes = na.na_bytes;
467 }
468 NFSD_DEBUG(4, "nfsvno_getattr: gotattr=%d err=%d chg=%ju\n", gotattr,
469 error, (uintmax_t)na.na_filerev);
470
471 NFSEXITCODE(error);
472 return (error);
473 }
474
475 /*
476 * Get a file handle for a vnode.
477 */
478 int
nfsvno_getfh(struct vnode * vp,fhandle_t * fhp,struct thread * p)479 nfsvno_getfh(struct vnode *vp, fhandle_t *fhp, struct thread *p)
480 {
481 int error;
482
483 NFSBZERO((caddr_t)fhp, sizeof(fhandle_t));
484 fhp->fh_fsid = vp->v_mount->mnt_stat.f_fsid;
485 error = VOP_VPTOFH(vp, &fhp->fh_fid);
486
487 NFSEXITCODE(error);
488 return (error);
489 }
490
491 /*
492 * Perform access checking for vnodes obtained from file handles that would
493 * refer to files already opened by a Unix client. You cannot just use
494 * vn_writechk() and VOP_ACCESSX() for two reasons.
495 * 1 - You must check for exported rdonly as well as MNT_RDONLY for the write
496 * case.
497 * 2 - The owner is to be given access irrespective of mode bits for some
498 * operations, so that processes that chmod after opening a file don't
499 * break.
500 */
501 int
nfsvno_accchk(struct vnode * vp,accmode_t accmode,struct ucred * cred,struct nfsexstuff * exp,struct thread * p,int override,int vpislocked,u_int32_t * supportedtypep)502 nfsvno_accchk(struct vnode *vp, accmode_t accmode, struct ucred *cred,
503 struct nfsexstuff *exp, struct thread *p, int override, int vpislocked,
504 u_int32_t *supportedtypep)
505 {
506 struct vattr vattr;
507 int error = 0, getret = 0;
508
509 if (vpislocked == 0) {
510 if (NFSVOPLOCK(vp, LK_SHARED) != 0) {
511 error = EPERM;
512 goto out;
513 }
514 }
515 if (accmode & VWRITE) {
516 /* Just vn_writechk() changed to check rdonly */
517 /*
518 * Disallow write attempts on read-only file systems;
519 * unless the file is a socket or a block or character
520 * device resident on the file system.
521 */
522 if (NFSVNO_EXRDONLY(exp) ||
523 (vp->v_mount->mnt_flag & MNT_RDONLY)) {
524 switch (vp->v_type) {
525 case VREG:
526 case VDIR:
527 case VLNK:
528 error = EROFS;
529 default:
530 break;
531 }
532 }
533 /*
534 * If there's shared text associated with
535 * the inode, try to free it up once. If
536 * we fail, we can't allow writing.
537 */
538 if (VOP_IS_TEXT(vp) && error == 0)
539 error = ETXTBSY;
540 }
541 if (error != 0) {
542 if (vpislocked == 0)
543 NFSVOPUNLOCK(vp);
544 goto out;
545 }
546
547 /*
548 * Should the override still be applied when ACLs are enabled?
549 */
550 error = VOP_ACCESSX(vp, accmode, cred, p);
551 if (error != 0 && (accmode & (VDELETE | VDELETE_CHILD))) {
552 /*
553 * Try again with VEXPLICIT_DENY, to see if the test for
554 * deletion is supported.
555 */
556 error = VOP_ACCESSX(vp, accmode | VEXPLICIT_DENY, cred, p);
557 if (error == 0) {
558 if (vp->v_type == VDIR) {
559 accmode &= ~(VDELETE | VDELETE_CHILD);
560 accmode |= VWRITE;
561 error = VOP_ACCESSX(vp, accmode, cred, p);
562 } else if (supportedtypep != NULL) {
563 *supportedtypep &= ~NFSACCESS_DELETE;
564 }
565 }
566 }
567
568 /*
569 * Allow certain operations for the owner (reads and writes
570 * on files that are already open).
571 */
572 if (override != NFSACCCHK_NOOVERRIDE &&
573 (error == EPERM || error == EACCES)) {
574 if (cred->cr_uid == 0 && (override & NFSACCCHK_ALLOWROOT))
575 error = 0;
576 else if (override & NFSACCCHK_ALLOWOWNER) {
577 getret = VOP_GETATTR(vp, &vattr, cred);
578 if (getret == 0 && cred->cr_uid == vattr.va_uid)
579 error = 0;
580 }
581 }
582 if (vpislocked == 0)
583 NFSVOPUNLOCK(vp);
584
585 out:
586 NFSEXITCODE(error);
587 return (error);
588 }
589
590 /*
591 * Set attribute(s) vnop.
592 */
593 int
nfsvno_setattr(struct vnode * vp,struct nfsvattr * nvap,struct ucred * cred,struct thread * p,struct nfsexstuff * exp)594 nfsvno_setattr(struct vnode *vp, struct nfsvattr *nvap, struct ucred *cred,
595 struct thread *p, struct nfsexstuff *exp)
596 {
597 u_quad_t savsize = 0;
598 int error, savedit;
599 time_t savbtime;
600
601 /*
602 * If this is an exported file system and a pNFS service is running,
603 * don't VOP_SETATTR() of size for the MDS file system.
604 */
605 savedit = 0;
606 error = 0;
607 if (vp->v_type == VREG && (vp->v_mount->mnt_flag & MNT_EXPORTED) != 0 &&
608 nfsrv_devidcnt != 0 && nvap->na_vattr.va_size != VNOVAL &&
609 nvap->na_vattr.va_size > 0) {
610 savsize = nvap->na_vattr.va_size;
611 nvap->na_vattr.va_size = VNOVAL;
612 if (nvap->na_vattr.va_uid != (uid_t)VNOVAL ||
613 nvap->na_vattr.va_gid != (gid_t)VNOVAL ||
614 nvap->na_vattr.va_mode != (mode_t)VNOVAL ||
615 nvap->na_vattr.va_atime.tv_sec != VNOVAL ||
616 nvap->na_vattr.va_mtime.tv_sec != VNOVAL)
617 savedit = 1;
618 else
619 savedit = 2;
620 }
621 if (savedit != 2)
622 error = VOP_SETATTR(vp, &nvap->na_vattr, cred);
623 if (savedit != 0)
624 nvap->na_vattr.va_size = savsize;
625 if (error == 0 && (nvap->na_vattr.va_uid != (uid_t)VNOVAL ||
626 nvap->na_vattr.va_gid != (gid_t)VNOVAL ||
627 nvap->na_vattr.va_size != VNOVAL ||
628 nvap->na_vattr.va_mode != (mode_t)VNOVAL ||
629 nvap->na_vattr.va_atime.tv_sec != VNOVAL ||
630 nvap->na_vattr.va_mtime.tv_sec != VNOVAL)) {
631 /* Never modify birthtime on a DS file. */
632 savbtime = nvap->na_vattr.va_birthtime.tv_sec;
633 nvap->na_vattr.va_birthtime.tv_sec = VNOVAL;
634 /* For a pNFS server, set the attributes on the DS file. */
635 error = nfsrv_proxyds(vp, 0, 0, cred, p, NFSPROC_SETATTR,
636 NULL, NULL, NULL, nvap, NULL, NULL, 0, NULL);
637 nvap->na_vattr.va_birthtime.tv_sec = savbtime;
638 if (error == ENOENT)
639 error = 0;
640 }
641 NFSEXITCODE(error);
642 return (error);
643 }
644
645 /*
646 * Set up nameidata for a lookup() call and do it.
647 */
648 int
nfsvno_namei(struct nfsrv_descript * nd,struct nameidata * ndp,struct vnode * dp,int islocked,struct nfsexstuff * exp,struct vnode ** retdirp)649 nfsvno_namei(struct nfsrv_descript *nd, struct nameidata *ndp,
650 struct vnode *dp, int islocked, struct nfsexstuff *exp,
651 struct vnode **retdirp)
652 {
653 struct componentname *cnp = &ndp->ni_cnd;
654 int i;
655 struct iovec aiov;
656 struct uio auio;
657 int lockleaf = (cnp->cn_flags & LOCKLEAF) != 0, linklen;
658 int error = 0;
659 char *cp;
660
661 *retdirp = NULL;
662 cnp->cn_nameptr = cnp->cn_pnbuf;
663 ndp->ni_lcf = 0;
664 /*
665 * Extract and set starting directory.
666 */
667 if (dp->v_type != VDIR) {
668 if (islocked)
669 vput(dp);
670 else
671 vrele(dp);
672 nfsvno_relpathbuf(ndp);
673 error = ENOTDIR;
674 goto out1;
675 }
676 if (islocked)
677 NFSVOPUNLOCK(dp);
678 VREF(dp);
679 *retdirp = dp;
680 if (NFSVNO_EXRDONLY(exp))
681 cnp->cn_flags |= RDONLY;
682 ndp->ni_segflg = UIO_SYSSPACE;
683
684 if (nd->nd_flag & ND_PUBLOOKUP) {
685 ndp->ni_loopcnt = 0;
686 if (cnp->cn_pnbuf[0] == '/') {
687 vrele(dp);
688 /*
689 * Check for degenerate pathnames here, since lookup()
690 * panics on them.
691 */
692 for (i = 1; i < ndp->ni_pathlen; i++)
693 if (cnp->cn_pnbuf[i] != '/')
694 break;
695 if (i == ndp->ni_pathlen) {
696 error = NFSERR_ACCES;
697 goto out;
698 }
699 dp = rootvnode;
700 VREF(dp);
701 }
702 } else if ((nfsrv_enable_crossmntpt == 0 && NFSVNO_EXPORTED(exp)) ||
703 (nd->nd_flag & ND_NFSV4) == 0) {
704 /*
705 * Only cross mount points for NFSv4 when doing a
706 * mount while traversing the file system above
707 * the mount point, unless nfsrv_enable_crossmntpt is set.
708 */
709 cnp->cn_flags |= NOCROSSMOUNT;
710 }
711
712 /*
713 * Initialize for scan, set ni_startdir and bump ref on dp again
714 * because lookup() will dereference ni_startdir.
715 */
716
717 ndp->ni_startdir = dp;
718 ndp->ni_rootdir = rootvnode;
719 ndp->ni_topdir = NULL;
720
721 if (!lockleaf)
722 cnp->cn_flags |= LOCKLEAF;
723 for (;;) {
724 cnp->cn_nameptr = cnp->cn_pnbuf;
725 /*
726 * Call lookup() to do the real work. If an error occurs,
727 * ndp->ni_vp and ni_dvp are left uninitialized or NULL and
728 * we do not have to dereference anything before returning.
729 * In either case ni_startdir will be dereferenced and NULLed
730 * out.
731 */
732 error = vfs_lookup(ndp);
733 if (error)
734 break;
735
736 /*
737 * Check for encountering a symbolic link. Trivial
738 * termination occurs if no symlink encountered.
739 */
740 if ((cnp->cn_flags & ISSYMLINK) == 0) {
741 if (ndp->ni_vp && !lockleaf)
742 NFSVOPUNLOCK(ndp->ni_vp);
743 break;
744 }
745
746 /*
747 * Validate symlink
748 */
749 if ((cnp->cn_flags & LOCKPARENT) && ndp->ni_pathlen == 1)
750 NFSVOPUNLOCK(ndp->ni_dvp);
751 if (!(nd->nd_flag & ND_PUBLOOKUP)) {
752 error = EINVAL;
753 goto badlink2;
754 }
755
756 if (ndp->ni_loopcnt++ >= MAXSYMLINKS) {
757 error = ELOOP;
758 goto badlink2;
759 }
760 if (ndp->ni_pathlen > 1)
761 cp = uma_zalloc(namei_zone, M_WAITOK);
762 else
763 cp = cnp->cn_pnbuf;
764 aiov.iov_base = cp;
765 aiov.iov_len = MAXPATHLEN;
766 auio.uio_iov = &aiov;
767 auio.uio_iovcnt = 1;
768 auio.uio_offset = 0;
769 auio.uio_rw = UIO_READ;
770 auio.uio_segflg = UIO_SYSSPACE;
771 auio.uio_td = NULL;
772 auio.uio_resid = MAXPATHLEN;
773 error = VOP_READLINK(ndp->ni_vp, &auio, cnp->cn_cred);
774 if (error) {
775 badlink1:
776 if (ndp->ni_pathlen > 1)
777 uma_zfree(namei_zone, cp);
778 badlink2:
779 vrele(ndp->ni_dvp);
780 vput(ndp->ni_vp);
781 break;
782 }
783 linklen = MAXPATHLEN - auio.uio_resid;
784 if (linklen == 0) {
785 error = ENOENT;
786 goto badlink1;
787 }
788 if (linklen + ndp->ni_pathlen >= MAXPATHLEN) {
789 error = ENAMETOOLONG;
790 goto badlink1;
791 }
792
793 /*
794 * Adjust or replace path
795 */
796 if (ndp->ni_pathlen > 1) {
797 NFSBCOPY(ndp->ni_next, cp + linklen, ndp->ni_pathlen);
798 uma_zfree(namei_zone, cnp->cn_pnbuf);
799 cnp->cn_pnbuf = cp;
800 } else
801 cnp->cn_pnbuf[linklen] = '\0';
802 ndp->ni_pathlen += linklen;
803
804 /*
805 * Cleanup refs for next loop and check if root directory
806 * should replace current directory. Normally ni_dvp
807 * becomes the new base directory and is cleaned up when
808 * we loop. Explicitly null pointers after invalidation
809 * to clarify operation.
810 */
811 vput(ndp->ni_vp);
812 ndp->ni_vp = NULL;
813
814 if (cnp->cn_pnbuf[0] == '/') {
815 vrele(ndp->ni_dvp);
816 ndp->ni_dvp = ndp->ni_rootdir;
817 VREF(ndp->ni_dvp);
818 }
819 ndp->ni_startdir = ndp->ni_dvp;
820 ndp->ni_dvp = NULL;
821 }
822 if (!lockleaf)
823 cnp->cn_flags &= ~LOCKLEAF;
824
825 out:
826 if (error) {
827 nfsvno_relpathbuf(ndp);
828 ndp->ni_vp = NULL;
829 ndp->ni_dvp = NULL;
830 ndp->ni_startdir = NULL;
831 } else if ((ndp->ni_cnd.cn_flags & (WANTPARENT|LOCKPARENT)) == 0) {
832 ndp->ni_dvp = NULL;
833 }
834
835 out1:
836 NFSEXITCODE2(error, nd);
837 return (error);
838 }
839
840 /*
841 * Set up a pathname buffer and return a pointer to it and, optionally
842 * set a hash pointer.
843 */
844 void
nfsvno_setpathbuf(struct nameidata * ndp,char ** bufpp,u_long ** hashpp)845 nfsvno_setpathbuf(struct nameidata *ndp, char **bufpp, u_long **hashpp)
846 {
847 struct componentname *cnp = &ndp->ni_cnd;
848
849 cnp->cn_flags |= (NOMACCHECK);
850 cnp->cn_pnbuf = uma_zalloc(namei_zone, M_WAITOK);
851 if (hashpp != NULL)
852 *hashpp = NULL;
853 *bufpp = cnp->cn_pnbuf;
854 }
855
856 /*
857 * Release the above path buffer, if not released by nfsvno_namei().
858 */
859 void
nfsvno_relpathbuf(struct nameidata * ndp)860 nfsvno_relpathbuf(struct nameidata *ndp)
861 {
862
863 uma_zfree(namei_zone, ndp->ni_cnd.cn_pnbuf);
864 ndp->ni_cnd.cn_pnbuf = NULL;
865 }
866
867 /*
868 * Readlink vnode op into an mbuf list.
869 */
870 int
nfsvno_readlink(struct vnode * vp,struct ucred * cred,int maxextsiz,struct thread * p,struct mbuf ** mpp,struct mbuf ** mpendp,int * lenp)871 nfsvno_readlink(struct vnode *vp, struct ucred *cred, int maxextsiz,
872 struct thread *p, struct mbuf **mpp, struct mbuf **mpendp, int *lenp)
873 {
874 struct iovec *iv;
875 struct uio io, *uiop = &io;
876 struct mbuf *mp, *mp3;
877 int len, tlen, error = 0;
878
879 len = NFS_MAXPATHLEN;
880 if (maxextsiz > 0)
881 uiop->uio_iovcnt = nfsrv_createiovec_extpgs(len, maxextsiz,
882 &mp3, &mp, &iv);
883 else
884 uiop->uio_iovcnt = nfsrv_createiovec(len, &mp3, &mp, &iv);
885 uiop->uio_iov = iv;
886 uiop->uio_offset = 0;
887 uiop->uio_resid = len;
888 uiop->uio_rw = UIO_READ;
889 uiop->uio_segflg = UIO_SYSSPACE;
890 uiop->uio_td = NULL;
891 error = VOP_READLINK(vp, uiop, cred);
892 free(iv, M_TEMP);
893 if (error) {
894 m_freem(mp3);
895 *lenp = 0;
896 goto out;
897 }
898 if (uiop->uio_resid > 0) {
899 len -= uiop->uio_resid;
900 tlen = NFSM_RNDUP(len);
901 if (tlen == 0) {
902 m_freem(mp3);
903 mp3 = mp = NULL;
904 } else if (tlen != NFS_MAXPATHLEN || tlen != len)
905 mp = nfsrv_adj(mp3, NFS_MAXPATHLEN - tlen,
906 tlen - len);
907 }
908 *lenp = len;
909 *mpp = mp3;
910 *mpendp = mp;
911
912 out:
913 NFSEXITCODE(error);
914 return (error);
915 }
916
917 /*
918 * Create an mbuf chain and an associated iovec that can be used to Read
919 * or Getextattr of data.
920 * Upon success, return pointers to the first and last mbufs in the chain
921 * plus the malloc'd iovec and its iovlen.
922 */
923 static int
nfsrv_createiovec(int len,struct mbuf ** mpp,struct mbuf ** mpendp,struct iovec ** ivp)924 nfsrv_createiovec(int len, struct mbuf **mpp, struct mbuf **mpendp,
925 struct iovec **ivp)
926 {
927 struct mbuf *m, *m2 = NULL, *m3;
928 struct iovec *iv;
929 int i, left, siz;
930
931 left = len;
932 m3 = NULL;
933 /*
934 * Generate the mbuf list with the uio_iov ref. to it.
935 */
936 i = 0;
937 while (left > 0) {
938 NFSMGET(m);
939 MCLGET(m, M_WAITOK);
940 m->m_len = 0;
941 siz = min(M_TRAILINGSPACE(m), left);
942 left -= siz;
943 i++;
944 if (m3)
945 m2->m_next = m;
946 else
947 m3 = m;
948 m2 = m;
949 }
950 *ivp = iv = malloc(i * sizeof (struct iovec), M_TEMP, M_WAITOK);
951 m = m3;
952 left = len;
953 i = 0;
954 while (left > 0) {
955 if (m == NULL)
956 panic("nfsrv_createiovec iov");
957 siz = min(M_TRAILINGSPACE(m), left);
958 if (siz > 0) {
959 iv->iov_base = mtod(m, caddr_t) + m->m_len;
960 iv->iov_len = siz;
961 m->m_len += siz;
962 left -= siz;
963 iv++;
964 i++;
965 }
966 m = m->m_next;
967 }
968 *mpp = m3;
969 *mpendp = m2;
970 return (i);
971 }
972
973 /*
974 * Create an mbuf chain and an associated iovec that can be used to Read
975 * or Getextattr of data.
976 * Upon success, return pointers to the first and last mbufs in the chain
977 * plus the malloc'd iovec and its iovlen.
978 * Same as above, but creates ext_pgs mbuf(s).
979 */
980 static int
nfsrv_createiovec_extpgs(int len,int maxextsiz,struct mbuf ** mpp,struct mbuf ** mpendp,struct iovec ** ivp)981 nfsrv_createiovec_extpgs(int len, int maxextsiz, struct mbuf **mpp,
982 struct mbuf **mpendp, struct iovec **ivp)
983 {
984 struct mbuf *m, *m2 = NULL, *m3;
985 struct iovec *iv;
986 int i, left, pgno, siz;
987
988 left = len;
989 m3 = NULL;
990 /*
991 * Generate the mbuf list with the uio_iov ref. to it.
992 */
993 i = 0;
994 while (left > 0) {
995 siz = min(left, maxextsiz);
996 m = mb_alloc_ext_plus_pages(siz, M_WAITOK);
997 left -= siz;
998 i += m->m_epg_npgs;
999 if (m3 != NULL)
1000 m2->m_next = m;
1001 else
1002 m3 = m;
1003 m2 = m;
1004 }
1005 *ivp = iv = malloc(i * sizeof (struct iovec), M_TEMP, M_WAITOK);
1006 m = m3;
1007 left = len;
1008 i = 0;
1009 pgno = 0;
1010 while (left > 0) {
1011 if (m == NULL)
1012 panic("nfsvno_createiovec_extpgs iov");
1013 siz = min(PAGE_SIZE, left);
1014 if (siz > 0) {
1015 iv->iov_base = (void *)PHYS_TO_DMAP(m->m_epg_pa[pgno]);
1016 iv->iov_len = siz;
1017 m->m_len += siz;
1018 if (pgno == m->m_epg_npgs - 1)
1019 m->m_epg_last_len = siz;
1020 left -= siz;
1021 iv++;
1022 i++;
1023 pgno++;
1024 }
1025 if (pgno == m->m_epg_npgs && left > 0) {
1026 m = m->m_next;
1027 if (m == NULL)
1028 panic("nfsvno_createiovec_extpgs iov");
1029 pgno = 0;
1030 }
1031 }
1032 *mpp = m3;
1033 *mpendp = m2;
1034 return (i);
1035 }
1036
1037 /*
1038 * Read vnode op call into mbuf list.
1039 */
1040 int
nfsvno_read(struct vnode * vp,off_t off,int cnt,struct ucred * cred,int maxextsiz,struct thread * p,struct mbuf ** mpp,struct mbuf ** mpendp)1041 nfsvno_read(struct vnode *vp, off_t off, int cnt, struct ucred *cred,
1042 int maxextsiz, struct thread *p, struct mbuf **mpp,
1043 struct mbuf **mpendp)
1044 {
1045 struct mbuf *m;
1046 struct iovec *iv;
1047 int error = 0, len, tlen, ioflag = 0;
1048 struct mbuf *m3;
1049 struct uio io, *uiop = &io;
1050 struct nfsheur *nh;
1051
1052 /*
1053 * Attempt to read from a DS file. A return of ENOENT implies
1054 * there is no DS file to read.
1055 */
1056 error = nfsrv_proxyds(vp, off, cnt, cred, p, NFSPROC_READDS, mpp,
1057 NULL, mpendp, NULL, NULL, NULL, 0, NULL);
1058 if (error != ENOENT)
1059 return (error);
1060
1061 len = NFSM_RNDUP(cnt);
1062 if (maxextsiz > 0)
1063 uiop->uio_iovcnt = nfsrv_createiovec_extpgs(len, maxextsiz,
1064 &m3, &m, &iv);
1065 else
1066 uiop->uio_iovcnt = nfsrv_createiovec(len, &m3, &m, &iv);
1067 uiop->uio_iov = iv;
1068 uiop->uio_offset = off;
1069 uiop->uio_resid = len;
1070 uiop->uio_rw = UIO_READ;
1071 uiop->uio_segflg = UIO_SYSSPACE;
1072 uiop->uio_td = NULL;
1073 nh = nfsrv_sequential_heuristic(uiop, vp);
1074 ioflag |= nh->nh_seqcount << IO_SEQSHIFT;
1075 /* XXX KDM make this more systematic? */
1076 NFSD_VNET(nfsstatsv1_p)->srvbytes[NFSV4OP_READ] += uiop->uio_resid;
1077 error = VOP_READ(vp, uiop, IO_NODELOCKED | ioflag, cred);
1078 free(iv, M_TEMP);
1079 if (error) {
1080 m_freem(m3);
1081 *mpp = NULL;
1082 goto out;
1083 }
1084 nh->nh_nextoff = uiop->uio_offset;
1085 tlen = len - uiop->uio_resid;
1086 cnt = cnt < tlen ? cnt : tlen;
1087 tlen = NFSM_RNDUP(cnt);
1088 if (tlen == 0) {
1089 m_freem(m3);
1090 m3 = m = NULL;
1091 } else if (len != tlen || tlen != cnt)
1092 m = nfsrv_adj(m3, len - tlen, tlen - cnt);
1093 *mpp = m3;
1094 *mpendp = m;
1095
1096 out:
1097 NFSEXITCODE(error);
1098 return (error);
1099 }
1100
1101 /*
1102 * Create the iovec for the mbuf chain passed in as an argument.
1103 * The "cp" argument is where the data starts within the first mbuf in
1104 * the chain. It returns the iovec and the iovcnt.
1105 */
1106 static int
nfsrv_createiovecw(int retlen,struct mbuf * m,char * cp,struct iovec ** ivpp,int * iovcntp)1107 nfsrv_createiovecw(int retlen, struct mbuf *m, char *cp, struct iovec **ivpp,
1108 int *iovcntp)
1109 {
1110 struct mbuf *mp;
1111 struct iovec *ivp;
1112 int cnt, i, len;
1113
1114 /*
1115 * Loop through the mbuf chain, counting how many mbufs are a
1116 * part of this write operation, so the iovec size is known.
1117 */
1118 cnt = 0;
1119 len = retlen;
1120 mp = m;
1121 i = mtod(mp, caddr_t) + mp->m_len - cp;
1122 while (len > 0) {
1123 if (i > 0) {
1124 len -= i;
1125 cnt++;
1126 }
1127 mp = mp->m_next;
1128 if (!mp) {
1129 if (len > 0)
1130 return (EBADRPC);
1131 } else
1132 i = mp->m_len;
1133 }
1134
1135 /* Now, create the iovec. */
1136 mp = m;
1137 *ivpp = ivp = malloc(cnt * sizeof (struct iovec), M_TEMP,
1138 M_WAITOK);
1139 *iovcntp = cnt;
1140 i = mtod(mp, caddr_t) + mp->m_len - cp;
1141 len = retlen;
1142 while (len > 0) {
1143 if (mp == NULL)
1144 panic("nfsrv_createiovecw");
1145 if (i > 0) {
1146 i = min(i, len);
1147 ivp->iov_base = cp;
1148 ivp->iov_len = i;
1149 ivp++;
1150 len -= i;
1151 }
1152 mp = mp->m_next;
1153 if (mp) {
1154 i = mp->m_len;
1155 cp = mtod(mp, caddr_t);
1156 }
1157 }
1158 return (0);
1159 }
1160
1161 /*
1162 * Write vnode op from an mbuf list.
1163 */
1164 int
nfsvno_write(struct vnode * vp,off_t off,int retlen,int * stable,struct mbuf * mp,char * cp,struct ucred * cred,struct thread * p)1165 nfsvno_write(struct vnode *vp, off_t off, int retlen, int *stable,
1166 struct mbuf *mp, char *cp, struct ucred *cred, struct thread *p)
1167 {
1168 struct iovec *iv;
1169 int cnt, ioflags, error;
1170 struct uio io, *uiop = &io;
1171 struct nfsheur *nh;
1172
1173 /*
1174 * Attempt to write to a DS file. A return of ENOENT implies
1175 * there is no DS file to write.
1176 */
1177 error = nfsrv_proxyds(vp, off, retlen, cred, p, NFSPROC_WRITEDS,
1178 &mp, cp, NULL, NULL, NULL, NULL, 0, NULL);
1179 if (error != ENOENT) {
1180 *stable = NFSWRITE_FILESYNC;
1181 return (error);
1182 }
1183
1184 if (*stable == NFSWRITE_UNSTABLE)
1185 ioflags = IO_NODELOCKED;
1186 else
1187 ioflags = (IO_SYNC | IO_NODELOCKED);
1188 error = nfsrv_createiovecw(retlen, mp, cp, &iv, &cnt);
1189 if (error != 0)
1190 return (error);
1191 uiop->uio_iov = iv;
1192 uiop->uio_iovcnt = cnt;
1193 uiop->uio_resid = retlen;
1194 uiop->uio_rw = UIO_WRITE;
1195 uiop->uio_segflg = UIO_SYSSPACE;
1196 NFSUIOPROC(uiop, p);
1197 uiop->uio_offset = off;
1198 nh = nfsrv_sequential_heuristic(uiop, vp);
1199 ioflags |= nh->nh_seqcount << IO_SEQSHIFT;
1200 /* XXX KDM make this more systematic? */
1201 NFSD_VNET(nfsstatsv1_p)->srvbytes[NFSV4OP_WRITE] += uiop->uio_resid;
1202 error = VOP_WRITE(vp, uiop, ioflags, cred);
1203 if (error == 0)
1204 nh->nh_nextoff = uiop->uio_offset;
1205 free(iv, M_TEMP);
1206
1207 NFSEXITCODE(error);
1208 return (error);
1209 }
1210
1211 /*
1212 * Common code for creating a regular file (plus special files for V2).
1213 */
1214 int
nfsvno_createsub(struct nfsrv_descript * nd,struct nameidata * ndp,struct vnode ** vpp,struct nfsvattr * nvap,int * exclusive_flagp,int32_t * cverf,NFSDEV_T rdev,struct nfsexstuff * exp)1215 nfsvno_createsub(struct nfsrv_descript *nd, struct nameidata *ndp,
1216 struct vnode **vpp, struct nfsvattr *nvap, int *exclusive_flagp,
1217 int32_t *cverf, NFSDEV_T rdev, struct nfsexstuff *exp)
1218 {
1219 u_quad_t tempsize;
1220 int error;
1221 struct thread *p = curthread;
1222
1223 error = nd->nd_repstat;
1224 if (!error && ndp->ni_vp == NULL) {
1225 if (nvap->na_type == VREG || nvap->na_type == VSOCK) {
1226 error = VOP_CREATE(ndp->ni_dvp,
1227 &ndp->ni_vp, &ndp->ni_cnd, &nvap->na_vattr);
1228 /* For a pNFS server, create the data file on a DS. */
1229 if (error == 0 && nvap->na_type == VREG) {
1230 /*
1231 * Create a data file on a DS for a pNFS server.
1232 * This function just returns if not
1233 * running a pNFS DS or the creation fails.
1234 */
1235 nfsrv_pnfscreate(ndp->ni_vp, &nvap->na_vattr,
1236 nd->nd_cred, p);
1237 }
1238 VOP_VPUT_PAIR(ndp->ni_dvp, error == 0 ? &ndp->ni_vp :
1239 NULL, false);
1240 nfsvno_relpathbuf(ndp);
1241 if (!error) {
1242 if (*exclusive_flagp) {
1243 *exclusive_flagp = 0;
1244 NFSVNO_ATTRINIT(nvap);
1245 nvap->na_atime.tv_sec = cverf[0];
1246 nvap->na_atime.tv_nsec = cverf[1];
1247 error = VOP_SETATTR(ndp->ni_vp,
1248 &nvap->na_vattr, nd->nd_cred);
1249 if (error != 0) {
1250 vput(ndp->ni_vp);
1251 ndp->ni_vp = NULL;
1252 error = NFSERR_NOTSUPP;
1253 }
1254 }
1255 }
1256 /*
1257 * NFS V2 Only. nfsrvd_mknod() does this for V3.
1258 * (This implies, just get out on an error.)
1259 */
1260 } else if (nvap->na_type == VCHR || nvap->na_type == VBLK ||
1261 nvap->na_type == VFIFO) {
1262 if (nvap->na_type == VCHR && rdev == 0xffffffff)
1263 nvap->na_type = VFIFO;
1264 if (nvap->na_type != VFIFO &&
1265 (error = priv_check_cred(nd->nd_cred, PRIV_VFS_MKNOD_DEV))) {
1266 nfsvno_relpathbuf(ndp);
1267 vput(ndp->ni_dvp);
1268 goto out;
1269 }
1270 nvap->na_rdev = rdev;
1271 error = VOP_MKNOD(ndp->ni_dvp, &ndp->ni_vp,
1272 &ndp->ni_cnd, &nvap->na_vattr);
1273 VOP_VPUT_PAIR(ndp->ni_dvp, error == 0 ? &ndp->ni_vp :
1274 NULL, false);
1275 nfsvno_relpathbuf(ndp);
1276 if (error)
1277 goto out;
1278 } else {
1279 nfsvno_relpathbuf(ndp);
1280 vput(ndp->ni_dvp);
1281 error = ENXIO;
1282 goto out;
1283 }
1284 *vpp = ndp->ni_vp;
1285 } else {
1286 /*
1287 * Handle cases where error is already set and/or
1288 * the file exists.
1289 * 1 - clean up the lookup
1290 * 2 - iff !error and na_size set, truncate it
1291 */
1292 nfsvno_relpathbuf(ndp);
1293 *vpp = ndp->ni_vp;
1294 if (ndp->ni_dvp == *vpp)
1295 vrele(ndp->ni_dvp);
1296 else
1297 vput(ndp->ni_dvp);
1298 if (!error && nvap->na_size != VNOVAL) {
1299 error = nfsvno_accchk(*vpp, VWRITE,
1300 nd->nd_cred, exp, p, NFSACCCHK_NOOVERRIDE,
1301 NFSACCCHK_VPISLOCKED, NULL);
1302 if (!error) {
1303 tempsize = nvap->na_size;
1304 NFSVNO_ATTRINIT(nvap);
1305 nvap->na_size = tempsize;
1306 error = nfsvno_setattr(*vpp, nvap,
1307 nd->nd_cred, p, exp);
1308 }
1309 }
1310 if (error)
1311 vput(*vpp);
1312 }
1313
1314 out:
1315 NFSEXITCODE(error);
1316 return (error);
1317 }
1318
1319 /*
1320 * Do a mknod vnode op.
1321 */
1322 int
nfsvno_mknod(struct nameidata * ndp,struct nfsvattr * nvap,struct ucred * cred,struct thread * p)1323 nfsvno_mknod(struct nameidata *ndp, struct nfsvattr *nvap, struct ucred *cred,
1324 struct thread *p)
1325 {
1326 int error = 0;
1327 __enum_uint8(vtype) vtyp;
1328
1329 vtyp = nvap->na_type;
1330 /*
1331 * Iff doesn't exist, create it.
1332 */
1333 if (ndp->ni_vp) {
1334 nfsvno_relpathbuf(ndp);
1335 vput(ndp->ni_dvp);
1336 vrele(ndp->ni_vp);
1337 error = EEXIST;
1338 goto out;
1339 }
1340 if (vtyp != VCHR && vtyp != VBLK && vtyp != VSOCK && vtyp != VFIFO) {
1341 nfsvno_relpathbuf(ndp);
1342 vput(ndp->ni_dvp);
1343 error = NFSERR_BADTYPE;
1344 goto out;
1345 }
1346 if (vtyp == VSOCK) {
1347 error = VOP_CREATE(ndp->ni_dvp, &ndp->ni_vp,
1348 &ndp->ni_cnd, &nvap->na_vattr);
1349 VOP_VPUT_PAIR(ndp->ni_dvp, error == 0 ? &ndp->ni_vp : NULL,
1350 false);
1351 nfsvno_relpathbuf(ndp);
1352 } else {
1353 if (nvap->na_type != VFIFO &&
1354 (error = priv_check_cred(cred, PRIV_VFS_MKNOD_DEV))) {
1355 nfsvno_relpathbuf(ndp);
1356 vput(ndp->ni_dvp);
1357 goto out;
1358 }
1359 error = VOP_MKNOD(ndp->ni_dvp, &ndp->ni_vp,
1360 &ndp->ni_cnd, &nvap->na_vattr);
1361 VOP_VPUT_PAIR(ndp->ni_dvp, error == 0 ? &ndp->ni_vp : NULL,
1362 false);
1363 nfsvno_relpathbuf(ndp);
1364 /*
1365 * Since VOP_MKNOD returns the ni_vp, I can't
1366 * see any reason to do the lookup.
1367 */
1368 }
1369
1370 out:
1371 NFSEXITCODE(error);
1372 return (error);
1373 }
1374
1375 /*
1376 * Mkdir vnode op.
1377 */
1378 int
nfsvno_mkdir(struct nameidata * ndp,struct nfsvattr * nvap,uid_t saved_uid,struct ucred * cred,struct thread * p,struct nfsexstuff * exp)1379 nfsvno_mkdir(struct nameidata *ndp, struct nfsvattr *nvap, uid_t saved_uid,
1380 struct ucred *cred, struct thread *p, struct nfsexstuff *exp)
1381 {
1382 int error = 0;
1383
1384 if (ndp->ni_vp != NULL) {
1385 if (ndp->ni_dvp == ndp->ni_vp)
1386 vrele(ndp->ni_dvp);
1387 else
1388 vput(ndp->ni_dvp);
1389 vrele(ndp->ni_vp);
1390 nfsvno_relpathbuf(ndp);
1391 error = EEXIST;
1392 goto out;
1393 }
1394 error = VOP_MKDIR(ndp->ni_dvp, &ndp->ni_vp, &ndp->ni_cnd,
1395 &nvap->na_vattr);
1396 VOP_VPUT_PAIR(ndp->ni_dvp, error == 0 ? &ndp->ni_vp : NULL, false);
1397 nfsvno_relpathbuf(ndp);
1398
1399 out:
1400 NFSEXITCODE(error);
1401 return (error);
1402 }
1403
1404 /*
1405 * symlink vnode op.
1406 */
1407 int
nfsvno_symlink(struct nameidata * ndp,struct nfsvattr * nvap,char * pathcp,int pathlen,int not_v2,uid_t saved_uid,struct ucred * cred,struct thread * p,struct nfsexstuff * exp)1408 nfsvno_symlink(struct nameidata *ndp, struct nfsvattr *nvap, char *pathcp,
1409 int pathlen, int not_v2, uid_t saved_uid, struct ucred *cred, struct thread *p,
1410 struct nfsexstuff *exp)
1411 {
1412 int error = 0;
1413
1414 if (ndp->ni_vp) {
1415 nfsvno_relpathbuf(ndp);
1416 if (ndp->ni_dvp == ndp->ni_vp)
1417 vrele(ndp->ni_dvp);
1418 else
1419 vput(ndp->ni_dvp);
1420 vrele(ndp->ni_vp);
1421 error = EEXIST;
1422 goto out;
1423 }
1424
1425 error = VOP_SYMLINK(ndp->ni_dvp, &ndp->ni_vp, &ndp->ni_cnd,
1426 &nvap->na_vattr, pathcp);
1427 /*
1428 * Although FreeBSD still had the lookup code in
1429 * it for 7/current, there doesn't seem to be any
1430 * point, since VOP_SYMLINK() returns the ni_vp.
1431 * Just vput it for v2.
1432 */
1433 VOP_VPUT_PAIR(ndp->ni_dvp, &ndp->ni_vp, !not_v2 && error == 0);
1434 nfsvno_relpathbuf(ndp);
1435
1436 out:
1437 NFSEXITCODE(error);
1438 return (error);
1439 }
1440
1441 /*
1442 * Parse symbolic link arguments.
1443 * This function has an ugly side effect. It will malloc() an area for
1444 * the symlink and set iov_base to point to it, only if it succeeds.
1445 * So, if it returns with uiop->uio_iov->iov_base != NULL, that must
1446 * be FREE'd later.
1447 */
1448 int
nfsvno_getsymlink(struct nfsrv_descript * nd,struct nfsvattr * nvap,struct thread * p,char ** pathcpp,int * lenp)1449 nfsvno_getsymlink(struct nfsrv_descript *nd, struct nfsvattr *nvap,
1450 struct thread *p, char **pathcpp, int *lenp)
1451 {
1452 u_int32_t *tl;
1453 char *pathcp = NULL;
1454 int error = 0, len;
1455 struct nfsv2_sattr *sp;
1456
1457 *pathcpp = NULL;
1458 *lenp = 0;
1459 if ((nd->nd_flag & ND_NFSV3) &&
1460 (error = nfsrv_sattr(nd, NULL, nvap, NULL, NULL, p)))
1461 goto nfsmout;
1462 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
1463 len = fxdr_unsigned(int, *tl);
1464 if (len > NFS_MAXPATHLEN || len <= 0) {
1465 error = EBADRPC;
1466 goto nfsmout;
1467 }
1468 pathcp = malloc(len + 1, M_TEMP, M_WAITOK);
1469 error = nfsrv_mtostr(nd, pathcp, len);
1470 if (error)
1471 goto nfsmout;
1472 if (nd->nd_flag & ND_NFSV2) {
1473 NFSM_DISSECT(sp, struct nfsv2_sattr *, NFSX_V2SATTR);
1474 nvap->na_mode = fxdr_unsigned(u_int16_t, sp->sa_mode);
1475 }
1476 *pathcpp = pathcp;
1477 *lenp = len;
1478 NFSEXITCODE2(0, nd);
1479 return (0);
1480 nfsmout:
1481 if (pathcp)
1482 free(pathcp, M_TEMP);
1483 NFSEXITCODE2(error, nd);
1484 return (error);
1485 }
1486
1487 /*
1488 * Remove a non-directory object.
1489 */
1490 int
nfsvno_removesub(struct nameidata * ndp,bool is_v4,struct nfsrv_descript * nd,struct thread * p,struct nfsexstuff * exp)1491 nfsvno_removesub(struct nameidata *ndp, bool is_v4, struct nfsrv_descript *nd,
1492 struct thread *p, struct nfsexstuff *exp)
1493 {
1494 struct vnode *vp, *dsdvp[NFSDEV_MAXMIRRORS], *newvp;
1495 struct mount *mp;
1496 int error = 0, mirrorcnt, ret;
1497 char fname[PNFS_FILENAME_LEN + 1];
1498 fhandle_t fh;
1499
1500 vp = ndp->ni_vp;
1501 dsdvp[0] = NULL;
1502 if (vp->v_type == VDIR) {
1503 error = NFSERR_ISDIR;
1504 } else if (is_v4) {
1505 if (nfsrv_recalldeleg || (nd->nd_flag & ND_NFSV41) == 0)
1506 error = nfsrv_checkremove(vp, 1, NULL,
1507 (nfsquad_t)((u_quad_t)0), p);
1508 else
1509 error = nfsrv_checkremove(vp, 1, NULL, nd->nd_clientid,
1510 p);
1511 }
1512 if (error == 0)
1513 nfsrv_pnfsremovesetup(vp, p, dsdvp, &mirrorcnt, fname, &fh);
1514 if (!error)
1515 error = VOP_REMOVE(ndp->ni_dvp, vp, &ndp->ni_cnd);
1516 if (error == 0 && dsdvp[0] != NULL)
1517 nfsrv_pnfsremove(dsdvp, mirrorcnt, fname, &fh, p);
1518 if (is_v4 && (nd->nd_flag & ND_NFSV41) != 0 && error == 0)
1519 error = nfsvno_getfh(vp, &fh, p);
1520 if (ndp->ni_dvp == vp)
1521 vrele(ndp->ni_dvp);
1522 else
1523 vput(ndp->ni_dvp);
1524 vput(vp);
1525
1526 /* Use ret to determine if the file still exists. */
1527 if (is_v4 && (nd->nd_flag & ND_NFSV41) != 0 && error == 0) {
1528 mp = vfs_busyfs(&fh.fh_fsid);
1529 if (mp != NULL) {
1530 /* Find out if the file still exists. */
1531 ret = VFS_FHTOVP(mp, &fh.fh_fid, LK_SHARED, &newvp);
1532 if (ret == 0)
1533 vput(newvp);
1534 else
1535 ret = ESTALE;
1536 vfs_unbusy(mp);
1537 } else {
1538 ret = ESTALE;
1539 }
1540 if (ret == ESTALE) {
1541 /* Get rid of any delegation. */
1542 nfsrv_removedeleg(&fh, nd, p);
1543 }
1544 }
1545
1546 nfsvno_relpathbuf(ndp);
1547 NFSEXITCODE(error);
1548 return (error);
1549 }
1550
1551 /*
1552 * Remove a directory.
1553 */
1554 int
nfsvno_rmdirsub(struct nameidata * ndp,int is_v4,struct ucred * cred,struct thread * p,struct nfsexstuff * exp)1555 nfsvno_rmdirsub(struct nameidata *ndp, int is_v4, struct ucred *cred,
1556 struct thread *p, struct nfsexstuff *exp)
1557 {
1558 struct vnode *vp;
1559 int error = 0;
1560
1561 vp = ndp->ni_vp;
1562 if (vp->v_type != VDIR) {
1563 error = ENOTDIR;
1564 goto out;
1565 }
1566 /*
1567 * No rmdir "." please.
1568 */
1569 if (ndp->ni_dvp == vp) {
1570 error = EINVAL;
1571 goto out;
1572 }
1573 /*
1574 * The root of a mounted filesystem cannot be deleted.
1575 */
1576 if (vp->v_vflag & VV_ROOT)
1577 error = EBUSY;
1578 out:
1579 if (!error)
1580 error = VOP_RMDIR(ndp->ni_dvp, vp, &ndp->ni_cnd);
1581 if (ndp->ni_dvp == vp)
1582 vrele(ndp->ni_dvp);
1583 else
1584 vput(ndp->ni_dvp);
1585 vput(vp);
1586 nfsvno_relpathbuf(ndp);
1587 NFSEXITCODE(error);
1588 return (error);
1589 }
1590
1591 /*
1592 * Rename vnode op.
1593 */
1594 int
nfsvno_rename(struct nameidata * fromndp,struct nameidata * tondp,struct nfsrv_descript * nd,struct thread * p)1595 nfsvno_rename(struct nameidata *fromndp, struct nameidata *tondp,
1596 struct nfsrv_descript *nd, struct thread *p)
1597 {
1598 struct vnode *fvp, *tvp, *tdvp, *dsdvp[NFSDEV_MAXMIRRORS], *newvp;
1599 struct mount *mp;
1600 int error = 0, mirrorcnt, ret;
1601 char fname[PNFS_FILENAME_LEN + 1];
1602 fhandle_t fh, fh2;
1603
1604 dsdvp[0] = NULL;
1605 fvp = fromndp->ni_vp;
1606 if (nd->nd_repstat != 0) {
1607 vrele(fromndp->ni_dvp);
1608 vrele(fvp);
1609 error = nd->nd_repstat;
1610 goto out1;
1611 }
1612 tdvp = tondp->ni_dvp;
1613 tvp = tondp->ni_vp;
1614 if (tvp != NULL) {
1615 if (fvp->v_type == VDIR && tvp->v_type != VDIR) {
1616 error = (nd->nd_flag & ND_NFSV2) ? EISDIR : EEXIST;
1617 goto out;
1618 } else if (fvp->v_type != VDIR && tvp->v_type == VDIR) {
1619 error = (nd->nd_flag & ND_NFSV2) ? ENOTDIR : EEXIST;
1620 goto out;
1621 }
1622 if (tvp->v_type == VDIR && tvp->v_mountedhere) {
1623 error = (nd->nd_flag & ND_NFSV2) ? ENOTEMPTY : EXDEV;
1624 goto out;
1625 }
1626
1627 /*
1628 * A rename to '.' or '..' results in a prematurely
1629 * unlocked vnode on FreeBSD5, so I'm just going to fail that
1630 * here.
1631 */
1632 if ((tondp->ni_cnd.cn_namelen == 1 &&
1633 tondp->ni_cnd.cn_nameptr[0] == '.') ||
1634 (tondp->ni_cnd.cn_namelen == 2 &&
1635 tondp->ni_cnd.cn_nameptr[0] == '.' &&
1636 tondp->ni_cnd.cn_nameptr[1] == '.')) {
1637 error = EINVAL;
1638 goto out;
1639 }
1640 }
1641 if (fvp->v_type == VDIR && fvp->v_mountedhere) {
1642 error = (nd->nd_flag & ND_NFSV2) ? ENOTEMPTY : EXDEV;
1643 goto out;
1644 }
1645 if (fvp->v_mount != tdvp->v_mount) {
1646 error = (nd->nd_flag & ND_NFSV2) ? ENOTEMPTY : EXDEV;
1647 goto out;
1648 }
1649 if (fvp == tdvp) {
1650 error = (nd->nd_flag & ND_NFSV2) ? ENOTEMPTY : EINVAL;
1651 goto out;
1652 }
1653 if (fvp == tvp) {
1654 /*
1655 * If source and destination are the same, there is
1656 * nothing to do. Set error to EJUSTRETURN to indicate
1657 * this.
1658 */
1659 error = EJUSTRETURN;
1660 goto out;
1661 }
1662 if (nd->nd_flag & ND_NFSV4) {
1663 if (NFSVOPLOCK(fvp, LK_EXCLUSIVE) == 0) {
1664 if (nfsrv_recalldeleg || (nd->nd_flag & ND_NFSV41) == 0)
1665 error = nfsrv_checkremove(fvp, 0, NULL,
1666 (nfsquad_t)((u_quad_t)0), p);
1667 else
1668 error = nfsrv_checkremove(fvp, 0, NULL,
1669 nd->nd_clientid, p);
1670 NFSVOPUNLOCK(fvp);
1671 } else
1672 error = EPERM;
1673 if (tvp && !error) {
1674 if (nfsrv_recalldeleg || (nd->nd_flag & ND_NFSV41) == 0)
1675 error = nfsrv_checkremove(tvp, 1, NULL,
1676 (nfsquad_t)((u_quad_t)0), p);
1677 else
1678 error = nfsrv_checkremove(tvp, 1, NULL,
1679 nd->nd_clientid, p);
1680 }
1681 } else {
1682 /*
1683 * For NFSv2 and NFSv3, try to get rid of the delegation, so
1684 * that the NFSv4 client won't be confused by the rename.
1685 * Since nfsd_recalldelegation() can only be called on an
1686 * unlocked vnode at this point and fvp is the file that will
1687 * still exist after the rename, just do fvp.
1688 */
1689 nfsd_recalldelegation(fvp, p);
1690 }
1691 if (error == 0 && tvp != NULL) {
1692 if ((nd->nd_flag & ND_NFSV41) != 0)
1693 error = nfsvno_getfh(tvp, &fh2, p);
1694 if (error == 0)
1695 nfsrv_pnfsremovesetup(tvp, p, dsdvp, &mirrorcnt, fname,
1696 &fh);
1697 NFSD_DEBUG(4, "nfsvno_rename: pnfsremovesetup"
1698 " dsdvp=%p\n", dsdvp[0]);
1699 }
1700 out:
1701 mp = NULL;
1702 if (error == 0) {
1703 error = VOP_GETWRITEMOUNT(tondp->ni_dvp, &mp);
1704 if (error == 0) {
1705 if (mp == NULL) {
1706 error = ENOENT;
1707 } else {
1708 error = lockmgr(&mp->mnt_renamelock,
1709 LK_EXCLUSIVE | LK_NOWAIT, NULL);
1710 if (error != 0)
1711 error = ERELOOKUP;
1712 }
1713 }
1714 }
1715 if (error == 0) {
1716 error = VOP_RENAME(fromndp->ni_dvp, fromndp->ni_vp,
1717 &fromndp->ni_cnd, tondp->ni_dvp, tondp->ni_vp,
1718 &tondp->ni_cnd);
1719 lockmgr(&mp->mnt_renamelock, LK_RELEASE, 0);
1720 vfs_rel(mp);
1721 } else {
1722 if (tdvp == tvp)
1723 vrele(tdvp);
1724 else
1725 vput(tdvp);
1726 if (tvp)
1727 vput(tvp);
1728 vrele(fromndp->ni_dvp);
1729 vrele(fvp);
1730 if (error == EJUSTRETURN) {
1731 error = 0;
1732 } else if (error == ERELOOKUP && mp != NULL) {
1733 lockmgr(&mp->mnt_renamelock, LK_EXCLUSIVE, 0);
1734 lockmgr(&mp->mnt_renamelock, LK_RELEASE, 0);
1735 vfs_rel(mp);
1736 }
1737 }
1738
1739 /*
1740 * If dsdvp[0] != NULL, it was set up by nfsrv_pnfsremovesetup() and
1741 * if the rename succeeded, the DS file for the tvp needs to be
1742 * removed.
1743 */
1744 if (error == 0 && dsdvp[0] != NULL) {
1745 nfsrv_pnfsremove(dsdvp, mirrorcnt, fname, &fh, p);
1746 NFSD_DEBUG(4, "nfsvno_rename: pnfsremove\n");
1747 }
1748
1749 /* Use ret to determine if the file still exists. */
1750 if ((nd->nd_flag & ND_NFSV41) != 0 && error == 0) {
1751 mp = vfs_busyfs(&fh2.fh_fsid);
1752 if (mp != NULL) {
1753 /* Find out if the file still exists. */
1754 ret = VFS_FHTOVP(mp, &fh2.fh_fid, LK_SHARED, &newvp);
1755 if (ret == 0)
1756 vput(newvp);
1757 else
1758 ret = ESTALE;
1759 vfs_unbusy(mp);
1760 } else {
1761 ret = ESTALE;
1762 }
1763 if (ret == ESTALE) {
1764 /* Get rid of any delegation. */
1765 nfsrv_removedeleg(&fh2, nd, p);
1766 }
1767 }
1768
1769 nfsvno_relpathbuf(tondp);
1770 out1:
1771 nfsvno_relpathbuf(fromndp);
1772 NFSEXITCODE(error);
1773 return (error);
1774 }
1775
1776 /*
1777 * Link vnode op.
1778 */
1779 int
nfsvno_link(struct nameidata * ndp,struct vnode * vp,nfsquad_t clientid,struct ucred * cred,struct thread * p,struct nfsexstuff * exp)1780 nfsvno_link(struct nameidata *ndp, struct vnode *vp, nfsquad_t clientid,
1781 struct ucred *cred, struct thread *p, struct nfsexstuff *exp)
1782 {
1783 struct vnode *xp;
1784 int error = 0;
1785
1786 xp = ndp->ni_vp;
1787 if (xp != NULL) {
1788 error = EEXIST;
1789 } else {
1790 xp = ndp->ni_dvp;
1791 if (vp->v_mount != xp->v_mount)
1792 error = EXDEV;
1793 }
1794 if (!error) {
1795 NFSVOPLOCK(vp, LK_EXCLUSIVE | LK_RETRY);
1796 if (!VN_IS_DOOMED(vp)) {
1797 error = nfsrv_checkremove(vp, 0, NULL, clientid, p);
1798 if (error == 0)
1799 error = VOP_LINK(ndp->ni_dvp, vp, &ndp->ni_cnd);
1800 } else
1801 error = EPERM;
1802 if (ndp->ni_dvp == vp) {
1803 vrele(ndp->ni_dvp);
1804 NFSVOPUNLOCK(vp);
1805 } else {
1806 vref(vp);
1807 VOP_VPUT_PAIR(ndp->ni_dvp, &vp, true);
1808 }
1809 } else {
1810 if (ndp->ni_dvp == ndp->ni_vp)
1811 vrele(ndp->ni_dvp);
1812 else
1813 vput(ndp->ni_dvp);
1814 if (ndp->ni_vp)
1815 vrele(ndp->ni_vp);
1816 }
1817 nfsvno_relpathbuf(ndp);
1818 NFSEXITCODE(error);
1819 return (error);
1820 }
1821
1822 /*
1823 * Do the fsync() appropriate for the commit.
1824 */
1825 int
nfsvno_fsync(struct vnode * vp,u_int64_t off,int cnt,struct ucred * cred,struct thread * td)1826 nfsvno_fsync(struct vnode *vp, u_int64_t off, int cnt, struct ucred *cred,
1827 struct thread *td)
1828 {
1829 int error = 0;
1830
1831 /*
1832 * RFC 1813 3.3.21: if count is 0, a flush from offset to the end of
1833 * file is done. At this time VOP_FSYNC does not accept offset and
1834 * byte count parameters so call VOP_FSYNC the whole file for now.
1835 * The same is true for NFSv4: RFC 3530 Sec. 14.2.3.
1836 * File systems that do not use the buffer cache (as indicated
1837 * by MNTK_USES_BCACHE not being set) must use VOP_FSYNC().
1838 */
1839 if (cnt == 0 || cnt > MAX_COMMIT_COUNT ||
1840 (vp->v_mount->mnt_kern_flag & MNTK_USES_BCACHE) == 0) {
1841 /*
1842 * Give up and do the whole thing
1843 */
1844 vnode_pager_clean_sync(vp);
1845 error = VOP_FSYNC(vp, MNT_WAIT, td);
1846 } else {
1847 /*
1848 * Locate and synchronously write any buffers that fall
1849 * into the requested range. Note: we are assuming that
1850 * f_iosize is a power of 2.
1851 */
1852 int iosize = vp->v_mount->mnt_stat.f_iosize;
1853 int iomask = iosize - 1;
1854 struct bufobj *bo;
1855 daddr_t lblkno;
1856
1857 /*
1858 * Align to iosize boundary, super-align to page boundary.
1859 */
1860 if (off & iomask) {
1861 cnt += off & iomask;
1862 off &= ~(u_quad_t)iomask;
1863 }
1864 if (off & PAGE_MASK) {
1865 cnt += off & PAGE_MASK;
1866 off &= ~(u_quad_t)PAGE_MASK;
1867 }
1868 lblkno = off / iosize;
1869
1870 if (vp->v_object && vm_object_mightbedirty(vp->v_object)) {
1871 VM_OBJECT_WLOCK(vp->v_object);
1872 vm_object_page_clean(vp->v_object, off, off + cnt,
1873 OBJPC_SYNC);
1874 VM_OBJECT_WUNLOCK(vp->v_object);
1875 }
1876
1877 bo = &vp->v_bufobj;
1878 BO_LOCK(bo);
1879 while (cnt > 0) {
1880 struct buf *bp;
1881
1882 /*
1883 * If we have a buffer and it is marked B_DELWRI we
1884 * have to lock and write it. Otherwise the prior
1885 * write is assumed to have already been committed.
1886 *
1887 * gbincore() can return invalid buffers now so we
1888 * have to check that bit as well (though B_DELWRI
1889 * should not be set if B_INVAL is set there could be
1890 * a race here since we haven't locked the buffer).
1891 */
1892 if ((bp = gbincore(&vp->v_bufobj, lblkno)) != NULL) {
1893 if (BUF_LOCK(bp, LK_EXCLUSIVE | LK_SLEEPFAIL |
1894 LK_INTERLOCK, BO_LOCKPTR(bo)) == ENOLCK) {
1895 BO_LOCK(bo);
1896 continue; /* retry */
1897 }
1898 if ((bp->b_flags & (B_DELWRI|B_INVAL)) ==
1899 B_DELWRI) {
1900 bremfree(bp);
1901 bp->b_flags &= ~B_ASYNC;
1902 bwrite(bp);
1903 ++nfs_commit_miss;
1904 } else
1905 BUF_UNLOCK(bp);
1906 BO_LOCK(bo);
1907 }
1908 ++nfs_commit_blks;
1909 if (cnt < iosize)
1910 break;
1911 cnt -= iosize;
1912 ++lblkno;
1913 }
1914 BO_UNLOCK(bo);
1915 }
1916 NFSEXITCODE(error);
1917 return (error);
1918 }
1919
1920 /*
1921 * Statfs vnode op.
1922 */
1923 int
nfsvno_statfs(struct vnode * vp,struct statfs * sf)1924 nfsvno_statfs(struct vnode *vp, struct statfs *sf)
1925 {
1926 struct statfs *tsf;
1927 int error;
1928
1929 tsf = NULL;
1930 if (nfsrv_devidcnt > 0) {
1931 /* For a pNFS service, get the DS numbers. */
1932 tsf = malloc(sizeof(*tsf), M_TEMP, M_WAITOK | M_ZERO);
1933 error = nfsrv_pnfsstatfs(tsf, vp->v_mount);
1934 if (error != 0) {
1935 free(tsf, M_TEMP);
1936 tsf = NULL;
1937 }
1938 }
1939 error = VFS_STATFS(vp->v_mount, sf);
1940 if (error == 0) {
1941 if (tsf != NULL) {
1942 sf->f_blocks = tsf->f_blocks;
1943 sf->f_bavail = tsf->f_bavail;
1944 sf->f_bfree = tsf->f_bfree;
1945 sf->f_bsize = tsf->f_bsize;
1946 }
1947 /*
1948 * Since NFS handles these values as unsigned on the
1949 * wire, there is no way to represent negative values,
1950 * so set them to 0. Without this, they will appear
1951 * to be very large positive values for clients like
1952 * Solaris10.
1953 */
1954 if (sf->f_bavail < 0)
1955 sf->f_bavail = 0;
1956 if (sf->f_ffree < 0)
1957 sf->f_ffree = 0;
1958 }
1959 free(tsf, M_TEMP);
1960 NFSEXITCODE(error);
1961 return (error);
1962 }
1963
1964 /*
1965 * Do the vnode op stuff for Open. Similar to nfsvno_createsub(), but
1966 * must handle nfsrv_opencheck() calls after any other access checks.
1967 */
1968 void
nfsvno_open(struct nfsrv_descript * nd,struct nameidata * ndp,nfsquad_t clientid,nfsv4stateid_t * stateidp,struct nfsstate * stp,int * exclusive_flagp,struct nfsvattr * nvap,int32_t * cverf,int create,NFSACL_T * aclp,nfsattrbit_t * attrbitp,struct ucred * cred,bool done_namei,struct nfsexstuff * exp,struct vnode ** vpp)1969 nfsvno_open(struct nfsrv_descript *nd, struct nameidata *ndp,
1970 nfsquad_t clientid, nfsv4stateid_t *stateidp, struct nfsstate *stp,
1971 int *exclusive_flagp, struct nfsvattr *nvap, int32_t *cverf, int create,
1972 NFSACL_T *aclp, nfsattrbit_t *attrbitp, struct ucred *cred, bool done_namei,
1973 struct nfsexstuff *exp, struct vnode **vpp)
1974 {
1975 struct vnode *vp = NULL;
1976 u_quad_t tempsize;
1977 struct nfsexstuff nes;
1978 struct thread *p = curthread;
1979 uint32_t oldrepstat;
1980
1981 if (ndp->ni_vp == NULL) {
1982 /*
1983 * If nfsrv_opencheck() sets nd_repstat, done_namei needs to be
1984 * set true, since cleanup after nfsvno_namei() is needed.
1985 */
1986 oldrepstat = nd->nd_repstat;
1987 nd->nd_repstat = nfsrv_opencheck(clientid,
1988 stateidp, stp, NULL, nd, p, nd->nd_repstat);
1989 if (nd->nd_repstat != 0 && oldrepstat == 0)
1990 done_namei = true;
1991 }
1992 if (!nd->nd_repstat) {
1993 if (ndp->ni_vp == NULL) {
1994 nd->nd_repstat = VOP_CREATE(ndp->ni_dvp,
1995 &ndp->ni_vp, &ndp->ni_cnd, &nvap->na_vattr);
1996 /* For a pNFS server, create the data file on a DS. */
1997 if (nd->nd_repstat == 0) {
1998 /*
1999 * Create a data file on a DS for a pNFS server.
2000 * This function just returns if not
2001 * running a pNFS DS or the creation fails.
2002 */
2003 nfsrv_pnfscreate(ndp->ni_vp, &nvap->na_vattr,
2004 cred, p);
2005 }
2006 VOP_VPUT_PAIR(ndp->ni_dvp, nd->nd_repstat == 0 ?
2007 &ndp->ni_vp : NULL, false);
2008 nfsvno_relpathbuf(ndp);
2009 if (!nd->nd_repstat) {
2010 if (*exclusive_flagp) {
2011 *exclusive_flagp = 0;
2012 NFSVNO_ATTRINIT(nvap);
2013 nvap->na_atime.tv_sec = cverf[0];
2014 nvap->na_atime.tv_nsec = cverf[1];
2015 nd->nd_repstat = VOP_SETATTR(ndp->ni_vp,
2016 &nvap->na_vattr, cred);
2017 if (nd->nd_repstat != 0) {
2018 vput(ndp->ni_vp);
2019 ndp->ni_vp = NULL;
2020 nd->nd_repstat = NFSERR_NOTSUPP;
2021 } else
2022 NFSSETBIT_ATTRBIT(attrbitp,
2023 NFSATTRBIT_TIMEACCESS);
2024 } else {
2025 nfsrv_fixattr(nd, ndp->ni_vp, nvap,
2026 aclp, p, attrbitp, exp);
2027 }
2028 }
2029 vp = ndp->ni_vp;
2030 } else {
2031 nfsvno_relpathbuf(ndp);
2032 vp = ndp->ni_vp;
2033 if (create == NFSV4OPEN_CREATE) {
2034 if (ndp->ni_dvp == vp)
2035 vrele(ndp->ni_dvp);
2036 else
2037 vput(ndp->ni_dvp);
2038 }
2039 if (NFSVNO_ISSETSIZE(nvap) && vp->v_type == VREG) {
2040 if (ndp->ni_cnd.cn_flags & RDONLY)
2041 NFSVNO_SETEXRDONLY(&nes);
2042 else
2043 NFSVNO_EXINIT(&nes);
2044 nd->nd_repstat = nfsvno_accchk(vp,
2045 VWRITE, cred, &nes, p,
2046 NFSACCCHK_NOOVERRIDE,
2047 NFSACCCHK_VPISLOCKED, NULL);
2048 nd->nd_repstat = nfsrv_opencheck(clientid,
2049 stateidp, stp, vp, nd, p, nd->nd_repstat);
2050 if (!nd->nd_repstat) {
2051 tempsize = nvap->na_size;
2052 NFSVNO_ATTRINIT(nvap);
2053 nvap->na_size = tempsize;
2054 nd->nd_repstat = nfsvno_setattr(vp,
2055 nvap, cred, p, exp);
2056 }
2057 } else if (vp->v_type == VREG) {
2058 nd->nd_repstat = nfsrv_opencheck(clientid,
2059 stateidp, stp, vp, nd, p, nd->nd_repstat);
2060 }
2061 }
2062 } else if (done_namei) {
2063 KASSERT(create == NFSV4OPEN_CREATE,
2064 ("nfsvno_open: not create"));
2065 /*
2066 * done_namei is set when nfsvno_namei() has completed
2067 * successfully, but a subsequent error was set in
2068 * nd_repstat. As such, cleanup of the nfsvno_namei()
2069 * results is required.
2070 */
2071 nfsvno_relpathbuf(ndp);
2072 if (ndp->ni_dvp == ndp->ni_vp)
2073 vrele(ndp->ni_dvp);
2074 else
2075 vput(ndp->ni_dvp);
2076 if (ndp->ni_vp)
2077 vput(ndp->ni_vp);
2078 }
2079 *vpp = vp;
2080
2081 NFSEXITCODE2(0, nd);
2082 }
2083
2084 /*
2085 * Updates the file rev and sets the mtime and ctime
2086 * to the current clock time, returning the va_filerev and va_Xtime
2087 * values.
2088 * Return ESTALE to indicate the vnode is VIRF_DOOMED.
2089 */
2090 int
nfsvno_updfilerev(struct vnode * vp,struct nfsvattr * nvap,struct nfsrv_descript * nd,struct thread * p)2091 nfsvno_updfilerev(struct vnode *vp, struct nfsvattr *nvap,
2092 struct nfsrv_descript *nd, struct thread *p)
2093 {
2094 struct vattr va;
2095
2096 VATTR_NULL(&va);
2097 vfs_timestamp(&va.va_mtime);
2098 if (NFSVOPISLOCKED(vp) != LK_EXCLUSIVE) {
2099 NFSVOPLOCK(vp, LK_UPGRADE | LK_RETRY);
2100 if (VN_IS_DOOMED(vp))
2101 return (ESTALE);
2102 }
2103 (void) VOP_SETATTR(vp, &va, nd->nd_cred);
2104 (void) nfsvno_getattr(vp, nvap, nd, p, 1, NULL);
2105 return (0);
2106 }
2107
2108 /*
2109 * Glue routine to nfsv4_fillattr().
2110 */
2111 int
nfsvno_fillattr(struct nfsrv_descript * nd,struct mount * mp,struct vnode * vp,struct nfsvattr * nvap,fhandle_t * fhp,int rderror,nfsattrbit_t * attrbitp,struct ucred * cred,struct thread * p,int isdgram,int reterr,int supports_nfsv4acls,int at_root,uint64_t mounted_on_fileno,bool xattrsupp,bool has_hiddensystem,bool has_namedattr,uint32_t clone_blksize)2112 nfsvno_fillattr(struct nfsrv_descript *nd, struct mount *mp, struct vnode *vp,
2113 struct nfsvattr *nvap, fhandle_t *fhp, int rderror, nfsattrbit_t *attrbitp,
2114 struct ucred *cred, struct thread *p, int isdgram, int reterr,
2115 int supports_nfsv4acls, int at_root, uint64_t mounted_on_fileno,
2116 bool xattrsupp, bool has_hiddensystem, bool has_namedattr,
2117 uint32_t clone_blksize)
2118 {
2119 struct statfs *sf;
2120 int error;
2121
2122 sf = NULL;
2123 if (nfsrv_devidcnt > 0 &&
2124 (NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_SPACEAVAIL) ||
2125 NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_SPACEFREE) ||
2126 NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_SPACETOTAL))) {
2127 sf = malloc(sizeof(*sf), M_TEMP, M_WAITOK | M_ZERO);
2128 error = nfsrv_pnfsstatfs(sf, mp);
2129 if (error != 0) {
2130 free(sf, M_TEMP);
2131 sf = NULL;
2132 }
2133 }
2134
2135 error = nfsv4_fillattr(nd, mp, vp, NULL, &nvap->na_vattr, fhp, rderror,
2136 attrbitp, cred, p, isdgram, reterr, supports_nfsv4acls, at_root,
2137 mounted_on_fileno, sf, xattrsupp, has_hiddensystem, has_namedattr,
2138 clone_blksize);
2139 free(sf, M_TEMP);
2140 NFSEXITCODE2(0, nd);
2141 return (error);
2142 }
2143
2144 /*
2145 * Convert a dirent d_type to a vnode type.
2146 */
nfs_dtypetovtype(struct nfsvattr * nvap,struct vnode * vp,uint8_t dtype)2147 static void nfs_dtypetovtype(struct nfsvattr *nvap, struct vnode *vp,
2148 uint8_t dtype)
2149 {
2150
2151 if ((vn_irflag_read(vp) & VIRF_NAMEDDIR) != 0) {
2152 nvap->na_type = VREG;
2153 nvap->na_bsdflags |= SFBSD_NAMEDATTR;
2154 } else if (dtype <= DT_WHT) {
2155 nvap->na_type = dtype_to_vnode[dtype];
2156 } else {
2157 nvap->na_type = VNON;
2158 }
2159 }
2160
2161 /* Since the Readdir vnode ops vary, put the entire functions in here. */
2162 /*
2163 * nfs readdir service
2164 * - mallocs what it thinks is enough to read
2165 * count rounded up to a multiple of DIRBLKSIZ <= NFS_MAXREADDIR
2166 * - calls VOP_READDIR()
2167 * - loops around building the reply
2168 * if the output generated exceeds count break out of loop
2169 * The NFSM_CLGET macro is used here so that the reply will be packed
2170 * tightly in mbuf clusters.
2171 * - it trims out records with d_fileno == 0
2172 * this doesn't matter for Unix clients, but they might confuse clients
2173 * for other os'.
2174 * - it trims out records with d_type == DT_WHT
2175 * these cannot be seen through NFS (unless we extend the protocol)
2176 * The alternate call nfsrvd_readdirplus() does lookups as well.
2177 * PS: The NFS protocol spec. does not clarify what the "count" byte
2178 * argument is a count of.. just name strings and file id's or the
2179 * entire reply rpc or ...
2180 * I tried just file name and id sizes and it confused the Sun client,
2181 * so I am using the full rpc size now. The "paranoia.." comment refers
2182 * to including the status longwords that are not a part of the dir.
2183 * "entry" structures, but are in the rpc.
2184 */
2185 int
nfsrvd_readdir(struct nfsrv_descript * nd,int isdgram,struct vnode * vp,struct nfsexstuff * exp)2186 nfsrvd_readdir(struct nfsrv_descript *nd, int isdgram,
2187 struct vnode *vp, struct nfsexstuff *exp)
2188 {
2189 struct dirent *dp;
2190 u_int32_t *tl;
2191 int dirlen;
2192 char *cpos, *cend, *rbuf;
2193 struct nfsvattr at;
2194 int nlen, error = 0, getret = 1;
2195 int siz, cnt, fullsiz, eofflag, ncookies;
2196 u_int64_t off, toff, verf __unused;
2197 uint64_t *cookies = NULL, *cookiep;
2198 struct uio io;
2199 struct iovec iv;
2200 int is_ufs;
2201 struct thread *p = curthread;
2202
2203 if (nd->nd_repstat) {
2204 nfsrv_postopattr(nd, getret, &at);
2205 goto out;
2206 }
2207 if (nd->nd_flag & ND_NFSV2) {
2208 NFSM_DISSECT(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2209 off = fxdr_unsigned(u_quad_t, *tl++);
2210 } else {
2211 NFSM_DISSECT(tl, u_int32_t *, 5 * NFSX_UNSIGNED);
2212 off = fxdr_hyper(tl);
2213 tl += 2;
2214 verf = fxdr_hyper(tl);
2215 tl += 2;
2216 }
2217 toff = off;
2218 cnt = fxdr_unsigned(int, *tl);
2219 if (cnt > NFS_SRVMAXDATA(nd) || cnt < 0)
2220 cnt = NFS_SRVMAXDATA(nd);
2221 siz = ((cnt + DIRBLKSIZ - 1) & ~(DIRBLKSIZ - 1));
2222 fullsiz = siz;
2223 if (nd->nd_flag & ND_NFSV3) {
2224 nd->nd_repstat = getret = nfsvno_getattr(vp, &at, nd, p, 1,
2225 NULL);
2226 #if 0
2227 /*
2228 * va_filerev is not sufficient as a cookie verifier,
2229 * since it is not supposed to change when entries are
2230 * removed/added unless that offset cookies returned to
2231 * the client are no longer valid.
2232 */
2233 if (!nd->nd_repstat && toff && verf != at.na_filerev)
2234 nd->nd_repstat = NFSERR_BAD_COOKIE;
2235 #endif
2236 }
2237 if (!nd->nd_repstat && vp->v_type != VDIR)
2238 nd->nd_repstat = NFSERR_NOTDIR;
2239 if (nd->nd_repstat == 0 && cnt == 0) {
2240 if (nd->nd_flag & ND_NFSV2)
2241 /* NFSv2 does not have NFSERR_TOOSMALL */
2242 nd->nd_repstat = EPERM;
2243 else
2244 nd->nd_repstat = NFSERR_TOOSMALL;
2245 }
2246 if (!nd->nd_repstat)
2247 nd->nd_repstat = nfsvno_accchk(vp, VEXEC,
2248 nd->nd_cred, exp, p, NFSACCCHK_NOOVERRIDE,
2249 NFSACCCHK_VPISLOCKED, NULL);
2250 if (nd->nd_repstat) {
2251 vput(vp);
2252 if (nd->nd_flag & ND_NFSV3)
2253 nfsrv_postopattr(nd, getret, &at);
2254 goto out;
2255 }
2256 is_ufs = strcmp(vp->v_mount->mnt_vfc->vfc_name, "ufs") == 0;
2257 rbuf = malloc(siz, M_TEMP, M_WAITOK);
2258 again:
2259 eofflag = 0;
2260 if (cookies) {
2261 free(cookies, M_TEMP);
2262 cookies = NULL;
2263 }
2264
2265 iv.iov_base = rbuf;
2266 iv.iov_len = siz;
2267 io.uio_iov = &iv;
2268 io.uio_iovcnt = 1;
2269 io.uio_offset = (off_t)off;
2270 io.uio_resid = siz;
2271 io.uio_segflg = UIO_SYSSPACE;
2272 io.uio_rw = UIO_READ;
2273 io.uio_td = NULL;
2274 nd->nd_repstat = VOP_READDIR(vp, &io, nd->nd_cred, &eofflag, &ncookies,
2275 &cookies);
2276 off = (u_int64_t)io.uio_offset;
2277 if (io.uio_resid)
2278 siz -= io.uio_resid;
2279
2280 if (!cookies && !nd->nd_repstat)
2281 nd->nd_repstat = NFSERR_PERM;
2282 if (nd->nd_flag & ND_NFSV3) {
2283 getret = nfsvno_getattr(vp, &at, nd, p, 1, NULL);
2284 if (!nd->nd_repstat)
2285 nd->nd_repstat = getret;
2286 }
2287
2288 /*
2289 * Handles the failed cases. nd->nd_repstat == 0 past here.
2290 */
2291 if (nd->nd_repstat) {
2292 vput(vp);
2293 free(rbuf, M_TEMP);
2294 if (cookies)
2295 free(cookies, M_TEMP);
2296 if (nd->nd_flag & ND_NFSV3)
2297 nfsrv_postopattr(nd, getret, &at);
2298 goto out;
2299 }
2300 /*
2301 * If nothing read, return eof
2302 * rpc reply
2303 */
2304 if (siz == 0) {
2305 vput(vp);
2306 if (nd->nd_flag & ND_NFSV2) {
2307 NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2308 } else {
2309 nfsrv_postopattr(nd, getret, &at);
2310 NFSM_BUILD(tl, u_int32_t *, 4 * NFSX_UNSIGNED);
2311 txdr_hyper(at.na_filerev, tl);
2312 tl += 2;
2313 }
2314 *tl++ = newnfs_false;
2315 *tl = newnfs_true;
2316 free(rbuf, M_TEMP);
2317 free(cookies, M_TEMP);
2318 goto out;
2319 }
2320
2321 /*
2322 * Check for degenerate cases of nothing useful read.
2323 * If so go try again
2324 */
2325 cpos = rbuf;
2326 cend = rbuf + siz;
2327 dp = (struct dirent *)cpos;
2328 cookiep = cookies;
2329
2330 /*
2331 * For some reason FreeBSD's ufs_readdir() chooses to back the
2332 * directory offset up to a block boundary, so it is necessary to
2333 * skip over the records that precede the requested offset. This
2334 * requires the assumption that file offset cookies monotonically
2335 * increase.
2336 */
2337 while (cpos < cend && ncookies > 0 &&
2338 (dp->d_fileno == 0 || dp->d_type == DT_WHT ||
2339 (is_ufs == 1 && ((u_quad_t)(*cookiep)) <= toff))) {
2340 cpos += dp->d_reclen;
2341 dp = (struct dirent *)cpos;
2342 cookiep++;
2343 ncookies--;
2344 }
2345 if (cpos >= cend || ncookies == 0) {
2346 siz = fullsiz;
2347 toff = off;
2348 goto again;
2349 }
2350 vput(vp);
2351
2352 /*
2353 * If cnt > MCLBYTES and the reply will not be saved, use
2354 * ext_pgs mbufs for TLS.
2355 * For NFSv4.0, we do not know for sure if the reply will
2356 * be saved, so do not use ext_pgs mbufs for NFSv4.0.
2357 */
2358 if (cnt > MCLBYTES && siz > MCLBYTES &&
2359 (nd->nd_flag & (ND_TLS | ND_EXTPG | ND_SAVEREPLY)) == ND_TLS &&
2360 (nd->nd_flag & (ND_NFSV4 | ND_NFSV41)) != ND_NFSV4)
2361 nd->nd_flag |= ND_EXTPG;
2362
2363 /*
2364 * dirlen is the size of the reply, including all XDR and must
2365 * not exceed cnt. For NFSv2, RFC1094 didn't clearly indicate
2366 * if the XDR should be included in "count", but to be safe, we do.
2367 * (Include the two booleans at the end of the reply in dirlen now.)
2368 */
2369 if (nd->nd_flag & ND_NFSV3) {
2370 nfsrv_postopattr(nd, getret, &at);
2371 NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2372 txdr_hyper(at.na_filerev, tl);
2373 dirlen = NFSX_V3POSTOPATTR + NFSX_VERF + 2 * NFSX_UNSIGNED;
2374 } else {
2375 dirlen = 2 * NFSX_UNSIGNED;
2376 }
2377
2378 /* Loop through the records and build reply */
2379 while (cpos < cend && ncookies > 0) {
2380 nlen = dp->d_namlen;
2381 if (dp->d_fileno != 0 && dp->d_type != DT_WHT &&
2382 nlen <= NFS_MAXNAMLEN) {
2383 if (nd->nd_flag & ND_NFSV3)
2384 dirlen += (6*NFSX_UNSIGNED + NFSM_RNDUP(nlen));
2385 else
2386 dirlen += (4*NFSX_UNSIGNED + NFSM_RNDUP(nlen));
2387 if (dirlen > cnt) {
2388 eofflag = 0;
2389 break;
2390 }
2391
2392 /*
2393 * Build the directory record xdr from
2394 * the dirent entry.
2395 */
2396 if (nd->nd_flag & ND_NFSV3) {
2397 NFSM_BUILD(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
2398 *tl++ = newnfs_true;
2399 txdr_hyper(dp->d_fileno, tl);
2400 } else {
2401 NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2402 *tl++ = newnfs_true;
2403 *tl = txdr_unsigned(dp->d_fileno);
2404 }
2405 (void) nfsm_strtom(nd, dp->d_name, nlen);
2406 if (nd->nd_flag & ND_NFSV3) {
2407 NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2408 txdr_hyper(*cookiep, tl);
2409 } else {
2410 NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
2411 *tl = txdr_unsigned(*cookiep);
2412 }
2413 }
2414 cpos += dp->d_reclen;
2415 dp = (struct dirent *)cpos;
2416 cookiep++;
2417 ncookies--;
2418 }
2419 if (cpos < cend)
2420 eofflag = 0;
2421 NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2422 *tl++ = newnfs_false;
2423 if (eofflag)
2424 *tl = newnfs_true;
2425 else
2426 *tl = newnfs_false;
2427 free(rbuf, M_TEMP);
2428 free(cookies, M_TEMP);
2429
2430 out:
2431 NFSEXITCODE2(0, nd);
2432 return (0);
2433 nfsmout:
2434 vput(vp);
2435 NFSEXITCODE2(error, nd);
2436 return (error);
2437 }
2438
2439 /*
2440 * Readdirplus for V3 and Readdir for V4.
2441 */
2442 int
nfsrvd_readdirplus(struct nfsrv_descript * nd,int isdgram,struct vnode * vp,struct nfsexstuff * exp)2443 nfsrvd_readdirplus(struct nfsrv_descript *nd, int isdgram,
2444 struct vnode *vp, struct nfsexstuff *exp)
2445 {
2446 struct dirent *dp;
2447 uint32_t clone_blksize, *tl;
2448 int dirlen;
2449 char *cpos, *cend, *rbuf;
2450 struct vnode *nvp;
2451 fhandle_t nfh;
2452 struct nfsvattr nva, at, *nvap = &nva;
2453 struct mbuf *mb0, *mb1;
2454 struct nfsreferral *refp;
2455 int nlen, r, error = 0, getret = 1, ret, usevget = 1;
2456 int siz, cnt, fullsiz, eofflag, ncookies, entrycnt;
2457 caddr_t bpos0, bpos1;
2458 u_int64_t off, toff, verf __unused;
2459 uint64_t *cookies = NULL, *cookiep;
2460 nfsattrbit_t attrbits, rderrbits, savbits, refbits;
2461 struct uio io;
2462 struct iovec iv;
2463 struct componentname cn;
2464 int at_root, is_ufs, is_zfs, needs_unbusy, supports_nfsv4acls;
2465 struct mount *mp, *new_mp;
2466 uint64_t mounted_on_fileno;
2467 struct thread *p = curthread;
2468 int bextpg0, bextpg1, bextpgsiz0, bextpgsiz1;
2469 size_t atsiz;
2470 long pathval;
2471 bool has_hiddensystem, has_namedattr, xattrsupp;
2472
2473 if (nd->nd_repstat) {
2474 nfsrv_postopattr(nd, getret, &at);
2475 goto out;
2476 }
2477 NFSM_DISSECT(tl, u_int32_t *, 6 * NFSX_UNSIGNED);
2478 off = fxdr_hyper(tl);
2479 toff = off;
2480 tl += 2;
2481 verf = fxdr_hyper(tl);
2482 tl += 2;
2483 siz = fxdr_unsigned(int, *tl++);
2484 cnt = fxdr_unsigned(int, *tl);
2485
2486 /*
2487 * Use the server's maximum data transfer size as the upper bound
2488 * on reply datalen.
2489 */
2490 if (cnt > NFS_SRVMAXDATA(nd) || cnt < 0)
2491 cnt = NFS_SRVMAXDATA(nd);
2492
2493 /*
2494 * siz is a "hint" of how much directory information (name, fileid,
2495 * cookie) should be in the reply. At least one client "hints" 0,
2496 * so I set it to cnt for that case. I also round it up to the
2497 * next multiple of DIRBLKSIZ.
2498 * Since the size of a Readdirplus directory entry reply will always
2499 * be greater than a directory entry returned by VOP_READDIR(), it
2500 * does not make sense to read more than NFS_SRVMAXDATA() via
2501 * VOP_READDIR().
2502 */
2503 if (siz <= 0)
2504 siz = cnt;
2505 else if (siz > NFS_SRVMAXDATA(nd))
2506 siz = NFS_SRVMAXDATA(nd);
2507 siz = ((siz + DIRBLKSIZ - 1) & ~(DIRBLKSIZ - 1));
2508
2509 if (nd->nd_flag & ND_NFSV4) {
2510 error = nfsrv_getattrbits(nd, &attrbits, NULL, NULL);
2511 if (error)
2512 goto nfsmout;
2513 NFSSET_ATTRBIT(&savbits, &attrbits);
2514 NFSSET_ATTRBIT(&refbits, &attrbits);
2515 NFSCLRNOTFILLABLE_ATTRBIT(&attrbits, nd);
2516 NFSZERO_ATTRBIT(&rderrbits);
2517 NFSSETBIT_ATTRBIT(&rderrbits, NFSATTRBIT_RDATTRERROR);
2518 /*
2519 * If these 4 bits are the only attributes requested by the
2520 * client, they can be satisfied without acquiring the vnode
2521 * for the file object unless it is a directory.
2522 * This will be indicated by savbits being all 0s.
2523 */
2524 NFSCLRBIT_ATTRBIT(&savbits, NFSATTRBIT_TYPE);
2525 NFSCLRBIT_ATTRBIT(&savbits, NFSATTRBIT_FILEID);
2526 NFSCLRBIT_ATTRBIT(&savbits, NFSATTRBIT_MOUNTEDONFILEID);
2527 NFSCLRBIT_ATTRBIT(&savbits, NFSATTRBIT_RDATTRERROR);
2528 } else {
2529 NFSZERO_ATTRBIT(&attrbits);
2530 }
2531 fullsiz = siz;
2532 nd->nd_repstat = getret = nfsvno_getattr(vp, &at, nd, p, 1, NULL);
2533 #if 0
2534 if (!nd->nd_repstat) {
2535 if (off && verf != at.na_filerev) {
2536 /*
2537 * va_filerev is not sufficient as a cookie verifier,
2538 * since it is not supposed to change when entries are
2539 * removed/added unless that offset cookies returned to
2540 * the client are no longer valid.
2541 */
2542 if (nd->nd_flag & ND_NFSV4) {
2543 nd->nd_repstat = NFSERR_NOTSAME;
2544 } else {
2545 nd->nd_repstat = NFSERR_BAD_COOKIE;
2546 }
2547 }
2548 }
2549 #endif
2550 if (!nd->nd_repstat && vp->v_type != VDIR)
2551 nd->nd_repstat = NFSERR_NOTDIR;
2552 if (!nd->nd_repstat && cnt == 0)
2553 nd->nd_repstat = NFSERR_TOOSMALL;
2554 if (!nd->nd_repstat)
2555 nd->nd_repstat = nfsvno_accchk(vp, VEXEC,
2556 nd->nd_cred, exp, p, NFSACCCHK_NOOVERRIDE,
2557 NFSACCCHK_VPISLOCKED, NULL);
2558 if (nd->nd_repstat) {
2559 vput(vp);
2560 if (nd->nd_flag & ND_NFSV3)
2561 nfsrv_postopattr(nd, getret, &at);
2562 goto out;
2563 }
2564 is_ufs = strcmp(vp->v_mount->mnt_vfc->vfc_name, "ufs") == 0;
2565 is_zfs = strcmp(vp->v_mount->mnt_vfc->vfc_name, "zfs") == 0;
2566
2567 rbuf = malloc(siz, M_TEMP, M_WAITOK);
2568 again:
2569 eofflag = 0;
2570 if (cookies) {
2571 free(cookies, M_TEMP);
2572 cookies = NULL;
2573 }
2574
2575 iv.iov_base = rbuf;
2576 iv.iov_len = siz;
2577 io.uio_iov = &iv;
2578 io.uio_iovcnt = 1;
2579 io.uio_offset = (off_t)off;
2580 io.uio_resid = siz;
2581 io.uio_segflg = UIO_SYSSPACE;
2582 io.uio_rw = UIO_READ;
2583 io.uio_td = NULL;
2584 nd->nd_repstat = VOP_READDIR(vp, &io, nd->nd_cred, &eofflag, &ncookies,
2585 &cookies);
2586 off = (u_int64_t)io.uio_offset;
2587 if (io.uio_resid)
2588 siz -= io.uio_resid;
2589
2590 getret = nfsvno_getattr(vp, &at, nd, p, 1, NULL);
2591
2592 if (!cookies && !nd->nd_repstat)
2593 nd->nd_repstat = NFSERR_PERM;
2594 if (!nd->nd_repstat)
2595 nd->nd_repstat = getret;
2596 if (nd->nd_repstat) {
2597 vput(vp);
2598 if (cookies)
2599 free(cookies, M_TEMP);
2600 free(rbuf, M_TEMP);
2601 if (nd->nd_flag & ND_NFSV3)
2602 nfsrv_postopattr(nd, getret, &at);
2603 goto out;
2604 }
2605 /*
2606 * If nothing read, return eof
2607 * rpc reply
2608 */
2609 if (siz == 0) {
2610 ateof:
2611 vput(vp);
2612 if (nd->nd_flag & ND_NFSV3)
2613 nfsrv_postopattr(nd, getret, &at);
2614 NFSM_BUILD(tl, u_int32_t *, 4 * NFSX_UNSIGNED);
2615 txdr_hyper(at.na_filerev, tl);
2616 tl += 2;
2617 *tl++ = newnfs_false;
2618 *tl = newnfs_true;
2619 free(cookies, M_TEMP);
2620 free(rbuf, M_TEMP);
2621 goto out;
2622 }
2623
2624 /*
2625 * Check for degenerate cases of nothing useful read.
2626 * If so go try again
2627 */
2628 cpos = rbuf;
2629 cend = rbuf + siz;
2630 dp = (struct dirent *)cpos;
2631 cookiep = cookies;
2632
2633 /*
2634 * For some reason FreeBSD's ufs_readdir() chooses to back the
2635 * directory offset up to a block boundary, so it is necessary to
2636 * skip over the records that precede the requested offset. This
2637 * requires the assumption that file offset cookies monotonically
2638 * increase.
2639 */
2640 while (cpos < cend && ncookies > 0 &&
2641 (dp->d_fileno == 0 || dp->d_type == DT_WHT ||
2642 (is_ufs == 1 && ((u_quad_t)(*cookiep)) <= toff) ||
2643 ((nd->nd_flag & ND_NFSV4) &&
2644 ((dp->d_namlen == 1 && dp->d_name[0] == '.') ||
2645 (dp->d_namlen==2 && dp->d_name[0]=='.' && dp->d_name[1]=='.'))))) {
2646 cpos += dp->d_reclen;
2647 dp = (struct dirent *)cpos;
2648 cookiep++;
2649 ncookies--;
2650 }
2651 if (cpos >= cend || ncookies == 0) {
2652 if (eofflag != 0)
2653 goto ateof;
2654 siz = fullsiz;
2655 toff = off;
2656 goto again;
2657 }
2658
2659 /*
2660 * Busy the file system so that the mount point won't go away
2661 * and, as such, VFS_VGET() can be used safely.
2662 */
2663 mp = vp->v_mount;
2664 vfs_ref(mp);
2665 NFSVOPUNLOCK(vp);
2666 nd->nd_repstat = vfs_busy(mp, 0);
2667 vfs_rel(mp);
2668 if (nd->nd_repstat != 0) {
2669 vrele(vp);
2670 free(cookies, M_TEMP);
2671 free(rbuf, M_TEMP);
2672 if (nd->nd_flag & ND_NFSV3)
2673 nfsrv_postopattr(nd, getret, &at);
2674 goto out;
2675 }
2676
2677 /*
2678 * Check to see if entries in this directory can be safely acquired
2679 * via VFS_VGET() or if a switch to VOP_LOOKUP() is required.
2680 * ZFS snapshot directories need VOP_LOOKUP(), so that any
2681 * automount of the snapshot directory that is required will
2682 * be done.
2683 * This needs to be done here for NFSv4, since NFSv4 never does
2684 * a VFS_VGET() for "." or "..".
2685 */
2686 if (is_zfs == 1) {
2687 r = VFS_VGET(mp, at.na_fileid, LK_SHARED, &nvp);
2688 if (r == EOPNOTSUPP) {
2689 usevget = 0;
2690 cn.cn_nameiop = LOOKUP;
2691 cn.cn_lkflags = LK_SHARED | LK_RETRY;
2692 cn.cn_cred = nd->nd_cred;
2693 } else if (r == 0)
2694 vput(nvp);
2695 }
2696
2697 /*
2698 * If the reply is likely to exceed MCLBYTES and the reply will
2699 * not be saved, use ext_pgs mbufs for TLS.
2700 * It is difficult to predict how large each entry will be and
2701 * how many entries have been read, so just assume the directory
2702 * entries grow by a factor of 4 when attributes are included.
2703 * For NFSv4.0, we do not know for sure if the reply will
2704 * be saved, so do not use ext_pgs mbufs for NFSv4.0.
2705 */
2706 if (cnt > MCLBYTES && siz > MCLBYTES / 4 &&
2707 (nd->nd_flag & (ND_TLS | ND_EXTPG | ND_SAVEREPLY)) == ND_TLS &&
2708 (nd->nd_flag & (ND_NFSV4 | ND_NFSV41)) != ND_NFSV4)
2709 nd->nd_flag |= ND_EXTPG;
2710
2711 /*
2712 * Save this position, in case there is an error before one entry
2713 * is created.
2714 */
2715 mb0 = nd->nd_mb;
2716 bpos0 = nd->nd_bpos;
2717 bextpg0 = nd->nd_bextpg;
2718 bextpgsiz0 = nd->nd_bextpgsiz;
2719
2720 /*
2721 * Fill in the first part of the reply.
2722 * dirlen is the reply length in bytes and cannot exceed cnt.
2723 * (Include the two booleans at the end of the reply in dirlen now,
2724 * so we recognize when we have exceeded cnt.)
2725 */
2726 if (nd->nd_flag & ND_NFSV3) {
2727 dirlen = NFSX_V3POSTOPATTR + NFSX_VERF + 2 * NFSX_UNSIGNED;
2728 nfsrv_postopattr(nd, getret, &at);
2729 } else {
2730 dirlen = NFSX_VERF + 2 * NFSX_UNSIGNED;
2731 }
2732 NFSM_BUILD(tl, u_int32_t *, NFSX_VERF);
2733 txdr_hyper(at.na_filerev, tl);
2734
2735 /*
2736 * Save this position, in case there is an empty reply needed.
2737 */
2738 mb1 = nd->nd_mb;
2739 bpos1 = nd->nd_bpos;
2740 bextpg1 = nd->nd_bextpg;
2741 bextpgsiz1 = nd->nd_bextpgsiz;
2742
2743 /* Loop through the records and build reply */
2744 entrycnt = 0;
2745 while (cpos < cend && ncookies > 0 && dirlen < cnt) {
2746 nlen = dp->d_namlen;
2747 if (dp->d_fileno != 0 && dp->d_type != DT_WHT &&
2748 nlen <= NFS_MAXNAMLEN &&
2749 ((nd->nd_flag & ND_NFSV3) || nlen > 2 ||
2750 (nlen==2 && (dp->d_name[0]!='.' || dp->d_name[1]!='.'))
2751 || (nlen == 1 && dp->d_name[0] != '.'))) {
2752 /*
2753 * Save the current position in the reply, in case
2754 * this entry exceeds cnt.
2755 */
2756 mb1 = nd->nd_mb;
2757 bpos1 = nd->nd_bpos;
2758 bextpg1 = nd->nd_bextpg;
2759 bextpgsiz1 = nd->nd_bextpgsiz;
2760
2761 /*
2762 * For readdir_and_lookup get the vnode using
2763 * the file number.
2764 */
2765 nvp = NULL;
2766 refp = NULL;
2767 r = 0;
2768 at_root = 0;
2769 needs_unbusy = 0;
2770 new_mp = mp;
2771 mounted_on_fileno = (uint64_t)dp->d_fileno;
2772 if ((nd->nd_flag & ND_NFSV3) ||
2773 NFSNONZERO_ATTRBIT(&savbits) ||
2774 dp->d_type == DT_UNKNOWN ||
2775 (dp->d_type == DT_DIR &&
2776 nfsrv_enable_crossmntpt != 0)) {
2777 if (nd->nd_flag & ND_NFSV4)
2778 refp = nfsv4root_getreferral(NULL,
2779 vp, dp->d_fileno);
2780 if (refp == NULL) {
2781 if (usevget)
2782 r = VFS_VGET(mp, dp->d_fileno,
2783 LK_SHARED, &nvp);
2784 else
2785 r = EOPNOTSUPP;
2786 if (r == 0 && (vn_irflag_read(vp) &
2787 VIRF_NAMEDDIR) != 0)
2788 vn_irflag_set_cond(nvp,
2789 VIRF_NAMEDATTR);
2790 if (r == EOPNOTSUPP) {
2791 if (usevget) {
2792 usevget = 0;
2793 cn.cn_nameiop = LOOKUP;
2794 cn.cn_lkflags =
2795 LK_SHARED |
2796 LK_RETRY;
2797 cn.cn_cred =
2798 nd->nd_cred;
2799 }
2800 cn.cn_nameptr = dp->d_name;
2801 cn.cn_namelen = nlen;
2802 cn.cn_flags = ISLASTCN |
2803 NOFOLLOW | LOCKLEAF;
2804 if ((vn_irflag_read(vp) &
2805 VIRF_NAMEDDIR) != 0)
2806 cn.cn_flags |=
2807 OPENNAMED;
2808 if (nlen == 2 &&
2809 dp->d_name[0] == '.' &&
2810 dp->d_name[1] == '.')
2811 cn.cn_flags |=
2812 ISDOTDOT;
2813 if (NFSVOPLOCK(vp, LK_SHARED)
2814 != 0) {
2815 nd->nd_repstat = EPERM;
2816 break;
2817 }
2818 if ((vp->v_vflag & VV_ROOT) != 0
2819 && (cn.cn_flags & ISDOTDOT)
2820 != 0) {
2821 vref(vp);
2822 nvp = vp;
2823 r = 0;
2824 } else {
2825 r = VOP_LOOKUP(vp, &nvp,
2826 &cn);
2827 if (vp != nvp)
2828 NFSVOPUNLOCK(vp);
2829 }
2830 }
2831
2832 /*
2833 * For NFSv4, check to see if nvp is
2834 * a mount point and get the mount
2835 * point vnode, as required.
2836 */
2837 if (r == 0 &&
2838 nfsrv_enable_crossmntpt != 0 &&
2839 (nd->nd_flag & ND_NFSV4) != 0 &&
2840 nvp->v_type == VDIR &&
2841 nvp->v_mountedhere != NULL) {
2842 new_mp = nvp->v_mountedhere;
2843 r = vfs_busy(new_mp, 0);
2844 vput(nvp);
2845 nvp = NULL;
2846 if (r == 0) {
2847 r = VFS_ROOT(new_mp,
2848 LK_SHARED, &nvp);
2849 needs_unbusy = 1;
2850 if (r == 0)
2851 at_root = 1;
2852 }
2853 }
2854 }
2855
2856 /*
2857 * If we failed to look up the entry, then it
2858 * has become invalid, most likely removed.
2859 */
2860 if (r != 0) {
2861 if (needs_unbusy)
2862 vfs_unbusy(new_mp);
2863 goto invalid;
2864 }
2865 KASSERT(refp != NULL || nvp != NULL,
2866 ("%s: undetected lookup error", __func__));
2867
2868 if (refp == NULL &&
2869 ((nd->nd_flag & ND_NFSV3) ||
2870 NFSNONZERO_ATTRBIT(&attrbits))) {
2871 r = nfsvno_getfh(nvp, &nfh, p);
2872 if (!r)
2873 r = nfsvno_getattr(nvp, nvap, nd, p,
2874 1, &attrbits);
2875 if (r == 0 && is_zfs == 1 &&
2876 nfsrv_enable_crossmntpt != 0 &&
2877 (nd->nd_flag & ND_NFSV4) != 0 &&
2878 nvp->v_type == VDIR &&
2879 vp->v_mount != nvp->v_mount) {
2880 /*
2881 * For a ZFS snapshot, there is a
2882 * pseudo mount that does not set
2883 * v_mountedhere, so it needs to
2884 * be detected via a different
2885 * mount structure.
2886 */
2887 at_root = 1;
2888 if (new_mp == mp)
2889 new_mp = nvp->v_mount;
2890 }
2891 }
2892
2893 /*
2894 * If we failed to get attributes of the entry,
2895 * then just skip it for NFSv3 (the traditional
2896 * behavior in the old NFS server).
2897 * For NFSv4 the behavior is controlled by
2898 * RDATTRERROR: we either ignore the error or
2899 * fail the request.
2900 * The exception is EOPNOTSUPP, which can be
2901 * returned by nfsvno_getfh() for certain
2902 * file systems, such as devfs. This indicates
2903 * that the file system cannot be exported,
2904 * so just skip over the entry.
2905 * Note that RDATTRERROR is never set for NFSv3.
2906 */
2907 if (r != 0) {
2908 if (!NFSISSET_ATTRBIT(&attrbits,
2909 NFSATTRBIT_RDATTRERROR) ||
2910 r == EOPNOTSUPP) {
2911 vput(nvp);
2912 if (needs_unbusy != 0)
2913 vfs_unbusy(new_mp);
2914 if ((nd->nd_flag & ND_NFSV3) ||
2915 r == EOPNOTSUPP)
2916 goto invalid;
2917 nd->nd_repstat = r;
2918 break;
2919 }
2920 }
2921 } else if (NFSNONZERO_ATTRBIT(&attrbits)) {
2922 /* Only need Type and/or Fileid. */
2923 VATTR_NULL(&nvap->na_vattr);
2924 nvap->na_fileid = dp->d_fileno;
2925 nfs_dtypetovtype(nvap, vp, dp->d_type);
2926 }
2927
2928 /*
2929 * Build the directory record xdr
2930 */
2931 if (nd->nd_flag & ND_NFSV3) {
2932 NFSM_BUILD(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
2933 *tl++ = newnfs_true;
2934 txdr_hyper(dp->d_fileno, tl);
2935 dirlen += nfsm_strtom(nd, dp->d_name, nlen);
2936 NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
2937 txdr_hyper(*cookiep, tl);
2938 nfsrv_postopattr(nd, 0, nvap);
2939 dirlen += nfsm_fhtom(NULL, nd, (u_int8_t *)&nfh,
2940 0, 1);
2941 dirlen += (5*NFSX_UNSIGNED+NFSX_V3POSTOPATTR);
2942 if (nvp != NULL)
2943 vput(nvp);
2944 } else {
2945 NFSM_BUILD(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
2946 *tl++ = newnfs_true;
2947 txdr_hyper(*cookiep, tl);
2948 dirlen += nfsm_strtom(nd, dp->d_name, nlen);
2949 xattrsupp = false;
2950 has_hiddensystem = false;
2951 has_namedattr = false;
2952 clone_blksize = 0;
2953 if (nvp != NULL) {
2954 supports_nfsv4acls =
2955 nfs_supportsnfsv4acls(nvp);
2956 if (NFSISSET_ATTRBIT(&attrbits,
2957 NFSATTRBIT_XATTRSUPPORT)) {
2958 ret = VOP_GETEXTATTR(nvp,
2959 EXTATTR_NAMESPACE_USER,
2960 "xxx", NULL, &atsiz,
2961 nd->nd_cred, p);
2962 xattrsupp = ret != EOPNOTSUPP;
2963 }
2964 if (VOP_PATHCONF(nvp,
2965 _PC_HAS_HIDDENSYSTEM, &pathval) !=
2966 0)
2967 pathval = 0;
2968 has_hiddensystem = pathval > 0;
2969 pathval = 0;
2970 if (NFSISSET_ATTRBIT(&attrbits,
2971 NFSATTRBIT_NAMEDATTR) &&
2972 VOP_PATHCONF(nvp, _PC_HAS_NAMEDATTR,
2973 &pathval) != 0)
2974 pathval = 0;
2975 has_namedattr = pathval > 0;
2976 pathval = 0;
2977 if (VOP_PATHCONF(nvp, _PC_CLONE_BLKSIZE,
2978 &pathval) != 0)
2979 pathval = 0;
2980 clone_blksize = pathval;
2981 NFSVOPUNLOCK(nvp);
2982 } else
2983 supports_nfsv4acls = 0;
2984 if (refp != NULL) {
2985 dirlen += nfsrv_putreferralattr(nd,
2986 &refbits, refp, 0,
2987 &nd->nd_repstat);
2988 if (nd->nd_repstat) {
2989 if (nvp != NULL)
2990 vrele(nvp);
2991 if (needs_unbusy != 0)
2992 vfs_unbusy(new_mp);
2993 break;
2994 }
2995 } else if (r) {
2996 dirlen += nfsvno_fillattr(nd, new_mp,
2997 nvp, nvap, &nfh, r, &rderrbits,
2998 nd->nd_cred, p, isdgram, 0,
2999 supports_nfsv4acls, at_root,
3000 mounted_on_fileno, xattrsupp,
3001 has_hiddensystem, has_namedattr,
3002 clone_blksize);
3003 } else {
3004 dirlen += nfsvno_fillattr(nd, new_mp,
3005 nvp, nvap, &nfh, r, &attrbits,
3006 nd->nd_cred, p, isdgram, 0,
3007 supports_nfsv4acls, at_root,
3008 mounted_on_fileno, xattrsupp,
3009 has_hiddensystem, has_namedattr,
3010 clone_blksize);
3011 }
3012 if (nvp != NULL)
3013 vrele(nvp);
3014 dirlen += (3 * NFSX_UNSIGNED);
3015 }
3016 if (needs_unbusy != 0)
3017 vfs_unbusy(new_mp);
3018 if (dirlen <= cnt)
3019 entrycnt++;
3020 }
3021 invalid:
3022 cpos += dp->d_reclen;
3023 dp = (struct dirent *)cpos;
3024 cookiep++;
3025 ncookies--;
3026 }
3027 vrele(vp);
3028 vfs_unbusy(mp);
3029
3030 /*
3031 * If dirlen > cnt, we must strip off the last entry. If that
3032 * results in an empty reply, report NFSERR_TOOSMALL.
3033 */
3034 if (dirlen > cnt || nd->nd_repstat) {
3035 if (!nd->nd_repstat && entrycnt == 0)
3036 nd->nd_repstat = NFSERR_TOOSMALL;
3037 if (nd->nd_repstat) {
3038 nfsm_trimtrailing(nd, mb0, bpos0, bextpg0, bextpgsiz0);
3039 if (nd->nd_flag & ND_NFSV3)
3040 nfsrv_postopattr(nd, getret, &at);
3041 } else
3042 nfsm_trimtrailing(nd, mb1, bpos1, bextpg1, bextpgsiz1);
3043 eofflag = 0;
3044 } else if (cpos < cend)
3045 eofflag = 0;
3046 if (!nd->nd_repstat) {
3047 NFSM_BUILD(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
3048 *tl++ = newnfs_false;
3049 if (eofflag)
3050 *tl = newnfs_true;
3051 else
3052 *tl = newnfs_false;
3053 }
3054 free(cookies, M_TEMP);
3055 free(rbuf, M_TEMP);
3056
3057 out:
3058 NFSEXITCODE2(0, nd);
3059 return (0);
3060 nfsmout:
3061 vput(vp);
3062 NFSEXITCODE2(error, nd);
3063 return (error);
3064 }
3065
3066 /*
3067 * Get the settable attributes out of the mbuf list.
3068 * (Return 0 or EBADRPC)
3069 */
3070 int
nfsrv_sattr(struct nfsrv_descript * nd,vnode_t vp,struct nfsvattr * nvap,nfsattrbit_t * attrbitp,NFSACL_T * aclp,struct thread * p)3071 nfsrv_sattr(struct nfsrv_descript *nd, vnode_t vp, struct nfsvattr *nvap,
3072 nfsattrbit_t *attrbitp, NFSACL_T *aclp, struct thread *p)
3073 {
3074 u_int32_t *tl;
3075 struct nfsv2_sattr *sp;
3076 int error = 0, toclient = 0;
3077
3078 switch (nd->nd_flag & (ND_NFSV2 | ND_NFSV3 | ND_NFSV4)) {
3079 case ND_NFSV2:
3080 NFSM_DISSECT(sp, struct nfsv2_sattr *, NFSX_V2SATTR);
3081 /*
3082 * Some old clients didn't fill in the high order 16bits.
3083 * --> check the low order 2 bytes for 0xffff
3084 */
3085 if ((fxdr_unsigned(int, sp->sa_mode) & 0xffff) != 0xffff)
3086 nvap->na_mode = nfstov_mode(sp->sa_mode);
3087 if (sp->sa_uid != newnfs_xdrneg1)
3088 nvap->na_uid = fxdr_unsigned(uid_t, sp->sa_uid);
3089 if (sp->sa_gid != newnfs_xdrneg1)
3090 nvap->na_gid = fxdr_unsigned(gid_t, sp->sa_gid);
3091 if (sp->sa_size != newnfs_xdrneg1)
3092 nvap->na_size = fxdr_unsigned(u_quad_t, sp->sa_size);
3093 if (sp->sa_atime.nfsv2_sec != newnfs_xdrneg1) {
3094 #ifdef notyet
3095 fxdr_nfsv2time(&sp->sa_atime, &nvap->na_atime);
3096 #else
3097 nvap->na_atime.tv_sec =
3098 fxdr_unsigned(u_int32_t,sp->sa_atime.nfsv2_sec);
3099 nvap->na_atime.tv_nsec = 0;
3100 #endif
3101 }
3102 if (sp->sa_mtime.nfsv2_sec != newnfs_xdrneg1)
3103 fxdr_nfsv2time(&sp->sa_mtime, &nvap->na_mtime);
3104 break;
3105 case ND_NFSV3:
3106 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3107 if (*tl == newnfs_true) {
3108 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3109 nvap->na_mode = nfstov_mode(*tl);
3110 }
3111 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3112 if (*tl == newnfs_true) {
3113 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3114 nvap->na_uid = fxdr_unsigned(uid_t, *tl);
3115 }
3116 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3117 if (*tl == newnfs_true) {
3118 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3119 nvap->na_gid = fxdr_unsigned(gid_t, *tl);
3120 }
3121 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3122 if (*tl == newnfs_true) {
3123 NFSM_DISSECT(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
3124 nvap->na_size = fxdr_hyper(tl);
3125 }
3126 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3127 switch (fxdr_unsigned(int, *tl)) {
3128 case NFSV3SATTRTIME_TOCLIENT:
3129 NFSM_DISSECT(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
3130 fxdr_nfsv3time(tl, &nvap->na_atime);
3131 toclient = 1;
3132 break;
3133 case NFSV3SATTRTIME_TOSERVER:
3134 vfs_timestamp(&nvap->na_atime);
3135 nvap->na_vaflags |= VA_UTIMES_NULL;
3136 break;
3137 }
3138 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3139 switch (fxdr_unsigned(int, *tl)) {
3140 case NFSV3SATTRTIME_TOCLIENT:
3141 NFSM_DISSECT(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
3142 fxdr_nfsv3time(tl, &nvap->na_mtime);
3143 nvap->na_vaflags &= ~VA_UTIMES_NULL;
3144 break;
3145 case NFSV3SATTRTIME_TOSERVER:
3146 vfs_timestamp(&nvap->na_mtime);
3147 if (!toclient)
3148 nvap->na_vaflags |= VA_UTIMES_NULL;
3149 break;
3150 }
3151 break;
3152 case ND_NFSV4:
3153 error = nfsv4_sattr(nd, vp, nvap, attrbitp, aclp, p);
3154 }
3155 nfsmout:
3156 NFSEXITCODE2(error, nd);
3157 return (error);
3158 }
3159
3160 /*
3161 * Handle the setable attributes for V4.
3162 * Returns NFSERR_BADXDR if it can't be parsed, 0 otherwise.
3163 */
3164 int
nfsv4_sattr(struct nfsrv_descript * nd,vnode_t vp,struct nfsvattr * nvap,nfsattrbit_t * attrbitp,NFSACL_T * aclp,struct thread * p)3165 nfsv4_sattr(struct nfsrv_descript *nd, vnode_t vp, struct nfsvattr *nvap,
3166 nfsattrbit_t *attrbitp, NFSACL_T *aclp, struct thread *p)
3167 {
3168 u_int32_t *tl;
3169 int attrsum = 0;
3170 int i, j;
3171 int error, attrsize, bitpos, aclsize, aceerr, retnotsup = 0;
3172 int moderet, toclient = 0;
3173 u_char *cp, namestr[NFSV4_SMALLSTR + 1];
3174 uid_t uid;
3175 gid_t gid;
3176 u_short mode, mask; /* Same type as va_mode. */
3177 struct vattr va;
3178
3179 error = nfsrv_getattrbits(nd, attrbitp, NULL, &retnotsup);
3180 if (error)
3181 goto nfsmout;
3182 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3183 attrsize = fxdr_unsigned(int, *tl);
3184
3185 /*
3186 * Loop around getting the setable attributes. If an unsupported
3187 * one is found, set nd_repstat == NFSERR_ATTRNOTSUPP and return.
3188 * Once nd_repstat != 0, do not set the attribute value, but keep
3189 * parsing the attribute(s).
3190 */
3191 if (retnotsup) {
3192 nd->nd_repstat = NFSERR_ATTRNOTSUPP;
3193 bitpos = NFSATTRBIT_MAX;
3194 } else {
3195 bitpos = 0;
3196 if (NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_HIDDEN) ||
3197 NFSISSET_ATTRBIT(attrbitp, NFSATTRBIT_SYSTEM))
3198 nvap->na_flags = 0;
3199 }
3200 moderet = 0;
3201 for (; bitpos < NFSATTRBIT_MAX; bitpos++) {
3202 if (attrsum > attrsize) {
3203 error = NFSERR_BADXDR;
3204 goto nfsmout;
3205 }
3206 if (NFSISSET_ATTRBIT(attrbitp, bitpos))
3207 switch (bitpos) {
3208 case NFSATTRBIT_SIZE:
3209 NFSM_DISSECT(tl, u_int32_t *, NFSX_HYPER);
3210 if (!nd->nd_repstat) {
3211 if (vp != NULL && vp->v_type != VREG)
3212 nd->nd_repstat = (vp->v_type == VDIR) ?
3213 NFSERR_ISDIR : NFSERR_INVAL;
3214 else
3215 nvap->na_size = fxdr_hyper(tl);
3216 }
3217 attrsum += NFSX_HYPER;
3218 break;
3219 case NFSATTRBIT_ACL:
3220 error = nfsrv_dissectacl(nd, aclp, true, &aceerr,
3221 &aclsize, p);
3222 if (error)
3223 goto nfsmout;
3224 if (aceerr && !nd->nd_repstat)
3225 nd->nd_repstat = aceerr;
3226 attrsum += aclsize;
3227 break;
3228 case NFSATTRBIT_ARCHIVE:
3229 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3230 if (!nd->nd_repstat)
3231 nd->nd_repstat = NFSERR_ATTRNOTSUPP;
3232 attrsum += NFSX_UNSIGNED;
3233 break;
3234 case NFSATTRBIT_HIDDEN:
3235 NFSM_DISSECT(tl, uint32_t *, NFSX_UNSIGNED);
3236 if (nd->nd_repstat == 0) {
3237 if (*tl == newnfs_true)
3238 nvap->na_flags |= UF_HIDDEN;
3239 }
3240 attrsum += NFSX_UNSIGNED;
3241 break;
3242 case NFSATTRBIT_MIMETYPE:
3243 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3244 i = fxdr_unsigned(int, *tl);
3245 error = nfsm_advance(nd, NFSM_RNDUP(i), -1);
3246 if (error)
3247 goto nfsmout;
3248 if (!nd->nd_repstat)
3249 nd->nd_repstat = NFSERR_ATTRNOTSUPP;
3250 attrsum += (NFSX_UNSIGNED + NFSM_RNDUP(i));
3251 break;
3252 case NFSATTRBIT_MODE:
3253 moderet = NFSERR_INVAL; /* Can't do MODESETMASKED. */
3254 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3255 if (!nd->nd_repstat)
3256 nvap->na_mode = nfstov_mode(*tl);
3257 attrsum += NFSX_UNSIGNED;
3258 break;
3259 case NFSATTRBIT_OWNER:
3260 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3261 j = fxdr_unsigned(int, *tl);
3262 if (j < 0) {
3263 error = NFSERR_BADXDR;
3264 goto nfsmout;
3265 }
3266 if (j > NFSV4_SMALLSTR)
3267 cp = malloc(j + 1, M_NFSSTRING, M_WAITOK);
3268 else
3269 cp = namestr;
3270 error = nfsrv_mtostr(nd, cp, j);
3271 if (error) {
3272 if (j > NFSV4_SMALLSTR)
3273 free(cp, M_NFSSTRING);
3274 goto nfsmout;
3275 }
3276 if (!nd->nd_repstat) {
3277 nd->nd_repstat = nfsv4_strtouid(nd, cp, j,
3278 &uid);
3279 if (!nd->nd_repstat)
3280 nvap->na_uid = uid;
3281 }
3282 if (j > NFSV4_SMALLSTR)
3283 free(cp, M_NFSSTRING);
3284 attrsum += (NFSX_UNSIGNED + NFSM_RNDUP(j));
3285 break;
3286 case NFSATTRBIT_OWNERGROUP:
3287 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3288 j = fxdr_unsigned(int, *tl);
3289 if (j < 0) {
3290 error = NFSERR_BADXDR;
3291 goto nfsmout;
3292 }
3293 if (j > NFSV4_SMALLSTR)
3294 cp = malloc(j + 1, M_NFSSTRING, M_WAITOK);
3295 else
3296 cp = namestr;
3297 error = nfsrv_mtostr(nd, cp, j);
3298 if (error) {
3299 if (j > NFSV4_SMALLSTR)
3300 free(cp, M_NFSSTRING);
3301 goto nfsmout;
3302 }
3303 if (!nd->nd_repstat) {
3304 nd->nd_repstat = nfsv4_strtogid(nd, cp, j,
3305 &gid);
3306 if (!nd->nd_repstat)
3307 nvap->na_gid = gid;
3308 }
3309 if (j > NFSV4_SMALLSTR)
3310 free(cp, M_NFSSTRING);
3311 attrsum += (NFSX_UNSIGNED + NFSM_RNDUP(j));
3312 break;
3313 case NFSATTRBIT_SYSTEM:
3314 NFSM_DISSECT(tl, uint32_t *, NFSX_UNSIGNED);
3315 if (nd->nd_repstat == 0) {
3316 if (*tl == newnfs_true)
3317 nvap->na_flags |= UF_SYSTEM;
3318 }
3319 attrsum += NFSX_UNSIGNED;
3320 break;
3321 case NFSATTRBIT_TIMEACCESSSET:
3322 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3323 attrsum += NFSX_UNSIGNED;
3324 if (fxdr_unsigned(int, *tl)==NFSV4SATTRTIME_TOCLIENT) {
3325 NFSM_DISSECT(tl, u_int32_t *, NFSX_V4TIME);
3326 if (!nd->nd_repstat)
3327 fxdr_nfsv4time(tl, &nvap->na_atime);
3328 toclient = 1;
3329 attrsum += NFSX_V4TIME;
3330 } else if (!nd->nd_repstat) {
3331 vfs_timestamp(&nvap->na_atime);
3332 nvap->na_vaflags |= VA_UTIMES_NULL;
3333 }
3334 break;
3335 case NFSATTRBIT_TIMEBACKUP:
3336 NFSM_DISSECT(tl, u_int32_t *, NFSX_V4TIME);
3337 if (!nd->nd_repstat)
3338 nd->nd_repstat = NFSERR_ATTRNOTSUPP;
3339 attrsum += NFSX_V4TIME;
3340 break;
3341 case NFSATTRBIT_TIMECREATE:
3342 NFSM_DISSECT(tl, u_int32_t *, NFSX_V4TIME);
3343 if (!nd->nd_repstat)
3344 fxdr_nfsv4time(tl, &nvap->na_btime);
3345 attrsum += NFSX_V4TIME;
3346 break;
3347 case NFSATTRBIT_TIMEMODIFYSET:
3348 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
3349 attrsum += NFSX_UNSIGNED;
3350 if (fxdr_unsigned(int, *tl)==NFSV4SATTRTIME_TOCLIENT) {
3351 NFSM_DISSECT(tl, u_int32_t *, NFSX_V4TIME);
3352 if (!nd->nd_repstat)
3353 fxdr_nfsv4time(tl, &nvap->na_mtime);
3354 nvap->na_vaflags &= ~VA_UTIMES_NULL;
3355 attrsum += NFSX_V4TIME;
3356 } else if (!nd->nd_repstat) {
3357 vfs_timestamp(&nvap->na_mtime);
3358 if (!toclient)
3359 nvap->na_vaflags |= VA_UTIMES_NULL;
3360 }
3361 break;
3362 case NFSATTRBIT_MODESETMASKED:
3363 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED);
3364 mode = fxdr_unsigned(u_short, *tl++);
3365 mask = fxdr_unsigned(u_short, *tl);
3366 /*
3367 * vp == NULL implies an Open/Create operation.
3368 * This attribute can only be used for Setattr and
3369 * only for NFSv4.1 or higher.
3370 * If moderet != 0, a mode attribute has also been
3371 * specified and this attribute cannot be done in the
3372 * same Setattr operation.
3373 */
3374 if (!nd->nd_repstat) {
3375 if ((nd->nd_flag & ND_NFSV41) == 0)
3376 nd->nd_repstat = NFSERR_ATTRNOTSUPP;
3377 else if ((mode & ~07777) != 0 ||
3378 (mask & ~07777) != 0 || vp == NULL)
3379 nd->nd_repstat = NFSERR_INVAL;
3380 else if (moderet == 0)
3381 moderet = VOP_GETATTR(vp, &va,
3382 nd->nd_cred);
3383 if (moderet == 0)
3384 nvap->na_mode = (mode & mask) |
3385 (va.va_mode & ~mask);
3386 else
3387 nd->nd_repstat = moderet;
3388 }
3389 attrsum += 2 * NFSX_UNSIGNED;
3390 break;
3391 case NFSATTRBIT_MODEUMASK:
3392 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED);
3393 mode = fxdr_unsigned(u_short, *tl++);
3394 mask = fxdr_unsigned(u_short, *tl);
3395 /*
3396 * If moderet != 0, mode has already been done.
3397 * If vp != NULL, this is not a file object creation.
3398 */
3399 if (!nd->nd_repstat) {
3400 if ((nd->nd_flag & ND_NFSV42) == 0)
3401 nd->nd_repstat = NFSERR_ATTRNOTSUPP;
3402 else if ((mask & ~0777) != 0 || vp != NULL ||
3403 moderet != 0)
3404 nd->nd_repstat = NFSERR_INVAL;
3405 else
3406 nvap->na_mode = (mode & ~mask);
3407 }
3408 attrsum += 2 * NFSX_UNSIGNED;
3409 break;
3410 default:
3411 nd->nd_repstat = NFSERR_ATTRNOTSUPP;
3412 /*
3413 * set bitpos so we drop out of the loop.
3414 */
3415 bitpos = NFSATTRBIT_MAX;
3416 break;
3417 }
3418 }
3419
3420 /*
3421 * some clients pad the attrlist, so we need to skip over the
3422 * padding. This also skips over unparsed non-supported attributes.
3423 */
3424 if (attrsum > attrsize) {
3425 error = NFSERR_BADXDR;
3426 } else {
3427 attrsize = NFSM_RNDUP(attrsize);
3428 if (attrsum < attrsize)
3429 error = nfsm_advance(nd, attrsize - attrsum, -1);
3430 }
3431 nfsmout:
3432 NFSEXITCODE2(error, nd);
3433 return (error);
3434 }
3435
3436 /*
3437 * Check/setup export credentials.
3438 */
3439 int
nfsd_excred(struct nfsrv_descript * nd,struct nfsexstuff * exp,struct ucred * credanon,bool testsec)3440 nfsd_excred(struct nfsrv_descript *nd, struct nfsexstuff *exp,
3441 struct ucred *credanon, bool testsec)
3442 {
3443 int error;
3444
3445 /*
3446 * Check/setup credentials.
3447 */
3448 if (nd->nd_flag & ND_GSS)
3449 exp->nes_exflag &= ~MNT_EXPORTANON;
3450
3451 /*
3452 * Check to see if the operation is allowed for this security flavor.
3453 */
3454 error = 0;
3455 if (testsec) {
3456 error = nfsvno_testexp(nd, exp);
3457 if (error != 0)
3458 goto out;
3459 }
3460
3461 /*
3462 * Check to see if the file system is exported V4 only.
3463 */
3464 if (NFSVNO_EXV4ONLY(exp) && !(nd->nd_flag & ND_NFSV4)) {
3465 error = NFSERR_PROGNOTV4;
3466 goto out;
3467 }
3468
3469 /*
3470 * Now, map the user credentials.
3471 * (Note that ND_AUTHNONE will only be set for an NFSv3
3472 * Fsinfo RPC. If set for anything else, this code might need
3473 * to change.)
3474 */
3475 if (NFSVNO_EXPORTED(exp)) {
3476 if (((nd->nd_flag & ND_GSS) == 0 && nd->nd_cred->cr_uid == 0) ||
3477 NFSVNO_EXPORTANON(exp) ||
3478 (nd->nd_flag & ND_AUTHNONE) != 0) {
3479 nd->nd_cred->cr_uid = credanon->cr_uid;
3480 nd->nd_cred->cr_gid = credanon->cr_gid;
3481 /*
3482 * 'credanon' is already a 'struct ucred' that was built
3483 * internally with calls to crsetgroups_and_egid(), so
3484 * we don't need a fallback here.
3485 */
3486 crsetgroups(nd->nd_cred, credanon->cr_ngroups,
3487 credanon->cr_groups);
3488 } else if ((nd->nd_flag & ND_GSS) == 0) {
3489 /*
3490 * If using AUTH_SYS, call nfsrv_getgrpscred() to see
3491 * if there is a replacement credential with a group
3492 * list set up by "nfsuserd -manage-gids".
3493 * If there is no replacement, nfsrv_getgrpscred()
3494 * simply returns its argument.
3495 */
3496 nd->nd_cred = nfsrv_getgrpscred(nd->nd_cred);
3497 }
3498 }
3499
3500 out:
3501 NFSEXITCODE2(error, nd);
3502 return (error);
3503 }
3504
3505 /*
3506 * Check exports.
3507 */
3508 int
nfsvno_checkexp(struct mount * mp,struct sockaddr * nam,struct nfsexstuff * exp,struct ucred ** credp)3509 nfsvno_checkexp(struct mount *mp, struct sockaddr *nam, struct nfsexstuff *exp,
3510 struct ucred **credp)
3511 {
3512 int error;
3513
3514 error = 0;
3515 *credp = NULL;
3516 MNT_ILOCK(mp);
3517 if (mp->mnt_exjail == NULL ||
3518 mp->mnt_exjail->cr_prison != curthread->td_ucred->cr_prison)
3519 error = EACCES;
3520 MNT_IUNLOCK(mp);
3521 if (error == 0)
3522 error = VFS_CHECKEXP(mp, nam, &exp->nes_exflag, credp,
3523 &exp->nes_numsecflavor, exp->nes_secflavors);
3524 if (error) {
3525 if (NFSD_VNET(nfs_rootfhset)) {
3526 exp->nes_exflag = 0;
3527 exp->nes_numsecflavor = 0;
3528 error = 0;
3529 }
3530 } else if (exp->nes_numsecflavor < 1 || exp->nes_numsecflavor >
3531 MAXSECFLAVORS) {
3532 printf("nfsvno_checkexp: numsecflavors out of range\n");
3533 exp->nes_numsecflavor = 0;
3534 error = EACCES;
3535 }
3536 NFSEXITCODE(error);
3537 return (error);
3538 }
3539
3540 /*
3541 * Get a vnode for a file handle and export stuff.
3542 */
3543 int
nfsvno_fhtovp(struct mount * mp,fhandle_t * fhp,struct sockaddr * nam,int lktype,struct vnode ** vpp,struct nfsexstuff * exp,struct ucred ** credp)3544 nfsvno_fhtovp(struct mount *mp, fhandle_t *fhp, struct sockaddr *nam,
3545 int lktype, struct vnode **vpp, struct nfsexstuff *exp,
3546 struct ucred **credp)
3547 {
3548 int error;
3549
3550 *credp = NULL;
3551 exp->nes_numsecflavor = 0;
3552 error = VFS_FHTOVP(mp, &fhp->fh_fid, lktype, vpp);
3553 if (error != 0)
3554 /* Make sure the server replies ESTALE to the client. */
3555 error = ESTALE;
3556 if (nam && !error) {
3557 MNT_ILOCK(mp);
3558 if (mp->mnt_exjail == NULL ||
3559 mp->mnt_exjail->cr_prison != curthread->td_ucred->cr_prison)
3560 error = EACCES;
3561 MNT_IUNLOCK(mp);
3562 if (error == 0)
3563 error = VFS_CHECKEXP(mp, nam, &exp->nes_exflag, credp,
3564 &exp->nes_numsecflavor, exp->nes_secflavors);
3565 if (error) {
3566 if (NFSD_VNET(nfs_rootfhset)) {
3567 exp->nes_exflag = 0;
3568 exp->nes_numsecflavor = 0;
3569 error = 0;
3570 } else {
3571 vput(*vpp);
3572 }
3573 } else if (exp->nes_numsecflavor < 1 || exp->nes_numsecflavor >
3574 MAXSECFLAVORS) {
3575 printf("nfsvno_fhtovp: numsecflavors out of range\n");
3576 exp->nes_numsecflavor = 0;
3577 error = EACCES;
3578 vput(*vpp);
3579 }
3580 }
3581 NFSEXITCODE(error);
3582 return (error);
3583 }
3584
3585 /*
3586 * nfsd_fhtovp() - convert a fh to a vnode ptr
3587 * - look up fsid in mount list (if not found ret error)
3588 * - get vp and export rights by calling nfsvno_fhtovp()
3589 * - if cred->cr_uid == 0 or MNT_EXPORTANON set it to credanon
3590 * for AUTH_SYS
3591 * - if mpp != NULL, return the mount point so that it can
3592 * be used for vn_finished_write() by the caller
3593 */
3594 void
nfsd_fhtovp(struct nfsrv_descript * nd,struct nfsrvfh * nfp,int lktype,struct vnode ** vpp,struct nfsexstuff * exp,struct mount ** mpp,int startwrite,int nextop)3595 nfsd_fhtovp(struct nfsrv_descript *nd, struct nfsrvfh *nfp, int lktype,
3596 struct vnode **vpp, struct nfsexstuff *exp,
3597 struct mount **mpp, int startwrite, int nextop)
3598 {
3599 struct mount *mp, *mpw;
3600 struct ucred *credanon;
3601 fhandle_t *fhp;
3602 int error;
3603
3604 if (mpp != NULL)
3605 *mpp = NULL;
3606 *vpp = NULL;
3607 fhp = (fhandle_t *)nfp->nfsrvfh_data;
3608 mp = vfs_busyfs(&fhp->fh_fsid);
3609 if (mp == NULL) {
3610 nd->nd_repstat = ESTALE;
3611 goto out;
3612 }
3613
3614 if (startwrite) {
3615 mpw = mp;
3616 error = vn_start_write(NULL, &mpw, V_WAIT);
3617 if (error != 0) {
3618 mpw = NULL;
3619 vfs_unbusy(mp);
3620 nd->nd_repstat = ESTALE;
3621 goto out;
3622 }
3623 if (lktype == LK_SHARED && !(MNT_SHARED_WRITES(mp)))
3624 lktype = LK_EXCLUSIVE;
3625 } else
3626 mpw = NULL;
3627
3628 nd->nd_repstat = nfsvno_fhtovp(mp, fhp, nd->nd_nam, lktype, vpp, exp,
3629 &credanon);
3630 vfs_unbusy(mp);
3631
3632 if (nd->nd_repstat == 0 &&
3633 nfp->nfsrvfh_len >= NFSX_MYFH + NFSX_V4NAMEDDIRFH &&
3634 nfp->nfsrvfh_len <= NFSX_MYFH + NFSX_V4NAMEDATTRFH) {
3635 if (nfp->nfsrvfh_len == NFSX_MYFH + NFSX_V4NAMEDDIRFH)
3636 vn_irflag_set_cond(*vpp, VIRF_NAMEDDIR);
3637 else
3638 vn_irflag_set_cond(*vpp, VIRF_NAMEDATTR);
3639 }
3640
3641 /*
3642 * For NFSv4 without a pseudo root fs, unexported file handles
3643 * can be returned, so that Lookup works everywhere.
3644 */
3645 if (!nd->nd_repstat && exp->nes_exflag == 0 &&
3646 !(nd->nd_flag & ND_NFSV4)) {
3647 vput(*vpp);
3648 *vpp = NULL;
3649 nd->nd_repstat = EACCES;
3650 }
3651
3652 /*
3653 * Personally, I've never seen any point in requiring a
3654 * reserved port#, since only in the rare case where the
3655 * clients are all boxes with secure system privileges,
3656 * does it provide any enhanced security, but... some people
3657 * believe it to be useful and keep putting this code back in.
3658 * (There is also some "security checker" out there that
3659 * complains if the nfs server doesn't enforce this.)
3660 * However, note the following:
3661 * RFC3530 (NFSv4) specifies that a reserved port# not be
3662 * required.
3663 * RFC2623 recommends that, if a reserved port# is checked for,
3664 * that there be a way to turn that off--> ifdef'd.
3665 */
3666 #ifdef NFS_REQRSVPORT
3667 if (!nd->nd_repstat) {
3668 struct sockaddr_in *saddr;
3669 struct sockaddr_in6 *saddr6;
3670
3671 saddr = NFSSOCKADDR(nd->nd_nam, struct sockaddr_in *);
3672 saddr6 = NFSSOCKADDR(nd->nd_nam, struct sockaddr_in6 *);
3673 if (!(nd->nd_flag & ND_NFSV4) &&
3674 ((saddr->sin_family == AF_INET &&
3675 ntohs(saddr->sin_port) >= IPPORT_RESERVED) ||
3676 (saddr6->sin6_family == AF_INET6 &&
3677 ntohs(saddr6->sin6_port) >= IPPORT_RESERVED))) {
3678 vput(*vpp);
3679 nd->nd_repstat = (NFSERR_AUTHERR | AUTH_TOOWEAK);
3680 }
3681 }
3682 #endif /* NFS_REQRSVPORT */
3683
3684 /*
3685 * Check/setup credentials.
3686 */
3687 if (!nd->nd_repstat) {
3688 nd->nd_saveduid = nd->nd_cred->cr_uid;
3689 nd->nd_repstat = nfsd_excred(nd, exp, credanon,
3690 nfsrv_checkwrongsec(nd, nextop, (*vpp)->v_type));
3691 if (nd->nd_repstat)
3692 vput(*vpp);
3693 }
3694 if (credanon != NULL)
3695 crfree(credanon);
3696 if (nd->nd_repstat) {
3697 vn_finished_write(mpw);
3698 *vpp = NULL;
3699 } else if (mpp != NULL) {
3700 *mpp = mpw;
3701 }
3702
3703 out:
3704 NFSEXITCODE2(0, nd);
3705 }
3706
3707 /*
3708 * glue for fp.
3709 */
3710 static int
fp_getfvp(struct thread * p,int fd,struct file ** fpp,struct vnode ** vpp)3711 fp_getfvp(struct thread *p, int fd, struct file **fpp, struct vnode **vpp)
3712 {
3713 struct filedesc *fdp;
3714 struct file *fp;
3715 int error = 0;
3716
3717 fdp = p->td_proc->p_fd;
3718 if (fd < 0 || fd >= fdp->fd_nfiles ||
3719 (fp = fdp->fd_ofiles[fd].fde_file) == NULL) {
3720 error = EBADF;
3721 goto out;
3722 }
3723 *fpp = fp;
3724
3725 out:
3726 NFSEXITCODE(error);
3727 return (error);
3728 }
3729
3730 /*
3731 * Called from nfssvc() to update the exports list. Just call
3732 * vfs_export(). This has to be done, since the v4 root fake fs isn't
3733 * in the mount list.
3734 */
3735 int
nfsrv_v4rootexport(void * argp,struct ucred * cred,struct thread * p)3736 nfsrv_v4rootexport(void *argp, struct ucred *cred, struct thread *p)
3737 {
3738 struct nfsex_args *nfsexargp = (struct nfsex_args *)argp;
3739 int error = 0;
3740 struct nameidata nd;
3741 fhandle_t fh;
3742
3743 error = vfs_export(NFSD_VNET(nfsv4root_mnt), &nfsexargp->export, false);
3744 if ((nfsexargp->export.ex_flags & MNT_DELEXPORT) != 0)
3745 NFSD_VNET(nfs_rootfhset) = 0;
3746 else if (error == 0) {
3747 if (nfsexargp->fspec == NULL) {
3748 error = EPERM;
3749 goto out;
3750 }
3751 /*
3752 * If fspec != NULL, this is the v4root path.
3753 */
3754 NDINIT(&nd, LOOKUP, FOLLOW, UIO_USERSPACE, nfsexargp->fspec);
3755 if ((error = namei(&nd)) != 0)
3756 goto out;
3757 NDFREE_PNBUF(&nd);
3758 error = nfsvno_getfh(nd.ni_vp, &fh, p);
3759 vrele(nd.ni_vp);
3760 if (!error) {
3761 NFSD_VNET(nfs_rootfh).nfsrvfh_len = NFSX_MYFH;
3762 NFSBCOPY((caddr_t)&fh,
3763 NFSD_VNET(nfs_rootfh).nfsrvfh_data,
3764 sizeof (fhandle_t));
3765 NFSD_VNET(nfs_rootfhset) = 1;
3766 }
3767 }
3768
3769 out:
3770 NFSEXITCODE(error);
3771 return (error);
3772 }
3773
3774 /*
3775 * This function needs to test to see if the system is near its limit
3776 * for memory allocation via malloc() or mget() and return True iff
3777 * either of these resources are near their limit.
3778 * XXX (For now, this is just a stub.)
3779 */
3780 int nfsrv_testmalloclimit = 0;
3781 int
nfsrv_mallocmget_limit(void)3782 nfsrv_mallocmget_limit(void)
3783 {
3784 static int printmesg = 0;
3785 static int testval = 1;
3786
3787 if (nfsrv_testmalloclimit && (testval++ % 1000) == 0) {
3788 if ((printmesg++ % 100) == 0)
3789 printf("nfsd: malloc/mget near limit\n");
3790 return (1);
3791 }
3792 return (0);
3793 }
3794
3795 /*
3796 * BSD specific initialization of a mount point.
3797 */
3798 void
nfsd_mntinit(void)3799 nfsd_mntinit(void)
3800 {
3801
3802 NFSD_LOCK();
3803 if (NFSD_VNET(nfsrv_mntinited)) {
3804 NFSD_UNLOCK();
3805 return;
3806 }
3807 NFSD_VNET(nfsrv_mntinited) = true;
3808 nfsrvd_init(0);
3809 NFSD_UNLOCK();
3810
3811 NFSD_VNET(nfsv4root_mnt) = malloc(sizeof(struct mount), M_TEMP,
3812 M_WAITOK | M_ZERO);
3813 NFSD_VNET(nfsv4root_mnt)->mnt_flag = (MNT_RDONLY | MNT_EXPORTED);
3814 mtx_init(&NFSD_VNET(nfsv4root_mnt)->mnt_mtx, "nfs4mnt", NULL, MTX_DEF);
3815 lockinit(&NFSD_VNET(nfsv4root_mnt)->mnt_explock, PVFS, "explock", 0, 0);
3816 TAILQ_INIT(&NFSD_VNET(nfsv4root_mnt)->mnt_nvnodelist);
3817 TAILQ_INIT(&NFSD_VNET(nfsv4root_mnt)->mnt_lazyvnodelist);
3818 NFSD_VNET(nfsv4root_mnt)->mnt_export = NULL;
3819 TAILQ_INIT(&NFSD_VNET(nfsv4root_opt));
3820 TAILQ_INIT(&NFSD_VNET(nfsv4root_newopt));
3821 NFSD_VNET(nfsv4root_mnt)->mnt_opt = &NFSD_VNET(nfsv4root_opt);
3822 NFSD_VNET(nfsv4root_mnt)->mnt_optnew = &NFSD_VNET(nfsv4root_newopt);
3823 NFSD_VNET(nfsv4root_mnt)->mnt_nvnodelistsize = 0;
3824 NFSD_VNET(nfsv4root_mnt)->mnt_lazyvnodelistsize = 0;
3825 callout_init(&NFSD_VNET(nfsd_callout), 1);
3826
3827 nfsrvd_initcache();
3828 nfsd_init();
3829 }
3830
3831 static void
nfsd_timer(void * arg)3832 nfsd_timer(void *arg)
3833 {
3834 struct vnet *vnetp;
3835
3836 vnetp = (struct vnet *)arg;
3837 NFSD_CURVNET_SET_QUIET(vnetp);
3838 nfsrv_servertimer(vnetp);
3839 callout_reset_sbt(&NFSD_VNET(nfsd_callout), SBT_1S, SBT_1S, nfsd_timer,
3840 arg, 0);
3841 NFSD_CURVNET_RESTORE();
3842 }
3843
3844 /*
3845 * Get a vnode for a file handle, without checking exports, etc.
3846 */
3847 struct vnode *
nfsvno_getvp(fhandle_t * fhp)3848 nfsvno_getvp(fhandle_t *fhp)
3849 {
3850 struct mount *mp;
3851 struct vnode *vp;
3852 int error;
3853
3854 mp = vfs_busyfs(&fhp->fh_fsid);
3855 if (mp == NULL)
3856 return (NULL);
3857 error = VFS_FHTOVP(mp, &fhp->fh_fid, LK_EXCLUSIVE, &vp);
3858 vfs_unbusy(mp);
3859 if (error)
3860 return (NULL);
3861 return (vp);
3862 }
3863
3864 /*
3865 * Do a local VOP_ADVLOCK().
3866 */
3867 int
nfsvno_advlock(struct vnode * vp,int ftype,u_int64_t first,u_int64_t end,struct thread * td)3868 nfsvno_advlock(struct vnode *vp, int ftype, u_int64_t first,
3869 u_int64_t end, struct thread *td)
3870 {
3871 int error = 0;
3872 struct flock fl;
3873 u_int64_t tlen;
3874
3875 if (nfsrv_dolocallocks == 0)
3876 goto out;
3877 ASSERT_VOP_UNLOCKED(vp, "nfsvno_advlock: vp locked");
3878
3879 fl.l_whence = SEEK_SET;
3880 fl.l_type = ftype;
3881 fl.l_start = (off_t)first;
3882 if (end == NFS64BITSSET) {
3883 fl.l_len = 0;
3884 } else {
3885 tlen = end - first;
3886 fl.l_len = (off_t)tlen;
3887 }
3888 /*
3889 * For FreeBSD8, the l_pid and l_sysid must be set to the same
3890 * values for all calls, so that all locks will be held by the
3891 * nfsd server. (The nfsd server handles conflicts between the
3892 * various clients.)
3893 * Since an NFSv4 lockowner is a ClientID plus an array of up to 1024
3894 * bytes, so it can't be put in l_sysid.
3895 */
3896 if (nfsv4_sysid == 0)
3897 nfsv4_sysid = nlm_acquire_next_sysid();
3898 fl.l_pid = (pid_t)0;
3899 fl.l_sysid = (int)nfsv4_sysid;
3900
3901 if (ftype == F_UNLCK)
3902 error = VOP_ADVLOCK(vp, (caddr_t)td->td_proc, F_UNLCK, &fl,
3903 (F_POSIX | F_REMOTE));
3904 else
3905 error = VOP_ADVLOCK(vp, (caddr_t)td->td_proc, F_SETLK, &fl,
3906 (F_POSIX | F_REMOTE));
3907
3908 out:
3909 NFSEXITCODE(error);
3910 return (error);
3911 }
3912
3913 /*
3914 * Check the nfsv4 root exports.
3915 */
3916 int
nfsvno_v4rootexport(struct nfsrv_descript * nd)3917 nfsvno_v4rootexport(struct nfsrv_descript *nd)
3918 {
3919 struct ucred *credanon;
3920 int error = 0, numsecflavor, secflavors[MAXSECFLAVORS], i;
3921 uint64_t exflags;
3922
3923 error = vfs_stdcheckexp(NFSD_VNET(nfsv4root_mnt), nd->nd_nam, &exflags,
3924 &credanon, &numsecflavor, secflavors);
3925 if (error) {
3926 error = NFSERR_PROGUNAVAIL;
3927 goto out;
3928 }
3929 if (credanon != NULL)
3930 crfree(credanon);
3931 for (i = 0; i < numsecflavor; i++) {
3932 if (secflavors[i] == AUTH_SYS)
3933 nd->nd_flag |= ND_EXAUTHSYS;
3934 else if (secflavors[i] == RPCSEC_GSS_KRB5)
3935 nd->nd_flag |= ND_EXGSS;
3936 else if (secflavors[i] == RPCSEC_GSS_KRB5I)
3937 nd->nd_flag |= ND_EXGSSINTEGRITY;
3938 else if (secflavors[i] == RPCSEC_GSS_KRB5P)
3939 nd->nd_flag |= ND_EXGSSPRIVACY;
3940 }
3941
3942 /* And set ND_EXxx flags for TLS. */
3943 if ((exflags & MNT_EXTLS) != 0) {
3944 nd->nd_flag |= ND_EXTLS;
3945 if ((exflags & MNT_EXTLSCERT) != 0)
3946 nd->nd_flag |= ND_EXTLSCERT;
3947 if ((exflags & MNT_EXTLSCERTUSER) != 0)
3948 nd->nd_flag |= ND_EXTLSCERTUSER;
3949 }
3950
3951 out:
3952 NFSEXITCODE(error);
3953 return (error);
3954 }
3955
3956 /*
3957 * Nfs server pseudo system call for the nfsd's
3958 */
3959 /*
3960 * MPSAFE
3961 */
3962 static int
nfssvc_nfsd(struct thread * td,struct nfssvc_args * uap)3963 nfssvc_nfsd(struct thread *td, struct nfssvc_args *uap)
3964 {
3965 struct file *fp;
3966 struct nfsd_addsock_args sockarg;
3967 struct nfsd_nfsd_args nfsdarg;
3968 struct nfsd_nfsd_oargs onfsdarg;
3969 struct nfsd_pnfsd_args pnfsdarg;
3970 struct vnode *vp, *nvp, *curdvp;
3971 struct pnfsdsfile *pf;
3972 struct nfsdevice *ds, *fds;
3973 cap_rights_t rights;
3974 int buflen, error, ret;
3975 char *buf, *cp, *cp2, *cp3;
3976 char fname[PNFS_FILENAME_LEN + 1];
3977
3978 NFSD_CURVNET_SET(NFSD_TD_TO_VNET(td));
3979 if (uap->flag & NFSSVC_NFSDADDSOCK) {
3980 error = copyin(uap->argp, (caddr_t)&sockarg, sizeof (sockarg));
3981 if (error)
3982 goto out;
3983 /*
3984 * Since we don't know what rights might be required,
3985 * pretend that we need them all. It is better to be too
3986 * careful than too reckless.
3987 */
3988 error = fget(td, sockarg.sock,
3989 cap_rights_init_one(&rights, CAP_SOCK_SERVER), &fp);
3990 if (error != 0)
3991 goto out;
3992 if (fp->f_type != DTYPE_SOCKET) {
3993 fdrop(fp, td);
3994 error = EPERM;
3995 goto out;
3996 }
3997 error = nfsrvd_addsock(fp);
3998 fdrop(fp, td);
3999 } else if (uap->flag & NFSSVC_NFSDNFSD) {
4000 if (uap->argp == NULL) {
4001 error = EINVAL;
4002 goto out;
4003 }
4004 if ((uap->flag & NFSSVC_NEWSTRUCT) == 0) {
4005 error = copyin(uap->argp, &onfsdarg, sizeof(onfsdarg));
4006 if (error == 0) {
4007 nfsdarg.principal = onfsdarg.principal;
4008 nfsdarg.minthreads = onfsdarg.minthreads;
4009 nfsdarg.maxthreads = onfsdarg.maxthreads;
4010 nfsdarg.version = 1;
4011 nfsdarg.addr = NULL;
4012 nfsdarg.addrlen = 0;
4013 nfsdarg.dnshost = NULL;
4014 nfsdarg.dnshostlen = 0;
4015 nfsdarg.dspath = NULL;
4016 nfsdarg.dspathlen = 0;
4017 nfsdarg.mdspath = NULL;
4018 nfsdarg.mdspathlen = 0;
4019 nfsdarg.mirrorcnt = 1;
4020 }
4021 } else
4022 error = copyin(uap->argp, &nfsdarg, sizeof(nfsdarg));
4023 if (error)
4024 goto out;
4025 if (nfsdarg.addrlen > 0 && nfsdarg.addrlen < 10000 &&
4026 nfsdarg.dnshostlen > 0 && nfsdarg.dnshostlen < 10000 &&
4027 nfsdarg.dspathlen > 0 && nfsdarg.dspathlen < 10000 &&
4028 nfsdarg.mdspathlen > 0 && nfsdarg.mdspathlen < 10000 &&
4029 nfsdarg.mirrorcnt >= 1 &&
4030 nfsdarg.mirrorcnt <= NFSDEV_MAXMIRRORS &&
4031 nfsdarg.addr != NULL && nfsdarg.dnshost != NULL &&
4032 nfsdarg.dspath != NULL && nfsdarg.mdspath != NULL) {
4033 NFSD_DEBUG(1, "addrlen=%d dspathlen=%d dnslen=%d"
4034 " mdspathlen=%d mirrorcnt=%d\n", nfsdarg.addrlen,
4035 nfsdarg.dspathlen, nfsdarg.dnshostlen,
4036 nfsdarg.mdspathlen, nfsdarg.mirrorcnt);
4037 cp = malloc(nfsdarg.addrlen + 1, M_TEMP, M_WAITOK);
4038 error = copyin(nfsdarg.addr, cp, nfsdarg.addrlen);
4039 if (error != 0) {
4040 free(cp, M_TEMP);
4041 goto out;
4042 }
4043 cp[nfsdarg.addrlen] = '\0'; /* Ensure nul term. */
4044 nfsdarg.addr = cp;
4045 cp = malloc(nfsdarg.dnshostlen + 1, M_TEMP, M_WAITOK);
4046 error = copyin(nfsdarg.dnshost, cp, nfsdarg.dnshostlen);
4047 if (error != 0) {
4048 free(nfsdarg.addr, M_TEMP);
4049 free(cp, M_TEMP);
4050 goto out;
4051 }
4052 cp[nfsdarg.dnshostlen] = '\0'; /* Ensure nul term. */
4053 nfsdarg.dnshost = cp;
4054 cp = malloc(nfsdarg.dspathlen + 1, M_TEMP, M_WAITOK);
4055 error = copyin(nfsdarg.dspath, cp, nfsdarg.dspathlen);
4056 if (error != 0) {
4057 free(nfsdarg.addr, M_TEMP);
4058 free(nfsdarg.dnshost, M_TEMP);
4059 free(cp, M_TEMP);
4060 goto out;
4061 }
4062 cp[nfsdarg.dspathlen] = '\0'; /* Ensure nul term. */
4063 nfsdarg.dspath = cp;
4064 cp = malloc(nfsdarg.mdspathlen + 1, M_TEMP, M_WAITOK);
4065 error = copyin(nfsdarg.mdspath, cp, nfsdarg.mdspathlen);
4066 if (error != 0) {
4067 free(nfsdarg.addr, M_TEMP);
4068 free(nfsdarg.dnshost, M_TEMP);
4069 free(nfsdarg.dspath, M_TEMP);
4070 free(cp, M_TEMP);
4071 goto out;
4072 }
4073 cp[nfsdarg.mdspathlen] = '\0'; /* Ensure nul term. */
4074 nfsdarg.mdspath = cp;
4075 } else {
4076 nfsdarg.addr = NULL;
4077 nfsdarg.addrlen = 0;
4078 nfsdarg.dnshost = NULL;
4079 nfsdarg.dnshostlen = 0;
4080 nfsdarg.dspath = NULL;
4081 nfsdarg.dspathlen = 0;
4082 nfsdarg.mdspath = NULL;
4083 nfsdarg.mdspathlen = 0;
4084 nfsdarg.mirrorcnt = 1;
4085 }
4086 nfsd_timer(NFSD_TD_TO_VNET(td));
4087 error = nfsrvd_nfsd(td, &nfsdarg);
4088 callout_drain(&NFSD_VNET(nfsd_callout));
4089 free(nfsdarg.addr, M_TEMP);
4090 free(nfsdarg.dnshost, M_TEMP);
4091 free(nfsdarg.dspath, M_TEMP);
4092 free(nfsdarg.mdspath, M_TEMP);
4093 } else if (uap->flag & NFSSVC_PNFSDS) {
4094 error = copyin(uap->argp, &pnfsdarg, sizeof(pnfsdarg));
4095 if (error == 0 && (pnfsdarg.op == PNFSDOP_DELDSSERVER ||
4096 pnfsdarg.op == PNFSDOP_FORCEDELDS)) {
4097 cp = malloc(PATH_MAX + 1, M_TEMP, M_WAITOK);
4098 error = copyinstr(pnfsdarg.dspath, cp, PATH_MAX + 1,
4099 NULL);
4100 if (error == 0)
4101 error = nfsrv_deldsserver(pnfsdarg.op, cp, td);
4102 free(cp, M_TEMP);
4103 } else if (error == 0 && pnfsdarg.op == PNFSDOP_COPYMR) {
4104 cp = malloc(PATH_MAX + 1, M_TEMP, M_WAITOK);
4105 buflen = sizeof(*pf) * NFSDEV_MAXMIRRORS;
4106 buf = malloc(buflen, M_TEMP, M_WAITOK);
4107 error = copyinstr(pnfsdarg.mdspath, cp, PATH_MAX + 1,
4108 NULL);
4109 NFSD_DEBUG(4, "pnfsdcopymr cp mdspath=%d\n", error);
4110 if (error == 0 && pnfsdarg.dspath != NULL) {
4111 cp2 = malloc(PATH_MAX + 1, M_TEMP, M_WAITOK);
4112 error = copyinstr(pnfsdarg.dspath, cp2,
4113 PATH_MAX + 1, NULL);
4114 NFSD_DEBUG(4, "pnfsdcopymr cp dspath=%d\n",
4115 error);
4116 } else
4117 cp2 = NULL;
4118 if (error == 0 && pnfsdarg.curdspath != NULL) {
4119 cp3 = malloc(PATH_MAX + 1, M_TEMP, M_WAITOK);
4120 error = copyinstr(pnfsdarg.curdspath, cp3,
4121 PATH_MAX + 1, NULL);
4122 NFSD_DEBUG(4, "pnfsdcopymr cp curdspath=%d\n",
4123 error);
4124 } else
4125 cp3 = NULL;
4126 curdvp = NULL;
4127 fds = NULL;
4128 if (error == 0)
4129 error = nfsrv_mdscopymr(cp, cp2, cp3, buf,
4130 &buflen, fname, td, &vp, &nvp, &pf, &ds,
4131 &fds);
4132 NFSD_DEBUG(4, "nfsrv_mdscopymr=%d\n", error);
4133 if (error == 0) {
4134 if (pf->dsf_dir >= nfsrv_dsdirsize) {
4135 printf("copymr: dsdir out of range\n");
4136 pf->dsf_dir = 0;
4137 }
4138 NFSD_DEBUG(4, "copymr: buflen=%d\n", buflen);
4139 error = nfsrv_copymr(vp, nvp,
4140 ds->nfsdev_dsdir[pf->dsf_dir], ds, pf,
4141 (struct pnfsdsfile *)buf,
4142 buflen / sizeof(*pf), td->td_ucred, td);
4143 vput(vp);
4144 vput(nvp);
4145 if (fds != NULL && error == 0) {
4146 curdvp = fds->nfsdev_dsdir[pf->dsf_dir];
4147 ret = vn_lock(curdvp, LK_EXCLUSIVE);
4148 if (ret == 0) {
4149 nfsrv_dsremove(curdvp, fname,
4150 td->td_ucred, td);
4151 NFSVOPUNLOCK(curdvp);
4152 }
4153 }
4154 NFSD_DEBUG(4, "nfsrv_copymr=%d\n", error);
4155 }
4156 free(cp, M_TEMP);
4157 free(cp2, M_TEMP);
4158 free(cp3, M_TEMP);
4159 free(buf, M_TEMP);
4160 }
4161 } else {
4162 error = nfssvc_srvcall(td, uap, td->td_ucred);
4163 }
4164
4165 out:
4166 NFSD_CURVNET_RESTORE();
4167 NFSEXITCODE(error);
4168 return (error);
4169 }
4170
4171 static int
nfssvc_srvcall(struct thread * p,struct nfssvc_args * uap,struct ucred * cred)4172 nfssvc_srvcall(struct thread *p, struct nfssvc_args *uap, struct ucred *cred)
4173 {
4174 struct nfsex_args export;
4175 struct nfsex_oldargs oexp;
4176 struct file *fp = NULL;
4177 int stablefd, i, len;
4178 struct nfsd_clid adminrevoke;
4179 struct nfsd_dumplist dumplist;
4180 struct nfsd_dumpclients *dumpclients;
4181 struct nfsd_dumplocklist dumplocklist;
4182 struct nfsd_dumplocks *dumplocks;
4183 struct nameidata nd;
4184 vnode_t vp;
4185 int error = EINVAL, igotlock;
4186 struct proc *procp;
4187 gid_t *grps;
4188
4189 if (uap->flag & NFSSVC_PUBLICFH) {
4190 NFSBZERO((caddr_t)&nfs_pubfh.nfsrvfh_data,
4191 sizeof (fhandle_t));
4192 error = copyin(uap->argp,
4193 &nfs_pubfh.nfsrvfh_data, sizeof (fhandle_t));
4194 if (!error)
4195 nfs_pubfhset = 1;
4196 } else if ((uap->flag & (NFSSVC_V4ROOTEXPORT | NFSSVC_NEWSTRUCT)) ==
4197 (NFSSVC_V4ROOTEXPORT | NFSSVC_NEWSTRUCT)) {
4198 error = copyin(uap->argp,(caddr_t)&export,
4199 sizeof (struct nfsex_args));
4200 if (!error) {
4201 grps = NULL;
4202 if (export.export.ex_ngroups > NGROUPS_MAX ||
4203 export.export.ex_ngroups < 0)
4204 error = EINVAL;
4205 else if (export.export.ex_ngroups > 0) {
4206 grps = malloc(export.export.ex_ngroups *
4207 sizeof(gid_t), M_TEMP, M_WAITOK);
4208 error = copyin(export.export.ex_groups, grps,
4209 export.export.ex_ngroups * sizeof(gid_t));
4210 export.export.ex_groups = grps;
4211 } else
4212 export.export.ex_groups = NULL;
4213 if (!error)
4214 error = nfsrv_v4rootexport(&export, cred, p);
4215 free(grps, M_TEMP);
4216 }
4217 } else if ((uap->flag & (NFSSVC_V4ROOTEXPORT | NFSSVC_NEWSTRUCT)) ==
4218 NFSSVC_V4ROOTEXPORT) {
4219 error = copyin(uap->argp,(caddr_t)&oexp,
4220 sizeof (struct nfsex_oldargs));
4221 if (!error) {
4222 memset(&export.export, 0, sizeof(export.export));
4223 export.export.ex_flags = (uint64_t)oexp.export.ex_flags;
4224 export.export.ex_root = oexp.export.ex_root;
4225 export.export.ex_uid = oexp.export.ex_anon.cr_uid;
4226 export.export.ex_ngroups =
4227 oexp.export.ex_anon.cr_ngroups;
4228 export.export.ex_groups = NULL;
4229 if (export.export.ex_ngroups > XU_NGROUPS ||
4230 export.export.ex_ngroups < 0)
4231 error = EINVAL;
4232 else if (export.export.ex_ngroups > 0) {
4233 export.export.ex_groups = malloc(
4234 export.export.ex_ngroups * sizeof(gid_t),
4235 M_TEMP, M_WAITOK);
4236 for (i = 0; i < export.export.ex_ngroups; i++)
4237 export.export.ex_groups[i] =
4238 oexp.export.ex_anon.cr_groups[i];
4239 }
4240 export.export.ex_addr = oexp.export.ex_addr;
4241 export.export.ex_addrlen = oexp.export.ex_addrlen;
4242 export.export.ex_mask = oexp.export.ex_mask;
4243 export.export.ex_masklen = oexp.export.ex_masklen;
4244 export.export.ex_indexfile = oexp.export.ex_indexfile;
4245 export.export.ex_numsecflavors =
4246 oexp.export.ex_numsecflavors;
4247 if (export.export.ex_numsecflavors >= MAXSECFLAVORS ||
4248 export.export.ex_numsecflavors < 0)
4249 error = EINVAL;
4250 else {
4251 for (i = 0; i < export.export.ex_numsecflavors;
4252 i++)
4253 export.export.ex_secflavors[i] =
4254 oexp.export.ex_secflavors[i];
4255 }
4256 export.fspec = oexp.fspec;
4257 if (error == 0)
4258 error = nfsrv_v4rootexport(&export, cred, p);
4259 free(export.export.ex_groups, M_TEMP);
4260 }
4261 } else if (uap->flag & NFSSVC_NOPUBLICFH) {
4262 nfs_pubfhset = 0;
4263 error = 0;
4264 } else if (uap->flag & NFSSVC_STABLERESTART) {
4265 error = copyin(uap->argp, (caddr_t)&stablefd,
4266 sizeof (int));
4267 if (!error)
4268 error = fp_getfvp(p, stablefd, &fp, &vp);
4269 if (!error && (NFSFPFLAG(fp) & (FREAD | FWRITE)) != (FREAD | FWRITE))
4270 error = EBADF;
4271 if (!error && NFSD_VNET(nfsrv_numnfsd) != 0)
4272 error = ENXIO;
4273 if (!error) {
4274 NFSD_VNET(nfsrv_stablefirst).nsf_fp = fp;
4275 nfsrv_setupstable(p);
4276 }
4277 } else if (uap->flag & NFSSVC_ADMINREVOKE) {
4278 error = copyin(uap->argp, (caddr_t)&adminrevoke,
4279 sizeof (struct nfsd_clid));
4280 if (!error)
4281 error = nfsrv_adminrevoke(&adminrevoke, p);
4282 } else if (uap->flag & NFSSVC_DUMPCLIENTS) {
4283 error = copyin(uap->argp, (caddr_t)&dumplist,
4284 sizeof (struct nfsd_dumplist));
4285 if (!error && (dumplist.ndl_size < 1 ||
4286 dumplist.ndl_size > NFSRV_MAXDUMPLIST))
4287 error = EPERM;
4288 if (!error) {
4289 len = sizeof (struct nfsd_dumpclients) * dumplist.ndl_size;
4290 dumpclients = malloc(len, M_TEMP, M_WAITOK | M_ZERO);
4291 nfsrv_dumpclients(dumpclients, dumplist.ndl_size);
4292 error = copyout(dumpclients, dumplist.ndl_list, len);
4293 free(dumpclients, M_TEMP);
4294 }
4295 } else if (uap->flag & NFSSVC_DUMPLOCKS) {
4296 error = copyin(uap->argp, (caddr_t)&dumplocklist,
4297 sizeof (struct nfsd_dumplocklist));
4298 if (!error && (dumplocklist.ndllck_size < 1 ||
4299 dumplocklist.ndllck_size > NFSRV_MAXDUMPLIST))
4300 error = EPERM;
4301 if (!error)
4302 error = nfsrv_lookupfilename(&nd,
4303 dumplocklist.ndllck_fname, p);
4304 if (!error) {
4305 len = sizeof (struct nfsd_dumplocks) *
4306 dumplocklist.ndllck_size;
4307 dumplocks = malloc(len, M_TEMP, M_WAITOK | M_ZERO);
4308 nfsrv_dumplocks(nd.ni_vp, dumplocks,
4309 dumplocklist.ndllck_size, p);
4310 vput(nd.ni_vp);
4311 error = copyout(dumplocks, dumplocklist.ndllck_list,
4312 len);
4313 free(dumplocks, M_TEMP);
4314 }
4315 } else if (uap->flag & NFSSVC_BACKUPSTABLE) {
4316 procp = p->td_proc;
4317 PROC_LOCK(procp);
4318 nfsd_master_pid = procp->p_pid;
4319 bcopy(procp->p_comm, nfsd_master_comm, MAXCOMLEN + 1);
4320 nfsd_master_start = procp->p_stats->p_start;
4321 NFSD_VNET(nfsd_master_proc) = procp;
4322 PROC_UNLOCK(procp);
4323 } else if ((uap->flag & NFSSVC_SUSPENDNFSD) != 0) {
4324 NFSLOCKV4ROOTMUTEX();
4325 if (!NFSD_VNET(nfsrv_suspend_nfsd)) {
4326 /* Lock out all nfsd threads */
4327 do {
4328 igotlock = nfsv4_lock(
4329 &NFSD_VNET(nfsd_suspend_lock), 1, NULL,
4330 NFSV4ROOTLOCKMUTEXPTR, NULL);
4331 } while (igotlock == 0 &&
4332 !NFSD_VNET(nfsrv_suspend_nfsd));
4333 NFSD_VNET(nfsrv_suspend_nfsd) = true;
4334 }
4335 NFSUNLOCKV4ROOTMUTEX();
4336 error = 0;
4337 } else if ((uap->flag & NFSSVC_RESUMENFSD) != 0) {
4338 NFSLOCKV4ROOTMUTEX();
4339 if (NFSD_VNET(nfsrv_suspend_nfsd)) {
4340 nfsv4_unlock(&NFSD_VNET(nfsd_suspend_lock), 0);
4341 NFSD_VNET(nfsrv_suspend_nfsd) = false;
4342 }
4343 NFSUNLOCKV4ROOTMUTEX();
4344 error = 0;
4345 }
4346
4347 NFSEXITCODE(error);
4348 return (error);
4349 }
4350
4351 /*
4352 * Check exports.
4353 * Returns 0 if ok, 1 otherwise.
4354 */
4355 int
nfsvno_testexp(struct nfsrv_descript * nd,struct nfsexstuff * exp)4356 nfsvno_testexp(struct nfsrv_descript *nd, struct nfsexstuff *exp)
4357 {
4358 int i;
4359
4360 if ((NFSVNO_EXTLS(exp) && (nd->nd_flag & ND_TLS) == 0) ||
4361 (NFSVNO_EXTLSCERT(exp) &&
4362 (nd->nd_flag & ND_TLSCERT) == 0) ||
4363 (NFSVNO_EXTLSCERTUSER(exp) &&
4364 (nd->nd_flag & ND_TLSCERTUSER) == 0)) {
4365 if ((nd->nd_flag & ND_NFSV4) != 0)
4366 return (NFSERR_WRONGSEC);
4367 #ifdef notnow
4368 /* There is currently no auth_stat for this. */
4369 else if ((nd->nd_flag & ND_TLS) == 0)
4370 return (NFSERR_AUTHERR | AUTH_NEEDS_TLS);
4371 else
4372 return (NFSERR_AUTHERR | AUTH_NEEDS_TLS_MUTUAL_HOST);
4373 #endif
4374 else
4375 return (NFSERR_AUTHERR | AUTH_TOOWEAK);
4376 }
4377
4378 /*
4379 * RFC2623 suggests that the NFSv3 Fsinfo RPC be allowed to use
4380 * AUTH_NONE or AUTH_SYS for file systems requiring RPCSEC_GSS.
4381 */
4382 if ((nd->nd_flag & ND_NFSV3) != 0 && nd->nd_procnum == NFSPROC_FSINFO)
4383 return (0);
4384
4385 /*
4386 * This seems odd, but allow the case where the security flavor
4387 * list is empty. This happens when NFSv4 is traversing non-exported
4388 * file systems. Exported file systems should always have a non-empty
4389 * security flavor list.
4390 */
4391 if (exp->nes_numsecflavor == 0)
4392 return (0);
4393
4394 for (i = 0; i < exp->nes_numsecflavor; i++) {
4395 /*
4396 * The tests for privacy and integrity must be first,
4397 * since ND_GSS is set for everything but AUTH_SYS.
4398 */
4399 if (exp->nes_secflavors[i] == RPCSEC_GSS_KRB5P &&
4400 (nd->nd_flag & ND_GSSPRIVACY))
4401 return (0);
4402 if (exp->nes_secflavors[i] == RPCSEC_GSS_KRB5I &&
4403 (nd->nd_flag & ND_GSSINTEGRITY))
4404 return (0);
4405 if (exp->nes_secflavors[i] == RPCSEC_GSS_KRB5 &&
4406 (nd->nd_flag & ND_GSS))
4407 return (0);
4408 if (exp->nes_secflavors[i] == AUTH_SYS &&
4409 (nd->nd_flag & ND_GSS) == 0)
4410 return (0);
4411 }
4412 if ((nd->nd_flag & ND_NFSV4) != 0)
4413 return (NFSERR_WRONGSEC);
4414 return (NFSERR_AUTHERR | AUTH_TOOWEAK);
4415 }
4416
4417 /*
4418 * Calculate a hash value for the fid in a file handle.
4419 */
4420 uint32_t
nfsrv_hashfh(fhandle_t * fhp)4421 nfsrv_hashfh(fhandle_t *fhp)
4422 {
4423 uint32_t hashval;
4424
4425 hashval = hash32_buf(&fhp->fh_fid, sizeof(struct fid), 0);
4426 return (hashval);
4427 }
4428
4429 /*
4430 * Calculate a hash value for the sessionid.
4431 */
4432 uint32_t
nfsrv_hashsessionid(uint8_t * sessionid)4433 nfsrv_hashsessionid(uint8_t *sessionid)
4434 {
4435 uint32_t hashval;
4436
4437 hashval = hash32_buf(sessionid, NFSX_V4SESSIONID, 0);
4438 return (hashval);
4439 }
4440
4441 /*
4442 * Signal the userland master nfsd to backup the stable restart file.
4443 */
4444 void
nfsrv_backupstable(void)4445 nfsrv_backupstable(void)
4446 {
4447 struct proc *procp;
4448
4449 if (NFSD_VNET(nfsd_master_proc) != NULL) {
4450 procp = pfind(nfsd_master_pid);
4451 /* Try to make sure it is the correct process. */
4452 if (procp == NFSD_VNET(nfsd_master_proc) &&
4453 procp->p_stats->p_start.tv_sec ==
4454 nfsd_master_start.tv_sec &&
4455 procp->p_stats->p_start.tv_usec ==
4456 nfsd_master_start.tv_usec &&
4457 strcmp(procp->p_comm, nfsd_master_comm) == 0)
4458 kern_psignal(procp, SIGUSR2);
4459 else
4460 NFSD_VNET(nfsd_master_proc) = NULL;
4461
4462 if (procp != NULL)
4463 PROC_UNLOCK(procp);
4464 }
4465 }
4466
4467 /*
4468 * Create a DS data file for nfsrv_pnfscreate(). Called for each mirror.
4469 * The arguments are in a structure, so that they can be passed through
4470 * taskqueue for a kernel process to execute this function.
4471 */
4472 struct nfsrvdscreate {
4473 int done;
4474 int inprog;
4475 struct task tsk;
4476 struct ucred *tcred;
4477 struct vnode *dvp;
4478 NFSPROC_T *p;
4479 struct pnfsdsfile *pf;
4480 int err;
4481 fhandle_t fh;
4482 struct vattr va;
4483 struct vattr createva;
4484 };
4485
4486 int
nfsrv_dscreate(struct vnode * dvp,struct vattr * vap,struct vattr * nvap,fhandle_t * fhp,struct pnfsdsfile * pf,struct pnfsdsattr * dsa,char * fnamep,struct ucred * tcred,NFSPROC_T * p,struct vnode ** nvpp)4487 nfsrv_dscreate(struct vnode *dvp, struct vattr *vap, struct vattr *nvap,
4488 fhandle_t *fhp, struct pnfsdsfile *pf, struct pnfsdsattr *dsa,
4489 char *fnamep, struct ucred *tcred, NFSPROC_T *p, struct vnode **nvpp)
4490 {
4491 struct vnode *nvp;
4492 struct nameidata named;
4493 struct vattr va;
4494 char *bufp;
4495 u_long *hashp;
4496 struct nfsnode *np;
4497 struct nfsmount *nmp;
4498 int error;
4499
4500 NFSNAMEICNDSET(&named.ni_cnd, tcred, CREATE,
4501 LOCKPARENT | LOCKLEAF | NOCACHE);
4502 nfsvno_setpathbuf(&named, &bufp, &hashp);
4503 named.ni_cnd.cn_lkflags = LK_EXCLUSIVE;
4504 named.ni_cnd.cn_nameptr = bufp;
4505 if (fnamep != NULL) {
4506 strlcpy(bufp, fnamep, PNFS_FILENAME_LEN + 1);
4507 named.ni_cnd.cn_namelen = strlen(bufp);
4508 } else
4509 named.ni_cnd.cn_namelen = nfsrv_putfhname(fhp, bufp);
4510 NFSD_DEBUG(4, "nfsrv_dscreate: dvp=%p fname=%s\n", dvp, bufp);
4511
4512 /* Create the date file in the DS mount. */
4513 error = NFSVOPLOCK(dvp, LK_EXCLUSIVE);
4514 if (error == 0) {
4515 error = VOP_CREATE(dvp, &nvp, &named.ni_cnd, vap);
4516 vref(dvp);
4517 VOP_VPUT_PAIR(dvp, error == 0 ? &nvp : NULL, false);
4518 if (error == 0) {
4519 /* Set the ownership of the file. */
4520 error = VOP_SETATTR(nvp, nvap, tcred);
4521 NFSD_DEBUG(4, "nfsrv_dscreate:"
4522 " setattr-uid=%d\n", error);
4523 if (error != 0)
4524 vput(nvp);
4525 }
4526 if (error != 0)
4527 printf("pNFS: pnfscreate failed=%d\n", error);
4528 } else
4529 printf("pNFS: pnfscreate vnlock=%d\n", error);
4530 if (error == 0) {
4531 np = VTONFS(nvp);
4532 nmp = VFSTONFS(nvp->v_mount);
4533 if (strcmp(nvp->v_mount->mnt_vfc->vfc_name, "nfs")
4534 != 0 || nmp->nm_nam->sa_len > sizeof(
4535 struct sockaddr_in6) ||
4536 np->n_fhp->nfh_len != NFSX_MYFH) {
4537 printf("Bad DS file: fstype=%s salen=%d"
4538 " fhlen=%d\n",
4539 nvp->v_mount->mnt_vfc->vfc_name,
4540 nmp->nm_nam->sa_len, np->n_fhp->nfh_len);
4541 error = ENOENT;
4542 }
4543
4544 /* Set extattrs for the DS on the MDS file. */
4545 if (error == 0) {
4546 if (dsa != NULL) {
4547 error = VOP_GETATTR(nvp, &va, tcred);
4548 if (error == 0) {
4549 dsa->dsa_filerev = va.va_filerev;
4550 dsa->dsa_size = va.va_size;
4551 dsa->dsa_atime = va.va_atime;
4552 dsa->dsa_mtime = va.va_mtime;
4553 dsa->dsa_bytes = va.va_bytes;
4554 }
4555 }
4556 if (error == 0) {
4557 NFSBCOPY(np->n_fhp->nfh_fh, &pf->dsf_fh,
4558 NFSX_MYFH);
4559 NFSBCOPY(nmp->nm_nam, &pf->dsf_sin,
4560 nmp->nm_nam->sa_len);
4561 NFSBCOPY(named.ni_cnd.cn_nameptr,
4562 pf->dsf_filename,
4563 sizeof(pf->dsf_filename));
4564 }
4565 } else
4566 printf("pNFS: pnfscreate can't get DS"
4567 " attr=%d\n", error);
4568 if (nvpp != NULL && error == 0)
4569 *nvpp = nvp;
4570 else
4571 vput(nvp);
4572 }
4573 nfsvno_relpathbuf(&named);
4574 return (error);
4575 }
4576
4577 /*
4578 * Start up the thread that will execute nfsrv_dscreate().
4579 */
4580 static void
start_dscreate(void * arg,int pending)4581 start_dscreate(void *arg, int pending)
4582 {
4583 struct nfsrvdscreate *dsc;
4584
4585 dsc = (struct nfsrvdscreate *)arg;
4586 dsc->err = nfsrv_dscreate(dsc->dvp, &dsc->createva, &dsc->va, &dsc->fh,
4587 dsc->pf, NULL, NULL, dsc->tcred, dsc->p, NULL);
4588 dsc->done = 1;
4589 NFSD_DEBUG(4, "start_dscreate: err=%d\n", dsc->err);
4590 }
4591
4592 /*
4593 * Create a pNFS data file on the Data Server(s).
4594 */
4595 static void
nfsrv_pnfscreate(struct vnode * vp,struct vattr * vap,struct ucred * cred,NFSPROC_T * p)4596 nfsrv_pnfscreate(struct vnode *vp, struct vattr *vap, struct ucred *cred,
4597 NFSPROC_T *p)
4598 {
4599 struct nfsrvdscreate *dsc, *tdsc = NULL;
4600 struct nfsdevice *ds, *tds, *fds;
4601 struct mount *mp;
4602 struct pnfsdsfile *pf, *tpf;
4603 struct pnfsdsattr dsattr;
4604 struct vattr va;
4605 struct vnode *dvp[NFSDEV_MAXMIRRORS];
4606 struct nfsmount *nmp;
4607 fhandle_t fh;
4608 uid_t vauid;
4609 gid_t vagid;
4610 u_short vamode;
4611 struct ucred *tcred;
4612 int dsdir[NFSDEV_MAXMIRRORS], error, i, mirrorcnt, ret;
4613 int failpos, timo;
4614
4615 /* Get a DS server directory in a round-robin order. */
4616 mirrorcnt = 1;
4617 mp = vp->v_mount;
4618 ds = fds = NULL;
4619 NFSDDSLOCK();
4620 /*
4621 * Search for the first entry that handles this MDS fs, but use the
4622 * first entry for all MDS fs's otherwise.
4623 */
4624 TAILQ_FOREACH(tds, &nfsrv_devidhead, nfsdev_list) {
4625 if (tds->nfsdev_nmp != NULL) {
4626 if (tds->nfsdev_mdsisset == 0 && ds == NULL)
4627 ds = tds;
4628 else if (tds->nfsdev_mdsisset != 0 && fsidcmp(
4629 &mp->mnt_stat.f_fsid, &tds->nfsdev_mdsfsid) == 0) {
4630 ds = fds = tds;
4631 break;
4632 }
4633 }
4634 }
4635 if (ds == NULL) {
4636 NFSDDSUNLOCK();
4637 NFSD_DEBUG(4, "nfsrv_pnfscreate: no srv\n");
4638 return;
4639 }
4640 i = dsdir[0] = ds->nfsdev_nextdir;
4641 ds->nfsdev_nextdir = (ds->nfsdev_nextdir + 1) % nfsrv_dsdirsize;
4642 dvp[0] = ds->nfsdev_dsdir[i];
4643 tds = TAILQ_NEXT(ds, nfsdev_list);
4644 if (nfsrv_maxpnfsmirror > 1 && tds != NULL) {
4645 TAILQ_FOREACH_FROM(tds, &nfsrv_devidhead, nfsdev_list) {
4646 if (tds->nfsdev_nmp != NULL &&
4647 ((tds->nfsdev_mdsisset == 0 && fds == NULL) ||
4648 (tds->nfsdev_mdsisset != 0 && fds != NULL &&
4649 fsidcmp(&mp->mnt_stat.f_fsid,
4650 &tds->nfsdev_mdsfsid) == 0))) {
4651 dsdir[mirrorcnt] = i;
4652 dvp[mirrorcnt] = tds->nfsdev_dsdir[i];
4653 mirrorcnt++;
4654 if (mirrorcnt >= nfsrv_maxpnfsmirror)
4655 break;
4656 }
4657 }
4658 }
4659 /* Put at end of list to implement round-robin usage. */
4660 TAILQ_REMOVE(&nfsrv_devidhead, ds, nfsdev_list);
4661 TAILQ_INSERT_TAIL(&nfsrv_devidhead, ds, nfsdev_list);
4662 NFSDDSUNLOCK();
4663 dsc = NULL;
4664 if (mirrorcnt > 1)
4665 tdsc = dsc = malloc(sizeof(*dsc) * (mirrorcnt - 1), M_TEMP,
4666 M_WAITOK | M_ZERO);
4667 tpf = pf = malloc(sizeof(*pf) * nfsrv_maxpnfsmirror, M_TEMP, M_WAITOK |
4668 M_ZERO);
4669
4670 error = nfsvno_getfh(vp, &fh, p);
4671 if (error == 0)
4672 error = VOP_GETATTR(vp, &va, cred);
4673 if (error == 0) {
4674 /* Set the attributes for "vp" to Setattr the DS vp. */
4675 vauid = va.va_uid;
4676 vagid = va.va_gid;
4677 vamode = va.va_mode;
4678 VATTR_NULL(&va);
4679 va.va_uid = vauid;
4680 va.va_gid = vagid;
4681 va.va_mode = vamode;
4682 va.va_size = 0;
4683 } else
4684 printf("pNFS: pnfscreate getfh+attr=%d\n", error);
4685
4686 NFSD_DEBUG(4, "nfsrv_pnfscreate: cruid=%d crgid=%d\n", cred->cr_uid,
4687 cred->cr_gid);
4688 /* Make data file name based on FH. */
4689 tcred = newnfs_getcred();
4690
4691 /*
4692 * Create the file on each DS mirror, using kernel process(es) for the
4693 * additional mirrors.
4694 */
4695 failpos = -1;
4696 for (i = 0; i < mirrorcnt - 1 && error == 0; i++, tpf++, tdsc++) {
4697 tpf->dsf_dir = dsdir[i];
4698 tdsc->tcred = tcred;
4699 tdsc->p = p;
4700 tdsc->pf = tpf;
4701 tdsc->createva = *vap;
4702 NFSBCOPY(&fh, &tdsc->fh, sizeof(fh));
4703 tdsc->va = va;
4704 tdsc->dvp = dvp[i];
4705 tdsc->done = 0;
4706 tdsc->inprog = 0;
4707 tdsc->err = 0;
4708 ret = EIO;
4709 if (nfs_pnfsiothreads != 0) {
4710 ret = nfs_pnfsio(start_dscreate, tdsc);
4711 NFSD_DEBUG(4, "nfsrv_pnfscreate: nfs_pnfsio=%d\n", ret);
4712 }
4713 if (ret != 0) {
4714 ret = nfsrv_dscreate(dvp[i], vap, &va, &fh, tpf, NULL,
4715 NULL, tcred, p, NULL);
4716 if (ret != 0) {
4717 KASSERT(error == 0, ("nfsrv_dscreate err=%d",
4718 error));
4719 if (failpos == -1 && nfsds_failerr(ret))
4720 failpos = i;
4721 else
4722 error = ret;
4723 }
4724 }
4725 }
4726 if (error == 0) {
4727 tpf->dsf_dir = dsdir[mirrorcnt - 1];
4728 error = nfsrv_dscreate(dvp[mirrorcnt - 1], vap, &va, &fh, tpf,
4729 &dsattr, NULL, tcred, p, NULL);
4730 if (failpos == -1 && mirrorcnt > 1 && nfsds_failerr(error)) {
4731 failpos = mirrorcnt - 1;
4732 error = 0;
4733 }
4734 }
4735 timo = hz / 50; /* Wait for 20msec. */
4736 if (timo < 1)
4737 timo = 1;
4738 /* Wait for kernel task(s) to complete. */
4739 for (tdsc = dsc, i = 0; i < mirrorcnt - 1; i++, tdsc++) {
4740 while (tdsc->inprog != 0 && tdsc->done == 0)
4741 tsleep(&tdsc->tsk, PVFS, "srvdcr", timo);
4742 if (tdsc->err != 0) {
4743 if (failpos == -1 && nfsds_failerr(tdsc->err))
4744 failpos = i;
4745 else if (error == 0)
4746 error = tdsc->err;
4747 }
4748 }
4749
4750 /*
4751 * If failpos has been set, that mirror has failed, so it needs
4752 * to be disabled.
4753 */
4754 if (failpos >= 0) {
4755 nmp = VFSTONFS(dvp[failpos]->v_mount);
4756 NFSLOCKMNT(nmp);
4757 if ((nmp->nm_privflag & (NFSMNTP_FORCEDISM |
4758 NFSMNTP_CANCELRPCS)) == 0) {
4759 nmp->nm_privflag |= NFSMNTP_CANCELRPCS;
4760 NFSUNLOCKMNT(nmp);
4761 ds = nfsrv_deldsnmp(PNFSDOP_DELDSSERVER, nmp, p);
4762 NFSD_DEBUG(4, "dscreatfail fail=%d ds=%p\n", failpos,
4763 ds);
4764 if (ds != NULL)
4765 nfsrv_killrpcs(nmp);
4766 NFSLOCKMNT(nmp);
4767 nmp->nm_privflag &= ~NFSMNTP_CANCELRPCS;
4768 wakeup(nmp);
4769 }
4770 NFSUNLOCKMNT(nmp);
4771 }
4772
4773 NFSFREECRED(tcred);
4774 if (error == 0) {
4775 ASSERT_VOP_ELOCKED(vp, "nfsrv_pnfscreate vp");
4776
4777 NFSD_DEBUG(4, "nfsrv_pnfscreate: mirrorcnt=%d maxmirror=%d\n",
4778 mirrorcnt, nfsrv_maxpnfsmirror);
4779 /*
4780 * For all mirrors that couldn't be created, fill in the
4781 * *pf structure, but with an IP address == 0.0.0.0.
4782 */
4783 tpf = pf + mirrorcnt;
4784 for (i = mirrorcnt; i < nfsrv_maxpnfsmirror; i++, tpf++) {
4785 *tpf = *pf;
4786 tpf->dsf_sin.sin_family = AF_INET;
4787 tpf->dsf_sin.sin_len = sizeof(struct sockaddr_in);
4788 tpf->dsf_sin.sin_addr.s_addr = 0;
4789 tpf->dsf_sin.sin_port = 0;
4790 }
4791
4792 error = vn_extattr_set(vp, IO_NODELOCKED,
4793 EXTATTR_NAMESPACE_SYSTEM, "pnfsd.dsfile",
4794 sizeof(*pf) * nfsrv_maxpnfsmirror, (char *)pf, p);
4795 if (error == 0)
4796 error = vn_extattr_set(vp, IO_NODELOCKED,
4797 EXTATTR_NAMESPACE_SYSTEM, "pnfsd.dsattr",
4798 sizeof(dsattr), (char *)&dsattr, p);
4799 if (error != 0)
4800 printf("pNFS: pnfscreate setextattr=%d\n",
4801 error);
4802 } else
4803 printf("pNFS: pnfscreate=%d\n", error);
4804 free(pf, M_TEMP);
4805 free(dsc, M_TEMP);
4806 }
4807
4808 /*
4809 * Get the information needed to remove the pNFS Data Server file from the
4810 * Metadata file. Upon success, ddvp is set non-NULL to the locked
4811 * DS directory vnode. The caller must unlock *ddvp when done with it.
4812 */
4813 static void
nfsrv_pnfsremovesetup(struct vnode * vp,NFSPROC_T * p,struct vnode ** dvpp,int * mirrorcntp,char * fname,fhandle_t * fhp)4814 nfsrv_pnfsremovesetup(struct vnode *vp, NFSPROC_T *p, struct vnode **dvpp,
4815 int *mirrorcntp, char *fname, fhandle_t *fhp)
4816 {
4817 struct vattr va;
4818 struct ucred *tcred;
4819 char *buf;
4820 int buflen, error;
4821
4822 dvpp[0] = NULL;
4823 /* If not an exported regular file or not a pNFS server, just return. */
4824 if (vp->v_type != VREG || (vp->v_mount->mnt_flag & MNT_EXPORTED) == 0 ||
4825 nfsrv_devidcnt == 0)
4826 return;
4827
4828 /* Check to see if this is the last hard link. */
4829 tcred = newnfs_getcred();
4830 error = VOP_GETATTR(vp, &va, tcred);
4831 NFSFREECRED(tcred);
4832 if (error != 0) {
4833 printf("pNFS: nfsrv_pnfsremovesetup getattr=%d\n", error);
4834 return;
4835 }
4836 if (va.va_nlink > 1)
4837 return;
4838
4839 error = nfsvno_getfh(vp, fhp, p);
4840 if (error != 0) {
4841 printf("pNFS: nfsrv_pnfsremovesetup getfh=%d\n", error);
4842 return;
4843 }
4844
4845 buflen = 1024;
4846 buf = malloc(buflen, M_TEMP, M_WAITOK);
4847 /* Get the directory vnode for the DS mount and the file handle. */
4848 error = nfsrv_dsgetsockmnt(vp, 0, buf, &buflen, mirrorcntp, p, dvpp,
4849 NULL, NULL, fname, NULL, NULL, NULL, NULL, NULL);
4850 free(buf, M_TEMP);
4851 if (error != 0)
4852 printf("pNFS: nfsrv_pnfsremovesetup getsockmnt=%d\n", error);
4853 }
4854
4855 /*
4856 * Remove a DS data file for nfsrv_pnfsremove(). Called for each mirror.
4857 * The arguments are in a structure, so that they can be passed through
4858 * taskqueue for a kernel process to execute this function.
4859 */
4860 struct nfsrvdsremove {
4861 int done;
4862 int inprog;
4863 struct task tsk;
4864 struct ucred *tcred;
4865 struct vnode *dvp;
4866 NFSPROC_T *p;
4867 int err;
4868 char fname[PNFS_FILENAME_LEN + 1];
4869 };
4870
4871 static int
nfsrv_dsremove(struct vnode * dvp,char * fname,struct ucred * tcred,NFSPROC_T * p)4872 nfsrv_dsremove(struct vnode *dvp, char *fname, struct ucred *tcred,
4873 NFSPROC_T *p)
4874 {
4875 struct nameidata named;
4876 struct vnode *nvp;
4877 char *bufp;
4878 u_long *hashp;
4879 int error;
4880
4881 error = NFSVOPLOCK(dvp, LK_EXCLUSIVE);
4882 if (error != 0)
4883 return (error);
4884 named.ni_cnd.cn_nameiop = DELETE;
4885 named.ni_cnd.cn_lkflags = LK_EXCLUSIVE | LK_RETRY;
4886 named.ni_cnd.cn_cred = tcred;
4887 named.ni_cnd.cn_flags = ISLASTCN | LOCKPARENT | LOCKLEAF;
4888 nfsvno_setpathbuf(&named, &bufp, &hashp);
4889 named.ni_cnd.cn_nameptr = bufp;
4890 named.ni_cnd.cn_namelen = strlen(fname);
4891 strlcpy(bufp, fname, NAME_MAX);
4892 NFSD_DEBUG(4, "nfsrv_pnfsremove: filename=%s\n", bufp);
4893 error = VOP_LOOKUP(dvp, &nvp, &named.ni_cnd);
4894 NFSD_DEBUG(4, "nfsrv_pnfsremove: aft LOOKUP=%d\n", error);
4895 if (error == 0) {
4896 error = VOP_REMOVE(dvp, nvp, &named.ni_cnd);
4897 vput(nvp);
4898 }
4899 NFSVOPUNLOCK(dvp);
4900 nfsvno_relpathbuf(&named);
4901 if (error != 0)
4902 printf("pNFS: nfsrv_pnfsremove failed=%d\n", error);
4903 return (error);
4904 }
4905
4906 /*
4907 * Start up the thread that will execute nfsrv_dsremove().
4908 */
4909 static void
start_dsremove(void * arg,int pending)4910 start_dsremove(void *arg, int pending)
4911 {
4912 struct nfsrvdsremove *dsrm;
4913
4914 dsrm = (struct nfsrvdsremove *)arg;
4915 dsrm->err = nfsrv_dsremove(dsrm->dvp, dsrm->fname, dsrm->tcred,
4916 dsrm->p);
4917 dsrm->done = 1;
4918 NFSD_DEBUG(4, "start_dsremove: err=%d\n", dsrm->err);
4919 }
4920
4921 /*
4922 * Remove a pNFS data file from a Data Server.
4923 * nfsrv_pnfsremovesetup() must have been called before the MDS file was
4924 * removed to set up the dvp and fill in the FH.
4925 */
4926 static void
nfsrv_pnfsremove(struct vnode ** dvp,int mirrorcnt,char * fname,fhandle_t * fhp,NFSPROC_T * p)4927 nfsrv_pnfsremove(struct vnode **dvp, int mirrorcnt, char *fname, fhandle_t *fhp,
4928 NFSPROC_T *p)
4929 {
4930 struct ucred *tcred;
4931 struct nfsrvdsremove *dsrm, *tdsrm;
4932 struct nfsdevice *ds;
4933 struct nfsmount *nmp;
4934 int failpos, i, ret, timo;
4935
4936 tcred = newnfs_getcred();
4937 dsrm = NULL;
4938 if (mirrorcnt > 1)
4939 dsrm = malloc(sizeof(*dsrm) * mirrorcnt - 1, M_TEMP, M_WAITOK);
4940 /*
4941 * Remove the file on each DS mirror, using kernel process(es) for the
4942 * additional mirrors.
4943 */
4944 failpos = -1;
4945 for (tdsrm = dsrm, i = 0; i < mirrorcnt - 1; i++, tdsrm++) {
4946 tdsrm->tcred = tcred;
4947 tdsrm->p = p;
4948 tdsrm->dvp = dvp[i];
4949 strlcpy(tdsrm->fname, fname, PNFS_FILENAME_LEN + 1);
4950 tdsrm->inprog = 0;
4951 tdsrm->done = 0;
4952 tdsrm->err = 0;
4953 ret = EIO;
4954 if (nfs_pnfsiothreads != 0) {
4955 ret = nfs_pnfsio(start_dsremove, tdsrm);
4956 NFSD_DEBUG(4, "nfsrv_pnfsremove: nfs_pnfsio=%d\n", ret);
4957 }
4958 if (ret != 0) {
4959 ret = nfsrv_dsremove(dvp[i], fname, tcred, p);
4960 if (failpos == -1 && nfsds_failerr(ret))
4961 failpos = i;
4962 }
4963 }
4964 ret = nfsrv_dsremove(dvp[mirrorcnt - 1], fname, tcred, p);
4965 if (failpos == -1 && mirrorcnt > 1 && nfsds_failerr(ret))
4966 failpos = mirrorcnt - 1;
4967 timo = hz / 50; /* Wait for 20msec. */
4968 if (timo < 1)
4969 timo = 1;
4970 /* Wait for kernel task(s) to complete. */
4971 for (tdsrm = dsrm, i = 0; i < mirrorcnt - 1; i++, tdsrm++) {
4972 while (tdsrm->inprog != 0 && tdsrm->done == 0)
4973 tsleep(&tdsrm->tsk, PVFS, "srvdsrm", timo);
4974 if (failpos == -1 && nfsds_failerr(tdsrm->err))
4975 failpos = i;
4976 }
4977
4978 /*
4979 * If failpos has been set, that mirror has failed, so it needs
4980 * to be disabled.
4981 */
4982 if (failpos >= 0) {
4983 nmp = VFSTONFS(dvp[failpos]->v_mount);
4984 NFSLOCKMNT(nmp);
4985 if ((nmp->nm_privflag & (NFSMNTP_FORCEDISM |
4986 NFSMNTP_CANCELRPCS)) == 0) {
4987 nmp->nm_privflag |= NFSMNTP_CANCELRPCS;
4988 NFSUNLOCKMNT(nmp);
4989 ds = nfsrv_deldsnmp(PNFSDOP_DELDSSERVER, nmp, p);
4990 NFSD_DEBUG(4, "dsremovefail fail=%d ds=%p\n", failpos,
4991 ds);
4992 if (ds != NULL)
4993 nfsrv_killrpcs(nmp);
4994 NFSLOCKMNT(nmp);
4995 nmp->nm_privflag &= ~NFSMNTP_CANCELRPCS;
4996 wakeup(nmp);
4997 }
4998 NFSUNLOCKMNT(nmp);
4999 }
5000
5001 /* Get rid all layouts for the file. */
5002 nfsrv_freefilelayouts(fhp);
5003
5004 NFSFREECRED(tcred);
5005 free(dsrm, M_TEMP);
5006 }
5007
5008 /*
5009 * Generate a file name based on the file handle and put it in *bufp.
5010 * Return the number of bytes generated.
5011 */
5012 static int
nfsrv_putfhname(fhandle_t * fhp,char * bufp)5013 nfsrv_putfhname(fhandle_t *fhp, char *bufp)
5014 {
5015 int i;
5016 uint8_t *cp;
5017 const uint8_t *hexdigits = "0123456789abcdef";
5018
5019 cp = (uint8_t *)fhp;
5020 for (i = 0; i < sizeof(*fhp); i++) {
5021 bufp[2 * i] = hexdigits[(*cp >> 4) & 0xf];
5022 bufp[2 * i + 1] = hexdigits[*cp++ & 0xf];
5023 }
5024 bufp[2 * i] = '\0';
5025 return (2 * i);
5026 }
5027
5028 /*
5029 * Update the Metadata file's attributes from the DS file when a Read/Write
5030 * layout is returned.
5031 * Basically just call nfsrv_proxyds() with procedure == NFSPROC_LAYOUTRETURN
5032 * so that it does a nfsrv_getattrdsrpc() and nfsrv_setextattr() on the DS file.
5033 */
5034 int
nfsrv_updatemdsattr(struct vnode * vp,struct nfsvattr * nap,NFSPROC_T * p)5035 nfsrv_updatemdsattr(struct vnode *vp, struct nfsvattr *nap, NFSPROC_T *p)
5036 {
5037 struct ucred *tcred;
5038 int error;
5039
5040 /* Do this as root so that it won't fail with EACCES. */
5041 tcred = newnfs_getcred();
5042 error = nfsrv_proxyds(vp, 0, 0, tcred, p, NFSPROC_LAYOUTRETURN,
5043 NULL, NULL, NULL, nap, NULL, NULL, 0, NULL);
5044 NFSFREECRED(tcred);
5045 return (error);
5046 }
5047
5048 /*
5049 * Set the NFSv4 ACL on the DS file to the same ACL as the MDS file.
5050 */
5051 static int
nfsrv_dssetacl(struct vnode * vp,struct acl * aclp,struct ucred * cred,NFSPROC_T * p)5052 nfsrv_dssetacl(struct vnode *vp, struct acl *aclp, struct ucred *cred,
5053 NFSPROC_T *p)
5054 {
5055 int error;
5056
5057 error = nfsrv_proxyds(vp, 0, 0, cred, p, NFSPROC_SETACL,
5058 NULL, NULL, NULL, NULL, aclp, NULL, 0, NULL);
5059 return (error);
5060 }
5061
5062 static int
nfsrv_proxyds(struct vnode * vp,off_t off,int cnt,struct ucred * cred,struct thread * p,int ioproc,struct mbuf ** mpp,char * cp,struct mbuf ** mpp2,struct nfsvattr * nap,struct acl * aclp,off_t * offp,int content,bool * eofp)5063 nfsrv_proxyds(struct vnode *vp, off_t off, int cnt, struct ucred *cred,
5064 struct thread *p, int ioproc, struct mbuf **mpp, char *cp,
5065 struct mbuf **mpp2, struct nfsvattr *nap, struct acl *aclp,
5066 off_t *offp, int content, bool *eofp)
5067 {
5068 struct nfsmount *nmp[NFSDEV_MAXMIRRORS], *failnmp;
5069 fhandle_t fh[NFSDEV_MAXMIRRORS];
5070 struct vnode *dvp[NFSDEV_MAXMIRRORS];
5071 struct nfsdevice *ds;
5072 struct pnfsdsattr dsattr;
5073 struct opnfsdsattr odsattr;
5074 char *buf;
5075 int buflen, error, failpos, i, mirrorcnt, origmircnt, trycnt;
5076
5077 NFSD_DEBUG(4, "in nfsrv_proxyds\n");
5078 /*
5079 * If not a regular file, not exported or not a pNFS server,
5080 * just return ENOENT.
5081 */
5082 if (vp->v_type != VREG || (vp->v_mount->mnt_flag & MNT_EXPORTED) == 0 ||
5083 nfsrv_devidcnt == 0)
5084 return (ENOENT);
5085
5086 buflen = 1024;
5087 buf = malloc(buflen, M_TEMP, M_WAITOK);
5088 error = 0;
5089
5090 /*
5091 * For Getattr, get the Change attribute (va_filerev) and size (va_size)
5092 * from the MetaData file's extended attribute.
5093 */
5094 if (ioproc == NFSPROC_GETATTR) {
5095 error = vn_extattr_get(vp, IO_NODELOCKED,
5096 EXTATTR_NAMESPACE_SYSTEM, "pnfsd.dsattr", &buflen, buf,
5097 p);
5098 if (error == 0) {
5099 if (buflen == sizeof(odsattr)) {
5100 NFSBCOPY(buf, &odsattr, buflen);
5101 nap->na_filerev = odsattr.dsa_filerev;
5102 nap->na_size = odsattr.dsa_size;
5103 nap->na_atime = odsattr.dsa_atime;
5104 nap->na_mtime = odsattr.dsa_mtime;
5105 /*
5106 * Fake na_bytes by rounding up na_size.
5107 * Since we don't know the block size, just
5108 * use BLKDEV_IOSIZE.
5109 */
5110 nap->na_bytes = (odsattr.dsa_size +
5111 BLKDEV_IOSIZE - 1) & ~(BLKDEV_IOSIZE - 1);
5112 } else if (buflen == sizeof(dsattr)) {
5113 NFSBCOPY(buf, &dsattr, buflen);
5114 nap->na_filerev = dsattr.dsa_filerev;
5115 nap->na_size = dsattr.dsa_size;
5116 nap->na_atime = dsattr.dsa_atime;
5117 nap->na_mtime = dsattr.dsa_mtime;
5118 nap->na_bytes = dsattr.dsa_bytes;
5119 } else
5120 error = ENXIO;
5121 }
5122 if (error == 0) {
5123 /*
5124 * If nfsrv_pnfsgetdsattr is 0 or nfsrv_checkdsattr()
5125 * returns 0, just return now. nfsrv_checkdsattr()
5126 * returns 0 if there is no Read/Write layout
5127 * plus either an Open/Write_access or Write
5128 * delegation issued to a client for the file.
5129 */
5130 if (nfsrv_pnfsgetdsattr == 0 ||
5131 nfsrv_checkdsattr(vp, p) == 0) {
5132 free(buf, M_TEMP);
5133 return (error);
5134 }
5135 }
5136
5137 /*
5138 * Clear ENOATTR so the code below will attempt to do a
5139 * nfsrv_getattrdsrpc() to get the attributes and (re)create
5140 * the extended attribute.
5141 */
5142 if (error == ENOATTR)
5143 error = 0;
5144 }
5145
5146 origmircnt = -1;
5147 trycnt = 0;
5148 tryagain:
5149 if (error == 0) {
5150 buflen = 1024;
5151 if (ioproc == NFSPROC_READDS && NFSVOPISLOCKED(vp) ==
5152 LK_EXCLUSIVE)
5153 printf("nfsrv_proxyds: Readds vp exclusively locked\n");
5154 error = nfsrv_dsgetsockmnt(vp, LK_SHARED, buf, &buflen,
5155 &mirrorcnt, p, dvp, fh, NULL, NULL, NULL, NULL, NULL,
5156 NULL, NULL);
5157 if (error == 0) {
5158 for (i = 0; i < mirrorcnt; i++)
5159 nmp[i] = VFSTONFS(dvp[i]->v_mount);
5160 } else
5161 printf("pNFS: proxy getextattr sockaddr=%d\n", error);
5162 } else
5163 printf("pNFS: nfsrv_dsgetsockmnt=%d\n", error);
5164 if (error == 0) {
5165 failpos = -1;
5166 if (origmircnt == -1)
5167 origmircnt = mirrorcnt;
5168 /*
5169 * If failpos is set to a mirror#, then that mirror has
5170 * failed and will be disabled. For Read, Getattr and Seek, the
5171 * function only tries one mirror, so if that mirror has
5172 * failed, it will need to be retried. As such, increment
5173 * tryitagain for these cases.
5174 * For Write, Setattr and Setacl, the function tries all
5175 * mirrors and will not return an error for the case where
5176 * one mirror has failed. For these cases, the functioning
5177 * mirror(s) will have been modified, so a retry isn't
5178 * necessary. These functions will set failpos for the
5179 * failed mirror#.
5180 */
5181 if (ioproc == NFSPROC_READDS) {
5182 error = nfsrv_readdsrpc(fh, off, cnt, cred, p, nmp[0],
5183 mpp, mpp2);
5184 if (nfsds_failerr(error) && mirrorcnt > 1) {
5185 /*
5186 * Setting failpos will cause the mirror
5187 * to be disabled and then a retry of this
5188 * read is required.
5189 */
5190 failpos = 0;
5191 error = 0;
5192 trycnt++;
5193 }
5194 } else if (ioproc == NFSPROC_WRITEDS)
5195 error = nfsrv_writedsrpc(fh, off, cnt, cred, p, vp,
5196 &nmp[0], mirrorcnt, mpp, cp, &failpos);
5197 else if (ioproc == NFSPROC_SETATTR)
5198 error = nfsrv_setattrdsrpc(fh, cred, p, vp, &nmp[0],
5199 mirrorcnt, nap, &failpos);
5200 else if (ioproc == NFSPROC_SETACL)
5201 error = nfsrv_setacldsrpc(fh, cred, p, vp, &nmp[0],
5202 mirrorcnt, aclp, &failpos);
5203 else if (ioproc == NFSPROC_SEEKDS) {
5204 error = nfsrv_seekdsrpc(fh, offp, content, eofp, cred,
5205 p, nmp[0]);
5206 if (nfsds_failerr(error) && mirrorcnt > 1) {
5207 /*
5208 * Setting failpos will cause the mirror
5209 * to be disabled and then a retry of this
5210 * read is required.
5211 */
5212 failpos = 0;
5213 error = 0;
5214 trycnt++;
5215 }
5216 } else if (ioproc == NFSPROC_ALLOCATE)
5217 error = nfsrv_allocatedsrpc(fh, off, *offp, cred, p, vp,
5218 &nmp[0], mirrorcnt, &failpos);
5219 else if (ioproc == NFSPROC_DEALLOCATE)
5220 error = nfsrv_deallocatedsrpc(fh, off, *offp, cred, p,
5221 vp, &nmp[0], mirrorcnt, &failpos);
5222 else {
5223 error = nfsrv_getattrdsrpc(&fh[mirrorcnt - 1], cred, p,
5224 vp, nmp[mirrorcnt - 1], nap);
5225 if (nfsds_failerr(error) && mirrorcnt > 1) {
5226 /*
5227 * Setting failpos will cause the mirror
5228 * to be disabled and then a retry of this
5229 * getattr is required.
5230 */
5231 failpos = mirrorcnt - 1;
5232 error = 0;
5233 trycnt++;
5234 }
5235 }
5236 ds = NULL;
5237 if (failpos >= 0) {
5238 failnmp = nmp[failpos];
5239 NFSLOCKMNT(failnmp);
5240 if ((failnmp->nm_privflag & (NFSMNTP_FORCEDISM |
5241 NFSMNTP_CANCELRPCS)) == 0) {
5242 failnmp->nm_privflag |= NFSMNTP_CANCELRPCS;
5243 NFSUNLOCKMNT(failnmp);
5244 ds = nfsrv_deldsnmp(PNFSDOP_DELDSSERVER,
5245 failnmp, p);
5246 NFSD_DEBUG(4, "dsldsnmp fail=%d ds=%p\n",
5247 failpos, ds);
5248 if (ds != NULL)
5249 nfsrv_killrpcs(failnmp);
5250 NFSLOCKMNT(failnmp);
5251 failnmp->nm_privflag &= ~NFSMNTP_CANCELRPCS;
5252 wakeup(failnmp);
5253 }
5254 NFSUNLOCKMNT(failnmp);
5255 }
5256 for (i = 0; i < mirrorcnt; i++)
5257 NFSVOPUNLOCK(dvp[i]);
5258 NFSD_DEBUG(4, "nfsrv_proxyds: aft RPC=%d trya=%d\n", error,
5259 trycnt);
5260 /* Try the Read/Getattr again if a mirror was deleted. */
5261 if (ds != NULL && trycnt > 0 && trycnt < origmircnt)
5262 goto tryagain;
5263 } else {
5264 /* Return ENOENT for any Extended Attribute error. */
5265 error = ENOENT;
5266 }
5267 free(buf, M_TEMP);
5268 NFSD_DEBUG(4, "nfsrv_proxyds: error=%d\n", error);
5269 return (error);
5270 }
5271
5272 /*
5273 * Get the DS mount point, fh and directory from the "pnfsd.dsfile" extended
5274 * attribute.
5275 * newnmpp - If it points to a non-NULL nmp, that is the destination and needs
5276 * to be checked. If it points to a NULL nmp, then it returns
5277 * a suitable destination.
5278 * curnmp - If non-NULL, it is the source mount for the copy.
5279 */
5280 int
nfsrv_dsgetsockmnt(struct vnode * vp,int lktype,char * buf,int * buflenp,int * mirrorcntp,NFSPROC_T * p,struct vnode ** dvpp,fhandle_t * fhp,char * devid,char * fnamep,struct vnode ** nvpp,struct nfsmount ** newnmpp,struct nfsmount * curnmp,int * ippos,int * dsdirp)5281 nfsrv_dsgetsockmnt(struct vnode *vp, int lktype, char *buf, int *buflenp,
5282 int *mirrorcntp, NFSPROC_T *p, struct vnode **dvpp, fhandle_t *fhp,
5283 char *devid, char *fnamep, struct vnode **nvpp, struct nfsmount **newnmpp,
5284 struct nfsmount *curnmp, int *ippos, int *dsdirp)
5285 {
5286 struct vnode *dvp, *nvp = NULL, **tdvpp;
5287 struct mount *mp;
5288 struct nfsmount *nmp, *newnmp;
5289 struct sockaddr *sad;
5290 struct sockaddr_in *sin;
5291 struct nfsdevice *ds, *tds, *fndds;
5292 struct pnfsdsfile *pf;
5293 uint32_t dsdir;
5294 int error, fhiszero, fnd, gotone, i, mirrorcnt;
5295
5296 ASSERT_VOP_LOCKED(vp, "nfsrv_dsgetsockmnt vp");
5297 *mirrorcntp = 1;
5298 tdvpp = dvpp;
5299 if (nvpp != NULL)
5300 *nvpp = NULL;
5301 if (dvpp != NULL)
5302 *dvpp = NULL;
5303 if (ippos != NULL)
5304 *ippos = -1;
5305 if (newnmpp != NULL)
5306 newnmp = *newnmpp;
5307 else
5308 newnmp = NULL;
5309 mp = vp->v_mount;
5310 error = vn_extattr_get(vp, IO_NODELOCKED, EXTATTR_NAMESPACE_SYSTEM,
5311 "pnfsd.dsfile", buflenp, buf, p);
5312 mirrorcnt = *buflenp / sizeof(*pf);
5313 if (error == 0 && (mirrorcnt < 1 || mirrorcnt > NFSDEV_MAXMIRRORS ||
5314 *buflenp != sizeof(*pf) * mirrorcnt))
5315 error = ENOATTR;
5316
5317 pf = (struct pnfsdsfile *)buf;
5318 /* If curnmp != NULL, check for a match in the mirror list. */
5319 if (curnmp != NULL && error == 0) {
5320 fnd = 0;
5321 for (i = 0; i < mirrorcnt; i++, pf++) {
5322 sad = (struct sockaddr *)&pf->dsf_sin;
5323 if (nfsaddr2_match(sad, curnmp->nm_nam)) {
5324 if (ippos != NULL)
5325 *ippos = i;
5326 fnd = 1;
5327 break;
5328 }
5329 }
5330 if (fnd == 0)
5331 error = ENXIO;
5332 }
5333
5334 gotone = 0;
5335 pf = (struct pnfsdsfile *)buf;
5336 NFSD_DEBUG(4, "nfsrv_dsgetsockmnt: mirrorcnt=%d err=%d\n", mirrorcnt,
5337 error);
5338 for (i = 0; i < mirrorcnt && error == 0; i++, pf++) {
5339 fhiszero = 0;
5340 sad = (struct sockaddr *)&pf->dsf_sin;
5341 sin = &pf->dsf_sin;
5342 dsdir = pf->dsf_dir;
5343 if (dsdir >= nfsrv_dsdirsize) {
5344 printf("nfsrv_dsgetsockmnt: dsdir=%d\n", dsdir);
5345 error = ENOATTR;
5346 } else if (nvpp != NULL && newnmp != NULL &&
5347 nfsaddr2_match(sad, newnmp->nm_nam))
5348 error = EEXIST;
5349 if (error == 0) {
5350 if (ippos != NULL && curnmp == NULL &&
5351 sad->sa_family == AF_INET &&
5352 sin->sin_addr.s_addr == 0)
5353 *ippos = i;
5354 if (NFSBCMP(&zerofh, &pf->dsf_fh, sizeof(zerofh)) == 0)
5355 fhiszero = 1;
5356 /* Use the socket address to find the mount point. */
5357 fndds = NULL;
5358 NFSDDSLOCK();
5359 /* Find a match for the IP address. */
5360 TAILQ_FOREACH(ds, &nfsrv_devidhead, nfsdev_list) {
5361 if (ds->nfsdev_nmp != NULL) {
5362 dvp = ds->nfsdev_dvp;
5363 nmp = VFSTONFS(dvp->v_mount);
5364 if (nmp != ds->nfsdev_nmp)
5365 printf("different2 nmp %p %p\n",
5366 nmp, ds->nfsdev_nmp);
5367 if (nfsaddr2_match(sad, nmp->nm_nam)) {
5368 fndds = ds;
5369 break;
5370 }
5371 }
5372 }
5373 if (fndds != NULL && newnmpp != NULL &&
5374 newnmp == NULL) {
5375 /* Search for a place to make a mirror copy. */
5376 TAILQ_FOREACH(tds, &nfsrv_devidhead,
5377 nfsdev_list) {
5378 if (tds->nfsdev_nmp != NULL &&
5379 fndds != tds &&
5380 ((tds->nfsdev_mdsisset == 0 &&
5381 fndds->nfsdev_mdsisset == 0) ||
5382 (tds->nfsdev_mdsisset != 0 &&
5383 fndds->nfsdev_mdsisset != 0 &&
5384 fsidcmp(&tds->nfsdev_mdsfsid,
5385 &mp->mnt_stat.f_fsid) == 0))) {
5386 *newnmpp = tds->nfsdev_nmp;
5387 break;
5388 }
5389 }
5390 if (tds != NULL) {
5391 /*
5392 * Move this entry to the end of the
5393 * list, so it won't be selected as
5394 * easily the next time.
5395 */
5396 TAILQ_REMOVE(&nfsrv_devidhead, tds,
5397 nfsdev_list);
5398 TAILQ_INSERT_TAIL(&nfsrv_devidhead, tds,
5399 nfsdev_list);
5400 }
5401 }
5402 NFSDDSUNLOCK();
5403 if (fndds != NULL) {
5404 dvp = fndds->nfsdev_dsdir[dsdir];
5405 if (lktype != 0 || fhiszero != 0 ||
5406 (nvpp != NULL && *nvpp == NULL)) {
5407 if (fhiszero != 0)
5408 error = vn_lock(dvp,
5409 LK_EXCLUSIVE);
5410 else if (lktype != 0)
5411 error = vn_lock(dvp, lktype);
5412 else
5413 error = vn_lock(dvp, LK_SHARED);
5414 /*
5415 * If the file handle is all 0's, try to
5416 * do a Lookup against the DS to acquire
5417 * it.
5418 * If dvpp == NULL or the Lookup fails,
5419 * unlock dvp after the call.
5420 */
5421 if (error == 0 && (fhiszero != 0 ||
5422 (nvpp != NULL && *nvpp == NULL))) {
5423 error = nfsrv_pnfslookupds(vp,
5424 dvp, pf, &nvp, p);
5425 if (error == 0) {
5426 if (fhiszero != 0)
5427 nfsrv_pnfssetfh(
5428 vp, pf,
5429 devid,
5430 fnamep,
5431 nvp, p);
5432 if (nvpp != NULL &&
5433 *nvpp == NULL) {
5434 *nvpp = nvp;
5435 *dsdirp = dsdir;
5436 } else
5437 vput(nvp);
5438 }
5439 if (error != 0 || lktype == 0)
5440 NFSVOPUNLOCK(dvp);
5441 }
5442 }
5443 if (error == 0) {
5444 gotone++;
5445 NFSD_DEBUG(4, "gotone=%d\n", gotone);
5446 if (devid != NULL) {
5447 NFSBCOPY(fndds->nfsdev_deviceid,
5448 devid, NFSX_V4DEVICEID);
5449 devid += NFSX_V4DEVICEID;
5450 }
5451 if (dvpp != NULL)
5452 *tdvpp++ = dvp;
5453 if (fhp != NULL)
5454 NFSBCOPY(&pf->dsf_fh, fhp++,
5455 NFSX_MYFH);
5456 if (fnamep != NULL && gotone == 1)
5457 strlcpy(fnamep,
5458 pf->dsf_filename,
5459 sizeof(pf->dsf_filename));
5460 } else
5461 NFSD_DEBUG(4, "nfsrv_dsgetsockmnt "
5462 "err=%d\n", error);
5463 }
5464 }
5465 }
5466 if (error == 0 && gotone == 0)
5467 error = ENOENT;
5468
5469 NFSD_DEBUG(4, "eo nfsrv_dsgetsockmnt: gotone=%d err=%d\n", gotone,
5470 error);
5471 if (error == 0)
5472 *mirrorcntp = gotone;
5473 else {
5474 if (gotone > 0 && dvpp != NULL) {
5475 /*
5476 * If the error didn't occur on the first one and
5477 * dvpp != NULL, the one(s) prior to the failure will
5478 * have locked dvp's that need to be unlocked.
5479 */
5480 for (i = 0; i < gotone; i++) {
5481 NFSVOPUNLOCK(*dvpp);
5482 *dvpp++ = NULL;
5483 }
5484 }
5485 /*
5486 * If it found the vnode to be copied from before a failure,
5487 * it needs to be vput()'d.
5488 */
5489 if (nvpp != NULL && *nvpp != NULL) {
5490 vput(*nvpp);
5491 *nvpp = NULL;
5492 }
5493 }
5494 return (error);
5495 }
5496
5497 /*
5498 * Set the extended attribute for the Change attribute.
5499 */
5500 static int
nfsrv_setextattr(struct vnode * vp,struct nfsvattr * nap,NFSPROC_T * p)5501 nfsrv_setextattr(struct vnode *vp, struct nfsvattr *nap, NFSPROC_T *p)
5502 {
5503 struct pnfsdsattr dsattr;
5504 int error;
5505
5506 ASSERT_VOP_ELOCKED(vp, "nfsrv_setextattr vp");
5507 dsattr.dsa_filerev = nap->na_filerev;
5508 dsattr.dsa_size = nap->na_size;
5509 dsattr.dsa_atime = nap->na_atime;
5510 dsattr.dsa_mtime = nap->na_mtime;
5511 dsattr.dsa_bytes = nap->na_bytes;
5512 error = vn_extattr_set(vp, IO_NODELOCKED, EXTATTR_NAMESPACE_SYSTEM,
5513 "pnfsd.dsattr", sizeof(dsattr), (char *)&dsattr, p);
5514 if (error != 0)
5515 printf("pNFS: setextattr=%d\n", error);
5516 return (error);
5517 }
5518
5519 static int
nfsrv_readdsrpc(fhandle_t * fhp,off_t off,int len,struct ucred * cred,NFSPROC_T * p,struct nfsmount * nmp,struct mbuf ** mpp,struct mbuf ** mpendp)5520 nfsrv_readdsrpc(fhandle_t *fhp, off_t off, int len, struct ucred *cred,
5521 NFSPROC_T *p, struct nfsmount *nmp, struct mbuf **mpp, struct mbuf **mpendp)
5522 {
5523 uint32_t *tl;
5524 struct nfsrv_descript *nd;
5525 nfsv4stateid_t st;
5526 struct mbuf *m, *m2;
5527 int error = 0, retlen, tlen, trimlen;
5528
5529 NFSD_DEBUG(4, "in nfsrv_readdsrpc\n");
5530 nd = malloc(sizeof(*nd), M_TEMP, M_WAITOK | M_ZERO);
5531 *mpp = NULL;
5532 /*
5533 * Use a stateid where other is an alternating 01010 pattern and
5534 * seqid is 0xffffffff. This value is not defined as special by
5535 * the RFC and is used by the FreeBSD NFS server to indicate an
5536 * MDS->DS proxy operation.
5537 */
5538 st.other[0] = 0x55555555;
5539 st.other[1] = 0x55555555;
5540 st.other[2] = 0x55555555;
5541 st.seqid = 0xffffffff;
5542 nfscl_reqstart(nd, NFSPROC_READDS, nmp, (u_int8_t *)fhp, sizeof(*fhp),
5543 NULL, NULL, 0, 0, cred);
5544 nfsm_stateidtom(nd, &st, NFSSTATEID_PUTSTATEID);
5545 NFSM_BUILD(tl, uint32_t *, NFSX_UNSIGNED * 3);
5546 txdr_hyper(off, tl);
5547 *(tl + 2) = txdr_unsigned(len);
5548 error = newnfs_request(nd, nmp, NULL, &nmp->nm_sockreq, NULL, p, cred,
5549 NFS_PROG, NFS_VER4, NULL, 1, NULL, NULL);
5550 if (error != 0) {
5551 free(nd, M_TEMP);
5552 return (error);
5553 }
5554 if (nd->nd_repstat == 0) {
5555 NFSM_DISSECT(tl, u_int32_t *, NFSX_UNSIGNED);
5556 NFSM_STRSIZ(retlen, len);
5557 if (retlen > 0) {
5558 /* Trim off the pre-data XDR from the mbuf chain. */
5559 m = nd->nd_mrep;
5560 while (m != NULL && m != nd->nd_md) {
5561 if (m->m_next == nd->nd_md) {
5562 m->m_next = NULL;
5563 m_freem(nd->nd_mrep);
5564 nd->nd_mrep = m = nd->nd_md;
5565 } else
5566 m = m->m_next;
5567 }
5568 if (m == NULL) {
5569 printf("nfsrv_readdsrpc: busted mbuf list\n");
5570 error = ENOENT;
5571 goto nfsmout;
5572 }
5573
5574 /*
5575 * Now, adjust first mbuf so that any XDR before the
5576 * read data is skipped over.
5577 */
5578 trimlen = nd->nd_dpos - mtod(m, char *);
5579 if (trimlen > 0) {
5580 m->m_len -= trimlen;
5581 NFSM_DATAP(m, trimlen);
5582 }
5583
5584 /*
5585 * Truncate the mbuf chain at retlen bytes of data,
5586 * plus XDR padding that brings the length up to a
5587 * multiple of 4.
5588 */
5589 tlen = NFSM_RNDUP(retlen);
5590 do {
5591 if (m->m_len >= tlen) {
5592 m->m_len = tlen;
5593 tlen = 0;
5594 m2 = m->m_next;
5595 m->m_next = NULL;
5596 m_freem(m2);
5597 break;
5598 }
5599 tlen -= m->m_len;
5600 m = m->m_next;
5601 } while (m != NULL);
5602 if (tlen > 0) {
5603 printf("nfsrv_readdsrpc: busted mbuf list\n");
5604 error = ENOENT;
5605 goto nfsmout;
5606 }
5607 *mpp = nd->nd_mrep;
5608 *mpendp = m;
5609 nd->nd_mrep = NULL;
5610 }
5611 } else
5612 error = nd->nd_repstat;
5613 nfsmout:
5614 /* If nd->nd_mrep is already NULL, this is a no-op. */
5615 m_freem(nd->nd_mrep);
5616 free(nd, M_TEMP);
5617 NFSD_DEBUG(4, "nfsrv_readdsrpc error=%d\n", error);
5618 return (error);
5619 }
5620
5621 /*
5622 * Do a write RPC on a DS data file, using this structure for the arguments,
5623 * so that this function can be executed by a separate kernel process.
5624 */
5625 struct nfsrvwritedsdorpc {
5626 int done;
5627 int inprog;
5628 struct task tsk;
5629 fhandle_t fh;
5630 off_t off;
5631 int len;
5632 struct nfsmount *nmp;
5633 struct ucred *cred;
5634 NFSPROC_T *p;
5635 struct mbuf *m;
5636 int err;
5637 };
5638
5639 static int
nfsrv_writedsdorpc(struct nfsmount * nmp,fhandle_t * fhp,off_t off,int len,struct nfsvattr * nap,struct mbuf * m,struct ucred * cred,NFSPROC_T * p)5640 nfsrv_writedsdorpc(struct nfsmount *nmp, fhandle_t *fhp, off_t off, int len,
5641 struct nfsvattr *nap, struct mbuf *m, struct ucred *cred, NFSPROC_T *p)
5642 {
5643 uint32_t *tl;
5644 struct nfsrv_descript *nd;
5645 nfsattrbit_t attrbits;
5646 nfsv4stateid_t st;
5647 int commit, error, retlen;
5648
5649 nd = malloc(sizeof(*nd), M_TEMP, M_WAITOK | M_ZERO);
5650 nfscl_reqstart(nd, NFSPROC_WRITE, nmp, (u_int8_t *)fhp,
5651 sizeof(fhandle_t), NULL, NULL, 0, 0, cred);
5652
5653 /*
5654 * Use a stateid where other is an alternating 01010 pattern and
5655 * seqid is 0xffffffff. This value is not defined as special by
5656 * the RFC and is used by the FreeBSD NFS server to indicate an
5657 * MDS->DS proxy operation.
5658 */
5659 st.other[0] = 0x55555555;
5660 st.other[1] = 0x55555555;
5661 st.other[2] = 0x55555555;
5662 st.seqid = 0xffffffff;
5663 nfsm_stateidtom(nd, &st, NFSSTATEID_PUTSTATEID);
5664 NFSM_BUILD(tl, u_int32_t *, NFSX_HYPER + 2 * NFSX_UNSIGNED);
5665 txdr_hyper(off, tl);
5666 tl += 2;
5667 /*
5668 * Do all writes FileSync, since the server doesn't hold onto dirty
5669 * buffers. Since clients should be accessing the DS servers directly
5670 * using the pNFS layouts, this just needs to work correctly as a
5671 * fallback.
5672 */
5673 *tl++ = txdr_unsigned(NFSWRITE_FILESYNC);
5674 *tl = txdr_unsigned(len);
5675 NFSD_DEBUG(4, "nfsrv_writedsdorpc: len=%d\n", len);
5676
5677 /* Put data in mbuf chain. */
5678 nd->nd_mb->m_next = m;
5679
5680 /* Set nd_mb and nd_bpos to end of data. */
5681 while (m->m_next != NULL)
5682 m = m->m_next;
5683 nd->nd_mb = m;
5684 nfsm_set(nd, m->m_len);
5685 NFSD_DEBUG(4, "nfsrv_writedsdorpc: lastmb len=%d\n", m->m_len);
5686
5687 /* Do a Getattr for the attributes that change upon writing. */
5688 NFSZERO_ATTRBIT(&attrbits);
5689 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_SIZE);
5690 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_CHANGE);
5691 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEACCESS);
5692 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEMODIFY);
5693 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_SPACEUSED);
5694 NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
5695 *tl = txdr_unsigned(NFSV4OP_GETATTR);
5696 (void) nfsrv_putattrbit(nd, &attrbits);
5697 error = newnfs_request(nd, nmp, NULL, &nmp->nm_sockreq, NULL, p,
5698 cred, NFS_PROG, NFS_VER4, NULL, 1, NULL, NULL);
5699 if (error != 0) {
5700 free(nd, M_TEMP);
5701 return (error);
5702 }
5703 NFSD_DEBUG(4, "nfsrv_writedsdorpc: aft writerpc=%d\n", nd->nd_repstat);
5704 /* Get rid of weak cache consistency data for now. */
5705 if ((nd->nd_flag & (ND_NOMOREDATA | ND_NFSV4 | ND_V4WCCATTR)) ==
5706 (ND_NFSV4 | ND_V4WCCATTR)) {
5707 error = nfsv4_loadattr(nd, NULL, nap, NULL, NULL, 0, NULL, NULL,
5708 NULL, NULL, NULL, 0, NULL, NULL, NULL, NULL, NULL, NULL,
5709 NULL);
5710 NFSD_DEBUG(4, "nfsrv_writedsdorpc: wcc attr=%d\n", error);
5711 if (error != 0)
5712 goto nfsmout;
5713 /*
5714 * Get rid of Op# and status for next op.
5715 */
5716 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED);
5717 if (*++tl != 0)
5718 nd->nd_flag |= ND_NOMOREDATA;
5719 }
5720 if (nd->nd_repstat == 0) {
5721 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED + NFSX_VERF);
5722 retlen = fxdr_unsigned(int, *tl++);
5723 commit = fxdr_unsigned(int, *tl);
5724 if (commit != NFSWRITE_FILESYNC)
5725 error = NFSERR_IO;
5726 NFSD_DEBUG(4, "nfsrv_writedsdorpc:retlen=%d commit=%d err=%d\n",
5727 retlen, commit, error);
5728 } else
5729 error = nd->nd_repstat;
5730 /* We have no use for the Write Verifier since we use FileSync. */
5731
5732 /*
5733 * Get the Change, Size, Access Time and Modify Time attributes and set
5734 * on the Metadata file, so its attributes will be what the file's
5735 * would be if it had been written.
5736 */
5737 if (error == 0) {
5738 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED);
5739 error = nfsv4_loadattr(nd, NULL, nap, NULL, NULL, 0, NULL, NULL,
5740 NULL, NULL, NULL, 0, NULL, NULL, NULL, NULL, NULL, NULL,
5741 NULL);
5742 }
5743 NFSD_DEBUG(4, "nfsrv_writedsdorpc: aft loadattr=%d\n", error);
5744 nfsmout:
5745 m_freem(nd->nd_mrep);
5746 free(nd, M_TEMP);
5747 NFSD_DEBUG(4, "nfsrv_writedsdorpc error=%d\n", error);
5748 return (error);
5749 }
5750
5751 /*
5752 * Start up the thread that will execute nfsrv_writedsdorpc().
5753 */
5754 static void
start_writedsdorpc(void * arg,int pending)5755 start_writedsdorpc(void *arg, int pending)
5756 {
5757 struct nfsrvwritedsdorpc *drpc;
5758
5759 drpc = (struct nfsrvwritedsdorpc *)arg;
5760 drpc->err = nfsrv_writedsdorpc(drpc->nmp, &drpc->fh, drpc->off,
5761 drpc->len, NULL, drpc->m, drpc->cred, drpc->p);
5762 drpc->done = 1;
5763 NFSD_DEBUG(4, "start_writedsdorpc: err=%d\n", drpc->err);
5764 }
5765
5766 static int
nfsrv_writedsrpc(fhandle_t * fhp,off_t off,int len,struct ucred * cred,NFSPROC_T * p,struct vnode * vp,struct nfsmount ** nmpp,int mirrorcnt,struct mbuf ** mpp,char * cp,int * failposp)5767 nfsrv_writedsrpc(fhandle_t *fhp, off_t off, int len, struct ucred *cred,
5768 NFSPROC_T *p, struct vnode *vp, struct nfsmount **nmpp, int mirrorcnt,
5769 struct mbuf **mpp, char *cp, int *failposp)
5770 {
5771 struct nfsrvwritedsdorpc *drpc, *tdrpc = NULL;
5772 struct nfsvattr na;
5773 struct mbuf *m;
5774 int error, i, offs, ret, timo;
5775
5776 NFSD_DEBUG(4, "in nfsrv_writedsrpc\n");
5777 KASSERT(*mpp != NULL, ("nfsrv_writedsrpc: NULL mbuf chain"));
5778 drpc = NULL;
5779 if (mirrorcnt > 1)
5780 tdrpc = drpc = malloc(sizeof(*drpc) * (mirrorcnt - 1), M_TEMP,
5781 M_WAITOK);
5782
5783 /* Calculate offset in mbuf chain that data starts. */
5784 offs = cp - mtod(*mpp, char *);
5785 NFSD_DEBUG(4, "nfsrv_writedsrpc: mcopy offs=%d len=%d\n", offs, len);
5786
5787 /*
5788 * Do the write RPC for every DS, using a separate kernel process
5789 * for every DS except the last one.
5790 */
5791 error = 0;
5792 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
5793 tdrpc->done = 0;
5794 NFSBCOPY(fhp, &tdrpc->fh, sizeof(*fhp));
5795 tdrpc->off = off;
5796 tdrpc->len = len;
5797 tdrpc->nmp = *nmpp;
5798 tdrpc->cred = cred;
5799 tdrpc->p = p;
5800 tdrpc->inprog = 0;
5801 tdrpc->err = 0;
5802 tdrpc->m = m_copym(*mpp, offs, NFSM_RNDUP(len), M_WAITOK);
5803 ret = EIO;
5804 if (nfs_pnfsiothreads != 0) {
5805 ret = nfs_pnfsio(start_writedsdorpc, tdrpc);
5806 NFSD_DEBUG(4, "nfsrv_writedsrpc: nfs_pnfsio=%d\n",
5807 ret);
5808 }
5809 if (ret != 0) {
5810 ret = nfsrv_writedsdorpc(*nmpp, fhp, off, len, NULL,
5811 tdrpc->m, cred, p);
5812 if (nfsds_failerr(ret) && *failposp == -1)
5813 *failposp = i;
5814 else if (error == 0 && ret != 0)
5815 error = ret;
5816 }
5817 nmpp++;
5818 fhp++;
5819 }
5820 m = m_copym(*mpp, offs, NFSM_RNDUP(len), M_WAITOK);
5821 ret = nfsrv_writedsdorpc(*nmpp, fhp, off, len, &na, m, cred, p);
5822 if (nfsds_failerr(ret) && *failposp == -1 && mirrorcnt > 1)
5823 *failposp = mirrorcnt - 1;
5824 else if (error == 0 && ret != 0)
5825 error = ret;
5826 if (error == 0)
5827 error = nfsrv_setextattr(vp, &na, p);
5828 NFSD_DEBUG(4, "nfsrv_writedsrpc: aft setextat=%d\n", error);
5829 tdrpc = drpc;
5830 timo = hz / 50; /* Wait for 20msec. */
5831 if (timo < 1)
5832 timo = 1;
5833 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
5834 /* Wait for RPCs on separate threads to complete. */
5835 while (tdrpc->inprog != 0 && tdrpc->done == 0)
5836 tsleep(&tdrpc->tsk, PVFS, "srvwrds", timo);
5837 if (nfsds_failerr(tdrpc->err) && *failposp == -1)
5838 *failposp = i;
5839 else if (error == 0 && tdrpc->err != 0)
5840 error = tdrpc->err;
5841 }
5842 free(drpc, M_TEMP);
5843 return (error);
5844 }
5845
5846 /*
5847 * Do a allocate RPC on a DS data file, using this structure for the arguments,
5848 * so that this function can be executed by a separate kernel process.
5849 */
5850 struct nfsrvallocatedsdorpc {
5851 int done;
5852 int inprog;
5853 struct task tsk;
5854 fhandle_t fh;
5855 off_t off;
5856 off_t len;
5857 struct nfsmount *nmp;
5858 struct ucred *cred;
5859 NFSPROC_T *p;
5860 int err;
5861 };
5862
5863 static int
nfsrv_allocatedsdorpc(struct nfsmount * nmp,fhandle_t * fhp,off_t off,off_t len,struct nfsvattr * nap,struct ucred * cred,NFSPROC_T * p)5864 nfsrv_allocatedsdorpc(struct nfsmount *nmp, fhandle_t *fhp, off_t off,
5865 off_t len, struct nfsvattr *nap, struct ucred *cred, NFSPROC_T *p)
5866 {
5867 uint32_t *tl;
5868 struct nfsrv_descript *nd;
5869 nfsattrbit_t attrbits;
5870 nfsv4stateid_t st;
5871 int error;
5872
5873 nd = malloc(sizeof(*nd), M_TEMP, M_WAITOK | M_ZERO);
5874 nfscl_reqstart(nd, NFSPROC_ALLOCATE, nmp, (u_int8_t *)fhp,
5875 sizeof(fhandle_t), NULL, NULL, 0, 0, cred);
5876
5877 /*
5878 * Use a stateid where other is an alternating 01010 pattern and
5879 * seqid is 0xffffffff. This value is not defined as special by
5880 * the RFC and is used by the FreeBSD NFS server to indicate an
5881 * MDS->DS proxy operation.
5882 */
5883 st.other[0] = 0x55555555;
5884 st.other[1] = 0x55555555;
5885 st.other[2] = 0x55555555;
5886 st.seqid = 0xffffffff;
5887 nfsm_stateidtom(nd, &st, NFSSTATEID_PUTSTATEID);
5888 NFSM_BUILD(tl, uint32_t *, 2 * NFSX_HYPER + NFSX_UNSIGNED);
5889 txdr_hyper(off, tl); tl += 2;
5890 txdr_hyper(len, tl); tl += 2;
5891 NFSD_DEBUG(4, "nfsrv_allocatedsdorpc: len=%jd\n", (intmax_t)len);
5892
5893 *tl = txdr_unsigned(NFSV4OP_GETATTR);
5894 NFSGETATTR_ATTRBIT(&attrbits);
5895 nfsrv_putattrbit(nd, &attrbits);
5896 error = newnfs_request(nd, nmp, NULL, &nmp->nm_sockreq, NULL, p,
5897 cred, NFS_PROG, NFS_VER4, NULL, 1, NULL, NULL);
5898 if (error != 0) {
5899 free(nd, M_TEMP);
5900 return (error);
5901 }
5902 NFSD_DEBUG(4, "nfsrv_allocatedsdorpc: aft allocaterpc=%d\n",
5903 nd->nd_repstat);
5904 if (nd->nd_repstat == 0) {
5905 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED);
5906 error = nfsv4_loadattr(nd, NULL, nap, NULL, NULL, 0, NULL, NULL,
5907 NULL, NULL, NULL, 0, NULL, NULL, NULL, NULL, NULL, NULL,
5908 NULL);
5909 } else
5910 error = nd->nd_repstat;
5911 NFSD_DEBUG(4, "nfsrv_allocatedsdorpc: aft loadattr=%d\n", error);
5912 nfsmout:
5913 m_freem(nd->nd_mrep);
5914 free(nd, M_TEMP);
5915 NFSD_DEBUG(4, "nfsrv_allocatedsdorpc error=%d\n", error);
5916 return (error);
5917 }
5918
5919 /*
5920 * Start up the thread that will execute nfsrv_allocatedsdorpc().
5921 */
5922 static void
start_allocatedsdorpc(void * arg,int pending)5923 start_allocatedsdorpc(void *arg, int pending)
5924 {
5925 struct nfsrvallocatedsdorpc *drpc;
5926
5927 drpc = (struct nfsrvallocatedsdorpc *)arg;
5928 drpc->err = nfsrv_allocatedsdorpc(drpc->nmp, &drpc->fh, drpc->off,
5929 drpc->len, NULL, drpc->cred, drpc->p);
5930 drpc->done = 1;
5931 NFSD_DEBUG(4, "start_allocatedsdorpc: err=%d\n", drpc->err);
5932 }
5933
5934 static int
nfsrv_allocatedsrpc(fhandle_t * fhp,off_t off,off_t len,struct ucred * cred,NFSPROC_T * p,struct vnode * vp,struct nfsmount ** nmpp,int mirrorcnt,int * failposp)5935 nfsrv_allocatedsrpc(fhandle_t *fhp, off_t off, off_t len, struct ucred *cred,
5936 NFSPROC_T *p, struct vnode *vp, struct nfsmount **nmpp, int mirrorcnt,
5937 int *failposp)
5938 {
5939 struct nfsrvallocatedsdorpc *drpc, *tdrpc = NULL;
5940 struct nfsvattr na;
5941 int error, i, ret, timo;
5942
5943 NFSD_DEBUG(4, "in nfsrv_allocatedsrpc\n");
5944 drpc = NULL;
5945 if (mirrorcnt > 1)
5946 tdrpc = drpc = malloc(sizeof(*drpc) * (mirrorcnt - 1), M_TEMP,
5947 M_WAITOK);
5948
5949 /*
5950 * Do the allocate RPC for every DS, using a separate kernel process
5951 * for every DS except the last one.
5952 */
5953 error = 0;
5954 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
5955 tdrpc->done = 0;
5956 NFSBCOPY(fhp, &tdrpc->fh, sizeof(*fhp));
5957 tdrpc->off = off;
5958 tdrpc->len = len;
5959 tdrpc->nmp = *nmpp;
5960 tdrpc->cred = cred;
5961 tdrpc->p = p;
5962 tdrpc->inprog = 0;
5963 tdrpc->err = 0;
5964 ret = EIO;
5965 if (nfs_pnfsiothreads != 0) {
5966 ret = nfs_pnfsio(start_allocatedsdorpc, tdrpc);
5967 NFSD_DEBUG(4, "nfsrv_allocatedsrpc: nfs_pnfsio=%d\n",
5968 ret);
5969 }
5970 if (ret != 0) {
5971 ret = nfsrv_allocatedsdorpc(*nmpp, fhp, off, len, NULL,
5972 cred, p);
5973 if (nfsds_failerr(ret) && *failposp == -1)
5974 *failposp = i;
5975 else if (error == 0 && ret != 0)
5976 error = ret;
5977 }
5978 nmpp++;
5979 fhp++;
5980 }
5981 ret = nfsrv_allocatedsdorpc(*nmpp, fhp, off, len, &na, cred, p);
5982 if (nfsds_failerr(ret) && *failposp == -1 && mirrorcnt > 1)
5983 *failposp = mirrorcnt - 1;
5984 else if (error == 0 && ret != 0)
5985 error = ret;
5986 if (error == 0)
5987 error = nfsrv_setextattr(vp, &na, p);
5988 NFSD_DEBUG(4, "nfsrv_allocatedsrpc: aft setextat=%d\n", error);
5989 tdrpc = drpc;
5990 timo = hz / 50; /* Wait for 20msec. */
5991 if (timo < 1)
5992 timo = 1;
5993 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
5994 /* Wait for RPCs on separate threads to complete. */
5995 while (tdrpc->inprog != 0 && tdrpc->done == 0)
5996 tsleep(&tdrpc->tsk, PVFS, "srvalds", timo);
5997 if (nfsds_failerr(tdrpc->err) && *failposp == -1)
5998 *failposp = i;
5999 else if (error == 0 && tdrpc->err != 0)
6000 error = tdrpc->err;
6001 }
6002 free(drpc, M_TEMP);
6003 return (error);
6004 }
6005
6006 /*
6007 * Do a deallocate RPC on a DS data file, using this structure for the
6008 * arguments, so that this function can be executed by a separate kernel
6009 * process.
6010 */
6011 struct nfsrvdeallocatedsdorpc {
6012 int done;
6013 int inprog;
6014 struct task tsk;
6015 fhandle_t fh;
6016 off_t off;
6017 off_t len;
6018 struct nfsmount *nmp;
6019 struct ucred *cred;
6020 NFSPROC_T *p;
6021 int err;
6022 };
6023
6024 static int
nfsrv_deallocatedsdorpc(struct nfsmount * nmp,fhandle_t * fhp,off_t off,off_t len,struct nfsvattr * nap,struct ucred * cred,NFSPROC_T * p)6025 nfsrv_deallocatedsdorpc(struct nfsmount *nmp, fhandle_t *fhp, off_t off,
6026 off_t len, struct nfsvattr *nap, struct ucred *cred, NFSPROC_T *p)
6027 {
6028 uint32_t *tl;
6029 struct nfsrv_descript *nd;
6030 nfsattrbit_t attrbits;
6031 nfsv4stateid_t st;
6032 int error;
6033
6034 nd = malloc(sizeof(*nd), M_TEMP, M_WAITOK | M_ZERO);
6035 nfscl_reqstart(nd, NFSPROC_DEALLOCATE, nmp, (u_int8_t *)fhp,
6036 sizeof(fhandle_t), NULL, NULL, 0, 0, cred);
6037
6038 /*
6039 * Use a stateid where other is an alternating 01010 pattern and
6040 * seqid is 0xffffffff. This value is not defined as special by
6041 * the RFC and is used by the FreeBSD NFS server to indicate an
6042 * MDS->DS proxy operation.
6043 */
6044 st.other[0] = 0x55555555;
6045 st.other[1] = 0x55555555;
6046 st.other[2] = 0x55555555;
6047 st.seqid = 0xffffffff;
6048 nfsm_stateidtom(nd, &st, NFSSTATEID_PUTSTATEID);
6049 NFSM_BUILD(tl, uint32_t *, 2 * NFSX_HYPER + NFSX_UNSIGNED);
6050 txdr_hyper(off, tl); tl += 2;
6051 txdr_hyper(len, tl); tl += 2;
6052 NFSD_DEBUG(4, "nfsrv_deallocatedsdorpc: len=%jd\n", (intmax_t)len);
6053
6054 /* Do a Getattr for the attributes that change upon writing. */
6055 NFSZERO_ATTRBIT(&attrbits);
6056 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_SIZE);
6057 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_CHANGE);
6058 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEACCESS);
6059 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEMODIFY);
6060 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_SPACEUSED);
6061 *tl = txdr_unsigned(NFSV4OP_GETATTR);
6062 nfsrv_putattrbit(nd, &attrbits);
6063 error = newnfs_request(nd, nmp, NULL, &nmp->nm_sockreq, NULL, p,
6064 cred, NFS_PROG, NFS_VER4, NULL, 1, NULL, NULL);
6065 if (error != 0) {
6066 free(nd, M_TEMP);
6067 return (error);
6068 }
6069 NFSD_DEBUG(4, "nfsrv_deallocatedsdorpc: aft deallocaterpc=%d\n",
6070 nd->nd_repstat);
6071 /* Get rid of weak cache consistency data for now. */
6072 if ((nd->nd_flag & (ND_NOMOREDATA | ND_NFSV4 | ND_V4WCCATTR)) ==
6073 (ND_NFSV4 | ND_V4WCCATTR)) {
6074 error = nfsv4_loadattr(nd, NULL, nap, NULL, NULL, 0, NULL, NULL,
6075 NULL, NULL, NULL, 0, NULL, NULL, NULL, NULL, NULL, NULL,
6076 NULL);
6077 NFSD_DEBUG(4, "nfsrv_deallocatedsdorpc: wcc attr=%d\n", error);
6078 if (error != 0)
6079 goto nfsmout;
6080 /*
6081 * Get rid of Op# and status for next op.
6082 */
6083 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED);
6084 if (*++tl != 0)
6085 nd->nd_flag |= ND_NOMOREDATA;
6086 }
6087 if (nd->nd_repstat == 0) {
6088 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED);
6089 error = nfsv4_loadattr(nd, NULL, nap, NULL, NULL, 0, NULL, NULL,
6090 NULL, NULL, NULL, 0, NULL, NULL, NULL, NULL, NULL, NULL,
6091 NULL);
6092 } else
6093 error = nd->nd_repstat;
6094 NFSD_DEBUG(4, "nfsrv_deallocatedsdorpc: aft loadattr=%d\n", error);
6095 nfsmout:
6096 m_freem(nd->nd_mrep);
6097 free(nd, M_TEMP);
6098 NFSD_DEBUG(4, "nfsrv_deallocatedsdorpc error=%d\n", error);
6099 return (error);
6100 }
6101
6102 /*
6103 * Start up the thread that will execute nfsrv_deallocatedsdorpc().
6104 */
6105 static void
start_deallocatedsdorpc(void * arg,int pending)6106 start_deallocatedsdorpc(void *arg, int pending)
6107 {
6108 struct nfsrvdeallocatedsdorpc *drpc;
6109
6110 drpc = (struct nfsrvdeallocatedsdorpc *)arg;
6111 drpc->err = nfsrv_deallocatedsdorpc(drpc->nmp, &drpc->fh, drpc->off,
6112 drpc->len, NULL, drpc->cred, drpc->p);
6113 drpc->done = 1;
6114 NFSD_DEBUG(4, "start_deallocatedsdorpc: err=%d\n", drpc->err);
6115 }
6116
6117 static int
nfsrv_deallocatedsrpc(fhandle_t * fhp,off_t off,off_t len,struct ucred * cred,NFSPROC_T * p,struct vnode * vp,struct nfsmount ** nmpp,int mirrorcnt,int * failposp)6118 nfsrv_deallocatedsrpc(fhandle_t *fhp, off_t off, off_t len, struct ucred *cred,
6119 NFSPROC_T *p, struct vnode *vp, struct nfsmount **nmpp, int mirrorcnt,
6120 int *failposp)
6121 {
6122 struct nfsrvdeallocatedsdorpc *drpc, *tdrpc = NULL;
6123 struct nfsvattr na;
6124 int error, i, ret, timo;
6125
6126 NFSD_DEBUG(4, "in nfsrv_deallocatedsrpc\n");
6127 drpc = NULL;
6128 if (mirrorcnt > 1)
6129 tdrpc = drpc = malloc(sizeof(*drpc) * (mirrorcnt - 1), M_TEMP,
6130 M_WAITOK);
6131
6132 /*
6133 * Do the deallocate RPC for every DS, using a separate kernel process
6134 * for every DS except the last one.
6135 */
6136 error = 0;
6137 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
6138 tdrpc->done = 0;
6139 NFSBCOPY(fhp, &tdrpc->fh, sizeof(*fhp));
6140 tdrpc->off = off;
6141 tdrpc->len = len;
6142 tdrpc->nmp = *nmpp;
6143 tdrpc->cred = cred;
6144 tdrpc->p = p;
6145 tdrpc->inprog = 0;
6146 tdrpc->err = 0;
6147 ret = EIO;
6148 if (nfs_pnfsiothreads != 0) {
6149 ret = nfs_pnfsio(start_deallocatedsdorpc, tdrpc);
6150 NFSD_DEBUG(4, "nfsrv_deallocatedsrpc: nfs_pnfsio=%d\n",
6151 ret);
6152 }
6153 if (ret != 0) {
6154 ret = nfsrv_deallocatedsdorpc(*nmpp, fhp, off, len,
6155 NULL, cred, p);
6156 if (nfsds_failerr(ret) && *failposp == -1)
6157 *failposp = i;
6158 else if (error == 0 && ret != 0)
6159 error = ret;
6160 }
6161 nmpp++;
6162 fhp++;
6163 }
6164 ret = nfsrv_deallocatedsdorpc(*nmpp, fhp, off, len, &na, cred, p);
6165 if (nfsds_failerr(ret) && *failposp == -1 && mirrorcnt > 1)
6166 *failposp = mirrorcnt - 1;
6167 else if (error == 0 && ret != 0)
6168 error = ret;
6169 if (error == 0)
6170 error = nfsrv_setextattr(vp, &na, p);
6171 NFSD_DEBUG(4, "nfsrv_deallocatedsrpc: aft setextat=%d\n", error);
6172 tdrpc = drpc;
6173 timo = hz / 50; /* Wait for 20msec. */
6174 if (timo < 1)
6175 timo = 1;
6176 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
6177 /* Wait for RPCs on separate threads to complete. */
6178 while (tdrpc->inprog != 0 && tdrpc->done == 0)
6179 tsleep(&tdrpc->tsk, PVFS, "srvalds", timo);
6180 if (nfsds_failerr(tdrpc->err) && *failposp == -1)
6181 *failposp = i;
6182 else if (error == 0 && tdrpc->err != 0)
6183 error = tdrpc->err;
6184 }
6185 free(drpc, M_TEMP);
6186 return (error);
6187 }
6188
6189 static int
nfsrv_setattrdsdorpc(fhandle_t * fhp,struct ucred * cred,NFSPROC_T * p,struct vnode * vp,struct nfsmount * nmp,struct nfsvattr * nap,struct nfsvattr * dsnap)6190 nfsrv_setattrdsdorpc(fhandle_t *fhp, struct ucred *cred, NFSPROC_T *p,
6191 struct vnode *vp, struct nfsmount *nmp, struct nfsvattr *nap,
6192 struct nfsvattr *dsnap)
6193 {
6194 uint32_t *tl;
6195 struct nfsrv_descript *nd;
6196 nfsv4stateid_t st;
6197 nfsattrbit_t attrbits;
6198 int error;
6199
6200 NFSD_DEBUG(4, "in nfsrv_setattrdsdorpc\n");
6201 nd = malloc(sizeof(*nd), M_TEMP, M_WAITOK | M_ZERO);
6202 /*
6203 * Use a stateid where other is an alternating 01010 pattern and
6204 * seqid is 0xffffffff. This value is not defined as special by
6205 * the RFC and is used by the FreeBSD NFS server to indicate an
6206 * MDS->DS proxy operation.
6207 */
6208 st.other[0] = 0x55555555;
6209 st.other[1] = 0x55555555;
6210 st.other[2] = 0x55555555;
6211 st.seqid = 0xffffffff;
6212 nfscl_reqstart(nd, NFSPROC_SETATTR, nmp, (u_int8_t *)fhp, sizeof(*fhp),
6213 NULL, NULL, 0, 0, cred);
6214 nfsm_stateidtom(nd, &st, NFSSTATEID_PUTSTATEID);
6215 nfscl_fillsattr(nd, &nap->na_vattr, vp, NFSSATTR_FULL, 0);
6216
6217 /* Do a Getattr for the attributes that change due to writing. */
6218 NFSZERO_ATTRBIT(&attrbits);
6219 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_SIZE);
6220 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_CHANGE);
6221 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEACCESS);
6222 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEMODIFY);
6223 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_SPACEUSED);
6224 NFSM_BUILD(tl, u_int32_t *, NFSX_UNSIGNED);
6225 *tl = txdr_unsigned(NFSV4OP_GETATTR);
6226 (void) nfsrv_putattrbit(nd, &attrbits);
6227 error = newnfs_request(nd, nmp, NULL, &nmp->nm_sockreq, NULL, p, cred,
6228 NFS_PROG, NFS_VER4, NULL, 1, NULL, NULL);
6229 if (error != 0) {
6230 free(nd, M_TEMP);
6231 return (error);
6232 }
6233 NFSD_DEBUG(4, "nfsrv_setattrdsdorpc: aft setattrrpc=%d\n",
6234 nd->nd_repstat);
6235 /* Get rid of weak cache consistency data for now. */
6236 if ((nd->nd_flag & (ND_NOMOREDATA | ND_NFSV4 | ND_V4WCCATTR)) ==
6237 (ND_NFSV4 | ND_V4WCCATTR)) {
6238 error = nfsv4_loadattr(nd, NULL, dsnap, NULL, NULL, 0, NULL,
6239 NULL, NULL, NULL, NULL, 0, NULL, NULL, NULL, NULL, NULL,
6240 NULL, NULL);
6241 NFSD_DEBUG(4, "nfsrv_setattrdsdorpc: wcc attr=%d\n", error);
6242 if (error != 0)
6243 goto nfsmout;
6244 /*
6245 * Get rid of Op# and status for next op.
6246 */
6247 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED);
6248 if (*++tl != 0)
6249 nd->nd_flag |= ND_NOMOREDATA;
6250 }
6251 error = nfsrv_getattrbits(nd, &attrbits, NULL, NULL);
6252 if (error != 0)
6253 goto nfsmout;
6254 if (nd->nd_repstat != 0)
6255 error = nd->nd_repstat;
6256 /*
6257 * Get the Change, Size, Access Time and Modify Time attributes and set
6258 * on the Metadata file, so its attributes will be what the file's
6259 * would be if it had been written.
6260 */
6261 if (error == 0) {
6262 NFSM_DISSECT(tl, uint32_t *, 2 * NFSX_UNSIGNED);
6263 error = nfsv4_loadattr(nd, NULL, dsnap, NULL, NULL, 0, NULL,
6264 NULL, NULL, NULL, NULL, 0, NULL, NULL, NULL, NULL, NULL,
6265 NULL, NULL);
6266 }
6267 NFSD_DEBUG(4, "nfsrv_setattrdsdorpc: aft setattr loadattr=%d\n", error);
6268 nfsmout:
6269 m_freem(nd->nd_mrep);
6270 free(nd, M_TEMP);
6271 NFSD_DEBUG(4, "nfsrv_setattrdsdorpc error=%d\n", error);
6272 return (error);
6273 }
6274
6275 struct nfsrvsetattrdsdorpc {
6276 int done;
6277 int inprog;
6278 struct task tsk;
6279 fhandle_t fh;
6280 struct nfsmount *nmp;
6281 struct vnode *vp;
6282 struct ucred *cred;
6283 NFSPROC_T *p;
6284 struct nfsvattr na;
6285 struct nfsvattr dsna;
6286 int err;
6287 };
6288
6289 /*
6290 * Start up the thread that will execute nfsrv_setattrdsdorpc().
6291 */
6292 static void
start_setattrdsdorpc(void * arg,int pending)6293 start_setattrdsdorpc(void *arg, int pending)
6294 {
6295 struct nfsrvsetattrdsdorpc *drpc;
6296
6297 drpc = (struct nfsrvsetattrdsdorpc *)arg;
6298 drpc->err = nfsrv_setattrdsdorpc(&drpc->fh, drpc->cred, drpc->p,
6299 drpc->vp, drpc->nmp, &drpc->na, &drpc->dsna);
6300 drpc->done = 1;
6301 }
6302
6303 static int
nfsrv_setattrdsrpc(fhandle_t * fhp,struct ucred * cred,NFSPROC_T * p,struct vnode * vp,struct nfsmount ** nmpp,int mirrorcnt,struct nfsvattr * nap,int * failposp)6304 nfsrv_setattrdsrpc(fhandle_t *fhp, struct ucred *cred, NFSPROC_T *p,
6305 struct vnode *vp, struct nfsmount **nmpp, int mirrorcnt,
6306 struct nfsvattr *nap, int *failposp)
6307 {
6308 struct nfsrvsetattrdsdorpc *drpc, *tdrpc = NULL;
6309 struct nfsvattr na;
6310 int error, i, ret, timo;
6311
6312 NFSD_DEBUG(4, "in nfsrv_setattrdsrpc\n");
6313 drpc = NULL;
6314 if (mirrorcnt > 1)
6315 tdrpc = drpc = malloc(sizeof(*drpc) * (mirrorcnt - 1), M_TEMP,
6316 M_WAITOK);
6317
6318 /*
6319 * Do the setattr RPC for every DS, using a separate kernel process
6320 * for every DS except the last one.
6321 */
6322 error = 0;
6323 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
6324 tdrpc->done = 0;
6325 tdrpc->inprog = 0;
6326 NFSBCOPY(fhp, &tdrpc->fh, sizeof(*fhp));
6327 tdrpc->nmp = *nmpp;
6328 tdrpc->vp = vp;
6329 tdrpc->cred = cred;
6330 tdrpc->p = p;
6331 tdrpc->na = *nap;
6332 tdrpc->err = 0;
6333 ret = EIO;
6334 if (nfs_pnfsiothreads != 0) {
6335 ret = nfs_pnfsio(start_setattrdsdorpc, tdrpc);
6336 NFSD_DEBUG(4, "nfsrv_setattrdsrpc: nfs_pnfsio=%d\n",
6337 ret);
6338 }
6339 if (ret != 0) {
6340 ret = nfsrv_setattrdsdorpc(fhp, cred, p, vp, *nmpp, nap,
6341 &na);
6342 if (nfsds_failerr(ret) && *failposp == -1)
6343 *failposp = i;
6344 else if (error == 0 && ret != 0)
6345 error = ret;
6346 }
6347 nmpp++;
6348 fhp++;
6349 }
6350 ret = nfsrv_setattrdsdorpc(fhp, cred, p, vp, *nmpp, nap, &na);
6351 if (nfsds_failerr(ret) && *failposp == -1 && mirrorcnt > 1)
6352 *failposp = mirrorcnt - 1;
6353 else if (error == 0 && ret != 0)
6354 error = ret;
6355 if (error == 0)
6356 error = nfsrv_setextattr(vp, &na, p);
6357 NFSD_DEBUG(4, "nfsrv_setattrdsrpc: aft setextat=%d\n", error);
6358 tdrpc = drpc;
6359 timo = hz / 50; /* Wait for 20msec. */
6360 if (timo < 1)
6361 timo = 1;
6362 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
6363 /* Wait for RPCs on separate threads to complete. */
6364 while (tdrpc->inprog != 0 && tdrpc->done == 0)
6365 tsleep(&tdrpc->tsk, PVFS, "srvsads", timo);
6366 if (nfsds_failerr(tdrpc->err) && *failposp == -1)
6367 *failposp = i;
6368 else if (error == 0 && tdrpc->err != 0)
6369 error = tdrpc->err;
6370 }
6371 free(drpc, M_TEMP);
6372 return (error);
6373 }
6374
6375 /*
6376 * Do a Setattr of an NFSv4 ACL on the DS file.
6377 */
6378 static int
nfsrv_setacldsdorpc(fhandle_t * fhp,struct ucred * cred,NFSPROC_T * p,struct vnode * vp,struct nfsmount * nmp,struct acl * aclp)6379 nfsrv_setacldsdorpc(fhandle_t *fhp, struct ucred *cred, NFSPROC_T *p,
6380 struct vnode *vp, struct nfsmount *nmp, struct acl *aclp)
6381 {
6382 struct nfsrv_descript *nd;
6383 nfsv4stateid_t st;
6384 nfsattrbit_t attrbits;
6385 int error;
6386
6387 NFSD_DEBUG(4, "in nfsrv_setacldsdorpc\n");
6388 nd = malloc(sizeof(*nd), M_TEMP, M_WAITOK | M_ZERO);
6389 /*
6390 * Use a stateid where other is an alternating 01010 pattern and
6391 * seqid is 0xffffffff. This value is not defined as special by
6392 * the RFC and is used by the FreeBSD NFS server to indicate an
6393 * MDS->DS proxy operation.
6394 */
6395 st.other[0] = 0x55555555;
6396 st.other[1] = 0x55555555;
6397 st.other[2] = 0x55555555;
6398 st.seqid = 0xffffffff;
6399 nfscl_reqstart(nd, NFSPROC_SETACL, nmp, (u_int8_t *)fhp, sizeof(*fhp),
6400 NULL, NULL, 0, 0, cred);
6401 nfsm_stateidtom(nd, &st, NFSSTATEID_PUTSTATEID);
6402 NFSZERO_ATTRBIT(&attrbits);
6403 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_ACL);
6404 /*
6405 * The "vp" argument to nfsv4_fillattr() is only used for vnode_type(),
6406 * so passing in the metadata "vp" will be ok, since it is of
6407 * the same type (VREG).
6408 */
6409 nfsv4_fillattr(nd, NULL, vp, aclp, NULL, NULL, 0, &attrbits, NULL,
6410 NULL, 0, 0, 0, 0, 0, NULL, false, false, false, 0);
6411 error = newnfs_request(nd, nmp, NULL, &nmp->nm_sockreq, NULL, p, cred,
6412 NFS_PROG, NFS_VER4, NULL, 1, NULL, NULL);
6413 if (error != 0) {
6414 free(nd, M_TEMP);
6415 return (error);
6416 }
6417 NFSD_DEBUG(4, "nfsrv_setacldsdorpc: aft setaclrpc=%d\n",
6418 nd->nd_repstat);
6419 error = nd->nd_repstat;
6420 m_freem(nd->nd_mrep);
6421 free(nd, M_TEMP);
6422 return (error);
6423 }
6424
6425 struct nfsrvsetacldsdorpc {
6426 int done;
6427 int inprog;
6428 struct task tsk;
6429 fhandle_t fh;
6430 struct nfsmount *nmp;
6431 struct vnode *vp;
6432 struct ucred *cred;
6433 NFSPROC_T *p;
6434 struct acl *aclp;
6435 int err;
6436 };
6437
6438 /*
6439 * Start up the thread that will execute nfsrv_setacldsdorpc().
6440 */
6441 static void
start_setacldsdorpc(void * arg,int pending)6442 start_setacldsdorpc(void *arg, int pending)
6443 {
6444 struct nfsrvsetacldsdorpc *drpc;
6445
6446 drpc = (struct nfsrvsetacldsdorpc *)arg;
6447 drpc->err = nfsrv_setacldsdorpc(&drpc->fh, drpc->cred, drpc->p,
6448 drpc->vp, drpc->nmp, drpc->aclp);
6449 drpc->done = 1;
6450 }
6451
6452 static int
nfsrv_setacldsrpc(fhandle_t * fhp,struct ucred * cred,NFSPROC_T * p,struct vnode * vp,struct nfsmount ** nmpp,int mirrorcnt,struct acl * aclp,int * failposp)6453 nfsrv_setacldsrpc(fhandle_t *fhp, struct ucred *cred, NFSPROC_T *p,
6454 struct vnode *vp, struct nfsmount **nmpp, int mirrorcnt, struct acl *aclp,
6455 int *failposp)
6456 {
6457 struct nfsrvsetacldsdorpc *drpc, *tdrpc = NULL;
6458 int error, i, ret, timo;
6459
6460 NFSD_DEBUG(4, "in nfsrv_setacldsrpc\n");
6461 drpc = NULL;
6462 if (mirrorcnt > 1)
6463 tdrpc = drpc = malloc(sizeof(*drpc) * (mirrorcnt - 1), M_TEMP,
6464 M_WAITOK);
6465
6466 /*
6467 * Do the setattr RPC for every DS, using a separate kernel process
6468 * for every DS except the last one.
6469 */
6470 error = 0;
6471 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
6472 tdrpc->done = 0;
6473 tdrpc->inprog = 0;
6474 NFSBCOPY(fhp, &tdrpc->fh, sizeof(*fhp));
6475 tdrpc->nmp = *nmpp;
6476 tdrpc->vp = vp;
6477 tdrpc->cred = cred;
6478 tdrpc->p = p;
6479 tdrpc->aclp = aclp;
6480 tdrpc->err = 0;
6481 ret = EIO;
6482 if (nfs_pnfsiothreads != 0) {
6483 ret = nfs_pnfsio(start_setacldsdorpc, tdrpc);
6484 NFSD_DEBUG(4, "nfsrv_setacldsrpc: nfs_pnfsio=%d\n",
6485 ret);
6486 }
6487 if (ret != 0) {
6488 ret = nfsrv_setacldsdorpc(fhp, cred, p, vp, *nmpp,
6489 aclp);
6490 if (nfsds_failerr(ret) && *failposp == -1)
6491 *failposp = i;
6492 else if (error == 0 && ret != 0)
6493 error = ret;
6494 }
6495 nmpp++;
6496 fhp++;
6497 }
6498 ret = nfsrv_setacldsdorpc(fhp, cred, p, vp, *nmpp, aclp);
6499 if (nfsds_failerr(ret) && *failposp == -1 && mirrorcnt > 1)
6500 *failposp = mirrorcnt - 1;
6501 else if (error == 0 && ret != 0)
6502 error = ret;
6503 NFSD_DEBUG(4, "nfsrv_setacldsrpc: aft setextat=%d\n", error);
6504 tdrpc = drpc;
6505 timo = hz / 50; /* Wait for 20msec. */
6506 if (timo < 1)
6507 timo = 1;
6508 for (i = 0; i < mirrorcnt - 1; i++, tdrpc++) {
6509 /* Wait for RPCs on separate threads to complete. */
6510 while (tdrpc->inprog != 0 && tdrpc->done == 0)
6511 tsleep(&tdrpc->tsk, PVFS, "srvacds", timo);
6512 if (nfsds_failerr(tdrpc->err) && *failposp == -1)
6513 *failposp = i;
6514 else if (error == 0 && tdrpc->err != 0)
6515 error = tdrpc->err;
6516 }
6517 free(drpc, M_TEMP);
6518 return (error);
6519 }
6520
6521 /*
6522 * Getattr call to the DS for the attributes that change due to writing.
6523 */
6524 static int
nfsrv_getattrdsrpc(fhandle_t * fhp,struct ucred * cred,NFSPROC_T * p,struct vnode * vp,struct nfsmount * nmp,struct nfsvattr * nap)6525 nfsrv_getattrdsrpc(fhandle_t *fhp, struct ucred *cred, NFSPROC_T *p,
6526 struct vnode *vp, struct nfsmount *nmp, struct nfsvattr *nap)
6527 {
6528 struct nfsrv_descript *nd;
6529 int error;
6530 nfsattrbit_t attrbits;
6531
6532 NFSD_DEBUG(4, "in nfsrv_getattrdsrpc\n");
6533 nd = malloc(sizeof(*nd), M_TEMP, M_WAITOK | M_ZERO);
6534 nfscl_reqstart(nd, NFSPROC_GETATTR, nmp, (u_int8_t *)fhp,
6535 sizeof(fhandle_t), NULL, NULL, 0, 0, cred);
6536 NFSZERO_ATTRBIT(&attrbits);
6537 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_SIZE);
6538 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_CHANGE);
6539 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEACCESS);
6540 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_TIMEMODIFY);
6541 NFSSETBIT_ATTRBIT(&attrbits, NFSATTRBIT_SPACEUSED);
6542 (void) nfsrv_putattrbit(nd, &attrbits);
6543 error = newnfs_request(nd, nmp, NULL, &nmp->nm_sockreq, NULL, p, cred,
6544 NFS_PROG, NFS_VER4, NULL, 1, NULL, NULL);
6545 if (error != 0) {
6546 free(nd, M_TEMP);
6547 return (error);
6548 }
6549 NFSD_DEBUG(4, "nfsrv_getattrdsrpc: aft getattrrpc=%d\n",
6550 nd->nd_repstat);
6551 if (nd->nd_repstat == 0) {
6552 error = nfsv4_loadattr(nd, NULL, nap, NULL, NULL, 0,
6553 NULL, NULL, NULL, NULL, NULL, 0, NULL, NULL, NULL,
6554 NULL, NULL, NULL, NULL);
6555 /*
6556 * We can only save the updated values in the extended
6557 * attribute if the vp is exclusively locked.
6558 * This should happen when any of the following operations
6559 * occur on the vnode:
6560 * Close, Delegreturn, LayoutCommit, LayoutReturn
6561 * As such, the updated extended attribute should get saved
6562 * before nfsrv_checkdsattr() returns 0 and allows the cached
6563 * attributes to be returned without calling this function.
6564 */
6565 if (error == 0 && VOP_ISLOCKED(vp) == LK_EXCLUSIVE) {
6566 error = nfsrv_setextattr(vp, nap, p);
6567 NFSD_DEBUG(4, "nfsrv_getattrdsrpc: aft setextat=%d\n",
6568 error);
6569 }
6570 } else
6571 error = nd->nd_repstat;
6572 m_freem(nd->nd_mrep);
6573 free(nd, M_TEMP);
6574 NFSD_DEBUG(4, "nfsrv_getattrdsrpc error=%d\n", error);
6575 return (error);
6576 }
6577
6578 /*
6579 * Seek call to a DS.
6580 */
6581 static int
nfsrv_seekdsrpc(fhandle_t * fhp,off_t * offp,int content,bool * eofp,struct ucred * cred,NFSPROC_T * p,struct nfsmount * nmp)6582 nfsrv_seekdsrpc(fhandle_t *fhp, off_t *offp, int content, bool *eofp,
6583 struct ucred *cred, NFSPROC_T *p, struct nfsmount *nmp)
6584 {
6585 uint32_t *tl;
6586 struct nfsrv_descript *nd;
6587 nfsv4stateid_t st;
6588 int error;
6589
6590 NFSD_DEBUG(4, "in nfsrv_seekdsrpc\n");
6591 /*
6592 * Use a stateid where other is an alternating 01010 pattern and
6593 * seqid is 0xffffffff. This value is not defined as special by
6594 * the RFC and is used by the FreeBSD NFS server to indicate an
6595 * MDS->DS proxy operation.
6596 */
6597 st.other[0] = 0x55555555;
6598 st.other[1] = 0x55555555;
6599 st.other[2] = 0x55555555;
6600 st.seqid = 0xffffffff;
6601 nd = malloc(sizeof(*nd), M_TEMP, M_WAITOK | M_ZERO);
6602 nfscl_reqstart(nd, NFSPROC_SEEKDS, nmp, (u_int8_t *)fhp,
6603 sizeof(fhandle_t), NULL, NULL, 0, 0, cred);
6604 nfsm_stateidtom(nd, &st, NFSSTATEID_PUTSTATEID);
6605 NFSM_BUILD(tl, uint32_t *, NFSX_HYPER + NFSX_UNSIGNED);
6606 txdr_hyper(*offp, tl); tl += 2;
6607 *tl = txdr_unsigned(content);
6608 error = newnfs_request(nd, nmp, NULL, &nmp->nm_sockreq, NULL, p, cred,
6609 NFS_PROG, NFS_VER4, NULL, 1, NULL, NULL);
6610 if (error != 0) {
6611 free(nd, M_TEMP);
6612 return (error);
6613 }
6614 NFSD_DEBUG(4, "nfsrv_seekdsrpc: aft seekrpc=%d\n", nd->nd_repstat);
6615 if (nd->nd_repstat == 0) {
6616 NFSM_DISSECT(tl, uint32_t *, NFSX_UNSIGNED + NFSX_HYPER);
6617 if (*tl++ == newnfs_true)
6618 *eofp = true;
6619 else
6620 *eofp = false;
6621 *offp = fxdr_hyper(tl);
6622 } else
6623 error = nd->nd_repstat;
6624 nfsmout:
6625 m_freem(nd->nd_mrep);
6626 free(nd, M_TEMP);
6627 NFSD_DEBUG(4, "nfsrv_seekdsrpc error=%d\n", error);
6628 return (error);
6629 }
6630
6631 /*
6632 * Get the device id and file handle for a DS file.
6633 */
6634 int
nfsrv_dsgetdevandfh(struct vnode * vp,NFSPROC_T * p,int * mirrorcntp,fhandle_t * fhp,char * devid)6635 nfsrv_dsgetdevandfh(struct vnode *vp, NFSPROC_T *p, int *mirrorcntp,
6636 fhandle_t *fhp, char *devid)
6637 {
6638 int buflen, error;
6639 char *buf;
6640
6641 buflen = 1024;
6642 buf = malloc(buflen, M_TEMP, M_WAITOK);
6643 error = nfsrv_dsgetsockmnt(vp, 0, buf, &buflen, mirrorcntp, p, NULL,
6644 fhp, devid, NULL, NULL, NULL, NULL, NULL, NULL);
6645 free(buf, M_TEMP);
6646 return (error);
6647 }
6648
6649 /*
6650 * Do a Lookup against the DS for the filename.
6651 */
6652 static int
nfsrv_pnfslookupds(struct vnode * vp,struct vnode * dvp,struct pnfsdsfile * pf,struct vnode ** nvpp,NFSPROC_T * p)6653 nfsrv_pnfslookupds(struct vnode *vp, struct vnode *dvp, struct pnfsdsfile *pf,
6654 struct vnode **nvpp, NFSPROC_T *p)
6655 {
6656 struct nameidata named;
6657 struct ucred *tcred;
6658 char *bufp;
6659 u_long *hashp;
6660 struct vnode *nvp;
6661 int error;
6662
6663 tcred = newnfs_getcred();
6664 named.ni_cnd.cn_nameiop = LOOKUP;
6665 named.ni_cnd.cn_lkflags = LK_SHARED | LK_RETRY;
6666 named.ni_cnd.cn_cred = tcred;
6667 named.ni_cnd.cn_flags = ISLASTCN | LOCKPARENT | LOCKLEAF;
6668 nfsvno_setpathbuf(&named, &bufp, &hashp);
6669 named.ni_cnd.cn_nameptr = bufp;
6670 named.ni_cnd.cn_namelen = strlen(pf->dsf_filename);
6671 strlcpy(bufp, pf->dsf_filename, NAME_MAX);
6672 NFSD_DEBUG(4, "nfsrv_pnfslookupds: filename=%s\n", bufp);
6673 error = VOP_LOOKUP(dvp, &nvp, &named.ni_cnd);
6674 NFSD_DEBUG(4, "nfsrv_pnfslookupds: aft LOOKUP=%d\n", error);
6675 NFSFREECRED(tcred);
6676 nfsvno_relpathbuf(&named);
6677 if (error == 0)
6678 *nvpp = nvp;
6679 NFSD_DEBUG(4, "eo nfsrv_pnfslookupds=%d\n", error);
6680 return (error);
6681 }
6682
6683 /*
6684 * Set the file handle to the correct one.
6685 */
6686 static void
nfsrv_pnfssetfh(struct vnode * vp,struct pnfsdsfile * pf,char * devid,char * fnamep,struct vnode * nvp,NFSPROC_T * p)6687 nfsrv_pnfssetfh(struct vnode *vp, struct pnfsdsfile *pf, char *devid,
6688 char *fnamep, struct vnode *nvp, NFSPROC_T *p)
6689 {
6690 struct nfsnode *np;
6691 int ret = 0;
6692
6693 np = VTONFS(nvp);
6694 NFSBCOPY(np->n_fhp->nfh_fh, &pf->dsf_fh, NFSX_MYFH);
6695 /*
6696 * We can only do a vn_set_extattr() if the vnode is exclusively
6697 * locked and vn_start_write() has been done. If devid != NULL or
6698 * fnamep != NULL or the vnode is shared locked, vn_start_write()
6699 * may not have been done.
6700 * If not done now, it will be done on a future call.
6701 */
6702 if (devid == NULL && fnamep == NULL && NFSVOPISLOCKED(vp) ==
6703 LK_EXCLUSIVE)
6704 ret = vn_extattr_set(vp, IO_NODELOCKED,
6705 EXTATTR_NAMESPACE_SYSTEM, "pnfsd.dsfile", sizeof(*pf),
6706 (char *)pf, p);
6707 NFSD_DEBUG(4, "eo nfsrv_pnfssetfh=%d\n", ret);
6708 }
6709
6710 /*
6711 * Cause RPCs waiting on "nmp" to fail. This is called for a DS mount point
6712 * when the DS has failed.
6713 */
6714 void
nfsrv_killrpcs(struct nfsmount * nmp)6715 nfsrv_killrpcs(struct nfsmount *nmp)
6716 {
6717
6718 /*
6719 * Call newnfs_nmcancelreqs() to cause
6720 * any RPCs in progress on the mount point to
6721 * fail.
6722 * This will cause any process waiting for an
6723 * RPC to complete while holding a vnode lock
6724 * on the mounted-on vnode (such as "df" or
6725 * a non-forced "umount") to fail.
6726 * This will unlock the mounted-on vnode so
6727 * a forced dismount can succeed.
6728 * The NFSMNTP_CANCELRPCS flag should be set when this function is
6729 * called.
6730 */
6731 newnfs_nmcancelreqs(nmp);
6732 }
6733
6734 /*
6735 * Sum up the statfs info for each of the DSs, so that the client will
6736 * receive the total for all DSs.
6737 */
6738 static int
nfsrv_pnfsstatfs(struct statfs * sf,struct mount * mp)6739 nfsrv_pnfsstatfs(struct statfs *sf, struct mount *mp)
6740 {
6741 struct statfs *tsf;
6742 struct nfsdevice *ds;
6743 struct vnode **dvpp, **tdvpp, *dvp;
6744 uint64_t tot;
6745 int cnt, error = 0, i;
6746
6747 if (nfsrv_devidcnt <= 0)
6748 return (ENXIO);
6749 dvpp = mallocarray(nfsrv_devidcnt, sizeof(*dvpp), M_TEMP, M_WAITOK);
6750 tsf = malloc(sizeof(*tsf), M_TEMP, M_WAITOK);
6751
6752 /* Get an array of the dvps for the DSs. */
6753 tdvpp = dvpp;
6754 i = 0;
6755 NFSDDSLOCK();
6756 /* First, search for matches for same file system. */
6757 TAILQ_FOREACH(ds, &nfsrv_devidhead, nfsdev_list) {
6758 if (ds->nfsdev_nmp != NULL && ds->nfsdev_mdsisset != 0 &&
6759 fsidcmp(&ds->nfsdev_mdsfsid, &mp->mnt_stat.f_fsid) == 0) {
6760 if (++i > nfsrv_devidcnt)
6761 break;
6762 *tdvpp++ = ds->nfsdev_dvp;
6763 }
6764 }
6765 /*
6766 * If no matches for same file system, total all servers not assigned
6767 * to a file system.
6768 */
6769 if (i == 0) {
6770 TAILQ_FOREACH(ds, &nfsrv_devidhead, nfsdev_list) {
6771 if (ds->nfsdev_nmp != NULL &&
6772 ds->nfsdev_mdsisset == 0) {
6773 if (++i > nfsrv_devidcnt)
6774 break;
6775 *tdvpp++ = ds->nfsdev_dvp;
6776 }
6777 }
6778 }
6779 NFSDDSUNLOCK();
6780 cnt = i;
6781
6782 /* Do a VFS_STATFS() for each of the DSs and sum them up. */
6783 tdvpp = dvpp;
6784 for (i = 0; i < cnt && error == 0; i++) {
6785 dvp = *tdvpp++;
6786 error = VFS_STATFS(dvp->v_mount, tsf);
6787 if (error == 0) {
6788 if (sf->f_bsize == 0) {
6789 if (tsf->f_bsize > 0)
6790 sf->f_bsize = tsf->f_bsize;
6791 else
6792 sf->f_bsize = 8192;
6793 }
6794 if (tsf->f_blocks > 0) {
6795 if (sf->f_bsize != tsf->f_bsize) {
6796 tot = tsf->f_blocks * tsf->f_bsize;
6797 sf->f_blocks += (tot / sf->f_bsize);
6798 } else
6799 sf->f_blocks += tsf->f_blocks;
6800 }
6801 if (tsf->f_bfree > 0) {
6802 if (sf->f_bsize != tsf->f_bsize) {
6803 tot = tsf->f_bfree * tsf->f_bsize;
6804 sf->f_bfree += (tot / sf->f_bsize);
6805 } else
6806 sf->f_bfree += tsf->f_bfree;
6807 }
6808 if (tsf->f_bavail > 0) {
6809 if (sf->f_bsize != tsf->f_bsize) {
6810 tot = tsf->f_bavail * tsf->f_bsize;
6811 sf->f_bavail += (tot / sf->f_bsize);
6812 } else
6813 sf->f_bavail += tsf->f_bavail;
6814 }
6815 }
6816 }
6817 free(tsf, M_TEMP);
6818 free(dvpp, M_TEMP);
6819 return (error);
6820 }
6821
6822 /*
6823 * Set an NFSv4 acl.
6824 */
6825 int
nfsrv_setacl(struct vnode * vp,NFSACL_T * aclp,struct ucred * cred,NFSPROC_T * p)6826 nfsrv_setacl(struct vnode *vp, NFSACL_T *aclp, struct ucred *cred, NFSPROC_T *p)
6827 {
6828 int error;
6829
6830 if (nfsrv_useacl == 0 || nfs_supportsnfsv4acls(vp) == 0) {
6831 error = NFSERR_ATTRNOTSUPP;
6832 goto out;
6833 }
6834 /*
6835 * With NFSv4 ACLs, chmod(2) may need to add additional entries.
6836 * Make sure it has enough room for that - splitting every entry
6837 * into two and appending "canonical six" entries at the end.
6838 * Cribbed out of kern/vfs_acl.c - Rick M.
6839 */
6840 if (aclp->acl_cnt > (ACL_MAX_ENTRIES - 6) / 2) {
6841 error = NFSERR_ATTRNOTSUPP;
6842 goto out;
6843 }
6844 error = VOP_SETACL(vp, ACL_TYPE_NFS4, aclp, cred, p);
6845 if (error == 0) {
6846 error = nfsrv_dssetacl(vp, aclp, cred, p);
6847 if (error == ENOENT)
6848 error = 0;
6849 }
6850
6851 out:
6852 NFSEXITCODE(error);
6853 return (error);
6854 }
6855
6856 /*
6857 * Seek vnode op call (actually it is a VOP_IOCTL()).
6858 * This function is called with the vnode locked, but unlocks and vrele()s
6859 * the vp before returning.
6860 */
6861 int
nfsvno_seek(struct nfsrv_descript * nd,struct vnode * vp,u_long cmd,off_t * offp,int content,bool * eofp,struct ucred * cred,NFSPROC_T * p)6862 nfsvno_seek(struct nfsrv_descript *nd, struct vnode *vp, u_long cmd,
6863 off_t *offp, int content, bool *eofp, struct ucred *cred, NFSPROC_T *p)
6864 {
6865 struct nfsvattr at;
6866 int error, ret;
6867
6868 ASSERT_VOP_LOCKED(vp, "nfsvno_seek vp");
6869 /*
6870 * Attempt to seek on a DS file. A return of ENOENT implies
6871 * there is no DS file to seek on.
6872 */
6873 error = nfsrv_proxyds(vp, 0, 0, cred, p, NFSPROC_SEEKDS, NULL,
6874 NULL, NULL, NULL, NULL, offp, content, eofp);
6875 if (error != ENOENT) {
6876 vput(vp);
6877 return (error);
6878 }
6879
6880 /*
6881 * Do the VOP_IOCTL() call. For the case where *offp == file_size,
6882 * VOP_IOCTL() will return ENXIO. However, the correct reply for
6883 * NFSv4.2 is *eofp == true and error == 0 for this case.
6884 */
6885 NFSVOPUNLOCK(vp);
6886 error = VOP_IOCTL(vp, cmd, offp, 0, cred, p);
6887 *eofp = false;
6888 if (error == ENXIO || (error == 0 && cmd == FIOSEEKHOLE)) {
6889 /* Handle the cases where we might be at EOF. */
6890 ret = nfsvno_getattr(vp, &at, nd, p, 0, NULL);
6891 if (ret == 0 && *offp == at.na_size) {
6892 *eofp = true;
6893 error = 0;
6894 }
6895 if (ret != 0 && error == 0)
6896 error = ret;
6897 }
6898 vrele(vp);
6899 NFSEXITCODE(error);
6900 return (error);
6901 }
6902
6903 /*
6904 * Allocate vnode op call.
6905 */
6906 int
nfsvno_allocate(struct vnode * vp,off_t off,off_t len,struct ucred * cred,NFSPROC_T * p)6907 nfsvno_allocate(struct vnode *vp, off_t off, off_t len, struct ucred *cred,
6908 NFSPROC_T *p)
6909 {
6910 int error;
6911 off_t olen;
6912
6913 ASSERT_VOP_ELOCKED(vp, "nfsvno_allocate vp");
6914 /*
6915 * Attempt to allocate on a DS file. A return of ENOENT implies
6916 * there is no DS file to allocate on.
6917 */
6918 error = nfsrv_proxyds(vp, off, 0, cred, p, NFSPROC_ALLOCATE, NULL,
6919 NULL, NULL, NULL, NULL, &len, 0, NULL);
6920 if (error != ENOENT)
6921 return (error);
6922
6923 /*
6924 * Do the actual VOP_ALLOCATE(), looping so long as
6925 * progress is being made, to achieve completion.
6926 */
6927 do {
6928 olen = len;
6929 error = VOP_ALLOCATE(vp, &off, &len, IO_SYNC, cred);
6930 if (error == 0 && len > 0 && olen > len)
6931 maybe_yield();
6932 } while (error == 0 && len > 0 && olen > len);
6933 if (error == 0 && len > 0)
6934 error = NFSERR_IO;
6935 NFSEXITCODE(error);
6936 return (error);
6937 }
6938
6939 /*
6940 * Deallocate vnode op call.
6941 */
6942 int
nfsvno_deallocate(struct vnode * vp,off_t off,off_t len,struct ucred * cred,NFSPROC_T * p)6943 nfsvno_deallocate(struct vnode *vp, off_t off, off_t len, struct ucred *cred,
6944 NFSPROC_T *p)
6945 {
6946 int error;
6947 off_t olen;
6948
6949 ASSERT_VOP_ELOCKED(vp, "nfsvno_deallocate vp");
6950 /*
6951 * Attempt to deallocate on a DS file. A return of ENOENT implies
6952 * there is no DS file to deallocate on.
6953 */
6954 error = nfsrv_proxyds(vp, off, 0, cred, p, NFSPROC_DEALLOCATE, NULL,
6955 NULL, NULL, NULL, NULL, &len, 0, NULL);
6956 if (error != ENOENT)
6957 return (error);
6958
6959 /*
6960 * Do the actual VOP_DEALLOCATE(), looping so long as
6961 * progress is being made, to achieve completion.
6962 */
6963 do {
6964 olen = len;
6965 error = VOP_DEALLOCATE(vp, &off, &len, 0, IO_SYNC, cred);
6966 if (error == 0 && len > 0 && olen > len)
6967 maybe_yield();
6968 } while (error == 0 && len > 0 && olen > len);
6969 if (error == 0 && len > 0)
6970 error = NFSERR_IO;
6971 NFSEXITCODE(error);
6972 return (error);
6973 }
6974
6975 /*
6976 * Get Extended Atribute vnode op into an mbuf list.
6977 */
6978 int
nfsvno_getxattr(struct vnode * vp,char * name,uint32_t maxresp,struct ucred * cred,uint64_t flag,int maxextsiz,struct thread * p,struct mbuf ** mpp,struct mbuf ** mpendp,int * lenp)6979 nfsvno_getxattr(struct vnode *vp, char *name, uint32_t maxresp,
6980 struct ucred *cred, uint64_t flag, int maxextsiz, struct thread *p,
6981 struct mbuf **mpp, struct mbuf **mpendp, int *lenp)
6982 {
6983 struct iovec *iv;
6984 struct uio io, *uiop = &io;
6985 struct mbuf *m, *m2;
6986 int alen, error, len, tlen;
6987 size_t siz;
6988
6989 /* First, find out the size of the extended attribute. */
6990 error = VOP_GETEXTATTR(vp, EXTATTR_NAMESPACE_USER, name, NULL,
6991 &siz, cred, p);
6992 if (error != 0)
6993 return (NFSERR_NOXATTR);
6994 if (siz > maxresp - NFS_MAXXDR)
6995 return (NFSERR_XATTR2BIG);
6996 len = siz;
6997 tlen = NFSM_RNDUP(len);
6998 if (tlen > 0) {
6999 /*
7000 * If cnt > MCLBYTES and the reply will not be saved, use
7001 * ext_pgs mbufs for TLS.
7002 * For NFSv4.0, we do not know for sure if the reply will
7003 * be saved, so do not use ext_pgs mbufs for NFSv4.0.
7004 * Always use ext_pgs mbufs if ND_EXTPG is set.
7005 */
7006 if ((flag & ND_EXTPG) != 0 || (tlen > MCLBYTES &&
7007 (flag & (ND_TLS | ND_SAVEREPLY)) == ND_TLS &&
7008 (flag & (ND_NFSV4 | ND_NFSV41)) != ND_NFSV4))
7009 uiop->uio_iovcnt = nfsrv_createiovec_extpgs(tlen,
7010 maxextsiz, &m, &m2, &iv);
7011 else
7012 uiop->uio_iovcnt = nfsrv_createiovec(tlen, &m, &m2,
7013 &iv);
7014 uiop->uio_iov = iv;
7015 } else {
7016 uiop->uio_iovcnt = 0;
7017 uiop->uio_iov = iv = NULL;
7018 m = m2 = NULL;
7019 }
7020 uiop->uio_offset = 0;
7021 uiop->uio_resid = tlen;
7022 uiop->uio_rw = UIO_READ;
7023 uiop->uio_segflg = UIO_SYSSPACE;
7024 uiop->uio_td = p;
7025 #ifdef MAC
7026 error = mac_vnode_check_getextattr(cred, vp, EXTATTR_NAMESPACE_USER,
7027 name);
7028 if (error != 0)
7029 goto out;
7030 #endif
7031
7032 if (tlen > 0)
7033 error = VOP_GETEXTATTR(vp, EXTATTR_NAMESPACE_USER, name, uiop,
7034 NULL, cred, p);
7035 if (error != 0)
7036 goto out;
7037 if (uiop->uio_resid > 0) {
7038 alen = tlen;
7039 len = tlen - uiop->uio_resid;
7040 tlen = NFSM_RNDUP(len);
7041 if (alen != tlen)
7042 printf("nfsvno_getxattr: weird size read\n");
7043 if (tlen == 0) {
7044 m_freem(m);
7045 m = m2 = NULL;
7046 } else if (alen != tlen || tlen != len)
7047 m2 = nfsrv_adj(m, alen - tlen, tlen - len);
7048 }
7049 *lenp = len;
7050 *mpp = m;
7051 *mpendp = m2;
7052
7053 out:
7054 if (error != 0) {
7055 if (m != NULL)
7056 m_freem(m);
7057 *lenp = 0;
7058 }
7059 free(iv, M_TEMP);
7060 NFSEXITCODE(error);
7061 return (error);
7062 }
7063
7064 /*
7065 * Set Extended attribute vnode op from an mbuf list.
7066 */
7067 int
nfsvno_setxattr(struct vnode * vp,char * name,int len,struct mbuf * m,char * cp,struct ucred * cred,struct thread * p)7068 nfsvno_setxattr(struct vnode *vp, char *name, int len, struct mbuf *m,
7069 char *cp, struct ucred *cred, struct thread *p)
7070 {
7071 struct iovec *iv;
7072 struct uio uio, *uiop = &uio;
7073 int cnt, error;
7074
7075 error = 0;
7076 #ifdef MAC
7077 error = mac_vnode_check_setextattr(cred, vp, EXTATTR_NAMESPACE_USER,
7078 name);
7079 #endif
7080 if (error != 0)
7081 goto out;
7082
7083 uiop->uio_rw = UIO_WRITE;
7084 uiop->uio_segflg = UIO_SYSSPACE;
7085 uiop->uio_td = p;
7086 uiop->uio_offset = 0;
7087 uiop->uio_resid = len;
7088 if (len > 0) {
7089 error = nfsrv_createiovecw(len, m, cp, &iv, &cnt);
7090 uiop->uio_iov = iv;
7091 uiop->uio_iovcnt = cnt;
7092 } else {
7093 uiop->uio_iov = iv = NULL;
7094 uiop->uio_iovcnt = 0;
7095 }
7096 if (error == 0) {
7097 error = VOP_SETEXTATTR(vp, EXTATTR_NAMESPACE_USER, name, uiop,
7098 cred, p);
7099 if (error == 0) {
7100 if (vp->v_type == VREG && nfsrv_devidcnt != 0)
7101 nfsvno_updateds(vp, cred, p);
7102 error = VOP_FSYNC(vp, MNT_WAIT, p);
7103 }
7104 free(iv, M_TEMP);
7105 }
7106
7107 out:
7108 NFSEXITCODE(error);
7109 return (error);
7110 }
7111
7112 /*
7113 * For a pNFS server, the DS file's ctime and
7114 * va_filerev (TimeMetadata and Change) needs to
7115 * be updated. This is a hack, but works by
7116 * flipping the S_ISGID bit in va_mode and then
7117 * flipping it back.
7118 * It does result in two MDS->DS RPCs, but creating
7119 * a custom RPC just to do this seems overkill, since
7120 * Setxattr/Rmxattr will not be done that frequently.
7121 * If it fails part way through, that is not too
7122 * serious, since the DS file is never executed.
7123 */
7124 static void
nfsvno_updateds(struct vnode * vp,struct ucred * cred,NFSPROC_T * p)7125 nfsvno_updateds(struct vnode *vp, struct ucred *cred, NFSPROC_T *p)
7126 {
7127 struct nfsvattr nva;
7128 int ret;
7129 u_short tmode;
7130
7131 ret = VOP_GETATTR(vp, &nva.na_vattr, cred);
7132 if (ret == 0) {
7133 tmode = nva.na_mode;
7134 NFSVNO_ATTRINIT(&nva);
7135 tmode ^= S_ISGID;
7136 NFSVNO_SETATTRVAL(&nva, mode, tmode);
7137 ret = nfsrv_proxyds(vp, 0, 0, cred, p,
7138 NFSPROC_SETATTR, NULL, NULL, NULL, &nva,
7139 NULL, NULL, 0, NULL);
7140 if (ret == 0) {
7141 tmode ^= S_ISGID;
7142 NFSVNO_SETATTRVAL(&nva, mode, tmode);
7143 ret = nfsrv_proxyds(vp, 0, 0, cred, p,
7144 NFSPROC_SETATTR, NULL, NULL, NULL,
7145 &nva, NULL, NULL, 0, NULL);
7146 }
7147 }
7148 }
7149
7150 /*
7151 * Remove Extended attribute vnode op.
7152 */
7153 int
nfsvno_rmxattr(struct nfsrv_descript * nd,struct vnode * vp,char * name,struct ucred * cred,struct thread * p)7154 nfsvno_rmxattr(struct nfsrv_descript *nd, struct vnode *vp, char *name,
7155 struct ucred *cred, struct thread *p)
7156 {
7157 int error;
7158
7159 /*
7160 * Get rid of any delegations. I am not sure why this is required,
7161 * but RFC-8276 says so.
7162 */
7163 error = nfsrv_checkremove(vp, 0, nd, nd->nd_clientid, p);
7164 if (error != 0)
7165 goto out;
7166 #ifdef MAC
7167 error = mac_vnode_check_deleteextattr(cred, vp, EXTATTR_NAMESPACE_USER,
7168 name);
7169 if (error != 0)
7170 goto out;
7171 #endif
7172
7173 error = VOP_DELETEEXTATTR(vp, EXTATTR_NAMESPACE_USER, name, cred, p);
7174 if (error == EOPNOTSUPP)
7175 error = VOP_SETEXTATTR(vp, EXTATTR_NAMESPACE_USER, name, NULL,
7176 cred, p);
7177 if (error == 0) {
7178 if (vp->v_type == VREG && nfsrv_devidcnt != 0)
7179 nfsvno_updateds(vp, cred, p);
7180 error = VOP_FSYNC(vp, MNT_WAIT, p);
7181 }
7182 out:
7183 NFSEXITCODE(error);
7184 return (error);
7185 }
7186
7187 /*
7188 * List Extended Atribute vnode op into an mbuf list.
7189 */
7190 int
nfsvno_listxattr(struct vnode * vp,uint64_t cookie,struct ucred * cred,struct thread * p,u_char ** bufp,uint32_t * lenp,bool * eofp)7191 nfsvno_listxattr(struct vnode *vp, uint64_t cookie, struct ucred *cred,
7192 struct thread *p, u_char **bufp, uint32_t *lenp, bool *eofp)
7193 {
7194 struct iovec iv;
7195 struct uio io;
7196 int error;
7197 size_t siz;
7198
7199 *bufp = NULL;
7200 /* First, find out the size of the extended attribute. */
7201 error = VOP_LISTEXTATTR(vp, EXTATTR_NAMESPACE_USER, NULL, &siz, cred,
7202 p);
7203 if (error != 0)
7204 return (NFSERR_NOXATTR);
7205 if (siz <= cookie) {
7206 *lenp = 0;
7207 *eofp = true;
7208 goto out;
7209 }
7210 if (siz > cookie + *lenp) {
7211 siz = cookie + *lenp;
7212 *eofp = false;
7213 } else
7214 *eofp = true;
7215 /* Just choose a sanity limit of 10Mbytes for malloc(M_TEMP). */
7216 if (siz > 10 * 1024 * 1024) {
7217 error = NFSERR_XATTR2BIG;
7218 goto out;
7219 }
7220 *bufp = malloc(siz, M_TEMP, M_WAITOK);
7221 iv.iov_base = *bufp;
7222 iv.iov_len = siz;
7223 io.uio_iovcnt = 1;
7224 io.uio_iov = &iv;
7225 io.uio_offset = 0;
7226 io.uio_resid = siz;
7227 io.uio_rw = UIO_READ;
7228 io.uio_segflg = UIO_SYSSPACE;
7229 io.uio_td = p;
7230 #ifdef MAC
7231 error = mac_vnode_check_listextattr(cred, vp, EXTATTR_NAMESPACE_USER);
7232 if (error != 0)
7233 goto out;
7234 #endif
7235
7236 error = VOP_LISTEXTATTR(vp, EXTATTR_NAMESPACE_USER, &io, NULL, cred,
7237 p);
7238 if (error != 0)
7239 goto out;
7240 if (io.uio_resid > 0)
7241 siz -= io.uio_resid;
7242 *lenp = siz;
7243
7244 out:
7245 if (error != 0) {
7246 free(*bufp, M_TEMP);
7247 *bufp = NULL;
7248 }
7249 NFSEXITCODE(error);
7250 return (error);
7251 }
7252
7253 /*
7254 * Trim trailing data off the mbuf list being built.
7255 */
7256 void
nfsm_trimtrailing(struct nfsrv_descript * nd,struct mbuf * mb,char * bpos,int bextpg,int bextpgsiz)7257 nfsm_trimtrailing(struct nfsrv_descript *nd, struct mbuf *mb, char *bpos,
7258 int bextpg, int bextpgsiz)
7259 {
7260 vm_page_t pg;
7261 int fullpgsiz, i;
7262
7263 if (mb->m_next != NULL) {
7264 m_freem(mb->m_next);
7265 mb->m_next = NULL;
7266 }
7267 if ((mb->m_flags & M_EXTPG) != 0) {
7268 KASSERT(bextpg >= 0 && bextpg < mb->m_epg_npgs,
7269 ("nfsm_trimtrailing: bextpg out of range"));
7270 KASSERT(bpos == (char *)(void *)
7271 PHYS_TO_DMAP(mb->m_epg_pa[bextpg]) + PAGE_SIZE - bextpgsiz,
7272 ("nfsm_trimtrailing: bextpgsiz bad!"));
7273
7274 /* First, get rid of any pages after this position. */
7275 for (i = mb->m_epg_npgs - 1; i > bextpg; i--) {
7276 pg = PHYS_TO_VM_PAGE(mb->m_epg_pa[i]);
7277 vm_page_unwire_noq(pg);
7278 vm_page_free(pg);
7279 }
7280 mb->m_epg_npgs = bextpg + 1;
7281 if (bextpg == 0)
7282 fullpgsiz = PAGE_SIZE - mb->m_epg_1st_off;
7283 else
7284 fullpgsiz = PAGE_SIZE;
7285 mb->m_epg_last_len = fullpgsiz - bextpgsiz;
7286 mb->m_len = m_epg_pagelen(mb, 0, mb->m_epg_1st_off);
7287 for (i = 1; i < mb->m_epg_npgs; i++)
7288 mb->m_len += m_epg_pagelen(mb, i, 0);
7289 nd->nd_bextpgsiz = bextpgsiz;
7290 nd->nd_bextpg = bextpg;
7291 } else
7292 mb->m_len = bpos - mtod(mb, char *);
7293 nd->nd_mb = mb;
7294 nd->nd_bpos = bpos;
7295 }
7296
7297
7298 /*
7299 * Check to see if a put file handle operation should test for
7300 * NFSERR_WRONGSEC, although NFSv3 actually returns NFSERR_AUTHERR.
7301 * When Open is the next operation, NFSERR_WRONGSEC cannot be
7302 * replied for the Open cases that use a component. This can
7303 * be identified by the fact that the file handle's type is VDIR.
7304 */
7305 bool
nfsrv_checkwrongsec(struct nfsrv_descript * nd,int nextop,__enum_uint8 (vtype)vtyp)7306 nfsrv_checkwrongsec(struct nfsrv_descript *nd, int nextop, __enum_uint8(vtype) vtyp)
7307 {
7308
7309 if ((nd->nd_flag & ND_NFSV4) == 0)
7310 return (true);
7311
7312 if ((nd->nd_flag & ND_LASTOP) != 0)
7313 return (false);
7314
7315 if (nextop == NFSV4OP_PUTROOTFH || nextop == NFSV4OP_PUTFH ||
7316 nextop == NFSV4OP_PUTPUBFH || nextop == NFSV4OP_RESTOREFH ||
7317 nextop == NFSV4OP_LOOKUP || nextop == NFSV4OP_LOOKUPP ||
7318 nextop == NFSV4OP_SECINFO || nextop == NFSV4OP_SECINFONONAME)
7319 return (false);
7320 if (nextop == NFSV4OP_OPEN && vtyp == VDIR)
7321 return (false);
7322 return (true);
7323 }
7324
7325 /*
7326 * Check DSs marked no space.
7327 */
7328 void
nfsrv_checknospc(void)7329 nfsrv_checknospc(void)
7330 {
7331 struct statfs *tsf;
7332 struct nfsdevice *ds;
7333 struct vnode **dvpp, **tdvpp, *dvp;
7334 char *devid, *tdevid;
7335 int cnt, error = 0, i;
7336
7337 if (nfsrv_devidcnt <= 0)
7338 return;
7339 dvpp = mallocarray(nfsrv_devidcnt, sizeof(*dvpp), M_TEMP, M_WAITOK);
7340 devid = malloc(nfsrv_devidcnt * NFSX_V4DEVICEID, M_TEMP, M_WAITOK);
7341 tsf = malloc(sizeof(*tsf), M_TEMP, M_WAITOK);
7342
7343 /* Get an array of the dvps for the DSs. */
7344 tdvpp = dvpp;
7345 tdevid = devid;
7346 i = 0;
7347 NFSDDSLOCK();
7348 /* First, search for matches for same file system. */
7349 TAILQ_FOREACH(ds, &nfsrv_devidhead, nfsdev_list) {
7350 if (ds->nfsdev_nmp != NULL && ds->nfsdev_nospc) {
7351 if (++i > nfsrv_devidcnt)
7352 break;
7353 *tdvpp++ = ds->nfsdev_dvp;
7354 NFSBCOPY(ds->nfsdev_deviceid, tdevid, NFSX_V4DEVICEID);
7355 tdevid += NFSX_V4DEVICEID;
7356 }
7357 }
7358 NFSDDSUNLOCK();
7359
7360 /* Do a VFS_STATFS() for each of the DSs and clear no space. */
7361 cnt = i;
7362 tdvpp = dvpp;
7363 tdevid = devid;
7364 for (i = 0; i < cnt && error == 0; i++) {
7365 dvp = *tdvpp++;
7366 error = VFS_STATFS(dvp->v_mount, tsf);
7367 if (error == 0 && tsf->f_bavail > 0) {
7368 NFSD_DEBUG(1, "nfsrv_checknospc: reset nospc\n");
7369 nfsrv_marknospc(tdevid, false);
7370 }
7371 tdevid += NFSX_V4DEVICEID;
7372 }
7373 free(tsf, M_TEMP);
7374 free(dvpp, M_TEMP);
7375 free(devid, M_TEMP);
7376 }
7377
7378 /*
7379 * Initialize everything that needs to be initialized for a vnet.
7380 */
7381 static void
nfsrv_vnetinit(const void * unused __unused)7382 nfsrv_vnetinit(const void *unused __unused)
7383 {
7384
7385 nfsd_mntinit();
7386 }
7387 VNET_SYSINIT(nfsrv_vnetinit, SI_SUB_VNET_DONE, SI_ORDER_ANY,
7388 nfsrv_vnetinit, NULL);
7389
7390 /*
7391 * Clean up everything that is in a vnet and needs to be
7392 * done when the jail is destroyed or the module unloaded.
7393 */
7394 static void
nfsrv_cleanup(const void * unused __unused)7395 nfsrv_cleanup(const void *unused __unused)
7396 {
7397 int i;
7398
7399 NFSD_LOCK();
7400 if (!NFSD_VNET(nfsrv_mntinited)) {
7401 NFSD_UNLOCK();
7402 return;
7403 }
7404 NFSD_VNET(nfsrv_mntinited) = false;
7405 NFSD_UNLOCK();
7406
7407 /* Clean out all NFSv4 state. */
7408 nfsrv_throwawayallstate(curthread);
7409
7410 /* Clean the NFS server reply cache */
7411 nfsrvd_cleancache();
7412
7413 /* Clean out v4root exports. */
7414 if (NFSD_VNET(nfsv4root_mnt)->mnt_export != NULL) {
7415 vfs_free_addrlist(NFSD_VNET(nfsv4root_mnt)->mnt_export);
7416 free(NFSD_VNET(nfsv4root_mnt)->mnt_export, M_MOUNT);
7417 NFSD_VNET(nfsv4root_mnt)->mnt_export = NULL;
7418 }
7419
7420 /* Free up the krpc server pool. */
7421 if (NFSD_VNET(nfsrvd_pool) != NULL)
7422 svcpool_destroy(NFSD_VNET(nfsrvd_pool));
7423
7424 /* and get rid of the locks */
7425 for (i = 0; i < NFSRVCACHE_HASHSIZE; i++) {
7426 mtx_destroy(&NFSD_VNET(nfsrchash_table)[i].mtx);
7427 mtx_destroy(&NFSD_VNET(nfsrcahash_table)[i].mtx);
7428 }
7429 mtx_destroy(&NFSD_VNET(nfsv4root_mnt)->mnt_mtx);
7430 for (i = 0; i < nfsrv_sessionhashsize; i++)
7431 mtx_destroy(&NFSD_VNET(nfssessionhash)[i].mtx);
7432 lockdestroy(&NFSD_VNET(nfsv4root_mnt)->mnt_explock);
7433 free(NFSD_VNET(nfsrvudphashtbl), M_NFSRVCACHE);
7434 free(NFSD_VNET(nfsrchash_table), M_NFSRVCACHE);
7435 free(NFSD_VNET(nfsrcahash_table), M_NFSRVCACHE);
7436 free(NFSD_VNET(nfsclienthash), M_NFSDCLIENT);
7437 free(NFSD_VNET(nfslockhash), M_NFSDLOCKFILE);
7438 free(NFSD_VNET(nfssessionhash), M_NFSDSESSION);
7439 free(NFSD_VNET(nfsv4root_mnt), M_TEMP);
7440 NFSD_VNET(nfsv4root_mnt) = NULL;
7441 }
7442 VNET_SYSUNINIT(nfsrv_cleanup, SI_SUB_VNET_DONE, SI_ORDER_ANY,
7443 nfsrv_cleanup, NULL);
7444
7445 extern int (*nfsd_call_nfsd)(struct thread *, struct nfssvc_args *);
7446
7447 /*
7448 * Called once to initialize data structures...
7449 */
7450 static int
nfsd_modevent(module_t mod,int type,void * data)7451 nfsd_modevent(module_t mod, int type, void *data)
7452 {
7453 int error = 0, i;
7454 static int loaded = 0;
7455
7456 switch (type) {
7457 case MOD_LOAD:
7458 if (loaded)
7459 goto out;
7460 newnfs_portinit();
7461 mtx_init(&nfsrc_udpmtx, "nfsuc", NULL, MTX_DEF);
7462 mtx_init(&nfs_v4root_mutex, "nfs4rt", NULL, MTX_DEF);
7463 mtx_init(&nfsrv_dontlistlock_mtx, "nfs4dnl", NULL, MTX_DEF);
7464 mtx_init(&nfsrv_recalllock_mtx, "nfs4rec", NULL, MTX_DEF);
7465 #ifdef VV_DISABLEDELEG
7466 vn_deleg_ops.vndeleg_recall = nfsd_recalldelegation;
7467 vn_deleg_ops.vndeleg_disable = nfsd_disabledelegation;
7468 #endif
7469 nfsd_call_nfsd = nfssvc_nfsd;
7470 loaded = 1;
7471 break;
7472
7473 case MOD_UNLOAD:
7474 if (newnfs_numnfsd != 0) {
7475 error = EBUSY;
7476 break;
7477 }
7478
7479 #ifdef VV_DISABLEDELEG
7480 vn_deleg_ops.vndeleg_recall = NULL;
7481 vn_deleg_ops.vndeleg_disable = NULL;
7482 #endif
7483 nfsd_call_nfsd = NULL;
7484 mtx_destroy(&nfsrc_udpmtx);
7485 mtx_destroy(&nfs_v4root_mutex);
7486 mtx_destroy(&nfsrv_dontlistlock_mtx);
7487 mtx_destroy(&nfsrv_recalllock_mtx);
7488 if (nfslayouthash != NULL) {
7489 for (i = 0; i < nfsrv_layouthashsize; i++)
7490 mtx_destroy(&nfslayouthash[i].mtx);
7491 free(nfslayouthash, M_NFSDSESSION);
7492 }
7493 loaded = 0;
7494 break;
7495 default:
7496 error = EOPNOTSUPP;
7497 break;
7498 }
7499
7500 out:
7501 NFSEXITCODE(error);
7502 return (error);
7503 }
7504 static moduledata_t nfsd_mod = {
7505 "nfsd",
7506 nfsd_modevent,
7507 NULL,
7508 };
7509 DECLARE_MODULE(nfsd, nfsd_mod, SI_SUB_VFS, SI_ORDER_ANY);
7510
7511 /* So that loader and kldload(2) can find us, wherever we are.. */
7512 MODULE_VERSION(nfsd, 1);
7513 MODULE_DEPEND(nfsd, nfscommon, 1, 1, 1);
7514 MODULE_DEPEND(nfsd, nfslockd, 1, 1, 1);
7515 MODULE_DEPEND(nfsd, krpc, 1, 1, 1);
7516 MODULE_DEPEND(nfsd, nfssvc, 1, 1, 1);
7517