nfs_bio.c revision 1.142.2.1 1 1.142.2.1 yamt /* $NetBSD: nfs_bio.c,v 1.142.2.1 2006/05/24 10:59:15 yamt Exp $ */
2 1.15 cgd
3 1.1 cgd /*
4 1.12 mycroft * Copyright (c) 1989, 1993
5 1.12 mycroft * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * This code is derived from software contributed to Berkeley by
8 1.1 cgd * Rick Macklem at The University of Guelph.
9 1.1 cgd *
10 1.1 cgd * Redistribution and use in source and binary forms, with or without
11 1.1 cgd * modification, are permitted provided that the following conditions
12 1.1 cgd * are met:
13 1.1 cgd * 1. Redistributions of source code must retain the above copyright
14 1.1 cgd * notice, this list of conditions and the following disclaimer.
15 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 cgd * notice, this list of conditions and the following disclaimer in the
17 1.1 cgd * documentation and/or other materials provided with the distribution.
18 1.107 agc * 3. Neither the name of the University nor the names of its contributors
19 1.1 cgd * may be used to endorse or promote products derived from this software
20 1.1 cgd * without specific prior written permission.
21 1.1 cgd *
22 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 cgd * SUCH DAMAGE.
33 1.1 cgd *
34 1.24 fvdl * @(#)nfs_bio.c 8.9 (Berkeley) 3/30/95
35 1.1 cgd */
36 1.71 lukem
37 1.71 lukem #include <sys/cdefs.h>
38 1.142.2.1 yamt __KERNEL_RCSID(0, "$NetBSD: nfs_bio.c,v 1.142.2.1 2006/05/24 10:59:15 yamt Exp $");
39 1.1 cgd
40 1.51 bjh21 #include "opt_nfs.h"
41 1.54 chs #include "opt_ddb.h"
42 1.51 bjh21
43 1.8 mycroft #include <sys/param.h>
44 1.8 mycroft #include <sys/systm.h>
45 1.12 mycroft #include <sys/resourcevar.h>
46 1.24 fvdl #include <sys/signalvar.h>
47 1.8 mycroft #include <sys/proc.h>
48 1.8 mycroft #include <sys/buf.h>
49 1.8 mycroft #include <sys/vnode.h>
50 1.8 mycroft #include <sys/mount.h>
51 1.12 mycroft #include <sys/kernel.h>
52 1.23 christos #include <sys/namei.h>
53 1.34 fvdl #include <sys/dirent.h>
54 1.54 chs #include <sys/malloc.h>
55 1.142.2.1 yamt #include <sys/kauth.h>
56 1.1 cgd
57 1.41 mrg #include <uvm/uvm_extern.h>
58 1.54 chs #include <uvm/uvm.h>
59 1.41 mrg
60 1.12 mycroft #include <nfs/rpcv2.h>
61 1.24 fvdl #include <nfs/nfsproto.h>
62 1.8 mycroft #include <nfs/nfs.h>
63 1.8 mycroft #include <nfs/nfsmount.h>
64 1.12 mycroft #include <nfs/nqnfs.h>
65 1.24 fvdl #include <nfs/nfsnode.h>
66 1.23 christos #include <nfs/nfs_var.h>
67 1.1 cgd
68 1.12 mycroft extern int nfs_numasync;
69 1.74 chs extern int nfs_commitsize;
70 1.24 fvdl extern struct nfsstats nfsstats;
71 1.1 cgd
72 1.91 yamt static int nfs_doio_read __P((struct buf *, struct uio *));
73 1.91 yamt static int nfs_doio_write __P((struct buf *, struct uio *));
74 1.91 yamt static int nfs_doio_phys __P((struct buf *, struct uio *));
75 1.91 yamt
76 1.1 cgd /*
77 1.1 cgd * Vnode op for read using bio
78 1.1 cgd * Any similarity to readip() is purely coincidental
79 1.1 cgd */
80 1.23 christos int
81 1.34 fvdl nfs_bioread(vp, uio, ioflag, cred, cflag)
82 1.48 augustss struct vnode *vp;
83 1.48 augustss struct uio *uio;
84 1.34 fvdl int ioflag, cflag;
85 1.142.2.1 yamt kauth_cred_t cred;
86 1.1 cgd {
87 1.48 augustss struct nfsnode *np = VTONFS(vp);
88 1.23 christos struct buf *bp = NULL, *rabp;
89 1.24 fvdl struct nfsmount *nmp = VFSTONFS(vp->v_mount);
90 1.35 fvdl struct nfsdircache *ndp = NULL, *nndp = NULL;
91 1.133 christos caddr_t baddr;
92 1.54 chs int got_buf = 0, error = 0, n = 0, on = 0, en, enn;
93 1.34 fvdl int enough = 0;
94 1.133 christos struct dirent *dp, *pdp, *edp, *ep;
95 1.54 chs off_t curoff = 0;
96 1.138 yamt int advice;
97 1.142 yamt struct lwp *l = curlwp;
98 1.1 cgd
99 1.1 cgd #ifdef DIAGNOSTIC
100 1.1 cgd if (uio->uio_rw != UIO_READ)
101 1.1 cgd panic("nfs_read mode");
102 1.1 cgd #endif
103 1.1 cgd if (uio->uio_resid == 0)
104 1.1 cgd return (0);
105 1.34 fvdl if (vp->v_type != VDIR && uio->uio_offset < 0)
106 1.1 cgd return (EINVAL);
107 1.51 bjh21 #ifndef NFS_V2_ONLY
108 1.34 fvdl if ((nmp->nm_flag & NFSMNT_NFSV3) &&
109 1.34 fvdl !(nmp->nm_iflag & NFSMNT_GOTFSINFO))
110 1.139 christos (void)nfs_fsinfo(nmp, vp, cred, l);
111 1.51 bjh21 #endif
112 1.34 fvdl if (vp->v_type != VDIR &&
113 1.34 fvdl (uio->uio_offset + uio->uio_resid) > nmp->nm_maxfilesize)
114 1.33 fvdl return (EFBIG);
115 1.54 chs
116 1.1 cgd /*
117 1.12 mycroft * For nfs, cache consistency can only be maintained approximately.
118 1.12 mycroft * Although RFC1094 does not specify the criteria, the following is
119 1.12 mycroft * believed to be compatible with the reference port.
120 1.12 mycroft * For nqnfs, full cache consistency is maintained within the loop.
121 1.12 mycroft * For nfs:
122 1.1 cgd * If the file's modify time on the server has changed since the
123 1.1 cgd * last read rpc or you have written to the file,
124 1.1 cgd * you may have lost data cache consistency with the
125 1.1 cgd * server, so flush all of the file's data out of the cache.
126 1.1 cgd * Then force a getattr rpc to ensure that you have up to date
127 1.1 cgd * attributes.
128 1.1 cgd * NB: This implies that cache data can be read when up to
129 1.1 cgd * NFS_ATTRTIMEO seconds out of date. If you find that you need current
130 1.1 cgd * attributes this could be forced by setting n_attrstamp to 0 before
131 1.12 mycroft * the VOP_GETATTR() call.
132 1.1 cgd */
133 1.54 chs
134 1.12 mycroft if ((nmp->nm_flag & NFSMNT_NQNFS) == 0 && vp->v_type != VLNK) {
135 1.139 christos error = nfs_flushstalebuf(vp, cred, l,
136 1.123 yamt NFS_FLUSHSTALEBUF_MYWRITE);
137 1.123 yamt if (error)
138 1.123 yamt return error;
139 1.1 cgd }
140 1.54 chs
141 1.1 cgd do {
142 1.53 bjh21 #ifndef NFS_V2_ONLY
143 1.12 mycroft /*
144 1.12 mycroft * Get a valid lease. If cached data is stale, flush it.
145 1.12 mycroft */
146 1.12 mycroft if (nmp->nm_flag & NFSMNT_NQNFS) {
147 1.24 fvdl if (NQNFS_CKINVALID(vp, np, ND_READ)) {
148 1.12 mycroft do {
149 1.139 christos error = nqnfs_getlease(vp, ND_READ, cred, l);
150 1.12 mycroft } while (error == NQNFS_EXPIRED);
151 1.12 mycroft if (error)
152 1.12 mycroft return (error);
153 1.12 mycroft if (np->n_lrev != np->n_brev ||
154 1.12 mycroft (np->n_flag & NQNFSNONCACHE) ||
155 1.12 mycroft ((np->n_flag & NMODIFIED) && vp->v_type == VDIR)) {
156 1.35 fvdl if (vp->v_type == VDIR) {
157 1.35 fvdl nfs_invaldircache(vp, 0);
158 1.35 fvdl }
159 1.139 christos error = nfs_vinvalbuf(vp, V_SAVE, cred, l, 1);
160 1.23 christos if (error)
161 1.12 mycroft return (error);
162 1.12 mycroft np->n_brev = np->n_lrev;
163 1.12 mycroft }
164 1.12 mycroft } else if (vp->v_type == VDIR && (np->n_flag & NMODIFIED)) {
165 1.35 fvdl nfs_invaldircache(vp, 0);
166 1.139 christos error = nfs_vinvalbuf(vp, V_SAVE, cred, l, 1);
167 1.23 christos if (error)
168 1.12 mycroft return (error);
169 1.12 mycroft }
170 1.12 mycroft }
171 1.53 bjh21 #endif
172 1.26 fvdl /*
173 1.26 fvdl * Don't cache symlinks.
174 1.26 fvdl */
175 1.26 fvdl if (np->n_flag & NQNFSNONCACHE
176 1.26 fvdl || ((vp->v_flag & VROOT) && vp->v_type == VLNK)) {
177 1.12 mycroft switch (vp->v_type) {
178 1.12 mycroft case VREG:
179 1.54 chs return (nfs_readrpc(vp, uio));
180 1.12 mycroft case VLNK:
181 1.24 fvdl return (nfs_readlinkrpc(vp, uio, cred));
182 1.12 mycroft case VDIR:
183 1.23 christos break;
184 1.24 fvdl default:
185 1.128 perry printf(" NQNFSNONCACHE: type %x unexpected\n",
186 1.28 christos vp->v_type);
187 1.12 mycroft };
188 1.12 mycroft }
189 1.12 mycroft baddr = (caddr_t)0;
190 1.1 cgd switch (vp->v_type) {
191 1.1 cgd case VREG:
192 1.1 cgd nfsstats.biocache_reads++;
193 1.12 mycroft
194 1.138 yamt advice = IO_ADV_DECODE(ioflag);
195 1.54 chs error = 0;
196 1.137 yamt while (uio->uio_resid > 0) {
197 1.54 chs void *win;
198 1.124 chs int flags;
199 1.137 yamt vsize_t bytelen;
200 1.54 chs
201 1.137 yamt nfs_delayedtruncate(vp);
202 1.137 yamt if (np->n_size <= uio->uio_offset) {
203 1.137 yamt break;
204 1.137 yamt }
205 1.137 yamt bytelen =
206 1.137 yamt MIN(np->n_size - uio->uio_offset, uio->uio_resid);
207 1.69 chs win = ubc_alloc(&vp->v_uobj, uio->uio_offset,
208 1.138 yamt &bytelen, advice, UBC_READ);
209 1.54 chs error = uiomove(win, bytelen, uio);
210 1.124 chs flags = UBC_WANT_UNMAP(vp) ? UBC_UNMAP : 0;
211 1.124 chs ubc_release(win, flags);
212 1.54 chs if (error) {
213 1.136 yamt /*
214 1.136 yamt * XXXkludge
215 1.136 yamt * the file has been truncated on the server.
216 1.136 yamt * there isn't much we can do.
217 1.136 yamt */
218 1.136 yamt if (uio->uio_offset >= np->n_size) {
219 1.136 yamt /* end of file */
220 1.136 yamt error = 0;
221 1.137 yamt } else {
222 1.137 yamt break;
223 1.136 yamt }
224 1.12 mycroft }
225 1.12 mycroft }
226 1.54 chs break;
227 1.12 mycroft
228 1.1 cgd case VLNK:
229 1.1 cgd nfsstats.biocache_readlinks++;
230 1.139 christos bp = nfs_getcacheblk(vp, (daddr_t)0, NFS_MAXPATHLEN, l);
231 1.12 mycroft if (!bp)
232 1.12 mycroft return (EINTR);
233 1.12 mycroft if ((bp->b_flags & B_DONE) == 0) {
234 1.12 mycroft bp->b_flags |= B_READ;
235 1.129 christos error = nfs_doio(bp);
236 1.24 fvdl if (error) {
237 1.12 mycroft brelse(bp);
238 1.12 mycroft return (error);
239 1.12 mycroft }
240 1.12 mycroft }
241 1.63 chs n = MIN(uio->uio_resid, NFS_MAXPATHLEN - bp->b_resid);
242 1.12 mycroft got_buf = 1;
243 1.1 cgd on = 0;
244 1.1 cgd break;
245 1.1 cgd case VDIR:
246 1.34 fvdl diragain:
247 1.34 fvdl nfsstats.biocache_readdirs++;
248 1.35 fvdl ndp = nfs_searchdircache(vp, uio->uio_offset,
249 1.35 fvdl (nmp->nm_flag & NFSMNT_XLATECOOKIE), 0);
250 1.35 fvdl if (!ndp) {
251 1.35 fvdl /*
252 1.35 fvdl * We've been handed a cookie that is not
253 1.35 fvdl * in the cache. If we're not translating
254 1.35 fvdl * 32 <-> 64, it may be a value that was
255 1.35 fvdl * flushed out of the cache because it grew
256 1.35 fvdl * too big. Let the server judge if it's
257 1.35 fvdl * valid or not. In the translation case,
258 1.35 fvdl * we have no way of validating this value,
259 1.35 fvdl * so punt.
260 1.35 fvdl */
261 1.35 fvdl if (nmp->nm_flag & NFSMNT_XLATECOOKIE)
262 1.35 fvdl return (EINVAL);
263 1.128 perry ndp = nfs_enterdircache(vp, uio->uio_offset,
264 1.35 fvdl uio->uio_offset, 0, 0);
265 1.35 fvdl }
266 1.35 fvdl
267 1.125 yamt if (NFS_EOFVALID(np) &&
268 1.35 fvdl ndp->dc_cookie == np->n_direofoffset) {
269 1.120 yamt nfs_putdircache(np, ndp);
270 1.35 fvdl nfsstats.direofcache_hits++;
271 1.18 mycroft return (0);
272 1.35 fvdl }
273 1.35 fvdl
274 1.139 christos bp = nfs_getcacheblk(vp, NFSDC_BLKNO(ndp), NFS_DIRBLKSIZ, l);
275 1.12 mycroft if (!bp)
276 1.24 fvdl return (EINTR);
277 1.12 mycroft if ((bp->b_flags & B_DONE) == 0) {
278 1.24 fvdl bp->b_flags |= B_READ;
279 1.35 fvdl bp->b_dcookie = ndp->dc_blkcookie;
280 1.129 christos error = nfs_doio(bp);
281 1.24 fvdl if (error) {
282 1.34 fvdl /*
283 1.34 fvdl * Yuck! The directory has been modified on the
284 1.34 fvdl * server. Punt and let the userland code
285 1.34 fvdl * deal with it.
286 1.34 fvdl */
287 1.120 yamt nfs_putdircache(np, ndp);
288 1.24 fvdl brelse(bp);
289 1.34 fvdl if (error == NFSERR_BAD_COOKIE) {
290 1.35 fvdl nfs_invaldircache(vp, 0);
291 1.139 christos nfs_vinvalbuf(vp, 0, cred, l, 1);
292 1.34 fvdl error = EINVAL;
293 1.12 mycroft }
294 1.34 fvdl return (error);
295 1.38 fvdl }
296 1.40 fvdl }
297 1.40 fvdl
298 1.40 fvdl /*
299 1.40 fvdl * Just return if we hit EOF right away with this
300 1.40 fvdl * block. Always check here, because direofoffset
301 1.40 fvdl * may have been set by an nfsiod since the last
302 1.40 fvdl * check.
303 1.127 yamt *
304 1.127 yamt * also, empty block implies EOF.
305 1.40 fvdl */
306 1.127 yamt
307 1.127 yamt if (bp->b_bcount == bp->b_resid ||
308 1.127 yamt (NFS_EOFVALID(np) &&
309 1.127 yamt ndp->dc_blkcookie == np->n_direofoffset)) {
310 1.127 yamt KASSERT(bp->b_bcount != bp->b_resid ||
311 1.127 yamt ndp->dc_blkcookie == bp->b_dcookie);
312 1.120 yamt nfs_putdircache(np, ndp);
313 1.126 yamt bp->b_flags |= B_NOCACHE;
314 1.40 fvdl brelse(bp);
315 1.127 yamt return 0;
316 1.12 mycroft }
317 1.12 mycroft
318 1.12 mycroft /*
319 1.34 fvdl * Find the entry we were looking for in the block.
320 1.34 fvdl */
321 1.34 fvdl
322 1.34 fvdl en = ndp->dc_entry;
323 1.34 fvdl
324 1.34 fvdl pdp = dp = (struct dirent *)bp->b_data;
325 1.133 christos edp = (struct dirent *)(void *)(bp->b_data + bp->b_bcount -
326 1.133 christos bp->b_resid);
327 1.34 fvdl enn = 0;
328 1.133 christos while (enn < en && dp < edp) {
329 1.34 fvdl pdp = dp;
330 1.133 christos dp = _DIRENT_NEXT(dp);
331 1.34 fvdl enn++;
332 1.34 fvdl }
333 1.34 fvdl
334 1.34 fvdl /*
335 1.34 fvdl * If the entry number was bigger than the number of
336 1.34 fvdl * entries in the block, or the cookie of the previous
337 1.34 fvdl * entry doesn't match, the directory cache is
338 1.34 fvdl * stale. Flush it and try again (i.e. go to
339 1.34 fvdl * the server).
340 1.34 fvdl */
341 1.134 yamt if (dp >= edp || (struct dirent *)_DIRENT_NEXT(dp) > edp ||
342 1.35 fvdl (en > 0 && NFS_GETCOOKIE(pdp) != ndp->dc_cookie)) {
343 1.34 fvdl #ifdef DEBUG
344 1.37 thorpej printf("invalid cache: %p %p %p off %lx %lx\n",
345 1.37 thorpej pdp, dp, edp,
346 1.34 fvdl (unsigned long)uio->uio_offset,
347 1.34 fvdl (unsigned long)NFS_GETCOOKIE(pdp));
348 1.34 fvdl #endif
349 1.120 yamt nfs_putdircache(np, ndp);
350 1.34 fvdl brelse(bp);
351 1.35 fvdl nfs_invaldircache(vp, 0);
352 1.139 christos nfs_vinvalbuf(vp, 0, cred, l, 0);
353 1.34 fvdl goto diragain;
354 1.34 fvdl }
355 1.34 fvdl
356 1.34 fvdl on = (caddr_t)dp - bp->b_data;
357 1.34 fvdl
358 1.34 fvdl /*
359 1.34 fvdl * Cache all entries that may be exported to the
360 1.34 fvdl * user, as they may be thrown back at us. The
361 1.34 fvdl * NFSBIO_CACHECOOKIES flag indicates that all
362 1.34 fvdl * entries are being 'exported', so cache them all.
363 1.34 fvdl */
364 1.34 fvdl
365 1.34 fvdl if (en == 0 && pdp == dp) {
366 1.133 christos dp = _DIRENT_NEXT(dp);
367 1.34 fvdl enn++;
368 1.34 fvdl }
369 1.34 fvdl
370 1.65 chs if (uio->uio_resid < (bp->b_bcount - bp->b_resid - on)) {
371 1.34 fvdl n = uio->uio_resid;
372 1.34 fvdl enough = 1;
373 1.34 fvdl } else
374 1.65 chs n = bp->b_bcount - bp->b_resid - on;
375 1.34 fvdl
376 1.133 christos ep = (struct dirent *)(void *)(bp->b_data + on + n);
377 1.34 fvdl
378 1.34 fvdl /*
379 1.34 fvdl * Find last complete entry to copy, caching entries
380 1.34 fvdl * (if requested) as we go.
381 1.34 fvdl */
382 1.34 fvdl
383 1.133 christos while (dp < ep && (struct dirent *)_DIRENT_NEXT(dp) <= ep) {
384 1.35 fvdl if (cflag & NFSBIO_CACHECOOKIES) {
385 1.35 fvdl nndp = nfs_enterdircache(vp, NFS_GETCOOKIE(pdp),
386 1.35 fvdl ndp->dc_blkcookie, enn, bp->b_lblkno);
387 1.35 fvdl if (nmp->nm_flag & NFSMNT_XLATECOOKIE) {
388 1.35 fvdl NFS_STASHCOOKIE32(pdp,
389 1.35 fvdl nndp->dc_cookie32);
390 1.35 fvdl }
391 1.120 yamt nfs_putdircache(np, nndp);
392 1.35 fvdl }
393 1.34 fvdl pdp = dp;
394 1.133 christos dp = _DIRENT_NEXT(dp);
395 1.34 fvdl enn++;
396 1.34 fvdl }
397 1.120 yamt nfs_putdircache(np, ndp);
398 1.34 fvdl
399 1.34 fvdl /*
400 1.34 fvdl * If the last requested entry was not the last in the
401 1.128 perry * buffer (happens if NFS_DIRFRAGSIZ < NFS_DIRBLKSIZ),
402 1.34 fvdl * cache the cookie of the last requested one, and
403 1.34 fvdl * set of the offset to it.
404 1.34 fvdl */
405 1.34 fvdl
406 1.65 chs if ((on + n) < bp->b_bcount - bp->b_resid) {
407 1.34 fvdl curoff = NFS_GETCOOKIE(pdp);
408 1.35 fvdl nndp = nfs_enterdircache(vp, curoff, ndp->dc_blkcookie,
409 1.35 fvdl enn, bp->b_lblkno);
410 1.35 fvdl if (nmp->nm_flag & NFSMNT_XLATECOOKIE) {
411 1.35 fvdl NFS_STASHCOOKIE32(pdp, nndp->dc_cookie32);
412 1.35 fvdl curoff = nndp->dc_cookie32;
413 1.35 fvdl }
414 1.120 yamt nfs_putdircache(np, nndp);
415 1.34 fvdl } else
416 1.34 fvdl curoff = bp->b_dcookie;
417 1.34 fvdl
418 1.35 fvdl /*
419 1.35 fvdl * Always cache the entry for the next block,
420 1.35 fvdl * so that readaheads can use it.
421 1.35 fvdl */
422 1.35 fvdl nndp = nfs_enterdircache(vp, bp->b_dcookie, bp->b_dcookie, 0,0);
423 1.35 fvdl if (nmp->nm_flag & NFSMNT_XLATECOOKIE) {
424 1.35 fvdl if (curoff == bp->b_dcookie) {
425 1.35 fvdl NFS_STASHCOOKIE32(pdp, nndp->dc_cookie32);
426 1.35 fvdl curoff = nndp->dc_cookie32;
427 1.35 fvdl }
428 1.35 fvdl }
429 1.35 fvdl
430 1.133 christos n = (char *)_DIRENT_NEXT(pdp) - (bp->b_data + on);
431 1.34 fvdl
432 1.34 fvdl /*
433 1.12 mycroft * If not eof and read aheads are enabled, start one.
434 1.12 mycroft * (You need the current block first, so that you have the
435 1.24 fvdl * directory offset cookie of the next block.)
436 1.12 mycroft */
437 1.12 mycroft if (nfs_numasync > 0 && nmp->nm_readahead > 0 &&
438 1.125 yamt !NFS_EOFVALID(np) && !(np->n_flag & NQNFSNONCACHE)) {
439 1.122 yamt rabp = nfs_getcacheblk(vp, NFSDC_BLKNO(nndp),
440 1.139 christos NFS_DIRBLKSIZ, l);
441 1.12 mycroft if (rabp) {
442 1.12 mycroft if ((rabp->b_flags & (B_DONE | B_DELWRI)) == 0) {
443 1.35 fvdl rabp->b_dcookie = nndp->dc_cookie;
444 1.12 mycroft rabp->b_flags |= (B_READ | B_ASYNC);
445 1.54 chs if (nfs_asyncio(rabp)) {
446 1.12 mycroft rabp->b_flags |= B_INVAL;
447 1.12 mycroft brelse(rabp);
448 1.12 mycroft }
449 1.19 mycroft } else
450 1.19 mycroft brelse(rabp);
451 1.12 mycroft }
452 1.12 mycroft }
453 1.120 yamt nfs_putdircache(np, nndp);
454 1.12 mycroft got_buf = 1;
455 1.1 cgd break;
456 1.24 fvdl default:
457 1.29 christos printf(" nfsbioread: type %x unexpected\n",vp->v_type);
458 1.23 christos break;
459 1.54 chs }
460 1.12 mycroft
461 1.12 mycroft if (n > 0) {
462 1.12 mycroft if (!baddr)
463 1.12 mycroft baddr = bp->b_data;
464 1.12 mycroft error = uiomove(baddr + on, (int)n, uio);
465 1.1 cgd }
466 1.1 cgd switch (vp->v_type) {
467 1.24 fvdl case VREG:
468 1.24 fvdl break;
469 1.1 cgd case VLNK:
470 1.1 cgd n = 0;
471 1.1 cgd break;
472 1.1 cgd case VDIR:
473 1.24 fvdl if (np->n_flag & NQNFSNONCACHE)
474 1.24 fvdl bp->b_flags |= B_INVAL;
475 1.34 fvdl uio->uio_offset = curoff;
476 1.34 fvdl if (enough)
477 1.34 fvdl n = 0;
478 1.1 cgd break;
479 1.24 fvdl default:
480 1.29 christos printf(" nfsbioread: type %x unexpected\n",vp->v_type);
481 1.24 fvdl }
482 1.12 mycroft if (got_buf)
483 1.12 mycroft brelse(bp);
484 1.12 mycroft } while (error == 0 && uio->uio_resid > 0 && n > 0);
485 1.1 cgd return (error);
486 1.1 cgd }
487 1.1 cgd
488 1.1 cgd /*
489 1.1 cgd * Vnode op for write using bio
490 1.1 cgd */
491 1.23 christos int
492 1.23 christos nfs_write(v)
493 1.23 christos void *v;
494 1.23 christos {
495 1.12 mycroft struct vop_write_args /* {
496 1.24 fvdl struct vnode *a_vp;
497 1.12 mycroft struct uio *a_uio;
498 1.12 mycroft int a_ioflag;
499 1.142.2.1 yamt kauth_cred_t a_cred;
500 1.23 christos } */ *ap = v;
501 1.48 augustss struct uio *uio = ap->a_uio;
502 1.142 yamt struct lwp *l = curlwp;
503 1.48 augustss struct vnode *vp = ap->a_vp;
504 1.12 mycroft struct nfsnode *np = VTONFS(vp);
505 1.142.2.1 yamt kauth_cred_t cred = ap->a_cred;
506 1.1 cgd struct vattr vattr;
507 1.24 fvdl struct nfsmount *nmp = VFSTONFS(vp->v_mount);
508 1.69 chs void *win;
509 1.69 chs voff_t oldoff, origoff;
510 1.69 chs vsize_t bytelen;
511 1.124 chs int flags, error = 0;
512 1.124 chs int ioflag = ap->a_ioflag;
513 1.124 chs int extended = 0, wrotedata = 0;
514 1.1 cgd
515 1.1 cgd #ifdef DIAGNOSTIC
516 1.1 cgd if (uio->uio_rw != UIO_WRITE)
517 1.1 cgd panic("nfs_write mode");
518 1.1 cgd #endif
519 1.1 cgd if (vp->v_type != VREG)
520 1.1 cgd return (EIO);
521 1.12 mycroft if (np->n_flag & NWRITEERR) {
522 1.12 mycroft np->n_flag &= ~NWRITEERR;
523 1.12 mycroft return (np->n_error);
524 1.12 mycroft }
525 1.51 bjh21 #ifndef NFS_V2_ONLY
526 1.34 fvdl if ((nmp->nm_flag & NFSMNT_NFSV3) &&
527 1.34 fvdl !(nmp->nm_iflag & NFSMNT_GOTFSINFO))
528 1.139 christos (void)nfs_fsinfo(nmp, vp, cred, l);
529 1.51 bjh21 #endif
530 1.1 cgd if (ioflag & (IO_APPEND | IO_SYNC)) {
531 1.1 cgd if (np->n_flag & NMODIFIED) {
532 1.116 yamt NFS_INVALIDATE_ATTRCACHE(np);
533 1.139 christos error = nfs_vinvalbuf(vp, V_SAVE, cred, l, 1);
534 1.23 christos if (error)
535 1.12 mycroft return (error);
536 1.1 cgd }
537 1.1 cgd if (ioflag & IO_APPEND) {
538 1.116 yamt NFS_INVALIDATE_ATTRCACHE(np);
539 1.139 christos error = VOP_GETATTR(vp, &vattr, cred, l);
540 1.23 christos if (error)
541 1.1 cgd return (error);
542 1.1 cgd uio->uio_offset = np->n_size;
543 1.1 cgd }
544 1.1 cgd }
545 1.1 cgd if (uio->uio_offset < 0)
546 1.1 cgd return (EINVAL);
547 1.33 fvdl if ((uio->uio_offset + uio->uio_resid) > nmp->nm_maxfilesize)
548 1.33 fvdl return (EFBIG);
549 1.1 cgd if (uio->uio_resid == 0)
550 1.1 cgd return (0);
551 1.1 cgd /*
552 1.1 cgd * Maybe this should be above the vnode op call, but so long as
553 1.1 cgd * file servers have no limits, i don't think it matters
554 1.1 cgd */
555 1.140 reinoud if (l && l->l_proc && uio->uio_offset + uio->uio_resid >
556 1.140 reinoud l->l_proc->p_rlimit[RLIMIT_FSIZE].rlim_cur) {
557 1.140 reinoud psignal(l->l_proc, SIGXFSZ);
558 1.1 cgd return (EFBIG);
559 1.1 cgd }
560 1.54 chs
561 1.54 chs if ((np->n_flag & NQNFSNONCACHE) && uio->uio_iovcnt == 1) {
562 1.96 yamt int iomode = NFSV3WRITE_FILESYNC;
563 1.96 yamt boolean_t stalewriteverf = FALSE;
564 1.96 yamt
565 1.96 yamt lockmgr(&nmp->nm_writeverflock, LK_SHARED, NULL);
566 1.102 yamt error = nfs_writerpc(vp, uio, &iomode, FALSE, &stalewriteverf);
567 1.96 yamt lockmgr(&nmp->nm_writeverflock, LK_RELEASE, NULL);
568 1.89 yamt if (stalewriteverf)
569 1.54 chs nfs_clearcommit(vp->v_mount);
570 1.54 chs return (error);
571 1.54 chs }
572 1.54 chs
573 1.69 chs origoff = uio->uio_offset;
574 1.1 cgd do {
575 1.85 yamt boolean_t extending; /* if we are extending whole pages */
576 1.85 yamt u_quad_t oldsize;
577 1.69 chs oldoff = uio->uio_offset;
578 1.69 chs bytelen = uio->uio_resid;
579 1.12 mycroft
580 1.53 bjh21 #ifndef NFS_V2_ONLY
581 1.12 mycroft /*
582 1.12 mycroft * Check for a valid write lease.
583 1.12 mycroft */
584 1.12 mycroft if ((nmp->nm_flag & NFSMNT_NQNFS) &&
585 1.24 fvdl NQNFS_CKINVALID(vp, np, ND_WRITE)) {
586 1.12 mycroft do {
587 1.139 christos error = nqnfs_getlease(vp, ND_WRITE, cred, l);
588 1.12 mycroft } while (error == NQNFS_EXPIRED);
589 1.12 mycroft if (error)
590 1.12 mycroft return (error);
591 1.12 mycroft if (np->n_lrev != np->n_brev ||
592 1.12 mycroft (np->n_flag & NQNFSNONCACHE)) {
593 1.139 christos error = nfs_vinvalbuf(vp, V_SAVE, cred, l, 1);
594 1.23 christos if (error)
595 1.12 mycroft return (error);
596 1.12 mycroft np->n_brev = np->n_lrev;
597 1.12 mycroft }
598 1.12 mycroft }
599 1.53 bjh21 #endif
600 1.1 cgd nfsstats.biocache_writes++;
601 1.54 chs
602 1.85 yamt oldsize = np->n_size;
603 1.12 mycroft np->n_flag |= NMODIFIED;
604 1.54 chs if (np->n_size < uio->uio_offset + bytelen) {
605 1.54 chs np->n_size = uio->uio_offset + bytelen;
606 1.12 mycroft }
607 1.85 yamt extending = ((uio->uio_offset & PAGE_MASK) == 0 &&
608 1.79 chs (bytelen & PAGE_MASK) == 0 &&
609 1.85 yamt uio->uio_offset >= vp->v_size);
610 1.106 pk win = ubc_alloc(&vp->v_uobj, uio->uio_offset, &bytelen,
611 1.138 yamt UVM_ADV_NORMAL,
612 1.138 yamt UBC_WRITE | (extending ? UBC_FAULTBUSY : 0));
613 1.54 chs error = uiomove(win, bytelen, uio);
614 1.124 chs flags = UBC_WANT_UNMAP(vp) ? UBC_UNMAP : 0;
615 1.124 chs ubc_release(win, flags);
616 1.69 chs if (error) {
617 1.85 yamt if (extending) {
618 1.85 yamt /*
619 1.85 yamt * backout size and free pages past eof.
620 1.85 yamt */
621 1.85 yamt np->n_size = oldsize;
622 1.108 pk simple_lock(&vp->v_interlock);
623 1.85 yamt (void)VOP_PUTPAGES(vp, round_page(vp->v_size),
624 1.85 yamt 0, PGO_SYNCIO | PGO_FREE);
625 1.85 yamt }
626 1.69 chs break;
627 1.69 chs }
628 1.124 chs wrotedata = 1;
629 1.69 chs
630 1.69 chs /*
631 1.69 chs * update UVM's notion of the size now that we've
632 1.69 chs * copied the data into the vnode's pages.
633 1.69 chs */
634 1.69 chs
635 1.69 chs if (vp->v_size < uio->uio_offset) {
636 1.69 chs uvm_vnp_setsize(vp, uio->uio_offset);
637 1.84 jdolecek extended = 1;
638 1.69 chs }
639 1.69 chs
640 1.69 chs if ((oldoff & ~(nmp->nm_wsize - 1)) !=
641 1.54 chs (uio->uio_offset & ~(nmp->nm_wsize - 1))) {
642 1.72 chs simple_lock(&vp->v_interlock);
643 1.72 chs error = VOP_PUTPAGES(vp,
644 1.69 chs trunc_page(oldoff & ~(nmp->nm_wsize - 1)),
645 1.69 chs round_page((uio->uio_offset + nmp->nm_wsize - 1) &
646 1.78 chs ~(nmp->nm_wsize - 1)), PGO_CLEANIT);
647 1.52 fvdl }
648 1.54 chs } while (uio->uio_resid > 0);
649 1.124 chs if (wrotedata)
650 1.84 jdolecek VN_KNOTE(vp, NOTE_WRITE | (extended ? NOTE_EXTEND : 0));
651 1.69 chs if ((np->n_flag & NQNFSNONCACHE) || (ioflag & IO_SYNC)) {
652 1.72 chs simple_lock(&vp->v_interlock);
653 1.72 chs error = VOP_PUTPAGES(vp,
654 1.69 chs trunc_page(origoff & ~(nmp->nm_wsize - 1)),
655 1.69 chs round_page((uio->uio_offset + nmp->nm_wsize - 1) &
656 1.69 chs ~(nmp->nm_wsize - 1)),
657 1.72 chs PGO_CLEANIT | PGO_SYNCIO);
658 1.69 chs }
659 1.54 chs return error;
660 1.12 mycroft }
661 1.12 mycroft
662 1.12 mycroft /*
663 1.12 mycroft * Get an nfs cache block.
664 1.12 mycroft * Allocate a new one if the block isn't currently in the cache
665 1.12 mycroft * and return the block marked busy. If the calling process is
666 1.12 mycroft * interrupted by a signal for an interruptible mount point, return
667 1.12 mycroft * NULL.
668 1.12 mycroft */
669 1.12 mycroft struct buf *
670 1.139 christos nfs_getcacheblk(vp, bn, size, l)
671 1.12 mycroft struct vnode *vp;
672 1.12 mycroft daddr_t bn;
673 1.12 mycroft int size;
674 1.139 christos struct lwp *l;
675 1.12 mycroft {
676 1.48 augustss struct buf *bp;
677 1.12 mycroft struct nfsmount *nmp = VFSTONFS(vp->v_mount);
678 1.12 mycroft
679 1.12 mycroft if (nmp->nm_flag & NFSMNT_INT) {
680 1.12 mycroft bp = getblk(vp, bn, size, PCATCH, 0);
681 1.54 chs while (bp == NULL) {
682 1.139 christos if (nfs_sigintr(nmp, NULL, l))
683 1.54 chs return (NULL);
684 1.12 mycroft bp = getblk(vp, bn, size, 0, 2 * hz);
685 1.12 mycroft }
686 1.12 mycroft } else
687 1.12 mycroft bp = getblk(vp, bn, size, 0, 0);
688 1.12 mycroft return (bp);
689 1.12 mycroft }
690 1.12 mycroft
691 1.12 mycroft /*
692 1.12 mycroft * Flush and invalidate all dirty buffers. If another process is already
693 1.12 mycroft * doing the flush, just wait for completion.
694 1.12 mycroft */
695 1.23 christos int
696 1.139 christos nfs_vinvalbuf(vp, flags, cred, l, intrflg)
697 1.12 mycroft struct vnode *vp;
698 1.12 mycroft int flags;
699 1.142.2.1 yamt kauth_cred_t cred;
700 1.139 christos struct lwp *l;
701 1.12 mycroft int intrflg;
702 1.12 mycroft {
703 1.48 augustss struct nfsnode *np = VTONFS(vp);
704 1.12 mycroft struct nfsmount *nmp = VFSTONFS(vp->v_mount);
705 1.12 mycroft int error = 0, slpflag, slptimeo;
706 1.12 mycroft
707 1.12 mycroft if ((nmp->nm_flag & NFSMNT_INT) == 0)
708 1.12 mycroft intrflg = 0;
709 1.12 mycroft if (intrflg) {
710 1.12 mycroft slpflag = PCATCH;
711 1.12 mycroft slptimeo = 2 * hz;
712 1.12 mycroft } else {
713 1.12 mycroft slpflag = 0;
714 1.12 mycroft slptimeo = 0;
715 1.12 mycroft }
716 1.12 mycroft /*
717 1.12 mycroft * First wait for any other process doing a flush to complete.
718 1.12 mycroft */
719 1.103 yamt simple_lock(&vp->v_interlock);
720 1.12 mycroft while (np->n_flag & NFLUSHINPROG) {
721 1.12 mycroft np->n_flag |= NFLUSHWANT;
722 1.103 yamt error = ltsleep(&np->n_flag, PRIBIO + 2, "nfsvinval",
723 1.103 yamt slptimeo, &vp->v_interlock);
724 1.139 christos if (error && intrflg && nfs_sigintr(nmp, NULL, l)) {
725 1.103 yamt simple_unlock(&vp->v_interlock);
726 1.103 yamt return EINTR;
727 1.103 yamt }
728 1.12 mycroft }
729 1.12 mycroft
730 1.12 mycroft /*
731 1.12 mycroft * Now, flush as required.
732 1.12 mycroft */
733 1.12 mycroft np->n_flag |= NFLUSHINPROG;
734 1.103 yamt simple_unlock(&vp->v_interlock);
735 1.139 christos error = vinvalbuf(vp, flags, cred, l, slpflag, 0);
736 1.12 mycroft while (error) {
737 1.139 christos if (intrflg && nfs_sigintr(nmp, NULL, l)) {
738 1.103 yamt error = EINTR;
739 1.103 yamt break;
740 1.12 mycroft }
741 1.139 christos error = vinvalbuf(vp, flags, cred, l, 0, slptimeo);
742 1.12 mycroft }
743 1.103 yamt simple_lock(&vp->v_interlock);
744 1.103 yamt if (error == 0)
745 1.103 yamt np->n_flag &= ~NMODIFIED;
746 1.103 yamt np->n_flag &= ~NFLUSHINPROG;
747 1.12 mycroft if (np->n_flag & NFLUSHWANT) {
748 1.12 mycroft np->n_flag &= ~NFLUSHWANT;
749 1.103 yamt wakeup(&np->n_flag);
750 1.12 mycroft }
751 1.103 yamt simple_unlock(&vp->v_interlock);
752 1.103 yamt return error;
753 1.12 mycroft }
754 1.12 mycroft
755 1.12 mycroft /*
756 1.128 perry * nfs_flushstalebuf: flush cache if it's stale.
757 1.123 yamt *
758 1.123 yamt * => caller shouldn't own any pages or buffers which belong to the vnode.
759 1.123 yamt */
760 1.123 yamt
761 1.123 yamt int
762 1.142.2.1 yamt nfs_flushstalebuf(struct vnode *vp, kauth_cred_t cred, struct lwp *l,
763 1.123 yamt int flags)
764 1.123 yamt {
765 1.123 yamt struct nfsnode *np = VTONFS(vp);
766 1.123 yamt struct vattr vattr;
767 1.123 yamt int error;
768 1.123 yamt
769 1.123 yamt if (np->n_flag & NMODIFIED) {
770 1.123 yamt if ((flags & NFS_FLUSHSTALEBUF_MYWRITE) == 0
771 1.123 yamt || vp->v_type != VREG) {
772 1.139 christos error = nfs_vinvalbuf(vp, V_SAVE, cred, l, 1);
773 1.123 yamt if (error)
774 1.123 yamt return error;
775 1.123 yamt if (vp->v_type == VDIR) {
776 1.123 yamt nfs_invaldircache(vp, 0);
777 1.123 yamt }
778 1.123 yamt } else {
779 1.123 yamt /*
780 1.123 yamt * XXX assuming writes are ours.
781 1.123 yamt */
782 1.123 yamt }
783 1.123 yamt NFS_INVALIDATE_ATTRCACHE(np);
784 1.139 christos error = VOP_GETATTR(vp, &vattr, cred, l);
785 1.123 yamt if (error)
786 1.123 yamt return error;
787 1.123 yamt np->n_mtime = vattr.va_mtime;
788 1.123 yamt } else {
789 1.139 christos error = VOP_GETATTR(vp, &vattr, cred, l);
790 1.123 yamt if (error)
791 1.123 yamt return error;
792 1.123 yamt if (timespeccmp(&np->n_mtime, &vattr.va_mtime, !=)) {
793 1.123 yamt if (vp->v_type == VDIR) {
794 1.123 yamt nfs_invaldircache(vp, 0);
795 1.123 yamt }
796 1.139 christos error = nfs_vinvalbuf(vp, V_SAVE, cred, l, 1);
797 1.123 yamt if (error)
798 1.123 yamt return error;
799 1.123 yamt np->n_mtime = vattr.va_mtime;
800 1.123 yamt }
801 1.123 yamt }
802 1.123 yamt
803 1.123 yamt return error;
804 1.123 yamt }
805 1.123 yamt
806 1.123 yamt /*
807 1.12 mycroft * Initiate asynchronous I/O. Return an error if no nfsiods are available.
808 1.12 mycroft * This is mainly to avoid queueing async I/O requests when the nfsiods
809 1.12 mycroft * are all hung on a dead server.
810 1.12 mycroft */
811 1.69 chs
812 1.23 christos int
813 1.54 chs nfs_asyncio(bp)
814 1.48 augustss struct buf *bp;
815 1.12 mycroft {
816 1.48 augustss int i;
817 1.48 augustss struct nfsmount *nmp;
818 1.30 thorpej int gotiod, slpflag = 0, slptimeo = 0, error;
819 1.12 mycroft
820 1.12 mycroft if (nfs_numasync == 0)
821 1.12 mycroft return (EIO);
822 1.30 thorpej
823 1.30 thorpej nmp = VFSTONFS(bp->b_vp->v_mount);
824 1.30 thorpej again:
825 1.30 thorpej if (nmp->nm_flag & NFSMNT_INT)
826 1.30 thorpej slpflag = PCATCH;
827 1.30 thorpej gotiod = FALSE;
828 1.128 perry
829 1.30 thorpej /*
830 1.30 thorpej * Find a free iod to process this request.
831 1.30 thorpej */
832 1.30 thorpej
833 1.87 yamt for (i = 0; i < NFS_MAXASYNCDAEMON; i++) {
834 1.87 yamt struct nfs_iod *iod = &nfs_asyncdaemon[i];
835 1.87 yamt
836 1.99 yamt simple_lock(&iod->nid_slock);
837 1.87 yamt if (iod->nid_want) {
838 1.30 thorpej /*
839 1.30 thorpej * Found one, so wake it up and tell it which
840 1.30 thorpej * mount to process.
841 1.30 thorpej */
842 1.87 yamt iod->nid_want = NULL;
843 1.87 yamt iod->nid_mount = nmp;
844 1.99 yamt wakeup(&iod->nid_want);
845 1.99 yamt simple_lock(&nmp->nm_slock);
846 1.99 yamt simple_unlock(&iod->nid_slock);
847 1.30 thorpej nmp->nm_bufqiods++;
848 1.30 thorpej gotiod = TRUE;
849 1.31 fvdl break;
850 1.30 thorpej }
851 1.99 yamt simple_unlock(&iod->nid_slock);
852 1.87 yamt }
853 1.74 chs
854 1.30 thorpej /*
855 1.30 thorpej * If none are free, we may already have an iod working on this mount
856 1.30 thorpej * point. If so, it will process our request.
857 1.30 thorpej */
858 1.74 chs
859 1.99 yamt if (!gotiod) {
860 1.99 yamt simple_lock(&nmp->nm_slock);
861 1.99 yamt if (nmp->nm_bufqiods > 0)
862 1.99 yamt gotiod = TRUE;
863 1.99 yamt }
864 1.99 yamt
865 1.99 yamt LOCK_ASSERT(simple_lock_held(&nmp->nm_slock));
866 1.30 thorpej
867 1.30 thorpej /*
868 1.30 thorpej * If we have an iod which can process the request, then queue
869 1.128 perry * the buffer. However, even if we have an iod, do not initiate
870 1.111 jonathan * queue cleaning if curproc is the pageout daemon. if the NFS mount
871 1.111 jonathan * is via local loopback, we may put curproc (pagedaemon) to sleep
872 1.111 jonathan * waiting for the writes to complete. But the server (ourself)
873 1.111 jonathan * may block the write, waiting for its (ie., our) pagedaemon
874 1.111 jonathan * to produce clean pages to handle the write: deadlock.
875 1.111 jonathan * XXX: start non-loopback mounts straight away? If "lots free",
876 1.111 jonathan * let pagedaemon start loopback writes anyway?
877 1.30 thorpej */
878 1.112 jonathan if (gotiod) {
879 1.128 perry
880 1.30 thorpej /*
881 1.30 thorpej * Ensure that the queue never grows too large.
882 1.30 thorpej */
883 1.113 jonathan if (curproc == uvm.pagedaemon_proc) {
884 1.112 jonathan /* Enque for later, to avoid free-page deadlock */
885 1.112 jonathan (void) 0;
886 1.112 jonathan } else while (nmp->nm_bufqlen >= 2*nfs_numasync) {
887 1.30 thorpej nmp->nm_bufqwant = TRUE;
888 1.99 yamt error = ltsleep(&nmp->nm_bufq,
889 1.99 yamt slpflag | PRIBIO | PNORELOCK,
890 1.99 yamt "nfsaio", slptimeo, &nmp->nm_slock);
891 1.30 thorpej if (error) {
892 1.139 christos if (nfs_sigintr(nmp, NULL, curlwp))
893 1.30 thorpej return (EINTR);
894 1.30 thorpej if (slpflag == PCATCH) {
895 1.30 thorpej slpflag = 0;
896 1.30 thorpej slptimeo = 2 * hz;
897 1.30 thorpej }
898 1.30 thorpej }
899 1.74 chs
900 1.30 thorpej /*
901 1.30 thorpej * We might have lost our iod while sleeping,
902 1.30 thorpej * so check and loop if nescessary.
903 1.30 thorpej */
904 1.74 chs
905 1.30 thorpej if (nmp->nm_bufqiods == 0)
906 1.30 thorpej goto again;
907 1.99 yamt
908 1.99 yamt simple_lock(&nmp->nm_slock);
909 1.30 thorpej }
910 1.30 thorpej TAILQ_INSERT_TAIL(&nmp->nm_bufq, bp, b_freelist);
911 1.30 thorpej nmp->nm_bufqlen++;
912 1.99 yamt simple_unlock(&nmp->nm_slock);
913 1.12 mycroft return (0);
914 1.74 chs }
915 1.99 yamt simple_unlock(&nmp->nm_slock);
916 1.24 fvdl
917 1.24 fvdl /*
918 1.30 thorpej * All the iods are busy on other mounts, so return EIO to
919 1.30 thorpej * force the caller to process the i/o synchronously.
920 1.24 fvdl */
921 1.74 chs
922 1.30 thorpej return (EIO);
923 1.12 mycroft }
924 1.12 mycroft
925 1.12 mycroft /*
926 1.91 yamt * nfs_doio for read.
927 1.12 mycroft */
928 1.91 yamt static int
929 1.91 yamt nfs_doio_read(bp, uiop)
930 1.48 augustss struct buf *bp;
931 1.91 yamt struct uio *uiop;
932 1.12 mycroft {
933 1.91 yamt struct vnode *vp = bp->b_vp;
934 1.91 yamt struct nfsnode *np = VTONFS(vp);
935 1.91 yamt struct nfsmount *nmp = VFSTONFS(vp->v_mount);
936 1.91 yamt int error = 0;
937 1.12 mycroft
938 1.91 yamt uiop->uio_rw = UIO_READ;
939 1.91 yamt switch (vp->v_type) {
940 1.91 yamt case VREG:
941 1.12 mycroft nfsstats.read_bios++;
942 1.54 chs error = nfs_readrpc(vp, uiop);
943 1.54 chs if (!error && uiop->uio_resid) {
944 1.91 yamt int diff, len;
945 1.54 chs
946 1.12 mycroft /*
947 1.119 yamt * If uio_resid > 0, there is a hole in the file and
948 1.12 mycroft * no writes after the hole have been pushed to
949 1.119 yamt * the server yet or the file has been truncated
950 1.119 yamt * on the server.
951 1.12 mycroft * Just zero fill the rest of the valid area.
952 1.12 mycroft */
953 1.54 chs
954 1.119 yamt KASSERT(vp->v_size >=
955 1.119 yamt uiop->uio_offset + uiop->uio_resid);
956 1.12 mycroft diff = bp->b_bcount - uiop->uio_resid;
957 1.119 yamt len = uiop->uio_resid;
958 1.119 yamt memset((char *)bp->b_data + diff, 0, len);
959 1.141 yamt uiop->uio_resid = 0;
960 1.12 mycroft }
961 1.142 yamt #if 0
962 1.139 christos if (uiop->uio_lwp && (vp->v_flag & VTEXT) &&
963 1.110 yamt (((nmp->nm_flag & NFSMNT_NQNFS) &&
964 1.110 yamt NQNFS_CKINVALID(vp, np, ND_READ) &&
965 1.110 yamt np->n_lrev != np->n_brev) ||
966 1.110 yamt (!(nmp->nm_flag & NFSMNT_NQNFS) &&
967 1.110 yamt timespeccmp(&np->n_mtime, &np->n_vattr->va_mtime, !=)))) {
968 1.139 christos killproc(uiop->uio_lwp->l_proc, "process text file was modified");
969 1.86 thorpej #if 0 /* XXX NJWLWP */
970 1.139 christos uiop->uio_lwp->l_proc->p_holdcnt++;
971 1.86 thorpej #endif
972 1.12 mycroft }
973 1.142 yamt #endif
974 1.12 mycroft break;
975 1.91 yamt case VLNK:
976 1.91 yamt KASSERT(uiop->uio_offset == (off_t)0);
977 1.12 mycroft nfsstats.readlink_bios++;
978 1.132 yamt error = nfs_readlinkrpc(vp, uiop, np->n_rcred);
979 1.12 mycroft break;
980 1.91 yamt case VDIR:
981 1.12 mycroft nfsstats.readdir_bios++;
982 1.34 fvdl uiop->uio_offset = bp->b_dcookie;
983 1.117 christos #ifndef NFS_V2_ONLY
984 1.24 fvdl if (nmp->nm_flag & NFSMNT_RDIRPLUS) {
985 1.139 christos error = nfs_readdirplusrpc(vp, uiop,
986 1.142.2.1 yamt curlwp->l_proc->p_cred);
987 1.24 fvdl if (error == NFSERR_NOTSUPP)
988 1.24 fvdl nmp->nm_flag &= ~NFSMNT_RDIRPLUS;
989 1.24 fvdl }
990 1.117 christos #else
991 1.117 christos nmp->nm_flag &= ~NFSMNT_RDIRPLUS;
992 1.117 christos #endif
993 1.24 fvdl if ((nmp->nm_flag & NFSMNT_RDIRPLUS) == 0)
994 1.139 christos error = nfs_readdirrpc(vp, uiop,
995 1.142.2.1 yamt curlwp->l_proc->p_cred);
996 1.34 fvdl if (!error) {
997 1.34 fvdl bp->b_dcookie = uiop->uio_offset;
998 1.34 fvdl }
999 1.24 fvdl break;
1000 1.91 yamt default:
1001 1.91 yamt printf("nfs_doio: type %x unexpected\n", vp->v_type);
1002 1.12 mycroft break;
1003 1.91 yamt }
1004 1.91 yamt if (error) {
1005 1.12 mycroft bp->b_flags |= B_ERROR;
1006 1.12 mycroft bp->b_error = error;
1007 1.91 yamt }
1008 1.91 yamt return error;
1009 1.91 yamt }
1010 1.91 yamt
1011 1.91 yamt /*
1012 1.91 yamt * nfs_doio for write.
1013 1.91 yamt */
1014 1.91 yamt static int
1015 1.91 yamt nfs_doio_write(bp, uiop)
1016 1.91 yamt struct buf *bp;
1017 1.91 yamt struct uio *uiop;
1018 1.91 yamt {
1019 1.91 yamt struct vnode *vp = bp->b_vp;
1020 1.91 yamt struct nfsnode *np = VTONFS(vp);
1021 1.96 yamt struct nfsmount *nmp = VFSTONFS(vp->v_mount);
1022 1.91 yamt int iomode;
1023 1.96 yamt boolean_t stalewriteverf = FALSE;
1024 1.91 yamt int i, npages = (bp->b_bcount + PAGE_SIZE - 1) >> PAGE_SHIFT;
1025 1.91 yamt struct vm_page *pgs[npages];
1026 1.117 christos #ifndef NFS_V2_ONLY
1027 1.115 yamt boolean_t needcommit = TRUE; /* need only COMMIT RPC */
1028 1.117 christos #else
1029 1.117 christos boolean_t needcommit = FALSE; /* need only COMMIT RPC */
1030 1.117 christos #endif
1031 1.102 yamt boolean_t pageprotected;
1032 1.91 yamt struct uvm_object *uobj = &vp->v_uobj;
1033 1.91 yamt int error;
1034 1.91 yamt off_t off, cnt;
1035 1.91 yamt
1036 1.91 yamt if ((bp->b_flags & B_ASYNC) != 0 && NFS_ISV3(vp)) {
1037 1.91 yamt iomode = NFSV3WRITE_UNSTABLE;
1038 1.12 mycroft } else {
1039 1.91 yamt iomode = NFSV3WRITE_FILESYNC;
1040 1.91 yamt }
1041 1.74 chs
1042 1.117 christos #ifndef NFS_V2_ONLY
1043 1.96 yamt again:
1044 1.117 christos #endif
1045 1.96 yamt lockmgr(&nmp->nm_writeverflock, LK_SHARED, NULL);
1046 1.96 yamt
1047 1.91 yamt for (i = 0; i < npages; i++) {
1048 1.94 yamt pgs[i] = uvm_pageratop((vaddr_t)bp->b_data + (i << PAGE_SHIFT));
1049 1.100 yamt if (pgs[i]->uobject == uobj &&
1050 1.100 yamt pgs[i]->offset == uiop->uio_offset + (i << PAGE_SHIFT)) {
1051 1.101 yamt KASSERT(pgs[i]->flags & PG_BUSY);
1052 1.100 yamt /*
1053 1.100 yamt * this page belongs to our object.
1054 1.100 yamt */
1055 1.100 yamt simple_lock(&uobj->vmobjlock);
1056 1.115 yamt /*
1057 1.115 yamt * write out the page stably if it's about to
1058 1.115 yamt * be released because we can't resend it
1059 1.115 yamt * on the server crash.
1060 1.115 yamt *
1061 1.115 yamt * XXX assuming PG_RELEASE|PG_PAGEOUT won't be
1062 1.115 yamt * changed until unbusy the page.
1063 1.115 yamt */
1064 1.100 yamt if (pgs[i]->flags & (PG_RELEASED|PG_PAGEOUT))
1065 1.100 yamt iomode = NFSV3WRITE_FILESYNC;
1066 1.115 yamt /*
1067 1.115 yamt * if we met a page which hasn't been sent yet,
1068 1.115 yamt * we need do WRITE RPC.
1069 1.115 yamt */
1070 1.100 yamt if ((pgs[i]->flags & PG_NEEDCOMMIT) == 0)
1071 1.100 yamt needcommit = FALSE;
1072 1.100 yamt simple_unlock(&uobj->vmobjlock);
1073 1.100 yamt } else {
1074 1.100 yamt iomode = NFSV3WRITE_FILESYNC;
1075 1.91 yamt needcommit = FALSE;
1076 1.91 yamt }
1077 1.91 yamt }
1078 1.91 yamt if (!needcommit && iomode == NFSV3WRITE_UNSTABLE) {
1079 1.100 yamt simple_lock(&uobj->vmobjlock);
1080 1.91 yamt for (i = 0; i < npages; i++) {
1081 1.91 yamt pgs[i]->flags |= PG_NEEDCOMMIT | PG_RDONLY;
1082 1.91 yamt pmap_page_protect(pgs[i], VM_PROT_READ);
1083 1.91 yamt }
1084 1.100 yamt simple_unlock(&uobj->vmobjlock);
1085 1.102 yamt pageprotected = TRUE; /* pages can't be modified during i/o. */
1086 1.102 yamt } else
1087 1.102 yamt pageprotected = FALSE;
1088 1.74 chs
1089 1.91 yamt /*
1090 1.91 yamt * Send the data to the server if necessary,
1091 1.91 yamt * otherwise just send a commit rpc.
1092 1.91 yamt */
1093 1.117 christos #ifndef NFS_V2_ONLY
1094 1.91 yamt if (needcommit) {
1095 1.74 chs
1096 1.74 chs /*
1097 1.74 chs * If the buffer is in the range that we already committed,
1098 1.74 chs * there's nothing to do.
1099 1.74 chs *
1100 1.74 chs * If it's in the range that we need to commit, push the
1101 1.74 chs * whole range at once, otherwise only push the buffer.
1102 1.74 chs * In both these cases, acquire the commit lock to avoid
1103 1.74 chs * other processes modifying the range.
1104 1.74 chs */
1105 1.74 chs
1106 1.88 yamt off = uiop->uio_offset;
1107 1.88 yamt cnt = bp->b_bcount;
1108 1.74 chs lockmgr(&np->n_commitlock, LK_EXCLUSIVE, NULL);
1109 1.74 chs if (!nfs_in_committed_range(vp, off, bp->b_bcount)) {
1110 1.91 yamt boolean_t pushedrange;
1111 1.74 chs if (nfs_in_tobecommitted_range(vp, off, bp->b_bcount)) {
1112 1.91 yamt pushedrange = TRUE;
1113 1.74 chs off = np->n_pushlo;
1114 1.74 chs cnt = np->n_pushhi - np->n_pushlo;
1115 1.74 chs } else {
1116 1.91 yamt pushedrange = FALSE;
1117 1.74 chs }
1118 1.139 christos error = nfs_commit(vp, off, cnt, curlwp);
1119 1.74 chs if (error == 0) {
1120 1.74 chs if (pushedrange) {
1121 1.74 chs nfs_merge_commit_ranges(vp);
1122 1.74 chs } else {
1123 1.74 chs nfs_add_committed_range(vp, off, cnt);
1124 1.74 chs }
1125 1.74 chs }
1126 1.95 yamt } else {
1127 1.95 yamt error = 0;
1128 1.74 chs }
1129 1.74 chs lockmgr(&np->n_commitlock, LK_RELEASE, NULL);
1130 1.96 yamt lockmgr(&nmp->nm_writeverflock, LK_RELEASE, NULL);
1131 1.74 chs if (!error) {
1132 1.97 yamt /*
1133 1.97 yamt * pages are now on stable storage.
1134 1.97 yamt */
1135 1.93 yamt uiop->uio_resid = 0;
1136 1.74 chs simple_lock(&uobj->vmobjlock);
1137 1.74 chs for (i = 0; i < npages; i++) {
1138 1.74 chs pgs[i]->flags &= ~(PG_NEEDCOMMIT | PG_RDONLY);
1139 1.74 chs }
1140 1.74 chs simple_unlock(&uobj->vmobjlock);
1141 1.91 yamt return 0;
1142 1.74 chs } else if (error == NFSERR_STALEWRITEVERF) {
1143 1.96 yamt nfs_clearcommit(vp->v_mount);
1144 1.96 yamt goto again;
1145 1.96 yamt }
1146 1.96 yamt if (error) {
1147 1.96 yamt bp->b_flags |= B_ERROR;
1148 1.96 yamt bp->b_error = np->n_error = error;
1149 1.96 yamt np->n_flag |= NWRITEERR;
1150 1.74 chs }
1151 1.96 yamt return error;
1152 1.91 yamt }
1153 1.117 christos #endif
1154 1.91 yamt off = uiop->uio_offset;
1155 1.91 yamt cnt = bp->b_bcount;
1156 1.91 yamt uiop->uio_rw = UIO_WRITE;
1157 1.91 yamt nfsstats.write_bios++;
1158 1.102 yamt error = nfs_writerpc(vp, uiop, &iomode, pageprotected, &stalewriteverf);
1159 1.117 christos #ifndef NFS_V2_ONLY
1160 1.91 yamt if (!error && iomode == NFSV3WRITE_UNSTABLE) {
1161 1.97 yamt /*
1162 1.97 yamt * we need to commit pages later.
1163 1.97 yamt */
1164 1.74 chs lockmgr(&np->n_commitlock, LK_EXCLUSIVE, NULL);
1165 1.74 chs nfs_add_tobecommitted_range(vp, off, cnt);
1166 1.97 yamt /*
1167 1.97 yamt * if there can be too many uncommitted pages, commit them now.
1168 1.97 yamt */
1169 1.74 chs if (np->n_pushhi - np->n_pushlo > nfs_commitsize) {
1170 1.74 chs off = np->n_pushlo;
1171 1.74 chs cnt = nfs_commitsize >> 1;
1172 1.139 christos error = nfs_commit(vp, off, cnt, curlwp);
1173 1.74 chs if (!error) {
1174 1.74 chs nfs_add_committed_range(vp, off, cnt);
1175 1.74 chs nfs_del_tobecommitted_range(vp, off, cnt);
1176 1.74 chs }
1177 1.97 yamt if (error == NFSERR_STALEWRITEVERF) {
1178 1.97 yamt stalewriteverf = TRUE;
1179 1.97 yamt error = 0; /* it isn't a real error */
1180 1.97 yamt }
1181 1.97 yamt } else {
1182 1.97 yamt /*
1183 1.97 yamt * re-dirty pages so that they will be passed
1184 1.97 yamt * to us later again.
1185 1.97 yamt */
1186 1.97 yamt simple_lock(&uobj->vmobjlock);
1187 1.97 yamt for (i = 0; i < npages; i++) {
1188 1.97 yamt pgs[i]->flags &= ~PG_CLEAN;
1189 1.97 yamt }
1190 1.97 yamt simple_unlock(&uobj->vmobjlock);
1191 1.74 chs }
1192 1.74 chs lockmgr(&np->n_commitlock, LK_RELEASE, NULL);
1193 1.117 christos } else
1194 1.117 christos #endif
1195 1.117 christos if (!error) {
1196 1.97 yamt /*
1197 1.97 yamt * pages are now on stable storage.
1198 1.97 yamt */
1199 1.74 chs lockmgr(&np->n_commitlock, LK_EXCLUSIVE, NULL);
1200 1.74 chs nfs_del_committed_range(vp, off, cnt);
1201 1.74 chs lockmgr(&np->n_commitlock, LK_RELEASE, NULL);
1202 1.74 chs simple_lock(&uobj->vmobjlock);
1203 1.74 chs for (i = 0; i < npages; i++) {
1204 1.74 chs pgs[i]->flags &= ~(PG_NEEDCOMMIT | PG_RDONLY);
1205 1.74 chs }
1206 1.74 chs simple_unlock(&uobj->vmobjlock);
1207 1.91 yamt } else {
1208 1.97 yamt /*
1209 1.97 yamt * we got an error.
1210 1.97 yamt */
1211 1.97 yamt bp->b_flags |= B_ERROR;
1212 1.97 yamt bp->b_error = np->n_error = error;
1213 1.97 yamt np->n_flag |= NWRITEERR;
1214 1.54 chs }
1215 1.96 yamt
1216 1.96 yamt lockmgr(&nmp->nm_writeverflock, LK_RELEASE, NULL);
1217 1.96 yamt
1218 1.96 yamt if (stalewriteverf) {
1219 1.54 chs nfs_clearcommit(vp->v_mount);
1220 1.74 chs }
1221 1.91 yamt return error;
1222 1.91 yamt }
1223 1.91 yamt
1224 1.91 yamt /*
1225 1.91 yamt * nfs_doio for B_PHYS.
1226 1.91 yamt */
1227 1.91 yamt static int
1228 1.91 yamt nfs_doio_phys(bp, uiop)
1229 1.91 yamt struct buf *bp;
1230 1.91 yamt struct uio *uiop;
1231 1.91 yamt {
1232 1.91 yamt struct vnode *vp = bp->b_vp;
1233 1.91 yamt int error;
1234 1.91 yamt
1235 1.91 yamt uiop->uio_offset = ((off_t)bp->b_blkno) << DEV_BSHIFT;
1236 1.91 yamt if (bp->b_flags & B_READ) {
1237 1.91 yamt uiop->uio_rw = UIO_READ;
1238 1.91 yamt nfsstats.read_physios++;
1239 1.91 yamt error = nfs_readrpc(vp, uiop);
1240 1.91 yamt } else {
1241 1.91 yamt int iomode = NFSV3WRITE_DATASYNC;
1242 1.96 yamt boolean_t stalewriteverf;
1243 1.96 yamt struct nfsmount *nmp = VFSTONFS(vp->v_mount);
1244 1.91 yamt
1245 1.91 yamt uiop->uio_rw = UIO_WRITE;
1246 1.91 yamt nfsstats.write_physios++;
1247 1.96 yamt lockmgr(&nmp->nm_writeverflock, LK_SHARED, NULL);
1248 1.102 yamt error = nfs_writerpc(vp, uiop, &iomode, FALSE, &stalewriteverf);
1249 1.96 yamt lockmgr(&nmp->nm_writeverflock, LK_RELEASE, NULL);
1250 1.91 yamt if (stalewriteverf) {
1251 1.91 yamt nfs_clearcommit(bp->b_vp->v_mount);
1252 1.91 yamt }
1253 1.91 yamt }
1254 1.91 yamt if (error) {
1255 1.91 yamt bp->b_flags |= B_ERROR;
1256 1.91 yamt bp->b_error = error;
1257 1.91 yamt }
1258 1.91 yamt return error;
1259 1.91 yamt }
1260 1.91 yamt
1261 1.91 yamt /*
1262 1.91 yamt * Do an I/O operation to/from a cache block. This may be called
1263 1.91 yamt * synchronously or from an nfsiod.
1264 1.91 yamt */
1265 1.91 yamt int
1266 1.129 christos nfs_doio(bp)
1267 1.91 yamt struct buf *bp;
1268 1.91 yamt {
1269 1.91 yamt int error;
1270 1.91 yamt struct uio uio;
1271 1.91 yamt struct uio *uiop = &uio;
1272 1.91 yamt struct iovec io;
1273 1.91 yamt UVMHIST_FUNC("nfs_doio"); UVMHIST_CALLED(ubchist);
1274 1.91 yamt
1275 1.91 yamt uiop->uio_iov = &io;
1276 1.91 yamt uiop->uio_iovcnt = 1;
1277 1.91 yamt uiop->uio_offset = (((off_t)bp->b_blkno) << DEV_BSHIFT);
1278 1.142 yamt UIO_SETUP_SYSSPACE(uiop);
1279 1.91 yamt io.iov_base = bp->b_data;
1280 1.91 yamt io.iov_len = uiop->uio_resid = bp->b_bcount;
1281 1.91 yamt
1282 1.91 yamt /*
1283 1.91 yamt * Historically, paging was done with physio, but no more...
1284 1.91 yamt */
1285 1.91 yamt if (bp->b_flags & B_PHYS) {
1286 1.91 yamt /*
1287 1.91 yamt * ...though reading /dev/drum still gets us here.
1288 1.91 yamt */
1289 1.91 yamt error = nfs_doio_phys(bp, uiop);
1290 1.91 yamt } else if (bp->b_flags & B_READ) {
1291 1.91 yamt error = nfs_doio_read(bp, uiop);
1292 1.91 yamt } else {
1293 1.91 yamt error = nfs_doio_write(bp, uiop);
1294 1.91 yamt }
1295 1.91 yamt bp->b_resid = uiop->uio_resid;
1296 1.54 chs biodone(bp);
1297 1.54 chs return (error);
1298 1.54 chs }
1299 1.54 chs
1300 1.54 chs /*
1301 1.54 chs * Vnode op for VM getpages.
1302 1.54 chs */
1303 1.69 chs
1304 1.54 chs int
1305 1.54 chs nfs_getpages(v)
1306 1.54 chs void *v;
1307 1.54 chs {
1308 1.54 chs struct vop_getpages_args /* {
1309 1.54 chs struct vnode *a_vp;
1310 1.54 chs voff_t a_offset;
1311 1.67 chs struct vm_page **a_m;
1312 1.54 chs int *a_count;
1313 1.54 chs int a_centeridx;
1314 1.54 chs vm_prot_t a_access_type;
1315 1.54 chs int a_advice;
1316 1.54 chs int a_flags;
1317 1.54 chs } */ *ap = v;
1318 1.54 chs
1319 1.54 chs struct vnode *vp = ap->a_vp;
1320 1.69 chs struct uvm_object *uobj = &vp->v_uobj;
1321 1.54 chs struct nfsnode *np = VTONFS(vp);
1322 1.80 enami const int npages = *ap->a_count;
1323 1.80 enami struct vm_page *pg, **pgs, *opgs[npages];
1324 1.74 chs off_t origoffset, len;
1325 1.80 enami int i, error;
1326 1.54 chs boolean_t v3 = NFS_ISV3(vp);
1327 1.54 chs boolean_t write = (ap->a_access_type & VM_PROT_WRITE) != 0;
1328 1.73 chs boolean_t locked = (ap->a_flags & PGO_LOCKED) != 0;
1329 1.54 chs
1330 1.54 chs /*
1331 1.80 enami * call the genfs code to get the pages. `pgs' may be NULL
1332 1.80 enami * when doing read-ahead.
1333 1.54 chs */
1334 1.54 chs
1335 1.80 enami pgs = ap->a_m;
1336 1.81 enami if (write && locked && v3) {
1337 1.80 enami KASSERT(pgs != NULL);
1338 1.80 enami #ifdef DEBUG
1339 1.80 enami
1340 1.80 enami /*
1341 1.80 enami * If PGO_LOCKED is set, real pages shouldn't exists
1342 1.80 enami * in the array.
1343 1.80 enami */
1344 1.80 enami
1345 1.80 enami for (i = 0; i < npages; i++)
1346 1.80 enami KDASSERT(pgs[i] == NULL || pgs[i] == PGO_DONTCARE);
1347 1.80 enami #endif
1348 1.80 enami memcpy(opgs, pgs, npages * sizeof(struct vm_pages *));
1349 1.80 enami }
1350 1.69 chs error = genfs_getpages(v);
1351 1.76 chs if (error) {
1352 1.80 enami return (error);
1353 1.76 chs }
1354 1.76 chs
1355 1.76 chs /*
1356 1.76 chs * for read faults where the nfs node is not yet marked NMODIFIED,
1357 1.76 chs * set PG_RDONLY on the pages so that we come back here if someone
1358 1.76 chs * tries to modify later via the mapping that will be entered for
1359 1.76 chs * this fault.
1360 1.76 chs */
1361 1.76 chs
1362 1.76 chs if (!write && (np->n_flag & NMODIFIED) == 0 && pgs != NULL) {
1363 1.76 chs if (!locked) {
1364 1.76 chs simple_lock(&uobj->vmobjlock);
1365 1.76 chs }
1366 1.76 chs for (i = 0; i < npages; i++) {
1367 1.76 chs pg = pgs[i];
1368 1.76 chs if (pg == NULL || pg == PGO_DONTCARE) {
1369 1.76 chs continue;
1370 1.76 chs }
1371 1.76 chs pg->flags |= PG_RDONLY;
1372 1.76 chs }
1373 1.76 chs if (!locked) {
1374 1.76 chs simple_unlock(&uobj->vmobjlock);
1375 1.76 chs }
1376 1.76 chs }
1377 1.76 chs if (!write) {
1378 1.80 enami return (0);
1379 1.54 chs }
1380 1.54 chs
1381 1.54 chs /*
1382 1.69 chs * this is a write fault, update the commit info.
1383 1.54 chs */
1384 1.54 chs
1385 1.69 chs origoffset = ap->a_offset;
1386 1.74 chs len = npages << PAGE_SHIFT;
1387 1.54 chs
1388 1.76 chs if (v3) {
1389 1.80 enami error = lockmgr(&np->n_commitlock,
1390 1.80 enami LK_EXCLUSIVE | (locked ? LK_NOWAIT : 0), NULL);
1391 1.80 enami if (error) {
1392 1.80 enami KASSERT(locked != 0);
1393 1.80 enami
1394 1.80 enami /*
1395 1.80 enami * Since PGO_LOCKED is set, we need to unbusy
1396 1.80 enami * all pages fetched by genfs_getpages() above,
1397 1.80 enami * tell the caller that there are no pages
1398 1.80 enami * available and put back original pgs array.
1399 1.80 enami */
1400 1.80 enami
1401 1.80 enami uvm_lock_pageq();
1402 1.80 enami uvm_page_unbusy(pgs, npages);
1403 1.80 enami uvm_unlock_pageq();
1404 1.80 enami *ap->a_count = 0;
1405 1.80 enami memcpy(pgs, opgs,
1406 1.80 enami npages * sizeof(struct vm_pages *));
1407 1.80 enami return (error);
1408 1.80 enami }
1409 1.76 chs nfs_del_committed_range(vp, origoffset, len);
1410 1.76 chs nfs_del_tobecommitted_range(vp, origoffset, len);
1411 1.76 chs }
1412 1.80 enami np->n_flag |= NMODIFIED;
1413 1.73 chs if (!locked) {
1414 1.73 chs simple_lock(&uobj->vmobjlock);
1415 1.73 chs }
1416 1.54 chs for (i = 0; i < npages; i++) {
1417 1.69 chs pg = pgs[i];
1418 1.69 chs if (pg == NULL || pg == PGO_DONTCARE) {
1419 1.54 chs continue;
1420 1.54 chs }
1421 1.74 chs pg->flags &= ~(PG_NEEDCOMMIT | PG_RDONLY);
1422 1.54 chs }
1423 1.73 chs if (!locked) {
1424 1.73 chs simple_unlock(&uobj->vmobjlock);
1425 1.73 chs }
1426 1.76 chs if (v3) {
1427 1.76 chs lockmgr(&np->n_commitlock, LK_RELEASE, NULL);
1428 1.76 chs }
1429 1.80 enami return (0);
1430 1.1 cgd }
1431