1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * File operations used by nfsd. Some of these have been ripped from
4 * other parts of the kernel because they weren't exported, others
5 * are partial duplicates with added or changed functionality.
6 *
7 * Note that several functions dget() the dentry upon which they want
8 * to act, most notably those that create directory entries. Response
9 * dentry's are dput()'d if necessary in the release callback.
10 * So if you notice code paths that apparently fail to dput() the
11 * dentry, don't worry--they have been taken care of.
12 *
13 * Copyright (C) 1995-1999 Olaf Kirch <okir@monad.swb.de>
14 * Zerocpy NFS support (C) 2002 Hirokazu Takahashi <taka@valinux.co.jp>
15 */
16
17 #include <linux/fs.h>
18 #include <linux/file.h>
19 #include <linux/splice.h>
20 #include <linux/falloc.h>
21 #include <linux/fcntl.h>
22 #include <linux/namei.h>
23 #include <linux/delay.h>
24 #include <linux/fsnotify.h>
25 #include <linux/posix_acl_xattr.h>
26 #include <linux/xattr.h>
27 #include <linux/jhash.h>
28 #include <linux/ima.h>
29 #include <linux/slab.h>
30 #include <linux/uaccess.h>
31 #include <linux/exportfs.h>
32 #include <linux/writeback.h>
33 #include <linux/security.h>
34
35 #ifdef CONFIG_NFSD_V3
36 #include "xdr3.h"
37 #endif /* CONFIG_NFSD_V3 */
38
39 #ifdef CONFIG_NFSD_V4
40 #include "../internal.h"
41 #include "acl.h"
42 #include "idmap.h"
43 #endif /* CONFIG_NFSD_V4 */
44
45 #include "nfsd.h"
46 #include "vfs.h"
47 #include "filecache.h"
48 #include "trace.h"
49
50 #define NFSDDBG_FACILITY NFSDDBG_FILEOP
51
52 /*
53 * Called from nfsd_lookup and encode_dirent. Check if we have crossed
54 * a mount point.
55 * Returns -EAGAIN or -ETIMEDOUT leaving *dpp and *expp unchanged,
56 * or nfs_ok having possibly changed *dpp and *expp
57 */
58 int
nfsd_cross_mnt(struct svc_rqst * rqstp,struct dentry ** dpp,struct svc_export ** expp)59 nfsd_cross_mnt(struct svc_rqst *rqstp, struct dentry **dpp,
60 struct svc_export **expp)
61 {
62 struct svc_export *exp = *expp, *exp2 = NULL;
63 struct dentry *dentry = *dpp;
64 struct path path = {.mnt = mntget(exp->ex_path.mnt),
65 .dentry = dget(dentry)};
66 int err = 0;
67
68 err = follow_down(&path);
69 if (err < 0)
70 goto out;
71 if (path.mnt == exp->ex_path.mnt && path.dentry == dentry &&
72 nfsd_mountpoint(dentry, exp) == 2) {
73 /* This is only a mountpoint in some other namespace */
74 path_put(&path);
75 goto out;
76 }
77
78 exp2 = rqst_exp_get_by_name(rqstp, &path);
79 if (IS_ERR(exp2)) {
80 err = PTR_ERR(exp2);
81 /*
82 * We normally allow NFS clients to continue
83 * "underneath" a mountpoint that is not exported.
84 * The exception is V4ROOT, where no traversal is ever
85 * allowed without an explicit export of the new
86 * directory.
87 */
88 if (err == -ENOENT && !(exp->ex_flags & NFSEXP_V4ROOT))
89 err = 0;
90 path_put(&path);
91 goto out;
92 }
93 if (nfsd_v4client(rqstp) ||
94 (exp->ex_flags & NFSEXP_CROSSMOUNT) || EX_NOHIDE(exp2)) {
95 /* successfully crossed mount point */
96 /*
97 * This is subtle: path.dentry is *not* on path.mnt
98 * at this point. The only reason we are safe is that
99 * original mnt is pinned down by exp, so we should
100 * put path *before* putting exp
101 */
102 *dpp = path.dentry;
103 path.dentry = dentry;
104 *expp = exp2;
105 exp2 = exp;
106 }
107 path_put(&path);
108 exp_put(exp2);
109 out:
110 return err;
111 }
112
follow_to_parent(struct path * path)113 static void follow_to_parent(struct path *path)
114 {
115 struct dentry *dp;
116
117 while (path->dentry == path->mnt->mnt_root && follow_up(path))
118 ;
119 dp = dget_parent(path->dentry);
120 dput(path->dentry);
121 path->dentry = dp;
122 }
123
nfsd_lookup_parent(struct svc_rqst * rqstp,struct dentry * dparent,struct svc_export ** exp,struct dentry ** dentryp)124 static int nfsd_lookup_parent(struct svc_rqst *rqstp, struct dentry *dparent, struct svc_export **exp, struct dentry **dentryp)
125 {
126 struct svc_export *exp2;
127 struct path path = {.mnt = mntget((*exp)->ex_path.mnt),
128 .dentry = dget(dparent)};
129
130 follow_to_parent(&path);
131
132 exp2 = rqst_exp_parent(rqstp, &path);
133 if (PTR_ERR(exp2) == -ENOENT) {
134 *dentryp = dget(dparent);
135 } else if (IS_ERR(exp2)) {
136 path_put(&path);
137 return PTR_ERR(exp2);
138 } else {
139 *dentryp = dget(path.dentry);
140 exp_put(*exp);
141 *exp = exp2;
142 }
143 path_put(&path);
144 return 0;
145 }
146
147 /*
148 * For nfsd purposes, we treat V4ROOT exports as though there was an
149 * export at *every* directory.
150 * We return:
151 * '1' if this dentry *must* be an export point,
152 * '2' if it might be, if there is really a mount here, and
153 * '0' if there is no chance of an export point here.
154 */
nfsd_mountpoint(struct dentry * dentry,struct svc_export * exp)155 int nfsd_mountpoint(struct dentry *dentry, struct svc_export *exp)
156 {
157 if (!d_inode(dentry))
158 return 0;
159 if (exp->ex_flags & NFSEXP_V4ROOT)
160 return 1;
161 if (nfsd4_is_junction(dentry))
162 return 1;
163 if (d_mountpoint(dentry))
164 /*
165 * Might only be a mountpoint in a different namespace,
166 * but we need to check.
167 */
168 return 2;
169 return 0;
170 }
171
172 __be32
nfsd_lookup_dentry(struct svc_rqst * rqstp,struct svc_fh * fhp,const char * name,unsigned int len,struct svc_export ** exp_ret,struct dentry ** dentry_ret)173 nfsd_lookup_dentry(struct svc_rqst *rqstp, struct svc_fh *fhp,
174 const char *name, unsigned int len,
175 struct svc_export **exp_ret, struct dentry **dentry_ret)
176 {
177 struct svc_export *exp;
178 struct dentry *dparent;
179 struct dentry *dentry;
180 int host_err;
181
182 dprintk("nfsd: nfsd_lookup(fh %s, %.*s)\n", SVCFH_fmt(fhp), len,name);
183
184 dparent = fhp->fh_dentry;
185 exp = exp_get(fhp->fh_export);
186
187 /* Lookup the name, but don't follow links */
188 if (isdotent(name, len)) {
189 if (len==1)
190 dentry = dget(dparent);
191 else if (dparent != exp->ex_path.dentry)
192 dentry = dget_parent(dparent);
193 else if (!EX_NOHIDE(exp) && !nfsd_v4client(rqstp))
194 dentry = dget(dparent); /* .. == . just like at / */
195 else {
196 /* checking mountpoint crossing is very different when stepping up */
197 host_err = nfsd_lookup_parent(rqstp, dparent, &exp, &dentry);
198 if (host_err)
199 goto out_nfserr;
200 }
201 } else {
202 /*
203 * In the nfsd4_open() case, this may be held across
204 * subsequent open and delegation acquisition which may
205 * need to take the child's i_mutex:
206 */
207 fh_lock_nested(fhp, I_MUTEX_PARENT);
208 dentry = lookup_one_len(name, dparent, len);
209 host_err = PTR_ERR(dentry);
210 if (IS_ERR(dentry))
211 goto out_nfserr;
212 if (nfsd_mountpoint(dentry, exp)) {
213 /*
214 * We don't need the i_mutex after all. It's
215 * still possible we could open this (regular
216 * files can be mountpoints too), but the
217 * i_mutex is just there to prevent renames of
218 * something that we might be about to delegate,
219 * and a mountpoint won't be renamed:
220 */
221 fh_unlock(fhp);
222 if ((host_err = nfsd_cross_mnt(rqstp, &dentry, &exp))) {
223 dput(dentry);
224 goto out_nfserr;
225 }
226 }
227 }
228 *dentry_ret = dentry;
229 *exp_ret = exp;
230 return 0;
231
232 out_nfserr:
233 exp_put(exp);
234 return nfserrno(host_err);
235 }
236
237 /*
238 * Look up one component of a pathname.
239 * N.B. After this call _both_ fhp and resfh need an fh_put
240 *
241 * If the lookup would cross a mountpoint, and the mounted filesystem
242 * is exported to the client with NFSEXP_NOHIDE, then the lookup is
243 * accepted as it stands and the mounted directory is
244 * returned. Otherwise the covered directory is returned.
245 * NOTE: this mountpoint crossing is not supported properly by all
246 * clients and is explicitly disallowed for NFSv3
247 * NeilBrown <neilb@cse.unsw.edu.au>
248 */
249 __be32
nfsd_lookup(struct svc_rqst * rqstp,struct svc_fh * fhp,const char * name,unsigned int len,struct svc_fh * resfh)250 nfsd_lookup(struct svc_rqst *rqstp, struct svc_fh *fhp, const char *name,
251 unsigned int len, struct svc_fh *resfh)
252 {
253 struct svc_export *exp;
254 struct dentry *dentry;
255 __be32 err;
256
257 err = fh_verify(rqstp, fhp, S_IFDIR, NFSD_MAY_EXEC);
258 if (err)
259 return err;
260 err = nfsd_lookup_dentry(rqstp, fhp, name, len, &exp, &dentry);
261 if (err)
262 return err;
263 err = check_nfsd_access(exp, rqstp);
264 if (err)
265 goto out;
266 /*
267 * Note: we compose the file handle now, but as the
268 * dentry may be negative, it may need to be updated.
269 */
270 err = fh_compose(resfh, exp, dentry, fhp);
271 if (!err && d_really_is_negative(dentry))
272 err = nfserr_noent;
273 out:
274 dput(dentry);
275 exp_put(exp);
276 return err;
277 }
278
279 /*
280 * Commit metadata changes to stable storage.
281 */
282 static int
commit_inode_metadata(struct inode * inode)283 commit_inode_metadata(struct inode *inode)
284 {
285 const struct export_operations *export_ops = inode->i_sb->s_export_op;
286
287 if (export_ops->commit_metadata)
288 return export_ops->commit_metadata(inode);
289 return sync_inode_metadata(inode, 1);
290 }
291
292 static int
commit_metadata(struct svc_fh * fhp)293 commit_metadata(struct svc_fh *fhp)
294 {
295 struct inode *inode = d_inode(fhp->fh_dentry);
296
297 if (!EX_ISSYNC(fhp->fh_export))
298 return 0;
299 return commit_inode_metadata(inode);
300 }
301
302 /*
303 * Go over the attributes and take care of the small differences between
304 * NFS semantics and what Linux expects.
305 */
306 static void
nfsd_sanitize_attrs(struct inode * inode,struct iattr * iap)307 nfsd_sanitize_attrs(struct inode *inode, struct iattr *iap)
308 {
309 /* sanitize the mode change */
310 if (iap->ia_valid & ATTR_MODE) {
311 iap->ia_mode &= S_IALLUGO;
312 iap->ia_mode |= (inode->i_mode & ~S_IALLUGO);
313 }
314
315 /* Revoke setuid/setgid on chown */
316 if (!S_ISDIR(inode->i_mode) &&
317 ((iap->ia_valid & ATTR_UID) || (iap->ia_valid & ATTR_GID))) {
318 iap->ia_valid |= ATTR_KILL_PRIV;
319 if (iap->ia_valid & ATTR_MODE) {
320 /* we're setting mode too, just clear the s*id bits */
321 iap->ia_mode &= ~S_ISUID;
322 if (iap->ia_mode & S_IXGRP)
323 iap->ia_mode &= ~S_ISGID;
324 } else {
325 /* set ATTR_KILL_* bits and let VFS handle it */
326 iap->ia_valid |= (ATTR_KILL_SUID | ATTR_KILL_SGID);
327 }
328 }
329 }
330
331 static __be32
nfsd_get_write_access(struct svc_rqst * rqstp,struct svc_fh * fhp,struct iattr * iap)332 nfsd_get_write_access(struct svc_rqst *rqstp, struct svc_fh *fhp,
333 struct iattr *iap)
334 {
335 struct inode *inode = d_inode(fhp->fh_dentry);
336 int host_err;
337
338 if (iap->ia_size < inode->i_size) {
339 __be32 err;
340
341 err = nfsd_permission(rqstp, fhp->fh_export, fhp->fh_dentry,
342 NFSD_MAY_TRUNC | NFSD_MAY_OWNER_OVERRIDE);
343 if (err)
344 return err;
345 }
346
347 host_err = get_write_access(inode);
348 if (host_err)
349 goto out_nfserrno;
350
351 host_err = locks_verify_truncate(inode, NULL, iap->ia_size);
352 if (host_err)
353 goto out_put_write_access;
354 return 0;
355
356 out_put_write_access:
357 put_write_access(inode);
358 out_nfserrno:
359 return nfserrno(host_err);
360 }
361
362 /*
363 * Set various file attributes. After this call fhp needs an fh_put.
364 */
365 __be32
nfsd_setattr(struct svc_rqst * rqstp,struct svc_fh * fhp,struct iattr * iap,int check_guard,time64_t guardtime)366 nfsd_setattr(struct svc_rqst *rqstp, struct svc_fh *fhp, struct iattr *iap,
367 int check_guard, time64_t guardtime)
368 {
369 struct dentry *dentry;
370 struct inode *inode;
371 int accmode = NFSD_MAY_SATTR;
372 umode_t ftype = 0;
373 __be32 err;
374 int host_err;
375 bool get_write_count;
376 bool size_change = (iap->ia_valid & ATTR_SIZE);
377
378 if (iap->ia_valid & ATTR_SIZE) {
379 accmode |= NFSD_MAY_WRITE|NFSD_MAY_OWNER_OVERRIDE;
380 ftype = S_IFREG;
381 }
382
383 /*
384 * If utimes(2) and friends are called with times not NULL, we should
385 * not set NFSD_MAY_WRITE bit. Otherwise fh_verify->nfsd_permission
386 * will return EACCES, when the caller's effective UID does not match
387 * the owner of the file, and the caller is not privileged. In this
388 * situation, we should return EPERM(notify_change will return this).
389 */
390 if (iap->ia_valid & (ATTR_ATIME | ATTR_MTIME)) {
391 accmode |= NFSD_MAY_OWNER_OVERRIDE;
392 if (!(iap->ia_valid & (ATTR_ATIME_SET | ATTR_MTIME_SET)))
393 accmode |= NFSD_MAY_WRITE;
394 }
395
396 /* Callers that do fh_verify should do the fh_want_write: */
397 get_write_count = !fhp->fh_dentry;
398
399 /* Get inode */
400 err = fh_verify(rqstp, fhp, ftype, accmode);
401 if (err)
402 return err;
403 if (get_write_count) {
404 host_err = fh_want_write(fhp);
405 if (host_err)
406 goto out;
407 }
408
409 dentry = fhp->fh_dentry;
410 inode = d_inode(dentry);
411
412 /* Ignore any mode updates on symlinks */
413 if (S_ISLNK(inode->i_mode))
414 iap->ia_valid &= ~ATTR_MODE;
415
416 if (!iap->ia_valid)
417 return 0;
418
419 nfsd_sanitize_attrs(inode, iap);
420
421 if (check_guard && guardtime != inode->i_ctime.tv_sec)
422 return nfserr_notsync;
423
424 /*
425 * The size case is special, it changes the file in addition to the
426 * attributes, and file systems don't expect it to be mixed with
427 * "random" attribute changes. We thus split out the size change
428 * into a separate call to ->setattr, and do the rest as a separate
429 * setattr call.
430 */
431 if (size_change) {
432 err = nfsd_get_write_access(rqstp, fhp, iap);
433 if (err)
434 return err;
435 }
436
437 fh_lock(fhp);
438 if (size_change) {
439 /*
440 * RFC5661, Section 18.30.4:
441 * Changing the size of a file with SETATTR indirectly
442 * changes the time_modify and change attributes.
443 *
444 * (and similar for the older RFCs)
445 */
446 struct iattr size_attr = {
447 .ia_valid = ATTR_SIZE | ATTR_CTIME | ATTR_MTIME,
448 .ia_size = iap->ia_size,
449 };
450
451 host_err = notify_change(dentry, &size_attr, NULL);
452 if (host_err)
453 goto out_unlock;
454 iap->ia_valid &= ~ATTR_SIZE;
455
456 /*
457 * Avoid the additional setattr call below if the only other
458 * attribute that the client sends is the mtime, as we update
459 * it as part of the size change above.
460 */
461 if ((iap->ia_valid & ~ATTR_MTIME) == 0)
462 goto out_unlock;
463 }
464
465 iap->ia_valid |= ATTR_CTIME;
466 host_err = notify_change(dentry, iap, NULL);
467
468 out_unlock:
469 fh_unlock(fhp);
470 if (size_change)
471 put_write_access(inode);
472 out:
473 if (!host_err)
474 host_err = commit_metadata(fhp);
475 return nfserrno(host_err);
476 }
477
478 #if defined(CONFIG_NFSD_V4)
479 /*
480 * NFS junction information is stored in an extended attribute.
481 */
482 #define NFSD_JUNCTION_XATTR_NAME XATTR_TRUSTED_PREFIX "junction.nfs"
483
484 /**
485 * nfsd4_is_junction - Test if an object could be an NFS junction
486 *
487 * @dentry: object to test
488 *
489 * Returns 1 if "dentry" appears to contain NFS junction information.
490 * Otherwise 0 is returned.
491 */
nfsd4_is_junction(struct dentry * dentry)492 int nfsd4_is_junction(struct dentry *dentry)
493 {
494 struct inode *inode = d_inode(dentry);
495
496 if (inode == NULL)
497 return 0;
498 if (inode->i_mode & S_IXUGO)
499 return 0;
500 if (!(inode->i_mode & S_ISVTX))
501 return 0;
502 if (vfs_getxattr(dentry, NFSD_JUNCTION_XATTR_NAME, NULL, 0) <= 0)
503 return 0;
504 return 1;
505 }
506 #ifdef CONFIG_NFSD_V4_SECURITY_LABEL
nfsd4_set_nfs4_label(struct svc_rqst * rqstp,struct svc_fh * fhp,struct xdr_netobj * label)507 __be32 nfsd4_set_nfs4_label(struct svc_rqst *rqstp, struct svc_fh *fhp,
508 struct xdr_netobj *label)
509 {
510 __be32 error;
511 int host_error;
512 struct dentry *dentry;
513
514 error = fh_verify(rqstp, fhp, 0 /* S_IFREG */, NFSD_MAY_SATTR);
515 if (error)
516 return error;
517
518 dentry = fhp->fh_dentry;
519
520 inode_lock(d_inode(dentry));
521 host_error = security_inode_setsecctx(dentry, label->data, label->len);
522 inode_unlock(d_inode(dentry));
523 return nfserrno(host_error);
524 }
525 #else
nfsd4_set_nfs4_label(struct svc_rqst * rqstp,struct svc_fh * fhp,struct xdr_netobj * label)526 __be32 nfsd4_set_nfs4_label(struct svc_rqst *rqstp, struct svc_fh *fhp,
527 struct xdr_netobj *label)
528 {
529 return nfserr_notsupp;
530 }
531 #endif
532
nfsd4_clone_file_range(struct nfsd_file * nf_src,u64 src_pos,struct nfsd_file * nf_dst,u64 dst_pos,u64 count,bool sync)533 __be32 nfsd4_clone_file_range(struct nfsd_file *nf_src, u64 src_pos,
534 struct nfsd_file *nf_dst, u64 dst_pos, u64 count, bool sync)
535 {
536 struct file *src = nf_src->nf_file;
537 struct file *dst = nf_dst->nf_file;
538 loff_t cloned;
539 __be32 ret = 0;
540
541 down_write(&nf_dst->nf_rwsem);
542 cloned = vfs_clone_file_range(src, src_pos, dst, dst_pos, count, 0);
543 if (cloned < 0) {
544 ret = nfserrno(cloned);
545 goto out_err;
546 }
547 if (count && cloned != count) {
548 ret = nfserrno(-EINVAL);
549 goto out_err;
550 }
551 if (sync) {
552 loff_t dst_end = count ? dst_pos + count - 1 : LLONG_MAX;
553 int status = vfs_fsync_range(dst, dst_pos, dst_end, 0);
554
555 if (!status)
556 status = commit_inode_metadata(file_inode(src));
557 if (status < 0) {
558 nfsd_reset_boot_verifier(net_generic(nf_dst->nf_net,
559 nfsd_net_id));
560 ret = nfserrno(status);
561 }
562 }
563 out_err:
564 up_write(&nf_dst->nf_rwsem);
565 return ret;
566 }
567
nfsd_copy_file_range(struct file * src,u64 src_pos,struct file * dst,u64 dst_pos,u64 count)568 ssize_t nfsd_copy_file_range(struct file *src, u64 src_pos, struct file *dst,
569 u64 dst_pos, u64 count)
570 {
571
572 /*
573 * Limit copy to 4MB to prevent indefinitely blocking an nfsd
574 * thread and client rpc slot. The choice of 4MB is somewhat
575 * arbitrary. We might instead base this on r/wsize, or make it
576 * tunable, or use a time instead of a byte limit, or implement
577 * asynchronous copy. In theory a client could also recognize a
578 * limit like this and pipeline multiple COPY requests.
579 */
580 count = min_t(u64, count, 1 << 22);
581 return vfs_copy_file_range(src, src_pos, dst, dst_pos, count, 0);
582 }
583
nfsd4_vfs_fallocate(struct svc_rqst * rqstp,struct svc_fh * fhp,struct file * file,loff_t offset,loff_t len,int flags)584 __be32 nfsd4_vfs_fallocate(struct svc_rqst *rqstp, struct svc_fh *fhp,
585 struct file *file, loff_t offset, loff_t len,
586 int flags)
587 {
588 int error;
589
590 if (!S_ISREG(file_inode(file)->i_mode))
591 return nfserr_inval;
592
593 error = vfs_fallocate(file, flags, offset, len);
594 if (!error)
595 error = commit_metadata(fhp);
596
597 return nfserrno(error);
598 }
599 #endif /* defined(CONFIG_NFSD_V4) */
600
601 #ifdef CONFIG_NFSD_V3
602 /*
603 * Check server access rights to a file system object
604 */
605 struct accessmap {
606 u32 access;
607 int how;
608 };
609 static struct accessmap nfs3_regaccess[] = {
610 { NFS3_ACCESS_READ, NFSD_MAY_READ },
611 { NFS3_ACCESS_EXECUTE, NFSD_MAY_EXEC },
612 { NFS3_ACCESS_MODIFY, NFSD_MAY_WRITE|NFSD_MAY_TRUNC },
613 { NFS3_ACCESS_EXTEND, NFSD_MAY_WRITE },
614
615 #ifdef CONFIG_NFSD_V4
616 { NFS4_ACCESS_XAREAD, NFSD_MAY_READ },
617 { NFS4_ACCESS_XAWRITE, NFSD_MAY_WRITE },
618 { NFS4_ACCESS_XALIST, NFSD_MAY_READ },
619 #endif
620
621 { 0, 0 }
622 };
623
624 static struct accessmap nfs3_diraccess[] = {
625 { NFS3_ACCESS_READ, NFSD_MAY_READ },
626 { NFS3_ACCESS_LOOKUP, NFSD_MAY_EXEC },
627 { NFS3_ACCESS_MODIFY, NFSD_MAY_EXEC|NFSD_MAY_WRITE|NFSD_MAY_TRUNC},
628 { NFS3_ACCESS_EXTEND, NFSD_MAY_EXEC|NFSD_MAY_WRITE },
629 { NFS3_ACCESS_DELETE, NFSD_MAY_REMOVE },
630
631 #ifdef CONFIG_NFSD_V4
632 { NFS4_ACCESS_XAREAD, NFSD_MAY_READ },
633 { NFS4_ACCESS_XAWRITE, NFSD_MAY_WRITE },
634 { NFS4_ACCESS_XALIST, NFSD_MAY_READ },
635 #endif
636
637 { 0, 0 }
638 };
639
640 static struct accessmap nfs3_anyaccess[] = {
641 /* Some clients - Solaris 2.6 at least, make an access call
642 * to the server to check for access for things like /dev/null
643 * (which really, the server doesn't care about). So
644 * We provide simple access checking for them, looking
645 * mainly at mode bits, and we make sure to ignore read-only
646 * filesystem checks
647 */
648 { NFS3_ACCESS_READ, NFSD_MAY_READ },
649 { NFS3_ACCESS_EXECUTE, NFSD_MAY_EXEC },
650 { NFS3_ACCESS_MODIFY, NFSD_MAY_WRITE|NFSD_MAY_LOCAL_ACCESS },
651 { NFS3_ACCESS_EXTEND, NFSD_MAY_WRITE|NFSD_MAY_LOCAL_ACCESS },
652
653 { 0, 0 }
654 };
655
656 __be32
nfsd_access(struct svc_rqst * rqstp,struct svc_fh * fhp,u32 * access,u32 * supported)657 nfsd_access(struct svc_rqst *rqstp, struct svc_fh *fhp, u32 *access, u32 *supported)
658 {
659 struct accessmap *map;
660 struct svc_export *export;
661 struct dentry *dentry;
662 u32 query, result = 0, sresult = 0;
663 __be32 error;
664
665 error = fh_verify(rqstp, fhp, 0, NFSD_MAY_NOP);
666 if (error)
667 goto out;
668
669 export = fhp->fh_export;
670 dentry = fhp->fh_dentry;
671
672 if (d_is_reg(dentry))
673 map = nfs3_regaccess;
674 else if (d_is_dir(dentry))
675 map = nfs3_diraccess;
676 else
677 map = nfs3_anyaccess;
678
679
680 query = *access;
681 for (; map->access; map++) {
682 if (map->access & query) {
683 __be32 err2;
684
685 sresult |= map->access;
686
687 err2 = nfsd_permission(rqstp, export, dentry, map->how);
688 switch (err2) {
689 case nfs_ok:
690 result |= map->access;
691 break;
692
693 /* the following error codes just mean the access was not allowed,
694 * rather than an error occurred */
695 case nfserr_rofs:
696 case nfserr_acces:
697 case nfserr_perm:
698 /* simply don't "or" in the access bit. */
699 break;
700 default:
701 error = err2;
702 goto out;
703 }
704 }
705 }
706 *access = result;
707 if (supported)
708 *supported = sresult;
709
710 out:
711 return error;
712 }
713 #endif /* CONFIG_NFSD_V3 */
714
nfsd_open_break_lease(struct inode * inode,int access)715 int nfsd_open_break_lease(struct inode *inode, int access)
716 {
717 unsigned int mode;
718
719 if (access & NFSD_MAY_NOT_BREAK_LEASE)
720 return 0;
721 mode = (access & NFSD_MAY_WRITE) ? O_WRONLY : O_RDONLY;
722 return break_lease(inode, mode | O_NONBLOCK);
723 }
724
725 /*
726 * Open an existing file or directory.
727 * The may_flags argument indicates the type of open (read/write/lock)
728 * and additional flags.
729 * N.B. After this call fhp needs an fh_put
730 */
731 static __be32
__nfsd_open(struct svc_rqst * rqstp,struct svc_fh * fhp,umode_t type,int may_flags,struct file ** filp)732 __nfsd_open(struct svc_rqst *rqstp, struct svc_fh *fhp, umode_t type,
733 int may_flags, struct file **filp)
734 {
735 struct path path;
736 struct inode *inode;
737 struct file *file;
738 int flags = O_RDONLY|O_LARGEFILE;
739 __be32 err;
740 int host_err = 0;
741
742 path.mnt = fhp->fh_export->ex_path.mnt;
743 path.dentry = fhp->fh_dentry;
744 inode = d_inode(path.dentry);
745
746 /* Disallow write access to files with the append-only bit set
747 * or any access when mandatory locking enabled
748 */
749 err = nfserr_perm;
750 if (IS_APPEND(inode) && (may_flags & NFSD_MAY_WRITE))
751 goto out;
752 /*
753 * We must ignore files (but only files) which might have mandatory
754 * locks on them because there is no way to know if the accesser has
755 * the lock.
756 */
757 if (S_ISREG((inode)->i_mode) && mandatory_lock(inode))
758 goto out;
759
760 if (!inode->i_fop)
761 goto out;
762
763 host_err = nfsd_open_break_lease(inode, may_flags);
764 if (host_err) /* NOMEM or WOULDBLOCK */
765 goto out_nfserr;
766
767 if (may_flags & NFSD_MAY_WRITE) {
768 if (may_flags & NFSD_MAY_READ)
769 flags = O_RDWR|O_LARGEFILE;
770 else
771 flags = O_WRONLY|O_LARGEFILE;
772 }
773
774 file = dentry_open(&path, flags, current_cred());
775 if (IS_ERR(file)) {
776 host_err = PTR_ERR(file);
777 goto out_nfserr;
778 }
779
780 host_err = ima_file_check(file, may_flags);
781 if (host_err) {
782 fput(file);
783 goto out_nfserr;
784 }
785
786 if (may_flags & NFSD_MAY_64BIT_COOKIE)
787 file->f_mode |= FMODE_64BITHASH;
788 else
789 file->f_mode |= FMODE_32BITHASH;
790
791 *filp = file;
792 out_nfserr:
793 err = nfserrno(host_err);
794 out:
795 return err;
796 }
797
798 __be32
nfsd_open(struct svc_rqst * rqstp,struct svc_fh * fhp,umode_t type,int may_flags,struct file ** filp)799 nfsd_open(struct svc_rqst *rqstp, struct svc_fh *fhp, umode_t type,
800 int may_flags, struct file **filp)
801 {
802 __be32 err;
803
804 validate_process_creds();
805 /*
806 * If we get here, then the client has already done an "open",
807 * and (hopefully) checked permission - so allow OWNER_OVERRIDE
808 * in case a chmod has now revoked permission.
809 *
810 * Arguably we should also allow the owner override for
811 * directories, but we never have and it doesn't seem to have
812 * caused anyone a problem. If we were to change this, note
813 * also that our filldir callbacks would need a variant of
814 * lookup_one_len that doesn't check permissions.
815 */
816 if (type == S_IFREG)
817 may_flags |= NFSD_MAY_OWNER_OVERRIDE;
818 err = fh_verify(rqstp, fhp, type, may_flags);
819 if (!err)
820 err = __nfsd_open(rqstp, fhp, type, may_flags, filp);
821 validate_process_creds();
822 return err;
823 }
824
825 __be32
nfsd_open_verified(struct svc_rqst * rqstp,struct svc_fh * fhp,umode_t type,int may_flags,struct file ** filp)826 nfsd_open_verified(struct svc_rqst *rqstp, struct svc_fh *fhp, umode_t type,
827 int may_flags, struct file **filp)
828 {
829 __be32 err;
830
831 validate_process_creds();
832 err = __nfsd_open(rqstp, fhp, type, may_flags, filp);
833 validate_process_creds();
834 return err;
835 }
836
837 /*
838 * Grab and keep cached pages associated with a file in the svc_rqst
839 * so that they can be passed to the network sendmsg/sendpage routines
840 * directly. They will be released after the sending has completed.
841 */
842 static int
nfsd_splice_actor(struct pipe_inode_info * pipe,struct pipe_buffer * buf,struct splice_desc * sd)843 nfsd_splice_actor(struct pipe_inode_info *pipe, struct pipe_buffer *buf,
844 struct splice_desc *sd)
845 {
846 struct svc_rqst *rqstp = sd->u.data;
847 struct page **pp = rqstp->rq_next_page;
848 struct page *page = buf->page;
849 size_t size;
850
851 size = sd->len;
852
853 if (rqstp->rq_res.page_len == 0) {
854 get_page(page);
855 put_page(*rqstp->rq_next_page);
856 *(rqstp->rq_next_page++) = page;
857 rqstp->rq_res.page_base = buf->offset;
858 rqstp->rq_res.page_len = size;
859 } else if (page != pp[-1]) {
860 get_page(page);
861 if (*rqstp->rq_next_page)
862 put_page(*rqstp->rq_next_page);
863 *(rqstp->rq_next_page++) = page;
864 rqstp->rq_res.page_len += size;
865 } else
866 rqstp->rq_res.page_len += size;
867
868 return size;
869 }
870
nfsd_direct_splice_actor(struct pipe_inode_info * pipe,struct splice_desc * sd)871 static int nfsd_direct_splice_actor(struct pipe_inode_info *pipe,
872 struct splice_desc *sd)
873 {
874 return __splice_from_pipe(pipe, sd, nfsd_splice_actor);
875 }
876
nfsd_eof_on_read(struct file * file,loff_t offset,ssize_t len,size_t expected)877 static u32 nfsd_eof_on_read(struct file *file, loff_t offset, ssize_t len,
878 size_t expected)
879 {
880 if (expected != 0 && len == 0)
881 return 1;
882 if (offset+len >= i_size_read(file_inode(file)))
883 return 1;
884 return 0;
885 }
886
nfsd_finish_read(struct svc_rqst * rqstp,struct svc_fh * fhp,struct file * file,loff_t offset,unsigned long * count,u32 * eof,ssize_t host_err)887 static __be32 nfsd_finish_read(struct svc_rqst *rqstp, struct svc_fh *fhp,
888 struct file *file, loff_t offset,
889 unsigned long *count, u32 *eof, ssize_t host_err)
890 {
891 if (host_err >= 0) {
892 nfsdstats.io_read += host_err;
893 *eof = nfsd_eof_on_read(file, offset, host_err, *count);
894 *count = host_err;
895 fsnotify_access(file);
896 trace_nfsd_read_io_done(rqstp, fhp, offset, *count);
897 return 0;
898 } else {
899 trace_nfsd_read_err(rqstp, fhp, offset, host_err);
900 return nfserrno(host_err);
901 }
902 }
903
nfsd_splice_read(struct svc_rqst * rqstp,struct svc_fh * fhp,struct file * file,loff_t offset,unsigned long * count,u32 * eof)904 __be32 nfsd_splice_read(struct svc_rqst *rqstp, struct svc_fh *fhp,
905 struct file *file, loff_t offset, unsigned long *count,
906 u32 *eof)
907 {
908 struct splice_desc sd = {
909 .len = 0,
910 .total_len = *count,
911 .pos = offset,
912 .u.data = rqstp,
913 };
914 ssize_t host_err;
915
916 trace_nfsd_read_splice(rqstp, fhp, offset, *count);
917 rqstp->rq_next_page = rqstp->rq_respages + 1;
918 host_err = splice_direct_to_actor(file, &sd, nfsd_direct_splice_actor);
919 return nfsd_finish_read(rqstp, fhp, file, offset, count, eof, host_err);
920 }
921
nfsd_readv(struct svc_rqst * rqstp,struct svc_fh * fhp,struct file * file,loff_t offset,struct kvec * vec,int vlen,unsigned long * count,u32 * eof)922 __be32 nfsd_readv(struct svc_rqst *rqstp, struct svc_fh *fhp,
923 struct file *file, loff_t offset,
924 struct kvec *vec, int vlen, unsigned long *count,
925 u32 *eof)
926 {
927 struct iov_iter iter;
928 loff_t ppos = offset;
929 ssize_t host_err;
930
931 trace_nfsd_read_vector(rqstp, fhp, offset, *count);
932 iov_iter_kvec(&iter, READ, vec, vlen, *count);
933 host_err = vfs_iter_read(file, &iter, &ppos, 0);
934 return nfsd_finish_read(rqstp, fhp, file, offset, count, eof, host_err);
935 }
936
937 /*
938 * Gathered writes: If another process is currently writing to the file,
939 * there's a high chance this is another nfsd (triggered by a bulk write
940 * from a client's biod). Rather than syncing the file with each write
941 * request, we sleep for 10 msec.
942 *
943 * I don't know if this roughly approximates C. Juszak's idea of
944 * gathered writes, but it's a nice and simple solution (IMHO), and it
945 * seems to work:-)
946 *
947 * Note: we do this only in the NFSv2 case, since v3 and higher have a
948 * better tool (separate unstable writes and commits) for solving this
949 * problem.
950 */
wait_for_concurrent_writes(struct file * file)951 static int wait_for_concurrent_writes(struct file *file)
952 {
953 struct inode *inode = file_inode(file);
954 static ino_t last_ino;
955 static dev_t last_dev;
956 int err = 0;
957
958 if (atomic_read(&inode->i_writecount) > 1
959 || (last_ino == inode->i_ino && last_dev == inode->i_sb->s_dev)) {
960 dprintk("nfsd: write defer %d\n", task_pid_nr(current));
961 msleep(10);
962 dprintk("nfsd: write resume %d\n", task_pid_nr(current));
963 }
964
965 if (inode->i_state & I_DIRTY) {
966 dprintk("nfsd: write sync %d\n", task_pid_nr(current));
967 err = vfs_fsync(file, 0);
968 }
969 last_ino = inode->i_ino;
970 last_dev = inode->i_sb->s_dev;
971 return err;
972 }
973
974 __be32
nfsd_vfs_write(struct svc_rqst * rqstp,struct svc_fh * fhp,struct nfsd_file * nf,loff_t offset,struct kvec * vec,int vlen,unsigned long * cnt,int stable,__be32 * verf)975 nfsd_vfs_write(struct svc_rqst *rqstp, struct svc_fh *fhp, struct nfsd_file *nf,
976 loff_t offset, struct kvec *vec, int vlen,
977 unsigned long *cnt, int stable,
978 __be32 *verf)
979 {
980 struct file *file = nf->nf_file;
981 struct svc_export *exp;
982 struct iov_iter iter;
983 __be32 nfserr;
984 int host_err;
985 int use_wgather;
986 loff_t pos = offset;
987 unsigned int pflags = current->flags;
988 rwf_t flags = 0;
989
990 trace_nfsd_write_opened(rqstp, fhp, offset, *cnt);
991
992 if (test_bit(RQ_LOCAL, &rqstp->rq_flags))
993 /*
994 * We want throttling in balance_dirty_pages()
995 * and shrink_inactive_list() to only consider
996 * the backingdev we are writing to, so that nfs to
997 * localhost doesn't cause nfsd to lock up due to all
998 * the client's dirty pages or its congested queue.
999 */
1000 current->flags |= PF_LOCAL_THROTTLE;
1001
1002 exp = fhp->fh_export;
1003 use_wgather = (rqstp->rq_vers == 2) && EX_WGATHER(exp);
1004
1005 if (!EX_ISSYNC(exp))
1006 stable = NFS_UNSTABLE;
1007
1008 if (stable && !use_wgather)
1009 flags |= RWF_SYNC;
1010
1011 iov_iter_kvec(&iter, WRITE, vec, vlen, *cnt);
1012 if (flags & RWF_SYNC) {
1013 down_write(&nf->nf_rwsem);
1014 host_err = vfs_iter_write(file, &iter, &pos, flags);
1015 if (host_err < 0)
1016 nfsd_reset_boot_verifier(net_generic(SVC_NET(rqstp),
1017 nfsd_net_id));
1018 up_write(&nf->nf_rwsem);
1019 } else {
1020 down_read(&nf->nf_rwsem);
1021 if (verf)
1022 nfsd_copy_boot_verifier(verf,
1023 net_generic(SVC_NET(rqstp),
1024 nfsd_net_id));
1025 host_err = vfs_iter_write(file, &iter, &pos, flags);
1026 up_read(&nf->nf_rwsem);
1027 }
1028 if (host_err < 0) {
1029 nfsd_reset_boot_verifier(net_generic(SVC_NET(rqstp),
1030 nfsd_net_id));
1031 goto out_nfserr;
1032 }
1033 *cnt = host_err;
1034 nfsdstats.io_write += *cnt;
1035 fsnotify_modify(file);
1036
1037 if (stable && use_wgather) {
1038 host_err = wait_for_concurrent_writes(file);
1039 if (host_err < 0)
1040 nfsd_reset_boot_verifier(net_generic(SVC_NET(rqstp),
1041 nfsd_net_id));
1042 }
1043
1044 out_nfserr:
1045 if (host_err >= 0) {
1046 trace_nfsd_write_io_done(rqstp, fhp, offset, *cnt);
1047 nfserr = nfs_ok;
1048 } else {
1049 trace_nfsd_write_err(rqstp, fhp, offset, host_err);
1050 nfserr = nfserrno(host_err);
1051 }
1052 if (test_bit(RQ_LOCAL, &rqstp->rq_flags))
1053 current_restore_flags(pflags, PF_LOCAL_THROTTLE);
1054 return nfserr;
1055 }
1056
1057 /*
1058 * Read data from a file. count must contain the requested read count
1059 * on entry. On return, *count contains the number of bytes actually read.
1060 * N.B. After this call fhp needs an fh_put
1061 */
nfsd_read(struct svc_rqst * rqstp,struct svc_fh * fhp,loff_t offset,struct kvec * vec,int vlen,unsigned long * count,u32 * eof)1062 __be32 nfsd_read(struct svc_rqst *rqstp, struct svc_fh *fhp,
1063 loff_t offset, struct kvec *vec, int vlen, unsigned long *count,
1064 u32 *eof)
1065 {
1066 struct nfsd_file *nf;
1067 struct file *file;
1068 __be32 err;
1069
1070 trace_nfsd_read_start(rqstp, fhp, offset, *count);
1071 err = nfsd_file_acquire(rqstp, fhp, NFSD_MAY_READ, &nf);
1072 if (err)
1073 return err;
1074
1075 file = nf->nf_file;
1076 if (file->f_op->splice_read && test_bit(RQ_SPLICE_OK, &rqstp->rq_flags))
1077 err = nfsd_splice_read(rqstp, fhp, file, offset, count, eof);
1078 else
1079 err = nfsd_readv(rqstp, fhp, file, offset, vec, vlen, count, eof);
1080
1081 nfsd_file_put(nf);
1082
1083 trace_nfsd_read_done(rqstp, fhp, offset, *count);
1084
1085 return err;
1086 }
1087
1088 /*
1089 * Write data to a file.
1090 * The stable flag requests synchronous writes.
1091 * N.B. After this call fhp needs an fh_put
1092 */
1093 __be32
nfsd_write(struct svc_rqst * rqstp,struct svc_fh * fhp,loff_t offset,struct kvec * vec,int vlen,unsigned long * cnt,int stable,__be32 * verf)1094 nfsd_write(struct svc_rqst *rqstp, struct svc_fh *fhp, loff_t offset,
1095 struct kvec *vec, int vlen, unsigned long *cnt, int stable,
1096 __be32 *verf)
1097 {
1098 struct nfsd_file *nf;
1099 __be32 err;
1100
1101 trace_nfsd_write_start(rqstp, fhp, offset, *cnt);
1102
1103 err = nfsd_file_acquire(rqstp, fhp, NFSD_MAY_WRITE, &nf);
1104 if (err)
1105 goto out;
1106
1107 err = nfsd_vfs_write(rqstp, fhp, nf, offset, vec,
1108 vlen, cnt, stable, verf);
1109 nfsd_file_put(nf);
1110 out:
1111 trace_nfsd_write_done(rqstp, fhp, offset, *cnt);
1112 return err;
1113 }
1114
1115 #ifdef CONFIG_NFSD_V3
1116 static int
nfsd_filemap_write_and_wait_range(struct nfsd_file * nf,loff_t offset,loff_t end)1117 nfsd_filemap_write_and_wait_range(struct nfsd_file *nf, loff_t offset,
1118 loff_t end)
1119 {
1120 struct address_space *mapping = nf->nf_file->f_mapping;
1121 int ret = filemap_fdatawrite_range(mapping, offset, end);
1122
1123 if (ret)
1124 return ret;
1125 filemap_fdatawait_range_keep_errors(mapping, offset, end);
1126 return 0;
1127 }
1128
1129 /*
1130 * Commit all pending writes to stable storage.
1131 *
1132 * Note: we only guarantee that data that lies within the range specified
1133 * by the 'offset' and 'count' parameters will be synced.
1134 *
1135 * Unfortunately we cannot lock the file to make sure we return full WCC
1136 * data to the client, as locking happens lower down in the filesystem.
1137 */
1138 __be32
nfsd_commit(struct svc_rqst * rqstp,struct svc_fh * fhp,loff_t offset,unsigned long count,__be32 * verf)1139 nfsd_commit(struct svc_rqst *rqstp, struct svc_fh *fhp,
1140 loff_t offset, unsigned long count, __be32 *verf)
1141 {
1142 struct nfsd_file *nf;
1143 loff_t end = LLONG_MAX;
1144 __be32 err = nfserr_inval;
1145
1146 if (offset < 0)
1147 goto out;
1148 if (count != 0) {
1149 end = offset + (loff_t)count - 1;
1150 if (end < offset)
1151 goto out;
1152 }
1153
1154 err = nfsd_file_acquire(rqstp, fhp,
1155 NFSD_MAY_WRITE|NFSD_MAY_NOT_BREAK_LEASE, &nf);
1156 if (err)
1157 goto out;
1158 if (EX_ISSYNC(fhp->fh_export)) {
1159 int err2 = nfsd_filemap_write_and_wait_range(nf, offset, end);
1160
1161 down_write(&nf->nf_rwsem);
1162 if (!err2)
1163 err2 = vfs_fsync_range(nf->nf_file, offset, end, 0);
1164 switch (err2) {
1165 case 0:
1166 nfsd_copy_boot_verifier(verf, net_generic(nf->nf_net,
1167 nfsd_net_id));
1168 break;
1169 case -EINVAL:
1170 err = nfserr_notsupp;
1171 break;
1172 default:
1173 err = nfserrno(err2);
1174 nfsd_reset_boot_verifier(net_generic(nf->nf_net,
1175 nfsd_net_id));
1176 }
1177 up_write(&nf->nf_rwsem);
1178 } else
1179 nfsd_copy_boot_verifier(verf, net_generic(nf->nf_net,
1180 nfsd_net_id));
1181
1182 nfsd_file_put(nf);
1183 out:
1184 return err;
1185 }
1186 #endif /* CONFIG_NFSD_V3 */
1187
1188 static __be32
nfsd_create_setattr(struct svc_rqst * rqstp,struct svc_fh * resfhp,struct iattr * iap)1189 nfsd_create_setattr(struct svc_rqst *rqstp, struct svc_fh *resfhp,
1190 struct iattr *iap)
1191 {
1192 /*
1193 * Mode has already been set earlier in create:
1194 */
1195 iap->ia_valid &= ~ATTR_MODE;
1196 /*
1197 * Setting uid/gid works only for root. Irix appears to
1198 * send along the gid on create when it tries to implement
1199 * setgid directories via NFS:
1200 */
1201 if (!uid_eq(current_fsuid(), GLOBAL_ROOT_UID))
1202 iap->ia_valid &= ~(ATTR_UID|ATTR_GID);
1203 if (iap->ia_valid)
1204 return nfsd_setattr(rqstp, resfhp, iap, 0, (time64_t)0);
1205 /* Callers expect file metadata to be committed here */
1206 return nfserrno(commit_metadata(resfhp));
1207 }
1208
1209 /* HPUX client sometimes creates a file in mode 000, and sets size to 0.
1210 * setting size to 0 may fail for some specific file systems by the permission
1211 * checking which requires WRITE permission but the mode is 000.
1212 * we ignore the resizing(to 0) on the just new created file, since the size is
1213 * 0 after file created.
1214 *
1215 * call this only after vfs_create() is called.
1216 * */
1217 static void
nfsd_check_ignore_resizing(struct iattr * iap)1218 nfsd_check_ignore_resizing(struct iattr *iap)
1219 {
1220 if ((iap->ia_valid & ATTR_SIZE) && (iap->ia_size == 0))
1221 iap->ia_valid &= ~ATTR_SIZE;
1222 }
1223
1224 /* The parent directory should already be locked: */
1225 __be32
nfsd_create_locked(struct svc_rqst * rqstp,struct svc_fh * fhp,char * fname,int flen,struct iattr * iap,int type,dev_t rdev,struct svc_fh * resfhp)1226 nfsd_create_locked(struct svc_rqst *rqstp, struct svc_fh *fhp,
1227 char *fname, int flen, struct iattr *iap,
1228 int type, dev_t rdev, struct svc_fh *resfhp)
1229 {
1230 struct dentry *dentry, *dchild;
1231 struct inode *dirp;
1232 __be32 err;
1233 __be32 err2;
1234 int host_err;
1235
1236 dentry = fhp->fh_dentry;
1237 dirp = d_inode(dentry);
1238
1239 dchild = dget(resfhp->fh_dentry);
1240 if (!fhp->fh_locked) {
1241 WARN_ONCE(1, "nfsd_create: parent %pd2 not locked!\n",
1242 dentry);
1243 err = nfserr_io;
1244 goto out;
1245 }
1246
1247 err = nfsd_permission(rqstp, fhp->fh_export, dentry, NFSD_MAY_CREATE);
1248 if (err)
1249 goto out;
1250
1251 if (!(iap->ia_valid & ATTR_MODE))
1252 iap->ia_mode = 0;
1253 iap->ia_mode = (iap->ia_mode & S_IALLUGO) | type;
1254
1255 if (!IS_POSIXACL(dirp))
1256 iap->ia_mode &= ~current_umask();
1257
1258 err = 0;
1259 host_err = 0;
1260 switch (type) {
1261 case S_IFREG:
1262 host_err = vfs_create(dirp, dchild, iap->ia_mode, true);
1263 if (!host_err)
1264 nfsd_check_ignore_resizing(iap);
1265 break;
1266 case S_IFDIR:
1267 host_err = vfs_mkdir(dirp, dchild, iap->ia_mode);
1268 if (!host_err && unlikely(d_unhashed(dchild))) {
1269 struct dentry *d;
1270 d = lookup_one_len(dchild->d_name.name,
1271 dchild->d_parent,
1272 dchild->d_name.len);
1273 if (IS_ERR(d)) {
1274 host_err = PTR_ERR(d);
1275 break;
1276 }
1277 if (unlikely(d_is_negative(d))) {
1278 dput(d);
1279 err = nfserr_serverfault;
1280 goto out;
1281 }
1282 dput(resfhp->fh_dentry);
1283 resfhp->fh_dentry = dget(d);
1284 err = fh_update(resfhp);
1285 dput(dchild);
1286 dchild = d;
1287 if (err)
1288 goto out;
1289 }
1290 break;
1291 case S_IFCHR:
1292 case S_IFBLK:
1293 case S_IFIFO:
1294 case S_IFSOCK:
1295 host_err = vfs_mknod(dirp, dchild, iap->ia_mode, rdev);
1296 break;
1297 default:
1298 printk(KERN_WARNING "nfsd: bad file type %o in nfsd_create\n",
1299 type);
1300 host_err = -EINVAL;
1301 }
1302 if (host_err < 0)
1303 goto out_nfserr;
1304
1305 err = nfsd_create_setattr(rqstp, resfhp, iap);
1306
1307 /*
1308 * nfsd_create_setattr already committed the child. Transactional
1309 * filesystems had a chance to commit changes for both parent and
1310 * child simultaneously making the following commit_metadata a
1311 * noop.
1312 */
1313 err2 = nfserrno(commit_metadata(fhp));
1314 if (err2)
1315 err = err2;
1316 /*
1317 * Update the file handle to get the new inode info.
1318 */
1319 if (!err)
1320 err = fh_update(resfhp);
1321 out:
1322 dput(dchild);
1323 return err;
1324
1325 out_nfserr:
1326 err = nfserrno(host_err);
1327 goto out;
1328 }
1329
1330 /*
1331 * Create a filesystem object (regular, directory, special).
1332 * Note that the parent directory is left locked.
1333 *
1334 * N.B. Every call to nfsd_create needs an fh_put for _both_ fhp and resfhp
1335 */
1336 __be32
nfsd_create(struct svc_rqst * rqstp,struct svc_fh * fhp,char * fname,int flen,struct iattr * iap,int type,dev_t rdev,struct svc_fh * resfhp)1337 nfsd_create(struct svc_rqst *rqstp, struct svc_fh *fhp,
1338 char *fname, int flen, struct iattr *iap,
1339 int type, dev_t rdev, struct svc_fh *resfhp)
1340 {
1341 struct dentry *dentry, *dchild = NULL;
1342 __be32 err;
1343 int host_err;
1344
1345 if (isdotent(fname, flen))
1346 return nfserr_exist;
1347
1348 err = fh_verify(rqstp, fhp, S_IFDIR, NFSD_MAY_NOP);
1349 if (err)
1350 return err;
1351
1352 dentry = fhp->fh_dentry;
1353
1354 host_err = fh_want_write(fhp);
1355 if (host_err)
1356 return nfserrno(host_err);
1357
1358 fh_lock_nested(fhp, I_MUTEX_PARENT);
1359 dchild = lookup_one_len(fname, dentry, flen);
1360 host_err = PTR_ERR(dchild);
1361 if (IS_ERR(dchild))
1362 return nfserrno(host_err);
1363 err = fh_compose(resfhp, fhp->fh_export, dchild, fhp);
1364 /*
1365 * We unconditionally drop our ref to dchild as fh_compose will have
1366 * already grabbed its own ref for it.
1367 */
1368 dput(dchild);
1369 if (err)
1370 return err;
1371 return nfsd_create_locked(rqstp, fhp, fname, flen, iap, type,
1372 rdev, resfhp);
1373 }
1374
1375 #ifdef CONFIG_NFSD_V3
1376
1377 /*
1378 * NFSv3 and NFSv4 version of nfsd_create
1379 */
1380 __be32
do_nfsd_create(struct svc_rqst * rqstp,struct svc_fh * fhp,char * fname,int flen,struct iattr * iap,struct svc_fh * resfhp,int createmode,u32 * verifier,bool * truncp,bool * created)1381 do_nfsd_create(struct svc_rqst *rqstp, struct svc_fh *fhp,
1382 char *fname, int flen, struct iattr *iap,
1383 struct svc_fh *resfhp, int createmode, u32 *verifier,
1384 bool *truncp, bool *created)
1385 {
1386 struct dentry *dentry, *dchild = NULL;
1387 struct inode *dirp;
1388 __be32 err;
1389 int host_err;
1390 __u32 v_mtime=0, v_atime=0;
1391
1392 err = nfserr_perm;
1393 if (!flen)
1394 goto out;
1395 err = nfserr_exist;
1396 if (isdotent(fname, flen))
1397 goto out;
1398 if (!(iap->ia_valid & ATTR_MODE))
1399 iap->ia_mode = 0;
1400 err = fh_verify(rqstp, fhp, S_IFDIR, NFSD_MAY_EXEC);
1401 if (err)
1402 goto out;
1403
1404 dentry = fhp->fh_dentry;
1405 dirp = d_inode(dentry);
1406
1407 host_err = fh_want_write(fhp);
1408 if (host_err)
1409 goto out_nfserr;
1410
1411 fh_lock_nested(fhp, I_MUTEX_PARENT);
1412
1413 /*
1414 * Compose the response file handle.
1415 */
1416 dchild = lookup_one_len(fname, dentry, flen);
1417 host_err = PTR_ERR(dchild);
1418 if (IS_ERR(dchild))
1419 goto out_nfserr;
1420
1421 /* If file doesn't exist, check for permissions to create one */
1422 if (d_really_is_negative(dchild)) {
1423 err = fh_verify(rqstp, fhp, S_IFDIR, NFSD_MAY_CREATE);
1424 if (err)
1425 goto out;
1426 }
1427
1428 err = fh_compose(resfhp, fhp->fh_export, dchild, fhp);
1429 if (err)
1430 goto out;
1431
1432 if (nfsd_create_is_exclusive(createmode)) {
1433 /* solaris7 gets confused (bugid 4218508) if these have
1434 * the high bit set, so just clear the high bits. If this is
1435 * ever changed to use different attrs for storing the
1436 * verifier, then do_open_lookup() will also need to be fixed
1437 * accordingly.
1438 */
1439 v_mtime = verifier[0]&0x7fffffff;
1440 v_atime = verifier[1]&0x7fffffff;
1441 }
1442
1443 if (d_really_is_positive(dchild)) {
1444 err = 0;
1445
1446 switch (createmode) {
1447 case NFS3_CREATE_UNCHECKED:
1448 if (! d_is_reg(dchild))
1449 goto out;
1450 else if (truncp) {
1451 /* in nfsv4, we need to treat this case a little
1452 * differently. we don't want to truncate the
1453 * file now; this would be wrong if the OPEN
1454 * fails for some other reason. furthermore,
1455 * if the size is nonzero, we should ignore it
1456 * according to spec!
1457 */
1458 *truncp = (iap->ia_valid & ATTR_SIZE) && !iap->ia_size;
1459 }
1460 else {
1461 iap->ia_valid &= ATTR_SIZE;
1462 goto set_attr;
1463 }
1464 break;
1465 case NFS3_CREATE_EXCLUSIVE:
1466 if ( d_inode(dchild)->i_mtime.tv_sec == v_mtime
1467 && d_inode(dchild)->i_atime.tv_sec == v_atime
1468 && d_inode(dchild)->i_size == 0 ) {
1469 if (created)
1470 *created = true;
1471 break;
1472 }
1473 fallthrough;
1474 case NFS4_CREATE_EXCLUSIVE4_1:
1475 if ( d_inode(dchild)->i_mtime.tv_sec == v_mtime
1476 && d_inode(dchild)->i_atime.tv_sec == v_atime
1477 && d_inode(dchild)->i_size == 0 ) {
1478 if (created)
1479 *created = true;
1480 goto set_attr;
1481 }
1482 fallthrough;
1483 case NFS3_CREATE_GUARDED:
1484 err = nfserr_exist;
1485 }
1486 fh_drop_write(fhp);
1487 goto out;
1488 }
1489
1490 if (!IS_POSIXACL(dirp))
1491 iap->ia_mode &= ~current_umask();
1492
1493 host_err = vfs_create(dirp, dchild, iap->ia_mode, true);
1494 if (host_err < 0) {
1495 fh_drop_write(fhp);
1496 goto out_nfserr;
1497 }
1498 if (created)
1499 *created = true;
1500
1501 nfsd_check_ignore_resizing(iap);
1502
1503 if (nfsd_create_is_exclusive(createmode)) {
1504 /* Cram the verifier into atime/mtime */
1505 iap->ia_valid = ATTR_MTIME|ATTR_ATIME
1506 | ATTR_MTIME_SET|ATTR_ATIME_SET;
1507 /* XXX someone who knows this better please fix it for nsec */
1508 iap->ia_mtime.tv_sec = v_mtime;
1509 iap->ia_atime.tv_sec = v_atime;
1510 iap->ia_mtime.tv_nsec = 0;
1511 iap->ia_atime.tv_nsec = 0;
1512 }
1513
1514 set_attr:
1515 err = nfsd_create_setattr(rqstp, resfhp, iap);
1516
1517 /*
1518 * nfsd_create_setattr already committed the child
1519 * (and possibly also the parent).
1520 */
1521 if (!err)
1522 err = nfserrno(commit_metadata(fhp));
1523
1524 /*
1525 * Update the filehandle to get the new inode info.
1526 */
1527 if (!err)
1528 err = fh_update(resfhp);
1529
1530 out:
1531 fh_unlock(fhp);
1532 if (dchild && !IS_ERR(dchild))
1533 dput(dchild);
1534 fh_drop_write(fhp);
1535 return err;
1536
1537 out_nfserr:
1538 err = nfserrno(host_err);
1539 goto out;
1540 }
1541 #endif /* CONFIG_NFSD_V3 */
1542
1543 /*
1544 * Read a symlink. On entry, *lenp must contain the maximum path length that
1545 * fits into the buffer. On return, it contains the true length.
1546 * N.B. After this call fhp needs an fh_put
1547 */
1548 __be32
nfsd_readlink(struct svc_rqst * rqstp,struct svc_fh * fhp,char * buf,int * lenp)1549 nfsd_readlink(struct svc_rqst *rqstp, struct svc_fh *fhp, char *buf, int *lenp)
1550 {
1551 __be32 err;
1552 const char *link;
1553 struct path path;
1554 DEFINE_DELAYED_CALL(done);
1555 int len;
1556
1557 err = fh_verify(rqstp, fhp, S_IFLNK, NFSD_MAY_NOP);
1558 if (unlikely(err))
1559 return err;
1560
1561 path.mnt = fhp->fh_export->ex_path.mnt;
1562 path.dentry = fhp->fh_dentry;
1563
1564 if (unlikely(!d_is_symlink(path.dentry)))
1565 return nfserr_inval;
1566
1567 touch_atime(&path);
1568
1569 link = vfs_get_link(path.dentry, &done);
1570 if (IS_ERR(link))
1571 return nfserrno(PTR_ERR(link));
1572
1573 len = strlen(link);
1574 if (len < *lenp)
1575 *lenp = len;
1576 memcpy(buf, link, *lenp);
1577 do_delayed_call(&done);
1578 return 0;
1579 }
1580
1581 /*
1582 * Create a symlink and look up its inode
1583 * N.B. After this call _both_ fhp and resfhp need an fh_put
1584 */
1585 __be32
nfsd_symlink(struct svc_rqst * rqstp,struct svc_fh * fhp,char * fname,int flen,char * path,struct svc_fh * resfhp)1586 nfsd_symlink(struct svc_rqst *rqstp, struct svc_fh *fhp,
1587 char *fname, int flen,
1588 char *path,
1589 struct svc_fh *resfhp)
1590 {
1591 struct dentry *dentry, *dnew;
1592 __be32 err, cerr;
1593 int host_err;
1594
1595 err = nfserr_noent;
1596 if (!flen || path[0] == '\0')
1597 goto out;
1598 err = nfserr_exist;
1599 if (isdotent(fname, flen))
1600 goto out;
1601
1602 err = fh_verify(rqstp, fhp, S_IFDIR, NFSD_MAY_CREATE);
1603 if (err)
1604 goto out;
1605
1606 host_err = fh_want_write(fhp);
1607 if (host_err)
1608 goto out_nfserr;
1609
1610 fh_lock(fhp);
1611 dentry = fhp->fh_dentry;
1612 dnew = lookup_one_len(fname, dentry, flen);
1613 host_err = PTR_ERR(dnew);
1614 if (IS_ERR(dnew))
1615 goto out_nfserr;
1616
1617 host_err = vfs_symlink(d_inode(dentry), dnew, path);
1618 err = nfserrno(host_err);
1619 if (!err)
1620 err = nfserrno(commit_metadata(fhp));
1621 fh_unlock(fhp);
1622
1623 fh_drop_write(fhp);
1624
1625 cerr = fh_compose(resfhp, fhp->fh_export, dnew, fhp);
1626 dput(dnew);
1627 if (err==0) err = cerr;
1628 out:
1629 return err;
1630
1631 out_nfserr:
1632 err = nfserrno(host_err);
1633 goto out;
1634 }
1635
1636 /*
1637 * Create a hardlink
1638 * N.B. After this call _both_ ffhp and tfhp need an fh_put
1639 */
1640 __be32
nfsd_link(struct svc_rqst * rqstp,struct svc_fh * ffhp,char * name,int len,struct svc_fh * tfhp)1641 nfsd_link(struct svc_rqst *rqstp, struct svc_fh *ffhp,
1642 char *name, int len, struct svc_fh *tfhp)
1643 {
1644 struct dentry *ddir, *dnew, *dold;
1645 struct inode *dirp;
1646 __be32 err;
1647 int host_err;
1648
1649 err = fh_verify(rqstp, ffhp, S_IFDIR, NFSD_MAY_CREATE);
1650 if (err)
1651 goto out;
1652 err = fh_verify(rqstp, tfhp, 0, NFSD_MAY_NOP);
1653 if (err)
1654 goto out;
1655 err = nfserr_isdir;
1656 if (d_is_dir(tfhp->fh_dentry))
1657 goto out;
1658 err = nfserr_perm;
1659 if (!len)
1660 goto out;
1661 err = nfserr_exist;
1662 if (isdotent(name, len))
1663 goto out;
1664
1665 host_err = fh_want_write(tfhp);
1666 if (host_err) {
1667 err = nfserrno(host_err);
1668 goto out;
1669 }
1670
1671 fh_lock_nested(ffhp, I_MUTEX_PARENT);
1672 ddir = ffhp->fh_dentry;
1673 dirp = d_inode(ddir);
1674
1675 dnew = lookup_one_len(name, ddir, len);
1676 host_err = PTR_ERR(dnew);
1677 if (IS_ERR(dnew))
1678 goto out_nfserr;
1679
1680 dold = tfhp->fh_dentry;
1681
1682 err = nfserr_noent;
1683 if (d_really_is_negative(dold))
1684 goto out_dput;
1685 host_err = vfs_link(dold, dirp, dnew, NULL);
1686 if (!host_err) {
1687 err = nfserrno(commit_metadata(ffhp));
1688 if (!err)
1689 err = nfserrno(commit_metadata(tfhp));
1690 } else {
1691 if (host_err == -EXDEV && rqstp->rq_vers == 2)
1692 err = nfserr_acces;
1693 else
1694 err = nfserrno(host_err);
1695 }
1696 out_dput:
1697 dput(dnew);
1698 out_unlock:
1699 fh_unlock(ffhp);
1700 fh_drop_write(tfhp);
1701 out:
1702 return err;
1703
1704 out_nfserr:
1705 err = nfserrno(host_err);
1706 goto out_unlock;
1707 }
1708
1709 static void
nfsd_close_cached_files(struct dentry * dentry)1710 nfsd_close_cached_files(struct dentry *dentry)
1711 {
1712 struct inode *inode = d_inode(dentry);
1713
1714 if (inode && S_ISREG(inode->i_mode))
1715 nfsd_file_close_inode_sync(inode);
1716 }
1717
1718 static bool
nfsd_has_cached_files(struct dentry * dentry)1719 nfsd_has_cached_files(struct dentry *dentry)
1720 {
1721 bool ret = false;
1722 struct inode *inode = d_inode(dentry);
1723
1724 if (inode && S_ISREG(inode->i_mode))
1725 ret = nfsd_file_is_cached(inode);
1726 return ret;
1727 }
1728
1729 /*
1730 * Rename a file
1731 * N.B. After this call _both_ ffhp and tfhp need an fh_put
1732 */
1733 __be32
nfsd_rename(struct svc_rqst * rqstp,struct svc_fh * ffhp,char * fname,int flen,struct svc_fh * tfhp,char * tname,int tlen)1734 nfsd_rename(struct svc_rqst *rqstp, struct svc_fh *ffhp, char *fname, int flen,
1735 struct svc_fh *tfhp, char *tname, int tlen)
1736 {
1737 struct dentry *fdentry, *tdentry, *odentry, *ndentry, *trap;
1738 struct inode *fdir, *tdir;
1739 __be32 err;
1740 int host_err;
1741 bool has_cached = false;
1742
1743 err = fh_verify(rqstp, ffhp, S_IFDIR, NFSD_MAY_REMOVE);
1744 if (err)
1745 goto out;
1746 err = fh_verify(rqstp, tfhp, S_IFDIR, NFSD_MAY_CREATE);
1747 if (err)
1748 goto out;
1749
1750 fdentry = ffhp->fh_dentry;
1751 fdir = d_inode(fdentry);
1752
1753 tdentry = tfhp->fh_dentry;
1754 tdir = d_inode(tdentry);
1755
1756 err = nfserr_perm;
1757 if (!flen || isdotent(fname, flen) || !tlen || isdotent(tname, tlen))
1758 goto out;
1759
1760 retry:
1761 host_err = fh_want_write(ffhp);
1762 if (host_err) {
1763 err = nfserrno(host_err);
1764 goto out;
1765 }
1766
1767 /* cannot use fh_lock as we need deadlock protective ordering
1768 * so do it by hand */
1769 trap = lock_rename(tdentry, fdentry);
1770 ffhp->fh_locked = tfhp->fh_locked = true;
1771 fill_pre_wcc(ffhp);
1772 fill_pre_wcc(tfhp);
1773
1774 odentry = lookup_one_len(fname, fdentry, flen);
1775 host_err = PTR_ERR(odentry);
1776 if (IS_ERR(odentry))
1777 goto out_nfserr;
1778
1779 host_err = -ENOENT;
1780 if (d_really_is_negative(odentry))
1781 goto out_dput_old;
1782 host_err = -EINVAL;
1783 if (odentry == trap)
1784 goto out_dput_old;
1785
1786 ndentry = lookup_one_len(tname, tdentry, tlen);
1787 host_err = PTR_ERR(ndentry);
1788 if (IS_ERR(ndentry))
1789 goto out_dput_old;
1790 host_err = -ENOTEMPTY;
1791 if (ndentry == trap)
1792 goto out_dput_new;
1793
1794 host_err = -EXDEV;
1795 if (ffhp->fh_export->ex_path.mnt != tfhp->fh_export->ex_path.mnt)
1796 goto out_dput_new;
1797 if (ffhp->fh_export->ex_path.dentry != tfhp->fh_export->ex_path.dentry)
1798 goto out_dput_new;
1799
1800 if (nfsd_has_cached_files(ndentry)) {
1801 has_cached = true;
1802 goto out_dput_old;
1803 } else {
1804 host_err = vfs_rename(fdir, odentry, tdir, ndentry, NULL, 0);
1805 if (!host_err) {
1806 host_err = commit_metadata(tfhp);
1807 if (!host_err)
1808 host_err = commit_metadata(ffhp);
1809 }
1810 }
1811 out_dput_new:
1812 dput(ndentry);
1813 out_dput_old:
1814 dput(odentry);
1815 out_nfserr:
1816 err = nfserrno(host_err);
1817 /*
1818 * We cannot rely on fh_unlock on the two filehandles,
1819 * as that would do the wrong thing if the two directories
1820 * were the same, so again we do it by hand.
1821 */
1822 if (!has_cached) {
1823 fill_post_wcc(ffhp);
1824 fill_post_wcc(tfhp);
1825 }
1826 unlock_rename(tdentry, fdentry);
1827 ffhp->fh_locked = tfhp->fh_locked = false;
1828 fh_drop_write(ffhp);
1829
1830 /*
1831 * If the target dentry has cached open files, then we need to try to
1832 * close them prior to doing the rename. Flushing delayed fput
1833 * shouldn't be done with locks held however, so we delay it until this
1834 * point and then reattempt the whole shebang.
1835 */
1836 if (has_cached) {
1837 has_cached = false;
1838 nfsd_close_cached_files(ndentry);
1839 dput(ndentry);
1840 goto retry;
1841 }
1842 out:
1843 return err;
1844 }
1845
1846 /*
1847 * Unlink a file or directory
1848 * N.B. After this call fhp needs an fh_put
1849 */
1850 __be32
nfsd_unlink(struct svc_rqst * rqstp,struct svc_fh * fhp,int type,char * fname,int flen)1851 nfsd_unlink(struct svc_rqst *rqstp, struct svc_fh *fhp, int type,
1852 char *fname, int flen)
1853 {
1854 struct dentry *dentry, *rdentry;
1855 struct inode *dirp;
1856 __be32 err;
1857 int host_err;
1858
1859 err = nfserr_acces;
1860 if (!flen || isdotent(fname, flen))
1861 goto out;
1862 err = fh_verify(rqstp, fhp, S_IFDIR, NFSD_MAY_REMOVE);
1863 if (err)
1864 goto out;
1865
1866 host_err = fh_want_write(fhp);
1867 if (host_err)
1868 goto out_nfserr;
1869
1870 fh_lock_nested(fhp, I_MUTEX_PARENT);
1871 dentry = fhp->fh_dentry;
1872 dirp = d_inode(dentry);
1873
1874 rdentry = lookup_one_len(fname, dentry, flen);
1875 host_err = PTR_ERR(rdentry);
1876 if (IS_ERR(rdentry))
1877 goto out_drop_write;
1878
1879 if (d_really_is_negative(rdentry)) {
1880 dput(rdentry);
1881 host_err = -ENOENT;
1882 goto out_drop_write;
1883 }
1884
1885 if (!type)
1886 type = d_inode(rdentry)->i_mode & S_IFMT;
1887
1888 if (type != S_IFDIR) {
1889 nfsd_close_cached_files(rdentry);
1890 host_err = vfs_unlink(dirp, rdentry, NULL);
1891 } else {
1892 host_err = vfs_rmdir(dirp, rdentry);
1893 }
1894
1895 if (!host_err)
1896 host_err = commit_metadata(fhp);
1897 dput(rdentry);
1898
1899 out_drop_write:
1900 fh_drop_write(fhp);
1901 out_nfserr:
1902 if (host_err == -EBUSY) {
1903 /* name is mounted-on. There is no perfect
1904 * error status.
1905 */
1906 if (nfsd_v4client(rqstp))
1907 err = nfserr_file_open;
1908 else
1909 err = nfserr_acces;
1910 } else {
1911 err = nfserrno(host_err);
1912 }
1913 out:
1914 return err;
1915 }
1916
1917 /*
1918 * We do this buffering because we must not call back into the file
1919 * system's ->lookup() method from the filldir callback. That may well
1920 * deadlock a number of file systems.
1921 *
1922 * This is based heavily on the implementation of same in XFS.
1923 */
1924 struct buffered_dirent {
1925 u64 ino;
1926 loff_t offset;
1927 int namlen;
1928 unsigned int d_type;
1929 char name[];
1930 };
1931
1932 struct readdir_data {
1933 struct dir_context ctx;
1934 char *dirent;
1935 size_t used;
1936 int full;
1937 };
1938
nfsd_buffered_filldir(struct dir_context * ctx,const char * name,int namlen,loff_t offset,u64 ino,unsigned int d_type)1939 static int nfsd_buffered_filldir(struct dir_context *ctx, const char *name,
1940 int namlen, loff_t offset, u64 ino,
1941 unsigned int d_type)
1942 {
1943 struct readdir_data *buf =
1944 container_of(ctx, struct readdir_data, ctx);
1945 struct buffered_dirent *de = (void *)(buf->dirent + buf->used);
1946 unsigned int reclen;
1947
1948 reclen = ALIGN(sizeof(struct buffered_dirent) + namlen, sizeof(u64));
1949 if (buf->used + reclen > PAGE_SIZE) {
1950 buf->full = 1;
1951 return -EINVAL;
1952 }
1953
1954 de->namlen = namlen;
1955 de->offset = offset;
1956 de->ino = ino;
1957 de->d_type = d_type;
1958 memcpy(de->name, name, namlen);
1959 buf->used += reclen;
1960
1961 return 0;
1962 }
1963
nfsd_buffered_readdir(struct file * file,nfsd_filldir_t func,struct readdir_cd * cdp,loff_t * offsetp)1964 static __be32 nfsd_buffered_readdir(struct file *file, nfsd_filldir_t func,
1965 struct readdir_cd *cdp, loff_t *offsetp)
1966 {
1967 struct buffered_dirent *de;
1968 int host_err;
1969 int size;
1970 loff_t offset;
1971 struct readdir_data buf = {
1972 .ctx.actor = nfsd_buffered_filldir,
1973 .dirent = (void *)__get_free_page(GFP_KERNEL)
1974 };
1975
1976 if (!buf.dirent)
1977 return nfserrno(-ENOMEM);
1978
1979 offset = *offsetp;
1980
1981 while (1) {
1982 unsigned int reclen;
1983
1984 cdp->err = nfserr_eof; /* will be cleared on successful read */
1985 buf.used = 0;
1986 buf.full = 0;
1987
1988 host_err = iterate_dir(file, &buf.ctx);
1989 if (buf.full)
1990 host_err = 0;
1991
1992 if (host_err < 0)
1993 break;
1994
1995 size = buf.used;
1996
1997 if (!size)
1998 break;
1999
2000 de = (struct buffered_dirent *)buf.dirent;
2001 while (size > 0) {
2002 offset = de->offset;
2003
2004 if (func(cdp, de->name, de->namlen, de->offset,
2005 de->ino, de->d_type))
2006 break;
2007
2008 if (cdp->err != nfs_ok)
2009 break;
2010
2011 reclen = ALIGN(sizeof(*de) + de->namlen,
2012 sizeof(u64));
2013 size -= reclen;
2014 de = (struct buffered_dirent *)((char *)de + reclen);
2015 }
2016 if (size > 0) /* We bailed out early */
2017 break;
2018
2019 offset = vfs_llseek(file, 0, SEEK_CUR);
2020 }
2021
2022 free_page((unsigned long)(buf.dirent));
2023
2024 if (host_err)
2025 return nfserrno(host_err);
2026
2027 *offsetp = offset;
2028 return cdp->err;
2029 }
2030
2031 /*
2032 * Read entries from a directory.
2033 * The NFSv3/4 verifier we ignore for now.
2034 */
2035 __be32
nfsd_readdir(struct svc_rqst * rqstp,struct svc_fh * fhp,loff_t * offsetp,struct readdir_cd * cdp,nfsd_filldir_t func)2036 nfsd_readdir(struct svc_rqst *rqstp, struct svc_fh *fhp, loff_t *offsetp,
2037 struct readdir_cd *cdp, nfsd_filldir_t func)
2038 {
2039 __be32 err;
2040 struct file *file;
2041 loff_t offset = *offsetp;
2042 int may_flags = NFSD_MAY_READ;
2043
2044 /* NFSv2 only supports 32 bit cookies */
2045 if (rqstp->rq_vers > 2)
2046 may_flags |= NFSD_MAY_64BIT_COOKIE;
2047
2048 err = nfsd_open(rqstp, fhp, S_IFDIR, may_flags, &file);
2049 if (err)
2050 goto out;
2051
2052 offset = vfs_llseek(file, offset, SEEK_SET);
2053 if (offset < 0) {
2054 err = nfserrno((int)offset);
2055 goto out_close;
2056 }
2057
2058 err = nfsd_buffered_readdir(file, func, cdp, offsetp);
2059
2060 if (err == nfserr_eof || err == nfserr_toosmall)
2061 err = nfs_ok; /* can still be found in ->err */
2062 out_close:
2063 fput(file);
2064 out:
2065 return err;
2066 }
2067
2068 /*
2069 * Get file system stats
2070 * N.B. After this call fhp needs an fh_put
2071 */
2072 __be32
nfsd_statfs(struct svc_rqst * rqstp,struct svc_fh * fhp,struct kstatfs * stat,int access)2073 nfsd_statfs(struct svc_rqst *rqstp, struct svc_fh *fhp, struct kstatfs *stat, int access)
2074 {
2075 __be32 err;
2076
2077 err = fh_verify(rqstp, fhp, 0, NFSD_MAY_NOP | access);
2078 if (!err) {
2079 struct path path = {
2080 .mnt = fhp->fh_export->ex_path.mnt,
2081 .dentry = fhp->fh_dentry,
2082 };
2083 if (vfs_statfs(&path, stat))
2084 err = nfserr_io;
2085 }
2086 return err;
2087 }
2088
exp_rdonly(struct svc_rqst * rqstp,struct svc_export * exp)2089 static int exp_rdonly(struct svc_rqst *rqstp, struct svc_export *exp)
2090 {
2091 return nfsexp_flags(rqstp, exp) & NFSEXP_READONLY;
2092 }
2093
2094 #ifdef CONFIG_NFSD_V4
2095 /*
2096 * Helper function to translate error numbers. In the case of xattr operations,
2097 * some error codes need to be translated outside of the standard translations.
2098 *
2099 * ENODATA needs to be translated to nfserr_noxattr.
2100 * E2BIG to nfserr_xattr2big.
2101 *
2102 * Additionally, vfs_listxattr can return -ERANGE. This means that the
2103 * file has too many extended attributes to retrieve inside an
2104 * XATTR_LIST_MAX sized buffer. This is a bug in the xattr implementation:
2105 * filesystems will allow the adding of extended attributes until they hit
2106 * their own internal limit. This limit may be larger than XATTR_LIST_MAX.
2107 * So, at that point, the attributes are present and valid, but can't
2108 * be retrieved using listxattr, since the upper level xattr code enforces
2109 * the XATTR_LIST_MAX limit.
2110 *
2111 * This bug means that we need to deal with listxattr returning -ERANGE. The
2112 * best mapping is to return TOOSMALL.
2113 */
2114 static __be32
nfsd_xattr_errno(int err)2115 nfsd_xattr_errno(int err)
2116 {
2117 switch (err) {
2118 case -ENODATA:
2119 return nfserr_noxattr;
2120 case -E2BIG:
2121 return nfserr_xattr2big;
2122 case -ERANGE:
2123 return nfserr_toosmall;
2124 }
2125 return nfserrno(err);
2126 }
2127
2128 /*
2129 * Retrieve the specified user extended attribute. To avoid always
2130 * having to allocate the maximum size (since we are not getting
2131 * a maximum size from the RPC), do a probe + alloc. Hold a reader
2132 * lock on i_rwsem to prevent the extended attribute from changing
2133 * size while we're doing this.
2134 */
2135 __be32
nfsd_getxattr(struct svc_rqst * rqstp,struct svc_fh * fhp,char * name,void ** bufp,int * lenp)2136 nfsd_getxattr(struct svc_rqst *rqstp, struct svc_fh *fhp, char *name,
2137 void **bufp, int *lenp)
2138 {
2139 ssize_t len;
2140 __be32 err;
2141 char *buf;
2142 struct inode *inode;
2143 struct dentry *dentry;
2144
2145 err = fh_verify(rqstp, fhp, 0, NFSD_MAY_READ);
2146 if (err)
2147 return err;
2148
2149 err = nfs_ok;
2150 dentry = fhp->fh_dentry;
2151 inode = d_inode(dentry);
2152
2153 inode_lock_shared(inode);
2154
2155 len = vfs_getxattr(dentry, name, NULL, 0);
2156
2157 /*
2158 * Zero-length attribute, just return.
2159 */
2160 if (len == 0) {
2161 *bufp = NULL;
2162 *lenp = 0;
2163 goto out;
2164 }
2165
2166 if (len < 0) {
2167 err = nfsd_xattr_errno(len);
2168 goto out;
2169 }
2170
2171 if (len > *lenp) {
2172 err = nfserr_toosmall;
2173 goto out;
2174 }
2175
2176 buf = kvmalloc(len, GFP_KERNEL | GFP_NOFS);
2177 if (buf == NULL) {
2178 err = nfserr_jukebox;
2179 goto out;
2180 }
2181
2182 len = vfs_getxattr(dentry, name, buf, len);
2183 if (len <= 0) {
2184 kvfree(buf);
2185 buf = NULL;
2186 err = nfsd_xattr_errno(len);
2187 }
2188
2189 *lenp = len;
2190 *bufp = buf;
2191
2192 out:
2193 inode_unlock_shared(inode);
2194
2195 return err;
2196 }
2197
2198 /*
2199 * Retrieve the xattr names. Since we can't know how many are
2200 * user extended attributes, we must get all attributes here,
2201 * and have the XDR encode filter out the "user." ones.
2202 *
2203 * While this could always just allocate an XATTR_LIST_MAX
2204 * buffer, that's a waste, so do a probe + allocate. To
2205 * avoid any changes between the probe and allocate, wrap
2206 * this in inode_lock.
2207 */
2208 __be32
nfsd_listxattr(struct svc_rqst * rqstp,struct svc_fh * fhp,char ** bufp,int * lenp)2209 nfsd_listxattr(struct svc_rqst *rqstp, struct svc_fh *fhp, char **bufp,
2210 int *lenp)
2211 {
2212 ssize_t len;
2213 __be32 err;
2214 char *buf;
2215 struct inode *inode;
2216 struct dentry *dentry;
2217
2218 err = fh_verify(rqstp, fhp, 0, NFSD_MAY_READ);
2219 if (err)
2220 return err;
2221
2222 dentry = fhp->fh_dentry;
2223 inode = d_inode(dentry);
2224 *lenp = 0;
2225
2226 inode_lock_shared(inode);
2227
2228 len = vfs_listxattr(dentry, NULL, 0);
2229 if (len <= 0) {
2230 err = nfsd_xattr_errno(len);
2231 goto out;
2232 }
2233
2234 if (len > XATTR_LIST_MAX) {
2235 err = nfserr_xattr2big;
2236 goto out;
2237 }
2238
2239 /*
2240 * We're holding i_rwsem - use GFP_NOFS.
2241 */
2242 buf = kvmalloc(len, GFP_KERNEL | GFP_NOFS);
2243 if (buf == NULL) {
2244 err = nfserr_jukebox;
2245 goto out;
2246 }
2247
2248 len = vfs_listxattr(dentry, buf, len);
2249 if (len <= 0) {
2250 kvfree(buf);
2251 err = nfsd_xattr_errno(len);
2252 goto out;
2253 }
2254
2255 *lenp = len;
2256 *bufp = buf;
2257
2258 err = nfs_ok;
2259 out:
2260 inode_unlock_shared(inode);
2261
2262 return err;
2263 }
2264
2265 /*
2266 * Removexattr and setxattr need to call fh_lock to both lock the inode
2267 * and set the change attribute. Since the top-level vfs_removexattr
2268 * and vfs_setxattr calls already do their own inode_lock calls, call
2269 * the _locked variant. Pass in a NULL pointer for delegated_inode,
2270 * and let the client deal with NFS4ERR_DELAY (same as with e.g.
2271 * setattr and remove).
2272 */
2273 __be32
nfsd_removexattr(struct svc_rqst * rqstp,struct svc_fh * fhp,char * name)2274 nfsd_removexattr(struct svc_rqst *rqstp, struct svc_fh *fhp, char *name)
2275 {
2276 __be32 err;
2277 int ret;
2278
2279 err = fh_verify(rqstp, fhp, 0, NFSD_MAY_WRITE);
2280 if (err)
2281 return err;
2282
2283 ret = fh_want_write(fhp);
2284 if (ret)
2285 return nfserrno(ret);
2286
2287 fh_lock(fhp);
2288
2289 ret = __vfs_removexattr_locked(fhp->fh_dentry, name, NULL);
2290
2291 fh_unlock(fhp);
2292 fh_drop_write(fhp);
2293
2294 return nfsd_xattr_errno(ret);
2295 }
2296
2297 __be32
nfsd_setxattr(struct svc_rqst * rqstp,struct svc_fh * fhp,char * name,void * buf,u32 len,u32 flags)2298 nfsd_setxattr(struct svc_rqst *rqstp, struct svc_fh *fhp, char *name,
2299 void *buf, u32 len, u32 flags)
2300 {
2301 __be32 err;
2302 int ret;
2303
2304 err = fh_verify(rqstp, fhp, 0, NFSD_MAY_WRITE);
2305 if (err)
2306 return err;
2307
2308 ret = fh_want_write(fhp);
2309 if (ret)
2310 return nfserrno(ret);
2311 fh_lock(fhp);
2312
2313 ret = __vfs_setxattr_locked(fhp->fh_dentry, name, buf, len, flags,
2314 NULL);
2315
2316 fh_unlock(fhp);
2317 fh_drop_write(fhp);
2318
2319 return nfsd_xattr_errno(ret);
2320 }
2321 #endif
2322
2323 /*
2324 * Check for a user's access permissions to this inode.
2325 */
2326 __be32
nfsd_permission(struct svc_rqst * rqstp,struct svc_export * exp,struct dentry * dentry,int acc)2327 nfsd_permission(struct svc_rqst *rqstp, struct svc_export *exp,
2328 struct dentry *dentry, int acc)
2329 {
2330 struct inode *inode = d_inode(dentry);
2331 int err;
2332
2333 if ((acc & NFSD_MAY_MASK) == NFSD_MAY_NOP)
2334 return 0;
2335 #if 0
2336 dprintk("nfsd: permission 0x%x%s%s%s%s%s%s%s mode 0%o%s%s%s\n",
2337 acc,
2338 (acc & NFSD_MAY_READ)? " read" : "",
2339 (acc & NFSD_MAY_WRITE)? " write" : "",
2340 (acc & NFSD_MAY_EXEC)? " exec" : "",
2341 (acc & NFSD_MAY_SATTR)? " sattr" : "",
2342 (acc & NFSD_MAY_TRUNC)? " trunc" : "",
2343 (acc & NFSD_MAY_LOCK)? " lock" : "",
2344 (acc & NFSD_MAY_OWNER_OVERRIDE)? " owneroverride" : "",
2345 inode->i_mode,
2346 IS_IMMUTABLE(inode)? " immut" : "",
2347 IS_APPEND(inode)? " append" : "",
2348 __mnt_is_readonly(exp->ex_path.mnt)? " ro" : "");
2349 dprintk(" owner %d/%d user %d/%d\n",
2350 inode->i_uid, inode->i_gid, current_fsuid(), current_fsgid());
2351 #endif
2352
2353 /* Normally we reject any write/sattr etc access on a read-only file
2354 * system. But if it is IRIX doing check on write-access for a
2355 * device special file, we ignore rofs.
2356 */
2357 if (!(acc & NFSD_MAY_LOCAL_ACCESS))
2358 if (acc & (NFSD_MAY_WRITE | NFSD_MAY_SATTR | NFSD_MAY_TRUNC)) {
2359 if (exp_rdonly(rqstp, exp) ||
2360 __mnt_is_readonly(exp->ex_path.mnt))
2361 return nfserr_rofs;
2362 if (/* (acc & NFSD_MAY_WRITE) && */ IS_IMMUTABLE(inode))
2363 return nfserr_perm;
2364 }
2365 if ((acc & NFSD_MAY_TRUNC) && IS_APPEND(inode))
2366 return nfserr_perm;
2367
2368 if (acc & NFSD_MAY_LOCK) {
2369 /* If we cannot rely on authentication in NLM requests,
2370 * just allow locks, otherwise require read permission, or
2371 * ownership
2372 */
2373 if (exp->ex_flags & NFSEXP_NOAUTHNLM)
2374 return 0;
2375 else
2376 acc = NFSD_MAY_READ | NFSD_MAY_OWNER_OVERRIDE;
2377 }
2378 /*
2379 * The file owner always gets access permission for accesses that
2380 * would normally be checked at open time. This is to make
2381 * file access work even when the client has done a fchmod(fd, 0).
2382 *
2383 * However, `cp foo bar' should fail nevertheless when bar is
2384 * readonly. A sensible way to do this might be to reject all
2385 * attempts to truncate a read-only file, because a creat() call
2386 * always implies file truncation.
2387 * ... but this isn't really fair. A process may reasonably call
2388 * ftruncate on an open file descriptor on a file with perm 000.
2389 * We must trust the client to do permission checking - using "ACCESS"
2390 * with NFSv3.
2391 */
2392 if ((acc & NFSD_MAY_OWNER_OVERRIDE) &&
2393 uid_eq(inode->i_uid, current_fsuid()))
2394 return 0;
2395
2396 /* This assumes NFSD_MAY_{READ,WRITE,EXEC} == MAY_{READ,WRITE,EXEC} */
2397 err = inode_permission(inode, acc & (MAY_READ|MAY_WRITE|MAY_EXEC));
2398
2399 /* Allow read access to binaries even when mode 111 */
2400 if (err == -EACCES && S_ISREG(inode->i_mode) &&
2401 (acc == (NFSD_MAY_READ | NFSD_MAY_OWNER_OVERRIDE) ||
2402 acc == (NFSD_MAY_READ | NFSD_MAY_READ_IF_EXEC)))
2403 err = inode_permission(inode, MAY_EXEC);
2404
2405 return err? nfserrno(err) : 0;
2406 }
2407