xref: /linux/fs/smb/server/vfs.c (revision b49024d79fb7304f646003fcd8846ef26dea7e92)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  *   Copyright (C) 2016 Namjae Jeon <linkinjeon@kernel.org>
4  *   Copyright (C) 2018 Samsung Electronics Co., Ltd.
5  */
6 
7 #include <crypto/sha2.h>
8 #include <linux/kernel.h>
9 #include <linux/fs.h>
10 #include <linux/fs_struct.h>
11 #include <linux/filelock.h>
12 #include <linux/uaccess.h>
13 #include <linux/backing-dev.h>
14 #include <linux/writeback.h>
15 #include <linux/xattr.h>
16 #include <linux/falloc.h>
17 #include <linux/fsnotify.h>
18 #include <linux/dcache.h>
19 #include <linux/slab.h>
20 #include <linux/sizes.h>
21 #include <linux/vmalloc.h>
22 #include <linux/sched/xacct.h>
23 #include <linux/crc32c.h>
24 #include <linux/fileattr.h>
25 
26 #include "glob.h"
27 #include "oplock.h"
28 #include "connection.h"
29 #include "vfs.h"
30 #include "vfs_cache.h"
31 #include "smbacl.h"
32 #include "ndr.h"
33 #include "auth.h"
34 #include "misc.h"
35 #include "stats.h"
36 
37 #include "smb_common.h"
38 #include "mgmt/share_config.h"
39 #include "mgmt/tree_connect.h"
40 #include "mgmt/user_session.h"
41 #include "mgmt/user_config.h"
42 
ksmbd_vfs_inherit_owner(struct ksmbd_work * work,struct inode * parent_inode,struct inode * inode)43 static void ksmbd_vfs_inherit_owner(struct ksmbd_work *work,
44 				    struct inode *parent_inode,
45 				    struct inode *inode)
46 {
47 	if (!test_share_config_flag(work->tcon->share_conf,
48 				    KSMBD_SHARE_FLAG_INHERIT_OWNER))
49 		return;
50 
51 	i_uid_write(inode, i_uid_read(parent_inode));
52 }
53 
ksmbd_vfs_path_lookup(struct ksmbd_share_config * share_conf,char * pathname,unsigned int flags,struct path * path,bool for_remove)54 static int ksmbd_vfs_path_lookup(struct ksmbd_share_config *share_conf,
55 				 char *pathname, unsigned int flags,
56 				 struct path *path, bool for_remove)
57 {
58 	struct qstr last;
59 	const struct path *root_share_path = &share_conf->vfs_path;
60 	int err;
61 	struct dentry *d;
62 
63 	if (pathname[0] == '\0') {
64 		pathname = share_conf->path;
65 		root_share_path = NULL;
66 	} else {
67 		flags |= LOOKUP_BENEATH;
68 	}
69 
70 	CLASS(filename_kernel, filename)(pathname);
71 	scoped_with_init_fs()
72 		err = vfs_path_parent_lookup(filename, flags, path, &last,
73 					     root_share_path);
74 	if (err)
75 		return err;
76 
77 	if (for_remove) {
78 		err = mnt_want_write(path->mnt);
79 		if (err) {
80 			path_put(path);
81 			return -ENOENT;
82 		}
83 
84 		d = start_removing_noperm(path->dentry, &last);
85 
86 		if (!IS_ERR(d)) {
87 			dput(path->dentry);
88 			path->dentry = d;
89 			return 0;
90 		}
91 		mnt_drop_write(path->mnt);
92 		path_put(path);
93 		return -ENOENT;
94 	}
95 
96 	d = lookup_noperm_unlocked(&last, path->dentry);
97 	if (!IS_ERR(d) && d_is_negative(d)) {
98 		dput(d);
99 		d = ERR_PTR(-ENOENT);
100 	}
101 	if (IS_ERR(d)) {
102 		path_put(path);
103 		return -ENOENT;
104 	}
105 	dput(path->dentry);
106 	path->dentry = d;
107 
108 	if (test_share_config_flag(share_conf, KSMBD_SHARE_FLAG_CROSSMNT)) {
109 		err = follow_down(path, 0);
110 		if (err < 0) {
111 			path_put(path);
112 			return -ENOENT;
113 		}
114 	}
115 	return 0;
116 }
117 
ksmbd_vfs_query_maximal_access(struct mnt_idmap * idmap,struct dentry * dentry,__le32 * daccess)118 void ksmbd_vfs_query_maximal_access(struct mnt_idmap *idmap,
119 				   struct dentry *dentry, __le32 *daccess)
120 {
121 	*daccess = cpu_to_le32(FILE_READ_ATTRIBUTES | READ_CONTROL);
122 
123 	if (!inode_permission(idmap, d_inode(dentry), MAY_OPEN | MAY_WRITE))
124 		*daccess |= cpu_to_le32(WRITE_DAC | WRITE_OWNER | SYNCHRONIZE |
125 				FILE_WRITE_DATA | FILE_APPEND_DATA |
126 				FILE_WRITE_EA | FILE_WRITE_ATTRIBUTES |
127 				FILE_DELETE_CHILD);
128 
129 	if (!inode_permission(idmap, d_inode(dentry), MAY_OPEN | MAY_READ))
130 		*daccess |= FILE_READ_DATA_LE | FILE_READ_EA_LE;
131 
132 	if (!inode_permission(idmap, d_inode(dentry), MAY_OPEN | MAY_EXEC))
133 		*daccess |= FILE_EXECUTE_LE;
134 
135 	if (!inode_permission(idmap, d_inode(dentry->d_parent), MAY_EXEC | MAY_WRITE))
136 		*daccess |= FILE_DELETE_LE;
137 }
138 
139 /**
140  * ksmbd_vfs_create() - vfs helper for smb create file
141  * @work:	work
142  * @name:	file name that is relative to share
143  * @mode:	file create mode
144  *
145  * Return:	0 on success, otherwise error
146  */
ksmbd_vfs_create(struct ksmbd_work * work,const char * name,umode_t mode)147 int ksmbd_vfs_create(struct ksmbd_work *work, const char *name, umode_t mode)
148 {
149 	struct path path;
150 	struct dentry *dentry;
151 	int err;
152 
153 	dentry = ksmbd_vfs_kern_path_create(work, name,
154 					    LOOKUP_NO_SYMLINKS, &path);
155 	if (IS_ERR(dentry)) {
156 		err = PTR_ERR(dentry);
157 		if (err != -ENOENT)
158 			pr_err("path create failed for %s, err %d\n",
159 			       name, err);
160 		return err;
161 	}
162 
163 	mode |= S_IFREG;
164 	err = vfs_create(mnt_idmap(path.mnt), dentry, mode, NULL);
165 	if (!err) {
166 		ksmbd_vfs_inherit_owner(work, d_inode(path.dentry),
167 					d_inode(dentry));
168 	} else {
169 		pr_err("File(%s): creation failed (err:%d)\n", name, err);
170 	}
171 
172 	end_creating_path(&path, dentry);
173 	return err;
174 }
175 
176 /**
177  * ksmbd_vfs_mkdir() - vfs helper for smb create directory
178  * @work:	work
179  * @name:	directory name that is relative to share
180  * @mode:	directory create mode
181  *
182  * Return:	0 on success, otherwise error
183  */
ksmbd_vfs_mkdir(struct ksmbd_work * work,const char * name,umode_t mode)184 int ksmbd_vfs_mkdir(struct ksmbd_work *work, const char *name, umode_t mode)
185 {
186 	struct mnt_idmap *idmap;
187 	struct path path;
188 	struct dentry *dentry, *d;
189 	int err = 0;
190 
191 	dentry = ksmbd_vfs_kern_path_create(work, name,
192 					    LOOKUP_NO_SYMLINKS | LOOKUP_DIRECTORY,
193 					    &path);
194 	if (IS_ERR(dentry)) {
195 		err = PTR_ERR(dentry);
196 		if (err != -EEXIST)
197 			ksmbd_debug(VFS, "path create failed for %s, err %d\n",
198 				    name, err);
199 		return err;
200 	}
201 
202 	idmap = mnt_idmap(path.mnt);
203 	mode |= S_IFDIR;
204 	d = dentry;
205 	dentry = vfs_mkdir(idmap, d_inode(path.dentry), dentry, mode, NULL);
206 	if (IS_ERR(dentry))
207 		err = PTR_ERR(dentry);
208 	else if (d_is_negative(dentry))
209 		err = -ENOENT;
210 	if (!err && dentry != d)
211 		ksmbd_vfs_inherit_owner(work, d_inode(path.dentry), d_inode(dentry));
212 
213 	end_creating_path(&path, dentry);
214 	if (err)
215 		pr_err("mkdir(%s): creation failed (err:%d)\n", name, err);
216 	return err;
217 }
218 
ksmbd_vfs_getcasexattr(struct mnt_idmap * idmap,struct dentry * dentry,char * attr_name,int attr_name_len,char ** attr_value)219 static ssize_t ksmbd_vfs_getcasexattr(struct mnt_idmap *idmap,
220 				      struct dentry *dentry, char *attr_name,
221 				      int attr_name_len, char **attr_value)
222 {
223 	char *name, *xattr_list = NULL;
224 	ssize_t value_len = -ENOENT, xattr_list_len;
225 
226 	xattr_list_len = ksmbd_vfs_listxattr(dentry, &xattr_list);
227 	if (xattr_list_len <= 0)
228 		goto out;
229 
230 	for (name = xattr_list; name - xattr_list < xattr_list_len;
231 			name += strlen(name) + 1) {
232 		ksmbd_debug(VFS, "%s, len %zd\n", name, strlen(name));
233 		if (strncasecmp(attr_name, name, attr_name_len))
234 			continue;
235 
236 		value_len = ksmbd_vfs_getxattr(idmap,
237 					       dentry,
238 					       name,
239 					       attr_value);
240 		if (value_len < 0)
241 			pr_err("failed to get xattr in file\n");
242 		break;
243 	}
244 
245 out:
246 	kvfree(xattr_list);
247 	return value_len;
248 }
249 
ksmbd_vfs_stream_read(struct ksmbd_file * fp,char * buf,loff_t * pos,size_t count)250 static int ksmbd_vfs_stream_read(struct ksmbd_file *fp, char *buf, loff_t *pos,
251 				 size_t count)
252 {
253 	const struct cred *saved_cred;
254 	ssize_t v_len;
255 	char *stream_buf = NULL;
256 
257 	ksmbd_debug(VFS, "read stream data pos : %llu, count : %zd\n",
258 		    *pos, count);
259 
260 	saved_cred = override_creds(fp->filp->f_cred);
261 	v_len = ksmbd_vfs_getcasexattr(file_mnt_idmap(fp->filp),
262 				       fp->filp->f_path.dentry,
263 				       fp->stream.name,
264 				       fp->stream.size,
265 				       &stream_buf);
266 	revert_creds(saved_cred);
267 	if ((int)v_len <= 0)
268 		return (int)v_len;
269 
270 	if (v_len <= *pos) {
271 		count = -EINVAL;
272 		goto free_buf;
273 	}
274 
275 	if (v_len - *pos < count)
276 		count = v_len - *pos;
277 	fp->stream.pos = v_len;
278 
279 	memcpy(buf, &stream_buf[*pos], count);
280 
281 free_buf:
282 	kvfree(stream_buf);
283 	return count;
284 }
285 
286 /**
287  * check_lock_range() - vfs helper for smb byte range file locking
288  * @filp:	the file to apply the lock to
289  * @start:	lock start byte offset
290  * @end:	lock end byte offset
291  * @type:	byte range type read/write
292  *
293  * Return:	0 on success, otherwise error
294  */
check_lock_range(struct file * filp,loff_t start,loff_t end,unsigned char type)295 static int check_lock_range(struct file *filp, loff_t start, loff_t end,
296 			    unsigned char type)
297 {
298 	struct file_lock *flock;
299 	struct file_lock_context *ctx = locks_inode_context(file_inode(filp));
300 	int error = 0;
301 
302 	if (!ctx || list_empty_careful(&ctx->flc_posix))
303 		return 0;
304 
305 	spin_lock(&ctx->flc_lock);
306 	for_each_file_lock(flock, &ctx->flc_posix) {
307 		/* check conflict locks */
308 		if (flock->fl_end >= start && end >= flock->fl_start) {
309 			if (lock_is_read(flock)) {
310 				if (type == WRITE) {
311 					pr_err("not allow write by shared lock\n");
312 					error = 1;
313 					goto out;
314 				}
315 			} else if (lock_is_write(flock)) {
316 				/* check owner in lock */
317 				if (flock->c.flc_file != filp) {
318 					error = 1;
319 					pr_err("not allow rw access by exclusive lock from other opens\n");
320 					goto out;
321 				}
322 			}
323 		}
324 	}
325 out:
326 	spin_unlock(&ctx->flc_lock);
327 	return error;
328 }
329 
330 /**
331  * ksmbd_vfs_read() - vfs helper for smb file read
332  * @work:	smb work
333  * @fp:		ksmbd file pointer
334  * @count:	read byte count
335  * @pos:	file pos
336  * @rbuf:	read data buffer
337  *
338  * Return:	number of read bytes on success, otherwise error
339  */
ksmbd_vfs_read(struct ksmbd_work * work,struct ksmbd_file * fp,size_t count,loff_t * pos,char * rbuf)340 int ksmbd_vfs_read(struct ksmbd_work *work, struct ksmbd_file *fp, size_t count,
341 		   loff_t *pos, char *rbuf)
342 {
343 	struct file *filp = fp->filp;
344 	ssize_t nbytes = 0;
345 	struct inode *inode = file_inode(filp);
346 
347 	if (S_ISDIR(inode->i_mode) && !ksmbd_stream_fd(fp))
348 		return -EISDIR;
349 
350 	if (unlikely(count == 0))
351 		return 0;
352 
353 	if (work->conn->connection_type) {
354 		if (!(fp->daccess & (FILE_READ_DATA_LE | FILE_EXECUTE_LE))) {
355 			pr_err("no right to read(%pD)\n", fp->filp);
356 			return -EACCES;
357 		}
358 	}
359 
360 	if (ksmbd_stream_fd(fp))
361 		return ksmbd_vfs_stream_read(fp, rbuf, pos, count);
362 
363 	if (!work->tcon->posix_extensions) {
364 		int ret;
365 
366 		ret = check_lock_range(filp, *pos, *pos + count - 1, READ);
367 		if (ret) {
368 			pr_err("unable to read due to lock\n");
369 			return -EAGAIN;
370 		}
371 	}
372 
373 	nbytes = kernel_read(filp, rbuf, count, pos);
374 	if (nbytes < 0) {
375 		pr_err("smb read failed, err = %zd\n", nbytes);
376 		return nbytes;
377 	}
378 
379 	filp->f_pos = *pos;
380 	ksmbd_counter_add(KSMBD_COUNTER_READ_BYTES, (s64)nbytes);
381 	return nbytes;
382 }
383 
ksmbd_vfs_stream_write(struct ksmbd_file * fp,char * buf,loff_t * pos,size_t count)384 static int ksmbd_vfs_stream_write(struct ksmbd_file *fp, char *buf, loff_t *pos,
385 				  size_t count)
386 {
387 	const struct cred *saved_cred;
388 	char *stream_buf = NULL, *wbuf;
389 	struct mnt_idmap *idmap = file_mnt_idmap(fp->filp);
390 	size_t size;
391 	ssize_t v_len;
392 	int err = 0;
393 
394 	ksmbd_debug(VFS, "write stream data pos : %llu, count : %zd\n",
395 		    *pos, count);
396 
397 	if (*pos >= XATTR_SIZE_MAX) {
398 		pr_err("stream write position %lld is out of bounds\n",	*pos);
399 		return -EINVAL;
400 	}
401 
402 	size = *pos + count;
403 	if (size > XATTR_SIZE_MAX) {
404 		size = XATTR_SIZE_MAX;
405 		count = XATTR_SIZE_MAX - *pos;
406 	}
407 
408 	saved_cred = override_creds(fp->filp->f_cred);
409 	v_len = ksmbd_vfs_getcasexattr(idmap,
410 				       fp->filp->f_path.dentry,
411 				       fp->stream.name,
412 				       fp->stream.size,
413 				       &stream_buf);
414 	if (v_len < 0) {
415 		pr_err("not found stream in xattr : %zd\n", v_len);
416 		err = v_len;
417 		goto out_revert;
418 	}
419 
420 	if (v_len < size) {
421 		wbuf = kvzalloc(size, KSMBD_DEFAULT_GFP);
422 		if (!wbuf) {
423 			err = -ENOMEM;
424 			goto out_revert;
425 		}
426 
427 		if (v_len > 0)
428 			memcpy(wbuf, stream_buf, v_len);
429 		kvfree(stream_buf);
430 		stream_buf = wbuf;
431 	}
432 
433 	memcpy(&stream_buf[*pos], buf, count);
434 
435 	err = ksmbd_vfs_setxattr(idmap,
436 				 &fp->filp->f_path,
437 				 fp->stream.name,
438 				 (void *)stream_buf,
439 				 size,
440 				 0,
441 				 true);
442 out_revert:
443 	revert_creds(saved_cred);
444 	if (err < 0)
445 		goto out;
446 	else
447 		fp->stream.pos = size;
448 	err = 0;
449 out:
450 	kvfree(stream_buf);
451 	return err;
452 }
453 
454 /**
455  * ksmbd_vfs_write() - vfs helper for smb file write
456  * @work:	work
457  * @fp:		ksmbd file pointer
458  * @buf:	buf containing data for writing
459  * @count:	read byte count
460  * @pos:	file pos
461  * @sync:	fsync after write
462  * @written:	number of bytes written
463  *
464  * Return:	0 on success, otherwise error
465  */
ksmbd_vfs_write(struct ksmbd_work * work,struct ksmbd_file * fp,char * buf,size_t count,loff_t * pos,bool sync,ssize_t * written)466 int ksmbd_vfs_write(struct ksmbd_work *work, struct ksmbd_file *fp,
467 		    char *buf, size_t count, loff_t *pos, bool sync,
468 		    ssize_t *written)
469 {
470 	struct file *filp;
471 	loff_t	offset = *pos;
472 	int err = 0;
473 
474 	if (work->conn->connection_type) {
475 		if (!(fp->daccess & (FILE_WRITE_DATA_LE | FILE_APPEND_DATA_LE)) ||
476 		    (S_ISDIR(file_inode(fp->filp)->i_mode) &&
477 		     !ksmbd_stream_fd(fp))) {
478 			pr_err("no right to write(%pD)\n", fp->filp);
479 			err = -EACCES;
480 			goto out;
481 		}
482 	}
483 
484 	filp = fp->filp;
485 
486 	if (ksmbd_stream_fd(fp)) {
487 		err = ksmbd_vfs_stream_write(fp, buf, pos, count);
488 		if (!err)
489 			*written = count;
490 		goto out;
491 	}
492 
493 	if (!work->tcon->posix_extensions) {
494 		err = check_lock_range(filp, *pos, *pos + count - 1, WRITE);
495 		if (err) {
496 			pr_err("unable to write due to lock\n");
497 			err = -EAGAIN;
498 			goto out;
499 		}
500 	}
501 
502 	/* Reserve lease break for parent dir at closing time */
503 	fp->reserve_lease_break = true;
504 
505 	/* Do we need to break any of a levelII oplock? */
506 	smb_break_all_levII_oplock(work, fp, 1);
507 
508 	err = kernel_write(filp, buf, count, pos);
509 	if (err < 0) {
510 		ksmbd_debug(VFS, "smb write failed, err = %d\n", err);
511 		goto out;
512 	}
513 
514 	filp->f_pos = *pos;
515 	*written = err;
516 	err = 0;
517 	if (sync) {
518 		err = vfs_fsync_range(filp, offset, offset + *written, 0);
519 		if (err < 0)
520 			pr_err("fsync failed for filename = %pD, err = %d\n",
521 			       fp->filp, err);
522 	}
523 	ksmbd_counter_add(KSMBD_COUNTER_WRITE_BYTES, (s64)*written);
524 
525 out:
526 	return err;
527 }
528 
529 /**
530  * ksmbd_vfs_getattr() - vfs helper for smb getattr
531  * @path:	path of dentry
532  * @stat:	pointer to returned kernel stat structure
533  * Return:	0 on success, otherwise error
534  */
ksmbd_vfs_getattr(const struct path * path,struct kstat * stat)535 int ksmbd_vfs_getattr(const struct path *path, struct kstat *stat)
536 {
537 	int err;
538 
539 	err = vfs_getattr(path, stat, STATX_BASIC_STATS | STATX_BTIME,
540 			AT_STATX_SYNC_AS_STAT);
541 	if (err)
542 		pr_err("getattr failed, err %d\n", err);
543 	return err;
544 }
545 
546 /**
547  * ksmbd_vfs_fsync() - vfs helper for smb fsync
548  * @work:	work
549  * @fid:	file id of open file
550  * @p_id:	persistent file id
551  *
552  * Return:	0 on success, otherwise error
553  */
ksmbd_vfs_fsync(struct ksmbd_work * work,u64 fid,u64 p_id)554 int ksmbd_vfs_fsync(struct ksmbd_work *work, u64 fid, u64 p_id)
555 {
556 	struct ksmbd_file *fp;
557 	int err;
558 
559 	fp = ksmbd_lookup_fd_slow(work, fid, p_id);
560 	if (!fp) {
561 		pr_err("failed to get filp for fid %llu\n", fid);
562 		return -ENOENT;
563 	}
564 	err = vfs_fsync(fp->filp, 0);
565 	if (err < 0)
566 		pr_err("smb fsync failed, err = %d\n", err);
567 	ksmbd_fd_put(work, fp);
568 	return err;
569 }
570 
571 /**
572  * ksmbd_vfs_remove_file() - vfs helper for smb rmdir or unlink
573  * @work:	work
574  * @path:	path of dentry
575  *
576  * Return:	0 on success, otherwise error
577  */
ksmbd_vfs_remove_file(struct ksmbd_work * work,const struct path * path)578 int ksmbd_vfs_remove_file(struct ksmbd_work *work, const struct path *path)
579 {
580 	struct mnt_idmap *idmap;
581 	struct dentry *parent = path->dentry->d_parent;
582 	int err;
583 
584 	if (ksmbd_override_fsids(work))
585 		return -ENOMEM;
586 
587 	if (!d_inode(path->dentry)->i_nlink) {
588 		err = -ENOENT;
589 		goto out_err;
590 	}
591 
592 	idmap = mnt_idmap(path->mnt);
593 	if (S_ISDIR(d_inode(path->dentry)->i_mode)) {
594 		err = vfs_rmdir(idmap, d_inode(parent), path->dentry, NULL);
595 		if (err && err != -ENOTEMPTY)
596 			ksmbd_debug(VFS, "rmdir failed, err %d\n", err);
597 	} else {
598 		err = vfs_unlink(idmap, d_inode(parent), path->dentry, NULL);
599 		if (err)
600 			ksmbd_debug(VFS, "unlink failed, err %d\n", err);
601 	}
602 
603 out_err:
604 	ksmbd_revert_fsids(work);
605 	return err;
606 }
607 
608 /**
609  * ksmbd_vfs_link() - vfs helper for creating smb hardlink
610  * @work:	work
611  * @oldname:	source file name
612  * @newname:	hardlink name that is relative to share
613  *
614  * Return:	0 on success, otherwise error
615  */
ksmbd_vfs_link(struct ksmbd_work * work,const char * oldname,const char * newname)616 int ksmbd_vfs_link(struct ksmbd_work *work, const char *oldname,
617 		   const char *newname)
618 {
619 	struct path oldpath, newpath;
620 	struct dentry *dentry;
621 	int err;
622 
623 	if (ksmbd_override_fsids(work))
624 		return -ENOMEM;
625 
626 	scoped_with_init_fs()
627 		err = kern_path(oldname, LOOKUP_NO_SYMLINKS, &oldpath);
628 	if (err) {
629 		pr_err("cannot get linux path for %s, err = %d\n",
630 		       oldname, err);
631 		goto out1;
632 	}
633 
634 	dentry = ksmbd_vfs_kern_path_create(work, newname,
635 					    LOOKUP_NO_SYMLINKS | LOOKUP_REVAL,
636 					    &newpath);
637 	if (IS_ERR(dentry)) {
638 		err = PTR_ERR(dentry);
639 		pr_err("path create err for %s, err %d\n", newname, err);
640 		goto out2;
641 	}
642 
643 	err = -EXDEV;
644 	if (oldpath.mnt != newpath.mnt) {
645 		pr_err("vfs_link failed err %d\n", err);
646 		goto out3;
647 	}
648 
649 	err = vfs_link(oldpath.dentry, mnt_idmap(newpath.mnt),
650 		       d_inode(newpath.dentry),
651 		       dentry, NULL);
652 	if (err)
653 		ksmbd_debug(VFS, "vfs_link failed err %d\n", err);
654 
655 out3:
656 	end_creating_path(&newpath, dentry);
657 out2:
658 	path_put(&oldpath);
659 out1:
660 	ksmbd_revert_fsids(work);
661 	return err;
662 }
663 
ksmbd_vfs_check_rename_share(struct ksmbd_work * work,const struct path * old_path)664 int ksmbd_vfs_check_rename_share(struct ksmbd_work *work,
665 				 const struct path *old_path)
666 {
667 	struct ksmbd_file *parent_fp;
668 	int err = 0;
669 
670 	parent_fp = ksmbd_lookup_fd_inode(old_path->dentry->d_parent);
671 	if (!parent_fp)
672 		return 0;
673 
674 	if ((parent_fp->daccess & FILE_DELETE_LE) ||
675 	    (!parent_fp->attrib_only &&
676 	     !(parent_fp->saccess & FILE_SHARE_DELETE_LE))) {
677 		ksmbd_debug(VFS, "parent dir blocks delete sharing\n");
678 		err = -ESHARE;
679 	}
680 	ksmbd_fd_put(work, parent_fp);
681 	return err;
682 }
683 
ksmbd_vfs_rename(struct ksmbd_work * work,struct ksmbd_file * old_fp,char * newname,int flags)684 int ksmbd_vfs_rename(struct ksmbd_work *work, struct ksmbd_file *old_fp,
685 			     char *newname, int flags)
686 {
687 	const struct path *old_path = &old_fp->filp->f_path;
688 	struct dentry *old_child = old_path->dentry;
689 	struct path new_path;
690 	struct qstr new_last;
691 	struct renamedata rd;
692 	struct ksmbd_share_config *share_conf = work->tcon->share_conf;
693 	int err, lookup_flags = LOOKUP_NO_SYMLINKS;
694 
695 	if (ksmbd_override_fsids(work))
696 		return -ENOMEM;
697 
698 	CLASS(filename_kernel, to)(newname);
699 
700 retry:
701 	err = vfs_path_parent_lookup(to, lookup_flags | LOOKUP_BENEATH,
702 				     &new_path, &new_last, &share_conf->vfs_path);
703 	if (err)
704 		goto out1;
705 
706 	if (old_path->mnt != new_path.mnt) {
707 		err = -EXDEV;
708 		goto out2;
709 	}
710 
711 	err = mnt_want_write(old_path->mnt);
712 	if (err)
713 		goto out2;
714 
715 	rd.mnt_idmap		= mnt_idmap(old_path->mnt);
716 	rd.old_parent		= NULL;
717 	rd.new_parent		= new_path.dentry;
718 	rd.flags		= flags;
719 	rd.delegated_inode	= NULL;
720 	err = start_renaming_dentry(&rd, lookup_flags, old_child, &new_last);
721 	if (err)
722 		goto out_drop_write;
723 
724 	if (d_is_dir(old_child) && ksmbd_has_nonposix_open_child(old_fp)) {
725 		err = -EACCES;
726 		goto out3;
727 	}
728 
729 	/*
730 	 * See MS-FSA 2.1.5.15.12.
731 	 * An overwrite rename must fail with STATUS_ACCESS_DENIED if the
732 	 * existing target still has a non-POSIX open.
733 	 */
734 	if (!(flags & (RENAME_NOREPLACE | RENAME_EXCHANGE)) &&
735 	    d_inode(rd.new_dentry) &&
736 	    d_inode(rd.new_dentry) != d_inode(old_child) &&
737 	    ksmbd_has_other_nonposix_open(rd.new_dentry)) {
738 		err = -EACCES;
739 		goto out3;
740 	}
741 
742 	err = ksmbd_vfs_check_rename_share(work, old_path);
743 	if (err)
744 		goto out3;
745 
746 	if (d_is_symlink(rd.new_dentry)) {
747 		err = -EACCES;
748 		goto out3;
749 	}
750 
751 	err = vfs_rename(&rd);
752 	if (err)
753 		ksmbd_debug(VFS, "vfs_rename failed err %d\n", err);
754 
755 out3:
756 	end_renaming(&rd);
757 out_drop_write:
758 	mnt_drop_write(old_path->mnt);
759 out2:
760 	path_put(&new_path);
761 
762 	if (retry_estale(err, lookup_flags)) {
763 		lookup_flags |= LOOKUP_REVAL;
764 		goto retry;
765 	}
766 out1:
767 	ksmbd_revert_fsids(work);
768 	return err;
769 }
770 
771 /**
772  * ksmbd_vfs_truncate() - vfs helper for smb file truncate
773  * @work:	work
774  * @fp:		ksmbd file pointer
775  * @size:	truncate to given size
776  *
777  * Return:	0 on success, otherwise error
778  */
ksmbd_vfs_truncate(struct ksmbd_work * work,struct ksmbd_file * fp,loff_t size)779 int ksmbd_vfs_truncate(struct ksmbd_work *work,
780 		       struct ksmbd_file *fp, loff_t size)
781 {
782 	int err = 0;
783 	struct file *filp;
784 
785 	filp = fp->filp;
786 
787 	/* Do we need to break any of a levelII oplock? */
788 	smb_break_all_levII_oplock(work, fp, 1);
789 
790 	if (!work->tcon->posix_extensions) {
791 		struct inode *inode = file_inode(filp);
792 
793 		if (size < inode->i_size) {
794 			err = check_lock_range(filp, size,
795 					       inode->i_size - 1, WRITE);
796 		} else if (size > inode->i_size) {
797 			err = check_lock_range(filp, inode->i_size,
798 					       size - 1, WRITE);
799 		}
800 
801 		if (err) {
802 			pr_err("failed due to lock\n");
803 			return -EAGAIN;
804 		}
805 	}
806 
807 	err = vfs_truncate(&filp->f_path, size);
808 	if (err)
809 		pr_err("truncate failed, err %d\n", err);
810 	return err;
811 }
812 
813 /**
814  * ksmbd_vfs_listxattr() - vfs helper for smb list extended attributes
815  * @dentry:	dentry of file for listing xattrs
816  * @list:	destination buffer
817  *
818  * Return:	xattr list length on success, otherwise error
819  */
ksmbd_vfs_listxattr(struct dentry * dentry,char ** list)820 ssize_t ksmbd_vfs_listxattr(struct dentry *dentry, char **list)
821 {
822 	ssize_t size;
823 	char *vlist = NULL;
824 
825 	size = vfs_listxattr(dentry, NULL, 0);
826 	if (size <= 0)
827 		return size;
828 
829 	vlist = kvzalloc(size, KSMBD_DEFAULT_GFP);
830 	if (!vlist)
831 		return -ENOMEM;
832 
833 	*list = vlist;
834 	size = vfs_listxattr(dentry, vlist, size);
835 	if (size < 0) {
836 		ksmbd_debug(VFS, "listxattr failed\n");
837 		kvfree(vlist);
838 		*list = NULL;
839 	}
840 
841 	return size;
842 }
843 
ksmbd_vfs_xattr_len(struct mnt_idmap * idmap,struct dentry * dentry,char * xattr_name)844 static ssize_t ksmbd_vfs_xattr_len(struct mnt_idmap *idmap,
845 				   struct dentry *dentry, char *xattr_name)
846 {
847 	return vfs_getxattr(idmap, dentry, xattr_name, NULL, 0);
848 }
849 
850 /**
851  * ksmbd_vfs_getxattr() - vfs helper for smb get extended attributes value
852  * @idmap:	idmap
853  * @dentry:	dentry of file for getting xattrs
854  * @xattr_name:	name of xattr name to query
855  * @xattr_buf:	destination buffer xattr value
856  *
857  * Return:	read xattr value length on success, otherwise error
858  */
ksmbd_vfs_getxattr(struct mnt_idmap * idmap,struct dentry * dentry,char * xattr_name,char ** xattr_buf)859 ssize_t ksmbd_vfs_getxattr(struct mnt_idmap *idmap,
860 			   struct dentry *dentry,
861 			   char *xattr_name, char **xattr_buf)
862 {
863 	ssize_t xattr_len;
864 	char *buf;
865 
866 	*xattr_buf = NULL;
867 	xattr_len = ksmbd_vfs_xattr_len(idmap, dentry, xattr_name);
868 	if (xattr_len < 0)
869 		return xattr_len;
870 
871 	buf = kmalloc(xattr_len + 1, KSMBD_DEFAULT_GFP);
872 	if (!buf)
873 		return -ENOMEM;
874 
875 	xattr_len = vfs_getxattr(idmap, dentry, xattr_name,
876 				 (void *)buf, xattr_len);
877 	if (xattr_len > 0)
878 		*xattr_buf = buf;
879 	else
880 		kfree(buf);
881 	return xattr_len;
882 }
883 
884 /**
885  * ksmbd_vfs_setxattr() - vfs helper for smb set extended attributes value
886  * @idmap:	idmap of the relevant mount
887  * @path:	path of dentry to set XATTR at
888  * @attr_name:	xattr name for setxattr
889  * @attr_value:	xattr value to set
890  * @attr_size:	size of xattr value
891  * @flags:	destination buffer length
892  * @get_write:	get write access to a mount
893  *
894  * Return:	0 on success, otherwise error
895  */
ksmbd_vfs_setxattr(struct mnt_idmap * idmap,const struct path * path,const char * attr_name,void * attr_value,size_t attr_size,int flags,bool get_write)896 int ksmbd_vfs_setxattr(struct mnt_idmap *idmap,
897 		       const struct path *path, const char *attr_name,
898 		       void *attr_value, size_t attr_size, int flags,
899 		       bool get_write)
900 {
901 	int err;
902 
903 	if (get_write == true) {
904 		err = mnt_want_write(path->mnt);
905 		if (err)
906 			return err;
907 	}
908 
909 	err = vfs_setxattr(idmap,
910 			   path->dentry,
911 			   attr_name,
912 			   attr_value,
913 			   attr_size,
914 			   flags);
915 	if (err)
916 		ksmbd_debug(VFS, "setxattr failed, err %d\n", err);
917 	if (get_write == true)
918 		mnt_drop_write(path->mnt);
919 	return err;
920 }
921 
922 /**
923  * ksmbd_vfs_set_fadvise() - convert smb IO caching options to linux options
924  * @filp:	file pointer for IO
925  * @option:	smb IO options
926  */
ksmbd_vfs_set_fadvise(struct file * filp,__le32 option)927 void ksmbd_vfs_set_fadvise(struct file *filp, __le32 option)
928 {
929 	struct address_space *mapping;
930 
931 	mapping = filp->f_mapping;
932 
933 	if (!option || !mapping)
934 		return;
935 
936 	if (option & FILE_WRITE_THROUGH_LE) {
937 		filp->f_flags |= O_SYNC;
938 	} else if (option & FILE_SEQUENTIAL_ONLY_LE) {
939 		filp->f_ra.ra_pages = inode_to_bdi(mapping->host)->ra_pages * 2;
940 		spin_lock(&filp->f_lock);
941 		filp->f_mode &= ~FMODE_RANDOM;
942 		spin_unlock(&filp->f_lock);
943 	} else if (option & FILE_RANDOM_ACCESS_LE) {
944 		spin_lock(&filp->f_lock);
945 		filp->f_mode |= FMODE_RANDOM;
946 		spin_unlock(&filp->f_lock);
947 	}
948 }
949 
ksmbd_vfs_zero_data(struct ksmbd_work * work,struct ksmbd_file * fp,loff_t off,loff_t len)950 int ksmbd_vfs_zero_data(struct ksmbd_work *work, struct ksmbd_file *fp,
951 			loff_t off, loff_t len)
952 {
953 	const struct cred *saved_cred;
954 	loff_t pos = off, size;
955 	char *zero_buf = NULL;
956 	int err;
957 
958 	smb_break_all_levII_oplock(work, fp, 1);
959 	if (!work->tcon->posix_extensions) {
960 		loff_t size = i_size_read(file_inode(fp->filp));
961 
962 		if (off < size) {
963 			err = check_lock_range(fp->filp, off,
964 					       min(off + len, size) - 1,
965 					       WRITE);
966 			if (err)
967 				return -EAGAIN;
968 		}
969 	}
970 
971 	saved_cred = override_creds(fp->filp->f_cred);
972 	if (fp->f_ci->m_fattr & FILE_ATTRIBUTE_SPARSE_FILE_LE) {
973 		err = vfs_fallocate(fp->filp,
974 				    FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE,
975 				    off, len);
976 	} else {
977 		size = i_size_read(file_inode(fp->filp));
978 		if (off >= size) {
979 			err = 0;
980 			goto out;
981 		}
982 
983 		len = min(len, size - off);
984 		zero_buf = kvzalloc(SZ_64K, GFP_KERNEL);
985 		if (!zero_buf) {
986 			err = -ENOMEM;
987 			goto out;
988 		}
989 
990 		while (len) {
991 			ssize_t written;
992 			size_t count = min_t(loff_t, len, SZ_64K);
993 
994 			written = kernel_write(fp->filp, zero_buf, count, &pos);
995 			if (written < 0) {
996 				err = written;
997 				goto out;
998 			}
999 			if (!written) {
1000 				err = -EIO;
1001 				goto out;
1002 			}
1003 			len -= written;
1004 		}
1005 		err = 0;
1006 	}
1007 out:
1008 	revert_creds(saved_cred);
1009 	kvfree(zero_buf);
1010 	return err;
1011 }
1012 
ksmbd_vfs_zero_holes(struct ksmbd_file * fp)1013 int ksmbd_vfs_zero_holes(struct ksmbd_file *fp)
1014 {
1015 	struct file *f = fp->filp;
1016 	const struct cred *saved_cred;
1017 	loff_t size, pos = 0;
1018 	char *zero_buf;
1019 	int err;
1020 
1021 	err = file_write_and_wait(f);
1022 	if (err)
1023 		return err;
1024 
1025 	size = i_size_read(file_inode(f));
1026 	if (!size)
1027 		return 0;
1028 
1029 	/*
1030 	 * FALLOC_FL_ZERO_RANGE may leave unwritten extents, which SEEK_DATA
1031 	 * reports as holes. Write zeroes into each hole so that clearing the
1032 	 * sparse attribute leaves the file fully allocated.
1033 	 */
1034 	zero_buf = kvzalloc(SZ_64K, GFP_KERNEL);
1035 	if (!zero_buf)
1036 		return -ENOMEM;
1037 
1038 	saved_cred = override_creds(f->f_cred);
1039 	while (pos < size) {
1040 		loff_t data, hole;
1041 
1042 		hole = vfs_llseek(f, pos, SEEK_HOLE);
1043 		if (hole == -ENXIO || hole >= size)
1044 			break;
1045 		if (hole < 0) {
1046 			err = hole;
1047 			goto out;
1048 		}
1049 
1050 		data = vfs_llseek(f, hole, SEEK_DATA);
1051 		if (data == -ENXIO) {
1052 			data = size;
1053 		} else if (data < 0) {
1054 			err = data;
1055 			goto out;
1056 		}
1057 		data = min(data, size);
1058 		if (data <= hole) {
1059 			err = -EIO;
1060 			goto out;
1061 		}
1062 
1063 		pos = hole;
1064 		while (pos < data) {
1065 			ssize_t written;
1066 			size_t count = min_t(loff_t, data - pos, SZ_64K);
1067 
1068 			written = kernel_write(f, zero_buf, count, &pos);
1069 			if (written < 0) {
1070 				err = written;
1071 				goto out;
1072 			}
1073 			if (!written) {
1074 				err = -EIO;
1075 				goto out;
1076 			}
1077 		}
1078 	}
1079 	err = file_write_and_wait(f);
1080 out:
1081 	revert_creds(saved_cred);
1082 	kvfree(zero_buf);
1083 	return err;
1084 }
1085 
ksmbd_vfs_trim_data(struct ksmbd_work * work,struct ksmbd_file * fp,loff_t off,loff_t len)1086 int ksmbd_vfs_trim_data(struct ksmbd_work *work, struct ksmbd_file *fp,
1087 			loff_t off, loff_t len)
1088 {
1089 	const struct cred *saved_cred;
1090 	int err;
1091 
1092 	smb_break_all_levII_oplock(work, fp, 1);
1093 	if (!work->tcon->posix_extensions) {
1094 		loff_t size = i_size_read(file_inode(fp->filp));
1095 
1096 		if (off < size) {
1097 			err = check_lock_range(fp->filp, off,
1098 					       min(off + len, size) - 1,
1099 					       WRITE);
1100 			if (err)
1101 				return -EAGAIN;
1102 		}
1103 	}
1104 
1105 	saved_cred = override_creds(fp->filp->f_cred);
1106 	err = vfs_fallocate(fp->filp,
1107 			    FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE,
1108 			    off, len);
1109 	revert_creds(saved_cred);
1110 	return err;
1111 }
1112 
ksmbd_vfs_query_allocated_ranges(struct ksmbd_file * fp,loff_t start,loff_t length,struct file_allocated_range_buffer * ranges,unsigned int in_count,unsigned int * out_count)1113 int ksmbd_vfs_query_allocated_ranges(struct ksmbd_file *fp, loff_t start,
1114 				     loff_t length,
1115 				     struct file_allocated_range_buffer *ranges,
1116 				     unsigned int in_count,
1117 				     unsigned int *out_count)
1118 {
1119 	struct file *f = fp->filp;
1120 	struct inode *inode = file_inode(fp->filp);
1121 	loff_t maxbytes = inode->i_sb->s_maxbytes, size;
1122 	loff_t extent_start, extent_end, end;
1123 	int ret = 0;
1124 
1125 	*out_count = 0;
1126 	if (start < 0 || length < 0)
1127 		return -EINVAL;
1128 	if (start > maxbytes)
1129 		return -EFBIG;
1130 	if (!in_count)
1131 		return 0;
1132 	if (length > maxbytes || maxbytes - length < start)
1133 		length = maxbytes - start;
1134 	size = i_size_read(inode);
1135 	if (!length || start >= size)
1136 		return 0;
1137 	if (length > size - start)
1138 		length = size - start;
1139 
1140 	end = start + length;
1141 	if ((fp->f_ci->m_fattr & FILE_ATTRIBUTE_SPARSE_FILE_LE) &&
1142 	    start < end) {
1143 		ret = file_write_and_wait_range(f, start, end - 1);
1144 		if (ret)
1145 			return ret;
1146 	}
1147 
1148 	while (start < end && *out_count < in_count) {
1149 		extent_start = vfs_llseek(f, start, SEEK_DATA);
1150 		if (extent_start < 0) {
1151 			if (extent_start != -ENXIO)
1152 				ret = extent_start;
1153 			break;
1154 		}
1155 
1156 		if (extent_start >= end)
1157 			break;
1158 
1159 		extent_end = vfs_llseek(f, extent_start, SEEK_HOLE);
1160 		if (extent_end < 0) {
1161 			if (extent_end != -ENXIO)
1162 				ret = extent_end;
1163 			break;
1164 		} else if (extent_start >= extent_end) {
1165 			break;
1166 		}
1167 
1168 		ranges[*out_count].file_offset = cpu_to_le64(extent_start);
1169 		ranges[(*out_count)++].length =
1170 			cpu_to_le64(min(extent_end, end) - extent_start);
1171 		start = extent_end;
1172 	}
1173 
1174 	if (!ret && start < end && *out_count == in_count)
1175 		ret = -E2BIG;
1176 
1177 	return ret;
1178 }
1179 
ksmbd_vfs_remove_xattr(struct mnt_idmap * idmap,const struct path * path,char * attr_name,bool get_write)1180 int ksmbd_vfs_remove_xattr(struct mnt_idmap *idmap,
1181 			   const struct path *path, char *attr_name,
1182 			   bool get_write)
1183 {
1184 	int err;
1185 
1186 	if (get_write == true) {
1187 		err = mnt_want_write(path->mnt);
1188 		if (err)
1189 			return err;
1190 	}
1191 
1192 	err = vfs_removexattr(idmap, path->dentry, attr_name);
1193 
1194 	if (get_write == true)
1195 		mnt_drop_write(path->mnt);
1196 
1197 	return err;
1198 }
1199 
ksmbd_vfs_unlink(struct file * filp)1200 int ksmbd_vfs_unlink(struct file *filp)
1201 {
1202 	const struct cred *saved_cred;
1203 	int err = 0;
1204 	struct dentry *dir, *dentry = filp->f_path.dentry;
1205 	struct mnt_idmap *idmap = file_mnt_idmap(filp);
1206 
1207 	saved_cred = override_creds(filp->f_cred);
1208 	err = mnt_want_write(filp->f_path.mnt);
1209 	if (err)
1210 		goto out_revert;
1211 
1212 	dir = dget_parent(dentry);
1213 	dentry = start_removing_dentry(dir, dentry);
1214 	err = PTR_ERR(dentry);
1215 	if (IS_ERR(dentry))
1216 		goto out;
1217 
1218 	if (S_ISDIR(d_inode(dentry)->i_mode))
1219 		err = vfs_rmdir(idmap, d_inode(dir), dentry, NULL);
1220 	else
1221 		err = vfs_unlink(idmap, d_inode(dir), dentry, NULL);
1222 
1223 	end_removing(dentry);
1224 	if (err)
1225 		ksmbd_debug(VFS, "failed to delete, err %d\n", err);
1226 out:
1227 	dput(dir);
1228 	mnt_drop_write(filp->f_path.mnt);
1229 out_revert:
1230 	revert_creds(saved_cred);
1231 	return err;
1232 }
1233 
__dir_empty(struct dir_context * ctx,const char * name,int namlen,loff_t offset,u64 ino,unsigned int d_type)1234 static bool __dir_empty(struct dir_context *ctx, const char *name, int namlen,
1235 		       loff_t offset, u64 ino, unsigned int d_type)
1236 {
1237 	struct ksmbd_readdir_data *buf;
1238 
1239 	buf = container_of(ctx, struct ksmbd_readdir_data, ctx);
1240 	if (!name_is_dot_dotdot(name, namlen))
1241 		buf->dirent_count++;
1242 
1243 	return !buf->dirent_count;
1244 }
1245 
1246 /**
1247  * ksmbd_vfs_empty_dir() - check for empty directory
1248  * @fp:	ksmbd file pointer
1249  *
1250  * Return:	true if directory empty, otherwise false
1251  */
ksmbd_vfs_empty_dir(struct ksmbd_file * fp)1252 int ksmbd_vfs_empty_dir(struct ksmbd_file *fp)
1253 {
1254 	int err;
1255 	struct ksmbd_readdir_data readdir_data;
1256 
1257 	memset(&readdir_data, 0, sizeof(struct ksmbd_readdir_data));
1258 
1259 	set_ctx_actor(&readdir_data.ctx, __dir_empty);
1260 	readdir_data.dirent_count = 0;
1261 
1262 	err = iterate_dir(fp->filp, &readdir_data.ctx);
1263 	if (readdir_data.dirent_count)
1264 		err = -ENOTEMPTY;
1265 	else
1266 		err = 0;
1267 	return err;
1268 }
1269 
__caseless_lookup(struct dir_context * ctx,const char * name,int namlen,loff_t offset,u64 ino,unsigned int d_type)1270 static bool __caseless_lookup(struct dir_context *ctx, const char *name,
1271 			     int namlen, loff_t offset, u64 ino,
1272 			     unsigned int d_type)
1273 {
1274 	struct ksmbd_readdir_data *buf;
1275 	int cmp = -EINVAL;
1276 
1277 	buf = container_of(ctx, struct ksmbd_readdir_data, ctx);
1278 
1279 	if (buf->used != namlen)
1280 		return true;
1281 	if (IS_ENABLED(CONFIG_UNICODE) && buf->um) {
1282 		const struct qstr q_buf = {.name = buf->private,
1283 					   .len = buf->used};
1284 		const struct qstr q_name = {.name = name,
1285 					    .len = namlen};
1286 
1287 		cmp = utf8_strncasecmp(buf->um, &q_buf, &q_name);
1288 	}
1289 	if (cmp < 0)
1290 		cmp = strncasecmp((char *)buf->private, name, namlen);
1291 	if (!cmp) {
1292 		memcpy((char *)buf->private, name, buf->used);
1293 		buf->dirent_count = 1;
1294 		return false;
1295 	}
1296 	return true;
1297 }
1298 
1299 /**
1300  * ksmbd_vfs_lookup_in_dir() - lookup a file in a directory
1301  * @dir:	path info
1302  * @name:	filename to lookup
1303  * @namelen:	filename length
1304  * @um:		&struct unicode_map to use
1305  *
1306  * Return:	0 on success, otherwise error
1307  */
ksmbd_vfs_lookup_in_dir(const struct path * dir,char * name,size_t namelen,struct unicode_map * um)1308 static int ksmbd_vfs_lookup_in_dir(const struct path *dir, char *name,
1309 				   size_t namelen, struct unicode_map *um)
1310 {
1311 	int ret;
1312 	struct file *dfilp;
1313 	int flags = O_RDONLY | O_LARGEFILE;
1314 	struct ksmbd_readdir_data readdir_data = {
1315 		.ctx.actor	= __caseless_lookup,
1316 		.private	= name,
1317 		.used		= namelen,
1318 		.dirent_count	= 0,
1319 		.um		= um,
1320 	};
1321 
1322 	dfilp = dentry_open(dir, flags, current_cred());
1323 	if (IS_ERR(dfilp))
1324 		return PTR_ERR(dfilp);
1325 
1326 	ret = iterate_dir(dfilp, &readdir_data.ctx);
1327 	if (readdir_data.dirent_count > 0)
1328 		ret = 0;
1329 	fput(dfilp);
1330 	return ret;
1331 }
1332 
1333 static
__ksmbd_vfs_kern_path(struct ksmbd_work * work,char * filepath,unsigned int flags,struct path * path,bool caseless,bool for_remove)1334 int __ksmbd_vfs_kern_path(struct ksmbd_work *work, char *filepath,
1335 			  unsigned int flags,
1336 			  struct path *path, bool caseless, bool for_remove)
1337 {
1338 	struct ksmbd_share_config *share_conf = work->tcon->share_conf;
1339 	struct path parent_path;
1340 	size_t path_len, remain_len;
1341 	int err;
1342 
1343 retry:
1344 	err = ksmbd_vfs_path_lookup(share_conf, filepath, flags, path, for_remove);
1345 	if (!err || err != -ENOENT || !caseless)
1346 		return err;
1347 
1348 	path_len = strlen(filepath);
1349 	remain_len = path_len;
1350 
1351 	parent_path = share_conf->vfs_path;
1352 	path_get(&parent_path);
1353 
1354 	while (d_can_lookup(parent_path.dentry)) {
1355 		char *filename = filepath + path_len - remain_len;
1356 		char *next = strchrnul(filename, '/');
1357 		size_t filename_len = next - filename;
1358 		bool is_last = !next[0];
1359 
1360 		if (filename_len == 0)
1361 			break;
1362 
1363 		err = ksmbd_vfs_lookup_in_dir(&parent_path, filename,
1364 					      filename_len,
1365 					      work->conn->um);
1366 		path_put(&parent_path);
1367 		if (err)
1368 			goto out;
1369 		if (is_last) {
1370 			caseless = false;
1371 			goto retry;
1372 		}
1373 		next[0] = '\0';
1374 
1375 		err = vfs_path_lookup(share_conf->vfs_path.dentry,
1376 				      share_conf->vfs_path.mnt,
1377 				      filepath,
1378 				      flags,
1379 				      &parent_path);
1380 		next[0] = '/';
1381 		if (err)
1382 			goto out;
1383 
1384 		remain_len -= filename_len + 1;
1385 	}
1386 
1387 	err = -EINVAL;
1388 	path_put(&parent_path);
1389 out:
1390 	return err;
1391 }
1392 
1393 /**
1394  * ksmbd_vfs_kern_path() - lookup a file and get path info
1395  * @work:		work
1396  * @filepath:		file path that is relative to share
1397  * @flags:		lookup flags
1398  * @path:		if lookup succeed, return path info
1399  * @caseless:	caseless filename lookup
1400  *
1401  * Perform the lookup, possibly crossing over any mount point.
1402  * On return no locks will be held and write-access to filesystem
1403  * won't have been checked.
1404  * Return:	0 if file was found, otherwise error
1405  */
ksmbd_vfs_kern_path(struct ksmbd_work * work,char * filepath,unsigned int flags,struct path * path,bool caseless)1406 int ksmbd_vfs_kern_path(struct ksmbd_work *work, char *filepath,
1407 			unsigned int flags,
1408 			struct path *path, bool caseless)
1409 {
1410 	return __ksmbd_vfs_kern_path(work, filepath, flags, path,
1411 				     caseless, false);
1412 }
1413 
1414 /**
1415  * ksmbd_vfs_kern_path_start_removing() - lookup a file and get path info prior to removal
1416  * @work:		work
1417  * @filepath:		file path that is relative to share
1418  * @flags:		lookup flags
1419  * @path:		if lookup succeed, return path info
1420  * @caseless:	caseless filename lookup
1421  *
1422  * Perform the lookup, but don't cross over any mount point.
1423  * On return the parent of path->dentry will be locked and write-access to
1424  * filesystem will have been gained.
1425  * Return:	0 on if file was found, otherwise error
1426  */
ksmbd_vfs_kern_path_start_removing(struct ksmbd_work * work,char * filepath,unsigned int flags,struct path * path,bool caseless)1427 int ksmbd_vfs_kern_path_start_removing(struct ksmbd_work *work, char *filepath,
1428 				       unsigned int flags,
1429 				       struct path *path, bool caseless)
1430 {
1431 	return __ksmbd_vfs_kern_path(work, filepath, flags, path,
1432 				     caseless, true);
1433 }
1434 
ksmbd_vfs_kern_path_end_removing(const struct path * path)1435 void ksmbd_vfs_kern_path_end_removing(const struct path *path)
1436 {
1437 	end_removing(path->dentry);
1438 	mnt_drop_write(path->mnt);
1439 	mntput(path->mnt);
1440 }
1441 
ksmbd_vfs_kern_path_create(struct ksmbd_work * work,const char * name,unsigned int flags,struct path * path)1442 struct dentry *ksmbd_vfs_kern_path_create(struct ksmbd_work *work,
1443 					  const char *name,
1444 					  unsigned int flags,
1445 					  struct path *path)
1446 {
1447 	struct ksmbd_share_config *share_conf = work->tcon->share_conf;
1448 	struct qstr last;
1449 	struct dentry *dent;
1450 	int err;
1451 
1452 	/* resolve the name beneath the share root so ".." cannot escape */
1453 	CLASS(filename_kernel, filename)(name);
1454 
1455 	err = vfs_path_parent_lookup(filename, flags | LOOKUP_BENEATH,
1456 				     path, &last, &share_conf->vfs_path);
1457 	if (err)
1458 		return ERR_PTR(err);
1459 
1460 	err = mnt_want_write(path->mnt);
1461 	if (err) {
1462 		path_put(path);
1463 		return ERR_PTR(err);
1464 	}
1465 
1466 	dent = start_creating_noperm(path->dentry, &last);
1467 	if (IS_ERR(dent)) {
1468 		mnt_drop_write(path->mnt);
1469 		path_put(path);
1470 	}
1471 	return dent;
1472 }
1473 
ksmbd_vfs_remove_acl_xattrs(struct mnt_idmap * idmap,const struct path * path)1474 int ksmbd_vfs_remove_acl_xattrs(struct mnt_idmap *idmap,
1475 				const struct path *path)
1476 {
1477 	char *name, *xattr_list = NULL;
1478 	ssize_t xattr_list_len;
1479 	int err = 0;
1480 
1481 	xattr_list_len = ksmbd_vfs_listxattr(path->dentry, &xattr_list);
1482 	if (xattr_list_len < 0) {
1483 		goto out;
1484 	} else if (!xattr_list_len) {
1485 		ksmbd_debug(SMB, "empty xattr in the file\n");
1486 		goto out;
1487 	}
1488 
1489 	err = mnt_want_write(path->mnt);
1490 	if (err)
1491 		goto out;
1492 
1493 	for (name = xattr_list; name - xattr_list < xattr_list_len;
1494 	     name += strlen(name) + 1) {
1495 		ksmbd_debug(SMB, "%s, len %zd\n", name, strlen(name));
1496 
1497 		if (!strncmp(name, XATTR_NAME_POSIX_ACL_ACCESS,
1498 			     sizeof(XATTR_NAME_POSIX_ACL_ACCESS) - 1) ||
1499 		    !strncmp(name, XATTR_NAME_POSIX_ACL_DEFAULT,
1500 			     sizeof(XATTR_NAME_POSIX_ACL_DEFAULT) - 1)) {
1501 			err = vfs_remove_acl(idmap, path->dentry, name);
1502 			if (err)
1503 				ksmbd_debug(SMB,
1504 					    "remove acl xattr failed : %s\n", name);
1505 		}
1506 	}
1507 	mnt_drop_write(path->mnt);
1508 
1509 out:
1510 	kvfree(xattr_list);
1511 	return err;
1512 }
1513 
ksmbd_vfs_remove_sd_xattrs(struct mnt_idmap * idmap,const struct path * path)1514 int ksmbd_vfs_remove_sd_xattrs(struct mnt_idmap *idmap, const struct path *path)
1515 {
1516 	char *name, *xattr_list = NULL;
1517 	ssize_t xattr_list_len;
1518 	int err = 0;
1519 
1520 	xattr_list_len = ksmbd_vfs_listxattr(path->dentry, &xattr_list);
1521 	if (xattr_list_len < 0) {
1522 		goto out;
1523 	} else if (!xattr_list_len) {
1524 		ksmbd_debug(SMB, "empty xattr in the file\n");
1525 		goto out;
1526 	}
1527 
1528 	for (name = xattr_list; name - xattr_list < xattr_list_len;
1529 			name += strlen(name) + 1) {
1530 		ksmbd_debug(SMB, "%s, len %zd\n", name, strlen(name));
1531 
1532 		if (!strncmp(name, XATTR_NAME_SD, XATTR_NAME_SD_LEN)) {
1533 			err = ksmbd_vfs_remove_xattr(idmap, path, name, true);
1534 			if (err)
1535 				ksmbd_debug(SMB, "remove xattr failed : %s\n", name);
1536 		}
1537 	}
1538 out:
1539 	kvfree(xattr_list);
1540 	return err;
1541 }
1542 
ksmbd_vfs_make_xattr_posix_acl(struct mnt_idmap * idmap,struct inode * inode,int acl_type)1543 static struct xattr_smb_acl *ksmbd_vfs_make_xattr_posix_acl(struct mnt_idmap *idmap,
1544 							    struct inode *inode,
1545 							    int acl_type)
1546 {
1547 	struct xattr_smb_acl *smb_acl = NULL;
1548 	struct posix_acl *posix_acls;
1549 	struct posix_acl_entry *pa_entry;
1550 	struct xattr_acl_entry *xa_entry;
1551 	int i;
1552 
1553 	if (!IS_ENABLED(CONFIG_FS_POSIX_ACL))
1554 		return NULL;
1555 
1556 	posix_acls = get_inode_acl(inode, acl_type);
1557 	if (IS_ERR_OR_NULL(posix_acls))
1558 		return NULL;
1559 
1560 	smb_acl = kzalloc(sizeof(struct xattr_smb_acl) +
1561 			  sizeof(struct xattr_acl_entry) * posix_acls->a_count,
1562 			  KSMBD_DEFAULT_GFP);
1563 	if (!smb_acl)
1564 		goto out;
1565 
1566 	smb_acl->count = posix_acls->a_count;
1567 	pa_entry = posix_acls->a_entries;
1568 	xa_entry = smb_acl->entries;
1569 	for (i = 0; i < posix_acls->a_count; i++, pa_entry++, xa_entry++) {
1570 		switch (pa_entry->e_tag) {
1571 		case ACL_USER:
1572 			xa_entry->type = SMB_ACL_USER;
1573 			xa_entry->uid = posix_acl_uid_translate(idmap, pa_entry);
1574 			break;
1575 		case ACL_USER_OBJ:
1576 			xa_entry->type = SMB_ACL_USER_OBJ;
1577 			break;
1578 		case ACL_GROUP:
1579 			xa_entry->type = SMB_ACL_GROUP;
1580 			xa_entry->gid = posix_acl_gid_translate(idmap, pa_entry);
1581 			break;
1582 		case ACL_GROUP_OBJ:
1583 			xa_entry->type = SMB_ACL_GROUP_OBJ;
1584 			break;
1585 		case ACL_OTHER:
1586 			xa_entry->type = SMB_ACL_OTHER;
1587 			break;
1588 		case ACL_MASK:
1589 			xa_entry->type = SMB_ACL_MASK;
1590 			break;
1591 		default:
1592 			pr_err("unknown type : 0x%x\n", pa_entry->e_tag);
1593 			goto out;
1594 		}
1595 
1596 		if (pa_entry->e_perm & ACL_READ)
1597 			xa_entry->perm |= SMB_ACL_READ;
1598 		if (pa_entry->e_perm & ACL_WRITE)
1599 			xa_entry->perm |= SMB_ACL_WRITE;
1600 		if (pa_entry->e_perm & ACL_EXECUTE)
1601 			xa_entry->perm |= SMB_ACL_EXECUTE;
1602 	}
1603 out:
1604 	posix_acl_release(posix_acls);
1605 	return smb_acl;
1606 }
1607 
ksmbd_vfs_set_sd_xattr(struct ksmbd_conn * conn,struct mnt_idmap * idmap,const struct path * path,struct smb_ntsd * pntsd,int len,bool get_write)1608 int ksmbd_vfs_set_sd_xattr(struct ksmbd_conn *conn,
1609 			   struct mnt_idmap *idmap,
1610 			   const struct path *path,
1611 			   struct smb_ntsd *pntsd, int len,
1612 			   bool get_write)
1613 {
1614 	int rc;
1615 	struct ndr sd_ndr = {0}, acl_ndr = {0};
1616 	struct xattr_ntacl acl = {0};
1617 	struct xattr_smb_acl *smb_acl, *def_smb_acl = NULL;
1618 	struct dentry *dentry = path->dentry;
1619 	struct inode *inode = d_inode(dentry);
1620 
1621 	acl.version = 4;
1622 	acl.hash_type = XATTR_SD_HASH_TYPE_SHA256;
1623 	acl.current_time = ksmbd_UnixTimeToNT(current_time(inode));
1624 
1625 	memcpy(acl.desc, "posix_acl", 9);
1626 	acl.desc_len = 10;
1627 
1628 	pntsd->osidoffset =
1629 		cpu_to_le32(le32_to_cpu(pntsd->osidoffset) + NDR_NTSD_OFFSETOF);
1630 	pntsd->gsidoffset =
1631 		cpu_to_le32(le32_to_cpu(pntsd->gsidoffset) + NDR_NTSD_OFFSETOF);
1632 	pntsd->dacloffset =
1633 		cpu_to_le32(le32_to_cpu(pntsd->dacloffset) + NDR_NTSD_OFFSETOF);
1634 
1635 	acl.sd_buf = (char *)pntsd;
1636 	acl.sd_size = len;
1637 
1638 	sha256(acl.sd_buf, acl.sd_size, acl.hash);
1639 
1640 	smb_acl = ksmbd_vfs_make_xattr_posix_acl(idmap, inode,
1641 						 ACL_TYPE_ACCESS);
1642 	if (S_ISDIR(inode->i_mode))
1643 		def_smb_acl = ksmbd_vfs_make_xattr_posix_acl(idmap, inode,
1644 							     ACL_TYPE_DEFAULT);
1645 
1646 	rc = ndr_encode_posix_acl(&acl_ndr, idmap, inode,
1647 				  smb_acl, def_smb_acl);
1648 	if (rc) {
1649 		pr_err("failed to encode ndr to posix acl\n");
1650 		goto out;
1651 	}
1652 
1653 	sha256(acl_ndr.data, acl_ndr.offset, acl.posix_acl_hash);
1654 
1655 	rc = ndr_encode_v4_ntacl(&sd_ndr, &acl);
1656 	if (rc) {
1657 		pr_err("failed to encode ndr to posix acl\n");
1658 		goto out;
1659 	}
1660 
1661 	rc = ksmbd_vfs_setxattr(idmap, path,
1662 				XATTR_NAME_SD, sd_ndr.data,
1663 				sd_ndr.offset, 0, get_write);
1664 	if (rc < 0)
1665 		pr_err("Failed to store XATTR ntacl :%d\n", rc);
1666 
1667 out:
1668 	kfree(sd_ndr.data);
1669 	kfree(acl_ndr.data);
1670 	kfree(smb_acl);
1671 	kfree(def_smb_acl);
1672 	return rc;
1673 }
1674 
ksmbd_vfs_get_sd_xattr(struct ksmbd_conn * conn,struct mnt_idmap * idmap,struct dentry * dentry,struct smb_ntsd ** pntsd)1675 int ksmbd_vfs_get_sd_xattr(struct ksmbd_conn *conn,
1676 			   struct mnt_idmap *idmap,
1677 			   struct dentry *dentry,
1678 			   struct smb_ntsd **pntsd)
1679 {
1680 	int rc;
1681 	struct ndr n;
1682 	struct inode *inode = d_inode(dentry);
1683 	struct ndr acl_ndr = {0};
1684 	struct xattr_ntacl acl = {0};
1685 	struct xattr_smb_acl *smb_acl = NULL, *def_smb_acl = NULL;
1686 	__u8 cmp_hash[XATTR_SD_HASH_SIZE] = {0};
1687 
1688 	rc = ksmbd_vfs_getxattr(idmap, dentry, XATTR_NAME_SD, &n.data);
1689 	if (rc <= 0)
1690 		return rc;
1691 
1692 	n.length = rc;
1693 	rc = ndr_decode_v4_ntacl(&n, &acl);
1694 	if (rc)
1695 		goto out_free;
1696 
1697 	smb_acl = ksmbd_vfs_make_xattr_posix_acl(idmap, inode,
1698 						 ACL_TYPE_ACCESS);
1699 	if (S_ISDIR(inode->i_mode))
1700 		def_smb_acl = ksmbd_vfs_make_xattr_posix_acl(idmap, inode,
1701 							     ACL_TYPE_DEFAULT);
1702 
1703 	rc = ndr_encode_posix_acl(&acl_ndr, idmap, inode, smb_acl,
1704 				  def_smb_acl);
1705 	if (rc) {
1706 		pr_err("failed to encode ndr to posix acl\n");
1707 		goto out_free;
1708 	}
1709 
1710 	sha256(acl_ndr.data, acl_ndr.offset, cmp_hash);
1711 
1712 	if (memcmp(cmp_hash, acl.posix_acl_hash, XATTR_SD_HASH_SIZE)) {
1713 		pr_err("hash value diff\n");
1714 		rc = -EINVAL;
1715 		goto out_free;
1716 	}
1717 
1718 	*pntsd = acl.sd_buf;
1719 	if (acl.sd_size < sizeof(struct smb_ntsd)) {
1720 		pr_err("sd size is invalid\n");
1721 		rc = -EINVAL;
1722 		goto out_free;
1723 	}
1724 
1725 	(*pntsd)->osidoffset = cpu_to_le32(le32_to_cpu((*pntsd)->osidoffset) -
1726 					   NDR_NTSD_OFFSETOF);
1727 	(*pntsd)->gsidoffset = cpu_to_le32(le32_to_cpu((*pntsd)->gsidoffset) -
1728 					   NDR_NTSD_OFFSETOF);
1729 	(*pntsd)->dacloffset = cpu_to_le32(le32_to_cpu((*pntsd)->dacloffset) -
1730 					   NDR_NTSD_OFFSETOF);
1731 
1732 	rc = acl.sd_size;
1733 out_free:
1734 	kfree(acl_ndr.data);
1735 	kfree(smb_acl);
1736 	kfree(def_smb_acl);
1737 	if (rc < 0) {
1738 		kfree(acl.sd_buf);
1739 		*pntsd = NULL;
1740 	}
1741 	kfree(n.data);
1742 	return rc;
1743 }
1744 
ksmbd_vfs_set_dos_attrib_xattr(struct mnt_idmap * idmap,const struct path * path,struct xattr_dos_attrib * da,bool get_write)1745 int ksmbd_vfs_set_dos_attrib_xattr(struct mnt_idmap *idmap,
1746 				   const struct path *path,
1747 				   struct xattr_dos_attrib *da,
1748 				   bool get_write)
1749 {
1750 	struct ndr n;
1751 	int err;
1752 
1753 	err = ndr_encode_dos_attr(&n, da);
1754 	if (err)
1755 		goto out;
1756 
1757 	err = ksmbd_vfs_setxattr(idmap, path, XATTR_NAME_DOS_ATTRIBUTE,
1758 				 (void *)n.data, n.offset, 0, get_write);
1759 	if (err)
1760 		ksmbd_debug(SMB, "failed to store dos attribute in xattr\n");
1761 
1762 out:
1763 	kfree(n.data);
1764 	return err;
1765 }
1766 
ksmbd_vfs_get_dos_attrib_xattr(struct mnt_idmap * idmap,struct dentry * dentry,struct xattr_dos_attrib * da)1767 int ksmbd_vfs_get_dos_attrib_xattr(struct mnt_idmap *idmap,
1768 				   struct dentry *dentry,
1769 				   struct xattr_dos_attrib *da)
1770 {
1771 	struct ndr n;
1772 	int err;
1773 
1774 	err = ksmbd_vfs_getxattr(idmap, dentry, XATTR_NAME_DOS_ATTRIBUTE,
1775 				 (char **)&n.data);
1776 	if (err > 0) {
1777 		n.length = err;
1778 		if (ndr_decode_dos_attr(&n, da))
1779 			err = -EINVAL;
1780 		kfree(n.data);
1781 	} else {
1782 		ksmbd_debug(SMB, "failed to load dos attribute in xattr\n");
1783 	}
1784 
1785 	return err;
1786 }
1787 
1788 /**
1789  * ksmbd_vfs_init_kstat() - convert unix stat information to smb stat format
1790  * @p:          destination buffer
1791  * @ksmbd_kstat:      ksmbd kstat wrapper
1792  *
1793  * Returns: pointer to the converted &struct file_directory_info
1794  */
ksmbd_vfs_init_kstat(char ** p,struct ksmbd_kstat * ksmbd_kstat)1795 void *ksmbd_vfs_init_kstat(char **p, struct ksmbd_kstat *ksmbd_kstat)
1796 {
1797 	FILE_DIRECTORY_INFO *info = (FILE_DIRECTORY_INFO *)(*p);
1798 	struct kstat *kstat = ksmbd_kstat->kstat;
1799 	u64 time;
1800 
1801 	info->FileIndex = 0;
1802 	info->CreationTime = cpu_to_le64(ksmbd_kstat->create_time);
1803 	time = ksmbd_UnixTimeToNT(kstat->atime);
1804 	info->LastAccessTime = cpu_to_le64(time);
1805 	time = ksmbd_UnixTimeToNT(kstat->mtime);
1806 	info->LastWriteTime = cpu_to_le64(time);
1807 	time = ksmbd_UnixTimeToNT(kstat->ctime);
1808 	info->ChangeTime = cpu_to_le64(time);
1809 
1810 	if (ksmbd_kstat->file_attributes & FILE_ATTRIBUTE_DIRECTORY_LE) {
1811 		info->EndOfFile = 0;
1812 		info->AllocationSize = 0;
1813 	} else {
1814 		info->EndOfFile = cpu_to_le64(kstat->size);
1815 		info->AllocationSize = cpu_to_le64(kstat->blocks << 9);
1816 	}
1817 	info->ExtFileAttributes = ksmbd_kstat->file_attributes;
1818 
1819 	return info;
1820 }
1821 
ksmbd_vfs_fill_dentry_attrs(struct ksmbd_work * work,struct mnt_idmap * idmap,struct dentry * dentry,struct ksmbd_kstat * ksmbd_kstat)1822 int ksmbd_vfs_fill_dentry_attrs(struct ksmbd_work *work,
1823 				struct mnt_idmap *idmap,
1824 				struct dentry *dentry,
1825 				struct ksmbd_kstat *ksmbd_kstat)
1826 {
1827 	struct ksmbd_share_config *share_conf = work->tcon->share_conf;
1828 	u64 time;
1829 	int rc;
1830 	struct path path = {
1831 		.mnt = share_conf->vfs_path.mnt,
1832 		.dentry = dentry,
1833 	};
1834 
1835 	rc = vfs_getattr(&path, ksmbd_kstat->kstat,
1836 			 STATX_BASIC_STATS | STATX_BTIME,
1837 			 AT_STATX_SYNC_AS_STAT);
1838 	if (rc)
1839 		return rc;
1840 
1841 	time = ksmbd_UnixTimeToNT(ksmbd_kstat->kstat->ctime);
1842 	ksmbd_kstat->create_time = time;
1843 
1844 	/*
1845 	 * set default value for the case that store dos attributes is not yes
1846 	 * or that acl is disable in server's filesystem and the config is yes.
1847 	 */
1848 	if (S_ISDIR(ksmbd_kstat->kstat->mode))
1849 		ksmbd_kstat->file_attributes = FILE_ATTRIBUTE_DIRECTORY_LE;
1850 	else
1851 		ksmbd_kstat->file_attributes = FILE_ATTRIBUTE_ARCHIVE_LE;
1852 
1853 	if (test_share_config_flag(work->tcon->share_conf,
1854 				   KSMBD_SHARE_FLAG_STORE_DOS_ATTRS)) {
1855 		struct xattr_dos_attrib da;
1856 
1857 		rc = ksmbd_vfs_get_dos_attrib_xattr(idmap, dentry, &da);
1858 		if (rc > 0) {
1859 			ksmbd_kstat->file_attributes = cpu_to_le32(da.attr);
1860 			ksmbd_kstat->create_time = da.create_time;
1861 		} else {
1862 			ksmbd_debug(VFS, "fail to load dos attribute.\n");
1863 		}
1864 	}
1865 
1866 	/*
1867 	 * Only pay for this when it'll actually be used: AAPL
1868 	 * READDIR_ATTR_V2's flags field (AAPL_READDIR_ATTR_V2_NO_XATTR) is
1869 	 * the only consumer. XATTR_NAME_STREAM ("user.DosStream.") is a
1870 	 * reliable, distinct prefix for genuine ADS/stream xattrs -- unlike
1871 	 * DOSATTRIB or ACL xattrs, which live under different prefixes, so
1872 	 * this can't false-positive into telling Finder a file has no extra
1873 	 * data when it actually does.
1874 	 */
1875 	ksmbd_kstat->has_ads_stream = false;
1876 	if (work->conn->aapl_readdir_attr_v2) {
1877 		char *xattr_list = NULL, *name;
1878 		ssize_t xattr_list_len;
1879 
1880 		xattr_list_len = ksmbd_vfs_listxattr(dentry, &xattr_list);
1881 		if (xattr_list_len > 0) {
1882 			for (name = xattr_list;
1883 			     name - xattr_list < xattr_list_len;
1884 			     name += strlen(name) + 1) {
1885 				if (!strncmp(name, XATTR_NAME_STREAM,
1886 					     XATTR_NAME_STREAM_LEN)) {
1887 					ksmbd_kstat->has_ads_stream = true;
1888 					break;
1889 				}
1890 			}
1891 		}
1892 		kvfree(xattr_list);
1893 	}
1894 
1895 	return 0;
1896 }
1897 
ksmbd_vfs_casexattr_len(struct mnt_idmap * idmap,struct dentry * dentry,char * attr_name,int attr_name_len)1898 ssize_t ksmbd_vfs_casexattr_len(struct mnt_idmap *idmap,
1899 				struct dentry *dentry, char *attr_name,
1900 				int attr_name_len)
1901 {
1902 	char *name, *xattr_list = NULL;
1903 	ssize_t value_len = -ENOENT, xattr_list_len;
1904 
1905 	xattr_list_len = ksmbd_vfs_listxattr(dentry, &xattr_list);
1906 	if (xattr_list_len <= 0)
1907 		goto out;
1908 
1909 	for (name = xattr_list; name - xattr_list < xattr_list_len;
1910 			name += strlen(name) + 1) {
1911 		ksmbd_debug(VFS, "%s, len %zd\n", name, strlen(name));
1912 		if (strncasecmp(attr_name, name, attr_name_len))
1913 			continue;
1914 
1915 		value_len = ksmbd_vfs_xattr_len(idmap, dentry, name);
1916 		break;
1917 	}
1918 
1919 out:
1920 	kvfree(xattr_list);
1921 	return value_len;
1922 }
1923 
ksmbd_vfs_xattr_stream_name(char * stream_name,char ** xattr_stream_name,size_t * xattr_stream_name_size,int s_type)1924 int ksmbd_vfs_xattr_stream_name(char *stream_name, char **xattr_stream_name,
1925 				size_t *xattr_stream_name_size, int s_type)
1926 {
1927 	char *type, *buf;
1928 
1929 	if (s_type == DIR_STREAM)
1930 		type = ":$INDEX_ALLOCATION";
1931 	else
1932 		type = ":$DATA";
1933 
1934 	buf = kasprintf(KSMBD_DEFAULT_GFP, "%s%s%s",
1935 			XATTR_NAME_STREAM, stream_name,	type);
1936 	if (!buf)
1937 		return -ENOMEM;
1938 
1939 	*xattr_stream_name = buf;
1940 	*xattr_stream_name_size = strlen(buf) + 1;
1941 
1942 	return 0;
1943 }
1944 
ksmbd_vfs_copy_file_range_buffered(struct ksmbd_work * work,struct ksmbd_file * src_fp,struct ksmbd_file * dst_fp,loff_t src_off,loff_t dst_off,size_t len)1945 static ssize_t ksmbd_vfs_copy_file_range_buffered(struct ksmbd_work *work,
1946 						  struct ksmbd_file *src_fp,
1947 						  struct ksmbd_file *dst_fp,
1948 						  loff_t src_off,
1949 						  loff_t dst_off, size_t len)
1950 {
1951 	size_t buf_size = min_t(size_t, len, SZ_1M);
1952 	size_t copied = 0;
1953 	char *buf;
1954 	ssize_t ret = 0;
1955 
1956 	buf = kvmalloc(buf_size, KSMBD_DEFAULT_GFP);
1957 	if (!buf)
1958 		return -ENOMEM;
1959 
1960 	while (copied < len) {
1961 		size_t chunk_size = min(buf_size, len - copied);
1962 		size_t done = 0;
1963 		loff_t src_pos, dst_pos;
1964 
1965 		if (dst_off > src_off) {
1966 			src_pos = src_off + len - copied - chunk_size;
1967 			dst_pos = dst_off + len - copied - chunk_size;
1968 		} else {
1969 			src_pos = src_off + copied;
1970 			dst_pos = dst_off + copied;
1971 		}
1972 
1973 		while (done < chunk_size) {
1974 			loff_t pos = src_pos + done;
1975 
1976 			ret = ksmbd_vfs_read(work, src_fp, chunk_size - done,
1977 					     &pos, buf + done);
1978 			if (ret <= 0) {
1979 				if (!ret)
1980 					ret = -EIO;
1981 				goto out;
1982 			}
1983 			done += ret;
1984 		}
1985 
1986 		done = 0;
1987 		while (done < chunk_size) {
1988 			loff_t pos = dst_pos + done;
1989 			ssize_t written = 0;
1990 
1991 			ret = ksmbd_vfs_write(work, dst_fp, buf + done,
1992 					      chunk_size - done, &pos, false,
1993 					      &written);
1994 			if (ret < 0)
1995 				goto out;
1996 			if (!written) {
1997 				ret = -EIO;
1998 				goto out;
1999 			}
2000 			done += written;
2001 		}
2002 		copied += chunk_size;
2003 	}
2004 	ret = copied;
2005 out:
2006 	kvfree(buf);
2007 	return ret;
2008 }
2009 
ksmbd_vfs_copy_file_ranges(struct ksmbd_work * work,struct ksmbd_file * src_fp,struct ksmbd_file * dst_fp,struct srv_copychunk * chunks,unsigned int chunk_count,unsigned int * chunk_count_written,unsigned int * chunk_size_written,loff_t * total_size_written)2010 int ksmbd_vfs_copy_file_ranges(struct ksmbd_work *work,
2011 			       struct ksmbd_file *src_fp,
2012 			       struct ksmbd_file *dst_fp,
2013 			       struct srv_copychunk *chunks,
2014 			       unsigned int chunk_count,
2015 			       unsigned int *chunk_count_written,
2016 			       unsigned int *chunk_size_written,
2017 			       loff_t *total_size_written)
2018 {
2019 	unsigned int i;
2020 	loff_t src_off, dst_off, src_file_size;
2021 	size_t len;
2022 	int ret;
2023 
2024 	*chunk_count_written = 0;
2025 	*chunk_size_written = 0;
2026 	*total_size_written = 0;
2027 
2028 	if (!(src_fp->daccess & (FILE_READ_DATA_LE | FILE_EXECUTE_LE))) {
2029 		pr_err("no right to read(%pD)\n", src_fp->filp);
2030 		return -EACCES;
2031 	}
2032 	if (!(dst_fp->daccess & (FILE_WRITE_DATA_LE | FILE_APPEND_DATA_LE))) {
2033 		pr_err("no right to write(%pD)\n", dst_fp->filp);
2034 		return -EACCES;
2035 	}
2036 
2037 	smb_break_all_levII_oplock(work, dst_fp, 1);
2038 
2039 	if (!work->tcon->posix_extensions) {
2040 		for (i = 0; i < chunk_count; i++) {
2041 			src_off = le64_to_cpu(chunks[i].SourceOffset);
2042 			dst_off = le64_to_cpu(chunks[i].TargetOffset);
2043 			len = le32_to_cpu(chunks[i].Length);
2044 
2045 			if (check_lock_range(src_fp->filp, src_off,
2046 					     src_off + len - 1, READ))
2047 				return -EAGAIN;
2048 			if (check_lock_range(dst_fp->filp, dst_off,
2049 					     dst_off + len - 1, WRITE))
2050 				return -EAGAIN;
2051 		}
2052 	}
2053 
2054 	if (ksmbd_stream_fd(src_fp)) {
2055 		const struct cred *saved_cred;
2056 
2057 		saved_cred = override_creds(src_fp->filp->f_cred);
2058 		src_file_size = ksmbd_vfs_casexattr_len(
2059 				file_mnt_idmap(src_fp->filp),
2060 				src_fp->filp->f_path.dentry,
2061 				src_fp->stream.name, src_fp->stream.size);
2062 		revert_creds(saved_cred);
2063 		if (src_file_size < 0)
2064 			return src_file_size;
2065 	} else {
2066 		src_file_size = i_size_read(file_inode(src_fp->filp));
2067 	}
2068 
2069 	/*
2070 	 * macOS Finder's Cmd+D duplicate sends FSCTL_SRV_COPYCHUNK with
2071 	 * ChunkCount=0 meaning "copy the whole file/stream", not the
2072 	 * standard SMB2 "query my copy limits, no data" semantics --
2073 	 * fsctl_copychunk() only reaches here with chunk_count == 0 for
2074 	 * AAPL-negotiated connections, so this doesn't affect compliant
2075 	 * non-AAPL clients. Without this, the destination stays at its
2076 	 * just-created 0 bytes / empty stream: the for loop below is a
2077 	 * no-op when chunk_count is 0, since it never has an iteration to
2078 	 * treat as "copy everything".
2079 	 */
2080 	if (chunk_count == 0 && work->conn->is_aapl) {
2081 		loff_t off = 0;
2082 
2083 		while (off < src_file_size) {
2084 			size_t remaining = src_file_size - off;
2085 			ssize_t copied;
2086 
2087 			/* Same source/destination offset here: an in-place,
2088 			 * same-inode copy at matching offsets is a degenerate
2089 			 * no-op range, not a real overlap, but vfs_copy_file_range
2090 			 * still doesn't support streams -- route those (and the
2091 			 * same-inode case defensively) through the buffered path.
2092 			 */
2093 			if (ksmbd_stream_fd(src_fp) || ksmbd_stream_fd(dst_fp) ||
2094 			    file_inode(src_fp->filp) == file_inode(dst_fp->filp)) {
2095 				copied = ksmbd_vfs_copy_file_range_buffered(work, src_fp, dst_fp,
2096 									    off, off, remaining);
2097 			} else {
2098 				copied = vfs_copy_file_range(src_fp->filp, off,
2099 							     dst_fp->filp, off,
2100 							     remaining, 0);
2101 				if (copied == -EOPNOTSUPP || copied == -EXDEV)
2102 					copied = vfs_copy_file_range(src_fp->filp, off,
2103 								     dst_fp->filp, off,
2104 								     remaining,
2105 								     COPY_FILE_SPLICE);
2106 			}
2107 			if (copied < 0)
2108 				return copied;
2109 			if (copied == 0)
2110 				break;
2111 			off += copied;
2112 		}
2113 
2114 		/*
2115 		 * This is a synthesized whole-file copy, not a response to
2116 		 * any chunk descriptor the client actually sent (it sent
2117 		 * none -- chunk_count is 0). Report zero chunks/chunk-bytes
2118 		 * rather than inventing a chunk that doesn't correspond to
2119 		 * anything in the request; only total_size_written (bytes
2120 		 * actually copied) is meaningful here.
2121 		 */
2122 		*chunk_count_written = 0;
2123 		*chunk_size_written = 0;
2124 		*total_size_written = off;
2125 		return 0;
2126 	}
2127 
2128 	for (i = 0; i < chunk_count; i++) {
2129 		bool stream_len_mismatch = false;
2130 		size_t copy_len;
2131 
2132 		src_off = le64_to_cpu(chunks[i].SourceOffset);
2133 		dst_off = le64_to_cpu(chunks[i].TargetOffset);
2134 		len = le32_to_cpu(chunks[i].Length);
2135 		copy_len = len;
2136 
2137 		if (src_off < 0)
2138 			return -E2BIG;
2139 
2140 		if (src_off > src_file_size || len > src_file_size - src_off) {
2141 			/*
2142 			 * macOS can reuse the main file's chunk list when copying
2143 			 * streams, so the requested range can exceed the size of
2144 			 * the xattr-backed stream. For an AAPL connection, copy the
2145 			 * available stream data and report the requested length to
2146 			 * avoid a copy length mismatch.
2147 			 */
2148 			if (!work->conn->is_aapl ||
2149 			    !ksmbd_stream_fd(src_fp) ||
2150 			    !ksmbd_stream_fd(dst_fp))
2151 				return -E2BIG;
2152 
2153 			stream_len_mismatch = true;
2154 			if (src_off < src_file_size)
2155 				copy_len = src_file_size - src_off;
2156 			else
2157 				copy_len = 0;
2158 		}
2159 
2160 		/*
2161 		 * vfs_copy_file_range does not support streams or overlapping
2162 		 * ranges within the same file.
2163 		 */
2164 		if (!copy_len) {
2165 			ret = 0;
2166 		} else if (ksmbd_stream_fd(src_fp) || ksmbd_stream_fd(dst_fp) ||
2167 		    (file_inode(src_fp->filp) == file_inode(dst_fp->filp) &&
2168 		     dst_off + copy_len > src_off &&
2169 		     dst_off < src_off + copy_len)) {
2170 			ret = ksmbd_vfs_copy_file_range_buffered(work, src_fp,
2171 							  dst_fp, src_off,
2172 							  dst_off, copy_len);
2173 		} else {
2174 			ret = vfs_copy_file_range(src_fp->filp, src_off,
2175 					dst_fp->filp, dst_off, copy_len, 0);
2176 			if (ret == -EOPNOTSUPP || ret == -EXDEV)
2177 				ret = vfs_copy_file_range(src_fp->filp, src_off,
2178 							  dst_fp->filp, dst_off,
2179 							  copy_len,
2180 							  COPY_FILE_SPLICE);
2181 		}
2182 		if (ret < 0)
2183 			return ret;
2184 		if (stream_len_mismatch)
2185 			ret = len;
2186 
2187 		*chunk_count_written += 1;
2188 		*total_size_written += ret;
2189 	}
2190 	return 0;
2191 }
2192 
ksmbd_vfs_posix_lock_wait(struct file_lock * flock)2193 void ksmbd_vfs_posix_lock_wait(struct file_lock *flock)
2194 {
2195 	wait_event(flock->c.flc_wait, !flock->c.flc_blocker);
2196 }
2197 
ksmbd_vfs_posix_lock_unblock(struct file_lock * flock)2198 void ksmbd_vfs_posix_lock_unblock(struct file_lock *flock)
2199 {
2200 	locks_delete_block(flock);
2201 }
2202 
ksmbd_vfs_set_init_posix_acl(struct mnt_idmap * idmap,const struct path * path)2203 int ksmbd_vfs_set_init_posix_acl(struct mnt_idmap *idmap,
2204 				 const struct path *path)
2205 {
2206 	struct posix_acl_state acl_state;
2207 	struct posix_acl *acls;
2208 	struct dentry *dentry = path->dentry;
2209 	struct inode *inode = d_inode(dentry);
2210 	int rc;
2211 
2212 	if (!IS_ENABLED(CONFIG_FS_POSIX_ACL))
2213 		return -EOPNOTSUPP;
2214 
2215 	ksmbd_debug(SMB, "Set posix acls\n");
2216 	rc = init_acl_state(&acl_state, 1);
2217 	if (rc)
2218 		return rc;
2219 
2220 	/* Set default owner group */
2221 	acl_state.owner.allow = (inode->i_mode & 0700) >> 6;
2222 	acl_state.group.allow = (inode->i_mode & 0070) >> 3;
2223 	acl_state.other.allow = inode->i_mode & 0007;
2224 	acl_state.users->aces[acl_state.users->n].uid = inode->i_uid;
2225 	acl_state.users->aces[acl_state.users->n++].perms.allow =
2226 		acl_state.owner.allow;
2227 	acl_state.groups->aces[acl_state.groups->n].gid = inode->i_gid;
2228 	acl_state.groups->aces[acl_state.groups->n++].perms.allow =
2229 		acl_state.group.allow;
2230 	acl_state.mask.allow = 0x07;
2231 
2232 	acls = posix_acl_alloc(6, KSMBD_DEFAULT_GFP);
2233 	if (!acls) {
2234 		free_acl_state(&acl_state);
2235 		return -ENOMEM;
2236 	}
2237 	posix_state_to_acl(&acl_state, acls->a_entries);
2238 
2239 	rc = set_posix_acl(idmap, dentry, ACL_TYPE_ACCESS, acls);
2240 	if (rc < 0)
2241 		ksmbd_debug(SMB, "Set posix acl(ACL_TYPE_ACCESS) failed, rc : %d\n",
2242 			    rc);
2243 	else if (S_ISDIR(inode->i_mode)) {
2244 		posix_state_to_acl(&acl_state, acls->a_entries);
2245 		rc = set_posix_acl(idmap, dentry, ACL_TYPE_DEFAULT, acls);
2246 		if (rc < 0)
2247 			ksmbd_debug(SMB, "Set posix acl(ACL_TYPE_DEFAULT) failed, rc : %d\n",
2248 				    rc);
2249 	}
2250 
2251 	free_acl_state(&acl_state);
2252 	posix_acl_release(acls);
2253 	return rc;
2254 }
2255 
ksmbd_vfs_inherit_posix_acl(struct mnt_idmap * idmap,const struct path * path,struct inode * parent_inode)2256 int ksmbd_vfs_inherit_posix_acl(struct mnt_idmap *idmap,
2257 				const struct path *path, struct inode *parent_inode)
2258 {
2259 	struct posix_acl *acls;
2260 
2261 	if (!IS_ENABLED(CONFIG_FS_POSIX_ACL))
2262 		return -EOPNOTSUPP;
2263 
2264 	acls = get_inode_acl(parent_inode, ACL_TYPE_DEFAULT);
2265 	if (IS_ERR_OR_NULL(acls))
2266 		return -ENOENT;
2267 
2268 	posix_acl_release(acls);
2269 	return 0;
2270 }
2271 
ksmbd_vfs_update_compressed_fattr(struct dentry * dentry,__le32 * fattr)2272 void ksmbd_vfs_update_compressed_fattr(struct dentry *dentry, __le32 *fattr)
2273 {
2274 	int rc;
2275 	struct file_kattr fa = { .flags_valid = true };
2276 
2277 	rc = vfs_fileattr_get(dentry, &fa);
2278 	if (rc)
2279 		return;
2280 
2281 	if (fa.flags & FS_COMPR_FL)
2282 		*fattr |= FILE_ATTRIBUTE_COMPRESSED_LE;
2283 }
2284 
ksmbd_vfs_get_compression(struct ksmbd_file * fp,u16 * fmt)2285 int ksmbd_vfs_get_compression(struct ksmbd_file *fp, u16 *fmt)
2286 {
2287 	struct file_kattr fa = { .flags_valid = true };
2288 	int rc;
2289 
2290 	rc = vfs_fileattr_get(fp->filp->f_path.dentry, &fa);
2291 	if (rc == -ENOIOCTLCMD || rc == -ENOTTY || rc == -EINVAL ||
2292 	    rc == -EOPNOTSUPP) {
2293 		if (fp->f_ci->m_fattr & FILE_ATTRIBUTE_COMPRESSED_LE)
2294 			*fmt = COMPRESSION_FORMAT_LZNT1;
2295 		else
2296 			*fmt = COMPRESSION_FORMAT_NONE;
2297 		rc = 0;
2298 		goto out;
2299 	}
2300 	if (rc)
2301 		goto out;
2302 
2303 	if (fp->f_ci->m_fattr & FILE_ATTRIBUTE_COMPRESSED_LE)
2304 		*fmt = COMPRESSION_FORMAT_LZNT1;
2305 	else
2306 		*fmt = COMPRESSION_FORMAT_NONE;
2307 
2308 out:
2309 	return rc;
2310 }
2311 
__ksmbd_vfs_set_compression(struct ksmbd_work * work,struct ksmbd_file * fp,u16 fmt,bool check_access)2312 static int __ksmbd_vfs_set_compression(struct ksmbd_work *work,
2313 				       struct ksmbd_file *fp, u16 fmt,
2314 				       bool check_access)
2315 {
2316 	const struct cred *saved_cred = NULL;
2317 	struct file_kattr fa;
2318 	struct dentry *dentry = fp->filp->f_path.dentry;
2319 	struct mnt_idmap *idmap = file_mnt_idmap(fp->filp);
2320 	u32 flags;
2321 	__le32 old_fattr;
2322 	int rc;
2323 
2324 	if (check_access && !(fp->daccess & FILE_WRITE_DATA_LE)) {
2325 		rc = -EACCES;
2326 		goto out;
2327 	}
2328 
2329 	if (fmt != COMPRESSION_FORMAT_NONE &&
2330 	    fmt != COMPRESSION_FORMAT_DEFAULT &&
2331 	    fmt != COMPRESSION_FORMAT_LZNT1) {
2332 		rc = -EINVAL;
2333 		goto out;
2334 	}
2335 
2336 	saved_cred = override_creds(fp->filp->f_cred);
2337 	rc = vfs_fileattr_get(dentry, &fa);
2338 	if (rc == -ENOIOCTLCMD || rc == -ENOTTY || rc == -EINVAL ||
2339 	    rc == -EOPNOTSUPP)
2340 		goto update_fattr;
2341 	if (rc)
2342 		goto out;
2343 
2344 	flags = fa.flags;
2345 	if (fmt == COMPRESSION_FORMAT_NONE) {
2346 		flags &= ~FS_COMPR_FL;
2347 	} else if (fmt == COMPRESSION_FORMAT_DEFAULT ||
2348 		   fmt == COMPRESSION_FORMAT_LZNT1) {
2349 		flags |= FS_COMPR_FL;
2350 	}
2351 
2352 	if (flags != fa.flags) {
2353 		fileattr_fill_flags(&fa, flags);
2354 		rc = mnt_want_write_file(fp->filp);
2355 		if (rc)
2356 			goto out;
2357 
2358 		rc = vfs_fileattr_set(idmap, dentry, &fa);
2359 		mnt_drop_write_file(fp->filp);
2360 		if (rc == -ENOIOCTLCMD || rc == -ENOTTY || rc == -EINVAL ||
2361 		    rc == -EOPNOTSUPP)
2362 			goto update_fattr;
2363 		if (rc)
2364 			goto out;
2365 	}
2366 
2367 update_fattr:
2368 	old_fattr = fp->f_ci->m_fattr;
2369 	if (fmt == COMPRESSION_FORMAT_NONE)
2370 		fp->f_ci->m_fattr &= ~FILE_ATTRIBUTE_COMPRESSED_LE;
2371 	else
2372 		fp->f_ci->m_fattr |= FILE_ATTRIBUTE_COMPRESSED_LE;
2373 
2374 	if (fp->f_ci->m_fattr != old_fattr) {
2375 		struct xattr_dos_attrib da = {0};
2376 
2377 		rc = ksmbd_vfs_get_dos_attrib_xattr(idmap, dentry, &da);
2378 		if (rc <= 0) {
2379 			da.version = 4;
2380 			da.itime = fp->itime;
2381 			da.create_time = fp->create_time;
2382 			da.flags = XATTR_DOSINFO_CREATE_TIME |
2383 				XATTR_DOSINFO_ITIME;
2384 		}
2385 
2386 		da.attr = le32_to_cpu(fp->f_ci->m_fattr);
2387 		da.flags |= XATTR_DOSINFO_ATTRIB;
2388 		rc = ksmbd_vfs_set_dos_attrib_xattr(idmap,
2389 						    &fp->filp->f_path,
2390 						    &da, true);
2391 		if (rc)
2392 			rc = 0;
2393 	}
2394 
2395 out:
2396 	if (saved_cred)
2397 		revert_creds(saved_cred);
2398 	return rc;
2399 }
2400 
ksmbd_vfs_set_compression(struct ksmbd_work * work,struct ksmbd_file * fp,u16 fmt)2401 int ksmbd_vfs_set_compression(struct ksmbd_work *work,
2402 			      struct ksmbd_file *fp, u16 fmt)
2403 {
2404 	return __ksmbd_vfs_set_compression(work, fp, fmt, true);
2405 }
2406 
ksmbd_vfs_set_compression_create(struct ksmbd_work * work,struct ksmbd_file * fp,u16 fmt)2407 int ksmbd_vfs_set_compression_create(struct ksmbd_work *work,
2408 				     struct ksmbd_file *fp, u16 fmt)
2409 {
2410 	return __ksmbd_vfs_set_compression(work, fp, fmt, false);
2411 }
2412