2139aa042c790b33fdaefef1507f31b8c5c482c9
[platform/kernel/linux-rpi.git] / fs / ksmbd / vfs.c
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 <linux/kernel.h>
8 #include <linux/fs.h>
9 #include <linux/uaccess.h>
10 #include <linux/backing-dev.h>
11 #include <linux/writeback.h>
12 #include <linux/xattr.h>
13 #include <linux/falloc.h>
14 #include <linux/genhd.h>
15 #include <linux/fsnotify.h>
16 #include <linux/dcache.h>
17 #include <linux/slab.h>
18 #include <linux/vmalloc.h>
19 #include <linux/sched/xacct.h>
20 #include <linux/crc32c.h>
21
22 #include "../internal.h"        /* for vfs_path_lookup */
23
24 #include "glob.h"
25 #include "oplock.h"
26 #include "connection.h"
27 #include "vfs.h"
28 #include "vfs_cache.h"
29 #include "smbacl.h"
30 #include "ndr.h"
31 #include "auth.h"
32 #include "misc.h"
33
34 #include "smb_common.h"
35 #include "mgmt/share_config.h"
36 #include "mgmt/tree_connect.h"
37 #include "mgmt/user_session.h"
38 #include "mgmt/user_config.h"
39
40 static char *extract_last_component(char *path)
41 {
42         char *p = strrchr(path, '/');
43
44         if (p && p[1] != '\0') {
45                 *p = '\0';
46                 p++;
47         } else {
48                 p = NULL;
49         }
50         return p;
51 }
52
53 static void ksmbd_vfs_inherit_owner(struct ksmbd_work *work,
54                                     struct inode *parent_inode,
55                                     struct inode *inode)
56 {
57         if (!test_share_config_flag(work->tcon->share_conf,
58                                     KSMBD_SHARE_FLAG_INHERIT_OWNER))
59                 return;
60
61         i_uid_write(inode, i_uid_read(parent_inode));
62 }
63
64 /**
65  * ksmbd_vfs_lock_parent() - lock parent dentry if it is stable
66  *
67  * the parent dentry got by dget_parent or @parent could be
68  * unstable, we try to lock a parent inode and lookup the
69  * child dentry again.
70  *
71  * the reference count of @parent isn't incremented.
72  */
73 int ksmbd_vfs_lock_parent(struct user_namespace *user_ns, struct dentry *parent,
74                           struct dentry *child)
75 {
76         struct dentry *dentry;
77         int ret = 0;
78
79         inode_lock_nested(d_inode(parent), I_MUTEX_PARENT);
80         dentry = lookup_one(user_ns, child->d_name.name, parent,
81                             child->d_name.len);
82         if (IS_ERR(dentry)) {
83                 ret = PTR_ERR(dentry);
84                 goto out_err;
85         }
86
87         if (dentry != child) {
88                 ret = -ESTALE;
89                 dput(dentry);
90                 goto out_err;
91         }
92
93         dput(dentry);
94         return 0;
95 out_err:
96         inode_unlock(d_inode(parent));
97         return ret;
98 }
99
100 int ksmbd_vfs_may_delete(struct user_namespace *user_ns,
101                          struct dentry *dentry)
102 {
103         struct dentry *parent;
104         int ret;
105
106         parent = dget_parent(dentry);
107         ret = ksmbd_vfs_lock_parent(user_ns, parent, dentry);
108         if (ret) {
109                 dput(parent);
110                 return ret;
111         }
112
113         ret = inode_permission(user_ns, d_inode(parent),
114                                MAY_EXEC | MAY_WRITE);
115
116         inode_unlock(d_inode(parent));
117         dput(parent);
118         return ret;
119 }
120
121 int ksmbd_vfs_query_maximal_access(struct user_namespace *user_ns,
122                                    struct dentry *dentry, __le32 *daccess)
123 {
124         struct dentry *parent;
125         int ret = 0;
126
127         *daccess = cpu_to_le32(FILE_READ_ATTRIBUTES | READ_CONTROL);
128
129         if (!inode_permission(user_ns, d_inode(dentry), MAY_OPEN | MAY_WRITE))
130                 *daccess |= cpu_to_le32(WRITE_DAC | WRITE_OWNER | SYNCHRONIZE |
131                                 FILE_WRITE_DATA | FILE_APPEND_DATA |
132                                 FILE_WRITE_EA | FILE_WRITE_ATTRIBUTES |
133                                 FILE_DELETE_CHILD);
134
135         if (!inode_permission(user_ns, d_inode(dentry), MAY_OPEN | MAY_READ))
136                 *daccess |= FILE_READ_DATA_LE | FILE_READ_EA_LE;
137
138         if (!inode_permission(user_ns, d_inode(dentry), MAY_OPEN | MAY_EXEC))
139                 *daccess |= FILE_EXECUTE_LE;
140
141         parent = dget_parent(dentry);
142         ret = ksmbd_vfs_lock_parent(user_ns, parent, dentry);
143         if (ret) {
144                 dput(parent);
145                 return ret;
146         }
147
148         if (!inode_permission(user_ns, d_inode(parent), MAY_EXEC | MAY_WRITE))
149                 *daccess |= FILE_DELETE_LE;
150
151         inode_unlock(d_inode(parent));
152         dput(parent);
153         return ret;
154 }
155
156 /**
157  * ksmbd_vfs_create() - vfs helper for smb create file
158  * @work:       work
159  * @name:       file name that is relative to share
160  * @mode:       file create mode
161  *
162  * Return:      0 on success, otherwise error
163  */
164 int ksmbd_vfs_create(struct ksmbd_work *work, const char *name, umode_t mode)
165 {
166         struct path path;
167         struct dentry *dentry;
168         int err;
169
170         dentry = ksmbd_vfs_kern_path_create(work, name,
171                                             LOOKUP_NO_SYMLINKS, &path);
172         if (IS_ERR(dentry)) {
173                 err = PTR_ERR(dentry);
174                 if (err != -ENOENT)
175                         pr_err("path create failed for %s, err %d\n",
176                                name, err);
177                 return err;
178         }
179
180         mode |= S_IFREG;
181         err = vfs_create(mnt_user_ns(path.mnt), d_inode(path.dentry),
182                          dentry, mode, true);
183         if (!err) {
184                 ksmbd_vfs_inherit_owner(work, d_inode(path.dentry),
185                                         d_inode(dentry));
186         } else {
187                 pr_err("File(%s): creation failed (err:%d)\n", name, err);
188         }
189         done_path_create(&path, dentry);
190         return err;
191 }
192
193 /**
194  * ksmbd_vfs_mkdir() - vfs helper for smb create directory
195  * @work:       work
196  * @name:       directory name that is relative to share
197  * @mode:       directory create mode
198  *
199  * Return:      0 on success, otherwise error
200  */
201 int ksmbd_vfs_mkdir(struct ksmbd_work *work, const char *name, umode_t mode)
202 {
203         struct user_namespace *user_ns;
204         struct path path;
205         struct dentry *dentry;
206         int err;
207
208         dentry = ksmbd_vfs_kern_path_create(work, name,
209                                             LOOKUP_NO_SYMLINKS | LOOKUP_DIRECTORY,
210                                             &path);
211         if (IS_ERR(dentry)) {
212                 err = PTR_ERR(dentry);
213                 if (err != -EEXIST)
214                         ksmbd_debug(VFS, "path create failed for %s, err %d\n",
215                                     name, err);
216                 return err;
217         }
218
219         user_ns = mnt_user_ns(path.mnt);
220         mode |= S_IFDIR;
221         err = vfs_mkdir(user_ns, d_inode(path.dentry), dentry, mode);
222         if (err) {
223                 goto out;
224         } else if (d_unhashed(dentry)) {
225                 struct dentry *d;
226
227                 d = lookup_one(user_ns, dentry->d_name.name, dentry->d_parent,
228                                dentry->d_name.len);
229                 if (IS_ERR(d)) {
230                         err = PTR_ERR(d);
231                         goto out;
232                 }
233                 if (unlikely(d_is_negative(d))) {
234                         dput(d);
235                         err = -ENOENT;
236                         goto out;
237                 }
238
239                 ksmbd_vfs_inherit_owner(work, d_inode(path.dentry), d_inode(d));
240                 dput(d);
241         }
242 out:
243         done_path_create(&path, dentry);
244         if (err)
245                 pr_err("mkdir(%s): creation failed (err:%d)\n", name, err);
246         return err;
247 }
248
249 static ssize_t ksmbd_vfs_getcasexattr(struct user_namespace *user_ns,
250                                       struct dentry *dentry, char *attr_name,
251                                       int attr_name_len, char **attr_value)
252 {
253         char *name, *xattr_list = NULL;
254         ssize_t value_len = -ENOENT, xattr_list_len;
255
256         xattr_list_len = ksmbd_vfs_listxattr(dentry, &xattr_list);
257         if (xattr_list_len <= 0)
258                 goto out;
259
260         for (name = xattr_list; name - xattr_list < xattr_list_len;
261                         name += strlen(name) + 1) {
262                 ksmbd_debug(VFS, "%s, len %zd\n", name, strlen(name));
263                 if (strncasecmp(attr_name, name, attr_name_len))
264                         continue;
265
266                 value_len = ksmbd_vfs_getxattr(user_ns,
267                                                dentry,
268                                                name,
269                                                attr_value);
270                 if (value_len < 0)
271                         pr_err("failed to get xattr in file\n");
272                 break;
273         }
274
275 out:
276         kvfree(xattr_list);
277         return value_len;
278 }
279
280 static int ksmbd_vfs_stream_read(struct ksmbd_file *fp, char *buf, loff_t *pos,
281                                  size_t count)
282 {
283         ssize_t v_len;
284         char *stream_buf = NULL;
285
286         ksmbd_debug(VFS, "read stream data pos : %llu, count : %zd\n",
287                     *pos, count);
288
289         v_len = ksmbd_vfs_getcasexattr(file_mnt_user_ns(fp->filp),
290                                        fp->filp->f_path.dentry,
291                                        fp->stream.name,
292                                        fp->stream.size,
293                                        &stream_buf);
294         if ((int)v_len <= 0)
295                 return (int)v_len;
296
297         if (v_len <= *pos) {
298                 count = -EINVAL;
299                 goto free_buf;
300         }
301
302         if (v_len - *pos < count)
303                 count = v_len - *pos;
304
305         memcpy(buf, &stream_buf[*pos], count);
306
307 free_buf:
308         kvfree(stream_buf);
309         return count;
310 }
311
312 /**
313  * check_lock_range() - vfs helper for smb byte range file locking
314  * @filp:       the file to apply the lock to
315  * @start:      lock start byte offset
316  * @end:        lock end byte offset
317  * @type:       byte range type read/write
318  *
319  * Return:      0 on success, otherwise error
320  */
321 static int check_lock_range(struct file *filp, loff_t start, loff_t end,
322                             unsigned char type)
323 {
324         struct file_lock *flock;
325         struct file_lock_context *ctx = file_inode(filp)->i_flctx;
326         int error = 0;
327
328         if (!ctx || list_empty_careful(&ctx->flc_posix))
329                 return 0;
330
331         spin_lock(&ctx->flc_lock);
332         list_for_each_entry(flock, &ctx->flc_posix, fl_list) {
333                 /* check conflict locks */
334                 if (flock->fl_end >= start && end >= flock->fl_start) {
335                         if (flock->fl_type == F_RDLCK) {
336                                 if (type == WRITE) {
337                                         pr_err("not allow write by shared lock\n");
338                                         error = 1;
339                                         goto out;
340                                 }
341                         } else if (flock->fl_type == F_WRLCK) {
342                                 /* check owner in lock */
343                                 if (flock->fl_file != filp) {
344                                         error = 1;
345                                         pr_err("not allow rw access by exclusive lock from other opens\n");
346                                         goto out;
347                                 }
348                         }
349                 }
350         }
351 out:
352         spin_unlock(&ctx->flc_lock);
353         return error;
354 }
355
356 /**
357  * ksmbd_vfs_read() - vfs helper for smb file read
358  * @work:       smb work
359  * @fid:        file id of open file
360  * @count:      read byte count
361  * @pos:        file pos
362  *
363  * Return:      number of read bytes on success, otherwise error
364  */
365 int ksmbd_vfs_read(struct ksmbd_work *work, struct ksmbd_file *fp, size_t count,
366                    loff_t *pos)
367 {
368         struct file *filp = fp->filp;
369         ssize_t nbytes = 0;
370         char *rbuf = work->aux_payload_buf;
371         struct inode *inode = file_inode(filp);
372
373         if (S_ISDIR(inode->i_mode))
374                 return -EISDIR;
375
376         if (unlikely(count == 0))
377                 return 0;
378
379         if (work->conn->connection_type) {
380                 if (!(fp->daccess & (FILE_READ_DATA_LE | FILE_EXECUTE_LE))) {
381                         pr_err("no right to read(%pd)\n",
382                                fp->filp->f_path.dentry);
383                         return -EACCES;
384                 }
385         }
386
387         if (ksmbd_stream_fd(fp))
388                 return ksmbd_vfs_stream_read(fp, rbuf, pos, count);
389
390         if (!work->tcon->posix_extensions) {
391                 int ret;
392
393                 ret = check_lock_range(filp, *pos, *pos + count - 1, READ);
394                 if (ret) {
395                         pr_err("unable to read due to lock\n");
396                         return -EAGAIN;
397                 }
398         }
399
400         nbytes = kernel_read(filp, rbuf, count, pos);
401         if (nbytes < 0) {
402                 pr_err("smb read failed for (%s), err = %zd\n",
403                        fp->filename, nbytes);
404                 return nbytes;
405         }
406
407         filp->f_pos = *pos;
408         return nbytes;
409 }
410
411 static int ksmbd_vfs_stream_write(struct ksmbd_file *fp, char *buf, loff_t *pos,
412                                   size_t count)
413 {
414         char *stream_buf = NULL, *wbuf;
415         struct user_namespace *user_ns = file_mnt_user_ns(fp->filp);
416         size_t size, v_len;
417         int err = 0;
418
419         ksmbd_debug(VFS, "write stream data pos : %llu, count : %zd\n",
420                     *pos, count);
421
422         size = *pos + count;
423         if (size > XATTR_SIZE_MAX) {
424                 size = XATTR_SIZE_MAX;
425                 count = (*pos + count) - XATTR_SIZE_MAX;
426         }
427
428         v_len = ksmbd_vfs_getcasexattr(user_ns,
429                                        fp->filp->f_path.dentry,
430                                        fp->stream.name,
431                                        fp->stream.size,
432                                        &stream_buf);
433         if ((int)v_len < 0) {
434                 pr_err("not found stream in xattr : %zd\n", v_len);
435                 err = (int)v_len;
436                 goto out;
437         }
438
439         if (v_len < size) {
440                 wbuf = kvmalloc(size, GFP_KERNEL | __GFP_ZERO);
441                 if (!wbuf) {
442                         err = -ENOMEM;
443                         goto out;
444                 }
445
446                 if (v_len > 0)
447                         memcpy(wbuf, stream_buf, v_len);
448                 kvfree(stream_buf);
449                 stream_buf = wbuf;
450         }
451
452         memcpy(&stream_buf[*pos], buf, count);
453
454         err = ksmbd_vfs_setxattr(user_ns,
455                                  fp->filp->f_path.dentry,
456                                  fp->stream.name,
457                                  (void *)stream_buf,
458                                  size,
459                                  0);
460         if (err < 0)
461                 goto out;
462
463         fp->filp->f_pos = *pos;
464         err = 0;
465 out:
466         kvfree(stream_buf);
467         return err;
468 }
469
470 /**
471  * ksmbd_vfs_write() - vfs helper for smb file write
472  * @work:       work
473  * @fid:        file id of open file
474  * @buf:        buf containing data for writing
475  * @count:      read byte count
476  * @pos:        file pos
477  * @sync:       fsync after write
478  * @written:    number of bytes written
479  *
480  * Return:      0 on success, otherwise error
481  */
482 int ksmbd_vfs_write(struct ksmbd_work *work, struct ksmbd_file *fp,
483                     char *buf, size_t count, loff_t *pos, bool sync,
484                     ssize_t *written)
485 {
486         struct ksmbd_session *sess = work->sess;
487         struct file *filp;
488         loff_t  offset = *pos;
489         int err = 0;
490
491         if (sess->conn->connection_type) {
492                 if (!(fp->daccess & FILE_WRITE_DATA_LE)) {
493                         pr_err("no right to write(%pd)\n",
494                                fp->filp->f_path.dentry);
495                         err = -EACCES;
496                         goto out;
497                 }
498         }
499
500         filp = fp->filp;
501
502         if (ksmbd_stream_fd(fp)) {
503                 err = ksmbd_vfs_stream_write(fp, buf, pos, count);
504                 if (!err)
505                         *written = count;
506                 goto out;
507         }
508
509         if (!work->tcon->posix_extensions) {
510                 err = check_lock_range(filp, *pos, *pos + count - 1, WRITE);
511                 if (err) {
512                         pr_err("unable to write due to lock\n");
513                         err = -EAGAIN;
514                         goto out;
515                 }
516         }
517
518         /* Do we need to break any of a levelII oplock? */
519         smb_break_all_levII_oplock(work, fp, 1);
520
521         err = kernel_write(filp, buf, count, pos);
522         if (err < 0) {
523                 ksmbd_debug(VFS, "smb write failed, err = %d\n", err);
524                 goto out;
525         }
526
527         filp->f_pos = *pos;
528         *written = err;
529         err = 0;
530         if (sync) {
531                 err = vfs_fsync_range(filp, offset, offset + *written, 0);
532                 if (err < 0)
533                         pr_err("fsync failed for filename = %pd, err = %d\n",
534                                fp->filp->f_path.dentry, err);
535         }
536
537 out:
538         return err;
539 }
540
541 /**
542  * ksmbd_vfs_getattr() - vfs helper for smb getattr
543  * @work:       work
544  * @fid:        file id of open file
545  * @attrs:      inode attributes
546  *
547  * Return:      0 on success, otherwise error
548  */
549 int ksmbd_vfs_getattr(struct path *path, struct kstat *stat)
550 {
551         int err;
552
553         err = vfs_getattr(path, stat, STATX_BTIME, AT_STATX_SYNC_AS_STAT);
554         if (err)
555                 pr_err("getattr failed, err %d\n", err);
556         return err;
557 }
558
559 /**
560  * ksmbd_vfs_fsync() - vfs helper for smb fsync
561  * @work:       work
562  * @fid:        file id of open file
563  *
564  * Return:      0 on success, otherwise error
565  */
566 int ksmbd_vfs_fsync(struct ksmbd_work *work, u64 fid, u64 p_id)
567 {
568         struct ksmbd_file *fp;
569         int err;
570
571         fp = ksmbd_lookup_fd_slow(work, fid, p_id);
572         if (!fp) {
573                 pr_err("failed to get filp for fid %llu\n", fid);
574                 return -ENOENT;
575         }
576         err = vfs_fsync(fp->filp, 0);
577         if (err < 0)
578                 pr_err("smb fsync failed, err = %d\n", err);
579         ksmbd_fd_put(work, fp);
580         return err;
581 }
582
583 /**
584  * ksmbd_vfs_remove_file() - vfs helper for smb rmdir or unlink
585  * @name:       directory or file name that is relative to share
586  *
587  * Return:      0 on success, otherwise error
588  */
589 int ksmbd_vfs_remove_file(struct ksmbd_work *work, char *name)
590 {
591         struct user_namespace *user_ns;
592         struct path path;
593         struct dentry *parent;
594         int err;
595
596         if (ksmbd_override_fsids(work))
597                 return -ENOMEM;
598
599         err = ksmbd_vfs_kern_path(work, name, LOOKUP_NO_SYMLINKS, &path, false);
600         if (err) {
601                 ksmbd_debug(VFS, "can't get %s, err %d\n", name, err);
602                 ksmbd_revert_fsids(work);
603                 return err;
604         }
605
606         user_ns = mnt_user_ns(path.mnt);
607         parent = dget_parent(path.dentry);
608         err = ksmbd_vfs_lock_parent(user_ns, parent, path.dentry);
609         if (err) {
610                 dput(parent);
611                 path_put(&path);
612                 ksmbd_revert_fsids(work);
613                 return err;
614         }
615
616         if (!d_inode(path.dentry)->i_nlink) {
617                 err = -ENOENT;
618                 goto out_err;
619         }
620
621         if (S_ISDIR(d_inode(path.dentry)->i_mode)) {
622                 err = vfs_rmdir(user_ns, d_inode(parent), path.dentry);
623                 if (err && err != -ENOTEMPTY)
624                         ksmbd_debug(VFS, "%s: rmdir failed, err %d\n", name,
625                                     err);
626         } else {
627                 err = vfs_unlink(user_ns, d_inode(parent), path.dentry, NULL);
628                 if (err)
629                         ksmbd_debug(VFS, "%s: unlink failed, err %d\n", name,
630                                     err);
631         }
632
633 out_err:
634         inode_unlock(d_inode(parent));
635         dput(parent);
636         path_put(&path);
637         ksmbd_revert_fsids(work);
638         return err;
639 }
640
641 /**
642  * ksmbd_vfs_link() - vfs helper for creating smb hardlink
643  * @oldname:    source file name
644  * @newname:    hardlink name that is relative to share
645  *
646  * Return:      0 on success, otherwise error
647  */
648 int ksmbd_vfs_link(struct ksmbd_work *work, const char *oldname,
649                    const char *newname)
650 {
651         struct path oldpath, newpath;
652         struct dentry *dentry;
653         int err;
654
655         if (ksmbd_override_fsids(work))
656                 return -ENOMEM;
657
658         err = kern_path(oldname, LOOKUP_NO_SYMLINKS, &oldpath);
659         if (err) {
660                 pr_err("cannot get linux path for %s, err = %d\n",
661                        oldname, err);
662                 goto out1;
663         }
664
665         dentry = ksmbd_vfs_kern_path_create(work, newname,
666                                             LOOKUP_NO_SYMLINKS | LOOKUP_REVAL,
667                                             &newpath);
668         if (IS_ERR(dentry)) {
669                 err = PTR_ERR(dentry);
670                 pr_err("path create err for %s, err %d\n", newname, err);
671                 goto out2;
672         }
673
674         err = -EXDEV;
675         if (oldpath.mnt != newpath.mnt) {
676                 pr_err("vfs_link failed err %d\n", err);
677                 goto out3;
678         }
679
680         err = vfs_link(oldpath.dentry, mnt_user_ns(newpath.mnt),
681                        d_inode(newpath.dentry),
682                        dentry, NULL);
683         if (err)
684                 ksmbd_debug(VFS, "vfs_link failed err %d\n", err);
685
686 out3:
687         done_path_create(&newpath, dentry);
688 out2:
689         path_put(&oldpath);
690 out1:
691         ksmbd_revert_fsids(work);
692         return err;
693 }
694
695 static int ksmbd_validate_entry_in_use(struct dentry *src_dent)
696 {
697         struct dentry *dst_dent;
698
699         spin_lock(&src_dent->d_lock);
700         list_for_each_entry(dst_dent, &src_dent->d_subdirs, d_child) {
701                 struct ksmbd_file *child_fp;
702
703                 if (d_really_is_negative(dst_dent))
704                         continue;
705
706                 child_fp = ksmbd_lookup_fd_inode(d_inode(dst_dent));
707                 if (child_fp) {
708                         spin_unlock(&src_dent->d_lock);
709                         ksmbd_debug(VFS, "Forbid rename, sub file/dir is in use\n");
710                         return -EACCES;
711                 }
712         }
713         spin_unlock(&src_dent->d_lock);
714
715         return 0;
716 }
717
718 static int __ksmbd_vfs_rename(struct ksmbd_work *work,
719                               struct user_namespace *src_user_ns,
720                               struct dentry *src_dent_parent,
721                               struct dentry *src_dent,
722                               struct user_namespace *dst_user_ns,
723                               struct dentry *dst_dent_parent,
724                               struct dentry *trap_dent,
725                               char *dst_name)
726 {
727         struct dentry *dst_dent;
728         int err;
729
730         if (!work->tcon->posix_extensions) {
731                 err = ksmbd_validate_entry_in_use(src_dent);
732                 if (err)
733                         return err;
734         }
735
736         if (d_really_is_negative(src_dent_parent))
737                 return -ENOENT;
738         if (d_really_is_negative(dst_dent_parent))
739                 return -ENOENT;
740         if (d_really_is_negative(src_dent))
741                 return -ENOENT;
742         if (src_dent == trap_dent)
743                 return -EINVAL;
744
745         if (ksmbd_override_fsids(work))
746                 return -ENOMEM;
747
748         dst_dent = lookup_one(dst_user_ns, dst_name, dst_dent_parent,
749                               strlen(dst_name));
750         err = PTR_ERR(dst_dent);
751         if (IS_ERR(dst_dent)) {
752                 pr_err("lookup failed %s [%d]\n", dst_name, err);
753                 goto out;
754         }
755
756         err = -ENOTEMPTY;
757         if (dst_dent != trap_dent && !d_really_is_positive(dst_dent)) {
758                 struct renamedata rd = {
759                         .old_mnt_userns = src_user_ns,
760                         .old_dir        = d_inode(src_dent_parent),
761                         .old_dentry     = src_dent,
762                         .new_mnt_userns = dst_user_ns,
763                         .new_dir        = d_inode(dst_dent_parent),
764                         .new_dentry     = dst_dent,
765                 };
766                 err = vfs_rename(&rd);
767         }
768         if (err)
769                 pr_err("vfs_rename failed err %d\n", err);
770         if (dst_dent)
771                 dput(dst_dent);
772 out:
773         ksmbd_revert_fsids(work);
774         return err;
775 }
776
777 int ksmbd_vfs_fp_rename(struct ksmbd_work *work, struct ksmbd_file *fp,
778                         char *newname)
779 {
780         struct user_namespace *user_ns;
781         struct path dst_path;
782         struct dentry *src_dent_parent, *dst_dent_parent;
783         struct dentry *src_dent, *trap_dent, *src_child;
784         char *dst_name;
785         int err;
786
787         dst_name = extract_last_component(newname);
788         if (!dst_name) {
789                 dst_name = newname;
790                 newname = "";
791         }
792
793         src_dent_parent = dget_parent(fp->filp->f_path.dentry);
794         src_dent = fp->filp->f_path.dentry;
795
796         err = ksmbd_vfs_kern_path(work, newname,
797                                   LOOKUP_NO_SYMLINKS | LOOKUP_DIRECTORY,
798                                   &dst_path, false);
799         if (err) {
800                 ksmbd_debug(VFS, "Cannot get path for %s [%d]\n", newname, err);
801                 goto out;
802         }
803         dst_dent_parent = dst_path.dentry;
804
805         trap_dent = lock_rename(src_dent_parent, dst_dent_parent);
806         dget(src_dent);
807         dget(dst_dent_parent);
808         user_ns = file_mnt_user_ns(fp->filp);
809         src_child = lookup_one(user_ns, src_dent->d_name.name, src_dent_parent,
810                                src_dent->d_name.len);
811         if (IS_ERR(src_child)) {
812                 err = PTR_ERR(src_child);
813                 goto out_lock;
814         }
815
816         if (src_child != src_dent) {
817                 err = -ESTALE;
818                 dput(src_child);
819                 goto out_lock;
820         }
821         dput(src_child);
822
823         err = __ksmbd_vfs_rename(work,
824                                  user_ns,
825                                  src_dent_parent,
826                                  src_dent,
827                                  mnt_user_ns(dst_path.mnt),
828                                  dst_dent_parent,
829                                  trap_dent,
830                                  dst_name);
831 out_lock:
832         dput(src_dent);
833         dput(dst_dent_parent);
834         unlock_rename(src_dent_parent, dst_dent_parent);
835         path_put(&dst_path);
836 out:
837         dput(src_dent_parent);
838         return err;
839 }
840
841 /**
842  * ksmbd_vfs_truncate() - vfs helper for smb file truncate
843  * @work:       work
844  * @fid:        file id of old file
845  * @size:       truncate to given size
846  *
847  * Return:      0 on success, otherwise error
848  */
849 int ksmbd_vfs_truncate(struct ksmbd_work *work,
850                        struct ksmbd_file *fp, loff_t size)
851 {
852         int err = 0;
853         struct file *filp;
854
855         filp = fp->filp;
856
857         /* Do we need to break any of a levelII oplock? */
858         smb_break_all_levII_oplock(work, fp, 1);
859
860         if (!work->tcon->posix_extensions) {
861                 struct inode *inode = file_inode(filp);
862
863                 if (size < inode->i_size) {
864                         err = check_lock_range(filp, size,
865                                                inode->i_size - 1, WRITE);
866                 } else {
867                         err = check_lock_range(filp, inode->i_size,
868                                                size - 1, WRITE);
869                 }
870
871                 if (err) {
872                         pr_err("failed due to lock\n");
873                         return -EAGAIN;
874                 }
875         }
876
877         err = vfs_truncate(&filp->f_path, size);
878         if (err)
879                 pr_err("truncate failed for filename : %s err %d\n",
880                        fp->filename, err);
881         return err;
882 }
883
884 /**
885  * ksmbd_vfs_listxattr() - vfs helper for smb list extended attributes
886  * @dentry:     dentry of file for listing xattrs
887  * @list:       destination buffer
888  * @size:       destination buffer length
889  *
890  * Return:      xattr list length on success, otherwise error
891  */
892 ssize_t ksmbd_vfs_listxattr(struct dentry *dentry, char **list)
893 {
894         ssize_t size;
895         char *vlist = NULL;
896
897         size = vfs_listxattr(dentry, NULL, 0);
898         if (size <= 0)
899                 return size;
900
901         vlist = kvmalloc(size, GFP_KERNEL | __GFP_ZERO);
902         if (!vlist)
903                 return -ENOMEM;
904
905         *list = vlist;
906         size = vfs_listxattr(dentry, vlist, size);
907         if (size < 0) {
908                 ksmbd_debug(VFS, "listxattr failed\n");
909                 kvfree(vlist);
910                 *list = NULL;
911         }
912
913         return size;
914 }
915
916 static ssize_t ksmbd_vfs_xattr_len(struct user_namespace *user_ns,
917                                    struct dentry *dentry, char *xattr_name)
918 {
919         return vfs_getxattr(user_ns, dentry, xattr_name, NULL, 0);
920 }
921
922 /**
923  * ksmbd_vfs_getxattr() - vfs helper for smb get extended attributes value
924  * @user_ns:    user namespace
925  * @dentry:     dentry of file for getting xattrs
926  * @xattr_name: name of xattr name to query
927  * @xattr_buf:  destination buffer xattr value
928  *
929  * Return:      read xattr value length on success, otherwise error
930  */
931 ssize_t ksmbd_vfs_getxattr(struct user_namespace *user_ns,
932                            struct dentry *dentry,
933                            char *xattr_name, char **xattr_buf)
934 {
935         ssize_t xattr_len;
936         char *buf;
937
938         *xattr_buf = NULL;
939         xattr_len = ksmbd_vfs_xattr_len(user_ns, dentry, xattr_name);
940         if (xattr_len < 0)
941                 return xattr_len;
942
943         buf = kmalloc(xattr_len + 1, GFP_KERNEL);
944         if (!buf)
945                 return -ENOMEM;
946
947         xattr_len = vfs_getxattr(user_ns, dentry, xattr_name,
948                                  (void *)buf, xattr_len);
949         if (xattr_len > 0)
950                 *xattr_buf = buf;
951         else
952                 kfree(buf);
953         return xattr_len;
954 }
955
956 /**
957  * ksmbd_vfs_setxattr() - vfs helper for smb set extended attributes value
958  * @user_ns:    user namespace
959  * @dentry:     dentry to set XATTR at
960  * @name:       xattr name for setxattr
961  * @value:      xattr value to set
962  * @size:       size of xattr value
963  * @flags:      destination buffer length
964  *
965  * Return:      0 on success, otherwise error
966  */
967 int ksmbd_vfs_setxattr(struct user_namespace *user_ns,
968                        struct dentry *dentry, const char *attr_name,
969                        const void *attr_value, size_t attr_size, int flags)
970 {
971         int err;
972
973         err = vfs_setxattr(user_ns,
974                            dentry,
975                            attr_name,
976                            attr_value,
977                            attr_size,
978                            flags);
979         if (err)
980                 ksmbd_debug(VFS, "setxattr failed, err %d\n", err);
981         return err;
982 }
983
984 /**
985  * ksmbd_vfs_set_fadvise() - convert smb IO caching options to linux options
986  * @filp:       file pointer for IO
987  * @options:    smb IO options
988  */
989 void ksmbd_vfs_set_fadvise(struct file *filp, __le32 option)
990 {
991         struct address_space *mapping;
992
993         mapping = filp->f_mapping;
994
995         if (!option || !mapping)
996                 return;
997
998         if (option & FILE_WRITE_THROUGH_LE) {
999                 filp->f_flags |= O_SYNC;
1000         } else if (option & FILE_SEQUENTIAL_ONLY_LE) {
1001                 filp->f_ra.ra_pages = inode_to_bdi(mapping->host)->ra_pages * 2;
1002                 spin_lock(&filp->f_lock);
1003                 filp->f_mode &= ~FMODE_RANDOM;
1004                 spin_unlock(&filp->f_lock);
1005         } else if (option & FILE_RANDOM_ACCESS_LE) {
1006                 spin_lock(&filp->f_lock);
1007                 filp->f_mode |= FMODE_RANDOM;
1008                 spin_unlock(&filp->f_lock);
1009         }
1010 }
1011
1012 int ksmbd_vfs_zero_data(struct ksmbd_work *work, struct ksmbd_file *fp,
1013                         loff_t off, loff_t len)
1014 {
1015         smb_break_all_levII_oplock(work, fp, 1);
1016         if (fp->f_ci->m_fattr & ATTR_SPARSE_FILE_LE)
1017                 return vfs_fallocate(fp->filp,
1018                                      FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE,
1019                                      off, len);
1020
1021         return vfs_fallocate(fp->filp,
1022                              FALLOC_FL_ZERO_RANGE | FALLOC_FL_KEEP_SIZE,
1023                              off, len);
1024 }
1025
1026 int ksmbd_vfs_fqar_lseek(struct ksmbd_file *fp, loff_t start, loff_t length,
1027                          struct file_allocated_range_buffer *ranges,
1028                          unsigned int in_count, unsigned int *out_count)
1029 {
1030         struct file *f = fp->filp;
1031         struct inode *inode = file_inode(fp->filp);
1032         loff_t maxbytes = (u64)inode->i_sb->s_maxbytes, end;
1033         loff_t extent_start, extent_end;
1034         int ret = 0;
1035
1036         if (start > maxbytes)
1037                 return -EFBIG;
1038
1039         if (!in_count)
1040                 return 0;
1041
1042         /*
1043          * Shrink request scope to what the fs can actually handle.
1044          */
1045         if (length > maxbytes || (maxbytes - length) < start)
1046                 length = maxbytes - start;
1047
1048         if (start + length > inode->i_size)
1049                 length = inode->i_size - start;
1050
1051         *out_count = 0;
1052         end = start + length;
1053         while (start < end && *out_count < in_count) {
1054                 extent_start = vfs_llseek(f, start, SEEK_DATA);
1055                 if (extent_start < 0) {
1056                         if (extent_start != -ENXIO)
1057                                 ret = (int)extent_start;
1058                         break;
1059                 }
1060
1061                 if (extent_start >= end)
1062                         break;
1063
1064                 extent_end = vfs_llseek(f, extent_start, SEEK_HOLE);
1065                 if (extent_end < 0) {
1066                         if (extent_end != -ENXIO)
1067                                 ret = (int)extent_end;
1068                         break;
1069                 } else if (extent_start >= extent_end) {
1070                         break;
1071                 }
1072
1073                 ranges[*out_count].file_offset = cpu_to_le64(extent_start);
1074                 ranges[(*out_count)++].length =
1075                         cpu_to_le64(min(extent_end, end) - extent_start);
1076
1077                 start = extent_end;
1078         }
1079
1080         return ret;
1081 }
1082
1083 int ksmbd_vfs_remove_xattr(struct user_namespace *user_ns,
1084                            struct dentry *dentry, char *attr_name)
1085 {
1086         return vfs_removexattr(user_ns, dentry, attr_name);
1087 }
1088
1089 int ksmbd_vfs_unlink(struct user_namespace *user_ns,
1090                      struct dentry *dir, struct dentry *dentry)
1091 {
1092         int err = 0;
1093
1094         err = ksmbd_vfs_lock_parent(user_ns, dir, dentry);
1095         if (err)
1096                 return err;
1097         dget(dentry);
1098
1099         if (S_ISDIR(d_inode(dentry)->i_mode))
1100                 err = vfs_rmdir(user_ns, d_inode(dir), dentry);
1101         else
1102                 err = vfs_unlink(user_ns, d_inode(dir), dentry, NULL);
1103
1104         dput(dentry);
1105         inode_unlock(d_inode(dir));
1106         if (err)
1107                 ksmbd_debug(VFS, "failed to delete, err %d\n", err);
1108
1109         return err;
1110 }
1111
1112 static int __dir_empty(struct dir_context *ctx, const char *name, int namlen,
1113                        loff_t offset, u64 ino, unsigned int d_type)
1114 {
1115         struct ksmbd_readdir_data *buf;
1116
1117         buf = container_of(ctx, struct ksmbd_readdir_data, ctx);
1118         buf->dirent_count++;
1119
1120         if (buf->dirent_count > 2)
1121                 return -ENOTEMPTY;
1122         return 0;
1123 }
1124
1125 /**
1126  * ksmbd_vfs_empty_dir() - check for empty directory
1127  * @fp: ksmbd file pointer
1128  *
1129  * Return:      true if directory empty, otherwise false
1130  */
1131 int ksmbd_vfs_empty_dir(struct ksmbd_file *fp)
1132 {
1133         int err;
1134         struct ksmbd_readdir_data readdir_data;
1135
1136         memset(&readdir_data, 0, sizeof(struct ksmbd_readdir_data));
1137
1138         set_ctx_actor(&readdir_data.ctx, __dir_empty);
1139         readdir_data.dirent_count = 0;
1140
1141         err = iterate_dir(fp->filp, &readdir_data.ctx);
1142         if (readdir_data.dirent_count > 2)
1143                 err = -ENOTEMPTY;
1144         else
1145                 err = 0;
1146         return err;
1147 }
1148
1149 static int __caseless_lookup(struct dir_context *ctx, const char *name,
1150                              int namlen, loff_t offset, u64 ino,
1151                              unsigned int d_type)
1152 {
1153         struct ksmbd_readdir_data *buf;
1154
1155         buf = container_of(ctx, struct ksmbd_readdir_data, ctx);
1156
1157         if (buf->used != namlen)
1158                 return 0;
1159         if (!strncasecmp((char *)buf->private, name, namlen)) {
1160                 memcpy((char *)buf->private, name, namlen);
1161                 buf->dirent_count = 1;
1162                 return -EEXIST;
1163         }
1164         return 0;
1165 }
1166
1167 /**
1168  * ksmbd_vfs_lookup_in_dir() - lookup a file in a directory
1169  * @dir:        path info
1170  * @name:       filename to lookup
1171  * @namelen:    filename length
1172  *
1173  * Return:      0 on success, otherwise error
1174  */
1175 static int ksmbd_vfs_lookup_in_dir(struct path *dir, char *name, size_t namelen)
1176 {
1177         int ret;
1178         struct file *dfilp;
1179         int flags = O_RDONLY | O_LARGEFILE;
1180         struct ksmbd_readdir_data readdir_data = {
1181                 .ctx.actor      = __caseless_lookup,
1182                 .private        = name,
1183                 .used           = namelen,
1184                 .dirent_count   = 0,
1185         };
1186
1187         dfilp = dentry_open(dir, flags, current_cred());
1188         if (IS_ERR(dfilp))
1189                 return PTR_ERR(dfilp);
1190
1191         ret = iterate_dir(dfilp, &readdir_data.ctx);
1192         if (readdir_data.dirent_count > 0)
1193                 ret = 0;
1194         fput(dfilp);
1195         return ret;
1196 }
1197
1198 /**
1199  * ksmbd_vfs_kern_path() - lookup a file and get path info
1200  * @name:       file path that is relative to share
1201  * @flags:      lookup flags
1202  * @path:       if lookup succeed, return path info
1203  * @caseless:   caseless filename lookup
1204  *
1205  * Return:      0 on success, otherwise error
1206  */
1207 int ksmbd_vfs_kern_path(struct ksmbd_work *work, char *name,
1208                         unsigned int flags, struct path *path, bool caseless)
1209 {
1210         struct ksmbd_share_config *share_conf = work->tcon->share_conf;
1211         int err;
1212
1213         flags |= LOOKUP_BENEATH;
1214         err = vfs_path_lookup(share_conf->vfs_path.dentry,
1215                               share_conf->vfs_path.mnt,
1216                               name,
1217                               flags,
1218                               path);
1219         if (!err)
1220                 return 0;
1221
1222         if (caseless) {
1223                 char *filepath;
1224                 struct path parent;
1225                 size_t path_len, remain_len;
1226
1227                 filepath = kstrdup(name, GFP_KERNEL);
1228                 if (!filepath)
1229                         return -ENOMEM;
1230
1231                 path_len = strlen(filepath);
1232                 remain_len = path_len;
1233
1234                 parent = share_conf->vfs_path;
1235                 path_get(&parent);
1236
1237                 while (d_can_lookup(parent.dentry)) {
1238                         char *filename = filepath + path_len - remain_len;
1239                         char *next = strchrnul(filename, '/');
1240                         size_t filename_len = next - filename;
1241                         bool is_last = !next[0];
1242
1243                         if (filename_len == 0)
1244                                 break;
1245
1246                         err = ksmbd_vfs_lookup_in_dir(&parent, filename,
1247                                                       filename_len);
1248                         path_put(&parent);
1249                         if (err)
1250                                 goto out;
1251
1252                         next[0] = '\0';
1253
1254                         err = vfs_path_lookup(share_conf->vfs_path.dentry,
1255                                               share_conf->vfs_path.mnt,
1256                                               filepath,
1257                                               flags,
1258                                               &parent);
1259                         if (err)
1260                                 goto out;
1261                         else if (is_last) {
1262                                 *path = parent;
1263                                 goto out;
1264                         }
1265
1266                         next[0] = '/';
1267                         remain_len -= filename_len + 1;
1268                 }
1269
1270                 path_put(&parent);
1271                 err = -EINVAL;
1272 out:
1273                 kfree(filepath);
1274         }
1275         return err;
1276 }
1277
1278 struct dentry *ksmbd_vfs_kern_path_create(struct ksmbd_work *work,
1279                                           const char *name,
1280                                           unsigned int flags,
1281                                           struct path *path)
1282 {
1283         char *abs_name;
1284         struct dentry *dent;
1285
1286         abs_name = convert_to_unix_name(work->tcon->share_conf, name);
1287         if (!abs_name)
1288                 return ERR_PTR(-ENOMEM);
1289
1290         dent = kern_path_create(AT_FDCWD, abs_name, path, flags);
1291         kfree(abs_name);
1292         return dent;
1293 }
1294
1295 int ksmbd_vfs_remove_acl_xattrs(struct user_namespace *user_ns,
1296                                 struct dentry *dentry)
1297 {
1298         char *name, *xattr_list = NULL;
1299         ssize_t xattr_list_len;
1300         int err = 0;
1301
1302         xattr_list_len = ksmbd_vfs_listxattr(dentry, &xattr_list);
1303         if (xattr_list_len < 0) {
1304                 goto out;
1305         } else if (!xattr_list_len) {
1306                 ksmbd_debug(SMB, "empty xattr in the file\n");
1307                 goto out;
1308         }
1309
1310         for (name = xattr_list; name - xattr_list < xattr_list_len;
1311              name += strlen(name) + 1) {
1312                 ksmbd_debug(SMB, "%s, len %zd\n", name, strlen(name));
1313
1314                 if (!strncmp(name, XATTR_NAME_POSIX_ACL_ACCESS,
1315                              sizeof(XATTR_NAME_POSIX_ACL_ACCESS) - 1) ||
1316                     !strncmp(name, XATTR_NAME_POSIX_ACL_DEFAULT,
1317                              sizeof(XATTR_NAME_POSIX_ACL_DEFAULT) - 1)) {
1318                         err = ksmbd_vfs_remove_xattr(user_ns, dentry, name);
1319                         if (err)
1320                                 ksmbd_debug(SMB,
1321                                             "remove acl xattr failed : %s\n", name);
1322                 }
1323         }
1324 out:
1325         kvfree(xattr_list);
1326         return err;
1327 }
1328
1329 int ksmbd_vfs_remove_sd_xattrs(struct user_namespace *user_ns,
1330                                struct dentry *dentry)
1331 {
1332         char *name, *xattr_list = NULL;
1333         ssize_t xattr_list_len;
1334         int err = 0;
1335
1336         xattr_list_len = ksmbd_vfs_listxattr(dentry, &xattr_list);
1337         if (xattr_list_len < 0) {
1338                 goto out;
1339         } else if (!xattr_list_len) {
1340                 ksmbd_debug(SMB, "empty xattr in the file\n");
1341                 goto out;
1342         }
1343
1344         for (name = xattr_list; name - xattr_list < xattr_list_len;
1345                         name += strlen(name) + 1) {
1346                 ksmbd_debug(SMB, "%s, len %zd\n", name, strlen(name));
1347
1348                 if (!strncmp(name, XATTR_NAME_SD, XATTR_NAME_SD_LEN)) {
1349                         err = ksmbd_vfs_remove_xattr(user_ns, dentry, name);
1350                         if (err)
1351                                 ksmbd_debug(SMB, "remove xattr failed : %s\n", name);
1352                 }
1353         }
1354 out:
1355         kvfree(xattr_list);
1356         return err;
1357 }
1358
1359 static struct xattr_smb_acl *ksmbd_vfs_make_xattr_posix_acl(struct user_namespace *user_ns,
1360                                                             struct inode *inode,
1361                                                             int acl_type)
1362 {
1363         struct xattr_smb_acl *smb_acl = NULL;
1364         struct posix_acl *posix_acls;
1365         struct posix_acl_entry *pa_entry;
1366         struct xattr_acl_entry *xa_entry;
1367         int i;
1368
1369         if (!IS_ENABLED(CONFIG_FS_POSIX_ACL))
1370                 return NULL;
1371
1372         posix_acls = get_acl(inode, acl_type);
1373         if (!posix_acls)
1374                 return NULL;
1375
1376         smb_acl = kzalloc(sizeof(struct xattr_smb_acl) +
1377                           sizeof(struct xattr_acl_entry) * posix_acls->a_count,
1378                           GFP_KERNEL);
1379         if (!smb_acl)
1380                 goto out;
1381
1382         smb_acl->count = posix_acls->a_count;
1383         pa_entry = posix_acls->a_entries;
1384         xa_entry = smb_acl->entries;
1385         for (i = 0; i < posix_acls->a_count; i++, pa_entry++, xa_entry++) {
1386                 switch (pa_entry->e_tag) {
1387                 case ACL_USER:
1388                         xa_entry->type = SMB_ACL_USER;
1389                         xa_entry->uid = posix_acl_uid_translate(user_ns, pa_entry);
1390                         break;
1391                 case ACL_USER_OBJ:
1392                         xa_entry->type = SMB_ACL_USER_OBJ;
1393                         break;
1394                 case ACL_GROUP:
1395                         xa_entry->type = SMB_ACL_GROUP;
1396                         xa_entry->gid = posix_acl_gid_translate(user_ns, pa_entry);
1397                         break;
1398                 case ACL_GROUP_OBJ:
1399                         xa_entry->type = SMB_ACL_GROUP_OBJ;
1400                         break;
1401                 case ACL_OTHER:
1402                         xa_entry->type = SMB_ACL_OTHER;
1403                         break;
1404                 case ACL_MASK:
1405                         xa_entry->type = SMB_ACL_MASK;
1406                         break;
1407                 default:
1408                         pr_err("unknown type : 0x%x\n", pa_entry->e_tag);
1409                         goto out;
1410                 }
1411
1412                 if (pa_entry->e_perm & ACL_READ)
1413                         xa_entry->perm |= SMB_ACL_READ;
1414                 if (pa_entry->e_perm & ACL_WRITE)
1415                         xa_entry->perm |= SMB_ACL_WRITE;
1416                 if (pa_entry->e_perm & ACL_EXECUTE)
1417                         xa_entry->perm |= SMB_ACL_EXECUTE;
1418         }
1419 out:
1420         posix_acl_release(posix_acls);
1421         return smb_acl;
1422 }
1423
1424 int ksmbd_vfs_set_sd_xattr(struct ksmbd_conn *conn,
1425                            struct user_namespace *user_ns,
1426                            struct dentry *dentry,
1427                            struct smb_ntsd *pntsd, int len)
1428 {
1429         int rc;
1430         struct ndr sd_ndr = {0}, acl_ndr = {0};
1431         struct xattr_ntacl acl = {0};
1432         struct xattr_smb_acl *smb_acl, *def_smb_acl = NULL;
1433         struct inode *inode = d_inode(dentry);
1434
1435         acl.version = 4;
1436         acl.hash_type = XATTR_SD_HASH_TYPE_SHA256;
1437         acl.current_time = ksmbd_UnixTimeToNT(current_time(inode));
1438
1439         memcpy(acl.desc, "posix_acl", 9);
1440         acl.desc_len = 10;
1441
1442         pntsd->osidoffset =
1443                 cpu_to_le32(le32_to_cpu(pntsd->osidoffset) + NDR_NTSD_OFFSETOF);
1444         pntsd->gsidoffset =
1445                 cpu_to_le32(le32_to_cpu(pntsd->gsidoffset) + NDR_NTSD_OFFSETOF);
1446         pntsd->dacloffset =
1447                 cpu_to_le32(le32_to_cpu(pntsd->dacloffset) + NDR_NTSD_OFFSETOF);
1448
1449         acl.sd_buf = (char *)pntsd;
1450         acl.sd_size = len;
1451
1452         rc = ksmbd_gen_sd_hash(conn, acl.sd_buf, acl.sd_size, acl.hash);
1453         if (rc) {
1454                 pr_err("failed to generate hash for ndr acl\n");
1455                 return rc;
1456         }
1457
1458         smb_acl = ksmbd_vfs_make_xattr_posix_acl(user_ns, inode,
1459                                                  ACL_TYPE_ACCESS);
1460         if (S_ISDIR(inode->i_mode))
1461                 def_smb_acl = ksmbd_vfs_make_xattr_posix_acl(user_ns, inode,
1462                                                              ACL_TYPE_DEFAULT);
1463
1464         rc = ndr_encode_posix_acl(&acl_ndr, user_ns, inode,
1465                                   smb_acl, def_smb_acl);
1466         if (rc) {
1467                 pr_err("failed to encode ndr to posix acl\n");
1468                 goto out;
1469         }
1470
1471         rc = ksmbd_gen_sd_hash(conn, acl_ndr.data, acl_ndr.offset,
1472                                acl.posix_acl_hash);
1473         if (rc) {
1474                 pr_err("failed to generate hash for ndr acl\n");
1475                 goto out;
1476         }
1477
1478         rc = ndr_encode_v4_ntacl(&sd_ndr, &acl);
1479         if (rc) {
1480                 pr_err("failed to encode ndr to posix acl\n");
1481                 goto out;
1482         }
1483
1484         rc = ksmbd_vfs_setxattr(user_ns, dentry,
1485                                 XATTR_NAME_SD, sd_ndr.data,
1486                                 sd_ndr.offset, 0);
1487         if (rc < 0)
1488                 pr_err("Failed to store XATTR ntacl :%d\n", rc);
1489
1490         kfree(sd_ndr.data);
1491 out:
1492         kfree(acl_ndr.data);
1493         kfree(smb_acl);
1494         kfree(def_smb_acl);
1495         return rc;
1496 }
1497
1498 int ksmbd_vfs_get_sd_xattr(struct ksmbd_conn *conn,
1499                            struct user_namespace *user_ns,
1500                            struct dentry *dentry,
1501                            struct smb_ntsd **pntsd)
1502 {
1503         int rc;
1504         struct ndr n;
1505         struct inode *inode = d_inode(dentry);
1506         struct ndr acl_ndr = {0};
1507         struct xattr_ntacl acl;
1508         struct xattr_smb_acl *smb_acl = NULL, *def_smb_acl = NULL;
1509         __u8 cmp_hash[XATTR_SD_HASH_SIZE] = {0};
1510
1511         rc = ksmbd_vfs_getxattr(user_ns, dentry, XATTR_NAME_SD, &n.data);
1512         if (rc <= 0)
1513                 return rc;
1514
1515         n.length = rc;
1516         rc = ndr_decode_v4_ntacl(&n, &acl);
1517         if (rc)
1518                 goto free_n_data;
1519
1520         smb_acl = ksmbd_vfs_make_xattr_posix_acl(user_ns, inode,
1521                                                  ACL_TYPE_ACCESS);
1522         if (S_ISDIR(inode->i_mode))
1523                 def_smb_acl = ksmbd_vfs_make_xattr_posix_acl(user_ns, inode,
1524                                                              ACL_TYPE_DEFAULT);
1525
1526         rc = ndr_encode_posix_acl(&acl_ndr, user_ns, inode, smb_acl,
1527                                   def_smb_acl);
1528         if (rc) {
1529                 pr_err("failed to encode ndr to posix acl\n");
1530                 goto out_free;
1531         }
1532
1533         rc = ksmbd_gen_sd_hash(conn, acl_ndr.data, acl_ndr.offset, cmp_hash);
1534         if (rc) {
1535                 pr_err("failed to generate hash for ndr acl\n");
1536                 goto out_free;
1537         }
1538
1539         if (memcmp(cmp_hash, acl.posix_acl_hash, XATTR_SD_HASH_SIZE)) {
1540                 pr_err("hash value diff\n");
1541                 rc = -EINVAL;
1542                 goto out_free;
1543         }
1544
1545         *pntsd = acl.sd_buf;
1546         (*pntsd)->osidoffset = cpu_to_le32(le32_to_cpu((*pntsd)->osidoffset) -
1547                                            NDR_NTSD_OFFSETOF);
1548         (*pntsd)->gsidoffset = cpu_to_le32(le32_to_cpu((*pntsd)->gsidoffset) -
1549                                            NDR_NTSD_OFFSETOF);
1550         (*pntsd)->dacloffset = cpu_to_le32(le32_to_cpu((*pntsd)->dacloffset) -
1551                                            NDR_NTSD_OFFSETOF);
1552
1553         rc = acl.sd_size;
1554 out_free:
1555         kfree(acl_ndr.data);
1556         kfree(smb_acl);
1557         kfree(def_smb_acl);
1558         if (rc < 0) {
1559                 kfree(acl.sd_buf);
1560                 *pntsd = NULL;
1561         }
1562
1563 free_n_data:
1564         kfree(n.data);
1565         return rc;
1566 }
1567
1568 int ksmbd_vfs_set_dos_attrib_xattr(struct user_namespace *user_ns,
1569                                    struct dentry *dentry,
1570                                    struct xattr_dos_attrib *da)
1571 {
1572         struct ndr n;
1573         int err;
1574
1575         err = ndr_encode_dos_attr(&n, da);
1576         if (err)
1577                 return err;
1578
1579         err = ksmbd_vfs_setxattr(user_ns, dentry, XATTR_NAME_DOS_ATTRIBUTE,
1580                                  (void *)n.data, n.offset, 0);
1581         if (err)
1582                 ksmbd_debug(SMB, "failed to store dos attribute in xattr\n");
1583         kfree(n.data);
1584
1585         return err;
1586 }
1587
1588 int ksmbd_vfs_get_dos_attrib_xattr(struct user_namespace *user_ns,
1589                                    struct dentry *dentry,
1590                                    struct xattr_dos_attrib *da)
1591 {
1592         struct ndr n;
1593         int err;
1594
1595         err = ksmbd_vfs_getxattr(user_ns, dentry, XATTR_NAME_DOS_ATTRIBUTE,
1596                                  (char **)&n.data);
1597         if (err > 0) {
1598                 n.length = err;
1599                 if (ndr_decode_dos_attr(&n, da))
1600                         err = -EINVAL;
1601                 kfree(n.data);
1602         } else {
1603                 ksmbd_debug(SMB, "failed to load dos attribute in xattr\n");
1604         }
1605
1606         return err;
1607 }
1608
1609 /**
1610  * ksmbd_vfs_init_kstat() - convert unix stat information to smb stat format
1611  * @p:          destination buffer
1612  * @ksmbd_kstat:      ksmbd kstat wrapper
1613  */
1614 void *ksmbd_vfs_init_kstat(char **p, struct ksmbd_kstat *ksmbd_kstat)
1615 {
1616         struct file_directory_info *info = (struct file_directory_info *)(*p);
1617         struct kstat *kstat = ksmbd_kstat->kstat;
1618         u64 time;
1619
1620         info->FileIndex = 0;
1621         info->CreationTime = cpu_to_le64(ksmbd_kstat->create_time);
1622         time = ksmbd_UnixTimeToNT(kstat->atime);
1623         info->LastAccessTime = cpu_to_le64(time);
1624         time = ksmbd_UnixTimeToNT(kstat->mtime);
1625         info->LastWriteTime = cpu_to_le64(time);
1626         time = ksmbd_UnixTimeToNT(kstat->ctime);
1627         info->ChangeTime = cpu_to_le64(time);
1628
1629         if (ksmbd_kstat->file_attributes & ATTR_DIRECTORY_LE) {
1630                 info->EndOfFile = 0;
1631                 info->AllocationSize = 0;
1632         } else {
1633                 info->EndOfFile = cpu_to_le64(kstat->size);
1634                 info->AllocationSize = cpu_to_le64(kstat->blocks << 9);
1635         }
1636         info->ExtFileAttributes = ksmbd_kstat->file_attributes;
1637
1638         return info;
1639 }
1640
1641 int ksmbd_vfs_fill_dentry_attrs(struct ksmbd_work *work,
1642                                 struct user_namespace *user_ns,
1643                                 struct dentry *dentry,
1644                                 struct ksmbd_kstat *ksmbd_kstat)
1645 {
1646         u64 time;
1647         int rc;
1648
1649         generic_fillattr(user_ns, d_inode(dentry), ksmbd_kstat->kstat);
1650
1651         time = ksmbd_UnixTimeToNT(ksmbd_kstat->kstat->ctime);
1652         ksmbd_kstat->create_time = time;
1653
1654         /*
1655          * set default value for the case that store dos attributes is not yes
1656          * or that acl is disable in server's filesystem and the config is yes.
1657          */
1658         if (S_ISDIR(ksmbd_kstat->kstat->mode))
1659                 ksmbd_kstat->file_attributes = ATTR_DIRECTORY_LE;
1660         else
1661                 ksmbd_kstat->file_attributes = ATTR_ARCHIVE_LE;
1662
1663         if (test_share_config_flag(work->tcon->share_conf,
1664                                    KSMBD_SHARE_FLAG_STORE_DOS_ATTRS)) {
1665                 struct xattr_dos_attrib da;
1666
1667                 rc = ksmbd_vfs_get_dos_attrib_xattr(user_ns, dentry, &da);
1668                 if (rc > 0) {
1669                         ksmbd_kstat->file_attributes = cpu_to_le32(da.attr);
1670                         ksmbd_kstat->create_time = da.create_time;
1671                 } else {
1672                         ksmbd_debug(VFS, "fail to load dos attribute.\n");
1673                 }
1674         }
1675
1676         return 0;
1677 }
1678
1679 ssize_t ksmbd_vfs_casexattr_len(struct user_namespace *user_ns,
1680                                 struct dentry *dentry, char *attr_name,
1681                                 int attr_name_len)
1682 {
1683         char *name, *xattr_list = NULL;
1684         ssize_t value_len = -ENOENT, xattr_list_len;
1685
1686         xattr_list_len = ksmbd_vfs_listxattr(dentry, &xattr_list);
1687         if (xattr_list_len <= 0)
1688                 goto out;
1689
1690         for (name = xattr_list; name - xattr_list < xattr_list_len;
1691                         name += strlen(name) + 1) {
1692                 ksmbd_debug(VFS, "%s, len %zd\n", name, strlen(name));
1693                 if (strncasecmp(attr_name, name, attr_name_len))
1694                         continue;
1695
1696                 value_len = ksmbd_vfs_xattr_len(user_ns, dentry, name);
1697                 break;
1698         }
1699
1700 out:
1701         kvfree(xattr_list);
1702         return value_len;
1703 }
1704
1705 int ksmbd_vfs_xattr_stream_name(char *stream_name, char **xattr_stream_name,
1706                                 size_t *xattr_stream_name_size, int s_type)
1707 {
1708         char *type, *buf;
1709
1710         if (s_type == DIR_STREAM)
1711                 type = ":$INDEX_ALLOCATION";
1712         else
1713                 type = ":$DATA";
1714
1715         buf = kasprintf(GFP_KERNEL, "%s%s%s",
1716                         XATTR_NAME_STREAM, stream_name, type);
1717         if (!buf)
1718                 return -ENOMEM;
1719
1720         *xattr_stream_name = buf;
1721         *xattr_stream_name_size = strlen(buf) + 1;
1722
1723         return 0;
1724 }
1725
1726 int ksmbd_vfs_copy_file_ranges(struct ksmbd_work *work,
1727                                struct ksmbd_file *src_fp,
1728                                struct ksmbd_file *dst_fp,
1729                                struct srv_copychunk *chunks,
1730                                unsigned int chunk_count,
1731                                unsigned int *chunk_count_written,
1732                                unsigned int *chunk_size_written,
1733                                loff_t *total_size_written)
1734 {
1735         unsigned int i;
1736         loff_t src_off, dst_off, src_file_size;
1737         size_t len;
1738         int ret;
1739
1740         *chunk_count_written = 0;
1741         *chunk_size_written = 0;
1742         *total_size_written = 0;
1743
1744         if (!(src_fp->daccess & (FILE_READ_DATA_LE | FILE_EXECUTE_LE))) {
1745                 pr_err("no right to read(%pd)\n", src_fp->filp->f_path.dentry);
1746                 return -EACCES;
1747         }
1748         if (!(dst_fp->daccess & (FILE_WRITE_DATA_LE | FILE_APPEND_DATA_LE))) {
1749                 pr_err("no right to write(%pd)\n", dst_fp->filp->f_path.dentry);
1750                 return -EACCES;
1751         }
1752
1753         if (ksmbd_stream_fd(src_fp) || ksmbd_stream_fd(dst_fp))
1754                 return -EBADF;
1755
1756         smb_break_all_levII_oplock(work, dst_fp, 1);
1757
1758         if (!work->tcon->posix_extensions) {
1759                 for (i = 0; i < chunk_count; i++) {
1760                         src_off = le64_to_cpu(chunks[i].SourceOffset);
1761                         dst_off = le64_to_cpu(chunks[i].TargetOffset);
1762                         len = le32_to_cpu(chunks[i].Length);
1763
1764                         if (check_lock_range(src_fp->filp, src_off,
1765                                              src_off + len - 1, READ))
1766                                 return -EAGAIN;
1767                         if (check_lock_range(dst_fp->filp, dst_off,
1768                                              dst_off + len - 1, WRITE))
1769                                 return -EAGAIN;
1770                 }
1771         }
1772
1773         src_file_size = i_size_read(file_inode(src_fp->filp));
1774
1775         for (i = 0; i < chunk_count; i++) {
1776                 src_off = le64_to_cpu(chunks[i].SourceOffset);
1777                 dst_off = le64_to_cpu(chunks[i].TargetOffset);
1778                 len = le32_to_cpu(chunks[i].Length);
1779
1780                 if (src_off + len > src_file_size)
1781                         return -E2BIG;
1782
1783                 ret = vfs_copy_file_range(src_fp->filp, src_off,
1784                                           dst_fp->filp, dst_off, len, 0);
1785                 if (ret == -EOPNOTSUPP || ret == -EXDEV)
1786                         ret = generic_copy_file_range(src_fp->filp, src_off,
1787                                                       dst_fp->filp, dst_off,
1788                                                       len, 0);
1789                 if (ret < 0)
1790                         return ret;
1791
1792                 *chunk_count_written += 1;
1793                 *total_size_written += ret;
1794         }
1795         return 0;
1796 }
1797
1798 void ksmbd_vfs_posix_lock_wait(struct file_lock *flock)
1799 {
1800         wait_event(flock->fl_wait, !flock->fl_blocker);
1801 }
1802
1803 int ksmbd_vfs_posix_lock_wait_timeout(struct file_lock *flock, long timeout)
1804 {
1805         return wait_event_interruptible_timeout(flock->fl_wait,
1806                                                 !flock->fl_blocker,
1807                                                 timeout);
1808 }
1809
1810 void ksmbd_vfs_posix_lock_unblock(struct file_lock *flock)
1811 {
1812         locks_delete_block(flock);
1813 }
1814
1815 int ksmbd_vfs_set_init_posix_acl(struct user_namespace *user_ns,
1816                                  struct inode *inode)
1817 {
1818         struct posix_acl_state acl_state;
1819         struct posix_acl *acls;
1820         int rc;
1821
1822         if (!IS_ENABLED(CONFIG_FS_POSIX_ACL))
1823                 return -EOPNOTSUPP;
1824
1825         ksmbd_debug(SMB, "Set posix acls\n");
1826         rc = init_acl_state(&acl_state, 1);
1827         if (rc)
1828                 return rc;
1829
1830         /* Set default owner group */
1831         acl_state.owner.allow = (inode->i_mode & 0700) >> 6;
1832         acl_state.group.allow = (inode->i_mode & 0070) >> 3;
1833         acl_state.other.allow = inode->i_mode & 0007;
1834         acl_state.users->aces[acl_state.users->n].uid = inode->i_uid;
1835         acl_state.users->aces[acl_state.users->n++].perms.allow =
1836                 acl_state.owner.allow;
1837         acl_state.groups->aces[acl_state.groups->n].gid = inode->i_gid;
1838         acl_state.groups->aces[acl_state.groups->n++].perms.allow =
1839                 acl_state.group.allow;
1840         acl_state.mask.allow = 0x07;
1841
1842         acls = posix_acl_alloc(6, GFP_KERNEL);
1843         if (!acls) {
1844                 free_acl_state(&acl_state);
1845                 return -ENOMEM;
1846         }
1847         posix_state_to_acl(&acl_state, acls->a_entries);
1848         rc = set_posix_acl(user_ns, inode, ACL_TYPE_ACCESS, acls);
1849         if (rc < 0)
1850                 ksmbd_debug(SMB, "Set posix acl(ACL_TYPE_ACCESS) failed, rc : %d\n",
1851                             rc);
1852         else if (S_ISDIR(inode->i_mode)) {
1853                 posix_state_to_acl(&acl_state, acls->a_entries);
1854                 rc = set_posix_acl(user_ns, inode, ACL_TYPE_DEFAULT,
1855                                    acls);
1856                 if (rc < 0)
1857                         ksmbd_debug(SMB, "Set posix acl(ACL_TYPE_DEFAULT) failed, rc : %d\n",
1858                                     rc);
1859         }
1860         free_acl_state(&acl_state);
1861         posix_acl_release(acls);
1862         return rc;
1863 }
1864
1865 int ksmbd_vfs_inherit_posix_acl(struct user_namespace *user_ns,
1866                                 struct inode *inode, struct inode *parent_inode)
1867 {
1868         struct posix_acl *acls;
1869         struct posix_acl_entry *pace;
1870         int rc, i;
1871
1872         if (!IS_ENABLED(CONFIG_FS_POSIX_ACL))
1873                 return -EOPNOTSUPP;
1874
1875         acls = get_acl(parent_inode, ACL_TYPE_DEFAULT);
1876         if (!acls)
1877                 return -ENOENT;
1878         pace = acls->a_entries;
1879
1880         for (i = 0; i < acls->a_count; i++, pace++) {
1881                 if (pace->e_tag == ACL_MASK) {
1882                         pace->e_perm = 0x07;
1883                         break;
1884                 }
1885         }
1886
1887         rc = set_posix_acl(user_ns, inode, ACL_TYPE_ACCESS, acls);
1888         if (rc < 0)
1889                 ksmbd_debug(SMB, "Set posix acl(ACL_TYPE_ACCESS) failed, rc : %d\n",
1890                             rc);
1891         if (S_ISDIR(inode->i_mode)) {
1892                 rc = set_posix_acl(user_ns, inode, ACL_TYPE_DEFAULT,
1893                                    acls);
1894                 if (rc < 0)
1895                         ksmbd_debug(SMB, "Set posix acl(ACL_TYPE_DEFAULT) failed, rc : %d\n",
1896                                     rc);
1897         }
1898         posix_acl_release(acls);
1899         return rc;
1900 }