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1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Copyright (c) 2000-2005 Silicon Graphics, Inc.
4  * All Rights Reserved.
5  */
6 #include "xfs.h"
7 #include "xfs_fs.h"
8 #include "xfs_shared.h"
9 #include "xfs_format.h"
10 #include "xfs_log_format.h"
11 #include "xfs_trans_resv.h"
12 #include "xfs_mount.h"
13 #include "xfs_inode.h"
14 #include "xfs_rtalloc.h"
15 #include "xfs_iwalk.h"
16 #include "xfs_itable.h"
17 #include "xfs_error.h"
18 #include "xfs_attr.h"
19 #include "xfs_bmap.h"
20 #include "xfs_bmap_util.h"
21 #include "xfs_fsops.h"
22 #include "xfs_discard.h"
23 #include "xfs_quota.h"
24 #include "xfs_export.h"
25 #include "xfs_trace.h"
26 #include "xfs_icache.h"
27 #include "xfs_trans.h"
28 #include "xfs_acl.h"
29 #include "xfs_btree.h"
30 #include <linux/fsmap.h>
31 #include "xfs_fsmap.h"
32 #include "scrub/xfs_scrub.h"
33 #include "xfs_sb.h"
34 #include "xfs_ag.h"
35 #include "xfs_health.h"
36 #include "xfs_reflink.h"
37 #include "xfs_ioctl.h"
38 #include "xfs_da_format.h"
39 #include "xfs_da_btree.h"
40 
41 #include <linux/mount.h>
42 #include <linux/namei.h>
43 #include <linux/fileattr.h>
44 
45 /*
46  * xfs_find_handle maps from userspace xfs_fsop_handlereq structure to
47  * a file or fs handle.
48  *
49  * XFS_IOC_PATH_TO_FSHANDLE
50  *    returns fs handle for a mount point or path within that mount point
51  * XFS_IOC_FD_TO_HANDLE
52  *    returns full handle for a FD opened in user space
53  * XFS_IOC_PATH_TO_HANDLE
54  *    returns full handle for a path
55  */
56 int
xfs_find_handle(unsigned int cmd,xfs_fsop_handlereq_t * hreq)57 xfs_find_handle(
58 	unsigned int		cmd,
59 	xfs_fsop_handlereq_t	*hreq)
60 {
61 	int			hsize;
62 	xfs_handle_t		handle;
63 	struct inode		*inode;
64 	struct fd		f = {NULL};
65 	struct path		path;
66 	int			error;
67 	struct xfs_inode	*ip;
68 
69 	if (cmd == XFS_IOC_FD_TO_HANDLE) {
70 		f = fdget(hreq->fd);
71 		if (!f.file)
72 			return -EBADF;
73 		inode = file_inode(f.file);
74 	} else {
75 		error = user_path_at(AT_FDCWD, hreq->path, 0, &path);
76 		if (error)
77 			return error;
78 		inode = d_inode(path.dentry);
79 	}
80 	ip = XFS_I(inode);
81 
82 	/*
83 	 * We can only generate handles for inodes residing on a XFS filesystem,
84 	 * and only for regular files, directories or symbolic links.
85 	 */
86 	error = -EINVAL;
87 	if (inode->i_sb->s_magic != XFS_SB_MAGIC)
88 		goto out_put;
89 
90 	error = -EBADF;
91 	if (!S_ISREG(inode->i_mode) &&
92 	    !S_ISDIR(inode->i_mode) &&
93 	    !S_ISLNK(inode->i_mode))
94 		goto out_put;
95 
96 
97 	memcpy(&handle.ha_fsid, ip->i_mount->m_fixedfsid, sizeof(xfs_fsid_t));
98 
99 	if (cmd == XFS_IOC_PATH_TO_FSHANDLE) {
100 		/*
101 		 * This handle only contains an fsid, zero the rest.
102 		 */
103 		memset(&handle.ha_fid, 0, sizeof(handle.ha_fid));
104 		hsize = sizeof(xfs_fsid_t);
105 	} else {
106 		handle.ha_fid.fid_len = sizeof(xfs_fid_t) -
107 					sizeof(handle.ha_fid.fid_len);
108 		handle.ha_fid.fid_pad = 0;
109 		handle.ha_fid.fid_gen = inode->i_generation;
110 		handle.ha_fid.fid_ino = ip->i_ino;
111 		hsize = sizeof(xfs_handle_t);
112 	}
113 
114 	error = -EFAULT;
115 	if (copy_to_user(hreq->ohandle, &handle, hsize) ||
116 	    copy_to_user(hreq->ohandlen, &hsize, sizeof(__s32)))
117 		goto out_put;
118 
119 	error = 0;
120 
121  out_put:
122 	if (cmd == XFS_IOC_FD_TO_HANDLE)
123 		fdput(f);
124 	else
125 		path_put(&path);
126 	return error;
127 }
128 
129 /*
130  * No need to do permission checks on the various pathname components
131  * as the handle operations are privileged.
132  */
133 STATIC int
xfs_handle_acceptable(void * context,struct dentry * dentry)134 xfs_handle_acceptable(
135 	void			*context,
136 	struct dentry		*dentry)
137 {
138 	return 1;
139 }
140 
141 /*
142  * Convert userspace handle data into a dentry.
143  */
144 struct dentry *
xfs_handle_to_dentry(struct file * parfilp,void __user * uhandle,u32 hlen)145 xfs_handle_to_dentry(
146 	struct file		*parfilp,
147 	void __user		*uhandle,
148 	u32			hlen)
149 {
150 	xfs_handle_t		handle;
151 	struct xfs_fid64	fid;
152 
153 	/*
154 	 * Only allow handle opens under a directory.
155 	 */
156 	if (!S_ISDIR(file_inode(parfilp)->i_mode))
157 		return ERR_PTR(-ENOTDIR);
158 
159 	if (hlen != sizeof(xfs_handle_t))
160 		return ERR_PTR(-EINVAL);
161 	if (copy_from_user(&handle, uhandle, hlen))
162 		return ERR_PTR(-EFAULT);
163 	if (handle.ha_fid.fid_len !=
164 	    sizeof(handle.ha_fid) - sizeof(handle.ha_fid.fid_len))
165 		return ERR_PTR(-EINVAL);
166 
167 	memset(&fid, 0, sizeof(struct fid));
168 	fid.ino = handle.ha_fid.fid_ino;
169 	fid.gen = handle.ha_fid.fid_gen;
170 
171 	return exportfs_decode_fh(parfilp->f_path.mnt, (struct fid *)&fid, 3,
172 			FILEID_INO32_GEN | XFS_FILEID_TYPE_64FLAG,
173 			xfs_handle_acceptable, NULL);
174 }
175 
176 STATIC struct dentry *
xfs_handlereq_to_dentry(struct file * parfilp,xfs_fsop_handlereq_t * hreq)177 xfs_handlereq_to_dentry(
178 	struct file		*parfilp,
179 	xfs_fsop_handlereq_t	*hreq)
180 {
181 	return xfs_handle_to_dentry(parfilp, hreq->ihandle, hreq->ihandlen);
182 }
183 
184 int
xfs_open_by_handle(struct file * parfilp,xfs_fsop_handlereq_t * hreq)185 xfs_open_by_handle(
186 	struct file		*parfilp,
187 	xfs_fsop_handlereq_t	*hreq)
188 {
189 	const struct cred	*cred = current_cred();
190 	int			error;
191 	int			fd;
192 	int			permflag;
193 	struct file		*filp;
194 	struct inode		*inode;
195 	struct dentry		*dentry;
196 	fmode_t			fmode;
197 	struct path		path;
198 
199 	if (!capable(CAP_SYS_ADMIN))
200 		return -EPERM;
201 
202 	dentry = xfs_handlereq_to_dentry(parfilp, hreq);
203 	if (IS_ERR(dentry))
204 		return PTR_ERR(dentry);
205 	inode = d_inode(dentry);
206 
207 	/* Restrict xfs_open_by_handle to directories & regular files. */
208 	if (!(S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode))) {
209 		error = -EPERM;
210 		goto out_dput;
211 	}
212 
213 #if BITS_PER_LONG != 32
214 	hreq->oflags |= O_LARGEFILE;
215 #endif
216 
217 	permflag = hreq->oflags;
218 	fmode = OPEN_FMODE(permflag);
219 	if ((!(permflag & O_APPEND) || (permflag & O_TRUNC)) &&
220 	    (fmode & FMODE_WRITE) && IS_APPEND(inode)) {
221 		error = -EPERM;
222 		goto out_dput;
223 	}
224 
225 	if ((fmode & FMODE_WRITE) && IS_IMMUTABLE(inode)) {
226 		error = -EPERM;
227 		goto out_dput;
228 	}
229 
230 	/* Can't write directories. */
231 	if (S_ISDIR(inode->i_mode) && (fmode & FMODE_WRITE)) {
232 		error = -EISDIR;
233 		goto out_dput;
234 	}
235 
236 	fd = get_unused_fd_flags(0);
237 	if (fd < 0) {
238 		error = fd;
239 		goto out_dput;
240 	}
241 
242 	path.mnt = parfilp->f_path.mnt;
243 	path.dentry = dentry;
244 	filp = dentry_open(&path, hreq->oflags, cred);
245 	dput(dentry);
246 	if (IS_ERR(filp)) {
247 		put_unused_fd(fd);
248 		return PTR_ERR(filp);
249 	}
250 
251 	if (S_ISREG(inode->i_mode)) {
252 		filp->f_flags |= O_NOATIME;
253 		filp->f_mode |= FMODE_NOCMTIME;
254 	}
255 
256 	fd_install(fd, filp);
257 	return fd;
258 
259  out_dput:
260 	dput(dentry);
261 	return error;
262 }
263 
264 int
xfs_readlink_by_handle(struct file * parfilp,xfs_fsop_handlereq_t * hreq)265 xfs_readlink_by_handle(
266 	struct file		*parfilp,
267 	xfs_fsop_handlereq_t	*hreq)
268 {
269 	struct dentry		*dentry;
270 	__u32			olen;
271 	int			error;
272 
273 	if (!capable(CAP_SYS_ADMIN))
274 		return -EPERM;
275 
276 	dentry = xfs_handlereq_to_dentry(parfilp, hreq);
277 	if (IS_ERR(dentry))
278 		return PTR_ERR(dentry);
279 
280 	/* Restrict this handle operation to symlinks only. */
281 	if (!d_is_symlink(dentry)) {
282 		error = -EINVAL;
283 		goto out_dput;
284 	}
285 
286 	if (copy_from_user(&olen, hreq->ohandlen, sizeof(__u32))) {
287 		error = -EFAULT;
288 		goto out_dput;
289 	}
290 
291 	error = vfs_readlink(dentry, hreq->ohandle, olen);
292 
293  out_dput:
294 	dput(dentry);
295 	return error;
296 }
297 
298 /*
299  * Format an attribute and copy it out to the user's buffer.
300  * Take care to check values and protect against them changing later,
301  * we may be reading them directly out of a user buffer.
302  */
303 static void
xfs_ioc_attr_put_listent(struct xfs_attr_list_context * context,int flags,unsigned char * name,int namelen,int valuelen)304 xfs_ioc_attr_put_listent(
305 	struct xfs_attr_list_context *context,
306 	int			flags,
307 	unsigned char		*name,
308 	int			namelen,
309 	int			valuelen)
310 {
311 	struct xfs_attrlist	*alist = context->buffer;
312 	struct xfs_attrlist_ent	*aep;
313 	int			arraytop;
314 
315 	ASSERT(!context->seen_enough);
316 	ASSERT(context->count >= 0);
317 	ASSERT(context->count < (ATTR_MAX_VALUELEN/8));
318 	ASSERT(context->firstu >= sizeof(*alist));
319 	ASSERT(context->firstu <= context->bufsize);
320 
321 	/*
322 	 * Only list entries in the right namespace.
323 	 */
324 	if (context->attr_filter != (flags & XFS_ATTR_NSP_ONDISK_MASK))
325 		return;
326 
327 	arraytop = sizeof(*alist) +
328 			context->count * sizeof(alist->al_offset[0]);
329 
330 	/* decrement by the actual bytes used by the attr */
331 	context->firstu -= round_up(offsetof(struct xfs_attrlist_ent, a_name) +
332 			namelen + 1, sizeof(uint32_t));
333 	if (context->firstu < arraytop) {
334 		trace_xfs_attr_list_full(context);
335 		alist->al_more = 1;
336 		context->seen_enough = 1;
337 		return;
338 	}
339 
340 	aep = context->buffer + context->firstu;
341 	aep->a_valuelen = valuelen;
342 	memcpy(aep->a_name, name, namelen);
343 	aep->a_name[namelen] = 0;
344 	alist->al_offset[context->count++] = context->firstu;
345 	alist->al_count = context->count;
346 	trace_xfs_attr_list_add(context);
347 }
348 
349 static unsigned int
xfs_attr_filter(u32 ioc_flags)350 xfs_attr_filter(
351 	u32			ioc_flags)
352 {
353 	if (ioc_flags & XFS_IOC_ATTR_ROOT)
354 		return XFS_ATTR_ROOT;
355 	if (ioc_flags & XFS_IOC_ATTR_SECURE)
356 		return XFS_ATTR_SECURE;
357 	return 0;
358 }
359 
360 static unsigned int
xfs_attr_flags(u32 ioc_flags)361 xfs_attr_flags(
362 	u32			ioc_flags)
363 {
364 	if (ioc_flags & XFS_IOC_ATTR_CREATE)
365 		return XATTR_CREATE;
366 	if (ioc_flags & XFS_IOC_ATTR_REPLACE)
367 		return XATTR_REPLACE;
368 	return 0;
369 }
370 
371 int
xfs_ioc_attr_list(struct xfs_inode * dp,void __user * ubuf,size_t bufsize,int flags,struct xfs_attrlist_cursor __user * ucursor)372 xfs_ioc_attr_list(
373 	struct xfs_inode		*dp,
374 	void __user			*ubuf,
375 	size_t				bufsize,
376 	int				flags,
377 	struct xfs_attrlist_cursor __user *ucursor)
378 {
379 	struct xfs_attr_list_context	context = { };
380 	struct xfs_attrlist		*alist;
381 	void				*buffer;
382 	int				error;
383 
384 	if (bufsize < sizeof(struct xfs_attrlist) ||
385 	    bufsize > XFS_XATTR_LIST_MAX)
386 		return -EINVAL;
387 
388 	/*
389 	 * Reject flags, only allow namespaces.
390 	 */
391 	if (flags & ~(XFS_IOC_ATTR_ROOT | XFS_IOC_ATTR_SECURE))
392 		return -EINVAL;
393 	if (flags == (XFS_IOC_ATTR_ROOT | XFS_IOC_ATTR_SECURE))
394 		return -EINVAL;
395 
396 	/*
397 	 * Validate the cursor.
398 	 */
399 	if (copy_from_user(&context.cursor, ucursor, sizeof(context.cursor)))
400 		return -EFAULT;
401 	if (context.cursor.pad1 || context.cursor.pad2)
402 		return -EINVAL;
403 	if (!context.cursor.initted &&
404 	    (context.cursor.hashval || context.cursor.blkno ||
405 	     context.cursor.offset))
406 		return -EINVAL;
407 
408 	buffer = kvzalloc(bufsize, GFP_KERNEL);
409 	if (!buffer)
410 		return -ENOMEM;
411 
412 	/*
413 	 * Initialize the output buffer.
414 	 */
415 	context.dp = dp;
416 	context.resynch = 1;
417 	context.attr_filter = xfs_attr_filter(flags);
418 	context.buffer = buffer;
419 	context.bufsize = round_down(bufsize, sizeof(uint32_t));
420 	context.firstu = context.bufsize;
421 	context.put_listent = xfs_ioc_attr_put_listent;
422 
423 	alist = context.buffer;
424 	alist->al_count = 0;
425 	alist->al_more = 0;
426 	alist->al_offset[0] = context.bufsize;
427 
428 	error = xfs_attr_list(&context);
429 	if (error)
430 		goto out_free;
431 
432 	if (copy_to_user(ubuf, buffer, bufsize) ||
433 	    copy_to_user(ucursor, &context.cursor, sizeof(context.cursor)))
434 		error = -EFAULT;
435 out_free:
436 	kmem_free(buffer);
437 	return error;
438 }
439 
440 STATIC int
xfs_attrlist_by_handle(struct file * parfilp,struct xfs_fsop_attrlist_handlereq __user * p)441 xfs_attrlist_by_handle(
442 	struct file		*parfilp,
443 	struct xfs_fsop_attrlist_handlereq __user *p)
444 {
445 	struct xfs_fsop_attrlist_handlereq al_hreq;
446 	struct dentry		*dentry;
447 	int			error = -ENOMEM;
448 
449 	if (!capable(CAP_SYS_ADMIN))
450 		return -EPERM;
451 	if (copy_from_user(&al_hreq, p, sizeof(al_hreq)))
452 		return -EFAULT;
453 
454 	dentry = xfs_handlereq_to_dentry(parfilp, &al_hreq.hreq);
455 	if (IS_ERR(dentry))
456 		return PTR_ERR(dentry);
457 
458 	error = xfs_ioc_attr_list(XFS_I(d_inode(dentry)), al_hreq.buffer,
459 				  al_hreq.buflen, al_hreq.flags, &p->pos);
460 	dput(dentry);
461 	return error;
462 }
463 
464 static int
xfs_attrmulti_attr_get(struct inode * inode,unsigned char * name,unsigned char __user * ubuf,uint32_t * len,uint32_t flags)465 xfs_attrmulti_attr_get(
466 	struct inode		*inode,
467 	unsigned char		*name,
468 	unsigned char		__user *ubuf,
469 	uint32_t		*len,
470 	uint32_t		flags)
471 {
472 	struct xfs_da_args	args = {
473 		.dp		= XFS_I(inode),
474 		.attr_filter	= xfs_attr_filter(flags),
475 		.attr_flags	= xfs_attr_flags(flags),
476 		.name		= name,
477 		.namelen	= strlen(name),
478 		.valuelen	= *len,
479 	};
480 	int			error;
481 
482 	if (*len > XFS_XATTR_SIZE_MAX)
483 		return -EINVAL;
484 
485 	error = xfs_attr_get(&args);
486 	if (error)
487 		goto out_kfree;
488 
489 	*len = args.valuelen;
490 	if (copy_to_user(ubuf, args.value, args.valuelen))
491 		error = -EFAULT;
492 
493 out_kfree:
494 	kmem_free(args.value);
495 	return error;
496 }
497 
498 static int
xfs_attrmulti_attr_set(struct inode * inode,unsigned char * name,const unsigned char __user * ubuf,uint32_t len,uint32_t flags)499 xfs_attrmulti_attr_set(
500 	struct inode		*inode,
501 	unsigned char		*name,
502 	const unsigned char	__user *ubuf,
503 	uint32_t		len,
504 	uint32_t		flags)
505 {
506 	struct xfs_da_args	args = {
507 		.dp		= XFS_I(inode),
508 		.attr_filter	= xfs_attr_filter(flags),
509 		.attr_flags	= xfs_attr_flags(flags),
510 		.name		= name,
511 		.namelen	= strlen(name),
512 	};
513 	int			error;
514 
515 	if (IS_IMMUTABLE(inode) || IS_APPEND(inode))
516 		return -EPERM;
517 
518 	if (ubuf) {
519 		if (len > XFS_XATTR_SIZE_MAX)
520 			return -EINVAL;
521 		args.value = memdup_user(ubuf, len);
522 		if (IS_ERR(args.value))
523 			return PTR_ERR(args.value);
524 		args.valuelen = len;
525 	}
526 
527 	error = xfs_attr_set(&args);
528 	if (!error && (flags & XFS_IOC_ATTR_ROOT))
529 		xfs_forget_acl(inode, name);
530 	kfree(args.value);
531 	return error;
532 }
533 
534 int
xfs_ioc_attrmulti_one(struct file * parfilp,struct inode * inode,uint32_t opcode,void __user * uname,void __user * value,uint32_t * len,uint32_t flags)535 xfs_ioc_attrmulti_one(
536 	struct file		*parfilp,
537 	struct inode		*inode,
538 	uint32_t		opcode,
539 	void __user		*uname,
540 	void __user		*value,
541 	uint32_t		*len,
542 	uint32_t		flags)
543 {
544 	unsigned char		*name;
545 	int			error;
546 
547 	if ((flags & XFS_IOC_ATTR_ROOT) && (flags & XFS_IOC_ATTR_SECURE))
548 		return -EINVAL;
549 
550 	name = strndup_user(uname, MAXNAMELEN);
551 	if (IS_ERR(name))
552 		return PTR_ERR(name);
553 
554 	switch (opcode) {
555 	case ATTR_OP_GET:
556 		error = xfs_attrmulti_attr_get(inode, name, value, len, flags);
557 		break;
558 	case ATTR_OP_REMOVE:
559 		value = NULL;
560 		*len = 0;
561 		fallthrough;
562 	case ATTR_OP_SET:
563 		error = mnt_want_write_file(parfilp);
564 		if (error)
565 			break;
566 		error = xfs_attrmulti_attr_set(inode, name, value, *len, flags);
567 		mnt_drop_write_file(parfilp);
568 		break;
569 	default:
570 		error = -EINVAL;
571 		break;
572 	}
573 
574 	kfree(name);
575 	return error;
576 }
577 
578 STATIC int
xfs_attrmulti_by_handle(struct file * parfilp,void __user * arg)579 xfs_attrmulti_by_handle(
580 	struct file		*parfilp,
581 	void			__user *arg)
582 {
583 	int			error;
584 	xfs_attr_multiop_t	*ops;
585 	xfs_fsop_attrmulti_handlereq_t am_hreq;
586 	struct dentry		*dentry;
587 	unsigned int		i, size;
588 
589 	if (!capable(CAP_SYS_ADMIN))
590 		return -EPERM;
591 	if (copy_from_user(&am_hreq, arg, sizeof(xfs_fsop_attrmulti_handlereq_t)))
592 		return -EFAULT;
593 
594 	/* overflow check */
595 	if (am_hreq.opcount >= INT_MAX / sizeof(xfs_attr_multiop_t))
596 		return -E2BIG;
597 
598 	dentry = xfs_handlereq_to_dentry(parfilp, &am_hreq.hreq);
599 	if (IS_ERR(dentry))
600 		return PTR_ERR(dentry);
601 
602 	error = -E2BIG;
603 	size = am_hreq.opcount * sizeof(xfs_attr_multiop_t);
604 	if (!size || size > 16 * PAGE_SIZE)
605 		goto out_dput;
606 
607 	ops = memdup_user(am_hreq.ops, size);
608 	if (IS_ERR(ops)) {
609 		error = PTR_ERR(ops);
610 		goto out_dput;
611 	}
612 
613 	error = 0;
614 	for (i = 0; i < am_hreq.opcount; i++) {
615 		ops[i].am_error = xfs_ioc_attrmulti_one(parfilp,
616 				d_inode(dentry), ops[i].am_opcode,
617 				ops[i].am_attrname, ops[i].am_attrvalue,
618 				&ops[i].am_length, ops[i].am_flags);
619 	}
620 
621 	if (copy_to_user(am_hreq.ops, ops, size))
622 		error = -EFAULT;
623 
624 	kfree(ops);
625  out_dput:
626 	dput(dentry);
627 	return error;
628 }
629 
630 int
xfs_ioc_space(struct file * filp,xfs_flock64_t * bf)631 xfs_ioc_space(
632 	struct file		*filp,
633 	xfs_flock64_t		*bf)
634 {
635 	struct inode		*inode = file_inode(filp);
636 	struct xfs_inode	*ip = XFS_I(inode);
637 	struct iattr		iattr;
638 	enum xfs_prealloc_flags	flags = XFS_PREALLOC_CLEAR;
639 	uint			iolock = XFS_IOLOCK_EXCL | XFS_MMAPLOCK_EXCL;
640 	int			error;
641 
642 	if (inode->i_flags & (S_IMMUTABLE|S_APPEND))
643 		return -EPERM;
644 
645 	if (!(filp->f_mode & FMODE_WRITE))
646 		return -EBADF;
647 
648 	if (!S_ISREG(inode->i_mode))
649 		return -EINVAL;
650 
651 	if (xfs_is_always_cow_inode(ip))
652 		return -EOPNOTSUPP;
653 
654 	if (filp->f_flags & O_DSYNC)
655 		flags |= XFS_PREALLOC_SYNC;
656 	if (filp->f_mode & FMODE_NOCMTIME)
657 		flags |= XFS_PREALLOC_INVISIBLE;
658 
659 	error = mnt_want_write_file(filp);
660 	if (error)
661 		return error;
662 
663 	xfs_ilock(ip, iolock);
664 	error = xfs_break_layouts(inode, &iolock, BREAK_UNMAP);
665 	if (error)
666 		goto out_unlock;
667 	inode_dio_wait(inode);
668 
669 	switch (bf->l_whence) {
670 	case 0: /*SEEK_SET*/
671 		break;
672 	case 1: /*SEEK_CUR*/
673 		bf->l_start += filp->f_pos;
674 		break;
675 	case 2: /*SEEK_END*/
676 		bf->l_start += XFS_ISIZE(ip);
677 		break;
678 	default:
679 		error = -EINVAL;
680 		goto out_unlock;
681 	}
682 
683 	if (bf->l_start < 0 || bf->l_start > inode->i_sb->s_maxbytes) {
684 		error = -EINVAL;
685 		goto out_unlock;
686 	}
687 
688 	if (bf->l_start > XFS_ISIZE(ip)) {
689 		error = xfs_alloc_file_space(ip, XFS_ISIZE(ip),
690 				bf->l_start - XFS_ISIZE(ip),
691 				XFS_BMAPI_PREALLOC);
692 		if (error)
693 			goto out_unlock;
694 	}
695 
696 	iattr.ia_valid = ATTR_SIZE;
697 	iattr.ia_size = bf->l_start;
698 	error = xfs_vn_setattr_size(file_mnt_user_ns(filp), file_dentry(filp),
699 				    &iattr);
700 	if (error)
701 		goto out_unlock;
702 
703 	error = xfs_update_prealloc_flags(ip, flags);
704 
705 out_unlock:
706 	xfs_iunlock(ip, iolock);
707 	mnt_drop_write_file(filp);
708 	return error;
709 }
710 
711 /* Return 0 on success or positive error */
712 int
xfs_fsbulkstat_one_fmt(struct xfs_ibulk * breq,const struct xfs_bulkstat * bstat)713 xfs_fsbulkstat_one_fmt(
714 	struct xfs_ibulk		*breq,
715 	const struct xfs_bulkstat	*bstat)
716 {
717 	struct xfs_bstat		bs1;
718 
719 	xfs_bulkstat_to_bstat(breq->mp, &bs1, bstat);
720 	if (copy_to_user(breq->ubuffer, &bs1, sizeof(bs1)))
721 		return -EFAULT;
722 	return xfs_ibulk_advance(breq, sizeof(struct xfs_bstat));
723 }
724 
725 int
xfs_fsinumbers_fmt(struct xfs_ibulk * breq,const struct xfs_inumbers * igrp)726 xfs_fsinumbers_fmt(
727 	struct xfs_ibulk		*breq,
728 	const struct xfs_inumbers	*igrp)
729 {
730 	struct xfs_inogrp		ig1;
731 
732 	xfs_inumbers_to_inogrp(&ig1, igrp);
733 	if (copy_to_user(breq->ubuffer, &ig1, sizeof(struct xfs_inogrp)))
734 		return -EFAULT;
735 	return xfs_ibulk_advance(breq, sizeof(struct xfs_inogrp));
736 }
737 
738 STATIC int
xfs_ioc_fsbulkstat(struct file * file,unsigned int cmd,void __user * arg)739 xfs_ioc_fsbulkstat(
740 	struct file		*file,
741 	unsigned int		cmd,
742 	void			__user *arg)
743 {
744 	struct xfs_mount	*mp = XFS_I(file_inode(file))->i_mount;
745 	struct xfs_fsop_bulkreq	bulkreq;
746 	struct xfs_ibulk	breq = {
747 		.mp		= mp,
748 		.mnt_userns	= file_mnt_user_ns(file),
749 		.ocount		= 0,
750 	};
751 	xfs_ino_t		lastino;
752 	int			error;
753 
754 	/* done = 1 if there are more stats to get and if bulkstat */
755 	/* should be called again (unused here, but used in dmapi) */
756 
757 	if (!capable(CAP_SYS_ADMIN))
758 		return -EPERM;
759 
760 	if (xfs_is_shutdown(mp))
761 		return -EIO;
762 
763 	if (copy_from_user(&bulkreq, arg, sizeof(struct xfs_fsop_bulkreq)))
764 		return -EFAULT;
765 
766 	if (copy_from_user(&lastino, bulkreq.lastip, sizeof(__s64)))
767 		return -EFAULT;
768 
769 	if (bulkreq.icount <= 0)
770 		return -EINVAL;
771 
772 	if (bulkreq.ubuffer == NULL)
773 		return -EINVAL;
774 
775 	breq.ubuffer = bulkreq.ubuffer;
776 	breq.icount = bulkreq.icount;
777 
778 	/*
779 	 * FSBULKSTAT_SINGLE expects that *lastip contains the inode number
780 	 * that we want to stat.  However, FSINUMBERS and FSBULKSTAT expect
781 	 * that *lastip contains either zero or the number of the last inode to
782 	 * be examined by the previous call and return results starting with
783 	 * the next inode after that.  The new bulk request back end functions
784 	 * take the inode to start with, so we have to compute the startino
785 	 * parameter from lastino to maintain correct function.  lastino == 0
786 	 * is a special case because it has traditionally meant "first inode
787 	 * in filesystem".
788 	 */
789 	if (cmd == XFS_IOC_FSINUMBERS) {
790 		breq.startino = lastino ? lastino + 1 : 0;
791 		error = xfs_inumbers(&breq, xfs_fsinumbers_fmt);
792 		lastino = breq.startino - 1;
793 	} else if (cmd == XFS_IOC_FSBULKSTAT_SINGLE) {
794 		breq.startino = lastino;
795 		breq.icount = 1;
796 		error = xfs_bulkstat_one(&breq, xfs_fsbulkstat_one_fmt);
797 	} else {	/* XFS_IOC_FSBULKSTAT */
798 		breq.startino = lastino ? lastino + 1 : 0;
799 		error = xfs_bulkstat(&breq, xfs_fsbulkstat_one_fmt);
800 		lastino = breq.startino - 1;
801 	}
802 
803 	if (error)
804 		return error;
805 
806 	if (bulkreq.lastip != NULL &&
807 	    copy_to_user(bulkreq.lastip, &lastino, sizeof(xfs_ino_t)))
808 		return -EFAULT;
809 
810 	if (bulkreq.ocount != NULL &&
811 	    copy_to_user(bulkreq.ocount, &breq.ocount, sizeof(__s32)))
812 		return -EFAULT;
813 
814 	return 0;
815 }
816 
817 /* Return 0 on success or positive error */
818 static int
xfs_bulkstat_fmt(struct xfs_ibulk * breq,const struct xfs_bulkstat * bstat)819 xfs_bulkstat_fmt(
820 	struct xfs_ibulk		*breq,
821 	const struct xfs_bulkstat	*bstat)
822 {
823 	if (copy_to_user(breq->ubuffer, bstat, sizeof(struct xfs_bulkstat)))
824 		return -EFAULT;
825 	return xfs_ibulk_advance(breq, sizeof(struct xfs_bulkstat));
826 }
827 
828 /*
829  * Check the incoming bulk request @hdr from userspace and initialize the
830  * internal @breq bulk request appropriately.  Returns 0 if the bulk request
831  * should proceed; -ECANCELED if there's nothing to do; or the usual
832  * negative error code.
833  */
834 static int
xfs_bulk_ireq_setup(struct xfs_mount * mp,struct xfs_bulk_ireq * hdr,struct xfs_ibulk * breq,void __user * ubuffer)835 xfs_bulk_ireq_setup(
836 	struct xfs_mount	*mp,
837 	struct xfs_bulk_ireq	*hdr,
838 	struct xfs_ibulk	*breq,
839 	void __user		*ubuffer)
840 {
841 	if (hdr->icount == 0 ||
842 	    (hdr->flags & ~XFS_BULK_IREQ_FLAGS_ALL) ||
843 	    memchr_inv(hdr->reserved, 0, sizeof(hdr->reserved)))
844 		return -EINVAL;
845 
846 	breq->startino = hdr->ino;
847 	breq->ubuffer = ubuffer;
848 	breq->icount = hdr->icount;
849 	breq->ocount = 0;
850 	breq->flags = 0;
851 
852 	/*
853 	 * The @ino parameter is a special value, so we must look it up here.
854 	 * We're not allowed to have IREQ_AGNO, and we only return one inode
855 	 * worth of data.
856 	 */
857 	if (hdr->flags & XFS_BULK_IREQ_SPECIAL) {
858 		if (hdr->flags & XFS_BULK_IREQ_AGNO)
859 			return -EINVAL;
860 
861 		switch (hdr->ino) {
862 		case XFS_BULK_IREQ_SPECIAL_ROOT:
863 			hdr->ino = mp->m_sb.sb_rootino;
864 			break;
865 		default:
866 			return -EINVAL;
867 		}
868 		breq->icount = 1;
869 	}
870 
871 	/*
872 	 * The IREQ_AGNO flag means that we only want results from a given AG.
873 	 * If @hdr->ino is zero, we start iterating in that AG.  If @hdr->ino is
874 	 * beyond the specified AG then we return no results.
875 	 */
876 	if (hdr->flags & XFS_BULK_IREQ_AGNO) {
877 		if (hdr->agno >= mp->m_sb.sb_agcount)
878 			return -EINVAL;
879 
880 		if (breq->startino == 0)
881 			breq->startino = XFS_AGINO_TO_INO(mp, hdr->agno, 0);
882 		else if (XFS_INO_TO_AGNO(mp, breq->startino) < hdr->agno)
883 			return -EINVAL;
884 
885 		breq->flags |= XFS_IBULK_SAME_AG;
886 
887 		/* Asking for an inode past the end of the AG?  We're done! */
888 		if (XFS_INO_TO_AGNO(mp, breq->startino) > hdr->agno)
889 			return -ECANCELED;
890 	} else if (hdr->agno)
891 		return -EINVAL;
892 
893 	/* Asking for an inode past the end of the FS?  We're done! */
894 	if (XFS_INO_TO_AGNO(mp, breq->startino) >= mp->m_sb.sb_agcount)
895 		return -ECANCELED;
896 
897 	return 0;
898 }
899 
900 /*
901  * Update the userspace bulk request @hdr to reflect the end state of the
902  * internal bulk request @breq.
903  */
904 static void
xfs_bulk_ireq_teardown(struct xfs_bulk_ireq * hdr,struct xfs_ibulk * breq)905 xfs_bulk_ireq_teardown(
906 	struct xfs_bulk_ireq	*hdr,
907 	struct xfs_ibulk	*breq)
908 {
909 	hdr->ino = breq->startino;
910 	hdr->ocount = breq->ocount;
911 }
912 
913 /* Handle the v5 bulkstat ioctl. */
914 STATIC int
xfs_ioc_bulkstat(struct file * file,unsigned int cmd,struct xfs_bulkstat_req __user * arg)915 xfs_ioc_bulkstat(
916 	struct file			*file,
917 	unsigned int			cmd,
918 	struct xfs_bulkstat_req __user	*arg)
919 {
920 	struct xfs_mount		*mp = XFS_I(file_inode(file))->i_mount;
921 	struct xfs_bulk_ireq		hdr;
922 	struct xfs_ibulk		breq = {
923 		.mp			= mp,
924 		.mnt_userns		= file_mnt_user_ns(file),
925 	};
926 	int				error;
927 
928 	if (!capable(CAP_SYS_ADMIN))
929 		return -EPERM;
930 
931 	if (xfs_is_shutdown(mp))
932 		return -EIO;
933 
934 	if (copy_from_user(&hdr, &arg->hdr, sizeof(hdr)))
935 		return -EFAULT;
936 
937 	error = xfs_bulk_ireq_setup(mp, &hdr, &breq, arg->bulkstat);
938 	if (error == -ECANCELED)
939 		goto out_teardown;
940 	if (error < 0)
941 		return error;
942 
943 	error = xfs_bulkstat(&breq, xfs_bulkstat_fmt);
944 	if (error)
945 		return error;
946 
947 out_teardown:
948 	xfs_bulk_ireq_teardown(&hdr, &breq);
949 	if (copy_to_user(&arg->hdr, &hdr, sizeof(hdr)))
950 		return -EFAULT;
951 
952 	return 0;
953 }
954 
955 STATIC int
xfs_inumbers_fmt(struct xfs_ibulk * breq,const struct xfs_inumbers * igrp)956 xfs_inumbers_fmt(
957 	struct xfs_ibulk		*breq,
958 	const struct xfs_inumbers	*igrp)
959 {
960 	if (copy_to_user(breq->ubuffer, igrp, sizeof(struct xfs_inumbers)))
961 		return -EFAULT;
962 	return xfs_ibulk_advance(breq, sizeof(struct xfs_inumbers));
963 }
964 
965 /* Handle the v5 inumbers ioctl. */
966 STATIC int
xfs_ioc_inumbers(struct xfs_mount * mp,unsigned int cmd,struct xfs_inumbers_req __user * arg)967 xfs_ioc_inumbers(
968 	struct xfs_mount		*mp,
969 	unsigned int			cmd,
970 	struct xfs_inumbers_req __user	*arg)
971 {
972 	struct xfs_bulk_ireq		hdr;
973 	struct xfs_ibulk		breq = {
974 		.mp			= mp,
975 	};
976 	int				error;
977 
978 	if (!capable(CAP_SYS_ADMIN))
979 		return -EPERM;
980 
981 	if (xfs_is_shutdown(mp))
982 		return -EIO;
983 
984 	if (copy_from_user(&hdr, &arg->hdr, sizeof(hdr)))
985 		return -EFAULT;
986 
987 	error = xfs_bulk_ireq_setup(mp, &hdr, &breq, arg->inumbers);
988 	if (error == -ECANCELED)
989 		goto out_teardown;
990 	if (error < 0)
991 		return error;
992 
993 	error = xfs_inumbers(&breq, xfs_inumbers_fmt);
994 	if (error)
995 		return error;
996 
997 out_teardown:
998 	xfs_bulk_ireq_teardown(&hdr, &breq);
999 	if (copy_to_user(&arg->hdr, &hdr, sizeof(hdr)))
1000 		return -EFAULT;
1001 
1002 	return 0;
1003 }
1004 
1005 STATIC int
xfs_ioc_fsgeometry(struct xfs_mount * mp,void __user * arg,int struct_version)1006 xfs_ioc_fsgeometry(
1007 	struct xfs_mount	*mp,
1008 	void			__user *arg,
1009 	int			struct_version)
1010 {
1011 	struct xfs_fsop_geom	fsgeo;
1012 	size_t			len;
1013 
1014 	xfs_fs_geometry(mp, &fsgeo, struct_version);
1015 
1016 	if (struct_version <= 3)
1017 		len = sizeof(struct xfs_fsop_geom_v1);
1018 	else if (struct_version == 4)
1019 		len = sizeof(struct xfs_fsop_geom_v4);
1020 	else {
1021 		xfs_fsop_geom_health(mp, &fsgeo);
1022 		len = sizeof(fsgeo);
1023 	}
1024 
1025 	if (copy_to_user(arg, &fsgeo, len))
1026 		return -EFAULT;
1027 	return 0;
1028 }
1029 
1030 STATIC int
xfs_ioc_ag_geometry(struct xfs_mount * mp,void __user * arg)1031 xfs_ioc_ag_geometry(
1032 	struct xfs_mount	*mp,
1033 	void			__user *arg)
1034 {
1035 	struct xfs_ag_geometry	ageo;
1036 	int			error;
1037 
1038 	if (copy_from_user(&ageo, arg, sizeof(ageo)))
1039 		return -EFAULT;
1040 	if (ageo.ag_flags)
1041 		return -EINVAL;
1042 	if (memchr_inv(&ageo.ag_reserved, 0, sizeof(ageo.ag_reserved)))
1043 		return -EINVAL;
1044 
1045 	error = xfs_ag_get_geometry(mp, ageo.ag_number, &ageo);
1046 	if (error)
1047 		return error;
1048 
1049 	if (copy_to_user(arg, &ageo, sizeof(ageo)))
1050 		return -EFAULT;
1051 	return 0;
1052 }
1053 
1054 /*
1055  * Linux extended inode flags interface.
1056  */
1057 
1058 static void
xfs_fill_fsxattr(struct xfs_inode * ip,int whichfork,struct fileattr * fa)1059 xfs_fill_fsxattr(
1060 	struct xfs_inode	*ip,
1061 	int			whichfork,
1062 	struct fileattr		*fa)
1063 {
1064 	struct xfs_mount	*mp = ip->i_mount;
1065 	struct xfs_ifork	*ifp = XFS_IFORK_PTR(ip, whichfork);
1066 
1067 	fileattr_fill_xflags(fa, xfs_ip2xflags(ip));
1068 
1069 	if (ip->i_diflags & XFS_DIFLAG_EXTSIZE) {
1070 		fa->fsx_extsize = XFS_FSB_TO_B(mp, ip->i_extsize);
1071 	} else if (ip->i_diflags & XFS_DIFLAG_EXTSZINHERIT) {
1072 		/*
1073 		 * Don't let a misaligned extent size hint on a directory
1074 		 * escape to userspace if it won't pass the setattr checks
1075 		 * later.
1076 		 */
1077 		if ((ip->i_diflags & XFS_DIFLAG_RTINHERIT) &&
1078 		    ip->i_extsize % mp->m_sb.sb_rextsize > 0) {
1079 			fa->fsx_xflags &= ~(FS_XFLAG_EXTSIZE |
1080 					    FS_XFLAG_EXTSZINHERIT);
1081 			fa->fsx_extsize = 0;
1082 		} else {
1083 			fa->fsx_extsize = XFS_FSB_TO_B(mp, ip->i_extsize);
1084 		}
1085 	}
1086 
1087 	if (ip->i_diflags2 & XFS_DIFLAG2_COWEXTSIZE)
1088 		fa->fsx_cowextsize = XFS_FSB_TO_B(mp, ip->i_cowextsize);
1089 	fa->fsx_projid = ip->i_projid;
1090 	if (ifp && !xfs_need_iread_extents(ifp))
1091 		fa->fsx_nextents = xfs_iext_count(ifp);
1092 	else
1093 		fa->fsx_nextents = xfs_ifork_nextents(ifp);
1094 }
1095 
1096 STATIC int
xfs_ioc_fsgetxattra(xfs_inode_t * ip,void __user * arg)1097 xfs_ioc_fsgetxattra(
1098 	xfs_inode_t		*ip,
1099 	void			__user *arg)
1100 {
1101 	struct fileattr		fa;
1102 
1103 	xfs_ilock(ip, XFS_ILOCK_SHARED);
1104 	xfs_fill_fsxattr(ip, XFS_ATTR_FORK, &fa);
1105 	xfs_iunlock(ip, XFS_ILOCK_SHARED);
1106 
1107 	return copy_fsxattr_to_user(&fa, arg);
1108 }
1109 
1110 int
xfs_fileattr_get(struct dentry * dentry,struct fileattr * fa)1111 xfs_fileattr_get(
1112 	struct dentry		*dentry,
1113 	struct fileattr		*fa)
1114 {
1115 	struct xfs_inode	*ip = XFS_I(d_inode(dentry));
1116 
1117 	if (d_is_special(dentry))
1118 		return -ENOTTY;
1119 
1120 	xfs_ilock(ip, XFS_ILOCK_SHARED);
1121 	xfs_fill_fsxattr(ip, XFS_DATA_FORK, fa);
1122 	xfs_iunlock(ip, XFS_ILOCK_SHARED);
1123 
1124 	return 0;
1125 }
1126 
1127 STATIC uint16_t
xfs_flags2diflags(struct xfs_inode * ip,unsigned int xflags)1128 xfs_flags2diflags(
1129 	struct xfs_inode	*ip,
1130 	unsigned int		xflags)
1131 {
1132 	/* can't set PREALLOC this way, just preserve it */
1133 	uint16_t		di_flags =
1134 		(ip->i_diflags & XFS_DIFLAG_PREALLOC);
1135 
1136 	if (xflags & FS_XFLAG_IMMUTABLE)
1137 		di_flags |= XFS_DIFLAG_IMMUTABLE;
1138 	if (xflags & FS_XFLAG_APPEND)
1139 		di_flags |= XFS_DIFLAG_APPEND;
1140 	if (xflags & FS_XFLAG_SYNC)
1141 		di_flags |= XFS_DIFLAG_SYNC;
1142 	if (xflags & FS_XFLAG_NOATIME)
1143 		di_flags |= XFS_DIFLAG_NOATIME;
1144 	if (xflags & FS_XFLAG_NODUMP)
1145 		di_flags |= XFS_DIFLAG_NODUMP;
1146 	if (xflags & FS_XFLAG_NODEFRAG)
1147 		di_flags |= XFS_DIFLAG_NODEFRAG;
1148 	if (xflags & FS_XFLAG_FILESTREAM)
1149 		di_flags |= XFS_DIFLAG_FILESTREAM;
1150 	if (S_ISDIR(VFS_I(ip)->i_mode)) {
1151 		if (xflags & FS_XFLAG_RTINHERIT)
1152 			di_flags |= XFS_DIFLAG_RTINHERIT;
1153 		if (xflags & FS_XFLAG_NOSYMLINKS)
1154 			di_flags |= XFS_DIFLAG_NOSYMLINKS;
1155 		if (xflags & FS_XFLAG_EXTSZINHERIT)
1156 			di_flags |= XFS_DIFLAG_EXTSZINHERIT;
1157 		if (xflags & FS_XFLAG_PROJINHERIT)
1158 			di_flags |= XFS_DIFLAG_PROJINHERIT;
1159 	} else if (S_ISREG(VFS_I(ip)->i_mode)) {
1160 		if (xflags & FS_XFLAG_REALTIME)
1161 			di_flags |= XFS_DIFLAG_REALTIME;
1162 		if (xflags & FS_XFLAG_EXTSIZE)
1163 			di_flags |= XFS_DIFLAG_EXTSIZE;
1164 	}
1165 
1166 	return di_flags;
1167 }
1168 
1169 STATIC uint64_t
xfs_flags2diflags2(struct xfs_inode * ip,unsigned int xflags)1170 xfs_flags2diflags2(
1171 	struct xfs_inode	*ip,
1172 	unsigned int		xflags)
1173 {
1174 	uint64_t		di_flags2 =
1175 		(ip->i_diflags2 & (XFS_DIFLAG2_REFLINK |
1176 				   XFS_DIFLAG2_BIGTIME));
1177 
1178 	if (xflags & FS_XFLAG_DAX)
1179 		di_flags2 |= XFS_DIFLAG2_DAX;
1180 	if (xflags & FS_XFLAG_COWEXTSIZE)
1181 		di_flags2 |= XFS_DIFLAG2_COWEXTSIZE;
1182 
1183 	return di_flags2;
1184 }
1185 
1186 static int
xfs_ioctl_setattr_xflags(struct xfs_trans * tp,struct xfs_inode * ip,struct fileattr * fa)1187 xfs_ioctl_setattr_xflags(
1188 	struct xfs_trans	*tp,
1189 	struct xfs_inode	*ip,
1190 	struct fileattr		*fa)
1191 {
1192 	struct xfs_mount	*mp = ip->i_mount;
1193 	uint64_t		i_flags2;
1194 
1195 	/* Can't change realtime flag if any extents are allocated. */
1196 	if ((ip->i_df.if_nextents || ip->i_delayed_blks) &&
1197 	    XFS_IS_REALTIME_INODE(ip) != (fa->fsx_xflags & FS_XFLAG_REALTIME))
1198 		return -EINVAL;
1199 
1200 	/* If realtime flag is set then must have realtime device */
1201 	if (fa->fsx_xflags & FS_XFLAG_REALTIME) {
1202 		if (mp->m_sb.sb_rblocks == 0 || mp->m_sb.sb_rextsize == 0 ||
1203 		    (ip->i_extsize % mp->m_sb.sb_rextsize))
1204 			return -EINVAL;
1205 	}
1206 
1207 	/* Clear reflink if we are actually able to set the rt flag. */
1208 	if ((fa->fsx_xflags & FS_XFLAG_REALTIME) && xfs_is_reflink_inode(ip))
1209 		ip->i_diflags2 &= ~XFS_DIFLAG2_REFLINK;
1210 
1211 	/* Don't allow us to set DAX mode for a reflinked file for now. */
1212 	if ((fa->fsx_xflags & FS_XFLAG_DAX) && xfs_is_reflink_inode(ip))
1213 		return -EINVAL;
1214 
1215 	/* diflags2 only valid for v3 inodes. */
1216 	i_flags2 = xfs_flags2diflags2(ip, fa->fsx_xflags);
1217 	if (i_flags2 && !xfs_has_v3inodes(mp))
1218 		return -EINVAL;
1219 
1220 	ip->i_diflags = xfs_flags2diflags(ip, fa->fsx_xflags);
1221 	ip->i_diflags2 = i_flags2;
1222 
1223 	xfs_diflags_to_iflags(ip, false);
1224 	xfs_trans_ichgtime(tp, ip, XFS_ICHGTIME_CHG);
1225 	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
1226 	XFS_STATS_INC(mp, xs_ig_attrchg);
1227 	return 0;
1228 }
1229 
1230 static void
xfs_ioctl_setattr_prepare_dax(struct xfs_inode * ip,struct fileattr * fa)1231 xfs_ioctl_setattr_prepare_dax(
1232 	struct xfs_inode	*ip,
1233 	struct fileattr		*fa)
1234 {
1235 	struct xfs_mount	*mp = ip->i_mount;
1236 	struct inode            *inode = VFS_I(ip);
1237 
1238 	if (S_ISDIR(inode->i_mode))
1239 		return;
1240 
1241 	if (xfs_has_dax_always(mp) || xfs_has_dax_never(mp))
1242 		return;
1243 
1244 	if (((fa->fsx_xflags & FS_XFLAG_DAX) &&
1245 	    !(ip->i_diflags2 & XFS_DIFLAG2_DAX)) ||
1246 	    (!(fa->fsx_xflags & FS_XFLAG_DAX) &&
1247 	     (ip->i_diflags2 & XFS_DIFLAG2_DAX)))
1248 		d_mark_dontcache(inode);
1249 }
1250 
1251 /*
1252  * Set up the transaction structure for the setattr operation, checking that we
1253  * have permission to do so. On success, return a clean transaction and the
1254  * inode locked exclusively ready for further operation specific checks. On
1255  * failure, return an error without modifying or locking the inode.
1256  */
1257 static struct xfs_trans *
xfs_ioctl_setattr_get_trans(struct xfs_inode * ip,struct xfs_dquot * pdqp)1258 xfs_ioctl_setattr_get_trans(
1259 	struct xfs_inode	*ip,
1260 	struct xfs_dquot	*pdqp)
1261 {
1262 	struct xfs_mount	*mp = ip->i_mount;
1263 	struct xfs_trans	*tp;
1264 	int			error = -EROFS;
1265 
1266 	if (xfs_is_readonly(mp))
1267 		goto out_error;
1268 	error = -EIO;
1269 	if (xfs_is_shutdown(mp))
1270 		goto out_error;
1271 
1272 	error = xfs_trans_alloc_ichange(ip, NULL, NULL, pdqp,
1273 			capable(CAP_FOWNER), &tp);
1274 	if (error)
1275 		goto out_error;
1276 
1277 	if (xfs_has_wsync(mp))
1278 		xfs_trans_set_sync(tp);
1279 
1280 	return tp;
1281 
1282 out_error:
1283 	return ERR_PTR(error);
1284 }
1285 
1286 /*
1287  * Validate a proposed extent size hint.  For regular files, the hint can only
1288  * be changed if no extents are allocated.
1289  */
1290 static int
xfs_ioctl_setattr_check_extsize(struct xfs_inode * ip,struct fileattr * fa)1291 xfs_ioctl_setattr_check_extsize(
1292 	struct xfs_inode	*ip,
1293 	struct fileattr		*fa)
1294 {
1295 	struct xfs_mount	*mp = ip->i_mount;
1296 	xfs_failaddr_t		failaddr;
1297 	uint16_t		new_diflags;
1298 
1299 	if (!fa->fsx_valid)
1300 		return 0;
1301 
1302 	if (S_ISREG(VFS_I(ip)->i_mode) && ip->i_df.if_nextents &&
1303 	    XFS_FSB_TO_B(mp, ip->i_extsize) != fa->fsx_extsize)
1304 		return -EINVAL;
1305 
1306 	if (fa->fsx_extsize & mp->m_blockmask)
1307 		return -EINVAL;
1308 
1309 	new_diflags = xfs_flags2diflags(ip, fa->fsx_xflags);
1310 
1311 	/*
1312 	 * Inode verifiers do not check that the extent size hint is an integer
1313 	 * multiple of the rt extent size on a directory with both rtinherit
1314 	 * and extszinherit flags set.  Don't let sysadmins misconfigure
1315 	 * directories.
1316 	 */
1317 	if ((new_diflags & XFS_DIFLAG_RTINHERIT) &&
1318 	    (new_diflags & XFS_DIFLAG_EXTSZINHERIT)) {
1319 		unsigned int	rtextsize_bytes;
1320 
1321 		rtextsize_bytes = XFS_FSB_TO_B(mp, mp->m_sb.sb_rextsize);
1322 		if (fa->fsx_extsize % rtextsize_bytes)
1323 			return -EINVAL;
1324 	}
1325 
1326 	failaddr = xfs_inode_validate_extsize(ip->i_mount,
1327 			XFS_B_TO_FSB(mp, fa->fsx_extsize),
1328 			VFS_I(ip)->i_mode, new_diflags);
1329 	return failaddr != NULL ? -EINVAL : 0;
1330 }
1331 
1332 static int
xfs_ioctl_setattr_check_cowextsize(struct xfs_inode * ip,struct fileattr * fa)1333 xfs_ioctl_setattr_check_cowextsize(
1334 	struct xfs_inode	*ip,
1335 	struct fileattr		*fa)
1336 {
1337 	struct xfs_mount	*mp = ip->i_mount;
1338 	xfs_failaddr_t		failaddr;
1339 	uint64_t		new_diflags2;
1340 	uint16_t		new_diflags;
1341 
1342 	if (!fa->fsx_valid)
1343 		return 0;
1344 
1345 	if (fa->fsx_cowextsize & mp->m_blockmask)
1346 		return -EINVAL;
1347 
1348 	new_diflags = xfs_flags2diflags(ip, fa->fsx_xflags);
1349 	new_diflags2 = xfs_flags2diflags2(ip, fa->fsx_xflags);
1350 
1351 	failaddr = xfs_inode_validate_cowextsize(ip->i_mount,
1352 			XFS_B_TO_FSB(mp, fa->fsx_cowextsize),
1353 			VFS_I(ip)->i_mode, new_diflags, new_diflags2);
1354 	return failaddr != NULL ? -EINVAL : 0;
1355 }
1356 
1357 static int
xfs_ioctl_setattr_check_projid(struct xfs_inode * ip,struct fileattr * fa)1358 xfs_ioctl_setattr_check_projid(
1359 	struct xfs_inode	*ip,
1360 	struct fileattr		*fa)
1361 {
1362 	if (!fa->fsx_valid)
1363 		return 0;
1364 
1365 	/* Disallow 32bit project ids if 32bit IDs are not enabled. */
1366 	if (fa->fsx_projid > (uint16_t)-1 &&
1367 	    !xfs_has_projid32(ip->i_mount))
1368 		return -EINVAL;
1369 	return 0;
1370 }
1371 
1372 int
xfs_fileattr_set(struct user_namespace * mnt_userns,struct dentry * dentry,struct fileattr * fa)1373 xfs_fileattr_set(
1374 	struct user_namespace	*mnt_userns,
1375 	struct dentry		*dentry,
1376 	struct fileattr		*fa)
1377 {
1378 	struct xfs_inode	*ip = XFS_I(d_inode(dentry));
1379 	struct xfs_mount	*mp = ip->i_mount;
1380 	struct xfs_trans	*tp;
1381 	struct xfs_dquot	*pdqp = NULL;
1382 	struct xfs_dquot	*olddquot = NULL;
1383 	int			error;
1384 
1385 	trace_xfs_ioctl_setattr(ip);
1386 
1387 	if (d_is_special(dentry))
1388 		return -ENOTTY;
1389 
1390 	if (!fa->fsx_valid) {
1391 		if (fa->flags & ~(FS_IMMUTABLE_FL | FS_APPEND_FL |
1392 				  FS_NOATIME_FL | FS_NODUMP_FL |
1393 				  FS_SYNC_FL | FS_DAX_FL | FS_PROJINHERIT_FL))
1394 			return -EOPNOTSUPP;
1395 	}
1396 
1397 	error = xfs_ioctl_setattr_check_projid(ip, fa);
1398 	if (error)
1399 		return error;
1400 
1401 	/*
1402 	 * If disk quotas is on, we make sure that the dquots do exist on disk,
1403 	 * before we start any other transactions. Trying to do this later
1404 	 * is messy. We don't care to take a readlock to look at the ids
1405 	 * in inode here, because we can't hold it across the trans_reserve.
1406 	 * If the IDs do change before we take the ilock, we're covered
1407 	 * because the i_*dquot fields will get updated anyway.
1408 	 */
1409 	if (fa->fsx_valid && XFS_IS_QUOTA_ON(mp)) {
1410 		error = xfs_qm_vop_dqalloc(ip, VFS_I(ip)->i_uid,
1411 				VFS_I(ip)->i_gid, fa->fsx_projid,
1412 				XFS_QMOPT_PQUOTA, NULL, NULL, &pdqp);
1413 		if (error)
1414 			return error;
1415 	}
1416 
1417 	xfs_ioctl_setattr_prepare_dax(ip, fa);
1418 
1419 	tp = xfs_ioctl_setattr_get_trans(ip, pdqp);
1420 	if (IS_ERR(tp)) {
1421 		error = PTR_ERR(tp);
1422 		goto error_free_dquots;
1423 	}
1424 
1425 	error = xfs_ioctl_setattr_check_extsize(ip, fa);
1426 	if (error)
1427 		goto error_trans_cancel;
1428 
1429 	error = xfs_ioctl_setattr_check_cowextsize(ip, fa);
1430 	if (error)
1431 		goto error_trans_cancel;
1432 
1433 	error = xfs_ioctl_setattr_xflags(tp, ip, fa);
1434 	if (error)
1435 		goto error_trans_cancel;
1436 
1437 	if (!fa->fsx_valid)
1438 		goto skip_xattr;
1439 	/*
1440 	 * Change file ownership.  Must be the owner or privileged.  CAP_FSETID
1441 	 * overrides the following restrictions:
1442 	 *
1443 	 * The set-user-ID and set-group-ID bits of a file will be cleared upon
1444 	 * successful return from chown()
1445 	 */
1446 
1447 	if ((VFS_I(ip)->i_mode & (S_ISUID|S_ISGID)) &&
1448 	    !capable_wrt_inode_uidgid(mnt_userns, VFS_I(ip), CAP_FSETID))
1449 		VFS_I(ip)->i_mode &= ~(S_ISUID|S_ISGID);
1450 
1451 	/* Change the ownerships and register project quota modifications */
1452 	if (ip->i_projid != fa->fsx_projid) {
1453 		if (XFS_IS_PQUOTA_ON(mp)) {
1454 			olddquot = xfs_qm_vop_chown(tp, ip,
1455 						&ip->i_pdquot, pdqp);
1456 		}
1457 		ip->i_projid = fa->fsx_projid;
1458 	}
1459 
1460 	/*
1461 	 * Only set the extent size hint if we've already determined that the
1462 	 * extent size hint should be set on the inode. If no extent size flags
1463 	 * are set on the inode then unconditionally clear the extent size hint.
1464 	 */
1465 	if (ip->i_diflags & (XFS_DIFLAG_EXTSIZE | XFS_DIFLAG_EXTSZINHERIT))
1466 		ip->i_extsize = XFS_B_TO_FSB(mp, fa->fsx_extsize);
1467 	else
1468 		ip->i_extsize = 0;
1469 
1470 	if (xfs_has_v3inodes(mp)) {
1471 		if (ip->i_diflags2 & XFS_DIFLAG2_COWEXTSIZE)
1472 			ip->i_cowextsize = XFS_B_TO_FSB(mp, fa->fsx_cowextsize);
1473 		else
1474 			ip->i_cowextsize = 0;
1475 	}
1476 
1477 skip_xattr:
1478 	error = xfs_trans_commit(tp);
1479 
1480 	/*
1481 	 * Release any dquot(s) the inode had kept before chown.
1482 	 */
1483 	xfs_qm_dqrele(olddquot);
1484 	xfs_qm_dqrele(pdqp);
1485 
1486 	return error;
1487 
1488 error_trans_cancel:
1489 	xfs_trans_cancel(tp);
1490 error_free_dquots:
1491 	xfs_qm_dqrele(pdqp);
1492 	return error;
1493 }
1494 
1495 static bool
xfs_getbmap_format(struct kgetbmap * p,struct getbmapx __user * u,size_t recsize)1496 xfs_getbmap_format(
1497 	struct kgetbmap		*p,
1498 	struct getbmapx __user	*u,
1499 	size_t			recsize)
1500 {
1501 	if (put_user(p->bmv_offset, &u->bmv_offset) ||
1502 	    put_user(p->bmv_block, &u->bmv_block) ||
1503 	    put_user(p->bmv_length, &u->bmv_length) ||
1504 	    put_user(0, &u->bmv_count) ||
1505 	    put_user(0, &u->bmv_entries))
1506 		return false;
1507 	if (recsize < sizeof(struct getbmapx))
1508 		return true;
1509 	if (put_user(0, &u->bmv_iflags) ||
1510 	    put_user(p->bmv_oflags, &u->bmv_oflags) ||
1511 	    put_user(0, &u->bmv_unused1) ||
1512 	    put_user(0, &u->bmv_unused2))
1513 		return false;
1514 	return true;
1515 }
1516 
1517 STATIC int
xfs_ioc_getbmap(struct file * file,unsigned int cmd,void __user * arg)1518 xfs_ioc_getbmap(
1519 	struct file		*file,
1520 	unsigned int		cmd,
1521 	void			__user *arg)
1522 {
1523 	struct getbmapx		bmx = { 0 };
1524 	struct kgetbmap		*buf;
1525 	size_t			recsize;
1526 	int			error, i;
1527 
1528 	switch (cmd) {
1529 	case XFS_IOC_GETBMAPA:
1530 		bmx.bmv_iflags = BMV_IF_ATTRFORK;
1531 		fallthrough;
1532 	case XFS_IOC_GETBMAP:
1533 		/* struct getbmap is a strict subset of struct getbmapx. */
1534 		recsize = sizeof(struct getbmap);
1535 		break;
1536 	case XFS_IOC_GETBMAPX:
1537 		recsize = sizeof(struct getbmapx);
1538 		break;
1539 	default:
1540 		return -EINVAL;
1541 	}
1542 
1543 	if (copy_from_user(&bmx, arg, recsize))
1544 		return -EFAULT;
1545 
1546 	if (bmx.bmv_count < 2)
1547 		return -EINVAL;
1548 	if (bmx.bmv_count >= INT_MAX / recsize)
1549 		return -ENOMEM;
1550 
1551 	buf = kvzalloc(bmx.bmv_count * sizeof(*buf), GFP_KERNEL);
1552 	if (!buf)
1553 		return -ENOMEM;
1554 
1555 	error = xfs_getbmap(XFS_I(file_inode(file)), &bmx, buf);
1556 	if (error)
1557 		goto out_free_buf;
1558 
1559 	error = -EFAULT;
1560 	if (copy_to_user(arg, &bmx, recsize))
1561 		goto out_free_buf;
1562 	arg += recsize;
1563 
1564 	for (i = 0; i < bmx.bmv_entries; i++) {
1565 		if (!xfs_getbmap_format(buf + i, arg, recsize))
1566 			goto out_free_buf;
1567 		arg += recsize;
1568 	}
1569 
1570 	error = 0;
1571 out_free_buf:
1572 	kmem_free(buf);
1573 	return error;
1574 }
1575 
1576 STATIC int
xfs_ioc_getfsmap(struct xfs_inode * ip,struct fsmap_head __user * arg)1577 xfs_ioc_getfsmap(
1578 	struct xfs_inode	*ip,
1579 	struct fsmap_head	__user *arg)
1580 {
1581 	struct xfs_fsmap_head	xhead = {0};
1582 	struct fsmap_head	head;
1583 	struct fsmap		*recs;
1584 	unsigned int		count;
1585 	__u32			last_flags = 0;
1586 	bool			done = false;
1587 	int			error;
1588 
1589 	if (copy_from_user(&head, arg, sizeof(struct fsmap_head)))
1590 		return -EFAULT;
1591 	if (memchr_inv(head.fmh_reserved, 0, sizeof(head.fmh_reserved)) ||
1592 	    memchr_inv(head.fmh_keys[0].fmr_reserved, 0,
1593 		       sizeof(head.fmh_keys[0].fmr_reserved)) ||
1594 	    memchr_inv(head.fmh_keys[1].fmr_reserved, 0,
1595 		       sizeof(head.fmh_keys[1].fmr_reserved)))
1596 		return -EINVAL;
1597 
1598 	/*
1599 	 * Use an internal memory buffer so that we don't have to copy fsmap
1600 	 * data to userspace while holding locks.  Start by trying to allocate
1601 	 * up to 128k for the buffer, but fall back to a single page if needed.
1602 	 */
1603 	count = min_t(unsigned int, head.fmh_count,
1604 			131072 / sizeof(struct fsmap));
1605 	recs = kvzalloc(count * sizeof(struct fsmap), GFP_KERNEL);
1606 	if (!recs) {
1607 		count = min_t(unsigned int, head.fmh_count,
1608 				PAGE_SIZE / sizeof(struct fsmap));
1609 		recs = kvzalloc(count * sizeof(struct fsmap), GFP_KERNEL);
1610 		if (!recs)
1611 			return -ENOMEM;
1612 	}
1613 
1614 	xhead.fmh_iflags = head.fmh_iflags;
1615 	xfs_fsmap_to_internal(&xhead.fmh_keys[0], &head.fmh_keys[0]);
1616 	xfs_fsmap_to_internal(&xhead.fmh_keys[1], &head.fmh_keys[1]);
1617 
1618 	trace_xfs_getfsmap_low_key(ip->i_mount, &xhead.fmh_keys[0]);
1619 	trace_xfs_getfsmap_high_key(ip->i_mount, &xhead.fmh_keys[1]);
1620 
1621 	head.fmh_entries = 0;
1622 	do {
1623 		struct fsmap __user	*user_recs;
1624 		struct fsmap		*last_rec;
1625 
1626 		user_recs = &arg->fmh_recs[head.fmh_entries];
1627 		xhead.fmh_entries = 0;
1628 		xhead.fmh_count = min_t(unsigned int, count,
1629 					head.fmh_count - head.fmh_entries);
1630 
1631 		/* Run query, record how many entries we got. */
1632 		error = xfs_getfsmap(ip->i_mount, &xhead, recs);
1633 		switch (error) {
1634 		case 0:
1635 			/*
1636 			 * There are no more records in the result set.  Copy
1637 			 * whatever we got to userspace and break out.
1638 			 */
1639 			done = true;
1640 			break;
1641 		case -ECANCELED:
1642 			/*
1643 			 * The internal memory buffer is full.  Copy whatever
1644 			 * records we got to userspace and go again if we have
1645 			 * not yet filled the userspace buffer.
1646 			 */
1647 			error = 0;
1648 			break;
1649 		default:
1650 			goto out_free;
1651 		}
1652 		head.fmh_entries += xhead.fmh_entries;
1653 		head.fmh_oflags = xhead.fmh_oflags;
1654 
1655 		/*
1656 		 * If the caller wanted a record count or there aren't any
1657 		 * new records to return, we're done.
1658 		 */
1659 		if (head.fmh_count == 0 || xhead.fmh_entries == 0)
1660 			break;
1661 
1662 		/* Copy all the records we got out to userspace. */
1663 		if (copy_to_user(user_recs, recs,
1664 				 xhead.fmh_entries * sizeof(struct fsmap))) {
1665 			error = -EFAULT;
1666 			goto out_free;
1667 		}
1668 
1669 		/* Remember the last record flags we copied to userspace. */
1670 		last_rec = &recs[xhead.fmh_entries - 1];
1671 		last_flags = last_rec->fmr_flags;
1672 
1673 		/* Set up the low key for the next iteration. */
1674 		xfs_fsmap_to_internal(&xhead.fmh_keys[0], last_rec);
1675 		trace_xfs_getfsmap_low_key(ip->i_mount, &xhead.fmh_keys[0]);
1676 	} while (!done && head.fmh_entries < head.fmh_count);
1677 
1678 	/*
1679 	 * If there are no more records in the query result set and we're not
1680 	 * in counting mode, mark the last record returned with the LAST flag.
1681 	 */
1682 	if (done && head.fmh_count > 0 && head.fmh_entries > 0) {
1683 		struct fsmap __user	*user_rec;
1684 
1685 		last_flags |= FMR_OF_LAST;
1686 		user_rec = &arg->fmh_recs[head.fmh_entries - 1];
1687 
1688 		if (copy_to_user(&user_rec->fmr_flags, &last_flags,
1689 					sizeof(last_flags))) {
1690 			error = -EFAULT;
1691 			goto out_free;
1692 		}
1693 	}
1694 
1695 	/* copy back header */
1696 	if (copy_to_user(arg, &head, sizeof(struct fsmap_head))) {
1697 		error = -EFAULT;
1698 		goto out_free;
1699 	}
1700 
1701 out_free:
1702 	kmem_free(recs);
1703 	return error;
1704 }
1705 
1706 STATIC int
xfs_ioc_scrub_metadata(struct file * file,void __user * arg)1707 xfs_ioc_scrub_metadata(
1708 	struct file			*file,
1709 	void				__user *arg)
1710 {
1711 	struct xfs_scrub_metadata	scrub;
1712 	int				error;
1713 
1714 	if (!capable(CAP_SYS_ADMIN))
1715 		return -EPERM;
1716 
1717 	if (copy_from_user(&scrub, arg, sizeof(scrub)))
1718 		return -EFAULT;
1719 
1720 	error = xfs_scrub_metadata(file, &scrub);
1721 	if (error)
1722 		return error;
1723 
1724 	if (copy_to_user(arg, &scrub, sizeof(scrub)))
1725 		return -EFAULT;
1726 
1727 	return 0;
1728 }
1729 
1730 int
xfs_ioc_swapext(xfs_swapext_t * sxp)1731 xfs_ioc_swapext(
1732 	xfs_swapext_t	*sxp)
1733 {
1734 	xfs_inode_t     *ip, *tip;
1735 	struct fd	f, tmp;
1736 	int		error = 0;
1737 
1738 	/* Pull information for the target fd */
1739 	f = fdget((int)sxp->sx_fdtarget);
1740 	if (!f.file) {
1741 		error = -EINVAL;
1742 		goto out;
1743 	}
1744 
1745 	if (!(f.file->f_mode & FMODE_WRITE) ||
1746 	    !(f.file->f_mode & FMODE_READ) ||
1747 	    (f.file->f_flags & O_APPEND)) {
1748 		error = -EBADF;
1749 		goto out_put_file;
1750 	}
1751 
1752 	tmp = fdget((int)sxp->sx_fdtmp);
1753 	if (!tmp.file) {
1754 		error = -EINVAL;
1755 		goto out_put_file;
1756 	}
1757 
1758 	if (!(tmp.file->f_mode & FMODE_WRITE) ||
1759 	    !(tmp.file->f_mode & FMODE_READ) ||
1760 	    (tmp.file->f_flags & O_APPEND)) {
1761 		error = -EBADF;
1762 		goto out_put_tmp_file;
1763 	}
1764 
1765 	if (IS_SWAPFILE(file_inode(f.file)) ||
1766 	    IS_SWAPFILE(file_inode(tmp.file))) {
1767 		error = -EINVAL;
1768 		goto out_put_tmp_file;
1769 	}
1770 
1771 	/*
1772 	 * We need to ensure that the fds passed in point to XFS inodes
1773 	 * before we cast and access them as XFS structures as we have no
1774 	 * control over what the user passes us here.
1775 	 */
1776 	if (f.file->f_op != &xfs_file_operations ||
1777 	    tmp.file->f_op != &xfs_file_operations) {
1778 		error = -EINVAL;
1779 		goto out_put_tmp_file;
1780 	}
1781 
1782 	ip = XFS_I(file_inode(f.file));
1783 	tip = XFS_I(file_inode(tmp.file));
1784 
1785 	if (ip->i_mount != tip->i_mount) {
1786 		error = -EINVAL;
1787 		goto out_put_tmp_file;
1788 	}
1789 
1790 	if (ip->i_ino == tip->i_ino) {
1791 		error = -EINVAL;
1792 		goto out_put_tmp_file;
1793 	}
1794 
1795 	if (xfs_is_shutdown(ip->i_mount)) {
1796 		error = -EIO;
1797 		goto out_put_tmp_file;
1798 	}
1799 
1800 	error = xfs_swap_extents(ip, tip, sxp);
1801 
1802  out_put_tmp_file:
1803 	fdput(tmp);
1804  out_put_file:
1805 	fdput(f);
1806  out:
1807 	return error;
1808 }
1809 
1810 static int
xfs_ioc_getlabel(struct xfs_mount * mp,char __user * user_label)1811 xfs_ioc_getlabel(
1812 	struct xfs_mount	*mp,
1813 	char			__user *user_label)
1814 {
1815 	struct xfs_sb		*sbp = &mp->m_sb;
1816 	char			label[XFSLABEL_MAX + 1];
1817 
1818 	/* Paranoia */
1819 	BUILD_BUG_ON(sizeof(sbp->sb_fname) > FSLABEL_MAX);
1820 
1821 	/* 1 larger than sb_fname, so this ensures a trailing NUL char */
1822 	memset(label, 0, sizeof(label));
1823 	spin_lock(&mp->m_sb_lock);
1824 	strncpy(label, sbp->sb_fname, XFSLABEL_MAX);
1825 	spin_unlock(&mp->m_sb_lock);
1826 
1827 	if (copy_to_user(user_label, label, sizeof(label)))
1828 		return -EFAULT;
1829 	return 0;
1830 }
1831 
1832 static int
xfs_ioc_setlabel(struct file * filp,struct xfs_mount * mp,char __user * newlabel)1833 xfs_ioc_setlabel(
1834 	struct file		*filp,
1835 	struct xfs_mount	*mp,
1836 	char			__user *newlabel)
1837 {
1838 	struct xfs_sb		*sbp = &mp->m_sb;
1839 	char			label[XFSLABEL_MAX + 1];
1840 	size_t			len;
1841 	int			error;
1842 
1843 	if (!capable(CAP_SYS_ADMIN))
1844 		return -EPERM;
1845 	/*
1846 	 * The generic ioctl allows up to FSLABEL_MAX chars, but XFS is much
1847 	 * smaller, at 12 bytes.  We copy one more to be sure we find the
1848 	 * (required) NULL character to test the incoming label length.
1849 	 * NB: The on disk label doesn't need to be null terminated.
1850 	 */
1851 	if (copy_from_user(label, newlabel, XFSLABEL_MAX + 1))
1852 		return -EFAULT;
1853 	len = strnlen(label, XFSLABEL_MAX + 1);
1854 	if (len > sizeof(sbp->sb_fname))
1855 		return -EINVAL;
1856 
1857 	error = mnt_want_write_file(filp);
1858 	if (error)
1859 		return error;
1860 
1861 	spin_lock(&mp->m_sb_lock);
1862 	memset(sbp->sb_fname, 0, sizeof(sbp->sb_fname));
1863 	memcpy(sbp->sb_fname, label, len);
1864 	spin_unlock(&mp->m_sb_lock);
1865 
1866 	/*
1867 	 * Now we do several things to satisfy userspace.
1868 	 * In addition to normal logging of the primary superblock, we also
1869 	 * immediately write these changes to sector zero for the primary, then
1870 	 * update all backup supers (as xfs_db does for a label change), then
1871 	 * invalidate the block device page cache.  This is so that any prior
1872 	 * buffered reads from userspace (i.e. from blkid) are invalidated,
1873 	 * and userspace will see the newly-written label.
1874 	 */
1875 	error = xfs_sync_sb_buf(mp);
1876 	if (error)
1877 		goto out;
1878 	/*
1879 	 * growfs also updates backup supers so lock against that.
1880 	 */
1881 	mutex_lock(&mp->m_growlock);
1882 	error = xfs_update_secondary_sbs(mp);
1883 	mutex_unlock(&mp->m_growlock);
1884 
1885 	invalidate_bdev(mp->m_ddev_targp->bt_bdev);
1886 
1887 out:
1888 	mnt_drop_write_file(filp);
1889 	return error;
1890 }
1891 
1892 static inline int
xfs_fs_eofblocks_from_user(struct xfs_fs_eofblocks * src,struct xfs_icwalk * dst)1893 xfs_fs_eofblocks_from_user(
1894 	struct xfs_fs_eofblocks		*src,
1895 	struct xfs_icwalk		*dst)
1896 {
1897 	if (src->eof_version != XFS_EOFBLOCKS_VERSION)
1898 		return -EINVAL;
1899 
1900 	if (src->eof_flags & ~XFS_EOF_FLAGS_VALID)
1901 		return -EINVAL;
1902 
1903 	if (memchr_inv(&src->pad32, 0, sizeof(src->pad32)) ||
1904 	    memchr_inv(src->pad64, 0, sizeof(src->pad64)))
1905 		return -EINVAL;
1906 
1907 	dst->icw_flags = 0;
1908 	if (src->eof_flags & XFS_EOF_FLAGS_SYNC)
1909 		dst->icw_flags |= XFS_ICWALK_FLAG_SYNC;
1910 	if (src->eof_flags & XFS_EOF_FLAGS_UID)
1911 		dst->icw_flags |= XFS_ICWALK_FLAG_UID;
1912 	if (src->eof_flags & XFS_EOF_FLAGS_GID)
1913 		dst->icw_flags |= XFS_ICWALK_FLAG_GID;
1914 	if (src->eof_flags & XFS_EOF_FLAGS_PRID)
1915 		dst->icw_flags |= XFS_ICWALK_FLAG_PRID;
1916 	if (src->eof_flags & XFS_EOF_FLAGS_MINFILESIZE)
1917 		dst->icw_flags |= XFS_ICWALK_FLAG_MINFILESIZE;
1918 
1919 	dst->icw_prid = src->eof_prid;
1920 	dst->icw_min_file_size = src->eof_min_file_size;
1921 
1922 	dst->icw_uid = INVALID_UID;
1923 	if (src->eof_flags & XFS_EOF_FLAGS_UID) {
1924 		dst->icw_uid = make_kuid(current_user_ns(), src->eof_uid);
1925 		if (!uid_valid(dst->icw_uid))
1926 			return -EINVAL;
1927 	}
1928 
1929 	dst->icw_gid = INVALID_GID;
1930 	if (src->eof_flags & XFS_EOF_FLAGS_GID) {
1931 		dst->icw_gid = make_kgid(current_user_ns(), src->eof_gid);
1932 		if (!gid_valid(dst->icw_gid))
1933 			return -EINVAL;
1934 	}
1935 	return 0;
1936 }
1937 
1938 /*
1939  * Note: some of the ioctl's return positive numbers as a
1940  * byte count indicating success, such as readlink_by_handle.
1941  * So we don't "sign flip" like most other routines.  This means
1942  * true errors need to be returned as a negative value.
1943  */
1944 long
xfs_file_ioctl(struct file * filp,unsigned int cmd,unsigned long p)1945 xfs_file_ioctl(
1946 	struct file		*filp,
1947 	unsigned int		cmd,
1948 	unsigned long		p)
1949 {
1950 	struct inode		*inode = file_inode(filp);
1951 	struct xfs_inode	*ip = XFS_I(inode);
1952 	struct xfs_mount	*mp = ip->i_mount;
1953 	void			__user *arg = (void __user *)p;
1954 	int			error;
1955 
1956 	trace_xfs_file_ioctl(ip);
1957 
1958 	switch (cmd) {
1959 	case FITRIM:
1960 		return xfs_ioc_trim(mp, arg);
1961 	case FS_IOC_GETFSLABEL:
1962 		return xfs_ioc_getlabel(mp, arg);
1963 	case FS_IOC_SETFSLABEL:
1964 		return xfs_ioc_setlabel(filp, mp, arg);
1965 	case XFS_IOC_ALLOCSP:
1966 	case XFS_IOC_FREESP:
1967 	case XFS_IOC_ALLOCSP64:
1968 	case XFS_IOC_FREESP64: {
1969 		xfs_flock64_t		bf;
1970 
1971 		if (copy_from_user(&bf, arg, sizeof(bf)))
1972 			return -EFAULT;
1973 		return xfs_ioc_space(filp, &bf);
1974 	}
1975 	case XFS_IOC_DIOINFO: {
1976 		struct xfs_buftarg	*target = xfs_inode_buftarg(ip);
1977 		struct dioattr		da;
1978 
1979 		da.d_mem =  da.d_miniosz = target->bt_logical_sectorsize;
1980 		da.d_maxiosz = INT_MAX & ~(da.d_miniosz - 1);
1981 
1982 		if (copy_to_user(arg, &da, sizeof(da)))
1983 			return -EFAULT;
1984 		return 0;
1985 	}
1986 
1987 	case XFS_IOC_FSBULKSTAT_SINGLE:
1988 	case XFS_IOC_FSBULKSTAT:
1989 	case XFS_IOC_FSINUMBERS:
1990 		return xfs_ioc_fsbulkstat(filp, cmd, arg);
1991 
1992 	case XFS_IOC_BULKSTAT:
1993 		return xfs_ioc_bulkstat(filp, cmd, arg);
1994 	case XFS_IOC_INUMBERS:
1995 		return xfs_ioc_inumbers(mp, cmd, arg);
1996 
1997 	case XFS_IOC_FSGEOMETRY_V1:
1998 		return xfs_ioc_fsgeometry(mp, arg, 3);
1999 	case XFS_IOC_FSGEOMETRY_V4:
2000 		return xfs_ioc_fsgeometry(mp, arg, 4);
2001 	case XFS_IOC_FSGEOMETRY:
2002 		return xfs_ioc_fsgeometry(mp, arg, 5);
2003 
2004 	case XFS_IOC_AG_GEOMETRY:
2005 		return xfs_ioc_ag_geometry(mp, arg);
2006 
2007 	case XFS_IOC_GETVERSION:
2008 		return put_user(inode->i_generation, (int __user *)arg);
2009 
2010 	case XFS_IOC_FSGETXATTRA:
2011 		return xfs_ioc_fsgetxattra(ip, arg);
2012 
2013 	case XFS_IOC_GETBMAP:
2014 	case XFS_IOC_GETBMAPA:
2015 	case XFS_IOC_GETBMAPX:
2016 		return xfs_ioc_getbmap(filp, cmd, arg);
2017 
2018 	case FS_IOC_GETFSMAP:
2019 		return xfs_ioc_getfsmap(ip, arg);
2020 
2021 	case XFS_IOC_SCRUB_METADATA:
2022 		return xfs_ioc_scrub_metadata(filp, arg);
2023 
2024 	case XFS_IOC_FD_TO_HANDLE:
2025 	case XFS_IOC_PATH_TO_HANDLE:
2026 	case XFS_IOC_PATH_TO_FSHANDLE: {
2027 		xfs_fsop_handlereq_t	hreq;
2028 
2029 		if (copy_from_user(&hreq, arg, sizeof(hreq)))
2030 			return -EFAULT;
2031 		return xfs_find_handle(cmd, &hreq);
2032 	}
2033 	case XFS_IOC_OPEN_BY_HANDLE: {
2034 		xfs_fsop_handlereq_t	hreq;
2035 
2036 		if (copy_from_user(&hreq, arg, sizeof(xfs_fsop_handlereq_t)))
2037 			return -EFAULT;
2038 		return xfs_open_by_handle(filp, &hreq);
2039 	}
2040 
2041 	case XFS_IOC_READLINK_BY_HANDLE: {
2042 		xfs_fsop_handlereq_t	hreq;
2043 
2044 		if (copy_from_user(&hreq, arg, sizeof(xfs_fsop_handlereq_t)))
2045 			return -EFAULT;
2046 		return xfs_readlink_by_handle(filp, &hreq);
2047 	}
2048 	case XFS_IOC_ATTRLIST_BY_HANDLE:
2049 		return xfs_attrlist_by_handle(filp, arg);
2050 
2051 	case XFS_IOC_ATTRMULTI_BY_HANDLE:
2052 		return xfs_attrmulti_by_handle(filp, arg);
2053 
2054 	case XFS_IOC_SWAPEXT: {
2055 		struct xfs_swapext	sxp;
2056 
2057 		if (copy_from_user(&sxp, arg, sizeof(xfs_swapext_t)))
2058 			return -EFAULT;
2059 		error = mnt_want_write_file(filp);
2060 		if (error)
2061 			return error;
2062 		error = xfs_ioc_swapext(&sxp);
2063 		mnt_drop_write_file(filp);
2064 		return error;
2065 	}
2066 
2067 	case XFS_IOC_FSCOUNTS: {
2068 		xfs_fsop_counts_t out;
2069 
2070 		xfs_fs_counts(mp, &out);
2071 
2072 		if (copy_to_user(arg, &out, sizeof(out)))
2073 			return -EFAULT;
2074 		return 0;
2075 	}
2076 
2077 	case XFS_IOC_SET_RESBLKS: {
2078 		xfs_fsop_resblks_t inout;
2079 		uint64_t	   in;
2080 
2081 		if (!capable(CAP_SYS_ADMIN))
2082 			return -EPERM;
2083 
2084 		if (xfs_is_readonly(mp))
2085 			return -EROFS;
2086 
2087 		if (copy_from_user(&inout, arg, sizeof(inout)))
2088 			return -EFAULT;
2089 
2090 		error = mnt_want_write_file(filp);
2091 		if (error)
2092 			return error;
2093 
2094 		/* input parameter is passed in resblks field of structure */
2095 		in = inout.resblks;
2096 		error = xfs_reserve_blocks(mp, &in, &inout);
2097 		mnt_drop_write_file(filp);
2098 		if (error)
2099 			return error;
2100 
2101 		if (copy_to_user(arg, &inout, sizeof(inout)))
2102 			return -EFAULT;
2103 		return 0;
2104 	}
2105 
2106 	case XFS_IOC_GET_RESBLKS: {
2107 		xfs_fsop_resblks_t out;
2108 
2109 		if (!capable(CAP_SYS_ADMIN))
2110 			return -EPERM;
2111 
2112 		error = xfs_reserve_blocks(mp, NULL, &out);
2113 		if (error)
2114 			return error;
2115 
2116 		if (copy_to_user(arg, &out, sizeof(out)))
2117 			return -EFAULT;
2118 
2119 		return 0;
2120 	}
2121 
2122 	case XFS_IOC_FSGROWFSDATA: {
2123 		struct xfs_growfs_data in;
2124 
2125 		if (copy_from_user(&in, arg, sizeof(in)))
2126 			return -EFAULT;
2127 
2128 		error = mnt_want_write_file(filp);
2129 		if (error)
2130 			return error;
2131 		error = xfs_growfs_data(mp, &in);
2132 		mnt_drop_write_file(filp);
2133 		return error;
2134 	}
2135 
2136 	case XFS_IOC_FSGROWFSLOG: {
2137 		struct xfs_growfs_log in;
2138 
2139 		if (copy_from_user(&in, arg, sizeof(in)))
2140 			return -EFAULT;
2141 
2142 		error = mnt_want_write_file(filp);
2143 		if (error)
2144 			return error;
2145 		error = xfs_growfs_log(mp, &in);
2146 		mnt_drop_write_file(filp);
2147 		return error;
2148 	}
2149 
2150 	case XFS_IOC_FSGROWFSRT: {
2151 		xfs_growfs_rt_t in;
2152 
2153 		if (copy_from_user(&in, arg, sizeof(in)))
2154 			return -EFAULT;
2155 
2156 		error = mnt_want_write_file(filp);
2157 		if (error)
2158 			return error;
2159 		error = xfs_growfs_rt(mp, &in);
2160 		mnt_drop_write_file(filp);
2161 		return error;
2162 	}
2163 
2164 	case XFS_IOC_GOINGDOWN: {
2165 		uint32_t in;
2166 
2167 		if (!capable(CAP_SYS_ADMIN))
2168 			return -EPERM;
2169 
2170 		if (get_user(in, (uint32_t __user *)arg))
2171 			return -EFAULT;
2172 
2173 		return xfs_fs_goingdown(mp, in);
2174 	}
2175 
2176 	case XFS_IOC_ERROR_INJECTION: {
2177 		xfs_error_injection_t in;
2178 
2179 		if (!capable(CAP_SYS_ADMIN))
2180 			return -EPERM;
2181 
2182 		if (copy_from_user(&in, arg, sizeof(in)))
2183 			return -EFAULT;
2184 
2185 		return xfs_errortag_add(mp, in.errtag);
2186 	}
2187 
2188 	case XFS_IOC_ERROR_CLEARALL:
2189 		if (!capable(CAP_SYS_ADMIN))
2190 			return -EPERM;
2191 
2192 		return xfs_errortag_clearall(mp);
2193 
2194 	case XFS_IOC_FREE_EOFBLOCKS: {
2195 		struct xfs_fs_eofblocks	eofb;
2196 		struct xfs_icwalk	icw;
2197 
2198 		if (!capable(CAP_SYS_ADMIN))
2199 			return -EPERM;
2200 
2201 		if (xfs_is_readonly(mp))
2202 			return -EROFS;
2203 
2204 		if (copy_from_user(&eofb, arg, sizeof(eofb)))
2205 			return -EFAULT;
2206 
2207 		error = xfs_fs_eofblocks_from_user(&eofb, &icw);
2208 		if (error)
2209 			return error;
2210 
2211 		trace_xfs_ioc_free_eofblocks(mp, &icw, _RET_IP_);
2212 
2213 		sb_start_write(mp->m_super);
2214 		error = xfs_blockgc_free_space(mp, &icw);
2215 		sb_end_write(mp->m_super);
2216 		return error;
2217 	}
2218 
2219 	default:
2220 		return -ENOTTY;
2221 	}
2222 }
2223