xref: /linux/fs/read_write.c (revision c01044cc819160323f3ca4acd44fca487c4432e6)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  *  linux/fs/read_write.c
4  *
5  *  Copyright (C) 1991, 1992  Linus Torvalds
6  */
7 
8 #include <linux/slab.h>
9 #include <linux/stat.h>
10 #include <linux/sched/xacct.h>
11 #include <linux/fcntl.h>
12 #include <linux/file.h>
13 #include <linux/uio.h>
14 #include <linux/fsnotify.h>
15 #include <linux/security.h>
16 #include <linux/export.h>
17 #include <linux/syscalls.h>
18 #include <linux/pagemap.h>
19 #include <linux/splice.h>
20 #include <linux/compat.h>
21 #include <linux/mount.h>
22 #include <linux/fs.h>
23 #include "internal.h"
24 
25 #include <linux/uaccess.h>
26 #include <asm/unistd.h>
27 
28 const struct file_operations generic_ro_fops = {
29 	.llseek		= generic_file_llseek,
30 	.read_iter	= generic_file_read_iter,
31 	.mmap		= generic_file_readonly_mmap,
32 	.splice_read	= generic_file_splice_read,
33 };
34 
35 EXPORT_SYMBOL(generic_ro_fops);
36 
37 static inline bool unsigned_offsets(struct file *file)
38 {
39 	return file->f_mode & FMODE_UNSIGNED_OFFSET;
40 }
41 
42 /**
43  * vfs_setpos - update the file offset for lseek
44  * @file:	file structure in question
45  * @offset:	file offset to seek to
46  * @maxsize:	maximum file size
47  *
48  * This is a low-level filesystem helper for updating the file offset to
49  * the value specified by @offset if the given offset is valid and it is
50  * not equal to the current file offset.
51  *
52  * Return the specified offset on success and -EINVAL on invalid offset.
53  */
54 loff_t vfs_setpos(struct file *file, loff_t offset, loff_t maxsize)
55 {
56 	if (offset < 0 && !unsigned_offsets(file))
57 		return -EINVAL;
58 	if (offset > maxsize)
59 		return -EINVAL;
60 
61 	if (offset != file->f_pos) {
62 		file->f_pos = offset;
63 		file->f_version = 0;
64 	}
65 	return offset;
66 }
67 EXPORT_SYMBOL(vfs_setpos);
68 
69 /**
70  * generic_file_llseek_size - generic llseek implementation for regular files
71  * @file:	file structure to seek on
72  * @offset:	file offset to seek to
73  * @whence:	type of seek
74  * @size:	max size of this file in file system
75  * @eof:	offset used for SEEK_END position
76  *
77  * This is a variant of generic_file_llseek that allows passing in a custom
78  * maximum file size and a custom EOF position, for e.g. hashed directories
79  *
80  * Synchronization:
81  * SEEK_SET and SEEK_END are unsynchronized (but atomic on 64bit platforms)
82  * SEEK_CUR is synchronized against other SEEK_CURs, but not read/writes.
83  * read/writes behave like SEEK_SET against seeks.
84  */
85 loff_t
86 generic_file_llseek_size(struct file *file, loff_t offset, int whence,
87 		loff_t maxsize, loff_t eof)
88 {
89 	switch (whence) {
90 	case SEEK_END:
91 		offset += eof;
92 		break;
93 	case SEEK_CUR:
94 		/*
95 		 * Here we special-case the lseek(fd, 0, SEEK_CUR)
96 		 * position-querying operation.  Avoid rewriting the "same"
97 		 * f_pos value back to the file because a concurrent read(),
98 		 * write() or lseek() might have altered it
99 		 */
100 		if (offset == 0)
101 			return file->f_pos;
102 		/*
103 		 * f_lock protects against read/modify/write race with other
104 		 * SEEK_CURs. Note that parallel writes and reads behave
105 		 * like SEEK_SET.
106 		 */
107 		spin_lock(&file->f_lock);
108 		offset = vfs_setpos(file, file->f_pos + offset, maxsize);
109 		spin_unlock(&file->f_lock);
110 		return offset;
111 	case SEEK_DATA:
112 		/*
113 		 * In the generic case the entire file is data, so as long as
114 		 * offset isn't at the end of the file then the offset is data.
115 		 */
116 		if ((unsigned long long)offset >= eof)
117 			return -ENXIO;
118 		break;
119 	case SEEK_HOLE:
120 		/*
121 		 * There is a virtual hole at the end of the file, so as long as
122 		 * offset isn't i_size or larger, return i_size.
123 		 */
124 		if ((unsigned long long)offset >= eof)
125 			return -ENXIO;
126 		offset = eof;
127 		break;
128 	}
129 
130 	return vfs_setpos(file, offset, maxsize);
131 }
132 EXPORT_SYMBOL(generic_file_llseek_size);
133 
134 /**
135  * generic_file_llseek - generic llseek implementation for regular files
136  * @file:	file structure to seek on
137  * @offset:	file offset to seek to
138  * @whence:	type of seek
139  *
140  * This is a generic implemenation of ->llseek useable for all normal local
141  * filesystems.  It just updates the file offset to the value specified by
142  * @offset and @whence.
143  */
144 loff_t generic_file_llseek(struct file *file, loff_t offset, int whence)
145 {
146 	struct inode *inode = file->f_mapping->host;
147 
148 	return generic_file_llseek_size(file, offset, whence,
149 					inode->i_sb->s_maxbytes,
150 					i_size_read(inode));
151 }
152 EXPORT_SYMBOL(generic_file_llseek);
153 
154 /**
155  * fixed_size_llseek - llseek implementation for fixed-sized devices
156  * @file:	file structure to seek on
157  * @offset:	file offset to seek to
158  * @whence:	type of seek
159  * @size:	size of the file
160  *
161  */
162 loff_t fixed_size_llseek(struct file *file, loff_t offset, int whence, loff_t size)
163 {
164 	switch (whence) {
165 	case SEEK_SET: case SEEK_CUR: case SEEK_END:
166 		return generic_file_llseek_size(file, offset, whence,
167 						size, size);
168 	default:
169 		return -EINVAL;
170 	}
171 }
172 EXPORT_SYMBOL(fixed_size_llseek);
173 
174 /**
175  * no_seek_end_llseek - llseek implementation for fixed-sized devices
176  * @file:	file structure to seek on
177  * @offset:	file offset to seek to
178  * @whence:	type of seek
179  *
180  */
181 loff_t no_seek_end_llseek(struct file *file, loff_t offset, int whence)
182 {
183 	switch (whence) {
184 	case SEEK_SET: case SEEK_CUR:
185 		return generic_file_llseek_size(file, offset, whence,
186 						OFFSET_MAX, 0);
187 	default:
188 		return -EINVAL;
189 	}
190 }
191 EXPORT_SYMBOL(no_seek_end_llseek);
192 
193 /**
194  * no_seek_end_llseek_size - llseek implementation for fixed-sized devices
195  * @file:	file structure to seek on
196  * @offset:	file offset to seek to
197  * @whence:	type of seek
198  * @size:	maximal offset allowed
199  *
200  */
201 loff_t no_seek_end_llseek_size(struct file *file, loff_t offset, int whence, loff_t size)
202 {
203 	switch (whence) {
204 	case SEEK_SET: case SEEK_CUR:
205 		return generic_file_llseek_size(file, offset, whence,
206 						size, 0);
207 	default:
208 		return -EINVAL;
209 	}
210 }
211 EXPORT_SYMBOL(no_seek_end_llseek_size);
212 
213 /**
214  * noop_llseek - No Operation Performed llseek implementation
215  * @file:	file structure to seek on
216  * @offset:	file offset to seek to
217  * @whence:	type of seek
218  *
219  * This is an implementation of ->llseek useable for the rare special case when
220  * userspace expects the seek to succeed but the (device) file is actually not
221  * able to perform the seek. In this case you use noop_llseek() instead of
222  * falling back to the default implementation of ->llseek.
223  */
224 loff_t noop_llseek(struct file *file, loff_t offset, int whence)
225 {
226 	return file->f_pos;
227 }
228 EXPORT_SYMBOL(noop_llseek);
229 
230 loff_t no_llseek(struct file *file, loff_t offset, int whence)
231 {
232 	return -ESPIPE;
233 }
234 EXPORT_SYMBOL(no_llseek);
235 
236 loff_t default_llseek(struct file *file, loff_t offset, int whence)
237 {
238 	struct inode *inode = file_inode(file);
239 	loff_t retval;
240 
241 	inode_lock(inode);
242 	switch (whence) {
243 		case SEEK_END:
244 			offset += i_size_read(inode);
245 			break;
246 		case SEEK_CUR:
247 			if (offset == 0) {
248 				retval = file->f_pos;
249 				goto out;
250 			}
251 			offset += file->f_pos;
252 			break;
253 		case SEEK_DATA:
254 			/*
255 			 * In the generic case the entire file is data, so as
256 			 * long as offset isn't at the end of the file then the
257 			 * offset is data.
258 			 */
259 			if (offset >= inode->i_size) {
260 				retval = -ENXIO;
261 				goto out;
262 			}
263 			break;
264 		case SEEK_HOLE:
265 			/*
266 			 * There is a virtual hole at the end of the file, so
267 			 * as long as offset isn't i_size or larger, return
268 			 * i_size.
269 			 */
270 			if (offset >= inode->i_size) {
271 				retval = -ENXIO;
272 				goto out;
273 			}
274 			offset = inode->i_size;
275 			break;
276 	}
277 	retval = -EINVAL;
278 	if (offset >= 0 || unsigned_offsets(file)) {
279 		if (offset != file->f_pos) {
280 			file->f_pos = offset;
281 			file->f_version = 0;
282 		}
283 		retval = offset;
284 	}
285 out:
286 	inode_unlock(inode);
287 	return retval;
288 }
289 EXPORT_SYMBOL(default_llseek);
290 
291 loff_t vfs_llseek(struct file *file, loff_t offset, int whence)
292 {
293 	loff_t (*fn)(struct file *, loff_t, int);
294 
295 	fn = no_llseek;
296 	if (file->f_mode & FMODE_LSEEK) {
297 		if (file->f_op->llseek)
298 			fn = file->f_op->llseek;
299 	}
300 	return fn(file, offset, whence);
301 }
302 EXPORT_SYMBOL(vfs_llseek);
303 
304 static off_t ksys_lseek(unsigned int fd, off_t offset, unsigned int whence)
305 {
306 	off_t retval;
307 	struct fd f = fdget_pos(fd);
308 	if (!f.file)
309 		return -EBADF;
310 
311 	retval = -EINVAL;
312 	if (whence <= SEEK_MAX) {
313 		loff_t res = vfs_llseek(f.file, offset, whence);
314 		retval = res;
315 		if (res != (loff_t)retval)
316 			retval = -EOVERFLOW;	/* LFS: should only happen on 32 bit platforms */
317 	}
318 	fdput_pos(f);
319 	return retval;
320 }
321 
322 SYSCALL_DEFINE3(lseek, unsigned int, fd, off_t, offset, unsigned int, whence)
323 {
324 	return ksys_lseek(fd, offset, whence);
325 }
326 
327 #ifdef CONFIG_COMPAT
328 COMPAT_SYSCALL_DEFINE3(lseek, unsigned int, fd, compat_off_t, offset, unsigned int, whence)
329 {
330 	return ksys_lseek(fd, offset, whence);
331 }
332 #endif
333 
334 #if !defined(CONFIG_64BIT) || defined(CONFIG_COMPAT) || \
335 	defined(__ARCH_WANT_SYS_LLSEEK)
336 SYSCALL_DEFINE5(llseek, unsigned int, fd, unsigned long, offset_high,
337 		unsigned long, offset_low, loff_t __user *, result,
338 		unsigned int, whence)
339 {
340 	int retval;
341 	struct fd f = fdget_pos(fd);
342 	loff_t offset;
343 
344 	if (!f.file)
345 		return -EBADF;
346 
347 	retval = -EINVAL;
348 	if (whence > SEEK_MAX)
349 		goto out_putf;
350 
351 	offset = vfs_llseek(f.file, ((loff_t) offset_high << 32) | offset_low,
352 			whence);
353 
354 	retval = (int)offset;
355 	if (offset >= 0) {
356 		retval = -EFAULT;
357 		if (!copy_to_user(result, &offset, sizeof(offset)))
358 			retval = 0;
359 	}
360 out_putf:
361 	fdput_pos(f);
362 	return retval;
363 }
364 #endif
365 
366 int rw_verify_area(int read_write, struct file *file, const loff_t *ppos, size_t count)
367 {
368 	struct inode *inode;
369 	int retval = -EINVAL;
370 
371 	inode = file_inode(file);
372 	if (unlikely((ssize_t) count < 0))
373 		return retval;
374 
375 	/*
376 	 * ranged mandatory locking does not apply to streams - it makes sense
377 	 * only for files where position has a meaning.
378 	 */
379 	if (ppos) {
380 		loff_t pos = *ppos;
381 
382 		if (unlikely(pos < 0)) {
383 			if (!unsigned_offsets(file))
384 				return retval;
385 			if (count >= -pos) /* both values are in 0..LLONG_MAX */
386 				return -EOVERFLOW;
387 		} else if (unlikely((loff_t) (pos + count) < 0)) {
388 			if (!unsigned_offsets(file))
389 				return retval;
390 		}
391 
392 		if (unlikely(inode->i_flctx && mandatory_lock(inode))) {
393 			retval = locks_mandatory_area(inode, file, pos, pos + count - 1,
394 					read_write == READ ? F_RDLCK : F_WRLCK);
395 			if (retval < 0)
396 				return retval;
397 		}
398 	}
399 
400 	return security_file_permission(file,
401 				read_write == READ ? MAY_READ : MAY_WRITE);
402 }
403 
404 static ssize_t new_sync_read(struct file *filp, char __user *buf, size_t len, loff_t *ppos)
405 {
406 	struct iovec iov = { .iov_base = buf, .iov_len = len };
407 	struct kiocb kiocb;
408 	struct iov_iter iter;
409 	ssize_t ret;
410 
411 	init_sync_kiocb(&kiocb, filp);
412 	kiocb.ki_pos = (ppos ? *ppos : 0);
413 	iov_iter_init(&iter, READ, &iov, 1, len);
414 
415 	ret = call_read_iter(filp, &kiocb, &iter);
416 	BUG_ON(ret == -EIOCBQUEUED);
417 	if (ppos)
418 		*ppos = kiocb.ki_pos;
419 	return ret;
420 }
421 
422 ssize_t __kernel_read(struct file *file, void *buf, size_t count, loff_t *pos)
423 {
424 	mm_segment_t old_fs = get_fs();
425 	ssize_t ret;
426 
427 	if (WARN_ON_ONCE(!(file->f_mode & FMODE_READ)))
428 		return -EINVAL;
429 	if (!(file->f_mode & FMODE_CAN_READ))
430 		return -EINVAL;
431 
432 	if (count > MAX_RW_COUNT)
433 		count =  MAX_RW_COUNT;
434 	set_fs(KERNEL_DS);
435 	if (file->f_op->read)
436 		ret = file->f_op->read(file, (void __user *)buf, count, pos);
437 	else if (file->f_op->read_iter)
438 		ret = new_sync_read(file, (void __user *)buf, count, pos);
439 	else
440 		ret = -EINVAL;
441 	set_fs(old_fs);
442 	if (ret > 0) {
443 		fsnotify_access(file);
444 		add_rchar(current, ret);
445 	}
446 	inc_syscr(current);
447 	return ret;
448 }
449 
450 ssize_t kernel_read(struct file *file, void *buf, size_t count, loff_t *pos)
451 {
452 	ssize_t ret;
453 
454 	ret = rw_verify_area(READ, file, pos, count);
455 	if (ret)
456 		return ret;
457 	return __kernel_read(file, buf, count, pos);
458 }
459 EXPORT_SYMBOL(kernel_read);
460 
461 ssize_t vfs_read(struct file *file, char __user *buf, size_t count, loff_t *pos)
462 {
463 	ssize_t ret;
464 
465 	if (!(file->f_mode & FMODE_READ))
466 		return -EBADF;
467 	if (!(file->f_mode & FMODE_CAN_READ))
468 		return -EINVAL;
469 	if (unlikely(!access_ok(buf, count)))
470 		return -EFAULT;
471 
472 	ret = rw_verify_area(READ, file, pos, count);
473 	if (ret)
474 		return ret;
475 	if (count > MAX_RW_COUNT)
476 		count =  MAX_RW_COUNT;
477 
478 	if (file->f_op->read)
479 		ret = file->f_op->read(file, buf, count, pos);
480 	else if (file->f_op->read_iter)
481 		ret = new_sync_read(file, buf, count, pos);
482 	else
483 		ret = -EINVAL;
484 	if (ret > 0) {
485 		fsnotify_access(file);
486 		add_rchar(current, ret);
487 	}
488 	inc_syscr(current);
489 	return ret;
490 }
491 
492 static ssize_t new_sync_write(struct file *filp, const char __user *buf, size_t len, loff_t *ppos)
493 {
494 	struct iovec iov = { .iov_base = (void __user *)buf, .iov_len = len };
495 	struct kiocb kiocb;
496 	struct iov_iter iter;
497 	ssize_t ret;
498 
499 	init_sync_kiocb(&kiocb, filp);
500 	kiocb.ki_pos = (ppos ? *ppos : 0);
501 	iov_iter_init(&iter, WRITE, &iov, 1, len);
502 
503 	ret = call_write_iter(filp, &kiocb, &iter);
504 	BUG_ON(ret == -EIOCBQUEUED);
505 	if (ret > 0 && ppos)
506 		*ppos = kiocb.ki_pos;
507 	return ret;
508 }
509 
510 /* caller is responsible for file_start_write/file_end_write */
511 ssize_t __kernel_write(struct file *file, const void *buf, size_t count, loff_t *pos)
512 {
513 	mm_segment_t old_fs;
514 	const char __user *p;
515 	ssize_t ret;
516 
517 	if (WARN_ON_ONCE(!(file->f_mode & FMODE_WRITE)))
518 		return -EBADF;
519 	if (!(file->f_mode & FMODE_CAN_WRITE))
520 		return -EINVAL;
521 
522 	old_fs = get_fs();
523 	set_fs(KERNEL_DS);
524 	p = (__force const char __user *)buf;
525 	if (count > MAX_RW_COUNT)
526 		count =  MAX_RW_COUNT;
527 	if (file->f_op->write)
528 		ret = file->f_op->write(file, p, count, pos);
529 	else if (file->f_op->write_iter)
530 		ret = new_sync_write(file, p, count, pos);
531 	else
532 		ret = -EINVAL;
533 	set_fs(old_fs);
534 	if (ret > 0) {
535 		fsnotify_modify(file);
536 		add_wchar(current, ret);
537 	}
538 	inc_syscw(current);
539 	return ret;
540 }
541 /*
542  * This "EXPORT_SYMBOL_GPL()" is more of a "EXPORT_SYMBOL_DONTUSE()",
543  * but autofs is one of the few internal kernel users that actually
544  * wants this _and_ can be built as a module. So we need to export
545  * this symbol for autofs, even though it really isn't appropriate
546  * for any other kernel modules.
547  */
548 EXPORT_SYMBOL_GPL(__kernel_write);
549 
550 ssize_t kernel_write(struct file *file, const void *buf, size_t count,
551 			    loff_t *pos)
552 {
553 	ssize_t ret;
554 
555 	ret = rw_verify_area(WRITE, file, pos, count);
556 	if (ret)
557 		return ret;
558 
559 	file_start_write(file);
560 	ret =  __kernel_write(file, buf, count, pos);
561 	file_end_write(file);
562 	return ret;
563 }
564 EXPORT_SYMBOL(kernel_write);
565 
566 ssize_t vfs_write(struct file *file, const char __user *buf, size_t count, loff_t *pos)
567 {
568 	ssize_t ret;
569 
570 	if (!(file->f_mode & FMODE_WRITE))
571 		return -EBADF;
572 	if (!(file->f_mode & FMODE_CAN_WRITE))
573 		return -EINVAL;
574 	if (unlikely(!access_ok(buf, count)))
575 		return -EFAULT;
576 
577 	ret = rw_verify_area(WRITE, file, pos, count);
578 	if (ret)
579 		return ret;
580 	if (count > MAX_RW_COUNT)
581 		count =  MAX_RW_COUNT;
582 	file_start_write(file);
583 	if (file->f_op->write)
584 		ret = file->f_op->write(file, buf, count, pos);
585 	else if (file->f_op->write_iter)
586 		ret = new_sync_write(file, buf, count, pos);
587 	else
588 		ret = -EINVAL;
589 	if (ret > 0) {
590 		fsnotify_modify(file);
591 		add_wchar(current, ret);
592 	}
593 	inc_syscw(current);
594 	file_end_write(file);
595 	return ret;
596 }
597 
598 /* file_ppos returns &file->f_pos or NULL if file is stream */
599 static inline loff_t *file_ppos(struct file *file)
600 {
601 	return file->f_mode & FMODE_STREAM ? NULL : &file->f_pos;
602 }
603 
604 ssize_t ksys_read(unsigned int fd, char __user *buf, size_t count)
605 {
606 	struct fd f = fdget_pos(fd);
607 	ssize_t ret = -EBADF;
608 
609 	if (f.file) {
610 		loff_t pos, *ppos = file_ppos(f.file);
611 		if (ppos) {
612 			pos = *ppos;
613 			ppos = &pos;
614 		}
615 		ret = vfs_read(f.file, buf, count, ppos);
616 		if (ret >= 0 && ppos)
617 			f.file->f_pos = pos;
618 		fdput_pos(f);
619 	}
620 	return ret;
621 }
622 
623 SYSCALL_DEFINE3(read, unsigned int, fd, char __user *, buf, size_t, count)
624 {
625 	return ksys_read(fd, buf, count);
626 }
627 
628 ssize_t ksys_write(unsigned int fd, const char __user *buf, size_t count)
629 {
630 	struct fd f = fdget_pos(fd);
631 	ssize_t ret = -EBADF;
632 
633 	if (f.file) {
634 		loff_t pos, *ppos = file_ppos(f.file);
635 		if (ppos) {
636 			pos = *ppos;
637 			ppos = &pos;
638 		}
639 		ret = vfs_write(f.file, buf, count, ppos);
640 		if (ret >= 0 && ppos)
641 			f.file->f_pos = pos;
642 		fdput_pos(f);
643 	}
644 
645 	return ret;
646 }
647 
648 SYSCALL_DEFINE3(write, unsigned int, fd, const char __user *, buf,
649 		size_t, count)
650 {
651 	return ksys_write(fd, buf, count);
652 }
653 
654 ssize_t ksys_pread64(unsigned int fd, char __user *buf, size_t count,
655 		     loff_t pos)
656 {
657 	struct fd f;
658 	ssize_t ret = -EBADF;
659 
660 	if (pos < 0)
661 		return -EINVAL;
662 
663 	f = fdget(fd);
664 	if (f.file) {
665 		ret = -ESPIPE;
666 		if (f.file->f_mode & FMODE_PREAD)
667 			ret = vfs_read(f.file, buf, count, &pos);
668 		fdput(f);
669 	}
670 
671 	return ret;
672 }
673 
674 SYSCALL_DEFINE4(pread64, unsigned int, fd, char __user *, buf,
675 			size_t, count, loff_t, pos)
676 {
677 	return ksys_pread64(fd, buf, count, pos);
678 }
679 
680 ssize_t ksys_pwrite64(unsigned int fd, const char __user *buf,
681 		      size_t count, loff_t pos)
682 {
683 	struct fd f;
684 	ssize_t ret = -EBADF;
685 
686 	if (pos < 0)
687 		return -EINVAL;
688 
689 	f = fdget(fd);
690 	if (f.file) {
691 		ret = -ESPIPE;
692 		if (f.file->f_mode & FMODE_PWRITE)
693 			ret = vfs_write(f.file, buf, count, &pos);
694 		fdput(f);
695 	}
696 
697 	return ret;
698 }
699 
700 SYSCALL_DEFINE4(pwrite64, unsigned int, fd, const char __user *, buf,
701 			 size_t, count, loff_t, pos)
702 {
703 	return ksys_pwrite64(fd, buf, count, pos);
704 }
705 
706 static ssize_t do_iter_readv_writev(struct file *filp, struct iov_iter *iter,
707 		loff_t *ppos, int type, rwf_t flags)
708 {
709 	struct kiocb kiocb;
710 	ssize_t ret;
711 
712 	init_sync_kiocb(&kiocb, filp);
713 	ret = kiocb_set_rw_flags(&kiocb, flags);
714 	if (ret)
715 		return ret;
716 	kiocb.ki_pos = (ppos ? *ppos : 0);
717 
718 	if (type == READ)
719 		ret = call_read_iter(filp, &kiocb, iter);
720 	else
721 		ret = call_write_iter(filp, &kiocb, iter);
722 	BUG_ON(ret == -EIOCBQUEUED);
723 	if (ppos)
724 		*ppos = kiocb.ki_pos;
725 	return ret;
726 }
727 
728 /* Do it by hand, with file-ops */
729 static ssize_t do_loop_readv_writev(struct file *filp, struct iov_iter *iter,
730 		loff_t *ppos, int type, rwf_t flags)
731 {
732 	ssize_t ret = 0;
733 
734 	if (flags & ~RWF_HIPRI)
735 		return -EOPNOTSUPP;
736 
737 	while (iov_iter_count(iter)) {
738 		struct iovec iovec = iov_iter_iovec(iter);
739 		ssize_t nr;
740 
741 		if (type == READ) {
742 			nr = filp->f_op->read(filp, iovec.iov_base,
743 					      iovec.iov_len, ppos);
744 		} else {
745 			nr = filp->f_op->write(filp, iovec.iov_base,
746 					       iovec.iov_len, ppos);
747 		}
748 
749 		if (nr < 0) {
750 			if (!ret)
751 				ret = nr;
752 			break;
753 		}
754 		ret += nr;
755 		if (nr != iovec.iov_len)
756 			break;
757 		iov_iter_advance(iter, nr);
758 	}
759 
760 	return ret;
761 }
762 
763 static ssize_t do_iter_read(struct file *file, struct iov_iter *iter,
764 		loff_t *pos, rwf_t flags)
765 {
766 	size_t tot_len;
767 	ssize_t ret = 0;
768 
769 	if (!(file->f_mode & FMODE_READ))
770 		return -EBADF;
771 	if (!(file->f_mode & FMODE_CAN_READ))
772 		return -EINVAL;
773 
774 	tot_len = iov_iter_count(iter);
775 	if (!tot_len)
776 		goto out;
777 	ret = rw_verify_area(READ, file, pos, tot_len);
778 	if (ret < 0)
779 		return ret;
780 
781 	if (file->f_op->read_iter)
782 		ret = do_iter_readv_writev(file, iter, pos, READ, flags);
783 	else
784 		ret = do_loop_readv_writev(file, iter, pos, READ, flags);
785 out:
786 	if (ret >= 0)
787 		fsnotify_access(file);
788 	return ret;
789 }
790 
791 ssize_t vfs_iocb_iter_read(struct file *file, struct kiocb *iocb,
792 			   struct iov_iter *iter)
793 {
794 	size_t tot_len;
795 	ssize_t ret = 0;
796 
797 	if (!file->f_op->read_iter)
798 		return -EINVAL;
799 	if (!(file->f_mode & FMODE_READ))
800 		return -EBADF;
801 	if (!(file->f_mode & FMODE_CAN_READ))
802 		return -EINVAL;
803 
804 	tot_len = iov_iter_count(iter);
805 	if (!tot_len)
806 		goto out;
807 	ret = rw_verify_area(READ, file, &iocb->ki_pos, tot_len);
808 	if (ret < 0)
809 		return ret;
810 
811 	ret = call_read_iter(file, iocb, iter);
812 out:
813 	if (ret >= 0)
814 		fsnotify_access(file);
815 	return ret;
816 }
817 EXPORT_SYMBOL(vfs_iocb_iter_read);
818 
819 ssize_t vfs_iter_read(struct file *file, struct iov_iter *iter, loff_t *ppos,
820 		rwf_t flags)
821 {
822 	if (!file->f_op->read_iter)
823 		return -EINVAL;
824 	return do_iter_read(file, iter, ppos, flags);
825 }
826 EXPORT_SYMBOL(vfs_iter_read);
827 
828 static ssize_t do_iter_write(struct file *file, struct iov_iter *iter,
829 		loff_t *pos, rwf_t flags)
830 {
831 	size_t tot_len;
832 	ssize_t ret = 0;
833 
834 	if (!(file->f_mode & FMODE_WRITE))
835 		return -EBADF;
836 	if (!(file->f_mode & FMODE_CAN_WRITE))
837 		return -EINVAL;
838 
839 	tot_len = iov_iter_count(iter);
840 	if (!tot_len)
841 		return 0;
842 	ret = rw_verify_area(WRITE, file, pos, tot_len);
843 	if (ret < 0)
844 		return ret;
845 
846 	if (file->f_op->write_iter)
847 		ret = do_iter_readv_writev(file, iter, pos, WRITE, flags);
848 	else
849 		ret = do_loop_readv_writev(file, iter, pos, WRITE, flags);
850 	if (ret > 0)
851 		fsnotify_modify(file);
852 	return ret;
853 }
854 
855 ssize_t vfs_iocb_iter_write(struct file *file, struct kiocb *iocb,
856 			    struct iov_iter *iter)
857 {
858 	size_t tot_len;
859 	ssize_t ret = 0;
860 
861 	if (!file->f_op->write_iter)
862 		return -EINVAL;
863 	if (!(file->f_mode & FMODE_WRITE))
864 		return -EBADF;
865 	if (!(file->f_mode & FMODE_CAN_WRITE))
866 		return -EINVAL;
867 
868 	tot_len = iov_iter_count(iter);
869 	if (!tot_len)
870 		return 0;
871 	ret = rw_verify_area(WRITE, file, &iocb->ki_pos, tot_len);
872 	if (ret < 0)
873 		return ret;
874 
875 	ret = call_write_iter(file, iocb, iter);
876 	if (ret > 0)
877 		fsnotify_modify(file);
878 
879 	return ret;
880 }
881 EXPORT_SYMBOL(vfs_iocb_iter_write);
882 
883 ssize_t vfs_iter_write(struct file *file, struct iov_iter *iter, loff_t *ppos,
884 		rwf_t flags)
885 {
886 	if (!file->f_op->write_iter)
887 		return -EINVAL;
888 	return do_iter_write(file, iter, ppos, flags);
889 }
890 EXPORT_SYMBOL(vfs_iter_write);
891 
892 ssize_t vfs_readv(struct file *file, const struct iovec __user *vec,
893 		  unsigned long vlen, loff_t *pos, rwf_t flags)
894 {
895 	struct iovec iovstack[UIO_FASTIOV];
896 	struct iovec *iov = iovstack;
897 	struct iov_iter iter;
898 	ssize_t ret;
899 
900 	ret = import_iovec(READ, vec, vlen, ARRAY_SIZE(iovstack), &iov, &iter);
901 	if (ret >= 0) {
902 		ret = do_iter_read(file, &iter, pos, flags);
903 		kfree(iov);
904 	}
905 
906 	return ret;
907 }
908 
909 static ssize_t vfs_writev(struct file *file, const struct iovec __user *vec,
910 		   unsigned long vlen, loff_t *pos, rwf_t flags)
911 {
912 	struct iovec iovstack[UIO_FASTIOV];
913 	struct iovec *iov = iovstack;
914 	struct iov_iter iter;
915 	ssize_t ret;
916 
917 	ret = import_iovec(WRITE, vec, vlen, ARRAY_SIZE(iovstack), &iov, &iter);
918 	if (ret >= 0) {
919 		file_start_write(file);
920 		ret = do_iter_write(file, &iter, pos, flags);
921 		file_end_write(file);
922 		kfree(iov);
923 	}
924 	return ret;
925 }
926 
927 static ssize_t do_readv(unsigned long fd, const struct iovec __user *vec,
928 			unsigned long vlen, rwf_t flags)
929 {
930 	struct fd f = fdget_pos(fd);
931 	ssize_t ret = -EBADF;
932 
933 	if (f.file) {
934 		loff_t pos, *ppos = file_ppos(f.file);
935 		if (ppos) {
936 			pos = *ppos;
937 			ppos = &pos;
938 		}
939 		ret = vfs_readv(f.file, vec, vlen, ppos, flags);
940 		if (ret >= 0 && ppos)
941 			f.file->f_pos = pos;
942 		fdput_pos(f);
943 	}
944 
945 	if (ret > 0)
946 		add_rchar(current, ret);
947 	inc_syscr(current);
948 	return ret;
949 }
950 
951 static ssize_t do_writev(unsigned long fd, const struct iovec __user *vec,
952 			 unsigned long vlen, rwf_t flags)
953 {
954 	struct fd f = fdget_pos(fd);
955 	ssize_t ret = -EBADF;
956 
957 	if (f.file) {
958 		loff_t pos, *ppos = file_ppos(f.file);
959 		if (ppos) {
960 			pos = *ppos;
961 			ppos = &pos;
962 		}
963 		ret = vfs_writev(f.file, vec, vlen, ppos, flags);
964 		if (ret >= 0 && ppos)
965 			f.file->f_pos = pos;
966 		fdput_pos(f);
967 	}
968 
969 	if (ret > 0)
970 		add_wchar(current, ret);
971 	inc_syscw(current);
972 	return ret;
973 }
974 
975 static inline loff_t pos_from_hilo(unsigned long high, unsigned long low)
976 {
977 #define HALF_LONG_BITS (BITS_PER_LONG / 2)
978 	return (((loff_t)high << HALF_LONG_BITS) << HALF_LONG_BITS) | low;
979 }
980 
981 static ssize_t do_preadv(unsigned long fd, const struct iovec __user *vec,
982 			 unsigned long vlen, loff_t pos, rwf_t flags)
983 {
984 	struct fd f;
985 	ssize_t ret = -EBADF;
986 
987 	if (pos < 0)
988 		return -EINVAL;
989 
990 	f = fdget(fd);
991 	if (f.file) {
992 		ret = -ESPIPE;
993 		if (f.file->f_mode & FMODE_PREAD)
994 			ret = vfs_readv(f.file, vec, vlen, &pos, flags);
995 		fdput(f);
996 	}
997 
998 	if (ret > 0)
999 		add_rchar(current, ret);
1000 	inc_syscr(current);
1001 	return ret;
1002 }
1003 
1004 static ssize_t do_pwritev(unsigned long fd, const struct iovec __user *vec,
1005 			  unsigned long vlen, loff_t pos, rwf_t flags)
1006 {
1007 	struct fd f;
1008 	ssize_t ret = -EBADF;
1009 
1010 	if (pos < 0)
1011 		return -EINVAL;
1012 
1013 	f = fdget(fd);
1014 	if (f.file) {
1015 		ret = -ESPIPE;
1016 		if (f.file->f_mode & FMODE_PWRITE)
1017 			ret = vfs_writev(f.file, vec, vlen, &pos, flags);
1018 		fdput(f);
1019 	}
1020 
1021 	if (ret > 0)
1022 		add_wchar(current, ret);
1023 	inc_syscw(current);
1024 	return ret;
1025 }
1026 
1027 SYSCALL_DEFINE3(readv, unsigned long, fd, const struct iovec __user *, vec,
1028 		unsigned long, vlen)
1029 {
1030 	return do_readv(fd, vec, vlen, 0);
1031 }
1032 
1033 SYSCALL_DEFINE3(writev, unsigned long, fd, const struct iovec __user *, vec,
1034 		unsigned long, vlen)
1035 {
1036 	return do_writev(fd, vec, vlen, 0);
1037 }
1038 
1039 SYSCALL_DEFINE5(preadv, unsigned long, fd, const struct iovec __user *, vec,
1040 		unsigned long, vlen, unsigned long, pos_l, unsigned long, pos_h)
1041 {
1042 	loff_t pos = pos_from_hilo(pos_h, pos_l);
1043 
1044 	return do_preadv(fd, vec, vlen, pos, 0);
1045 }
1046 
1047 SYSCALL_DEFINE6(preadv2, unsigned long, fd, const struct iovec __user *, vec,
1048 		unsigned long, vlen, unsigned long, pos_l, unsigned long, pos_h,
1049 		rwf_t, flags)
1050 {
1051 	loff_t pos = pos_from_hilo(pos_h, pos_l);
1052 
1053 	if (pos == -1)
1054 		return do_readv(fd, vec, vlen, flags);
1055 
1056 	return do_preadv(fd, vec, vlen, pos, flags);
1057 }
1058 
1059 SYSCALL_DEFINE5(pwritev, unsigned long, fd, const struct iovec __user *, vec,
1060 		unsigned long, vlen, unsigned long, pos_l, unsigned long, pos_h)
1061 {
1062 	loff_t pos = pos_from_hilo(pos_h, pos_l);
1063 
1064 	return do_pwritev(fd, vec, vlen, pos, 0);
1065 }
1066 
1067 SYSCALL_DEFINE6(pwritev2, unsigned long, fd, const struct iovec __user *, vec,
1068 		unsigned long, vlen, unsigned long, pos_l, unsigned long, pos_h,
1069 		rwf_t, flags)
1070 {
1071 	loff_t pos = pos_from_hilo(pos_h, pos_l);
1072 
1073 	if (pos == -1)
1074 		return do_writev(fd, vec, vlen, flags);
1075 
1076 	return do_pwritev(fd, vec, vlen, pos, flags);
1077 }
1078 
1079 /*
1080  * Various compat syscalls.  Note that they all pretend to take a native
1081  * iovec - import_iovec will properly treat those as compat_iovecs based on
1082  * in_compat_syscall().
1083  */
1084 #ifdef CONFIG_COMPAT
1085 #ifdef __ARCH_WANT_COMPAT_SYS_PREADV64
1086 COMPAT_SYSCALL_DEFINE4(preadv64, unsigned long, fd,
1087 		const struct iovec __user *, vec,
1088 		unsigned long, vlen, loff_t, pos)
1089 {
1090 	return do_preadv(fd, vec, vlen, pos, 0);
1091 }
1092 #endif
1093 
1094 COMPAT_SYSCALL_DEFINE5(preadv, compat_ulong_t, fd,
1095 		const struct iovec __user *, vec,
1096 		compat_ulong_t, vlen, u32, pos_low, u32, pos_high)
1097 {
1098 	loff_t pos = ((loff_t)pos_high << 32) | pos_low;
1099 
1100 	return do_preadv(fd, vec, vlen, pos, 0);
1101 }
1102 
1103 #ifdef __ARCH_WANT_COMPAT_SYS_PREADV64V2
1104 COMPAT_SYSCALL_DEFINE5(preadv64v2, unsigned long, fd,
1105 		const struct iovec __user *, vec,
1106 		unsigned long, vlen, loff_t, pos, rwf_t, flags)
1107 {
1108 	if (pos == -1)
1109 		return do_readv(fd, vec, vlen, flags);
1110 	return do_preadv(fd, vec, vlen, pos, flags);
1111 }
1112 #endif
1113 
1114 COMPAT_SYSCALL_DEFINE6(preadv2, compat_ulong_t, fd,
1115 		const struct iovec __user *, vec,
1116 		compat_ulong_t, vlen, u32, pos_low, u32, pos_high,
1117 		rwf_t, flags)
1118 {
1119 	loff_t pos = ((loff_t)pos_high << 32) | pos_low;
1120 
1121 	if (pos == -1)
1122 		return do_readv(fd, vec, vlen, flags);
1123 	return do_preadv(fd, vec, vlen, pos, flags);
1124 }
1125 
1126 #ifdef __ARCH_WANT_COMPAT_SYS_PWRITEV64
1127 COMPAT_SYSCALL_DEFINE4(pwritev64, unsigned long, fd,
1128 		const struct iovec __user *, vec,
1129 		unsigned long, vlen, loff_t, pos)
1130 {
1131 	return do_pwritev(fd, vec, vlen, pos, 0);
1132 }
1133 #endif
1134 
1135 COMPAT_SYSCALL_DEFINE5(pwritev, compat_ulong_t, fd,
1136 		const struct iovec __user *,vec,
1137 		compat_ulong_t, vlen, u32, pos_low, u32, pos_high)
1138 {
1139 	loff_t pos = ((loff_t)pos_high << 32) | pos_low;
1140 
1141 	return do_pwritev(fd, vec, vlen, pos, 0);
1142 }
1143 
1144 #ifdef __ARCH_WANT_COMPAT_SYS_PWRITEV64V2
1145 COMPAT_SYSCALL_DEFINE5(pwritev64v2, unsigned long, fd,
1146 		const struct iovec __user *, vec,
1147 		unsigned long, vlen, loff_t, pos, rwf_t, flags)
1148 {
1149 	if (pos == -1)
1150 		return do_writev(fd, vec, vlen, flags);
1151 	return do_pwritev(fd, vec, vlen, pos, flags);
1152 }
1153 #endif
1154 
1155 COMPAT_SYSCALL_DEFINE6(pwritev2, compat_ulong_t, fd,
1156 		const struct iovec __user *,vec,
1157 		compat_ulong_t, vlen, u32, pos_low, u32, pos_high, rwf_t, flags)
1158 {
1159 	loff_t pos = ((loff_t)pos_high << 32) | pos_low;
1160 
1161 	if (pos == -1)
1162 		return do_writev(fd, vec, vlen, flags);
1163 	return do_pwritev(fd, vec, vlen, pos, flags);
1164 }
1165 #endif /* CONFIG_COMPAT */
1166 
1167 static ssize_t do_sendfile(int out_fd, int in_fd, loff_t *ppos,
1168 		  	   size_t count, loff_t max)
1169 {
1170 	struct fd in, out;
1171 	struct inode *in_inode, *out_inode;
1172 	loff_t pos;
1173 	loff_t out_pos;
1174 	ssize_t retval;
1175 	int fl;
1176 
1177 	/*
1178 	 * Get input file, and verify that it is ok..
1179 	 */
1180 	retval = -EBADF;
1181 	in = fdget(in_fd);
1182 	if (!in.file)
1183 		goto out;
1184 	if (!(in.file->f_mode & FMODE_READ))
1185 		goto fput_in;
1186 	retval = -ESPIPE;
1187 	if (!ppos) {
1188 		pos = in.file->f_pos;
1189 	} else {
1190 		pos = *ppos;
1191 		if (!(in.file->f_mode & FMODE_PREAD))
1192 			goto fput_in;
1193 	}
1194 	retval = rw_verify_area(READ, in.file, &pos, count);
1195 	if (retval < 0)
1196 		goto fput_in;
1197 	if (count > MAX_RW_COUNT)
1198 		count =  MAX_RW_COUNT;
1199 
1200 	/*
1201 	 * Get output file, and verify that it is ok..
1202 	 */
1203 	retval = -EBADF;
1204 	out = fdget(out_fd);
1205 	if (!out.file)
1206 		goto fput_in;
1207 	if (!(out.file->f_mode & FMODE_WRITE))
1208 		goto fput_out;
1209 	in_inode = file_inode(in.file);
1210 	out_inode = file_inode(out.file);
1211 	out_pos = out.file->f_pos;
1212 	retval = rw_verify_area(WRITE, out.file, &out_pos, count);
1213 	if (retval < 0)
1214 		goto fput_out;
1215 
1216 	if (!max)
1217 		max = min(in_inode->i_sb->s_maxbytes, out_inode->i_sb->s_maxbytes);
1218 
1219 	if (unlikely(pos + count > max)) {
1220 		retval = -EOVERFLOW;
1221 		if (pos >= max)
1222 			goto fput_out;
1223 		count = max - pos;
1224 	}
1225 
1226 	fl = 0;
1227 #if 0
1228 	/*
1229 	 * We need to debate whether we can enable this or not. The
1230 	 * man page documents EAGAIN return for the output at least,
1231 	 * and the application is arguably buggy if it doesn't expect
1232 	 * EAGAIN on a non-blocking file descriptor.
1233 	 */
1234 	if (in.file->f_flags & O_NONBLOCK)
1235 		fl = SPLICE_F_NONBLOCK;
1236 #endif
1237 	file_start_write(out.file);
1238 	retval = do_splice_direct(in.file, &pos, out.file, &out_pos, count, fl);
1239 	file_end_write(out.file);
1240 
1241 	if (retval > 0) {
1242 		add_rchar(current, retval);
1243 		add_wchar(current, retval);
1244 		fsnotify_access(in.file);
1245 		fsnotify_modify(out.file);
1246 		out.file->f_pos = out_pos;
1247 		if (ppos)
1248 			*ppos = pos;
1249 		else
1250 			in.file->f_pos = pos;
1251 	}
1252 
1253 	inc_syscr(current);
1254 	inc_syscw(current);
1255 	if (pos > max)
1256 		retval = -EOVERFLOW;
1257 
1258 fput_out:
1259 	fdput(out);
1260 fput_in:
1261 	fdput(in);
1262 out:
1263 	return retval;
1264 }
1265 
1266 SYSCALL_DEFINE4(sendfile, int, out_fd, int, in_fd, off_t __user *, offset, size_t, count)
1267 {
1268 	loff_t pos;
1269 	off_t off;
1270 	ssize_t ret;
1271 
1272 	if (offset) {
1273 		if (unlikely(get_user(off, offset)))
1274 			return -EFAULT;
1275 		pos = off;
1276 		ret = do_sendfile(out_fd, in_fd, &pos, count, MAX_NON_LFS);
1277 		if (unlikely(put_user(pos, offset)))
1278 			return -EFAULT;
1279 		return ret;
1280 	}
1281 
1282 	return do_sendfile(out_fd, in_fd, NULL, count, 0);
1283 }
1284 
1285 SYSCALL_DEFINE4(sendfile64, int, out_fd, int, in_fd, loff_t __user *, offset, size_t, count)
1286 {
1287 	loff_t pos;
1288 	ssize_t ret;
1289 
1290 	if (offset) {
1291 		if (unlikely(copy_from_user(&pos, offset, sizeof(loff_t))))
1292 			return -EFAULT;
1293 		ret = do_sendfile(out_fd, in_fd, &pos, count, 0);
1294 		if (unlikely(put_user(pos, offset)))
1295 			return -EFAULT;
1296 		return ret;
1297 	}
1298 
1299 	return do_sendfile(out_fd, in_fd, NULL, count, 0);
1300 }
1301 
1302 #ifdef CONFIG_COMPAT
1303 COMPAT_SYSCALL_DEFINE4(sendfile, int, out_fd, int, in_fd,
1304 		compat_off_t __user *, offset, compat_size_t, count)
1305 {
1306 	loff_t pos;
1307 	off_t off;
1308 	ssize_t ret;
1309 
1310 	if (offset) {
1311 		if (unlikely(get_user(off, offset)))
1312 			return -EFAULT;
1313 		pos = off;
1314 		ret = do_sendfile(out_fd, in_fd, &pos, count, MAX_NON_LFS);
1315 		if (unlikely(put_user(pos, offset)))
1316 			return -EFAULT;
1317 		return ret;
1318 	}
1319 
1320 	return do_sendfile(out_fd, in_fd, NULL, count, 0);
1321 }
1322 
1323 COMPAT_SYSCALL_DEFINE4(sendfile64, int, out_fd, int, in_fd,
1324 		compat_loff_t __user *, offset, compat_size_t, count)
1325 {
1326 	loff_t pos;
1327 	ssize_t ret;
1328 
1329 	if (offset) {
1330 		if (unlikely(copy_from_user(&pos, offset, sizeof(loff_t))))
1331 			return -EFAULT;
1332 		ret = do_sendfile(out_fd, in_fd, &pos, count, 0);
1333 		if (unlikely(put_user(pos, offset)))
1334 			return -EFAULT;
1335 		return ret;
1336 	}
1337 
1338 	return do_sendfile(out_fd, in_fd, NULL, count, 0);
1339 }
1340 #endif
1341 
1342 /**
1343  * generic_copy_file_range - copy data between two files
1344  * @file_in:	file structure to read from
1345  * @pos_in:	file offset to read from
1346  * @file_out:	file structure to write data to
1347  * @pos_out:	file offset to write data to
1348  * @len:	amount of data to copy
1349  * @flags:	copy flags
1350  *
1351  * This is a generic filesystem helper to copy data from one file to another.
1352  * It has no constraints on the source or destination file owners - the files
1353  * can belong to different superblocks and different filesystem types. Short
1354  * copies are allowed.
1355  *
1356  * This should be called from the @file_out filesystem, as per the
1357  * ->copy_file_range() method.
1358  *
1359  * Returns the number of bytes copied or a negative error indicating the
1360  * failure.
1361  */
1362 
1363 ssize_t generic_copy_file_range(struct file *file_in, loff_t pos_in,
1364 				struct file *file_out, loff_t pos_out,
1365 				size_t len, unsigned int flags)
1366 {
1367 	return do_splice_direct(file_in, &pos_in, file_out, &pos_out,
1368 				len > MAX_RW_COUNT ? MAX_RW_COUNT : len, 0);
1369 }
1370 EXPORT_SYMBOL(generic_copy_file_range);
1371 
1372 static ssize_t do_copy_file_range(struct file *file_in, loff_t pos_in,
1373 				  struct file *file_out, loff_t pos_out,
1374 				  size_t len, unsigned int flags)
1375 {
1376 	/*
1377 	 * Although we now allow filesystems to handle cross sb copy, passing
1378 	 * a file of the wrong filesystem type to filesystem driver can result
1379 	 * in an attempt to dereference the wrong type of ->private_data, so
1380 	 * avoid doing that until we really have a good reason.  NFS defines
1381 	 * several different file_system_type structures, but they all end up
1382 	 * using the same ->copy_file_range() function pointer.
1383 	 */
1384 	if (file_out->f_op->copy_file_range &&
1385 	    file_out->f_op->copy_file_range == file_in->f_op->copy_file_range)
1386 		return file_out->f_op->copy_file_range(file_in, pos_in,
1387 						       file_out, pos_out,
1388 						       len, flags);
1389 
1390 	return generic_copy_file_range(file_in, pos_in, file_out, pos_out, len,
1391 				       flags);
1392 }
1393 
1394 /*
1395  * copy_file_range() differs from regular file read and write in that it
1396  * specifically allows return partial success.  When it does so is up to
1397  * the copy_file_range method.
1398  */
1399 ssize_t vfs_copy_file_range(struct file *file_in, loff_t pos_in,
1400 			    struct file *file_out, loff_t pos_out,
1401 			    size_t len, unsigned int flags)
1402 {
1403 	ssize_t ret;
1404 
1405 	if (flags != 0)
1406 		return -EINVAL;
1407 
1408 	ret = generic_copy_file_checks(file_in, pos_in, file_out, pos_out, &len,
1409 				       flags);
1410 	if (unlikely(ret))
1411 		return ret;
1412 
1413 	ret = rw_verify_area(READ, file_in, &pos_in, len);
1414 	if (unlikely(ret))
1415 		return ret;
1416 
1417 	ret = rw_verify_area(WRITE, file_out, &pos_out, len);
1418 	if (unlikely(ret))
1419 		return ret;
1420 
1421 	if (len == 0)
1422 		return 0;
1423 
1424 	file_start_write(file_out);
1425 
1426 	/*
1427 	 * Try cloning first, this is supported by more file systems, and
1428 	 * more efficient if both clone and copy are supported (e.g. NFS).
1429 	 */
1430 	if (file_in->f_op->remap_file_range &&
1431 	    file_inode(file_in)->i_sb == file_inode(file_out)->i_sb) {
1432 		loff_t cloned;
1433 
1434 		cloned = file_in->f_op->remap_file_range(file_in, pos_in,
1435 				file_out, pos_out,
1436 				min_t(loff_t, MAX_RW_COUNT, len),
1437 				REMAP_FILE_CAN_SHORTEN);
1438 		if (cloned > 0) {
1439 			ret = cloned;
1440 			goto done;
1441 		}
1442 	}
1443 
1444 	ret = do_copy_file_range(file_in, pos_in, file_out, pos_out, len,
1445 				flags);
1446 	WARN_ON_ONCE(ret == -EOPNOTSUPP);
1447 done:
1448 	if (ret > 0) {
1449 		fsnotify_access(file_in);
1450 		add_rchar(current, ret);
1451 		fsnotify_modify(file_out);
1452 		add_wchar(current, ret);
1453 	}
1454 
1455 	inc_syscr(current);
1456 	inc_syscw(current);
1457 
1458 	file_end_write(file_out);
1459 
1460 	return ret;
1461 }
1462 EXPORT_SYMBOL(vfs_copy_file_range);
1463 
1464 SYSCALL_DEFINE6(copy_file_range, int, fd_in, loff_t __user *, off_in,
1465 		int, fd_out, loff_t __user *, off_out,
1466 		size_t, len, unsigned int, flags)
1467 {
1468 	loff_t pos_in;
1469 	loff_t pos_out;
1470 	struct fd f_in;
1471 	struct fd f_out;
1472 	ssize_t ret = -EBADF;
1473 
1474 	f_in = fdget(fd_in);
1475 	if (!f_in.file)
1476 		goto out2;
1477 
1478 	f_out = fdget(fd_out);
1479 	if (!f_out.file)
1480 		goto out1;
1481 
1482 	ret = -EFAULT;
1483 	if (off_in) {
1484 		if (copy_from_user(&pos_in, off_in, sizeof(loff_t)))
1485 			goto out;
1486 	} else {
1487 		pos_in = f_in.file->f_pos;
1488 	}
1489 
1490 	if (off_out) {
1491 		if (copy_from_user(&pos_out, off_out, sizeof(loff_t)))
1492 			goto out;
1493 	} else {
1494 		pos_out = f_out.file->f_pos;
1495 	}
1496 
1497 	ret = vfs_copy_file_range(f_in.file, pos_in, f_out.file, pos_out, len,
1498 				  flags);
1499 	if (ret > 0) {
1500 		pos_in += ret;
1501 		pos_out += ret;
1502 
1503 		if (off_in) {
1504 			if (copy_to_user(off_in, &pos_in, sizeof(loff_t)))
1505 				ret = -EFAULT;
1506 		} else {
1507 			f_in.file->f_pos = pos_in;
1508 		}
1509 
1510 		if (off_out) {
1511 			if (copy_to_user(off_out, &pos_out, sizeof(loff_t)))
1512 				ret = -EFAULT;
1513 		} else {
1514 			f_out.file->f_pos = pos_out;
1515 		}
1516 	}
1517 
1518 out:
1519 	fdput(f_out);
1520 out1:
1521 	fdput(f_in);
1522 out2:
1523 	return ret;
1524 }
1525 
1526 static int remap_verify_area(struct file *file, loff_t pos, loff_t len,
1527 			     bool write)
1528 {
1529 	struct inode *inode = file_inode(file);
1530 
1531 	if (unlikely(pos < 0 || len < 0))
1532 		return -EINVAL;
1533 
1534 	 if (unlikely((loff_t) (pos + len) < 0))
1535 		return -EINVAL;
1536 
1537 	if (unlikely(inode->i_flctx && mandatory_lock(inode))) {
1538 		loff_t end = len ? pos + len - 1 : OFFSET_MAX;
1539 		int retval;
1540 
1541 		retval = locks_mandatory_area(inode, file, pos, end,
1542 				write ? F_WRLCK : F_RDLCK);
1543 		if (retval < 0)
1544 			return retval;
1545 	}
1546 
1547 	return security_file_permission(file, write ? MAY_WRITE : MAY_READ);
1548 }
1549 /*
1550  * Ensure that we don't remap a partial EOF block in the middle of something
1551  * else.  Assume that the offsets have already been checked for block
1552  * alignment.
1553  *
1554  * For clone we only link a partial EOF block above or at the destination file's
1555  * EOF.  For deduplication we accept a partial EOF block only if it ends at the
1556  * destination file's EOF (can not link it into the middle of a file).
1557  *
1558  * Shorten the request if possible.
1559  */
1560 static int generic_remap_check_len(struct inode *inode_in,
1561 				   struct inode *inode_out,
1562 				   loff_t pos_out,
1563 				   loff_t *len,
1564 				   unsigned int remap_flags)
1565 {
1566 	u64 blkmask = i_blocksize(inode_in) - 1;
1567 	loff_t new_len = *len;
1568 
1569 	if ((*len & blkmask) == 0)
1570 		return 0;
1571 
1572 	if (pos_out + *len < i_size_read(inode_out))
1573 		new_len &= ~blkmask;
1574 
1575 	if (new_len == *len)
1576 		return 0;
1577 
1578 	if (remap_flags & REMAP_FILE_CAN_SHORTEN) {
1579 		*len = new_len;
1580 		return 0;
1581 	}
1582 
1583 	return (remap_flags & REMAP_FILE_DEDUP) ? -EBADE : -EINVAL;
1584 }
1585 
1586 /* Read a page's worth of file data into the page cache. */
1587 static struct page *vfs_dedupe_get_page(struct inode *inode, loff_t offset)
1588 {
1589 	struct page *page;
1590 
1591 	page = read_mapping_page(inode->i_mapping, offset >> PAGE_SHIFT, NULL);
1592 	if (IS_ERR(page))
1593 		return page;
1594 	if (!PageUptodate(page)) {
1595 		put_page(page);
1596 		return ERR_PTR(-EIO);
1597 	}
1598 	return page;
1599 }
1600 
1601 /*
1602  * Lock two pages, ensuring that we lock in offset order if the pages are from
1603  * the same file.
1604  */
1605 static void vfs_lock_two_pages(struct page *page1, struct page *page2)
1606 {
1607 	/* Always lock in order of increasing index. */
1608 	if (page1->index > page2->index)
1609 		swap(page1, page2);
1610 
1611 	lock_page(page1);
1612 	if (page1 != page2)
1613 		lock_page(page2);
1614 }
1615 
1616 /* Unlock two pages, being careful not to unlock the same page twice. */
1617 static void vfs_unlock_two_pages(struct page *page1, struct page *page2)
1618 {
1619 	unlock_page(page1);
1620 	if (page1 != page2)
1621 		unlock_page(page2);
1622 }
1623 
1624 /*
1625  * Compare extents of two files to see if they are the same.
1626  * Caller must have locked both inodes to prevent write races.
1627  */
1628 static int vfs_dedupe_file_range_compare(struct inode *src, loff_t srcoff,
1629 					 struct inode *dest, loff_t destoff,
1630 					 loff_t len, bool *is_same)
1631 {
1632 	loff_t src_poff;
1633 	loff_t dest_poff;
1634 	void *src_addr;
1635 	void *dest_addr;
1636 	struct page *src_page;
1637 	struct page *dest_page;
1638 	loff_t cmp_len;
1639 	bool same;
1640 	int error;
1641 
1642 	error = -EINVAL;
1643 	same = true;
1644 	while (len) {
1645 		src_poff = srcoff & (PAGE_SIZE - 1);
1646 		dest_poff = destoff & (PAGE_SIZE - 1);
1647 		cmp_len = min(PAGE_SIZE - src_poff,
1648 			      PAGE_SIZE - dest_poff);
1649 		cmp_len = min(cmp_len, len);
1650 		if (cmp_len <= 0)
1651 			goto out_error;
1652 
1653 		src_page = vfs_dedupe_get_page(src, srcoff);
1654 		if (IS_ERR(src_page)) {
1655 			error = PTR_ERR(src_page);
1656 			goto out_error;
1657 		}
1658 		dest_page = vfs_dedupe_get_page(dest, destoff);
1659 		if (IS_ERR(dest_page)) {
1660 			error = PTR_ERR(dest_page);
1661 			put_page(src_page);
1662 			goto out_error;
1663 		}
1664 
1665 		vfs_lock_two_pages(src_page, dest_page);
1666 
1667 		/*
1668 		 * Now that we've locked both pages, make sure they're still
1669 		 * mapped to the file data we're interested in.  If not,
1670 		 * someone is invalidating pages on us and we lose.
1671 		 */
1672 		if (!PageUptodate(src_page) || !PageUptodate(dest_page) ||
1673 		    src_page->mapping != src->i_mapping ||
1674 		    dest_page->mapping != dest->i_mapping) {
1675 			same = false;
1676 			goto unlock;
1677 		}
1678 
1679 		src_addr = kmap_atomic(src_page);
1680 		dest_addr = kmap_atomic(dest_page);
1681 
1682 		flush_dcache_page(src_page);
1683 		flush_dcache_page(dest_page);
1684 
1685 		if (memcmp(src_addr + src_poff, dest_addr + dest_poff, cmp_len))
1686 			same = false;
1687 
1688 		kunmap_atomic(dest_addr);
1689 		kunmap_atomic(src_addr);
1690 unlock:
1691 		vfs_unlock_two_pages(src_page, dest_page);
1692 		put_page(dest_page);
1693 		put_page(src_page);
1694 
1695 		if (!same)
1696 			break;
1697 
1698 		srcoff += cmp_len;
1699 		destoff += cmp_len;
1700 		len -= cmp_len;
1701 	}
1702 
1703 	*is_same = same;
1704 	return 0;
1705 
1706 out_error:
1707 	return error;
1708 }
1709 
1710 /*
1711  * Check that the two inodes are eligible for cloning, the ranges make
1712  * sense, and then flush all dirty data.  Caller must ensure that the
1713  * inodes have been locked against any other modifications.
1714  *
1715  * If there's an error, then the usual negative error code is returned.
1716  * Otherwise returns 0 with *len set to the request length.
1717  */
1718 int generic_remap_file_range_prep(struct file *file_in, loff_t pos_in,
1719 				  struct file *file_out, loff_t pos_out,
1720 				  loff_t *len, unsigned int remap_flags)
1721 {
1722 	struct inode *inode_in = file_inode(file_in);
1723 	struct inode *inode_out = file_inode(file_out);
1724 	bool same_inode = (inode_in == inode_out);
1725 	int ret;
1726 
1727 	/* Don't touch certain kinds of inodes */
1728 	if (IS_IMMUTABLE(inode_out))
1729 		return -EPERM;
1730 
1731 	if (IS_SWAPFILE(inode_in) || IS_SWAPFILE(inode_out))
1732 		return -ETXTBSY;
1733 
1734 	/* Don't reflink dirs, pipes, sockets... */
1735 	if (S_ISDIR(inode_in->i_mode) || S_ISDIR(inode_out->i_mode))
1736 		return -EISDIR;
1737 	if (!S_ISREG(inode_in->i_mode) || !S_ISREG(inode_out->i_mode))
1738 		return -EINVAL;
1739 
1740 	/* Zero length dedupe exits immediately; reflink goes to EOF. */
1741 	if (*len == 0) {
1742 		loff_t isize = i_size_read(inode_in);
1743 
1744 		if ((remap_flags & REMAP_FILE_DEDUP) || pos_in == isize)
1745 			return 0;
1746 		if (pos_in > isize)
1747 			return -EINVAL;
1748 		*len = isize - pos_in;
1749 		if (*len == 0)
1750 			return 0;
1751 	}
1752 
1753 	/* Check that we don't violate system file offset limits. */
1754 	ret = generic_remap_checks(file_in, pos_in, file_out, pos_out, len,
1755 			remap_flags);
1756 	if (ret)
1757 		return ret;
1758 
1759 	/* Wait for the completion of any pending IOs on both files */
1760 	inode_dio_wait(inode_in);
1761 	if (!same_inode)
1762 		inode_dio_wait(inode_out);
1763 
1764 	ret = filemap_write_and_wait_range(inode_in->i_mapping,
1765 			pos_in, pos_in + *len - 1);
1766 	if (ret)
1767 		return ret;
1768 
1769 	ret = filemap_write_and_wait_range(inode_out->i_mapping,
1770 			pos_out, pos_out + *len - 1);
1771 	if (ret)
1772 		return ret;
1773 
1774 	/*
1775 	 * Check that the extents are the same.
1776 	 */
1777 	if (remap_flags & REMAP_FILE_DEDUP) {
1778 		bool		is_same = false;
1779 
1780 		ret = vfs_dedupe_file_range_compare(inode_in, pos_in,
1781 				inode_out, pos_out, *len, &is_same);
1782 		if (ret)
1783 			return ret;
1784 		if (!is_same)
1785 			return -EBADE;
1786 	}
1787 
1788 	ret = generic_remap_check_len(inode_in, inode_out, pos_out, len,
1789 			remap_flags);
1790 	if (ret)
1791 		return ret;
1792 
1793 	/* If can't alter the file contents, we're done. */
1794 	if (!(remap_flags & REMAP_FILE_DEDUP))
1795 		ret = file_modified(file_out);
1796 
1797 	return ret;
1798 }
1799 EXPORT_SYMBOL(generic_remap_file_range_prep);
1800 
1801 loff_t do_clone_file_range(struct file *file_in, loff_t pos_in,
1802 			   struct file *file_out, loff_t pos_out,
1803 			   loff_t len, unsigned int remap_flags)
1804 {
1805 	loff_t ret;
1806 
1807 	WARN_ON_ONCE(remap_flags & REMAP_FILE_DEDUP);
1808 
1809 	/*
1810 	 * FICLONE/FICLONERANGE ioctls enforce that src and dest files are on
1811 	 * the same mount. Practically, they only need to be on the same file
1812 	 * system.
1813 	 */
1814 	if (file_inode(file_in)->i_sb != file_inode(file_out)->i_sb)
1815 		return -EXDEV;
1816 
1817 	ret = generic_file_rw_checks(file_in, file_out);
1818 	if (ret < 0)
1819 		return ret;
1820 
1821 	if (!file_in->f_op->remap_file_range)
1822 		return -EOPNOTSUPP;
1823 
1824 	ret = remap_verify_area(file_in, pos_in, len, false);
1825 	if (ret)
1826 		return ret;
1827 
1828 	ret = remap_verify_area(file_out, pos_out, len, true);
1829 	if (ret)
1830 		return ret;
1831 
1832 	ret = file_in->f_op->remap_file_range(file_in, pos_in,
1833 			file_out, pos_out, len, remap_flags);
1834 	if (ret < 0)
1835 		return ret;
1836 
1837 	fsnotify_access(file_in);
1838 	fsnotify_modify(file_out);
1839 	return ret;
1840 }
1841 EXPORT_SYMBOL(do_clone_file_range);
1842 
1843 loff_t vfs_clone_file_range(struct file *file_in, loff_t pos_in,
1844 			    struct file *file_out, loff_t pos_out,
1845 			    loff_t len, unsigned int remap_flags)
1846 {
1847 	loff_t ret;
1848 
1849 	file_start_write(file_out);
1850 	ret = do_clone_file_range(file_in, pos_in, file_out, pos_out, len,
1851 				  remap_flags);
1852 	file_end_write(file_out);
1853 
1854 	return ret;
1855 }
1856 EXPORT_SYMBOL(vfs_clone_file_range);
1857 
1858 /* Check whether we are allowed to dedupe the destination file */
1859 static bool allow_file_dedupe(struct file *file)
1860 {
1861 	if (capable(CAP_SYS_ADMIN))
1862 		return true;
1863 	if (file->f_mode & FMODE_WRITE)
1864 		return true;
1865 	if (uid_eq(current_fsuid(), file_inode(file)->i_uid))
1866 		return true;
1867 	if (!inode_permission(file_inode(file), MAY_WRITE))
1868 		return true;
1869 	return false;
1870 }
1871 
1872 loff_t vfs_dedupe_file_range_one(struct file *src_file, loff_t src_pos,
1873 				 struct file *dst_file, loff_t dst_pos,
1874 				 loff_t len, unsigned int remap_flags)
1875 {
1876 	loff_t ret;
1877 
1878 	WARN_ON_ONCE(remap_flags & ~(REMAP_FILE_DEDUP |
1879 				     REMAP_FILE_CAN_SHORTEN));
1880 
1881 	ret = mnt_want_write_file(dst_file);
1882 	if (ret)
1883 		return ret;
1884 
1885 	ret = remap_verify_area(dst_file, dst_pos, len, true);
1886 	if (ret < 0)
1887 		goto out_drop_write;
1888 
1889 	ret = -EPERM;
1890 	if (!allow_file_dedupe(dst_file))
1891 		goto out_drop_write;
1892 
1893 	ret = -EXDEV;
1894 	if (src_file->f_path.mnt != dst_file->f_path.mnt)
1895 		goto out_drop_write;
1896 
1897 	ret = -EISDIR;
1898 	if (S_ISDIR(file_inode(dst_file)->i_mode))
1899 		goto out_drop_write;
1900 
1901 	ret = -EINVAL;
1902 	if (!dst_file->f_op->remap_file_range)
1903 		goto out_drop_write;
1904 
1905 	if (len == 0) {
1906 		ret = 0;
1907 		goto out_drop_write;
1908 	}
1909 
1910 	ret = dst_file->f_op->remap_file_range(src_file, src_pos, dst_file,
1911 			dst_pos, len, remap_flags | REMAP_FILE_DEDUP);
1912 out_drop_write:
1913 	mnt_drop_write_file(dst_file);
1914 
1915 	return ret;
1916 }
1917 EXPORT_SYMBOL(vfs_dedupe_file_range_one);
1918 
1919 int vfs_dedupe_file_range(struct file *file, struct file_dedupe_range *same)
1920 {
1921 	struct file_dedupe_range_info *info;
1922 	struct inode *src = file_inode(file);
1923 	u64 off;
1924 	u64 len;
1925 	int i;
1926 	int ret;
1927 	u16 count = same->dest_count;
1928 	loff_t deduped;
1929 
1930 	if (!(file->f_mode & FMODE_READ))
1931 		return -EINVAL;
1932 
1933 	if (same->reserved1 || same->reserved2)
1934 		return -EINVAL;
1935 
1936 	off = same->src_offset;
1937 	len = same->src_length;
1938 
1939 	if (S_ISDIR(src->i_mode))
1940 		return -EISDIR;
1941 
1942 	if (!S_ISREG(src->i_mode))
1943 		return -EINVAL;
1944 
1945 	if (!file->f_op->remap_file_range)
1946 		return -EOPNOTSUPP;
1947 
1948 	ret = remap_verify_area(file, off, len, false);
1949 	if (ret < 0)
1950 		return ret;
1951 	ret = 0;
1952 
1953 	if (off + len > i_size_read(src))
1954 		return -EINVAL;
1955 
1956 	/* Arbitrary 1G limit on a single dedupe request, can be raised. */
1957 	len = min_t(u64, len, 1 << 30);
1958 
1959 	/* pre-format output fields to sane values */
1960 	for (i = 0; i < count; i++) {
1961 		same->info[i].bytes_deduped = 0ULL;
1962 		same->info[i].status = FILE_DEDUPE_RANGE_SAME;
1963 	}
1964 
1965 	for (i = 0, info = same->info; i < count; i++, info++) {
1966 		struct fd dst_fd = fdget(info->dest_fd);
1967 		struct file *dst_file = dst_fd.file;
1968 
1969 		if (!dst_file) {
1970 			info->status = -EBADF;
1971 			goto next_loop;
1972 		}
1973 
1974 		if (info->reserved) {
1975 			info->status = -EINVAL;
1976 			goto next_fdput;
1977 		}
1978 
1979 		deduped = vfs_dedupe_file_range_one(file, off, dst_file,
1980 						    info->dest_offset, len,
1981 						    REMAP_FILE_CAN_SHORTEN);
1982 		if (deduped == -EBADE)
1983 			info->status = FILE_DEDUPE_RANGE_DIFFERS;
1984 		else if (deduped < 0)
1985 			info->status = deduped;
1986 		else
1987 			info->bytes_deduped = len;
1988 
1989 next_fdput:
1990 		fdput(dst_fd);
1991 next_loop:
1992 		if (fatal_signal_pending(current))
1993 			break;
1994 	}
1995 	return ret;
1996 }
1997 EXPORT_SYMBOL(vfs_dedupe_file_range);
1998