mm: merge folio_has_private()/filemap_release_folio() call pairs
[linux-block.git] / fs / splice.c
CommitLineData
457c8996 1// SPDX-License-Identifier: GPL-2.0-only
5274f052
JA
2/*
3 * "splice": joining two ropes together by interweaving their strands.
4 *
5 * This is the "extended pipe" functionality, where a pipe is used as
6 * an arbitrary in-memory buffer. Think of a pipe as a small kernel
7 * buffer that you can use to transfer data from one end to the other.
8 *
9 * The traditional unix read/write is extended with a "splice()" operation
10 * that transfers data buffers to or from a pipe buffer.
11 *
12 * Named by Larry McVoy, original implementation from Linus, extended by
c2058e06
JA
13 * Jens to support splicing to files, network, direct splicing, etc and
14 * fixing lots of bugs.
5274f052 15 *
0fe23479 16 * Copyright (C) 2005-2006 Jens Axboe <axboe@kernel.dk>
c2058e06
JA
17 * Copyright (C) 2005-2006 Linus Torvalds <torvalds@osdl.org>
18 * Copyright (C) 2006 Ingo Molnar <mingo@elte.hu>
5274f052
JA
19 *
20 */
be297968 21#include <linux/bvec.h>
5274f052
JA
22#include <linux/fs.h>
23#include <linux/file.h>
24#include <linux/pagemap.h>
d6b29d7c 25#include <linux/splice.h>
08e552c6 26#include <linux/memcontrol.h>
5274f052 27#include <linux/mm_inline.h>
5abc97aa 28#include <linux/swap.h>
4f6f0bd2 29#include <linux/writeback.h>
630d9c47 30#include <linux/export.h>
4f6f0bd2 31#include <linux/syscalls.h>
912d35f8 32#include <linux/uio.h>
983652c6 33#include <linux/fsnotify.h>
29ce2058 34#include <linux/security.h>
5a0e3ad6 35#include <linux/gfp.h>
2dc334f1 36#include <linux/net.h>
35f9c09f 37#include <linux/socket.h>
174cd4b1
IM
38#include <linux/sched/signal.h>
39
06ae43f3 40#include "internal.h"
5274f052 41
0f99fc51
JA
42/*
43 * Splice doesn't support FMODE_NOWAIT. Since pipes may set this flag to
44 * indicate they support non-blocking reads or writes, we must clear it
45 * here if set to avoid blocking other users of this pipe if splice is
46 * being done on it.
47 */
48static noinline void noinline pipe_clear_nowait(struct file *file)
49{
50 fmode_t fmode = READ_ONCE(file->f_mode);
51
52 do {
53 if (!(fmode & FMODE_NOWAIT))
54 break;
55 } while (!try_cmpxchg(&file->f_mode, &fmode, fmode & ~FMODE_NOWAIT));
56}
57
83f9135b
JA
58/*
59 * Attempt to steal a page from a pipe buffer. This should perhaps go into
60 * a vm helper function, it's already simplified quite a bit by the
61 * addition of remove_mapping(). If success is returned, the caller may
62 * attempt to reuse this page for another destination.
63 */
c928f642
CH
64static bool page_cache_pipe_buf_try_steal(struct pipe_inode_info *pipe,
65 struct pipe_buffer *buf)
5abc97aa 66{
5100da38 67 struct folio *folio = page_folio(buf->page);
9e94cd4f 68 struct address_space *mapping;
5abc97aa 69
b9ccad2e 70 folio_lock(folio);
9e0267c2 71
b9ccad2e 72 mapping = folio_mapping(folio);
9e94cd4f 73 if (mapping) {
b9ccad2e 74 WARN_ON(!folio_test_uptodate(folio));
5abc97aa 75
9e94cd4f
JA
76 /*
77 * At least for ext2 with nobh option, we need to wait on
b9ccad2e 78 * writeback completing on this folio, since we'll remove it
9e94cd4f 79 * from the pagecache. Otherwise truncate wont wait on the
b9ccad2e 80 * folio, allowing the disk blocks to be reused by someone else
9e94cd4f
JA
81 * before we actually wrote our data to them. fs corruption
82 * ensues.
83 */
b9ccad2e 84 folio_wait_writeback(folio);
ad8d6f0a 85
0201ebf2 86 if (!filemap_release_folio(folio, GFP_KERNEL))
ca39d651 87 goto out_unlock;
4f6f0bd2 88
9e94cd4f
JA
89 /*
90 * If we succeeded in removing the mapping, set LRU flag
91 * and return good.
92 */
5100da38 93 if (remove_mapping(mapping, folio)) {
9e94cd4f 94 buf->flags |= PIPE_BUF_FLAG_LRU;
c928f642 95 return true;
9e94cd4f 96 }
9e0267c2 97 }
5abc97aa 98
9e94cd4f 99 /*
b9ccad2e 100 * Raced with truncate or failed to remove folio from current
9e94cd4f
JA
101 * address space, unlock and return failure.
102 */
ca39d651 103out_unlock:
b9ccad2e 104 folio_unlock(folio);
c928f642 105 return false;
5abc97aa
JA
106}
107
76ad4d11 108static void page_cache_pipe_buf_release(struct pipe_inode_info *pipe,
5274f052
JA
109 struct pipe_buffer *buf)
110{
09cbfeaf 111 put_page(buf->page);
1432873a 112 buf->flags &= ~PIPE_BUF_FLAG_LRU;
5274f052
JA
113}
114
0845718d
JA
115/*
116 * Check whether the contents of buf is OK to access. Since the content
117 * is a page cache page, IO may be in flight.
118 */
cac36bb0
JA
119static int page_cache_pipe_buf_confirm(struct pipe_inode_info *pipe,
120 struct pipe_buffer *buf)
5274f052
JA
121{
122 struct page *page = buf->page;
49d0b21b 123 int err;
5274f052
JA
124
125 if (!PageUptodate(page)) {
49d0b21b
JA
126 lock_page(page);
127
128 /*
129 * Page got truncated/unhashed. This will cause a 0-byte
73d62d83 130 * splice, if this is the first page.
49d0b21b
JA
131 */
132 if (!page->mapping) {
133 err = -ENODATA;
134 goto error;
135 }
5274f052 136
49d0b21b 137 /*
73d62d83 138 * Uh oh, read-error from disk.
49d0b21b
JA
139 */
140 if (!PageUptodate(page)) {
141 err = -EIO;
142 goto error;
143 }
144
145 /*
f84d7519 146 * Page is ok afterall, we are done.
49d0b21b 147 */
5274f052 148 unlock_page(page);
5274f052
JA
149 }
150
f84d7519 151 return 0;
49d0b21b
JA
152error:
153 unlock_page(page);
f84d7519 154 return err;
70524490
JA
155}
156
708e3508 157const struct pipe_buf_operations page_cache_pipe_buf_ops = {
c928f642
CH
158 .confirm = page_cache_pipe_buf_confirm,
159 .release = page_cache_pipe_buf_release,
160 .try_steal = page_cache_pipe_buf_try_steal,
161 .get = generic_pipe_buf_get,
5274f052
JA
162};
163
c928f642
CH
164static bool user_page_pipe_buf_try_steal(struct pipe_inode_info *pipe,
165 struct pipe_buffer *buf)
912d35f8 166{
7afa6fd0 167 if (!(buf->flags & PIPE_BUF_FLAG_GIFT))
c928f642 168 return false;
7afa6fd0 169
1432873a 170 buf->flags |= PIPE_BUF_FLAG_LRU;
c928f642 171 return generic_pipe_buf_try_steal(pipe, buf);
912d35f8
JA
172}
173
d4c3cca9 174static const struct pipe_buf_operations user_page_pipe_buf_ops = {
c928f642
CH
175 .release = page_cache_pipe_buf_release,
176 .try_steal = user_page_pipe_buf_try_steal,
177 .get = generic_pipe_buf_get,
912d35f8
JA
178};
179
825cdcb1
NK
180static void wakeup_pipe_readers(struct pipe_inode_info *pipe)
181{
182 smp_mb();
0ddad21d
LT
183 if (waitqueue_active(&pipe->rd_wait))
184 wake_up_interruptible(&pipe->rd_wait);
825cdcb1
NK
185 kill_fasync(&pipe->fasync_readers, SIGIO, POLL_IN);
186}
187
932cc6d4
JA
188/**
189 * splice_to_pipe - fill passed data into a pipe
190 * @pipe: pipe to fill
191 * @spd: data to fill
192 *
193 * Description:
79685b8d 194 * @spd contains a map of pages and len/offset tuples, along with
932cc6d4
JA
195 * the struct pipe_buf_operations associated with these pages. This
196 * function will link that data to the pipe.
197 *
83f9135b 198 */
d6b29d7c
JA
199ssize_t splice_to_pipe(struct pipe_inode_info *pipe,
200 struct splice_pipe_desc *spd)
5274f052 201{
00de00bd 202 unsigned int spd_pages = spd->nr_pages;
8cefc107
DH
203 unsigned int tail = pipe->tail;
204 unsigned int head = pipe->head;
205 unsigned int mask = pipe->ring_size - 1;
8924feff 206 int ret = 0, page_nr = 0;
5274f052 207
d6785d91
RV
208 if (!spd_pages)
209 return 0;
210
8924feff
AV
211 if (unlikely(!pipe->readers)) {
212 send_sig(SIGPIPE, current, 0);
213 ret = -EPIPE;
214 goto out;
215 }
5274f052 216
6718b6f8 217 while (!pipe_full(head, tail, pipe->max_usage)) {
8cefc107 218 struct pipe_buffer *buf = &pipe->bufs[head & mask];
5274f052 219
8924feff
AV
220 buf->page = spd->pages[page_nr];
221 buf->offset = spd->partial[page_nr].offset;
222 buf->len = spd->partial[page_nr].len;
223 buf->private = spd->partial[page_nr].private;
224 buf->ops = spd->ops;
5a81e6a1 225 buf->flags = 0;
5274f052 226
8cefc107
DH
227 head++;
228 pipe->head = head;
8924feff
AV
229 page_nr++;
230 ret += buf->len;
29e35094 231
8924feff 232 if (!--spd->nr_pages)
5274f052 233 break;
5274f052
JA
234 }
235
8924feff
AV
236 if (!ret)
237 ret = -EAGAIN;
5274f052 238
8924feff 239out:
00de00bd 240 while (page_nr < spd_pages)
bbdfc2f7 241 spd->spd_release(spd, page_nr++);
5274f052
JA
242
243 return ret;
244}
2b514574 245EXPORT_SYMBOL_GPL(splice_to_pipe);
5274f052 246
79fddc4e
AV
247ssize_t add_to_pipe(struct pipe_inode_info *pipe, struct pipe_buffer *buf)
248{
8cefc107
DH
249 unsigned int head = pipe->head;
250 unsigned int tail = pipe->tail;
251 unsigned int mask = pipe->ring_size - 1;
79fddc4e
AV
252 int ret;
253
254 if (unlikely(!pipe->readers)) {
255 send_sig(SIGPIPE, current, 0);
256 ret = -EPIPE;
6718b6f8 257 } else if (pipe_full(head, tail, pipe->max_usage)) {
79fddc4e
AV
258 ret = -EAGAIN;
259 } else {
8cefc107
DH
260 pipe->bufs[head & mask] = *buf;
261 pipe->head = head + 1;
79fddc4e
AV
262 return buf->len;
263 }
a779638c 264 pipe_buf_release(pipe, buf);
79fddc4e
AV
265 return ret;
266}
267EXPORT_SYMBOL(add_to_pipe);
268
35f3d14d
JA
269/*
270 * Check if we need to grow the arrays holding pages and partial page
271 * descriptions.
272 */
047fe360 273int splice_grow_spd(const struct pipe_inode_info *pipe, struct splice_pipe_desc *spd)
35f3d14d 274{
6718b6f8 275 unsigned int max_usage = READ_ONCE(pipe->max_usage);
047fe360 276
8cefc107
DH
277 spd->nr_pages_max = max_usage;
278 if (max_usage <= PIPE_DEF_BUFFERS)
35f3d14d
JA
279 return 0;
280
8cefc107
DH
281 spd->pages = kmalloc_array(max_usage, sizeof(struct page *), GFP_KERNEL);
282 spd->partial = kmalloc_array(max_usage, sizeof(struct partial_page),
6da2ec56 283 GFP_KERNEL);
35f3d14d
JA
284
285 if (spd->pages && spd->partial)
286 return 0;
287
288 kfree(spd->pages);
289 kfree(spd->partial);
290 return -ENOMEM;
291}
292
047fe360 293void splice_shrink_spd(struct splice_pipe_desc *spd)
35f3d14d 294{
047fe360 295 if (spd->nr_pages_max <= PIPE_DEF_BUFFERS)
35f3d14d
JA
296 return;
297
298 kfree(spd->pages);
299 kfree(spd->partial);
300}
301
9eee8bd8
DH
302/**
303 * copy_splice_read - Copy data from a file and splice the copy into a pipe
304 * @in: The file to read from
305 * @ppos: Pointer to the file position to read from
306 * @pipe: The pipe to splice into
307 * @len: The amount to splice
308 * @flags: The SPLICE_F_* flags
309 *
310 * This function allocates a bunch of pages sufficient to hold the requested
311 * amount of data (but limited by the remaining pipe capacity), passes it to
312 * the file's ->read_iter() to read into and then splices the used pages into
313 * the pipe.
314 *
315 * Return: On success, the number of bytes read will be returned and *@ppos
316 * will be updated if appropriate; 0 will be returned if there is no more data
317 * to be read; -EAGAIN will be returned if the pipe had no space, and some
318 * other negative error code will be returned on error. A short read may occur
319 * if the pipe has insufficient space, we reach the end of the data or we hit a
320 * hole.
33b3b041 321 */
69df79a4
DH
322ssize_t copy_splice_read(struct file *in, loff_t *ppos,
323 struct pipe_inode_info *pipe,
324 size_t len, unsigned int flags)
33b3b041
DH
325{
326 struct iov_iter to;
327 struct bio_vec *bv;
328 struct kiocb kiocb;
329 struct page **pages;
330 ssize_t ret;
e69f37bc 331 size_t used, npages, chunk, remain, keep = 0;
33b3b041
DH
332 int i;
333
334 /* Work out how much data we can actually add into the pipe */
335 used = pipe_occupancy(pipe->head, pipe->tail);
336 npages = max_t(ssize_t, pipe->max_usage - used, 0);
337 len = min_t(size_t, len, npages * PAGE_SIZE);
338 npages = DIV_ROUND_UP(len, PAGE_SIZE);
339
340 bv = kzalloc(array_size(npages, sizeof(bv[0])) +
341 array_size(npages, sizeof(struct page *)), GFP_KERNEL);
342 if (!bv)
343 return -ENOMEM;
344
e69f37bc 345 pages = (struct page **)(bv + npages);
33b3b041
DH
346 npages = alloc_pages_bulk_array(GFP_USER, npages, pages);
347 if (!npages) {
348 kfree(bv);
349 return -ENOMEM;
350 }
351
352 remain = len = min_t(size_t, len, npages * PAGE_SIZE);
353
354 for (i = 0; i < npages; i++) {
355 chunk = min_t(size_t, PAGE_SIZE, remain);
356 bv[i].bv_page = pages[i];
357 bv[i].bv_offset = 0;
358 bv[i].bv_len = chunk;
359 remain -= chunk;
360 }
361
362 /* Do the I/O */
363 iov_iter_bvec(&to, ITER_DEST, bv, npages, len);
364 init_sync_kiocb(&kiocb, in);
365 kiocb.ki_pos = *ppos;
366 ret = call_read_iter(in, &kiocb, &to);
367
33b3b041 368 if (ret > 0) {
e69f37bc 369 keep = DIV_ROUND_UP(ret, PAGE_SIZE);
33b3b041 370 *ppos = kiocb.ki_pos;
33b3b041
DH
371 }
372
2e82f6c3
CH
373 /*
374 * Callers of ->splice_read() expect -EAGAIN on "can't put anything in
375 * there", rather than -EFAULT.
376 */
377 if (ret == -EFAULT)
378 ret = -EAGAIN;
379
33b3b041 380 /* Free any pages that didn't get touched at all. */
e69f37bc
DH
381 if (keep < npages)
382 release_pages(pages + keep, npages - keep);
33b3b041
DH
383
384 /* Push the remaining pages into the pipe. */
e69f37bc
DH
385 remain = ret;
386 for (i = 0; i < keep; i++) {
33b3b041
DH
387 struct pipe_buffer *buf = pipe_head_buf(pipe);
388
389 chunk = min_t(size_t, remain, PAGE_SIZE);
390 *buf = (struct pipe_buffer) {
391 .ops = &default_pipe_buf_ops,
392 .page = bv[i].bv_page,
393 .offset = 0,
394 .len = chunk,
395 };
396 pipe->head++;
397 remain -= chunk;
398 }
399
400 kfree(bv);
401 return ret;
402}
69df79a4 403EXPORT_SYMBOL(copy_splice_read);
33b3b041 404
241699cd 405const struct pipe_buf_operations default_pipe_buf_ops = {
c928f642
CH
406 .release = generic_pipe_buf_release,
407 .try_steal = generic_pipe_buf_try_steal,
408 .get = generic_pipe_buf_get,
6818173b
MS
409};
410
28a625cb
MS
411/* Pipe buffer operations for a socket and similar. */
412const struct pipe_buf_operations nosteal_pipe_buf_ops = {
c928f642
CH
413 .release = generic_pipe_buf_release,
414 .get = generic_pipe_buf_get,
28a625cb
MS
415};
416EXPORT_SYMBOL(nosteal_pipe_buf_ops);
417
b3c2d2dd
MS
418static void wakeup_pipe_writers(struct pipe_inode_info *pipe)
419{
420 smp_mb();
0ddad21d
LT
421 if (waitqueue_active(&pipe->wr_wait))
422 wake_up_interruptible(&pipe->wr_wait);
b3c2d2dd
MS
423 kill_fasync(&pipe->fasync_writers, SIGIO, POLL_OUT);
424}
425
932cc6d4 426/**
b3c2d2dd 427 * splice_from_pipe_feed - feed available data from a pipe to a file
932cc6d4
JA
428 * @pipe: pipe to splice from
429 * @sd: information to @actor
430 * @actor: handler that splices the data
431 *
432 * Description:
b3c2d2dd
MS
433 * This function loops over the pipe and calls @actor to do the
434 * actual moving of a single struct pipe_buffer to the desired
435 * destination. It returns when there's no more buffers left in
436 * the pipe or if the requested number of bytes (@sd->total_len)
437 * have been copied. It returns a positive number (one) if the
438 * pipe needs to be filled with more data, zero if the required
439 * number of bytes have been copied and -errno on error.
932cc6d4 440 *
b3c2d2dd
MS
441 * This, together with splice_from_pipe_{begin,end,next}, may be
442 * used to implement the functionality of __splice_from_pipe() when
443 * locking is required around copying the pipe buffers to the
444 * destination.
83f9135b 445 */
96f9bc8f 446static int splice_from_pipe_feed(struct pipe_inode_info *pipe, struct splice_desc *sd,
b3c2d2dd 447 splice_actor *actor)
5274f052 448{
8cefc107
DH
449 unsigned int head = pipe->head;
450 unsigned int tail = pipe->tail;
451 unsigned int mask = pipe->ring_size - 1;
b3c2d2dd 452 int ret;
5274f052 453
ec057595 454 while (!pipe_empty(head, tail)) {
8cefc107 455 struct pipe_buffer *buf = &pipe->bufs[tail & mask];
5274f052 456
b3c2d2dd
MS
457 sd->len = buf->len;
458 if (sd->len > sd->total_len)
459 sd->len = sd->total_len;
5274f052 460
fba597db 461 ret = pipe_buf_confirm(pipe, buf);
a8adbe37 462 if (unlikely(ret)) {
b3c2d2dd
MS
463 if (ret == -ENODATA)
464 ret = 0;
465 return ret;
466 }
a8adbe37
MM
467
468 ret = actor(pipe, buf, sd);
469 if (ret <= 0)
470 return ret;
471
b3c2d2dd
MS
472 buf->offset += ret;
473 buf->len -= ret;
474
475 sd->num_spliced += ret;
476 sd->len -= ret;
477 sd->pos += ret;
478 sd->total_len -= ret;
479
480 if (!buf->len) {
a779638c 481 pipe_buf_release(pipe, buf);
8cefc107
DH
482 tail++;
483 pipe->tail = tail;
6447a3cf 484 if (pipe->files)
b3c2d2dd
MS
485 sd->need_wakeup = true;
486 }
5274f052 487
b3c2d2dd
MS
488 if (!sd->total_len)
489 return 0;
490 }
5274f052 491
b3c2d2dd
MS
492 return 1;
493}
5274f052 494
d1a819a2
LT
495/* We know we have a pipe buffer, but maybe it's empty? */
496static inline bool eat_empty_buffer(struct pipe_inode_info *pipe)
497{
498 unsigned int tail = pipe->tail;
499 unsigned int mask = pipe->ring_size - 1;
500 struct pipe_buffer *buf = &pipe->bufs[tail & mask];
501
502 if (unlikely(!buf->len)) {
503 pipe_buf_release(pipe, buf);
504 pipe->tail = tail+1;
505 return true;
506 }
507
508 return false;
509}
510
b3c2d2dd
MS
511/**
512 * splice_from_pipe_next - wait for some data to splice from
513 * @pipe: pipe to splice from
514 * @sd: information about the splice operation
515 *
516 * Description:
517 * This function will wait for some data and return a positive
518 * value (one) if pipe buffers are available. It will return zero
519 * or -errno if no more data needs to be spliced.
520 */
96f9bc8f 521static int splice_from_pipe_next(struct pipe_inode_info *pipe, struct splice_desc *sd)
b3c2d2dd 522{
c725bfce
JK
523 /*
524 * Check for signal early to make process killable when there are
525 * always buffers available
526 */
527 if (signal_pending(current))
528 return -ERESTARTSYS;
529
d1a819a2 530repeat:
8cefc107 531 while (pipe_empty(pipe->head, pipe->tail)) {
b3c2d2dd
MS
532 if (!pipe->writers)
533 return 0;
016b661e 534
a28c8b9d 535 if (sd->num_spliced)
b3c2d2dd 536 return 0;
73d62d83 537
b3c2d2dd
MS
538 if (sd->flags & SPLICE_F_NONBLOCK)
539 return -EAGAIN;
5274f052 540
b3c2d2dd
MS
541 if (signal_pending(current))
542 return -ERESTARTSYS;
5274f052 543
b3c2d2dd
MS
544 if (sd->need_wakeup) {
545 wakeup_pipe_writers(pipe);
546 sd->need_wakeup = false;
5274f052
JA
547 }
548
472e5b05 549 pipe_wait_readable(pipe);
b3c2d2dd 550 }
29e35094 551
d1a819a2
LT
552 if (eat_empty_buffer(pipe))
553 goto repeat;
554
b3c2d2dd
MS
555 return 1;
556}
5274f052 557
b3c2d2dd
MS
558/**
559 * splice_from_pipe_begin - start splicing from pipe
b80901bb 560 * @sd: information about the splice operation
b3c2d2dd
MS
561 *
562 * Description:
563 * This function should be called before a loop containing
564 * splice_from_pipe_next() and splice_from_pipe_feed() to
565 * initialize the necessary fields of @sd.
566 */
96f9bc8f 567static void splice_from_pipe_begin(struct splice_desc *sd)
b3c2d2dd
MS
568{
569 sd->num_spliced = 0;
570 sd->need_wakeup = false;
571}
5274f052 572
b3c2d2dd
MS
573/**
574 * splice_from_pipe_end - finish splicing from pipe
575 * @pipe: pipe to splice from
576 * @sd: information about the splice operation
577 *
578 * Description:
579 * This function will wake up pipe writers if necessary. It should
580 * be called after a loop containing splice_from_pipe_next() and
581 * splice_from_pipe_feed().
582 */
96f9bc8f 583static void splice_from_pipe_end(struct pipe_inode_info *pipe, struct splice_desc *sd)
b3c2d2dd
MS
584{
585 if (sd->need_wakeup)
586 wakeup_pipe_writers(pipe);
587}
5274f052 588
b3c2d2dd
MS
589/**
590 * __splice_from_pipe - splice data from a pipe to given actor
591 * @pipe: pipe to splice from
592 * @sd: information to @actor
593 * @actor: handler that splices the data
594 *
595 * Description:
596 * This function does little more than loop over the pipe and call
597 * @actor to do the actual moving of a single struct pipe_buffer to
2dc334f1 598 * the desired destination. See pipe_to_file, pipe_to_sendmsg, or
b3c2d2dd
MS
599 * pipe_to_user.
600 *
601 */
602ssize_t __splice_from_pipe(struct pipe_inode_info *pipe, struct splice_desc *sd,
603 splice_actor *actor)
604{
605 int ret;
5274f052 606
b3c2d2dd
MS
607 splice_from_pipe_begin(sd);
608 do {
c2489e07 609 cond_resched();
b3c2d2dd
MS
610 ret = splice_from_pipe_next(pipe, sd);
611 if (ret > 0)
612 ret = splice_from_pipe_feed(pipe, sd, actor);
613 } while (ret > 0);
614 splice_from_pipe_end(pipe, sd);
615
616 return sd->num_spliced ? sd->num_spliced : ret;
5274f052 617}
40bee44e 618EXPORT_SYMBOL(__splice_from_pipe);
5274f052 619
932cc6d4
JA
620/**
621 * splice_from_pipe - splice data from a pipe to a file
622 * @pipe: pipe to splice from
623 * @out: file to splice to
624 * @ppos: position in @out
625 * @len: how many bytes to splice
626 * @flags: splice modifier flags
627 * @actor: handler that splices the data
628 *
629 * Description:
2933970b 630 * See __splice_from_pipe. This function locks the pipe inode,
932cc6d4
JA
631 * otherwise it's identical to __splice_from_pipe().
632 *
633 */
6da61809
MF
634ssize_t splice_from_pipe(struct pipe_inode_info *pipe, struct file *out,
635 loff_t *ppos, size_t len, unsigned int flags,
636 splice_actor *actor)
637{
638 ssize_t ret;
c66ab6fa
JA
639 struct splice_desc sd = {
640 .total_len = len,
641 .flags = flags,
642 .pos = *ppos,
6a14b90b 643 .u.file = out,
c66ab6fa 644 };
6da61809 645
61e0d47c 646 pipe_lock(pipe);
c66ab6fa 647 ret = __splice_from_pipe(pipe, &sd, actor);
61e0d47c 648 pipe_unlock(pipe);
6da61809
MF
649
650 return ret;
651}
652
8d020765
AV
653/**
654 * iter_file_splice_write - splice data from a pipe to a file
655 * @pipe: pipe info
656 * @out: file to write to
657 * @ppos: position in @out
658 * @len: number of bytes to splice
659 * @flags: splice modifier flags
660 *
661 * Description:
662 * Will either move or copy pages (determined by @flags options) from
663 * the given pipe inode to the given file.
664 * This one is ->write_iter-based.
665 *
666 */
667ssize_t
668iter_file_splice_write(struct pipe_inode_info *pipe, struct file *out,
669 loff_t *ppos, size_t len, unsigned int flags)
670{
671 struct splice_desc sd = {
672 .total_len = len,
673 .flags = flags,
674 .pos = *ppos,
675 .u.file = out,
676 };
6718b6f8 677 int nbufs = pipe->max_usage;
8d020765
AV
678 struct bio_vec *array = kcalloc(nbufs, sizeof(struct bio_vec),
679 GFP_KERNEL);
680 ssize_t ret;
681
682 if (unlikely(!array))
683 return -ENOMEM;
684
685 pipe_lock(pipe);
686
687 splice_from_pipe_begin(&sd);
688 while (sd.total_len) {
689 struct iov_iter from;
ec057595 690 unsigned int head, tail, mask;
8d020765 691 size_t left;
8cefc107 692 int n;
8d020765
AV
693
694 ret = splice_from_pipe_next(pipe, &sd);
695 if (ret <= 0)
696 break;
697
6718b6f8 698 if (unlikely(nbufs < pipe->max_usage)) {
8d020765 699 kfree(array);
6718b6f8 700 nbufs = pipe->max_usage;
8d020765
AV
701 array = kcalloc(nbufs, sizeof(struct bio_vec),
702 GFP_KERNEL);
703 if (!array) {
704 ret = -ENOMEM;
705 break;
706 }
707 }
708
ec057595
LT
709 head = pipe->head;
710 tail = pipe->tail;
711 mask = pipe->ring_size - 1;
712
8d020765
AV
713 /* build the vector */
714 left = sd.total_len;
0f1d344f 715 for (n = 0; !pipe_empty(head, tail) && left && n < nbufs; tail++) {
8cefc107 716 struct pipe_buffer *buf = &pipe->bufs[tail & mask];
8d020765
AV
717 size_t this_len = buf->len;
718
0f1d344f
PB
719 /* zero-length bvecs are not supported, skip them */
720 if (!this_len)
721 continue;
722 this_len = min(this_len, left);
8d020765 723
fba597db 724 ret = pipe_buf_confirm(pipe, buf);
8d020765
AV
725 if (unlikely(ret)) {
726 if (ret == -ENODATA)
727 ret = 0;
728 goto done;
729 }
730
664e4078
CH
731 bvec_set_page(&array[n], buf->page, this_len,
732 buf->offset);
8d020765 733 left -= this_len;
0f1d344f 734 n++;
8d020765
AV
735 }
736
de4eda9d 737 iov_iter_bvec(&from, ITER_SOURCE, array, n, sd.total_len - left);
abbb6589 738 ret = vfs_iter_write(out, &from, &sd.pos, 0);
8d020765
AV
739 if (ret <= 0)
740 break;
741
742 sd.num_spliced += ret;
743 sd.total_len -= ret;
dbe4e192 744 *ppos = sd.pos;
8d020765
AV
745
746 /* dismiss the fully eaten buffers, adjust the partial one */
8cefc107 747 tail = pipe->tail;
8d020765 748 while (ret) {
8cefc107 749 struct pipe_buffer *buf = &pipe->bufs[tail & mask];
8d020765 750 if (ret >= buf->len) {
8d020765
AV
751 ret -= buf->len;
752 buf->len = 0;
a779638c 753 pipe_buf_release(pipe, buf);
8cefc107
DH
754 tail++;
755 pipe->tail = tail;
8d020765
AV
756 if (pipe->files)
757 sd.need_wakeup = true;
758 } else {
759 buf->offset += ret;
760 buf->len -= ret;
761 ret = 0;
762 }
763 }
764 }
765done:
766 kfree(array);
767 splice_from_pipe_end(pipe, &sd);
768
769 pipe_unlock(pipe);
770
771 if (sd.num_spliced)
772 ret = sd.num_spliced;
773
774 return ret;
775}
776
777EXPORT_SYMBOL(iter_file_splice_write);
778
2dc334f1 779#ifdef CONFIG_NET
83f9135b 780/**
2dc334f1 781 * splice_to_socket - splice data from a pipe to a socket
932cc6d4 782 * @pipe: pipe to splice from
83f9135b 783 * @out: socket to write to
932cc6d4 784 * @ppos: position in @out
83f9135b
JA
785 * @len: number of bytes to splice
786 * @flags: splice modifier flags
787 *
932cc6d4
JA
788 * Description:
789 * Will send @len bytes from the pipe to a network socket. No data copying
790 * is involved.
83f9135b
JA
791 *
792 */
2dc334f1
DH
793ssize_t splice_to_socket(struct pipe_inode_info *pipe, struct file *out,
794 loff_t *ppos, size_t len, unsigned int flags)
5274f052 795{
2dc334f1
DH
796 struct socket *sock = sock_from_file(out);
797 struct bio_vec bvec[16];
798 struct msghdr msg = {};
799 ssize_t ret = 0;
800 size_t spliced = 0;
801 bool need_wakeup = false;
802
803 pipe_lock(pipe);
804
805 while (len > 0) {
806 unsigned int head, tail, mask, bc = 0;
807 size_t remain = len;
808
809 /*
810 * Check for signal early to make process killable when there
811 * are always buffers available
812 */
813 ret = -ERESTARTSYS;
814 if (signal_pending(current))
815 break;
816
817 while (pipe_empty(pipe->head, pipe->tail)) {
818 ret = 0;
819 if (!pipe->writers)
820 goto out;
821
822 if (spliced)
823 goto out;
824
825 ret = -EAGAIN;
826 if (flags & SPLICE_F_NONBLOCK)
827 goto out;
828
829 ret = -ERESTARTSYS;
830 if (signal_pending(current))
831 goto out;
832
833 if (need_wakeup) {
834 wakeup_pipe_writers(pipe);
835 need_wakeup = false;
836 }
837
838 pipe_wait_readable(pipe);
839 }
840
841 head = pipe->head;
842 tail = pipe->tail;
843 mask = pipe->ring_size - 1;
844
845 while (!pipe_empty(head, tail)) {
846 struct pipe_buffer *buf = &pipe->bufs[tail & mask];
847 size_t seg;
848
849 if (!buf->len) {
850 tail++;
851 continue;
852 }
5274f052 853
2dc334f1 854 seg = min_t(size_t, remain, buf->len);
2dc334f1
DH
855
856 ret = pipe_buf_confirm(pipe, buf);
857 if (unlikely(ret)) {
858 if (ret == -ENODATA)
859 ret = 0;
860 break;
861 }
5274f052 862
2dc334f1
DH
863 bvec_set_page(&bvec[bc++], buf->page, seg, buf->offset);
864 remain -= seg;
ca2d49f7 865 if (remain == 0 || bc >= ARRAY_SIZE(bvec))
2dc334f1 866 break;
ca2d49f7 867 tail++;
2dc334f1
DH
868 }
869
870 if (!bc)
871 break;
872
873 msg.msg_flags = MSG_SPLICE_PAGES;
874 if (flags & SPLICE_F_MORE)
875 msg.msg_flags |= MSG_MORE;
876 if (remain && pipe_occupancy(pipe->head, tail) > 0)
877 msg.msg_flags |= MSG_MORE;
0f0fa27b
JS
878 if (out->f_flags & O_NONBLOCK)
879 msg.msg_flags |= MSG_DONTWAIT;
2dc334f1
DH
880
881 iov_iter_bvec(&msg.msg_iter, ITER_SOURCE, bvec, bc,
882 len - remain);
883 ret = sock_sendmsg(sock, &msg);
884 if (ret <= 0)
885 break;
886
887 spliced += ret;
888 len -= ret;
889 tail = pipe->tail;
890 while (ret > 0) {
891 struct pipe_buffer *buf = &pipe->bufs[tail & mask];
892 size_t seg = min_t(size_t, ret, buf->len);
893
894 buf->offset += seg;
895 buf->len -= seg;
896 ret -= seg;
897
898 if (!buf->len) {
899 pipe_buf_release(pipe, buf);
900 tail++;
901 }
902 }
903
904 if (tail != pipe->tail) {
905 pipe->tail = tail;
906 if (pipe->files)
907 need_wakeup = true;
908 }
909 }
910
911out:
912 pipe_unlock(pipe);
913 if (need_wakeup)
914 wakeup_pipe_writers(pipe);
915 return spliced ?: ret;
916}
917#endif
a0f06780 918
36e2c742
CH
919static int warn_unsupported(struct file *file, const char *op)
920{
921 pr_debug_ratelimited(
922 "splice %s not supported for file %pD4 (pid: %d comm: %.20s)\n",
923 op, file, current->pid, current->comm);
924 return -EINVAL;
925}
926
83f9135b
JA
927/*
928 * Attempt to initiate a splice from pipe to file.
929 */
3a326a2c 930static long do_splice_from(struct pipe_inode_info *pipe, struct file *out,
cbb7e577 931 loff_t *ppos, size_t len, unsigned int flags)
5274f052 932{
36e2c742
CH
933 if (unlikely(!out->f_op->splice_write))
934 return warn_unsupported(out, "write");
935 return out->f_op->splice_write(pipe, out, ppos, len, flags);
5274f052
JA
936}
937
2bfc6685
DH
938/*
939 * Indicate to the caller that there was a premature EOF when reading from the
940 * source and the caller didn't indicate they would be sending more data after
941 * this.
942 */
943static void do_splice_eof(struct splice_desc *sd)
944{
945 if (sd->splice_eof)
946 sd->splice_eof(sd);
947}
948
6a3f30b8
DH
949/**
950 * vfs_splice_read - Read data from a file and splice it into a pipe
951 * @in: File to splice from
952 * @ppos: Input file offset
953 * @pipe: Pipe to splice to
954 * @len: Number of bytes to splice
955 * @flags: Splice modifier flags (SPLICE_F_*)
956 *
957 * Splice the requested amount of data from the input file to the pipe. This
958 * is synchronous as the caller must hold the pipe lock across the entire
959 * operation.
960 *
961 * If successful, it returns the amount of data spliced, 0 if it hit the EOF or
962 * a hole and a negative error code otherwise.
83f9135b 963 */
6a3f30b8
DH
964long vfs_splice_read(struct file *in, loff_t *ppos,
965 struct pipe_inode_info *pipe, size_t len,
966 unsigned int flags)
5274f052 967{
313d64a3 968 unsigned int p_space;
5274f052
JA
969 int ret;
970
49570e9b 971 if (unlikely(!(in->f_mode & FMODE_READ)))
5274f052 972 return -EBADF;
123856f0
DH
973 if (!len)
974 return 0;
5274f052 975
313d64a3
AV
976 /* Don't try to read more the pipe has space for. */
977 p_space = pipe->max_usage - pipe_occupancy(pipe->head, pipe->tail);
978 len = min_t(size_t, len, p_space << PAGE_SHIFT);
979
cbb7e577 980 ret = rw_verify_area(READ, in, ppos, len);
5274f052
JA
981 if (unlikely(ret < 0))
982 return ret;
983
03cc0789
AV
984 if (unlikely(len > MAX_RW_COUNT))
985 len = MAX_RW_COUNT;
986
36e2c742
CH
987 if (unlikely(!in->f_op->splice_read))
988 return warn_unsupported(in, "read");
aa3dbde8 989 /*
b85930a0
DH
990 * O_DIRECT and DAX don't deal with the pagecache, so we allocate a
991 * buffer, copy into it and splice that into the pipe.
aa3dbde8 992 */
b85930a0 993 if ((in->f_flags & O_DIRECT) || IS_DAX(in->f_mapping->host))
aa3dbde8 994 return copy_splice_read(in, ppos, pipe, len, flags);
36e2c742 995 return in->f_op->splice_read(in, ppos, pipe, len, flags);
5274f052 996}
6a3f30b8 997EXPORT_SYMBOL_GPL(vfs_splice_read);
5274f052 998
932cc6d4
JA
999/**
1000 * splice_direct_to_actor - splices data directly between two non-pipes
1001 * @in: file to splice from
1002 * @sd: actor information on where to splice to
1003 * @actor: handles the data splicing
1004 *
1005 * Description:
1006 * This is a special case helper to splice directly between two
1007 * points, without requiring an explicit pipe. Internally an allocated
79685b8d 1008 * pipe is cached in the process, and reused during the lifetime of
932cc6d4
JA
1009 * that process.
1010 *
c66ab6fa
JA
1011 */
1012ssize_t splice_direct_to_actor(struct file *in, struct splice_desc *sd,
1013 splice_direct_actor *actor)
b92ce558
JA
1014{
1015 struct pipe_inode_info *pipe;
1016 long ret, bytes;
c66ab6fa 1017 size_t len;
0ff28d9f 1018 int i, flags, more;
b92ce558
JA
1019
1020 /*
97ef77c5
JD
1021 * We require the input to be seekable, as we don't want to randomly
1022 * drop data for eg socket -> socket splicing. Use the piped splicing
1023 * for that!
b92ce558 1024 */
97ef77c5 1025 if (unlikely(!(in->f_mode & FMODE_LSEEK)))
b92ce558
JA
1026 return -EINVAL;
1027
1028 /*
1029 * neither in nor out is a pipe, setup an internal pipe attached to
1030 * 'out' and transfer the wanted data from 'in' to 'out' through that
1031 */
1032 pipe = current->splice_pipe;
49570e9b 1033 if (unlikely(!pipe)) {
7bee130e 1034 pipe = alloc_pipe_info();
b92ce558
JA
1035 if (!pipe)
1036 return -ENOMEM;
1037
1038 /*
1039 * We don't have an immediate reader, but we'll read the stuff
00522fb4 1040 * out of the pipe right after the splice_to_pipe(). So set
b92ce558
JA
1041 * PIPE_READERS appropriately.
1042 */
1043 pipe->readers = 1;
1044
1045 current->splice_pipe = pipe;
1046 }
1047
1048 /*
73d62d83 1049 * Do the splice.
b92ce558 1050 */
b92ce558 1051 bytes = 0;
c66ab6fa 1052 len = sd->total_len;
219d9205
DH
1053
1054 /* Don't block on output, we have to drain the direct pipe. */
c66ab6fa 1055 flags = sd->flags;
219d9205 1056 sd->flags &= ~SPLICE_F_NONBLOCK;
c66ab6fa
JA
1057
1058 /*
219d9205
DH
1059 * We signal MORE until we've read sufficient data to fulfill the
1060 * request and we keep signalling it if the caller set it.
c66ab6fa 1061 */
0ff28d9f 1062 more = sd->flags & SPLICE_F_MORE;
219d9205 1063 sd->flags |= SPLICE_F_MORE;
b92ce558 1064
8cefc107 1065 WARN_ON_ONCE(!pipe_empty(pipe->head, pipe->tail));
17614445 1066
b92ce558 1067 while (len) {
51a92c0f 1068 size_t read_len;
a82c53a0 1069 loff_t pos = sd->pos, prev_pos = pos;
b92ce558 1070
6a3f30b8 1071 ret = vfs_splice_read(in, &pos, pipe, len, flags);
51a92c0f 1072 if (unlikely(ret <= 0))
2bfc6685 1073 goto read_failure;
b92ce558
JA
1074
1075 read_len = ret;
c66ab6fa 1076 sd->total_len = read_len;
b92ce558 1077
0ff28d9f 1078 /*
219d9205
DH
1079 * If we now have sufficient data to fulfill the request then
1080 * we clear SPLICE_F_MORE if it was not set initially.
0ff28d9f 1081 */
219d9205 1082 if (read_len >= len && !more)
0ff28d9f 1083 sd->flags &= ~SPLICE_F_MORE;
219d9205 1084
b92ce558
JA
1085 /*
1086 * NOTE: nonblocking mode only applies to the input. We
1087 * must not do the output in nonblocking mode as then we
1088 * could get stuck data in the internal pipe:
1089 */
c66ab6fa 1090 ret = actor(pipe, sd);
a82c53a0
TZ
1091 if (unlikely(ret <= 0)) {
1092 sd->pos = prev_pos;
b92ce558 1093 goto out_release;
a82c53a0 1094 }
b92ce558
JA
1095
1096 bytes += ret;
1097 len -= ret;
bcd4f3ac 1098 sd->pos = pos;
b92ce558 1099
a82c53a0
TZ
1100 if (ret < read_len) {
1101 sd->pos = prev_pos + ret;
51a92c0f 1102 goto out_release;
a82c53a0 1103 }
b92ce558
JA
1104 }
1105
9e97198d 1106done:
8cefc107 1107 pipe->tail = pipe->head = 0;
80848708 1108 file_accessed(in);
b92ce558
JA
1109 return bytes;
1110
2bfc6685
DH
1111read_failure:
1112 /*
1113 * If the user did *not* set SPLICE_F_MORE *and* we didn't hit that
1114 * "use all of len" case that cleared SPLICE_F_MORE, *and* we did a
1115 * "->splice_in()" that returned EOF (ie zero) *and* we have sent at
1116 * least 1 byte *then* we will also do the ->splice_eof() call.
1117 */
1118 if (ret == 0 && !more && len > 0 && bytes)
1119 do_splice_eof(sd);
b92ce558
JA
1120out_release:
1121 /*
1122 * If we did an incomplete transfer we must release
1123 * the pipe buffers in question:
1124 */
8cefc107
DH
1125 for (i = 0; i < pipe->ring_size; i++) {
1126 struct pipe_buffer *buf = &pipe->bufs[i];
b92ce558 1127
a779638c
MS
1128 if (buf->ops)
1129 pipe_buf_release(pipe, buf);
b92ce558 1130 }
b92ce558 1131
9e97198d
JA
1132 if (!bytes)
1133 bytes = ret;
c66ab6fa 1134
9e97198d 1135 goto done;
c66ab6fa
JA
1136}
1137EXPORT_SYMBOL(splice_direct_to_actor);
1138
1139static int direct_splice_actor(struct pipe_inode_info *pipe,
1140 struct splice_desc *sd)
1141{
6a14b90b 1142 struct file *file = sd->u.file;
c66ab6fa 1143
7995bd28 1144 return do_splice_from(pipe, file, sd->opos, sd->total_len,
2cb4b05e 1145 sd->flags);
c66ab6fa
JA
1146}
1147
2bfc6685
DH
1148static void direct_file_splice_eof(struct splice_desc *sd)
1149{
1150 struct file *file = sd->u.file;
1151
1152 if (file->f_op->splice_eof)
1153 file->f_op->splice_eof(file);
1154}
1155
932cc6d4
JA
1156/**
1157 * do_splice_direct - splices data directly between two files
1158 * @in: file to splice from
1159 * @ppos: input file offset
1160 * @out: file to splice to
acdb37c3 1161 * @opos: output file offset
932cc6d4
JA
1162 * @len: number of bytes to splice
1163 * @flags: splice modifier flags
1164 *
1165 * Description:
1166 * For use by do_sendfile(). splice can easily emulate sendfile, but
1167 * doing it in the application would incur an extra system call
1168 * (splice in + splice out, as compared to just sendfile()). So this helper
1169 * can splice directly through a process-private pipe.
1170 *
1171 */
c66ab6fa 1172long do_splice_direct(struct file *in, loff_t *ppos, struct file *out,
7995bd28 1173 loff_t *opos, size_t len, unsigned int flags)
c66ab6fa
JA
1174{
1175 struct splice_desc sd = {
1176 .len = len,
1177 .total_len = len,
1178 .flags = flags,
1179 .pos = *ppos,
6a14b90b 1180 .u.file = out,
2bfc6685 1181 .splice_eof = direct_file_splice_eof,
7995bd28 1182 .opos = opos,
c66ab6fa 1183 };
51a92c0f 1184 long ret;
c66ab6fa 1185
18c67cb9
AV
1186 if (unlikely(!(out->f_mode & FMODE_WRITE)))
1187 return -EBADF;
1188
1189 if (unlikely(out->f_flags & O_APPEND))
1190 return -EINVAL;
1191
1192 ret = rw_verify_area(WRITE, out, opos, len);
1193 if (unlikely(ret < 0))
1194 return ret;
1195
c66ab6fa 1196 ret = splice_direct_to_actor(in, &sd, direct_splice_actor);
51a92c0f 1197 if (ret > 0)
a82c53a0 1198 *ppos = sd.pos;
51a92c0f 1199
c66ab6fa 1200 return ret;
b92ce558 1201}
1c118596 1202EXPORT_SYMBOL(do_splice_direct);
b92ce558 1203
8924feff
AV
1204static int wait_for_space(struct pipe_inode_info *pipe, unsigned flags)
1205{
52bce911
LT
1206 for (;;) {
1207 if (unlikely(!pipe->readers)) {
1208 send_sig(SIGPIPE, current, 0);
1209 return -EPIPE;
1210 }
6718b6f8 1211 if (!pipe_full(pipe->head, pipe->tail, pipe->max_usage))
52bce911 1212 return 0;
8924feff
AV
1213 if (flags & SPLICE_F_NONBLOCK)
1214 return -EAGAIN;
1215 if (signal_pending(current))
1216 return -ERESTARTSYS;
472e5b05 1217 pipe_wait_writable(pipe);
8924feff 1218 }
8924feff
AV
1219}
1220
7c77f0b3
MS
1221static int splice_pipe_to_pipe(struct pipe_inode_info *ipipe,
1222 struct pipe_inode_info *opipe,
1223 size_t len, unsigned int flags);
ddac0d39 1224
b964bf53 1225long splice_file_to_pipe(struct file *in,
faa97c48
AV
1226 struct pipe_inode_info *opipe,
1227 loff_t *offset,
1228 size_t len, unsigned int flags)
1229{
1230 long ret;
1231
1232 pipe_lock(opipe);
1233 ret = wait_for_space(opipe, flags);
1234 if (!ret)
6a3f30b8 1235 ret = vfs_splice_read(in, offset, opipe, len, flags);
faa97c48
AV
1236 pipe_unlock(opipe);
1237 if (ret > 0)
1238 wakeup_pipe_readers(opipe);
1239 return ret;
1240}
1241
83f9135b
JA
1242/*
1243 * Determine where to splice to/from.
1244 */
ee6e00c8
JA
1245long do_splice(struct file *in, loff_t *off_in, struct file *out,
1246 loff_t *off_out, size_t len, unsigned int flags)
5274f052 1247{
7c77f0b3
MS
1248 struct pipe_inode_info *ipipe;
1249 struct pipe_inode_info *opipe;
7995bd28 1250 loff_t offset;
a4514ebd 1251 long ret;
5274f052 1252
90da2e3f
PB
1253 if (unlikely(!(in->f_mode & FMODE_READ) ||
1254 !(out->f_mode & FMODE_WRITE)))
1255 return -EBADF;
1256
c73be61c
DH
1257 ipipe = get_pipe_info(in, true);
1258 opipe = get_pipe_info(out, true);
7c77f0b3
MS
1259
1260 if (ipipe && opipe) {
1261 if (off_in || off_out)
1262 return -ESPIPE;
1263
7c77f0b3
MS
1264 /* Splicing to self would be fun, but... */
1265 if (ipipe == opipe)
1266 return -EINVAL;
1267
ee5e0011
SK
1268 if ((in->f_flags | out->f_flags) & O_NONBLOCK)
1269 flags |= SPLICE_F_NONBLOCK;
1270
7c77f0b3
MS
1271 return splice_pipe_to_pipe(ipipe, opipe, len, flags);
1272 }
1273
1274 if (ipipe) {
529565dc
IM
1275 if (off_in)
1276 return -ESPIPE;
b92ce558 1277 if (off_out) {
19c9a49b 1278 if (!(out->f_mode & FMODE_PWRITE))
b92ce558 1279 return -EINVAL;
ee6e00c8 1280 offset = *off_out;
7995bd28
AV
1281 } else {
1282 offset = out->f_pos;
1283 }
529565dc 1284
18c67cb9
AV
1285 if (unlikely(out->f_flags & O_APPEND))
1286 return -EINVAL;
1287
1288 ret = rw_verify_area(WRITE, out, &offset, len);
1289 if (unlikely(ret < 0))
1290 return ret;
1291
ee5e0011
SK
1292 if (in->f_flags & O_NONBLOCK)
1293 flags |= SPLICE_F_NONBLOCK;
1294
500368f7 1295 file_start_write(out);
7995bd28 1296 ret = do_splice_from(ipipe, out, &offset, len, flags);
500368f7 1297 file_end_write(out);
a4514ebd 1298
983652c6
CCC
1299 if (ret > 0)
1300 fsnotify_modify(out);
1301
7995bd28
AV
1302 if (!off_out)
1303 out->f_pos = offset;
ee6e00c8
JA
1304 else
1305 *off_out = offset;
a4514ebd
JA
1306
1307 return ret;
529565dc 1308 }
5274f052 1309
7c77f0b3 1310 if (opipe) {
529565dc
IM
1311 if (off_out)
1312 return -ESPIPE;
b92ce558 1313 if (off_in) {
19c9a49b 1314 if (!(in->f_mode & FMODE_PREAD))
b92ce558 1315 return -EINVAL;
ee6e00c8 1316 offset = *off_in;
7995bd28
AV
1317 } else {
1318 offset = in->f_pos;
1319 }
529565dc 1320
ee5e0011
SK
1321 if (out->f_flags & O_NONBLOCK)
1322 flags |= SPLICE_F_NONBLOCK;
1323
faa97c48 1324 ret = splice_file_to_pipe(in, opipe, &offset, len, flags);
983652c6
CCC
1325
1326 if (ret > 0)
1327 fsnotify_access(in);
1328
7995bd28
AV
1329 if (!off_in)
1330 in->f_pos = offset;
ee6e00c8
JA
1331 else
1332 *off_in = offset;
a4514ebd
JA
1333
1334 return ret;
529565dc 1335 }
5274f052
JA
1336
1337 return -EINVAL;
1338}
1339
ee6e00c8
JA
1340static long __do_splice(struct file *in, loff_t __user *off_in,
1341 struct file *out, loff_t __user *off_out,
1342 size_t len, unsigned int flags)
1343{
1344 struct pipe_inode_info *ipipe;
1345 struct pipe_inode_info *opipe;
1346 loff_t offset, *__off_in = NULL, *__off_out = NULL;
1347 long ret;
1348
1349 ipipe = get_pipe_info(in, true);
1350 opipe = get_pipe_info(out, true);
1351
0f99fc51
JA
1352 if (ipipe) {
1353 if (off_in)
1354 return -ESPIPE;
1355 pipe_clear_nowait(in);
1356 }
1357 if (opipe) {
1358 if (off_out)
1359 return -ESPIPE;
1360 pipe_clear_nowait(out);
1361 }
ee6e00c8
JA
1362
1363 if (off_out) {
1364 if (copy_from_user(&offset, off_out, sizeof(loff_t)))
1365 return -EFAULT;
1366 __off_out = &offset;
1367 }
1368 if (off_in) {
1369 if (copy_from_user(&offset, off_in, sizeof(loff_t)))
1370 return -EFAULT;
1371 __off_in = &offset;
1372 }
1373
1374 ret = do_splice(in, __off_in, out, __off_out, len, flags);
1375 if (ret < 0)
1376 return ret;
1377
1378 if (__off_out && copy_to_user(off_out, __off_out, sizeof(loff_t)))
1379 return -EFAULT;
1380 if (__off_in && copy_to_user(off_in, __off_in, sizeof(loff_t)))
1381 return -EFAULT;
1382
1383 return ret;
1384}
1385
79fddc4e
AV
1386static int iter_to_pipe(struct iov_iter *from,
1387 struct pipe_inode_info *pipe,
1388 unsigned flags)
912d35f8 1389{
79fddc4e
AV
1390 struct pipe_buffer buf = {
1391 .ops = &user_page_pipe_buf_ops,
1392 .flags = flags
1393 };
1394 size_t total = 0;
1395 int ret = 0;
79fddc4e 1396
7d690c15 1397 while (iov_iter_count(from)) {
79fddc4e 1398 struct page *pages[16];
7d690c15 1399 ssize_t left;
db85a9eb 1400 size_t start;
7d690c15 1401 int i, n;
db85a9eb 1402
7d690c15
AV
1403 left = iov_iter_get_pages2(from, pages, ~0UL, 16, &start);
1404 if (left <= 0) {
1405 ret = left;
79fddc4e
AV
1406 break;
1407 }
db85a9eb 1408
7d690c15
AV
1409 n = DIV_ROUND_UP(left + start, PAGE_SIZE);
1410 for (i = 0; i < n; i++) {
1411 int size = min_t(int, left, PAGE_SIZE - start);
1412
1413 buf.page = pages[i];
1414 buf.offset = start;
1415 buf.len = size;
1416 ret = add_to_pipe(pipe, &buf);
1417 if (unlikely(ret < 0)) {
1418 iov_iter_revert(from, left);
1419 // this one got dropped by add_to_pipe()
1420 while (++i < n)
1421 put_page(pages[i]);
1422 goto out;
79fddc4e 1423 }
7d690c15
AV
1424 total += ret;
1425 left -= size;
1426 start = 0;
912d35f8 1427 }
912d35f8 1428 }
7d690c15 1429out:
79fddc4e 1430 return total ? total : ret;
912d35f8
JA
1431}
1432
6a14b90b
JA
1433static int pipe_to_user(struct pipe_inode_info *pipe, struct pipe_buffer *buf,
1434 struct splice_desc *sd)
1435{
6130f531
AV
1436 int n = copy_page_to_iter(buf->page, buf->offset, sd->len, sd->u.data);
1437 return n == sd->len ? n : -EFAULT;
6a14b90b
JA
1438}
1439
1440/*
1441 * For lack of a better implementation, implement vmsplice() to userspace
1442 * as a simple copy of the pipes pages to the user iov.
1443 */
87a3002a
AV
1444static long vmsplice_to_user(struct file *file, struct iov_iter *iter,
1445 unsigned int flags)
6a14b90b 1446{
c73be61c 1447 struct pipe_inode_info *pipe = get_pipe_info(file, true);
87a3002a
AV
1448 struct splice_desc sd = {
1449 .total_len = iov_iter_count(iter),
1450 .flags = flags,
1451 .u.data = iter
1452 };
1453 long ret = 0;
6a14b90b 1454
6a14b90b
JA
1455 if (!pipe)
1456 return -EBADF;
1457
0f99fc51
JA
1458 pipe_clear_nowait(file);
1459
345995fa
AV
1460 if (sd.total_len) {
1461 pipe_lock(pipe);
1462 ret = __splice_from_pipe(pipe, &sd, pipe_to_user);
1463 pipe_unlock(pipe);
1464 }
6a14b90b
JA
1465
1466 return ret;
1467}
1468
912d35f8
JA
1469/*
1470 * vmsplice splices a user address range into a pipe. It can be thought of
1471 * as splice-from-memory, where the regular splice is splice-from-file (or
1472 * to file). In both cases the output is a pipe, naturally.
912d35f8 1473 */
87a3002a
AV
1474static long vmsplice_to_pipe(struct file *file, struct iov_iter *iter,
1475 unsigned int flags)
912d35f8 1476{
ddac0d39 1477 struct pipe_inode_info *pipe;
87a3002a 1478 long ret = 0;
79fddc4e
AV
1479 unsigned buf_flag = 0;
1480
1481 if (flags & SPLICE_F_GIFT)
1482 buf_flag = PIPE_BUF_FLAG_GIFT;
912d35f8 1483
c73be61c 1484 pipe = get_pipe_info(file, true);
ddac0d39 1485 if (!pipe)
912d35f8 1486 return -EBADF;
912d35f8 1487
0f99fc51
JA
1488 pipe_clear_nowait(file);
1489
8924feff
AV
1490 pipe_lock(pipe);
1491 ret = wait_for_space(pipe, flags);
79fddc4e 1492 if (!ret)
87a3002a 1493 ret = iter_to_pipe(iter, pipe, buf_flag);
8924feff
AV
1494 pipe_unlock(pipe);
1495 if (ret > 0)
1496 wakeup_pipe_readers(pipe);
35f3d14d 1497 return ret;
912d35f8
JA
1498}
1499
87a3002a
AV
1500static int vmsplice_type(struct fd f, int *type)
1501{
1502 if (!f.file)
1503 return -EBADF;
1504 if (f.file->f_mode & FMODE_WRITE) {
de4eda9d 1505 *type = ITER_SOURCE;
87a3002a 1506 } else if (f.file->f_mode & FMODE_READ) {
de4eda9d 1507 *type = ITER_DEST;
87a3002a
AV
1508 } else {
1509 fdput(f);
1510 return -EBADF;
1511 }
1512 return 0;
1513}
1514
6a14b90b
JA
1515/*
1516 * Note that vmsplice only really supports true splicing _from_ user memory
1517 * to a pipe, not the other way around. Splicing from user memory is a simple
1518 * operation that can be supported without any funky alignment restrictions
1519 * or nasty vm tricks. We simply map in the user memory and fill them into
1520 * a pipe. The reverse isn't quite as easy, though. There are two possible
1521 * solutions for that:
1522 *
1523 * - memcpy() the data internally, at which point we might as well just
1524 * do a regular read() on the buffer anyway.
1525 * - Lots of nasty vm tricks, that are neither fast nor flexible (it
1526 * has restriction limitations on both ends of the pipe).
1527 *
1528 * Currently we punt and implement it as a normal copy, see pipe_to_user().
1529 *
1530 */
87a3002a 1531SYSCALL_DEFINE4(vmsplice, int, fd, const struct iovec __user *, uiov,
30cfe4ef
DB
1532 unsigned long, nr_segs, unsigned int, flags)
1533{
87a3002a
AV
1534 struct iovec iovstack[UIO_FASTIOV];
1535 struct iovec *iov = iovstack;
1536 struct iov_iter iter;
87e5e6da 1537 ssize_t error;
87a3002a
AV
1538 struct fd f;
1539 int type;
1540
598b3cec
CH
1541 if (unlikely(flags & ~SPLICE_F_ALL))
1542 return -EINVAL;
1543
87a3002a
AV
1544 f = fdget(fd);
1545 error = vmsplice_type(f, &type);
1546 if (error)
1547 return error;
1548
1549 error = import_iovec(type, uiov, nr_segs,
1550 ARRAY_SIZE(iovstack), &iov, &iter);
598b3cec
CH
1551 if (error < 0)
1552 goto out_fdput;
30cfe4ef 1553
598b3cec
CH
1554 if (!iov_iter_count(&iter))
1555 error = 0;
de4eda9d 1556 else if (type == ITER_SOURCE)
598b3cec
CH
1557 error = vmsplice_to_pipe(f.file, &iter, flags);
1558 else
1559 error = vmsplice_to_user(f.file, &iter, flags);
87a3002a 1560
598b3cec
CH
1561 kfree(iov);
1562out_fdput:
87a3002a
AV
1563 fdput(f);
1564 return error;
76b021d0 1565}
76b021d0 1566
836f92ad
HC
1567SYSCALL_DEFINE6(splice, int, fd_in, loff_t __user *, off_in,
1568 int, fd_out, loff_t __user *, off_out,
1569 size_t, len, unsigned int, flags)
5274f052 1570{
2903ff01 1571 struct fd in, out;
5274f052 1572 long error;
5274f052
JA
1573
1574 if (unlikely(!len))
1575 return 0;
1576
3d6ea290
AV
1577 if (unlikely(flags & ~SPLICE_F_ALL))
1578 return -EINVAL;
1579
5274f052 1580 error = -EBADF;
2903ff01
AV
1581 in = fdget(fd_in);
1582 if (in.file) {
90da2e3f
PB
1583 out = fdget(fd_out);
1584 if (out.file) {
ee6e00c8
JA
1585 error = __do_splice(in.file, off_in, out.file, off_out,
1586 len, flags);
90da2e3f 1587 fdput(out);
5274f052 1588 }
2903ff01 1589 fdput(in);
5274f052 1590 }
5274f052
JA
1591 return error;
1592}
70524490 1593
aadd06e5
JA
1594/*
1595 * Make sure there's data to read. Wait for input if we can, otherwise
1596 * return an appropriate error.
1597 */
7c77f0b3 1598static int ipipe_prep(struct pipe_inode_info *pipe, unsigned int flags)
aadd06e5
JA
1599{
1600 int ret;
1601
1602 /*
8cefc107 1603 * Check the pipe occupancy without the inode lock first. This function
aadd06e5
JA
1604 * is speculative anyways, so missing one is ok.
1605 */
8cefc107 1606 if (!pipe_empty(pipe->head, pipe->tail))
aadd06e5
JA
1607 return 0;
1608
1609 ret = 0;
61e0d47c 1610 pipe_lock(pipe);
aadd06e5 1611
8cefc107 1612 while (pipe_empty(pipe->head, pipe->tail)) {
aadd06e5
JA
1613 if (signal_pending(current)) {
1614 ret = -ERESTARTSYS;
1615 break;
1616 }
1617 if (!pipe->writers)
1618 break;
a28c8b9d
LT
1619 if (flags & SPLICE_F_NONBLOCK) {
1620 ret = -EAGAIN;
1621 break;
aadd06e5 1622 }
472e5b05 1623 pipe_wait_readable(pipe);
aadd06e5
JA
1624 }
1625
61e0d47c 1626 pipe_unlock(pipe);
aadd06e5
JA
1627 return ret;
1628}
1629
1630/*
1631 * Make sure there's writeable room. Wait for room if we can, otherwise
1632 * return an appropriate error.
1633 */
7c77f0b3 1634static int opipe_prep(struct pipe_inode_info *pipe, unsigned int flags)
aadd06e5
JA
1635{
1636 int ret;
1637
1638 /*
8cefc107 1639 * Check pipe occupancy without the inode lock first. This function
aadd06e5
JA
1640 * is speculative anyways, so missing one is ok.
1641 */
566d1362 1642 if (!pipe_full(pipe->head, pipe->tail, pipe->max_usage))
aadd06e5
JA
1643 return 0;
1644
1645 ret = 0;
61e0d47c 1646 pipe_lock(pipe);
aadd06e5 1647
6718b6f8 1648 while (pipe_full(pipe->head, pipe->tail, pipe->max_usage)) {
aadd06e5
JA
1649 if (!pipe->readers) {
1650 send_sig(SIGPIPE, current, 0);
1651 ret = -EPIPE;
1652 break;
1653 }
1654 if (flags & SPLICE_F_NONBLOCK) {
1655 ret = -EAGAIN;
1656 break;
1657 }
1658 if (signal_pending(current)) {
1659 ret = -ERESTARTSYS;
1660 break;
1661 }
472e5b05 1662 pipe_wait_writable(pipe);
aadd06e5
JA
1663 }
1664
61e0d47c 1665 pipe_unlock(pipe);
aadd06e5
JA
1666 return ret;
1667}
1668
7c77f0b3
MS
1669/*
1670 * Splice contents of ipipe to opipe.
1671 */
1672static int splice_pipe_to_pipe(struct pipe_inode_info *ipipe,
1673 struct pipe_inode_info *opipe,
1674 size_t len, unsigned int flags)
1675{
1676 struct pipe_buffer *ibuf, *obuf;
8cefc107
DH
1677 unsigned int i_head, o_head;
1678 unsigned int i_tail, o_tail;
1679 unsigned int i_mask, o_mask;
1680 int ret = 0;
7c77f0b3
MS
1681 bool input_wakeup = false;
1682
1683
1684retry:
1685 ret = ipipe_prep(ipipe, flags);
1686 if (ret)
1687 return ret;
1688
1689 ret = opipe_prep(opipe, flags);
1690 if (ret)
1691 return ret;
1692
1693 /*
1694 * Potential ABBA deadlock, work around it by ordering lock
1695 * grabbing by pipe info address. Otherwise two different processes
1696 * could deadlock (one doing tee from A -> B, the other from B -> A).
1697 */
1698 pipe_double_lock(ipipe, opipe);
1699
8cefc107
DH
1700 i_tail = ipipe->tail;
1701 i_mask = ipipe->ring_size - 1;
1702 o_head = opipe->head;
1703 o_mask = opipe->ring_size - 1;
1704
7c77f0b3 1705 do {
8cefc107
DH
1706 size_t o_len;
1707
7c77f0b3
MS
1708 if (!opipe->readers) {
1709 send_sig(SIGPIPE, current, 0);
1710 if (!ret)
1711 ret = -EPIPE;
1712 break;
1713 }
1714
8cefc107
DH
1715 i_head = ipipe->head;
1716 o_tail = opipe->tail;
1717
1718 if (pipe_empty(i_head, i_tail) && !ipipe->writers)
7c77f0b3
MS
1719 break;
1720
1721 /*
1722 * Cannot make any progress, because either the input
1723 * pipe is empty or the output pipe is full.
1724 */
8cefc107 1725 if (pipe_empty(i_head, i_tail) ||
6718b6f8 1726 pipe_full(o_head, o_tail, opipe->max_usage)) {
7c77f0b3
MS
1727 /* Already processed some buffers, break */
1728 if (ret)
1729 break;
1730
1731 if (flags & SPLICE_F_NONBLOCK) {
1732 ret = -EAGAIN;
1733 break;
1734 }
1735
1736 /*
1737 * We raced with another reader/writer and haven't
1738 * managed to process any buffers. A zero return
1739 * value means EOF, so retry instead.
1740 */
1741 pipe_unlock(ipipe);
1742 pipe_unlock(opipe);
1743 goto retry;
1744 }
1745
8cefc107
DH
1746 ibuf = &ipipe->bufs[i_tail & i_mask];
1747 obuf = &opipe->bufs[o_head & o_mask];
7c77f0b3
MS
1748
1749 if (len >= ibuf->len) {
1750 /*
1751 * Simply move the whole buffer from ipipe to opipe
1752 */
1753 *obuf = *ibuf;
1754 ibuf->ops = NULL;
8cefc107
DH
1755 i_tail++;
1756 ipipe->tail = i_tail;
7c77f0b3 1757 input_wakeup = true;
8cefc107
DH
1758 o_len = obuf->len;
1759 o_head++;
1760 opipe->head = o_head;
7c77f0b3
MS
1761 } else {
1762 /*
1763 * Get a reference to this pipe buffer,
1764 * so we can copy the contents over.
1765 */
15fab63e
MW
1766 if (!pipe_buf_get(ipipe, ibuf)) {
1767 if (ret == 0)
1768 ret = -EFAULT;
1769 break;
1770 }
7c77f0b3
MS
1771 *obuf = *ibuf;
1772
1773 /*
f6dd9755 1774 * Don't inherit the gift and merge flags, we need to
7c77f0b3
MS
1775 * prevent multiple steals of this page.
1776 */
1777 obuf->flags &= ~PIPE_BUF_FLAG_GIFT;
f6dd9755 1778 obuf->flags &= ~PIPE_BUF_FLAG_CAN_MERGE;
a0ce2f0a 1779
7c77f0b3 1780 obuf->len = len;
8cefc107
DH
1781 ibuf->offset += len;
1782 ibuf->len -= len;
1783 o_len = len;
1784 o_head++;
1785 opipe->head = o_head;
7c77f0b3 1786 }
8cefc107
DH
1787 ret += o_len;
1788 len -= o_len;
7c77f0b3
MS
1789 } while (len);
1790
1791 pipe_unlock(ipipe);
1792 pipe_unlock(opipe);
1793
1794 /*
1795 * If we put data in the output pipe, wakeup any potential readers.
1796 */
825cdcb1
NK
1797 if (ret > 0)
1798 wakeup_pipe_readers(opipe);
1799
7c77f0b3
MS
1800 if (input_wakeup)
1801 wakeup_pipe_writers(ipipe);
1802
1803 return ret;
1804}
1805
70524490
JA
1806/*
1807 * Link contents of ipipe to opipe.
1808 */
1809static int link_pipe(struct pipe_inode_info *ipipe,
1810 struct pipe_inode_info *opipe,
1811 size_t len, unsigned int flags)
1812{
1813 struct pipe_buffer *ibuf, *obuf;
8cefc107
DH
1814 unsigned int i_head, o_head;
1815 unsigned int i_tail, o_tail;
1816 unsigned int i_mask, o_mask;
1817 int ret = 0;
70524490
JA
1818
1819 /*
1820 * Potential ABBA deadlock, work around it by ordering lock
61e0d47c 1821 * grabbing by pipe info address. Otherwise two different processes
70524490
JA
1822 * could deadlock (one doing tee from A -> B, the other from B -> A).
1823 */
61e0d47c 1824 pipe_double_lock(ipipe, opipe);
70524490 1825
8cefc107
DH
1826 i_tail = ipipe->tail;
1827 i_mask = ipipe->ring_size - 1;
1828 o_head = opipe->head;
1829 o_mask = opipe->ring_size - 1;
1830
aadd06e5 1831 do {
70524490
JA
1832 if (!opipe->readers) {
1833 send_sig(SIGPIPE, current, 0);
1834 if (!ret)
1835 ret = -EPIPE;
1836 break;
1837 }
70524490 1838
8cefc107
DH
1839 i_head = ipipe->head;
1840 o_tail = opipe->tail;
1841
aadd06e5 1842 /*
8cefc107 1843 * If we have iterated all input buffers or run out of
aadd06e5
JA
1844 * output room, break.
1845 */
8cefc107 1846 if (pipe_empty(i_head, i_tail) ||
6718b6f8 1847 pipe_full(o_head, o_tail, opipe->max_usage))
aadd06e5 1848 break;
70524490 1849
8cefc107
DH
1850 ibuf = &ipipe->bufs[i_tail & i_mask];
1851 obuf = &opipe->bufs[o_head & o_mask];
70524490
JA
1852
1853 /*
aadd06e5
JA
1854 * Get a reference to this pipe buffer,
1855 * so we can copy the contents over.
70524490 1856 */
15fab63e
MW
1857 if (!pipe_buf_get(ipipe, ibuf)) {
1858 if (ret == 0)
1859 ret = -EFAULT;
1860 break;
1861 }
aadd06e5 1862
aadd06e5
JA
1863 *obuf = *ibuf;
1864
2a27250e 1865 /*
f6dd9755
CH
1866 * Don't inherit the gift and merge flag, we need to prevent
1867 * multiple steals of this page.
2a27250e 1868 */
aadd06e5 1869 obuf->flags &= ~PIPE_BUF_FLAG_GIFT;
f6dd9755 1870 obuf->flags &= ~PIPE_BUF_FLAG_CAN_MERGE;
a0ce2f0a 1871
aadd06e5
JA
1872 if (obuf->len > len)
1873 obuf->len = len;
aadd06e5
JA
1874 ret += obuf->len;
1875 len -= obuf->len;
8cefc107
DH
1876
1877 o_head++;
1878 opipe->head = o_head;
1879 i_tail++;
aadd06e5 1880 } while (len);
70524490 1881
61e0d47c
MS
1882 pipe_unlock(ipipe);
1883 pipe_unlock(opipe);
70524490 1884
aadd06e5
JA
1885 /*
1886 * If we put data in the output pipe, wakeup any potential readers.
1887 */
825cdcb1
NK
1888 if (ret > 0)
1889 wakeup_pipe_readers(opipe);
70524490
JA
1890
1891 return ret;
1892}
1893
1894/*
1895 * This is a tee(1) implementation that works on pipes. It doesn't copy
1896 * any data, it simply references the 'in' pages on the 'out' pipe.
1897 * The 'flags' used are the SPLICE_F_* variants, currently the only
1898 * applicable one is SPLICE_F_NONBLOCK.
1899 */
9dafdfc2 1900long do_tee(struct file *in, struct file *out, size_t len, unsigned int flags)
70524490 1901{
c73be61c
DH
1902 struct pipe_inode_info *ipipe = get_pipe_info(in, true);
1903 struct pipe_inode_info *opipe = get_pipe_info(out, true);
aadd06e5 1904 int ret = -EINVAL;
70524490 1905
90da2e3f
PB
1906 if (unlikely(!(in->f_mode & FMODE_READ) ||
1907 !(out->f_mode & FMODE_WRITE)))
1908 return -EBADF;
1909
70524490 1910 /*
aadd06e5
JA
1911 * Duplicate the contents of ipipe to opipe without actually
1912 * copying the data.
70524490 1913 */
aadd06e5 1914 if (ipipe && opipe && ipipe != opipe) {
ee5e0011
SK
1915 if ((in->f_flags | out->f_flags) & O_NONBLOCK)
1916 flags |= SPLICE_F_NONBLOCK;
1917
aadd06e5
JA
1918 /*
1919 * Keep going, unless we encounter an error. The ipipe/opipe
1920 * ordering doesn't really matter.
1921 */
7c77f0b3 1922 ret = ipipe_prep(ipipe, flags);
aadd06e5 1923 if (!ret) {
7c77f0b3 1924 ret = opipe_prep(opipe, flags);
02cf01ae 1925 if (!ret)
aadd06e5 1926 ret = link_pipe(ipipe, opipe, len, flags);
aadd06e5
JA
1927 }
1928 }
70524490 1929
aadd06e5 1930 return ret;
70524490
JA
1931}
1932
836f92ad 1933SYSCALL_DEFINE4(tee, int, fdin, int, fdout, size_t, len, unsigned int, flags)
70524490 1934{
90da2e3f 1935 struct fd in, out;
2903ff01 1936 int error;
70524490 1937
3d6ea290
AV
1938 if (unlikely(flags & ~SPLICE_F_ALL))
1939 return -EINVAL;
1940
70524490
JA
1941 if (unlikely(!len))
1942 return 0;
1943
1944 error = -EBADF;
2903ff01
AV
1945 in = fdget(fdin);
1946 if (in.file) {
90da2e3f
PB
1947 out = fdget(fdout);
1948 if (out.file) {
1949 error = do_tee(in.file, out.file, len, flags);
1950 fdput(out);
70524490 1951 }
2903ff01 1952 fdput(in);
70524490
JA
1953 }
1954
1955 return error;
1956}