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b2441318 1// SPDX-License-Identifier: GPL-2.0
1da177e4
LT
2/*
3 * linux/fs/file.c
4 *
5 * Copyright (C) 1998-1999, Stephen Tweedie and Bill Hawes
6 *
7 * Manage the dynamic fd arrays in the process files_struct.
8 */
9
fe17f22d 10#include <linux/syscalls.h>
630d9c47 11#include <linux/export.h>
1da177e4 12#include <linux/fs.h>
278a5fba 13#include <linux/kernel.h>
1da177e4 14#include <linux/mm.h>
3f07c014 15#include <linux/sched/signal.h>
1da177e4 16#include <linux/slab.h>
1da177e4 17#include <linux/file.h>
9f3acc31 18#include <linux/fdtable.h>
1da177e4 19#include <linux/bitops.h>
ab2af1f5
DS
20#include <linux/spinlock.h>
21#include <linux/rcupdate.h>
60997c3d 22#include <linux/close_range.h>
66590610 23#include <net/sock.h>
ab2af1f5 24
53dec2ea
JA
25#include "internal.h"
26
9b80a184
AD
27unsigned int sysctl_nr_open __read_mostly = 1024*1024;
28unsigned int sysctl_nr_open_min = BITS_PER_LONG;
752343be
RV
29/* our min() is unusable in constant expressions ;-/ */
30#define __const_min(x, y) ((x) < (y) ? (x) : (y))
9b80a184
AD
31unsigned int sysctl_nr_open_max =
32 __const_min(INT_MAX, ~(size_t)0/sizeof(void *)) & -BITS_PER_LONG;
9cfe015a 33
a892e2d7 34static void __free_fdtable(struct fdtable *fdt)
1da177e4 35{
f6c0a192
AV
36 kvfree(fdt->fd);
37 kvfree(fdt->open_fds);
a892e2d7 38 kfree(fdt);
ab2af1f5 39}
1da177e4 40
7cf4dc3c 41static void free_fdtable_rcu(struct rcu_head *rcu)
ab2af1f5 42{
ac3e3c5b 43 __free_fdtable(container_of(rcu, struct fdtable, rcu));
ab2af1f5
DS
44}
45
f3f86e33
LT
46#define BITBIT_NR(nr) BITS_TO_LONGS(BITS_TO_LONGS(nr))
47#define BITBIT_SIZE(nr) (BITBIT_NR(nr) * sizeof(long))
48
ab2af1f5 49/*
ea5c58e7
EB
50 * Copy 'count' fd bits from the old table to the new table and clear the extra
51 * space if any. This does not copy the file pointers. Called with the files
52 * spinlock held for write.
53 */
54static void copy_fd_bitmaps(struct fdtable *nfdt, struct fdtable *ofdt,
55 unsigned int count)
56{
57 unsigned int cpy, set;
58
59 cpy = count / BITS_PER_BYTE;
60 set = (nfdt->max_fds - count) / BITS_PER_BYTE;
61 memcpy(nfdt->open_fds, ofdt->open_fds, cpy);
62 memset((char *)nfdt->open_fds + cpy, 0, set);
63 memcpy(nfdt->close_on_exec, ofdt->close_on_exec, cpy);
64 memset((char *)nfdt->close_on_exec + cpy, 0, set);
65
66 cpy = BITBIT_SIZE(count);
67 set = BITBIT_SIZE(nfdt->max_fds) - cpy;
68 memcpy(nfdt->full_fds_bits, ofdt->full_fds_bits, cpy);
69 memset((char *)nfdt->full_fds_bits + cpy, 0, set);
70}
71
72/*
73 * Copy all file descriptors from the old table to the new, expanded table and
74 * clear the extra space. Called with the files spinlock held for write.
ab2af1f5 75 */
5466b456 76static void copy_fdtable(struct fdtable *nfdt, struct fdtable *ofdt)
ab2af1f5 77{
4e89b721 78 size_t cpy, set;
ab2af1f5 79
5466b456 80 BUG_ON(nfdt->max_fds < ofdt->max_fds);
5466b456
VL
81
82 cpy = ofdt->max_fds * sizeof(struct file *);
83 set = (nfdt->max_fds - ofdt->max_fds) * sizeof(struct file *);
84 memcpy(nfdt->fd, ofdt->fd, cpy);
ea5c58e7 85 memset((char *)nfdt->fd + cpy, 0, set);
5466b456 86
ea5c58e7 87 copy_fd_bitmaps(nfdt, ofdt, ofdt->max_fds);
1da177e4
LT
88}
89
a34b2df4
LT
90/*
91 * Note how the fdtable bitmap allocations very much have to be a multiple of
92 * BITS_PER_LONG. This is not only because we walk those things in chunks of
93 * 'unsigned long' in some places, but simply because that is how the Linux
94 * kernel bitmaps are defined to work: they are not "bits in an array of bytes",
95 * they are very much "bits in an array of unsigned long".
96 *
97 * The ALIGN(nr, BITS_PER_LONG) here is for clarity: since we just multiplied
98 * by that "1024/sizeof(ptr)" before, we already know there are sufficient
99 * clear low bits. Clang seems to realize that, gcc ends up being confused.
100 *
101 * On a 128-bit machine, the ALIGN() would actually matter. In the meantime,
102 * let's consider it documentation (and maybe a test-case for gcc to improve
103 * its code generation ;)
104 */
5466b456 105static struct fdtable * alloc_fdtable(unsigned int nr)
1da177e4 106{
5466b456 107 struct fdtable *fdt;
1fd36adc 108 void *data;
1da177e4 109
ab2af1f5 110 /*
5466b456
VL
111 * Figure out how many fds we actually want to support in this fdtable.
112 * Allocation steps are keyed to the size of the fdarray, since it
113 * grows far faster than any of the other dynamic data. We try to fit
114 * the fdarray into comfortable page-tuned chunks: starting at 1024B
115 * and growing in powers of two from there on.
ab2af1f5 116 */
5466b456
VL
117 nr /= (1024 / sizeof(struct file *));
118 nr = roundup_pow_of_two(nr + 1);
119 nr *= (1024 / sizeof(struct file *));
a34b2df4 120 nr = ALIGN(nr, BITS_PER_LONG);
5c598b34
AV
121 /*
122 * Note that this can drive nr *below* what we had passed if sysctl_nr_open
123 * had been set lower between the check in expand_files() and here. Deal
124 * with that in caller, it's cheaper that way.
125 *
126 * We make sure that nr remains a multiple of BITS_PER_LONG - otherwise
127 * bitmaps handling below becomes unpleasant, to put it mildly...
128 */
129 if (unlikely(nr > sysctl_nr_open))
130 nr = ((sysctl_nr_open - 1) | (BITS_PER_LONG - 1)) + 1;
bbea9f69 131
5d097056 132 fdt = kmalloc(sizeof(struct fdtable), GFP_KERNEL_ACCOUNT);
5466b456 133 if (!fdt)
bbea9f69 134 goto out;
5466b456 135 fdt->max_fds = nr;
c823bd92 136 data = kvmalloc_array(nr, sizeof(struct file *), GFP_KERNEL_ACCOUNT);
5466b456
VL
137 if (!data)
138 goto out_fdt;
1fd36adc
DH
139 fdt->fd = data;
140
c823bd92
MH
141 data = kvmalloc(max_t(size_t,
142 2 * nr / BITS_PER_BYTE + BITBIT_SIZE(nr), L1_CACHE_BYTES),
143 GFP_KERNEL_ACCOUNT);
5466b456
VL
144 if (!data)
145 goto out_arr;
1fd36adc 146 fdt->open_fds = data;
5466b456 147 data += nr / BITS_PER_BYTE;
1fd36adc 148 fdt->close_on_exec = data;
f3f86e33
LT
149 data += nr / BITS_PER_BYTE;
150 fdt->full_fds_bits = data;
5466b456 151
ab2af1f5 152 return fdt;
5466b456
VL
153
154out_arr:
f6c0a192 155 kvfree(fdt->fd);
5466b456 156out_fdt:
ab2af1f5 157 kfree(fdt);
5466b456 158out:
ab2af1f5
DS
159 return NULL;
160}
1da177e4 161
ab2af1f5 162/*
74d392aa
VL
163 * Expand the file descriptor table.
164 * This function will allocate a new fdtable and both fd array and fdset, of
165 * the given size.
166 * Return <0 error code on error; 1 on successful completion.
167 * The files->file_lock should be held on entry, and will be held on exit.
ab2af1f5 168 */
9b80a184 169static int expand_fdtable(struct files_struct *files, unsigned int nr)
ab2af1f5
DS
170 __releases(files->file_lock)
171 __acquires(files->file_lock)
172{
74d392aa 173 struct fdtable *new_fdt, *cur_fdt;
ab2af1f5
DS
174
175 spin_unlock(&files->file_lock);
74d392aa 176 new_fdt = alloc_fdtable(nr);
8a81252b 177
d74ba04d 178 /* make sure all fd_install() have seen resize_in_progress
8a81252b
ED
179 * or have finished their rcu_read_lock_sched() section.
180 */
181 if (atomic_read(&files->count) > 1)
c93ffc15 182 synchronize_rcu();
8a81252b 183
ab2af1f5 184 spin_lock(&files->file_lock);
74d392aa
VL
185 if (!new_fdt)
186 return -ENOMEM;
5c598b34
AV
187 /*
188 * extremely unlikely race - sysctl_nr_open decreased between the check in
189 * caller and alloc_fdtable(). Cheaper to catch it here...
190 */
191 if (unlikely(new_fdt->max_fds <= nr)) {
a892e2d7 192 __free_fdtable(new_fdt);
5c598b34
AV
193 return -EMFILE;
194 }
74d392aa 195 cur_fdt = files_fdtable(files);
8a81252b
ED
196 BUG_ON(nr < cur_fdt->max_fds);
197 copy_fdtable(new_fdt, cur_fdt);
198 rcu_assign_pointer(files->fdt, new_fdt);
199 if (cur_fdt != &files->fdtab)
200 call_rcu(&cur_fdt->rcu, free_fdtable_rcu);
d74ba04d 201 /* coupled with smp_rmb() in fd_install() */
8a81252b 202 smp_wmb();
74d392aa 203 return 1;
1da177e4
LT
204}
205
206/*
207 * Expand files.
74d392aa
VL
208 * This function will expand the file structures, if the requested size exceeds
209 * the current capacity and there is room for expansion.
210 * Return <0 error code on error; 0 when nothing done; 1 when files were
211 * expanded and execution may have blocked.
212 * The files->file_lock should be held on entry, and will be held on exit.
1da177e4 213 */
9b80a184 214static int expand_files(struct files_struct *files, unsigned int nr)
8a81252b
ED
215 __releases(files->file_lock)
216 __acquires(files->file_lock)
1da177e4 217{
badf1662 218 struct fdtable *fdt;
8a81252b 219 int expanded = 0;
1da177e4 220
8a81252b 221repeat:
badf1662 222 fdt = files_fdtable(files);
4e1e018e 223
74d392aa 224 /* Do we need to expand? */
bbea9f69 225 if (nr < fdt->max_fds)
8a81252b 226 return expanded;
4e1e018e 227
74d392aa 228 /* Can we expand? */
9cfe015a 229 if (nr >= sysctl_nr_open)
74d392aa
VL
230 return -EMFILE;
231
8a81252b
ED
232 if (unlikely(files->resize_in_progress)) {
233 spin_unlock(&files->file_lock);
234 expanded = 1;
235 wait_event(files->resize_wait, !files->resize_in_progress);
236 spin_lock(&files->file_lock);
237 goto repeat;
238 }
239
74d392aa 240 /* All good, so we try */
8a81252b
ED
241 files->resize_in_progress = true;
242 expanded = expand_fdtable(files, nr);
243 files->resize_in_progress = false;
244
245 wake_up_all(&files->resize_wait);
246 return expanded;
1da177e4 247}
ab2af1f5 248
9b80a184 249static inline void __set_close_on_exec(unsigned int fd, struct fdtable *fdt)
b8318b01
AV
250{
251 __set_bit(fd, fdt->close_on_exec);
252}
253
9b80a184 254static inline void __clear_close_on_exec(unsigned int fd, struct fdtable *fdt)
b8318b01 255{
fc90888d
LT
256 if (test_bit(fd, fdt->close_on_exec))
257 __clear_bit(fd, fdt->close_on_exec);
b8318b01
AV
258}
259
f3f86e33 260static inline void __set_open_fd(unsigned int fd, struct fdtable *fdt)
b8318b01
AV
261{
262 __set_bit(fd, fdt->open_fds);
f3f86e33
LT
263 fd /= BITS_PER_LONG;
264 if (!~fdt->open_fds[fd])
265 __set_bit(fd, fdt->full_fds_bits);
b8318b01
AV
266}
267
f3f86e33 268static inline void __clear_open_fd(unsigned int fd, struct fdtable *fdt)
b8318b01
AV
269{
270 __clear_bit(fd, fdt->open_fds);
f3f86e33 271 __clear_bit(fd / BITS_PER_LONG, fdt->full_fds_bits);
b8318b01
AV
272}
273
9b80a184 274static unsigned int count_open_files(struct fdtable *fdt)
02afc626 275{
9b80a184
AD
276 unsigned int size = fdt->max_fds;
277 unsigned int i;
02afc626
AV
278
279 /* Find the last open fd */
1fd36adc
DH
280 for (i = size / BITS_PER_LONG; i > 0; ) {
281 if (fdt->open_fds[--i])
02afc626
AV
282 break;
283 }
1fd36adc 284 i = (i + 1) * BITS_PER_LONG;
02afc626
AV
285 return i;
286}
287
a34b2df4
LT
288/*
289 * Note that a sane fdtable size always has to be a multiple of
290 * BITS_PER_LONG, since we have bitmaps that are sized by this.
291 *
292 * 'max_fds' will normally already be properly aligned, but it
293 * turns out that in the close_range() -> __close_range() ->
294 * unshare_fd() -> dup_fd() -> sane_fdtable_size() we can end
295 * up having a 'max_fds' value that isn't already aligned.
296 *
297 * Rather than make close_range() have to worry about this,
298 * just make that BITS_PER_LONG alignment be part of a sane
299 * fdtable size. Becuase that's really what it is.
300 */
60997c3d
CB
301static unsigned int sane_fdtable_size(struct fdtable *fdt, unsigned int max_fds)
302{
303 unsigned int count;
304
305 count = count_open_files(fdt);
306 if (max_fds < NR_OPEN_DEFAULT)
307 max_fds = NR_OPEN_DEFAULT;
c24e4c89 308 return ALIGN(min(count, max_fds), BITS_PER_LONG);
60997c3d
CB
309}
310
02afc626
AV
311/*
312 * Allocate a new files structure and copy contents from the
313 * passed in files structure.
314 * errorp will be valid only when the returned files_struct is NULL.
315 */
60997c3d 316struct files_struct *dup_fd(struct files_struct *oldf, unsigned int max_fds, int *errorp)
02afc626
AV
317{
318 struct files_struct *newf;
319 struct file **old_fds, **new_fds;
9b80a184 320 unsigned int open_files, i;
02afc626
AV
321 struct fdtable *old_fdt, *new_fdt;
322
323 *errorp = -ENOMEM;
afbec7ff 324 newf = kmem_cache_alloc(files_cachep, GFP_KERNEL);
02afc626
AV
325 if (!newf)
326 goto out;
327
afbec7ff
AV
328 atomic_set(&newf->count, 1);
329
330 spin_lock_init(&newf->file_lock);
8a81252b
ED
331 newf->resize_in_progress = false;
332 init_waitqueue_head(&newf->resize_wait);
afbec7ff
AV
333 newf->next_fd = 0;
334 new_fdt = &newf->fdtab;
335 new_fdt->max_fds = NR_OPEN_DEFAULT;
1fd36adc
DH
336 new_fdt->close_on_exec = newf->close_on_exec_init;
337 new_fdt->open_fds = newf->open_fds_init;
f3f86e33 338 new_fdt->full_fds_bits = newf->full_fds_bits_init;
afbec7ff 339 new_fdt->fd = &newf->fd_array[0];
afbec7ff 340
02afc626
AV
341 spin_lock(&oldf->file_lock);
342 old_fdt = files_fdtable(oldf);
60997c3d 343 open_files = sane_fdtable_size(old_fdt, max_fds);
02afc626
AV
344
345 /*
346 * Check whether we need to allocate a larger fd array and fd set.
02afc626 347 */
adbecb12 348 while (unlikely(open_files > new_fdt->max_fds)) {
02afc626 349 spin_unlock(&oldf->file_lock);
9dec3c4d 350
a892e2d7
CG
351 if (new_fdt != &newf->fdtab)
352 __free_fdtable(new_fdt);
adbecb12 353
9dec3c4d
AV
354 new_fdt = alloc_fdtable(open_files - 1);
355 if (!new_fdt) {
356 *errorp = -ENOMEM;
357 goto out_release;
358 }
359
360 /* beyond sysctl_nr_open; nothing to do */
361 if (unlikely(new_fdt->max_fds < open_files)) {
a892e2d7 362 __free_fdtable(new_fdt);
9dec3c4d 363 *errorp = -EMFILE;
02afc626 364 goto out_release;
9dec3c4d 365 }
9dec3c4d 366
02afc626
AV
367 /*
368 * Reacquire the oldf lock and a pointer to its fd table
369 * who knows it may have a new bigger fd table. We need
370 * the latest pointer.
371 */
372 spin_lock(&oldf->file_lock);
373 old_fdt = files_fdtable(oldf);
60997c3d 374 open_files = sane_fdtable_size(old_fdt, max_fds);
02afc626
AV
375 }
376
ea5c58e7
EB
377 copy_fd_bitmaps(new_fdt, old_fdt, open_files);
378
02afc626
AV
379 old_fds = old_fdt->fd;
380 new_fds = new_fdt->fd;
381
02afc626
AV
382 for (i = open_files; i != 0; i--) {
383 struct file *f = *old_fds++;
384 if (f) {
385 get_file(f);
386 } else {
387 /*
388 * The fd may be claimed in the fd bitmap but not yet
389 * instantiated in the files array if a sibling thread
390 * is partway through open(). So make sure that this
391 * fd is available to the new process.
392 */
1dce27c5 393 __clear_open_fd(open_files - i, new_fdt);
02afc626
AV
394 }
395 rcu_assign_pointer(*new_fds++, f);
396 }
397 spin_unlock(&oldf->file_lock);
398
ea5c58e7
EB
399 /* clear the remainder */
400 memset(new_fds, 0, (new_fdt->max_fds - open_files) * sizeof(struct file *));
02afc626 401
afbec7ff
AV
402 rcu_assign_pointer(newf->fdt, new_fdt);
403
02afc626
AV
404 return newf;
405
406out_release:
407 kmem_cache_free(files_cachep, newf);
408out:
409 return NULL;
410}
411
ce08b62d 412static struct fdtable *close_files(struct files_struct * files)
7cf4dc3c 413{
7cf4dc3c
AV
414 /*
415 * It is safe to dereference the fd table without RCU or
416 * ->file_lock because this is the last reference to the
ce08b62d 417 * files structure.
7cf4dc3c 418 */
ce08b62d 419 struct fdtable *fdt = rcu_dereference_raw(files->fdt);
9b80a184 420 unsigned int i, j = 0;
ce08b62d 421
7cf4dc3c
AV
422 for (;;) {
423 unsigned long set;
424 i = j * BITS_PER_LONG;
425 if (i >= fdt->max_fds)
426 break;
427 set = fdt->open_fds[j++];
428 while (set) {
429 if (set & 1) {
430 struct file * file = xchg(&fdt->fd[i], NULL);
431 if (file) {
432 filp_close(file, files);
388a4c88 433 cond_resched();
7cf4dc3c
AV
434 }
435 }
436 i++;
437 set >>= 1;
438 }
439 }
ce08b62d
ON
440
441 return fdt;
7cf4dc3c
AV
442}
443
7cf4dc3c
AV
444void put_files_struct(struct files_struct *files)
445{
7cf4dc3c 446 if (atomic_dec_and_test(&files->count)) {
ce08b62d
ON
447 struct fdtable *fdt = close_files(files);
448
b9e02af0
AV
449 /* free the arrays if they are not embedded */
450 if (fdt != &files->fdtab)
451 __free_fdtable(fdt);
452 kmem_cache_free(files_cachep, files);
7cf4dc3c
AV
453 }
454}
455
7cf4dc3c
AV
456void exit_files(struct task_struct *tsk)
457{
458 struct files_struct * files = tsk->files;
459
460 if (files) {
461 task_lock(tsk);
462 tsk->files = NULL;
463 task_unlock(tsk);
464 put_files_struct(files);
465 }
466}
467
f52111b1
AV
468struct files_struct init_files = {
469 .count = ATOMIC_INIT(1),
470 .fdt = &init_files.fdtab,
471 .fdtab = {
472 .max_fds = NR_OPEN_DEFAULT,
473 .fd = &init_files.fd_array[0],
1fd36adc
DH
474 .close_on_exec = init_files.close_on_exec_init,
475 .open_fds = init_files.open_fds_init,
f3f86e33 476 .full_fds_bits = init_files.full_fds_bits_init,
f52111b1 477 },
eece09ec 478 .file_lock = __SPIN_LOCK_UNLOCKED(init_files.file_lock),
5704a068 479 .resize_wait = __WAIT_QUEUE_HEAD_INITIALIZER(init_files.resize_wait),
f52111b1 480};
1027abe8 481
9b80a184 482static unsigned int find_next_fd(struct fdtable *fdt, unsigned int start)
f3f86e33 483{
9b80a184
AD
484 unsigned int maxfd = fdt->max_fds;
485 unsigned int maxbit = maxfd / BITS_PER_LONG;
486 unsigned int bitbit = start / BITS_PER_LONG;
f3f86e33
LT
487
488 bitbit = find_next_zero_bit(fdt->full_fds_bits, maxbit, bitbit) * BITS_PER_LONG;
489 if (bitbit > maxfd)
490 return maxfd;
491 if (bitbit > start)
492 start = bitbit;
493 return find_next_zero_bit(fdt->open_fds, maxfd, start);
494}
495
1027abe8
AV
496/*
497 * allocate a file descriptor, mark it busy.
498 */
aa384d10 499static int alloc_fd(unsigned start, unsigned end, unsigned flags)
1027abe8 500{
aa384d10 501 struct files_struct *files = current->files;
1027abe8
AV
502 unsigned int fd;
503 int error;
504 struct fdtable *fdt;
505
506 spin_lock(&files->file_lock);
507repeat:
508 fdt = files_fdtable(files);
509 fd = start;
510 if (fd < files->next_fd)
511 fd = files->next_fd;
512
513 if (fd < fdt->max_fds)
f3f86e33 514 fd = find_next_fd(fdt, fd);
1027abe8 515
f33ff992
AV
516 /*
517 * N.B. For clone tasks sharing a files structure, this test
518 * will limit the total number of files that can be opened.
519 */
520 error = -EMFILE;
521 if (fd >= end)
522 goto out;
523
1027abe8
AV
524 error = expand_files(files, fd);
525 if (error < 0)
526 goto out;
527
528 /*
529 * If we needed to expand the fs array we
530 * might have blocked - try again.
531 */
532 if (error)
533 goto repeat;
534
535 if (start <= files->next_fd)
536 files->next_fd = fd + 1;
537
1dce27c5 538 __set_open_fd(fd, fdt);
1027abe8 539 if (flags & O_CLOEXEC)
1dce27c5 540 __set_close_on_exec(fd, fdt);
1027abe8 541 else
1dce27c5 542 __clear_close_on_exec(fd, fdt);
1027abe8
AV
543 error = fd;
544#if 1
545 /* Sanity check */
add1f099 546 if (rcu_access_pointer(fdt->fd[fd]) != NULL) {
1027abe8
AV
547 printk(KERN_WARNING "alloc_fd: slot %d not NULL!\n", fd);
548 rcu_assign_pointer(fdt->fd[fd], NULL);
549 }
550#endif
551
552out:
553 spin_unlock(&files->file_lock);
554 return error;
555}
556
4022e7af
JA
557int __get_unused_fd_flags(unsigned flags, unsigned long nofile)
558{
aa384d10 559 return alloc_fd(0, nofile, flags);
4022e7af
JA
560}
561
1a7bd226 562int get_unused_fd_flags(unsigned flags)
1027abe8 563{
4022e7af 564 return __get_unused_fd_flags(flags, rlimit(RLIMIT_NOFILE));
1027abe8 565}
1a7bd226 566EXPORT_SYMBOL(get_unused_fd_flags);
56007cae
AV
567
568static void __put_unused_fd(struct files_struct *files, unsigned int fd)
569{
570 struct fdtable *fdt = files_fdtable(files);
571 __clear_open_fd(fd, fdt);
572 if (fd < files->next_fd)
573 files->next_fd = fd;
574}
575
576void put_unused_fd(unsigned int fd)
577{
578 struct files_struct *files = current->files;
579 spin_lock(&files->file_lock);
580 __put_unused_fd(files, fd);
581 spin_unlock(&files->file_lock);
582}
583
584EXPORT_SYMBOL(put_unused_fd);
585
586/*
587 * Install a file pointer in the fd array.
588 *
589 * The VFS is full of places where we drop the files lock between
590 * setting the open_fds bitmap and installing the file in the file
591 * array. At any such point, we are vulnerable to a dup2() race
592 * installing a file in the array before us. We need to detect this and
593 * fput() the struct file we are about to overwrite in this case.
594 *
595 * It should never happen - if we allow dup2() do it, _really_ bad things
596 * will follow.
f869e8a7 597 *
d74ba04d
EB
598 * This consumes the "file" refcount, so callers should treat it
599 * as if they had called fput(file).
56007cae
AV
600 */
601
d74ba04d 602void fd_install(unsigned int fd, struct file *file)
56007cae 603{
d74ba04d 604 struct files_struct *files = current->files;
56007cae 605 struct fdtable *fdt;
8a81252b 606
8a81252b
ED
607 rcu_read_lock_sched();
608
c02b1a9b 609 if (unlikely(files->resize_in_progress)) {
8a81252b 610 rcu_read_unlock_sched();
c02b1a9b
MG
611 spin_lock(&files->file_lock);
612 fdt = files_fdtable(files);
613 BUG_ON(fdt->fd[fd] != NULL);
614 rcu_assign_pointer(fdt->fd[fd], file);
615 spin_unlock(&files->file_lock);
616 return;
8a81252b
ED
617 }
618 /* coupled with smp_wmb() in expand_fdtable() */
619 smp_rmb();
620 fdt = rcu_dereference_sched(files->fdt);
56007cae
AV
621 BUG_ON(fdt->fd[fd] != NULL);
622 rcu_assign_pointer(fdt->fd[fd], file);
8a81252b 623 rcu_read_unlock_sched();
56007cae
AV
624}
625
626EXPORT_SYMBOL(fd_install);
0ee8cdfe 627
f49fd6d3
CB
628/**
629 * pick_file - return file associatd with fd
630 * @files: file struct to retrieve file from
631 * @fd: file descriptor to retrieve file for
632 *
633 * If this functions returns an EINVAL error pointer the fd was beyond the
634 * current maximum number of file descriptors for that fdtable.
635 *
636 * Returns: The file associated with @fd, on error returns an error pointer.
637 */
278a5fba 638static struct file *pick_file(struct files_struct *files, unsigned fd)
483ce1d4 639{
f49fd6d3 640 struct file *file;
483ce1d4
AV
641 struct fdtable *fdt;
642
643 spin_lock(&files->file_lock);
644 fdt = files_fdtable(files);
f49fd6d3
CB
645 if (fd >= fdt->max_fds) {
646 file = ERR_PTR(-EINVAL);
483ce1d4 647 goto out_unlock;
f49fd6d3 648 }
483ce1d4 649 file = fdt->fd[fd];
f49fd6d3
CB
650 if (!file) {
651 file = ERR_PTR(-EBADF);
483ce1d4 652 goto out_unlock;
f49fd6d3 653 }
483ce1d4 654 rcu_assign_pointer(fdt->fd[fd], NULL);
483ce1d4 655 __put_unused_fd(files, fd);
483ce1d4
AV
656
657out_unlock:
658 spin_unlock(&files->file_lock);
278a5fba
CB
659 return file;
660}
661
8760c909 662int close_fd(unsigned fd)
278a5fba 663{
8760c909 664 struct files_struct *files = current->files;
278a5fba
CB
665 struct file *file;
666
667 file = pick_file(files, fd);
f49fd6d3 668 if (IS_ERR(file))
278a5fba
CB
669 return -EBADF;
670
671 return filp_close(file, files);
483ce1d4 672}
8760c909 673EXPORT_SYMBOL(close_fd); /* for ksys_close() */
483ce1d4 674
9b5b8722
CB
675/**
676 * last_fd - return last valid index into fd table
677 * @cur_fds: files struct
678 *
679 * Context: Either rcu read lock or files_lock must be held.
680 *
681 * Returns: Last valid index into fdtable.
682 */
683static inline unsigned last_fd(struct fdtable *fdt)
684{
685 return fdt->max_fds - 1;
686}
687
582f1fb6
GS
688static inline void __range_cloexec(struct files_struct *cur_fds,
689 unsigned int fd, unsigned int max_fd)
690{
691 struct fdtable *fdt;
692
9b5b8722 693 /* make sure we're using the correct maximum value */
582f1fb6
GS
694 spin_lock(&cur_fds->file_lock);
695 fdt = files_fdtable(cur_fds);
9b5b8722
CB
696 max_fd = min(last_fd(fdt), max_fd);
697 if (fd <= max_fd)
698 bitmap_set(fdt->close_on_exec, fd, max_fd - fd + 1);
582f1fb6
GS
699 spin_unlock(&cur_fds->file_lock);
700}
701
702static inline void __range_close(struct files_struct *cur_fds, unsigned int fd,
703 unsigned int max_fd)
704{
705 while (fd <= max_fd) {
706 struct file *file;
707
708 file = pick_file(cur_fds, fd++);
f49fd6d3
CB
709 if (!IS_ERR(file)) {
710 /* found a valid file to close */
711 filp_close(file, cur_fds);
712 cond_resched();
582f1fb6 713 continue;
f49fd6d3 714 }
582f1fb6 715
f49fd6d3
CB
716 /* beyond the last fd in that table */
717 if (PTR_ERR(file) == -EINVAL)
718 return;
582f1fb6
GS
719 }
720}
721
278a5fba
CB
722/**
723 * __close_range() - Close all file descriptors in a given range.
724 *
725 * @fd: starting file descriptor to close
726 * @max_fd: last file descriptor to close
727 *
728 * This closes a range of file descriptors. All file descriptors
729 * from @fd up to and including @max_fd are closed.
730 */
60997c3d 731int __close_range(unsigned fd, unsigned max_fd, unsigned int flags)
278a5fba 732{
60997c3d
CB
733 struct task_struct *me = current;
734 struct files_struct *cur_fds = me->files, *fds = NULL;
735
582f1fb6 736 if (flags & ~(CLOSE_RANGE_UNSHARE | CLOSE_RANGE_CLOEXEC))
60997c3d 737 return -EINVAL;
278a5fba
CB
738
739 if (fd > max_fd)
740 return -EINVAL;
741
60997c3d
CB
742 if (flags & CLOSE_RANGE_UNSHARE) {
743 int ret;
744 unsigned int max_unshare_fds = NR_OPEN_MAX;
745
746 /*
03ba0fe4
CB
747 * If the caller requested all fds to be made cloexec we always
748 * copy all of the file descriptors since they still want to
749 * use them.
60997c3d 750 */
03ba0fe4
CB
751 if (!(flags & CLOSE_RANGE_CLOEXEC)) {
752 /*
753 * If the requested range is greater than the current
754 * maximum, we're closing everything so only copy all
755 * file descriptors beneath the lowest file descriptor.
756 */
757 rcu_read_lock();
758 if (max_fd >= last_fd(files_fdtable(cur_fds)))
759 max_unshare_fds = fd;
760 rcu_read_unlock();
761 }
60997c3d
CB
762
763 ret = unshare_fd(CLONE_FILES, max_unshare_fds, &fds);
764 if (ret)
765 return ret;
766
767 /*
768 * We used to share our file descriptor table, and have now
769 * created a private one, make sure we're using it below.
770 */
771 if (fds)
772 swap(cur_fds, fds);
773 }
774
582f1fb6
GS
775 if (flags & CLOSE_RANGE_CLOEXEC)
776 __range_cloexec(cur_fds, fd, max_fd);
777 else
778 __range_close(cur_fds, fd, max_fd);
278a5fba 779
60997c3d
CB
780 if (fds) {
781 /*
782 * We're done closing the files we were supposed to. Time to install
783 * the new file descriptor table and drop the old one.
784 */
785 task_lock(me);
786 me->files = cur_fds;
787 task_unlock(me);
788 put_files_struct(fds);
789 }
790
278a5fba
CB
791 return 0;
792}
793
80cd7956 794/*
53dec2ea
JA
795 * See close_fd_get_file() below, this variant assumes current->files->file_lock
796 * is held.
80cd7956 797 */
53dec2ea 798int __close_fd_get_file(unsigned int fd, struct file **res)
80cd7956
TK
799{
800 struct files_struct *files = current->files;
801 struct file *file;
802 struct fdtable *fdt;
803
80cd7956
TK
804 fdt = files_fdtable(files);
805 if (fd >= fdt->max_fds)
53dec2ea 806 goto out_err;
80cd7956
TK
807 file = fdt->fd[fd];
808 if (!file)
53dec2ea 809 goto out_err;
80cd7956
TK
810 rcu_assign_pointer(fdt->fd[fd], NULL);
811 __put_unused_fd(files, fd);
80cd7956
TK
812 get_file(file);
813 *res = file;
6e802a4b 814 return 0;
53dec2ea 815out_err:
80cd7956
TK
816 *res = NULL;
817 return -ENOENT;
818}
ebafbcf7 819EXPORT_SYMBOL(close_fd_get_file);
80cd7956 820
53dec2ea
JA
821/*
822 * variant of close_fd that gets a ref on the file for later fput.
823 * The caller must ensure that filp_close() called on the file, and then
824 * an fput().
825 */
826int close_fd_get_file(unsigned int fd, struct file **res)
827{
828 struct files_struct *files = current->files;
829 int ret;
830
831 spin_lock(&files->file_lock);
832 ret = __close_fd_get_file(fd, res);
833 spin_unlock(&files->file_lock);
834
835 return ret;
836}
837
6a6d27de
AV
838void do_close_on_exec(struct files_struct *files)
839{
840 unsigned i;
841 struct fdtable *fdt;
842
843 /* exec unshares first */
6a6d27de
AV
844 spin_lock(&files->file_lock);
845 for (i = 0; ; i++) {
846 unsigned long set;
847 unsigned fd = i * BITS_PER_LONG;
848 fdt = files_fdtable(files);
849 if (fd >= fdt->max_fds)
850 break;
851 set = fdt->close_on_exec[i];
852 if (!set)
853 continue;
854 fdt->close_on_exec[i] = 0;
855 for ( ; set ; fd++, set >>= 1) {
856 struct file *file;
857 if (!(set & 1))
858 continue;
859 file = fdt->fd[fd];
860 if (!file)
861 continue;
862 rcu_assign_pointer(fdt->fd[fd], NULL);
863 __put_unused_fd(files, fd);
864 spin_unlock(&files->file_lock);
865 filp_close(file, files);
866 cond_resched();
867 spin_lock(&files->file_lock);
868 }
869
870 }
871 spin_unlock(&files->file_lock);
872}
873
432ae5de
LT
874static inline struct file *__fget_files_rcu(struct files_struct *files,
875 unsigned int fd, fmode_t mask, unsigned int refs)
0ee8cdfe 876{
432ae5de
LT
877 for (;;) {
878 struct file *file;
879 struct fdtable *fdt = rcu_dereference_raw(files->fdt);
880 struct file __rcu **fdentry;
0ee8cdfe 881
432ae5de
LT
882 if (unlikely(fd >= fdt->max_fds))
883 return NULL;
884
885 fdentry = fdt->fd + array_index_nospec(fd, fdt->max_fds);
886 file = rcu_dereference_raw(*fdentry);
887 if (unlikely(!file))
888 return NULL;
889
890 if (unlikely(file->f_mode & mask))
891 return NULL;
892
893 /*
894 * Ok, we have a file pointer. However, because we do
895 * this all locklessly under RCU, we may be racing with
896 * that file being closed.
897 *
898 * Such a race can take two forms:
899 *
900 * (a) the file ref already went down to zero,
901 * and get_file_rcu_many() fails. Just try
902 * again:
903 */
904 if (unlikely(!get_file_rcu_many(file, refs)))
905 continue;
906
907 /*
908 * (b) the file table entry has changed under us.
909 * Note that we don't need to re-check the 'fdt->fd'
910 * pointer having changed, because it always goes
911 * hand-in-hand with 'fdt'.
912 *
913 * If so, we need to put our refs and try again.
5ba97d28 914 */
432ae5de
LT
915 if (unlikely(rcu_dereference_raw(files->fdt) != fdt) ||
916 unlikely(rcu_dereference_raw(*fdentry) != file)) {
a56be4a7 917 fput_many(file, refs);
432ae5de 918 continue;
a56be4a7 919 }
432ae5de
LT
920
921 /*
922 * Ok, we have a ref to the file, and checked that it
923 * still exists.
924 */
925 return file;
0ee8cdfe 926 }
432ae5de
LT
927}
928
929static struct file *__fget_files(struct files_struct *files, unsigned int fd,
930 fmode_t mask, unsigned int refs)
931{
932 struct file *file;
933
934 rcu_read_lock();
935 file = __fget_files_rcu(files, fd, mask, refs);
0ee8cdfe
AV
936 rcu_read_unlock();
937
938 return file;
939}
940
5e876fb4
SD
941static inline struct file *__fget(unsigned int fd, fmode_t mask,
942 unsigned int refs)
943{
944 return __fget_files(current->files, fd, mask, refs);
945}
946
091141a4
JA
947struct file *fget_many(unsigned int fd, unsigned int refs)
948{
949 return __fget(fd, FMODE_PATH, refs);
950}
951
1deb46e2
ON
952struct file *fget(unsigned int fd)
953{
091141a4 954 return __fget(fd, FMODE_PATH, 1);
1deb46e2 955}
0ee8cdfe
AV
956EXPORT_SYMBOL(fget);
957
958struct file *fget_raw(unsigned int fd)
959{
091141a4 960 return __fget(fd, 0, 1);
0ee8cdfe 961}
0ee8cdfe
AV
962EXPORT_SYMBOL(fget_raw);
963
5e876fb4
SD
964struct file *fget_task(struct task_struct *task, unsigned int fd)
965{
966 struct file *file = NULL;
967
968 task_lock(task);
969 if (task->files)
970 file = __fget_files(task->files, fd, 0, 1);
971 task_unlock(task);
972
973 return file;
974}
975
3a879fb3
EB
976struct file *task_lookup_fd_rcu(struct task_struct *task, unsigned int fd)
977{
978 /* Must be called with rcu_read_lock held */
979 struct files_struct *files;
980 struct file *file = NULL;
981
982 task_lock(task);
983 files = task->files;
984 if (files)
985 file = files_lookup_fd_rcu(files, fd);
986 task_unlock(task);
987
988 return file;
989}
990
e9a53aeb
EB
991struct file *task_lookup_next_fd_rcu(struct task_struct *task, unsigned int *ret_fd)
992{
993 /* Must be called with rcu_read_lock held */
994 struct files_struct *files;
995 unsigned int fd = *ret_fd;
996 struct file *file = NULL;
997
998 task_lock(task);
999 files = task->files;
1000 if (files) {
1001 for (; fd < files_fdtable(files)->max_fds; fd++) {
1002 file = files_lookup_fd_rcu(files, fd);
1003 if (file)
1004 break;
1005 }
1006 }
1007 task_unlock(task);
1008 *ret_fd = fd;
1009 return file;
1010}
1011
0ee8cdfe
AV
1012/*
1013 * Lightweight file lookup - no refcnt increment if fd table isn't shared.
1014 *
1015 * You can use this instead of fget if you satisfy all of the following
1016 * conditions:
1017 * 1) You must call fput_light before exiting the syscall and returning control
1018 * to userspace (i.e. you cannot remember the returned struct file * after
1019 * returning to userspace).
1020 * 2) You must not call filp_close on the returned struct file * in between
1021 * calls to fget_light and fput_light.
1022 * 3) You must not clone the current task in between the calls to fget_light
1023 * and fput_light.
1024 *
1025 * The fput_needed flag returned by fget_light should be passed to the
1026 * corresponding fput_light.
1027 */
bd2a31d5 1028static unsigned long __fget_light(unsigned int fd, fmode_t mask)
0ee8cdfe 1029{
0ee8cdfe 1030 struct files_struct *files = current->files;
ad461834 1031 struct file *file;
0ee8cdfe 1032
0ee8cdfe 1033 if (atomic_read(&files->count) == 1) {
bebf684b 1034 file = files_lookup_fd_raw(files, fd);
bd2a31d5
AV
1035 if (!file || unlikely(file->f_mode & mask))
1036 return 0;
1037 return (unsigned long)file;
0ee8cdfe 1038 } else {
091141a4 1039 file = __fget(fd, mask, 1);
bd2a31d5
AV
1040 if (!file)
1041 return 0;
1042 return FDPUT_FPUT | (unsigned long)file;
0ee8cdfe 1043 }
0ee8cdfe 1044}
bd2a31d5 1045unsigned long __fdget(unsigned int fd)
ad461834 1046{
bd2a31d5 1047 return __fget_light(fd, FMODE_PATH);
ad461834 1048}
bd2a31d5 1049EXPORT_SYMBOL(__fdget);
0ee8cdfe 1050
bd2a31d5 1051unsigned long __fdget_raw(unsigned int fd)
0ee8cdfe 1052{
bd2a31d5 1053 return __fget_light(fd, 0);
0ee8cdfe 1054}
fe17f22d 1055
bd2a31d5
AV
1056unsigned long __fdget_pos(unsigned int fd)
1057{
99aea681
EB
1058 unsigned long v = __fdget(fd);
1059 struct file *file = (struct file *)(v & ~3);
bd2a31d5 1060
2be7d348 1061 if (file && (file->f_mode & FMODE_ATOMIC_POS)) {
bd2a31d5
AV
1062 if (file_count(file) > 1) {
1063 v |= FDPUT_POS_UNLOCK;
1064 mutex_lock(&file->f_pos_lock);
1065 }
1066 }
99aea681 1067 return v;
bd2a31d5
AV
1068}
1069
63b6df14
AV
1070void __f_unlock_pos(struct file *f)
1071{
1072 mutex_unlock(&f->f_pos_lock);
1073}
1074
bd2a31d5
AV
1075/*
1076 * We only lock f_pos if we have threads or if the file might be
1077 * shared with another process. In both cases we'll have an elevated
1078 * file count (done either by fdget() or by fork()).
1079 */
1080
fe17f22d
AV
1081void set_close_on_exec(unsigned int fd, int flag)
1082{
1083 struct files_struct *files = current->files;
1084 struct fdtable *fdt;
1085 spin_lock(&files->file_lock);
1086 fdt = files_fdtable(files);
1087 if (flag)
1088 __set_close_on_exec(fd, fdt);
1089 else
1090 __clear_close_on_exec(fd, fdt);
1091 spin_unlock(&files->file_lock);
1092}
1093
1094bool get_close_on_exec(unsigned int fd)
1095{
1096 struct files_struct *files = current->files;
1097 struct fdtable *fdt;
1098 bool res;
1099 rcu_read_lock();
1100 fdt = files_fdtable(files);
1101 res = close_on_exec(fd, fdt);
1102 rcu_read_unlock();
1103 return res;
1104}
1105
8280d161
AV
1106static int do_dup2(struct files_struct *files,
1107 struct file *file, unsigned fd, unsigned flags)
e983094d 1108__releases(&files->file_lock)
fe17f22d 1109{
8280d161 1110 struct file *tofree;
fe17f22d
AV
1111 struct fdtable *fdt;
1112
fe17f22d
AV
1113 /*
1114 * We need to detect attempts to do dup2() over allocated but still
1115 * not finished descriptor. NB: OpenBSD avoids that at the price of
1116 * extra work in their equivalent of fget() - they insert struct
1117 * file immediately after grabbing descriptor, mark it larval if
1118 * more work (e.g. actual opening) is needed and make sure that
1119 * fget() treats larval files as absent. Potentially interesting,
1120 * but while extra work in fget() is trivial, locking implications
1121 * and amount of surgery on open()-related paths in VFS are not.
1122 * FreeBSD fails with -EBADF in the same situation, NetBSD "solution"
1123 * deadlocks in rather amusing ways, AFAICS. All of that is out of
1124 * scope of POSIX or SUS, since neither considers shared descriptor
1125 * tables and this condition does not arise without those.
1126 */
fe17f22d 1127 fdt = files_fdtable(files);
8280d161
AV
1128 tofree = fdt->fd[fd];
1129 if (!tofree && fd_is_open(fd, fdt))
1130 goto Ebusy;
fe17f22d 1131 get_file(file);
8280d161
AV
1132 rcu_assign_pointer(fdt->fd[fd], file);
1133 __set_open_fd(fd, fdt);
fe17f22d 1134 if (flags & O_CLOEXEC)
8280d161 1135 __set_close_on_exec(fd, fdt);
fe17f22d 1136 else
8280d161 1137 __clear_close_on_exec(fd, fdt);
fe17f22d
AV
1138 spin_unlock(&files->file_lock);
1139
1140 if (tofree)
1141 filp_close(tofree, files);
1142
8280d161
AV
1143 return fd;
1144
1145Ebusy:
1146 spin_unlock(&files->file_lock);
1147 return -EBUSY;
1148}
1149
1150int replace_fd(unsigned fd, struct file *file, unsigned flags)
1151{
1152 int err;
1153 struct files_struct *files = current->files;
1154
1155 if (!file)
8760c909 1156 return close_fd(fd);
8280d161
AV
1157
1158 if (fd >= rlimit(RLIMIT_NOFILE))
08f05c49 1159 return -EBADF;
8280d161
AV
1160
1161 spin_lock(&files->file_lock);
1162 err = expand_files(files, fd);
1163 if (unlikely(err < 0))
1164 goto out_unlock;
1165 return do_dup2(files, file, fd, flags);
1166
1167out_unlock:
1168 spin_unlock(&files->file_lock);
1169 return err;
1170}
1171
66590610
KC
1172/**
1173 * __receive_fd() - Install received file into file descriptor table
66590610
KC
1174 * @file: struct file that was received from another process
1175 * @ufd: __user pointer to write new fd number to
1176 * @o_flags: the O_* flags to apply to the new fd entry
1177 *
1178 * Installs a received file into the file descriptor table, with appropriate
deefa7f3
KC
1179 * checks and count updates. Optionally writes the fd number to userspace, if
1180 * @ufd is non-NULL.
66590610
KC
1181 *
1182 * This helper handles its own reference counting of the incoming
1183 * struct file.
1184 *
deefa7f3 1185 * Returns newly install fd or -ve on error.
66590610 1186 */
42eb0d54 1187int __receive_fd(struct file *file, int __user *ufd, unsigned int o_flags)
66590610
KC
1188{
1189 int new_fd;
1190 int error;
1191
1192 error = security_file_receive(file);
1193 if (error)
1194 return error;
1195
42eb0d54
CH
1196 new_fd = get_unused_fd_flags(o_flags);
1197 if (new_fd < 0)
1198 return new_fd;
66590610 1199
deefa7f3
KC
1200 if (ufd) {
1201 error = put_user(new_fd, ufd);
1202 if (error) {
42eb0d54 1203 put_unused_fd(new_fd);
deefa7f3
KC
1204 return error;
1205 }
66590610
KC
1206 }
1207
42eb0d54
CH
1208 fd_install(new_fd, get_file(file));
1209 __receive_sock(file);
1210 return new_fd;
1211}
17381715 1212
42eb0d54
CH
1213int receive_fd_replace(int new_fd, struct file *file, unsigned int o_flags)
1214{
1215 int error;
1216
1217 error = security_file_receive(file);
1218 if (error)
1219 return error;
1220 error = replace_fd(new_fd, file, o_flags);
1221 if (error)
1222 return error;
66590610 1223 __receive_sock(file);
deefa7f3 1224 return new_fd;
66590610
KC
1225}
1226
9c930054
XY
1227int receive_fd(struct file *file, unsigned int o_flags)
1228{
1229 return __receive_fd(file, NULL, o_flags);
1230}
1231EXPORT_SYMBOL_GPL(receive_fd);
1232
c7248321 1233static int ksys_dup3(unsigned int oldfd, unsigned int newfd, int flags)
8280d161
AV
1234{
1235 int err = -EBADF;
1236 struct file *file;
1237 struct files_struct *files = current->files;
1238
1239 if ((flags & ~O_CLOEXEC) != 0)
1240 return -EINVAL;
1241
aed97647
RJ
1242 if (unlikely(oldfd == newfd))
1243 return -EINVAL;
1244
8280d161 1245 if (newfd >= rlimit(RLIMIT_NOFILE))
08f05c49 1246 return -EBADF;
8280d161
AV
1247
1248 spin_lock(&files->file_lock);
1249 err = expand_files(files, newfd);
120ce2b0 1250 file = files_lookup_fd_locked(files, oldfd);
8280d161
AV
1251 if (unlikely(!file))
1252 goto Ebadf;
1253 if (unlikely(err < 0)) {
1254 if (err == -EMFILE)
1255 goto Ebadf;
1256 goto out_unlock;
1257 }
1258 return do_dup2(files, file, newfd, flags);
fe17f22d
AV
1259
1260Ebadf:
1261 err = -EBADF;
1262out_unlock:
1263 spin_unlock(&files->file_lock);
1264 return err;
1265}
1266
c7248321
DB
1267SYSCALL_DEFINE3(dup3, unsigned int, oldfd, unsigned int, newfd, int, flags)
1268{
1269 return ksys_dup3(oldfd, newfd, flags);
1270}
1271
fe17f22d
AV
1272SYSCALL_DEFINE2(dup2, unsigned int, oldfd, unsigned int, newfd)
1273{
1274 if (unlikely(newfd == oldfd)) { /* corner case */
1275 struct files_struct *files = current->files;
1276 int retval = oldfd;
1277
1278 rcu_read_lock();
f36c2943 1279 if (!files_lookup_fd_rcu(files, oldfd))
fe17f22d
AV
1280 retval = -EBADF;
1281 rcu_read_unlock();
1282 return retval;
1283 }
c7248321 1284 return ksys_dup3(oldfd, newfd, 0);
fe17f22d
AV
1285}
1286
bc1cd99a 1287SYSCALL_DEFINE1(dup, unsigned int, fildes)
fe17f22d
AV
1288{
1289 int ret = -EBADF;
1290 struct file *file = fget_raw(fildes);
1291
1292 if (file) {
8d10a035 1293 ret = get_unused_fd_flags(0);
fe17f22d
AV
1294 if (ret >= 0)
1295 fd_install(ret, file);
1296 else
1297 fput(file);
1298 }
1299 return ret;
1300}
1301
1302int f_dupfd(unsigned int from, struct file *file, unsigned flags)
1303{
e06b53c2 1304 unsigned long nofile = rlimit(RLIMIT_NOFILE);
fe17f22d 1305 int err;
e06b53c2 1306 if (from >= nofile)
fe17f22d 1307 return -EINVAL;
e06b53c2 1308 err = alloc_fd(from, nofile, flags);
fe17f22d
AV
1309 if (err >= 0) {
1310 get_file(file);
1311 fd_install(err, file);
1312 }
1313 return err;
1314}
c3c073f8
AV
1315
1316int iterate_fd(struct files_struct *files, unsigned n,
1317 int (*f)(const void *, struct file *, unsigned),
1318 const void *p)
1319{
1320 struct fdtable *fdt;
c3c073f8
AV
1321 int res = 0;
1322 if (!files)
1323 return 0;
1324 spin_lock(&files->file_lock);
a77cfcb4
AV
1325 for (fdt = files_fdtable(files); n < fdt->max_fds; n++) {
1326 struct file *file;
1327 file = rcu_dereference_check_fdtable(files, fdt->fd[n]);
1328 if (!file)
1329 continue;
1330 res = f(p, file, n);
1331 if (res)
1332 break;
c3c073f8
AV
1333 }
1334 spin_unlock(&files->file_lock);
1335 return res;
1336}
1337EXPORT_SYMBOL(iterate_fd);