Linux 6.10-rc3
[linux-block.git] / fs / timerfd.c
CommitLineData
b2441318 1// SPDX-License-Identifier: GPL-2.0
b215e283
DL
2/*
3 * fs/timerfd.c
4 *
5 * Copyright (C) 2007 Davide Libenzi <davidel@xmailserver.org>
6 *
7 *
8 * Thanks to Thomas Gleixner for code reviews and useful comments.
9 *
10 */
11
11ffa9d6 12#include <linux/alarmtimer.h>
b215e283
DL
13#include <linux/file.h>
14#include <linux/poll.h>
15#include <linux/init.h>
16#include <linux/fs.h>
17#include <linux/sched.h>
18#include <linux/kernel.h>
5a0e3ad6 19#include <linux/slab.h>
b215e283
DL
20#include <linux/list.h>
21#include <linux/spinlock.h>
22#include <linux/time.h>
23#include <linux/hrtimer.h>
24#include <linux/anon_inodes.h>
25#include <linux/timerfd.h>
45cc2b96 26#include <linux/syscalls.h>
9d94b9e2 27#include <linux/compat.h>
9ec26907 28#include <linux/rcupdate.h>
6cd889d4 29#include <linux/time_namespace.h>
b215e283
DL
30
31struct timerfd_ctx {
11ffa9d6
TP
32 union {
33 struct hrtimer tmr;
34 struct alarm alarm;
35 } t;
b215e283 36 ktime_t tintv;
99ee5315 37 ktime_t moffs;
b215e283 38 wait_queue_head_t wqh;
4d672e7a 39 u64 ticks;
4d672e7a 40 int clockid;
af9c4957
CG
41 short unsigned expired;
42 short unsigned settime_flags; /* to show in fdinfo */
9ec26907
TG
43 struct rcu_head rcu;
44 struct list_head clist;
1e38da30 45 spinlock_t cancel_lock;
99ee5315 46 bool might_cancel;
b215e283
DL
47};
48
9ec26907
TG
49static LIST_HEAD(cancel_list);
50static DEFINE_SPINLOCK(cancel_lock);
51
11ffa9d6
TP
52static inline bool isalarm(struct timerfd_ctx *ctx)
53{
54 return ctx->clockid == CLOCK_REALTIME_ALARM ||
55 ctx->clockid == CLOCK_BOOTTIME_ALARM;
56}
57
b215e283
DL
58/*
59 * This gets called when the timer event triggers. We set the "expired"
60 * flag, but we do not re-arm the timer (in case it's necessary,
2456e855 61 * tintv != 0) until the timer is accessed.
b215e283 62 */
11ffa9d6 63static void timerfd_triggered(struct timerfd_ctx *ctx)
b215e283 64{
b215e283
DL
65 unsigned long flags;
66
18963c01 67 spin_lock_irqsave(&ctx->wqh.lock, flags);
b215e283 68 ctx->expired = 1;
4d672e7a 69 ctx->ticks++;
7dda7128 70 wake_up_locked_poll(&ctx->wqh, EPOLLIN);
18963c01 71 spin_unlock_irqrestore(&ctx->wqh.lock, flags);
11ffa9d6 72}
b215e283 73
11ffa9d6
TP
74static enum hrtimer_restart timerfd_tmrproc(struct hrtimer *htmr)
75{
76 struct timerfd_ctx *ctx = container_of(htmr, struct timerfd_ctx,
77 t.tmr);
78 timerfd_triggered(ctx);
b215e283
DL
79 return HRTIMER_NORESTART;
80}
81
11ffa9d6
TP
82static enum alarmtimer_restart timerfd_alarmproc(struct alarm *alarm,
83 ktime_t now)
84{
85 struct timerfd_ctx *ctx = container_of(alarm, struct timerfd_ctx,
86 t.alarm);
87 timerfd_triggered(ctx);
88 return ALARMTIMER_NORESTART;
89}
90
9ec26907
TG
91/*
92 * Called when the clock was set to cancel the timers in the cancel
1123d939
MA
93 * list. This will wake up processes waiting on these timers. The
94 * wake-up requires ctx->ticks to be non zero, therefore we increment
95 * it before calling wake_up_locked().
9ec26907
TG
96 */
97void timerfd_clock_was_set(void)
4d672e7a 98{
2456e855 99 ktime_t moffs = ktime_mono_to_real(0);
9ec26907
TG
100 struct timerfd_ctx *ctx;
101 unsigned long flags;
4d672e7a 102
9ec26907
TG
103 rcu_read_lock();
104 list_for_each_entry_rcu(ctx, &cancel_list, clist) {
105 if (!ctx->might_cancel)
106 continue;
107 spin_lock_irqsave(&ctx->wqh.lock, flags);
2456e855
TG
108 if (ctx->moffs != moffs) {
109 ctx->moffs = KTIME_MAX;
1123d939 110 ctx->ticks++;
7dda7128 111 wake_up_locked_poll(&ctx->wqh, EPOLLIN);
9ec26907
TG
112 }
113 spin_unlock_irqrestore(&ctx->wqh.lock, flags);
114 }
115 rcu_read_unlock();
4d672e7a
DL
116}
117
66f7b0c8
TG
118static void timerfd_resume_work(struct work_struct *work)
119{
120 timerfd_clock_was_set();
121}
122
123static DECLARE_WORK(timerfd_work, timerfd_resume_work);
124
125/*
126 * Invoked from timekeeping_resume(). Defer the actual update to work so
127 * timerfd_clock_was_set() runs in task context.
128 */
129void timerfd_resume(void)
130{
131 schedule_work(&timerfd_work);
132}
133
1e38da30 134static void __timerfd_remove_cancel(struct timerfd_ctx *ctx)
99ee5315 135{
9ec26907
TG
136 if (ctx->might_cancel) {
137 ctx->might_cancel = false;
138 spin_lock(&cancel_lock);
139 list_del_rcu(&ctx->clist);
140 spin_unlock(&cancel_lock);
141 }
142}
99ee5315 143
1e38da30
TG
144static void timerfd_remove_cancel(struct timerfd_ctx *ctx)
145{
146 spin_lock(&ctx->cancel_lock);
147 __timerfd_remove_cancel(ctx);
148 spin_unlock(&ctx->cancel_lock);
149}
150
9ec26907
TG
151static bool timerfd_canceled(struct timerfd_ctx *ctx)
152{
2456e855 153 if (!ctx->might_cancel || ctx->moffs != KTIME_MAX)
99ee5315 154 return false;
2456e855 155 ctx->moffs = ktime_mono_to_real(0);
9ec26907
TG
156 return true;
157}
99ee5315 158
9ec26907
TG
159static void timerfd_setup_cancel(struct timerfd_ctx *ctx, int flags)
160{
1e38da30 161 spin_lock(&ctx->cancel_lock);
11ffa9d6
TP
162 if ((ctx->clockid == CLOCK_REALTIME ||
163 ctx->clockid == CLOCK_REALTIME_ALARM) &&
164 (flags & TFD_TIMER_ABSTIME) && (flags & TFD_TIMER_CANCEL_ON_SET)) {
9ec26907
TG
165 if (!ctx->might_cancel) {
166 ctx->might_cancel = true;
167 spin_lock(&cancel_lock);
168 list_add_rcu(&ctx->clist, &cancel_list);
169 spin_unlock(&cancel_lock);
170 }
1e38da30
TG
171 } else {
172 __timerfd_remove_cancel(ctx);
9ec26907 173 }
1e38da30 174 spin_unlock(&ctx->cancel_lock);
9ec26907 175}
99ee5315 176
9ec26907
TG
177static ktime_t timerfd_get_remaining(struct timerfd_ctx *ctx)
178{
179 ktime_t remaining;
99ee5315 180
11ffa9d6
TP
181 if (isalarm(ctx))
182 remaining = alarm_expires_remaining(&ctx->t.alarm);
183 else
b62526ed 184 remaining = hrtimer_expires_remaining_adjusted(&ctx->t.tmr);
11ffa9d6 185
8b0e1953 186 return remaining < 0 ? 0: remaining;
99ee5315
TG
187}
188
189static int timerfd_setup(struct timerfd_ctx *ctx, int flags,
bff41203 190 const struct itimerspec64 *ktmr)
b215e283
DL
191{
192 enum hrtimer_mode htmode;
193 ktime_t texp;
99ee5315 194 int clockid = ctx->clockid;
b215e283
DL
195
196 htmode = (flags & TFD_TIMER_ABSTIME) ?
197 HRTIMER_MODE_ABS: HRTIMER_MODE_REL;
198
bff41203 199 texp = timespec64_to_ktime(ktmr->it_value);
b215e283 200 ctx->expired = 0;
4d672e7a 201 ctx->ticks = 0;
bff41203 202 ctx->tintv = timespec64_to_ktime(ktmr->it_interval);
11ffa9d6
TP
203
204 if (isalarm(ctx)) {
205 alarm_init(&ctx->t.alarm,
206 ctx->clockid == CLOCK_REALTIME_ALARM ?
207 ALARM_REALTIME : ALARM_BOOTTIME,
208 timerfd_alarmproc);
209 } else {
210 hrtimer_init(&ctx->t.tmr, clockid, htmode);
211 hrtimer_set_expires(&ctx->t.tmr, texp);
212 ctx->t.tmr.function = timerfd_tmrproc;
213 }
214
2456e855 215 if (texp != 0) {
6cd889d4
AV
216 if (flags & TFD_TIMER_ABSTIME)
217 texp = timens_ktime_to_host(clockid, texp);
11ffa9d6
TP
218 if (isalarm(ctx)) {
219 if (flags & TFD_TIMER_ABSTIME)
220 alarm_start(&ctx->t.alarm, texp);
221 else
222 alarm_start_relative(&ctx->t.alarm, texp);
223 } else {
224 hrtimer_start(&ctx->t.tmr, texp, htmode);
225 }
226
99ee5315
TG
227 if (timerfd_canceled(ctx))
228 return -ECANCELED;
229 }
af9c4957
CG
230
231 ctx->settime_flags = flags & TFD_SETTIME_FLAGS;
99ee5315 232 return 0;
b215e283
DL
233}
234
235static int timerfd_release(struct inode *inode, struct file *file)
236{
237 struct timerfd_ctx *ctx = file->private_data;
238
9ec26907 239 timerfd_remove_cancel(ctx);
11ffa9d6
TP
240
241 if (isalarm(ctx))
242 alarm_cancel(&ctx->t.alarm);
243 else
244 hrtimer_cancel(&ctx->t.tmr);
9ec26907 245 kfree_rcu(ctx, rcu);
b215e283
DL
246 return 0;
247}
a11e1d43
LT
248
249static __poll_t timerfd_poll(struct file *file, poll_table *wait)
b215e283
DL
250{
251 struct timerfd_ctx *ctx = file->private_data;
a11e1d43
LT
252 __poll_t events = 0;
253 unsigned long flags;
b215e283 254
a11e1d43 255 poll_wait(file, &ctx->wqh, wait);
b215e283 256
a11e1d43
LT
257 spin_lock_irqsave(&ctx->wqh.lock, flags);
258 if (ctx->ticks)
259 events |= EPOLLIN;
260 spin_unlock_irqrestore(&ctx->wqh.lock, flags);
b215e283 261
a11e1d43 262 return events;
b215e283
DL
263}
264
d9497990 265static ssize_t timerfd_read_iter(struct kiocb *iocb, struct iov_iter *to)
b215e283 266{
d9497990 267 struct file *file = iocb->ki_filp;
b215e283
DL
268 struct timerfd_ctx *ctx = file->private_data;
269 ssize_t res;
09828402 270 u64 ticks = 0;
b215e283 271
d9497990 272 if (iov_iter_count(to) < sizeof(ticks))
b215e283 273 return -EINVAL;
d9497990 274
18963c01 275 spin_lock_irq(&ctx->wqh.lock);
d9497990 276 if (file->f_flags & O_NONBLOCK || iocb->ki_flags & IOCB_NOWAIT)
8120a8aa
MN
277 res = -EAGAIN;
278 else
279 res = wait_event_interruptible_locked_irq(ctx->wqh, ctx->ticks);
99ee5315 280
9ec26907
TG
281 /*
282 * If clock has changed, we do not care about the
283 * ticks and we do not rearm the timer. Userspace must
284 * reevaluate anyway.
285 */
286 if (timerfd_canceled(ctx)) {
287 ctx->ticks = 0;
288 ctx->expired = 0;
289 res = -ECANCELED;
290 }
291
4d672e7a
DL
292 if (ctx->ticks) {
293 ticks = ctx->ticks;
99ee5315 294
2456e855 295 if (ctx->expired && ctx->tintv) {
b215e283 296 /*
2456e855 297 * If tintv != 0, this is a periodic timer that
b215e283
DL
298 * needs to be re-armed. We avoid doing it in the timer
299 * callback to avoid DoS attacks specifying a very
300 * short timer period.
301 */
11ffa9d6
TP
302 if (isalarm(ctx)) {
303 ticks += alarm_forward_now(
304 &ctx->t.alarm, ctx->tintv) - 1;
305 alarm_restart(&ctx->t.alarm);
306 } else {
307 ticks += hrtimer_forward_now(&ctx->t.tmr,
308 ctx->tintv) - 1;
309 hrtimer_restart(&ctx->t.tmr);
310 }
4d672e7a
DL
311 }
312 ctx->expired = 0;
313 ctx->ticks = 0;
b215e283 314 }
18963c01 315 spin_unlock_irq(&ctx->wqh.lock);
d9497990
JA
316 if (ticks) {
317 res = copy_to_iter(&ticks, sizeof(ticks), to);
318 if (!res)
319 res = -EFAULT;
320 }
b215e283
DL
321 return res;
322}
323
af9c4957 324#ifdef CONFIG_PROC_FS
a3816ab0 325static void timerfd_show(struct seq_file *m, struct file *file)
af9c4957
CG
326{
327 struct timerfd_ctx *ctx = file->private_data;
bde9e963 328 struct timespec64 value, interval;
af9c4957
CG
329
330 spin_lock_irq(&ctx->wqh.lock);
bde9e963
AB
331 value = ktime_to_timespec64(timerfd_get_remaining(ctx));
332 interval = ktime_to_timespec64(ctx->tintv);
af9c4957
CG
333 spin_unlock_irq(&ctx->wqh.lock);
334
a3816ab0
JP
335 seq_printf(m,
336 "clockid: %d\n"
337 "ticks: %llu\n"
338 "settime flags: 0%o\n"
339 "it_value: (%llu, %llu)\n"
340 "it_interval: (%llu, %llu)\n",
341 ctx->clockid,
342 (unsigned long long)ctx->ticks,
343 ctx->settime_flags,
bde9e963
AB
344 (unsigned long long)value.tv_sec,
345 (unsigned long long)value.tv_nsec,
346 (unsigned long long)interval.tv_sec,
347 (unsigned long long)interval.tv_nsec);
af9c4957
CG
348}
349#else
350#define timerfd_show NULL
351#endif
352
5442e9fb
CG
353#ifdef CONFIG_CHECKPOINT_RESTORE
354static long timerfd_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
355{
356 struct timerfd_ctx *ctx = file->private_data;
357 int ret = 0;
358
359 switch (cmd) {
360 case TFD_IOC_SET_TICKS: {
361 u64 ticks;
362
363 if (copy_from_user(&ticks, (u64 __user *)arg, sizeof(ticks)))
364 return -EFAULT;
365 if (!ticks)
366 return -EINVAL;
367
368 spin_lock_irq(&ctx->wqh.lock);
369 if (!timerfd_canceled(ctx)) {
370 ctx->ticks = ticks;
7dda7128 371 wake_up_locked_poll(&ctx->wqh, EPOLLIN);
5442e9fb
CG
372 } else
373 ret = -ECANCELED;
374 spin_unlock_irq(&ctx->wqh.lock);
375 break;
376 }
377 default:
378 ret = -ENOTTY;
379 break;
380 }
381
382 return ret;
383}
384#else
385#define timerfd_ioctl NULL
386#endif
387
b215e283
DL
388static const struct file_operations timerfd_fops = {
389 .release = timerfd_release,
a11e1d43 390 .poll = timerfd_poll,
d9497990 391 .read_iter = timerfd_read_iter,
6038f373 392 .llseek = noop_llseek,
af9c4957 393 .show_fdinfo = timerfd_show,
5442e9fb 394 .unlocked_ioctl = timerfd_ioctl,
b215e283
DL
395};
396
2903ff01 397static int timerfd_fget(int fd, struct fd *p)
4d672e7a 398{
2903ff01
AV
399 struct fd f = fdget(fd);
400 if (!f.file)
401 return -EBADF;
402 if (f.file->f_op != &timerfd_fops) {
403 fdput(f);
404 return -EINVAL;
4d672e7a 405 }
2903ff01
AV
406 *p = f;
407 return 0;
4d672e7a
DL
408}
409
836f92ad 410SYSCALL_DEFINE2(timerfd_create, int, clockid, int, flags)
b215e283 411{
2030a42c 412 int ufd;
b215e283 413 struct timerfd_ctx *ctx;
d9497990 414 struct file *file;
b215e283 415
e38b36f3
UD
416 /* Check the TFD_* constants for consistency. */
417 BUILD_BUG_ON(TFD_CLOEXEC != O_CLOEXEC);
418 BUILD_BUG_ON(TFD_NONBLOCK != O_NONBLOCK);
419
610d18f4
DL
420 if ((flags & ~TFD_CREATE_FLAGS) ||
421 (clockid != CLOCK_MONOTONIC &&
11ffa9d6
TP
422 clockid != CLOCK_REALTIME &&
423 clockid != CLOCK_REALTIME_ALARM &&
4a2378a9 424 clockid != CLOCK_BOOTTIME &&
11ffa9d6 425 clockid != CLOCK_BOOTTIME_ALARM))
b215e283 426 return -EINVAL;
4d672e7a 427
25b68a8f
SS
428 if ((clockid == CLOCK_REALTIME_ALARM ||
429 clockid == CLOCK_BOOTTIME_ALARM) &&
430 !capable(CAP_WAKE_ALARM))
2895a5e5
EC
431 return -EPERM;
432
4d672e7a
DL
433 ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
434 if (!ctx)
435 return -ENOMEM;
436
437 init_waitqueue_head(&ctx->wqh);
1e38da30 438 spin_lock_init(&ctx->cancel_lock);
4d672e7a 439 ctx->clockid = clockid;
11ffa9d6
TP
440
441 if (isalarm(ctx))
442 alarm_init(&ctx->t.alarm,
443 ctx->clockid == CLOCK_REALTIME_ALARM ?
444 ALARM_REALTIME : ALARM_BOOTTIME,
445 timerfd_alarmproc);
446 else
447 hrtimer_init(&ctx->t.tmr, clockid, HRTIMER_MODE_ABS);
448
2456e855 449 ctx->moffs = ktime_mono_to_real(0);
4d672e7a 450
d9497990
JA
451 ufd = get_unused_fd_flags(flags & TFD_SHARED_FCNTL_FLAGS);
452 if (ufd < 0) {
453 kfree(ctx);
454 return ufd;
455 }
456
457 file = anon_inode_getfile("[timerfd]", &timerfd_fops, ctx,
458 O_RDWR | (flags & TFD_SHARED_FCNTL_FLAGS));
459 if (IS_ERR(file)) {
460 put_unused_fd(ufd);
4d672e7a 461 kfree(ctx);
d9497990
JA
462 return PTR_ERR(file);
463 }
4d672e7a 464
d9497990
JA
465 file->f_mode |= FMODE_NOWAIT;
466 fd_install(ufd, file);
4d672e7a
DL
467 return ufd;
468}
469
9d94b9e2 470static int do_timerfd_settime(int ufd, int flags,
bff41203
DD
471 const struct itimerspec64 *new,
472 struct itimerspec64 *old)
4d672e7a 473{
2903ff01 474 struct fd f;
4d672e7a 475 struct timerfd_ctx *ctx;
2903ff01 476 int ret;
4d672e7a 477
610d18f4 478 if ((flags & ~TFD_SETTIME_FLAGS) ||
bff41203 479 !itimerspec64_valid(new))
b215e283
DL
480 return -EINVAL;
481
2903ff01
AV
482 ret = timerfd_fget(ufd, &f);
483 if (ret)
484 return ret;
485 ctx = f.file->private_data;
b215e283 486
25b68a8f 487 if (isalarm(ctx) && !capable(CAP_WAKE_ALARM)) {
2895a5e5
EC
488 fdput(f);
489 return -EPERM;
490 }
491
9ec26907
TG
492 timerfd_setup_cancel(ctx, flags);
493
4d672e7a
DL
494 /*
495 * We need to stop the existing timer before reprogramming
496 * it to the new values.
497 */
498 for (;;) {
499 spin_lock_irq(&ctx->wqh.lock);
11ffa9d6
TP
500
501 if (isalarm(ctx)) {
502 if (alarm_try_to_cancel(&ctx->t.alarm) >= 0)
503 break;
504 } else {
505 if (hrtimer_try_to_cancel(&ctx->t.tmr) >= 0)
506 break;
507 }
18963c01 508 spin_unlock_irq(&ctx->wqh.lock);
a125ecc1
AMG
509
510 if (isalarm(ctx))
511 hrtimer_cancel_wait_running(&ctx->t.alarm.timer);
512 else
513 hrtimer_cancel_wait_running(&ctx->t.tmr);
b215e283
DL
514 }
515
4d672e7a
DL
516 /*
517 * If the timer is expired and it's periodic, we need to advance it
518 * because the caller may want to know the previous expiration time.
519 * We do not update "ticks" and "expired" since the timer will be
520 * re-programmed again in the following timerfd_setup() call.
521 */
2456e855 522 if (ctx->expired && ctx->tintv) {
11ffa9d6
TP
523 if (isalarm(ctx))
524 alarm_forward_now(&ctx->t.alarm, ctx->tintv);
525 else
526 hrtimer_forward_now(&ctx->t.tmr, ctx->tintv);
527 }
b215e283 528
bff41203
DD
529 old->it_value = ktime_to_timespec64(timerfd_get_remaining(ctx));
530 old->it_interval = ktime_to_timespec64(ctx->tintv);
4d672e7a
DL
531
532 /*
533 * Re-program the timer to the new value ...
534 */
9d94b9e2 535 ret = timerfd_setup(ctx, flags, new);
4d672e7a
DL
536
537 spin_unlock_irq(&ctx->wqh.lock);
2903ff01 538 fdput(f);
99ee5315 539 return ret;
4d672e7a
DL
540}
541
bff41203 542static int do_timerfd_gettime(int ufd, struct itimerspec64 *t)
4d672e7a 543{
2903ff01 544 struct fd f;
4d672e7a 545 struct timerfd_ctx *ctx;
2903ff01
AV
546 int ret = timerfd_fget(ufd, &f);
547 if (ret)
548 return ret;
549 ctx = f.file->private_data;
4d672e7a
DL
550
551 spin_lock_irq(&ctx->wqh.lock);
2456e855 552 if (ctx->expired && ctx->tintv) {
4d672e7a 553 ctx->expired = 0;
11ffa9d6
TP
554
555 if (isalarm(ctx)) {
556 ctx->ticks +=
557 alarm_forward_now(
558 &ctx->t.alarm, ctx->tintv) - 1;
559 alarm_restart(&ctx->t.alarm);
560 } else {
561 ctx->ticks +=
562 hrtimer_forward_now(&ctx->t.tmr, ctx->tintv)
563 - 1;
564 hrtimer_restart(&ctx->t.tmr);
565 }
4d672e7a 566 }
bff41203
DD
567 t->it_value = ktime_to_timespec64(timerfd_get_remaining(ctx));
568 t->it_interval = ktime_to_timespec64(ctx->tintv);
4d672e7a 569 spin_unlock_irq(&ctx->wqh.lock);
2903ff01 570 fdput(f);
9d94b9e2
AV
571 return 0;
572}
573
574SYSCALL_DEFINE4(timerfd_settime, int, ufd, int, flags,
6ff84735
DD
575 const struct __kernel_itimerspec __user *, utmr,
576 struct __kernel_itimerspec __user *, otmr)
9d94b9e2 577{
bff41203 578 struct itimerspec64 new, old;
9d94b9e2
AV
579 int ret;
580
bff41203 581 if (get_itimerspec64(&new, utmr))
9d94b9e2
AV
582 return -EFAULT;
583 ret = do_timerfd_settime(ufd, flags, &new, &old);
584 if (ret)
585 return ret;
bff41203 586 if (otmr && put_itimerspec64(&old, otmr))
9d94b9e2
AV
587 return -EFAULT;
588
589 return ret;
590}
4d672e7a 591
6ff84735 592SYSCALL_DEFINE2(timerfd_gettime, int, ufd, struct __kernel_itimerspec __user *, otmr)
9d94b9e2 593{
bff41203 594 struct itimerspec64 kotmr;
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AV
595 int ret = do_timerfd_gettime(ufd, &kotmr);
596 if (ret)
597 return ret;
bff41203 598 return put_itimerspec64(&kotmr, otmr) ? -EFAULT : 0;
b215e283
DL
599}
600
6ff84735 601#ifdef CONFIG_COMPAT_32BIT_TIME
8dabe724 602SYSCALL_DEFINE4(timerfd_settime32, int, ufd, int, flags,
9afc5eee
AB
603 const struct old_itimerspec32 __user *, utmr,
604 struct old_itimerspec32 __user *, otmr)
9d94b9e2 605{
bff41203 606 struct itimerspec64 new, old;
9d94b9e2
AV
607 int ret;
608
9afc5eee 609 if (get_old_itimerspec32(&new, utmr))
9d94b9e2
AV
610 return -EFAULT;
611 ret = do_timerfd_settime(ufd, flags, &new, &old);
612 if (ret)
613 return ret;
9afc5eee 614 if (otmr && put_old_itimerspec32(&old, otmr))
9d94b9e2
AV
615 return -EFAULT;
616 return ret;
617}
618
8dabe724 619SYSCALL_DEFINE2(timerfd_gettime32, int, ufd,
9afc5eee 620 struct old_itimerspec32 __user *, otmr)
9d94b9e2 621{
bff41203 622 struct itimerspec64 kotmr;
9d94b9e2
AV
623 int ret = do_timerfd_gettime(ufd, &kotmr);
624 if (ret)
625 return ret;
9afc5eee 626 return put_old_itimerspec32(&kotmr, otmr) ? -EFAULT : 0;
9d94b9e2
AV
627}
628#endif