4 * Copyright (C) 2007 Davide Libenzi <davidel@xmailserver.org>
8 #include <linux/file.h>
9 #include <linux/poll.h>
10 #include <linux/init.h>
12 #include <linux/sched/signal.h>
13 #include <linux/kernel.h>
14 #include <linux/slab.h>
15 #include <linux/list.h>
16 #include <linux/spinlock.h>
17 #include <linux/anon_inodes.h>
18 #include <linux/syscalls.h>
19 #include <linux/export.h>
20 #include <linux/kref.h>
21 #include <linux/eventfd.h>
22 #include <linux/proc_fs.h>
23 #include <linux/seq_file.h>
24 #include <linux/idr.h>
26 static DEFINE_IDA(eventfd_ida
);
30 wait_queue_head_t wqh
;
32 * Every time that a write(2) is performed on an eventfd, the
33 * value of the __u64 being written is added to "count" and a
34 * wakeup is performed on "wqh". A read(2) will return the "count"
35 * value to userspace, and will reset "count" to zero. The kernel
36 * side eventfd_signal() also, adds to the "count" counter and
45 * eventfd_signal - Adds @n to the eventfd counter.
46 * @ctx: [in] Pointer to the eventfd context.
47 * @n: [in] Value of the counter to be added to the eventfd internal counter.
48 * The value cannot be negative.
50 * This function is supposed to be called by the kernel in paths that do not
51 * allow sleeping. In this function we allow the counter to reach the ULLONG_MAX
52 * value, and we signal this as overflow condition by returning a EPOLLERR
55 * Returns the amount by which the counter was incremented. This will be less
56 * than @n if the counter has overflowed.
58 __u64
eventfd_signal(struct eventfd_ctx
*ctx
, __u64 n
)
62 spin_lock_irqsave(&ctx
->wqh
.lock
, flags
);
63 if (ULLONG_MAX
- ctx
->count
< n
)
64 n
= ULLONG_MAX
- ctx
->count
;
66 if (waitqueue_active(&ctx
->wqh
))
67 wake_up_locked_poll(&ctx
->wqh
, EPOLLIN
);
68 spin_unlock_irqrestore(&ctx
->wqh
.lock
, flags
);
72 EXPORT_SYMBOL_GPL(eventfd_signal
);
74 static void eventfd_free_ctx(struct eventfd_ctx
*ctx
)
77 ida_simple_remove(&eventfd_ida
, ctx
->id
);
81 static void eventfd_free(struct kref
*kref
)
83 struct eventfd_ctx
*ctx
= container_of(kref
, struct eventfd_ctx
, kref
);
85 eventfd_free_ctx(ctx
);
89 * eventfd_ctx_put - Releases a reference to the internal eventfd context.
90 * @ctx: [in] Pointer to eventfd context.
92 * The eventfd context reference must have been previously acquired either
93 * with eventfd_ctx_fdget() or eventfd_ctx_fileget().
95 void eventfd_ctx_put(struct eventfd_ctx
*ctx
)
97 kref_put(&ctx
->kref
, eventfd_free
);
99 EXPORT_SYMBOL_GPL(eventfd_ctx_put
);
101 static int eventfd_release(struct inode
*inode
, struct file
*file
)
103 struct eventfd_ctx
*ctx
= file
->private_data
;
105 wake_up_poll(&ctx
->wqh
, EPOLLHUP
);
106 eventfd_ctx_put(ctx
);
110 static __poll_t
eventfd_poll(struct file
*file
, poll_table
*wait
)
112 struct eventfd_ctx
*ctx
= file
->private_data
;
116 poll_wait(file
, &ctx
->wqh
, wait
);
119 * All writes to ctx->count occur within ctx->wqh.lock. This read
120 * can be done outside ctx->wqh.lock because we know that poll_wait
121 * takes that lock (through add_wait_queue) if our caller will sleep.
123 * The read _can_ therefore seep into add_wait_queue's critical
124 * section, but cannot move above it! add_wait_queue's spin_lock acts
125 * as an acquire barrier and ensures that the read be ordered properly
126 * against the writes. The following CAN happen and is safe:
129 * ----------------- ------------
130 * lock ctx->wqh.lock (in poll_wait)
133 * unlock ctx->wqh.lock
136 * if (waitqueue_active)
137 * wake_up_locked_poll
138 * unlock ctx->qwh.lock
139 * eventfd_poll returns 0
141 * but the following, which would miss a wakeup, cannot happen:
144 * ----------------- ------------
145 * count = ctx->count (INVALID!)
148 * **waitqueue_active is false**
149 * **no wake_up_locked_poll!**
150 * unlock ctx->qwh.lock
151 * lock ctx->wqh.lock (in poll_wait)
153 * unlock ctx->wqh.lock
154 * eventfd_poll returns 0
156 count
= READ_ONCE(ctx
->count
);
160 if (count
== ULLONG_MAX
)
162 if (ULLONG_MAX
- 1 > count
)
168 static void eventfd_ctx_do_read(struct eventfd_ctx
*ctx
, __u64
*cnt
)
170 *cnt
= (ctx
->flags
& EFD_SEMAPHORE
) ? 1 : ctx
->count
;
175 * eventfd_ctx_remove_wait_queue - Read the current counter and removes wait queue.
176 * @ctx: [in] Pointer to eventfd context.
177 * @wait: [in] Wait queue to be removed.
178 * @cnt: [out] Pointer to the 64-bit counter value.
180 * Returns %0 if successful, or the following error codes:
182 * -EAGAIN : The operation would have blocked.
184 * This is used to atomically remove a wait queue entry from the eventfd wait
185 * queue head, and read/reset the counter value.
187 int eventfd_ctx_remove_wait_queue(struct eventfd_ctx
*ctx
, wait_queue_entry_t
*wait
,
192 spin_lock_irqsave(&ctx
->wqh
.lock
, flags
);
193 eventfd_ctx_do_read(ctx
, cnt
);
194 __remove_wait_queue(&ctx
->wqh
, wait
);
195 if (*cnt
!= 0 && waitqueue_active(&ctx
->wqh
))
196 wake_up_locked_poll(&ctx
->wqh
, EPOLLOUT
);
197 spin_unlock_irqrestore(&ctx
->wqh
.lock
, flags
);
199 return *cnt
!= 0 ? 0 : -EAGAIN
;
201 EXPORT_SYMBOL_GPL(eventfd_ctx_remove_wait_queue
);
203 static ssize_t
eventfd_read(struct file
*file
, char __user
*buf
, size_t count
,
206 struct eventfd_ctx
*ctx
= file
->private_data
;
209 DECLARE_WAITQUEUE(wait
, current
);
211 if (count
< sizeof(ucnt
))
214 spin_lock_irq(&ctx
->wqh
.lock
);
218 else if (!(file
->f_flags
& O_NONBLOCK
)) {
219 __add_wait_queue(&ctx
->wqh
, &wait
);
221 set_current_state(TASK_INTERRUPTIBLE
);
222 if (ctx
->count
> 0) {
226 if (signal_pending(current
)) {
230 spin_unlock_irq(&ctx
->wqh
.lock
);
232 spin_lock_irq(&ctx
->wqh
.lock
);
234 __remove_wait_queue(&ctx
->wqh
, &wait
);
235 __set_current_state(TASK_RUNNING
);
237 if (likely(res
> 0)) {
238 eventfd_ctx_do_read(ctx
, &ucnt
);
239 if (waitqueue_active(&ctx
->wqh
))
240 wake_up_locked_poll(&ctx
->wqh
, EPOLLOUT
);
242 spin_unlock_irq(&ctx
->wqh
.lock
);
244 if (res
> 0 && put_user(ucnt
, (__u64 __user
*)buf
))
250 static ssize_t
eventfd_write(struct file
*file
, const char __user
*buf
, size_t count
,
253 struct eventfd_ctx
*ctx
= file
->private_data
;
256 DECLARE_WAITQUEUE(wait
, current
);
258 if (count
< sizeof(ucnt
))
260 if (copy_from_user(&ucnt
, buf
, sizeof(ucnt
)))
262 if (ucnt
== ULLONG_MAX
)
264 spin_lock_irq(&ctx
->wqh
.lock
);
266 if (ULLONG_MAX
- ctx
->count
> ucnt
)
268 else if (!(file
->f_flags
& O_NONBLOCK
)) {
269 __add_wait_queue(&ctx
->wqh
, &wait
);
271 set_current_state(TASK_INTERRUPTIBLE
);
272 if (ULLONG_MAX
- ctx
->count
> ucnt
) {
276 if (signal_pending(current
)) {
280 spin_unlock_irq(&ctx
->wqh
.lock
);
282 spin_lock_irq(&ctx
->wqh
.lock
);
284 __remove_wait_queue(&ctx
->wqh
, &wait
);
285 __set_current_state(TASK_RUNNING
);
287 if (likely(res
> 0)) {
289 if (waitqueue_active(&ctx
->wqh
))
290 wake_up_locked_poll(&ctx
->wqh
, EPOLLIN
);
292 spin_unlock_irq(&ctx
->wqh
.lock
);
297 #ifdef CONFIG_PROC_FS
298 static void eventfd_show_fdinfo(struct seq_file
*m
, struct file
*f
)
300 struct eventfd_ctx
*ctx
= f
->private_data
;
302 spin_lock_irq(&ctx
->wqh
.lock
);
303 seq_printf(m
, "eventfd-count: %16llx\n",
304 (unsigned long long)ctx
->count
);
305 spin_unlock_irq(&ctx
->wqh
.lock
);
306 seq_printf(m
, "eventfd-id: %d\n", ctx
->id
);
310 static const struct file_operations eventfd_fops
= {
311 #ifdef CONFIG_PROC_FS
312 .show_fdinfo
= eventfd_show_fdinfo
,
314 .release
= eventfd_release
,
315 .poll
= eventfd_poll
,
316 .read
= eventfd_read
,
317 .write
= eventfd_write
,
318 .llseek
= noop_llseek
,
322 * eventfd_fget - Acquire a reference of an eventfd file descriptor.
323 * @fd: [in] Eventfd file descriptor.
325 * Returns a pointer to the eventfd file structure in case of success, or the
326 * following error pointer:
328 * -EBADF : Invalid @fd file descriptor.
329 * -EINVAL : The @fd file descriptor is not an eventfd file.
331 struct file
*eventfd_fget(int fd
)
337 return ERR_PTR(-EBADF
);
338 if (file
->f_op
!= &eventfd_fops
) {
340 return ERR_PTR(-EINVAL
);
345 EXPORT_SYMBOL_GPL(eventfd_fget
);
348 * eventfd_ctx_fdget - Acquires a reference to the internal eventfd context.
349 * @fd: [in] Eventfd file descriptor.
351 * Returns a pointer to the internal eventfd context, otherwise the error
352 * pointers returned by the following functions:
356 struct eventfd_ctx
*eventfd_ctx_fdget(int fd
)
358 struct eventfd_ctx
*ctx
;
359 struct fd f
= fdget(fd
);
361 return ERR_PTR(-EBADF
);
362 ctx
= eventfd_ctx_fileget(f
.file
);
366 EXPORT_SYMBOL_GPL(eventfd_ctx_fdget
);
369 * eventfd_ctx_fileget - Acquires a reference to the internal eventfd context.
370 * @file: [in] Eventfd file pointer.
372 * Returns a pointer to the internal eventfd context, otherwise the error
375 * -EINVAL : The @fd file descriptor is not an eventfd file.
377 struct eventfd_ctx
*eventfd_ctx_fileget(struct file
*file
)
379 struct eventfd_ctx
*ctx
;
381 if (file
->f_op
!= &eventfd_fops
)
382 return ERR_PTR(-EINVAL
);
384 ctx
= file
->private_data
;
385 kref_get(&ctx
->kref
);
388 EXPORT_SYMBOL_GPL(eventfd_ctx_fileget
);
390 static int do_eventfd(unsigned int count
, int flags
)
392 struct eventfd_ctx
*ctx
;
395 /* Check the EFD_* constants for consistency. */
396 BUILD_BUG_ON(EFD_CLOEXEC
!= O_CLOEXEC
);
397 BUILD_BUG_ON(EFD_NONBLOCK
!= O_NONBLOCK
);
399 if (flags
& ~EFD_FLAGS_SET
)
402 ctx
= kmalloc(sizeof(*ctx
), GFP_KERNEL
);
406 kref_init(&ctx
->kref
);
407 init_waitqueue_head(&ctx
->wqh
);
410 ctx
->id
= ida_simple_get(&eventfd_ida
, 0, 0, GFP_KERNEL
);
412 fd
= anon_inode_getfd("[eventfd]", &eventfd_fops
, ctx
,
413 O_RDWR
| (flags
& EFD_SHARED_FCNTL_FLAGS
));
415 eventfd_free_ctx(ctx
);
420 SYSCALL_DEFINE2(eventfd2
, unsigned int, count
, int, flags
)
422 return do_eventfd(count
, flags
);
425 SYSCALL_DEFINE1(eventfd
, unsigned int, count
)
427 return do_eventfd(count
, 0);