1 // SPDX-License-Identifier: GPL-2.0
3 * RTC subsystem, dev interface
5 * Copyright (C) 2005 Tower Technologies
6 * Author: Alessandro Zummo <a.zummo@towertech.it>
8 * based on arch/arm/common/rtctime.c
11 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
13 #include <linux/module.h>
14 #include <linux/rtc.h>
15 #include <linux/sched/signal.h>
18 static dev_t rtc_devt
;
20 #define RTC_DEV_MAX 16 /* 16 RTCs should be enough for everyone... */
22 static int rtc_dev_open(struct inode
*inode
, struct file
*file
)
24 struct rtc_device
*rtc
= container_of(inode
->i_cdev
,
25 struct rtc_device
, char_dev
);
27 if (test_and_set_bit_lock(RTC_DEV_BUSY
, &rtc
->flags
))
30 file
->private_data
= rtc
;
32 spin_lock_irq(&rtc
->irq_lock
);
34 spin_unlock_irq(&rtc
->irq_lock
);
39 #ifdef CONFIG_RTC_INTF_DEV_UIE_EMUL
41 * Routine to poll RTC seconds field for change as often as possible,
42 * after first RTC_UIE use timer to reduce polling
44 static void rtc_uie_task(struct work_struct
*work
)
46 struct rtc_device
*rtc
=
47 container_of(work
, struct rtc_device
, uie_task
);
52 err
= rtc_read_time(rtc
, &tm
);
54 spin_lock_irq(&rtc
->irq_lock
);
55 if (rtc
->stop_uie_polling
|| err
) {
56 rtc
->uie_task_active
= 0;
57 } else if (rtc
->oldsecs
!= tm
.tm_sec
) {
58 num
= (tm
.tm_sec
+ 60 - rtc
->oldsecs
) % 60;
59 rtc
->oldsecs
= tm
.tm_sec
;
60 rtc
->uie_timer
.expires
= jiffies
+ HZ
- (HZ
/ 10);
61 rtc
->uie_timer_active
= 1;
62 rtc
->uie_task_active
= 0;
63 add_timer(&rtc
->uie_timer
);
64 } else if (schedule_work(&rtc
->uie_task
) == 0) {
65 rtc
->uie_task_active
= 0;
67 spin_unlock_irq(&rtc
->irq_lock
);
69 rtc_handle_legacy_irq(rtc
, num
, RTC_UF
);
72 static void rtc_uie_timer(struct timer_list
*t
)
74 struct rtc_device
*rtc
= from_timer(rtc
, t
, uie_timer
);
77 spin_lock_irqsave(&rtc
->irq_lock
, flags
);
78 rtc
->uie_timer_active
= 0;
79 rtc
->uie_task_active
= 1;
80 if ((schedule_work(&rtc
->uie_task
) == 0))
81 rtc
->uie_task_active
= 0;
82 spin_unlock_irqrestore(&rtc
->irq_lock
, flags
);
85 static int clear_uie(struct rtc_device
*rtc
)
87 spin_lock_irq(&rtc
->irq_lock
);
88 if (rtc
->uie_irq_active
) {
89 rtc
->stop_uie_polling
= 1;
90 if (rtc
->uie_timer_active
) {
91 spin_unlock_irq(&rtc
->irq_lock
);
92 del_timer_sync(&rtc
->uie_timer
);
93 spin_lock_irq(&rtc
->irq_lock
);
94 rtc
->uie_timer_active
= 0;
96 if (rtc
->uie_task_active
) {
97 spin_unlock_irq(&rtc
->irq_lock
);
98 flush_scheduled_work();
99 spin_lock_irq(&rtc
->irq_lock
);
101 rtc
->uie_irq_active
= 0;
103 spin_unlock_irq(&rtc
->irq_lock
);
107 static int set_uie(struct rtc_device
*rtc
)
112 err
= rtc_read_time(rtc
, &tm
);
115 spin_lock_irq(&rtc
->irq_lock
);
116 if (!rtc
->uie_irq_active
) {
117 rtc
->uie_irq_active
= 1;
118 rtc
->stop_uie_polling
= 0;
119 rtc
->oldsecs
= tm
.tm_sec
;
120 rtc
->uie_task_active
= 1;
121 if (schedule_work(&rtc
->uie_task
) == 0)
122 rtc
->uie_task_active
= 0;
125 spin_unlock_irq(&rtc
->irq_lock
);
129 int rtc_dev_update_irq_enable_emul(struct rtc_device
*rtc
, unsigned int enabled
)
134 return clear_uie(rtc
);
136 EXPORT_SYMBOL(rtc_dev_update_irq_enable_emul
);
138 #endif /* CONFIG_RTC_INTF_DEV_UIE_EMUL */
141 rtc_dev_read(struct file
*file
, char __user
*buf
, size_t count
, loff_t
*ppos
)
143 struct rtc_device
*rtc
= file
->private_data
;
145 DECLARE_WAITQUEUE(wait
, current
);
149 if (count
!= sizeof(unsigned int) && count
< sizeof(unsigned long))
152 add_wait_queue(&rtc
->irq_queue
, &wait
);
154 __set_current_state(TASK_INTERRUPTIBLE
);
156 spin_lock_irq(&rtc
->irq_lock
);
157 data
= rtc
->irq_data
;
159 spin_unlock_irq(&rtc
->irq_lock
);
165 if (file
->f_flags
& O_NONBLOCK
) {
169 if (signal_pending(current
)) {
175 set_current_state(TASK_RUNNING
);
176 remove_wait_queue(&rtc
->irq_queue
, &wait
);
179 if (sizeof(int) != sizeof(long) &&
180 count
== sizeof(unsigned int))
181 ret
= put_user(data
, (unsigned int __user
*)buf
) ?:
182 sizeof(unsigned int);
184 ret
= put_user(data
, (unsigned long __user
*)buf
) ?:
185 sizeof(unsigned long);
190 static __poll_t
rtc_dev_poll(struct file
*file
, poll_table
*wait
)
192 struct rtc_device
*rtc
= file
->private_data
;
195 poll_wait(file
, &rtc
->irq_queue
, wait
);
197 data
= rtc
->irq_data
;
199 return (data
!= 0) ? (EPOLLIN
| EPOLLRDNORM
) : 0;
202 static long rtc_dev_ioctl(struct file
*file
,
203 unsigned int cmd
, unsigned long arg
)
206 struct rtc_device
*rtc
= file
->private_data
;
207 const struct rtc_class_ops
*ops
= rtc
->ops
;
209 struct rtc_wkalrm alarm
;
210 void __user
*uarg
= (void __user
*)arg
;
212 err
= mutex_lock_interruptible(&rtc
->ops_lock
);
216 /* check that the calling task has appropriate permissions
217 * for certain ioctls. doing this check here is useful
218 * to avoid duplicate code in each driver.
223 if (!capable(CAP_SYS_TIME
))
228 if (arg
> rtc
->max_user_freq
&& !capable(CAP_SYS_RESOURCE
))
233 if (rtc
->irq_freq
> rtc
->max_user_freq
&&
234 !capable(CAP_SYS_RESOURCE
))
243 * Drivers *SHOULD NOT* provide ioctl implementations
244 * for these requests. Instead, provide methods to
245 * support the following code, so that the RTC's main
246 * features are accessible without using ioctls.
248 * RTC and alarm times will be in UTC, by preference,
249 * but dual-booting with MS-Windows implies RTCs must
250 * use the local wall clock time.
255 mutex_unlock(&rtc
->ops_lock
);
257 err
= rtc_read_alarm(rtc
, &alarm
);
261 if (copy_to_user(uarg
, &alarm
.time
, sizeof(tm
)))
266 mutex_unlock(&rtc
->ops_lock
);
268 if (copy_from_user(&alarm
.time
, uarg
, sizeof(tm
)))
273 alarm
.time
.tm_wday
= -1;
274 alarm
.time
.tm_yday
= -1;
275 alarm
.time
.tm_isdst
= -1;
277 /* RTC_ALM_SET alarms may be up to 24 hours in the future.
278 * Rather than expecting every RTC to implement "don't care"
279 * for day/month/year fields, just force the alarm to have
280 * the right values for those fields.
282 * RTC_WKALM_SET should be used instead. Not only does it
283 * eliminate the need for a separate RTC_AIE_ON call, it
284 * doesn't have the "alarm 23:59:59 in the future" race.
286 * NOTE: some legacy code may have used invalid fields as
287 * wildcards, exposing hardware "periodic alarm" capabilities.
288 * Not supported here.
293 err
= rtc_read_time(rtc
, &tm
);
296 now
= rtc_tm_to_time64(&tm
);
298 alarm
.time
.tm_mday
= tm
.tm_mday
;
299 alarm
.time
.tm_mon
= tm
.tm_mon
;
300 alarm
.time
.tm_year
= tm
.tm_year
;
301 err
= rtc_valid_tm(&alarm
.time
);
304 then
= rtc_tm_to_time64(&alarm
.time
);
306 /* alarm may need to wrap into tomorrow */
308 rtc_time64_to_tm(now
+ 24 * 60 * 60, &tm
);
309 alarm
.time
.tm_mday
= tm
.tm_mday
;
310 alarm
.time
.tm_mon
= tm
.tm_mon
;
311 alarm
.time
.tm_year
= tm
.tm_year
;
315 return rtc_set_alarm(rtc
, &alarm
);
318 mutex_unlock(&rtc
->ops_lock
);
320 err
= rtc_read_time(rtc
, &tm
);
324 if (copy_to_user(uarg
, &tm
, sizeof(tm
)))
329 mutex_unlock(&rtc
->ops_lock
);
331 if (copy_from_user(&tm
, uarg
, sizeof(tm
)))
334 return rtc_set_time(rtc
, &tm
);
337 err
= rtc_irq_set_state(rtc
, 1);
341 err
= rtc_irq_set_state(rtc
, 0);
345 mutex_unlock(&rtc
->ops_lock
);
346 return rtc_alarm_irq_enable(rtc
, 1);
349 mutex_unlock(&rtc
->ops_lock
);
350 return rtc_alarm_irq_enable(rtc
, 0);
353 mutex_unlock(&rtc
->ops_lock
);
354 return rtc_update_irq_enable(rtc
, 1);
357 mutex_unlock(&rtc
->ops_lock
);
358 return rtc_update_irq_enable(rtc
, 0);
361 err
= rtc_irq_set_freq(rtc
, arg
);
365 err
= put_user(rtc
->irq_freq
, (unsigned long __user
*)uarg
);
369 mutex_unlock(&rtc
->ops_lock
);
370 if (copy_from_user(&alarm
, uarg
, sizeof(alarm
)))
373 return rtc_set_alarm(rtc
, &alarm
);
376 mutex_unlock(&rtc
->ops_lock
);
377 err
= rtc_read_alarm(rtc
, &alarm
);
381 if (copy_to_user(uarg
, &alarm
, sizeof(alarm
)))
386 /* Finally try the driver's ioctl interface */
388 err
= ops
->ioctl(rtc
->dev
.parent
, cmd
, arg
);
389 if (err
== -ENOIOCTLCMD
)
398 mutex_unlock(&rtc
->ops_lock
);
402 static int rtc_dev_fasync(int fd
, struct file
*file
, int on
)
404 struct rtc_device
*rtc
= file
->private_data
;
406 return fasync_helper(fd
, file
, on
, &rtc
->async_queue
);
409 static int rtc_dev_release(struct inode
*inode
, struct file
*file
)
411 struct rtc_device
*rtc
= file
->private_data
;
413 /* We shut down the repeating IRQs that userspace enabled,
414 * since nothing is listening to them.
415 * - Update (UIE) ... currently only managed through ioctls
416 * - Periodic (PIE) ... also used through rtc_*() interface calls
418 * Leave the alarm alone; it may be set to trigger a system wakeup
419 * later, or be used by kernel code, and is a one-shot event anyway.
422 /* Keep ioctl until all drivers are converted */
423 rtc_dev_ioctl(file
, RTC_UIE_OFF
, 0);
424 rtc_update_irq_enable(rtc
, 0);
425 rtc_irq_set_state(rtc
, 0);
427 clear_bit_unlock(RTC_DEV_BUSY
, &rtc
->flags
);
431 static const struct file_operations rtc_dev_fops
= {
432 .owner
= THIS_MODULE
,
434 .read
= rtc_dev_read
,
435 .poll
= rtc_dev_poll
,
436 .unlocked_ioctl
= rtc_dev_ioctl
,
437 .open
= rtc_dev_open
,
438 .release
= rtc_dev_release
,
439 .fasync
= rtc_dev_fasync
,
442 /* insertion/removal hooks */
444 void rtc_dev_prepare(struct rtc_device
*rtc
)
449 if (rtc
->id
>= RTC_DEV_MAX
) {
450 dev_dbg(&rtc
->dev
, "too many RTC devices\n");
454 rtc
->dev
.devt
= MKDEV(MAJOR(rtc_devt
), rtc
->id
);
456 #ifdef CONFIG_RTC_INTF_DEV_UIE_EMUL
457 INIT_WORK(&rtc
->uie_task
, rtc_uie_task
);
458 timer_setup(&rtc
->uie_timer
, rtc_uie_timer
, 0);
461 cdev_init(&rtc
->char_dev
, &rtc_dev_fops
);
462 rtc
->char_dev
.owner
= rtc
->owner
;
465 void __init
rtc_dev_init(void)
469 err
= alloc_chrdev_region(&rtc_devt
, 0, RTC_DEV_MAX
, "rtc");
471 pr_err("failed to allocate char dev region\n");
474 void __exit
rtc_dev_exit(void)
477 unregister_chrdev_region(rtc_devt
, RTC_DEV_MAX
);