cachepc-linux

Fork of AMDESE/linux with modifications for CachePC side-channel attack
git clone https://git.sinitax.com/sinitax/cachepc-linux
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rtc.h (8940B)


      1/* SPDX-License-Identifier: GPL-2.0 */
      2/*
      3 * Generic RTC interface.
      4 * This version contains the part of the user interface to the Real Time Clock
      5 * service. It is used with both the legacy mc146818 and also  EFI
      6 * Struct rtc_time and first 12 ioctl by Paul Gortmaker, 1996 - separated out
      7 * from <linux/mc146818rtc.h> to this file for 2.4 kernels.
      8 *
      9 * Copyright (C) 1999 Hewlett-Packard Co.
     10 * Copyright (C) 1999 Stephane Eranian <eranian@hpl.hp.com>
     11 */
     12#ifndef _LINUX_RTC_H_
     13#define _LINUX_RTC_H_
     14
     15
     16#include <linux/types.h>
     17#include <linux/interrupt.h>
     18#include <linux/nvmem-provider.h>
     19#include <uapi/linux/rtc.h>
     20
     21extern int rtc_month_days(unsigned int month, unsigned int year);
     22extern int rtc_year_days(unsigned int day, unsigned int month, unsigned int year);
     23extern int rtc_valid_tm(struct rtc_time *tm);
     24extern time64_t rtc_tm_to_time64(struct rtc_time *tm);
     25extern void rtc_time64_to_tm(time64_t time, struct rtc_time *tm);
     26ktime_t rtc_tm_to_ktime(struct rtc_time tm);
     27struct rtc_time rtc_ktime_to_tm(ktime_t kt);
     28
     29/*
     30 * rtc_tm_sub - Return the difference in seconds.
     31 */
     32static inline time64_t rtc_tm_sub(struct rtc_time *lhs, struct rtc_time *rhs)
     33{
     34	return rtc_tm_to_time64(lhs) - rtc_tm_to_time64(rhs);
     35}
     36
     37#include <linux/device.h>
     38#include <linux/seq_file.h>
     39#include <linux/cdev.h>
     40#include <linux/poll.h>
     41#include <linux/mutex.h>
     42#include <linux/timerqueue.h>
     43#include <linux/workqueue.h>
     44
     45extern struct class *rtc_class;
     46
     47/*
     48 * For these RTC methods the device parameter is the physical device
     49 * on whatever bus holds the hardware (I2C, Platform, SPI, etc), which
     50 * was passed to rtc_device_register().  Its driver_data normally holds
     51 * device state, including the rtc_device pointer for the RTC.
     52 *
     53 * Most of these methods are called with rtc_device.ops_lock held,
     54 * through the rtc_*(struct rtc_device *, ...) calls.
     55 *
     56 * The (current) exceptions are mostly filesystem hooks:
     57 *   - the proc() hook for procfs
     58 */
     59struct rtc_class_ops {
     60	int (*ioctl)(struct device *, unsigned int, unsigned long);
     61	int (*read_time)(struct device *, struct rtc_time *);
     62	int (*set_time)(struct device *, struct rtc_time *);
     63	int (*read_alarm)(struct device *, struct rtc_wkalrm *);
     64	int (*set_alarm)(struct device *, struct rtc_wkalrm *);
     65	int (*proc)(struct device *, struct seq_file *);
     66	int (*alarm_irq_enable)(struct device *, unsigned int enabled);
     67	int (*read_offset)(struct device *, long *offset);
     68	int (*set_offset)(struct device *, long offset);
     69	int (*param_get)(struct device *, struct rtc_param *param);
     70	int (*param_set)(struct device *, struct rtc_param *param);
     71};
     72
     73struct rtc_device;
     74
     75struct rtc_timer {
     76	struct timerqueue_node node;
     77	ktime_t period;
     78	void (*func)(struct rtc_device *rtc);
     79	struct rtc_device *rtc;
     80	int enabled;
     81};
     82
     83/* flags */
     84#define RTC_DEV_BUSY 0
     85#define RTC_NO_CDEV  1
     86
     87struct rtc_device {
     88	struct device dev;
     89	struct module *owner;
     90
     91	int id;
     92
     93	const struct rtc_class_ops *ops;
     94	struct mutex ops_lock;
     95
     96	struct cdev char_dev;
     97	unsigned long flags;
     98
     99	unsigned long irq_data;
    100	spinlock_t irq_lock;
    101	wait_queue_head_t irq_queue;
    102	struct fasync_struct *async_queue;
    103
    104	int irq_freq;
    105	int max_user_freq;
    106
    107	struct timerqueue_head timerqueue;
    108	struct rtc_timer aie_timer;
    109	struct rtc_timer uie_rtctimer;
    110	struct hrtimer pie_timer; /* sub second exp, so needs hrtimer */
    111	int pie_enabled;
    112	struct work_struct irqwork;
    113
    114	/*
    115	 * This offset specifies the update timing of the RTC.
    116	 *
    117	 * tsched     t1 write(t2.tv_sec - 1sec))  t2 RTC increments seconds
    118	 *
    119	 * The offset defines how tsched is computed so that the write to
    120	 * the RTC (t2.tv_sec - 1sec) is correct versus the time required
    121	 * for the transport of the write and the time which the RTC needs
    122	 * to increment seconds the first time after the write (t2).
    123	 *
    124	 * For direct accessible RTCs tsched ~= t1 because the write time
    125	 * is negligible. For RTCs behind slow busses the transport time is
    126	 * significant and has to be taken into account.
    127	 *
    128	 * The time between the write (t1) and the first increment after
    129	 * the write (t2) is RTC specific. For a MC146818 RTC it's 500ms,
    130	 * for many others it's exactly 1 second. Consult the datasheet.
    131	 *
    132	 * The value of this offset is also used to calculate the to be
    133	 * written value (t2.tv_sec - 1sec) at tsched.
    134	 *
    135	 * The default value for this is NSEC_PER_SEC + 10 msec default
    136	 * transport time. The offset can be adjusted by drivers so the
    137	 * calculation for the to be written value at tsched becomes
    138	 * correct:
    139	 *
    140	 *	newval = tsched + set_offset_nsec - NSEC_PER_SEC
    141	 * and  (tsched + set_offset_nsec) % NSEC_PER_SEC == 0
    142	 */
    143	unsigned long set_offset_nsec;
    144
    145	unsigned long features[BITS_TO_LONGS(RTC_FEATURE_CNT)];
    146
    147	time64_t range_min;
    148	timeu64_t range_max;
    149	time64_t start_secs;
    150	time64_t offset_secs;
    151	bool set_start_time;
    152
    153#ifdef CONFIG_RTC_INTF_DEV_UIE_EMUL
    154	struct work_struct uie_task;
    155	struct timer_list uie_timer;
    156	/* Those fields are protected by rtc->irq_lock */
    157	unsigned int oldsecs;
    158	unsigned int uie_irq_active:1;
    159	unsigned int stop_uie_polling:1;
    160	unsigned int uie_task_active:1;
    161	unsigned int uie_timer_active:1;
    162#endif
    163};
    164#define to_rtc_device(d) container_of(d, struct rtc_device, dev)
    165
    166#define rtc_lock(d) mutex_lock(&d->ops_lock)
    167#define rtc_unlock(d) mutex_unlock(&d->ops_lock)
    168
    169/* useful timestamps */
    170#define RTC_TIMESTAMP_BEGIN_0000	-62167219200ULL /* 0000-01-01 00:00:00 */
    171#define RTC_TIMESTAMP_BEGIN_1900	-2208988800LL /* 1900-01-01 00:00:00 */
    172#define RTC_TIMESTAMP_BEGIN_2000	946684800LL /* 2000-01-01 00:00:00 */
    173#define RTC_TIMESTAMP_END_2063		2966371199LL /* 2063-12-31 23:59:59 */
    174#define RTC_TIMESTAMP_END_2079		3471292799LL /* 2079-12-31 23:59:59 */
    175#define RTC_TIMESTAMP_END_2099		4102444799LL /* 2099-12-31 23:59:59 */
    176#define RTC_TIMESTAMP_END_2199		7258118399LL /* 2199-12-31 23:59:59 */
    177#define RTC_TIMESTAMP_END_9999		253402300799LL /* 9999-12-31 23:59:59 */
    178
    179extern struct rtc_device *devm_rtc_device_register(struct device *dev,
    180					const char *name,
    181					const struct rtc_class_ops *ops,
    182					struct module *owner);
    183struct rtc_device *devm_rtc_allocate_device(struct device *dev);
    184int __devm_rtc_register_device(struct module *owner, struct rtc_device *rtc);
    185
    186extern int rtc_read_time(struct rtc_device *rtc, struct rtc_time *tm);
    187extern int rtc_set_time(struct rtc_device *rtc, struct rtc_time *tm);
    188int __rtc_read_alarm(struct rtc_device *rtc, struct rtc_wkalrm *alarm);
    189extern int rtc_read_alarm(struct rtc_device *rtc,
    190			struct rtc_wkalrm *alrm);
    191extern int rtc_set_alarm(struct rtc_device *rtc,
    192				struct rtc_wkalrm *alrm);
    193extern int rtc_initialize_alarm(struct rtc_device *rtc,
    194				struct rtc_wkalrm *alrm);
    195extern void rtc_update_irq(struct rtc_device *rtc,
    196			unsigned long num, unsigned long events);
    197
    198extern struct rtc_device *rtc_class_open(const char *name);
    199extern void rtc_class_close(struct rtc_device *rtc);
    200
    201extern int rtc_irq_set_state(struct rtc_device *rtc, int enabled);
    202extern int rtc_irq_set_freq(struct rtc_device *rtc, int freq);
    203extern int rtc_update_irq_enable(struct rtc_device *rtc, unsigned int enabled);
    204extern int rtc_alarm_irq_enable(struct rtc_device *rtc, unsigned int enabled);
    205extern int rtc_dev_update_irq_enable_emul(struct rtc_device *rtc,
    206						unsigned int enabled);
    207
    208void rtc_handle_legacy_irq(struct rtc_device *rtc, int num, int mode);
    209void rtc_aie_update_irq(struct rtc_device *rtc);
    210void rtc_uie_update_irq(struct rtc_device *rtc);
    211enum hrtimer_restart rtc_pie_update_irq(struct hrtimer *timer);
    212
    213void rtc_timer_init(struct rtc_timer *timer, void (*f)(struct rtc_device *r),
    214		    struct rtc_device *rtc);
    215int rtc_timer_start(struct rtc_device *rtc, struct rtc_timer *timer,
    216		    ktime_t expires, ktime_t period);
    217void rtc_timer_cancel(struct rtc_device *rtc, struct rtc_timer *timer);
    218int rtc_read_offset(struct rtc_device *rtc, long *offset);
    219int rtc_set_offset(struct rtc_device *rtc, long offset);
    220void rtc_timer_do_work(struct work_struct *work);
    221
    222static inline bool is_leap_year(unsigned int year)
    223{
    224	return (!(year % 4) && (year % 100)) || !(year % 400);
    225}
    226
    227#define devm_rtc_register_device(device) \
    228	__devm_rtc_register_device(THIS_MODULE, device)
    229
    230#ifdef CONFIG_RTC_HCTOSYS_DEVICE
    231extern int rtc_hctosys_ret;
    232#else
    233#define rtc_hctosys_ret -ENODEV
    234#endif
    235
    236#ifdef CONFIG_RTC_NVMEM
    237int devm_rtc_nvmem_register(struct rtc_device *rtc,
    238			    struct nvmem_config *nvmem_config);
    239#else
    240static inline int devm_rtc_nvmem_register(struct rtc_device *rtc,
    241					  struct nvmem_config *nvmem_config)
    242{
    243	return 0;
    244}
    245#endif
    246
    247#ifdef CONFIG_RTC_INTF_SYSFS
    248int rtc_add_group(struct rtc_device *rtc, const struct attribute_group *grp);
    249int rtc_add_groups(struct rtc_device *rtc, const struct attribute_group **grps);
    250#else
    251static inline
    252int rtc_add_group(struct rtc_device *rtc, const struct attribute_group *grp)
    253{
    254	return 0;
    255}
    256
    257static inline
    258int rtc_add_groups(struct rtc_device *rtc, const struct attribute_group **grps)
    259{
    260	return 0;
    261}
    262#endif
    263#endif /* _LINUX_RTC_H_ */