xref: /openbmc/linux/include/linux/time64.h (revision acf8870a62afd4f1b3c0b695aaa619df355c0851)
1b2441318SGreg Kroah-Hartman /* SPDX-License-Identifier: GPL-2.0 */
2361a3bf0SJohn Stultz #ifndef _LINUX_TIME64_H
3361a3bf0SJohn Stultz #define _LINUX_TIME64_H
4361a3bf0SJohn Stultz 
530f3b3f9SXunlei Pang #include <linux/math64.h>
6361a3bf0SJohn Stultz 
7361a3bf0SJohn Stultz typedef __s64 time64_t;
8469e857fSVegard Nossum typedef __u64 timeu64_t;
9361a3bf0SJohn Stultz 
10*acf8870aSDeepa Dinamani /* CONFIG_64BIT_TIME enables new 64 bit time_t syscalls in the compat path
11*acf8870aSDeepa Dinamani  * and 32-bit emulation.
12*acf8870aSDeepa Dinamani  */
13*acf8870aSDeepa Dinamani #ifndef CONFIG_64BIT_TIME
14*acf8870aSDeepa Dinamani #define __kernel_timespec timespec
15*acf8870aSDeepa Dinamani #endif
16*acf8870aSDeepa Dinamani 
17*acf8870aSDeepa Dinamani #include <uapi/linux/time.h>
18*acf8870aSDeepa Dinamani 
19361a3bf0SJohn Stultz #if __BITS_PER_LONG == 64
20abc8f96eSArnd Bergmann /* this trick allows us to optimize out timespec64_to_timespec */
21361a3bf0SJohn Stultz # define timespec64 timespec
2219a46fe5SBaolin Wang #define itimerspec64 itimerspec
23361a3bf0SJohn Stultz #else
24361a3bf0SJohn Stultz struct timespec64 {
25361a3bf0SJohn Stultz 	time64_t	tv_sec;			/* seconds */
26361a3bf0SJohn Stultz 	long		tv_nsec;		/* nanoseconds */
27361a3bf0SJohn Stultz };
2819a46fe5SBaolin Wang 
2919a46fe5SBaolin Wang struct itimerspec64 {
3019a46fe5SBaolin Wang 	struct timespec64 it_interval;
3119a46fe5SBaolin Wang 	struct timespec64 it_value;
3219a46fe5SBaolin Wang };
3319a46fe5SBaolin Wang 
34361a3bf0SJohn Stultz #endif
35361a3bf0SJohn Stultz 
36361a3bf0SJohn Stultz /* Parameters used to convert the timespec values: */
37361a3bf0SJohn Stultz #define MSEC_PER_SEC	1000L
38361a3bf0SJohn Stultz #define USEC_PER_MSEC	1000L
39361a3bf0SJohn Stultz #define NSEC_PER_USEC	1000L
40361a3bf0SJohn Stultz #define NSEC_PER_MSEC	1000000L
41361a3bf0SJohn Stultz #define USEC_PER_SEC	1000000L
42361a3bf0SJohn Stultz #define NSEC_PER_SEC	1000000000L
43361a3bf0SJohn Stultz #define FSEC_PER_SEC	1000000000000000LL
44361a3bf0SJohn Stultz 
45361a3bf0SJohn Stultz /* Located here for timespec[64]_valid_strict */
46833f32d7SJohn Stultz #define TIME64_MAX			((s64)~((u64)1 << 63))
47361a3bf0SJohn Stultz #define KTIME_MAX			((s64)~((u64)1 << 63))
48361a3bf0SJohn Stultz #define KTIME_SEC_MAX			(KTIME_MAX / NSEC_PER_SEC)
49361a3bf0SJohn Stultz 
50361a3bf0SJohn Stultz static inline int timespec64_equal(const struct timespec64 *a,
51361a3bf0SJohn Stultz 				   const struct timespec64 *b)
52361a3bf0SJohn Stultz {
53361a3bf0SJohn Stultz 	return (a->tv_sec == b->tv_sec) && (a->tv_nsec == b->tv_nsec);
54361a3bf0SJohn Stultz }
55361a3bf0SJohn Stultz 
56361a3bf0SJohn Stultz /*
57361a3bf0SJohn Stultz  * lhs < rhs:  return <0
58361a3bf0SJohn Stultz  * lhs == rhs: return 0
59361a3bf0SJohn Stultz  * lhs > rhs:  return >0
60361a3bf0SJohn Stultz  */
61361a3bf0SJohn Stultz static inline int timespec64_compare(const struct timespec64 *lhs, const struct timespec64 *rhs)
62361a3bf0SJohn Stultz {
63361a3bf0SJohn Stultz 	if (lhs->tv_sec < rhs->tv_sec)
64361a3bf0SJohn Stultz 		return -1;
65361a3bf0SJohn Stultz 	if (lhs->tv_sec > rhs->tv_sec)
66361a3bf0SJohn Stultz 		return 1;
67361a3bf0SJohn Stultz 	return lhs->tv_nsec - rhs->tv_nsec;
68361a3bf0SJohn Stultz }
69361a3bf0SJohn Stultz 
70361a3bf0SJohn Stultz extern void set_normalized_timespec64(struct timespec64 *ts, time64_t sec, s64 nsec);
71361a3bf0SJohn Stultz 
72361a3bf0SJohn Stultz static inline struct timespec64 timespec64_add(struct timespec64 lhs,
73361a3bf0SJohn Stultz 						struct timespec64 rhs)
74361a3bf0SJohn Stultz {
75361a3bf0SJohn Stultz 	struct timespec64 ts_delta;
76361a3bf0SJohn Stultz 	set_normalized_timespec64(&ts_delta, lhs.tv_sec + rhs.tv_sec,
77361a3bf0SJohn Stultz 				lhs.tv_nsec + rhs.tv_nsec);
78361a3bf0SJohn Stultz 	return ts_delta;
79361a3bf0SJohn Stultz }
80361a3bf0SJohn Stultz 
81361a3bf0SJohn Stultz /*
82361a3bf0SJohn Stultz  * sub = lhs - rhs, in normalized form
83361a3bf0SJohn Stultz  */
84361a3bf0SJohn Stultz static inline struct timespec64 timespec64_sub(struct timespec64 lhs,
85361a3bf0SJohn Stultz 						struct timespec64 rhs)
86361a3bf0SJohn Stultz {
87361a3bf0SJohn Stultz 	struct timespec64 ts_delta;
88361a3bf0SJohn Stultz 	set_normalized_timespec64(&ts_delta, lhs.tv_sec - rhs.tv_sec,
89361a3bf0SJohn Stultz 				lhs.tv_nsec - rhs.tv_nsec);
90361a3bf0SJohn Stultz 	return ts_delta;
91361a3bf0SJohn Stultz }
92361a3bf0SJohn Stultz 
93361a3bf0SJohn Stultz /*
94361a3bf0SJohn Stultz  * Returns true if the timespec64 is norm, false if denorm:
95361a3bf0SJohn Stultz  */
96361a3bf0SJohn Stultz static inline bool timespec64_valid(const struct timespec64 *ts)
97361a3bf0SJohn Stultz {
98361a3bf0SJohn Stultz 	/* Dates before 1970 are bogus */
99361a3bf0SJohn Stultz 	if (ts->tv_sec < 0)
100361a3bf0SJohn Stultz 		return false;
101361a3bf0SJohn Stultz 	/* Can't have more nanoseconds then a second */
102361a3bf0SJohn Stultz 	if ((unsigned long)ts->tv_nsec >= NSEC_PER_SEC)
103361a3bf0SJohn Stultz 		return false;
104361a3bf0SJohn Stultz 	return true;
105361a3bf0SJohn Stultz }
106361a3bf0SJohn Stultz 
107361a3bf0SJohn Stultz static inline bool timespec64_valid_strict(const struct timespec64 *ts)
108361a3bf0SJohn Stultz {
109361a3bf0SJohn Stultz 	if (!timespec64_valid(ts))
110361a3bf0SJohn Stultz 		return false;
111361a3bf0SJohn Stultz 	/* Disallow values that could overflow ktime_t */
112361a3bf0SJohn Stultz 	if ((unsigned long long)ts->tv_sec >= KTIME_SEC_MAX)
113361a3bf0SJohn Stultz 		return false;
114361a3bf0SJohn Stultz 	return true;
115361a3bf0SJohn Stultz }
116361a3bf0SJohn Stultz 
117361a3bf0SJohn Stultz /**
118361a3bf0SJohn Stultz  * timespec64_to_ns - Convert timespec64 to nanoseconds
119361a3bf0SJohn Stultz  * @ts:		pointer to the timespec64 variable to be converted
120361a3bf0SJohn Stultz  *
121361a3bf0SJohn Stultz  * Returns the scalar nanosecond representation of the timespec64
122361a3bf0SJohn Stultz  * parameter.
123361a3bf0SJohn Stultz  */
124361a3bf0SJohn Stultz static inline s64 timespec64_to_ns(const struct timespec64 *ts)
125361a3bf0SJohn Stultz {
126361a3bf0SJohn Stultz 	return ((s64) ts->tv_sec * NSEC_PER_SEC) + ts->tv_nsec;
127361a3bf0SJohn Stultz }
128361a3bf0SJohn Stultz 
129361a3bf0SJohn Stultz /**
130361a3bf0SJohn Stultz  * ns_to_timespec64 - Convert nanoseconds to timespec64
131361a3bf0SJohn Stultz  * @nsec:	the nanoseconds value to be converted
132361a3bf0SJohn Stultz  *
133361a3bf0SJohn Stultz  * Returns the timespec64 representation of the nsec parameter.
134361a3bf0SJohn Stultz  */
135361a3bf0SJohn Stultz extern struct timespec64 ns_to_timespec64(const s64 nsec);
136361a3bf0SJohn Stultz 
137361a3bf0SJohn Stultz /**
138361a3bf0SJohn Stultz  * timespec64_add_ns - Adds nanoseconds to a timespec64
139361a3bf0SJohn Stultz  * @a:		pointer to timespec64 to be incremented
140361a3bf0SJohn Stultz  * @ns:		unsigned nanoseconds value to be added
141361a3bf0SJohn Stultz  *
142361a3bf0SJohn Stultz  * This must always be inlined because its used from the x86-64 vdso,
143361a3bf0SJohn Stultz  * which cannot call other kernel functions.
144361a3bf0SJohn Stultz  */
145361a3bf0SJohn Stultz static __always_inline void timespec64_add_ns(struct timespec64 *a, u64 ns)
146361a3bf0SJohn Stultz {
147361a3bf0SJohn Stultz 	a->tv_sec += __iter_div_u64_rem(a->tv_nsec + ns, NSEC_PER_SEC, &ns);
148361a3bf0SJohn Stultz 	a->tv_nsec = ns;
149361a3bf0SJohn Stultz }
150361a3bf0SJohn Stultz 
1518e4f70e2SDeepa Dinamani /*
1528e4f70e2SDeepa Dinamani  * timespec64_add_safe assumes both values are positive and checks for
1538e4f70e2SDeepa Dinamani  * overflow. It will return TIME64_MAX in case of overflow.
1548e4f70e2SDeepa Dinamani  */
1558e4f70e2SDeepa Dinamani extern struct timespec64 timespec64_add_safe(const struct timespec64 lhs,
1568e4f70e2SDeepa Dinamani 					 const struct timespec64 rhs);
1578e4f70e2SDeepa Dinamani 
158361a3bf0SJohn Stultz #endif /* _LINUX_TIME64_H */
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