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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002 * S390 version
Heiko Carstensa53c8fa2012-07-20 11:15:04 +02003 * Copyright IBM Corp. 1999
Linus Torvalds1da177e2005-04-16 15:20:36 -07004 *
5 * Derived from "include/asm-i386/timex.h"
6 * Copyright (C) 1992, Linus Torvalds
7 */
8
9#ifndef _ASM_S390_TIMEX_H
10#define _ASM_S390_TIMEX_H
11
Heiko Carstens17eb7a52011-01-05 12:47:26 +010012#include <asm/lowcore.h>
13
Martin Schwidefskyb6112cc2009-04-14 15:36:28 +020014/* The value of the TOD clock for 1.1.1970. */
15#define TOD_UNIX_EPOCH 0x7d91048bca000000ULL
16
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010017/* Inline functions for clock register access. */
Heiko Carstens1aae0562013-01-30 09:49:40 +010018static inline int set_tod_clock(__u64 time)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010019{
20 int cc;
21
22 asm volatile(
Martin Schwidefsky987bcda2010-02-26 22:37:31 +010023 " sck %1\n"
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010024 " ipm %0\n"
25 " srl %0,28\n"
Martin Schwidefsky987bcda2010-02-26 22:37:31 +010026 : "=d" (cc) : "Q" (time) : "cc");
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010027 return cc;
28}
29
Heiko Carstens1aae0562013-01-30 09:49:40 +010030static inline int store_tod_clock(__u64 *time)
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010031{
32 int cc;
33
34 asm volatile(
Martin Schwidefsky987bcda2010-02-26 22:37:31 +010035 " stck %1\n"
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010036 " ipm %0\n"
37 " srl %0,28\n"
Martin Schwidefsky987bcda2010-02-26 22:37:31 +010038 : "=d" (cc), "=Q" (*time) : : "cc");
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010039 return cc;
40}
41
42static inline void set_clock_comparator(__u64 time)
43{
Martin Schwidefsky987bcda2010-02-26 22:37:31 +010044 asm volatile("sckc %0" : : "Q" (time));
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010045}
46
47static inline void store_clock_comparator(__u64 *time)
48{
Martin Schwidefsky987bcda2010-02-26 22:37:31 +010049 asm volatile("stckc %0" : "=Q" (*time));
Martin Schwidefskyd54853e2007-02-05 21:18:19 +010050}
51
Heiko Carstens17eb7a52011-01-05 12:47:26 +010052void clock_comparator_work(void);
53
54static inline unsigned long long local_tick_disable(void)
55{
56 unsigned long long old;
57
58 old = S390_lowcore.clock_comparator;
59 S390_lowcore.clock_comparator = -1ULL;
Heiko Carstens545b2882011-01-05 12:47:27 +010060 set_clock_comparator(S390_lowcore.clock_comparator);
Heiko Carstens17eb7a52011-01-05 12:47:26 +010061 return old;
62}
63
64static inline void local_tick_enable(unsigned long long comp)
65{
66 S390_lowcore.clock_comparator = comp;
Heiko Carstens545b2882011-01-05 12:47:27 +010067 set_clock_comparator(S390_lowcore.clock_comparator);
Heiko Carstens17eb7a52011-01-05 12:47:26 +010068}
69
Chen Gange38f9782015-01-01 22:27:32 +080070#define CLOCK_TICK_RATE 1193180 /* Underlying HZ */
71#define STORE_CLOCK_EXT_SIZE 16 /* stcke writes 16 bytes */
Linus Torvalds1da177e2005-04-16 15:20:36 -070072
73typedef unsigned long long cycles_t;
74
Chen Gange38f9782015-01-01 22:27:32 +080075static inline void get_tod_clock_ext(char *clk)
Michael Holzheu57b28f62010-05-17 10:00:20 +020076{
Chen Gange38f9782015-01-01 22:27:32 +080077 typedef struct { char _[STORE_CLOCK_EXT_SIZE]; } addrtype;
Martin Schwidefsky7ab64a82013-10-28 11:17:10 +010078
79 asm volatile("stcke %0" : "=Q" (*(addrtype *) clk) : : "cc");
Michael Holzheu57b28f62010-05-17 10:00:20 +020080}
81
Martin Schwidefsky8c071b02013-10-17 12:38:17 +020082static inline unsigned long long get_tod_clock(void)
Jan Glauber1b278292007-02-05 21:18:22 +010083{
Chen Gange38f9782015-01-01 22:27:32 +080084 unsigned char clk[STORE_CLOCK_EXT_SIZE];
85
Heiko Carstens1aae0562013-01-30 09:49:40 +010086 get_tod_clock_ext(clk);
Jan Glauberc0015f92008-04-17 07:46:16 +020087 return *((unsigned long long *)&clk[1]);
Jan Glauber1b278292007-02-05 21:18:22 +010088}
89
Martin Schwidefsky8c071b02013-10-17 12:38:17 +020090static inline unsigned long long get_tod_clock_fast(void)
91{
92#ifdef CONFIG_HAVE_MARCH_Z9_109_FEATURES
93 unsigned long long clk;
94
95 asm volatile("stckf %0" : "=Q" (clk) : : "cc");
96 return clk;
97#else
98 return get_tod_clock();
99#endif
100}
101
Martin Schwidefsky94c12cc2006-09-28 16:56:43 +0200102static inline cycles_t get_cycles(void)
103{
Heiko Carstens1aae0562013-01-30 09:49:40 +0100104 return (cycles_t) get_tod_clock() >> 2;
Martin Schwidefsky94c12cc2006-09-28 16:56:43 +0200105}
106
Martin Schwidefskyd54853e2007-02-05 21:18:19 +0100107int get_sync_clock(unsigned long long *clock);
Heiko Carstens2b67fc42007-02-05 21:16:47 +0100108void init_cpu_timer(void);
Heiko Carstensa8061702008-04-17 07:46:26 +0200109unsigned long long monotonic_clock(void);
Heiko Carstens2b67fc42007-02-05 21:16:47 +0100110
Christof Schmittb592e892009-08-18 15:43:31 +0200111void tod_to_timeval(__u64, struct timespec *);
112
113static inline
114void stck_to_timespec(unsigned long long stck, struct timespec *ts)
115{
116 tod_to_timeval(stck - TOD_UNIX_EPOCH, ts);
117}
118
Martin Schwidefskyb6112cc2009-04-14 15:36:28 +0200119extern u64 sched_clock_base_cc;
120
Heiko Carstens05e7ff72009-09-11 10:28:31 +0200121/**
122 * get_clock_monotonic - returns current time in clock rate units
123 *
124 * The caller must ensure that preemption is disabled.
125 * The clock and sched_clock_base get changed via stop_machine.
126 * Therefore preemption must be disabled when calling this
127 * function, otherwise the returned value is not guaranteed to
128 * be monotonic.
129 */
Heiko Carstens1aae0562013-01-30 09:49:40 +0100130static inline unsigned long long get_tod_clock_monotonic(void)
Heiko Carstens05e7ff72009-09-11 10:28:31 +0200131{
Martin Schwidefsky8c071b02013-10-17 12:38:17 +0200132 return get_tod_clock() - sched_clock_base_cc;
Heiko Carstens05e7ff72009-09-11 10:28:31 +0200133}
134
Heiko Carstensed4f2092013-01-14 16:55:55 +0100135/**
136 * tod_to_ns - convert a TOD format value to nanoseconds
137 * @todval: to be converted TOD format value
138 * Returns: number of nanoseconds that correspond to the TOD format value
139 *
140 * Converting a 64 Bit TOD format value to nanoseconds means that the value
141 * must be divided by 4.096. In order to achieve that we multiply with 125
142 * and divide by 512:
143 *
144 * ns = (todval * 125) >> 9;
145 *
146 * In order to avoid an overflow with the multiplication we can rewrite this.
147 * With a split todval == 2^32 * th + tl (th upper 32 bits, tl lower 32 bits)
148 * we end up with
149 *
150 * ns = ((2^32 * th + tl) * 125 ) >> 9;
151 * -> ns = (2^23 * th * 125) + ((tl * 125) >> 9);
152 *
153 */
154static inline unsigned long long tod_to_ns(unsigned long long todval)
155{
156 unsigned long long ns;
157
158 ns = ((todval >> 32) << 23) * 125;
159 ns += ((todval & 0xffffffff) * 125) >> 9;
160 return ns;
161}
162
Linus Torvalds1da177e2005-04-16 15:20:36 -0700163#endif