nanosecond: initial commit changing timeval to timespec
[fio.git] / time.c
... / ...
CommitLineData
1#include <time.h>
2#include <sys/time.h>
3
4#include "fio.h"
5
6static struct timespec genesis;
7static unsigned long ns_granularity;
8
9void timespec_add_msec(struct timespec *ts, unsigned int msec)
10{
11 unsigned long adj_nsec = 1000000 * msec;
12
13 ts->tv_nsec += adj_nsec;
14 if (adj_nsec >= 1000000000) {
15 unsigned long adj_sec = adj_nsec / 1000000000UL;
16
17 ts->tv_nsec -= adj_sec * 1000000000UL;
18 ts->tv_sec += adj_sec;
19 }
20 if (ts->tv_nsec >= 1000000000UL){
21 ts->tv_nsec -= 1000000000UL;
22 ts->tv_sec++;
23 }
24}
25
26/*
27 * busy looping version for the last few usec
28 */
29uint64_t usec_spin(unsigned int usec)
30{
31 struct timespec start;
32 uint64_t t;
33
34 fio_gettime(&start, NULL);
35 while ((t = utime_since_now(&start)) < usec)
36 nop;
37
38 return t;
39}
40
41uint64_t usec_sleep(struct thread_data *td, unsigned long usec)
42{
43 struct timespec req;
44 struct timespec tv;
45 uint64_t t = 0;
46
47 do {
48 unsigned long ts = usec;
49
50 if (usec < ns_granularity) {
51 t += usec_spin(usec);
52 break;
53 }
54
55 ts = usec - ns_granularity;
56
57 if (ts >= 1000000) {
58 req.tv_sec = ts / 1000000;
59 ts -= 1000000 * req.tv_sec;
60 } else
61 req.tv_sec = 0;
62
63 req.tv_nsec = ts * 1000;
64 fio_gettime(&tv, NULL);
65
66 if (nanosleep(&req, NULL) < 0)
67 break;
68
69 ts = utime_since_now(&tv);
70 t += ts;
71 if (ts >= usec)
72 break;
73
74 usec -= ts;
75 } while (!td->terminate);
76
77 return t;
78}
79
80uint64_t time_since_genesis(void)
81{
82 return time_since_now(&genesis);
83}
84
85uint64_t mtime_since_genesis(void)
86{
87 return mtime_since_now(&genesis);
88}
89
90uint64_t utime_since_genesis(void)
91{
92 return utime_since_now(&genesis);
93}
94
95bool in_ramp_time(struct thread_data *td)
96{
97 return td->o.ramp_time && !td->ramp_time_over;
98}
99
100static void parent_update_ramp(struct thread_data *td)
101{
102 struct thread_data *parent = td->parent;
103
104 if (!parent || parent->ramp_time_over)
105 return;
106
107 reset_all_stats(parent);
108 parent->ramp_time_over = 1;
109 td_set_runstate(parent, TD_RAMP);
110}
111
112bool ramp_time_over(struct thread_data *td)
113{
114 if (!td->o.ramp_time || td->ramp_time_over)
115 return true;
116
117 if (utime_since_now(&td->epoch) >= td->o.ramp_time) {
118 td->ramp_time_over = 1;
119 reset_all_stats(td);
120 td_set_runstate(td, TD_RAMP);
121 parent_update_ramp(td);
122 return true;
123 }
124
125 return false;
126}
127
128void fio_time_init(void)
129{
130 int i;
131
132 fio_clock_init();
133
134 /*
135 * Check the granularity of the nanosleep function
136 */
137 for (i = 0; i < 10; i++) {
138 struct timespec tv, ts;
139 unsigned long elapsed;
140
141 fio_gettime(&tv, NULL);
142 ts.tv_sec = 0;
143 ts.tv_nsec = 1000;
144
145 nanosleep(&ts, NULL);
146 elapsed = utime_since_now(&tv);
147
148 if (elapsed > ns_granularity)
149 ns_granularity = elapsed;
150 }
151}
152
153void set_genesis_time(void)
154{
155 fio_gettime(&genesis, NULL);
156}
157
158void set_epoch_time(struct thread_data *td, int log_unix_epoch)
159{
160 fio_gettime(&td->epoch, NULL);
161 if (log_unix_epoch) {
162 struct timeval tv;
163 gettimeofday(&tv, NULL);
164 td->unix_epoch = (unsigned long long)(tv.tv_sec) * 1000 +
165 (unsigned long long)(tv.tv_usec) / 1000;
166 }
167}
168
169void fill_start_time(struct timespec *t)
170{
171 memcpy(t, &genesis, sizeof(genesis));
172}