xref: /xnu-8019.80.24/tests/mach_get_times.c (revision a325d9c4a84054e40bbe985afedcb50ab80993ea)
1*a325d9c4SApple OSS Distributions #include <stdlib.h>
2*a325d9c4SApple OSS Distributions #include <time.h>
3*a325d9c4SApple OSS Distributions #include <sys/time.h>
4*a325d9c4SApple OSS Distributions #include <mach/mach_time.h>
5*a325d9c4SApple OSS Distributions 
6*a325d9c4SApple OSS Distributions #include <darwintest.h>
7*a325d9c4SApple OSS Distributions #include <darwintest_utils.h>
8*a325d9c4SApple OSS Distributions 
9*a325d9c4SApple OSS Distributions T_GLOBAL_META(T_META_RUN_CONCURRENTLY(true));
10*a325d9c4SApple OSS Distributions 
11*a325d9c4SApple OSS Distributions #define T_LOG_VERBOSE(...)
12*a325d9c4SApple OSS Distributions 
13*a325d9c4SApple OSS Distributions #define timespec2nanosec(ts) ((uint64_t)((ts)->tv_sec) * NSEC_PER_SEC + (uint64_t)((ts)->tv_nsec))
14*a325d9c4SApple OSS Distributions 
15*a325d9c4SApple OSS Distributions T_DECL(mach_get_times, "mach_get_times()",
16*a325d9c4SApple OSS Distributions     T_META_CHECK_LEAKS(false), T_META_ALL_VALID_ARCHS(true))
17*a325d9c4SApple OSS Distributions {
18*a325d9c4SApple OSS Distributions 	const int ITERATIONS = 500000 * dt_ncpu();
19*a325d9c4SApple OSS Distributions 	struct timespec gtod_ts;
20*a325d9c4SApple OSS Distributions 
21*a325d9c4SApple OSS Distributions 	uint64_t last_absolute, last_continuous, last_gtod;
22*a325d9c4SApple OSS Distributions 	T_QUIET; T_ASSERT_EQ(mach_get_times(&last_absolute, &last_continuous, &gtod_ts), KERN_SUCCESS, NULL);
23*a325d9c4SApple OSS Distributions 	last_gtod = timespec2nanosec(&gtod_ts);
24*a325d9c4SApple OSS Distributions 
25*a325d9c4SApple OSS Distributions 	for (int i = 0; i < ITERATIONS; i++) {
26*a325d9c4SApple OSS Distributions 		uint64_t absolute, continuous, gtod;
27*a325d9c4SApple OSS Distributions 		T_QUIET; T_ASSERT_EQ(mach_get_times(&absolute, &continuous, &gtod_ts), KERN_SUCCESS, NULL);
28*a325d9c4SApple OSS Distributions 		gtod = timespec2nanosec(&gtod_ts);
29*a325d9c4SApple OSS Distributions 
30*a325d9c4SApple OSS Distributions 		T_LOG_VERBOSE("[%d] abs: %llu.%09llu(+%llu)\tcont: %llu.%09llu(+%llu)\tgtod:%llu.%09llu(+%llu)", i,
31*a325d9c4SApple OSS Distributions 		    absolute / NSEC_PER_SEC, absolute % NSEC_PER_SEC, absolute - last_absolute,
32*a325d9c4SApple OSS Distributions 		    continuous / NSEC_PER_SEC, continuous % NSEC_PER_SEC, continuous - last_continuous,
33*a325d9c4SApple OSS Distributions 		    gtod / NSEC_PER_SEC, gtod % NSEC_PER_SEC, gtod - last_gtod);
34*a325d9c4SApple OSS Distributions 
35*a325d9c4SApple OSS Distributions 		T_QUIET; T_EXPECT_EQ(absolute - last_absolute, continuous - last_continuous, NULL);
36*a325d9c4SApple OSS Distributions 
37*a325d9c4SApple OSS Distributions 		int64_t gtod_diff = (int64_t)gtod - (int64_t)last_gtod;
38*a325d9c4SApple OSS Distributions 		T_QUIET; T_ASSERT_LE((uint64_t)llabs(gtod_diff), NSEC_PER_SEC, NULL);
39*a325d9c4SApple OSS Distributions 
40*a325d9c4SApple OSS Distributions 		last_absolute = absolute;
41*a325d9c4SApple OSS Distributions 		last_continuous = continuous;
42*a325d9c4SApple OSS Distributions 		last_gtod = gtod;
43*a325d9c4SApple OSS Distributions 
44*a325d9c4SApple OSS Distributions 		gtod_ts.tv_sec = 0; gtod_ts.tv_nsec = 0;
45*a325d9c4SApple OSS Distributions 	}
46*a325d9c4SApple OSS Distributions }
47