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Jens Axboe02bcaa82006-11-24 10:42:00 +01001/*
Jens Axboef5cc0242006-11-24 10:47:40 +01002 * Clock functions
Jens Axboe02bcaa82006-11-24 10:42:00 +01003 */
Jens Axboef5cc0242006-11-24 10:47:40 +01004
Jens Axboe02bcaa82006-11-24 10:42:00 +01005#include <unistd.h>
Jens Axboec223da82010-03-24 13:23:53 +01006#include <math.h>
Jens Axboe02bcaa82006-11-24 10:42:00 +01007#include <sys/time.h>
Bruce Cran03e20d62011-01-02 20:14:54 +01008#include <time.h>
Jens Axboe02bcaa82006-11-24 10:42:00 +01009
10#include "fio.h"
Jens Axboebe4ecfd2008-12-08 14:10:52 +010011#include "smalloc.h"
Jens Axboe02bcaa82006-11-24 10:42:00 +010012
13#include "hash.h"
Jens Axboe7d11f872012-12-17 12:03:29 +010014#include "os/os.h"
Jens Axboe02bcaa82006-11-24 10:42:00 +010015
Christian Ehrhardt919e7892014-04-08 17:52:00 +020016#if defined(ARCH_HAVE_CPU_CLOCK) && !defined(ARCH_CPU_CLOCK_CYCLES_PER_USEC)
Jens Axboec223da82010-03-24 13:23:53 +010017static unsigned long cycles_per_usec;
Jens Axboe71339112012-12-21 22:54:56 +010018static unsigned long inv_cycles_per_usec;
Jens Axboe400531d2014-12-16 22:40:37 -070019static uint64_t max_cycles_for_mult;
Jens Axboe1e62c3f2014-12-17 08:51:23 -070020static unsigned long long cycles_start, cycles_wrap;
Jens Axboe09a32402010-08-15 15:01:51 -040021#endif
Jens Axboe4de98eb2013-01-01 10:59:04 +010022int tsc_reliable = 0;
Jens Axboe5d879392012-12-18 09:12:27 +010023
24struct tv_valid {
Jens Axboeba458c22013-01-21 05:38:22 -070025 uint64_t last_cycles;
Jens Axboe02c7e292014-12-16 15:37:25 -070026 int last_tv_valid;
27 int warned;
Jens Axboe5d879392012-12-18 09:12:27 +010028};
Jens Axboed8fc0cd2014-12-17 09:08:01 -070029#ifdef ARCH_HAVE_CPU_CLOCK
Jens Axboe67bf9822013-01-10 11:23:19 +010030#ifdef CONFIG_TLS_THREAD
Jens Axboeb4ea84d2013-04-11 14:20:33 +020031static __thread struct tv_valid static_tv_valid;
Jens Axboe67bf9822013-01-10 11:23:19 +010032#else
Jens Axboe5d879392012-12-18 09:12:27 +010033static pthread_key_t tv_tls_key;
Jens Axboe67bf9822013-01-10 11:23:19 +010034#endif
Jens Axboed8fc0cd2014-12-17 09:08:01 -070035#endif
Jens Axboe02bcaa82006-11-24 10:42:00 +010036
Bruce Cran16de1bf2012-02-20 17:07:32 +000037enum fio_cs fio_clock_source = FIO_PREFERRED_CLOCK_SOURCE;
Jens Axboefa80fea2012-12-09 20:29:00 +010038int fio_clock_source_set = 0;
Jens Axboe10aa1362014-04-01 21:10:36 -060039static enum fio_cs fio_clock_source_inited = CS_INVAL;
Jens Axboec223da82010-03-24 13:23:53 +010040
Jens Axboe02bcaa82006-11-24 10:42:00 +010041#ifdef FIO_DEBUG_TIME
42
43#define HASH_BITS 8
44#define HASH_SIZE (1 << HASH_BITS)
45
Jens Axboe01743ee2008-06-02 12:19:19 +020046static struct flist_head hash[HASH_SIZE];
Jens Axboe02bcaa82006-11-24 10:42:00 +010047static int gtod_inited;
48
49struct gtod_log {
Jens Axboe01743ee2008-06-02 12:19:19 +020050 struct flist_head list;
Jens Axboe02bcaa82006-11-24 10:42:00 +010051 void *caller;
52 unsigned long calls;
53};
54
55static struct gtod_log *find_hash(void *caller)
56{
57 unsigned long h = hash_ptr(caller, HASH_BITS);
Jens Axboe01743ee2008-06-02 12:19:19 +020058 struct flist_head *entry;
Jens Axboe02bcaa82006-11-24 10:42:00 +010059
Jens Axboe01743ee2008-06-02 12:19:19 +020060 flist_for_each(entry, &hash[h]) {
61 struct gtod_log *log = flist_entry(entry, struct gtod_log,
62 list);
Jens Axboe02bcaa82006-11-24 10:42:00 +010063
64 if (log->caller == caller)
65 return log;
66 }
67
68 return NULL;
69}
70
Jens Axboe5194e342014-12-16 23:03:54 -070071static void inc_caller(void *caller)
Jens Axboe02bcaa82006-11-24 10:42:00 +010072{
73 struct gtod_log *log = find_hash(caller);
74
75 if (!log) {
76 unsigned long h;
77
78 log = malloc(sizeof(*log));
Jens Axboe01743ee2008-06-02 12:19:19 +020079 INIT_FLIST_HEAD(&log->list);
Jens Axboe02bcaa82006-11-24 10:42:00 +010080 log->caller = caller;
81 log->calls = 0;
82
83 h = hash_ptr(caller, HASH_BITS);
Jens Axboe01743ee2008-06-02 12:19:19 +020084 flist_add_tail(&log->list, &hash[h]);
Jens Axboe02bcaa82006-11-24 10:42:00 +010085 }
86
Jens Axboe5194e342014-12-16 23:03:54 -070087 log->calls++;
Jens Axboe02bcaa82006-11-24 10:42:00 +010088}
89
90static void gtod_log_caller(void *caller)
91{
Jens Axboe5194e342014-12-16 23:03:54 -070092 if (gtod_inited)
93 inc_caller(caller);
Jens Axboe02bcaa82006-11-24 10:42:00 +010094}
95
96static void fio_exit fio_dump_gtod(void)
97{
98 unsigned long total_calls = 0;
99 int i;
100
101 for (i = 0; i < HASH_SIZE; i++) {
Jens Axboe01743ee2008-06-02 12:19:19 +0200102 struct flist_head *entry;
Jens Axboe02bcaa82006-11-24 10:42:00 +0100103 struct gtod_log *log;
104
Jens Axboe01743ee2008-06-02 12:19:19 +0200105 flist_for_each(entry, &hash[i]) {
106 log = flist_entry(entry, struct gtod_log, list);
Jens Axboe02bcaa82006-11-24 10:42:00 +0100107
Jens Axboe5ec10ea2008-03-06 15:42:00 +0100108 printf("function %p, calls %lu\n", log->caller,
109 log->calls);
Jens Axboe02bcaa82006-11-24 10:42:00 +0100110 total_calls += log->calls;
111 }
112 }
113
114 printf("Total %lu gettimeofday\n", total_calls);
115}
116
117static void fio_init gtod_init(void)
118{
119 int i;
120
121 for (i = 0; i < HASH_SIZE; i++)
Jens Axboe01743ee2008-06-02 12:19:19 +0200122 INIT_FLIST_HEAD(&hash[i]);
Jens Axboe02bcaa82006-11-24 10:42:00 +0100123
124 gtod_inited = 1;
125}
126
127#endif /* FIO_DEBUG_TIME */
128
Jens Axboe67bf9822013-01-10 11:23:19 +0100129#ifdef CONFIG_CLOCK_GETTIME
Jens Axboe9ff1c072012-12-20 15:17:57 +0100130static int fill_clock_gettime(struct timespec *ts)
131{
Jens Axboe67bf9822013-01-10 11:23:19 +0100132#ifdef CONFIG_CLOCK_MONOTONIC
Jens Axboe9ff1c072012-12-20 15:17:57 +0100133 return clock_gettime(CLOCK_MONOTONIC, ts);
134#else
135 return clock_gettime(CLOCK_REALTIME, ts);
136#endif
137}
Jens Axboe1e97cce2006-12-05 11:44:16 +0100138#endif
Jens Axboe67bf9822013-01-10 11:23:19 +0100139
Jens Axboea7d78f22014-12-16 15:13:45 -0700140static void __fio_gettime(struct timeval *tp)
Jens Axboe02bcaa82006-11-24 10:42:00 +0100141{
Jens Axboec223da82010-03-24 13:23:53 +0100142 switch (fio_clock_source) {
Jens Axboe67bf9822013-01-10 11:23:19 +0100143#ifdef CONFIG_GETTIMEOFDAY
Jens Axboec223da82010-03-24 13:23:53 +0100144 case CS_GTOD:
Jens Axboe02bcaa82006-11-24 10:42:00 +0100145 gettimeofday(tp, NULL);
Jens Axboec223da82010-03-24 13:23:53 +0100146 break;
Jens Axboe67bf9822013-01-10 11:23:19 +0100147#endif
148#ifdef CONFIG_CLOCK_GETTIME
Jens Axboec223da82010-03-24 13:23:53 +0100149 case CS_CGETTIME: {
Jens Axboe02bcaa82006-11-24 10:42:00 +0100150 struct timespec ts;
151
Jens Axboe9ff1c072012-12-20 15:17:57 +0100152 if (fill_clock_gettime(&ts) < 0) {
Jens Axboec223da82010-03-24 13:23:53 +0100153 log_err("fio: clock_gettime fails\n");
154 assert(0);
Jens Axboe02bcaa82006-11-24 10:42:00 +0100155 }
156
157 tp->tv_sec = ts.tv_sec;
158 tp->tv_usec = ts.tv_nsec / 1000;
Jens Axboec223da82010-03-24 13:23:53 +0100159 break;
160 }
Jens Axboe67bf9822013-01-10 11:23:19 +0100161#endif
Jens Axboec223da82010-03-24 13:23:53 +0100162#ifdef ARCH_HAVE_CPU_CLOCK
163 case CS_CPUCLOCK: {
Jens Axboeba458c22013-01-21 05:38:22 -0700164 uint64_t usecs, t;
Jens Axboed8fc0cd2014-12-17 09:08:01 -0700165 struct tv_valid *tv;
166
167#ifdef CONFIG_TLS_THREAD
168 tv = &static_tv_valid;
169#else
170 tv = pthread_getspecific(tv_tls_key);
171#endif
Jens Axboec223da82010-03-24 13:23:53 +0100172
173 t = get_cpu_clock();
Jens Axboe1e62c3f2014-12-17 08:51:23 -0700174 if (t < cycles_start && !cycles_wrap)
175 cycles_wrap = 1;
Jens Axboed8fc0cd2014-12-17 09:08:01 -0700176 else if (cycles_wrap && t >= cycles_start && !tv->warned) {
177 log_err("fio: double CPU clock wrap\n");
178 tv->warned = 1;
Jens Axboe02c7e292014-12-16 15:37:25 -0700179 }
Jens Axboec223da82010-03-24 13:23:53 +0100180
Jens Axboe1e62c3f2014-12-17 08:51:23 -0700181 t -= cycles_start;
Jens Axboea7d78f22014-12-16 15:13:45 -0700182 tv->last_cycles = t;
183 tv->last_tv_valid = 1;
Christian Ehrhardt919e7892014-04-08 17:52:00 +0200184#ifdef ARCH_CPU_CLOCK_CYCLES_PER_USEC
185 usecs = t / ARCH_CPU_CLOCK_CYCLES_PER_USEC;
186#else
Jens Axboe400531d2014-12-16 22:40:37 -0700187 if (t < max_cycles_for_mult)
188 usecs = (t * inv_cycles_per_usec) / 16777216UL;
189 else
190 usecs = t / cycles_per_usec;
Christian Ehrhardt919e7892014-04-08 17:52:00 +0200191#endif
Jens Axboec223da82010-03-24 13:23:53 +0100192 tp->tv_sec = usecs / 1000000;
193 tp->tv_usec = usecs % 1000000;
Jens Axboec223da82010-03-24 13:23:53 +0100194 break;
195 }
196#endif
197 default:
198 log_err("fio: invalid clock source %d\n", fio_clock_source);
199 break;
Jens Axboe02bcaa82006-11-24 10:42:00 +0100200 }
Jens Axboe67bf9822013-01-10 11:23:19 +0100201}
202
203#ifdef FIO_DEBUG_TIME
204void fio_gettime(struct timeval *tp, void *caller)
205#else
206void fio_gettime(struct timeval *tp, void fio_unused *caller)
207#endif
208{
Jens Axboe67bf9822013-01-10 11:23:19 +0100209#ifdef FIO_DEBUG_TIME
210 if (!caller)
211 caller = __builtin_return_address(0);
212
213 gtod_log_caller(caller);
214#endif
Jens Axboe04194192014-12-16 19:43:55 -0700215 if (fio_unlikely(fio_gettime_offload(tp)))
Jens Axboe67bf9822013-01-10 11:23:19 +0100216 return;
Jens Axboe67bf9822013-01-10 11:23:19 +0100217
Jens Axboea7d78f22014-12-16 15:13:45 -0700218 __fio_gettime(tp);
Jens Axboe02bcaa82006-11-24 10:42:00 +0100219}
Jens Axboebe4ecfd2008-12-08 14:10:52 +0100220
Christian Ehrhardt919e7892014-04-08 17:52:00 +0200221#if defined(ARCH_HAVE_CPU_CLOCK) && !defined(ARCH_CPU_CLOCK_CYCLES_PER_USEC)
Jens Axboec223da82010-03-24 13:23:53 +0100222static unsigned long get_cycles_per_usec(void)
223{
224 struct timeval s, e;
Jens Axboeba458c22013-01-21 05:38:22 -0700225 uint64_t c_s, c_e;
Jens Axboe67bf9822013-01-10 11:23:19 +0100226 enum fio_cs old_cs = fio_clock_source;
Jens Axboec223da82010-03-24 13:23:53 +0100227
Jens Axboe67bf9822013-01-10 11:23:19 +0100228#ifdef CONFIG_CLOCK_GETTIME
229 fio_clock_source = CS_CGETTIME;
230#else
231 fio_clock_source = CS_GTOD;
232#endif
233 __fio_gettime(&s);
Jens Axboe9ff1c072012-12-20 15:17:57 +0100234
Jens Axboec223da82010-03-24 13:23:53 +0100235 c_s = get_cpu_clock();
236 do {
Jens Axboeba458c22013-01-21 05:38:22 -0700237 uint64_t elapsed;
Jens Axboec223da82010-03-24 13:23:53 +0100238
Jens Axboe67bf9822013-01-10 11:23:19 +0100239 __fio_gettime(&e);
Jens Axboe9ff1c072012-12-20 15:17:57 +0100240
Jens Axboec223da82010-03-24 13:23:53 +0100241 elapsed = utime_since(&s, &e);
Jens Axboe486332e2012-12-10 08:07:14 +0100242 if (elapsed >= 1280) {
Jens Axboec223da82010-03-24 13:23:53 +0100243 c_e = get_cpu_clock();
244 break;
245 }
246 } while (1);
247
Jens Axboe67bf9822013-01-10 11:23:19 +0100248 fio_clock_source = old_cs;
Jens Axboec0110002012-12-10 08:29:03 +0100249 return (c_e - c_s + 127) >> 7;
Jens Axboec223da82010-03-24 13:23:53 +0100250}
251
Jens Axboefa80fea2012-12-09 20:29:00 +0100252#define NR_TIME_ITERS 50
253
Jens Axboee2598792013-02-24 21:29:35 +0100254static int calibrate_cpu_clock(void)
Jens Axboec223da82010-03-24 13:23:53 +0100255{
256 double delta, mean, S;
Jens Axboeba458c22013-01-21 05:38:22 -0700257 uint64_t avg, cycles[NR_TIME_ITERS];
Jens Axboec223da82010-03-24 13:23:53 +0100258 int i, samples;
259
Jens Axboec223da82010-03-24 13:23:53 +0100260 cycles[0] = get_cycles_per_usec();
261 S = delta = mean = 0.0;
Jens Axboefa80fea2012-12-09 20:29:00 +0100262 for (i = 0; i < NR_TIME_ITERS; i++) {
Jens Axboec223da82010-03-24 13:23:53 +0100263 cycles[i] = get_cycles_per_usec();
264 delta = cycles[i] - mean;
265 if (delta) {
266 mean += delta / (i + 1.0);
267 S += delta * (cycles[i] - mean);
268 }
269 }
270
Jens Axboee2598792013-02-24 21:29:35 +0100271 /*
272 * The most common platform clock breakage is returning zero
273 * indefinitely. Check for that and return failure.
274 */
275 if (!cycles[0] && !cycles[NR_TIME_ITERS - 1])
276 return 1;
277
Jens Axboefa80fea2012-12-09 20:29:00 +0100278 S = sqrt(S / (NR_TIME_ITERS - 1.0));
Jens Axboec223da82010-03-24 13:23:53 +0100279
280 samples = avg = 0;
Jens Axboefa80fea2012-12-09 20:29:00 +0100281 for (i = 0; i < NR_TIME_ITERS; i++) {
Jens Axboec223da82010-03-24 13:23:53 +0100282 double this = cycles[i];
283
Bruce Cran03e20d62011-01-02 20:14:54 +0100284 if ((fmax(this, mean) - fmin(this, mean)) > S)
Jens Axboec223da82010-03-24 13:23:53 +0100285 continue;
286 samples++;
287 avg += this;
288 }
289
Jens Axboefa80fea2012-12-09 20:29:00 +0100290 S /= (double) NR_TIME_ITERS;
Jens Axboe89db7272012-12-10 08:29:56 +0100291 mean /= 10.0;
Jens Axboec223da82010-03-24 13:23:53 +0100292
Jens Axboefa80fea2012-12-09 20:29:00 +0100293 for (i = 0; i < NR_TIME_ITERS; i++)
Jens Axboe4b91ee82013-02-25 10:18:33 +0100294 dprint(FD_TIME, "cycles[%d]=%llu\n", i,
295 (unsigned long long) cycles[i] / 10);
Jens Axboec223da82010-03-24 13:23:53 +0100296
Jens Axboed7abad32012-12-10 10:15:59 +0100297 avg /= samples;
Jens Axboeb0ff22d2013-01-01 13:38:18 +0100298 avg = (avg + 5) / 10;
Jens Axboe4b91ee82013-02-25 10:18:33 +0100299 dprint(FD_TIME, "avg: %llu\n", (unsigned long long) avg);
Jens Axboec223da82010-03-24 13:23:53 +0100300 dprint(FD_TIME, "mean=%f, S=%f\n", mean, S);
301
302 cycles_per_usec = avg;
Jens Axboe71339112012-12-21 22:54:56 +0100303 inv_cycles_per_usec = 16777216UL / cycles_per_usec;
Jens Axboe400531d2014-12-16 22:40:37 -0700304 max_cycles_for_mult = ~0ULL / inv_cycles_per_usec;
Jens Axboe71339112012-12-21 22:54:56 +0100305 dprint(FD_TIME, "inv_cycles_per_usec=%lu\n", inv_cycles_per_usec);
Jens Axboe1e62c3f2014-12-17 08:51:23 -0700306 cycles_start = get_cpu_clock();
307 dprint(FD_TIME, "cycles_start=%llu\n", cycles_start);
Jens Axboee2598792013-02-24 21:29:35 +0100308 return 0;
Jens Axboe09a32402010-08-15 15:01:51 -0400309}
310#else
Jens Axboee2598792013-02-24 21:29:35 +0100311static int calibrate_cpu_clock(void)
Jens Axboe09a32402010-08-15 15:01:51 -0400312{
Christian Ehrhardt919e7892014-04-08 17:52:00 +0200313#ifdef ARCH_CPU_CLOCK_CYCLES_PER_USEC
314 return 0;
315#else
Jens Axboee2598792013-02-24 21:29:35 +0100316 return 1;
Jens Axboe09a32402010-08-15 15:01:51 -0400317#endif
Christian Ehrhardt919e7892014-04-08 17:52:00 +0200318}
319#endif // ARCH_HAVE_CPU_CLOCK
Jens Axboe09a32402010-08-15 15:01:51 -0400320
Jens Axboe67bf9822013-01-10 11:23:19 +0100321#ifndef CONFIG_TLS_THREAD
Jens Axboe5d879392012-12-18 09:12:27 +0100322void fio_local_clock_init(int is_thread)
323{
324 struct tv_valid *t;
325
Jens Axboe572cfb32013-12-06 12:02:10 -0700326 t = calloc(1, sizeof(*t));
Jens Axboea7d78f22014-12-16 15:13:45 -0700327 if (pthread_setspecific(tv_tls_key, t)) {
Jens Axboe5d879392012-12-18 09:12:27 +0100328 log_err("fio: can't set TLS key\n");
Jens Axboea7d78f22014-12-16 15:13:45 -0700329 assert(0);
330 }
Jens Axboe5d879392012-12-18 09:12:27 +0100331}
332
333static void kill_tv_tls_key(void *data)
334{
335 free(data);
336}
Jens Axboe67bf9822013-01-10 11:23:19 +0100337#else
338void fio_local_clock_init(int is_thread)
339{
340}
341#endif
Jens Axboe5d879392012-12-18 09:12:27 +0100342
Jens Axboe09a32402010-08-15 15:01:51 -0400343void fio_clock_init(void)
344{
Jens Axboe01423ea2012-12-14 20:37:06 +0100345 if (fio_clock_source == fio_clock_source_inited)
346 return;
347
Jens Axboe67bf9822013-01-10 11:23:19 +0100348#ifndef CONFIG_TLS_THREAD
Jens Axboe5d879392012-12-18 09:12:27 +0100349 if (pthread_key_create(&tv_tls_key, kill_tv_tls_key))
350 log_err("fio: can't create TLS key\n");
Jens Axboe67bf9822013-01-10 11:23:19 +0100351#endif
Jens Axboe5d879392012-12-18 09:12:27 +0100352
Jens Axboe01423ea2012-12-14 20:37:06 +0100353 fio_clock_source_inited = fio_clock_source;
Jens Axboee2598792013-02-24 21:29:35 +0100354
355 if (calibrate_cpu_clock())
356 tsc_reliable = 0;
Jens Axboefa80fea2012-12-09 20:29:00 +0100357
358 /*
359 * If the arch sets tsc_reliable != 0, then it must be good enough
360 * to use as THE clock source. For x86 CPUs, this means the TSC
361 * runs at a constant rate and is synced across CPU cores.
362 */
363 if (tsc_reliable) {
364 if (!fio_clock_source_set)
365 fio_clock_source = CS_CPUCLOCK;
366 } else if (fio_clock_source == CS_CPUCLOCK)
367 log_info("fio: clocksource=cpu may not be reliable\n");
Jens Axboec223da82010-03-24 13:23:53 +0100368}
369
Jens Axboe0cbbc392014-09-30 16:04:12 -0600370uint64_t utime_since(const struct timeval *s, const struct timeval *e)
Jens Axboebe4ecfd2008-12-08 14:10:52 +0100371{
Jens Axboe39ab7da2012-11-06 22:10:43 +0100372 long sec, usec;
Jens Axboeaa60bc52013-01-04 13:24:52 +0100373 uint64_t ret;
Jens Axboebe4ecfd2008-12-08 14:10:52 +0100374
Jens Axboe39ab7da2012-11-06 22:10:43 +0100375 sec = e->tv_sec - s->tv_sec;
376 usec = e->tv_usec - s->tv_usec;
377 if (sec > 0 && usec < 0) {
378 sec--;
379 usec += 1000000;
380 }
Jens Axboe783a3eb2012-02-09 10:27:10 +0100381
382 /*
Jens Axboe39ab7da2012-11-06 22:10:43 +0100383 * time warp bug on some kernels?
Jens Axboe783a3eb2012-02-09 10:27:10 +0100384 */
Jens Axboe39ab7da2012-11-06 22:10:43 +0100385 if (sec < 0 || (sec == 0 && usec < 0))
386 return 0;
Jens Axboe783a3eb2012-02-09 10:27:10 +0100387
Jens Axboe39ab7da2012-11-06 22:10:43 +0100388 ret = sec * 1000000ULL + usec;
389
390 return ret;
Jens Axboe783a3eb2012-02-09 10:27:10 +0100391}
392
Jens Axboe0cbbc392014-09-30 16:04:12 -0600393uint64_t utime_since_now(const struct timeval *s)
Jens Axboe783a3eb2012-02-09 10:27:10 +0100394{
Jens Axboe39ab7da2012-11-06 22:10:43 +0100395 struct timeval t;
Jens Axboe783a3eb2012-02-09 10:27:10 +0100396
Jens Axboe39ab7da2012-11-06 22:10:43 +0100397 fio_gettime(&t, NULL);
398 return utime_since(s, &t);
399}
Jens Axboe783a3eb2012-02-09 10:27:10 +0100400
Jens Axboe0cbbc392014-09-30 16:04:12 -0600401uint64_t mtime_since(const struct timeval *s, const struct timeval *e)
Jens Axboe39ab7da2012-11-06 22:10:43 +0100402{
403 long sec, usec, ret;
404
405 sec = e->tv_sec - s->tv_sec;
406 usec = e->tv_usec - s->tv_usec;
407 if (sec > 0 && usec < 0) {
408 sec--;
409 usec += 1000000;
Jens Axboe783a3eb2012-02-09 10:27:10 +0100410 }
411
Jens Axboe39ab7da2012-11-06 22:10:43 +0100412 if (sec < 0 || (sec == 0 && usec < 0))
413 return 0;
Jens Axboe783a3eb2012-02-09 10:27:10 +0100414
Jens Axboe39ab7da2012-11-06 22:10:43 +0100415 sec *= 1000UL;
416 usec /= 1000UL;
417 ret = sec + usec;
418
Jens Axboe783a3eb2012-02-09 10:27:10 +0100419 return ret;
420}
Jens Axboe39ab7da2012-11-06 22:10:43 +0100421
Jens Axboe0cbbc392014-09-30 16:04:12 -0600422uint64_t mtime_since_now(const struct timeval *s)
Jens Axboe39ab7da2012-11-06 22:10:43 +0100423{
424 struct timeval t;
425 void *p = __builtin_return_address(0);
426
427 fio_gettime(&t, p);
428 return mtime_since(s, &t);
429}
430
Jens Axboe0cbbc392014-09-30 16:04:12 -0600431uint64_t time_since_now(const struct timeval *s)
Jens Axboe39ab7da2012-11-06 22:10:43 +0100432{
433 return mtime_since_now(s) / 1000;
434}
Jens Axboe7d11f872012-12-17 12:03:29 +0100435
Jens Axboe67bf9822013-01-10 11:23:19 +0100436#if defined(FIO_HAVE_CPU_AFFINITY) && defined(ARCH_HAVE_CPU_CLOCK) && \
437 defined(CONFIG_SFAA)
Jens Axboe7d11f872012-12-17 12:03:29 +0100438
439#define CLOCK_ENTRIES 100000
440
441struct clock_entry {
Jens Axboe58002f92013-02-25 10:23:58 +0100442 uint32_t seq;
443 uint32_t cpu;
Jens Axboeba458c22013-01-21 05:38:22 -0700444 uint64_t tsc;
Jens Axboe7d11f872012-12-17 12:03:29 +0100445};
446
447struct clock_thread {
448 pthread_t thread;
449 int cpu;
450 pthread_mutex_t lock;
451 pthread_mutex_t started;
Jens Axboe58002f92013-02-25 10:23:58 +0100452 uint32_t *seq;
Jens Axboe7d11f872012-12-17 12:03:29 +0100453 struct clock_entry *entries;
454};
455
Jens Axboe58002f92013-02-25 10:23:58 +0100456static inline uint32_t atomic32_inc_return(uint32_t *seq)
Jens Axboe7d11f872012-12-17 12:03:29 +0100457{
458 return 1 + __sync_fetch_and_add(seq, 1);
459}
460
461static void *clock_thread_fn(void *data)
462{
463 struct clock_thread *t = data;
464 struct clock_entry *c;
465 os_cpu_mask_t cpu_mask;
Jens Axboe58002f92013-02-25 10:23:58 +0100466 uint32_t last_seq;
Jens Axboe7d11f872012-12-17 12:03:29 +0100467 int i;
468
469 memset(&cpu_mask, 0, sizeof(cpu_mask));
470 fio_cpu_set(&cpu_mask, t->cpu);
471
472 if (fio_setaffinity(gettid(), cpu_mask) == -1) {
473 log_err("clock setaffinity failed\n");
474 return (void *) 1;
475 }
476
Jens Axboe7d11f872012-12-17 12:03:29 +0100477 pthread_mutex_lock(&t->lock);
Jens Axboeb9b34982012-12-17 14:23:47 +0100478 pthread_mutex_unlock(&t->started);
Jens Axboe7d11f872012-12-17 12:03:29 +0100479
Jens Axboe58002f92013-02-25 10:23:58 +0100480 last_seq = 0;
Jens Axboe7d11f872012-12-17 12:03:29 +0100481 c = &t->entries[0];
482 for (i = 0; i < CLOCK_ENTRIES; i++, c++) {
Jens Axboe58002f92013-02-25 10:23:58 +0100483 uint32_t seq;
484 uint64_t tsc;
Jens Axboe7d11f872012-12-17 12:03:29 +0100485
486 c->cpu = t->cpu;
487 do {
Jens Axboe58002f92013-02-25 10:23:58 +0100488 seq = atomic32_inc_return(t->seq);
489 if (seq < last_seq)
490 break;
Jens Axboe7d11f872012-12-17 12:03:29 +0100491 tsc = get_cpu_clock();
492 } while (seq != *t->seq);
493
494 c->seq = seq;
495 c->tsc = tsc;
496 }
497
Jens Axboe0f78b222013-02-26 13:54:20 +0100498 log_info("cs: cpu%3d: %llu clocks seen\n", t->cpu,
499 (unsigned long long) t->entries[i - 1].tsc - t->entries[0].tsc);
Jens Axboe58002f92013-02-25 10:23:58 +0100500
Jens Axboee2598792013-02-24 21:29:35 +0100501 /*
502 * The most common platform clock breakage is returning zero
503 * indefinitely. Check for that and return failure.
504 */
Jens Axboe58002f92013-02-25 10:23:58 +0100505 if (!t->entries[i - 1].tsc && !t->entries[0].tsc)
Jens Axboee2598792013-02-24 21:29:35 +0100506 return (void *) 1;
507
Jens Axboe7d11f872012-12-17 12:03:29 +0100508 return NULL;
509}
510
511static int clock_cmp(const void *p1, const void *p2)
512{
513 const struct clock_entry *c1 = p1;
514 const struct clock_entry *c2 = p2;
515
Jens Axboeb9b34982012-12-17 14:23:47 +0100516 if (c1->seq == c2->seq)
517 log_err("cs: bug in atomic sequence!\n");
518
Jens Axboe7d11f872012-12-17 12:03:29 +0100519 return c1->seq - c2->seq;
520}
521
522int fio_monotonic_clocktest(void)
523{
Jens Axboe0f7f9a92014-11-06 09:21:10 -0700524 struct clock_thread *cthreads;
Jens Axboe7d11f872012-12-17 12:03:29 +0100525 unsigned int nr_cpus = cpus_online();
526 struct clock_entry *entries;
Jens Axboe814917b2014-04-14 12:20:04 -0600527 unsigned long tentries, failed = 0;
Bruce Cran80da8a82013-02-21 14:16:17 +0100528 struct clock_entry *prev, *this;
Jens Axboe58002f92013-02-25 10:23:58 +0100529 uint32_t seq = 0;
Jens Axboecaa3eb12014-04-14 09:05:46 -0600530 unsigned int i;
Jens Axboe7d11f872012-12-17 12:03:29 +0100531
Jens Axboed5e3f5d2013-01-18 20:13:45 +0100532 log_info("cs: reliable_tsc: %s\n", tsc_reliable ? "yes" : "no");
533
Jens Axboefc3f3e42014-09-24 09:54:24 -0600534#ifdef FIO_INC_DEBUG
Jens Axboe4f1d43c2012-12-17 14:29:28 +0100535 fio_debug |= 1U << FD_TIME;
Jens Axboefc3f3e42014-09-24 09:54:24 -0600536#endif
Jens Axboe4f1d43c2012-12-17 14:29:28 +0100537 calibrate_cpu_clock();
Jens Axboefc3f3e42014-09-24 09:54:24 -0600538#ifdef FIO_INC_DEBUG
Jens Axboe4f1d43c2012-12-17 14:29:28 +0100539 fio_debug &= ~(1U << FD_TIME);
Jens Axboefc3f3e42014-09-24 09:54:24 -0600540#endif
Jens Axboe4f1d43c2012-12-17 14:29:28 +0100541
Jens Axboe0f7f9a92014-11-06 09:21:10 -0700542 cthreads = malloc(nr_cpus * sizeof(struct clock_thread));
Jens Axboe7d11f872012-12-17 12:03:29 +0100543 tentries = CLOCK_ENTRIES * nr_cpus;
544 entries = malloc(tentries * sizeof(struct clock_entry));
545
546 log_info("cs: Testing %u CPUs\n", nr_cpus);
547
548 for (i = 0; i < nr_cpus; i++) {
Jens Axboe0f7f9a92014-11-06 09:21:10 -0700549 struct clock_thread *t = &cthreads[i];
Jens Axboe7d11f872012-12-17 12:03:29 +0100550
551 t->cpu = i;
552 t->seq = &seq;
553 t->entries = &entries[i * CLOCK_ENTRIES];
554 pthread_mutex_init(&t->lock, NULL);
555 pthread_mutex_init(&t->started, NULL);
556 pthread_mutex_lock(&t->lock);
Jens Axboe6b0110c2014-04-14 12:14:17 -0600557 if (pthread_create(&t->thread, NULL, clock_thread_fn, t)) {
558 failed++;
559 nr_cpus = i;
560 break;
561 }
Jens Axboe7d11f872012-12-17 12:03:29 +0100562 }
563
564 for (i = 0; i < nr_cpus; i++) {
Jens Axboe0f7f9a92014-11-06 09:21:10 -0700565 struct clock_thread *t = &cthreads[i];
Jens Axboe7d11f872012-12-17 12:03:29 +0100566
567 pthread_mutex_lock(&t->started);
568 }
569
570 for (i = 0; i < nr_cpus; i++) {
Jens Axboe0f7f9a92014-11-06 09:21:10 -0700571 struct clock_thread *t = &cthreads[i];
Jens Axboe7d11f872012-12-17 12:03:29 +0100572
573 pthread_mutex_unlock(&t->lock);
574 }
575
Jens Axboe814917b2014-04-14 12:20:04 -0600576 for (i = 0; i < nr_cpus; i++) {
Jens Axboe0f7f9a92014-11-06 09:21:10 -0700577 struct clock_thread *t = &cthreads[i];
Jens Axboe7d11f872012-12-17 12:03:29 +0100578 void *ret;
579
580 pthread_join(t->thread, &ret);
581 if (ret)
582 failed++;
583 }
Jens Axboe0f7f9a92014-11-06 09:21:10 -0700584 free(cthreads);
Jens Axboe7d11f872012-12-17 12:03:29 +0100585
586 if (failed) {
Jens Axboe4e0a8fa2013-04-15 11:40:57 +0200587 log_err("Clocksource test: %lu threads failed\n", failed);
Jens Axboe7d11f872012-12-17 12:03:29 +0100588 goto err;
589 }
590
591 qsort(entries, tentries, sizeof(struct clock_entry), clock_cmp);
592
593 for (failed = i = 0; i < tentries; i++) {
Bruce Cran80da8a82013-02-21 14:16:17 +0100594 this = &entries[i];
Jens Axboe7d11f872012-12-17 12:03:29 +0100595
596 if (!i) {
597 prev = this;
598 continue;
599 }
600
601 if (prev->tsc > this->tsc) {
602 uint64_t diff = prev->tsc - this->tsc;
603
Jens Axboe4e0a8fa2013-04-15 11:40:57 +0200604 log_info("cs: CPU clock mismatch (diff=%llu):\n",
605 (unsigned long long) diff);
606 log_info("\t CPU%3u: TSC=%llu, SEQ=%u\n", prev->cpu, (unsigned long long) prev->tsc, prev->seq);
607 log_info("\t CPU%3u: TSC=%llu, SEQ=%u\n", this->cpu, (unsigned long long) this->tsc, this->seq);
Jens Axboe7d11f872012-12-17 12:03:29 +0100608 failed++;
609 }
610
611 prev = this;
612 }
613
614 if (failed)
615 log_info("cs: Failed: %lu\n", failed);
616 else
617 log_info("cs: Pass!\n");
618
619err:
620 free(entries);
621 return !!failed;
622}
623
624#else /* defined(FIO_HAVE_CPU_AFFINITY) && defined(ARCH_HAVE_CPU_CLOCK) */
625
626int fio_monotonic_clocktest(void)
627{
628 log_info("cs: current platform does not support CPU clocks\n");
629 return 0;
630}
631
632#endif