gettime: limit warning on CPU clock
[fio.git] / gettime.c
CommitLineData
02bcaa8c 1/*
f5cc024a 2 * Clock functions
02bcaa8c 3 */
f5cc024a 4
02bcaa8c 5#include <unistd.h>
c223da83 6#include <math.h>
02bcaa8c 7#include <sys/time.h>
03e20d68 8#include <time.h>
02bcaa8c
JA
9
10#include "fio.h"
be4ecfdf 11#include "smalloc.h"
02bcaa8c
JA
12
13#include "hash.h"
7d11f871 14#include "os/os.h"
02bcaa8c 15
919e789d 16#if defined(ARCH_HAVE_CPU_CLOCK) && !defined(ARCH_CPU_CLOCK_CYCLES_PER_USEC)
c223da83 17static unsigned long cycles_per_usec;
71339117 18static unsigned long inv_cycles_per_usec;
09a32402 19#endif
4de98eb0 20int tsc_reliable = 0;
5d879392
JA
21
22struct tv_valid {
ba458c2f 23 uint64_t last_cycles;
02dcf81c
JA
24 int last_tv_valid;
25 int warned;
5d879392 26};
67bf9823 27#ifdef CONFIG_TLS_THREAD
b4ea84da 28static __thread struct tv_valid static_tv_valid;
67bf9823 29#else
5d879392 30static pthread_key_t tv_tls_key;
67bf9823 31#endif
02bcaa8c 32
16de1bf9 33enum fio_cs fio_clock_source = FIO_PREFERRED_CLOCK_SOURCE;
fa80feae 34int fio_clock_source_set = 0;
10aa136b 35static enum fio_cs fio_clock_source_inited = CS_INVAL;
c223da83 36
02bcaa8c
JA
37#ifdef FIO_DEBUG_TIME
38
39#define HASH_BITS 8
40#define HASH_SIZE (1 << HASH_BITS)
41
01743ee1 42static struct flist_head hash[HASH_SIZE];
02bcaa8c
JA
43static int gtod_inited;
44
45struct gtod_log {
01743ee1 46 struct flist_head list;
02bcaa8c
JA
47 void *caller;
48 unsigned long calls;
49};
50
51static struct gtod_log *find_hash(void *caller)
52{
53 unsigned long h = hash_ptr(caller, HASH_BITS);
01743ee1 54 struct flist_head *entry;
02bcaa8c 55
01743ee1
JA
56 flist_for_each(entry, &hash[h]) {
57 struct gtod_log *log = flist_entry(entry, struct gtod_log,
58 list);
02bcaa8c
JA
59
60 if (log->caller == caller)
61 return log;
62 }
63
64 return NULL;
65}
66
67static struct gtod_log *find_log(void *caller)
68{
69 struct gtod_log *log = find_hash(caller);
70
71 if (!log) {
72 unsigned long h;
73
74 log = malloc(sizeof(*log));
01743ee1 75 INIT_FLIST_HEAD(&log->list);
02bcaa8c
JA
76 log->caller = caller;
77 log->calls = 0;
78
79 h = hash_ptr(caller, HASH_BITS);
01743ee1 80 flist_add_tail(&log->list, &hash[h]);
02bcaa8c
JA
81 }
82
83 return log;
84}
85
86static void gtod_log_caller(void *caller)
87{
88 if (gtod_inited) {
89 struct gtod_log *log = find_log(caller);
90
91 log->calls++;
92 }
93}
94
95static void fio_exit fio_dump_gtod(void)
96{
97 unsigned long total_calls = 0;
98 int i;
99
100 for (i = 0; i < HASH_SIZE; i++) {
01743ee1 101 struct flist_head *entry;
02bcaa8c
JA
102 struct gtod_log *log;
103
01743ee1
JA
104 flist_for_each(entry, &hash[i]) {
105 log = flist_entry(entry, struct gtod_log, list);
02bcaa8c 106
5ec10eaa
JA
107 printf("function %p, calls %lu\n", log->caller,
108 log->calls);
02bcaa8c
JA
109 total_calls += log->calls;
110 }
111 }
112
113 printf("Total %lu gettimeofday\n", total_calls);
114}
115
116static void fio_init gtod_init(void)
117{
118 int i;
119
120 for (i = 0; i < HASH_SIZE; i++)
01743ee1 121 INIT_FLIST_HEAD(&hash[i]);
02bcaa8c
JA
122
123 gtod_inited = 1;
124}
125
126#endif /* FIO_DEBUG_TIME */
127
67bf9823 128#ifdef CONFIG_CLOCK_GETTIME
9ff1c070
JA
129static int fill_clock_gettime(struct timespec *ts)
130{
67bf9823 131#ifdef CONFIG_CLOCK_MONOTONIC
9ff1c070
JA
132 return clock_gettime(CLOCK_MONOTONIC, ts);
133#else
134 return clock_gettime(CLOCK_REALTIME, ts);
135#endif
136}
1e97cce9 137#endif
67bf9823 138
9eb271b9 139static void __fio_gettime(struct timeval *tp)
02bcaa8c 140{
93f0b09a 141 struct tv_valid *tv;
5d879392 142
67bf9823
JA
143#ifdef CONFIG_TLS_THREAD
144 tv = &static_tv_valid;
145#else
93f0b09a 146 tv = pthread_getspecific(tv_tls_key);
67bf9823 147#endif
93f0b09a 148
c223da83 149 switch (fio_clock_source) {
67bf9823 150#ifdef CONFIG_GETTIMEOFDAY
c223da83 151 case CS_GTOD:
02bcaa8c 152 gettimeofday(tp, NULL);
c223da83 153 break;
67bf9823
JA
154#endif
155#ifdef CONFIG_CLOCK_GETTIME
c223da83 156 case CS_CGETTIME: {
02bcaa8c
JA
157 struct timespec ts;
158
9ff1c070 159 if (fill_clock_gettime(&ts) < 0) {
c223da83
JA
160 log_err("fio: clock_gettime fails\n");
161 assert(0);
02bcaa8c
JA
162 }
163
164 tp->tv_sec = ts.tv_sec;
165 tp->tv_usec = ts.tv_nsec / 1000;
c223da83
JA
166 break;
167 }
67bf9823 168#endif
c223da83
JA
169#ifdef ARCH_HAVE_CPU_CLOCK
170 case CS_CPUCLOCK: {
ba458c2f 171 uint64_t usecs, t;
c223da83
JA
172
173 t = get_cpu_clock();
02dcf81c
JA
174 if (t < tv->last_cycles && tv->last_tv_valid &&
175 !tv->warned) {
9eb271b9 176 log_err("fio: CPU clock going back in time\n");
02dcf81c
JA
177 tv->warned = 1;
178 }
c223da83 179
9eb271b9
JA
180 tv->last_cycles = t;
181 tv->last_tv_valid = 1;
919e789d
CE
182#ifdef ARCH_CPU_CLOCK_CYCLES_PER_USEC
183 usecs = t / ARCH_CPU_CLOCK_CYCLES_PER_USEC;
184#else
71339117 185 usecs = (t * inv_cycles_per_usec) / 16777216UL;
919e789d 186#endif
c223da83
JA
187 tp->tv_sec = usecs / 1000000;
188 tp->tv_usec = usecs % 1000000;
c223da83
JA
189 break;
190 }
191#endif
192 default:
193 log_err("fio: invalid clock source %d\n", fio_clock_source);
194 break;
02bcaa8c 195 }
67bf9823
JA
196}
197
198#ifdef FIO_DEBUG_TIME
199void fio_gettime(struct timeval *tp, void *caller)
200#else
201void fio_gettime(struct timeval *tp, void fio_unused *caller)
202#endif
203{
67bf9823
JA
204#ifdef FIO_DEBUG_TIME
205 if (!caller)
206 caller = __builtin_return_address(0);
207
208 gtod_log_caller(caller);
209#endif
225ba9e3 210 if (fio_unlikely(fio_tv)) {
67bf9823
JA
211 memcpy(tp, fio_tv, sizeof(*tp));
212 return;
213 }
214
9eb271b9 215 __fio_gettime(tp);
02bcaa8c 216}
be4ecfdf 217
919e789d 218#if defined(ARCH_HAVE_CPU_CLOCK) && !defined(ARCH_CPU_CLOCK_CYCLES_PER_USEC)
c223da83
JA
219static unsigned long get_cycles_per_usec(void)
220{
221 struct timeval s, e;
ba458c2f 222 uint64_t c_s, c_e;
67bf9823 223 enum fio_cs old_cs = fio_clock_source;
c223da83 224
67bf9823
JA
225#ifdef CONFIG_CLOCK_GETTIME
226 fio_clock_source = CS_CGETTIME;
227#else
228 fio_clock_source = CS_GTOD;
229#endif
230 __fio_gettime(&s);
9ff1c070 231
c223da83
JA
232 c_s = get_cpu_clock();
233 do {
ba458c2f 234 uint64_t elapsed;
c223da83 235
67bf9823 236 __fio_gettime(&e);
9ff1c070 237
c223da83 238 elapsed = utime_since(&s, &e);
486332e5 239 if (elapsed >= 1280) {
c223da83
JA
240 c_e = get_cpu_clock();
241 break;
242 }
243 } while (1);
244
67bf9823 245 fio_clock_source = old_cs;
c011000d 246 return (c_e - c_s + 127) >> 7;
c223da83
JA
247}
248
fa80feae
JA
249#define NR_TIME_ITERS 50
250
e259879e 251static int calibrate_cpu_clock(void)
c223da83
JA
252{
253 double delta, mean, S;
ba458c2f 254 uint64_t avg, cycles[NR_TIME_ITERS];
c223da83
JA
255 int i, samples;
256
c223da83
JA
257 cycles[0] = get_cycles_per_usec();
258 S = delta = mean = 0.0;
fa80feae 259 for (i = 0; i < NR_TIME_ITERS; i++) {
c223da83
JA
260 cycles[i] = get_cycles_per_usec();
261 delta = cycles[i] - mean;
262 if (delta) {
263 mean += delta / (i + 1.0);
264 S += delta * (cycles[i] - mean);
265 }
266 }
267
e259879e
JA
268 /*
269 * The most common platform clock breakage is returning zero
270 * indefinitely. Check for that and return failure.
271 */
272 if (!cycles[0] && !cycles[NR_TIME_ITERS - 1])
273 return 1;
274
fa80feae 275 S = sqrt(S / (NR_TIME_ITERS - 1.0));
c223da83
JA
276
277 samples = avg = 0;
fa80feae 278 for (i = 0; i < NR_TIME_ITERS; i++) {
c223da83
JA
279 double this = cycles[i];
280
03e20d68 281 if ((fmax(this, mean) - fmin(this, mean)) > S)
c223da83
JA
282 continue;
283 samples++;
284 avg += this;
285 }
286
fa80feae 287 S /= (double) NR_TIME_ITERS;
89db727d 288 mean /= 10.0;
c223da83 289
fa80feae 290 for (i = 0; i < NR_TIME_ITERS; i++)
4b91ee8f
JA
291 dprint(FD_TIME, "cycles[%d]=%llu\n", i,
292 (unsigned long long) cycles[i] / 10);
c223da83 293
d7abad3d 294 avg /= samples;
b0ff22d7 295 avg = (avg + 5) / 10;
4b91ee8f 296 dprint(FD_TIME, "avg: %llu\n", (unsigned long long) avg);
c223da83
JA
297 dprint(FD_TIME, "mean=%f, S=%f\n", mean, S);
298
299 cycles_per_usec = avg;
71339117
JA
300 inv_cycles_per_usec = 16777216UL / cycles_per_usec;
301 dprint(FD_TIME, "inv_cycles_per_usec=%lu\n", inv_cycles_per_usec);
e259879e 302 return 0;
09a32402
JA
303}
304#else
e259879e 305static int calibrate_cpu_clock(void)
09a32402 306{
919e789d
CE
307#ifdef ARCH_CPU_CLOCK_CYCLES_PER_USEC
308 return 0;
309#else
e259879e 310 return 1;
09a32402 311#endif
919e789d
CE
312}
313#endif // ARCH_HAVE_CPU_CLOCK
09a32402 314
67bf9823 315#ifndef CONFIG_TLS_THREAD
5d879392
JA
316void fio_local_clock_init(int is_thread)
317{
318 struct tv_valid *t;
319
572cfb3f 320 t = calloc(1, sizeof(*t));
9eb271b9 321 if (pthread_setspecific(tv_tls_key, t)) {
5d879392 322 log_err("fio: can't set TLS key\n");
9eb271b9
JA
323 assert(0);
324 }
5d879392
JA
325}
326
327static void kill_tv_tls_key(void *data)
328{
329 free(data);
330}
67bf9823
JA
331#else
332void fio_local_clock_init(int is_thread)
333{
334}
335#endif
5d879392 336
09a32402
JA
337void fio_clock_init(void)
338{
01423eae
JA
339 if (fio_clock_source == fio_clock_source_inited)
340 return;
341
67bf9823 342#ifndef CONFIG_TLS_THREAD
5d879392
JA
343 if (pthread_key_create(&tv_tls_key, kill_tv_tls_key))
344 log_err("fio: can't create TLS key\n");
67bf9823 345#endif
5d879392 346
01423eae 347 fio_clock_source_inited = fio_clock_source;
e259879e
JA
348
349 if (calibrate_cpu_clock())
350 tsc_reliable = 0;
fa80feae
JA
351
352 /*
353 * If the arch sets tsc_reliable != 0, then it must be good enough
354 * to use as THE clock source. For x86 CPUs, this means the TSC
355 * runs at a constant rate and is synced across CPU cores.
356 */
357 if (tsc_reliable) {
358 if (!fio_clock_source_set)
359 fio_clock_source = CS_CPUCLOCK;
360 } else if (fio_clock_source == CS_CPUCLOCK)
361 log_info("fio: clocksource=cpu may not be reliable\n");
c223da83
JA
362}
363
1f440ece 364uint64_t utime_since(const struct timeval *s, const struct timeval *e)
be4ecfdf 365{
39ab7da2 366 long sec, usec;
aa60bc58 367 uint64_t ret;
39ab7da2
JA
368
369 sec = e->tv_sec - s->tv_sec;
370 usec = e->tv_usec - s->tv_usec;
371 if (sec > 0 && usec < 0) {
372 sec--;
373 usec += 1000000;
374 }
375
376 /*
377 * time warp bug on some kernels?
378 */
379 if (sec < 0 || (sec == 0 && usec < 0))
380 return 0;
381
382 ret = sec * 1000000ULL + usec;
383
384 return ret;
be4ecfdf
JA
385}
386
1f440ece 387uint64_t utime_since_now(const struct timeval *s)
be4ecfdf 388{
39ab7da2
JA
389 struct timeval t;
390
391 fio_gettime(&t, NULL);
392 return utime_since(s, &t);
be4ecfdf 393}
783a3eb1 394
1f440ece 395uint64_t mtime_since(const struct timeval *s, const struct timeval *e)
783a3eb1 396{
39ab7da2 397 long sec, usec, ret;
783a3eb1 398
39ab7da2
JA
399 sec = e->tv_sec - s->tv_sec;
400 usec = e->tv_usec - s->tv_usec;
401 if (sec > 0 && usec < 0) {
402 sec--;
403 usec += 1000000;
783a3eb1
JA
404 }
405
39ab7da2
JA
406 if (sec < 0 || (sec == 0 && usec < 0))
407 return 0;
408
409 sec *= 1000UL;
410 usec /= 1000UL;
411 ret = sec + usec;
412
413 return ret;
783a3eb1
JA
414}
415
1f440ece 416uint64_t mtime_since_now(const struct timeval *s)
783a3eb1 417{
39ab7da2
JA
418 struct timeval t;
419 void *p = __builtin_return_address(0);
783a3eb1 420
39ab7da2
JA
421 fio_gettime(&t, p);
422 return mtime_since(s, &t);
423}
783a3eb1 424
1f440ece 425uint64_t time_since_now(const struct timeval *s)
39ab7da2
JA
426{
427 return mtime_since_now(s) / 1000;
783a3eb1 428}
7d11f871 429
67bf9823
JA
430#if defined(FIO_HAVE_CPU_AFFINITY) && defined(ARCH_HAVE_CPU_CLOCK) && \
431 defined(CONFIG_SFAA)
7d11f871
JA
432
433#define CLOCK_ENTRIES 100000
434
435struct clock_entry {
58002f9a
JA
436 uint32_t seq;
437 uint32_t cpu;
ba458c2f 438 uint64_t tsc;
7d11f871
JA
439};
440
441struct clock_thread {
442 pthread_t thread;
443 int cpu;
444 pthread_mutex_t lock;
445 pthread_mutex_t started;
58002f9a 446 uint32_t *seq;
7d11f871
JA
447 struct clock_entry *entries;
448};
449
58002f9a 450static inline uint32_t atomic32_inc_return(uint32_t *seq)
7d11f871
JA
451{
452 return 1 + __sync_fetch_and_add(seq, 1);
453}
454
455static void *clock_thread_fn(void *data)
456{
457 struct clock_thread *t = data;
458 struct clock_entry *c;
459 os_cpu_mask_t cpu_mask;
58002f9a 460 uint32_t last_seq;
7d11f871
JA
461 int i;
462
463 memset(&cpu_mask, 0, sizeof(cpu_mask));
464 fio_cpu_set(&cpu_mask, t->cpu);
465
466 if (fio_setaffinity(gettid(), cpu_mask) == -1) {
467 log_err("clock setaffinity failed\n");
468 return (void *) 1;
469 }
470
7d11f871 471 pthread_mutex_lock(&t->lock);
b9b3498e 472 pthread_mutex_unlock(&t->started);
7d11f871 473
58002f9a 474 last_seq = 0;
7d11f871
JA
475 c = &t->entries[0];
476 for (i = 0; i < CLOCK_ENTRIES; i++, c++) {
58002f9a
JA
477 uint32_t seq;
478 uint64_t tsc;
7d11f871
JA
479
480 c->cpu = t->cpu;
481 do {
58002f9a
JA
482 seq = atomic32_inc_return(t->seq);
483 if (seq < last_seq)
484 break;
7d11f871
JA
485 tsc = get_cpu_clock();
486 } while (seq != *t->seq);
487
488 c->seq = seq;
489 c->tsc = tsc;
490 }
491
0f78b22c
JA
492 log_info("cs: cpu%3d: %llu clocks seen\n", t->cpu,
493 (unsigned long long) t->entries[i - 1].tsc - t->entries[0].tsc);
58002f9a 494
e259879e
JA
495 /*
496 * The most common platform clock breakage is returning zero
497 * indefinitely. Check for that and return failure.
498 */
58002f9a 499 if (!t->entries[i - 1].tsc && !t->entries[0].tsc)
e259879e
JA
500 return (void *) 1;
501
7d11f871
JA
502 return NULL;
503}
504
505static int clock_cmp(const void *p1, const void *p2)
506{
507 const struct clock_entry *c1 = p1;
508 const struct clock_entry *c2 = p2;
509
b9b3498e
JA
510 if (c1->seq == c2->seq)
511 log_err("cs: bug in atomic sequence!\n");
512
7d11f871
JA
513 return c1->seq - c2->seq;
514}
515
516int fio_monotonic_clocktest(void)
517{
8a1db9a1 518 struct clock_thread *cthreads;
7d11f871
JA
519 unsigned int nr_cpus = cpus_online();
520 struct clock_entry *entries;
814917be 521 unsigned long tentries, failed = 0;
80da8a8f 522 struct clock_entry *prev, *this;
58002f9a 523 uint32_t seq = 0;
caa3eb1c 524 unsigned int i;
7d11f871 525
d5e3f5d8
JA
526 log_info("cs: reliable_tsc: %s\n", tsc_reliable ? "yes" : "no");
527
b5b571a3 528#ifdef FIO_INC_DEBUG
4f1d43c2 529 fio_debug |= 1U << FD_TIME;
b5b571a3 530#endif
4f1d43c2 531 calibrate_cpu_clock();
b5b571a3 532#ifdef FIO_INC_DEBUG
4f1d43c2 533 fio_debug &= ~(1U << FD_TIME);
b5b571a3 534#endif
4f1d43c2 535
8a1db9a1 536 cthreads = malloc(nr_cpus * sizeof(struct clock_thread));
7d11f871
JA
537 tentries = CLOCK_ENTRIES * nr_cpus;
538 entries = malloc(tentries * sizeof(struct clock_entry));
539
540 log_info("cs: Testing %u CPUs\n", nr_cpus);
541
542 for (i = 0; i < nr_cpus; i++) {
8a1db9a1 543 struct clock_thread *t = &cthreads[i];
7d11f871
JA
544
545 t->cpu = i;
546 t->seq = &seq;
547 t->entries = &entries[i * CLOCK_ENTRIES];
548 pthread_mutex_init(&t->lock, NULL);
549 pthread_mutex_init(&t->started, NULL);
550 pthread_mutex_lock(&t->lock);
6b0110cd
JA
551 if (pthread_create(&t->thread, NULL, clock_thread_fn, t)) {
552 failed++;
553 nr_cpus = i;
554 break;
555 }
7d11f871
JA
556 }
557
558 for (i = 0; i < nr_cpus; i++) {
8a1db9a1 559 struct clock_thread *t = &cthreads[i];
7d11f871
JA
560
561 pthread_mutex_lock(&t->started);
562 }
563
564 for (i = 0; i < nr_cpus; i++) {
8a1db9a1 565 struct clock_thread *t = &cthreads[i];
7d11f871
JA
566
567 pthread_mutex_unlock(&t->lock);
568 }
569
814917be 570 for (i = 0; i < nr_cpus; i++) {
8a1db9a1 571 struct clock_thread *t = &cthreads[i];
7d11f871
JA
572 void *ret;
573
574 pthread_join(t->thread, &ret);
575 if (ret)
576 failed++;
577 }
8a1db9a1 578 free(cthreads);
7d11f871
JA
579
580 if (failed) {
4e0a8fa2 581 log_err("Clocksource test: %lu threads failed\n", failed);
7d11f871
JA
582 goto err;
583 }
584
585 qsort(entries, tentries, sizeof(struct clock_entry), clock_cmp);
586
587 for (failed = i = 0; i < tentries; i++) {
80da8a8f 588 this = &entries[i];
7d11f871
JA
589
590 if (!i) {
591 prev = this;
592 continue;
593 }
594
595 if (prev->tsc > this->tsc) {
596 uint64_t diff = prev->tsc - this->tsc;
597
4e0a8fa2
JA
598 log_info("cs: CPU clock mismatch (diff=%llu):\n",
599 (unsigned long long) diff);
600 log_info("\t CPU%3u: TSC=%llu, SEQ=%u\n", prev->cpu, (unsigned long long) prev->tsc, prev->seq);
601 log_info("\t CPU%3u: TSC=%llu, SEQ=%u\n", this->cpu, (unsigned long long) this->tsc, this->seq);
7d11f871
JA
602 failed++;
603 }
604
605 prev = this;
606 }
607
608 if (failed)
609 log_info("cs: Failed: %lu\n", failed);
610 else
611 log_info("cs: Pass!\n");
612
613err:
614 free(entries);
615 return !!failed;
616}
617
618#else /* defined(FIO_HAVE_CPU_AFFINITY) && defined(ARCH_HAVE_CPU_CLOCK) */
619
620int fio_monotonic_clocktest(void)
621{
622 log_info("cs: current platform does not support CPU clocks\n");
623 return 0;
624}
625
626#endif