zbd: Improve read randomness
[fio.git] / gettime.c
CommitLineData
02bcaa8c 1/*
f5cc024a 2 * Clock functions
02bcaa8c 3 */
f5cc024a 4
c223da83 5#include <math.h>
02bcaa8c
JA
6
7#include "fio.h"
7d11f871 8#include "os/os.h"
02bcaa8c 9
dac499a0
AV
10#if defined(ARCH_HAVE_CPU_CLOCK)
11#ifndef ARCH_CPU_CLOCK_CYCLES_PER_USEC
cae9edd9 12static unsigned long long cycles_per_msec;
6d02b37b
VF
13static unsigned long long cycles_start;
14static unsigned long long clock_mult;
15static unsigned long long max_cycles_mask;
16static unsigned long long nsecs_for_max_cycles;
17static unsigned int clock_shift;
18static unsigned int max_cycles_shift;
19#define MAX_CLOCK_SEC 60*60
96170421
CE
20#endif
21#ifdef ARCH_CPU_CLOCK_WRAPS
6d02b37b 22static unsigned int cycles_wrap;
09a32402 23#endif
dac499a0 24#endif
24575392 25bool tsc_reliable = false;
5d879392
JA
26
27struct tv_valid {
02dcf81c 28 int warned;
5d879392 29};
03be65c9 30#ifdef ARCH_HAVE_CPU_CLOCK
67bf9823 31#ifdef CONFIG_TLS_THREAD
b4ea84da 32static __thread struct tv_valid static_tv_valid;
67bf9823 33#else
5d879392 34static pthread_key_t tv_tls_key;
67bf9823 35#endif
03be65c9 36#endif
02bcaa8c 37
16de1bf9 38enum fio_cs fio_clock_source = FIO_PREFERRED_CLOCK_SOURCE;
fa80feae 39int fio_clock_source_set = 0;
10aa136b 40static enum fio_cs fio_clock_source_inited = CS_INVAL;
c223da83 41
02bcaa8c
JA
42#ifdef FIO_DEBUG_TIME
43
44#define HASH_BITS 8
45#define HASH_SIZE (1 << HASH_BITS)
46
01743ee1 47static struct flist_head hash[HASH_SIZE];
02bcaa8c
JA
48static int gtod_inited;
49
50struct gtod_log {
01743ee1 51 struct flist_head list;
02bcaa8c
JA
52 void *caller;
53 unsigned long calls;
54};
55
56static struct gtod_log *find_hash(void *caller)
57{
58 unsigned long h = hash_ptr(caller, HASH_BITS);
01743ee1 59 struct flist_head *entry;
02bcaa8c 60
01743ee1
JA
61 flist_for_each(entry, &hash[h]) {
62 struct gtod_log *log = flist_entry(entry, struct gtod_log,
63 list);
02bcaa8c
JA
64
65 if (log->caller == caller)
66 return log;
67 }
68
69 return NULL;
70}
71
d5e16441 72static void inc_caller(void *caller)
02bcaa8c
JA
73{
74 struct gtod_log *log = find_hash(caller);
75
76 if (!log) {
77 unsigned long h;
78
79 log = malloc(sizeof(*log));
01743ee1 80 INIT_FLIST_HEAD(&log->list);
02bcaa8c
JA
81 log->caller = caller;
82 log->calls = 0;
83
84 h = hash_ptr(caller, HASH_BITS);
01743ee1 85 flist_add_tail(&log->list, &hash[h]);
02bcaa8c
JA
86 }
87
d5e16441 88 log->calls++;
02bcaa8c
JA
89}
90
91static void gtod_log_caller(void *caller)
92{
d5e16441
JA
93 if (gtod_inited)
94 inc_caller(caller);
02bcaa8c
JA
95}
96
97static void fio_exit fio_dump_gtod(void)
98{
99 unsigned long total_calls = 0;
100 int i;
101
102 for (i = 0; i < HASH_SIZE; i++) {
01743ee1 103 struct flist_head *entry;
02bcaa8c
JA
104 struct gtod_log *log;
105
01743ee1
JA
106 flist_for_each(entry, &hash[i]) {
107 log = flist_entry(entry, struct gtod_log, list);
02bcaa8c 108
5ec10eaa
JA
109 printf("function %p, calls %lu\n", log->caller,
110 log->calls);
02bcaa8c
JA
111 total_calls += log->calls;
112 }
113 }
114
115 printf("Total %lu gettimeofday\n", total_calls);
116}
117
118static void fio_init gtod_init(void)
119{
120 int i;
121
122 for (i = 0; i < HASH_SIZE; i++)
01743ee1 123 INIT_FLIST_HEAD(&hash[i]);
02bcaa8c
JA
124
125 gtod_inited = 1;
126}
127
128#endif /* FIO_DEBUG_TIME */
129
67bf9823 130#ifdef CONFIG_CLOCK_GETTIME
9ff1c070
JA
131static int fill_clock_gettime(struct timespec *ts)
132{
c544f604
SN
133#if defined(CONFIG_CLOCK_MONOTONIC_RAW)
134 return clock_gettime(CLOCK_MONOTONIC_RAW, ts);
135#elif defined(CONFIG_CLOCK_MONOTONIC)
9ff1c070
JA
136 return clock_gettime(CLOCK_MONOTONIC, ts);
137#else
138 return clock_gettime(CLOCK_REALTIME, ts);
139#endif
140}
1e97cce9 141#endif
67bf9823 142
8b6a404c 143static void __fio_gettime(struct timespec *tp)
02bcaa8c 144{
c223da83 145 switch (fio_clock_source) {
67bf9823 146#ifdef CONFIG_GETTIMEOFDAY
8b6a404c
VF
147 case CS_GTOD: {
148 struct timeval tv;
149 gettimeofday(&tv, NULL);
150
151 tp->tv_sec = tv.tv_sec;
152 tp->tv_nsec = tv.tv_usec * 1000;
c223da83 153 break;
8b6a404c 154 }
67bf9823
JA
155#endif
156#ifdef CONFIG_CLOCK_GETTIME
c223da83 157 case CS_CGETTIME: {
8b6a404c 158 if (fill_clock_gettime(tp) < 0) {
c223da83
JA
159 log_err("fio: clock_gettime fails\n");
160 assert(0);
02bcaa8c 161 }
c223da83
JA
162 break;
163 }
67bf9823 164#endif
c223da83
JA
165#ifdef ARCH_HAVE_CPU_CLOCK
166 case CS_CPUCLOCK: {
6d02b37b 167 uint64_t nsecs, t, multiples;
03be65c9
JA
168 struct tv_valid *tv;
169
170#ifdef CONFIG_TLS_THREAD
171 tv = &static_tv_valid;
172#else
173 tv = pthread_getspecific(tv_tls_key);
174#endif
c223da83
JA
175
176 t = get_cpu_clock();
96170421 177#ifdef ARCH_CPU_CLOCK_WRAPS
73df3e07
JA
178 if (t < cycles_start && !cycles_wrap)
179 cycles_wrap = 1;
03be65c9
JA
180 else if (cycles_wrap && t >= cycles_start && !tv->warned) {
181 log_err("fio: double CPU clock wrap\n");
182 tv->warned = 1;
02dcf81c 183 }
96170421 184#endif
919e789d 185#ifdef ARCH_CPU_CLOCK_CYCLES_PER_USEC
6d02b37b 186 nsecs = t / ARCH_CPU_CLOCK_CYCLES_PER_USEC * 1000;
919e789d 187#else
6d02b37b
VF
188 t -= cycles_start;
189 multiples = t >> max_cycles_shift;
190 nsecs = multiples * nsecs_for_max_cycles;
191 nsecs += ((t & max_cycles_mask) * clock_mult) >> clock_shift;
919e789d 192#endif
8b6a404c
VF
193 tp->tv_sec = nsecs / 1000000000ULL;
194 tp->tv_nsec = nsecs % 1000000000ULL;
c223da83
JA
195 break;
196 }
197#endif
198 default:
199 log_err("fio: invalid clock source %d\n", fio_clock_source);
200 break;
02bcaa8c 201 }
67bf9823
JA
202}
203
204#ifdef FIO_DEBUG_TIME
8b6a404c 205void fio_gettime(struct timespec *tp, void *caller)
67bf9823 206#else
8b6a404c 207void fio_gettime(struct timespec *tp, void fio_unused *caller)
67bf9823
JA
208#endif
209{
67bf9823
JA
210#ifdef FIO_DEBUG_TIME
211 if (!caller)
212 caller = __builtin_return_address(0);
213
214 gtod_log_caller(caller);
215#endif
27325ed5 216 if (fio_unlikely(fio_gettime_offload(tp)))
67bf9823 217 return;
67bf9823 218
9eb271b9 219 __fio_gettime(tp);
02bcaa8c 220}
be4ecfdf 221
919e789d 222#if defined(ARCH_HAVE_CPU_CLOCK) && !defined(ARCH_CPU_CLOCK_CYCLES_PER_USEC)
2aebc5a1 223static unsigned long get_cycles_per_msec(void)
c223da83 224{
8b6a404c 225 struct timespec s, e;
ba458c2f 226 uint64_t c_s, c_e;
67bf9823 227 enum fio_cs old_cs = fio_clock_source;
99afcdb5 228 uint64_t elapsed;
c223da83 229
67bf9823
JA
230#ifdef CONFIG_CLOCK_GETTIME
231 fio_clock_source = CS_CGETTIME;
232#else
233 fio_clock_source = CS_GTOD;
234#endif
235 __fio_gettime(&s);
9ff1c070 236
c223da83
JA
237 c_s = get_cpu_clock();
238 do {
67bf9823 239 __fio_gettime(&e);
9ff1c070 240
c223da83 241 elapsed = utime_since(&s, &e);
486332e5 242 if (elapsed >= 1280) {
c223da83
JA
243 c_e = get_cpu_clock();
244 break;
245 }
246 } while (1);
247
67bf9823 248 fio_clock_source = old_cs;
2aebc5a1 249 return (c_e - c_s) * 1000 / elapsed;
c223da83
JA
250}
251
fa80feae
JA
252#define NR_TIME_ITERS 50
253
e259879e 254static int calibrate_cpu_clock(void)
c223da83
JA
255{
256 double delta, mean, S;
e51a6629 257 uint64_t minc, maxc, avg, cycles[NR_TIME_ITERS];
6d02b37b
VF
258 int i, samples, sft = 0;
259 unsigned long long tmp, max_ticks, max_mult;
c223da83 260
2aebc5a1 261 cycles[0] = get_cycles_per_msec();
c223da83 262 S = delta = mean = 0.0;
fa80feae 263 for (i = 0; i < NR_TIME_ITERS; i++) {
2aebc5a1 264 cycles[i] = get_cycles_per_msec();
c223da83
JA
265 delta = cycles[i] - mean;
266 if (delta) {
267 mean += delta / (i + 1.0);
268 S += delta * (cycles[i] - mean);
269 }
270 }
271
e259879e
JA
272 /*
273 * The most common platform clock breakage is returning zero
274 * indefinitely. Check for that and return failure.
275 */
276 if (!cycles[0] && !cycles[NR_TIME_ITERS - 1])
277 return 1;
278
fa80feae 279 S = sqrt(S / (NR_TIME_ITERS - 1.0));
c223da83 280
e51a6629
JA
281 minc = -1ULL;
282 maxc = samples = avg = 0;
fa80feae 283 for (i = 0; i < NR_TIME_ITERS; i++) {
c223da83
JA
284 double this = cycles[i];
285
e51a6629
JA
286 minc = min(cycles[i], minc);
287 maxc = max(cycles[i], maxc);
288
03e20d68 289 if ((fmax(this, mean) - fmin(this, mean)) > S)
c223da83
JA
290 continue;
291 samples++;
292 avg += this;
293 }
294
fa80feae 295 S /= (double) NR_TIME_ITERS;
c223da83 296
fa80feae 297 for (i = 0; i < NR_TIME_ITERS; i++)
13aa415a 298 dprint(FD_TIME, "cycles[%d]=%llu\n", i, (unsigned long long) cycles[i]);
c223da83 299
d7abad3d 300 avg /= samples;
2aebc5a1 301 cycles_per_msec = avg;
4b91ee8f 302 dprint(FD_TIME, "avg: %llu\n", (unsigned long long) avg);
e51a6629
JA
303 dprint(FD_TIME, "min=%llu, max=%llu, mean=%f, S=%f\n",
304 (unsigned long long) minc,
305 (unsigned long long) maxc, mean, S);
c223da83 306
2aebc5a1 307 max_ticks = MAX_CLOCK_SEC * cycles_per_msec * 1000ULL;
74558486
JA
308 max_mult = ULLONG_MAX / max_ticks;
309 dprint(FD_TIME, "\n\nmax_ticks=%llu, __builtin_clzll=%d, "
310 "max_mult=%llu\n", max_ticks,
311 __builtin_clzll(max_ticks), max_mult);
6d02b37b
VF
312
313 /*
314 * Find the largest shift count that will produce
315 * a multiplier that does not exceed max_mult
316 */
2aebc5a1 317 tmp = max_mult * cycles_per_msec / 1000000;
6d02b37b
VF
318 while (tmp > 1) {
319 tmp >>= 1;
320 sft++;
321 dprint(FD_TIME, "tmp=%llu, sft=%u\n", tmp, sft);
322 }
323
74558486
JA
324 clock_shift = sft;
325 clock_mult = (1ULL << sft) * 1000000 / cycles_per_msec;
326 dprint(FD_TIME, "clock_shift=%u, clock_mult=%llu\n", clock_shift,
327 clock_mult);
6d02b37b 328
74558486
JA
329 /*
330 * Find the greatest power of 2 clock ticks that is less than the
331 * ticks in MAX_CLOCK_SEC_2STAGE
332 */
6d02b37b 333 max_cycles_shift = max_cycles_mask = 0;
2aebc5a1 334 tmp = MAX_CLOCK_SEC * 1000ULL * cycles_per_msec;
74558486
JA
335 dprint(FD_TIME, "tmp=%llu, max_cycles_shift=%u\n", tmp,
336 max_cycles_shift);
6d02b37b
VF
337 while (tmp > 1) {
338 tmp >>= 1;
339 max_cycles_shift++;
340 dprint(FD_TIME, "tmp=%llu, max_cycles_shift=%u\n", tmp, max_cycles_shift);
341 }
74558486
JA
342 /*
343 * if use use (1ULL << max_cycles_shift) * 1000 / cycles_per_msec
344 * here we will have a discontinuity every
345 * (1ULL << max_cycles_shift) cycles
346 */
347 nsecs_for_max_cycles = ((1ULL << max_cycles_shift) * clock_mult)
348 >> clock_shift;
6d02b37b 349
74558486 350 /* Use a bitmask to calculate ticks % (1ULL << max_cycles_shift) */
6d02b37b
VF
351 for (tmp = 0; tmp < max_cycles_shift; tmp++)
352 max_cycles_mask |= 1ULL << tmp;
353
74558486
JA
354 dprint(FD_TIME, "max_cycles_shift=%u, 2^max_cycles_shift=%llu, "
355 "nsecs_for_max_cycles=%llu, "
356 "max_cycles_mask=%016llx\n",
357 max_cycles_shift, (1ULL << max_cycles_shift),
358 nsecs_for_max_cycles, max_cycles_mask);
6d02b37b 359
73df3e07
JA
360 cycles_start = get_cpu_clock();
361 dprint(FD_TIME, "cycles_start=%llu\n", cycles_start);
e259879e 362 return 0;
09a32402
JA
363}
364#else
e259879e 365static int calibrate_cpu_clock(void)
09a32402 366{
919e789d
CE
367#ifdef ARCH_CPU_CLOCK_CYCLES_PER_USEC
368 return 0;
369#else
e259879e 370 return 1;
09a32402 371#endif
919e789d
CE
372}
373#endif // ARCH_HAVE_CPU_CLOCK
09a32402 374
67bf9823 375#ifndef CONFIG_TLS_THREAD
a0eba820 376void fio_local_clock_init(void)
5d879392
JA
377{
378 struct tv_valid *t;
379
572cfb3f 380 t = calloc(1, sizeof(*t));
9eb271b9 381 if (pthread_setspecific(tv_tls_key, t)) {
5d879392 382 log_err("fio: can't set TLS key\n");
9eb271b9
JA
383 assert(0);
384 }
5d879392
JA
385}
386
387static void kill_tv_tls_key(void *data)
388{
389 free(data);
390}
67bf9823 391#else
a0eba820 392void fio_local_clock_init(void)
67bf9823
JA
393{
394}
395#endif
5d879392 396
09a32402
JA
397void fio_clock_init(void)
398{
01423eae
JA
399 if (fio_clock_source == fio_clock_source_inited)
400 return;
401
67bf9823 402#ifndef CONFIG_TLS_THREAD
5d879392
JA
403 if (pthread_key_create(&tv_tls_key, kill_tv_tls_key))
404 log_err("fio: can't create TLS key\n");
67bf9823 405#endif
5d879392 406
01423eae 407 fio_clock_source_inited = fio_clock_source;
e259879e
JA
408
409 if (calibrate_cpu_clock())
24575392 410 tsc_reliable = false;
fa80feae
JA
411
412 /*
413 * If the arch sets tsc_reliable != 0, then it must be good enough
414 * to use as THE clock source. For x86 CPUs, this means the TSC
415 * runs at a constant rate and is synced across CPU cores.
416 */
417 if (tsc_reliable) {
aad918e4 418 if (!fio_clock_source_set && !fio_monotonic_clocktest(0))
fa80feae
JA
419 fio_clock_source = CS_CPUCLOCK;
420 } else if (fio_clock_source == CS_CPUCLOCK)
421 log_info("fio: clocksource=cpu may not be reliable\n");
dae89ac9 422 dprint(FD_TIME, "gettime: clocksource=%d\n", (int) fio_clock_source);
c223da83
JA
423}
424
d6bb626e
VF
425uint64_t ntime_since(const struct timespec *s, const struct timespec *e)
426{
427 int64_t sec, nsec;
428
429 sec = e->tv_sec - s->tv_sec;
430 nsec = e->tv_nsec - s->tv_nsec;
431 if (sec > 0 && nsec < 0) {
6d02b37b
VF
432 sec--;
433 nsec += 1000000000LL;
d6bb626e
VF
434 }
435
436 /*
6d02b37b
VF
437 * time warp bug on some kernels?
438 */
d6bb626e 439 if (sec < 0 || (sec == 0 && nsec < 0))
6d02b37b 440 return 0;
d6bb626e
VF
441
442 return nsec + (sec * 1000000000LL);
443}
444
0410e783
JA
445uint64_t ntime_since_now(const struct timespec *s)
446{
447 struct timespec now;
448
449 fio_gettime(&now, NULL);
450 return ntime_since(s, &now);
451}
452
8b6a404c 453uint64_t utime_since(const struct timespec *s, const struct timespec *e)
be4ecfdf 454{
90eff1c9 455 int64_t sec, usec;
39ab7da2
JA
456
457 sec = e->tv_sec - s->tv_sec;
8b6a404c 458 usec = (e->tv_nsec - s->tv_nsec) / 1000;
39ab7da2
JA
459 if (sec > 0 && usec < 0) {
460 sec--;
461 usec += 1000000;
462 }
463
464 /*
465 * time warp bug on some kernels?
466 */
467 if (sec < 0 || (sec == 0 && usec < 0))
468 return 0;
469
20ac4e77 470 return usec + (sec * 1000000);
be4ecfdf
JA
471}
472
8b6a404c 473uint64_t utime_since_now(const struct timespec *s)
be4ecfdf 474{
8b6a404c 475 struct timespec t;
f52e9198
VF
476#ifdef FIO_DEBUG_TIME
477 void *p = __builtin_return_address(0);
39ab7da2 478
f52e9198
VF
479 fio_gettime(&t, p);
480#else
39ab7da2 481 fio_gettime(&t, NULL);
f52e9198
VF
482#endif
483
39ab7da2 484 return utime_since(s, &t);
be4ecfdf 485}
783a3eb1 486
8b6a404c 487uint64_t mtime_since_tv(const struct timeval *s, const struct timeval *e)
783a3eb1 488{
8b6a404c 489 int64_t sec, usec;
783a3eb1 490
39ab7da2 491 sec = e->tv_sec - s->tv_sec;
8b6a404c 492 usec = (e->tv_usec - s->tv_usec);
39ab7da2
JA
493 if (sec > 0 && usec < 0) {
494 sec--;
495 usec += 1000000;
783a3eb1
JA
496 }
497
39ab7da2
JA
498 if (sec < 0 || (sec == 0 && usec < 0))
499 return 0;
500
be6bb2b7
Y
501 sec *= 1000;
502 usec /= 1000;
20ac4e77 503 return sec + usec;
783a3eb1
JA
504}
505
8b6a404c 506uint64_t mtime_since_now(const struct timespec *s)
783a3eb1 507{
8b6a404c 508 struct timespec t;
f52e9198 509#ifdef FIO_DEBUG_TIME
39ab7da2 510 void *p = __builtin_return_address(0);
783a3eb1 511
39ab7da2 512 fio_gettime(&t, p);
f52e9198
VF
513#else
514 fio_gettime(&t, NULL);
515#endif
516
39ab7da2
JA
517 return mtime_since(s, &t);
518}
783a3eb1 519
8b6a404c
VF
520uint64_t mtime_since(const struct timespec *s, const struct timespec *e)
521{
522 int64_t sec, usec;
523
524 sec = e->tv_sec - s->tv_sec;
525 usec = (e->tv_nsec - s->tv_nsec) / 1000;
526 if (sec > 0 && usec < 0) {
527 sec--;
528 usec += 1000000;
529 }
530
531 if (sec < 0 || (sec == 0 && usec < 0))
532 return 0;
533
534 sec *= 1000;
535 usec /= 1000;
536 return sec + usec;
537}
538
539uint64_t time_since_now(const struct timespec *s)
39ab7da2
JA
540{
541 return mtime_since_now(s) / 1000;
783a3eb1 542}
7d11f871 543
67bf9823 544#if defined(FIO_HAVE_CPU_AFFINITY) && defined(ARCH_HAVE_CPU_CLOCK) && \
a250edd0 545 defined(CONFIG_SYNC_SYNC) && defined(CONFIG_CMP_SWAP)
7d11f871 546
aad918e4 547#define CLOCK_ENTRIES_DEBUG 100000
5283741f 548#define CLOCK_ENTRIES_TEST 1000
7d11f871
JA
549
550struct clock_entry {
58002f9a
JA
551 uint32_t seq;
552 uint32_t cpu;
ba458c2f 553 uint64_t tsc;
7d11f871
JA
554};
555
556struct clock_thread {
557 pthread_t thread;
558 int cpu;
aad918e4 559 int debug;
17031c6d 560 struct fio_sem lock;
aad918e4 561 unsigned long nr_entries;
58002f9a 562 uint32_t *seq;
7d11f871
JA
563 struct clock_entry *entries;
564};
565
a250edd0
JA
566static inline uint32_t atomic32_compare_and_swap(uint32_t *ptr, uint32_t old,
567 uint32_t new)
7d11f871 568{
a250edd0 569 return __sync_val_compare_and_swap(ptr, old, new);
7d11f871
JA
570}
571
572static void *clock_thread_fn(void *data)
573{
574 struct clock_thread *t = data;
575 struct clock_entry *c;
576 os_cpu_mask_t cpu_mask;
5896d827 577 unsigned long long first;
7d11f871
JA
578 int i;
579
c763aea6 580 if (fio_cpuset_init(&cpu_mask)) {
37e20021 581 int __err = errno;
c763aea6
JA
582
583 log_err("clock cpuset init failed: %s\n", strerror(__err));
584 goto err_out;
585 }
586
7d11f871
JA
587 fio_cpu_set(&cpu_mask, t->cpu);
588
589 if (fio_setaffinity(gettid(), cpu_mask) == -1) {
e66d7f90
JA
590 int __err = errno;
591
592 log_err("clock setaffinity failed: %s\n", strerror(__err));
c763aea6 593 goto err;
7d11f871
JA
594 }
595
17031c6d 596 fio_sem_down(&t->lock);
7d11f871 597
5896d827 598 first = get_cpu_clock();
7d11f871 599 c = &t->entries[0];
aad918e4 600 for (i = 0; i < t->nr_entries; i++, c++) {
58002f9a
JA
601 uint32_t seq;
602 uint64_t tsc;
7d11f871
JA
603
604 c->cpu = t->cpu;
605 do {
a250edd0
JA
606 seq = *t->seq;
607 if (seq == UINT_MAX)
58002f9a 608 break;
a250edd0 609 __sync_synchronize();
7d11f871 610 tsc = get_cpu_clock();
a250edd0
JA
611 } while (seq != atomic32_compare_and_swap(t->seq, seq, seq + 1));
612
613 if (seq == UINT_MAX)
614 break;
7d11f871
JA
615
616 c->seq = seq;
617 c->tsc = tsc;
618 }
619
aad918e4
JA
620 if (t->debug) {
621 unsigned long long clocks;
622
623 clocks = t->entries[i - 1].tsc - t->entries[0].tsc;
5896d827
JA
624 log_info("cs: cpu%3d: %llu clocks seen, first %llu\n", t->cpu,
625 clocks, first);
aad918e4 626 }
58002f9a 627
e259879e
JA
628 /*
629 * The most common platform clock breakage is returning zero
630 * indefinitely. Check for that and return failure.
631 */
a250edd0 632 if (i > 1 && !t->entries[i - 1].tsc && !t->entries[0].tsc)
c763aea6 633 goto err;
e259879e 634
d47d7cb3 635 fio_cpuset_exit(&cpu_mask);
7d11f871 636 return NULL;
c763aea6
JA
637err:
638 fio_cpuset_exit(&cpu_mask);
639err_out:
640 return (void *) 1;
7d11f871
JA
641}
642
643static int clock_cmp(const void *p1, const void *p2)
644{
645 const struct clock_entry *c1 = p1;
646 const struct clock_entry *c2 = p2;
647
b9b3498e
JA
648 if (c1->seq == c2->seq)
649 log_err("cs: bug in atomic sequence!\n");
650
7d11f871
JA
651 return c1->seq - c2->seq;
652}
653
aad918e4 654int fio_monotonic_clocktest(int debug)
7d11f871 655{
8a1db9a1 656 struct clock_thread *cthreads;
7d11f871
JA
657 unsigned int nr_cpus = cpus_online();
658 struct clock_entry *entries;
aad918e4 659 unsigned long nr_entries, tentries, failed = 0;
80da8a8f 660 struct clock_entry *prev, *this;
58002f9a 661 uint32_t seq = 0;
caa3eb1c 662 unsigned int i;
7d11f871 663
aad918e4
JA
664 if (debug) {
665 log_info("cs: reliable_tsc: %s\n", tsc_reliable ? "yes" : "no");
d5e3f5d8 666
b5b571a3 667#ifdef FIO_INC_DEBUG
aad918e4 668 fio_debug |= 1U << FD_TIME;
b5b571a3 669#endif
aad918e4
JA
670 nr_entries = CLOCK_ENTRIES_DEBUG;
671 } else
672 nr_entries = CLOCK_ENTRIES_TEST;
673
4f1d43c2 674 calibrate_cpu_clock();
aad918e4
JA
675
676 if (debug) {
b5b571a3 677#ifdef FIO_INC_DEBUG
aad918e4 678 fio_debug &= ~(1U << FD_TIME);
b5b571a3 679#endif
aad918e4 680 }
4f1d43c2 681
8a1db9a1 682 cthreads = malloc(nr_cpus * sizeof(struct clock_thread));
aad918e4 683 tentries = nr_entries * nr_cpus;
7d11f871
JA
684 entries = malloc(tentries * sizeof(struct clock_entry));
685
aad918e4
JA
686 if (debug)
687 log_info("cs: Testing %u CPUs\n", nr_cpus);
7d11f871
JA
688
689 for (i = 0; i < nr_cpus; i++) {
8a1db9a1 690 struct clock_thread *t = &cthreads[i];
7d11f871
JA
691
692 t->cpu = i;
aad918e4 693 t->debug = debug;
7d11f871 694 t->seq = &seq;
aad918e4
JA
695 t->nr_entries = nr_entries;
696 t->entries = &entries[i * nr_entries];
17031c6d 697 __fio_sem_init(&t->lock, FIO_SEM_LOCKED);
6b0110cd
JA
698 if (pthread_create(&t->thread, NULL, clock_thread_fn, t)) {
699 failed++;
700 nr_cpus = i;
701 break;
702 }
7d11f871
JA
703 }
704
705 for (i = 0; i < nr_cpus; i++) {
8a1db9a1 706 struct clock_thread *t = &cthreads[i];
7d11f871 707
17031c6d 708 fio_sem_up(&t->lock);
7d11f871
JA
709 }
710
814917be 711 for (i = 0; i < nr_cpus; i++) {
8a1db9a1 712 struct clock_thread *t = &cthreads[i];
7d11f871
JA
713 void *ret;
714
715 pthread_join(t->thread, &ret);
716 if (ret)
717 failed++;
17031c6d 718 __fio_sem_remove(&t->lock);
7d11f871 719 }
8a1db9a1 720 free(cthreads);
7d11f871
JA
721
722 if (failed) {
aad918e4
JA
723 if (debug)
724 log_err("Clocksource test: %lu threads failed\n", failed);
7d11f871
JA
725 goto err;
726 }
727
728 qsort(entries, tentries, sizeof(struct clock_entry), clock_cmp);
729
a4aa3dc0
JA
730 /* silence silly gcc */
731 prev = NULL;
7d11f871 732 for (failed = i = 0; i < tentries; i++) {
80da8a8f 733 this = &entries[i];
7d11f871
JA
734
735 if (!i) {
736 prev = this;
737 continue;
738 }
739
740 if (prev->tsc > this->tsc) {
741 uint64_t diff = prev->tsc - this->tsc;
742
aad918e4
JA
743 if (!debug) {
744 failed++;
745 break;
746 }
747
4e0a8fa2
JA
748 log_info("cs: CPU clock mismatch (diff=%llu):\n",
749 (unsigned long long) diff);
750 log_info("\t CPU%3u: TSC=%llu, SEQ=%u\n", prev->cpu, (unsigned long long) prev->tsc, prev->seq);
751 log_info("\t CPU%3u: TSC=%llu, SEQ=%u\n", this->cpu, (unsigned long long) this->tsc, this->seq);
7d11f871
JA
752 failed++;
753 }
754
755 prev = this;
756 }
757
aad918e4
JA
758 if (debug) {
759 if (failed)
760 log_info("cs: Failed: %lu\n", failed);
761 else
762 log_info("cs: Pass!\n");
763 }
7d11f871
JA
764err:
765 free(entries);
766 return !!failed;
767}
768
769#else /* defined(FIO_HAVE_CPU_AFFINITY) && defined(ARCH_HAVE_CPU_CLOCK) */
770
aad918e4 771int fio_monotonic_clocktest(int debug)
7d11f871 772{
aad918e4
JA
773 if (debug)
774 log_info("cs: current platform does not support CPU clocks\n");
775 return 1;
7d11f871
JA
776}
777
778#endif