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Jim Cownie4cc4bb42014-10-07 16:25:50 +00001/** @file kmp_stats.cpp
2 * Statistics gathering and processing.
3 */
4
5
6//===----------------------------------------------------------------------===//
7//
8// The LLVM Compiler Infrastructure
9//
10// This file is dual licensed under the MIT and the University of Illinois Open
11// Source Licenses. See LICENSE.txt for details.
12//
13//===----------------------------------------------------------------------===//
14
Jim Cownie4cc4bb42014-10-07 16:25:50 +000015#include "kmp.h"
16#include "kmp_str.h"
17#include "kmp_lock.h"
18#include "kmp_stats.h"
19
20#include <algorithm>
21#include <sstream>
22#include <iomanip>
23#include <stdlib.h> // for atexit
Jonathan Peyton6e98d7982016-03-15 20:28:47 +000024#include <ctime>
Jim Cownie4cc4bb42014-10-07 16:25:50 +000025
26#define STRINGIZE2(x) #x
27#define STRINGIZE(x) STRINGIZE2(x)
28
29#define expandName(name,flags,ignore) {STRINGIZE(name),flags},
30statInfo timeStat::timerInfo[] = {
31 KMP_FOREACH_TIMER(expandName,0)
32 {0,0}
33};
34const statInfo counter::counterInfo[] = {
35 KMP_FOREACH_COUNTER(expandName,0)
36 {0,0}
37};
38#undef expandName
39
40#define expandName(ignore1,ignore2,ignore3) {0.0,0.0,0.0},
41kmp_stats_output_module::rgb_color kmp_stats_output_module::timerColorInfo[] = {
42 KMP_FOREACH_TIMER(expandName,0)
43 {0.0,0.0,0.0}
44};
45#undef expandName
46
47const kmp_stats_output_module::rgb_color kmp_stats_output_module::globalColorArray[] = {
48 {1.0, 0.0, 0.0}, // red
49 {1.0, 0.6, 0.0}, // orange
50 {1.0, 1.0, 0.0}, // yellow
Jonathan Peyton072772b2016-04-05 18:48:48 +000051 {0.0, 1.0, 0.0}, // green
Jim Cownie4cc4bb42014-10-07 16:25:50 +000052 {0.0, 0.0, 1.0}, // blue
53 {0.6, 0.2, 0.8}, // purple
54 {1.0, 0.0, 1.0}, // magenta
55 {0.0, 0.4, 0.2}, // dark green
56 {1.0, 1.0, 0.6}, // light yellow
57 {0.6, 0.4, 0.6}, // dirty purple
58 {0.0, 1.0, 1.0}, // cyan
59 {1.0, 0.4, 0.8}, // pink
60 {0.5, 0.5, 0.5}, // grey
61 {0.8, 0.7, 0.5}, // brown
62 {0.6, 0.6, 1.0}, // light blue
63 {1.0, 0.7, 0.5}, // peach
64 {0.8, 0.5, 1.0}, // lavender
65 {0.6, 0.0, 0.0}, // dark red
66 {0.7, 0.6, 0.0}, // gold
67 {0.0, 0.0, 0.0} // black
68};
69
70// Ensure that the atexit handler only runs once.
71static uint32_t statsPrinted = 0;
72
73// output interface
74static kmp_stats_output_module __kmp_stats_global_output;
75
76/* ****************************************************** */
77/* ************* statistic member functions ************* */
78
79void statistic::addSample(double sample)
80{
81 double delta = sample - meanVal;
82
83 sampleCount = sampleCount + 1;
84 meanVal = meanVal + delta/sampleCount;
85 m2 = m2 + delta*(sample - meanVal);
86
87 minVal = std::min(minVal, sample);
88 maxVal = std::max(maxVal, sample);
89}
90
91statistic & statistic::operator+= (const statistic & other)
92{
93 if (sampleCount == 0)
94 {
95 *this = other;
96 return *this;
97 }
98
99 uint64_t newSampleCount = sampleCount + other.sampleCount;
100 double dnsc = double(newSampleCount);
101 double dsc = double(sampleCount);
102 double dscBydnsc = dsc/dnsc;
103 double dosc = double(other.sampleCount);
104 double delta = other.meanVal - meanVal;
105
106 // Try to order these calculations to avoid overflows.
107 // If this were Fortran, then the compiler would not be able to re-order over brackets.
108 // In C++ it may be legal to do that (we certainly hope it doesn't, and CC+ Programming Language 2nd edition
109 // suggests it shouldn't, since it says that exploitation of associativity can only be made if the operation
110 // really is associative (which floating addition isn't...)).
111 meanVal = meanVal*dscBydnsc + other.meanVal*(1-dscBydnsc);
112 m2 = m2 + other.m2 + dscBydnsc*dosc*delta*delta;
113 minVal = std::min (minVal, other.minVal);
114 maxVal = std::max (maxVal, other.maxVal);
115 sampleCount = newSampleCount;
116
117
118 return *this;
119}
120
121void statistic::scale(double factor)
122{
123 minVal = minVal*factor;
124 maxVal = maxVal*factor;
125 meanVal= meanVal*factor;
126 m2 = m2*factor*factor;
127 return;
128}
129
130std::string statistic::format(char unit, bool total) const
131{
132 std::string result = formatSI(sampleCount,9,' ');
Jonathan Peyton072772b2016-04-05 18:48:48 +0000133
Jonathan Peytonc1a7c972016-03-03 21:24:13 +0000134 if (sampleCount == 0)
135 {
136 result = result + std::string(", ") + formatSI(0.0, 9, unit);
137 result = result + std::string(", ") + formatSI(0.0, 9, unit);
138 result = result + std::string(", ") + formatSI(0.0, 9, unit);
139 if (total)
140 result = result + std::string(", ") + formatSI(0.0, 9, unit);
141 result = result + std::string(", ") + formatSI(0.0, 9, unit);
142 }
143 else
144 {
145 result = result + std::string(", ") + formatSI(minVal, 9, unit);
146 result = result + std::string(", ") + formatSI(meanVal, 9, unit);
147 result = result + std::string(", ") + formatSI(maxVal, 9, unit);
148 if (total)
149 result = result + std::string(", ") + formatSI(meanVal*sampleCount, 9, unit);
150 result = result + std::string(", ") + formatSI(getSD(), 9, unit);
151 }
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000152 return result;
153}
154
155/* ********************************************************** */
156/* ************* explicitTimer member functions ************* */
157
Jonathan Peyton072772b2016-04-05 18:48:48 +0000158void explicitTimer::start(timer_e timerEnumValue) {
159 startTime = tsc_tick_count::now();
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000160 if(timeStat::logEvent(timerEnumValue)) {
161 __kmp_stats_thread_ptr->incrementNestValue();
162 }
163 return;
164}
165
166void explicitTimer::stop(timer_e timerEnumValue) {
167 if (startTime.getValue() == 0)
168 return;
169
170 tsc_tick_count finishTime = tsc_tick_count::now();
171
172 //stat->addSample ((tsc_tick_count::now() - startTime).ticks());
173 stat->addSample ((finishTime - startTime).ticks());
174
175 if(timeStat::logEvent(timerEnumValue)) {
Jonathan Peyton072772b2016-04-05 18:48:48 +0000176 __kmp_stats_thread_ptr->push_event(startTime.getValue() - __kmp_stats_start_time.getValue(), finishTime.getValue() - __kmp_stats_start_time.getValue(), __kmp_stats_thread_ptr->getNestValue(), timerEnumValue);
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000177 __kmp_stats_thread_ptr->decrementNestValue();
178 }
179
180 /* We accept the risk that we drop a sample because it really did start at t==0. */
Jonathan Peyton072772b2016-04-05 18:48:48 +0000181 startTime = 0;
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000182 return;
183}
184
185/* ******************************************************************* */
186/* ************* kmp_stats_event_vector member functions ************* */
187
188void kmp_stats_event_vector::deallocate() {
189 __kmp_free(events);
190 internal_size = 0;
191 allocated_size = 0;
192 events = NULL;
193}
194
195// This function is for qsort() which requires the compare function to return
196// either a negative number if event1 < event2, a positive number if event1 > event2
Jonathan Peyton072772b2016-04-05 18:48:48 +0000197// or zero if event1 == event2.
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000198// This sorts by start time (lowest to highest).
199int compare_two_events(const void* event1, const void* event2) {
200 kmp_stats_event* ev1 = (kmp_stats_event*)event1;
201 kmp_stats_event* ev2 = (kmp_stats_event*)event2;
202
203 if(ev1->getStart() < ev2->getStart()) return -1;
204 else if(ev1->getStart() > ev2->getStart()) return 1;
205 else return 0;
206}
207
208void kmp_stats_event_vector::sort() {
209 qsort(events, internal_size, sizeof(kmp_stats_event), compare_two_events);
210}
211
212/* *********************************************************** */
213/* ************* kmp_stats_list member functions ************* */
214
215// returns a pointer to newly created stats node
Jonathan Peyton072772b2016-04-05 18:48:48 +0000216kmp_stats_list* kmp_stats_list::push_back(int gtid) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000217 kmp_stats_list* newnode = (kmp_stats_list*)__kmp_allocate(sizeof(kmp_stats_list));
218 // placement new, only requires space and pointer and initializes (so __kmp_allocate instead of C++ new[] is used)
219 new (newnode) kmp_stats_list();
220 newnode->setGtid(gtid);
221 newnode->prev = this->prev;
222 newnode->next = this;
223 newnode->prev->next = newnode;
224 newnode->next->prev = newnode;
225 return newnode;
226}
227void kmp_stats_list::deallocate() {
228 kmp_stats_list* ptr = this->next;
229 kmp_stats_list* delptr = this->next;
230 while(ptr != this) {
231 delptr = ptr;
232 ptr=ptr->next;
233 // placement new means we have to explicitly call destructor.
234 delptr->_event_vector.deallocate();
235 delptr->~kmp_stats_list();
236 __kmp_free(delptr);
237 }
238}
239kmp_stats_list::iterator kmp_stats_list::begin() {
240 kmp_stats_list::iterator it;
241 it.ptr = this->next;
242 return it;
243}
244kmp_stats_list::iterator kmp_stats_list::end() {
245 kmp_stats_list::iterator it;
246 it.ptr = this;
247 return it;
248}
249int kmp_stats_list::size() {
250 int retval;
251 kmp_stats_list::iterator it;
252 for(retval=0, it=begin(); it!=end(); it++, retval++) {}
253 return retval;
254}
255
256/* ********************************************************************* */
257/* ************* kmp_stats_list::iterator member functions ************* */
258
Jonathan Peyton072772b2016-04-05 18:48:48 +0000259kmp_stats_list::iterator::iterator() : ptr(NULL) {}
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000260kmp_stats_list::iterator::~iterator() {}
261kmp_stats_list::iterator kmp_stats_list::iterator::operator++() {
262 this->ptr = this->ptr->next;
263 return *this;
264}
265kmp_stats_list::iterator kmp_stats_list::iterator::operator++(int dummy) {
266 this->ptr = this->ptr->next;
267 return *this;
268}
269kmp_stats_list::iterator kmp_stats_list::iterator::operator--() {
270 this->ptr = this->ptr->prev;
271 return *this;
272}
273kmp_stats_list::iterator kmp_stats_list::iterator::operator--(int dummy) {
274 this->ptr = this->ptr->prev;
275 return *this;
276}
277bool kmp_stats_list::iterator::operator!=(const kmp_stats_list::iterator & rhs) {
Jonathan Peyton072772b2016-04-05 18:48:48 +0000278 return this->ptr!=rhs.ptr;
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000279}
280bool kmp_stats_list::iterator::operator==(const kmp_stats_list::iterator & rhs) {
Jonathan Peyton072772b2016-04-05 18:48:48 +0000281 return this->ptr==rhs.ptr;
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000282}
283kmp_stats_list* kmp_stats_list::iterator::operator*() const {
284 return this->ptr;
285}
286
287/* *************************************************************** */
288/* ************* kmp_stats_output_module functions ************** */
289
290const char* kmp_stats_output_module::outputFileName = NULL;
291const char* kmp_stats_output_module::eventsFileName = NULL;
292const char* kmp_stats_output_module::plotFileName = NULL;
293int kmp_stats_output_module::printPerThreadFlag = 0;
294int kmp_stats_output_module::printPerThreadEventsFlag = 0;
295
296// init() is called very near the beginning of execution time in the constructor of __kmp_stats_global_output
Jonathan Peyton072772b2016-04-05 18:48:48 +0000297void kmp_stats_output_module::init()
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000298{
299 char * statsFileName = getenv("KMP_STATS_FILE");
300 eventsFileName = getenv("KMP_STATS_EVENTS_FILE");
301 plotFileName = getenv("KMP_STATS_PLOT_FILE");
302 char * threadStats = getenv("KMP_STATS_THREADS");
303 char * threadEvents = getenv("KMP_STATS_EVENTS");
304
305 // set the stats output filenames based on environment variables and defaults
306 outputFileName = statsFileName;
307 eventsFileName = eventsFileName ? eventsFileName : "events.dat";
308 plotFileName = plotFileName ? plotFileName : "events.plt";
309
310 // set the flags based on environment variables matching: true, on, 1, .true. , .t. , yes
311 printPerThreadFlag = __kmp_str_match_true(threadStats);
312 printPerThreadEventsFlag = __kmp_str_match_true(threadEvents);
313
314 if(printPerThreadEventsFlag) {
315 // assigns a color to each timer for printing
316 setupEventColors();
317 } else {
318 // will clear flag so that no event will be logged
319 timeStat::clearEventFlags();
320 }
321
322 return;
323}
324
325void kmp_stats_output_module::setupEventColors() {
326 int i;
327 int globalColorIndex = 0;
328 int numGlobalColors = sizeof(globalColorArray) / sizeof(rgb_color);
329 for(i=0;i<TIMER_LAST;i++) {
330 if(timeStat::logEvent((timer_e)i)) {
331 timerColorInfo[i] = globalColorArray[globalColorIndex];
332 globalColorIndex = (globalColorIndex+1)%numGlobalColors;
333 }
334 }
335 return;
336}
337
Jonathan Peytone2554af2016-03-11 20:20:49 +0000338void kmp_stats_output_module::printTimerStats(FILE *statsOut, statistic const * theStats, statistic const * totalStats)
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000339{
Jonathan Peytone2554af2016-03-11 20:20:49 +0000340 fprintf (statsOut, "Timer, SampleCount, Min, Mean, Max, Total, SD\n");
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000341 for (timer_e s = timer_e(0); s<TIMER_LAST; s = timer_e(s+1)) {
Jonathan Peytone2554af2016-03-11 20:20:49 +0000342 statistic const * stat = &theStats[s];
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000343 char tag = timeStat::noUnits(s) ? ' ' : 'T';
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000344
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000345 fprintf (statsOut, "%-28s, %s\n", timeStat::name(s), stat->format(tag, true).c_str());
Jonathan Peytone2554af2016-03-11 20:20:49 +0000346 // Also print the Total_ versions of times.
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000347 if (totalStats && !timeStat::noTotal(s))
348 fprintf(statsOut, "Total_%-22s, %s\n", timeStat::name(s), totalStats[s].format(tag, true).c_str());
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000349 }
Jonathan Peytone2554af2016-03-11 20:20:49 +0000350}
351
352void kmp_stats_output_module::printCounterStats(FILE *statsOut, statistic const * theStats)
353{
354 fprintf (statsOut, "Counter, ThreadCount, Min, Mean, Max, Total, SD\n");
355 for (int s = 0; s<COUNTER_LAST; s++) {
356 statistic const * stat = &theStats[s];
357 fprintf (statsOut, "%-25s, %s\n", counter::name(counter_e(s)), stat->format(' ', true).c_str());
358 }
359}
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000360
361void kmp_stats_output_module::printCounters(FILE * statsOut, counter const * theCounters)
362{
363 // We print all the counters even if they are zero.
364 // That makes it easier to slice them into a spreadsheet if you need to.
365 fprintf (statsOut, "\nCounter, Count\n");
366 for (int c = 0; c<COUNTER_LAST; c++) {
367 counter const * stat = &theCounters[c];
368 fprintf (statsOut, "%-25s, %s\n", counter::name(counter_e(c)), formatSI(stat->getValue(), 9, ' ').c_str());
369 }
370}
371
372void kmp_stats_output_module::printEvents(FILE* eventsOut, kmp_stats_event_vector* theEvents, int gtid) {
373 // sort by start time before printing
374 theEvents->sort();
375 for (int i = 0; i < theEvents->size(); i++) {
376 kmp_stats_event ev = theEvents->at(i);
377 rgb_color color = getEventColor(ev.getTimerName());
Jonathan Peyton072772b2016-04-05 18:48:48 +0000378 fprintf(eventsOut, "%d %lu %lu %1.1f rgb(%1.1f,%1.1f,%1.1f) %s\n",
379 gtid,
380 ev.getStart(),
381 ev.getStop(),
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000382 1.2 - (ev.getNestLevel() * 0.2),
383 color.r, color.g, color.b,
384 timeStat::name(ev.getTimerName())
385 );
386 }
387 return;
388}
389
390void kmp_stats_output_module::windupExplicitTimers()
391{
Jonathan Peyton072772b2016-04-05 18:48:48 +0000392 // Wind up any explicit timers. We assume that it's fair at this point to just walk all the explcit timers in all threads
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000393 // and say "it's over".
394 // If the timer wasn't running, this won't record anything anyway.
395 kmp_stats_list::iterator it;
396 for(it = __kmp_stats_list.begin(); it != __kmp_stats_list.end(); it++) {
397 for (int timer=0; timer<EXPLICIT_TIMER_LAST; timer++) {
398 (*it)->getExplicitTimer(explicit_timer_e(timer))->stop((timer_e)timer);
399 }
400 }
401}
402
403void kmp_stats_output_module::printPloticusFile() {
404 int i;
405 int size = __kmp_stats_list.size();
406 FILE* plotOut = fopen(plotFileName, "w+");
407
408 fprintf(plotOut, "#proc page\n"
409 " pagesize: 15 10\n"
410 " scale: 1.0\n\n");
411
412 fprintf(plotOut, "#proc getdata\n"
Jonathan Peyton072772b2016-04-05 18:48:48 +0000413 " file: %s\n\n",
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000414 eventsFileName);
415
416 fprintf(plotOut, "#proc areadef\n"
417 " title: OpenMP Sampling Timeline\n"
418 " titledetails: align=center size=16\n"
419 " rectangle: 1 1 13 9\n"
420 " xautorange: datafield=2,3\n"
Jonathan Peyton072772b2016-04-05 18:48:48 +0000421 " yautorange: -1 %d\n\n",
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000422 size);
423
424 fprintf(plotOut, "#proc xaxis\n"
425 " stubs: inc\n"
426 " stubdetails: size=12\n"
427 " label: Time (ticks)\n"
428 " labeldetails: size=14\n\n");
429
430 fprintf(plotOut, "#proc yaxis\n"
431 " stubs: inc 1\n"
432 " stubrange: 0 %d\n"
433 " stubdetails: size=12\n"
434 " label: Thread #\n"
Jonathan Peyton072772b2016-04-05 18:48:48 +0000435 " labeldetails: size=14\n\n",
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000436 size-1);
437
438 fprintf(plotOut, "#proc bars\n"
439 " exactcolorfield: 5\n"
440 " axis: x\n"
441 " locfield: 1\n"
442 " segmentfields: 2 3\n"
443 " barwidthfield: 4\n\n");
444
445 // create legend entries corresponding to the timer color
446 for(i=0;i<TIMER_LAST;i++) {
447 if(timeStat::logEvent((timer_e)i)) {
448 rgb_color c = getEventColor((timer_e)i);
449 fprintf(plotOut, "#proc legendentry\n"
450 " sampletype: color\n"
451 " label: %s\n"
452 " details: rgb(%1.1f,%1.1f,%1.1f)\n\n",
453 timeStat::name((timer_e)i),
454 c.r, c.g, c.b);
455
456 }
457 }
458
459 fprintf(plotOut, "#proc legend\n"
460 " format: down\n"
461 " location: max max\n\n");
462 fclose(plotOut);
463 return;
464}
465
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000466/*
467 * Print some useful information about
468 * * the date and time this experiment ran.
469 * * the machine on which it ran.
470 * We output all of this as stylised comments, though we may decide to parse some of it.
471 */
472void kmp_stats_output_module::printHeaderInfo(FILE * statsOut)
473{
474 std::time_t now = std::time(0);
475 char buffer[40];
476 char hostName[80];
477
478 std::strftime(&buffer[0], sizeof(buffer), "%c", std::localtime(&now));
479 fprintf (statsOut, "# Time of run: %s\n", &buffer[0]);
480 if (gethostname(&hostName[0], sizeof(hostName)) == 0)
481 fprintf (statsOut,"# Hostname: %s\n", &hostName[0]);
482#if KMP_ARCH_X86 || KMP_ARCH_X86_64
483 fprintf (statsOut, "# CPU: %s\n", &__kmp_cpuinfo.name[0]);
484 fprintf (statsOut, "# Family: %d, Model: %d, Stepping: %d\n", __kmp_cpuinfo.family, __kmp_cpuinfo.model, __kmp_cpuinfo.stepping);
Jonathan Peyton20c1e4e2016-03-15 20:55:32 +0000485 if (__kmp_cpuinfo.frequency == 0)
486 fprintf (statsOut, "# Nominal frequency: Unknown\n");
487 else
488 fprintf (statsOut, "# Nominal frequency: %sz\n", formatSI(double(__kmp_cpuinfo.frequency),9,'H').c_str());
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000489#endif
490}
491
Jonathan Peyton072772b2016-04-05 18:48:48 +0000492void kmp_stats_output_module::outputStats(const char* heading)
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000493{
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000494 // Stop all the explicit timers in all threads
495 // Do this before declaring the local statistics because thay have constructors so will take time to create.
496 windupExplicitTimers();
497
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000498 statistic allStats[TIMER_LAST];
Jonathan Peytone2554af2016-03-11 20:20:49 +0000499 statistic totalStats[TIMER_LAST]; /* Synthesized, cross threads versions of normal timer stats */
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000500 statistic allCounters[COUNTER_LAST];
501
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000502 FILE * statsOut = outputFileName ? fopen (outputFileName, "a+") : stderr;
503 if (!statsOut)
504 statsOut = stderr;
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000505
506 FILE * eventsOut;
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000507 if (eventPrintingEnabled()) {
508 eventsOut = fopen(eventsFileName, "w+");
509 }
510
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000511 printHeaderInfo (statsOut);
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000512 fprintf(statsOut, "%s\n",heading);
513 // Accumulate across threads.
514 kmp_stats_list::iterator it;
515 for (it = __kmp_stats_list.begin(); it != __kmp_stats_list.end(); it++) {
516 int t = (*it)->getGtid();
517 // Output per thread stats if requested.
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000518 if (printPerThreadFlag) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000519 fprintf (statsOut, "Thread %d\n", t);
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000520 printTimerStats (statsOut, (*it)->getTimers(), 0);
521 printCounters (statsOut, (*it)->getCounters());
522 fprintf (statsOut,"\n");
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000523 }
524 // Output per thread events if requested.
525 if (eventPrintingEnabled()) {
526 kmp_stats_event_vector events = (*it)->getEventVector();
527 printEvents(eventsOut, &events, t);
528 }
529
Jonathan Peytone2554af2016-03-11 20:20:49 +0000530 // Accumulate timers.
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000531 for (timer_e s = timer_e(0); s<TIMER_LAST; s = timer_e(s+1)) {
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000532 // See if we should ignore this timer when aggregating
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000533 if ((timeStat::masterOnly(s) && (t != 0)) || // Timer is only valid on the master and this thread is a worker
534 (timeStat::workerOnly(s) && (t == 0)) // Timer is only valid on a worker and this thread is the master
Jonathan Peyton072772b2016-04-05 18:48:48 +0000535 )
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000536 {
537 continue;
538 }
539
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000540 statistic * threadStat = (*it)->getTimer(s);
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000541 allStats[s] += *threadStat;
Jonathan Peytone2554af2016-03-11 20:20:49 +0000542
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000543 // Add Total stats for timers that are valid in more than one thread
544 if (!timeStat::noTotal(s))
Jonathan Peytone2554af2016-03-11 20:20:49 +0000545 totalStats[s].addSample(threadStat->getTotal());
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000546 }
547
Jonathan Peytone2554af2016-03-11 20:20:49 +0000548 // Accumulate counters.
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000549 for (counter_e c = counter_e(0); c<COUNTER_LAST; c = counter_e(c+1)) {
550 if (counter::masterOnly(c) && t != 0)
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000551 continue;
Jonathan Peyton6e98d7982016-03-15 20:28:47 +0000552 allCounters[c].addSample ((*it)->getCounter(c)->getValue());
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000553 }
554 }
555
556 if (eventPrintingEnabled()) {
557 printPloticusFile();
558 fclose(eventsOut);
559 }
560
561 fprintf (statsOut, "Aggregate for all threads\n");
Jonathan Peytone2554af2016-03-11 20:20:49 +0000562 printTimerStats (statsOut, &allStats[0], &totalStats[0]);
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000563 fprintf (statsOut, "\n");
Jonathan Peytone2554af2016-03-11 20:20:49 +0000564 printCounterStats (statsOut, &allCounters[0]);
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000565
566 if (statsOut != stderr)
567 fclose(statsOut);
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000568}
569
570/* ************************************************** */
571/* ************* exported C functions ************** */
572
573// no name mangling for these functions, we want the c files to be able to get at these functions
574extern "C" {
575
576void __kmp_reset_stats()
577{
578 kmp_stats_list::iterator it;
579 for(it = __kmp_stats_list.begin(); it != __kmp_stats_list.end(); it++) {
580 timeStat * timers = (*it)->getTimers();
581 counter * counters = (*it)->getCounters();
582 explicitTimer * eTimers = (*it)->getExplicitTimers();
583
584 for (int t = 0; t<TIMER_LAST; t++)
585 timers[t].reset();
586
587 for (int c = 0; c<COUNTER_LAST; c++)
588 counters[c].reset();
589
590 for (int t=0; t<EXPLICIT_TIMER_LAST; t++)
591 eTimers[t].reset();
592
593 // reset the event vector so all previous events are "erased"
594 (*it)->resetEventVector();
595
596 // May need to restart the explicit timers in thread zero?
597 }
598 KMP_START_EXPLICIT_TIMER(OMP_serial);
599 KMP_START_EXPLICIT_TIMER(OMP_start_end);
600}
601
602// This function will reset all stats and stop all threads' explicit timers if they haven't been stopped already.
603void __kmp_output_stats(const char * heading)
604{
605 __kmp_stats_global_output.outputStats(heading);
606 __kmp_reset_stats();
607}
608
609void __kmp_accumulate_stats_at_exit(void)
610{
611 // Only do this once.
612 if (KMP_XCHG_FIXED32(&statsPrinted, 1) != 0)
613 return;
614
615 __kmp_output_stats("Statistics on exit");
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000616}
617
Jonathan Peyton072772b2016-04-05 18:48:48 +0000618void __kmp_stats_init(void)
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000619{
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000620}
621
Jonathan Peyton072772b2016-04-05 18:48:48 +0000622} // extern "C"
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000623