98a0fe0f32
R=bmeurer@chromium.org Review URL: https://codereview.chromium.org/1285183010 Cr-Commit-Position: refs/heads/master@{#30263}
198 lines
5.3 KiB
C++
198 lines
5.3 KiB
C++
// Copyright 2012 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "src/counters.h"
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#include "src/base/platform/platform.h"
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#include "src/isolate.h"
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#include "src/log-inl.h"
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namespace v8 {
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namespace internal {
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StatsTable::StatsTable()
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: lookup_function_(NULL),
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create_histogram_function_(NULL),
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add_histogram_sample_function_(NULL) {}
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int* StatsCounter::FindLocationInStatsTable() const {
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return isolate_->stats_table()->FindLocation(name_);
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}
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void Histogram::AddSample(int sample) {
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if (Enabled()) {
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isolate()->stats_table()->AddHistogramSample(histogram_, sample);
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}
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}
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void* Histogram::CreateHistogram() const {
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return isolate()->stats_table()->
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CreateHistogram(name_, min_, max_, num_buckets_);
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}
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// Start the timer.
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void HistogramTimer::Start() {
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if (Enabled()) {
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timer_.Start();
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}
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Logger::CallEventLogger(isolate(), name(), Logger::START, true);
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}
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// Stop the timer and record the results.
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void HistogramTimer::Stop() {
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if (Enabled()) {
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int64_t sample = resolution_ == MICROSECOND
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? timer_.Elapsed().InMicroseconds()
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: timer_.Elapsed().InMilliseconds();
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// Compute the delta between start and stop, in microseconds.
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AddSample(static_cast<int>(sample));
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timer_.Stop();
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}
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Logger::CallEventLogger(isolate(), name(), Logger::END, true);
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}
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Counters::Counters(Isolate* isolate) {
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#define HR(name, caption, min, max, num_buckets) \
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name##_ = Histogram(#caption, min, max, num_buckets, isolate);
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HISTOGRAM_RANGE_LIST(HR)
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#undef HR
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#define HT(name, caption, max, res) \
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name##_ = HistogramTimer(#caption, 0, max, HistogramTimer::res, 50, isolate);
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HISTOGRAM_TIMER_LIST(HT)
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#undef HT
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#define AHT(name, caption) \
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name##_ = AggregatableHistogramTimer(#caption, 0, 10000000, 50, isolate);
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AGGREGATABLE_HISTOGRAM_TIMER_LIST(AHT)
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#undef AHT
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#define HP(name, caption) \
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name##_ = Histogram(#caption, 0, 101, 100, isolate);
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HISTOGRAM_PERCENTAGE_LIST(HP)
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#undef HP
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// Exponential histogram assigns bucket limits to points
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// p[1], p[2], ... p[n] such that p[i+1] / p[i] = constant.
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// The constant factor is equal to the n-th root of (high / low),
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// where the n is the number of buckets, the low is the lower limit,
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// the high is the upper limit.
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// For n = 50, low = 1000, high = 500000: the factor = 1.13.
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#define HM(name, caption) \
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name##_ = Histogram(#caption, 1000, 500000, 50, isolate);
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HISTOGRAM_LEGACY_MEMORY_LIST(HM)
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#undef HM
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// For n = 100, low = 4000, high = 2000000: the factor = 1.06.
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#define HM(name, caption) \
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name##_ = Histogram(#caption, 4000, 2000000, 100, isolate);
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HISTOGRAM_MEMORY_LIST(HM)
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#undef HM
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#define HM(name, caption) \
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aggregated_##name##_ = AggregatedMemoryHistogram<Histogram>(&name##_);
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HISTOGRAM_MEMORY_LIST(HM)
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#undef HM
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#define SC(name, caption) \
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name##_ = StatsCounter(isolate, "c:" #caption);
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STATS_COUNTER_LIST_1(SC)
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STATS_COUNTER_LIST_2(SC)
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#undef SC
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#define SC(name) \
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count_of_##name##_ = StatsCounter(isolate, "c:" "V8.CountOf_" #name); \
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size_of_##name##_ = StatsCounter(isolate, "c:" "V8.SizeOf_" #name);
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INSTANCE_TYPE_LIST(SC)
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#undef SC
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#define SC(name) \
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count_of_CODE_TYPE_##name##_ = \
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StatsCounter(isolate, "c:" "V8.CountOf_CODE_TYPE-" #name); \
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size_of_CODE_TYPE_##name##_ = \
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StatsCounter(isolate, "c:" "V8.SizeOf_CODE_TYPE-" #name);
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CODE_KIND_LIST(SC)
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#undef SC
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#define SC(name) \
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count_of_FIXED_ARRAY_##name##_ = \
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StatsCounter(isolate, "c:" "V8.CountOf_FIXED_ARRAY-" #name); \
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size_of_FIXED_ARRAY_##name##_ = \
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StatsCounter(isolate, "c:" "V8.SizeOf_FIXED_ARRAY-" #name);
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FIXED_ARRAY_SUB_INSTANCE_TYPE_LIST(SC)
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#undef SC
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#define SC(name) \
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count_of_CODE_AGE_##name##_ = \
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StatsCounter(isolate, "c:" "V8.CountOf_CODE_AGE-" #name); \
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size_of_CODE_AGE_##name##_ = \
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StatsCounter(isolate, "c:" "V8.SizeOf_CODE_AGE-" #name);
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CODE_AGE_LIST_COMPLETE(SC)
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#undef SC
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}
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void Counters::ResetCounters() {
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#define SC(name, caption) name##_.Reset();
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STATS_COUNTER_LIST_1(SC)
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STATS_COUNTER_LIST_2(SC)
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#undef SC
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#define SC(name) \
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count_of_##name##_.Reset(); \
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size_of_##name##_.Reset();
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INSTANCE_TYPE_LIST(SC)
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#undef SC
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#define SC(name) \
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count_of_CODE_TYPE_##name##_.Reset(); \
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size_of_CODE_TYPE_##name##_.Reset();
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CODE_KIND_LIST(SC)
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#undef SC
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#define SC(name) \
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count_of_FIXED_ARRAY_##name##_.Reset(); \
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size_of_FIXED_ARRAY_##name##_.Reset();
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FIXED_ARRAY_SUB_INSTANCE_TYPE_LIST(SC)
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#undef SC
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#define SC(name) \
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count_of_CODE_AGE_##name##_.Reset(); \
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size_of_CODE_AGE_##name##_.Reset();
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CODE_AGE_LIST_COMPLETE(SC)
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#undef SC
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}
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void Counters::ResetHistograms() {
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#define HR(name, caption, min, max, num_buckets) name##_.Reset();
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HISTOGRAM_RANGE_LIST(HR)
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#undef HR
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#define HT(name, caption, max, res) name##_.Reset();
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HISTOGRAM_TIMER_LIST(HT)
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#undef HT
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#define AHT(name, caption) name##_.Reset();
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AGGREGATABLE_HISTOGRAM_TIMER_LIST(AHT)
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#undef AHT
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#define HP(name, caption) name##_.Reset();
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HISTOGRAM_PERCENTAGE_LIST(HP)
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#undef HP
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#define HM(name, caption) name##_.Reset();
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HISTOGRAM_LEGACY_MEMORY_LIST(HM)
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#undef HM
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}
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} // namespace internal
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} // namespace v8
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