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678 lines
18 KiB
C++
678 lines
18 KiB
C++
// Jolt Physics Library (https://github.com/jrouwe/JoltPhysics)
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// SPDX-FileCopyrightText: 2021 Jorrit Rouwe
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// SPDX-License-Identifier: MIT
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#include <Jolt/Jolt.h>
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#include <Jolt/Core/Profiler.h>
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#include <Jolt/Core/Color.h>
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#include <Jolt/Core/StringTools.h>
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#include <Jolt/Core/QuickSort.h>
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JPH_SUPPRESS_WARNINGS_STD_BEGIN
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#include <fstream>
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JPH_SUPPRESS_WARNINGS_STD_END
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JPH_NAMESPACE_BEGIN
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#if defined(JPH_EXTERNAL_PROFILE) && defined(JPH_SHARED_LIBRARY)
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ProfileStartMeasurementFunction ProfileStartMeasurement = [](const char *, uint32, uint8 *) { };
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ProfileEndMeasurementFunction ProfileEndMeasurement = [](uint8 *) { };
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#elif defined(JPH_PROFILE_ENABLED)
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//////////////////////////////////////////////////////////////////////////////////////////
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// Profiler
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//////////////////////////////////////////////////////////////////////////////////////////
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Profiler *Profiler::sInstance = nullptr;
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#ifdef JPH_SHARED_LIBRARY
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static thread_local ProfileThread *sInstance = nullptr;
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ProfileThread *ProfileThread::sGetInstance()
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{
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return sInstance;
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}
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void ProfileThread::sSetInstance(ProfileThread *inInstance)
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{
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sInstance = inInstance;
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}
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#else
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thread_local ProfileThread *ProfileThread::sInstance = nullptr;
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#endif
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bool ProfileMeasurement::sOutOfSamplesReported = false;
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void Profiler::UpdateReferenceTime()
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{
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mReferenceTick = GetProcessorTickCount();
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mReferenceTime = std::chrono::high_resolution_clock::now();
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}
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uint64 Profiler::GetProcessorTicksPerSecond() const
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{
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uint64 ticks = GetProcessorTickCount();
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std::chrono::high_resolution_clock::time_point time = std::chrono::high_resolution_clock::now();
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return (ticks - mReferenceTick) * 1000000000ULL / std::chrono::duration_cast<std::chrono::nanoseconds>(time - mReferenceTime).count();
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}
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// This function assumes that none of the threads are active while we're dumping the profile,
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// otherwise there will be a race condition on mCurrentSample and the profile data.
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JPH_TSAN_NO_SANITIZE
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void Profiler::NextFrame()
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{
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std::lock_guard lock(mLock);
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if (mDump)
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{
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DumpInternal();
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mDump = false;
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}
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for (ProfileThread *t : mThreads)
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t->mCurrentSample = 0;
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UpdateReferenceTime();
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}
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void Profiler::Dump(const string_view &inTag)
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{
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mDump = true;
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mDumpTag = inTag;
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}
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void Profiler::AddThread(ProfileThread *inThread)
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{
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std::lock_guard lock(mLock);
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mThreads.push_back(inThread);
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}
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void Profiler::RemoveThread(ProfileThread *inThread)
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{
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std::lock_guard lock(mLock);
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Array<ProfileThread *>::iterator i = std::find(mThreads.begin(), mThreads.end(), inThread);
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JPH_ASSERT(i != mThreads.end());
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mThreads.erase(i);
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}
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void Profiler::sAggregate(int inDepth, uint32 inColor, ProfileSample *&ioSample, const ProfileSample *inEnd, Aggregators &ioAggregators, KeyToAggregator &ioKeyToAggregator)
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{
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// Store depth
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ioSample->mDepth = uint8(min(255, inDepth));
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// Update color
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if (ioSample->mColor == 0)
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ioSample->mColor = inColor;
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else
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inColor = ioSample->mColor;
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// Start accumulating totals
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uint64 cycles_this_with_children = ioSample->mEndCycle - ioSample->mStartCycle;
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// Loop over following samples until we find a sample that starts on or after our end
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ProfileSample *sample;
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for (sample = ioSample + 1; sample < inEnd && sample->mStartCycle < ioSample->mEndCycle; ++sample)
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{
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JPH_ASSERT(sample[-1].mStartCycle <= sample->mStartCycle);
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JPH_ASSERT(sample->mStartCycle >= ioSample->mStartCycle);
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JPH_ASSERT(sample->mEndCycle <= ioSample->mEndCycle);
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// Recurse and skip over the children of this child
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sAggregate(inDepth + 1, inColor, sample, inEnd, ioAggregators, ioKeyToAggregator);
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}
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// Find the aggregator for this name / filename pair
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Aggregator *aggregator;
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KeyToAggregator::iterator aggregator_idx = ioKeyToAggregator.find(ioSample->mName);
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if (aggregator_idx == ioKeyToAggregator.end())
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{
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// Not found, add to map and insert in array
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ioKeyToAggregator.try_emplace(ioSample->mName, ioAggregators.size());
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ioAggregators.emplace_back(ioSample->mName);
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aggregator = &ioAggregators.back();
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}
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else
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{
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// Found
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aggregator = &ioAggregators[aggregator_idx->second];
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}
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// Add the measurement to the aggregator
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aggregator->AccumulateMeasurement(cycles_this_with_children);
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// Update ioSample to the last child of ioSample
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JPH_ASSERT(sample[-1].mStartCycle <= ioSample->mEndCycle);
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JPH_ASSERT(sample >= inEnd || sample->mStartCycle >= ioSample->mEndCycle);
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ioSample = sample - 1;
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}
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void Profiler::DumpInternal()
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{
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// Freeze data from threads
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// Note that this is not completely thread safe: As a profile sample is added mCurrentSample is incremented
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// but the data is not written until the sample finishes. So if we dump the profile information while
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// some other thread is running, we may get some garbage information from the previous frame
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Threads threads;
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for (ProfileThread *t : mThreads)
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threads.push_back({ t->mThreadName, t->mSamples, t->mSamples + t->mCurrentSample });
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// Shift all samples so that the first sample is at zero
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uint64 min_cycle = 0xffffffffffffffffUL;
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for (const ThreadSamples &t : threads)
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if (t.mSamplesBegin < t.mSamplesEnd)
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min_cycle = min(min_cycle, t.mSamplesBegin[0].mStartCycle);
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for (const ThreadSamples &t : threads)
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for (ProfileSample *s = t.mSamplesBegin, *end = t.mSamplesEnd; s < end; ++s)
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{
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s->mStartCycle -= min_cycle;
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s->mEndCycle -= min_cycle;
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}
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// Determine tag of this profile
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String tag;
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if (mDumpTag.empty())
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{
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// Next sequence number
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static int number = 0;
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++number;
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tag = ConvertToString(number);
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}
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else
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{
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// Take provided tag
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tag = mDumpTag;
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mDumpTag.clear();
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}
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// Aggregate data across threads
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Aggregators aggregators;
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KeyToAggregator key_to_aggregators;
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for (const ThreadSamples &t : threads)
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for (ProfileSample *s = t.mSamplesBegin, *end = t.mSamplesEnd; s < end; ++s)
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sAggregate(0, Color::sGetDistinctColor(0).GetUInt32(), s, end, aggregators, key_to_aggregators);
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// Dump as chart
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DumpChart(tag.c_str(), threads, key_to_aggregators, aggregators);
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}
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static String sHTMLEncode(const char *inString)
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{
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String str(inString);
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StringReplace(str, "<", "<");
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StringReplace(str, ">", ">");
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return str;
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}
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void Profiler::DumpChart(const char *inTag, const Threads &inThreads, const KeyToAggregator &inKeyToAggregators, const Aggregators &inAggregators)
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{
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// Open file
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std::ofstream f;
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f.open(StringFormat("profile_chart_%s.html", inTag).c_str(), std::ofstream::out | std::ofstream::trunc);
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if (!f.is_open())
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return;
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// Write header
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f << R"(<!DOCTYPE html>
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<html>
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<head>
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<title>Profile Chart</title>
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<style>
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html, body {
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padding: 0px;
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border: 0px;
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margin: 0px;
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width: 100%;
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height: 100%;
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overflow: hidden;
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}
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canvas {
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position: absolute;
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top: 10px;
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left: 10px;
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padding: 0px;
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border: 0px;
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margin: 0px;
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}
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#tooltip {
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font: Courier New;
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position: absolute;
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background-color: white;
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border: 1px;
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border-style: solid;
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border-color: black;
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pointer-events: none;
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padding: 5px;
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font: 14px Arial;
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visibility: hidden;
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height: auto;
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}
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.stat {
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color: blue;
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text-align: right;
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}
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</style>
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<script type="text/javascript">
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var canvas;
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var ctx;
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var tooltip;
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var min_scale;
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var scale;
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var offset_x = 0;
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var offset_y = 0;
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var size_y;
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var dragging = false;
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var previous_x = 0;
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var previous_y = 0;
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var bar_height = 15;
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var line_height = bar_height + 2;
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var thread_separation = 6;
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var thread_font_size = 12;
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var thread_font = thread_font_size + "px Arial";
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var bar_font_size = 10;
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var bar_font = bar_font_size + "px Arial";
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var end_cycle = 0;
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function drawChart()
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{
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ctx.clearRect(0, 0, canvas.width, canvas.height);
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ctx.lineWidth = 1;
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var y = offset_y;
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for (var t = 0; t < threads.length; t++)
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{
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// Check if thread has samples
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var thread = threads[t];
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if (thread.start.length == 0)
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continue;
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// Draw thread name
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y += thread_font_size;
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ctx.font = thread_font;
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ctx.fillStyle = "#000000";
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ctx.fillText(thread.thread_name, 0, y);
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y += thread_separation;
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// Draw outlines for each bar of samples
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ctx.fillStyle = "#c0c0c0";
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for (var d = 0; d <= thread.max_depth; d++)
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ctx.fillRect(0, y + d * line_height, canvas.width, bar_height);
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// Draw samples
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ctx.font = bar_font;
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for (var s = 0; s < thread.start.length; s++)
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{
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// Cull bar
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var rx = scale * (offset_x + thread.start[s]);
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if (rx > canvas.width) // right of canvas
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break;
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var rw = scale * thread.cycles[s];
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if (rw < 0.5) // less than half pixel, skip
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continue;
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if (rx + rw < 0) // left of canvas
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continue;
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// Draw bar
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var ry = y + line_height * thread.depth[s];
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ctx.fillStyle = thread.color[s];
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ctx.fillRect(rx, ry, rw, bar_height);
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ctx.strokeStyle = thread.darkened_color[s];
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ctx.strokeRect(rx, ry, rw, bar_height);
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// Get index in aggregated list
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var a = thread.aggregator[s];
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// Draw text
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if (rw > aggregated.name_width[a])
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{
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ctx.fillStyle = "#000000";
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ctx.fillText(aggregated.name[a], rx + (rw - aggregated.name_width[a]) / 2, ry + bar_height - 4);
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}
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}
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// Next line
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y += line_height * (1 + thread.max_depth) + thread_separation;
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}
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// Update size
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size_y = y - offset_y;
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}
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function drawTooltip(mouse_x, mouse_y)
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{
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var y = offset_y;
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for (var t = 0; t < threads.length; t++)
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{
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// Check if thread has samples
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var thread = threads[t];
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if (thread.start.length == 0)
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continue;
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// Thead name
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y += thread_font_size + thread_separation;
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// Draw samples
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for (var s = 0; s < thread.start.length; s++)
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{
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// Cull bar
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var rx = scale * (offset_x + thread.start[s]);
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if (rx > mouse_x)
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break;
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var rw = scale * thread.cycles[s];
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if (rx + rw < mouse_x)
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continue;
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var ry = y + line_height * thread.depth[s];
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if (mouse_y >= ry && mouse_y < ry + bar_height)
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{
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// Get index into aggregated list
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var a = thread.aggregator[s];
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// Found bar, fill in tooltip
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tooltip.style.left = (canvas.offsetLeft + mouse_x) + "px";
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tooltip.style.top = (canvas.offsetTop + mouse_y) + "px";
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tooltip.style.visibility = "visible";
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tooltip.innerHTML = aggregated.name[a] + "<br>"
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+ "<table>"
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+ "<tr><td>Time:</td><td class=\"stat\">" + (1000000 * thread.cycles[s] / cycles_per_second).toFixed(2) + " µs</td></tr>"
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+ "<tr><td>Start:</td><td class=\"stat\">" + (1000000 * thread.start[s] / cycles_per_second).toFixed(2) + " µs</td></tr>"
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+ "<tr><td>End:</td><td class=\"stat\">" + (1000000 * (thread.start[s] + thread.cycles[s]) / cycles_per_second).toFixed(2) + " µs</td></tr>"
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+ "<tr><td>Avg. Time:</td><td class=\"stat\">" + (1000000 * aggregated.cycles_per_frame[a] / cycles_per_second / aggregated.calls[a]).toFixed(2) + " µs</td></tr>"
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+ "<tr><td>Min Time:</td><td class=\"stat\">" + (1000000 * aggregated.min_cycles[a] / cycles_per_second).toFixed(2) + " µs</td></tr>"
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+ "<tr><td>Max Time:</td><td class=\"stat\">" + (1000000 * aggregated.max_cycles[a] / cycles_per_second).toFixed(2) + " µs</td></tr>"
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+ "<tr><td>Time / Frame:</td><td class=\"stat\">" + (1000000 * aggregated.cycles_per_frame[a] / cycles_per_second).toFixed(2) + " µs</td></tr>"
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+ "<tr><td>Calls:</td><td class=\"stat\">" + aggregated.calls[a] + "</td></tr>"
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+ "</table>";
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return;
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}
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}
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// Next line
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y += line_height * (1 + thread.max_depth) + thread_separation;
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}
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// No bar found, hide tooltip
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tooltip.style.visibility = "hidden";
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}
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function onMouseDown(evt)
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{
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dragging = true;
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previous_x = evt.clientX, previous_y = evt.clientY;
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tooltip.style.visibility = "hidden";
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}
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function onMouseUp(evt)
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{
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dragging = false;
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}
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function clampMotion()
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{
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// Clamp horizontally
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var min_offset_x = canvas.width / scale - end_cycle;
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if (offset_x < min_offset_x)
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offset_x = min_offset_x;
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if (offset_x > 0)
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offset_x = 0;
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// Clamp vertically
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var min_offset_y = canvas.height - size_y;
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if (offset_y < min_offset_y)
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offset_y = min_offset_y;
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if (offset_y > 0)
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offset_y = 0;
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// Clamp scale
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if (scale < min_scale)
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scale = min_scale;
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var max_scale = 1000 * min_scale;
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if (scale > max_scale)
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scale = max_scale;
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}
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function onMouseMove(evt)
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{
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if (dragging)
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{
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// Calculate new offset
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offset_x += (evt.clientX - previous_x) / scale;
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offset_y += evt.clientY - previous_y;
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clampMotion();
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drawChart();
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}
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else
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drawTooltip(evt.clientX - canvas.offsetLeft, evt.clientY - canvas.offsetTop);
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previous_x = evt.clientX, previous_y = evt.clientY;
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}
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function onScroll(evt)
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{
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tooltip.style.visibility = "hidden";
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var old_scale = scale;
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if (evt.deltaY > 0)
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scale /= 1.1;
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else
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scale *= 1.1;
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clampMotion();
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// Ensure that event under mouse stays under mouse
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var x = previous_x - canvas.offsetLeft;
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offset_x += x / scale - x / old_scale;
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clampMotion();
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drawChart();
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}
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function darkenColor(color)
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{
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var i = parseInt(color.slice(1), 16);
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var r = i >> 16;
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var g = (i >> 8) & 0xff;
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var b = i & 0xff;
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r = Math.round(0.8 * r);
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g = Math.round(0.8 * g);
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b = Math.round(0.8 * b);
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i = (r << 16) + (g << 8) + b;
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return "#" + i.toString(16);
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}
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function startChart()
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{
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// Fetch elements
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canvas = document.getElementById('canvas');
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ctx = canvas.getContext("2d");
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tooltip = document.getElementById('tooltip');
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// Resize canvas to fill screen
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canvas.width = document.body.offsetWidth - 20;
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canvas.height = document.body.offsetHeight - 20;
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// Register mouse handlers
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canvas.onmousedown = onMouseDown;
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canvas.onmouseup = onMouseUp;
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canvas.onmouseout = onMouseUp;
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canvas.onmousemove = onMouseMove;
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canvas.onwheel = onScroll;
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for (var t = 0; t < threads.length; t++)
|
|
{
|
|
var thread = threads[t];
|
|
|
|
// Calculate darkened colors
|
|
thread.darkened_color = new Array(thread.color.length);
|
|
for (var s = 0; s < thread.color.length; s++)
|
|
thread.darkened_color[s] = darkenColor(thread.color[s]);
|
|
|
|
// Calculate max depth and end cycle
|
|
thread.max_depth = 0;
|
|
for (var s = 0; s < thread.start.length; s++)
|
|
{
|
|
thread.max_depth = Math.max(thread.max_depth, thread.depth[s]);
|
|
end_cycle = Math.max(end_cycle, thread.start[s] + thread.cycles[s]);
|
|
}
|
|
}
|
|
|
|
// Calculate width of name strings
|
|
ctx.font = bar_font;
|
|
aggregated.name_width = new Array(aggregated.name.length);
|
|
for (var a = 0; a < aggregated.name.length; a++)
|
|
aggregated.name_width[a] = ctx.measureText(aggregated.name[a]).width;
|
|
|
|
// Store scale properties
|
|
min_scale = canvas.width / end_cycle;
|
|
scale = min_scale;
|
|
|
|
drawChart();
|
|
}
|
|
</script>
|
|
</head>
|
|
<body onload="startChart();">
|
|
<script type="text/javascript">
|
|
)";
|
|
|
|
// Get cycles per second
|
|
uint64 cycles_per_second = GetProcessorTicksPerSecond();
|
|
f << "var cycles_per_second = " << cycles_per_second << ";\n";
|
|
|
|
// Dump samples
|
|
f << "var threads = [\n";
|
|
bool first_thread = true;
|
|
for (const ThreadSamples &t : inThreads)
|
|
{
|
|
if (!first_thread)
|
|
f << ",\n";
|
|
first_thread = false;
|
|
|
|
f << "{\nthread_name: \"" << t.mThreadName << "\",\naggregator: [";
|
|
bool first = true;
|
|
for (const ProfileSample *s = t.mSamplesBegin, *end = t.mSamplesEnd; s < end; ++s)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
f << inKeyToAggregators.find(s->mName)->second;
|
|
}
|
|
f << "],\ncolor: [";
|
|
first = true;
|
|
for (const ProfileSample *s = t.mSamplesBegin, *end = t.mSamplesEnd; s < end; ++s)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
Color c(s->mColor);
|
|
f << StringFormat("\"#%02x%02x%02x\"", c.r, c.g, c.b);
|
|
}
|
|
f << "],\nstart: [";
|
|
first = true;
|
|
for (const ProfileSample *s = t.mSamplesBegin, *end = t.mSamplesEnd; s < end; ++s)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
f << s->mStartCycle;
|
|
}
|
|
f << "],\ncycles: [";
|
|
first = true;
|
|
for (const ProfileSample *s = t.mSamplesBegin, *end = t.mSamplesEnd; s < end; ++s)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
f << s->mEndCycle - s->mStartCycle;
|
|
}
|
|
f << "],\ndepth: [";
|
|
first = true;
|
|
for (const ProfileSample *s = t.mSamplesBegin, *end = t.mSamplesEnd; s < end; ++s)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
f << int(s->mDepth);
|
|
}
|
|
f << "]\n}";
|
|
}
|
|
|
|
// Dump aggregated data
|
|
f << "];\nvar aggregated = {\nname: [";
|
|
bool first = true;
|
|
for (const Aggregator &a : inAggregators)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
String name = "\"" + sHTMLEncode(a.mName) + "\"";
|
|
f << name;
|
|
}
|
|
f << "],\ncalls: [";
|
|
first = true;
|
|
for (const Aggregator &a : inAggregators)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
f << a.mCallCounter;
|
|
}
|
|
f << "],\nmin_cycles: [";
|
|
first = true;
|
|
for (const Aggregator &a : inAggregators)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
f << a.mMinCyclesInCallWithChildren;
|
|
}
|
|
f << "],\nmax_cycles: [";
|
|
first = true;
|
|
for (const Aggregator &a : inAggregators)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
f << a.mMaxCyclesInCallWithChildren;
|
|
}
|
|
f << "],\ncycles_per_frame: [";
|
|
first = true;
|
|
for (const Aggregator &a : inAggregators)
|
|
{
|
|
if (!first)
|
|
f << ",";
|
|
first = false;
|
|
f << a.mTotalCyclesInCallWithChildren;
|
|
}
|
|
|
|
// Write footer
|
|
f << R"(]};
|
|
</script>
|
|
|
|
<canvas id="canvas"></canvas>
|
|
<div id="tooltip"></div>
|
|
|
|
</tbody></table></body></html>)";
|
|
}
|
|
|
|
#endif // JPH_PROFILE_ENABLED
|
|
|
|
JPH_NAMESPACE_END
|