mirror of
https://github.com/wolfpld/tracy.git
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Handle multiple Vulkan threads.
This commit is contained in:
parent
0f68e1e981
commit
a5ba74ed13
@ -299,15 +299,20 @@ struct ThreadData
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Vector<uint32_t> zoneIdStack;
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};
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struct GpuCtxThreadData
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{
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Vector<GpuEvent*> timeline;
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Vector<GpuEvent*> stack;
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};
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struct GpuCtxData
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{
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int64_t timeDiff;
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uint64_t thread;
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uint64_t count;
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Vector<GpuEvent*> timeline;
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Vector<GpuEvent*> stack;
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uint8_t accuracyBits;
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float period;
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flat_hash_map<uint64_t, GpuCtxThreadData, nohash<uint64_t>> threadData;
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GpuEvent* query[64*1024];
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};
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@ -7,7 +7,7 @@ namespace Version
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{
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enum { Major = 0 };
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enum { Minor = 5 };
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enum { Patch = 6 };
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enum { Patch = 7 };
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}
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}
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@ -2024,14 +2024,44 @@ void View::DrawZones()
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const auto oldOffset = offset;
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ImGui::PushClipRect( wpos, wpos + ImVec2( w, oldOffset + vis.height ), true );
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ImGui::PushFont( m_smallFont );
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const auto sty = ImGui::GetFontSize();
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const auto sstep = sty + 1;
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ImGui::PopFont();
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const auto singleThread = v->threadData.size() == 1;
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int depth = 0;
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offset += ostep;
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if( showFull && !v->timeline.empty() && v->timeline.front()->gpuStart != std::numeric_limits<int64_t>::max() )
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if( showFull && !v->threadData.empty() )
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{
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const auto begin = v->timeline.front()->gpuStart;
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for( auto& td : v->threadData )
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{
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assert( !td.second.timeline.empty() );
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if( td.second.timeline.front()->gpuStart != std::numeric_limits<int64_t>::max() )
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{
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const auto begin = td.second.timeline.front()->gpuStart;
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const auto drift = GpuDrift( v );
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depth = DispatchGpuZoneLevel( v->timeline, hover, pxns, int64_t( nspx ), wpos, offset, 0, v->thread, yMin, yMax, begin, drift );
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offset += ostep * depth;
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if( !singleThread ) offset += sstep;
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const auto partDepth = DispatchGpuZoneLevel( td.second.timeline, hover, pxns, int64_t( nspx ), wpos, offset, 0, v->thread, yMin, yMax, begin, drift );
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if( partDepth != 0 )
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{
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if( !singleThread )
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{
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ImGui::PushFont( m_smallFont );
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DrawTextContrast( draw, wpos + ImVec2( ty, offset-1-sstep ), 0xFFFFAAAA, m_worker.GetThreadName( td.first ) );
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draw->AddLine( wpos + ImVec2( 0, offset+sty-sstep ), wpos + ImVec2( w, offset+sty-sstep ), 0x22FFAAAA );
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ImGui::PopFont();
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}
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offset += ostep * partDepth;
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depth += partDepth;
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}
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else if( !singleThread )
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{
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offset -= sstep;
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}
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}
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}
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}
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offset += ostep * 0.2f;
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@ -2073,11 +2103,20 @@ void View::DrawZones()
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}
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if( ImGui::IsMouseClicked( 2 ) )
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{
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const auto t0 = v->timeline.front()->gpuStart;
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if( t0 != std::numeric_limits<int64_t>::max() )
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int64_t t0 = std::numeric_limits<int64_t>::max();
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int64_t t1 = std::numeric_limits<int64_t>::min();
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for( auto& td : v->threadData )
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{
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const auto _t0 = td.second.timeline.front()->gpuStart;
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if( _t0 != std::numeric_limits<int64_t>::max() )
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{
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// FIXME
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const auto t1 = std::min( m_worker.GetLastTime(), m_worker.GetZoneEnd( *v->timeline.back() ) );
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t0 = std::min( t0, _t0 );
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t1 = std::max( t1, std::min( m_worker.GetLastTime(), m_worker.GetZoneEnd( *td.second.timeline.back() ) ) );
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}
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}
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if( t0 < t1 )
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{
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ZoomToRange( t0, t1 );
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}
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}
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@ -2089,16 +2128,39 @@ void View::DrawZones()
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{
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TextFocused( "Thread:", m_worker.GetThreadName( v->thread ) );
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}
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if( !v->timeline.empty() )
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else
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{
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const auto t = v->timeline.front()->gpuStart;
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if( t != std::numeric_limits<int64_t>::max() )
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if( !v->threadData.empty() )
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{
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TextFocused( "Appeared at", TimeToString( t ) );
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ImGui::TextDisabled( "Threads:" );
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ImGui::Indent();
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for( auto& td : v->threadData )
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{
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ImGui::TextUnformatted( m_worker.GetThreadName( td.first ) );
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ImGui::SameLine();
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ImGui::TextDisabled( "(%s)", RealToString( td.first, true ) );
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}
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ImGui::Unindent();
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}
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}
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if( !v->threadData.empty() )
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{
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int64_t t0 = std::numeric_limits<int64_t>::max();
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for( auto& td : v->threadData )
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{
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const auto _t0 = td.second.timeline.front()->gpuStart;
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if( _t0 != std::numeric_limits<int64_t>::max() )
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{
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t0 = std::min( t0, _t0 );
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}
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}
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if( t0 != std::numeric_limits<int64_t>::max() )
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{
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TextFocused( "Appeared at", TimeToString( t0 ) );
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}
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}
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TextFocused( "Zone count:", RealToString( v->count, true ) );
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TextFocused( "Top-level zones:", RealToString( v->timeline.size(), true ) );
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//TextFocused( "Top-level zones:", RealToString( v->timeline.size(), true ) );
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if( isVulkan )
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{
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TextFocused( "Timestamp accuracy:", TimeToString( v->period ) );
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@ -6058,7 +6120,9 @@ void View::DrawGpuInfoWindow()
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}
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else
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{
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const auto begin = ctx->timeline.front()->gpuStart;
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const auto td = ctx->threadData.size() == 1 ? ctx->threadData.begin() : ctx->threadData.find( m_worker.DecompressThread( ev.thread ) );
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assert( td != ctx->threadData.end() );
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const auto begin = td->second.timeline.front()->gpuStart;
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const auto drift = GpuDrift( ctx );
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TextFocused( "Delay to execution:", TimeToString( AdjustGpuTime( ev.gpuStart, begin, drift ) - ev.cpuStart ) );
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}
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@ -6390,7 +6454,7 @@ void View::DrawOptions()
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{
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for( size_t i=0; i<gpuData.size(); i++ )
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{
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const auto& timeline = gpuData[i]->timeline;
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const auto& timeline = gpuData[i]->threadData.begin()->second.timeline;
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const bool isVulkan = gpuData[i]->thread == 0;
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char buf[1024];
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if( isVulkan )
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@ -6403,7 +6467,14 @@ void View::DrawOptions()
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}
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SmallCheckbox( buf, &Vis( gpuData[i] ).visible );
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ImGui::SameLine();
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if( gpuData[i]->threadData.size() == 1 )
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{
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ImGui::TextDisabled( "%s top level zones", RealToString( timeline.size(), true ) );
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}
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else
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{
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ImGui::TextDisabled( "%s threads", RealToString( gpuData[i]->threadData.size(), true ) );
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}
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ImGui::TreePush();
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auto& drift = GpuDrift( gpuData[i] );
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ImGui::SetNextItemWidth( 120 );
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@ -12276,7 +12347,9 @@ void View::ZoomToZone( const GpuEvent& ev )
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}
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else
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{
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const auto begin = ctx->timeline.front()->gpuStart;
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const auto td = ctx->threadData.size() == 1 ? ctx->threadData.begin() : ctx->threadData.find( m_worker.DecompressThread( ev.thread ) );
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assert( td != ctx->threadData.end() );
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const auto begin = td->second.timeline.front()->gpuStart;
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const auto drift = GpuDrift( ctx );
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ZoomToRange( AdjustGpuTime( ev.gpuStart, begin, drift ), AdjustGpuTime( end, begin, drift ) );
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}
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@ -12484,7 +12557,9 @@ void View::ZoneTooltip( const GpuEvent& ev )
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}
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else
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{
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const auto begin = ctx->timeline.front()->gpuStart;
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const auto td = ctx->threadData.size() == 1 ? ctx->threadData.begin() : ctx->threadData.find( m_worker.DecompressThread( ev.thread ) );
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assert( td != ctx->threadData.end() );
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const auto begin = td->second.timeline.front()->gpuStart;
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const auto drift = GpuDrift( ctx );
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TextFocused( "Delay to execution:", TimeToString( AdjustGpuTime( ev.gpuStart, begin, drift ) - ev.cpuStart ) );
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}
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@ -12597,9 +12672,11 @@ const ZoneEvent* View::GetZoneParent( const ZoneEvent& zone ) const
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const GpuEvent* View::GetZoneParent( const GpuEvent& zone ) const
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{
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for( const auto& ctx : m_worker.GetGpuData() )
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{
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for( const auto& td : ctx->threadData )
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{
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const GpuEvent* parent = nullptr;
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const Vector<GpuEvent*>* timeline = &ctx->timeline;
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const Vector<GpuEvent*>* timeline = &td.second.timeline;
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if( timeline->empty() ) continue;
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for(;;)
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{
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@ -12612,6 +12689,7 @@ const GpuEvent* View::GetZoneParent( const GpuEvent& zone ) const
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timeline = &m_worker.GetGpuChildren( parent->child );
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}
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}
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}
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return nullptr;
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}
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@ -12646,7 +12724,8 @@ uint64_t View::GetZoneThread( const GpuEvent& zone ) const
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{
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for( const auto& ctx : m_worker.GetGpuData() )
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{
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const Vector<GpuEvent*>* timeline = &ctx->timeline;
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assert( ctx->threadData.size() == 1 );
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const Vector<GpuEvent*>* timeline = &ctx->threadData.begin()->second.timeline;
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if( timeline->empty() ) continue;
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for(;;)
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{
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@ -12670,7 +12749,9 @@ const GpuCtxData* View::GetZoneCtx( const GpuEvent& zone ) const
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{
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for( const auto& ctx : m_worker.GetGpuData() )
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{
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const Vector<GpuEvent*>* timeline = &ctx->timeline;
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for( const auto& td : ctx->threadData )
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{
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const Vector<GpuEvent*>* timeline = &td.second.timeline;
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if( timeline->empty() ) continue;
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for(;;)
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{
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@ -12682,6 +12763,7 @@ const GpuCtxData* View::GetZoneCtx( const GpuEvent& zone ) const
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timeline = &m_worker.GetGpuChildren( (*it)->child );
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}
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}
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}
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return nullptr;
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}
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@ -965,20 +965,41 @@ Worker::Worker( FileRead& f, EventType::Type eventMask )
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s_loadProgress.subTotal.store( ctx->count, std::memory_order_relaxed );
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s_loadProgress.subProgress.store( 0, std::memory_order_relaxed );
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}
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f.Read( ctx->period );
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if( fileVer >= FileVersion( 0, 5, 7 ) )
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{
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uint64_t tdsz;
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f.Read( tdsz );
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for( uint64_t j=0; j<tdsz; j++ )
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{
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uint64_t tid, tsz;
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f.Read2( tid, tsz );
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if( tsz != 0 )
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{
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int64_t refTime = 0;
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int64_t refGpuTime = 0;
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f.Read( ctx->period );
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auto td = ctx->threadData.emplace( tid, GpuCtxThreadData {} ).first;
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ReadTimeline( f, td->second.timeline, tsz, refTime, refGpuTime );
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}
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}
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}
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else
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{
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uint64_t tsz;
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f.Read( tsz );
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if( tsz != 0 )
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{
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int64_t refTime = 0;
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int64_t refGpuTime = 0;
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auto td = ctx->threadData.emplace( 0, GpuCtxThreadData {} ).first;
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if( fileVer <= FileVersion( 0, 5, 1 ) )
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{
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ReadTimelinePre052( f, ctx->timeline, tsz, refTime, refGpuTime, fileVer );
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ReadTimelinePre052( f, td->second.timeline, tsz, refTime, refGpuTime, fileVer );
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}
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else
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{
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ReadTimeline( f, ctx->timeline, tsz, refTime, refGpuTime );
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ReadTimeline( f, td->second.timeline, tsz, refTime, refGpuTime );
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}
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}
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}
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m_data.gpuData[i] = ctx;
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@ -1643,8 +1664,11 @@ Worker::~Worker()
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}
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for( auto& v : m_data.gpuData )
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{
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v->timeline.~Vector();
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v->stack.~Vector();
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for( auto& vt : v->threadData )
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{
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vt.second.timeline.~Vector();
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vt.second.stack.~Vector();
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}
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}
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for( auto& v : m_data.plots.Data() )
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{
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@ -3861,24 +3885,33 @@ void Worker::ProcessGpuZoneBeginImpl( GpuEvent* zone, const QueueGpuZoneBegin& e
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zone->callstack = 0;
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zone->child = -1;
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uint64_t ztid;
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if( ctx->thread == 0 )
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{
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// Vulkan context is not bound to any single thread.
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zone->thread = CompressThread( ev.thread );
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ztid = ev.thread;
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}
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else
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{
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// OpenGL doesn't need per-zone thread id. It still can be sent,
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// because it may be needed for callstack collection purposes.
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zone->thread = 0;
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ztid = 0;
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}
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m_data.lastTime = std::max( m_data.lastTime, zone->cpuStart );
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auto timeline = &ctx->timeline;
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if( !ctx->stack.empty() )
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auto td = ctx->threadData.find( ztid );
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if( td == ctx->threadData.end() )
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{
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auto back = ctx->stack.back();
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td = ctx->threadData.emplace( ztid, GpuCtxThreadData {} ).first;
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}
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auto timeline = &td->second.timeline;
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auto& stack = td->second.stack;
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if( !stack.empty() )
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{
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auto back = stack.back();
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if( back->child < 0 )
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{
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back->child = int32_t( m_data.gpuChildren.size() );
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@ -3888,8 +3921,7 @@ void Worker::ProcessGpuZoneBeginImpl( GpuEvent* zone, const QueueGpuZoneBegin& e
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}
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timeline->push_back( zone );
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ctx->stack.push_back( zone );
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stack.push_back( zone );
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assert( !ctx->query[ev.queryId] );
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ctx->query[ev.queryId] = zone;
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@ -3916,8 +3948,11 @@ void Worker::ProcessGpuZoneEnd( const QueueGpuZoneEnd& ev )
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auto ctx = m_gpuCtxMap[ev.context];
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assert( ctx );
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assert( !ctx->stack.empty() );
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auto zone = ctx->stack.back_and_pop();
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auto td = ctx->threadData.find( ev.thread );
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assert( td != ctx->threadData.end() );
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assert( !td->second.stack.empty() );
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auto zone = td->second.stack.back_and_pop();
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assert( !ctx->query[ev.queryId] );
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ctx->query[ev.queryId] = zone;
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@ -5027,13 +5062,20 @@ void Worker::Write( FileWrite& f )
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f.Write( &sz, sizeof( sz ) );
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for( auto& ctx : m_data.gpuData )
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{
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int64_t refTime = 0;
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int64_t refGpuTime = 0;
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f.Write( &ctx->thread, sizeof( ctx->thread ) );
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f.Write( &ctx->accuracyBits, sizeof( ctx->accuracyBits ) );
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f.Write( &ctx->count, sizeof( ctx->count ) );
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f.Write( &ctx->period, sizeof( ctx->period ) );
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WriteTimeline( f, ctx->timeline, refTime, refGpuTime );
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sz = ctx->threadData.size();
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f.Write( &sz, sizeof( sz ) );
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for( auto& td : ctx->threadData )
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{
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int64_t refTime = 0;
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int64_t refGpuTime = 0;
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uint64_t tid = td.first;
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f.Write( &tid, sizeof( tid ) );
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WriteTimeline( f, td.second.timeline, refTime, refGpuTime );
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}
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}
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sz = m_data.plots.Data().size();
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