mirror of
https://github.com/wolfpld/tracy.git
synced 2024-11-30 01:04:36 +00:00
ca125bd44c
Note that this will likely work only when loading existing traces. In live captures the thread name may not have yet been retrieved at the point when timeline item insertion occurs, which will prevent the check from succeeding.
272 lines
8.3 KiB
C++
272 lines
8.3 KiB
C++
#include <algorithm>
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#include <limits>
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#include "TracyImGui.hpp"
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#include "TracyMouse.hpp"
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#include "TracyPrint.hpp"
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#include "TracyTimelineItemThread.hpp"
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#include "TracyView.hpp"
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#include "TracyWorker.hpp"
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namespace tracy
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{
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TimelineItemThread::TimelineItemThread( View& view, Worker& worker, const ThreadData* thread )
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: TimelineItem( view, worker )
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, m_thread( thread )
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, m_ghost( false )
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{
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auto name = worker.GetThreadName( thread->id );
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if( strncmp( name, "Tracy ", 6 ) == 0 )
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{
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m_showFull = false;
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}
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}
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bool TimelineItemThread::IsEmpty() const
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{
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auto& crash = m_worker.GetCrashEvent();
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return crash.thread != m_thread->id &&
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m_thread->timeline.empty() &&
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m_thread->messages.empty() &&
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m_thread->ghostZones.empty();
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}
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uint32_t TimelineItemThread::HeaderColor() const
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{
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auto& crash = m_worker.GetCrashEvent();
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if( crash.thread == m_thread->id ) return 0xFF2222FF;
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if( m_thread->isFiber ) return 0xFF88FF88;
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return 0xFFFFFFFF;
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}
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uint32_t TimelineItemThread::HeaderColorInactive() const
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{
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auto& crash = m_worker.GetCrashEvent();
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if( crash.thread == m_thread->id ) return 0xFF111188;
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if( m_thread->isFiber ) return 0xFF448844;
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return 0xFF888888;
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}
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uint32_t TimelineItemThread::HeaderLineColor() const
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{
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return 0x33FFFFFF;
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}
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const char* TimelineItemThread::HeaderLabel() const
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{
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return m_worker.GetThreadName( m_thread->id );
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}
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int64_t TimelineItemThread::RangeBegin() const
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{
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int64_t first = std::numeric_limits<int64_t>::max();
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const auto ctx = m_worker.GetContextSwitchData( m_thread->id );
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if( ctx && !ctx->v.empty() )
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{
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first = ctx->v.begin()->Start();
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}
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if( !m_thread->timeline.empty() )
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{
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if( m_thread->timeline.is_magic() )
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{
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auto& tl = *((Vector<ZoneEvent>*)&m_thread->timeline);
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first = std::min( first, tl.front().Start() );
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}
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else
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{
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first = std::min( first, m_thread->timeline.front()->Start() );
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}
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}
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if( !m_thread->messages.empty() )
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{
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first = std::min( first, m_thread->messages.front()->time );
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}
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for( const auto& lock : m_worker.GetLockMap() )
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{
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const auto& lockmap = *lock.second;
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if( !lockmap.valid ) continue;
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auto it = lockmap.threadMap.find( m_thread->id );
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if( it == lockmap.threadMap.end() ) continue;
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const auto thread = it->second;
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auto lptr = lockmap.timeline.data();
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while( lptr->ptr->thread != thread ) lptr++;
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if( lptr->ptr->Time() < first ) first = lptr->ptr->Time();
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}
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return first;
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}
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int64_t TimelineItemThread::RangeEnd() const
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{
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int64_t last = -1;
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const auto ctx = m_worker.GetContextSwitchData( m_thread->id );
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if( ctx && !ctx->v.empty() )
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{
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const auto& back = ctx->v.back();
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last = back.IsEndValid() ? back.End() : back.Start();
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}
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if( !m_thread->timeline.empty() )
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{
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if( m_thread->timeline.is_magic() )
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{
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auto& tl = *((Vector<ZoneEvent>*)&m_thread->timeline);
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last = std::max( last, m_worker.GetZoneEnd( tl.back() ) );
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}
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else
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{
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last = std::max( last, m_worker.GetZoneEnd( *m_thread->timeline.back() ) );
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}
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}
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if( !m_thread->messages.empty() )
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{
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last = std::max( last, m_thread->messages.back()->time );
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}
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for( const auto& lock : m_worker.GetLockMap() )
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{
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const auto& lockmap = *lock.second;
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if( !lockmap.valid ) continue;
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auto it = lockmap.threadMap.find( m_thread->id );
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if( it == lockmap.threadMap.end() ) continue;
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const auto thread = it->second;
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auto eptr = lockmap.timeline.data() + lockmap.timeline.size() - 1;
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while( eptr->ptr->thread != thread ) eptr--;
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if( eptr->ptr->Time() > last ) last = eptr->ptr->Time();
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}
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return last;
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}
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void TimelineItemThread::HeaderTooltip( const char* label ) const
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{
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m_view.HighlightThread( m_thread->id );
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ImGui::BeginTooltip();
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SmallColorBox( GetThreadColor( m_thread->id, 0, m_view.GetViewData().dynamicColors ) );
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ImGui::SameLine();
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ImGui::TextUnformatted( m_worker.GetThreadName( m_thread->id ) );
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ImGui::SameLine();
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ImGui::TextDisabled( "(%s)", RealToString( m_thread->id ) );
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auto& crash = m_worker.GetCrashEvent();
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if( crash.thread == m_thread->id )
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{
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ImGui::SameLine();
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TextColoredUnformatted( ImVec4( 1.f, 0.2f, 0.2f, 1.f ), ICON_FA_SKULL " Crashed" );
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}
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if( m_thread->isFiber )
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{
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ImGui::SameLine();
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TextColoredUnformatted( ImVec4( 0.2f, 0.6f, 0.2f, 1.f ), "Fiber" );
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}
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const auto ctx = m_worker.GetContextSwitchData( m_thread->id );
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const auto first = RangeBegin();
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const auto last = RangeEnd();
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ImGui::Separator();
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size_t lockCnt = 0;
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for( const auto& lock : m_worker.GetLockMap() )
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{
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const auto& lockmap = *lock.second;
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if( !lockmap.valid ) continue;
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auto it = lockmap.threadMap.find( m_thread->id );
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if( it == lockmap.threadMap.end() ) continue;
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lockCnt++;
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}
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if( last >= 0 )
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{
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const auto lifetime = last - first;
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const auto traceLen = m_worker.GetLastTime();
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TextFocused( "Appeared at", TimeToString( first ) );
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TextFocused( "Last event at", TimeToString( last ) );
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TextFocused( "Lifetime:", TimeToString( lifetime ) );
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ImGui::SameLine();
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char buf[64];
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PrintStringPercent( buf, lifetime / double( traceLen ) * 100 );
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TextDisabledUnformatted( buf );
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if( ctx )
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{
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TextFocused( "Time in running state:", TimeToString( ctx->runningTime ) );
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ImGui::SameLine();
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PrintStringPercent( buf, ctx->runningTime / double( lifetime ) * 100 );
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TextDisabledUnformatted( buf );
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}
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}
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ImGui::Separator();
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if( !m_thread->timeline.empty() )
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{
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TextFocused( "Zone count:", RealToString( m_thread->count ) );
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TextFocused( "Top-level zones:", RealToString( m_thread->timeline.size() ) );
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}
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if( !m_thread->messages.empty() )
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{
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TextFocused( "Messages:", RealToString( m_thread->messages.size() ) );
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}
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if( lockCnt != 0 )
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{
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TextFocused( "Locks:", RealToString( lockCnt ) );
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}
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if( ctx )
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{
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TextFocused( "Running state regions:", RealToString( ctx->v.size() ) );
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}
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if( !m_thread->samples.empty() )
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{
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TextFocused( "Call stack samples:", RealToString( m_thread->samples.size() ) );
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if( m_thread->kernelSampleCnt != 0 )
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{
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TextFocused( "Kernel samples:", RealToString( m_thread->kernelSampleCnt ) );
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ImGui::SameLine();
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ImGui::TextDisabled( "(%.2f%%)", 100.f * m_thread->kernelSampleCnt / m_thread->samples.size() );
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}
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}
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ImGui::EndTooltip();
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}
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void TimelineItemThread::HeaderExtraContents( int offset, const ImVec2& wpos, float labelWidth, double pxns, bool hover )
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{
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m_view.DrawThreadMessages( *m_thread, pxns, offset, wpos, hover );
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#ifndef TRACY_NO_STATISTICS
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const bool hasGhostZones = m_worker.AreGhostZonesReady() && !m_thread->ghostZones.empty();
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if( hasGhostZones && !m_thread->timeline.empty() )
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{
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auto draw = ImGui::GetWindowDrawList();
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const auto ty = ImGui::GetTextLineHeight();
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const auto color = m_ghost ? 0xFFAA9999 : 0x88AA7777;
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draw->AddText( wpos + ImVec2( 1.5f * ty + labelWidth, offset ), color, ICON_FA_GHOST );
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float ghostSz = ImGui::CalcTextSize( ICON_FA_GHOST ).x;
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if( hover && ImGui::IsMouseHoveringRect( wpos + ImVec2( 1.5f * ty + labelWidth, offset ), wpos + ImVec2( 1.5f * ty + labelWidth + ghostSz, offset + ty ) ) )
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{
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if( IsMouseClicked( 0 ) )
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{
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m_ghost = !m_ghost;
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}
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}
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}
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#endif
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}
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bool TimelineItemThread::DrawContents( double pxns, int& offset, const ImVec2& wpos, bool hover, float yMin, float yMax )
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{
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const auto res = m_view.DrawThread( *m_thread, pxns, offset, wpos, hover, yMin, yMax, m_ghost );
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if( !res )
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{
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auto& crash = m_worker.GetCrashEvent();
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return crash.thread == m_thread->id;
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}
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return true;
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}
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void TimelineItemThread::DrawOverlay( const ImVec2& ul, const ImVec2& dr )
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{
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m_view.DrawThreadOverlays( *m_thread, ul, dr );
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}
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}
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