mirror of
https://github.com/wolfpld/tracy.git
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220 lines
7.5 KiB
C++
220 lines
7.5 KiB
C++
#ifndef __TRACYOPENGL_HPP__
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#define __TRACYOPENGL_HPP__
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// Include this file after you include OpenGL 3.2 headers.
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#if !defined TRACY_ENABLE || defined __APPLE__
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#define TracyGpuContext
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#define TracyGpuZone(x)
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#define TracyGpuZoneC(x,y)
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#define TracyGpuCollect
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#define TracyGpuZoneS(x,y)
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#define TracyGpuZoneCS(x,y,z)
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#else
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#include <atomic>
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#include <assert.h>
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#include <stdlib.h>
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#include "Tracy.hpp"
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#include "client/TracyProfiler.hpp"
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#include "client/TracyCallstack.hpp"
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#include "common/TracyAlign.hpp"
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#include "common/TracyAlloc.hpp"
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#define TracyGpuContext tracy::s_gpuCtx.ptr = (tracy::GpuCtx*)tracy::tracy_malloc( sizeof( tracy::GpuCtx ) ); new(tracy::s_gpuCtx.ptr) tracy::GpuCtx;
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#define TracyGpuZone( name ) static const tracy::SourceLocation __tracy_gpu_source_location { name, __FUNCTION__, __FILE__, (uint32_t)__LINE__, 0 }; tracy::GpuCtxScope ___tracy_gpu_zone( &__tracy_gpu_source_location );
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#define TracyGpuZoneC( name, color ) static const tracy::SourceLocation __tracy_gpu_source_location { name, __FUNCTION__, __FILE__, (uint32_t)__LINE__, color }; tracy::GpuCtxScope ___tracy_gpu_zone( &__tracy_gpu_source_location );
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#define TracyGpuCollect tracy::s_gpuCtx.ptr->Collect();
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#ifdef TRACY_HAS_CALLSTACK
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# define TracyGpuZoneS( name, depth ) static const tracy::SourceLocation __tracy_gpu_source_location { name, __FUNCTION__, __FILE__, (uint32_t)__LINE__, 0 }; tracy::GpuCtxScope ___tracy_gpu_zone( &__tracy_gpu_source_location, depth );
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# define TracyGpuZoneCS( name, color, depth ) static const tracy::SourceLocation __tracy_gpu_source_location { name, __FUNCTION__, __FILE__, (uint32_t)__LINE__, color }; tracy::GpuCtxScope ___tracy_gpu_zone( &__tracy_gpu_source_location, depth );
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#else
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# define TracyGpuZoneS( name, depth ) TracyGpuZone( name )
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# define TracyGpuZoneCS( name, color, depth ) TracyGpuZoneC( name, color )
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#endif
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namespace tracy
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{
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extern std::atomic<uint8_t> s_gpuCtxCounter;
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class GpuCtx
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{
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friend class GpuCtxScope;
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enum { QueryCount = 64 * 1024 };
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public:
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GpuCtx()
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: m_context( s_gpuCtxCounter.fetch_add( 1, std::memory_order_relaxed ) )
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, m_head( 0 )
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, m_tail( 0 )
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{
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assert( m_context != 255 );
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glGenQueries( QueryCount, m_query );
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int64_t tgpu;
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glGetInteger64v( GL_TIMESTAMP, &tgpu );
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int64_t tcpu = Profiler::GetTime();
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GLint bits;
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glGetQueryiv( GL_TIMESTAMP, GL_QUERY_COUNTER_BITS, &bits );
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const float period = 1.f;
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Magic magic;
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auto& token = s_token.ptr;
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auto& tail = token->get_tail_index();
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auto item = token->enqueue_begin<moodycamel::CanAlloc>( magic );
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MemWrite( &item->hdr.type, QueueType::GpuNewContext );
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MemWrite( &item->gpuNewContext.cpuTime, tcpu );
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MemWrite( &item->gpuNewContext.gpuTime, tgpu );
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MemWrite( &item->gpuNewContext.thread, GetThreadHandle() );
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MemWrite( &item->gpuNewContext.period, period );
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MemWrite( &item->gpuNewContext.context, m_context );
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MemWrite( &item->gpuNewContext.accuracyBits, (uint8_t)bits );
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tail.store( magic + 1, std::memory_order_release );
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}
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void Collect()
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{
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ZoneScopedC( Color::Red4 );
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auto start = m_tail;
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auto end = m_head + QueryCount;
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auto cnt = ( end - start ) % QueryCount;
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while( cnt > 1 )
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{
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auto mid = start + cnt / 2;
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GLint available;
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glGetQueryObjectiv( m_query[mid % QueryCount], GL_QUERY_RESULT_AVAILABLE, &available );
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if( available )
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{
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start = mid;
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}
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else
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{
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end = mid;
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}
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cnt = ( end - start ) % QueryCount;
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}
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start %= QueryCount;
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Magic magic;
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auto& token = s_token.ptr;
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auto& tail = token->get_tail_index();
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while( m_tail != start )
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{
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uint64_t time;
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glGetQueryObjectui64v( m_query[m_tail], GL_QUERY_RESULT, &time );
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auto item = token->enqueue_begin<moodycamel::CanAlloc>( magic );
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MemWrite( &item->hdr.type, QueueType::GpuTime );
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MemWrite( &item->gpuTime.gpuTime, (int64_t)time );
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MemWrite( &item->gpuTime.queryId, (uint16_t)m_tail );
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MemWrite( &item->gpuTime.context, m_context );
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tail.store( magic + 1, std::memory_order_release );
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m_tail = ( m_tail + 1 ) % QueryCount;
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}
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}
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private:
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tracy_force_inline unsigned int NextQueryId()
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{
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const auto id = m_head;
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m_head = ( m_head + 1 ) % QueryCount;
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assert( m_head != m_tail );
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return id;
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}
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tracy_force_inline unsigned int TranslateOpenGlQueryId( unsigned int id )
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{
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return m_query[id];
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}
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tracy_force_inline uint8_t GetId() const
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{
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return m_context;
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}
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unsigned int m_query[QueryCount];
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uint8_t m_context;
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unsigned int m_head;
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unsigned int m_tail;
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};
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extern thread_local GpuCtxWrapper s_gpuCtx;
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class GpuCtxScope
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{
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public:
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tracy_force_inline GpuCtxScope( const SourceLocation* srcloc )
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{
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const auto queryId = s_gpuCtx.ptr->NextQueryId();
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glQueryCounter( s_gpuCtx.ptr->TranslateOpenGlQueryId( queryId ), GL_TIMESTAMP );
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Magic magic;
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auto& token = s_token.ptr;
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auto& tail = token->get_tail_index();
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auto item = token->enqueue_begin<moodycamel::CanAlloc>( magic );
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MemWrite( &item->hdr.type, QueueType::GpuZoneBegin );
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MemWrite( &item->gpuZoneBegin.cpuTime, Profiler::GetTime() );
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MemWrite( &item->gpuZoneBegin.srcloc, (uint64_t)srcloc );
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memset( &item->gpuZoneBegin.thread, 0, sizeof( item->gpuZoneBegin.thread ) );
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MemWrite( &item->gpuZoneBegin.queryId, uint16_t( queryId ) );
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MemWrite( &item->gpuZoneBegin.context, s_gpuCtx.ptr->GetId() );
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tail.store( magic + 1, std::memory_order_release );
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}
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tracy_force_inline GpuCtxScope( const SourceLocation* srcloc, int depth )
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{
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const auto queryId = s_gpuCtx.ptr->NextQueryId();
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glQueryCounter( s_gpuCtx.ptr->TranslateOpenGlQueryId( queryId ), GL_TIMESTAMP );
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const auto thread = GetThreadHandle();
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Magic magic;
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auto& token = s_token.ptr;
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auto& tail = token->get_tail_index();
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auto item = token->enqueue_begin<moodycamel::CanAlloc>( magic );
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MemWrite( &item->hdr.type, QueueType::GpuZoneBeginCallstack );
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MemWrite( &item->gpuZoneBegin.cpuTime, Profiler::GetTime() );
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MemWrite( &item->gpuZoneBegin.srcloc, (uint64_t)srcloc );
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MemWrite( &item->gpuZoneBegin.thread, thread );
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MemWrite( &item->gpuZoneBegin.queryId, uint16_t( queryId ) );
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MemWrite( &item->gpuZoneBegin.context, s_gpuCtx.ptr->GetId() );
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tail.store( magic + 1, std::memory_order_release );
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s_profiler.SendCallstack( depth, thread );
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}
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tracy_force_inline ~GpuCtxScope()
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{
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const auto queryId = s_gpuCtx.ptr->NextQueryId();
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glQueryCounter( s_gpuCtx.ptr->TranslateOpenGlQueryId( queryId ), GL_TIMESTAMP );
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Magic magic;
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auto& token = s_token.ptr;
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auto& tail = token->get_tail_index();
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auto item = token->enqueue_begin<moodycamel::CanAlloc>( magic );
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MemWrite( &item->hdr.type, QueueType::GpuZoneEnd );
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MemWrite( &item->gpuZoneEnd.cpuTime, Profiler::GetTime() );
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MemWrite( &item->gpuZoneEnd.queryId, uint16_t( queryId ) );
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MemWrite( &item->gpuZoneEnd.context, s_gpuCtx.ptr->GetId() );
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tail.store( magic + 1, std::memory_order_release );
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}
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};
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}
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#endif
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#endif
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