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https://github.com/Ragora/T2-CPP.git
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170 lines
4.9 KiB
C++
170 lines
4.9 KiB
C++
/*
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Bullet Continuous Collision Detection and Physics Library
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Copyright (c) 2003-2006 Erwin Coumans http://continuousphysics.com/Bullet/
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This software is provided 'as-is', without any express or implied warranty.
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In no event will the authors be held liable for any damages arising from the use of this software.
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Permission is granted to anyone to use this software for any purpose,
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including commercial applications, and to alter it and redistribute it freely,
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subject to the following restrictions:
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1. The origin of this software must not be misrepresented; you must not claim that you wrote the original software. If you use this software in a product, an acknowledgment in the product documentation would be appreciated but is not required.
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2. Altered source versions must be plainly marked as such, and must not be misrepresented as being the original software.
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3. This notice may not be removed or altered from any source distribution.
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*/
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#include "BulletMultiThreaded/GpuSoftBodySolvers/Shared/btSoftBodySolverData.h"
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#include "btSoftBodySolverBuffer_OpenCL.h"
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#ifndef BT_SOFT_BODY_SOLVER_LINK_DATA_OPENCL_SIMDAWARE_H
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#define BT_SOFT_BODY_SOLVER_LINK_DATA_OPENCL_SIMDAWARE_H
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class btSoftBodyLinkDataOpenCLSIMDAware : public btSoftBodyLinkData
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{
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public:
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bool m_onGPU;
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cl_command_queue m_cqCommandQue;
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const int m_wavefrontSize;
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const int m_linksPerWorkItem;
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const int m_maxLinksPerWavefront;
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int m_maxBatchesWithinWave;
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int m_maxVerticesWithinWave;
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int m_numWavefronts;
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int m_maxVertex;
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struct NumBatchesVerticesPair
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{
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int numBatches;
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int numVertices;
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};
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btAlignedObjectArray<int> m_linksPerWavefront;
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btAlignedObjectArray<NumBatchesVerticesPair> m_numBatchesAndVerticesWithinWaves;
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btOpenCLBuffer< NumBatchesVerticesPair > m_clNumBatchesAndVerticesWithinWaves;
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// All arrays here will contain batches of m_maxLinksPerWavefront links
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// ordered by wavefront.
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// with either global vertex pairs or local vertex pairs
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btAlignedObjectArray< int > m_wavefrontVerticesGlobalAddresses; // List of global vertices per wavefront
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btOpenCLBuffer<int> m_clWavefrontVerticesGlobalAddresses;
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btAlignedObjectArray< LinkNodePair > m_linkVerticesLocalAddresses; // Vertex pair for the link
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btOpenCLBuffer<LinkNodePair> m_clLinkVerticesLocalAddresses;
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btOpenCLBuffer<float> m_clLinkStrength;
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btOpenCLBuffer<float> m_clLinksMassLSC;
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btOpenCLBuffer<float> m_clLinksRestLengthSquared;
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btOpenCLBuffer<float> m_clLinksRestLength;
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btOpenCLBuffer<float> m_clLinksMaterialLinearStiffnessCoefficient;
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struct BatchPair
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{
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int start;
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int length;
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BatchPair() :
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start(0),
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length(0)
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{
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}
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BatchPair( int s, int l ) :
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start( s ),
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length( l )
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{
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}
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};
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/**
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* Link addressing information for each cloth.
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* Allows link locations to be computed independently of data batching.
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*/
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btAlignedObjectArray< int > m_linkAddresses;
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/**
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* Start and length values for computation batches over link data.
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*/
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btAlignedObjectArray< BatchPair > m_wavefrontBatchStartLengths;
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btSoftBodyLinkDataOpenCLSIMDAware(cl_command_queue queue, cl_context ctx);
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virtual ~btSoftBodyLinkDataOpenCLSIMDAware();
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/** Allocate enough space in all link-related arrays to fit numLinks links */
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virtual void createLinks( int numLinks );
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/** Insert the link described into the correct data structures assuming space has already been allocated by a call to createLinks */
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virtual void setLinkAt(
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const LinkDescription &link,
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int linkIndex );
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virtual bool onAccelerator();
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virtual bool moveToAccelerator();
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virtual bool moveFromAccelerator();
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/**
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* Generate (and later update) the batching for the entire link set.
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* This redoes a lot of work because it batches the entire set when each cloth is inserted.
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* In theory we could delay it until just before we need the cloth.
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* It's a one-off overhead, though, so that is a later optimisation.
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*/
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void generateBatches();
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int getMaxVerticesPerWavefront()
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{
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return m_maxVerticesWithinWave;
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}
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int getWavefrontSize()
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{
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return m_wavefrontSize;
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}
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int getLinksPerWorkItem()
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{
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return m_linksPerWorkItem;
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}
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int getMaxLinksPerWavefront()
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{
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return m_maxLinksPerWavefront;
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}
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int getMaxBatchesPerWavefront()
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{
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return m_maxBatchesWithinWave;
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}
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int getNumWavefronts()
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{
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return m_numWavefronts;
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}
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NumBatchesVerticesPair getNumBatchesAndVerticesWithinWavefront( int wavefront )
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{
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return m_numBatchesAndVerticesWithinWaves[wavefront];
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}
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int getVertexGlobalAddresses( int vertexIndex )
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{
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return m_wavefrontVerticesGlobalAddresses[vertexIndex];
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}
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/**
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* Get post-batching local addresses of the vertex pair for a link assuming all vertices used by a wavefront are loaded locally.
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*/
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LinkNodePair getVertexPairLocalAddresses( int linkIndex )
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{
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return m_linkVerticesLocalAddresses[linkIndex];
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}
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};
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#endif // #ifndef BT_SOFT_BODY_SOLVER_LINK_DATA_OPENCL_SIMDAWARE_H
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