mirror of
https://github.com/paboyle/Grid.git
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19b527e83f
access. GPU redirects through builtin float2, double2 for complex
213 lines
7.9 KiB
C++
213 lines
7.9 KiB
C++
/*************************************************************************************
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Grid physics library, www.github.com/paboyle/Grid
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Source file: ./lib/tensors/Tensor_extract_merge.h
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Copyright (C) 2015
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Author: Azusa Yamaguchi <ayamaguc@staffmail.ed.ac.uk>
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Author: Peter Boyle <paboyle@ph.ed.ac.uk>
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Author: neo <cossu@post.kek.jp>
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Author: paboyle <paboyle@ph.ed.ac.uk>
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Author: Christopher Kelly <ckelly@phys.columbia.edu>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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See the full license in the file "LICENSE" in the top level distribution directory
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*************************************************************************************/
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/* END LEGAL */
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#pragma once
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#include <string.h>
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//#pragma GCC optimize("no-strict-aliasing")
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NAMESPACE_BEGIN(Grid);
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/////////////////////////////////////////////////////////////////
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// Generic extract/merge/permute
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/////////////////////////////////////////////////////////////////
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template<class __T> using ExtractPointerArray = AcceleratorVector<__T *,GRID_MAX_SIMD>;
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template<class __T> using ExtractBuffer = AcceleratorVector<__T ,GRID_MAX_SIMD>;
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//void extract(const vobj &vec,ExtractBuffer<typename vobj::scalar_object> &extracted);
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//void extract(const vobj &vec,ExtractPointerArray<sobj> &extracted, int offset);
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//void merge(vobj &vec,ExtractBuffer<typename vobj::scalar_object> &extracted)
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//void merge(vobj &vec,ExtractPointerArray<typename vobj::scalar_object> &extracted)
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////////////////////////////////////////////////////////////////////////
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// Extract to contiguous array scalar object
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////////////////////////////////////////////////////////////////////////
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template<class vobj,class sobj> accelerator
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void extract(const vobj &vec,ExtractBuffer<sobj> &extracted)
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{
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typedef typename GridTypeMapper<sobj>::scalar_type sobj_scalar_type;
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typedef typename GridTypeMapper<vobj>::scalar_type scalar_type;
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typedef typename GridTypeMapper<vobj>::vector_type vector_type;
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const int words=sizeof(vobj)/sizeof(vector_type);
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const int Nsimd=vector_type::Nsimd();
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const int Nextr=extracted.size();
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const int s=Nsimd/Nextr;
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sobj_scalar_type *sp = (sobj_scalar_type *) &extracted[0];
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scalar_type *vp = (scalar_type *)&vec;
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scalar_type vtmp;
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sobj_scalar_type stmp;
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for(int w=0;w<words;w++){
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for(int i=0;i<Nextr;i++){
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memcpy((char *)&vtmp,(char *)&vp[w*Nsimd+i*s],sizeof(vtmp));
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stmp = vtmp;
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memcpy((char *)&sp[i*words+w],(char *)&stmp,sizeof(stmp));
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}
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}
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return;
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}
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////////////////////////////////////////////////////////////////////////
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// Merge a contiguous array of scalar objects
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////////////////////////////////////////////////////////////////////////
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template<class vobj,class sobj> accelerator
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void merge(vobj &vec,ExtractBuffer<sobj> &extracted)
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{
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typedef typename GridTypeMapper<sobj>::scalar_type sobj_scalar_type;
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typedef typename GridTypeMapper<vobj>::scalar_type scalar_type;
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typedef typename GridTypeMapper<vobj>::vector_type vector_type;
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const int words=sizeof(vobj)/sizeof(vector_type);
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const int Nsimd=vector_type::Nsimd();
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const int Nextr = extracted.size();
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const int s=Nsimd/Nextr;
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sobj_scalar_type *sp = (sobj_scalar_type *)&extracted[0];
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scalar_type *vp = (scalar_type *)&vec;
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scalar_type vtmp;
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sobj_scalar_type stmp;
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for(int w=0;w<words;w++){
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for(int i=0;i<Nextr;i++){
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for(int ii=0;ii<s;ii++){
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memcpy((char *)&stmp,(char *)&sp[i*words+w],sizeof(stmp));
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vtmp = stmp;
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memcpy((char *)&vp[w*Nsimd+i*s+ii],(char *)&vtmp,sizeof(vtmp));
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}
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}
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}
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}
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////////////////////////////////////////////////////////////////////////
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// Extract/Insert a single lane
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////////////////////////////////////////////////////////////////////////
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template<class vobj> accelerator_inline
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typename vobj::scalar_object extractLane(int lane, const vobj & __restrict__ vec)
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{
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typedef typename vobj::scalar_type scalar_type;
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typedef typename vobj::scalar_object scalar_object;
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typedef typename vobj::vector_type vector_type;
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typedef typename ExtractTypeMap<scalar_type>::extract_type extract_type;
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typedef extract_type * pointer;
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constexpr int words=sizeof(vobj)/sizeof(vector_type);
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constexpr int Nsimd=vector_type::Nsimd();
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scalar_object extracted;
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pointer __restrict__ sp = (pointer)&extracted; // Type pun
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pointer __restrict__ vp = (pointer)&vec;
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for(int w=0;w<words;w++){
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sp[w]=vp[w*Nsimd+lane];
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}
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return extracted;
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}
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template<class vobj> accelerator_inline
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void insertLane(int lane, vobj & __restrict__ vec,const typename vobj::scalar_object & __restrict__ extracted)
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{
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typedef typename vobj::vector_type vector_type;
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typedef typename vector_type::scalar_type scalar_type;
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typedef typename ExtractTypeMap<scalar_type>::extract_type extract_type;
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typedef extract_type * pointer;
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constexpr int words=sizeof(vobj)/sizeof(vector_type);
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constexpr int Nsimd=vector_type::Nsimd();
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pointer __restrict__ sp = (pointer)&extracted;
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pointer __restrict__ vp = (pointer)&vec;
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for(int w=0;w<words;w++){
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vp[w*Nsimd+lane]=sp[w];
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}
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}
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////////////////////////////////////////////////////////////////////////
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// Extract to a bunch of scalar object pointers of different scalar type, with offset. Useful for precision change
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////////////////////////////////////////////////////////////////////////
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template<class vobj, class sobj> accelerator
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void extract(const vobj &vec,ExtractPointerArray<sobj> &extracted, int offset)
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{
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typedef typename GridTypeMapper<sobj>::scalar_type sobj_scalar_type;
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typedef typename GridTypeMapper<vobj>::scalar_type scalar_type;
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typedef typename GridTypeMapper<vobj>::vector_type vector_type;
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const int words=sizeof(vobj)/sizeof(vector_type);
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const int Nsimd=vector_type::Nsimd();
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const int Nextr=extracted.size();
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const int s = Nsimd/Nextr;
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scalar_type * vp = (scalar_type *)&vec;
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scalar_type vtmp;
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sobj_scalar_type stmp;
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for(int w=0;w<words;w++){
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for(int i=0;i<Nextr;i++){
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sobj_scalar_type * pointer = (sobj_scalar_type *)& extracted[i][offset];
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memcpy((char *)&vtmp,(char *)&vp[w*Nsimd+i*s],sizeof(vtmp));
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stmp = vtmp;
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memcpy((char *)&pointer[w],(char *)&stmp,sizeof(stmp)); // may do a precision conversion
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}
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}
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}
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////////////////////////////////////////////////////////////////////////
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// Merge bunch of scalar object pointers of different scalar type, with offset. Useful for precision change
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////////////////////////////////////////////////////////////////////////
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template<class vobj, class sobj> accelerator
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void merge(vobj &vec,ExtractPointerArray<sobj> &extracted, int offset)
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{
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typedef typename GridTypeMapper<sobj>::scalar_type sobj_scalar_type;
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typedef typename GridTypeMapper<vobj>::scalar_type scalar_type;
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typedef typename GridTypeMapper<vobj>::vector_type vector_type;
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const int words=sizeof(vobj)/sizeof(vector_type);
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const int Nsimd=vector_type::Nsimd();
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const int Nextr=extracted.size();
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const int s = Nsimd/Nextr;
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scalar_type * vp = (scalar_type *)&vec;
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scalar_type vtmp;
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sobj_scalar_type stmp;
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for(int w=0;w<words;w++){
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for(int i=0;i<Nextr;i++){
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sobj_scalar_type * pointer = (sobj_scalar_type *)& extracted[i][offset];
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for(int ii=0;ii<s;ii++){
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memcpy((char *)&stmp,(char *)&pointer[w],sizeof(stmp));
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vtmp=stmp;
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memcpy((char *)&vp[w*Nsimd+i*s+ii],(char *)&vtmp,sizeof(vtmp));
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}
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}
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}
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}
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NAMESPACE_END(Grid);
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