352 lines
12 KiB
C++
352 lines
12 KiB
C++
/***************************************************************************
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tersoff.cpp
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-------------------
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Trung Dac Nguyen
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Class for acceleration of the tersoff pair style.
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__________________________________________________________________________
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This file is part of the LAMMPS Accelerator Library (LAMMPS_AL)
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__________________________________________________________________________
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begin : Thu April 17, 2014
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email : ndactrung@gmail.com
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***************************************************************************/
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#if defined(USE_OPENCL)
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#include "tersoff_cl.h"
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#elif defined(USE_CUDART)
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const char *tersoff=0;
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#else
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#include "tersoff_cubin.h"
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#endif
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#include "lal_tersoff.h"
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#include <cassert>
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namespace LAMMPS_AL {
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#define TersoffT Tersoff<numtyp, acctyp>
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extern Device<PRECISION,ACC_PRECISION> device;
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template <class numtyp, class acctyp>
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TersoffT::Tersoff() : BaseThree<numtyp,acctyp>(), _allocated(false) {
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}
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template <class numtyp, class acctyp>
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TersoffT::~Tersoff() {
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clear();
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}
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template <class numtyp, class acctyp>
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int TersoffT::bytes_per_atom(const int max_nbors) const {
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return this->bytes_per_atom_atomic(max_nbors)+max_nbors*sizeof(acctyp)*4;
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}
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template <class numtyp, class acctyp>
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int TersoffT::init(const int ntypes, const int nlocal, const int nall, const int max_nbors,
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const double cell_size, const double gpu_split, FILE *_screen,
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int* host_map, const int nelements, int*** host_elem2param, const int nparams,
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const double* lam1, const double* lam2, const double* lam3,const double* powermint,
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const double* biga, const double* bigb, const double* bigr, const double* bigd,
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const double* c1, const double* c2, const double* c3, const double* c4,
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const double* c, const double* d, const double* h, const double* gamma,
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const double* beta, const double* powern, const double* host_cutsq)
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{
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int oldparam=-1;
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int onetype=-1;
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int onetype3=0;
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int spq=0;
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int mtypes=0;
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#ifdef USE_OPENCL
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for (int ii=1; ii<ntypes; ii++) {
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const int i=host_map[ii];
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for (int jj=1; jj<ntypes; jj++) {
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const int j=host_map[jj];
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for (int kk=1; kk<ntypes; kk++) {
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const int k=host_map[kk];
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if (i<0 || j<0 || k<0) continue;
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const int ijkparam = host_elem2param[i][j][k];
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if (oldparam!=ijkparam) {
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oldparam=ijkparam;
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onetype=ntypes*ii+jj;
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onetype3=ijkparam;
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mtypes++;
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}
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}
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}
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}
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if (mtypes>1) onetype=-1;
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if (onetype>=0) spq=powermint[onetype3];
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#endif
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int success;
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success=this->init_three(nlocal,nall,max_nbors,0,cell_size,gpu_split,
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_screen,tersoff,"k_tersoff_repulsive",
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"k_tersoff_three_center", "k_tersoff_three_end",
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"k_tersoff_short_nbor",onetype,onetype3,spq,1);
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if (success!=0)
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return success;
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int ef_nall=nall;
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if (ef_nall==0)
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ef_nall=2000;
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if (this->nbor->max_nbors()) {
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_zetaij.alloc(ef_nall*this->nbor->max_nbors(),*(this->ucl_device),
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UCL_READ_WRITE);
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_zetaij_eng.alloc(ef_nall*this->nbor->max_nbors(),*(this->ucl_device),
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UCL_READ_WRITE);
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}
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k_zeta.set_function(*(this->pair_program),"k_tersoff_zeta");
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#if defined(LAL_OCL_EV_JIT)
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k_zeta_noev.set_function(*(this->pair_program_noev),"k_tersoff_zeta");
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#else
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k_zeta_selt = &k_zeta;
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#endif
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_ntypes=ntypes;
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_nparams = nparams;
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_nelements = nelements;
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_cutsq_max=0.0;
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for (int ii=1; ii<ntypes; ii++) {
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const int i=host_map[ii];
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for (int jj=1; jj<ntypes; jj++) {
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const int j=host_map[jj];
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for (int kk=1; kk<ntypes; kk++) {
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const int k=host_map[kk];
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if (i<0 || j<0 || k<0) continue;
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const int ijkparam = host_elem2param[i][j][k];
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if (host_cutsq[ijkparam]>_cutsq_max) _cutsq_max=host_cutsq[ijkparam];
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}
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}
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}
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// --------------------------------------------------------------------
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UCL_H_Vec<numtyp4> dview(nparams,*(this->ucl_device),
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UCL_WRITE_ONLY);
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for (int i=0; i<nparams; i++) {
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dview[i].x=(numtyp)0;
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dview[i].y=(numtyp)0;
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dview[i].z=(numtyp)0;
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dview[i].w=(numtyp)0;
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}
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// pack coefficients into arrays
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// pack coefficients into arrays
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ts1.alloc(nparams,*(this->ucl_device),UCL_READ_ONLY);
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for (int i=0; i<nparams; i++) {
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dview[i].x=static_cast<numtyp>(lam3[i]);
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dview[i].y=static_cast<numtyp>(powermint[i]);
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dview[i].z=static_cast<numtyp>(bigr[i]);
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dview[i].w=static_cast<numtyp>(bigd[i]);
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}
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ucl_copy(ts1,dview,false);
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ts2.alloc(nparams,*(this->ucl_device),UCL_READ_ONLY);
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for (int i=0; i<nparams; i++) {
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dview[i].x=static_cast<numtyp>(biga[i]);
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dview[i].y=static_cast<numtyp>(lam1[i]);
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dview[i].z=static_cast<numtyp>(bigr[i]);
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dview[i].w=static_cast<numtyp>(bigd[i]);
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}
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ucl_copy(ts2,dview,false);
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ts3.alloc(nparams,*(this->ucl_device),UCL_READ_ONLY);
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for (int i=0; i<nparams; i++) {
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dview[i].x=static_cast<numtyp>(c1[i]);
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dview[i].y=static_cast<numtyp>(c2[i]);
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dview[i].z=static_cast<numtyp>(c3[i]);
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dview[i].w=static_cast<numtyp>(c4[i]);
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}
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ucl_copy(ts3,dview,false);
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ts4.alloc(nparams,*(this->ucl_device),UCL_READ_ONLY);
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for (int i=0; i<nparams; i++) {
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dview[i].x=static_cast<numtyp>(c[i]*c[i]);
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dview[i].y=static_cast<numtyp>(d[i]*d[i]);
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dview[i].z=static_cast<numtyp>(h[i]);
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dview[i].w=static_cast<numtyp>(gamma[i]);
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}
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ucl_copy(ts4,dview,false);
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ts5.alloc(nparams,*(this->ucl_device),UCL_READ_ONLY);
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for (int i=0; i<nparams; i++) {
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dview[i].x=static_cast<numtyp>(beta[i]);
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dview[i].y=static_cast<numtyp>(powern[i]);
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dview[i].z=static_cast<numtyp>(lam2[i]);
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dview[i].w=static_cast<numtyp>(bigb[i]);
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}
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ucl_copy(ts5,dview,false);
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UCL_H_Vec<int> dview_elem2param(nelements*nelements*nelements,
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*(this->ucl_device), UCL_WRITE_ONLY);
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elem2param.alloc(nelements*nelements*nelements,*(this->ucl_device),
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UCL_READ_ONLY);
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for (int i = 0; i < nelements; i++)
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for (int j = 0; j < nelements; j++)
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for (int k = 0; k < nelements; k++) {
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int idx = i*nelements*nelements+j*nelements+k;
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dview_elem2param[idx] = host_elem2param[i][j][k];
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}
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ucl_copy(elem2param,dview_elem2param,false);
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UCL_H_Vec<int> dview_map(ntypes, *(this->ucl_device), UCL_WRITE_ONLY);
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for (int i = 0; i < ntypes; i++)
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dview_map[i] = host_map[i];
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map.alloc(ntypes,*(this->ucl_device), UCL_READ_ONLY);
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ucl_copy(map,dview_map,false);
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_allocated=true;
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this->_max_bytes=ts1.row_bytes()+ts2.row_bytes()+ts3.row_bytes()+
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ts4.row_bytes()+ts5.row_bytes()+map.row_bytes()+
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elem2param.row_bytes()+_zetaij.row_bytes()+_zetaij_eng.row_bytes();
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return 0;
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}
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template <class numtyp, class acctyp>
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void TersoffT::clear() {
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if (!_allocated)
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return;
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_allocated=false;
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ts1.clear();
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ts2.clear();
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ts3.clear();
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ts4.clear();
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ts5.clear();
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map.clear();
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elem2param.clear();
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_zetaij.clear();
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_zetaij_eng.clear();
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k_zeta.clear();
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#if defined(LAL_OCL_EV_JIT)
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k_zeta_noev.clear();
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#endif
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this->clear_atomic();
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}
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template <class numtyp, class acctyp>
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double TersoffT::host_memory_usage() const {
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return this->host_memory_usage_atomic()+sizeof(Tersoff<numtyp,acctyp>);
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}
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#define KTHREADS this->_threads_per_atom
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#define JTHREADS this->_threads_per_atom
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// ---------------------------------------------------------------------------
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// Calculate energies, forces, and torques
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// ---------------------------------------------------------------------------
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template <class numtyp, class acctyp>
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int TersoffT::loop(const int eflag, const int vflag, const int evatom,
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bool &success) {
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const int nbor_pitch=this->nbor->nbor_pitch();
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// re-allocate zetaij if necessary
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int nall = this->_nall;
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if (nall*this->nbor->max_nbors() > (int)_zetaij.cols()) {
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int _nmax=static_cast<int>(static_cast<double>(nall)*1.10);
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_zetaij.clear();
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_zetaij_eng.clear();
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success = success && (_zetaij.alloc(this->nbor->max_nbors()*_nmax,
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*(this->ucl_device),
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UCL_READ_WRITE) == UCL_SUCCESS);
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success = success && (_zetaij_eng.alloc(this->nbor->max_nbors()*_nmax,
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*(this->ucl_device),
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UCL_READ_WRITE) == UCL_SUCCESS);
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if (!success) return 0;
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}
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// build the short neighbor list
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int ainum=this->_ainum;
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this->time_pair.start();
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int BX=this->block_pair();
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int GX=static_cast<int>(ceil(static_cast<double>(ainum)/BX));
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this->k_short_nbor.set_size(GX,BX);
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this->k_short_nbor.run(&this->atom->x, &_cutsq_max, &_ntypes,
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&this->nbor->dev_nbor, &this->nbor->dev_packed,
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&ainum, &nbor_pitch, &this->_threads_per_atom);
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#if defined(LAL_OCL_EV_JIT)
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if (eflag || vflag) k_zeta_selt = &k_zeta;
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else k_zeta_selt = &k_zeta_noev;
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#endif
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GX=static_cast<int>(ceil(static_cast<double>(this->_ainum)/
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(BX/(JTHREADS*KTHREADS))));
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k_zeta_selt->set_size(GX,BX);
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k_zeta_selt->run(&this->atom->x, &ts1, &ts3, &ts4, &ts5,
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&map, &elem2param, &_nelements, &_nparams, &_zetaij,
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&_zetaij_eng, &this->nbor->dev_nbor, &eflag, &this->_ainum,
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&nbor_pitch, &this->_threads_per_atom);
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ainum=this->ans->inum();
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BX=this->block_size();
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GX=static_cast<int>(ceil(static_cast<double>(this->ans->inum())/
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(BX/(KTHREADS*JTHREADS))));
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this->k_3center_sel->set_size(GX,BX);
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this->k_3center_sel->run(&this->atom->x, &ts1, &ts4, &map,
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&elem2param, &_nelements, &_nparams, &_zetaij,
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&_zetaij_eng, &this->nbor->dev_nbor,
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&this->ans->force, &this->ans->engv, &eflag,
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&vflag, &ainum, &nbor_pitch,
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&this->_threads_per_atom, &evatom);
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Answer<numtyp,acctyp> *end_ans;
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#ifdef THREE_CONCURRENT
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end_ans=this->ans2;
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#else
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end_ans=this->ans;
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#endif
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if (evatom!=0) {
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this->k_three_end_vatom.set_size(GX,BX);
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this->k_three_end_vatom.run(&this->atom->x, &ts1, &ts4, &map, &elem2param,
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&_nelements, &_nparams, &_zetaij, &_zetaij_eng,
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&this->nbor->dev_nbor, &this->nbor->three_ilist,
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&end_ans->force, &end_ans->engv, &eflag, &vflag,
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&ainum, &nbor_pitch, &this->_threads_per_atom,
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&this->_gpu_nbor);
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} else {
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this->k_3end_sel->set_size(GX,BX);
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this->k_3end_sel->run(&this->atom->x, &ts1, &ts4, &map, &elem2param,
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&_nelements, &_nparams, &_zetaij, &_zetaij_eng,
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&this->nbor->dev_nbor, &this->nbor->three_ilist,
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&end_ans->force, &end_ans->engv, &eflag, &vflag,
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&ainum, &nbor_pitch, &this->_threads_per_atom,
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&this->_gpu_nbor);
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}
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BX=this->block_pair();
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int GXT=static_cast<int>(ceil(static_cast<double>(this->ans->inum())/
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(BX/this->_threads_per_atom)));
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this->k_sel->set_size(GXT,BX);
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this->k_sel->run(&this->atom->x, &ts2, &map, &elem2param, &_nelements,
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&_nparams, &this->nbor->dev_nbor, &this->ans->force,
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&this->ans->engv, &eflag, &vflag, &ainum, &nbor_pitch,
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&this->_threads_per_atom, &GX);
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this->time_pair.stop();
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return GX;
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}
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template class Tersoff<PRECISION,ACC_PRECISION>;
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}
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