/*************************************************************************** coul_long.cpp ------------------- Axel Kohlmeyer (Temple) Class for acceleration of the coul/long pair style. __________________________________________________________________________ This file is part of the LAMMPS Accelerator Library (LAMMPS_AL) __________________________________________________________________________ begin : July 2011 email : a.kohlmeyer@temple.edu ***************************************************************************/ #if defined(USE_OPENCL) #include "coul_long_cl.h" #elif defined(USE_CUDART) const char *coul_long=0; #else #include "coul_long_cubin.h" #endif #include "lal_coul_long.h" #include namespace LAMMPS_AL { #define CoulLongT CoulLong extern Device pair_gpu_device; template CoulLongT::CoulLong() : BaseCharge(), _allocated(false) { } template CoulLongT::~CoulLong() { clear(); } template int CoulLongT::bytes_per_atom(const int max_nbors) const { return this->bytes_per_atom_atomic(max_nbors); } template int CoulLongT::init(const int ntypes, double **host_scale, const int nlocal, const int nall, const int max_nbors, const int maxspecial, const double cell_size, const double gpu_split, FILE *_screen, const double host_cut_coulsq, double *host_special_coul, const double qqrd2e, const double g_ewald) { int success; success=this->init_atomic(nlocal,nall,max_nbors,maxspecial,cell_size, gpu_split,_screen,coul_long,"k_coul_long"); if (success!=0) return success; int lj_types=ntypes; shared_types=false; int max_shared_types=this->device->max_shared_types(); if (lj_types<=max_shared_types && this->_block_size>=max_shared_types) { lj_types=max_shared_types; shared_types=true; } _lj_types=lj_types; // Allocate a host write buffer for data initialization UCL_H_Vec host_write(lj_types*lj_types*32,*(this->ucl_device), UCL_WRITE_ONLY); for (int i=0; iucl_device),UCL_READ_ONLY); this->atom->type_pack1(ntypes,lj_types,scale,host_write,host_scale); sp_cl.alloc(4,*(this->ucl_device),UCL_READ_ONLY); for (int i=0; i<4; i++) { host_write[i]=host_special_coul[i]; } ucl_copy(sp_cl,host_write,4,false); _cut_coulsq=host_cut_coulsq; _qqrd2e=qqrd2e; _g_ewald=g_ewald; _allocated=true; this->_max_bytes=scale.row_bytes()+sp_cl.row_bytes(); return 0; } template void CoulLongT::reinit(const int ntypes, double **host_scale) { UCL_H_Vec hscale(_lj_types*_lj_types,*(this->ucl_device), UCL_WRITE_ONLY); this->atom->type_pack1(ntypes,_lj_types,scale,hscale,host_scale); } template void CoulLongT::clear() { if (!_allocated) return; _allocated=false; scale.clear(); sp_cl.clear(); this->clear_atomic(); } template double CoulLongT::host_memory_usage() const { return this->host_memory_usage_atomic()+sizeof(CoulLong); } // --------------------------------------------------------------------------- // Calculate energies, forces, and torques // --------------------------------------------------------------------------- template void CoulLongT::loop(const bool _eflag, const bool _vflag) { // Compute the block size and grid size to keep all cores busy const int BX=this->block_size(); int eflag, vflag; if (_eflag) eflag=1; else eflag=0; if (_vflag) vflag=1; else vflag=0; int GX=static_cast(ceil(static_cast(this->ans->inum())/ (BX/this->_threads_per_atom))); int ainum=this->ans->inum(); int nbor_pitch=this->nbor->nbor_pitch(); this->time_pair.start(); if (shared_types) { this->k_pair_fast.set_size(GX,BX); this->k_pair_fast.run(&this->atom->x, &scale, &sp_cl, &this->nbor->dev_nbor, &this->_nbor_data->begin(), &this->ans->force, &this->ans->engv, &eflag, &vflag, &ainum, &nbor_pitch, &this->atom->q, &_cut_coulsq, &_qqrd2e, &_g_ewald, &this->_threads_per_atom); } else { this->k_pair.set_size(GX,BX); this->k_pair.run(&this->atom->x, &scale, &_lj_types, &sp_cl, &this->nbor->dev_nbor, &this->_nbor_data->begin(), &this->ans->force, &this->ans->engv, &eflag, &vflag, &ainum, &nbor_pitch, &this->atom->q, &_cut_coulsq, &_qqrd2e, &_g_ewald, &this->_threads_per_atom); } this->time_pair.stop(); } template class CoulLong; }