901 lines
32 KiB
C++
901 lines
32 KiB
C++
/***************************************************************************
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base_amoeba.cpp
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-------------------
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Trung Dac Nguyen (Northwestern)
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Base class for pair styles needing per-particle data for position,
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charge, and type.
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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 :
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email : trung.nguyen@northwestern.edu
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***************************************************************************/
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#include "lal_base_amoeba.h"
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namespace LAMMPS_AL {
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#define BaseAmoebaT BaseAmoeba<numtyp, acctyp>
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extern Device<PRECISION,ACC_PRECISION> global_device;
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template <class numtyp, class acctyp>
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BaseAmoebaT::BaseAmoeba() : _compiled(false), _max_bytes(0), short_nbor_polar_avail(false) {
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device=&global_device;
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ans=new Answer<numtyp,acctyp>();
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nbor=new Neighbor();
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pair_program=nullptr;
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ucl_device=nullptr;
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}
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template <class numtyp, class acctyp>
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BaseAmoebaT::~BaseAmoeba() {
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delete ans;
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delete nbor;
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k_multipole.clear();
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k_udirect2b.clear();
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k_umutual2b.clear();
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k_polar.clear();
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k_special15.clear();
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k_short_nbor.clear();
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if (pair_program) delete pair_program;
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}
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template <class numtyp, class acctyp>
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int BaseAmoebaT::bytes_per_atom_atomic(const int max_nbors) const {
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return device->atom.bytes_per_atom()+ans->bytes_per_atom()+
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nbor->bytes_per_atom(max_nbors);
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}
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template <class numtyp, class acctyp>
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int BaseAmoebaT::init_atomic(const int nlocal, const int nall,
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const int max_nbors, const int maxspecial,
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const int maxspecial15,
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const double cell_size, const double gpu_split,
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FILE *_screen, const void *pair_program,
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const char *k_name_multipole,
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const char *k_name_udirect2b,
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const char *k_name_umutual2b,
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const char *k_name_polar,
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const char *k_name_short_nbor,
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const char* k_name_special15) {
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screen=_screen;
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int gpu_nbor=0;
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if (device->gpu_mode()==Device<numtyp,acctyp>::GPU_NEIGH)
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gpu_nbor=1;
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else if (device->gpu_mode()==Device<numtyp,acctyp>::GPU_HYB_NEIGH)
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gpu_nbor=2;
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int _gpu_host=0;
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int host_nlocal=hd_balancer.first_host_count(nlocal,gpu_split,gpu_nbor);
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if (host_nlocal>0)
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_gpu_host=1;
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_threads_per_atom=device->threads_per_charge();
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bool charge = true;
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bool rot = false;
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bool vel = false;
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_extra_fields = 24; // round up to accomodate quadruples of numtyp values
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// rpole 13; uind 3; uinp 3; amtype, amgroup; pval
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int success=device->init(*ans,charge,rot,nlocal,nall,maxspecial,vel,_extra_fields);
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if (success!=0)
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return success;
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if (ucl_device!=device->gpu) _compiled=false;
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ucl_device=device->gpu;
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atom=&device->atom;
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_block_size=device->pair_block_size();
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_block_bio_size=device->block_bio_pair();
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compile_kernels(*ucl_device,pair_program,k_name_multipole,
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k_name_udirect2b, k_name_umutual2b,k_name_polar,
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k_name_short_nbor, k_name_special15);
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if (_threads_per_atom>1 && gpu_nbor==0) {
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nbor->packing(true);
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_nbor_data=&(nbor->dev_packed);
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} else {
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_nbor_data=&(nbor->dev_nbor);
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}
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bool alloc_packed=false;
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success = device->init_nbor(nbor,nlocal,host_nlocal,nall,maxspecial,
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_gpu_host,max_nbors,cell_size,alloc_packed,
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_threads_per_atom);
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if (success!=0)
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return success;
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// Initialize host-device load balancer
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hd_balancer.init(device,gpu_nbor,gpu_split);
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// Initialize timers for the selected GPU
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time_pair.init(*ucl_device);
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time_pair.zero();
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pos_tex.bind_float(atom->x,4);
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q_tex.bind_float(atom->q,1);
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_max_an_bytes=ans->gpu_bytes()+nbor->gpu_bytes();
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_maxspecial=maxspecial;
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_maxspecial15=maxspecial15;
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// allocate per-atom array tep
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int ef_nall=nlocal; //nall;
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if (ef_nall==0)
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ef_nall=2000;
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dev_short_nbor.alloc(ef_nall*(2+max_nbors),*(this->ucl_device),UCL_READ_WRITE);
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_max_tep_size=static_cast<int>(static_cast<double>(ef_nall)*1.10);
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_tep.alloc(_max_tep_size*4,*(this->ucl_device),UCL_READ_WRITE,UCL_READ_WRITE);
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_max_fieldp_size = _max_tep_size;
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_fieldp.alloc(_max_fieldp_size*8,*(this->ucl_device),UCL_READ_WRITE,UCL_READ_WRITE);
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_nmax = nall;
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dev_nspecial15.alloc(nall,*(this->ucl_device),UCL_READ_ONLY);
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dev_special15.alloc(_maxspecial15*nall,*(this->ucl_device),UCL_READ_ONLY);
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dev_special15_t.alloc(nall*_maxspecial15,*(this->ucl_device),UCL_READ_ONLY);
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return success;
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}
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template <class numtyp, class acctyp>
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void BaseAmoebaT::estimate_gpu_overhead(const int add_kernels) {
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device->estimate_gpu_overhead(1+add_kernels,_gpu_overhead,_driver_overhead);
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}
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template <class numtyp, class acctyp>
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void BaseAmoebaT::clear_atomic() {
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// Output any timing information
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acc_timers();
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double avg_split=hd_balancer.all_avg_split();
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_gpu_overhead*=hd_balancer.timestep();
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_driver_overhead*=hd_balancer.timestep();
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device->output_times(time_pair,*ans,*nbor,avg_split,_max_bytes+_max_an_bytes,
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_gpu_overhead,_driver_overhead,_threads_per_atom,screen);
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time_pair.clear();
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hd_balancer.clear();
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dev_short_nbor.clear();
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nbor->clear();
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ans->clear();
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_tep.clear();
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_fieldp.clear();
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dev_nspecial15.clear();
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dev_special15.clear();
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dev_special15_t.clear();
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}
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// ---------------------------------------------------------------------------
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// Copy neighbor list from host
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// ---------------------------------------------------------------------------
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template <class numtyp, class acctyp>
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int * BaseAmoebaT::reset_nbors(const int nall, const int inum, int *ilist,
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int *numj, int **firstneigh, bool &success) {
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success=true;
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int mn=nbor->max_nbor_loop(inum,numj,ilist);
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resize_atom(inum,nall,success);
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resize_local(inum,mn,success);
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if (!success)
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return nullptr;
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nbor->get_host(inum,ilist,numj,firstneigh,block_size());
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double bytes=ans->gpu_bytes()+nbor->gpu_bytes();
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if (bytes>_max_an_bytes)
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_max_an_bytes=bytes;
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return ilist;
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}
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// ---------------------------------------------------------------------------
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// Build neighbor list on device
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// ---------------------------------------------------------------------------
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template <class numtyp, class acctyp>
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inline int BaseAmoebaT::build_nbor_list(const int inum, const int host_inum,
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const int nall, double **host_x,
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int *host_type, double *sublo,
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double *subhi, tagint *tag,
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int **nspecial, tagint **special,
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int *nspecial15, tagint **special15,
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bool &success) {
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success=true;
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resize_atom(inum,nall,success);
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resize_local(inum,host_inum,nbor->max_nbors(),success);
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if (!success)
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return 0;
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atom->cast_copy_x(host_x,host_type);
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int mn;
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nbor->build_nbor_list(host_x, inum, host_inum, nall, *atom, sublo, subhi,
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tag, nspecial, special, success, mn, ans->error_flag);
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// add one-five neighbors
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if (_maxspecial15>0) {
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UCL_H_Vec<int> view_nspecial15;
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UCL_H_Vec<tagint> view_special15;
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view_nspecial15.view(nspecial15,nall,*ucl_device);
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view_special15.view(special15[0],nall*_maxspecial15,*ucl_device);
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ucl_copy(dev_nspecial15,view_nspecial15,nall,false);
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ucl_copy(dev_special15_t,view_special15,_maxspecial15*nall,false);
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nbor->transpose(dev_special15, dev_special15_t, _maxspecial15, nall);
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add_onefive_neighbors();
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}
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double bytes=ans->gpu_bytes()+nbor->gpu_bytes();
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if (bytes>_max_an_bytes)
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_max_an_bytes=bytes;
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return mn;
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}
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// ---------------------------------------------------------------------------
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// Copy nbor list from host if necessary and then calculate forces, virials
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// for the polar real-space term
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// ---------------------------------------------------------------------------
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template <class numtyp, class acctyp>
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void BaseAmoebaT::compute_polar_real_host_nbor(const int f_ago, const int inum_full,
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const int nall, double **host_x, int *host_type, int *host_amtype,
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int *host_amgroup, double **host_rpole,
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double **host_uind, double **host_uinp,
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int *ilist, int *numj, int **firstneigh,
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const bool eflag_in, const bool vflag_in,
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const bool eatom, const bool vatom,
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int &host_start, const double cpu_time,
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bool &success, const double aewald, const double felec,
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const double off2_polar, double *host_q, const int nlocal,
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double *boxlo, double *prd, void **tep_ptr) {
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acc_timers();
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int eflag, vflag;
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if (eatom) eflag=2;
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else if (eflag_in) eflag=1;
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else eflag=0;
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if (vatom) vflag=2;
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else if (vflag_in) vflag=1;
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else vflag=0;
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#ifdef LAL_NO_BLOCK_REDUCE
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if (eflag) eflag=2;
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if (vflag) vflag=2;
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#endif
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set_kernel(eflag,vflag);
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// ------------------- Resize _tep array ------------------------
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if (nall>_max_tep_size) {
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_max_tep_size=static_cast<int>(static_cast<double>(nall)*1.10);
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_tep.resize(_max_tep_size*4);
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dev_nspecial15.clear();
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dev_special15.clear();
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dev_special15_t.clear();
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dev_nspecial15.alloc(nall,*(this->ucl_device),UCL_READ_ONLY);
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dev_special15.alloc(_maxspecial15*nall,*(this->ucl_device),UCL_READ_ONLY);
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dev_special15_t.alloc(nall*_maxspecial15,*(this->ucl_device),UCL_READ_ONLY);
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}
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*tep_ptr=_tep.host.begin();
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if (inum_full==0) {
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host_start=0;
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// Make sure textures are correct if realloc by a different hybrid style
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resize_atom(0,nall,success);
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zero_timers();
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return;
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}
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int ago=hd_balancer.ago_first(f_ago);
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int inum=hd_balancer.balance(ago,inum_full,cpu_time);
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ans->inum(inum);
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host_start=inum;
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if (ago==0) {
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reset_nbors(nall, inum, ilist, numj, firstneigh, success);
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if (!success)
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return;
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}
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// packing host arrays into host_extra
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atom->cast_x_data(host_x,host_type);
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atom->cast_q_data(host_q);
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cast_extra_data(host_amtype, host_amgroup, host_rpole, host_uind, host_uinp);
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hd_balancer.start_timer();
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atom->add_x_data(host_x,host_type);
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atom->add_q_data();
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atom->add_extra_data();
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device->precompute(f_ago,nlocal,nall,host_x,host_type,success,host_q,
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boxlo, prd);
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_off2_polar = off2_polar;
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_felec = felec;
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const int red_blocks=polar_real(eflag,vflag);
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ans->copy_answers(eflag_in,vflag_in,eatom,vatom,ilist,red_blocks);
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device->add_ans_object(ans);
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hd_balancer.stop_timer();
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// copy tep from device to host
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_tep.update_host(_max_tep_size*4,false);
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}
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// ---------------------------------------------------------------------------
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// Prepare for multiple kernel calls in a time step:
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// - reallocate per-atom arrays, if needed
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// - transfer extra data from host to device
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// - build the full neighbor lists for use by different kernels
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// ---------------------------------------------------------------------------
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template <class numtyp, class acctyp>
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int** BaseAmoebaT::precompute(const int ago, const int inum_full, const int nall,
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double **host_x, int *host_type, int *host_amtype,
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int *host_amgroup, double **host_rpole,
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double **host_uind, double **host_uinp, double *host_pval,
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double *sublo, double *subhi, tagint *tag,
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int **nspecial, tagint **special,
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int *nspecial15, tagint **special15,
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const bool eflag_in, const bool vflag_in,
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const bool eatom, const bool vatom, int &host_start,
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int **&ilist, int **&jnum, const double cpu_time,
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bool &success, double *host_q, double *boxlo,
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double *prd) {
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acc_timers();
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//int eflag, vflag;
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if (eatom) _eflag=2;
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else if (eflag_in) _eflag=1;
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else _eflag=0;
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if (vatom) _vflag=2;
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else if (vflag_in) _vflag=1;
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else _vflag=0;
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#ifdef LAL_NO_BLOCK_REDUCE
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if (_eflag) _eflag=2;
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if (_vflag) _vflag=2;
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#endif
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set_kernel(_eflag,_vflag);
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// ------------------- Resize 1-5 neighbor arrays ------------------------
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if (nall>_nmax) {
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_nmax = nall;
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dev_nspecial15.clear();
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dev_special15.clear();
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dev_special15_t.clear();
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dev_nspecial15.alloc(nall,*(this->ucl_device),UCL_READ_ONLY);
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dev_special15.alloc(_maxspecial15*nall,*(this->ucl_device),UCL_READ_ONLY);
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dev_special15_t.alloc(nall*_maxspecial15,*(this->ucl_device),UCL_READ_ONLY);
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}
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if (inum_full==0) {
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host_start=0;
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// Make sure textures are correct if realloc by a different hybrid style
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resize_atom(0,nall,success);
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zero_timers();
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return nullptr;
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}
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hd_balancer.balance(cpu_time);
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int inum=hd_balancer.get_gpu_count(ago,inum_full);
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ans->inum(inum);
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host_start=inum;
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// Build neighbor list on GPU if necessary
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if (ago==0) {
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_max_nbors = build_nbor_list(inum, inum_full-inum, nall, host_x, host_type,
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sublo, subhi, tag, nspecial, special, nspecial15, special15,
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success);
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if (!success)
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return nullptr;
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atom->cast_q_data(host_q);
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//cast_extra_data(host_amtype, host_amgroup, host_rpole, host_uind, host_uinp, host_pval);
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hd_balancer.start_timer();
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} else {
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atom->cast_x_data(host_x,host_type);
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atom->cast_q_data(host_q);
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//cast_extra_data(host_amtype, host_amgroup, host_rpole, host_uind, host_uinp, host_pval);
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hd_balancer.start_timer();
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atom->add_x_data(host_x,host_type);
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}
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atom->add_q_data();
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cast_extra_data(host_amtype, host_amgroup, host_rpole, host_uind, host_uinp, host_pval);
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atom->add_extra_data();
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*ilist=nbor->host_ilist.begin();
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*jnum=nbor->host_acc.begin();
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// re-allocate dev_short_nbor if necessary
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if (inum_full*(2+_max_nbors) > dev_short_nbor.cols()) {
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int _nmax=static_cast<int>(static_cast<double>(inum_full)*1.10);
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dev_short_nbor.resize((2+_max_nbors)*_nmax);
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}
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return nbor->host_jlist.begin()-host_start;
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}
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// ---------------------------------------------------------------------------
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// Reneighbor on GPU if necessary, and then compute multipole real-space
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// ---------------------------------------------------------------------------
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template <class numtyp, class acctyp>
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int** BaseAmoebaT::compute_multipole_real(const int ago, const int inum_full,
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const int nall, double **host_x,
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int *host_type, int *host_amtype,
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int *host_amgroup, double **host_rpole, double *host_pval,
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double *sublo, double *subhi, tagint *tag,
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int **nspecial, tagint **special,
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int *nspecial15, tagint **special15,
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const bool eflag_in, const bool vflag_in,
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const bool eatom, const bool vatom,
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int &host_start, int **ilist, int **jnum,
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const double cpu_time, bool &success,
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const double aewald, const double felec,
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const double off2_mpole, double *host_q,
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double *boxlo, double *prd, void **tep_ptr) {
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/*
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acc_timers();
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int eflag, vflag;
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if (eatom) eflag=2;
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else if (eflag_in) eflag=1;
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else eflag=0;
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if (vatom) vflag=2;
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else if (vflag_in) vflag=1;
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else vflag=0;
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#ifdef LAL_NO_BLOCK_REDUCE
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if (eflag) eflag=2;
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if (vflag) vflag=2;
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#endif
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set_kernel(eflag,vflag);
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|
*/
|
|
// reallocate per-atom arrays, transfer data from the host
|
|
// and build the neighbor lists if needed
|
|
// NOTE:
|
|
// Once all the kernels are ready, precompute() is needed only once
|
|
// in the first kernel in a time step.
|
|
|
|
int** firstneigh = nullptr;
|
|
firstneigh = precompute(ago, inum_full, nall, host_x, host_type,
|
|
host_amtype, host_amgroup, host_rpole,
|
|
nullptr, nullptr, nullptr, sublo, subhi, tag,
|
|
nspecial, special, nspecial15, special15,
|
|
eflag_in, vflag_in, eatom, vatom,
|
|
host_start, ilist, jnum, cpu_time,
|
|
success, host_q, boxlo, prd);
|
|
|
|
// ------------------- Resize _tep array ------------------------
|
|
|
|
if (inum_full>_max_tep_size) {
|
|
_max_tep_size=static_cast<int>(static_cast<double>(inum_full)*1.10);
|
|
_tep.resize(_max_tep_size*4);
|
|
}
|
|
*tep_ptr=_tep.host.begin();
|
|
|
|
_off2_mpole = off2_mpole;
|
|
_felec = felec;
|
|
_aewald = aewald;
|
|
const int red_blocks=multipole_real(_eflag,_vflag);
|
|
|
|
// leave the answers (forces, energies and virial) on the device,
|
|
// only copy them back in the last kernel (polar_real)
|
|
//ans->copy_answers(eflag_in,vflag_in,eatom,vatom,red_blocks);
|
|
//device->add_ans_object(ans);
|
|
|
|
hd_balancer.stop_timer();
|
|
|
|
// copy tep from device to host
|
|
|
|
_tep.update_host(_max_tep_size*4,false);
|
|
/*
|
|
printf("GPU lib: tep size = %d: max tep size = %d\n", this->_tep.cols(), _max_tep_size);
|
|
for (int i = 0; i < 10; i++) {
|
|
numtyp4* p = (numtyp4*)(&this->_tep[4*i]);
|
|
printf("i = %d; tep = %f %f %f\n", i, p->x, p->y, p->z);
|
|
}
|
|
*/
|
|
return firstneigh; // nbor->host_jlist.begin()-host_start;
|
|
}
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// Reneighbor on GPU if necessary, and then compute the direct real space part
|
|
// of the permanent field
|
|
// ---------------------------------------------------------------------------
|
|
template <class numtyp, class acctyp>
|
|
int** BaseAmoebaT::compute_udirect2b(const int ago, const int inum_full,
|
|
const int nall, double **host_x,
|
|
int *host_type, int *host_amtype,
|
|
int *host_amgroup, double **host_rpole,
|
|
double **host_uind, double **host_uinp, double *host_pval,
|
|
double *sublo, double *subhi, tagint *tag,
|
|
int **nspecial, tagint **special,
|
|
int *nspecial15, tagint **special15,
|
|
const bool eflag_in, const bool vflag_in,
|
|
const bool eatom, const bool vatom,
|
|
int &host_start, int **ilist, int **jnum,
|
|
const double cpu_time, bool &success,
|
|
const double aewald, const double off2_polar,
|
|
double *host_q, double *boxlo, double *prd,
|
|
void** fieldp_ptr) {
|
|
/*
|
|
acc_timers();
|
|
int eflag, vflag;
|
|
if (eatom) eflag=2;
|
|
else if (eflag_in) eflag=1;
|
|
else eflag=0;
|
|
if (vatom) vflag=2;
|
|
else if (vflag_in) vflag=1;
|
|
else vflag=0;
|
|
|
|
#ifdef LAL_NO_BLOCK_REDUCE
|
|
if (eflag) eflag=2;
|
|
if (vflag) vflag=2;
|
|
#endif
|
|
|
|
set_kernel(eflag,vflag);
|
|
*/
|
|
// reallocate per-atom arrays, transfer data from the host
|
|
// and build the neighbor lists if needed
|
|
|
|
int** firstneigh = nullptr;
|
|
/*
|
|
firstneigh = precompute(ago, inum_full, nall, host_x, host_type,
|
|
host_amtype, host_amgroup, host_rpole,
|
|
host_uind, host_uinp, nullptr, sublo, subhi, tag,
|
|
nspecial, special, nspecial15, special15,
|
|
eflag_in, vflag_in, eatom, vatom,
|
|
host_start, ilist, jnum, cpu_time,
|
|
success, host_q, boxlo, prd);
|
|
*/
|
|
cast_extra_data(host_amtype, host_amgroup, host_rpole, host_uind, host_uinp, host_pval);
|
|
atom->add_extra_data();
|
|
|
|
// ------------------- Resize _fieldp array ------------------------
|
|
|
|
if (inum_full>_max_fieldp_size) {
|
|
_max_fieldp_size=static_cast<int>(static_cast<double>(inum_full)*1.10);
|
|
_fieldp.resize(_max_fieldp_size*8);
|
|
}
|
|
*fieldp_ptr=_fieldp.host.begin();
|
|
|
|
_off2_polar = off2_polar;
|
|
_aewald = aewald;
|
|
const int red_blocks=udirect2b(_eflag,_vflag);
|
|
|
|
// copy field and fieldp from device to host (_fieldp store both arrays, one after another)
|
|
|
|
_fieldp.update_host(_max_fieldp_size*8,false);
|
|
/*
|
|
printf("GPU lib: _fieldp size = %d: max fieldp size = %d\n",
|
|
this->_fieldp.cols(), _max_fieldp_size);
|
|
for (int i = 0; i < 10; i++) {
|
|
numtyp4* p = (numtyp4*)(&this->_fieldp[4*i]);
|
|
printf("i = %d; field = %f %f %f\n", i, p->x, p->y, p->z);
|
|
}
|
|
*/
|
|
return firstneigh; //nbor->host_jlist.begin()-host_start;
|
|
}
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// Reneighbor on GPU if necessary, and then compute the direct real space part
|
|
// of the induced field
|
|
// ---------------------------------------------------------------------------
|
|
template <class numtyp, class acctyp>
|
|
int** BaseAmoebaT::compute_umutual2b(const int ago, const int inum_full,
|
|
const int nall, double **host_x,
|
|
int *host_type, int *host_amtype,
|
|
int *host_amgroup, double **host_rpole,
|
|
double **host_uind, double **host_uinp, double *host_pval,
|
|
double *sublo, double *subhi, tagint *tag,
|
|
int **nspecial, tagint **special,
|
|
int *nspecial15, tagint **special15,
|
|
const bool eflag_in, const bool vflag_in,
|
|
const bool eatom, const bool vatom,
|
|
int &host_start, int **ilist, int **jnum,
|
|
const double cpu_time, bool &success,
|
|
const double aewald, const double off2_polar,
|
|
double *host_q, double *boxlo, double *prd,
|
|
void** fieldp_ptr) {
|
|
/*
|
|
acc_timers();
|
|
int eflag, vflag;
|
|
if (eatom) eflag=2;
|
|
else if (eflag_in) eflag=1;
|
|
else eflag=0;
|
|
if (vatom) vflag=2;
|
|
else if (vflag_in) vflag=1;
|
|
else vflag=0;
|
|
|
|
#ifdef LAL_NO_BLOCK_REDUCE
|
|
if (eflag) eflag=2;
|
|
if (vflag) vflag=2;
|
|
#endif
|
|
|
|
set_kernel(eflag,vflag);
|
|
*/
|
|
// reallocate per-atom arrays, transfer extra data from the host
|
|
// and build the neighbor lists if needed
|
|
|
|
int** firstneigh = nullptr;
|
|
/*
|
|
firstneigh = precompute(ago, inum_full, nall, host_x, host_type,
|
|
host_amtype, host_amgroup, host_rpole,
|
|
host_uind, host_uinp, nullptr, sublo, subhi, tag,
|
|
nspecial, special, nspecial15, special15,
|
|
eflag_in, vflag_in, eatom, vatom,
|
|
host_start, ilist, jnum, cpu_time,
|
|
success, host_q, boxlo, prd);
|
|
*/
|
|
cast_extra_data(host_amtype, host_amgroup, host_rpole, host_uind, host_uinp, host_pval);
|
|
atom->add_extra_data();
|
|
|
|
// ------------------- Resize _fieldp array ------------------------
|
|
|
|
if (inum_full>_max_fieldp_size) {
|
|
_max_fieldp_size=static_cast<int>(static_cast<double>(inum_full)*1.10);
|
|
_fieldp.resize(_max_fieldp_size*8);
|
|
}
|
|
*fieldp_ptr=_fieldp.host.begin();
|
|
|
|
_off2_polar = off2_polar;
|
|
_aewald = aewald;
|
|
const int red_blocks=umutual2b(_eflag,_vflag);
|
|
|
|
// copy field and fieldp from device to host (_fieldp store both arrays, one after another)
|
|
|
|
_fieldp.update_host(_max_fieldp_size*8,false);
|
|
/*
|
|
printf("GPU lib: _fieldp size = %d: max fieldp size = %d\n",
|
|
this->_fieldp.cols(), _max_fieldp_size);
|
|
for (int i = 0; i < 10; i++) {
|
|
numtyp4* p = (numtyp4*)(&this->_fieldp[4*i]);
|
|
printf("i = %d; field = %f %f %f\n", i, p->x, p->y, p->z);
|
|
}
|
|
*/
|
|
return firstneigh; //nbor->host_jlist.begin()-host_start;
|
|
}
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// Reneighbor on GPU if necessary, and then compute polar real-space
|
|
// ---------------------------------------------------------------------------
|
|
template <class numtyp, class acctyp>
|
|
int** BaseAmoebaT::compute_polar_real(const int ago, const int inum_full,
|
|
const int nall, double **host_x,
|
|
int *host_type, int *host_amtype,
|
|
int *host_amgroup, double **host_rpole,
|
|
double **host_uind, double **host_uinp, double *host_pval,
|
|
double *sublo, double *subhi, tagint *tag,
|
|
int **nspecial, tagint **special,
|
|
int *nspecial15, tagint **special15,
|
|
const bool eflag_in, const bool vflag_in,
|
|
const bool eatom, const bool vatom,
|
|
int &host_start, int **ilist, int **jnum,
|
|
const double cpu_time, bool &success,
|
|
const double aewald, const double felec,
|
|
const double off2_polar, double *host_q,
|
|
double *boxlo, double *prd, void **tep_ptr) {
|
|
/*
|
|
acc_timers();
|
|
int eflag, vflag;
|
|
if (eatom) eflag=2;
|
|
else if (eflag_in) eflag=1;
|
|
else eflag=0;
|
|
if (vatom) vflag=2;
|
|
else if (vflag_in) vflag=1;
|
|
else vflag=0;
|
|
|
|
#ifdef LAL_NO_BLOCK_REDUCE
|
|
if (eflag) eflag=2;
|
|
if (vflag) vflag=2;
|
|
#endif
|
|
|
|
set_kernel(eflag,vflag);
|
|
*/
|
|
// reallocate per-atom arrays, transfer data from the host
|
|
// and build the neighbor lists if needed
|
|
// NOTE:
|
|
// For now we invoke precompute() again here,
|
|
// to be able to turn on/off the udirect2b kernel (which comes before this)
|
|
// Once all the kernels are ready, precompute() is needed only once
|
|
// in the first kernel in a time step.
|
|
// We only need to cast uind and uinp from host to device here
|
|
// if the neighbor lists are rebuilt and other per-atom arrays
|
|
// (x, type, amtype, amgroup, rpole) are ready on the device.
|
|
|
|
int** firstneigh = nullptr;
|
|
/*
|
|
firstneigh = precompute(ago, inum_full, nall, host_x, host_type,
|
|
host_amtype, host_amgroup, host_rpole,
|
|
host_uind, host_uinp, nullptr, sublo, subhi, tag,
|
|
nspecial, special, nspecial15, special15,
|
|
eflag_in, vflag_in, eatom, vatom,
|
|
host_start, ilist, jnum, cpu_time,
|
|
success, host_q, boxlo, prd);
|
|
*/
|
|
cast_extra_data(host_amtype, host_amgroup, host_rpole, host_uind, host_uinp, host_pval);
|
|
atom->add_extra_data();
|
|
|
|
// ------------------- Resize _tep array ------------------------
|
|
|
|
if (inum_full>_max_tep_size) {
|
|
_max_tep_size=static_cast<int>(static_cast<double>(inum_full)*1.10);
|
|
_tep.resize(_max_tep_size*4);
|
|
}
|
|
*tep_ptr=_tep.host.begin();
|
|
|
|
_off2_polar = off2_polar;
|
|
_felec = felec;
|
|
_aewald = aewald;
|
|
const int red_blocks=polar_real(_eflag,_vflag);
|
|
|
|
// only copy answers (forces, energies and virial) back from the device
|
|
// in the last kernel (which is polar_real here)
|
|
ans->copy_answers(eflag_in,vflag_in,eatom,vatom,red_blocks);
|
|
device->add_ans_object(ans);
|
|
|
|
hd_balancer.stop_timer();
|
|
|
|
// copy tep from device to host
|
|
|
|
_tep.update_host(_max_tep_size*4,false);
|
|
/*
|
|
printf("GPU lib: tep size = %d: max tep size = %d\n", this->_tep.cols(), _max_tep_size);
|
|
for (int i = 0; i < 10; i++) {
|
|
numtyp4* p = (numtyp4*)(&this->_tep[4*i]);
|
|
printf("i = %d; tep = %f %f %f\n", i, p->x, p->y, p->z);
|
|
}
|
|
*/
|
|
return firstneigh; // nbor->host_jlist.begin()-host_start;
|
|
}
|
|
|
|
template <class numtyp, class acctyp>
|
|
double BaseAmoebaT::host_memory_usage_atomic() const {
|
|
return device->atom.host_memory_usage()+nbor->host_memory_usage()+
|
|
4*sizeof(numtyp)+sizeof(BaseAmoeba<numtyp,acctyp>);
|
|
}
|
|
|
|
template <class numtyp, class acctyp>
|
|
void BaseAmoebaT::cast_extra_data(int* amtype, int* amgroup, double** rpole,
|
|
double** uind, double** uinp, double* pval) {
|
|
// signal that we need to transfer extra data from the host
|
|
|
|
atom->extra_data_unavail();
|
|
|
|
int _nall=atom->nall();
|
|
numtyp *pextra=reinterpret_cast<numtyp*>(&(atom->extra[0]));
|
|
|
|
int n = 0;
|
|
int nstride = 4;
|
|
for (int i = 0; i < _nall; i++) {
|
|
int idx = n+i*nstride;
|
|
pextra[idx] = rpole[i][0];
|
|
pextra[idx+1] = rpole[i][1];
|
|
pextra[idx+2] = rpole[i][2];
|
|
pextra[idx+3] = rpole[i][3];
|
|
}
|
|
|
|
n += nstride*_nall;
|
|
for (int i = 0; i < _nall; i++) {
|
|
int idx = n+i*nstride;
|
|
pextra[idx] = rpole[i][4];
|
|
pextra[idx+1] = rpole[i][5];
|
|
pextra[idx+2] = rpole[i][6];
|
|
pextra[idx+3] = rpole[i][8];
|
|
}
|
|
|
|
n += nstride*_nall;
|
|
for (int i = 0; i < _nall; i++) {
|
|
int idx = n+i*nstride;
|
|
pextra[idx] = rpole[i][9];
|
|
pextra[idx+1] = rpole[i][12];
|
|
pextra[idx+2] = (numtyp)amtype[i];
|
|
pextra[idx+3] = (numtyp)amgroup[i];
|
|
}
|
|
|
|
n += nstride*_nall;
|
|
if (uind) {
|
|
for (int i = 0; i < _nall; i++) {
|
|
int idx = n+i*nstride;
|
|
pextra[idx] = uind[i][0];
|
|
pextra[idx+1] = uind[i][1];
|
|
pextra[idx+2] = uind[i][2];
|
|
}
|
|
}
|
|
|
|
n += nstride*_nall;
|
|
if (uinp) {
|
|
for (int i = 0; i < _nall; i++) {
|
|
int idx = n+i*nstride;
|
|
pextra[idx] = uinp[i][0];
|
|
pextra[idx+1] = uinp[i][1];
|
|
pextra[idx+2] = uinp[i][2];
|
|
}
|
|
}
|
|
|
|
n += nstride*_nall;
|
|
if (pval) {
|
|
|
|
for (int i = 0; i < _nall; i++) {
|
|
int idx = n+i*nstride;
|
|
pextra[idx] = pval[i];
|
|
}
|
|
}
|
|
}
|
|
|
|
template <class numtyp, class acctyp>
|
|
void BaseAmoebaT::compile_kernels(UCL_Device &dev, const void *pair_str,
|
|
const char *kname_multipole,
|
|
const char *kname_udirect2b,
|
|
const char *kname_umutual2b,
|
|
const char *kname_polar,
|
|
const char *kname_short_nbor,
|
|
const char* kname_special15) {
|
|
if (_compiled)
|
|
return;
|
|
|
|
if (pair_program) delete pair_program;
|
|
pair_program=new UCL_Program(dev);
|
|
std::string oclstring = device->compile_string()+" -DEVFLAG=1";
|
|
pair_program->load_string(pair_str,oclstring.c_str(),nullptr,screen);
|
|
|
|
k_multipole.set_function(*pair_program,kname_multipole);
|
|
k_udirect2b.set_function(*pair_program,kname_udirect2b);
|
|
k_umutual2b.set_function(*pair_program,kname_umutual2b);
|
|
k_polar.set_function(*pair_program,kname_polar);
|
|
k_short_nbor.set_function(*pair_program,kname_short_nbor);
|
|
k_special15.set_function(*pair_program,kname_special15);
|
|
pos_tex.get_texture(*pair_program,"pos_tex");
|
|
q_tex.get_texture(*pair_program,"q_tex");
|
|
|
|
_compiled=true;
|
|
|
|
#if defined(USE_OPENCL) && (defined(CL_VERSION_2_1) || defined(CL_VERSION_3_0))
|
|
if (dev.has_subgroup_support()) {
|
|
size_t mx_subgroup_sz = k_polar.max_subgroup_size(_block_size);
|
|
if (_threads_per_atom > mx_subgroup_sz)
|
|
_threads_per_atom = mx_subgroup_sz;
|
|
device->set_simd_size(mx_subgroup_sz);
|
|
}
|
|
#endif
|
|
|
|
}
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// Specify 1-5 neighbors from the current neighbor list
|
|
// ---------------------------------------------------------------------------
|
|
|
|
template <class numtyp, class acctyp>
|
|
int BaseAmoebaT::add_onefive_neighbors() {
|
|
// Compute the block size and grid size to keep all cores busy
|
|
const int BX=block_size();
|
|
int GX=static_cast<int>(ceil(static_cast<double>(ans->inum())/
|
|
(BX/_threads_per_atom)));
|
|
|
|
int _nall=atom->nall();
|
|
int ainum=ans->inum();
|
|
int nbor_pitch=nbor->nbor_pitch();
|
|
|
|
k_special15.set_size(GX,BX);
|
|
k_special15.run(&nbor->dev_nbor, &_nbor_data->begin(),
|
|
&atom->dev_tag, &dev_nspecial15, &dev_special15,
|
|
&ainum, &_nall, &nbor_pitch,
|
|
&_threads_per_atom);
|
|
|
|
return GX;
|
|
}
|
|
|
|
template class BaseAmoeba<PRECISION,ACC_PRECISION>;
|
|
}
|