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/***************************************************************************
sph_lj.h
-------------------
Trung Nguyen (U Chicago)
Class for acceleration of the sph lj pair style.
__________________________________________________________________________
This file is part of the LAMMPS Accelerator Library (LAMMPS_AL)
__________________________________________________________________________
begin : December 2023
email : ndactrung@gmail.com
***************************************************************************/
#ifndef LAL_SPH_LJ_H
#define LAL_SPH_LJ_H
#include "lal_base_sph.h"
namespace LAMMPS_AL {
template <class numtyp, class acctyp>
class SPHLJ : public BaseSPH<numtyp, acctyp> {
public:
SPHLJ();
~SPHLJ();
/// Clear any previous data and set up for a new LAMMPS run
/** \param max_nbors initial number of rows in the neighbor matrix
* \param cell_size cutoff + skin
* \param gpu_split fraction of particles handled by device
*
* Returns:
* - 0 if successful
* - -1 if fix gpu not found
* - -3 if there is an out of memory error
* - -4 if the GPU library was not compiled for GPU
* - -5 Double precision is not supported on card **/
int init(const int ntypes, double **host_cutsq,
double** host_cut, double **host_viscosity, double *host_mass,
const int dimension,
double *host_special_lj, const int nlocal, const int nall, const int max_nbors,
const int maxspecial, const double cell_size, const double gpu_split,
FILE *screen);
/// Clear all host and device data
/** \note This is called at the beginning of the init() routine **/
void clear();
/// Returns memory usage on device per atom
int bytes_per_atom(const int max_nbors) const;
/// Total host memory used by library for pair style
double host_memory_usage() const;
void get_extra_data(double *host_rho, double *host_esph,
double *host_cv);
/// copy drho and desph from device to host
void update_drhoE(void **drhoE_ptr);
// --------------------------- TYPE DATA --------------------------
/// coeff.x = viscosity, coeff.y = cut, coeff.z = cutsq
UCL_D_Vec<numtyp4> coeff;
/// per-type coeffs
UCL_D_Vec<numtyp> mass;
/// Special LJ values
UCL_D_Vec<numtyp> sp_lj;
/// If atom type constants fit in shared memory, use fast kernels
bool shared_types;
/// Number of atom types
int _lj_types;
/// Per-atom arrays
UCL_Vector<acctyp,acctyp> drhoE;
int _max_drhoE_size;
int _dimension;
/// pointer to host data
double *rho, *esph, *cv;
private:
bool _allocated;
int loop(const int eflag, const int vflag);
};
}
#endif
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