Neko 1.1.2
A portable framework for high-order spectral element flow simulations
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compressible_res.c File Reference
#include <CL/cl.h>
#include <stdio.h>
#include <device/device_config.h>
#include <device/opencl/jit.h>
#include <device/opencl/prgm_lib.h>
#include <device/opencl/check.h>
#include "compressible_res_kernel.cl.h"
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Functions

void compressible_res_part_visc_opencl (void *rhs_u, void *Binv, void *lap_sol, void *effective_visc, int *n)
 
void inviscid_res_part_mx_flux_opencl (void *f_x, void *f_y, void *f_z, void *m_x, void *m_y, void *m_z, void *rho_field, void *p, int *n)
 
void inviscid_res_part_my_flux_opencl (void *f_x, void *f_y, void *f_z, void *m_x, void *m_y, void *m_z, void *rho_field, void *p, int *n)
 
void inviscid_res_part_mz_flux_opencl (void *f_x, void *f_y, void *f_z, void *m_x, void *m_y, void *m_z, void *rho_field, void *p, int *n)
 
void inviscid_res_part_E_flux_opencl (void *f_x, void *f_y, void *f_z, void *m_x, void *m_y, void *m_z, void *rho_field, void *p, void *E, int *n)
 
void compressible_res_part_coef_mult_opencl (void *rhs_rho, void *rhs_m_x, void *rhs_m_y, void *rhs_m_z, void *rhs_E, void *mult, int *n)
 
void compressible_res_part_rk_sum_opencl (void *rho, void *m_x, void *m_y, void *m_z, void *E, void *k_rho_i, void *k_m_x_i, void *k_m_y_i, void *k_m_z_i, void *k_E_i, real *dt, real *c, int *n)
 

Function Documentation

◆ compressible_res_part_coef_mult_opencl()

void compressible_res_part_coef_mult_opencl ( void *  rhs_rho,
void *  rhs_m_x,
void *  rhs_m_y,
void *  rhs_m_z,
void *  rhs_E,
void *  mult,
int *  n 
)

Definition at line 205 of file compressible_res.c.

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◆ compressible_res_part_rk_sum_opencl()

void compressible_res_part_rk_sum_opencl ( void *  rho,
void *  m_x,
void *  m_y,
void *  m_z,
void *  E,
void *  k_rho_i,
void *  k_m_x_i,
void *  k_m_y_i,
void *  k_m_z_i,
void *  k_E_i,
real *  dt,
real *  c,
int *  n 
)

Definition at line 235 of file compressible_res.c.

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◆ compressible_res_part_visc_opencl()

void compressible_res_part_visc_opencl ( void *  rhs_u,
void *  Binv,
void *  lap_sol,
void *  effective_visc,
int *  n 
)

Definition at line 49 of file compressible_res.c.

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◆ inviscid_res_part_E_flux_opencl()

void inviscid_res_part_E_flux_opencl ( void *  f_x,
void *  f_y,
void *  f_z,
void *  m_x,
void *  m_y,
void *  m_z,
void *  rho_field,
void *  p,
void *  E,
int *  n 
)

Definition at line 172 of file compressible_res.c.

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◆ inviscid_res_part_mx_flux_opencl()

void inviscid_res_part_mx_flux_opencl ( void *  f_x,
void *  f_y,
void *  f_z,
void *  m_x,
void *  m_y,
void *  m_z,
void *  rho_field,
void *  p,
int *  n 
)

Definition at line 76 of file compressible_res.c.

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◆ inviscid_res_part_my_flux_opencl()

void inviscid_res_part_my_flux_opencl ( void *  f_x,
void *  f_y,
void *  f_z,
void *  m_x,
void *  m_y,
void *  m_z,
void *  rho_field,
void *  p,
int *  n 
)

Definition at line 108 of file compressible_res.c.

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◆ inviscid_res_part_mz_flux_opencl()

void inviscid_res_part_mz_flux_opencl ( void *  f_x,
void *  f_y,
void *  f_z,
void *  m_x,
void *  m_y,
void *  m_z,
void *  rho_field,
void *  p,
int *  n 
)

Definition at line 140 of file compressible_res.c.

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