/* This OpenCL kernel implements the second order HLL flux Copyright (C) 2016 SINTEF ICT This program is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program. If not, see . */ #include "common.h" #include "SWECommon.h" #include "limiters.h" /** * Computes the flux along the x axis for all faces */ __device__ void computeFluxF(float Q[3][BLOCK_HEIGHT+4][BLOCK_WIDTH+4], float Qx[3][BLOCK_HEIGHT+4][BLOCK_WIDTH+4], float F[3][BLOCK_HEIGHT+4][BLOCK_WIDTH+4], const float g_, const float dx_, const float dt_) { for (int j=threadIdx.y; j( h0_ptr_, h0_pitch_, Q[0], nx_, ny_, boundary_conditions_); readBlock(hu0_ptr_, hu0_pitch_, Q[1], nx_, ny_, boundary_conditions_); readBlock(hv0_ptr_, hv0_pitch_, Q[2], nx_, ny_, boundary_conditions_); //Step 0 => evolve x first, then y if (step_ == 0) { //Compute fluxes along the x axis and evolve minmodSlopeX(Q, Qx, theta_); __syncthreads(); computeFluxF(Q, Qx, F, g_, dx_, dt_); __syncthreads(); evolveF(Q, F, dx_, dt_); __syncthreads(); //Compute fluxes along the y axis and evolve minmodSlopeY(Q, Qx, theta_); __syncthreads(); computeFluxG(Q, Qx, F, g_, dy_, dt_); __syncthreads(); evolveG(Q, F, dy_, dt_); __syncthreads(); } //Step 1 => evolve y first, then x else { //Compute fluxes along the y axis and evolve minmodSlopeY(Q, Qx, theta_); __syncthreads(); computeFluxG(Q, Qx, F, g_, dy_, dt_); __syncthreads(); evolveG(Q, F, dy_, dt_); __syncthreads(); //Compute fluxes along the x axis and evolve minmodSlopeX(Q, Qx, theta_); __syncthreads(); computeFluxF(Q, Qx, F, g_, dx_, dt_); __syncthreads(); evolveF(Q, F, dx_, dt_); __syncthreads(); } // Write to main memory for all internal cells writeBlock( h1_ptr_, h1_pitch_, Q[0], nx_, ny_, 0, 1); writeBlock(hu1_ptr_, hu1_pitch_, Q[1], nx_, ny_, 0, 1); writeBlock(hv1_ptr_, hv1_pitch_, Q[2], nx_, ny_, 0, 1); } } // extern "C"