19e1d4b82SJeremy L Thompson // Copyright (c) 2017-2024, Lawrence Livermore National Security, LLC and other CEED contributors. 29e1d4b82SJeremy L Thompson // All Rights Reserved. See the top-level LICENSE and NOTICE files for details. 39e1d4b82SJeremy L Thompson // 49e1d4b82SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause 59e1d4b82SJeremy L Thompson // 69e1d4b82SJeremy L Thompson // This file is part of CEED: http://github.com/ceed 79e1d4b82SJeremy L Thompson 89e1d4b82SJeremy L Thompson /// @file 99e1d4b82SJeremy L Thompson /// Internal header for HIP tensor product basis with AtPoints evaluation 109e1d4b82SJeremy L Thompson #include <ceed/types.h> 119e1d4b82SJeremy L Thompson 129e1d4b82SJeremy L Thompson #include "hip-shared-basis-read-write-templates.h" 139e1d4b82SJeremy L Thompson #include "hip-shared-basis-tensor-at-points-templates.h" 149e1d4b82SJeremy L Thompson #include "hip-shared-basis-tensor-templates.h" 159e1d4b82SJeremy L Thompson 169e1d4b82SJeremy L Thompson //------------------------------------------------------------------------------ 179e1d4b82SJeremy L Thompson // Tensor Basis Kernels AtPoints 189e1d4b82SJeremy L Thompson //------------------------------------------------------------------------------ 199e1d4b82SJeremy L Thompson 209e1d4b82SJeremy L Thompson //------------------------------------------------------------------------------ 219e1d4b82SJeremy L Thompson // Interp 229e1d4b82SJeremy L Thompson //------------------------------------------------------------------------------ 239e1d4b82SJeremy L Thompson extern "C" __launch_bounds__(BASIS_INTERP_BLOCK_SIZE) __global__ 249e1d4b82SJeremy L Thompson void InterpAtPoints(const CeedInt num_elem, const CeedScalar *d_chebyshev_interp_1d, const CeedInt *points_per_elem, 259e1d4b82SJeremy L Thompson const CeedScalar *__restrict__ d_X, const CeedScalar *__restrict__ d_U, CeedScalar *__restrict__ d_V) { 269e1d4b82SJeremy L Thompson extern __shared__ CeedScalar slice[]; 279e1d4b82SJeremy L Thompson 289e1d4b82SJeremy L Thompson // load chebyshev_interp_1d into shared memory 299e1d4b82SJeremy L Thompson __shared__ CeedScalar s_B[BASIS_P_1D * BASIS_Q_1D]; 309e1d4b82SJeremy L Thompson loadMatrix<BASIS_P_1D * BASIS_Q_1D>(d_chebyshev_interp_1d, s_B); 319e1d4b82SJeremy L Thompson __syncthreads(); 329e1d4b82SJeremy L Thompson 339e1d4b82SJeremy L Thompson SharedData_Hip data; 349e1d4b82SJeremy L Thompson data.t_id_x = threadIdx.x; 359e1d4b82SJeremy L Thompson data.t_id_y = threadIdx.y; 369e1d4b82SJeremy L Thompson data.t_id_z = threadIdx.z; 379e1d4b82SJeremy L Thompson data.t_id = threadIdx.x + threadIdx.y * blockDim.x + threadIdx.z * blockDim.y * blockDim.x; 389e1d4b82SJeremy L Thompson data.slice = slice + data.t_id_z * T_1D * (BASIS_DIM > 1 ? T_1D : 1); 399e1d4b82SJeremy L Thompson 40*b6a2eb79SJeremy L Thompson CeedScalar r_X[BASIS_DIM]; 419e1d4b82SJeremy L Thompson CeedScalar r_U[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_P_1D : 1)]; 429e1d4b82SJeremy L Thompson CeedScalar r_C[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)]; 439e1d4b82SJeremy L Thompson CeedScalar r_V[BASIS_NUM_COMP]; 449e1d4b82SJeremy L Thompson 459e1d4b82SJeremy L Thompson // Apply basis element by element 469e1d4b82SJeremy L Thompson for (CeedInt elem = blockIdx.x * blockDim.z + threadIdx.z; elem < num_elem; elem += gridDim.x * blockDim.z) { 479e1d4b82SJeremy L Thompson // Map to coefficients 489e1d4b82SJeremy L Thompson if (BASIS_DIM == 1) { 499e1d4b82SJeremy L Thompson ReadElementStrided1d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * num_elem, BASIS_P_1D, d_U, r_U); 509e1d4b82SJeremy L Thompson Interp1d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_U, s_B, r_C); 519e1d4b82SJeremy L Thompson } else if (BASIS_DIM == 2) { 529e1d4b82SJeremy L Thompson ReadElementStrided2d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * BASIS_P_1D * num_elem, BASIS_P_1D * BASIS_P_1D, d_U, r_U); 539e1d4b82SJeremy L Thompson InterpTensor2d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_U, s_B, r_C); 549e1d4b82SJeremy L Thompson } else if (BASIS_DIM == 3) { 559e1d4b82SJeremy L Thompson ReadElementStrided3d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * BASIS_P_1D * BASIS_P_1D * num_elem, 569e1d4b82SJeremy L Thompson BASIS_P_1D * BASIS_P_1D * BASIS_P_1D, d_U, r_U); 579e1d4b82SJeremy L Thompson InterpTensor3d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_U, s_B, r_C); 589e1d4b82SJeremy L Thompson } 599e1d4b82SJeremy L Thompson 609e1d4b82SJeremy L Thompson // Map to points 61*b6a2eb79SJeremy L Thompson const CeedInt point_loop_bound = (blockDim.x * blockDim.y) * ceil(1.0 * BASIS_NUM_PTS / (blockDim.x * blockDim.y)); 62*b6a2eb79SJeremy L Thompson 63*b6a2eb79SJeremy L Thompson for (CeedInt i = threadIdx.x + threadIdx.y * blockDim.x; i < point_loop_bound; i += blockDim.x * blockDim.y) { 64*b6a2eb79SJeremy L Thompson const CeedInt p = i % BASIS_NUM_PTS; 65*b6a2eb79SJeremy L Thompson 66*b6a2eb79SJeremy L Thompson ReadPoint<BASIS_DIM, BASIS_NUM_PTS>(data, elem, p, BASIS_NUM_PTS, 1, num_elem * BASIS_NUM_PTS, BASIS_NUM_PTS, d_X, r_X); 67*b6a2eb79SJeremy L Thompson if (BASIS_DIM == 1) { 68*b6a2eb79SJeremy L Thompson InterpAtPoints1d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_C, r_X, r_V); 69*b6a2eb79SJeremy L Thompson } else if (BASIS_DIM == 2) { 70*b6a2eb79SJeremy L Thompson InterpAtPoints2d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_C, r_X, r_V); 71*b6a2eb79SJeremy L Thompson } else if (BASIS_DIM == 3) { 72*b6a2eb79SJeremy L Thompson InterpAtPoints3d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_C, r_X, r_V); 73*b6a2eb79SJeremy L Thompson } 74*b6a2eb79SJeremy L Thompson WritePoint<BASIS_NUM_COMP, BASIS_NUM_PTS>(data, elem, p, BASIS_NUM_PTS, 1, num_elem * BASIS_NUM_PTS, BASIS_NUM_PTS, r_V, d_V); 75*b6a2eb79SJeremy L Thompson } 769e1d4b82SJeremy L Thompson } 779e1d4b82SJeremy L Thompson } 789e1d4b82SJeremy L Thompson 799e1d4b82SJeremy L Thompson extern "C" __launch_bounds__(BASIS_INTERP_BLOCK_SIZE) __global__ 809e1d4b82SJeremy L Thompson void InterpTransposeAtPoints(const CeedInt num_elem, const CeedScalar *d_chebyshev_interp_1d, const CeedInt *points_per_elem, 819e1d4b82SJeremy L Thompson const CeedScalar *__restrict__ d_X, const CeedScalar *__restrict__ d_U, CeedScalar *__restrict__ d_V) { 829e1d4b82SJeremy L Thompson extern __shared__ CeedScalar slice[]; 839e1d4b82SJeremy L Thompson 849e1d4b82SJeremy L Thompson // load chebyshev_interp_1d into shared memory 859e1d4b82SJeremy L Thompson __shared__ CeedScalar s_B[BASIS_P_1D * BASIS_Q_1D]; 869e1d4b82SJeremy L Thompson loadMatrix<BASIS_P_1D * BASIS_Q_1D>(d_chebyshev_interp_1d, s_B); 879e1d4b82SJeremy L Thompson __syncthreads(); 889e1d4b82SJeremy L Thompson 899e1d4b82SJeremy L Thompson SharedData_Hip data; 909e1d4b82SJeremy L Thompson data.t_id_x = threadIdx.x; 919e1d4b82SJeremy L Thompson data.t_id_y = threadIdx.y; 929e1d4b82SJeremy L Thompson data.t_id_z = threadIdx.z; 939e1d4b82SJeremy L Thompson data.t_id = threadIdx.x + threadIdx.y * blockDim.x + threadIdx.z * blockDim.y * blockDim.x; 949e1d4b82SJeremy L Thompson data.slice = slice + data.t_id_z * T_1D * (BASIS_DIM > 1 ? T_1D : 1); 959e1d4b82SJeremy L Thompson 96*b6a2eb79SJeremy L Thompson CeedScalar r_X[BASIS_DIM]; 979e1d4b82SJeremy L Thompson CeedScalar r_U[BASIS_NUM_COMP]; 989e1d4b82SJeremy L Thompson CeedScalar r_C[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)]; 999e1d4b82SJeremy L Thompson CeedScalar r_V[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)]; 1009e1d4b82SJeremy L Thompson 1019e1d4b82SJeremy L Thompson // Apply basis element by element 1029e1d4b82SJeremy L Thompson for (CeedInt elem = blockIdx.x * blockDim.z + threadIdx.z; elem < num_elem; elem += gridDim.x * blockDim.z) { 103*b6a2eb79SJeremy L Thompson // Clear register 104*b6a2eb79SJeremy L Thompson for (CeedInt i = 0; i < BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1); i++) r_C[i] = 0.0; 105*b6a2eb79SJeremy L Thompson 1069e1d4b82SJeremy L Thompson // Map from points 107*b6a2eb79SJeremy L Thompson const CeedInt point_loop_bound = (blockDim.x * blockDim.y) * ceil(1.0 * BASIS_NUM_PTS / (blockDim.x * blockDim.y)); 108*b6a2eb79SJeremy L Thompson 109*b6a2eb79SJeremy L Thompson for (CeedInt i = threadIdx.x + threadIdx.y * blockDim.x; i < point_loop_bound; i += blockDim.x * blockDim.y) { 110*b6a2eb79SJeremy L Thompson const CeedInt p = i % BASIS_NUM_PTS; 111*b6a2eb79SJeremy L Thompson 112*b6a2eb79SJeremy L Thompson ReadPoint<BASIS_DIM, BASIS_NUM_PTS>(data, elem, p, BASIS_NUM_PTS, 1, num_elem * BASIS_NUM_PTS, BASIS_NUM_PTS, d_X, r_X); 113*b6a2eb79SJeremy L Thompson ReadPoint<BASIS_NUM_COMP, BASIS_NUM_PTS>(data, elem, i, points_per_elem[elem], 1, num_elem * BASIS_NUM_PTS, BASIS_NUM_PTS, d_U, r_U); 114*b6a2eb79SJeremy L Thompson if (BASIS_DIM == 1) { 115*b6a2eb79SJeremy L Thompson InterpTransposeAtPoints1d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_U, r_X, r_C); 116*b6a2eb79SJeremy L Thompson } else if (BASIS_DIM == 2) { 117*b6a2eb79SJeremy L Thompson InterpTransposeAtPoints2d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_U, r_X, r_C); 118*b6a2eb79SJeremy L Thompson } else if (BASIS_DIM == 3) { 119*b6a2eb79SJeremy L Thompson InterpTransposeAtPoints3d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_U, r_X, r_C); 120*b6a2eb79SJeremy L Thompson } 121*b6a2eb79SJeremy L Thompson } 122*b6a2eb79SJeremy L Thompson __syncthreads(); 1239e1d4b82SJeremy L Thompson 1249e1d4b82SJeremy L Thompson // Map from coefficients 1259e1d4b82SJeremy L Thompson if (BASIS_DIM == 1) { 1269e1d4b82SJeremy L Thompson InterpTranspose1d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_C, s_B, r_V); 1279e1d4b82SJeremy L Thompson SumElementStrided1d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * num_elem, BASIS_P_1D, r_V, d_V); 1289e1d4b82SJeremy L Thompson } else if (BASIS_DIM == 2) { 1299e1d4b82SJeremy L Thompson InterpTransposeTensor2d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_C, s_B, r_V); 1309e1d4b82SJeremy L Thompson SumElementStrided2d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * BASIS_P_1D * num_elem, BASIS_P_1D * BASIS_P_1D, r_V, d_V); 1319e1d4b82SJeremy L Thompson } else if (BASIS_DIM == 3) { 1329e1d4b82SJeremy L Thompson InterpTransposeTensor3d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_C, s_B, r_V); 1339e1d4b82SJeremy L Thompson SumElementStrided3d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * BASIS_P_1D * BASIS_P_1D * num_elem, 1349e1d4b82SJeremy L Thompson BASIS_P_1D * BASIS_P_1D * BASIS_P_1D, r_V, d_V); 1359e1d4b82SJeremy L Thompson } 1369e1d4b82SJeremy L Thompson } 1379e1d4b82SJeremy L Thompson } 1389e1d4b82SJeremy L Thompson 1399e1d4b82SJeremy L Thompson //------------------------------------------------------------------------------ 1409e1d4b82SJeremy L Thompson // Grad 1419e1d4b82SJeremy L Thompson //------------------------------------------------------------------------------ 1429e1d4b82SJeremy L Thompson extern "C" __launch_bounds__(BASIS_INTERP_BLOCK_SIZE) __global__ 1439e1d4b82SJeremy L Thompson void GradAtPoints(const CeedInt num_elem, const CeedScalar *d_chebyshev_interp_1d, const CeedInt *points_per_elem, 1449e1d4b82SJeremy L Thompson const CeedScalar *__restrict__ d_X, const CeedScalar *__restrict__ d_U, CeedScalar *__restrict__ d_V) { 1459e1d4b82SJeremy L Thompson extern __shared__ CeedScalar slice[]; 1469e1d4b82SJeremy L Thompson 1479e1d4b82SJeremy L Thompson // load chebyshev_interp_1d into shared memory 1489e1d4b82SJeremy L Thompson __shared__ CeedScalar s_B[BASIS_P_1D * BASIS_Q_1D]; 1499e1d4b82SJeremy L Thompson loadMatrix<BASIS_P_1D * BASIS_Q_1D>(d_chebyshev_interp_1d, s_B); 1509e1d4b82SJeremy L Thompson __syncthreads(); 1519e1d4b82SJeremy L Thompson 1529e1d4b82SJeremy L Thompson SharedData_Hip data; 1539e1d4b82SJeremy L Thompson data.t_id_x = threadIdx.x; 1549e1d4b82SJeremy L Thompson data.t_id_y = threadIdx.y; 1559e1d4b82SJeremy L Thompson data.t_id_z = threadIdx.z; 1569e1d4b82SJeremy L Thompson data.t_id = threadIdx.x + threadIdx.y * blockDim.x + threadIdx.z * blockDim.y * blockDim.x; 1579e1d4b82SJeremy L Thompson data.slice = slice + data.t_id_z * T_1D * (BASIS_DIM > 1 ? T_1D : 1); 1589e1d4b82SJeremy L Thompson 159*b6a2eb79SJeremy L Thompson CeedScalar r_X[BASIS_DIM]; 1609e1d4b82SJeremy L Thompson CeedScalar r_U[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_P_1D : 1)]; 1619e1d4b82SJeremy L Thompson CeedScalar r_C[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)]; 1629e1d4b82SJeremy L Thompson CeedScalar r_V[BASIS_NUM_COMP * BASIS_DIM]; 1639e1d4b82SJeremy L Thompson 1649e1d4b82SJeremy L Thompson // Apply basis element by element 1659e1d4b82SJeremy L Thompson for (CeedInt elem = blockIdx.x * blockDim.z + threadIdx.z; elem < num_elem; elem += gridDim.x * blockDim.z) { 1669e1d4b82SJeremy L Thompson // Map to coefficients 1679e1d4b82SJeremy L Thompson if (BASIS_DIM == 1) { 1689e1d4b82SJeremy L Thompson ReadElementStrided1d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * num_elem, BASIS_P_1D, d_U, r_U); 1699e1d4b82SJeremy L Thompson Interp1d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_U, s_B, r_C); 1709e1d4b82SJeremy L Thompson } else if (BASIS_DIM == 2) { 1719e1d4b82SJeremy L Thompson ReadElementStrided2d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * BASIS_P_1D * num_elem, BASIS_P_1D * BASIS_P_1D, d_U, r_U); 1729e1d4b82SJeremy L Thompson InterpTensor2d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_U, s_B, r_C); 1739e1d4b82SJeremy L Thompson } else if (BASIS_DIM == 3) { 1749e1d4b82SJeremy L Thompson ReadElementStrided3d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * BASIS_P_1D * BASIS_P_1D * num_elem, 1759e1d4b82SJeremy L Thompson BASIS_P_1D * BASIS_P_1D * BASIS_P_1D, d_U, r_U); 1769e1d4b82SJeremy L Thompson InterpTensor3d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_U, s_B, r_C); 1779e1d4b82SJeremy L Thompson } 1789e1d4b82SJeremy L Thompson 1799e1d4b82SJeremy L Thompson // Map to points 180*b6a2eb79SJeremy L Thompson const CeedInt point_loop_bound = (blockDim.x * blockDim.y) * ceil(1.0 * BASIS_NUM_PTS / (blockDim.x * blockDim.y)); 181*b6a2eb79SJeremy L Thompson 182*b6a2eb79SJeremy L Thompson for (CeedInt i = threadIdx.x + threadIdx.y * blockDim.x; i < point_loop_bound; i += blockDim.x * blockDim.y) { 183*b6a2eb79SJeremy L Thompson const CeedInt p = i % BASIS_NUM_PTS; 184*b6a2eb79SJeremy L Thompson 185*b6a2eb79SJeremy L Thompson ReadPoint<BASIS_DIM, BASIS_NUM_PTS>(data, elem, p, BASIS_NUM_PTS, 1, num_elem * BASIS_NUM_PTS, BASIS_NUM_PTS, d_X, r_X); 186*b6a2eb79SJeremy L Thompson if (BASIS_DIM == 1) { 187*b6a2eb79SJeremy L Thompson GradAtPoints1d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_C, r_X, r_V); 188*b6a2eb79SJeremy L Thompson } else if (BASIS_DIM == 2) { 189*b6a2eb79SJeremy L Thompson GradAtPoints2d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_C, r_X, r_V); 190*b6a2eb79SJeremy L Thompson } else if (BASIS_DIM == 3) { 191*b6a2eb79SJeremy L Thompson GradAtPoints3d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_C, r_X, r_V); 192*b6a2eb79SJeremy L Thompson } 193*b6a2eb79SJeremy L Thompson WritePoint<BASIS_NUM_COMP * BASIS_DIM, BASIS_NUM_PTS>(data, elem, p, BASIS_NUM_PTS, 1, num_elem * BASIS_NUM_PTS, BASIS_NUM_PTS, r_V, d_V); 194*b6a2eb79SJeremy L Thompson } 1959e1d4b82SJeremy L Thompson } 1969e1d4b82SJeremy L Thompson } 1979e1d4b82SJeremy L Thompson 1989e1d4b82SJeremy L Thompson extern "C" __launch_bounds__(BASIS_INTERP_BLOCK_SIZE) __global__ 1999e1d4b82SJeremy L Thompson void GradTransposeAtPoints(const CeedInt num_elem, const CeedScalar *d_chebyshev_interp_1d, const CeedInt *points_per_elem, 2009e1d4b82SJeremy L Thompson const CeedScalar *__restrict__ d_X, const CeedScalar *__restrict__ d_U, CeedScalar *__restrict__ d_V) { 2019e1d4b82SJeremy L Thompson extern __shared__ CeedScalar slice[]; 2029e1d4b82SJeremy L Thompson 2039e1d4b82SJeremy L Thompson // load chebyshev_interp_1d into shared memory 2049e1d4b82SJeremy L Thompson __shared__ CeedScalar s_B[BASIS_P_1D * BASIS_Q_1D]; 2059e1d4b82SJeremy L Thompson loadMatrix<BASIS_P_1D * BASIS_Q_1D>(d_chebyshev_interp_1d, s_B); 2069e1d4b82SJeremy L Thompson __syncthreads(); 2079e1d4b82SJeremy L Thompson 2089e1d4b82SJeremy L Thompson SharedData_Hip data; 2099e1d4b82SJeremy L Thompson data.t_id_x = threadIdx.x; 2109e1d4b82SJeremy L Thompson data.t_id_y = threadIdx.y; 2119e1d4b82SJeremy L Thompson data.t_id_z = threadIdx.z; 2129e1d4b82SJeremy L Thompson data.t_id = threadIdx.x + threadIdx.y * blockDim.x + threadIdx.z * blockDim.y * blockDim.x; 2139e1d4b82SJeremy L Thompson data.slice = slice + data.t_id_z * T_1D * (BASIS_DIM > 1 ? T_1D : 1); 2149e1d4b82SJeremy L Thompson 215*b6a2eb79SJeremy L Thompson CeedScalar r_X[BASIS_DIM]; 2169e1d4b82SJeremy L Thompson CeedScalar r_U[BASIS_NUM_COMP * BASIS_DIM]; 2179e1d4b82SJeremy L Thompson CeedScalar r_C[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)]; 2189e1d4b82SJeremy L Thompson CeedScalar r_V[BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1)]; 2199e1d4b82SJeremy L Thompson 2209e1d4b82SJeremy L Thompson // Apply basis element by element 2219e1d4b82SJeremy L Thompson for (CeedInt elem = blockIdx.x * blockDim.z + threadIdx.z; elem < num_elem; elem += gridDim.x * blockDim.z) { 222*b6a2eb79SJeremy L Thompson // Clear register 223*b6a2eb79SJeremy L Thompson for (CeedInt i = 0; i < BASIS_NUM_COMP * (BASIS_DIM > 2 ? BASIS_Q_1D : 1); i++) r_C[i] = 0.0; 224*b6a2eb79SJeremy L Thompson 2259e1d4b82SJeremy L Thompson // Map from points 226*b6a2eb79SJeremy L Thompson const CeedInt point_loop_bound = (blockDim.x * blockDim.y) * ceil(1.0 * BASIS_NUM_PTS / (blockDim.x * blockDim.y)); 227*b6a2eb79SJeremy L Thompson 228*b6a2eb79SJeremy L Thompson for (CeedInt i = threadIdx.x + threadIdx.y * blockDim.x; i < point_loop_bound; i += blockDim.x * blockDim.y) { 229*b6a2eb79SJeremy L Thompson const CeedInt p = i % BASIS_NUM_PTS; 230*b6a2eb79SJeremy L Thompson 231*b6a2eb79SJeremy L Thompson ReadPoint<BASIS_DIM, BASIS_NUM_PTS>(data, elem, p, BASIS_NUM_PTS, 1, num_elem * BASIS_NUM_PTS, BASIS_NUM_PTS, d_X, r_X); 232*b6a2eb79SJeremy L Thompson ReadPoint<BASIS_NUM_COMP * BASIS_DIM, BASIS_NUM_PTS>(data, elem, i, points_per_elem[elem], 1, num_elem * BASIS_NUM_PTS, BASIS_NUM_PTS, d_U, 233*b6a2eb79SJeremy L Thompson r_U); 234*b6a2eb79SJeremy L Thompson if (BASIS_DIM == 1) { 235*b6a2eb79SJeremy L Thompson GradTransposeAtPoints1d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_U, r_X, r_C); 236*b6a2eb79SJeremy L Thompson } else if (BASIS_DIM == 2) { 237*b6a2eb79SJeremy L Thompson GradTransposeAtPoints2d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_U, r_X, r_C); 238*b6a2eb79SJeremy L Thompson } else if (BASIS_DIM == 3) { 239*b6a2eb79SJeremy L Thompson GradTransposeAtPoints3d<BASIS_NUM_COMP, BASIS_NUM_PTS, BASIS_Q_1D>(data, i, r_U, r_X, r_C); 240*b6a2eb79SJeremy L Thompson } 241*b6a2eb79SJeremy L Thompson } 242*b6a2eb79SJeremy L Thompson __syncthreads(); 2439e1d4b82SJeremy L Thompson 2449e1d4b82SJeremy L Thompson // Map from coefficients 2459e1d4b82SJeremy L Thompson if (BASIS_DIM == 1) { 2469e1d4b82SJeremy L Thompson InterpTranspose1d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_C, s_B, r_V); 2479e1d4b82SJeremy L Thompson SumElementStrided1d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * num_elem, BASIS_P_1D, r_V, d_V); 2489e1d4b82SJeremy L Thompson } else if (BASIS_DIM == 2) { 2499e1d4b82SJeremy L Thompson InterpTransposeTensor2d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_C, s_B, r_V); 2509e1d4b82SJeremy L Thompson SumElementStrided2d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * BASIS_P_1D * num_elem, BASIS_P_1D * BASIS_P_1D, r_V, d_V); 2519e1d4b82SJeremy L Thompson } else if (BASIS_DIM == 3) { 2529e1d4b82SJeremy L Thompson InterpTransposeTensor3d<BASIS_NUM_COMP, BASIS_P_1D, BASIS_Q_1D>(data, r_C, s_B, r_V); 2539e1d4b82SJeremy L Thompson SumElementStrided3d<BASIS_NUM_COMP, BASIS_P_1D>(data, elem, 1, BASIS_P_1D * BASIS_P_1D * BASIS_P_1D * num_elem, 2549e1d4b82SJeremy L Thompson BASIS_P_1D * BASIS_P_1D * BASIS_P_1D, r_V, d_V); 2559e1d4b82SJeremy L Thompson } 2569e1d4b82SJeremy L Thompson } 2579e1d4b82SJeremy L Thompson } 258