1c532df63SYohann // Copyright (c) 2017-2018, Lawrence Livermore National Security, LLC. 2c532df63SYohann // Produced at the Lawrence Livermore National Laboratory. LLNL-CODE-734707. 3c532df63SYohann // All Rights reserved. See files LICENSE and NOTICE for details. 4c532df63SYohann // 5c532df63SYohann // This file is part of CEED, a collection of benchmarks, miniapps, software 6c532df63SYohann // libraries and APIs for efficient high-order finite element and spectral 7c532df63SYohann // element discretizations for exascale applications. For more information and 8c532df63SYohann // source code availability see http://github.com/ceed. 9c532df63SYohann // 10c532df63SYohann // The CEED research is supported by the Exascale Computing Project 17-SC-20-SC, 11c532df63SYohann // a collaborative effort of two U.S. Department of Energy organizations (Office 12c532df63SYohann // of Science and the National Nuclear Security Administration) responsible for 13c532df63SYohann // the planning and preparation of a capable exascale ecosystem, including 14c532df63SYohann // software, applications, hardware, advanced system engineering and early 15c532df63SYohann // testbed platforms, in support of the nation's exascale computing imperative. 16c532df63SYohann 17c532df63SYohann #include <ceed-backend.h> 18c532df63SYohann #include <ceed.h> 19c532df63SYohann #include "ceed-cuda-shared.h" 20c532df63SYohann #include "../cuda/ceed-cuda.h" 21c532df63SYohann 22c532df63SYohann //********************* 23c532df63SYohann // shared mem kernels 24c532df63SYohann static const char *kernelsShared = QUOTE( 25c532df63SYohann 26c532df63SYohann inline __device__ void add(CeedScalar *r_V, const CeedScalar *r_U) { 27c532df63SYohann for (int i = 0; i < Q1D; i++) 28c532df63SYohann r_V[i] += r_U[i]; 29c532df63SYohann } 30c532df63SYohann 31c532df63SYohann ////////// 32c532df63SYohann // 1D // 33c532df63SYohann ////////// 34c532df63SYohann 35c532df63SYohann inline __device__ void readDofs1d(const int elem, const int tidx, 36c532df63SYohann const int tidy, const int comp, 37c532df63SYohann const int nelem, const CeedScalar *d_U, CeedScalar *slice) { 38c532df63SYohann for (int i = 0; i < P1D; i++) 39c532df63SYohann slice[i] = d_U[i + comp*P1D + elem*BASIS_NCOMP*P1D]; 40c532df63SYohann for (int i = P1D; i < Q1D; i++) 41c532df63SYohann slice[i] = 0.0; 42c532df63SYohann } 43c532df63SYohann 44c532df63SYohann inline __device__ void writeDofs1d(const int elem, const int tidx, 45c532df63SYohann const int tidy, const int comp, 46c532df63SYohann const int nelem, const CeedScalar &r_V, CeedScalar *d_V) { 47c532df63SYohann if (tidx<P1D) { 48c532df63SYohann d_V[tidx + comp*P1D + elem*BASIS_NCOMP*P1D] = r_V; 49c532df63SYohann } 50c532df63SYohann } 51c532df63SYohann 52c532df63SYohann inline __device__ void readQuads1d(const int elem, const int tidx, 53c532df63SYohann const int tidy, const int comp, 54c532df63SYohann const int dim, const int nelem, const CeedScalar *d_U, CeedScalar *slice) { 55c532df63SYohann for (int i = 0; i < Q1D; i++) 56c532df63SYohann slice[i] = d_U[i + elem*Q1D + comp*Q1D*nelem + dim*BASIS_NCOMP*nelem*Q1D]; 57c532df63SYohann } 58c532df63SYohann 59c532df63SYohann inline __device__ void writeQuads1d(const int elem, const int tidx, 60c532df63SYohann const int tidy, const int comp, 61c532df63SYohann const int dim, const int nelem, const CeedScalar &r_V, CeedScalar *d_V) { 62c532df63SYohann d_V[tidx + elem*Q1D + comp*Q1D*nelem + dim*BASIS_NCOMP*nelem*Q1D] = r_V; 63c532df63SYohann } 64c532df63SYohann 65c532df63SYohann inline __device__ void ContractX1d(CeedScalar *slice, const int tidx, 66c532df63SYohann const int tidy, 67c532df63SYohann const CeedScalar &U, const CeedScalar *B, CeedScalar &V) { 68c532df63SYohann V = 0.0; 69c532df63SYohann for (int i = 0; i < P1D; ++i) { 70c532df63SYohann V += B[i + tidx*P1D] * slice[i];//contract x direction 71c532df63SYohann } 72c532df63SYohann } 73c532df63SYohann 74c532df63SYohann inline __device__ void ContractTransposeX1d(CeedScalar *slice, const int tidx, 75c532df63SYohann const int tidy, 76c532df63SYohann const CeedScalar &U, const CeedScalar *B, CeedScalar &V) { 77c532df63SYohann V = 0.0; 78c532df63SYohann for (int i = 0; i < Q1D; ++i) { 79c532df63SYohann V += B[tidx + i*P1D] * slice[i];//contract x direction 80c532df63SYohann } 81c532df63SYohann } 82c532df63SYohann 83c532df63SYohann inline __device__ void interp1d(const CeedInt nelem, const int transpose, 84c532df63SYohann const CeedScalar *c_B, const CeedScalar *__restrict__ d_U, 85c532df63SYohann CeedScalar *__restrict__ d_V, 86c532df63SYohann CeedScalar *slice) { 87c532df63SYohann CeedScalar r_V; 88c532df63SYohann CeedScalar r_t; 89c532df63SYohann 90c532df63SYohann const int tidx = threadIdx.x; 91c532df63SYohann const int tidy = threadIdx.y; 92c532df63SYohann 93c532df63SYohann 94c532df63SYohann for (CeedInt elem = blockIdx.x*blockDim.z + threadIdx.z; elem < nelem; 95c532df63SYohann elem += gridDim.x*blockDim.z) { 96c532df63SYohann for(int comp=0; comp<BASIS_NCOMP; comp++) { 97c532df63SYohann if(!transpose) { 98c532df63SYohann readDofs1d(elem, tidx, tidy, comp, nelem, d_U, slice); 99c532df63SYohann ContractX1d(slice, tidx, tidy, r_t, c_B, r_V); 100c532df63SYohann writeQuads1d(elem, tidx, tidy, comp, 0, nelem, r_V, d_V); 101c532df63SYohann } else { 102c532df63SYohann readQuads1d(elem, tidx, tidy, comp, 0, nelem, d_U, slice); 103c532df63SYohann ContractTransposeX1d(slice, tidx, tidy, r_t, c_B, r_V); 104c532df63SYohann writeDofs1d(elem, tidx, tidy, comp, nelem, r_V, d_V); 105c532df63SYohann } 106c532df63SYohann } 107c532df63SYohann } 108c532df63SYohann } 109c532df63SYohann 110c532df63SYohann inline __device__ void grad1d(const CeedInt nelem, const int transpose, 111c532df63SYohann const CeedScalar *c_B, const CeedScalar *c_G, 112c532df63SYohann const CeedScalar *__restrict__ d_U, CeedScalar *__restrict__ d_V, 113c532df63SYohann CeedScalar *slice) { 114c532df63SYohann CeedScalar r_U; 115c532df63SYohann CeedScalar r_V; 116c532df63SYohann 117c532df63SYohann const int tidx = threadIdx.x; 118c532df63SYohann const int tidy = threadIdx.y;//=>this is really a nb of elements per block 119c532df63SYohann int dim; 120c532df63SYohann 121c532df63SYohann for (CeedInt elem = blockIdx.x*blockDim.z + threadIdx.z; elem < nelem; 122c532df63SYohann elem += gridDim.x*blockDim.z) { 123c532df63SYohann for(int comp=0; comp<BASIS_NCOMP; comp++) { 124c532df63SYohann if(!transpose) { 125c532df63SYohann readDofs1d(elem, tidx, tidy, comp, nelem, d_U, slice); 126c532df63SYohann ContractX1d(slice, tidx, tidy, r_U, c_G, r_V); 127c532df63SYohann dim = 0; 128c532df63SYohann writeQuads1d(elem, tidx, tidy, comp, dim, nelem, r_V, d_V); 129c532df63SYohann } else { 130c532df63SYohann dim = 0; 131c532df63SYohann readQuads1d(elem, tidx, tidy, comp, dim, nelem, d_U, slice); 132c532df63SYohann ContractTransposeX1d(slice, tidx, tidy, r_U, c_G, r_V); 133c532df63SYohann writeDofs1d(elem, tidx, tidy, comp, nelem, r_V, d_V); 134c532df63SYohann } 135c532df63SYohann } 136c532df63SYohann } 137c532df63SYohann } 138c532df63SYohann ////////// 139c532df63SYohann // 2D // 140c532df63SYohann ////////// 141c532df63SYohann 142c532df63SYohann inline __device__ void readDofs2d(const int elem, const int tidx, 143c532df63SYohann const int tidy, const int comp, 144c532df63SYohann const int nelem, const CeedScalar *d_U, CeedScalar &U) { 145c532df63SYohann U = (tidx<P1D 146c532df63SYohann && tidy<P1D) ? d_U[tidx + tidy*P1D + comp*P1D*P1D + elem*BASIS_NCOMP*P1D*P1D ] : 147c532df63SYohann 0.0; 148c532df63SYohann } 149c532df63SYohann 150c532df63SYohann inline __device__ void writeDofs2d(const int elem, const int tidx, 151c532df63SYohann const int tidy, const int comp, 152c532df63SYohann const int nelem, const CeedScalar &r_V, CeedScalar *d_V) { 153c532df63SYohann if (tidx<P1D && tidy<P1D) { 154c532df63SYohann d_V[tidx + tidy*P1D + comp*P1D*P1D + elem*BASIS_NCOMP*P1D*P1D ] = r_V; 155c532df63SYohann } 156c532df63SYohann } 157c532df63SYohann 158c532df63SYohann inline __device__ void readQuads2d(const int elem, const int tidx, 159c532df63SYohann const int tidy, const int comp, 160c532df63SYohann const int dim, const int nelem, const CeedScalar *d_U, CeedScalar &U ) { 161c532df63SYohann U = d_U[tidx + tidy*Q1D + elem*Q1D*Q1D + comp*Q1D*Q1D*nelem + 162c532df63SYohann dim*BASIS_NCOMP*nelem*Q1D*Q1D]; 163c532df63SYohann } 164c532df63SYohann 165c532df63SYohann inline __device__ void writeQuads2d(const int elem, const int tidx, 166c532df63SYohann const int tidy, const int comp, 167c532df63SYohann const int dim, const int nelem, const CeedScalar &r_V, CeedScalar *d_V) { 168c532df63SYohann d_V[tidx + tidy*Q1D + elem*Q1D*Q1D + comp*Q1D*Q1D*nelem + 169c532df63SYohann dim*BASIS_NCOMP*nelem*Q1D*Q1D ] = r_V; 170c532df63SYohann } 171c532df63SYohann 172c532df63SYohann inline __device__ void ContractX2d(CeedScalar *slice, const int tidx, 173*4247ecf3SYohann Dudouit const int tidy, const int tidz, 174c532df63SYohann const CeedScalar &U, const CeedScalar *B, CeedScalar &V) { 175*4247ecf3SYohann Dudouit slice[tidx+tidy*Q1D+tidz*Q1D*Q1D] = U; 176c532df63SYohann __syncthreads(); 177c532df63SYohann V = 0.0; 178c532df63SYohann for (int i = 0; i < P1D; ++i) { 179*4247ecf3SYohann Dudouit V += B[i + tidx*P1D] * slice[i + tidy*Q1D + tidz*Q1D*Q1D];//contract x direction 180c532df63SYohann } 181c532df63SYohann __syncthreads(); 182c532df63SYohann } 183c532df63SYohann 184c532df63SYohann inline __device__ void ContractY2d(CeedScalar *slice, const int tidx, 185*4247ecf3SYohann Dudouit const int tidy, const int tidz, 186c532df63SYohann const CeedScalar &U, const CeedScalar *B, CeedScalar &V) { 187*4247ecf3SYohann Dudouit slice[tidx+tidy*Q1D+tidz*Q1D*Q1D] = U; 188c532df63SYohann __syncthreads(); 189c532df63SYohann V = 0.0; 190c532df63SYohann for (int i = 0; i < P1D; ++i) { 191*4247ecf3SYohann Dudouit V += B[i + tidy*P1D] * slice[tidx + i*Q1D + tidz*Q1D*Q1D];//contract y direction 192c532df63SYohann } 193c532df63SYohann __syncthreads(); 194c532df63SYohann } 195c532df63SYohann 196c532df63SYohann inline __device__ void ContractTransposeY2d(CeedScalar *slice, const int tidx, 197*4247ecf3SYohann Dudouit const int tidy, const int tidz, 198c532df63SYohann const CeedScalar &U, const CeedScalar *B, CeedScalar &V) { 199*4247ecf3SYohann Dudouit slice[tidx+tidy*Q1D+tidz*Q1D*Q1D] = U; 200c532df63SYohann __syncthreads(); 201c532df63SYohann V = 0.0; 202c532df63SYohann if (tidy<P1D) { 203c532df63SYohann for (int i = 0; i < Q1D; ++i) { 204*4247ecf3SYohann Dudouit V += B[tidy + i*P1D] * slice[tidx + i*Q1D + tidz*Q1D*Q1D];//contract y direction 205c532df63SYohann } 206c532df63SYohann } 207c532df63SYohann __syncthreads(); 208c532df63SYohann } 209c532df63SYohann 210c532df63SYohann inline __device__ void ContractTransposeX2d(CeedScalar *slice, const int tidx, 211*4247ecf3SYohann Dudouit const int tidy, const int tidz, 212c532df63SYohann const CeedScalar &U, const CeedScalar *B, CeedScalar &V) { 213*4247ecf3SYohann Dudouit slice[tidx+tidy*Q1D+tidz*Q1D*Q1D] = U; 214c532df63SYohann __syncthreads(); 215c532df63SYohann V = 0.0; 216c532df63SYohann if (tidx<P1D) { 217c532df63SYohann for (int i = 0; i < Q1D; ++i) { 218*4247ecf3SYohann Dudouit V += B[tidx + i*P1D] * slice[i + tidy*Q1D + tidz*Q1D*Q1D];//contract x direction 219c532df63SYohann } 220c532df63SYohann } 221c532df63SYohann __syncthreads(); 222c532df63SYohann } 223c532df63SYohann 224c532df63SYohann inline __device__ void interp2d(const CeedInt nelem, const int transpose, 225c532df63SYohann const CeedScalar *c_B, const CeedScalar *__restrict__ d_U, 226c532df63SYohann CeedScalar *__restrict__ d_V, 227c532df63SYohann CeedScalar *slice) { 228c532df63SYohann CeedScalar r_V; 229c532df63SYohann CeedScalar r_t; 230c532df63SYohann 231c532df63SYohann const int tidx = threadIdx.x; 232c532df63SYohann const int tidy = threadIdx.y; 233*4247ecf3SYohann Dudouit const int tidz = threadIdx.z; 234*4247ecf3SYohann Dudouit const int blockElem = tidz/BASIS_NCOMP; 235*4247ecf3SYohann Dudouit const int elemsPerBlock = blockDim.z/BASIS_NCOMP; 236*4247ecf3SYohann Dudouit const int comp = tidz%BASIS_NCOMP; 237c532df63SYohann 238*4247ecf3SYohann Dudouit for (CeedInt elem = blockIdx.x*elemsPerBlock + blockElem; elem < nelem; 239*4247ecf3SYohann Dudouit elem += gridDim.x*elemsPerBlock) { 240*4247ecf3SYohann Dudouit // for(int comp=0; comp<BASIS_NCOMP; comp++) { 241*4247ecf3SYohann Dudouit const int comp = tidz%BASIS_NCOMP; 242c532df63SYohann r_V = 0.0; 243c532df63SYohann r_t = 0.0; 244c532df63SYohann if(!transpose) { 245c532df63SYohann readDofs2d(elem, tidx, tidy, comp, nelem, d_U, r_V); 246*4247ecf3SYohann Dudouit ContractX2d(slice, tidx, tidy, tidz, r_V, c_B, r_t); 247*4247ecf3SYohann Dudouit ContractY2d(slice, tidx, tidy, tidz, r_t, c_B, r_V); 248c532df63SYohann writeQuads2d(elem, tidx, tidy, comp, 0, nelem, r_V, d_V); 249c532df63SYohann } else { 250c532df63SYohann readQuads2d(elem, tidx, tidy, comp, 0, nelem, d_U, r_V); 251*4247ecf3SYohann Dudouit ContractTransposeY2d(slice, tidx, tidy, tidz, r_V, c_B, r_t); 252*4247ecf3SYohann Dudouit ContractTransposeX2d(slice, tidx, tidy, tidz, r_t, c_B, r_V); 253c532df63SYohann writeDofs2d(elem, tidx, tidy, comp, nelem, r_V, d_V); 254c532df63SYohann } 255*4247ecf3SYohann Dudouit // } 256c532df63SYohann } 257c532df63SYohann } 258c532df63SYohann 259c532df63SYohann inline __device__ void grad2d(const CeedInt nelem, const int transpose, 260c532df63SYohann const CeedScalar *c_B, const CeedScalar *c_G, 261c532df63SYohann const CeedScalar *__restrict__ d_U, CeedScalar *__restrict__ d_V, 262c532df63SYohann CeedScalar *slice) { 263c532df63SYohann CeedScalar r_U; 264c532df63SYohann CeedScalar r_V; 265c532df63SYohann CeedScalar r_t; 266c532df63SYohann 267c532df63SYohann const int tidx = threadIdx.x; 268c532df63SYohann const int tidy = threadIdx.y; 269*4247ecf3SYohann Dudouit const int tidz = threadIdx.z; 270*4247ecf3SYohann Dudouit const int blockElem = tidz/BASIS_NCOMP; 271*4247ecf3SYohann Dudouit const int elemsPerBlock = blockDim.z/BASIS_NCOMP; 272*4247ecf3SYohann Dudouit const int comp = tidz%BASIS_NCOMP; 273c532df63SYohann int dim; 274c532df63SYohann 275*4247ecf3SYohann Dudouit for (CeedInt elem = blockIdx.x*elemsPerBlock + blockElem; elem < nelem; 276*4247ecf3SYohann Dudouit elem += gridDim.x*elemsPerBlock) { 277*4247ecf3SYohann Dudouit // for(int comp=0; comp<BASIS_NCOMP; comp++) { 278c532df63SYohann if(!transpose) { 279c532df63SYohann readDofs2d(elem, tidx, tidy, comp, nelem, d_U, r_U); 280*4247ecf3SYohann Dudouit ContractX2d(slice, tidx, tidy, tidz, r_U, c_G, r_t); 281*4247ecf3SYohann Dudouit ContractY2d(slice, tidx, tidy, tidz, r_t, c_B, r_V); 282c532df63SYohann dim = 0; 283c532df63SYohann writeQuads2d(elem, tidx, tidy, comp, dim, nelem, r_V, d_V); 284*4247ecf3SYohann Dudouit ContractX2d(slice, tidx, tidy, tidz, r_U, c_B, r_t); 285*4247ecf3SYohann Dudouit ContractY2d(slice, tidx, tidy, tidz, r_t, c_G, r_V); 286c532df63SYohann dim = 1; 287c532df63SYohann writeQuads2d(elem, tidx, tidy, comp, dim, nelem, r_V, d_V); 288c532df63SYohann } else { 289c532df63SYohann dim = 0; 290c532df63SYohann readQuads2d(elem, tidx, tidy, comp, dim, nelem, d_U, r_U); 291*4247ecf3SYohann Dudouit ContractTransposeY2d(slice, tidx, tidy, tidz, r_U, c_B, r_t); 292*4247ecf3SYohann Dudouit ContractTransposeX2d(slice, tidx, tidy, tidz, r_t, c_G, r_V); 293c532df63SYohann dim = 1; 294c532df63SYohann readQuads2d(elem, tidx, tidy, comp, dim, nelem, d_U, r_U); 295*4247ecf3SYohann Dudouit ContractTransposeY2d(slice, tidx, tidy, tidz, r_U, c_G, r_t); 296*4247ecf3SYohann Dudouit ContractTransposeX2d(slice, tidx, tidy, tidz, r_t, c_B, r_U); 297c532df63SYohann r_V+=r_U; 298c532df63SYohann writeDofs2d(elem, tidx, tidy, comp, nelem, r_V, d_V); 299c532df63SYohann } 300*4247ecf3SYohann Dudouit // } 301c532df63SYohann } 302c532df63SYohann } 303c532df63SYohann ////////// 304c532df63SYohann // 3D // 305c532df63SYohann ////////// 306c532df63SYohann 307c532df63SYohann inline __device__ void readDofs3d(const int elem, const int tidx, 308c532df63SYohann const int tidy, const int comp, 309c532df63SYohann const int nelem, const CeedScalar *d_U, CeedScalar *r_U) { 310c532df63SYohann for (int i = 0; i < P1D; i++) 311c532df63SYohann r_U[i] = (tidx<P1D 312c532df63SYohann && tidy<P1D) ? d_U[tidx + tidy*P1D + i*P1D*P1D + comp*P1D*P1D*P1D + 313c532df63SYohann elem*BASIS_NCOMP*P1D*P1D*P1D ] : 0.0; 314c532df63SYohann for (int i = P1D; i < Q1D; i++) 315c532df63SYohann r_U[i] = 0.0; 316c532df63SYohann } 317c532df63SYohann 318c532df63SYohann inline __device__ void readQuads3d(const int elem, const int tidx, 319c532df63SYohann const int tidy, const int comp, 320c532df63SYohann const int dim, const int nelem, const CeedScalar *d_U, CeedScalar *r_U) { 321c532df63SYohann for (int i = 0; i < Q1D; i++) 322c532df63SYohann r_U[i] = d_U[tidx + tidy*Q1D + i*Q1D*Q1D + elem*Q1D*Q1D*Q1D + 323c532df63SYohann comp*Q1D*Q1D*Q1D*nelem + dim*BASIS_NCOMP*nelem*Q1D*Q1D*Q1D]; 324c532df63SYohann } 325c532df63SYohann 326c532df63SYohann inline __device__ void writeDofs3d(const int elem, const int tidx, 327c532df63SYohann const int tidy, const int comp, 328c532df63SYohann const int nelem, const CeedScalar *r_V, CeedScalar *d_V) { 329c532df63SYohann if (tidx<P1D && tidy<P1D) { 330c532df63SYohann for (int i = 0; i < P1D; i++) 331c532df63SYohann d_V[tidx + tidy*P1D + i*P1D*P1D + comp*P1D*P1D*P1D + 332c532df63SYohann elem*BASIS_NCOMP*P1D*P1D*P1D ] = r_V[i]; 333c532df63SYohann } 334c532df63SYohann } 335c532df63SYohann 336c532df63SYohann inline __device__ void writeQuads3d(const int elem, const int tidx, 337c532df63SYohann const int tidy, const int comp, 338c532df63SYohann const int dim, const int nelem, const CeedScalar *r_V, CeedScalar *d_V) { 339c532df63SYohann for (int i = 0; i < Q1D; i++) 340c532df63SYohann d_V[tidx + tidy*Q1D + i*Q1D*Q1D + elem*Q1D*Q1D*Q1D + comp*Q1D*Q1D*Q1D*nelem + 341c532df63SYohann dim*BASIS_NCOMP*nelem*Q1D*Q1D*Q1D ] = r_V[i]; 342c532df63SYohann } 343c532df63SYohann 344c532df63SYohann inline __device__ void ContractX3d(CeedScalar *slice, const int tidx, 345c532df63SYohann const int tidy, 346c532df63SYohann const CeedScalar *U, const CeedScalar *B, CeedScalar *V) { 347c532df63SYohann for (int k = 0; k < P1D; ++k) { 348c532df63SYohann slice[tidx+tidy*Q1D] = U[k]; 349c532df63SYohann __syncthreads(); 350c532df63SYohann V[k] = 0.0; 351c532df63SYohann for (int i = 0; i < P1D; ++i) { 352c532df63SYohann V[k] += B[i + tidx*P1D] * slice[i + tidy*Q1D];//contract x direction 353c532df63SYohann } 354c532df63SYohann __syncthreads(); 355c532df63SYohann } 356c532df63SYohann } 357c532df63SYohann 358c532df63SYohann inline __device__ void ContractY3d(CeedScalar *slice, const int tidx, 359c532df63SYohann const int tidy, 360c532df63SYohann const CeedScalar *U, const CeedScalar *B, CeedScalar *V) { 361c532df63SYohann for (int k = 0; k < P1D; ++k) { 362c532df63SYohann slice[tidx+tidy*Q1D] = U[k]; 363c532df63SYohann __syncthreads(); 364c532df63SYohann V[k] = 0.0; 365c532df63SYohann for (int i = 0; i < P1D; ++i) { 366c532df63SYohann V[k] += B[i + tidy*P1D] * slice[tidx + i*Q1D];//contract y direction 367c532df63SYohann } 368c532df63SYohann __syncthreads(); 369c532df63SYohann } 370c532df63SYohann } 371c532df63SYohann 372c532df63SYohann inline __device__ void ContractZ3d(CeedScalar *slice, const int tidx, 373c532df63SYohann const int tidy, 374c532df63SYohann const CeedScalar *U, const CeedScalar *B, CeedScalar *V) { 375c532df63SYohann for (int k = 0; k < Q1D; ++k) { 376c532df63SYohann V[k] = 0.0; 377c532df63SYohann for (int i = 0; i < P1D; ++i) { 378c532df63SYohann V[k] += B[i + k*P1D] * U[i];//contract z direction 379c532df63SYohann } 380c532df63SYohann } 381c532df63SYohann } 382c532df63SYohann 383c532df63SYohann inline __device__ void ContractTransposeZ3d(CeedScalar *slice, const int tidx, 384c532df63SYohann const int tidy, 385c532df63SYohann const CeedScalar *U, const CeedScalar *B, CeedScalar *V) { 386c532df63SYohann for (int k = 0; k < Q1D; ++k) { 387c532df63SYohann V[k] = 0.0; 388c532df63SYohann if (k<P1D) { 389c532df63SYohann for (int i = 0; i < Q1D; ++i) { 390c532df63SYohann V[k] += B[k + i*P1D] * U[i];//contract z direction 391c532df63SYohann } 392c532df63SYohann } 393c532df63SYohann } 394c532df63SYohann } 395c532df63SYohann 396c532df63SYohann inline __device__ void ContractTransposeY3d(CeedScalar *slice, const int tidx, 397c532df63SYohann const int tidy, 398c532df63SYohann const CeedScalar *U, const CeedScalar *B, CeedScalar *V) { 399c532df63SYohann for (int k = 0; k < P1D; ++k) { 400c532df63SYohann slice[tidx+tidy*Q1D] = U[k]; 401c532df63SYohann __syncthreads(); 402c532df63SYohann V[k] = 0.0; 403c532df63SYohann if (tidy<P1D) { 404c532df63SYohann for (int i = 0; i < Q1D; ++i) { 405c532df63SYohann V[k] += B[tidy + i*P1D] * slice[tidx + i*Q1D];//contract y direction 406c532df63SYohann } 407c532df63SYohann } 408c532df63SYohann __syncthreads(); 409c532df63SYohann } 410c532df63SYohann } 411c532df63SYohann 412c532df63SYohann inline __device__ void ContractTransposeX3d(CeedScalar *slice, const int tidx, 413c532df63SYohann const int tidy, 414c532df63SYohann const CeedScalar *U, const CeedScalar *B, CeedScalar *V) { 415c532df63SYohann for (int k = 0; k < P1D; ++k) { 416c532df63SYohann slice[tidx+tidy*Q1D] = U[k]; 417c532df63SYohann __syncthreads(); 418c532df63SYohann V[k] = 0.0; 419c532df63SYohann if (tidx<P1D) { 420c532df63SYohann for (int i = 0; i < Q1D; ++i) { 421c532df63SYohann V[k] += B[tidx + i*P1D] * slice[i + tidy*Q1D];//contract x direction 422c532df63SYohann } 423c532df63SYohann } 424c532df63SYohann __syncthreads(); 425c532df63SYohann } 426c532df63SYohann } 427c532df63SYohann 428c532df63SYohann inline __device__ void interp3d(const CeedInt nelem, const int transpose, 429c532df63SYohann const CeedScalar *c_B, const CeedScalar *__restrict__ d_U, 430c532df63SYohann CeedScalar *__restrict__ d_V, 431c532df63SYohann CeedScalar *slice) { 432c532df63SYohann CeedScalar r_V[Q1D]; 433c532df63SYohann CeedScalar r_t[Q1D]; 434c532df63SYohann 435c532df63SYohann const int tidx = threadIdx.x; 436c532df63SYohann const int tidy = threadIdx.y; 437c532df63SYohann 438c532df63SYohann for (CeedInt elem = blockIdx.x*blockDim.z + threadIdx.z; elem < nelem; 439c532df63SYohann elem += gridDim.x*blockDim.z) { 440c532df63SYohann for(int comp=0; comp<BASIS_NCOMP; comp++) { 441c532df63SYohann for (int i = 0; i < Q1D; ++i) { 442c532df63SYohann r_V[i] = 0.0; 443c532df63SYohann r_t[i] = 0.0; 444c532df63SYohann } 445c532df63SYohann if(!transpose) { 446c532df63SYohann readDofs3d(elem, tidx, tidy, comp, nelem, d_U, r_V); 447c532df63SYohann ContractX3d(slice, tidx, tidy, r_V, c_B, r_t); 448c532df63SYohann ContractY3d(slice, tidx, tidy, r_t, c_B, r_V); 449c532df63SYohann ContractZ3d(slice, tidx, tidy, r_V, c_B, r_t); 450c532df63SYohann writeQuads3d(elem, tidx, tidy, comp, 0, nelem, r_t, d_V); 451c532df63SYohann } else { 452c532df63SYohann readQuads3d(elem, tidx, tidy, comp, 0, nelem, d_U, r_V); 453c532df63SYohann ContractTransposeZ3d(slice, tidx, tidy, r_V, c_B, r_t); 454c532df63SYohann ContractTransposeY3d(slice, tidx, tidy, r_t, c_B, r_V); 455c532df63SYohann ContractTransposeX3d(slice, tidx, tidy, r_V, c_B, r_t); 456c532df63SYohann writeDofs3d(elem, tidx, tidy, comp, nelem, r_t, d_V); 457c532df63SYohann } 458c532df63SYohann } 459c532df63SYohann } 460c532df63SYohann } 461c532df63SYohann 462c532df63SYohann inline __device__ void grad3d(const CeedInt nelem, const int transpose, 463c532df63SYohann const CeedScalar *c_B, const CeedScalar *c_G, 464c532df63SYohann const CeedScalar *__restrict__ d_U, CeedScalar *__restrict__ d_V, 465c532df63SYohann CeedScalar *slice) { 466c532df63SYohann //use P1D for one of these 467c532df63SYohann CeedScalar r_U[Q1D]; 468c532df63SYohann CeedScalar r_V[Q1D]; 469c532df63SYohann CeedScalar r_t[Q1D]; 470c532df63SYohann 471c532df63SYohann const int tidx = threadIdx.x; 472c532df63SYohann const int tidy = threadIdx.y; 473c532df63SYohann int dim; 474c532df63SYohann 475c532df63SYohann for (CeedInt elem = blockIdx.x*blockDim.z + threadIdx.z; elem < nelem; 476c532df63SYohann elem += gridDim.x*blockDim.z) { 477c532df63SYohann for(int comp=0; comp<BASIS_NCOMP; comp++) { 478c532df63SYohann if(!transpose) { 479c532df63SYohann readDofs3d(elem, tidx, tidy, comp, nelem, d_U, r_U); 480c532df63SYohann ContractX3d(slice, tidx, tidy, r_U, c_G, r_V); 481c532df63SYohann ContractY3d(slice, tidx, tidy, r_V, c_B, r_t); 482c532df63SYohann ContractZ3d(slice, tidx, tidy, r_t, c_B, r_V); 483c532df63SYohann dim = 0; 484c532df63SYohann writeQuads3d(elem, tidx, tidy, comp, dim, nelem, r_V, d_V); 485c532df63SYohann ContractX3d(slice, tidx, tidy, r_U, c_B, r_V); 486c532df63SYohann ContractY3d(slice, tidx, tidy, r_V, c_G, r_t); 487c532df63SYohann ContractZ3d(slice, tidx, tidy, r_t, c_B, r_V); 488c532df63SYohann dim = 1; 489c532df63SYohann writeQuads3d(elem, tidx, tidy, comp, dim, nelem, r_V, d_V); 490c532df63SYohann ContractX3d(slice, tidx, tidy, r_U, c_B, r_V); 491c532df63SYohann ContractY3d(slice, tidx, tidy, r_V, c_B, r_t); 492c532df63SYohann ContractZ3d(slice, tidx, tidy, r_t, c_G, r_V); 493c532df63SYohann dim = 2; 494c532df63SYohann writeQuads3d(elem, tidx, tidy, comp, dim, nelem, r_V, d_V); 495c532df63SYohann } else { 496c532df63SYohann dim = 0; 497c532df63SYohann readQuads3d(elem, tidx, tidy, comp, dim, nelem, d_U, r_U); 498c532df63SYohann ContractTransposeZ3d(slice, tidx, tidy, r_U, c_B, r_t); 499c532df63SYohann ContractTransposeY3d(slice, tidx, tidy, r_t, c_B, r_U); 500c532df63SYohann ContractTransposeX3d(slice, tidx, tidy, r_U, c_G, r_V); 501c532df63SYohann dim = 1; 502c532df63SYohann readQuads3d(elem, tidx, tidy, comp, dim, nelem, d_U, r_U); 503c532df63SYohann ContractTransposeZ3d(slice, tidx, tidy, r_U, c_B, r_t); 504c532df63SYohann ContractTransposeY3d(slice, tidx, tidy, r_t, c_G, r_U); 505c532df63SYohann ContractTransposeX3d(slice, tidx, tidy, r_U, c_B, r_t); 506c532df63SYohann add(r_V, r_t); 507c532df63SYohann dim = 2; 508c532df63SYohann readQuads3d(elem, tidx, tidy, comp, dim, nelem, d_U, r_U); 509c532df63SYohann ContractTransposeZ3d(slice, tidx, tidy, r_U, c_G, r_t); 510c532df63SYohann ContractTransposeY3d(slice, tidx, tidy, r_t, c_B, r_U); 511c532df63SYohann ContractTransposeX3d(slice, tidx, tidy, r_U, c_B, r_t); 512c532df63SYohann add(r_V, r_t); 513c532df63SYohann writeDofs3d(elem, tidx, tidy, comp, nelem, r_V, d_V); 514c532df63SYohann } 515c532df63SYohann } 516c532df63SYohann } 517c532df63SYohann } 518c532df63SYohann 519c532df63SYohann ///////////// 520c532df63SYohann // Kernels // 521c532df63SYohann ///////////// 522c532df63SYohann extern "C" __global__ void interp(const CeedInt nelem, const int transpose, 523c532df63SYohann const CeedScalar *c_B, const CeedScalar *__restrict__ d_U, 524c532df63SYohann CeedScalar *__restrict__ d_V) { 525074be161SYohann Dudouit // __shared__ double slice[Q1D*Q1D];//Fix me if ElemPerBlock>1 526074be161SYohann Dudouit extern __shared__ double slice[]; 527c532df63SYohann if (BASIS_DIM==1) { 528c532df63SYohann interp1d(nelem, transpose, c_B, d_U, d_V, slice); 529c532df63SYohann } else if (BASIS_DIM==2) { 530c532df63SYohann interp2d(nelem, transpose, c_B, d_U, d_V, slice); 531c532df63SYohann } else if (BASIS_DIM==3) { 532c532df63SYohann interp3d(nelem, transpose, c_B, d_U, d_V, slice); 533c532df63SYohann } 534c532df63SYohann } 535c532df63SYohann 536c532df63SYohann extern "C" __global__ void grad(const CeedInt nelem, const int transpose, 537c532df63SYohann const CeedScalar *c_B, const CeedScalar *c_G, 538c532df63SYohann const CeedScalar *__restrict__ d_U, CeedScalar *__restrict__ d_V) { 539074be161SYohann Dudouit // __shared__ double slice[Q1D*Q1D];//Fix me if ElemPerBlock>1 540074be161SYohann Dudouit extern __shared__ double slice[]; 541c532df63SYohann if (BASIS_DIM==1) { 542c532df63SYohann grad1d(nelem, transpose, c_B, c_G, d_U, d_V, slice); 543c532df63SYohann } else if (BASIS_DIM==2) { 544c532df63SYohann grad2d(nelem, transpose, c_B, c_G, d_U, d_V, slice); 545c532df63SYohann } else if (BASIS_DIM==3) { 546c532df63SYohann grad3d(nelem, transpose, c_B, c_G, d_U, d_V, slice); 547c532df63SYohann } 548c532df63SYohann } 549c532df63SYohann 550c532df63SYohann ///////////// 551c532df63SYohann // Weights // 552c532df63SYohann ///////////// 553c532df63SYohann __device__ void weight1d(const CeedInt nelem, const CeedScalar *qweight1d, 554c532df63SYohann CeedScalar *w) { 555074be161SYohann Dudouit const int tid = threadIdx.x; 556074be161SYohann Dudouit const CeedScalar weight = qweight1d[tid]; 557074be161SYohann Dudouit for (CeedInt elem = blockIdx.x*blockDim.y + threadIdx.y; elem < nelem; 558074be161SYohann Dudouit elem += gridDim.x*blockDim.y) { 559074be161SYohann Dudouit const int ind = elem*Q1D + tid; 560074be161SYohann Dudouit w[ind] = weight; 561c532df63SYohann } 562c532df63SYohann } 563c532df63SYohann 564c532df63SYohann __device__ void weight2d(const CeedInt nelem, const CeedScalar *qweight1d, 565c532df63SYohann CeedScalar *w) { 566074be161SYohann Dudouit const int i = threadIdx.x; 567074be161SYohann Dudouit const int j = threadIdx.y; 568074be161SYohann Dudouit const CeedScalar weight = qweight1d[i]*qweight1d[j]; 569074be161SYohann Dudouit for (CeedInt elem = blockIdx.x*blockDim.z + threadIdx.z; elem < nelem; 570074be161SYohann Dudouit elem += gridDim.x*blockDim.z) { 571074be161SYohann Dudouit const int ind = elem*Q1D*Q1D + i + j*Q1D; 572074be161SYohann Dudouit w[ind] = weight; 573c532df63SYohann } 574c532df63SYohann } 575c532df63SYohann 576c532df63SYohann __device__ void weight3d(const CeedInt nelem, const CeedScalar *qweight1d, 577c532df63SYohann CeedScalar *w) { 578074be161SYohann Dudouit const int i = threadIdx.x; 579074be161SYohann Dudouit const int j = threadIdx.y; 580074be161SYohann Dudouit const int k = threadIdx.z; 581074be161SYohann Dudouit const CeedScalar weight = qweight1d[i]*qweight1d[j]*qweight1d[k]; 582074be161SYohann Dudouit for (int e = blockIdx.x; e < nelem; e += gridDim.x) { 583074be161SYohann Dudouit const int ind = e*Q1D*Q1D*Q1D + i + j*Q1D + k*Q1D*Q1D; 584074be161SYohann Dudouit w[ind] = weight; 585c532df63SYohann } 586c532df63SYohann } 587c532df63SYohann 588c532df63SYohann extern "C" __global__ void weight(const CeedInt nelem, 589c532df63SYohann const CeedScalar *__restrict__ qweight1d, CeedScalar *__restrict__ v) { 590c532df63SYohann if (BASIS_DIM==1) { 591c532df63SYohann weight1d(nelem, qweight1d, v); 592c532df63SYohann } else if (BASIS_DIM==2) { 593c532df63SYohann weight2d(nelem, qweight1d, v); 594c532df63SYohann } else if (BASIS_DIM==3) { 595c532df63SYohann weight3d(nelem, qweight1d, v); 596c532df63SYohann } 597c532df63SYohann } 598c532df63SYohann 599c532df63SYohann ); 600c532df63SYohann 601c532df63SYohann int CeedCudaInitInterp(CeedScalar *d_B, CeedInt P1d, CeedInt Q1d, 602c532df63SYohann CeedScalar **c_B); 603c532df63SYohann int CeedCudaInitInterpGrad(CeedScalar *d_B, CeedScalar *d_G, CeedInt P1d, 604c532df63SYohann CeedInt Q1d, CeedScalar **c_B_ptr, CeedScalar **c_G_ptr); 605c532df63SYohann 606c532df63SYohann int CeedBasisApplyTensor_Cuda_shared(CeedBasis basis, const CeedInt nelem, 607c532df63SYohann CeedTransposeMode tmode, 608c532df63SYohann CeedEvalMode emode, CeedVector u, CeedVector v) { 609c532df63SYohann int ierr; 610c532df63SYohann Ceed ceed; 611c532df63SYohann ierr = CeedBasisGetCeed(basis, &ceed); CeedChk(ierr); 612c532df63SYohann Ceed_Cuda_shared *ceed_Cuda; 613c532df63SYohann CeedGetData(ceed, (void *) &ceed_Cuda); CeedChk(ierr); 614c532df63SYohann CeedBasis_Cuda_shared *data; 615c532df63SYohann CeedBasisGetData(basis, (void *)&data); CeedChk(ierr); 616c532df63SYohann const CeedInt transpose = tmode == CEED_TRANSPOSE; 617*4247ecf3SYohann Dudouit CeedInt dim, ncomp; 618074be161SYohann Dudouit ierr = CeedBasisGetDimension(basis, &dim); CeedChk(ierr); 619*4247ecf3SYohann Dudouit ierr = CeedBasisGetNumComponents(basis, &ncomp); CeedChk(ierr); 620c532df63SYohann 621c532df63SYohann const CeedScalar *d_u; 622c532df63SYohann CeedScalar *d_v; 623c532df63SYohann if(emode!=CEED_EVAL_WEIGHT) { 624c532df63SYohann ierr = CeedVectorGetArrayRead(u, CEED_MEM_DEVICE, &d_u); CeedChk(ierr); 625c532df63SYohann } 626c532df63SYohann ierr = CeedVectorGetArray(v, CEED_MEM_DEVICE, &d_v); CeedChk(ierr); 627c532df63SYohann 628c532df63SYohann if (tmode == CEED_TRANSPOSE) { 629c532df63SYohann CeedInt length; 630c532df63SYohann ierr = CeedVectorGetLength(v, &length); CeedChk(ierr); 631c532df63SYohann ierr = cudaMemset(d_v, 0, length * sizeof(CeedScalar)); CeedChk(ierr); 632c532df63SYohann } 633c532df63SYohann if (emode == CEED_EVAL_INTERP) { 634c532df63SYohann //TODO: check performance difference between c_B and d_B 635c532df63SYohann CeedInt P1d, Q1d; 636c532df63SYohann ierr = CeedBasisGetNumNodes1D(basis, &P1d); CeedChk(ierr); 637c532df63SYohann ierr = CeedBasisGetNumQuadraturePoints1D(basis, &Q1d); CeedChk(ierr); 638074be161SYohann Dudouit // if (ceed_Cuda->Q1d != Q1d || ceed_Cuda->P1d != P1d) 639074be161SYohann Dudouit // { 640074be161SYohann Dudouit // ceed_Cuda->Q1d = Q1d; 641074be161SYohann Dudouit // ceed_Cuda->P1d = P1d; 642074be161SYohann Dudouit // ceed_Cuda->grad = false; 643c532df63SYohann ierr = CeedCudaInitInterp(data->d_interp1d, P1d, Q1d, &data->c_B); 644c532df63SYohann CeedChk(ierr); 645074be161SYohann Dudouit // } 646c532df63SYohann void *interpargs[] = {(void *) &nelem, (void *) &transpose, &data->c_B, &d_u, &d_v}; 647074be161SYohann Dudouit // void *interpargs[] = {(void *) &nelem, (void *) &transpose, &data->d_interp1d, &d_u, &d_v}; 648074be161SYohann Dudouit if (dim==1) 649074be161SYohann Dudouit { 650*4247ecf3SYohann Dudouit CeedInt elemsPerBlock = 1; 651*4247ecf3SYohann Dudouit CeedInt grid = nelem/elemsPerBlock + ( (nelem/elemsPerBlock*elemsPerBlock<nelem)? 1 : 0 ); 652074be161SYohann Dudouit CeedInt sharedMem = Q1d*sizeof(CeedScalar); 653074be161SYohann Dudouit ierr = run_kernel_dim_shared(ceed, data->interp, grid, Q1d, 1, elemsPerBlock, sharedMem, 654c532df63SYohann interpargs); 655c532df63SYohann CeedChk(ierr); 656074be161SYohann Dudouit } else if (dim==2) { 657*4247ecf3SYohann Dudouit const CeedInt optElems[7] = {0,32,8,6,4,2,8}; 658*4247ecf3SYohann Dudouit CeedInt elemsPerBlock = Q1d < 7 ? optElems[Q1d]/ncomp : 1; 659*4247ecf3SYohann Dudouit CeedInt grid = nelem/elemsPerBlock + ( (nelem/elemsPerBlock*elemsPerBlock<nelem)? 1 : 0 ); 660*4247ecf3SYohann Dudouit CeedInt sharedMem = ncomp*elemsPerBlock*Q1d*Q1d*sizeof(CeedScalar); 661*4247ecf3SYohann Dudouit ierr = run_kernel_dim_shared(ceed, data->interp, grid, Q1d, Q1d, ncomp*elemsPerBlock, sharedMem, 662074be161SYohann Dudouit interpargs); 663074be161SYohann Dudouit CeedChk(ierr); 664074be161SYohann Dudouit } else if (dim==3) { 665*4247ecf3SYohann Dudouit CeedInt elemsPerBlock = 1; 666*4247ecf3SYohann Dudouit CeedInt grid = nelem/elemsPerBlock + ( (nelem/elemsPerBlock*elemsPerBlock<nelem)? 1 : 0 ); 667074be161SYohann Dudouit CeedInt sharedMem = Q1d*Q1d*Q1d*sizeof(CeedScalar); 668074be161SYohann Dudouit ierr = run_kernel_dim_shared(ceed, data->interp, grid, Q1d, Q1d, elemsPerBlock, sharedMem, 669074be161SYohann Dudouit interpargs); 670074be161SYohann Dudouit CeedChk(ierr); 671074be161SYohann Dudouit } 672c532df63SYohann } else if (emode == CEED_EVAL_GRAD) { 673c532df63SYohann CeedInt P1d, Q1d; 674c532df63SYohann ierr = CeedBasisGetNumNodes1D(basis, &P1d); CeedChk(ierr); 675c532df63SYohann ierr = CeedBasisGetNumQuadraturePoints1D(basis, &Q1d); CeedChk(ierr); 676074be161SYohann Dudouit // if (ceed_Cuda->Q1d != Q1d || ceed_Cuda->P1d != P1d || !data->grad) 677074be161SYohann Dudouit // { 678074be161SYohann Dudouit // ceed_Cuda->Q1d = Q1d; 679074be161SYohann Dudouit // ceed_Cuda->P1d = P1d; 680074be161SYohann Dudouit // ceed_Cuda->grad = true; 681c532df63SYohann ierr = CeedCudaInitInterpGrad(data->d_interp1d, data->d_grad1d, P1d, 682c532df63SYohann Q1d, &data->c_B, &data->c_G); 683c532df63SYohann CeedChk(ierr); 684074be161SYohann Dudouit // } 685c532df63SYohann void *gradargs[] = {(void *) &nelem, (void *) &transpose, &data->c_B, &data->c_G, &d_u, &d_v}; 686074be161SYohann Dudouit // void *gradargs[] = {(void *) &nelem, (void *) &transpose, &data->d_interp1d, &data->d_grad1d, &d_u, &d_v}; 687074be161SYohann Dudouit if (dim==1) 688074be161SYohann Dudouit { 689*4247ecf3SYohann Dudouit CeedInt elemsPerBlock = 1; 690*4247ecf3SYohann Dudouit CeedInt grid = nelem/elemsPerBlock + ( (nelem/elemsPerBlock*elemsPerBlock<nelem)? 1 : 0 ); 691074be161SYohann Dudouit CeedInt sharedMem = Q1d*sizeof(CeedScalar); 692074be161SYohann Dudouit ierr = run_kernel_dim_shared(ceed, data->grad, grid, Q1d, 1, elemsPerBlock, sharedMem, 693c532df63SYohann gradargs); 694c532df63SYohann CeedChk(ierr); 695074be161SYohann Dudouit } else if (dim==2) { 696*4247ecf3SYohann Dudouit const CeedInt optElems[7] = {0,32,8,6,4,2,8}; 697*4247ecf3SYohann Dudouit CeedInt elemsPerBlock = Q1d < 7 ? optElems[Q1d]/ncomp : 1; 698*4247ecf3SYohann Dudouit CeedInt grid = nelem/elemsPerBlock + ( (nelem/elemsPerBlock*elemsPerBlock<nelem)? 1 : 0 ); 699*4247ecf3SYohann Dudouit CeedInt sharedMem = ncomp*elemsPerBlock*Q1d*Q1d*sizeof(CeedScalar); 700*4247ecf3SYohann Dudouit ierr = run_kernel_dim_shared(ceed, data->grad, grid, Q1d, Q1d, ncomp*elemsPerBlock, sharedMem, 701074be161SYohann Dudouit gradargs); 702074be161SYohann Dudouit CeedChk(ierr); 703074be161SYohann Dudouit } else if (dim==3) { 704*4247ecf3SYohann Dudouit CeedInt elemsPerBlock = 1; 705*4247ecf3SYohann Dudouit CeedInt grid = nelem/elemsPerBlock + ( (nelem/elemsPerBlock*elemsPerBlock<nelem)? 1 : 0 ); 706074be161SYohann Dudouit CeedInt sharedMem = Q1d*Q1d*Q1d*sizeof(CeedScalar); 707074be161SYohann Dudouit ierr = run_kernel_dim_shared(ceed, data->grad, grid, Q1d, Q1d, elemsPerBlock, sharedMem, 708074be161SYohann Dudouit gradargs); 709074be161SYohann Dudouit CeedChk(ierr); 710074be161SYohann Dudouit } 711c532df63SYohann } else if (emode == CEED_EVAL_WEIGHT) { 712074be161SYohann Dudouit CeedInt Q1d; 713074be161SYohann Dudouit ierr = CeedBasisGetNumQuadraturePoints1D(basis, &Q1d); CeedChk(ierr); 714c532df63SYohann void *weightargs[] = {(void *) &nelem, (void *) &data->d_qweight1d, &d_v}; 715074be161SYohann Dudouit if(dim==1){ 716074be161SYohann Dudouit const CeedInt elemsPerBlock = 32/Q1d; 717074be161SYohann Dudouit const CeedInt gridsize = nelem/elemsPerBlock + ( (nelem/elemsPerBlock*elemsPerBlock<nelem)? 1 : 0 ); 718074be161SYohann Dudouit ierr = run_kernel_dim(ceed, data->weight, gridsize, Q1d, elemsPerBlock, 1, weightargs); 719074be161SYohann Dudouit } else if(dim==2) { 720717ff8a3SYohann Dudouit const CeedInt optElems = 32/(Q1d*Q1d); 721717ff8a3SYohann Dudouit const CeedInt elemsPerBlock = optElems>0?optElems:1; 722074be161SYohann Dudouit const CeedInt gridsize = nelem/elemsPerBlock + ( (nelem/elemsPerBlock*elemsPerBlock<nelem)? 1 : 0 ); 723074be161SYohann Dudouit ierr = run_kernel_dim(ceed, data->weight, gridsize, Q1d, Q1d, elemsPerBlock, weightargs); 724074be161SYohann Dudouit } else if(dim==3) { 725074be161SYohann Dudouit const CeedInt gridsize = nelem; 726074be161SYohann Dudouit ierr = run_kernel_dim(ceed, data->weight, gridsize, Q1d, Q1d, Q1d, weightargs); 727074be161SYohann Dudouit } 728c532df63SYohann } 729c532df63SYohann 730c532df63SYohann if(emode!=CEED_EVAL_WEIGHT) { 731c532df63SYohann ierr = CeedVectorRestoreArrayRead(u, &d_u); CeedChk(ierr); 732c532df63SYohann } 733c532df63SYohann ierr = CeedVectorRestoreArray(v, &d_v); CeedChk(ierr); 734c532df63SYohann 735c532df63SYohann return 0; 736c532df63SYohann } 737c532df63SYohann 738c532df63SYohann static int CeedBasisDestroy_Cuda_shared(CeedBasis basis) { 739c532df63SYohann int ierr; 740c532df63SYohann Ceed ceed; 741c532df63SYohann ierr = CeedBasisGetCeed(basis, &ceed); CeedChk(ierr); 742c532df63SYohann 743c532df63SYohann CeedBasis_Cuda_shared *data; 744c532df63SYohann ierr = CeedBasisGetData(basis, (void *) &data); CeedChk(ierr); 745c532df63SYohann 746c532df63SYohann CeedChk_Cu(ceed, cuModuleUnload(data->module)); 747c532df63SYohann 748c532df63SYohann ierr = cudaFree(data->d_qweight1d); CeedChk_Cu(ceed, ierr); 749c532df63SYohann ierr = cudaFree(data->d_interp1d); CeedChk_Cu(ceed, ierr); 750c532df63SYohann ierr = cudaFree(data->d_grad1d); CeedChk_Cu(ceed, ierr); 751c532df63SYohann 752c532df63SYohann ierr = CeedFree(&data); CeedChk(ierr); 753c532df63SYohann 754c532df63SYohann return 0; 755c532df63SYohann } 756c532df63SYohann 757c532df63SYohann int CeedBasisCreateTensorH1_Cuda_shared(CeedInt dim, CeedInt P1d, CeedInt Q1d, 758c532df63SYohann const CeedScalar *interp1d, 759c532df63SYohann const CeedScalar *grad1d, 760c532df63SYohann const CeedScalar *qref1d, 761c532df63SYohann const CeedScalar *qweight1d, 762c532df63SYohann CeedBasis basis) { 763c532df63SYohann int ierr; 764c532df63SYohann Ceed ceed; 765c532df63SYohann ierr = CeedBasisGetCeed(basis, &ceed); CeedChk(ierr); 766c532df63SYohann CeedBasis_Cuda_shared *data; 767c532df63SYohann ierr = CeedCalloc(1, &data); CeedChk(ierr); 768c532df63SYohann 769c532df63SYohann const CeedInt qBytes = Q1d * sizeof(CeedScalar); 770c532df63SYohann ierr = cudaMalloc((void **)&data->d_qweight1d, qBytes); CeedChk_Cu(ceed, ierr); 771c532df63SYohann ierr = cudaMemcpy(data->d_qweight1d, qweight1d, qBytes, 772c532df63SYohann cudaMemcpyHostToDevice); CeedChk_Cu(ceed, ierr); 773c532df63SYohann 774c532df63SYohann const CeedInt iBytes = qBytes * P1d; 775c532df63SYohann ierr = cudaMalloc((void **)&data->d_interp1d, iBytes); CeedChk_Cu(ceed, ierr); 776c532df63SYohann ierr = cudaMemcpy(data->d_interp1d, interp1d, iBytes, 777c532df63SYohann cudaMemcpyHostToDevice); CeedChk_Cu(ceed, ierr); 778c532df63SYohann 779c532df63SYohann ierr = cudaMalloc((void **)&data->d_grad1d, iBytes); CeedChk_Cu(ceed, ierr); 780c532df63SYohann ierr = cudaMemcpy(data->d_grad1d, grad1d, iBytes, 781c532df63SYohann cudaMemcpyHostToDevice); CeedChk_Cu(ceed, ierr); 782c532df63SYohann 783c532df63SYohann CeedInt ncomp; 784c532df63SYohann ierr = CeedBasisGetNumComponents(basis, &ncomp); CeedChk(ierr); 785c532df63SYohann ierr = compile(ceed, kernelsShared, &data->module, 7, 786c532df63SYohann "Q1D", Q1d, 787c532df63SYohann "P1D", P1d, 788c532df63SYohann "BASIS_BUF_LEN", ncomp * CeedIntPow(Q1d > P1d ? 789c532df63SYohann Q1d : P1d, dim), 790c532df63SYohann "BASIS_DIM", dim, 791c532df63SYohann "BASIS_NCOMP", ncomp, 792c532df63SYohann "BASIS_ELEMSIZE", CeedIntPow(P1d, dim), 793c532df63SYohann "BASIS_NQPT", CeedIntPow(Q1d, dim) 794c532df63SYohann ); CeedChk(ierr); 795c532df63SYohann ierr = get_kernel(ceed, data->module, "interp", &data->interp); 796c532df63SYohann CeedChk(ierr); 797c532df63SYohann ierr = get_kernel(ceed, data->module, "grad", &data->grad); 798c532df63SYohann CeedChk(ierr); 799c532df63SYohann ierr = get_kernel(ceed, data->module, "weight", &data->weight); 800c532df63SYohann CeedChk(ierr); 801c532df63SYohann 802c532df63SYohann ierr = CeedBasisSetData(basis, (void *)&data); 803c532df63SYohann CeedChk(ierr); 804c532df63SYohann ierr = CeedSetBackendFunction(ceed, "Basis", basis, "Apply", 805c532df63SYohann CeedBasisApplyTensor_Cuda_shared); 806c532df63SYohann CeedChk(ierr); 807c532df63SYohann ierr = CeedSetBackendFunction(ceed, "Basis", basis, "Destroy", 808c532df63SYohann CeedBasisDestroy_Cuda_shared); 809c532df63SYohann CeedChk(ierr); 810c532df63SYohann return 0; 811c532df63SYohann } 812c532df63SYohann 813c532df63SYohann int CeedBasisCreateH1_Cuda_shared(CeedElemTopology topo, CeedInt dim, 814c532df63SYohann CeedInt ndof, CeedInt nqpts, 815c532df63SYohann const CeedScalar *interp, 816c532df63SYohann const CeedScalar *grad, 817c532df63SYohann const CeedScalar *qref, 818c532df63SYohann const CeedScalar *qweight, 819c532df63SYohann CeedBasis basis) { 820c532df63SYohann int ierr; 821c532df63SYohann Ceed ceed; 822c532df63SYohann ierr = CeedBasisGetCeed(basis, &ceed); CeedChk(ierr); 823c532df63SYohann return CeedError(ceed, 1, "Backend does not implement generic H1 basis"); 824c532df63SYohann } 825