xref: /libCEED/backends/cuda-shared/ceed-cuda-shared-basis.c (revision 4247ecf36a2057295017a8f7d130aa86833ce9b5)
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