xref: /libCEED/rust/libceed-sys/c-src/backends/magma/ceed-magma.c (revision 3bfcb0deee5ef1ca040fa77f02d7c9f2e83e4485)
182b77998SStan Tomov // Copyright (c) 2017, Lawrence Livermore National Security, LLC. Produced at
282b77998SStan Tomov // the Lawrence Livermore National Laboratory. LLNL-CODE-734707. All Rights
382b77998SStan Tomov // reserved. See files LICENSE and NOTICE for details.
482b77998SStan Tomov //
582b77998SStan Tomov // This file is part of CEED, a collection of benchmarks, miniapps, software
682b77998SStan Tomov // libraries and APIs for efficient high-order finite element and spectral
782b77998SStan Tomov // element discretizations for exascale applications. For more information and
882b77998SStan Tomov // source code availability see http://github.com/ceed.
982b77998SStan Tomov //
1082b77998SStan Tomov // The CEED research is supported by the Exascale Computing Project 17-SC-20-SC,
1182b77998SStan Tomov // a collaborative effort of two U.S. Department of Energy organizations (Office
1282b77998SStan Tomov // of Science and the National Nuclear Security Administration) responsible for
1382b77998SStan Tomov // the planning and preparation of a capable exascale ecosystem, including
1482b77998SStan Tomov // software, applications, hardware, advanced system engineering and early
1582b77998SStan Tomov // testbed platforms, in support of the nation's exascale computing imperative.
1682b77998SStan Tomov 
1738612b08SStan Tomov #include "ceed-magma.h"
185a9ca9adSVeselin Dobrev #include <string.h>
1982b77998SStan Tomov 
2082b77998SStan Tomov typedef struct {
2182b77998SStan Tomov   CeedScalar *array;
2293fbe329SStan Tomov   CeedScalar *darray;
23e2900954SStan Tomov   int  own_;
24c119dad6SStan Tomov   int down_;
2582b77998SStan Tomov } CeedVector_Magma;
2682b77998SStan Tomov 
2782b77998SStan Tomov typedef struct {
281751b0a9SStan Tomov   CeedInt *indices;
291751b0a9SStan Tomov   CeedInt *dindices;
301751b0a9SStan Tomov   int  own_;
31c119dad6SStan Tomov   int down_;            // cover a case where we own Device memory
3282b77998SStan Tomov } CeedElemRestriction_Magma;
3382b77998SStan Tomov 
3482b77998SStan Tomov typedef struct {
35*3bfcb0deSjeremylt   CeedVector
36*3bfcb0deSjeremylt   *evecs;   /// E-vectors needed to apply operator (input followed by outputs)
37*3bfcb0deSjeremylt   CeedScalar **edata;
38*3bfcb0deSjeremylt   CeedScalar **qdata; /// Inputs followed by outputs
39*3bfcb0deSjeremylt   CeedScalar
40*3bfcb0deSjeremylt   **qdata_alloc; /// Allocated quadrature data arrays (to be freed by us)
41*3bfcb0deSjeremylt   CeedScalar **indata;
42*3bfcb0deSjeremylt   CeedScalar **outdata;
43*3bfcb0deSjeremylt   CeedInt    numein;
44*3bfcb0deSjeremylt   CeedInt    numeout;
45*3bfcb0deSjeremylt   CeedInt    numqin;
46*3bfcb0deSjeremylt   CeedInt    numqout;
4782b77998SStan Tomov } CeedOperator_Magma;
4882b77998SStan Tomov 
4993fbe329SStan Tomov // *****************************************************************************
5093fbe329SStan Tomov // * Initialize vector vec (after free mem) with values from array based on cmode
5193fbe329SStan Tomov // *   CEED_COPY_VALUES: memory is allocated in vec->array_allocated, made equal
5293fbe329SStan Tomov // *                     to array, and data is copied (not store passed pointer)
5393fbe329SStan Tomov // *   CEED_OWN_POINTER: vec->data->array_allocated and vec->data->array = array
5493fbe329SStan Tomov // *   CEED_USE_POINTER: vec->data->array = array (can modify; no ownership)
5593fbe329SStan Tomov // * mtype: CEED_MEM_HOST or CEED_MEM_DEVICE
5693fbe329SStan Tomov // *****************************************************************************
5782b77998SStan Tomov static int CeedVectorSetArray_Magma(CeedVector vec, CeedMemType mtype,
5882b77998SStan Tomov                                     CeedCopyMode cmode, CeedScalar *array) {
5982b77998SStan Tomov   CeedVector_Magma *impl = vec->data;
6082b77998SStan Tomov   int ierr;
6182b77998SStan Tomov 
62c119dad6SStan Tomov   // If own data, free the "old" data, e.g., as it may be of different size
63e2900954SStan Tomov   if (impl->own_) {
64e2900954SStan Tomov     magma_free( impl->darray );
65e2900954SStan Tomov     magma_free_pinned( impl->array );
66e2900954SStan Tomov     impl->darray = NULL;
67e2900954SStan Tomov     impl->array  = NULL;
68e2900954SStan Tomov     impl->own_ = 0;
69c119dad6SStan Tomov     impl->down_= 0;
70e2900954SStan Tomov   }
7193fbe329SStan Tomov 
72e2900954SStan Tomov   if (mtype == CEED_MEM_HOST) {
73e2900954SStan Tomov     // memory is on the host; own_ = 0
7482b77998SStan Tomov     switch (cmode) {
7582b77998SStan Tomov     case CEED_COPY_VALUES:
7693fbe329SStan Tomov       ierr = magma_malloc( (void**)&impl->darray,
77e2900954SStan Tomov                            vec->length * sizeof(CeedScalar)); CeedChk(ierr);
78e2900954SStan Tomov       ierr = magma_malloc_pinned( (void**)&impl->array,
79e2900954SStan Tomov                                   vec->length * sizeof(CeedScalar)); CeedChk(ierr);
80e2900954SStan Tomov       impl->own_ = 1;
81e2900954SStan Tomov 
82c119dad6SStan Tomov       if (array != NULL)
8393fbe329SStan Tomov         magma_setvector(vec->length, sizeof(array[0]),
8493fbe329SStan Tomov                         array, 1, impl->darray, 1);
8582b77998SStan Tomov       break;
8682b77998SStan Tomov     case CEED_OWN_POINTER:
8793fbe329SStan Tomov       ierr = magma_malloc( (void**)&impl->darray,
88e2900954SStan Tomov                            vec->length * sizeof(CeedScalar)); CeedChk(ierr);
891751b0a9SStan Tomov       // TODO: possible problem here is if we are passed non-pinned memory;
901751b0a9SStan Tomov       //       (as we own it, lter in destroy, we use free for pinned memory).
91e2900954SStan Tomov       impl->array = array;
92e2900954SStan Tomov       impl->own_ = 1;
93e2900954SStan Tomov 
94c119dad6SStan Tomov       if (array != NULL)
9593fbe329SStan Tomov         magma_setvector(vec->length, sizeof(array[0]),
9693fbe329SStan Tomov                         array, 1, impl->darray, 1);
9782b77998SStan Tomov       break;
9882b77998SStan Tomov     case CEED_USE_POINTER:
99c119dad6SStan Tomov       ierr = magma_malloc( (void**)&impl->darray,
100c119dad6SStan Tomov                            vec->length * sizeof(CeedScalar)); CeedChk(ierr);
101c119dad6SStan Tomov       magma_setvector(vec->length, sizeof(array[0]),
102c119dad6SStan Tomov                       array, 1, impl->darray, 1);
10306b636dbSStan Tomov 
10406b636dbSStan Tomov       impl->down_  = 1;
10582b77998SStan Tomov       impl->array  = array;
10682b77998SStan Tomov     }
107e2900954SStan Tomov   } else if (mtype == CEED_MEM_DEVICE) {
108e2900954SStan Tomov     // memory is on the device; own = 0
109e2900954SStan Tomov     switch (cmode) {
110e2900954SStan Tomov     case CEED_COPY_VALUES:
111e2900954SStan Tomov       ierr = magma_malloc( (void**)&impl->darray,
112e2900954SStan Tomov                            vec->length * sizeof(CeedScalar)); CeedChk(ierr);
113e2900954SStan Tomov       ierr = magma_malloc_pinned( (void**)&impl->array,
114e2900954SStan Tomov                                   vec->length * sizeof(CeedScalar)); CeedChk(ierr);
115e2900954SStan Tomov       impl->own_ = 1;
116e2900954SStan Tomov 
117e2900954SStan Tomov       if (array)
118e2900954SStan Tomov         magma_copyvector(vec->length, sizeof(array[0]),
119e2900954SStan Tomov                          array, 1, impl->darray, 1);
12006b636dbSStan Tomov       else
12106b636dbSStan Tomov         // t30 assumes allocation initializes with 0s
12206b636dbSStan Tomov         magma_setvector(vec->length, sizeof(array[0]),
12306b636dbSStan Tomov                         impl->array, 1, impl->darray, 1);
124e2900954SStan Tomov       break;
125e2900954SStan Tomov     case CEED_OWN_POINTER:
126e2900954SStan Tomov       impl->darray = array;
127e2900954SStan Tomov       ierr = magma_malloc_pinned( (void**)&impl->array,
128e2900954SStan Tomov                                   vec->length * sizeof(CeedScalar)); CeedChk(ierr);
129e2900954SStan Tomov       impl->own_ = 1;
130e2900954SStan Tomov 
131e2900954SStan Tomov       break;
132e2900954SStan Tomov     case CEED_USE_POINTER:
133e2900954SStan Tomov       impl->darray = array;
134e2900954SStan Tomov       impl->array  = NULL;
135e2900954SStan Tomov     }
136e2900954SStan Tomov 
137e2900954SStan Tomov   } else
138e2900954SStan Tomov     return CeedError(vec->ceed, 1, "Only MemType = HOST or DEVICE supported");
139e2900954SStan Tomov 
14082b77998SStan Tomov   return 0;
14182b77998SStan Tomov }
14282b77998SStan Tomov 
14393fbe329SStan Tomov // *****************************************************************************
144e2900954SStan Tomov // * Give data pointer from vector vec to array (on HOST or DEVICE)
14593fbe329SStan Tomov // *****************************************************************************
14682b77998SStan Tomov static int CeedVectorGetArray_Magma(CeedVector vec, CeedMemType mtype,
14782b77998SStan Tomov                                     CeedScalar **array) {
14882b77998SStan Tomov   CeedVector_Magma *impl = vec->data;
14982b77998SStan Tomov   int ierr;
15082b77998SStan Tomov 
151e2900954SStan Tomov   if (mtype == CEED_MEM_HOST) {
152c119dad6SStan Tomov     if (impl->own_) {
153e2900954SStan Tomov       // data is owned so GPU had the most up-to-date version; copy it
15406b636dbSStan Tomov       // TTT - apparantly it doesn't have most up to date data
155e2900954SStan Tomov       magma_getvector(vec->length, sizeof(*array[0]),
156e2900954SStan Tomov                       impl->darray, 1, impl->array, 1);
15706b636dbSStan Tomov       CeedDebug("\033[31m[CeedVectorGetArray_Magma]");
15806b636dbSStan Tomov       //fprintf(stderr,"rrrrrrrrrrrrrrr\n");
159c119dad6SStan Tomov     } else if (impl->array == NULL) {
160c119dad6SStan Tomov       // Vector doesn't own the data and was set on GPU
161c119dad6SStan Tomov       if (impl->darray == NULL) {
162c119dad6SStan Tomov         // call was made just to allocate memory
163c119dad6SStan Tomov         ierr = CeedVectorSetArray(vec, mtype, CEED_COPY_VALUES, NULL);
164c119dad6SStan Tomov         CeedChk(ierr);
165c119dad6SStan Tomov       } else
166c119dad6SStan Tomov         return CeedError(vec->ceed, 1, "Can not access DEVICE vector on HOST");
16782b77998SStan Tomov     }
16882b77998SStan Tomov     *array = impl->array;
169e2900954SStan Tomov   } else if (mtype == CEED_MEM_DEVICE) {
170c119dad6SStan Tomov     if (impl->darray == NULL) {
171c119dad6SStan Tomov       // Vector doesn't own the data and was set on the CPU
172c119dad6SStan Tomov       if (impl->array == NULL) {
173c119dad6SStan Tomov         // call was made just to allocate memory
174e2900954SStan Tomov         ierr = CeedVectorSetArray(vec, mtype, CEED_COPY_VALUES, NULL);
175e2900954SStan Tomov         CeedChk(ierr);
176c119dad6SStan Tomov       } else
177c119dad6SStan Tomov         return CeedError(vec->ceed, 1, "Can not access HOST vector on DEVICE");
178e2900954SStan Tomov     }
179e2900954SStan Tomov     *array = impl->darray;
180e2900954SStan Tomov   } else
181e2900954SStan Tomov     return CeedError(vec->ceed, 1, "Can only provide to HOST or DEVICE memory");
182e2900954SStan Tomov 
18382b77998SStan Tomov   return 0;
18482b77998SStan Tomov }
18582b77998SStan Tomov 
18693fbe329SStan Tomov // *****************************************************************************
187e2900954SStan Tomov // * Give data pointer from vector vec to array (on HOST or DEVICE) to read it
18893fbe329SStan Tomov // *****************************************************************************
18982b77998SStan Tomov static int CeedVectorGetArrayRead_Magma(CeedVector vec, CeedMemType mtype,
19082b77998SStan Tomov                                         const CeedScalar **array) {
19182b77998SStan Tomov   CeedVector_Magma *impl = vec->data;
19282b77998SStan Tomov   int ierr;
19382b77998SStan Tomov 
194e2900954SStan Tomov   if (mtype == CEED_MEM_HOST) {
195c119dad6SStan Tomov     if (impl->own_) {
196e2900954SStan Tomov       // data is owned so GPU had the most up-to-date version; copy it
197e2900954SStan Tomov       magma_getvector(vec->length, sizeof(*array[0]),
198e2900954SStan Tomov                       impl->darray, 1, impl->array, 1);
199c119dad6SStan Tomov     } else if (impl->array == NULL) {
200c119dad6SStan Tomov       // Vector doesn't own the data and was set on GPU
201c119dad6SStan Tomov       if (impl->darray == NULL) {
202c119dad6SStan Tomov         // call was made just to allocate memory
203c119dad6SStan Tomov         ierr = CeedVectorSetArray(vec, mtype, CEED_COPY_VALUES, NULL);
204c119dad6SStan Tomov         CeedChk(ierr);
205c119dad6SStan Tomov       } else
206c119dad6SStan Tomov         return CeedError(vec->ceed, 1, "Can not access DEVICE vector on HOST");
20782b77998SStan Tomov     }
20882b77998SStan Tomov     *array = impl->array;
209e2900954SStan Tomov   } else if (mtype == CEED_MEM_DEVICE) {
210c119dad6SStan Tomov     if (impl->darray == NULL) {
211c119dad6SStan Tomov       // Vector doesn't own the data and was set on the CPU
212c119dad6SStan Tomov       if (impl->array == NULL) {
213c119dad6SStan Tomov         // call was made just to allocate memory
214e2900954SStan Tomov         ierr = CeedVectorSetArray(vec, mtype, CEED_COPY_VALUES, NULL);
215e2900954SStan Tomov         CeedChk(ierr);
216c119dad6SStan Tomov       } else
217c119dad6SStan Tomov         return CeedError(vec->ceed, 1, "Can not access HOST vector on DEVICE");
218e2900954SStan Tomov     }
219e2900954SStan Tomov     *array = impl->darray;
220e2900954SStan Tomov   } else
221e2900954SStan Tomov     return CeedError(vec->ceed, 1, "Can only provide to HOST or DEVICE memory");
222e2900954SStan Tomov 
22382b77998SStan Tomov   return 0;
22482b77998SStan Tomov }
22582b77998SStan Tomov 
22693fbe329SStan Tomov // *****************************************************************************
227e2900954SStan Tomov // * There is no mtype here for array so it is not clear if we restore from HOST
228e2900954SStan Tomov // * memory or from DEVICE memory. We assume that it is CPU memory because if
229e2900954SStan Tomov // * it was GPU memory we would not call this routine at all.
23093fbe329SStan Tomov // * Restore vector vec with values from array, where array received its values
23193fbe329SStan Tomov // * from vec and possibly modified them.
23293fbe329SStan Tomov // *****************************************************************************
23382b77998SStan Tomov static int CeedVectorRestoreArray_Magma(CeedVector vec, CeedScalar **array) {
23493fbe329SStan Tomov   CeedVector_Magma *impl = vec->data;
23593fbe329SStan Tomov 
236c119dad6SStan Tomov   // Check if the array is a CPU pointer
237c119dad6SStan Tomov   if (*array == impl->array) {
238c119dad6SStan Tomov     // Update device, if the device pointer is not NULL
239c119dad6SStan Tomov     if (impl->darray != NULL) {
24093fbe329SStan Tomov       magma_setvector(vec->length, sizeof(*array[0]),
24193fbe329SStan Tomov                       *array, 1, impl->darray, 1);
2425a9ca9adSVeselin Dobrev     } else {
2435a9ca9adSVeselin Dobrev       // nothing to do (case of CPU use pointer)
2445a9ca9adSVeselin Dobrev     }
245c119dad6SStan Tomov 
246c119dad6SStan Tomov   } else if (impl->down_) {
247c119dad6SStan Tomov     // nothing to do if array is on GPU, except if down_=1(case CPU use pointer)
248c119dad6SStan Tomov     magma_getvector(vec->length, sizeof(*array[0]),
249c119dad6SStan Tomov                     impl->darray, 1, impl->array, 1);
250c119dad6SStan Tomov   }
251e2900954SStan Tomov 
25282b77998SStan Tomov   *array = NULL;
25382b77998SStan Tomov   return 0;
25482b77998SStan Tomov }
25582b77998SStan Tomov 
25693fbe329SStan Tomov // *****************************************************************************
257e2900954SStan Tomov // * There is no mtype here for array so it is not clear if we restore from HOST
258e2900954SStan Tomov // * memory or from DEVICE memory. We assume that it is CPU memory because if
259e2900954SStan Tomov // * it was GPU memory we would not call this routine at all.
26093fbe329SStan Tomov // * Restore vector vec with values from array, where array received its values
26193fbe329SStan Tomov // * from vec to only read them; in this case vec may have been modified meanwhile
26293fbe329SStan Tomov // * and needs to be restored here.
26393fbe329SStan Tomov // *****************************************************************************
26482b77998SStan Tomov static int CeedVectorRestoreArrayRead_Magma(CeedVector vec,
26582b77998SStan Tomov     const CeedScalar **array) {
26693fbe329SStan Tomov   CeedVector_Magma *impl = vec->data;
26793fbe329SStan Tomov 
268c119dad6SStan Tomov   // Check if the array is a CPU pointer
269c119dad6SStan Tomov   if (*array == impl->array) {
270c119dad6SStan Tomov     // Update device, if the device pointer is not NULL
2715a9ca9adSVeselin Dobrev     if (impl->darray != NULL) {
27293fbe329SStan Tomov       magma_setvector(vec->length, sizeof(*array[0]),
27393fbe329SStan Tomov                       *array, 1, impl->darray, 1);
2745a9ca9adSVeselin Dobrev     } else {
2755a9ca9adSVeselin Dobrev       // nothing to do (case of CPU use pointer)
2765a9ca9adSVeselin Dobrev     }
277c119dad6SStan Tomov 
278c119dad6SStan Tomov   } else if (impl->down_) {
279c119dad6SStan Tomov     // nothing to do if array is on GPU, except if down_=1(case CPU use pointer)
280c119dad6SStan Tomov     magma_getvector(vec->length, sizeof(*array[0]),
281c119dad6SStan Tomov                     impl->darray, 1, impl->array, 1);
282c119dad6SStan Tomov   }
283e2900954SStan Tomov 
28482b77998SStan Tomov   *array = NULL;
28582b77998SStan Tomov   return 0;
28682b77998SStan Tomov }
28782b77998SStan Tomov 
28882b77998SStan Tomov static int CeedVectorDestroy_Magma(CeedVector vec) {
28982b77998SStan Tomov   CeedVector_Magma *impl = vec->data;
29082b77998SStan Tomov   int ierr;
29182b77998SStan Tomov 
292e2900954SStan Tomov   // Free if we own the data
293e2900954SStan Tomov   if (impl->own_) {
294e2900954SStan Tomov     ierr = magma_free_pinned(impl->array); CeedChk(ierr);
29593fbe329SStan Tomov     ierr = magma_free(impl->darray);       CeedChk(ierr);
296c119dad6SStan Tomov   } else if (impl->down_) {
297c119dad6SStan Tomov     ierr = magma_free(impl->darray);       CeedChk(ierr);
298e2900954SStan Tomov   }
29982b77998SStan Tomov   ierr = CeedFree(&vec->data); CeedChk(ierr);
30082b77998SStan Tomov   return 0;
30182b77998SStan Tomov }
30282b77998SStan Tomov 
30393fbe329SStan Tomov // *****************************************************************************
30493fbe329SStan Tomov // * Create vector vec of size n
30593fbe329SStan Tomov // *****************************************************************************
30682b77998SStan Tomov static int CeedVectorCreate_Magma(Ceed ceed, CeedInt n, CeedVector vec) {
30782b77998SStan Tomov   CeedVector_Magma *impl;
30882b77998SStan Tomov   int ierr;
30982b77998SStan Tomov 
31082b77998SStan Tomov   vec->SetArray = CeedVectorSetArray_Magma;
31182b77998SStan Tomov   vec->GetArray = CeedVectorGetArray_Magma;
31282b77998SStan Tomov   vec->GetArrayRead = CeedVectorGetArrayRead_Magma;
31382b77998SStan Tomov   vec->RestoreArray = CeedVectorRestoreArray_Magma;
31482b77998SStan Tomov   vec->RestoreArrayRead = CeedVectorRestoreArrayRead_Magma;
31582b77998SStan Tomov   vec->Destroy = CeedVectorDestroy_Magma;
31682b77998SStan Tomov   ierr = CeedCalloc(1,&impl); CeedChk(ierr);
31793fbe329SStan Tomov   impl->darray = NULL;
318e2900954SStan Tomov   impl->array  = NULL;
319e2900954SStan Tomov   impl->own_ = 0;
320c119dad6SStan Tomov   impl->down_= 0;
32182b77998SStan Tomov   vec->data = impl;
32282b77998SStan Tomov   return 0;
32382b77998SStan Tomov }
32482b77998SStan Tomov 
325*3bfcb0deSjeremylt 
32693fbe329SStan Tomov // *****************************************************************************
32793fbe329SStan Tomov // * Apply restriction operator r to u: v = r(rmode) u
32893fbe329SStan Tomov // *****************************************************************************
32982b77998SStan Tomov static int CeedElemRestrictionApply_Magma(CeedElemRestriction r,
330*3bfcb0deSjeremylt     CeedTransposeMode tmode,
33182b77998SStan Tomov     CeedTransposeMode lmode, CeedVector u,
33282b77998SStan Tomov     CeedVector v, CeedRequest *request) {
33382b77998SStan Tomov   CeedElemRestriction_Magma *impl = r->data;
33482b77998SStan Tomov   int ierr;
33582b77998SStan Tomov   const CeedScalar *uu;
33682b77998SStan Tomov   CeedScalar *vv;
337*3bfcb0deSjeremylt   CeedInt nelem = r->nelem, elemsize = r->elemsize, ndof = r->ndof,
338*3bfcb0deSjeremylt           ncomp=r->ncomp;
339c119dad6SStan Tomov   CeedInt esize = nelem * elemsize;
34006b636dbSStan Tomov 
34106b636dbSStan Tomov #ifdef USE_MAGMA_BATCH2
342137a0714SStan Tomov   CeedInt *dindices = impl->dindices;
343c119dad6SStan Tomov   // Get pointers on the device
344c119dad6SStan Tomov   ierr = CeedVectorGetArrayRead(u, CEED_MEM_DEVICE, &uu); CeedChk(ierr);
345c119dad6SStan Tomov   ierr = CeedVectorGetArray(v, CEED_MEM_DEVICE, &vv); CeedChk(ierr);
34606b636dbSStan Tomov #else
34706b636dbSStan Tomov   CeedInt *indices = impl->indices;
34806b636dbSStan Tomov   ierr = CeedVectorGetArrayRead(u, CEED_MEM_HOST, &uu); CeedChk(ierr);
34906b636dbSStan Tomov   ierr = CeedVectorGetArray(v, CEED_MEM_HOST, &vv); CeedChk(ierr);
35006b636dbSStan Tomov #endif
351c119dad6SStan Tomov 
35282b77998SStan Tomov   if (tmode == CEED_NOTRANSPOSE) {
35382b77998SStan Tomov     // Perform: v = r * u
35482b77998SStan Tomov     if (ncomp == 1) {
35506b636dbSStan Tomov #ifdef USE_MAGMA_BATCH2
356c119dad6SStan Tomov magma_template<<i=0:esize>>
357c119dad6SStan Tomov       (const CeedScalar *uu, CeedScalar *vv, CeedInt *dindices) {
358c119dad6SStan Tomov         vv[i] = uu[dindices[i]];
359e2900954SStan Tomov       }
36006b636dbSStan Tomov #else
36106b636dbSStan Tomov       for (CeedInt i=0; i<esize; i++) vv[i] = uu[indices[i]];
36206b636dbSStan Tomov #endif
36382b77998SStan Tomov     } else {
36482b77998SStan Tomov       // vv is (elemsize x ncomp x nelem), column-major
36582b77998SStan Tomov       if (lmode == CEED_NOTRANSPOSE) { // u is (ndof x ncomp), column-major
36606b636dbSStan Tomov #ifdef USE_MAGMA_BATCH2
36706b636dbSStan Tomov magma_template<<e=0:nelem, d=0:ncomp, i=0:elemsize>>
36806b636dbSStan Tomov         (const CeedScalar *uu, CeedScalar *vv, CeedInt *dindices, int ndof) {
36906b636dbSStan Tomov           vv[i + iend*(d+dend*e)] = uu[dindices[i+iend*e]+ndof*d];
37006b636dbSStan Tomov         }
37106b636dbSStan Tomov #else
372c119dad6SStan Tomov         for (CeedInt e = 0; e < nelem; e++)
37382b77998SStan Tomov           for (CeedInt d = 0; d < ncomp; d++)
374c119dad6SStan Tomov             for (CeedInt i=0; i < elemsize; i++) {
375c119dad6SStan Tomov               vv[i + elemsize*(d+ncomp*e)] =
376c119dad6SStan Tomov                 uu[indices[i+elemsize*e]+ndof*d];
377c119dad6SStan Tomov             }
37806b636dbSStan Tomov #endif
37982b77998SStan Tomov       } else { // u is (ncomp x ndof), column-major
38006b636dbSStan Tomov #ifdef USE_MAGMA_BATCH2
38106b636dbSStan Tomov magma_template<<e=0:nelem, d=0:ncomp, i=0:elemsize>>
38206b636dbSStan Tomov         (const CeedScalar *uu, CeedScalar *vv, CeedInt *dindices) {
38306b636dbSStan Tomov           vv[i + iend*(d+dend*e)] = uu[d+dend*dindices[i + iend*e]];
38406b636dbSStan Tomov         }
38506b636dbSStan Tomov #else
386c119dad6SStan Tomov         for (CeedInt e = 0; e < nelem; e++)
38782b77998SStan Tomov           for (CeedInt d = 0; d < ncomp; d++)
388c119dad6SStan Tomov             for (CeedInt i=0; i< elemsize; i++) {
389c119dad6SStan Tomov               vv[i + elemsize*(d+ncomp*e)] =
390c119dad6SStan Tomov                 uu[d+ncomp*indices[i+elemsize*e]];
391c119dad6SStan Tomov             }
39206b636dbSStan Tomov #endif
39382b77998SStan Tomov       }
39482b77998SStan Tomov     }
39582b77998SStan Tomov   } else {
39682b77998SStan Tomov     // Note: in transpose mode, we perform: v += r^t * u
39782b77998SStan Tomov     if (ncomp == 1) {
398c119dad6SStan Tomov       // fprintf(stderr,"3 ---------\n");
39906b636dbSStan Tomov #ifdef USE_MAGMA_BATCH2
400c119dad6SStan Tomov magma_template<<i=0:esize>>
401c119dad6SStan Tomov       (const CeedScalar *uu, CeedScalar *vv, CeedInt *dindices) {
402c119dad6SStan Tomov         magmablas_datomic_add( &vv[dindices[i]], uu[i]);
403c119dad6SStan Tomov       }
40406b636dbSStan Tomov #else
40506b636dbSStan Tomov       for (CeedInt i=0; i<esize; i++) vv[indices[i]] += uu[i];
40606b636dbSStan Tomov #endif
407c119dad6SStan Tomov     } else { // u is (elemsize x ncomp x nelem)
408c119dad6SStan Tomov       fprintf(stderr,"2 ---------\n");
409c119dad6SStan Tomov 
41082b77998SStan Tomov       if (lmode == CEED_NOTRANSPOSE) { // vv is (ndof x ncomp), column-major
41106b636dbSStan Tomov #ifdef USE_MAGMA_BATCH2
41206b636dbSStan Tomov magma_template<<e=0:nelem, d=0:ncomp, i=0:elemsize>>
41306b636dbSStan Tomov         (const CeedScalar *uu, CeedScalar *vv, CeedInt *dindices, CeedInt ndof) {
41406b636dbSStan Tomov           magmablas_datomic_add( &vv[dindices[i+iend*e]+ndof*d],
41506b636dbSStan Tomov                                  uu[i+iend*(d+e*dend)]);
41606b636dbSStan Tomov         }
41706b636dbSStan Tomov #else
418c119dad6SStan Tomov         for (CeedInt e = 0; e < nelem; e++)
41982b77998SStan Tomov           for (CeedInt d = 0; d < ncomp; d++)
420c119dad6SStan Tomov             for (CeedInt i=0; i < elemsize; i++) {
421c119dad6SStan Tomov               vv[indices[i + elemsize*e]+ndof*d] +=
422c119dad6SStan Tomov                 uu[i + elemsize*(d+e*ncomp)];
423c119dad6SStan Tomov             }
42406b636dbSStan Tomov #endif
42506b636dbSStan Tomov       } else { // vv is (ncomp x ndof), column-major
42606b636dbSStan Tomov #ifdef USE_MAGMA_BATCH2
427c119dad6SStan Tomov magma_template<<e=0:nelem, d=0:ncomp, i=0:elemsize>>
42806b636dbSStan Tomov         (const CeedScalar *uu, CeedScalar *vv, CeedInt *dindices) {
42906b636dbSStan Tomov           magmablas_datomic_add( &vv[d+dend*dindices[i + iend*e]],
430c119dad6SStan Tomov                                  uu[i+iend*(d+e*dend)]);
43182b77998SStan Tomov         }
43206b636dbSStan Tomov #else
433c119dad6SStan Tomov         for (CeedInt e = 0; e < nelem; e++)
43482b77998SStan Tomov           for (CeedInt d = 0; d < ncomp; d++)
435c119dad6SStan Tomov             for (CeedInt i=0; i < elemsize; i++) {
436c119dad6SStan Tomov               vv[d+ncomp*indices[i + elemsize*e]] +=
437c119dad6SStan Tomov                 uu[i + elemsize*(d+e*ncomp)];
438c119dad6SStan Tomov             }
43906b636dbSStan Tomov #endif
44082b77998SStan Tomov       }
44182b77998SStan Tomov     }
44282b77998SStan Tomov   }
44306b636dbSStan Tomov 
44482b77998SStan Tomov   ierr = CeedVectorRestoreArrayRead(u, &uu); CeedChk(ierr);
44582b77998SStan Tomov   ierr = CeedVectorRestoreArray(v, &vv); CeedChk(ierr);
446c119dad6SStan Tomov 
44782b77998SStan Tomov   if (request != CEED_REQUEST_IMMEDIATE && request != CEED_REQUEST_ORDERED)
44882b77998SStan Tomov     *request = NULL;
44982b77998SStan Tomov   return 0;
45082b77998SStan Tomov }
45182b77998SStan Tomov 
45282b77998SStan Tomov static int CeedElemRestrictionDestroy_Magma(CeedElemRestriction r) {
45382b77998SStan Tomov   CeedElemRestriction_Magma *impl = r->data;
45482b77998SStan Tomov   int ierr;
45582b77998SStan Tomov 
4561751b0a9SStan Tomov   // Free if we own the data
4571751b0a9SStan Tomov   if (impl->own_) {
4581751b0a9SStan Tomov     ierr = magma_free_pinned(impl->indices); CeedChk(ierr);
4591751b0a9SStan Tomov     ierr = magma_free(impl->dindices);       CeedChk(ierr);
4601981b6e4STzanio   } else if (impl->down_) {
461c119dad6SStan Tomov     ierr = magma_free(impl->dindices);       CeedChk(ierr);
462c119dad6SStan Tomov   }
46382b77998SStan Tomov   ierr = CeedFree(&r->data); CeedChk(ierr);
46482b77998SStan Tomov   return 0;
46582b77998SStan Tomov }
46682b77998SStan Tomov 
46782b77998SStan Tomov static int CeedElemRestrictionCreate_Magma(CeedElemRestriction r,
46882b77998SStan Tomov     CeedMemType mtype,
46993fbe329SStan Tomov     CeedCopyMode cmode,
47093fbe329SStan Tomov     const CeedInt *indices) {
4711751b0a9SStan Tomov   int ierr, size = r->nelem*r->elemsize;
47282b77998SStan Tomov   CeedElemRestriction_Magma *impl;
47382b77998SStan Tomov 
4741751b0a9SStan Tomov   // Allocate memory for the MAGMA Restricton and initializa pointers to NULL
47582b77998SStan Tomov   ierr = CeedCalloc(1,&impl); CeedChk(ierr);
4761751b0a9SStan Tomov   impl->dindices = NULL;
4771751b0a9SStan Tomov   impl->indices  = NULL;
4781751b0a9SStan Tomov   impl->own_ = 0;
479c119dad6SStan Tomov   impl->down_= 0;
4801751b0a9SStan Tomov 
4811751b0a9SStan Tomov   if (mtype == CEED_MEM_HOST) {
4821751b0a9SStan Tomov     // memory is on the host; own_ = 0
48382b77998SStan Tomov     switch (cmode) {
48482b77998SStan Tomov     case CEED_COPY_VALUES:
4851751b0a9SStan Tomov       ierr = magma_malloc( (void**)&impl->dindices,
4861751b0a9SStan Tomov                            size * sizeof(CeedInt)); CeedChk(ierr);
4871751b0a9SStan Tomov       ierr = magma_malloc_pinned( (void**)&impl->indices,
4881751b0a9SStan Tomov                                   size * sizeof(CeedInt)); CeedChk(ierr);
4891751b0a9SStan Tomov       impl->own_ = 1;
4901751b0a9SStan Tomov 
49106b636dbSStan Tomov       if (indices != NULL) {
49206b636dbSStan Tomov         memcpy(impl->indices, indices, size * sizeof(indices[0]));
4931751b0a9SStan Tomov         magma_setvector(size, sizeof(CeedInt),
49406b636dbSStan Tomov                         impl->indices, 1, impl->dindices, 1);
49506b636dbSStan Tomov       }
49682b77998SStan Tomov       break;
49782b77998SStan Tomov     case CEED_OWN_POINTER:
4981751b0a9SStan Tomov       ierr = magma_malloc( (void**)&impl->dindices,
4991751b0a9SStan Tomov                            size * sizeof(CeedInt)); CeedChk(ierr);
5001751b0a9SStan Tomov       // TODO: possible problem here is if we are passed non-pinned memory;
5011751b0a9SStan Tomov       //       (as we own it, lter in destroy, we use free for pinned memory).
502137a0714SStan Tomov       impl->indices = (CeedInt *)indices;
5031751b0a9SStan Tomov       impl->own_ = 1;
5041751b0a9SStan Tomov 
505c119dad6SStan Tomov       if (indices != NULL)
5061751b0a9SStan Tomov         magma_setvector(size, sizeof(CeedInt),
5071751b0a9SStan Tomov                         indices, 1, impl->dindices, 1);
50882b77998SStan Tomov       break;
50982b77998SStan Tomov     case CEED_USE_POINTER:
510c119dad6SStan Tomov       ierr = magma_malloc( (void**)&impl->dindices,
511c119dad6SStan Tomov                            size * sizeof(CeedInt)); CeedChk(ierr);
512c119dad6SStan Tomov       magma_setvector(size, sizeof(CeedInt),
513c119dad6SStan Tomov                       indices, 1, impl->dindices, 1);
514c119dad6SStan Tomov       impl->down_ = 1;
515137a0714SStan Tomov       impl->indices  = (CeedInt *)indices;
51682b77998SStan Tomov     }
5171751b0a9SStan Tomov   } else if (mtype == CEED_MEM_DEVICE) {
5181751b0a9SStan Tomov     // memory is on the device; own = 0
5191751b0a9SStan Tomov     switch (cmode) {
5201751b0a9SStan Tomov     case CEED_COPY_VALUES:
5211751b0a9SStan Tomov       ierr = magma_malloc( (void**)&impl->dindices,
5221751b0a9SStan Tomov                            size * sizeof(CeedInt)); CeedChk(ierr);
5231751b0a9SStan Tomov       ierr = magma_malloc_pinned( (void**)&impl->indices,
5241751b0a9SStan Tomov                                   size * sizeof(CeedInt)); CeedChk(ierr);
5251751b0a9SStan Tomov       impl->own_ = 1;
5261751b0a9SStan Tomov 
5271751b0a9SStan Tomov       if (indices)
5281751b0a9SStan Tomov         magma_copyvector(size, sizeof(CeedInt),
5291751b0a9SStan Tomov                          indices, 1, impl->dindices, 1);
5301751b0a9SStan Tomov       break;
5311751b0a9SStan Tomov     case CEED_OWN_POINTER:
532137a0714SStan Tomov       impl->dindices = (CeedInt *)indices;
5331751b0a9SStan Tomov       ierr = magma_malloc_pinned( (void**)&impl->indices,
5341751b0a9SStan Tomov                                   size * sizeof(CeedInt)); CeedChk(ierr);
5351751b0a9SStan Tomov       impl->own_ = 1;
5361751b0a9SStan Tomov 
5371751b0a9SStan Tomov       break;
5381751b0a9SStan Tomov     case CEED_USE_POINTER:
539137a0714SStan Tomov       impl->dindices = (CeedInt *)indices;
5401751b0a9SStan Tomov       impl->indices  = NULL;
5411751b0a9SStan Tomov     }
5421751b0a9SStan Tomov 
5431751b0a9SStan Tomov   } else
5441751b0a9SStan Tomov     return CeedError(r->ceed, 1, "Only MemType = HOST or DEVICE supported");
5451751b0a9SStan Tomov 
54682b77998SStan Tomov   r->data    = impl;
54782b77998SStan Tomov   r->Apply   = CeedElemRestrictionApply_Magma;
54882b77998SStan Tomov   r->Destroy = CeedElemRestrictionDestroy_Magma;
5491751b0a9SStan Tomov 
55082b77998SStan Tomov   return 0;
55182b77998SStan Tomov }
55282b77998SStan Tomov 
55382b77998SStan Tomov // Contracts on the middle index
55482b77998SStan Tomov // NOTRANSPOSE: V_ajc = T_jb U_abc
55582b77998SStan Tomov // TRANSPOSE:   V_ajc = T_bj U_abc
55682b77998SStan Tomov // If Add != 0, "=" is replaced by "+="
55782b77998SStan Tomov static int CeedTensorContract_Magma(Ceed ceed,
55882b77998SStan Tomov                                     CeedInt A, CeedInt B, CeedInt C, CeedInt J,
55982b77998SStan Tomov                                     const CeedScalar *t, CeedTransposeMode tmode,
56082b77998SStan Tomov                                     const CeedInt Add,
56182b77998SStan Tomov                                     const CeedScalar *u, CeedScalar *v) {
56238612b08SStan Tomov #ifdef USE_MAGMA_BATCH
56338612b08SStan Tomov   magma_dtensor_contract(ceed, A, B, C, J, t, tmode, Add, u, v);
56438612b08SStan Tomov #else
56582b77998SStan Tomov   CeedInt tstride0 = B, tstride1 = 1;
56682b77998SStan Tomov   if (tmode == CEED_TRANSPOSE) {
56782b77998SStan Tomov     tstride0 = 1; tstride1 = J;
56882b77998SStan Tomov   }
56938612b08SStan Tomov   CeedDebug("\033[31m[CeedTensorContract] A=%d, J=%d, C=%d, B=%d: %d %d %d",
57038612b08SStan Tomov             A,J,C,B,A*J*B*C, C*J*A, C*B*A);
57182b77998SStan Tomov   for (CeedInt a=0; a<A; a++) {
57282b77998SStan Tomov     for (CeedInt j=0; j<J; j++) {
57382b77998SStan Tomov       if (!Add) {
57482b77998SStan Tomov         for (CeedInt c=0; c<C; c++)
57582b77998SStan Tomov           v[(a*J+j)*C+c] = 0;
57682b77998SStan Tomov       }
57782b77998SStan Tomov       for (CeedInt b=0; b<B; b++) {
57882b77998SStan Tomov         for (CeedInt c=0; c<C; c++) {
57982b77998SStan Tomov           v[(a*J+j)*C+c] += t[j*tstride0 + b*tstride1] * u[(a*B+b)*C+c];
58082b77998SStan Tomov         }
58182b77998SStan Tomov       }
58282b77998SStan Tomov     }
58382b77998SStan Tomov   }
58438612b08SStan Tomov #endif
58582b77998SStan Tomov   return 0;
58682b77998SStan Tomov }
58782b77998SStan Tomov 
58882b77998SStan Tomov static int CeedBasisApply_Magma(CeedBasis basis, CeedTransposeMode tmode,
58982b77998SStan Tomov                                 CeedEvalMode emode,
59082b77998SStan Tomov                                 const CeedScalar *u, CeedScalar *v) {
59182b77998SStan Tomov   int ierr;
59282b77998SStan Tomov   const CeedInt dim = basis->dim;
59382b77998SStan Tomov   const CeedInt ndof = basis->ndof;
59482b77998SStan Tomov   const CeedInt nqpt = ndof*CeedPowInt(basis->Q1d, dim);
59582b77998SStan Tomov   const CeedInt add = (tmode == CEED_TRANSPOSE);
59682b77998SStan Tomov 
59738612b08SStan Tomov   CeedDebug("\033[01m[CeedBasisApply_Magma] vsize=%d",
59838612b08SStan Tomov             ndof*CeedPowInt(basis->P1d, dim));
59938612b08SStan Tomov 
60082b77998SStan Tomov   if (tmode == CEED_TRANSPOSE) {
60182b77998SStan Tomov     const CeedInt vsize = ndof*CeedPowInt(basis->P1d, dim);
60282b77998SStan Tomov     for (CeedInt i = 0; i < vsize; i++)
60382b77998SStan Tomov       v[i] = (CeedScalar) 0;
60482b77998SStan Tomov   }
60582b77998SStan Tomov   if (emode & CEED_EVAL_INTERP) {
60682b77998SStan Tomov     CeedInt P = basis->P1d, Q = basis->Q1d;
60782b77998SStan Tomov     if (tmode == CEED_TRANSPOSE) {
60882b77998SStan Tomov       P = basis->Q1d; Q = basis->P1d;
60982b77998SStan Tomov     }
61082b77998SStan Tomov     CeedInt pre = ndof*CeedPowInt(P, dim-1), post = 1;
61182b77998SStan Tomov     CeedScalar tmp[2][ndof*Q*CeedPowInt(P>Q?P:Q, dim-1)];
61238612b08SStan Tomov     CeedDebug("\033[01m[CeedBasisApply_Magma] tmpsize = %d",
61338612b08SStan Tomov               ndof*Q*CeedPowInt(P>Q?P:Q, dim-1));
61482b77998SStan Tomov     for (CeedInt d=0; d<dim; d++) {
61582b77998SStan Tomov       ierr = CeedTensorContract_Magma(basis->ceed, pre, P, post, Q, basis->interp1d,
61682b77998SStan Tomov                                       tmode, add&&(d==dim-1),
61782b77998SStan Tomov                                       d==0?u:tmp[d%2], d==dim-1?v:tmp[(d+1)%2]);
61882b77998SStan Tomov       CeedChk(ierr);
61982b77998SStan Tomov       pre /= P;
62082b77998SStan Tomov       post *= Q;
62182b77998SStan Tomov     }
62282b77998SStan Tomov     if (tmode == CEED_NOTRANSPOSE) {
62382b77998SStan Tomov       v += nqpt;
62482b77998SStan Tomov     } else {
62582b77998SStan Tomov       u += nqpt;
62682b77998SStan Tomov     }
62782b77998SStan Tomov   }
62882b77998SStan Tomov   if (emode & CEED_EVAL_GRAD) {
62982b77998SStan Tomov     CeedInt P = basis->P1d, Q = basis->Q1d;
63082b77998SStan Tomov     // In CEED_NOTRANSPOSE mode:
63182b77998SStan Tomov     // u is (P^dim x nc), column-major layout (nc = ndof)
63282b77998SStan Tomov     // v is (Q^dim x nc x dim), column-major layout (nc = ndof)
63382b77998SStan Tomov     // In CEED_TRANSPOSE mode, the sizes of u and v are switched.
63482b77998SStan Tomov     if (tmode == CEED_TRANSPOSE) {
63582b77998SStan Tomov       P = basis->Q1d, Q = basis->P1d;
63682b77998SStan Tomov     }
63782b77998SStan Tomov     CeedScalar tmp[2][ndof*Q*CeedPowInt(P>Q?P:Q, dim-1)];
63838612b08SStan Tomov     CeedDebug("\033[01m[CeedBasisApply_Magma] tmpsize = %d",
63938612b08SStan Tomov               ndof*Q*CeedPowInt(P>Q?P:Q, dim-1));
64082b77998SStan Tomov     for (CeedInt p = 0; p < dim; p++) {
64182b77998SStan Tomov       CeedInt pre = ndof*CeedPowInt(P, dim-1), post = 1;
64282b77998SStan Tomov       for (CeedInt d=0; d<dim; d++) {
64382b77998SStan Tomov         ierr = CeedTensorContract_Magma(basis->ceed, pre, P, post, Q,
64482b77998SStan Tomov                                         (p==d)?basis->grad1d:basis->interp1d,
64582b77998SStan Tomov                                         tmode, add&&(d==dim-1),
64682b77998SStan Tomov                                         d==0?u:tmp[d%2], d==dim-1?v:tmp[(d+1)%2]);
64782b77998SStan Tomov         CeedChk(ierr);
64882b77998SStan Tomov         pre /= P;
64982b77998SStan Tomov         post *= Q;
65082b77998SStan Tomov       }
65182b77998SStan Tomov       if (tmode == CEED_NOTRANSPOSE) {
65282b77998SStan Tomov         v += nqpt;
65382b77998SStan Tomov       } else {
65482b77998SStan Tomov         u += nqpt;
65582b77998SStan Tomov       }
65682b77998SStan Tomov     }
65782b77998SStan Tomov   }
65882b77998SStan Tomov   if (emode & CEED_EVAL_WEIGHT) {
65982b77998SStan Tomov     if (tmode == CEED_TRANSPOSE)
66082b77998SStan Tomov       return CeedError(basis->ceed, 1,
66182b77998SStan Tomov                        "CEED_EVAL_WEIGHT incompatible with CEED_TRANSPOSE");
66282b77998SStan Tomov     CeedInt Q = basis->Q1d;
66382b77998SStan Tomov     for (CeedInt d=0; d<dim; d++) {
66482b77998SStan Tomov       CeedInt pre = CeedPowInt(Q, dim-d-1), post = CeedPowInt(Q, d);
66582b77998SStan Tomov       for (CeedInt i=0; i<pre; i++) {
66682b77998SStan Tomov         for (CeedInt j=0; j<Q; j++) {
66782b77998SStan Tomov           for (CeedInt k=0; k<post; k++) {
66882b77998SStan Tomov             v[(i*Q + j)*post + k] = basis->qweight1d[j]
66982b77998SStan Tomov                                     * (d == 0 ? 1 : v[(i*Q + j)*post + k]);
67082b77998SStan Tomov           }
67182b77998SStan Tomov         }
67282b77998SStan Tomov       }
67382b77998SStan Tomov     }
67482b77998SStan Tomov   }
67582b77998SStan Tomov   return 0;
67682b77998SStan Tomov }
67782b77998SStan Tomov 
67882b77998SStan Tomov static int CeedBasisDestroy_Magma(CeedBasis basis) {
67982b77998SStan Tomov   return 0;
68082b77998SStan Tomov }
68182b77998SStan Tomov 
68282b77998SStan Tomov static int CeedBasisCreateTensorH1_Magma(Ceed ceed, CeedInt dim, CeedInt P1d,
68382b77998SStan Tomov     CeedInt Q1d, const CeedScalar *interp1d,
68482b77998SStan Tomov     const CeedScalar *grad1d,
68582b77998SStan Tomov     const CeedScalar *qref1d,
68682b77998SStan Tomov     const CeedScalar *qweight1d,
68782b77998SStan Tomov     CeedBasis basis) {
68882b77998SStan Tomov   basis->Apply = CeedBasisApply_Magma;
68982b77998SStan Tomov   basis->Destroy = CeedBasisDestroy_Magma;
69082b77998SStan Tomov   return 0;
69182b77998SStan Tomov }
69282b77998SStan Tomov 
693*3bfcb0deSjeremylt static int CeedQFunctionApply_Magma(CeedQFunction qf, CeedInt Q,
69482b77998SStan Tomov                                     const CeedScalar *const *u,
69582b77998SStan Tomov                                     CeedScalar *const *v) {
69682b77998SStan Tomov   int ierr;
697*3bfcb0deSjeremylt   ierr = qf->function(qf->ctx, Q, u, v); CeedChk(ierr);
69882b77998SStan Tomov   return 0;
69982b77998SStan Tomov }
70082b77998SStan Tomov 
70182b77998SStan Tomov static int CeedQFunctionDestroy_Magma(CeedQFunction qf) {
70282b77998SStan Tomov   return 0;
70382b77998SStan Tomov }
70482b77998SStan Tomov 
70582b77998SStan Tomov static int CeedQFunctionCreate_Magma(CeedQFunction qf) {
70682b77998SStan Tomov   qf->Apply = CeedQFunctionApply_Magma;
70782b77998SStan Tomov   qf->Destroy = CeedQFunctionDestroy_Magma;
70882b77998SStan Tomov   return 0;
70982b77998SStan Tomov }
71082b77998SStan Tomov 
71182b77998SStan Tomov static int CeedOperatorDestroy_Magma(CeedOperator op) {
71282b77998SStan Tomov   CeedOperator_Magma *impl = op->data;
71382b77998SStan Tomov   int ierr;
71482b77998SStan Tomov 
715*3bfcb0deSjeremylt   for (CeedInt i=0; i<impl->numein+impl->numeout; i++) {
716*3bfcb0deSjeremylt     ierr = CeedVectorDestroy(&impl->evecs[i]); CeedChk(ierr);
717*3bfcb0deSjeremylt   }
718*3bfcb0deSjeremylt   ierr = CeedFree(&impl->evecs); CeedChk(ierr);
719*3bfcb0deSjeremylt   ierr = CeedFree(&impl->edata); CeedChk(ierr);
720*3bfcb0deSjeremylt 
721*3bfcb0deSjeremylt   for (CeedInt i=0; i<impl->numqin+impl->numqout; i++) {
722*3bfcb0deSjeremylt     ierr = CeedFree(&impl->qdata_alloc[i]); CeedChk(ierr);
723*3bfcb0deSjeremylt   }
724*3bfcb0deSjeremylt   ierr = CeedFree(&impl->qdata_alloc); CeedChk(ierr);
725*3bfcb0deSjeremylt   ierr = CeedFree(&impl->qdata); CeedChk(ierr);
726*3bfcb0deSjeremylt 
727*3bfcb0deSjeremylt   ierr = CeedFree(&impl->indata); CeedChk(ierr);
728*3bfcb0deSjeremylt   ierr = CeedFree(&impl->outdata); CeedChk(ierr);
729*3bfcb0deSjeremylt 
73082b77998SStan Tomov   ierr = CeedFree(&op->data); CeedChk(ierr);
73182b77998SStan Tomov   return 0;
73282b77998SStan Tomov }
73382b77998SStan Tomov 
734*3bfcb0deSjeremylt /*
735*3bfcb0deSjeremylt   Setup infields or outfields
736*3bfcb0deSjeremylt  */
737*3bfcb0deSjeremylt static int CeedOperatorSetupFields_Magma(struct CeedQFunctionField qfields[16],
738*3bfcb0deSjeremylt     struct CeedOperatorField ofields[16],
739*3bfcb0deSjeremylt     CeedVector *evecs, CeedScalar **qdata,
740*3bfcb0deSjeremylt     CeedScalar **qdata_alloc, CeedScalar **indata,
741*3bfcb0deSjeremylt     CeedInt starti, CeedInt starte,
742*3bfcb0deSjeremylt     CeedInt startq, CeedInt numfields, CeedInt Q) {
743*3bfcb0deSjeremylt   CeedInt dim, ierr, ie=starte, iq=startq, ncomp;
74482b77998SStan Tomov 
745*3bfcb0deSjeremylt   // Loop over fields
746*3bfcb0deSjeremylt   for (CeedInt i=0; i<numfields; i++) {
747*3bfcb0deSjeremylt     if (ofields[i].Erestrict) {
748*3bfcb0deSjeremylt       ierr = CeedElemRestrictionCreateVector(ofields[i].Erestrict, NULL, &evecs[ie]);
74982b77998SStan Tomov       CeedChk(ierr);
750*3bfcb0deSjeremylt       ie++;
75182b77998SStan Tomov     }
752*3bfcb0deSjeremylt     CeedEvalMode emode = qfields[i].emode;
753*3bfcb0deSjeremylt     switch(emode) {
754*3bfcb0deSjeremylt     case CEED_EVAL_NONE:
755*3bfcb0deSjeremylt       break; // No action
756*3bfcb0deSjeremylt     case CEED_EVAL_INTERP:
757*3bfcb0deSjeremylt       ncomp = qfields[i].ncomp;
758*3bfcb0deSjeremylt       ierr = CeedMalloc(Q*ncomp, &qdata_alloc[iq]); CeedChk(ierr);
759*3bfcb0deSjeremylt       qdata[i + starti] = qdata_alloc[iq];
760*3bfcb0deSjeremylt       iq++;
761*3bfcb0deSjeremylt       break;
762*3bfcb0deSjeremylt     case CEED_EVAL_GRAD:
763*3bfcb0deSjeremylt       ncomp = qfields[i].ncomp;
764*3bfcb0deSjeremylt       dim = ofields[i].basis->dim;
765*3bfcb0deSjeremylt       ierr = CeedMalloc(Q*ncomp*dim, &qdata_alloc[iq]); CeedChk(ierr);
766*3bfcb0deSjeremylt       qdata[i + starti] = qdata_alloc[iq];
767*3bfcb0deSjeremylt       iq++;
768*3bfcb0deSjeremylt       break;
769*3bfcb0deSjeremylt     case CEED_EVAL_WEIGHT: // Only on input fields
770*3bfcb0deSjeremylt       ierr = CeedMalloc(Q, &qdata_alloc[iq]); CeedChk(ierr);
771*3bfcb0deSjeremylt       ierr = CeedBasisApply(ofields[iq].basis, CEED_NOTRANSPOSE, CEED_EVAL_WEIGHT,
772*3bfcb0deSjeremylt                             NULL, qdata_alloc[iq]); CeedChk(ierr);
773*3bfcb0deSjeremylt       qdata[i] = qdata_alloc[iq];
774*3bfcb0deSjeremylt       indata[i] = qdata[i];
775*3bfcb0deSjeremylt       iq++;
776*3bfcb0deSjeremylt       break;
777*3bfcb0deSjeremylt     case CEED_EVAL_DIV:
778*3bfcb0deSjeremylt       break; // Not implimented
779*3bfcb0deSjeremylt     case CEED_EVAL_CURL:
780*3bfcb0deSjeremylt       break; // Not implimented
78182b77998SStan Tomov     }
782*3bfcb0deSjeremylt   }
78382b77998SStan Tomov   return 0;
78482b77998SStan Tomov }
78582b77998SStan Tomov 
786*3bfcb0deSjeremylt /*
787*3bfcb0deSjeremylt   CeedOperator needs to connect all the named fields (be they active or passive)
788*3bfcb0deSjeremylt   to the named inputs and outputs of its CeedQFunction.
789*3bfcb0deSjeremylt  */
790*3bfcb0deSjeremylt static int CeedOperatorSetup_Magma(CeedOperator op) {
791*3bfcb0deSjeremylt   if (op->setupdone) return 0;
792*3bfcb0deSjeremylt   CeedOperator_Magma *opMagma = op->data;
793*3bfcb0deSjeremylt   CeedQFunction qf = op->qf;
794*3bfcb0deSjeremylt   CeedInt Q = op->numqpoints;
79582b77998SStan Tomov   int ierr;
79682b77998SStan Tomov 
797*3bfcb0deSjeremylt   // Count infield and outfield array sizes and evectors
798*3bfcb0deSjeremylt   for (CeedInt i=0; i<qf->numinputfields; i++) {
799*3bfcb0deSjeremylt     CeedEvalMode emode = qf->inputfields[i].emode;
800*3bfcb0deSjeremylt     opMagma->numqin += !!(emode & CEED_EVAL_INTERP) + !!(emode & CEED_EVAL_GRAD) +
801*3bfcb0deSjeremylt                        !!
802*3bfcb0deSjeremylt                        (emode & CEED_EVAL_WEIGHT);
803*3bfcb0deSjeremylt     opMagma->numein +=
804*3bfcb0deSjeremylt       !!op->inputfields[i].Erestrict; // Need E-vector when restriction exists
80582b77998SStan Tomov   }
806*3bfcb0deSjeremylt   for (CeedInt i=0; i<qf->numoutputfields; i++) {
807*3bfcb0deSjeremylt     CeedEvalMode emode = qf->outputfields[i].emode;
808*3bfcb0deSjeremylt     opMagma->numqout += !!(emode & CEED_EVAL_INTERP) + !!(emode & CEED_EVAL_GRAD);
809*3bfcb0deSjeremylt     opMagma->numeout += !!op->outputfields[i].Erestrict;
810*3bfcb0deSjeremylt   }
811*3bfcb0deSjeremylt 
812*3bfcb0deSjeremylt   // Allocate
813*3bfcb0deSjeremylt   ierr = CeedCalloc(opMagma->numein + opMagma->numeout, &opMagma->evecs);
814*3bfcb0deSjeremylt   CeedChk(ierr);
815*3bfcb0deSjeremylt   ierr = CeedCalloc(qf->numinputfields + qf->numoutputfields, &opMagma->edata);
816*3bfcb0deSjeremylt   CeedChk(ierr);
817*3bfcb0deSjeremylt 
818*3bfcb0deSjeremylt   ierr = CeedCalloc(opMagma->numqin + opMagma->numqout, &opMagma->qdata_alloc);
819*3bfcb0deSjeremylt   CeedChk(ierr);
820*3bfcb0deSjeremylt   ierr = CeedCalloc(qf->numinputfields + qf->numoutputfields, &opMagma->qdata);
821*3bfcb0deSjeremylt   CeedChk(ierr);
822*3bfcb0deSjeremylt 
823*3bfcb0deSjeremylt   ierr = CeedCalloc(16, &opMagma->indata); CeedChk(ierr);
824*3bfcb0deSjeremylt   ierr = CeedCalloc(16, &opMagma->outdata); CeedChk(ierr);
825*3bfcb0deSjeremylt 
826*3bfcb0deSjeremylt   // Set up infield and outfield pointer arrays
827*3bfcb0deSjeremylt   // Infields
828*3bfcb0deSjeremylt   ierr = CeedOperatorSetupFields_Magma(qf->inputfields, op->inputfields,
829*3bfcb0deSjeremylt                                        opMagma->evecs, opMagma->qdata, opMagma->qdata_alloc,
830*3bfcb0deSjeremylt                                        opMagma->indata, 0, 0, 0,
831*3bfcb0deSjeremylt                                        qf->numinputfields, Q); CeedChk(ierr);
832*3bfcb0deSjeremylt 
833*3bfcb0deSjeremylt   // Outfields
834*3bfcb0deSjeremylt   ierr = CeedOperatorSetupFields_Magma(qf->outputfields, op->outputfields,
835*3bfcb0deSjeremylt                                        opMagma->evecs, opMagma->qdata, opMagma->qdata_alloc,
836*3bfcb0deSjeremylt                                        opMagma->indata, qf->numinputfields, opMagma->numein,
837*3bfcb0deSjeremylt                                        opMagma->numqin, qf->numoutputfields, Q); CeedChk(ierr);
838*3bfcb0deSjeremylt 
839*3bfcb0deSjeremylt   op->setupdone = 1;
840*3bfcb0deSjeremylt 
841*3bfcb0deSjeremylt   return 0;
842*3bfcb0deSjeremylt }
843*3bfcb0deSjeremylt 
844*3bfcb0deSjeremylt static int CeedOperatorApply_Magma(CeedOperator op, CeedVector invec,
845*3bfcb0deSjeremylt                                    CeedVector outvec, CeedRequest *request) {
846*3bfcb0deSjeremylt   CeedOperator_Magma *opMagma = op->data;
847*3bfcb0deSjeremylt   CeedInt Q = op->numqpoints, elemsize;
848*3bfcb0deSjeremylt   int ierr;
849*3bfcb0deSjeremylt   CeedQFunction qf = op->qf;
850*3bfcb0deSjeremylt   CeedTransposeMode lmode = CEED_NOTRANSPOSE;
851*3bfcb0deSjeremylt 
852*3bfcb0deSjeremylt   // Setup
853*3bfcb0deSjeremylt   ierr = CeedOperatorSetup_Magma(op); CeedChk(ierr);
854*3bfcb0deSjeremylt 
855*3bfcb0deSjeremylt   // Input Evecs and Restriction
856*3bfcb0deSjeremylt   for (CeedInt i=0,iein=0; i<qf->numinputfields; i++) {
857*3bfcb0deSjeremylt     // Restriction
858*3bfcb0deSjeremylt     if (op->inputfields[i].Erestrict) {
859*3bfcb0deSjeremylt       // Passive
860*3bfcb0deSjeremylt       if (op->inputfields[i].vec) {
861*3bfcb0deSjeremylt         ierr = CeedElemRestrictionApply(op->inputfields[i].Erestrict, CEED_NOTRANSPOSE,
862*3bfcb0deSjeremylt                                         lmode, op->inputfields[i].vec, opMagma->evecs[iein],
863*3bfcb0deSjeremylt                                         request); CeedChk(ierr);
864*3bfcb0deSjeremylt         ierr = CeedVectorGetArrayRead(opMagma->evecs[iein], CEED_MEM_HOST,
865*3bfcb0deSjeremylt                                       (const CeedScalar **) &opMagma->edata[i]); CeedChk(ierr);
866*3bfcb0deSjeremylt         iein++;
867*3bfcb0deSjeremylt       } else {
868*3bfcb0deSjeremylt         // Active
869*3bfcb0deSjeremylt         ierr = CeedElemRestrictionApply(op->inputfields[i].Erestrict, CEED_NOTRANSPOSE,
870*3bfcb0deSjeremylt                                         lmode, invec, opMagma->evecs[iein], request); CeedChk(ierr);
871*3bfcb0deSjeremylt         ierr = CeedVectorGetArrayRead(opMagma->evecs[iein], CEED_MEM_HOST,
872*3bfcb0deSjeremylt                                       (const CeedScalar **) &opMagma->edata[i]); CeedChk(ierr);
873*3bfcb0deSjeremylt         iein++;
874*3bfcb0deSjeremylt       }
875*3bfcb0deSjeremylt     } else {
876*3bfcb0deSjeremylt       // No restriction
877*3bfcb0deSjeremylt       CeedEvalMode emode = qf->inputfields[i].emode;
878*3bfcb0deSjeremylt       if (emode & CEED_EVAL_WEIGHT) {
879*3bfcb0deSjeremylt       } else {
880*3bfcb0deSjeremylt         ierr = CeedVectorGetArrayRead(op->inputfields[i].vec, CEED_MEM_HOST,
881*3bfcb0deSjeremylt                                       (const CeedScalar **) &opMagma->edata[i]); CeedChk(ierr);
882*3bfcb0deSjeremylt       }
883*3bfcb0deSjeremylt     }
884*3bfcb0deSjeremylt   }
885*3bfcb0deSjeremylt 
886*3bfcb0deSjeremylt   // Output Evecs
887*3bfcb0deSjeremylt   for (CeedInt i=0,ieout=opMagma->numein; i<qf->numoutputfields; i++) {
888*3bfcb0deSjeremylt     // Restriction
889*3bfcb0deSjeremylt     if (op->outputfields[i].Erestrict) {
890*3bfcb0deSjeremylt       ierr = CeedVectorGetArray(opMagma->evecs[ieout], CEED_MEM_HOST,
891*3bfcb0deSjeremylt                                 &opMagma->edata[i + qf->numinputfields]); CeedChk(ierr);
892*3bfcb0deSjeremylt       ieout++;
893*3bfcb0deSjeremylt     } else {
894*3bfcb0deSjeremylt       // No restriction
895*3bfcb0deSjeremylt       // Passive
896*3bfcb0deSjeremylt       if (op->inputfields[i].vec) {
897*3bfcb0deSjeremylt         ierr = CeedVectorGetArray(op->inputfields[i].vec, CEED_MEM_HOST,
898*3bfcb0deSjeremylt                                   &opMagma->edata[i + qf->numinputfields]); CeedChk(ierr);
899*3bfcb0deSjeremylt       } else {
900*3bfcb0deSjeremylt         // Active
901*3bfcb0deSjeremylt         ierr = CeedVectorGetArray(outvec, CEED_MEM_HOST,
902*3bfcb0deSjeremylt                                   &opMagma->edata[i + qf->numinputfields]); CeedChk(ierr);
903*3bfcb0deSjeremylt       }
904*3bfcb0deSjeremylt     }
905*3bfcb0deSjeremylt   }
906*3bfcb0deSjeremylt 
907*3bfcb0deSjeremylt   // Output Qvecs
908*3bfcb0deSjeremylt   for (CeedInt i=0; i<qf->numoutputfields; i++) {
909*3bfcb0deSjeremylt     CeedEvalMode emode = qf->outputfields[i].emode;
910*3bfcb0deSjeremylt     if (emode != CEED_EVAL_NONE) {
911*3bfcb0deSjeremylt       opMagma->outdata[i] =  opMagma->qdata[i + qf->numinputfields];
912*3bfcb0deSjeremylt     }
913*3bfcb0deSjeremylt   }
914*3bfcb0deSjeremylt 
915*3bfcb0deSjeremylt   // Loop through elements
916*3bfcb0deSjeremylt   for (CeedInt e=0; e<op->numelements; e++) {
917*3bfcb0deSjeremylt     // Input basis apply if needed
918*3bfcb0deSjeremylt     for (CeedInt i=0; i<qf->numinputfields; i++) {
919*3bfcb0deSjeremylt       // Get elemsize
920*3bfcb0deSjeremylt       if (op->inputfields[i].Erestrict) {
921*3bfcb0deSjeremylt         elemsize = op->inputfields[i].Erestrict->elemsize;
922*3bfcb0deSjeremylt       } else {
923*3bfcb0deSjeremylt         elemsize = Q;
924*3bfcb0deSjeremylt       }
925*3bfcb0deSjeremylt       // Get emode, ncomp
926*3bfcb0deSjeremylt       CeedEvalMode emode = qf->inputfields[i].emode;
927*3bfcb0deSjeremylt       CeedInt ncomp = qf->inputfields[i].ncomp;
928*3bfcb0deSjeremylt       // Basis action
929*3bfcb0deSjeremylt       switch(emode) {
930*3bfcb0deSjeremylt       case CEED_EVAL_NONE:
931*3bfcb0deSjeremylt         opMagma->indata[i] = &opMagma->edata[i][e*Q*ncomp];
932*3bfcb0deSjeremylt         break;
933*3bfcb0deSjeremylt       case CEED_EVAL_INTERP:
934*3bfcb0deSjeremylt         ierr = CeedBasisApply(op->inputfields[i].basis, CEED_NOTRANSPOSE,
935*3bfcb0deSjeremylt                               CEED_EVAL_INTERP, &opMagma->edata[i][e*elemsize*ncomp], opMagma->qdata[i]);
936*3bfcb0deSjeremylt         CeedChk(ierr);
937*3bfcb0deSjeremylt         opMagma->indata[i] = opMagma->qdata[i];
938*3bfcb0deSjeremylt         break;
939*3bfcb0deSjeremylt       case CEED_EVAL_GRAD:
940*3bfcb0deSjeremylt         ierr = CeedBasisApply(op->inputfields[i].basis, CEED_NOTRANSPOSE,
941*3bfcb0deSjeremylt                               CEED_EVAL_GRAD, &opMagma->edata[i][e*elemsize*ncomp], opMagma->qdata[i]);
942*3bfcb0deSjeremylt         CeedChk(ierr);
943*3bfcb0deSjeremylt         opMagma->indata[i] = opMagma->qdata[i];
944*3bfcb0deSjeremylt         break;
945*3bfcb0deSjeremylt       case CEED_EVAL_WEIGHT:
946*3bfcb0deSjeremylt         break;  // No action
947*3bfcb0deSjeremylt       case CEED_EVAL_DIV:
948*3bfcb0deSjeremylt         break; // Not implimented
949*3bfcb0deSjeremylt       case CEED_EVAL_CURL:
950*3bfcb0deSjeremylt         break; // Not implimented
951*3bfcb0deSjeremylt       }
952*3bfcb0deSjeremylt     }
953*3bfcb0deSjeremylt     // Output pointers
954*3bfcb0deSjeremylt     for (CeedInt i=0; i<qf->numoutputfields; i++) {
955*3bfcb0deSjeremylt       CeedEvalMode emode = qf->outputfields[i].emode;
956*3bfcb0deSjeremylt       if (emode == CEED_EVAL_NONE) {
957*3bfcb0deSjeremylt         CeedInt ncomp = qf->outputfields[i].ncomp;
958*3bfcb0deSjeremylt         opMagma->outdata[i] = &opMagma->edata[i + qf->numinputfields][e*Q*ncomp];
959*3bfcb0deSjeremylt       }
960*3bfcb0deSjeremylt     }
961*3bfcb0deSjeremylt     // Q function
962*3bfcb0deSjeremylt     ierr = CeedQFunctionApply(op->qf, Q,
963*3bfcb0deSjeremylt                               (const CeedScalar * const*) opMagma->indata,
964*3bfcb0deSjeremylt                               opMagma->outdata); CeedChk(ierr);
965*3bfcb0deSjeremylt 
966*3bfcb0deSjeremylt     // Output basis apply if needed
967*3bfcb0deSjeremylt     for (CeedInt i=0; i<qf->numoutputfields; i++) {
968*3bfcb0deSjeremylt       // Get elemsize
969*3bfcb0deSjeremylt       if (op->outputfields[i].Erestrict) {
970*3bfcb0deSjeremylt         elemsize = op->outputfields[i].Erestrict->elemsize;
971*3bfcb0deSjeremylt       } else {
972*3bfcb0deSjeremylt         elemsize = Q;
973*3bfcb0deSjeremylt       }
974*3bfcb0deSjeremylt       // Get emode, ncomp
975*3bfcb0deSjeremylt       CeedInt ncomp = qf->outputfields[i].ncomp;
976*3bfcb0deSjeremylt       CeedEvalMode emode = qf->outputfields[i].emode;
977*3bfcb0deSjeremylt       // Basis action
978*3bfcb0deSjeremylt       switch(emode) {
979*3bfcb0deSjeremylt       case CEED_EVAL_NONE:
980*3bfcb0deSjeremylt         break; // No action
981*3bfcb0deSjeremylt       case CEED_EVAL_INTERP:
982*3bfcb0deSjeremylt         ierr = CeedBasisApply(op->outputfields[i].basis, CEED_TRANSPOSE,
983*3bfcb0deSjeremylt                               CEED_EVAL_INTERP, opMagma->outdata[i],
984*3bfcb0deSjeremylt                               &opMagma->edata[i + qf->numinputfields][e*elemsize*ncomp]); CeedChk(ierr);
985*3bfcb0deSjeremylt         break;
986*3bfcb0deSjeremylt       case CEED_EVAL_GRAD:
987*3bfcb0deSjeremylt         ierr = CeedBasisApply(op->outputfields[i].basis, CEED_TRANSPOSE, CEED_EVAL_GRAD,
988*3bfcb0deSjeremylt                               opMagma->outdata[i], &opMagma->edata[i + qf->numinputfields][e*elemsize*ncomp]);
989*3bfcb0deSjeremylt         CeedChk(ierr);
990*3bfcb0deSjeremylt         break;
991*3bfcb0deSjeremylt       case CEED_EVAL_WEIGHT:
992*3bfcb0deSjeremylt         break; // Should not occur
993*3bfcb0deSjeremylt       case CEED_EVAL_DIV:
994*3bfcb0deSjeremylt         break; // Not implimented
995*3bfcb0deSjeremylt       case CEED_EVAL_CURL:
996*3bfcb0deSjeremylt         break; // Not implimented
997*3bfcb0deSjeremylt       }
998*3bfcb0deSjeremylt     }
999*3bfcb0deSjeremylt   }
1000*3bfcb0deSjeremylt 
1001*3bfcb0deSjeremylt   // Output restriction
1002*3bfcb0deSjeremylt   for (CeedInt i=0,ieout=opMagma->numein; i<qf->numoutputfields; i++) {
1003*3bfcb0deSjeremylt     // Restriction
1004*3bfcb0deSjeremylt     if (op->outputfields[i].Erestrict) {
1005*3bfcb0deSjeremylt       // Passive
1006*3bfcb0deSjeremylt       if (op->outputfields[i].vec) {
1007*3bfcb0deSjeremylt         ierr = CeedVectorRestoreArray(opMagma->evecs[ieout],
1008*3bfcb0deSjeremylt                                       &opMagma->edata[i + qf->numinputfields]); CeedChk(ierr);
1009*3bfcb0deSjeremylt         ierr = CeedElemRestrictionApply(op->outputfields[i].Erestrict, CEED_TRANSPOSE,
1010*3bfcb0deSjeremylt                                         lmode, opMagma->evecs[ieout], op->outputfields[i].vec, request); CeedChk(ierr);
1011*3bfcb0deSjeremylt         ieout++;
1012*3bfcb0deSjeremylt       } else {
1013*3bfcb0deSjeremylt         // Active
1014*3bfcb0deSjeremylt         ierr = CeedVectorRestoreArray(opMagma->evecs[ieout],
1015*3bfcb0deSjeremylt                                       &opMagma->edata[i + qf->numinputfields]); CeedChk(ierr);
1016*3bfcb0deSjeremylt         ierr = CeedElemRestrictionApply(op->outputfields[i].Erestrict, CEED_TRANSPOSE,
1017*3bfcb0deSjeremylt                                         lmode, opMagma->evecs[ieout], outvec, request); CeedChk(ierr);
1018*3bfcb0deSjeremylt         ieout++;
1019*3bfcb0deSjeremylt       }
1020*3bfcb0deSjeremylt     } else {
1021*3bfcb0deSjeremylt       // No Restriction
1022*3bfcb0deSjeremylt       // Passive
1023*3bfcb0deSjeremylt       if (op->outputfields[i].vec) {
1024*3bfcb0deSjeremylt         ierr = CeedVectorRestoreArray(op->outputfields[i].vec,
1025*3bfcb0deSjeremylt                                       &opMagma->edata[i + qf->numinputfields]); CeedChk(ierr);
1026*3bfcb0deSjeremylt       } else {
1027*3bfcb0deSjeremylt         // Active
1028*3bfcb0deSjeremylt         ierr = CeedVectorRestoreArray(outvec, &opMagma->edata[i + qf->numinputfields]);
1029*3bfcb0deSjeremylt         CeedChk(ierr);
1030*3bfcb0deSjeremylt       }
1031*3bfcb0deSjeremylt     }
1032*3bfcb0deSjeremylt   }
1033*3bfcb0deSjeremylt 
103482b77998SStan Tomov   return 0;
103582b77998SStan Tomov }
103682b77998SStan Tomov 
103782b77998SStan Tomov static int CeedOperatorCreate_Magma(CeedOperator op) {
103882b77998SStan Tomov   CeedOperator_Magma *impl;
103982b77998SStan Tomov   int ierr;
104082b77998SStan Tomov 
104182b77998SStan Tomov   ierr = CeedCalloc(1, &impl); CeedChk(ierr);
104282b77998SStan Tomov   op->data = impl;
104382b77998SStan Tomov   op->Destroy  = CeedOperatorDestroy_Magma;
104482b77998SStan Tomov   op->Apply    = CeedOperatorApply_Magma;
104582b77998SStan Tomov   return 0;
104682b77998SStan Tomov }
104782b77998SStan Tomov 
104882b77998SStan Tomov // *****************************************************************************
104982b77998SStan Tomov // * INIT
105082b77998SStan Tomov // *****************************************************************************
105182b77998SStan Tomov static int CeedInit_Magma(const char *resource, Ceed ceed) {
10521dc2661bSVeselin Dobrev   int ierr;
10532a847359SStan Tomov   if (strcmp(resource, "/gpu/magma"))
105482b77998SStan Tomov     return CeedError(ceed, 1, "MAGMA backend cannot use resource: %s", resource);
105593fbe329SStan Tomov 
10561dc2661bSVeselin Dobrev   ierr = magma_init();
10571dc2661bSVeselin Dobrev   if (ierr) return CeedError(ceed, 1, "error in magma_init(): %d\n", ierr);
105893fbe329SStan Tomov   //magma_print_environment();
105993fbe329SStan Tomov 
106082b77998SStan Tomov   ceed->VecCreate = CeedVectorCreate_Magma;
106182b77998SStan Tomov   ceed->BasisCreateTensorH1 = CeedBasisCreateTensorH1_Magma;
106282b77998SStan Tomov   ceed->ElemRestrictionCreate = CeedElemRestrictionCreate_Magma;
106382b77998SStan Tomov   ceed->QFunctionCreate = CeedQFunctionCreate_Magma;
106482b77998SStan Tomov   ceed->OperatorCreate = CeedOperatorCreate_Magma;
106582b77998SStan Tomov   return 0;
106682b77998SStan Tomov }
106782b77998SStan Tomov 
106882b77998SStan Tomov // *****************************************************************************
106982b77998SStan Tomov // * REGISTER
107082b77998SStan Tomov // *****************************************************************************
107182b77998SStan Tomov __attribute__((constructor))
107282b77998SStan Tomov static void Register(void) {
107344951fc6Sjeremylt   CeedRegister("/gpu/magma", CeedInit_Magma, 20);
107482b77998SStan Tomov }
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