xref: /libCEED/backends/cuda-ref/ceed-cuda-ref-vector.c (revision 124cc107811199b024577cdea9f0240bb43be223)
1 // Copyright (c) 2017-2024, Lawrence Livermore National Security, LLC and other CEED contributors.
2 // All Rights Reserved. See the top-level LICENSE and NOTICE files for details.
3 //
4 // SPDX-License-Identifier: BSD-2-Clause
5 //
6 // This file is part of CEED:  http://github.com/ceed
7 
8 #include <ceed.h>
9 #include <ceed/backend.h>
10 #include <cuda_runtime.h>
11 #include <math.h>
12 #include <stdbool.h>
13 #include <string.h>
14 
15 #include "../cuda/ceed-cuda-common.h"
16 #include "ceed-cuda-ref.h"
17 
18 //------------------------------------------------------------------------------
19 // Check if host/device sync is needed
20 //------------------------------------------------------------------------------
21 static inline int CeedVectorNeedSync_Cuda(const CeedVector vec, CeedMemType mem_type, bool *need_sync) {
22   bool             has_valid_array = false;
23   CeedVector_Cuda *impl;
24 
25   CeedCallBackend(CeedVectorGetData(vec, &impl));
26   CeedCallBackend(CeedVectorHasValidArray(vec, &has_valid_array));
27   switch (mem_type) {
28     case CEED_MEM_HOST:
29       *need_sync = has_valid_array && !impl->h_array;
30       break;
31     case CEED_MEM_DEVICE:
32       *need_sync = has_valid_array && !impl->d_array;
33       break;
34   }
35   return CEED_ERROR_SUCCESS;
36 }
37 
38 //------------------------------------------------------------------------------
39 // Sync host to device
40 //------------------------------------------------------------------------------
41 static inline int CeedVectorSyncH2D_Cuda(const CeedVector vec) {
42   CeedSize         length;
43   size_t           bytes;
44   CeedVector_Cuda *impl;
45 
46   CeedCallBackend(CeedVectorGetData(vec, &impl));
47 
48   CeedCheck(impl->h_array, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND, "No valid host data to sync to device");
49 
50   CeedCallBackend(CeedVectorGetLength(vec, &length));
51   bytes = length * sizeof(CeedScalar);
52   if (impl->d_array_borrowed) {
53     impl->d_array = impl->d_array_borrowed;
54   } else if (impl->d_array_owned) {
55     impl->d_array = impl->d_array_owned;
56   } else {
57     CeedCallCuda(CeedVectorReturnCeed(vec), cudaMalloc((void **)&impl->d_array_owned, bytes));
58     impl->d_array = impl->d_array_owned;
59   }
60   CeedCallCuda(CeedVectorReturnCeed(vec), cudaMemcpy(impl->d_array, impl->h_array, bytes, cudaMemcpyHostToDevice));
61   return CEED_ERROR_SUCCESS;
62 }
63 
64 //------------------------------------------------------------------------------
65 // Sync device to host
66 //------------------------------------------------------------------------------
67 static inline int CeedVectorSyncD2H_Cuda(const CeedVector vec) {
68   CeedSize         length;
69   CeedVector_Cuda *impl;
70 
71   CeedCallBackend(CeedVectorGetData(vec, &impl));
72 
73   CeedCheck(impl->d_array, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND, "No valid device data to sync to host");
74 
75   if (impl->h_array_borrowed) {
76     impl->h_array = impl->h_array_borrowed;
77   } else if (impl->h_array_owned) {
78     impl->h_array = impl->h_array_owned;
79   } else {
80     CeedSize length;
81 
82     CeedCallBackend(CeedVectorGetLength(vec, &length));
83     CeedCallBackend(CeedCalloc(length, &impl->h_array_owned));
84     impl->h_array = impl->h_array_owned;
85   }
86 
87   CeedCallBackend(CeedVectorGetLength(vec, &length));
88   size_t bytes = length * sizeof(CeedScalar);
89 
90   CeedCallCuda(CeedVectorReturnCeed(vec), cudaMemcpy(impl->h_array, impl->d_array, bytes, cudaMemcpyDeviceToHost));
91   return CEED_ERROR_SUCCESS;
92 }
93 
94 //------------------------------------------------------------------------------
95 // Sync arrays
96 //------------------------------------------------------------------------------
97 static int CeedVectorSyncArray_Cuda(const CeedVector vec, CeedMemType mem_type) {
98   bool need_sync = false;
99 
100   // Check whether device/host sync is needed
101   CeedCallBackend(CeedVectorNeedSync_Cuda(vec, mem_type, &need_sync));
102   if (!need_sync) return CEED_ERROR_SUCCESS;
103 
104   switch (mem_type) {
105     case CEED_MEM_HOST:
106       return CeedVectorSyncD2H_Cuda(vec);
107     case CEED_MEM_DEVICE:
108       return CeedVectorSyncH2D_Cuda(vec);
109   }
110   return CEED_ERROR_UNSUPPORTED;
111 }
112 
113 //------------------------------------------------------------------------------
114 // Set all pointers as invalid
115 //------------------------------------------------------------------------------
116 static inline int CeedVectorSetAllInvalid_Cuda(const CeedVector vec) {
117   CeedVector_Cuda *impl;
118 
119   CeedCallBackend(CeedVectorGetData(vec, &impl));
120   impl->h_array = NULL;
121   impl->d_array = NULL;
122   return CEED_ERROR_SUCCESS;
123 }
124 
125 //------------------------------------------------------------------------------
126 // Check if CeedVector has any valid pointer
127 //------------------------------------------------------------------------------
128 static inline int CeedVectorHasValidArray_Cuda(const CeedVector vec, bool *has_valid_array) {
129   CeedVector_Cuda *impl;
130 
131   CeedCallBackend(CeedVectorGetData(vec, &impl));
132   *has_valid_array = impl->h_array || impl->d_array;
133   return CEED_ERROR_SUCCESS;
134 }
135 
136 //------------------------------------------------------------------------------
137 // Check if has array of given type
138 //------------------------------------------------------------------------------
139 static inline int CeedVectorHasArrayOfType_Cuda(const CeedVector vec, CeedMemType mem_type, bool *has_array_of_type) {
140   CeedVector_Cuda *impl;
141 
142   CeedCallBackend(CeedVectorGetData(vec, &impl));
143   switch (mem_type) {
144     case CEED_MEM_HOST:
145       *has_array_of_type = impl->h_array_borrowed || impl->h_array_owned;
146       break;
147     case CEED_MEM_DEVICE:
148       *has_array_of_type = impl->d_array_borrowed || impl->d_array_owned;
149       break;
150   }
151   return CEED_ERROR_SUCCESS;
152 }
153 
154 //------------------------------------------------------------------------------
155 // Check if has borrowed array of given type
156 //------------------------------------------------------------------------------
157 static inline int CeedVectorHasBorrowedArrayOfType_Cuda(const CeedVector vec, CeedMemType mem_type, bool *has_borrowed_array_of_type) {
158   CeedVector_Cuda *impl;
159 
160   CeedCallBackend(CeedVectorGetData(vec, &impl));
161   switch (mem_type) {
162     case CEED_MEM_HOST:
163       *has_borrowed_array_of_type = impl->h_array_borrowed;
164       break;
165     case CEED_MEM_DEVICE:
166       *has_borrowed_array_of_type = impl->d_array_borrowed;
167       break;
168   }
169   return CEED_ERROR_SUCCESS;
170 }
171 
172 //------------------------------------------------------------------------------
173 // Set array from host
174 //------------------------------------------------------------------------------
175 static int CeedVectorSetArrayHost_Cuda(const CeedVector vec, const CeedCopyMode copy_mode, CeedScalar *array) {
176   CeedSize         length;
177   CeedVector_Cuda *impl;
178 
179   CeedCallBackend(CeedVectorGetData(vec, &impl));
180   CeedCallBackend(CeedVectorGetLength(vec, &length));
181 
182   CeedCallBackend(CeedSetHostCeedScalarArray(array, copy_mode, length, (const CeedScalar **)&impl->h_array_owned,
183                                              (const CeedScalar **)&impl->h_array_borrowed, (const CeedScalar **)&impl->h_array));
184   return CEED_ERROR_SUCCESS;
185 }
186 
187 //------------------------------------------------------------------------------
188 // Set array from device
189 //------------------------------------------------------------------------------
190 static int CeedVectorSetArrayDevice_Cuda(const CeedVector vec, const CeedCopyMode copy_mode, CeedScalar *array) {
191   CeedSize         length;
192   Ceed             ceed;
193   CeedVector_Cuda *impl;
194 
195   CeedCallBackend(CeedVectorGetCeed(vec, &ceed));
196   CeedCallBackend(CeedVectorGetData(vec, &impl));
197   CeedCallBackend(CeedVectorGetLength(vec, &length));
198 
199   CeedCallBackend(CeedSetDeviceCeedScalarArray_Cuda(ceed, array, copy_mode, length, (const CeedScalar **)&impl->d_array_owned,
200                                                     (const CeedScalar **)&impl->d_array_borrowed, (const CeedScalar **)&impl->d_array));
201   CeedCallBackend(CeedDestroy(&ceed));
202   return CEED_ERROR_SUCCESS;
203 }
204 
205 //------------------------------------------------------------------------------
206 // Set the array used by a vector,
207 //   freeing any previously allocated array if applicable
208 //------------------------------------------------------------------------------
209 static int CeedVectorSetArray_Cuda(const CeedVector vec, const CeedMemType mem_type, const CeedCopyMode copy_mode, CeedScalar *array) {
210   CeedVector_Cuda *impl;
211 
212   CeedCallBackend(CeedVectorGetData(vec, &impl));
213   CeedCallBackend(CeedVectorSetAllInvalid_Cuda(vec));
214   switch (mem_type) {
215     case CEED_MEM_HOST:
216       return CeedVectorSetArrayHost_Cuda(vec, copy_mode, array);
217     case CEED_MEM_DEVICE:
218       return CeedVectorSetArrayDevice_Cuda(vec, copy_mode, array);
219   }
220   return CEED_ERROR_UNSUPPORTED;
221 }
222 
223 //------------------------------------------------------------------------------
224 // Copy host array to value strided
225 //------------------------------------------------------------------------------
226 static int CeedHostCopyStrided_Cuda(CeedScalar *h_array, CeedSize start, CeedSize step, CeedSize length, CeedScalar *h_copy_array) {
227   for (CeedSize i = start; i < length; i += step) h_copy_array[i] = h_array[i];
228   return CEED_ERROR_SUCCESS;
229 }
230 
231 //------------------------------------------------------------------------------
232 // Copy device array to value strided (impl in .cu file)
233 //------------------------------------------------------------------------------
234 int CeedDeviceCopyStrided_Cuda(CeedScalar *d_array, CeedSize start, CeedSize step, CeedSize length, CeedScalar *d_copy_array);
235 
236 //------------------------------------------------------------------------------
237 // Copy a vector to a value strided
238 //------------------------------------------------------------------------------
239 static int CeedVectorCopyStrided_Cuda(CeedVector vec, CeedSize start, CeedSize step, CeedVector vec_copy) {
240   CeedSize         length;
241   CeedVector_Cuda *impl;
242 
243   CeedCallBackend(CeedVectorGetData(vec, &impl));
244   {
245     CeedSize length_vec, length_copy;
246 
247     CeedCallBackend(CeedVectorGetLength(vec, &length_vec));
248     CeedCallBackend(CeedVectorGetLength(vec_copy, &length_copy));
249     length = length_vec < length_copy ? length_vec : length_copy;
250   }
251   // Set value for synced device/host array
252   if (impl->d_array) {
253     CeedScalar *copy_array;
254 
255     CeedCallBackend(CeedVectorGetArray(vec_copy, CEED_MEM_DEVICE, &copy_array));
256     CeedCallBackend(CeedDeviceCopyStrided_Cuda(impl->d_array, start, step, length, copy_array));
257     CeedCallBackend(CeedVectorRestoreArray(vec_copy, &copy_array));
258   } else if (impl->h_array) {
259     CeedScalar *copy_array;
260 
261     CeedCallBackend(CeedVectorGetArray(vec_copy, CEED_MEM_HOST, &copy_array));
262     CeedCallBackend(CeedHostCopyStrided_Cuda(impl->h_array, start, step, length, copy_array));
263     CeedCallBackend(CeedVectorRestoreArray(vec_copy, &copy_array));
264   } else {
265     return CeedError(CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND, "CeedVector must have valid data set");
266   }
267   return CEED_ERROR_SUCCESS;
268 }
269 
270 //------------------------------------------------------------------------------
271 // Set host array to value
272 //------------------------------------------------------------------------------
273 static int CeedHostSetValue_Cuda(CeedScalar *h_array, CeedSize length, CeedScalar val) {
274   for (CeedSize i = 0; i < length; i++) h_array[i] = val;
275   return CEED_ERROR_SUCCESS;
276 }
277 
278 //------------------------------------------------------------------------------
279 // Set device array to value (impl in .cu file)
280 //------------------------------------------------------------------------------
281 int CeedDeviceSetValue_Cuda(CeedScalar *d_array, CeedSize length, CeedScalar val);
282 
283 //------------------------------------------------------------------------------
284 // Set a vector to a value
285 //------------------------------------------------------------------------------
286 static int CeedVectorSetValue_Cuda(CeedVector vec, CeedScalar val) {
287   CeedSize         length;
288   CeedVector_Cuda *impl;
289 
290   CeedCallBackend(CeedVectorGetData(vec, &impl));
291   CeedCallBackend(CeedVectorGetLength(vec, &length));
292   // Set value for synced device/host array
293   if (!impl->d_array && !impl->h_array) {
294     if (impl->d_array_borrowed) {
295       impl->d_array = impl->d_array_borrowed;
296     } else if (impl->h_array_borrowed) {
297       impl->h_array = impl->h_array_borrowed;
298     } else if (impl->d_array_owned) {
299       impl->d_array = impl->d_array_owned;
300     } else if (impl->h_array_owned) {
301       impl->h_array = impl->h_array_owned;
302     } else {
303       CeedCallBackend(CeedVectorSetArray(vec, CEED_MEM_DEVICE, CEED_COPY_VALUES, NULL));
304     }
305   }
306   if (impl->d_array) {
307     if (val == 0) {
308       CeedCallCuda(CeedVectorReturnCeed(vec), cudaMemset(impl->d_array, 0, length * sizeof(CeedScalar)));
309     } else {
310       CeedCallBackend(CeedDeviceSetValue_Cuda(impl->d_array, length, val));
311     }
312     impl->h_array = NULL;
313   } else if (impl->h_array) {
314     CeedCallBackend(CeedHostSetValue_Cuda(impl->h_array, length, val));
315     impl->d_array = NULL;
316   }
317   return CEED_ERROR_SUCCESS;
318 }
319 
320 //------------------------------------------------------------------------------
321 // Set host array to value strided
322 //------------------------------------------------------------------------------
323 static int CeedHostSetValueStrided_Cuda(CeedScalar *h_array, CeedSize start, CeedSize step, CeedSize length, CeedScalar val) {
324   for (CeedSize i = start; i < length; i += step) h_array[i] = val;
325   return CEED_ERROR_SUCCESS;
326 }
327 
328 //------------------------------------------------------------------------------
329 // Set device array to value strided (impl in .cu file)
330 //------------------------------------------------------------------------------
331 int CeedDeviceSetValueStrided_Cuda(CeedScalar *d_array, CeedSize start, CeedSize step, CeedSize length, CeedScalar val);
332 
333 //------------------------------------------------------------------------------
334 // Set a vector to a value strided
335 //------------------------------------------------------------------------------
336 static int CeedVectorSetValueStrided_Cuda(CeedVector vec, CeedSize start, CeedSize step, CeedScalar val) {
337   CeedSize         length;
338   CeedVector_Cuda *impl;
339 
340   CeedCallBackend(CeedVectorGetData(vec, &impl));
341   CeedCallBackend(CeedVectorGetLength(vec, &length));
342   // Set value for synced device/host array
343   if (impl->d_array) {
344     CeedCallBackend(CeedDeviceSetValueStrided_Cuda(impl->d_array, start, step, length, val));
345     impl->h_array = NULL;
346   } else if (impl->h_array) {
347     CeedCallBackend(CeedHostSetValueStrided_Cuda(impl->h_array, start, step, length, val));
348     impl->d_array = NULL;
349   } else {
350     return CeedError(CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND, "CeedVector must have valid data set");
351   }
352   return CEED_ERROR_SUCCESS;
353 }
354 
355 //------------------------------------------------------------------------------
356 // Vector Take Array
357 //------------------------------------------------------------------------------
358 static int CeedVectorTakeArray_Cuda(CeedVector vec, CeedMemType mem_type, CeedScalar **array) {
359   CeedVector_Cuda *impl;
360 
361   CeedCallBackend(CeedVectorGetData(vec, &impl));
362   // Sync array to requested mem_type
363   CeedCallBackend(CeedVectorSyncArray(vec, mem_type));
364   // Update pointer
365   switch (mem_type) {
366     case CEED_MEM_HOST:
367       (*array)               = impl->h_array_borrowed;
368       impl->h_array_borrowed = NULL;
369       impl->h_array          = NULL;
370       break;
371     case CEED_MEM_DEVICE:
372       (*array)               = impl->d_array_borrowed;
373       impl->d_array_borrowed = NULL;
374       impl->d_array          = NULL;
375       break;
376   }
377   return CEED_ERROR_SUCCESS;
378 }
379 
380 //------------------------------------------------------------------------------
381 // Core logic for array syncronization for GetArray.
382 //   If a different memory type is most up to date, this will perform a copy
383 //------------------------------------------------------------------------------
384 static int CeedVectorGetArrayCore_Cuda(const CeedVector vec, const CeedMemType mem_type, CeedScalar **array) {
385   CeedVector_Cuda *impl;
386 
387   CeedCallBackend(CeedVectorGetData(vec, &impl));
388   // Sync array to requested mem_type
389   CeedCallBackend(CeedVectorSyncArray(vec, mem_type));
390   // Update pointer
391   switch (mem_type) {
392     case CEED_MEM_HOST:
393       *array = impl->h_array;
394       break;
395     case CEED_MEM_DEVICE:
396       *array = impl->d_array;
397       break;
398   }
399   return CEED_ERROR_SUCCESS;
400 }
401 
402 //------------------------------------------------------------------------------
403 // Get read-only access to a vector via the specified mem_type
404 //------------------------------------------------------------------------------
405 static int CeedVectorGetArrayRead_Cuda(const CeedVector vec, const CeedMemType mem_type, const CeedScalar **array) {
406   return CeedVectorGetArrayCore_Cuda(vec, mem_type, (CeedScalar **)array);
407 }
408 
409 //------------------------------------------------------------------------------
410 // Get read/write access to a vector via the specified mem_type
411 //------------------------------------------------------------------------------
412 static int CeedVectorGetArray_Cuda(const CeedVector vec, const CeedMemType mem_type, CeedScalar **array) {
413   CeedVector_Cuda *impl;
414 
415   CeedCallBackend(CeedVectorGetData(vec, &impl));
416   CeedCallBackend(CeedVectorGetArrayCore_Cuda(vec, mem_type, array));
417   CeedCallBackend(CeedVectorSetAllInvalid_Cuda(vec));
418   switch (mem_type) {
419     case CEED_MEM_HOST:
420       impl->h_array = *array;
421       break;
422     case CEED_MEM_DEVICE:
423       impl->d_array = *array;
424       break;
425   }
426   return CEED_ERROR_SUCCESS;
427 }
428 
429 //------------------------------------------------------------------------------
430 // Get write access to a vector via the specified mem_type
431 //------------------------------------------------------------------------------
432 static int CeedVectorGetArrayWrite_Cuda(const CeedVector vec, const CeedMemType mem_type, CeedScalar **array) {
433   bool             has_array_of_type = true;
434   CeedVector_Cuda *impl;
435 
436   CeedCallBackend(CeedVectorGetData(vec, &impl));
437   CeedCallBackend(CeedVectorHasArrayOfType_Cuda(vec, mem_type, &has_array_of_type));
438   if (!has_array_of_type) {
439     // Allocate if array is not yet allocated
440     CeedCallBackend(CeedVectorSetArray(vec, mem_type, CEED_COPY_VALUES, NULL));
441   } else {
442     // Select dirty array
443     switch (mem_type) {
444       case CEED_MEM_HOST:
445         if (impl->h_array_borrowed) impl->h_array = impl->h_array_borrowed;
446         else impl->h_array = impl->h_array_owned;
447         break;
448       case CEED_MEM_DEVICE:
449         if (impl->d_array_borrowed) impl->d_array = impl->d_array_borrowed;
450         else impl->d_array = impl->d_array_owned;
451     }
452   }
453   return CeedVectorGetArray_Cuda(vec, mem_type, array);
454 }
455 
456 //------------------------------------------------------------------------------
457 // Get the norm of a CeedVector
458 //------------------------------------------------------------------------------
459 static int CeedVectorNorm_Cuda(CeedVector vec, CeedNormType type, CeedScalar *norm) {
460   Ceed     ceed;
461   CeedSize length;
462 #if CUDA_VERSION < 12000
463   CeedSize num_calls;
464 #endif
465   const CeedScalar *d_array;
466   CeedVector_Cuda  *impl;
467   cublasHandle_t    handle;
468 
469   CeedCallBackend(CeedVectorGetCeed(vec, &ceed));
470   CeedCallBackend(CeedVectorGetData(vec, &impl));
471   CeedCallBackend(CeedVectorGetLength(vec, &length));
472   CeedCallBackend(CeedGetCublasHandle_Cuda(ceed, &handle));
473 
474 #if CUDA_VERSION < 12000
475   // With CUDA 12, we can use the 64-bit integer interface. Prior to that,
476   // we need to check if the vector is too long to handle with int32,
477   // and if so, divide it into subsections for repeated cuBLAS calls.
478   num_calls = length / INT_MAX;
479   if (length % INT_MAX > 0) num_calls += 1;
480 #endif
481 
482   // Compute norm
483   CeedCallBackend(CeedVectorGetArrayRead(vec, CEED_MEM_DEVICE, &d_array));
484   switch (type) {
485     case CEED_NORM_1: {
486       *norm = 0.0;
487       if (CEED_SCALAR_TYPE == CEED_SCALAR_FP32) {
488 #if CUDA_VERSION >= 12000  // We have CUDA 12, and can use 64-bit integers
489         CeedCallCublas(ceed, cublasSasum_64(handle, (int64_t)length, (float *)d_array, 1, (float *)norm));
490 #else
491         float  sub_norm = 0.0;
492         float *d_array_start;
493 
494         for (CeedInt i = 0; i < num_calls; i++) {
495           d_array_start             = (float *)d_array + (CeedSize)(i)*INT_MAX;
496           CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX;
497           CeedInt  sub_length       = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX;
498 
499           CeedCallCublas(ceed, cublasSasum(handle, (CeedInt)sub_length, (float *)d_array_start, 1, &sub_norm));
500           *norm += sub_norm;
501         }
502 #endif
503       } else {
504 #if CUDA_VERSION >= 12000
505         CeedCallCublas(ceed, cublasDasum_64(handle, (int64_t)length, (double *)d_array, 1, (double *)norm));
506 #else
507         double  sub_norm = 0.0;
508         double *d_array_start;
509 
510         for (CeedInt i = 0; i < num_calls; i++) {
511           d_array_start             = (double *)d_array + (CeedSize)(i)*INT_MAX;
512           CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX;
513           CeedInt  sub_length       = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX;
514 
515           CeedCallCublas(ceed, cublasDasum(handle, (CeedInt)sub_length, (double *)d_array_start, 1, &sub_norm));
516           *norm += sub_norm;
517         }
518 #endif
519       }
520       break;
521     }
522     case CEED_NORM_2: {
523       if (CEED_SCALAR_TYPE == CEED_SCALAR_FP32) {
524 #if CUDA_VERSION >= 12000
525         CeedCallCublas(ceed, cublasSnrm2_64(handle, (int64_t)length, (float *)d_array, 1, (float *)norm));
526 #else
527         float  sub_norm = 0.0, norm_sum = 0.0;
528         float *d_array_start;
529 
530         for (CeedInt i = 0; i < num_calls; i++) {
531           d_array_start             = (float *)d_array + (CeedSize)(i)*INT_MAX;
532           CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX;
533           CeedInt  sub_length       = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX;
534 
535           CeedCallCublas(ceed, cublasSnrm2(handle, (CeedInt)sub_length, (float *)d_array_start, 1, &sub_norm));
536           norm_sum += sub_norm * sub_norm;
537         }
538         *norm = sqrt(norm_sum);
539 #endif
540       } else {
541 #if CUDA_VERSION >= 12000
542         CeedCallCublas(ceed, cublasDnrm2_64(handle, (int64_t)length, (double *)d_array, 1, (double *)norm));
543 #else
544         double  sub_norm = 0.0, norm_sum = 0.0;
545         double *d_array_start;
546 
547         for (CeedInt i = 0; i < num_calls; i++) {
548           d_array_start             = (double *)d_array + (CeedSize)(i)*INT_MAX;
549           CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX;
550           CeedInt  sub_length       = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX;
551 
552           CeedCallCublas(ceed, cublasDnrm2(handle, (CeedInt)sub_length, (double *)d_array_start, 1, &sub_norm));
553           norm_sum += sub_norm * sub_norm;
554         }
555         *norm = sqrt(norm_sum);
556 #endif
557       }
558       break;
559     }
560     case CEED_NORM_MAX: {
561       if (CEED_SCALAR_TYPE == CEED_SCALAR_FP32) {
562 #if CUDA_VERSION >= 12000
563         int64_t    index;
564         CeedScalar norm_no_abs;
565 
566         CeedCallCublas(ceed, cublasIsamax_64(handle, (int64_t)length, (float *)d_array, 1, &index));
567         CeedCallCuda(ceed, cudaMemcpy(&norm_no_abs, impl->d_array + index - 1, sizeof(CeedScalar), cudaMemcpyDeviceToHost));
568         *norm = fabs(norm_no_abs);
569 #else
570         CeedInt index;
571         float   sub_max = 0.0, current_max = 0.0;
572         float  *d_array_start;
573 
574         for (CeedInt i = 0; i < num_calls; i++) {
575           d_array_start             = (float *)d_array + (CeedSize)(i)*INT_MAX;
576           CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX;
577           CeedInt  sub_length       = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX;
578 
579           CeedCallCublas(ceed, cublasIsamax(handle, (CeedInt)sub_length, (float *)d_array_start, 1, &index));
580           CeedCallCuda(ceed, cudaMemcpy(&sub_max, d_array_start + index - 1, sizeof(CeedScalar), cudaMemcpyDeviceToHost));
581           if (fabs(sub_max) > current_max) current_max = fabs(sub_max);
582         }
583         *norm = current_max;
584 #endif
585       } else {
586 #if CUDA_VERSION >= 12000
587         int64_t    index;
588         CeedScalar norm_no_abs;
589 
590         CeedCallCublas(ceed, cublasIdamax_64(handle, (int64_t)length, (double *)d_array, 1, &index));
591         CeedCallCuda(ceed, cudaMemcpy(&norm_no_abs, impl->d_array + index - 1, sizeof(CeedScalar), cudaMemcpyDeviceToHost));
592         *norm = fabs(norm_no_abs);
593 #else
594         CeedInt index;
595         double  sub_max = 0.0, current_max = 0.0;
596         double *d_array_start;
597 
598         for (CeedInt i = 0; i < num_calls; i++) {
599           d_array_start             = (double *)d_array + (CeedSize)(i)*INT_MAX;
600           CeedSize remaining_length = length - (CeedSize)(i)*INT_MAX;
601           CeedInt  sub_length       = (i == num_calls - 1) ? (CeedInt)(remaining_length) : INT_MAX;
602 
603           CeedCallCublas(ceed, cublasIdamax(handle, (CeedInt)sub_length, (double *)d_array_start, 1, &index));
604           CeedCallCuda(ceed, cudaMemcpy(&sub_max, d_array_start + index - 1, sizeof(CeedScalar), cudaMemcpyDeviceToHost));
605           if (fabs(sub_max) > current_max) current_max = fabs(sub_max);
606         }
607         *norm = current_max;
608 #endif
609       }
610       break;
611     }
612   }
613   CeedCallBackend(CeedVectorRestoreArrayRead(vec, &d_array));
614   CeedCallBackend(CeedDestroy(&ceed));
615   return CEED_ERROR_SUCCESS;
616 }
617 
618 //------------------------------------------------------------------------------
619 // Take reciprocal of a vector on host
620 //------------------------------------------------------------------------------
621 static int CeedHostReciprocal_Cuda(CeedScalar *h_array, CeedSize length) {
622   for (CeedSize i = 0; i < length; i++) {
623     if (fabs(h_array[i]) > CEED_EPSILON) h_array[i] = 1. / h_array[i];
624   }
625   return CEED_ERROR_SUCCESS;
626 }
627 
628 //------------------------------------------------------------------------------
629 // Take reciprocal of a vector on device (impl in .cu file)
630 //------------------------------------------------------------------------------
631 int CeedDeviceReciprocal_Cuda(CeedScalar *d_array, CeedSize length);
632 
633 //------------------------------------------------------------------------------
634 // Take reciprocal of a vector
635 //------------------------------------------------------------------------------
636 static int CeedVectorReciprocal_Cuda(CeedVector vec) {
637   CeedSize         length;
638   CeedVector_Cuda *impl;
639 
640   CeedCallBackend(CeedVectorGetData(vec, &impl));
641   CeedCallBackend(CeedVectorGetLength(vec, &length));
642   // Set value for synced device/host array
643   if (impl->d_array) CeedCallBackend(CeedDeviceReciprocal_Cuda(impl->d_array, length));
644   if (impl->h_array) CeedCallBackend(CeedHostReciprocal_Cuda(impl->h_array, length));
645   return CEED_ERROR_SUCCESS;
646 }
647 
648 //------------------------------------------------------------------------------
649 // Compute x = alpha x on the host
650 //------------------------------------------------------------------------------
651 static int CeedHostScale_Cuda(CeedScalar *x_array, CeedScalar alpha, CeedSize length) {
652   for (CeedSize i = 0; i < length; i++) x_array[i] *= alpha;
653   return CEED_ERROR_SUCCESS;
654 }
655 
656 //------------------------------------------------------------------------------
657 // Compute x = alpha x on device (impl in .cu file)
658 //------------------------------------------------------------------------------
659 int CeedDeviceScale_Cuda(CeedScalar *x_array, CeedScalar alpha, CeedSize length);
660 
661 //------------------------------------------------------------------------------
662 // Compute x = alpha x
663 //------------------------------------------------------------------------------
664 static int CeedVectorScale_Cuda(CeedVector x, CeedScalar alpha) {
665   CeedSize         length;
666   CeedVector_Cuda *x_impl;
667 
668   CeedCallBackend(CeedVectorGetData(x, &x_impl));
669   CeedCallBackend(CeedVectorGetLength(x, &length));
670   // Set value for synced device/host array
671   if (x_impl->d_array) CeedCallBackend(CeedDeviceScale_Cuda(x_impl->d_array, alpha, length));
672   if (x_impl->h_array) CeedCallBackend(CeedHostScale_Cuda(x_impl->h_array, alpha, length));
673   return CEED_ERROR_SUCCESS;
674 }
675 
676 //------------------------------------------------------------------------------
677 // Compute y = alpha x + y on the host
678 //------------------------------------------------------------------------------
679 static int CeedHostAXPY_Cuda(CeedScalar *y_array, CeedScalar alpha, CeedScalar *x_array, CeedSize length) {
680   for (CeedSize i = 0; i < length; i++) y_array[i] += alpha * x_array[i];
681   return CEED_ERROR_SUCCESS;
682 }
683 
684 //------------------------------------------------------------------------------
685 // Compute y = alpha x + y on device (impl in .cu file)
686 //------------------------------------------------------------------------------
687 int CeedDeviceAXPY_Cuda(CeedScalar *y_array, CeedScalar alpha, CeedScalar *x_array, CeedSize length);
688 
689 //------------------------------------------------------------------------------
690 // Compute y = alpha x + y
691 //------------------------------------------------------------------------------
692 static int CeedVectorAXPY_Cuda(CeedVector y, CeedScalar alpha, CeedVector x) {
693   CeedSize         length;
694   CeedVector_Cuda *y_impl, *x_impl;
695 
696   CeedCallBackend(CeedVectorGetData(y, &y_impl));
697   CeedCallBackend(CeedVectorGetData(x, &x_impl));
698   CeedCallBackend(CeedVectorGetLength(y, &length));
699   // Set value for synced device/host array
700   if (y_impl->d_array) {
701     CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_DEVICE));
702     CeedCallBackend(CeedDeviceAXPY_Cuda(y_impl->d_array, alpha, x_impl->d_array, length));
703   }
704   if (y_impl->h_array) {
705     CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_HOST));
706     CeedCallBackend(CeedHostAXPY_Cuda(y_impl->h_array, alpha, x_impl->h_array, length));
707   }
708   return CEED_ERROR_SUCCESS;
709 }
710 
711 //------------------------------------------------------------------------------
712 // Compute y = alpha x + beta y on the host
713 //------------------------------------------------------------------------------
714 static int CeedHostAXPBY_Cuda(CeedScalar *y_array, CeedScalar alpha, CeedScalar beta, CeedScalar *x_array, CeedSize length) {
715   for (CeedSize i = 0; i < length; i++) y_array[i] = alpha * x_array[i] + beta * y_array[i];
716   return CEED_ERROR_SUCCESS;
717 }
718 
719 //------------------------------------------------------------------------------
720 // Compute y = alpha x + beta y on device (impl in .cu file)
721 //------------------------------------------------------------------------------
722 int CeedDeviceAXPBY_Cuda(CeedScalar *y_array, CeedScalar alpha, CeedScalar beta, CeedScalar *x_array, CeedSize length);
723 
724 //------------------------------------------------------------------------------
725 // Compute y = alpha x + beta y
726 //------------------------------------------------------------------------------
727 static int CeedVectorAXPBY_Cuda(CeedVector y, CeedScalar alpha, CeedScalar beta, CeedVector x) {
728   CeedSize         length;
729   CeedVector_Cuda *y_impl, *x_impl;
730 
731   CeedCallBackend(CeedVectorGetData(y, &y_impl));
732   CeedCallBackend(CeedVectorGetData(x, &x_impl));
733   CeedCallBackend(CeedVectorGetLength(y, &length));
734   // Set value for synced device/host array
735   if (y_impl->d_array) {
736     CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_DEVICE));
737     CeedCallBackend(CeedDeviceAXPBY_Cuda(y_impl->d_array, alpha, beta, x_impl->d_array, length));
738   }
739   if (y_impl->h_array) {
740     CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_HOST));
741     CeedCallBackend(CeedHostAXPBY_Cuda(y_impl->h_array, alpha, beta, x_impl->h_array, length));
742   }
743   return CEED_ERROR_SUCCESS;
744 }
745 
746 //------------------------------------------------------------------------------
747 // Compute the pointwise multiplication w = x .* y on the host
748 //------------------------------------------------------------------------------
749 static int CeedHostPointwiseMult_Cuda(CeedScalar *w_array, CeedScalar *x_array, CeedScalar *y_array, CeedSize length) {
750   for (CeedSize i = 0; i < length; i++) w_array[i] = x_array[i] * y_array[i];
751   return CEED_ERROR_SUCCESS;
752 }
753 
754 //------------------------------------------------------------------------------
755 // Compute the pointwise multiplication w = x .* y on device (impl in .cu file)
756 //------------------------------------------------------------------------------
757 int CeedDevicePointwiseMult_Cuda(CeedScalar *w_array, CeedScalar *x_array, CeedScalar *y_array, CeedSize length);
758 
759 //------------------------------------------------------------------------------
760 // Compute the pointwise multiplication w = x .* y
761 //------------------------------------------------------------------------------
762 static int CeedVectorPointwiseMult_Cuda(CeedVector w, CeedVector x, CeedVector y) {
763   CeedSize         length;
764   CeedVector_Cuda *w_impl, *x_impl, *y_impl;
765 
766   CeedCallBackend(CeedVectorGetData(w, &w_impl));
767   CeedCallBackend(CeedVectorGetData(x, &x_impl));
768   CeedCallBackend(CeedVectorGetData(y, &y_impl));
769   CeedCallBackend(CeedVectorGetLength(w, &length));
770   // Set value for synced device/host array
771   if (!w_impl->d_array && !w_impl->h_array) {
772     CeedCallBackend(CeedVectorSetValue(w, 0.0));
773   }
774   if (w_impl->d_array) {
775     CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_DEVICE));
776     CeedCallBackend(CeedVectorSyncArray(y, CEED_MEM_DEVICE));
777     CeedCallBackend(CeedDevicePointwiseMult_Cuda(w_impl->d_array, x_impl->d_array, y_impl->d_array, length));
778   }
779   if (w_impl->h_array) {
780     CeedCallBackend(CeedVectorSyncArray(x, CEED_MEM_HOST));
781     CeedCallBackend(CeedVectorSyncArray(y, CEED_MEM_HOST));
782     CeedCallBackend(CeedHostPointwiseMult_Cuda(w_impl->h_array, x_impl->h_array, y_impl->h_array, length));
783   }
784   return CEED_ERROR_SUCCESS;
785 }
786 
787 //------------------------------------------------------------------------------
788 // Destroy the vector
789 //------------------------------------------------------------------------------
790 static int CeedVectorDestroy_Cuda(const CeedVector vec) {
791   CeedVector_Cuda *impl;
792 
793   CeedCallBackend(CeedVectorGetData(vec, &impl));
794   CeedCallCuda(CeedVectorReturnCeed(vec), cudaFree(impl->d_array_owned));
795   CeedCallBackend(CeedFree(&impl->h_array_owned));
796   CeedCallBackend(CeedFree(&impl));
797   return CEED_ERROR_SUCCESS;
798 }
799 
800 //------------------------------------------------------------------------------
801 // Create a vector of the specified length (does not allocate memory)
802 //------------------------------------------------------------------------------
803 int CeedVectorCreate_Cuda(CeedSize n, CeedVector vec) {
804   CeedVector_Cuda *impl;
805   Ceed             ceed;
806 
807   CeedCallBackend(CeedVectorGetCeed(vec, &ceed));
808   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "HasValidArray", CeedVectorHasValidArray_Cuda));
809   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "HasBorrowedArrayOfType", CeedVectorHasBorrowedArrayOfType_Cuda));
810   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "SetArray", CeedVectorSetArray_Cuda));
811   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "TakeArray", CeedVectorTakeArray_Cuda));
812   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "CopyStrided", CeedVectorCopyStrided_Cuda));
813   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "SetValue", CeedVectorSetValue_Cuda));
814   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "SetValueStrided", CeedVectorSetValueStrided_Cuda));
815   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "SyncArray", CeedVectorSyncArray_Cuda));
816   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "GetArray", CeedVectorGetArray_Cuda));
817   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "GetArrayRead", CeedVectorGetArrayRead_Cuda));
818   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "GetArrayWrite", CeedVectorGetArrayWrite_Cuda));
819   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "Norm", CeedVectorNorm_Cuda));
820   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "Reciprocal", CeedVectorReciprocal_Cuda));
821   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "Scale", CeedVectorScale_Cuda));
822   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "AXPY", CeedVectorAXPY_Cuda));
823   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "AXPBY", CeedVectorAXPBY_Cuda));
824   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "PointwiseMult", CeedVectorPointwiseMult_Cuda));
825   CeedCallBackend(CeedSetBackendFunction(ceed, "Vector", vec, "Destroy", CeedVectorDestroy_Cuda));
826   CeedCallBackend(CeedDestroy(&ceed));
827   CeedCallBackend(CeedCalloc(1, &impl));
828   CeedCallBackend(CeedVectorSetData(vec, impl));
829   return CEED_ERROR_SUCCESS;
830 }
831 
832 //------------------------------------------------------------------------------
833