xref: /libCEED/interface/ceed-vector.c (revision d9267b7650b1f58e68a23a57668f7a3f0af9c36a)
1 // Copyright (c) 2017-2022, 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-impl.h>
9 #include <ceed.h>
10 #include <ceed/backend.h>
11 #include <assert.h>
12 #include <math.h>
13 #include <stdbool.h>
14 #include <stdint.h>
15 #include <stdio.h>
16 
17 /// @file
18 /// Implementation of public CeedVector interfaces
19 
20 /// @cond DOXYGEN_SKIP
21 static struct CeedVector_private ceed_vector_active;
22 static struct CeedVector_private ceed_vector_none;
23 /// @endcond
24 
25 /// @addtogroup CeedVectorUser
26 /// @{
27 
28 /// Indicate that vector will be provided as an explicit argument to CeedOperatorApply().
29 const CeedVector CEED_VECTOR_ACTIVE = &ceed_vector_active;
30 
31 /// Indicate that no vector is applicable (i.e., for @ref CEED_EVAL_WEIGHT).
32 const CeedVector CEED_VECTOR_NONE = &ceed_vector_none;
33 
34 /// @}
35 
36 /// ----------------------------------------------------------------------------
37 /// CeedVector Backend API
38 /// ----------------------------------------------------------------------------
39 /// @addtogroup CeedVectorBackend
40 /// @{
41 
42 /**
43   @brief Check for valid data in a CeedVector
44 
45   @param[in]  vec             CeedVector to check validity
46   @param[out] has_valid_array Variable to store validity
47 
48   @return An error code: 0 - success, otherwise - failure
49 
50   @ref Backend
51 **/
52 int CeedVectorHasValidArray(CeedVector vec, bool *has_valid_array) {
53   CeedCheck(vec->HasValidArray, vec->ceed, CEED_ERROR_UNSUPPORTED, "Backend does not support HasValidArray");
54   CeedCall(vec->HasValidArray(vec, has_valid_array));
55   return CEED_ERROR_SUCCESS;
56 }
57 
58 /**
59   @brief Check for borrowed array of a specific CeedMemType in a CeedVector
60 
61   @param[in]  vec                        CeedVector to check
62   @param[in]  mem_type                   Memory type to check
63   @param[out] has_borrowed_array_of_type Variable to store result
64 
65   @return An error code: 0 - success, otherwise - failure
66 
67   @ref Backend
68 **/
69 int CeedVectorHasBorrowedArrayOfType(CeedVector vec, CeedMemType mem_type, bool *has_borrowed_array_of_type) {
70   CeedCheck(vec->HasBorrowedArrayOfType, vec->ceed, CEED_ERROR_UNSUPPORTED, "Backend does not support HasBorrowedArrayOfType");
71   CeedCall(vec->HasBorrowedArrayOfType(vec, mem_type, has_borrowed_array_of_type));
72   return CEED_ERROR_SUCCESS;
73 }
74 
75 /**
76   @brief Get the state of a CeedVector
77 
78   @param[in]  vec    CeedVector to retrieve state
79   @param[out] state  Variable to store state
80 
81   @return An error code: 0 - success, otherwise - failure
82 
83   @ref Backend
84 **/
85 int CeedVectorGetState(CeedVector vec, uint64_t *state) {
86   *state = vec->state;
87   return CEED_ERROR_SUCCESS;
88 }
89 
90 /**
91   @brief Get the backend data of a CeedVector
92 
93   @param[in]  vec  CeedVector to retrieve state
94   @param[out] data Variable to store data
95 
96   @return An error code: 0 - success, otherwise - failure
97 
98   @ref Backend
99 **/
100 int CeedVectorGetData(CeedVector vec, void *data) {
101   *(void **)data = vec->data;
102   return CEED_ERROR_SUCCESS;
103 }
104 
105 /**
106   @brief Set the backend data of a CeedVector
107 
108   @param[in,out] vec  CeedVector to retrieve state
109   @param[in]     data Data to set
110 
111   @return An error code: 0 - success, otherwise - failure
112 
113   @ref Backend
114 **/
115 int CeedVectorSetData(CeedVector vec, void *data) {
116   vec->data = data;
117   return CEED_ERROR_SUCCESS;
118 }
119 
120 /**
121   @brief Increment the reference counter for a CeedVector
122 
123   @param[in,out] vec CeedVector to increment the reference counter
124 
125   @return An error code: 0 - success, otherwise - failure
126 
127   @ref Backend
128 **/
129 int CeedVectorReference(CeedVector vec) {
130   vec->ref_count++;
131   return CEED_ERROR_SUCCESS;
132 }
133 
134 /// @}
135 
136 /// ----------------------------------------------------------------------------
137 /// CeedVector Public API
138 /// ----------------------------------------------------------------------------
139 /// @addtogroup CeedVectorUser
140 /// @{
141 
142 /**
143   @brief Create a CeedVector of the specified length (does not allocate memory)
144 
145   @param[in]  ceed   Ceed object where the CeedVector will be created
146   @param[in]  length Length of vector
147   @param[out] vec    Address of the variable where the newly created CeedVector will be stored
148 
149   @return An error code: 0 - success, otherwise - failure
150 
151   @ref User
152 **/
153 int CeedVectorCreate(Ceed ceed, CeedSize length, CeedVector *vec) {
154   if (!ceed->VectorCreate) {
155     Ceed delegate;
156 
157     CeedCall(CeedGetObjectDelegate(ceed, &delegate, "Vector"));
158     CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not support VectorCreate");
159     CeedCall(CeedVectorCreate(delegate, length, vec));
160     return CEED_ERROR_SUCCESS;
161   }
162 
163   CeedCall(CeedCalloc(1, vec));
164   CeedCall(CeedReferenceCopy(ceed, &(*vec)->ceed));
165   (*vec)->ref_count = 1;
166   (*vec)->length    = length;
167   (*vec)->state     = 0;
168   CeedCall(ceed->VectorCreate(length, *vec));
169   return CEED_ERROR_SUCCESS;
170 }
171 
172 /**
173   @brief Copy the pointer to a CeedVector.
174 
175   Both pointers should be destroyed with `CeedVectorDestroy()`.
176 
177   Note: If the value of `vec_copy` passed to this function is non-NULL, then it is assumed that `vec_copy` is a pointer to a CeedVector.
178         This CeedVector will be destroyed if `vec_copy` is the only reference to this CeedVector.
179 
180   @param[in]     vec      CeedVector to copy reference to
181   @param[in,out] vec_copy Variable to store copied reference
182 
183   @return An error code: 0 - success, otherwise - failure
184 
185   @ref User
186 **/
187 int CeedVectorReferenceCopy(CeedVector vec, CeedVector *vec_copy) {
188   if (vec != CEED_VECTOR_ACTIVE && vec != CEED_VECTOR_NONE) CeedCall(CeedVectorReference(vec));
189   CeedCall(CeedVectorDestroy(vec_copy));
190   *vec_copy = vec;
191   return CEED_ERROR_SUCCESS;
192 }
193 
194 /**
195   @brief Copy a CeedVector into a different CeedVector.
196 
197   Both pointers should be destroyed with `CeedVectorDestroy()`.
198 
199   Note: If `*vec_copy` is non-NULL, then it is assumed that `*vec_copy` is a pointer to a CeedVector.
200         This CeedVector will be destroyed if `*vec_copy` is the only reference to this CeedVector.
201 
202   @param[in]     vec      CeedVector to copy
203   @param[in,out] vec_copy Variable to store copied CeedVector to
204 
205   @return An error code: 0 - success, otherwise - failure
206 
207   @ref User
208 **/
209 int CeedVectorCopy(CeedVector vec, CeedVector vec_copy) {
210   Ceed        ceed;
211   CeedMemType mem_type, mem_type_copy;
212   CeedScalar *array;
213 
214   // Get the preferred memory type
215   CeedVectorGetCeed(vec, &ceed);
216   CeedGetPreferredMemType(ceed, &mem_type);
217 
218   // Get the preferred memory type
219   CeedVectorGetCeed(vec_copy, &ceed);
220   CeedGetPreferredMemType(ceed, &mem_type_copy);
221 
222   // Check that both have same memory type
223   if (mem_type != mem_type_copy) mem_type = CEED_MEM_HOST;
224 
225   // Copy the values from vec to vec_copy
226   CeedCall(CeedVectorGetArray(vec, mem_type, &array));
227   CeedCall(CeedVectorSetArray(vec_copy, mem_type, CEED_COPY_VALUES, array));
228 
229   CeedCall(CeedVectorRestoreArray(vec, &array));
230   return CEED_ERROR_SUCCESS;
231 }
232 
233 /**
234   @brief Set the array used by a CeedVector, freeing any previously allocated array if applicable.
235 
236   The backend may copy values to a different memtype, such as during @ref CeedOperatorApply().
237   See also @ref CeedVectorSyncArray() and @ref CeedVectorTakeArray().
238 
239   @param[in,out] vec       CeedVector
240   @param[in]     mem_type  Memory type of the array being passed
241   @param[in]     copy_mode Copy mode for the array
242   @param[in]     array     Array to be used, or NULL with @ref CEED_COPY_VALUES to have the library allocate
243 
244   @return An error code: 0 - success, otherwise - failure
245 
246   @ref User
247 **/
248 int CeedVectorSetArray(CeedVector vec, CeedMemType mem_type, CeedCopyMode copy_mode, CeedScalar *array) {
249   CeedCheck(vec->SetArray, vec->ceed, CEED_ERROR_UNSUPPORTED, "Backend does not support VectorSetArray");
250   CeedCheck(vec->state % 2 == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, the access lock is already in use");
251   CeedCheck(vec->num_readers == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, a process has read access");
252 
253   CeedCall(vec->SetArray(vec, mem_type, copy_mode, array));
254   vec->state += 2;
255   return CEED_ERROR_SUCCESS;
256 }
257 
258 /**
259   @brief Set the CeedVector to a constant value
260 
261   @param[in,out] vec   CeedVector
262   @param[in]     value Value to be used
263 
264   @return An error code: 0 - success, otherwise - failure
265 
266   @ref User
267 **/
268 int CeedVectorSetValue(CeedVector vec, CeedScalar value) {
269   CeedCheck(vec->state % 2 == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, the access lock is already in use");
270   CeedCheck(vec->num_readers == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, a process has read access");
271 
272   if (vec->SetValue) {
273     CeedCall(vec->SetValue(vec, value));
274   } else {
275     CeedScalar *array;
276     CeedCall(CeedVectorGetArrayWrite(vec, CEED_MEM_HOST, &array));
277     for (CeedSize i = 0; i < vec->length; i++) array[i] = value;
278     CeedCall(CeedVectorRestoreArray(vec, &array));
279   }
280   vec->state += 2;
281   return CEED_ERROR_SUCCESS;
282 }
283 
284 /**
285   @brief Sync the CeedVector to a specified memtype.
286 
287   This function is used to force synchronization of arrays set with @ref CeedVectorSetArray().
288   If the requested memtype is already synchronized, this function results in a no-op.
289 
290   @param[in,out] vec      CeedVector
291   @param[in]     mem_type Memtype to be synced
292 
293   @return An error code: 0 - success, otherwise - failure
294 
295   @ref User
296 **/
297 int CeedVectorSyncArray(CeedVector vec, CeedMemType mem_type) {
298   CeedCheck(vec->state % 2 == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot sync CeedVector, the access lock is already in use");
299 
300   if (vec->SyncArray) {
301     CeedCall(vec->SyncArray(vec, mem_type));
302   } else {
303     const CeedScalar *array;
304     CeedCall(CeedVectorGetArrayRead(vec, mem_type, &array));
305     CeedCall(CeedVectorRestoreArrayRead(vec, &array));
306   }
307   return CEED_ERROR_SUCCESS;
308 }
309 
310 /**
311   @brief Take ownership of the CeedVector array set by @ref CeedVectorSetArray() with @ref CEED_USE_POINTER and remove the array from the CeedVector.
312 
313   The caller is responsible for managing and freeing the array.
314   This function will error if @ref CeedVectorSetArray() was not previously called with @ref CEED_USE_POINTER for the corresponding mem_type.
315 
316   @param[in,out] vec      CeedVector
317   @param[in]     mem_type Memory type on which to take the array.
318                             If the backend uses a different memory type, this will perform a copy.
319   @param[out]    array    Array on memory type mem_type, or NULL if array pointer is not required
320 
321   @return An error code: 0 - success, otherwise - failure
322 
323   @ref User
324 **/
325 int CeedVectorTakeArray(CeedVector vec, CeedMemType mem_type, CeedScalar **array) {
326   CeedCheck(vec->state % 2 == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot take CeedVector array, the access lock is already in use");
327   CeedCheck(vec->num_readers == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot take CeedVector array, a process has read access");
328 
329   CeedScalar *temp_array = NULL;
330   if (vec->length > 0) {
331     bool has_borrowed_array_of_type = true;
332     CeedCall(CeedVectorHasBorrowedArrayOfType(vec, mem_type, &has_borrowed_array_of_type));
333     CeedCheck(has_borrowed_array_of_type, vec->ceed, CEED_ERROR_BACKEND,
334               "CeedVector has no borrowed %s array, must set array with CeedVectorSetArray", CeedMemTypes[mem_type]);
335 
336     bool has_valid_array = true;
337     CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
338     CeedCheck(has_valid_array, vec->ceed, CEED_ERROR_BACKEND,
339               "CeedVector has no valid data to take, must set data with CeedVectorSetValue or CeedVectorSetArray");
340 
341     CeedCall(vec->TakeArray(vec, mem_type, &temp_array));
342   }
343   if (array) (*array) = temp_array;
344   return CEED_ERROR_SUCCESS;
345 }
346 
347 /**
348   @brief Get read/write access to a CeedVector via the specified memory type.
349 
350   Restore access with @ref CeedVectorRestoreArray().
351 
352   @param[in,out] vec      CeedVector to access
353   @param[in]     mem_type Memory type on which to access the array.
354                             If the backend uses a different memory type, this will perform a copy.
355   @param[out]    array    Array on memory type mem_type
356 
357   @note The CeedVectorGetArray* and CeedVectorRestoreArray* functions provide access to array pointers in the desired memory space.
358         Pairing get/restore allows the Vector to track access, thus knowing if norms or other operations may need to be recomputed.
359 
360   @return An error code: 0 - success, otherwise - failure
361 
362   @ref User
363 **/
364 int CeedVectorGetArray(CeedVector vec, CeedMemType mem_type, CeedScalar **array) {
365   CeedCheck(vec->GetArray, vec->ceed, CEED_ERROR_UNSUPPORTED, "Backend does not support GetArray");
366   CeedCheck(vec->state % 2 == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, the access lock is already in use");
367   CeedCheck(vec->num_readers == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, a process has read access");
368 
369   bool has_valid_array = true;
370   CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
371   CeedCheck(has_valid_array, vec->ceed, CEED_ERROR_BACKEND,
372             "CeedVector has no valid data to read, must set data with CeedVectorSetValue or CeedVectorSetArray");
373 
374   CeedCall(vec->GetArray(vec, mem_type, array));
375   vec->state++;
376   return CEED_ERROR_SUCCESS;
377 }
378 
379 /**
380   @brief Get read-only access to a CeedVector via the specified memory type.
381 
382   Restore access with @ref CeedVectorRestoreArrayRead().
383 
384   @param[in]  vec      CeedVector to access
385   @param[in]  mem_type Memory type on which to access the array. If the backend uses a different memory type, this will perform a copy (possibly
386 cached).
387   @param[out] array    Array on memory type mem_type
388 
389   @return An error code: 0 - success, otherwise - failure
390 
391   @ref User
392 **/
393 int CeedVectorGetArrayRead(CeedVector vec, CeedMemType mem_type, const CeedScalar **array) {
394   CeedCheck(vec->GetArrayRead, vec->ceed, CEED_ERROR_UNSUPPORTED, "Backend does not support GetArrayRead");
395   CeedCheck(vec->state % 2 == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot grant CeedVector read-only array access, the access lock is already in use");
396 
397   if (vec->length > 0) {
398     bool has_valid_array = true;
399     CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
400     CeedCheck(has_valid_array, vec->ceed, CEED_ERROR_BACKEND,
401               "CeedVector has no valid data to read, must set data with CeedVectorSetValue or CeedVectorSetArray");
402 
403     CeedCall(vec->GetArrayRead(vec, mem_type, array));
404   } else {
405     *array = NULL;
406   }
407   vec->num_readers++;
408   return CEED_ERROR_SUCCESS;
409 }
410 
411 /**
412   @brief Get write access to a CeedVector via the specified memory type.
413 
414   Restore access with @ref CeedVectorRestoreArray().
415   All old values should be assumed to be invalid.
416 
417   @param[in,out] vec      CeedVector to access
418   @param[in]     mem_type Memory type on which to access the array.
419   @param[out]    array    Array on memory type mem_type
420 
421   @return An error code: 0 - success, otherwise - failure
422 
423   @ref User
424 **/
425 int CeedVectorGetArrayWrite(CeedVector vec, CeedMemType mem_type, CeedScalar **array) {
426   CeedCheck(vec->GetArrayWrite, vec->ceed, CEED_ERROR_UNSUPPORTED, "Backend does not support GetArrayWrite");
427   CeedCheck(vec->state % 2 == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, the access lock is already in use");
428   CeedCheck(vec->num_readers == 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, a process has read access");
429 
430   CeedCall(vec->GetArrayWrite(vec, mem_type, array));
431   vec->state++;
432   return CEED_ERROR_SUCCESS;
433 }
434 
435 /**
436   @brief Restore an array obtained using @ref CeedVectorGetArray() or @ref CeedVectorGetArrayWrite()
437 
438   @param[in,out] vec   CeedVector to restore
439   @param[in,out] array Array of vector data
440 
441   @return An error code: 0 - success, otherwise - failure
442 
443   @ref User
444 **/
445 int CeedVectorRestoreArray(CeedVector vec, CeedScalar **array) {
446   CeedCheck(vec->state % 2 == 1, vec->ceed, CEED_ERROR_ACCESS, "Cannot restore CeedVector array access, access was not granted");
447   if (vec->RestoreArray) CeedCall(vec->RestoreArray(vec));
448   *array = NULL;
449   vec->state++;
450   return CEED_ERROR_SUCCESS;
451 }
452 
453 /**
454   @brief Restore an array obtained using @ref CeedVectorGetArrayRead()
455 
456   @param[in]     vec   CeedVector to restore
457   @param[in,out] array Array of vector data
458 
459   @return An error code: 0 - success, otherwise - failure
460 
461   @ref User
462 **/
463 int CeedVectorRestoreArrayRead(CeedVector vec, const CeedScalar **array) {
464   CeedCheck(vec->num_readers > 0, vec->ceed, CEED_ERROR_ACCESS, "Cannot restore CeedVector array read access, access was not granted");
465 
466   vec->num_readers--;
467   if (vec->num_readers == 0 && vec->RestoreArrayRead) CeedCall(vec->RestoreArrayRead(vec));
468   *array = NULL;
469 
470   return CEED_ERROR_SUCCESS;
471 }
472 
473 /**
474   @brief Get the norm of a CeedVector.
475 
476   Note: This operation is local to the CeedVector.
477         This function will likely not provide the desired results for the norm of the libCEED portion of a parallel vector or a CeedVector with
478 duplicated or hanging nodes.
479 
480   @param[in]  vec       CeedVector to retrieve maximum value
481   @param[in]  norm_type Norm type @ref CEED_NORM_1, @ref CEED_NORM_2, or @ref CEED_NORM_MAX
482   @param[out] norm      Variable to store norm value
483 
484   @return An error code: 0 - success, otherwise - failure
485 
486   @ref User
487 **/
488 int CeedVectorNorm(CeedVector vec, CeedNormType norm_type, CeedScalar *norm) {
489   bool has_valid_array = true;
490   CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
491   CeedCheck(has_valid_array, vec->ceed, CEED_ERROR_BACKEND,
492             "CeedVector has no valid data to compute norm, must set data with CeedVectorSetValue or CeedVectorSetArray");
493 
494   // Backend impl for GPU, if added
495   if (vec->Norm) {
496     CeedCall(vec->Norm(vec, norm_type, norm));
497     return CEED_ERROR_SUCCESS;
498   }
499 
500   const CeedScalar *array;
501   CeedCall(CeedVectorGetArrayRead(vec, CEED_MEM_HOST, &array));
502 
503   *norm = 0.;
504   switch (norm_type) {
505     case CEED_NORM_1:
506       for (CeedSize i = 0; i < vec->length; i++) {
507         *norm += fabs(array[i]);
508       }
509       break;
510     case CEED_NORM_2:
511       for (CeedSize i = 0; i < vec->length; i++) {
512         *norm += fabs(array[i]) * fabs(array[i]);
513       }
514       break;
515     case CEED_NORM_MAX:
516       for (CeedSize i = 0; i < vec->length; i++) {
517         const CeedScalar abs_v_i = fabs(array[i]);
518         *norm                    = *norm > abs_v_i ? *norm : abs_v_i;
519       }
520   }
521   if (norm_type == CEED_NORM_2) *norm = sqrt(*norm);
522 
523   CeedCall(CeedVectorRestoreArrayRead(vec, &array));
524   return CEED_ERROR_SUCCESS;
525 }
526 
527 /**
528   @brief Compute x = alpha x
529 
530   @param[in,out] x     vector for scaling
531   @param[in]     alpha scaling factor
532 
533   @return An error code: 0 - success, otherwise - failure
534 
535   @ref User
536 **/
537 int CeedVectorScale(CeedVector x, CeedScalar alpha) {
538   CeedScalar *x_array = NULL;
539   CeedSize    n_x;
540 
541   bool has_valid_array = true;
542   CeedCall(CeedVectorHasValidArray(x, &has_valid_array));
543   CeedCheck(has_valid_array, x->ceed, CEED_ERROR_BACKEND,
544             "CeedVector has no valid data to scale, must set data with CeedVectorSetValue or CeedVectorSetArray");
545 
546   CeedCall(CeedVectorGetLength(x, &n_x));
547 
548   // Backend implementation
549   if (x->Scale) return x->Scale(x, alpha);
550 
551   // Default implementation
552   CeedCall(CeedVectorGetArrayWrite(x, CEED_MEM_HOST, &x_array));
553   for (CeedSize i = 0; i < n_x; i++) x_array[i] *= alpha;
554   CeedCall(CeedVectorRestoreArray(x, &x_array));
555 
556   return CEED_ERROR_SUCCESS;
557 }
558 
559 /**
560   @brief Compute y = alpha x + y
561 
562   @param[in,out] y     target vector for sum
563   @param[in]     alpha scaling factor
564   @param[in]     x     second vector, must be different than y
565 
566   @return An error code: 0 - success, otherwise - failure
567 
568   @ref User
569 **/
570 int CeedVectorAXPY(CeedVector y, CeedScalar alpha, CeedVector x) {
571   CeedScalar       *y_array = NULL;
572   CeedScalar const *x_array = NULL;
573   CeedSize          n_x, n_y;
574 
575   CeedCall(CeedVectorGetLength(y, &n_y));
576   CeedCall(CeedVectorGetLength(x, &n_x));
577   CeedCheck(n_x == n_y, y->ceed, CEED_ERROR_UNSUPPORTED, "Cannot add vector of different lengths");
578   CeedCheck(x != y, y->ceed, CEED_ERROR_UNSUPPORTED, "Cannot use same vector for x and y in CeedVectorAXPY");
579 
580   bool has_valid_array_x = true, has_valid_array_y = true;
581   CeedCall(CeedVectorHasValidArray(x, &has_valid_array_x));
582   CeedCheck(has_valid_array_x, x->ceed, CEED_ERROR_BACKEND,
583             "CeedVector x has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
584   CeedCall(CeedVectorHasValidArray(y, &has_valid_array_y));
585   CeedCheck(has_valid_array_y, y->ceed, CEED_ERROR_BACKEND,
586             "CeedVector y has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
587 
588   Ceed ceed_parent_x, ceed_parent_y;
589   CeedCall(CeedGetParent(x->ceed, &ceed_parent_x));
590   CeedCall(CeedGetParent(y->ceed, &ceed_parent_y));
591   CeedCheck(ceed_parent_x == ceed_parent_y, y->ceed, CEED_ERROR_INCOMPATIBLE, "Vectors x and y must be created by the same Ceed context");
592 
593   // Backend implementation
594   if (y->AXPY) {
595     CeedCall(y->AXPY(y, alpha, x));
596     return CEED_ERROR_SUCCESS;
597   }
598 
599   // Default implementation
600   CeedCall(CeedVectorGetArrayWrite(y, CEED_MEM_HOST, &y_array));
601   CeedCall(CeedVectorGetArrayRead(x, CEED_MEM_HOST, &x_array));
602 
603   assert(x_array);
604   assert(y_array);
605 
606   for (CeedSize i = 0; i < n_y; i++) y_array[i] += alpha * x_array[i];
607 
608   CeedCall(CeedVectorRestoreArray(y, &y_array));
609   CeedCall(CeedVectorRestoreArrayRead(x, &x_array));
610 
611   return CEED_ERROR_SUCCESS;
612 }
613 
614 /**
615   @brief Compute y = alpha x + beta y
616 
617   @param[in,out] y     target vector for sum
618   @param[in]     alpha first scaling factor
619   @param[in]     beta  second scaling factor
620   @param[in]     x     second vector, must be different than y
621 
622   @return An error code: 0 - success, otherwise - failure
623 
624   @ref User
625 **/
626 int CeedVectorAXPBY(CeedVector y, CeedScalar alpha, CeedScalar beta, CeedVector x) {
627   CeedScalar       *y_array = NULL;
628   CeedScalar const *x_array = NULL;
629   CeedSize          n_x, n_y;
630 
631   CeedCall(CeedVectorGetLength(y, &n_y));
632   CeedCall(CeedVectorGetLength(x, &n_x));
633   CeedCheck(n_x == n_y, y->ceed, CEED_ERROR_UNSUPPORTED, "Cannot add vector of different lengths");
634   CeedCheck(x != y, y->ceed, CEED_ERROR_UNSUPPORTED, "Cannot use same vector for x and y in CeedVectorAXPBY");
635 
636   bool has_valid_array_x = true, has_valid_array_y = true;
637   CeedCall(CeedVectorHasValidArray(x, &has_valid_array_x));
638   CeedCheck(has_valid_array_x, x->ceed, CEED_ERROR_BACKEND,
639             "CeedVector x has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
640   CeedCall(CeedVectorHasValidArray(y, &has_valid_array_y));
641   CeedCheck(has_valid_array_y, y->ceed, CEED_ERROR_BACKEND,
642             "CeedVector y has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
643 
644   Ceed ceed_parent_x, ceed_parent_y;
645   CeedCall(CeedGetParent(x->ceed, &ceed_parent_x));
646   CeedCall(CeedGetParent(y->ceed, &ceed_parent_y));
647   CeedCheck(ceed_parent_x == ceed_parent_y, y->ceed, CEED_ERROR_INCOMPATIBLE, "Vectors x and y must be created by the same Ceed context");
648 
649   // Backend implementation
650   if (y->AXPBY) {
651     CeedCall(y->AXPBY(y, alpha, beta, x));
652     return CEED_ERROR_SUCCESS;
653   }
654 
655   // Default implementation
656   CeedCall(CeedVectorGetArray(y, CEED_MEM_HOST, &y_array));
657   CeedCall(CeedVectorGetArrayRead(x, CEED_MEM_HOST, &x_array));
658 
659   assert(x_array);
660   assert(y_array);
661 
662   for (CeedSize i = 0; i < n_y; i++) y_array[i] += alpha * x_array[i] + beta * y_array[i];
663 
664   CeedCall(CeedVectorRestoreArray(y, &y_array));
665   CeedCall(CeedVectorRestoreArrayRead(x, &x_array));
666 
667   return CEED_ERROR_SUCCESS;
668 }
669 
670 /**
671   @brief Compute the pointwise multiplication w = x .* y.
672 
673   Any subset of x, y, and w may be the same vector.
674 
675   @param[out] w target vector for the product
676   @param[in]  x first vector for product
677   @param[in]  y second vector for the product
678 
679   @return An error code: 0 - success, otherwise - failure
680 
681   @ref User
682 **/
683 int CeedVectorPointwiseMult(CeedVector w, CeedVector x, CeedVector y) {
684   CeedScalar       *w_array = NULL;
685   CeedScalar const *x_array = NULL, *y_array = NULL;
686   CeedSize          n_w, n_x, n_y;
687 
688   CeedCall(CeedVectorGetLength(w, &n_w));
689   CeedCall(CeedVectorGetLength(x, &n_x));
690   CeedCall(CeedVectorGetLength(y, &n_y));
691   CeedCheck(n_w == n_x && n_w == n_y, w->ceed, CEED_ERROR_UNSUPPORTED, "Cannot multiply vectors of different lengths");
692 
693   Ceed ceed_parent_w, ceed_parent_x, ceed_parent_y;
694   CeedCall(CeedGetParent(w->ceed, &ceed_parent_w));
695   CeedCall(CeedGetParent(x->ceed, &ceed_parent_x));
696   CeedCall(CeedGetParent(y->ceed, &ceed_parent_y));
697   CeedCheck(ceed_parent_w == ceed_parent_x && ceed_parent_w == ceed_parent_y, w->ceed, CEED_ERROR_INCOMPATIBLE,
698             "Vectors w, x, and y must be created by the same Ceed context");
699 
700   bool has_valid_array_x = true, has_valid_array_y = true;
701   CeedCall(CeedVectorHasValidArray(x, &has_valid_array_x));
702   CeedCheck(has_valid_array_x, x->ceed, CEED_ERROR_BACKEND,
703             "CeedVector x has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
704   CeedCall(CeedVectorHasValidArray(y, &has_valid_array_y));
705   CeedCheck(has_valid_array_y, y->ceed, CEED_ERROR_BACKEND,
706             "CeedVector y has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
707 
708   // Backend implementation
709   if (w->PointwiseMult) {
710     CeedCall(w->PointwiseMult(w, x, y));
711     return CEED_ERROR_SUCCESS;
712   }
713 
714   // Default implementation
715   if (x != w) {
716     CeedCall(CeedVectorGetArrayRead(x, CEED_MEM_HOST, &x_array));
717   } else {
718     CeedCall(CeedVectorGetArray(w, CEED_MEM_HOST, &w_array));
719     x_array = w_array;
720   }
721   if (y != w && y != x) {
722     CeedCall(CeedVectorGetArrayRead(y, CEED_MEM_HOST, &y_array));
723   } else if (y == x) {
724     y_array = x_array;
725   } else {
726     CeedCall(CeedVectorGetArray(w, CEED_MEM_HOST, &w_array));
727     y_array = w_array;
728   }
729   if (!w_array) CeedCall(CeedVectorGetArrayWrite(w, CEED_MEM_HOST, &w_array));
730 
731   assert(w_array);
732   assert(x_array);
733   assert(y_array);
734 
735   for (CeedSize i = 0; i < n_w; i++) w_array[i] = x_array[i] * y_array[i];
736 
737   if (y != w && y != x) CeedCall(CeedVectorRestoreArrayRead(y, &y_array));
738   if (x != w) CeedCall(CeedVectorRestoreArrayRead(x, &x_array));
739   CeedCall(CeedVectorRestoreArray(w, &w_array));
740   return CEED_ERROR_SUCCESS;
741 }
742 
743 /**
744   @brief Take the reciprocal of a CeedVector.
745 
746   @param[in,out] vec CeedVector to take reciprocal
747 
748   @return An error code: 0 - success, otherwise - failure
749 
750   @ref User
751 **/
752 int CeedVectorReciprocal(CeedVector vec) {
753   bool has_valid_array = true;
754   CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
755 
756   CeedCheck(has_valid_array, vec->ceed, CEED_ERROR_BACKEND,
757             "CeedVector has no valid data to compute reciprocal, must set data with CeedVectorSetValue or CeedVectorSetArray");
758 
759   // Check if vector data set
760   CeedCheck(vec->state > 0, vec->ceed, CEED_ERROR_INCOMPLETE, "CeedVector must have data set to take reciprocal");
761 
762   // Backend impl for GPU, if added
763   if (vec->Reciprocal) {
764     CeedCall(vec->Reciprocal(vec));
765     return CEED_ERROR_SUCCESS;
766   }
767 
768   CeedSize len;
769   CeedCall(CeedVectorGetLength(vec, &len));
770   CeedScalar *array;
771   CeedCall(CeedVectorGetArrayWrite(vec, CEED_MEM_HOST, &array));
772   for (CeedSize i = 0; i < len; i++) {
773     if (fabs(array[i]) > CEED_EPSILON) array[i] = 1. / array[i];
774   }
775 
776   CeedCall(CeedVectorRestoreArray(vec, &array));
777   return CEED_ERROR_SUCCESS;
778 }
779 
780 /**
781   @brief View a CeedVector
782 
783   Note: It is safe to use any unsigned values for `start` or `stop` and any nonzero integer for `step`.
784         Any portion of the provided range that is outside the range of valid indices for the CeedVector will be ignored.
785 
786   @param[in] vec    CeedVector to view
787   @param[in] start  Index of first CeedVector entry to view
788   @param[in] stop   Index of last CeedVector entry to view
789   @param[in] step   Step between CeedVector entries to view
790   @param[in] fp_fmt Printing format
791   @param[in] stream Filestream to write to
792 
793   @return An error code: 0 - success, otherwise - failure
794 
795   @ref User
796 **/
797 int CeedVectorViewRange(CeedVector vec, CeedSize start, CeedSize stop, CeedInt step, const char *fp_fmt, FILE *stream) {
798   const CeedScalar *x;
799   char              fmt[1024];
800 
801   CeedCheck(step != 0, vec->ceed, CEED_ERROR_MINOR, "View range 'step' must be nonzero");
802 
803   fprintf(stream, "CeedVector length %ld\n", (long)vec->length);
804   if (start != 0 || stop != vec->length || step != 1) {
805     fprintf(stream, "  start: %ld\n  stop:  %ld\n  step:  %" CeedInt_FMT "\n", (long)start, (long)stop, step);
806   }
807   if (start > vec->length) start = vec->length;
808   if (stop > vec->length) stop = vec->length;
809 
810   snprintf(fmt, sizeof fmt, "  %s\n", fp_fmt ? fp_fmt : "%g");
811   CeedCall(CeedVectorGetArrayRead(vec, CEED_MEM_HOST, &x));
812   for (CeedSize i = start; step > 0 ? (i < stop) : (i > stop); i += step) fprintf(stream, fmt, x[i]);
813   CeedCall(CeedVectorRestoreArrayRead(vec, &x));
814   if (stop != vec->length) fprintf(stream, "  ...\n");
815 
816   return CEED_ERROR_SUCCESS;
817 }
818 
819 /**
820   @brief View a CeedVector
821 
822   @param[in] vec    CeedVector to view
823   @param[in] fp_fmt Printing format
824   @param[in] stream Filestream to write to
825 
826   @return An error code: 0 - success, otherwise - failure
827 
828   @ref User
829 **/
830 int CeedVectorView(CeedVector vec, const char *fp_fmt, FILE *stream) {
831   CeedCall(CeedVectorViewRange(vec, 0, vec->length, 1, fp_fmt, stream));
832   return CEED_ERROR_SUCCESS;
833 }
834 
835 /**
836   @brief Get the Ceed associated with a CeedVector
837 
838   @param[in]  vec  CeedVector to retrieve state
839   @param[out] ceed Variable to store ceed
840 
841   @return An error code: 0 - success, otherwise - failure
842 
843   @ref Advanced
844 **/
845 int CeedVectorGetCeed(CeedVector vec, Ceed *ceed) {
846   *ceed = vec->ceed;
847   return CEED_ERROR_SUCCESS;
848 }
849 
850 /**
851   @brief Get the length of a CeedVector
852 
853   @param[in]  vec    CeedVector to retrieve length
854   @param[out] length Variable to store length
855 
856   @return An error code: 0 - success, otherwise - failure
857 
858   @ref User
859 **/
860 int CeedVectorGetLength(CeedVector vec, CeedSize *length) {
861   *length = vec->length;
862   return CEED_ERROR_SUCCESS;
863 }
864 
865 /**
866   @brief Destroy a CeedVector
867 
868   @param[in,out] vec CeedVector to destroy
869 
870   @return An error code: 0 - success, otherwise - failure
871 
872   @ref User
873 **/
874 int CeedVectorDestroy(CeedVector *vec) {
875   if (!*vec || *vec == CEED_VECTOR_ACTIVE || *vec == CEED_VECTOR_NONE || --(*vec)->ref_count > 0) {
876     *vec = NULL;
877     return CEED_ERROR_SUCCESS;
878   }
879   CeedCheck((*vec)->state % 2 == 0, (*vec)->ceed, CEED_ERROR_ACCESS, "Cannot destroy CeedVector, the writable access lock is in use");
880   CeedCheck((*vec)->num_readers == 0, (*vec)->ceed, CEED_ERROR_ACCESS, "Cannot destroy CeedVector, a process has read access");
881 
882   if ((*vec)->Destroy) CeedCall((*vec)->Destroy(*vec));
883 
884   CeedCall(CeedDestroy(&(*vec)->ceed));
885   CeedCall(CeedFree(vec));
886   return CEED_ERROR_SUCCESS;
887 }
888 
889 /// @}
890