xref: /libCEED/rust/libceed-sys/c-src/interface/ceed-vector.c (revision b0f67a9c1aeeb4d82b4724afaae1227ff4e81f15)
1 // Copyright (c) 2017-2026, 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 @ref 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 Internal Functions
38 /// ----------------------------------------------------------------------------
39 /// @addtogroup CeedVectorDeveloper
40 /// @{
41 
42 /**
43   @brief View a `CeedVector` passed as a `CeedObject`
44 
45   @param[in] vec    `CeedVector` to view
46   @param[in] stream Filestream to write to
47 
48   @return An error code: 0 - success, otherwise - failure
49 
50   @ref Developer
51 **/
52 static int CeedVectorView_Object(CeedObject vec, FILE *stream) {
53   CeedCall(CeedVectorView((CeedVector)vec, "%12.8f", stream));
54   return CEED_ERROR_SUCCESS;
55 }
56 
57 /// @}
58 
59 /// ----------------------------------------------------------------------------
60 /// CeedVector Backend API
61 /// ----------------------------------------------------------------------------
62 /// @addtogroup CeedVectorBackend
63 /// @{
64 
65 /**
66   @brief Check for valid data in a `CeedVector`
67 
68   @param[in]  vec             `CeedVector` to check validity
69   @param[out] has_valid_array Variable to store validity
70 
71   @return An error code: 0 - success, otherwise - failure
72 
73   @ref Backend
74 **/
75 int CeedVectorHasValidArray(CeedVector vec, bool *has_valid_array) {
76   CeedSize length;
77 
78   CeedCheck(vec->HasValidArray, CeedVectorReturnCeed(vec), CEED_ERROR_UNSUPPORTED, "Backend does not support CeedVectorHasValidArray");
79   CeedCall(CeedVectorGetLength(vec, &length));
80   if (length == 0) {
81     *has_valid_array = true;
82     return CEED_ERROR_SUCCESS;
83   }
84   CeedCall(vec->HasValidArray(vec, has_valid_array));
85   return CEED_ERROR_SUCCESS;
86 }
87 
88 /**
89   @brief Check for borrowed array of a specific @ref CeedMemType in a `CeedVector`
90 
91   @param[in]  vec                        `CeedVector` to check
92   @param[in]  mem_type                   Memory type to check
93   @param[out] has_borrowed_array_of_type Variable to store result
94 
95   @return An error code: 0 - success, otherwise - failure
96 
97   @ref Backend
98 **/
99 int CeedVectorHasBorrowedArrayOfType(CeedVector vec, CeedMemType mem_type, bool *has_borrowed_array_of_type) {
100   CeedCheck(vec->HasBorrowedArrayOfType, CeedVectorReturnCeed(vec), CEED_ERROR_UNSUPPORTED,
101             "Backend does not support CeedVectorHasBorrowedArrayOfType");
102   CeedCall(vec->HasBorrowedArrayOfType(vec, mem_type, has_borrowed_array_of_type));
103   return CEED_ERROR_SUCCESS;
104 }
105 
106 /**
107   @brief Get the state of a `CeedVector`
108 
109   @param[in]  vec    `CeedVector` to retrieve state
110   @param[out] state  Variable to store state
111 
112   @return An error code: 0 - success, otherwise - failure
113 
114   @ref Backend
115 **/
116 int CeedVectorGetState(CeedVector vec, uint64_t *state) {
117   *state = vec->state;
118   return CEED_ERROR_SUCCESS;
119 }
120 
121 /**
122   @brief Get the backend data of a `CeedVector`
123 
124   @param[in]  vec  `CeedVector` to retrieve state
125   @param[out] data Variable to store data
126 
127   @return An error code: 0 - success, otherwise - failure
128 
129   @ref Backend
130 **/
131 int CeedVectorGetData(CeedVector vec, void *data) {
132   *(void **)data = vec->data;
133   return CEED_ERROR_SUCCESS;
134 }
135 
136 /**
137   @brief Set the backend data of a `CeedVector`
138 
139   @param[in,out] vec  `CeedVector` to retrieve state
140   @param[in]     data Data to set
141 
142   @return An error code: 0 - success, otherwise - failure
143 
144   @ref Backend
145 **/
146 int CeedVectorSetData(CeedVector vec, void *data) {
147   vec->data = data;
148   return CEED_ERROR_SUCCESS;
149 }
150 
151 /**
152   @brief Increment the reference counter for a `CeedVector`
153 
154   @param[in,out] vec `CeedVector` to increment the reference counter
155 
156   @return An error code: 0 - success, otherwise - failure
157 
158   @ref Backend
159 **/
160 int CeedVectorReference(CeedVector vec) {
161   CeedCall(CeedObjectReference((CeedObject)vec));
162   return CEED_ERROR_SUCCESS;
163 }
164 
165 /// @}
166 
167 /// ----------------------------------------------------------------------------
168 /// CeedVector Public API
169 /// ----------------------------------------------------------------------------
170 /// @addtogroup CeedVectorUser
171 /// @{
172 
173 /**
174   @brief Create a `CeedVector` of the specified length (does not allocate memory)
175 
176   @param[in]  ceed   `Ceed` object used to create the `CeedVector`
177   @param[in]  length Length of vector
178   @param[out] vec    Address of the variable where the newly created `CeedVector` will be stored
179 
180   @return An error code: 0 - success, otherwise - failure
181 
182   @ref User
183 **/
184 int CeedVectorCreate(Ceed ceed, CeedSize length, CeedVector *vec) {
185   CeedCheck(length >= 0, ceed, CEED_ERROR_UNSUPPORTED, "CeedVector must have length >= 0, recieved %" CeedSize_FMT, length);
186   if (!ceed->VectorCreate) {
187     Ceed delegate;
188 
189     CeedCall(CeedGetObjectDelegate(ceed, &delegate, "Vector"));
190     CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement VectorCreate");
191     CeedCall(CeedVectorCreate(delegate, length, vec));
192     CeedCall(CeedDestroy(&delegate));
193     return CEED_ERROR_SUCCESS;
194   }
195 
196   CeedCall(CeedCalloc(1, vec));
197   CeedCall(CeedObjectCreate(ceed, CeedVectorView_Object, &(*vec)->obj));
198   (*vec)->length = length;
199   (*vec)->state  = 0;
200   CeedCall(ceed->VectorCreate(length, *vec));
201   return CEED_ERROR_SUCCESS;
202 }
203 
204 /**
205   @brief Copy the pointer to a `CeedVector`.
206 
207   Both pointers should be destroyed with @ref CeedVectorDestroy().
208 
209   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`.
210         This `CeedVector` will be destroyed if `*vec_copy` is the only reference to this `CeedVector`.
211 
212   @param[in]     vec      `CeedVector` to copy reference to
213   @param[in,out] vec_copy Variable to store copied reference
214 
215   @return An error code: 0 - success, otherwise - failure
216 
217   @ref User
218 **/
219 int CeedVectorReferenceCopy(CeedVector vec, CeedVector *vec_copy) {
220   if (vec != CEED_VECTOR_ACTIVE && vec != CEED_VECTOR_NONE) CeedCall(CeedVectorReference(vec));
221   CeedCall(CeedVectorDestroy(vec_copy));
222   *vec_copy = vec;
223   return CEED_ERROR_SUCCESS;
224 }
225 
226 /**
227   @brief Copy a `CeedVector` into a different `CeedVector`.
228 
229   @param[in]     vec      `CeedVector` to copy
230   @param[in,out] vec_copy `CeedVector` to copy array into
231 
232   @return An error code: 0 - success, otherwise - failure
233 
234   @ref User
235 **/
236 int CeedVectorCopy(CeedVector vec, CeedVector vec_copy) {
237   CeedMemType mem_type, mem_type_copy;
238   CeedScalar *array;
239 
240   // Get the preferred memory types
241   {
242     Ceed ceed;
243 
244     CeedCall(CeedVectorGetCeed(vec, &ceed));
245     CeedCall(CeedGetPreferredMemType(ceed, &mem_type));
246     CeedCall(CeedDestroy(&ceed));
247 
248     CeedCall(CeedVectorGetCeed(vec_copy, &ceed));
249     CeedCall(CeedGetPreferredMemType(ceed, &mem_type_copy));
250     CeedCall(CeedDestroy(&ceed));
251   }
252 
253   // Check that both have same memory type
254   if (mem_type != mem_type_copy) mem_type = CEED_MEM_HOST;
255 
256   // Check compatible lengths
257   {
258     CeedSize length_vec, length_copy;
259 
260     CeedCall(CeedVectorGetLength(vec, &length_vec));
261     CeedCall(CeedVectorGetLength(vec_copy, &length_copy));
262     CeedCheck(length_vec == length_copy, CeedVectorReturnCeed(vec), CEED_ERROR_INCOMPATIBLE, "CeedVectors must have the same length to copy");
263   }
264 
265   // Copy the values from vec to vec_copy
266   CeedCall(CeedVectorGetArray(vec, mem_type, &array));
267   CeedCall(CeedVectorSetArray(vec_copy, mem_type, CEED_COPY_VALUES, array));
268 
269   CeedCall(CeedVectorRestoreArray(vec, &array));
270   return CEED_ERROR_SUCCESS;
271 }
272 
273 /**
274   @brief Copy a strided portion of `CeedVector` contents into a different `CeedVector`
275 
276   @param[in]     vec      `CeedVector` to copy
277   @param[in]     start    First index to copy in the range `[start, stop)`
278   @param[in]     stop     One past the last element to copy in the range, or `-1` for `length`
279   @param[in]     step     Stride between indices to copy
280   @param[in,out] vec_copy `CeedVector` to copy values to
281 
282   @return An error code: 0 - success, otherwise - failure
283 
284   @ref User
285 **/
286 int CeedVectorCopyStrided(CeedVector vec, CeedSize start, CeedSize stop, CeedSize step, CeedVector vec_copy) {
287   CeedSize          length;
288   const CeedScalar *array      = NULL;
289   CeedScalar       *array_copy = NULL;
290 
291   // Check length
292   {
293     CeedSize length_vec, length_copy;
294 
295     CeedCall(CeedVectorGetLength(vec, &length_vec));
296     CeedCall(CeedVectorGetLength(vec_copy, &length_copy));
297     if (length_vec <= 0 || length_copy <= 0) return CEED_ERROR_SUCCESS;
298     length = length_vec < length_copy ? length_vec : length_copy;
299   }
300   CeedCheck(stop >= -1 && stop <= length, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
301             "Invalid value for stop %" CeedSize_FMT ", must be in the range [-1, length]", stop);
302   CeedCheck(start >= 0 && start <= length && (start <= stop || stop == -1), CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
303             "Invalid value for start %" CeedSize_FMT ", must be in the range [0, stop]", start);
304 
305   // Backend version
306   if (vec->CopyStrided && vec_copy->CopyStrided) {
307     CeedCall(vec->CopyStrided(vec, start, stop, step, vec_copy));
308     vec_copy->state += 2;
309     return CEED_ERROR_SUCCESS;
310   }
311 
312   // Copy
313   CeedCall(CeedVectorGetArrayRead(vec, CEED_MEM_HOST, &array));
314   CeedCall(CeedVectorGetArray(vec_copy, CEED_MEM_HOST, &array_copy));
315   if (stop == -1) stop = length;
316   for (CeedSize i = start; i < stop; i += step) array_copy[i] = array[i];
317 
318   // Cleanup
319   CeedCall(CeedVectorRestoreArrayRead(vec, &array));
320   CeedCall(CeedVectorRestoreArray(vec_copy, &array_copy));
321   return CEED_ERROR_SUCCESS;
322 }
323 
324 /**
325   @brief Set the array used by a `CeedVector`, freeing any previously allocated array if applicable.
326 
327   The backend may copy values to a different @ref CeedMemType, such as during @ref CeedOperatorApply().
328   See also @ref CeedVectorSyncArray() and @ref CeedVectorTakeArray().
329 
330   @param[in,out] vec       `CeedVector`
331   @param[in]     mem_type  Memory type of the array being passed
332   @param[in]     copy_mode Copy mode for the array
333   @param[in]     array     Array to be used, or `NULL` with @ref CEED_COPY_VALUES to have the library allocate
334 
335   @return An error code: 0 - success, otherwise - failure
336 
337   @ref User
338 **/
339 int CeedVectorSetArray(CeedVector vec, CeedMemType mem_type, CeedCopyMode copy_mode, CeedScalar *array) {
340   CeedSize length;
341 
342   CeedCheck(vec->SetArray, CeedVectorReturnCeed(vec), CEED_ERROR_UNSUPPORTED, "Backend does not support VectorSetArray");
343   CeedCheck(vec->state % 2 == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
344             "Cannot grant CeedVector array access, the access lock is already in use");
345   CeedCheck(vec->num_readers == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, a process has read access");
346 
347   CeedCall(CeedVectorGetLength(vec, &length));
348   if (length > 0) CeedCall(vec->SetArray(vec, mem_type, copy_mode, array));
349   vec->state += 2;
350   return CEED_ERROR_SUCCESS;
351 }
352 
353 /**
354   @brief Set the `CeedVector` to a constant value
355 
356   @param[in,out] vec   `CeedVector`
357   @param[in]     value Value to be used
358 
359   @return An error code: 0 - success, otherwise - failure
360 
361   @ref User
362 **/
363 int CeedVectorSetValue(CeedVector vec, CeedScalar value) {
364   CeedCheck(vec->state % 2 == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
365             "Cannot grant CeedVector array access, the access lock is already in use");
366   CeedCheck(vec->num_readers == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, a process has read access");
367 
368   if (vec->SetValue) {
369     CeedCall(vec->SetValue(vec, value));
370     vec->state += 2;
371   } else {
372     CeedSize    length;
373     CeedScalar *array;
374 
375     CeedCall(CeedVectorGetArrayWrite(vec, CEED_MEM_HOST, &array));
376     CeedCall(CeedVectorGetLength(vec, &length));
377     for (CeedSize i = 0; i < length; i++) array[i] = value;
378     CeedCall(CeedVectorRestoreArray(vec, &array));
379   }
380   return CEED_ERROR_SUCCESS;
381 }
382 
383 /**
384   @brief Set a portion of a `CeedVector` to a constant value.
385 
386   Note: The `CeedVector` must already have valid data set via @ref CeedVectorSetArray() or similar.
387 
388   @param[in,out] vec   `CeedVector`
389   @param[in]     start First index to set in range `[start, stop)`
390   @param[in]     stop  One past the last element to set in the range, or `-1` for `length`
391   @param[in]     step  Stride between indices to set
392   @param[in]     value Value to be used
393 
394   @return An error code: 0 - success, otherwise - failure
395 
396   @ref User
397 **/
398 int CeedVectorSetValueStrided(CeedVector vec, CeedSize start, CeedSize stop, CeedSize step, CeedScalar value) {
399   CeedSize length;
400 
401   CeedCheck(vec->state % 2 == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
402             "Cannot grant CeedVector array access, the access lock is already in use");
403   CeedCheck(vec->num_readers == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, a process has read access");
404   CeedCall(CeedVectorGetLength(vec, &length));
405   CeedCheck(stop >= -1 && stop <= length, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
406             "Invalid value for stop %" CeedSize_FMT ", must be in the range [-1, length]", stop);
407 
408   if (vec->SetValueStrided) {
409     CeedCall(vec->SetValueStrided(vec, start, stop, step, value));
410     vec->state += 2;
411   } else {
412     CeedScalar *array;
413 
414     if (length <= 0) return CEED_ERROR_SUCCESS;
415     if (stop == -1) stop = length;
416     CeedCall(CeedVectorGetArray(vec, CEED_MEM_HOST, &array));
417     for (CeedSize i = start; i < stop; i += step) array[i] = value;
418     CeedCall(CeedVectorRestoreArray(vec, &array));
419   }
420   return CEED_ERROR_SUCCESS;
421 }
422 
423 /**
424   @brief Sync the `CeedVector` to a specified `mem_type`.
425 
426   This function is used to force synchronization of arrays set with @ref CeedVectorSetArray().
427   If the requested `mem_type` is already synchronized, this function results in a no-op.
428 
429   @param[in,out] vec      `CeedVector`
430   @param[in]     mem_type @ref CeedMemType to be synced
431 
432   @return An error code: 0 - success, otherwise - failure
433 
434   @ref User
435 **/
436 int CeedVectorSyncArray(CeedVector vec, CeedMemType mem_type) {
437   CeedSize length;
438 
439   CeedCheck(vec->state % 2 == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS, "Cannot sync CeedVector, the access lock is already in use");
440 
441   // Don't sync empty array
442   CeedCall(CeedVectorGetLength(vec, &length));
443   if (length == 0) return CEED_ERROR_SUCCESS;
444 
445   if (vec->SyncArray) {
446     CeedCall(vec->SyncArray(vec, mem_type));
447   } else {
448     const CeedScalar *array;
449 
450     CeedCall(CeedVectorGetArrayRead(vec, mem_type, &array));
451     CeedCall(CeedVectorRestoreArrayRead(vec, &array));
452   }
453   return CEED_ERROR_SUCCESS;
454 }
455 
456 /**
457   @brief Take ownership of the `CeedVector` array set by @ref CeedVectorSetArray() with @ref CEED_USE_POINTER and remove the array from the `CeedVector`.
458 
459   The caller is responsible for managing and freeing the array.
460   This function will error if @ref CeedVectorSetArray() was not previously called with @ref CEED_USE_POINTER for the corresponding mem_type.
461 
462   @param[in,out] vec      `CeedVector`
463   @param[in]     mem_type Memory type on which to take the array.
464                             If the backend uses a different memory type, this will perform a copy.
465   @param[out]    array    Array on memory type `mem_type`, or `NULL` if array pointer is not required
466 
467   @return An error code: 0 - success, otherwise - failure
468 
469   @ref User
470 **/
471 int CeedVectorTakeArray(CeedVector vec, CeedMemType mem_type, CeedScalar **array) {
472   CeedSize    length;
473   CeedScalar *temp_array = NULL;
474 
475   CeedCheck(vec->state % 2 == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS, "Cannot take CeedVector array, the access lock is already in use");
476   CeedCheck(vec->num_readers == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS, "Cannot take CeedVector array, a process has read access");
477 
478   CeedCall(CeedVectorGetLength(vec, &length));
479   if (length > 0) {
480     bool has_borrowed_array_of_type = true, has_valid_array = true;
481 
482     CeedCall(CeedVectorHasBorrowedArrayOfType(vec, mem_type, &has_borrowed_array_of_type));
483     CeedCheck(has_borrowed_array_of_type, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND,
484               "CeedVector has no borrowed %s array, must set array with CeedVectorSetArray", CeedMemTypes[mem_type]);
485 
486     CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
487     CeedCheck(has_valid_array, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND,
488               "CeedVector has no valid data to take, must set data with CeedVectorSetValue or CeedVectorSetArray");
489 
490     CeedCall(vec->TakeArray(vec, mem_type, &temp_array));
491   }
492   if (array) (*array) = temp_array;
493   return CEED_ERROR_SUCCESS;
494 }
495 
496 /**
497   @brief Get read/write access to a `CeedVector` via the specified memory type.
498 
499   Restore access with @ref CeedVectorRestoreArray().
500 
501   @param[in,out] vec      `CeedVector` to access
502   @param[in]     mem_type Memory type on which to access the array.
503                             If the backend uses a different memory type, this will perform a copy.
504   @param[out]    array    Array on memory type `mem_type`
505 
506   @note The @ref CeedVectorGetArray() and @ref CeedVectorRestoreArray() functions provide access to array pointers in the desired memory space.
507         Pairing get/restore allows the `CeedVector` to track access, thus knowing if norms or other operations may need to be recomputed.
508 
509   @return An error code: 0 - success, otherwise - failure
510 
511   @ref User
512 **/
513 int CeedVectorGetArray(CeedVector vec, CeedMemType mem_type, CeedScalar **array) {
514   CeedSize length;
515 
516   CeedCheck(vec->GetArray, CeedVectorReturnCeed(vec), CEED_ERROR_UNSUPPORTED, "Backend does not support GetArray");
517   CeedCheck(vec->state % 2 == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
518             "Cannot grant CeedVector array access, the access lock is already in use");
519   CeedCheck(vec->num_readers == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, a process has read access");
520 
521   CeedCall(CeedVectorGetLength(vec, &length));
522   if (length > 0) {
523     bool has_valid_array = true;
524 
525     CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
526     CeedCheck(has_valid_array, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND,
527               "CeedVector has no valid data to read, must set data with CeedVectorSetValue or CeedVectorSetArray");
528 
529     CeedCall(vec->GetArray(vec, mem_type, array));
530   } else {
531     *array = NULL;
532   }
533   vec->state++;
534   return CEED_ERROR_SUCCESS;
535 }
536 
537 /**
538   @brief Get read-only access to a `CeedVector` via the specified memory type.
539 
540   Restore access with @ref CeedVectorRestoreArrayRead().
541 
542   @param[in]  vec      `CeedVector` to access
543   @param[in]  mem_type Memory type on which to access the array.
544                          If the backend uses a different memory type, this will perform a copy (possibly cached).
545   @param[out] array    Array on memory type `mem_type`
546 
547   @return An error code: 0 - success, otherwise - failure
548 
549   @ref User
550 **/
551 int CeedVectorGetArrayRead(CeedVector vec, CeedMemType mem_type, const CeedScalar **array) {
552   CeedSize length;
553 
554   CeedCheck(vec->GetArrayRead, CeedVectorReturnCeed(vec), CEED_ERROR_UNSUPPORTED, "Backend does not support GetArrayRead");
555   CeedCheck(vec->state % 2 == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
556             "Cannot grant CeedVector read-only array access, the access lock is already in use");
557 
558   CeedCall(CeedVectorGetLength(vec, &length));
559   if (length > 0) {
560     bool has_valid_array = true;
561 
562     CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
563     CeedCheck(has_valid_array, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND,
564               "CeedVector has no valid data to read, must set data with CeedVectorSetValue or CeedVectorSetArray");
565 
566     CeedCall(vec->GetArrayRead(vec, mem_type, array));
567   } else {
568     *array = NULL;
569   }
570   vec->num_readers++;
571   return CEED_ERROR_SUCCESS;
572 }
573 
574 /**
575   @brief Get write access to a `CeedVector` via the specified memory type.
576 
577   Restore access with @ref CeedVectorRestoreArray().
578   All old values should be assumed to be invalid.
579 
580   @param[in,out] vec      `CeedVector` to access
581   @param[in]     mem_type Memory type on which to access the array.
582   @param[out]    array    Array on memory type `mem_type`
583 
584   @return An error code: 0 - success, otherwise - failure
585 
586   @ref User
587 **/
588 int CeedVectorGetArrayWrite(CeedVector vec, CeedMemType mem_type, CeedScalar **array) {
589   CeedSize length;
590 
591   CeedCheck(vec->GetArrayWrite, CeedVectorReturnCeed(vec), CEED_ERROR_UNSUPPORTED, "Backend does not support CeedVectorGetArrayWrite");
592   CeedCheck(vec->state % 2 == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
593             "Cannot grant CeedVector array access, the access lock is already in use");
594   CeedCheck(vec->num_readers == 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS, "Cannot grant CeedVector array access, a process has read access");
595 
596   CeedCall(CeedVectorGetLength(vec, &length));
597   if (length > 0) {
598     CeedCall(vec->GetArrayWrite(vec, mem_type, array));
599   } else {
600     *array = NULL;
601   }
602   vec->state++;
603   return CEED_ERROR_SUCCESS;
604 }
605 
606 /**
607   @brief Restore an array obtained using @ref CeedVectorGetArray() or @ref CeedVectorGetArrayWrite()
608 
609   @param[in,out] vec   `CeedVector` to restore
610   @param[in,out] array Array of vector data
611 
612   @return An error code: 0 - success, otherwise - failure
613 
614   @ref User
615 **/
616 int CeedVectorRestoreArray(CeedVector vec, CeedScalar **array) {
617   CeedSize length;
618 
619   CeedCheck(vec->state % 2 == 1, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS, "Cannot restore CeedVector array access, access was not granted");
620   CeedCall(CeedVectorGetLength(vec, &length));
621   if (length > 0 && vec->RestoreArray) CeedCall(vec->RestoreArray(vec));
622   *array = NULL;
623   vec->state++;
624   return CEED_ERROR_SUCCESS;
625 }
626 
627 /**
628   @brief Restore an array obtained using @ref CeedVectorGetArrayRead()
629 
630   @param[in]     vec   `CeedVector` to restore
631   @param[in,out] array Array of vector data
632 
633   @return An error code: 0 - success, otherwise - failure
634 
635   @ref User
636 **/
637 int CeedVectorRestoreArrayRead(CeedVector vec, const CeedScalar **array) {
638   CeedSize length;
639 
640   CeedCheck(vec->num_readers > 0, CeedVectorReturnCeed(vec), CEED_ERROR_ACCESS,
641             "Cannot restore CeedVector array read access, access was not granted");
642   vec->num_readers--;
643   CeedCall(CeedVectorGetLength(vec, &length));
644   if (length > 0 && vec->num_readers == 0 && vec->RestoreArrayRead) CeedCall(vec->RestoreArrayRead(vec));
645   *array = NULL;
646   return CEED_ERROR_SUCCESS;
647 }
648 
649 /**
650   @brief Get the norm of a `CeedVector`.
651 
652   Note: This operation is local to the `CeedVector`.
653         This function will likely not provide the desired results for the norm of the libCEED portion of a parallel vector or a `CeedVector` with duplicated or hanging nodes.
654 
655   @param[in]  vec       `CeedVector` to retrieve maximum value
656   @param[in]  norm_type Norm type @ref CEED_NORM_1, @ref CEED_NORM_2, or @ref CEED_NORM_MAX
657   @param[out] norm      Variable to store norm value
658 
659   @return An error code: 0 - success, otherwise - failure
660 
661   @ref User
662 **/
663 int CeedVectorNorm(CeedVector vec, CeedNormType norm_type, CeedScalar *norm) {
664   bool     has_valid_array = true;
665   CeedSize length;
666 
667   CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
668   CeedCheck(has_valid_array, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND,
669             "CeedVector has no valid data to compute norm, must set data with CeedVectorSetValue or CeedVectorSetArray");
670 
671   CeedCall(CeedVectorGetLength(vec, &length));
672   if (length == 0) {
673     *norm = 0;
674     return CEED_ERROR_SUCCESS;
675   }
676 
677   // Backend impl for GPU, if added
678   if (vec->Norm) {
679     CeedCall(vec->Norm(vec, norm_type, norm));
680     return CEED_ERROR_SUCCESS;
681   }
682 
683   const CeedScalar *array;
684   CeedCall(CeedVectorGetArrayRead(vec, CEED_MEM_HOST, &array));
685   assert(array);
686 
687   *norm = 0.;
688   switch (norm_type) {
689     case CEED_NORM_1:
690       for (CeedSize i = 0; i < length; i++) {
691         *norm += fabs(array[i]);
692       }
693       break;
694     case CEED_NORM_2:
695       for (CeedSize i = 0; i < length; i++) {
696         *norm += fabs(array[i]) * fabs(array[i]);
697       }
698       break;
699     case CEED_NORM_MAX:
700       for (CeedSize i = 0; i < length; i++) {
701         const CeedScalar abs_v_i = fabs(array[i]);
702         *norm                    = *norm > abs_v_i ? *norm : abs_v_i;
703       }
704   }
705   if (norm_type == CEED_NORM_2) *norm = sqrt(*norm);
706 
707   CeedCall(CeedVectorRestoreArrayRead(vec, &array));
708   return CEED_ERROR_SUCCESS;
709 }
710 
711 /**
712   @brief Compute `x = alpha x`
713 
714   @param[in,out] x     `CeedVector` for scaling
715   @param[in]     alpha scaling factor
716 
717   @return An error code: 0 - success, otherwise - failure
718 
719   @ref User
720 **/
721 int CeedVectorScale(CeedVector x, CeedScalar alpha) {
722   bool        has_valid_array = true;
723   CeedSize    length;
724   CeedScalar *x_array = NULL;
725 
726   CeedCall(CeedVectorHasValidArray(x, &has_valid_array));
727   CeedCheck(has_valid_array, CeedVectorReturnCeed(x), CEED_ERROR_BACKEND,
728             "CeedVector has no valid data to scale, must set data with CeedVectorSetValue or CeedVectorSetArray");
729 
730   // Return early for empty vector
731   CeedCall(CeedVectorGetLength(x, &length));
732   if (length == 0) return CEED_ERROR_SUCCESS;
733 
734   // Backend implementation
735   if (x->Scale) return x->Scale(x, alpha);
736 
737   // Default implementation
738   CeedCall(CeedVectorGetArray(x, CEED_MEM_HOST, &x_array));
739   assert(x_array);
740   for (CeedSize i = 0; i < length; i++) x_array[i] *= alpha;
741   CeedCall(CeedVectorRestoreArray(x, &x_array));
742   return CEED_ERROR_SUCCESS;
743 }
744 
745 /**
746   @brief Compute `y = alpha x + y`
747 
748   @param[in,out] y     target `CeedVector` for sum
749   @param[in]     alpha scaling factor
750   @param[in]     x     second `CeedVector`, must be different than ``y`
751 
752   @return An error code: 0 - success, otherwise - failure
753 
754   @ref User
755 **/
756 int CeedVectorAXPY(CeedVector y, CeedScalar alpha, CeedVector x) {
757   bool              has_valid_array_x = true, has_valid_array_y = true;
758   CeedSize          length_x, length_y;
759   CeedScalar       *y_array = NULL;
760   CeedScalar const *x_array = NULL;
761 
762   CeedCall(CeedVectorGetLength(y, &length_y));
763   CeedCall(CeedVectorGetLength(x, &length_x));
764   CeedCheck(length_x == length_y, CeedVectorReturnCeed(y), CEED_ERROR_UNSUPPORTED,
765             "Cannot add vector of different lengths."
766             " x length: %" CeedSize_FMT " y length: %" CeedSize_FMT,
767             length_x, length_y);
768   CeedCheck(x != y, CeedVectorReturnCeed(y), CEED_ERROR_UNSUPPORTED, "Cannot use same vector for x and y in CeedVectorAXPY");
769 
770   CeedCall(CeedVectorHasValidArray(x, &has_valid_array_x));
771   CeedCheck(has_valid_array_x, CeedVectorReturnCeed(y), CEED_ERROR_BACKEND,
772             "CeedVector x has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
773   CeedCall(CeedVectorHasValidArray(y, &has_valid_array_y));
774   CeedCheck(has_valid_array_y, CeedVectorReturnCeed(y), CEED_ERROR_BACKEND,
775             "CeedVector y has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
776 
777   {
778     Ceed ceed_x, ceed_y, ceed_parent_x, ceed_parent_y;
779 
780     CeedCall(CeedVectorGetCeed(y, &ceed_y));
781     CeedCall(CeedVectorGetCeed(x, &ceed_x));
782     CeedCall(CeedGetParent(ceed_x, &ceed_parent_x));
783     CeedCall(CeedGetParent(ceed_y, &ceed_parent_y));
784     CeedCall(CeedDestroy(&ceed_x));
785     CeedCall(CeedDestroy(&ceed_y));
786     CeedCheck(ceed_parent_x == ceed_parent_y, CeedVectorReturnCeed(y), CEED_ERROR_INCOMPATIBLE,
787               "Vectors x and y must be created by the same Ceed context");
788     CeedCall(CeedDestroy(&ceed_parent_x));
789     CeedCall(CeedDestroy(&ceed_parent_y));
790   }
791 
792   // Return early for empty vectors
793   if (length_y == 0) return CEED_ERROR_SUCCESS;
794 
795   // Backend implementation
796   if (y->AXPY) {
797     CeedCall(y->AXPY(y, alpha, x));
798     return CEED_ERROR_SUCCESS;
799   }
800 
801   // Default implementation
802   CeedCall(CeedVectorGetArray(y, CEED_MEM_HOST, &y_array));
803   CeedCall(CeedVectorGetArrayRead(x, CEED_MEM_HOST, &x_array));
804 
805   assert(x_array);
806   assert(y_array);
807 
808   for (CeedSize i = 0; i < length_y; i++) y_array[i] += alpha * x_array[i];
809 
810   CeedCall(CeedVectorRestoreArray(y, &y_array));
811   CeedCall(CeedVectorRestoreArrayRead(x, &x_array));
812   return CEED_ERROR_SUCCESS;
813 }
814 
815 /**
816   @brief Compute `y = alpha x + beta y`
817 
818   @param[in,out] y     target `CeedVector` for sum
819   @param[in]     alpha first scaling factor
820   @param[in]     beta  second scaling factor
821   @param[in]     x     second `CeedVector`, must be different than `y`
822 
823   @return An error code: 0 - success, otherwise - failure
824 
825   @ref User
826 **/
827 int CeedVectorAXPBY(CeedVector y, CeedScalar alpha, CeedScalar beta, CeedVector x) {
828   bool              has_valid_array_x = true, has_valid_array_y = true;
829   CeedSize          length_x, length_y;
830   CeedScalar       *y_array = NULL;
831   CeedScalar const *x_array = NULL;
832 
833   CeedCall(CeedVectorGetLength(y, &length_y));
834   CeedCall(CeedVectorGetLength(x, &length_x));
835   CeedCheck(length_x == length_y, CeedVectorReturnCeed(y), CEED_ERROR_UNSUPPORTED,
836             "Cannot add vector of different lengths."
837             " x length: %" CeedSize_FMT " y length: %" CeedSize_FMT,
838             length_x, length_y);
839   CeedCheck(x != y, CeedVectorReturnCeed(y), CEED_ERROR_UNSUPPORTED, "Cannot use same vector for x and y in CeedVectorAXPBY");
840 
841   CeedCall(CeedVectorHasValidArray(x, &has_valid_array_x));
842   CeedCheck(has_valid_array_x, CeedVectorReturnCeed(y), CEED_ERROR_BACKEND,
843             "CeedVector x has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
844   CeedCall(CeedVectorHasValidArray(y, &has_valid_array_y));
845   CeedCheck(has_valid_array_y, CeedVectorReturnCeed(y), CEED_ERROR_BACKEND,
846             "CeedVector y has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
847 
848   {
849     Ceed ceed_x, ceed_y, ceed_parent_x, ceed_parent_y;
850 
851     CeedCall(CeedVectorGetCeed(y, &ceed_y));
852     CeedCall(CeedVectorGetCeed(x, &ceed_x));
853     CeedCall(CeedGetParent(ceed_x, &ceed_parent_x));
854     CeedCall(CeedGetParent(ceed_y, &ceed_parent_y));
855     CeedCall(CeedDestroy(&ceed_x));
856     CeedCall(CeedDestroy(&ceed_y));
857     CeedCheck(ceed_parent_x == ceed_parent_y, CeedVectorReturnCeed(y), CEED_ERROR_INCOMPATIBLE,
858               "Vectors x and y must be created by the same Ceed context");
859     CeedCall(CeedDestroy(&ceed_parent_x));
860     CeedCall(CeedDestroy(&ceed_parent_y));
861   }
862 
863   // Return early for empty vectors
864   if (length_y == 0) return CEED_ERROR_SUCCESS;
865 
866   // Backend implementation
867   if (y->AXPBY) {
868     CeedCall(y->AXPBY(y, alpha, beta, x));
869     return CEED_ERROR_SUCCESS;
870   }
871 
872   // Default implementation
873   CeedCall(CeedVectorGetArray(y, CEED_MEM_HOST, &y_array));
874   CeedCall(CeedVectorGetArrayRead(x, CEED_MEM_HOST, &x_array));
875 
876   assert(x_array);
877   assert(y_array);
878 
879   for (CeedSize i = 0; i < length_y; i++) y_array[i] = alpha * x_array[i] + beta * y_array[i];
880 
881   CeedCall(CeedVectorRestoreArray(y, &y_array));
882   CeedCall(CeedVectorRestoreArrayRead(x, &x_array));
883   return CEED_ERROR_SUCCESS;
884 }
885 
886 /**
887   @brief Compute the pointwise multiplication \f$w = x .* y\f$.
888 
889   Any subset of `x`, `y`, and `w` may be the same `CeedVector`.
890 
891   @param[out] w target `CeedVector` for the product
892   @param[in]  x first `CeedVector` for product
893   @param[in]  y second `CeedVector` for the product
894 
895   @return An error code: 0 - success, otherwise - failure
896 
897   @ref User
898 **/
899 int CeedVectorPointwiseMult(CeedVector w, CeedVector x, CeedVector y) {
900   bool              has_valid_array_x = true, has_valid_array_y = true;
901   CeedScalar       *w_array = NULL;
902   CeedScalar const *x_array = NULL, *y_array = NULL;
903   CeedSize          length_w, length_x, length_y;
904 
905   CeedCall(CeedVectorGetLength(w, &length_w));
906   CeedCall(CeedVectorGetLength(x, &length_x));
907   CeedCall(CeedVectorGetLength(y, &length_y));
908   CeedCheck(length_x >= length_w && length_y >= length_w, CeedVectorReturnCeed(w), CEED_ERROR_UNSUPPORTED,
909             "Cannot pointwise multiply vectors of incompatible lengths."
910             " w length: %" CeedSize_FMT " x length: %" CeedSize_FMT " y length: %" CeedSize_FMT,
911             length_w, length_x, length_y);
912 
913   {
914     Ceed ceed_w, ceed_x, ceed_y, ceed_parent_w, ceed_parent_x, ceed_parent_y;
915 
916     CeedCall(CeedVectorGetCeed(w, &ceed_w));
917     CeedCall(CeedVectorGetCeed(x, &ceed_x));
918     CeedCall(CeedVectorGetCeed(y, &ceed_y));
919     CeedCall(CeedGetParent(ceed_w, &ceed_parent_w));
920     CeedCall(CeedGetParent(ceed_x, &ceed_parent_x));
921     CeedCall(CeedGetParent(ceed_y, &ceed_parent_y));
922     CeedCall(CeedDestroy(&ceed_w));
923     CeedCall(CeedDestroy(&ceed_x));
924     CeedCall(CeedDestroy(&ceed_y));
925     CeedCheck(ceed_parent_w == ceed_parent_x && ceed_parent_w == ceed_parent_y, CeedVectorReturnCeed(w), CEED_ERROR_INCOMPATIBLE,
926               "Vectors w, x, and y must be created by the same Ceed context");
927     CeedCall(CeedDestroy(&ceed_parent_w));
928     CeedCall(CeedDestroy(&ceed_parent_x));
929     CeedCall(CeedDestroy(&ceed_parent_y));
930   }
931 
932   CeedCall(CeedVectorHasValidArray(x, &has_valid_array_x));
933   CeedCheck(has_valid_array_x, CeedVectorReturnCeed(w), CEED_ERROR_BACKEND,
934             "CeedVector x has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
935   CeedCall(CeedVectorHasValidArray(y, &has_valid_array_y));
936   CeedCheck(has_valid_array_y, CeedVectorReturnCeed(w), CEED_ERROR_BACKEND,
937             "CeedVector y has no valid data, must set data with CeedVectorSetValue or CeedVectorSetArray");
938 
939   // Return early for empty vectors
940   if (length_w == 0) return CEED_ERROR_SUCCESS;
941 
942   // Backend implementation
943   if (w->PointwiseMult) {
944     CeedCall(w->PointwiseMult(w, x, y));
945     return CEED_ERROR_SUCCESS;
946   }
947 
948   // Default implementation
949   if (x == w || y == w) {
950     CeedCall(CeedVectorGetArray(w, CEED_MEM_HOST, &w_array));
951   } else {
952     CeedCall(CeedVectorGetArrayWrite(w, CEED_MEM_HOST, &w_array));
953   }
954   if (x != w) {
955     CeedCall(CeedVectorGetArrayRead(x, CEED_MEM_HOST, &x_array));
956   } else {
957     x_array = w_array;
958   }
959   if (y != w && y != x) {
960     CeedCall(CeedVectorGetArrayRead(y, CEED_MEM_HOST, &y_array));
961   } else if (y == x) {
962     y_array = x_array;
963   } else if (y == w) {
964     y_array = w_array;
965   }
966 
967   assert(w_array);
968   assert(x_array);
969   assert(y_array);
970 
971   for (CeedSize i = 0; i < length_w; i++) w_array[i] = x_array[i] * y_array[i];
972 
973   if (y != w && y != x) CeedCall(CeedVectorRestoreArrayRead(y, &y_array));
974   if (x != w) CeedCall(CeedVectorRestoreArrayRead(x, &x_array));
975   CeedCall(CeedVectorRestoreArray(w, &w_array));
976   return CEED_ERROR_SUCCESS;
977 }
978 
979 /**
980   @brief Take the reciprocal of a `CeedVector`.
981 
982   @param[in,out] vec `CeedVector` to take reciprocal
983 
984   @return An error code: 0 - success, otherwise - failure
985 
986   @ref User
987 **/
988 int CeedVectorReciprocal(CeedVector vec) {
989   bool        has_valid_array = true;
990   CeedSize    length;
991   CeedScalar *array;
992 
993   CeedCall(CeedVectorHasValidArray(vec, &has_valid_array));
994   CeedCheck(has_valid_array, CeedVectorReturnCeed(vec), CEED_ERROR_BACKEND,
995             "CeedVector has no valid data to compute reciprocal, must set data with CeedVectorSetValue or CeedVectorSetArray");
996 
997   // Check if vector data set
998   CeedCheck(vec->state > 0, CeedVectorReturnCeed(vec), CEED_ERROR_INCOMPLETE, "CeedVector must have data set to take reciprocal");
999 
1000   // Return early for empty vector
1001   CeedCall(CeedVectorGetLength(vec, &length));
1002   if (length == 0) return CEED_ERROR_SUCCESS;
1003 
1004   // Backend impl for GPU, if added
1005   if (vec->Reciprocal) {
1006     CeedCall(vec->Reciprocal(vec));
1007     return CEED_ERROR_SUCCESS;
1008   }
1009 
1010   CeedCall(CeedVectorGetArray(vec, CEED_MEM_HOST, &array));
1011   for (CeedSize i = 0; i < length; i++) {
1012     if (fabs(array[i]) > CEED_EPSILON) array[i] = 1. / array[i];
1013   }
1014 
1015   CeedCall(CeedVectorRestoreArray(vec, &array));
1016   return CEED_ERROR_SUCCESS;
1017 }
1018 
1019 /**
1020   @brief Set the number of tabs to indent for @ref CeedVectorView() output
1021 
1022   @param[in] vec      `CeedVector` to set the number of view tabs
1023   @param[in] num_tabs Number of view tabs to set
1024 
1025   @return Error code: 0 - success, otherwise - failure
1026 
1027   @ref User
1028 **/
1029 int CeedVectorSetNumViewTabs(CeedVector vec, CeedInt num_tabs) {
1030   CeedCheck(num_tabs >= 0, CeedVectorReturnCeed(vec), CEED_ERROR_MINOR, "Number of view tabs must be non-negative");
1031   vec->num_tabs = num_tabs;
1032   return CEED_ERROR_SUCCESS;
1033 }
1034 
1035 /**
1036   @brief Get the number of tabs to indent for @ref CeedVectorView() output
1037 
1038   @param[in]  vec      `CeedVector` to get the number of view tabs
1039   @param[out] num_tabs Number of view tabs
1040 
1041   @return Error code: 0 - success, otherwise - failure
1042 
1043   @ref User
1044 **/
1045 int CeedVectorGetNumViewTabs(CeedVector vec, CeedInt *num_tabs) {
1046   *num_tabs = vec->num_tabs;
1047   return CEED_ERROR_SUCCESS;
1048 }
1049 
1050 /**
1051   @brief View a `CeedVector`
1052 
1053   Note: It is safe to use any unsigned values for `start` or `stop` and any nonzero integer for `step`.
1054         Any portion of the provided range that is outside the range of valid indices for the `CeedVector` will be ignored.
1055 
1056   @param[in] vec    `CeedVector` to view
1057   @param[in] start  Index of first `CeedVector` entry to view in the range `[start, stop)`
1058   @param[in] stop   One past the last element to view in the range, or `-1` for `length`
1059   @param[in] step   Step between `CeedVector` entries to view
1060   @param[in] fp_fmt Printing format
1061   @param[in] stream Filestream to write to
1062 
1063   @return An error code: 0 - success, otherwise - failure
1064 
1065   @ref User
1066 **/
1067 int CeedVectorViewRange(CeedVector vec, CeedSize start, CeedSize stop, CeedInt step, const char *fp_fmt, FILE *stream) {
1068   char              fmt[1024];
1069   char             *tabs = NULL;
1070   CeedSize          length;
1071   const CeedScalar *x;
1072 
1073   CeedCheck(step != 0, CeedVectorReturnCeed(vec), CEED_ERROR_MINOR, "View range 'step' must be nonzero");
1074 
1075   {
1076     CeedInt num_tabs = 0;
1077 
1078     CeedCall(CeedVectorGetNumViewTabs(vec, &num_tabs));
1079     CeedCall(CeedCalloc(CEED_TAB_WIDTH * num_tabs + 1, &tabs));
1080     for (CeedInt i = 0; i < CEED_TAB_WIDTH * num_tabs; i++) tabs[i] = ' ';
1081   }
1082 
1083   CeedCall(CeedVectorGetLength(vec, &length));
1084   fprintf(stream, "%sCeedVector length %" CeedSize_FMT "\n", tabs, length);
1085   if (start != 0 || stop != length || step != 1) {
1086     fprintf(stream, "%s  start: %" CeedSize_FMT "\n%s  stop:  %" CeedSize_FMT "\n%s  step:  %" CeedInt_FMT "\n", tabs, start, tabs, stop, tabs, step);
1087   }
1088   if (start > length) start = length;
1089   if (stop == -1 || stop > length) stop = length;
1090 
1091   snprintf(fmt, sizeof fmt, "%s  %s\n", tabs, fp_fmt ? fp_fmt : "%g");
1092   CeedCall(CeedVectorGetArrayRead(vec, CEED_MEM_HOST, &x));
1093   for (CeedSize i = start; step > 0 ? (i < stop) : (i > stop); i += step) fprintf(stream, fmt, x[i]);
1094   CeedCall(CeedVectorRestoreArrayRead(vec, &x));
1095   if (stop != length) fprintf(stream, "%s  ...\n", tabs);
1096   CeedCall(CeedFree(&tabs));
1097   return CEED_ERROR_SUCCESS;
1098 }
1099 
1100 /**
1101   @brief View a `CeedVector`
1102 
1103   @param[in] vec    `CeedVector` to view
1104   @param[in] fp_fmt Printing format
1105   @param[in] stream Filestream to write to
1106 
1107   @return An error code: 0 - success, otherwise - failure
1108 
1109   @ref User
1110 **/
1111 int CeedVectorView(CeedVector vec, const char *fp_fmt, FILE *stream) {
1112   CeedSize length;
1113 
1114   CeedCall(CeedVectorGetLength(vec, &length));
1115   CeedCall(CeedVectorViewRange(vec, 0, length, 1, fp_fmt, stream));
1116   return CEED_ERROR_SUCCESS;
1117 }
1118 
1119 /**
1120   @brief Get the `Ceed` associated with a `CeedVector`
1121 
1122   @param[in]  vec  `CeedVector` to retrieve state
1123   @param[out] ceed Variable to store `Ceed`
1124 
1125   @return An error code: 0 - success, otherwise - failure
1126 
1127   @ref Advanced
1128 **/
1129 int CeedVectorGetCeed(CeedVector vec, Ceed *ceed) {
1130   CeedCall(CeedObjectGetCeed((CeedObject)vec, ceed));
1131   return CEED_ERROR_SUCCESS;
1132 }
1133 
1134 /**
1135   @brief Return the `Ceed` associated with a `CeedVector`
1136 
1137   @param[in]  vec  `CeedVector` to retrieve state
1138 
1139   @return `Ceed` associated with the `vec`
1140 
1141   @ref Advanced
1142 **/
1143 Ceed CeedVectorReturnCeed(CeedVector vec) { return CeedObjectReturnCeed((CeedObject)vec); }
1144 
1145 /**
1146   @brief Get the length of a `CeedVector`
1147 
1148   @param[in]  vec    `CeedVector` to retrieve length
1149   @param[out] length Variable to store length
1150 
1151   @return An error code: 0 - success, otherwise - failure
1152 
1153   @ref User
1154 **/
1155 int CeedVectorGetLength(CeedVector vec, CeedSize *length) {
1156   *length = vec->length;
1157   return CEED_ERROR_SUCCESS;
1158 }
1159 
1160 /**
1161   @brief Destroy a `CeedVector`
1162 
1163   @param[in,out] vec `CeedVector` to destroy
1164 
1165   @return An error code: 0 - success, otherwise - failure
1166 
1167   @ref User
1168 **/
1169 int CeedVectorDestroy(CeedVector *vec) {
1170   if (!*vec || *vec == CEED_VECTOR_ACTIVE || *vec == CEED_VECTOR_NONE || CeedObjectDereference((CeedObject)*vec) > 0) {
1171     *vec = NULL;
1172     return CEED_ERROR_SUCCESS;
1173   }
1174   CeedCheck((*vec)->state % 2 == 0, CeedVectorReturnCeed(*vec), CEED_ERROR_ACCESS, "Cannot destroy CeedVector, the writable access lock is in use");
1175   CeedCheck((*vec)->num_readers == 0, CeedVectorReturnCeed(*vec), CEED_ERROR_ACCESS, "Cannot destroy CeedVector, a process has read access");
1176 
1177   if ((*vec)->Destroy) CeedCall((*vec)->Destroy(*vec));
1178   CeedCall(CeedObjectDestroy(&(*vec)->obj));
1179   CeedCall(CeedFree(vec));
1180   return CEED_ERROR_SUCCESS;
1181 }
1182 
1183 /// @}
1184