xref: /libCEED/interface/ceed.c (revision f36e753100926c940e21f506e95c0b0794520501)
1 // Copyright (c) 2017-2025, 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 #define _POSIX_C_SOURCE 200112
9 #include <ceed-impl.h>
10 #include <ceed.h>
11 #include <ceed/backend.h>
12 #include <limits.h>
13 #include <stdarg.h>
14 #include <stdbool.h>
15 #include <stddef.h>
16 #include <stdio.h>
17 #include <stdlib.h>
18 #include <string.h>
19 
20 /// @cond DOXYGEN_SKIP
21 static CeedRequest ceed_request_immediate;
22 static CeedRequest ceed_request_ordered;
23 
24 static struct {
25   char prefix[CEED_MAX_RESOURCE_LEN];
26   int (*init)(const char *resource, Ceed f);
27   unsigned int priority;
28 } backends[32];
29 static size_t num_backends;
30 
31 #define CEED_FTABLE_ENTRY(class, method) {#class #method, offsetof(struct class##_private, method)}
32 /// @endcond
33 
34 /// @file
35 /// Implementation of core components of Ceed library
36 
37 /// @addtogroup CeedUser
38 /// @{
39 
40 /**
41   @brief Request immediate completion
42 
43   This predefined constant is passed as the @ref CeedRequest argument to interfaces when the caller wishes for the operation to be performed immediately.
44   The code
45 
46   @code
47     CeedOperatorApply(op, ..., CEED_REQUEST_IMMEDIATE);
48   @endcode
49 
50   is semantically equivalent to
51 
52   @code
53     CeedRequest request;
54     CeedOperatorApply(op, ..., &request);
55     CeedRequestWait(&request);
56   @endcode
57 
58   @sa CEED_REQUEST_ORDERED
59 **/
60 CeedRequest *const CEED_REQUEST_IMMEDIATE = &ceed_request_immediate;
61 
62 /**
63   @brief Request ordered completion
64 
65   This predefined constant is passed as the @ref CeedRequest argument to interfaces when the caller wishes for the operation to be completed in the order that it is submitted to the device.
66   It is typically used in a construct such as:
67 
68   @code
69     CeedRequest request;
70     CeedOperatorApply(op1, ..., CEED_REQUEST_ORDERED);
71     CeedOperatorApply(op2, ..., &request);
72     // other optional work
73     CeedRequestWait(&request);
74   @endcode
75 
76   which allows the sequence to complete asynchronously but does not start `op2` until `op1` has completed.
77 
78   @todo The current implementation is overly strict, offering equivalent semantics to @ref CEED_REQUEST_IMMEDIATE.
79 
80   @sa CEED_REQUEST_IMMEDIATE
81  */
82 CeedRequest *const CEED_REQUEST_ORDERED = &ceed_request_ordered;
83 
84 /**
85   @brief Wait for a @ref CeedRequest to complete.
86 
87   Calling @ref CeedRequestWait() on a `NULL` request is a no-op.
88 
89   @param[in,out] req Address of @ref CeedRequest to wait for; zeroed on completion.
90 
91   @return An error code: 0 - success, otherwise - failure
92 
93   @ref User
94 **/
95 int CeedRequestWait(CeedRequest *req) {
96   if (!*req) return CEED_ERROR_SUCCESS;
97   return CeedError(NULL, CEED_ERROR_UNSUPPORTED, "CeedRequestWait not implemented");
98 }
99 
100 /// @}
101 
102 /// ----------------------------------------------------------------------------
103 /// Ceed Library Internal Functions
104 /// ----------------------------------------------------------------------------
105 /// @addtogroup CeedDeveloper
106 /// @{
107 
108 /**
109   @brief Register a Ceed backend internally.
110 
111   Note: Backends should call @ref CeedRegister() instead.
112 
113   @param[in] prefix   Prefix of resources for this backend to respond to.
114                         For example, the reference backend responds to "/cpu/self".
115   @param[in] init     Initialization function called by @ref CeedInit() when the backend is selected to drive the requested resource
116   @param[in] priority Integer priority.
117                         Lower values are preferred in case the resource requested by @ref CeedInit() has non-unique best prefix match.
118 
119   @return An error code: 0 - success, otherwise - failure
120 
121   @ref Developer
122 **/
123 int CeedRegisterImpl(const char *prefix, int (*init)(const char *, Ceed), unsigned int priority) {
124   int ierr = 0;
125 
126   CeedPragmaCritical(CeedRegisterImpl) {
127     if (num_backends < sizeof(backends) / sizeof(backends[0])) {
128       strncpy(backends[num_backends].prefix, prefix, CEED_MAX_RESOURCE_LEN);
129       backends[num_backends].prefix[CEED_MAX_RESOURCE_LEN - 1] = 0;
130       backends[num_backends].init                              = init;
131       backends[num_backends].priority                          = priority;
132       num_backends++;
133     } else {
134       ierr = 1;
135     }
136   }
137   CeedCheck(ierr == 0, NULL, CEED_ERROR_MAJOR, "Too many backends");
138   return CEED_ERROR_SUCCESS;
139 }
140 
141 /**
142   @brief Create a work vector space for a `ceed`
143 
144   @param[in,out] ceed `Ceed` to create work vector space for
145 
146   @return An error code: 0 - success, otherwise - failure
147 
148   @ref Developer
149 **/
150 static int CeedWorkVectorsCreate(Ceed ceed) {
151   CeedCall(CeedCalloc(1, &ceed->work_vectors));
152   return CEED_ERROR_SUCCESS;
153 }
154 
155 /**
156   @brief Destroy a work vector space for a `ceed`
157 
158   @param[in,out] ceed `Ceed` to destroy work vector space for
159 
160   @return An error code: 0 - success, otherwise - failure
161 
162   @ref Developer
163 **/
164 static int CeedWorkVectorsDestroy(Ceed ceed) {
165   if (!ceed->work_vectors) return CEED_ERROR_SUCCESS;
166   for (CeedSize i = 0; i < ceed->work_vectors->num_vecs; i++) {
167     CeedCheck(!ceed->work_vectors->is_in_use[i], ceed, CEED_ERROR_ACCESS, "Work vector %" CeedSize_FMT " checked out but not returned");
168     ceed->ref_count += 2;  // Note: increase ref_count to prevent Ceed destructor from triggering again
169     CeedCall(CeedVectorDestroy(&ceed->work_vectors->vecs[i]));
170     ceed->ref_count -= 1;  // Note: restore ref_count
171   }
172   CeedCall(CeedFree(&ceed->work_vectors->is_in_use));
173   CeedCall(CeedFree(&ceed->work_vectors->vecs));
174   CeedCall(CeedFree(&ceed->work_vectors));
175   return CEED_ERROR_SUCCESS;
176 }
177 
178 /// @}
179 
180 /// ----------------------------------------------------------------------------
181 /// Ceed Backend API
182 /// ----------------------------------------------------------------------------
183 /// @addtogroup CeedBackend
184 /// @{
185 
186 /**
187   @brief Return value of `CEED_DEBUG` environment variable
188 
189   @param[in] ceed `Ceed` context
190 
191   @return Boolean value: true  - debugging mode enabled
192                          false - debugging mode disabled
193 
194   @ref Backend
195 **/
196 // LCOV_EXCL_START
197 bool CeedDebugFlag(const Ceed ceed) { return ceed->is_debug; }
198 // LCOV_EXCL_STOP
199 
200 /**
201   @brief Return value of `CEED_DEBUG` environment variable
202 
203   @return Boolean value: true  - debugging mode enabled
204                          false - debugging mode disabled
205 
206   @ref Backend
207 **/
208 // LCOV_EXCL_START
209 bool CeedDebugFlagEnv(void) { return getenv("CEED_DEBUG") || getenv("DEBUG") || getenv("DBG"); }
210 // LCOV_EXCL_STOP
211 
212 /**
213   @brief Print debugging information in color
214 
215   @param[in] color  Color to print
216   @param[in] format Printing format
217 
218   @ref Backend
219 **/
220 // LCOV_EXCL_START
221 void CeedDebugImpl256(const unsigned char color, const char *format, ...) {
222   va_list args;
223   va_start(args, format);
224   fflush(stdout);
225   if (color != CEED_DEBUG_COLOR_NONE) fprintf(stdout, "\033[38;5;%dm", color);
226   vfprintf(stdout, format, args);
227   if (color != CEED_DEBUG_COLOR_NONE) fprintf(stdout, "\033[m");
228   fprintf(stdout, "\n");
229   fflush(stdout);
230   va_end(args);
231 }
232 // LCOV_EXCL_STOP
233 
234 /**
235   @brief Allocate an array on the host; use @ref CeedMalloc().
236 
237   Memory usage can be tracked by the library.
238   This ensures sufficient alignment for vectorization and should be used for large allocations.
239 
240   @param[in]  n    Number of units to allocate
241   @param[in]  unit Size of each unit
242   @param[out] p    Address of pointer to hold the result
243 
244   @return An error code: 0 - success, otherwise - failure
245 
246   @ref Backend
247 
248   @sa CeedFree()
249 **/
250 int CeedMallocArray(size_t n, size_t unit, void *p) {
251   int ierr = posix_memalign((void **)p, CEED_ALIGN, n * unit);
252   CeedCheck(ierr == 0, NULL, CEED_ERROR_MAJOR, "posix_memalign failed to allocate %zd members of size %zd\n", n, unit);
253   return CEED_ERROR_SUCCESS;
254 }
255 
256 /**
257   @brief Allocate a cleared (zeroed) array on the host; use @ref CeedCalloc().
258 
259   Memory usage can be tracked by the library.
260 
261   @param[in]  n    Number of units to allocate
262   @param[in]  unit Size of each unit
263   @param[out] p    Address of pointer to hold the result
264 
265   @return An error code: 0 - success, otherwise - failure
266 
267   @ref Backend
268 
269   @sa CeedFree()
270 **/
271 int CeedCallocArray(size_t n, size_t unit, void *p) {
272   *(void **)p = calloc(n, unit);
273   CeedCheck(!n || !unit || *(void **)p, NULL, CEED_ERROR_MAJOR, "calloc failed to allocate %zd members of size %zd\n", n, unit);
274   return CEED_ERROR_SUCCESS;
275 }
276 
277 /**
278   @brief Reallocate an array on the host; use @ref CeedRealloc().
279 
280   Memory usage can be tracked by the library.
281 
282   @param[in]  n    Number of units to allocate
283   @param[in]  unit Size of each unit
284   @param[out] p    Address of pointer to hold the result
285 
286   @return An error code: 0 - success, otherwise - failure
287 
288   @ref Backend
289 
290   @sa CeedFree()
291 **/
292 int CeedReallocArray(size_t n, size_t unit, void *p) {
293   *(void **)p = realloc(*(void **)p, n * unit);
294   CeedCheck(!n || !unit || *(void **)p, NULL, CEED_ERROR_MAJOR, "realloc failed to allocate %zd members of size %zd\n", n, unit);
295   return CEED_ERROR_SUCCESS;
296 }
297 
298 /**
299   @brief Allocate a cleared string buffer on the host.
300 
301   Memory usage can be tracked by the library.
302 
303   @param[in]  source Pointer to string to be copied
304   @param[out] copy   Pointer to variable to hold newly allocated string copy
305 
306   @return An error code: 0 - success, otherwise - failure
307 
308   @ref Backend
309 
310   @sa CeedFree()
311 **/
312 int CeedStringAllocCopy(const char *source, char **copy) {
313   size_t len = strlen(source);
314   CeedCall(CeedCalloc(len + 1, copy));
315   memcpy(*copy, source, len);
316   return CEED_ERROR_SUCCESS;
317 }
318 
319 /** Free memory allocated using @ref CeedMalloc() or @ref CeedCalloc()
320 
321   @param[in,out] p Address of pointer to memory.
322                      This argument is of type `void*` to avoid needing a cast, but is the address of the pointer (which is zeroed) rather than the pointer.
323 
324   @return An error code: 0 - success, otherwise - failure
325 
326   @ref Backend
327 **/
328 int CeedFree(void *p) {
329   free(*(void **)p);
330   *(void **)p = NULL;
331   return CEED_ERROR_SUCCESS;
332 }
333 
334 /** Internal helper to manage handoff of user `source_array` to backend with proper @ref CeedCopyMode behavior.
335 
336   @param[in]     source_array          Source data provided by user
337   @param[in]     copy_mode             Copy mode for the data
338   @param[in]     num_values            Number of values to handle
339   @param[in]     size_unit             Size of array element in bytes
340   @param[in,out] target_array_owned    Pointer to location to allocated or hold owned data, may be freed if already allocated
341   @param[out]    target_array_borrowed Pointer to location to hold borrowed data
342   @param[out]    target_array          Pointer to location for data
343 
344   @return An error code: 0 - success, otherwise - failure
345 
346   @ref Backend
347 **/
348 static inline int CeedSetHostGenericArray(const void *source_array, CeedCopyMode copy_mode, size_t size_unit, CeedSize num_values,
349                                           void *target_array_owned, void *target_array_borrowed, void *target_array) {
350   switch (copy_mode) {
351     case CEED_COPY_VALUES:
352       if (!*(void **)target_array) {
353         if (*(void **)target_array_borrowed) {
354           *(void **)target_array = *(void **)target_array_borrowed;
355         } else {
356           if (!*(void **)target_array_owned) CeedCall(CeedCallocArray(num_values, size_unit, target_array_owned));
357           *(void **)target_array = *(void **)target_array_owned;
358         }
359       }
360       if (source_array) memcpy(*(void **)target_array, source_array, size_unit * num_values);
361       break;
362     case CEED_OWN_POINTER:
363       CeedCall(CeedFree(target_array_owned));
364       *(void **)target_array_owned    = (void *)source_array;
365       *(void **)target_array_borrowed = NULL;
366       *(void **)target_array          = *(void **)target_array_owned;
367       break;
368     case CEED_USE_POINTER:
369       CeedCall(CeedFree(target_array_owned));
370       *(void **)target_array_owned    = NULL;
371       *(void **)target_array_borrowed = (void *)source_array;
372       *(void **)target_array          = *(void **)target_array_borrowed;
373   }
374   return CEED_ERROR_SUCCESS;
375 }
376 
377 /** Manage handoff of user `bool` `source_array` to backend with proper @ref CeedCopyMode behavior.
378 
379   @param[in]     source_array          Source data provided by user
380   @param[in]     copy_mode             Copy mode for the data
381   @param[in]     num_values            Number of values to handle
382   @param[in,out] target_array_owned    Pointer to location to allocated or hold owned data, may be freed if already allocated
383   @param[out]    target_array_borrowed Pointer to location to hold borrowed data
384   @param[out]    target_array          Pointer to location for data
385 
386   @return An error code: 0 - success, otherwise - failure
387 
388   @ref Backend
389 **/
390 int CeedSetHostBoolArray(const bool *source_array, CeedCopyMode copy_mode, CeedSize num_values, const bool **target_array_owned,
391                          const bool **target_array_borrowed, const bool **target_array) {
392   CeedCall(CeedSetHostGenericArray(source_array, copy_mode, sizeof(bool), num_values, target_array_owned, target_array_borrowed, target_array));
393   return CEED_ERROR_SUCCESS;
394 }
395 
396 /** Manage handoff of user `CeedInt8` `source_array` to backend with proper @ref CeedCopyMode behavior.
397 
398   @param[in]     source_array          Source data provided by user
399   @param[in]     copy_mode             Copy mode for the data
400   @param[in]     num_values            Number of values to handle
401   @param[in,out] target_array_owned    Pointer to location to allocated or hold owned data, may be freed if already allocated
402   @param[out]    target_array_borrowed Pointer to location to hold borrowed data
403   @param[out]    target_array          Pointer to location for data
404 
405   @return An error code: 0 - success, otherwise - failure
406 
407   @ref Backend
408 **/
409 int CeedSetHostCeedInt8Array(const CeedInt8 *source_array, CeedCopyMode copy_mode, CeedSize num_values, const CeedInt8 **target_array_owned,
410                              const CeedInt8 **target_array_borrowed, const CeedInt8 **target_array) {
411   CeedCall(CeedSetHostGenericArray(source_array, copy_mode, sizeof(CeedInt8), num_values, target_array_owned, target_array_borrowed, target_array));
412   return CEED_ERROR_SUCCESS;
413 }
414 
415 /** Manage handoff of user `CeedInt` `source_array` to backend with proper @ref CeedCopyMode behavior.
416 
417   @param[in]     source_array          Source data provided by user
418   @param[in]     copy_mode             Copy mode for the data
419   @param[in]     num_values            Number of values to handle
420   @param[in,out] target_array_owned    Pointer to location to allocated or hold owned data, may be freed if already allocated
421   @param[out]    target_array_borrowed Pointer to location to hold borrowed data
422   @param[out]    target_array          Pointer to location for data
423 
424   @return An error code: 0 - success, otherwise - failure
425 
426   @ref Backend
427 **/
428 int CeedSetHostCeedIntArray(const CeedInt *source_array, CeedCopyMode copy_mode, CeedSize num_values, const CeedInt **target_array_owned,
429                             const CeedInt **target_array_borrowed, const CeedInt **target_array) {
430   CeedCall(CeedSetHostGenericArray(source_array, copy_mode, sizeof(CeedInt), num_values, target_array_owned, target_array_borrowed, target_array));
431   return CEED_ERROR_SUCCESS;
432 }
433 
434 /** Manage handoff of user `CeedScalar` `source_array` to backend with proper @ref CeedCopyMode behavior.
435 
436   @param[in]     source_array          Source data provided by user
437   @param[in]     copy_mode             Copy mode for the data
438   @param[in]     num_values            Number of values to handle
439   @param[in,out] target_array_owned    Pointer to location to allocated or hold owned data, may be freed if already allocated
440   @param[out]    target_array_borrowed Pointer to location to hold borrowed data
441   @param[out]    target_array          Pointer to location for data
442 
443   @return An error code: 0 - success, otherwise - failure
444 
445   @ref Backend
446 **/
447 int CeedSetHostCeedScalarArray(const CeedScalar *source_array, CeedCopyMode copy_mode, CeedSize num_values, const CeedScalar **target_array_owned,
448                                const CeedScalar **target_array_borrowed, const CeedScalar **target_array) {
449   CeedCall(CeedSetHostGenericArray(source_array, copy_mode, sizeof(CeedScalar), num_values, target_array_owned, target_array_borrowed, target_array));
450   return CEED_ERROR_SUCCESS;
451 }
452 
453 /**
454   @brief Register a `Ceed` backend
455 
456   @param[in] prefix   Prefix of resources for this backend to respond to.
457                         For example, the reference backend responds to "/cpu/self".
458   @param[in] init     Initialization function called by @ref CeedInit() when the backend is selected to drive the requested resource
459   @param[in] priority Integer priority.
460                         Lower values are preferred in case the resource requested by @ref CeedInit() has non-unique best prefix match.
461 
462   @return An error code: 0 - success, otherwise - failure
463 
464   @ref Backend
465 **/
466 int CeedRegister(const char *prefix, int (*init)(const char *, Ceed), unsigned int priority) {
467   CeedDebugEnv("Backend Register: %s", prefix);
468   CeedRegisterImpl(prefix, init, priority);
469   return CEED_ERROR_SUCCESS;
470 }
471 
472 /**
473   @brief Return debugging status flag
474 
475   @param[in]  ceed     `Ceed` context to get debugging flag
476   @param[out] is_debug Variable to store debugging flag
477 
478   @return An error code: 0 - success, otherwise - failure
479 
480   @ref Backend
481 **/
482 int CeedIsDebug(Ceed ceed, bool *is_debug) {
483   *is_debug = ceed->is_debug;
484   return CEED_ERROR_SUCCESS;
485 }
486 
487 /**
488   @brief Get the root of the requested resource.
489 
490   Note: Caller is responsible for calling @ref CeedFree() on the `resource_root`.
491 
492   @param[in]  ceed          `Ceed` context to get resource name of
493   @param[in]  resource      Full user specified resource
494   @param[in]  delineator    Delineator to break `resource_root` and `resource_spec`
495   @param[out] resource_root Variable to store resource root
496 
497   @return An error code: 0 - success, otherwise - failure
498 
499   @ref Backend
500 **/
501 int CeedGetResourceRoot(Ceed ceed, const char *resource, const char *delineator, char **resource_root) {
502   char  *device_spec       = strstr(resource, delineator);
503   size_t resource_root_len = device_spec ? (size_t)(device_spec - resource) + 1 : strlen(resource) + 1;
504 
505   CeedCall(CeedCalloc(resource_root_len, resource_root));
506   memcpy(*resource_root, resource, resource_root_len - 1);
507   return CEED_ERROR_SUCCESS;
508 }
509 
510 /**
511   @brief Retrieve a parent `Ceed` context
512 
513   @param[in]  ceed   `Ceed` context to retrieve parent of
514   @param[out] parent Address to save the parent to
515 
516   @return An error code: 0 - success, otherwise - failure
517 
518   @ref Backend
519 **/
520 int CeedGetParent(Ceed ceed, Ceed *parent) {
521   if (ceed->parent) {
522     CeedCall(CeedGetParent(ceed->parent, parent));
523     return CEED_ERROR_SUCCESS;
524   }
525   *parent = NULL;
526   CeedCall(CeedReferenceCopy(ceed, parent));
527   return CEED_ERROR_SUCCESS;
528 }
529 
530 /**
531   @brief Retrieve a delegate `Ceed` context
532 
533   @param[in]  ceed     `Ceed` context to retrieve delegate of
534   @param[out] delegate Address to save the delegate to
535 
536   @return An error code: 0 - success, otherwise - failure
537 
538   @ref Backend
539 **/
540 int CeedGetDelegate(Ceed ceed, Ceed *delegate) {
541   *delegate = NULL;
542   if (ceed->delegate) CeedCall(CeedReferenceCopy(ceed->delegate, delegate));
543   return CEED_ERROR_SUCCESS;
544 }
545 
546 /**
547   @brief Set a delegate `Ceed` context
548 
549   This function allows a `Ceed` context to set a delegate `Ceed` context.
550   All backend implementations default to the delegate `Ceed` context, unless overridden.
551 
552   @param[in]  ceed     `Ceed` context to set delegate of
553   @param[out] delegate Address to set the delegate to
554 
555   @return An error code: 0 - success, otherwise - failure
556 
557   @ref Backend
558 **/
559 int CeedSetDelegate(Ceed ceed, Ceed delegate) {
560   CeedCall(CeedReferenceCopy(delegate, &ceed->delegate));
561   delegate->parent = ceed;
562   return CEED_ERROR_SUCCESS;
563 }
564 
565 /**
566   @brief Retrieve a delegate `Ceed` context for a specific object type
567 
568   @param[in]  ceed     `Ceed` context to retrieve delegate of
569   @param[out] delegate Address to save the delegate to
570   @param[in]  obj_name Name of the object type to retrieve delegate for
571 
572   @return An error code: 0 - success, otherwise - failure
573 
574   @ref Backend
575 **/
576 int CeedGetObjectDelegate(Ceed ceed, Ceed *delegate, const char *obj_name) {
577   // Check for object delegate
578   for (CeedInt i = 0; i < ceed->obj_delegate_count; i++) {
579     if (!strcmp(obj_name, ceed->obj_delegates->obj_name)) {
580       *delegate = NULL;
581       CeedCall(CeedReferenceCopy(ceed->obj_delegates->delegate, delegate));
582       return CEED_ERROR_SUCCESS;
583     }
584   }
585 
586   // Use default delegate if no object delegate
587   CeedCall(CeedGetDelegate(ceed, delegate));
588   return CEED_ERROR_SUCCESS;
589 }
590 
591 /**
592   @brief Set a delegate `Ceed` context for a specific object type
593 
594   This function allows a `Ceed` context to set a delegate `Ceed` context for a given type of `Ceed` object.
595   All backend implementations default to the delegate `Ceed` context for this object.
596   For example, `CeedSetObjectDelegate(ceed, delegate, "Basis")` uses delegate implementations for all `CeedBasis` backend functions.
597 
598   @param[in,out] ceed     `Ceed` context to set delegate of
599   @param[in]     delegate `Ceed` context to use for delegation
600   @param[in]     obj_name Name of the object type to set delegate for
601 
602   @return An error code: 0 - success, otherwise - failure
603 
604   @ref Backend
605 **/
606 int CeedSetObjectDelegate(Ceed ceed, Ceed delegate, const char *obj_name) {
607   CeedInt count = ceed->obj_delegate_count;
608 
609   // Malloc or Realloc
610   if (count) {
611     CeedCall(CeedRealloc(count + 1, &ceed->obj_delegates));
612   } else {
613     CeedCall(CeedCalloc(1, &ceed->obj_delegates));
614   }
615   ceed->obj_delegate_count++;
616 
617   // Set object delegate
618   CeedCall(CeedReferenceCopy(delegate, &ceed->obj_delegates[count].delegate));
619   CeedCall(CeedStringAllocCopy(obj_name, &ceed->obj_delegates[count].obj_name));
620 
621   // Set delegate parent
622   delegate->parent = ceed;
623   return CEED_ERROR_SUCCESS;
624 }
625 
626 /**
627   @brief Get the fallback `Ceed` for `CeedOperator`
628 
629   @param[in]  ceed          `Ceed` context
630   @param[out] fallback_ceed Variable to store fallback `Ceed`
631 
632   @return An error code: 0 - success, otherwise - failure
633 
634   @ref Backend
635 **/
636 int CeedGetOperatorFallbackCeed(Ceed ceed, Ceed *fallback_ceed) {
637   if (ceed->op_fallback_ceed) {
638     CeedDebug256(ceed, CEED_DEBUG_COLOR_SUCCESS, "---------- Ceed Fallback ----------\n");
639     CeedDebug(ceed, "Falling back from Ceed with backend %s at address %p to Ceed with backend %s at address %p", ceed->resource, ceed,
640               ceed->op_fallback_ceed->resource, ceed->op_fallback_ceed);
641   }
642 
643   *fallback_ceed = NULL;
644   if (ceed->op_fallback_ceed) CeedCall(CeedReferenceCopy(ceed->op_fallback_ceed, fallback_ceed));
645   return CEED_ERROR_SUCCESS;
646 }
647 
648 /**
649   @brief Set the fallback resource for `CeedOperator`.
650 
651   The current fallback, if any, is freed by calling this function.
652 
653   @param[in,out] ceed          `Ceed` context
654   @param[in]     fallback_ceed `Ceed` context to create fallback operators
655 
656   @return An error code: 0 - success, otherwise - failure
657 
658   @ref Backend
659 **/
660 int CeedSetOperatorFallbackCeed(Ceed ceed, Ceed fallback_ceed) {
661   CeedCall(CeedReferenceCopy(fallback_ceed, &ceed->op_fallback_ceed));
662   fallback_ceed->parent = ceed;
663   return CEED_ERROR_SUCCESS;
664 }
665 
666 /**
667   @brief Flag `Ceed` context as deterministic
668 
669   @param[in]  ceed             `Ceed` to flag as deterministic
670   @param[out] is_deterministic Deterministic status to set
671 
672   @return An error code: 0 - success, otherwise - failure
673 
674   @ref Backend
675 **/
676 int CeedSetDeterministic(Ceed ceed, bool is_deterministic) {
677   ceed->is_deterministic = is_deterministic;
678   return CEED_ERROR_SUCCESS;
679 }
680 
681 /**
682   @brief Set a backend function.
683 
684   This function is used for a backend to set the function associated with the Ceed objects.
685   For example, `CeedSetBackendFunction(ceed, "Ceed", ceed, "VectorCreate", BackendVectorCreate)` sets the backend implementation of @ref CeedVectorCreate() and `CeedSetBackendFunction(ceed, "Basis", basis, "Apply", BackendBasisApply)` sets the backend implementation of @ref CeedBasisApply().
686   Note, the prefix 'Ceed' is not required for the object type ("Basis" vs "CeedBasis").
687 
688   @param[in]  ceed      `Ceed` context for error handling
689   @param[in]  type      Type of Ceed object to set function for
690   @param[out] object    Ceed object to set function for
691   @param[in]  func_name Name of function to set
692   @param[in]  f         Function to set
693 
694   @return An error code: 0 - success, otherwise - failure
695 
696   @ref Backend
697 **/
698 int CeedSetBackendFunctionImpl(Ceed ceed, const char *type, void *object, const char *func_name, void (*f)(void)) {
699   char lookup_name[CEED_MAX_RESOURCE_LEN + 1] = "";
700 
701   // Build lookup name
702   if (strcmp(type, "Ceed")) strncat(lookup_name, "Ceed", CEED_MAX_RESOURCE_LEN);
703   strncat(lookup_name, type, CEED_MAX_RESOURCE_LEN);
704   strncat(lookup_name, func_name, CEED_MAX_RESOURCE_LEN);
705 
706   // Find and use offset
707   for (CeedInt i = 0; ceed->f_offsets[i].func_name; i++) {
708     if (!strcmp(ceed->f_offsets[i].func_name, lookup_name)) {
709       size_t offset          = ceed->f_offsets[i].offset;
710       int (**fpointer)(void) = (int (**)(void))((char *)object + offset);  // *NOPAD*
711 
712       *fpointer = (int (*)(void))f;
713       return CEED_ERROR_SUCCESS;
714     }
715   }
716 
717   // LCOV_EXCL_START
718   return CeedError(ceed, CEED_ERROR_UNSUPPORTED, "Requested function '%s' was not found for CEED object '%s'", func_name, type);
719   // LCOV_EXCL_STOP
720 }
721 
722 /**
723   @brief Retrieve backend data for a `Ceed` context
724 
725   @param[in]  ceed `Ceed` context to retrieve data of
726   @param[out] data Address to save data to
727 
728   @return An error code: 0 - success, otherwise - failure
729 
730   @ref Backend
731 **/
732 int CeedGetData(Ceed ceed, void *data) {
733   *(void **)data = ceed->data;
734   return CEED_ERROR_SUCCESS;
735 }
736 
737 /**
738   @brief Set backend data for a `Ceed` context
739 
740   @param[in,out] ceed `Ceed` context to set data of
741   @param[in]     data Address of data to set
742 
743   @return An error code: 0 - success, otherwise - failure
744 
745   @ref Backend
746 **/
747 int CeedSetData(Ceed ceed, void *data) {
748   ceed->data = data;
749   return CEED_ERROR_SUCCESS;
750 }
751 
752 /**
753   @brief Increment the reference counter for a `Ceed` context
754 
755   @param[in,out] ceed `Ceed` context to increment the reference counter
756 
757   @return An error code: 0 - success, otherwise - failure
758 
759   @ref Backend
760 **/
761 int CeedReference(Ceed ceed) {
762   ceed->ref_count++;
763   return CEED_ERROR_SUCCESS;
764 }
765 
766 /**
767   @brief Computes the current memory usage of the work vectors in a `Ceed` context and prints to debug.abort
768 
769   @param[in]  ceed     `Ceed` context
770   @param[out] usage_mb Address of the variable where the MB of work vector usage will be stored
771 
772   @return An error code: 0 - success, otherwise - failure
773 
774   @ref Developer
775 **/
776 int CeedGetWorkVectorMemoryUsage(Ceed ceed, CeedScalar *usage_mb) {
777   if (!ceed->VectorCreate) {
778     Ceed delegate;
779 
780     CeedCall(CeedGetObjectDelegate(ceed, &delegate, "Vector"));
781     CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement VectorCreate");
782     CeedCall(CeedGetWorkVectorMemoryUsage(delegate, usage_mb));
783     CeedCall(CeedDestroy(&delegate));
784     return CEED_ERROR_SUCCESS;
785   }
786   *usage_mb = 0.0;
787   if (ceed->work_vectors) {
788     for (CeedInt i = 0; i < ceed->work_vectors->num_vecs; i++) {
789       CeedSize vec_len;
790       CeedCall(CeedVectorGetLength(ceed->work_vectors->vecs[i], &vec_len));
791       *usage_mb += vec_len;
792     }
793     *usage_mb *= sizeof(CeedScalar) * 1e-6;
794     CeedDebug(ceed, "Resource {%s}: Work vectors memory usage: %" CeedInt_FMT " vectors, %g MB\n", ceed->resource, ceed->work_vectors->num_vecs,
795               *usage_mb);
796   }
797   return CEED_ERROR_SUCCESS;
798 }
799 
800 /**
801   @brief Clear inactive work vectors in a `Ceed` context below a minimum length.
802 
803   @param[in,out] ceed    `Ceed` context
804   @param[in]     min_len Minimum length of work vector to keep
805 
806   @return An error code: 0 - success, otherwise - failure
807 
808   @ref Backend
809 **/
810 int CeedClearWorkVectors(Ceed ceed, CeedSize min_len) {
811   if (!ceed->VectorCreate) {
812     Ceed delegate;
813 
814     CeedCall(CeedGetObjectDelegate(ceed, &delegate, "Vector"));
815     CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement VectorCreate");
816     CeedCall(CeedClearWorkVectors(delegate, min_len));
817     CeedCall(CeedDestroy(&delegate));
818     return CEED_ERROR_SUCCESS;
819   }
820   if (!ceed->work_vectors) return CEED_ERROR_SUCCESS;
821   for (CeedInt i = 0; i < ceed->work_vectors->num_vecs; i++) {
822     if (ceed->work_vectors->is_in_use[i]) continue;
823     CeedSize vec_len;
824     CeedCall(CeedVectorGetLength(ceed->work_vectors->vecs[i], &vec_len));
825     if (vec_len < min_len) {
826       ceed->ref_count += 2;  // Note: increase ref_count to prevent Ceed destructor from triggering
827       CeedCall(CeedVectorDestroy(&ceed->work_vectors->vecs[i]));
828       ceed->ref_count -= 1;  // Note: restore ref_count
829       ceed->work_vectors->num_vecs--;
830       if (ceed->work_vectors->num_vecs > 0) {
831         ceed->work_vectors->vecs[i]                                 = ceed->work_vectors->vecs[ceed->work_vectors->num_vecs];
832         ceed->work_vectors->is_in_use[i]                            = ceed->work_vectors->is_in_use[ceed->work_vectors->num_vecs];
833         ceed->work_vectors->is_in_use[ceed->work_vectors->num_vecs] = false;
834         i--;
835       }
836     }
837   }
838   return CEED_ERROR_SUCCESS;
839 }
840 
841 /**
842   @brief Get a `CeedVector` for scratch work from a `Ceed` context.
843 
844   Note: This vector must be restored with @ref CeedRestoreWorkVector().
845 
846   @param[in]  ceed `Ceed` context
847   @param[in]  len  Minimum length of work vector
848   @param[out] vec  Address of the variable where `CeedVector` will be stored
849 
850   @return An error code: 0 - success, otherwise - failure
851 
852   @ref Backend
853 **/
854 int CeedGetWorkVector(Ceed ceed, CeedSize len, CeedVector *vec) {
855   CeedInt    i = 0;
856   CeedScalar usage_mb;
857 
858   if (!ceed->VectorCreate) {
859     Ceed delegate;
860 
861     CeedCall(CeedGetObjectDelegate(ceed, &delegate, "Vector"));
862     CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement VectorCreate");
863     CeedCall(CeedGetWorkVector(delegate, len, vec));
864     CeedCall(CeedDestroy(&delegate));
865     return CEED_ERROR_SUCCESS;
866   }
867 
868   if (!ceed->work_vectors) CeedCall(CeedWorkVectorsCreate(ceed));
869 
870   // Search for big enough work vector
871   for (i = 0; i < ceed->work_vectors->num_vecs; i++) {
872     if (!ceed->work_vectors->is_in_use[i]) {
873       CeedSize work_len;
874 
875       CeedCall(CeedVectorGetLength(ceed->work_vectors->vecs[i], &work_len));
876       if (work_len >= len) break;
877     }
878   }
879   // Long enough vector was not found
880   if (i == ceed->work_vectors->num_vecs) {
881     if (ceed->work_vectors->max_vecs == 0) {
882       ceed->work_vectors->max_vecs = 1;
883       CeedCall(CeedCalloc(ceed->work_vectors->max_vecs, &ceed->work_vectors->vecs));
884       CeedCall(CeedCalloc(ceed->work_vectors->max_vecs, &ceed->work_vectors->is_in_use));
885     } else if (ceed->work_vectors->max_vecs == i) {
886       ceed->work_vectors->max_vecs *= 2;
887       CeedCall(CeedRealloc(ceed->work_vectors->max_vecs, &ceed->work_vectors->vecs));
888       CeedCall(CeedRealloc(ceed->work_vectors->max_vecs, &ceed->work_vectors->is_in_use));
889     }
890     ceed->work_vectors->num_vecs++;
891     CeedCallBackend(CeedVectorCreate(ceed, len, &ceed->work_vectors->vecs[i]));
892     ceed->ref_count--;  // Note: ref_count manipulation to prevent a ref-loop
893     if (ceed->is_debug) CeedGetWorkVectorMemoryUsage(ceed, &usage_mb);
894   }
895   // Return pointer to work vector
896   ceed->work_vectors->is_in_use[i] = true;
897   *vec                             = NULL;
898   CeedCall(CeedVectorReferenceCopy(ceed->work_vectors->vecs[i], vec));
899   ceed->ref_count++;  // Note: bump ref_count to account for external access
900   return CEED_ERROR_SUCCESS;
901 }
902 
903 /**
904   @brief Restore a `CeedVector` for scratch work from a `Ceed` context from @ref CeedGetWorkVector()
905 
906   @param[in]  ceed `Ceed` context
907   @param[out] vec  `CeedVector` to restore
908 
909   @return An error code: 0 - success, otherwise - failure
910 
911   @ref Backend
912 **/
913 int CeedRestoreWorkVector(Ceed ceed, CeedVector *vec) {
914   if (!ceed->VectorCreate) {
915     Ceed delegate;
916 
917     CeedCall(CeedGetObjectDelegate(ceed, &delegate, "Vector"));
918     CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement VectorCreate");
919     CeedCall(CeedRestoreWorkVector(delegate, vec));
920     CeedCall(CeedDestroy(&delegate));
921     return CEED_ERROR_SUCCESS;
922   }
923 
924   for (CeedInt i = 0; i < ceed->work_vectors->num_vecs; i++) {
925     if (*vec == ceed->work_vectors->vecs[i]) {
926       CeedCheck(ceed->work_vectors->is_in_use[i], ceed, CEED_ERROR_ACCESS, "Work vector %" CeedSize_FMT " was not checked out but is being returned");
927       CeedCall(CeedVectorDestroy(vec));
928       ceed->work_vectors->is_in_use[i] = false;
929       ceed->ref_count--;  // Note: reduce ref_count again to prevent a ref-loop
930       return CEED_ERROR_SUCCESS;
931     }
932   }
933   // LCOV_EXCL_START
934   return CeedError(ceed, CEED_ERROR_MAJOR, "vec was not checked out via CeedGetWorkVector()");
935   // LCOV_EXCL_STOP
936 }
937 
938 /**
939   @brief Retrieve list of additional JiT source roots from `Ceed` context.
940 
941   Note: The caller is responsible for restoring `jit_source_roots` with @ref CeedRestoreJitSourceRoots().
942 
943   @param[in]  ceed             `Ceed` context
944   @param[out] num_source_roots Number of JiT source directories
945   @param[out] jit_source_roots Absolute paths to additional JiT source directories
946 
947   @return An error code: 0 - success, otherwise - failure
948 
949   @ref Backend
950 **/
951 int CeedGetJitSourceRoots(Ceed ceed, CeedInt *num_source_roots, const char ***jit_source_roots) {
952   Ceed ceed_parent;
953 
954   CeedCall(CeedGetParent(ceed, &ceed_parent));
955   *num_source_roots = ceed_parent->num_jit_source_roots;
956   *jit_source_roots = (const char **)ceed_parent->jit_source_roots;
957   ceed_parent->num_jit_source_roots_readers++;
958   CeedCall(CeedDestroy(&ceed_parent));
959   return CEED_ERROR_SUCCESS;
960 }
961 
962 /**
963   @brief Restore list of additional JiT source roots from with @ref CeedGetJitSourceRoots()
964 
965   @param[in]  ceed             `Ceed` context
966   @param[out] jit_source_roots Absolute paths to additional JiT source directories
967 
968   @return An error code: 0 - success, otherwise - failure
969 
970   @ref Backend
971 **/
972 int CeedRestoreJitSourceRoots(Ceed ceed, const char ***jit_source_roots) {
973   Ceed ceed_parent;
974 
975   CeedCall(CeedGetParent(ceed, &ceed_parent));
976   *jit_source_roots = NULL;
977   ceed_parent->num_jit_source_roots_readers--;
978   CeedCall(CeedDestroy(&ceed_parent));
979   return CEED_ERROR_SUCCESS;
980 }
981 
982 /**
983   @brief Retrieve list of additional JiT defines from `Ceed` context.
984 
985   Note: The caller is responsible for restoring `jit_defines` with @ref CeedRestoreJitDefines().
986 
987   @param[in]  ceed            `Ceed` context
988   @param[out] num_jit_defines Number of JiT defines
989   @param[out] jit_defines     Strings such as `foo=bar`, used as `-Dfoo=bar` in JiT
990 
991   @return An error code: 0 - success, otherwise - failure
992 
993   @ref Backend
994 **/
995 int CeedGetJitDefines(Ceed ceed, CeedInt *num_jit_defines, const char ***jit_defines) {
996   Ceed ceed_parent;
997 
998   CeedCall(CeedGetParent(ceed, &ceed_parent));
999   *num_jit_defines = ceed_parent->num_jit_defines;
1000   *jit_defines     = (const char **)ceed_parent->jit_defines;
1001   ceed_parent->num_jit_defines_readers++;
1002   CeedCall(CeedDestroy(&ceed_parent));
1003   return CEED_ERROR_SUCCESS;
1004 }
1005 
1006 /**
1007   @brief Restore list of additional JiT defines from with @ref CeedGetJitDefines()
1008 
1009   @param[in]  ceed        `Ceed` context
1010   @param[out] jit_defines String such as `foo=bar`, used as `-Dfoo=bar` in JiT
1011 
1012   @return An error code: 0 - success, otherwise - failure
1013 
1014   @ref Backend
1015 **/
1016 int CeedRestoreJitDefines(Ceed ceed, const char ***jit_defines) {
1017   Ceed ceed_parent;
1018 
1019   CeedCall(CeedGetParent(ceed, &ceed_parent));
1020   *jit_defines = NULL;
1021   ceed_parent->num_jit_defines_readers--;
1022   CeedCall(CeedDestroy(&ceed_parent));
1023   return CEED_ERROR_SUCCESS;
1024 }
1025 
1026 /// @}
1027 
1028 /// ----------------------------------------------------------------------------
1029 /// Ceed Public API
1030 /// ----------------------------------------------------------------------------
1031 /// @addtogroup CeedUser
1032 /// @{
1033 
1034 /**
1035   @brief Get the list of available resource names for `Ceed` contexts
1036 
1037   Note: The caller is responsible for `free()`ing the resources and priorities arrays, but should not `free()` the contents of the resources array.
1038 
1039   @param[out] n          Number of available resources
1040   @param[out] resources  List of available resource names
1041   @param[out] priorities Resource name prioritization values, lower is better
1042 
1043   @return An error code: 0 - success, otherwise - failure
1044 
1045   @ref User
1046 **/
1047 // LCOV_EXCL_START
1048 int CeedRegistryGetList(size_t *n, char ***const resources, CeedInt **priorities) {
1049   *n         = 0;
1050   *resources = malloc(num_backends * sizeof(**resources));
1051   CeedCheck(resources, NULL, CEED_ERROR_MAJOR, "malloc() failure");
1052   if (priorities) {
1053     *priorities = malloc(num_backends * sizeof(**priorities));
1054     CeedCheck(priorities, NULL, CEED_ERROR_MAJOR, "malloc() failure");
1055   }
1056   for (size_t i = 0; i < num_backends; i++) {
1057     // Only report compiled backends
1058     if (backends[i].priority < CEED_MAX_BACKEND_PRIORITY) {
1059       *resources[i] = backends[i].prefix;
1060       if (priorities) *priorities[i] = backends[i].priority;
1061       *n += 1;
1062     }
1063   }
1064   CeedCheck(*n, NULL, CEED_ERROR_MAJOR, "No backends installed");
1065   *resources = realloc(*resources, *n * sizeof(**resources));
1066   CeedCheck(resources, NULL, CEED_ERROR_MAJOR, "realloc() failure");
1067   if (priorities) {
1068     *priorities = realloc(*priorities, *n * sizeof(**priorities));
1069     CeedCheck(priorities, NULL, CEED_ERROR_MAJOR, "realloc() failure");
1070   }
1071   return CEED_ERROR_SUCCESS;
1072 }
1073 // LCOV_EXCL_STOP
1074 
1075 /**
1076   @brief Initialize a `Ceed` context to use the specified resource.
1077 
1078   Note: Prefixing the resource with "help:" (e.g. "help:/cpu/self") will result in @ref CeedInt() printing the current libCEED version number and a list of current available backend resources to `stderr`.
1079 
1080   @param[in]  resource Resource to use, e.g., "/cpu/self"
1081   @param[out] ceed     The library context
1082 
1083   @return An error code: 0 - success, otherwise - failure
1084 
1085   @ref User
1086 
1087   @sa CeedRegister() CeedDestroy()
1088 **/
1089 int CeedInit(const char *resource, Ceed *ceed) {
1090   size_t match_len = 0, match_index = UINT_MAX, match_priority = CEED_MAX_BACKEND_PRIORITY, priority;
1091 
1092   // Find matching backend
1093   CeedCheck(resource, NULL, CEED_ERROR_MAJOR, "No resource provided");
1094   CeedCall(CeedRegisterAll());
1095 
1096   // Check for help request
1097   const char *help_prefix = "help";
1098   size_t      match_help  = 0;
1099   while (match_help < 4 && resource[match_help] == help_prefix[match_help]) match_help++;
1100   if (match_help == 4) {
1101     fprintf(stderr, "libCEED version: %d.%d%d%s\n", CEED_VERSION_MAJOR, CEED_VERSION_MINOR, CEED_VERSION_PATCH,
1102             CEED_VERSION_RELEASE ? "" : "+development");
1103     fprintf(stderr, "Available backend resources:\n");
1104     for (size_t i = 0; i < num_backends; i++) {
1105       // Only report compiled backends
1106       if (backends[i].priority < CEED_MAX_BACKEND_PRIORITY) fprintf(stderr, "  %s\n", backends[i].prefix);
1107     }
1108     fflush(stderr);
1109     match_help = 5;  // Delineating character expected
1110   } else {
1111     match_help = 0;
1112   }
1113 
1114   // Find best match, computed as number of matching characters from requested resource stem
1115   size_t stem_length = 0;
1116   while (resource[stem_length + match_help] && resource[stem_length + match_help] != ':') stem_length++;
1117   for (size_t i = 0; i < num_backends; i++) {
1118     size_t      n      = 0;
1119     const char *prefix = backends[i].prefix;
1120     while (prefix[n] && prefix[n] == resource[n + match_help]) n++;
1121     priority = backends[i].priority;
1122     if (n > match_len || (n == match_len && match_priority > priority)) {
1123       match_len      = n;
1124       match_priority = priority;
1125       match_index    = i;
1126     }
1127   }
1128   // Using Levenshtein distance to find closest match
1129   if (match_len <= 1 || match_len != stem_length) {
1130     // LCOV_EXCL_START
1131     size_t lev_dis   = UINT_MAX;
1132     size_t lev_index = UINT_MAX, lev_priority = CEED_MAX_BACKEND_PRIORITY;
1133     for (size_t i = 0; i < num_backends; i++) {
1134       const char *prefix        = backends[i].prefix;
1135       size_t      prefix_length = strlen(backends[i].prefix);
1136       size_t      min_len       = (prefix_length < stem_length) ? prefix_length : stem_length;
1137       size_t      column[min_len + 1];
1138       for (size_t j = 0; j <= min_len; j++) column[j] = j;
1139       for (size_t j = 1; j <= min_len; j++) {
1140         column[0] = j;
1141         for (size_t k = 1, last_diag = j - 1; k <= min_len; k++) {
1142           size_t old_diag = column[k];
1143           size_t min_1    = (column[k] < column[k - 1]) ? column[k] + 1 : column[k - 1] + 1;
1144           size_t min_2    = last_diag + (resource[k - 1] == prefix[j - 1] ? 0 : 1);
1145           column[k]       = (min_1 < min_2) ? min_1 : min_2;
1146           last_diag       = old_diag;
1147         }
1148       }
1149       size_t n = column[min_len];
1150       priority = backends[i].priority;
1151       if (n < lev_dis || (n == lev_dis && lev_priority > priority)) {
1152         lev_dis      = n;
1153         lev_priority = priority;
1154         lev_index    = i;
1155       }
1156     }
1157     const char *prefix_lev = backends[lev_index].prefix;
1158     size_t      lev_length = 0;
1159     while (prefix_lev[lev_length] && prefix_lev[lev_length] != '\0') lev_length++;
1160     size_t m = (lev_length < stem_length) ? lev_length : stem_length;
1161     if (lev_dis + 1 >= m) return CeedError(NULL, CEED_ERROR_MAJOR, "No suitable backend: %s", resource);
1162     else return CeedError(NULL, CEED_ERROR_MAJOR, "No suitable backend: %s\nClosest match: %s", resource, backends[lev_index].prefix);
1163     // LCOV_EXCL_STOP
1164   }
1165 
1166   // Setup Ceed
1167   CeedCall(CeedCalloc(1, ceed));
1168   CeedCall(CeedCalloc(1, &(*ceed)->jit_source_roots));
1169   const char *ceed_error_handler = getenv("CEED_ERROR_HANDLER");
1170   if (!ceed_error_handler) ceed_error_handler = "abort";
1171   if (!strcmp(ceed_error_handler, "exit")) (*ceed)->Error = CeedErrorExit;
1172   else if (!strcmp(ceed_error_handler, "store")) (*ceed)->Error = CeedErrorStore;
1173   else (*ceed)->Error = CeedErrorAbort;
1174   memcpy((*ceed)->err_msg, "No error message stored", 24);
1175   (*ceed)->ref_count = 1;
1176   (*ceed)->data      = NULL;
1177 
1178   // Set lookup table
1179   FOffset f_offsets[] = {
1180       CEED_FTABLE_ENTRY(Ceed, Error),
1181       CEED_FTABLE_ENTRY(Ceed, SetStream),
1182       CEED_FTABLE_ENTRY(Ceed, GetPreferredMemType),
1183       CEED_FTABLE_ENTRY(Ceed, Destroy),
1184       CEED_FTABLE_ENTRY(Ceed, VectorCreate),
1185       CEED_FTABLE_ENTRY(Ceed, ElemRestrictionCreate),
1186       CEED_FTABLE_ENTRY(Ceed, ElemRestrictionCreateAtPoints),
1187       CEED_FTABLE_ENTRY(Ceed, ElemRestrictionCreateBlocked),
1188       CEED_FTABLE_ENTRY(Ceed, BasisCreateTensorH1),
1189       CEED_FTABLE_ENTRY(Ceed, BasisCreateH1),
1190       CEED_FTABLE_ENTRY(Ceed, BasisCreateHdiv),
1191       CEED_FTABLE_ENTRY(Ceed, BasisCreateHcurl),
1192       CEED_FTABLE_ENTRY(Ceed, TensorContractCreate),
1193       CEED_FTABLE_ENTRY(Ceed, QFunctionCreate),
1194       CEED_FTABLE_ENTRY(Ceed, QFunctionContextCreate),
1195       CEED_FTABLE_ENTRY(Ceed, OperatorCreate),
1196       CEED_FTABLE_ENTRY(Ceed, OperatorCreateAtPoints),
1197       CEED_FTABLE_ENTRY(Ceed, CompositeOperatorCreate),
1198       CEED_FTABLE_ENTRY(CeedVector, HasValidArray),
1199       CEED_FTABLE_ENTRY(CeedVector, HasBorrowedArrayOfType),
1200       CEED_FTABLE_ENTRY(CeedVector, CopyStrided),
1201       CEED_FTABLE_ENTRY(CeedVector, SetArray),
1202       CEED_FTABLE_ENTRY(CeedVector, TakeArray),
1203       CEED_FTABLE_ENTRY(CeedVector, SetValue),
1204       CEED_FTABLE_ENTRY(CeedVector, SetValueStrided),
1205       CEED_FTABLE_ENTRY(CeedVector, SyncArray),
1206       CEED_FTABLE_ENTRY(CeedVector, GetArray),
1207       CEED_FTABLE_ENTRY(CeedVector, GetArrayRead),
1208       CEED_FTABLE_ENTRY(CeedVector, GetArrayWrite),
1209       CEED_FTABLE_ENTRY(CeedVector, RestoreArray),
1210       CEED_FTABLE_ENTRY(CeedVector, RestoreArrayRead),
1211       CEED_FTABLE_ENTRY(CeedVector, Norm),
1212       CEED_FTABLE_ENTRY(CeedVector, Scale),
1213       CEED_FTABLE_ENTRY(CeedVector, AXPY),
1214       CEED_FTABLE_ENTRY(CeedVector, AXPBY),
1215       CEED_FTABLE_ENTRY(CeedVector, PointwiseMult),
1216       CEED_FTABLE_ENTRY(CeedVector, Reciprocal),
1217       CEED_FTABLE_ENTRY(CeedVector, Destroy),
1218       CEED_FTABLE_ENTRY(CeedElemRestriction, Apply),
1219       CEED_FTABLE_ENTRY(CeedElemRestriction, ApplyUnsigned),
1220       CEED_FTABLE_ENTRY(CeedElemRestriction, ApplyUnoriented),
1221       CEED_FTABLE_ENTRY(CeedElemRestriction, ApplyAtPointsInElement),
1222       CEED_FTABLE_ENTRY(CeedElemRestriction, ApplyBlock),
1223       CEED_FTABLE_ENTRY(CeedElemRestriction, GetOffsets),
1224       CEED_FTABLE_ENTRY(CeedElemRestriction, GetOrientations),
1225       CEED_FTABLE_ENTRY(CeedElemRestriction, GetCurlOrientations),
1226       CEED_FTABLE_ENTRY(CeedElemRestriction, GetAtPointsElementOffset),
1227       CEED_FTABLE_ENTRY(CeedElemRestriction, Destroy),
1228       CEED_FTABLE_ENTRY(CeedBasis, Apply),
1229       CEED_FTABLE_ENTRY(CeedBasis, ApplyAdd),
1230       CEED_FTABLE_ENTRY(CeedBasis, ApplyAtPoints),
1231       CEED_FTABLE_ENTRY(CeedBasis, ApplyAddAtPoints),
1232       CEED_FTABLE_ENTRY(CeedBasis, Destroy),
1233       CEED_FTABLE_ENTRY(CeedTensorContract, Apply),
1234       CEED_FTABLE_ENTRY(CeedTensorContract, Destroy),
1235       CEED_FTABLE_ENTRY(CeedQFunction, Apply),
1236       CEED_FTABLE_ENTRY(CeedQFunction, SetCUDAUserFunction),
1237       CEED_FTABLE_ENTRY(CeedQFunction, SetHIPUserFunction),
1238       CEED_FTABLE_ENTRY(CeedQFunction, Destroy),
1239       CEED_FTABLE_ENTRY(CeedQFunctionContext, HasValidData),
1240       CEED_FTABLE_ENTRY(CeedQFunctionContext, HasBorrowedDataOfType),
1241       CEED_FTABLE_ENTRY(CeedQFunctionContext, SetData),
1242       CEED_FTABLE_ENTRY(CeedQFunctionContext, TakeData),
1243       CEED_FTABLE_ENTRY(CeedQFunctionContext, GetData),
1244       CEED_FTABLE_ENTRY(CeedQFunctionContext, GetDataRead),
1245       CEED_FTABLE_ENTRY(CeedQFunctionContext, RestoreData),
1246       CEED_FTABLE_ENTRY(CeedQFunctionContext, RestoreDataRead),
1247       CEED_FTABLE_ENTRY(CeedQFunctionContext, DataDestroy),
1248       CEED_FTABLE_ENTRY(CeedQFunctionContext, Destroy),
1249       CEED_FTABLE_ENTRY(CeedOperator, LinearAssembleQFunction),
1250       CEED_FTABLE_ENTRY(CeedOperator, LinearAssembleQFunctionUpdate),
1251       CEED_FTABLE_ENTRY(CeedOperator, LinearAssembleDiagonal),
1252       CEED_FTABLE_ENTRY(CeedOperator, LinearAssembleAddDiagonal),
1253       CEED_FTABLE_ENTRY(CeedOperator, LinearAssemblePointBlockDiagonal),
1254       CEED_FTABLE_ENTRY(CeedOperator, LinearAssembleAddPointBlockDiagonal),
1255       CEED_FTABLE_ENTRY(CeedOperator, LinearAssembleSymbolic),
1256       CEED_FTABLE_ENTRY(CeedOperator, LinearAssemble),
1257       CEED_FTABLE_ENTRY(CeedOperator, LinearAssembleSingle),
1258       CEED_FTABLE_ENTRY(CeedOperator, CreateFDMElementInverse),
1259       CEED_FTABLE_ENTRY(CeedOperator, Apply),
1260       CEED_FTABLE_ENTRY(CeedOperator, ApplyComposite),
1261       CEED_FTABLE_ENTRY(CeedOperator, ApplyAdd),
1262       CEED_FTABLE_ENTRY(CeedOperator, ApplyAddComposite),
1263       CEED_FTABLE_ENTRY(CeedOperator, ApplyJacobian),
1264       CEED_FTABLE_ENTRY(CeedOperator, Destroy),
1265       {NULL, 0}  // End of lookup table - used in SetBackendFunction loop
1266   };
1267 
1268   CeedCall(CeedCalloc(sizeof(f_offsets), &(*ceed)->f_offsets));
1269   memcpy((*ceed)->f_offsets, f_offsets, sizeof(f_offsets));
1270 
1271   // Record env variables CEED_DEBUG or DBG
1272   (*ceed)->is_debug = getenv("CEED_DEBUG") || getenv("DEBUG") || getenv("DBG");
1273 
1274   // Copy resource prefix, if backend setup successful
1275   CeedCall(CeedStringAllocCopy(backends[match_index].prefix, (char **)&(*ceed)->resource));
1276 
1277   // Set default JiT source root
1278   // Note: there will always be the default root for every Ceed but all additional paths are added to the top-most parent
1279   CeedCall(CeedAddJitSourceRoot(*ceed, (char *)CeedJitSourceRootDefault));
1280 
1281   // Backend specific setup
1282   CeedCall(backends[match_index].init(&resource[match_help], *ceed));
1283   return CEED_ERROR_SUCCESS;
1284 }
1285 
1286 /**
1287   @brief Set the GPU stream for a `Ceed` context
1288 
1289   @param[in,out] ceed   `Ceed` context to set the stream
1290   @param[in]     handle Handle to GPU stream
1291 
1292   @return An error code: 0 - success, otherwise - failure
1293 
1294   @ref User
1295 **/
1296 int CeedSetStream(Ceed ceed, void *handle) {
1297   CeedCheck(handle, ceed, CEED_ERROR_INCOMPATIBLE, "Stream handle must be non-NULL");
1298   if (ceed->SetStream) {
1299     CeedCall(ceed->SetStream(ceed, handle));
1300   } else {
1301     Ceed delegate;
1302     CeedCall(CeedGetDelegate(ceed, &delegate));
1303 
1304     if (delegate) CeedCall(CeedSetStream(delegate, handle));
1305     else return CeedError(ceed, CEED_ERROR_UNSUPPORTED, "Backend does not support setting stream");
1306     CeedCall(CeedDestroy(&delegate));
1307   }
1308   return CEED_ERROR_SUCCESS;
1309 }
1310 
1311 /**
1312   @brief Copy the pointer to a `Ceed` context.
1313 
1314   Both pointers should be destroyed with @ref CeedDestroy().
1315 
1316   Note: If the value of `*ceed_copy` passed to this function is non-`NULL`, then it is assumed that `*ceed_copy` is a pointer to a `Ceed` context.
1317         This `Ceed` context will be destroyed if `*ceed_copy` is the only reference to this `Ceed` context.
1318 
1319   @param[in]     ceed      `Ceed` context to copy reference to
1320   @param[in,out] ceed_copy Variable to store copied reference
1321 
1322   @return An error code: 0 - success, otherwise - failure
1323 
1324   @ref User
1325 **/
1326 int CeedReferenceCopy(Ceed ceed, Ceed *ceed_copy) {
1327   CeedCall(CeedReference(ceed));
1328   CeedCall(CeedDestroy(ceed_copy));
1329   *ceed_copy = ceed;
1330   return CEED_ERROR_SUCCESS;
1331 }
1332 
1333 /**
1334   @brief Get the full resource name for a `Ceed` context
1335 
1336   @param[in]  ceed     `Ceed` context to get resource name of
1337   @param[out] resource Variable to store resource name
1338 
1339   @return An error code: 0 - success, otherwise - failure
1340 
1341   @ref User
1342 **/
1343 int CeedGetResource(Ceed ceed, const char **resource) {
1344   *resource = (const char *)ceed->resource;
1345   return CEED_ERROR_SUCCESS;
1346 }
1347 
1348 /**
1349   @brief Return `Ceed` context preferred memory type
1350 
1351   @param[in]  ceed     `Ceed` context to get preferred memory type of
1352   @param[out] mem_type Address to save preferred memory type to
1353 
1354   @return An error code: 0 - success, otherwise - failure
1355 
1356   @ref User
1357 **/
1358 int CeedGetPreferredMemType(Ceed ceed, CeedMemType *mem_type) {
1359   if (ceed->GetPreferredMemType) {
1360     CeedCall(ceed->GetPreferredMemType(mem_type));
1361   } else {
1362     Ceed delegate;
1363     CeedCall(CeedGetDelegate(ceed, &delegate));
1364 
1365     if (delegate) {
1366       CeedCall(CeedGetPreferredMemType(delegate, mem_type));
1367     } else {
1368       *mem_type = CEED_MEM_HOST;
1369     }
1370     CeedCall(CeedDestroy(&delegate));
1371   }
1372   return CEED_ERROR_SUCCESS;
1373 }
1374 
1375 /**
1376   @brief Get deterministic status of `Ceed` context
1377 
1378   @param[in]  ceed             `Ceed` context
1379   @param[out] is_deterministic Variable to store deterministic status
1380 
1381   @return An error code: 0 - success, otherwise - failure
1382 
1383   @ref User
1384 **/
1385 int CeedIsDeterministic(Ceed ceed, bool *is_deterministic) {
1386   *is_deterministic = ceed->is_deterministic;
1387   return CEED_ERROR_SUCCESS;
1388 }
1389 
1390 /**
1391   @brief Set additional JiT source root for `Ceed` context
1392 
1393   @param[in,out] ceed            `Ceed` context
1394   @param[in]     jit_source_root Absolute path to additional JiT source directory
1395 
1396   @return An error code: 0 - success, otherwise - failure
1397 
1398   @ref User
1399 **/
1400 int CeedAddJitSourceRoot(Ceed ceed, const char *jit_source_root) {
1401   Ceed ceed_parent;
1402 
1403   CeedCall(CeedGetParent(ceed, &ceed_parent));
1404   CeedCheck(!ceed_parent->num_jit_source_roots_readers, ceed, CEED_ERROR_ACCESS, "Cannot add JiT source root, read access has not been restored");
1405 
1406   CeedInt index       = ceed_parent->num_jit_source_roots;
1407   size_t  path_length = strlen(jit_source_root);
1408 
1409   if (ceed_parent->num_jit_source_roots == ceed_parent->max_jit_source_roots) {
1410     if (ceed_parent->max_jit_source_roots == 0) ceed_parent->max_jit_source_roots = 1;
1411     ceed_parent->max_jit_source_roots *= 2;
1412     CeedCall(CeedRealloc(ceed_parent->max_jit_source_roots, &ceed_parent->jit_source_roots));
1413   }
1414   CeedCall(CeedCalloc(path_length + 1, &ceed_parent->jit_source_roots[index]));
1415   memcpy(ceed_parent->jit_source_roots[index], jit_source_root, path_length);
1416   ceed_parent->num_jit_source_roots++;
1417   CeedCall(CeedDestroy(&ceed_parent));
1418   return CEED_ERROR_SUCCESS;
1419 }
1420 
1421 /**
1422   @brief Set additional JiT compiler define for `Ceed` context
1423 
1424   @param[in,out] ceed       `Ceed` context
1425   @param[in]     jit_define String such as `foo=bar`, used as `-Dfoo=bar` in JiT
1426 
1427   @return An error code: 0 - success, otherwise - failure
1428 
1429   @ref User
1430 **/
1431 int CeedAddJitDefine(Ceed ceed, const char *jit_define) {
1432   Ceed ceed_parent;
1433 
1434   CeedCall(CeedGetParent(ceed, &ceed_parent));
1435   CeedCheck(!ceed_parent->num_jit_defines_readers, ceed, CEED_ERROR_ACCESS, "Cannot add JiT define, read access has not been restored");
1436 
1437   CeedInt index         = ceed_parent->num_jit_defines;
1438   size_t  define_length = strlen(jit_define);
1439 
1440   if (ceed_parent->num_jit_defines == ceed_parent->max_jit_defines) {
1441     if (ceed_parent->max_jit_defines == 0) ceed_parent->max_jit_defines = 1;
1442     ceed_parent->max_jit_defines *= 2;
1443     CeedCall(CeedRealloc(ceed_parent->max_jit_defines, &ceed_parent->jit_defines));
1444   }
1445   CeedCall(CeedCalloc(define_length + 1, &ceed_parent->jit_defines[index]));
1446   memcpy(ceed_parent->jit_defines[index], jit_define, define_length);
1447   ceed_parent->num_jit_defines++;
1448   CeedCall(CeedDestroy(&ceed_parent));
1449   return CEED_ERROR_SUCCESS;
1450 }
1451 
1452 /**
1453   @brief View a `Ceed`
1454 
1455   @param[in] ceed   `Ceed` to view
1456   @param[in] stream Filestream to write to
1457 
1458   @return An error code: 0 - success, otherwise - failure
1459 
1460   @ref User
1461 **/
1462 int CeedView(Ceed ceed, FILE *stream) {
1463   CeedMemType mem_type;
1464 
1465   CeedCall(CeedGetPreferredMemType(ceed, &mem_type));
1466 
1467   fprintf(stream,
1468           "Ceed\n"
1469           "  Ceed Resource: %s\n"
1470           "  Preferred MemType: %s\n",
1471           ceed->resource, CeedMemTypes[mem_type]);
1472   return CEED_ERROR_SUCCESS;
1473 }
1474 
1475 /**
1476   @brief Destroy a `Ceed`
1477 
1478   @param[in,out] ceed Address of `Ceed` context to destroy
1479 
1480   @return An error code: 0 - success, otherwise - failure
1481 
1482   @ref User
1483 **/
1484 int CeedDestroy(Ceed *ceed) {
1485   if (!*ceed || --(*ceed)->ref_count > 0) {
1486     *ceed = NULL;
1487     return CEED_ERROR_SUCCESS;
1488   }
1489 
1490   CeedCheck(!(*ceed)->num_jit_source_roots_readers, *ceed, CEED_ERROR_ACCESS,
1491             "Cannot destroy ceed context, read access for JiT source roots has been granted");
1492   CeedCheck(!(*ceed)->num_jit_defines_readers, *ceed, CEED_ERROR_ACCESS, "Cannot add JiT source root, read access for JiT defines has been granted");
1493 
1494   if ((*ceed)->delegate) CeedCall(CeedDestroy(&(*ceed)->delegate));
1495 
1496   if ((*ceed)->obj_delegate_count > 0) {
1497     for (CeedInt i = 0; i < (*ceed)->obj_delegate_count; i++) {
1498       CeedCall(CeedDestroy(&((*ceed)->obj_delegates[i].delegate)));
1499       CeedCall(CeedFree(&(*ceed)->obj_delegates[i].obj_name));
1500     }
1501     CeedCall(CeedFree(&(*ceed)->obj_delegates));
1502   }
1503 
1504   if ((*ceed)->Destroy) CeedCall((*ceed)->Destroy(*ceed));
1505 
1506   for (CeedInt i = 0; i < (*ceed)->num_jit_source_roots; i++) {
1507     CeedCall(CeedFree(&(*ceed)->jit_source_roots[i]));
1508   }
1509   CeedCall(CeedFree(&(*ceed)->jit_source_roots));
1510 
1511   for (CeedInt i = 0; i < (*ceed)->num_jit_defines; i++) {
1512     CeedCall(CeedFree(&(*ceed)->jit_defines[i]));
1513   }
1514   CeedCall(CeedFree(&(*ceed)->jit_defines));
1515 
1516   CeedCall(CeedFree(&(*ceed)->f_offsets));
1517   CeedCall(CeedFree(&(*ceed)->resource));
1518   CeedCall(CeedDestroy(&(*ceed)->op_fallback_ceed));
1519   CeedCall(CeedWorkVectorsDestroy(*ceed));
1520   CeedCall(CeedFree(ceed));
1521   return CEED_ERROR_SUCCESS;
1522 }
1523 
1524 // LCOV_EXCL_START
1525 const char *CeedErrorFormat(Ceed ceed, const char *format, va_list *args) {
1526   if (ceed->parent) return CeedErrorFormat(ceed->parent, format, args);
1527   // Using pointer to va_list for better FFI, but clang-tidy can't verify va_list is initalized
1528   vsnprintf(ceed->err_msg, CEED_MAX_RESOURCE_LEN, format, *args);  // NOLINT
1529   return ceed->err_msg;
1530 }
1531 // LCOV_EXCL_STOP
1532 
1533 /**
1534   @brief Error handling implementation; use @ref CeedError() instead.
1535 
1536   @return An error code: 0 - success, otherwise - failure
1537 
1538   @ref Developer
1539 **/
1540 int CeedErrorImpl(Ceed ceed, const char *filename, int lineno, const char *func, int ecode, const char *format, ...) {
1541   va_list args;
1542   int     ret_val;
1543 
1544   va_start(args, format);
1545   if (ceed) {
1546     ret_val = ceed->Error(ceed, filename, lineno, func, ecode, format, &args);
1547   } else {
1548     // LCOV_EXCL_START
1549     const char *ceed_error_handler = getenv("CEED_ERROR_HANDLER");
1550     if (!ceed_error_handler) ceed_error_handler = "abort";
1551     if (!strcmp(ceed_error_handler, "return")) {
1552       ret_val = CeedErrorReturn(ceed, filename, lineno, func, ecode, format, &args);
1553     } else {
1554       // This function will not return
1555       ret_val = CeedErrorAbort(ceed, filename, lineno, func, ecode, format, &args);
1556     }
1557   }
1558   va_end(args);
1559   return ret_val;
1560   // LCOV_EXCL_STOP
1561 }
1562 
1563 /**
1564   @brief Error handler that returns without printing anything.
1565 
1566   Pass this to @ref CeedSetErrorHandler() to obtain this error handling behavior.
1567 
1568   @return An error code: 0 - success, otherwise - failure
1569 
1570   @ref Developer
1571 **/
1572 // LCOV_EXCL_START
1573 int CeedErrorReturn(Ceed ceed, const char *filename, int line_no, const char *func, int err_code, const char *format, va_list *args) {
1574   return err_code;
1575 }
1576 // LCOV_EXCL_STOP
1577 
1578 /**
1579   @brief Error handler that stores the error message for future use and returns the error.
1580 
1581   Pass this to @ref CeedSetErrorHandler() to obtain this error handling behavior.
1582 
1583   @return An error code: 0 - success, otherwise - failure
1584 
1585   @ref Developer
1586 **/
1587 // LCOV_EXCL_START
1588 int CeedErrorStore(Ceed ceed, const char *filename, int line_no, const char *func, int err_code, const char *format, va_list *args) {
1589   if (ceed->parent) return CeedErrorStore(ceed->parent, filename, line_no, func, err_code, format, args);
1590 
1591   // Build message
1592   int len = snprintf(ceed->err_msg, CEED_MAX_RESOURCE_LEN, "%s:%d in %s(): ", filename, line_no, func);
1593   // Using pointer to va_list for better FFI, but clang-tidy can't verify va_list is initalized
1594   vsnprintf(ceed->err_msg + len, CEED_MAX_RESOURCE_LEN - len, format, *args);  // NOLINT
1595   return err_code;
1596 }
1597 // LCOV_EXCL_STOP
1598 
1599 /**
1600   @brief Error handler that prints to `stderr` and aborts
1601 
1602   Pass this to @ref CeedSetErrorHandler() to obtain this error handling behavior.
1603 
1604   @return An error code: 0 - success, otherwise - failure
1605 
1606   @ref Developer
1607 **/
1608 // LCOV_EXCL_START
1609 int CeedErrorAbort(Ceed ceed, const char *filename, int line_no, const char *func, int err_code, const char *format, va_list *args) {
1610   fprintf(stderr, "%s:%d in %s(): ", filename, line_no, func);
1611   vfprintf(stderr, format, *args);
1612   fprintf(stderr, "\n");
1613   abort();
1614   return err_code;
1615 }
1616 // LCOV_EXCL_STOP
1617 
1618 /**
1619   @brief Error handler that prints to `stderr` and exits.
1620 
1621   Pass this to @ref CeedSetErrorHandler() to obtain this error handling behavior.
1622 
1623   In contrast to @ref CeedErrorAbort(), this exits without a signal, so `atexit()` handlers (e.g., as used by gcov) are run.
1624 
1625   @return An error code: 0 - success, otherwise - failure
1626 
1627   @ref Developer
1628 **/
1629 int CeedErrorExit(Ceed ceed, const char *filename, int line_no, const char *func, int err_code, const char *format, va_list *args) {
1630   fprintf(stderr, "%s:%d in %s(): ", filename, line_no, func);
1631   // Using pointer to va_list for better FFI, but clang-tidy can't verify va_list is initalized
1632   vfprintf(stderr, format, *args);  // NOLINT
1633   fprintf(stderr, "\n");
1634   exit(err_code);
1635   return err_code;
1636 }
1637 
1638 /**
1639   @brief Set error handler
1640 
1641   A default error handler is set in @ref CeedInit().
1642   Use this function to change the error handler to @ref CeedErrorReturn(), @ref CeedErrorAbort(), or a user-defined error handler.
1643 
1644   @return An error code: 0 - success, otherwise - failure
1645 
1646   @ref Developer
1647 **/
1648 int CeedSetErrorHandler(Ceed ceed, CeedErrorHandler handler) {
1649   ceed->Error = handler;
1650   if (ceed->delegate) CeedSetErrorHandler(ceed->delegate, handler);
1651   for (CeedInt i = 0; i < ceed->obj_delegate_count; i++) CeedSetErrorHandler(ceed->obj_delegates[i].delegate, handler);
1652   return CEED_ERROR_SUCCESS;
1653 }
1654 
1655 /**
1656   @brief Get error message
1657 
1658   The error message is only stored when using the error handler @ref CeedErrorStore()
1659 
1660   @param[in]  ceed    `Ceed` context to retrieve error message
1661   @param[out] err_msg Char pointer to hold error message
1662 
1663   @return An error code: 0 - success, otherwise - failure
1664 
1665   @ref Developer
1666 **/
1667 int CeedGetErrorMessage(Ceed ceed, const char **err_msg) {
1668   if (ceed->parent) return CeedGetErrorMessage(ceed->parent, err_msg);
1669   *err_msg = ceed->err_msg;
1670   return CEED_ERROR_SUCCESS;
1671 }
1672 
1673 /**
1674   @brief Restore error message.
1675 
1676   The error message is only stored when using the error handler @ref CeedErrorStore().
1677 
1678   @param[in]  ceed    `Ceed` context to restore error message
1679   @param[out] err_msg Char pointer that holds error message
1680 
1681   @return An error code: 0 - success, otherwise - failure
1682 
1683   @ref Developer
1684 **/
1685 int CeedResetErrorMessage(Ceed ceed, const char **err_msg) {
1686   if (ceed->parent) return CeedResetErrorMessage(ceed->parent, err_msg);
1687   *err_msg = NULL;
1688   memcpy(ceed->err_msg, "No error message stored", 24);
1689   return CEED_ERROR_SUCCESS;
1690 }
1691 
1692 /**
1693   @brief Get libCEED library version information.
1694 
1695   libCEED version numbers have the form major.minor.patch.
1696   Non-release versions may contain unstable interfaces.
1697 
1698   @param[out] major   Major version of the library
1699   @param[out] minor   Minor version of the library
1700   @param[out] patch   Patch (subminor) version of the library
1701   @param[out] release True for releases; false for development branches
1702 
1703   The caller may pass `NULL` for any arguments that are not needed.
1704 
1705   @return An error code: 0 - success, otherwise - failure
1706 
1707   @ref Developer
1708 
1709   @sa CEED_VERSION_GE() CeedGetGitVersion() CeedGetBuildConfiguration()
1710 */
1711 int CeedGetVersion(int *major, int *minor, int *patch, bool *release) {
1712   if (major) *major = CEED_VERSION_MAJOR;
1713   if (minor) *minor = CEED_VERSION_MINOR;
1714   if (patch) *patch = CEED_VERSION_PATCH;
1715   if (release) *release = CEED_VERSION_RELEASE;
1716   return CEED_ERROR_SUCCESS;
1717 }
1718 
1719 /**
1720   @brief Get libCEED scalar type, such as F64 or F32
1721 
1722   @param[out] scalar_type Type of libCEED scalars
1723 
1724   @return An error code: 0 - success, otherwise - failure
1725 
1726   @ref Developer
1727 */
1728 int CeedGetScalarType(CeedScalarType *scalar_type) {
1729   *scalar_type = CEED_SCALAR_TYPE;
1730   return CEED_ERROR_SUCCESS;
1731 }
1732 
1733 /// @}
1734