13d8e8822SJeremy L Thompson // Copyright (c) 2017-2022, Lawrence Livermore National Security, LLC and other CEED contributors. 23d8e8822SJeremy L Thompson // All Rights Reserved. See the top-level LICENSE and NOTICE files for details. 3d7b241e6Sjeremylt // 43d8e8822SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause 5d7b241e6Sjeremylt // 63d8e8822SJeremy L Thompson // This file is part of CEED: http://github.com/ceed 7d7b241e6Sjeremylt 83d576824SJeremy L Thompson #include <ceed-impl.h> 949aac155SJeremy L Thompson #include <ceed.h> 102b730f8bSJeremy L Thompson #include <ceed/backend.h> 113d576824SJeremy L Thompson #include <stdbool.h> 123d576824SJeremy L Thompson #include <stdio.h> 13c17ec2beSJeremy L Thompson #include <string.h> 14d7b241e6Sjeremylt 157a982d89SJeremy L. Thompson /// @file 167a982d89SJeremy L. Thompson /// Implementation of CeedElemRestriction interfaces 177a982d89SJeremy L. Thompson 187a982d89SJeremy L. Thompson /// ---------------------------------------------------------------------------- 197a982d89SJeremy L. Thompson /// CeedElemRestriction Library Internal Functions 207a982d89SJeremy L. Thompson /// ---------------------------------------------------------------------------- 217a982d89SJeremy L. Thompson /// @addtogroup CeedElemRestrictionDeveloper 227a982d89SJeremy L. Thompson /// @{ 237a982d89SJeremy L. Thompson 247a982d89SJeremy L. Thompson /** 25ca94c3ddSJeremy L Thompson @brief Permute and pad offsets for a blocked `CeedElemRestriction` 267a982d89SJeremy L. Thompson 27ca94c3ddSJeremy L Thompson @param[in] offsets Array of shape `[num_elem, elem_size]` 28ca94c3ddSJeremy L Thompson @param[out] block_offsets Array of permuted and padded array values of shape `[num_block, elem_size, block_size]` 29e7f679fcSJeremy L Thompson @param[in] num_block Number of blocks 30ea61e9acSJeremy L Thompson @param[in] num_elem Number of elements 31e7f679fcSJeremy L Thompson @param[in] block_size Number of elements in a block 32ea61e9acSJeremy L Thompson @param[in] elem_size Size of each element 337a982d89SJeremy L. Thompson 347a982d89SJeremy L. Thompson @return An error code: 0 - success, otherwise - failure 357a982d89SJeremy L. Thompson 367a982d89SJeremy L. Thompson @ref Utility 377a982d89SJeremy L. Thompson **/ 38e7f679fcSJeremy L Thompson int CeedPermutePadOffsets(const CeedInt *offsets, CeedInt *block_offsets, CeedInt num_block, CeedInt num_elem, CeedInt block_size, 39e7f679fcSJeremy L Thompson CeedInt elem_size) { 40e7f679fcSJeremy L Thompson for (CeedInt e = 0; e < num_block * block_size; e += block_size) { 41e7f679fcSJeremy L Thompson for (CeedInt j = 0; j < block_size; j++) { 422b730f8bSJeremy L Thompson for (CeedInt k = 0; k < elem_size; k++) { 43e7f679fcSJeremy L Thompson block_offsets[e * elem_size + k * block_size + j] = offsets[CeedIntMin(e + j, num_elem - 1) * elem_size + k]; 442b730f8bSJeremy L Thompson } 452b730f8bSJeremy L Thompson } 462b730f8bSJeremy L Thompson } 47e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 487a982d89SJeremy L. Thompson } 497a982d89SJeremy L. Thompson 5077d1c127SSebastian Grimberg /** 51ca94c3ddSJeremy L Thompson @brief Permute and pad orientations for a blocked `CeedElemRestriction` 5277d1c127SSebastian Grimberg 53ca94c3ddSJeremy L Thompson @param[in] orients Array of shape `[num_elem, elem_size]` 54ca94c3ddSJeremy L Thompson @param[out] block_orients Array of permuted and padded array values of shape `[num_block, elem_size, block_size]` 55e7f679fcSJeremy L Thompson @param[in] num_block Number of blocks 5677d1c127SSebastian Grimberg @param[in] num_elem Number of elements 57e7f679fcSJeremy L Thompson @param[in] block_size Number of elements in a block 5877d1c127SSebastian Grimberg @param[in] elem_size Size of each element 5977d1c127SSebastian Grimberg 6077d1c127SSebastian Grimberg @return An error code: 0 - success, otherwise - failure 6177d1c127SSebastian Grimberg 6277d1c127SSebastian Grimberg @ref Utility 6377d1c127SSebastian Grimberg **/ 64e7f679fcSJeremy L Thompson int CeedPermutePadOrients(const bool *orients, bool *block_orients, CeedInt num_block, CeedInt num_elem, CeedInt block_size, CeedInt elem_size) { 65e7f679fcSJeremy L Thompson for (CeedInt e = 0; e < num_block * block_size; e += block_size) { 66e7f679fcSJeremy L Thompson for (CeedInt j = 0; j < block_size; j++) { 6777d1c127SSebastian Grimberg for (CeedInt k = 0; k < elem_size; k++) { 68e7f679fcSJeremy L Thompson block_orients[e * elem_size + k * block_size + j] = orients[CeedIntMin(e + j, num_elem - 1) * elem_size + k]; 6977d1c127SSebastian Grimberg } 7077d1c127SSebastian Grimberg } 7177d1c127SSebastian Grimberg } 7277d1c127SSebastian Grimberg return CEED_ERROR_SUCCESS; 7377d1c127SSebastian Grimberg } 7477d1c127SSebastian Grimberg 750c73c039SSebastian Grimberg /** 76ca94c3ddSJeremy L Thompson @brief Permute and pad curl-conforming orientations for a blocked `CeedElemRestriction` 770c73c039SSebastian Grimberg 785c7e0f51SSebastian Grimberg @param[in] curl_orients Array of shape `[num_elem, elem_size]` 79ca94c3ddSJeremy L Thompson @param[out] block_curl_orients Array of permuted and padded array values of shape `[num_block, elem_size, block_size]` 80e7f679fcSJeremy L Thompson @param[in] num_block Number of blocks 810c73c039SSebastian Grimberg @param[in] num_elem Number of elements 82e7f679fcSJeremy L Thompson @param[in] block_size Number of elements in a block 830c73c039SSebastian Grimberg @param[in] elem_size Size of each element 840c73c039SSebastian Grimberg 850c73c039SSebastian Grimberg @return An error code: 0 - success, otherwise - failure 860c73c039SSebastian Grimberg 870c73c039SSebastian Grimberg @ref Utility 880c73c039SSebastian Grimberg **/ 89e7f679fcSJeremy L Thompson int CeedPermutePadCurlOrients(const CeedInt8 *curl_orients, CeedInt8 *block_curl_orients, CeedInt num_block, CeedInt num_elem, CeedInt block_size, 900c73c039SSebastian Grimberg CeedInt elem_size) { 91e7f679fcSJeremy L Thompson for (CeedInt e = 0; e < num_block * block_size; e += block_size) { 92e7f679fcSJeremy L Thompson for (CeedInt j = 0; j < block_size; j++) { 930c73c039SSebastian Grimberg for (CeedInt k = 0; k < elem_size; k++) { 94e7f679fcSJeremy L Thompson block_curl_orients[e * elem_size + k * block_size + j] = curl_orients[CeedIntMin(e + j, num_elem - 1) * elem_size + k]; 950c73c039SSebastian Grimberg } 960c73c039SSebastian Grimberg } 970c73c039SSebastian Grimberg } 980c73c039SSebastian Grimberg return CEED_ERROR_SUCCESS; 990c73c039SSebastian Grimberg } 1000c73c039SSebastian Grimberg 1017a982d89SJeremy L. Thompson /// @} 1027a982d89SJeremy L. Thompson 1037a982d89SJeremy L. Thompson /// ---------------------------------------------------------------------------- 1047a982d89SJeremy L. Thompson /// CeedElemRestriction Backend API 1057a982d89SJeremy L. Thompson /// ---------------------------------------------------------------------------- 1067a982d89SJeremy L. Thompson /// @addtogroup CeedElemRestrictionBackend 1077a982d89SJeremy L. Thompson /// @{ 1087a982d89SJeremy L. Thompson 1097a982d89SJeremy L. Thompson /** 110ca94c3ddSJeremy L Thompson @brief Get the type of a `CeedElemRestriction` 111a681ae63Sjeremylt 112ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 113fcbe8c06SSebastian Grimberg @param[out] rstr_type Variable to store restriction type 114fcbe8c06SSebastian Grimberg 115fcbe8c06SSebastian Grimberg @return An error code: 0 - success, otherwise - failure 116fcbe8c06SSebastian Grimberg 117fcbe8c06SSebastian Grimberg @ref Backend 118fcbe8c06SSebastian Grimberg **/ 119fcbe8c06SSebastian Grimberg int CeedElemRestrictionGetType(CeedElemRestriction rstr, CeedRestrictionType *rstr_type) { 120fcbe8c06SSebastian Grimberg *rstr_type = rstr->rstr_type; 121fcbe8c06SSebastian Grimberg return CEED_ERROR_SUCCESS; 122fcbe8c06SSebastian Grimberg } 123fcbe8c06SSebastian Grimberg 124fcbe8c06SSebastian Grimberg /** 125ca94c3ddSJeremy L Thompson @brief Get the strided status of a `CeedElemRestriction` 126fcbe8c06SSebastian Grimberg 127ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 128ca94c3ddSJeremy L Thompson @param[out] is_strided Variable to store strided status 129ca94c3ddSJeremy L Thompson 130ca94c3ddSJeremy L Thompson @return An error code: 0 - success, otherwise - failure 131ca94c3ddSJeremy L Thompson 132ca94c3ddSJeremy L Thompson @ref Backend 133fcbe8c06SSebastian Grimberg **/ 134fcbe8c06SSebastian Grimberg int CeedElemRestrictionIsStrided(CeedElemRestriction rstr, bool *is_strided) { 135fcbe8c06SSebastian Grimberg *is_strided = (rstr->rstr_type == CEED_RESTRICTION_STRIDED); 136fcbe8c06SSebastian Grimberg return CEED_ERROR_SUCCESS; 137fcbe8c06SSebastian Grimberg } 138fcbe8c06SSebastian Grimberg 139fcbe8c06SSebastian Grimberg /** 140ca94c3ddSJeremy L Thompson @brief Get the points status of a `CeedElemRestriction` 1413ac8f562SJeremy L Thompson 142ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 143ca94c3ddSJeremy L Thompson @param[out] is_points Variable to store points status 144ca94c3ddSJeremy L Thompson 145ca94c3ddSJeremy L Thompson @return An error code: 0 - success, otherwise - failure 146ca94c3ddSJeremy L Thompson 147ca94c3ddSJeremy L Thompson @ref Backend 1483ac8f562SJeremy L Thompson **/ 1493ac8f562SJeremy L Thompson int CeedElemRestrictionIsPoints(CeedElemRestriction rstr, bool *is_points) { 1503ac8f562SJeremy L Thompson *is_points = (rstr->rstr_type == CEED_RESTRICTION_POINTS); 1513ac8f562SJeremy L Thompson return CEED_ERROR_SUCCESS; 1523ac8f562SJeremy L Thompson } 1533ac8f562SJeremy L Thompson 1543ac8f562SJeremy L Thompson /** 155ca94c3ddSJeremy L Thompson @brief Check if two `CeedElemRestriction` created with @ref CeedElemRestrictionCreateAtPoints() and use the same points per element 15648acf710SJeremy L Thompson 157ca94c3ddSJeremy L Thompson @param[in] rstr_a First `CeedElemRestriction` 158ca94c3ddSJeremy L Thompson @param[in] rstr_b Second `CeedElemRestriction` 15948acf710SJeremy L Thompson @param[out] are_compatible Variable to store compatibility status 160ca94c3ddSJeremy L Thompson 161ca94c3ddSJeremy L Thompson @return An error code: 0 - success, otherwise - failure 162ca94c3ddSJeremy L Thompson 163ca94c3ddSJeremy L Thompson @ref Backend 16448acf710SJeremy L Thompson **/ 16548acf710SJeremy L Thompson int CeedElemRestrictionAtPointsAreCompatible(CeedElemRestriction rstr_a, CeedElemRestriction rstr_b, bool *are_compatible) { 16648acf710SJeremy L Thompson CeedInt num_elem_a, num_elem_b, num_points_a, num_points_b; 1671203703bSJeremy L Thompson Ceed ceed; 1681203703bSJeremy L Thompson 1691203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetCeed(rstr_a, &ceed)); 17048acf710SJeremy L Thompson 17148acf710SJeremy L Thompson // Cannot compare non-points restrictions 1721203703bSJeremy L Thompson CeedCheck(rstr_a->rstr_type == CEED_RESTRICTION_POINTS, ceed, CEED_ERROR_UNSUPPORTED, "First CeedElemRestriction must be AtPoints"); 1731203703bSJeremy L Thompson CeedCheck(rstr_b->rstr_type == CEED_RESTRICTION_POINTS, ceed, CEED_ERROR_UNSUPPORTED, "Second CeedElemRestriction must be AtPoints"); 17448acf710SJeremy L Thompson 17548acf710SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumElements(rstr_a, &num_elem_a)); 17648acf710SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumElements(rstr_b, &num_elem_b)); 17748acf710SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumPoints(rstr_a, &num_points_a)); 17848acf710SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumPoints(rstr_b, &num_points_b)); 17948acf710SJeremy L Thompson 18048acf710SJeremy L Thompson // Check size and contents of offsets arrays 18148acf710SJeremy L Thompson *are_compatible = true; 18248acf710SJeremy L Thompson if (num_elem_a != num_elem_b) *are_compatible = false; 18348acf710SJeremy L Thompson if (num_points_a != num_points_b) *are_compatible = false; 18448acf710SJeremy L Thompson if (*are_compatible) { 18548acf710SJeremy L Thompson const CeedInt *offsets_a, *offsets_b; 18648acf710SJeremy L Thompson 18748acf710SJeremy L Thompson CeedCall(CeedElemRestrictionGetOffsets(rstr_a, CEED_MEM_HOST, &offsets_a)); 18848acf710SJeremy L Thompson CeedCall(CeedElemRestrictionGetOffsets(rstr_b, CEED_MEM_HOST, &offsets_b)); 18948acf710SJeremy L Thompson for (CeedInt i = 0; i < num_elem_a + 1 + num_points_a; i++) *are_compatible &= offsets_a[i] == offsets_b[i]; 19048acf710SJeremy L Thompson CeedCall(CeedElemRestrictionRestoreOffsets(rstr_a, &offsets_a)); 19148acf710SJeremy L Thompson CeedCall(CeedElemRestrictionRestoreOffsets(rstr_b, &offsets_b)); 19248acf710SJeremy L Thompson } 19348acf710SJeremy L Thompson return CEED_ERROR_SUCCESS; 19448acf710SJeremy L Thompson } 19548acf710SJeremy L Thompson 19648acf710SJeremy L Thompson /** 197ca94c3ddSJeremy L Thompson @brief Get the strides of a strided `CeedElemRestriction` 1987a982d89SJeremy L. Thompson 199ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 200a681ae63Sjeremylt @param[out] strides Variable to store strides array 2017a982d89SJeremy L. Thompson 2027a982d89SJeremy L. Thompson @return An error code: 0 - success, otherwise - failure 2037a982d89SJeremy L. Thompson 2047a982d89SJeremy L. Thompson @ref Backend 2057a982d89SJeremy L. Thompson **/ 20656c48462SJeremy L Thompson int CeedElemRestrictionGetStrides(CeedElemRestriction rstr, CeedInt strides[3]) { 2076e536b99SJeremy L Thompson CeedCheck(rstr->strides, CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_MINOR, "CeedElemRestriction has no stride data"); 20856c48462SJeremy L Thompson for (CeedInt i = 0; i < 3; i++) strides[i] = rstr->strides[i]; 209e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 2107a982d89SJeremy L. Thompson } 2117a982d89SJeremy L. Thompson 2127a982d89SJeremy L. Thompson /** 213ca94c3ddSJeremy L Thompson @brief Get the backend stride status of a `CeedElemRestriction` 21477d1c127SSebastian Grimberg 215ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 21677d1c127SSebastian Grimberg @param[out] has_backend_strides Variable to store stride status 21777d1c127SSebastian Grimberg 21877d1c127SSebastian Grimberg @return An error code: 0 - success, otherwise - failure 21977d1c127SSebastian Grimberg 22077d1c127SSebastian Grimberg @ref Backend 22177d1c127SSebastian Grimberg **/ 22277d1c127SSebastian Grimberg int CeedElemRestrictionHasBackendStrides(CeedElemRestriction rstr, bool *has_backend_strides) { 2236e536b99SJeremy L Thompson CeedCheck(rstr->strides, CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_MINOR, "CeedElemRestriction has no stride data"); 22477d1c127SSebastian Grimberg *has_backend_strides = ((rstr->strides[0] == CEED_STRIDES_BACKEND[0]) && (rstr->strides[1] == CEED_STRIDES_BACKEND[1]) && 22577d1c127SSebastian Grimberg (rstr->strides[2] == CEED_STRIDES_BACKEND[2])); 22677d1c127SSebastian Grimberg return CEED_ERROR_SUCCESS; 22777d1c127SSebastian Grimberg } 22877d1c127SSebastian Grimberg 22977d1c127SSebastian Grimberg /** 230ca94c3ddSJeremy L Thompson @brief Get read-only access to a `CeedElemRestriction` offsets array by @ref CeedMemType 231bd33150aSjeremylt 232ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to retrieve offsets 233fcbe8c06SSebastian Grimberg @param[in] mem_type Memory type on which to access the array. 234fcbe8c06SSebastian Grimberg If the backend uses a different memory type, this will perform a copy (possibly cached). 235ca94c3ddSJeremy L Thompson @param[out] offsets Array on memory type `mem_type` 236bd33150aSjeremylt 237bd33150aSjeremylt @return An error code: 0 - success, otherwise - failure 238bd33150aSjeremylt 239bd33150aSjeremylt @ref User 240bd33150aSjeremylt **/ 2412b730f8bSJeremy L Thompson int CeedElemRestrictionGetOffsets(CeedElemRestriction rstr, CeedMemType mem_type, const CeedInt **offsets) { 2427c1dbaffSSebastian Grimberg if (rstr->rstr_base) { 2437c1dbaffSSebastian Grimberg CeedCall(CeedElemRestrictionGetOffsets(rstr->rstr_base, mem_type, offsets)); 244c17ec2beSJeremy L Thompson } else { 2456e536b99SJeremy L Thompson CeedCheck(rstr->GetOffsets, CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_UNSUPPORTED, 2466e536b99SJeremy L Thompson "Backend does not support CeedElemRestrictionGetOffsets"); 2472b730f8bSJeremy L Thompson CeedCall(rstr->GetOffsets(rstr, mem_type, offsets)); 248d1d35e2fSjeremylt rstr->num_readers++; 249c17ec2beSJeremy L Thompson } 250e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 251430758c8SJeremy L Thompson } 252430758c8SJeremy L Thompson 253430758c8SJeremy L Thompson /** 254ca94c3ddSJeremy L Thompson @brief Restore an offsets array obtained using @ref CeedElemRestrictionGetOffsets() 255430758c8SJeremy L Thompson 256ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to restore 257ea61e9acSJeremy L Thompson @param[in] offsets Array of offset data 258430758c8SJeremy L Thompson 259430758c8SJeremy L Thompson @return An error code: 0 - success, otherwise - failure 260430758c8SJeremy L Thompson 261430758c8SJeremy L Thompson @ref User 262430758c8SJeremy L Thompson **/ 2632b730f8bSJeremy L Thompson int CeedElemRestrictionRestoreOffsets(CeedElemRestriction rstr, const CeedInt **offsets) { 2647c1dbaffSSebastian Grimberg if (rstr->rstr_base) { 2657c1dbaffSSebastian Grimberg CeedCall(CeedElemRestrictionRestoreOffsets(rstr->rstr_base, offsets)); 266c17ec2beSJeremy L Thompson } else { 267430758c8SJeremy L Thompson *offsets = NULL; 268d1d35e2fSjeremylt rstr->num_readers--; 269c17ec2beSJeremy L Thompson } 270e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 271bd33150aSjeremylt } 272bd33150aSjeremylt 273bd33150aSjeremylt /** 274ca94c3ddSJeremy L Thompson @brief Get read-only access to a `CeedElemRestriction` orientations array by @ref CeedMemType 2753ac43b2cSJeremy L Thompson 276ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to retrieve orientations 277fcbe8c06SSebastian Grimberg @param[in] mem_type Memory type on which to access the array. 278fcbe8c06SSebastian Grimberg If the backend uses a different memory type, this will perform a copy (possibly cached). 279ca94c3ddSJeremy L Thompson @param[out] orients Array on memory type `mem_type` 2803ac43b2cSJeremy L Thompson 2813ac43b2cSJeremy L Thompson @return An error code: 0 - success, otherwise - failure 2823ac43b2cSJeremy L Thompson 28377d1c127SSebastian Grimberg @ref User 2843ac43b2cSJeremy L Thompson **/ 28577d1c127SSebastian Grimberg int CeedElemRestrictionGetOrientations(CeedElemRestriction rstr, CeedMemType mem_type, const bool **orients) { 2866e536b99SJeremy L Thompson CeedCheck(rstr->GetOrientations, CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_UNSUPPORTED, 2876e536b99SJeremy L Thompson "Backend does not support CeedElemRestrictionGetOrientations"); 28877d1c127SSebastian Grimberg CeedCall(rstr->GetOrientations(rstr, mem_type, orients)); 28977d1c127SSebastian Grimberg rstr->num_readers++; 290e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 2913ac43b2cSJeremy L Thompson } 2923ac43b2cSJeremy L Thompson 2933ac43b2cSJeremy L Thompson /** 294ca94c3ddSJeremy L Thompson @brief Restore an orientations array obtained using @ref CeedElemRestrictionGetOrientations() 295b435c5a6Srezgarshakeri 296ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to restore 29777d1c127SSebastian Grimberg @param[in] orients Array of orientation data 298b435c5a6Srezgarshakeri 299b435c5a6Srezgarshakeri @return An error code: 0 - success, otherwise - failure 300b435c5a6Srezgarshakeri 30177d1c127SSebastian Grimberg @ref User 302b435c5a6Srezgarshakeri **/ 30377d1c127SSebastian Grimberg int CeedElemRestrictionRestoreOrientations(CeedElemRestriction rstr, const bool **orients) { 30477d1c127SSebastian Grimberg *orients = NULL; 30577d1c127SSebastian Grimberg rstr->num_readers--; 306b435c5a6Srezgarshakeri return CEED_ERROR_SUCCESS; 307b435c5a6Srezgarshakeri } 308b435c5a6Srezgarshakeri 309b435c5a6Srezgarshakeri /** 310ca94c3ddSJeremy L Thompson @brief Get read-only access to a `CeedElemRestriction` curl-conforming orientations array by @ref CeedMemType 3117a982d89SJeremy L. Thompson 312ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to retrieve curl-conforming orientations 313fcbe8c06SSebastian Grimberg @param[in] mem_type Memory type on which to access the array. 314fcbe8c06SSebastian Grimberg If the backend uses a different memory type, this will perform a copy (possibly cached). 315ca94c3ddSJeremy L Thompson @param[out] curl_orients Array on memory type `mem_type` 3167a982d89SJeremy L. Thompson 3177a982d89SJeremy L. Thompson @return An error code: 0 - success, otherwise - failure 3187a982d89SJeremy L. Thompson 31977d1c127SSebastian Grimberg @ref User 3207a982d89SJeremy L. Thompson **/ 3210c73c039SSebastian Grimberg int CeedElemRestrictionGetCurlOrientations(CeedElemRestriction rstr, CeedMemType mem_type, const CeedInt8 **curl_orients) { 3226e536b99SJeremy L Thompson CeedCheck(rstr->GetCurlOrientations, CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_UNSUPPORTED, 3236e536b99SJeremy L Thompson "Backend does not support CeedElemRestrictionGetCurlOrientations"); 32477d1c127SSebastian Grimberg CeedCall(rstr->GetCurlOrientations(rstr, mem_type, curl_orients)); 32577d1c127SSebastian Grimberg rstr->num_readers++; 32677d1c127SSebastian Grimberg return CEED_ERROR_SUCCESS; 32777d1c127SSebastian Grimberg } 32877d1c127SSebastian Grimberg 32977d1c127SSebastian Grimberg /** 330ca94c3ddSJeremy L Thompson @brief Restore an orientations array obtained using @ref CeedElemRestrictionGetCurlOrientations() 33177d1c127SSebastian Grimberg 332ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to restore 33377d1c127SSebastian Grimberg @param[in] curl_orients Array of orientation data 33477d1c127SSebastian Grimberg 33577d1c127SSebastian Grimberg @return An error code: 0 - success, otherwise - failure 33677d1c127SSebastian Grimberg 33777d1c127SSebastian Grimberg @ref User 33877d1c127SSebastian Grimberg **/ 3390c73c039SSebastian Grimberg int CeedElemRestrictionRestoreCurlOrientations(CeedElemRestriction rstr, const CeedInt8 **curl_orients) { 34077d1c127SSebastian Grimberg *curl_orients = NULL; 34177d1c127SSebastian Grimberg rstr->num_readers--; 342e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 3437a982d89SJeremy L. Thompson } 3447a982d89SJeremy L. Thompson 3457a982d89SJeremy L. Thompson /** 34649fd234cSJeremy L Thompson 34722eb1385SJeremy L Thompson @brief Get the L-vector layout of a strided `CeedElemRestriction` 34822eb1385SJeremy L Thompson 34922eb1385SJeremy L Thompson @param[in] rstr `CeedElemRestriction` 35022eb1385SJeremy L Thompson @param[out] layout Variable to store layout array, stored as `[nodes, components, elements]`. 35122eb1385SJeremy L Thompson The data for node `i`, component `j`, element `k` in the E-vector is given by `i*layout[0] + j*layout[1] + k*layout[2]`. 35222eb1385SJeremy L Thompson 35322eb1385SJeremy L Thompson @return An error code: 0 - success, otherwise - failure 35422eb1385SJeremy L Thompson 35522eb1385SJeremy L Thompson @ref Backend 35622eb1385SJeremy L Thompson **/ 35756c48462SJeremy L Thompson int CeedElemRestrictionGetLLayout(CeedElemRestriction rstr, CeedInt layout[3]) { 35822eb1385SJeremy L Thompson bool has_backend_strides; 35922eb1385SJeremy L Thompson CeedRestrictionType rstr_type; 3601203703bSJeremy L Thompson Ceed ceed; 36122eb1385SJeremy L Thompson 3621203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetCeed(rstr, &ceed)); 36322eb1385SJeremy L Thompson CeedCall(CeedElemRestrictionGetType(rstr, &rstr_type)); 3641203703bSJeremy L Thompson CeedCheck(rstr_type == CEED_RESTRICTION_STRIDED, ceed, CEED_ERROR_MINOR, "Only strided CeedElemRestriction have strided L-vector layout"); 36522eb1385SJeremy L Thompson CeedCall(CeedElemRestrictionHasBackendStrides(rstr, &has_backend_strides)); 36622eb1385SJeremy L Thompson if (has_backend_strides) { 3671203703bSJeremy L Thompson CeedCheck(rstr->l_layout[0], ceed, CEED_ERROR_MINOR, "CeedElemRestriction has no L-vector layout data"); 36856c48462SJeremy L Thompson for (CeedInt i = 0; i < 3; i++) layout[i] = rstr->l_layout[i]; 36922eb1385SJeremy L Thompson } else { 37022eb1385SJeremy L Thompson CeedCall(CeedElemRestrictionGetStrides(rstr, layout)); 37122eb1385SJeremy L Thompson } 37222eb1385SJeremy L Thompson return CEED_ERROR_SUCCESS; 37322eb1385SJeremy L Thompson } 37422eb1385SJeremy L Thompson 37522eb1385SJeremy L Thompson /** 37622eb1385SJeremy L Thompson 37722eb1385SJeremy L Thompson @brief Set the L-vector layout of a strided `CeedElemRestriction` 37822eb1385SJeremy L Thompson 37922eb1385SJeremy L Thompson @param[in] rstr `CeedElemRestriction` 38022eb1385SJeremy L Thompson @param[in] layout Variable to containing layout array, stored as `[nodes, components, elements]`. 38122eb1385SJeremy L Thompson The data for node `i`, component `j`, element `k` in the E-vector is given by `i*layout[0] + j*layout[1] + k*layout[2]`. 38222eb1385SJeremy L Thompson 38322eb1385SJeremy L Thompson @return An error code: 0 - success, otherwise - failure 38422eb1385SJeremy L Thompson 38522eb1385SJeremy L Thompson @ref Backend 38622eb1385SJeremy L Thompson **/ 38722eb1385SJeremy L Thompson int CeedElemRestrictionSetLLayout(CeedElemRestriction rstr, CeedInt layout[3]) { 38822eb1385SJeremy L Thompson CeedRestrictionType rstr_type; 38922eb1385SJeremy L Thompson 39022eb1385SJeremy L Thompson CeedCall(CeedElemRestrictionGetType(rstr, &rstr_type)); 3916e536b99SJeremy L Thompson CeedCheck(rstr_type == CEED_RESTRICTION_STRIDED, CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_MINOR, 3926e536b99SJeremy L Thompson "Only strided CeedElemRestriction have strided L-vector layout"); 39322eb1385SJeremy L Thompson for (CeedInt i = 0; i < 3; i++) rstr->l_layout[i] = layout[i]; 39422eb1385SJeremy L Thompson return CEED_ERROR_SUCCESS; 39522eb1385SJeremy L Thompson } 39622eb1385SJeremy L Thompson 39722eb1385SJeremy L Thompson /** 39822eb1385SJeremy L Thompson 399ca94c3ddSJeremy L Thompson @brief Get the E-vector layout of a `CeedElemRestriction` 40049fd234cSJeremy L Thompson 401ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 402ca94c3ddSJeremy L Thompson @param[out] layout Variable to store layout array, stored as `[nodes, components, elements]`. 403ca94c3ddSJeremy L Thompson The data for node `i`, component `j`, element `k` in the E-vector is given by `i*layout[0] + j*layout[1] + k*layout[2]`. 40449fd234cSJeremy L Thompson 40549fd234cSJeremy L Thompson @return An error code: 0 - success, otherwise - failure 40649fd234cSJeremy L Thompson 40749fd234cSJeremy L Thompson @ref Backend 40849fd234cSJeremy L Thompson **/ 40956c48462SJeremy L Thompson int CeedElemRestrictionGetELayout(CeedElemRestriction rstr, CeedInt layout[3]) { 4106e536b99SJeremy L Thompson CeedCheck(rstr->e_layout[0], CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_MINOR, "CeedElemRestriction has no E-vector layout data"); 41156c48462SJeremy L Thompson for (CeedInt i = 0; i < 3; i++) layout[i] = rstr->e_layout[i]; 412e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 41349fd234cSJeremy L Thompson } 41449fd234cSJeremy L Thompson 41549fd234cSJeremy L Thompson /** 41649fd234cSJeremy L Thompson 417ca94c3ddSJeremy L Thompson @brief Set the E-vector layout of a `CeedElemRestriction` 41849fd234cSJeremy L Thompson 419ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 420ca94c3ddSJeremy L Thompson @param[in] layout Variable to containing layout array, stored as `[nodes, components, elements]`. 421ca94c3ddSJeremy L Thompson The data for node `i`, component `j`, element `k` in the E-vector is given by `i*layout[0] + j*layout[1] + k*layout[2]`. 42249fd234cSJeremy L Thompson 42349fd234cSJeremy L Thompson @return An error code: 0 - success, otherwise - failure 42449fd234cSJeremy L Thompson 42549fd234cSJeremy L Thompson @ref Backend 42649fd234cSJeremy L Thompson **/ 4272b730f8bSJeremy L Thompson int CeedElemRestrictionSetELayout(CeedElemRestriction rstr, CeedInt layout[3]) { 42822eb1385SJeremy L Thompson for (CeedInt i = 0; i < 3; i++) rstr->e_layout[i] = layout[i]; 429e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 43049fd234cSJeremy L Thompson } 43149fd234cSJeremy L Thompson 43249fd234cSJeremy L Thompson /** 433ca94c3ddSJeremy L Thompson @brief Get the backend data of a `CeedElemRestriction` 4347a982d89SJeremy L. Thompson 435ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 4367a982d89SJeremy L. Thompson @param[out] data Variable to store data 4377a982d89SJeremy L. Thompson 4387a982d89SJeremy L. Thompson @return An error code: 0 - success, otherwise - failure 4397a982d89SJeremy L. Thompson 4407a982d89SJeremy L. Thompson @ref Backend 4417a982d89SJeremy L. Thompson **/ 442777ff853SJeremy L Thompson int CeedElemRestrictionGetData(CeedElemRestriction rstr, void *data) { 443777ff853SJeremy L Thompson *(void **)data = rstr->data; 444e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 4457a982d89SJeremy L. Thompson } 4467a982d89SJeremy L. Thompson 4477a982d89SJeremy L. Thompson /** 448ca94c3ddSJeremy L Thompson @brief Set the backend data of a `CeedElemRestriction` 4497a982d89SJeremy L. Thompson 450ca94c3ddSJeremy L Thompson @param[in,out] rstr `CeedElemRestriction` 451ea61e9acSJeremy L Thompson @param[in] data Data to set 4527a982d89SJeremy L. Thompson 4537a982d89SJeremy L. Thompson @return An error code: 0 - success, otherwise - failure 4547a982d89SJeremy L. Thompson 4557a982d89SJeremy L. Thompson @ref Backend 4567a982d89SJeremy L. Thompson **/ 457777ff853SJeremy L Thompson int CeedElemRestrictionSetData(CeedElemRestriction rstr, void *data) { 458777ff853SJeremy L Thompson rstr->data = data; 459e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 4607a982d89SJeremy L. Thompson } 4617a982d89SJeremy L. Thompson 46234359f16Sjeremylt /** 463ca94c3ddSJeremy L Thompson @brief Increment the reference counter for a `CeedElemRestriction` 46434359f16Sjeremylt 465ca94c3ddSJeremy L Thompson @param[in,out] rstr `CeedElemRestriction` to increment the reference counter 46634359f16Sjeremylt 46734359f16Sjeremylt @return An error code: 0 - success, otherwise - failure 46834359f16Sjeremylt 46934359f16Sjeremylt @ref Backend 47034359f16Sjeremylt **/ 4719560d06aSjeremylt int CeedElemRestrictionReference(CeedElemRestriction rstr) { 47234359f16Sjeremylt rstr->ref_count++; 47334359f16Sjeremylt return CEED_ERROR_SUCCESS; 47434359f16Sjeremylt } 47534359f16Sjeremylt 4766e15d496SJeremy L Thompson /** 477ca94c3ddSJeremy L Thompson @brief Estimate number of FLOPs required to apply `CeedElemRestriction` in `t_mode` 4786e15d496SJeremy L Thompson 479ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to estimate FLOPs for 480ea61e9acSJeremy L Thompson @param[in] t_mode Apply restriction or transpose 481ea61e9acSJeremy L Thompson @param[out] flops Address of variable to hold FLOPs estimate 4826e15d496SJeremy L Thompson 4836e15d496SJeremy L Thompson @ref Backend 4846e15d496SJeremy L Thompson **/ 4852b730f8bSJeremy L Thompson int CeedElemRestrictionGetFlopsEstimate(CeedElemRestriction rstr, CeedTransposeMode t_mode, CeedSize *flops) { 4861203703bSJeremy L Thompson CeedSize e_size, scale = 0; 48789edb9e3SSebastian Grimberg CeedRestrictionType rstr_type; 4881c66c397SJeremy L Thompson 4891203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetEVectorSize(rstr, &e_size)); 49089edb9e3SSebastian Grimberg CeedCall(CeedElemRestrictionGetType(rstr, &rstr_type)); 49177d1c127SSebastian Grimberg if (t_mode == CEED_TRANSPOSE) { 49289edb9e3SSebastian Grimberg switch (rstr_type) { 4933ac8f562SJeremy L Thompson case CEED_RESTRICTION_POINTS: 4943ac8f562SJeremy L Thompson scale = 0; 4953ac8f562SJeremy L Thompson break; 49689edb9e3SSebastian Grimberg case CEED_RESTRICTION_STRIDED: 49789edb9e3SSebastian Grimberg case CEED_RESTRICTION_STANDARD: 49877d1c127SSebastian Grimberg scale = 1; 49989edb9e3SSebastian Grimberg break; 50089edb9e3SSebastian Grimberg case CEED_RESTRICTION_ORIENTED: 50177d1c127SSebastian Grimberg scale = 2; 50289edb9e3SSebastian Grimberg break; 50389edb9e3SSebastian Grimberg case CEED_RESTRICTION_CURL_ORIENTED: 50477d1c127SSebastian Grimberg scale = 6; 50589edb9e3SSebastian Grimberg break; 5066e15d496SJeremy L Thompson } 50777d1c127SSebastian Grimberg } else { 50889edb9e3SSebastian Grimberg switch (rstr_type) { 50989edb9e3SSebastian Grimberg case CEED_RESTRICTION_STRIDED: 51089edb9e3SSebastian Grimberg case CEED_RESTRICTION_STANDARD: 5113ac8f562SJeremy L Thompson case CEED_RESTRICTION_POINTS: 51277d1c127SSebastian Grimberg scale = 0; 51389edb9e3SSebastian Grimberg break; 51489edb9e3SSebastian Grimberg case CEED_RESTRICTION_ORIENTED: 51577d1c127SSebastian Grimberg scale = 1; 51689edb9e3SSebastian Grimberg break; 51789edb9e3SSebastian Grimberg case CEED_RESTRICTION_CURL_ORIENTED: 51877d1c127SSebastian Grimberg scale = 5; 51989edb9e3SSebastian Grimberg break; 52077d1c127SSebastian Grimberg } 52177d1c127SSebastian Grimberg } 5226e15d496SJeremy L Thompson *flops = e_size * scale; 5236e15d496SJeremy L Thompson return CEED_ERROR_SUCCESS; 5246e15d496SJeremy L Thompson } 5256e15d496SJeremy L Thompson 5267a982d89SJeremy L. Thompson /// @} 5277a982d89SJeremy L. Thompson 52815910d16Sjeremylt /// @cond DOXYGEN_SKIP 52915910d16Sjeremylt static struct CeedElemRestriction_private ceed_elemrestriction_none; 53015910d16Sjeremylt /// @endcond 53115910d16Sjeremylt 5327a982d89SJeremy L. Thompson /// ---------------------------------------------------------------------------- 5337a982d89SJeremy L. Thompson /// CeedElemRestriction Public API 5347a982d89SJeremy L. Thompson /// ---------------------------------------------------------------------------- 5357a982d89SJeremy L. Thompson /// @addtogroup CeedElemRestrictionUser 536d7b241e6Sjeremylt /// @{ 537d7b241e6Sjeremylt 5387a982d89SJeremy L. Thompson /// Indicate that the stride is determined by the backend 53945f1e315Sjeremylt const CeedInt CEED_STRIDES_BACKEND[3] = {0}; 5407a982d89SJeremy L. Thompson 541ca94c3ddSJeremy L Thompson /// Argument for @ref CeedOperatorSetField() indicating that the field does not require a `CeedElemRestriction` 5422b730f8bSJeremy L Thompson const CeedElemRestriction CEED_ELEMRESTRICTION_NONE = &ceed_elemrestriction_none; 5437a982d89SJeremy L. Thompson 544d7b241e6Sjeremylt /** 545ca94c3ddSJeremy L Thompson @brief Create a `CeedElemRestriction` 546d7b241e6Sjeremylt 547ca94c3ddSJeremy L Thompson @param[in] ceed `Ceed` context used to create the `CeedElemRestriction` 548ca94c3ddSJeremy L Thompson @param[in] num_elem Number of elements described in the `offsets` array 549ea61e9acSJeremy L Thompson @param[in] elem_size Size (number of "nodes") per element 550ea61e9acSJeremy L Thompson @param[in] num_comp Number of field components per interpolation node (1 for scalar fields) 551fcbe8c06SSebastian Grimberg @param[in] comp_stride Stride between components for the same L-vector "node". 552ca94c3ddSJeremy L Thompson Data for node `i`, component `j`, element `k` can be found in the L-vector at index `offsets[i + k*elem_size] + j*comp_stride`. 553fcbe8c06SSebastian Grimberg @param[in] l_size The size of the L-vector. 554fcbe8c06SSebastian Grimberg This vector may be larger than the elements and fields given by this restriction. 555ca94c3ddSJeremy L Thompson @param[in] mem_type Memory type of the `offsets` array, see @ref CeedMemType 556ca94c3ddSJeremy L Thompson @param[in] copy_mode Copy mode for the `offsets` array, see @ref CeedCopyMode 557ca94c3ddSJeremy L Thompson @param[in] offsets Array of shape `[num_elem, elem_size]`. 558ca94c3ddSJeremy L Thompson Row `i` holds the ordered list of the offsets (into the input `CeedVector`) for the unknowns corresponding to element `i`, where 0 <= i < @a num_elem. 559ca94c3ddSJeremy L Thompson All offsets must be in the range `[0, l_size - 1]`. 560ca94c3ddSJeremy L Thompson @param[out] rstr Address of the variable where the newly created `CeedElemRestriction` will be stored 561d7b241e6Sjeremylt 562b11c1e72Sjeremylt @return An error code: 0 - success, otherwise - failure 563dfdf5a53Sjeremylt 5647a982d89SJeremy L. Thompson @ref User 565b11c1e72Sjeremylt **/ 5662b730f8bSJeremy L Thompson int CeedElemRestrictionCreate(Ceed ceed, CeedInt num_elem, CeedInt elem_size, CeedInt num_comp, CeedInt comp_stride, CeedSize l_size, 5672b730f8bSJeremy L Thompson CeedMemType mem_type, CeedCopyMode copy_mode, const CeedInt *offsets, CeedElemRestriction *rstr) { 5685fe0d4faSjeremylt if (!ceed->ElemRestrictionCreate) { 5695fe0d4faSjeremylt Ceed delegate; 5706574a04fSJeremy L Thompson 5712b730f8bSJeremy L Thompson CeedCall(CeedGetObjectDelegate(ceed, &delegate, "ElemRestriction")); 572ca94c3ddSJeremy L Thompson CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionCreate"); 5732b730f8bSJeremy L Thompson CeedCall(CeedElemRestrictionCreate(delegate, num_elem, elem_size, num_comp, comp_stride, l_size, mem_type, copy_mode, offsets, rstr)); 574e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 5755fe0d4faSjeremylt } 5765fe0d4faSjeremylt 577e7f679fcSJeremy L Thompson CeedCheck(num_elem >= 0, ceed, CEED_ERROR_DIMENSION, "Number of elements must be non-negative"); 5786574a04fSJeremy L Thompson CeedCheck(elem_size > 0, ceed, CEED_ERROR_DIMENSION, "Element size must be at least 1"); 579ca94c3ddSJeremy L Thompson CeedCheck(num_comp > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction must have at least 1 component"); 580ca94c3ddSJeremy L Thompson CeedCheck(num_comp == 1 || comp_stride > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction component stride must be at least 1"); 581e022e1f8SJeremy L Thompson 5822b730f8bSJeremy L Thompson CeedCall(CeedCalloc(1, rstr)); 583db002c03SJeremy L Thompson CeedCall(CeedReferenceCopy(ceed, &(*rstr)->ceed)); 584d1d35e2fSjeremylt (*rstr)->ref_count = 1; 585d1d35e2fSjeremylt (*rstr)->num_elem = num_elem; 586d1d35e2fSjeremylt (*rstr)->elem_size = elem_size; 587d1d35e2fSjeremylt (*rstr)->num_comp = num_comp; 588d1d35e2fSjeremylt (*rstr)->comp_stride = comp_stride; 589d1d35e2fSjeremylt (*rstr)->l_size = l_size; 5901203703bSJeremy L Thompson (*rstr)->e_size = (CeedSize)num_elem * (CeedSize)elem_size * (CeedSize)num_comp; 591e7f679fcSJeremy L Thompson (*rstr)->num_block = num_elem; 592e7f679fcSJeremy L Thompson (*rstr)->block_size = 1; 59361a27d74SSebastian Grimberg (*rstr)->rstr_type = CEED_RESTRICTION_STANDARD; 594fcbe8c06SSebastian Grimberg CeedCall(ceed->ElemRestrictionCreate(mem_type, copy_mode, offsets, NULL, NULL, *rstr)); 595e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 596d7b241e6Sjeremylt } 597d7b241e6Sjeremylt 598d7b241e6Sjeremylt /** 599ca94c3ddSJeremy L Thompson @brief Create a `CeedElemRestriction` with orientation signs 600fc0567d9Srezgarshakeri 601ca94c3ddSJeremy L Thompson @param[in] ceed `Ceed` context used to create the `CeedElemRestriction` 602ca94c3ddSJeremy L Thompson @param[in] num_elem Number of elements described in the `offsets` array 603ea61e9acSJeremy L Thompson @param[in] elem_size Size (number of "nodes") per element 604ea61e9acSJeremy L Thompson @param[in] num_comp Number of field components per interpolation node (1 for scalar fields) 605fcbe8c06SSebastian Grimberg @param[in] comp_stride Stride between components for the same L-vector "node". 606ca94c3ddSJeremy L Thompson Data for node `i`, component `j`, element `k` can be found in the L-vector at index `offsets[i + k*elem_size] + j*comp_stride`. 607fcbe8c06SSebastian Grimberg @param[in] l_size The size of the L-vector. 608fcbe8c06SSebastian Grimberg This vector may be larger than the elements and fields given by this restriction. 609ca94c3ddSJeremy L Thompson @param[in] mem_type Memory type of the `offsets` array, see @ref CeedMemType 610ca94c3ddSJeremy L Thompson @param[in] copy_mode Copy mode for the `offsets` array, see @ref CeedCopyMode 611ca94c3ddSJeremy L Thompson @param[in] offsets Array of shape `[num_elem, elem_size]`. 612ca94c3ddSJeremy L Thompson Row i holds the ordered list of the offsets (into the input `CeedVector`) for the unknowns corresponding to element `i`, where `0 <= i < num_elem`. 613ca94c3ddSJeremy L Thompson All offsets must be in the range `[0, l_size - 1]`. 614ca94c3ddSJeremy L Thompson @param[in] orients Boolean array of shape `[num_elem, elem_size]` with `false` for positively oriented and `true` to flip the orientation 615ca94c3ddSJeremy L Thompson @param[out] rstr Address of the variable where the newly created `CeedElemRestriction` will be stored 616fc0567d9Srezgarshakeri 617fc0567d9Srezgarshakeri @return An error code: 0 - success, otherwise - failure 618fc0567d9Srezgarshakeri 619fc0567d9Srezgarshakeri @ref User 620fc0567d9Srezgarshakeri **/ 6212b730f8bSJeremy L Thompson int CeedElemRestrictionCreateOriented(Ceed ceed, CeedInt num_elem, CeedInt elem_size, CeedInt num_comp, CeedInt comp_stride, CeedSize l_size, 62277d1c127SSebastian Grimberg CeedMemType mem_type, CeedCopyMode copy_mode, const CeedInt *offsets, const bool *orients, 623fc0567d9Srezgarshakeri CeedElemRestriction *rstr) { 624fcbe8c06SSebastian Grimberg if (!ceed->ElemRestrictionCreate) { 625fc0567d9Srezgarshakeri Ceed delegate; 6266574a04fSJeremy L Thompson 6272b730f8bSJeremy L Thompson CeedCall(CeedGetObjectDelegate(ceed, &delegate, "ElemRestriction")); 628ca94c3ddSJeremy L Thompson CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionCreateOriented"); 6292b730f8bSJeremy L Thompson CeedCall( 63077d1c127SSebastian Grimberg CeedElemRestrictionCreateOriented(delegate, num_elem, elem_size, num_comp, comp_stride, l_size, mem_type, copy_mode, offsets, orients, rstr)); 631fc0567d9Srezgarshakeri return CEED_ERROR_SUCCESS; 632fc0567d9Srezgarshakeri } 633fc0567d9Srezgarshakeri 634e7f679fcSJeremy L Thompson CeedCheck(num_elem >= 0, ceed, CEED_ERROR_DIMENSION, "Number of elements must be non-negative"); 6356574a04fSJeremy L Thompson CeedCheck(elem_size > 0, ceed, CEED_ERROR_DIMENSION, "Element size must be at least 1"); 636ca94c3ddSJeremy L Thompson CeedCheck(num_comp > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction must have at least 1 component"); 637ca94c3ddSJeremy L Thompson CeedCheck(num_comp == 1 || comp_stride > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction component stride must be at least 1"); 638e022e1f8SJeremy L Thompson 6392b730f8bSJeremy L Thompson CeedCall(CeedCalloc(1, rstr)); 640db002c03SJeremy L Thompson CeedCall(CeedReferenceCopy(ceed, &(*rstr)->ceed)); 641fc0567d9Srezgarshakeri (*rstr)->ref_count = 1; 642fc0567d9Srezgarshakeri (*rstr)->num_elem = num_elem; 643fc0567d9Srezgarshakeri (*rstr)->elem_size = elem_size; 644fc0567d9Srezgarshakeri (*rstr)->num_comp = num_comp; 645fc0567d9Srezgarshakeri (*rstr)->comp_stride = comp_stride; 646fc0567d9Srezgarshakeri (*rstr)->l_size = l_size; 6471203703bSJeremy L Thompson (*rstr)->e_size = (CeedSize)num_elem * (CeedSize)elem_size * (CeedSize)num_comp; 648e7f679fcSJeremy L Thompson (*rstr)->num_block = num_elem; 649e7f679fcSJeremy L Thompson (*rstr)->block_size = 1; 650fcbe8c06SSebastian Grimberg (*rstr)->rstr_type = CEED_RESTRICTION_ORIENTED; 651fcbe8c06SSebastian Grimberg CeedCall(ceed->ElemRestrictionCreate(mem_type, copy_mode, offsets, orients, NULL, *rstr)); 65277d1c127SSebastian Grimberg return CEED_ERROR_SUCCESS; 65377d1c127SSebastian Grimberg } 65477d1c127SSebastian Grimberg 65577d1c127SSebastian Grimberg /** 656ca94c3ddSJeremy L Thompson @brief Create a `CeedElemRestriction` with a general tridiagonal transformation matrix for curl-conforming elements 65777d1c127SSebastian Grimberg 658ca94c3ddSJeremy L Thompson @param[in] ceed `Ceed` context used to create the `CeedElemRestriction` 659ca94c3ddSJeremy L Thompson @param[in] num_elem Number of elements described in the `offsets` array 66077d1c127SSebastian Grimberg @param[in] elem_size Size (number of "nodes") per element 66177d1c127SSebastian Grimberg @param[in] num_comp Number of field components per interpolation node (1 for scalar fields) 662fcbe8c06SSebastian Grimberg @param[in] comp_stride Stride between components for the same L-vector "node". 663ca94c3ddSJeremy L Thompson Data for node `i`, component `j`, element `k` can be found in the L-vector at index `offsets[i + k*elem_size] + j*comp_stride`. 664fcbe8c06SSebastian Grimberg @param[in] l_size The size of the L-vector. 665fcbe8c06SSebastian Grimberg This vector may be larger than the elements and fields given by this restriction. 666ca94c3ddSJeremy L Thompson @param[in] mem_type Memory type of the `offsets` array, see @ref CeedMemType 667ca94c3ddSJeremy L Thompson @param[in] copy_mode Copy mode for the `offsets` array, see @ref CeedCopyMode 668ca94c3ddSJeremy L Thompson @param[in] offsets Array of shape `[num_elem, elem_size]`. 669ca94c3ddSJeremy L Thompson Row `i` holds the ordered list of the offsets (into the input `CeedVector`) for the unknowns corresponding to element `i`, where `0 <= i < num_elem`. 670ca94c3ddSJeremy L Thompson All offsets must be in the range `[0, l_size - 1]`. 671ca94c3ddSJeremy L Thompson @param[in] curl_orients Array of shape `[num_elem, 3 * elem_size]` representing a row-major tridiagonal matrix (`curl_orients[i * 3 * elem_size] = curl_orients[(i + 1) * 3 * elem_size - 1] = 0`, where `0 <= i < num_elem`) which is applied to the element unknowns upon restriction. 672ca94c3ddSJeremy L Thompson This orientation matrix allows for pairs of face degrees of freedom on elements for \f$H(\mathrm{curl})\f$ spaces to be coupled in the element restriction operation, which is a way to resolve face orientation issues for 3D meshes (https://dl.acm.org/doi/pdf/10.1145/3524456). 673ca94c3ddSJeremy L Thompson @param[out] rstr Address of the variable where the newly created `CeedElemRestriction` will be stored 67477d1c127SSebastian Grimberg 67577d1c127SSebastian Grimberg @return An error code: 0 - success, otherwise - failure 67677d1c127SSebastian Grimberg 67777d1c127SSebastian Grimberg @ref User 67877d1c127SSebastian Grimberg **/ 67977d1c127SSebastian Grimberg int CeedElemRestrictionCreateCurlOriented(Ceed ceed, CeedInt num_elem, CeedInt elem_size, CeedInt num_comp, CeedInt comp_stride, CeedSize l_size, 6800c73c039SSebastian Grimberg CeedMemType mem_type, CeedCopyMode copy_mode, const CeedInt *offsets, const CeedInt8 *curl_orients, 68177d1c127SSebastian Grimberg CeedElemRestriction *rstr) { 682fcbe8c06SSebastian Grimberg if (!ceed->ElemRestrictionCreate) { 68377d1c127SSebastian Grimberg Ceed delegate; 68477d1c127SSebastian Grimberg 68577d1c127SSebastian Grimberg CeedCall(CeedGetObjectDelegate(ceed, &delegate, "ElemRestriction")); 686ca94c3ddSJeremy L Thompson CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionCreateCurlOriented"); 68777d1c127SSebastian Grimberg CeedCall(CeedElemRestrictionCreateCurlOriented(delegate, num_elem, elem_size, num_comp, comp_stride, l_size, mem_type, copy_mode, offsets, 68877d1c127SSebastian Grimberg curl_orients, rstr)); 68977d1c127SSebastian Grimberg return CEED_ERROR_SUCCESS; 69077d1c127SSebastian Grimberg } 69177d1c127SSebastian Grimberg 692e7f679fcSJeremy L Thompson CeedCheck(num_elem >= 0, ceed, CEED_ERROR_DIMENSION, "Number of elements must be non-negative"); 69377d1c127SSebastian Grimberg CeedCheck(elem_size > 0, ceed, CEED_ERROR_DIMENSION, "Element size must be at least 1"); 694ca94c3ddSJeremy L Thompson CeedCheck(num_comp > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction must have at least 1 component"); 695ca94c3ddSJeremy L Thompson CeedCheck(num_comp == 1 || comp_stride > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction component stride must be at least 1"); 69677d1c127SSebastian Grimberg 69777d1c127SSebastian Grimberg CeedCall(CeedCalloc(1, rstr)); 698fcbe8c06SSebastian Grimberg CeedCall(CeedReferenceCopy(ceed, &(*rstr)->ceed)); 69977d1c127SSebastian Grimberg (*rstr)->ref_count = 1; 70077d1c127SSebastian Grimberg (*rstr)->num_elem = num_elem; 70177d1c127SSebastian Grimberg (*rstr)->elem_size = elem_size; 70277d1c127SSebastian Grimberg (*rstr)->num_comp = num_comp; 70377d1c127SSebastian Grimberg (*rstr)->comp_stride = comp_stride; 70477d1c127SSebastian Grimberg (*rstr)->l_size = l_size; 7051203703bSJeremy L Thompson (*rstr)->e_size = (CeedSize)num_elem * (CeedSize)elem_size * (CeedSize)num_comp; 706e7f679fcSJeremy L Thompson (*rstr)->num_block = num_elem; 707e7f679fcSJeremy L Thompson (*rstr)->block_size = 1; 708fcbe8c06SSebastian Grimberg (*rstr)->rstr_type = CEED_RESTRICTION_CURL_ORIENTED; 709fcbe8c06SSebastian Grimberg CeedCall(ceed->ElemRestrictionCreate(mem_type, copy_mode, offsets, NULL, curl_orients, *rstr)); 710fc0567d9Srezgarshakeri return CEED_ERROR_SUCCESS; 711fc0567d9Srezgarshakeri } 712fc0567d9Srezgarshakeri 713fc0567d9Srezgarshakeri /** 714ca94c3ddSJeremy L Thompson @brief Create a strided `CeedElemRestriction` 715d7b241e6Sjeremylt 716ca94c3ddSJeremy L Thompson @param[in] ceed `Ceed` context used to create the `CeedElemRestriction` 717ea61e9acSJeremy L Thompson @param[in] num_elem Number of elements described by the restriction 718ea61e9acSJeremy L Thompson @param[in] elem_size Size (number of "nodes") per element 719ea61e9acSJeremy L Thompson @param[in] num_comp Number of field components per interpolation "node" (1 for scalar fields) 720fcbe8c06SSebastian Grimberg @param[in] l_size The size of the L-vector. 721fcbe8c06SSebastian Grimberg This vector may be larger than the elements and fields given by this restriction. 722ca94c3ddSJeremy L Thompson @param[in] strides Array for strides between `[nodes, components, elements]`. 723ca94c3ddSJeremy L Thompson Data for node `i`, component `j`, element `k` can be found in the L-vector at index `i*strides[0] + j*strides[1] + k*strides[2]`. 724ca94c3ddSJeremy L Thompson @ref CEED_STRIDES_BACKEND may be used for `CeedVector` ordered by the same `Ceed` backend. 725972f909dSJeremy L Thompson `CEED_STRIDES_BACKEND` should only be used pass data between `CeedOperator` created with the same `Ceed` backend. 726972f909dSJeremy L Thompson The L-vector layout will, in general, be different between `Ceed` backends. 727ca94c3ddSJeremy L Thompson @param[out] rstr Address of the variable where the newly created `CeedElemRestriction` will be stored 728d7b241e6Sjeremylt 729b11c1e72Sjeremylt @return An error code: 0 - success, otherwise - failure 730dfdf5a53Sjeremylt 7317a982d89SJeremy L. Thompson @ref User 732b11c1e72Sjeremylt **/ 7332b730f8bSJeremy L Thompson int CeedElemRestrictionCreateStrided(Ceed ceed, CeedInt num_elem, CeedInt elem_size, CeedInt num_comp, CeedSize l_size, const CeedInt strides[3], 734f90c8643Sjeremylt CeedElemRestriction *rstr) { 7355fe0d4faSjeremylt if (!ceed->ElemRestrictionCreate) { 7365fe0d4faSjeremylt Ceed delegate; 737b04eb3d9SSebastian Grimberg 7382b730f8bSJeremy L Thompson CeedCall(CeedGetObjectDelegate(ceed, &delegate, "ElemRestriction")); 739ca94c3ddSJeremy L Thompson CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionCreateStrided"); 7402b730f8bSJeremy L Thompson CeedCall(CeedElemRestrictionCreateStrided(delegate, num_elem, elem_size, num_comp, l_size, strides, rstr)); 741e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 7425fe0d4faSjeremylt } 7435fe0d4faSjeremylt 744e7f679fcSJeremy L Thompson CeedCheck(num_elem >= 0, ceed, CEED_ERROR_DIMENSION, "Number of elements must be non-negative"); 7456574a04fSJeremy L Thompson CeedCheck(elem_size > 0, ceed, CEED_ERROR_DIMENSION, "Element size must be at least 1"); 746ca94c3ddSJeremy L Thompson CeedCheck(num_comp > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction must have at least 1 component"); 747*81670346SSebastian Grimberg CeedCheck(l_size >= (CeedSize)num_elem * elem_size * num_comp, ceed, CEED_ERROR_DIMENSION, 748*81670346SSebastian Grimberg "L-vector size must be at least num_elem * elem_size * num_comp"); 749e022e1f8SJeremy L Thompson 7502b730f8bSJeremy L Thompson CeedCall(CeedCalloc(1, rstr)); 751db002c03SJeremy L Thompson CeedCall(CeedReferenceCopy(ceed, &(*rstr)->ceed)); 752d1d35e2fSjeremylt (*rstr)->ref_count = 1; 753d1d35e2fSjeremylt (*rstr)->num_elem = num_elem; 754d1d35e2fSjeremylt (*rstr)->elem_size = elem_size; 755d1d35e2fSjeremylt (*rstr)->num_comp = num_comp; 756d1d35e2fSjeremylt (*rstr)->l_size = l_size; 7571203703bSJeremy L Thompson (*rstr)->e_size = (CeedSize)num_elem * (CeedSize)elem_size * (CeedSize)num_comp; 758e7f679fcSJeremy L Thompson (*rstr)->num_block = num_elem; 759e7f679fcSJeremy L Thompson (*rstr)->block_size = 1; 760fcbe8c06SSebastian Grimberg (*rstr)->rstr_type = CEED_RESTRICTION_STRIDED; 7612b730f8bSJeremy L Thompson CeedCall(CeedMalloc(3, &(*rstr)->strides)); 7622b730f8bSJeremy L Thompson for (CeedInt i = 0; i < 3; i++) (*rstr)->strides[i] = strides[i]; 763fcbe8c06SSebastian Grimberg CeedCall(ceed->ElemRestrictionCreate(CEED_MEM_HOST, CEED_OWN_POINTER, NULL, NULL, NULL, *rstr)); 764e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 765d7b241e6Sjeremylt } 766d7b241e6Sjeremylt 767d7b241e6Sjeremylt /** 768ca94c3ddSJeremy L Thompson @brief Create a points `CeedElemRestriction`, for restricting for restricting from a all local points to the current element in which they are located. 7693ac8f562SJeremy L Thompson 7703ac8f562SJeremy L Thompson The offsets array is arranged as 7713ac8f562SJeremy L Thompson 7723ac8f562SJeremy L Thompson element_0_start_index 7733ac8f562SJeremy L Thompson element_1_start_index 7743ac8f562SJeremy L Thompson ... 7753ac8f562SJeremy L Thompson element_n_start_index 7763ac8f562SJeremy L Thompson element_n_stop_index 7773ac8f562SJeremy L Thompson element_0_point_0 7783ac8f562SJeremy L Thompson element_0_point_1 7793ac8f562SJeremy L Thompson ... 7803ac8f562SJeremy L Thompson 781ca94c3ddSJeremy L Thompson @param[in] ceed `Ceed` context used to create the `CeedElemRestriction` 782ca94c3ddSJeremy L Thompson @param[in] num_elem Number of elements described in the `offsets` array 783ca94c3ddSJeremy L Thompson @param[in] num_points Number of points described in the `offsets` array 7843ac8f562SJeremy L Thompson @param[in] num_comp Number of field components per interpolation node (1 for scalar fields). 7853ac8f562SJeremy L Thompson Components are assumed to be contiguous by point. 7863ac8f562SJeremy L Thompson @param[in] l_size The size of the L-vector. 7873ac8f562SJeremy L Thompson This vector may be larger than the elements and fields given by this restriction. 788ca94c3ddSJeremy L Thompson @param[in] mem_type Memory type of the `offsets` array, see @ref CeedMemType 789ca94c3ddSJeremy L Thompson @param[in] copy_mode Copy mode for the `offsets` array, see @ref CeedCopyMode 790ca94c3ddSJeremy L Thompson @param[in] offsets Array of size `num_elem + 1 + num_points`. 7913ac8f562SJeremy L Thompson The first portion of the offsets array holds the ranges of indices corresponding to each element. 7923ac8f562SJeremy L Thompson The second portion holds the indices for each element. 793ca94c3ddSJeremy L Thompson @param[out] rstr Address of the variable where the newly created `CeedElemRestriction` will be stored 7943ac8f562SJeremy L Thompson 7953ac8f562SJeremy L Thompson @return An error code: 0 - success, otherwise - failure 7963ac8f562SJeremy L Thompson 7973ac8f562SJeremy L Thompson @ref Backend 7983ac8f562SJeremy L Thompson **/ 7993ac8f562SJeremy L Thompson int CeedElemRestrictionCreateAtPoints(Ceed ceed, CeedInt num_elem, CeedInt num_points, CeedInt num_comp, CeedSize l_size, CeedMemType mem_type, 8003ac8f562SJeremy L Thompson CeedCopyMode copy_mode, const CeedInt *offsets, CeedElemRestriction *rstr) { 8013ac8f562SJeremy L Thompson if (!ceed->ElemRestrictionCreateAtPoints) { 8023ac8f562SJeremy L Thompson Ceed delegate; 8033ac8f562SJeremy L Thompson 8043ac8f562SJeremy L Thompson CeedCall(CeedGetObjectDelegate(ceed, &delegate, "ElemRestriction")); 805ca94c3ddSJeremy L Thompson CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionCreateAtPoints"); 8063ac8f562SJeremy L Thompson CeedCall(CeedElemRestrictionCreateAtPoints(delegate, num_elem, num_points, num_comp, l_size, mem_type, copy_mode, offsets, rstr)); 8073ac8f562SJeremy L Thompson return CEED_ERROR_SUCCESS; 8083ac8f562SJeremy L Thompson } 8093ac8f562SJeremy L Thompson 8103ac8f562SJeremy L Thompson CeedCheck(num_elem >= 0, ceed, CEED_ERROR_DIMENSION, "Number of elements must be non-negative"); 8113ac8f562SJeremy L Thompson CeedCheck(num_points >= 0, ceed, CEED_ERROR_DIMENSION, "Number of points must be non-negative"); 812ca94c3ddSJeremy L Thompson CeedCheck(num_comp > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction must have at least 1 component"); 813*81670346SSebastian Grimberg CeedCheck(l_size >= (CeedSize)num_points * num_comp, ceed, CEED_ERROR_DIMENSION, "L-vector must be at least num_points * num_comp"); 8143ac8f562SJeremy L Thompson 8153ac8f562SJeremy L Thompson CeedCall(CeedCalloc(1, rstr)); 8163ac8f562SJeremy L Thompson CeedCall(CeedReferenceCopy(ceed, &(*rstr)->ceed)); 8173ac8f562SJeremy L Thompson (*rstr)->ref_count = 1; 8183ac8f562SJeremy L Thompson (*rstr)->num_elem = num_elem; 8193ac8f562SJeremy L Thompson (*rstr)->num_points = num_points; 8203ac8f562SJeremy L Thompson (*rstr)->num_comp = num_comp; 8213ac8f562SJeremy L Thompson (*rstr)->l_size = l_size; 8221203703bSJeremy L Thompson (*rstr)->e_size = (CeedSize)num_points * (CeedSize)num_comp; 82305fa913cSJeremy L Thompson (*rstr)->num_block = num_elem; 8243ac8f562SJeremy L Thompson (*rstr)->block_size = 1; 8253ac8f562SJeremy L Thompson (*rstr)->rstr_type = CEED_RESTRICTION_POINTS; 8263ac8f562SJeremy L Thompson CeedCall(ceed->ElemRestrictionCreateAtPoints(mem_type, copy_mode, offsets, NULL, NULL, *rstr)); 8273ac8f562SJeremy L Thompson return CEED_ERROR_SUCCESS; 8283ac8f562SJeremy L Thompson } 8293ac8f562SJeremy L Thompson 8303ac8f562SJeremy L Thompson /** 831ca94c3ddSJeremy L Thompson @brief Create a blocked `CeedElemRestriction`, typically only used by backends 832d7b241e6Sjeremylt 833ca94c3ddSJeremy L Thompson @param[in] ceed `Ceed` context used to create the `CeedElemRestriction` 834ca94c3ddSJeremy L Thompson @param[in] num_elem Number of elements described in the `offsets` array 835ea61e9acSJeremy L Thompson @param[in] elem_size Size (number of unknowns) per element 836e7f679fcSJeremy L Thompson @param[in] block_size Number of elements in a block 837ea61e9acSJeremy L Thompson @param[in] num_comp Number of field components per interpolation node (1 for scalar fields) 838fcbe8c06SSebastian Grimberg @param[in] comp_stride Stride between components for the same L-vector "node". 839ca94c3ddSJeremy L Thompson Data for node `i`, component `j`, element `k` can be found in the L-vector at index `offsets[i + k*elem_size] + j*comp_stride`. 840fcbe8c06SSebastian Grimberg @param[in] l_size The size of the L-vector. 841fcbe8c06SSebastian Grimberg This vector may be larger than the elements and fields given by this restriction. 842ca94c3ddSJeremy L Thompson @param[in] mem_type Memory type of the `offsets` array, see @ref CeedMemType 843ca94c3ddSJeremy L Thompson @param[in] copy_mode Copy mode for the `offsets` array, see @ref CeedCopyMode 844ca94c3ddSJeremy L Thompson @param[in] offsets Array of shape `[num_elem, elem_size]`. 845ca94c3ddSJeremy L Thompson Row `i` holds the ordered list of the offsets (into the input `CeedVector`) for the unknowns corresponding to element `i`, where `0 <= i < num_elem`. 846ca94c3ddSJeremy L Thompson All offsets must be in the range `[0, l_size - 1]`. 847ca94c3ddSJeremy L Thompson The backend will permute and pad this array to the desired ordering for the blocksize, which is typically given by the backend. 848ca94c3ddSJeremy L Thompson The default reordering is to interlace elements. 849ca94c3ddSJeremy L Thompson @param[out] rstr Address of the variable where the newly created `CeedElemRestriction` will be stored 850d7b241e6Sjeremylt 851b11c1e72Sjeremylt @return An error code: 0 - success, otherwise - failure 852dfdf5a53Sjeremylt 8537a982d89SJeremy L. Thompson @ref Backend 854b11c1e72Sjeremylt **/ 855e7f679fcSJeremy L Thompson int CeedElemRestrictionCreateBlocked(Ceed ceed, CeedInt num_elem, CeedInt elem_size, CeedInt block_size, CeedInt num_comp, CeedInt comp_stride, 8562b730f8bSJeremy L Thompson CeedSize l_size, CeedMemType mem_type, CeedCopyMode copy_mode, const CeedInt *offsets, 8574ce2993fSjeremylt CeedElemRestriction *rstr) { 8581c66c397SJeremy L Thompson CeedInt *block_offsets, num_block = (num_elem / block_size) + !!(num_elem % block_size); 859d7b241e6Sjeremylt 8605fe0d4faSjeremylt if (!ceed->ElemRestrictionCreateBlocked) { 8615fe0d4faSjeremylt Ceed delegate; 8626574a04fSJeremy L Thompson 8632b730f8bSJeremy L Thompson CeedCall(CeedGetObjectDelegate(ceed, &delegate, "ElemRestriction")); 864ca94c3ddSJeremy L Thompson CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionCreateBlocked"); 865e7f679fcSJeremy L Thompson CeedCall(CeedElemRestrictionCreateBlocked(delegate, num_elem, elem_size, block_size, num_comp, comp_stride, l_size, mem_type, copy_mode, offsets, 866e7f679fcSJeremy L Thompson rstr)); 867e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 8685fe0d4faSjeremylt } 869d7b241e6Sjeremylt 870e7f679fcSJeremy L Thompson CeedCheck(num_elem >= 0, ceed, CEED_ERROR_DIMENSION, "Number of elements must be non-negative"); 8716574a04fSJeremy L Thompson CeedCheck(elem_size > 0, ceed, CEED_ERROR_DIMENSION, "Element size must be at least 1"); 872e7f679fcSJeremy L Thompson CeedCheck(block_size > 0, ceed, CEED_ERROR_DIMENSION, "Block size must be at least 1"); 873ca94c3ddSJeremy L Thompson CeedCheck(num_comp > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction must have at least 1 component"); 874ca94c3ddSJeremy L Thompson CeedCheck(num_comp == 1 || comp_stride > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction component stride must be at least 1"); 875e022e1f8SJeremy L Thompson 876e7f679fcSJeremy L Thompson CeedCall(CeedCalloc(num_block * block_size * elem_size, &block_offsets)); 877e7f679fcSJeremy L Thompson CeedCall(CeedPermutePadOffsets(offsets, block_offsets, num_block, num_elem, block_size, elem_size)); 878d7b241e6Sjeremylt 879db002c03SJeremy L Thompson CeedCall(CeedCalloc(1, rstr)); 880db002c03SJeremy L Thompson CeedCall(CeedReferenceCopy(ceed, &(*rstr)->ceed)); 881d1d35e2fSjeremylt (*rstr)->ref_count = 1; 882d1d35e2fSjeremylt (*rstr)->num_elem = num_elem; 883d1d35e2fSjeremylt (*rstr)->elem_size = elem_size; 884d1d35e2fSjeremylt (*rstr)->num_comp = num_comp; 885d1d35e2fSjeremylt (*rstr)->comp_stride = comp_stride; 886d1d35e2fSjeremylt (*rstr)->l_size = l_size; 8871203703bSJeremy L Thompson (*rstr)->e_size = (CeedSize)num_block * (CeedSize)block_size * (CeedSize)elem_size * (CeedSize)num_comp; 888e7f679fcSJeremy L Thompson (*rstr)->num_block = num_block; 889e7f679fcSJeremy L Thompson (*rstr)->block_size = block_size; 89061a27d74SSebastian Grimberg (*rstr)->rstr_type = CEED_RESTRICTION_STANDARD; 891e7f679fcSJeremy L Thompson CeedCall(ceed->ElemRestrictionCreateBlocked(CEED_MEM_HOST, CEED_OWN_POINTER, (const CeedInt *)block_offsets, NULL, NULL, *rstr)); 8921c66c397SJeremy L Thompson if (copy_mode == CEED_OWN_POINTER) CeedCall(CeedFree(&offsets)); 893e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 894d7b241e6Sjeremylt } 895d7b241e6Sjeremylt 896b11c1e72Sjeremylt /** 897ca94c3ddSJeremy L Thompson @brief Create a blocked oriented `CeedElemRestriction`, typically only used by backends 89877d1c127SSebastian Grimberg 899ca94c3ddSJeremy L Thompson @param[in] ceed `Ceed` context used to create the `CeedElemRestriction` 900ca94c3ddSJeremy L Thompson @param[in] num_elem Number of elements described in the `offsets` array. 90177d1c127SSebastian Grimberg @param[in] elem_size Size (number of unknowns) per element 902e7f679fcSJeremy L Thompson @param[in] block_size Number of elements in a block 90377d1c127SSebastian Grimberg @param[in] num_comp Number of field components per interpolation node (1 for scalar fields) 904fcbe8c06SSebastian Grimberg @param[in] comp_stride Stride between components for the same L-vector "node". 905ca94c3ddSJeremy L Thompson Data for node `i`, component `j`, element `k` can be found in the L-vector at index `offsets[i + k*elem_size] + j*comp_stride`. 906fcbe8c06SSebastian Grimberg @param[in] l_size The size of the L-vector. 907fcbe8c06SSebastian Grimberg This vector may be larger than the elements and fields given by this restriction. 908ca94c3ddSJeremy L Thompson @param[in] mem_type Memory type of the `offsets` array, see @ref CeedMemType 909ca94c3ddSJeremy L Thompson @param[in] copy_mode Copy mode for the `offsets` array, see @ref CeedCopyMode 910ca94c3ddSJeremy L Thompson @param[in] offsets Array of shape `[num_elem, elem_size]`. 911ca94c3ddSJeremy L Thompson Row `i` holds the ordered list of the offsets (into the input `CeedVector`) for the unknowns corresponding to element `i`, where `0 <= i < num_elem`. 912ca94c3ddSJeremy L Thompson All offsets must be in the range `[0, l_size - 1]`. 913ca94c3ddSJeremy L Thompson The backend will permute and pad this array to the desired ordering for the blocksize, which is typically given by the backend. 914ca94c3ddSJeremy L Thompson The default reordering is to interlace elements. 915ca94c3ddSJeremy L Thompson @param[in] orients Boolean array of shape `[num_elem, elem_size]` with `false` for positively oriented and `true` to flip the orientation. 916ca94c3ddSJeremy L Thompson Will also be permuted and padded similarly to `offsets`. 917ca94c3ddSJeremy L Thompson @param[out] rstr Address of the variable where the newly created `CeedElemRestriction` will be stored 91877d1c127SSebastian Grimberg 91977d1c127SSebastian Grimberg @return An error code: 0 - success, otherwise - failure 92077d1c127SSebastian Grimberg 92177d1c127SSebastian Grimberg @ref Backend 92277d1c127SSebastian Grimberg **/ 923e7f679fcSJeremy L Thompson int CeedElemRestrictionCreateBlockedOriented(Ceed ceed, CeedInt num_elem, CeedInt elem_size, CeedInt block_size, CeedInt num_comp, 924e7f679fcSJeremy L Thompson CeedInt comp_stride, CeedSize l_size, CeedMemType mem_type, CeedCopyMode copy_mode, 925e7f679fcSJeremy L Thompson const CeedInt *offsets, const bool *orients, CeedElemRestriction *rstr) { 926e7f679fcSJeremy L Thompson bool *block_orients; 9271c66c397SJeremy L Thompson CeedInt *block_offsets, num_block = (num_elem / block_size) + !!(num_elem % block_size); 92877d1c127SSebastian Grimberg 929fcbe8c06SSebastian Grimberg if (!ceed->ElemRestrictionCreateBlocked) { 93077d1c127SSebastian Grimberg Ceed delegate; 93177d1c127SSebastian Grimberg 93277d1c127SSebastian Grimberg CeedCall(CeedGetObjectDelegate(ceed, &delegate, "ElemRestriction")); 933ca94c3ddSJeremy L Thompson CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionCreateBlockedOriented"); 934e7f679fcSJeremy L Thompson CeedCall(CeedElemRestrictionCreateBlockedOriented(delegate, num_elem, elem_size, block_size, num_comp, comp_stride, l_size, mem_type, copy_mode, 93577d1c127SSebastian Grimberg offsets, orients, rstr)); 93677d1c127SSebastian Grimberg return CEED_ERROR_SUCCESS; 93777d1c127SSebastian Grimberg } 93877d1c127SSebastian Grimberg 93977d1c127SSebastian Grimberg CeedCheck(elem_size > 0, ceed, CEED_ERROR_DIMENSION, "Element size must be at least 1"); 940e7f679fcSJeremy L Thompson CeedCheck(block_size > 0, ceed, CEED_ERROR_DIMENSION, "Block size must be at least 1"); 941ca94c3ddSJeremy L Thompson CeedCheck(num_comp > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction must have at least 1 component"); 942ca94c3ddSJeremy L Thompson CeedCheck(num_comp == 1 || comp_stride > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction component stride must be at least 1"); 94377d1c127SSebastian Grimberg 944e7f679fcSJeremy L Thompson CeedCall(CeedCalloc(num_block * block_size * elem_size, &block_offsets)); 945e7f679fcSJeremy L Thompson CeedCall(CeedCalloc(num_block * block_size * elem_size, &block_orients)); 946e7f679fcSJeremy L Thompson CeedCall(CeedPermutePadOffsets(offsets, block_offsets, num_block, num_elem, block_size, elem_size)); 947e7f679fcSJeremy L Thompson CeedCall(CeedPermutePadOrients(orients, block_orients, num_block, num_elem, block_size, elem_size)); 94877d1c127SSebastian Grimberg 949fcbe8c06SSebastian Grimberg CeedCall(CeedCalloc(1, rstr)); 950fcbe8c06SSebastian Grimberg CeedCall(CeedReferenceCopy(ceed, &(*rstr)->ceed)); 95177d1c127SSebastian Grimberg (*rstr)->ref_count = 1; 95277d1c127SSebastian Grimberg (*rstr)->num_elem = num_elem; 95377d1c127SSebastian Grimberg (*rstr)->elem_size = elem_size; 95477d1c127SSebastian Grimberg (*rstr)->num_comp = num_comp; 95577d1c127SSebastian Grimberg (*rstr)->comp_stride = comp_stride; 95677d1c127SSebastian Grimberg (*rstr)->l_size = l_size; 9571203703bSJeremy L Thompson (*rstr)->e_size = (CeedSize)num_block * (CeedSize)block_size * (CeedSize)elem_size * (CeedSize)num_comp; 958e7f679fcSJeremy L Thompson (*rstr)->num_block = num_block; 959e7f679fcSJeremy L Thompson (*rstr)->block_size = block_size; 960fcbe8c06SSebastian Grimberg (*rstr)->rstr_type = CEED_RESTRICTION_ORIENTED; 961e7f679fcSJeremy L Thompson CeedCall( 962e7f679fcSJeremy L Thompson ceed->ElemRestrictionCreateBlocked(CEED_MEM_HOST, CEED_OWN_POINTER, (const CeedInt *)block_offsets, (const bool *)block_orients, NULL, *rstr)); 9631c66c397SJeremy L Thompson if (copy_mode == CEED_OWN_POINTER) CeedCall(CeedFree(&offsets)); 96477d1c127SSebastian Grimberg return CEED_ERROR_SUCCESS; 96577d1c127SSebastian Grimberg } 96677d1c127SSebastian Grimberg 96777d1c127SSebastian Grimberg /** 968ca94c3ddSJeremy L Thompson @brief Create a blocked curl-oriented `CeedElemRestriction`, typically only used by backends 96977d1c127SSebastian Grimberg 970ca94c3ddSJeremy L Thompson @param[in] ceed `Ceed` context used to create the `CeedElemRestriction` 971ca94c3ddSJeremy L Thompson @param[in] num_elem Number of elements described in the `offsets` array. 97277d1c127SSebastian Grimberg @param[in] elem_size Size (number of unknowns) per element 973e7f679fcSJeremy L Thompson @param[in] block_size Number of elements in a block 97477d1c127SSebastian Grimberg @param[in] num_comp Number of field components per interpolation node (1 for scalar fields) 975fcbe8c06SSebastian Grimberg @param[in] comp_stride Stride between components for the same L-vector "node". 976ca94c3ddSJeremy L Thompson Data for node `i`, component `j`, element `k` can be found in the L-vector at index `offsets[i + k*elem_size] + j*comp_stride`. 977fcbe8c06SSebastian Grimberg @param[in] l_size The size of the L-vector. 978fcbe8c06SSebastian Grimberg This vector may be larger than the elements and fields given by this restriction. 979ca94c3ddSJeremy L Thompson @param[in] mem_type Memory type of the `offsets` array, see @ref CeedMemType 980ca94c3ddSJeremy L Thompson @param[in] copy_mode Copy mode for the `offsets` array, see @ref CeedCopyMode 981ca94c3ddSJeremy L Thompson @param[in] offsets Array of shape `[num_elem, elem_size]`. 982ca94c3ddSJeremy L Thompson Row `i` holds the ordered list of the offsets (into the input `CeedVector`) for the unknowns corresponding to element `i`, where `0 <= i < num_elem`. 983ca94c3ddSJeremy L Thompson All offsets must be in the range `[0, l_size - 1]`. 984ca94c3ddSJeremy L Thompson The backend will permute and pad this array to the desired ordering for the blocksize, which is typically given by the backend. 985ca94c3ddSJeremy L Thompson The default reordering is to interlace elements. 986ca94c3ddSJeremy L Thompson @param[in] curl_orients Array of shape `[num_elem, 3 * elem_size]` representing a row-major tridiagonal matrix (`curl_orients[i * 3 * elem_size] = curl_orients[(i + 1) * 3 * elem_size - 1] = 0`, where `0 <= i < num_elem`) which is applied to the element unknowns upon restriction. 987ca94c3ddSJeremy L Thompson This orientation matrix allows for pairs of face degrees of freedom on elements for \f$H(\mathrm{curl})\f$ spaces to be coupled in the element restriction operation, which is a way to resolve face orientation issues for 3D meshes (https://dl.acm.org/doi/pdf/10.1145/3524456). 988ca94c3ddSJeremy L Thompson Will also be permuted and padded similarly to offsets. 989ca94c3ddSJeremy L Thompson @param[out] rstr Address of the variable where the newly created `CeedElemRestriction` will be stored 99077d1c127SSebastian Grimberg 99177d1c127SSebastian Grimberg @return An error code: 0 - success, otherwise - failure 99277d1c127SSebastian Grimberg 99377d1c127SSebastian Grimberg @ref Backend 99477d1c127SSebastian Grimberg **/ 995e7f679fcSJeremy L Thompson int CeedElemRestrictionCreateBlockedCurlOriented(Ceed ceed, CeedInt num_elem, CeedInt elem_size, CeedInt block_size, CeedInt num_comp, 99677d1c127SSebastian Grimberg CeedInt comp_stride, CeedSize l_size, CeedMemType mem_type, CeedCopyMode copy_mode, 9970c73c039SSebastian Grimberg const CeedInt *offsets, const CeedInt8 *curl_orients, CeedElemRestriction *rstr) { 998e7f679fcSJeremy L Thompson CeedInt8 *block_curl_orients; 9991c66c397SJeremy L Thompson CeedInt *block_offsets, num_block = (num_elem / block_size) + !!(num_elem % block_size); 100077d1c127SSebastian Grimberg 1001fcbe8c06SSebastian Grimberg if (!ceed->ElemRestrictionCreateBlocked) { 100277d1c127SSebastian Grimberg Ceed delegate; 100377d1c127SSebastian Grimberg 100477d1c127SSebastian Grimberg CeedCall(CeedGetObjectDelegate(ceed, &delegate, "ElemRestriction")); 1005ca94c3ddSJeremy L Thompson CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionCreateBlockedCurlOriented"); 1006e7f679fcSJeremy L Thompson CeedCall(CeedElemRestrictionCreateBlockedCurlOriented(delegate, num_elem, elem_size, block_size, num_comp, comp_stride, l_size, mem_type, 1007e7f679fcSJeremy L Thompson copy_mode, offsets, curl_orients, rstr)); 100877d1c127SSebastian Grimberg return CEED_ERROR_SUCCESS; 100977d1c127SSebastian Grimberg } 101077d1c127SSebastian Grimberg 1011e7f679fcSJeremy L Thompson CeedCheck(num_elem >= 0, ceed, CEED_ERROR_DIMENSION, "Number of elements must be non-negative"); 101277d1c127SSebastian Grimberg CeedCheck(elem_size > 0, ceed, CEED_ERROR_DIMENSION, "Element size must be at least 1"); 1013e7f679fcSJeremy L Thompson CeedCheck(block_size > 0, ceed, CEED_ERROR_DIMENSION, "Block size must be at least 1"); 1014ca94c3ddSJeremy L Thompson CeedCheck(num_comp > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction must have at least 1 component"); 1015ca94c3ddSJeremy L Thompson CeedCheck(num_comp == 1 || comp_stride > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction component stride must be at least 1"); 101677d1c127SSebastian Grimberg 1017e7f679fcSJeremy L Thompson CeedCall(CeedCalloc(num_block * block_size * elem_size, &block_offsets)); 1018e7f679fcSJeremy L Thompson CeedCall(CeedCalloc(num_block * block_size * 3 * elem_size, &block_curl_orients)); 1019e7f679fcSJeremy L Thompson CeedCall(CeedPermutePadOffsets(offsets, block_offsets, num_block, num_elem, block_size, elem_size)); 1020e7f679fcSJeremy L Thompson CeedCall(CeedPermutePadCurlOrients(curl_orients, block_curl_orients, num_block, num_elem, block_size, 3 * elem_size)); 102177d1c127SSebastian Grimberg 1022fcbe8c06SSebastian Grimberg CeedCall(CeedCalloc(1, rstr)); 1023fcbe8c06SSebastian Grimberg CeedCall(CeedReferenceCopy(ceed, &(*rstr)->ceed)); 102477d1c127SSebastian Grimberg (*rstr)->ref_count = 1; 102577d1c127SSebastian Grimberg (*rstr)->num_elem = num_elem; 102677d1c127SSebastian Grimberg (*rstr)->elem_size = elem_size; 102777d1c127SSebastian Grimberg (*rstr)->num_comp = num_comp; 102877d1c127SSebastian Grimberg (*rstr)->comp_stride = comp_stride; 102977d1c127SSebastian Grimberg (*rstr)->l_size = l_size; 10301203703bSJeremy L Thompson (*rstr)->e_size = (CeedSize)num_block * (CeedSize)block_size * (CeedSize)elem_size * (CeedSize)num_comp; 1031e7f679fcSJeremy L Thompson (*rstr)->num_block = num_block; 1032e7f679fcSJeremy L Thompson (*rstr)->block_size = block_size; 1033fcbe8c06SSebastian Grimberg (*rstr)->rstr_type = CEED_RESTRICTION_CURL_ORIENTED; 1034e7f679fcSJeremy L Thompson CeedCall(ceed->ElemRestrictionCreateBlocked(CEED_MEM_HOST, CEED_OWN_POINTER, (const CeedInt *)block_offsets, NULL, 1035e7f679fcSJeremy L Thompson (const CeedInt8 *)block_curl_orients, *rstr)); 10361c66c397SJeremy L Thompson if (copy_mode == CEED_OWN_POINTER) CeedCall(CeedFree(&offsets)); 103777d1c127SSebastian Grimberg return CEED_ERROR_SUCCESS; 103877d1c127SSebastian Grimberg } 103977d1c127SSebastian Grimberg 104077d1c127SSebastian Grimberg /** 1041ca94c3ddSJeremy L Thompson @brief Create a blocked strided `CeedElemRestriction`, typically only used by backends 10427509a596Sjeremylt 1043ca94c3ddSJeremy L Thompson @param[in] ceed `Ceed` context used to create the `CeedElemRestriction` 1044ea61e9acSJeremy L Thompson @param[in] num_elem Number of elements described by the restriction 1045ea61e9acSJeremy L Thompson @param[in] elem_size Size (number of "nodes") per element 1046e7f679fcSJeremy L Thompson @param[in] block_size Number of elements in a block 1047ea61e9acSJeremy L Thompson @param[in] num_comp Number of field components per interpolation node (1 for scalar fields) 1048fcbe8c06SSebastian Grimberg @param[in] l_size The size of the L-vector. 1049fcbe8c06SSebastian Grimberg This vector may be larger than the elements and fields given by this restriction. 1050ca94c3ddSJeremy L Thompson @param[in] strides Array for strides between `[nodes, components, elements]`. 1051ca94c3ddSJeremy L Thompson Data for node `i`, component `j`, element `k` can be found in the L-vector at index `i*strides[0] + j*strides[1] +k*strides[2]`. 1052ca94c3ddSJeremy L Thompson @ref CEED_STRIDES_BACKEND may be used for `CeedVector` ordered by the same `Ceed` backend. 1053ca94c3ddSJeremy L Thompson @param[out] rstr Address of the variable where the newly created `CeedElemRestriction` will be stored 10547509a596Sjeremylt 10557509a596Sjeremylt @return An error code: 0 - success, otherwise - failure 10567509a596Sjeremylt 10577a982d89SJeremy L. Thompson @ref User 10587509a596Sjeremylt **/ 1059e7f679fcSJeremy L Thompson int CeedElemRestrictionCreateBlockedStrided(Ceed ceed, CeedInt num_elem, CeedInt elem_size, CeedInt block_size, CeedInt num_comp, CeedSize l_size, 10608621c6c6SJeremy L Thompson const CeedInt strides[3], CeedElemRestriction *rstr) { 1061e7f679fcSJeremy L Thompson CeedInt num_block = (num_elem / block_size) + !!(num_elem % block_size); 10627509a596Sjeremylt 10637509a596Sjeremylt if (!ceed->ElemRestrictionCreateBlocked) { 10647509a596Sjeremylt Ceed delegate; 10656574a04fSJeremy L Thompson 10662b730f8bSJeremy L Thompson CeedCall(CeedGetObjectDelegate(ceed, &delegate, "ElemRestriction")); 1067ca94c3ddSJeremy L Thompson CeedCheck(delegate, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionCreateBlockedStrided"); 1068e7f679fcSJeremy L Thompson CeedCall(CeedElemRestrictionCreateBlockedStrided(delegate, num_elem, elem_size, block_size, num_comp, l_size, strides, rstr)); 1069e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 10707509a596Sjeremylt } 10717509a596Sjeremylt 1072e7f679fcSJeremy L Thompson CeedCheck(num_elem >= 0, ceed, CEED_ERROR_DIMENSION, "Number of elements must be non-negative"); 10736574a04fSJeremy L Thompson CeedCheck(elem_size > 0, ceed, CEED_ERROR_DIMENSION, "Element size must be at least 1"); 1074e7f679fcSJeremy L Thompson CeedCheck(block_size > 0, ceed, CEED_ERROR_DIMENSION, "Block size must be at least 1"); 1075ca94c3ddSJeremy L Thompson CeedCheck(num_comp > 0, ceed, CEED_ERROR_DIMENSION, "CeedElemRestriction must have at least 1 component"); 1076*81670346SSebastian Grimberg CeedCheck(l_size >= (CeedSize)num_elem * elem_size * num_comp, ceed, CEED_ERROR_DIMENSION, 1077*81670346SSebastian Grimberg "L-vector size must be at least num_elem * elem_size * num_comp"); 1078e022e1f8SJeremy L Thompson 10792b730f8bSJeremy L Thompson CeedCall(CeedCalloc(1, rstr)); 1080db002c03SJeremy L Thompson CeedCall(CeedReferenceCopy(ceed, &(*rstr)->ceed)); 1081d1d35e2fSjeremylt (*rstr)->ref_count = 1; 1082d1d35e2fSjeremylt (*rstr)->num_elem = num_elem; 1083d1d35e2fSjeremylt (*rstr)->elem_size = elem_size; 1084d1d35e2fSjeremylt (*rstr)->num_comp = num_comp; 1085d1d35e2fSjeremylt (*rstr)->l_size = l_size; 10861203703bSJeremy L Thompson (*rstr)->e_size = (CeedSize)num_block * (CeedSize)block_size * (CeedSize)elem_size * (CeedSize)num_comp; 1087e7f679fcSJeremy L Thompson (*rstr)->num_block = num_block; 1088e7f679fcSJeremy L Thompson (*rstr)->block_size = block_size; 1089fcbe8c06SSebastian Grimberg (*rstr)->rstr_type = CEED_RESTRICTION_STRIDED; 10902b730f8bSJeremy L Thompson CeedCall(CeedMalloc(3, &(*rstr)->strides)); 10912b730f8bSJeremy L Thompson for (CeedInt i = 0; i < 3; i++) (*rstr)->strides[i] = strides[i]; 1092fcbe8c06SSebastian Grimberg CeedCall(ceed->ElemRestrictionCreateBlocked(CEED_MEM_HOST, CEED_OWN_POINTER, NULL, NULL, NULL, *rstr)); 1093e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 10947509a596Sjeremylt } 10957509a596Sjeremylt 10967509a596Sjeremylt /** 1097ca94c3ddSJeremy L Thompson @brief Copy the pointer to a `CeedElemRestriction` and set @ref CeedElemRestrictionApply() implementation to use the unsigned version. 1098c17ec2beSJeremy L Thompson 1099ca94c3ddSJeremy L Thompson Both pointers should be destroyed with @ref CeedElemRestrictionDestroy(). 1100c17ec2beSJeremy L Thompson 1101ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to create unsigned reference to 1102ca94c3ddSJeremy L Thompson @param[in,out] rstr_unsigned Variable to store unsigned `CeedElemRestriction` 1103c17ec2beSJeremy L Thompson 1104c17ec2beSJeremy L Thompson @return An error code: 0 - success, otherwise - failure 1105c17ec2beSJeremy L Thompson 1106c17ec2beSJeremy L Thompson @ref User 1107c17ec2beSJeremy L Thompson **/ 1108c17ec2beSJeremy L Thompson int CeedElemRestrictionCreateUnsignedCopy(CeedElemRestriction rstr, CeedElemRestriction *rstr_unsigned) { 1109c17ec2beSJeremy L Thompson CeedCall(CeedCalloc(1, rstr_unsigned)); 1110c17ec2beSJeremy L Thompson 1111c17ec2beSJeremy L Thompson // Copy old rstr 1112c17ec2beSJeremy L Thompson memcpy(*rstr_unsigned, rstr, sizeof(struct CeedElemRestriction_private)); 1113c17ec2beSJeremy L Thompson (*rstr_unsigned)->ceed = NULL; 1114c17ec2beSJeremy L Thompson CeedCall(CeedReferenceCopy(rstr->ceed, &(*rstr_unsigned)->ceed)); 1115c17ec2beSJeremy L Thompson (*rstr_unsigned)->ref_count = 1; 1116c17ec2beSJeremy L Thompson (*rstr_unsigned)->strides = NULL; 1117c17ec2beSJeremy L Thompson if (rstr->strides) { 1118c17ec2beSJeremy L Thompson CeedCall(CeedMalloc(3, &(*rstr_unsigned)->strides)); 1119c17ec2beSJeremy L Thompson for (CeedInt i = 0; i < 3; i++) (*rstr_unsigned)->strides[i] = rstr->strides[i]; 1120c17ec2beSJeremy L Thompson } 11217c1dbaffSSebastian Grimberg CeedCall(CeedElemRestrictionReferenceCopy(rstr, &(*rstr_unsigned)->rstr_base)); 1122c17ec2beSJeremy L Thompson 1123c17ec2beSJeremy L Thompson // Override Apply 1124c17ec2beSJeremy L Thompson (*rstr_unsigned)->Apply = rstr->ApplyUnsigned; 1125c17ec2beSJeremy L Thompson return CEED_ERROR_SUCCESS; 1126c17ec2beSJeremy L Thompson } 1127c17ec2beSJeremy L Thompson 1128c17ec2beSJeremy L Thompson /** 1129ca94c3ddSJeremy L Thompson @brief Copy the pointer to a `CeedElemRestriction` and set @ref CeedElemRestrictionApply() implementation to use the unoriented version. 11307c1dbaffSSebastian Grimberg 1131ca94c3ddSJeremy L Thompson Both pointers should be destroyed with @ref CeedElemRestrictionDestroy(). 11327c1dbaffSSebastian Grimberg 1133ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to create unoriented reference to 1134ca94c3ddSJeremy L Thompson @param[in,out] rstr_unoriented Variable to store unoriented `CeedElemRestriction` 11357c1dbaffSSebastian Grimberg 11367c1dbaffSSebastian Grimberg @return An error code: 0 - success, otherwise - failure 11377c1dbaffSSebastian Grimberg 11387c1dbaffSSebastian Grimberg @ref User 11397c1dbaffSSebastian Grimberg **/ 11407c1dbaffSSebastian Grimberg int CeedElemRestrictionCreateUnorientedCopy(CeedElemRestriction rstr, CeedElemRestriction *rstr_unoriented) { 11417c1dbaffSSebastian Grimberg CeedCall(CeedCalloc(1, rstr_unoriented)); 11427c1dbaffSSebastian Grimberg 11437c1dbaffSSebastian Grimberg // Copy old rstr 11447c1dbaffSSebastian Grimberg memcpy(*rstr_unoriented, rstr, sizeof(struct CeedElemRestriction_private)); 11457c1dbaffSSebastian Grimberg (*rstr_unoriented)->ceed = NULL; 11467c1dbaffSSebastian Grimberg CeedCall(CeedReferenceCopy(rstr->ceed, &(*rstr_unoriented)->ceed)); 11477c1dbaffSSebastian Grimberg (*rstr_unoriented)->ref_count = 1; 11487c1dbaffSSebastian Grimberg (*rstr_unoriented)->strides = NULL; 11497c1dbaffSSebastian Grimberg if (rstr->strides) { 11507c1dbaffSSebastian Grimberg CeedCall(CeedMalloc(3, &(*rstr_unoriented)->strides)); 11517c1dbaffSSebastian Grimberg for (CeedInt i = 0; i < 3; i++) (*rstr_unoriented)->strides[i] = rstr->strides[i]; 11527c1dbaffSSebastian Grimberg } 11537c1dbaffSSebastian Grimberg CeedCall(CeedElemRestrictionReferenceCopy(rstr, &(*rstr_unoriented)->rstr_base)); 11547c1dbaffSSebastian Grimberg 11557c1dbaffSSebastian Grimberg // Override Apply 11567c1dbaffSSebastian Grimberg (*rstr_unoriented)->Apply = rstr->ApplyUnoriented; 11577c1dbaffSSebastian Grimberg return CEED_ERROR_SUCCESS; 11587c1dbaffSSebastian Grimberg } 11597c1dbaffSSebastian Grimberg 11607c1dbaffSSebastian Grimberg /** 1161ca94c3ddSJeremy L Thompson @brief Copy the pointer to a `CeedElemRestriction`. 11629fd66db6SSebastian Grimberg 1163ca94c3ddSJeremy L Thompson Both pointers should be destroyed with @ref CeedElemRestrictionDestroy(). 11649560d06aSjeremylt 1165ca94c3ddSJeremy L Thompson Note: If the value of `*rstr_copy` passed into this function is non-`NULL`, then it is assumed that `*rstr_copy` is a pointer to a `CeedElemRestriction`. 1166ca94c3ddSJeremy L Thompson This `CeedElemRestriction` will be destroyed if `*rstr_copy` is the only reference to this `CeedElemRestriction`. 1167ea61e9acSJeremy L Thompson 1168ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to copy reference to 1169ea61e9acSJeremy L Thompson @param[in,out] rstr_copy Variable to store copied reference 11709560d06aSjeremylt 11719560d06aSjeremylt @return An error code: 0 - success, otherwise - failure 11729560d06aSjeremylt 11739560d06aSjeremylt @ref User 11749560d06aSjeremylt **/ 11752b730f8bSJeremy L Thompson int CeedElemRestrictionReferenceCopy(CeedElemRestriction rstr, CeedElemRestriction *rstr_copy) { 1176393ac2cdSJeremy L Thompson if (rstr != CEED_ELEMRESTRICTION_NONE) CeedCall(CeedElemRestrictionReference(rstr)); 11772b730f8bSJeremy L Thompson CeedCall(CeedElemRestrictionDestroy(rstr_copy)); 11789560d06aSjeremylt *rstr_copy = rstr; 11799560d06aSjeremylt return CEED_ERROR_SUCCESS; 11809560d06aSjeremylt } 11819560d06aSjeremylt 11829560d06aSjeremylt /** 1183ca94c3ddSJeremy L Thompson @brief Create `CeedVector` associated with a `CeedElemRestriction` 1184b11c1e72Sjeremylt 1185ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1186ca94c3ddSJeremy L Thompson @param[out] l_vec The address of the L-vector to be created, or `NULL` 1187ca94c3ddSJeremy L Thompson @param[out] e_vec The address of the E-vector to be created, or `NULL` 1188b11c1e72Sjeremylt 1189b11c1e72Sjeremylt @return An error code: 0 - success, otherwise - failure 1190dfdf5a53Sjeremylt 11917a982d89SJeremy L. Thompson @ref User 1192b11c1e72Sjeremylt **/ 11932b730f8bSJeremy L Thompson int CeedElemRestrictionCreateVector(CeedElemRestriction rstr, CeedVector *l_vec, CeedVector *e_vec) { 1194d2643443SJeremy L Thompson CeedSize e_size, l_size; 11951203703bSJeremy L Thompson Ceed ceed; 119648acf710SJeremy L Thompson 11971203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetCeed(rstr, &ceed)); 11981203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetLVectorSize(rstr, &l_size)); 11991203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetEVectorSize(rstr, &e_size)); 12001203703bSJeremy L Thompson if (l_vec) CeedCall(CeedVectorCreate(ceed, l_size, l_vec)); 12011203703bSJeremy L Thompson if (e_vec) CeedCall(CeedVectorCreate(ceed, e_size, e_vec)); 1202e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1203d7b241e6Sjeremylt } 1204d7b241e6Sjeremylt 1205d7b241e6Sjeremylt /** 1206d9e1f99aSValeria Barra @brief Restrict an L-vector to an E-vector or apply its transpose 1207d7b241e6Sjeremylt 1208ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1209ea61e9acSJeremy L Thompson @param[in] t_mode Apply restriction or transpose 1210ca94c3ddSJeremy L Thompson @param[in] u Input vector (of size `l_size` when `t_mode` = @ref CEED_NOTRANSPOSE) 1211ca94c3ddSJeremy L Thompson @param[out] ru Output vector (of shape `[num_elem * elem_size]` when `t_mode` = @ref CEED_NOTRANSPOSE). 1212fcbe8c06SSebastian Grimberg Ordering of the e-vector is decided by the backend. 1213ea61e9acSJeremy L Thompson @param[in] request Request or @ref CEED_REQUEST_IMMEDIATE 1214b11c1e72Sjeremylt 1215b11c1e72Sjeremylt @return An error code: 0 - success, otherwise - failure 1216dfdf5a53Sjeremylt 12177a982d89SJeremy L. Thompson @ref User 1218b11c1e72Sjeremylt **/ 12192b730f8bSJeremy L Thompson int CeedElemRestrictionApply(CeedElemRestriction rstr, CeedTransposeMode t_mode, CeedVector u, CeedVector ru, CeedRequest *request) { 1220701e7d35SJeremy L Thompson CeedSize min_u_len, min_ru_len, len; 1221701e7d35SJeremy L Thompson CeedInt num_elem; 12221203703bSJeremy L Thompson Ceed ceed; 1223d7b241e6Sjeremylt 12241203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetCeed(rstr, &ceed)); 1225d1d35e2fSjeremylt if (t_mode == CEED_NOTRANSPOSE) { 1226701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetEVectorSize(rstr, &min_ru_len)); 1227701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetLVectorSize(rstr, &min_u_len)); 1228d7b241e6Sjeremylt } else { 1229701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetEVectorSize(rstr, &min_u_len)); 1230701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetLVectorSize(rstr, &min_ru_len)); 1231d7b241e6Sjeremylt } 1232701e7d35SJeremy L Thompson CeedCall(CeedVectorGetLength(u, &len)); 12331203703bSJeremy L Thompson CeedCheck(min_u_len <= len, ceed, CEED_ERROR_DIMENSION, 1234701e7d35SJeremy L Thompson "Input vector size %" CeedInt_FMT " not compatible with element restriction (%" CeedInt_FMT ", %" CeedInt_FMT ")", len, min_ru_len, 1235701e7d35SJeremy L Thompson min_u_len); 1236701e7d35SJeremy L Thompson CeedCall(CeedVectorGetLength(ru, &len)); 12371203703bSJeremy L Thompson CeedCheck(min_ru_len <= len, ceed, CEED_ERROR_DIMENSION, 1238701e7d35SJeremy L Thompson "Output vector size %" CeedInt_FMT " not compatible with element restriction (%" CeedInt_FMT ", %" CeedInt_FMT ")", len, min_u_len, 1239701e7d35SJeremy L Thompson min_ru_len); 1240701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumElements(rstr, &num_elem)); 1241701e7d35SJeremy L Thompson if (num_elem > 0) CeedCall(rstr->Apply(rstr, t_mode, u, ru, request)); 1242e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1243d7b241e6Sjeremylt } 1244d7b241e6Sjeremylt 1245d7b241e6Sjeremylt /** 12463ac8f562SJeremy L Thompson @brief Restrict an L-vector of points to a single element or apply its transpose 12473ac8f562SJeremy L Thompson 1248ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1249ca94c3ddSJeremy L Thompson @param[in] elem Element number in range `[0, num_elem)` 12503ac8f562SJeremy L Thompson @param[in] t_mode Apply restriction or transpose 1251ca94c3ddSJeremy L Thompson @param[in] u Input vector (of size `l_size` when `t_mode` = @ref CEED_NOTRANSPOSE) 1252ca94c3ddSJeremy L Thompson @param[out] ru Output vector (of shape [`num_points * num_comp]` when `t_mode` = @ref CEED_NOTRANSPOSE). 12533ac8f562SJeremy L Thompson Ordering of the e-vector is decided by the backend. 12543ac8f562SJeremy L Thompson @param[in] request Request or @ref CEED_REQUEST_IMMEDIATE 12553ac8f562SJeremy L Thompson 12563ac8f562SJeremy L Thompson @return An error code: 0 - success, otherwise - failure 12573ac8f562SJeremy L Thompson 12583ac8f562SJeremy L Thompson @ref User 12593ac8f562SJeremy L Thompson **/ 126005fa913cSJeremy L Thompson int CeedElemRestrictionApplyAtPointsInElement(CeedElemRestriction rstr, CeedInt elem, CeedTransposeMode t_mode, CeedVector u, CeedVector ru, 12613ac8f562SJeremy L Thompson CeedRequest *request) { 1262701e7d35SJeremy L Thompson CeedSize min_u_len, min_ru_len, len; 1263701e7d35SJeremy L Thompson CeedInt num_elem; 12641203703bSJeremy L Thompson Ceed ceed; 12653ac8f562SJeremy L Thompson 12661203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetCeed(rstr, &ceed)); 12673ac8f562SJeremy L Thompson if (t_mode == CEED_NOTRANSPOSE) { 1268701e7d35SJeremy L Thompson CeedInt num_points, num_comp; 1269701e7d35SJeremy L Thompson 1270701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetLVectorSize(rstr, &min_u_len)); 1271701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumPointsInElement(rstr, elem, &num_points)); 1272701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumComponents(rstr, &num_comp)); 1273701e7d35SJeremy L Thompson min_ru_len = (CeedSize)num_points * (CeedSize)num_comp; 12743ac8f562SJeremy L Thompson } else { 1275701e7d35SJeremy L Thompson CeedInt num_points, num_comp; 1276701e7d35SJeremy L Thompson 1277701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumPointsInElement(rstr, elem, &num_points)); 1278701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumComponents(rstr, &num_comp)); 1279701e7d35SJeremy L Thompson min_u_len = (CeedSize)num_points * (CeedSize)num_comp; 1280701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetLVectorSize(rstr, &min_ru_len)); 12813ac8f562SJeremy L Thompson } 1282701e7d35SJeremy L Thompson CeedCall(CeedVectorGetLength(u, &len)); 12831203703bSJeremy L Thompson CeedCheck(min_u_len <= len, ceed, CEED_ERROR_DIMENSION, 12843ac8f562SJeremy L Thompson "Input vector size %" CeedInt_FMT " not compatible with element restriction (%" CeedInt_FMT ", %" CeedInt_FMT 12853ac8f562SJeremy L Thompson ") for element %" CeedInt_FMT, 1286701e7d35SJeremy L Thompson len, min_ru_len, min_u_len, elem); 1287701e7d35SJeremy L Thompson CeedCall(CeedVectorGetLength(ru, &len)); 12881203703bSJeremy L Thompson CeedCheck(min_ru_len <= len, ceed, CEED_ERROR_DIMENSION, 12893ac8f562SJeremy L Thompson "Output vector size %" CeedInt_FMT " not compatible with element restriction (%" CeedInt_FMT ", %" CeedInt_FMT 12903ac8f562SJeremy L Thompson ") for element %" CeedInt_FMT, 1291701e7d35SJeremy L Thompson len, min_ru_len, min_u_len, elem); 1292701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumElements(rstr, &num_elem)); 12931203703bSJeremy L Thompson CeedCheck(elem < num_elem, ceed, CEED_ERROR_DIMENSION, 1294701e7d35SJeremy L Thompson "Cannot retrieve element %" CeedInt_FMT ", element %" CeedInt_FMT " > total elements %" CeedInt_FMT "", elem, elem, num_elem); 1295701e7d35SJeremy L Thompson if (num_elem > 0) CeedCall(rstr->ApplyAtPointsInElement(rstr, elem, t_mode, u, ru, request)); 12963ac8f562SJeremy L Thompson return CEED_ERROR_SUCCESS; 12973ac8f562SJeremy L Thompson } 12983ac8f562SJeremy L Thompson 12993ac8f562SJeremy L Thompson /** 1300d9e1f99aSValeria Barra @brief Restrict an L-vector to a block of an E-vector or apply its transpose 1301be9261b7Sjeremylt 1302ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1303ca94c3ddSJeremy L Thompson @param[in] block Block number to restrict to/from, i.e. `block = 0` will handle elements `[0 : block_size]` and `block = 3` will handle elements `[3*block_size : 4*block_size]` 1304ea61e9acSJeremy L Thompson @param[in] t_mode Apply restriction or transpose 1305ca94c3ddSJeremy L Thompson @param[in] u Input vector (of size `l_size` when `t_mode` = @ref CEED_NOTRANSPOSE) 1306ca94c3ddSJeremy L Thompson @param[out] ru Output vector (of shape `[block_size * elem_size]` when `t_mode` = @ref CEED_NOTRANSPOSE). 1307fcbe8c06SSebastian Grimberg Ordering of the e-vector is decided by the backend. 1308ea61e9acSJeremy L Thompson @param[in] request Request or @ref CEED_REQUEST_IMMEDIATE 1309be9261b7Sjeremylt 1310be9261b7Sjeremylt @return An error code: 0 - success, otherwise - failure 1311be9261b7Sjeremylt 13127a982d89SJeremy L. Thompson @ref Backend 1313be9261b7Sjeremylt **/ 13142b730f8bSJeremy L Thompson int CeedElemRestrictionApplyBlock(CeedElemRestriction rstr, CeedInt block, CeedTransposeMode t_mode, CeedVector u, CeedVector ru, 13152b730f8bSJeremy L Thompson CeedRequest *request) { 1316701e7d35SJeremy L Thompson CeedSize min_u_len, min_ru_len, len; 1317701e7d35SJeremy L Thompson CeedInt block_size, num_elem; 13181203703bSJeremy L Thompson Ceed ceed; 1319be9261b7Sjeremylt 13201203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetCeed(rstr, &ceed)); 13211203703bSJeremy L Thompson CeedCheck(rstr->ApplyBlock, ceed, CEED_ERROR_UNSUPPORTED, "Backend does not implement CeedElemRestrictionApplyBlock"); 13226402da51SJeremy L Thompson 1323701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetBlockSize(rstr, &block_size)); 1324d1d35e2fSjeremylt if (t_mode == CEED_NOTRANSPOSE) { 1325701e7d35SJeremy L Thompson CeedInt elem_size, num_comp; 1326701e7d35SJeremy L Thompson 1327701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetElementSize(rstr, &elem_size)); 1328701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumComponents(rstr, &num_comp)); 1329701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetLVectorSize(rstr, &min_u_len)); 1330701e7d35SJeremy L Thompson min_ru_len = (CeedSize)block_size * (CeedSize)elem_size * (CeedSize)num_comp; 1331be9261b7Sjeremylt } else { 1332701e7d35SJeremy L Thompson CeedInt elem_size, num_comp; 1333701e7d35SJeremy L Thompson 1334701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetElementSize(rstr, &elem_size)); 1335701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumComponents(rstr, &num_comp)); 1336701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetLVectorSize(rstr, &min_ru_len)); 1337701e7d35SJeremy L Thompson min_u_len = (CeedSize)block_size * (CeedSize)elem_size * (CeedSize)num_comp; 1338be9261b7Sjeremylt } 1339701e7d35SJeremy L Thompson CeedCall(CeedVectorGetLength(u, &len)); 13401203703bSJeremy L Thompson CeedCheck(min_u_len == len, ceed, CEED_ERROR_DIMENSION, 1341701e7d35SJeremy L Thompson "Input vector size %" CeedInt_FMT " not compatible with element restriction (%" CeedInt_FMT ", %" CeedInt_FMT ")", len, min_u_len, 1342701e7d35SJeremy L Thompson min_ru_len); 1343701e7d35SJeremy L Thompson CeedCall(CeedVectorGetLength(ru, &len)); 13441203703bSJeremy L Thompson CeedCheck(min_ru_len == len, ceed, CEED_ERROR_DIMENSION, 1345701e7d35SJeremy L Thompson "Output vector size %" CeedInt_FMT " not compatible with element restriction (%" CeedInt_FMT ", %" CeedInt_FMT ")", len, min_ru_len, 1346701e7d35SJeremy L Thompson min_u_len); 1347701e7d35SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumElements(rstr, &num_elem)); 13481203703bSJeremy L Thompson CeedCheck(block_size * block <= num_elem, ceed, CEED_ERROR_DIMENSION, 1349701e7d35SJeremy L Thompson "Cannot retrieve block %" CeedInt_FMT ", element %" CeedInt_FMT " > total elements %" CeedInt_FMT "", block, block_size * block, 1350701e7d35SJeremy L Thompson num_elem); 13512b730f8bSJeremy L Thompson CeedCall(rstr->ApplyBlock(rstr, block, t_mode, u, ru, request)); 1352e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1353be9261b7Sjeremylt } 1354be9261b7Sjeremylt 1355be9261b7Sjeremylt /** 1356ca94c3ddSJeremy L Thompson @brief Get the `Ceed` associated with a `CeedElemRestriction` 1357b7c9bbdaSJeremy L Thompson 1358ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1359ca94c3ddSJeremy L Thompson @param[out] ceed Variable to store `Ceed` 1360b7c9bbdaSJeremy L Thompson 1361b7c9bbdaSJeremy L Thompson @return An error code: 0 - success, otherwise - failure 1362b7c9bbdaSJeremy L Thompson 1363b7c9bbdaSJeremy L Thompson @ref Advanced 1364b7c9bbdaSJeremy L Thompson **/ 1365b7c9bbdaSJeremy L Thompson int CeedElemRestrictionGetCeed(CeedElemRestriction rstr, Ceed *ceed) { 13666e536b99SJeremy L Thompson *ceed = CeedElemRestrictionReturnCeed(rstr); 1367b7c9bbdaSJeremy L Thompson return CEED_ERROR_SUCCESS; 1368b7c9bbdaSJeremy L Thompson } 1369b7c9bbdaSJeremy L Thompson 1370b7c9bbdaSJeremy L Thompson /** 13716e536b99SJeremy L Thompson @brief Return the `Ceed` associated with a `CeedElemRestriction` 13726e536b99SJeremy L Thompson 13736e536b99SJeremy L Thompson @param[in] rstr `CeedElemRestriction` 13746e536b99SJeremy L Thompson 13756e536b99SJeremy L Thompson @return `Ceed` associated with the `rstr` 13766e536b99SJeremy L Thompson 13776e536b99SJeremy L Thompson @ref Advanced 13786e536b99SJeremy L Thompson **/ 13796e536b99SJeremy L Thompson Ceed CeedElemRestrictionReturnCeed(CeedElemRestriction rstr) { return rstr->ceed; } 13806e536b99SJeremy L Thompson 13816e536b99SJeremy L Thompson /** 1382d979a051Sjeremylt @brief Get the L-vector component stride 1383a681ae63Sjeremylt 1384ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1385d1d35e2fSjeremylt @param[out] comp_stride Variable to store component stride 1386a681ae63Sjeremylt 1387a681ae63Sjeremylt @return An error code: 0 - success, otherwise - failure 1388a681ae63Sjeremylt 1389b7c9bbdaSJeremy L Thompson @ref Advanced 1390a681ae63Sjeremylt **/ 13912b730f8bSJeremy L Thompson int CeedElemRestrictionGetCompStride(CeedElemRestriction rstr, CeedInt *comp_stride) { 1392d1d35e2fSjeremylt *comp_stride = rstr->comp_stride; 1393e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1394a681ae63Sjeremylt } 1395a681ae63Sjeremylt 1396a681ae63Sjeremylt /** 1397ca94c3ddSJeremy L Thompson @brief Get the total number of elements in the range of a `CeedElemRestriction` 1398a681ae63Sjeremylt 1399ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1400d1d35e2fSjeremylt @param[out] num_elem Variable to store number of elements 1401a681ae63Sjeremylt 1402a681ae63Sjeremylt @return An error code: 0 - success, otherwise - failure 1403a681ae63Sjeremylt 1404b7c9bbdaSJeremy L Thompson @ref Advanced 1405a681ae63Sjeremylt **/ 14062b730f8bSJeremy L Thompson int CeedElemRestrictionGetNumElements(CeedElemRestriction rstr, CeedInt *num_elem) { 1407d1d35e2fSjeremylt *num_elem = rstr->num_elem; 1408e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1409a681ae63Sjeremylt } 1410a681ae63Sjeremylt 1411a681ae63Sjeremylt /** 1412ca94c3ddSJeremy L Thompson @brief Get the size of elements in the `CeedElemRestriction` 1413a681ae63Sjeremylt 1414ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1415d1d35e2fSjeremylt @param[out] elem_size Variable to store size of elements 1416a681ae63Sjeremylt 1417a681ae63Sjeremylt @return An error code: 0 - success, otherwise - failure 1418a681ae63Sjeremylt 1419b7c9bbdaSJeremy L Thompson @ref Advanced 1420a681ae63Sjeremylt **/ 14212b730f8bSJeremy L Thompson int CeedElemRestrictionGetElementSize(CeedElemRestriction rstr, CeedInt *elem_size) { 1422d1d35e2fSjeremylt *elem_size = rstr->elem_size; 14232c7e7413SJeremy L Thompson return CEED_ERROR_SUCCESS; 14242c7e7413SJeremy L Thompson } 14252c7e7413SJeremy L Thompson 14262c7e7413SJeremy L Thompson /** 142707d5dec1SJeremy L Thompson 1428ca94c3ddSJeremy L Thompson @brief Get the number of points in the l-vector for a points `CeedElemRestriction` 142907d5dec1SJeremy L Thompson 1430ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 143107d5dec1SJeremy L Thompson @param[out] num_points The number of points in the l-vector 143207d5dec1SJeremy L Thompson 143307d5dec1SJeremy L Thompson @return An error code: 0 - success, otherwise - failure 143407d5dec1SJeremy L Thompson 1435c63574e3SJeremy L Thompson @ref User 143607d5dec1SJeremy L Thompson **/ 143707d5dec1SJeremy L Thompson int CeedElemRestrictionGetNumPoints(CeedElemRestriction rstr, CeedInt *num_points) { 14381203703bSJeremy L Thompson CeedRestrictionType rstr_type; 143907d5dec1SJeremy L Thompson 14401203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetType(rstr, &rstr_type)); 14416e536b99SJeremy L Thompson CeedCheck(rstr_type == CEED_RESTRICTION_POINTS, CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_INCOMPATIBLE, 144207d5dec1SJeremy L Thompson "Can only retrieve the number of points for a points CeedElemRestriction"); 144307d5dec1SJeremy L Thompson 144407d5dec1SJeremy L Thompson *num_points = rstr->num_points; 144507d5dec1SJeremy L Thompson return CEED_ERROR_SUCCESS; 144607d5dec1SJeremy L Thompson } 144707d5dec1SJeremy L Thompson 144807d5dec1SJeremy L Thompson /** 144907d5dec1SJeremy L Thompson 1450ca94c3ddSJeremy L Thompson @brief Get the number of points in an element of a `CeedElemRestriction` at points 145107d5dec1SJeremy L Thompson 1452ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 145307d5dec1SJeremy L Thompson @param[in] elem Index number of element to retrieve the number of points for 145407d5dec1SJeremy L Thompson @param[out] num_points The number of points in the element at index elem 145507d5dec1SJeremy L Thompson 145607d5dec1SJeremy L Thompson @return An error code: 0 - success, otherwise - failure 145707d5dec1SJeremy L Thompson 1458c63574e3SJeremy L Thompson @ref User 145907d5dec1SJeremy L Thompson **/ 146007d5dec1SJeremy L Thompson int CeedElemRestrictionGetNumPointsInElement(CeedElemRestriction rstr, CeedInt elem, CeedInt *num_points) { 14611203703bSJeremy L Thompson CeedRestrictionType rstr_type; 146207d5dec1SJeremy L Thompson const CeedInt *offsets; 146307d5dec1SJeremy L Thompson 14641203703bSJeremy L Thompson CeedCall(CeedElemRestrictionGetType(rstr, &rstr_type)); 14656e536b99SJeremy L Thompson CeedCheck(rstr_type == CEED_RESTRICTION_POINTS, CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_INCOMPATIBLE, 146607d5dec1SJeremy L Thompson "Can only retrieve the number of points for a points CeedElemRestriction"); 146707d5dec1SJeremy L Thompson 146807d5dec1SJeremy L Thompson CeedCall(CeedElemRestrictionGetOffsets(rstr, CEED_MEM_HOST, &offsets)); 146907d5dec1SJeremy L Thompson *num_points = offsets[elem + 1] - offsets[elem]; 147007d5dec1SJeremy L Thompson CeedCall(CeedElemRestrictionRestoreOffsets(rstr, &offsets)); 147107d5dec1SJeremy L Thompson return CEED_ERROR_SUCCESS; 147207d5dec1SJeremy L Thompson } 147307d5dec1SJeremy L Thompson 147407d5dec1SJeremy L Thompson /** 1475ca94c3ddSJeremy L Thompson @brief Get the maximum number of points in an element for a `CeedElemRestriction` at points 14762c7e7413SJeremy L Thompson 1477ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 14782c7e7413SJeremy L Thompson @param[out] max_points Variable to store size of elements 14792c7e7413SJeremy L Thompson 14802c7e7413SJeremy L Thompson @return An error code: 0 - success, otherwise - failure 14812c7e7413SJeremy L Thompson 14822c7e7413SJeremy L Thompson @ref Advanced 14832c7e7413SJeremy L Thompson **/ 14842c7e7413SJeremy L Thompson int CeedElemRestrictionGetMaxPointsInElement(CeedElemRestriction rstr, CeedInt *max_points) { 14852c7e7413SJeremy L Thompson CeedInt num_elem; 14862c7e7413SJeremy L Thompson CeedRestrictionType rstr_type; 14872c7e7413SJeremy L Thompson 14882c7e7413SJeremy L Thompson CeedCall(CeedElemRestrictionGetType(rstr, &rstr_type)); 14896e536b99SJeremy L Thompson CeedCheck(rstr_type == CEED_RESTRICTION_POINTS, CeedElemRestrictionReturnCeed(rstr), CEED_ERROR_INCOMPATIBLE, 14902c7e7413SJeremy L Thompson "Cannot compute max points for a CeedElemRestriction that does not use points"); 14912c7e7413SJeremy L Thompson 14922c7e7413SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumElements(rstr, &num_elem)); 14932c7e7413SJeremy L Thompson *max_points = 0; 14942c7e7413SJeremy L Thompson for (CeedInt e = 0; e < num_elem; e++) { 14952c7e7413SJeremy L Thompson CeedInt num_points; 14962c7e7413SJeremy L Thompson 14972c7e7413SJeremy L Thompson CeedCall(CeedElemRestrictionGetNumPointsInElement(rstr, e, &num_points)); 14982c7e7413SJeremy L Thompson *max_points = CeedIntMax(num_points, *max_points); 14992c7e7413SJeremy L Thompson } 1500e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1501a681ae63Sjeremylt } 1502a681ae63Sjeremylt 1503a681ae63Sjeremylt /** 1504ca94c3ddSJeremy L Thompson @brief Get the size of the l-vector for a `CeedElemRestriction` 1505a681ae63Sjeremylt 1506ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1507701e7d35SJeremy L Thompson @param[out] l_size Variable to store l-vector size 1508a681ae63Sjeremylt 1509a681ae63Sjeremylt @return An error code: 0 - success, otherwise - failure 1510a681ae63Sjeremylt 1511b7c9bbdaSJeremy L Thompson @ref Advanced 1512a681ae63Sjeremylt **/ 15132b730f8bSJeremy L Thompson int CeedElemRestrictionGetLVectorSize(CeedElemRestriction rstr, CeedSize *l_size) { 1514d1d35e2fSjeremylt *l_size = rstr->l_size; 1515e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1516a681ae63Sjeremylt } 1517a681ae63Sjeremylt 1518a681ae63Sjeremylt /** 1519701e7d35SJeremy L Thompson @brief Get the size of the e-vector for a `CeedElemRestriction` 1520701e7d35SJeremy L Thompson 1521701e7d35SJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1522701e7d35SJeremy L Thompson @param[out] e_size Variable to store e-vector size 1523701e7d35SJeremy L Thompson 1524701e7d35SJeremy L Thompson @return An error code: 0 - success, otherwise - failure 1525701e7d35SJeremy L Thompson 1526701e7d35SJeremy L Thompson @ref Advanced 1527701e7d35SJeremy L Thompson **/ 1528701e7d35SJeremy L Thompson int CeedElemRestrictionGetEVectorSize(CeedElemRestriction rstr, CeedSize *e_size) { 1529701e7d35SJeremy L Thompson *e_size = rstr->e_size; 1530701e7d35SJeremy L Thompson return CEED_ERROR_SUCCESS; 1531701e7d35SJeremy L Thompson } 1532701e7d35SJeremy L Thompson 1533701e7d35SJeremy L Thompson /** 1534ca94c3ddSJeremy L Thompson @brief Get the number of components in the elements of a `CeedElemRestriction` 1535a681ae63Sjeremylt 1536ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1537d1d35e2fSjeremylt @param[out] num_comp Variable to store number of components 1538a681ae63Sjeremylt 1539a681ae63Sjeremylt @return An error code: 0 - success, otherwise - failure 1540a681ae63Sjeremylt 1541b7c9bbdaSJeremy L Thompson @ref Advanced 1542a681ae63Sjeremylt **/ 15432b730f8bSJeremy L Thompson int CeedElemRestrictionGetNumComponents(CeedElemRestriction rstr, CeedInt *num_comp) { 1544d1d35e2fSjeremylt *num_comp = rstr->num_comp; 1545e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1546a681ae63Sjeremylt } 1547a681ae63Sjeremylt 1548a681ae63Sjeremylt /** 1549ca94c3ddSJeremy L Thompson @brief Get the number of blocks in a `CeedElemRestriction` 1550a681ae63Sjeremylt 1551ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1552d1d35e2fSjeremylt @param[out] num_block Variable to store number of blocks 1553a681ae63Sjeremylt 1554a681ae63Sjeremylt @return An error code: 0 - success, otherwise - failure 1555a681ae63Sjeremylt 1556b7c9bbdaSJeremy L Thompson @ref Advanced 1557a681ae63Sjeremylt **/ 15582b730f8bSJeremy L Thompson int CeedElemRestrictionGetNumBlocks(CeedElemRestriction rstr, CeedInt *num_block) { 1559e7f679fcSJeremy L Thompson *num_block = rstr->num_block; 1560e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1561a681ae63Sjeremylt } 1562a681ae63Sjeremylt 1563a681ae63Sjeremylt /** 1564ca94c3ddSJeremy L Thompson @brief Get the size of blocks in the `CeedElemRestriction` 1565a681ae63Sjeremylt 1566ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1567e7f679fcSJeremy L Thompson @param[out] block_size Variable to store size of blocks 1568a681ae63Sjeremylt 1569a681ae63Sjeremylt @return An error code: 0 - success, otherwise - failure 1570a681ae63Sjeremylt 1571b7c9bbdaSJeremy L Thompson @ref Advanced 1572a681ae63Sjeremylt **/ 1573e7f679fcSJeremy L Thompson int CeedElemRestrictionGetBlockSize(CeedElemRestriction rstr, CeedInt *block_size) { 1574e7f679fcSJeremy L Thompson *block_size = rstr->block_size; 1575e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1576a681ae63Sjeremylt } 1577a681ae63Sjeremylt 1578a681ae63Sjeremylt /** 1579ca94c3ddSJeremy L Thompson @brief Get the multiplicity of nodes in a `CeedElemRestriction` 15801469ee4dSjeremylt 1581ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` 1582ca94c3ddSJeremy L Thompson @param[out] mult Vector to store multiplicity (of size `l_size`) 15831469ee4dSjeremylt 15841469ee4dSjeremylt @return An error code: 0 - success, otherwise - failure 15851469ee4dSjeremylt 15867a982d89SJeremy L. Thompson @ref User 15871469ee4dSjeremylt **/ 15882b730f8bSJeremy L Thompson int CeedElemRestrictionGetMultiplicity(CeedElemRestriction rstr, CeedVector mult) { 1589d1d35e2fSjeremylt CeedVector e_vec; 15901469ee4dSjeremylt 159125509ebbSRezgar Shakeri // Create e_vec to hold intermediate computation in E^T (E 1) 15922b730f8bSJeremy L Thompson CeedCall(CeedElemRestrictionCreateVector(rstr, NULL, &e_vec)); 15931469ee4dSjeremylt 159425509ebbSRezgar Shakeri // Compute e_vec = E * 1 15952b730f8bSJeremy L Thompson CeedCall(CeedVectorSetValue(mult, 1.0)); 15962b730f8bSJeremy L Thompson CeedCall(CeedElemRestrictionApply(rstr, CEED_NOTRANSPOSE, mult, e_vec, CEED_REQUEST_IMMEDIATE)); 159725509ebbSRezgar Shakeri // Compute multiplicity, mult = E^T * e_vec = E^T (E 1) 15982b730f8bSJeremy L Thompson CeedCall(CeedVectorSetValue(mult, 0.0)); 15992b730f8bSJeremy L Thompson CeedCall(CeedElemRestrictionApply(rstr, CEED_TRANSPOSE, e_vec, mult, CEED_REQUEST_IMMEDIATE)); 16001469ee4dSjeremylt // Cleanup 16012b730f8bSJeremy L Thompson CeedCall(CeedVectorDestroy(&e_vec)); 1602e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 16031469ee4dSjeremylt } 16041469ee4dSjeremylt 16051469ee4dSjeremylt /** 1606ca94c3ddSJeremy L Thompson @brief View a `CeedElemRestriction` 1607f02ca4a2SJed Brown 1608ca94c3ddSJeremy L Thompson @param[in] rstr `CeedElemRestriction` to view 1609ca94c3ddSJeremy L Thompson @param[in] stream Stream to write; typically `stdout` or a file 1610f02ca4a2SJed Brown 1611f02ca4a2SJed Brown @return Error code: 0 - success, otherwise - failure 1612f02ca4a2SJed Brown 16137a982d89SJeremy L. Thompson @ref User 1614f02ca4a2SJed Brown **/ 1615f02ca4a2SJed Brown int CeedElemRestrictionView(CeedElemRestriction rstr, FILE *stream) { 16160930e4e7SJeremy L Thompson CeedRestrictionType rstr_type; 16170930e4e7SJeremy L Thompson 16180930e4e7SJeremy L Thompson CeedCall(CeedElemRestrictionGetType(rstr, &rstr_type)); 16190930e4e7SJeremy L Thompson if (rstr_type == CEED_RESTRICTION_POINTS) { 16200930e4e7SJeremy L Thompson CeedInt max_points; 16210930e4e7SJeremy L Thompson 16220930e4e7SJeremy L Thompson CeedCall(CeedElemRestrictionGetMaxPointsInElement(rstr, &max_points)); 16230930e4e7SJeremy L Thompson fprintf(stream, 1624249f8407SJeremy L Thompson "CeedElemRestriction at points from (%" CeedSize_FMT ", %" CeedInt_FMT ") to %" CeedInt_FMT " elements with a maximum of %" CeedInt_FMT 16250930e4e7SJeremy L Thompson " points on an element\n", 16260930e4e7SJeremy L Thompson rstr->l_size, rstr->num_comp, rstr->num_elem, max_points); 16270930e4e7SJeremy L Thompson } else { 1628249f8407SJeremy L Thompson char strides_str[500]; 16291c66c397SJeremy L Thompson 16302b730f8bSJeremy L Thompson if (rstr->strides) { 1631249f8407SJeremy L Thompson sprintf(strides_str, "[%" CeedInt_FMT ", %" CeedInt_FMT ", %" CeedInt_FMT "]", rstr->strides[0], rstr->strides[1], rstr->strides[2]); 16322b730f8bSJeremy L Thompson } else { 1633249f8407SJeremy L Thompson sprintf(strides_str, "%" CeedInt_FMT, rstr->comp_stride); 16342b730f8bSJeremy L Thompson } 1635249f8407SJeremy L Thompson fprintf(stream, 1636249f8407SJeremy L Thompson "%sCeedElemRestriction from (%" CeedSize_FMT ", %" CeedInt_FMT ") to %" CeedInt_FMT " elements with %" CeedInt_FMT 1637249f8407SJeremy L Thompson " nodes each and %s %s\n", 1638e7f679fcSJeremy L Thompson rstr->block_size > 1 ? "Blocked " : "", rstr->l_size, rstr->num_comp, rstr->num_elem, rstr->elem_size, 1639249f8407SJeremy L Thompson rstr->strides ? "strides" : "component stride", strides_str); 16400930e4e7SJeremy L Thompson } 1641e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1642f02ca4a2SJed Brown } 1643f02ca4a2SJed Brown 1644f02ca4a2SJed Brown /** 1645ca94c3ddSJeremy L Thompson @brief Destroy a `CeedElemRestriction` 1646b11c1e72Sjeremylt 1647ca94c3ddSJeremy L Thompson @param[in,out] rstr `CeedElemRestriction` to destroy 1648b11c1e72Sjeremylt 1649b11c1e72Sjeremylt @return An error code: 0 - success, otherwise - failure 1650dfdf5a53Sjeremylt 16517a982d89SJeremy L. Thompson @ref User 1652b11c1e72Sjeremylt **/ 16534ce2993fSjeremylt int CeedElemRestrictionDestroy(CeedElemRestriction *rstr) { 1654393ac2cdSJeremy L Thompson if (!*rstr || *rstr == CEED_ELEMRESTRICTION_NONE || --(*rstr)->ref_count > 0) { 1655ad6481ceSJeremy L Thompson *rstr = NULL; 1656ad6481ceSJeremy L Thompson return CEED_ERROR_SUCCESS; 1657ad6481ceSJeremy L Thompson } 16586574a04fSJeremy L Thompson CeedCheck((*rstr)->num_readers == 0, (*rstr)->ceed, CEED_ERROR_ACCESS, 16596574a04fSJeremy L Thompson "Cannot destroy CeedElemRestriction, a process has read access to the offset data"); 1660c17ec2beSJeremy L Thompson 1661c17ec2beSJeremy L Thompson // Only destroy backend data once between rstr and unsigned copy 16627c1dbaffSSebastian Grimberg if ((*rstr)->rstr_base) CeedCall(CeedElemRestrictionDestroy(&(*rstr)->rstr_base)); 1663c17ec2beSJeremy L Thompson else if ((*rstr)->Destroy) CeedCall((*rstr)->Destroy(*rstr)); 1664c17ec2beSJeremy L Thompson 16652b730f8bSJeremy L Thompson CeedCall(CeedFree(&(*rstr)->strides)); 16662b730f8bSJeremy L Thompson CeedCall(CeedDestroy(&(*rstr)->ceed)); 16672b730f8bSJeremy L Thompson CeedCall(CeedFree(rstr)); 1668e15f9bd0SJeremy L Thompson return CEED_ERROR_SUCCESS; 1669d7b241e6Sjeremylt } 1670d7b241e6Sjeremylt 1671d7b241e6Sjeremylt /// @} 1672