xref: /libCEED/rust/libceed-sys/c-src/interface/ceed-basis.c (revision 34359f16efbc10f0e69405f262a23387c38de222)
1d7b241e6Sjeremylt // Copyright (c) 2017, Lawrence Livermore National Security, LLC. Produced at
2d7b241e6Sjeremylt // the Lawrence Livermore National Laboratory. LLNL-CODE-734707. All Rights
3d7b241e6Sjeremylt // reserved. See files LICENSE and NOTICE for details.
4d7b241e6Sjeremylt //
5d7b241e6Sjeremylt // This file is part of CEED, a collection of benchmarks, miniapps, software
6d7b241e6Sjeremylt // libraries and APIs for efficient high-order finite element and spectral
7d7b241e6Sjeremylt // element discretizations for exascale applications. For more information and
8d7b241e6Sjeremylt // source code availability see http://github.com/ceed.
9d7b241e6Sjeremylt //
10d7b241e6Sjeremylt // The CEED research is supported by the Exascale Computing Project 17-SC-20-SC,
11d7b241e6Sjeremylt // a collaborative effort of two U.S. Department of Energy organizations (Office
12d7b241e6Sjeremylt // of Science and the National Nuclear Security Administration) responsible for
13d7b241e6Sjeremylt // the planning and preparation of a capable exascale ecosystem, including
14d7b241e6Sjeremylt // software, applications, hardware, advanced system engineering and early
15d7b241e6Sjeremylt // testbed platforms, in support of the nation's exascale computing imperative.
16d7b241e6Sjeremylt 
17ec3da8bcSJed Brown #include <ceed/ceed.h>
18ec3da8bcSJed Brown #include <ceed/backend.h>
193d576824SJeremy L Thompson #include <ceed-impl.h>
20d7b241e6Sjeremylt #include <math.h>
213d576824SJeremy L Thompson #include <stdbool.h>
22d7b241e6Sjeremylt #include <stdio.h>
23d7b241e6Sjeremylt #include <string.h>
24d7b241e6Sjeremylt 
257a982d89SJeremy L. Thompson /// @file
267a982d89SJeremy L. Thompson /// Implementation of CeedBasis interfaces
277a982d89SJeremy L. Thompson 
28d7b241e6Sjeremylt /// @cond DOXYGEN_SKIP
29783c99b3SValeria Barra static struct CeedBasis_private ceed_basis_collocated;
30d7b241e6Sjeremylt /// @endcond
31d7b241e6Sjeremylt 
327a982d89SJeremy L. Thompson /// @addtogroup CeedBasisUser
337a982d89SJeremy L. Thompson /// @{
347a982d89SJeremy L. Thompson 
357a982d89SJeremy L. Thompson /// Indicate that the quadrature points are collocated with the nodes
367a982d89SJeremy L. Thompson const CeedBasis CEED_BASIS_COLLOCATED = &ceed_basis_collocated;
377a982d89SJeremy L. Thompson 
387a982d89SJeremy L. Thompson /// @}
397a982d89SJeremy L. Thompson 
407a982d89SJeremy L. Thompson /// ----------------------------------------------------------------------------
417a982d89SJeremy L. Thompson /// CeedBasis Library Internal Functions
427a982d89SJeremy L. Thompson /// ----------------------------------------------------------------------------
437a982d89SJeremy L. Thompson /// @addtogroup CeedBasisDeveloper
447a982d89SJeremy L. Thompson /// @{
457a982d89SJeremy L. Thompson 
467a982d89SJeremy L. Thompson /**
477a982d89SJeremy L. Thompson   @brief Compute Householder reflection
487a982d89SJeremy L. Thompson 
497a982d89SJeremy L. Thompson     Computes A = (I - b v v^T) A
507a982d89SJeremy L. Thompson     where A is an mxn matrix indexed as A[i*row + j*col]
517a982d89SJeremy L. Thompson 
527a982d89SJeremy L. Thompson   @param[in,out] A  Matrix to apply Householder reflection to, in place
537a982d89SJeremy L. Thompson   @param v          Householder vector
547a982d89SJeremy L. Thompson   @param b          Scaling factor
557a982d89SJeremy L. Thompson   @param m          Number of rows in A
567a982d89SJeremy L. Thompson   @param n          Number of columns in A
577a982d89SJeremy L. Thompson   @param row        Row stride
587a982d89SJeremy L. Thompson   @param col        Col stride
597a982d89SJeremy L. Thompson 
607a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
617a982d89SJeremy L. Thompson 
627a982d89SJeremy L. Thompson   @ref Developer
637a982d89SJeremy L. Thompson **/
647a982d89SJeremy L. Thompson static int CeedHouseholderReflect(CeedScalar *A, const CeedScalar *v,
657a982d89SJeremy L. Thompson                                   CeedScalar b, CeedInt m, CeedInt n,
667a982d89SJeremy L. Thompson                                   CeedInt row, CeedInt col) {
677a982d89SJeremy L. Thompson   for (CeedInt j=0; j<n; j++) {
687a982d89SJeremy L. Thompson     CeedScalar w = A[0*row + j*col];
697a982d89SJeremy L. Thompson     for (CeedInt i=1; i<m; i++)
707a982d89SJeremy L. Thompson       w += v[i] * A[i*row + j*col];
717a982d89SJeremy L. Thompson     A[0*row + j*col] -= b * w;
727a982d89SJeremy L. Thompson     for (CeedInt i=1; i<m; i++)
737a982d89SJeremy L. Thompson       A[i*row + j*col] -= b * w * v[i];
747a982d89SJeremy L. Thompson   }
75e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
767a982d89SJeremy L. Thompson }
777a982d89SJeremy L. Thompson 
787a982d89SJeremy L. Thompson /**
797a982d89SJeremy L. Thompson   @brief Apply Householder Q matrix
807a982d89SJeremy L. Thompson 
817a982d89SJeremy L. Thompson     Compute A = Q A where Q is mxm and A is mxn.
827a982d89SJeremy L. Thompson 
837a982d89SJeremy L. Thompson   @param[in,out] A  Matrix to apply Householder Q to, in place
847a982d89SJeremy L. Thompson   @param Q          Householder Q matrix
857a982d89SJeremy L. Thompson   @param tau        Householder scaling factors
86d1d35e2fSjeremylt   @param t_mode    Transpose mode for application
877a982d89SJeremy L. Thompson   @param m          Number of rows in A
887a982d89SJeremy L. Thompson   @param n          Number of columns in A
897a982d89SJeremy L. Thompson   @param k          Number of elementary reflectors in Q, k<m
907a982d89SJeremy L. Thompson   @param row        Row stride in A
917a982d89SJeremy L. Thompson   @param col        Col stride in A
927a982d89SJeremy L. Thompson 
937a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
947a982d89SJeremy L. Thompson 
957a982d89SJeremy L. Thompson   @ref Developer
967a982d89SJeremy L. Thompson **/
97d99fa3c5SJeremy L Thompson int CeedHouseholderApplyQ(CeedScalar *A, const CeedScalar *Q,
98d1d35e2fSjeremylt                           const CeedScalar *tau, CeedTransposeMode t_mode,
997a982d89SJeremy L. Thompson                           CeedInt m, CeedInt n, CeedInt k,
1007a982d89SJeremy L. Thompson                           CeedInt row, CeedInt col) {
101e15f9bd0SJeremy L Thompson   int ierr;
1027a982d89SJeremy L. Thompson   CeedScalar v[m];
1037a982d89SJeremy L. Thompson   for (CeedInt ii=0; ii<k; ii++) {
104d1d35e2fSjeremylt     CeedInt i = t_mode == CEED_TRANSPOSE ? ii : k-1-ii;
1057a982d89SJeremy L. Thompson     for (CeedInt j=i+1; j<m; j++)
1067a982d89SJeremy L. Thompson       v[j] = Q[j*k+i];
107d1d35e2fSjeremylt     // Apply Householder reflector (I - tau v v^T) collo_grad_1d^T
108e15f9bd0SJeremy L Thompson     ierr = CeedHouseholderReflect(&A[i*row], &v[i], tau[i], m-i, n, row, col);
109e15f9bd0SJeremy L Thompson     CeedChk(ierr);
1107a982d89SJeremy L. Thompson   }
111e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
1127a982d89SJeremy L. Thompson }
1137a982d89SJeremy L. Thompson 
1147a982d89SJeremy L. Thompson /**
1157a982d89SJeremy L. Thompson   @brief Compute Givens rotation
1167a982d89SJeremy L. Thompson 
1177a982d89SJeremy L. Thompson     Computes A = G A (or G^T A in transpose mode)
1187a982d89SJeremy L. Thompson     where A is an mxn matrix indexed as A[i*n + j*m]
1197a982d89SJeremy L. Thompson 
1207a982d89SJeremy L. Thompson   @param[in,out] A  Row major matrix to apply Givens rotation to, in place
1217a982d89SJeremy L. Thompson   @param c          Cosine factor
1227a982d89SJeremy L. Thompson   @param s          Sine factor
123d1d35e2fSjeremylt   @param t_mode     @ref CEED_NOTRANSPOSE to rotate the basis counter-clockwise,
1244c4400c7SValeria Barra                     which has the effect of rotating columns of A clockwise;
1254cc79fe7SJed Brown                     @ref CEED_TRANSPOSE for the opposite rotation
1267a982d89SJeremy L. Thompson   @param i          First row/column to apply rotation
1277a982d89SJeremy L. Thompson   @param k          Second row/column to apply rotation
1287a982d89SJeremy L. Thompson   @param m          Number of rows in A
1297a982d89SJeremy L. Thompson   @param n          Number of columns in A
1307a982d89SJeremy L. Thompson 
1317a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
1327a982d89SJeremy L. Thompson 
1337a982d89SJeremy L. Thompson   @ref Developer
1347a982d89SJeremy L. Thompson **/
1357a982d89SJeremy L. Thompson static int CeedGivensRotation(CeedScalar *A, CeedScalar c, CeedScalar s,
136d1d35e2fSjeremylt                               CeedTransposeMode t_mode, CeedInt i, CeedInt k,
1377a982d89SJeremy L. Thompson                               CeedInt m, CeedInt n) {
138d1d35e2fSjeremylt   CeedInt stride_j = 1, stride_ik = m, num_its = n;
139d1d35e2fSjeremylt   if (t_mode == CEED_NOTRANSPOSE) {
140d1d35e2fSjeremylt     stride_j = n; stride_ik = 1; num_its = m;
1417a982d89SJeremy L. Thompson   }
1427a982d89SJeremy L. Thompson 
1437a982d89SJeremy L. Thompson   // Apply rotation
144d1d35e2fSjeremylt   for (CeedInt j=0; j<num_its; j++) {
145d1d35e2fSjeremylt     CeedScalar tau1 = A[i*stride_ik+j*stride_j], tau2 = A[k*stride_ik+j*stride_j];
146d1d35e2fSjeremylt     A[i*stride_ik+j*stride_j] = c*tau1 - s*tau2;
147d1d35e2fSjeremylt     A[k*stride_ik+j*stride_j] = s*tau1 + c*tau2;
1487a982d89SJeremy L. Thompson   }
149e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
1507a982d89SJeremy L. Thompson }
1517a982d89SJeremy L. Thompson 
1527a982d89SJeremy L. Thompson /**
1537a982d89SJeremy L. Thompson   @brief View an array stored in a CeedBasis
1547a982d89SJeremy L. Thompson 
1550a0da059Sjeremylt   @param[in] name      Name of array
156d1d35e2fSjeremylt   @param[in] fp_fmt    Printing format
1570a0da059Sjeremylt   @param[in] m         Number of rows in array
1580a0da059Sjeremylt   @param[in] n         Number of columns in array
1590a0da059Sjeremylt   @param[in] a         Array to be viewed
1600a0da059Sjeremylt   @param[in] stream    Stream to view to, e.g., stdout
1617a982d89SJeremy L. Thompson 
1627a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
1637a982d89SJeremy L. Thompson 
1647a982d89SJeremy L. Thompson   @ref Developer
1657a982d89SJeremy L. Thompson **/
166d1d35e2fSjeremylt static int CeedScalarView(const char *name, const char *fp_fmt, CeedInt m,
1677a982d89SJeremy L. Thompson                           CeedInt n, const CeedScalar *a, FILE *stream) {
1687a982d89SJeremy L. Thompson   for (int i=0; i<m; i++) {
1697a982d89SJeremy L. Thompson     if (m > 1)
1707a982d89SJeremy L. Thompson       fprintf(stream, "%12s[%d]:", name, i);
1717a982d89SJeremy L. Thompson     else
1727a982d89SJeremy L. Thompson       fprintf(stream, "%12s:", name);
1737a982d89SJeremy L. Thompson     for (int j=0; j<n; j++)
174d1d35e2fSjeremylt       fprintf(stream, fp_fmt, fabs(a[i*n+j]) > 1E-14 ? a[i*n+j] : 0);
1757a982d89SJeremy L. Thompson     fputs("\n", stream);
1767a982d89SJeremy L. Thompson   }
177e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
1787a982d89SJeremy L. Thompson }
1797a982d89SJeremy L. Thompson 
1807a982d89SJeremy L. Thompson /// @}
1817a982d89SJeremy L. Thompson 
1827a982d89SJeremy L. Thompson /// ----------------------------------------------------------------------------
1837a982d89SJeremy L. Thompson /// Ceed Backend API
1847a982d89SJeremy L. Thompson /// ----------------------------------------------------------------------------
1857a982d89SJeremy L. Thompson /// @addtogroup CeedBasisBackend
1867a982d89SJeremy L. Thompson /// @{
1877a982d89SJeremy L. Thompson 
1887a982d89SJeremy L. Thompson /**
1897a982d89SJeremy L. Thompson   @brief Return collocated grad matrix
1907a982d89SJeremy L. Thompson 
1917a982d89SJeremy L. Thompson   @param basis               CeedBasis
192d1d35e2fSjeremylt   @param[out] collo_grad_1d  Row-major (Q_1d * Q_1d) matrix expressing derivatives of
1937a982d89SJeremy L. Thompson                                basis functions at quadrature points
1947a982d89SJeremy L. Thompson 
1957a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
1967a982d89SJeremy L. Thompson 
1977a982d89SJeremy L. Thompson   @ref Backend
1987a982d89SJeremy L. Thompson **/
199d1d35e2fSjeremylt int CeedBasisGetCollocatedGrad(CeedBasis basis, CeedScalar *collo_grad_1d) {
2007a982d89SJeremy L. Thompson   int i, j, k;
2017a982d89SJeremy L. Thompson   Ceed ceed;
202d1d35e2fSjeremylt   CeedInt ierr, P_1d=(basis)->P_1d, Q_1d=(basis)->Q_1d;
203d1d35e2fSjeremylt   CeedScalar *interp_1d, *grad_1d, tau[Q_1d];
2047a982d89SJeremy L. Thompson 
205d1d35e2fSjeremylt   ierr = CeedMalloc(Q_1d*P_1d, &interp_1d); CeedChk(ierr);
206d1d35e2fSjeremylt   ierr = CeedMalloc(Q_1d*P_1d, &grad_1d); CeedChk(ierr);
207d1d35e2fSjeremylt   memcpy(interp_1d, (basis)->interp_1d, Q_1d*P_1d*sizeof(basis)->interp_1d[0]);
208d1d35e2fSjeremylt   memcpy(grad_1d, (basis)->grad_1d, Q_1d*P_1d*sizeof(basis)->interp_1d[0]);
2097a982d89SJeremy L. Thompson 
210d1d35e2fSjeremylt   // QR Factorization, interp_1d = Q R
2117a982d89SJeremy L. Thompson   ierr = CeedBasisGetCeed(basis, &ceed); CeedChk(ierr);
212d1d35e2fSjeremylt   ierr = CeedQRFactorization(ceed, interp_1d, tau, Q_1d, P_1d); CeedChk(ierr);
213e15f9bd0SJeremy L Thompson   // Note: This function is for backend use, so all errors are terminal
214e15f9bd0SJeremy L Thompson   //   and we do not need to clean up memory on failure.
2157a982d89SJeremy L. Thompson 
216d1d35e2fSjeremylt   // Apply Rinv, collo_grad_1d = grad_1d Rinv
217d1d35e2fSjeremylt   for (i=0; i<Q_1d; i++) { // Row i
218d1d35e2fSjeremylt     collo_grad_1d[Q_1d*i] = grad_1d[P_1d*i]/interp_1d[0];
219d1d35e2fSjeremylt     for (j=1; j<P_1d; j++) { // Column j
220d1d35e2fSjeremylt       collo_grad_1d[j+Q_1d*i] = grad_1d[j+P_1d*i];
2217a982d89SJeremy L. Thompson       for (k=0; k<j; k++)
222d1d35e2fSjeremylt         collo_grad_1d[j+Q_1d*i] -= interp_1d[j+P_1d*k]*collo_grad_1d[k+Q_1d*i];
223d1d35e2fSjeremylt       collo_grad_1d[j+Q_1d*i] /= interp_1d[j+P_1d*j];
2247a982d89SJeremy L. Thompson     }
225d1d35e2fSjeremylt     for (j=P_1d; j<Q_1d; j++)
226d1d35e2fSjeremylt       collo_grad_1d[j+Q_1d*i] = 0;
2277a982d89SJeremy L. Thompson   }
2287a982d89SJeremy L. Thompson 
229d1d35e2fSjeremylt   // Apply Qtranspose, collograd = collo_grad Q_transpose
230d1d35e2fSjeremylt   ierr = CeedHouseholderApplyQ(collo_grad_1d, interp_1d, tau, CEED_NOTRANSPOSE,
231d1d35e2fSjeremylt                                Q_1d, Q_1d, P_1d, 1, Q_1d); CeedChk(ierr);
2327a982d89SJeremy L. Thompson 
233d1d35e2fSjeremylt   ierr = CeedFree(&interp_1d); CeedChk(ierr);
234d1d35e2fSjeremylt   ierr = CeedFree(&grad_1d); CeedChk(ierr);
235e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
2367a982d89SJeremy L. Thompson }
2377a982d89SJeremy L. Thompson 
2387a982d89SJeremy L. Thompson /**
2397a982d89SJeremy L. Thompson   @brief Get Ceed associated with a CeedBasis
2407a982d89SJeremy L. Thompson 
2417a982d89SJeremy L. Thompson   @param basis      CeedBasis
2427a982d89SJeremy L. Thompson   @param[out] ceed  Variable to store Ceed
2437a982d89SJeremy L. Thompson 
2447a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
2457a982d89SJeremy L. Thompson 
2467a982d89SJeremy L. Thompson   @ref Backend
2477a982d89SJeremy L. Thompson **/
2487a982d89SJeremy L. Thompson int CeedBasisGetCeed(CeedBasis basis, Ceed *ceed) {
2497a982d89SJeremy L. Thompson   *ceed = basis->ceed;
250e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
2517a982d89SJeremy L. Thompson }
2527a982d89SJeremy L. Thompson 
2537a982d89SJeremy L. Thompson /**
2547a982d89SJeremy L. Thompson   @brief Get tensor status for given CeedBasis
2557a982d89SJeremy L. Thompson 
2567a982d89SJeremy L. Thompson   @param basis           CeedBasis
257d1d35e2fSjeremylt   @param[out] is_tensor  Variable to store tensor status
2587a982d89SJeremy L. Thompson 
2597a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
2607a982d89SJeremy L. Thompson 
2617a982d89SJeremy L. Thompson   @ref Backend
2627a982d89SJeremy L. Thompson **/
263d1d35e2fSjeremylt int CeedBasisIsTensor(CeedBasis basis, bool *is_tensor) {
264d1d35e2fSjeremylt   *is_tensor = basis->tensor_basis;
265e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
2667a982d89SJeremy L. Thompson }
2677a982d89SJeremy L. Thompson 
2687a982d89SJeremy L. Thompson /**
2697a982d89SJeremy L. Thompson   @brief Get backend data of a CeedBasis
2707a982d89SJeremy L. Thompson 
2717a982d89SJeremy L. Thompson   @param basis      CeedBasis
2727a982d89SJeremy L. Thompson   @param[out] data  Variable to store data
2737a982d89SJeremy L. Thompson 
2747a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
2757a982d89SJeremy L. Thompson 
2767a982d89SJeremy L. Thompson   @ref Backend
2777a982d89SJeremy L. Thompson **/
278777ff853SJeremy L Thompson int CeedBasisGetData(CeedBasis basis, void *data) {
279777ff853SJeremy L Thompson   *(void **)data = basis->data;
280e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
2817a982d89SJeremy L. Thompson }
2827a982d89SJeremy L. Thompson 
2837a982d89SJeremy L. Thompson /**
2847a982d89SJeremy L. Thompson   @brief Set backend data of a CeedBasis
2857a982d89SJeremy L. Thompson 
2867a982d89SJeremy L. Thompson   @param[out] basis  CeedBasis
2877a982d89SJeremy L. Thompson   @param data        Data to set
2887a982d89SJeremy L. Thompson 
2897a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
2907a982d89SJeremy L. Thompson 
2917a982d89SJeremy L. Thompson   @ref Backend
2927a982d89SJeremy L. Thompson **/
293777ff853SJeremy L Thompson int CeedBasisSetData(CeedBasis basis, void *data) {
294777ff853SJeremy L Thompson   basis->data = data;
295e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
2967a982d89SJeremy L. Thompson }
2977a982d89SJeremy L. Thompson 
2987a982d89SJeremy L. Thompson /**
299*34359f16Sjeremylt   @brief Increment the reference counter for a CeedBasis
300*34359f16Sjeremylt 
301*34359f16Sjeremylt   @param basis  Basis to increment the reference counter
302*34359f16Sjeremylt 
303*34359f16Sjeremylt   @return An error code: 0 - success, otherwise - failure
304*34359f16Sjeremylt 
305*34359f16Sjeremylt   @ref Backend
306*34359f16Sjeremylt **/
307*34359f16Sjeremylt int CeedBasisIncrementRefCounter(CeedBasis basis) {
308*34359f16Sjeremylt   basis->ref_count++;
309*34359f16Sjeremylt   return CEED_ERROR_SUCCESS;
310*34359f16Sjeremylt }
311*34359f16Sjeremylt 
312*34359f16Sjeremylt /**
3137a982d89SJeremy L. Thompson   @brief Get dimension for given CeedElemTopology
3147a982d89SJeremy L. Thompson 
3157a982d89SJeremy L. Thompson   @param topo      CeedElemTopology
3167a982d89SJeremy L. Thompson   @param[out] dim  Variable to store dimension of topology
3177a982d89SJeremy L. Thompson 
3187a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
3197a982d89SJeremy L. Thompson 
3207a982d89SJeremy L. Thompson   @ref Backend
3217a982d89SJeremy L. Thompson **/
3227a982d89SJeremy L. Thompson int CeedBasisGetTopologyDimension(CeedElemTopology topo, CeedInt *dim) {
3237a982d89SJeremy L. Thompson   *dim = (CeedInt) topo >> 16;
324e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
3257a982d89SJeremy L. Thompson }
3267a982d89SJeremy L. Thompson 
3277a982d89SJeremy L. Thompson /**
3287a982d89SJeremy L. Thompson   @brief Get CeedTensorContract of a CeedBasis
3297a982d89SJeremy L. Thompson 
3307a982d89SJeremy L. Thompson   @param basis          CeedBasis
3317a982d89SJeremy L. Thompson   @param[out] contract  Variable to store CeedTensorContract
3327a982d89SJeremy L. Thompson 
3337a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
3347a982d89SJeremy L. Thompson 
3357a982d89SJeremy L. Thompson   @ref Backend
3367a982d89SJeremy L. Thompson **/
3377a982d89SJeremy L. Thompson int CeedBasisGetTensorContract(CeedBasis basis, CeedTensorContract *contract) {
3387a982d89SJeremy L. Thompson   *contract = basis->contract;
339e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
3407a982d89SJeremy L. Thompson }
3417a982d89SJeremy L. Thompson 
3427a982d89SJeremy L. Thompson /**
3437a982d89SJeremy L. Thompson   @brief Set CeedTensorContract of a CeedBasis
3447a982d89SJeremy L. Thompson 
3457a982d89SJeremy L. Thompson   @param[out] basis  CeedBasis
3467a982d89SJeremy L. Thompson   @param contract    CeedTensorContract to set
3477a982d89SJeremy L. Thompson 
3487a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
3497a982d89SJeremy L. Thompson 
3507a982d89SJeremy L. Thompson   @ref Backend
3517a982d89SJeremy L. Thompson **/
352*34359f16Sjeremylt int CeedBasisSetTensorContract(CeedBasis basis, CeedTensorContract contract) {
353*34359f16Sjeremylt   int ierr;
354*34359f16Sjeremylt   basis->contract = contract;
355*34359f16Sjeremylt   ierr = CeedTensorContractIncrementRefCounter(contract); CeedChk(ierr);
356e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
3577a982d89SJeremy L. Thompson }
3587a982d89SJeremy L. Thompson 
3597a982d89SJeremy L. Thompson /**
3607a982d89SJeremy L. Thompson   @brief Return a reference implementation of matrix multiplication C = A B.
3617a982d89SJeremy L. Thompson            Note, this is a reference implementation for CPU CeedScalar pointers
3627a982d89SJeremy L. Thompson            that is not intended for high performance.
3637a982d89SJeremy L. Thompson 
3647a982d89SJeremy L. Thompson   @param ceed        A Ceed context for error handling
365d1d35e2fSjeremylt   @param[in] mat_A   Row-major matrix A
366d1d35e2fSjeremylt   @param[in] mat_B   Row-major matrix B
367d1d35e2fSjeremylt   @param[out] mat_C  Row-major output matrix C
3687a982d89SJeremy L. Thompson   @param m           Number of rows of C
3697a982d89SJeremy L. Thompson   @param n           Number of columns of C
3707a982d89SJeremy L. Thompson   @param kk          Number of columns of A/rows of B
3717a982d89SJeremy L. Thompson 
3727a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
3737a982d89SJeremy L. Thompson 
3747a982d89SJeremy L. Thompson   @ref Utility
3757a982d89SJeremy L. Thompson **/
376d1d35e2fSjeremylt int CeedMatrixMultiply(Ceed ceed, const CeedScalar *mat_A,
377d1d35e2fSjeremylt                        const CeedScalar *mat_B, CeedScalar *mat_C, CeedInt m,
3787a982d89SJeremy L. Thompson                        CeedInt n, CeedInt kk) {
3797a982d89SJeremy L. Thompson   for (CeedInt i=0; i<m; i++)
3807a982d89SJeremy L. Thompson     for (CeedInt j=0; j<n; j++) {
3817a982d89SJeremy L. Thompson       CeedScalar sum = 0;
3827a982d89SJeremy L. Thompson       for (CeedInt k=0; k<kk; k++)
383d1d35e2fSjeremylt         sum += mat_A[k+i*kk]*mat_B[j+k*n];
384d1d35e2fSjeremylt       mat_C[j+i*n] = sum;
3857a982d89SJeremy L. Thompson     }
386e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
3877a982d89SJeremy L. Thompson }
3887a982d89SJeremy L. Thompson 
3897a982d89SJeremy L. Thompson /// @}
3907a982d89SJeremy L. Thompson 
3917a982d89SJeremy L. Thompson /// ----------------------------------------------------------------------------
3927a982d89SJeremy L. Thompson /// CeedBasis Public API
3937a982d89SJeremy L. Thompson /// ----------------------------------------------------------------------------
3947a982d89SJeremy L. Thompson /// @addtogroup CeedBasisUser
395d7b241e6Sjeremylt /// @{
396d7b241e6Sjeremylt 
397b11c1e72Sjeremylt /**
39895bb1877Svaleriabarra   @brief Create a tensor-product basis for H^1 discretizations
399b11c1e72Sjeremylt 
400b11c1e72Sjeremylt   @param ceed        A Ceed object where the CeedBasis will be created
401b11c1e72Sjeremylt   @param dim         Topological dimension
402d1d35e2fSjeremylt   @param num_comp    Number of field components (1 for scalar fields)
403d1d35e2fSjeremylt   @param P_1d        Number of nodes in one dimension
404d1d35e2fSjeremylt   @param Q_1d        Number of quadrature points in one dimension
405d1d35e2fSjeremylt   @param interp_1d   Row-major (Q_1d * P_1d) matrix expressing the values of nodal
406b11c1e72Sjeremylt                        basis functions at quadrature points
407d1d35e2fSjeremylt   @param grad_1d     Row-major (Q_1d * P_1d) matrix expressing derivatives of nodal
408b11c1e72Sjeremylt                        basis functions at quadrature points
409d1d35e2fSjeremylt   @param q_ref_1d    Array of length Q_1d holding the locations of quadrature points
410b11c1e72Sjeremylt                        on the 1D reference element [-1, 1]
411d1d35e2fSjeremylt   @param q_weight_1d Array of length Q_1d holding the quadrature weights on the
412b11c1e72Sjeremylt                        reference element
413b11c1e72Sjeremylt   @param[out] basis  Address of the variable where the newly created
414b11c1e72Sjeremylt                        CeedBasis will be stored.
415b11c1e72Sjeremylt 
416b11c1e72Sjeremylt   @return An error code: 0 - success, otherwise - failure
417dfdf5a53Sjeremylt 
4187a982d89SJeremy L. Thompson   @ref User
419b11c1e72Sjeremylt **/
420d1d35e2fSjeremylt int CeedBasisCreateTensorH1(Ceed ceed, CeedInt dim, CeedInt num_comp,
421d1d35e2fSjeremylt                             CeedInt P_1d, CeedInt Q_1d,
422d1d35e2fSjeremylt                             const CeedScalar *interp_1d,
423d1d35e2fSjeremylt                             const CeedScalar *grad_1d, const CeedScalar *q_ref_1d,
424d1d35e2fSjeremylt                             const CeedScalar *q_weight_1d, CeedBasis *basis) {
425d7b241e6Sjeremylt   int ierr;
426d7b241e6Sjeremylt 
4275fe0d4faSjeremylt   if (!ceed->BasisCreateTensorH1) {
4285fe0d4faSjeremylt     Ceed delegate;
429aefd8378Sjeremylt     ierr = CeedGetObjectDelegate(ceed, &delegate, "Basis"); CeedChk(ierr);
4305fe0d4faSjeremylt 
4315fe0d4faSjeremylt     if (!delegate)
432c042f62fSJeremy L Thompson       // LCOV_EXCL_START
433e15f9bd0SJeremy L Thompson       return CeedError(ceed, CEED_ERROR_UNSUPPORTED,
434e15f9bd0SJeremy L Thompson                        "Backend does not support BasisCreateTensorH1");
435c042f62fSJeremy L Thompson     // LCOV_EXCL_STOP
4365fe0d4faSjeremylt 
437d1d35e2fSjeremylt     ierr = CeedBasisCreateTensorH1(delegate, dim, num_comp, P_1d,
438d1d35e2fSjeremylt                                    Q_1d, interp_1d, grad_1d, q_ref_1d,
439d1d35e2fSjeremylt                                    q_weight_1d, basis); CeedChk(ierr);
440e15f9bd0SJeremy L Thompson     return CEED_ERROR_SUCCESS;
4415fe0d4faSjeremylt   }
442e15f9bd0SJeremy L Thompson 
443e15f9bd0SJeremy L Thompson   if (dim<1)
444e15f9bd0SJeremy L Thompson     // LCOV_EXCL_START
445e15f9bd0SJeremy L Thompson     return CeedError(ceed, CEED_ERROR_DIMENSION,
446e15f9bd0SJeremy L Thompson                      "Basis dimension must be a positive value");
447e15f9bd0SJeremy L Thompson   // LCOV_EXCL_STOP
448d1d35e2fSjeremylt   CeedElemTopology topo = dim == 1 ? CEED_LINE
449d1d35e2fSjeremylt                           : dim == 2 ? CEED_QUAD
450d1d35e2fSjeremylt                           : CEED_HEX;
451e15f9bd0SJeremy L Thompson 
452d7b241e6Sjeremylt   ierr = CeedCalloc(1, basis); CeedChk(ierr);
453d7b241e6Sjeremylt   (*basis)->ceed = ceed;
454*34359f16Sjeremylt   ierr = CeedIncrementRefCounter(ceed); CeedChk(ierr);
455d1d35e2fSjeremylt   (*basis)->ref_count = 1;
456d1d35e2fSjeremylt   (*basis)->tensor_basis = 1;
457d7b241e6Sjeremylt   (*basis)->dim = dim;
458d99fa3c5SJeremy L Thompson   (*basis)->topo = topo;
459d1d35e2fSjeremylt   (*basis)->num_comp = num_comp;
460d1d35e2fSjeremylt   (*basis)->P_1d = P_1d;
461d1d35e2fSjeremylt   (*basis)->Q_1d = Q_1d;
462d1d35e2fSjeremylt   (*basis)->P = CeedIntPow(P_1d, dim);
463d1d35e2fSjeremylt   (*basis)->Q = CeedIntPow(Q_1d, dim);
464d1d35e2fSjeremylt   ierr = CeedMalloc(Q_1d,&(*basis)->q_ref_1d); CeedChk(ierr);
465d1d35e2fSjeremylt   ierr = CeedMalloc(Q_1d,&(*basis)->q_weight_1d); CeedChk(ierr);
466d1d35e2fSjeremylt   memcpy((*basis)->q_ref_1d, q_ref_1d, Q_1d*sizeof(q_ref_1d[0]));
467d1d35e2fSjeremylt   memcpy((*basis)->q_weight_1d, q_weight_1d, Q_1d*sizeof(q_weight_1d[0]));
468d1d35e2fSjeremylt   ierr = CeedMalloc(Q_1d*P_1d,&(*basis)->interp_1d); CeedChk(ierr);
469d1d35e2fSjeremylt   ierr = CeedMalloc(Q_1d*P_1d,&(*basis)->grad_1d); CeedChk(ierr);
470d1d35e2fSjeremylt   memcpy((*basis)->interp_1d, interp_1d, Q_1d*P_1d*sizeof(interp_1d[0]));
471d1d35e2fSjeremylt   memcpy((*basis)->grad_1d, grad_1d, Q_1d*P_1d*sizeof(grad_1d[0]));
472d1d35e2fSjeremylt   ierr = ceed->BasisCreateTensorH1(dim, P_1d, Q_1d, interp_1d, grad_1d, q_ref_1d,
473d1d35e2fSjeremylt                                    q_weight_1d, *basis); CeedChk(ierr);
474e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
475d7b241e6Sjeremylt }
476d7b241e6Sjeremylt 
477b11c1e72Sjeremylt /**
47895bb1877Svaleriabarra   @brief Create a tensor-product Lagrange basis
479b11c1e72Sjeremylt 
480b11c1e72Sjeremylt   @param ceed        A Ceed object where the CeedBasis will be created
481b11c1e72Sjeremylt   @param dim         Topological dimension of element
482d1d35e2fSjeremylt   @param num_comp      Number of field components (1 for scalar fields)
483b11c1e72Sjeremylt   @param P           Number of Gauss-Lobatto nodes in one dimension.  The
484b11c1e72Sjeremylt                        polynomial degree of the resulting Q_k element is k=P-1.
485b11c1e72Sjeremylt   @param Q           Number of quadrature points in one dimension.
486d1d35e2fSjeremylt   @param quad_mode   Distribution of the Q quadrature points (affects order of
487b11c1e72Sjeremylt                        accuracy for the quadrature)
488b11c1e72Sjeremylt   @param[out] basis  Address of the variable where the newly created
489b11c1e72Sjeremylt                        CeedBasis will be stored.
490b11c1e72Sjeremylt 
491b11c1e72Sjeremylt   @return An error code: 0 - success, otherwise - failure
492dfdf5a53Sjeremylt 
4937a982d89SJeremy L. Thompson   @ref User
494b11c1e72Sjeremylt **/
495d1d35e2fSjeremylt int CeedBasisCreateTensorH1Lagrange(Ceed ceed, CeedInt dim, CeedInt num_comp,
496d1d35e2fSjeremylt                                     CeedInt P, CeedInt Q, CeedQuadMode quad_mode,
497692c2638Sjeremylt                                     CeedBasis *basis) {
498d7b241e6Sjeremylt   // Allocate
499e15f9bd0SJeremy L Thompson   int ierr, ierr2, i, j, k;
500d1d35e2fSjeremylt   CeedScalar c1, c2, c3, c4, dx, *nodes, *interp_1d, *grad_1d, *q_ref_1d,
501d1d35e2fSjeremylt              *q_weight_1d;
5024d537eeaSYohann 
5034d537eeaSYohann   if (dim<1)
504c042f62fSJeremy L Thompson     // LCOV_EXCL_START
505e15f9bd0SJeremy L Thompson     return CeedError(ceed, CEED_ERROR_DIMENSION,
506e15f9bd0SJeremy L Thompson                      "Basis dimension must be a positive value");
507c042f62fSJeremy L Thompson   // LCOV_EXCL_STOP
5084d537eeaSYohann 
509e15f9bd0SJeremy L Thompson   // Get Nodes and Weights
510d1d35e2fSjeremylt   ierr = CeedCalloc(P*Q, &interp_1d); CeedChk(ierr);
511d1d35e2fSjeremylt   ierr = CeedCalloc(P*Q, &grad_1d); CeedChk(ierr);
512d7b241e6Sjeremylt   ierr = CeedCalloc(P, &nodes); CeedChk(ierr);
513d1d35e2fSjeremylt   ierr = CeedCalloc(Q, &q_ref_1d); CeedChk(ierr);
514d1d35e2fSjeremylt   ierr = CeedCalloc(Q, &q_weight_1d); CeedChk(ierr);
515e15f9bd0SJeremy L Thompson   ierr = CeedLobattoQuadrature(P, nodes, NULL);
516e15f9bd0SJeremy L Thompson   if (ierr) { goto cleanup; } CeedChk(ierr);
517d1d35e2fSjeremylt   switch (quad_mode) {
518d7b241e6Sjeremylt   case CEED_GAUSS:
519d1d35e2fSjeremylt     ierr = CeedGaussQuadrature(Q, q_ref_1d, q_weight_1d);
520d7b241e6Sjeremylt     break;
521d7b241e6Sjeremylt   case CEED_GAUSS_LOBATTO:
522d1d35e2fSjeremylt     ierr = CeedLobattoQuadrature(Q, q_ref_1d, q_weight_1d);
523d7b241e6Sjeremylt     break;
524d7b241e6Sjeremylt   }
525e15f9bd0SJeremy L Thompson   if (ierr) { goto cleanup; } CeedChk(ierr);
526e15f9bd0SJeremy L Thompson 
527d7b241e6Sjeremylt   // Build B, D matrix
528d7b241e6Sjeremylt   // Fornberg, 1998
529d7b241e6Sjeremylt   for (i = 0; i  < Q; i++) {
530d7b241e6Sjeremylt     c1 = 1.0;
531d1d35e2fSjeremylt     c3 = nodes[0] - q_ref_1d[i];
532d1d35e2fSjeremylt     interp_1d[i*P+0] = 1.0;
533d7b241e6Sjeremylt     for (j = 1; j < P; j++) {
534d7b241e6Sjeremylt       c2 = 1.0;
535d7b241e6Sjeremylt       c4 = c3;
536d1d35e2fSjeremylt       c3 = nodes[j] - q_ref_1d[i];
537d7b241e6Sjeremylt       for (k = 0; k < j; k++) {
538d7b241e6Sjeremylt         dx = nodes[j] - nodes[k];
539d7b241e6Sjeremylt         c2 *= dx;
540d7b241e6Sjeremylt         if (k == j - 1) {
541d1d35e2fSjeremylt           grad_1d[i*P + j] = c1*(interp_1d[i*P + k] - c4*grad_1d[i*P + k]) / c2;
542d1d35e2fSjeremylt           interp_1d[i*P + j] = - c1*c4*interp_1d[i*P + k] / c2;
543d7b241e6Sjeremylt         }
544d1d35e2fSjeremylt         grad_1d[i*P + k] = (c3*grad_1d[i*P + k] - interp_1d[i*P + k]) / dx;
545d1d35e2fSjeremylt         interp_1d[i*P + k] = c3*interp_1d[i*P + k] / dx;
546d7b241e6Sjeremylt       }
547d7b241e6Sjeremylt       c1 = c2;
548d7b241e6Sjeremylt     }
549d7b241e6Sjeremylt   }
550d7b241e6Sjeremylt   //  // Pass to CeedBasisCreateTensorH1
551d1d35e2fSjeremylt   ierr = CeedBasisCreateTensorH1(ceed, dim, num_comp, P, Q, interp_1d, grad_1d,
552d1d35e2fSjeremylt                                  q_ref_1d,
553d1d35e2fSjeremylt                                  q_weight_1d, basis); CeedChk(ierr);
554e15f9bd0SJeremy L Thompson cleanup:
555d1d35e2fSjeremylt   ierr2 = CeedFree(&interp_1d); CeedChk(ierr2);
556d1d35e2fSjeremylt   ierr2 = CeedFree(&grad_1d); CeedChk(ierr2);
557e15f9bd0SJeremy L Thompson   ierr2 = CeedFree(&nodes); CeedChk(ierr2);
558d1d35e2fSjeremylt   ierr2 = CeedFree(&q_ref_1d); CeedChk(ierr2);
559d1d35e2fSjeremylt   ierr2 = CeedFree(&q_weight_1d); CeedChk(ierr2);
560e15f9bd0SJeremy L Thompson   CeedChk(ierr);
561e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
562d7b241e6Sjeremylt }
563d7b241e6Sjeremylt 
564b11c1e72Sjeremylt /**
56595bb1877Svaleriabarra   @brief Create a non tensor-product basis for H^1 discretizations
566a8de75f0Sjeremylt 
567a8de75f0Sjeremylt   @param ceed        A Ceed object where the CeedBasis will be created
568a8de75f0Sjeremylt   @param topo        Topology of element, e.g. hypercube, simplex, ect
569d1d35e2fSjeremylt   @param num_comp    Number of field components (1 for scalar fields)
570d1d35e2fSjeremylt   @param num_nodes   Total number of nodes
571d1d35e2fSjeremylt   @param num_qpts    Total number of quadrature points
572d1d35e2fSjeremylt   @param interp      Row-major (num_qpts * num_nodes) matrix expressing the values of
5738795c945Sjeremylt                        nodal basis functions at quadrature points
574d1d35e2fSjeremylt   @param grad        Row-major (num_qpts * dim * num_nodes) matrix expressing
5758795c945Sjeremylt                        derivatives of nodal basis functions at quadrature points
576d1d35e2fSjeremylt   @param q_ref       Array of length num_qpts holding the locations of quadrature
5778795c945Sjeremylt                        points on the reference element [-1, 1]
578d1d35e2fSjeremylt   @param q_weight    Array of length num_qpts holding the quadrature weights on the
579a8de75f0Sjeremylt                        reference element
580a8de75f0Sjeremylt   @param[out] basis  Address of the variable where the newly created
581a8de75f0Sjeremylt                        CeedBasis will be stored.
582a8de75f0Sjeremylt 
583a8de75f0Sjeremylt   @return An error code: 0 - success, otherwise - failure
584a8de75f0Sjeremylt 
5857a982d89SJeremy L. Thompson   @ref User
586a8de75f0Sjeremylt **/
587d1d35e2fSjeremylt int CeedBasisCreateH1(Ceed ceed, CeedElemTopology topo, CeedInt num_comp,
588d1d35e2fSjeremylt                       CeedInt num_nodes, CeedInt num_qpts, const CeedScalar *interp,
589d1d35e2fSjeremylt                       const CeedScalar *grad, const CeedScalar *q_ref,
590d1d35e2fSjeremylt                       const CeedScalar *q_weight, CeedBasis *basis) {
591a8de75f0Sjeremylt   int ierr;
592d1d35e2fSjeremylt   CeedInt P = num_nodes, Q = num_qpts, dim = 0;
593a8de75f0Sjeremylt 
5945fe0d4faSjeremylt   if (!ceed->BasisCreateH1) {
5955fe0d4faSjeremylt     Ceed delegate;
596aefd8378Sjeremylt     ierr = CeedGetObjectDelegate(ceed, &delegate, "Basis"); CeedChk(ierr);
5975fe0d4faSjeremylt 
5985fe0d4faSjeremylt     if (!delegate)
599c042f62fSJeremy L Thompson       // LCOV_EXCL_START
600e15f9bd0SJeremy L Thompson       return CeedError(ceed, CEED_ERROR_UNSUPPORTED,
601e15f9bd0SJeremy L Thompson                        "Backend does not support BasisCreateH1");
602c042f62fSJeremy L Thompson     // LCOV_EXCL_STOP
6035fe0d4faSjeremylt 
604d1d35e2fSjeremylt     ierr = CeedBasisCreateH1(delegate, topo, num_comp, num_nodes,
605d1d35e2fSjeremylt                              num_qpts, interp, grad, q_ref,
606d1d35e2fSjeremylt                              q_weight, basis); CeedChk(ierr);
607e15f9bd0SJeremy L Thompson     return CEED_ERROR_SUCCESS;
6085fe0d4faSjeremylt   }
6095fe0d4faSjeremylt 
610a8de75f0Sjeremylt   ierr = CeedCalloc(1,basis); CeedChk(ierr);
611a8de75f0Sjeremylt 
612a8de75f0Sjeremylt   ierr = CeedBasisGetTopologyDimension(topo, &dim); CeedChk(ierr);
613a8de75f0Sjeremylt 
614a8de75f0Sjeremylt   (*basis)->ceed = ceed;
615*34359f16Sjeremylt   ierr = CeedIncrementRefCounter(ceed); CeedChk(ierr);
616d1d35e2fSjeremylt   (*basis)->ref_count = 1;
617d1d35e2fSjeremylt   (*basis)->tensor_basis = 0;
618a8de75f0Sjeremylt   (*basis)->dim = dim;
619d99fa3c5SJeremy L Thompson   (*basis)->topo = topo;
620d1d35e2fSjeremylt   (*basis)->num_comp = num_comp;
621a8de75f0Sjeremylt   (*basis)->P = P;
622a8de75f0Sjeremylt   (*basis)->Q = Q;
623d1d35e2fSjeremylt   ierr = CeedMalloc(Q*dim,&(*basis)->q_ref_1d); CeedChk(ierr);
624d1d35e2fSjeremylt   ierr = CeedMalloc(Q,&(*basis)->q_weight_1d); CeedChk(ierr);
625d1d35e2fSjeremylt   memcpy((*basis)->q_ref_1d, q_ref, Q*dim*sizeof(q_ref[0]));
626d1d35e2fSjeremylt   memcpy((*basis)->q_weight_1d, q_weight, Q*sizeof(q_weight[0]));
62700f91b2bSjeremylt   ierr = CeedMalloc(Q*P, &(*basis)->interp); CeedChk(ierr);
62800f91b2bSjeremylt   ierr = CeedMalloc(dim*Q*P, &(*basis)->grad); CeedChk(ierr);
62900f91b2bSjeremylt   memcpy((*basis)->interp, interp, Q*P*sizeof(interp[0]));
63000f91b2bSjeremylt   memcpy((*basis)->grad, grad, dim*Q*P*sizeof(grad[0]));
631d1d35e2fSjeremylt   ierr = ceed->BasisCreateH1(topo, dim, P, Q, interp, grad, q_ref,
632d1d35e2fSjeremylt                              q_weight, *basis); CeedChk(ierr);
633e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
634a8de75f0Sjeremylt }
635a8de75f0Sjeremylt 
636a8de75f0Sjeremylt /**
6377a982d89SJeremy L. Thompson   @brief View a CeedBasis
6387a982d89SJeremy L. Thompson 
6397a982d89SJeremy L. Thompson   @param basis   CeedBasis to view
6407a982d89SJeremy L. Thompson   @param stream  Stream to view to, e.g., stdout
6417a982d89SJeremy L. Thompson 
6427a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
6437a982d89SJeremy L. Thompson 
6447a982d89SJeremy L. Thompson   @ref User
6457a982d89SJeremy L. Thompson **/
6467a982d89SJeremy L. Thompson int CeedBasisView(CeedBasis basis, FILE *stream) {
6477a982d89SJeremy L. Thompson   int ierr;
6487a982d89SJeremy L. Thompson 
649d1d35e2fSjeremylt   if (basis->tensor_basis) {
650d1d35e2fSjeremylt     fprintf(stream, "CeedBasis: dim=%d P=%d Q=%d\n", basis->dim, basis->P_1d,
651d1d35e2fSjeremylt             basis->Q_1d);
652d1d35e2fSjeremylt     ierr = CeedScalarView("qref1d", "\t% 12.8f", 1, basis->Q_1d, basis->q_ref_1d,
6537a982d89SJeremy L. Thompson                           stream); CeedChk(ierr);
654d1d35e2fSjeremylt     ierr = CeedScalarView("qweight1d", "\t% 12.8f", 1, basis->Q_1d,
655d1d35e2fSjeremylt                           basis->q_weight_1d, stream); CeedChk(ierr);
656d1d35e2fSjeremylt     ierr = CeedScalarView("interp1d", "\t% 12.8f", basis->Q_1d, basis->P_1d,
657d1d35e2fSjeremylt                           basis->interp_1d, stream); CeedChk(ierr);
658d1d35e2fSjeremylt     ierr = CeedScalarView("grad1d", "\t% 12.8f", basis->Q_1d, basis->P_1d,
659d1d35e2fSjeremylt                           basis->grad_1d, stream); CeedChk(ierr);
6607a982d89SJeremy L. Thompson   } else {
6617a982d89SJeremy L. Thompson     fprintf(stream, "CeedBasis: dim=%d P=%d Q=%d\n", basis->dim, basis->P,
6627a982d89SJeremy L. Thompson             basis->Q);
6637a982d89SJeremy L. Thompson     ierr = CeedScalarView("qref", "\t% 12.8f", 1, basis->Q*basis->dim,
664d1d35e2fSjeremylt                           basis->q_ref_1d,
6657a982d89SJeremy L. Thompson                           stream); CeedChk(ierr);
666d1d35e2fSjeremylt     ierr = CeedScalarView("qweight", "\t% 12.8f", 1, basis->Q, basis->q_weight_1d,
6677a982d89SJeremy L. Thompson                           stream); CeedChk(ierr);
6687a982d89SJeremy L. Thompson     ierr = CeedScalarView("interp", "\t% 12.8f", basis->Q, basis->P,
6697a982d89SJeremy L. Thompson                           basis->interp, stream); CeedChk(ierr);
6707a982d89SJeremy L. Thompson     ierr = CeedScalarView("grad", "\t% 12.8f", basis->dim*basis->Q, basis->P,
6717a982d89SJeremy L. Thompson                           basis->grad, stream); CeedChk(ierr);
6727a982d89SJeremy L. Thompson   }
673e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
6747a982d89SJeremy L. Thompson }
6757a982d89SJeremy L. Thompson 
6767a982d89SJeremy L. Thompson /**
6777a982d89SJeremy L. Thompson   @brief Apply basis evaluation from nodes to quadrature points or vice versa
6787a982d89SJeremy L. Thompson 
6797a982d89SJeremy L. Thompson   @param basis     CeedBasis to evaluate
680d1d35e2fSjeremylt   @param num_elem  The number of elements to apply the basis evaluation to;
6817a982d89SJeremy L. Thompson                      the backend will specify the ordering in
6824cc79fe7SJed Brown                      CeedElemRestrictionCreateBlocked()
683d1d35e2fSjeremylt   @param t_mode    \ref CEED_NOTRANSPOSE to evaluate from nodes to quadrature
6847a982d89SJeremy L. Thompson                      points, \ref CEED_TRANSPOSE to apply the transpose, mapping
6857a982d89SJeremy L. Thompson                      from quadrature points to nodes
686d1d35e2fSjeremylt   @param eval_mode \ref CEED_EVAL_NONE to use values directly,
6877a982d89SJeremy L. Thompson                      \ref CEED_EVAL_INTERP to use interpolated values,
6887a982d89SJeremy L. Thompson                      \ref CEED_EVAL_GRAD to use gradients,
6897a982d89SJeremy L. Thompson                      \ref CEED_EVAL_WEIGHT to use quadrature weights.
6907a982d89SJeremy L. Thompson   @param[in] u     Input CeedVector
6917a982d89SJeremy L. Thompson   @param[out] v    Output CeedVector
6927a982d89SJeremy L. Thompson 
6937a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
6947a982d89SJeremy L. Thompson 
6957a982d89SJeremy L. Thompson   @ref User
6967a982d89SJeremy L. Thompson **/
697d1d35e2fSjeremylt int CeedBasisApply(CeedBasis basis, CeedInt num_elem, CeedTransposeMode t_mode,
698d1d35e2fSjeremylt                    CeedEvalMode eval_mode, CeedVector u, CeedVector v) {
6997a982d89SJeremy L. Thompson   int ierr;
700d1d35e2fSjeremylt   CeedInt u_length = 0, v_length, dim, num_comp, num_nodes, num_qpts;
701e15f9bd0SJeremy L Thompson   ierr = CeedBasisGetDimension(basis, &dim); CeedChk(ierr);
702d1d35e2fSjeremylt   ierr = CeedBasisGetNumComponents(basis, &num_comp); CeedChk(ierr);
703d1d35e2fSjeremylt   ierr = CeedBasisGetNumNodes(basis, &num_nodes); CeedChk(ierr);
704d1d35e2fSjeremylt   ierr = CeedBasisGetNumQuadraturePoints(basis, &num_qpts); CeedChk(ierr);
705d1d35e2fSjeremylt   ierr = CeedVectorGetLength(v, &v_length); CeedChk(ierr);
7067a982d89SJeremy L. Thompson   if (u) {
707d1d35e2fSjeremylt     ierr = CeedVectorGetLength(u, &u_length); CeedChk(ierr);
7087a982d89SJeremy L. Thompson   }
7097a982d89SJeremy L. Thompson 
710e15f9bd0SJeremy L Thompson   if (!basis->Apply)
711e15f9bd0SJeremy L Thompson     // LCOV_EXCL_START
712e15f9bd0SJeremy L Thompson     return CeedError(basis->ceed, CEED_ERROR_UNSUPPORTED,
713e15f9bd0SJeremy L Thompson                      "Backend does not support BasisApply");
714e15f9bd0SJeremy L Thompson   // LCOV_EXCL_STOP
715e15f9bd0SJeremy L Thompson 
716e15f9bd0SJeremy L Thompson   // Check compatibility of topological and geometrical dimensions
717d1d35e2fSjeremylt   if ((t_mode == CEED_TRANSPOSE && (v_length%num_nodes != 0 ||
718d1d35e2fSjeremylt                                     u_length%num_qpts != 0)) ||
719d1d35e2fSjeremylt       (t_mode == CEED_NOTRANSPOSE && (u_length%num_nodes != 0 ||
720d1d35e2fSjeremylt                                       v_length%num_qpts != 0)))
721e15f9bd0SJeremy L Thompson     return CeedError(basis->ceed, CEED_ERROR_DIMENSION,
722e15f9bd0SJeremy L Thompson                      "Length of input/output vectors "
7237a982d89SJeremy L. Thompson                      "incompatible with basis dimensions");
7247a982d89SJeremy L. Thompson 
725e15f9bd0SJeremy L Thompson   // Check vector lengths to prevent out of bounds issues
726d1d35e2fSjeremylt   bool bad_dims = false;
727d1d35e2fSjeremylt   switch (eval_mode) {
728e15f9bd0SJeremy L Thompson   case CEED_EVAL_NONE:
729d1d35e2fSjeremylt   case CEED_EVAL_INTERP: bad_dims =
730d1d35e2fSjeremylt       ((t_mode == CEED_TRANSPOSE && (u_length < num_elem*num_comp*num_qpts ||
731d1d35e2fSjeremylt                                      v_length < num_elem*num_comp*num_nodes)) ||
732d1d35e2fSjeremylt        (t_mode == CEED_NOTRANSPOSE && (v_length < num_elem*num_qpts*num_comp ||
733d1d35e2fSjeremylt                                        u_length < num_elem*num_comp*num_nodes)));
734e15f9bd0SJeremy L Thompson     break;
735d1d35e2fSjeremylt   case CEED_EVAL_GRAD: bad_dims =
736d1d35e2fSjeremylt       ((t_mode == CEED_TRANSPOSE && (u_length < num_elem*num_comp*num_qpts*dim ||
737d1d35e2fSjeremylt                                      v_length < num_elem*num_comp*num_nodes)) ||
738d1d35e2fSjeremylt        (t_mode == CEED_NOTRANSPOSE && (v_length < num_elem*num_qpts*num_comp*dim ||
739d1d35e2fSjeremylt                                        u_length < num_elem*num_comp*num_nodes)));
740e15f9bd0SJeremy L Thompson     break;
741e15f9bd0SJeremy L Thompson   case CEED_EVAL_WEIGHT:
742d1d35e2fSjeremylt     bad_dims = v_length < num_elem*num_qpts;
743e15f9bd0SJeremy L Thompson     break;
744e15f9bd0SJeremy L Thompson   // LCOV_EXCL_START
745d1d35e2fSjeremylt   case CEED_EVAL_DIV: bad_dims =
746d1d35e2fSjeremylt       ((t_mode == CEED_TRANSPOSE && (u_length < num_elem*num_comp*num_qpts ||
747d1d35e2fSjeremylt                                      v_length < num_elem*num_comp*num_nodes)) ||
748d1d35e2fSjeremylt        (t_mode == CEED_NOTRANSPOSE && (v_length < num_elem*num_qpts*num_comp ||
749d1d35e2fSjeremylt                                        u_length < num_elem*num_comp*num_nodes)));
750e15f9bd0SJeremy L Thompson     break;
751d1d35e2fSjeremylt   case CEED_EVAL_CURL: bad_dims =
752d1d35e2fSjeremylt       ((t_mode == CEED_TRANSPOSE && (u_length < num_elem*num_comp*num_qpts ||
753d1d35e2fSjeremylt                                      v_length < num_elem*num_comp*num_nodes)) ||
754d1d35e2fSjeremylt        (t_mode == CEED_NOTRANSPOSE && (v_length < num_elem*num_qpts*num_comp ||
755d1d35e2fSjeremylt                                        u_length < num_elem*num_comp*num_nodes)));
756e15f9bd0SJeremy L Thompson     break;
757e15f9bd0SJeremy L Thompson     // LCOV_EXCL_STOP
758e15f9bd0SJeremy L Thompson   }
759d1d35e2fSjeremylt   if (bad_dims)
760e15f9bd0SJeremy L Thompson     // LCOV_EXCL_START
761e15f9bd0SJeremy L Thompson     return CeedError(basis->ceed, CEED_ERROR_DIMENSION,
762d1d35e2fSjeremylt                      "Input/output vectors too short for basis and evaluation mode");
763e15f9bd0SJeremy L Thompson   // LCOV_EXCL_STOP
764e15f9bd0SJeremy L Thompson 
765d1d35e2fSjeremylt   ierr = basis->Apply(basis, num_elem, t_mode, eval_mode, u, v); CeedChk(ierr);
766e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
7677a982d89SJeremy L. Thompson }
7687a982d89SJeremy L. Thompson 
7697a982d89SJeremy L. Thompson /**
7709d007619Sjeremylt   @brief Get dimension for given CeedBasis
7719d007619Sjeremylt 
7729d007619Sjeremylt   @param basis     CeedBasis
7739d007619Sjeremylt   @param[out] dim  Variable to store dimension of basis
7749d007619Sjeremylt 
7759d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
7769d007619Sjeremylt 
7779d007619Sjeremylt   @ref Backend
7789d007619Sjeremylt **/
7799d007619Sjeremylt int CeedBasisGetDimension(CeedBasis basis, CeedInt *dim) {
7809d007619Sjeremylt   *dim = basis->dim;
781e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
7829d007619Sjeremylt }
7839d007619Sjeremylt 
7849d007619Sjeremylt /**
785d99fa3c5SJeremy L Thompson   @brief Get topology for given CeedBasis
786d99fa3c5SJeremy L Thompson 
787d99fa3c5SJeremy L Thompson   @param basis      CeedBasis
788d99fa3c5SJeremy L Thompson   @param[out] topo  Variable to store topology of basis
789d99fa3c5SJeremy L Thompson 
790d99fa3c5SJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
791d99fa3c5SJeremy L Thompson 
792d99fa3c5SJeremy L Thompson   @ref Backend
793d99fa3c5SJeremy L Thompson **/
794d99fa3c5SJeremy L Thompson int CeedBasisGetTopology(CeedBasis basis, CeedElemTopology *topo) {
795d99fa3c5SJeremy L Thompson   *topo = basis->topo;
796e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
797d99fa3c5SJeremy L Thompson }
798d99fa3c5SJeremy L Thompson 
799d99fa3c5SJeremy L Thompson /**
8009d007619Sjeremylt   @brief Get number of components for given CeedBasis
8019d007619Sjeremylt 
8029d007619Sjeremylt   @param basis          CeedBasis
803d1d35e2fSjeremylt   @param[out] num_comp  Variable to store number of components of basis
8049d007619Sjeremylt 
8059d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
8069d007619Sjeremylt 
8079d007619Sjeremylt   @ref Backend
8089d007619Sjeremylt **/
809d1d35e2fSjeremylt int CeedBasisGetNumComponents(CeedBasis basis, CeedInt *num_comp) {
810d1d35e2fSjeremylt   *num_comp = basis->num_comp;
811e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
8129d007619Sjeremylt }
8139d007619Sjeremylt 
8149d007619Sjeremylt /**
8159d007619Sjeremylt   @brief Get total number of nodes (in dim dimensions) of a CeedBasis
8169d007619Sjeremylt 
8179d007619Sjeremylt   @param basis   CeedBasis
8189d007619Sjeremylt   @param[out] P  Variable to store number of nodes
8199d007619Sjeremylt 
8209d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
8219d007619Sjeremylt 
8229d007619Sjeremylt   @ref Utility
8239d007619Sjeremylt **/
8249d007619Sjeremylt int CeedBasisGetNumNodes(CeedBasis basis, CeedInt *P) {
8259d007619Sjeremylt   *P = basis->P;
826e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
8279d007619Sjeremylt }
8289d007619Sjeremylt 
8299d007619Sjeremylt /**
8309d007619Sjeremylt   @brief Get total number of nodes (in 1 dimension) of a CeedBasis
8319d007619Sjeremylt 
8329d007619Sjeremylt   @param basis     CeedBasis
833d1d35e2fSjeremylt   @param[out] P_1d  Variable to store number of nodes
8349d007619Sjeremylt 
8359d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
8369d007619Sjeremylt 
8379d007619Sjeremylt   @ref Backend
8389d007619Sjeremylt **/
839d1d35e2fSjeremylt int CeedBasisGetNumNodes1D(CeedBasis basis, CeedInt *P_1d) {
840d1d35e2fSjeremylt   if (!basis->tensor_basis)
8419d007619Sjeremylt     // LCOV_EXCL_START
842e15f9bd0SJeremy L Thompson     return CeedError(basis->ceed, CEED_ERROR_MINOR,
843d1d35e2fSjeremylt                      "Cannot supply P_1d for non-tensor basis");
8449d007619Sjeremylt   // LCOV_EXCL_STOP
8459d007619Sjeremylt 
846d1d35e2fSjeremylt   *P_1d = basis->P_1d;
847e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
8489d007619Sjeremylt }
8499d007619Sjeremylt 
8509d007619Sjeremylt /**
8519d007619Sjeremylt   @brief Get total number of quadrature points (in dim dimensions) of a CeedBasis
8529d007619Sjeremylt 
8539d007619Sjeremylt   @param basis   CeedBasis
8549d007619Sjeremylt   @param[out] Q  Variable to store number of quadrature points
8559d007619Sjeremylt 
8569d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
8579d007619Sjeremylt 
8589d007619Sjeremylt   @ref Utility
8599d007619Sjeremylt **/
8609d007619Sjeremylt int CeedBasisGetNumQuadraturePoints(CeedBasis basis, CeedInt *Q) {
8619d007619Sjeremylt   *Q = basis->Q;
862e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
8639d007619Sjeremylt }
8649d007619Sjeremylt 
8659d007619Sjeremylt /**
8669d007619Sjeremylt   @brief Get total number of quadrature points (in 1 dimension) of a CeedBasis
8679d007619Sjeremylt 
8689d007619Sjeremylt   @param basis     CeedBasis
869d1d35e2fSjeremylt   @param[out] Q_1d  Variable to store number of quadrature points
8709d007619Sjeremylt 
8719d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
8729d007619Sjeremylt 
8739d007619Sjeremylt   @ref Backend
8749d007619Sjeremylt **/
875d1d35e2fSjeremylt int CeedBasisGetNumQuadraturePoints1D(CeedBasis basis, CeedInt *Q_1d) {
876d1d35e2fSjeremylt   if (!basis->tensor_basis)
8779d007619Sjeremylt     // LCOV_EXCL_START
878e15f9bd0SJeremy L Thompson     return CeedError(basis->ceed, CEED_ERROR_MINOR,
879d1d35e2fSjeremylt                      "Cannot supply Q_1d for non-tensor basis");
8809d007619Sjeremylt   // LCOV_EXCL_STOP
8819d007619Sjeremylt 
882d1d35e2fSjeremylt   *Q_1d = basis->Q_1d;
883e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
8849d007619Sjeremylt }
8859d007619Sjeremylt 
8869d007619Sjeremylt /**
8879d007619Sjeremylt   @brief Get reference coordinates of quadrature points (in dim dimensions)
8889d007619Sjeremylt          of a CeedBasis
8899d007619Sjeremylt 
8909d007619Sjeremylt   @param basis       CeedBasis
891d1d35e2fSjeremylt   @param[out] q_ref  Variable to store reference coordinates of quadrature points
8929d007619Sjeremylt 
8939d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
8949d007619Sjeremylt 
8959d007619Sjeremylt   @ref Backend
8969d007619Sjeremylt **/
897d1d35e2fSjeremylt int CeedBasisGetQRef(CeedBasis basis, const CeedScalar **q_ref) {
898d1d35e2fSjeremylt   *q_ref = basis->q_ref_1d;
899e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
9009d007619Sjeremylt }
9019d007619Sjeremylt 
9029d007619Sjeremylt /**
9039d007619Sjeremylt   @brief Get quadrature weights of quadrature points (in dim dimensions)
9049d007619Sjeremylt          of a CeedBasis
9059d007619Sjeremylt 
9069d007619Sjeremylt   @param basis         CeedBasis
907d1d35e2fSjeremylt   @param[out] q_weight  Variable to store quadrature weights
9089d007619Sjeremylt 
9099d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
9109d007619Sjeremylt 
9119d007619Sjeremylt   @ref Backend
9129d007619Sjeremylt **/
913d1d35e2fSjeremylt int CeedBasisGetQWeights(CeedBasis basis, const CeedScalar **q_weight) {
914d1d35e2fSjeremylt   *q_weight = basis->q_weight_1d;
915e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
9169d007619Sjeremylt }
9179d007619Sjeremylt 
9189d007619Sjeremylt /**
9199d007619Sjeremylt   @brief Get interpolation matrix of a CeedBasis
9209d007619Sjeremylt 
9219d007619Sjeremylt   @param basis        CeedBasis
9229d007619Sjeremylt   @param[out] interp  Variable to store interpolation matrix
9239d007619Sjeremylt 
9249d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
9259d007619Sjeremylt 
9269d007619Sjeremylt   @ref Backend
9279d007619Sjeremylt **/
9286c58de82SJeremy L Thompson int CeedBasisGetInterp(CeedBasis basis, const CeedScalar **interp) {
929d1d35e2fSjeremylt   if (!basis->interp && basis->tensor_basis) {
9309d007619Sjeremylt     // Allocate
9319d007619Sjeremylt     int ierr;
9329d007619Sjeremylt     ierr = CeedMalloc(basis->Q*basis->P, &basis->interp); CeedChk(ierr);
9339d007619Sjeremylt 
9349d007619Sjeremylt     // Initialize
9359d007619Sjeremylt     for (CeedInt i=0; i<basis->Q*basis->P; i++)
9369d007619Sjeremylt       basis->interp[i] = 1.0;
9379d007619Sjeremylt 
9389d007619Sjeremylt     // Calculate
9399d007619Sjeremylt     for (CeedInt d=0; d<basis->dim; d++)
9409d007619Sjeremylt       for (CeedInt qpt=0; qpt<basis->Q; qpt++)
9419d007619Sjeremylt         for (CeedInt node=0; node<basis->P; node++) {
942d1d35e2fSjeremylt           CeedInt p = (node / CeedIntPow(basis->P_1d, d)) % basis->P_1d;
943d1d35e2fSjeremylt           CeedInt q = (qpt / CeedIntPow(basis->Q_1d, d)) % basis->Q_1d;
944d1d35e2fSjeremylt           basis->interp[qpt*(basis->P)+node] *= basis->interp_1d[q*basis->P_1d+p];
9459d007619Sjeremylt         }
9469d007619Sjeremylt   }
9479d007619Sjeremylt   *interp = basis->interp;
948e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
9499d007619Sjeremylt }
9509d007619Sjeremylt 
9519d007619Sjeremylt /**
9529d007619Sjeremylt   @brief Get 1D interpolation matrix of a tensor product CeedBasis
9539d007619Sjeremylt 
9549d007619Sjeremylt   @param basis           CeedBasis
955d1d35e2fSjeremylt   @param[out] interp_1d  Variable to store interpolation matrix
9569d007619Sjeremylt 
9579d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
9589d007619Sjeremylt 
9599d007619Sjeremylt   @ref Backend
9609d007619Sjeremylt **/
961d1d35e2fSjeremylt int CeedBasisGetInterp1D(CeedBasis basis, const CeedScalar **interp_1d) {
962d1d35e2fSjeremylt   if (!basis->tensor_basis)
9639d007619Sjeremylt     // LCOV_EXCL_START
964e15f9bd0SJeremy L Thompson     return CeedError(basis->ceed, CEED_ERROR_MINOR,
965e15f9bd0SJeremy L Thompson                      "CeedBasis is not a tensor product basis.");
9669d007619Sjeremylt   // LCOV_EXCL_STOP
9679d007619Sjeremylt 
968d1d35e2fSjeremylt   *interp_1d = basis->interp_1d;
969e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
9709d007619Sjeremylt }
9719d007619Sjeremylt 
9729d007619Sjeremylt /**
9739d007619Sjeremylt   @brief Get gradient matrix of a CeedBasis
9749d007619Sjeremylt 
9759d007619Sjeremylt   @param basis      CeedBasis
9769d007619Sjeremylt   @param[out] grad  Variable to store gradient matrix
9779d007619Sjeremylt 
9789d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
9799d007619Sjeremylt 
9809d007619Sjeremylt   @ref Backend
9819d007619Sjeremylt **/
9826c58de82SJeremy L Thompson int CeedBasisGetGrad(CeedBasis basis, const CeedScalar **grad) {
983d1d35e2fSjeremylt   if (!basis->grad && basis->tensor_basis) {
9849d007619Sjeremylt     // Allocate
9859d007619Sjeremylt     int ierr;
9869d007619Sjeremylt     ierr = CeedMalloc(basis->dim*basis->Q*basis->P, &basis->grad);
9879d007619Sjeremylt     CeedChk(ierr);
9889d007619Sjeremylt 
9899d007619Sjeremylt     // Initialize
9909d007619Sjeremylt     for (CeedInt i=0; i<basis->dim*basis->Q*basis->P; i++)
9919d007619Sjeremylt       basis->grad[i] = 1.0;
9929d007619Sjeremylt 
9939d007619Sjeremylt     // Calculate
9949d007619Sjeremylt     for (CeedInt d=0; d<basis->dim; d++)
9959d007619Sjeremylt       for (CeedInt i=0; i<basis->dim; i++)
9969d007619Sjeremylt         for (CeedInt qpt=0; qpt<basis->Q; qpt++)
9979d007619Sjeremylt           for (CeedInt node=0; node<basis->P; node++) {
998d1d35e2fSjeremylt             CeedInt p = (node / CeedIntPow(basis->P_1d, d)) % basis->P_1d;
999d1d35e2fSjeremylt             CeedInt q = (qpt / CeedIntPow(basis->Q_1d, d)) % basis->Q_1d;
10009d007619Sjeremylt             if (i == d)
10019d007619Sjeremylt               basis->grad[(i*basis->Q+qpt)*(basis->P)+node] *=
1002d1d35e2fSjeremylt                 basis->grad_1d[q*basis->P_1d+p];
10039d007619Sjeremylt             else
10049d007619Sjeremylt               basis->grad[(i*basis->Q+qpt)*(basis->P)+node] *=
1005d1d35e2fSjeremylt                 basis->interp_1d[q*basis->P_1d+p];
10069d007619Sjeremylt           }
10079d007619Sjeremylt   }
10089d007619Sjeremylt   *grad = basis->grad;
1009e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
10109d007619Sjeremylt }
10119d007619Sjeremylt 
10129d007619Sjeremylt /**
10139d007619Sjeremylt   @brief Get 1D gradient matrix of a tensor product CeedBasis
10149d007619Sjeremylt 
10159d007619Sjeremylt   @param basis         CeedBasis
1016d1d35e2fSjeremylt   @param[out] grad_1d  Variable to store gradient matrix
10179d007619Sjeremylt 
10189d007619Sjeremylt   @return An error code: 0 - success, otherwise - failure
10199d007619Sjeremylt 
10209d007619Sjeremylt   @ref Backend
10219d007619Sjeremylt **/
1022d1d35e2fSjeremylt int CeedBasisGetGrad1D(CeedBasis basis, const CeedScalar **grad_1d) {
1023d1d35e2fSjeremylt   if (!basis->tensor_basis)
10249d007619Sjeremylt     // LCOV_EXCL_START
1025e15f9bd0SJeremy L Thompson     return CeedError(basis->ceed, CEED_ERROR_MINOR,
1026e15f9bd0SJeremy L Thompson                      "CeedBasis is not a tensor product basis.");
10279d007619Sjeremylt   // LCOV_EXCL_STOP
10289d007619Sjeremylt 
1029d1d35e2fSjeremylt   *grad_1d = basis->grad_1d;
1030e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
10319d007619Sjeremylt }
10329d007619Sjeremylt 
10339d007619Sjeremylt /**
10347a982d89SJeremy L. Thompson   @brief Destroy a CeedBasis
10357a982d89SJeremy L. Thompson 
10367a982d89SJeremy L. Thompson   @param basis CeedBasis to destroy
10377a982d89SJeremy L. Thompson 
10387a982d89SJeremy L. Thompson   @return An error code: 0 - success, otherwise - failure
10397a982d89SJeremy L. Thompson 
10407a982d89SJeremy L. Thompson   @ref User
10417a982d89SJeremy L. Thompson **/
10427a982d89SJeremy L. Thompson int CeedBasisDestroy(CeedBasis *basis) {
10437a982d89SJeremy L. Thompson   int ierr;
10447a982d89SJeremy L. Thompson 
1045d1d35e2fSjeremylt   if (!*basis || --(*basis)->ref_count > 0) return CEED_ERROR_SUCCESS;
10467a982d89SJeremy L. Thompson   if ((*basis)->Destroy) {
10477a982d89SJeremy L. Thompson     ierr = (*basis)->Destroy(*basis); CeedChk(ierr);
10487a982d89SJeremy L. Thompson   }
1049*34359f16Sjeremylt   if ((*basis)->contract) {
1050*34359f16Sjeremylt     ierr = CeedTensorContractDestroy(&(*basis)->contract); CeedChk(ierr);
1051*34359f16Sjeremylt   }
10527a982d89SJeremy L. Thompson   ierr = CeedFree(&(*basis)->interp); CeedChk(ierr);
1053d1d35e2fSjeremylt   ierr = CeedFree(&(*basis)->interp_1d); CeedChk(ierr);
10547a982d89SJeremy L. Thompson   ierr = CeedFree(&(*basis)->grad); CeedChk(ierr);
1055d1d35e2fSjeremylt   ierr = CeedFree(&(*basis)->grad_1d); CeedChk(ierr);
1056d1d35e2fSjeremylt   ierr = CeedFree(&(*basis)->q_ref_1d); CeedChk(ierr);
1057d1d35e2fSjeremylt   ierr = CeedFree(&(*basis)->q_weight_1d); CeedChk(ierr);
10587a982d89SJeremy L. Thompson   ierr = CeedDestroy(&(*basis)->ceed); CeedChk(ierr);
10597a982d89SJeremy L. Thompson   ierr = CeedFree(basis); CeedChk(ierr);
1060e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
10617a982d89SJeremy L. Thompson }
10627a982d89SJeremy L. Thompson 
10637a982d89SJeremy L. Thompson /**
1064b11c1e72Sjeremylt   @brief Construct a Gauss-Legendre quadrature
1065b11c1e72Sjeremylt 
1066b11c1e72Sjeremylt   @param Q               Number of quadrature points (integrates polynomials of
1067b11c1e72Sjeremylt                            degree 2*Q-1 exactly)
1068d1d35e2fSjeremylt   @param[out] q_ref_1d     Array of length Q to hold the abscissa on [-1, 1]
1069d1d35e2fSjeremylt   @param[out] q_weight_1d  Array of length Q to hold the weights
1070b11c1e72Sjeremylt 
1071b11c1e72Sjeremylt   @return An error code: 0 - success, otherwise - failure
1072dfdf5a53Sjeremylt 
1073dfdf5a53Sjeremylt   @ref Utility
1074b11c1e72Sjeremylt **/
1075d1d35e2fSjeremylt int CeedGaussQuadrature(CeedInt Q, CeedScalar *q_ref_1d,
1076d1d35e2fSjeremylt                         CeedScalar *q_weight_1d) {
1077d7b241e6Sjeremylt   // Allocate
1078d7b241e6Sjeremylt   CeedScalar P0, P1, P2, dP2, xi, wi, PI = 4.0*atan(1.0);
1079d1d35e2fSjeremylt   // Build q_ref_1d, q_weight_1d
1080d7b241e6Sjeremylt   for (int i = 0; i <= Q/2; i++) {
1081d7b241e6Sjeremylt     // Guess
1082d7b241e6Sjeremylt     xi = cos(PI*(CeedScalar)(2*i+1)/((CeedScalar)(2*Q)));
1083d7b241e6Sjeremylt     // Pn(xi)
1084d7b241e6Sjeremylt     P0 = 1.0;
1085d7b241e6Sjeremylt     P1 = xi;
1086d7b241e6Sjeremylt     P2 = 0.0;
1087d7b241e6Sjeremylt     for (int j = 2; j <= Q; j++) {
1088d7b241e6Sjeremylt       P2 = (((CeedScalar)(2*j-1))*xi*P1-((CeedScalar)(j-1))*P0)/((CeedScalar)(j));
1089d7b241e6Sjeremylt       P0 = P1;
1090d7b241e6Sjeremylt       P1 = P2;
1091d7b241e6Sjeremylt     }
1092d7b241e6Sjeremylt     // First Newton Step
1093d7b241e6Sjeremylt     dP2 = (xi*P2 - P0)*(CeedScalar)Q/(xi*xi-1.0);
1094d7b241e6Sjeremylt     xi = xi-P2/dP2;
1095d7b241e6Sjeremylt     // Newton to convergence
10960e4d4210Sjeremylt     for (int k=0; k<100 && fabs(P2)>10*CEED_EPSILON; k++) {
1097d7b241e6Sjeremylt       P0 = 1.0;
1098d7b241e6Sjeremylt       P1 = xi;
1099d7b241e6Sjeremylt       for (int j = 2; j <= Q; j++) {
1100d7b241e6Sjeremylt         P2 = (((CeedScalar)(2*j-1))*xi*P1-((CeedScalar)(j-1))*P0)/((CeedScalar)(j));
1101d7b241e6Sjeremylt         P0 = P1;
1102d7b241e6Sjeremylt         P1 = P2;
1103d7b241e6Sjeremylt       }
1104d7b241e6Sjeremylt       dP2 = (xi*P2 - P0)*(CeedScalar)Q/(xi*xi-1.0);
1105d7b241e6Sjeremylt       xi = xi-P2/dP2;
1106d7b241e6Sjeremylt     }
1107d7b241e6Sjeremylt     // Save xi, wi
1108d7b241e6Sjeremylt     wi = 2.0/((1.0-xi*xi)*dP2*dP2);
1109d1d35e2fSjeremylt     q_weight_1d[i] = wi;
1110d1d35e2fSjeremylt     q_weight_1d[Q-1-i] = wi;
1111d1d35e2fSjeremylt     q_ref_1d[i] = -xi;
1112d1d35e2fSjeremylt     q_ref_1d[Q-1-i]= xi;
1113d7b241e6Sjeremylt   }
1114e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
1115d7b241e6Sjeremylt }
1116d7b241e6Sjeremylt 
1117b11c1e72Sjeremylt /**
1118b11c1e72Sjeremylt   @brief Construct a Gauss-Legendre-Lobatto quadrature
1119b11c1e72Sjeremylt 
1120b11c1e72Sjeremylt   @param Q               Number of quadrature points (integrates polynomials of
1121b11c1e72Sjeremylt                            degree 2*Q-3 exactly)
1122d1d35e2fSjeremylt   @param[out] q_ref_1d     Array of length Q to hold the abscissa on [-1, 1]
1123d1d35e2fSjeremylt   @param[out] q_weight_1d  Array of length Q to hold the weights
1124b11c1e72Sjeremylt 
1125b11c1e72Sjeremylt   @return An error code: 0 - success, otherwise - failure
1126dfdf5a53Sjeremylt 
1127dfdf5a53Sjeremylt   @ref Utility
1128b11c1e72Sjeremylt **/
1129d1d35e2fSjeremylt int CeedLobattoQuadrature(CeedInt Q, CeedScalar *q_ref_1d,
1130d1d35e2fSjeremylt                           CeedScalar *q_weight_1d) {
1131d7b241e6Sjeremylt   // Allocate
1132d7b241e6Sjeremylt   CeedScalar P0, P1, P2, dP2, d2P2, xi, wi, PI = 4.0*atan(1.0);
1133d1d35e2fSjeremylt   // Build q_ref_1d, q_weight_1d
1134d7b241e6Sjeremylt   // Set endpoints
113530a100c3SJed Brown   if (Q < 2)
1136b0d62198Sjeremylt     // LCOV_EXCL_START
1137e15f9bd0SJeremy L Thompson     return CeedError(NULL, CEED_ERROR_DIMENSION,
11387ed52d01Sjeremylt                      "Cannot create Lobatto quadrature with Q=%d < 2 points", Q);
1139b0d62198Sjeremylt   // LCOV_EXCL_STOP
1140d7b241e6Sjeremylt   wi = 2.0/((CeedScalar)(Q*(Q-1)));
1141d1d35e2fSjeremylt   if (q_weight_1d) {
1142d1d35e2fSjeremylt     q_weight_1d[0] = wi;
1143d1d35e2fSjeremylt     q_weight_1d[Q-1] = wi;
1144d7b241e6Sjeremylt   }
1145d1d35e2fSjeremylt   q_ref_1d[0] = -1.0;
1146d1d35e2fSjeremylt   q_ref_1d[Q-1] = 1.0;
1147d7b241e6Sjeremylt   // Interior
1148d7b241e6Sjeremylt   for (int i = 1; i <= (Q-1)/2; i++) {
1149d7b241e6Sjeremylt     // Guess
1150d7b241e6Sjeremylt     xi = cos(PI*(CeedScalar)(i)/(CeedScalar)(Q-1));
1151d7b241e6Sjeremylt     // Pn(xi)
1152d7b241e6Sjeremylt     P0 = 1.0;
1153d7b241e6Sjeremylt     P1 = xi;
1154d7b241e6Sjeremylt     P2 = 0.0;
1155d7b241e6Sjeremylt     for (int j = 2; j < Q; j++) {
1156d7b241e6Sjeremylt       P2 = (((CeedScalar)(2*j-1))*xi*P1-((CeedScalar)(j-1))*P0)/((CeedScalar)(j));
1157d7b241e6Sjeremylt       P0 = P1;
1158d7b241e6Sjeremylt       P1 = P2;
1159d7b241e6Sjeremylt     }
1160d7b241e6Sjeremylt     // First Newton step
1161d7b241e6Sjeremylt     dP2 = (xi*P2 - P0)*(CeedScalar)Q/(xi*xi-1.0);
1162d7b241e6Sjeremylt     d2P2 = (2*xi*dP2 - (CeedScalar)(Q*(Q-1))*P2)/(1.0-xi*xi);
1163d7b241e6Sjeremylt     xi = xi-dP2/d2P2;
1164d7b241e6Sjeremylt     // Newton to convergence
11650e4d4210Sjeremylt     for (int k=0; k<100 && fabs(dP2)>10*CEED_EPSILON; k++) {
1166d7b241e6Sjeremylt       P0 = 1.0;
1167d7b241e6Sjeremylt       P1 = xi;
1168d7b241e6Sjeremylt       for (int j = 2; j < Q; j++) {
1169d7b241e6Sjeremylt         P2 = (((CeedScalar)(2*j-1))*xi*P1-((CeedScalar)(j-1))*P0)/((CeedScalar)(j));
1170d7b241e6Sjeremylt         P0 = P1;
1171d7b241e6Sjeremylt         P1 = P2;
1172d7b241e6Sjeremylt       }
1173d7b241e6Sjeremylt       dP2 = (xi*P2 - P0)*(CeedScalar)Q/(xi*xi-1.0);
1174d7b241e6Sjeremylt       d2P2 = (2*xi*dP2 - (CeedScalar)(Q*(Q-1))*P2)/(1.0-xi*xi);
1175d7b241e6Sjeremylt       xi = xi-dP2/d2P2;
1176d7b241e6Sjeremylt     }
1177d7b241e6Sjeremylt     // Save xi, wi
1178d7b241e6Sjeremylt     wi = 2.0/(((CeedScalar)(Q*(Q-1)))*P2*P2);
1179d1d35e2fSjeremylt     if (q_weight_1d) {
1180d1d35e2fSjeremylt       q_weight_1d[i] = wi;
1181d1d35e2fSjeremylt       q_weight_1d[Q-1-i] = wi;
1182d7b241e6Sjeremylt     }
1183d1d35e2fSjeremylt     q_ref_1d[i] = -xi;
1184d1d35e2fSjeremylt     q_ref_1d[Q-1-i]= xi;
1185d7b241e6Sjeremylt   }
1186e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
1187d7b241e6Sjeremylt }
1188d7b241e6Sjeremylt 
1189dfdf5a53Sjeremylt /**
119095bb1877Svaleriabarra   @brief Return QR Factorization of a matrix
1191b11c1e72Sjeremylt 
119277645d7bSjeremylt   @param ceed         A Ceed context for error handling
119352bfb9bbSJeremy L Thompson   @param[in,out] mat  Row-major matrix to be factorized in place
119452bfb9bbSJeremy L Thompson   @param[in,out] tau  Vector of length m of scaling factors
1195b11c1e72Sjeremylt   @param m            Number of rows
1196b11c1e72Sjeremylt   @param n            Number of columns
1197b11c1e72Sjeremylt 
1198b11c1e72Sjeremylt   @return An error code: 0 - success, otherwise - failure
1199dfdf5a53Sjeremylt 
1200dfdf5a53Sjeremylt   @ref Utility
1201b11c1e72Sjeremylt **/
1202a7bd39daSjeremylt int CeedQRFactorization(Ceed ceed, CeedScalar *mat, CeedScalar *tau,
1203d7b241e6Sjeremylt                         CeedInt m, CeedInt n) {
1204d7b241e6Sjeremylt   CeedScalar v[m];
1205d7b241e6Sjeremylt 
1206a7bd39daSjeremylt   // Check m >= n
1207a7bd39daSjeremylt   if (n > m)
1208c042f62fSJeremy L Thompson     // LCOV_EXCL_START
1209e15f9bd0SJeremy L Thompson     return CeedError(ceed, CEED_ERROR_UNSUPPORTED,
1210e15f9bd0SJeremy L Thompson                      "Cannot compute QR factorization with n > m");
1211c042f62fSJeremy L Thompson   // LCOV_EXCL_STOP
1212a7bd39daSjeremylt 
121352bfb9bbSJeremy L Thompson   for (CeedInt i=0; i<n; i++) {
1214d7b241e6Sjeremylt     // Calculate Householder vector, magnitude
1215d7b241e6Sjeremylt     CeedScalar sigma = 0.0;
1216d7b241e6Sjeremylt     v[i] = mat[i+n*i];
121752bfb9bbSJeremy L Thompson     for (CeedInt j=i+1; j<m; j++) {
1218d7b241e6Sjeremylt       v[j] = mat[i+n*j];
1219d7b241e6Sjeremylt       sigma += v[j] * v[j];
1220d7b241e6Sjeremylt     }
1221d7b241e6Sjeremylt     CeedScalar norm = sqrt(v[i]*v[i] + sigma); // norm of v[i:m]
1222d7b241e6Sjeremylt     CeedScalar Rii = -copysign(norm, v[i]);
1223d7b241e6Sjeremylt     v[i] -= Rii;
1224d7b241e6Sjeremylt     // norm of v[i:m] after modification above and scaling below
1225d7b241e6Sjeremylt     //   norm = sqrt(v[i]*v[i] + sigma) / v[i];
1226d7b241e6Sjeremylt     //   tau = 2 / (norm*norm)
1227d7b241e6Sjeremylt     tau[i] = 2 * v[i]*v[i] / (v[i]*v[i] + sigma);
1228fb551037Sjeremylt 
12291d102b48SJeremy L Thompson     for (CeedInt j=i+1; j<m; j++)
12301d102b48SJeremy L Thompson       v[j] /= v[i];
1231d7b241e6Sjeremylt 
1232d7b241e6Sjeremylt     // Apply Householder reflector to lower right panel
1233d7b241e6Sjeremylt     CeedHouseholderReflect(&mat[i*n+i+1], &v[i], tau[i], m-i, n-i-1, n, 1);
1234d7b241e6Sjeremylt     // Save v
1235d7b241e6Sjeremylt     mat[i+n*i] = Rii;
12361d102b48SJeremy L Thompson     for (CeedInt j=i+1; j<m; j++)
1237d7b241e6Sjeremylt       mat[i+n*j] = v[j];
1238d7b241e6Sjeremylt   }
1239e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
1240d7b241e6Sjeremylt }
1241d7b241e6Sjeremylt 
1242b11c1e72Sjeremylt /**
124352bfb9bbSJeremy L Thompson   @brief Return symmetric Schur decomposition of the symmetric matrix mat via
124452bfb9bbSJeremy L Thompson            symmetric QR factorization
124552bfb9bbSJeremy L Thompson 
124677645d7bSjeremylt   @param ceed         A Ceed context for error handling
124752bfb9bbSJeremy L Thompson   @param[in,out] mat  Row-major matrix to be factorized in place
1248460bf743SValeria Barra   @param[out] lambda  Vector of length n of eigenvalues
124952bfb9bbSJeremy L Thompson   @param n            Number of rows/columns
125052bfb9bbSJeremy L Thompson 
125152bfb9bbSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
125252bfb9bbSJeremy L Thompson 
125352bfb9bbSJeremy L Thompson   @ref Utility
125452bfb9bbSJeremy L Thompson **/
125552bfb9bbSJeremy L Thompson int CeedSymmetricSchurDecomposition(Ceed ceed, CeedScalar *mat,
125652bfb9bbSJeremy L Thompson                                     CeedScalar *lambda, CeedInt n) {
125752bfb9bbSJeremy L Thompson   // Check bounds for clang-tidy
125852bfb9bbSJeremy L Thompson   if (n<2)
1259c042f62fSJeremy L Thompson     // LCOV_EXCL_START
1260e15f9bd0SJeremy L Thompson     return CeedError(ceed, CEED_ERROR_UNSUPPORTED,
1261c042f62fSJeremy L Thompson                      "Cannot compute symmetric Schur decomposition of scalars");
1262c042f62fSJeremy L Thompson   // LCOV_EXCL_STOP
126352bfb9bbSJeremy L Thompson 
126452bfb9bbSJeremy L Thompson   CeedScalar v[n-1], tau[n-1], matT[n*n];
126552bfb9bbSJeremy L Thompson 
126652bfb9bbSJeremy L Thompson   // Copy mat to matT and set mat to I
126752bfb9bbSJeremy L Thompson   memcpy(matT, mat, n*n*sizeof(mat[0]));
126852bfb9bbSJeremy L Thompson   for (CeedInt i=0; i<n; i++)
126952bfb9bbSJeremy L Thompson     for (CeedInt j=0; j<n; j++)
127052bfb9bbSJeremy L Thompson       mat[j+n*i] = (i==j) ? 1 : 0;
127152bfb9bbSJeremy L Thompson 
127252bfb9bbSJeremy L Thompson   // Reduce to tridiagonal
127352bfb9bbSJeremy L Thompson   for (CeedInt i=0; i<n-1; i++) {
127452bfb9bbSJeremy L Thompson     // Calculate Householder vector, magnitude
127552bfb9bbSJeremy L Thompson     CeedScalar sigma = 0.0;
127652bfb9bbSJeremy L Thompson     v[i] = matT[i+n*(i+1)];
127752bfb9bbSJeremy L Thompson     for (CeedInt j=i+1; j<n-1; j++) {
127852bfb9bbSJeremy L Thompson       v[j] = matT[i+n*(j+1)];
127952bfb9bbSJeremy L Thompson       sigma += v[j] * v[j];
128052bfb9bbSJeremy L Thompson     }
128152bfb9bbSJeremy L Thompson     CeedScalar norm = sqrt(v[i]*v[i] + sigma); // norm of v[i:n-1]
128252bfb9bbSJeremy L Thompson     CeedScalar Rii = -copysign(norm, v[i]);
128352bfb9bbSJeremy L Thompson     v[i] -= Rii;
128452bfb9bbSJeremy L Thompson     // norm of v[i:m] after modification above and scaling below
128552bfb9bbSJeremy L Thompson     //   norm = sqrt(v[i]*v[i] + sigma) / v[i];
128652bfb9bbSJeremy L Thompson     //   tau = 2 / (norm*norm)
12870e4d4210Sjeremylt     if (sigma > 10*CEED_EPSILON)
128852bfb9bbSJeremy L Thompson       tau[i] = 2 * v[i]*v[i] / (v[i]*v[i] + sigma);
1289fb551037Sjeremylt     else
1290fb551037Sjeremylt       tau[i] = 0;
1291fb551037Sjeremylt 
1292fb551037Sjeremylt     for (CeedInt j=i+1; j<n-1; j++)
1293fb551037Sjeremylt       v[j] /= v[i];
129452bfb9bbSJeremy L Thompson 
129552bfb9bbSJeremy L Thompson     // Update sub and super diagonal
129652bfb9bbSJeremy L Thompson     matT[i+n*(i+1)] = Rii;
129752bfb9bbSJeremy L Thompson     matT[(i+1)+n*i] = Rii;
129852bfb9bbSJeremy L Thompson     for (CeedInt j=i+2; j<n; j++) {
129952bfb9bbSJeremy L Thompson       matT[i+n*j] = 0; matT[j+n*i] = 0;
130052bfb9bbSJeremy L Thompson     }
130152bfb9bbSJeremy L Thompson     // Apply symmetric Householder reflector to lower right panel
130252bfb9bbSJeremy L Thompson     CeedHouseholderReflect(&matT[(i+1)+n*(i+1)], &v[i], tau[i],
130352bfb9bbSJeremy L Thompson                            n-(i+1), n-(i+1), n, 1);
130452bfb9bbSJeremy L Thompson     CeedHouseholderReflect(&matT[(i+1)+n*(i+1)], &v[i], tau[i],
130552bfb9bbSJeremy L Thompson                            n-(i+1), n-(i+1), 1, n);
130652bfb9bbSJeremy L Thompson     // Save v
130752bfb9bbSJeremy L Thompson     for (CeedInt j=i+1; j<n-1; j++) {
130852bfb9bbSJeremy L Thompson       matT[i+n*(j+1)] = v[j];
130952bfb9bbSJeremy L Thompson     }
131052bfb9bbSJeremy L Thompson   }
131152bfb9bbSJeremy L Thompson   // Backwards accumulation of Q
131252bfb9bbSJeremy L Thompson   for (CeedInt i=n-2; i>=0; i--) {
131352bfb9bbSJeremy L Thompson     v[i] = 1;
131452bfb9bbSJeremy L Thompson     for (CeedInt j=i+1; j<n-1; j++) {
131552bfb9bbSJeremy L Thompson       v[j] = matT[i+n*(j+1)];
131652bfb9bbSJeremy L Thompson       matT[i+n*(j+1)] = 0;
131752bfb9bbSJeremy L Thompson     }
131852bfb9bbSJeremy L Thompson     CeedHouseholderReflect(&mat[(i+1)+n*(i+1)], &v[i], tau[i],
131952bfb9bbSJeremy L Thompson                            n-(i+1), n-(i+1), n, 1);
132052bfb9bbSJeremy L Thompson   }
132152bfb9bbSJeremy L Thompson 
132252bfb9bbSJeremy L Thompson   // Reduce sub and super diagonal
132352bfb9bbSJeremy L Thompson   CeedInt p = 0, q = 0, itr = 0, maxitr = n*n*n;
13240e4d4210Sjeremylt   CeedScalar tol = 10*CEED_EPSILON;
132552bfb9bbSJeremy L Thompson 
132652bfb9bbSJeremy L Thompson   while (q < n && itr < maxitr) {
132752bfb9bbSJeremy L Thompson     // Update p, q, size of reduced portions of diagonal
132852bfb9bbSJeremy L Thompson     p = 0; q = 0;
132952bfb9bbSJeremy L Thompson     for (CeedInt i=n-2; i>=0; i--) {
133052bfb9bbSJeremy L Thompson       if (fabs(matT[i+n*(i+1)]) < tol)
133152bfb9bbSJeremy L Thompson         q += 1;
133252bfb9bbSJeremy L Thompson       else
133352bfb9bbSJeremy L Thompson         break;
133452bfb9bbSJeremy L Thompson     }
133552bfb9bbSJeremy L Thompson     for (CeedInt i=0; i<n-1-q; i++) {
133652bfb9bbSJeremy L Thompson       if (fabs(matT[i+n*(i+1)]) < tol)
133752bfb9bbSJeremy L Thompson         p += 1;
133852bfb9bbSJeremy L Thompson       else
133952bfb9bbSJeremy L Thompson         break;
134052bfb9bbSJeremy L Thompson     }
134152bfb9bbSJeremy L Thompson     if (q == n-1) break; // Finished reducing
134252bfb9bbSJeremy L Thompson 
134352bfb9bbSJeremy L Thompson     // Reduce tridiagonal portion
134452bfb9bbSJeremy L Thompson     CeedScalar tnn = matT[(n-1-q)+n*(n-1-q)],
134552bfb9bbSJeremy L Thompson                tnnm1 = matT[(n-2-q)+n*(n-1-q)];
134652bfb9bbSJeremy L Thompson     CeedScalar d = (matT[(n-2-q)+n*(n-2-q)] - tnn)/2;
134752bfb9bbSJeremy L Thompson     CeedScalar mu = tnn - tnnm1*tnnm1 /
134852bfb9bbSJeremy L Thompson                     (d + copysign(sqrt(d*d + tnnm1*tnnm1), d));
134952bfb9bbSJeremy L Thompson     CeedScalar x = matT[p+n*p] - mu;
135052bfb9bbSJeremy L Thompson     CeedScalar z = matT[p+n*(p+1)];
135152bfb9bbSJeremy L Thompson     for (CeedInt k=p; k<n-1-q; k++) {
135252bfb9bbSJeremy L Thompson       // Compute Givens rotation
135352bfb9bbSJeremy L Thompson       CeedScalar c = 1, s = 0;
135452bfb9bbSJeremy L Thompson       if (fabs(z) > tol) {
135552bfb9bbSJeremy L Thompson         if (fabs(z) > fabs(x)) {
135652bfb9bbSJeremy L Thompson           CeedScalar tau = -x/z;
135752bfb9bbSJeremy L Thompson           s = 1/sqrt(1+tau*tau), c = s*tau;
135852bfb9bbSJeremy L Thompson         } else {
135952bfb9bbSJeremy L Thompson           CeedScalar tau = -z/x;
136052bfb9bbSJeremy L Thompson           c = 1/sqrt(1+tau*tau), s = c*tau;
136152bfb9bbSJeremy L Thompson         }
136252bfb9bbSJeremy L Thompson       }
136352bfb9bbSJeremy L Thompson 
136452bfb9bbSJeremy L Thompson       // Apply Givens rotation to T
136552bfb9bbSJeremy L Thompson       CeedGivensRotation(matT, c, s, CEED_NOTRANSPOSE, k, k+1, n, n);
136652bfb9bbSJeremy L Thompson       CeedGivensRotation(matT, c, s, CEED_TRANSPOSE, k, k+1, n, n);
136752bfb9bbSJeremy L Thompson 
136852bfb9bbSJeremy L Thompson       // Apply Givens rotation to Q
136952bfb9bbSJeremy L Thompson       CeedGivensRotation(mat, c, s, CEED_NOTRANSPOSE, k, k+1, n, n);
137052bfb9bbSJeremy L Thompson 
137152bfb9bbSJeremy L Thompson       // Update x, z
137252bfb9bbSJeremy L Thompson       if (k < n-q-2) {
137352bfb9bbSJeremy L Thompson         x = matT[k+n*(k+1)];
137452bfb9bbSJeremy L Thompson         z = matT[k+n*(k+2)];
137552bfb9bbSJeremy L Thompson       }
137652bfb9bbSJeremy L Thompson     }
137752bfb9bbSJeremy L Thompson     itr++;
137852bfb9bbSJeremy L Thompson   }
137952bfb9bbSJeremy L Thompson   // Save eigenvalues
138052bfb9bbSJeremy L Thompson   for (CeedInt i=0; i<n; i++)
138152bfb9bbSJeremy L Thompson     lambda[i] = matT[i+n*i];
138252bfb9bbSJeremy L Thompson 
138352bfb9bbSJeremy L Thompson   // Check convergence
138452bfb9bbSJeremy L Thompson   if (itr == maxitr && q < n-1)
1385c042f62fSJeremy L Thompson     // LCOV_EXCL_START
1386e15f9bd0SJeremy L Thompson     return CeedError(ceed, CEED_ERROR_MINOR,
1387e15f9bd0SJeremy L Thompson                      "Symmetric QR failed to converge");
1388c042f62fSJeremy L Thompson   // LCOV_EXCL_STOP
1389e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
139052bfb9bbSJeremy L Thompson }
139152bfb9bbSJeremy L Thompson 
139252bfb9bbSJeremy L Thompson /**
139352bfb9bbSJeremy L Thompson   @brief Return Simultaneous Diagonalization of two matrices. This solves the
139452bfb9bbSJeremy L Thompson            generalized eigenvalue problem A x = lambda B x, where A and B
139552bfb9bbSJeremy L Thompson            are symmetric and B is positive definite. We generate the matrix X
139652bfb9bbSJeremy L Thompson            and vector Lambda such that X^T A X = Lambda and X^T B X = I. This
139752bfb9bbSJeremy L Thompson            is equivalent to the LAPACK routine 'sygv' with TYPE = 1.
139852bfb9bbSJeremy L Thompson 
139977645d7bSjeremylt   @param ceed         A Ceed context for error handling
1400d1d35e2fSjeremylt   @param[in] mat_A     Row-major matrix to be factorized with eigenvalues
1401d1d35e2fSjeremylt   @param[in] mat_B     Row-major matrix to be factorized to identity
140252bfb9bbSJeremy L Thompson   @param[out] x       Row-major orthogonal matrix
1403460bf743SValeria Barra   @param[out] lambda  Vector of length n of generalized eigenvalues
140452bfb9bbSJeremy L Thompson   @param n            Number of rows/columns
140552bfb9bbSJeremy L Thompson 
140652bfb9bbSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
140752bfb9bbSJeremy L Thompson 
140852bfb9bbSJeremy L Thompson   @ref Utility
140952bfb9bbSJeremy L Thompson **/
1410d1d35e2fSjeremylt int CeedSimultaneousDiagonalization(Ceed ceed, CeedScalar *mat_A,
1411d1d35e2fSjeremylt                                     CeedScalar *mat_B, CeedScalar *x,
141252bfb9bbSJeremy L Thompson                                     CeedScalar *lambda, CeedInt n) {
141352bfb9bbSJeremy L Thompson   int ierr;
1414d1d35e2fSjeremylt   CeedScalar mat_C[n*n], matG[n*n], vecD[n];
141552bfb9bbSJeremy L Thompson 
141652bfb9bbSJeremy L Thompson   // Compute B = G D G^T
1417d1d35e2fSjeremylt   memcpy(matG, mat_B, n*n*sizeof(mat_B[0]));
141852bfb9bbSJeremy L Thompson   ierr = CeedSymmetricSchurDecomposition(ceed, matG, vecD, n); CeedChk(ierr);
1419fb551037Sjeremylt   for (CeedInt i=0; i<n; i++)
1420fb551037Sjeremylt     vecD[i] = sqrt(vecD[i]);
142152bfb9bbSJeremy L Thompson 
1422fb551037Sjeremylt   // Compute C = (G D^1/2)^-1 A (G D^1/2)^-T
1423fb551037Sjeremylt   //           = D^-1/2 G^T A G D^-1/2
142452bfb9bbSJeremy L Thompson   for (CeedInt i=0; i<n; i++)
142552bfb9bbSJeremy L Thompson     for (CeedInt j=0; j<n; j++)
1426d1d35e2fSjeremylt       mat_C[j+i*n] = matG[i+j*n] / vecD[i];
1427d1d35e2fSjeremylt   ierr = CeedMatrixMultiply(ceed, (const CeedScalar *)mat_C,
1428d1d35e2fSjeremylt                             (const CeedScalar *)mat_A, x, n, n, n);
14299289e5bfSjeremylt   CeedChk(ierr);
143052bfb9bbSJeremy L Thompson   for (CeedInt i=0; i<n; i++)
143152bfb9bbSJeremy L Thompson     for (CeedInt j=0; j<n; j++)
1432fb551037Sjeremylt       matG[j+i*n] = matG[j+i*n] / vecD[j];
14339289e5bfSjeremylt   ierr = CeedMatrixMultiply(ceed, (const CeedScalar *)x,
1434d1d35e2fSjeremylt                             (const CeedScalar *)matG, mat_C, n, n, n);
14359289e5bfSjeremylt   CeedChk(ierr);
143652bfb9bbSJeremy L Thompson 
143752bfb9bbSJeremy L Thompson   // Compute Q^T C Q = lambda
1438d1d35e2fSjeremylt   ierr = CeedSymmetricSchurDecomposition(ceed, mat_C, lambda, n); CeedChk(ierr);
143952bfb9bbSJeremy L Thompson 
1440fb551037Sjeremylt   // Set x = (G D^1/2)^-T Q
1441fb551037Sjeremylt   //       = G D^-1/2 Q
14429289e5bfSjeremylt   ierr = CeedMatrixMultiply(ceed, (const CeedScalar *)matG,
1443d1d35e2fSjeremylt                             (const CeedScalar *)mat_C, x, n, n, n);
14449289e5bfSjeremylt   CeedChk(ierr);
1445e15f9bd0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
144652bfb9bbSJeremy L Thompson }
144752bfb9bbSJeremy L Thompson 
1448d7b241e6Sjeremylt /// @}
1449