xref: /libCEED/tests/t304-basis.c (revision b5cf12ee8b5ffe0ca173fbf1c0d42d7d14238b45)
14411cf47Sjeremylt /// @file
24411cf47Sjeremylt /// Test grad in multiple dimensions
34411cf47Sjeremylt /// \test Test grad in multiple dimensions
457c64913Sjeremylt #include <ceed.h>
557c64913Sjeremylt #include <math.h>
657c64913Sjeremylt 
757c64913Sjeremylt static CeedScalar Eval(CeedInt dim, const CeedScalar x[]) {
857c64913Sjeremylt   CeedScalar result = tanh(x[0] + 0.1);
957c64913Sjeremylt   if (dim > 1) result += atan(x[1] + 0.2);
1057c64913Sjeremylt   if (dim > 2) result += exp(-(x[2] + 0.3)*(x[2] + 0.3));
1157c64913Sjeremylt   return result;
1257c64913Sjeremylt }
1357c64913Sjeremylt 
1457c64913Sjeremylt int main(int argc, char **argv) {
1557c64913Sjeremylt   Ceed ceed;
1657c64913Sjeremylt 
1757c64913Sjeremylt   CeedInit(argv[1], &ceed);
1857c64913Sjeremylt   for (CeedInt dim=1; dim<=3; dim++) {
1957c64913Sjeremylt     CeedBasis bxl, bug;
20*b5cf12eeSjeremylt     CeedInt P = 8, Q = 10, Pdim = CeedIntPow(P, dim), Qdim = CeedIntPow(Q, dim),
21*b5cf12eeSjeremylt             Xdim = CeedIntPow(2, dim);
2257c64913Sjeremylt     CeedScalar x[Xdim*dim], ones[dim*Qdim], gtposeones[Pdim];
2357c64913Sjeremylt     CeedScalar xq[Pdim*dim], uq[dim*Qdim], u[Pdim], sum1 = 0, sum2 = 0;
2457c64913Sjeremylt 
2557c64913Sjeremylt     for (CeedInt i=0; i<dim*Qdim; i++) ones[i] = 1;
2657c64913Sjeremylt     for (CeedInt d=0; d<dim; d++) {
2757c64913Sjeremylt       for (CeedInt i=0; i<Xdim; i++) {
28*b5cf12eeSjeremylt         x[d*Xdim + i] = (i % CeedIntPow(2, dim-d)) / CeedIntPow(2, dim-d-1) ? 1 : -1;
2957c64913Sjeremylt       }
3057c64913Sjeremylt     }
3157c64913Sjeremylt 
3257c64913Sjeremylt     // Get function values at quadrature points
3357c64913Sjeremylt     CeedBasisCreateTensorH1Lagrange(ceed, dim, dim, 2, P, CEED_GAUSS_LOBATTO, &bxl);
3457c64913Sjeremylt     CeedBasisApply(bxl, 1, CEED_NOTRANSPOSE, CEED_EVAL_INTERP, x, xq);
3557c64913Sjeremylt     for (CeedInt i=0; i<Pdim; i++) {
3657c64913Sjeremylt       CeedScalar xx[dim];
3757c64913Sjeremylt       for (CeedInt d=0; d<dim; d++) xx[d] = xq[d*Pdim + i];
3857c64913Sjeremylt       u[i] = Eval(dim, xx);
3957c64913Sjeremylt     }
4057c64913Sjeremylt 
4157c64913Sjeremylt     // Calculate G u at quadrature points, G' * 1 at dofs
4257c64913Sjeremylt     CeedBasisCreateTensorH1Lagrange(ceed, dim, 1, P, Q, CEED_GAUSS, &bug);
4357c64913Sjeremylt     CeedBasisApply(bug, 1, CEED_NOTRANSPOSE, CEED_EVAL_GRAD, u, uq);
4457c64913Sjeremylt     CeedBasisApply(bug, 1, CEED_TRANSPOSE, CEED_EVAL_GRAD, ones, gtposeones);
4557c64913Sjeremylt 
4657c64913Sjeremylt     // Check if 1' * G * u = u' * (G' * 1)
4757c64913Sjeremylt     for (CeedInt i=0; i<Pdim; i++) {
4857c64913Sjeremylt       sum1 += gtposeones[i]*u[i];
4957c64913Sjeremylt     }
5057c64913Sjeremylt     for (CeedInt i=0; i<dim*Qdim; i++) {
5157c64913Sjeremylt       sum2 += uq[i];
5257c64913Sjeremylt     }
5357c64913Sjeremylt     if (fabs(sum1 - sum2) > 1e-10) {
5457c64913Sjeremylt       printf("[%d] %f != %f\n", dim, sum1, sum2);
5557c64913Sjeremylt     }
5657c64913Sjeremylt 
5757c64913Sjeremylt     CeedBasisDestroy(&bxl);
5857c64913Sjeremylt     CeedBasisDestroy(&bug);
5957c64913Sjeremylt   }
6057c64913Sjeremylt   CeedDestroy(&ceed);
6157c64913Sjeremylt   return 0;
6257c64913Sjeremylt }
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