42 int main(
int argc,
char *argv[])
46 MPI_Init(&argc, &argv);
47 MPI_Comm_size(MPI_COMM_WORLD, &num_procs);
48 MPI_Comm_rank(MPI_COMM_WORLD, &myid);
51 const char *mesh_file =
"../data/star.mesh";
53 bool visualization = 1;
56 args.
AddOption(&mesh_file,
"-m",
"--mesh",
59 "Finite element order (polynomial degree).");
60 args.
AddOption(&visualization,
"-vis",
"--visualization",
"-no-vis",
62 "Enable or disable GLVis visualization.");
81 Mesh *mesh =
new Mesh(mesh_file, 1, 1);
90 (int)floor(log(10000./mesh->
GetNE())/log(2.)/
dim);
91 for (
int l = 0; l < ref_levels; l++)
103 int par_ref_levels = 1;
104 for (
int l = 0; l < par_ref_levels; l++)
119 unsigned int trial_order = order;
120 unsigned int trace_order = order - 1;
121 unsigned int test_order = order;
123 if (dim == 2 && (order%2 == 0 || (pmesh->
MeshGenerator() & 2 && order > 1)))
127 if (test_order < trial_order)
131 cerr <<
"Warning, test space not enriched enough to handle primal"
153 cout <<
"\nNumber of Unknowns:\n"
154 <<
" Trial space, X0 : " << glob_true_s0
155 <<
" (order " << trial_order <<
")\n"
156 <<
" Interface space, Xhat : " << glob_true_s1
157 <<
" (order " << trace_order <<
")\n"
158 <<
" Test space, Y : " << glob_true_s_test
159 <<
" (order " << test_order <<
")\n\n";
215 enum {x0_var, xhat_var, NVAR};
219 int true_s_test = test_space->
TrueVSize();
223 true_offsets[1] = true_s0;
224 true_offsets[2] = true_s0+true_s1;
227 true_offsets_test[0] = 0;
228 true_offsets_test[1] = true_s_test;
246 matSinv->
Mult(*trueF, SinvF);
265 if (dim == 2) { Shatinv =
new HypreAMS(*Shat, xhat_space); }
266 else { Shatinv =
new HypreADS(*Shat, xhat_space); }
287 matSinv->
Mult(LSres, tmp);
291 cout <<
"\n|| B0*x0 + Bhat*xhat - F ||_{S^-1} = " << res << endl;
300 ostringstream mesh_name, sol_name;
301 mesh_name <<
"mesh." << setfill(
'0') << setw(6) << myid;
302 sol_name <<
"sol." << setfill(
'0') << setw(6) << myid;
304 ofstream mesh_ofs(mesh_name.str().c_str());
305 mesh_ofs.precision(8);
306 pmesh->
Print(mesh_ofs);
308 ofstream sol_ofs(sol_name.str().c_str());
309 sol_ofs.precision(8);
316 char vishost[] =
"localhost";
319 sol_sock <<
"parallel " << num_procs <<
" " << myid <<
"\n";
320 sol_sock.precision(8);
321 sol_sock <<
"solution\n" << *pmesh << *x0 << flush;
Class for domain integration L(v) := (f, v)
Conjugate gradient method.
The Auxiliary-space Maxwell Solver in hypre.
Integrator defining a sum of multiple Integrators.
The Auxiliary-space Divergence Solver in hypre.
A class to handle Vectors in a block fashion.
virtual void GetEssentialVDofs(const Array< int > &bdr_attr_is_ess, Array< int > &ess_dofs, int component=-1) const
Determine the boundary degrees of freedom.
Subclass constant coefficient.
HypreParMatrix * RAP(const HypreParMatrix *A, const HypreParMatrix *P)
Returns the matrix P^t * A * P.
virtual void Mult(const Vector &b, Vector &x) const
Operator application: y=A(x).
virtual void ReorientTetMesh()
See the remarks for the serial version in mesh.hpp.
virtual void MultTranspose(const Vector &x, Vector &y) const
Action of the transpose operator.
int GetNE() const
Returns number of elements.
virtual void Save(std::ostream &out) const
Abstract parallel finite element space.
void AddIntegrator(BilinearFormIntegrator *integ)
int main(int argc, char *argv[])
HYPRE_Int Mult(HypreParVector &x, HypreParVector &y, double alpha=1.0, double beta=0.0)
Computes y = alpha * A * x + beta * y.
Integrator that inverts the matrix assembled by another integrator.
The BoomerAMG solver in hypre.
void SetPrintLevel(int print_lvl)
A class to handle Block diagonal preconditioners in a matrix-free implementation. ...
void UniformRefinement(int i, const DSTable &, int *, int *, int *)
void SetPrintLevel(int print_level)
void SetMaxIter(int max_it)
int MeshGenerator()
Get the mesh generator/type.
T Max() const
Find the maximal element in the array, using the comparison operator < for class T.
HYPRE_Int GlobalTrueVSize() const
virtual void Print(std::ostream &out=mfem::out) const
The operator x -> R*A*P*x constructed through the actions of R^T, A and P.
void PrintUsage(std::ostream &out) const
virtual void Mult(const Vector &x, Vector &y) const
Operator application.
Wrapper for hypre's parallel vector class.
Array< int > bdr_attributes
A list of all unique boundary attributes used by the Mesh.
void SetRelTol(double rtol)
void AddOption(bool *var, const char *enable_short_name, const char *enable_long_name, const char *disable_short_name, const char *disable_long_name, const char *description, bool required=false)
void Distribute(const Vector *tv)
double InnerProduct(HypreParVector *x, HypreParVector *y)
void PrintOptions(std::ostream &out) const
Abstract class for hypre's solvers and preconditioners.
virtual void SetOperator(const Operator &op)
Also calls SetOperator for the preconditioner if there is one.
virtual void SetPreconditioner(Solver &pr)
This should be called before SetOperator.
Arbitrary order H1-conforming (continuous) finite elements.
Class for parallel grid function.
Wrapper for hypre's ParCSR matrix class.
A class to handle Block systems in a matrix-free implementation.
Class for parallel meshes.
void SetBlock(int iRow, int iCol, Operator *op, double c=1.0)
Add a block op in the block-entry (iblock, jblock).
void SetDiagonalBlock(int iblock, Operator *op)
Add a square block op in the block-entry (iblock, iblock).
Arbitrary order "L2-conforming" discontinuous finite elements.