58 for (
int i = 0; i < x.
Size(); i++)
60 x(i) = (2*x(i)-xmin(i)-xmax(i))/(xmax(i)-xmin(i));
69int main(
int argc,
char *argv[])
73 const char *mesh_file =
"../../data/inline-quad.mesh";
78 args.
AddOption(&mesh_file,
"-m",
"--mesh",
79 "Input mesh file to shape materials in.");
80 args.
AddOption(&sd,
"-sd",
"--sub-divisions",
81 "Number of element subdivisions for interface detection.");
82 args.
AddOption(&nclimit,
"-ncl",
"--nc-limit",
83 "Level of hanging nodes allowed (-1 = unlimited).");
84 args.
AddOption(&aniso,
"-a",
"--aniso",
"-i",
"--iso",
85 "Enable anisotropic refinement of quads and hexes.");
91 Mesh mesh(mesh_file, 1, 1);
112 sol_sock.precision(8);
115 for (
int iter = 0; 1; iter++)
118 for (
int i = 0; i < mesh.
GetNE(); i++)
140 if ((
int)matsum != m*(j+1))
157 int dx = 0, dy = 0, dz = 0;
161 for (
int jj = 0; jj <= sd; jj++)
162 for (
int ii = 0; ii < sd; ii++)
164 dx += abs(mat[jj*
s + ii+1] - mat[jj*
s + ii]);
165 dy += abs(mat[(ii+1)*
s + jj] - mat[ii*
s + jj]);
170 for (
int kk = 0; kk <= sd; kk++)
171 for (
int jj = 0; jj <= sd; jj++)
172 for (
int ii = 0; ii < sd; ii++)
174 dx += abs(mat[(kk*
s + jj)*
s + ii+1] - mat[(kk*
s + jj)*
s + ii]);
175 dy += abs(mat[(kk*
s + ii+1)*
s + jj] - mat[(kk*
s + ii)*
s + jj]);
176 dz += abs(mat[((ii+1)*
s + jj)*
s + kk] - mat[(ii*
s + jj)*
s + kk]);
180 const int tol = mat.
Size() / 10;
181 if (dx > tol) { type |= 1; }
182 if (dy > tol) { type |= 2; }
183 if (dz > tol) { type |= 4; }
184 if (!type) { type = 7; }
192 sol_sock <<
"solution\n" << mesh << attr;
193 if (iter == 0 && sdim == 2)
195 sol_sock <<
"keys 'RjlmpppppppppppppA*************'\n";
197 if (iter == 0 && sdim == 3)
199 sol_sock <<
"keys 'YYYYYYYYYXXXXXXXmA********8888888pppttt";
200 if (
dim == 3) { sol_sock <<
"iiM"; }
207 cout <<
"Mesh has " << mesh.
GetNE() <<
" elements. \n"
208 <<
"Continue shaping? --> ";
210 if (yn ==
'n' || yn ==
'q') {
break; }
219 for (
int i = 0; i < mesh.
GetNE(); i++)
226 ofstream mesh_ofs(
"shaper.mesh");
227 mesh_ofs.precision(8);
228 mesh.
Print(mesh_ofs);
int Size() const
Return the logical size of the array.
int Append(const T &el)
Append element 'el' to array, resize if necessary.
Class FiniteElementSpace - responsible for providing FEM view of the mesh, mainly managing the set of...
virtual void Update(bool want_transform=true)
Reflect changes in the mesh: update number of DOFs, etc. Also, calculate GridFunction transformation ...
RefinedGeometry * Refine(Geometry::Type Geom, int Times, int ETimes=1)
Class for grid function - Vector with associated FE space.
Class for an integration rule - an Array of IntegrationPoint.
int GetNPoints() const
Returns the number of the points in the integration rule.
IntegrationPoint & IntPoint(int i)
Returns a reference to the i-th integration point.
Arbitrary order "L2-conforming" discontinuous finite elements.
NURBSExtension * NURBSext
Optional NURBS mesh extension.
void GeneralRefinement(const Array< Refinement > &refinements, int nonconforming=-1, int nc_limit=0)
void SetAttribute(int i, int attr)
Set the attribute of element i.
virtual void Print(std::ostream &os=mfem::out, const std::string &comments="") const
int GetNE() const
Returns number of elements.
void GetBoundingBox(Vector &min, Vector &max, int ref=2)
Returns the minimum and maximum corners of the mesh bounding box.
int Dimension() const
Dimension of the reference space used within the elements.
void GetElementTransformation(int i, IsoparametricTransformation *ElTr) const
Builds the transformation defining the i-th element in ElTr. ElTr must be allocated in advance and wi...
int SpaceDimension() const
Dimension of the physical space containing the mesh.
int MeshGenerator() const
Get the mesh generator/type.
virtual void SetCurvature(int order, bool discont=false, int space_dim=-1, int ordering=1)
Set the curvature of the mesh nodes using the given polynomial degree.
Geometry::Type GetElementBaseGeometry(int i) const
virtual void SetAttributes()
Determine the sets of unique attribute values in domain and boundary elements.
void Parse()
Parse the command-line options. Note that this function expects all the options provided through the ...
void PrintUsage(std::ostream &out) const
Print the usage message.
void PrintOptions(std::ostream &out) const
Print the options.
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)
Add a boolean option and set 'var' to receive the value. Enable/disable tags are used to set the bool...
bool Good() const
Return true if the command line options were parsed successfully.
int Size() const
Returns the size of the vector.
real_t Normlp(real_t p) const
Returns the l_p norm of the vector.
GeometryRefiner GlobGeometryRefiner
real_t p(const Vector &x, real_t t)
int material(Vector &x, Vector &xmin, Vector &xmax)