IFEM 90A354
ASMs3DmxLag.h
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1// $Id$
2//==============================================================================
12//==============================================================================
13
14#ifndef _ASM_S3D_MX_LAG_H
15#define _ASM_S3D_MX_LAG_H
16
17#include "ASMs3DLag.h"
18#include "ASMmxBase.h"
19#include <array>
20
21
29class ASMs3DmxLag : public ASMs3DLag, private ASMmxBase
30{
33 {
34 public:
37 BasisFunctionCache(const ASMs3DLag& pch);
38
43
45 virtual ~BasisFunctionCache() = default;
46
47 protected:
51 BasisFunctionVals calculatePt(size_t, size_t gp, bool red) const override;
52
54 void calculateAll() override;
55 };
56
57public:
59 explicit ASMs3DmxLag(const CharVec& n_f);
61 ASMs3DmxLag(const ASMs3DmxLag& patch, const CharVec& n_f = CharVec(2,0));
63 virtual ~ASMs3DmxLag() {}
64
65
66 // Methods for model generation
67 // ============================
68
72 virtual bool generateFEMTopology();
73
77 virtual void clear(bool retainGeometry);
78
80 virtual size_t getNoBasis() const { return 2; }
82 virtual size_t getNoNodes(int basis) const;
84 virtual unsigned char getNoFields(int basis) const;
87 virtual unsigned char getNodalDOFs(size_t inod) const;
90 virtual char getNodeType(size_t inod) const;
91
93 virtual void initMADOF(const int* sysMadof);
94
103 virtual bool connectPatch(int face, ASM3D& neighbor, int nface, int norient,
104 int basis, bool coordCheck, int thick);
105
108 virtual void closeBoundaries(int dir, int, int);
109
110
111 // Methods for integration of finite element quantities.
112 // These are the main computational methods of the ASM class hierarchy.
113 // ====================================================================
114
119 virtual bool integrate(Integrand& integrand,
120 GlobalIntegral& glbInt, const TimeDomain& time);
121
127 virtual bool integrate(Integrand& integrand, int lIndex,
128 GlobalIntegral& glbInt, const TimeDomain& time);
129
130
131 // Post-processing methods
132 // =======================
133
138 virtual bool getSolution(Matrix& sField, const Vector& locSol,
139 const IntVec& nodes) const;
140
148 virtual bool evalSolution(Matrix& sField, const IntegrandBase& integrand,
149 const int*, char = 0) const;
150
155 virtual bool evalSolution(Matrix& sField, const Vector& locSol,
156 const RealArray*, bool, int, int nf) const;
157
162 virtual bool evalSolution(Matrix& sField, const IntegrandBase& integrand,
163 const RealArray* gpar, bool) const;
164
169 virtual void extractNodeVec(const RealArray& globVec, RealArray& nodeVec,
170 unsigned char, int basis) const;
171
172protected:
173
174 // Internal utility methods
175 // ========================
176
182 virtual bool getSize(int& n1, int& n2, int& n3, int basis) const;
183
184private:
185 std::vector<size_t> nxx;
186 std::vector<size_t> nyx;
187 std::vector<size_t> nzx;
188
189 std::vector< std::array<size_t,3> > elem_sizes;
190};
191
192#endif
std::vector< int > IntVec
General integer vector.
Definition ASMbase.h:25
Base class for spline-based mixed finite element assembly drivers.
Driver for assembly of structured 3D Lagrange FE models.
std::vector< Real > RealArray
A real-valued array without algebraic operations.
Definition ImmersedBoundaries.h:32
Abstract interface for 3D spline patches.
Definition ASM3D.h:33
std::vector< unsigned char > CharVec
Convenience type.
Definition ASM3D.h:42
unsigned char nf
Number of primary solution fields (1 or larger)
Definition ASMbase.h:1057
Base class for spline-based mixed finite element assembly drivers.
Definition ASMmxBase.h:35
Implementation of basis function cache.
Definition ASMs3DLag.h:31
Driver for assembly of structured 3D Lagrange FE models.
Definition ASMs3DLag.h:27
virtual bool evalSolution(Matrix &sField, const Vector &locSol, const int *, int n_f, bool) const
Evaluates the primary solution field at all visualization points.
Definition ASMs3DLag.C:943
Implementation of basis function cache.
Definition ASMs3D.h:72
Implementation of basis function cache.
Definition ASMs3DmxLag.h:33
virtual ~BasisFunctionCache()=default
Empty destructor.
void calculateAll() override
Calculates basis function info in all integration points.
Definition ASMs3DmxLag.C:722
BasisFunctionVals calculatePt(size_t, size_t gp, bool red) const override
Calculates basis function info in a single integration point.
Definition ASMs3DmxLag.C:703
Driver for assembly of structured 3D Lagrange mixed FE models.
Definition ASMs3DmxLag.h:30
virtual unsigned char getNodalDOFs(size_t inod) const
Returns the number of DOFs per node.
Definition ASMs3DmxLag.C:66
virtual char getNodeType(size_t inod) const
Returns the classification of a node.
Definition ASMs3DmxLag.C:78
virtual void initMADOF(const int *sysMadof)
Initializes the patch level MADOF array for mixed problems.
Definition ASMs3DmxLag.C:90
std::vector< size_t > nxx
Basis dimensions in 1st parameter direction.
Definition ASMs3DmxLag.h:185
virtual void closeBoundaries(int dir, int, int)
Makes two opposite boundary faces periodic.
Definition ASMs3DmxLag.C:242
virtual bool generateFEMTopology()
Generates the finite element topology data for the patch.
Definition ASMs3DmxLag.C:110
virtual void extractNodeVec(const RealArray &globVec, RealArray &nodeVec, unsigned char, int basis) const
Extracts nodal results for this patch from the global vector.
Definition ASMs3DmxLag.C:96
virtual ~ASMs3DmxLag()
Empty destructor.
Definition ASMs3DmxLag.h:63
virtual void clear(bool retainGeometry)
Clears the contents of the patch, making it empty.
Definition ASMs3DmxLag.C:39
virtual unsigned char getNoFields(int basis) const
Returns the number of solution fields.
Definition ASMs3DmxLag.C:57
virtual size_t getNoBasis() const
Returns the number of bases.
Definition ASMs3DmxLag.h:80
std::vector< size_t > nzx
Basis dimensions in 3rd parameter direction.
Definition ASMs3DmxLag.h:187
virtual bool integrate(Integrand &integrand, GlobalIntegral &glbInt, const TimeDomain &time)
Evaluates an integral over the interior patch domain.
Definition ASMs3DmxLag.C:263
virtual size_t getNoNodes(int basis) const
Returns the total number of nodes in this patch.
Definition ASMs3DmxLag.C:48
virtual bool getSize(int &n1, int &n2, int &n3, int basis) const
Returns the number of nodal points in each parameter direction.
Definition ASMs3DmxLag.C:250
virtual bool connectPatch(int face, ASM3D &neighbor, int nface, int norient, int basis, bool coordCheck, int thick)
Connects all matching nodes on two adjacent boundary faces.
Definition ASMs3DmxLag.C:213
virtual bool getSolution(Matrix &sField, const Vector &locSol, const IntVec &nodes) const
Extract the primary solution field at the specified nodes.
Definition ASMs3DmxLag.C:103
std::vector< std::array< size_t, 3 > > elem_sizes
Size on each basis.
Definition ASMs3DmxLag.h:189
virtual bool evalSolution(Matrix &sField, const IntegrandBase &integrand, const int *, char=0) const
Evaluates the secondary solution field at all visualization points.
Definition ASMs3DmxLag.C:564
std::vector< size_t > nyx
Basis dimensions in 2nd parameter direction.
Definition ASMs3DmxLag.h:186
Abstract base class representing a system level integrated quantity.
Definition GlobalIntegral.h:29
Base class representing a system level integrated quantity.
Definition IntegrandBase.h:42
Abstract base class representing a system level integrated quantity.
Definition Integrand.h:44
A vector class with some added algebraic operations.
Definition matrix.h:64
Struct holding basis function values and derivatives.
Definition BasisFunctionVals.h:25
Struct representing the time domain.
Definition TimeDomain.h:23