FDICPreconditioner.C
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28
29#include "FDICPreconditioner.H"
30#include <algorithm>
31
32// * * * * * * * * * * * * * * Static Data Members * * * * * * * * * * * * * //
33
34namespace Foam
35{
37
38 lduMatrix::preconditioner::
39 addsymMatrixConstructorToTable<FDICPreconditioner>
41}
42
43
44// * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
45
47(
48 const lduMatrix::solver& sol,
49 const dictionary&
50)
51:
52 lduMatrix::preconditioner(sol),
53 rD_(sol.matrix().diag().size()),
54 rDuUpper_(sol.matrix().upper().size()),
55 rDlUpper_(sol.matrix().upper().size())
56{
57 const scalarField& diag = sol.matrix().diag();
58 std::copy(diag.begin(), diag.end(), rD_.begin());
59
60 solveScalar* __restrict__ rDPtr = rD_.begin();
61 solveScalar* __restrict__ rDuUpperPtr = rDuUpper_.begin();
62 solveScalar* __restrict__ rDlUpperPtr = rDlUpper_.begin();
63
64 const label* const __restrict__ uPtr =
66 const label* const __restrict__ lPtr =
68 const scalar* const __restrict__ upperPtr =
70
71 const label nCells = rD_.size();
72 const label nFaces = solver_.matrix().upper().size();
73
74 for (label face=0; face<nFaces; face++)
75 {
76 rDPtr[uPtr[face]] -= sqr(upperPtr[face])/rDPtr[lPtr[face]];
77 }
78
79 // Generate reciprocal FDIC
80 for (label cell=0; cell<nCells; cell++)
81 {
82 rDPtr[cell] = 1.0/rDPtr[cell];
83 }
84
85 for (label face=0; face<nFaces; face++)
86 {
87 rDuUpperPtr[face] = rDPtr[uPtr[face]]*upperPtr[face];
88 rDlUpperPtr[face] = rDPtr[lPtr[face]]*upperPtr[face];
89 }
90}
91
92
93// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
94
96(
98 const solveScalarField& rA,
99 const direction
100) const
101{
102 solveScalar* __restrict__ wAPtr = wA.begin();
103 const solveScalar* __restrict__ rAPtr = rA.begin();
104 const solveScalar* __restrict__ rDPtr = rD_.begin();
105
106 const label* const __restrict__ uPtr =
107 solver_.matrix().lduAddr().upperAddr().begin();
108 const label* const __restrict__ lPtr =
109 solver_.matrix().lduAddr().lowerAddr().begin();
110
111 const solveScalar* const __restrict__ rDuUpperPtr = rDuUpper_.begin();
112 const solveScalar* const __restrict__ rDlUpperPtr = rDlUpper_.begin();
113
114 const label nCells = wA.size();
115 const label nFaces = solver_.matrix().upper().size();
116 const label nFacesM1 = nFaces - 1;
117
118 for (label cell=0; cell<nCells; cell++)
119 {
120 wAPtr[cell] = rDPtr[cell]*rAPtr[cell];
121 }
122
123 for (label face=0; face<nFaces; face++)
124 {
125 wAPtr[uPtr[face]] -= rDuUpperPtr[face]*wAPtr[lPtr[face]];
126 }
127
128 for (label face=nFacesM1; face>=0; face--)
129 {
130 wAPtr[lPtr[face]] -= rDlUpperPtr[face]*wAPtr[uPtr[face]];
131 }
132}
133
134
135// ************************************************************************* //
Faster version of the DICPreconditioner diagonal-based incomplete Cholesky preconditioner for symmetr...
virtual void precondition(solveScalarField &wA, const solveScalarField &rA, const direction cmpt=0) const
Return wA the preconditioned form of residual rA.
iterator begin() noexcept
Return an iterator to begin traversing the UList.
Definition: UListI.H:329
void size(const label n)
Older name for setAddressableSize.
Definition: UList.H:114
A cell is defined as a list of faces with extra functionality.
Definition: cell.H:57
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:126
A face is a list of labels corresponding to mesh vertices.
Definition: face.H:75
virtual const labelUList & upperAddr() const =0
Return upper addressing.
virtual const labelUList & lowerAddr() const =0
Return lower addressing.
const solver & solver_
Reference to the base-solver this preconditioner is used with.
Definition: lduMatrix.H:440
Abstract base-class for lduMatrix solvers.
Definition: lduMatrix.H:99
const lduMatrix & matrix() const noexcept
Definition: lduMatrix.H:233
lduMatrix is a general matrix class in which the coefficients are stored as three arrays,...
Definition: lduMatrix.H:84
scalarField & upper()
Definition: lduMatrix.C:203
const lduAddressing & lduAddr() const
Return the LDU addressing.
Definition: lduMatrix.H:578
scalarField & diag()
Definition: lduMatrix.C:192
#define defineTypeNameAndDebug(Type, DebugSwitch)
Define the typeName and debug information.
Definition: className.H:121
const labelList nFaces(UPstream::listGatherValues< label >(aMesh.nFaces()))
Namespace for OpenFOAM.
dimensionedSymmTensor sqr(const dimensionedVector &dv)
lduMatrix::preconditioner::addsymMatrixConstructorToTable< FDICPreconditioner > addFDICPreconditionerSymMatrixConstructorToTable_
uint8_t direction
Definition: direction.H:56
void diag(pointPatchField< vector > &, const pointPatchField< tensor > &)