Class LinearSolverLuBase_CD64
- java.lang.Object
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- org.ejml.alg.dense.linsol.LinearSolverAbstract_CD64
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- org.ejml.alg.dense.linsol.lu.LinearSolverLuBase_CD64
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- All Implemented Interfaces:
- LinearSolver<CDenseMatrix64F>
- Direct Known Subclasses:
- LinearSolverLu_CD64
public abstract class LinearSolverLuBase_CD64 extends LinearSolverAbstract_CD64
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Constructor Summary
Constructors Constructor and Description LinearSolverLuBase_CD64(LUDecompositionBase_CD64 decomp)
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Method Summary
All Methods Instance Methods Concrete Methods Modifier and Type Method and Description LUDecompositionBase_CD64getDecomposition()If a decomposition class was used internally then this will return that class.voidinvert(CDenseMatrix64F A_inv)Computes the inverse of of the 'A' matrix passed intoLinearSolver.setA(org.ejml.data.Matrix)and writes the results to the provided matrix.booleanmodifiesA()Returns true if the passed in matrix toLinearSolver.setA(org.ejml.data.Matrix)is modified.booleanmodifiesB()Returns true if the passed in 'B' matrix toLinearSolver.solve(org.ejml.data.Matrix, org.ejml.data.Matrix)is modified.doublequality()Returns a very quick to compute measure of how singular the system is.booleansetA(CDenseMatrix64F A)Specifies the A matrix in the linear equation.-
Methods inherited from class org.ejml.alg.dense.linsol.LinearSolverAbstract_CD64
getA
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Methods inherited from class java.lang.Object
equals, getClass, hashCode, notify, notifyAll, toString, wait, wait, wait
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Methods inherited from interface org.ejml.interfaces.linsol.LinearSolver
solve
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Constructor Detail
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LinearSolverLuBase_CD64
public LinearSolverLuBase_CD64(LUDecompositionBase_CD64 decomp)
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Method Detail
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setA
public boolean setA(CDenseMatrix64F A)
Description copied from interface:LinearSolverSpecifies the A matrix in the linear equation. A reference might be saved and it might also be modified depending on the implementation. If it is modified then
LinearSolver.modifiesA()will return true.If this value returns true that does not guarantee a valid solution was generated. This is because some decompositions don't detect singular matrices.
- Parameters:
A- The 'A' matrix in the linear equation. Might be modified or save the reference.- Returns:
- true if it can be processed.
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quality
public double quality()
Description copied from interface:LinearSolverReturns a very quick to compute measure of how singular the system is. This measure will be invariant to the scale of the matrix and always be positive, with larger values indicating it is less singular. If not supported by the solver then the runtime exception IllegalArgumentException is thrown. This is NOT the matrix's condition.
How this function is implemented is not specified. One possible implementation is the following: In many decompositions a triangular matrix is extracted. The determinant of a triangular matrix is easily computed and once normalized to be scale invariant and its absolute value taken it will provide functionality described above.
- Returns:
- The quality of the linear system.
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invert
public void invert(CDenseMatrix64F A_inv)
Description copied from interface:LinearSolverComputes the inverse of of the 'A' matrix passed intoLinearSolver.setA(org.ejml.data.Matrix)and writes the results to the provided matrix. If 'A_inv' needs to be different from 'A' is implementation dependent.- Specified by:
invertin interfaceLinearSolver<CDenseMatrix64F>- Overrides:
invertin classLinearSolverAbstract_CD64- Parameters:
A_inv- Where the inverted matrix saved. Modified.
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modifiesA
public boolean modifiesA()
Description copied from interface:LinearSolverReturns true if the passed in matrix toLinearSolver.setA(org.ejml.data.Matrix)is modified.- Returns:
- true if A is modified in setA().
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modifiesB
public boolean modifiesB()
Description copied from interface:LinearSolverReturns true if the passed in 'B' matrix toLinearSolver.solve(org.ejml.data.Matrix, org.ejml.data.Matrix)is modified.- Returns:
- true if B is modified in solve(B,X).
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getDecomposition
public LUDecompositionBase_CD64 getDecomposition()
Description copied from interface:LinearSolverIf a decomposition class was used internally then this will return that class. Most linear solvers decompose the input matrix into a more simplistic form. However some solutions do not require decomposition, e.g. inverse by minor.- Returns:
- Internal decomposition class. If there is none then null.
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