class oadd.org.apache.commons.math.linear.EigenDecomposition$Solver extends java.lang.Object implements oadd.org.apache.commons.math.linear.DecompositionSolver
{
private double[] realEigenvalues;
private double[] imagEigenvalues;
private final oadd.org.apache.commons.math.linear.ArrayRealVector[] eigenvectors;
private void <init>(double[], double[], oadd.org.apache.commons.math.linear.ArrayRealVector[])
{
oadd.org.apache.commons.math.linear.EigenDecomposition$Solver v;
double[] v, v;
oadd.org.apache.commons.math.linear.ArrayRealVector[] v;
v := @this: oadd.org.apache.commons.math.linear.EigenDecomposition$Solver;
v := @parameter: double[];
v := @parameter: double[];
v := @parameter: oadd.org.apache.commons.math.linear.ArrayRealVector[];
specialinvoke v.<java.lang.Object: void <init>()>();
v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] realEigenvalues> = v;
v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] imagEigenvalues> = v;
v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: oadd.org.apache.commons.math.linear.ArrayRealVector[] eigenvectors> = v;
return;
}
public oadd.org.apache.commons.math.linear.RealVector solve(oadd.org.apache.commons.math.linear.RealVector)
{
oadd.org.apache.commons.math.linear.EigenDecomposition$Solver v;
double[] v, v, v, v;
oadd.org.apache.commons.math.linear.RealVector v;
int v, v, v, v, v;
boolean v;
double v, v, v, v, v, v, v;
oadd.org.apache.commons.math.linear.ArrayRealVector v, v;
oadd.org.apache.commons.math.linear.SingularMatrixException v;
oadd.org.apache.commons.math.exception.DimensionMismatchException v;
oadd.org.apache.commons.math.linear.ArrayRealVector[] v;
v := @this: oadd.org.apache.commons.math.linear.EigenDecomposition$Solver;
v := @parameter: oadd.org.apache.commons.math.linear.RealVector;
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: boolean isNonSingular()>();
if v != 0 goto label;
v = new oadd.org.apache.commons.math.linear.SingularMatrixException;
specialinvoke v.<oadd.org.apache.commons.math.linear.SingularMatrixException: void <init>()>();
throw v;
label:
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] realEigenvalues>;
v = lengthof v;
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.RealVector: int getDimension()>();
if v == v goto label;
v = new oadd.org.apache.commons.math.exception.DimensionMismatchException;
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.RealVector: int getDimension()>();
specialinvoke v.<oadd.org.apache.commons.math.exception.DimensionMismatchException: void <init>(int,int)>(v, v);
throw v;
label:
v = newarray (double)[v];
v = 0;
label:
if v >= v goto label;
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: oadd.org.apache.commons.math.linear.ArrayRealVector[] eigenvectors>;
v = v[v];
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.ArrayRealVector: double[] getDataRef()>();
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.ArrayRealVector: double dotProduct(oadd.org.apache.commons.math.linear.RealVector)>(v);
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] realEigenvalues>;
v = v[v];
v = v / v;
v = 0;
label:
if v >= v goto label;
v = v[v];
v = v[v];
v = v * v;
v = v + v;
v[v] = v;
v = v + 1;
goto label;
label:
v = v + 1;
goto label;
label:
v = new oadd.org.apache.commons.math.linear.ArrayRealVector;
specialinvoke v.<oadd.org.apache.commons.math.linear.ArrayRealVector: void <init>(double[],boolean)>(v, 0);
return v;
}
public oadd.org.apache.commons.math.linear.RealMatrix solve(oadd.org.apache.commons.math.linear.RealMatrix)
{
oadd.org.apache.commons.math.linear.Array2DRowRealMatrix v;
boolean v;
oadd.org.apache.commons.math.exception.DimensionMismatchException v;
double[][] v;
oadd.org.apache.commons.math.linear.EigenDecomposition$Solver v;
double[] v, v, v, v, v, v;
int v, v, v, v, v, v, v, v, v;
double v, v, v, v, v, v, v, v, v, v, v;
oadd.org.apache.commons.math.linear.ArrayRealVector v;
oadd.org.apache.commons.math.linear.SingularMatrixException v;
oadd.org.apache.commons.math.linear.RealMatrix v;
oadd.org.apache.commons.math.linear.ArrayRealVector[] v;
v := @this: oadd.org.apache.commons.math.linear.EigenDecomposition$Solver;
v := @parameter: oadd.org.apache.commons.math.linear.RealMatrix;
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: boolean isNonSingular()>();
if v != 0 goto label;
v = new oadd.org.apache.commons.math.linear.SingularMatrixException;
specialinvoke v.<oadd.org.apache.commons.math.linear.SingularMatrixException: void <init>()>();
throw v;
label:
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] realEigenvalues>;
v = lengthof v;
v = interfaceinvoke v.<oadd.org.apache.commons.math.linear.RealMatrix: int getRowDimension()>();
if v == v goto label;
v = new oadd.org.apache.commons.math.exception.DimensionMismatchException;
v = interfaceinvoke v.<oadd.org.apache.commons.math.linear.RealMatrix: int getRowDimension()>();
specialinvoke v.<oadd.org.apache.commons.math.exception.DimensionMismatchException: void <init>(int,int)>(v, v);
throw v;
label:
v = interfaceinvoke v.<oadd.org.apache.commons.math.linear.RealMatrix: int getColumnDimension()>();
v = newmultiarray (double)[v][v];
v = newarray (double)[v];
v = 0;
label:
if v >= v goto label;
v = 0;
label:
if v >= v goto label;
v = interfaceinvoke v.<oadd.org.apache.commons.math.linear.RealMatrix: double getEntry(int,int)>(v, v);
v[v] = v;
v = v[v];
v[v] = 0.0;
v = v + 1;
goto label;
label:
v = 0;
label:
if v >= v goto label;
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: oadd.org.apache.commons.math.linear.ArrayRealVector[] eigenvectors>;
v = v[v];
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.ArrayRealVector: double[] getDataRef()>();
v = 0.0;
v = 0;
label:
if v >= v goto label;
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.ArrayRealVector: double getEntry(int)>(v);
v = v[v];
v = v * v;
v = v + v;
v = v + 1;
goto label;
label:
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] realEigenvalues>;
v = v[v];
v = v / v;
v = 0;
label:
if v >= v goto label;
v = v[v];
v = v[v];
v = v[v];
v = v * v;
v = v + v;
v[v] = v;
v = v + 1;
goto label;
label:
v = v + 1;
goto label;
label:
v = v + 1;
goto label;
label:
v = new oadd.org.apache.commons.math.linear.Array2DRowRealMatrix;
specialinvoke v.<oadd.org.apache.commons.math.linear.Array2DRowRealMatrix: void <init>(double[][],boolean)>(v, 0);
return v;
}
public boolean isNonSingular()
{
oadd.org.apache.commons.math.linear.EigenDecomposition$Solver v;
double[] v, v, v;
byte v, v;
int v, v;
double v, v;
v := @this: oadd.org.apache.commons.math.linear.EigenDecomposition$Solver;
v = 0;
label:
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] realEigenvalues>;
v = lengthof v;
if v >= v goto label;
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] realEigenvalues>;
v = v[v];
v = v cmpl 0.0;
if v != 0 goto label;
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] imagEigenvalues>;
v = v[v];
v = v cmpl 0.0;
if v != 0 goto label;
return 0;
label:
v = v + 1;
goto label;
label:
return 1;
}
public oadd.org.apache.commons.math.linear.RealMatrix getInverse()
{
oadd.org.apache.commons.math.linear.EigenDecomposition$Solver v;
double[] v, v, v, v;
int v, v, v, v;
boolean v;
double v, v, v, v, v, v;
oadd.org.apache.commons.math.linear.ArrayRealVector v;
oadd.org.apache.commons.math.linear.SingularMatrixException v;
oadd.org.apache.commons.math.linear.RealMatrix v;
double[][] v;
oadd.org.apache.commons.math.linear.ArrayRealVector[] v;
v := @this: oadd.org.apache.commons.math.linear.EigenDecomposition$Solver;
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: boolean isNonSingular()>();
if v != 0 goto label;
v = new oadd.org.apache.commons.math.linear.SingularMatrixException;
specialinvoke v.<oadd.org.apache.commons.math.linear.SingularMatrixException: void <init>()>();
throw v;
label:
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] realEigenvalues>;
v = lengthof v;
v = newmultiarray (double)[v][v];
v = 0;
label:
if v >= v goto label;
v = v[v];
v = 0;
label:
if v >= v goto label;
v = 0.0;
v = 0;
label:
if v >= v goto label;
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: oadd.org.apache.commons.math.linear.ArrayRealVector[] eigenvectors>;
v = v[v];
v = virtualinvoke v.<oadd.org.apache.commons.math.linear.ArrayRealVector: double[] getDataRef()>();
v = v[v];
v = v[v];
v = v * v;
v = v.<oadd.org.apache.commons.math.linear.EigenDecomposition$Solver: double[] realEigenvalues>;
v = v[v];
v = v / v;
v = v + v;
v = v + 1;
goto label;
label:
v[v] = v;
v = v + 1;
goto label;
label:
v = v + 1;
goto label;
label:
v = staticinvoke <oadd.org.apache.commons.math.linear.MatrixUtils: oadd.org.apache.commons.math.linear.RealMatrix createRealMatrix(double[][])>(v);
return v;
}
}