public class org.apache.commons.math.complex.Complex extends java.lang.Object implements org.apache.commons.math.FieldElement, java.io.Serializable
{
public static final org.apache.commons.math.complex.Complex I;
public static final org.apache.commons.math.complex.Complex NaN;
public static final org.apache.commons.math.complex.Complex INF;
public static final org.apache.commons.math.complex.Complex ONE;
public static final org.apache.commons.math.complex.Complex ZERO;
private static final long serialVersionUID;
private final double imaginary;
private final double real;
private final transient boolean isNaN;
private final transient boolean isInfinite;
public void <init>(double)
{
org.apache.commons.math.complex.Complex v;
double v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: double;
specialinvoke v.<org.apache.commons.math.complex.Complex: void <init>(double,double)>(v, 0.0);
return;
}
public void <init>(double, double)
{
org.apache.commons.math.complex.Complex v;
boolean v, v, v, v, v, v, v;
double v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: double;
v := @parameter: double;
specialinvoke v.<java.lang.Object: void <init>()>();
v.<org.apache.commons.math.complex.Complex: double real> = v;
v.<org.apache.commons.math.complex.Complex: double imaginary> = v;
v = staticinvoke <java.lang.Double: boolean isNaN(double)>(v);
if v != 0 goto label;
v = staticinvoke <java.lang.Double: boolean isNaN(double)>(v);
if v == 0 goto label;
label:
v = 1;
goto label;
label:
v = 0;
label:
v.<org.apache.commons.math.complex.Complex: boolean isNaN> = v;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v != 0 goto label;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v == 0 goto label;
label:
v = 1;
goto label;
label:
v = 0;
label:
v.<org.apache.commons.math.complex.Complex: boolean isInfinite> = v;
return;
}
public double abs()
{
byte v, v, v;
boolean v, v;
org.apache.commons.math.complex.Complex v;
double v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
return #NaN;
label:
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: boolean isInfinite()>();
if v == 0 goto label;
return #Infinity;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = v cmpg v;
if v >= 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v cmpl 0.0;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v / v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = v * v;
v = 1.0 + v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sqrt(double)>(v);
v = v * v;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v cmpl 0.0;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v / v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = v * v;
v = 1.0 + v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sqrt(double)>(v);
v = v * v;
return v;
}
public org.apache.commons.math.complex.Complex add(org.apache.commons.math.complex.Complex) throws org.apache.commons.math.exception.NullArgumentException
{
org.apache.commons.math.complex.Complex v, v, v, v;
boolean v, v;
double v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: org.apache.commons.math.complex.Complex;
staticinvoke <org.apache.commons.math.util.MathUtils: void checkNotNull(java.lang.Object)>(v);
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double getReal()>();
v = v + v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double getImaginary()>();
v = v + v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex add(double)
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v, v;
double v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: double;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = staticinvoke <java.lang.Double: boolean isNaN(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v + v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex conjugate()
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v;
double v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = neg v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex divide(org.apache.commons.math.complex.Complex) throws org.apache.commons.math.exception.NullArgumentException
{
byte v, v, v;
boolean v, v, v, v;
org.apache.commons.math.complex.Complex v, v, v, v, v, v, v;
double v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: org.apache.commons.math.complex.Complex;
staticinvoke <org.apache.commons.math.util.MathUtils: void checkNotNull(java.lang.Object)>(v);
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double getReal()>();
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double getImaginary()>();
v = v cmpl 0.0;
if v != 0 goto label;
v = v cmpl 0.0;
if v != 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: boolean isInfinite()>();
if v == 0 goto label;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: boolean isInfinite()>();
if v != 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex ZERO>;
return v;
label:
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = v cmpg v;
if v >= 0 goto label;
v = v / v;
v = v * v;
v = v + v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v + v;
v = v / v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v - v;
v = v / v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
label:
v = v / v;
v = v * v;
v = v + v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v + v;
v = v / v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v * v;
v = v - v;
v = v / v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex divide(double)
{
org.apache.commons.math.complex.Complex v, v, v, v, v;
byte v;
boolean v, v, v, v;
double v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: double;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = staticinvoke <java.lang.Double: boolean isNaN(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v cmpl 0.0;
if v != 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v == 0 goto label;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: boolean isInfinite()>();
if v != 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex ZERO>;
goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
label:
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v / v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v / v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex reciprocal()
{
byte v, v, v;
boolean v, v;
org.apache.commons.math.complex.Complex v, v, v, v, v, v;
double v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v cmpl 0.0;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v cmpl 0.0;
if v != 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex INF>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: boolean isInfinite>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex ZERO>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = v cmpg v;
if v >= 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v / v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v + v;
v = 1.0 / v;
v = v * v;
v = neg v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v / v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v + v;
v = 1.0 / v;
v = neg v;
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public boolean equals(java.lang.Object)
{
org.apache.commons.math.complex.Complex v;
byte v, v;
java.lang.Object v;
boolean v, v, v, v;
double v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: java.lang.Object;
if v != v goto label;
return 1;
label:
v = v instanceof org.apache.commons.math.complex.Complex;
if v == 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v cmpl v;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v cmpl v;
if v != 0 goto label;
v = 1;
goto label;
label:
v = 0;
label:
return v;
label:
return 0;
}
public int hashCode()
{
org.apache.commons.math.complex.Complex v;
int v, v, v, v, v;
boolean v;
double v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
return 7;
label:
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.MathUtils: int hash(double)>(v);
v = 17 * v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.MathUtils: int hash(double)>(v);
v = v + v;
v = 37 * v;
return v;
}
public double getImaginary()
{
org.apache.commons.math.complex.Complex v;
double v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
return v;
}
public double getReal()
{
org.apache.commons.math.complex.Complex v;
double v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: double real>;
return v;
}
public boolean isNaN()
{
org.apache.commons.math.complex.Complex v;
boolean v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
return v;
}
public boolean isInfinite()
{
org.apache.commons.math.complex.Complex v;
boolean v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isInfinite>;
return v;
}
public org.apache.commons.math.complex.Complex multiply(org.apache.commons.math.complex.Complex) throws org.apache.commons.math.exception.NullArgumentException
{
org.apache.commons.math.complex.Complex v, v, v, v, v;
boolean v, v, v, v, v, v;
double v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: org.apache.commons.math.complex.Complex;
staticinvoke <org.apache.commons.math.util.MathUtils: void checkNotNull(java.lang.Object)>(v);
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex INF>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v * v;
v = v - v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v * v;
v = v + v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex multiply(int)
{
org.apache.commons.math.complex.Complex v, v, v, v;
int v;
boolean v, v, v;
double v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: int;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex INF>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex multiply(double)
{
org.apache.commons.math.complex.Complex v, v, v, v;
boolean v, v, v, v, v;
double v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: double;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = staticinvoke <java.lang.Double: boolean isNaN(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v != 0 goto label;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex INF>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex negate()
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v;
double v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = neg v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = neg v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex subtract(org.apache.commons.math.complex.Complex) throws org.apache.commons.math.exception.NullArgumentException
{
org.apache.commons.math.complex.Complex v, v, v, v;
boolean v, v;
double v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: org.apache.commons.math.complex.Complex;
staticinvoke <org.apache.commons.math.util.MathUtils: void checkNotNull(java.lang.Object)>(v);
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double getReal()>();
v = v - v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double getImaginary()>();
v = v - v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex subtract(double)
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v, v;
double v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: double;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = staticinvoke <java.lang.Double: boolean isNaN(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v - v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex acos()
{
org.apache.commons.math.complex.Complex v, v, v, v, v, v, v, v, v, v;
boolean v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex sqrt1z()>();
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex I>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex multiply(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex add(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex log()>();
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex I>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex negate()>();
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex multiply(org.apache.commons.math.complex.Complex)>(v);
return v;
}
public org.apache.commons.math.complex.Complex asin()
{
org.apache.commons.math.complex.Complex v, v, v, v, v, v, v, v, v, v;
boolean v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex sqrt1z()>();
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex I>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex multiply(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex add(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex log()>();
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex I>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex negate()>();
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex multiply(org.apache.commons.math.complex.Complex)>(v);
return v;
}
public org.apache.commons.math.complex.Complex atan()
{
org.apache.commons.math.complex.Complex v, v, v, v, v, v, v, v, v, v, v, v;
boolean v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex I>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex add(org.apache.commons.math.complex.Complex)>(v);
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex I>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex subtract(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex divide(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex log()>();
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex I>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(2.0, 0.0);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex divide(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex multiply(org.apache.commons.math.complex.Complex)>(v);
return v;
}
public org.apache.commons.math.complex.Complex cos()
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v;
double v, v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cos(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cosh(double)>(v);
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sin(double)>(v);
v = neg v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sinh(double)>(v);
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex cosh()
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v;
double v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cosh(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cos(double)>(v);
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sinh(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sin(double)>(v);
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex exp()
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v;
double v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double exp(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cos(double)>(v);
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sin(double)>(v);
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex log()
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v;
double v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double abs()>();
v = staticinvoke <org.apache.commons.math.util.FastMath: double log(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double atan2(double,double)>(v, v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex pow(org.apache.commons.math.complex.Complex) throws org.apache.commons.math.exception.NullArgumentException
{
org.apache.commons.math.complex.Complex v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: org.apache.commons.math.complex.Complex;
staticinvoke <org.apache.commons.math.util.MathUtils: void checkNotNull(java.lang.Object)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex log()>();
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex multiply(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex exp()>();
return v;
}
public org.apache.commons.math.complex.Complex pow(double)
{
org.apache.commons.math.complex.Complex v, v, v, v;
double v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: double;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex log()>();
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex multiply(double)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex exp()>();
return v;
}
public org.apache.commons.math.complex.Complex sin()
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v;
double v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sin(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cosh(double)>(v);
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cos(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sinh(double)>(v);
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex sinh()
{
org.apache.commons.math.complex.Complex v, v, v;
boolean v;
double v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sinh(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cos(double)>(v);
v = v * v;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cosh(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sin(double)>(v);
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex sqrt()
{
org.apache.commons.math.complex.Complex v, v, v, v, v;
byte v, v, v;
boolean v;
double v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v cmpl 0.0;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v cmpl 0.0;
if v != 0 goto label;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(0.0, 0.0);
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double abs()>();
v = v + v;
v = v / 2.0;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sqrt(double)>(v);
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v cmpl 0.0;
if v < 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = 2.0 * v;
v = v / v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = 2.0 * v;
v = v / v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <org.apache.commons.math.util.FastMath: double copySign(double,double)>(1.0, v);
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex sqrt1z()
{
org.apache.commons.math.complex.Complex v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(1.0, 0.0);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex multiply(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex subtract(org.apache.commons.math.complex.Complex)>(v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex sqrt()>();
return v;
}
public org.apache.commons.math.complex.Complex tan()
{
org.apache.commons.math.complex.Complex v, v, v, v, v;
byte v, v;
boolean v, v;
double v, v, v, v, v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v cmpl 20.0;
if v <= 0 goto label;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(0.0, 1.0);
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = v cmpg -20.0;
if v >= 0 goto label;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(0.0, -1.0);
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = 2.0 * v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = 2.0 * v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cos(double)>(v);
v = staticinvoke <org.apache.commons.math.util.FastMath: double cosh(double)>(v);
v = v + v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sin(double)>(v);
v = v / v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sinh(double)>(v);
v = v / v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.Complex tanh()
{
org.apache.commons.math.complex.Complex v, v, v, v, v;
byte v, v;
boolean v, v;
double v, v, v, v, v, v, v, v, v, v, v, v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v != 0 goto label;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = staticinvoke <java.lang.Double: boolean isInfinite(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v cmpl 20.0;
if v <= 0 goto label;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(1.0, 0.0);
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v cmpg -20.0;
if v >= 0 goto label;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(-1.0, 0.0);
return v;
label:
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = 2.0 * v;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = 2.0 * v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cosh(double)>(v);
v = staticinvoke <org.apache.commons.math.util.FastMath: double cos(double)>(v);
v = v + v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sinh(double)>(v);
v = v / v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sin(double)>(v);
v = v / v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public double getArgument()
{
org.apache.commons.math.complex.Complex v;
double v, v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double getImaginary()>();
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double getReal()>();
v = staticinvoke <org.apache.commons.math.util.FastMath: double atan2(double,double)>(v, v);
return v;
}
public java.util.List nthRoot(int) throws org.apache.commons.math.exception.NotPositiveException
{
java.lang.Integer v;
java.util.ArrayList v;
org.apache.commons.math.complex.Complex v, v, v, v;
org.apache.commons.math.exception.NotPositiveException v;
int v, v;
boolean v, v;
double v, v, v, v, v, v, v, v, v, v, v;
org.apache.commons.math.exception.util.LocalizedFormats v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: int;
if v > 0 goto label;
v = new org.apache.commons.math.exception.NotPositiveException;
v = <org.apache.commons.math.exception.util.LocalizedFormats: org.apache.commons.math.exception.util.LocalizedFormats CANNOT_COMPUTE_NTH_ROOT_FOR_NEGATIVE_N>;
v = staticinvoke <java.lang.Integer: java.lang.Integer valueOf(int)>(v);
specialinvoke v.<org.apache.commons.math.exception.NotPositiveException: void <init>(org.apache.commons.math.exception.util.Localizable,java.lang.Number)>(v, v);
throw v;
label:
v = new java.util.ArrayList;
specialinvoke v.<java.util.ArrayList: void <init>()>();
v = v.<org.apache.commons.math.complex.Complex: boolean isNaN>;
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
interfaceinvoke v.<java.util.List: boolean add(java.lang.Object)>(v);
return v;
label:
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: boolean isInfinite()>();
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex INF>;
interfaceinvoke v.<java.util.List: boolean add(java.lang.Object)>(v);
return v;
label:
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double abs()>();
v = 1.0 / v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double pow(double,double)>(v, v);
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: double getArgument()>();
v = v / v;
v = 6.283185307179586 / v;
v = v;
v = 0;
label:
if v >= v goto label;
v = staticinvoke <org.apache.commons.math.util.FastMath: double cos(double)>(v);
v = v * v;
v = staticinvoke <org.apache.commons.math.util.FastMath: double sin(double)>(v);
v = v * v;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
interfaceinvoke v.<java.util.List: boolean add(java.lang.Object)>(v);
v = v + v;
v = v + 1;
goto label;
label:
return v;
}
protected org.apache.commons.math.complex.Complex createComplex(double, double)
{
org.apache.commons.math.complex.Complex v, v;
double v, v;
v := @this: org.apache.commons.math.complex.Complex;
v := @parameter: double;
v := @parameter: double;
v = new org.apache.commons.math.complex.Complex;
specialinvoke v.<org.apache.commons.math.complex.Complex: void <init>(double,double)>(v, v);
return v;
}
public static org.apache.commons.math.complex.Complex valueOf(double, double)
{
org.apache.commons.math.complex.Complex v, v;
boolean v, v;
double v, v;
v := @parameter: double;
v := @parameter: double;
v = staticinvoke <java.lang.Double: boolean isNaN(double)>(v);
if v != 0 goto label;
v = staticinvoke <java.lang.Double: boolean isNaN(double)>(v);
if v == 0 goto label;
label:
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = new org.apache.commons.math.complex.Complex;
specialinvoke v.<org.apache.commons.math.complex.Complex: void <init>(double,double)>(v, v);
return v;
}
public static org.apache.commons.math.complex.Complex valueOf(double)
{
org.apache.commons.math.complex.Complex v, v;
boolean v;
double v;
v := @parameter: double;
v = staticinvoke <java.lang.Double: boolean isNaN(double)>(v);
if v == 0 goto label;
v = <org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN>;
return v;
label:
v = new org.apache.commons.math.complex.Complex;
specialinvoke v.<org.apache.commons.math.complex.Complex: void <init>(double)>(v);
return v;
}
protected final java.lang.Object readResolve()
{
org.apache.commons.math.complex.Complex v, v;
double v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = virtualinvoke v.<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex createComplex(double,double)>(v, v);
return v;
}
public org.apache.commons.math.complex.ComplexField getField()
{
org.apache.commons.math.complex.Complex v;
org.apache.commons.math.complex.ComplexField v;
v := @this: org.apache.commons.math.complex.Complex;
v = staticinvoke <org.apache.commons.math.complex.ComplexField: org.apache.commons.math.complex.ComplexField getInstance()>();
return v;
}
public java.lang.String toString()
{
org.apache.commons.math.complex.Complex v;
java.lang.String v;
double v, v;
v := @this: org.apache.commons.math.complex.Complex;
v = v.<org.apache.commons.math.complex.Complex: double real>;
v = v.<org.apache.commons.math.complex.Complex: double imaginary>;
v = dynamicinvoke "makeConcatWithConstants" <java.lang.String (double,double)>(v, v) <java.lang.invoke.StringConcatFactory: java.lang.invoke.CallSite makeConcatWithConstants(java.lang.invoke.MethodHandles$Lookup,java.lang.String,java.lang.invoke.MethodType,java.lang.String,java.lang.Object[])>("(\u, \u)");
return v;
}
static void <clinit>()
{
org.apache.commons.math.complex.Complex v, v, v, v, v;
v = new org.apache.commons.math.complex.Complex;
specialinvoke v.<org.apache.commons.math.complex.Complex: void <init>(double,double)>(0.0, 1.0);
<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex I> = v;
v = new org.apache.commons.math.complex.Complex;
specialinvoke v.<org.apache.commons.math.complex.Complex: void <init>(double,double)>(#NaN, #NaN);
<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex NaN> = v;
v = new org.apache.commons.math.complex.Complex;
specialinvoke v.<org.apache.commons.math.complex.Complex: void <init>(double,double)>(#Infinity, #Infinity);
<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex INF> = v;
v = new org.apache.commons.math.complex.Complex;
specialinvoke v.<org.apache.commons.math.complex.Complex: void <init>(double,double)>(1.0, 0.0);
<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex ONE> = v;
v = new org.apache.commons.math.complex.Complex;
specialinvoke v.<org.apache.commons.math.complex.Complex: void <init>(double,double)>(0.0, 0.0);
<org.apache.commons.math.complex.Complex: org.apache.commons.math.complex.Complex ZERO> = v;
return;
}
}