public class org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker extends org.apache.commons.math.optim.AbstractConvergenceChecker
{
private static final int ITERATION_CHECK_DISABLED;
private final int maxIterationCount;
public void <init>(double, double)
{
int v;
org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker v;
double v, v;
v := @this: org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker;
v := @parameter: double;
v := @parameter: double;
specialinvoke v.<org.apache.commons.math.optim.AbstractConvergenceChecker: void <init>(double,double)>(v, v);
v = (int) -1;
v.<org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker: int maxIterationCount> = v;
return;
}
public void <init>(double, double, int)
{
org.apache.commons.math.exception.NotStrictlyPositiveException v;
int v;
java.lang.Integer v;
org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker v;
double v, v;
v := @this: org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker;
v := @parameter: double;
v := @parameter: double;
v := @parameter: int;
specialinvoke v.<org.apache.commons.math.optim.AbstractConvergenceChecker: void <init>(double,double)>(v, v);
if v > 0 goto label;
v = new org.apache.commons.math.exception.NotStrictlyPositiveException;
v = staticinvoke <java.lang.Integer: java.lang.Integer valueOf(int)>(v);
specialinvoke v.<org.apache.commons.math.exception.NotStrictlyPositiveException: void <init>(java.lang.Number)>(v);
throw v;
label:
v.<org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker: int maxIterationCount> = v;
return;
}
public boolean converged(int, org.apache.commons.math.optim.univariate.UnivariatePointValuePair, org.apache.commons.math.optim.univariate.UnivariatePointValuePair)
{
org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker v;
byte v, v;
int v, v, v, v;
boolean v;
double v, v, v, v, v, v, v, v, v, v;
org.apache.commons.math.optim.univariate.UnivariatePointValuePair v, v;
v := @this: org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker;
v := @parameter: int;
v := @parameter: org.apache.commons.math.optim.univariate.UnivariatePointValuePair;
v := @parameter: org.apache.commons.math.optim.univariate.UnivariatePointValuePair;
v = v.<org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker: int maxIterationCount>;
v = (int) -1;
if v == v goto label;
v = v.<org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker: int maxIterationCount>;
if v < v goto label;
return 1;
label:
v = virtualinvoke v.<org.apache.commons.math.optim.univariate.UnivariatePointValuePair: double getValue()>();
v = virtualinvoke v.<org.apache.commons.math.optim.univariate.UnivariatePointValuePair: double getValue()>();
v = v - v;
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 = staticinvoke <org.apache.commons.math.util.FastMath: double abs(double)>(v);
v = staticinvoke <org.apache.commons.math.util.FastMath: double max(double,double)>(v, v);
v = virtualinvoke v.<org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker: double getRelativeThreshold()>();
v = v * v;
v = v cmpg v;
if v <= 0 goto label;
v = virtualinvoke v.<org.apache.commons.math.optim.univariate.SimpleUnivariateValueChecker: double getAbsoluteThreshold()>();
v = v cmpg v;
if v > 0 goto label;
label:
v = 1;
goto label;
label:
v = 0;
label:
return v;
}
}