org.jbasics.math.strategies.PiSeriesAlgorithmStrategy Maven / Gradle / Ivy
/*
* Copyright (c) 2009-2015
* IT-Consulting Stephan Schloepke (http://www.schloepke.de/)
* klemm software consulting Mirko Klemm (http://www.klemm-scs.com/)
*
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* copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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package org.jbasics.math.strategies;
import org.jbasics.math.AlgorithmStrategy;
import org.jbasics.math.BigRational;
import org.jbasics.math.impl.Faculty;
import org.jbasics.math.impl.SquareRootIrationalNumber;
import java.math.BigDecimal;
import java.math.BigInteger;
import java.math.MathContext;
import java.math.RoundingMode;
public class PiSeriesAlgorithmStrategy implements AlgorithmStrategy {
public static final AlgorithmStrategy STRATEGY = new PiSeriesAlgorithmStrategy();
private static final BigDecimal END_CONSTANT = new BigDecimal("4900.5");
private static final BigInteger C1 = BigInteger.valueOf(1103);
private static final BigInteger C2 = BigInteger.valueOf(26390);
private static final BigInteger C3 = BigInteger.valueOf(396);
public BigDecimal calculate(MathContext mcOut, BigDecimal guess, BigDecimal... xn) {
MathContext mc = new MathContext(mcOut.getPrecision() + 2, RoundingMode.HALF_EVEN);
Faculty k4 = new Faculty(4);
Faculty k = new Faculty();
BigInteger c2k = C2.negate();
BigRational temp = BigRational.ZERO;
int max = (mcOut.getPrecision() + 8) / 8 + 3;
for (int i = 0; i < max; i++) {
BigInteger numerator = k4.next().multiply(C1.add(c2k = c2k.add(C2)));
BigInteger denominator = k.next().pow(4).multiply(C3.pow(4 * i));
temp = temp.add(new BigRational(numerator, denominator));
}
BigDecimal pi = temp.reciprocal().decimalValue(mc).multiply(
END_CONSTANT.divide(SquareRootIrationalNumber.SQUARE_ROOT_OF_2.valueToPrecision(mc), mc), mc);
if (xn == null || xn.length == 0) {
return pi.round(mcOut);
} else {
return pi.multiply(xn[0], mcOut);
}
}
}
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