📄 simpsonintegrator.java
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/* * Licensed to the Apache Software Foundation (ASF) under one or more * contributor license agreements. See the NOTICE file distributed with * this work for additional information regarding copyright ownership. * The ASF licenses this file to You under the Apache License, Version 2.0 * (the "License"); you may not use this file except in compliance with * the License. You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */package org.apache.commons.math.analysis;import org.apache.commons.math.FunctionEvaluationException;import org.apache.commons.math.MaxIterationsExceededException;/** * Implements the <a href="http://mathworld.wolfram.com/SimpsonsRule.html"> * Simpson's Rule</a> for integration of real univariate functions. For * reference, see <b>Introduction to Numerical Analysis</b>, ISBN 038795452X, * chapter 3. * <p> * This implementation employs basic trapezoid rule as building blocks to * calculate the Simpson's rule of alternating 2/3 and 4/3.</p> * * @version $Revision: 620312 $ $Date: 2008-02-10 12:28:59 -0700 (Sun, 10 Feb 2008) $ * @since 1.2 */public class SimpsonIntegrator extends UnivariateRealIntegratorImpl { /** serializable version identifier */ private static final long serialVersionUID = 3405465123320678216L; /** * Construct an integrator for the given function. * * @param f function to integrate */ public SimpsonIntegrator(UnivariateRealFunction f) { super(f, 64); } /** * Integrate the function in the given interval. * * @param min the lower bound for the interval * @param max the upper bound for the interval * @return the value of integral * @throws MaxIterationsExceededException if the maximum iteration count is exceeded * or the integrator detects convergence problems otherwise * @throws FunctionEvaluationException if an error occurs evaluating the * function * @throws IllegalArgumentException if any parameters are invalid */ public double integrate(double min, double max) throws MaxIterationsExceededException, FunctionEvaluationException, IllegalArgumentException { int i = 1; double s, olds, t, oldt; clearResult(); verifyInterval(min, max); verifyIterationCount(); TrapezoidIntegrator qtrap = new TrapezoidIntegrator(this.f); if (minimalIterationCount == 1) { s = (4 * qtrap.stage(min, max, 1) - qtrap.stage(min, max, 0)) / 3.0; setResult(s, 1); return result; } // Simpson's rule requires at least two trapezoid stages. olds = 0; oldt = qtrap.stage(min, max, 0); while (i <= maximalIterationCount) { t = qtrap.stage(min, max, i); s = (4 * t - oldt) / 3.0; if (i >= minimalIterationCount) { if (Math.abs(s - olds) <= Math.abs(relativeAccuracy * olds)) { setResult(s, i); return result; } } olds = s; oldt = t; i++; } throw new MaxIterationsExceededException(maximalIterationCount); } /** * Verifies that the iteration limits are valid and within the range. * * @throws IllegalArgumentException if not */ protected void verifyIterationCount() throws IllegalArgumentException { super.verifyIterationCount(); // at most 64 bisection refinements if (maximalIterationCount > 64) { throw new IllegalArgumentException ("Iteration upper limit out of [0, 64] range: " + maximalIterationCount); } }}
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