improved test coverage
git-svn-id: https://svn.apache.org/repos/asf/commons/proper/math/trunk@588650 13f79535-47bb-0310-9956-ffa450edef68
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@ -76,6 +76,99 @@ public class ContinuousOutputModelTest
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}
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public void testModelsMerging()
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throws DerivativeException, IntegratorException {
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// theoretical solution: y[0] = cos(t), y[1] = sin(t)
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FirstOrderDifferentialEquations problem =
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new FirstOrderDifferentialEquations() {
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public void computeDerivatives(double t, double[] y, double[] dot)
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throws DerivativeException {
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dot[0] = -y[1];
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dot[1] = y[0];
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}
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public int getDimension() {
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return 2;
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}
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};
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// integrate backward from π to 0;
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ContinuousOutputModel cm1 = new ContinuousOutputModel();
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FirstOrderIntegrator integ1 =
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new DormandPrince853Integrator(0, 1.0, 1.0e-8, 1.0e-8);
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integ1.setStepHandler(cm1);
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integ1.integrate(problem, Math.PI, new double[] { -1.0, 0.0 },
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0, new double[2]);
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// integrate backward from 2π to π
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ContinuousOutputModel cm2 = new ContinuousOutputModel();
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FirstOrderIntegrator integ2 =
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new DormandPrince853Integrator(0, 0.1, 1.0e-12, 1.0e-12);
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integ2.setStepHandler(cm2);
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integ2.integrate(problem, 2.0 * Math.PI, new double[] { 1.0, 0.0 },
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Math.PI, new double[2]);
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// merge the two half circles
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ContinuousOutputModel cm = new ContinuousOutputModel();
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cm.append(cm2);
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cm.append(new ContinuousOutputModel());
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cm.append(cm1);
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// check circle
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assertEquals(2.0 * Math.PI, cm.getInitialTime(), 1.0e-12);
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assertEquals(0, cm.getFinalTime(), 1.0e-12);
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assertEquals(cm.getFinalTime(), cm.getInterpolatedTime(), 1.0e-12);
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for (double t = 0; t < 2.0 * Math.PI; t += 0.1) {
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cm.setInterpolatedTime(t);
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double[] y = cm.getInterpolatedState();
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assertEquals(Math.cos(t), y[0], 1.0e-7);
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assertEquals(Math.sin(t), y[1], 1.0e-7);
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}
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}
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public void testErrorConditions()
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throws DerivativeException {
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ContinuousOutputModel cm = new ContinuousOutputModel();
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cm.handleStep(buildInterpolator(0, new double[] { 0.0, 1.0, -2.0 }, 1), true);
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// dimension mismatch
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assertTrue(checkAppendError(cm, 1.0, new double[] { 0.0, 1.0 }, 2.0));
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// hole between time ranges
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assertTrue(checkAppendError(cm, 10.0, new double[] { 0.0, 1.0, -2.0 }, 20.0));
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// propagation direction mismatch
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assertTrue(checkAppendError(cm, 1.0, new double[] { 0.0, 1.0, -2.0 }, 0.0));
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// no errors
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assertFalse(checkAppendError(cm, 1.0, new double[] { 0.0, 1.0, -2.0 }, 2.0));
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}
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private boolean checkAppendError(ContinuousOutputModel cm,
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double t0, double[] y0, double t1)
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throws DerivativeException {
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try {
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ContinuousOutputModel otherCm = new ContinuousOutputModel();
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otherCm.handleStep(buildInterpolator(t0, y0, t1), true);
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cm.append(otherCm);
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} catch(IllegalArgumentException iae) {
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//expected behavior
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return true;
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}
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return false;
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}
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private StepInterpolator buildInterpolator(double t0, double[] y0, double t1) {
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DummyStepInterpolator interpolator = new DummyStepInterpolator(y0, t1 >= t0);
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interpolator.storeTime(t0);
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interpolator.shift();
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interpolator.storeTime(t1);
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return interpolator;
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}
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public void checkValue(double value, double reference) {
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assertTrue(Math.abs(value - reference) < 1.0e-10);
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}
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