package dr.evomodelxml.coalescent; import dr.evolution.util.Units; import dr.evomodel.coalescent.ExponentialSawtoothModel; import dr.evoxml.util.XMLUnits; import dr.inference.model.Parameter; import dr.xml.*; /** * Parses an element from an DOM document into a ExponentialGrowth. */ public class ExponentialSawtoothModelParser extends AbstractXMLObjectParser { public static final String POPULATION_SIZE = "populationSize"; public static final String GROWTH_RATE = "growthRate"; public static final String WAVELENGTH = "wavelength"; public static final String OFFSET = "offset"; public static final String EXPONENTIAL_SAWTOOTH = "exponentialSawtooth"; public String getParserName() { return EXPONENTIAL_SAWTOOTH; } public Object parseXMLObject(XMLObject xo) throws XMLParseException { Units.Type units = XMLUnits.Utils.getUnitsAttr(xo); XMLObject cxo = xo.getChild(POPULATION_SIZE); Parameter N0Param = (Parameter) cxo.getChild(Parameter.class); cxo = xo.getChild(GROWTH_RATE); Parameter rParam = (Parameter) cxo.getChild(Parameter.class); cxo = xo.getChild(WAVELENGTH); Parameter wavelengthParam = (Parameter) cxo.getChild(Parameter.class); cxo = xo.getChild(OFFSET); Parameter tParam = (Parameter) cxo.getChild(Parameter.class); return new ExponentialSawtoothModel(N0Param, rParam, wavelengthParam, tParam, units); } //************************************************************************ // AbstractXMLObjectParser implementation //************************************************************************ public String getParserDescription() { return "A demographic model of succesive exponential growth and periodic population crashes."; } public Class getReturnType() { return ExponentialSawtoothModel.class; } public XMLSyntaxRule[] getSyntaxRules() { return rules; } private XMLSyntaxRule[] rules = new XMLSyntaxRule[]{ new ElementRule(POPULATION_SIZE, new XMLSyntaxRule[]{new ElementRule(Parameter.class)}), new ElementRule(GROWTH_RATE, new XMLSyntaxRule[]{new ElementRule(Parameter.class)}, "The rate of exponential growth during the growth phase."), new ElementRule(WAVELENGTH, new XMLSyntaxRule[]{new ElementRule(Parameter.class)}, "The wavelength between successive population crashes."), new ElementRule(OFFSET, new XMLSyntaxRule[]{new ElementRule(Parameter.class)}, "The proportion of the last growth phase that is not achieved at the final sample time."), XMLUnits.SYNTAX_RULES[0] }; }