package .classifiers;
 
public class ClothingSizeClassifier 
    implements java.io.Serializable, iapp.services.Classifier {
 
    public static final ClothingSizeClassifier ONE_SIZE = new ClothingSizeClassifier("OS");
    public static final ClothingSizeClassifier EXTRA_SMALL = new ClothingSizeClassifier("XS");
    public static final ClothingSizeClassifier SMALL = new ClothingSizeClassifier("S");
    public static final ClothingSizeClassifier MEDIUM = new ClothingSizeClassifier("M");
    public static final ClothingSizeClassifier LARGE = new ClothingSizeClassifier("L");
    public static final ClothingSizeClassifier EXTRA_LARGE = new ClothingSizeClassifier("XL");
    public static final ClothingSizeClassifier EXTRA2_LARGE = new ClothingSizeClassifier("2XL");
    public static final ClothingSizeClassifier EXTRA3_LARGE = new ClothingSizeClassifier("3XL");
    public static final ClothingSizeClassifier EXTRA4_LARGE = new ClothingSizeClassifier("4XL");
    public static final ClothingSizeClassifier ONE_SIZE = new ClothingSizeClassifier("OS");
    public static final ClothingSizeClassifier EXTRA_SMALL = new ClothingSizeClassifier("XS");
    public static final ClothingSizeClassifier SMALL = new ClothingSizeClassifier("S");
    public static final ClothingSizeClassifier MEDIUM = new ClothingSizeClassifier("M");
    public static final ClothingSizeClassifier LARGE = new ClothingSizeClassifier("L");
    public static final ClothingSizeClassifier EXTRA_LARGE = new ClothingSizeClassifier("XL");
    public static final ClothingSizeClassifier EXTRA2_LARGE = new ClothingSizeClassifier("2XL");
    public static final ClothingSizeClassifier EXTRA3_LARGE = new ClothingSizeClassifier("3XL");
    public static final ClothingSizeClassifier EXTRA4_LARGE = new ClothingSizeClassifier("4XL");
    public static final ClothingSizeClassifier ONE_SIZE = new ClothingSizeClassifier("OS");
    public static final ClothingSizeClassifier EXTRA_SMALL = new ClothingSizeClassifier("XS");
    public static final ClothingSizeClassifier SMALL = new ClothingSizeClassifier("S");
    public static final ClothingSizeClassifier MEDIUM = new ClothingSizeClassifier("M");
    public static final ClothingSizeClassifier LARGE = new ClothingSizeClassifier("L");
    public static final ClothingSizeClassifier EXTRA_LARGE = new ClothingSizeClassifier("XL");
    public static final ClothingSizeClassifier EXTRA2_LARGE = new ClothingSizeClassifier("2XL");
    public static final ClothingSizeClassifier EXTRA3_LARGE = new ClothingSizeClassifier("3XL");
    public static final ClothingSizeClassifier EXTRA4_LARGE = new ClothingSizeClassifier("4XL");
 
    private static final java.util.Map values = new java.util.TreeMap();
    private static java.util.List literals = new java.util.ArrayList(3);
    private static java.util.List names = new java.util.ArrayList(3);
 
    /**
     * Initializes the values.
     */
    static {
        values.put(ONE_SIZE.value, ONE_SIZE);
	literals.add(ONE_SIZE.value);
	ONE_SIZE.setName("ONE_SIZE");
        names.add("ONE_SIZE");
        values.put(EXTRA_SMALL.value, EXTRA_SMALL);
	literals.add(EXTRA_SMALL.value);
	EXTRA_SMALL.setName("EXTRA_SMALL");
        names.add("EXTRA_SMALL");
        values.put(SMALL.value, SMALL);
	literals.add(SMALL.value);
	SMALL.setName("SMALL");
        names.add("SMALL");
        values.put(MEDIUM.value, MEDIUM);
	literals.add(MEDIUM.value);
	MEDIUM.setName("MEDIUM");
        names.add("MEDIUM");
        values.put(LARGE.value, LARGE);
	literals.add(LARGE.value);
	LARGE.setName("LARGE");
        names.add("LARGE");
        values.put(EXTRA_LARGE.value, EXTRA_LARGE);
	literals.add(EXTRA_LARGE.value);
	EXTRA_LARGE.setName("EXTRA_LARGE");
        names.add("EXTRA_LARGE");
        values.put(EXTRA2_LARGE.value, EXTRA2_LARGE);
	literals.add(EXTRA2_LARGE.value);
	EXTRA2_LARGE.setName("EXTRA2_LARGE");
        names.add("EXTRA2_LARGE");
        values.put(EXTRA3_LARGE.value, EXTRA3_LARGE);
	literals.add(EXTRA3_LARGE.value);
	EXTRA3_LARGE.setName("EXTRA3_LARGE");
        names.add("EXTRA3_LARGE");
        values.put(EXTRA4_LARGE.value, EXTRA4_LARGE);
	literals.add(EXTRA4_LARGE.value);
	EXTRA4_LARGE.setName("EXTRA4_LARGE");
        names.add("EXTRA4_LARGE");
        values.put(ONE_SIZE.value, ONE_SIZE);
	literals.add(ONE_SIZE.value);
	ONE_SIZE.setName("ONE_SIZE");
        names.add("ONE_SIZE");
        values.put(EXTRA_SMALL.value, EXTRA_SMALL);
	literals.add(EXTRA_SMALL.value);
	EXTRA_SMALL.setName("EXTRA_SMALL");
        names.add("EXTRA_SMALL");
        values.put(SMALL.value, SMALL);
	literals.add(SMALL.value);
	SMALL.setName("SMALL");
        names.add("SMALL");
        values.put(MEDIUM.value, MEDIUM);
	literals.add(MEDIUM.value);
	MEDIUM.setName("MEDIUM");
        names.add("MEDIUM");
        values.put(LARGE.value, LARGE);
	literals.add(LARGE.value);
	LARGE.setName("LARGE");
        names.add("LARGE");
        values.put(EXTRA_LARGE.value, EXTRA_LARGE);
	literals.add(EXTRA_LARGE.value);
	EXTRA_LARGE.setName("EXTRA_LARGE");
        names.add("EXTRA_LARGE");
        values.put(EXTRA2_LARGE.value, EXTRA2_LARGE);
	literals.add(EXTRA2_LARGE.value);
	EXTRA2_LARGE.setName("EXTRA2_LARGE");
        names.add("EXTRA2_LARGE");
        values.put(EXTRA3_LARGE.value, EXTRA3_LARGE);
	literals.add(EXTRA3_LARGE.value);
	EXTRA3_LARGE.setName("EXTRA3_LARGE");
        names.add("EXTRA3_LARGE");
        values.put(EXTRA4_LARGE.value, EXTRA4_LARGE);
	literals.add(EXTRA4_LARGE.value);
	EXTRA4_LARGE.setName("EXTRA4_LARGE");
        names.add("EXTRA4_LARGE");
        values.put(ONE_SIZE.value, ONE_SIZE);
	literals.add(ONE_SIZE.value);
	ONE_SIZE.setName("ONE_SIZE");
        names.add("ONE_SIZE");
        values.put(EXTRA_SMALL.value, EXTRA_SMALL);
	literals.add(EXTRA_SMALL.value);
	EXTRA_SMALL.setName("EXTRA_SMALL");
        names.add("EXTRA_SMALL");
        values.put(SMALL.value, SMALL);
	literals.add(SMALL.value);
	SMALL.setName("SMALL");
        names.add("SMALL");
        values.put(MEDIUM.value, MEDIUM);
	literals.add(MEDIUM.value);
	MEDIUM.setName("MEDIUM");
        names.add("MEDIUM");
        values.put(LARGE.value, LARGE);
	literals.add(LARGE.value);
	LARGE.setName("LARGE");
        names.add("LARGE");
        values.put(EXTRA_LARGE.value, EXTRA_LARGE);
	literals.add(EXTRA_LARGE.value);
	EXTRA_LARGE.setName("EXTRA_LARGE");
        names.add("EXTRA_LARGE");
        values.put(EXTRA2_LARGE.value, EXTRA2_LARGE);
	literals.add(EXTRA2_LARGE.value);
	EXTRA2_LARGE.setName("EXTRA2_LARGE");
        names.add("EXTRA2_LARGE");
        values.put(EXTRA3_LARGE.value, EXTRA3_LARGE);
	literals.add(EXTRA3_LARGE.value);
	EXTRA3_LARGE.setName("EXTRA3_LARGE");
        names.add("EXTRA3_LARGE");
        values.put(EXTRA4_LARGE.value, EXTRA4_LARGE);
	literals.add(EXTRA4_LARGE.value);
	EXTRA4_LARGE.setName("EXTRA4_LARGE");
        names.add("EXTRA4_LARGE");
        literals = java.util.Collections.unmodifiableList(literals);
        names = java.util.Collections.unmodifiableList(names);
    }
 
	private java.lang.String value;
	private java.lang.String name;
 
	/**
     * The default constructor allowing super classes to access it.
     */
    protected ClothingSizeClassifier() {}
 
    private ClothingSizeClassifier(java.lang.String value) {
        this.value = value;
    }
 
	public String toString() {
        return java.lang.String.valueOf(value);
    }
 
    /**
     * Creates an instance of ClothingSizeClassifier from <code>value</code>.
     *
     * @param value the value to create the ClothingSizeClassifier from.
     */
    public static ClothingSizeClassifier fromString(java.lang.String value) {
        if(value == null) return null;
		final ClothingSizeClassifier typeValue = (ClothingSizeClassifier) values.get(value);
        if (typeValue == null) {
            throw new IllegalArgumentException("invalid value '" + value + "', possible values are: " + literals);
        }
        return typeValue;
    }
 
	/**
	* Checks correct value for the classifier
	*/
	public boolean isClothingSizeClassifier(java.lang.String value){
	  return (value == null || values.get(value) != null);
	}
    /**
     * Get/set for value
     */
    public java.lang.String getValue() {
        return this.value;
    }
    public java.lang.String getName() {
        return this.name;
    }
    /**
     * Get/set for name
     */
    private void setName(java.lang.String name) {
        this.name = name;
    }
    /**
     * @see java.lang.Comparable#compareTo(java.lang.Object)
     */
    public int compareTo(Object that)
    {
        return (this == that) ? 0 : this.getValue().compareTo(((ClothingSizeClassifier)that).getValue());
    }
 
    public static java.util.Map getValues() {
        return values;
    }
 
    /**
     * Returns an unmodifiable list containing the literals that are known by this enumeration.
     *
     * @return A List containing the actual literals defined by this enumeration, this list
     *         can not be modified.
     */
    public static java.util.List literals() {
        return literals;
    }
 
    /**
     * Returns an unmodifiable list containing the names of the literals that are known
     * by this enumeration.
     *
     * @return A List containing the actual names of the literals defined by this
     *         enumeration, this list can not be modified.
     */
    public static java.util.List names() {
        return names;
    }
 
    /**
     * @see java.lang.Object#equals(java.lang.Object)
     */
    public boolean equals(Object object) {
        return (this == object)
            || (object instanceof ClothingSizeClassifier && ((ClothingSizeClassifier)object).getValue().equals(
                this.getValue()));
    }
 
    /**
     * @see java.lang.Object#hashCode()
     */
    public int hashCode() {
        return this.getValue().hashCode();
    }
 
    /**
     * This method allows the deserialization of an instance of this enumeration type to return the actual instance
     * that will be the singleton for the JVM in which the current thread is running.
     * <p/>
     * Doing this will allow users to safely use the equality operator <code>==</code> for enumerations because
     * a regular deserialized object is always a newly constructed instance and will therefore never be
     * an existing reference; it is this <code>readResolve()</code> method which will intercept the deserialization
     * process in order to return the proper singleton reference.
     */
    private java.lang.Object readResolve() throws java.io.ObjectStreamException {
        return ClothingSizeClassifier.fromString(this.value);
    }
 
}