emul/src/main/java/java/lang/Class.java
author Jaroslav Tulach <jaroslav.tulach@apidesign.org>
Tue, 18 Dec 2012 16:04:37 +0100
branchlauncher
changeset 353 fd38bdad7fb5
parent 322 3884815c0629
child 354 002b7c3d5157
permissions -rw-r--r--
Reasonable TYPE for primitive types
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/*
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 * Copyright (c) 1994, 2010, Oracle and/or its affiliates. All rights reserved.
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 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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 *
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 * This code is free software; you can redistribute it and/or modify it
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 * under the terms of the GNU General Public License version 2 only, as
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 * published by the Free Software Foundation.  Oracle designates this
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 * particular file as subject to the "Classpath" exception as provided
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 * by Oracle in the LICENSE file that accompanied this code.
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 *
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 * This code is distributed in the hope that it will be useful, but WITHOUT
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 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
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 * version 2 for more details (a copy is included in the LICENSE file that
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 * accompanied this code).
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 *
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 * You should have received a copy of the GNU General Public License version
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 * 2 along with this work; if not, write to the Free Software Foundation,
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 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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 *
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 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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 * or visit www.oracle.com if you need additional information or have any
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 * questions.
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 */
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package java.lang;
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import org.apidesign.bck2brwsr.emul.AnnotationImpl;
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import java.io.InputStream;
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import java.lang.annotation.Annotation;
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import java.lang.reflect.Field;
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import java.lang.reflect.Method;
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import java.lang.reflect.TypeVariable;
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import org.apidesign.bck2brwsr.core.JavaScriptBody;
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/**
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 * Instances of the class {@code Class} represent classes and
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 * interfaces in a running Java application.  An enum is a kind of
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 * class and an annotation is a kind of interface.  Every array also
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 * belongs to a class that is reflected as a {@code Class} object
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 * that is shared by all arrays with the same element type and number
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 * of dimensions.  The primitive Java types ({@code boolean},
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 * {@code byte}, {@code char}, {@code short},
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 * {@code int}, {@code long}, {@code float}, and
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 * {@code double}), and the keyword {@code void} are also
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 * represented as {@code Class} objects.
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 *
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 * <p> {@code Class} has no public constructor. Instead {@code Class}
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 * objects are constructed automatically by the Java Virtual Machine as classes
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 * are loaded and by calls to the {@code defineClass} method in the class
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 * loader.
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 *
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 * <p> The following example uses a {@code Class} object to print the
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 * class name of an object:
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 *
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 * <p> <blockquote><pre>
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 *     void printClassName(Object obj) {
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 *         System.out.println("The class of " + obj +
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 *                            " is " + obj.getClass().getName());
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 *     }
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 * </pre></blockquote>
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 *
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 * <p> It is also possible to get the {@code Class} object for a named
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 * type (or for void) using a class literal.  See Section 15.8.2 of
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 * <cite>The Java&trade; Language Specification</cite>.
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 * For example:
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 *
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 * <p> <blockquote>
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 *     {@code System.out.println("The name of class Foo is: "+Foo.class.getName());}
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 * </blockquote>
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 *
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 * @param <T> the type of the class modeled by this {@code Class}
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 * object.  For example, the type of {@code String.class} is {@code
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 * Class<String>}.  Use {@code Class<?>} if the class being modeled is
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 * unknown.
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 *
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 * @author  unascribed
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 * @see     java.lang.ClassLoader#defineClass(byte[], int, int)
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 * @since   JDK1.0
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 */
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public final
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    class Class<T> implements java.io.Serializable,
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                              java.lang.reflect.GenericDeclaration,
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                              java.lang.reflect.Type,
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                              java.lang.reflect.AnnotatedElement {
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    private static final int ANNOTATION= 0x00002000;
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    private static final int ENUM      = 0x00004000;
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    private static final int SYNTHETIC = 0x00001000;
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    /*
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     * Constructor. Only the Java Virtual Machine creates Class
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     * objects.
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     */
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    private Class() {}
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    /**
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     * Converts the object to a string. The string representation is the
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     * string "class" or "interface", followed by a space, and then by the
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     * fully qualified name of the class in the format returned by
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     * {@code getName}.  If this {@code Class} object represents a
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     * primitive type, this method returns the name of the primitive type.  If
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     * this {@code Class} object represents void this method returns
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     * "void".
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     *
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     * @return a string representation of this class object.
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     */
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    public String toString() {
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        return (isInterface() ? "interface " : (isPrimitive() ? "" : "class "))
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            + getName();
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    }
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    /**
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     * Returns the {@code Class} object associated with the class or
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     * interface with the given string name.  Invoking this method is
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     * equivalent to:
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     *
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     * <blockquote>
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     *  {@code Class.forName(className, true, currentLoader)}
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     * </blockquote>
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     *
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     * where {@code currentLoader} denotes the defining class loader of
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     * the current class.
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     *
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     * <p> For example, the following code fragment returns the
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     * runtime {@code Class} descriptor for the class named
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     * {@code java.lang.Thread}:
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     *
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     * <blockquote>
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     *   {@code Class t = Class.forName("java.lang.Thread")}
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     * </blockquote>
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     * <p>
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     * A call to {@code forName("X")} causes the class named
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     * {@code X} to be initialized.
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     *
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     * @param      className   the fully qualified name of the desired class.
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     * @return     the {@code Class} object for the class with the
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     *             specified name.
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     * @exception LinkageError if the linkage fails
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     * @exception ExceptionInInitializerError if the initialization provoked
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     *            by this method fails
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     * @exception ClassNotFoundException if the class cannot be located
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     */
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    public static Class<?> forName(String className)
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                throws ClassNotFoundException {
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        Class<?> c = loadCls(className, className.replace('.', '_'));
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        if (c == null) {
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            throw new ClassNotFoundException();
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        }
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        return c;
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    }
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    @JavaScriptBody(args = {"n", "c" }, body =
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        "if (vm[c]) return vm[c].$class;\n"
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      + "if (vm.loadClass) {\n"
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      + "  vm.loadClass(n);\n"
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      + "  if (vm[c]) return vm[c].$class;\n"
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      + "}\n"
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      + "return null;"
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    )
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    private static native Class<?> loadCls(String n, String c);
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    /**
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     * Creates a new instance of the class represented by this {@code Class}
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     * object.  The class is instantiated as if by a {@code new}
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     * expression with an empty argument list.  The class is initialized if it
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     * has not already been initialized.
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     *
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     * <p>Note that this method propagates any exception thrown by the
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     * nullary constructor, including a checked exception.  Use of
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     * this method effectively bypasses the compile-time exception
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     * checking that would otherwise be performed by the compiler.
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     * The {@link
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     * java.lang.reflect.Constructor#newInstance(java.lang.Object...)
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     * Constructor.newInstance} method avoids this problem by wrapping
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     * any exception thrown by the constructor in a (checked) {@link
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     * java.lang.reflect.InvocationTargetException}.
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     *
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     * @return     a newly allocated instance of the class represented by this
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     *             object.
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     * @exception  IllegalAccessException  if the class or its nullary
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     *               constructor is not accessible.
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     * @exception  InstantiationException
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     *               if this {@code Class} represents an abstract class,
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     *               an interface, an array class, a primitive type, or void;
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     *               or if the class has no nullary constructor;
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     *               or if the instantiation fails for some other reason.
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     * @exception  ExceptionInInitializerError if the initialization
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     *               provoked by this method fails.
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     * @exception  SecurityException
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     *             If a security manager, <i>s</i>, is present and any of the
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     *             following conditions is met:
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     *
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     *             <ul>
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     *
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     *             <li> invocation of
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     *             {@link SecurityManager#checkMemberAccess
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     *             s.checkMemberAccess(this, Member.PUBLIC)} denies
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     *             creation of new instances of this class
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     *
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     *             <li> the caller's class loader is not the same as or an
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     *             ancestor of the class loader for the current class and
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     *             invocation of {@link SecurityManager#checkPackageAccess
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     *             s.checkPackageAccess()} denies access to the package
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     *             of this class
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     *
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     *             </ul>
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     *
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     */
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    @JavaScriptBody(args = "self", body =
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          "var inst = self.cnstr();"
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        + "inst.cons__V(inst);"
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        + "return inst;"
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    )
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    public T newInstance()
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        throws InstantiationException, IllegalAccessException
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    {
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        throw new UnsupportedOperationException();
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    }
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    /**
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     * Determines if the specified {@code Object} is assignment-compatible
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     * with the object represented by this {@code Class}.  This method is
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     * the dynamic equivalent of the Java language {@code instanceof}
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     * operator. The method returns {@code true} if the specified
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     * {@code Object} argument is non-null and can be cast to the
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     * reference type represented by this {@code Class} object without
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     * raising a {@code ClassCastException.} It returns {@code false}
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     * otherwise.
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     *
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     * <p> Specifically, if this {@code Class} object represents a
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     * declared class, this method returns {@code true} if the specified
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     * {@code Object} argument is an instance of the represented class (or
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     * of any of its subclasses); it returns {@code false} otherwise. If
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     * this {@code Class} object represents an array class, this method
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     * returns {@code true} if the specified {@code Object} argument
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     * can be converted to an object of the array class by an identity
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     * conversion or by a widening reference conversion; it returns
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     * {@code false} otherwise. If this {@code Class} object
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     * represents an interface, this method returns {@code true} if the
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     * class or any superclass of the specified {@code Object} argument
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     * implements this interface; it returns {@code false} otherwise. If
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     * this {@code Class} object represents a primitive type, this method
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     * returns {@code false}.
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     *
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     * @param   obj the object to check
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     * @return  true if {@code obj} is an instance of this class
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     *
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     * @since JDK1.1
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     */
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    public native boolean isInstance(Object obj);
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    /**
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     * Determines if the class or interface represented by this
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     * {@code Class} object is either the same as, or is a superclass or
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     * superinterface of, the class or interface represented by the specified
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     * {@code Class} parameter. It returns {@code true} if so;
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     * otherwise it returns {@code false}. If this {@code Class}
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     * object represents a primitive type, this method returns
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     * {@code true} if the specified {@code Class} parameter is
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     * exactly this {@code Class} object; otherwise it returns
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     * {@code false}.
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     *
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     * <p> Specifically, this method tests whether the type represented by the
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     * specified {@code Class} parameter can be converted to the type
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     * represented by this {@code Class} object via an identity conversion
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     * or via a widening reference conversion. See <em>The Java Language
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     * Specification</em>, sections 5.1.1 and 5.1.4 , for details.
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     *
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     * @param cls the {@code Class} object to be checked
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     * @return the {@code boolean} value indicating whether objects of the
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     * type {@code cls} can be assigned to objects of this class
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     * @exception NullPointerException if the specified Class parameter is
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     *            null.
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     * @since JDK1.1
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     */
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    public native boolean isAssignableFrom(Class<?> cls);
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    /**
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     * Determines if the specified {@code Class} object represents an
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     * interface type.
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     *
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     * @return  {@code true} if this object represents an interface;
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     *          {@code false} otherwise.
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     */
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    public native boolean isInterface();
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    /**
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     * Determines if this {@code Class} object represents an array class.
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     *
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     * @return  {@code true} if this object represents an array class;
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     *          {@code false} otherwise.
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     * @since   JDK1.1
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     */
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    public boolean isArray() {
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        return false;
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    }
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    /**
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     * Determines if the specified {@code Class} object represents a
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     * primitive type.
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     *
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     * <p> There are nine predefined {@code Class} objects to represent
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     * the eight primitive types and void.  These are created by the Java
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     * Virtual Machine, and have the same names as the primitive types that
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     * they represent, namely {@code boolean}, {@code byte},
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     * {@code char}, {@code short}, {@code int},
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     * {@code long}, {@code float}, and {@code double}.
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     *
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     * <p> These objects may only be accessed via the following public static
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     * final variables, and are the only {@code Class} objects for which
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     * this method returns {@code true}.
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     *
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     * @return true if and only if this class represents a primitive type
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     *
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     * @see     java.lang.Boolean#TYPE
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     * @see     java.lang.Character#TYPE
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     * @see     java.lang.Byte#TYPE
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     * @see     java.lang.Short#TYPE
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     * @see     java.lang.Integer#TYPE
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     * @see     java.lang.Long#TYPE
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     * @see     java.lang.Float#TYPE
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     * @see     java.lang.Double#TYPE
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     * @see     java.lang.Void#TYPE
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     * @since JDK1.1
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     */
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    public native boolean isPrimitive();
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    /**
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     * Returns true if this {@code Class} object represents an annotation
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     * type.  Note that if this method returns true, {@link #isInterface()}
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     * would also return true, as all annotation types are also interfaces.
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     *
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     * @return {@code true} if this class object represents an annotation
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     *      type; {@code false} otherwise
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     * @since 1.5
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     */
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    public boolean isAnnotation() {
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        return (getModifiers() & ANNOTATION) != 0;
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    }
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    /**
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     * Returns {@code true} if this class is a synthetic class;
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     * returns {@code false} otherwise.
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     * @return {@code true} if and only if this class is a synthetic class as
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     *         defined by the Java Language Specification.
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     * @since 1.5
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     */
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    public boolean isSynthetic() {
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        return (getModifiers() & SYNTHETIC) != 0;
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    }
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    /**
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     * Returns the  name of the entity (class, interface, array class,
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     * primitive type, or void) represented by this {@code Class} object,
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     * as a {@code String}.
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     *
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     * <p> If this class object represents a reference type that is not an
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     * array type then the binary name of the class is returned, as specified
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     * by
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     * <cite>The Java&trade; Language Specification</cite>.
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     *
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     * <p> If this class object represents a primitive type or void, then the
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     * name returned is a {@code String} equal to the Java language
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     * keyword corresponding to the primitive type or void.
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     *
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     * <p> If this class object represents a class of arrays, then the internal
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     * form of the name consists of the name of the element type preceded by
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     * one or more '{@code [}' characters representing the depth of the array
jaroslav@56
   376
     * nesting.  The encoding of element type names is as follows:
jaroslav@56
   377
     *
jaroslav@56
   378
     * <blockquote><table summary="Element types and encodings">
jaroslav@56
   379
     * <tr><th> Element Type <th> &nbsp;&nbsp;&nbsp; <th> Encoding
jaroslav@56
   380
     * <tr><td> boolean      <td> &nbsp;&nbsp;&nbsp; <td align=center> Z
jaroslav@56
   381
     * <tr><td> byte         <td> &nbsp;&nbsp;&nbsp; <td align=center> B
jaroslav@56
   382
     * <tr><td> char         <td> &nbsp;&nbsp;&nbsp; <td align=center> C
jaroslav@56
   383
     * <tr><td> class or interface
jaroslav@56
   384
     *                       <td> &nbsp;&nbsp;&nbsp; <td align=center> L<i>classname</i>;
jaroslav@56
   385
     * <tr><td> double       <td> &nbsp;&nbsp;&nbsp; <td align=center> D
jaroslav@56
   386
     * <tr><td> float        <td> &nbsp;&nbsp;&nbsp; <td align=center> F
jaroslav@56
   387
     * <tr><td> int          <td> &nbsp;&nbsp;&nbsp; <td align=center> I
jaroslav@56
   388
     * <tr><td> long         <td> &nbsp;&nbsp;&nbsp; <td align=center> J
jaroslav@56
   389
     * <tr><td> short        <td> &nbsp;&nbsp;&nbsp; <td align=center> S
jaroslav@56
   390
     * </table></blockquote>
jaroslav@56
   391
     *
jaroslav@56
   392
     * <p> The class or interface name <i>classname</i> is the binary name of
jaroslav@56
   393
     * the class specified above.
jaroslav@56
   394
     *
jaroslav@56
   395
     * <p> Examples:
jaroslav@56
   396
     * <blockquote><pre>
jaroslav@56
   397
     * String.class.getName()
jaroslav@56
   398
     *     returns "java.lang.String"
jaroslav@56
   399
     * byte.class.getName()
jaroslav@56
   400
     *     returns "byte"
jaroslav@56
   401
     * (new Object[3]).getClass().getName()
jaroslav@56
   402
     *     returns "[Ljava.lang.Object;"
jaroslav@56
   403
     * (new int[3][4][5][6][7][8][9]).getClass().getName()
jaroslav@56
   404
     *     returns "[[[[[[[I"
jaroslav@56
   405
     * </pre></blockquote>
jaroslav@56
   406
     *
jaroslav@56
   407
     * @return  the name of the class or interface
jaroslav@56
   408
     *          represented by this object.
jaroslav@56
   409
     */
jaroslav@56
   410
    public String getName() {
jaroslav@225
   411
        return jvmName().replace('/', '.');
jaroslav@56
   412
    }
jaroslav@56
   413
jaroslav@225
   414
    @JavaScriptBody(args = "self", body = "return self.jvmName;")
jaroslav@225
   415
    private native String jvmName();
jaroslav@225
   416
jaroslav@260
   417
    
jaroslav@260
   418
    /**
jaroslav@260
   419
     * Returns an array of {@code TypeVariable} objects that represent the
jaroslav@260
   420
     * type variables declared by the generic declaration represented by this
jaroslav@260
   421
     * {@code GenericDeclaration} object, in declaration order.  Returns an
jaroslav@260
   422
     * array of length 0 if the underlying generic declaration declares no type
jaroslav@260
   423
     * variables.
jaroslav@260
   424
     *
jaroslav@260
   425
     * @return an array of {@code TypeVariable} objects that represent
jaroslav@260
   426
     *     the type variables declared by this generic declaration
jaroslav@260
   427
     * @throws java.lang.reflect.GenericSignatureFormatError if the generic
jaroslav@260
   428
     *     signature of this generic declaration does not conform to
jaroslav@260
   429
     *     the format specified in
jaroslav@260
   430
     *     <cite>The Java&trade; Virtual Machine Specification</cite>
jaroslav@260
   431
     * @since 1.5
jaroslav@260
   432
     */
jaroslav@260
   433
    public TypeVariable<Class<T>>[] getTypeParameters() {
jaroslav@260
   434
        throw new UnsupportedOperationException();
jaroslav@260
   435
    }
jaroslav@260
   436
 
jaroslav@56
   437
    /**
jaroslav@56
   438
     * Returns the {@code Class} representing the superclass of the entity
jaroslav@56
   439
     * (class, interface, primitive type or void) represented by this
jaroslav@56
   440
     * {@code Class}.  If this {@code Class} represents either the
jaroslav@56
   441
     * {@code Object} class, an interface, a primitive type, or void, then
jaroslav@56
   442
     * null is returned.  If this object represents an array class then the
jaroslav@56
   443
     * {@code Class} object representing the {@code Object} class is
jaroslav@56
   444
     * returned.
jaroslav@56
   445
     *
jaroslav@56
   446
     * @return the superclass of the class represented by this object.
jaroslav@56
   447
     */
jaroslav@230
   448
    @JavaScriptBody(args = "self", body = "return self.superclass;")
jaroslav@56
   449
    public native Class<? super T> getSuperclass();
jaroslav@56
   450
jaroslav@56
   451
    /**
jaroslav@56
   452
     * Returns the Java language modifiers for this class or interface, encoded
jaroslav@56
   453
     * in an integer. The modifiers consist of the Java Virtual Machine's
jaroslav@56
   454
     * constants for {@code public}, {@code protected},
jaroslav@56
   455
     * {@code private}, {@code final}, {@code static},
jaroslav@56
   456
     * {@code abstract} and {@code interface}; they should be decoded
jaroslav@56
   457
     * using the methods of class {@code Modifier}.
jaroslav@56
   458
     *
jaroslav@56
   459
     * <p> If the underlying class is an array class, then its
jaroslav@56
   460
     * {@code public}, {@code private} and {@code protected}
jaroslav@56
   461
     * modifiers are the same as those of its component type.  If this
jaroslav@56
   462
     * {@code Class} represents a primitive type or void, its
jaroslav@56
   463
     * {@code public} modifier is always {@code true}, and its
jaroslav@56
   464
     * {@code protected} and {@code private} modifiers are always
jaroslav@56
   465
     * {@code false}. If this object represents an array class, a
jaroslav@56
   466
     * primitive type or void, then its {@code final} modifier is always
jaroslav@56
   467
     * {@code true} and its interface modifier is always
jaroslav@56
   468
     * {@code false}. The values of its other modifiers are not determined
jaroslav@56
   469
     * by this specification.
jaroslav@56
   470
     *
jaroslav@56
   471
     * <p> The modifier encodings are defined in <em>The Java Virtual Machine
jaroslav@56
   472
     * Specification</em>, table 4.1.
jaroslav@56
   473
     *
jaroslav@56
   474
     * @return the {@code int} representing the modifiers for this class
jaroslav@56
   475
     * @see     java.lang.reflect.Modifier
jaroslav@56
   476
     * @since JDK1.1
jaroslav@56
   477
     */
jaroslav@56
   478
    public native int getModifiers();
jaroslav@56
   479
jaroslav@56
   480
jaroslav@56
   481
    /**
jaroslav@56
   482
     * Returns the simple name of the underlying class as given in the
jaroslav@56
   483
     * source code. Returns an empty string if the underlying class is
jaroslav@56
   484
     * anonymous.
jaroslav@56
   485
     *
jaroslav@56
   486
     * <p>The simple name of an array is the simple name of the
jaroslav@56
   487
     * component type with "[]" appended.  In particular the simple
jaroslav@56
   488
     * name of an array whose component type is anonymous is "[]".
jaroslav@56
   489
     *
jaroslav@56
   490
     * @return the simple name of the underlying class
jaroslav@56
   491
     * @since 1.5
jaroslav@56
   492
     */
jaroslav@56
   493
    public String getSimpleName() {
jaroslav@229
   494
        if (isArray())
jaroslav@229
   495
            return getComponentType().getSimpleName()+"[]";
jaroslav@229
   496
jaroslav@229
   497
        String simpleName = getSimpleBinaryName();
jaroslav@229
   498
        if (simpleName == null) { // top level class
jaroslav@229
   499
            simpleName = getName();
jaroslav@229
   500
            return simpleName.substring(simpleName.lastIndexOf(".")+1); // strip the package name
jaroslav@229
   501
        }
jaroslav@229
   502
        // According to JLS3 "Binary Compatibility" (13.1) the binary
jaroslav@229
   503
        // name of non-package classes (not top level) is the binary
jaroslav@229
   504
        // name of the immediately enclosing class followed by a '$' followed by:
jaroslav@229
   505
        // (for nested and inner classes): the simple name.
jaroslav@229
   506
        // (for local classes): 1 or more digits followed by the simple name.
jaroslav@229
   507
        // (for anonymous classes): 1 or more digits.
jaroslav@229
   508
jaroslav@229
   509
        // Since getSimpleBinaryName() will strip the binary name of
jaroslav@229
   510
        // the immediatly enclosing class, we are now looking at a
jaroslav@229
   511
        // string that matches the regular expression "\$[0-9]*"
jaroslav@229
   512
        // followed by a simple name (considering the simple of an
jaroslav@229
   513
        // anonymous class to be the empty string).
jaroslav@229
   514
jaroslav@229
   515
        // Remove leading "\$[0-9]*" from the name
jaroslav@229
   516
        int length = simpleName.length();
jaroslav@229
   517
        if (length < 1 || simpleName.charAt(0) != '$')
jaroslav@229
   518
            throw new IllegalStateException("Malformed class name");
jaroslav@229
   519
        int index = 1;
jaroslav@229
   520
        while (index < length && isAsciiDigit(simpleName.charAt(index)))
jaroslav@229
   521
            index++;
jaroslav@229
   522
        // Eventually, this is the empty string iff this is an anonymous class
jaroslav@229
   523
        return simpleName.substring(index);
jaroslav@56
   524
    }
jaroslav@56
   525
jaroslav@56
   526
    /**
jaroslav@229
   527
     * Returns the "simple binary name" of the underlying class, i.e.,
jaroslav@229
   528
     * the binary name without the leading enclosing class name.
jaroslav@229
   529
     * Returns {@code null} if the underlying class is a top level
jaroslav@229
   530
     * class.
jaroslav@229
   531
     */
jaroslav@229
   532
    private String getSimpleBinaryName() {
jaroslav@229
   533
        Class<?> enclosingClass = null; // XXX getEnclosingClass();
jaroslav@229
   534
        if (enclosingClass == null) // top level class
jaroslav@229
   535
            return null;
jaroslav@229
   536
        // Otherwise, strip the enclosing class' name
jaroslav@229
   537
        try {
jaroslav@229
   538
            return getName().substring(enclosingClass.getName().length());
jaroslav@229
   539
        } catch (IndexOutOfBoundsException ex) {
jaroslav@229
   540
            throw new IllegalStateException("Malformed class name");
jaroslav@229
   541
        }
jaroslav@229
   542
    }
jaroslav@261
   543
jaroslav@261
   544
    /**
jaroslav@261
   545
     * Returns an array containing {@code Field} objects reflecting all
jaroslav@261
   546
     * the accessible public fields of the class or interface represented by
jaroslav@261
   547
     * this {@code Class} object.  The elements in the array returned are
jaroslav@261
   548
     * not sorted and are not in any particular order.  This method returns an
jaroslav@261
   549
     * array of length 0 if the class or interface has no accessible public
jaroslav@261
   550
     * fields, or if it represents an array class, a primitive type, or void.
jaroslav@261
   551
     *
jaroslav@261
   552
     * <p> Specifically, if this {@code Class} object represents a class,
jaroslav@261
   553
     * this method returns the public fields of this class and of all its
jaroslav@261
   554
     * superclasses.  If this {@code Class} object represents an
jaroslav@261
   555
     * interface, this method returns the fields of this interface and of all
jaroslav@261
   556
     * its superinterfaces.
jaroslav@261
   557
     *
jaroslav@261
   558
     * <p> The implicit length field for array class is not reflected by this
jaroslav@261
   559
     * method. User code should use the methods of class {@code Array} to
jaroslav@261
   560
     * manipulate arrays.
jaroslav@261
   561
     *
jaroslav@261
   562
     * <p> See <em>The Java Language Specification</em>, sections 8.2 and 8.3.
jaroslav@261
   563
     *
jaroslav@261
   564
     * @return the array of {@code Field} objects representing the
jaroslav@261
   565
     * public fields
jaroslav@261
   566
     * @exception  SecurityException
jaroslav@261
   567
     *             If a security manager, <i>s</i>, is present and any of the
jaroslav@261
   568
     *             following conditions is met:
jaroslav@261
   569
     *
jaroslav@261
   570
     *             <ul>
jaroslav@261
   571
     *
jaroslav@261
   572
     *             <li> invocation of
jaroslav@261
   573
     *             {@link SecurityManager#checkMemberAccess
jaroslav@261
   574
     *             s.checkMemberAccess(this, Member.PUBLIC)} denies
jaroslav@261
   575
     *             access to the fields within this class
jaroslav@261
   576
     *
jaroslav@261
   577
     *             <li> the caller's class loader is not the same as or an
jaroslav@261
   578
     *             ancestor of the class loader for the current class and
jaroslav@261
   579
     *             invocation of {@link SecurityManager#checkPackageAccess
jaroslav@261
   580
     *             s.checkPackageAccess()} denies access to the package
jaroslav@261
   581
     *             of this class
jaroslav@261
   582
     *
jaroslav@261
   583
     *             </ul>
jaroslav@261
   584
     *
jaroslav@261
   585
     * @since JDK1.1
jaroslav@261
   586
     */
jaroslav@261
   587
    public Field[] getFields() throws SecurityException {
jaroslav@261
   588
        throw new SecurityException();
jaroslav@261
   589
    }
jaroslav@261
   590
jaroslav@261
   591
    /**
jaroslav@261
   592
     * Returns an array containing {@code Method} objects reflecting all
jaroslav@261
   593
     * the public <em>member</em> methods of the class or interface represented
jaroslav@261
   594
     * by this {@code Class} object, including those declared by the class
jaroslav@261
   595
     * or interface and those inherited from superclasses and
jaroslav@261
   596
     * superinterfaces.  Array classes return all the (public) member methods
jaroslav@261
   597
     * inherited from the {@code Object} class.  The elements in the array
jaroslav@261
   598
     * returned are not sorted and are not in any particular order.  This
jaroslav@261
   599
     * method returns an array of length 0 if this {@code Class} object
jaroslav@261
   600
     * represents a class or interface that has no public member methods, or if
jaroslav@261
   601
     * this {@code Class} object represents a primitive type or void.
jaroslav@261
   602
     *
jaroslav@261
   603
     * <p> The class initialization method {@code <clinit>} is not
jaroslav@261
   604
     * included in the returned array. If the class declares multiple public
jaroslav@261
   605
     * member methods with the same parameter types, they are all included in
jaroslav@261
   606
     * the returned array.
jaroslav@261
   607
     *
jaroslav@261
   608
     * <p> See <em>The Java Language Specification</em>, sections 8.2 and 8.4.
jaroslav@261
   609
     *
jaroslav@261
   610
     * @return the array of {@code Method} objects representing the
jaroslav@261
   611
     * public methods of this class
jaroslav@261
   612
     * @exception  SecurityException
jaroslav@261
   613
     *             If a security manager, <i>s</i>, is present and any of the
jaroslav@261
   614
     *             following conditions is met:
jaroslav@261
   615
     *
jaroslav@261
   616
     *             <ul>
jaroslav@261
   617
     *
jaroslav@261
   618
     *             <li> invocation of
jaroslav@261
   619
     *             {@link SecurityManager#checkMemberAccess
jaroslav@261
   620
     *             s.checkMemberAccess(this, Member.PUBLIC)} denies
jaroslav@261
   621
     *             access to the methods within this class
jaroslav@261
   622
     *
jaroslav@261
   623
     *             <li> the caller's class loader is not the same as or an
jaroslav@261
   624
     *             ancestor of the class loader for the current class and
jaroslav@261
   625
     *             invocation of {@link SecurityManager#checkPackageAccess
jaroslav@261
   626
     *             s.checkPackageAccess()} denies access to the package
jaroslav@261
   627
     *             of this class
jaroslav@261
   628
     *
jaroslav@261
   629
     *             </ul>
jaroslav@261
   630
     *
jaroslav@261
   631
     * @since JDK1.1
jaroslav@261
   632
     */
jaroslav@261
   633
    public Method[] getMethods() throws SecurityException {
jaroslav@264
   634
        return Method.findMethods(this);
jaroslav@261
   635
    }
jaroslav@261
   636
jaroslav@261
   637
    /**
jaroslav@261
   638
     * Returns a {@code Field} object that reflects the specified public
jaroslav@261
   639
     * member field of the class or interface represented by this
jaroslav@261
   640
     * {@code Class} object. The {@code name} parameter is a
jaroslav@261
   641
     * {@code String} specifying the simple name of the desired field.
jaroslav@261
   642
     *
jaroslav@261
   643
     * <p> The field to be reflected is determined by the algorithm that
jaroslav@261
   644
     * follows.  Let C be the class represented by this object:
jaroslav@261
   645
     * <OL>
jaroslav@261
   646
     * <LI> If C declares a public field with the name specified, that is the
jaroslav@261
   647
     *      field to be reflected.</LI>
jaroslav@261
   648
     * <LI> If no field was found in step 1 above, this algorithm is applied
jaroslav@261
   649
     *      recursively to each direct superinterface of C. The direct
jaroslav@261
   650
     *      superinterfaces are searched in the order they were declared.</LI>
jaroslav@261
   651
     * <LI> If no field was found in steps 1 and 2 above, and C has a
jaroslav@261
   652
     *      superclass S, then this algorithm is invoked recursively upon S.
jaroslav@261
   653
     *      If C has no superclass, then a {@code NoSuchFieldException}
jaroslav@261
   654
     *      is thrown.</LI>
jaroslav@261
   655
     * </OL>
jaroslav@261
   656
     *
jaroslav@261
   657
     * <p> See <em>The Java Language Specification</em>, sections 8.2 and 8.3.
jaroslav@261
   658
     *
jaroslav@261
   659
     * @param name the field name
jaroslav@261
   660
     * @return  the {@code Field} object of this class specified by
jaroslav@261
   661
     * {@code name}
jaroslav@261
   662
     * @exception NoSuchFieldException if a field with the specified name is
jaroslav@261
   663
     *              not found.
jaroslav@261
   664
     * @exception NullPointerException if {@code name} is {@code null}
jaroslav@261
   665
     * @exception  SecurityException
jaroslav@261
   666
     *             If a security manager, <i>s</i>, is present and any of the
jaroslav@261
   667
     *             following conditions is met:
jaroslav@261
   668
     *
jaroslav@261
   669
     *             <ul>
jaroslav@261
   670
     *
jaroslav@261
   671
     *             <li> invocation of
jaroslav@261
   672
     *             {@link SecurityManager#checkMemberAccess
jaroslav@261
   673
     *             s.checkMemberAccess(this, Member.PUBLIC)} denies
jaroslav@261
   674
     *             access to the field
jaroslav@261
   675
     *
jaroslav@261
   676
     *             <li> the caller's class loader is not the same as or an
jaroslav@261
   677
     *             ancestor of the class loader for the current class and
jaroslav@261
   678
     *             invocation of {@link SecurityManager#checkPackageAccess
jaroslav@261
   679
     *             s.checkPackageAccess()} denies access to the package
jaroslav@261
   680
     *             of this class
jaroslav@261
   681
     *
jaroslav@261
   682
     *             </ul>
jaroslav@261
   683
     *
jaroslav@261
   684
     * @since JDK1.1
jaroslav@261
   685
     */
jaroslav@261
   686
    public Field getField(String name)
jaroslav@261
   687
        throws SecurityException {
jaroslav@261
   688
        throw new SecurityException();
jaroslav@261
   689
    }
jaroslav@229
   690
    
jaroslav@261
   691
    
jaroslav@261
   692
    /**
jaroslav@261
   693
     * Returns a {@code Method} object that reflects the specified public
jaroslav@261
   694
     * member method of the class or interface represented by this
jaroslav@261
   695
     * {@code Class} object. The {@code name} parameter is a
jaroslav@261
   696
     * {@code String} specifying the simple name of the desired method. The
jaroslav@261
   697
     * {@code parameterTypes} parameter is an array of {@code Class}
jaroslav@261
   698
     * objects that identify the method's formal parameter types, in declared
jaroslav@261
   699
     * order. If {@code parameterTypes} is {@code null}, it is
jaroslav@261
   700
     * treated as if it were an empty array.
jaroslav@261
   701
     *
jaroslav@261
   702
     * <p> If the {@code name} is "{@code <init>};"or "{@code <clinit>}" a
jaroslav@261
   703
     * {@code NoSuchMethodException} is raised. Otherwise, the method to
jaroslav@261
   704
     * be reflected is determined by the algorithm that follows.  Let C be the
jaroslav@261
   705
     * class represented by this object:
jaroslav@261
   706
     * <OL>
jaroslav@261
   707
     * <LI> C is searched for any <I>matching methods</I>. If no matching
jaroslav@261
   708
     *      method is found, the algorithm of step 1 is invoked recursively on
jaroslav@261
   709
     *      the superclass of C.</LI>
jaroslav@261
   710
     * <LI> If no method was found in step 1 above, the superinterfaces of C
jaroslav@261
   711
     *      are searched for a matching method. If any such method is found, it
jaroslav@261
   712
     *      is reflected.</LI>
jaroslav@261
   713
     * </OL>
jaroslav@261
   714
     *
jaroslav@261
   715
     * To find a matching method in a class C:&nbsp; If C declares exactly one
jaroslav@261
   716
     * public method with the specified name and exactly the same formal
jaroslav@261
   717
     * parameter types, that is the method reflected. If more than one such
jaroslav@261
   718
     * method is found in C, and one of these methods has a return type that is
jaroslav@261
   719
     * more specific than any of the others, that method is reflected;
jaroslav@261
   720
     * otherwise one of the methods is chosen arbitrarily.
jaroslav@261
   721
     *
jaroslav@261
   722
     * <p>Note that there may be more than one matching method in a
jaroslav@261
   723
     * class because while the Java language forbids a class to
jaroslav@261
   724
     * declare multiple methods with the same signature but different
jaroslav@261
   725
     * return types, the Java virtual machine does not.  This
jaroslav@261
   726
     * increased flexibility in the virtual machine can be used to
jaroslav@261
   727
     * implement various language features.  For example, covariant
jaroslav@261
   728
     * returns can be implemented with {@linkplain
jaroslav@261
   729
     * java.lang.reflect.Method#isBridge bridge methods}; the bridge
jaroslav@261
   730
     * method and the method being overridden would have the same
jaroslav@261
   731
     * signature but different return types.
jaroslav@261
   732
     *
jaroslav@261
   733
     * <p> See <em>The Java Language Specification</em>, sections 8.2 and 8.4.
jaroslav@261
   734
     *
jaroslav@261
   735
     * @param name the name of the method
jaroslav@261
   736
     * @param parameterTypes the list of parameters
jaroslav@261
   737
     * @return the {@code Method} object that matches the specified
jaroslav@261
   738
     * {@code name} and {@code parameterTypes}
jaroslav@261
   739
     * @exception NoSuchMethodException if a matching method is not found
jaroslav@261
   740
     *            or if the name is "&lt;init&gt;"or "&lt;clinit&gt;".
jaroslav@261
   741
     * @exception NullPointerException if {@code name} is {@code null}
jaroslav@261
   742
     * @exception  SecurityException
jaroslav@261
   743
     *             If a security manager, <i>s</i>, is present and any of the
jaroslav@261
   744
     *             following conditions is met:
jaroslav@261
   745
     *
jaroslav@261
   746
     *             <ul>
jaroslav@261
   747
     *
jaroslav@261
   748
     *             <li> invocation of
jaroslav@261
   749
     *             {@link SecurityManager#checkMemberAccess
jaroslav@261
   750
     *             s.checkMemberAccess(this, Member.PUBLIC)} denies
jaroslav@261
   751
     *             access to the method
jaroslav@261
   752
     *
jaroslav@261
   753
     *             <li> the caller's class loader is not the same as or an
jaroslav@261
   754
     *             ancestor of the class loader for the current class and
jaroslav@261
   755
     *             invocation of {@link SecurityManager#checkPackageAccess
jaroslav@261
   756
     *             s.checkPackageAccess()} denies access to the package
jaroslav@261
   757
     *             of this class
jaroslav@261
   758
     *
jaroslav@261
   759
     *             </ul>
jaroslav@261
   760
     *
jaroslav@261
   761
     * @since JDK1.1
jaroslav@261
   762
     */
jaroslav@261
   763
    public Method getMethod(String name, Class<?>... parameterTypes)
jaroslav@261
   764
        throws SecurityException {
jaroslav@262
   765
        Method m = Method.findMethod(this, name, parameterTypes);
jaroslav@262
   766
        if (m == null) {
jaroslav@262
   767
            throw new SecurityException(); // XXX: NoSuchMethodException
jaroslav@262
   768
        }
jaroslav@262
   769
        return m;
jaroslav@261
   770
    }
jaroslav@261
   771
jaroslav@229
   772
    /**
jaroslav@56
   773
     * Character.isDigit answers {@code true} to some non-ascii
jaroslav@56
   774
     * digits.  This one does not.
jaroslav@56
   775
     */
jaroslav@56
   776
    private static boolean isAsciiDigit(char c) {
jaroslav@56
   777
        return '0' <= c && c <= '9';
jaroslav@56
   778
    }
jaroslav@56
   779
jaroslav@56
   780
    /**
jaroslav@56
   781
     * Returns the canonical name of the underlying class as
jaroslav@56
   782
     * defined by the Java Language Specification.  Returns null if
jaroslav@56
   783
     * the underlying class does not have a canonical name (i.e., if
jaroslav@56
   784
     * it is a local or anonymous class or an array whose component
jaroslav@56
   785
     * type does not have a canonical name).
jaroslav@56
   786
     * @return the canonical name of the underlying class if it exists, and
jaroslav@56
   787
     * {@code null} otherwise.
jaroslav@56
   788
     * @since 1.5
jaroslav@56
   789
     */
jaroslav@56
   790
    public String getCanonicalName() {
jaroslav@228
   791
        if (isArray()) {
jaroslav@228
   792
            String canonicalName = getComponentType().getCanonicalName();
jaroslav@228
   793
            if (canonicalName != null)
jaroslav@228
   794
                return canonicalName + "[]";
jaroslav@228
   795
            else
jaroslav@228
   796
                return null;
jaroslav@228
   797
        }
jaroslav@65
   798
//        if (isLocalOrAnonymousClass())
jaroslav@65
   799
//            return null;
jaroslav@65
   800
//        Class<?> enclosingClass = getEnclosingClass();
jaroslav@228
   801
        Class<?> enclosingClass = null;
jaroslav@228
   802
        if (enclosingClass == null) { // top level class
jaroslav@228
   803
            return getName();
jaroslav@228
   804
        } else {
jaroslav@228
   805
            String enclosingName = enclosingClass.getCanonicalName();
jaroslav@228
   806
            if (enclosingName == null)
jaroslav@228
   807
                return null;
jaroslav@228
   808
            return enclosingName + "." + getSimpleName();
jaroslav@228
   809
        }
jaroslav@56
   810
    }
jaroslav@56
   811
jaroslav@56
   812
    /**
jaroslav@56
   813
     * Finds a resource with a given name.  The rules for searching resources
jaroslav@56
   814
     * associated with a given class are implemented by the defining
jaroslav@56
   815
     * {@linkplain ClassLoader class loader} of the class.  This method
jaroslav@56
   816
     * delegates to this object's class loader.  If this object was loaded by
jaroslav@56
   817
     * the bootstrap class loader, the method delegates to {@link
jaroslav@56
   818
     * ClassLoader#getSystemResourceAsStream}.
jaroslav@56
   819
     *
jaroslav@56
   820
     * <p> Before delegation, an absolute resource name is constructed from the
jaroslav@56
   821
     * given resource name using this algorithm:
jaroslav@56
   822
     *
jaroslav@56
   823
     * <ul>
jaroslav@56
   824
     *
jaroslav@56
   825
     * <li> If the {@code name} begins with a {@code '/'}
jaroslav@56
   826
     * (<tt>'&#92;u002f'</tt>), then the absolute name of the resource is the
jaroslav@56
   827
     * portion of the {@code name} following the {@code '/'}.
jaroslav@56
   828
     *
jaroslav@56
   829
     * <li> Otherwise, the absolute name is of the following form:
jaroslav@56
   830
     *
jaroslav@56
   831
     * <blockquote>
jaroslav@56
   832
     *   {@code modified_package_name/name}
jaroslav@56
   833
     * </blockquote>
jaroslav@56
   834
     *
jaroslav@56
   835
     * <p> Where the {@code modified_package_name} is the package name of this
jaroslav@56
   836
     * object with {@code '/'} substituted for {@code '.'}
jaroslav@56
   837
     * (<tt>'&#92;u002e'</tt>).
jaroslav@56
   838
     *
jaroslav@56
   839
     * </ul>
jaroslav@56
   840
     *
jaroslav@56
   841
     * @param  name name of the desired resource
jaroslav@56
   842
     * @return      A {@link java.io.InputStream} object or {@code null} if
jaroslav@56
   843
     *              no resource with this name is found
jaroslav@56
   844
     * @throws  NullPointerException If {@code name} is {@code null}
jaroslav@56
   845
     * @since  JDK1.1
jaroslav@56
   846
     */
jaroslav@122
   847
     public InputStream getResourceAsStream(String name) {
jaroslav@122
   848
        name = resolveName(name);
jaroslav@122
   849
        ClassLoader cl = getClassLoader0();
jaroslav@122
   850
        if (cl==null) {
jaroslav@122
   851
            // A system class.
jaroslav@122
   852
            return ClassLoader.getSystemResourceAsStream(name);
jaroslav@122
   853
        }
jaroslav@122
   854
        return cl.getResourceAsStream(name);
jaroslav@122
   855
    }
jaroslav@56
   856
jaroslav@56
   857
    /**
jaroslav@56
   858
     * Finds a resource with a given name.  The rules for searching resources
jaroslav@56
   859
     * associated with a given class are implemented by the defining
jaroslav@56
   860
     * {@linkplain ClassLoader class loader} of the class.  This method
jaroslav@56
   861
     * delegates to this object's class loader.  If this object was loaded by
jaroslav@56
   862
     * the bootstrap class loader, the method delegates to {@link
jaroslav@56
   863
     * ClassLoader#getSystemResource}.
jaroslav@56
   864
     *
jaroslav@56
   865
     * <p> Before delegation, an absolute resource name is constructed from the
jaroslav@56
   866
     * given resource name using this algorithm:
jaroslav@56
   867
     *
jaroslav@56
   868
     * <ul>
jaroslav@56
   869
     *
jaroslav@56
   870
     * <li> If the {@code name} begins with a {@code '/'}
jaroslav@56
   871
     * (<tt>'&#92;u002f'</tt>), then the absolute name of the resource is the
jaroslav@56
   872
     * portion of the {@code name} following the {@code '/'}.
jaroslav@56
   873
     *
jaroslav@56
   874
     * <li> Otherwise, the absolute name is of the following form:
jaroslav@56
   875
     *
jaroslav@56
   876
     * <blockquote>
jaroslav@56
   877
     *   {@code modified_package_name/name}
jaroslav@56
   878
     * </blockquote>
jaroslav@56
   879
     *
jaroslav@56
   880
     * <p> Where the {@code modified_package_name} is the package name of this
jaroslav@56
   881
     * object with {@code '/'} substituted for {@code '.'}
jaroslav@56
   882
     * (<tt>'&#92;u002e'</tt>).
jaroslav@56
   883
     *
jaroslav@56
   884
     * </ul>
jaroslav@56
   885
     *
jaroslav@56
   886
     * @param  name name of the desired resource
jaroslav@56
   887
     * @return      A  {@link java.net.URL} object or {@code null} if no
jaroslav@56
   888
     *              resource with this name is found
jaroslav@56
   889
     * @since  JDK1.1
jaroslav@56
   890
     */
jaroslav@122
   891
    public java.net.URL getResource(String name) {
jaroslav@122
   892
        name = resolveName(name);
jaroslav@122
   893
        ClassLoader cl = getClassLoader0();
jaroslav@122
   894
        if (cl==null) {
jaroslav@122
   895
            // A system class.
jaroslav@122
   896
            return ClassLoader.getSystemResource(name);
jaroslav@122
   897
        }
jaroslav@122
   898
        return cl.getResource(name);
jaroslav@122
   899
    }
jaroslav@56
   900
jaroslav@56
   901
jaroslav@122
   902
   /**
jaroslav@122
   903
     * Add a package name prefix if the name is not absolute Remove leading "/"
jaroslav@122
   904
     * if name is absolute
jaroslav@122
   905
     */
jaroslav@122
   906
    private String resolveName(String name) {
jaroslav@122
   907
        if (name == null) {
jaroslav@122
   908
            return name;
jaroslav@122
   909
        }
jaroslav@122
   910
        if (!name.startsWith("/")) {
jaroslav@122
   911
            Class<?> c = this;
jaroslav@122
   912
            while (c.isArray()) {
jaroslav@122
   913
                c = c.getComponentType();
jaroslav@122
   914
            }
jaroslav@122
   915
            String baseName = c.getName();
jaroslav@122
   916
            int index = baseName.lastIndexOf('.');
jaroslav@122
   917
            if (index != -1) {
jaroslav@122
   918
                name = baseName.substring(0, index).replace('.', '/')
jaroslav@122
   919
                    +"/"+name;
jaroslav@122
   920
            }
jaroslav@122
   921
        } else {
jaroslav@122
   922
            name = name.substring(1);
jaroslav@122
   923
        }
jaroslav@122
   924
        return name;
jaroslav@122
   925
    }
jaroslav@122
   926
    
jaroslav@122
   927
    /**
jaroslav@122
   928
     * Returns the class loader for the class.  Some implementations may use
jaroslav@122
   929
     * null to represent the bootstrap class loader. This method will return
jaroslav@122
   930
     * null in such implementations if this class was loaded by the bootstrap
jaroslav@122
   931
     * class loader.
jaroslav@122
   932
     *
jaroslav@122
   933
     * <p> If a security manager is present, and the caller's class loader is
jaroslav@122
   934
     * not null and the caller's class loader is not the same as or an ancestor of
jaroslav@122
   935
     * the class loader for the class whose class loader is requested, then
jaroslav@122
   936
     * this method calls the security manager's {@code checkPermission}
jaroslav@122
   937
     * method with a {@code RuntimePermission("getClassLoader")}
jaroslav@122
   938
     * permission to ensure it's ok to access the class loader for the class.
jaroslav@122
   939
     *
jaroslav@122
   940
     * <p>If this object
jaroslav@122
   941
     * represents a primitive type or void, null is returned.
jaroslav@122
   942
     *
jaroslav@122
   943
     * @return  the class loader that loaded the class or interface
jaroslav@122
   944
     *          represented by this object.
jaroslav@122
   945
     * @throws SecurityException
jaroslav@122
   946
     *    if a security manager exists and its
jaroslav@122
   947
     *    {@code checkPermission} method denies
jaroslav@122
   948
     *    access to the class loader for the class.
jaroslav@122
   949
     * @see java.lang.ClassLoader
jaroslav@122
   950
     * @see SecurityManager#checkPermission
jaroslav@122
   951
     * @see java.lang.RuntimePermission
jaroslav@122
   952
     */
jaroslav@122
   953
    public ClassLoader getClassLoader() {
jaroslav@122
   954
        throw new SecurityException();
jaroslav@122
   955
    }
jaroslav@122
   956
    
jaroslav@122
   957
    // Package-private to allow ClassLoader access
jaroslav@122
   958
    native ClassLoader getClassLoader0();    
jaroslav@56
   959
jaroslav@122
   960
    /**
jaroslav@122
   961
     * Returns the {@code Class} representing the component type of an
jaroslav@122
   962
     * array.  If this class does not represent an array class this method
jaroslav@122
   963
     * returns null.
jaroslav@122
   964
     *
jaroslav@122
   965
     * @return the {@code Class} representing the component type of this
jaroslav@122
   966
     * class if this class is an array
jaroslav@122
   967
     * @see     java.lang.reflect.Array
jaroslav@122
   968
     * @since JDK1.1
jaroslav@122
   969
     */
jaroslav@228
   970
    public Class<?> getComponentType() {
jaroslav@228
   971
        return null;
jaroslav@228
   972
    }
jaroslav@56
   973
jaroslav@56
   974
    /**
jaroslav@56
   975
     * Returns true if and only if this class was declared as an enum in the
jaroslav@56
   976
     * source code.
jaroslav@56
   977
     *
jaroslav@56
   978
     * @return true if and only if this class was declared as an enum in the
jaroslav@56
   979
     *     source code
jaroslav@56
   980
     * @since 1.5
jaroslav@56
   981
     */
jaroslav@56
   982
    public boolean isEnum() {
jaroslav@56
   983
        // An enum must both directly extend java.lang.Enum and have
jaroslav@56
   984
        // the ENUM bit set; classes for specialized enum constants
jaroslav@56
   985
        // don't do the former.
jaroslav@56
   986
        return (this.getModifiers() & ENUM) != 0 &&
jaroslav@56
   987
        this.getSuperclass() == java.lang.Enum.class;
jaroslav@56
   988
    }
jaroslav@56
   989
jaroslav@56
   990
    /**
jaroslav@56
   991
     * Casts an object to the class or interface represented
jaroslav@56
   992
     * by this {@code Class} object.
jaroslav@56
   993
     *
jaroslav@56
   994
     * @param obj the object to be cast
jaroslav@56
   995
     * @return the object after casting, or null if obj is null
jaroslav@56
   996
     *
jaroslav@56
   997
     * @throws ClassCastException if the object is not
jaroslav@56
   998
     * null and is not assignable to the type T.
jaroslav@56
   999
     *
jaroslav@56
  1000
     * @since 1.5
jaroslav@56
  1001
     */
jaroslav@56
  1002
    public T cast(Object obj) {
jaroslav@56
  1003
        if (obj != null && !isInstance(obj))
jaroslav@56
  1004
            throw new ClassCastException(cannotCastMsg(obj));
jaroslav@56
  1005
        return (T) obj;
jaroslav@56
  1006
    }
jaroslav@56
  1007
jaroslav@56
  1008
    private String cannotCastMsg(Object obj) {
jaroslav@56
  1009
        return "Cannot cast " + obj.getClass().getName() + " to " + getName();
jaroslav@56
  1010
    }
jaroslav@56
  1011
jaroslav@56
  1012
    /**
jaroslav@56
  1013
     * Casts this {@code Class} object to represent a subclass of the class
jaroslav@56
  1014
     * represented by the specified class object.  Checks that that the cast
jaroslav@56
  1015
     * is valid, and throws a {@code ClassCastException} if it is not.  If
jaroslav@56
  1016
     * this method succeeds, it always returns a reference to this class object.
jaroslav@56
  1017
     *
jaroslav@56
  1018
     * <p>This method is useful when a client needs to "narrow" the type of
jaroslav@56
  1019
     * a {@code Class} object to pass it to an API that restricts the
jaroslav@56
  1020
     * {@code Class} objects that it is willing to accept.  A cast would
jaroslav@56
  1021
     * generate a compile-time warning, as the correctness of the cast
jaroslav@56
  1022
     * could not be checked at runtime (because generic types are implemented
jaroslav@56
  1023
     * by erasure).
jaroslav@56
  1024
     *
jaroslav@56
  1025
     * @return this {@code Class} object, cast to represent a subclass of
jaroslav@56
  1026
     *    the specified class object.
jaroslav@56
  1027
     * @throws ClassCastException if this {@code Class} object does not
jaroslav@56
  1028
     *    represent a subclass of the specified class (here "subclass" includes
jaroslav@56
  1029
     *    the class itself).
jaroslav@56
  1030
     * @since 1.5
jaroslav@56
  1031
     */
jaroslav@56
  1032
    public <U> Class<? extends U> asSubclass(Class<U> clazz) {
jaroslav@56
  1033
        if (clazz.isAssignableFrom(this))
jaroslav@56
  1034
            return (Class<? extends U>) this;
jaroslav@56
  1035
        else
jaroslav@56
  1036
            throw new ClassCastException(this.toString());
jaroslav@56
  1037
    }
jaroslav@56
  1038
jaroslav@235
  1039
    @JavaScriptBody(args = { "self", "ac" }, 
jaroslav@235
  1040
        body = 
jaroslav@235
  1041
          "if (self.anno) {"
jaroslav@235
  1042
        + "  return self.anno['L' + ac.jvmName + ';'];"
jaroslav@266
  1043
        + "} else return null;"
jaroslav@235
  1044
    )
jaroslav@235
  1045
    private Object getAnnotationData(Class<?> annotationClass) {
jaroslav@235
  1046
        throw new UnsupportedOperationException();
jaroslav@235
  1047
    }
jaroslav@237
  1048
    /**
jaroslav@237
  1049
     * @throws NullPointerException {@inheritDoc}
jaroslav@237
  1050
     * @since 1.5
jaroslav@237
  1051
     */
jaroslav@56
  1052
    public <A extends Annotation> A getAnnotation(Class<A> annotationClass) {
jaroslav@235
  1053
        Object data = getAnnotationData(annotationClass);
jaroslav@235
  1054
        return data == null ? null : AnnotationImpl.create(annotationClass, data);
jaroslav@56
  1055
    }
jaroslav@56
  1056
jaroslav@56
  1057
    /**
jaroslav@56
  1058
     * @throws NullPointerException {@inheritDoc}
jaroslav@56
  1059
     * @since 1.5
jaroslav@56
  1060
     */
jaroslav@235
  1061
    @JavaScriptBody(args = { "self", "ac" }, 
jaroslav@235
  1062
        body = "if (self.anno && self.anno['L' + ac.jvmName + ';']) { return true; }"
jaroslav@235
  1063
        + "else return false;"
jaroslav@235
  1064
    )
jaroslav@56
  1065
    public boolean isAnnotationPresent(
jaroslav@56
  1066
        Class<? extends Annotation> annotationClass) {
jaroslav@56
  1067
        if (annotationClass == null)
jaroslav@56
  1068
            throw new NullPointerException();
jaroslav@56
  1069
jaroslav@56
  1070
        return getAnnotation(annotationClass) != null;
jaroslav@56
  1071
    }
jaroslav@56
  1072
jaroslav@238
  1073
    @JavaScriptBody(args = "self", body = "return self.anno;")
jaroslav@238
  1074
    private Object getAnnotationData() {
jaroslav@238
  1075
        throw new UnsupportedOperationException();
jaroslav@238
  1076
    }
jaroslav@56
  1077
jaroslav@56
  1078
    /**
jaroslav@56
  1079
     * @since 1.5
jaroslav@56
  1080
     */
jaroslav@56
  1081
    public Annotation[] getAnnotations() {
jaroslav@238
  1082
        Object data = getAnnotationData();
jaroslav@238
  1083
        return data == null ? new Annotation[0] : AnnotationImpl.create(data);
jaroslav@56
  1084
    }
jaroslav@56
  1085
jaroslav@56
  1086
    /**
jaroslav@56
  1087
     * @since 1.5
jaroslav@56
  1088
     */
jaroslav@56
  1089
    public Annotation[] getDeclaredAnnotations()  {
jaroslav@65
  1090
        throw new UnsupportedOperationException();
jaroslav@56
  1091
    }
jaroslav@56
  1092
jaroslav@353
  1093
    @JavaScriptBody(args = "type", body = ""
jaroslav@353
  1094
        + "var c = vm.java_lang_Class(true);"
jaroslav@353
  1095
        + "c.jvmName = type;"
jaroslav@353
  1096
        + "return c;"
jaroslav@353
  1097
    )
jaroslav@353
  1098
    native static Class getPrimitiveClass(String type);
jaroslav@88
  1099
jaroslav@88
  1100
    public boolean desiredAssertionStatus() {
jaroslav@88
  1101
        return false;
jaroslav@88
  1102
    }
jaroslav@56
  1103
}