/* ObjectStreamClass.java -- Class used to write class information about serialized objects. Copyright (C) 1998, 1999, 2000, 2001, 2003, 2005 Free Software Foundation, Inc. This file is part of GNU Classpath. GNU Classpath is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2, or (at your option) any later version. GNU Classpath is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with GNU Classpath; see the file COPYING. If not, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. Linking this library statically or dynamically with other modules is making a combined work based on this library. Thus, the terms and conditions of the GNU General Public License cover the whole combination. As a special exception, the copyright holders of this library give you permission to link this library with independent modules to produce an executable, regardless of the license terms of these independent modules, and to copy and distribute the resulting executable under terms of your choice, provided that you also meet, for each linked independent module, the terms and conditions of the license of that module. An independent module is a module which is not derived from or based on this library. If you modify this library, you may extend this exception to your version of the library, but you are not obligated to do so. If you do not wish to do so, delete this exception statement from your version. */ package java.io; import gnu.java.io.NullOutputStream; import gnu.java.lang.reflect.TypeSignature; import gnu.java.security.action.SetAccessibleAction; import gnu.java.security.provider.Gnu; import java.lang.reflect.Constructor; import java.lang.reflect.Field; import java.lang.reflect.Member; import java.lang.reflect.Method; import java.lang.reflect.Modifier; import java.lang.reflect.Proxy; import java.security.AccessController; import java.security.DigestOutputStream; import java.security.MessageDigest; import java.security.NoSuchAlgorithmException; import java.security.PrivilegedAction; import java.security.Security; import java.util.Arrays; import java.util.Comparator; import java.util.Hashtable; /** * @author Tom Tromey (tromey@redhat.com) * @author Jeroen Frijters (jeroen@frijters.net) * @author Guilhem Lavaux (guilhem@kaffe.org) * @author Michael Koch (konqueror@gmx.de) * @author Andrew John Hughes (gnu_andrew@member.fsf.org) */ public class ObjectStreamClass implements Serializable { static final ObjectStreamField[] INVALID_FIELDS = new ObjectStreamField[0]; /** * Returns the ObjectStreamClass for cl. * If cl is null, or is not Serializable, * null is returned. ObjectStreamClass's are memorized; * later calls to this method with the same class will return the * same ObjectStreamClass object and no recalculation * will be done. * * Warning: If this class contains an invalid serialPersistentField arrays * lookup will not throw anything. However {@link #getFields()} will return * an empty array and {@link java.io.ObjectOutputStream#writeObject} will throw an * {@link java.io.InvalidClassException}. * * @see java.io.Serializable */ public static ObjectStreamClass lookup(Class cl) { if (cl == null) return null; if (! (Serializable.class).isAssignableFrom(cl)) return null; return lookupForClassObject(cl); } /** * This lookup for internal use by ObjectOutputStream. Suppose * we have a java.lang.Class object C for class A, though A is not * serializable, but it's okay to serialize C. */ static ObjectStreamClass lookupForClassObject(Class cl) { if (cl == null) return null; ObjectStreamClass osc = classLookupTable.get(cl); if (osc != null) return osc; else { osc = new ObjectStreamClass(cl); classLookupTable.put(cl, osc); return osc; } } /** * Returns the name of the class that this * ObjectStreamClass represents. * * @return the name of the class. */ public String getName() { return name; } /** * Returns the class that this ObjectStreamClass * represents. Null could be returned if this * ObjectStreamClass was read from an * ObjectInputStream and the class it represents cannot * be found or loaded. * * @see java.io.ObjectInputStream */ public Class forClass() { return clazz; } /** * Returns the serial version stream-unique identifier for the class * represented by this ObjectStreamClass. This SUID is * either defined by the class as static final long * serialVersionUID or is calculated as specified in * Javasoft's "Object Serialization Specification" XXX: add reference * * @return the serial version UID. */ public long getSerialVersionUID() { return uid; } /** * Returns the serializable (non-static and non-transient) Fields * of the class represented by this ObjectStreamClass. The Fields * are sorted by name. * If fields were obtained using serialPersistentFields and this array * is faulty then the returned array of this method will be empty. * * @return the fields. */ public ObjectStreamField[] getFields() { ObjectStreamField[] copy = new ObjectStreamField[ fields.length ]; System.arraycopy(fields, 0, copy, 0, fields.length); return copy; } // XXX doc // Can't do binary search since fields is sorted by name and // primitiveness. public ObjectStreamField getField (String name) { for (int i = 0; i < fields.length; i++) if (fields[i].getName().equals(name)) return fields[i]; return null; } /** * Returns a textual representation of this * ObjectStreamClass object including the name of the * class it represents as well as that class's serial version * stream-unique identifier. * * @see #getSerialVersionUID() * @see #getName() */ public String toString() { return "java.io.ObjectStreamClass< " + name + ", " + uid + " >"; } // Returns true iff the class that this ObjectStreamClass represents // has the following method: // // private void writeObject (ObjectOutputStream) // // This method is used by the class to override default // serialization behavior. boolean hasWriteMethod() { return (flags & ObjectStreamConstants.SC_WRITE_METHOD) != 0; } // Returns true iff the class that this ObjectStreamClass represents // implements Serializable but does *not* implement Externalizable. boolean isSerializable() { return (flags & ObjectStreamConstants.SC_SERIALIZABLE) != 0; } // Returns true iff the class that this ObjectStreamClass represents // implements Externalizable. boolean isExternalizable() { return (flags & ObjectStreamConstants.SC_EXTERNALIZABLE) != 0; } // Returns true iff the class that this ObjectStreamClass represents // implements Externalizable. boolean isEnum() { return (flags & ObjectStreamConstants.SC_ENUM) != 0; } // Returns the ObjectStreamClass that represents the // class that is the superclass of the class this // ObjectStreamClass represents. If the superclass is // not Serializable, null is returned. ObjectStreamClass getSuper() { return superClass; } /** * returns an array of ObjectStreamClasses that represent the super * classes of the class represented by this and the class * represented by this itself in order from most super to this. * ObjectStreamClass[0] is the highest superclass of this that is * serializable. * * The result of consecutive calls this hierarchy() will be the same * array instance. * * @return an array of ObjectStreamClass representing the * super-class hierarchy of serializable classes. */ ObjectStreamClass[] hierarchy() { ObjectStreamClass[] result = hierarchy; if (result == null) { int d = 0; for(ObjectStreamClass osc = this; osc != null; osc = osc.getSuper()) d++; result = new ObjectStreamClass[d]; for (ObjectStreamClass osc = this; osc != null; osc = osc.getSuper()) { result[--d] = osc; } hierarchy = result; } return result; } /** * Cache for hierarchy() result. */ private ObjectStreamClass[] hierarchy = null; // Returns an integer that consists of bit-flags that indicate // properties of the class represented by this ObjectStreamClass. // The bit-flags that could be present are those defined in // ObjectStreamConstants that begin with `SC_' int getFlags() { return flags; } ObjectStreamClass(String name, long uid, byte flags, ObjectStreamField[] fields) { this.name = name; this.uid = uid; this.flags = flags; this.fields = fields; } /** * This method builds the internal description corresponding to a Java Class. * As the constructor only assign a name to the current ObjectStreamClass instance, * that method sets the serial UID, chose the fields which will be serialized, * and compute the position of the fields in the serialized stream. * * @param cl The Java class which is used as a reference for building the descriptor. * @param superClass The descriptor of the super class for this class descriptor. * @throws InvalidClassException if an incompatibility between computed UID and * already set UID is found. */ void setClass(Class cl, ObjectStreamClass superClass) throws InvalidClassException {hierarchy = null; this.clazz = cl; cacheMethods(); long class_uid = getClassUID(cl); if (uid == 0) uid = class_uid; else { // Check that the actual UID of the resolved class matches the UID from // the stream. Mismatches for array classes are ignored. if (!cl.isArray() && uid != class_uid) { String msg = cl + ": Local class not compatible: stream serialVersionUID=" + uid + ", local serialVersionUID=" + class_uid; throw new InvalidClassException (msg); } } isProxyClass = clazz != null && Proxy.isProxyClass(clazz); this.superClass = superClass; calculateOffsets(); try { ObjectStreamField[] exportedFields = getSerialPersistentFields (clazz); if (exportedFields == null) return; ObjectStreamField[] newFieldList = new ObjectStreamField[exportedFields.length + fields.length]; int i, j, k; /* We now check the import fields against the exported fields. * There should not be contradiction (e.g. int x and String x) * but extra virtual fields can be added to the class. */ Arrays.sort(exportedFields); i = 0; j = 0; k = 0; while (i < fields.length && j < exportedFields.length) { int comp = fields[i].compareTo(exportedFields[j]); if (comp < 0) { newFieldList[k] = fields[i]; fields[i].setPersistent(false); fields[i].setToSet(false); i++; } else if (comp > 0) { /* field not found in imported fields. We add it * in the list of supported fields. */ newFieldList[k] = exportedFields[j]; newFieldList[k].setPersistent(true); newFieldList[k].setToSet(false); try { newFieldList[k].lookupField(clazz); newFieldList[k].checkFieldType(); } catch (NoSuchFieldException _) { } j++; } else { try { exportedFields[j].lookupField(clazz); exportedFields[j].checkFieldType(); } catch (NoSuchFieldException _) { } if (!fields[i].getType().equals(exportedFields[j].getType())) throw new InvalidClassException ("serialPersistentFields must be compatible with" + " imported fields (about " + fields[i].getName() + ")"); newFieldList[k] = fields[i]; fields[i].setPersistent(true); i++; j++; } k++; } if (i < fields.length) for (;i"); data_out.writeInt(Modifier.STATIC); data_out.writeUTF("()V"); } Constructor constructor; Constructor[] constructors = cl.getDeclaredConstructors(); Arrays.sort (constructors, memberComparator); for (int i = 0; i < constructors.length; i++) { constructor = constructors[i]; modifiers = constructor.getModifiers(); if (Modifier.isPrivate(modifiers)) continue; data_out.writeUTF(""); data_out.writeInt(modifiers); // the replacement of '/' with '.' was needed to make computed // SUID's agree with those computed by JDK data_out.writeUTF (TypeSignature.getEncodingOfConstructor(constructor).replace('/','.')); } Method method; Method[] methods = cl.getDeclaredMethods(); Arrays.sort(methods, memberComparator); for (int i = 0; i < methods.length; i++) { method = methods[i]; modifiers = method.getModifiers(); if (Modifier.isPrivate(modifiers)) continue; data_out.writeUTF(method.getName()); data_out.writeInt(modifiers); // the replacement of '/' with '.' was needed to make computed // SUID's agree with those computed by JDK data_out.writeUTF (TypeSignature.getEncodingOfMethod(method).replace('/', '.')); } data_out.close(); byte[] sha = md.digest(); result = 0; int len = sha.length < 8 ? sha.length : 8; for (int i = 0; i < len; i++) result += (long) (sha[i] & 0xFF) << (8 * i); return result; } /** * Returns the value of CLAZZ's private static final field named * `serialPersistentFields'. It performs some sanity checks before * returning the real array. Besides, the returned array is a clean * copy of the original. So it can be modified. * * @param clazz Class to retrieve 'serialPersistentFields' from. * @return The content of 'serialPersistentFields'. */ private ObjectStreamField[] getSerialPersistentFields(Class clazz) throws NoSuchFieldException, IllegalAccessException { ObjectStreamField[] fieldsArray = null; ObjectStreamField[] o; // Use getDeclaredField rather than getField for the same reason // as above in getDefinedSUID. Field f = clazz.getDeclaredField("serialPersistentFields"); f.setAccessible(true); int modifiers = f.getModifiers(); if (!(Modifier.isStatic(modifiers) && Modifier.isFinal(modifiers) && Modifier.isPrivate(modifiers))) return null; o = (ObjectStreamField[]) f.get(null); if (o == null) return null; fieldsArray = new ObjectStreamField[ o.length ]; System.arraycopy(o, 0, fieldsArray, 0, o.length); return fieldsArray; } /** * Returns a new instance of the Class this ObjectStreamClass corresponds * to. * Note that this should only be used for Externalizable classes. * * @return A new instance. */ Externalizable newInstance() throws InvalidClassException { synchronized(this) { if (constructor == null) { try { final Constructor c = clazz.getConstructor(new Class[0]); AccessController.doPrivileged(new PrivilegedAction() { public Object run() { c.setAccessible(true); return null; } }); constructor = c; } catch(NoSuchMethodException x) { throw new InvalidClassException(clazz.getName(), "No public zero-argument constructor"); } } } try { return (Externalizable)constructor.newInstance(); } catch(Exception x) { throw (InvalidClassException) new InvalidClassException(clazz.getName(), "Unable to instantiate").initCause(x); } } public static final ObjectStreamField[] NO_FIELDS = {}; private static Hashtable classLookupTable = new Hashtable(); private static final NullOutputStream nullOutputStream = new NullOutputStream(); private static final Comparator interfaceComparator = new InterfaceComparator(); private static final Comparator memberComparator = new MemberComparator(); private static final Class[] writeMethodArgTypes = { java.io.ObjectOutputStream.class }; private ObjectStreamClass superClass; private Class clazz; private String name; private long uid; private byte flags; // this field is package protected so that ObjectInputStream and // ObjectOutputStream can access it directly ObjectStreamField[] fields; // these are accessed by ObjectIn/OutputStream int primFieldSize = -1; // -1 if not yet calculated int objectFieldCount; Method readObjectMethod; Method readResolveMethod; Method writeReplaceMethod; Method writeObjectMethod; boolean realClassIsSerializable; boolean realClassIsExternalizable; ObjectStreamField[] fieldMapping; Constructor firstNonSerializableParentConstructor; private Constructor constructor; // default constructor for Externalizable boolean isProxyClass = false; /* GCJ LOCAL */ // True after setFields() has been called private boolean fieldsSet = false; /* END GCJ LOCAL */ // This is probably not necessary because this class is special cased already // but it will avoid showing up as a discrepancy when comparing SUIDs. private static final long serialVersionUID = -6120832682080437368L; // interfaces are compared only by name private static final class InterfaceComparator implements Comparator { public int compare(Object o1, Object o2) { return ((Class) o1).getName().compareTo(((Class) o2).getName()); } } // Members (Methods and Constructors) are compared first by name, // conflicts are resolved by comparing type signatures private static final class MemberComparator implements Comparator { public int compare(Object o1, Object o2) { Member m1 = (Member) o1; Member m2 = (Member) o2; int comp = m1.getName().compareTo(m2.getName()); if (comp == 0) return TypeSignature.getEncodingOfMember(m1). compareTo(TypeSignature.getEncodingOfMember(m2)); else return comp; } } }