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8234542: code removal of Pack200 Tools and API
Reviewed-by: alanb, mchung, erikj
This commit is contained in:
parent
c198b4da32
commit
9ac2f8b654
107 changed files with 4 additions and 46217 deletions
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@ -1,733 +0,0 @@
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/*
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* Copyright (c) 2003, 2019, 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
|
||||
* 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.util.jar;
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import java.util.SortedMap;
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import java.io.InputStream;
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import java.io.OutputStream;
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import java.io.File;
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import java.io.IOException;
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import sun.security.action.GetPropertyAction;
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/**
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* Transforms a JAR file to or from a packed stream in Pack200 format.
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* Please refer to <a href="{@docRoot}/../specs/pack-spec.html">Network Transfer Format JSR 200 Specification</a>
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* <p>
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* Typically the packer engine is used by application developers
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* to deploy or host JAR files on a website.
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* The unpacker engine is used by deployment applications to
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* transform the byte-stream back to JAR format.
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* <p>
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* Here is an example using packer and unpacker:
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* <pre>{@code
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* import java.util.jar.Pack200;
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* import java.util.jar.Pack200.*;
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* ...
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* // Create the Packer object
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* Packer packer = Pack200.newPacker();
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*
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* // Initialize the state by setting the desired properties
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* Map p = packer.properties();
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* // take more time choosing codings for better compression
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* p.put(Packer.EFFORT, "7"); // default is "5"
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* // use largest-possible archive segments (>10% better compression).
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* p.put(Packer.SEGMENT_LIMIT, "-1");
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* // reorder files for better compression.
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* p.put(Packer.KEEP_FILE_ORDER, Packer.FALSE);
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* // smear modification times to a single value.
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* p.put(Packer.MODIFICATION_TIME, Packer.LATEST);
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* // ignore all JAR deflation requests,
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* // transmitting a single request to use "store" mode.
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* p.put(Packer.DEFLATE_HINT, Packer.FALSE);
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* // discard debug attributes
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* p.put(Packer.CODE_ATTRIBUTE_PFX+"LineNumberTable", Packer.STRIP);
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* // throw an error if an attribute is unrecognized
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* p.put(Packer.UNKNOWN_ATTRIBUTE, Packer.ERROR);
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* // pass one class file uncompressed:
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* p.put(Packer.PASS_FILE_PFX+0, "mutants/Rogue.class");
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* try {
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* JarFile jarFile = new JarFile("/tmp/testref.jar");
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* FileOutputStream fos = new FileOutputStream("/tmp/test.pack");
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* // Call the packer
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* packer.pack(jarFile, fos);
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* jarFile.close();
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* fos.close();
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*
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* File f = new File("/tmp/test.pack");
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* FileOutputStream fostream = new FileOutputStream("/tmp/test.jar");
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* JarOutputStream jostream = new JarOutputStream(fostream);
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* Unpacker unpacker = Pack200.newUnpacker();
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* // Call the unpacker
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* unpacker.unpack(f, jostream);
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* // Must explicitly close the output.
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* jostream.close();
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* } catch (IOException ioe) {
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* ioe.printStackTrace();
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* }
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* }</pre>
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* <p>
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* A Pack200 file compressed with gzip can be hosted on HTTP/1.1 web servers.
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* The deployment applications can use "Accept-Encoding=pack200-gzip". This
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* indicates to the server that the client application desires a version of
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* the file encoded with Pack200 and further compressed with gzip. Please
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* refer to the Java Deployment Guide for techniques and details.
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* <p>
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* Unless otherwise noted, passing a {@code null} argument to a constructor or
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* method in this class will cause a {@link NullPointerException} to be thrown.
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*
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* @author John Rose
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* @author Kumar Srinivasan
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* @since 1.5
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* @deprecated This class is deprecated, and is planned for removal in a future
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* release.
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*/
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@Deprecated(since="11", forRemoval=true)
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public abstract class Pack200 {
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private Pack200() {} //prevent instantiation
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// Static methods of the Pack200 class.
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/**
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* Obtain new instance of a class that implements Packer.
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* <ul>
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* <li><p>If the system property {@systemProperty java.util.jar.Pack200.Packer}
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* is defined, then the value is taken to be the fully-qualified name
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* of a concrete implementation class, which must implement Packer.
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* This class is loaded and instantiated. If this process fails
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* then an unspecified error is thrown.</p></li>
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*
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* <li><p>If an implementation has not been specified with the system
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* property, then the system-default implementation class is instantiated,
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* and the result is returned.</p></li>
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* </ul>
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*
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* <p>Note: The returned object is not guaranteed to operate
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* correctly if multiple threads use it at the same time.
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* A multi-threaded application should either allocate multiple
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* packer engines, or else serialize use of one engine with a lock.
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*
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* @return A newly allocated Packer engine.
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*/
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public static synchronized Packer newPacker() {
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return (Packer) newInstance(PACK_PROVIDER);
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}
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/**
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* Obtain new instance of a class that implements Unpacker.
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* <ul>
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* <li><p>If the system property {@systemProperty java.util.jar.Pack200.Unpacker}
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* is defined, then the value is taken to be the fully-qualified
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* name of a concrete implementation class, which must implement Unpacker.
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* The class is loaded and instantiated. If this process fails
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* then an unspecified error is thrown.</p></li>
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*
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* <li><p>If an implementation has not been specified with the
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* system property, then the system-default implementation class
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* is instantiated, and the result is returned.</p></li>
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* </ul>
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*
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* <p>Note: The returned object is not guaranteed to operate
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* correctly if multiple threads use it at the same time.
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* A multi-threaded application should either allocate multiple
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* unpacker engines, or else serialize use of one engine with a lock.
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*
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* @return A newly allocated Unpacker engine.
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*/
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public static Unpacker newUnpacker() {
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return (Unpacker) newInstance(UNPACK_PROVIDER);
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}
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// Interfaces
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/**
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* The packer engine applies various transformations to the input JAR file,
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* making the pack stream highly compressible by a compressor such as
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* gzip or zip. An instance of the engine can be obtained
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* using {@link #newPacker}.
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* The high degree of compression is achieved
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* by using a number of techniques described in the JSR 200 specification.
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* Some of the techniques are sorting, re-ordering and co-location of the
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* constant pool.
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* <p>
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* The pack engine is initialized to an initial state as described
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* by their properties below.
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* The initial state can be manipulated by getting the
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* engine properties (using {@link #properties}) and storing
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* the modified properties on the map.
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* The resource files will be passed through with no changes at all.
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* The class files will not contain identical bytes, since the unpacker
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* is free to change minor class file features such as constant pool order.
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* However, the class files will be semantically identical,
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* as specified in
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* <cite>The Java™ Virtual Machine Specification</cite>.
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* <p>
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* By default, the packer does not change the order of JAR elements.
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* Also, the modification time and deflation hint of each
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* JAR element is passed unchanged.
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* (Any other ZIP-archive information, such as extra attributes
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* giving Unix file permissions, are lost.)
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* <p>
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* Note that packing and unpacking a JAR will in general alter the
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* bytewise contents of classfiles in the JAR. This means that packing
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* and unpacking will in general invalidate any digital signatures
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* which rely on bytewise images of JAR elements. In order both to sign
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* and to pack a JAR, you must first pack and unpack the JAR to
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* "normalize" it, then compute signatures on the unpacked JAR elements,
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* and finally repack the signed JAR.
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* Both packing steps should
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* use precisely the same options, and the segment limit may also
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* need to be set to "-1", to prevent accidental variation of segment
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* boundaries as class file sizes change slightly.
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* <p>
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* (Here's why this works: Any reordering the packer does
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* of any classfile structures is idempotent, so the second packing
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* does not change the orderings produced by the first packing.
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* Also, the unpacker is guaranteed by the JSR 200 specification
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* to produce a specific bytewise image for any given transmission
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* ordering of archive elements.)
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* <p>
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* In order to maintain backward compatibility, the pack file's version is
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* set to accommodate the class files present in the input JAR file. In
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* other words, the pack file version will be the latest, if the class files
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* are the latest and conversely the pack file version will be the oldest
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* if the class file versions are also the oldest. For intermediate class
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* file versions the corresponding pack file version will be used.
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* For example:
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* If the input JAR-files are solely comprised of 1.5 (or lesser)
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* class files, a 1.5 compatible pack file is produced. This will also be
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* the case for archives that have no class files.
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* If the input JAR-files contains a 1.6 class file, then the pack file
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* version will be set to 1.6.
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* <p>
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* Note: Unless otherwise noted, passing a {@code null} argument to a
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* constructor or method in this class will cause a {@link NullPointerException}
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* to be thrown.
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*
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* @since 1.5
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* @deprecated This interface is deprecated, and is planned for removal in a
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* future release.
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*/
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@Deprecated(since="11", forRemoval=true)
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public interface Packer {
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/**
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* This property is a numeral giving the estimated target size N
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* (in bytes) of each archive segment.
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* If a single input file requires more than N bytes,
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* it will be given its own archive segment.
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* <p>
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* As a special case, a value of -1 will produce a single large
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* segment with all input files, while a value of 0 will
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* produce one segment for each class.
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* Larger archive segments result in less fragmentation and
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* better compression, but processing them requires more memory.
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* <p>
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* The size of each segment is estimated by counting the size of each
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* input file to be transmitted in the segment, along with the size
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* of its name and other transmitted properties.
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* <p>
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* The default is -1, which means the packer will always create a single
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* segment output file. In cases where extremely large output files are
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* generated, users are strongly encouraged to use segmenting or break
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* up the input file into smaller JARs.
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* <p>
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* A 10Mb JAR packed without this limit will
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* typically pack about 10% smaller, but the packer may require
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* a larger Java heap (about ten times the segment limit).
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*/
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String SEGMENT_LIMIT = "pack.segment.limit";
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/**
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* If this property is set to {@link #TRUE}, the packer will transmit
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* all elements in their original order within the source archive.
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* <p>
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* If it is set to {@link #FALSE}, the packer may reorder elements,
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* and also remove JAR directory entries, which carry no useful
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* information for Java applications.
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* (Typically this enables better compression.)
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* <p>
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* The default is {@link #TRUE}, which preserves the input information,
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* but may cause the transmitted archive to be larger than necessary.
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*/
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String KEEP_FILE_ORDER = "pack.keep.file.order";
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/**
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* If this property is set to a single decimal digit, the packer will
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* use the indicated amount of effort in compressing the archive.
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* Level 1 may produce somewhat larger size and faster compression speed,
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* while level 9 will take much longer but may produce better compression.
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* <p>
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* The special value 0 instructs the packer to copy through the
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* original JAR file directly, with no compression. The JSR 200
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* standard requires any unpacker to understand this special case
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* as a pass-through of the entire archive.
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* <p>
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* The default is 5, investing a modest amount of time to
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* produce reasonable compression.
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*/
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String EFFORT = "pack.effort";
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/**
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* If this property is set to {@link #TRUE} or {@link #FALSE}, the packer
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* will set the deflation hint accordingly in the output archive, and
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* will not transmit the individual deflation hints of archive elements.
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* <p>
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* If this property is set to the special string {@link #KEEP}, the packer
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* will attempt to determine an independent deflation hint for each
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* available element of the input archive, and transmit this hint separately.
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* <p>
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* The default is {@link #KEEP}, which preserves the input information,
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* but may cause the transmitted archive to be larger than necessary.
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* <p>
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* It is up to the unpacker implementation
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* to take action upon the hint to suitably compress the elements of
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* the resulting unpacked jar.
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* <p>
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* The deflation hint of a ZIP or JAR element indicates
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* whether the element was deflated or stored directly.
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*/
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String DEFLATE_HINT = "pack.deflate.hint";
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/**
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* If this property is set to the special string {@link #LATEST},
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* the packer will attempt to determine the latest modification time,
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* among all the available entries in the original archive or the latest
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* modification time of all the available entries in each segment.
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* This single value will be transmitted as part of the segment and applied
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* to all the entries in each segment, {@link #SEGMENT_LIMIT}.
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* <p>
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* This can marginally decrease the transmitted size of the
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* archive, at the expense of setting all installed files to a single
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* date.
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* <p>
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* If this property is set to the special string {@link #KEEP},
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* the packer transmits a separate modification time for each input
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* element.
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* <p>
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* The default is {@link #KEEP}, which preserves the input information,
|
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* but may cause the transmitted archive to be larger than necessary.
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* <p>
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* It is up to the unpacker implementation to take action to suitably
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* set the modification time of each element of its output file.
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* @see #SEGMENT_LIMIT
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*/
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String MODIFICATION_TIME = "pack.modification.time";
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/**
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* Indicates that a file should be passed through bytewise, with no
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* compression. Multiple files may be specified by specifying
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* additional properties with distinct strings appended, to
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* make a family of properties with the common prefix.
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* <p>
|
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* There is no pathname transformation, except
|
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* that the system file separator is replaced by the JAR file
|
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* separator '/'.
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* <p>
|
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* The resulting file names must match exactly as strings with their
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* occurrences in the JAR file.
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* <p>
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* If a property value is a directory name, all files under that
|
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* directory will be passed also.
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* <p>
|
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* Examples:
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* <pre>{@code
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* Map p = packer.properties();
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* p.put(PASS_FILE_PFX+0, "mutants/Rogue.class");
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* p.put(PASS_FILE_PFX+1, "mutants/Wolverine.class");
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* p.put(PASS_FILE_PFX+2, "mutants/Storm.class");
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* # Pass all files in an entire directory hierarchy:
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* p.put(PASS_FILE_PFX+3, "police/");
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* }</pre>
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*/
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String PASS_FILE_PFX = "pack.pass.file.";
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/// Attribute control.
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/**
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* Indicates the action to take when a class-file containing an unknown
|
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* attribute is encountered. Possible values are the strings {@link #ERROR},
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* {@link #STRIP}, and {@link #PASS}.
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* <p>
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* The string {@link #ERROR} means that the pack operation
|
||||
* as a whole will fail, with an exception of type {@code IOException}.
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* The string
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* {@link #STRIP} means that the attribute will be dropped.
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* The string
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||||
* {@link #PASS} means that the whole class-file will be passed through
|
||||
* (as if it were a resource file) without compression, with a suitable warning.
|
||||
* This is the default value for this property.
|
||||
* <p>
|
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* Examples:
|
||||
* <pre>{@code
|
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* Map p = pack200.getProperties();
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* p.put(UNKNOWN_ATTRIBUTE, ERROR);
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* p.put(UNKNOWN_ATTRIBUTE, STRIP);
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* p.put(UNKNOWN_ATTRIBUTE, PASS);
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* }</pre>
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*/
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String UNKNOWN_ATTRIBUTE = "pack.unknown.attribute";
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/**
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* When concatenated with a class attribute name,
|
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* indicates the format of that attribute,
|
||||
* using the layout language specified in the JSR 200 specification.
|
||||
* <p>
|
||||
* For example, the effect of this option is built in:
|
||||
* {@code pack.class.attribute.SourceFile=RUH}.
|
||||
* <p>
|
||||
* The special strings {@link #ERROR}, {@link #STRIP}, and {@link #PASS} are
|
||||
* also allowed, with the same meaning as {@link #UNKNOWN_ATTRIBUTE}.
|
||||
* This provides a way for users to request that specific attributes be
|
||||
* refused, stripped, or passed bitwise (with no class compression).
|
||||
* <p>
|
||||
* Code like this might be used to support attributes for JCOV:
|
||||
* <pre>{@code
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||||
* Map p = packer.properties();
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||||
* p.put(CODE_ATTRIBUTE_PFX+"CoverageTable", "NH[PHHII]");
|
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* p.put(CODE_ATTRIBUTE_PFX+"CharacterRangeTable", "NH[PHPOHIIH]");
|
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* p.put(CLASS_ATTRIBUTE_PFX+"SourceID", "RUH");
|
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* p.put(CLASS_ATTRIBUTE_PFX+"CompilationID", "RUH");
|
||||
* }</pre>
|
||||
* <p>
|
||||
* Code like this might be used to strip debugging attributes:
|
||||
* <pre>{@code
|
||||
* Map p = packer.properties();
|
||||
* p.put(CODE_ATTRIBUTE_PFX+"LineNumberTable", STRIP);
|
||||
* p.put(CODE_ATTRIBUTE_PFX+"LocalVariableTable", STRIP);
|
||||
* p.put(CLASS_ATTRIBUTE_PFX+"SourceFile", STRIP);
|
||||
* }</pre>
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||||
*/
|
||||
String CLASS_ATTRIBUTE_PFX = "pack.class.attribute.";
|
||||
|
||||
/**
|
||||
* When concatenated with a field attribute name,
|
||||
* indicates the format of that attribute.
|
||||
* For example, the effect of this option is built in:
|
||||
* {@code pack.field.attribute.Deprecated=}.
|
||||
* The special strings {@link #ERROR}, {@link #STRIP}, and
|
||||
* {@link #PASS} are also allowed.
|
||||
* @see #CLASS_ATTRIBUTE_PFX
|
||||
*/
|
||||
String FIELD_ATTRIBUTE_PFX = "pack.field.attribute.";
|
||||
|
||||
/**
|
||||
* When concatenated with a method attribute name,
|
||||
* indicates the format of that attribute.
|
||||
* For example, the effect of this option is built in:
|
||||
* {@code pack.method.attribute.Exceptions=NH[RCH]}.
|
||||
* The special strings {@link #ERROR}, {@link #STRIP}, and {@link #PASS}
|
||||
* are also allowed.
|
||||
* @see #CLASS_ATTRIBUTE_PFX
|
||||
*/
|
||||
String METHOD_ATTRIBUTE_PFX = "pack.method.attribute.";
|
||||
|
||||
/**
|
||||
* When concatenated with a code attribute name,
|
||||
* indicates the format of that attribute.
|
||||
* For example, the effect of this option is built in:
|
||||
* {@code pack.code.attribute.LocalVariableTable=NH[PHOHRUHRSHH]}.
|
||||
* The special strings {@link #ERROR}, {@link #STRIP}, and {@link #PASS}
|
||||
* are also allowed.
|
||||
* @see #CLASS_ATTRIBUTE_PFX
|
||||
*/
|
||||
String CODE_ATTRIBUTE_PFX = "pack.code.attribute.";
|
||||
|
||||
/**
|
||||
* The packer's progress as a percentage, as periodically
|
||||
* updated by the packer.
|
||||
* Values of 0 - 100 are normal, and -1 indicates a stall.
|
||||
* Progress can be monitored by polling the value of this
|
||||
* property.
|
||||
* <p>
|
||||
* At a minimum, the packer must set progress to 0
|
||||
* at the beginning of a packing operation, and to 100
|
||||
* at the end.
|
||||
*/
|
||||
String PROGRESS = "pack.progress";
|
||||
|
||||
/** The string "keep", a possible value for certain properties.
|
||||
* @see #DEFLATE_HINT
|
||||
* @see #MODIFICATION_TIME
|
||||
*/
|
||||
String KEEP = "keep";
|
||||
|
||||
/** The string "pass", a possible value for certain properties.
|
||||
* @see #UNKNOWN_ATTRIBUTE
|
||||
* @see #CLASS_ATTRIBUTE_PFX
|
||||
* @see #FIELD_ATTRIBUTE_PFX
|
||||
* @see #METHOD_ATTRIBUTE_PFX
|
||||
* @see #CODE_ATTRIBUTE_PFX
|
||||
*/
|
||||
String PASS = "pass";
|
||||
|
||||
/** The string "strip", a possible value for certain properties.
|
||||
* @see #UNKNOWN_ATTRIBUTE
|
||||
* @see #CLASS_ATTRIBUTE_PFX
|
||||
* @see #FIELD_ATTRIBUTE_PFX
|
||||
* @see #METHOD_ATTRIBUTE_PFX
|
||||
* @see #CODE_ATTRIBUTE_PFX
|
||||
*/
|
||||
String STRIP = "strip";
|
||||
|
||||
/** The string "error", a possible value for certain properties.
|
||||
* @see #UNKNOWN_ATTRIBUTE
|
||||
* @see #CLASS_ATTRIBUTE_PFX
|
||||
* @see #FIELD_ATTRIBUTE_PFX
|
||||
* @see #METHOD_ATTRIBUTE_PFX
|
||||
* @see #CODE_ATTRIBUTE_PFX
|
||||
*/
|
||||
String ERROR = "error";
|
||||
|
||||
/** The string "true", a possible value for certain properties.
|
||||
* @see #KEEP_FILE_ORDER
|
||||
* @see #DEFLATE_HINT
|
||||
*/
|
||||
String TRUE = "true";
|
||||
|
||||
/** The string "false", a possible value for certain properties.
|
||||
* @see #KEEP_FILE_ORDER
|
||||
* @see #DEFLATE_HINT
|
||||
*/
|
||||
String FALSE = "false";
|
||||
|
||||
/** The string "latest", a possible value for certain properties.
|
||||
* @see #MODIFICATION_TIME
|
||||
*/
|
||||
String LATEST = "latest";
|
||||
|
||||
/**
|
||||
* Get the set of this engine's properties.
|
||||
* This set is a "live view", so that changing its
|
||||
* contents immediately affects the Packer engine, and
|
||||
* changes from the engine (such as progress indications)
|
||||
* are immediately visible in the map.
|
||||
*
|
||||
* <p>The property map may contain pre-defined implementation
|
||||
* specific and default properties. Users are encouraged to
|
||||
* read the information and fully understand the implications,
|
||||
* before modifying pre-existing properties.
|
||||
* <p>
|
||||
* Implementation specific properties are prefixed with a
|
||||
* package name associated with the implementor, beginning
|
||||
* with {@code com.} or a similar prefix.
|
||||
* All property names beginning with {@code pack.} and
|
||||
* {@code unpack.} are reserved for use by this API.
|
||||
* <p>
|
||||
* Unknown properties may be ignored or rejected with an
|
||||
* unspecified error, and invalid entries may cause an
|
||||
* unspecified error to be thrown.
|
||||
*
|
||||
* <p>
|
||||
* The returned map implements all optional {@link SortedMap} operations
|
||||
* @return A sorted association of property key strings to property
|
||||
* values.
|
||||
*/
|
||||
SortedMap<String,String> properties();
|
||||
|
||||
/**
|
||||
* Takes a JarFile and converts it into a Pack200 archive.
|
||||
* <p>
|
||||
* Closes its input but not its output. (Pack200 archives are appendable.)
|
||||
* @param in a JarFile
|
||||
* @param out an OutputStream
|
||||
* @throws IOException if an error is encountered.
|
||||
*/
|
||||
void pack(JarFile in, OutputStream out) throws IOException ;
|
||||
|
||||
/**
|
||||
* Takes a JarInputStream and converts it into a Pack200 archive.
|
||||
* <p>
|
||||
* Closes its input but not its output. (Pack200 archives are appendable.)
|
||||
* <p>
|
||||
* The modification time and deflation hint attributes are not available,
|
||||
* for the JAR manifest file and its containing directory.
|
||||
*
|
||||
* @see #MODIFICATION_TIME
|
||||
* @see #DEFLATE_HINT
|
||||
* @param in a JarInputStream
|
||||
* @param out an OutputStream
|
||||
* @throws IOException if an error is encountered.
|
||||
*/
|
||||
void pack(JarInputStream in, OutputStream out) throws IOException ;
|
||||
}
|
||||
|
||||
/**
|
||||
* The unpacker engine converts the packed stream to a JAR file.
|
||||
* An instance of the engine can be obtained
|
||||
* using {@link #newUnpacker}.
|
||||
* <p>
|
||||
* Every JAR file produced by this engine will include the string
|
||||
* "{@code PACK200}" as a zip file comment.
|
||||
* This allows a deployer to detect if a JAR archive was packed and unpacked.
|
||||
* <p>
|
||||
* Note: Unless otherwise noted, passing a {@code null} argument to a
|
||||
* constructor or method in this class will cause a {@link NullPointerException}
|
||||
* to be thrown.
|
||||
* <p>
|
||||
* This version of the unpacker is compatible with all previous versions.
|
||||
* @since 1.5
|
||||
* @deprecated This interface is deprecated, and is planned for removal in a
|
||||
* future release.
|
||||
*/
|
||||
@Deprecated(since="11", forRemoval=true)
|
||||
public interface Unpacker {
|
||||
|
||||
/** The string "keep", a possible value for certain properties.
|
||||
* @see #DEFLATE_HINT
|
||||
*/
|
||||
String KEEP = "keep";
|
||||
|
||||
/** The string "true", a possible value for certain properties.
|
||||
* @see #DEFLATE_HINT
|
||||
*/
|
||||
String TRUE = "true";
|
||||
|
||||
/** The string "false", a possible value for certain properties.
|
||||
* @see #DEFLATE_HINT
|
||||
*/
|
||||
String FALSE = "false";
|
||||
|
||||
/**
|
||||
* Property indicating that the unpacker should
|
||||
* ignore all transmitted values for DEFLATE_HINT,
|
||||
* replacing them by the given value, {@link #TRUE} or {@link #FALSE}.
|
||||
* The default value is the special string {@link #KEEP},
|
||||
* which asks the unpacker to preserve all transmitted
|
||||
* deflation hints.
|
||||
*/
|
||||
String DEFLATE_HINT = "unpack.deflate.hint";
|
||||
|
||||
|
||||
|
||||
/**
|
||||
* The unpacker's progress as a percentage, as periodically
|
||||
* updated by the unpacker.
|
||||
* Values of 0 - 100 are normal, and -1 indicates a stall.
|
||||
* Progress can be monitored by polling the value of this
|
||||
* property.
|
||||
* <p>
|
||||
* At a minimum, the unpacker must set progress to 0
|
||||
* at the beginning of an unpacking operation, and to 100
|
||||
* at the end.
|
||||
*/
|
||||
String PROGRESS = "unpack.progress";
|
||||
|
||||
/**
|
||||
* Get the set of this engine's properties. This set is
|
||||
* a "live view", so that changing its
|
||||
* contents immediately affects the Unpacker engine, and
|
||||
* changes from the engine (such as progress indications)
|
||||
* are immediately visible in the map.
|
||||
*
|
||||
* <p>The property map may contain pre-defined implementation
|
||||
* specific and default properties. Users are encouraged to
|
||||
* read the information and fully understand the implications,
|
||||
* before modifying pre-existing properties.
|
||||
* <p>
|
||||
* Implementation specific properties are prefixed with a
|
||||
* package name associated with the implementor, beginning
|
||||
* with {@code com.} or a similar prefix.
|
||||
* All property names beginning with {@code pack.} and
|
||||
* {@code unpack.} are reserved for use by this API.
|
||||
* <p>
|
||||
* Unknown properties may be ignored or rejected with an
|
||||
* unspecified error, and invalid entries may cause an
|
||||
* unspecified error to be thrown.
|
||||
*
|
||||
* @return A sorted association of option key strings to option values.
|
||||
*/
|
||||
SortedMap<String,String> properties();
|
||||
|
||||
/**
|
||||
* Read a Pack200 archive, and write the encoded JAR to
|
||||
* a JarOutputStream.
|
||||
* The entire contents of the input stream will be read.
|
||||
* It may be more efficient to read the Pack200 archive
|
||||
* to a file and pass the File object, using the alternate
|
||||
* method described below.
|
||||
* <p>
|
||||
* Closes its input but not its output. (The output can accumulate more elements.)
|
||||
* @param in an InputStream.
|
||||
* @param out a JarOutputStream.
|
||||
* @throws IOException if an error is encountered.
|
||||
*/
|
||||
void unpack(InputStream in, JarOutputStream out) throws IOException;
|
||||
|
||||
/**
|
||||
* Read a Pack200 archive, and write the encoded JAR to
|
||||
* a JarOutputStream.
|
||||
* <p>
|
||||
* Does not close its output. (The output can accumulate more elements.)
|
||||
* @param in a File.
|
||||
* @param out a JarOutputStream.
|
||||
* @throws IOException if an error is encountered.
|
||||
*/
|
||||
void unpack(File in, JarOutputStream out) throws IOException;
|
||||
}
|
||||
|
||||
// Private stuff....
|
||||
|
||||
private static final String PACK_PROVIDER = "java.util.jar.Pack200.Packer";
|
||||
private static final String UNPACK_PROVIDER = "java.util.jar.Pack200.Unpacker";
|
||||
|
||||
private static Class<?> packerImpl;
|
||||
private static Class<?> unpackerImpl;
|
||||
|
||||
private static synchronized Object newInstance(String prop) {
|
||||
String implName = "(unknown)";
|
||||
try {
|
||||
Class<?> impl = (PACK_PROVIDER.equals(prop))? packerImpl: unpackerImpl;
|
||||
if (impl == null) {
|
||||
// The first time, we must decide which class to use.
|
||||
implName = GetPropertyAction.privilegedGetProperty(prop,"");
|
||||
if (implName != null && !implName.isEmpty())
|
||||
impl = Class.forName(implName);
|
||||
else if (PACK_PROVIDER.equals(prop))
|
||||
impl = com.sun.java.util.jar.pack.PackerImpl.class;
|
||||
else
|
||||
impl = com.sun.java.util.jar.pack.UnpackerImpl.class;
|
||||
}
|
||||
// We have a class. Now instantiate it.
|
||||
@SuppressWarnings("deprecation")
|
||||
Object result = impl.newInstance();
|
||||
return result;
|
||||
} catch (ClassNotFoundException e) {
|
||||
throw new Error("Class not found: " + implName +
|
||||
":\ncheck property " + prop +
|
||||
" in your properties file.", e);
|
||||
} catch (InstantiationException e) {
|
||||
throw new Error("Could not instantiate: " + implName +
|
||||
":\ncheck property " + prop +
|
||||
" in your properties file.", e);
|
||||
} catch (IllegalAccessException e) {
|
||||
throw new Error("Cannot access class: " + implName +
|
||||
":\ncheck property " + prop +
|
||||
" in your properties file.", e);
|
||||
}
|
||||
}
|
||||
|
||||
}
|
Loading…
Add table
Add a link
Reference in a new issue