fad5094503
Reviewed-by: psandoz
397 lines
12 KiB
Java
397 lines
12 KiB
Java
/*
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* Copyright 2009 Google, Inc. 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.
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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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/**
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* @test
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* @bug 4206909 4813885 8191918
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* @summary Test basic functionality of DeflaterOutputStream/InflaterInputStream
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* and GZIPOutputStream/GZIPInputStream, including flush
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* @key randomness
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*/
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import java.io.*;
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import java.util.*;
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import java.util.zip.*;
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public class InflateIn_DeflateOut {
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private static class PairedInputStream extends ByteArrayInputStream {
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private PairedOutputStream out = null;
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private Random random;
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public PairedInputStream() {
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// The ByteArrayInputStream needs to start with a buffer, but we
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// need to set it to have no data
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super(new byte[1]);
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count = 0;
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pos = 0;
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random = new Random(new Date().getTime());
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}
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public void setPairedOutputStream(PairedOutputStream out) {
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this.out = out;
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}
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private void maybeFlushPair() {
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if (random.nextInt(100) < 10) {
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out.flush();
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}
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}
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public int read() {
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maybeFlushPair();
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return super.read();
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}
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public int read(byte b[], int off, int len) {
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maybeFlushPair();
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return super.read(b, off, len);
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}
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public void addBytes(byte[] bytes, int len) {
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int oldavail = count - pos;
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int newcount = oldavail + len;
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byte[] newbuf = new byte[newcount];
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System.arraycopy(buf, pos, newbuf, 0, oldavail);
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System.arraycopy(bytes, 0, newbuf, oldavail, len);
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pos = 0;
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count = newcount;
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buf = newbuf;
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}
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}
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private static class PairedOutputStream extends ByteArrayOutputStream {
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private PairedInputStream pairedStream = null;
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public PairedOutputStream(PairedInputStream inputPair) {
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super();
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this.pairedStream = inputPair;
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}
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public void flush() {
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if (count > 0) {
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pairedStream.addBytes(buf, count);
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reset();
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}
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}
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public void close() {
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flush();
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}
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}
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private static boolean readFully(InputStream in, byte[] buf, int length)
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throws IOException {
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int pos = 0;
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int n;
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while ((n = in.read(buf, pos, length - pos)) > 0) {
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pos += n;
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if (pos == length) return true;
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}
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return false;
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}
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private static boolean readLineIfAvailable(InputStream in, StringBuilder sb)
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throws IOException {
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try {
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while (in.available() > 0) {
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int i = in.read();
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if (i < 0) break;
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char c = (char) (((byte) i) & 0xff);
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sb.append(c);
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if (c == '\n') return true;
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}
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} catch (EOFException e) {
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// empty
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}
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return false;
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}
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/** Check that written, closed and read */
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private static void WriteCloseRead() throws Throwable {
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Random random = new Random(new Date().getTime());
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PairedInputStream pis = new PairedInputStream();
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InflaterInputStream iis = new InflaterInputStream(pis);
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PairedOutputStream pos = new PairedOutputStream(pis);
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pis.setPairedOutputStream(pos);
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byte[] data = new byte[random.nextInt(1024 * 1024)];
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byte[] buf = new byte[data.length];
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random.nextBytes(data);
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try (DeflaterOutputStream dos = new DeflaterOutputStream(pos, true)) {
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dos.write(data);
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}
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check(readFully(iis, buf, buf.length));
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check(Arrays.equals(data, buf));
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}
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private static void TestFlushableGZIPOutputStream() throws Throwable {
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var random = new Random(new Date().getTime());
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var byteOutStream = new ByteArrayOutputStream();
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var output = new FlushableGZIPOutputStream(byteOutStream);
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var data = new byte[random.nextInt(1024 * 1024)];
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var buf = new byte[data.length];
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random.nextBytes(data);
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output.write(data);
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for (int i=0; i<data.length; i++) {
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output.write(data[i]);
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}
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output.flush();
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for (int i=0; i<data.length; i++) {
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output.write(data[i]);
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}
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output.write(data);
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output.close();
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var baos = new ByteArrayOutputStream();
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try (var gzis = new GZIPInputStream(new
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ByteArrayInputStream(byteOutStream.toByteArray()))) {
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gzis.transferTo(baos);
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}
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var decompressedBytes = baos.toByteArray();
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check(decompressedBytes.length == data.length * 4);
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}
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private static void check(InputStream is, OutputStream os)
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throws Throwable
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{
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Random random = new Random(new Date().getTime());
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// Large writes
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for (int x = 0; x < 200 ; x++) {
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// byte[] data = new byte[random.nextInt(1024 * 1024)];
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byte[] data = new byte[1024];
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byte[] buf = new byte[data.length];
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random.nextBytes(data);
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os.write(data);
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os.flush();
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check(readFully(is, buf, buf.length));
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check(Arrays.equals(data, buf));
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}
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// Small writes
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for (int x = 0; x < 2000 ; x++) {
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byte[] data = new byte[random.nextInt(20) + 10];
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byte[] buf = new byte[data.length];
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random.nextBytes(data);
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os.write(data);
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os.flush();
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if (!readFully(is, buf, buf.length)) {
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fail("Didn't read full buffer of " + buf.length);
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}
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check(Arrays.equals(data, buf));
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}
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String quit = "QUIT\r\n";
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// Close it out
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os.write(quit.getBytes());
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os.close();
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StringBuilder sb = new StringBuilder();
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check(readLineIfAvailable(is, sb));
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equal(sb.toString(), quit);
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}
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/** Check that written, flushed and read */
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private static void WriteFlushRead() throws Throwable {
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PairedInputStream pis = new PairedInputStream();
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InflaterInputStream iis = new InflaterInputStream(pis);
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PairedOutputStream pos = new PairedOutputStream(pis);
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pis.setPairedOutputStream(pos);
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DeflaterOutputStream dos = new DeflaterOutputStream(pos, true);
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check(iis, dos);
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}
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private static void GZWriteFlushRead() throws Throwable {
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PairedInputStream pis = new PairedInputStream();
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PairedOutputStream pos = new PairedOutputStream(pis);
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pis.setPairedOutputStream(pos);
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GZIPOutputStream gos = new GZIPOutputStream(pos, true);
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gos.flush(); // flush the head out, so gis can read
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GZIPInputStream gis = new GZIPInputStream(pis);
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check(gis, gos);
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}
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private static void checkLOP(InputStream is, OutputStream os)
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throws Throwable
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{
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boolean flushed = false;
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int count = 0;
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// Do at least a certain number of lines, but too many without a
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// flush means this test isn't testing anything
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while ((count < 10 && flushed) || (count < 1000 && !flushed)) {
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String command = "PING " + count + "\r\n";
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os.write(command.getBytes());
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StringBuilder buf = new StringBuilder();
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if (!readLineIfAvailable(is, buf)) {
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flushed = true;
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os.flush();
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check(readLineIfAvailable(is, buf));
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}
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equal(buf.toString(), command);
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count++;
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}
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check(flushed);
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}
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/** Validate that we need to use flush at least once on a line
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* oriented protocol */
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private static void LineOrientedProtocol() throws Throwable {
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PairedInputStream pis = new PairedInputStream();
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InflaterInputStream iis = new InflaterInputStream(pis);
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PairedOutputStream pos = new PairedOutputStream(pis);
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pis.setPairedOutputStream(pos);
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DeflaterOutputStream dos = new DeflaterOutputStream(pos, true);
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checkLOP(iis, dos);
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}
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private static void GZLineOrientedProtocol() throws Throwable {
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PairedInputStream pis = new PairedInputStream();
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PairedOutputStream pos = new PairedOutputStream(pis);
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pis.setPairedOutputStream(pos);
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GZIPOutputStream gos = new GZIPOutputStream(pos, true);
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gos.flush(); // flush the head out, so gis can read
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GZIPInputStream gis = new GZIPInputStream(pis);
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checkLOP(gis, gos);
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}
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public static void realMain(String[] args) throws Throwable {
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WriteCloseRead();
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WriteFlushRead();
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LineOrientedProtocol();
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GZWriteFlushRead();
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GZLineOrientedProtocol();
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TestFlushableGZIPOutputStream();
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}
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//--------------------- Infrastructure ---------------------------
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static volatile int passed = 0, failed = 0;
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static void pass() {passed++;}
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static void fail() {failed++; Thread.dumpStack();}
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static void fail(String msg) {System.out.println(msg); fail();}
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static void unexpected(Throwable t) {failed++; t.printStackTrace();}
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static void check(boolean cond) {if (cond) pass(); else fail();}
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static void equal(Object x, Object y) {
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if (x == null ? y == null : x.equals(y)) pass();
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else fail(x + " not equal to " + y);}
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public static void main(String[] args) throws Throwable {
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try {realMain(args);} catch (Throwable t) {unexpected(t);}
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System.out.println("\nPassed = " + passed + " failed = " + failed);
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if (failed > 0) throw new AssertionError("Some tests failed");}
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}
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class FlushableGZIPOutputStream extends GZIPOutputStream {
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public FlushableGZIPOutputStream(OutputStream os) throws IOException {
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super(os);
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}
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private static final byte[] EMPTYBYTEARRAY = new byte[0];
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private boolean hasData = false;
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/**
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* Here we make sure we have received data, so that the header has been for
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* sure written to the output stream already.
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*/
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@Override
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public synchronized void write(byte[] bytes, int i, int i1)
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throws IOException {
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super.write(bytes, i, i1);
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hasData = true;
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}
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@Override
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public synchronized void write(int i) throws IOException {
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super.write(i);
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hasData = true;
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}
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@Override
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public synchronized void write(byte[] bytes) throws IOException {
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super.write(bytes);
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hasData = true;
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}
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@Override
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public synchronized void flush() throws IOException {
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if (!hasData) {
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return; // do not allow the gzip header to be flushed on its own
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}
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// trick the deflater to flush
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/**
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* Now this is tricky: We force the Deflater to flush its data by
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* switching compression level. As yet, a perplexingly simple workaround
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* for
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* http://developer.java.sun.com/developer/bugParade/bugs/4255743.html
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*/
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if (!def.finished()) {
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def.setInput(EMPTYBYTEARRAY, 0, 0);
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def.setLevel(Deflater.NO_COMPRESSION);
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deflate();
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def.setLevel(Deflater.DEFAULT_COMPRESSION);
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deflate();
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out.flush();
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}
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hasData = false; // no more data to flush
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}
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/*
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* Keep on calling deflate until it runs dry. The default implementation
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* only does it once and can therefore hold onto data when they need to be
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* flushed out.
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*/
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@Override
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protected void deflate() throws IOException {
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int len;
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do {
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len = def.deflate(buf, 0, buf.length);
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if (len > 0) {
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out.write(buf, 0, len);
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}
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} while (len != 0);
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}
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}
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