001/**
002 * Licensed to the Apache Software Foundation (ASF) under one
003 * or more contributor license agreements.  See the NOTICE file
004 * distributed with this work for additional information
005 * regarding copyright ownership.  The ASF licenses this file
006 * to you under the Apache License, Version 2.0 (the
007 * "License"); you may not use this file except in compliance
008 * with the License.  You may obtain a copy of the License at
009 *
010 *     http://www.apache.org/licenses/LICENSE-2.0
011 *
012 * Unless required by applicable law or agreed to in writing, software
013 * distributed under the License is distributed on an "AS IS" BASIS,
014 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
015 * See the License for the specific language governing permissions and
016 * limitations under the License.
017 */
018
019package org.apache.hadoop.io.compress;
020
021import java.io.BufferedInputStream;
022import java.io.IOException;
023import java.io.InputStream;
024import java.io.OutputStream;
025
026import org.apache.commons.io.Charsets;
027import org.apache.hadoop.conf.Configurable;
028import org.apache.hadoop.conf.Configuration;
029
030import org.apache.hadoop.classification.InterfaceAudience;
031import org.apache.hadoop.classification.InterfaceStability;
032import org.apache.hadoop.fs.Seekable;
033import org.apache.hadoop.io.compress.bzip2.BZip2Constants;
034import org.apache.hadoop.io.compress.bzip2.CBZip2InputStream;
035import org.apache.hadoop.io.compress.bzip2.CBZip2OutputStream;
036import org.apache.hadoop.io.compress.bzip2.Bzip2Factory;
037
038/**
039 * This class provides output and input streams for bzip2 compression
040 * and decompression.  It uses the native bzip2 library on the system
041 * if possible, else it uses a pure-Java implementation of the bzip2
042 * algorithm.  The configuration parameter
043 * io.compression.codec.bzip2.library can be used to control this
044 * behavior.
045 *
046 * In the pure-Java mode, the Compressor and Decompressor interfaces
047 * are not implemented.  Therefore, in that mode, those methods of
048 * CompressionCodec which have a Compressor or Decompressor type
049 * argument, throw UnsupportedOperationException.
050 *
051 * Currently, support for splittability is available only in the
052 * pure-Java mode; therefore, if a SplitCompressionInputStream is
053 * requested, the pure-Java implementation is used, regardless of the
054 * setting of the configuration parameter mentioned above.
055 */
056@InterfaceAudience.Public
057@InterfaceStability.Evolving
058public class BZip2Codec implements Configurable, SplittableCompressionCodec {
059
060  private static final String HEADER = "BZ";
061  private static final int HEADER_LEN = HEADER.length();
062  private static final String SUB_HEADER = "h9";
063  private static final int SUB_HEADER_LEN = SUB_HEADER.length();
064
065  private Configuration conf;
066  
067  /**
068   * Set the configuration to be used by this object.
069   *
070   * @param conf the configuration object.
071   */
072  @Override
073  public void setConf(Configuration conf) {
074    this.conf = conf;
075  }
076  
077  /**
078   * Return the configuration used by this object.
079   *
080   * @return the configuration object used by this objec.
081   */
082  @Override
083  public Configuration getConf() {
084    return conf;
085  }
086  
087  /**
088  * Creates a new instance of BZip2Codec.
089  */
090  public BZip2Codec() { }
091
092  /**
093   * Create a {@link CompressionOutputStream} that will write to the given
094   * {@link OutputStream}.
095   *
096   * @param out        the location for the final output stream
097   * @return a stream the user can write uncompressed data to, to have it 
098   *         compressed
099   * @throws IOException
100   */
101  @Override
102  public CompressionOutputStream createOutputStream(OutputStream out)
103      throws IOException {
104    return CompressionCodec.Util.
105        createOutputStreamWithCodecPool(this, conf, out);
106  }
107
108  /**
109   * Create a {@link CompressionOutputStream} that will write to the given
110   * {@link OutputStream} with the given {@link Compressor}.
111   *
112   * @param out        the location for the final output stream
113   * @param compressor compressor to use
114   * @return a stream the user can write uncompressed data to, to have it 
115   *         compressed
116   * @throws IOException
117   */
118  @Override
119  public CompressionOutputStream createOutputStream(OutputStream out,
120      Compressor compressor) throws IOException {
121    return Bzip2Factory.isNativeBzip2Loaded(conf) ?
122      new CompressorStream(out, compressor, 
123                           conf.getInt("io.file.buffer.size", 4*1024)) :
124      new BZip2CompressionOutputStream(out);
125  }
126
127  /**
128   * Get the type of {@link Compressor} needed by this {@link CompressionCodec}.
129   *
130   * @return the type of compressor needed by this codec.
131   */
132  @Override
133  public Class<? extends Compressor> getCompressorType() {
134    return Bzip2Factory.getBzip2CompressorType(conf);
135  }
136
137  /**
138   * Create a new {@link Compressor} for use by this {@link CompressionCodec}.
139   *
140   * @return a new compressor for use by this codec
141   */
142  @Override
143  public Compressor createCompressor() {
144    return Bzip2Factory.getBzip2Compressor(conf);
145  }
146
147  /**
148   * Create a {@link CompressionInputStream} that will read from the given
149   * input stream and return a stream for uncompressed data.
150   *
151   * @param in the stream to read compressed bytes from
152   * @return a stream to read uncompressed bytes from
153   * @throws IOException
154   */
155  @Override
156  public CompressionInputStream createInputStream(InputStream in)
157      throws IOException {
158    return CompressionCodec.Util.
159        createInputStreamWithCodecPool(this, conf, in);
160  }
161
162  /**
163   * Create a {@link CompressionInputStream} that will read from the given
164   * {@link InputStream} with the given {@link Decompressor}, and return a 
165   * stream for uncompressed data.
166   *
167   * @param in           the stream to read compressed bytes from
168   * @param decompressor decompressor to use
169   * @return a stream to read uncompressed bytes from
170   * @throws IOException
171   */
172  @Override
173  public CompressionInputStream createInputStream(InputStream in,
174      Decompressor decompressor) throws IOException {
175    return Bzip2Factory.isNativeBzip2Loaded(conf) ? 
176      new DecompressorStream(in, decompressor,
177                             conf.getInt("io.file.buffer.size", 4*1024)) :
178      new BZip2CompressionInputStream(in);
179  }
180
181  /**
182   * Creates CompressionInputStream to be used to read off uncompressed data
183   * in one of the two reading modes. i.e. Continuous or Blocked reading modes
184   *
185   * @param seekableIn The InputStream
186   * @param start The start offset into the compressed stream
187   * @param end The end offset into the compressed stream
188   * @param readMode Controls whether progress is reported continuously or
189   *                 only at block boundaries.
190   *
191   * @return CompressionInputStream for BZip2 aligned at block boundaries
192   */
193  public SplitCompressionInputStream createInputStream(InputStream seekableIn,
194      Decompressor decompressor, long start, long end, READ_MODE readMode)
195      throws IOException {
196
197    if (!(seekableIn instanceof Seekable)) {
198      throw new IOException("seekableIn must be an instance of " +
199          Seekable.class.getName());
200    }
201
202    //find the position of first BZip2 start up marker
203    ((Seekable)seekableIn).seek(0);
204
205    // BZip2 start of block markers are of 6 bytes.  But the very first block
206    // also has "BZh9", making it 10 bytes.  This is the common case.  But at
207    // time stream might start without a leading BZ.
208    final long FIRST_BZIP2_BLOCK_MARKER_POSITION =
209      CBZip2InputStream.numberOfBytesTillNextMarker(seekableIn);
210    long adjStart = Math.max(0L, start - FIRST_BZIP2_BLOCK_MARKER_POSITION);
211
212    ((Seekable)seekableIn).seek(adjStart);
213    SplitCompressionInputStream in =
214      new BZip2CompressionInputStream(seekableIn, adjStart, end, readMode);
215
216
217    // The following if clause handles the following case:
218    // Assume the following scenario in BZip2 compressed stream where
219    // . represent compressed data.
220    // .....[48 bit Block].....[48 bit   Block].....[48 bit Block]...
221    // ........................[47 bits][1 bit].....[48 bit Block]...
222    // ................................^[Assume a Byte alignment here]
223    // ........................................^^[current position of stream]
224    // .....................^^[We go back 10 Bytes in stream and find a Block marker]
225    // ........................................^^[We align at wrong position!]
226    // ...........................................................^^[While this pos is correct]
227
228    if (in.getPos() < start) {
229      ((Seekable)seekableIn).seek(start);
230      in = new BZip2CompressionInputStream(seekableIn, start, end, readMode);
231    }
232
233    return in;
234  }
235
236  /**
237   * Get the type of {@link Decompressor} needed by this {@link CompressionCodec}.
238   *
239   * @return the type of decompressor needed by this codec.
240   */
241  @Override
242  public Class<? extends Decompressor> getDecompressorType() {
243    return Bzip2Factory.getBzip2DecompressorType(conf);
244  }
245
246  /**
247   * Create a new {@link Decompressor} for use by this {@link CompressionCodec}.
248   *
249   * @return a new decompressor for use by this codec
250   */
251  @Override
252  public Decompressor createDecompressor() {
253    return Bzip2Factory.getBzip2Decompressor(conf);
254  }
255
256  /**
257  * .bz2 is recognized as the default extension for compressed BZip2 files
258  *
259  * @return A String telling the default bzip2 file extension
260  */
261  @Override
262  public String getDefaultExtension() {
263    return ".bz2";
264  }
265
266  private static class BZip2CompressionOutputStream extends
267      CompressionOutputStream {
268
269    // class data starts here//
270    private CBZip2OutputStream output;
271    private boolean needsReset; 
272    // class data ends here//
273
274    public BZip2CompressionOutputStream(OutputStream out)
275        throws IOException {
276      super(out);
277      needsReset = true;
278    }
279
280    private void writeStreamHeader() throws IOException {
281      if (super.out != null) {
282        // The compressed bzip2 stream should start with the
283        // identifying characters BZ. Caller of CBZip2OutputStream
284        // i.e. this class must write these characters.
285        out.write(HEADER.getBytes(Charsets.UTF_8));
286      }
287    }
288
289    public void finish() throws IOException {
290      if (needsReset) {
291        // In the case that nothing is written to this stream, we still need to
292        // write out the header before closing, otherwise the stream won't be
293        // recognized by BZip2CompressionInputStream.
294        internalReset();
295      }
296      this.output.finish();
297      needsReset = true;
298    }
299
300    private void internalReset() throws IOException {
301      if (needsReset) {
302        needsReset = false;
303        writeStreamHeader();
304        this.output = new CBZip2OutputStream(out);
305      }
306    }    
307    
308    public void resetState() throws IOException {
309      // Cannot write to out at this point because out might not be ready
310      // yet, as in SequenceFile.Writer implementation.
311      needsReset = true;
312    }
313
314    public void write(int b) throws IOException {
315      if (needsReset) {
316        internalReset();
317      }
318      this.output.write(b);
319    }
320
321    public void write(byte[] b, int off, int len) throws IOException {
322      if (needsReset) {
323        internalReset();
324      }
325      this.output.write(b, off, len);
326    }
327
328    public void close() throws IOException {
329      if (needsReset) {
330        // In the case that nothing is written to this stream, we still need to
331        // write out the header before closing, otherwise the stream won't be
332        // recognized by BZip2CompressionInputStream.
333        internalReset();
334      }
335      this.output.flush();
336      this.output.close();
337      needsReset = true;
338    }
339
340  }// end of class BZip2CompressionOutputStream
341
342  /**
343   * This class is capable to de-compress BZip2 data in two modes;
344   * CONTINOUS and BYBLOCK.  BYBLOCK mode makes it possible to
345   * do decompression starting any arbitrary position in the stream.
346   *
347   * So this facility can easily be used to parallelize decompression
348   * of a large BZip2 file for performance reasons.  (It is exactly
349   * done so for Hadoop framework.  See LineRecordReader for an
350   * example).  So one can break the file (of course logically) into
351   * chunks for parallel processing.  These "splits" should be like
352   * default Hadoop splits (e.g as in FileInputFormat getSplit metod).
353   * So this code is designed and tested for FileInputFormat's way
354   * of splitting only.
355   */
356
357  private static class BZip2CompressionInputStream extends
358      SplitCompressionInputStream {
359
360    // class data starts here//
361    private CBZip2InputStream input;
362    boolean needsReset;
363    private BufferedInputStream bufferedIn;
364    private boolean isHeaderStripped = false;
365    private boolean isSubHeaderStripped = false;
366    private READ_MODE readMode = READ_MODE.CONTINUOUS;
367    private long startingPos = 0L;
368
369    // Following state machine handles different states of compressed stream
370    // position
371    // HOLD : Don't advertise compressed stream position
372    // ADVERTISE : Read 1 more character and advertise stream position
373    // See more comments about it before updatePos method.
374    private enum POS_ADVERTISEMENT_STATE_MACHINE {
375      HOLD, ADVERTISE
376    };
377
378    POS_ADVERTISEMENT_STATE_MACHINE posSM = POS_ADVERTISEMENT_STATE_MACHINE.HOLD;
379    long compressedStreamPosition = 0;
380
381    // class data ends here//
382
383    public BZip2CompressionInputStream(InputStream in) throws IOException {
384      this(in, 0L, Long.MAX_VALUE, READ_MODE.CONTINUOUS);
385    }
386
387    public BZip2CompressionInputStream(InputStream in, long start, long end,
388        READ_MODE readMode) throws IOException {
389      super(in, start, end);
390      needsReset = false;
391      bufferedIn = new BufferedInputStream(super.in);
392      this.startingPos = super.getPos();
393      this.readMode = readMode;
394      if (this.startingPos == 0) {
395        // We only strip header if it is start of file
396        bufferedIn = readStreamHeader();
397      }
398      input = new CBZip2InputStream(bufferedIn, readMode);
399      if (this.isHeaderStripped) {
400        input.updateReportedByteCount(HEADER_LEN);
401      }
402
403      if (this.isSubHeaderStripped) {
404        input.updateReportedByteCount(SUB_HEADER_LEN);
405      }
406
407      this.updatePos(false);
408    }
409
410    private BufferedInputStream readStreamHeader() throws IOException {
411      // We are flexible enough to allow the compressed stream not to
412      // start with the header of BZ. So it works fine either we have
413      // the header or not.
414      if (super.in != null) {
415        bufferedIn.mark(HEADER_LEN);
416        byte[] headerBytes = new byte[HEADER_LEN];
417        int actualRead = bufferedIn.read(headerBytes, 0, HEADER_LEN);
418        if (actualRead != -1) {
419          String header = new String(headerBytes, Charsets.UTF_8);
420          if (header.compareTo(HEADER) != 0) {
421            bufferedIn.reset();
422          } else {
423            this.isHeaderStripped = true;
424            // In case of BYBLOCK mode, we also want to strip off
425            // remaining two character of the header.
426            if (this.readMode == READ_MODE.BYBLOCK) {
427              actualRead = bufferedIn.read(headerBytes, 0,
428                  SUB_HEADER_LEN);
429              if (actualRead != -1) {
430                this.isSubHeaderStripped = true;
431              }
432            }
433          }
434        }
435      }
436
437      if (bufferedIn == null) {
438        throw new IOException("Failed to read bzip2 stream.");
439      }
440
441      return bufferedIn;
442
443    }// end of method
444
445    public void close() throws IOException {
446      if (!needsReset) {
447        input.close();
448        needsReset = true;
449      }
450    }
451
452    /**
453    * This method updates compressed stream position exactly when the
454    * client of this code has read off at least one byte passed any BZip2
455    * end of block marker.
456    *
457    * This mechanism is very helpful to deal with data level record
458    * boundaries. Please see constructor and next methods of
459    * org.apache.hadoop.mapred.LineRecordReader as an example usage of this
460    * feature.  We elaborate it with an example in the following:
461    *
462    * Assume two different scenarios of the BZip2 compressed stream, where
463    * [m] represent end of block, \n is line delimiter and . represent compressed
464    * data.
465    *
466    * ............[m]......\n.......
467    *
468    * ..........\n[m]......\n.......
469    *
470    * Assume that end is right after [m].  In the first case the reading
471    * will stop at \n and there is no need to read one more line.  (To see the
472    * reason of reading one more line in the next() method is explained in LineRecordReader.)
473    * While in the second example LineRecordReader needs to read one more line
474    * (till the second \n).  Now since BZip2Codecs only update position
475    * at least one byte passed a maker, so it is straight forward to differentiate
476    * between the two cases mentioned.
477    *
478    */
479
480    public int read(byte[] b, int off, int len) throws IOException {
481      if (needsReset) {
482        internalReset();
483      }
484
485      int result = 0;
486      result = this.input.read(b, off, len);
487      if (result == BZip2Constants.END_OF_BLOCK) {
488        this.posSM = POS_ADVERTISEMENT_STATE_MACHINE.ADVERTISE;
489      }
490
491      if (this.posSM == POS_ADVERTISEMENT_STATE_MACHINE.ADVERTISE) {
492        result = this.input.read(b, off, off + 1);
493        // This is the precise time to update compressed stream position
494        // to the client of this code.
495        this.updatePos(true);
496        this.posSM = POS_ADVERTISEMENT_STATE_MACHINE.HOLD;
497      }
498
499      return result;
500
501    }
502
503    public int read() throws IOException {
504      byte b[] = new byte[1];
505      int result = this.read(b, 0, 1);
506      return (result < 0) ? result : (b[0] & 0xff);
507    }
508
509    private void internalReset() throws IOException {
510      if (needsReset) {
511        needsReset = false;
512        BufferedInputStream bufferedIn = readStreamHeader();
513        input = new CBZip2InputStream(bufferedIn, this.readMode);
514      }
515    }    
516    
517    public void resetState() throws IOException {
518      // Cannot read from bufferedIn at this point because bufferedIn
519      // might not be ready
520      // yet, as in SequenceFile.Reader implementation.
521      needsReset = true;
522    }
523
524    public long getPos() {
525      return this.compressedStreamPosition;
526      }
527
528    /*
529     * As the comments before read method tell that
530     * compressed stream is advertised when at least
531     * one byte passed EOB have been read off.  But
532     * there is an exception to this rule.  When we
533     * construct the stream we advertise the position
534     * exactly at EOB.  In the following method
535     * shouldAddOn boolean captures this exception.
536     *
537     */
538    private void updatePos(boolean shouldAddOn) {
539      int addOn = shouldAddOn ? 1 : 0;
540      this.compressedStreamPosition = this.startingPos
541          + this.input.getProcessedByteCount() + addOn;
542    }
543
544  }// end of BZip2CompressionInputStream
545
546}