Mercurial > jhg
comparison src/com/tmate/hgkit/fs/InflaterDataAccess.java @ 51:9429c7bd1920 wrap-data-access
Try DataAccess to reach revision data instead of plain byte arrays
| author | Artem Tikhomirov <tikhomirov.artem@gmail.com> |
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| date | Sun, 16 Jan 2011 01:20:26 +0100 |
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| 50:f1db8610da62 | 51:9429c7bd1920 |
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| 1 /* | |
| 2 * Copyright (c) 2011 Artem Tikhomirov | |
| 3 */ | |
| 4 package com.tmate.hgkit.fs; | |
| 5 | |
| 6 import java.io.EOFException; | |
| 7 import java.io.IOException; | |
| 8 import java.util.zip.DataFormatException; | |
| 9 import java.util.zip.Inflater; | |
| 10 import java.util.zip.ZipException; | |
| 11 | |
| 12 /** | |
| 13 * DataAccess counterpart for InflaterInputStream. | |
| 14 * XXX is it really needed to be subclass of FilterDataAccess? | |
| 15 * @author artem | |
| 16 */ | |
| 17 public class InflaterDataAccess extends FilterDataAccess { | |
| 18 | |
| 19 private final Inflater inflater; | |
| 20 private final byte[] buffer; | |
| 21 private final byte[] singleByte = new byte[1]; | |
| 22 private int decompressedPos = 0; | |
| 23 private int decompressedLength = -1; | |
| 24 | |
| 25 public InflaterDataAccess(DataAccess dataAccess, long offset, int length) { | |
| 26 this(dataAccess, offset, length, new Inflater(), 512); | |
| 27 } | |
| 28 | |
| 29 public InflaterDataAccess(DataAccess dataAccess, long offset, int length, Inflater inflater, int bufSize) { | |
| 30 super(dataAccess, offset, length); | |
| 31 this.inflater = inflater; | |
| 32 buffer = new byte[bufSize]; | |
| 33 } | |
| 34 | |
| 35 @Override | |
| 36 public void reset() throws IOException { | |
| 37 super.reset(); | |
| 38 inflater.reset(); | |
| 39 decompressedPos = 0; | |
| 40 } | |
| 41 | |
| 42 @Override | |
| 43 protected int available() { | |
| 44 throw new IllegalStateException("Can't tell how much uncompressed data left"); | |
| 45 } | |
| 46 | |
| 47 @Override | |
| 48 public boolean isEmpty() { | |
| 49 return super.available() <= 0 && inflater.finished(); // and/or inflater.getRemaining() <= 0 ? | |
| 50 } | |
| 51 | |
| 52 @Override | |
| 53 public long length() { | |
| 54 if (decompressedLength != -1) { | |
| 55 return decompressedLength; | |
| 56 } | |
| 57 int c = 0; | |
| 58 try { | |
| 59 int oldPos = decompressedPos; | |
| 60 while (!isEmpty()) { | |
| 61 readByte(); | |
| 62 c++; | |
| 63 } | |
| 64 decompressedLength = c + oldPos; | |
| 65 reset(); | |
| 66 seek(oldPos); | |
| 67 return decompressedLength; | |
| 68 } catch (IOException ex) { | |
| 69 ex.printStackTrace(); // FIXME log error | |
| 70 decompressedLength = -1; // better luck next time? | |
| 71 return 0; | |
| 72 } | |
| 73 } | |
| 74 | |
| 75 @Override | |
| 76 public void seek(long localOffset) throws IOException { | |
| 77 System.out.println("Seek: " + localOffset); | |
| 78 if (localOffset < 0 /* || localOffset >= length() */) { | |
| 79 throw new IllegalArgumentException(); | |
| 80 } | |
| 81 if (localOffset >= decompressedPos) { | |
| 82 skip((int) (localOffset - decompressedPos)); | |
| 83 } else { | |
| 84 reset(); | |
| 85 skip((int) localOffset); | |
| 86 } | |
| 87 } | |
| 88 | |
| 89 @Override | |
| 90 public void skip(int bytes) throws IOException { | |
| 91 if (bytes < 0) { | |
| 92 bytes += decompressedPos; | |
| 93 if (bytes < 0) { | |
| 94 throw new IOException("Underflow. Rewind past start of the slice."); | |
| 95 } | |
| 96 reset(); | |
| 97 // fall-through | |
| 98 } | |
| 99 while (!isEmpty() && bytes > 0) { | |
| 100 readByte(); | |
| 101 bytes--; | |
| 102 } | |
| 103 if (bytes != 0) { | |
| 104 throw new IOException("Underflow. Rewind past end of the slice"); | |
| 105 } | |
| 106 } | |
| 107 | |
| 108 @Override | |
| 109 public byte readByte() throws IOException { | |
| 110 readBytes(singleByte, 0, 1); | |
| 111 return singleByte[0]; | |
| 112 } | |
| 113 | |
| 114 @Override | |
| 115 public void readBytes(byte[] b, int off, int len) throws IOException { | |
| 116 try { | |
| 117 int n; | |
| 118 while (len > 0) { | |
| 119 while ((n = inflater.inflate(b, off, len)) == 0) { | |
| 120 if (inflater.finished() || inflater.needsDictionary()) { | |
| 121 throw new EOFException(); | |
| 122 } | |
| 123 if (inflater.needsInput()) { | |
| 124 // fill: | |
| 125 int toRead = super.available(); | |
| 126 if (toRead > buffer.length) { | |
| 127 toRead = buffer.length; | |
| 128 } | |
| 129 super.readBytes(buffer, 0, toRead); | |
| 130 inflater.setInput(buffer, 0, toRead); | |
| 131 } | |
| 132 } | |
| 133 off += n; | |
| 134 len -= n; | |
| 135 decompressedPos += n; | |
| 136 if (len == 0) { | |
| 137 return; // filled | |
| 138 } | |
| 139 } | |
| 140 } catch (DataFormatException e) { | |
| 141 String s = e.getMessage(); | |
| 142 throw new ZipException(s != null ? s : "Invalid ZLIB data format"); | |
| 143 } | |
| 144 } | |
| 145 } |
