OLD | NEW |
(Empty) | |
| 1 package jp.tomorrowkey.android.gifplayer; |
| 2 |
| 3 import java.io.ByteArrayInputStream; |
| 4 import java.io.IOException; |
| 5 import java.io.InputStream; |
| 6 import java.nio.ByteBuffer; |
| 7 |
| 8 /** |
| 9 * A base wrapper for GIF image data. |
| 10 */ |
| 11 public class BaseGifImage { |
| 12 private final byte[] mData; |
| 13 private final int mOffset; |
| 14 private int mWidth; |
| 15 private int mHeight; |
| 16 |
| 17 private static final byte[] sColorTableBuffer = new byte[256 * 3]; |
| 18 |
| 19 int mHeaderSize; |
| 20 boolean mGlobalColorTableUsed; |
| 21 boolean mError; |
| 22 int[] mGlobalColorTable = new int[256]; |
| 23 int mGlobalColorTableSize; |
| 24 int mBackgroundColor; |
| 25 int mBackgroundIndex; |
| 26 |
| 27 public BaseGifImage(byte[] data) { |
| 28 this(data, 0); |
| 29 } |
| 30 |
| 31 /** |
| 32 * Unlike the desktop JVM, ByteBuffers created with allocateDirect() can (an
d since froyo, do) |
| 33 * provide a backing array, enabling zero-copy interop with native code. How
ever, they are |
| 34 * aligned on a byte boundary, meaning that they often have an arrayOffset a
s well - in those |
| 35 * cases, we can avoid allocating large byte arrays and a copy. |
| 36 */ |
| 37 public BaseGifImage(ByteBuffer data) { |
| 38 this(bufferToArray(data), bufferToOffset(data)); |
| 39 } |
| 40 |
| 41 private static int bufferToOffset(ByteBuffer buffer) { |
| 42 return buffer.hasArray() ? buffer.arrayOffset() : 0; |
| 43 } |
| 44 |
| 45 private static byte[] bufferToArray(ByteBuffer buffer) { |
| 46 if (buffer.hasArray()) { |
| 47 return buffer.array(); |
| 48 } else { |
| 49 int position = buffer.position(); |
| 50 try { |
| 51 byte[] newData = new byte[buffer.capacity()]; |
| 52 buffer.get(newData); |
| 53 return newData; |
| 54 } finally { |
| 55 buffer.position(position); |
| 56 } |
| 57 } |
| 58 } |
| 59 |
| 60 public BaseGifImage(byte[] data, int offset) { |
| 61 mData = data; |
| 62 mOffset = offset; |
| 63 |
| 64 GifHeaderStream stream = new GifHeaderStream(data); |
| 65 stream.skip(offset); |
| 66 try { |
| 67 readHeader(stream); |
| 68 mHeaderSize = stream.getPosition(); |
| 69 } catch (IOException e) { |
| 70 mError = true; |
| 71 } |
| 72 |
| 73 try { |
| 74 stream.close(); |
| 75 } catch (IOException e) { |
| 76 // Ignore |
| 77 } |
| 78 } |
| 79 |
| 80 public byte[] getData() { |
| 81 return mData; |
| 82 } |
| 83 |
| 84 public int getDataOffset() { |
| 85 return mOffset; |
| 86 } |
| 87 |
| 88 public int getWidth() { |
| 89 return mWidth; |
| 90 } |
| 91 |
| 92 public int getHeight() { |
| 93 return mHeight; |
| 94 } |
| 95 |
| 96 /** |
| 97 * Returns an estimate of the size of the object in bytes. |
| 98 */ |
| 99 public int getSizeEstimate() { |
| 100 return mData.length + mGlobalColorTable.length * 4; |
| 101 } |
| 102 |
| 103 /** |
| 104 * Reads GIF file header information. |
| 105 */ |
| 106 private void readHeader(InputStream stream) throws IOException { |
| 107 boolean valid = stream.read() == 'G'; |
| 108 valid = valid && stream.read() == 'I'; |
| 109 valid = valid && stream.read() == 'F'; |
| 110 if (!valid) { |
| 111 mError = true; |
| 112 return; |
| 113 } |
| 114 |
| 115 // Skip the next three letter, which represent the variation of the GIF
standard. |
| 116 stream.skip(3); |
| 117 |
| 118 readLogicalScreenDescriptor(stream); |
| 119 |
| 120 if (mGlobalColorTableUsed && !mError) { |
| 121 readColorTable(stream, mGlobalColorTable, mGlobalColorTableSize); |
| 122 mBackgroundColor = mGlobalColorTable[mBackgroundIndex]; |
| 123 } |
| 124 } |
| 125 |
| 126 /** |
| 127 * Reads Logical Screen Descriptor |
| 128 */ |
| 129 private void readLogicalScreenDescriptor(InputStream stream) throws IOExcept
ion { |
| 130 // logical screen size |
| 131 mWidth = readShort(stream); |
| 132 mHeight = readShort(stream); |
| 133 // packed fields |
| 134 int packed = stream.read(); |
| 135 mGlobalColorTableUsed = (packed & 0x80) != 0; // 1 : global color table
flag |
| 136 // 2-4 : color resolution - ignore |
| 137 // 5 : gct sort flag - ignore |
| 138 mGlobalColorTableSize = 2 << (packed & 7); // 6-8 : gct size |
| 139 mBackgroundIndex = stream.read(); |
| 140 stream.skip(1); // pixel aspect ratio - ignore |
| 141 } |
| 142 |
| 143 /** |
| 144 * Reads color table as 256 RGB integer values |
| 145 * |
| 146 * @param ncolors int number of colors to read |
| 147 */ |
| 148 static boolean readColorTable(InputStream stream, int[] colorTable, int ncol
ors) |
| 149 throws IOException { |
| 150 synchronized (sColorTableBuffer) { |
| 151 int nbytes = 3 * ncolors; |
| 152 int n = stream.read(sColorTableBuffer, 0, nbytes); |
| 153 if (n < nbytes) { |
| 154 return false; |
| 155 } else { |
| 156 int i = 0; |
| 157 int j = 0; |
| 158 while (i < ncolors) { |
| 159 int r = sColorTableBuffer[j++] & 0xff; |
| 160 int g = sColorTableBuffer[j++] & 0xff; |
| 161 int b = sColorTableBuffer[j++] & 0xff; |
| 162 colorTable[i++] = 0xff000000 | (r << 16) | (g << 8) | b; |
| 163 } |
| 164 } |
| 165 } |
| 166 |
| 167 return true; |
| 168 } |
| 169 |
| 170 /** |
| 171 * Reads next 16-bit value, LSB first |
| 172 */ |
| 173 private int readShort(InputStream stream) throws IOException { |
| 174 // read 16-bit value, LSB first |
| 175 return stream.read() | (stream.read() << 8); |
| 176 } |
| 177 |
| 178 private final class GifHeaderStream extends ByteArrayInputStream { |
| 179 |
| 180 private GifHeaderStream(byte[] buf) { |
| 181 super(buf); |
| 182 } |
| 183 |
| 184 public int getPosition() { |
| 185 return pos; |
| 186 } |
| 187 } |
| 188 } |
OLD | NEW |