mirror of
https://github.com/crskycode/GARbro.git
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244 lines
7.6 KiB
C#
244 lines
7.6 KiB
C#
//! \file ImagePDT.cs
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//! \date Tue Apr 19 15:32:31 2016
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//! \brief AVG32 engine image format.
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//
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// Copyright (C) 2016 by morkt
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the "Software"), to
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// deal in the Software without restriction, including without limitation the
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// rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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// sell copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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// IN THE SOFTWARE.
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//
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using System;
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using System.ComponentModel.Composition;
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using System.IO;
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using System.Windows.Media;
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using System.Windows.Media.Imaging;
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using GameRes.Utility;
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namespace GameRes.Formats.RealLive
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{
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internal class PdtMetaData : ImageMetaData
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{
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public int Version;
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public uint AlphaOffset;
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}
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[Export(typeof(ImageFormat))]
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public class PdtFormat : ImageFormat
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{
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public override string Tag { get { return "PDT"; } }
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public override string Description { get { return "AVG32 engine image format"; } }
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public override uint Signature { get { return 0x31544450; } } // 'PDT1'
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public override ImageMetaData ReadMetaData (IBinaryStream stream)
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{
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var header = stream.ReadHeader (32);
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int version = header[4] - '0';
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if (version < 0 || version > 1)
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return null;
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return new PdtMetaData
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{
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Width = header.ToUInt32 (0x0C),
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Height = header.ToUInt32 (0x10),
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BPP = 32,
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Version = version,
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AlphaOffset = header.ToUInt32 (0x1C),
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};
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}
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public override ImageData Read (IBinaryStream stream, ImageMetaData info)
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{
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using (var reader = new PdtReader (stream, (PdtMetaData)info))
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{
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reader.Unpack();
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return ImageData.Create (info, reader.Format, reader.Palette, reader.Data);
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}
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}
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public override void Write (Stream file, ImageData image)
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{
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throw new NotImplementedException ("PdtFormat.Write not implemented");
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}
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}
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internal sealed class PdtReader : IDisposable
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{
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IBinaryStream m_input;
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byte[] m_output;
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PdtMetaData m_info;
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public byte[] Data { get { return m_output; } }
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public PixelFormat Format { get; private set; }
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public BitmapPalette Palette { get; private set; }
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public PdtReader (IBinaryStream input, PdtMetaData info)
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{
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m_input = input;
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m_info = info;
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if (0 != m_info.AlphaOffset)
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Format = PixelFormats.Bgra32;
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else if (1 == m_info.Version)
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Format = PixelFormats.Indexed8;
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else
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Format = PixelFormats.Bgr32;
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m_output = new byte[m_info.Width * m_info.Height * Format.BitsPerPixel / 8];
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}
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public void Unpack ()
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{
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m_input.Position = 0x20;
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if (0 == m_info.Version)
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UnpackV0();
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else
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UnpackV1();
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}
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void UnpackV0 ()
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{
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Unpack24();
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if (0 != m_info.AlphaOffset)
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{
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m_input.Position = m_info.AlphaOffset;
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var alpha = Unpack8();
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int src = 0;
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for (int i = 3; i < m_output.Length; i += 4)
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{
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m_output[i] = alpha[src++];
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}
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}
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}
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void UnpackV1 ()
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{
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Palette = ImageFormat.ReadPalette (m_input.AsStream);
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var offsets = new int[16];
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for (int i = 0; i < offsets.Length; ++i)
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offsets[i] = m_input.ReadInt32();
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LzUnpack (offsets);
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if (0 != m_info.AlphaOffset)
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{
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m_input.Position = m_info.AlphaOffset;
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var alpha = Unpack8();
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}
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}
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void Unpack24 ()
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{
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int dst = 0;
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int bits = 0;
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int mask = 0;
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while (dst < m_output.Length)
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{
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mask >>= 1;
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if (0 == mask)
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{
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bits = m_input.ReadByte();
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mask = 0x80;
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}
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if (0 != (bits & mask))
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{
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m_input.Read (m_output, dst, 3);
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dst += 4;
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}
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else
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{
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int offset = m_input.ReadUInt16();
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int count = (1 + (offset & 0xF)) * 4;
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offset = (1 + (offset >> 4)) * 4;
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Binary.CopyOverlapped (m_output, dst-offset, dst, count);
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dst += count;
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}
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}
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}
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byte[] Unpack8 ()
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{
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var output = new byte[m_info.Width * m_info.Height];
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int dst = 0;
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int bits = 0;
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int mask = 0;
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while (dst < output.Length)
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{
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mask >>= 1;
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if (0 == mask)
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{
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bits = m_input.ReadUInt8();
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mask = 0x80;
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}
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if (0 != (bits & mask))
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{
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output[dst++] = m_input.ReadUInt8();
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}
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else
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{
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int count = 2 + m_input.ReadUInt8();
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int offset = 1 + m_input.ReadUInt8();
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Binary.CopyOverlapped (output, dst-offset, dst, count);
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dst += count;
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}
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}
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return output;
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}
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void LzUnpack (int[] offsets)
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{
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int dst = 0;
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int bits = 0;
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int mask = 0;
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while (dst < m_output.Length)
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{
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mask >>= 1;
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if (0 == mask)
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{
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bits = m_input.ReadUInt8();
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mask = 0x80;
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}
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if (0 != (bits & mask))
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{
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m_output[dst++] = m_input.ReadUInt8();
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}
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else
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{
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int offset = m_input.ReadUInt8();
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int count = Math.Min (2 + (offset >> 4), m_output.Length - dst);
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offset = offsets[offset & 0xF];
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if (dst < offset)
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{
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int gap = Math.Min (offset - dst, count);
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dst += gap;
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count -= gap;
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}
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if (count > 0)
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{
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Binary.CopyOverlapped (m_output, dst-offset, dst, count);
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dst += count;
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}
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}
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}
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}
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#region IDisposable Members
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public void Dispose ()
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{
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}
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#endregion
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}
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}
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