mirror of
https://github.com/crskycode/GARbro.git
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398 lines
14 KiB
C#
398 lines
14 KiB
C#
//! \file ArcBGI.cs
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//! \date Tue Sep 09 09:29:12 2014
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//! \brief BGI/Ethornell engine archive implementation.
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//
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// Copyright (C) 2014-2015 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.Collections.Generic;
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using System.ComponentModel.Composition;
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using System.IO;
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using GameRes.Utility;
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namespace GameRes.Formats.BGI
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{
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[Export(typeof(ArchiveFormat))]
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public class ArcOpener : ArchiveFormat
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{
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public override string Tag { get { return "BGI"; } }
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public override string Description { get { return "BGI/Ethornell engine resource archive"; } }
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public override uint Signature { get { return 0x6b636150; } } // "Pack"
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public override bool IsHierarchic { get { return false; } }
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public override bool CanWrite { get { return false; } }
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public ArcOpener ()
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{
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Extensions = new string[] { "arc" };
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}
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public override ArcFile TryOpen (ArcView file)
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{
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if (!file.View.AsciiEqual (4, "File "))
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return null;
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uint count = file.View.ReadUInt32 (12);
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if (count > 0xfffff)
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return null;
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uint index_size = 0x20 * count;
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if (index_size > file.View.Reserve (0x10, index_size))
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return null;
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var dir = new List<Entry> ((int)count);
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long index_offset = 0x10;
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long base_offset = index_offset + index_size;
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for (uint i = 0; i < count; ++i)
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{
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string name = file.View.ReadString (index_offset, 0x10);
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var entry = FormatCatalog.Instance.Create<PackedEntry> (name);
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entry.Offset = base_offset + file.View.ReadUInt32 (index_offset+0x10);
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entry.Size = file.View.ReadUInt32 (index_offset+0x14);
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if (!entry.CheckPlacement (file.MaxOffset))
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return null;
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dir.Add (entry);
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index_offset += 0x20;
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}
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foreach (var entry in dir)
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{
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if (entry.Name.HasExtension ("_bp"))
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entry.Type = "script";
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else if (file.View.AsciiEqual (entry.Offset, "CompressedBG"))
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entry.Type = "image";
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else if (file.View.AsciiEqual (entry.Offset+4, "bw "))
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entry.Type = "audio";
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}
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return new ArcFile (file, this, dir);
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}
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public override Stream OpenEntry (ArcFile arc, Entry entry)
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{
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var entry_offset = entry.Offset;
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var input = arc.File.CreateStream (entry_offset, entry.Size);
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var pent = entry as PackedEntry;
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if (null == pent)
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return input;
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if (!pent.IsPacked)
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{
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if (pent.Size <= 0x220 || !arc.File.View.AsciiEqual (entry_offset, "DSC FORMAT 1.00\0"))
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return input;
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pent.IsPacked = true;
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pent.UnpackedSize = arc.File.View.ReadUInt32 (entry_offset+0x14);
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}
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try
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{
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using (var decoder = new DscDecoder (input))
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{
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decoder.Unpack();
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return new BinMemoryStream (decoder.Output, entry.Name);
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}
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}
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catch (Exception X)
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{
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System.Diagnostics.Trace.WriteLine (X.Message, "BgiOpener");
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return arc.File.CreateStream (entry_offset, entry.Size);
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}
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}
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}
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[Export(typeof(ArchiveFormat))]
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public class Arc2Opener : ArcOpener
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{
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public override string Tag { get { return "BURIKO ARC"; } }
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public override string Description { get { return "BGI/Ethornell engine resource archive v2"; } }
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public override uint Signature { get { return 0x49525542; } } // "BURI"
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public override bool IsHierarchic { get { return false; } }
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public override bool CanWrite { get { return false; } }
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public override ArcFile TryOpen (ArcView file)
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{
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if (!file.View.AsciiEqual (4, "KO ARC20"))
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return null;
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int count = file.View.ReadInt32 (12);
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if (!IsSaneCount (count))
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return null;
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uint index_size = 0x80 * (uint)count;
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if (index_size > file.View.Reserve (0x10, index_size))
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return null;
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var dir = new List<Entry> (count);
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long index_offset = 0x10;
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long base_offset = index_offset + index_size;
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for (uint i = 0; i < count; ++i)
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{
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string name = file.View.ReadString (index_offset, 0x60);
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var offset = base_offset + file.View.ReadUInt32 (index_offset+0x60);
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var entry = new PackedEntry { Name = name, Offset = offset };
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entry.Size = file.View.ReadUInt32 (index_offset+0x64);
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if (!entry.CheckPlacement (file.MaxOffset))
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return null;
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dir.Add (entry);
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index_offset += 0x80;
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}
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foreach (var entry in dir)
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{
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uint signature = file.View.ReadUInt32 (entry.Offset);
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var res = AutoEntry.DetectFileType (signature);
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if (res != null)
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entry.Type = res.Type;
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else if (file.View.AsciiEqual (entry.Offset, "BSE 1."))
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entry.Type = "image";
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else if (file.View.AsciiEqual (entry.Offset+4, "bw "))
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entry.Type = "audio";
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}
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return new ArcFile (file, this, dir);
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}
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public override Stream OpenEntry (ArcFile arc, Entry entry)
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{
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if (entry.Size < 0x50 || !arc.File.View.AsciiEqual (entry.Offset, "BSE 1."))
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return base.OpenEntry (arc, entry);
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int version = arc.File.View.ReadUInt16 (entry.Offset+8);
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if (version != 0x100 && version != 0x101)
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return base.OpenEntry (arc, entry);
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ushort checksum = arc.File.View.ReadUInt16 (entry.Offset+0xA);
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uint key = arc.File.View.ReadUInt32 (entry.Offset+0xC);
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var header = arc.File.View.ReadBytes (entry.Offset+0x10, 0x40);
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if (0x101 == version)
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DecryptBse (header, new BseGenerator101 (key));
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else
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DecryptBse (header, new BseGenerator100 (key));
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var body = arc.File.CreateStream (entry.Offset+0x50, entry.Size-0x50);
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return new PrefixStream (header, body);
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}
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void DecryptBse (byte[] data, IBseGenerator decoder)
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{
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var decoded = new bool[0x40];
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for (int i = 0; i < decoded.Length; ++i)
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{
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int dst = decoder.NextKey() & 0x3F;
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while (decoded[dst])
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{
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dst = (dst + 1) & 0x3F;
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}
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int shift = decoder.NextKey() & 7;
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bool right_shift = (decoder.NextKey() & 1) == 0;
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byte symbol = (byte)(data[dst] - decoder.NextKey());
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if (right_shift)
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{
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data[dst] = Binary.RotByteR (symbol, shift);
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}
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else
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{
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data[dst] = Binary.RotByteL (symbol, shift);
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}
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decoded[dst] = true;
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}
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}
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}
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internal class BgiDecoderBase : MsbBitStream
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{
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protected uint m_key;
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protected uint m_magic;
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protected BgiDecoderBase (Stream input, bool leave_open = false) : base (input, leave_open)
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{
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}
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protected byte UpdateKey ()
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{
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uint v0 = 20021 * (m_key & 0xffff);
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uint v1 = m_magic | (m_key >> 16);
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v1 = v1 * 20021 + m_key * 346;
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v1 = (v1 + (v0 >> 16)) & 0xffff;
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m_key = (v1 << 16) + (v0 & 0xffff) + 1;
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return (byte)v1;
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}
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}
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internal sealed class DscDecoder : BgiDecoderBase
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{
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byte[] m_output;
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uint m_dec_count;
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public byte[] Output { get { return m_output; } }
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public DscDecoder (IBinaryStream input) : base (input.AsStream)
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{
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m_magic = (uint)input.ReadUInt16() << 16;
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input.Position = 0x10;
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m_key = input.ReadUInt32();
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int output_size = input.ReadInt32();
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m_dec_count = input.ReadUInt32();
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m_output = new byte[output_size];
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}
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public void Unpack ()
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{
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Input.Position = 0x20;
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HuffmanCode[] hcodes = new HuffmanCode[512];
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HuffmanNode[] hnodes = new HuffmanNode[1023];
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int leaf_node_count = 0;
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for (ushort i = 0; i < 512; i++)
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{
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int src = Input.ReadByte();
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if (-1 == src)
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throw new EndOfStreamException ("Incomplete compressed stream");
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byte depth = (byte)(src - UpdateKey());
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if (0 != depth)
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{
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hcodes[leaf_node_count].Depth = depth;
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hcodes[leaf_node_count].Code = i;
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leaf_node_count++;
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}
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}
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Array.Sort (hcodes, 0, leaf_node_count);
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CreateHuffmanTree (hnodes, hcodes, leaf_node_count);
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HuffmanDecompress (hnodes, m_dec_count);
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}
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struct HuffmanCode : IComparable<HuffmanCode>
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{
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public ushort Code;
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public ushort Depth;
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public int CompareTo (HuffmanCode other)
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{
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int cmp = (int)Depth - (int)other.Depth;
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if (0 == cmp)
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cmp = (int)Code - (int)other.Code;
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return cmp;
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}
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}
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class HuffmanNode
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{
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public bool IsParent;
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public int Code;
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public int LeftChildIndex;
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public int RightChildIndex;
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}
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static void CreateHuffmanTree (HuffmanNode[] hnodes, HuffmanCode[] hcode, int node_count)
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{
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var nodes_index = new int[2,512];
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int next_node_index = 1;
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int depth_nodes = 1;
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int depth = 0;
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int child_index = 0;
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nodes_index[0,0] = 0;
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for (int n = 0; n < node_count; )
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{
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int huffman_nodes_index = child_index;
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child_index ^= 1;
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int depth_existed_nodes = 0;
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while (n < hcode.Length && hcode[n].Depth == depth)
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{
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var node = new HuffmanNode { IsParent = false, Code = hcode[n++].Code };
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hnodes[nodes_index[huffman_nodes_index, depth_existed_nodes]] = node;
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depth_existed_nodes++;
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}
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int depth_nodes_to_create = depth_nodes - depth_existed_nodes;
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for (int i = 0; i < depth_nodes_to_create; i++)
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{
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var node = new HuffmanNode { IsParent = true };
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nodes_index[child_index, i * 2] = node.LeftChildIndex = next_node_index++;
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nodes_index[child_index, i * 2 + 1] = node.RightChildIndex = next_node_index++;
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hnodes[nodes_index[huffman_nodes_index, depth_existed_nodes+i]] = node;
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}
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depth++;
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depth_nodes = depth_nodes_to_create * 2;
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}
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}
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int HuffmanDecompress (HuffmanNode[] hnodes, uint dec_count)
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{
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int dst_ptr = 0;
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for (uint k = 0; k < dec_count; k++)
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{
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int node_index = 0;
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do
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{
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int bit = GetNextBit();
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if (-1 == bit)
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throw new EndOfStreamException();
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if (0 == bit)
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node_index = hnodes[node_index].LeftChildIndex;
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else
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node_index = hnodes[node_index].RightChildIndex;
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}
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while (hnodes[node_index].IsParent);
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int code = hnodes[node_index].Code;
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if (code >= 256)
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{
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int offset = GetBits (12);
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if (-1 == offset)
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break;
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int count = (code & 0xff) + 2;
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offset += 2;
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Binary.CopyOverlapped (m_output, dst_ptr - offset, dst_ptr, count);
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dst_ptr += count;
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} else
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m_output[dst_ptr++] = (byte)code;
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}
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return dst_ptr;
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}
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}
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internal interface IBseGenerator
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{
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int NextKey ();
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}
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internal class BseGenerator100 : IBseGenerator
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{
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int m_key;
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public BseGenerator100 (uint key)
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{
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m_key = (int)key;
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}
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public int NextKey ()
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{
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uint v = (uint)(((m_key * 257 >> 8) + m_key * 97 + 23) ^ 0xA6CD9B75);
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m_key = (int)Binary.RotR (v, 16);
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return m_key;
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}
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}
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internal class BseGenerator101 : IBseGenerator
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{
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int m_key;
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public BseGenerator101 (uint key)
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{
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m_key = (int)key;
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}
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public int NextKey ()
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{
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uint v = (uint)((m_key * 127 >> 7) + m_key * 83 + 53) ^ 0xB97A7E5C;
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m_key = (int)Binary.RotR (v, 16);
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return m_key;
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}
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}
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}
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