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https://github.com/crskycode/GARbro.git
synced 2024-12-24 03:44:13 +08:00
(NPK): better handle segments compression.
don't compress segments when compression produces larger segments.
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parent
7a9a6a607f
commit
53129e43ba
@ -237,13 +237,6 @@ namespace GameRes.Formats.NitroPlus
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return key;
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}
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class NpkStoredEntry : NpkEntry
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{
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public byte[] RawName;
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public byte[] CheckSum;
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public bool IsSolid;
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}
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public override void Create (Stream output, IEnumerable<Entry> list, ResourceOptions options,
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EntryCallback callback)
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{
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@ -285,8 +278,8 @@ namespace GameRes.Formats.NitroPlus
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if (null != callback)
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callback (callback_count++, entry, arcStrings.MsgAddingFile);
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using (var file = File.OpenRead (entry.Name))
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CopyFile (file, entry, output, aes);
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using (var writer = new NpkWriter (entry, output, aes))
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writer.Write (DefaultSegmentSize);
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}
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output.Position = 0;
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var buffer = new byte[] { (byte)'N', (byte)'P', (byte)'K', (byte)'2', 1, 0, 0, 0 };
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@ -333,82 +326,153 @@ namespace GameRes.Formats.NitroPlus
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}
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}
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void CopyFile (FileStream file, NpkStoredEntry entry, Stream archive, Aes aes)
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static readonly HashSet<string> SolidFiles = new HashSet<string> { ".png", ".jpg" };
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static readonly HashSet<string> DisableCompression = new HashSet<string> { ".png", ".jpg", ".ogg" };
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}
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internal class NpkStoredEntry : NpkEntry
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{
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public byte[] RawName;
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public byte[] CheckSum;
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public bool IsSolid;
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}
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internal sealed class NpkWriter : IDisposable
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{
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NpkStoredEntry m_entry;
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FileStream m_input;
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Stream m_archive;
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CryptoStream m_checksum_stream;
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Aes m_aes;
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long m_remaining;
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byte[] m_buffer;
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public NpkWriter (NpkStoredEntry entry, Stream archive, Aes aes)
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{
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if (file.Length > uint.MaxValue)
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m_input = File.OpenRead (entry.Name);
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m_archive = archive;
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m_entry = entry;
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m_aes = aes;
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m_buffer = null;
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}
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static readonly byte[] EmptyFileHash = GetDefaultHash();
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public void Write (uint segment_size)
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{
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long input_size = m_input.Length;
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if (input_size > uint.MaxValue)
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throw new FileSizeException();
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long input_size = file.Length;
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entry.Offset = archive.Position;
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entry.Size = entry.UnpackedSize = (uint)input_size;
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if (0 == entry.Size)
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m_entry.Offset = m_archive.Position;
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m_entry.Size = m_entry.UnpackedSize = (uint)input_size;
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if (0 == m_entry.Size)
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{
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entry.CheckSum = EmptyFileHash;
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m_entry.CheckSum = EmptyFileHash;
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return;
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}
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uint segment_size = DefaultSegmentSize;
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byte[] buffer = null;
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if (!entry.IsSolid)
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buffer = new byte[segment_size];
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else
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if (!m_entry.IsSolid)
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m_buffer = new byte[segment_size];
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else if (input_size > segment_size)
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segment_size = (uint)input_size;
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entry.Segments.Clear();
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using (var sha256 = SHA256.Create())
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using (var checksum_stream = new CryptoStream (Stream.Null, sha256, CryptoStreamMode.Write))
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using (m_checksum_stream = new CryptoStream (Stream.Null, sha256, CryptoStreamMode.Write))
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{
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long remaining = input_size;
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while (remaining > 0)
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m_remaining = input_size;
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int segment_count = (int)((input_size + segment_size - 1) / segment_size);
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m_entry.Segments.Clear();
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m_entry.Segments.Capacity = segment_count;
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for (int i = 0; i < segment_count; ++i)
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{
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int chunk_size = (int)Math.Min (remaining, segment_size);
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var segment = new NpkSegment
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int chunk_size = (int)Math.Min (m_remaining, segment_size);
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var file_pos = m_input.Position;
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var segment = WriteSegment (chunk_size, m_entry.IsPacked);
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if (m_entry.IsPacked && !segment.IsCompressed)
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{
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Offset = archive.Position,
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UnpackedSize = (uint)chunk_size,
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};
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using (var proxy = new ProxyStream (archive, true))
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using (var encryptor = aes.CreateEncryptor())
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{
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Stream output = new CryptoStream (proxy, encryptor, CryptoStreamMode.Write);
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var measure = new CountedStream (output);
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output = measure;
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if (entry.IsPacked)
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output = new DeflateStream (output, CompressionLevel.Optimal);
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using (output)
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{
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if (remaining == chunk_size)
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{
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var pos = file.Position;
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file.CopyTo (output);
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file.Position = pos;
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file.CopyTo (checksum_stream);
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}
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else
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{
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chunk_size = file.Read (buffer, 0, chunk_size);
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output.Write (buffer, 0, chunk_size);
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checksum_stream.Write (buffer, 0, chunk_size);
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}
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}
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segment.Size = (uint)measure.Count;
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segment.AlignedSize = (uint)(archive.Position - segment.Offset);
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entry.Segments.Add (segment);
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// compressed segment is larger than uncompressed, rewrite
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m_input.Position = file_pos;
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m_archive.Position = segment.Offset;
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RewriteSegment (segment, chunk_size);
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m_archive.SetLength (m_archive.Position);
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}
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remaining -= chunk_size;
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m_entry.Segments.Add (segment);
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m_remaining -= segment.UnpackedSize;
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}
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checksum_stream.FlushFinalBlock();
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entry.CheckSum = sha256.Hash;
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m_checksum_stream.FlushFinalBlock();
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m_entry.CheckSum = sha256.Hash;
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}
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}
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static readonly HashSet<string> SolidFiles = new HashSet<string> { ".png", ".jpg" };
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static readonly HashSet<string> DisableCompression = new HashSet<string> { ".png", ".jpg", ".ogg" };
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static readonly byte[] EmptyFileHash = GetDefaultHash();
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NpkSegment WriteSegment (int chunk_size, bool compress)
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{
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var segment = new NpkSegment { Offset = m_archive.Position };
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using (var proxy = new ProxyStream (m_archive, true))
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using (var encryptor = m_aes.CreateEncryptor())
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{
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Stream output = new CryptoStream (proxy, encryptor, CryptoStreamMode.Write);
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var measure = new CountedStream (output);
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output = measure;
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if (compress)
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output = new DeflateStream (output, CompressionLevel.Optimal);
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using (output)
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{
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if (m_remaining == chunk_size)
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{
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var file_pos = m_input.Position;
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m_input.CopyTo (output);
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m_input.Position = file_pos;
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m_input.CopyTo (m_checksum_stream);
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}
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else
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{
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chunk_size = m_input.Read (m_buffer, 0, chunk_size);
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output.Write (m_buffer, 0, chunk_size);
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m_checksum_stream.Write (m_buffer, 0, chunk_size);
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}
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}
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segment.UnpackedSize = (uint)chunk_size;
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segment.Size = (uint)measure.Count;
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segment.AlignedSize = (uint)(m_archive.Position - segment.Offset);
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return segment;
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}
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}
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void RewriteSegment (NpkSegment segment, int chunk_size)
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{
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using (var proxy = new ProxyStream (m_archive, true))
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using (var encryptor = m_aes.CreateEncryptor())
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using (var output = new CryptoStream (proxy, encryptor, CryptoStreamMode.Write))
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{
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if (m_remaining == chunk_size)
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{
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m_input.CopyTo (output);
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}
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else
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{
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chunk_size = m_input.Read (m_buffer, 0, chunk_size);
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output.Write (m_buffer, 0, chunk_size);
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}
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}
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segment.UnpackedSize = segment.Size = (uint)chunk_size;
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segment.AlignedSize = (uint)(m_archive.Position - segment.Offset);
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}
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static byte[] GetDefaultHash ()
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{
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using (var sha256 = SHA256.Create())
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return sha256.ComputeHash (new byte[0]);
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}
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bool _disposed = false;
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public void Dispose ()
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{
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if (!_disposed)
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{
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m_input.Dispose();
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_disposed = true;
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}
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GC.SuppressFinalize (this);
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}
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}
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internal class NpkStream : Stream
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