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19 Commits
Author SHA1 Message Date
korenkonder c70630e705 Release v0.4.8.1
A3DA, AET, DEX, DIVA, FARC, STR, VAG
2019-12-05 23:27:01 +03:00
korenkonder 6d80dfd0c9 Release v0.4.8.0
A3DA, Aet, DataBank, DEX, VAG
2019-11-05 10:28:28 +03:00
Kuji Kitamura 06b41269c0 Release v0.4.7.6
A3DA, AET, DCC, DIVAFILE, MOT
2019-10-27 17:49:16 +03:00
KujiKita 4698c75c7a Release v0.4.7.5
A3DA, Aet, AetDB, AuthDB, Databank, DEX, MOT, STR, VAG
2019-09-30 20:44:46 +03:00
KujiKita 792781a5f7 Release v0.4.7.4
Aet
2019-09-11 23:37:05 +03:00
KujiKita 773e148783 Release v0.4.7.3
A3DA
2019-09-04 01:16:03 +03:00
KujiKita 87d4862af5 Release v0.4.7.2
A3DA, BLT, CCT, DEX, DFT, LIT, Mot, SprDB
2019-08-21 03:04:19 +03:00
Kuji Kitamura b26cdc8b5c Release v0.4.7.1
A3DA
2019-08-07 21:24:59 +03:00
KujiKita 6e2f5746b0 Release v0.4.7.0
A3DA, Aet, AetDB, AuthDB, DataBank, DEX, DIVA, DIVAFILE, FARC, STR, VAG
2019-07-12 06:14:51 +03:00
KujiKita 3f883c4c77 Release v0.4.6.4
A3DA, DataBank, DEX, FARC, KKdList, MsgPack, POF, SprDB fix
2019-07-08 21:45:57 +03:00
KujiKita 0863721dc4 Release v0.4.6.3
A3DA and FARC fix
Added converting A3DA in FARC
2019-07-03 17:54:04 +03:00
KujiKita e0d651bd55 Release v0.4.6.2p1
A3DA Key fix
2019-07-03 14:52:16 +03:00
KujiKita 3bbbea9536 Release v0.4.6.2
Some fixes and changes
2019-07-03 01:08:18 +03:00
KujiKita 4de7bd32f7 Release v0.4.6.1
Some fixes and changes
2019-07-01 03:53:20 +03:00
KujiKita 93f905d3e1 Release v0.4.6.0
Some fixes and changes
2019-06-24 21:28:30 +03:00
KujiKita 4c8b293beb Release v0.4.5.10
Some fixes and changes
2019-06-14 05:39:46 +03:00
korenkonder 72141ef603 Update README.md 2019-06-02 00:45:40 +03:00
KujiKita d405f05f0b Release v0.4.5.9
Some fixes and changes
2019-06-02 00:43:54 +03:00
Kuji Kitamura 8b5a939dee Release v0.4.5.8
Some fixes and changes
2019-05-26 22:22:08 +03:00
95 changed files with 12347 additions and 6530 deletions
+3
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@@ -1,5 +1,8 @@
.vs
build
packages
KKdBaseLib/bin
KKdBaseLib/obj
KKdMainLib/bin
KKdMainLib/obj
KKdMathLib/bin
+312
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@@ -0,0 +1,312 @@
namespace KKdBaseLib.A3DA
{
public struct A3DAData
{
public string[] Motion;
public string[] ObjectList;
public string[] ObjectHRCList;
public string[] MObjectHRCList;
public _ _;
public DOF? DOF;
public Fog[] Fog;
public Curve[] Curve;
public Event[] Event;
public Light[] Light;
public Object[] Object;
public Ambient[] Ambient;
public ObjectHRC[] ObjectHRC;
public CameraRoot[] CameraRoot;
public MObjectHRC[] MObjectHRC;
public PlayControl PlayControl;
public PostProcess? PostProcess;
public MaterialList[] MaterialList;
public ModelTransform[] Chara;
public ModelTransform[] Point;
public CameraAuxiliary? CameraAuxiliary;
}
public struct _
{
public int? CompressF16;
public string FileName;
public string PropertyVersion;
public string ConverterVersion;
}
public struct Ambient
{
public string Name;
public Vector4<Key> LightDiffuse;
public Vector4<Key> RimLightDiffuse;
}
public struct CameraAuxiliary
{
public Key Gamma;
public Key Exposure;
public Key Saturate;
public Key GammaRate;
public Key AutoExposure;
}
public struct CameraRoot
{
public ViewPoint VP;
public ModelTransform MT;
public ModelTransform Interest;
public struct ViewPoint
{
public bool? FOVHorizontal;
public float? Aspect;
public float? CameraApertureH;
public float? CameraApertureW;
public Key FOV;
public Key Roll;
public Key FocalLength;
public ModelTransform MT;
}
}
public struct Curve
{
public string Name;
public Key CV;
}
public struct DOF
{
public string Name;
public ModelTransform MT;
}
public struct Event
{
public int? Type;
public float? End;
public float? Begin;
public float? ClipEnd;
public float? ClipBegin;
public float? TimeRefScale;
public string Name;
public string Param1;
public string Ref;
}
public struct Fog
{
public int? Id;
public Key End;
public Key Start;
public Key Density;
public Vector4<Key> Diffuse;
}
public enum KeyType : int
{
Null = 0,
Value = 1,
Lerp = 2,
Hermite = 3,
Hold = 4,
}
public enum EPType : int
{
EP_1 = 1,
EP_2 = 2,
EP_3 = 3,
}
public struct Key
{
public KeyType? Type;
public int Length;
public int? BinOffset;
public EPType EPTypePre;
public EPType EPTypePost;
public float? Max;
public float? Value;
public RawD RawData;
public KFT3[] Keys;
public struct RawD
{
public int KeyType;
public int ValueListSize;
public string ValueType;
public string[] ValueList;
}
public static Vector3<A3DAKey> ToA3DAKey(Vector3<Key> k) =>
new Vector3<A3DAKey> { X = (A3DAKey)k.X, Y = (A3DAKey)k.Y, Z = (A3DAKey)k.Z };
public static Vector3<Key> ToKey(Vector3<A3DAKey> k) =>
new Vector3<Key> { X = (Key)k.X, Y = (Key)k.Y, Z = (Key)k.Z };
public static explicit operator Key(A3DAKey k)
{
Key key = default;
key.EPTypePost = k.EPTypePost;
key.EPTypePre = k.EPTypePre;
key.Max = k.MaxFrames;
if (k.Length > 1)
{
key.Type = k.Type;
key.Length = k.Length;
key.Keys = k.Keys;
}
else if (k.Length == 1)
{
key.Type = KeyType.Value;
key.Value = k.Keys[0].V;
}
return key;
}
public static explicit operator A3DAKey(Key k)
{
A3DAKey key = default;
key.EPTypePost = k.EPTypePost;
key.EPTypePre = k.EPTypePre;
key.MaxFrames = k.Max ?? 0;
if (k.Type != null && k.Length > 1)
{
key.Type = k.Type.Value;
key.Length = k.Length;
key.Keys = k.Keys;
key.FrameDelta = k.Keys[k.Length - 1].F - k.Keys[0].F;
key.ValueDelta = k.Keys[k.Length - 1].V - k.Keys[0].V;
}
else
{
key.Length = 1;
key.Keys = new KFT3[1];
if (k.Length == 1)
{
key.Type = KeyType.Value;
key.Keys[0].V = k.Value ?? 0;
}
else if (k.Type.HasValue && k.Value.HasValue)
{
key.Type = k.Type.Value;
key.Keys[0].V = k.Value.Value;
}
}
return key;
}
}
public struct Light
{
public int? Id;
public string Name;
public string Type;
public Vector4<Key> Ambient;
public Vector4<Key> Diffuse;
public Vector4<Key> Specular;
public Vector4<Key> Incandescence;
public ModelTransform Position;
public ModelTransform SpotDirection;
}
public struct MaterialList
{
public string Name;
public string HashName;
public Key GlowIntensity;
public Vector4<Key> BlendColor;
public Vector4<Key> Incandescence;
}
public struct MObjectHRC
{
public string Name;
public Node[] Node;
public Vector3<float?> JointOrient;
public Instance[] Instances;
public ModelTransform MT;
public struct Instance
{
public int? Shadow;
public string Name;
public string UIDName;
public ModelTransform MT;
}
}
public struct ModelTransform
{
public bool Writed;
public int? BinOffset;
public Key Visibility;
public Vector3<Key> Rot;
public Vector3<Key> Scale;
public Vector3<Key> Trans;
}
public struct Node
{
public int? Parent;
public string Name;
public ModelTransform MT;
}
public struct Object
{
public int? MorphOffset;
public string Name;
public string Morph;
public string UIDName;
public string ParentName;
public ModelTransform MT;
public TexturePattern[] TexPat;
public TextureTransform[] TexTrans;
public struct TexturePattern
{
public int? PatOffset;
public string Pat;
public string Name;
}
public struct TextureTransform
{
public string Name;
public Key Rotate;
public Key RotateFrame;
public Vector2<Key> Offset;
public Vector2<Key> Repeat;
public Vector2<Key> Coverage;
public Vector2<Key> TranslateFrame;
}
}
public struct ObjectHRC
{
public float? Shadow;
public string Name;
public string UIDName;
public Node[] Node;
public Vector3<float?> JointOrient;
}
public struct PlayControl
{
public float? Begin;
public float? Div;
public float? FPS;
public float? Offset;
public float? Size;
}
public struct PostProcess
{
public Key LensFlare;
public Key LensGhost;
public Key LensShaft;
public Vector4<Key> Ambient;
public Vector4<Key> Diffuse;
public Vector4<Key> Specular;
}
}
+28
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using KKdBaseLib.A3DA;
namespace KKdBaseLib
{
public struct A3DAKey
{
public KeyType Type;
public int Unk04;
public float MaxFrames;
public EPType EPTypePre;
public EPType EPTypePost;
public float FrameDelta;
public float ValueDelta;
public int Unk1C;
public int Unk20;
public int Unk24;
public int Unk28;
public int Unk2C;
public int Unk30;
public int Unk34;
public int Length;
public int Unk3C;
public int DataOffset; //Used only in-game and points to KFT3 Array
public int Unk44;
public KFT3[] Keys;
}
}
+166
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namespace KKdBaseLib.Aet
{
public struct AetHeader
{
public Pointer<AetData>[] Data;
}
public struct AetData
{
public Pointer<string> Name;
public float StartFrame;
public float EndFrame;
public float FrameRate;
public uint BackColor;
public uint Width;
public uint Height;
public Pointer<Vector2<CountPointer<KFT2>>> Camera;
public CountPointer<AetComposition > Compositions ;
public CountPointer<AetSurface> Surfaces;
public CountPointer<AetSoundEffect > SoundEffects ;
}
public struct AetComposition
{
public int P;
public int C { get => E != null ? E.Length : 0;
set => E = value > -1 ? new AetLayer[value] : null; }
public int O;
public AetLayer[] E;
public override string ToString() => "Count: " + C;
}
public struct AetLayer
{
public int ID;
public int Offset;
public Pointer<string> Name;
public float StartFrame;
public float EndFrame;
public float StartOffset;
public float PlaybackSpeed;
public AetLayerFlags Flags;
public byte Pad;
public AetLayerType Type;
public int DataOffset;
public int ParentLayer;
public CountPointer<AetMarker> Marker;
public Pointer<AnimationData> Data;
public Pointer<AudioData> ExtraData;
public int DataID;
public enum AetLayerFlags : ushort
{
Visible = 0b0000000000000001,
Audible = 0b0000000000000010,
Unk2 = 0b0000000000000100,
Unk3 = 0b0000000000001000,
Unk4 = 0b0000000000010000,
AudioRealted = 0b0000000000100000,
Unk6 = 0b0000000001000000,
SpriteFrames = 0b0000000010000000,
Unk8 = 0b0000000100000000,
Unk9 = 0b0000001000000000,
Unk10 = 0b0000010000000000,
Unk11 = 0b0000100000000000,
Unk12 = 0b0001000000000000,
Unk13 = 0b0010000000000000,
Unk14 = 0b0100000000000000,
Unk15 = 0b1000000000000000,
}
public enum AetLayerType : byte
{
Nop = 0,
Pic = 1,
Aif = 2,
Eff = 3,
}
public override string ToString() => $"ID: {ID}; Name: {Name.V}; Type: {Type}" +
( DataID > -1 ? $"; " + $"Data ID: { DataID}" : "") +
(ParentLayer > -1 ? $"; Parent Object ID: {ParentLayer}" : "");
}
public struct AetMarker
{
public float Frame;
public Pointer<string> Name;
}
public struct AnimationData
{
public BlendMode Mode;
public byte Padding0;
public bool UseTextureMask;
public byte Padding1;
public CountPointer<KFT2> OriginX;
public CountPointer<KFT2> OriginY;
public CountPointer<KFT2> PositionX;
public CountPointer<KFT2> PositionY;
public CountPointer<KFT2> Rotation;
public CountPointer<KFT2> ScaleX;
public CountPointer<KFT2> ScaleY;
public CountPointer<KFT2> Opacity;
public Pointer<Perspective> Persp;
public enum BlendMode : byte
{
Alpha = 3,
Additive = 5,
DstColorZero = 6,
SrcAlphaOneMinusSrcColor = 7,
Transparent = 8,
}
public struct Perspective
{
public CountPointer<KFT2> Unk1 ;
public CountPointer<KFT2> Unk2 ;
public CountPointer<KFT2> RotReturnX;
public CountPointer<KFT2> RotReturnY;
public CountPointer<KFT2> RotReturnZ;
public CountPointer<KFT2> RotationX;
public CountPointer<KFT2> RotationY;
public CountPointer<KFT2> ScaleZ;
}
}
public struct AudioData
{
public CountPointer<KFT2> Data0;
public CountPointer<KFT2> Data1;
public CountPointer<KFT2> Data2;
public CountPointer<KFT2> Data3;
}
public struct AetSurface
{
public int O;
public uint Color;
public ushort Width;
public ushort Height;
public float Frames;
public CountPointer<AetSpriteIdentifier> Sprites;
public override string ToString() => $"Width: {Width}; Height: {Height}; Color: {Color.ToString("X2")}";
}
public struct AetSpriteIdentifier
{
public Pointer<string> Name;
public uint ID;
public override string ToString() => $"ID: {ID}; Name: {Name}";
}
public struct AetSoundEffect
{
public int O;
public uint Unk;
}
}
+66
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//Original research by Samyuu
namespace KKdBaseLib
{
public static class DCC //Databank Checksum Calculator
{
private static readonly ushort[] ChecksumLookupTable = {
0x0000, 0x1021, 0x2042, 0x3063, 0x4084, 0x50A5, 0x60C6, 0x70E7,
0x8108, 0x9129, 0xA14A, 0xB16B, 0xC18C, 0xD1AD, 0xE1CE, 0xF1EF,
0x1231, 0x0210, 0x3273, 0x2252, 0x52B5, 0x4294, 0x72F7, 0x62D6,
0x9339, 0x8318, 0xB37B, 0xA35A, 0xD3BD, 0xC39C, 0xF3FF, 0xE3DE,
0x2462, 0x3443, 0x0420, 0x1401, 0x64E6, 0x74C7, 0x44A4, 0x5485,
0xA56A, 0xB54B, 0x8528, 0x9509, 0xE5EE, 0xF5CF, 0xC5AC, 0xD58D,
0x3653, 0x2672, 0x1611, 0x0630, 0x76D7, 0x66F6, 0x5695, 0x46B4,
0xB75B, 0xA77A, 0x9719, 0x8738, 0xF7DF, 0xE7FE, 0xD79D, 0xC7BC,
0x48C4, 0x58E5, 0x6886, 0x78A7, 0x0840, 0x1861, 0x2802, 0x3823,
0xC9CC, 0xD9ED, 0xE98E, 0xF9AF, 0x8948, 0x9969, 0xA90A, 0xB92B,
0x5AF5, 0x4AD4, 0x7AB7, 0x6A96, 0x1A71, 0x0A50, 0x3A33, 0x2A12,
0xDBFD, 0xCBDC, 0xFBBF, 0xEB9E, 0x9B79, 0x8B58, 0xBB3B, 0xAB1A,
0x6CA6, 0x7C87, 0x4CE4, 0x5CC5, 0x2C22, 0x3C03, 0x0C60, 0x1C41,
0xEDAE, 0xFD8F, 0xCDEC, 0xDDCD, 0xAD2A, 0xBD0B, 0x8D68, 0x9D49,
0x7E97, 0x6EB6, 0x5ED5, 0x4EF4, 0x3E13, 0x2E32, 0x1E51, 0x0E70,
0xFF9F, 0xEFBE, 0xDFDD, 0xCFFC, 0xBF1B, 0xAF3A, 0x9F59, 0x8F78,
0x9188, 0x81A9, 0xB1CA, 0xA1EB, 0xD10C, 0xC12D, 0xF14E, 0xE16F,
0x1080, 0x00A1, 0x30C2, 0x20E3, 0x5004, 0x4025, 0x7046, 0x6067,
0x83B9, 0x9398, 0xA3FB, 0xB3DA, 0xC33D, 0xD31C, 0xE37F, 0xF35E,
0x02B1, 0x1290, 0x22F3, 0x32D2, 0x4235, 0x5214, 0x6277, 0x7256,
0xB5EA, 0xA5CB, 0x95A8, 0x8589, 0xF56E, 0xE54F, 0xD52C, 0xC50D,
0x34E2, 0x24C3, 0x14A0, 0x0481, 0x7466, 0x6447, 0x5424, 0x4405,
0xA7DB, 0xB7FA, 0x8799, 0x97B8, 0xE75F, 0xF77E, 0xC71D, 0xD73C,
0x26D3, 0x36F2, 0x0691, 0x16B0, 0x6657, 0x7676, 0x4615, 0x5634,
0xD94C, 0xC96D, 0xF90E, 0xE92F, 0x99C8, 0x89E9, 0xB98A, 0xA9AB,
0x5844, 0x4865, 0x7806, 0x6827, 0x18C0, 0x08E1, 0x3882, 0x28A3,
0xCB7D, 0xDB5C, 0xEB3F, 0xFB1E, 0x8BF9, 0x9BD8, 0xABBB, 0xBB9A,
0x4A75, 0x5A54, 0x6A37, 0x7A16, 0x0AF1, 0x1AD0, 0x2AB3, 0x3A92,
0xFD2E, 0xED0F, 0xDD6C, 0xCD4D, 0xBDAA, 0xAD8B, 0x9DE8, 0x8DC9,
0x7C26, 0x6C07, 0x5C64, 0x4C45, 0x3CA2, 0x2C83, 0x1CE0, 0x0CC1,
0xEF1F, 0xFF3E, 0xCF5D, 0xDF7C, 0xAF9B, 0xBFBA, 0x8FD9, 0x9FF8,
0x6E17, 0x7E36, 0x4E55, 0x5E74, 0x2E93, 0x3EB2, 0x0ED1, 0x1EF0,
};
public static ushort CalculateChecksum(this byte[] data)
{
ushort result = 0xFFFF;
for (int i = 0; i < data.Length; i++)
result = (ushort)(ChecksumLookupTable[(result >> 8) ^ data[i]] ^ (result << 8));
return result;
}
public static uint CalculateChecksumUInt(this byte[] data)
{
uint result = 0xFFFFFFFF;
for (int i = 0; i < data.Length; i++)
result = ChecksumLookupTable[(byte)(result >> 8) ^ data[i]] ^ (result << 8);
return result;
}
public static ulong CalculateChecksumULong(this byte[] data)
{
ulong result = 0xFFFFFFFFFFFFFFFF;
for (int i = 0; i < data.Length; i++)
result = ChecksumLookupTable[(byte)(result >> 8) ^ data[i]] ^ (result << 8);
return result;
}
}
}
+264
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using System;
namespace KKdBaseLib
{
public static unsafe class Extensions
{
private const double RadPi = 180 / Math.PI;
public static double ToDegrees(this double val) => val * RadPi;
public static double ToRadians(this double val) => val / RadPi;
public static double Acos (this double d ) => Math.Acos (d );
public static double Asin (this double d ) => Math.Asin (d );
public static double Atan (this double d ) => Math.Atan (d );
public static double Aсtg (this double d ) => 1 / Math.Atan (d );
public static double Cos (this double d ) => Math.Cos (d );
public static double Cosh (this double val) => Math.Cosh (val);
public static double Sin (this double a ) => Math.Sin (a );
public static double Sinh (this double val) => Math.Sinh (val);
public static double Tan (this double a ) => Math.Tan (a );
public static double Tanh (this double val) => Math.Tanh (val);
public static double Ctg (this double a ) => 1 / Math.Tan (a );
public static double Ctgh (this double val) => 1 / Math.Tanh (val);
public static double Abs (this double val) => Math.Abs (val);
public static double Ceiling(this double a ) => Math.Ceiling(a );
public static double Exp (this double d ) => Math.Exp (d );
public static double Log (this double d ) => Math.Log (d );
public static double Log10 (this double d ) => Math.Log10 (d );
public static double Round (this double d ) => Math.Round (d );
public static int Sign (this double val) => Math.Sign (val);
public static double Sqrt (this double d ) => Math.Sqrt (d );
public static double Atan2(this double y , double x ) => Math.Atan2(y , x );
public static double Log (this double val , double newBase) => Math.Log (val , newBase);
public static double Max (this double val1, double val2 ) => Math.Max (val1, val2 );
public static double Min (this double val1, double val2 ) => Math.Min (val1, val2 );
public static double Pow (this double x , double y ) => Math.Pow (x , y );
public static double Round(this double val , int d ) => Math.Round(val , d );
public static float ToDegrees(this float val) => (float)(val * RadPi);
public static float ToRadians(this float val) => (float)(val / RadPi);
public static float Acos (this float d ) => (float) Math.Acos (d ) ;
public static float Asin (this float d ) => (float) Math.Asin (d ) ;
public static float Atan (this float d ) => (float) Math.Atan (d ) ;
public static float Aсtg (this float d ) => (float)(1 / Math.Atan (d ));
public static float Cos (this float d ) => (float) Math.Cos (d ) ;
public static float Cosh (this float val) => (float) Math.Cosh (val) ;
public static float Sin (this float a ) => (float) Math.Sin (a ) ;
public static float Sinh (this float val) => (float) Math.Sinh (val) ;
public static float Tan (this float a ) => (float) Math.Tan (a ) ;
public static float Tanh (this float val) => (float) Math.Tanh (val) ;
public static float Ctg (this float a ) => (float)(1 / Math.Tan (a ));
public static float Ctgh (this float val) => (float)(1 / Math.Tanh (val));
public static float Abs (this float val) => Math.Abs (val) ;
public static float Ceiling(this float a ) => (float) Math.Ceiling(a ) ;
public static float Exp (this float d ) => (float) Math.Exp (d ) ;
public static float Log (this float d ) => (float) Math.Log (d ) ;
public static float Log10 (this float d ) => (float) Math.Log10 (d ) ;
public static float Round (this float d ) => (float) Math.Round (d ) ;
public static float Sqrt (this float d ) => (float) Math.Sqrt (d ) ;
public static float Atan2(this float y , float x ) => (float)Math.Atan2(y , x );
public static float Log (this float val , float newBase) => (float)Math.Log (val , newBase);
public static float Max (this float val1, float val2 ) => Math.Max (val1, val2 );
public static float Min (this float val1, float val2 ) => Math.Min (val1, val2 );
public static float Pow (this float x , float y ) => (float)Math.Pow (x , y );
public static float Round(this float val , int d ) => (float)Math.Round(val , d );
public static void FC( ref double Value) =>
Value = Value % 1 >= 0.5 ? (long)(Value + 0.5) : (long)Value;
public static long FC(this double Value) =>
Value % 1 >= 0.5 ? (long)(Value + 0.5) : (long)Value;
public static int A(this int value, int alignement, int divide = 1) =>
((value % alignement == 0) ? value : (value + alignement - value % alignement)) / divide;
public static uint A(this uint value, uint alignement, uint divide = 1) =>
((value % alignement == 0) ? value : (value + alignement - value % alignement)) / divide;
public static long A(this long value, long alignement, long divide = 1) =>
((value % alignement == 0) ? value : (value + alignement - value % alignement)) / divide;
public static ulong A(this ulong value, ulong alignement, ulong divide = 1) =>
((value % alignement == 0) ? value : (value + alignement - value % alignement)) / divide;
private static byte[] buf = new byte[8];
public static byte[] E(this byte[] le, byte len)
{ for (byte i = 0; i < len; i++) buf[i] = le[i];
for (byte i = 0; i < len; i++) le[len - i - 1] = buf[i]; return le; }
public static byte[] E(this byte[] le, byte len, bool isBE)
{ if (isBE) { for (byte i = 0; i < len; i++) buf[i] = le[i];
for (byte i = 0; i < len; i++) le[len - i - 1] = buf[i]; } return le; }
public static short E(this short le, bool isBE)
{ if (isBE) { for (byte i = 0; i < 2; i++) { buf[i] = (byte)le; le >>= 8; } le = 0;
for (byte i = 0; i < 2; i++) { le = (short)((int)le |
buf[i]); if (i < 1) le <<= 8; } } return le; }
public static ushort E(this ushort le, bool isBE)
{ if (isBE) { for (byte i = 0; i < 2; i++) { buf[i] = (byte)le; le >>= 8; } le = 0;
for (byte i = 0; i < 2; i++) { le |= buf[i]; if (i < 1) le <<= 8; } } return le; }
public static int E(this int le, bool isBE)
{ if (isBE) { for (byte i = 0; i < 4; i++) { buf[i] = (byte)le; le >>= 8; } le = 0;
for (byte i = 0; i < 4; i++) { le |= buf[i]; if (i < 3) le <<= 8; } } return le; }
public static uint E(this uint le, bool isBE)
{ if (isBE) { for (byte i = 0; i < 4; i++) { buf[i] = (byte)le; le >>= 8; } le = 0;
for (byte i = 0; i < 4; i++) { le |= buf[i]; if (i < 3) le <<= 8; } } return le; }
public static long E(this long le, bool isBE)
{ if (isBE) { for (byte i = 0; i < 8; i++) { buf[i] = (byte)le; le >>= 8; } le = 0;
for (byte i = 0; i < 8; i++) { le |= buf[i]; if (i < 7) le <<= 8; } } return le; }
public static ulong E(this ulong le, bool isBE)
{ if (isBE) { for (byte i = 0; i < 8; i++) { buf[i] = (byte)le; le >>= 8; } le = 0;
for (byte i = 0; i < 8; i++) { le |= buf[i]; if (i < 7) le <<= 8; } } return le; }
public static short TI16(this byte[] arr)
{ short val; fixed (byte* ptr = arr) val = *( short*)ptr; return val; }
public static ushort TU16(this byte[] arr)
{ ushort val; fixed (byte* ptr = arr) val = *(ushort*)ptr; return val; }
public static int TI32(this byte[] arr)
{ int val; fixed (byte* ptr = arr) val = *( int*)ptr; return val; }
public static uint TU32(this byte[] arr)
{ uint val; fixed (byte* ptr = arr) val = *( uint*)ptr; return val; }
public static long TI64(this byte[] arr)
{ long val; fixed (byte* ptr = arr) val = *( long*)ptr; return val; }
public static ulong TU64(this byte[] arr)
{ ulong val; fixed (byte* ptr = arr) val = *( ulong*)ptr; return val; }
public static float TF32(this byte[] arr)
{ float val; fixed (byte* ptr = arr) val = *( float*)ptr; return val; }
public static double TF64(this byte[] arr)
{ double val; fixed (byte* ptr = arr) val = *(double*)ptr; return val; }
public static void GBy(this byte[] arr, short val)
{ fixed (byte* ptr = arr) *( short*)ptr = val; }
public static void GBy(this byte[] arr, ushort val)
{ fixed (byte* ptr = arr) *(ushort*)ptr = val; }
public static void GBy(this byte[] arr, int val)
{ fixed (byte* ptr = arr) *( int*)ptr = val; }
public static void GBy(this byte[] arr, uint val)
{ fixed (byte* ptr = arr) *( uint*)ptr = val; }
public static void GBy(this byte[] arr, long val)
{ fixed (byte* ptr = arr) *( long*)ptr = val; }
public static void GBy(this byte[] arr, ulong val)
{ fixed (byte* ptr = arr) *( ulong*)ptr = val; }
public static void GBy(this byte[] arr, float val)
{ fixed (byte* ptr = arr) *( float*)ptr = val; }
public static void GBy(this byte[] arr, double val)
{ fixed (byte* ptr = arr) *(double*)ptr = val; }
public static sbyte CITSB(this int c)
{ return ( sbyte)(c > 0x0000007F ?
0x0000007F : c < -0x00000080 ? -0x00000080 : c); }
public static byte CITB (this int c)
{ return ( byte)(c > 0x000000FF ?
0x000000FF : c < 0x00000000 ? 0x00000000 : c); }
public static short CITS (this int c)
{ return ( short)(c > 0x00007FFF ?
0x00007FFF : c < -0x00008000 ? -0x00008000 : c); }
public static ushort CITUS(this int c)
{ return (ushort)(c > 0x0000FFFF ?
0x0000FFFF : c < 0x00000000 ? 0x00000000 : c); }
public static sbyte CFTSB(this float c)
{ c = c.Round(); return ( sbyte)(c > 0x0000007F ?
0x0000007F : c < -0x00000080 ? -0x00000080 : c); }
public static byte CFTB (this float c)
{ c = c.Round(); return ( byte)(c > 0x000000FF ?
0x000000FF : c < 0x00000000 ? 0x00000000 : c); }
public static short CFTS (this float c)
{ c = c.Round(); return ( short)(c > 0x00007FFF ?
0x00007FFF : c < -0x00008000 ? -0x00008000 : c); }
public static ushort CFTUS(this float c)
{ c = c.Round(); return (ushort)(c > 0x0000FFFF ?
0x0000FFFF : c < 0x00000000 ? 0x00000000 : c); }
public static sbyte CFTSB(this double c)
{ c = c.Round(); return ( sbyte)(c > 0x0000007F ?
0x0000007F : c < -0x00000080 ? -0x00000080 : c); }
public static byte CFTB (this double c)
{ c = c.Round(); return ( byte)(c > 0x000000FF ?
0x000000FF : c < 0x00000000 ? 0x00000000 : c); }
public static short CFTS (this double c)
{ c = c.Round(); return ( short)(c > 0x00007FFF ?
0x00007FFF : c < -0x00008000 ? -0x00008000 : c); }
public static ushort CFTUS(this double c)
{ c = c.Round(); return (ushort)(c > 0x0000FFFF ?
0x0000FFFF : c < 0x00000000 ? 0x00000000 : c); }
public static int CFTI (this double c)
{ c = c.Round(); return ( int)(c > 0x7FFFFFFF ?
0x7FFFFFFF : c < -0x80000000 ? -0x80000000 : c); }
public static uint CFTUI(this double c)
{ c = c.Round(); return ( uint)(c > 0xFFFFFFFF ?
0xFFFFFFFF : c < 0xFFFFFFFF ? 0x00000000 : c); }
public static int ToI32(this float f) => *( int*)&f;
public static uint ToU32(this float f) => *( uint*)&f;
public static long ToI64(this double f) => *( long*)&f;
public static ulong ToU64(this double f) => *(ulong*)&f;
public static float ToF32(this int i) => *( float*)&i;
public static float ToF32(this uint i) => *( float*)&i;
public static double ToF64(this long i) => *(double*)&i;
public static double ToF64(this ulong i) => *(double*)&i;
public static string ToString(this int d, bool BE) =>
BitConverter.GetBytes(d.E(BE)).ToASCII();
public static string ToS(this object d)
{
if (d == null ) return "Null";
else if (d is bool boolean) return boolean ? "true" : "false";
else if (d is float f32 ) return ToS(f32);
else if (d is double f64 ) return ToS(f64);
return d.ToString();
}
private static readonly string NumberDecimalSeparator =
System.Globalization.NumberFormatInfo.CurrentInfo.NumberDecimalSeparator;
public static string ToS(this bool? d) => (d ?? default).ToString();
public static string ToS(this bool d) => d.ToString().ToLower();
public static string ToS(this sbyte? d) => (d ?? default).ToString();
public static string ToS(this sbyte d) => d.ToString();
public static string ToS(this byte? d) => (d ?? default).ToString();
public static string ToS(this byte d) => d.ToString();
public static string ToS(this short? d) => (d ?? default).ToString();
public static string ToS(this short d) => d.ToString();
public static string ToS(this ushort? d) => (d ?? default).ToString();
public static string ToS(this ushort d) => d.ToString();
public static string ToS(this int? d) => (d ?? default).ToString();
public static string ToS(this int d) => d.ToString();
public static string ToS(this uint? d) => (d ?? default).ToString();
public static string ToS(this uint d) => d.ToString();
public static string ToS(this long? d) => (d ?? default).ToString();
public static string ToS(this long d) => d.ToString();
public static string ToS(this ulong? d) => (d ?? default).ToString();
public static string ToS(this ulong d) => d.ToString();
public static string ToS(this float? d, int round) => (d ?? default).ToS(round);
public static string ToS(this float? d) => (d ?? default).ToString();
public static string ToS(this float d, int round) =>
Math.Round(d, round).ToString().ToLower().Replace(NumberDecimalSeparator, ".");
public static string ToS(this float d) =>
Math.Round(d, 15).ToString().ToLower().Replace(NumberDecimalSeparator, ".");
public static string ToS(this double? d, int round) => (d ?? default).ToS(round);
public static string ToS(this double? d) => (d ?? default).ToString();
public static string ToS(this double d, int round) =>
Math.Round(d, round).ToString().ToLower().Replace(NumberDecimalSeparator, ".");
public static string ToS(this double d) =>
Math.Round(d, 15).ToString().ToLower().Replace(NumberDecimalSeparator, ".");
public static float ToF32(this string s) =>
float. Parse(s.Replace(".", NumberDecimalSeparator));
public static bool ToF32(this string s, out float value) =>
float.TryParse(s.Replace(".", NumberDecimalSeparator), out value);
public static double ToF64(this string s) =>
double. Parse(s.Replace(".", NumberDecimalSeparator));
public static bool ToF64(this string s, out double value) =>
double.TryParse(s.Replace(".", NumberDecimalSeparator), out value);
public static bool ToF32(this string s, out float? value)
{ bool Val = ToF32(s, out float val); value = val; return Val; }
public static bool ToF64(this string s, out double? value)
{ bool Val = ToF64(s, out double val); value = val; return Val; }
}
}
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namespace KKdBaseLib.F2
{
public struct ENRS : INull
{
public ENRSEntry[] Array;
public int Length => length();
public bool IsNull => Array == null;
public bool NotNull => Array != null;
public unsafe void Read(byte[] data)
{
if (data == null || data.Length < 0x10) return;
fixed (byte* ptr = data)
{
int i, i0;
int ENRSCount = ((int*)ptr)[1];
ENRSEntry enrsEntry;
ENRSEntry.SubENRSEntry sub;
Array = new ENRSEntry[ENRSCount];
byte* localPtr = ptr + 0x10;
for (i = 0; i < ENRSCount; i++)
{
enrsEntry = default;
enrsEntry.Offset = ReadENRSValue(ref localPtr);
enrsEntry.Count = ReadENRSValue(ref localPtr);
enrsEntry.Size = ReadENRSValue(ref localPtr);
enrsEntry.Repeat = ReadENRSValue(ref localPtr);
if (i > 0) enrsEntry.Offset += Array[i - 1].Offset;
if (enrsEntry.Repeat < 1) { enrsEntry.Sub = null; Array[i] = enrsEntry; continue; }
enrsEntry.Sub = new ENRSEntry.SubENRSEntry[enrsEntry.Count];
for (i0 = 0; i0 < enrsEntry.Count; i0++)
{
sub = default;
sub.Skip = ReadENRSValue(ref localPtr, out sub.Type);
sub.Reverse = ReadENRSValue(ref localPtr);
if (i0 > 0) sub.Skip += enrsEntry.Sub[i0 - 1].SizeSkip;
enrsEntry.Sub[i0] = sub;
if (enrsEntry.Sub[i0].Type == ENRSEntry.Type.Invalid) { Array = null; return; }
}
Array[i] = enrsEntry;
}
}
}
public unsafe byte[] Write()
{
int i, i0;
byte[] data;
if (IsNull || Array.Length < 1) return new byte[0x20];
data = new byte[Length];
fixed (byte* ptr = data)
{
((int*)ptr)[1] = Array.Length;
byte* localPtr = ptr + 0x10;
for (i = 0; i < Array.Length; i++)
{
ENRSEntry enrsEntry = Array[i];
WriteENRSValue(ref localPtr, i > 0 ? enrsEntry.Offset -
Array[i - 1].Offset : enrsEntry.Offset);
WriteENRSValue(ref localPtr, enrsEntry.Count > enrsEntry.Sub.Length ?
enrsEntry.Sub.Length : enrsEntry.Count);
WriteENRSValue(ref localPtr, enrsEntry.Size );
WriteENRSValue(ref localPtr, enrsEntry.Repeat);
if (enrsEntry.Repeat < 1) continue;
for (i0 = 0; i0 < enrsEntry.Count && i0 < enrsEntry.Sub.Length; i0++)
{
if (enrsEntry.Sub[i0].Type < ENRSEntry.Type. WORD ||
enrsEntry.Sub[i0].Type > ENRSEntry.Type.QWORD)
return data;
WriteENRSValue(ref localPtr, i0 > 0 ? enrsEntry.Sub[i0].Skip -
enrsEntry.Sub[i0 - 1].SizeSkip : enrsEntry.Sub[i0].Skip, enrsEntry.Sub[i0].Type);
WriteENRSValue(ref localPtr, enrsEntry.Sub[i0].Reverse);
}
}
}
return data;
}
private int length()
{
int i, i0;
int length = 0x10;
for (i = 0; i < Array.Length; i++)
{
ENRSEntry enrs = Array[i];
length += GetSize(i > 0 ? enrs.Offset - Array[i - 1].Offset : enrs.Offset);
length += GetSize(enrs.Count );
length += GetSize(enrs.Size );
length += GetSize(enrs.Repeat);
if (enrs.Repeat < 1) continue;
for (i0 = 0; i0 < enrs.Count; i0++)
{
if (enrs.Sub[i0].Type < ENRSEntry.Type. WORD ||
enrs.Sub[i0].Type > ENRSEntry.Type.QWORD) return length.A(0x10);
length += GetSizeType(i0 > 0 ? enrs.Sub[i0].Skip -
enrs.Sub[i0 - 1].SizeSkip : enrs.Sub[i0].Skip);
length += GetSize(enrs.Sub[i0].Reverse);
}
}
return length.A(0x10);
static int GetSizeType(int val) => val < 0x00000010 ? 1 : val < 0x00001000 ? 2 : 4;
static int GetSize (int val) => val < 0x00000040 ? 1 : val < 0x00004000 ? 2 : 4;
}
/*private static KKdList<ENRS.SubENRS> Optimize(KKdList<ENRS.SubENRS> Sub)
{
if (Sub.IsNull || Sub.Count < 2) return Sub;
for (int i = 1; i < Sub.Capacity; i++)
if (Sub[i - 1].Skip == Sub[i].Skip - Sub[i - 1].Size && Sub[i - 1].Type == Sub[i].Type)
{
ENRS.SubENRS SubENRS = Sub[i - 1];
SubENRS.Reverse++;
Sub[i - 1] = SubENRS;
Sub.RemoveAt(i);
Sub.Capacity--;
i--;
}
return Sub;
}*/
[System.ThreadStatic] private static ENRSEntry.Value value;
private unsafe static int ReadENRSValue(ref byte* ptr, out ENRSEntry.Type type)
{
int V = *ptr & 0xF;
type = (ENRSEntry. Type)((*ptr & 0x30) >> 4);
value = (ENRSEntry.Value)((*ptr & 0xC0) >> 6);
ptr++;
if (value == ENRSEntry.Value.Int32 )
{ V = (V << 24) | (ptr[0] << 16) | (ptr[1] << 8) | ptr[2]; ptr += 3; }
else if (value == ENRSEntry.Value.Int16 )
{ V = (V << 8) | ptr[0]; ptr += 1; }
else if (value == ENRSEntry.Value.Invalid) V = 0;
return V;
}
private unsafe static int ReadENRSValue(ref byte* ptr)
{
int V = *ptr & 0x3F;
value = (ENRSEntry.Value)((*ptr & 0xC0) >> 6);
ptr++;
if (value == ENRSEntry.Value.Int32 )
{ V = (V << 24) | (ptr[0] << 16) | (ptr[1] << 8) | ptr[2]; ptr += 3; }
else if (value == ENRSEntry.Value.Int16 )
{ V = (V << 8) | ptr[0]; ptr += 1; }
else if (value == ENRSEntry.Value.Invalid) V = 0;
return V;
}
private unsafe static void WriteENRSValue(ref byte* ptr, int val, ENRSEntry.Type type)
{
value = ENRSEntry.Value.Invalid;
if (val < 0x00000040) value = ENRSEntry.Value.Int8 ;
else if (val < 0x00004000) value = ENRSEntry.Value.Int16;
else if (val < 0x40000000) value = ENRSEntry.Value.Int32;
*ptr = (byte)((((byte)value << 6) & 0xC0) | (((byte)type << 4) & 0x30));
if (val < 0x00000010)
{ *ptr |= (byte)( val & 0x0F); }
else if (val < 0x00001000)
{ *ptr |= (byte)((val >> 8) & 0x0F); ptr++;
*ptr = (byte)( val & 0xFF); }
else if (val < 0x10000000)
{ *ptr |= (byte)((val >> 24) & 0x0F); ptr++;
*ptr = (byte)((val >> 16) & 0xFF); ptr++;
*ptr = (byte)((val >> 8) & 0xFF); ptr++;
*ptr = (byte)( val & 0xFF); }
ptr++;
}
private unsafe static void WriteENRSValue(ref byte* ptr, int val)
{
value = ENRSEntry.Value.Invalid;
if (val < 0x00000040) value = ENRSEntry.Value.Int8 ;
else if (val < 0x00004000) value = ENRSEntry.Value.Int16;
else if (val < 0x40000000) value = ENRSEntry.Value.Int32;
*ptr = (byte)(((byte)value << 6) & 0xC0);
if (val < 0x00000040)
{ *ptr |= (byte)( val & 0x3F); }
else if (val < 0x00004000)
{ *ptr |= (byte)((val >> 8) & 0x3F); ptr++;
*ptr = (byte)( val & 0xFF); }
else if (val < 0x40000000)
{ *ptr |= (byte)((val >> 24) & 0x3F); ptr++;
*ptr = (byte)((val >> 16) & 0xFF); ptr++;
*ptr = (byte)((val >> 8) & 0xFF); ptr++;
*ptr = (byte)( val & 0xFF); }
ptr++;
}
public struct ENRSEntry
{
public int Offset;
public int Count;
public int Size;
public int Repeat;
public SubENRSEntry[] Sub;
public enum Type : byte
{
WORD = 0b00,
DWORD = 0b01,
QWORD = 0b10,
Invalid = 0b11,
}
public enum Value : byte
{
Int8 = 0b00,
Int16 = 0b01,
Int32 = 0b10,
Invalid = 0b11,
}
public struct SubENRSEntry
{
public int Skip;
public int Reverse;
public Type Type;
public int SizeSkip => Skip + Reverse * (2 << (byte)Type);
public int Size => Reverse * (2 << (byte)Type);
public override string ToString() => "Skip: " + Skip +
"; Reverse: " + Reverse + "; Type: " + Type;
}
public override string ToString() =>
"Offset: " + Offset + "; Count: " + Count + "; " +
"Size: " + Size + "; Repeat: " + Repeat;
}
public override string ToString() =>
$"{(NotNull ? $"ENRS Count: {Array.Length}" : "No ENRS")}";
}
}
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namespace KKdBaseLib.F2
{
public struct Header
{
public int Signature;
public int DataSize;
public int Length;
public int Flags;
public int Depth;
public int SectionSize;
public int Mode;
public int InnerSignature;
public int SectionSignature;
public Format Format;
public bool NotUseDataSizeAsSectionSize;
public bool IsBE => Format == Format.F2BE;
public bool IsX => Format == Format.X || Format == Format.XHD;
public override string ToString() => Signature.ToString(false);
}
}
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namespace KKdBaseLib.F2
{
public struct POF : INull
{
public KKdList<long> Offsets;
public bool IsNull => Offsets. IsNull;
public bool NotNull => Offsets.NotNull;
public int Length => length(false).A(0x10);
public int LengthX => length( true).A(0x10);
public unsafe void Read(byte[] data, bool shiftX)
{
Value Val = 0;
Offsets = KKdList<long>.New;
fixed (byte* ptr = data)
{
int i = 0, offset = 0, v = 0;
byte bitShift = (byte)(shiftX ? 3 : 2);
int length = *(int*)ptr - 4;
byte* localPtr = ptr + 4;
while (length > i)
{
v = *ptr & 0x3F;
Val = (Value)(*ptr & 0xC0);
localPtr++; i++;
if (Val == Value.Int32 )
{ v = (v << 24) | (ptr[0] << 16) | (ptr[1] << 8) | ptr[2]; localPtr += 3; i += 3; }
else if (Val == Value.Int16 )
{ v = (v << 8) | ptr[0]; localPtr += 1; i += 3; }
else if (Val == Value.Invalid) break;
offset += v;
Offsets.Add(offset << bitShift);
}
}
}
public unsafe byte[] Write(bool shiftX)
{
Offsets.Sort();
long offset = 0;
byte bitShift = (byte)(shiftX ? 3 : 2);
int max1 = 0x00100 >> bitShift;
int max2 = 0x10000 >> bitShift;
byte[] data = new byte[length(shiftX)];
fixed (byte* ptr = data)
{
byte Val = 0;
*(int*)ptr = length(shiftX);
byte* localPtr = ptr + 4;
for (int i = 0; i < Offsets.Count; i++)
{
offset = Offsets[i];
if (i > 0) { offset -= Offsets[i - 1]; if (offset == 0) continue; }
offset >>= bitShift;
Val = (byte)(offset > max2 ? Value.Int32 : offset > max1 ? Value.Int16 : Value.Int8);
if (offset < max1) *localPtr = (byte)(Val | offset );
else if (offset < max2) { *localPtr = (byte)(Val | (offset >> 8)); localPtr++;
*localPtr = (byte) offset ; }
else { *localPtr = (byte)(Val | (offset >> 24)); localPtr++;
*localPtr = (byte) (offset >> 16) ; localPtr++;
*localPtr = (byte) (offset >> 8) ; localPtr++;
*localPtr = (byte) offset ; }
localPtr++;
}
}
return data;
}
private int length(bool shiftX = false)
{
int length = 5;
long offset = 0;
byte bitShift = (byte)(shiftX ? 3 : 2);
int max1 = 0x00100 >> bitShift;
int max2 = 0x10000 >> bitShift;
for (int i = 0; i < Offsets.Count; i++)
{
offset = Offsets[i];
if (i > 0) { offset -= Offsets[i - 1]; if (offset == 0) continue; }
offset >>= bitShift;
if (offset < max1) length += 1;
else if (offset < max2) length += 2;
else length += 4;
}
return length;
}
public enum Value : byte
{
Invalid = 0b00000000,
Int8 = 0b01000000,
Int16 = 0b10000000,
Int32 = 0b11000000,
}
public override string ToString() =>
$"{(NotNull ? $"Offsets Count: {Offsets.Count}" : "No POF")}";
}
}
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namespace KKdBaseLib.F2
{
public struct Struct
{
public Header Header;
public byte[] Data;
public Struct[] SubStructs;
public ENRS ENRS;
public POF POF;
public int Length => length(false);
public int LengthX => length( true);
public int Depth => Header.Depth;
public bool HasPOF => POF .NotNull;
public bool HasENRS => ENRS.NotNull;
public bool HasSubStructs => SubStructs != null;
public long DataOffset;
public override string ToString() => $"{Header.ToString()}" +
$"{(HasSubStructs ? $"; SubStructs: {SubStructs.Length}" : "")}" +
$"{(HasENRS ? "; Has ENRS" : "")}{(HasPOF ? "; Has POF" : "")}";
private int length(bool shiftX = false)
{
int length = Data != null ? Data.Length : 0;
if (HasPOF ) length += 0x20 + (shiftX ? POF.LengthX : POF.Length);
if (HasENRS) length += 0x20 + ENRS.Length;
if (HasSubStructs)
{
for (int i = 0; i < SubStructs.Length; i++)
length += (shiftX ? SubStructs[i].LengthX : SubStructs[i].Length) + SubStructs[i].Header.Length;
length += 0x20;
}
return length;
}
public void Update(bool ShiftX = false)
{
Header.SectionSize = Data != null ? Data.Length : 0;
Header.DataSize = length(ShiftX);
}
}
}
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namespace KKdBaseLib
{
public enum Format : byte
{
NULL = 0,
DT = 1,
PDA = 2,
DT2 = 3,
DTe = 4,
F = 5,
AFT = 6,
F2LE = 7,
F2BE = 8,
MGF = 9,
X = 10,
XHD = 11,
FT = 12,
}
}
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using System;
namespace KKdBaseLib
{
public struct Half : IFormattable
{
private ushort _value;
public static Half NaN => new Half { _value = 0x7FFF };
public static Half PositiveNaN => new Half { _value = 0x7FFF };
public static Half NegativeNaN => new Half { _value = 0xFFFF };
public static Half PositiveZero => new Half { _value = 0x0000 };
public static Half NegativeZero => new Half { _value = 0x8000 };
public static Half PositiveInfinity => new Half { _value = 0x7C00 };
public static Half NegativeInfinity => new Half { _value = 0xFC00 };
public static explicit operator Half(ushort bits) => new Half() { _value = bits };
public static explicit operator ushort(Half bits) => bits._value;
public static unsafe implicit operator float(Half h)
{
int sign = (h._value >> 15) & 0x001;
int exponent = ((h._value >> 10) & 0x01F) + 127 - 15;
int mantissa = h._value & 0x3FF;
int si32 = (sign << 31) | (exponent << 23) | (mantissa << 13);
return *(float*)&si32;
}
public static unsafe explicit operator Half(float val)
{
int si32 = *(int*)&val;
ushort sign = (ushort)( (si32 >> 16) & 0x8000);
short exponent = ( short)(((si32 >> 23) & 0x00FF) - 127 + 15);
ushort mantissa = (ushort)( (si32 >> 13) & 0x03FF);
if (exponent < 0) { exponent = 0; mantissa = 0; }
else if (exponent > 30) exponent = 31;
return new Half { _value = (ushort)(sign | (exponent << 10) | mantissa) };
}
public static unsafe implicit operator double(Half h)
{
int sign = (h._value >> 15) & 0x001;
int exponent = ((h._value >> 10) & 0x01F) + 1023 - 15;
int mantissa = h._value & 0x3FF;
long si64 = ((long)sign << 63) | ((long)exponent << 52) | ((long)mantissa << 42);
return *(double*)&si64;
}
public static unsafe explicit operator Half(double val)
{
long si64 = *(long*)&val;
ushort sign = (ushort) ((si64 >> 48) & 0x8000);
short exponent = ( short)(((si64 >> 52) & 0x07FF) - 1023 + 15);
ushort mantissa = (ushort) ((si64 >> 42) & 0x03FF);
if (exponent < 0) { exponent = 0; mantissa = 0; }
else if (exponent > 30) exponent = 31;
return new Half { _value = (ushort)(sign | (exponent << 10) | mantissa) };
}
public static Half operator - (Half a ) => new Half() { _value = (ushort)(a._value ^ 0x8000) };
public static Half operator + (Half a, Half b) => (Half)((float)a + (float)b);
public static Half operator - (Half a, Half b) => (Half)((float)a - (float)b);
public static Half operator * (Half a, Half b) => (Half)((float)a * (float)b);
public static Half operator / (Half a, Half b) => (Half)((float)a / (float)b);
public static bool operator > (Half a, Half b) => (float)a > (float)b;
public static bool operator < (Half a, Half b) => (float)a < (float)b;
public static bool operator >=(Half a, Half b) => (float)a >= (float)b;
public static bool operator <=(Half a, Half b) => (float)a <= (float)b;
public static bool operator ==(Half a, Half b) => (float)a == (float)b;
public static bool operator !=(Half a, Half b) => (float)a != (float)b;
public int CompareTo(object obj) => CompareTo((Half)obj);
public int CompareTo(Half h) => this == h ? 0 : (this > h ? 1 : -1);
public bool Equals(Half other) => this == other;
public override bool Equals(object obj) => base.Equals(obj);
public override string ToString() => Extensions.ToS((double)this);
public string ToString(string format, IFormatProvider formatProvider) =>
((float)this).ToString(format, formatProvider);
public override int GetHashCode() => base.GetHashCode();
}
}
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namespace KKdBaseLib
{
public interface IKF
{
KFT0 ToT0();
KFT1 ToT1();
KFT2 ToT2();
KFT3 ToT3();
IKF Check();
string ToString();
string ToString(int round, bool brackets);
string ToString(bool brackets, int round);
}
public interface INull
{
bool IsNull { get; }
bool NotNull { get; }
}
}
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using KKdBaseLib.A3DA;
namespace KKdBaseLib.Interpolation
{
public struct A3DAI //A3DA Interpolation
{
private A3DAKey key;
private float f;
private float last;
private float df;
private float @if;
private float rf;
private float lastTime;
private KFT3 firstKey;
private KFT3 lastKey;
public float InterpolationFramerate
{ get => @if; set { @if = value; df = @if / rf; } }
public float RequestedFramerate
{ get => rf; set { rf = value; df = @if / rf; } }
public float Frame => f;
public float Value => last;
public bool IsNull => key.Keys == null ? true : key.Length < 1;
public bool NotNull => key.Keys == null ? false : key.Length > 0;
public A3DAI(A3DAKey key, float a3daFramerate = 60, float requestedFramerate = 60)
{
lastTime = 0;
this.key = key; last = rf = @if = 0;
f = -1; df = 1;
@if = a3daFramerate;
firstKey = lastKey = default;
RequestedFramerate = requestedFramerate;
ResetFrameCount();
if (key.Keys != null && key.Length > 0)
{
firstKey = key.Keys[0];
lastKey = key.Keys[key.Length - 1];
}
}
public float SetTime(float time)
{
if ((int)key.Type < 1 || (int)key.Type > 4 || key.Length < 1) return 0;
if ((int)key.Type == 1) return key.Keys[0].V;
lastTime = time;
f = time * @if;
last = Interpolate(f);
return last;
}
public float SetFrame(float frame)
{
if ((int)key.Type < 1 || (int)key.Type > 4 || key.Length < 1) return 0;
if ((int)key.Type == 1) return key.Keys[0].V;
lastTime = frame / rf;
f = frame * df;
last = Interpolate(f);
return last;
}
public float NextFrame(float time)
{
if ((int)key.Type < 1 || (int)key.Type > 4 || key.Length < 1) return 0;
if ((int)key.Type == 1) return key.Keys[0].V;
lastTime += time;
f = lastTime * @if;
last = Interpolate(f);
return last;
}
public float NextFrame()
{
if ((int)key.Type < 1 || (int)key.Type > 4 || key.Length < 1) return 0;
if ((int)key.Type == 1) return key.Keys[0].V;
f += df;
lastTime = f / @if;
last = Interpolate(f);
return last;
}
private float Interpolate(float frame)
{
float df = 0;
float ep = 0;
float f = (int)frame;
if (f < firstKey.F)
{
if (key.EPTypePost < EPType.EP_1 || key.EPTypePost > EPType.EP_3)
return firstKey.V;
df = firstKey.F - frame;
if (key.EPTypePre == EPType.EP_1)
return firstKey.V - df * firstKey.T1;
else if (key.EPTypePre == EPType.EP_2 || key.EPTypePre == EPType.EP_3)
{
frame = lastKey.F - df % key.FrameDelta;
f = (int)frame;
}
}
else if (f >= lastKey.F)
{
if (key.EPTypePost < EPType.EP_1 || key.EPTypePost > EPType.EP_3)
return lastKey.V;
df = frame - lastKey.F;
if (key.EPTypePost == EPType.EP_1)
return lastKey.V + df * lastKey.T2;
else if (key.EPTypePost == EPType.EP_2 || key.EPTypePost == EPType.EP_3)
{
frame = firstKey.F + df % key.FrameDelta;
f = (int)frame;
}
}
if ((f < firstKey.F && key.EPTypePre == EPType.EP_3) ||
(f >= firstKey.F && key.EPTypePost == EPType.EP_3))
{
ep = df / key.FrameDelta;
ep = (ep >= 0 && ep != (int)ep) ? (ep - (int)ep > 0 ? 1 : 0) : ep;
ep = (f < firstKey.F ? -1 : 1) * (ep + 1) * key.ValueDelta;
}
if (f <= firstKey.F)
return firstKey.V + ep;
else if (f >= lastKey.F)
return lastKey.V + ep;
int data = 0;
int length = key.Length;
int tempLength;
while (length > 0)
{
tempLength = length >> 1;
if (f <= key.Keys[data + tempLength].F)
length = tempLength;
else
{
data += tempLength + 1;
length -= tempLength + 1;
}
}
ref KFT3 c = ref key.Keys[data - 1];
ref KFT3 n = ref key.Keys[data];
float result;
if (frame > c.F && frame < n.F)
{
if (key.Type == KeyType.Lerp)
{
float t = (frame - c.F) / (n.F - c.F);
result = (1 - t) * c.V + t * n.V;
}
else if (key.Type == KeyType.Hermite)
{
float t = (frame - c.F) / (n.F - c.F);
float t_2 = (1 - t) * (1 - t);
result = t_2 * c.V * (1 + 2 * t) + (t * n.V * (3 - 2 * t) +
(t_2 * c.T2 + t * (t - 1) * n.T1) * (n.F - c.F)) * t;
}
else
result = c.V;
}
else
result = frame > c.F ? n.V : c.V;
return result + ep;
}
public void ResetFrameCount() => f = -df;
public override string ToString() => $"Frame: {f}, Value: {last}";
}
}
@@ -0,0 +1,17 @@
namespace KKdBaseLib.Interpolation
{
public interface IInterpolation : INull
{
float RequestedFramerate { get; set; }
float InterpolationFramerate { get; set; }
float Frame { get; }
float Value { get; }
float SetTime (float time);
float SetFrame(float frame);
float NextFrame(float time);
float NextFrame();
void ResetFrameCount();
}
}
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namespace KKdBaseLib.Interpolation
{
public struct PDI : IInterpolation //Project DIVA Interpolation
{
private KFT2[] array;
private float f;
private float last;
private float deltaFrame;
private float @if;
private float rf;
private float lastTime;
private KFT2 firstKey;
private KFT2 lastKey;
public float InterpolationFramerate
{ get => @if; set { @if = value; deltaFrame = @if / rf; } }
public float RequestedFramerate
{ get => rf; set { rf = value; deltaFrame = @if / rf; } }
public float Frame => f;
public float Value => last;
public bool IsNull => array == null ? true : array.Length < 1;
public bool NotNull => array == null ? false : array.Length > 0;
public PDI(KFT2[] Array, float InterpolationFramerate = 60, float RequestedFramerate = 60)
{
lastTime = 0;
this.array = Array; f = -1; deltaFrame = last = rf = @if = 0;
@if = InterpolationFramerate;
firstKey = lastKey = default;
this.RequestedFramerate = RequestedFramerate;
f = -deltaFrame;
ResetFrameCount();
if (Array != null && Array.Length > 0)
{
firstKey = Array[0];
lastKey = Array[Array.Length - 1];
}
}
public float SetTime(float time)
{
if (array == null || array.Length < 1) return 0;
lastTime = time;
f = time * @if;
last = Interpolate(f);
return last;
}
public float SetFrame(float frame)
{
if (array == null || array.Length < 1) return 0;
lastTime = frame / rf;
f = frame * deltaFrame;
last = Interpolate(f);
return last;
}
public float NextFrame(float time)
{
if (array == null || array.Length < 1) return 0;
lastTime += time;
f = lastTime * @if;
last = Interpolate(f);
return last;
}
public float NextFrame()
{
if (array == null || array.Length < 1) return 0;
f += deltaFrame;
lastTime = f / @if;
last = Interpolate(f);
return last;
}
private float Interpolate(float frame)
{
float f = (int)frame;
int data = 0;
int length = array.Length;
while (length > 0)
if (f <= array[data + (length >> 1)].F)
length >>= 1;
else
{
int delta = (length >> 1) + 1;
data += delta;
length -= delta;
}
if (data == 0)
return firstKey.V;
else if (data >= array.Length)
return lastKey.V;
KFT2 c = array[data - 1];
KFT2 n = array[data];
float result = c.F == n.F ? c.V : n.V;
if (frame < n.F)
{
float t = (this.f - c.F) / (n.F - c.F);
float t_1 = t - 1;
result = (t_1 * 2 - 1) * (c.V - n.V) * t * t +
(t_1 * c.T + t * n.T) * t_1 * (this.f - c.F) + c.V;
}
return result;
}
public void ResetFrameCount() => f = -deltaFrame;
public override string ToString() => $"Frame: {f}, Value: {last}";
}
}
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namespace KKdBaseLib
{
public struct KFT0 : IKF
{
public float F;
public KFT0(float F = 0)
{ this.F = F; }
public KFT0 ToT0() => this;
public KFT1 ToT1() =>
new KFT1(F);
public KFT2 ToT2() =>
new KFT2(F);
public KFT3 ToT3() =>
new KFT3(F);
public IKF Check() => this;
public override string ToString() => ToString(true, 7);
public string ToString(int round = 7, bool brackets = true) =>
ToString(brackets, round);
public string ToString(bool brackets = true, int round = 7) =>
Extensions.ToS(F, round);
public static explicit operator KFT1(KFT0 KF) =>
new KFT1(KF.F);
public static explicit operator KFT2(KFT0 KF) =>
new KFT2(KF.F);
public static explicit operator KFT3(KFT0 KF) =>
new KFT3(KF.F);
public override int GetHashCode() => base.GetHashCode();
public override bool Equals(object obj)
{ if (obj is KFT0 b) return this == b; else return base.Equals(obj); }
public static bool operator > (float a, KFT0 b) => a > b.F;
public static bool operator < (float a, KFT0 b) => a < b.F;
public static bool operator >=(float a, KFT0 b) => a >= b.F;
public static bool operator <=(float a, KFT0 b) => a <= b.F;
public static bool operator > (KFT0 a, float b) => a.F > b;
public static bool operator < (KFT0 a, float b) => a.F < b;
public static bool operator >=(KFT0 a, float b) => a.F >= b;
public static bool operator <=(KFT0 a, float b) => a.F <= b;
public static bool operator > (KFT0 a, KFT0 b) => a.F > b.F;
public static bool operator < (KFT0 a, KFT0 b) => a.F < b.F;
public static bool operator >=(KFT0 a, KFT0 b) => a.F >= b.F;
public static bool operator <=(KFT0 a, KFT0 b) => a.F <= b.F;
public static bool operator ==(KFT0 a, KFT0 b) => a.F == b.F;
public static bool operator !=(KFT0 a, KFT0 b) => a.F != b.F;
}
public struct KFT1 : IKF
{
public float F;
public float V;
public KFT1(float F = 0, float V = 0)
{ this.F = F; this.V = V; }
public KFT0 ToT0() =>
new KFT0(F);
public KFT1 ToT1() => this;
public KFT2 ToT2() =>
new KFT2(F, V);
public KFT3 ToT3() =>
new KFT3(F, V);
public IKF Check() =>
V == 0 ? (KFT0)this : (IKF)this;
public override string ToString() => ToString(true, 7);
public string ToString(int round = 7, bool brackets = true) =>
ToString(brackets, round);
public string ToString(bool brackets = true, int round = 7) =>
(brackets ? "(" : "") + Extensions.ToS(F, round) + "," +
Extensions.ToS(V, round) + (brackets ? ")" : "");
public static explicit operator KFT0(KFT1 KF) =>
new KFT0(KF.F);
public static explicit operator KFT2(KFT1 KF) =>
new KFT2(KF.F, KF.V);
public static explicit operator KFT3(KFT1 KF) =>
new KFT3(KF.F, KF.V);
public override int GetHashCode() => base.GetHashCode();
public override bool Equals(object obj)
{ if (obj is KFT1 b) return this == b; else return base.Equals(obj); }
public static bool operator > (float a, KFT1 b) => a > b.F;
public static bool operator < (float a, KFT1 b) => a < b.F;
public static bool operator >=(float a, KFT1 b) => a >= b.F;
public static bool operator <=(float a, KFT1 b) => a <= b.F;
public static bool operator > (KFT1 a, float b) => a.F > b;
public static bool operator < (KFT1 a, float b) => a.F < b;
public static bool operator >=(KFT1 a, float b) => a.F >= b;
public static bool operator <=(KFT1 a, float b) => a.F <= b;
public static bool operator > (KFT1 a, KFT1 b) => a.F > b.F;
public static bool operator < (KFT1 a, KFT1 b) => a.F < b.F;
public static bool operator >=(KFT1 a, KFT1 b) => a.F >= b.F;
public static bool operator <=(KFT1 a, KFT1 b) => a.F <= b.F;
public static bool operator ==(KFT1 a, KFT1 b) => a.F == b.F && a.V == b.V;
public static bool operator !=(KFT1 a, KFT1 b) => a.F != b.F || a.V != b.V;
}
public struct KFT2 : IKF
{
public float F;
public float V;
public float T;
public KFT2(float F = 0, float V = 0, float T = 0)
{ this.F = F; this.V = V; this.T = T; }
public KFT0 ToT0() =>
new KFT0(F);
public KFT1 ToT1() =>
new KFT1(F, V);
public KFT2 ToT2() => this;
public KFT3 ToT3() =>
new KFT3(F, V, T, T);
public KFT3 ToT3(IKF Previous) =>
Previous is KFT2 PreviousT2 ?
new KFT3(F, V, PreviousT2.T, T) :
new KFT3(F, V, T, T);
public IKF Check() =>
T == 0 ? (V == 0 ? (IKF)ToT0() : ToT1()) : this;
public override string ToString() => ToString(true, 7);
public string ToString(int round = 7, bool brackets = true) =>
ToString(brackets, round);
public string ToString(bool brackets = true, int round = 7) =>
(brackets ? "(" : "") + Extensions.ToS(F, round) + "," + Extensions.
ToS(V, round) + "," + Extensions.ToS(T, round) + (brackets ? ")" : "");
public static explicit operator KFT0(KFT2 KF) =>
new KFT0(KF.F);
public static explicit operator KFT1(KFT2 KF) =>
new KFT1(KF.F, KF.V);
public static explicit operator KFT3(KFT2 KF) =>
new KFT3(KF.F, KF.V, KF.T, KF.T);
public override int GetHashCode() => base.GetHashCode();
public override bool Equals(object obj)
{ if (obj is KFT2 b) return this == b; else return base.Equals(obj); }
public static bool operator > (float a, KFT2 b) => a > b.F;
public static bool operator < (float a, KFT2 b) => a < b.F;
public static bool operator >=(float a, KFT2 b) => a >= b.F;
public static bool operator <=(float a, KFT2 b) => a <= b.F;
public static bool operator > (KFT2 a, float b) => a.F > b;
public static bool operator < (KFT2 a, float b) => a.F < b;
public static bool operator >=(KFT2 a, float b) => a.F >= b;
public static bool operator <=(KFT2 a, float b) => a.F <= b;
public static bool operator > (KFT2 a, KFT2 b) => a.F > b.F;
public static bool operator < (KFT2 a, KFT2 b) => a.F < b.F;
public static bool operator >=(KFT2 a, KFT2 b) => a.F >= b.F;
public static bool operator <=(KFT2 a, KFT2 b) => a.F <= b.F;
public static bool operator ==(KFT2 a, KFT2 b) => a.F == b.F && a.V == b.V && a.T == b.T;
public static bool operator !=(KFT2 a, KFT2 b) => a.F != b.F || a.V != b.V || a.T != b.T;
}
public struct KFT3 : IKF
{
public float F;
public float V;
public float T1;
public float T2;
public KFT3(float F = 0, float V = 0, float T1 = 0, float T2 = 0)
{ this.F = F; this.V = V; this.T1 = T1; this.T2 = T2; }
public KFT0 ToT0() =>
new KFT0(F);
public KFT1 ToT1() =>
new KFT1(F, V);
public KFT2 ToT2() =>
new KFT2(F, V, T1);
public KFT3 ToT3() => this;
public IKF Check() =>
T1 == 0 && T2 == 0 ? (V == 0 ? (IKF)(KFT0)this : (KFT1)this) : T1 == T2 ? (KFT2)this : (IKF)this;
public override string ToString() => ToString(true, 7);
public string ToString(int round = 7, bool brackets = true) =>
ToString(brackets, round);
public string ToString(bool brackets = true, int round = 7) =>
(brackets ? "(" : "") + Extensions.ToS(F, round) + "," + Extensions.ToS(V, round) + "," +
Extensions.ToS(T1, round) + "," + Extensions.ToS(T2, round) + (brackets ? ")" : "");
public static explicit operator KFT0(KFT3 KF) =>
new KFT0(KF.F);
public static explicit operator KFT1(KFT3 KF) =>
new KFT1(KF.F, KF.V);
public static explicit operator KFT2(KFT3 KF) =>
new KFT2(KF.F, KF.V, KF.T1);
public override int GetHashCode() => base.GetHashCode();
public override bool Equals(object obj)
{ if (obj is KFT3 b) return this == b; else return base.Equals(obj); }
public static bool operator > (float a, KFT3 b) => a > b.F;
public static bool operator < (float a, KFT3 b) => a < b.F;
public static bool operator >=(float a, KFT3 b) => a >= b.F;
public static bool operator <=(float a, KFT3 b) => a <= b.F;
public static bool operator > (KFT3 a, float b) => a.F > b;
public static bool operator < (KFT3 a, float b) => a.F < b;
public static bool operator >=(KFT3 a, float b) => a.F >= b;
public static bool operator <=(KFT3 a, float b) => a.F <= b;
public static bool operator > (KFT3 a, KFT3 b) => a.F > b.F;
public static bool operator < (KFT3 a, KFT3 b) => a.F < b.F;
public static bool operator >=(KFT3 a, KFT3 b) => a.F >= b.F;
public static bool operator <=(KFT3 a, KFT3 b) => a.F <= b.F;
public static bool operator ==(KFT3 a, KFT3 b) => a.F == b.F && a.V == b.V && a.T1 == b.T1 && a.T2 == b.T2;
public static bool operator !=(KFT3 a, KFT3 b) => a.F != b.F || a.V != b.V || a.T1 != b.T1 || a.T2 != b.T2;
public IKF ToT2(IKF Previous, out IKF Current)
{
Current = Previous is KFT2 PreviousT2
? new KFT2(PreviousT2.F, PreviousT2.V, T1)
: new KFT2(F, V, T1);
return new KFT2(F, V, T2);
}
}
}
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<?xml version="1.0" encoding="utf-8"?>
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Authors>korenkonder</Authors>
<Company></Company>
<Configuration></Configuration>
<Copyright>korenkonder © 2019</Copyright>
<Description>A base library</Description>
<FileVersion>0.4.8.1</FileVersion>
<PackageId>KKdBaseLib</PackageId>
<Product>KKdBaseLib</Product>
<TargetFramework>netstandard2.0</TargetFramework>
<Title>KKdBaseLib</Title>
<Version>0.4.8.1</Version>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>bin\</OutputPath>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<DebugType>embedded</DebugType>
<Optimize>true</Optimize>
<OutputPath>bin\</OutputPath>
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<DebugSymbols>true</DebugSymbols>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
</Project>
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namespace KKdBaseLib
{
public struct KKdDict<TKey, TValue> : System.IDisposable, System.Collections.IEnumerator, INull
{
public static KKdDict<TKey, TValue> Null => new KKdDict<TKey, TValue>();
public static KKdDict<TKey, TValue> New => new KKdDict<TKey, TValue>() { Count = 0, Capacity = 0 };
public static KKdDict<TKey, TValue> NewReserve(int Capacity) =>
new KKdDict<TKey, TValue>() { Count = 0, Capacity = Capacity };
private int index;
private TKey [] keyArray;
private TValue[] valArray;
public int Count { get; private set; }
public bool IsNull => keyArray == null || valArray == null;
public bool NotNull => keyArray != null && valArray != null;
public int Capacity { get => keyArray != null && valArray != null ? valArray.Length : -1;
set { if (keyArray != null) System.Array.Resize(ref keyArray, value); else keyArray = new TKey [value];
if (valArray != null) System.Array.Resize(ref valArray, value); else valArray = new TValue[value];
if (Count >= value) Count = value; } }
public KKdDict(TKey[] keyArray, TValue[] valArray)
{
this.keyArray = null; this.valArray = null; Count = 0; index = 0;
if (keyArray == null || valArray == null || keyArray.Length != valArray.Length) return;
Count = valArray.Length; this.keyArray = keyArray; this.valArray = valArray; }
public KeyValuePair<TKey, TValue> Current => index < Count ?
new KeyValuePair<TKey, TValue>(keyArray[index], valArray[index]) : default;
object System.Collections.IEnumerator.Current => Current;
public TKey [] Keys => keyArray;
public TValue[] Values => valArray;
public KeyValuePair<TKey, TValue> this[ int index, bool list]
{ get => keyArray != null && valArray != null && index > -1 && index < keyArray.Length &&
index < valArray.Length ? new KeyValuePair<TKey, TValue>(keyArray[index], valArray[index]) : default;
set { if (keyArray != null && valArray != null && index > -1 && index < keyArray.Length &&
index < valArray.Length) { keyArray[index] = value.Key; valArray[index] = value.Value; } } }
public KeyValuePair<TKey, TValue> this[uint index, bool list]
{ get => keyArray != null && valArray != null && index < keyArray.Length &&
index < valArray.Length ? new KeyValuePair<TKey, TValue>(keyArray[index], valArray[index]) : default;
set { if (keyArray != null && valArray != null && index < keyArray.Length &&
index < valArray.Length) { keyArray[index] = value.Key; valArray[index] = value.Value; } } }
public TValue this[TKey key]
{ get => valArray != null && valArray.Length > 0 && ContainsKey(key) ? valArray[IndexOf(key)] : default;
set { if (valArray != null && valArray.Length > 0 && ContainsKey(key)) valArray[IndexOf(key)] = value; } }
public bool MoveNext()
{ if (index == Count - 1) { index = 0; return false; }
else { index++ ; return true; } }
public System.Collections.IEnumerator GetEnumerator() => this;
public void Dispose() { valArray = null; Count = 0; index = 0; }
public void Reset() => index = 0;
public void Add(KeyValuePair<TKey, TValue> pair)
{
if (IsNull) return;
Count++;
if (keyArray.Length < Count) System.Array.Resize(ref keyArray, Count);
if (valArray.Length < Count) System.Array.Resize(ref valArray, Count);
keyArray[Count - 1] = pair.Key;
valArray[Count - 1] = pair.Value;
}
public void Add(TKey key, TValue val)
{
if (IsNull) return;
Count++;
if (keyArray.Length < Count) System.Array.Resize(ref keyArray, Count);
if (valArray.Length < Count) System.Array.Resize(ref valArray, Count);
keyArray[Count - 1] = key;
valArray[Count - 1] = val;
}
public bool RemoveKey(TKey key)
{
if (IsNull) return false;
int index = IndexOf(key);
if (index == -1) return false;
for (int i = index + 1; i < Count; i++)
{
keyArray[i - 1] = keyArray[i];
valArray[i - 1] = valArray[i];
}
Count--;
return true;
}
public bool RemoveValue(TValue val)
{
if (IsNull) return false;
int index = IndexOf(val);
if (index == -1) return false;
for (int i = index + 1; i < Count; i++)
{
keyArray[i - 1] = keyArray[i];
valArray[i - 1] = valArray[i];
}
Count--;
return true;
}
public void RemoveAt(int index)
{
if (IsNull) return;
for (int i = index + 1; i < Count; i++)
{
keyArray[i - 1] = keyArray[i];
valArray[i - 1] = valArray[i];
}
Count--;
}
public void RemoveRange(int IndexStart, int IndexEnd)
{
if (IsNull) return;
if (IndexEnd - IndexStart < 1) return;
if (IndexEnd - IndexStart != Count)
for (int i = IndexStart; i < Count; i++)
{
keyArray[i] = keyArray[i + IndexEnd - IndexStart];
valArray[i] = valArray[i + IndexEnd - IndexStart];
}
Count -= IndexEnd - IndexStart;
}
public TValue[] ToArray() => valArray;
public bool ContainsKey(TKey key)
{
if (IsNull) return false;
for (int i = 0; i < Count; i++)
if (keyArray[i] == null && key == null) return true;
else if (keyArray[i] == null || key == null) continue;
else if (keyArray[i] .Equals(key) ) return true;
return false;
}
public bool ContainsValue(TValue val)
{
if (IsNull) return false;
for (int i = 0; i < Count; i++)
if (valArray[i] == null && val == null) return true;
else if (valArray[i] == null || val == null) continue;
else if (valArray[i] .Equals(val) ) return true;
return false;
}
public bool Contains(KeyValuePair<TKey, TValue> pair)
{
if (IsNull) return false;
for (int i = 0; i < Count; i++)
if ( keyArray[i] == null && pair.Key == null &&
valArray[i] == null && pair.Value == null ) return true;
else if ((keyArray[i] == null || pair.Key == null) &&
(valArray[i] == null || pair.Value == null)) continue;
else if ( keyArray[i] .Equals(pair.Key) &&
valArray[i] .Equals(pair.Value) ) return true;
return false;
}
private int IndexOf(TKey key)
{
if (IsNull) return -1;
for (int i = 0; i < Count; i++)
if (keyArray[i] == null && key == null) return i;
else if (keyArray[i] == null || key == null) continue;
else if (keyArray[i] .Equals(key) ) return i;
return -1;
}
private int IndexOf(TValue val)
{
if (IsNull) return -1;
for (int i = 0; i < Count; i++)
if (keyArray[i] == null && val == null) return i;
else if (keyArray[i] == null || val == null) continue;
else if (keyArray[i] .Equals(val) ) return i;
return -1;
}
}
public struct KeyValuePair<TKey, TValue>
{
public TKey Key;
public TValue Value;
public KeyValuePair(TKey key, TValue value)
{ Key = key; Value = value; }
}
}
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using System.Collections;
using System.Collections.Generic;
namespace KKdBaseLib
{
public struct KKdList<T> : System.IDisposable, IEnumerator, IEnumerable, INull
{
public static KKdList<T> Null => new KKdList<T>();
public static KKdList<T> New => new KKdList<T>() { Count = 0, Capacity = 0 };
public static KKdList<T> NewReserve(int Capacity) => new KKdList<T>() { Count = 0, Capacity = Capacity };
private int index;
private T[] array;
public int Count { get; private set; }
public bool IsNull => array == null;
public bool NotNull => array != null;
public int Capacity { get => array != null ? array.Length : -1;
set { if (array != null) System.Array.Resize(ref array, value); else array = new T[value];
if (Count >= value) Count = value; } }
public KKdList(T[] Array)
{ index = 0; Count = Array.Length; array = Array; }
public T Current => index < Count ? array[index] : default;
object IEnumerator.Current => Current;
public T this[ int index]
{ get => array != null && index > -1 && index < array.Length ? array[index] : default;
set { if (array != null && index > -1 && index < array.Length) array[index] = value; } }
public T this[uint index]
{ get => array != null && index < array.Length ? array[index] : default;
set { if (array != null && index < array.Length) array[index] = value; } }
public bool MoveNext()
{ if (index == Count - 1) { index = 0; return false; }
else { index++ ; return true; } }
public IEnumerator GetEnumerator() => this;
public void Dispose() { array = null; Count = 0; index = 0; }
public void Reset() => index = 0;
public void Add(T item)
{
if (IsNull) return;
Count++;
if (array.Length < Count)
System.Array.Resize(ref array, Count);
array[Count - 1] = item;
}
public void RemoveAt(int index)
{
if (IsNull) return;
for (int i = index + 1; i < Count; i++)
array[i - 1] = array[i];
Count--;
}
public void RemoveRange(int IndexStart, int IndexEnd)
{
if (IsNull) return;
if (IndexEnd - IndexStart < 1) return;
if (IndexEnd - IndexStart != Count)
for (int i = IndexStart; i < Count; i++)
array[i] = array[i + IndexEnd - IndexStart];
Count -= IndexEnd - IndexStart;
}
public T[] ToArray() => array;
public bool Contains(T val)
{
if (IsNull) return false;
for (int i = 0; i < Count; i++)
if (array[i] == null && val == null) return true;
else if (array[i] == null || val == null) continue;
else if (array[i] .Equals(val) ) return true;
return false;
}
public int IndexOf(T val)
{
if (IsNull) return -1;
for (int i = 0; i < Count; i++)
if (array[i] == null && val == null) return i;
else if (array[i] == null || val == null) continue;
else if (array[i] .Equals(val) ) return i;
return -1;
}
public void Sort()
{ List<T> List = (List<T>)this; List.Sort(); array = List.ToArray(); Count = List.Count; }
public static explicit operator KKdList<T>( List<T> List) =>
new KKdList<T> { array = List.ToArray(), Count = List.Count };
public static explicit operator List<T>(KKdList<T> List)
{
List<T> list = new List<T>();
for (int i = 0; i < List.Count; i++) list.Add(List[i]);
return list;
}
}
}
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using System;
namespace KKdBaseLib
{
public struct MsgPack : IDisposable, IEquatable<MsgPack>, INull
{
public string Name;
public object Object;
public MsgPack[] Array => Object is MsgPack[] Array ? Array : null;
public KKdList<MsgPack> List => Object is KKdList<MsgPack> List ? List : default;
public static MsgPack New => new MsgPack { Object = KKdList<MsgPack>.New };
public static MsgPack NewReserve(int Capacity) =>
new MsgPack { Object = KKdList<MsgPack>.NewReserve(Capacity) };
public bool IsNull => Array == null && List. IsNull;
public bool NotNull => Array != null || List.NotNull;
public MsgPack( string Name = null)
{ Object = KKdList<MsgPack>.New; this.Name = Name; }
public MsgPack(long Count, string Name = null)
{ Object = Count > 0 ? new MsgPack[Count] : null; this.Name = Name; }
public MsgPack(string Name, object Object)
{ this.Name = Name; this.Object = Object; }
public static MsgPack Null => new MsgPack();
public MsgPack this[ int index]
{ get => Object is MsgPack[] Array ? Array[index] : default;
set { if (Object is MsgPack[] Array) { Array[index] = value; Object = Array; } } }
public MsgPack this[uint index]
{ get => Object is MsgPack[] Array ? Array[index] : default;
set { if (Object is MsgPack[] Array) { Array[index] = value; Object = Array; } } }
public MsgPack this[string key]
{ get => Object is KKdList<MsgPack> List ? List[ElementIndex(key)] : default; }
public MsgPack this[string key, bool array]
{ get { if (!array) return this[key];
if (Object is KKdList<MsgPack> List) { MsgPack MsgPack = List[ElementIndex(key)];
return MsgPack.Object is MsgPack[] ? MsgPack : default; } return default; } }
public MsgPack Add(MsgPack obj)
{ if (Object is KKdList<MsgPack> List && obj.Object != null) { List.Add(obj); Object = List; } return this; }
public void Dispose()
{ Name = null; Object = null; }
public bool Equals(MsgPack msg) =>
Name == msg.Name && Object == msg.Object;
public override string ToString() => Name ?? "" + (Object != null ?
(List. NotNull ? $"{(Name != null ? " " : "")}Elements Count: {List .Count }" :
(Array != null ? $"{(Name != null ? " " : "")}Elements Count: {Array.Length}" : Object)) : "");
public static implicit operator MsgPack(byte[] val) => new MsgPack(null, val);
public static implicit operator MsgPack(string val) => new MsgPack(null, val);
public static implicit operator MsgPack( sbyte val) => new MsgPack(null, val);
public static implicit operator MsgPack( byte val) => new MsgPack(null, val);
public static implicit operator MsgPack( short val) => new MsgPack(null, val);
public static implicit operator MsgPack(ushort val) => new MsgPack(null, val);
public static implicit operator MsgPack( int val) => new MsgPack(null, val);
public static implicit operator MsgPack( uint val) => new MsgPack(null, val);
public static implicit operator MsgPack( long val) => new MsgPack(null, val);
public static implicit operator MsgPack( ulong val) => new MsgPack(null, val);
public static implicit operator MsgPack( float val) => new MsgPack(null, val);
public static implicit operator MsgPack(double val) => new MsgPack(null, val);
public MsgPack Add( bool? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add( sbyte? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add( byte? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add( short? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add(ushort? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add( int? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add( uint? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add( long? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add( ulong? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add( float? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add(double? val) => val.HasValue ? Add(new MsgPack(null, val.Value)) : this;
public MsgPack Add(byte[] val) => Add(new MsgPack(null, val));
public MsgPack Add(string val) => Add(new MsgPack(null, val));
public MsgPack Add( bool val) => Add(new MsgPack(null, val));
public MsgPack Add( sbyte val) => Add(new MsgPack(null, val));
public MsgPack Add( byte val) => Add(new MsgPack(null, val));
public MsgPack Add( short val) => Add(new MsgPack(null, val));
public MsgPack Add(ushort val) => Add(new MsgPack(null, val));
public MsgPack Add( int val) => Add(new MsgPack(null, val));
public MsgPack Add( uint val) => Add(new MsgPack(null, val));
public MsgPack Add( long val) => Add(new MsgPack(null, val));
public MsgPack Add( ulong val) => Add(new MsgPack(null, val));
public MsgPack Add( float val) => Add(new MsgPack(null, val));
public MsgPack Add(double val) => Add(new MsgPack(null, val));
public MsgPack Add(string Val, bool? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, sbyte? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, byte? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, short? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, ushort? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, int? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, uint? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, long? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, ulong? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, float? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, double? val) => val.HasValue ? Add(Val, val.Value) : this;
public MsgPack Add(string Val, byte[] val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, string val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, bool val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, sbyte val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, byte val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, short val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, ushort val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, int val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, uint val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, long val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, ulong val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, float val) => Add(new MsgPack(Val, val));
public MsgPack Add(string Val, double val) => Add(new MsgPack(Val, val));
public bool RB (string Name) => RnB (Name) ?? default;
public sbyte RI8 (string Name) => RnI8 (Name) ?? default;
public byte RU8 (string Name) => RnU8 (Name) ?? default;
public short RI16(string Name) => RnI16(Name) ?? default;
public ushort RU16(string Name) => RnU16(Name) ?? default;
public int RI32(string Name) => RnI32(Name) ?? default;
public uint RU32(string Name) => RnU32(Name) ?? default;
public long RI64(string Name) => RnI64(Name) ?? default;
public ulong RU64(string Name) => RnU64(Name) ?? default;
public float RF32(string Name) => RnF32(Name) ?? default;
public double RF64(string Name) => RnF64(Name) ?? default;
public bool? RnB (string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is bool B ) return B ; return null;
}
public sbyte? RnI8 (string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return I8 ;
else if (MsgPack.Object is byte U8 ) return ( sbyte)U8 ; return null;
}
public byte? RnU8 (string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return ( byte)I8 ;
else if (MsgPack.Object is byte U8 ) return U8 ; return null;
}
public short? RnI16(string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return I8 ;
else if (MsgPack.Object is byte U8 ) return U8 ;
else if (MsgPack.Object is short I16) return I16;
else if (MsgPack.Object is ushort U16) return ( short)U16; return null;
}
public ushort? RnU16(string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return (ushort)I8 ;
else if (MsgPack.Object is byte U8 ) return U8 ;
else if (MsgPack.Object is short I16) return (ushort)I16;
else if (MsgPack.Object is ushort U16) return U16; return null;
}
public int? RnI32(string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return I8 ;
else if (MsgPack.Object is byte U8 ) return U8 ;
else if (MsgPack.Object is short I16) return I16;
else if (MsgPack.Object is ushort U16) return U16;
else if (MsgPack.Object is int I32) return I32;
else if (MsgPack.Object is uint U32) return ( int)U32; return null;
}
public uint? RnU32(string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return ( uint)I8 ;
else if (MsgPack.Object is byte U8 ) return U8 ;
else if (MsgPack.Object is short I16) return ( uint)I16;
else if (MsgPack.Object is ushort U16) return U16;
else if (MsgPack.Object is int I32) return ( uint)I32;
else if (MsgPack.Object is uint U32) return U32; return null;
}
public long? RnI64(string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return I8 ;
else if (MsgPack.Object is byte U8 ) return U8 ;
else if (MsgPack.Object is short I16) return I16;
else if (MsgPack.Object is ushort U16) return U16;
else if (MsgPack.Object is int I32) return I32;
else if (MsgPack.Object is uint U32) return U32;
else if (MsgPack.Object is long I64) return I64;
else if (MsgPack.Object is ulong U64) return ( long)U64; return null;
}
public ulong? RnU64(string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return ( ulong)I8 ;
else if (MsgPack.Object is byte U8 ) return U8 ;
else if (MsgPack.Object is short I16) return ( ulong)I16;
else if (MsgPack.Object is ushort U16) return U16;
else if (MsgPack.Object is int I32) return ( ulong)I32;
else if (MsgPack.Object is uint U32) return U32;
else if (MsgPack.Object is long I64) return ( ulong)I64; return null;
}
public float? RnF32(string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return I8 ;
else if (MsgPack.Object is byte U8 ) return U8 ;
else if (MsgPack.Object is short I16) return I16;
else if (MsgPack.Object is ushort U16) return U16;
else if (MsgPack.Object is int I32) return I32;
else if (MsgPack.Object is uint U32) return U32;
else if (MsgPack.Object is long I64) return I64;
else if (MsgPack.Object is float F32) return F32;
else if (MsgPack.Object is double F64) return ( float)F64; return null;
}
public double? RnF64(string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is sbyte I8 ) return I8 ;
else if (MsgPack.Object is byte U8 ) return U8 ;
else if (MsgPack.Object is short I16) return I16;
else if (MsgPack.Object is ushort U16) return U16;
else if (MsgPack.Object is int I32) return I32;
else if (MsgPack.Object is uint U32) return U32;
else if (MsgPack.Object is long I64) return I64;
else if (MsgPack.Object is float F32) return F32;
else if (MsgPack.Object is double F64) return F64; return null;
}
public string RS(string Name)
{
MsgPack MsgPack = this[Name];
if (MsgPack.Object is string S ) return S ; return null;
}
public bool RB () => RnB () ?? default;
public sbyte RI8 () => RnI8 () ?? default;
public byte RU8 () => RnU8 () ?? default;
public short RI16() => RnI16() ?? default;
public ushort RU16() => RnU16() ?? default;
public int RI32() => RnI32() ?? default;
public uint RU32() => RnU32() ?? default;
public long RI64() => RnI64() ?? default;
public ulong RU64() => RnU64() ?? default;
public float RF32() => RnF32() ?? default;
public double RF64() => RnF64() ?? default;
public bool? RnB ()
{ if (Object is bool B ) return B ; return null; }
public sbyte? RnI8 ()
{ if (Object is sbyte I8 ) return I8 ;
else if (Object is byte U8 ) return ( sbyte)U8 ; return null; }
public byte? RnU8 ()
{ if (Object is sbyte I8 ) return ( byte)I8 ;
else if (Object is byte U8 ) return U8 ; return null; }
public short? RnI16()
{ if (Object is sbyte I8 ) return I8 ;
else if (Object is byte U8 ) return U8 ;
else if (Object is short I16) return I16;
else if (Object is ushort U16) return ( short)U16; return null; }
public ushort? RnU16()
{ if (Object is sbyte I8 ) return (ushort)I8 ;
else if (Object is byte U8 ) return U8 ;
else if (Object is short I16) return (ushort)I16;
else if (Object is ushort U16) return U16; return null; }
public int? RnI32()
{ if (Object is sbyte I8 ) return I8 ;
else if (Object is byte U8 ) return U8 ;
else if (Object is short I16) return I16;
else if (Object is ushort U16) return U16;
else if (Object is int I32) return I32;
else if (Object is uint U32) return ( int)U32; return null; }
public uint? RnU32()
{ if (Object is sbyte I8 ) return ( uint)I8 ;
else if (Object is byte U8 ) return U8 ;
else if (Object is short I16) return ( uint)I16;
else if (Object is ushort U16) return U16;
else if (Object is int I32) return ( uint)I32;
else if (Object is uint U32) return U32; return null; }
public long? RnI64()
{ if (Object is sbyte I8 ) return I8 ;
else if (Object is byte U8 ) return U8 ;
else if (Object is short I16) return I16;
else if (Object is ushort U16) return U16;
else if (Object is int I32) return I32;
else if (Object is uint U32) return U32;
else if (Object is long I64) return I64;
else if (Object is ulong U64) return ( long)U64; return null; }
public ulong? RnU64()
{ if (Object is sbyte I8 ) return ( ulong)I8 ;
else if (Object is byte U8 ) return U8 ;
else if (Object is short I16) return ( ulong)I16;
else if (Object is ushort U16) return U16;
else if (Object is int I32) return ( ulong)I32;
else if (Object is uint U32) return U32;
else if (Object is long I64) return ( ulong)I64; return null; }
public float? RnF32()
{ if (Object is sbyte I8 ) return I8 ;
else if (Object is byte U8 ) return U8 ;
else if (Object is short I16) return I16;
else if (Object is ushort U16) return U16;
else if (Object is int I32) return I32;
else if (Object is uint U32) return U32;
else if (Object is long I64) return I64;
else if (Object is float F32) return F32;
else if (Object is double F64) return ( float)F64; return null; }
public double? RnF64()
{ if (Object is sbyte I8 ) return I8 ;
else if (Object is byte U8 ) return U8 ;
else if (Object is short I16) return I16;
else if (Object is ushort U16) return U16;
else if (Object is int I32) return I32;
else if (Object is uint U32) return U32;
else if (Object is long I64) return I64;
else if (Object is float F32) return F32;
else if (Object is double F64) return F64; return null; }
public string RS ()
{ if (Object is string S ) return S ; return null; }
public MsgPack Element(string Name)
{
if (List.IsNull) return default;
for (int i = 0; i < List.Count; i++)
if (List[i].Name == Name) return List[i];
return default;
}
public bool ContainsKey(string Name) => ElementIndex(Name) > -1;
public int ElementIndex(string Name)
{
if (List.IsNull) return -1;
for (int i = 0; i < List.Count; i++)
if (List[i].Name == Name) return i;
return -1;
}
public struct Ext
{
public sbyte Type;
public byte[] Data;
}
}
}
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namespace KKdBaseLib
{
public struct Pointer<T>
{
public int O;
public T V;
public override string ToString() => Extensions.ToS(V);
public Pointer(T value)
{ O = 0; V = value; }
public Pointer(int offset, T value)
{ O = offset; V = value; }
}
public struct PointerI64<T>
{
public long O;
public T V;
public override string ToString() => Extensions.ToS(V);
public PointerI64(T value)
{ O = 0; V = value; }
public PointerI64(long offset, T value)
{ O = offset; V = value; }
}
public struct PointerU64<T>
{
public ulong O;
public T V;
public override string ToString() => Extensions.ToS(V);
public PointerU64(T value)
{ O = 0; V = value; }
public PointerU64(ulong offset, T value)
{ O = offset; V = value; }
}
public struct CountPointer<T>
{
public int C { get => E != null ? E.Length : 0;
set => E = value > -1 ? new T [value] : null; }
public int O;
public T[] E;
public T this[int index]
{ get => E != null && index > -1 && index < E.LongLength ? E[index] : default;
set { if (E != null && index > -1 && index < E.LongLength) E[index] = value; } }
public override string ToString() => C < 1 ? "No Entries" :
C == 1 ? E[0].ToString() : "Count: " + C;
}
}
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using System.Reflection;
using System.Runtime.InteropServices;
[assembly: AssemblyTrademark("")]
[assembly: AssemblyCulture("")]
[assembly: ComVisible(false)]
[assembly: Guid("437F63F1-8C23-429E-AB14-38B85C9EDB16")]
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using System.Text;
namespace KKdBaseLib
{
public static class Text
{
public readonly static Encoding ShiftJIS = Encoding.GetEncoding(932);
public static string ToASCII(this byte[] Array) => Encoding.ASCII.GetString(Array ?? new byte[0]);
public static string ToUTF8 (this byte[] Array) => Encoding.UTF8 .GetString(Array ?? new byte[0]);
public static byte[] ToASCII(this string Data ) => Encoding.ASCII.GetBytes (Data ?? "" );
public static byte[] ToUTF8 (this string Data ) => Encoding.UTF8 .GetBytes (Data ?? "" );
public static byte[] ToASCII(this char[] Data ) => Encoding.ASCII.GetBytes (Data ?? new char[0]);
public static byte[] ToUTF8 (this char[] Data ) => Encoding.UTF8 .GetBytes (Data ?? new char[0]);
}
}
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namespace KKdBaseLib
{
public struct Vector2<T> : INull
{
public T X;
public T Y;
public Vector2(T X, T Y)
{ this.X = X; this.Y = Y; }
public bool IsNull => X == null && Y == null;
public bool NotNull => X != null || Y != null;
public override string ToString() => $"({X}; {Y})";
}
public struct Vector3<T> : INull
{
public T X;
public T Y;
public T Z;
public Vector3(T X, T Y, T Z)
{ this.X = X; this.Y = Y; this.Z = Z; }
public bool IsNull => X == null && Y == null && Z == null;
public bool NotNull => X != null || Y != null || Z != null;
public override string ToString() => $"({X}; {Y}; {Z})";
}
public struct Vector4<T> : INull
{
public T X;
public T Y;
public T Z;
public T W;
public Vector4(T X, T Y, T Z, T W)
{ this.X = X; this.Y = Y; this.Z = Z; this.W = W; }
public bool IsNull => X == null && Y == null && Z == null && W == null;
public bool NotNull => X != null || Y != null || Z != null || W != null;
public override string ToString() => $"({X}; {Y}; {Z}; {W})";
}
}
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namespace KKdBaseLib
{
public struct Vector3
{
public float X;
public float Y;
public float Z;
public Vector3(float X, float Y, float Z)
{ this.X = X; this.Y = Y; this.Z = Z; }
public float Length => (X * X + Y * Y + Z * Z).Sqrt();
public Vector3 Normalized => this = Length == 0 ? new Vector3() : this / Length;
public static Vector3 operator +(Vector3 left, Vector3 right)
{ left.X += right.X; left.Y += right.Y; left.Z += right.Z; return left; }
public static Vector3 operator -(Vector3 left, Vector3 right)
{ left.X -= right.X; left.Y -= right.Y; left.Z -= right.Z; return left; }
public static Vector3 operator -(Vector3 vec)
{ vec.X = -vec.X; vec.Y = -vec.Y; vec.Z = -vec.Z; return vec; }
public static Vector3 operator *(Vector3 vec, float scale)
{ vec.X *= scale ; vec.Y *= scale ; vec.Z *= scale ; return vec; }
public static Vector3 operator *( float scale, Vector3 vec)
{ vec.X *= scale ; vec.Y *= scale ; vec.Z *= scale ; return vec; }
public static Vector3 operator *(Vector3 vec, Vector3 scale)
{ vec.X *= scale.X; vec.Y *= scale.Y; vec.Z *= scale.Z; return vec; }
public static Vector3 operator /(Vector3 vec, float scale)
{ vec.X /= scale ; vec.Y /= scale ; vec.Z /= scale ; return vec; }
public static Vector3 operator /(Vector3 vec, Vector3 scale)
{ vec.X /= scale.X; vec.Y /= scale.Y; vec.Z /= scale.Z; return vec; }
public static bool operator ==(Vector3 A, Vector3 B) => A.Equals(B);
public static bool operator !=(Vector3 A, Vector3 B) => !A.Equals(B);
public static double Distance (Vector3 left, Vector3 right) =>
(right.X - left.X) * (right.X - left.X) + (right.Y - left.Y) *
(right.Y - left.Y) + (right.Z - left.Z) * (right.Z - left.Z).Sqrt();
public static double DistanceSquared(Vector3 left, Vector3 right) =>
(right.X - left.X) * (right.X - left.X) + (right.Y - left.Y) *
(right.Y - left.Y) + (right.Z - left.Z) * (right.Z - left.Z);
public static double Dot(Vector3 left, Vector3 right) =>
left.X * right.X + left.Y * right.Y + left.Z * right.Z;
public static Vector3 Cross(Vector3 left, Vector3 right) =>
new Vector3 { X = left.Y * right.Z - left.Z * right.Y,
Y = left.Z * right.X - left.X * right.Z,
Z = left.X * right.Y - left.Y * right.X, };
public static Vector3 Lerp(Vector3 a, Vector3 b, float blend) =>
new Vector3 { X = blend * (b.X - a.X) + a.X,
Y = blend * (b.Y - a.Y) + a.Y,
Z = blend * (b.Z - a.Z) + a.Z };
public static Vector3 Lerp(Vector3 a, Vector3 b, Vector3 blend) =>
new Vector3 { X = blend.X * (b.X - a.X) + a.X,
Y = blend.Y * (b.Y - a.Y) + a.Y,
Z = blend.Z * (b.Z - a.Z) + a.Z };
public Vector3 Round( ) =>
new Vector3 { X = X.Round( ), Y = Y.Round( ), Z = Z.Round( ) };
public Vector3 Round(int d) =>
new Vector3 { X = X.Round(d), Y = Y.Round(d), Z = Z.Round(d) };
public override int GetHashCode()
{
unchecked
{
int hashCode = X.GetHashCode();
hashCode = (hashCode * 397) ^ Y.GetHashCode();
hashCode = (hashCode * 397) ^ Z.GetHashCode();
return hashCode;
}
}
public override bool Equals(object obj) =>
obj is Vector3 vec ? Equals(vec) : false;
public bool Equals(Vector3 other) =>
X == other.X && Y == other.Y && Z == other.Z;
public override string ToString() => $"({X}; {Y}, {Z})";
public string ToString(int d) => $"({X.Round(d)}; {Y.Round(d)}, {Z.Round(d)})";
}
}
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namespace KKdBaseLib
{
public struct Vector4
{
public float X;
public float Y;
public float Z;
public float W;
public Vector4(float X, float Y, float Z, float W)
{ this.X = X; this.Y = Y; this.Z = Z; this.W = W; }
public float Length => (X * X + Y * Y + Z * Z + W * W).Sqrt();
public Vector4 Normalized => this = Length == 0 ? new Vector4() : this / Length;
public static Vector4 operator +(Vector4 left, Vector4 right)
{ left.X += right.X; left.Y += right.Y; left.Z += right.Z; left.W += right.W; return left; }
public static Vector4 operator -(Vector4 left, Vector4 right)
{ left.X -= right.X; left.Y -= right.Y; left.Z -= right.Z; left.W -= right.W; return left; }
public static Vector4 operator -(Vector4 vec)
{ vec.X = -vec.X; vec.Y = -vec.Y; vec.Z = -vec.Z; vec.W = -vec.W; return vec; }
public static Vector4 operator *(Vector4 vec, float scale)
{ vec.X *= scale ; vec.Y *= scale ; vec.Z *= scale ; vec.W *= scale ; return vec; }
public static Vector4 operator *( float scale, Vector4 vec)
{ vec.X *= scale ; vec.Y *= scale ; vec.Z *= scale ; vec.W *= scale ; return vec; }
public static Vector4 operator *(Vector4 vec, Vector4 scale)
{ vec.X *= scale.X; vec.Y *= scale.Y; vec.Z *= scale.Z; vec.W *= scale.W; return vec; }
public static Vector4 operator /(Vector4 vec, float scale)
{ vec.X /= scale ; vec.Y /= scale ; vec.Z /= scale ; vec.W /= scale ; return vec; }
public static Vector4 operator /(Vector4 vec, Vector4 scale)
{ vec.X /= scale.X; vec.Y /= scale.Y; vec.Z /= scale.Z; vec.W /= scale.W; return vec; }
public static bool operator ==(Vector4 A, Vector4 B) => A.Equals(B);
public static bool operator !=(Vector4 A, Vector4 B) => !A.Equals(B);
public static double Distance (Vector4 left, Vector4 right) =>
((right.X - left.X) * (right.X - left.X) + (right.Y - left.Y) * (right.Y - left.Y) +
(right.Z - left.Z) * (right.Z - left.Z) + (right.W - left.W) * (right.W - left.W)).Sqrt();
public static double DistanceSquared(Vector4 left, Vector4 right) =>
(right.X - left.X) * (right.X - left.X) + (right.Y - left.Y) * (right.Y - left.Y) +
(right.Z - left.Z) * (right.Z - left.Z) + (right.W - left.W) * (right.W - left.W);
public static double Dot(Vector4 left, Vector4 right) =>
left.X * right.X + left.Y * right.Y + left.Z * right.Z + left.W * right.W;
public static Vector4 Lerp(Vector4 a, Vector4 b, float blend) =>
new Vector4 { X = blend * (b.X - a.X) + a.X,
Y = blend * (b.Y - a.Y) + a.Y,
Z = blend * (b.Z - a.Z) + a.Z,
W = blend * (b.W - a.W) + a.W };
public static Vector4 Lerp(Vector4 a, Vector4 b, Vector4 blend) =>
new Vector4 { X = blend.X * (b.X - a.X) + a.X,
Y = blend.Y * (b.Y - a.Y) + a.Y,
Z = blend.Z * (b.Z - a.Z) + a.Z,
W = blend.W * (b.W - a.W) + a.W };
public Vector4 Round( ) =>
new Vector4 { X = X.Round( ), Y = Y.Round( ), Z = Z.Round( ), W = W.Round( ) };
public Vector4 Round(int d) =>
new Vector4 { X = X.Round(d), Y = Y.Round(d), Z = Z.Round(d), W = W.Round(d) };
public override int GetHashCode()
{
unchecked
{
int hashCode = X.GetHashCode();
hashCode = (hashCode * 397) ^ Y.GetHashCode();
hashCode = (hashCode * 397) ^ Z.GetHashCode();
hashCode = (hashCode * 397) ^ W.GetHashCode();
return hashCode;
}
}
public override bool Equals(object obj) =>
obj is Vector4 vec ? Equals(vec) : false;
public bool Equals(Vector4 other) =>
X == other.X && Y == other.Y && Z == other.Z && W == other.W;
public override string ToString() => $"({X}; {Y}, {Z}, {W})";
public string ToString(int d) => $"({X.Round(d)}; {Y.Round(d)}, {Z.Round(d)}, {W.Round(d)})";
}
}
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using System.Collections.Generic;
using KKdMainLib.IO;
using KKdMainLib.MessagePack;
namespace KKdMainLib.A3DA
{
public static class A3DAExt
{
private const string d = ".";
private const string BO = "bin_offset";
private const string MTBO = "model_transform" + d + BO;
private static string value;
private static string[] dataArray;
private static int SOi;
private static int[] SO;
public static ModelTransform ReadMT(this Dictionary<string, object> Dict, string Temp)
{
ModelTransform MT = new ModelTransform();
Dict.FindValue(out MT.BinOffset, Temp + MTBO);
MT.Rot = Dict.ReadVec3(Temp + "rot" + d);
MT.Scale = Dict.ReadVec3(Temp + "scale" + d);
MT.Trans = Dict.ReadVec3(Temp + "trans" + d);
MT.Visibility = Dict.ReadKey (Temp + "visibility" + d);
return MT;
}
public static RGBAKey ReadRGBAKey(this Dictionary<string, object> Dict, string Temp) =>
new RGBAKey { A = Dict.ReadKey(Temp + "a" + d), B = Dict.ReadKey(Temp + "b" + d),
G = Dict.ReadKey(Temp + "g" + d), R = Dict.ReadKey(Temp + "r" + d) };
public static Vector3<Key> ReadVec3(this Dictionary<string, object> Dict, string Temp) =>
new Vector3<Key> { X = Dict.ReadKey(Temp + "x" + d), Y =
Dict.ReadKey(Temp + "y" + d), Z = Dict.ReadKey(Temp + "z" + d) };
public static KeyUV ReadKeyUV(this Dictionary<string, object> Dict, string Temp) =>
new KeyUV { U = Dict.ReadKey(Temp + "U" + d), V = Dict.ReadKey(Temp + "V" + d) };
public static Key ReadKey(this Dictionary<string, object> Dict, string Temp)
{
Key Key = new Key();
Dict.FindValue(out Key.BinOffset, Temp + BO );
Dict.FindValue(out Key.Type , Temp + "type");
if (Key.Type == null) return Key;
if (Key.Type == 0x0000) return Key;
if (Key.Type == 0x0001) { Dict.FindValue(out Key.Value, Temp + "value"); return Key; }
int i = 0, i0 = 0;
byte i1 = 0;
Dict.FindValue(out Key.EPTypePost, Temp + "ep_type_post");
Dict.FindValue(out Key.EPTypePre , Temp + "ep_type_pre" );
Dict.FindValue(out Key.Length , Temp + "key.length" );
Dict.FindValue(out Key.Max , Temp + "max" );
if (Dict.StartsWith(Temp + "raw_data"))
Dict.FindValue(out Key.RawData.KeyType, Temp + "raw_data_key_type");
if (Key.Length != null)
{
Key.Trans = new Key.Transform[(int)Key.Length];
for (i0 = 0; i0 < Key.Length; i0++)
if (Dict.FindValue(out value, Temp + "key" + d + i0 + d + "data"))
{
Key.Trans[i0] = new Key.Transform();
dataArray = value.Replace("(", "").Replace(")", "").Split(',');
Key.Trans[i0].Type = dataArray.Length - 1;
Key.Trans[i0].Frame = dataArray[0].ToDouble();
Key.Trans[i0].Value = new double[Key.Trans[i0].Type];
for (i1 = 1; i1 < dataArray.Length; i1++)
Key.Trans[i0].Value[i1 - 1] = dataArray[i1].ToDouble();
}
}
else if (Key.RawData.KeyType != null)
{
Key.RawData = new Key.RawD();
Dict.FindValue(out Key.RawData.ValueType, Temp + "raw_data.value_type");
if (Dict.FindValue(out value, Temp + "raw_data.value_list"))
Key.RawData.ValueList = value.Split(',');
Dict.FindValue(out Key.RawData.ValueListSize, Temp + "raw_data.value_list_size");
value = "";
int DataSize = (int)Key.RawData.KeyType + 1;
Key.Length = Key.RawData.ValueListSize / DataSize;
Key.Trans = new Key.Transform[(int)Key.Length];
for (i = 0; i < Key.Length; i++)
{
Key.Trans[i].Type = (int)Key.RawData.KeyType;
Key.Trans[i].Frame = Key.RawData.ValueList[i * DataSize + 0].ToDouble();
Key.Trans[i].Value = new double[Key.Trans[i0].Type];
for (i1 = 1; i1 < Key.Trans[i].Type; i1++)
Key.Trans[i].Value[i1 - 1] = Key.RawData.ValueList[i * DataSize + i1].ToDouble();
}
Key.RawData.ValueList = null;
}
return Key;
}
public static void Write(this Stream IO, ModelTransform MT,
string Temp, bool A3DC, bool IsX = false, byte Flags = 0b11111)
{
if (A3DC && !MT.Writed && (Flags & 0b10000) == 0b10000)
{ IO.Write(Temp + MTBO + "=", MT.BinOffset); MT.Writed = true; }
if (A3DC) return;
if ((Flags & 0b01000) == 0b01000) IO.Write(MT.Rot , Temp + "rot" + d, A3DC);
if ((Flags & 0b00100) == 0b00100) IO.Write(MT.Scale , Temp + "scale" + d, A3DC);
if ((Flags & 0b00010) == 0b00010) IO.Write(MT.Trans , Temp + "trans" + d, A3DC);
if ((Flags & 0b00001) == 0b00001) IO.Write(MT.Visibility, Temp + "visibility" + d, A3DC);
}
public static void Write(this Stream IO, RGBAKey RGBA, string Temp, string Data, bool A3DC = false)
{
IO.Write(Temp + Data + "=", "true");
IO.Write(RGBA.A, Temp + Data + d + "a" + d, A3DC); IO.Write(RGBA.B, Temp + Data + d + "b" + d, A3DC);
IO.Write(RGBA.G, Temp + Data + d + "g" + d, A3DC); IO.Write(RGBA.R, Temp + Data + d + "r" + d, A3DC);
}
public static void Write(this Stream IO, Vector3<Key> Key, string Temp, bool A3DC = false)
{ IO.Write(Key.X, Temp + "x" + d, A3DC); IO.Write(Key.Y,
Temp + "y" + d, A3DC); IO.Write(Key.Z, Temp + "z" + d, A3DC); }
public static void Write(this Stream IO, KeyUV UV, string Temp, string Data, bool A3DC = false)
{ IO.Write(UV.U, Temp, Data + "U", A3DC); IO.Write(UV.V, Temp, Data + "V", A3DC); }
public static void Write(this Stream IO, Key Key, string Temp, string Data, bool A3DC = false)
{ if (Key != null) { IO.Write(Temp + Data + "=", "true"); IO.Write(Key, Temp + Data + d, A3DC); } }
public static void Write(this Stream IO, Key Key, string Temp, bool A3DC = false)
{
if (Key == null) return;
if (A3DC) { IO.Write(Temp + BO + "=", Key.BinOffset); return; }
int i = 0;
if (Key.Trans != null)
if (Key.Trans.Length == 0)
{
IO.Write(Temp + "type=", Key.Type);
if (Key.Type > 0) IO.Write(Temp + "value=", Key.Value);
return;
}
if (Key.EPTypePost != null) IO.Write(Temp + "ep_type_post=", Key.EPTypePost);
if (Key.EPTypePre != null) IO.Write(Temp + "ep_type_pre=" , Key.EPTypePre );
if (Key.RawData == null && Key.Trans != null)
{
SO = Key.Trans.Length.SortWriter();
for (i = 0; i < Key.Trans.Length; i++)
{
SOi = SO[i];
IO.Write(Temp + "key" + d + SOi + d + "data=", Key.Trans[SOi].ToString());
IO.Write(Temp + "key" + d + SOi + d + "type=", Key.Trans[SOi].Type );
}
IO.Write(Temp + "key.length=", Key.Length);
if (Key.Max != null) IO.Write(Temp + "max=", Key.Max);
}
else if (Key.Trans != null)
{
if (Key.Max != null) IO.Write(Temp + "max=", Key.Max);
for (i = 0; i < Key.Trans.Length; i++)
{
if (Key.RawData.KeyType < Key.Trans[i].Type || Key.RawData.KeyType == null)
Key.RawData.KeyType = Key.Trans[i].Type;
if (Key.RawData.KeyType == 3) break;
}
Key.RawData.ValueListSize = Key.Trans.Length * (Key.RawData.KeyType + 1);
IO.Write(Temp + "raw_data.value_list=");
for (i = 0; i < Key.Trans.Length; i++)
IO.Write(Key.Trans[i].ToString(false));
IO.Position = IO.Position - 1;
IO.Write('\n');
IO.Write(Temp + "raw_data.value_list_size=", Key.RawData.ValueListSize);
IO.Write(Temp + "raw_data.value_type=" , Key.RawData.ValueType );
IO.Write(Temp + "raw_data_key_type=" , Key.RawData. KeyType );
}
IO.Write(Temp + "type=", Key.Type & 0xFF);
}
public static void ReadMT(this Stream IO, ref ModelTransform MT, int C_F16)
{
if (MT.BinOffset == null) return;
IO.Position = IO.Offset + (int)MT.BinOffset;
IO.ReadOffset(ref MT.Scale);
IO.ReadOffset(ref MT.Rot );
IO.ReadOffset(ref MT.Trans);
MT.Visibility.BinOffset = IO.ReadInt32();
IO.ReadVec3(ref MT.Scale , C_F16);
IO.ReadVec3(ref MT.Rot , C_F16, true);
IO.ReadVec3(ref MT.Trans , C_F16);
IO.ReadKey (ref MT.Visibility, C_F16);
}
public static void ReadRGBAKey(this Stream IO, ref RGBAKey RGBA, int C_F16)
{ IO.ReadKey(ref RGBA.R, C_F16); IO.ReadKey(ref RGBA.G, C_F16);
IO.ReadKey(ref RGBA.B, C_F16); IO.ReadKey(ref RGBA.A, C_F16); }
public static void ReadVec3(this Stream IO, ref Vector3<Key> Key, int C_F16, bool F16 = false)
{ IO.ReadKey(ref Key.X, C_F16, F16); IO.ReadKey(ref Key.Y, C_F16, F16); IO.ReadKey(ref Key.Z, C_F16, F16); }
public static void ReadKeyUV(this Stream IO, ref KeyUV UV, int C_F16)
{ IO.ReadKey(ref UV.U, C_F16); IO.ReadKey(ref UV.V, C_F16); }
public static void ReadKey(this Stream IO, ref Key Key, int C_F16, bool F16 = false)
{
if (Key.BinOffset == null || Key.BinOffset < 0) return;
IO.Position = IO.Offset + (int)Key.BinOffset;
Key.Type = IO.ReadInt32();
Key.Value = IO.ReadSingle();
if (Key.Type == 0x0000 || Key.Type == 0x0001) return;
Key.Max = IO.ReadSingle();
Key.Length = IO.ReadInt32 ();
Key.Trans = new Key.Transform[(int)Key.Length];
int Ke = (int)Key.Length;
for (int i = 0; i < Key.Length; i++)
{
Key.Trans[i] = new Key.Transform { Type = 3, Value = new double[3] };
if (F16 && C_F16 > 0)
{ Key.Trans[i].Frame = IO.ReadUInt16(); Key.Trans[i].Value[0] = (double)IO.ReadHalf (); }
else
{ Key.Trans[i].Frame = IO.ReadSingle(); Key.Trans[i].Value[0] = IO.ReadSingle(); }
if (F16 && C_F16 == 2)
{ Key.Trans[i].Value[1] = (double)IO.ReadHalf ();
Key.Trans[i].Value[2] = (double)IO.ReadHalf (); }
else
{ Key.Trans[i].Value[1] = IO.ReadSingle();
Key.Trans[i].Value[2] = IO.ReadSingle(); }
}
}
public static void ReadOffset(this Stream IO, ref Vector3<Key> Key)
{ Key.X.BinOffset = IO.ReadInt32(); Key.Y.BinOffset = IO.ReadInt32(); Key.Z.BinOffset = IO.ReadInt32(); }
public static void WriteOffset(this Stream IO, ref ModelTransform MT, bool ReturnToOffset)
{
if (ReturnToOffset)
{
IO.Position = (int)MT.BinOffset;
IO.WriteOffset(MT.Scale);
IO.WriteOffset(MT.Rot );
IO.WriteOffset(MT.Trans);
IO.Write(MT.Visibility.BinOffset);
}
else
{
MT.BinOffset = IO.Position;
IO.Position += 0x30;
IO.Length += 0x30;
}
}
public static void WriteOffset(this Stream IO, Vector3<Key> Key)
{
IO.Write(Key.X.BinOffset);
IO.Write(Key.Y.BinOffset);
IO.Write(Key.Z.BinOffset);
}
public static ModelTransform ReadMT(this MsgPack k, string name)
{ if (k.Element(name, out MsgPack Name)) return Name.ReadMT(); return new ModelTransform(); }
public static ModelTransform ReadMT(this MsgPack k) =>
new ModelTransform { Rot = k.ReadVec3("Rot" ), Scale = k.ReadVec3("Scale" ),
Trans = k.ReadVec3("Trans"), Visibility = k.ReadKey ("Visibility") };
public static RGBAKey ReadRGBAKey(this MsgPack k, string name)
{ if (k.Element(name, out MsgPack Name)) return Name.ReadRGBAKey(); return new RGBAKey(); }
public static RGBAKey ReadRGBAKey(this MsgPack k) =>
new RGBAKey { R = k.ReadKey("R"), G = k.ReadKey("G"), B = k.ReadKey("B"), A = k.ReadKey("A") };
public static Vector3<Key> ReadVec3(this MsgPack k, string name)
{ if (k.Element(name, out MsgPack Name)) return Name.ReadVec3(); return new Vector3<Key>(); }
public static Vector3<Key> ReadVec3(this MsgPack k) =>
new Vector3<Key> { X = k.ReadKey("X"), Y = k.ReadKey("Y"), Z = k.ReadKey("Z") };
public static KeyUV ReadKeyUV(this MsgPack k, string name)
{ if (k.Element(name, out MsgPack Name)) return Name.ReadKeyUV(); return new KeyUV(); }
public static KeyUV ReadKeyUV(this MsgPack k) =>
new KeyUV { U = k.ReadKey("U"), V = k.ReadKey("V") };
public static Key ReadKey(this MsgPack k, string name)
{ if (k.Element(name, out MsgPack Name)) return Name.ReadKey(); return new Key(); }
public static Key ReadKey(this MsgPack k)
{
if (k == null) return new Key();
Key Key = new Key { EPTypePost = k.ReadNDouble("Post"),
EPTypePre = k.ReadNDouble("Pre"), Max = k.ReadNDouble("M"),
Type = k.ReadNInt32("T"), Value = k.ReadNDouble("V") };
if (k.ReadBoolean("RD")) Key.RawData = new Key.RawD();
if (Key.Type == 0) Key.Value = 0.0;
if (Key.Type < 2) return Key;
if (!k.Element("Trans", out MsgPack Trans, typeof(object[]))) return Key;
Key.Length = ((object[])Trans.Object).Length;
Key.Trans = new Key.Transform[Key.Length.Value];
MsgPack _Trans = new MsgPack();
byte i1 = 0;
for (int i = 0; i < Key.Length; i++)
{
Key.Trans[i] = new Key.Transform();
if (Trans[i].GetType() != typeof(MsgPack)) continue;
_Trans = (MsgPack)Trans[i];
if (_Trans.Object.GetType() != typeof(object[])) continue;
Key.Trans[i].Type = ((object[])_Trans.Object).Length - 1;
Key.Trans[i].Value = new double[Key.Trans[i].Type];
if (_Trans[0].GetType() != typeof(MsgPack)) continue;
Key.Trans[i].Frame = ((MsgPack)_Trans[0]).ReadDouble();
for (i1 = 0; i1 < Key.Trans[i].Type; i1++)
Key.Trans[i].Value[i1] = ((MsgPack)_Trans[i1 + 1]).ReadDouble();
}
return Key;
}
public static MsgPack WriteMP(this ModelTransform MT, string name) =>
MT.WriteMP(new MsgPack(name));
public static MsgPack WriteMP(this ModelTransform MT) =>
MT.WriteMP(new MsgPack( ));
public static MsgPack WriteMP(this ModelTransform MT, MsgPack MTs) =>
MTs.Add(MT.Rot .WriteMP("Rot" ))
.Add(MT.Scale .WriteMP("Scale" ))
.Add(MT.Trans .WriteMP("Trans" ))
.Add(MT.Visibility.WriteMP("Visibility"));
public static MsgPack WriteMP(this RGBAKey RGBA, string name)
{
if (RGBA.R == null && RGBA.G == null && RGBA.B == null && RGBA.A == null) return MsgPack.Null;
return new MsgPack(name).Add(RGBA.R.WriteMP("R")).Add(RGBA.G.WriteMP("G"))
.Add(RGBA.B.WriteMP("B")).Add(RGBA.A.WriteMP("A"));
}
public static MsgPack WriteMP(this Vector3<Key> Key, string name) =>
new MsgPack(name).Add(Key.X.WriteMP("X")).Add(Key.Y.WriteMP("Y")).Add(Key.Z.WriteMP("Z"));
public static MsgPack WriteMP(this KeyUV UV, string name)
{
if (UV.U == null && UV.V == null) return MsgPack.Null;
return new MsgPack(name).Add(UV.U.WriteMP("U")).Add(UV.V.WriteMP("V"));
}
public static MsgPack WriteMP(this Key Key, string name)
{
if (Key == null) return MsgPack.Null;
if (Key.Type == null) return MsgPack.Null;
MsgPack Keys = new MsgPack(name).Add("T", Key.Type);
if (Key.Trans != null)
{
Keys.Add("Post", Key.EPTypePost).Add("Pre", Key.EPTypePre).Add("M", Key.Max);
if (Key.RawData != null) Keys.Add("RD", true);
byte i0 = 0;
MsgPack Trans = new MsgPack("Trans", Key.Trans.Length);
for (int i = 0; i < Key.Trans.Length; i++)
{
MsgPack K = new MsgPack(Key.Trans[i].Type + 1);
K[0] = Key.Trans[i].Frame;
for (i0 = 1; i0 < Key.Trans[i].Type + 1; i0++)
K[i0] = Key.Trans[i].Value[i0 - 1];
Trans[i] = K;
}
Keys.Add(Trans);
}
else if (Key.Value != 0) Keys.Add("V", Key.Value);
return Keys;
}
}
}
+991
View File
@@ -0,0 +1,991 @@
//Original: AetSet.bt Version: 4.3 by samyuu
using KKdBaseLib;
using KKdBaseLib.Aet;
using KKdMainLib.IO;
namespace KKdMainLib.Aet
{
public struct Aet : System.IDisposable
{
private Stream _IO;
private int i, i0, i1, i2;
private const string x00 = "\0";
public AetHeader AET;
public void AETReader(string file)
{
AET = default;
_IO = File.OpenReader(file + ".bin", true);
int i = 0;
int Pos = -1;
while (true) { Pos = _IO.RI32(); if (Pos != 0 && Pos < _IO.L) i++; else break; }
_IO.P = 0;
AET.Data = new Pointer<AetData>[i];
for (i = 0; i < AET.Data.Length; i++) AET.Data[i] = _IO.RP<AetData>();
for (i = 0; i < AET.Data.Length; i++) AETReader(ref AET.Data[i]);
_IO.C();
}
public void AETWriter(string file)
{
if (AET.Data == null || AET.Data.Length == 0) return;
_IO = File.OpenWriter();
for (int i = 0; i < AET.Data.Length; i++)
{
_IO.P = _IO.L + 0x20;
AETWriter(ref AET.Data[i]);
}
_IO.P = 0;
for (int i = 0; i < AET.Data.Length; i++)
if (AET.Data[i].O > 0) _IO.W(AET.Data[i].O);
byte[] data = _IO.ToArray();
_IO.Dispose();
using (_IO = File.OpenWriter(file + ".bin", true))
_IO.W(data);
data = null;
}
private void AETReader(ref Pointer<AetData> aetData)
{
_IO.P = aetData.O;
ref AetData aet = ref aetData.V;
aet.Name = _IO.RPS();
aet.StartFrame = _IO.RF32();
aet.EndFrame = _IO.RF32();
aet.FrameRate = _IO.RF32();
aet.BackColor = _IO.RU32();
aet.Width = _IO.RU32();
aet.Height = _IO.RU32();
aet.Camera = _IO.RP<Vector2<CountPointer<KFT2>>>();
aet.Compositions = _IO.ReadCountPointer<AetComposition>();
aet.Surfaces = _IO.ReadCountPointer<AetSurface >();
aet.SoundEffects = _IO.ReadCountPointer<AetSoundEffect>();
if (aet.Camera.O > 0)
{
_IO.P = aet.Camera.O;
aet.Camera.V.X.O = _IO.RI32();
aet.Camera.V.Y.O = _IO.RI32();
RKF(ref aet.Camera.V.X);
RKF(ref aet.Camera.V.Y);
}
if (aet.SoundEffects.O > 0)
{
_IO.P = aet.SoundEffects.O;
for (i = 0; i < aet.SoundEffects.C; i++)
{
ref AetSoundEffect aif = ref aet.SoundEffects.E[i];
aif.O = _IO.P;
aif.Unk = _IO.RU32();
}
}
_IO.P = aet.Compositions.O;
for (i = 0; i < aet.Compositions.C; i++)
aet.Compositions[i] = new AetComposition() { P = _IO.P, C = _IO.RI32(), O = _IO.RI32()};
i1 = 0;
RAL(ref aet.Compositions.E[aet.Compositions.C - 1]);
for (i = 0; i < aet.Compositions.C - 1; i++)
RAL(ref aet.Compositions.E[i]);
_IO.P = aet.Surfaces.O;
for (i = 0; i < aet.Surfaces.C; i++)
aet.Surfaces[i] = new AetSurface { O = _IO.P, Color = _IO.RU32(), Width = _IO.RU16(),
Height = _IO.RU16(), Frames = _IO.RF32(), Sprites = _IO.ReadCountPointer<AetSpriteIdentifier>() };
for (i = 0; i < aet.Surfaces.C; i++)
{
_IO.P = aet.Surfaces[i].Sprites.O;
for (i0 = 0; i0 < aet.Surfaces[i].Sprites.C; i0++)
aet.Surfaces.E[i].Sprites[i0] = new AetSpriteIdentifier { Name = _IO.RPS(), ID = _IO.RU32() };
}
for (i = 0; i < aet.Compositions.C; i++)
{
for (i0 = 0; i0 < aet.Compositions[i].C; i0++)
{
ref AetLayer obj = ref aet.Compositions[i].E[i0];
obj.DataID = -1;
int dataOffset = obj.DataOffset;
if (dataOffset > 0)
{
if (obj.Type == AetLayer.AetLayerType.Pic)
{
for (i1 = 0; i1 < aet.Surfaces.C; i1++)
if (aet. Surfaces[i1].O == dataOffset) { obj.DataID = i1; break; }
}
else if (obj.Type == AetLayer.AetLayerType.Aif)
{
for (i1 = 0; i1 < aet.SoundEffects.C; i1++)
if (aet.SoundEffects[i1].O == dataOffset) { obj.DataID = i1; break; }
}
else if (obj.Type == AetLayer.AetLayerType.Eff)
{
for (i1 = 0; i1 < aet.Compositions.C; i1++)
if (aet.Compositions[i1].P == dataOffset) { obj.DataID = i1; break; }
}
}
ref int parentLayer = ref obj.ParentLayer;
if (parentLayer > 0)
for (i1 = 0; i1 < aet.Compositions.C; i1++)
{
for (i2 = 0; i2 < aet.Compositions[i1].C; i2++)
if (aet.Compositions[i1].E[i2].Offset == parentLayer)
{ obj.ParentLayer = aet.Compositions[i1].E[i2].ID; break; }
if (parentLayer != obj.ParentLayer) break;
}
if (parentLayer == obj.ParentLayer) obj.ParentLayer = -1;
}
}
}
private void AETWriter(ref Pointer<AetData> aetData)
{
ref AetData aet = ref aetData.V;
for (i = 0; i < aet.Surfaces.C; i++)
{
ref AetSurface region = ref aet.Surfaces.E[i];
if (region.Sprites.C == 0) { region.Sprites.O = 0; continue; }
if (region.Sprites.C > 1) _IO.A(0x20);
region.Sprites.O = _IO.P;
for (i0 = 0; i0 < region.Sprites.C; i0++) _IO.W(0L);
}
_IO.A(0x20);
aet.Surfaces.O = _IO.P;
for (i = 0; i < aet.Surfaces.C; i++)
{
ref AetSurface region = ref aet.Surfaces.E[i];
region.O = _IO.P;
_IO.W(region.Color);
_IO.W(region.Width);
_IO.W(region.Height);
_IO.W(region.Frames);
_IO.W(region.Sprites);
}
_IO.A(0x20);
aet.Compositions.O = _IO.P;
for (i = 0; i < aet.Compositions.C; i++)
{
aet.Compositions.E[i].O = _IO.P;
_IO.W(0L);
}
for (i = 0; i < aet.Compositions.C; i++)
{
if (aet.Compositions.E[i].C < 1) continue;
for (i0 = 0; i0 < aet.Compositions.E[i].C; i0++)
{
ref AetLayer obj = ref aet.Compositions.E[i].E[i0];
ref AnimationData data = ref obj.Data.V;
ref AnimationData.Perspective persp = ref data.Persp.V;
ref AudioData extraData = ref obj.ExtraData.V;
if (obj.Marker.C > 0)
{
if (obj.Marker.C > 3) _IO.A(0x20);
obj.Marker.O = _IO.P;
for (i1 = 0; i1 < obj.Marker.C; i1++)
_IO.W(0L);
}
if (obj.Data.V.Persp.O > 0)
{
W(ref persp.Unk1 );
W(ref persp.Unk2 );
W(ref persp.RotReturnX);
W(ref persp.RotReturnY);
W(ref persp.RotReturnZ);
W(ref persp. RotationX);
W(ref persp. RotationY);
W(ref persp. ScaleZ);
}
if (obj.Data.O > 0)
{
W(ref data. OriginX);
W(ref data. OriginY);
W(ref data.PositionX);
W(ref data.PositionY);
W(ref data.Rotation );
W(ref data. ScaleX);
W(ref data. ScaleY);
W(ref data.Opacity );
}
if (obj.Data.V.Persp.O > 0)
{
_IO.A(0x20);
data.Persp.O = _IO.P;
_IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L);
_IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L);
}
if (obj.ExtraData.O > 0)
{
W(ref extraData.Data0);
W(ref extraData.Data1);
W(ref extraData.Data2);
W(ref extraData.Data3);
}
if (obj.Data.O > 0)
{
_IO.A(0x20);
obj.Data.O = _IO.P;
_IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L);
_IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L);
}
if (obj.ExtraData.O > 0)
{
_IO.A(0x20);
obj.ExtraData.O = _IO.P;
_IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L);
}
}
_IO.A(0x20);
aet.Compositions.E[i].E[0].Offset = _IO.P;
for (i0 = 0; i0 < aet.Compositions.E[i].C; i0++)
{
ref AetLayer obj = ref aet.Compositions.E[i].E[i0];
obj.Offset = _IO.P;
_IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L);
}
}
if (aet.Camera.O > 0)
{
ref Vector2<CountPointer<KFT2>> pos = ref aet.Camera.V;
_IO.A(0x10);
W(ref pos.X);
W(ref pos.Y);
_IO.A(0x20);
aet.Camera.O = _IO.P;
_IO.W(pos.X);
_IO.W(pos.Y);
W(ref pos.X);
W(ref pos.Y);
}
_IO.A(0x20);
aetData.O = _IO.P;
_IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L);
_IO.W(0L); _IO.W(0L); _IO.W(0L); _IO.W(0L);
_IO.A(0x10);
{
System.Collections.Generic.Dictionary<string, int> usedValues =
new System.Collections.Generic.Dictionary<string, int>();
for (i = 0; i < aet.Surfaces.C; i++)
{
ref AetSurface region = ref aet.Surfaces.E[i];
for (i0 = 0; i0 < region.Sprites.C; i0++)
WPS(ref usedValues, ref region.Sprites.E[i0].Name);
}
//_IO.Align(0x4);
for (i = 0; i < aet.Compositions.C; i++)
{
for (i0 = 0; i0 < aet.Compositions.E[i].C; i0++)
{
ref AetLayer obj = ref aet.Compositions.E[i].E[i0];
for (i1 = 0; i1 < obj.Marker.C; i1++)
WPS(ref usedValues, ref obj.Marker.E[i1].Name);
}
for (i0 = 0; i0 < aet.Compositions.E[i].C; i0++)
WPS(ref usedValues, ref aet.Compositions.E[i].E[i0].Name);
}
//_IO.Align(0x4);
aet.Name.O = _IO.P;
_IO.W(aet.Name.V + x00);
_IO.SL(_IO.P);
}
aet.SoundEffects.O = 0;
if (aet.SoundEffects.C > 0)
{
_IO.A(0x10);
aet.SoundEffects.O = _IO.P;
for (i = 0; i < aet.SoundEffects.C; i++)
{
aet.SoundEffects.E[i].O = _IO.P;
_IO.W(aet.SoundEffects[i].Unk);
}
}
for (i = 0; i < aet.Compositions.C; i++)
for (i0 = 0; i0 < aet.Compositions.E[i].C; i0++)
{
ref AetLayer obj = ref aet.Compositions.E[i].E[i0];
if (obj.Type == AetLayer.AetLayerType.Pic) obj.DataOffset = aet.Surfaces [obj.DataID].O;
else if (obj.Type == AetLayer.AetLayerType.Aif) obj.DataOffset = aet.SoundEffects[obj.DataID].O;
else if (obj.Type == AetLayer.AetLayerType.Eff) obj.DataOffset = aet.Compositions[obj.DataID].O;
else obj.DataOffset = 0;
if (obj.DataOffset == 0)
{
}
}
_IO.A(0x4);
int returnPos = _IO.P;
int nvp = 0;
_IO.F();
for (i = 0; i < aet.Compositions.C; i++)
{
if (aet.Compositions.E[i].C < 1) continue;
for (i0 = 0; i0 < aet.Compositions.E[i].C; i0++)
{
ref AetLayer obj = ref aet.Compositions.E[i].E[i0];
ref AnimationData data = ref obj.Data.V;
ref AnimationData.Perspective persp = ref data.Persp.V;
ref AudioData extraData = ref obj.ExtraData.V;
if (obj.Data.V.Persp.O > 0)
{
_IO.P = data.Persp.O;
W(ref _IO, ref persp.Unk1 );
W(ref _IO, ref persp.Unk2 );
W(ref _IO, ref persp.RotReturnX);
W(ref _IO, ref persp.RotReturnY);
W(ref _IO, ref persp.RotReturnZ);
W(ref _IO, ref persp. RotationX);
W(ref _IO, ref persp. RotationY);
W(ref _IO, ref persp. ScaleZ);
}
if (obj.Data.O > 0)
{
_IO.P = obj.Data.O;
_IO.W((byte) data.Mode);
_IO.W((byte)0);
_IO.W((byte)(data.UseTextureMask ? 1 : 0));
_IO.W((byte)0);
W(ref _IO, ref data. OriginX);
W(ref _IO, ref data. OriginY);
W(ref _IO, ref data.PositionX);
W(ref _IO, ref data.PositionY);
W(ref _IO, ref data.Rotation );
W(ref _IO, ref data. ScaleX);
W(ref _IO, ref data. ScaleY);
W(ref _IO, ref data.Opacity );
_IO.W(data.Persp.O);
}
if (obj.ExtraData.O > 0)
{
_IO.P = obj.ExtraData.O;
W(ref _IO, ref extraData.Data0);
W(ref _IO, ref extraData.Data1);
W(ref _IO, ref extraData.Data2);
W(ref _IO, ref extraData.Data3);
}
void W(ref Stream _IO, ref CountPointer<KFT2> keys)
{
if (keys.C < 1) _IO.W(0L);
else { if (keys.C > 0 && keys.O == 0) { keys.O = returnPos + (nvp << 2); nvp++; } _IO.W(keys); }
}
}
}
_IO.P = returnPos;
for (i = 0; i < nvp; i++)
_IO.W(0);
_IO.A(0x10, true);
_IO.F();
for (i = 0; i < aet.Compositions.C; i++)
for (i0 = 0; i0 < aet.Compositions.E[i].C; i0++)
{
ref AetLayer obj = ref aet.Compositions.E[i].E[i0];
_IO.P = obj.Offset;
_IO.W(obj.Name.O);
_IO.W(obj.StartFrame);
_IO.W(obj.EndFrame);
_IO.W(obj.StartOffset);
_IO.W(obj.PlaybackSpeed);
_IO.W((ushort)obj.Flags);
_IO.W(obj.Pad);
_IO.W((byte)obj.Type);
_IO.W(obj.DataOffset);
if (obj.ParentLayer > -1)
{
bool Found = false;
for (i1 = 0; i1 < aet.Compositions.C; i1++)
for (i2 = 0; i2 < aet.Compositions.E[i1].C; i2++)
if (aet.Compositions[i1].E[i2].ID == obj.ParentLayer)
{ Found = true; _IO.W(aet.Compositions.E[i1].E[i2].Offset); break; }
if (!Found) _IO.W(0);
}
else _IO.W(0);
_IO.W(obj.Marker);
_IO.W(obj.Data.O);
_IO.W(obj.ExtraData.O);
ref CountPointer<AetMarker> Marker = ref obj.Marker;
_IO.P = Marker.O;
for (i1 = 0; i1 < Marker.C; i1++)
{
_IO.W(Marker[i1].Frame);
_IO.W(Marker[i1].Name.O);
}
}
_IO.F();
for (i = 0; i < aet.Surfaces.C; i++)
{
ref AetSurface region = ref aet.Surfaces.E[i];
if (region.Sprites.C == 0) continue;
_IO.P = region.Sprites.O;
for (i0 = 0; i0 < region.Sprites.C; i0++)
{
_IO.W(region.Sprites[i0].Name.O);
_IO.W(region.Sprites[i0].ID);
}
}
_IO.P = aet.Compositions.O;
for (i = 0; i < aet.Compositions.C; i++)
{
if (aet.Compositions[i].C > 0)
{
_IO.W(aet.Compositions[i].C);
_IO.W(aet.Compositions[i].E[0].Offset);
}
else _IO.W(0L);
}
_IO.P = aetData.O;
_IO.W(aet.Name.O);
_IO.W(aet.StartFrame);
_IO.W(aet.EndFrame);
_IO.W(aet.FrameRate);
_IO.W(aet.BackColor);
_IO.W(aet.Width);
_IO.W(aet.Height);
_IO.W(aet.Camera.O);
_IO.W(aet. Compositions);
_IO.W(aet.Surfaces);
_IO.W(aet. SoundEffects);
_IO.W(0L);
}
private void RAL(ref AetComposition layer)
{
for (i0 = 0; i0 < layer.C; i0++, i1++)
{
layer.E[i0].ID = i1;
ref AetLayer obj = ref layer.E[i0];
_IO.P = obj.Offset = layer.O + i0 * 0x30;
obj.Name = _IO.RPS();
obj.StartFrame = _IO.RF32();
obj. EndFrame = _IO.RF32();
obj.StartOffset = _IO.RF32();
obj.PlaybackSpeed = _IO.RF32();
obj.Flags = (AetLayer.AetLayerFlags)_IO.RU16();
obj.Pad = _IO.RU8();
obj.Type = (AetLayer.AetLayerType)_IO.RU8();
obj.DataOffset = _IO.RI32();
obj.ParentLayer = _IO.RI32();
obj.Marker = _IO.ReadCountPointer<AetMarker>();
obj.Data = _IO.RP<AnimationData>();
obj.ExtraData = _IO.RP<AudioData>();
if (obj.Data.O > 0)
{
ref AnimationData data = ref obj.Data.V;
_IO.P = obj.Data.O;
data.Mode = (AnimationData.BlendMode)_IO.RU8();
_IO.RU8();
data.UseTextureMask = _IO.RBo();
_IO.RU8();
data. OriginX = _IO.ReadCountPointer<KFT2>();
data. OriginY = _IO.ReadCountPointer<KFT2>();
data.PositionX = _IO.ReadCountPointer<KFT2>();
data.PositionY = _IO.ReadCountPointer<KFT2>();
data.Rotation = _IO.ReadCountPointer<KFT2>();
data. ScaleX = _IO.ReadCountPointer<KFT2>();
data. ScaleY = _IO.ReadCountPointer<KFT2>();
data.Opacity = _IO.ReadCountPointer<KFT2>();
data.Persp = _IO.RP<AnimationData.Perspective>();
RKF(ref data. OriginX);
RKF(ref data. OriginY);
RKF(ref data.PositionX);
RKF(ref data.PositionY);
RKF(ref data.Rotation );
RKF(ref data. ScaleX);
RKF(ref data. ScaleY);
RKF(ref data.Opacity );
if (data.Persp.O > 0)
{
ref AnimationData.Perspective Persp = ref data.Persp.V;
_IO.P = data.Persp.O;
Persp.Unk1 = _IO.ReadCountPointer<KFT2>();
Persp.Unk2 = _IO.ReadCountPointer<KFT2>();
Persp.RotReturnX = _IO.ReadCountPointer<KFT2>();
Persp.RotReturnY = _IO.ReadCountPointer<KFT2>();
Persp.RotReturnZ = _IO.ReadCountPointer<KFT2>();
Persp. RotationX = _IO.ReadCountPointer<KFT2>();
Persp. RotationY = _IO.ReadCountPointer<KFT2>();
Persp. ScaleZ = _IO.ReadCountPointer<KFT2>();
RKF(ref Persp.Unk1 );
RKF(ref Persp.Unk2 );
RKF(ref Persp.RotReturnX);
RKF(ref Persp.RotReturnY);
RKF(ref Persp.RotReturnZ);
RKF(ref Persp. RotationX);
RKF(ref Persp. RotationY);
RKF(ref Persp. ScaleZ);
}
}
if (obj.ExtraData.O > 0)
{
ref AudioData extraData = ref obj.ExtraData.V;
_IO.P = obj.ExtraData.O;
extraData.Data0 = _IO.ReadCountPointer<KFT2>();
extraData.Data1 = _IO.ReadCountPointer<KFT2>();
extraData.Data2 = _IO.ReadCountPointer<KFT2>();
extraData.Data3 = _IO.ReadCountPointer<KFT2>();
RKF(ref extraData.Data0);
RKF(ref extraData.Data1);
RKF(ref extraData.Data2);
RKF(ref extraData.Data3);
}
_IO.P = obj.Marker.O;
for (i2 = 0; i2 < obj.Marker.C; i2++)
obj.Marker[i2] = new AetMarker() { Frame = _IO.RF32(), Name = _IO.RPSSJIS() };
}
}
private void RKF(ref CountPointer<KFT2> keys)
{
if (keys.C < 1) return;
_IO.P = keys.O;
if (keys.C == 1) { keys.E[0].V = _IO.RF32(); return; }
keys.E = new KFT2[keys.C];
for (uint i = 0; i < keys.C; i++) keys.E[i].F = _IO.RF32();
for (uint i = 0; i < keys.C; i++)
{ keys.E[i].V = _IO.RF32(); keys.E[i].T = _IO.RF32(); }
}
private void W(ref CountPointer<KFT2> keys)
{
keys.O = 0;
if (keys.C < 1) return;
if (keys.C == 1)
{
if (keys.E[0].V != 0) { keys.O = _IO.P; _IO.W(keys.E[0].V); }
return;
}
if (keys.C > 2) _IO.A(0x20);
keys.O = _IO.P;
for (uint i = 0; i < keys.C; i++) _IO.W(keys.E[i].F);
for (uint i = 0; i < keys.C; i++)
{ _IO.W(keys.E[i].V); _IO.W(keys.E[i].T); }
}
private void WPS(ref System.Collections.Generic.Dictionary<string, int> dict, ref Pointer<string> str)
{
if (dict.ContainsKey(str.V)) str.O = dict[str.V];
else { str.O = _IO.P; dict.Add(str.V, str.O); _IO.WPSSJIS(str.V + "\0"); }
}
public void MsgPackReader(string file, bool json)
{
AET = default;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
MsgPack aet;
if ((aet = msgPack["Aet", true]).NotNull)
if (aet.Array != null && aet.Array.Length > 0)
{
AET.Data = new Pointer<AetData>[aet.Array.Length];
for (int i = 0; i < AET.Data.Length; i++)
MsgPackReader(aet.Array[i], ref AET.Data[i]);
}
aet.Dispose();
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
if (AET.Data == null || AET.Data.Length == 0) return;
MsgPack aet = new MsgPack(AET.Data.Length, "Aet");
for (int i = 0; i < AET.Data.Length; i++)
aet[i] = MsgPackWriter(ref AET.Data[i]);
aet.WriteAfterAll(true, file, json);
}
public void MsgPackReader(MsgPack msgPack, ref Pointer<AetData> aetData)
{
int i, i0;
aetData = default;
ref AetData aet = ref aetData.V;
aet.Name.V = msgPack.RS ("Name" );
aet.StartFrame = msgPack.RF32("StartFrame");
aet. EndFrame = msgPack.RF32( "EndFrame");
aet.FrameRate = msgPack.RF32("FrameRate" );
aet.BackColor = msgPack.RU32("BackColor" );
aet.Width = msgPack.RU32("Width" );
aet.Height = msgPack.RU32("Height" );
MsgPack temp;
if ((temp = msgPack["Camera"]).NotNull)
{
aet.Camera.O = 1;
aet.Camera.V.X = RKF(temp, "X");
aet.Camera.V.Y = RKF(temp, "Y");
}
if ((temp = msgPack["SoundEffect", true]).NotNull)
{
aet.SoundEffects.C = temp.Array.Length;
for (i = 0; i < aet.SoundEffects.C; i++)
aet.SoundEffects.E[i] = new AetSoundEffect { Unk = temp[i].RU32("Unk") };
}
if ((temp = msgPack["Surface", true]).NotNull)
{
aet.Surfaces.C = temp.Array.Length;
for (i = 0; i < aet.Surfaces.C; i++)
{
ref AetSurface region = ref aet.Surfaces.E[i];
region = default;
region.Color = temp[i].RU32("Color" );
region.Width = temp[i].RU16("Width" );
region.Height = temp[i].RU16("Height");
region.Frames = temp[i].RF32("Frames");
MsgPack sprite;
if ((sprite = temp[i]["Sprite", true]).NotNull)
{
region.Sprites.C = sprite.Array.Length;
for (i0 = 0; i0 < region.Sprites.C; i0++)
region.Sprites[i0] = new AetSpriteIdentifier() { Name = new Pointer<string>()
{ V = sprite[i0].RS("Name") }, ID = sprite[i0].RU32("ID") };
}
sprite.Dispose();
}
}
if ((temp = msgPack["Composition", true]).NotNull)
{
aet.Compositions.C = temp.Array.Length + 1;
for (i = 0; i < aet.Compositions.C - 1; i++)
{
ref AetComposition layer = ref aet.Compositions.E[i];
layer = default;
MsgPack @object;
if ((@object = temp[i]["Object", true]).NotNull)
{
layer.C = @object.Array.Length;
for (i0 = 0; i0 < layer.C; i0++)
RAO(ref layer.E[i0], @object[i0]);
}
@object.Dispose();
}
}
else aet.Compositions.C = 1;
if ((temp = msgPack["Root", true]).NotNull)
{
i = aet.Compositions.C - 1;
aet.Compositions.E[i].C = temp.Array.Length;
for (i0 = 0; i0 < aet.Compositions[i].C; i0++)
RAO(ref aet.Compositions.E[i].E[i0], temp[i0]);
}
temp.Dispose();
}
public MsgPack MsgPackWriter(ref Pointer<AetData> aetData)
{
int i, i0;
if (aetData.O <= 0) return MsgPack.Null;
ref AetData aet = ref aetData.V;
MsgPack msgPack = MsgPack.New.Add("Name", aet.Name.V).Add("StartFrame", aet.StartFrame)
.Add("EndFrame", aet.EndFrame).Add("FrameRate", aet.FrameRate)
.Add("BackColor", aet.BackColor).Add("Width", aet.Width).Add("Height", aet.Height);
if (aet.Camera.O > 0)
msgPack.Add(new MsgPack("Camera").Add(WMP(ref aet.Camera.V.X, "X"))
.Add(WMP(ref aet.Camera.V.Y, "Y")));
i = aet.Compositions.C - 1;
MsgPack rootLayer = new MsgPack(aet.Compositions[i].C, "Root");
for (i0 = 0; i0 < aet.Compositions[i].C; i0++)
rootLayer[i0] = WMP(ref aet.Compositions[i].E[i0]);
msgPack.Add(rootLayer);
if (aet.Compositions[i].C > 1)
{
MsgPack layers = new MsgPack(aet.Compositions.C - 1, "Composition");
for (i = 0; i < aet.Compositions.C - 1; i++)
{
ref AetComposition layer = ref aet.Compositions.E[i];
MsgPack Object = MsgPack.New.Add("ID", i);
if (layer.C > 0)
{
MsgPack objects = new MsgPack(layer.C, "Object");
for (i0 = 0; i0 < layer.C; i0++)
objects[i0] = WMP(ref layer.E[i0]);
Object.Add(objects);
}
layers[i] = Object;
}
msgPack.Add(layers);
}
MsgPack regions = new MsgPack(aet.Surfaces.C, "Surface");
for (i = 0; i < aet.Surfaces.C; i++)
{
ref AetSurface region = ref aet.Surfaces.E[i];
MsgPack entry = MsgPack.New.Add("ID", i).Add("Width", region.Width)
.Add("Height", region.Height).Add("Color", region.Color);
if (region.Sprites.C > 0)
{
entry.Add("Frames", region.Frames);
MsgPack sprite = new MsgPack(region.Sprites.C, "Sprite");
for (i0 = 0; i0 < region.Sprites.C; i0++)
sprite[i0] = MsgPack.New.Add("Name", region.Sprites[i0]
.Name.V).Add("ID", region.Sprites[i0].ID);
entry.Add(sprite);
}
regions[i] = entry;
}
msgPack.Add(regions);
MsgPack sounds = new MsgPack(aet.SoundEffects.C, "SoundEffect");
for (i = 0; i < aet.SoundEffects.C; i++)
sounds[i] = MsgPack.New.Add("ID", i).Add("Unk", aet.SoundEffects[i].Unk);
msgPack.Add(sounds);
return msgPack;
}
private AetLayer RAO(ref AetLayer layer, MsgPack msg)
{
uint i;
layer = default;
layer.ID = msg.RI32("ID" );
layer.Name.V = msg.RS ("Name" );
layer.StartFrame = msg.RF32("StartFrame" );
layer. EndFrame = msg.RF32( "EndFrame" );
layer.StartOffset = msg.RF32("StartOffset" );
layer.PlaybackSpeed = msg.RF32("PlaybackSpeed");
layer.Flags = (AetLayer.AetLayerFlags)msg.RU16("Flags");
layer.Pad = msg.RU8("Pad");
System.Enum.TryParse(msg.RS("Type"), out layer.Type);
layer.DataID = msg.RnI32("DataID" ) ?? -1;
layer.ParentLayer = msg.RnI32("ParentLayer") ?? -1;
MsgPack temp;
if ((temp = msg["Markers", true]).NotNull)
{
layer.Marker.C = temp.Array.Length;
for (i = 0; i < layer.Marker.C; i++)
{
layer.Marker.E[i].Frame = temp[i].RF32("Frame");
layer.Marker.E[i]. Name.V = temp[i].RS ( "Name");
}
}
if ((temp = msg["AnimationData"]).NotNull)
{
layer.Data.O = 1;
ref AnimationData data = ref layer.Data.V;
System.Enum.TryParse(temp.RS("BlendMode"), out data.Mode);
data.UseTextureMask = temp.RB("UseTextureMask");
data. OriginX = RKF(temp, "OriginX");
data. OriginY = RKF(temp, "OriginY");
data.PositionX = RKF(temp, "PositionX");
data.PositionY = RKF(temp, "PositionY");
data.Rotation = RKF(temp, "Rotation" );
data. ScaleX = RKF(temp, "ScaleX");
data. ScaleY = RKF(temp, "ScaleY");
data.Opacity = RKF(temp, "Opacity" );
MsgPack persp;
if ((persp = temp["Persp"]).NotNull)
{
data.Persp.O = 1;
ref AnimationData.Perspective dataPersp = ref data.Persp.V;
dataPersp.Unk1 = RKF(persp, "Unk1" );
dataPersp.Unk2 = RKF(persp, "Unk2" );
dataPersp.RotReturnX = RKF(persp, "RotReturnX");
dataPersp.RotReturnY = RKF(persp, "RotReturnY");
dataPersp.RotReturnZ = RKF(persp, "RotReturnZ");
dataPersp. RotationX = RKF(persp, "RotationX");
dataPersp. RotationY = RKF(persp, "RotationY");
dataPersp. ScaleZ = RKF(persp, "ScaleZ");
}
persp.Dispose();
}
if ((temp = msg["AudioData"]).NotNull)
{
layer.ExtraData.O = 1;
ref AudioData data = ref layer.ExtraData.V;
data.Data0 = RKF(temp, "Data0");
data.Data1 = RKF(temp, "Data1");
data.Data2 = RKF(temp, "Data2");
data.Data3 = RKF(temp, "Data3");
}
temp.Dispose();
return layer;
}
private CountPointer<KFT2> RKF(MsgPack msg, string name)
{
CountPointer<KFT2> kf = default;
MsgPack temp;
float? value = msg.RnF32(name);
if (value != null) { kf.C = 1; kf.E[0].V = value.Value; }
if ((temp = msg[name, true]).NotNull && temp.Array.Length > 1)
{
kf.E = new KFT2[temp.Array.Length];
for (int i = 0; i < kf.E.Length; i++)
{
if (temp[i].Array == null ||
temp[i].Array.Length == 0) continue;
else if (temp[i].Array.Length == 1)
kf.E[i] = new KFT2(temp[i][0].RF32());
else if (temp[i].Array.Length == 2)
kf.E[i] = new KFT2(temp[i][0].RF32(), temp[i][1].RF32());
else if (temp[i].Array.Length == 3)
kf.E[i] = new KFT2(temp[i][0].RF32(), temp[i][1].RF32(), temp[i][2].RF32());
}
}
temp.Dispose();
return kf;
}
private MsgPack WMP(ref AetLayer layer, string name = null)
{
int i;
MsgPack @object = new MsgPack(name).Add("ID", layer.ID).Add("Name", layer.Name.V)
.Add("StartFrame", layer.StartFrame).Add("EndFrame", layer.EndFrame)
.Add("StartOffset", layer.StartOffset).Add("PlaybackSpeed", layer.PlaybackSpeed)
.Add("Flags", (ushort)layer.Flags).Add("Pad", layer.Pad).Add("Type", layer.Type.ToString());
if (layer.DataID > -1) @object.Add("DataID" , layer.DataID );
if (layer.ParentLayer > -1) @object.Add("ParentLayer", layer.ParentLayer);
if (layer.Marker.C > 0)
{
MsgPack markers = new MsgPack(layer.Marker.C, "Markers");
for (i = 0; i < layer.Marker.C; i++)
markers[i] = MsgPack.New.Add("Frame", layer.Marker[i].Frame )
.Add( "Name", layer.Marker[i]. Name.V);
@object.Add(markers);
}
if (layer.Data.O > 0)
{
ref AnimationData data = ref layer.Data.V;
MsgPack animationData = new MsgPack("AnimationData").Add("BlendMode",
data.Mode.ToString()).Add("UseTextureMask", data.UseTextureMask);
animationData.Add(WMP(ref data.OriginX , "OriginX"));
animationData.Add(WMP(ref data.OriginY , "OriginY"));
animationData.Add(WMP(ref data.PositionX, "PositionX"));
animationData.Add(WMP(ref data.PositionY, "PositionY"));
animationData.Add(WMP(ref data.Rotation , "Rotation" ));
animationData.Add(WMP(ref data. ScaleX, "ScaleX"));
animationData.Add(WMP(ref data. ScaleY, "ScaleY"));
animationData.Add(WMP(ref data.Opacity , "Opacity" ));
if (data.Persp.O > 0)
{
ref AnimationData.Perspective dataPersp = ref data.Persp.V;
MsgPack persp = new MsgPack("Persp");
persp.Add(WMP(ref dataPersp.Unk1 , "Unk1" ));
persp.Add(WMP(ref dataPersp.Unk2 , "Unk2" ));
persp.Add(WMP(ref dataPersp.RotReturnX, "RotReturnX"));
persp.Add(WMP(ref dataPersp.RotReturnY, "RotReturnY"));
persp.Add(WMP(ref dataPersp.RotReturnZ, "RotReturnZ"));
persp.Add(WMP(ref dataPersp. RotationX, "RotationX"));
persp.Add(WMP(ref dataPersp. RotationY, "RotationY"));
persp.Add(WMP(ref dataPersp. ScaleZ, "ScaleZ"));
animationData.Add(persp);
}
@object.Add(animationData);
}
if (layer.ExtraData.O > 0)
{
ref AudioData data = ref layer.ExtraData.V;
MsgPack extraData = new MsgPack("AudioData");
extraData.Add(WMP(ref data.Data0, "Data0"));
extraData.Add(WMP(ref data.Data1, "Data1"));
extraData.Add(WMP(ref data.Data2, "Data2"));
extraData.Add(WMP(ref data.Data3, "Data3"));
@object.Add(extraData);
}
return @object;
}
private MsgPack WMP(ref CountPointer<KFT2> kfe, string name)
{
if (kfe.C < 1) return MsgPack.Null;
if (kfe.C == 1) return new MsgPack(name, kfe.E[0].V);
MsgPack msg = new MsgPack(kfe.C, name);
for (int i = 0; i < kfe.E.Length; i++)
{
IKF kf = kfe.E[i].Check();
if (kf is KFT0 kdt0) msg[i] = new MsgPack(null, new MsgPack[] { kdt0.F });
else if (kf is KFT1 kft1) msg[i] = new MsgPack(null, new MsgPack[] { kft1.F, kft1.V });
else if (kf is KFT2 kft2) msg[i] = new MsgPack(null, new MsgPack[] { kft2.F, kft2.V, kft2.T });
}
return msg;
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.Dispose(); AET = default; disposed = true; } }
}
}
+276
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@@ -0,0 +1,276 @@
//Original: https://github.com/blueskythlikesclouds/MikuMikuLibrary/
using System.Collections.Generic;
using KKdBaseLib;
using KKdMainLib.IO;
namespace KKdMainLib.DB
{
public class Aet : System.IDisposable
{
private int i, i0, i1, i2;
private Stream _IO;
public AetSet[] AetSets;
public void BINReader(string file)
{
_IO = File.OpenReader(file + ".bin");
int aetSetsLength = _IO.RI32();
int aetSetsOffset = _IO.RI32();
int aetsLength = _IO.RI32();
int aetsOffset = _IO.RI32();
_IO.P = aetSetsOffset;
AetSets = new AetSet[aetSetsLength];
for (i = 0; i < aetSetsLength; i++)
{
AetSets[i].Id = _IO.RI32();
AetSets[i].Name = _IO.RSaO();
AetSets[i].FileName = _IO.RSaO();
_IO.RI32();
AetSets[i].SpriteSetId = _IO.RI32();
}
int setIndex;
AET aet = new AET();
int[] AetCount = new int[aetSetsLength];
_IO.P = aetsOffset;
for (i = 0; i < aetsLength; i++)
{
_IO.PI64 += 10;
setIndex = _IO.RI16();
AetCount[setIndex]++;
}
for (int i = 0; i < aetSetsLength; i++)
{
AetSets[i].Aets = new AET[AetCount[i]];
AetCount[i] = 0;
}
_IO.P = aetsOffset;
for (i = 0; i < aetsLength; i++)
{
aet.Id = _IO.RI32();
aet.Name = _IO.RSaO();
_IO.RI16();
setIndex = _IO.RI16();
AetSets[setIndex].Aets[AetCount[setIndex]] = aet; AetCount[setIndex]++;
}
_IO.C();
}
public void BINWriter(string file)
{
if (AetSets == null) return;
if (AetSets.Length == 0) return;
List<string> SetName = new List<string>();
List<string> SetFileName = new List<string>();
List<int> Ids = new List<int>();
List<int> SetIds = new List<int>();
List<int> NotAdd = new List<int>();
AET temp;
AetSet set;
for (i = 0; i < AetSets.Length; i++)
{
set = AetSets[i];
if (set. Name != null)
if (SetName .Contains(set. Name)) { NotAdd.Add(i); continue; }
else SetName .Add (set. Name);
if (set.FileName != null)
if (SetFileName.Contains(set.FileName)) { NotAdd.Add(i); continue; }
else SetFileName.Add (set.FileName);
if (set.NewId)
{
AetSets[i].Id = null;
for (i0 = 0; i0 < set.Aets.Length; i0++) AetSets[i].Aets[i0].Id = null;
continue;
}
if (set.Id != null)
if (SetIds.Contains((int)set.Id)) { NotAdd.Add(i); continue; }
else SetIds.Add ((int)set.Id);
for (i0 = 0; i0 < set.Aets.Length; i0++)
{
temp = set.Aets[i0];
if (temp.Id != null)
if ( Ids.Contains((int)temp.Id)) { NotAdd.Add(i); break; }
else Ids.Add ((int)temp.Id);
}
}
SetName = null;
SetFileName = null;
for (i = 0; i < AetSets.Length; i++)
{
set = AetSets[i];
if (NotAdd.Contains(i)) continue;
if (!set.NewId) continue;
i1 = 0;
if (set.Id == null) while (true)
{ if (!SetIds.Contains(i1)) { AetSets[i].Id = i1; SetIds.Add(i1); break; } i1++; }
for (i0 = 0, i1 = 0; i0 < set.Aets.Length; i0++)
if (set.Aets[i0].Id == null) while (true) { if (!Ids.Contains(i1))
{ AetSets[i].Aets[i0].Id = i1; Ids.Add(i1); break; } i1++; }
}
Ids = null;
SetIds = null;
for (i = 0, i0 = 0, i2 = 0; i < AetSets.Length; i++)
if (!NotAdd.Contains(i)) { i0 += AetSets[i].Aets.Length; i2++; }
i1 = i0 * 12;
i1 = i1.A(0x20) + 0x20;
_IO = File.OpenWriter(file + ".bin", true);
_IO.W(i2);
_IO.W(i1);
_IO.W(i0);
_IO.W(0x20);
_IO.W(0x9066906690669066);
_IO.W(0x9066906690669066);
_IO.P = (i1 + i2 * 0x14).A(0x20);
for (i = 0; i < AetSets.Length; i++)
{
if (NotAdd.Contains(i)) continue;
AetSets[i]. NameOffset = _IO.P; _IO.W(AetSets[i]. Name + "\0");
AetSets[i].FileNameOffset = _IO.P; _IO.W(AetSets[i].FileName + "\0");
}
for (i = 0; i < AetSets.Length; i++)
{
if (NotAdd.Contains(i)) continue;
for (i0 = 0; i0 < AetSets[i].Aets.Length; i0++)
{ AetSets[i].Aets[i0].NameOffset = _IO.P; _IO.W(AetSets[i].Aets[i0].Name + "\0"); }
}
_IO.A(0x08, true);
_IO.P = 0x20;
for (i = 0, i2 = 0; i < AetSets.Length; i++)
{
if (NotAdd.Contains(i)) { i2++; continue; }
for (i0 = 0; i0 < AetSets[i].Aets.Length; i0++)
{
_IO.W(AetSets[i].Aets[i0].Id );
_IO.W(AetSets[i].Aets[i0].NameOffset);
_IO.W((ushort) i0 );
_IO.W((ushort)(i - i2));
}
}
_IO.A(0x20);
for (i = 0, i2 = 0; i < AetSets.Length; i++)
{
if (NotAdd.Contains(i)) { i2++; continue; }
_IO.W(AetSets[i].Id );
_IO.W(AetSets[i]. NameOffset);
_IO.W(AetSets[i].FileNameOffset);
_IO.W(i - i2);
_IO.W(AetSets[i].SpriteSetId );
}
_IO.C();
}
public void MsgPackReader(string file, bool json)
{
MsgPack MsgPack = file.ReadMPAllAtOnce(json);
MsgPack Temp = default;
if ((Temp = MsgPack["AetDB", true]).NotNull)
{
AetSets = new AetSet[Temp.Array.Length];
for (int i = 0; i < AetSets.Length; i++)
AetSets[i].ReadMsgPack(Temp[i]);
}
Temp.Dispose();
MsgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
if (AetSets == null) return;
if (AetSets.Length == 0) return;
MsgPack AetDB = new MsgPack(AetSets.Length, "AetDB");
for (i = 0; i < AetSets.Length; i++)
AetDB[i] = AetSets[i].WriteMsgPack();
AetDB.Write(true, file, json);
}
private bool disposed = false;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); AetSets = null; disposed = true; } }
public struct AET
{
public int NameOffset;
public int? Id;
public string Name;
public void ReadMsgPack(MsgPack msg)
{ Id = msg.RnU16("Id"); Name = msg.RS("Name"); }
public MsgPack WriteMsgPack() =>
MsgPack.New.Add("Id", Id).Add("Name", Name);
}
public struct AetSet
{
public int NameOffset;
public int FileNameOffset;
public int? Id;
public int? SpriteSetId;
public bool NewId;
public string Name;
public string FileName;
public AET[] Aets;
public void ReadMsgPack(MsgPack msg)
{
FileName = msg.RS ("FileName" );
Id = msg.RnU16( "Id");
Name = msg.RS ( "Name" );
NewId = msg.RB("NewId" );
SpriteSetId = msg.RnU16("SpriteSetId");
MsgPack Temp;
if ((Temp = msg["Aets", true]).NotNull)
{
Aets = new AET[Temp.Array.Length];
for (int i0 = 0; i0 < Aets.Length; i0++)
Aets[i0].ReadMsgPack(Temp[i0]);
}
Temp.Dispose();
}
public MsgPack WriteMsgPack()
{
MsgPack Aets = new MsgPack(this.Aets.Length, "Aets");
for (int i0 = 0; i0 < this.Aets.Length; i0++)
Aets[i0] = this.Aets[i0].WriteMsgPack();
return MsgPack.New.Add("FileName", FileName).Add("Id", Id)
.Add("Name", Name).Add("SpriteSetId", SpriteSetId).Add(Aets);
}
}
}
}
+115 -122
View File
@@ -1,171 +1,164 @@
using System;
using System.Collections.Generic;
using KKdBaseLib;
using KKdMainLib.IO;
using KKdMainLib.MessagePack;
using MPIO = KKdMainLib.MessagePack.IO;
namespace KKdMainLib.DB
{
public struct Auth
public class Auth : IDisposable
{
public int Signature { get; private set; }
public string[] Category { get; private set; }
public UID[] _UID { get; private set; }
public Stream IO { get; private set; }
private int i;
private Stream _IO;
public int BINReader(string file)
public string[] Category;
public UID[] UIDs;
public void BINReader(string file)
{
Dictionary<string, object> Dict = new Dictionary<string, object>();
Dictionary<string, object> dict = new Dictionary<string, object>();
string[] dataArray;
IO = File.OpenReader(file + ".bin");
_IO = File.OpenReader(file + ".bin");
IO.Format = Main.Format.F;
Signature = IO.ReadInt32();
if (Signature != 0x44334123) return 0;
Signature = IO.ReadInt32();
if (Signature != 0x5F5F5F41) return 0;
IO.ReadInt64();
_IO.Format = Format.F;
int signature = _IO.RI32();
if (signature != 0x44334123) return;
signature = _IO.RI32();
if (signature != 0x5F5F5F41) return;
_IO.RI64();
string[] STRData = IO.ReadString(IO.Length - IO.Position).Replace("\r", "").Split('\n');
for (int i = 0; i < STRData.Length; i++)
string[] strData = _IO.RS(_IO.L - _IO.P).Replace("\r", "").Split('\n');
for (i = 0; i < strData.Length; i++)
{
dataArray = STRData[i].Split('=');
dataArray = strData[i].Split('=');
if (dataArray.Length == 2)
Dict.GetDictionary(dataArray[0], dataArray[1]);
dict.GetDictionary(dataArray[0], dataArray[1]);
}
if (Dict.FindValue(out string value, "category.length"))
if (dict.FindValue(out string value, "category.length"))
{
Category = new string[int.Parse(value)];
for (int i0 = 0; i0 < Category.Length; i0++)
if (Dict.FindValue(out value, "category." + i0 + ".value"))
Category[i0] = value;
for (i = 0; i < Category.Length; i++)
if (dict.FindValue(out value, "category." + i + ".value"))
Category[i] = value;
}
if (Dict.FindValue(out value, "uid.length"))
if (dict.FindValue(out value, "uid.length"))
{
_UID = new UID[int.Parse(value)];
for (int i0 = 0; i0 < _UID.Length; i0++)
UIDs = new UID[int.Parse(value)];
for (i = 0; i < UIDs.Length; i++)
{
Dict.FindValue(out _UID[i0].Category, "uid." + i0 + ".category");
Dict.FindValue(out _UID[i0].Size , "uid." + i0 + ".size" );
Dict.FindValue(out _UID[i0].Value , "uid." + i0 + ".value" );
dict.FindValue(out UIDs[i].Category, "uid." + i + ".category");
dict.FindValue(out UIDs[i].OrgUid , "uid." + i + ".org_uid" );
dict.FindValue(out UIDs[i].Size , "uid." + i + ".size" );
dict.FindValue(out UIDs[i].Value , "uid." + i + ".value" );
}
}
IO.Close();
return 1;
_IO.C();
}
public void BINWriter(string file)
{
IO = File.OpenWriter(file + ".bin", true);
_IO = File.OpenWriter(file + ".bin", true);
IO.Write("#A3DA__________\n");
IO.Write("#", DateTime.UtcNow.ToString("ddd MMM dd HH:mm:ss yyyy",
System.Globalization.CultureInfo.InvariantCulture));
_IO.W("#A3DA__________\n");
_IO.W("#" + DateTime.UtcNow.ToString("ddd MMM dd HH:mm:ss yyyy",
System.Globalization.CultureInfo.InvariantCulture) + "\n");
if (Category != null)
{
int[] SO = Category.Length.SortWriter();
int[] so = Category.Length.SortWriter();
for (i = 0; i < Category.Length; i++)
_IO.W($"category.{so[i]}.value={ Category[so[i]]}\n");
_IO.W($"category.length={Category.Length}\n");
}
if (UIDs != null)
{
int[] so = UIDs.Length.SortWriter();
for (i = 0; i < UIDs.Length; i++)
{
if (UIDs[so[i]].Category != null && UIDs[so[i]].Category != "")
_IO.W($"uid.{so[i]}.category=" + UIDs[so[i]].Category + "\n");
if (UIDs[so[i]].OrgUid != null)
_IO.W($"uid.{so[i]}.org_uid=" + UIDs[so[i]].OrgUid + "\n");
if (UIDs[so[i]].Size != null)
_IO.W($"uid.{so[i]}.size=" + UIDs[so[i]].Size + "\n");
if (UIDs[so[i]].Value != null && UIDs[so[i]].Value != "")
_IO.W($"uid.{so[i]}.value=" + UIDs[so[i]].Value + "\n");
}
_IO.W($"uid.length={UIDs.Length}\n");
}
_IO.C();
}
public void MsgPackReader(string file, bool json)
{
MsgPack msgPack = file.ReadMPAllAtOnce(json);
MsgPack authDB;
if ((authDB = msgPack["AuthDB"]).NotNull)
{
MsgPack temp;
if ((temp = authDB["Category", true]).NotNull)
{
Category = new string[temp.Array.Length];
for (int i = 0; i < Category.Length; i++)
Category[i] = temp[i].RS();
}
if ((temp = authDB["UID", true]).NotNull)
{
UIDs = new UID[temp.Array.Length];
for (int i = 0; i < UIDs.Length; i++)
{
UIDs[i].Category = temp[i].RS ("Category");
UIDs[i].OrgUid = temp[i].RnI32("OrgUid" );
UIDs[i].Size = temp[i].RnI32("Size" );
UIDs[i].Value = temp[i].RS ("Value" );
}
}
temp.Dispose();
}
authDB.Dispose();
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
MsgPack authDB = new MsgPack("AuthDB");
if (Category != null)
{
MsgPack category = new MsgPack(Category.Length, "Category");
for (int i = 0; i < Category.Length; i++)
if (Category[SO[i]] != null)
IO.Write("category." + SO[i] + ".value=", Category[SO[i]]);
IO.Write("category.length=", Category.Length);
category[i] = (MsgPack)Category[i];
authDB.Add(category);
}
if (_UID != null)
if (UIDs != null)
{
int[] SO = _UID.Length.SortWriter();
for (int i = 0; i < _UID.Length; i++)
{
if (_UID[SO[i]].Category != null)
if (_UID[SO[i]].Category != "")
IO.Write("uid." + SO[i] + ".category=", _UID[SO[i]].Category);
if (_UID[SO[i]].Size != null)
IO.Write("uid." + SO[i] + ".size=" , _UID[SO[i]].Size );
if (_UID[SO[i]].Value != null)
if (_UID[SO[i]].Value != "")
IO.Write("uid." + SO[i] + ".value=" , _UID[SO[i]].Value );
}
IO.Write("uid.length=", _UID.Length);
MsgPack uid = new MsgPack(UIDs.Length, "UID");
for (int i = 0; i < UIDs.Length; i++)
uid[i] = MsgPack.New.Add("Category", UIDs[i].Category)
.Add("OrgUid" , UIDs[i].OrgUid )
.Add("Size" , UIDs[i].Size )
.Add("Value" , UIDs[i].Value );
authDB.Add(uid);
}
IO.Close();
authDB.Write(true, file, json);
}
public void MsgPackReader(string file)
{
MPIO IO = new MPIO(File.OpenReader(file + ".mp"));
MsgPack MsgPack = IO.Read();
IO.Close();
IO = null;
if (MsgPack.Element("AuthDB", out MsgPack AuthDB))
{
if (AuthDB.Element("Category", out MsgPack Temp, typeof(object[])))
{
this.Category = new string[((object[])Temp.Object).Length];
MsgPack Category = new MsgPack();
for (int i = 0; i < this.Category.Length; i++)
if (Temp[i].GetType() == typeof(MsgPack))
{
Category = (MsgPack)Temp[i];
this.Category[i] = Category.ReadString();
}
}
if (AuthDB.Element("UID", out Temp, typeof(object[])))
{
_UID = new UID[((object[])Temp.Object).Length];
MsgPack UID = new MsgPack();
for (int i = 0; i < _UID.Length; i++)
if (Temp[i].GetType() == typeof(MsgPack))
{
UID = (MsgPack)Temp[i];
_UID[i].Category = UID.ReadString("C");
_UID[i].Size = UID.ReadNInt32("S");
_UID[i].Value = UID.ReadString("V");
}
}
}
MsgPack = null;
}
public void MsgPackWriter(string file)
{
MsgPack AuthDB = new MsgPack("AuthDB");
if (Category != null)
{
MsgPack Category = new MsgPack("Category", this.Category.Length);
for (int i = 0; i < this.Category.Length; i++)
Category[i] = this.Category[i];
AuthDB.Add(Category);
}
if (_UID != null)
{
MsgPack UID = new MsgPack("UID", _UID.Length);
for (int i = 0; i < _UID.Length; i++)
UID[i] = new MsgPack()
.Add("C", _UID[i].Category)
.Add("S", _UID[i].Size )
.Add("V", _UID[i].Value );
AuthDB.Add(UID);
}
MsgPack MsgPack = new MsgPack(MsgPack.Types.FixMap).Add(AuthDB);
MPIO IO = new MPIO(File.OpenWriter(file + ".mp", true));
IO.Write(MsgPack, true);
IO = null;
MsgPack = null;
}
private bool disposed = false;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); Category = null; UIDs = null; disposed = true; } }
public struct UID
{
public int? Size;
public int? OrgUid;
public string Value;
public string Category;
}
+324
View File
@@ -0,0 +1,324 @@
//Original: https://github.com/blueskythlikesclouds/MikuMikuLibrary/
using System.Collections.Generic;
using KKdBaseLib;
using KKdMainLib.IO;
namespace KKdMainLib.DB
{
public class Spr : System.IDisposable
{
private int i, i0, i1, i2;
private Stream _IO;
public SpriteSet[] SpriteSets;
public void BINReader(string file)
{
_IO = File.OpenReader(file + ".bin");
int spriteSetsLength = _IO.RI32();
int spriteSetsOffset = _IO.RI32();
int spritesLength = _IO.RI32();
int spritesOffset = _IO.RI32();
_IO.P = spriteSetsOffset;
SpriteSets = new SpriteSet[spriteSetsLength];
for (i = 0; i < spriteSetsLength; i++)
{
SpriteSets[i].Id = _IO.RI32();
SpriteSets[i].Name = _IO.RSaO();
SpriteSets[i].FileName = _IO.RSaO();
_IO.RI32();
}
int setIndex;
bool isTexture;
SpriteTexture st = new SpriteTexture();
int[] sprCount = new int[spriteSetsLength];
int[] texCount = new int[spriteSetsLength];
_IO.P = spritesOffset;
for (i = 0; i < spritesLength; i++)
{
_IO.PI64 += 10;
setIndex = _IO.RI16();
isTexture = (setIndex & 0x1000) == 0x1000;
setIndex &= 0xFFF;
if (isTexture) texCount[setIndex]++;
else sprCount[setIndex]++;
}
for (int i = 0; i < spriteSetsLength; i++)
{
SpriteSets[i].Sprites = new SpriteTexture[sprCount[i]];
SpriteSets[i].Textures = new SpriteTexture[texCount[i]];
sprCount[i] = 0;
texCount[i] = 0;
}
_IO.P = spritesOffset;
for (i = 0; i < spritesLength; i++)
{
st.Id = _IO.RI32();
st.Name = _IO.RSaO();
_IO.RI16();
setIndex = _IO.RI16();
isTexture = (setIndex & 0x1000) == 0x1000;
setIndex &= 0xFFF;
if (isTexture) { SpriteSets[setIndex].Textures[texCount[setIndex]] = st; texCount[setIndex]++; }
else { SpriteSets[setIndex]. Sprites[sprCount[setIndex]] = st; sprCount[setIndex]++; }
}
_IO.C();
}
public void BINWriter(string file)
{
if (SpriteSets == null) return;
if (SpriteSets.Length == 0) return;
List<string> setName = new List<string>();
List<string> setFileName = new List<string>();
List<int> ids = new List<int>();
List<int> setIds = new List<int>();
List<int> notAdd = new List<int>();
SpriteTexture temp;
SpriteSet set;
for (i = 0; i < SpriteSets.Length; i++)
{
set = SpriteSets[i];
if (set. Name != null)
if (setName .Contains(set. Name)) { notAdd.Add(i); continue; }
else setName .Add (set. Name);
if (set.FileName != null)
if (setFileName.Contains(set.FileName)) { notAdd.Add(i); continue; }
else setFileName.Add (set.FileName);
if (set.NewId)
{
SpriteSets[i].Id = null;
for (i0 = 0; i0 < set.Textures.Length; i0++) SpriteSets[i].Textures[i0].Id = null;
for (i0 = 0; i0 < set. Sprites.Length; i0++) SpriteSets[i]. Sprites[i0].Id = null;
continue;
}
if (set.Id != null)
if (setIds.Contains((int)set.Id)) { notAdd.Add(i); continue; }
else setIds.Add ((int)set.Id);
for (i0 = 0; i0 < set. Sprites.Length; i0++)
{
temp = set. Sprites[i0];
if (temp.Id != null)
if ( ids.Contains((int)temp.Id)) { notAdd.Add(i); break; }
else ids.Add ((int)temp.Id);
}
if (i0 < set.Sprites.Length) continue;
for (i0 = 0; i0 < set.Textures.Length; i0++)
{
temp = set.Textures[i0];
if (temp.Id != null)
if ( ids.Contains((int)temp.Id)) { notAdd.Add(i); break; }
else ids.Add ((int)temp.Id);
}
}
setName = null;
setFileName = null;
for (i = 0; i < SpriteSets.Length; i++)
{
set = SpriteSets[i];
if (notAdd.Contains(i)) continue;
if (!set.NewId) continue;
i1 = 0;
if (set.Id == null) while (true)
{ if (!setIds.Contains(i1)) { SpriteSets[i].Id = i1; setIds.Add(i1); break; } i1++; }
for (i0 = 0, i1 = 0; i0 < set.Textures.Length; i0++)
while (set.Textures[i0].Id == null)
if (!ids.Contains(i1)) ids.Add((int)(SpriteSets[i].Textures[i0].Id = i1)); else i1++;
for (i0 = 0, i1 = 0; i0 < set. Sprites.Length; i0++)
while (set. Sprites[i0].Id == null)
if (!ids.Contains(i1)) ids.Add((int)(SpriteSets[i]. Sprites[i0].Id = i1)); else i1++;
}
ids = null;
setIds = null;
for (i = 0, i0 = 0, i2 = 0; i < SpriteSets.Length; i++)
if (!notAdd.Contains(i)) { i0 += SpriteSets[i].Sprites.Length + SpriteSets[i].Textures.Length; i2++; }
i1 = i0 * 12;
i1 = i1.A(0x20) + 0x20;
_IO = File.OpenWriter(file + ".bin", true);
_IO.W(i2);
_IO.W(i1);
_IO.W(i0);
_IO.W(0x20);
_IO.W(0x9066906690669066);
_IO.W(0x9066906690669066);
_IO.P = (i1 + i2 * 0x10).A(0x20);
for (i = 0; i < SpriteSets.Length; i++)
{
if (notAdd.Contains(i)) continue;
for (i0 = 0; i0 < SpriteSets[i].Textures.Length; i0++)
{ SpriteSets[i].Textures[i0].NameOffset = _IO.P;
_IO.W(SpriteSets[i].Textures[i0].Name + "\0"); }
for (i0 = 0; i0 < SpriteSets[i]. Sprites.Length; i0++)
{ SpriteSets[i]. Sprites[i0].NameOffset = _IO.P;
_IO.W(SpriteSets[i]. Sprites[i0].Name + "\0"); }
}
for (i = 0; i < SpriteSets.Length; i++)
{
if (notAdd.Contains(i)) continue;
SpriteSets[i]. NameOffset = _IO.P; _IO.W(SpriteSets[i]. Name + "\0");
SpriteSets[i].FileNameOffset = _IO.P; _IO.W(SpriteSets[i].FileName + "\0");
}
_IO.A(0x08, true);
_IO.P = 0x20;
for (i = 0, i2 = 0; i < SpriteSets.Length; i++)
{
if (notAdd.Contains(i)) { i2++; continue; }
for (i0 = 0; i0 < SpriteSets[i].Textures.Length; i0++)
{
_IO.W(SpriteSets[i].Textures[i0].Id );
_IO.W(SpriteSets[i].Textures[i0].NameOffset);
_IO.W((ushort) i0 );
_IO.W((ushort)(0x1000 | (i - i2)));
}
for (i0 = 0; i0 < SpriteSets[i]. Sprites.Length; i0++)
{
_IO.W(SpriteSets[i]. Sprites[i0].Id );
_IO.W(SpriteSets[i]. Sprites[i0].NameOffset);
_IO.W((ushort) i0 );
_IO.W((ushort)(i - i2));
}
}
_IO.A(0x20);
for (i = 0, i2 = 0; i < SpriteSets.Length; i++)
{
if (notAdd.Contains(i)) { i2++; continue; }
_IO.W(SpriteSets[i].Id );
_IO.W(SpriteSets[i]. NameOffset);
_IO.W(SpriteSets[i].FileNameOffset);
_IO.W(i - i2);
}
_IO.C();
}
public void MsgPackReader(string file, bool json = false)
{
MsgPack msgPack = file.ReadMPAllAtOnce(json);
MsgPack sprDB;
if ((sprDB = msgPack["SprDB", true]).NotNull)
{
SpriteSets = new SpriteSet[sprDB.Array.Length];
for (int i = 0; i < SpriteSets.Length; i++)
SpriteSets[i].ReadMsgPack(sprDB[i]);
}
sprDB.Dispose();
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
if (SpriteSets == null) return;
if (SpriteSets.Length == 0) return;
MsgPack sprDB = new MsgPack(SpriteSets.Length, "SprDB");
for (i = 0; i < SpriteSets.Length; i++)
sprDB[i] = SpriteSets[i].WriteMsgPack();
sprDB.Write(true, file, json);
}
private bool disposed = false;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); SpriteSets = null; disposed = true; } }
public struct SpriteTexture
{
public int NameOffset;
public int? Id;
public string Name;
public void ReadMsgPack(MsgPack msg)
{ Id = msg.RnI32("Id"); Name = msg.RS("Name"); }
public MsgPack WriteMsgPack() =>
MsgPack.New.Add("Id", Id).Add("Name", Name);
}
public struct SpriteSet
{
public int NameOffset;
public int FileNameOffset;
public int? Id;
public bool NewId;
public string Name;
public string FileName;
public SpriteTexture[] Sprites;
public SpriteTexture[] Textures;
public void ReadMsgPack(MsgPack msg)
{
FileName = msg.RS ("FileName");
Id = msg.RnI32( "Id" );
Name = msg.RS ("Name" );
NewId = msg.RB ("NewId" );
MsgPack temp;
if ((temp = msg["Sprites", true]).NotNull)
{
Sprites = new SpriteTexture[temp.Array.Length];
for (int i0 = 0; i0 < Sprites.Length; i0++)
Sprites[i0].ReadMsgPack(temp[i0]);
}
if ((temp = msg["Textures", true]).NotNull)
{
Textures = new SpriteTexture[temp.Array.Length];
for (int i0 = 0; i0 < Textures.Length; i0++)
Textures[i0].ReadMsgPack(temp[i0]);
}
temp.Dispose();
}
public MsgPack WriteMsgPack()
{
MsgPack sprites = new MsgPack( Sprites.Length, "Sprites");
for (int i0 = 0; i0 < Sprites.Length; i0++)
sprites[i0] = Sprites[i0].WriteMsgPack();
MsgPack textures = new MsgPack(Textures.Length, "Textures");
for (int i0 = 0; i0 < Textures.Length; i0++)
textures[i0] = Textures[i0].WriteMsgPack();
return MsgPack.New.Add("FileName", FileName).Add("Id", Id)
.Add("Name", Name).Add(sprites).Add(textures);
}
}
}
}
+176 -210
View File
@@ -1,275 +1,229 @@
using System.Collections.Generic;
using KKdBaseLib;
using KKdBaseLib.F2;
using KKdMainLib.IO;
using KKdMainLib.MessagePack;
using MPIO = KKdMainLib.MessagePack.IO;
namespace KKdMainLib
{
public class DEX
public struct DEX : System.IDisposable
{
public DEX()
{ Dex = null; Header = new PDHead(); }
private int i, i0, i1;
private Header header;
private Stream _IO;
private int Offset = 0;
private PDHead Header;
private MsgPack MsgPack;
public Stream IO;
public EXP[] Dex;
public int DEXReader(string filepath, string ext)
public void DEXReader(string filepath, string ext)
{
Header = new PDHead();
IO = File.OpenReader(filepath + ext);
Dex = null;
header = new Header();
_IO = File.OpenReader(filepath + ext);
Header.Format = Main.Format.F;
Header.Signature = IO.ReadInt32();
if (Header.Signature == 0x43505845)
Header = IO.ReadHeader(true);
if (Header.Signature != 0x64)
return 0;
header.Format = Format.F;
header.SectionSignature = _IO.RI32();
if (header.SectionSignature == 0x43505845)
header = _IO.ReadHeader(true, true);
if (header.SectionSignature != 0x64) return;
Offset = IO.Position - 0x4;
Dex = new EXP[IO.ReadInt32()];
int DEXOffset = IO.ReadInt32();
if (IO.ReadInt32() == 0x00) Header.Format = Main.Format.X;
int DEXNameOffset = IO.ReadInt32();
if (Header.IsX) IO.ReadInt32();
_IO.O = _IO.P - 0x4;
Dex = new EXP[_IO.RI32()];
int DEXOffset = _IO.RI32();
int DEXNameOffset = _IO.RI32();
if (DEXNameOffset == 0x00) { _IO.Format = header.Format = Format.X; DEXNameOffset = (int)_IO.RIX(); }
IO.Seek(DEXOffset + Offset, 0);
for (int i0 = 0; i0 < Dex.Length; i0++)
Dex[i0] = new EXP { Main = new List<EXPElement>(), Eyes = new List<EXPElement>() };
for (int i0 = 0; i0 < Dex.Length; i0++)
_IO.P = DEXOffset;
for (i = 0; i < Dex.Length; i++)
{
Dex[i0].MainOffset = IO.ReadInt32();
if (Header.IsX) IO.ReadInt32();
Dex[i0].EyesOffset = IO.ReadInt32();
if (Header.IsX) IO.ReadInt32();
}
IO.Seek(DEXNameOffset + Offset, 0);
for (int i0 = 0; i0 < Dex.Length; i0++)
{
Dex[i0].NameOffset = IO.ReadInt32();
if (Header.IsX) IO.ReadInt32();
Dex[i].MainOffset = (int)_IO.RIX();
Dex[i].EyesOffset = (int)_IO.RIX();
}
_IO.P = DEXNameOffset;
for (i = 0; i < Dex.Length; i++)
Dex[i].NameOffset = (int)_IO.RIX();
for (int i0 = 0; i0 < Dex.Length; i0++)
for (i = 0; i < Dex.Length; i++)
{
EXPElement element = new EXPElement();
IO.Seek(Dex[i0].MainOffset + Offset, 0);
Dex[i].Main = KKdList<EXPElement>.New;
_IO.P = Dex[i].MainOffset;
while (true)
{
element.Frame = IO.ReadSingle();
element.Both = IO.ReadUInt16();
element.ID = IO.ReadUInt16();
element.Value = IO.ReadSingle();
element.Trans = IO.ReadSingle();
Dex[i0].Main.Add(element);
if (element.Frame == 999999 || element.Both == 0xFFFF)
break;
element.Frame = _IO.RF32();
element.Both = _IO.RU16();
element.ID = _IO.RU16();
element.Value = _IO.RF32();
element.Trans = _IO.RF32();
if (element.Frame == 999999 || element.Both == 0xFFFF) break;
Dex[i].Main.Add(element);
}
IO.Seek(Dex[i0].EyesOffset + Offset, 0);
Dex[i].Eyes = KKdList<EXPElement>.New;
_IO.P = Dex[i].EyesOffset;
while(true)
{
element.Frame = IO.ReadSingle();
element.Both = IO.ReadUInt16();
element.ID = IO.ReadUInt16();
element.Value = IO.ReadSingle();
element.Trans = IO.ReadSingle();
Dex[i0].Eyes.Add(element);
if (element.Frame == 999999 || element.Both == 0xFFFF)
break;
element.Frame = _IO.RF32();
element.Both = _IO.RU16();
element.ID = _IO.RU16();
element.Value = _IO.RF32();
element.Trans = _IO.RF32();
if (element.Frame == 999999 || element.Both == 0xFFFF) break;
Dex[i].Eyes.Add(element);
}
IO.Seek(Dex[i0].NameOffset + Offset, 0);
Dex[i0].Name = IO.NullTerminatedUTF8();
Dex[i].Name = _IO.RSaO(Dex[i].NameOffset);
}
IO.Close();
return 1;
_IO.C();
}
public void DEXWriter(string filepath, Main.Format Format)
public void DEXWriter(string filepath, Format Format)
{
Header = new PDHead() { Format = Format };
IO = File.OpenWriter(filepath + (Header.Format > Main.Format.F ? ".Dex" : ".bin"), true);
IO.Format = Header.Format;
if (Dex == null || Dex.Length < 1) return;
if (IO.Format > Main.Format.F)
header = new Header();
_IO = File.OpenWriter(filepath + (Format > Format.F && Format < Format.FT ? ".dex" : ".bin"), true);
header.Format = _IO.Format = Format;
_IO.O = Format > Format.F ? 0x20 : 0;
_IO.W(0x64);
_IO.W(Dex.Length);
_IO.WX(header.IsX ? 0x28 : 0x20);
_IO.WX(0x00);
int Position0 = _IO.P;
_IO.W(0x00L);
_IO.W(0x00L);
for (i = 0; i < Dex.Length * 3; i++) _IO.WX(0x00);
_IO.A(0x20);
for (i0 = 0; i0 < Dex.Length; i0++)
{
Header.Lenght = 0x20;
Header.DataSize = 0x00;
Header.Signature = 0x43505845;
Header.SectionSize = 0x00;
IO.Write(Header);
}
IO.Write(0x64);
IO.Write(Dex.Length);
if (Header.IsX) IO.Write((long)0x28);
else IO.Write( 0x20);
if (Header.IsX) IO.Write((long)0x00);
else IO.Write( 0x00);
int Position0 = IO.Position;
IO.Write((long)0x00);
IO.Write((long)0x00);
for (int i = 0; i < Dex.Length * 3; i++)
if (Header.IsX) IO.Write((long)0x00);
else IO.Write( 0x00);
IO.Align(0x20, true);
for (int i0 = 0; i0 < Dex.Length; i0++)
{
Dex[i0].MainOffset = IO.Position - Header.Lenght;
for (int i1 = 0; i1 < Dex[i0].Main.Count; i1++)
Dex[i0].MainOffset = _IO.P;
for (i1 = 0; i1 < Dex[i0].Main.Count; i1++)
{
IO.Write(Dex[i0].Main[i1].Frame);
IO.Write(Dex[i0].Main[i1].Both );
IO.Write(Dex[i0].Main[i1].ID );
IO.Write(Dex[i0].Main[i1].Value);
IO.Write(Dex[i0].Main[i1].Trans);
_IO.W(Dex[i0].Main[i1].Frame);
_IO.W(Dex[i0].Main[i1].Both );
_IO.W(Dex[i0].Main[i1].ID );
_IO.W(Dex[i0].Main[i1].Value);
_IO.W(Dex[i0].Main[i1].Trans);
}
IO.Align(0x20, true);
_IO.W(999999f);
_IO.W(0xFFFF);
_IO.W(0x0L);
_IO.A(0x20);
Dex[i0].EyesOffset = IO.Position - Header.Lenght;
for (int i1 = 0; i1 < Dex[i0].Eyes.Count; i1++)
Dex[i0].EyesOffset = _IO.P;
for (i1 = 0; i1 < Dex[i0].Eyes.Count; i1++)
{
IO.Write(Dex[i0].Eyes[i1].Frame);
IO.Write(Dex[i0].Eyes[i1].Both );
IO.Write(Dex[i0].Eyes[i1].ID );
IO.Write(Dex[i0].Eyes[i1].Value);
IO.Write(Dex[i0].Eyes[i1].Trans);
_IO.W(Dex[i0].Eyes[i1].Frame);
_IO.W(Dex[i0].Eyes[i1].Both );
_IO.W(Dex[i0].Eyes[i1].ID );
_IO.W(Dex[i0].Eyes[i1].Value);
_IO.W(Dex[i0].Eyes[i1].Trans);
}
IO.Align(0x20, true);
_IO.W(999999f);
_IO.W(0xFFFF);
_IO.W(0x0L);
_IO.A(0x20);
}
for (int i0 = 0; i0 < Dex.Length; i0++)
for (i = 0; i < Dex.Length; i++)
{
Dex[i0].NameOffset = IO.Position - Header.Lenght;
IO.Write(Dex[i0].Name + "\0");
Dex[i].NameOffset = _IO.P;
_IO.W(Dex[i].Name + "\0");
}
IO.Align(0x10, true);
_IO.A(0x10, true);
if (Header.IsX) IO.Seek(Header.Lenght + 0x28, 0);
else IO.Seek(Header.Lenght + 0x20, 0);
for (int i0 = 0; i0 < Dex.Length; i0++)
_IO.P = header.IsX ? 0x28 : 0x20;
for (i = 0; i < Dex.Length; i++)
{
IO.Write(Dex[i0].MainOffset);
if (Header.IsX) IO.Write(0x00);
IO.Write(Dex[i0].EyesOffset);
if (Header.IsX) IO.Write(0x00);
}
int Position1 = IO.Position - Header.Lenght;
for (int i0 = 0; i0 < Dex.Length; i0++)
{
IO.Write(Dex[i0].NameOffset);
if (Header.IsX) IO.Write(0x00);
_IO.WX(Dex[i].MainOffset);
_IO.WX(Dex[i].EyesOffset);
}
int namesPosition = _IO.P;
for (i = 0; i < Dex.Length; i++)
_IO.WX(Dex[i].NameOffset);
if (Header.IsX) IO.Seek(Position0 - 8, 0);
else IO.Seek(Position0 - 4, 0);
IO.Write(Position1);
_IO.P = Position0 - (header.IsX ? 8 : 4);
_IO.W(namesPosition);
if (IO.Format > Main.Format.F)
if (Format > Format.F)
{
Offset = IO.Length - Header.Lenght;
IO.Seek(IO.Length, 0);
IO.WriteEOFC(0);
IO.Seek(0, 0);
Header.DataSize = Offset;
Header.SectionSize = Offset;
IO.Write(Header);
int offset = _IO.L;
_IO.O = 0;
_IO.P = _IO.L;
_IO.WEOFC(0);
_IO.P = 0;
header.DataSize = offset;
header.SectionSize = offset;
header.Signature = 0x43505845;
_IO.W(header, true);
}
IO.Close();
_IO.C();
}
public void MsgPackReader(string filepath)
public void MsgPackReader(string file, bool json)
{
int i0 = 0;
int i1 = 0;
this.Dex = new EXP[0];
Header = new PDHead();
MPIO IO = new MPIO(File.OpenReader(filepath + ".mp"));
MsgPack = IO.Read();
IO.Close();
IO = null;
Dex = null;
header = new Header();
if (MsgPack.Element("Dex", out MsgPack Dex, typeof(object[])))
MsgPack msgPack = file.ReadMPAllAtOnce(json);
MsgPack dex;
if ((dex = msgPack["Dex", true]).NotNull)
{
MsgPack Temp = new MsgPack();
Dex = new EXP[dex.Array.Length];
for (i0 = 0; i0 < Dex.Length; i0++)
{
Dex[i0] = new EXP { Name = dex[i0].RS("Name") };
this.Dex = new EXP[((object[])Dex.Object).Length];
MsgPack EXP = new MsgPack();
for (i0 = 0; i0 < this.Dex.Length; i0++)
if (Dex[i0].GetType() == typeof(MsgPack))
MsgPack temp;
if ((temp = dex[i0]["Main", true]).NotNull)
{
this.Dex[i0] = new EXP();
EXP = (MsgPack)Dex[i0];
this.Dex[i0].Name = EXP.ReadString("Name");
if (EXP.Element("Main", out Temp, typeof(object[])))
{
this.Dex[i0].Main = new List<EXPElement>
{ Capacity = ((object[])Temp.Object).Length };
for (i1 = 0; i1 < this.Dex[i0].Main.Capacity; i1++)
if (Temp[i1].GetType() == typeof(MsgPack))
this.Dex[i0].Main.Add(ReadEXP((MsgPack)Temp[i1]));
}
if (EXP.Element("Eyes", out Temp, typeof(object[])))
{
this.Dex[i0].Eyes = new List<EXPElement>
{ Capacity = ((object[])Temp.Object).Length };
for (i1 = 0; i1 < this.Dex[i0].Eyes.Capacity; i1++)
if (Temp[i1].GetType() == typeof(MsgPack))
this.Dex[i0].Eyes.Add(ReadEXP((MsgPack)Temp[i1]));
}
Dex[i0].Main = KKdList<EXPElement>.New;
Dex[i0].Main.Capacity = temp.Array.Length;
for (i1 = 0; i1 < Dex[i0].Main.Capacity; i1++)
Dex[i0].Main.Add(EXPElement.Read(temp[i1]));
}
if ((temp = dex[i0]["Eyes", true]).NotNull)
{
Dex[i0].Eyes = KKdList<EXPElement>.New;
Dex[i0].Eyes.Capacity = temp.Array.Length;
for (i1 = 0; i1 < this.Dex[i0].Eyes.Capacity; i1++)
Dex[i0].Eyes.Add(EXPElement.Read(temp[i1]));
}
temp.Dispose();
}
}
MsgPack = null;
dex.Dispose();
msgPack.Dispose();
}
private EXPElement ReadEXP(MsgPack mp) =>
new EXPElement() { Frame = mp.ReadSingle("F"), Both = mp.ReadUInt16("B"),
ID = mp.ReadUInt16("I"), Value = mp.ReadSingle("V"),
Trans = mp.ReadSingle("T") };
public void MsgPackWriter(string filepath)
public void MsgPackWriter(string file, bool json)
{
int i0 = 0;
int i1 = 0;
MsgPack Dex = new MsgPack("Dex", this.Dex.Length);
for (i0 = 0; i0 < this.Dex.Length; i0++)
{
MsgPack EXP = new MsgPack().Add("Name", this.Dex[i0].Name);
MsgPack Main = new MsgPack("Main", this.Dex[i0].Main.Count);
for (i1 = 0; i1 < this.Dex[i0].Main.Count; i1++)
Main[i1] = WriteEXP(this.Dex[i0].Main[i1]);
EXP.Add(Main);
if (Dex == null || Dex.Length < 1) return;
MsgPack Eyes = new MsgPack("Eyes", this.Dex[i0].Eyes.Count);
for (i1 = 0; i1 < this.Dex[i0].Eyes.Count; i1++)
Eyes[i1] = WriteEXP(this.Dex[i0].Eyes[i1]);
EXP.Add(Eyes);
Dex[i0] = EXP;
MsgPack dex = new MsgPack(Dex.Length, "Dex");
for (i0 = 0; i0 < Dex.Length; i0++)
{
MsgPack exp = MsgPack.New.Add("Name", this.Dex[i0].Name);
MsgPack main = new MsgPack(Dex[i0].Main.Count, "Main");
for (i1 = 0; i1 < Dex[i0].Main.Count; i1++)
main[i1] = Dex[i0].Main[i1].Write();
exp.Add(main);
MsgPack eyes = new MsgPack(Dex[i0].Eyes.Count, "Eyes");
for (i1 = 0; i1 < Dex[i0].Eyes.Count; i1++)
eyes[i1] = Dex[i0].Eyes[i1].Write();
exp.Add(eyes);
dex[i0] = exp;
}
MsgPack = new MsgPack(MsgPack.Types.FixMap).Add(Dex);
MPIO IO = new MPIO(File.OpenWriter(filepath + ".mp", true));
IO.Write(MsgPack, true);
IO = null;
dex.Write(true, file, json);
}
private MsgPack WriteEXP(EXPElement element) =>
new MsgPack().Add("F", element.Frame).Add("B", element.Both ).Add("I", element.ID )
.Add("V", element.Value).Add("T", element.Trans);
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.Dispose(); Dex = null; header = default; disposed = true; } }
public struct EXP
{
@@ -277,8 +231,10 @@ namespace KKdMainLib
public int EyesOffset;
public int NameOffset;
public string Name;
public List<EXPElement> Main;
public List<EXPElement> Eyes;
public KKdList<EXPElement> Main;
public KKdList<EXPElement> Eyes;
public override string ToString() => Name;
}
public struct EXPElement
@@ -288,6 +244,16 @@ namespace KKdMainLib
public ushort ID;
public float Value;
public float Trans;
public static EXPElement Read(MsgPack msg) =>
new EXPElement() { Frame = msg.RF32("F"), Both = msg.RU16("B"),
ID = msg.RU16("I"), Value = msg.RF32("V"),
Trans = msg.RF32("T"), };
public MsgPack Write() =>
MsgPack.New.Add("F", Frame).Add("B", Both )
.Add("I", ID).Add("V", Value)
.Add("T", Trans);
}
}
}
+43 -35
View File
@@ -1,5 +1,6 @@
using System;
using System.Security.Cryptography;
using KKdBaseLib;
using KKdMainLib.IO;
using MSIO = System.IO;
@@ -7,58 +8,65 @@ namespace KKdMainLib
{
public static class DIVAFILE
{
private static readonly byte[] Key = "file access deny".ToASCII();
private static readonly byte[] Key = new byte[]
{ 0x66, 0x69, 0x6C, 0x65, 0x20, 0x61, 0x63, 0x63,
0x65, 0x73, 0x73, 0x20, 0x64, 0x65, 0x6E, 0x79 };
public static void Decrypt(this string file)
{
Console.Title = "DIVAFILE Decrypt - File: " + MSIO.Path.GetFileName(file);
Stream reader = File.OpenReader(file);
if (reader.ReadInt64() != 0x454C494641564944)
{ reader.Close(); return; }
int StreamLenght = reader.ReadInt32();
int FileLenght = reader.ReadInt32();
byte[] decrypted = new byte[StreamLenght];
reader.Seek(0, 0);
int streamLength, fileLength;
byte[] encrypted, decrypted;
using (Stream _IO = File.OpenReader(file))
{
if (_IO.RI64() != 0x454C494641564944) return;
streamLength = _IO.RI32();
fileLength = _IO.RI32();
encrypted = _IO.RBy(streamLength);
decrypted = new byte[streamLength];
}
using (AesManaged crypto = new AesManaged())
{
crypto.Key = Key; crypto.IV = new byte[16];
crypto.Mode = CipherMode.ECB; crypto.Padding = PaddingMode.Zeros;
using (CryptoStream cryptoData = new CryptoStream(reader.BaseStream,
crypto.CreateDecryptor(crypto.Key, crypto.IV), CryptoStreamMode.Read))
cryptoData.Read(decrypted, 0, StreamLenght);
using CryptoStream cryptoData = new CryptoStream(new MSIO.MemoryStream(encrypted),
crypto.CreateDecryptor(crypto.Key, crypto.IV), CryptoStreamMode.Read);
cryptoData.Read(decrypted, 0, streamLength);
}
Stream writer = File.OpenWriter(file, FileLenght);
for (int i = 0x10; i < StreamLenght && i < FileLenght + 0x10; i++)
writer.Write(decrypted[i]);
writer.Close();
using (Stream _IO = File.OpenWriter(file, fileLength))
_IO.W(decrypted, fileLength < streamLength ? fileLength : streamLength);
}
public static void Encrypt(this string file)
{
Console.Title = "DIVAFILE Encrypt - File: " + MSIO.Path.GetFileName(file);
Stream reader = File.OpenReader(file);
int FileLenghtOrigin = reader.Length;
int FileLenght = FileLenghtOrigin.Align(16);
reader.Close();
byte[] In = File.OpenReader(file).ToArray(true);
byte[] Inalign = new byte[FileLenght];
for (int i = 0; i < In.Length; i++) Inalign[i] = In[i];
In = null;
byte[] encrypted = new byte[FileLenght];
byte[] data;
using (Stream _IO = File.OpenReader(file))
data = _IO.ToArray();
int fileLengthOrigin = data.Length;
int fileLength = fileLengthOrigin.A(16);
byte[] dataAlign = new byte[fileLength];
Array.Copy(data, dataAlign, data.Length);
data = null;
byte[] encrypted = new byte[fileLength];
using (AesManaged crypto = new AesManaged())
{
crypto.Key = Key; crypto.IV = new byte[16];
crypto.Mode = CipherMode.ECB; crypto.Padding = PaddingMode.Zeros;
using (CryptoStream cryptoData = new CryptoStream(new MSIO.MemoryStream(Inalign),
crypto.CreateEncryptor(crypto.Key, crypto.IV), CryptoStreamMode.Read))
cryptoData.Read(encrypted, 0, FileLenght);
using CryptoStream cryptoData = new CryptoStream(new MSIO.MemoryStream(dataAlign),
crypto.CreateEncryptor(crypto.Key, crypto.IV), CryptoStreamMode.Read);
cryptoData.Read(encrypted, 0, fileLength);
}
using (Stream _IO = File.OpenWriter(file, dataAlign.Length))
{
_IO.W(0x454C494641564944);
_IO.W(fileLength);
_IO.W(fileLengthOrigin);
_IO.W(encrypted);
}
Stream writer = File.OpenWriter(file, Inalign.Length);
writer.Write(0x454C494641564944);
writer.Write(FileLenght);
writer.Write(FileLenghtOrigin);
writer.Write(encrypted);
writer.Close();
}
}
}
+407
View File
@@ -0,0 +1,407 @@
using System;
using System.Net;
using KKdBaseLib;
using KKdMainLib.IO;
namespace KKdMainLib
{
public struct DataBank : IDisposable
{
private Stream _IO;
private int i;
public PvList[] pvList;
public PsrData[] psrData;
private const string d = ".";
private const string c = ",";
public bool Success { get; private set; }
public void DBReader(string file)
{
Success = false;
if (!File.Exists(file)) return;
string text = File.ReadAllText(file);
while (text.Contains("%")) text = WebUtility.UrlDecode(text);
string[] array = text.Split(',');
pvList = null;
psrData = null;
if (file.Contains("psrData") && array.Length % 13 < 2)
{
psrData = new PsrData[array.Length / 13];
for (i = 0; i < psrData.Length; i++) psrData[i].SetValue(array, i);
Success = true;
}
else if (file.Contains("psrData")) Success = true;
else if (file.Contains("PvList") && array.Length % 7 < 2)
{
pvList = new PvList[array.Length / 7];
for (i = 0; i < pvList.Length; i++) pvList[i].SetValue(array, i);
Success = true;
}
else if (file.Contains("PvList")) Success = true;
}
public void DBWriter(string file, uint num2)
{
if (!Success) return;
_IO = File.OpenWriter();
if (file.Contains("psrData"))
{
if (psrData != null && psrData.Length > 0)
for (i = 0; i < psrData.Length; i++)
_IO.W(psrData[i].ToString() + c);
}
else if (file.Contains("PvList"))
{
if (pvList != null && pvList.Length > 0)
for (i = 0; i < pvList.Length; i++)
_IO.W(UrlEncode(pvList[i].ToString() +
(i < pvList.Length ? c : "")));
else _IO.W("%2A%2A%2A");
}
byte[] data = _IO.ToArray(true);
ushort num = DCC.CalculateChecksum(data);
File.WriteAllBytes(file + "_" + num + "_" + num2 + ".dat", data);
}
public void MsgPackReader(string file, bool json)
{
Success = false;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
bool compact = msgPack.RB("Compact");
psrData = null;
pvList = null;
if (file.Contains("psrData"))
{
MsgPack psrData;
if ((psrData = msgPack["psrData", true]).NotNull)
{
this.psrData = new PsrData[psrData.Array.Length];
for (i = 0; i < this.psrData.Length; i++)
this.psrData[i].SetValue(psrData[i]);
}
Success = true;
psrData.Dispose();
}
else if (file.Contains("PvList"))
{
MsgPack pvList;
if ((pvList = msgPack["PvList", true]).NotNull)
{
this.pvList = new PvList[pvList.Array.Length];
for (i = 0; i < this.pvList.Length; i++)
this.pvList[i].SetValue(pvList[i], compact);
}
Success = true;
pvList.Dispose();
}
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json, bool Compact = true)
{
if (!Success) return;
MsgPack msgPack = MsgPack.New;
if (file.Contains("psrData"))
{
if (psrData != null)
{
MsgPack psrData = new MsgPack(this.psrData.Length, "psrData");
for (i = 0; i < this.psrData.Length; i++) psrData[i] = this.psrData[i].WriteMP();
msgPack.Add(psrData);
}
else msgPack.Add(new MsgPack("psrData", null));
}
else if (file.Contains("PvList"))
{
if (pvList != null)
{
if (Compact) msgPack.Add("Compact", Compact);
MsgPack PvList = new MsgPack(pvList.Length, "PvList");
for (i = 0; i < pvList.Length; i++) PvList[i] = pvList[i].WriteMP(Compact);
msgPack.Add(PvList);
}
else msgPack.Add(new MsgPack("PvList", null));
}
msgPack.Write(file, json).Dispose();
}
public static string UrlEncode(string value) =>
WebUtility.UrlEncode(value).Replace("+", "%20");
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.Dispose(); psrData = null; pvList = null; Success = false; disposed = true; } }
public struct PsrData
{
public Player p1;
public Player p2;
public Player p3;
public int PV_ID;
public void SetValue(string[] data, int i = 0)
{
p1.SetValue(data, i, 0);
p2.SetValue(data, i, 1);
p3.SetValue(data, i, 2);
PV_ID = int.Parse(data[i * 13 + 12]);
}
public void SetValue(MsgPack msg)
{
int? id = msg.RnI32("PV_ID");
if (id != null) PV_ID = (int)id;
else { id = msg.RnI32("ID"); if (id != null) PV_ID = (int)id; }
MsgPack temp;
if ((temp = msg["P1", true]).NotNull) p1.SetValue(temp);
if ((temp = msg["P2", true]).NotNull) p2.SetValue(temp);
if ((temp = msg["P3", true]).NotNull) p3.SetValue(temp);
temp.Dispose();
}
public MsgPack WriteMP() =>
MsgPack.New.Add("PV_ID", PV_ID).Add(p1.WriteMP("P1"))
.Add(p2.WriteMP("P2")).Add(p3.WriteMP("P3"));
public override string ToString() =>
UrlEncode(p1.ToString() + c + p2.ToString() + c + p3.ToString() + c + PV_ID);
}
public struct Player
{
public int Score0;
public int Score1;
public string Name0;
public string Name1;
public Difficulty Diff;
public bool Has2P => Name1 != null;
public void SetValue(string[] data, int i = 0, int offset = 0)
{
string[] array = data[i * 13 + offset * 4].Split('.');
Score0 = int.Parse(array[0]);
if (array.Length > 1) Score1 = int.Parse(array[1]);
string text = "";
for (int j = 0; j < data[i * 13 + 1 + offset * 4].Length; j++)
{
text += data[i * 13 + 1 + offset * 4][j].ToString();
if (text.EndsWith("xxx"))
{
Name0 = text.Remove(text.Length - 3);
text = "";
}
}
if (array.Length == 1) Name0 = text;
else Name1 = text;
if (int.TryParse(data[i * 13 + 2 + offset * 4], out int Diff))
this.Diff = (Difficulty)Diff;
else
Enum.TryParse(data[i * 13 + 2 + offset * 4], out this.Diff);
}
public void SetValue(MsgPack msg)
{
Diff = (Difficulty)msg.RI32("Diff");
Score0 = msg.RI32 ("Score");
Name0 = msg.RS( "Name");
if (Name0 == null)
{
Score0 = msg.RI32("Score0");
Score1 = msg.RI32("Score1");
Name0 = msg.RS ( "Name0");
Name1 = msg.RS ( "Name1");
}
else Name1 = null;
}
public MsgPack WriteMP(string name) =>
Has2P ? new MsgPack(name).Add("Diff", (int)Diff).Add("Score0", Score0)
.Add("Score1", Score1).Add("Name0", Name0).Add("Name1", Name1) :
new MsgPack(name).Add("Diff", (int)Diff)
.Add("Score" , Score0).Add("Name" , Name0);
public override string ToString() =>
(Score0 + (Has2P ? (d + Score1) : "") + c + UrlEncode(Name0) +
(Has2P ? ("xxx" + UrlEncode(Name1)) : "") + c +
Diff + c + (Has2P ? "0.1" : "0")).Replace("*", "%2A");
}
public struct PvList
{
public int PV_ID;
public bool Enable;
public bool Extra;
public Date AdvDemoStart;
public Date AdvDemoEnd;
public Date StartShow;
public Date EndShow;
public void SetValue(string[] data, int i = 0)
{
PV_ID = int.Parse(data[i * 7]);
Enable = int.Parse(data[i * 7 + 1]) == 1;
Extra = int.Parse(data[i * 7 + 2]) == 1;
AdvDemoStart.SV(data[i * 7 + 3]);
AdvDemoEnd .SV(data[i * 7 + 4]);
StartShow .SV(data[i * 7 + 5]);
EndShow .SV(data[i * 7 + 6]);
}
public void SetValue(MsgPack msg, bool Compact)
{
Enable = true;
Extra = false;
int? id = msg.RnI32("PV_ID");
if (id != null) PV_ID = (int)id;
else { id = msg.RnI32("ID"); if (id != null) PV_ID = (int)id; }
bool? enable = msg.RnB("Enable");
bool? extra = msg.RnB("Extra");
if (enable != null) Enable = (bool)enable;
if (extra != null) Extra = (bool)extra ;
if (Compact)
{
AdvDemoStart.SV(msg.RnI32("AdvDemoStart"), true);
AdvDemoEnd .SV(msg.RnI32("AdvDemoEnd" ), false);
StartShow .SV(msg.RnI32("StartShow" ), false);
EndShow .SV(msg.RnI32( "EndShow" ), true);
return;
}
MsgPack temp;
if ((temp = msg["AdvDemoStart", true]).NotNull) AdvDemoStart.SV(temp, true);
if ((temp = msg["AdvDemoEnd" , true]).NotNull) AdvDemoEnd .SV(temp, false);
if ((temp = msg["StartShow" , true]).NotNull) StartShow .SV(temp, false);
if ((temp = msg[ "EndShow" , true]).NotNull) EndShow .SV(temp, true);
temp.Dispose();
}
public MsgPack WriteMP(bool Compact)
{
MsgPack msgPack = MsgPack.New;
msgPack.Add("ID", PV_ID);
if (!Enable) msgPack.Add("Enable", Enable);
if ( Extra ) msgPack.Add("Extra" , Extra );
if (Compact)
{
if (AdvDemoStart.WU) msgPack.Add("AdvDemoStart", AdvDemoStart.WI());
if (AdvDemoEnd .WL) msgPack.Add("AdvDemoEnd" , AdvDemoEnd .WI());
if (StartShow .WL) msgPack.Add("StartShow" , StartShow .WI());
if ( EndShow .WU) msgPack.Add( "EndShow" , EndShow .WI());
}
else
{
if (AdvDemoStart.WU) msgPack.Add(AdvDemoStart.WriteMP("AdvDemoStart"));
if (AdvDemoEnd .WL) msgPack.Add(AdvDemoEnd .WriteMP("AdvDemoEnd" ));
if (StartShow .WL) msgPack.Add(StartShow .WriteMP("StartShow" ));
if ( EndShow .WU) msgPack.Add( EndShow .WriteMP( "EndShow" ));
}
return msgPack;
}
public override string ToString() =>
UrlEncode(PV_ID + c + (Enable ? 1 : 0) + c + (Extra ? 1 : 0) + c +
AdvDemoStart.ToString() + c + AdvDemoEnd.ToString() + c +
StartShow.ToString() + c + EndShow.ToString());
}
public struct Date
{
private int year;
private int month;
private int day;
public int Year { get => year; set { year = value; CheckDate(); } }
public int Month { get => month; set { month = value; CheckDate(); } }
public int Day { get => day; set { day = value; CheckDate(); } }
public bool WU => Year != 2029 || Month != 1 || Day != 1;
public bool WL => Year != 2000 || Month != 1 || Day != 1;
public void SDL() => Year = 2000;
public void SDU() => Year = 2029;
public void SV(string data)
{
string[] array = data.Split('-');
if (array.Length == 3)
{
Year = int.Parse(array[0]);
Month = int.Parse(array[1]);
Day = int.Parse(array[2]);
}
}
public void SV(int? ymd, bool setDefaultUpper)
{
if (!setDefaultUpper) SDL();
else SDU();
if (ymd != null)
{
year = ymd.Value / 10000;
month = ymd.Value / 100 % 100;
day = ymd.Value % 100;
CheckDate();
}
}
public void SV(MsgPack msg, bool setDefaultUpper)
{
if (!setDefaultUpper) SDL();
else SDU();
int? Year = msg.RnI32( "Year");
int? Month = msg.RnI32("Month");
int? Day = msg.RnI32( "Day");
if ( Year != null) year = Year.Value;
if (Month != null) month = Month.Value;
if ( Day != null) day = Day.Value;
CheckDate();
}
public int WI() =>
(Year * 100 + Month) * 100 + Day;
public MsgPack WriteMP(string name) =>
new MsgPack(name).Add("Year", Year).Add("Month", Month).Add("Day", Day);
private void CheckDate()
{
if (year < 2000) { year = 2000; month = 1; day = 1; return; }
if (year >= 2029) { year = 2029; month = 1; day = 1; return; }
if (month < 1) month = 1;
else if (month > 12) month = 12;
if (day < 1) day = 1;
else if (day > 31 && (month == 1 || month == 3 || month == 5 ||
month == 7 || month == 8 || month == 10 || month == 12)) day = 31;
else if (day > 30 && (month == 4 || month == 6 ||
month == 9 || month == 11)) day = 30;
else if (day > 29 && month == 2 && year % 4 == 0) day = 29;
else if (day > 28 && month == 2 && year % 4 != 0) day = 28;
}
public override string ToString() =>
Year.ToString("d4") + "-" + Month.ToString("d2") + "-" + Day.ToString("d2");
}
public enum Difficulty
{
Easy = 0,
Normal = 1,
Hard = 2,
Extreme = 3,
}
}
}
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using KKdBaseLib;
using KKdBaseLib.F2;
using KKdMainLib.IO;
namespace KKdMainLib
{
public static class HeaderExtensions
{
public static Header ReadHeader(this Stream stream, bool seek, bool readSectionSignature = true)
{
if (seek)
if (stream.PI64 > 4) stream.PI64 -= 4;
else stream.PI64 = 0;
return stream.ReadHeader(readSectionSignature);
}
public static Header ReadHeader(this Stream stream, bool readSectionSignature = true)
{
Header header = new Header { Format = Format.F2LE, Signature = stream.RI32(),
DataSize = stream.RI32(), Length = stream.RI32(), Flags = stream.RI32(),
Depth = stream.RI32(), SectionSize = stream.RI32(),
Mode = stream.RI32() };
stream.RI32();
if ((header.Flags & 0x08000000) == 0x08000000) header.Format = Format.F2BE;
header.NotUseDataSizeAsSectionSize = (header.Flags & 0x10000000) != 0x10000000;
if (header.Length == 0x40)
{
stream.RI64();
stream.RI64();
header.InnerSignature = stream.RI32();
stream.RI32();
stream.RI64();
}
stream.Format = header.Format;
if (readSectionSignature) header.SectionSignature = stream.RI32E();
return header;
}
public static void W(this Stream stream, Header header, bool extended = false)
{
header.Length = (header.Format < Format.X && extended) ? 0x40 : 0x20;
header.Flags = (!header.NotUseDataSizeAsSectionSize ? 0x10000000 : 0) |
(header.Format == Format.F2BE ? 0x08000000 : 0);
stream.W(header.Signature);
stream.W(header.DataSize);
stream.W(header.Length);
stream.W(header.Flags);
stream.W(header.Depth);
stream.W(header.SectionSize);
stream.W(header.Mode);
stream.W(0x00);
if (header.Length == 0x40)
{
stream.W(header.Format < Format.MGF ? (int)((header.SectionSignature ^
(header.DataSize * (long)header.Signature)) - header.Depth + header.SectionSize) : 0);
stream.W(0x00);
stream.W(0x00L);
stream.W(header.InnerSignature);
stream.W(0x00);
stream.W(0x00L);
}
}
public static void WEOFC(this Stream stream, int depth = 0) =>
stream.W(new Header { Depth = depth, Length = 0x20, Signature = 0x43464F45 });
}
public static class POFExtensions
{
public static void W(this Stream stream, POF pof, bool shiftX = false, int depth = 0)
{
byte[] data = pof.Write(shiftX);
Header header = new Header { Depth = depth, Format = Format.F2LE,
Length = 0x20, Signature = shiftX ? 0x31464F50 : 0x30464F50 };
header.DataSize = header.SectionSize = data.Length;
stream.W(header);
stream.W(data);
}
}
public static class ENRSExtensions
{
public static void W(this Stream stream, ENRS enrs, int depth = 0)
{
byte[] data = enrs.Write();
Header header = new Header { Depth = depth, Format = Format.F2LE,
Length = 0x20, Signature = 0x53524E45 };
header.DataSize = header.SectionSize = data.Length;
stream.W(header);
stream.W(data);
}
}
public static class StructExtensions
{
public static Struct RSt(this byte[] data)
{
if (data == null || data.Length < 1) return default;
Struct @struct;
using (Stream stream = File.OpenReader(data))
@struct = stream.RSt(stream.ReadHeader(false));
return @struct;
}
public static Struct RSt(this Stream stream, Header header)
{
Struct @struct = new Struct { Header = header, DataOffset =
stream.P, Data = stream.RBy(header.SectionSize) };
int depth = header.Depth;
int lastSig = 0, sig;
long length = stream.L - stream.P;
long position = 0;
KKdList<Struct> subStructs = KKdList<Struct>.New;
while (length > position)
{
header = stream.ReadHeader(false);
sig = header.Signature;
position += header.Length + header.SectionSize;
if (sig == 0x43464F45 && header.Depth == depth + 1) break;
else if (sig == 0x53524E45 || (sig & 0xF0FFFFFF) == 0x30464F50)
{
byte[] Data = stream.RBy(header.SectionSize);
if (sig == 0x53524E45) @struct.ENRS.Read(Data);
else @struct.POF .Read(Data, sig == 0x31464F50);
}
else if (header.Depth == 0 && sig == 0x43505854)
{ subStructs.Add(new Struct { Header = header, DataOffset =
stream.P, Data = stream.RBy(header.SectionSize) }); }
else if (header.Depth <= depth) { stream.PI64 -= header.Length; break; }
else subStructs.Add(stream.RSt(header));
lastSig = sig;
}
if (subStructs.Capacity > 0) @struct.SubStructs = subStructs.ToArray();
return @struct;
}
public static byte[] W(this Struct Struct, bool shiftX = false, bool useDepth = true)
{
byte[] Data;
using (Stream stream = File.OpenWriter()) { Struct.Update(shiftX);
stream.W(Struct, shiftX, useDepth); stream.WEOFC(); Data = stream.ToArray(); }
return Data;
}
public static void W(this Stream stream, Struct @struct, bool shiftX = false, bool useDepth = true)
{
stream.W(@struct.Header);
stream.W(@struct.Data );
if (@struct.HasPOF ) stream.W(@struct.POF , shiftX, useDepth ? @struct.Depth + 1 : 0);
if (@struct.HasENRS) stream.W(@struct.ENRS, useDepth ? @struct.Depth + 1 : 0);
if (@struct.HasSubStructs)
{
for (int i = 0; i < @struct.SubStructs.Length; i++)
stream.W(@struct.SubStructs[i], shiftX);
stream.WEOFC(@struct.Depth + 1);
}
}
}
public static class MPExt
{
public static MsgPack ReadMP(this byte[] array, bool json = false)
{
MsgPack MsgPack;
if (json) using (JSON _IO = new JSON(File.OpenReader(array))) MsgPack = _IO.Read( );
else using ( MP _IO = new MP(File.OpenReader(array))) MsgPack = _IO.Read(true);
return MsgPack;
}
public static MsgPack ReadMPAllAtOnce(this string file, bool json = false)
{
MsgPack MsgPack;
if (json) using (JSON _IO = new JSON(File.OpenReader(file + ".json", true))) MsgPack = _IO.Read( );
else using ( MP _IO = new MP(File.OpenReader(file + ".mp" , true))) MsgPack = _IO.Read(true);
return MsgPack;
}
public static MsgPack ReadMP(this string file, bool json = false)
{
MsgPack MsgPack;
if (json) using (JSON _IO = new JSON(File.OpenReader(file + ".json"))) MsgPack = _IO.Read( );
else using ( MP _IO = new MP(File.OpenReader(file + ".mp" ))) MsgPack = _IO.Read(true);
return MsgPack;
}
public static void Write(this MsgPack mp, bool temp, string file, bool json = false)
{ if (temp) MsgPack.New.Add(mp).Write(file, json).Dispose();
else mp .Write(file, json); }
public static MsgPack Write(this MsgPack mp, string file, bool json = false)
{
if (json) using (JSON _IO = new JSON(File.OpenWriter(file + ".json", true))) _IO.W(mp, "\n", " ");
else using ( MP _IO = new MP(File.OpenWriter(file + ".json", true))) _IO.W(mp);
return mp;
}
public static void WriteAfterAll(this MsgPack mp, bool temp, string file, bool json = false)
{ if (temp) MsgPack.New.Add(mp).WriteAfterAll(file, json).Dispose();
else mp .WriteAfterAll(file, json); }
public static MsgPack WriteAfterAll(this MsgPack mp, string file, bool json = false)
{
byte[] data = null;
if (json) using (JSON _IO = new JSON(File.OpenWriter())) { _IO.W(mp, true); data = _IO.ToArray(); }
else using ( MP _IO = new MP(File.OpenWriter())) { _IO.W(mp ); data = _IO.ToArray(); }
File.WriteAllBytes(file + (json ? ".json" : ".mp"), data);
return mp;
}
public static void ToJSON (this string file) =>
file.ReadMP( ).Write(file, true).Dispose();
public static void ToMsgPack(this string file) =>
file.ReadMP(true).Write(file ).Dispose();
}
public static class IKFExt
{
public static IKF Round(this IKF kf, int d)
{
if (kf is KFT0 kft0) { kft0.F = kft0.F .Round(d); return kft0; }
else if (kf is KFT1 kft1) { kft1.F = kft1.F .Round(d); kft1.V = kft1.V .Round(d); return kft1; }
else if (kf is KFT2 kft2) { kft2.F = kft2.F .Round(d); kft2.V = kft2.V .Round(d);
kft2.T = kft2.T .Round(d); return kft2; }
else if (kf is KFT3 kft3) { kft3.F = kft3.F .Round(d); kft3.V = kft3.V .Round(d);
kft3.T1 = kft3.T1.Round(d); kft3.T2 = kft3.T2.Round(d); return kft3; }
return kf;
}
}
}
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using KKdBaseLib;
using KKdBaseLib.F2;
using KKdMainLib.IO;
namespace KKdMainLib.F2
{
public struct Bloom : System.IDisposable
{
private int i;
private Stream _IO;
private Header header;
public CountPointer<BLT> BLTs;
public void BLTReader(string file)
{
BLTs = default;
_IO = File.OpenReader(file + ".blt", true);
header = _IO.ReadHeader();
if (header.Signature != 0x544D4C42 || header.InnerSignature != 0x3) return;
_IO.P -= 0x4;
BLTs = _IO.RCPE<BLT>();
if (BLTs.C < 1) { _IO.C(); BLTs.C = -1; return; }
if (BLTs.C > 0 && BLTs.O == 0) { _IO.C(); BLTs.C = -1; return; }
/*{
_IO.Format = Header.Format = Format.X;
_IO.Offset = Header.Length;
_IO.Position = BLTs.Offset;
BLTs = _IO.ReadCountPointerX<BLT>();
}*/
_IO.P = BLTs.O;
for (i = 0; i < BLTs.C; i++)
{
ref BLT blt = ref BLTs.E[i];
_IO.RI32E();
blt.Color .X = _IO.RF32E();
blt.Color .Y = _IO.RF32E();
blt.Color .Z = _IO.RF32E();
blt.Brightpass.X = _IO.RF32E();
blt.Brightpass.Y = _IO.RF32E();
blt.Brightpass.Z = _IO.RF32E();
blt.Range = _IO.RF32E();
}
_IO.C();
}
public void TXTWriter(string file)
{
if (BLTs.C < 1) return;
_IO = File.OpenWriter();
_IO.WPSSJIS("ID,ColorR,ColorG,ColorB,BrightpassR,BrightpassG,BrightpassB,Range\n");
for (i = 0; i < BLTs.C; i++)
_IO.W(i + "," + BLTs[i] + "\n");
File.WriteAllBytes(file + "_bloom.txt", _IO.ToArray(true));
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.Dispose(); BLTs = default; header = default; disposed = true; } }
public struct BLT
{
public Vector3 Color;
public Vector3 Brightpass;
public float Range;
public override string ToString() => Color .ToString(6) + "," +
Brightpass.ToString(6) + "," +
Range .ToS(6);
}
}
}
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using KKdBaseLib;
using KKdBaseLib.F2;
using KKdMainLib.IO;
namespace KKdMainLib.F2
{
public struct ColorCorrection : System.IDisposable
{
private int i;
private Stream _IO;
private Header header;
public CountPointer<CCT> CCTs;
public void CCTReader(string file)
{
CCTs = default;
_IO = File.OpenReader(file + ".cct", true);
header = _IO.ReadHeader();
if (header.Signature != 0x54524343 || header.InnerSignature != 0x3) return;
_IO.P -= 0x4;
CCTs = _IO.RCPE<CCT>();
if (CCTs.C < 1) { _IO.C(); CCTs.C = -1; return; }
if (CCTs.C > 0 && CCTs.O == 0) { _IO.C(); CCTs.C = -1; return; }
/*{
_IO.Format = Header.Format = Format.X;
_IO.Offset = Header.Length;
_IO.Position = CCTs.Offset;
CCTs = _IO.ReadCountPointerX<CCT>();
}*/
_IO.P = CCTs.O;
for (i = 0; i < CCTs.C; i++)
{
ref CCT cct = ref CCTs.E[i];
_IO.RI32E();
cct.Hue = _IO.RF32E();
cct.Saturation = _IO.RF32E();
cct.Lightness = _IO.RF32E();
cct.Exposure = _IO.RF32E();
cct.Gamma.X = _IO.RF32E();
cct.Gamma.Y = _IO.RF32E();
cct.Gamma.Z = _IO.RF32E();
cct.Contrast = _IO.RF32E();
}
_IO.C();
}
public void TXTWriter(string file)
{
if (CCTs.C < 1) return;
_IO = File.OpenWriter();
_IO.WPSSJIS("ID,Hue,Saturation,Lightness,Exposure,GammaR,GammaG,GammaB,Contrast\n");
for (i = 0; i < CCTs.C; i++)
_IO.W(i + "," + CCTs[i] + "\n");
File.WriteAllBytes(file + "_cc.txt", _IO.ToArray(true));
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.Dispose(); CCTs = default; header = default; disposed = true; } }
public struct CCT
{
public float Hue;
public float Saturation;
public float Lightness;
public float Exposure;
public Vector3 Gamma;
public float Contrast;
public override string ToString() => Hue .ToS(6) + "," +
Saturation.ToS(6) + "," +
Lightness .ToS(6) + "," +
Exposure .ToS(6) + "," +
Gamma .ToString(6) + "," +
Contrast .ToS(6);
}
}
}
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using KKdBaseLib;
using KKdBaseLib.F2;
using KKdMainLib.IO;
namespace KKdMainLib.F2
{
public struct DOF : System.IDisposable
{
private int i;
private Stream _IO;
private Header header;
public CountPointer<DFT> DFTs;
public void DFTReader(string file)
{
DFTs = default;
_IO = File.OpenReader(file + ".dft", true);
header = _IO.ReadHeader();
if (header.Signature != 0x54464F44 || header.InnerSignature != 0x3) return;
_IO.P -= 0x4;
DFTs = _IO.RCPE<DFT>();
if (DFTs.C < 1) { _IO.C(); DFTs.C = -1; return; }
if (DFTs.C > 0 && DFTs.O == 0) { _IO.C(); DFTs.C = -1; return; }
/*{
_IO.Format = Header.Format = Format.X;
_IO.Offset = Header.Length;
_IO.Position = DFTs.Offset;
DFTs = _IO.ReadCountPointerX<DFT>();
}*/
_IO.P = DFTs.O;
for (i = 0; i < DFTs.C; i++)
{
ref DFT DFT = ref DFTs.E[i];
_IO.RI32E();
DFT. Focus = _IO.RF32E();
DFT. FocusRange = _IO.RF32E();
DFT.FuzzingRange = _IO.RF32E();
DFT.Ratio = _IO.RF32E();
DFT.Quality = _IO.RF32E();
if (_IO.IsX) _IO.RI32();
}
_IO.C();
}
public void TXTWriter(string file)
{
if (DFTs.C < 1) return;
_IO = File.OpenWriter();
_IO.WPSSJIS("ID,Focus,FocusRange,FuzzingRange,Ratio,Quality\n");
for (i = 0; i < DFTs.C; i++)
_IO.W(i + "," + DFTs[i] + "\n");
File.WriteAllBytes(file + "_dof.txt", _IO.ToArray(true));
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.Dispose(); DFTs = default; header = default; disposed = true; } }
public struct DFT
{
public float Focus;
public float FocusRange;
public float FuzzingRange;
public float Ratio;
public float Quality;
public override string ToString() => Focus .ToS(6) + "," +
FocusRange.ToS(6) + "," +
FuzzingRange.ToS(6) + "," +
Ratio .ToS(6) + "," +
Quality .ToS(6);
}
}
}
+142
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@@ -0,0 +1,142 @@
using KKdBaseLib;
using KKdBaseLib.F2;
using KKdMainLib.IO;
namespace KKdMainLib.F2
{
public struct Light : System.IDisposable
{
private int i, i0;
private Stream _IO;
private Header header;
public CountPointer<CountPointer<LIT>> LITs;
public void LITReader(string file)
{
LITs = default;
_IO = File.OpenReader(file + ".lit", true);
header = _IO.ReadHeader();
if (header.Signature != 0x4354494C || header.InnerSignature != 0x2 ||
header.SectionSignature != 0x2) return;
LITs = _IO.RCPE<CountPointer<LIT>>();
if (LITs.C < 1) { _IO.C(); LITs.C = -1; return; }
_IO.P = LITs.O;
for (i = 0; i < LITs.C; i++)
{
LITs[i] = _IO.RCPX<LIT>();
if ((LITs[i].C > 0 || LITs[i].O == 0) && !_IO.IsX) { _IO.C(); LITs.C = -1; return; }
/*{
_IO.Format = Header.Format = Format.X;
_IO.Offset = Header.Length;
_IO.Position = LITs.Offset;
LITs[i] = _IO.ReadCountPointerX<LIT>();
}
if (_IO.IsX) IO.ReadInt64();*/
}
for (i = 0; i < LITs.C; i++)
{
_IO.P = LITs[i].O;
for (i0 = 0; i0 < LITs[i].C; i0++)
{
ref LIT lit = ref LITs.E[i].E[i0];
lit.Id = (Id )_IO.RI32E();
lit.Flags = (Flags)_IO.RI32E();
lit.Type = (Type )_IO.RI32E();
if (_IO.IsX) { _IO.RI64(); _IO.RI64(); _IO.RI64(); }
lit.Ambient .X = _IO.RF32E();
lit.Ambient .Y = _IO.RF32E();
lit.Ambient .Z = _IO.RF32E();
lit.Ambient .W = _IO.RF32E();
lit.Diffuse .X = _IO.RF32E();
lit.Diffuse .Y = _IO.RF32E();
lit.Diffuse .Z = _IO.RF32E();
lit.Diffuse .W = _IO.RF32E();
lit.Specular .X = _IO.RF32E();
lit.Specular .Y = _IO.RF32E();
lit.Specular .Z = _IO.RF32E();
lit.Specular .W = _IO.RF32E();
lit.Position .X = _IO.RF32E();
lit.Position .Y = _IO.RF32E();
lit.Position .Z = _IO.RF32E();
lit.ToneCurve.X = _IO.RF32E();
lit.ToneCurve.Y = _IO.RF32E();
lit.ToneCurve.Z = _IO.RF32E();
if (_IO.IsX) { _IO.RI64(); _IO.RI64(); _IO.RI64();
_IO.RI64(); _IO.RI64(); _IO.RI32(); }
}
}
_IO.C();
}
public void TXTWriter(string file)
{
i = 0;
if (LITs.C < 1) return;
_IO = File.OpenWriter();
_IO.WPSSJIS("Type,AmbientR,AmbientG,AmbientB,DiffuseR,DiffuseG,DiffuseB,SpecularR,SpecularG," +
"SpecularB,SpecularA,PosX,PosY,PosZ,ToneCurveBegin,ToneCurveEnd,ToneCurveBlendRate," +
(file.EndsWith("_chara") ? "コメント" : "ID") + "\n");
for (i0 = 0; i0 < LITs[i].C; i0++)
_IO.W(LITs[i][i0] + "," + i + "\n");
File.WriteAllBytes(file + "_light.txt", _IO.ToArray(true));
}
public struct LIT
{
public Id Id;
public Flags Flags;
public Type Type;
public Vector4 Ambient;
public Vector4 Diffuse;
public Vector4 Specular;
public Vector3 Position;
public Vector3 ToneCurve;
public override string ToString() => Flags == 0 ? ",,,,,,,,,,,,,,,," : Type + "," +
((Flags & Flags.Ambient ) == 0 ? ",,," : Ambient .ToString(6) + ",") +
((Flags & Flags.Diffuse ) == 0 ? ",,," : Diffuse .ToString(6) + ",") +
((Flags & Flags.Specular ) == 0 ? ",,,," : Specular .ToString(6) + ",") +
((Flags & Flags.Position ) == 0 ? ",,," : Position .ToString(6) + ",") +
((Flags & Flags.ToneCurve) == 0 ? ",,," : ToneCurve.ToString(6));
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.Dispose(); LITs = default; header = default; disposed = true; } }
public enum Id : int
{
CHARA = 0,
STAGE = 1,
SUN = 2,
REFLECT = 3,
SHADOW = 4,
CHARA_COLOR = 5,
CHARA_F = 6,
PROJECTION = 7,
}
public enum Type : int
{
OFF = 0,
PARALLEL = 1,
POINT = 2,
SPOT = 3,
}
public enum Flags : int
{
Type = 0b0000000001,
Ambient = 0b0000000010,
Diffuse = 0b0000000100,
Specular = 0b0000001000,
Position = 0b0000010000,
ToneCurve = 0b1000000000,
}
}
}
+292 -279
View File
@@ -1,356 +1,369 @@
//Original: https://github.com/blueskythlikesclouds/MikuMikuLibrary/
using System;
using System.IO.Compression;
using System.Security.Cryptography;
using KKdBaseLib;
using KKdMainLib.IO;
using MSIO = System.IO;
namespace KKdMainLib
{
public class FARC
public class FARC : System.IDisposable
{
public FARC() { Files = new FARCFile[0]; Signature = Farc.FArC; FT = false; }
public FARC() => NewFARC();
public FARC(string File, bool IsDirectory = false)
{ if (IsDirectory) DirectoryPath = File; else FilePath = File; NewFARC(); }
public FARCFile[] Files = new FARCFile[0];
private void NewFARC() { Files = KKdList<FARCFile>.New; Signature = Farc.FArC; cbc = ft = false; }
public KKdList<FARCFile> Files = KKdList<FARCFile>.New;
public Type FARCType;
public Farc Signature = Farc.FArC;
public string FilePath, DirectoryPath;
public bool HasFiles => Files.IsNull ? false : Files.Count > 0;
private bool FT = false;
private bool cbc, ft;
private readonly byte[] Key = Text.ToASCII("project_diva.bin");
private readonly byte[] key = Text.ToASCII("project_diva.bin");
private readonly byte[] KeyFT = { 0x13, 0x72, 0xD5, 0x7B, 0x6E, 0x9E,
private readonly byte[] keyFT = { 0x13, 0x72, 0xD5, 0x7B, 0x6E, 0x9E,
0x31, 0xEB, 0xA2, 0x39, 0xB8, 0x3C, 0x15, 0x57, 0xC6, 0xBB };
AesManaged GetAes(bool isFT, byte[] iv)
{
AesManaged AesManaged = new AesManaged { KeySize = 128, Key = isFT ? KeyFT : Key,
private AesManaged GetAes(bool isFT, byte[] iv) =>
new AesManaged { KeySize = 128, Key = isFT ? keyFT : key,
BlockSize = 128, Mode = isFT ? CipherMode.CBC : CipherMode.ECB,
Padding = PaddingMode.Zeros, IV = iv ?? new byte[16] };
return AesManaged;
}
public void UnPack(string file, bool SaveToDisk = true)
public void UnPack(bool saveToDisk = true)
{ if (HeaderReader()) { FileReader(); if (saveToDisk) SaveToDisk(); } }
public bool HeaderReader()
{
Files = null;
Signature = Farc.FArC;
FT = false;
Console.Title = "FARC Extractor - Archive: " + MSIO.Path.GetFileName(file);
if (!MSIO.File.Exists(file))
{
Console.WriteLine("File {0} doesn't exist.", MSIO.Path.GetFileName(file));
Console.Clear();
return;
}
NewFARC();
if (!File.Exists(FilePath)) return false;
Stream reader = File.OpenReader(file);
string directory = MSIO.Path.GetFullPath(file).Replace(MSIO.Path.GetExtension(file), "");
Signature = (Farc)reader.ReadInt32Endian(true);
Stream reader = File.OpenReader(FilePath);
DirectoryPath = Path.GetFullPath(FilePath).Replace(Path.GetExtension(FilePath), "");
Signature = (Farc)reader.RI32E(true);
if (Signature != Farc.FArc && Signature != Farc.FArC && Signature != Farc.FARC)
{ reader.Dispose(); return false; }
int headerLength = reader.RI32E(true);
if (Signature == Farc.FARC)
{
Console.WriteLine("Unknown signature"); reader.Close();
Console.Clear();
return;
FARCType = (Type)reader.RI32E(true);
reader.RI32();
int farcMode = reader.RI32E(true);
ft = farcMode == 0x10;
cbc = farcMode != 0x10 && farcMode != 0x40;
if (cbc && (FARCType & Type.ECB) != 0)
{
reader.Dispose();
byte[] header = new byte[headerLength - 0x08];
MSIO.FileStream stream = new MSIO.FileStream(FilePath, MSIO.FileMode.Open,
MSIO.FileAccess.ReadWrite, MSIO.FileShare.ReadWrite) { Position = 0x10 };
using (AesManaged aes = GetAes(true, null))
using (CryptoStream cryptoStream = new CryptoStream(stream,
aes.CreateDecryptor(), CryptoStreamMode.Read))
cryptoStream.Read(header, 0x00, headerLength - 0x08);
header = SkipData(header, 0x10);
reader = File.OpenReader(header);
farcMode = reader.RI32E(true);
ft = farcMode == 0x10;
}
}
MSIO.Directory.CreateDirectory(directory);
int HeaderLength = reader.ReadInt32Endian(true);
if (Signature != Farc.FARC)
{
reader.ReadUInt32();
HeaderReader(HeaderLength, ref Files, ref reader);
reader.Close();
if (Signature == Farc.FARC)
if (reader.RI32E(true) == 1)
Files.Capacity = reader.RI32E(true);
reader.RI32();
for (int i = 0; i < Files.Length; i++)
{
if (Signature == Farc.FArC)
using (MSIO.MemoryStream memorystream = new MSIO.MemoryStream(
File.ReadAllBytes(file, Files[i].SizeComp, Files[i].Offset)))
{
GZipStream gZipStream = new GZipStream(memorystream, CompressionMode.Decompress);
Files[i].Data = new byte[Files[i].SizeUnc];
gZipStream.Read(Files[i].Data, 0, Files[i].SizeUnc);
}
else
Files[i].Data = File.ReadAllBytes(file, Files[i].SizeUnc, Files[i].Offset);
if (SaveToDisk)
{
File.WriteAllBytes(MSIO.Path.Combine(directory, Files[i].Name), Files[i].Data);
Files[i].Data = null;
}
}
Console.Clear();
return;
}
int Mode = reader.ReadInt32Endian(true);
reader.ReadUInt32();
bool GZip = (Mode & 2) == 2;
bool ECB = (Mode & 4) == 4;
int FARCType = reader.ReadInt32Endian(true);
FT = FARCType == 0x10;
bool CBC = !FT && FARCType != 0x40;
if (ECB && CBC)
{
byte[] Header = new byte[HeaderLength - 0x08];
FT = true;
reader.Close();
MSIO.FileStream stream = new MSIO.FileStream(file, MSIO.FileMode.Open,
MSIO.FileAccess.ReadWrite, MSIO.FileShare.ReadWrite);
stream.Seek(0x10, 0);
using (CryptoStream cryptoStream = new CryptoStream(stream,
GetAes(true, null).CreateDecryptor(), CryptoStreamMode.Read))
cryptoStream.Read(Header, 0x00, HeaderLength - 0x08);
Header = SkipData(Header, 0x10);
Stream CBCreader = new Stream(new MSIO.MemoryStream(Header));
CBCreader.BaseStream.Seek(0, 0);
FARCType = CBCreader.ReadInt32Endian(true);
FT = FARCType == 0x10;
if (CBCreader.ReadInt32Endian(true) == 1)
Files = new FARCFile[CBCreader.ReadInt32Endian(true)];
CBCreader.ReadUInt32();
HeaderReader(HeaderLength, ref Files, ref CBCreader);
CBCreader.Close();
}
else
{
if (reader.ReadInt32Endian(true) == 1)
Files = new FARCFile[reader.ReadInt32Endian(true)];
reader.ReadUInt32();
HeaderReader(HeaderLength, ref Files, ref reader);
reader.Close();
}
for (int i = 0; i < Files.Length; i++)
{
int FileSize = ECB || Files[i].ECB ? Files[i].SizeComp.Align(0x10) : Files[i].SizeComp;
MSIO.FileStream stream = new MSIO.FileStream(file, MSIO.FileMode.Open,
MSIO.FileAccess.ReadWrite, MSIO.FileShare.ReadWrite);
stream.Seek(Files[i].Offset, 0);
Files[i].Data = new byte[FileSize];
bool Encrypted = false;
if (ECB)
{
if ((FT && Files[i].ECB) || CBC)
{
using (CryptoStream cryptoStream = new CryptoStream(stream,
GetAes(true, null).CreateDecryptor(), CryptoStreamMode.Read))
cryptoStream.Read(Files[i].Data, 0, FileSize);
Files[i].Data = SkipData(Files[i].Data, 0x10);
}
else
using (CryptoStream cryptoStream = new CryptoStream(stream,
GetAes(false, null).CreateDecryptor(), CryptoStreamMode.Read))
cryptoStream.Read(Files[i].Data, 0, FileSize);
Encrypted = true;
}
bool Compressed = false;
bool LocalGZip = (FT && Files[i].GZip) || GZip && Files[i].SizeUnc != 0;
if (LocalGZip)
{
GZipStream gZipStream;
if (Encrypted)
{
gZipStream = new GZipStream(new MSIO.
MemoryStream(Files[i].Data), CompressionMode.Decompress);
stream.Close();
}
else gZipStream = new GZipStream(stream, CompressionMode.Decompress);
Files[i].Data = new byte[Files[i].SizeUnc];
gZipStream.Read(Files[i].Data, 0, Files[i].SizeUnc);
Compressed = true;
}
if (!Encrypted && !Compressed)
{
Files[i].Data = new byte[Files[i].SizeUnc];
stream.Read(Files[i].Data, 0, Files[i].SizeUnc);
stream.Close();
}
if (SaveToDisk)
{
File.WriteAllBytes(MSIO.Path.Combine(directory, Files[i].Name), Files[i].Data);
Files[i].Data = null;
}
}
Console.Clear();
}
byte[] SkipData(byte[] Data, int Skip)
{
byte[] SkipData = new byte[Data.Length - Skip];
for (int i = 0; i < Data.Length - Skip; i++) SkipData[i] = Data[i + Skip];
return SkipData;
}
void HeaderReader(int HeaderLenght, ref FARCFile[] Files, ref Stream reader)
{
if (Files == null)
if (Files.Capacity == 0)
{
int Count = 0;
long Position = reader.BaseStream.Position;
while (reader.BaseStream.Position < HeaderLenght)
long Position = reader.PI64;
while (reader.PI64 < headerLength)
{
reader.NullTerminated();
reader.ReadInt32();
if (Signature != Farc.FArc ) reader.ReadInt32();
reader.ReadInt32();
if (Signature == Farc.FARC && FT) reader.ReadInt32();
reader.NT();
reader.RI32();
if (Signature != Farc.FArc ) reader.RI32();
reader.RI32();
if (Signature == Farc.FARC && ft) reader.RI32();
Count++;
}
reader.Seek(Position, 0);
Files = new FARCFile[Count];
reader.PI64 = Position;
Files.Capacity = Count;
}
int LocalMode = 0;
for (int i = 0; i < Files.Length; i++)
for (int i = 0; i < Files.Capacity; i++)
{
Files[i].Name = reader.NullTerminatedUTF8();
Files[i].Offset = reader.ReadInt32Endian(true);
if (Signature != Farc.FArc) Files[i].SizeComp = reader.ReadInt32Endian(true);
Files[i].SizeUnc = reader.ReadInt32Endian(true);
if (Signature == Farc.FARC && FT)
FARCFile file = default;
file.Name = reader.NTUTF8();
file.Offset = reader.RI32E(true);
if (Signature != Farc.FArc) file.SizeComp = reader.RI32E(true);
file.SizeUnc = reader.RI32E(true);
if (Signature == Farc.FARC && ft)
file.Type = (Type)reader.RI32E(true);
Files.Add(file);
}
reader.Dispose();
return true;
}
private void FileReader()
{ for (int i = 0; i < Files.Count; i++) FileReader(i); }
public byte[] FileReader(string file)
{
if (!HasFiles) return null;
for (int i = 0; i < Files.Count; i++)
if (Files[i].Name.ToLower() == file.ToLower()) return FileReader(i);
return null;
}
public bool Exists(string file)
{
if (!HasFiles) return false;
for (int i = 0; i < Files.Count; i++)
if (Files[i].Name.ToLower() == file.ToLower()) return true;
return false;
}
public byte[] FileReader(int i)
{
if (!HasFiles) return null;
if (i >= Files.Count) return null;
FARCFile file = Files[i];
if (Signature != Farc.FARC)
{
if (Signature == Farc.FArC)
using (MSIO.MemoryStream memorystream = new MSIO.MemoryStream(
File.ReadAllBytes(FilePath, file.SizeComp, file.Offset)))
using (GZipStream gZipStream = new GZipStream(memorystream, CompressionMode.Decompress))
{
file.Data = new byte[file.SizeUnc];
gZipStream.Read(file.Data, 0, file.SizeUnc);
}
else file.Data = File.ReadAllBytes(FilePath, file.SizeUnc, file.Offset);
Files[i] = file;
return file.Data;
}
int FileSize = (FARCType & Type.ECB) != 0 || (file.Type & Type.ECB) != 0 ?
file.SizeComp.A(0x10) : file.SizeComp;
using (MSIO.FileStream stream = new MSIO.FileStream(FilePath, MSIO.FileMode.Open,
MSIO.FileAccess.ReadWrite, MSIO.FileShare.ReadWrite))
{
stream.Seek(file.Offset, 0);
file.Data = new byte[FileSize];
bool encrypted = false;
if ((FARCType & Type.ECB) != 0)
{
LocalMode = reader.ReadInt32Endian(true);
Files[i].GZip = (LocalMode & 2) == 2;
Files[i].ECB = (LocalMode & 4) == 4;
if ((ft && (file.Type & Type.ECB) != 0) || cbc)
{
using (AesManaged aes = GetAes(true, null))
using (CryptoStream cryptoStream = new CryptoStream(stream,
aes.CreateDecryptor(), CryptoStreamMode.Read))
cryptoStream.Read(file.Data, 0, FileSize);
file.Data = SkipData(file.Data, 0x10);
}
else
using (AesManaged aes = GetAes(false, null))
using (CryptoStream cryptoStream = new CryptoStream(stream,
aes.CreateDecryptor(), CryptoStreamMode.Read))
cryptoStream.Read(file.Data, 0, FileSize);
encrypted = true;
}
bool compressed = false;
if (((ft && (file.Type & Type.GZip) != 0) ||
(FARCType & Type.GZip) != 0) && file.SizeUnc > 0)
{
GZipStream gZipStream = new GZipStream(encrypted ? new MSIO.MemoryStream(file.Data) :
(MSIO.Stream)stream, CompressionMode.Decompress);
byte[] Temp = new byte[file.SizeUnc];
gZipStream.Read(Temp, 0, file.SizeUnc);
file.Data = Temp;
gZipStream.Dispose();
compressed = true;
}
if (!encrypted && !compressed)
{
file.Data = new byte[file.SizeUnc];
stream.Read(file.Data, 0, file.SizeUnc);
}
}
Files[i] = file;
return file.Data;
}
private void SaveToDisk()
{
if (DirectoryPath == null || Files.IsNull ) return;
if (DirectoryPath == "" || Files.Count < 1) return;
MSIO.Directory.CreateDirectory(DirectoryPath);
for (int i = 0; i < Files.Count; i++)
{
FARCFile file = Files[i];
if (file.Data != null)
File.WriteAllBytes(Path.Combine(DirectoryPath, file.Name), file.Data);
}
}
public void Pack(string file)
private byte[] SkipData(byte[] data, int skip)
{
Files = null;
FT = false;
string[] files = MSIO.Directory.GetFiles(file);
Files = new FARCFile[files.Length];
byte[] skipData = new byte[data.Length - skip];
System.Array.Copy(data, skip, skipData, 0, data.Length - skip);
return skipData;
}
public void Pack(Farc signature = Farc.FArC)
{
NewFARC();
string[] files = Directory.GetFiles(DirectoryPath);
Files.Capacity = files.Length;
for (int i = 0; i < files.Length; i++)
{
Files[i] = new FARCFile { Name = files[i] };
string ext = MSIO.Path.GetExtension(files[i]).ToLower();
if (ext == ".a3da" || ext == ".mot" || ext == ".vag")
Signature = Farc.FArc;
}
Files.Add(new FARCFile { Name = Path.GetFileName(files[i]), Data = File.ReadAllBytes(files[i]) });
files = null;
Stream writer = File.OpenWriter(file + ".farc", true);
writer.WriteEndian((int)Signature, true);
Stream HeaderWriter = File.OpenWriter();
for (int i = 0; i < 3; i++) HeaderWriter.WriteByte(0x00);
if (Signature == Farc.FArc) HeaderWriter.WriteByte(0x20);
else if (Signature == Farc.FArC) HeaderWriter.WriteByte(0x10);
else if (Signature == Farc.FARC)
{
HeaderWriter.WriteByte(0x06);
for (int i = 0; i < 7; i++) HeaderWriter.WriteByte(0x00);
HeaderWriter.WriteByte(0x40);
for (int i = 0; i < 8; i++) HeaderWriter.WriteByte(0x00);
}
int HeaderPartLength = Signature == Farc.FArc ? 0x09 : 0x0D;
for (int i = 0; i < Files.Length; i++)
HeaderWriter.Length += MSIO.Path.GetFileName(Files[i].Name).Length + HeaderPartLength;
writer.WriteEndian(HeaderWriter.Length, true);
writer.Write(HeaderWriter.ToArray(true));
HeaderWriter = null;
int Align = writer.Position.Align(0x10) - writer.Position;
for (int i1 = 0; i1 < Align; i1++)
if (Signature == Farc.FArc) writer.WriteByte(0x00);
else writer.WriteByte(0x78);
for (int i = 0; i < Files.Length; i++)
CompressStuff(i, ref Files, ref writer);
if (Signature == Farc.FARC) writer.Seek(0x1C, 0);
else writer.Seek(0x0C, 0);
for (int i = 0; i < Files.Length; i++)
{
writer.Write(MSIO.Path.GetFileName(Files[i].Name) + "\0");
writer.WriteEndian(Files[i].Offset, true);
if (Signature != Farc.FArc)
writer.WriteEndian(Files[i].SizeComp, true);
writer.WriteEndian(Files[i].SizeUnc, true);
}
writer.Close();
Signature = signature;
Save();
}
void CompressStuff(int i, ref FARCFile[] Files, ref Stream writer)
public void Save()
{
Files[i].Offset = writer.Position;
Files[i].Data = File.ReadAllBytes(Files[i].Name);
Files[i].SizeUnc = Files[i].Data.Length;
if (!HasFiles) return;
if (Signature != Farc.FArc)
for (int i = 0; i < Files.Count; i++)
{
if (Signature != Farc.FArc)
{
MSIO.MemoryStream stream = new MSIO.MemoryStream();
using (GZipStream gZipStream = new GZipStream(stream, CompressionMode.Compress))
gZipStream.Write(Files[i].Data, 0, Files[i].Data.Length);
Files[i].Data = stream.ToArray();
stream.Dispose();
Files[i].SizeComp = Files[i].Data.Length;
}
string ext = Path.GetExtension(Files[i].Name).ToLower();
if (ext == ".a3da" || ext == ".diva" || ext == ".vag")
{ Signature = Farc.FArc; break; }
}
Stream writer = File.OpenWriter(DirectoryPath + ".farc", true);
writer.WE((int)Signature, true);
using (Stream headerWriter = File.OpenWriter())
{
if (Signature == Farc.FArc) headerWriter.WE(0x20, true);
else if (Signature == Farc.FArC) headerWriter.WE(0x10, true);
else if (Signature == Farc.FARC)
{
int AlignData = Files[i].Data.Length.Align(0x40);
byte[] Data = new byte[AlignData];
for (int i1 = 0; i1 < Files[i].Data.Length; i1++)
Data[i1] = Files[i].Data[i1];
for (int i1 = Files[i].Data.Length; i1 < AlignData; i1++)
Data[i1] = 0x78;
Files[i].Data = Encrypt(Data, false);
headerWriter.WE((int)FARCType, true);
headerWriter.W (0x00);
headerWriter.WE(0x40, true);
headerWriter.W (0x00);
}
int HeaderPartLength = Signature == Farc.FArc ? 0x09 : 0x0D;
for (int i = 0; i < Files.Count; i++)
headerWriter.L += Path.GetFileName(Files[i].Name).Length + HeaderPartLength + 1;
writer.WE(headerWriter.L, true);
writer.W(headerWriter.ToArray(true));
}
writer.Write(Files[i].Data);
Files[i].Data = null;
int align = writer.P.A(0x10) - writer.P;
for (int i1 = 0; i1 < align; i1++)
writer.W((byte)(Signature == Farc.FArc ? 0x00 : 0x78));
for (int i = 0; i < Files.Count; i++)
CompressStuff(i, ref writer);
writer.P = Signature == Farc.FARC ? 0x1C : 0x0C;
for (int i = 0; i < Files.Count; i++)
{
FARCFile file = Files[i];
writer.W(Path.GetFileName(file.Name) + "\0");
writer.WE(file.Offset, true);
if (Signature != Farc.FArc)
writer.WE(file.SizeComp, true);
writer.WE(file.SizeUnc, true);
}
writer.Dispose();
}
private void CompressStuff(int i, ref Stream writer)
{
FARCFile file = Files[i];
file.Offset = writer.P;
file.SizeUnc = file.Data.Length;
file.Type = Type.None;
byte[] data = file.Data;
if (Signature == Farc.FArC || (Signature == Farc.FARC && (FARCType & Type.GZip) != 0))
{
file.Type |= Type.GZip;
MSIO.MemoryStream stream = new MSIO.MemoryStream();
using (GZipStream gZipStream = new GZipStream(stream, CompressionMode.Compress))
gZipStream.Write(file.Data, 0, file.Data.Length);
data = stream.ToArray();
stream.Dispose();
file.SizeComp = data.Length;
}
if (Signature == Farc.FARC && (FARCType & Type.ECB) != 0)
{
int alignLength = data.Length.A(0x40);
byte[] tempData = new byte[alignLength];
System.Array.Copy(data, tempData, data.Length);
for (int i1 = file.Data.Length; i1 < alignLength; i1++) tempData[i1] = 0x78;
data = Encrypt(tempData, false);
file.SizeComp = data.Length;
}
writer.W(data);
if (Signature != Farc.FARC)
{
int Align = writer.Position.Align(0x20) - writer.Position;
int Align = writer.P.A(0x10) - writer.P;
for (int i1 = 0; i1 < Align; i1++)
if (Signature == Farc.FArc) writer.WriteByte(0x00);
else writer.WriteByte(0x78);
writer.W((byte)(Signature == Farc.FArc ? 0x00 : 0x78));
}
Files[i] = file;
}
byte[] Encrypt(byte[] Data, bool isFT)
private byte[] Encrypt(byte[] data, bool isFT)
{
MSIO.MemoryStream stream = new MSIO.MemoryStream();
using (AesManaged aes = GetAes(isFT, null))
using (CryptoStream cryptoStream = new CryptoStream(stream,
GetAes(isFT, null).CreateEncryptor(),CryptoStreamMode.Write))
cryptoStream.Write(Data, 0, Data.Length);
aes.CreateEncryptor(), CryptoStreamMode.Write))
cryptoStream.Write(data, 0, data.Length);
return stream.ToArray();
}
public enum Farc
{
FArc = 0x46417263,
FArC = 0x46417243,
FARC = 0x46415243,
}
public void Dispose() => NewFARC();
public struct FARCFile
{
public int Offset;
public int SizeComp;
public int SizeUnc;
public bool GZip;
public bool ECB;
public Type Type;
public byte[] Data;
public string Name;
public override string ToString() => Name;
}
public enum Farc : int
{
FArc = 0x46417263,
FArC = 0x46417243,
FARC = 0x46415243,
}
public enum Type : int
{
None = 0b000,
GZip = 0b010,
ECB = 0b100,
}
}
}
+15
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@@ -0,0 +1,15 @@
using MSIO = System.IO;
namespace KKdMainLib.IO
{
public static class Directory
{
public static bool Exists(string path) => MSIO.Directory.Exists(path);
public static void Delete(string path) => MSIO.Directory.Delete(path);
public static string GetCurrentDirectory() => MSIO.Directory.GetCurrentDirectory();
public static string[] GetFiles(string path) => MSIO.Directory.GetFiles(path);
public static string[] GetDirectories(string path) => MSIO.Directory.GetDirectories(path);
public static MSIO.DirectoryInfo CreateDirectory(string path) => MSIO.Directory.CreateDirectory(path);
}
}
+180
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@@ -0,0 +1,180 @@
using KKdBaseLib;
using KKdBaseLib.F2;
namespace KKdMainLib.IO
{
public static class Extensions
{
public static string NTASCII(this Stream stream, byte end = 0) =>
stream.NT(end).ToASCII();
public static string NTUTF8 (this Stream stream, byte end = 0) =>
stream.NT(end).ToUTF8 ();
public static byte[] NT (this Stream stream, byte end = 0)
{
KKdList<byte> s = KKdList<byte>.New;
while (stream.PI64 < stream.LI64)
{
byte a = stream.RU8();
if (a == end) break;
else s.Add(a);
}
return s.ToArray();
}
public static byte PB (this Stream stream)
{ byte val = stream.RU8(); stream.PI64--; return val; }
public static char PCASCII(this Stream stream)
{ byte val = stream.RU8(); stream.PI64--; return (char)val; }
public static char PCUTF8 (this Stream stream)
{ long LongPosition = stream.PI64; char val = stream.RCUTF8();
stream.PI64 = LongPosition; return val; }
public static Stream SW(this Stream stream)
{
while (true)
if (char.IsWhiteSpace(stream.PCUTF8())) stream.RCUTF8();
else break;
return stream;
}
public static bool As(this Stream stream, byte next)
{ if (stream.PB() == next) { stream.PB(); return true; } else return false; }
public static bool As(this Stream stream, byte[] next)
{
for (var i = 0; i < next.Length; i++)
if (!As(stream, next[i])) return false;
return true;
}
public static bool AsASCII(this Stream stream, char next)
{ if (stream.PCUTF8() == next) { stream.RCUTF8(); return true; } else return false; }
public static bool AsASCII(this Stream stream, string next)
{
for (var i = 0; i < next.Length; i++)
if (!stream.AsASCII(next[i])) return false;
return true;
}
public static bool As(this Stream stream, char next)
{ if (stream.PCUTF8() == next) { stream.RCUTF8(); return true; } else return false; }
public static bool As(this Stream stream, string next)
{
for (var i = 0; i < next.Length; i++)
if (!As(stream, next[i])) return false;
return true;
}
public static long RIX(this Stream stream ) => stream.IsX ?
stream.RI64() : stream.RU32E( );
public static long RIX(this Stream stream, bool isBE) => stream.IsX ?
stream.RI64() : stream.RU32E(isBE);
public static void WX(this Stream stream, long val, ref POF POF)
{ if (stream.IsX) stream.W ( val);
else stream.WE((int)val); POF.Offsets.Add(stream.P); }
public static void WX(this Stream stream, long val, ref POF POF, bool IsBE)
{ if (stream.IsX) stream.W ( val );
else stream.WE((int)val, IsBE); POF.Offsets.Add(stream.P); }
public static void WX(this Stream stream, long val)
{ if (stream.IsX) stream.W ( val);
else stream.WE((int)val); }
public static void WX(this Stream stream, long val, bool IsBE)
{ if (stream.IsX) stream.W ( val );
else stream.WE((int)val, IsBE); }
public static byte[] RaO(this Stream stream, long Offset = -1, long Length = -1)
{
byte[] arr = null;
long Position = stream.PI64;
if (Offset == -1) { Position += stream.IsX ? 8 : 4; Offset = stream.RIX(); }
stream.PI64 = Offset;
if (Length == -1) arr = stream.NT();
else arr = stream.RBy(Length);
stream.PI64 = Position;
return arr;
}
public static string RSaO(this Stream stream, long Offset = -1, long Length = -1)
{
string s = null;
long Position = stream.PI64;
if (Offset == -1) { Position += stream.IsX ? 8 : 4; Offset = stream.RIX(); }
stream.PI64 = Offset;
if (Length == -1) s = stream.NTUTF8();
else s = stream.RSUTF8(Length);
stream.PI64 = Position;
return s;
}
public static Pointer<string> RPSSJIS(this Stream stream)
{ Pointer<string> val = stream.RP<string>();
val.V = stream.RPSSJIS(val.O); return val; }
public static void WPSSJIS(this Stream stream, ref Pointer<string> val)
{ val.O = stream.P; stream.WPSSJIS(val.V); }
public static string RPSSJIS(this Stream stream, long Offset = -1, long Length = -1) =>
Text.ShiftJIS.GetString(stream.RaO(Offset, Length));
public static void WPSSJIS(this Stream stream, string String) =>
stream.W(Text.ShiftJIS.GetBytes(String));
public static Pointer<string> RPS(this Stream stream)
{ Pointer<string> val = stream.RP<string>();
val.V = stream.RSaO(val.O); return val; }
public static void W(this Stream stream, ref Pointer<string> val)
{ val.O = stream.P; stream.W(val.V); }
public static Pointer<T> RP<T>(this Stream stream) =>
new Pointer<T> { O = stream.RI32() };
public static void W<T>(this Stream stream, Pointer<T> val) =>
stream.W(val.O);
public static CountPointer<T> ReadCountPointer<T>(this Stream stream) =>
new CountPointer<T> { C = stream.RI32(), O = stream.RI32() };
public static void W<T>(this Stream stream, CountPointer<T> val)
{ stream.W(val.C); stream.W(val.O); }
public static Pointer<T> RPE<T>(this Stream stream) =>
new Pointer<T> { O = stream.RI32E() };
public static void WE<T>(this Stream stream, Pointer<T> val) =>
stream.WE(val.O);
public static CountPointer<T> RCPE<T>(this Stream stream) =>
new CountPointer<T> { C = stream.RI32E(), O = stream.RI32E() };
public static void WE<T>(this Stream stream, CountPointer<T> val)
{ stream.WE(val.C); stream.WE(val.O); }
public static Pointer<string> RPSE(this Stream stream)
{ Pointer<string> val = stream.RPE<string>();
val.V = stream.RSaO(val.O); return val; }
public static void WE(this Stream stream, ref Pointer<string> val)
{ val.O = stream.P; stream.W(val.V); }
public static Pointer<T> RPX<T>(this Stream stream) =>
new Pointer<T> { O = (int)stream.RIX() };
public static void WE<T>(this Stream stream, ref Pointer<T> val) =>
stream.WX(val.O);
public static Pointer<string> RPSX(this Stream stream)
{ Pointer<string> val = stream.RPX<string>();
val.V = stream.RSaO(val.O); return val; }
public static void WX(this Stream stream, ref Pointer<string> val)
{ val.O = stream.P; stream.W(val.V); }
public static CountPointer<T> RCPX<T>(this Stream stream) =>
new CountPointer<T> { C = (int)stream.RIX(), O = (int)stream.RIX() };
public static void WX<T>(this Stream stream, CountPointer<T> val)
{ stream.WX(val.C); stream.WX(val.O); }
}
}
+34 -16
View File
@@ -5,46 +5,64 @@ namespace KKdMainLib.IO
{
public static class File
{
public static Stream OpenReader(byte[] Data) => new Stream(new MSIO.MemoryStream(Data), Data);
public static Stream OpenReader(byte[] Data) => new Stream(new MSIO.MemoryStream(Data));
public static Stream OpenWriter(byte[] Data) => new Stream(new MSIO.MemoryStream(Data));
public static Stream OpenWriter( ) => new Stream(new MSIO.MemoryStream( ));
public static Stream OpenReader(string file, bool ReadAllAtOnce)
{ Stream IO = OpenReader(file); if (ReadAllAtOnce) return OpenReader(IO.ToArray(true)); return IO; }
{ Stream _IO = OpenReader(file); if (ReadAllAtOnce) { byte[] data =
_IO.ToArray(); _IO.Dispose(); return OpenReader(data); } return _IO; }
public static Stream OpenReader(string file)
{ Stream IO = new Stream(new MSIO.FileStream(file, MSIO.FileMode.Open, MSIO.FileAccess.ReadWrite,
MSIO.FileShare.ReadWrite)) { File = file }; return IO; }
{ Stream _IO = new Stream(new MSIO.FileStream(file, MSIO.FileMode.Open, MSIO.FileAccess.ReadWrite,
MSIO.FileShare.ReadWrite)) { File = file }; return _IO; }
public static Stream OpenWriter(string file, bool SetLength0)
{ Stream IO = OpenWriter(file); IO.SetLength(0 ); return IO; }
{ Stream _IO = OpenWriter(file); if (SetLength0) _IO.SL(0); return _IO; }
public static Stream OpenWriter(string file, int SetLength)
{ Stream IO = OpenWriter(file); IO.SetLength(SetLength); return IO; }
{ Stream _IO = OpenWriter(file); _IO.SL(SetLength); return _IO; }
public static Stream OpenWriter(string file)
{ Stream IO = new Stream(new MSIO.FileStream(file,
{ Stream _IO = new Stream(new MSIO.FileStream(file,
MSIO.FileMode.OpenOrCreate, MSIO.FileAccess.ReadWrite, MSIO.FileShare.ReadWrite)) { File = file };
MSIO.File. SetCreationTimeUtc(file, DateTime.UtcNow);
MSIO.File. SetLastWriteTimeUtc(file, DateTime.UtcNow);
MSIO.File.SetLastAccessTimeUtc(file, DateTime.UtcNow); return IO; }
MSIO.File.SetLastAccessTimeUtc(file, DateTime.UtcNow); return _IO; }
public static byte[] ReadAllBytes(string file, int length, int offset)
{ Stream IO = OpenReader(file); byte[] Data = IO.ReadBytes(length, offset); IO.Close(); return Data; }
{ byte[] Data; using (Stream _IO = OpenReader(file)) Data = _IO.RBy(length, offset); return Data; }
public static byte[] ReadAllBytes(string file)
{ Stream IO = OpenReader(file); byte[] Data = IO.ReadBytes(IO.Length); IO.Close(); return Data; }
{ byte[] Data; using (Stream _IO = OpenReader(file)) Data = _IO.RBy(_IO.L); return Data; }
public static string ReadAllText (string file)
{ Stream IO = OpenReader(file); string Data = IO.ReadStringUTF8(IO.Length); IO.Close(); return Data; }
{ string Data; using (Stream _IO = OpenReader(file)) Data = _IO.RSUTF8(_IO.L);
return Data.Replace(((char)0xFEFF).ToString(), ""); }
public static string[] ReadAllLines(string file)
{ Stream IO = OpenReader(file); string Data = IO.ReadStringUTF8(IO.Length); IO.Close();
return Data.Replace("\r", "").Split('\n'); }
{ string Data; using (Stream _IO = OpenReader(file)) Data = _IO.RSUTF8(_IO.L);
return Data.Replace(((char)0xFEFF).ToString(), "").Replace("\r", "").Split('\n'); }
public static void WriteAllBytes(string file, byte[] data)
{ Stream IO = OpenWriter(file); IO.Write(data); IO.Close(); }
{ using Stream _IO = OpenWriter(file, true); if (data != null) _IO.W(data); }
public static void WriteAllText (string file, string data)
{ Stream IO = OpenWriter(file); IO.Write(data); IO.Close(); }
{ using Stream _IO = OpenWriter(file, true); if (data != null) _IO.W(data); }
public static void WriteAllLines(string file, string[] data)
{ Stream IO = OpenWriter(file); for (int i = 0; i < data.Length; i++) IO.Write(data[i] + "\r\n"); IO.Close(); }
{ using Stream _IO = OpenWriter(file, true);
if (data != null) for (int i = 0; i < data.Length; i++)
if (data[i] != null) _IO.W(data[i] + "\r\n"); }
public static void WriteAllBytes(string file, byte[] data, long length)
{ using Stream _IO = OpenWriter(file, true); if (data != null) { _IO.W(data); _IO.LI64 = length; } }
public static void WriteAllText (string file, string data, long length)
{ using Stream _IO = OpenWriter(file, true); if (data != null) { _IO.W(data); _IO.LI64 = length; } }
public static void WriteAllLines(string file, string[] data, long length)
{ using Stream _IO = OpenWriter(file, true);
if (data != null) { for (int i = 0; i < data.Length; i++)
if (data[i] != null) _IO.W(data[i] + "\r\n"); } _IO.LI64 = length; }
public static bool Exists(string file) => MSIO.File.Exists(file);
public static void Delete(string file) => MSIO.File.Delete(file);
}
}
-21
View File
@@ -1,21 +0,0 @@
using System.Collections.Generic;
namespace KKdMainLib.IO
{
public static class IOExtensions
{
public static string NullTerminatedASCII(this Stream stream, byte End = 0) => stream.NullTerminated(End).ToASCII();
public static string NullTerminatedUTF8 (this Stream stream, byte End = 0) => stream.NullTerminated(End).ToUTF8 ();
public static byte[] NullTerminated (this Stream stream, byte End = 0)
{
List<byte> s = new List<byte>();
while (true && stream.LongPosition > 0 && stream.LongPosition < stream.LongLength)
{
byte a = stream.ReadByte();
if (a == End) break;
else s.Add(a);
}
return s.ToArray();
}
}
}
+251
View File
@@ -0,0 +1,251 @@
//Original or reader part: https://github.com/MarcosLopezC/LightJson/
using KKdBaseLib;
using BaseExtensions = KKdBaseLib.Extensions;
namespace KKdMainLib.IO
{
public struct JSON : System.IDisposable
{
public JSON(Stream _IO) => this._IO = _IO;
private Stream _IO;
public void Close() => _IO.C();
public byte[] ToArray(bool Close = false) => _IO.ToArray(Close);
public MsgPack Read() => ReadValue();
private MsgPack ReadValue(string Key = null)
{
char c = _IO.SW().PCUTF8();
object obj = null;
if (char.IsDigit(c))
obj = RF();
else
obj = c switch
{
'"' => RS (),
'{' => RO (),
'[' => RA (),
'-' => RF (),
't' => RBo(),
'f' => RBo(),
'n' => RN (),
_ => null ,
};
return new MsgPack(Key, obj);
}
private string RS()
{
if (!Extensions.As(_IO, '"')) return null;
char c;
string s = "";
while (true)
{
c = _IO.RCUTF8();
if (c == '\\')
{
c = _IO.RCUTF8();
switch (char.ToLower(c))
{
case '"' :
case '\\':
case '/' : s += c; break;
case 'b' : s += '\b'; break;
case 'f' : s += '\f'; break;
case 'n' : s += '\n'; break;
case 'r' : s += '\r'; break;
case 't' : s += '\t'; break;
case 'u' : s += RUL(); break;
default: return null;
}
}
else if (c == '"') break;
else if (char.IsControl(c))
return null;
else s += c;
}
return s;
}
private char RUL() =>
(char)((((((RHD() << 4) | RHD()) << 4) | RHD()) << 4) | RHD());
private int RHD() => byte.Parse(_IO.RCUTF8().ToString(),
System.Globalization.NumberStyles.HexNumber);
private KKdList<MsgPack> RO()
{
KKdList<MsgPack> obj = KKdList<MsgPack>.New;
if (!Extensions.As(_IO, '{')) return KKdList<MsgPack>.Null;
if (_IO.SW().PCUTF8() == '}')
{ _IO.RCUTF8(); return KKdList<MsgPack>.Null; }
string key;
char c;
while (true)
{
_IO.SW();
key = RS();
if (!Extensions.As(_IO.SW(), ':'))
return KKdList<MsgPack>.Null;
obj.Add(ReadValue(key));
c = _IO.SW().PCUTF8();
if (c == '}') { _IO.RCUTF8(); break; }
else if (c == ',') { _IO.RCUTF8(); continue; }
else return KKdList<MsgPack>.Null;
}
return obj;
}
private MsgPack[] RA()
{
KKdList<MsgPack> obj = KKdList<MsgPack>.New;
if (!Extensions.As(_IO, '[')) return null;
if (_IO.SW().PCUTF8() == ']')
{ _IO.RCUTF8(); return null; }
char c;
while (true)
{
obj.Add(ReadValue(null));
c = _IO.SW().PCUTF8();
if (c == ']') { _IO.RCUTF8(); break; }
else if (c == ',') { _IO.RCUTF8(); continue; }
else return null;
}
return obj.ToArray();
}
private object RF()
{
string s = " ";
_IO.SW();
if (_IO.PCUTF8() == '-') s += _IO.RCUTF8();
if (_IO.PCUTF8() == '0') s += _IO.RCUTF8();
else s += RD ();
char c = _IO.PCUTF8();
if (c == '.') s += _IO.RCUTF8() + RD();
else if (c != 'e' && c != 'E')
{
long val = long.Parse(s);
if (val >= 0x00000000 && val < 0x000000100) return ( byte)val;
else if (val >= -0x00000080 && val < 0x000000080) return ( sbyte)val;
else if (val >= -0x00008000 && val < 0x000008000) return ( short)val;
else if (val >= 0x00000000 && val < 0x000010000) return (ushort)val;
else if (val >= -0x80000000 && val < 0x000800000) return ( int)val;
else if (val >= 0x00000000 && val < 0x100000000) return ( uint)val;
else return val;
}
c = _IO.PCUTF8();
if (c == 'e' || c == 'E')
{
s += _IO.RCUTF8();
c = _IO.PCUTF8();
if (c == '+' || c == '-') s += _IO.RCUTF8();
s += RD();
}
double d = s.ToF64();
return (float)d == d ? (float)d : d;
}
private bool RBo()
{
char c = _IO.PCUTF8();
if (c == 't' && _IO.As( "true")) return true;
else if (c == 'f' && _IO.As("false")) return false;
return false;
}
private object RN() { _IO.As("null"); return null; }
private string RD()
{ string s = ""; while (char.IsDigit(_IO.SW().
PCUTF8())) s += _IO.RCUTF8(); return s; }
public JSON W(MsgPack msgPack, string end = "\n", string tabChar = " ") =>
W(msgPack, end, tabChar, "", true);
public JSON W(MsgPack msgPack, bool style = false) =>
W(msgPack, "\n", " ", "", style);
private JSON W(MsgPack msgPack, string end, string tabChar, string tab, bool style, bool isArray = false)
{
string oldTab = tab;
tab += tabChar;
if (msgPack.Name != null && !isArray) _IO.W("\"" + msgPack.Name + "\":" + (style ? " " : ""));
if (msgPack.Object == null) { WN(); return this; }
if (msgPack.List.NotNull)
{
WM();
if (style) _IO.W(end);
if (msgPack.List.Count > 1)
for (int i = 0; i < msgPack.List.Count; i++)
{
if (style) _IO.W(tab);
W(msgPack.List[i], end, tabChar, tab, style);
if (i + 1 < msgPack.List.Count) _IO.W(',');
if (style) _IO.W(end);
}
else if (msgPack.List.Count == 1)
{
if (style) _IO.W(tab);
W(msgPack.List[0], end, tabChar, tab, style);
if (style) _IO.W(end);
}
if (style) _IO.W(oldTab);
WM(true);
}
else if (msgPack.Array != null)
{
WA();
if (style) _IO.W(end);
if (msgPack.Array.Length > 1)
for (int i = 0; i < msgPack.Array.Length; i++)
{
if (style) _IO.W(tab);
W(msgPack.Array[i], end, tabChar, tab, style, true);
if (i + 1 < msgPack.Array.Length) _IO.W(',');
if (style) _IO.W(end);
}
else if (msgPack.Array.Length == 1)
{
if (style) _IO.W(tab);
W(msgPack.Array[0], end, tabChar, tab, style, true);
if (style) _IO.W(end);
}
if (style) _IO.W(oldTab);
WA(true);
}
else if (msgPack.Object is MsgPack msg) W(msg, end, tabChar, tab, style);
else if (msgPack.Object is string str) W(str);
else _IO.W(BaseExtensions.ToS(msgPack.Object));
return this;
}
public void Dispose() => _IO.C();
private void W(string val) => _IO.W("\"" + val
.Replace("\\", "\\\\").Replace("/" , "\\/").Replace("\"", "\\\"")
.Replace("\0", "\\0" ).Replace("\b", "\\b").Replace("\f", "\\f" )
.Replace("\n", "\\n" ).Replace("\r", "\\r").Replace("\t", "\\t" ) + "\"");
private void WN() => _IO.W("null");
private void WA(bool End = false) => _IO.W(End ? "]" : "[");
private void WM(bool End = false) => _IO.W(End ? "}" : "{");
}
}
+340
View File
@@ -0,0 +1,340 @@
using KKdBaseLib;
namespace KKdMainLib.IO
{
public struct MP : System.IDisposable
{
public MP(Stream _IO) => this._IO = _IO;
private Stream _IO;
public void Close() => _IO.C();
public byte[] ToArray(bool Close = false) => _IO.ToArray(Close);
public MsgPack Read(bool array = false)
{
MsgPack msgPack = MsgPack.New;
byte unk = _IO.RU8();
if (!array) { msgPack.Name = RS((Types)unk); unk = _IO.RU8(); }
Types type = (Types)unk;
if (type >= Types.FixMap && type <= Types.FixMapMax)
{
msgPack.Object = KKdList<MsgPack>.New;
for (int i = 0; i < unk - (byte)Types.FixMap; i++) msgPack.Add( Read(false));
}
else if (type >= Types.FixArr && type <= Types.FixArrMax)
{
msgPack.Object = new MsgPack[unk - (byte)Types.FixArr];
for (int i = 0; i < unk - (byte)Types.FixArr; i++) msgPack[i] = Read( true);
}
else if (type >= Types.FixStr && type <= Types.FixStrMax) msgPack.Object = RS(type);
else if (type >= Types.PosInt && type <= Types.PosIntMax) msgPack.Object = unk;
else if (type >= Types.NegInt && type <= Types.NegIntMax) msgPack.Object = (sbyte)unk;
else
while (true)
{
if (RN (ref msgPack, ref type)) break;
if (RBy(ref msgPack, ref type)) break;
if (RM (ref msgPack, ref type)) break;
if (RE (ref msgPack, ref type)) break;
if (RS (ref msgPack, ref type)) break;
if (RBo(ref msgPack, ref type)) break;
if (RA (ref msgPack, ref type)) break;
if (RI (ref msgPack, ref type)) break;
if (RU (ref msgPack, ref type)) break;
if (RF (ref msgPack, ref type)) break;
break;
}
return msgPack;
}
private bool RI(ref MsgPack msgPack, ref Types type)
{
if (type == Types.Int8 ) msgPack.Object = _IO.RI8();
else if (type == Types.Int16) msgPack.Object = _IO.RI16E(true);
else if (type == Types.Int32) msgPack.Object = _IO.RI32E(true);
else if (type == Types.Int64) msgPack.Object = _IO.RI64E(true);
else return false;
return true;
}
private bool RU(ref MsgPack msgPack, ref Types type)
{
if (type == Types.UInt8 ) msgPack.Object = _IO.RU8();
else if (type == Types.UInt16) msgPack.Object = _IO.RU16E(true);
else if (type == Types.UInt32) msgPack.Object = _IO.RU32E(true);
else if (type == Types.UInt64) msgPack.Object = _IO.RU64E(true);
else return false;
return true;
}
private bool RF(ref MsgPack msgPack, ref Types type)
{
if (type == Types.Float32) msgPack.Object = _IO.RF32E(true);
else if (type == Types.Float64) msgPack.Object = _IO.RF64E(true);
else return false;
return true;
}
private bool RBo(ref MsgPack msgPack, ref Types type)
{
if (type == Types.False) msgPack.Object = false;
else if (type == Types.True ) msgPack.Object = true ;
else return false;
return true;
}
private bool RBy(ref MsgPack msgPack, ref Types type)
{
int Length = 0;
if (type == Types.Bin8 ) Length = _IO.RU8();
else if (type == Types.Bin16) Length = _IO.RI16E(true);
else if (type == Types.Bin32) Length = _IO.RI32E(true);
else return false;
msgPack.Object = _IO.RBy(Length);
return true;
}
private bool RS(ref MsgPack msgPack, ref Types type)
{
string val = RS(type);
if (val != null) msgPack.Object = val;
else return false;
return true;
}
private string RS(Types val)
{
if (val >= Types.FixStr && val <= Types.FixStrMax)
return _IO.RS(val - Types.FixStr);
else if (val >= Types. Str8 && val <= Types. Str32 )
{
System.Enum.TryParse(val.ToString(), out Types type);
int Length = 0;
if (type == Types.Str8 ) Length = _IO.RU8();
else if (type == Types.Str16) Length = _IO.RI16E(true);
else Length = _IO.RI32E(true);
return _IO.RS(Length);
}
return null;
}
private bool RN(ref MsgPack msgPack, ref Types type)
{
if (type == Types.Nil) msgPack.Object = null;
else return false;
return true;
}
private bool RA(ref MsgPack msgPack, ref Types type)
{
int Length = 0;
if (type == Types.Arr16) Length = _IO.RI16E(true);
else if (type == Types.Arr32) Length = _IO.RI32E(true);
else return false;
msgPack.Object = new MsgPack[Length];
for (int i = 0; i < Length; i++) msgPack[i] = Read(true);
return true;
}
private bool RM(ref MsgPack msgPack, ref Types type)
{
int Length = 0;
if (type == Types.Map16) Length = _IO.RI16E(true);
else if (type == Types.Map32) Length = _IO.RI32E(true);
else return false;
msgPack.Object = KKdList<MsgPack>.New;
for (int i = 0; i < Length; i++) msgPack.Add(Read());
return true;
}
private bool RE(ref MsgPack MsgPack, ref Types type)
{
int Length = 0;
if (type == Types.FixExt1 ) Length = 1 ;
else if (type == Types.FixExt2 ) Length = 2 ;
else if (type == Types.FixExt4 ) Length = 4 ;
else if (type == Types.FixExt8 ) Length = 8 ;
else if (type == Types.FixExt16) Length = 16;
else if (type == Types. Ext8 ) Length = _IO.RU8();
else if (type == Types. Ext16) Length = _IO.RI16E(true);
else if (type == Types. Ext32) Length = _IO.RI32E(true);
else return false;
MsgPack.Object = new MsgPack.Ext { Type = _IO.RI8(), Data = _IO.RBy(Length) };
return true;
}
public MP W(MsgPack msgPack, bool IsArray = false)
{
if (msgPack.Name != null && !IsArray) W(msgPack.Name);
Write(msgPack.Object);
return this;
}
private void Write(object obj)
{
if (obj == null) { WN(); return; }
switch (obj)
{
case KKdList<MsgPack> val: WM(val.Count );
for (int i = 0; i < val.Count ; i++) W(val[i]); break;
case MsgPack[] val: WA(val.Length);
for (int i = 0; i < val.Length; i++) W(val[i]); break;
case MsgPack val: W(val); break;
case byte[] val: W(val); break;
case bool val: W(val); break;
case sbyte val: W(val); break;
case byte val: W(val); break;
case short val: W(val); break;
case ushort val: W(val); break;
case int val: W(val); break;
case uint val: W(val); break;
case long val: W(val); break;
case ulong val: W(val); break;
case float val: W(val); break;
case double val: W(val); break;
case string val: W(val); break;
case MsgPack.Ext val: WE(val); break;
}
}
private void W( sbyte val) { if (val < -0x20) _IO.W(0xD0); _IO.W(val); }
private void W( byte val) { if (val >= 0x80) _IO.W(0xCC); _IO.W(val); }
private void W( short val) { if (( sbyte)val == val) W(( sbyte)val);
else if (( byte)val == val) W(( byte)val);
else { _IO.W(0xD1); _IO.WE(val, true); } }
private void W(ushort val) { if (( byte)val == val) W(( byte)val);
else { _IO.W(0xCD); _IO.WE(val, true); } }
private void W( int val) { if (( short)val == val) W(( short)val);
else if ((ushort)val == val) W((ushort)val);
else { _IO.W(0xD2); _IO.WE(val, true); } }
private void W( uint val) { if ((ushort)val == val) W((ushort)val);
else { _IO.W(0xCE); _IO.WE(val, true); } }
private void W( long val) { if (( int)val == val) W(( int)val);
else if (( uint)val == val) W(( uint)val);
else { _IO.W(0xD3); _IO.WE(val, true); } }
private void W( ulong val) { if (( uint)val == val) W(( uint)val);
else { _IO.W(0xCF); _IO.WE(val, true); } }
private void W( float val) { if (( long)val == val) W(( long)val);
else { _IO.W(0xCA); _IO.WE(val, true); } }
private void W(double val) { if (( long)val == val) W(( long)val);
else if (( float)val == val) W(( float)val);
else { _IO.W(0xCB); _IO.WE(val, true); } }
private void W( bool val) =>
_IO.W((byte)(val ? 0xC3 : 0xC2));
private void W(byte[] val)
{
if (val == null) { WN(); return; }
if (val.Length < 0x100) { _IO.W(0xC4); _IO.W (( byte)val.Length ); }
else if (val.Length < 0x10000) { _IO.W(0xC5); _IO.WE((ushort)val.Length, true); }
else { _IO.W(0xC6); _IO.WE( val.Length, true); }
_IO.W(val);
}
private void W(string val)
{
if (val == null) { WN(); return; }
byte[] array = Text.ToUTF8(val);
if (array.Length < 0x20) _IO.W((byte)(0xA0 | (array.Length & 0x1F)));
else if (array.Length < 0x100) { _IO.W(0xD9); _IO.W (( byte)array.Length); }
else if (array.Length < 0x10000) { _IO.W(0xDA); _IO.WE((ushort)array.Length, true); }
else { _IO.W(0xDB); _IO.WE( array.Length, true); }
_IO.W(array);
}
private void WN() => _IO.W(0xC0);
private void WA(int val)
{
if (val == 0) { WN(); return; }
else if (val < 0x10) _IO.W((byte)(0x90 | (val & 0x0F)));
else if (val < 0x10000) { _IO.W(0xDC); _IO.WE((ushort)val, true); }
else { _IO.W(0xDD); _IO.WE( val, true); }
}
private void WM(int val)
{
if (val == 0) { WN(); return; }
else if (val < 0x10) _IO.W((byte)(0x80 | (val & 0x0F)));
else if (val < 0x10000) { _IO.W(0xDE); _IO.WE((ushort)val, true); }
else { _IO.W(0xDF); _IO.WE( val, true); }
}
private void WE(MsgPack.Ext val)
{
if (val.Data == null) { WN(); return; }
if (val.Data.Length < 1 ) { WN(); return; }
else if (val.Data.Length == 1 ) _IO.W(0xD4);
else if (val.Data.Length == 2 ) _IO.W(0xD5);
else if (val.Data.Length == 4 ) _IO.W(0xD6);
else if (val.Data.Length == 8 ) _IO.W(0xD7);
else if (val.Data.Length == 16) _IO.W(0xD8);
else
{
if (val.Data.Length < 0x100)
{ _IO.W(0xC7); _IO.W (( byte)val.Data.Length); }
else if (val.Data.Length < 0x10000)
{ _IO.W(0xC8); _IO.WE((ushort)val.Data.Length, true); }
else
{ _IO.W(0xC9); _IO.WE( val.Data.Length, true); }
}
_IO.W(val.Type);
_IO.W(val.Data);
}
public void Dispose() => _IO.C();
}
public enum Types : byte
{
PosInt = 0b00000000,
FixMap = 0b10000000,
FixArr = 0b10010000,
FixStr = 0b10100000,
Nil = 0b11000000,
NeverUsed = 0b11000001,
False = 0b11000010,
True = 0b11000011,
Bin8 = 0b11000100,
Bin16 = 0b11000101,
Bin32 = 0b11000110,
Ext8 = 0b11000111,
Ext16 = 0b11001000,
Ext32 = 0b11001001,
Float32 = 0b11001010,
Float64 = 0b11001011,
UInt8 = 0b11001100,
UInt16 = 0b11001101,
UInt32 = 0b11001110,
UInt64 = 0b11001111,
Int8 = 0b11010000,
Int16 = 0b11010001,
Int32 = 0b11010010,
Int64 = 0b11010011,
FixExt1 = 0b11010100,
FixExt2 = 0b11010101,
FixExt4 = 0b11010110,
FixExt8 = 0b11010111,
FixExt16 = 0b11011000,
Str8 = 0b11011001,
Str16 = 0b11011010,
Str32 = 0b11011011,
Arr16 = 0b11011100,
Arr32 = 0b11011101,
Map16 = 0b11011110,
Map32 = 0b11011111,
NegInt = 0b11100000,
PosIntMax = 0b01111111,
FixMapMax = 0b10001111,
FixArrMax = 0b10011111,
FixStrMax = 0b10111111,
NegIntMax = 0b11111111,
}
}
+26
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@@ -0,0 +1,26 @@
using MSIO = System.IO;
namespace KKdMainLib.IO
{
public static class Path
{
public static string GetFileName(string path) =>
MSIO.Path.GetFileName(path);
public static string GetFileNameWithoutExtension(string path) =>
MSIO.Path.GetFileNameWithoutExtension(path);
public static string GetExtension(string path) =>
MSIO.Path.GetExtension(path);
public static string GetFullPath(string path) =>
MSIO.Path.GetFullPath(path);
public static string Combine(string path1, string path2) =>
MSIO.Path.Combine(path1, path2);
public static string Combine(string path1, string path2, string path3) =>
MSIO.Path.Combine(path1, path2, path3);
public static string Combine(string path1, string path2, string path3, string path4) =>
MSIO.Path.Combine(path1, path2, path3, path4);
public static string Combine(params string[] paths) =>
MSIO.Path.Combine(paths);
public static string GetDirectoryName(string path) =>
MSIO.Path.GetDirectoryName(path);
}
}
+277 -299
View File
@@ -1,351 +1,326 @@
using System;
using KKdMainLib.Types;
using KKdBaseLib;
using MSIO = System.IO;
using ENRSDict = System.Collections.Generic.Dictionary<long, int>;
namespace KKdMainLib.IO
{
public unsafe class Stream : IDisposable
{
private MSIO.Stream stream;
private int i, i0, TempBitRead, TempBitWrite;
private ushort ValRead;
private byte BitRead, BitWrite, ValWrite;
private byte[] buf;
private byte[] data;
private int I, i, BitRead, BitWrite, TempBitRead, TempBitWrite, ValRead, ValWrite;
private byte[] b;
private MSIO.Stream s;
private Main.Format _format = Main.Format.NULL;
private bool getENRS;
public Main.Format Format
{ get => _format;
set { _format = value;
IsBE = _format == Main.Format.F2BE;
IsX = _format == Main.Format.X || _format == Main.Format.XHD; } }
private Format format = Format.NULL;
public Format Format
{ get => format;
set { format = value;
IsBE = format == Format.F2BE;
IsX = format == Format.X || format == Format.XHD; } }
public ENRSDict ENRSDict;
public bool IsBE = false;
public bool IsX = false;
public bool GetENRS
{ get => getENRS;
set { if (value && ENRSDict == null)
ENRSDict = new ENRSDict(); getENRS = value; } }
public int Offset { get => ( int)LongOffset; set => LongOffset = value; }
public uint UIntOffset { get => (uint)LongOffset; set => LongOffset = value; }
public long LongOffset;
public int O { get => ( int)OI64; set => OI64 = value; }
public uint OU32 { get => (uint)OI64; set => OI64 = value; }
public long OI64;
public int Length { get => ( int)stream. Length; set => stream.SetLength (value); }
public uint UIntLength { get => (uint)stream. Length; set => stream.SetLength (value); }
public long LongLength { get => stream. Length; set => stream.SetLength (value); }
public int Position { get => ( int)stream.Position; set => stream.Position = value ; }
public uint UIntPosition { get => (uint)stream.Position; set => stream.Position = value ; }
public long LongPosition { get => stream.Position; set => stream.Position = value ; }
public int L { get => ( int)s.Length - O; set => s.SetLength(value + O); }
public uint LU32 { get => (uint)s.Length - OU32; set => s.SetLength(value + OU32); }
public long LI64 { get => s.Length - OI64; set => s.SetLength(value + OI64); }
public bool CanRead => stream.CanRead;
public bool CanSeek => stream.CanSeek;
public bool CanTimeout => stream.CanTimeout;
public bool CanWrite => stream.CanWrite;
public int P
{ get => ( int)s.Position - O; set => s.Position = value + O; }
public uint PU32
{ get => (uint)s.Position - OU32; set => s.Position = value + OU32; }
public long PI64
{ get => s.Position - OI64; set => s.Position = value + OI64; }
public bool CanRead => s.CanRead;
public bool CanSeek => s.CanSeek;
public bool CanTimeout => s.CanTimeout;
public bool CanWrite => s.CanWrite;
public string File = null;
public Stream(MSIO.Stream output = null, byte[] Data = null, bool isBE = false)
public Stream(MSIO.Stream output = null, bool isBE = false)
{
if (output == null) output = MSIO.Stream.Null;
OI64 = 0;
BitRead = 8;
ValRead = ValRead = BitWrite = 0;
stream = output;
Format = Main.Format.NULL;
buf = new byte[16];
IsBE = isBE;
data = Data;
s = output;
Format = Format.NULL;
b = new byte[0x100];
this.IsBE = isBE;
}
public void Close() => Dispose();
public void C() => D(true);
public void Flush() => stream.Flush();
public void F() => s.Flush();
public void SetLength(long length = 0) => stream.SetLength(length);
public void SL(long length = 0) => s.SetLength(length);
public long Seek(long offset, SeekOrigin origin = 0) =>
stream.Seek(offset, (MSIO.SeekOrigin)(int)origin);
public long? Seek(long? offset, SeekOrigin origin)
{ if (offset == null) return null; return stream.Seek((long)offset, (MSIO.SeekOrigin)(int)origin); }
public long S(long offset, SeekOrigin origin = 0) =>
s.Seek(offset + O, (MSIO.SeekOrigin)(int)origin);
public void Dispose()
{ CheckWrited(); Dispose(true); }
public long? S(long? offset, SeekOrigin origin)
{ if (offset == null) return null;
return s.Seek((long)offset + O, (MSIO.SeekOrigin)(int)origin); }
private void Dispose(bool disposing)
{ if (disposing && stream != MSIO.Stream.Null) stream.Flush(); stream.Dispose(); data = null; }
private bool disposed = false;
public void D() => D(true);
public void Dispose() => D(true);
public MSIO.Stream BaseStream
{ get { stream.Flush(); return stream; } set { stream = value; } }
protected virtual void D(bool dispose)
{ CW(); if (ENRSDict != null) { ENRSDict.Clear(); ENRSDict = null; }
if (s != MSIO.Stream.Null && !disposed) { disposed = true; s.Flush();
s.Dispose(); } if (dispose) GC.SuppressFinalize(this); }
public void Align(long Align)
public MSIO.Stream BS
{ get { s.Flush(); return s; } set { s = value; } }
public void A(long align)
{
long Al = Align - Position % Align;
if (Position % Align != 0)
stream.Seek(Position + Al, 0);
long Al = align - P % align;
if (P % align != 0) s.Seek(P + O + Al, 0);
}
public void Align(long Align, bool SetLength)
public void A(long align, bool SetLength)
{
if (SetLength) stream.SetLength(Position);
long Al = Align - Position % Align;
if (Position % Align != 0) stream.Seek(Position + Al, 0);
if (SetLength) stream.SetLength(Position);
if (SetLength) s.SetLength(P + O);
long Al = align - P % align;
if (P % align != 0) s.Seek(P + O + Al, 0);
if (SetLength) s.SetLength(P + O);
}
public void Align(long Align, bool SetLength0, bool SetLength1)
public void A(long align, bool setLength0, bool setLength1)
{
if (SetLength0) stream.SetLength(Position);
long Al = Align - Position % Align;
if (Position % Align != 0) stream.Seek(Position + Al, 0);
if (SetLength1) stream.SetLength(Position);
if (setLength0) s.SetLength(P + O);
long Al = align - P % align;
if (P % align != 0) s.Seek(P + Al, 0);
if (setLength1) s.SetLength(P + O);
}
public bool ReadBoolean() => stream.ReadByte() == 1;
public sbyte ReadSByte() => ( sbyte)stream.ReadByte();
public byte ReadByte() => ( byte)stream.ReadByte();
public sbyte ReadInt8() => ( sbyte) IntFromArray(1);
public byte ReadUInt8() => ( byte)UIntFromArray(1);
public short ReadInt16() => ( short) IntFromArray(2);
public ushort ReadUInt16() => (ushort)UIntFromArray(2);
public int ReadInt24() => ( int) IntFromArray(3);
public int ReadInt32() => ( int) IntFromArray(4);
public uint ReadUInt32() => ( uint)UIntFromArray(4);
public long ReadInt64() => IntFromArray(8);
public ulong ReadUInt64() => UIntFromArray(8);
public Half ReadHalf() { ushort a = ReadUInt16(); return ( Half ) a; }
public float ReadSingle() { uint a = ReadUInt32(); return *( float*)&a; }
public double ReadDouble() { ulong a = ReadUInt64(); return *(double*)&a; }
public short ReadInt16Endian() => ( short) IntFromArray(2, IsBE);
public ushort ReadUInt16Endian() => (ushort)UIntFromArray(2, IsBE);
public int ReadInt24Endian() => ( int) IntFromArray(3, IsBE);
public int ReadInt32Endian() => ( int) IntFromArray(4, IsBE);
public uint ReadUInt32Endian() => ( uint)UIntFromArray(4, IsBE);
public long ReadInt64Endian() => IntFromArray(8, IsBE);
public ulong ReadUInt64Endian() => UIntFromArray(8, IsBE);
public Half ReadHalfEndian()
{ ushort a = ReadUInt16Endian(); return ( Half ) a; }
public float ReadSingleEndian()
{ uint a = ReadUInt32Endian(); return *( float*)&a; }
public double ReadDoubleEndian()
{ ulong a = ReadUInt64Endian(); return *(double*)&a; }
public bool RBo () => s.ReadByte() != 0;
public sbyte RI8 () => (sbyte)s.ReadByte();
public byte RU8 () => ( byte)s.ReadByte();
public short RI16() { s.Read(b, 0, 2); return b.TI16(); }
public ushort RU16() { s.Read(b, 0, 2); return b.TU16(); }
public int RI32() { s.Read(b, 0, 4); return b.TI32(); }
public uint RU32() { s.Read(b, 0, 4); return b.TU32(); }
public long RI64() { s.Read(b, 0, 8); return b.TI64(); }
public ulong RU64() { s.Read(b, 0, 8); return b.TU64(); }
public float RF32() { s.Read(b, 0, 4); return b.TF32(); }
public double RF64() { s.Read(b, 0, 8); return b.TF64(); }
public short ReadInt16Endian(bool IsBE) => ( short) IntFromArray(2, IsBE);
public ushort ReadUInt16Endian(bool IsBE) => (ushort)UIntFromArray(2, IsBE);
public int ReadInt24Endian(bool IsBE) => ( int) IntFromArray(3, IsBE);
public int ReadInt32Endian(bool IsBE) => ( int) IntFromArray(4, IsBE);
public uint ReadUInt32Endian(bool IsBE) => ( uint)UIntFromArray(4, IsBE);
public long ReadInt64Endian(bool IsBE) => IntFromArray(8, IsBE);
public ulong ReadUInt64Endian(bool IsBE) => UIntFromArray(8, IsBE);
public Half ReadHalfEndian(bool IsBE)
{ ushort a = ReadUInt16Endian(IsBE); return ( Half ) a; }
public float ReadSingleEndian(bool IsBE)
{ uint a = ReadUInt32Endian(IsBE); return *( float*)&a; }
public double ReadDoubleEndian(bool IsBE)
{ ulong a = ReadUInt64Endian(IsBE); return *(double*)&a; }
public short RI16E() { s.Read(b, 0, 2); b.E(2, IsBE); return b.TI16(); }
public ushort RU16E() { s.Read(b, 0, 2); b.E(2, IsBE); return b.TU16(); }
public int RI32E() { s.Read(b, 0, 4); b.E(4, IsBE); return b.TI32(); }
public uint RU32E() { s.Read(b, 0, 4); b.E(4, IsBE); return b.TU32(); }
public long RI64E() { s.Read(b, 0, 8); b.E(8, IsBE); return b.TI64(); }
public ulong RU64E() { s.Read(b, 0, 8); b.E(8, IsBE); return b.TU64(); }
public float RF32E() { s.Read(b, 0, 4); b.E(4, IsBE); return b.TF32(); }
public double RF64E() { s.Read(b, 0, 8); b.E(8, IsBE); return b.TF64(); }
public void Write(byte[] Val) => stream.Write(Val, 0, Val. Length);
public void Write(byte[] Val, int Length) => stream.Write(Val, 0 , Length);
public void Write(byte[] Val, int Offset, int Length) => stream.Write(Val, Offset, Length);
public void Write(char[] val, bool UTF8 = true)
{ if (UTF8) Write(val.ToUTF8()); else Write(val.ToASCII()); }
public short RI16E(bool isBE) { s.Read(b, 0, 2); b.E(2, isBE); return b.TI16(); }
public ushort RU16E(bool isBE) { s.Read(b, 0, 2); b.E(2, isBE); return b.TU16(); }
public int RI32E(bool isBE) { s.Read(b, 0, 4); b.E(4, isBE); return b.TI32(); }
public uint RU32E(bool isBE) { s.Read(b, 0, 4); b.E(4, isBE); return b.TU32(); }
public long RI64E(bool isBE) { s.Read(b, 0, 8); b.E(8, isBE); return b.TI64(); }
public ulong RU64E(bool isBE) { s.Read(b, 0, 8); b.E(8, isBE); return b.TU64(); }
public float RF32E(bool isBE) { s.Read(b, 0, 4); b.E(4, isBE); return b.TF32(); }
public double RF64E(bool isBE) { s.Read(b, 0, 8); b.E(8, isBE); return b.TF64(); }
public void WriteByte(byte val) => stream.WriteByte(val);
public void W(byte[] Val ) =>
s.Write(Val ?? new byte[0], 0, Val.Length);
public void W(byte[] Val, int Length) =>
s.Write(Val ?? new byte[0], 0, Length);
public void W(byte[] Val, int Offset, int Length) =>
s.Write(Val ?? new byte[0], Offset, Length);
public void W(char[] val, bool UTF8 = true) =>
W(UTF8 ? val.ToUTF8() : val.ToASCII());
public void Write( bool val) => stream.WriteByte((byte)(val ? 1 : 0));
public void Write( sbyte val) => stream.WriteByte((byte) val);
public void Write( byte val) => stream.WriteByte( val);
public void Write( short val) => ToArray(2, val);
public void Write(ushort val) => ToArray(2, val);
public void Write( int val) => ToArray(4, val);
public void Write( uint val) => ToArray(4, val);
public void Write( long val) => ToArray(8, val);
public void Write( ulong val) => ToArray(8, val);
public void Write( Half val) => ToArray(2, (ushort) val);
public void Write( float val) => ToArray(4, *( uint*)&val);
public void Write(double val) => ToArray(8, *(ulong*)&val);
public void W( bool val) => s.WriteByte((byte)(val ? 1 : 0));
public void W( sbyte val) => s.WriteByte((byte) val);
public void W( byte val) => s.WriteByte( val);
public void W( short val) { b.GBy(val); s.Write(b, 0, 2); }
public void W(ushort val) { b.GBy(val); s.Write(b, 0, 2); }
public void W( int val) { b.GBy(val); s.Write(b, 0, 4); }
public void W( uint val) { b.GBy(val); s.Write(b, 0, 4); }
public void W( long val) { b.GBy(val); s.Write(b, 0, 8); }
public void W( ulong val) { b.GBy(val); s.Write(b, 0, 8); }
public void W( float val) { b.GBy(val); s.Write(b, 0, 4); }
public void W(double val) { b.GBy(val); s.Write(b, 0, 8); }
public void Write( sbyte? val) => Write(val.GetValueOrDefault());
public void Write( byte? val) => Write(val.GetValueOrDefault());
public void Write( short? val) => Write(val.GetValueOrDefault());
public void Write(ushort? val) => Write(val.GetValueOrDefault());
public void Write( int? val) => Write(val.GetValueOrDefault());
public void Write( uint? val) => Write(val.GetValueOrDefault());
public void Write( long? val) => Write(val.GetValueOrDefault());
public void Write( ulong? val) => Write(val.GetValueOrDefault());
public void Write( float? val) => Write(val.GetValueOrDefault());
public void Write(double? val) => Write(val.GetValueOrDefault());
public void Write( bool* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write( sbyte* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write( byte* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write( short* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write(ushort* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write( int* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write( uint* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write( long* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write( ulong* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write( float* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void Write(double* val, int Length)
{ for (i = 0; i < Length; i++) Write(val[i]); }
public void WriteEndian( short* val, int Length)
{ for (i = 0; i < Length; i++) WriteEndian(val[i]); }
public void WriteEndian(ushort* val, int Length)
{ for (i = 0; i < Length; i++) WriteEndian(val[i]); }
public void WriteEndian( int* val, int Length)
{ for (i = 0; i < Length; i++) WriteEndian(val[i]); }
public void WriteEndian( uint* val, int Length)
{ for (i = 0; i < Length; i++) WriteEndian(val[i]); }
public void WriteEndian( long* val, int Length)
{ for (i = 0; i < Length; i++) WriteEndian(val[i]); }
public void WriteEndian( ulong* val, int Length)
{ for (i = 0; i < Length; i++) WriteEndian(val[i]); }
public void WriteEndian( float* val, int Length)
{ for (i = 0; i < Length; i++) WriteEndian(val[i]); }
public void WriteEndian(double* val, int Length)
{ for (i = 0; i < Length; i++) WriteEndian(val[i]); }
public void WriteEndian( short* val, int Length, bool IsBE)
{ for (i = 0; i < Length; i++) WriteEndian(val[i], IsBE); }
public void WriteEndian(ushort* val, int Length, bool IsBE)
{ for (i = 0; i < Length; i++) WriteEndian(val[i], IsBE); }
public void WriteEndian( int* val, int Length, bool IsBE)
{ for (i = 0; i < Length; i++) WriteEndian(val[i], IsBE); }
public void WriteEndian( uint* val, int Length, bool IsBE)
{ for (i = 0; i < Length; i++) WriteEndian(val[i], IsBE); }
public void WriteEndian( long* val, int Length, bool IsBE)
{ for (i = 0; i < Length; i++) WriteEndian(val[i], IsBE); }
public void WriteEndian( ulong* val, int Length, bool IsBE)
{ for (i = 0; i < Length; i++) WriteEndian(val[i], IsBE); }
public void WriteEndian( float* val, int Length, bool IsBE)
{ for (i = 0; i < Length; i++) WriteEndian(val[i], IsBE); }
public void WriteEndian(double* val, int Length, bool IsBE)
{ for (i = 0; i < Length; i++) WriteEndian(val[i], IsBE); }
public void W( sbyte? val) => W(val ?? default);
public void W( byte? val) => W(val ?? default);
public void W( short? val) => W(val ?? default);
public void W(ushort? val) => W(val ?? default);
public void W( int? val) => W(val ?? default);
public void W( uint? val) => W(val ?? default);
public void W( long? val) => W(val ?? default);
public void W( ulong? val) => W(val ?? default);
public void W( float? val) => W(val ?? default);
public void W(double? val) => W(val ?? default);
public void Write( char val, bool UTF8 = true)
{ if (UTF8) Write(val.ToString().ToUTF8()); else Write(val.ToString().ToASCII()); }
public void Write(string val, bool UTF8 = true)
{ if (UTF8) Write(val .ToUTF8()); else Write(val .ToASCII()); }
public void W( char val, bool UTF8 = true) =>
W(UTF8 ? val.ToString().ToUTF8() : val.ToString().ToASCII());
public void W(string val, bool UTF8 = true) =>
W(UTF8 ? val .ToUTF8() : val .ToASCII());
public void Write(string Data, ref bool? val) => Write(Data, val.GetValueOrDefault() );
public void Write(string Data, long? val) => Write(Data, val.GetValueOrDefault() );
public void Write(string Data, ulong? val) => Write(Data, val.GetValueOrDefault() );
public void Write(string Data, double? val) => Write(Data, val.ToString( ));
public void Write(string Data, double? val, byte r) => Write(Data, val.ToString(r ));
public void Write(string Data, ref bool val) => Write(Data, Main.ToString(val));
public void Write(string Data, long val) => Write(Data, val.ToString( ));
public void Write(string Data, ulong val) => Write(Data, val.ToString( ));
public void Write(string Data, double val) => Write(Data, val.ToString( ));
public void Write(string Data, double val, byte r) => Write(Data, val.ToString(r ));
public void Write(string Data, string val) => Write((Data + val + "\n").ToUTF8());
public void WriteEndian( short val) => ToArray(2, Endian(val, 2, IsBE));
public void WriteEndian(ushort val) => ToArray(2, Endian(val, 2, IsBE));
public void WriteEndian( int val) => ToArray(4, Endian(val, 4, IsBE));
public void WriteEndian( uint val) => ToArray(4, Endian(val, 4, IsBE));
public void WriteEndian( long val) => ToArray(8, Endian(val, 8, IsBE));
public void WriteEndian( ulong val) => ToArray(8, Endian(val, 8, IsBE));
public void WriteEndian( float val) => ToArray(4, Endian(*( uint*)&val, 4, IsBE));
public void WriteEndian(double val) => ToArray(8, Endian(*(ulong*)&val, 8, IsBE));
public void WE( short val) { b.GBy(val); b.E(2, IsBE); s.Write(b, 0, 2); }
public void WE(ushort val) { b.GBy(val); b.E(2, IsBE); s.Write(b, 0, 2); }
public void WE( int val) { b.GBy(val); b.E(4, IsBE); s.Write(b, 0, 4); }
public void WE( uint val) { b.GBy(val); b.E(4, IsBE); s.Write(b, 0, 4); }
public void WE( long val) { b.GBy(val); b.E(8, IsBE); s.Write(b, 0, 8); }
public void WE( ulong val) { b.GBy(val); b.E(8, IsBE); s.Write(b, 0, 8); }
public void WE( float val) { b.GBy(val); b.E(4, IsBE); s.Write(b, 0, 4); }
public void WE(double val) { b.GBy(val); b.E(8, IsBE); s.Write(b, 0, 8); }
public void WriteEndian( short val, bool IsBE) => ToArray(2, Endian(val, 2, IsBE));
public void WriteEndian(ushort val, bool IsBE) => ToArray(2, Endian(val, 2, IsBE));
public void WriteEndian( int val, bool IsBE) => ToArray(4, Endian(val, 4, IsBE));
public void WriteEndian( uint val, bool IsBE) => ToArray(4, Endian(val, 4, IsBE));
public void WriteEndian( long val, bool IsBE) => ToArray(8, Endian(val, 8, IsBE));
public void WriteEndian( ulong val, bool IsBE) => ToArray(8, Endian(val, 8, IsBE));
public void WriteEndian( float val, bool IsBE) => ToArray(4, Endian(*( uint*)&val, 4, IsBE));
public void WriteEndian(double val, bool IsBE) => ToArray(8, Endian(*(ulong*)&val, 8, IsBE));
public void WE( short val, bool isBE) { b.GBy(val); b.E(2, isBE); s.Write(b, 0, 2); }
public void WE(ushort val, bool isBE) { b.GBy(val); b.E(2, isBE); s.Write(b, 0, 2); }
public void WE( int val, bool isBE) { b.GBy(val); b.E(4, isBE); s.Write(b, 0, 4); }
public void WE( uint val, bool isBE) { b.GBy(val); b.E(4, isBE); s.Write(b, 0, 4); }
public void WE( long val, bool isBE) { b.GBy(val); b.E(8, isBE); s.Write(b, 0, 8); }
public void WE( ulong val, bool isBE) { b.GBy(val); b.E(8, isBE); s.Write(b, 0, 8); }
public void WE( float val, bool isBE) { b.GBy(val); b.E(4, isBE); s.Write(b, 0, 4); }
public void WE(double val, bool isBE) { b.GBy(val); b.E(8, isBE); s.Write(b, 0, 8); }
public long Endian( long BE, byte Length, bool IsBE)
{ if (IsBE) { for (byte i = 0; i < Length; i++) { buf[i] = (byte)BE; BE >>= 8; } BE = 0;
for (byte i = 0; i < Length; i++) { BE |= buf[i]; if (i < Length - 1) BE <<= 8; } } return BE; }
private void RENRS(byte[] b, int c)
{ if (getENRS) ENRSDict.Add(P, c); s.Read(b, 0, c); }
public ulong Endian( ulong BE, byte Length, bool IsBE)
{ if (IsBE) { for (byte i = 0; i < Length; i++) { buf[i] = (byte)BE; BE >>= 8; } BE = 0;
for (byte i = 0; i < Length; i++) { BE |= buf[i]; if (i < Length - 1) BE <<= 8; } } return BE; }
public short RI16ENRS() { RENRS(b, 2); return b.TI16(); }
public ushort RU16ENRS() { RENRS(b, 2); return b.TU16(); }
public int RI32ENRS() { RENRS(b, 4); return b.TI32(); }
public uint RU32ENRS() { RENRS(b, 4); return b.TU32(); }
public long RI64ENRS() { RENRS(b, 8); return b.TI64(); }
public ulong RU64ENRS() { RENRS(b, 8); return b.TU64(); }
public float RF32ENRS() { RENRS(b, 4); return b.TF32(); }
public double RF64ENRS() { RENRS(b, 8); return b.TF64(); }
/*public void WriteEndian( short val) => ToArrayEndian(2, val, IsBE);
public void WriteEndian(ushort val) => ToArrayEndian(2, val, IsBE);
public void WriteEndian( int val) => ToArrayEndian(4, val, IsBE);
public void WriteEndian( uint val) => ToArrayEndian(4, val, IsBE);
public void WriteEndian( long val) => ToArrayEndian(8, val, IsBE);
public void WriteEndian( ulong val) => ToArrayEndian(8, val, IsBE);
public void WriteEndian( float val) => ToArrayEndian(4, *( uint*)&val, IsBE);
public void WriteEndian(double val) => ToArrayEndian(8, *(ulong*)&val, IsBE);
public short RI16ENRSE() { RENRS(b, 2); b.E(2, IsBE); return b.TI16(); }
public ushort RU16ENRSE() { RENRS(b, 2); b.E(2, IsBE); return b.TU16(); }
public int RI32ENRSE() { RENRS(b, 4); b.E(4, IsBE); return b.TI32(); }
public uint RU32ENRSE() { RENRS(b, 4); b.E(4, IsBE); return b.TU32(); }
public long RI64ENRSE() { RENRS(b, 8); b.E(8, IsBE); return b.TI64(); }
public ulong RU64ENRSE() { RENRS(b, 8); b.E(8, IsBE); return b.TU64(); }
public float RF32ENRSE() { RENRS(b, 4); b.E(4, IsBE); return b.TF32(); }
public double RF64ENRSE() { RENRS(b, 8); b.E(8, IsBE); return b.TF64(); }
public void WriteEndian( short val, bool IsBE) => ToArrayEndian(2, val, IsBE);
public void WriteEndian(ushort val, bool IsBE) => ToArrayEndian(2, val, IsBE);
public void WriteEndian( int val, bool IsBE) => ToArrayEndian(4, val, IsBE);
public void WriteEndian( uint val, bool IsBE) => ToArrayEndian(4, val, IsBE);
public void WriteEndian( long val, bool IsBE) => ToArrayEndian(8, val, IsBE);
public void WriteEndian( ulong val, bool IsBE) => ToArrayEndian(8, val, IsBE);
public void WriteEndian( float val, bool IsBE) => ToArrayEndian(4, *( uint*)&val, IsBE);
public void WriteEndian(double val, bool IsBE) => ToArrayEndian(8, *(ulong*)&val, IsBE);
private void ToArrayEndian(byte L, long val, bool IsBE = false)
{ CheckWrited(); if (IsBE) for (i = L; i > 0; i--) { buf[i - 1] = (byte)val; val >>= 8; }
else for (i = 0; i < L; i++) { buf[i ] = (byte)val; val >>= 8; } Write(buf, L); }
public short RI16ENRSE(bool isBE) { RENRS(b, 2); b.E(2, isBE); return b.TI16(); }
public ushort RU16ENRSE(bool isBE) { RENRS(b, 2); b.E(2, isBE); return b.TU16(); }
public int RI32ENRSE(bool isBE) { RENRS(b, 4); b.E(4, isBE); return b.TI32(); }
public uint RU32ENRSE(bool isBE) { RENRS(b, 4); b.E(4, isBE); return b.TU32(); }
public long RI64ENRSE(bool isBE) { RENRS(b, 8); b.E(8, isBE); return b.TI64(); }
public ulong RU64ENRSE(bool isBE) { RENRS(b, 8); b.E(8, isBE); return b.TU64(); }
public float RF32ENRSE(bool isBE) { RENRS(b, 4); b.E(4, isBE); return b.TF32(); }
public double RF64ENRSE(bool isBE) { RENRS(b, 8); b.E(8, isBE); return b.TF64(); }
private void ToArrayEndian(byte L, ulong val, bool IsBE = false)
{ CheckWrited(); if (IsBE) for (i = L; i > 0; i--) { buf[i - 1] = (byte)val; val >>= 8; }
else for (i = 0; i < L; i++) { buf[i ] = (byte)val; val >>= 8; } Write(buf, L); }*/
private void WENRS(byte[] b, int c)
{ if (getENRS) ENRSDict.Add(P, c); s.Write(b, 0, c); }
private void ToArray(byte L, long val)
{ CheckWrited(); for (i = 0; i < L; i++) { buf[i] = (byte)val; val >>= 8; } Write(buf, L); }
public void WENRS( short val) { b.GBy(val); WENRS(b, 2); }
public void WENRS(ushort val) { b.GBy(val); WENRS(b, 2); }
public void WENRS( int val) { b.GBy(val); WENRS(b, 4); }
public void WENRS( uint val) { b.GBy(val); WENRS(b, 4); }
public void WENRS( long val) { b.GBy(val); WENRS(b, 8); }
public void WENRS( ulong val) { b.GBy(val); WENRS(b, 8); }
public void WENRS( float val) { b.GBy(val); WENRS(b, 4); }
public void WENRS(double val) { b.GBy(val); WENRS(b, 8); }
private void ToArray(byte L, ulong val)
{ CheckWrited(); for (i = 0; i < L; i++) { buf[i] = (byte)val; val >>= 8; } Write(buf, L); }
public void WENRSE( short val) { b.GBy(val); b.E(2, IsBE); WENRS(b, 2); }
public void WENRSE(ushort val) { b.GBy(val); b.E(2, IsBE); WENRS(b, 2); }
public void WENRSE( int val) { b.GBy(val); b.E(4, IsBE); WENRS(b, 4); }
public void WENRSE( uint val) { b.GBy(val); b.E(4, IsBE); WENRS(b, 4); }
public void WENRSE( long val) { b.GBy(val); b.E(8, IsBE); WENRS(b, 8); }
public void WENRSE( ulong val) { b.GBy(val); b.E(8, IsBE); WENRS(b, 8); }
public void WENRSE( float val) { b.GBy(val); b.E(4, IsBE); WENRS(b, 4); }
public void WENRSE(double val) { b.GBy(val); b.E(8, IsBE); WENRS(b, 8); }
private long IntFromArray(byte L, bool IsBE = false) { Read(L); long val = 0; if (IsBE)
for (i = 0; i < L; i++) { val <<= 8; val |= buf[i ]; } else
for (i = L; i > 0; i--) { val <<= 8; val |= buf[i - 1]; } return val; }
public void WENRSE( short val, bool isBE) { b.GBy(val); b.E(2, isBE); WENRS(b, 2); }
public void WENRSE(ushort val, bool isBE) { b.GBy(val); b.E(2, isBE); WENRS(b, 2); }
public void WENRSE( int val, bool isBE) { b.GBy(val); b.E(4, isBE); WENRS(b, 4); }
public void WENRSE( uint val, bool isBE) { b.GBy(val); b.E(4, isBE); WENRS(b, 4); }
public void WENRSE( long val, bool isBE) { b.GBy(val); b.E(8, isBE); WENRS(b, 8); }
public void WENRSE( ulong val, bool isBE) { b.GBy(val); b.E(8, isBE); WENRS(b, 8); }
public void WENRSE( float val, bool isBE) { b.GBy(val); b.E(4, isBE); WENRS(b, 4); }
public void WENRSE(double val, bool isBE) { b.GBy(val); b.E(8, isBE); WENRS(b, 8); }
private ulong UIntFromArray(byte L, bool IsBE = false) { Read(L); ulong val = 0; if (IsBE)
for (i = 0; i < L; i++) { val <<= 8; val |= buf[i ]; } else
for (i = L; i > 0; i--) { val <<= 8; val |= buf[i - 1]; } return val; }
public Half RF16 ( ) { ushort a = RU16 ( ); return (Half)a; }
public Half RF16E ( ) { ushort a = RU16E ( ); return (Half)a; }
public Half RF16E (bool isBE) { ushort a = RU16E (isBE); return (Half)a; }
public Half RF16ENRS ( ) { ushort a = RU16E ( ); return (Half)a; }
public Half RF16ENRSE( ) { ushort a = RU16ENRSE( ); return (Half)a; }
public Half RF16ENRSE(bool isBE) { ushort a = RU16ENRSE(isBE); return (Half)a; }
private void Read(byte Length) => stream.Read(buf, 0, Length);
public string ReadString(long Length, bool UTF8 = true)
{ if (UTF8) return ReadStringUTF8 (Length);
else return ReadStringASCII(Length); }
public void W (Half val ) => W ((ushort)val );
public void WE (Half val ) => WE ((ushort)val );
public void WE (Half val, bool isBE) => WE ((ushort)val, isBE);
public void WENRS (Half val ) => WENRS ((ushort)val );
public void WENRSE(Half val ) => WENRSE((ushort)val );
public void WENRSE(Half val, bool isBE) => WENRSE((ushort)val, isBE);
public string ReadStringUTF8 (long Length) => ReadBytes(Length).ToUTF8 ();
public string ReadStringASCII(long Length) => ReadBytes(Length).ToASCII();
public string ReadString(long? Length, bool UTF8 = true)
{ if (UTF8) return ReadStringUTF8 (Length);
else return ReadStringASCII(Length); }
public char RC(bool UTF8 = true) => UTF8 ? RCUTF8() : (char)s.ReadByte();
public string ReadStringUTF8 (long? Length) => ReadBytes(Length).ToUTF8 ();
public string ReadStringASCII(long? Length) => ReadBytes(Length).ToASCII();
public byte[] ReadBytes(long Length, int Offset = 0)
{ byte[] Buf = new byte[Length]; if (Offset > 0) stream.Position = Offset;
stream.Read(Buf, 0, (int)Length); return Buf; }
public void ReadBytes(long Length, byte[] Buf, long Offset = 0)
{ if (Offset > 0) stream.Position = Offset; stream.Read(Buf, 0, (int)Length); }
public char RCUTF8()
{
byte t;
int T;
int val = 0;
for (I = 0, i = 4; I < i; I++)
{
T = s.ReadByte();
if (T == -1) return '\uFFFF';
t = (byte)T;
public byte[] ReadBytes(long? Length, int Offset = 0)
{ if (Length == null) return new byte[0]; else return ReadBytes((long)Length, Offset); }
if ((t & 0xC0) == 0x80 && I > 0) val = (val << 6) | (t & 0x3F);
else if ((t & 0x80) == 0x00 && I == 0) return (char)t;
else if ((t & 0xE0) == 0xC0 && I == 0) { val = t & 0x1F; i = 2; }
else if ((t & 0xF0) == 0xE0 && I == 0) { val = t & 0x0F; i = 3; }
else if ((t & 0xF8) == 0xF0 && I == 0) { val = t & 0x07; i = 4; }
else return '\uFFFF';
}
return (char)val;
}
public void ReadBytes(long Length, byte Bits, byte[] Buf, long Offset = 0)
{ if (Offset > 0) stream.Seek(Offset, 0);
if (Bits > 0 && Bits < 8) for (i0 = 0; i0 < Length; i0++) Buf[i0] = ReadBits(Bits); }
public byte ReadBits(byte Bits)
public string RS(long Length, bool UTF8 = true) =>
UTF8 ? RSUTF8(Length) : RSASCII(Length);
public string RSUTF8 (long Length) => RBy(Length).ToUTF8 ();
public string RSASCII(long Length) => RBy(Length).ToASCII();
public string RS(long? Length, bool UTF8 = true) =>
UTF8 ? RSUTF8(Length) : RSASCII(Length);
public string RSUTF8 (long? Length) => RBy(Length).ToUTF8 ();
public string RSASCII(long? Length) => RBy(Length).ToASCII();
public byte[] RBy(long Length, int Offset = -1)
{ byte[] Buf = new byte[Length]; if (Offset > -1) s.Position = Offset;
s.Read(Buf, 0, (int)Length); return Buf; }
public void RBy(long Length, byte[] Buf, long Offset = -1)
{ if (Offset > -1) s.Position = Offset; s.Read(Buf, 0, (int)Length); }
public byte[] RBy(long? Length, int Offset = -1)
{ if (Length == null) return new byte[0]; else return RBy((long)Length, Offset); }
public void RBy(long Length, byte Bits, byte[] Buf, long Offset = -1)
{ if (Offset > -1) s.Seek(Offset, 0);
if (Bits > 0 && Bits < 8) for (i = 0; i < Length; i++) Buf[i] = RBi(Bits); CR(); }
public byte RBi(byte Bits)
{
BitRead += Bits;
TempBitRead = 8 - BitRead;
@@ -353,39 +328,42 @@ namespace KKdMainLib.IO
{
BitRead = (byte)-TempBitRead;
TempBitRead = 8 + TempBitRead;
ValRead = (ushort)((ValRead << 8) | (byte)stream.ReadByte());
ValRead = (ushort)((ValRead << 8) | (byte)s.ReadByte());
}
return (byte)((ValRead >> TempBitRead) & ((1 << Bits) - 1));
}
public byte ReadHalfByte() => ReadBits(4);
public void Write(byte val, byte Bits)
public byte RHB() => RBi(4);
public void W(int val, byte Bits)
{
val &= (1 << Bits) - 1;
BitWrite += Bits;
TempBitWrite = 8 - BitWrite;
if (TempBitWrite < 0)
{
BitWrite = (byte)-TempBitWrite;
TempBitWrite = 8 + TempBitWrite;
stream.WriteByte((byte)(ValWrite | (val >> BitWrite)));
s.WriteByte((byte)(ValWrite | (val >> BitWrite)));
ValWrite = 0;
}
ValWrite |= (byte)(val << TempBitWrite);
ValWrite |= val << TempBitWrite;
ValWrite &= 0xFF;
}
public void CheckRead () { if (BitRead > 0) ValRead = 0; BitRead = 8; }
public void CheckWrited() { if (BitWrite > 0) { Write(ValWrite); ValWrite = BitWrite = 0; } }
public void CR() //CheckRead
{ if (BitRead > 0) ValRead = 0; BitRead = 8; }
public void CW() //CheckWrite
{ if (BitWrite > 0) { s.WriteByte((byte)ValWrite); ValWrite = 0; BitWrite = 0; } }
public byte[] ToArray(bool Close)
{ byte[] Data = ToArray(); if (Close) this.Close(); return Data; }
{ byte[] Data = ToArray(); if (Close) Dispose(); return Data; }
public byte[] ToArray()
{
long Offset = stream.Position;
LongPosition = 0;
byte[] Data = ReadBytes(stream.Length);
LongPosition = Offset;
long Position = s.Position;
byte[] Data = RBy(s.Length, 0);
s.Position = Position;
return Data;
}
}
+18 -41
View File
@@ -1,16 +1,17 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="15.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<Import Project="$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props" Condition="Exists('$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props')" />
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">AnyCPU</Platform>
<ProjectGuid>{2BA7EFC6-91D1-8BBC-C487-06C7F36CC789}</ProjectGuid>
<OutputType>Library</OutputType>
<RootNamespace>KKdMainLib</RootNamespace>
<AssemblyName>KKdMainLib</AssemblyName>
<TargetFrameworkVersion>v4.6.1</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
<AutoGenerateBindingRedirects>true</AutoGenerateBindingRedirects>
<Authors>korenkonder</Authors>
<Company></Company>
<Configuration></Configuration>
<Copyright>korenkonder © 2018-2019</Copyright>
<Description>A simple library for working with Project Diva AC/DT/F/AFT/F2/X/FT files</Description>
<FileVersion>0.4.8.1</FileVersion>
<PackageId>KKdMainLib</PackageId>
<Product>KKdMainLib</Product>
<TargetFramework>netstandard2.0</TargetFramework>
<Title>KKdMainLib</Title>
<Version>0.4.8.1</Version>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -22,6 +23,8 @@
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -33,36 +36,10 @@
<WarningLevel>4</WarningLevel>
<DebugSymbols>true</DebugSymbols>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<ItemGroup>
<Compile Include="A3DA\A3DAExt.cs" />
<Compile Include="DB\Auth.cs" />
<Compile Include="DEX.cs" />
<Compile Include="DIVAFILE.cs" />
<Compile Include="IO\File.cs" />
<Compile Include="IO\IOExtensions.cs" />
<Compile Include="IO\Stream.cs" />
<Compile Include="MathExtensions.cs" />
<Compile Include="MessagePack\MsgPack.cs" />
<Compile Include="MessagePack\IO.cs" />
<Compile Include="STR.cs" />
<Compile Include="Types\Half.cs" />
<Compile Include="A3DA\A3DA.cs" />
<Compile Include="FARC.cs" />
<Compile Include="Main.cs" />
<Compile Include="PDHeader.cs" />
<Compile Include="POF.cs" />
<Compile Include="Text.cs" />
<Compile Include="Xml.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
<ProjectReference Include="..\KKdBaseLib\KKdBaseLib.csproj" />
</ItemGroup>
<ItemGroup>
<Reference Include="System" />
<Reference Include="System.Drawing" />
<Reference Include="System.Numerics" />
<Reference Include="System.Windows.Forms" />
<Reference Include="System.Xml" />
<Reference Include="System.Xml.Linq" />
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
</Project>
</Project>
+102 -263
View File
@@ -1,203 +1,90 @@
using System;
using System.Windows.Forms;
using System.Linq;
using System.Globalization;
using System.Collections.Generic;
using KKdBaseLib;
namespace KKdMainLib
{
public static unsafe class Main
{
public static void ConsoleDesign(string text, params string[] args)
{
text = string.Format(text, args);
string Text = "█ █";
Text = Text.Remove(3) + text + Text.Remove(0, text.Length + 3);
Console.WriteLine(Text);
}
public static void ConsoleDesign(bool Fill)
{
if (Fill) Console.WriteLine("████████████████████████████████████████████████████");
else Console.WriteLine("█ █");
}
public const string TimeFormatHHmmssfff = "{0:d2}:{1:d2}:{2:d2}.{3:d3}";
public static void WriteTime(this TimeSpan time, bool WriteLine = false)
public static void WriteTime(this TimeSpan time, bool writeLine = false)
{
if (WriteLine) Console.WriteLine(TimeFormatHHmmssfff,
if (writeLine) Console.WriteLine(TimeFormatHHmmssfff,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
else Console.Write (TimeFormatHHmmssfff,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
}
public static void WriteTime(this TimeSpan time, string Text, bool WriteLine = true)
public static void WriteTime(this TimeSpan time, string Text, bool writeLine = true)
{
if (WriteLine) Console.WriteLine(TimeFormatHHmmssfff + " - " + Text,
if (writeLine) Console.WriteLine(TimeFormatHHmmssfff + " - " + Text,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
else Console.Write (TimeFormatHHmmssfff + " - " + Text,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
}
private static string GetArgs(string name, bool And, params string[] ext)
{
string Out = "";
if (And) Out = "|";
Out += name + " files (";
for (int i = 0; i < ext.Length; i++)
{ Out += "*." + ext[i]; if (i + 1 < ext.Length) Out += ", "; }
Out += ")|";
for (int i = 0; i < ext.Length; i++)
{ Out += "*." + ext[i]; if (i + 1 < ext.Length) Out += ";"; }
return Out;
}
private static string GetArgs(string name, params string[] ext)
{
string Out = name + " files (";
for (int i = 0; i < ext.Length; i++)
{ Out += "*." + ext[i]; if (i + 1 < ext.Length) Out += ", "; }
Out += ")|";
for (int i = 0; i < ext.Length; i++)
{ Out += "*." + ext[i]; if (i + 1 < ext.Length) Out += ";"; }
return Out;
}
public static string Choose(int code, string filetype, out string[] FileNames)
{
string MsgPack = GetArgs("MessagePack", true, "mp");
string BIN = GetArgs("BIN", true, "bin");
string XML = GetArgs("XML", true, "xml");
FileNames = new string[0];
if (code == 1)
{
Console.WriteLine("Choose file(s) to open:");
OpenFileDialog ofd = new OpenFileDialog { InitialDirectory =
Application.StartupPath, Multiselect = true };
if (filetype == "a3da") ofd.Filter = GetArgs("A3DA", "a3da", "mp") +
GetArgs("A3DA", true, "a3da") + MsgPack;
else if (filetype == "bin" ) ofd.Filter = GetArgs("BIN" , "bin", "mp") +
BIN + MsgPack;
else if (filetype == "bon" ) ofd.Filter = GetArgs("BON" , "bon", "bin", "mp") +
GetArgs("BON", true, "bon") + BIN + MsgPack;
else if (filetype == "dex" ) ofd.Filter = GetArgs("DEX" , "dex", "bin", "mp") +
GetArgs("DEX", true, "dex") + BIN + MsgPack;
else if (filetype == "diva") ofd.Filter = GetArgs("DIVA", "diva", "wav") +
GetArgs("DIVA", true, "diva") + GetArgs("WAV", true, "wav");
else if (filetype == "dsc" ) ofd.Filter = GetArgs("DSC" , "dsc", "mp") +
GetArgs("DSC", true, "dsc") + MsgPack;
else if (filetype == "farc") ofd.Filter = "FARC Archives (*.farc)|*.farc";
else if (filetype == "image") ofd.Filter = GetArgs("Image", "dds", "png") +
GetArgs("DDS", true, "dds") + GetArgs("PNG", true, "png");
else if (filetype == "kki") ofd.Filter = GetArgs("KKI", "kki");
else if (filetype == "mot") ofd.Filter = GetArgs("MOT", "mot", "mp") +
GetArgs("MOT", true, "mot") + MsgPack;
else if (filetype == "ppd") ofd.Filter = GetArgs("PPD", "ppd", "pak", "mod") +
GetArgs("PPD", true, "ppd") + GetArgs("PAK", true, "pak") + GetArgs("MOD", true, "mod");
else if (filetype == "str") ofd.Filter = GetArgs("STR", "str", "bin", "mp") +
GetArgs("STR", true, "str") + BIN + MsgPack;
else if (filetype == "vag") ofd.Filter = GetArgs("VAG", "vag", "wav") +
GetArgs("VAG", true, "vag") + GetArgs("WAV", true, "wav");
else if (filetype == "xml") ofd.Filter = GetArgs("XML", "xml");
else ofd.Filter = GetArgs("All;", false, "*");
if (ofd.ShowDialog() == DialogResult.OK)
FileNames = ofd.FileNames;
}
else if (code == 2)
{
FolderBrowserDialog fbd = new FolderBrowserDialog();
Console.WriteLine("Choose folder:");
fbd.SelectedPath = Application.StartupPath;
if (fbd.ShowDialog() == DialogResult.OK)
return fbd.SelectedPath.ToString();
}
return "";
}
public static void ChooseSave(int code, string filetype,
out string InitialDirectory, out string[] FileNames)
{
InitialDirectory = "";
FileNames = new string[0];
Console.WriteLine("Choose file to save:");
SaveFileDialog sfd = new SaveFileDialog { InitialDirectory = Application.StartupPath };
switch (filetype)
{
case "kki":
sfd.Filter = "KKI file (*.kki)|*.kki";
break;
}
if (sfd.ShowDialog() == DialogResult.OK)
{
InitialDirectory = sfd.InitialDirectory.ToString();
FileNames = sfd.FileNames;
}
}
public static string NullTerminated(this string Source, ref int i, byte End)
public static string NullTerminated(this string source, ref int i, byte end)
{
string s = "";
while (true)
{
if (Source[i] == End) break;
else s += Source[i];
if (source[i] == end) break;
else s += source[i];
i++;
}
return s;
}
public static bool StartsWith(this Dictionary<string, object> Dict, string args, char Split) =>
Dict.StartsWith(args.Split(Split));
public static bool StartsWith(this Dictionary<string, object> dict, string args, char split = '.') =>
dict.StartsWith(args.Split(split));
public static bool StartsWith(this Dictionary<string, object> Dict, string args) =>
Dict.StartsWith(args.Split('.'));
public static bool StartsWith(this Dictionary<string, object> Dict, string[] args)
public static bool StartsWith(this Dictionary<string, object> dict, string[] args)
{
Dictionary<string, object> bufDict = new Dictionary<string, object>();
if (Dict == null)
Dict = new Dictionary<string, object>();
if (dict == null) return false;
else if (args.Length < 1) return false;
args[0] = args[0].ToLower();
if (args.Length > 1)
{
string[] NewArgs = new string[args.Length - 1];
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++)
NewArgs[i] = args[i + 1];
if (!Dict.ContainsKey(args[0]))
newArgs[i] = args[i + 1];
if (!dict.ContainsKey(args[0]))
return false;
bufDict = (Dictionary<string, object>)Dict[args[0]];
return StartsWith(bufDict, NewArgs);
bufDict = (Dictionary<string, object>)dict[args[0]];
return StartsWith(bufDict, newArgs);
}
return Dict.ContainsKey(args[0]);
return dict.ContainsKey(args[0]);
}
public static bool FindValue(this Dictionary<string, object> Dict,
ref bool value, char Split, string args)
{ if (Dict.FindValue(out string val, args.Split(Split)))
return bool.TryParse(val, out value); return false; }
public static bool FindValue(this Dictionary<string, object> dict,
ref bool value, char split, string args) =>
dict.FindValue(out string val, args.Split(split)) ? bool.TryParse(val, out value) : false;
public static bool FindValue(this Dictionary<string, object> dict,
ref int value, char split, string args) =>
dict.FindValue(out string val, args.Split(split)) ? int.TryParse(val, out value) : false;
public static bool FindValue(this Dictionary<string, object> dict,
ref float value, char split, string args) =>
dict.FindValue(out string val, args.Split(split)) ? val.ToF32( out value) : false;
public static bool FindValue(this Dictionary<string, object> dict,
ref double value, char split, string args) =>
dict.FindValue(out string val, args.Split(split)) ? val.ToF64( out value) : false;
public static bool FindValue(this Dictionary<string, object> Dict,
ref int value, char Split, string args)
{ if (Dict.FindValue(out string val, args.Split(Split)))
return int.TryParse(val, out value); return false; }
ref string value, char split, string args)
{ if (Dict.FindValue(out string val, args.Split(split)))
{ value = val; return true; } return false; }
public static bool FindValue(this Dictionary<string, object> Dict,
ref double value, char Split, string args)
{ if (Dict.FindValue(out string val, args.Split(Split)))
return val.ToDouble(out value); return false; }
public static bool FindValue(this Dictionary<string, object> Dict,
ref string value, char Split, string args)
{ if (Dict.FindValue(out string val, args.Split(Split)))
{ value = val; return true; } return false; }
public static bool FindValue(this Dictionary<string, object> Dict,
public static bool FindValue(this Dictionary<string, object> dict,
out bool value, string args)
{ if (Dict.FindValue(out string val, args.Split('.' )))
{ if (dict.FindValue(out string val, args.Split('.' )))
return bool.TryParse(val, out value); value = false; return false; }
public static bool FindValue(this Dictionary<string, object> Dict,
@@ -205,156 +92,108 @@ namespace KKdMainLib
{ if (Dict.FindValue(out string val, args.Split('.' )))
return int.TryParse(val, out value); value = 0; return false; }
public static bool FindValue(this Dictionary<string, object> Dict,
public static bool FindValue(this Dictionary<string, object> dict,
out float value, string args)
{ if (dict.FindValue(out string val, args.Split('.' )))
return val.ToF32(out value); value = 0; return false; }
public static bool FindValue(this Dictionary<string, object> dict,
out double value, string args)
{ if (Dict.FindValue(out string val, args.Split('.' )))
return val.ToDouble(out value); value = 0; return false; }
{ if (dict.FindValue(out string val, args.Split('.' )))
return val.ToF64(out value); value = 0; return false; }
public static bool FindValue(this Dictionary<string, object> Dict,
public static bool FindValue(this Dictionary<string, object> dict,
out int? value, string args)
{ if (Dict.FindValue(out string val, args.Split('.' )))
{ if (dict.FindValue(out string val, args.Split('.' )))
{ bool Val = int.TryParse(val, out int _value);
value = _value; return Val; } value = null; return false; }
value = _value; return Val; } value = null; return false; }
public static bool FindValue(this Dictionary<string, object> Dict,
public static bool FindValue(this Dictionary<string, object> dict,
out float? value, string args)
{ if (dict.FindValue(out string val, args.Split('.' )))
return val.ToF32(out value); value = null; return false; }
public static bool FindValue(this Dictionary<string, object> dict,
out double? value, string args)
{ if (Dict.FindValue(out string val, args.Split('.' )))
return ToDouble(val, out value); value = null; return false; }
{ if (dict.FindValue(out string val, args.Split('.' )))
return val.ToF64(out value); value = null; return false; }
public static bool FindValue(this Dictionary<string, object> Dict,
public static bool FindValue(this Dictionary<string, object> dict,
out string value, string args)
{ if (Dict.FindValue(out string val, args.Split('.' )))
{ if (dict.FindValue(out string val, args.Split('.' )))
{ value = val; return true; } value = null; return false; }
public static bool FindValue(this Dictionary<string, object> Dict,
public static bool FindValue(this Dictionary<string, object> dict,
out string value, string[] args)
{
value = "";
if (Dict == null) return false;
if (dict == null) return false;
else if (args.Length < 1) return false;
if (!Dict.ContainsKey(args[0])) return false;
args[0] = args[0].ToLower();
if (!dict.ContainsKey(args[0])) return false;
else if (args.Length > 1)
{
string[] NewArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++) NewArgs[i] = args[i + 1];
return ((Dictionary<string, object>)Dict[args[0]]).FindValue(out value, NewArgs);
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++) newArgs[i] = args[i + 1];
return ((Dictionary<string, object>)dict[args[0]]).FindValue(out value, newArgs);
}
else if (args.Length == 1)
{
if (Dict[args[0]].GetType() == Dict.GetType())
return ((Dictionary<string, object>)Dict[args[0]]).FindValue(out value, args);
else if (Dict[args[0]].GetType() != typeof(string)) return false;
if (dict[args[0]].GetType() == dict.GetType())
return ((Dictionary<string, object>)dict[args[0]]).FindValue(out value, args);
else if (dict[args[0]].GetType() != typeof(string)) return false;
}
value = (string)Dict[args[0]];
value = (string)dict[args[0]];
return true;
}
public static void GetDictionary(this Dictionary<string, object> Dict,
string args, string value, char Split = '.') =>
Dict.GetDictionary(args.Split(Split), value);
public static void GetDictionary(this Dictionary<string, object> Dict,
public static void GetDictionary(this Dictionary<string, object> dict,
string args, string value, char split = '.') =>
dict.GetDictionary(args.Split(split), value);
public static void GetDictionary(this Dictionary<string, object> dict,
string[] args, string value)
{
Dictionary<string, object> bufDict = new Dictionary<string, object>();
if (Dict == null) Dict = new Dictionary<string, object>();
if (dict == null) dict = new Dictionary<string, object>();
else if (args.Length < 1) return;
args[0] = args[0].ToLower();
if (args.Length > 1)
{
string[] NewArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++) NewArgs[i] = args[i + 1];
if (!Dict.ContainsKey(args[0])) Dict.Add(args[0], null);
if (Dict[args[0]] != null)
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++) newArgs[i] = args[i + 1];
if (!dict.ContainsKey(args[0])) dict.Add(args[0], null);
if (dict[args[0]] != null)
{
if (Dict[args[0]].GetType() == typeof(string))
Dict[args[0]] = new Dictionary<string, object> { { "", Dict[args[0]] } };
if (dict[args[0]].GetType() == typeof(string))
dict[args[0]] = new Dictionary<string, object> { { "", dict[args[0]] } };
}
else Dict[args[0]] = new Dictionary<string, object>();
bufDict = (Dictionary<string, object>)Dict[args[0]];
bufDict.GetDictionary(NewArgs, value);
Dict[args[0]] = bufDict;
else dict[args[0]] = new Dictionary<string, object>();
bufDict = (Dictionary<string, object>)dict[args[0]];
bufDict.GetDictionary(newArgs, value);
dict[args[0]] = bufDict;
}
else if (!Dict.ContainsKey(args[0])) Dict.Add(args[0], value);
else if (!dict.ContainsKey(args[0])) dict.Add(args[0], value);
}
public static TKey GetKey<TKey, TVal>(this Dictionary<TKey, TVal> dict, TVal val) =>
dict.First((System.Collections.Generic.KeyValuePair<TKey, TVal> x) => x.Value.Equals(val)).Key;
public static string ToTitleCase(this string s)
{ return CultureInfo.CurrentCulture.TextInfo.ToTitleCase(s); }
public static int[] SortWriter(this int Length)
public static int[] SortWriter(this int length)
{
int i = 0;
List<string> A = new List<string>();
for (i = 0; i < Length; i++) A.Add(i.ToString());
for (i = 0; i < length; i++) A.Add(i.ToString());
A.Sort();
int[] B = new int[Length];
for (i = 0; i < Length; i++) B[i] = int.Parse(A[i]);
int[] B = new int[length];
for (i = 0; i < length; i++) B[i] = int.Parse(A[i]);
return B;
}
private static readonly string NumberDecimalSeparator =
NumberFormatInfo.CurrentInfo.NumberDecimalSeparator;
public static string ToString(this bool? d) => d.GetValueOrDefault().ToString();
public static string ToString(this bool d) => d.ToString().ToLower();
public static string ToString(this float? d, byte round) => d.GetValueOrDefault().ToString(round);
public static string ToString(this float? d) => d.GetValueOrDefault().ToString();
public static string ToString(this float d, byte round) =>
Math.Round(d, round).ToString().ToLower().Replace(NumberDecimalSeparator, ".");
public static string ToString(this float d) =>
d .ToString().ToLower().Replace(NumberDecimalSeparator, ".");
public static string ToString(this double? d, byte round) => d.GetValueOrDefault().ToString(round);
public static string ToString(this double? d) => d.GetValueOrDefault().ToString();
public static string ToString(this double d, byte round) =>
Math.Round(d, round).ToString().ToLower().Replace(NumberDecimalSeparator, ".");
public static string ToString(this double d) =>
d .ToString().ToLower().Replace(NumberDecimalSeparator, ".");
public static float ToSingle(this string s) =>
float. Parse(s.Replace(".", NumberDecimalSeparator));
public static bool ToSingle(this string s, out float value) =>
float.TryParse(s.Replace(".", NumberDecimalSeparator), out value);
public static double ToDouble(this string s) =>
double. Parse(s.Replace(".", NumberDecimalSeparator));
public static bool ToDouble(this string s, out double value) =>
double.TryParse(s.Replace(".", NumberDecimalSeparator), out value);
public static bool ToSingle(this string s, out float? value)
{ bool Val = ToSingle(s, out float val); value = val; return Val; }
public static bool ToDouble(this string s, out double? value)
{ bool Val = ToDouble(s, out double val); value = val; return Val; }
public enum Format : byte
{
NULL = 0,
DT = 1,
PDA = 2,
DT2 = 3,
DTe = 4,
F = 5,
FT = 6,
F2LE = 7,
F2BE = 8,
MGF = 9,
X = 10,
XHD = 11,
}
public struct ThreadArgs
{
public int Thread;
public int ID;
}
}
}
-196
View File
@@ -1,196 +0,0 @@
using System;
namespace KKdMainLib
{
public static class MathExtensions
{
public static void FloorCeiling(ref double Value)
{ if (Value % 1 >= 0.5) Value = (long)(Value + 0.5);
else Value = (long) Value; }
public static long FloorCeiling(this double Value)
{ if (Value % 1 >= 0.5) return (long)(Value + 0.5);
else return (long) Value; }
public static int Align(this int value, int alignement, int divide = 1) =>
((value % alignement == 0) ? value : (value + alignement - value % alignement)) / divide;
public static uint Align(this uint value, uint alignement, uint divide = 1) =>
((value % alignement == 0) ? value : (value + alignement - value % alignement)) / divide;
public static long Align(this long value, long alignement, long divide = 1) =>
((value % alignement == 0) ? value : (value + alignement - value % alignement)) / divide;
public static ulong Align(this ulong value, ulong alignement, ulong divide = 1) =>
((value % alignement == 0) ? value : (value + alignement - value % alignement)) / divide;
public static byte[] buf = new byte[8];
public static unsafe byte* bufPtr = buf.GetPtr();
public static unsafe long Endian(this long LE, byte Len, bool IsBE)
{ if (IsBE) { for (byte i = 0; i < Len; i++) { bufPtr[i] = (byte)LE; LE >>= 8; } LE = 0;
for (byte i = 0; i < Len; i++) { LE |= bufPtr[i]; if (i < Len - 1) LE <<= 8; } } return LE; }
public static unsafe ulong Endian(this ulong LE, byte Len, bool IsBE)
{ if (IsBE) { for (byte i = 0; i < Len; i++) { bufPtr[i] = (byte)LE; LE >>= 8; } LE = 0;
for (byte i = 0; i < Len; i++) { LE |= bufPtr[i]; if (i < Len - 1) LE <<= 8; } } return LE; }
public static sbyte CITSB(this int c)
{
if (c > 0x7F) c = 0x7F;
else if (c < -0x80) c = -0x80;
return (sbyte)c;
}
public static byte CITB(this int c)
{
if (c > 0xFF) c = 0xFF;
else if (c < 0x00) c = 0x00;
return (byte)c;
}
public static short CITS(this int c)
{
if (c > 0x7FFF) c = 0x7FFF;
else if (c < -0x8000) c = -0x8000;
return (short)c;
}
public static ushort CITUS(this int c)
{
if (c > 0xFFFF) c = 0xFFFF;
else if (c < 0x0000) c = 0x0000;
return (ushort)c;
}
public static sbyte CFTSB(this float c)
{
c = c.Round();
if (c > 0x7F) c = 0x7F;
else if (c < -0x80) c = -0x80;
return (sbyte)c;
}
public static byte CFTB(this float c)
{
c = c.Round();
if (c > 0xFF) c = 0xFF;
else if (c < 0x00) c = 0x00;
return (byte)c;
}
public static short CFTS(this float c)
{
c = c.Round();
if (c > 0x7FFF) c = 0x7FFF;
else if (c < -0x8000) c = -0x8000;
return (short)c;
}
public static ushort CFTUS(this float c)
{
c = c.Round();
if (c > 0xFFFF) c = 0xFFFF;
else if (c < 0x0000) c = 0x0000;
return (ushort)c;
}
public static int CFTI(this float c)
{
c = c.Round();
if (c > 0x7FFFFFFF) c = 0x7FFFFFFF;
else if (c < -0x80000000) c = -0x80000000;
return (int)c;
}
public static uint CFTUI(this float c)
{
c = c.Round();
if (c > 0xFFFFFFFF) c = 0xFFFFFFFF;
else if (c < 0x00000000) c = 0x00000000;
return (uint)c;
}
public static float Round(this float c) => (float)Math.Round(c);
public static sbyte CFTSB(this double c)
{
c = Math.Round(c);
if (c > 0x7F) c = 0x7F;
else if (c < -0x80) c = -0x80;
return (sbyte)c;
}
public static byte CFTB(this double c)
{
c = Math.Round(c);
if (c > 0xFF) c = 0xFF;
else if (c < 0x00) c = 0x00;
return (byte)c;
}
public static short CFTS(this double c)
{
c = Math.Round(c);
if (c > 0x7FFF) c = 0x7FFF;
else if (c < -0x8000) c = -0x8000;
return (short)c;
}
public static ushort CFTUS(this double c)
{
c = Math.Round(c);
if (c > 0xFFFF) c = 0xFFFF;
else if (c < 0x0000) c = 0x0000;
return (ushort)c;
}
public static int CFTI(this double c)
{
c = Math.Round(c);
if (c > 0x7FFFFFFF) c = 0x7FFFFFFF;
else if (c < -0x80000000) c = -0x80000000;
return (int)c;
}
public static uint CFTUI(this double c)
{
c = Math.Round(c);
if (c > 0xFFFFFFFF) c = 0xFFFFFFFF;
else if (c < 0x00000000) c = 0x00000000;
return (uint)c;
}
public static double Round(this double c) => Math.Round(c);
public static unsafe sbyte* GetPtr(this sbyte[] array)
{ sbyte* Ptr; fixed ( sbyte* tempPtr = array) Ptr = tempPtr; return Ptr; }
public static unsafe byte* GetPtr(this byte[] array)
{ byte* Ptr; fixed ( byte* tempPtr = array) Ptr = tempPtr; return Ptr; }
public static unsafe short* GetPtr(this short[] array)
{ short* Ptr; fixed ( short* tempPtr = array) Ptr = tempPtr; return Ptr; }
public static unsafe ushort* GetPtr(this ushort[] array)
{ ushort* Ptr; fixed (ushort* tempPtr = array) Ptr = tempPtr; return Ptr; }
public static unsafe int* GetPtr(this int[] array)
{ int* Ptr; fixed ( int* tempPtr = array) Ptr = tempPtr; return Ptr; }
public static unsafe uint* GetPtr(this uint[] array)
{ uint* Ptr; fixed ( uint* tempPtr = array) Ptr = tempPtr; return Ptr; }
public static unsafe long* GetPtr(this long[] array)
{ long* Ptr; fixed ( long* tempPtr = array) Ptr = tempPtr; return Ptr; }
public static unsafe ulong* GetPtr(this ulong[] array)
{ ulong* Ptr; fixed ( ulong* tempPtr = array) Ptr = tempPtr; return Ptr; }
public static unsafe float* GetPtr(this float[] array)
{ float* Ptr; fixed ( float* tempPtr = array) Ptr = tempPtr; return Ptr; }
public static unsafe double* GetPtr(this double[] array)
{ double* Ptr; fixed (double* tempPtr = array) Ptr = tempPtr; return Ptr; }
}
}
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using System;
using System.Collections.Generic;
using KKdMainLib.IO;
namespace KKdMainLib.MessagePack
{
public class IO
{
public Stream _IO;
public IO( ) => _IO = File.OpenWriter();
public IO(Stream IO) => _IO = IO;
public void Close() => _IO.Close();
public MsgPack Read(bool NotArray = true)
{
MsgPack MsgPack = new MsgPack();
byte Unk = _IO.ReadByte();
MsgPack.Type = (MsgPack.Types)Unk;
if (NotArray)
{
MsgPack.Name = ReadString(MsgPack.Type);
if (MsgPack.Name != null) { Unk = _IO.ReadByte(); MsgPack.Type = (MsgPack.Types)Unk; }
}
bool FixArr = MsgPack.Type >= MsgPack.Types.FixArr && MsgPack.Type <= MsgPack.Types.FixArrMax;
bool FixMap = MsgPack.Type >= MsgPack.Types.FixMap && MsgPack.Type <= MsgPack.Types.FixMapMax;
bool FixStr = MsgPack.Type >= MsgPack.Types.FixStr && MsgPack.Type <= MsgPack.Types.FixStrMax;
bool PosInt = MsgPack.Type >= MsgPack.Types.PosInt && MsgPack.Type <= MsgPack.Types.PosIntMax;
bool NegInt = MsgPack.Type >= MsgPack.Types.NegInt && MsgPack.Type <= MsgPack.Types.NegIntMax;
if (FixArr || FixMap || FixStr || PosInt || NegInt)
{
if (FixArr || FixMap)
{
MsgPack.Type = FixMap ? MsgPack.Types.FixMap : MsgPack.Types.FixArr;
if (FixMap)
{
MsgPack.Object = new List<object>();
for (int i = 0; i < Unk - (byte)MsgPack.Type; i++)
MsgPack.Add(Read());
}
else
{
MsgPack.Object = new object[Unk - (byte)MsgPack.Type];
for (int i = 0; i < Unk - (byte)MsgPack.Type; i++)
MsgPack[i] = Read(false);
}
}
else if (FixStr)
{ MsgPack.Object = ReadString(MsgPack.Type); MsgPack.Type = MsgPack.Types.FixStr; }
else if (PosInt)
{ MsgPack.Object = (ulong) Unk; MsgPack.Type = MsgPack.Types.PosInt; }
else if (NegInt)
{ MsgPack.Object = ( long)(sbyte)Unk; MsgPack.Type = MsgPack.Types.NegInt; }
return MsgPack;
}
bool Boolean = false;
while (!Boolean)
{
Boolean = ReadNil (ref MsgPack);
Boolean = ReadArr (ref MsgPack);
Boolean = ReadMap (ref MsgPack);
Boolean = ReadExt (ref MsgPack);
Boolean = ReadString (ref MsgPack);
Boolean = ReadBoolean(ref MsgPack);
Boolean = ReadBytes (ref MsgPack);
Boolean = ReadInt (ref MsgPack);
Boolean = ReadUInt (ref MsgPack);
Boolean = ReadFloat (ref MsgPack);
break;
}
return MsgPack;
}
private bool ReadInt(ref MsgPack MsgPack)
{
if (MsgPack.Type == MsgPack.Types.Int8 ) MsgPack.Object = (long)_IO.ReadSByte();
else if (MsgPack.Type == MsgPack.Types.Int16) MsgPack.Object = (long)_IO.ReadInt16Endian(true);
else if (MsgPack.Type == MsgPack.Types.Int32) MsgPack.Object = (long)_IO.ReadInt32Endian(true);
else if (MsgPack.Type == MsgPack.Types.Int64) MsgPack.Object = (long)_IO.ReadInt64Endian(true);
else return false;
return true;
}
private bool ReadUInt(ref MsgPack MsgPack)
{
if (MsgPack.Type == MsgPack.Types.UInt8 ) MsgPack.Object = (ulong)_IO.ReadByte();
else if (MsgPack.Type == MsgPack.Types.UInt16) MsgPack.Object = (ulong)_IO.ReadUInt16Endian(true);
else if (MsgPack.Type == MsgPack.Types.UInt32) MsgPack.Object = (ulong)_IO.ReadUInt32Endian(true);
else if (MsgPack.Type == MsgPack.Types.UInt64) MsgPack.Object = (ulong)_IO.ReadUInt64Endian(true);
else return false;
return true;
}
private bool ReadFloat(ref MsgPack MsgPack)
{
if (MsgPack.Type == MsgPack.Types.Float32) MsgPack.Object = _IO.ReadSingleEndian(true);
else if (MsgPack.Type == MsgPack.Types.Float64) MsgPack.Object = _IO.ReadDoubleEndian(true);
else return false;
return true;
}
private bool ReadBoolean(ref MsgPack MsgPack)
{
if (MsgPack.Type == MsgPack.Types.False) MsgPack.Object = false;
else if (MsgPack.Type == MsgPack.Types.True ) MsgPack.Object = true ;
else return false;
return true;
}
private bool ReadBytes(ref MsgPack MsgPack)
{
int Length = 0;
if (MsgPack.Type == MsgPack.Types.Bin8 ) Length = _IO.ReadByte();
else if (MsgPack.Type == MsgPack.Types.Bin16) Length = _IO.ReadInt16Endian(true);
else if (MsgPack.Type == MsgPack.Types.Bin32) Length = _IO.ReadInt32Endian(true);
else return false;
MsgPack.Object = _IO.ReadBytes(Length);
return true;
}
private bool ReadString(ref MsgPack MsgPack)
{
string val = ReadString(MsgPack.Type);
if (val != null) MsgPack.Object = val;
else return false;
return true;
}
private string ReadString(MsgPack.Types Val)
{
if (Val >= MsgPack.Types.FixStr && Val <= MsgPack.Types.FixStrMax)
return _IO.ReadString(Val - MsgPack.Types.FixStr);
else if (Val >= MsgPack.Types.Str8 && Val <= MsgPack.Types.Str32)
{
Enum.TryParse(Val.ToString(), out MsgPack.Types Type);
int Length = 0;
if (Type == MsgPack.Types.Str8 ) Length = _IO.ReadByte();
else if (Type == MsgPack.Types.Str16) Length = _IO.ReadInt16Endian(true);
else Length = _IO.ReadInt32Endian(true);
return _IO.ReadString(Length);
}
return null;
}
private bool ReadNil(ref MsgPack MsgPack)
{
if (MsgPack.Type == MsgPack.Types.Nil)
MsgPack.Object = null;
else return false;
return true;
}
private bool ReadArr(ref MsgPack MsgPack)
{
int Length = 0;
if (MsgPack.Type == MsgPack.Types.Arr16) Length = _IO.ReadInt16Endian(true);
else if (MsgPack.Type == MsgPack.Types.Arr32) Length = _IO.ReadInt32Endian(true);
else return false;
MsgPack.Object = new object[Length];
for (int i = 0; i < Length; i++) MsgPack[i] = Read(false);
return true;
}
private bool ReadMap(ref MsgPack MsgPack)
{
int Length = 0;
if (MsgPack.Type == MsgPack.Types.Map16) Length = _IO.ReadInt16Endian(true);
else if (MsgPack.Type == MsgPack.Types.Map32) Length = _IO.ReadInt32Endian(true);
else return false;
MsgPack.Object = new List<object>();
for (int i = 0; i < Length; i++) MsgPack.Add(Read());
return true;
}
private bool ReadExt(ref MsgPack MsgPack)
{
int Length = 0;
if (MsgPack.Type == MsgPack.Types.FixExt1 ) Length = 1 ;
else if (MsgPack.Type == MsgPack.Types.FixExt2 ) Length = 2 ;
else if (MsgPack.Type == MsgPack.Types.FixExt4 ) Length = 4 ;
else if (MsgPack.Type == MsgPack.Types.FixExt8 ) Length = 8 ;
else if (MsgPack.Type == MsgPack.Types.FixExt16) Length = 16;
else if (MsgPack.Type == MsgPack.Types. Ext8 ) Length = _IO.ReadByte();
else if (MsgPack.Type == MsgPack.Types. Ext16) Length = _IO.ReadInt16Endian(true);
else if (MsgPack.Type == MsgPack.Types. Ext32) Length = _IO.ReadInt32Endian(true);
else return false;
MsgPack.Object = new MsgPack.Ext { Type = _IO.ReadSByte(), Data = _IO.ReadBytes(Length) };
return true;
}
public IO Write(MsgPack MsgPack, bool Close = false)
{ Write(MsgPack); if (Close) this.Close(); return this; }
public IO Write(MsgPack MsgPack)
{
if (MsgPack.Name != null) Write(MsgPack.Name);
if (MsgPack.Object == null) { WriteNil(); return this; }
if (MsgPack.Object.GetType() == typeof(List<object>))
{
List<object> Obj = (List<object>)MsgPack.Object;
WriteMap(Obj.Count);
foreach (object obj in Obj) Write(obj);
}
else if (MsgPack.Object.GetType() == typeof(object[]))
{
object[] Obj = (object[])MsgPack.Object;
WriteArr(Obj.Length);
foreach (object obj in Obj) Write(obj);
}
else Write(MsgPack.Object);
return this;
}
private void Write(object obj)
{
if (obj == null ) WriteNil ();
else if (obj.GetType() == typeof(MsgPack)) Write((MsgPack)obj);
else
{
Type type = obj.GetType();
if (type == typeof(byte[])) Write((byte[])obj);
else if (type == typeof( bool)) Write(( bool)obj);
else if (type == typeof( sbyte)) Write(( sbyte)obj);
else if (type == typeof( byte)) Write(( byte)obj);
else if (type == typeof( short)) Write(( short)obj);
else if (type == typeof(ushort)) Write((ushort)obj);
else if (type == typeof( int)) Write(( int)obj);
else if (type == typeof( uint)) Write(( uint)obj);
else if (type == typeof( long)) Write(( long)obj);
else if (type == typeof( ulong)) Write(( ulong)obj);
else if (type == typeof( float)) Write(( float)obj);
else if (type == typeof(double)) Write((double)obj);
else if (type == typeof(string)) Write((string)obj);
else if (type == typeof(MsgPack.Ext)) Write((MsgPack.Ext)obj);
}
}
private void Write( sbyte val) { if (val < -0x20) _IO.Write((byte)0xD0); _IO.Write(val); }
private void Write( byte val) { if (val >= 0x80) _IO.Write((byte)0xCC); _IO.Write(val); }
private void Write( short val) { if (( sbyte)val == val) Write(( sbyte)val);
else if (( byte)val == val) Write(( byte)val);
else { _IO.Write((byte)0xD1); _IO.WriteEndian(val, true); } }
private void Write(ushort val) { if (( byte)val == val) Write(( byte)val);
else { _IO.Write((byte)0xCD); _IO.WriteEndian(val, true); } }
private void Write( int val) { if (( short)val == val) Write(( short)val);
else if ((ushort)val == val) Write((ushort)val);
else { _IO.Write((byte)0xD2); _IO.WriteEndian(val, true); } }
private void Write( uint val) { if ((ushort)val == val) Write((ushort)val);
else { _IO.Write((byte)0xCE); _IO.WriteEndian(val, true); } }
private void Write( long val) { if (( int)val == val) Write(( int)val);
else if (( uint)val == val) Write(( uint)val);
else { _IO.Write((byte)0xD3); _IO.WriteEndian(val, true); } }
private void Write( ulong val) { if (( uint)val == val) Write(( uint)val);
else { _IO.Write((byte)0xCF); _IO.WriteEndian(val, true); } }
private void Write( float val) { if (( long)val == val) Write(( long)val);
else { _IO.Write((byte)0xCA); _IO.WriteEndian(val, true); } }
private void Write(double val) { if (( long)val == val) Write(( long)val);
else if (( float)val == val) Write(( float)val);
else { _IO.Write((byte)0xCB); _IO.WriteEndian(val, true); } }
private void Write( bool val)
{ _IO.Write((byte)(val ? 0xC3 : 0xC2)); }
private void Write(byte[] val)
{
if (val == null) { WriteNil(); return; }
if (val.Length < 0x100)
{ _IO.Write((byte)0xC4); _IO.Write (( byte)val.Length ); }
else if (val.Length < 0x10000)
{ _IO.Write((byte)0xC5); _IO.WriteEndian((ushort)val.Length, true); }
else
{ _IO.Write((byte)0xC6); _IO.WriteEndian( val.Length, true); }
_IO.Write(val);
}
private void Write(string val)
{
if (val == null) { WriteNil(); return; }
byte[] array = Text.ToUTF8(val);
if (array.Length < 0x20)
_IO.Write((byte)(0xA0 | (array.Length & 0x1F)));
else if (array.Length < 0x100)
{ _IO.Write((byte) 0xD9); _IO.Write (( byte)array.Length); }
else if (array.Length < 0x10000)
{ _IO.Write((byte )0xDA); _IO.WriteEndian((ushort)array.Length, true); }
else
{ _IO.Write((byte) 0xDB); _IO.WriteEndian( array.Length, true); }
_IO.Write(array);
}
private void WriteNil() => _IO.Write((byte)0xC0);
private void WriteArr(int val)
{
if (val == 0) { WriteNil(); return; }
else if (val < 0x10) _IO.Write((byte)(0x90 | (val & 0x0F)));
else if (val < 0x10000) { _IO.Write((byte) 0xDC); _IO.WriteEndian((ushort)val, true); }
else { _IO.Write((byte) 0xDD); _IO.WriteEndian( val, true); }
}
private void WriteMap(int val)
{
if (val == 0) { WriteNil(); return; }
else if (val < 0x10) _IO.Write((byte)(0x80 | (val & 0x0F)));
else if (val < 0x10000) { _IO.Write((byte) 0xDE); _IO.WriteEndian((ushort)val, true); }
else { _IO.Write((byte) 0xDF); _IO.WriteEndian( val, true); }
}
private void WriteExt(MsgPack.Ext val)
{
if (val.Data == null) { WriteNil(); return; }
if (val.Data.Length < 1 ) { WriteNil(); return; }
else if (val.Data.Length == 1 ) _IO.Write((byte)0xD4);
else if (val.Data.Length == 2 ) _IO.Write((byte)0xD5);
else if (val.Data.Length == 4 ) _IO.Write((byte)0xD6);
else if (val.Data.Length == 8 ) _IO.Write((byte)0xD7);
else if (val.Data.Length == 16) _IO.Write((byte)0xD8);
else
{
if (val.Data.Length < 0x100)
{ _IO.Write((byte)0xC7); _IO.Write (( byte)val.Data.Length); }
else if (val.Data.Length < 0x10000)
{ _IO.Write((byte)0xC8); _IO.WriteEndian((ushort)val.Data.Length, true); }
else
{ _IO.Write((byte)0xC9); _IO.WriteEndian( val.Data.Length, true); }
}
_IO.Write(val.Type);
_IO.Write(val.Data);
}
}
}
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using System;
using System.Collections.Generic;
namespace KKdMainLib.MessagePack
{
public class MsgPack
{
public Types Type;
public string Name;
public object Object;
public MsgPack( Types Type = Types.Map32) => NewMsgPack(null, Type);
public MsgPack(string Name, Types Type = Types.Map32) => NewMsgPack(Name, Type);
public MsgPack( long Count) => NewMsgPack(null, Count);
public MsgPack(string Name, long Count) => NewMsgPack(Name, Count);
public MsgPack(string Name, Types Type, object Object) { this.Name = Name; this.Type = Type; this.Object = Object; }
public static MsgPack Null => null;
public object this[int index]
{ get { return ((object[])Object)[index]; }
set { object[] Data = (object[])Object; Data[index] = value; Object = Data; } }
public MsgPack(List<object> Object, string Name, Types Type)
{ this.Object = Object; this.Name = Name; this.Type = Type; }
private void NewMsgPack(string Name, Types Type)
{ Object = new List<object>(); this.Name = Name; this.Type = Type; }
private void NewMsgPack(string Name, long Count)
{ if (Count > 0) Object = new object[Count]; else Object = null; this.Name = Name; Type = Types.Arr32; }
public MsgPack Add(object obj)
{ if (obj != null) if (typeof(List<object>) == Object.GetType())
{ List<object> Obj = (List<object>)Object; Obj.Add(obj); Object = Obj; } return this; }
public MsgPack Add( sbyte? val) => Add(null, val);
public MsgPack Add( byte? val) => Add(null, val);
public MsgPack Add( short? val) => Add(null, val);
public MsgPack Add(ushort? val) => Add(null, val);
public MsgPack Add( int? val) => Add(null, val);
public MsgPack Add( uint? val) => Add(null, val);
public MsgPack Add( long? val) => Add(null, val);
public MsgPack Add( ulong? val) => Add(null, val);
public MsgPack Add( float? val) => Add(null, val);
public MsgPack Add(double? val) => Add(null, val);
public MsgPack Add(byte[] val) => Add(null, val);
public MsgPack Add(string val) => Add(null, val);
public MsgPack Add( bool val) => Add(null, val);
public MsgPack Add( sbyte val) => Add(null, val);
public MsgPack Add( byte val) => Add(null, val);
public MsgPack Add( short val) => Add(null, val);
public MsgPack Add(ushort val) => Add(null, val);
public MsgPack Add( int val) => Add(null, val);
public MsgPack Add( uint val) => Add(null, val);
public MsgPack Add( long val) => Add(null, val);
public MsgPack Add( ulong val) => Add(null, val);
public MsgPack Add( float val) => Add(null, val);
public MsgPack Add(double val) => Add(null, val);
public MsgPack Add(string Val, sbyte? val) { if (val == null) Add(Null); else Add(Val, ( sbyte)val); return this; }
public MsgPack Add(string Val, byte? val) { if (val == null) Add(Null); else Add(Val, ( byte)val); return this; }
public MsgPack Add(string Val, short? val) { if (val == null) Add(Null); else Add(Val, ( short)val); return this; }
public MsgPack Add(string Val, ushort? val) { if (val == null) Add(Null); else Add(Val, (ushort)val); return this; }
public MsgPack Add(string Val, int? val) { if (val == null) Add(Null); else Add(Val, ( int)val); return this; }
public MsgPack Add(string Val, uint? val) { if (val == null) Add(Null); else Add(Val, ( uint)val); return this; }
public MsgPack Add(string Val, long? val) { if (val == null) Add(Null); else Add(Val, ( long)val); return this; }
public MsgPack Add(string Val, ulong? val) { if (val == null) Add(Null); else Add(Val, ( ulong)val); return this; }
public MsgPack Add(string Val, float? val) { if (val == null) Add(Null); else Add(Val, ( float)val); return this; }
public MsgPack Add(string Val, double? val) { if (val == null) Add(Null); else Add(Val, (double)val); return this; }
public MsgPack Add(string Val, byte[] val)
{ if (val == null) Add(Null); else
Add(new MsgPack(Val, Types. Bin32, val)); return this; }
public MsgPack Add(string Val, string val)
{ if (val == null) Add(Null); else
Add(new MsgPack(Val, Types. Str32, val)); return this; }
public MsgPack Add(string Val, bool val)
{ Add(new MsgPack(Val, val ?
Types.True : Types. False, val)); return this; }
public MsgPack Add(string Val, sbyte val)
{ Add(new MsgPack(Val, Types. Int8, val)); return this; }
public MsgPack Add(string Val, byte val)
{ Add(new MsgPack(Val, Types. UInt8, val)); return this; }
public MsgPack Add(string Val, short val)
{ Add(new MsgPack(Val, Types. Int16, val)); return this; }
public MsgPack Add(string Val, ushort val)
{ Add(new MsgPack(Val, Types. UInt16, val)); return this; }
public MsgPack Add(string Val, int val)
{ Add(new MsgPack(Val, Types. Int32, val)); return this; }
public MsgPack Add(string Val, uint val)
{ Add(new MsgPack(Val, Types. UInt32, val)); return this; }
public MsgPack Add(string Val, long val)
{ Add(new MsgPack(Val, Types. Int64, val)); return this; }
public MsgPack Add(string Val, ulong val)
{ Add(new MsgPack(Val, Types. UInt64, val)); return this; }
public MsgPack Add(string Val, float val)
{ Add(new MsgPack(Val, Types.Float32, val)); return this; }
public MsgPack Add(string Val, double val)
{ Add(new MsgPack(Val, Types.Float64, val)); return this; }
public bool ReadBoolean(string Name) => ReadNBoolean(Name).GetValueOrDefault();
public sbyte ReadInt8(string Name) => ReadNInt8(Name).GetValueOrDefault();
public byte ReadUInt8(string Name) => ReadNUInt8(Name).GetValueOrDefault();
public short ReadInt16(string Name) => ReadNInt16(Name).GetValueOrDefault();
public ushort ReadUInt16(string Name) => ReadNUInt16(Name).GetValueOrDefault();
public int ReadInt32(string Name) => ReadNInt32(Name).GetValueOrDefault();
public uint ReadUInt32(string Name) => ReadNUInt32(Name).GetValueOrDefault();
public long ReadInt64(string Name) => ReadNInt64(Name).GetValueOrDefault();
public ulong ReadUInt64(string Name) => ReadNUInt64(Name).GetValueOrDefault();
public float ReadSingle(string Name) => ReadNSingle(Name).GetValueOrDefault();
public double ReadDouble(string Name) => ReadNDouble(Name).GetValueOrDefault();
public bool? ReadNBoolean(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack.ReadNBoolean(); return null; }
public sbyte? ReadNInt8(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNInt8(); return null; }
public byte? ReadNUInt8(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNUInt8(); return null; }
public short? ReadNInt16(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNInt16(); return null; }
public ushort? ReadNUInt16(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNUInt16(); return null; }
public int? ReadNInt32(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNInt32(); return null; }
public uint? ReadNUInt32(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNUInt32(); return null; }
public long? ReadNInt64(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNInt64(); return null; }
public ulong? ReadNUInt64(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNUInt64(); return null; }
public float? ReadNSingle(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNSingle(); return null; }
public double? ReadNDouble(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadNDouble(); return null; }
public string ReadString(string Name)
{ if (Element(Name, out MsgPack MsgPack)) return MsgPack. ReadString(); return null; }
public bool ReadBoolean() => ReadNBoolean().GetValueOrDefault();
public sbyte ReadInt8() => ReadNInt8().GetValueOrDefault();
public byte ReadUInt8() => ReadNUInt8().GetValueOrDefault();
public short ReadInt16() => ReadNInt16().GetValueOrDefault();
public ushort ReadUInt16() => ReadNUInt16().GetValueOrDefault();
public int ReadInt32() => ReadNInt32().GetValueOrDefault();
public uint ReadUInt32() => ReadNUInt32().GetValueOrDefault();
public long ReadInt64() => ReadNInt64().GetValueOrDefault();
public ulong ReadUInt64() => ReadNUInt64().GetValueOrDefault();
public float ReadSingle() => ReadNSingle().GetValueOrDefault();
public double ReadDouble() => ReadNDouble().GetValueOrDefault();
public bool? ReadNBoolean()
{ if (Object == null) return null;
if (Object.GetType() == typeof( bool)) return ( bool) Object; return null; ; }
public sbyte? ReadNInt8()
{ if (Object == null) return null;
if (Object.GetType() == typeof( long)) return ( sbyte)( long)Object;
else if (Object.GetType() == typeof( ulong)) return ( sbyte)(ulong)Object; return null; }
public byte? ReadNUInt8()
{ if (Object == null) return null;
if (Object.GetType() == typeof( long)) return ( byte)( long)Object;
else if (Object.GetType() == typeof( ulong)) return ( byte)(ulong)Object; return null; }
public short? ReadNInt16()
{ if (Object == null) return null;
if (Object.GetType() == typeof( long)) return ( short)( long)Object;
else if (Object.GetType() == typeof( ulong)) return ( short)(ulong)Object; return null; }
public ushort? ReadNUInt16()
{ if (Object == null) return null;
if (Object.GetType() == typeof( long)) return (ushort)( long)Object;
else if (Object.GetType() == typeof( ulong)) return (ushort)(ulong)Object; return null; }
public int? ReadNInt32()
{ if (Object == null) return null;
if (Object.GetType() == typeof( long)) return ( int)( long)Object;
else if (Object.GetType() == typeof( ulong)) return ( int)(ulong)Object; return null; }
public uint? ReadNUInt32()
{ if (Object == null) return null;
if (Object.GetType() == typeof( long)) return ( uint)( long)Object;
else if (Object.GetType() == typeof( ulong)) return ( uint)(ulong)Object; return null; }
public long? ReadNInt64()
{ if (Object == null) return null;
if (Object.GetType() == typeof( long)) return ( long) Object;
else if (Object.GetType() == typeof( ulong)) return ( long)(ulong)Object; return null; }
public ulong? ReadNUInt64()
{ if (Object == null) return null;
if (Object.GetType() == typeof( ulong)) return ( ulong) Object;
else if (Object.GetType() == typeof( long)) return ( ulong)( long)Object; return null; }
public float? ReadNSingle()
{ if (Object == null) return null;
if (Object.GetType() == typeof(double)) return (float)(double)Object;
else if (Object.GetType() == typeof( float)) return (float) Object;
else if (Object.GetType() == typeof( long)) return (float)( long)Object;
else if (Object.GetType() == typeof( ulong)) return (float)( ulong)Object; return null; }
public double? ReadNDouble()
{ if (Object == null) return null;
if (Object.GetType() == typeof(double)) return (double) Object;
else if (Object.GetType() == typeof( float)) return (double)(float)Object;
else if (Object.GetType() == typeof( long)) return (double)( long)Object;
else if (Object.GetType() == typeof( ulong)) return (double)(ulong)Object; return null; }
public string ReadString()
{ if (Object == null) return null;
if (Object.GetType() == typeof(string)) return (string) Object; return null; }
public bool Element(string Name, out MsgPack MsgPack, Type Type)
{ if (Element(out MsgPack, Name)) return MsgPack.Object.GetType() == Type; return false; }
public bool Element(string Name, out MsgPack MsgPack)
{ if (Element(out MsgPack, Name)) return MsgPack != null; return false; }
public bool Element(out MsgPack MsgPack, string Name)
{
MsgPack = null;
if (Object == null) return false;
Type type = Object.GetType();
if (type == typeof(List<object>))
{
List<object> Obj = (List<object>)Object;
foreach (object obj in Obj)
{
if (obj == null) continue; type = obj.GetType();
if (type == typeof(MsgPack)) if (((MsgPack)obj).Name == Name)
{ MsgPack = (MsgPack)obj; return true; }
}
}
else if (type == typeof(object[]))
{
object[] Obj = (object[])Object;
foreach (object obj in Obj)
{
if (obj == null) continue; type = obj.GetType();
if (type == typeof(MsgPack)) if (((MsgPack)obj).Name == Name)
{ MsgPack = (MsgPack)obj; return true; }
}
}
return false;
}
public enum Types : byte
{
PosInt = 0b00000000,
FixMap = 0b10000000,
FixArr = 0b10010000,
FixStr = 0b10100000,
Nil = 0b11000000,
NeverUsed = 0b11000001,
False = 0b11000010,
True = 0b11000011,
Bin8 = 0b11000100,
Bin16 = 0b11000101,
Bin32 = 0b11000110,
Ext8 = 0b11000111,
Ext16 = 0b11001000,
Ext32 = 0b11001001,
Float32 = 0b11001010,
Float64 = 0b11001011,
UInt8 = 0b11001100,
UInt16 = 0b11001101,
UInt32 = 0b11001110,
UInt64 = 0b11001111,
Int8 = 0b11010000,
Int16 = 0b11010001,
Int32 = 0b11010010,
Int64 = 0b11010011,
FixExt1 = 0b11010100,
FixExt2 = 0b11010101,
FixExt4 = 0b11010110,
FixExt8 = 0b11010111,
FixExt16 = 0b11011000,
Str8 = 0b11011001,
Str16 = 0b11011010,
Str32 = 0b11011011,
Arr16 = 0b11011100,
Arr32 = 0b11011101,
Map16 = 0b11011110,
Map32 = 0b11011111,
NegInt = 0b11100000,
PosIntMax = 0b01111111,
FixMapMax = 0b10001111,
FixArrMax = 0b10011111,
FixStrMax = 0b10111111,
NegIntMax = 0b11111111,
}
public struct Ext
{
public byte[] Data;
public sbyte Type;
}
}
}
+350
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//Original: https://github.com/blueskythlikesclouds/MikuMikuLibrary/
using KKdBaseLib;
using KKdMainLib.IO;
namespace KKdMainLib
{
public struct Mot
{
private int i, i0, i1;
public MotHeader[] MOT;
private Stream _IO;
public void MOTReader(string file)
{
_IO = File.OpenReader(file + ".bin");
i = 0;
while (true)
if (_IO.RI64() == 0) break;
else { _IO.RI64(); i++; }
if (i == 0) return;
_IO.P = 0;
int motCount = i;
MOT = new MotHeader[motCount];
for (i = 0; i < motCount; i++)
{
ref MotHeader mot = ref MOT[i];
mot.KeySet .O = _IO.RI32();
mot.KeySetTypesOffset = _IO.RI32();
mot. KeySetOffset = _IO.RI32();
mot.BoneInfo .O = _IO.RI32();
}
for (i = 0; i < motCount; i++)
{
ref MotHeader mot = ref MOT[i];
i0 = 1;
_IO.P = mot.BoneInfo.O;
_IO.RU16();
while (_IO.RU16() != 0) i0++;
mot.BoneInfo.V = new BoneInfo[i0];
_IO.P = mot.BoneInfo.O;
for (i0 = 0; i0 < mot.BoneInfo.V.Length; i0++)
mot.BoneInfo.V[i0].Id = _IO.RU16();
_IO.P = mot.KeySet.O;
int info = _IO.RU16();
mot.HighBits = info >> 14;
mot.FrameCount = _IO.RU16();
mot.KeySet.V = new KeySet[info & 0x3FFF];
_IO.P = mot.KeySetTypesOffset;
for (i0 = 0; i0 < mot.KeySet.V.Length; i0++)
{
if (i0 % 8 == 0) i1 = _IO.RU16();
mot.KeySet.V[i0] = new KeySet { Type = (KeySetType)((i1 >> (i0 % 8 * 2)) & 0b11) };
}
_IO.P = mot.KeySetOffset;
for (i0 = 0; i0 < mot.KeySet.V.Length; i0++)
{
ref KeySet key = ref mot.KeySet.V[i0];
if (key.Type == KeySetType.Static)
{ key.Keys = new KFT2[1];
key.Keys[0].V = _IO.RF32(); }
else if (key.Type == KeySetType.Linear)
{
key.Keys = new KFT2[_IO.RU16()];
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].F = _IO.RU16();
_IO.A(0x4);
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].V = _IO.RF32();
}
else if (key.Type == KeySetType.Interpolated)
{
key.Keys = new KFT2[_IO.RU16()];
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].F = _IO.RU16();
_IO.A(0x4);
for (i1 = 0; i1 < key.Keys.Length; i1++)
{ key.Keys[i1].V = _IO.RF32(); key.Keys[i1].T = _IO.RF32(); }
}
}
}
_IO.C();
}
public void MOTWriter(string file)
{
if (MOT == null) return;
_IO = File.OpenWriter(file + ".bin");
int MOTCount = MOT.Length;
_IO.P = (MOTCount + 1) << 4;
for (i = 0; i < MOTCount; i++)
{
ref MotHeader mot = ref MOT[i];
mot.KeySet.O = _IO.P;
_IO.W((ushort)((mot.HighBits << 14) | (mot.KeySet.V.Length & 0x3FFF)));
_IO.W((ushort)mot.FrameCount);
mot.KeySetTypesOffset = _IO.P;
for (i0 = 0, i1 = 0; i0 < mot.KeySet.V.Length; i0++)
{
i1 |= ((byte)mot.KeySet.V[i0].Type << (i0 % 8 * 2)) & (0b11 << (i0 % 8 * 2));
if (i0 % 8 == 7) { _IO.W((ushort)i1); i1 = 0; }
}
_IO.W((ushort)i1);
_IO.A(0x4);
mot.KeySetOffset = _IO.P;
for (i0 = 0; i0 < mot.KeySet.V.Length; i0++)
{
ref KeySet key = ref mot.KeySet.V[i0];
if (key.Type == KeySetType.Static)
_IO.W(key.Keys[0].V);
else if (key.Type == KeySetType.Linear)
{
_IO.W((ushort)key.Keys.Length);
for (i1 = 0; i1 < key.Keys.Length; i1++)
_IO.W(key.Keys[i1].F);
_IO.A(0x4);
for (i1 = 0; i1 < key.Keys.Length; i1++)
_IO.W(key.Keys[i1].V);
}
else if (key.Type == KeySetType.Interpolated)
{
_IO.W((ushort)key.Keys.Length);
for (i1 = 0; i1 < key.Keys.Length; i1++)
_IO.W(key.Keys[i1].F);
_IO.A(0x4);
for (i1 = 0; i1 < key.Keys.Length; i1++)
{ _IO.W(key.Keys[i1].V); _IO.W(key.Keys[i1].T); }
}
}
_IO.A(0x4);
mot.BoneInfo.O = _IO.P;
for (i0 = 0; i0 < mot.BoneInfo.V.Length; i0++)
_IO.W((ushort)mot.BoneInfo.V[i0].Id);
_IO.W((ushort)0);
}
_IO.A(0x4, true);
_IO.P = 0;
for (i = 0; i < MOTCount; i++)
{
ref MotHeader mot = ref MOT[i];
_IO.W(mot.KeySet .O );
_IO.W(mot.KeySetTypesOffset);
_IO.W(mot. KeySetOffset);
_IO.W(mot.BoneInfo .O );
}
_IO.C();
}
public void MsgPackReader(string file, bool json)
{
MOT = null;
MsgPack msgPack = file.ReadMP(json);
MsgPack mot;
if ((mot = msgPack["MOT"]).NotNull)
{
MOT = new MotHeader[mot.Array.Length];
for (int i = 0; i < MOT.Length; i++)
MsgPackReader(mot.Array[i], ref MOT[i]);
}
mot.Dispose();
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
int motCount = MOT.Length;
MsgPack mot = new MsgPack(motCount, "MOT");
for (i = 0; i < motCount; i++)
mot[i] = MsgPackWriter(ref MOT[i]);
mot.Write(true, file, json);
}
public void MsgPackReader(MsgPack msgPack, ref MotHeader mot)
{
MsgPack temp = MsgPack.New;
mot.HighBits = msgPack.RI32("HighBits" );
mot.FrameCount = msgPack.RI32("FrameCount");
if ((temp = msgPack["KeySets", true]).IsNull) { temp.Dispose(); return; }
mot.KeySet.V = new KeySet[temp.Array.Length];
for (i0 = 0; i0 < mot.KeySet.V.Length; i0++)
{
ref KeySet keySet = ref mot.KeySet.V[i0];
if (temp.Array[i0].Array == null || temp.Array[i0].Array.Length != 2) continue;
keySet.Type = (KeySetType)temp.Array[i0].Array[0].RI32();
MsgPack temp1 = temp.Array[i0].Array[1];
if (temp1.Array == null) { keySet.Type = 0; continue; }
else if (keySet.Type == KeySetType.None) continue;
else if (keySet.Type == KeySetType.Static)
{
keySet.Keys = new KFT2[1];
if (temp1.Array == null) continue;
else if (temp1.Array.Length == 0) continue;
else if (temp1.Array[0].Array == null) continue;
else if (temp1.Array[0].Array.Length == 0) continue;
else if (temp1.Array[0].Array.Length == 1)
keySet.Keys[0] = new KFT2 (temp1.Array[0][0].RF32());
else if (temp1.Array[0].Array.Length > 1)
keySet.Keys[0] = new KFT2 (temp1.Array[0][0].RF32(), temp1.Array[1].RF32());
}
else if (keySet.Type == KeySetType.Linear)
{
keySet.Keys = new KFT2[temp1.Array.Length];
for (i1 = 0; i1 < temp1.Array.Length; i1++)
{
ref MsgPack array = ref temp1.Array[i1];
if (array.Array == null) continue;
else if (array.Array.Length == 0) continue;
else if (array.Array.Length == 1)
keySet.Keys[i1] = new KFT2 (array[0].RF32());
else if (array.Array.Length == 2)
keySet.Keys[i1] = new KFT2 (array[0].RF32(), array[1].RF32());
}
}
else if (keySet.Type == KeySetType.Interpolated)
{
keySet.Keys = new KFT2[temp1.Array.Length];
for (i1 = 0; i1 < temp1.Array.Length; i1++)
{
ref MsgPack array = ref temp1.Array[i1];
if (array.Array == null ||
array.Array.Length == 0) continue;
else if (array.Array.Length == 1)
keySet.Keys[i1] = new KFT2 (array[0].RF32());
else if (array.Array.Length == 2)
keySet.Keys[i1] = new KFT2 (array[0].RF32(), array[1].RF32());
else if (array.Array.Length > 2)
keySet.Keys[i1] = new KFT2 (array[0].RF32(),
array[1].RF32(), temp1.Array[i1][2].RF32());
}
}
}
if ((temp = msgPack["BoneInfo", true]).NotNull)
{
mot.BoneInfo.V = new BoneInfo[temp.Array.Length];
for (i = 0; i < mot.BoneInfo.V.Length; i++)
mot.BoneInfo.V[i].Id = temp[i].RI32();
}
temp.Dispose();
}
public MsgPack MsgPackWriter(ref MotHeader Mot)
{
MsgPack mot = MsgPack.NewReserve(4).Add("FrameCount", Mot.FrameCount).Add("HighBits", Mot.HighBits);
MsgPack keySets = new MsgPack(Mot.KeySet.V.Length, "KeySets");
for (i0 = 0; i0 < Mot.KeySet.V.Length; i0++)
{
ref KeySet keySet = ref Mot.KeySet.V[i0];
if (keySet.Type == KeySetType.None) continue;
keySets[i0] = new MsgPack(2);
keySets[i0].Array[0] = (byte)keySet.Type;
keySets[i0].Array[1] = new MsgPack(keySet.Keys.Length);
if (keySet.Type == KeySetType.Static)
{
IKF kf = keySet.Keys[0].Check();
if (kf is KFT0 KFT0) keySets[i0].Array[1][0] =
new MsgPack(null, new MsgPack[] { KFT0.F });
else if (kf is KFT1 KFT1) keySets[i0].Array[1][0] =
new MsgPack(null, new MsgPack[] { KFT1.F, KFT1.V });
}
else if (keySet.Type == KeySetType.Linear)
for (i1 = 0; i1 < keySet.Keys.Length; i1++)
{
IKF kf = keySet.Keys[i1].Check();
if (kf is KFT0 KFT0) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT0.F });
else if (kf is KFT1 KFT1) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT1.F, KFT1.V });
}
else
for (i1 = 0; i1 < keySet.Keys.Length; i1++)
{
IKF kf = keySet.Keys[i1].Check();
if (kf is KFT0 KFT0) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT0.F });
else if (kf is KFT1 KFT1) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT1.F, KFT1.V });
else if (kf is KFT2 KFT2) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT2.F, KFT2.V, KFT2.T });
}
}
mot.Add(keySets);
MsgPack boneInfo = new MsgPack(Mot.BoneInfo.V.Length, "BoneInfo");
for (i0 = 0; i0 < Mot.BoneInfo.V.Length; i0++)
boneInfo[i0] = Mot.BoneInfo.V[i0].Id;
mot.Add(boneInfo);
return mot;
}
public struct MotHeader
{
public int KeySetOffset;
public int KeySetTypesOffset;
public Pointer< KeySet []> KeySet ;
public Pointer<BoneInfo[]> BoneInfo;
public int HighBits;
public int FrameCount;
}
public struct KeySet
{
public KFT2[] Keys;
public KeySetType Type;
public override string ToString() => $"Type: {Type}" + (Type == KeySetType.Static ?
$"; Value: {Keys[0].Check()}" : Type > KeySetType.Static ? $"; Keys: {Keys.Length}" : "");
}
public enum KeySetType : byte
{
None = 0b00,
Static = 0b01,
Linear = 0b10,
Interpolated = 0b11,
}
public struct BoneInfo
{
public string Name;
public int Id;
}
}
}
-63
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@@ -1,63 +0,0 @@
using KKdMainLib.IO;
namespace KKdMainLib
{
public struct PDHead
{
public int ID;
public int Lenght;
public int DataSize;
public int Signature;
public int SectionSize;
public int RealSignature;
public Main.Format Format;
public bool IsBE => Format == Main.Format.F2BE;
public bool IsX => Format == Main.Format.X || Format == Main.Format.XHD;
}
public static class PDHeadExtensions
{
public static PDHead ReadHeader(this Stream stream, bool Seek)
{
if (Seek)
if (stream.Position >= 4) stream.Seek(-4, SeekOrigin.Current);
else stream.Seek( 0, 0);
return stream.ReadHeader();
}
public static PDHead ReadHeader(this Stream stream)
{
long Position = stream.LongPosition;
PDHead Header = new PDHead
{ Format = Main.Format.F2LE, Signature = stream.ReadInt32(),
DataSize = stream.ReadInt32(), Lenght = stream.ReadInt32() };
if (stream.ReadUInt32() == 0x18000000)
{ Header.Format = Main.Format.F2BE; }
Header.ID = stream.ReadInt32();
Header.SectionSize = stream.ReadInt32();
stream.IsBE = Header.Format == Main.Format.F2BE;
stream.Format = Header.Format;
stream.LongPosition = Position + Header.Lenght;
Header.Signature = stream.ReadInt32Endian();
return Header;
}
public static void Write(this Stream stream, PDHead Header)
{
stream.Write(Header.Signature);
stream.Write(Header.DataSize);
stream.Write(Header.Lenght);
if (Header.Format == Main.Format.F2BE) stream.Write(0x18000000);
else stream.Write(0x10000000);
stream.Write(Header.ID);
stream.Write(Header.SectionSize);
stream.Write(0x00);
stream.Write(0x00);
}
public static void WriteEOFC(this Stream stream, int ID)
{ PDHead Header = new PDHead { Format = Main.Format.F2LE, ID = ID,
Lenght = 0x20, Signature = 0x43464F45, }; stream.Write(Header); }
}
}
-113
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@@ -1,113 +0,0 @@
using System;
using System.Collections.Generic;
using KKdMainLib.IO;
namespace KKdMainLib
{
public class POF
{
public byte Type;
public int Lenght;
public int Offset;
public int LastOffset;
public List<long> Offsets;
public List<long> POFOffsets;
public PDHead Header;
public POF()
{ Type = 0; Lenght = 0; Offset = 0; LastOffset = 0; Offsets = new List<long>();
POFOffsets = new List<long>(); Header = new PDHead(); }
}
public static class POFExtensions
{
public static POF AddPOF(this PDHead Header)
{
POF POF = new POF { Offsets = new List<long>(), POFOffsets =
new List<long>(), Offset = Header.DataSize + Header.Lenght };
return POF;
}
public static Stream GetOffset(this Stream stream, ref POF POF)
{if (stream.Format > Main.Format.F) POF.POFOffsets.Add(stream.Position - (stream.IsX ? stream.Offset : 0x00)); return stream; }
public static void ReadPOF(this Stream stream, ref POF POF)
{
if (stream.ReadString(3) == "POF")
{
POF.POFOffsets.Sort();
POF.Type = byte.Parse(stream.ReadString(1));
int IsX = POF.Type + 2;
stream.Seek(-4, SeekOrigin.Current);
POF.Header = stream.ReadHeader();
stream.Seek(POF.Offset + POF.Header.Lenght, 0);
POF.Lenght = stream.ReadInt32();
while (POF.Lenght + POF.Offset + POF.Header.Lenght > stream.Position)
{
int a = stream.ReadByte();
if (a >> 6 == 0) break;
else if (a >> 6 == 1) a = a & 0x3F;
else if (a >> 6 == 2)
{
a = a & 0x3F;
a = (a << 8) | stream.ReadByte();
}
else if (a >> 6 == 3)
{
a = a & 0x3F;
a = (a << 8) | stream.ReadByte();
a = (a << 8) | stream.ReadByte();
a = (a << 8) | stream.ReadByte();
}
a <<= IsX;
POF.LastOffset += a;
POF.Offsets.Add(POF.LastOffset);
}
for (int i = 0; i < POF.Offsets.Count && i < POF.POFOffsets.Count; i++)
if (POF.Offsets[i] != POF.POFOffsets[i])
Console.WriteLine("Not right POF{0} offset table.\n" +
" Expected: {1}\n Got: {2}", POF.Type,
POF.Offsets[i].ToString("X8"), POF.POFOffsets[i].ToString("X8"));
}
}
public static void Write(this Stream stream, ref POF POF, int ID)
{
POF.POFOffsets.Sort();
long CurrentPOFOffset = 0;
long POFOffset = 0;
byte BitShift = (byte)(2 + POF.Type);
int Max1 = (0x00FF >> BitShift) << BitShift;
int Max2 = (0xFFFF >> BitShift) << BitShift;
POF.Lenght = 5 + ID;
for (int i = 0; i < POF.POFOffsets.Count; i++)
{
POFOffset = POF.POFOffsets[i] - CurrentPOFOffset;
CurrentPOFOffset = POF.POFOffsets[i];
if (POFOffset <= Max1) POF.Lenght += 1;
else if (POFOffset <= Max2) POF.Lenght += 2;
else POF.Lenght += 4;
POF.POFOffsets[i] = POFOffset;
}
long POFLenghtAling = POF.Lenght.Align(16);
POF.Header = new PDHead { DataSize = (int)POFLenghtAling, ID = ID, Format = Main.Format.F2LE,
Lenght = 0x20, SectionSize = (int)POFLenghtAling, Signature = 0x30464F50 };
POF.Header.Signature += POF.Type << 24;
stream.Write(POF.Header);
stream.Write(POF.Lenght);
for (int i = 0; i < POF.POFOffsets.Count; i++)
{
POFOffset = POF.POFOffsets[i];
if (POFOffset <= Max1) stream.Write (( byte)((1 << 6) | (POFOffset >> BitShift)));
else if (POFOffset <= Max2) stream.WriteEndian((ushort)((2 << 14) | (POFOffset >> BitShift)), true);
else stream.WriteEndian(( uint)((3 << 30) | (POFOffset >> BitShift)), true);
}
stream.Write(0x00);
stream.Align(16, true);
stream.WriteEOFC(ID);
}
}
}
-8
View File
@@ -1,15 +1,7 @@
using System.Reflection;
using System.Runtime.InteropServices;
[assembly: AssemblyTitle("KKdMainLib")]
[assembly: AssemblyDescription("")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("")]
[assembly: AssemblyProduct("KKdMainLib")]
[assembly: AssemblyCopyright("Copyright korenkonder © 2018-2019")]
[assembly: AssemblyTrademark("")]
[assembly: AssemblyCulture("")]
[assembly: ComVisible(false)]
[assembly: Guid("2BA7EFC6-91D1-8BBC-C487-06C7F36CC789")]
[assembly: AssemblyVersion("0.4.5.7")]
[assembly: AssemblyFileVersion("0.4.5.7")]
+132 -163
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@@ -1,227 +1,196 @@
using System;
using System.Xml.Linq;
using System.Collections.Generic;
using KKdBaseLib;
using KKdBaseLib.F2;
using KKdMainLib.IO;
using KKdMainLib.MessagePack;
using MPIO = KKdMainLib.MessagePack.IO;
namespace KKdMainLib
{
public class STR
public struct STR : System.IDisposable
{
public struct String
{
public int ID;
public int StrOffset;
public string Str;
}
private POF pof;
private Header header;
private Stream _IO;
public STR()
{ Count = 0; Offset = 0; OffsetX = 0; STRs = null; POF = null; Header = new PDHead(); }
public long Count;
private long Offset;
private long OffsetX;
public String[] STRs;
private POF POF;
private PDHead Header;
public String[] Strings;
public int STRReader(string filepath, string ext)
{
Stream reader = File.OpenReader(filepath + ext);
_IO = File.OpenReader(filepath + ext);
Header = new PDHead();
reader.Format = Main.Format.F;
Header.Signature = reader.ReadInt32();
if (Header.Signature == 0x41525453)
header = new Header();
_IO.Format = Format.F;
header.Signature = _IO.RI32();
if (header.Signature == 0x41525453)
{
Header = reader.ReadHeader(true);
POF = Header.AddPOF();
reader.Position = Header.Lenght;
Count = reader.ReadInt32Endian();
Offset = reader.ReadInt32Endian();
if (Offset == 0)
{
Offset = Count;
OffsetX = reader.ReadInt64();
Count = reader.ReadInt64();
reader.Offset = Header.Lenght;
reader.Format = Main.Format.X;
}
reader.LongPosition = reader.IsX ? Offset + reader.Offset : Offset;
header = _IO.ReadHeader(true, false);
STRs = new String[Count];
for (int i = 0; i < Count; i++)
int count = _IO.RI32E();
int offset = _IO.RI32E();
_IO.P = offset;
Strings = new String[count];
for (int i = 0; i < count; i++)
{
STRs[i].StrOffset = reader.GetOffset(ref POF).ReadInt32Endian();
STRs[i].ID = reader.ReadInt32Endian();
if (reader.IsX) STRs[i].StrOffset += (int)OffsetX;
Strings[i].Str.O = _IO.RI32E();
Strings[i].ID = _IO.RI32E();
}
for (int i = 0; i < Count; i++)
{
reader.LongPosition = STRs[i].StrOffset + (reader.IsX ? reader.Offset : 0);
STRs[i].Str = reader.NullTerminatedUTF8();
}
reader.Position = POF.Offset;
reader.ReadPOF(ref POF);
_IO.O = 0;
for (int i = 0; i < count; i++)
Strings[i].Str.V = Strings[i].Str.O > 0 ?
_IO.RSaO(Strings[i].Str.O) : null;
}
else
{
reader.Position -= 4;
Count = 0;
for (int a = 0, i = 0; reader.Position > 0 && reader.Position < reader.Length; i++, Count++)
_IO.P -= 4;
int count = 0;
for (int a = 0, i = 0; _IO.P > 0 && _IO.P < _IO.L; i++, count++)
{
a = reader.ReadInt32();
a = _IO.RI32();
if (a == 0) break;
}
STRs = new String[Count];
Strings = new String[count];
for (int i = 0; i < Count; i++)
for (int i = 0; i < count; i++)
{
reader.LongPosition = STRs[i].StrOffset + (reader.IsX ? reader.Offset : 0);
STRs[i].ID = i;
STRs[i].Str = reader.NullTerminatedUTF8();
_IO.PI64 = Strings[i].Str.O;
Strings[i].ID = i;
Strings[i].Str.V = _IO.NTUTF8();
}
}
reader.Close();
_IO.C();
return 1;
}
public void STRWriter(string filepath)
{
uint Offset = 0;
uint CurrentOffset = 0;
Stream writer = File.OpenWriter(filepath + (Header.
Format > Main.Format.FT ? ".str" : ".bin"), true);
writer.Format = Header.Format;
POF = new POF();
writer.IsBE = writer.Format == Main.Format.F2BE;
if (Strings == null || Strings.Length == 0 || header.Format > Format.F2BE) return;
uint offset = 0;
uint currentOffset = 0;
_IO = File.OpenWriter(filepath + (header.Format > Format.AFT &&
header.Format < Format.FT ? ".str" : ".bin"), true);
_IO.Format = header.Format;
pof.Offsets = KKdList<long>.New;
if (writer.Format > Main.Format.FT)
long count = Strings.LongLength;
if (_IO.Format > Format.AFT && _IO.Format < Format.FT)
{
writer.Position = 0x40;
writer.WriteEndian(Count);
writer.GetOffset(ref POF).WriteEndian(0x80);
writer.Position = 0x80;
for (int i = 0; i < Count; i++)
{
writer.GetOffset(ref POF).Write(0x00);
writer.WriteEndian(STRs[i].ID);
}
writer.Align(16);
_IO.P = 0x40;
_IO.WX(count, ref pof);
_IO.WX(0x80);
_IO.P = 0x80;
for (int i = 0; i < count; i++) _IO.W(0x00L);
_IO.A(0x10);
}
else
{
for (int i = 0; i < Count; i++)
writer.Write(0x00);
writer.Align(32);
for (int i = 0; i < count; i++) _IO.W(0x00);
_IO.A(0x20);
}
List<string> UsedSTR = new List<string>();
List<int> UsedSTRPos = new List<int>();
int[] STRPos = new int[Count];
for (int i1 = 0; i1 < Count; i1++)
KKdList<string> usedSTR = KKdList<string>.New;
KKdList<int> usedSTRPos = KKdList<int>.New;
int[] STRPos = new int[count];
usedSTRPos.Add(_IO.P);
usedSTR.Add("");
_IO.W(0);
for (int i = 0; i < count; i++)
{
if (UsedSTR.Contains(STRs[i1].Str))
if (!usedSTR.Contains(Strings[i].Str.V))
{
for (int i2 = 0; i2 < Count; i2++)
if (UsedSTR[i2] == STRs[i1].Str)
{ STRPos[i1] = UsedSTRPos[i2]; break; }
STRPos[i] = _IO.P;
usedSTRPos.Add(STRPos[i]);
usedSTR.Add(Strings[i].Str.V);
_IO.W(Strings[i].Str.V);
_IO.W(0);
}
else
{
STRPos[i1] = writer.Position;
UsedSTRPos.Add(STRPos[i1]);
UsedSTR.Add(STRs[i1].Str);
writer.Write(STRs[i1].Str);
writer.WriteByte(0);
}
for (int i2 = 0; i2 < count; i2++)
if (usedSTR[i2] == Strings[i].Str.V) { STRPos[i] = usedSTRPos[i2]; break; }
}
if (writer.Format > Main.Format.FT)
if (_IO.Format > Format.AFT)
{
writer.Align(16);
Offset = writer.UIntPosition;
writer.Position = 0x80;
_IO.A(0x10);
offset = _IO.PU32;
_IO.P = 0x80;
for (int i = 0; i < count; i++)
{
pof.Offsets.Add(_IO.P);
_IO.WE(STRPos[i]);
_IO.WE(Strings[i].ID);
}
_IO.PU32 = offset;
_IO.W(pof, false, 1);
currentOffset = _IO.PU32;
_IO.WEOFC();
header.DataSize = (int)(currentOffset - 0x40);
header.Signature = 0x41525453;
header.SectionSize = (int)(offset - 0x40);
_IO.P = 0;
_IO.W(header, true);
}
else
writer.Position = 0;
for (int i1 = 0; i1 < Count; i1++)
{
writer.WriteEndian(STRPos[i1]);
if (writer.Format > Main.Format.FT) writer.Position += 4;
_IO.P = 0;
for (int i = 0; i < count; i++) _IO.W(STRPos[i]);
}
if (writer.Format > Main.Format.FT)
{
writer.UIntPosition = Offset;
writer.Write(ref POF, 1);
CurrentOffset = writer.UIntPosition;
writer.WriteEOFC(0);
Header.Lenght = 0x40;
Header.DataSize = (int)(CurrentOffset - Header.Lenght);
Header.Signature = 0x41525453;
Header.SectionSize = (int)(Offset - Header.Lenght);
writer.Position = 0;
writer.Write(Header);
}
writer.Close();
_IO.C();
}
public void MsgPackReader(string filepath)
public void MsgPackReader(string file, bool json)
{
//STRs = new List<String>();
MsgPack temp;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
if ((temp = msgPack["STR"]).NotNull) return;
Xml Xml = new Xml();
Xml.OpenXml(filepath + ".xml", true);
Xml.Compact = true;
int i = 0;
foreach (XElement STR_ in Xml.doc.Elements("STR"))
header = new Header();
System.Enum.TryParse(temp.RS("Format"), out header.Format);
if ((temp = msgPack["Strings", true]).IsNull) return;
Strings = new String[temp.Array.Length];
for (int i = 0; i < Strings.Length; i++)
{
foreach (XAttribute Entry in STR_.Attributes())
if (Entry.Name == "Format")
Enum.TryParse(Entry.Value, out Header.Format);
foreach (XElement STREntry in STR_.Elements())
{
if (STREntry.Name == "STREntry")
{
String Str = new String();
foreach (XAttribute Entry in STREntry.Attributes())
{
if (Entry.Name == "ID" ) Str.ID = int.Parse(Entry.Value);
if (Entry.Name == "String") Str.Str = Entry.Value ;
}
//STRs.Add(Str);
}
i++;
}
Strings[i].ID = temp[i].RI32("ID" );
Strings[i].Str.V = temp[i].RS ("Str");
if (Strings[i].Str.V == null) Strings[i].Str.V = "";
}
Count = i;
msgPack.Dispose();
}
public void MsgPackWriter(string filepath)
public void MsgPackWriter(string file, bool json)
{
MsgPack STR_ = new MsgPack("STR").Add("Format", Header.Format.ToString()).Add("Count", Count);
MsgPack Strings = new MsgPack("Strings", Count);
for (int i = 0; i < Count; i++)
if (Strings == null || Strings.Length == 0) return;
MsgPack str = new MsgPack("STR").Add("Format", header.Format.ToString());
MsgPack strings = new MsgPack(Strings.Length, "Strings");
for (int i = 0; i < Strings.Length; i++)
{
Strings[i] = new MsgPack().Add("ID", STRs[i].ID);
if (STRs[i].Str != null)
if (STRs[i].Str != "")
((MsgPack)Strings[i]).Add("S", STRs[i].Str); ;
strings[i] = MsgPack.New.Add("ID", Strings[i].ID);
if (Strings[i].Str.V != null)
if (Strings[i].Str.V != "")
strings[i] = strings[i].Add("Str", Strings[i].Str.V);
}
STR_.Add(Strings);
str.Add(strings);
MsgPack MsgPack = new MsgPack(MsgPack.Types.FixMap).Add(STR_);
str.WriteAfterAll(true, file, json);
}
MPIO IO = new MPIO(File.OpenWriter(filepath + ".mp", true));
IO.Write(MsgPack, true);
IO = null;
MsgPack = null;
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.Dispose(); Strings = default;
pof = default; header = default; disposed = true; } }
public struct String
{
public int ID;
public Pointer<string> Str;
public override string ToString() => "ID: " + ID + (Str.V != null ||
Str.V != "" ? ("; Str: " + Str.V) : "");
}
}
}
-17
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@@ -1,17 +0,0 @@
using System;
using System.Text;
namespace KKdMainLib
{
public static class Text
{
public static string ToASCII(this byte[] Array) => Encoding.ASCII.GetString(Array);
public static string ToUTF8 (this byte[] Array) => Encoding.UTF8 .GetString(Array);
public static byte[] ToASCII(this string Data ) => Encoding.ASCII.GetBytes (Data );
public static byte[] ToUTF8 (this string Data ) => Encoding.UTF8 .GetBytes (Data );
public static byte[] ToASCII(this char[] Data ) => Encoding.ASCII.GetBytes (Data );
public static byte[] ToUTF8 (this char[] Data ) => Encoding.UTF8 .GetBytes (Data );
public static string ToBase64(this byte[] Array) => Convert. ToBase64String(Array);
public static byte[] FromBase64(this string Data ) => Convert.FromBase64String(Data );
}
}
-102
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@@ -1,102 +0,0 @@
using System;
namespace KKdMainLib.Types
{
public struct Half : IFormattable
{
private ushort _value;
public static explicit operator Half(ushort bits) => new Half() { _value = bits };
public static explicit operator ushort(Half bits) => bits._value;
public static explicit operator double(Half h)
{
if (h._value == 0x0000)
return +0;
else if (h._value == 0x8000)
return (-0);
else if (h._value == 0x7C00)
return double.PositiveInfinity;
else if (h._value == 0xFC00)
return double.NegativeInfinity;
else if (h._value >> 10 == 0x1F)
return double.NaN;
else if (h._value >> 10 == 0x3F)
return -double.NaN;
long exponent = ((h._value >> 10) & 0x1F);
long mantissa = (h._value & 0x3FF);
sbyte n = (sbyte)(((h._value >> 15 & 0x01) == 0) ? 1 : -1);
double m = (((long)1 << 10) | mantissa) / Math.Pow(2, 10);
double x = Math.Pow(2, exponent - (0x1F >> 1));
double d = n * m * x;
return d;
}
public static explicit operator Half(double val)
{
Half h = new Half();
if (val == +0)
h._value = 0x0000;
else if (val == -0)
h._value = 0x8000;
else if (val == double.NaN)
h._value = 0x7FFF;
else if (val == -double.NaN)
h._value = 0xFFFF;
else if (val == double.PositiveInfinity)
h._value = 0x7C00;
else if (val == double.NegativeInfinity)
h._value = 0xFC00;
else
h._value = ToDouble(val);
return h;
}
public static ushort ToDouble(double val)
{
ushort Sign = 0;
if (val < 0)
Sign = 0x8000;
val = Math.Abs(val);
double Pow1 = 1;
double Pow2 = 1 << 10;
double x = 0;
int MaxPow = (1 << 4);
int i = 0;
while (i < MaxPow && i > -MaxPow + 1)
{
Pow1 = Math.Pow(2, i);
x = val / Pow1;
if (x >= 1 && x < 2)
{
ushort exponent_max = (ushort)Math.Ceiling(x * Pow2);
ushort exponent_min = (ushort)Math.Floor (x * Pow2);
ushort exponent = 0;
if (Math.Abs(x - exponent_max / Pow2) > Math.Abs(x - exponent_min / Pow2))
exponent = exponent_max;
else exponent = exponent_min;
ushort mantissa = (ushort)(i + MaxPow - 1);
ushort d = (ushort)(Sign | ((mantissa & 0x001F) << 10) | (exponent & 0x03FF));
return d;
}
else if (val < 1) i--;
else i++;
}
if (i >= +0)
return 0x7C00;
else
return 0xFC00;
}
public override string ToString() => ((double)this).ToString();
public string ToString(string format, IFormatProvider formatProvider) =>
((double)this).ToString(format, formatProvider);
public override int GetHashCode() => base.GetHashCode();
}
}
-102
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@@ -1,102 +0,0 @@
using System;
using System.Xml;
using System.Text;
using System.Xml.Linq;
namespace KKdMainLib
{
public class Xml
{
public XDocument doc;
public bool Compact = false;
public Xml() { doc = new XDocument(); }
public void OpenXml(string file, bool compact)
{
doc = XDocument.Load(file);
Compact = compact;
}
public void SaveXml(string file)
{
XmlWriter writer = XmlWriter.Create(file, settings);
doc.Save(writer);
writer.Dispose();
Compact = false;
GC.Collect();
}
public readonly XmlWriterSettings settings = new XmlWriterSettings
{ Encoding = Encoding.UTF8, NewLineChars = "\n", Indent = true, IndentChars = "\t" };
public void Reader(XElement Child, ref bool value, string localName)
{ if (Child.Name == localName) value = bool.Parse(Child.Value); }
public void Reader(XAttribute Entry, ref bool value, string localName)
{ if (Entry.Name == localName) value = bool.Parse(Entry.Value); }
public void Reader(XElement Child, ref int value, string localName)
{ if (Child.Name == localName) value = int.Parse(Child.Value); }
public void Reader(XAttribute Entry, ref int value, string localName)
{ if (Entry.Name == localName) value = int.Parse(Entry.Value); }
public void Reader(XElement Child, ref uint value, string localName)
{ if (Child.Name == localName) value = uint.Parse(Child.Value); }
public void Reader(XAttribute Entry, ref uint value, string localName)
{ if (Entry.Name == localName) value = uint.Parse(Entry.Value); }
public void Reader(XElement Child, ref long value, string localName)
{ if (Child.Name == localName) value = long.Parse(Child.Value); }
public void Reader(XAttribute Entry, ref long value, string localName)
{ if (Entry.Name == localName) value = long.Parse(Entry.Value); }
public void Reader(XElement Child, ref ulong value, string localName)
{ if (Child.Name == localName) value = ulong.Parse(Child.Value); }
public void Reader(XAttribute Entry, ref ulong value, string localName)
{ if (Entry.Name == localName) value = ulong.Parse(Entry.Value); }
public void Reader(XElement Child, ref double value, string localName)
{ if (Child.Name == localName) value = Child.Value.ToDouble(); }
public void Reader(XAttribute Entry, ref double value, string localName)
{ if (Entry.Name == localName) value = Entry.Value.ToDouble(); }
public void Reader(XElement Child, ref string value, string localName)
{ if (Child.Name == localName) value = Child.Value; }
public void Reader(XAttribute Entry, ref string value, string localName)
{ if (Entry.Name == localName) value = Entry.Value; }
public void Reader(XElement Child, ref string[] value, string localName, params char[] Separate)
{ if (Child.Name == localName) value = Child.Value.Split(Separate); }
public void Reader(XAttribute Entry, ref string[] value, string localName, params char[] Separate)
{ if (Entry.Name == localName) value = Entry.Value.Split(Separate); }
public void Writer(XElement element, bool value, string localName) =>
Writer(element, value.ToString().ToLower(), localName);
public void Writer(XElement element, long value, string localName) =>
Writer(element, value.ToString().ToLower(), localName);
public void Writer(XElement element, ulong value, string localName) =>
Writer(element, value.ToString().ToLower(), localName);
public void Writer(XElement element, double value, string localName) =>
Writer(element, value.ToString(), localName);
public void Writer(XElement element, string value, string localName)
{
if (Compact && value != "" && value != null)
element.Add(new XAttribute(localName, value));
else if (!Compact)
element.Add(new XElement(localName, value));
}
}
}
+105 -113
View File
@@ -1,129 +1,121 @@
using KKdMainLib;
using KKdBaseLib;
using KKdMainLib.IO;
using MSIO = System.IO;
namespace KKdSoundLib
{
public unsafe class DIVA
{
public DIVAFile Data = new DIVAFile();
public string file = "";
private int c, i;
public DIVA() { Data = new DIVAFile(); file = ""; }
public DIVA(string filepath) { Data = new DIVAFile(); file = filepath; }
public DIVA() { Data = new DIVAFile(); }
public void DIVAReader(bool ToArray = false)
public void DIVAReader(string file, bool ToArray = false)
{
if (MSIO.File.Exists(file + ".diva"))
if (!File.Exists(file + ".diva")) return;
Data = new DIVAFile();
Stream reader = File.OpenReader(file + ".diva");
if (reader.RS(0x04) != "DIVA") { reader.C(); return; }
reader.RI32();
Data.Size = reader.RU32();
Data.SampleRate = reader.RU32();
Data.SamplesCount = reader.RU32();
reader.RI64();
Data.Channels = reader.RU16();
reader.RU16();
Data.Name = reader.RS(0x20);
byte value = 0;
byte[] data = new byte[Data.SamplesCount * Data.Channels * 4];
int[] current = new int[Data.Channels];
int[] currentclamp = new int[Data.Channels];
sbyte[] stepindex = new sbyte[Data.Channels];
fixed (int* currentPtr = current)
fixed (int* currentclampPtr = currentclamp)
fixed (sbyte* stepindexPtr = stepindex)
fixed (byte* ptr = data)
{
Data = new DIVAFile();
Stream reader = File.OpenReader(file + ".diva");
if (reader.ReadString(0x04) == "DIVA")
{
reader.ReadInt32();
Data.Size = reader.ReadUInt32();
Data.SampleRate = reader.ReadUInt32();
Data.SamplesCount = reader.ReadUInt32();
reader.ReadInt64();
Data.Channels = reader.ReadUInt16();
reader.ReadUInt16();
Data.Name = reader.ReadString(0x20);
Stream writer = File.OpenWriter();
if (!ToArray) writer = File.OpenWriter(file + ".wav", true);
writer.LongPosition = 0x2C;
byte value = 0;
int[] current = new int[Data.Channels];
int[] currentclamp = new int[Data.Channels];
sbyte[] stepindex = new sbyte[Data.Channels];
float f;
int* currentPtr = current.GetPtr();
int* currentclampPtr = currentclamp.GetPtr();
sbyte* stepindexPtr = stepindex.GetPtr();
for (i = 0; i < Data.SamplesCount; i++)
for (c = 0; c < Data.Channels; c++)
{
value = reader.ReadHalfByte();
IMADecoder(value, ref currentPtr[c], ref currentclampPtr[c], ref stepindexPtr[c]);
f = (float)(currentPtr[c] / 32768.0);
writer.Write(f);
}
WAV.Header Header = new WAV.Header
{ Bytes = 4, Channels = Data.Channels, Format = 3,
SampleRate = Data.SampleRate, Size = Data.SamplesCount * Data.Channels * 4};
writer.Write(Header, 0);
if (ToArray) Data.Data = writer.ToArray();
writer.Close();
}
reader.Close();
float* dataPtr = (float*)ptr;
for (i = 0; i < Data.SamplesCount; i++)
for (c = 0; c < Data.Channels; c++, dataPtr++)
{
value = reader.RHB();
IMADecoder(value, ref currentPtr[c], ref currentclampPtr[c], ref stepindexPtr[c]);
*dataPtr = (float)(currentPtr[c] / 32768.0);
}
}
reader.CR();
if (ToArray) Data.Data = data;
else
{
Stream writer = File.OpenWriter(file + ".wav", true);
WAV.Header Header = new WAV.Header { Bytes = 4, Channels = Data.Channels, Format = 3,
SampleRate = Data.SampleRate, Size = Data.SamplesCount * Data.Channels * 4 };
writer.W(Header, 0);
writer.W(data);
writer.C();
}
reader.C();
}
private byte[] BuildWavHeader(WAV.Header Header, short Bytes)
public void DIVAWriter(string file)
{
Stream writer = File.OpenWriter();
writer.Write(Header);
byte[] Data = writer.ToArray();
writer.Close();
return Data;
}
if (!File.Exists(file + ".wav")) return;
public void DIVAWriter()
{
if (MSIO.File.Exists(file + ".wav"))
Stream reader = File.OpenReader(file + ".wav");
Data = new DIVAFile();
WAV.Header Header = reader.ReadWAVHeader();
if (!Header.IsSupported) { reader.C(); return; }
Stream writer = File.OpenWriter(file + ".diva", true);
Data.Channels = Header.Channels;
Data.SampleRate = Header.SampleRate;
Data.SamplesCount = Header.Size / Header.Channels / Header.Bytes;
writer.PI64 = 0x40;
writer.LI64 = 0x40 + (Data.SamplesCount * Data.Channels).A(2, 2);
byte value = 0;
int[] sample = new int[Data.Channels];
int[] current = new int[Data.Channels];
int[] currentclamp = new int[Data.Channels];
sbyte[] stepindex = new sbyte[Data.Channels];
fixed (int* samplePtr = sample)
fixed (int* currentPtr = current)
fixed (int* currentclampPtr = currentclamp)
fixed (sbyte* stepindexPtr = stepindex)
{
Stream reader = File.OpenReader(file + ".wav");
Stream writer = File.OpenWriter(file + ".diva", true);
Data = new DIVAFile();
WAV.Header Header = reader.ReadWAVHeader();
if (Header.IsSupported)
{
Data.Channels = Header.Channels;
Data.SampleRate = Header.SampleRate;
writer.LongPosition = 0x40;
byte value = 0;
int[] sample = new int[Data.Channels];
int[] current = new int[Data.Channels];
int[] currentclamp = new int[Data.Channels];
sbyte[] stepindex = new sbyte[Data.Channels];
int* samplePtr = sample.GetPtr();
int* currentPtr = current.GetPtr();
int* currentclampPtr = currentclamp.GetPtr();
sbyte* stepindexPtr = stepindex.GetPtr();
Data.SamplesCount = Header.Size / Header.Channels / Header.Bytes;
for (i = 0; i < Data.SamplesCount; i++)
for (c = 0; c < Header.Channels; c++)
{
samplePtr[c] = (reader.ReadWAVSample(Header.Bytes, Header.Format) * 0x8000).CFTI();
value = IMAEncoder(samplePtr[c], ref currentPtr[c], ref currentclampPtr[c], ref stepindexPtr[c]);
writer.Write(value, 4);
}
writer.CheckWrited();
writer.LongPosition = 0x00;
writer.Write("DIVA");
writer.Write(0x00);
writer.Write((Data.SamplesCount * Data.Channels).Align(2, 2));
writer.Write(Data.SampleRate);
writer.Write(Data.SamplesCount);
writer.Write(0x00);
writer.Write(0x00);
writer.Write(Data.Channels);
}
reader.Close();
writer.Close();
for (i = 0; i < Data.SamplesCount; i++)
for (c = 0; c < Header.Channels; c++)
{
samplePtr[c] = (reader.RS(Header.Bytes, Header.Format) * 0x8000).CFTI();
value = IMAEncoder(samplePtr[c], ref currentPtr[c],
ref currentclampPtr[c], ref stepindexPtr[c]);
writer.W(value, 4);
}
}
writer.CW();
writer.PI64 = 0x00;
writer.W("DIVA");
writer.W(0x00);
writer.W((Data.SamplesCount * Data.Channels).A(2, 2));
writer.W(Data.SampleRate);
writer.W(Data.SamplesCount);
writer.W(0x00);
writer.W(0x00);
writer.W(Data.Channels);
writer.C();
reader.C();
}
private void IMADecoder(byte value, ref int current, ref int currentclamp, ref sbyte stepindex)
@@ -134,14 +126,14 @@ namespace KKdSoundLib
if ((value & 1) == 1) diff += step >> 2;
if ((value & 2) == 2) diff += step >> 1;
if ((value & 4) == 4) diff += step;
if ((value & 8) == 8)
{ currentclamp -= diff; current = currentclamp;
if (currentclamp < -0x8000) currentclamp = -0x8000; }
else
{ currentclamp += diff; current = currentclamp;
if (currentclamp > 0x7FFF) currentclamp = 0x7FFF; }
stepindex += ima_index_table[value & 7];
if (stepindex < 0) stepindex = 0;
if (stepindex > 88) stepindex = 88;
@@ -155,9 +147,9 @@ namespace KKdSoundLib
{
value = 0;
step = ima_step_table[stepindex];
delta = sample - current;
if (delta < 0)
{ value |= 8; delta = -delta; }
diff = step >> 3;
@@ -169,14 +161,14 @@ namespace KKdSoundLib
step >>= 1;
if (delta > step)
{ value |= 1; diff += step; }
if ((value & 8) == 8)
{ currentclamp -= diff; current = currentclamp;
if (currentclamp < -0x8000) currentclamp = -0x8000; }
else
{ currentclamp += diff; current = currentclamp;
if (currentclamp > 0x7FFF) currentclamp = 0x7FFF; }
stepindex += ima_index_table[value & 0x07];
if (stepindex < 0) stepindex = 0;
if (stepindex > 88) stepindex = 88;
+58 -55
View File
@@ -1,94 +1,97 @@
using KKdMainLib.IO;
using KKdBaseLib;
using KKdMainLib.IO;
namespace KKdSoundLib
{
public static class Extensions
{
public static double ReadWAVSample(this Stream IO, ushort Bytes, ushort Format)
public static double RS(this Stream _IO, ushort Bytes, ushort Format)
{
if (Bytes == 2) return IO. ReadInt16() / (double)0x00008000;
else if (Bytes == 4 && Format == 0x01) return IO. ReadInt32() / (double)0x80000000;
else if (Bytes == 4 && Format == 0x03) return IO.ReadSingle();
else if (Bytes == 8 && Format == 0x03) return IO.ReadDouble();
if (Bytes == 2) return _IO. RI16() / (double)0x00008000;
else if (Bytes == 4 && Format == 0x01) return _IO. RI32() / (double)0x80000000;
else if (Bytes == 4 && Format == 0x03) return _IO.RF32();
else if (Bytes == 8 && Format == 0x03) return _IO.RF64();
else return 0;
}
public static void Write(this Stream IO, double Sample, ushort Bytes, ushort Format)
public static void W(this Stream _IO, double Sample, ushort Bytes, ushort Format)
{
if (Bytes == 2) IO.Write ((ushort)(Sample * 0x00008000));
else if (Bytes == 4 && Format == 0x01) IO.Write (( int)(Sample * 0x80000000));
else if (Bytes == 4 && Format == 0x03) IO.Write ((float) Sample);
else if (Bytes == 8 && Format == 0x03) IO.Write ( Sample);
if (Bytes == 2) _IO.W((Sample * 0x00008000).CFTS());
else if (Bytes == 4 && Format == 0x01) _IO.W((Sample * 0x80000000).CFTI());
else if (Bytes == 4 && Format == 0x03) _IO.W((float)Sample);
else if (Bytes == 8 && Format == 0x03) _IO.W( Sample);
}
public static WAV.Header ReadWAVHeader(this Stream IO)
public static WAV.Header ReadWAVHeader(this Stream _IO)
{
WAV.Header Header = new WAV.Header();
if (IO.ReadString(4) != "RIFF") return Header;
IO.ReadUInt32();
if (IO.ReadString(4) != "WAVE") return Header;
if (IO.ReadString(4) != "fmt ") return Header;
int Offset = IO.ReadInt32();
Header.Format = IO.ReadUInt16();
if (_IO.RS(4) != "RIFF") return Header;
_IO.RU32();
if (_IO.RS(4) != "WAVE") return Header;
if (_IO.RS(4) != "fmt ") return Header;
int Offset = _IO.RI32();
Header.Format = _IO.RU16();
if (Header.Format == 0x01 || Header.Format == 0x03 || Header.Format == 0xFFFE)
{
Header.Channels = IO.ReadUInt16();
Header.SampleRate = IO.ReadUInt32();
IO.ReadInt32(); IO.ReadInt16();
Header.Bytes = IO.ReadUInt16();
Header.Channels = _IO.RU16();
Header.SampleRate = _IO.RU32();
_IO.RI32(); _IO.RI16();
Header.Bytes = _IO.RU16();
if (Header.Bytes % 8 != 0) return Header;
Header.Bytes >>= 3;
if (Header.Bytes == 0) return Header;
if (Header.Format == 0xFFFE)
{
IO.ReadInt32();
Header.ChannelMask = IO.ReadUInt32();
Header.Format = IO.ReadUInt16();
_IO.RI32();
Header.ChannelMask = _IO.RU32();
Header.Format = _IO.RU16();
}
if (Header.Bytes < 1 || (Header.Bytes > 4 && Header.Bytes != 8)) return Header;
if (Header.Bytes > 0 && Header.Bytes < 4 && Header.Format == 3) return Header;
if (Header.Bytes > 0 && Header.Bytes < 4 && Header.Format == 3 ) return Header;
if (Header.Bytes == 8 && Header.Format == 1) return Header;
IO.Seek(Offset + 0x14, 0);
if (IO.ReadString(4) != "data") return Header;
Header.Size = IO.ReadUInt32();
Header.HeaderSize = IO.UIntPosition;
_IO.S(Offset + 0x14, 0);
if (_IO.RS(4) != "data") return Header;
Header.Size = _IO.RU32();
Header.HeaderSize = _IO.PU32;
Header.IsSupported = true;
return Header;
}
return Header;
}
public static void Write(this Stream IO, WAV.Header Header, long Seek) => IO.Write(Header, Seek, 0);
public static void W(this Stream _IO, WAV.Header Header, long Seek) => _IO.W(Header, Seek, 0);
public static void Write(this Stream IO, WAV.Header Header, long Seek, SeekOrigin Origin)
{ IO.Seek(Seek, Origin); IO.Write(Header); }
public static void W(this Stream _IO, WAV.Header Header, long Seek, SeekOrigin Origin)
{ _IO.S(Seek, Origin); _IO.W(Header); }
public static void Write(this Stream IO, WAV.Header Header)
public static void W(this Stream _IO, WAV.Header Header)
{
IO.Write("RIFF");
if (Header.Format != 0xFFFE) IO.Write(Header.Size + 0x24);
else IO.Write(Header.Size + 0x3C);
IO.Write("WAVE");
IO.Write("fmt ");
IO.Write(0x10);
IO.Write(Header.Format);
IO.Write((short)Header.Channels);
IO.Write(Header.SampleRate);
IO.Write(Header.SampleRate * Header.Channels * Header.Bytes);
IO.Write((short)(Header.Channels * Header.Bytes));
IO.Write((short)(Header.Bytes << 3));
_IO.W("RIFF");
if (Header.Format != 0xFFFE) _IO.W(Header.Size + 0x24);
else _IO.W(Header.Size + 0x3C);
_IO.W("WAVE");
_IO.W("fmt ");
if (Header.Format != 0xFFFE) _IO.W(0x10);
else _IO.W(0x28);
_IO.W(Header.Format);
_IO.W((short)Header.Channels);
_IO.W(Header.SampleRate);
_IO.W(Header.SampleRate * Header.Channels * Header.Bytes);
_IO.W((short)(Header.Channels * Header.Bytes));
_IO.W((short)(Header.Bytes << 3));
if (Header.Format == 0xFFFE)
{
IO.Write((short)0x16);
IO.Write((short)(Header.Bytes << 3));
IO.Write(Header.ChannelMask);
IO.Write(Header.Bytes == 2 ? 0x01 : 0x03);
IO.Write(0x00100000);
IO.Write(0xAA000080);
IO.Write(0x719B3800);
_IO.W((short)0x16);
_IO.W((short)(Header.Bytes << 3));
_IO.W(Header.ChannelMask);
_IO.W(Header.Bytes == 2 ? 0x01 : 0x03);
_IO.W(0x00100000);
_IO.W(0xAA000080);
_IO.W(0x719B3800);
}
IO.Write("data");
IO.Write(Header.Size);
_IO.W("data");
_IO.W(Header.Size);
}
}
}
+19 -32
View File
@@ -1,16 +1,17 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="15.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<Import Project="$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props" Condition="Exists('$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props')" />
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">AnyCPU</Platform>
<ProjectGuid>{D8A3F2D7-10CC-5723-EC9A-45D3B9C2DFEA}</ProjectGuid>
<OutputType>Library</OutputType>
<RootNamespace>KKdSoundLib</RootNamespace>
<AssemblyName>KKdSoundLib</AssemblyName>
<TargetFrameworkVersion>v4.6.1</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
<AutoGenerateBindingRedirects>true</AutoGenerateBindingRedirects>
<Authors>korenkonder</Authors>
<Company></Company>
<Configuration></Configuration>
<Copyright>korenkonder © 2019</Copyright>
<Description>A simple library for working with Project Diva F/AFT/F2/X/FT audio files</Description>
<FileVersion>0.1.1.1</FileVersion>
<PackageId>KKdSoundLib</PackageId>
<Product>KKdSoundLib</Product>
<TargetFramework>netstandard2.0</TargetFramework>
<Title>KKdSoundLib</Title>
<Version>0.1.1.1</Version>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -22,6 +23,8 @@
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -33,27 +36,11 @@
<WarningLevel>4</WarningLevel>
<DebugSymbols>true</DebugSymbols>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<ItemGroup>
<Compile Include="Extensions.cs" />
<Compile Include="DIVA.cs" />
<Compile Include="VAG.cs" />
<Compile Include="WAV.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
<ProjectReference Include="..\KKdBaseLib\KKdBaseLib.csproj" />
<ProjectReference Include="..\KKdMainLib\KKdMainLib.csproj" />
</ItemGroup>
<ItemGroup>
<Reference Include="System" />
<Reference Include="System.Drawing" />
<Reference Include="System.Numerics" />
<Reference Include="System.Windows.Forms" />
<Reference Include="System.Xml" />
<Reference Include="System.Xml.Linq" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\KKdMainLib\KKdMainLib.csproj">
<Project>{2BA7EFC6-91D1-8BBC-C487-06C7F36CC789}</Project>
<Name>KKdMainLib</Name>
</ProjectReference>
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
</Project>
</Project>
-8
View File
@@ -1,15 +1,7 @@
using System.Reflection;
using System.Runtime.InteropServices;
[assembly: AssemblyTitle("KKdSoundLib")]
[assembly: AssemblyDescription("")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("")]
[assembly: AssemblyProduct("KKdSoundLib")]
[assembly: AssemblyCopyright("Copyright korenkonder © 2019")]
[assembly: AssemblyTrademark("")]
[assembly: AssemblyCulture("")]
[assembly: ComVisible(false)]
[assembly: Guid("D8A3F2D7-10CC-5723-EC9A-45D3B9C2DFEA")]
[assembly: AssemblyVersion("0.0.2.1")]
[assembly: AssemblyFileVersion("0.0.2.1")]
+467 -461
View File
File diff suppressed because it is too large Load Diff
+1 -7
View File
@@ -1,10 +1,4 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using System.Threading.Tasks;
namespace KKdSoundLib
namespace KKdSoundLib
{
public static class WAV
{
+13 -7
View File
@@ -1,24 +1,26 @@
Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio 15
VisualStudioVersion = 15.0.27130.2003
# Visual Studio Version 16
VisualStudioVersion = 16.0.29025.244
MinimumVisualStudioVersion = 10.0.40219.1
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "PD_Tool", "PD_Tool\PD_Tool.csproj", "{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}"
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "KKdBaseLib", "KKdBaseLib\KKdBaseLib.csproj", "{437F63F1-8C23-429E-AB14-38B85C9EDB16}"
EndProject
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "KKdMainLib", "KKdMainLib\KKdMainLib.csproj", "{2BA7EFC6-91D1-8BBC-C487-06C7F36CC789}"
EndProject
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "KKdSoundLib", "KKdSoundLib\KKdSoundLib.csproj", "{D8A3F2D7-10CC-5723-EC9A-45D3B9C2DFEA}"
EndProject
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "PD_Tool", "PD_Tool\PD_Tool.csproj", "{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Any CPU = Debug|Any CPU
Release|Any CPU = Release|Any CPU
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}.Debug|Any CPU.Build.0 = Debug|Any CPU
{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}.Release|Any CPU.ActiveCfg = Release|Any CPU
{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}.Release|Any CPU.Build.0 = Release|Any CPU
{437F63F1-8C23-429E-AB14-38B85C9EDB16}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{437F63F1-8C23-429E-AB14-38B85C9EDB16}.Debug|Any CPU.Build.0 = Debug|Any CPU
{437F63F1-8C23-429E-AB14-38B85C9EDB16}.Release|Any CPU.ActiveCfg = Release|Any CPU
{437F63F1-8C23-429E-AB14-38B85C9EDB16}.Release|Any CPU.Build.0 = Release|Any CPU
{2BA7EFC6-91D1-8BBC-C487-06C7F36CC789}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{2BA7EFC6-91D1-8BBC-C487-06C7F36CC789}.Debug|Any CPU.Build.0 = Debug|Any CPU
{2BA7EFC6-91D1-8BBC-C487-06C7F36CC789}.Release|Any CPU.ActiveCfg = Release|Any CPU
@@ -27,6 +29,10 @@ Global
{D8A3F2D7-10CC-5723-EC9A-45D3B9C2DFEA}.Debug|Any CPU.Build.0 = Debug|Any CPU
{D8A3F2D7-10CC-5723-EC9A-45D3B9C2DFEA}.Release|Any CPU.ActiveCfg = Release|Any CPU
{D8A3F2D7-10CC-5723-EC9A-45D3B9C2DFEA}.Release|Any CPU.Build.0 = Release|Any CPU
{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}.Debug|Any CPU.Build.0 = Debug|Any CPU
{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}.Release|Any CPU.ActiveCfg = Release|Any CPU
{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}.Release|Any CPU.Build.0 = Release|Any CPU
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
+122 -10
View File
@@ -11,6 +11,7 @@
<TargetFrameworkVersion>v4.6.1</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
<AutoGenerateBindingRedirects>true</AutoGenerateBindingRedirects>
<RunPostBuildEvent>Always</RunPostBuildEvent>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -22,6 +23,8 @@
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -33,16 +36,25 @@
<WarningLevel>4</WarningLevel>
<DebugSymbols>true</DebugSymbols>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<ItemGroup>
<Compile Include="classes\A3D.cs" />
<Compile Include="classes\AET.cs" />
<Compile Include="classes\BLT.cs" />
<Compile Include="classes\CCT.cs" />
<Compile Include="classes\DataBase.cs" />
<Compile Include="classes\Tools\A3D.cs" />
<Compile Include="classes\Tools\DEX.cs" />
<Compile Include="classes\Tools\DIV.cs" />
<Compile Include="classes\Tools\STR.cs" />
<Compile Include="classes\Tools\VAG.cs" />
<Compile Include="classes\DB.cs" />
<Compile Include="classes\DEX.cs" />
<Compile Include="classes\DFT.cs" />
<Compile Include="classes\DIV.cs" />
<Compile Include="classes\DIVAFILE.cs" />
<Compile Include="classes\FARC.cs" />
<Compile Include="classes\LIT.cs" />
<Compile Include="classes\MOT.cs" />
<Compile Include="classes\STR.cs" />
<Compile Include="classes\VAG.cs" />
<Compile Include="Program.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
</ItemGroup>
@@ -51,19 +63,119 @@
<Reference Include="System.Drawing" />
<Reference Include="System.Numerics" />
<Reference Include="System.Windows.Forms" />
<Reference Include="System.Xml" />
<Reference Include="System.Xml.Linq" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\KKdBaseLib\KKdBaseLib.csproj">
<Project>{437f63f1-8c23-429e-ab14-38b85c9edb16}</Project>
<Name>KKdBaseLib</Name>
</ProjectReference>
<ProjectReference Include="..\KKdMainLib\KKdMainLib.csproj">
<Project>{2BA7EFC6-91D1-8BBC-C487-06C7F36CC789}</Project>
<Project>{2ba7efc6-91d1-8bbc-c487-06c7f36cc789}</Project>
<Name>KKdMainLib</Name>
<EmbedInteropTypes>False</EmbedInteropTypes>
</ProjectReference>
<ProjectReference Include="..\KKdSoundLib\KKdSoundLib.csproj">
<Project>{D8A3F2D7-10CC-5723-EC9A-45D3B9C2DF77}</Project>
<Project>{d8a3f2d7-10cc-5723-ec9a-45d3b9c2df77}</Project>
<Name>KKdSoundLib</Name>
</ProjectReference>
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
<PropertyGroup>
<PostBuildEvent>del Microsoft.Win32.Primitives.dll
del netstandard.dll
del PD_Tool.exe.config
del System.AppContext.dll
del System.Collections.Concurrent.dll
del System.Collections.dll
del System.Collections.NonGeneric.dll
del System.Collections.Specialized.dll
del System.ComponentModel.dll
del System.ComponentModel.EventBasedAsync.dll
del System.ComponentModel.Primitives.dll
del System.ComponentModel.TypeConverter.dll
del System.Console.dll
del System.Data.Common.dll
del System.Diagnostics.Contracts.dll
del System.Diagnostics.Debug.dll
del System.Diagnostics.FileVersionInfo.dll
del System.Diagnostics.Process.dll
del System.Diagnostics.StackTrace.dll
del System.Diagnostics.TextWriterTraceListener.dll
del System.Diagnostics.Tools.dll
del System.Diagnostics.TraceSource.dll
del System.Diagnostics.Tracing.dll
del System.Drawing.Primitives.dll
del System.Dynamic.Runtime.dll
del System.Globalization.Calendars.dll
del System.Globalization.dll
del System.Globalization.Extensions.dll
del System.IO.Compression.dll
del System.IO.Compression.ZipFile.dll
del System.IO.dll
del System.IO.FileSystem.dll
del System.IO.FileSystem.DriveInfo.dll
del System.IO.FileSystem.Primitives.dll
del System.IO.FileSystem.Watcher.dll
del System.IO.IsolatedStorage.dll
del System.IO.MemoryMappedFiles.dll
del System.IO.Pipes.dll
del System.IO.UnmanagedMemoryStream.dll
del System.Linq.dll
del System.Linq.Expressions.dll
del System.Linq.Parallel.dll
del System.Linq.Queryable.dll
del System.Net.Http.dll
del System.Net.NameResolution.dll
del System.Net.NetworkInformation.dll
del System.Net.Ping.dll
del System.Net.Primitives.dll
del System.Net.Requests.dll
del System.Net.Security.dll
del System.Net.Sockets.dll
del System.Net.WebHeaderCollection.dll
del System.Net.WebSockets.Client.dll
del System.Net.WebSockets.dll
del System.ObjectModel.dll
del System.Reflection.dll
del System.Reflection.Extensions.dll
del System.Reflection.Primitives.dll
del System.Resources.Reader.dll
del System.Resources.ResourceManager.dll
del System.Resources.Writer.dll
del System.Runtime.CompilerServices.VisualC.dll
del System.Runtime.dll
del System.Runtime.Extensions.dll
del System.Runtime.Handles.dll
del System.Runtime.InteropServices.dll
del System.Runtime.InteropServices.RuntimeInformation.dll
del System.Runtime.Numerics.dll
del System.Runtime.Serialization.Formatters.dll
del System.Runtime.Serialization.Json.dll
del System.Runtime.Serialization.Primitives.dll
del System.Runtime.Serialization.Xml.dll
del System.Security.Claims.dll
del System.Security.Cryptography.Algorithms.dll
del System.Security.Cryptography.Csp.dll
del System.Security.Cryptography.Encoding.dll
del System.Security.Cryptography.Primitives.dll
del System.Security.Cryptography.X509Certificates.dll
del System.Security.Principal.dll
del System.Security.SecureString.dll
del System.Text.Encoding.dll
del System.Text.Encoding.Extensions.dll
del System.Text.RegularExpressions.dll
del System.Threading.dll
del System.Threading.Overlapped.dll
del System.Threading.Tasks.dll
del System.Threading.Tasks.Parallel.dll
del System.Threading.Thread.dll
del System.Threading.ThreadPool.dll
del System.Threading.Timer.dll
del System.ValueTuple.dll
del System.Xml.ReaderWriter.dll
del System.Xml.XDocument.dll
del System.Xml.XmlDocument.dll
del System.Xml.XmlSerializer.dll
del System.Xml.XPath.dll
del System.Xml.XPath.XDocument.dll</PostBuildEvent>
</PropertyGroup>
</Project>
+204 -64
View File
@@ -1,113 +1,253 @@
using System;
using System.Collections.Generic;
using System.Windows.Forms;
using KKdMainLib;
using KKdMainLib.IO;
using MSIO = System.IO;
using KKdMain = KKdMainLib.Main;
using KKdFARC = KKdMainLib.FARC;
namespace PD_Tool
{
public static class Program
{
public static string function = "";
public static List<string> ProcessedFiles = new List<string>();
[System.Runtime.InteropServices.DllImport("user32.dll")]
private static extern bool SetProcessDPIAware();
[ThreadStatic] public static string choose = "";
[STAThread]
public static void Main(string[] args)
{
SetProcessDPIAware();
Console.Title = "PD_Tool";
if (args.Length == 0)
{
while (function != "Q") MainMenu();
Exit();
}
if (args.Length == 0) { while (choose != "Q") MainMenu(); Exit(); }
string header;
long header;
Stream reader;
KKdFARC Farc;
foreach (string arg in args)
{
Farc = new KKdFARC();
if (MSIO.Directory.Exists(arg)) Farc.Pack(arg);
else if (MSIO.File.Exists(arg) && MSIO.Path.GetExtension(arg) == ".farc") Farc.UnPack(arg, true);
else if (MSIO.File.Exists(arg))
GC.Collect();
if (Directory.Exists(arg)) using (KKdFARC FARC = new KKdFARC(arg, true)) FARC.Pack();
else if (File.Exists(arg) && Path.GetExtension(arg) == ".farc")
using (KKdFARC farc = new KKdFARC(arg)) farc.UnPack(true);
else if (File.Exists(arg))
{
reader = File.OpenReader(arg);
header = reader.ReadString(8);
reader.Close();
if (header.ToUpper() == "DIVAFILE") DIVAFILE.Decrypt(arg);
using (reader = File.OpenReader(arg))
header = reader.RI64();
if (header == 0x454C494641564944) KKdMainLib.DIVAFILE.Decrypt(arg);
}
}
Exit();
}
[ThreadStatic] private static bool json = true;
private static void MainMenu()
{
Console. InputEncoding = System.Text.Encoding.Unicode;
Console.OutputEncoding = System.Text.Encoding.Unicode;
Console.Title = "PD_Tool";
Console.Clear();
KKdMain.ConsoleDesign(true);
KKdMain.ConsoleDesign(" Choose action:");
KKdMain.ConsoleDesign(false);
KKdMain.ConsoleDesign("1. Extract FARC Archive");
KKdMain.ConsoleDesign("2. Create FARC Archive");
KKdMain.ConsoleDesign("3. Decrypt from DIVAFILE");
KKdMain.ConsoleDesign("4. Encrypt to DIVAFILE");
KKdMain.ConsoleDesign("5. DB_Tools");
KKdMain.ConsoleDesign("6. Converting Tools");
KKdMain.ConsoleDesign(false);
KKdMain.ConsoleDesign("Q. Quit");
KKdMain.ConsoleDesign(false);
KKdMain.ConsoleDesign(true);
ConsoleDesign(true);
ConsoleDesign(" Choose action:");
ConsoleDesign(false);
ConsoleDesign("1. Extract FARC Archive");
ConsoleDesign("2. Create FARC Archive");
ConsoleDesign("3. Decrypt from DIVAFILE");
ConsoleDesign("4. Encrypt to DIVAFILE");
ConsoleDesign("5. DB_Tools");
ConsoleDesign("6. AC/DT/F/AFT/FT Converting Tools");
ConsoleDesign("7. F/F2/X/FT Converting Tools");
ConsoleDesign(json ? "8. MsgPack to JSON" : "9. JSON to MsgPack");
ConsoleDesign(false);
ConsoleDesign(json ? "M. MessagePack" : "J. JSON");
ConsoleDesign("Q. Quit");
ConsoleDesign(false);
ConsoleDesign(true);
Console.WriteLine();
function = Console.ReadLine().ToUpper();
bool isNumber = int.TryParse(function, out int result);
choose = Console.ReadLine().ToUpper();
bool isNumber = int.TryParse(choose, out int result);
if (isNumber) Functions();
if (choose == "M") json = false;
else if (choose == "J") json = true ;
}
private static void Functions()
{
Console.Clear();
if (function == "1" || function == "2")
FARC.Processor(function == "1");
else if (function == "3" || function == "4")
if (choose == "1" || choose == "2") FARC.Processor(choose == "1");
else if (choose == "3" || choose == "4")
{
KKdMain.Choose(1, "", out string[] FileNames);
Choose(1, "", out string[] FileNames);
foreach (string FileName in FileNames) DIVAFILE.Decrypt(FileName);
}
else if (function == "5") DataBase.Processor();
else if (function == "6")
else if (choose == "5") DataBase.Processor(json);
else if (choose == "6")
{
Console.Clear();
Console.Title = "Converter Tools";
KKdMain.ConsoleDesign(true);
KKdMain.ConsoleDesign(" Choose tool:");
KKdMain.ConsoleDesign(false);
KKdMain.ConsoleDesign("1. A3DA Converter");
KKdMain.ConsoleDesign("2. DEX Converter");
KKdMain.ConsoleDesign("3. DIVA Converter");
KKdMain.ConsoleDesign("4. STR Converter");
KKdMain.ConsoleDesign("5. VAG Converter");
KKdMain.ConsoleDesign(false);
KKdMain.ConsoleDesign("R. Return to Main Menu");
KKdMain.ConsoleDesign("Q. Quit");
KKdMain.ConsoleDesign(false);
KKdMain.ConsoleDesign(true);
Console.Title = "AC/DT/F/AFT/FT Converting Tools";
ConsoleDesign(true);
ConsoleDesign(" Choose converter:");
ConsoleDesign(false);
ConsoleDesign("1. A3DA" );
ConsoleDesign("2. AET" );
ConsoleDesign("3. DataBank");
ConsoleDesign("4. DEX" );
ConsoleDesign("5. DIVA" );
ConsoleDesign("6. MotHead" );
ConsoleDesign("7. MOT" );
ConsoleDesign("8. STR" );
ConsoleDesign(false);
ConsoleDesign("R. Return to Main Menu");
ConsoleDesign(false);
ConsoleDesign(true);
Console.WriteLine();
string Function = Console.ReadLine();
string localChoose = Console.ReadLine();
if (localChoose == "1") A3D.Processor(json);
else if (localChoose == "2") AET.Processor(json);
else if (localChoose == "3") DB .Processor(json);
else if (localChoose == "4") DEX.Processor(json);
else if (localChoose == "5") DIV.Processor();
else if (localChoose == "6") MOT.Processor(json);
else if (localChoose == "7") STR.Processor(json);
else choose = localChoose;
}
else if (choose == "7")
{
Console.Clear();
if (Function == "1") Tools.A3D.Processor();
else if (Function == "2") Tools.DEX.Processor();
else if (Function == "3") Tools.DIV.Processor();
else if (Function == "4") Tools.STR.Processor();
else if (Function == "5") Tools.VAG.Processor();
else function = Function;
Console.Title = "F/F2/X/FT Converting Tools";
ConsoleDesign(true);
ConsoleDesign(" Choose converter:");
ConsoleDesign(false);
ConsoleDesign("1. A3DA" );
ConsoleDesign("2. Bloom" );
ConsoleDesign("3. Color Correction");
ConsoleDesign("4. DEX" );
ConsoleDesign("5. DOF" );
ConsoleDesign("6. Light" );
ConsoleDesign("7. Particles" );
ConsoleDesign("8. STR" );
ConsoleDesign("9. VAG" );
ConsoleDesign(false);
ConsoleDesign("R. Return to Main Menu");
ConsoleDesign(false);
ConsoleDesign(true);
Console.WriteLine();
string localChoose = Console.ReadLine();
if (localChoose == "1") A3D.Processor(json);
else if (localChoose == "2") BLT.Processor();
else if (localChoose == "3") CCT.Processor();
else if (localChoose == "4") DEX.Processor(json);
else if (localChoose == "5") DFT.Processor();
else if (localChoose == "6") LIT.Processor();
else if (localChoose == "7") STR.Processor(json);
else if (localChoose == "8") VAG.Processor();
else choose = localChoose;
}
else if (choose == "8")
{
Console.Title = json ? "MsgPack to JSON" : "JSON to MsgPack";
Choose(1, json ? "mp" : "json", out string[] fileNames);
foreach (string file in fileNames)
if (json)
{
Console.Title = "MsgPack to JSON: " + Path.GetFileNameWithoutExtension(file);
file.Replace(Path.GetExtension(file), "").ToJSON ();
}
else
{
Console.Title = "JSON to MsgPack: " + Path.GetFileNameWithoutExtension(file);
file.Replace(Path.GetExtension(file), "").ToMsgPack();
}
}
}
public static void Exit() => Environment.Exit(0);
public static void ConsoleDesign(string text, params string[] args)
{
text = string.Format(text, args);
string Text = "█ █";
Text = Text.Remove(3) + text + Text.Remove(0, text.Length + 3);
Console.WriteLine(Text);
}
public static void ConsoleDesign(bool Fill)
{
if (Fill) Console.WriteLine("████████████████████████████████████████████████████");
else Console.WriteLine("█ █");
}
private static string GetArgs(string name, bool And, params string[] ext)
{
int L = ext.Length;
string Out = (And ? "|" : "") + name + " files (";
for (int i = 0; i < L; i++) { Out += "*." + ext[i]; if (i + 1 < L) Out += ", "; }
Out += ")|";
for (int i = 0; i < L; i++) { Out += "*." + ext[i]; if (i + 1 < L) Out += ";" ; }
return Out;
}
private static string GetArgs(string name, params string[] ext)
{
int L = ext.Length;
string Out = name + " files (";
for (int i = 0; i < L; i++) { Out += "*." + ext[i]; if (i + 1 < L) Out += ", "; }
Out += ")|";
for (int i = 0; i < L; i++) { Out += "*." + ext[i]; if (i + 1 < L) Out += ";" ; }
return Out;
}
public static string Choose(int code, string filetype, out string[] FileNames)
{
string mp = GetArgs("MessagePack", true, "mp" );
string json = GetArgs("JSON" , true, "json");
string bin = GetArgs("BIN" , true, "bin" );
string wav = GetArgs("WAV" , true, "wav" );
FileNames = new string[0];
if (code == 1)
{
string Filter = GetArgs("All;", false, "*");
if (filetype == "a3da") Filter = GetArgs("A3DA", "a3da", "farc", "json", "mp") +
GetArgs("A3DA", true, "a3da") + GetArgs("FARC", true, "farc") + json + mp;
else if (filetype == "bin" ) Filter = GetArgs("BIN" , "bin", "json", "mp") +
bin + json + mp;
else if (filetype == "blt" ) Filter = GetArgs("BLT" , "blt");
else if (filetype == "bon" ) Filter = GetArgs("BON" , "bon", "bin", "json", "mp") +
GetArgs("BON", true, "bon") + bin + json + mp;
else if (filetype == "cct" ) Filter = GetArgs("CCT" , "cct");
else if (filetype == "databank") Filter = GetArgs("DAT", "dat", "json", "mp") +
GetArgs("DAT", true, "dat") + json + mp;
else if (filetype == "dex" ) Filter = GetArgs("DEX" , "dex", "bin", "json", "mp") +
GetArgs("DEX", true, "dex") + bin + json + mp;
else if (filetype == "dft" ) Filter = GetArgs("DFT" , "dft");
else if (filetype == "diva") Filter = GetArgs("DIVA", "diva", "wav") +
GetArgs("DIVA", true, "diva") + wav;
else if (filetype == "farc") Filter = "FARC Archives (*.farc)|*.farc";
else if (filetype == "json") Filter = GetArgs("JSON", "json");
else if (filetype == "mp" ) Filter = GetArgs("MessagePack", "mp");
else if (filetype == "lit") Filter = GetArgs("LIT" , "lit");
else if (filetype == "str" ) Filter = GetArgs("STR" , "str", "bin", "json", "mp") +
GetArgs("STR", true, "str") + bin + json + mp;
else if (filetype == "vag" ) Filter = GetArgs("VAG" , "vag", "wav") +
GetArgs("VAG", true, "vag") + wav;
using OpenFileDialog ofd = new OpenFileDialog { //InitialDirectory = Application.StartupPath,
Filter = Filter, Multiselect = true, Title = "Choose file(s) to open:" };
if (ofd.ShowDialog() == DialogResult.OK) FileNames = ofd.FileNames;
}
else if (code == 2)
{
string Return = "";
using (OpenFileDialog ofd = new OpenFileDialog { //InitialDirectory = Application.StartupPath,
ValidateNames = false, CheckFileExists = false, Filter = " | ", CheckPathExists = true,
Title = "Choose any file in folder:", FileName = "Folder Selection." })
if (ofd.ShowDialog() == DialogResult.OK) Return = Path.GetDirectoryName(ofd.FileName);
return Return;
}
return "";
}
}
}
+4 -4
View File
@@ -2,14 +2,14 @@
using System.Runtime.InteropServices;
[assembly: AssemblyTitle("PD_Tool")]
[assembly: AssemblyDescription("A simple tool for working with Project Diva A/DT/F/AFT/F2/X/FT files")]
[assembly: AssemblyDescription("A simple tool for working with Project Diva AC/DT/F/AFT/F2/X/FT files")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("")]
[assembly: AssemblyProduct("PD_Tool")]
[assembly: AssemblyCopyright("Copyright korenkonder © 2017-2019")]
[assembly: AssemblyCopyright("korenkonder © 2017-2019")]
[assembly: AssemblyTrademark("")]
[assembly: AssemblyCulture("")]
[assembly: ComVisible(false)]
[assembly: Guid("7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E")]
[assembly: AssemblyVersion("0.4.5.7")]
[assembly: AssemblyFileVersion("0.4.5.7")]
[assembly: AssemblyVersion("0.4.8.1")]
[assembly: AssemblyFileVersion("0.4.8.1")]
+175
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@@ -0,0 +1,175 @@
using System;
using KKdBaseLib;
using KKdMainLib.IO;
using KKdA3DA = KKdMainLib.A3DA;
using KKdFARC = KKdMainLib.FARC;
namespace PD_Tool
{
class A3D
{
public static void Processor(bool json)
{
Console.Title = "A3DA Converter";
Program.Choose(1, "a3da", out string[] fileNames);
if (fileNames.Length < 1) return;
bool mp = false;
foreach (string file in fileNames)
if (file.EndsWith(".mp") || file.EndsWith(".json") || file.EndsWith(".farc")) { mp = true; break; }
Format format = Format.NULL;
string choose = "";
if (mp)
{
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of format to export:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. A3DA [DT/AC/F]");
Program.ConsoleDesign("2. A3DC [DT/AC/F]");
Program.ConsoleDesign("3. A3DA [AFT/FT] ");
Program.ConsoleDesign("4. A3DC [AFT/FT] ");
Program.ConsoleDesign("5. A3DC [F2] ");
Program.ConsoleDesign("6. A3DC [MGF] ");
Program.ConsoleDesign("7. A3DC [X] ");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine();
if (choose == "1") format = Format.DT ;
else if (choose == "2") format = Format.F ;
else if (choose == "3") format = Format.AFT ;
else if (choose == "4") format = Format.AFT ;
else if (choose == "5") format = Format.F2LE;
else if (choose == "6") format = Format.MGF ;
else if (choose == "7") format = Format.X ;
else return;
}
int state;
string filepath, ext;
KKdA3DA a3da;
foreach (string file in fileNames)
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "A3DA Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".farc")
using (KKdFARC farc = new KKdFARC(file))
FARCProcessor(farc, choose, format);
else if (ext == ".a3da")
using (a3da = new KKdA3DA(true))
{
state = a3da.A3DAReader(filepath);
if (state == 1) a3da.MsgPackWriter(filepath, json);
}
else if (ext == ".mp" || ext == ".json")
using (a3da = new KKdA3DA(true))
{
a3da.MsgPackReader(filepath, ext == ".json");
a3da.Data._.CompressF16 = format > Format.AFT && format <
Format.FT ? format == Format.MGF ? 2 : 1 : 0;
a3da.Head.Format = format;
File.WriteAllBytes(filepath + ".a3da", (choose != "1" &&
choose != "3") ? a3da.A3DCWriter() : a3da.A3DAWriter());
}
}
}
private static void FARCProcessor(KKdFARC farc, string choose, Format format)
{
if (!farc.HeaderReader()) return;
if (!farc.HasFiles) return;
KKdList<string> list = KKdList<string>.New;
for (int i = 0; i < farc.Files.Count; i++)
{
string file = farc.Files[i].Name.ToLower();
bool div = false;
for (int i0 = 0; i0 < 159 && !div; i0++)
if (file.Contains("div_" + i0)) div = true;
if (!div && file.EndsWith(".a3da")) list.Add(file);
}
KKdList<string> A3DAlist = KKdList<string>.New;
for (int i = 0; i < farc.Files.Count; i++)
if (farc.Files[i].Name.ToLower().EndsWith(".a3da"))
A3DAlist.Add(farc.Files[i].Name);
byte[] data = null;
if (list.Count == A3DAlist.Count || (format > Format.AFT && format < Format.FT))
{
KKdA3DA a3da;
for (int i = 0; i < A3DAlist.Count; i++)
using (a3da = new KKdA3DA(true))
{
data = farc.FileReader(A3DAlist[i]);
int state = a3da.A3DAReader(data);
if (state == 1)
{
KKdFARC.FARCFile file = farc.Files[i];
a3da.Data._.CompressF16 = format > Format.AFT && format <
Format.FT ? format == Format.MGF ? 2 : 1 : 0;
a3da.Head.Format = format;
file.Data = (choose != "1" && choose != "3") ? a3da.A3DCWriter() : a3da.A3DAWriter();
farc.Files[i] = file;
}
}
farc.Save();
return;
}
KKdA3DA[] a3daArray;
using (KKdList<KKdA3DA> a3daList = KKdList<KKdA3DA>.New)
{
for (int i = 0; i < list.Count; i++)
{
KKdA3DA a3da;
using (a3da = new KKdA3DA(true))
{
data = farc.FileReader(list[i]);
int state = a3da.A3DAReader(data);
if (state == 1) a3daList.Add(a3da);
}
}
a3daArray = a3daList.ToArray();
}
for (int i = 0; i < list.Count; i++)
{
if (a3daArray[i].Data.PlayControl.Div == null) continue;
float Div = a3daArray[i].Data.PlayControl.Div.Value;
KKdA3DA a3da;
for (int i1 = 1; i1 < Div; i1++)
using (a3da = new KKdA3DA(true))
{
string file = Path.GetFileNameWithoutExtension(list[i]) +
"_div_" + i1 + Path.GetExtension(list[i]);
data = farc.FileReader(file);
int state = a3da.A3DAReader(data);
if (state == 1) a3daArray[i].A3DAMerger(ref a3da.Data);
}
a3daArray[i].Data.PlayControl.Div = null;
}
farc.Files.Capacity = list.Count;
for (int i = 0; i < list.Count; i++)
{
KKdFARC.FARCFile file = default;
file.Name = list[i];
a3daArray[i].Data._.CompressF16 = format > Format.AFT && format <
Format.FT ? format == Format.MGF ? 2 : 1 : 0;
a3daArray[i].Head.Format = format;
file.Data = (choose != "1" && choose != "3") ? a3daArray[i].A3DCWriter() : a3daArray[i].A3DAWriter();
farc.Files.Add(file);
}
farc.Save();
return;
}
}
}
+38
View File
@@ -0,0 +1,38 @@
using System;
using KKdMainLib.IO;
using KKdAet = KKdMainLib.Aet.Aet;
namespace PD_Tool
{
public class AET
{
public static void Processor(bool json)
{
Console.Title = "AET Converter";
Program.Choose(1, "bin", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
KKdAet aet;
foreach (string file in fileNames)
using (aet = new KKdAet())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "AET Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".bin")
{
aet. AETReader(filepath);
aet.MsgPackWriter(filepath, json);
}
else if (ext == ".mp" || ext == ".json")
{
aet.MsgPackReader(filepath, ext == ".json");
aet. AETWriter(filepath);
}
}
}
}
}
+29
View File
@@ -0,0 +1,29 @@
using System;
using KKdMainLib.IO;
using KKdMainLib.F2;
namespace PD_Tool
{
public class BLT
{
public static void Processor()
{
Console.Title = "Bloom Converter";
Program.Choose(1, "blt", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
Bloom blt;
foreach (string file in fileNames)
using (blt = new Bloom())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "Bloom Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".blt") { blt.BLTReader(filepath); blt.TXTWriter(filepath); }
}
}
}
}
+29
View File
@@ -0,0 +1,29 @@
using System;
using KKdMainLib.IO;
using KKdMainLib.F2;
namespace PD_Tool
{
public class CCT
{
public static void Processor()
{
Console.Title = "Color Correction Converter";
Program.Choose(1, "cct", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
ColorCorrection cct;
foreach (string file in fileNames)
using (cct = new ColorCorrection())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "Color Correction Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".cct") { cct.CCTReader(filepath); cct.TXTWriter(filepath); }
}
}
}
}
+66
View File
@@ -0,0 +1,66 @@
using System;
using KKdMainLib.IO;
namespace PD_Tool
{
public class DB
{
public static void Processor(bool json)
{
Console.Title = "DataBank Converter";
Program.Choose(1, "databank", out string[] fileNames);
if (fileNames.Length < 1) return;
bool mp = true;
foreach (string file in fileNames)
if (file.EndsWith(".mp" )) { mp = false; break; }
else if (file.EndsWith(".json")) { mp = false; break; }
string choose = "1";
if (mp)
{
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of exporting file:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. Compact");
Program.ConsoleDesign("2. Normal");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine();
}
uint num2 = (uint)DateTime.Now.Subtract(new DateTime(1970, 1, 1)).TotalSeconds;
string[] file_split;
string filepath, ext;
KKdMainLib.DataBank db;
foreach (string file in fileNames)
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
string filename = Path.GetFileNameWithoutExtension(file);
file_split = filename.Split('_');
using (db = new KKdMainLib.DataBank())
{
if (file_split.Length == 5 && ext == ".dat" && mp)
{
filepath = file.Replace(filename + ".dat", "");
Console.Title = "DataBank Converter: " + filename;
db. DBReader(file);
db.MsgPackWriter(filepath + file_split[0] + "_" +
file_split[1] + "_" + file_split[2], json, choose != "2");
}
else if ((ext == ".mp" || ext == ".json") && !mp)
{
Console.Title = "DataBank Converter: " + filename;
db.MsgPackReader(filepath, json);
db. DBWriter(filepath, num2);
}
}
}
}
}
}
+62
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@@ -0,0 +1,62 @@
using System;
using KKdBaseLib;
using KKdMainLib.IO;
using KKdDEX = KKdMainLib.DEX;
namespace PD_Tool
{
public class DEX
{
public static void Processor(bool json)
{
Console.Title = "DEX Converter";
Program.Choose(1, "dex", out string[] fileNames);
if (fileNames.Length < 1) return;
bool mp = true;
bool _json = true;
foreach (string file in fileNames)
if (file.EndsWith(".mp" )) { mp = false; break; }
else if (file.EndsWith(".json")) { _json = false; break; }
Console.Clear();
string choose = "";
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of exporting file:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. F/FT PS3/PS4/PSVita");
Program.ConsoleDesign("2. F2 PS3/PSVita");
Program.ConsoleDesign("3. X PS4/PSVita");
if ( mp && !json) Program.ConsoleDesign("9. MessagePack");
if (_json && json) Program.ConsoleDesign("9. JSON");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine();
Format format = Format.NULL;
if (choose == "1") format = Format.F ;
else if (choose == "2") format = Format.F2LE;
else if (choose == "3") format = Format.X ;
else if (choose == "9" && mp && _json) format = Format.NULL;
else return;
string filepath, ext;
KKdDEX DEX;
foreach (string file in fileNames)
using (DEX = new KKdDEX())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "DEX Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".bin" || ext == ".dex") DEX. DEXReader(filepath, ext );
else DEX.MsgPackReader(filepath, json);
if (format > Format.NULL) DEX. DEXWriter(filepath, format);
else DEX.MsgPackWriter(filepath, json);
}
}
}
}
+29
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@@ -0,0 +1,29 @@
using System;
using KKdMainLib.IO;
using KKdMainLib.F2;
namespace PD_Tool
{
public class DFT
{
public static void Processor()
{
Console.Title = "DOF Converter";
Program.Choose(1, "dft", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
DOF dft;
foreach (string file in fileNames)
using (dft = new DOF())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "DOF Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".dft") { dft.DFTReader(filepath); dft.TXTWriter(filepath); }
}
}
}
}
+31
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@@ -0,0 +1,31 @@
using System;
using System.IO;
using KKdSoundLib;
namespace PD_Tool
{
public class DIV
{
public static void Processor()
{
Console.Title = "DIVA Converter";
Program.Choose(1, "diva", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
DIVA diva;
foreach (string file in fileNames)
{
diva = new DIVA();
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "DIVA Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".diva") diva.DIVAReader(filepath);
else if (ext == ".wav" ) diva.DIVAWriter(filepath);
diva = null;
}
}
}
}
+7 -13
View File
@@ -8,26 +8,20 @@ namespace PD_Tool
public static void Decrypt(string file)
{
Stream reader = File.OpenReader(file);
if (reader.ReadInt64() != 0x454C494641564944)
{
reader.Close();
Encrypt(file);
return;
}
reader.Close();
if (reader.RI64() != 0x454C494641564944) { reader.C(); return; }
reader.C();
System.Console.Title = "DIVAFILE Decrypt: " + Path.GetFileName(file);
file.Decrypt();
}
public static void Encrypt(string file)
{
Stream reader = File.OpenReader(file);
if (reader.ReadInt64() == 0x454C494641564944)
{
reader.Close();
Decrypt(file);
return;
}
if (reader.RI64() == 0x454C494641564944) { reader.C(); return; }
reader.C();
System.Console.Title = "DIVAFILE Encrypt: " + Path.GetFileName(file);
file.Encrypt();
}
}
+92 -30
View File
@@ -1,54 +1,116 @@
using System;
using System.IO;
using KKdMainLib;
using KKdMainLib.DB;
using Aet = KKdMainLib.DB.Aet;
using Auth = KKdMainLib.DB.Auth;
using Spr = KKdMainLib.DB.Spr;
namespace PD_Tool
{
public class DataBase
{
public static void Processor()
public static void Processor(bool json)
{
Console.Title = "DB Converter";
Console.Clear();
Main.ConsoleDesign(true);
Main.ConsoleDesign(" Choose type of DataBase file:");
Main.ConsoleDesign(false);
Main.ConsoleDesign("1. Auth DB Converter");
Main.ConsoleDesign(false);
Main.ConsoleDesign(true);
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of DataBase file:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. Auth DB Converter");
Program.ConsoleDesign("2. AET DB Converter");
Program.ConsoleDesign("3. SPR DB Converter");
Program.ConsoleDesign(false);
Program.ConsoleDesign("R. Return to Main Menu");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
string format = Console.ReadLine();
if (format == "1") AuthDBProcessor();
if (format == "1") AuthDBProcessor(json);
if (format == "2") AETDBProcessor(json);
if (format == "3") SPRDBProcessor(json);
}
public static void AuthDBProcessor()
public static void AuthDBProcessor(bool JSON)
{
Console.Title = "Auth DB Converter";
Auth Auth = new Auth();
Main.Choose(1, "bin", out string[] FileNames);
if (FileNames.Length < 1) return;
string filepath = "";
string ext = "";
Program.Choose(1, "bin", out string[] fileNames);
if (fileNames.Length < 1) return;
foreach (string file in FileNames)
{
Console.Title = "Auth: DB Converter: " + Path.GetFileNameWithoutExtension(file);
Auth = new Auth();
ext = Path.GetExtension(file).ToLower();
filepath = file.Replace(Path.GetExtension(file), "");
string filepath, ext;
Auth auth;
foreach (string file in fileNames)
using (auth = new Auth())
{
Console.Title = "Auth DB Converter: " + Path.GetFileNameWithoutExtension(file);
ext = Path.GetExtension(file).ToLower();
filepath = file.Replace(Path.GetExtension(file), "");
if (ext == ".bin")
{
Auth.BINReader (filepath);
Auth.MsgPackWriter(filepath);
if (ext == ".bin")
{
auth.BINReader (filepath);
auth.MsgPackWriter(filepath, JSON);
}
else if (ext == ".mp" || ext == ".json")
{
auth.MsgPackReader(filepath, ext == ".json");
auth.BINWriter (filepath);
}
}
else if (ext == ".mp")
}
public static void AETDBProcessor(bool json)
{
Console.Title = "AET DB Converter";
Program.Choose(1, "bin", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
Aet aet;
foreach (string file in fileNames)
using (aet = new Aet())
{
Auth.MsgPackReader(filepath);
Auth.BINWriter (filepath);
Console.Title = "AET DB Converter: " + Path.GetFileNameWithoutExtension(file);
ext = Path.GetExtension(file).ToLower();
filepath = file.Replace(Path.GetExtension(file), "");
if (ext == ".bin")
{
aet.BINReader (filepath);
aet.MsgPackWriter(filepath, json);
}
else if (ext == ".mp" || ext == ".json")
{
aet.MsgPackReader(filepath, ext == ".json");
aet.BINWriter (filepath);
}
}
}
public static void SPRDBProcessor(bool json)
{
Console.Title = "SPR DB Converter";
Program.Choose(1, "bin", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
Spr spr;
foreach (string file in fileNames)
using (spr = new Spr())
{
Console.Title = "SPR DB Converter: " + Path.GetFileNameWithoutExtension(file);
ext = Path.GetExtension(file).ToLower();
filepath = file.Replace(Path.GetExtension(file), "");
if (ext == ".bin")
{
spr.BINReader (filepath);
spr.MsgPackWriter(filepath, json);
}
else if (ext == ".mp" || ext == ".json")
{
spr.MsgPackReader(filepath, ext == ".json");
spr.BINWriter (filepath);
}
}
}
}
}
}
+54 -33
View File
@@ -1,53 +1,74 @@
using System;
using System.IO;
using KKdMainLib;
using KKdFARC = KKdMainLib.FARC;
namespace PD_Tool
{
public class FARC
{
public static void Processor(bool Extract)
public static void Processor(bool extract)
{
KKdFARC FARC = new KKdFARC();
Console.Clear();
if (Extract)
if (extract)
{
Console.Title = "FARC Extractor";
Main.Choose(1, "farc", out string[] FileNames);
foreach (string FileName in FileNames)
if (FileName != "" && File.Exists(FileName))
FARC.UnPack(FileName);
Program.Choose(1, "farc", out string[] fileNamesExtract);
foreach (string fileExtract in fileNamesExtract)
if (fileExtract != "" && File.Exists(fileExtract))
{
Console.Title = "FARC Extractor: " + Path.GetFileNameWithoutExtension(fileExtract);
using (KKdFARC farc = new KKdFARC(fileExtract))
farc.UnPack();
}
return;
}
else
string file = Program.Choose(2, "", out string[] fileNames);
Console.Clear();
if (file == null || file == "") return;
Console.Title = "FARC Creator";
using (KKdFARC farc = new KKdFARC(file, true))
{
string file = Main.Choose(2, "", out string[] FileNames);
Console.Clear();
Console.Title = "FARC Creator";
if (file != "")
Console.Title = "FARC Creator: " + Path.GetDirectoryName(file);
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of created FARC:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. FArc [DT/DT2/DTex/F/F2/X]");
Program.ConsoleDesign("2. FArC [DT/DT2/DTex/F/F2/X] (Compressed)");
Program.ConsoleDesign("3. FARC [F/F2/X]");
Program.ConsoleDesign(false);
Program.ConsoleDesign("R. Return to Main Menu");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
Console.WriteLine("Choosed folder: {0}", file);
Console.WriteLine();
string choose = Console.ReadLine().ToUpper();
if (choose == "1") farc.Signature = KKdFARC.Farc.FArc;
else if (choose == "3" || choose == "4")
{
Main.ConsoleDesign(true);
Main.ConsoleDesign(" Choose type of created FARC:");
Main.ConsoleDesign(false);
Main.ConsoleDesign("1. FArc [DT/DT2nd/DTex/F/F2nd/X]");
Main.ConsoleDesign("2. FArC [DT/DT2nd/DTex/F/F2nd/X] (Compressed)");
Main.ConsoleDesign("3. FARC [F/F2nd/X] (Compressed)");
Main.ConsoleDesign("4. FARC [FT] (Compressed)");
Main.ConsoleDesign(false);
Main.ConsoleDesign("Note: Creating FT FARCs currently not supported.");
Main.ConsoleDesign(false);
Main.ConsoleDesign(true);
Console.WriteLine();
Console.WriteLine("Choosed folder: {0}", file);
Console.WriteLine();
int.TryParse(Console.ReadLine(), out int type);
if (type == 1) FARC.Signature = KKdFARC.Farc.FArc;
else if (type == 3) FARC.Signature = KKdFARC.Farc.FARC;
else FARC.Signature = KKdFARC.Farc.FArC;
farc.Signature = KKdFARC.Farc.FARC;
Console.Clear();
Console.Title = "FARC Creator - Directory: " + Path.GetDirectoryName(file);
FARC.Pack(file);
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of FARC:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. FARC");
Program.ConsoleDesign("2. FARC (Compressed)");
Program.ConsoleDesign("3. FARC (Encrypted)");
Program.ConsoleDesign("4. FARC (Compressed & Encrypted)");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine();
if (choose == "2" || choose == "4") farc.FARCType |= KKdFARC.Type.GZip;
if (choose == "3" || choose == "4") farc.FARCType |= KKdFARC.Type.ECB ;
}
else if (choose == "R") return;
else farc.Signature = KKdFARC.Farc.FArC;
farc.Pack(farc.Signature);
}
}
}
+29
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@@ -0,0 +1,29 @@
using System;
using KKdMainLib.IO;
using KKdMainLib.F2;
namespace PD_Tool
{
public class LIT
{
public static void Processor()
{
Console.Title = "Light Converter";
Program.Choose(1, "lit", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
Light lit;
foreach (string file in fileNames)
using (lit = new Light())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "Light Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".lit") { lit.LITReader(filepath); lit.TXTWriter(filepath); }
}
}
}
}
+39
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@@ -0,0 +1,39 @@
using System;
using KKdMainLib;
using KKdMainLib.IO;
namespace PD_Tool
{
public class MOT
{
public static void Processor(bool json)
{
Console.Title = "MOT Converter";
Program.Choose(1, "bin", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
Mot mot;
foreach (string file in fileNames)
{
mot = new Mot();
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "MOT Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".bin")
{
mot. MOTReader(filepath);
mot.MsgPackWriter(filepath, json);
}
else if (ext == ".mp" || ext == ".json")
{
mot.MsgPackReader(filepath, ext == ".json");
mot. MOTWriter(filepath);
}
mot = new Mot();
}
}
}
}
+38
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@@ -0,0 +1,38 @@
using System;
using KKdMainLib.IO;
using KKdSTR = KKdMainLib.STR;
namespace PD_Tool
{
public class STR
{
public static void Processor(bool json)
{
Console.Title = "STR Converter";
Program.Choose(1, "str", out string[] fileNames);
string filepath, ext;
KKdSTR str;
foreach (string file in fileNames)
using (str = new KKdSTR())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "PD_Tool: Converter Tools: STR Reader: " +
Path.GetFileNameWithoutExtension(file);
if (ext == ".str" || ext == ".bin")
{
str.STRReader (filepath, ext);
str.MsgPackWriter(filepath, json);
}
else if (ext == ".json" || ext == ".mp")
{
str.MsgPackReader(filepath, ext == ".json");
str.STRWriter (filepath);
}
}
}
}
}
-82
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@@ -1,82 +0,0 @@
using System;
using KKdMainLib;
using KKdMainLib.IO;
using MSIO = System.IO;
using KKdA3DA = KKdMainLib.A3DA.A3DA;
namespace PD_Tool.Tools
{
class A3D
{
public static void Processor()
{
Console.Title = "A3DA Converter";
Main.Choose(1, "a3da", out string[] FileNames);
if (FileNames.Length < 1) return;
string filepath = "";
string ext = "";
bool MP = true;
foreach (string file in FileNames)
if (file.EndsWith(".mp" )) { MP = false; break; }
Main.Format Format = Main.Format.NULL;
if (!MP)
{
Console.Clear();
Main.ConsoleDesign(true);
Main.ConsoleDesign(" Choose type of format to export:");
Main.ConsoleDesign(false);
Main.ConsoleDesign("1. DT PS3");
Main.ConsoleDesign("2. F PS3/PSV");
Main.ConsoleDesign("3. FT PS4");
Main.ConsoleDesign("4. F2nd PS3/PSV");
Main.ConsoleDesign("5. MGF PSV");
Main.ConsoleDesign("6. X PS4/PSV");
Main.ConsoleDesign(false);
Main.ConsoleDesign(true);
Console.WriteLine();
string format = Console.ReadLine();
if (format == "1") Format = Main.Format.DT ;
else if (format == "2") Format = Main.Format.F ;
else if (format == "3") Format = Main.Format.FT ;
else if (format == "4") Format = Main.Format.F2LE;
else if (format == "5") Format = Main.Format.MGF ;
else if (format == "6") Format = Main.Format.X ;
else return;
}
KKdA3DA A;
foreach (string file in FileNames)
try
{
ext = MSIO.Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "A3DA Converter: " +
MSIO.Path.GetFileNameWithoutExtension(file);
A = new KKdA3DA();
if (ext == ".a3da")
{
A.A3DAReader (filepath);
A.MsgPackWriter(filepath);
}
else if (ext == ".mp" )
{
A.MsgPackReader(filepath);
A.IO = File.OpenWriter(filepath + ".a3da", true);
if (A.Data.Header.Format < Main.Format.F2LE)
A.Data._.CompressF16 = Format == Main.Format.MGF ? 2 : 1;
A.Data.Header.Format = Format;
if (A.Data.Header.Format > Main.Format.DT && A.Data.Header.Format != Main.Format.FT)
A.A3DCWriter(filepath);
else
A.A3DAWriter();
}
}
catch (Exception e)
{ Console.WriteLine(e); }
}
}
}
-61
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@@ -1,61 +0,0 @@
using System;
using KKdMainLib;
using MSIO = System.IO;
using KKdDEX = KKdMainLib.DEX;
namespace PD_Tool.Tools
{
public class DEX
{
public static void Processor()
{
Console.Title = "DEX Converter";
KKdDEX DEX;
Main.Choose(1, "dex", out string[] FileNames);
if (FileNames.Length < 1) return;
string filepath = "";
string ext = "";
bool MP = true;
foreach (string file in FileNames)
if (file.EndsWith(".mp" ))
{ MP = false; break; }
Console.Clear();
string format = "";
Main.ConsoleDesign(true);
Main.ConsoleDesign(" Choose type of exporting file:");
Main.ConsoleDesign(false);
Main.ConsoleDesign("1. F/FT PS3/PS4/PSVita");
Main.ConsoleDesign("2. F2nd PS3/PSVita");
Main.ConsoleDesign("3. X PS4/PSVita");
if (MP) Main.ConsoleDesign("9. MessagePack");
Main.ConsoleDesign(false);
Main.ConsoleDesign(true);
Console.WriteLine();
format = Console.ReadLine();
Main.Format Format = Main.Format.NULL;
if (format == "1") Format = Main.Format.F ;
else if (format == "2") Format = Main.Format.F2LE;
else if (format == "3") Format = Main.Format.X ;
else if (format == "9" && MP ) Format = Main.Format.NULL;
else return;
foreach (string file in FileNames)
{
DEX = new KKdDEX();
ext = MSIO.Path.GetExtension(file).ToLower();
filepath = file.Replace(MSIO.Path.GetExtension(file), "");
if (ext == ".bin" || ext == ".dex")
DEX.DEXReader(filepath, ext);
else DEX.MsgPackReader(filepath);
if (Format > Main.Format.NULL)
DEX.DEXWriter(filepath, Format);
else DEX.MsgPackWriter(filepath);
}
}
}
}
-38
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@@ -1,38 +0,0 @@
using System;
using System.IO;
using KKdMainLib;
using KKdSoundLib;
namespace PD_Tool.Tools
{
public class DIV
{
public static void Processor()
{
Console.Title = "DIVA Converter";
Main.Choose(1, "diva", out string[] FileNames);
DIVA DIVA;
foreach (string file in FileNames)
try
{
string filepath = file.Replace(Path.GetExtension(file), "");
string ext = Path.GetExtension(file);
Console.Title = "DIVA Converter: " + Path.GetFileNameWithoutExtension(file);
DIVA = new DIVA(filepath);
switch (ext.ToLower())
{
case ".diva":
DIVA.DIVAReader();
break;
case ".wav":
DIVA.DIVAWriter();
break;
}
GC.Collect();
}
catch (Exception e) { Console.WriteLine(e.Message); }
}
}
}
-39
View File
@@ -1,39 +0,0 @@
using System;
using KKdMainLib;
using MSIO = System.IO;
using KKdSTR = KKdMainLib.STR;
namespace PD_Tool.Tools
{
public class STR
{
public static void Processor()
{
Console.Title = "STR Converter";
Main.Choose(1, "str", out string[] FileNames);
KKdSTR Data;
string filepath = "";
string ext = "";
foreach (string file in FileNames)
{
filepath = file.Replace(MSIO.Path.GetExtension(file), "");
ext = MSIO.Path.GetExtension(file).ToLower();
Data = new KKdSTR();
Console.Title = "PD_Tool: Converter Tools: STR Reader: " +
MSIO.Path.GetFileNameWithoutExtension(file);
if (ext == ".str" || ext == ".bin")
{
Data.STRReader (filepath, ext);
Data.MsgPackWriter(filepath);
}
else if (ext == ".mp")
{
Data.MsgPackReader(filepath);
Data.STRWriter (filepath);
}
}
}
}
}
-59
View File
@@ -1,59 +0,0 @@
using System;
using System.IO;
using KKdMainLib;
using KKdVAG = KKdSoundLib.VAG;
namespace PD_Tool.Tools
{
public class VAG
{
public static void Processor()
{
Console.Title = "VAG Converter";
Main.Choose(1, "vag", out string[] FileNames);
bool InputWAV = false;
foreach (string file in FileNames)
if (Path.GetExtension(file) == ".wav")
InputWAV = true;
bool HE_VAG = true;
if (InputWAV)
{
Console.Clear();
Main.ConsoleDesign(true);
Main.ConsoleDesign(" Choose type of format to export:");
Main.ConsoleDesign(false);
Main.ConsoleDesign("1. VAG (Downmix to 1 ch)");
Main.ConsoleDesign("2. HEVAG");
Main.ConsoleDesign(false);
Main.ConsoleDesign(true);
Console.WriteLine();
string format = Console.ReadLine();
HE_VAG = format == "2";
}
KKdVAG VAG;
foreach (string file in FileNames)
try
{
string ext = Path.GetExtension(file);
string filepath = file.Remove(file.Length - ext.Length);
Console.Title = "VAG Converter: " +
Path.GetFileNameWithoutExtension(file);
VAG = new KKdVAG() { file = filepath };
switch (ext.ToLower())
{
case ".vag":
VAG.VAGReader();
VAG.WAVWriter();
break;
case ".wav":
VAG.WAVReader();
VAG.VAGWriter(HE_VAG);
break;
}
}
catch (Exception e) { Console.WriteLine(e.Message); }
}
}
}
+54
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@@ -0,0 +1,54 @@
using System;
using System.IO;
using KKdVAG = KKdSoundLib.VAG;
namespace PD_Tool
{
public class VAG
{
public static void Processor()
{
Console.Title = "VAG Converter";
Program.Choose(1, "vag", out string[] fileNames);
if (fileNames.Length < 1) return;
bool wav = false;
foreach (string file in fileNames)
if (Path.GetExtension(file) == ".wav")
wav = true;
string choose = "";
if (wav)
{
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of format to export:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. VAG (Downmix to 1 ch)");
Program.ConsoleDesign("2. HEVAG [Fastest]");
Program.ConsoleDesign("3. HEVAG [Fast]");
Program.ConsoleDesign("4. HEVAG [Medium]");
Program.ConsoleDesign("5. HEVAG [Slow]");
Program.ConsoleDesign("6. HEVAG [Slowest]");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine();
}
string filepath, ext;
KKdVAG VAG;
foreach (string file in fileNames)
using (VAG = new KKdVAG())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "VAG Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".vag") { VAG.VAGReader(filepath); VAG.WAVWriter(filepath ); }
else if (ext == ".wav") { VAG.WAVReader(filepath); VAG.VAGWriter(filepath, choose); }
}
}
}
}
+4 -1
View File
@@ -8,11 +8,14 @@ A simple tool for working with Project Diva DT/FT/F/F2/X files
- `FARC Extract/Create`
- `DIVAFILE Encrypt/Decrypt`
- `DB_Tools`
- `Aet DB Converter`
- `Auth DB Converter`
- `Spr DB Converter`
- `Converting Tools`
- `A3DA Converter`
- `DataBank Converter`
- `DEX Converter`
- `DIVA Converter`
- `STR Converter`
- `VAG Converter`