mirror of
https://github.com/KillzXGaming/Switch-Toolbox
synced 2024-12-21 02:13:08 +00:00
676 lines
26 KiB
C#
676 lines
26 KiB
C#
using System;
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using System.Collections.Generic;
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using System.Linq;
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using System.Drawing;
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using System.Text;
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using Switch_Toolbox.Library.IO;
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using Switch_Toolbox.Library;
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using System.IO;
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using Syroot.BinaryData;
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using System.Windows.Forms;
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using Switch_Toolbox.Library.Forms;
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using Bfres.Structs;
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namespace FirstPlugin
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{
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public class PTCL_WiiU
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{
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public class Header
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{
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public List<EmitterSet> emitterSets = new List<EmitterSet>();
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public List<TextureInfo> Textures = new List<TextureInfo>();
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public bool IsSPBD = false;
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public uint EffectNameTableOffset;
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public uint TextureBlockTableOffset;
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public uint TextureBlockTableSize;
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public uint ShaderGtxTableOffset;
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public uint ShaderGtxTableSize;
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public void Read(FileReader reader, PTCL pctl)
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{
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uint Position = (uint)reader.Position; //Offsets are relative to this
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reader.ByteOrder = Syroot.BinaryData.ByteOrder.BigEndian;
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string Signature = reader.ReadString(4, Encoding.ASCII);
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if (Signature == "SPBD")
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IsSPBD = true;
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uint Version = reader.ReadUInt32();
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uint EmitterCount = reader.ReadUInt32();
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uint Padding = reader.ReadUInt32();
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EffectNameTableOffset = reader.ReadUInt32();
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TextureBlockTableOffset = reader.ReadUInt32();
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TextureBlockTableSize = reader.ReadUInt32();
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ShaderGtxTableOffset = reader.ReadUInt32();
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ShaderGtxTableSize = reader.ReadUInt32();
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uint KeyAnimationTableOffset = reader.ReadUInt32();
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uint KeyAnimationTableSize = reader.ReadUInt32();
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uint PrimativeTableOffset = reader.ReadUInt32();
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uint PrimativeTableSize = reader.ReadUInt32();
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uint ShaderParamTableOffset = reader.ReadUInt32();
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uint ShaderParamTableSize = reader.ReadUInt32();
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var groupEmitterSets = new TreeNode("Emitter Sets");
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var textureFolder = new TreeNode("Textures");
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pctl.Nodes.Add(textureFolder);
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pctl.Nodes.Add(groupEmitterSets);
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if (IsSPBD)
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reader.Seek(0x40, SeekOrigin.Begin);
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else
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reader.Seek(72, SeekOrigin.Begin);
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for (int i = 0; i < EmitterCount; i++)
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{
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EmitterSet emitterSet = new EmitterSet();
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emitterSet.Read(reader, this);
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emitterSets.Add(emitterSet);
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groupEmitterSets.Nodes.Add(emitterSet);
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}
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int index = 0;
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foreach (var tex in Textures)
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{
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tex.Text = $"Texture{index++}";
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textureFolder.Nodes.Add(tex);
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}
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reader.Dispose();
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reader.Close();
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}
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public void Write(FileWriter writer, PTCL ptcl)
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{
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writer.ByteOrder = ByteOrder.BigEndian;
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writer.Write(ptcl.data.ToArray());
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foreach (TextureInfo tex in ptcl.headerU.Textures)
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{
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//write texture blocks. Some slots are empty so check if it exists
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tex.Write(writer, this);
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}
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foreach (EmitterSet emitterSets in emitterSets)
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{
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foreach (EmitterU emitter in emitterSets.Nodes)
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{
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writer.Seek(((EmitterU)emitter).ColorPosition, SeekOrigin.Begin);
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foreach (var color0 in emitter.Color0Array)
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{
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writer.Write(color0.R);
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writer.Write(color0.G);
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writer.Write(color0.B);
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writer.Write(color0.A);
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}
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foreach (var color1 in emitter.Color1Array)
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{
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writer.Write(color1.R);
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writer.Write(color1.G);
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writer.Write(color1.B);
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writer.Write(color1.A);
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}
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}
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}
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writer.Flush();
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writer.Close();
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writer.Dispose();
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}
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}
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public class EmitterSet : TreeNodeCustom
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{
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public void Read(FileReader reader, Header header)
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{
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uint NameOffset = 0;
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uint EmitterCount = 0;
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uint EmitterTableOffset = 0;
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if (header.IsSPBD)
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{
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uint Description = reader.ReadUInt32();
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uint Unknown = reader.ReadUInt32();
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NameOffset = reader.ReadUInt32();
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uint NamePointer = reader.ReadUInt32();
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EmitterCount = reader.ReadUInt32();
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EmitterTableOffset = reader.ReadUInt32();
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uint Unknown2 = reader.ReadUInt32();
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}
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else
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{
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uint padding = reader.ReadUInt32();
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uint padding2 = reader.ReadUInt32();
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NameOffset = reader.ReadUInt32();
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uint padding3 = reader.ReadUInt32();
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EmitterCount = reader.ReadUInt32();
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EmitterTableOffset = reader.ReadUInt32();
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uint padding4 = reader.ReadUInt32();
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}
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using (reader.TemporarySeek(header.EffectNameTableOffset + NameOffset, SeekOrigin.Begin))
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{
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Text = reader.ReadString(BinaryStringFormat.ZeroTerminated);
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}
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long pos = reader.Position;
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reader.Seek(EmitterTableOffset, SeekOrigin.Begin);
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for (int i = 0; i < EmitterCount; i++)
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{
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EmitterTable table = new EmitterTable();
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table.Read(reader, header);
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Nodes.Add(table.emitter);
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}
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reader.Seek(pos, SeekOrigin.Begin);
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}
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public void Write(FileWriter writer)
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{
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}
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}
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public class EmitterTable
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{
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public EmitterU emitter;
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public uint EmitterOffset;
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public void Read(FileReader reader, Header header)
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{
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if (header.IsSPBD)
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{
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EmitterOffset = reader.ReadUInt32();
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uint padding = reader.ReadUInt32();
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}
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else
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{
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EmitterOffset = reader.ReadUInt32();
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uint padding = reader.ReadUInt32();
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uint padding2 = reader.ReadUInt32();
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uint padding3 = reader.ReadUInt32();
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}
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long pos = reader.Position;
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reader.Seek(EmitterOffset, SeekOrigin.Begin);
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emitter = new EmitterU();
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emitter.Read(reader, header);
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reader.Seek(pos, SeekOrigin.Begin);
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}
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public void Write(FileWriter writer)
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{
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}
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}
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public class EmitterU : PTCL.Emitter
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{
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public long ColorPosition;
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public override void OnClick(TreeView treeview)
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{
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EmitterEditor editor = (EmitterEditor)LibraryGUI.Instance.GetActiveContent(typeof(EmitterEditor));
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if (editor == null)
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{
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editor = new EmitterEditor();
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LibraryGUI.Instance.LoadEditor(editor);
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}
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editor.Text = Text;
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editor.Dock = DockStyle.Fill;
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editor.LoadEmitter(this);
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}
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public void Read(FileReader reader, Header header)
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{
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long pos = reader.Position;
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reader.Seek(56);
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uint NameOffset = reader.ReadUInt32();
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uint padding = reader.ReadUInt32();
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if (NameOffset != PTCL.NullOffset)
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{
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using (reader.TemporarySeek(header.EffectNameTableOffset + NameOffset, SeekOrigin.Begin))
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{
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Text = reader.ReadString(BinaryStringFormat.ZeroTerminated);
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}
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}
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uint TextureAmount = 3;
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if (header.IsSPBD)
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TextureAmount = 2;
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for (int i = 0; i < TextureAmount; i++) //Max of 3 or 2 textures depending on version. Seems to fill in texture info even if unused
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{
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TextureInfo textureInfo = new TextureInfo();
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textureInfo.Read(reader, header, Text);
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if (!textureInfo.IsEmpty())
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{
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DrawableTex.Add(textureInfo);
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bool HasImage = header.Textures.Any(item => item.DataPos == textureInfo.DataPos);
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if (!HasImage)
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{
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header.Textures.Add(textureInfo);
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}
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}
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}
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if (header.IsSPBD)
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reader.Seek(pos + 1358, SeekOrigin.Begin);
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else
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reader.Seek(pos + 1616, SeekOrigin.Begin);
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ColorPosition = reader.Position;
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for (int i = 0; i < 8; i++)
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{
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ColorData clr = new ColorData();
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clr.R = reader.ReadSingle();
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clr.G = reader.ReadSingle();
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clr.B = reader.ReadSingle();
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clr.A = reader.ReadSingle();
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Color0Array[i] = clr;
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int red = Utils.FloatToIntClamp(clr.R);
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int green = Utils.FloatToIntClamp(clr.G);
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int blue = Utils.FloatToIntClamp(clr.B);
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int alpha = Utils.FloatToIntClamp(clr.A);
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// Console.WriteLine($"Color0 {i} R {R} G {G} B {B} A {A}");
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// Console.WriteLine($"Color0 {i} R {red} G {green} B {blue} A {alpha}");
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Color0s[i] = Color.FromArgb(alpha, red, green, blue);
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}
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for (int i = 0; i < 8; i++)
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{
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ColorData clr = new ColorData();
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clr.R = reader.ReadSingle();
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clr.G = reader.ReadSingle();
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clr.B = reader.ReadSingle();
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clr.A = reader.ReadSingle();
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Color1Array[i] = clr;
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int red = Utils.FloatToIntClamp(clr.R);
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int green = Utils.FloatToIntClamp(clr.G);
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int blue = Utils.FloatToIntClamp(clr.B);
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int alpha = Utils.FloatToIntClamp(clr.A);
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// Console.WriteLine($"Color1 {i} R {R} G {G} B {B} A {A}");
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// Console.WriteLine($"Color1 {i} R {red} G {green} B {blue} A {alpha}");
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Color1s[i] = Color.FromArgb(alpha, red, green, blue);
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}
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}
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public void Write(FileWriter writer)
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{
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}
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}
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public class TextureInfo : STGenericTexture
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{
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public const uint Alignment = 8192;
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public TextureInfo()
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{
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ImageKey = "Texture";
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SelectedImageKey = "Texture";
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}
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public override void OnClick(TreeView treeView)
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{
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UpdateEditor();
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}
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public override string ExportFilter => FileFilters.GTX;
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public override string ReplaceFilter => FileFilters.GTX;
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public override void Export(string FileName)
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{
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Export(FileName, false, false, 0, 0);
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}
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public override void Replace(string FileName)
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{
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int size = data.Length;
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FTEX ftex = new FTEX();
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ftex.ReplaceTexture(FileName, MipCount, SupportedFormats, true, true, true, Format);
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if (ftex.texture != null)
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{
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byte[] ImageData = ftex.texture.Data;
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if (ftex.texture.MipData != null)
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ImageData = Utils.CombineByteArray(ftex.texture.Data, ftex.texture.MipData);
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// if (ImageData.Length != size)
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// MessageBox.Show($"Image size does not match! Make sure mip map count, format, height and width are all the same! Original Size {size} Import {ImageData.Length}", );
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Swizzle = (byte)ftex.texture.Swizzle;
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byte[] NewData = new byte[size];
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Array.Copy(ImageData, 0, NewData, 0, size);
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data = NewData;
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UpdateEditor();
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}
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}
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public byte[] AlignData(byte[] data)
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{
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using (var mem = new MemoryStream(data))
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{
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using (var writer = new FileWriter(mem))
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{
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writer.Write(data);
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writer.Align((int)Alignment);
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return mem.ToArray();
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}
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}
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}
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public void UpdateEditor()
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{
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ImageEditorBase editor = (ImageEditorBase)LibraryGUI.Instance.GetActiveContent(typeof(ImageEditorBase));
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if (editor == null)
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{
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editor = new ImageEditorBase();
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editor.Dock = DockStyle.Fill;
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LibraryGUI.Instance.LoadEditor(editor);
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}
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editor.Text = Text;
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editor.LoadProperties(GenericProperties);
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editor.LoadImage(this);
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}
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public override TEX_FORMAT[] SupportedFormats
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{
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get
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{
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return new TEX_FORMAT[]
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{
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TEX_FORMAT.BC1_UNORM,
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TEX_FORMAT.BC1_UNORM_SRGB,
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TEX_FORMAT.BC2_UNORM,
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TEX_FORMAT.BC2_UNORM_SRGB,
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TEX_FORMAT.BC3_UNORM,
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TEX_FORMAT.BC3_UNORM_SRGB,
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TEX_FORMAT.BC4_UNORM,
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TEX_FORMAT.BC4_SNORM,
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TEX_FORMAT.BC5_UNORM,
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TEX_FORMAT.BC5_SNORM,
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TEX_FORMAT.B5G5R5A1_UNORM,
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TEX_FORMAT.B5G6R5_UNORM,
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TEX_FORMAT.B8G8R8A8_UNORM_SRGB,
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TEX_FORMAT.B8G8R8A8_UNORM,
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TEX_FORMAT.R10G10B10A2_UNORM,
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TEX_FORMAT.R16_UNORM,
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TEX_FORMAT.B4G4R4A4_UNORM,
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TEX_FORMAT.B5_G5_R5_A1_UNORM,
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TEX_FORMAT.R8G8B8A8_UNORM_SRGB,
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TEX_FORMAT.R8G8B8A8_UNORM,
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TEX_FORMAT.R8_UNORM,
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TEX_FORMAT.R8G8_UNORM,
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TEX_FORMAT.R32G8X24_FLOAT,
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};
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}
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}
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public override bool CanEdit { get; set; } = false;
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public enum SurfaceFormat
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{
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INVALID = 0x0,
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TCS_R8_G8_B8_A8 = 2,
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T_BC1_UNORM = 3,
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T_BC1_SRGB = 4,
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T_BC2_UNORM = 5,
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T_BC2_SRGB = 6,
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T_BC3_UNORM = 7,
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T_BC3_SRGB = 8,
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T_BC4_UNORM = 9,
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T_BC4_SNORM = 10,
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T_BC5_UNORM = 11,
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T_BC5_SNORM = 12,
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TC_R8_UNORM = 13,
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TC_R8_G8_UNORM = 14,
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TCS_R8_G8_B8_A8_UNORM = 15,
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TCS_R5_G6_B5_UNORM = 25,
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};
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public uint TileMode;
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public uint Swizzle;
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public byte WrapMode;
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public byte[] CompSel;
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public uint ImageSize;
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public uint ImageOffset;
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public SurfaceFormat SurfFormat;
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public byte[] data;
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public uint DataPos;
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public bool IsEmpty()
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{
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if (Width == 0 || Height == 0 || SurfFormat == 0)
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return true;
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else
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return false;
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}
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public void Read(FileReader reader, Header header, string EmitterName)
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{
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CanReplace = true;
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CanRename = false;
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Width = reader.ReadUInt16();
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Height = reader.ReadUInt16();
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TileMode = reader.ReadUInt32();
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Swizzle = reader.ReadUInt32();
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if (header.IsSPBD)
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{
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uint Alignment = reader.ReadUInt32();
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uint Pitch = reader.ReadUInt32();
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WrapMode = reader.ReadByte(); //11 = repeat, 22 = mirror
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byte unk = reader.ReadByte();
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byte unk2 = reader.ReadByte();
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byte unk3 = reader.ReadByte();
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uint mipCount = reader.ReadUInt32();
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CompSel = reader.ReadBytes(4);
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uint[] MipOffsets = reader.ReadUInt32s(13);
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uint enableMipLevel = reader.ReadUInt32();
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uint mipBias = reader.ReadUInt32();
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uint originalDataFormat = reader.ReadUInt32();
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uint originalDataPos = reader.ReadUInt32();
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uint originalDataSize = reader.ReadUInt32();
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SurfFormat = reader.ReadEnum<SurfaceFormat>(false);
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ImageSize = reader.ReadUInt32();
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DataPos = reader.ReadUInt32();
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}
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else
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{
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WrapMode = reader.ReadByte(); //11 = repeat, 22 = mirror
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byte unk = reader.ReadByte();
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Depth = reader.ReadByte();
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byte unk1 = reader.ReadByte();
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uint mipCount = reader.ReadUInt32();
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if (mipCount < 14)
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MipCount = mipCount;
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CompSel = reader.ReadBytes(4);
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uint enableMipLevel = reader.ReadUInt32();
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uint mipBias = reader.ReadUInt32();
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uint originalDataFormat = reader.ReadUInt32();
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uint originalDataPos = reader.ReadUInt32();
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uint originalDataSize = reader.ReadUInt32();
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SurfFormat = reader.ReadEnum<SurfaceFormat>(false);
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ImageSize = reader.ReadUInt32();
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DataPos = reader.ReadUInt32();
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}
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RedChannel = SetChannel(CompSel[0]);
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GreenChannel = SetChannel(CompSel[1]);
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BlueChannel = SetChannel(CompSel[2]);
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AlphaChannel = SetChannel(CompSel[3]);
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ArrayCount = 1;
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Depth = 1;
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if (Width != 0 && Height != 0 && SurfFormat != 0)
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{
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using (reader.TemporarySeek(header.TextureBlockTableOffset + DataPos, SeekOrigin.Begin))
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{
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data = reader.ReadBytes((int)ImageSize);
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}
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}
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if (data != null && data.Length > 0)
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{
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ConvertFormat();
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}
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reader.Seek(164, SeekOrigin.Current);
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}
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private STChannelType SetChannel(int comp)
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{
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if (comp == 0) return STChannelType.Red;
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else if (comp == 1) return STChannelType.Green;
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else if (comp == 2) return STChannelType.Blue;
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else if (comp == 3) return STChannelType.Alpha;
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else if (comp == 4) return STChannelType.Zero;
|
|
else return STChannelType.One;
|
|
}
|
|
|
|
public void Write(FileWriter writer, Header header)
|
|
{
|
|
if (data != null && data.Length > 0)
|
|
{
|
|
using (writer.TemporarySeek(header.TextureBlockTableOffset + DataPos, SeekOrigin.Begin))
|
|
{
|
|
writer.Write(data);
|
|
}
|
|
}
|
|
}
|
|
|
|
public override void SetImageData(Bitmap bitmap, int ArrayLevel)
|
|
{
|
|
throw new NotImplementedException("Cannot set image data! Operation not implemented!");
|
|
}
|
|
|
|
uint GX2Format = 0;
|
|
|
|
private void ConvertFormat()
|
|
{
|
|
switch (SurfFormat)
|
|
{
|
|
case SurfaceFormat.T_BC1_UNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC1_UNORM;
|
|
Format = TEX_FORMAT.BC1_UNORM;
|
|
break;
|
|
case SurfaceFormat.T_BC1_SRGB:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC1_SRGB;
|
|
Format = TEX_FORMAT.BC1_UNORM_SRGB;
|
|
break;
|
|
case SurfaceFormat.T_BC2_UNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC2_UNORM;
|
|
Format = TEX_FORMAT.BC2_UNORM;
|
|
break;
|
|
case SurfaceFormat.T_BC2_SRGB:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC2_SRGB;
|
|
Format = TEX_FORMAT.BC2_UNORM_SRGB;
|
|
break;
|
|
case SurfaceFormat.T_BC3_UNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC3_UNORM;
|
|
Format = TEX_FORMAT.BC3_UNORM;
|
|
break;
|
|
case SurfaceFormat.T_BC3_SRGB:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC3_SRGB;
|
|
Format = TEX_FORMAT.BC3_UNORM_SRGB;
|
|
break;
|
|
case SurfaceFormat.T_BC4_UNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC4_UNORM;
|
|
Format = TEX_FORMAT.BC4_UNORM;
|
|
break;
|
|
case SurfaceFormat.T_BC4_SNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC4_SNORM;
|
|
Format = TEX_FORMAT.BC4_SNORM;
|
|
break;
|
|
case SurfaceFormat.T_BC5_UNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC5_UNORM;
|
|
Format = TEX_FORMAT.BC5_UNORM;
|
|
break;
|
|
case SurfaceFormat.T_BC5_SNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.T_BC5_SNORM;
|
|
Format = TEX_FORMAT.BC5_SNORM;
|
|
break;
|
|
case SurfaceFormat.TC_R8_G8_UNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.TC_R8_G8_UNORM;
|
|
Format = TEX_FORMAT.R8G8_UNORM;
|
|
break;
|
|
case SurfaceFormat.TCS_R8_G8_B8_A8_UNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.TCS_R8_G8_B8_A8_UNORM;
|
|
Format = TEX_FORMAT.R8G8B8A8_UNORM;
|
|
break;
|
|
case SurfaceFormat.TCS_R8_G8_B8_A8:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.TCS_R8_G8_B8_A8_UNORM;
|
|
Format = TEX_FORMAT.R8G8B8A8_UNORM;
|
|
break;
|
|
case SurfaceFormat.TC_R8_UNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.TC_R8_UNORM;
|
|
Format = TEX_FORMAT.R8_UNORM;
|
|
break;
|
|
case SurfaceFormat.TCS_R5_G6_B5_UNORM:
|
|
GX2Format = (uint)GX2.GX2SurfaceFormat.TCS_R5_G6_B5_UNORM;
|
|
Format = TEX_FORMAT.B5G6R5_UNORM;
|
|
break;
|
|
default:
|
|
throw new Exception("Format unsupported! " + SurfFormat);
|
|
}
|
|
}
|
|
|
|
public override byte[] GetImageData(int ArrayLevel = 0, int MipLevel = 0)
|
|
{
|
|
int swizzle = (int)Swizzle;
|
|
int pitch = (int)0;
|
|
uint bpp = GX2.surfaceGetBitsPerPixel(GX2Format) >> 3;
|
|
|
|
GX2.GX2Surface surf = new GX2.GX2Surface();
|
|
surf.bpp = bpp;
|
|
surf.height = Height;
|
|
surf.width = Width;
|
|
surf.aa = (uint)0;
|
|
surf.alignment = Alignment;
|
|
surf.depth = Depth;
|
|
surf.dim = 0x1;
|
|
surf.format = GX2Format;
|
|
surf.use = 0x1;
|
|
surf.pitch = 0;
|
|
surf.data = data;
|
|
surf.numMips = MipCount;
|
|
surf.mipOffset = new uint[MipCount];
|
|
surf.mipData = null;
|
|
surf.tileMode = TileMode;
|
|
surf.swizzle = Swizzle;
|
|
surf.imageSize = ImageSize;
|
|
|
|
// GX2.GenerateMipSurfaceData(surf);
|
|
|
|
foreach (var mipoffset in surf.mipOffset)
|
|
{
|
|
Console.WriteLine($"mipoffset {mipoffset}");
|
|
}
|
|
|
|
var surfaces = GX2.Decode(surf);
|
|
return surfaces[ArrayLevel][MipLevel];
|
|
}
|
|
|
|
public void Write(FileWriter writer)
|
|
{
|
|
|
|
}
|
|
}
|
|
}
|
|
}
|