400 lines
17 KiB
C#
400 lines
17 KiB
C#
using System.Collections.Generic;
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using System.IO;
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using System.Text;
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using UnityEngine;
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namespace SplashEdit.RuntimeCode
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{
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/// <summary>
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/// Writes a standalone "loader pack" binary (.loading) for a loading screen canvas.
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///
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/// Format v2:
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/// Header (16 bytes):
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/// char[2] magic = "LP"
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/// uint16 version = 2
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/// uint8 fontCount
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/// uint8 canvasCount (always 1)
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/// uint16 resW — target PS1 resolution width
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/// uint16 resH — target PS1 resolution height
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/// uint8 atlasCount — number of texture atlases
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/// uint8 clutCount — number of CLUTs
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/// uint32 tableOffset — offset to UI table (font descs + canvas data)
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///
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/// After header (at offset 16):
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/// Atlas headers (12 bytes each × atlasCount)
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/// CLUT headers (12 bytes each × clutCount)
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/// Atlas pixel data (referenced by offsets in atlas headers)
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/// CLUT pixel data (referenced by offsets in CLUT headers)
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///
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/// At tableOffset:
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/// Same layout as the splashpack UI section:
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/// - Font descriptors (112 bytes each)
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/// - Font pixel data
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/// - Canvas descriptors (12 bytes each)
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/// - Element data (48 bytes per element)
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/// - String data (names + text content)
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///
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/// This reuses the same binary layout that UISystem::loadFromSplashpack() parses,
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/// so the C++ side can reuse the same parsing code.
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/// </summary>
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public static class PSXLoaderPackWriter
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{
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public const ushort LOADER_PACK_VERSION = 2;
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/// <summary>
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/// Write a loader pack file for a loading screen canvas prefab.
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/// </summary>
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/// <param name="path">Output file path.</param>
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/// <param name="prefab">The loading screen prefab (must contain PSXCanvas).</param>
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/// <param name="resolution">Target PS1 resolution.</param>
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/// <param name="atlases">Texture atlases from VRAM packing (may be null if no images).</param>
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/// <param name="log">Optional log callback.</param>
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/// <returns>True on success.</returns>
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public static bool Write(string path, GameObject prefab, Vector2 resolution,
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TextureAtlas[] atlases = null,
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System.Action<string, LogType> log = null)
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{
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if (prefab == null)
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{
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log?.Invoke("LoaderPackWriter: No prefab specified.", LogType.Error);
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return false;
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}
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// Collect canvas data from the prefab
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PSXFontData[] fonts;
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PSXCanvasData[] canvases = PSXUIExporter.CollectCanvasFromPrefab(prefab, resolution, out fonts);
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if (canvases == null || canvases.Length == 0)
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{
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log?.Invoke($"LoaderPackWriter: No PSXCanvas found in prefab '{prefab.name}'.", LogType.Error);
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return false;
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}
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// Only export the first canvas (loading screen = single canvas)
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PSXCanvasData canvas = canvases[0];
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using (FileStream fs = new FileStream(path, FileMode.Create, FileAccess.Write))
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using (BinaryWriter writer = new BinaryWriter(fs))
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{
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// Count CLUTs across all atlases
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int clutCount = 0;
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if (atlases != null)
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{
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foreach (var atlas in atlases)
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foreach (var tex in atlas.ContainedTextures)
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if (tex.ColorPalette != null)
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clutCount++;
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}
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// ── Header (16 bytes) ──
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writer.Write((byte)'L');
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writer.Write((byte)'P');
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writer.Write(LOADER_PACK_VERSION);
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writer.Write((byte)(fonts?.Length ?? 0));
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writer.Write((byte)1); // canvasCount = 1
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writer.Write((ushort)resolution.x);
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writer.Write((ushort)resolution.y);
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writer.Write((byte)(atlases?.Length ?? 0)); // atlasCount
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writer.Write((byte)clutCount); // clutCount
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long tableOffsetPos = writer.BaseStream.Position;
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writer.Write((uint)0); // tableOffset placeholder
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// ── Atlas headers (12 bytes each) ──
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List<long> atlasOffsetPlaceholders = new List<long>();
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if (atlases != null)
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{
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foreach (var atlas in atlases)
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{
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atlasOffsetPlaceholders.Add(writer.BaseStream.Position);
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writer.Write((uint)0); // pixelDataOffset placeholder
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writer.Write((ushort)atlas.Width);
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writer.Write((ushort)TextureAtlas.Height);
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writer.Write((ushort)atlas.PositionX);
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writer.Write((ushort)atlas.PositionY);
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}
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}
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// ── CLUT headers (12 bytes each) ──
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List<long> clutOffsetPlaceholders = new List<long>();
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if (atlases != null)
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{
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foreach (var atlas in atlases)
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{
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foreach (var tex in atlas.ContainedTextures)
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{
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if (tex.ColorPalette != null)
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{
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clutOffsetPlaceholders.Add(writer.BaseStream.Position);
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writer.Write((uint)0); // clutDataOffset placeholder
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writer.Write((ushort)tex.ClutPackingX);
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writer.Write((ushort)tex.ClutPackingY);
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writer.Write((ushort)tex.ColorPalette.Count);
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writer.Write((ushort)0); // pad
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}
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}
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}
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}
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// ── Atlas pixel data ──
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int atlasIdx = 0;
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if (atlases != null)
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{
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foreach (var atlas in atlases)
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{
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AlignToFourBytes(writer);
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long dataPos = writer.BaseStream.Position;
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// Backfill this atlas header's pixelDataOffset
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long cur = writer.BaseStream.Position;
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writer.Seek((int)atlasOffsetPlaceholders[atlasIdx], SeekOrigin.Begin);
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writer.Write((uint)dataPos);
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writer.Seek((int)cur, SeekOrigin.Begin);
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// Write pixel data in row-major order (same as PSXSceneWriter)
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for (int y = 0; y < atlas.vramPixels.GetLength(1); y++)
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for (int x = 0; x < atlas.vramPixels.GetLength(0); x++)
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writer.Write(atlas.vramPixels[x, y].Pack());
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atlasIdx++;
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}
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}
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// ── CLUT pixel data ──
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int clutIdx = 0;
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if (atlases != null)
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{
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foreach (var atlas in atlases)
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{
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foreach (var tex in atlas.ContainedTextures)
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{
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if (tex.ColorPalette != null)
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{
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AlignToFourBytes(writer);
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long dataPos = writer.BaseStream.Position;
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// Backfill this CLUT header's clutDataOffset
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long cur = writer.BaseStream.Position;
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writer.Seek((int)clutOffsetPlaceholders[clutIdx], SeekOrigin.Begin);
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writer.Write((uint)dataPos);
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writer.Seek((int)cur, SeekOrigin.Begin);
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foreach (VRAMPixel color in tex.ColorPalette)
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writer.Write((ushort)color.Pack());
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clutIdx++;
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}
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}
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}
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}
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// ── UI table (same format as splashpack UI section) ──
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AlignToFourBytes(writer);
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long uiTableStart = writer.BaseStream.Position;
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// ── Font descriptors (112 bytes each) ──
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List<long> fontDataOffsetPositions = new List<long>();
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if (fonts != null)
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{
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foreach (var font in fonts)
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{
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writer.Write(font.GlyphWidth); // [0]
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writer.Write(font.GlyphHeight); // [1]
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writer.Write(font.VramX); // [2-3]
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writer.Write(font.VramY); // [4-5]
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writer.Write(font.TextureHeight); // [6-7]
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fontDataOffsetPositions.Add(writer.BaseStream.Position);
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writer.Write((uint)0); // [8-11] dataOffset placeholder
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writer.Write((uint)(font.PixelData?.Length ?? 0)); // [12-15] dataSize
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if (font.AdvanceWidths != null && font.AdvanceWidths.Length >= 96)
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writer.Write(font.AdvanceWidths, 0, 96);
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else
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writer.Write(new byte[96]);
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}
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}
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// ── Font pixel data ──
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if (fonts != null)
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{
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for (int fi = 0; fi < fonts.Length; fi++)
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{
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var font = fonts[fi];
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if (font.PixelData == null || font.PixelData.Length == 0) continue;
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AlignToFourBytes(writer);
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long dataPos = writer.BaseStream.Position;
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writer.Write(font.PixelData);
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long curPos = writer.BaseStream.Position;
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writer.Seek((int)fontDataOffsetPositions[fi], SeekOrigin.Begin);
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writer.Write((uint)dataPos);
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writer.Seek((int)curPos, SeekOrigin.Begin);
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}
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}
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// ── Canvas descriptor (12 bytes) ──
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var elements = canvas.Elements ?? new PSXUIElementData[0];
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string cvName = canvas.Name ?? "loading";
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if (cvName.Length > 24) cvName = cvName.Substring(0, 24);
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long canvasDataOffsetPos = writer.BaseStream.Position;
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writer.Write((uint)0); // dataOffset placeholder
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writer.Write((byte)cvName.Length);
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writer.Write(canvas.SortOrder);
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writer.Write((byte)elements.Length);
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byte flags = 0;
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if (canvas.StartVisible) flags |= 0x01;
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writer.Write(flags);
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long canvasNameOffsetPos = writer.BaseStream.Position;
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writer.Write((uint)0); // nameOffset placeholder
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// ── Element data (48 bytes per element) ──
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AlignToFourBytes(writer);
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long elemDataStart = writer.BaseStream.Position;
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// Backfill canvas data offset
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{
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long cur = writer.BaseStream.Position;
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writer.Seek((int)canvasDataOffsetPos, SeekOrigin.Begin);
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writer.Write((uint)elemDataStart);
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writer.Seek((int)cur, SeekOrigin.Begin);
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}
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List<long> textOffsetPositions = new List<long>();
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List<string> textContents = new List<string>();
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for (int ei = 0; ei < elements.Length; ei++)
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{
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var el = elements[ei];
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// Identity (8 bytes)
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writer.Write((byte)el.Type);
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byte eFlags = 0;
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if (el.StartVisible) eFlags |= 0x01;
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writer.Write(eFlags);
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string eName = el.Name ?? "";
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if (eName.Length > 24) eName = eName.Substring(0, 24);
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writer.Write((byte)eName.Length);
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writer.Write((byte)0); // pad0
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long elemNameOffPos = writer.BaseStream.Position;
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writer.Write((uint)0); // nameOffset placeholder
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// Layout (8 bytes)
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writer.Write(el.X);
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writer.Write(el.Y);
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writer.Write(el.W);
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writer.Write(el.H);
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// Anchors (4 bytes)
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writer.Write(el.AnchorMinX);
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writer.Write(el.AnchorMinY);
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writer.Write(el.AnchorMaxX);
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writer.Write(el.AnchorMaxY);
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// Primary color (4 bytes)
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writer.Write(el.ColorR);
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writer.Write(el.ColorG);
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writer.Write(el.ColorB);
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writer.Write((byte)0); // pad1
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// Type-specific data (16 bytes)
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switch (el.Type)
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{
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case PSXUIElementType.Image:
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writer.Write(el.TexpageX);
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writer.Write(el.TexpageY);
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writer.Write(el.ClutX);
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writer.Write(el.ClutY);
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writer.Write(el.U0);
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writer.Write(el.V0);
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writer.Write(el.U1);
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writer.Write(el.V1);
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writer.Write(el.BitDepthIndex);
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writer.Write(new byte[5]);
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break;
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case PSXUIElementType.Progress:
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writer.Write(el.BgR);
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writer.Write(el.BgG);
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writer.Write(el.BgB);
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writer.Write(el.ProgressValue);
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writer.Write(new byte[12]);
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break;
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case PSXUIElementType.Text:
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writer.Write(el.FontIndex);
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writer.Write(new byte[15]);
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break;
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default:
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writer.Write(new byte[16]);
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break;
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}
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// Text content offset (8 bytes)
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long textOff = writer.BaseStream.Position;
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writer.Write((uint)0); // textOffset placeholder
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writer.Write((uint)0); // pad2
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textOffsetPositions.Add(textOff);
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textContents.Add(el.Type == PSXUIElementType.Text ? (el.DefaultText ?? "") : null);
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textOffsetPositions.Add(elemNameOffPos);
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textContents.Add("__NAME__" + eName);
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}
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// ── String data (text content + element names) ──
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for (int si = 0; si < textOffsetPositions.Count; si++)
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{
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string content = textContents[si];
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if (content == null) continue;
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bool isName = content.StartsWith("__NAME__");
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string str = isName ? content.Substring(8) : content;
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if (string.IsNullOrEmpty(str)) continue;
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AlignToFourBytes(writer);
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long strPos = writer.BaseStream.Position;
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byte[] strBytes = Encoding.UTF8.GetBytes(str);
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writer.Write(strBytes);
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writer.Write((byte)0); // null terminator
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long cur = writer.BaseStream.Position;
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writer.Seek((int)textOffsetPositions[si], SeekOrigin.Begin);
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writer.Write((uint)strPos);
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writer.Seek((int)cur, SeekOrigin.Begin);
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}
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// ── Canvas name ──
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{
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AlignToFourBytes(writer);
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long namePos = writer.BaseStream.Position;
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byte[] nameBytes = Encoding.UTF8.GetBytes(cvName);
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writer.Write(nameBytes);
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writer.Write((byte)0);
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long cur = writer.BaseStream.Position;
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writer.Seek((int)canvasNameOffsetPos, SeekOrigin.Begin);
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writer.Write((uint)namePos);
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writer.Seek((int)cur, SeekOrigin.Begin);
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}
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// ── Backfill header table offset ──
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{
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long cur = writer.BaseStream.Position;
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writer.Seek((int)tableOffsetPos, SeekOrigin.Begin);
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writer.Write((uint)uiTableStart);
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writer.Seek((int)cur, SeekOrigin.Begin);
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}
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}
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log?.Invoke($"LoaderPackWriter: Wrote loading screen '{canvas.Name}' to {Path.GetFileName(path)}", LogType.Log);
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return true;
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}
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private static void AlignToFourBytes(BinaryWriter writer)
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{
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long pos = writer.BaseStream.Position;
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int pad = (int)((4 - (pos % 4)) % 4);
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for (int i = 0; i < pad; i++)
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writer.Write((byte)0);
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}
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}
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}
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