WalkLandscapeDatBuilder assembles the replay grid with the LIVE-dumped retail landscape model (LScape mid_radius=25 -> 51x51; the resolution pyramid observed on the capture client: side_cell_count 8 in the 3x3 core, 4 at ring 2, 2 at rings 3-4, 1 beyond; buildings attach only to full-res blocks - matching the traces roster), retail z-slabs (heightTable[max]+200 / [min]-1 per CLandBlock unpack @0052f297), and camera-block-local coordinates. The replay context gains the building half (placements, active-view install, building-polygon clip). The street-outdoor conformance diff now reaches real adjudication: the walk over-culls six traced buildings (jagged boundary - not a clean frustum edge) and the look-in floods differ; the driving test is parked Skip while the visibility map is instrumented. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
120 lines
5.1 KiB
C#
120 lines
5.1 KiB
C#
using System.Numerics;
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using AcDream.App.Rendering.Walk;
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using DatReaderWriter;
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using DatReaderWriter.DBObjs;
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namespace AcDream.App.Tests.Rendering.Walk;
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/// <summary>
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/// Campaign FW1 — assembles the replay world for outdoor/landscape
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/// fixtures: retail's 11×11 viewer-centered block grid (mid_radius 5) in
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/// CAMERA-BLOCK-LOCAL coordinates (the same space the pose origin and the
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/// per-block corner math use), each block with its retail z-slab
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/// (<c>CLandBlock::calc_lighting</c>-adjacent unpack @0x0052f1d0:
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/// max_zval = heightTable[maxByte] + 200, min_zval = heightTable[minByte]
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/// − 1), buildings placed at their landcell indices with landblock-local
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/// transforms offset by the block delta, and every neighbor block's
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/// interior cells merged into one registry.
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/// </summary>
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public static class WalkLandscapeDatBuilder
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{
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public sealed record BuiltWorld(
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WalkLandscape Landscape,
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Dictionary<uint, WalkCell> Cells,
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Dictionary<WalkBuilding, WalkWorldDatAdapter.BuildingEntry> Buildings);
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/// <summary>The capture client's live landscape grid (dumped 2026-08-30:
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/// LScape mid_radius=25 → a 51×51 grid — the owner's landscape-radius
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/// setting) with the resolution pyramid observed live: side_cell_count 8
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/// in the 3×3 core, 4 at ring 2, 2 at rings 3–4, 1 beyond. Buildings
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/// attach only to full-res blocks (the traces show no BLD beyond ±1).</summary>
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public const int MidRadius = 25;
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private static int SideCellCountForRing(int ring)
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=> ring <= 1 ? 8 : ring == 2 ? 4 : ring <= 4 ? 2 : 1;
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public static BuiltWorld Build(DatCollection dats, uint cameraCellId)
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{
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Region region = (Region)dats.Get<Region>(0x13000000u)!;
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float[] heightTable = region.LandDefs.LandHeightTable;
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int cameraBlockX = (int)(cameraCellId >> 24);
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int cameraBlockY = (int)((cameraCellId >> 16) & 0xFF);
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const int midRadius = MidRadius;
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const int midWidth = midRadius * 2 + 1;
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var landscape = new WalkLandscape
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{
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MidWidth = midWidth,
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Blocks = new WalkLandBlock?[midWidth * midWidth],
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ViewerBlockX = midRadius,
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ViewerBlockY = midRadius,
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};
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uint low = cameraCellId & 0xFFFFu;
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if (low >= 1 && low <= 0x40)
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{
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int cellIndex = (int)low - 1;
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landscape.ViewerCellX = cellIndex / 8;
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landscape.ViewerCellY = cellIndex % 8;
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}
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var cells = new Dictionary<uint, WalkCell>();
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var buildings = new Dictionary<WalkBuilding, WalkWorldDatAdapter.BuildingEntry>();
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for (int gx = 0; gx < midWidth; gx++)
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{
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for (int gy = 0; gy < midWidth; gy++)
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{
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int blockX = cameraBlockX + gx - midRadius;
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int blockY = cameraBlockY + gy - midRadius;
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if (blockX < 0 || blockX > 0xFF || blockY < 0 || blockY > 0xFF)
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continue;
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uint landblockId = (uint)((blockX << 24) | (blockY << 16));
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if (dats.Get<LandBlock>(landblockId | 0xFFFFu) is not LandBlock landBlock)
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continue;
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byte maxByte = 0, minByte = 255;
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foreach (byte h in landBlock.Height)
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{
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if (h > maxByte) maxByte = h;
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if (h < minByte) minByte = h;
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}
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int ring = Math.Max(Math.Abs(gx - midRadius), Math.Abs(gy - midRadius));
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int sideCellCount = SideCellCountForRing(ring);
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var block = new WalkLandBlock
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{
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SideCellCount = sideCellCount,
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MaxZ = heightTable[maxByte] + 200f,
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MinZ = heightTable[minByte] - 1f,
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};
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block.EnsureCellArrays();
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var blockOffset = new Vector3(
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(gx - midRadius) * WalkLandscape.BlockLength,
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(gy - midRadius) * WalkLandscape.BlockLength,
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0f);
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if (sideCellCount == 8)
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{
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foreach (WalkWorldDatAdapter.BuildingEntry entry
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in WalkWorldDatAdapter.BuildBuildings(dats, landblockId))
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{
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Matrix4x4 world = entry.WorldTransform
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* Matrix4x4.CreateTranslation(blockOffset);
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Matrix4x4.Invert(world, out Matrix4x4 inverse);
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var placed = new WalkWorldDatAdapter.BuildingEntry(
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entry.Building, world, inverse);
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buildings[entry.Building] = placed;
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int cellIndex = (int)(entry.Building.PositionCellId & 0xFFFFu) - 1;
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if (cellIndex >= 0 && cellIndex < 64)
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block.CellBuildings[cellIndex] = entry.Building;
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}
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WalkWorldDatAdapter.BuildInteriorCells(
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dats, landblockId, blockOffset, cells);
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}
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landscape.Blocks[gx * midWidth + gy] = block;
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}
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}
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return new BuiltWorld(landscape, cells, buildings);
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}
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}
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