islaApocalypse/Core/Scripts/ConfigManager.cs
beezm ac67c27952 feat: curve v2 — per-seed spike normalization, u4 wall, 420 m ceiling (terrain-water task 06)
Per the task-05 hillshade-gate verdict: lowlands frozen (identity/toe/
rise/shoulder/plateau byte-unchanged); the spike now maps [t4,
hMaxSeed] — each seed's own raw pre-curve maximum, computed in a new
pass-1 over GenerateTopography — onto the peak band, so every island
reaches the ceiling (v1's pooled-max domain left mid-range seeds at
110–175 m). Spike stiffened to 0.1u + 0.9u^4; peak cap raised to
420 m above sea (1.82869). Degenerate near-flat guard: spike domain
floored at t4 + 0.01. The curve is now SEED-DEPENDENT: hMaxSeed is a
pure parameter (D-035), recorded in TCRV (field renamed
HMaxCal -> SpikeMax, same byte layout; v1 semantics = pooled max, v2 =
per-seed), and the monotonicity assertion runs per generation against
the effective curve. TerrainCurve gate: "off"|"v2" (default v2);
"v1" retired with a loud config error (task-05 blueprints are
regenerable). Classify path untouched — the biome/water oracle must
hold unchanged.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-08-08 00:21:25 -04:00

162 lines
4.8 KiB
C#

using Godot;
using Godot.Collections; // Required for Godot's built-in JSON parser
namespace IslaApocalypse.Core // Change this if your namespace is different
{
public static class ConfigManager
{
// Default Fallbacks
// public static int WorldSeed = 1063685222;
public static int WorldSeed = (int)GD.Randi(); // if 0 also randomizes
public static int MapSize = 8192;
public static float CraterRadius = 400f;
public static float DensityMultiplier = 1.0f; // <-- Replaces TownCount
public static int ChunkRadius = 24; // Default chunk size, can be overridden by config
// Iteration toggle: skip the ~25-min A* road pass entirely. The blueprint is
// still exported (road sections present but empty) — an iteration artifact,
// not a shippable world. Default false.
public static bool SkipRoads = false;
// Sea-level model (D-033, terrain-water task 04): "flat" = one scalar sea
// level everywhere (SeaLevelValue); "field" = the legacy latitude Lerp
// (0.26 north .. 0.15 south). Generator-only — the runtime never computes
// sea level. Default: flat 0.15.
public static string SeaLevelModel = "flat";
public static float SeaLevelValue = 0.15f;
// Height-redistribution curve (tasks 05/06, graduation M-7): "v2" applies the
// calibrated storm-ladder curve with the per-seed peak spike (HeightCurve.cs);
// "off" is the raw legacy profile. "v1" was dropped with the v2 recalibration
// (task-05 blueprints are regenerable). Biome classification is curve-invariant
// by construction either way. Default: v2.
public static string TerrainCurve = "v2";
public static void LoadConfig()
{
string path = "res://ServerConfig.json";
if (!FileAccess.FileExists(path))
{
GD.PrintErr("[ConfigManager] ServerConfig.json not found! Defaulting to 8K.");
return;
}
// Read the file
using var file = FileAccess.Open(path, FileAccess.ModeFlags.Read);
string content = file.GetAsText();
// Parse the JSON
var json = new Json();
var error = json.Parse(content);
if (error != Error.Ok)
{
GD.PrintErr($"[ConfigManager] JSON Parse Error: {json.GetErrorMessage()}");
return;
}
var data = (Dictionary)json.Data;
// Extract the Seed
if (data.ContainsKey("WorldSeed"))
{
WorldSeed = (int)data["WorldSeed"];
}
// Extract the MapProfile and run your Switch/Case logic!
string profile = "8K";
if (data.ContainsKey("MapProfile"))
{
profile = (string)data["MapProfile"];
}
// Extract the TownDensity and run your Switch/Case logic!
string townDensity = "Normal";
if (data.ContainsKey("TownDensity"))
{
townDensity = (string)data["TownDensity"];
}
// Extract the ChunkRadius
if (data.ContainsKey("ChunkRadius")) {
ChunkRadius = (int)data["ChunkRadius"];
}
// Extract the SkipRoads iteration toggle
if (data.ContainsKey("SkipRoads"))
{
SkipRoads = (bool)data["SkipRoads"];
}
// Extract the sea-level model
if (data.ContainsKey("SeaLevelModel"))
{
string model = (string)data["SeaLevelModel"];
if (model == "flat" || model == "field")
SeaLevelModel = model;
else
GD.PrintErr($"[ConfigManager] Unknown SeaLevelModel '{model}'. Keeping '{SeaLevelModel}'.");
}
if (data.ContainsKey("SeaLevelValue"))
{
SeaLevelValue = (float)data["SeaLevelValue"];
}
// Extract the terrain-curve gate
if (data.ContainsKey("TerrainCurve"))
{
string curve = (string)data["TerrainCurve"];
if (curve == "off" || curve == "v2")
TerrainCurve = curve;
else if (curve == "v1")
GD.PrintErr($"[ConfigManager] TerrainCurve 'v1' was retired by the v2 recalibration (task 06). Keeping '{TerrainCurve}' — use \"v2\" or \"off\".");
else
GD.PrintErr($"[ConfigManager] Unknown TerrainCurve '{curve}'. Keeping '{TerrainCurve}'.");
}
switch (profile)
{
case "4K":
MapSize = 4096;
CraterRadius = 400f; // Scaled down crater
break;
case "6K":
MapSize = 6144;
CraterRadius = 600f;
break;
case "8K":
MapSize = 8192;
CraterRadius = 800f; // Your original crater size spread over an 8K map
break;
case "10K":
MapSize = 10240;
CraterRadius = 1000f;
break;
default:
GD.PrintErr($"[ConfigManager] Unknown MapProfile '{profile}'. Defaulting to 8K.");
MapSize = 8192;
CraterRadius = 800f;
break;
}
switch (townDensity)
{
case "Sparse":
DensityMultiplier = 0.5f;
break;
case "Normal":
DensityMultiplier = 1.0f;
break;
case "Dense":
DensityMultiplier = 2.0f;
break;
default:
GD.PrintErr($"[ConfigManager] Unknown TownDensity '{townDensity}'. Defaulting to Normal.");
DensityMultiplier = 1.0f;
break;
}
GD.Print($"[ConfigManager] Successfully loaded {profile} Profile. MapSize set to {MapSize}.");
}
}
}