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| Author | SHA1 | Date | |
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46f3931f85 | ||
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96e19c7c61 | ||
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38bdfbbb81 | ||
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08381703f7 |
@@ -10,16 +10,21 @@ namespace MrGameEng.Core;
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public sealed class Calendar
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{
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private readonly GameClock _clock;
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private readonly double _startDay;
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private float _secondsPerDay;
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/// <summary>
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/// Creates a calendar reading <paramref name="clock"/>; one day spans
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/// <paramref name="secondsPerDay"/> seconds of scaled time (must be positive).
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/// <paramref name="startDay"/> offsets the calendar by (fractional) days at clock 0 — e.g.
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/// <c>7.0 / 24</c> starts the world at 07:00 instead of midnight. It shifts the time of day and
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/// the day/night phase that reads <see cref="DayProgress"/>, without touching the clock itself.
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/// </summary>
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public Calendar(GameClock clock, float secondsPerDay)
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public Calendar(GameClock clock, float secondsPerDay, double startDay = 0.0)
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{
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_clock = clock ?? throw new ArgumentNullException(nameof(clock));
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SecondsPerDay = secondsPerDay;
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_startDay = startDay;
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}
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/// <summary>Scaled seconds per in-game day. Must be positive; raising it slows the calendar.</summary>
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@@ -36,8 +41,8 @@ public sealed class Calendar
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);
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}
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/// <summary>Total elapsed days as a continuous value (e.g. 3.5 = midday of day 4).</summary>
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public double TotalDays => _clock.TotalTime / _secondsPerDay;
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/// <summary>Total elapsed days as a continuous value (e.g. 3.5 = midday of day 4), incl. the start offset.</summary>
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public double TotalDays => _clock.TotalTime / _secondsPerDay + _startDay;
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/// <summary>The current day number, counting from 1.</summary>
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public int Day => (int)TotalDays + 1;
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@@ -68,11 +73,16 @@ public static class CalendarEngineExtensions
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/// <summary>
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/// Creates a <see cref="Calendar"/> bound to the context's clock and registers it as a
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/// service. Call once per world. <paramref name="secondsPerDay"/> is the scaled-time length
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/// of one in-game day (must be positive).
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/// of one in-game day (must be positive); <paramref name="startDay"/> offsets the starting
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/// time of day in fractional days (e.g. <c>7.0 / 24</c> begins the world at 07:00).
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/// </summary>
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public static Calendar UseCalendar(this EngineContext context, float secondsPerDay)
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public static Calendar UseCalendar(
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this EngineContext context,
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float secondsPerDay,
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double startDay = 0.0
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)
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{
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var calendar = new Calendar(context.Clock, secondsPerDay);
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var calendar = new Calendar(context.Clock, secondsPerDay, startDay);
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context.Services.Add(calendar);
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return calendar;
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}
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@@ -37,6 +37,13 @@ public readonly record struct ClimateSettings
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/// <summary>Day of the year (0-based) with the highest temperature; defaults to mid-summer.</summary>
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public int WarmestDay { get; init; }
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/// <summary>
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/// Day of the year (0-based) that the calendar's day 0 maps to. Shifts the whole seasonal phase
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/// (season and temperature together) so a world can begin in a chosen part of the year — e.g. a
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/// warm late spring instead of the cold turn of the year. Defaults to 0 (year begins at day 0).
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/// </summary>
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public int StartDayOfYear { get; init; }
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/// <summary>Temperate defaults: a 60-day year, mean 12°, ±14° seasonal, ±5° daily, warmest mid-summer.</summary>
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public static ClimateSettings Default =>
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new()
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@@ -78,18 +85,21 @@ public sealed class Climate
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/// <summary>In-game days per year.</summary>
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public int DaysPerYear => _settings.DaysPerYear;
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/// <summary>Elapsed days shifted by <see cref="ClimateSettings.StartDayOfYear"/> — the seasonal clock.</summary>
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private double YearDays => _calendar.TotalDays + _settings.StartDayOfYear;
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/// <summary>Continuous position within the current year in <c>[0, 1)</c>.</summary>
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public double YearProgress
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{
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get
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{
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var years = _calendar.TotalDays / _settings.DaysPerYear;
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var years = YearDays / _settings.DaysPerYear;
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return years - Math.Floor(years);
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}
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}
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/// <summary>The current year, counting from 1.</summary>
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public int Year => (int)(_calendar.TotalDays / _settings.DaysPerYear) + 1;
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public int Year => (int)(YearDays / _settings.DaysPerYear) + 1;
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/// <summary>Day within the current year, 0-based.</summary>
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public int DayOfYear => (int)(YearProgress * _settings.DaysPerYear);
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@@ -33,6 +33,15 @@ public readonly struct CameraState
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/// <summary>Physical-screen to virtual-pixel mapping.</summary>
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public required ViewportMapping Mapping { get; init; }
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/// <summary>
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/// World point at the centre of the virtual screen — the camera's <em>effective</em> position
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/// after bounds-clamping, i.e. what the view is actually built around. Prefer this over the raw
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/// <see cref="Camera.Position"/> when anchoring zoom-to-cursor, so the reposition matches what is
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/// rendered even while the camera is clamped against <see cref="Camera.Bounds"/>.
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/// </summary>
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public Vector2 WorldCenter =>
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Vector2.Transform(new Vector2(VirtualWidth / 2f, VirtualHeight / 2f), InverseView);
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/// <summary>Converts a physical screen point to world coordinates.</summary>
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public Vector2 ScreenToWorld(Vector2 screen)
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{
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@@ -52,6 +52,26 @@ public sealed class DayNight
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/// <summary>Light intensity at a world point in <c>[0, 1]</c>. Global today; local (with shadows) later.</summary>
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public float SampleAt(Vector2 world) => Daylight;
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/// <summary>
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/// Offset, in grid cells, of the shadow an occluder casts under the current sun: opposite the
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/// sun's east–west position and longest near sunrise/sunset (low sun), shrinking to zero at noon
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/// and at night. Feeds the lightmap's directional shadow pass; <paramref name="maxLength"/> caps
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/// the dawn/dusk shadow length. Tilted slightly "south" (down) so shadows fall in front of objects.
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/// </summary>
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public Vector2 SunShadow(float maxLength)
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{
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var day = (_calendar.DayProgress - 0.25f) / 0.5f; // daytime fraction over [06:00, 18:00]
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if (day <= 0f || day >= 1f)
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{
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return Vector2.Zero; // night — no sun; the ambient floor handles darkness
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}
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var altitude = MathF.Sin(day * MathF.PI); // 0 at dawn/dusk, 1 at noon
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var direction = new Vector2(2f * day - 1f, 0.4f); // sun east→west ⇒ shadow west→east, tilted south
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direction.Normalize();
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return direction * (maxLength * (1f - altitude));
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}
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/// <summary>Ambient tint for the scene: night color at night, day color at noon, eased between.</summary>
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public Color Ambient
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{
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@@ -1,3 +1,5 @@
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using Microsoft.Xna.Framework;
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namespace MrGameEng.Lighting;
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/// <summary>One point light projected onto the light grid: a cell position, a radius in cells and an intensity.</summary>
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@@ -16,8 +18,10 @@ public static class LightmapBuilder
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/// <summary>
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/// Fills <paramref name="light"/> (length <paramref name="width"/>×<paramref name="height"/>) with
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/// ambient light, shading occluder cells, then adds each point light with grid-traced occlusion.
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/// Values end clamped to <c>[0, 1]</c>.
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/// ambient light, shading occluder cells, casts each occluder's directional sun shadow along
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/// <paramref name="sunShadow"/> (cells), then adds each point light with grid-traced occlusion.
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/// Values end clamped to <c>[0, 1]</c>. A zero <paramref name="sunShadow"/> or
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/// <paramref name="sunShadowStrength"/> skips the directional pass (e.g. at night/noon).
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/// </summary>
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public static void Build(
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float[] light,
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@@ -25,7 +29,9 @@ public static class LightmapBuilder
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int height,
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float ambient,
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ReadOnlySpan<bool> occluders,
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IReadOnlyList<LightSample> lights
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IReadOnlyList<LightSample> lights,
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Vector2 sunShadow = default,
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float sunShadowStrength = 0f
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)
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{
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for (var i = 0; i < light.Length; i++)
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@@ -33,6 +39,8 @@ public static class LightmapBuilder
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light[i] = occluders[i] ? ambient * OccluderShade : ambient;
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}
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CastSunShadows(light, width, height, occluders, sunShadow, sunShadowStrength);
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foreach (var l in lights)
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{
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if (l.Radius <= 0f || l.Intensity <= 0f)
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@@ -73,6 +81,62 @@ public static class LightmapBuilder
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}
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}
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// Направленная тень от солнца: каждый окклюдер (гора/зрелая крона) отбрасывает тень вдоль
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// вектора sunShadow (в клетках). Затемнение гуще у основания и тает к концу тени; сами клетки-
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// окклюдеры не трогаем (они уже затенены). Окклюдеры разрежены, так что проход дёшев.
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private static void CastSunShadows(
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float[] light,
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int width,
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int height,
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ReadOnlySpan<bool> occluders,
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Vector2 sunShadow,
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float strength
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)
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{
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if (strength <= 0f)
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{
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return;
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}
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var steps = (int)MathF.Ceiling(sunShadow.Length());
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if (steps <= 0)
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{
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return;
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}
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var stepX = sunShadow.X / steps;
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var stepY = sunShadow.Y / steps;
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for (var oy = 0; oy < height; oy++)
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{
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for (var ox = 0; ox < width; ox++)
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{
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if (!occluders[oy * width + ox])
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{
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continue;
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}
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for (var s = 1; s <= steps; s++)
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{
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var cx = ox + (int)MathF.Round(stepX * s);
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var cy = oy + (int)MathF.Round(stepY * s);
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if (cx < 0 || cx >= width || cy < 0 || cy >= height)
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{
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break;
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}
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var index = cy * width + cx;
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if (occluders[index])
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{
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continue; // тень проходит над другими окклюдерами — они и так тёмные
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}
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var falloff = 1f - (float)(s - 1) / steps; // гуще у основания тени
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light[index] *= 1f - strength * falloff;
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}
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}
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}
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}
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// Есть ли прямая видимость между клетками: проводим линию (Брезенхем) и проверяем
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// промежуточные клетки на окклюдер (концы исключены).
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private static bool Visible(
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@@ -14,7 +14,9 @@ namespace MrGameEng.Lighting;
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public sealed class LightmapSystem : BaseSystem
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{
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private const int RebuildEvery = 6; // ~10 Гц при 60 fps
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private const float NightFloor = 0.18f; // ночь тусклая, но не чёрная (лунный свет)
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private const float NightFloor = 0.24f; // ночь тусклая, но не чёрная (лунный свет) — чуть светлее, чем было
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private const float MaxShadowCells = 7f; // макс. длина тени от солнца (на рассвете/закате)
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private const float SunShadowStrength = 0.5f; // насколько темнеет клетка у основания тени
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private readonly Lightmap _lightmap;
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private readonly DayNight _dayNight;
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@@ -77,7 +79,9 @@ public sealed class LightmapSystem : BaseSystem
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_lightmap.Height,
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ambient,
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_occluders(),
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_lights
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_lights,
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_dayNight.SunShadow(MaxShadowCells),
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SunShadowStrength
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);
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_lightmap.Upload();
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}
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@@ -54,6 +54,20 @@ public class CalendarTests
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Assert.Equal(14 * 60 + 30, calendar.MinuteOfDay);
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}
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[Fact]
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public void StartDay_OffsetsTheTimeOfDay()
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{
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var clock = new GameClock();
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var calendar = new Calendar(clock, secondsPerDay: 10f, startDay: 7.0 / 24); // begin at 07:00
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Assert.Equal(1, calendar.Day);
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Assert.Equal(7, calendar.Hour);
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Assert.Equal(0, calendar.Minute);
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clock.Advance(5f); // half a day later → 19:00
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Assert.Equal(19, calendar.Hour);
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}
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[Fact]
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public void Pause_DoesNotAdvanceTheCalendar()
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{
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@@ -81,4 +81,15 @@ public class ClimateTests
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Assert.Equal(2, climate.Year);
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Assert.Equal(0, climate.DayOfYear);
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}
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[Fact]
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public void StartDayOfYear_ShiftsTheSeasonalPhase()
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{
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// Begin the world already at the warmest day (15): the curve peaks at clock 0.
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var (_, climate) = Make(Seasonal with { StartDayOfYear = 15 });
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Assert.Equal(30f, climate.Temperature, 2); // mean 10 + amplitude 20, at the peak
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Assert.Equal(15, climate.DayOfYear); // day-of-year reflects the offset
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Assert.Equal(Season.Summer, climate.Season); // day 15 of a 60-day year = start of summer
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}
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}
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@@ -83,6 +83,29 @@ public class CameraMathTests
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AssertVector(new Vector2(0f, 200f), state.ScreenToWorld(Vector2.Zero));
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}
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[Fact]
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public void WorldCenter_EqualsUnclampedCameraPosition()
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{
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var camera = new Camera(new Vector2(640f, 360f), zoom: 2f);
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var state = CameraMath.Compute(camera, 1280, 720, ViewportMapping.Identity);
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AssertVector(camera.Position, state.WorldCenter);
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}
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[Fact]
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public void WorldCenter_ReflectsBoundsClamp_UnlikeRawPosition()
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{
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var bounds = new RectF(0f, 0f, 2000f, 1000f);
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var camera = new Camera(new Vector2(-500f, 500f), bounds: bounds);
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var state = CameraMath.Compute(camera, 800, 600, ViewportMapping.Identity);
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// Raw position is (-500, 500); only X clamps (to half-width 400 from the left world edge),
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// Y (500) is already inside [300, 700]. The effective centre the view is built around is (400, 500).
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AssertVector(new Vector2(400f, 500f), state.WorldCenter);
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}
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[Fact]
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public void Mapping_CentersVirtualResolutionInWiderWindow()
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{
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@@ -1,3 +1,4 @@
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using Microsoft.Xna.Framework;
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using MrGameEng.Core;
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using MrGameEng.Lighting;
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using Xunit;
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@@ -39,6 +40,25 @@ public class DayNightTests
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Assert.True(dawn < mid && mid < noon, "daylight should rise from dawn to noon");
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}
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[Fact]
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public void SunShadow_ZeroAtNight_PointsWestInMorning_EastInAfternoon_ShortAtNoon()
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{
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var (clock, dayNight) = Make(); // 1s = 1 in-game hour
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Assert.Equal(Vector2.Zero, dayNight.SunShadow(8f)); // 00:00 — night, no sun
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clock.Advance(7f); // 07:00 — low morning sun in the east
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var morning = dayNight.SunShadow(8f);
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Assert.True(morning.X < 0f, "morning shadow points west");
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Assert.True(morning.Length() > 2f, "low sun casts a long shadow");
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clock.Advance(5f); // 12:00 — sun overhead
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Assert.True(dayNight.SunShadow(8f).Length() < 1f, "noon sun casts almost no shadow");
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clock.Advance(5f); // 17:00 — afternoon sun in the west
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Assert.True(dayNight.SunShadow(8f).X > 0f, "afternoon shadow points east");
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}
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[Fact]
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public void Ambient_DarkerAtNightThanAtNoon()
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{
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@@ -1,3 +1,4 @@
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using Microsoft.Xna.Framework;
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using MrGameEng.Lighting;
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using Xunit;
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@@ -54,6 +55,29 @@ public class LightmapBuilderTests
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Assert.Equal(0f, light[5], 5); // за препятствием — тень
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}
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[Fact]
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public void SunShadow_DarkensCellsInTheShadowDirection_FadingFromTheCaster()
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{
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var occ = new bool[7];
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occ[3] = true; // occluder in the middle
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var light = new float[7];
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LightmapBuilder.Build(
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light,
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7,
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1,
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1f,
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occ,
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[],
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sunShadow: new Vector2(3f, 0f),
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sunShadowStrength: 0.6f
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);
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Assert.Equal(1f, light[2], 5); // toward the sun (opposite the shadow) — unshadowed
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Assert.Equal(LightmapBuilder.OccluderShade, light[3], 5); // occluder cell stays self-shaded
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Assert.True(light[4] < 1f); // in shadow
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Assert.True(light[4] < light[6]); // darker near the caster, fading along the shadow
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}
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[Fact]
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public void Values_StayWithinUnitRange()
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{
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Reference in New Issue
Block a user