osu/osu.Game.Rulesets.Osu/Replays/OsuAutoGeneratorBase.cs

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// Copyright (c) ppy Pty Ltd <contact@ppy.sh>. Licensed under the MIT Licence.
// See the LICENCE file in the repository root for full licence text.
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using osuTK;
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using osu.Game.Beatmaps;
using System;
using System.Collections.Generic;
using System.Linq;
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using osu.Game.Replays;
using osu.Game.Rulesets.Mods;
using osu.Game.Rulesets.Osu.UI;
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using osu.Game.Rulesets.Replays;
namespace osu.Game.Rulesets.Osu.Replays
{
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public abstract class OsuAutoGeneratorBase : AutoGenerator
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{
#region Constants
/// <summary>
/// Constants (for spinners).
/// </summary>
protected static readonly Vector2 SPINNER_CENTRE = OsuPlayfield.BASE_SIZE / 2;
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public const float SPIN_RADIUS = 50;
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#endregion
#region Construction / Initialisation
protected Replay Replay;
protected List<ReplayFrame> Frames => Replay.Frames;
private readonly IReadOnlyList<IApplicableToRate> timeAffectingMods;
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protected OsuAutoGeneratorBase(IBeatmap beatmap, IReadOnlyList<Mod> mods)
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: base(beatmap)
{
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Replay = new Replay();
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timeAffectingMods = mods.OfType<IApplicableToRate>().ToList();
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}
#endregion
#region Utilities
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/// <summary>
/// Returns the real duration of time between <paramref name="startTime"/> and <paramref name="endTime"/>
/// after applying rate-affecting mods.
/// </summary>
/// <remarks>
/// This method should only be used when <paramref name="startTime"/> and <paramref name="endTime"/> are very close.
/// That is because the track rate might be changing with time,
/// and the method used here is a rough instantaneous approximation.
/// </remarks>
/// <param name="startTime">The start time of the time delta, in original track time.</param>
/// <param name="endTime">The end time of the time delta, in original track time.</param>
protected double ApplyModsToTimeDelta(double startTime, double endTime)
{
double delta = endTime - startTime;
foreach (var mod in timeAffectingMods)
delta /= mod.ApplyToRate(startTime);
return delta;
}
protected double ApplyModsToRate(double time, double rate)
{
foreach (var mod in timeAffectingMods)
rate = mod.ApplyToRate(time, rate);
return rate;
}
/// <summary>
/// Calculates the interval after which the next <see cref="ReplayFrame"/> should be generated,
/// in milliseconds.
/// </summary>
/// <param name="time">The time of the previous frame.</param>
protected double GetFrameDelay(double time)
=> ApplyModsToRate(time, 1000.0 / 60);
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private class ReplayFrameComparer : IComparer<ReplayFrame>
{
public int Compare(ReplayFrame? f1, ReplayFrame? f2)
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{
ArgumentNullException.ThrowIfNull(f1);
ArgumentNullException.ThrowIfNull(f2);
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return f1.Time.CompareTo(f2.Time);
}
}
private static readonly IComparer<ReplayFrame> replay_frame_comparer = new ReplayFrameComparer();
protected int FindInsertionIndex(ReplayFrame frame)
{
int index = Frames.BinarySearch(frame, replay_frame_comparer);
if (index < 0)
{
index = ~index;
}
else
{
// Go to the first index which is actually bigger
while (index < Frames.Count && frame.Time == Frames[index].Time)
{
++index;
}
}
return index;
}
protected void AddFrameToReplay(ReplayFrame frame) => Frames.Insert(FindInsertionIndex(frame), frame);
protected static Vector2 CirclePosition(double t, double radius) => new Vector2((float)(Math.Cos(t) * radius), (float)(Math.Sin(t) * radius));
#endregion
}
}