332 lines
9.1 KiB
C#
332 lines
9.1 KiB
C#
using System.Globalization;
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using System.Linq;
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using Robust.Shared.Serialization;
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using Robust.Shared.Utility;
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namespace Content.Shared.FixedPoint
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{
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/// <summary>
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/// Represents a quantity of something, to a precision of 0.01.
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/// To enforce this level of precision, floats are shifted by 2 decimal points, rounded, and converted to an int.
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/// </summary>
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[Serializable, CopyByRef]
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public struct FixedPoint2 : ISelfSerialize, IComparable<FixedPoint2>, IEquatable<FixedPoint2>, IFormattable
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{
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public int Value { get; private set; }
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private const int Shift = 2;
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private const int ShiftConstant = 100; // Must be equal to pow(10, Shift)
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public static FixedPoint2 MaxValue { get; } = new(int.MaxValue);
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public static FixedPoint2 Epsilon { get; } = new(1);
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public static FixedPoint2 Zero { get; } = new(0);
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// This value isn't picked by any proper testing, don't @ me.
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private const float FloatEpsilon = 0.00001f;
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#if DEBUG
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static FixedPoint2()
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{
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// ReSharper disable once CompareOfFloatsByEqualityOperator
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DebugTools.Assert(Math.Pow(10, Shift) == ShiftConstant, "ShiftConstant must be equal to pow(10, Shift)");
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}
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#endif
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private readonly double ShiftDown()
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{
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return Value / (double) ShiftConstant;
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}
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private FixedPoint2(int value)
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{
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Value = value;
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}
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public static FixedPoint2 New(int value)
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{
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return new(value * ShiftConstant);
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}
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public static FixedPoint2 FromCents(int value) => new(value);
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public static FixedPoint2 New(float value)
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{
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return new((int) ApplyFloatEpsilon(value * ShiftConstant));
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}
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private static float ApplyFloatEpsilon(float value)
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{
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return value + FloatEpsilon * Math.Sign(value);
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}
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private static double ApplyFloatEpsilon(double value)
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{
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return value + FloatEpsilon * Math.Sign(value);
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}
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/// <summary>
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/// Create the closest <see cref="FixedPoint2"/> for a float value, always rounding up.
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/// </summary>
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public static FixedPoint2 NewCeiling(float value)
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{
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return new((int) MathF.Ceiling(value * ShiftConstant));
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}
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public static FixedPoint2 New(double value)
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{
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return new((int) ApplyFloatEpsilon(value * ShiftConstant));
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}
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public static FixedPoint2 New(string value)
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{
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return New(Parse.Float(value));
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}
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public static FixedPoint2 operator +(FixedPoint2 a) => a;
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public static FixedPoint2 operator -(FixedPoint2 a) => new(-a.Value);
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public static FixedPoint2 operator +(FixedPoint2 a, FixedPoint2 b)
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=> new(a.Value + b.Value);
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public static FixedPoint2 operator -(FixedPoint2 a, FixedPoint2 b)
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=> new(a.Value - b.Value);
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public static FixedPoint2 operator *(FixedPoint2 a, FixedPoint2 b)
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{
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return new(b.Value * a.Value / ShiftConstant);
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}
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public static FixedPoint2 operator *(FixedPoint2 a, float b)
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{
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return new((int) ApplyFloatEpsilon(a.Value * b));
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}
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public static FixedPoint2 operator *(FixedPoint2 a, double b)
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{
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return new((int) ApplyFloatEpsilon(a.Value * b));
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}
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public static FixedPoint2 operator *(FixedPoint2 a, int b)
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{
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return new(a.Value * b);
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}
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public static FixedPoint2 operator /(FixedPoint2 a, FixedPoint2 b)
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{
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return new((int) (ShiftConstant * (long) a.Value / b.Value));
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}
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public static FixedPoint2 operator /(FixedPoint2 a, float b)
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{
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return new((int) ApplyFloatEpsilon(a.Value / b));
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}
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public static bool operator <=(FixedPoint2 a, int b)
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{
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return a <= New(b);
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}
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public static bool operator >=(FixedPoint2 a, int b)
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{
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return a >= New(b);
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}
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public static bool operator <(FixedPoint2 a, int b)
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{
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return a < New(b);
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}
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public static bool operator >(FixedPoint2 a, int b)
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{
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return a > New(b);
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}
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public static bool operator ==(FixedPoint2 a, int b)
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{
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return a == New(b);
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}
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public static bool operator !=(FixedPoint2 a, int b)
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{
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return a != New(b);
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}
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public static bool operator ==(FixedPoint2 a, FixedPoint2 b)
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{
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return a.Equals(b);
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}
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public static bool operator !=(FixedPoint2 a, FixedPoint2 b)
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{
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return !a.Equals(b);
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}
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public static bool operator <=(FixedPoint2 a, FixedPoint2 b)
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{
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return a.Value <= b.Value;
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}
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public static bool operator >=(FixedPoint2 a, FixedPoint2 b)
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{
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return a.Value >= b.Value;
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}
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public static bool operator <(FixedPoint2 a, FixedPoint2 b)
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{
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return a.Value < b.Value;
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}
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public static bool operator >(FixedPoint2 a, FixedPoint2 b)
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{
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return a.Value > b.Value;
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}
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public readonly float Float()
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{
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return (float) ShiftDown();
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}
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public readonly double Double()
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{
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return ShiftDown();
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}
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public readonly int Int()
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{
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return Value / ShiftConstant;
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}
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// Implicit operators ftw
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public static implicit operator FixedPoint2(float n) => FixedPoint2.New(n);
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public static implicit operator FixedPoint2(double n) => FixedPoint2.New(n);
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public static implicit operator FixedPoint2(int n) => FixedPoint2.New(n);
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public static explicit operator float(FixedPoint2 n) => n.Float();
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public static explicit operator double(FixedPoint2 n) => n.Double();
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public static explicit operator int(FixedPoint2 n) => n.Int();
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public static FixedPoint2 Min(params FixedPoint2[] fixedPoints)
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{
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return fixedPoints.Min();
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}
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public static FixedPoint2 Min(FixedPoint2 a, FixedPoint2 b)
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{
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return a < b ? a : b;
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}
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public static FixedPoint2 Max(FixedPoint2 a, FixedPoint2 b)
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{
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return a > b ? a : b;
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}
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public static int Sign(FixedPoint2 value)
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{
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if (value < Zero)
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{
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return -1;
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}
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if (value > Zero)
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{
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return 1;
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}
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return 0;
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}
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public static FixedPoint2 Abs(FixedPoint2 a)
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{
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return FromCents(Math.Abs(a.Value));
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}
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public static FixedPoint2 Dist(FixedPoint2 a, FixedPoint2 b)
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{
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return FixedPoint2.Abs(a - b);
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}
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public static FixedPoint2 Clamp(FixedPoint2 reagent, FixedPoint2 min, FixedPoint2 max)
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{
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if (min > max)
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{
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throw new ArgumentException($"{nameof(min)} {min} cannot be larger than {nameof(max)} {max}");
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}
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return reagent < min ? min : reagent > max ? max : reagent;
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}
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public override readonly bool Equals(object? obj)
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{
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return obj is FixedPoint2 unit &&
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Value == unit.Value;
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}
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public override readonly int GetHashCode()
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{
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// ReSharper disable once NonReadonlyMemberInGetHashCode
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return HashCode.Combine(Value);
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}
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public void Deserialize(string value)
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{
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// TODO implement "lossless" serializer.
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// I.e., dont use floats.
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if (value == "MaxValue")
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Value = int.MaxValue;
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else
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this = New(Parse.Float(value));
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}
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public override readonly string ToString() => $"{ShiftDown().ToString(CultureInfo.InvariantCulture)}";
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public string ToString(string? format, IFormatProvider? formatProvider)
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{
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return ToString();
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}
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public readonly string Serialize()
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{
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// TODO implement "lossless" serializer.
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// I.e., dont use floats.
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if (Value == int.MaxValue)
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return "MaxValue";
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return ToString();
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}
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public readonly bool Equals(FixedPoint2 other)
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{
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return Value == other.Value;
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}
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public readonly int CompareTo(FixedPoint2 other)
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{
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if (other.Value > Value)
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{
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return -1;
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}
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if (other.Value < Value)
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{
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return 1;
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}
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return 0;
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}
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}
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public static class FixedPointEnumerableExt
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{
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public static FixedPoint2 Sum(this IEnumerable<FixedPoint2> source)
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{
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var acc = FixedPoint2.Zero;
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foreach (var n in source)
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{
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acc += n;
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}
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return acc;
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}
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}
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}
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