/************************************************************************* * ModernUO * * Copyright 2019-2023 - ModernUO Development Team * * Email: hi@modernuo.com * * File: Point2D.cs * * * * This program is free software: you can redistribute it and/or modify * * it under the terms of the GNU General Public License as published by * * the Free Software Foundation, either version 3 of the License, or * * (at your option) any later version. * * * * You should have received a copy of the GNU General Public License * * along with this program. If not, see . * *************************************************************************/ using System; using System.Runtime.CompilerServices; namespace Server; public struct Point2D : IPoint2D, IComparable, IComparable, IEquatable, IEquatable, IEquatable, ISpanFormattable, ISpanParsable { internal int m_X; internal int m_Y; public static readonly Point2D Zero = new(0, 0); [CommandProperty(AccessLevel.Counselor)] public int X { get => m_X; set => m_X = value; } [CommandProperty(AccessLevel.Counselor)] public int Y { get => m_Y; set => m_Y = value; } [MethodImpl(MethodImplOptions.AggressiveInlining)] public Point2D(IPoint2D p) : this(p.X, p.Y) { } [MethodImpl(MethodImplOptions.AggressiveInlining)] public Point2D(Point3D p) : this(p.X, p.Y) { } [MethodImpl(MethodImplOptions.AggressiveInlining)] public Point2D(Point2D p) : this(p.X, p.Y) { } public Point2D(int x, int y) { m_X = x; m_Y = y; } public bool Equals(Point2D other) => m_X == other.m_X && m_Y == other.m_Y; public bool Equals(IPoint2D other) => m_X == other?.X && m_Y == other.Y; public override bool Equals(object obj) => obj is Point2D other && Equals(other); public override int GetHashCode() => HashCode.Combine(m_X, m_Y); public static bool operator ==(Point2D l, Point2D r) => l.m_X == r.m_X && l.m_Y == r.m_Y; public static bool operator !=(Point2D l, Point2D r) => l.m_X != r.m_X || l.m_Y != r.m_Y; public static bool operator ==(Point2D l, IPoint2D r) => !ReferenceEquals(r, null) && l.m_X == r.X && l.m_Y == r.Y; public static bool operator !=(Point2D l, IPoint2D r) => !ReferenceEquals(r, null) && (l.m_X != r.X || l.m_Y != r.Y); public static bool operator >(Point2D l, Point2D r) => l.m_X > r.m_X && l.m_Y > r.m_Y; public static bool operator >(Point2D l, IPoint2D r) => !ReferenceEquals(r, null) && l.m_X > r.X && l.m_Y > r.Y; public static bool operator <(Point2D l, Point2D r) => l.m_X < r.m_X && l.m_Y < r.m_Y; public static bool operator <(Point2D l, IPoint2D r) => !ReferenceEquals(r, null) && l.m_X < r.X && l.m_Y < r.Y; public static bool operator >=(Point2D l, Point2D r) => l.m_X >= r.m_X && l.m_Y >= r.m_Y; public static bool operator >=(Point2D l, IPoint2D r) => !ReferenceEquals(r, null) && l.m_X >= r.X && l.m_Y >= r.Y; public static bool operator <=(Point2D l, Point2D r) => l.m_X <= r.m_X && l.m_Y <= r.m_Y; public static bool operator <=(Point2D l, IPoint2D r) => !ReferenceEquals(r, null) && l.m_X <= r.X && l.m_Y <= r.Y; public int CompareTo(Point2D other) { var xComparison = m_X.CompareTo(other.m_X); return xComparison != 0 ? xComparison : m_Y.CompareTo(other.m_Y); } public int CompareTo(IPoint2D other) { var xComparison = m_X.CompareTo(other.X); return xComparison != 0 ? xComparison : m_Y.CompareTo(other.Y); } public bool TryFormat(Span destination, out int charsWritten, ReadOnlySpan format, IFormatProvider provider) => destination.TryWrite(provider, $"({m_X}, {m_Y})", out charsWritten); public override string ToString() { // Maximum number of characters that are needed to represent this: // 4 characters for (, ) // Up to 11 characters to represent each integer const int maxLength = 4 + 11 * 2; Span span = stackalloc char[maxLength]; TryFormat(span, out var charsWritten, null, null); return span[..charsWritten].ToString(); } public string ToString(string format, IFormatProvider formatProvider) { // format and formatProvider are not doing anything right now, so use the // default ToString implementation. return ToString(); } [MethodImpl(MethodImplOptions.AggressiveInlining)] public static Point2D Parse(string s) => Parse(s, null); [MethodImpl(MethodImplOptions.AggressiveInlining)] public static Point2D Parse(string s, IFormatProvider provider) => Parse(s.AsSpan(), provider); [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool TryParse(string s, IFormatProvider provider, out Point2D result) => TryParse(s.AsSpan(), provider, out result); public static Point2D Parse(ReadOnlySpan s, IFormatProvider provider) { s = s.Trim(); if (!s.StartsWithOrdinal('(') || !s.EndsWithOrdinal(')')) { throw new FormatException($"The input string '{s}' was not in a correct format."); } var comma = s.IndexOfOrdinal(','); if (comma == -1) { throw new FormatException($"The input string '{s}' was not in a correct format."); } var first = s.Slice(1, comma - 1).Trim(); if (!Utility.ToInt32(first, out var x)) { throw new FormatException($"The input string '{s}' was not in a correct format."); } var second = s.Slice(comma + 1, s.Length - comma - 2).Trim(); if (!Utility.ToInt32(second, out var y)) { throw new FormatException($"The input string '{s}' was not in a correct format."); } return new Point2D(x, y); } public static bool TryParse(ReadOnlySpan s, IFormatProvider provider, out Point2D result) { s = s.Trim(); if (!s.StartsWithOrdinal('(') || !s.EndsWithOrdinal(')')) { result = default; return false; } var comma = s.IndexOfOrdinal(','); if (comma == -1) { result = default; return false; } var first = s.Slice(1, comma - 1).Trim(); if (!Utility.ToInt32(first, out var x)) { result = default; return false; } var second = s.Slice(comma + 1, s.Length - comma - 2).Trim(); if (!Utility.ToInt32(second, out var y)) { result = default; return false; } result = new Point2D(x, y); return true; } }