* Adds ISpanFormattable to geometry structs and makes ToString() near-zero-allocation. * Adds IEquatable, and Parsable to Rectangle3D to get it in-line with the other structs. Closes #1067
175 lines
5.4 KiB
C#
175 lines
5.4 KiB
C#
/*************************************************************************
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* ModernUO *
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* Copyright 2019-2022 - ModernUO Development Team *
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* Email: hi@modernuo.com *
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* File: Rectangle2D.cs *
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* *
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* This program is free software: you can redistribute it and/or modify *
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* it under the terms of the GNU General Public License as published by *
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* the Free Software Foundation, either version 3 of the License, or *
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* (at your option) any later version. *
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* *
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* You should have received a copy of the GNU General Public License *
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* along with this program. If not, see <http://www.gnu.org/licenses/>. *
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*************************************************************************/
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using System;
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namespace Server;
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[NoSort]
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[Parsable]
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[PropertyObject]
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public struct Rectangle2D : IEquatable<Rectangle2D>, ISpanFormattable
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{
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private Point2D _start;
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private Point2D _end;
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public Rectangle2D(Point2D start, Point2D end)
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{
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_start = start;
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_end = end;
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}
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public Rectangle2D(int x, int y, int width, int height)
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{
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_start = new Point2D(x, y);
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_end = new Point2D(x + width, y + height);
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}
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public void Set(int x, int y, int width, int height)
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{
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_start = new Point2D(x, y);
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_end = new Point2D(x + width, y + height);
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}
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[CommandProperty(AccessLevel.Counselor)]
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public Point2D Start
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{
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get => _start;
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set => _start = value;
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}
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[CommandProperty(AccessLevel.Counselor)]
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public Point2D End
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{
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get => _end;
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set => _end = value;
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}
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[CommandProperty(AccessLevel.Counselor)]
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public int X
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{
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get => _start.m_X;
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set => _start.m_X = value;
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}
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[CommandProperty(AccessLevel.Counselor)]
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public int Y
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{
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get => _start.m_Y;
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set => _start.m_Y = value;
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}
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[CommandProperty(AccessLevel.Counselor)]
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public int Width
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{
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get => _end.m_X - _start.m_X;
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set => _end.m_X = _start.m_X + value;
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}
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[CommandProperty(AccessLevel.Counselor)]
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public int Height
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{
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get => _end.m_Y - _start.m_Y;
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set => _end.m_Y = _start.m_Y + value;
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}
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public void MakeHold(Rectangle2D r)
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{
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if (r._start.m_X < _start.m_X)
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{
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_start.m_X = r._start.m_X;
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}
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if (r._start.m_Y < _start.m_Y)
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{
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_start.m_Y = r._start.m_Y;
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}
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if (r._end.m_X > _end.m_X)
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{
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_end.m_X = r._end.m_X;
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}
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if (r._end.m_Y > _end.m_Y)
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{
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_end.m_Y = r._end.m_Y;
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}
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}
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public bool Equals(Rectangle2D other) => _start == other._start && _end == other._end;
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public override bool Equals(object obj) => obj is Rectangle2D other && Equals(other);
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public override int GetHashCode() => HashCode.Combine(_start, _end);
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public static bool operator ==(Rectangle2D l, Rectangle2D r) => l._start == r._start && l._end == r._end;
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public static bool operator !=(Rectangle2D l, Rectangle2D r) => l._start != r._start || l._end != r._end;
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public static Rectangle2D Parse(string value)
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{
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var start = value.IndexOfOrdinal('(');
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var end = value.IndexOf(',', start + 1);
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Utility.ToInt32(value.AsSpan(start + 1, end - (start + 1)).Trim(), out var x);
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start = end;
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end = value.IndexOf(',', start + 1);
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Utility.ToInt32(value.AsSpan(start + 1, end - (start + 1)).Trim(), out var y);
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start = end;
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end = value.IndexOf(',', start + 1);
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Utility.ToInt32(value.AsSpan(start + 1, end - (start + 1)).Trim(), out var w);
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start = end;
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end = value.IndexOf(')', start + 1);
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Utility.ToInt32(value.AsSpan(start + 1, end - (start + 1)).Trim(), out var h);
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return new Rectangle2D(x, y, w, h);
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}
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public bool Contains(Point3D p) =>
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_start.m_X <= p.m_X && _start.m_Y <= p.m_Y && _end.m_X > p.m_X && _end.m_Y > p.m_Y;
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public bool Contains(Point2D p) =>
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_start.m_X <= p.m_X && _start.m_Y <= p.m_Y && _end.m_X > p.m_X && _end.m_Y > p.m_Y;
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public bool Contains(int x, int y) =>
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_start.m_X <= x && _start.m_Y <= y && _end.m_X > x && _end.m_Y > y;
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public bool TryFormat(Span<char> destination, out int charsWritten, ReadOnlySpan<char> format, IFormatProvider provider)
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=> destination.TryWrite(provider, $"({X}, {Y})+({Width}, {Height})", out charsWritten);
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public override string ToString()
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{
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// Maximum number of characters that are needed to represent this:
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// 9 characters for (, )+(, )
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// Up to 11 characters to represent each integer
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const int maxLength = 9 + 11 * 4;
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Span<char> span = stackalloc char[maxLength];
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TryFormat(span, out var charsWritten, null, null);
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return span[..charsWritten].ToString();
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}
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public string ToString(string format, IFormatProvider formatProvider)
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{
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// format and formatProvider are not doing anything right now, so use the
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// default ToString implementation.
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return ToString();
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}
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}
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